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taosdata / TDengine / #3676

22 Mar 2025 04:46PM UTC coverage: 25.147% (-36.8%) from 61.952%
#3676

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fix: userOperTest in linux (#30363)

Co-authored-by: taos-support <it@taosdata.com>

55963 of 304767 branches covered (18.36%)

Branch coverage included in aggregate %.

96374 of 301020 relevant lines covered (32.02%)

582640.8 hits per line

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14.06
/source/common/src/tdataformat.c
1
/*
2
 * Copyright (c) 2019 TAOS Data, Inc. <jhtao@taosdata.com>
3
 *
4
 * This program is free software: you can use, redistribute, and/or modify
5
 * it under the terms of the GNU Affero General Public License, version 3
6
 * or later ("AGPL"), as published by the Free Software Foundation.
7
 *
8
 * This program is distributed in the hope that it will be useful, but WITHOUT
9
 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
10
 * FITNESS FOR A PARTICULAR PURPOSE.
11
 *
12
 * You should have received a copy of the GNU Affero General Public License
13
 * along with this program. If not, see <http://www.gnu.org/licenses/>.
14
 */
15

16
#define _DEFAULT_SOURCE
17
#include "tdataformat.h"
18
#include "tRealloc.h"
19
#include "tdatablock.h"
20
#include "tlog.h"
21
#include "decimal.h"
22

23
static int32_t (*tColDataAppendValueImpl[8][3])(SColData *pColData, uint8_t *pData, uint32_t nData);
24
static int32_t (*tColDataUpdateValueImpl[8][3])(SColData *pColData, uint8_t *pData, uint32_t nData, bool forward);
25

26
// ================================
27
static int32_t tGetTagVal(uint8_t *p, STagVal *pTagVal, int8_t isJson);
28

29
// SRow ========================================================================
30
#define KV_FLG_LIT ((uint8_t)0x10)
31
#define KV_FLG_MID ((uint8_t)0x20)
32
#define KV_FLG_BIG ((uint8_t)0x40)
33

34
#define BIT_FLG_NONE  ((uint8_t)0x0)
35
#define BIT_FLG_NULL  ((uint8_t)0x1)
36
#define BIT_FLG_VALUE ((uint8_t)0x2)
37

38
#pragma pack(push, 1)
39
typedef struct {
40
  int16_t nCol;
41
  uint8_t idx[];  // uint8_t * | uint16_t * | uint32_t *
42
} SKVIdx;
43
#pragma pack(pop)
44

45
#define ROW_SET_BITMAP(PB, FLAG, IDX, VAL)      \
46
  do {                                          \
47
    switch (FLAG) {                             \
48
      case (HAS_NULL | HAS_NONE):               \
49
        SET_BIT1(PB, IDX, VAL);                 \
50
        break;                                  \
51
      case (HAS_VALUE | HAS_NONE):              \
52
        SET_BIT1(PB, IDX, (VAL) ? (VAL)-1 : 0); \
53
        break;                                  \
54
      case (HAS_VALUE | HAS_NULL):              \
55
        SET_BIT1(PB, IDX, (VAL)-1);             \
56
        break;                                  \
57
      case (HAS_VALUE | HAS_NULL | HAS_NONE):   \
58
        SET_BIT2(PB, IDX, VAL);                 \
59
        break;                                  \
60
      default:                                  \
61
        break;                                  \
62
    }                                           \
63
  } while (0)
64

65
static int32_t tPutPrimaryKeyIndex(uint8_t *p, const SPrimaryKeyIndex *index) {
×
66
  int32_t n = 0;
×
67
  n += tPutI8(p ? p + n : p, index->type);
×
68
  n += tPutU32v(p ? p + n : p, index->offset);
×
69
  return n;
×
70
}
71

72
static int32_t tGetPrimaryKeyIndex(uint8_t *p, SPrimaryKeyIndex *index) {
×
73
  int32_t n = 0;
×
74
  n += tGetI8(p + n, &index->type);
×
75
  n += tGetU32v(p + n, &index->offset);
×
76
  return n;
×
77
}
78

79
typedef struct {
80
  int32_t numOfNone;
81
  int32_t numOfNull;
82
  int32_t numOfValue;
83
  int32_t numOfPKs;
84
  int8_t  flag;
85

86
  // tuple
87
  int8_t           tupleFlag;
88
  SPrimaryKeyIndex tupleIndices[TD_MAX_PK_COLS];
89
  int32_t          tuplePKSize;      // primary key size
90
  int32_t          tupleBitmapSize;  // bitmap size
91
  int32_t          tupleFixedSize;   // fixed part size
92
  int32_t          tupleVarSize;     // var part size
93
  int32_t          tupleRowSize;
94

95
  // key-value
96
  int8_t           kvFlag;
97
  SPrimaryKeyIndex kvIndices[TD_MAX_PK_COLS];
98
  int32_t          kvMaxOffset;
99
  int32_t          kvPKSize;       // primary key size
100
  int32_t          kvIndexSize;    // offset array size
101
  int32_t          kvPayloadSize;  // payload size
102
  int32_t          kvRowSize;
103
} SRowBuildScanInfo;
104

105
static FORCE_INLINE int32_t tRowBuildScanAddNone(SRowBuildScanInfo *sinfo, const STColumn *pTColumn) {
106
  if ((pTColumn->flags & COL_IS_KEY)) return TSDB_CODE_PAR_PRIMARY_KEY_IS_NONE;
×
107
  sinfo->numOfNone++;
222✔
108
  return 0;
222✔
109
}
110

111
static FORCE_INLINE int32_t tRowBuildScanAddNull(SRowBuildScanInfo *sinfo, const STColumn *pTColumn) {
112
  if ((pTColumn->flags & COL_IS_KEY)) return TSDB_CODE_PAR_PRIMARY_KEY_IS_NULL;
×
113
  sinfo->numOfNull++;
×
114
  sinfo->kvMaxOffset = sinfo->kvPayloadSize;
×
115
  sinfo->kvPayloadSize += tPutI16v(NULL, -pTColumn->colId);
×
116
  return 0;
×
117
}
118

119
static FORCE_INLINE void tRowBuildScanAddValue(SRowBuildScanInfo *sinfo, SColVal *colVal, const STColumn *pTColumn) {
120
  bool isPK = ((pTColumn->flags & COL_IS_KEY) != 0);
10,678✔
121

122
  if (isPK) {
10,678✔
123
    sinfo->tupleIndices[sinfo->numOfPKs].type = colVal->value.type;
×
124
    sinfo->tupleIndices[sinfo->numOfPKs].offset =
×
125
        IS_VAR_DATA_TYPE(pTColumn->type) ? sinfo->tupleVarSize + sinfo->tupleFixedSize : pTColumn->offset;
×
126
    sinfo->kvIndices[sinfo->numOfPKs].type = colVal->value.type;
×
127
    sinfo->kvIndices[sinfo->numOfPKs].offset = sinfo->kvPayloadSize;
×
128
    sinfo->numOfPKs++;
×
129
  }
130

131
  sinfo->kvMaxOffset = sinfo->kvPayloadSize;
10,678✔
132
  if (IS_VAR_DATA_TYPE(colVal->value.type)) {
10,678!
133
    sinfo->tupleVarSize += tPutU32v(NULL, colVal->value.nData)  // size
298✔
134
                           + colVal->value.nData;               // value
298✔
135

136
    sinfo->kvPayloadSize += tPutI16v(NULL, colVal->cid)            // colId
298✔
137
                            + tPutU32v(NULL, colVal->value.nData)  // size
298✔
138
                            + colVal->value.nData;                 // value
298✔
139
  } else {
140
    sinfo->kvPayloadSize += tPutI16v(NULL, colVal->cid)              // colId
10,380✔
141
                            + tDataTypes[colVal->value.type].bytes;  // value
10,380✔
142
  }
143
  sinfo->numOfValue++;
10,678✔
144
}
10,678✔
145

146
static int32_t tRowBuildScan(SArray *colVals, const STSchema *schema, SRowBuildScanInfo *sinfo) {
10,443✔
147
  int32_t  code = 0;
10,443✔
148
  int32_t  colValIndex = 1;
10,443✔
149
  int32_t  numOfColVals = TARRAY_SIZE(colVals);
10,443✔
150
  SColVal *colValArray = (SColVal *)TARRAY_DATA(colVals);
10,443✔
151

152
  if (!(numOfColVals > 0)) {
10,443!
153
    return TSDB_CODE_INVALID_PARA;
×
154
  }
155
  if (!(colValArray[0].cid == PRIMARYKEY_TIMESTAMP_COL_ID)) {
10,443!
156
    return TSDB_CODE_PAR_INVALID_FIRST_COLUMN;
×
157
  }
158
  if (!(colValArray[0].value.type == TSDB_DATA_TYPE_TIMESTAMP)) {
10,443!
159
    return TSDB_CODE_PAR_INVALID_FIRST_COLUMN;;
×
160
  }
161

162
  *sinfo = (SRowBuildScanInfo){
10,443✔
163
      .tupleFixedSize = schema->flen,
10,443✔
164
  };
165

166
  // loop scan
167
  for (int32_t i = 1; i < schema->numOfCols; i++) {
21,343✔
168
    for (;;) {
169
      if (colValIndex >= numOfColVals) {
10,900✔
170
        if ((code = tRowBuildScanAddNone(sinfo, schema->columns + i))) goto _exit;
408!
171
        break;
204✔
172
      }
173

174
      if (colValArray[colValIndex].cid == schema->columns[i].colId) {
10,696!
175
        if (!(colValArray[colValIndex].value.type == schema->columns[i].type)) {
10,696!
176
          code = TSDB_CODE_INVALID_PARA;
×
177
          goto _exit;
×
178
        }
179

180
        if (COL_VAL_IS_VALUE(&colValArray[colValIndex])) {
10,696✔
181
          tRowBuildScanAddValue(sinfo, &colValArray[colValIndex], schema->columns + i);
10,678!
182
        } else if (COL_VAL_IS_NULL(&colValArray[colValIndex])) {
18!
183
          if ((code = tRowBuildScanAddNull(sinfo, schema->columns + i))) goto _exit;
×
184
        } else if (COL_VAL_IS_NONE(&colValArray[colValIndex])) {
18!
185
          if ((code = tRowBuildScanAddNone(sinfo, schema->columns + i))) goto _exit;
36!
186
        }
187

188
        colValIndex++;
10,696✔
189
        break;
10,696✔
190
      } else if (colValArray[colValIndex].cid > schema->columns[i].colId) {
×
191
        if ((code = tRowBuildScanAddNone(sinfo, schema->columns + i))) goto _exit;
×
192
        break;
×
193
      } else {  // skip useless value
194
        colValIndex++;
×
195
      }
196
    }
197
  }
198

199
  if (sinfo->numOfNone) {
10,443✔
200
    sinfo->flag |= HAS_NONE;
40✔
201
  }
202
  if (sinfo->numOfNull) {
10,443!
203
    sinfo->flag |= HAS_NULL;
×
204
  }
205
  if (sinfo->numOfValue) {
10,443✔
206
    sinfo->flag |= HAS_VALUE;
10,403✔
207
  }
208

209
  // Tuple
210
  sinfo->tupleFlag = sinfo->flag;
10,443✔
211
  switch (sinfo->flag) {
10,443!
212
    case HAS_NONE:
40✔
213
    case HAS_NULL:
214
      sinfo->tupleBitmapSize = 0;
40✔
215
      sinfo->tupleFixedSize = 0;
40✔
216
      break;
40✔
217
    case HAS_VALUE:
10,403✔
218
      sinfo->tupleBitmapSize = 0;
10,403✔
219
      sinfo->tupleFixedSize = schema->flen;
10,403✔
220
      break;
10,403✔
221
    case (HAS_NONE | HAS_NULL):
×
222
      sinfo->tupleBitmapSize = BIT1_SIZE(schema->numOfCols - 1);
×
223
      sinfo->tupleFixedSize = 0;
×
224
      break;
×
225
    case (HAS_NONE | HAS_VALUE):
×
226
    case (HAS_NULL | HAS_VALUE):
227
      sinfo->tupleBitmapSize = BIT1_SIZE(schema->numOfCols - 1);
×
228
      sinfo->tupleFixedSize = schema->flen;
×
229
      break;
×
230
    case (HAS_NONE | HAS_NULL | HAS_VALUE):
×
231
      sinfo->tupleBitmapSize = BIT2_SIZE(schema->numOfCols - 1);
×
232
      sinfo->tupleFixedSize = schema->flen;
×
233
      break;
×
234
  }
235
  for (int32_t i = 0; i < sinfo->numOfPKs; i++) {
10,443!
236
    sinfo->tupleIndices[i].offset += sinfo->tupleBitmapSize;
×
237
    sinfo->tuplePKSize += tPutPrimaryKeyIndex(NULL, sinfo->tupleIndices + i);
×
238
  }
239
  sinfo->tupleRowSize = sizeof(SRow)              // SRow
10,443✔
240
                        + sinfo->tuplePKSize      // primary keys
10,443✔
241
                        + sinfo->tupleBitmapSize  // bitmap
10,443✔
242
                        + sinfo->tupleFixedSize   // fixed part
10,443✔
243
                        + sinfo->tupleVarSize;    // var part
10,443✔
244

245
  // Key-Value
246
  if (sinfo->kvMaxOffset <= UINT8_MAX) {
10,443!
247
    sinfo->kvFlag = (KV_FLG_LIT | sinfo->flag);
10,443✔
248
    sinfo->kvIndexSize = sizeof(SKVIdx) + (sinfo->numOfNull + sinfo->numOfValue) * sizeof(uint8_t);
10,443✔
249
  } else if (sinfo->kvMaxOffset <= UINT16_MAX) {
×
250
    sinfo->kvFlag = (KV_FLG_MID | sinfo->flag);
×
251
    sinfo->kvIndexSize = sizeof(SKVIdx) + (sinfo->numOfNull + sinfo->numOfValue) * sizeof(uint16_t);
×
252
  } else {
253
    sinfo->kvFlag = (KV_FLG_BIG | sinfo->flag);
×
254
    sinfo->kvIndexSize = sizeof(SKVIdx) + (sinfo->numOfNull + sinfo->numOfValue) * sizeof(uint32_t);
×
255
  }
256
  for (int32_t i = 0; i < sinfo->numOfPKs; i++) {
10,443!
257
    sinfo->kvIndices[i].offset += sinfo->kvIndexSize;
×
258
    sinfo->kvPKSize += tPutPrimaryKeyIndex(NULL, sinfo->kvIndices + i);
×
259
  }
260
  sinfo->kvRowSize = sizeof(SRow)             // SRow
10,443✔
261
                     + sinfo->kvPKSize        // primary keys
10,443✔
262
                     + sinfo->kvIndexSize     // index array
10,443✔
263
                     + sinfo->kvPayloadSize;  // payload
10,443✔
264

265
_exit:
10,443✔
266
  return code;
10,443✔
267
}
268

269
static int32_t tRowBuildTupleRow(SArray *aColVal, const SRowBuildScanInfo *sinfo, const STSchema *schema,
10,433✔
270
                                 SRow **ppRow) {
271
  SColVal *colValArray = (SColVal *)TARRAY_DATA(aColVal);
10,433✔
272

273
  *ppRow = (SRow *)taosMemoryCalloc(1, sinfo->tupleRowSize);
10,433!
274
  if (*ppRow == NULL) {
10,433!
275
    return terrno;
×
276
  }
277
  (*ppRow)->flag = sinfo->tupleFlag;
10,433✔
278
  (*ppRow)->numOfPKs = sinfo->numOfPKs;
10,433✔
279
  (*ppRow)->sver = schema->version;
10,433✔
280
  (*ppRow)->len = sinfo->tupleRowSize;
10,433✔
281
  (*ppRow)->ts = VALUE_GET_TRIVIAL_DATUM(&colValArray[0].value);
10,433✔
282

283
  if (sinfo->tupleFlag == HAS_NONE || sinfo->tupleFlag == HAS_NULL) {
10,433!
284
    return 0;
40✔
285
  }
286

287
  uint8_t *primaryKeys = (*ppRow)->data;
10,393✔
288
  uint8_t *bitmap = primaryKeys + sinfo->tuplePKSize;
10,393✔
289
  uint8_t *fixed = bitmap + sinfo->tupleBitmapSize;
10,393✔
290
  uint8_t *varlen = fixed + sinfo->tupleFixedSize;
10,393✔
291

292
  // primary keys
293
  for (int32_t i = 0; i < sinfo->numOfPKs; i++) {
10,393!
294
    primaryKeys += tPutPrimaryKeyIndex(primaryKeys, sinfo->tupleIndices + i);
×
295
  }
296

297
  // bitmap + fixed + varlen
298
  int32_t numOfColVals = TARRAY_SIZE(aColVal);
10,393✔
299
  int32_t colValIndex = 1;
10,393✔
300
  for (int32_t i = 1; i < schema->numOfCols; i++) {
21,021✔
301
    for (;;) {
302
      if (colValIndex >= numOfColVals) {  // NONE
10,628!
303
        ROW_SET_BITMAP(bitmap, sinfo->tupleFlag, i - 1, BIT_FLG_NONE);
×
304
        break;
×
305
      }
306

307
      if (colValArray[colValIndex].cid == schema->columns[i].colId) {
10,628!
308
        if (COL_VAL_IS_VALUE(&colValArray[colValIndex])) {  // value
10,628!
309
          ROW_SET_BITMAP(bitmap, sinfo->tupleFlag, i - 1, BIT_FLG_VALUE);
10,628!
310

311
          if (IS_VAR_DATA_TYPE(schema->columns[i].type)) {
10,628!
312
            *(int32_t *)(fixed + schema->columns[i].offset) = varlen - fixed - sinfo->tupleFixedSize;
248✔
313
            varlen += tPutU32v(varlen, colValArray[colValIndex].value.nData);
248✔
314
            if (colValArray[colValIndex].value.nData) {
248!
315
              (void)memcpy(varlen, colValArray[colValIndex].value.pData, colValArray[colValIndex].value.nData);
248✔
316
              varlen += colValArray[colValIndex].value.nData;
248✔
317
            }
318
          } else {
319
            (void)memcpy(fixed + schema->columns[i].offset,
10,380✔
320
                         VALUE_GET_DATUM(&colValArray[colValIndex].value, schema->columns[i].type),
10,380!
321
                         tDataTypes[schema->columns[i].type].bytes);
10,380!
322
          }
323
        } else if (COL_VAL_IS_NULL(&colValArray[colValIndex])) {  // NULL
×
324
          ROW_SET_BITMAP(bitmap, sinfo->tupleFlag, i - 1, BIT_FLG_NULL);
×
325
        } else if (COL_VAL_IS_NONE(&colValArray[colValIndex])) {  // NONE
×
326
          ROW_SET_BITMAP(bitmap, sinfo->tupleFlag, i - 1, BIT_FLG_NONE);
×
327
        }
328

329
        colValIndex++;
10,628✔
330
        break;
10,628✔
331
      } else if (colValArray[colValIndex].cid > schema->columns[i].colId) {  // NONE
×
332
        ROW_SET_BITMAP(bitmap, sinfo->tupleFlag, i - 1, BIT_FLG_NONE);
×
333
        break;
×
334
      } else {
335
        colValIndex++;
×
336
      }
337
    }
338
  }
339

340
  return 0;
10,393✔
341
}
342

343
static FORCE_INLINE void tRowBuildKVRowSetIndex(uint8_t flag, SKVIdx *indices, uint32_t offset) {
344
  if (flag & KV_FLG_LIT) {
50✔
345
    ((uint8_t *)indices->idx)[indices->nCol] = (uint8_t)offset;
50✔
346
  } else if (flag & KV_FLG_MID) {
×
347
    ((uint16_t *)indices->idx)[indices->nCol] = (uint16_t)offset;
×
348
  } else {
349
    ((uint32_t *)indices->idx)[indices->nCol] = (uint32_t)offset;
×
350
  }
351
  indices->nCol++;
50✔
352
}
50✔
353

354
static int32_t tRowBuildKVRow(SArray *aColVal, const SRowBuildScanInfo *sinfo, const STSchema *schema, SRow **ppRow) {
10✔
355
  SColVal *colValArray = (SColVal *)TARRAY_DATA(aColVal);
10✔
356

357
  *ppRow = (SRow *)taosMemoryCalloc(1, sinfo->kvRowSize);
10!
358
  if (*ppRow == NULL) {
10!
359
    return terrno;
×
360
  }
361
  (*ppRow)->flag = sinfo->kvFlag;
10✔
362
  (*ppRow)->numOfPKs = sinfo->numOfPKs;
10✔
363
  (*ppRow)->sver = schema->version;
10✔
364
  (*ppRow)->len = sinfo->kvRowSize;
10✔
365
  (*ppRow)->ts = VALUE_GET_TRIVIAL_DATUM(&colValArray[0].value);
10✔
366

367
  if (!(sinfo->flag != HAS_NONE && sinfo->flag != HAS_NULL)) {
10!
368
    return TSDB_CODE_INVALID_PARA;
×
369
  }
370

371
  uint8_t *primaryKeys = (*ppRow)->data;
10✔
372
  SKVIdx  *indices = (SKVIdx *)(primaryKeys + sinfo->kvPKSize);
10✔
373
  uint8_t *payload = primaryKeys + sinfo->kvPKSize + sinfo->kvIndexSize;
10✔
374
  uint32_t payloadSize = 0;
10✔
375

376
  // primary keys
377
  for (int32_t i = 0; i < sinfo->numOfPKs; i++) {
10!
378
    primaryKeys += tPutPrimaryKeyIndex(primaryKeys, sinfo->kvIndices + i);
×
379
  }
380

381
  int32_t numOfColVals = TARRAY_SIZE(aColVal);
10✔
382
  int32_t colValIndex = 1;
10✔
383
  for (int32_t i = 1; i < schema->numOfCols; i++) {
60✔
384
    for (;;) {
385
      if (colValIndex >= numOfColVals) {  // NONE
50!
386
        break;
×
387
      }
388

389
      if (colValArray[colValIndex].cid == schema->columns[i].colId) {
50!
390
        if (COL_VAL_IS_VALUE(&colValArray[colValIndex])) {  // value
50!
391
          tRowBuildKVRowSetIndex(sinfo->kvFlag, indices, payloadSize);
50!
392
          if (IS_VAR_DATA_TYPE(schema->columns[i].type)) {
50!
393
            payloadSize += tPutI16v(payload + payloadSize, colValArray[colValIndex].cid);
50✔
394
            payloadSize += tPutU32v(payload + payloadSize, colValArray[colValIndex].value.nData);
50✔
395
            if (colValArray[colValIndex].value.nData > 0) {
50!
396
              (void)memcpy(payload + payloadSize, colValArray[colValIndex].value.pData,
50✔
397
                           colValArray[colValIndex].value.nData);
50✔
398
            }
399
            payloadSize += colValArray[colValIndex].value.nData;
50✔
400
          } else {
401
            payloadSize += tPutI16v(payload + payloadSize, colValArray[colValIndex].cid);
×
402
            (void)memcpy(payload + payloadSize, VALUE_GET_DATUM(&colValArray[colValIndex].value, schema->columns[i].type),
×
403
                         tDataTypes[schema->columns[i].type].bytes);
×
404
            payloadSize += tDataTypes[schema->columns[i].type].bytes;
×
405
          }
406
        } else if (COL_VAL_IS_NULL(&colValArray[colValIndex])) {  // NULL
×
407
          tRowBuildKVRowSetIndex(sinfo->kvFlag, indices, payloadSize);
×
408
          payloadSize += tPutI16v(payload + payloadSize, -schema->columns[i].colId);
×
409
        }
410

411
        colValIndex++;
50✔
412
        break;
50✔
413
      } else if (colValArray[colValIndex].cid > schema->columns[i].colId) {  // NONE
×
414
        break;
×
415
      } else {
416
        colValIndex++;
×
417
      }
418
    }
419
  }
420

421
  return 0;
10✔
422
}
423

424
int32_t tRowBuild(SArray *aColVal, const STSchema *pTSchema, SRow **ppRow) {
10,443✔
425
  int32_t           code;
426
  SRowBuildScanInfo sinfo;
427

428
  code = tRowBuildScan(aColVal, pTSchema, &sinfo);
10,443✔
429
  if (code) return code;
10,443!
430

431
  if (sinfo.tupleRowSize <= sinfo.kvRowSize) {
10,443✔
432
    code = tRowBuildTupleRow(aColVal, &sinfo, pTSchema, ppRow);
10,433✔
433
  } else {
434
    code = tRowBuildKVRow(aColVal, &sinfo, pTSchema, ppRow);
10✔
435
  }
436
  return code;
10,443✔
437
}
438

439
static int32_t tBindInfoCompare(const void *p1, const void *p2, const void *param) {
1✔
440
  if (((SBindInfo *)p1)->columnId < ((SBindInfo *)p2)->columnId) {
1!
441
    return -1;
1✔
442
  } else if (((SBindInfo *)p1)->columnId > ((SBindInfo *)p2)->columnId) {
×
443
    return 1;
×
444
  }
445
  return 0;
×
446
}
447

448
/* build rows to `rowArray` from bind
449
 * `infos` is the bind information array
450
 * `numOfInfos` is the number of bind information
451
 * `infoSorted` is whether the bind information is sorted by column id
452
 * `pTSchema` is the schema of the table
453
 * `rowArray` is the array to store the rows
454
 * `pOrdered` is the pointer to store ordered
455
 * `pDupTs` is the pointer to store duplicateTs
456
 */
457
int32_t tRowBuildFromBind(SBindInfo *infos, int32_t numOfInfos, bool infoSorted, const STSchema *pTSchema,
27✔
458
                          SArray *rowArray, bool *pOrdered, bool *pDupTs) {
459
  if (infos == NULL || numOfInfos <= 0 || numOfInfos > pTSchema->numOfCols || pTSchema == NULL || rowArray == NULL) {
27!
460
    return TSDB_CODE_INVALID_PARA;
×
461
  }
462

463
  if (!infoSorted) {
27!
464
    taosqsort_r(infos, numOfInfos, sizeof(SBindInfo), NULL, tBindInfoCompare);
×
465
  }
466

467
  int32_t code = 0;
27✔
468
  int32_t numOfRows = infos[0].bind->num;
27✔
469
  SArray *colValArray;
470
  SColVal colVal;
471

472
  if ((colValArray = taosArrayInit(numOfInfos, sizeof(SColVal))) == NULL) {
27!
473
    return terrno;
×
474
  }
475

476
  SRowKey rowKey, lastRowKey;
477
  for (int32_t iRow = 0; iRow < numOfRows; iRow++) {
54✔
478
    taosArrayClear(colValArray);
27✔
479

480
    for (int32_t iInfo = 0; iInfo < numOfInfos; iInfo++) {
135✔
481
      if (infos[iInfo].bind->is_null && infos[iInfo].bind->is_null[iRow]) {
108!
482
        colVal = COL_VAL_NULL(infos[iInfo].columnId, infos[iInfo].type);
×
483
      } else {
484
        SValue value = {
108✔
485
            .type = infos[iInfo].type,
108✔
486
        };
487
        if (IS_VAR_DATA_TYPE(infos[iInfo].type)) {
108!
488
          value.nData = infos[iInfo].bind->length[iRow];
×
489
          if (value.nData > pTSchema->columns[iInfo].bytes - VARSTR_HEADER_SIZE) {
×
490
            code = TSDB_CODE_INVALID_PARA;
×
491
            goto _exit;
×
492
          }
493
          value.pData = (uint8_t *)infos[iInfo].bind->buffer + infos[iInfo].bind->buffer_length * iRow;
×
494
        } else {
495
          valueSetDatum(&value, infos[iInfo].type,
108✔
496
                        (uint8_t *)infos[iInfo].bind->buffer + infos[iInfo].bind->buffer_length * iRow,
108✔
497
                        infos[iInfo].bind->buffer_length);
108✔
498
        }
499
        colVal = COL_VAL_VALUE(infos[iInfo].columnId, value);
108✔
500
      }
501
      if (taosArrayPush(colValArray, &colVal) == NULL) {
108!
502
        code = terrno;
×
503
        goto _exit;
×
504
      }
505
    }
506

507
    SRow *row;
508
    if ((code = tRowBuild(colValArray, pTSchema, &row))) {
27!
509
      goto _exit;
×
510
    }
511

512
    if ((taosArrayPush(rowArray, &row)) == NULL) {
27!
513
      code = terrno;
×
514
      goto _exit;
×
515
    }
516

517
    if (pOrdered && pDupTs) {
27!
518
      tRowGetKey(row, &rowKey);
54!
519
      if (iRow == 0) {
27!
520
        *pOrdered = true;
27✔
521
        *pDupTs = false;
27✔
522
      } else {
523
        // no more compare if we already get disordered or duplicate rows
524
        if (*pOrdered && !*pDupTs) {
×
525
          int32_t code = tRowKeyCompare(&rowKey, &lastRowKey);
×
526
          *pOrdered = (code >= 0);
×
527
          *pDupTs = (code == 0);
×
528
        }
529
      }
530
      lastRowKey = rowKey;
27✔
531
    }
532
  }
533

534
_exit:
27✔
535
  taosArrayDestroy(colValArray);
27✔
536
  return code;
27✔
537
}
538

539
int32_t tRowGet(SRow *pRow, STSchema *pTSchema, int32_t iCol, SColVal *pColVal) {
×
540
  if (!(iCol < pTSchema->numOfCols)) return TSDB_CODE_INVALID_PARA;
×
541
  if (!(pRow->sver == pTSchema->version)) return TSDB_CODE_INVALID_PARA;
×
542

543
  STColumn *pTColumn = pTSchema->columns + iCol;
×
544

545
  if (iCol == 0) {
×
546
    pColVal->cid = pTColumn->colId;
×
547
    pColVal->value.type = pTColumn->type;
×
548
    pColVal->flag = CV_FLAG_VALUE;
×
549
    VALUE_SET_TRIVIAL_DATUM(&pColVal->value, pRow->ts);
×
550
    return 0;
×
551
  }
552

553
  if (pRow->flag == HAS_NONE) {
×
554
    *pColVal = COL_VAL_NONE(pTColumn->colId, pTColumn->type);
×
555
    return 0;
×
556
  }
557

558
  if (pRow->flag == HAS_NULL) {
×
559
    *pColVal = COL_VAL_NULL(pTColumn->colId, pTColumn->type);
×
560
    return 0;
×
561
  }
562

563
  SPrimaryKeyIndex index;
564
  uint8_t         *data = pRow->data;
×
565
  for (int32_t i = 0; i < pRow->numOfPKs; i++) {
×
566
    data += tGetPrimaryKeyIndex(data, &index);
×
567
  }
568

569
  if (pRow->flag >> 4) {  // KV Row
×
570
    SKVIdx  *pIdx = (SKVIdx *)data;
×
571
    uint8_t *pv = NULL;
×
572

573
    if (pRow->flag & KV_FLG_LIT) {
×
574
      pv = pIdx->idx + pIdx->nCol;
×
575
    } else if (pRow->flag & KV_FLG_MID) {
×
576
      pv = pIdx->idx + (pIdx->nCol << 1);
×
577
    } else {
578
      pv = pIdx->idx + (pIdx->nCol << 2);
×
579
    }
580

581
    int16_t lidx = 0;
×
582
    int16_t ridx = pIdx->nCol - 1;
×
583
    while (lidx <= ridx) {
×
584
      int16_t  mid = (lidx + ridx) >> 1;
×
585
      uint8_t *pData = NULL;
×
586
      if (pRow->flag & KV_FLG_LIT) {
×
587
        pData = pv + ((uint8_t *)pIdx->idx)[mid];
×
588
      } else if (pRow->flag & KV_FLG_MID) {
×
589
        pData = pv + ((uint16_t *)pIdx->idx)[mid];
×
590
      } else {
591
        pData = pv + ((uint32_t *)pIdx->idx)[mid];
×
592
      }
593

594
      int16_t cid;
595
      pData += tGetI16v(pData, &cid);
×
596

597
      if (TABS(cid) == pTColumn->colId) {
×
598
        if (cid < 0) {
×
599
          *pColVal = COL_VAL_NULL(pTColumn->colId, pTColumn->type);
×
600
        } else {
601
          pColVal->cid = pTColumn->colId;
×
602
          pColVal->value.type = pTColumn->type;
×
603
          pColVal->flag = CV_FLAG_VALUE;
×
604

605
          if (IS_VAR_DATA_TYPE(pTColumn->type)) {
×
606
            pData += tGetU32v(pData, &pColVal->value.nData);
×
607
            if (pColVal->value.nData > 0) {
×
608
              pColVal->value.pData = pData;
×
609
            } else {
610
              pColVal->value.pData = NULL;
×
611
            }
612
          } else {
613
            valueSetDatum(&pColVal->value, pTColumn->type, pData, pTColumn->bytes);
×
614
          }
615
        }
616
        return 0;
×
617
      } else if (TABS(cid) < pTColumn->colId) {
×
618
        lidx = mid + 1;
×
619
      } else {
620
        ridx = mid - 1;
×
621
      }
622
    }
623

624
    *pColVal = COL_VAL_NONE(pTColumn->colId, pTColumn->type);
×
625
  } else {  // Tuple Row
626
    uint8_t *bitmap = data;
×
627
    uint8_t *fixed;
628
    uint8_t *varlen;
629
    uint8_t  bit;
630

631
    if (pRow->flag == HAS_VALUE) {
×
632
      fixed = bitmap;
×
633
      bit = BIT_FLG_VALUE;
×
634
    } else if (pRow->flag == (HAS_NONE | HAS_NULL | HAS_VALUE)) {
×
635
      fixed = BIT2_SIZE(pTSchema->numOfCols - 1) + bitmap;
×
636
      bit = GET_BIT2(bitmap, iCol - 1);
×
637
    } else {
638
      fixed = BIT1_SIZE(pTSchema->numOfCols - 1) + bitmap;
×
639
      bit = GET_BIT1(bitmap, iCol - 1);
×
640

641
      if (pRow->flag == (HAS_NONE | HAS_VALUE)) {
×
642
        if (bit) bit++;
×
643
      } else if (pRow->flag == (HAS_NULL | HAS_VALUE)) {
×
644
        bit++;
×
645
      }
646
    }
647
    varlen = fixed + pTSchema->flen;
×
648

649
    if (bit == BIT_FLG_NONE) {
×
650
      *pColVal = COL_VAL_NONE(pTColumn->colId, pTColumn->type);
×
651
      return 0;
×
652
    } else if (bit == BIT_FLG_NULL) {
×
653
      *pColVal = COL_VAL_NULL(pTColumn->colId, pTColumn->type);
×
654
      return 0;
×
655
    }
656

657
    pColVal->cid = pTColumn->colId;
×
658
    pColVal->value.type = pTColumn->type;
×
659
    pColVal->flag = CV_FLAG_VALUE;
×
660
    if (IS_VAR_DATA_TYPE(pTColumn->type)) {
×
661
      pColVal->value.pData = varlen + *(int32_t *)(fixed + pTColumn->offset);
×
662
      pColVal->value.pData += tGetU32v(pColVal->value.pData, &pColVal->value.nData);
×
663
    } else {
664
      valueSetDatum(&pColVal->value, pTColumn->type, fixed + pTColumn->offset, TYPE_BYTES[pTColumn->type]);
×
665
    }
666
  }
667

668
  return 0;
×
669
}
670

671
void tRowDestroy(SRow *pRow) {
10,443✔
672
  if (pRow) taosMemoryFree(pRow);
10,443!
673
}
10,443✔
674

675
static int32_t tRowPCmprFn(const void *p1, const void *p2) {
×
676
  SRowKey key1, key2;
677
  tRowGetKey(*(SRow **)p1, &key1);
×
678
  tRowGetKey(*(SRow **)p2, &key2);
×
679
  return tRowKeyCompare(&key1, &key2);
×
680
}
681
static void    tRowPDestroy(SRow **ppRow) { tRowDestroy(*ppRow); }
×
682
static int32_t tRowMergeImpl(SArray *aRowP, STSchema *pTSchema, int32_t iStart, int32_t iEnd, int8_t flag) {
×
683
  int32_t code = 0;
×
684

685
  int32_t    nRow = iEnd - iStart;
×
686
  SRowIter **aIter = NULL;
×
687
  SArray    *aColVal = NULL;
×
688
  SRow      *pRow = NULL;
×
689

690
  aIter = taosMemoryCalloc(nRow, sizeof(SRowIter *));
×
691
  if (aIter == NULL) {
×
692
    code = terrno;
×
693
    goto _exit;
×
694
  }
695

696
  for (int32_t i = 0; i < nRow; i++) {
×
697
    SRow *pRowT = taosArrayGetP(aRowP, iStart + i);
×
698

699
    code = tRowIterOpen(pRowT, pTSchema, &aIter[i]);
×
700
    if (code) goto _exit;
×
701
  }
702

703
  // merge
704
  aColVal = taosArrayInit(pTSchema->numOfCols, sizeof(SColVal));
×
705
  if (aColVal == NULL) {
×
706
    code = terrno;
×
707
    goto _exit;
×
708
  }
709

710
  for (int32_t iCol = 0; iCol < pTSchema->numOfCols; iCol++) {
×
711
    SColVal *pColVal = NULL;
×
712
    for (int32_t iRow = nRow - 1; iRow >= 0; --iRow) {
×
713
      SColVal *pColValT = tRowIterNext(aIter[iRow]);
×
714
      while (pColValT->cid < pTSchema->columns[iCol].colId) {
×
715
        pColValT = tRowIterNext(aIter[iRow]);
×
716
      }
717

718
      // todo: take strategy according to the flag
719
      if (COL_VAL_IS_VALUE(pColValT)) {
×
720
        pColVal = pColValT;
×
721
        break;
×
722
      } else if (COL_VAL_IS_NULL(pColValT)) {
×
723
        if (pColVal == NULL) {
×
724
          pColVal = pColValT;
×
725
        }
726
      }
727
    }
728

729
    if (pColVal) {
×
730
      if (taosArrayPush(aColVal, pColVal) == NULL) {
×
731
        code = terrno;
×
732
        goto _exit;
×
733
      }
734
    }
735
  }
736

737
  // build
738
  code = tRowBuild(aColVal, pTSchema, &pRow);
×
739
  if (code) goto _exit;
×
740

741
  taosArrayRemoveBatch(aRowP, iStart, nRow, (FDelete)tRowPDestroy);
×
742
  if (taosArrayInsert(aRowP, iStart, &pRow) == NULL) {
×
743
    code = terrno;
×
744
    goto _exit;
×
745
  }
746

747
_exit:
×
748
  if (aIter) {
×
749
    for (int32_t i = 0; i < nRow; i++) {
×
750
      tRowIterClose(&aIter[i]);
×
751
    }
752
    taosMemoryFree(aIter);
×
753
  }
754
  if (aColVal) taosArrayDestroy(aColVal);
×
755
  if (code) tRowDestroy(pRow);
×
756
  return code;
×
757
}
758

759
int32_t tRowSort(SArray *aRowP) {
×
760
  if (TARRAY_SIZE(aRowP) <= 1) return 0;
×
761
  int32_t code = taosArrayMSort(aRowP, tRowPCmprFn);
×
762
  if (code != TSDB_CODE_SUCCESS) {
×
763
    uError("taosArrayMSort failed caused by %d", code);
×
764
  }
765
  return code;
×
766
}
767

768
int32_t tRowMerge(SArray *aRowP, STSchema *pTSchema, int8_t flag) {
×
769
  int32_t code = 0;
×
770

771
  int32_t iStart = 0;
×
772
  while (iStart < aRowP->size) {
×
773
    SRowKey key1;
774
    SRow   *row1 = (SRow *)taosArrayGetP(aRowP, iStart);
×
775

776
    tRowGetKey(row1, &key1);
×
777

778
    int32_t iEnd = iStart + 1;
×
779
    while (iEnd < aRowP->size) {
×
780
      SRowKey key2;
781
      SRow   *row2 = (SRow *)taosArrayGetP(aRowP, iEnd);
×
782
      tRowGetKey(row2, &key2);
×
783

784
      if (tRowKeyCompare(&key1, &key2) != 0) break;
×
785

786
      iEnd++;
×
787
    }
788

789
    if (iEnd - iStart > 1) {
×
790
      code = tRowMergeImpl(aRowP, pTSchema, iStart, iEnd, flag);
×
791
      if (code) return code;
×
792
    }
793

794
    // the array is also changing, so the iStart just ++ instead of iEnd
795
    iStart++;
×
796
  }
797

798
  return code;
×
799
}
800

801
// SRowIter ========================================
802
struct SRowIter {
803
  SRow     *pRow;
804
  STSchema *pTSchema;
805

806
  int32_t iTColumn;
807
  union {
808
    struct {  // kv
809
      int32_t iCol;
810
      SKVIdx *pIdx;
811
    };
812
    struct {  // tuple
813
      uint8_t *pb;
814
      uint8_t *pf;
815
    };
816
  };
817
  uint8_t *pv;
818
  SColVal  cv;
819
};
820

821
int32_t tRowIterOpen(SRow *pRow, STSchema *pTSchema, SRowIter **ppIter) {
×
822
  if (!(pRow->sver == pTSchema->version)) return TSDB_CODE_INVALID_PARA;
×
823

824
  int32_t code = 0;
×
825

826
  SRowIter *pIter = taosMemoryCalloc(1, sizeof(*pIter));
×
827
  if (pIter == NULL) {
×
828
    code = terrno;
×
829
    goto _exit;
×
830
  }
831

832
  pIter->pRow = pRow;
×
833
  pIter->pTSchema = pTSchema;
×
834
  pIter->iTColumn = 0;
×
835

836
  if (pRow->flag == HAS_NONE || pRow->flag == HAS_NULL) goto _exit;
×
837

838
  uint8_t         *data = pRow->data;
×
839
  SPrimaryKeyIndex index;
840
  for (int32_t i = 0; i < pRow->numOfPKs; i++) {
×
841
    data += tGetPrimaryKeyIndex(data, &index);
×
842
  }
843

844
  if (pRow->flag >> 4) {
×
845
    pIter->iCol = 0;
×
846
    pIter->pIdx = (SKVIdx *)data;
×
847
    if (pRow->flag & KV_FLG_LIT) {
×
848
      pIter->pv = pIter->pIdx->idx + pIter->pIdx->nCol;
×
849
    } else if (pRow->flag & KV_FLG_MID) {
×
850
      pIter->pv = pIter->pIdx->idx + (pIter->pIdx->nCol << 1);  // * sizeof(uint16_t)
×
851
    } else {
852
      pIter->pv = pIter->pIdx->idx + (pIter->pIdx->nCol << 2);  // * sizeof(uint32_t)
×
853
    }
854
  } else {
855
    switch (pRow->flag) {
×
856
      case (HAS_NULL | HAS_NONE):
×
857
        pIter->pb = data;
×
858
        break;
×
859
      case HAS_VALUE:
×
860
        pIter->pf = data;
×
861
        pIter->pv = pIter->pf + pTSchema->flen;
×
862
        break;
×
863
      case (HAS_VALUE | HAS_NONE):
×
864
      case (HAS_VALUE | HAS_NULL):
865
        pIter->pb = data;
×
866
        pIter->pf = data + BIT1_SIZE(pTSchema->numOfCols - 1);
×
867
        pIter->pv = pIter->pf + pTSchema->flen;
×
868
        break;
×
869
      case (HAS_VALUE | HAS_NULL | HAS_NONE):
×
870
        pIter->pb = data;
×
871
        pIter->pf = data + BIT2_SIZE(pTSchema->numOfCols - 1);
×
872
        pIter->pv = pIter->pf + pTSchema->flen;
×
873
        break;
×
874
      default:
×
875
        break;
×
876
    }
877
  }
878

879
_exit:
×
880
  if (code) {
×
881
    *ppIter = NULL;
×
882
  } else {
883
    *ppIter = pIter;
×
884
  }
885
  return code;
×
886
}
887

888
void tRowIterClose(SRowIter **ppIter) {
×
889
  SRowIter *pIter = *ppIter;
×
890
  if (pIter) {
×
891
    taosMemoryFree(pIter);
×
892
  }
893
  *ppIter = NULL;
×
894
}
×
895

896
SColVal *tRowIterNext(SRowIter *pIter) {
×
897
  if (pIter->iTColumn >= pIter->pTSchema->numOfCols) {
×
898
    return NULL;
×
899
  }
900

901
  STColumn *pTColumn = pIter->pTSchema->columns + pIter->iTColumn;
×
902

903
  // timestamp
904
  if (0 == pIter->iTColumn) {
×
905
    pIter->cv.cid = pTColumn->colId;
×
906
    pIter->cv.value.type = pTColumn->type;
×
907
    pIter->cv.flag = CV_FLAG_VALUE;
×
908
    VALUE_SET_TRIVIAL_DATUM(&pIter->cv.value, pIter->pRow->ts);
×
909
    goto _exit;
×
910
  }
911

912
  if (pIter->pRow->flag == HAS_NONE) {
×
913
    pIter->cv = COL_VAL_NONE(pTColumn->colId, pTColumn->type);
×
914
    goto _exit;
×
915
  }
916

917
  if (pIter->pRow->flag == HAS_NULL) {
×
918
    pIter->cv = COL_VAL_NULL(pTColumn->colId, pTColumn->type);
×
919
    goto _exit;
×
920
  }
921

922
  if (pIter->pRow->flag >> 4) {  // KV
×
923
    if (pIter->iCol < pIter->pIdx->nCol) {
×
924
      uint8_t *pData;
925

926
      if (pIter->pRow->flag & KV_FLG_LIT) {
×
927
        pData = pIter->pv + ((uint8_t *)pIter->pIdx->idx)[pIter->iCol];
×
928
      } else if (pIter->pRow->flag & KV_FLG_MID) {
×
929
        pData = pIter->pv + ((uint16_t *)pIter->pIdx->idx)[pIter->iCol];
×
930
      } else {
931
        pData = pIter->pv + ((uint32_t *)pIter->pIdx->idx)[pIter->iCol];
×
932
      }
933

934
      int16_t cid;
935
      pData += tGetI16v(pData, &cid);
×
936

937
      if (TABS(cid) == pTColumn->colId) {
×
938
        if (cid < 0) {
×
939
          pIter->cv = COL_VAL_NULL(pTColumn->colId, pTColumn->type);
×
940
        } else {
941
          pIter->cv.cid = pTColumn->colId;
×
942
          pIter->cv.value.type = pTColumn->type;
×
943
          pIter->cv.flag = CV_FLAG_VALUE;
×
944

945
          if (IS_VAR_DATA_TYPE(pTColumn->type)) {
×
946
            pData += tGetU32v(pData, &pIter->cv.value.nData);
×
947
            if (pIter->cv.value.nData > 0) {
×
948
              pIter->cv.value.pData = pData;
×
949
            } else {
950
              pIter->cv.value.pData = NULL;
×
951
            }
952
          } else {
953
            valueSetDatum(&pIter->cv.value, pTColumn->type, pData, pTColumn->bytes);
×
954
          }
955
        }
956

957
        pIter->iCol++;
×
958
        goto _exit;
×
959
      } else if (TABS(cid) > pTColumn->colId) {
×
960
        pIter->cv = COL_VAL_NONE(pTColumn->colId, pTColumn->type);
×
961
        goto _exit;
×
962
      } else {
963
        uError("unexpected column id %d, %d", cid, pTColumn->colId);
×
964
        goto _exit;
×
965
      }
966
    } else {
967
      pIter->cv = COL_VAL_NONE(pTColumn->colId, pTColumn->type);
×
968
      goto _exit;
×
969
    }
970
  } else {  // Tuple
971
    uint8_t bv = BIT_FLG_VALUE;
×
972
    if (pIter->pb) {
×
973
      switch (pIter->pRow->flag) {
×
974
        case (HAS_NULL | HAS_NONE):
×
975
          bv = GET_BIT1(pIter->pb, pIter->iTColumn - 1);
×
976
          break;
×
977
        case (HAS_VALUE | HAS_NONE):
×
978
          bv = GET_BIT1(pIter->pb, pIter->iTColumn - 1);
×
979
          if (bv) bv++;
×
980
          break;
×
981
        case (HAS_VALUE | HAS_NULL):
×
982
          bv = GET_BIT1(pIter->pb, pIter->iTColumn - 1) + 1;
×
983
          break;
×
984
        case (HAS_VALUE | HAS_NULL | HAS_NONE):
×
985
          bv = GET_BIT2(pIter->pb, pIter->iTColumn - 1);
×
986
          break;
×
987
        default:
×
988
          break;
×
989
      }
990

991
      if (bv == BIT_FLG_NONE) {
×
992
        pIter->cv = COL_VAL_NONE(pTColumn->colId, pTColumn->type);
×
993
        goto _exit;
×
994
      } else if (bv == BIT_FLG_NULL) {
×
995
        pIter->cv = COL_VAL_NULL(pTColumn->colId, pTColumn->type);
×
996
        goto _exit;
×
997
      }
998
    }
999

1000
    pIter->cv.cid = pTColumn->colId;
×
1001
    pIter->cv.value.type = pTColumn->type;
×
1002
    pIter->cv.flag = CV_FLAG_VALUE;
×
1003
    if (IS_VAR_DATA_TYPE(pTColumn->type)) {
×
1004
      uint8_t *pData = pIter->pv + *(int32_t *)(pIter->pf + pTColumn->offset);
×
1005
      pData += tGetU32v(pData, &pIter->cv.value.nData);
×
1006
      if (pIter->cv.value.nData > 0) {
×
1007
        pIter->cv.value.pData = pData;
×
1008
      } else {
1009
        pIter->cv.value.pData = NULL;
×
1010
      }
1011
    } else {
1012
      valueSetDatum(&pIter->cv.value, pTColumn->type, pIter->pf + pTColumn->offset, TYPE_BYTES[pTColumn->type]);
×
1013
    }
1014
    goto _exit;
×
1015
  }
1016

1017
_exit:
×
1018
  pIter->iTColumn++;
×
1019
  return &pIter->cv;
×
1020
}
1021

1022
static int32_t tRowNoneUpsertColData(SColData *aColData, int32_t nColData, int32_t flag) {
×
1023
  int32_t code = 0;
×
1024

1025
  if (flag) return code;
×
1026

1027
  for (int32_t iColData = 0; iColData < nColData; iColData++) {
×
1028
    code = tColDataAppendValueImpl[aColData[iColData].flag][CV_FLAG_NONE](&aColData[iColData], NULL, 0);
×
1029
    if (code) return code;
×
1030
  }
1031

1032
  return code;
×
1033
}
1034
static int32_t tRowNullUpsertColData(SColData *aColData, int32_t nColData, STSchema *pSchema, int32_t flag) {
×
1035
  int32_t code = 0;
×
1036

1037
  int32_t   iColData = 0;
×
1038
  SColData *pColData = &aColData[iColData];
×
1039
  int32_t   iTColumn = 1;
×
1040
  STColumn *pTColumn = &pSchema->columns[iTColumn];
×
1041

1042
  while (pColData) {
×
1043
    if (pTColumn) {
×
1044
      if (pTColumn->colId == pColData->cid) {  // NULL
×
1045
        if (flag == 0) {
×
1046
          code = tColDataAppendValueImpl[pColData->flag][CV_FLAG_NULL](pColData, NULL, 0);
×
1047
        } else {
1048
          code = tColDataUpdateValueImpl[pColData->flag][CV_FLAG_NULL](pColData, NULL, 0, flag > 0);
×
1049
        }
1050
        if (code) goto _exit;
×
1051

1052
        pColData = (++iColData < nColData) ? &aColData[iColData] : NULL;
×
1053
        pTColumn = (++iTColumn < pSchema->numOfCols) ? &pSchema->columns[iTColumn] : NULL;
×
1054
      } else if (pTColumn->colId > pColData->cid) {  // NONE
×
1055
        if (flag == 0 && (code = tColDataAppendValueImpl[pColData->flag][CV_FLAG_NONE](pColData, NULL, 0))) goto _exit;
×
1056
        pColData = (++iColData < nColData) ? &aColData[iColData] : NULL;
×
1057
      } else {
1058
        pTColumn = (++iTColumn < pSchema->numOfCols) ? &pSchema->columns[iTColumn] : NULL;
×
1059
      }
1060
    } else {  // NONE
1061
      if (flag == 0 && (code = tColDataAppendValueImpl[pColData->flag][CV_FLAG_NONE](pColData, NULL, 0))) goto _exit;
×
1062
      pColData = (++iColData < nColData) ? &aColData[iColData] : NULL;
×
1063
    }
1064
  }
1065

1066
_exit:
×
1067
  return code;
×
1068
}
1069
static int32_t tRowTupleUpsertColData(SRow *pRow, STSchema *pTSchema, SColData *aColData, int32_t nColData,
×
1070
                                      int32_t flag) {
1071
  int32_t code = 0;
×
1072

1073
  int32_t   iColData = 0;
×
1074
  SColData *pColData = &aColData[iColData];
×
1075
  int32_t   iTColumn = 1;
×
1076
  STColumn *pTColumn = &pTSchema->columns[iTColumn];
×
1077

1078
  uint8_t         *pb = NULL, *pf = NULL, *pv = NULL;
×
1079
  SPrimaryKeyIndex index;
1080
  uint8_t         *data = pRow->data;
×
1081
  for (int32_t i = 0; i < pRow->numOfPKs; i++) {
×
1082
    data += tGetPrimaryKeyIndex(data, &index);
×
1083
  }
1084

1085
  switch (pRow->flag) {
×
1086
    case HAS_VALUE:
×
1087
      pf = data;  // TODO: fix here
×
1088
      pv = pf + pTSchema->flen;
×
1089
      break;
×
1090
    case (HAS_NULL | HAS_NONE):
×
1091
      pb = data;
×
1092
      break;
×
1093
    case (HAS_VALUE | HAS_NONE):
×
1094
    case (HAS_VALUE | HAS_NULL):
1095
      pb = data;
×
1096
      pf = pb + BIT1_SIZE(pTSchema->numOfCols - 1);
×
1097
      pv = pf + pTSchema->flen;
×
1098
      break;
×
1099
    case (HAS_VALUE | HAS_NULL | HAS_NONE):
×
1100
      pb = data;
×
1101
      pf = pb + BIT2_SIZE(pTSchema->numOfCols - 1);
×
1102
      pv = pf + pTSchema->flen;
×
1103
      break;
×
1104
    default:
×
1105
      return TSDB_CODE_INVALID_DATA_FMT;
×
1106
  }
1107

1108
  while (pColData) {
×
1109
    if (pTColumn) {
×
1110
      if (pTColumn->colId == pColData->cid) {
×
1111
        if (!(pTColumn->type == pColData->type)) {
×
1112
          return TSDB_CODE_INVALID_PARA;
×
1113
        }
1114
        if (pb) {
×
1115
          uint8_t bv;
1116
          switch (pRow->flag) {
×
1117
            case (HAS_NULL | HAS_NONE):
×
1118
              bv = GET_BIT1(pb, iTColumn - 1);
×
1119
              break;
×
1120
            case (HAS_VALUE | HAS_NONE):
×
1121
              bv = GET_BIT1(pb, iTColumn - 1);
×
1122
              if (bv) bv++;
×
1123
              break;
×
1124
            case (HAS_VALUE | HAS_NULL):
×
1125
              bv = GET_BIT1(pb, iTColumn - 1) + 1;
×
1126
              break;
×
1127
            case (HAS_VALUE | HAS_NULL | HAS_NONE):
×
1128
              bv = GET_BIT2(pb, iTColumn - 1);
×
1129
              break;
×
1130
            default:
×
1131
              return TSDB_CODE_INVALID_DATA_FMT;
×
1132
          }
1133

1134
          if (bv == BIT_FLG_NONE) {
×
1135
            if (flag == 0 && (code = tColDataAppendValueImpl[pColData->flag][CV_FLAG_NONE](pColData, NULL, 0)))
×
1136
              goto _exit;
×
1137
            goto _continue;
×
1138
          } else if (bv == BIT_FLG_NULL) {
×
1139
            if (flag == 0) {
×
1140
              code = tColDataAppendValueImpl[pColData->flag][CV_FLAG_NULL](pColData, NULL, 0);
×
1141
            } else {
1142
              code = tColDataUpdateValueImpl[pColData->flag][CV_FLAG_NULL](pColData, NULL, 0, flag > 0);
×
1143
            }
1144
            if (code) goto _exit;
×
1145
            goto _continue;
×
1146
          }
1147
        }
1148

1149
        if (IS_VAR_DATA_TYPE(pColData->type)) {
×
1150
          uint8_t *pData = pv + *(int32_t *)(pf + pTColumn->offset);
×
1151
          uint32_t nData;
1152
          pData += tGetU32v(pData, &nData);
×
1153
          if (flag == 0) {
×
1154
            code = tColDataAppendValueImpl[pColData->flag][CV_FLAG_VALUE](pColData, pData, nData);
×
1155
          } else {
1156
            code = tColDataUpdateValueImpl[pColData->flag][CV_FLAG_VALUE](pColData, pData, nData, flag > 0);
×
1157
          }
1158
          if (code) goto _exit;
×
1159
        } else {
1160
          if (flag == 0) {
×
1161
            code = tColDataAppendValueImpl[pColData->flag][CV_FLAG_VALUE](pColData, pf + pTColumn->offset,
×
1162
                                                                          TYPE_BYTES[pColData->type]);
×
1163
          } else {
1164
            code = tColDataUpdateValueImpl[pColData->flag][CV_FLAG_VALUE](pColData, pf + pTColumn->offset,
×
1165
                                                                          TYPE_BYTES[pColData->type], flag > 0);
×
1166
          }
1167
          if (code) goto _exit;
×
1168
        }
1169

1170
      _continue:
×
1171
        pColData = (++iColData < nColData) ? &aColData[iColData] : NULL;
×
1172
        pTColumn = (++iTColumn < pTSchema->numOfCols) ? &pTSchema->columns[iTColumn] : NULL;
×
1173
      } else if (pTColumn->colId > pColData->cid) {  // NONE
×
1174
        if (flag == 0 && (code = tColDataAppendValueImpl[pColData->flag][CV_FLAG_NONE](pColData, NULL, 0))) goto _exit;
×
1175
        pColData = (++iColData < nColData) ? &aColData[iColData] : NULL;
×
1176
      } else {
1177
        pTColumn = (++iTColumn < pTSchema->numOfCols) ? &pTSchema->columns[iTColumn] : NULL;
×
1178
      }
1179
    } else {
1180
      if (flag == 0 && (code = tColDataAppendValueImpl[pColData->flag][CV_FLAG_NONE](pColData, NULL, 0))) goto _exit;
×
1181
      pColData = (++iColData < nColData) ? &aColData[iColData] : NULL;
×
1182
    }
1183
  }
1184

1185
_exit:
×
1186
  return code;
×
1187
}
1188
static int32_t tRowKVUpsertColData(SRow *pRow, STSchema *pTSchema, SColData *aColData, int32_t nColData, int32_t flag) {
×
1189
  int32_t code = 0;
×
1190

1191
  uint8_t  *pv = NULL;
×
1192
  int32_t   iColData = 0;
×
1193
  SColData *pColData = &aColData[iColData];
×
1194
  int32_t   iTColumn = 1;
×
1195
  STColumn *pTColumn = &pTSchema->columns[iTColumn];
×
1196
  int32_t   iCol = 0;
×
1197

1198
  // primary keys
1199
  uint8_t         *data = pRow->data;
×
1200
  SPrimaryKeyIndex index;
1201
  for (int32_t i = 0; i < pRow->numOfPKs; i++) {
×
1202
    data += tGetPrimaryKeyIndex(data, &index);
×
1203
  }
1204

1205
  SKVIdx *pKVIdx = (SKVIdx *)data;
×
1206
  if (pRow->flag & KV_FLG_LIT) {
×
1207
    pv = pKVIdx->idx + pKVIdx->nCol;
×
1208
  } else if (pRow->flag & KV_FLG_MID) {
×
1209
    pv = pKVIdx->idx + (pKVIdx->nCol << 1);
×
1210
  } else if (pRow->flag & KV_FLG_BIG) {
×
1211
    pv = pKVIdx->idx + (pKVIdx->nCol << 2);
×
1212
  } else {
1213
    return TSDB_CODE_INVALID_PARA;
×
1214
  }
1215

1216
  while (pColData) {
×
1217
    if (pTColumn) {
×
1218
      if (pTColumn->colId == pColData->cid) {
×
1219
        while (iCol < pKVIdx->nCol) {
×
1220
          uint8_t *pData;
1221
          if (pRow->flag & KV_FLG_LIT) {
×
1222
            pData = pv + ((uint8_t *)pKVIdx->idx)[iCol];
×
1223
          } else if (pRow->flag & KV_FLG_MID) {
×
1224
            pData = pv + ((uint16_t *)pKVIdx->idx)[iCol];
×
1225
          } else if (pRow->flag & KV_FLG_BIG) {
×
1226
            pData = pv + ((uint32_t *)pKVIdx->idx)[iCol];
×
1227
          } else {
1228
            return TSDB_CODE_INVALID_DATA_FMT;
×
1229
          }
1230

1231
          int16_t cid;
1232
          pData += tGetI16v(pData, &cid);
×
1233

1234
          if (TABS(cid) == pTColumn->colId) {
×
1235
            if (cid < 0) {
×
1236
              if (flag == 0) {
×
1237
                code = tColDataAppendValueImpl[pColData->flag][CV_FLAG_NULL](pColData, NULL, 0);
×
1238
              } else {
1239
                code = tColDataUpdateValueImpl[pColData->flag][CV_FLAG_NULL](pColData, NULL, 0, flag > 0);
×
1240
              }
1241
              if (code) goto _exit;
×
1242
            } else {
1243
              uint32_t nData;
1244
              if (IS_VAR_DATA_TYPE(pTColumn->type)) {
×
1245
                pData += tGetU32v(pData, &nData);
×
1246
              } else {
1247
                nData = 0;
×
1248
              }
1249
              if (flag == 0) {
×
1250
                code = tColDataAppendValueImpl[pColData->flag][CV_FLAG_VALUE](pColData, pData, nData);
×
1251
              } else {
1252
                code = tColDataUpdateValueImpl[pColData->flag][CV_FLAG_VALUE](pColData, pData, nData, flag > 0);
×
1253
              }
1254
              if (code) goto _exit;
×
1255
            }
1256
            iCol++;
×
1257
            goto _continue;
×
1258
          } else if (TABS(cid) > pTColumn->colId) {  // NONE
×
1259
            break;
×
1260
          } else {
1261
            iCol++;
×
1262
          }
1263
        }
1264

1265
        if (flag == 0 && (code = tColDataAppendValueImpl[pColData->flag][CV_FLAG_NONE](pColData, NULL, 0))) goto _exit;
×
1266

1267
      _continue:
×
1268
        pColData = (++iColData < nColData) ? &aColData[iColData] : NULL;
×
1269
        pTColumn = (++iTColumn < pTSchema->numOfCols) ? &pTSchema->columns[iTColumn] : NULL;
×
1270
      } else if (pTColumn->colId > pColData->cid) {
×
1271
        if (flag == 0 && (code = tColDataAppendValueImpl[pColData->flag][CV_FLAG_NONE](pColData, NULL, 0))) goto _exit;
×
1272
        pColData = (++iColData < nColData) ? &aColData[iColData] : NULL;
×
1273
      } else {
1274
        pTColumn = (++iTColumn < pTSchema->numOfCols) ? &pTSchema->columns[iTColumn] : NULL;
×
1275
      }
1276
    } else {
1277
      if (flag == 0 && (code = tColDataAppendValueImpl[pColData->flag][CV_FLAG_NONE](pColData, NULL, 0))) goto _exit;
×
1278
      pColData = (++iColData < nColData) ? &aColData[iColData] : NULL;
×
1279
    }
1280
  }
1281

1282
_exit:
×
1283
  return code;
×
1284
}
1285
/* flag > 0: forward update
1286
 * flag == 0: append
1287
 * flag < 0: backward update
1288
 */
1289
int32_t tRowUpsertColData(SRow *pRow, STSchema *pTSchema, SColData *aColData, int32_t nColData, int32_t flag) {
×
1290
  if (!(pRow->sver == pTSchema->version)) return TSDB_CODE_INVALID_PARA;
×
1291
  if (!(nColData > 0)) return TSDB_CODE_INVALID_PARA;
×
1292

1293
  if (pRow->flag == HAS_NONE) {
×
1294
    return tRowNoneUpsertColData(aColData, nColData, flag);
×
1295
  } else if (pRow->flag == HAS_NULL) {
×
1296
    return tRowNullUpsertColData(aColData, nColData, pTSchema, flag);
×
1297
  } else if (pRow->flag >> 4) {  // KV row
×
1298
    return tRowKVUpsertColData(pRow, pTSchema, aColData, nColData, flag);
×
1299
  } else {  // TUPLE row
1300
    return tRowTupleUpsertColData(pRow, pTSchema, aColData, nColData, flag);
×
1301
  }
1302
}
1303

1304
void tRowGetPrimaryKey(SRow *row, SRowKey *key) {
×
1305
  key->numOfPKs = row->numOfPKs;
×
1306

1307
  if (key->numOfPKs == 0) {
×
1308
    return;
×
1309
  }
1310

1311
  SPrimaryKeyIndex indices[TD_MAX_PK_COLS];
1312

1313
  uint8_t *data = row->data;
×
1314

1315
  for (int32_t i = 0; i < row->numOfPKs; i++) {
×
1316
    data += tGetPrimaryKeyIndex(data, &indices[i]);
×
1317
  }
1318

1319
  // primary keys
1320
  for (int32_t i = 0; i < row->numOfPKs; i++) {
×
1321
    key->pks[i].type = indices[i].type;
×
1322

1323
    uint8_t *tdata = data + indices[i].offset;
×
1324
    if (row->flag >> 4) {
×
1325
      tdata += tGetI16v(tdata, NULL);
×
1326
    }
1327

1328
    if (IS_VAR_DATA_TYPE(indices[i].type)) {
×
1329
      key->pks[i].pData = tdata;
×
1330
      key->pks[i].pData += tGetU32v(key->pks[i].pData, &key->pks[i].nData);
×
1331
    } else {
1332
      valueSetDatum(key->pks + i, indices[i].type, tdata, tDataTypes[indices[i].type].bytes);
×
1333
    }
1334
  }
1335
}
1336

1337
#define T_COMPARE_SCALAR_VALUE(TYPE, V1, V2)    \
1338
  do {                                          \
1339
    if (*(TYPE *)(V1) < *(TYPE *)(V2)) {        \
1340
      return -1;                                \
1341
    } else if (*(TYPE *)(V1) > *(TYPE *)(V2)) { \
1342
      return 1;                                 \
1343
    } else {                                    \
1344
      return 0;                                 \
1345
    }                                           \
1346
  } while (0)
1347

1348
int32_t tValueCompare(const SValue *tv1, const SValue *tv2) {
×
1349
  switch (tv1->type) {
×
1350
    case TSDB_DATA_TYPE_BOOL:
×
1351
    case TSDB_DATA_TYPE_TINYINT:
1352
      T_COMPARE_SCALAR_VALUE(int8_t, &VALUE_GET_TRIVIAL_DATUM(tv1), &VALUE_GET_TRIVIAL_DATUM(tv2));
×
1353
    case TSDB_DATA_TYPE_SMALLINT:
×
1354
      T_COMPARE_SCALAR_VALUE(int16_t, &VALUE_GET_TRIVIAL_DATUM(tv1), &VALUE_GET_TRIVIAL_DATUM(tv2));
×
1355
    case TSDB_DATA_TYPE_INT:
×
1356
      T_COMPARE_SCALAR_VALUE(int32_t, &VALUE_GET_TRIVIAL_DATUM(tv1), &VALUE_GET_TRIVIAL_DATUM(tv2));
×
1357
    case TSDB_DATA_TYPE_BIGINT:
×
1358
    case TSDB_DATA_TYPE_TIMESTAMP:
1359
      T_COMPARE_SCALAR_VALUE(int64_t, &VALUE_GET_TRIVIAL_DATUM(tv1), &VALUE_GET_TRIVIAL_DATUM(tv2));
×
1360
    case TSDB_DATA_TYPE_FLOAT:
×
1361
      T_COMPARE_SCALAR_VALUE(float, &VALUE_GET_TRIVIAL_DATUM(tv1), &VALUE_GET_TRIVIAL_DATUM(tv2));
×
1362
    case TSDB_DATA_TYPE_DOUBLE:
×
1363
      T_COMPARE_SCALAR_VALUE(double, &VALUE_GET_TRIVIAL_DATUM(tv1), &VALUE_GET_TRIVIAL_DATUM(tv2));
×
1364
    case TSDB_DATA_TYPE_UTINYINT:
×
1365
      T_COMPARE_SCALAR_VALUE(uint8_t, &VALUE_GET_TRIVIAL_DATUM(tv1), &VALUE_GET_TRIVIAL_DATUM(tv2));
×
1366
    case TSDB_DATA_TYPE_USMALLINT:
×
1367
      T_COMPARE_SCALAR_VALUE(uint16_t, &VALUE_GET_TRIVIAL_DATUM(tv1), &VALUE_GET_TRIVIAL_DATUM(tv2));
×
1368
    case TSDB_DATA_TYPE_UINT:
×
1369
      T_COMPARE_SCALAR_VALUE(uint32_t, &VALUE_GET_TRIVIAL_DATUM(tv1), &VALUE_GET_TRIVIAL_DATUM(tv2));
×
1370
    case TSDB_DATA_TYPE_UBIGINT:
×
1371
      T_COMPARE_SCALAR_VALUE(uint64_t, &VALUE_GET_TRIVIAL_DATUM(tv1), &VALUE_GET_TRIVIAL_DATUM(tv2));
×
1372
    case TSDB_DATA_TYPE_GEOMETRY:
×
1373
    case TSDB_DATA_TYPE_BINARY: {
1374
      int32_t ret = strncmp((const char *)tv1->pData, (const char *)tv2->pData, TMIN(tv1->nData, tv2->nData));
×
1375
      return ret ? ret : (tv1->nData < tv2->nData ? -1 : (tv1->nData > tv2->nData ? 1 : 0));
×
1376
    }
1377
    case TSDB_DATA_TYPE_NCHAR: {
×
1378
      int32_t ret = taosUcs4Compare((TdUcs4 *)tv1->pData, (TdUcs4 *)tv2->pData,
×
1379
                                    tv1->nData < tv2->nData ? tv1->nData : tv2->nData);
×
1380
      return ret ? ret : (tv1->nData < tv2->nData ? -1 : (tv1->nData > tv2->nData ? 1 : 0));
×
1381
    }
1382
    case TSDB_DATA_TYPE_VARBINARY: {
×
1383
      int32_t ret = memcmp(tv1->pData, tv2->pData, tv1->nData < tv2->nData ? tv1->nData : tv2->nData);
×
1384
      return ret ? ret : (tv1->nData < tv2->nData ? -1 : (tv1->nData > tv2->nData ? 1 : 0));
×
1385
    }
1386
    default:
×
1387
      break;
×
1388
  }
1389

1390
  return 0;
×
1391
}
1392

1393
// NOTE:
1394
// set key->numOfPKs to 0 as the smallest key with ts
1395
// set key->numOfPKs to (TD_MAX_PK_COLS + 1) as the largest key with ts
1396
FORCE_INLINE int32_t tRowKeyCompare(const SRowKey *key1, const SRowKey *key2) {
20,466✔
1397
  if (key1->ts < key2->ts) {
21,011!
1398
    return -1;
428✔
1399
  } else if (key1->ts > key2->ts) {
20,583!
1400
    return 1;
20,583✔
1401
  }
1402

1403
  if (key1->numOfPKs == key2->numOfPKs) {
×
1404
    for (uint8_t iKey = 0; iKey < key1->numOfPKs; iKey++) {
×
1405
      int32_t ret = tValueCompare(&key1->pks[iKey], &key2->pks[iKey]);
×
1406
      if (ret) return ret;
×
1407
    }
1408
  } else if (key1->numOfPKs < key2->numOfPKs) {
×
1409
    return -1;
×
1410
  } else {
1411
    return 1;
×
1412
  }
1413

1414
  return 0;
×
1415
}
1416

1417
void tRowKeyAssign(SRowKey *pDst, SRowKey *pSrc) {
×
1418
  pDst->ts = pSrc->ts;
×
1419
  pDst->numOfPKs = pSrc->numOfPKs;
×
1420

1421
  if (pSrc->numOfPKs > 0) {
×
1422
    for (int32_t i = 0; i < pSrc->numOfPKs; ++i) {
×
1423
      SValue *pVal = &pDst->pks[i];
×
1424
      pVal->type = pSrc->pks[i].type;
×
1425

1426
      valueCloneDatum(pVal, pSrc->pks + i, pVal->type);
×
1427
    }
1428
  }
1429
}
×
1430

1431
// STag ========================================
1432
static int tTagValCmprFn(const void *p1, const void *p2) {
283✔
1433
  if (((STagVal *)p1)->cid < ((STagVal *)p2)->cid) {
283✔
1434
    return -1;
277✔
1435
  } else if (((STagVal *)p1)->cid > ((STagVal *)p2)->cid) {
6!
1436
    return 1;
6✔
1437
  }
1438

1439
  return 0;
×
1440
}
1441
static int tTagValJsonCmprFn(const void *p1, const void *p2) {
1,006✔
1442
  return strcmp(((STagVal *)p1)[0].pKey, ((STagVal *)p2)[0].pKey);
1,006✔
1443
}
1444

1445
#ifdef TD_DEBUG_PRINT_TAG
1446
static void debugPrintTagVal(int8_t type, const void *val, int32_t vlen, const char *tag, int32_t ln) {
1447
  switch (type) {
1448
    case TSDB_DATA_TYPE_VARBINARY:
1449
    case TSDB_DATA_TYPE_JSON:
1450
    case TSDB_DATA_TYPE_VARCHAR:
1451
    case TSDB_DATA_TYPE_NCHAR:
1452
    case TSDB_DATA_TYPE_GEOMETRY: {
1453
      char tmpVal[32] = {0};
1454
      tstrncpy(tmpVal, val, vlen > 31 ? 31 : vlen);
1455
      printf("%s:%d type:%d vlen:%d, val:\"%s\"\n", tag, ln, (int32_t)type, vlen, tmpVal);
1456
    } break;
1457
    case TSDB_DATA_TYPE_FLOAT:
1458
      printf("%s:%d type:%d vlen:%d, val:%f\n", tag, ln, (int32_t)type, vlen, *(float *)val);
1459
      break;
1460
    case TSDB_DATA_TYPE_DOUBLE:
1461
      printf("%s:%d type:%d vlen:%d, val:%lf\n", tag, ln, (int32_t)type, vlen, *(double *)val);
1462
      break;
1463
    case TSDB_DATA_TYPE_BOOL:
1464
      printf("%s:%d type:%d vlen:%d, val:%" PRIu8 "\n", tag, ln, (int32_t)type, vlen, *(uint8_t *)val);
1465
      break;
1466
    case TSDB_DATA_TYPE_TINYINT:
1467
      printf("%s:%d type:%d vlen:%d, val:%" PRIi8 "\n", tag, ln, (int32_t)type, vlen, *(int8_t *)val);
1468
      break;
1469
    case TSDB_DATA_TYPE_SMALLINT:
1470
      printf("%s:%d type:%d vlen:%d, val:%" PRIi16 "\n", tag, ln, (int32_t)type, vlen, *(int16_t *)val);
1471
      break;
1472
    case TSDB_DATA_TYPE_INT:
1473
      printf("%s:%d type:%d vlen:%d, val:%" PRIi32 "\n", tag, ln, (int32_t)type, vlen, *(int32_t *)val);
1474
      break;
1475
    case TSDB_DATA_TYPE_BIGINT:
1476
      printf("%s:%d type:%d vlen:%d, val:%" PRIi64 "\n", tag, ln, (int32_t)type, vlen, *(int64_t *)val);
1477
      break;
1478
    case TSDB_DATA_TYPE_TIMESTAMP:
1479
      printf("%s:%d type:%d vlen:%d, val:%" PRIi64 "\n", tag, ln, (int32_t)type, vlen, *(int64_t *)val);
1480
      break;
1481
    case TSDB_DATA_TYPE_UTINYINT:
1482
      printf("%s:%d type:%d vlen:%d, val:%" PRIu8 "\n", tag, ln, (int32_t)type, vlen, *(uint8_t *)val);
1483
      break;
1484
    case TSDB_DATA_TYPE_USMALLINT:
1485
      printf("%s:%d type:%d vlen:%d, val:%" PRIu16 "\n", tag, ln, (int32_t)type, vlen, *(uint16_t *)val);
1486
      break;
1487
    case TSDB_DATA_TYPE_UINT:
1488
      printf("%s:%d type:%d vlen:%d, val:%" PRIu32 "\n", tag, ln, (int32_t)type, vlen, *(uint32_t *)val);
1489
      break;
1490
    case TSDB_DATA_TYPE_UBIGINT:
1491
      printf("%s:%d type:%d vlen:%d, val:%" PRIu64 "\n", tag, ln, (int32_t)type, vlen, *(uint64_t *)val);
1492
      break;
1493
    case TSDB_DATA_TYPE_NULL:
1494
      printf("%s:%d type:%d vlen:%d, val:%" PRIi8 "\n", tag, ln, (int32_t)type, vlen, *(int8_t *)val);
1495
      break;
1496
    default:
1497
      break;
1498
  }
1499
}
1500

1501
void debugPrintSTag(STag *pTag, const char *tag, int32_t ln) {
1502
  int8_t   isJson = pTag->flags & TD_TAG_JSON;
1503
  int8_t   isLarge = pTag->flags & TD_TAG_LARGE;
1504
  uint8_t *p = NULL;
1505
  int16_t  offset = 0;
1506

1507
  if (isLarge) {
1508
    p = (uint8_t *)&((int16_t *)pTag->idx)[pTag->nTag];
1509
  } else {
1510
    p = (uint8_t *)&pTag->idx[pTag->nTag];
1511
  }
1512
  printf("%s:%d >>> STAG === %s:%s, len: %d, nTag: %d, sver:%d\n", tag, ln, isJson ? "json" : "normal",
1513
         isLarge ? "large" : "small", (int32_t)pTag->len, (int32_t)pTag->nTag, pTag->ver);
1514
  for (uint16_t n = 0; n < pTag->nTag; ++n) {
1515
    if (isLarge) {
1516
      offset = ((int16_t *)pTag->idx)[n];
1517
    } else {
1518
      offset = pTag->idx[n];
1519
    }
1520
    STagVal tagVal = {0};
1521
    if (isJson) {
1522
      tagVal.pKey = (char *)POINTER_SHIFT(p, offset);
1523
    } else {
1524
      tagVal.cid = *(int16_t *)POINTER_SHIFT(p, offset);
1525
    }
1526
    printf("%s:%d loop[%d-%d] offset=%d\n", __func__, __LINE__, (int32_t)pTag->nTag, (int32_t)n, (int32_t)offset);
1527
    tGetTagVal(p + offset, &tagVal, isJson);
1528
    if (IS_VAR_DATA_TYPE(tagVal.type)) {
1529
      debugPrintTagVal(tagVal.type, tagVal.pData, tagVal.nData, __func__, __LINE__);
1530
    } else {
1531
      debugPrintTagVal(tagVal.type, &tagVal.i64, tDataTypes[tagVal.type].bytes, __func__, __LINE__);
1532
    }
1533
  }
1534
  printf("\n");
1535
}
1536
#endif
1537

1538
static int32_t tPutTagVal(uint8_t *p, STagVal *pTagVal, int8_t isJson) {
1,960✔
1539
  int32_t n = 0;
1,960✔
1540

1541
  // key
1542
  if (isJson) {
1,960✔
1543
    n += tPutCStr(p ? p + n : p, pTagVal->pKey);
76✔
1544
  } else {
1545
    n += tPutI16v(p ? p + n : p, pTagVal->cid);
3,844✔
1546
  }
1547

1548
  // type
1549
  n += tPutI8(p ? p + n : p, pTagVal->type);
1,960✔
1550

1551
  // value
1552
  if (IS_VAR_DATA_TYPE(pTagVal->type)) {
1,960!
1553
    n += tPutBinary(p ? p + n : p, pTagVal->pData, pTagVal->nData);
788✔
1554
  } else {
1555
    p = p ? p + n : p;
1,566✔
1556
    n += tDataTypes[pTagVal->type].bytes;
1,566✔
1557
    if (p) (void)memcpy(p, &(pTagVal->i64), tDataTypes[pTagVal->type].bytes);
1,566✔
1558
  }
1559

1560
  return n;
1,960✔
1561
}
1562
static int32_t tGetTagVal(uint8_t *p, STagVal *pTagVal, int8_t isJson) {
981✔
1563
  int32_t n = 0;
981✔
1564

1565
  // key
1566
  if (isJson) {
981!
1567
    n += tGetCStr(p + n, &pTagVal->pKey);
1,962!
1568
  } else {
1569
    n += tGetI16v(p + n, &pTagVal->cid);
×
1570
  }
1571

1572
  // type
1573
  n += tGetI8(p + n, &pTagVal->type);
981!
1574

1575
  // value
1576
  if (IS_VAR_DATA_TYPE(pTagVal->type)) {
981!
1577
    n += tGetBinary(p + n, &pTagVal->pData, &pTagVal->nData);
422!
1578
  } else {
1579
    (void)memcpy(&(pTagVal->i64), p + n, tDataTypes[pTagVal->type].bytes);
770✔
1580
    n += tDataTypes[pTagVal->type].bytes;
770✔
1581
  }
1582

1583
  return n;
981✔
1584
}
1585

1586
bool tTagIsJson(const void *pTag) { return (((const STag *)pTag)->flags & TD_TAG_JSON); }
1,198✔
1587

1588
bool tTagIsJsonNull(void *data) {
272✔
1589
  STag  *pTag = (STag *)data;
272✔
1590
  int8_t isJson = tTagIsJson(pTag);
272✔
1591
  if (!isJson) return false;
272!
1592
  return ((STag *)data)->nTag == 0;
×
1593
}
1594

1595
int32_t tTagNew(SArray *pArray, int32_t version, int8_t isJson, STag **ppTag) {
724✔
1596
  int32_t  code = 0;
724✔
1597
  uint8_t *p = NULL;
724✔
1598
  int16_t  n = 0;
724✔
1599
  int16_t  nTag = taosArrayGetSize(pArray);
724✔
1600
  int32_t  szTag = 0;
724✔
1601
  int8_t   isLarge = 0;
724✔
1602

1603
  // sort
1604
  if (isJson) {
724✔
1605
    taosSort(pArray->pData, nTag, sizeof(STagVal), tTagValJsonCmprFn);
3✔
1606
  } else {
1607
    taosSort(pArray->pData, nTag, sizeof(STagVal), tTagValCmprFn);
721✔
1608
  }
1609

1610
  // get size
1611
  for (int16_t iTag = 0; iTag < nTag; iTag++) {
1,704✔
1612
    szTag += tPutTagVal(NULL, (STagVal *)taosArrayGet(pArray, iTag), isJson);
980✔
1613
  }
1614
  if (szTag <= INT8_MAX) {
724✔
1615
    szTag = szTag + sizeof(STag) + sizeof(int8_t) * nTag;
723✔
1616
  } else {
1617
    szTag = szTag + sizeof(STag) + sizeof(int16_t) * nTag;
1✔
1618
    isLarge = 1;
1✔
1619
  }
1620

1621
  // build tag
1622
  (*ppTag) = (STag *)taosMemoryCalloc(szTag, 1);
724!
1623
  if ((*ppTag) == NULL) {
724!
1624
    code = terrno;
×
1625
    goto _err;
×
1626
  }
1627
  (*ppTag)->flags = 0;
724✔
1628
  if (isJson) {
724✔
1629
    (*ppTag)->flags |= TD_TAG_JSON;
3✔
1630
  }
1631
  if (isLarge) {
724✔
1632
    (*ppTag)->flags |= TD_TAG_LARGE;
1✔
1633
  }
1634
  (*ppTag)->len = szTag;
724✔
1635
  (*ppTag)->nTag = nTag;
724✔
1636
  (*ppTag)->ver = version;
724✔
1637

1638
  if (isLarge) {
724✔
1639
    p = (uint8_t *)&((int16_t *)(*ppTag)->idx)[nTag];
1✔
1640
  } else {
1641
    p = (uint8_t *)&(*ppTag)->idx[nTag];
723✔
1642
  }
1643
  n = 0;
724✔
1644
  for (int16_t iTag = 0; iTag < nTag; iTag++) {
1,704✔
1645
    if (isLarge) {
980✔
1646
      ((int16_t *)(*ppTag)->idx)[iTag] = n;
9✔
1647
    } else {
1648
      (*ppTag)->idx[iTag] = n;
971✔
1649
    }
1650
    n += tPutTagVal(p + n, (STagVal *)taosArrayGet(pArray, iTag), isJson);
980✔
1651
  }
1652
#ifdef TD_DEBUG_PRINT_TAG
1653
  debugPrintSTag(*ppTag, __func__, __LINE__);
1654
#endif
1655

1656
  return code;
724✔
1657

1658
_err:
×
1659
  return code;
×
1660
}
1661

1662
void tTagFree(STag *pTag) {
114✔
1663
  if (pTag) taosMemoryFree(pTag);
114!
1664
}
114✔
1665

1666
char *tTagValToData(const STagVal *value, bool isJson) {
315✔
1667
  if (!value) {
315!
1668
    return NULL;
×
1669
  }
1670

1671
  char  *data = NULL;
315✔
1672
  int8_t typeBytes = 0;
315✔
1673
  if (isJson) {
315!
1674
    typeBytes = CHAR_BYTES;
315✔
1675
  }
1676

1677
  if (IS_VAR_DATA_TYPE(value->type)) {
315!
1678
    data = taosMemoryCalloc(1, typeBytes + VARSTR_HEADER_SIZE + value->nData);
70!
1679
    if (data == NULL) {
70!
1680
      return NULL;
×
1681
    }
1682

1683
    if (isJson) {
70!
1684
      *data = value->type;
70✔
1685
    }
1686

1687
    varDataLen(data + typeBytes) = value->nData;
70✔
1688
    (void)memcpy(varDataVal(data + typeBytes), value->pData, value->nData);
70✔
1689
  } else {
1690
    data = ((char *)&(value->i64)) - typeBytes;  // json with type
245✔
1691
  }
1692

1693
  return data;
315✔
1694
}
1695

1696
bool tTagGet(const STag *pTag, STagVal *pTagVal) {
350✔
1697
  if (!pTag || !pTagVal) {
350!
1698
    return false;
×
1699
  }
1700

1701
  int16_t  lidx = 0;
350✔
1702
  int16_t  ridx = pTag->nTag - 1;
350✔
1703
  int16_t  midx;
1704
  uint8_t *p;
1705
  int8_t   isJson = pTag->flags & TD_TAG_JSON;
350✔
1706
  int8_t   isLarge = pTag->flags & TD_TAG_LARGE;
350✔
1707
  int16_t  offset;
1708
  STagVal  tv;
1709
  int      c;
1710

1711
  if (isLarge) {
350✔
1712
    p = (uint8_t *)&((int16_t *)pTag->idx)[pTag->nTag];
190✔
1713
  } else {
1714
    p = (uint8_t *)&pTag->idx[pTag->nTag];
160✔
1715
  }
1716

1717
  pTagVal->type = TSDB_DATA_TYPE_NULL;
350✔
1718
  pTagVal->pData = NULL;
350✔
1719
  pTagVal->nData = 0;
350✔
1720
  while (lidx <= ridx) {
1,015✔
1721
    midx = (lidx + ridx) / 2;
980✔
1722
    if (isLarge) {
980✔
1723
      offset = ((int16_t *)pTag->idx)[midx];
532✔
1724
    } else {
1725
      offset = pTag->idx[midx];
448✔
1726
    }
1727

1728
    int32_t nt = tGetTagVal(p + offset, &tv, isJson);
980✔
1729
    if (isJson) {
980!
1730
      c = tTagValJsonCmprFn(pTagVal, &tv);
980✔
1731
    } else {
1732
      c = tTagValCmprFn(pTagVal, &tv);
×
1733
    }
1734

1735
    if (c < 0) {
980✔
1736
      ridx = midx - 1;
280✔
1737
    } else if (c > 0) {
700✔
1738
      lidx = midx + 1;
385✔
1739
    } else {
1740
      (void)memcpy(pTagVal, &tv, sizeof(tv));
315✔
1741
      return true;
315✔
1742
    }
1743
  }
1744
  return false;
35✔
1745
}
1746

1747
int32_t tEncodeTag(SEncoder *pEncoder, const STag *pTag) {
1,328✔
1748
  return tEncodeBinary(pEncoder, (const uint8_t *)pTag, pTag->len);
2,656✔
1749
}
1750

1751
int32_t tDecodeTag(SDecoder *pDecoder, STag **ppTag) { return tDecodeBinary(pDecoder, (uint8_t **)ppTag, NULL); }
×
1752

1753
int32_t tTagToValArray(const STag *pTag, SArray **ppArray) {
1✔
1754
  int32_t  code = 0;
1✔
1755
  uint8_t *p = NULL;
1✔
1756
  STagVal  tv = {0};
1✔
1757
  int8_t   isLarge = pTag->flags & TD_TAG_LARGE;
1✔
1758
  int16_t  offset = 0;
1✔
1759

1760
  if (isLarge) {
1!
1761
    p = (uint8_t *)&((int16_t *)pTag->idx)[pTag->nTag];
×
1762
  } else {
1763
    p = (uint8_t *)&pTag->idx[pTag->nTag];
1✔
1764
  }
1765

1766
  (*ppArray) = taosArrayInit(pTag->nTag + 1, sizeof(STagVal));
1✔
1767
  if (*ppArray == NULL) {
1!
1768
    code = terrno;
×
1769
    goto _err;
×
1770
  }
1771

1772
  for (int16_t iTag = 0; iTag < pTag->nTag; iTag++) {
2✔
1773
    if (isLarge) {
1!
1774
      offset = ((int16_t *)pTag->idx)[iTag];
×
1775
    } else {
1776
      offset = pTag->idx[iTag];
1✔
1777
    }
1778
    int32_t nt = tGetTagVal(p + offset, &tv, pTag->flags & TD_TAG_JSON);
1✔
1779
    if (taosArrayPush(*ppArray, &tv) == NULL) {
2!
1780
      code = terrno;
×
1781
      goto _err;
×
1782
    }
1783
  }
1784

1785
  return code;
1✔
1786

1787
_err:
×
1788
  return code;
×
1789
}
1790

1791
// STSchema ========================================
1792
STSchema *tBuildTSchema(SSchema *aSchema, int32_t numOfCols, int32_t version) {
789✔
1793
  STSchema *pTSchema = taosMemoryCalloc(1, sizeof(STSchema) + sizeof(STColumn) * numOfCols);
789!
1794
  if (pTSchema == NULL) {
789!
1795
    terrno = TSDB_CODE_OUT_OF_MEMORY;
×
1796
    return NULL;
×
1797
  }
1798

1799
  pTSchema->numOfCols = numOfCols;
789✔
1800
  pTSchema->version = version;
789✔
1801

1802
  // timestamp column
1803
  if (!(aSchema[0].type == TSDB_DATA_TYPE_TIMESTAMP)) {
789!
1804
    terrno = TSDB_CODE_INVALID_PARA;
×
1805
    return NULL;
×
1806
  }
1807
  if (!(aSchema[0].colId == PRIMARYKEY_TIMESTAMP_COL_ID)) {
789!
1808
    terrno = TSDB_CODE_INVALID_PARA;
×
1809
    return NULL;
×
1810
  }
1811
  pTSchema->columns[0].colId = aSchema[0].colId;
789✔
1812
  pTSchema->columns[0].type = aSchema[0].type;
789✔
1813
  pTSchema->columns[0].flags = aSchema[0].flags;
789✔
1814
  pTSchema->columns[0].bytes = TYPE_BYTES[aSchema[0].type];
789✔
1815
  pTSchema->columns[0].offset = -1;
789✔
1816

1817
  // other columns
1818
  for (int32_t iCol = 1; iCol < numOfCols; iCol++) {
1,903✔
1819
    SSchema  *pSchema = &aSchema[iCol];
1,114✔
1820
    STColumn *pTColumn = &pTSchema->columns[iCol];
1,114✔
1821

1822
    pTColumn->colId = pSchema->colId;
1,114✔
1823
    pTColumn->type = pSchema->type;
1,114✔
1824
    pTColumn->flags = pSchema->flags;
1,114✔
1825
    pTColumn->offset = pTSchema->flen;
1,114✔
1826

1827
    if (IS_VAR_DATA_TYPE(pSchema->type)) {
1,114!
1828
      pTColumn->bytes = pSchema->bytes;
190✔
1829
      pTSchema->tlen += (TYPE_BYTES[pSchema->type] + pSchema->bytes);  // todo: remove
190✔
1830
    } else {
1831
      pTColumn->bytes = TYPE_BYTES[pSchema->type];
924✔
1832
      pTSchema->tlen += TYPE_BYTES[pSchema->type];  // todo: remove
924✔
1833
    }
1834

1835
    pTSchema->flen += TYPE_BYTES[pTColumn->type];
1,114✔
1836
  }
1837

1838
#if 1  // todo : remove this
1839
  pTSchema->tlen += (int32_t)TD_BITMAP_BYTES(numOfCols);
789✔
1840
#endif
1841

1842
  return pTSchema;
789✔
1843
}
1844

1845
static int32_t tTColumnCompare(const void *p1, const void *p2) {
×
1846
  if (((STColumn *)p1)->colId < ((STColumn *)p2)->colId) {
×
1847
    return -1;
×
1848
  } else if (((STColumn *)p1)->colId > ((STColumn *)p2)->colId) {
×
1849
    return 1;
×
1850
  }
1851

1852
  return 0;
×
1853
}
1854

1855
const STColumn *tTSchemaSearchColumn(const STSchema *pTSchema, int16_t cid) {
×
1856
  STColumn tcol = {
×
1857
      .colId = cid,
1858
  };
1859

1860
  return taosbsearch(&tcol, pTSchema->columns, pTSchema->numOfCols, sizeof(STColumn), tTColumnCompare, TD_EQ);
×
1861
}
1862

1863
// SColData ========================================
1864
void tColDataDestroy(void *ph) {
559✔
1865
  if (ph) {
559!
1866
    SColData *pColData = (SColData *)ph;
559✔
1867

1868
    tFree(pColData->pBitMap);
559!
1869
    tFree(pColData->aOffset);
559!
1870
    tFree(pColData->pData);
559!
1871
  }
1872
}
559✔
1873

1874
void tColDataInit(SColData *pColData, int16_t cid, int8_t type, int8_t cflag) {
170✔
1875
  pColData->cid = cid;
170✔
1876
  pColData->type = type;
170✔
1877
  pColData->cflag = cflag;
170✔
1878
  tColDataClear(pColData);
170✔
1879
}
170✔
1880

1881
void tColDataClear(SColData *pColData) {
585✔
1882
  pColData->numOfNone = 0;
585✔
1883
  pColData->numOfNull = 0;
585✔
1884
  pColData->numOfValue = 0;
585✔
1885
  pColData->nVal = 0;
585✔
1886
  pColData->flag = 0;
585✔
1887
  pColData->nData = 0;
585✔
1888
}
585✔
1889

1890
void tColDataDeepClear(SColData *pColData) {
247✔
1891
  pColData->pBitMap = NULL;
247✔
1892
  pColData->aOffset = NULL;
247✔
1893
  pColData->pData = NULL;
247✔
1894

1895
  tColDataClear(pColData);
247✔
1896
}
247✔
1897

1898
static FORCE_INLINE int32_t tColDataPutValue(SColData *pColData, uint8_t *pData, uint32_t nData) {
1899
  int32_t code = 0;
788✔
1900

1901
  if (IS_VAR_DATA_TYPE(pColData->type)) {
534!
1902
    code = tRealloc((uint8_t **)(&pColData->aOffset), ((int64_t)(pColData->nVal + 1)) << 2);
264!
1903
    if (code) goto _exit;
264!
1904
    pColData->aOffset[pColData->nVal] = pColData->nData;
264✔
1905

1906
    if (nData) {
264!
1907
      code = tRealloc(&pColData->pData, pColData->nData + nData);
263!
1908
      if (code) goto _exit;
263!
1909
      (void)memcpy(pColData->pData + pColData->nData, pData, nData);
263✔
1910
      pColData->nData += nData;
263✔
1911
    }
1912
  } else {
1913
    if (!(pColData->nData == tDataTypes[pColData->type].bytes * pColData->nVal)) {
524!
1914
      return TSDB_CODE_INVALID_PARA;
×
1915
    }
1916
    code = tRealloc(&pColData->pData, pColData->nData + tDataTypes[pColData->type].bytes);
524!
1917
    if (code) goto _exit;
524!
1918
    if (pData) {
524!
1919
      (void)memcpy(pColData->pData + pColData->nData, pData, TYPE_BYTES[pColData->type]);
524✔
1920
    } else {
1921
      memset(pColData->pData + pColData->nData, 0, TYPE_BYTES[pColData->type]);
×
1922
    }
1923
    pColData->nData += tDataTypes[pColData->type].bytes;
524✔
1924
  }
1925
  pColData->nVal++;
788✔
1926

1927
_exit:
788✔
1928
  return code;
788✔
1929
}
1930
static FORCE_INLINE int32_t tColDataAppendValue00(SColData *pColData, uint8_t *pData, uint32_t nData) {
284✔
1931
  pColData->flag = HAS_VALUE;
284✔
1932
  pColData->numOfValue++;
284✔
1933
  return tColDataPutValue(pColData, pData, nData);
284✔
1934
}
1935
static FORCE_INLINE int32_t tColDataAppendValue01(SColData *pColData, uint8_t *pData, uint32_t nData) {
×
1936
  pColData->flag = HAS_NONE;
×
1937
  pColData->numOfNone++;
×
1938
  pColData->nVal++;
×
1939
  return 0;
×
1940
}
1941
static FORCE_INLINE int32_t tColDataAppendValue02(SColData *pColData, uint8_t *pData, uint32_t nData) {
×
1942
  pColData->flag = HAS_NULL;
×
1943
  pColData->numOfNull++;
×
1944
  pColData->nVal++;
×
1945
  return 0;
×
1946
}
1947
static FORCE_INLINE int32_t tColDataAppendValue10(SColData *pColData, uint8_t *pData, uint32_t nData) {
×
1948
  int32_t code = 0;
×
1949

1950
  int32_t nBit = BIT1_SIZE(pColData->nVal + 1);
×
1951
  code = tRealloc(&pColData->pBitMap, nBit);
×
1952
  if (code) return code;
×
1953

1954
  memset(pColData->pBitMap, 0, nBit);
×
1955
  SET_BIT1_EX(pColData->pBitMap, pColData->nVal, 1);
×
1956

1957
  pColData->flag |= HAS_VALUE;
×
1958
  pColData->numOfValue++;
×
1959

1960
  if (pColData->nVal) {
×
1961
    if (IS_VAR_DATA_TYPE(pColData->type)) {
×
1962
      int32_t nOffset = sizeof(int32_t) * pColData->nVal;
×
1963
      code = tRealloc((uint8_t **)(&pColData->aOffset), nOffset);
×
1964
      if (code) return code;
×
1965
      memset(pColData->aOffset, 0, nOffset);
×
1966
    } else {
1967
      pColData->nData = tDataTypes[pColData->type].bytes * pColData->nVal;
×
1968
      code = tRealloc(&pColData->pData, pColData->nData);
×
1969
      if (code) return code;
×
1970
      memset(pColData->pData, 0, pColData->nData);
×
1971
    }
1972
  }
1973

1974
  return tColDataPutValue(pColData, pData, nData);
×
1975
}
1976
static FORCE_INLINE int32_t tColDataAppendValue11(SColData *pColData, uint8_t *pData, uint32_t nData) {
×
1977
  pColData->nVal++;
×
1978
  pColData->numOfNone++;
×
1979
  return 0;
×
1980
}
1981
static FORCE_INLINE int32_t tColDataAppendValue12(SColData *pColData, uint8_t *pData, uint32_t nData) {
×
1982
  int32_t code = 0;
×
1983

1984
  int32_t nBit = BIT1_SIZE(pColData->nVal + 1);
×
1985
  code = tRealloc(&pColData->pBitMap, nBit);
×
1986
  if (code) return code;
×
1987

1988
  memset(pColData->pBitMap, 0, nBit);
×
1989
  SET_BIT1_EX(pColData->pBitMap, pColData->nVal, 1);
×
1990

1991
  pColData->flag |= HAS_NULL;
×
1992
  pColData->numOfNull++;
×
1993
  pColData->nVal++;
×
1994

1995
  return code;
×
1996
}
1997
static FORCE_INLINE int32_t tColDataAppendValue20(SColData *pColData, uint8_t *pData, uint32_t nData) {
×
1998
  int32_t code = 0;
×
1999

2000
  int32_t nBit = BIT1_SIZE(pColData->nVal + 1);
×
2001
  code = tRealloc(&pColData->pBitMap, nBit);
×
2002
  if (code) return code;
×
2003

2004
  memset(pColData->pBitMap, 0, nBit);
×
2005
  SET_BIT1_EX(pColData->pBitMap, pColData->nVal, 1);
×
2006

2007
  pColData->flag |= HAS_VALUE;
×
2008
  pColData->numOfValue++;
×
2009

2010
  if (pColData->nVal) {
×
2011
    if (IS_VAR_DATA_TYPE(pColData->type)) {
×
2012
      int32_t nOffset = sizeof(int32_t) * pColData->nVal;
×
2013
      code = tRealloc((uint8_t **)(&pColData->aOffset), nOffset);
×
2014
      if (code) return code;
×
2015
      memset(pColData->aOffset, 0, nOffset);
×
2016
    } else {
2017
      pColData->nData = tDataTypes[pColData->type].bytes * pColData->nVal;
×
2018
      code = tRealloc(&pColData->pData, pColData->nData);
×
2019
      if (code) return code;
×
2020
      memset(pColData->pData, 0, pColData->nData);
×
2021
    }
2022
  }
2023

2024
  return tColDataPutValue(pColData, pData, nData);
×
2025
}
2026
static FORCE_INLINE int32_t tColDataAppendValue21(SColData *pColData, uint8_t *pData, uint32_t nData) {
×
2027
  int32_t code = 0;
×
2028

2029
  int32_t nBit = BIT1_SIZE(pColData->nVal + 1);
×
2030
  code = tRealloc(&pColData->pBitMap, nBit);
×
2031
  if (code) return code;
×
2032

2033
  memset(pColData->pBitMap, 255, nBit);
×
2034
  SET_BIT1_EX(pColData->pBitMap, pColData->nVal, 0);
×
2035

2036
  pColData->flag |= HAS_NONE;
×
2037
  pColData->numOfNone++;
×
2038
  pColData->nVal++;
×
2039

2040
  return code;
×
2041
}
2042
static FORCE_INLINE int32_t tColDataAppendValue22(SColData *pColData, uint8_t *pData, uint32_t nData) {
×
2043
  pColData->nVal++;
×
2044
  pColData->numOfNull++;
×
2045
  return 0;
×
2046
}
2047
static FORCE_INLINE int32_t tColDataAppendValue30(SColData *pColData, uint8_t *pData, uint32_t nData) {
×
2048
  int32_t code = 0;
×
2049

2050
  pColData->flag |= HAS_VALUE;
×
2051
  pColData->numOfValue++;
×
2052

2053
  uint8_t *pBitMap = NULL;
×
2054
  code = tRealloc(&pBitMap, BIT2_SIZE(pColData->nVal + 1));
×
2055
  if (code) return code;
×
2056

2057
  for (int32_t iVal = 0; iVal < pColData->nVal; iVal++) {
×
2058
    SET_BIT2_EX(pBitMap, iVal, GET_BIT1(pColData->pBitMap, iVal));
×
2059
  }
2060
  SET_BIT2_EX(pBitMap, pColData->nVal, 2);
×
2061

2062
  tFree(pColData->pBitMap);
×
2063
  pColData->pBitMap = pBitMap;
×
2064

2065
  if (pColData->nVal) {
×
2066
    if (IS_VAR_DATA_TYPE(pColData->type)) {
×
2067
      int32_t nOffset = sizeof(int32_t) * pColData->nVal;
×
2068
      code = tRealloc((uint8_t **)(&pColData->aOffset), nOffset);
×
2069
      if (code) return code;
×
2070
      memset(pColData->aOffset, 0, nOffset);
×
2071
    } else {
2072
      pColData->nData = tDataTypes[pColData->type].bytes * pColData->nVal;
×
2073
      code = tRealloc(&pColData->pData, pColData->nData);
×
2074
      if (code) return code;
×
2075
      memset(pColData->pData, 0, pColData->nData);
×
2076
    }
2077
  }
2078

2079
  return tColDataPutValue(pColData, pData, nData);
×
2080
}
2081
static FORCE_INLINE int32_t tColDataAppendValue31(SColData *pColData, uint8_t *pData, uint32_t nData) {
×
2082
  int32_t code = 0;
×
2083

2084
  code = tRealloc(&pColData->pBitMap, BIT1_SIZE(pColData->nVal + 1));
×
2085
  if (code) return code;
×
2086

2087
  SET_BIT1_EX(pColData->pBitMap, pColData->nVal, 0);
×
2088
  pColData->numOfNone++;
×
2089
  pColData->nVal++;
×
2090

2091
  return code;
×
2092
}
2093
static FORCE_INLINE int32_t tColDataAppendValue32(SColData *pColData, uint8_t *pData, uint32_t nData) {
×
2094
  int32_t code = 0;
×
2095

2096
  code = tRealloc(&pColData->pBitMap, BIT1_SIZE(pColData->nVal + 1));
×
2097
  if (code) return code;
×
2098

2099
  SET_BIT1_EX(pColData->pBitMap, pColData->nVal, 1);
×
2100
  pColData->numOfNull++;
×
2101
  pColData->nVal++;
×
2102

2103
  return code;
×
2104
}
2105
static FORCE_INLINE int32_t tColDataAppendValue40(SColData *pColData, uint8_t *pData, uint32_t nData) {
504✔
2106
  pColData->numOfValue++;
504✔
2107
  return tColDataPutValue(pColData, pData, nData);
504✔
2108
}
2109
static FORCE_INLINE int32_t tColDataAppendValue41(SColData *pColData, uint8_t *pData, uint32_t nData) {
×
2110
  int32_t code = 0;
×
2111

2112
  pColData->flag |= HAS_NONE;
×
2113
  pColData->numOfNone++;
×
2114

2115
  int32_t nBit = BIT1_SIZE(pColData->nVal + 1);
×
2116
  code = tRealloc(&pColData->pBitMap, nBit);
×
2117
  if (code) return code;
×
2118

2119
  memset(pColData->pBitMap, 255, nBit);
×
2120
  SET_BIT1_EX(pColData->pBitMap, pColData->nVal, 0);
×
2121

2122
  return tColDataPutValue(pColData, NULL, 0);
×
2123
}
2124
static FORCE_INLINE int32_t tColDataAppendValue42(SColData *pColData, uint8_t *pData, uint32_t nData) {
×
2125
  int32_t code = 0;
×
2126

2127
  pColData->flag |= HAS_NULL;
×
2128
  pColData->numOfNull++;
×
2129

2130
  int32_t nBit = BIT1_SIZE(pColData->nVal + 1);
×
2131
  code = tRealloc(&pColData->pBitMap, nBit);
×
2132
  if (code) return code;
×
2133

2134
  memset(pColData->pBitMap, 255, nBit);
×
2135
  SET_BIT1_EX(pColData->pBitMap, pColData->nVal, 0);
×
2136

2137
  return tColDataPutValue(pColData, NULL, 0);
×
2138
}
2139
static FORCE_INLINE int32_t tColDataAppendValue50(SColData *pColData, uint8_t *pData, uint32_t nData) {
×
2140
  int32_t code = 0;
×
2141

2142
  code = tRealloc(&pColData->pBitMap, BIT1_SIZE(pColData->nVal + 1));
×
2143
  if (code) return code;
×
2144

2145
  SET_BIT1_EX(pColData->pBitMap, pColData->nVal, 1);
×
2146
  pColData->numOfValue++;
×
2147

2148
  return tColDataPutValue(pColData, pData, nData);
×
2149
}
2150
static FORCE_INLINE int32_t tColDataAppendValue51(SColData *pColData, uint8_t *pData, uint32_t nData) {
×
2151
  int32_t code = 0;
×
2152

2153
  code = tRealloc(&pColData->pBitMap, BIT1_SIZE(pColData->nVal + 1));
×
2154
  if (code) return code;
×
2155

2156
  SET_BIT1_EX(pColData->pBitMap, pColData->nVal, 0);
×
2157
  pColData->numOfNone++;
×
2158

2159
  return tColDataPutValue(pColData, NULL, 0);
×
2160
}
2161
static FORCE_INLINE int32_t tColDataAppendValue52(SColData *pColData, uint8_t *pData, uint32_t nData) {
×
2162
  int32_t code = 0;
×
2163

2164
  pColData->flag |= HAS_NULL;
×
2165
  pColData->numOfNull++;
×
2166

2167
  uint8_t *pBitMap = NULL;
×
2168
  code = tRealloc(&pBitMap, BIT2_SIZE(pColData->nVal + 1));
×
2169
  if (code) return code;
×
2170

2171
  for (int32_t iVal = 0; iVal < pColData->nVal; iVal++) {
×
2172
    SET_BIT2_EX(pBitMap, iVal, GET_BIT1(pColData->pBitMap, iVal) ? 2 : 0);
×
2173
  }
2174
  SET_BIT2_EX(pBitMap, pColData->nVal, 1);
×
2175

2176
  tFree(pColData->pBitMap);
×
2177
  pColData->pBitMap = pBitMap;
×
2178

2179
  return tColDataPutValue(pColData, NULL, 0);
×
2180
}
2181
static FORCE_INLINE int32_t tColDataAppendValue60(SColData *pColData, uint8_t *pData, uint32_t nData) {
×
2182
  int32_t code = 0;
×
2183

2184
  code = tRealloc(&pColData->pBitMap, BIT1_SIZE(pColData->nVal + 1));
×
2185
  if (code) return code;
×
2186
  SET_BIT1_EX(pColData->pBitMap, pColData->nVal, 1);
×
2187
  pColData->numOfValue++;
×
2188

2189
  return tColDataPutValue(pColData, pData, nData);
×
2190
}
2191
static FORCE_INLINE int32_t tColDataAppendValue61(SColData *pColData, uint8_t *pData, uint32_t nData) {
×
2192
  int32_t code = 0;
×
2193

2194
  pColData->flag |= HAS_NONE;
×
2195
  pColData->numOfNone++;
×
2196

2197
  uint8_t *pBitMap = NULL;
×
2198
  code = tRealloc(&pBitMap, BIT2_SIZE(pColData->nVal + 1));
×
2199
  if (code) return code;
×
2200

2201
  for (int32_t iVal = 0; iVal < pColData->nVal; iVal++) {
×
2202
    SET_BIT2_EX(pBitMap, iVal, GET_BIT1(pColData->pBitMap, iVal) ? 2 : 1);
×
2203
  }
2204
  SET_BIT2_EX(pBitMap, pColData->nVal, 0);
×
2205

2206
  tFree(pColData->pBitMap);
×
2207
  pColData->pBitMap = pBitMap;
×
2208

2209
  return tColDataPutValue(pColData, NULL, 0);
×
2210
}
2211
static FORCE_INLINE int32_t tColDataAppendValue62(SColData *pColData, uint8_t *pData, uint32_t nData) {
×
2212
  int32_t code = 0;
×
2213

2214
  code = tRealloc(&pColData->pBitMap, BIT1_SIZE(pColData->nVal + 1));
×
2215
  if (code) return code;
×
2216
  SET_BIT1_EX(pColData->pBitMap, pColData->nVal, 0);
×
2217
  pColData->numOfNull++;
×
2218

2219
  return tColDataPutValue(pColData, NULL, 0);
×
2220
}
2221
static FORCE_INLINE int32_t tColDataAppendValue70(SColData *pColData, uint8_t *pData, uint32_t nData) {
×
2222
  int32_t code = 0;
×
2223

2224
  code = tRealloc(&pColData->pBitMap, BIT2_SIZE(pColData->nVal + 1));
×
2225
  if (code) return code;
×
2226
  SET_BIT2_EX(pColData->pBitMap, pColData->nVal, 2);
×
2227
  pColData->numOfValue++;
×
2228

2229
  return tColDataPutValue(pColData, pData, nData);
×
2230
}
2231
static FORCE_INLINE int32_t tColDataAppendValue71(SColData *pColData, uint8_t *pData, uint32_t nData) {
×
2232
  int32_t code = 0;
×
2233

2234
  code = tRealloc(&pColData->pBitMap, BIT2_SIZE(pColData->nVal + 1));
×
2235
  if (code) return code;
×
2236
  SET_BIT2_EX(pColData->pBitMap, pColData->nVal, 0);
×
2237
  pColData->numOfNone++;
×
2238

2239
  return tColDataPutValue(pColData, NULL, 0);
×
2240
}
2241
static FORCE_INLINE int32_t tColDataAppendValue72(SColData *pColData, uint8_t *pData, uint32_t nData) {
×
2242
  int32_t code = 0;
×
2243

2244
  code = tRealloc(&pColData->pBitMap, BIT2_SIZE(pColData->nVal + 1));
×
2245
  if (code) return code;
×
2246
  SET_BIT2_EX(pColData->pBitMap, pColData->nVal, 1);
×
2247
  pColData->numOfNull++;
×
2248

2249
  return tColDataPutValue(pColData, NULL, 0);
×
2250
}
2251
static int32_t (*tColDataAppendValueImpl[8][3])(SColData *pColData, uint8_t *pData, uint32_t nData) = {
2252
    {tColDataAppendValue00, tColDataAppendValue01, tColDataAppendValue02},  // 0
2253
    {tColDataAppendValue10, tColDataAppendValue11, tColDataAppendValue12},  // HAS_NONE
2254
    {tColDataAppendValue20, tColDataAppendValue21, tColDataAppendValue22},  // HAS_NULL
2255
    {tColDataAppendValue30, tColDataAppendValue31, tColDataAppendValue32},  // HAS_NULL|HAS_NONE
2256
    {tColDataAppendValue40, tColDataAppendValue41, tColDataAppendValue42},  // HAS_VALUE
2257
    {tColDataAppendValue50, tColDataAppendValue51, tColDataAppendValue52},  // HAS_VALUE|HAS_NONE
2258
    {tColDataAppendValue60, tColDataAppendValue61, tColDataAppendValue62},  // HAS_VALUE|HAS_NULL
2259
    {tColDataAppendValue70, tColDataAppendValue71, tColDataAppendValue72},  // HAS_VALUE|HAS_NULL|HAS_NONE
2260

2261
    //       VALUE                  NONE                     NULL
2262
};
2263
int32_t tColDataAppendValue(SColData *pColData, SColVal *pColVal) {
×
2264
  if (!(pColData->cid == pColVal->cid && pColData->type == pColVal->value.type)) {
×
2265
    return TSDB_CODE_INVALID_PARA;
×
2266
  }
2267
  return tColDataAppendValueImpl[pColData->flag][pColVal->flag](
×
2268
      pColData, VALUE_GET_DATUM(&pColVal->value, pColData->type), pColVal->value.nData);
×
2269
}
2270

2271
static FORCE_INLINE int32_t tColDataUpdateValue10(SColData *pColData, uint8_t *pData, uint32_t nData, bool forward) {
×
2272
  pColData->numOfNone--;
×
2273
  pColData->nVal--;
×
2274
  if (pColData->numOfNone) {
×
2275
    return tColDataAppendValue10(pColData, pData, nData);
×
2276
  } else {
2277
    pColData->flag = 0;
×
2278
    return tColDataAppendValue00(pColData, pData, nData);
×
2279
  }
2280
}
2281
static FORCE_INLINE int32_t tColDataUpdateValue12(SColData *pColData, uint8_t *pData, uint32_t nData, bool forward) {
×
2282
  pColData->numOfNone--;
×
2283
  pColData->nVal--;
×
2284
  if (pColData->numOfNone) {
×
2285
    return tColDataAppendValue12(pColData, pData, nData);
×
2286
  } else {
2287
    pColData->flag = 0;
×
2288
    return tColDataAppendValue02(pColData, pData, nData);
×
2289
  }
2290
  return 0;
2291
}
2292
static FORCE_INLINE int32_t tColDataUpdateValue20(SColData *pColData, uint8_t *pData, uint32_t nData, bool forward) {
×
2293
  if (forward) {
×
2294
    pColData->numOfNull--;
×
2295
    pColData->nVal--;
×
2296
    if (pColData->numOfNull) {
×
2297
      return tColDataAppendValue20(pColData, pData, nData);
×
2298
    } else {
2299
      pColData->flag = 0;
×
2300
      return tColDataAppendValue00(pColData, pData, nData);
×
2301
    }
2302
  }
2303
  return 0;
×
2304
}
2305
static FORCE_INLINE int32_t tColDataUpdateValue30(SColData *pColData, uint8_t *pData, uint32_t nData, bool forward) {
×
2306
  if (GET_BIT1(pColData->pBitMap, pColData->nVal - 1) == 0) {  // NONE ==> VALUE
×
2307
    pColData->numOfNone--;
×
2308
    pColData->nVal--;
×
2309
    if (pColData->numOfNone) {
×
2310
      return tColDataAppendValue30(pColData, pData, nData);
×
2311
    } else {
2312
      pColData->flag = HAS_NULL;
×
2313
      return tColDataAppendValue20(pColData, pData, nData);
×
2314
    }
2315
  } else if (forward) {  // NULL ==> VALUE
×
2316
    pColData->numOfNull--;
×
2317
    pColData->nVal--;
×
2318
    if (pColData->numOfNull) {
×
2319
      return tColDataAppendValue30(pColData, pData, nData);
×
2320
    } else {
2321
      pColData->flag = HAS_NONE;
×
2322
      return tColDataAppendValue10(pColData, pData, nData);
×
2323
    }
2324
  }
2325
  return 0;
×
2326
}
2327
static FORCE_INLINE int32_t tColDataUpdateValue32(SColData *pColData, uint8_t *pData, uint32_t nData, bool forward) {
×
2328
  if (GET_BIT1(pColData->pBitMap, pColData->nVal - 1) == 0) {  // NONE ==> NULL
×
2329
    pColData->numOfNone--;
×
2330
    pColData->numOfNull++;
×
2331
    if (pColData->numOfNone) {
×
2332
      SET_BIT1(pColData->pBitMap, pColData->nVal - 1, 1);
×
2333
    } else {
2334
      pColData->flag = HAS_NULL;
×
2335
    }
2336
  }
2337
  return 0;
×
2338
}
2339
static FORCE_INLINE int32_t tColDataUpdateValue40(SColData *pColData, uint8_t *pData, uint32_t nData, bool forward) {
×
2340
  if (forward) {  // VALUE ==> VALUE
×
2341
    pColData->nVal--;
×
2342
    if (IS_VAR_DATA_TYPE(pColData->type)) {
×
2343
      pColData->nData = pColData->aOffset[pColData->nVal];
×
2344
    } else {
2345
      pColData->nData -= TYPE_BYTES[pColData->type];
×
2346
    }
2347
    return tColDataPutValue(pColData, pData, nData);
×
2348
  }
2349
  return 0;
×
2350
}
2351
static FORCE_INLINE int32_t tColDataUpdateValue42(SColData *pColData, uint8_t *pData, uint32_t nData, bool forward) {
×
2352
  if (forward) {  // VALUE ==> NULL
×
2353
    pColData->numOfValue--;
×
2354
    pColData->nVal--;
×
2355
    if (pColData->numOfValue) {
×
2356
      if (IS_VAR_DATA_TYPE(pColData->type)) {
×
2357
        pColData->nData = pColData->aOffset[pColData->nVal];
×
2358
      } else {
2359
        pColData->nData -= TYPE_BYTES[pColData->type];
×
2360
      }
2361
      return tColDataAppendValue42(pColData, pData, nData);
×
2362
    } else {
2363
      pColData->flag = 0;
×
2364
      pColData->nData = 0;
×
2365
      return tColDataAppendValue02(pColData, pData, nData);
×
2366
    }
2367
  }
2368
  return 0;
×
2369
}
2370
static FORCE_INLINE int32_t tColDataUpdateValue50(SColData *pColData, uint8_t *pData, uint32_t nData, bool forward) {
×
2371
  if (GET_BIT1(pColData->pBitMap, pColData->nVal - 1) == 0) {  // NONE ==> VALUE
×
2372
    pColData->numOfNone--;
×
2373
    pColData->nVal--;
×
2374
    if (!IS_VAR_DATA_TYPE(pColData->type)) {
×
2375
      pColData->nData -= TYPE_BYTES[pColData->type];
×
2376
    }
2377
    if (pColData->numOfNone) {
×
2378
      return tColDataAppendValue50(pColData, pData, nData);
×
2379
    } else {
2380
      pColData->flag = HAS_VALUE;
×
2381
      return tColDataAppendValue40(pColData, pData, nData);
×
2382
    }
2383
  } else if (forward) {  // VALUE ==> VALUE
×
2384
    pColData->nVal--;
×
2385
    if (IS_VAR_DATA_TYPE(pColData->type)) {
×
2386
      pColData->nData = pColData->aOffset[pColData->nVal];
×
2387
    } else {
2388
      pColData->nData -= TYPE_BYTES[pColData->type];
×
2389
    }
2390
    return tColDataPutValue(pColData, pData, nData);
×
2391
  }
2392
  return 0;
×
2393
}
2394
static FORCE_INLINE int32_t tColDataUpdateValue52(SColData *pColData, uint8_t *pData, uint32_t nData, bool forward) {
×
2395
  if (GET_BIT1(pColData->pBitMap, pColData->nVal - 1) == 0) {  // NONE ==> NULL
×
2396
    pColData->numOfNone--;
×
2397
    pColData->nVal--;
×
2398
    if (!IS_VAR_DATA_TYPE(pColData->type)) {
×
2399
      pColData->nData -= TYPE_BYTES[pColData->type];
×
2400
    }
2401
    if (pColData->numOfNone) {
×
2402
      return tColDataAppendValue52(pColData, pData, nData);
×
2403
    } else {
2404
      pColData->flag = HAS_VALUE;
×
2405
      return tColDataAppendValue42(pColData, pData, nData);
×
2406
    }
2407
  } else if (forward) {  // VALUE ==> NULL
×
2408
    pColData->numOfValue--;
×
2409
    pColData->nVal--;
×
2410
    if (pColData->numOfValue) {
×
2411
      if (IS_VAR_DATA_TYPE(pColData->type)) {
×
2412
        pColData->nData = pColData->aOffset[pColData->nVal];
×
2413
      } else {
2414
        pColData->nData -= TYPE_BYTES[pColData->type];
×
2415
      }
2416
      return tColDataAppendValue52(pColData, pData, nData);
×
2417
    } else {
2418
      pColData->flag = HAS_NONE;
×
2419
      pColData->nData = 0;
×
2420
      return tColDataAppendValue12(pColData, pData, nData);
×
2421
    }
2422
  }
2423
  return 0;
×
2424
}
2425
static FORCE_INLINE int32_t tColDataUpdateValue60(SColData *pColData, uint8_t *pData, uint32_t nData, bool forward) {
×
2426
  if (forward) {
×
2427
    if (GET_BIT1(pColData->pBitMap, pColData->nVal - 1) == 0) {  // NULL ==> VALUE
×
2428
      pColData->numOfNull--;
×
2429
      pColData->nVal--;
×
2430
      if (!IS_VAR_DATA_TYPE(pColData->type)) {
×
2431
        pColData->nData -= TYPE_BYTES[pColData->type];
×
2432
      }
2433
      if (pColData->numOfNull) {
×
2434
        return tColDataAppendValue60(pColData, pData, nData);
×
2435
      } else {
2436
        pColData->flag = HAS_VALUE;
×
2437
        return tColDataAppendValue40(pColData, pData, nData);
×
2438
      }
2439
    } else {  // VALUE ==> VALUE
2440
      pColData->nVal--;
×
2441
      if (IS_VAR_DATA_TYPE(pColData->type)) {
×
2442
        pColData->nData = pColData->aOffset[pColData->nVal];
×
2443
      } else {
2444
        pColData->nData -= TYPE_BYTES[pColData->type];
×
2445
      }
2446
      return tColDataPutValue(pColData, pData, nData);
×
2447
    }
2448
  }
2449
  return 0;
×
2450
}
2451
static FORCE_INLINE int32_t tColDataUpdateValue62(SColData *pColData, uint8_t *pData, uint32_t nData, bool forward) {
×
2452
  if (forward && (GET_BIT1(pColData->pBitMap, pColData->nVal - 1) == 1)) {  // VALUE ==> NULL
×
2453
    pColData->numOfValue--;
×
2454
    pColData->nVal--;
×
2455
    if (pColData->numOfValue) {
×
2456
      if (IS_VAR_DATA_TYPE(pColData->type)) {
×
2457
        pColData->nData = pColData->aOffset[pColData->nVal];
×
2458
      } else {
2459
        pColData->nData -= TYPE_BYTES[pColData->type];
×
2460
      }
2461
      return tColDataAppendValue62(pColData, pData, nData);
×
2462
    } else {
2463
      pColData->flag = HAS_NULL;
×
2464
      pColData->nData = 0;
×
2465
      return tColDataAppendValue20(pColData, pData, nData);
×
2466
    }
2467
  }
2468
  return 0;
×
2469
}
2470
static FORCE_INLINE int32_t tColDataUpdateValue70(SColData *pColData, uint8_t *pData, uint32_t nData, bool forward) {
×
2471
  int32_t code = 0;
×
2472

2473
  uint8_t bv = GET_BIT2(pColData->pBitMap, pColData->nVal - 1);
×
2474
  if (bv == 0) {  // NONE ==> VALUE
×
2475
    pColData->numOfNone--;
×
2476
    pColData->nVal--;
×
2477
    if (!IS_VAR_DATA_TYPE(pColData->type)) {
×
2478
      pColData->nData -= TYPE_BYTES[pColData->type];
×
2479
    }
2480
    if (pColData->numOfNone) {
×
2481
      return tColDataAppendValue70(pColData, pData, nData);
×
2482
    } else {
2483
      for (int32_t iVal = 0; iVal < pColData->nVal; ++iVal) {
×
2484
        SET_BIT1(pColData->pBitMap, iVal, GET_BIT2(pColData->pBitMap, iVal) - 1);
×
2485
      }
2486
      pColData->flag = (HAS_VALUE | HAS_NULL);
×
2487
      return tColDataAppendValue60(pColData, pData, nData);
×
2488
    }
2489
  } else if (bv == 1) {  // NULL ==> VALUE
×
2490
    if (forward) {
×
2491
      pColData->numOfNull--;
×
2492
      pColData->nVal--;
×
2493
      if (!IS_VAR_DATA_TYPE(pColData->type)) {
×
2494
        pColData->nData -= TYPE_BYTES[pColData->type];
×
2495
      }
2496
      if (pColData->numOfNull) {
×
2497
        return tColDataAppendValue70(pColData, pData, nData);
×
2498
      } else {
2499
        for (int32_t iVal = 0; iVal < pColData->nVal; ++iVal) {
×
2500
          SET_BIT1(pColData->pBitMap, iVal, GET_BIT2(pColData->pBitMap, iVal) ? 1 : 0);
×
2501
        }
2502
        pColData->flag = (HAS_VALUE | HAS_NONE);
×
2503
        return tColDataAppendValue50(pColData, pData, nData);
×
2504
      }
2505
    }
2506
  } else if (bv == 2) {  // VALUE ==> VALUE
×
2507
    if (forward) {
×
2508
      pColData->nVal--;
×
2509
      if (IS_VAR_DATA_TYPE(pColData->type)) {
×
2510
        pColData->nData = pColData->aOffset[pColData->nVal];
×
2511
      } else {
2512
        pColData->nData -= TYPE_BYTES[pColData->type];
×
2513
      }
2514
      return tColDataPutValue(pColData, pData, nData);
×
2515
    }
2516
  } else {
2517
    return TSDB_CODE_INVALID_PARA;
×
2518
  }
2519
  return 0;
×
2520
}
2521
static int32_t tColDataUpdateValue72(SColData *pColData, uint8_t *pData, uint32_t nData, bool forward) {
×
2522
  uint8_t bv = GET_BIT2(pColData->pBitMap, pColData->nVal - 1);
×
2523
  if (bv == 0) {  // NONE ==> NULL
×
2524
    pColData->numOfNone--;
×
2525
    pColData->nVal--;
×
2526
    if (!IS_VAR_DATA_TYPE(pColData->type)) {
×
2527
      pColData->nData -= TYPE_BYTES[pColData->type];
×
2528
    }
2529
    if (pColData->numOfNone) {
×
2530
      return tColDataAppendValue72(pColData, pData, nData);
×
2531
    } else {
2532
      for (int32_t iVal = 0; iVal < pColData->nVal; ++iVal) {
×
2533
        SET_BIT1(pColData->pBitMap, iVal, GET_BIT2(pColData->pBitMap, iVal) - 1);
×
2534
      }
2535
      pColData->flag = (HAS_VALUE | HAS_NULL);
×
2536
      return tColDataAppendValue62(pColData, pData, nData);
×
2537
    }
2538
  } else if (bv == 2 && forward) {  // VALUE ==> NULL
×
2539
    pColData->numOfValue--;
×
2540
    pColData->nVal--;
×
2541
    if (pColData->numOfValue) {
×
2542
      if (IS_VAR_DATA_TYPE(pColData->type)) {
×
2543
        pColData->nData = pColData->aOffset[pColData->nVal];
×
2544
      } else {
2545
        pColData->nData -= TYPE_BYTES[pColData->type];
×
2546
      }
2547
      return tColDataAppendValue72(pColData, pData, nData);
×
2548
    } else {
2549
      for (int32_t iVal = 0; iVal < pColData->nVal; ++iVal) {
×
2550
        SET_BIT1(pColData->pBitMap, iVal, GET_BIT2(pColData->pBitMap, iVal));
×
2551
      }
2552
      pColData->flag = (HAS_NULL | HAS_NONE);
×
2553
      pColData->nData = 0;
×
2554
      return tColDataAppendValue32(pColData, pData, nData);
×
2555
    }
2556
  }
2557
  return 0;
×
2558
}
2559
static FORCE_INLINE int32_t tColDataUpdateNothing(SColData *pColData, uint8_t *pData, uint32_t nData, bool forward) {
×
2560
  return 0;
×
2561
}
2562
static int32_t (*tColDataUpdateValueImpl[8][3])(SColData *pColData, uint8_t *pData, uint32_t nData, bool forward) = {
2563
    {NULL, NULL, NULL},                                                     // 0
2564
    {tColDataUpdateValue10, tColDataUpdateNothing, tColDataUpdateValue12},  // HAS_NONE
2565
    {tColDataUpdateValue20, tColDataUpdateNothing, tColDataUpdateNothing},  // HAS_NULL
2566
    {tColDataUpdateValue30, tColDataUpdateNothing, tColDataUpdateValue32},  // HAS_NULL|HAS_NONE
2567
    {tColDataUpdateValue40, tColDataUpdateNothing, tColDataUpdateValue42},  // HAS_VALUE
2568
    {tColDataUpdateValue50, tColDataUpdateNothing, tColDataUpdateValue52},  // HAS_VALUE|HAS_NONE
2569
    {tColDataUpdateValue60, tColDataUpdateNothing, tColDataUpdateValue62},  // HAS_VALUE|HAS_NULL
2570
    {tColDataUpdateValue70, tColDataUpdateNothing, tColDataUpdateValue72},  // HAS_VALUE|HAS_NULL|HAS_NONE
2571

2572
    //    VALUE             NONE        NULL
2573
};
2574
int32_t tColDataUpdateValue(SColData *pColData, SColVal *pColVal, bool forward) {
×
2575
  if (!(pColData->cid == pColVal->cid && pColData->type == pColVal->value.type)) return TSDB_CODE_INVALID_PARA;
×
2576
  if (!(pColData->nVal > 0)) return TSDB_CODE_INVALID_PARA;
×
2577

2578
  if (tColDataUpdateValueImpl[pColData->flag][pColVal->flag] == NULL) return 0;
×
2579

2580
  return tColDataUpdateValueImpl[pColData->flag][pColVal->flag](
×
2581
      pColData, VALUE_GET_DATUM(&pColVal->value, pColData->type), pColVal->value.nData, forward);
×
2582
}
2583

2584
static FORCE_INLINE void tColDataGetValue1(SColData *pColData, int32_t iVal, SColVal *pColVal) {  // HAS_NONE
×
2585
  *pColVal = COL_VAL_NONE(pColData->cid, pColData->type);
×
2586
}
×
2587
static FORCE_INLINE void tColDataGetValue2(SColData *pColData, int32_t iVal, SColVal *pColVal) {  // HAS_NULL
×
2588
  *pColVal = COL_VAL_NULL(pColData->cid, pColData->type);
×
2589
}
×
2590
static FORCE_INLINE void tColDataGetValue3(SColData *pColData, int32_t iVal,
×
2591
                                           SColVal *pColVal) {  // HAS_NULL|HAS_NONE
2592
  switch (GET_BIT1(pColData->pBitMap, iVal)) {
×
2593
    case 0:
×
2594
      *pColVal = COL_VAL_NONE(pColData->cid, pColData->type);
×
2595
      break;
×
2596
    case 1:
×
2597
      *pColVal = COL_VAL_NULL(pColData->cid, pColData->type);
×
2598
      break;
×
2599
    default:
×
2600
      break;
×
2601
  }
2602
}
×
2603
static FORCE_INLINE void tColDataGetValue4(SColData *pColData, int32_t iVal, SColVal *pColVal) {  // HAS_VALUE
×
2604
  SValue value = {.type = pColData->type};
×
2605
  if (IS_VAR_DATA_TYPE(pColData->type)) {
×
2606
    if (iVal + 1 < pColData->nVal) {
×
2607
      value.nData = pColData->aOffset[iVal + 1] - pColData->aOffset[iVal];
×
2608
    } else {
2609
      value.nData = pColData->nData - pColData->aOffset[iVal];
×
2610
    }
2611
    value.pData = pColData->pData + pColData->aOffset[iVal];
×
2612
  } else {
2613
    valueSetDatum(&value, pColData->type, pColData->pData + tDataTypes[pColData->type].bytes * iVal,
×
2614
                  tDataTypes[pColData->type].bytes);
×
2615
  }
2616
  *pColVal = COL_VAL_VALUE(pColData->cid, value);
×
2617
}
×
2618
static FORCE_INLINE void tColDataGetValue5(SColData *pColData, int32_t iVal,
×
2619
                                           SColVal *pColVal) {  // HAS_VALUE|HAS_NONE
2620
  switch (GET_BIT1(pColData->pBitMap, iVal)) {
×
2621
    case 0:
×
2622
      *pColVal = COL_VAL_NONE(pColData->cid, pColData->type);
×
2623
      break;
×
2624
    case 1:
×
2625
      tColDataGetValue4(pColData, iVal, pColVal);
2626
      break;
×
2627
    default:
×
2628
      break;
×
2629
  }
2630
}
×
2631
static FORCE_INLINE void tColDataGetValue6(SColData *pColData, int32_t iVal,
×
2632
                                           SColVal *pColVal) {  // HAS_VALUE|HAS_NULL
2633
  switch (GET_BIT1(pColData->pBitMap, iVal)) {
×
2634
    case 0:
×
2635
      *pColVal = COL_VAL_NULL(pColData->cid, pColData->type);
×
2636
      break;
×
2637
    case 1:
×
2638
      tColDataGetValue4(pColData, iVal, pColVal);
2639
      break;
×
2640
    default:
×
2641
      break;
×
2642
  }
2643
}
×
2644
static FORCE_INLINE void tColDataGetValue7(SColData *pColData, int32_t iVal,
×
2645
                                           SColVal *pColVal) {  // HAS_VALUE|HAS_NULL|HAS_NONE
2646
  switch (GET_BIT2(pColData->pBitMap, iVal)) {
×
2647
    case 0:
×
2648
      *pColVal = COL_VAL_NONE(pColData->cid, pColData->type);
×
2649
      break;
×
2650
    case 1:
×
2651
      *pColVal = COL_VAL_NULL(pColData->cid, pColData->type);
×
2652
      break;
×
2653
    case 2:
×
2654
      tColDataGetValue4(pColData, iVal, pColVal);
2655
      break;
×
2656
    default:
×
2657
      break;
×
2658
  }
2659
}
×
2660
static void (*tColDataGetValueImpl[])(SColData *pColData, int32_t iVal, SColVal *pColVal) = {
2661
    NULL,               // 0
2662
    tColDataGetValue1,  // HAS_NONE
2663
    tColDataGetValue2,  // HAS_NULL
2664
    tColDataGetValue3,  // HAS_NULL | HAS_NONE
2665
    tColDataGetValue4,  // HAS_VALUE
2666
    tColDataGetValue5,  // HAS_VALUE | HAS_NONE
2667
    tColDataGetValue6,  // HAS_VALUE | HAS_NULL
2668
    tColDataGetValue7   // HAS_VALUE | HAS_NULL | HAS_NONE
2669
};
2670
int32_t tColDataGetValue(SColData *pColData, int32_t iVal, SColVal *pColVal) {
3✔
2671
  if (iVal < 0 || iVal >= pColData->nVal ||
3!
2672
      (pColData->flag <= 0 || pColData->flag >= sizeof(tColDataGetValueImpl) / POINTER_BYTES)) {
1!
2673
    return TSDB_CODE_INVALID_PARA;
3✔
2674
  }
2675
  tColDataGetValueImpl[pColData->flag](pColData, iVal, pColVal);
×
2676
  return TSDB_CODE_SUCCESS;
×
2677
}
2678

2679
uint8_t tColDataGetBitValue(const SColData *pColData, int32_t iVal) {
×
2680
  switch (pColData->flag) {
×
2681
    case HAS_NONE:
×
2682
      return 0;
×
2683
    case HAS_NULL:
×
2684
      return 1;
×
2685
    case (HAS_NULL | HAS_NONE):
×
2686
      return GET_BIT1(pColData->pBitMap, iVal);
×
2687
    case HAS_VALUE:
×
2688
      return 2;
×
2689
    case (HAS_VALUE | HAS_NONE):
×
2690
      return (GET_BIT1(pColData->pBitMap, iVal)) ? 2 : 0;
×
2691
    case (HAS_VALUE | HAS_NULL):
×
2692
      return GET_BIT1(pColData->pBitMap, iVal) + 1;
×
2693
    case (HAS_VALUE | HAS_NULL | HAS_NONE):
×
2694
      return GET_BIT2(pColData->pBitMap, iVal);
×
2695
    default:
×
2696
      return 0;
×
2697
  }
2698
}
2699

2700
int32_t tColDataCopy(SColData *pColDataFrom, SColData *pColData, xMallocFn xMalloc, void *arg) {
×
2701
  int32_t code = 0;
×
2702

2703
  *pColData = *pColDataFrom;
×
2704

2705
  // bitmap
2706
  switch (pColData->flag) {
×
2707
    case (HAS_NULL | HAS_NONE):
×
2708
    case (HAS_VALUE | HAS_NONE):
2709
    case (HAS_VALUE | HAS_NULL):
2710
      pColData->pBitMap = xMalloc(arg, BIT1_SIZE(pColData->nVal));
×
2711
      if (pColData->pBitMap == NULL) {
×
2712
        code = TSDB_CODE_OUT_OF_MEMORY;
×
2713
        goto _exit;
×
2714
      }
2715
      (void)memcpy(pColData->pBitMap, pColDataFrom->pBitMap, BIT1_SIZE(pColData->nVal));
×
2716
      break;
×
2717
    case (HAS_VALUE | HAS_NULL | HAS_NONE):
×
2718
      pColData->pBitMap = xMalloc(arg, BIT2_SIZE(pColData->nVal));
×
2719
      if (pColData->pBitMap == NULL) {
×
2720
        code = TSDB_CODE_OUT_OF_MEMORY;
×
2721
        goto _exit;
×
2722
      }
2723
      (void)memcpy(pColData->pBitMap, pColDataFrom->pBitMap, BIT2_SIZE(pColData->nVal));
×
2724
      break;
×
2725
    default:
×
2726
      pColData->pBitMap = NULL;
×
2727
      break;
×
2728
  }
2729

2730
  // offset
2731
  if (IS_VAR_DATA_TYPE(pColData->type) && (pColData->flag & HAS_VALUE)) {
×
2732
    pColData->aOffset = xMalloc(arg, pColData->nVal << 2);
×
2733
    if (pColData->aOffset == NULL) {
×
2734
      code = TSDB_CODE_OUT_OF_MEMORY;
×
2735
      goto _exit;
×
2736
    }
2737
    (void)memcpy(pColData->aOffset, pColDataFrom->aOffset, pColData->nVal << 2);
×
2738
  } else {
2739
    pColData->aOffset = NULL;
×
2740
  }
2741

2742
  // value
2743
  if (pColData->nData) {
×
2744
    pColData->pData = xMalloc(arg, pColData->nData);
×
2745
    if (pColData->pData == NULL) {
×
2746
      code = TSDB_CODE_OUT_OF_MEMORY;
×
2747
      goto _exit;
×
2748
    }
2749

2750
    (void)memcpy(pColData->pData, pColDataFrom->pData, pColData->nData);
×
2751
  } else {
2752
    pColData->pData = NULL;
×
2753
  }
2754

2755
_exit:
×
2756
  return code;
×
2757
}
2758

2759
int32_t tColDataCompress(SColData *colData, SColDataCompressInfo *info, SBuffer *output, SBuffer *assist) {
×
2760
  int32_t code;
2761
  SBuffer local;
2762

2763
  if (!(colData->nVal > 0)) {
×
2764
    return TSDB_CODE_INVALID_PARA;
×
2765
  }
2766

2767
  (*info) = (SColDataCompressInfo){
×
2768
      .cmprAlg = info->cmprAlg,
×
2769
      .columnFlag = colData->cflag,
×
2770
      .flag = colData->flag,
×
2771
      .dataType = colData->type,
×
2772
      .columnId = colData->cid,
×
2773
      .numOfData = colData->nVal,
×
2774
  };
2775

2776
  if (colData->flag == HAS_NONE || colData->flag == HAS_NULL) {
×
2777
    return 0;
×
2778
  }
2779

2780
  tBufferInit(&local);
2781
  if (assist == NULL) {
×
2782
    assist = &local;
×
2783
  }
2784

2785
  // bitmap
2786
  if (colData->flag != HAS_VALUE) {
×
2787
    if (colData->flag == (HAS_NONE | HAS_NULL | HAS_VALUE)) {
×
2788
      info->bitmapOriginalSize = BIT2_SIZE(colData->nVal);
×
2789
    } else {
2790
      info->bitmapOriginalSize = BIT1_SIZE(colData->nVal);
×
2791
    }
2792

2793
    SCompressInfo cinfo = {
×
2794
        .dataType = TSDB_DATA_TYPE_TINYINT,
2795
        .cmprAlg = info->cmprAlg,
×
2796
        .originalSize = info->bitmapOriginalSize,
×
2797
    };
2798

2799
    code = tCompressDataToBuffer(colData->pBitMap, &cinfo, output, assist);
×
2800
    if (code) {
×
2801
      tBufferDestroy(&local);
2802
      return code;
×
2803
    }
2804

2805
    info->bitmapCompressedSize = cinfo.compressedSize;
×
2806
  }
2807

2808
  if (colData->flag == (HAS_NONE | HAS_NULL)) {
×
2809
    tBufferDestroy(&local);
2810
    return 0;
×
2811
  }
2812

2813
  // offset
2814
  if (IS_VAR_DATA_TYPE(colData->type)) {
×
2815
    info->offsetOriginalSize = sizeof(int32_t) * info->numOfData;
×
2816

2817
    SCompressInfo cinfo = {
×
2818
        .dataType = TSDB_DATA_TYPE_INT,
2819
        .cmprAlg = info->cmprAlg,
×
2820
        .originalSize = info->offsetOriginalSize,
×
2821
    };
2822

2823
    code = tCompressDataToBuffer(colData->aOffset, &cinfo, output, assist);
×
2824
    if (code) {
×
2825
      tBufferDestroy(&local);
2826
      return code;
×
2827
    }
2828

2829
    info->offsetCompressedSize = cinfo.compressedSize;
×
2830
  }
2831

2832
  // data
2833
  if (colData->nData > 0) {
×
2834
    info->dataOriginalSize = colData->nData;
×
2835

2836
    SCompressInfo cinfo = {
×
2837
        .dataType = colData->type,
×
2838
        .cmprAlg = info->cmprAlg,
×
2839
        .originalSize = info->dataOriginalSize,
×
2840
    };
2841

2842
    code = tCompressDataToBuffer(colData->pData, &cinfo, output, assist);
×
2843
    if (code) {
×
2844
      tBufferDestroy(&local);
2845
      return code;
×
2846
    }
2847

2848
    info->dataCompressedSize = cinfo.compressedSize;
×
2849
  }
2850

2851
  tBufferDestroy(&local);
2852
  return 0;
×
2853
}
2854

2855
int32_t tColDataDecompress(void *input, SColDataCompressInfo *info, SColData *colData, SBuffer *assist) {
×
2856
  int32_t  code;
2857
  SBuffer  local;
2858
  uint8_t *data = (uint8_t *)input;
×
2859

2860
  tBufferInit(&local);
2861
  if (assist == NULL) {
×
2862
    assist = &local;
×
2863
  }
2864

2865
  tColDataClear(colData);
×
2866
  colData->cid = info->columnId;
×
2867
  colData->type = info->dataType;
×
2868
  colData->cflag = info->columnFlag;
×
2869
  colData->nVal = info->numOfData;
×
2870
  colData->flag = info->flag;
×
2871

2872
  if (info->flag == HAS_NONE || info->flag == HAS_NULL) {
×
2873
    goto _exit;
×
2874
  }
2875

2876
  // bitmap
2877
  if (info->bitmapOriginalSize > 0) {
×
2878
    SCompressInfo cinfo = {
×
2879
        .dataType = TSDB_DATA_TYPE_TINYINT,
2880
        .cmprAlg = info->cmprAlg,
×
2881
        .originalSize = info->bitmapOriginalSize,
×
2882
        .compressedSize = info->bitmapCompressedSize,
×
2883
    };
2884

2885
    code = tRealloc(&colData->pBitMap, cinfo.originalSize);
×
2886
    if (code) {
×
2887
      tBufferDestroy(&local);
2888
      return code;
×
2889
    }
2890

2891
    code = tDecompressData(data, &cinfo, colData->pBitMap, cinfo.originalSize, assist);
×
2892
    if (code) {
×
2893
      tBufferDestroy(&local);
2894
      return code;
×
2895
    }
2896

2897
    data += cinfo.compressedSize;
×
2898
  }
2899

2900
  if (info->flag == (HAS_NONE | HAS_NULL)) {
×
2901
    goto _exit;
×
2902
  }
2903

2904
  // offset
2905
  if (info->offsetOriginalSize > 0) {
×
2906
    SCompressInfo cinfo = {
×
2907
        .cmprAlg = info->cmprAlg,
×
2908
        .dataType = TSDB_DATA_TYPE_INT,
2909
        .originalSize = info->offsetOriginalSize,
×
2910
        .compressedSize = info->offsetCompressedSize,
×
2911
    };
2912

2913
    code = tRealloc((uint8_t **)&colData->aOffset, cinfo.originalSize);
×
2914
    if (code) {
×
2915
      tBufferDestroy(&local);
2916
      return code;
×
2917
    }
2918

2919
    code = tDecompressData(data, &cinfo, colData->aOffset, cinfo.originalSize, assist);
×
2920
    if (code) {
×
2921
      tBufferDestroy(&local);
2922
      return code;
×
2923
    }
2924

2925
    data += cinfo.compressedSize;
×
2926
  }
2927

2928
  // data
2929
  if (info->dataOriginalSize > 0) {
×
2930
    colData->nData = info->dataOriginalSize;
×
2931

2932
    SCompressInfo cinfo = {
×
2933
        .cmprAlg = info->cmprAlg,
×
2934
        .dataType = colData->type,
×
2935
        .originalSize = info->dataOriginalSize,
×
2936
        .compressedSize = info->dataCompressedSize,
×
2937
    };
2938

2939
    code = tRealloc((uint8_t **)&colData->pData, cinfo.originalSize);
×
2940
    if (code) {
×
2941
      tBufferDestroy(&local);
2942
      return code;
×
2943
    }
2944

2945
    code = tDecompressData(data, &cinfo, colData->pData, cinfo.originalSize, assist);
×
2946
    if (code) {
×
2947
      tBufferDestroy(&local);
2948
      return code;
×
2949
    }
2950

2951
    data += cinfo.compressedSize;
×
2952
  }
2953

2954
_exit:
×
2955
  switch (colData->flag) {
×
2956
    case HAS_NONE:
×
2957
      colData->numOfNone = colData->nVal;
×
2958
      break;
×
2959
    case HAS_NULL:
×
2960
      colData->numOfNull = colData->nVal;
×
2961
      break;
×
2962
    case HAS_VALUE:
×
2963
      colData->numOfValue = colData->nVal;
×
2964
      break;
×
2965
    default:
×
2966
      for (int32_t i = 0; i < colData->nVal; i++) {
×
2967
        uint8_t bitValue = tColDataGetBitValue(colData, i);
×
2968
        if (bitValue == 0) {
×
2969
          colData->numOfNone++;
×
2970
        } else if (bitValue == 1) {
×
2971
          colData->numOfNull++;
×
2972
        } else {
2973
          colData->numOfValue++;
×
2974
        }
2975
      }
2976
  }
2977
  tBufferDestroy(&local);
2978
  return 0;
×
2979
}
2980

2981
int32_t tColDataAddValueByDataBlock(SColData *pColData, int8_t type, int32_t bytes, int32_t nRows, char *lengthOrbitmap,
×
2982
                                    char *data) {
2983
  int32_t code = 0;
×
2984
  if (data == NULL) {
×
2985
    if (pColData->cflag & COL_IS_KEY) {
×
2986
      code = TSDB_CODE_PAR_PRIMARY_KEY_IS_NULL;
×
2987
    } else {
2988
      for (int32_t i = 0; i < nRows; ++i) {
×
2989
        code = tColDataAppendValueImpl[pColData->flag][CV_FLAG_NONE](pColData, NULL, 0);
×
2990
      }
2991
    }
2992
    goto _exit;
×
2993
  }
2994

2995
  if (IS_VAR_DATA_TYPE(type)) {  // var-length data type
×
2996
    for (int32_t i = 0; i < nRows; ++i) {
×
2997
      int32_t offset = *((int32_t *)lengthOrbitmap + i);
×
2998
      if (offset == -1) {
×
2999
        if (pColData->cflag & COL_IS_KEY) {
×
3000
          code = TSDB_CODE_PAR_PRIMARY_KEY_IS_NULL;
×
3001
          goto _exit;
×
3002
        }
3003
        if ((code = tColDataAppendValueImpl[pColData->flag][CV_FLAG_NULL](pColData, NULL, 0))) {
×
3004
          goto _exit;
×
3005
        }
3006
      } else {
3007
        if (varDataTLen(data + offset) > bytes) {
×
3008
          uError("var data length invalid, varDataTLen(data + offset):%d > bytes:%d", (int)varDataTLen(data + offset),
×
3009
                 bytes);
3010
          code = TSDB_CODE_PAR_VALUE_TOO_LONG;
×
3011
          goto _exit;
×
3012
        }
3013
        code = tColDataAppendValueImpl[pColData->flag][CV_FLAG_VALUE](pColData, (uint8_t *)varDataVal(data + offset),
×
3014
                                                                      varDataLen(data + offset));
×
3015
      }
3016
    }
3017
  } else {  // fixed-length data type
3018
    bool allValue = true;
×
3019
    bool allNull = true;
×
3020
    for (int32_t i = 0; i < nRows; ++i) {
×
3021
      if (!colDataIsNull_f(lengthOrbitmap, i)) {
×
3022
        allNull = false;
×
3023
      } else {
3024
        allValue = false;
×
3025
      }
3026
    }
3027
    if ((pColData->cflag & COL_IS_KEY) && !allValue) {
×
3028
      code = TSDB_CODE_PAR_PRIMARY_KEY_IS_NULL;
×
3029
      goto _exit;
×
3030
    }
3031

3032
    if (allValue) {
×
3033
      // optimize (todo)
3034
      for (int32_t i = 0; i < nRows; ++i) {
×
3035
        code = tColDataAppendValueImpl[pColData->flag][CV_FLAG_VALUE](pColData, (uint8_t *)data + bytes * i, bytes);
×
3036
      }
3037
    } else if (allNull) {
×
3038
      // optimize (todo)
3039
      for (int32_t i = 0; i < nRows; ++i) {
×
3040
        code = tColDataAppendValueImpl[pColData->flag][CV_FLAG_NULL](pColData, NULL, 0);
×
3041
        if (code) goto _exit;
×
3042
      }
3043
    } else {
3044
      for (int32_t i = 0; i < nRows; ++i) {
×
3045
        if (colDataIsNull_f(lengthOrbitmap, i)) {
×
3046
          code = tColDataAppendValueImpl[pColData->flag][CV_FLAG_NULL](pColData, NULL, 0);
×
3047
          if (code) goto _exit;
×
3048
        } else {
3049
          code = tColDataAppendValueImpl[pColData->flag][CV_FLAG_VALUE](pColData, (uint8_t *)data + bytes * i, bytes);
×
3050
        }
3051
      }
3052
    }
3053
  }
3054

3055
_exit:
×
3056
  return code;
×
3057
}
3058

3059
int32_t tColDataAddValueByBind(SColData *pColData, TAOS_MULTI_BIND *pBind, int32_t buffMaxLen, initGeosFn igeos,
235✔
3060
                               checkWKBGeometryFn cgeos) {
3061
  int32_t code = 0;
235✔
3062

3063
  if (!(pBind->num == 1 && pBind->is_null && *pBind->is_null)) {
235!
3064
    if (!(pColData->type == pBind->buffer_type)) {
235!
3065
      return TSDB_CODE_INVALID_PARA;
×
3066
    }
3067
  }
3068

3069
  if (IS_VAR_DATA_TYPE(pColData->type)) {  // var-length data type
235!
3070
    if (pColData->type == TSDB_DATA_TYPE_GEOMETRY) {
5✔
3071
      code = igeos();
3✔
3072
      if (code) {
3!
3073
        return code;
×
3074
      }
3075
    }
3076
    for (int32_t i = 0; i < pBind->num; ++i) {
11✔
3077
      if (pBind->is_null && pBind->is_null[i]) {
7!
3078
        if (pColData->cflag & COL_IS_KEY) {
×
3079
          code = TSDB_CODE_PAR_PRIMARY_KEY_IS_NULL;
×
3080
          goto _exit;
×
3081
        }
3082
        code = tColDataAppendValueImpl[pColData->flag][CV_FLAG_NULL](pColData, NULL, 0);
×
3083
        if (code) goto _exit;
×
3084
      } else if (pBind->length[i] > buffMaxLen) {
7!
3085
        return TSDB_CODE_PAR_VALUE_TOO_LONG;
×
3086
      } else {
3087
        if (pColData->type == TSDB_DATA_TYPE_GEOMETRY) {
7✔
3088
          code = cgeos((char *)pBind->buffer + pBind->buffer_length * i, (size_t)pBind->length[i]);
5✔
3089
          if (code) goto _exit;
5✔
3090
        }
3091
        code = tColDataAppendValueImpl[pColData->flag][CV_FLAG_VALUE](
6✔
3092
            pColData, (uint8_t *)pBind->buffer + pBind->buffer_length * i, pBind->length[i]);
6✔
3093
      }
3094
    }
3095
  } else {  // fixed-length data type
3096
    bool allValue;
3097
    bool allNull;
3098
    if (pBind->is_null) {
230!
3099
      bool same = (memcmp(pBind->is_null, pBind->is_null + 1, pBind->num - 1) == 0);
×
3100
      allNull = (same && pBind->is_null[0] != 0);
×
3101
      allValue = (same && pBind->is_null[0] == 0);
×
3102
    } else {
3103
      allNull = false;
230✔
3104
      allValue = true;
230✔
3105
    }
3106

3107
    if ((pColData->cflag & COL_IS_KEY) && !allValue) {
230!
3108
      code = TSDB_CODE_PAR_PRIMARY_KEY_IS_NULL;
×
3109
      goto _exit;
×
3110
    }
3111

3112
    if (allValue) {
230!
3113
      // optimize (todo)
3114
      for (int32_t i = 0; i < pBind->num; ++i) {
464✔
3115
        code = tColDataAppendValueImpl[pColData->flag][CV_FLAG_VALUE](
234✔
3116
            pColData, (uint8_t *)pBind->buffer + TYPE_BYTES[pColData->type] * i, pBind->buffer_length);
234✔
3117
      }
3118
    } else if (allNull) {
×
3119
      // optimize (todo)
3120
      for (int32_t i = 0; i < pBind->num; ++i) {
×
3121
        code = tColDataAppendValueImpl[pColData->flag][CV_FLAG_NULL](pColData, NULL, 0);
×
3122
        if (code) goto _exit;
×
3123
      }
3124
    } else {
3125
      for (int32_t i = 0; i < pBind->num; ++i) {
×
3126
        if (pBind->is_null[i]) {
×
3127
          code = tColDataAppendValueImpl[pColData->flag][CV_FLAG_NULL](pColData, NULL, 0);
×
3128
          if (code) goto _exit;
×
3129
        } else {
3130
          code = tColDataAppendValueImpl[pColData->flag][CV_FLAG_VALUE](
×
3131
              pColData, (uint8_t *)pBind->buffer + TYPE_BYTES[pColData->type] * i, pBind->buffer_length);
×
3132
        }
3133
      }
3134
    }
3135
  }
3136

3137
_exit:
×
3138
  return code;
235✔
3139
}
3140

3141
int32_t tColDataAddValueByBind2(SColData *pColData, TAOS_STMT2_BIND *pBind, int32_t buffMaxLen, initGeosFn igeos,
195✔
3142
                                checkWKBGeometryFn cgeos) {
3143
  int32_t code = 0;
195✔
3144

3145
  if (!(pBind->num == 1 && pBind->is_null && *pBind->is_null)) {
195!
3146
    if (!(pColData->type == pBind->buffer_type)) {
195!
3147
      return TSDB_CODE_INVALID_PARA;
×
3148
    }
3149
  }
3150

3151
  if (IS_VAR_DATA_TYPE(pColData->type)) {  // var-length data type
283!
3152
    if (pColData->type == TSDB_DATA_TYPE_GEOMETRY) {
89✔
3153
      code = igeos();
3✔
3154
      if (code) {
3!
3155
        return code;
×
3156
      }
3157
    }
3158

3159
    uint8_t *buf = pBind->buffer;
89✔
3160
    for (int32_t i = 0; i < pBind->num; ++i) {
347✔
3161
      if (pBind->is_null && pBind->is_null[i]) {
259!
3162
        if (pColData->cflag & COL_IS_KEY) {
×
3163
          code = TSDB_CODE_PAR_PRIMARY_KEY_IS_NULL;
×
3164
          goto _exit;
×
3165
        }
3166
        if (pBind->is_null[i] == 1) {
×
3167
          code = tColDataAppendValueImpl[pColData->flag][CV_FLAG_NULL](pColData, NULL, 0);
×
3168
          if (code) goto _exit;
×
3169
        } else {
3170
          code = tColDataAppendValueImpl[pColData->flag][CV_FLAG_NONE](pColData, NULL, 0);
×
3171
          if (code) goto _exit;
×
3172
        }
3173
      } else if (pBind->length[i] > buffMaxLen) {
259!
3174
        return TSDB_CODE_PAR_VALUE_TOO_LONG;
×
3175
      } else {
3176
        if (pColData->type == TSDB_DATA_TYPE_GEOMETRY) {
259✔
3177
          code = cgeos(buf, pBind->length[i]);
5✔
3178
          if (code) goto _exit;
5✔
3179
        }
3180
        code = tColDataAppendValueImpl[pColData->flag][CV_FLAG_VALUE](pColData, buf, pBind->length[i]);
258✔
3181
        buf += pBind->length[i];
258✔
3182
      }
3183
    }
3184
  } else {  // fixed-length data type
3185
    bool allValue;
3186
    bool allNull;
3187
    bool allNone;
3188
    if (pBind->is_null) {
106!
3189
      bool same = (memcmp(pBind->is_null, pBind->is_null + 1, pBind->num - 1) == 0);
×
3190
      allNull = (same && pBind->is_null[0] == 1);
×
3191
      allNone = (same && pBind->is_null[0] > 1);
×
3192
      allValue = (same && pBind->is_null[0] == 0);
×
3193
    } else {
3194
      allNull = false;
106✔
3195
      allNone = false;
106✔
3196
      allValue = true;
106✔
3197
    }
3198

3199
    if ((pColData->cflag & COL_IS_KEY) && !allValue) {
106!
3200
      code = TSDB_CODE_PAR_PRIMARY_KEY_IS_NULL;
×
3201
      goto _exit;
×
3202
    }
3203

3204
    if (allValue) {
106!
3205
      // optimize (todo)
3206
      for (int32_t i = 0; i < pBind->num; ++i) {
396✔
3207
        uint8_t *val = (uint8_t *)pBind->buffer + TYPE_BYTES[pColData->type] * i;
290✔
3208
        if (TSDB_DATA_TYPE_BOOL == pColData->type && *val > 1) {
290!
3209
          *val = 1;
1✔
3210
        }
3211

3212
        code = tColDataAppendValueImpl[pColData->flag][CV_FLAG_VALUE](pColData, val, TYPE_BYTES[pColData->type]);
290✔
3213
      }
3214
    } else if (allNull) {
×
3215
      // optimize (todo)
3216
      for (int32_t i = 0; i < pBind->num; ++i) {
×
3217
        code = tColDataAppendValueImpl[pColData->flag][CV_FLAG_NULL](pColData, NULL, 0);
×
3218
        if (code) goto _exit;
×
3219
      }
3220
    } else if (allNone) {
×
3221
      // optimize (todo)
3222
      for (int32_t i = 0; i < pBind->num; ++i) {
×
3223
        code = tColDataAppendValueImpl[pColData->flag][CV_FLAG_NONE](pColData, NULL, 0);
×
3224
        if (code) goto _exit;
×
3225
      }
3226
    } else {
3227
      for (int32_t i = 0; i < pBind->num; ++i) {
×
3228
        if (pBind->is_null[i]) {
×
3229
          if (pBind->is_null[i] == 1) {
×
3230
            code = tColDataAppendValueImpl[pColData->flag][CV_FLAG_NULL](pColData, NULL, 0);
×
3231
            if (code) goto _exit;
×
3232
          } else {
3233
            code = tColDataAppendValueImpl[pColData->flag][CV_FLAG_NONE](pColData, NULL, 0);
×
3234
            if (code) goto _exit;
×
3235
          }
3236
        } else {
3237
          uint8_t *val = (uint8_t *)pBind->buffer + TYPE_BYTES[pColData->type] * i;
×
3238
          if (TSDB_DATA_TYPE_BOOL == pColData->type && *val > 1) {
×
3239
            *val = 1;
×
3240
          }
3241

3242
          code = tColDataAppendValueImpl[pColData->flag][CV_FLAG_VALUE](pColData, val, TYPE_BYTES[pColData->type]);
×
3243
        }
3244
      }
3245
    }
3246
  }
3247

3248
_exit:
×
3249
  return code;
195✔
3250
}
3251

3252
/* build rows to `rowArray` from bind
3253
 * `infos` is the bind information array
3254
 * `numOfInfos` is the number of bind information
3255
 * `infoSorted` is whether the bind information is sorted by column id
3256
 * `pTSchema` is the schema of the table
3257
 * `rowArray` is the array to store the rows
3258
 * `pOrdered` is the pointer to store ordered
3259
 * `pDupTs` is the pointer to store duplicateTs
3260
 */
3261
int32_t tRowBuildFromBind2(SBindInfo2 *infos, int32_t numOfInfos, bool infoSorted, const STSchema *pTSchema,
67✔
3262
                           SArray *rowArray, bool *pOrdered, bool *pDupTs) {
3263
  if (infos == NULL || numOfInfos <= 0 || numOfInfos > pTSchema->numOfCols || pTSchema == NULL || rowArray == NULL) {
67!
3264
    return TSDB_CODE_INVALID_PARA;
×
3265
  }
3266

3267
  if (!infoSorted) {
67✔
3268
    taosqsort_r(infos, numOfInfos, sizeof(SBindInfo2), NULL, tBindInfoCompare);
1✔
3269
  }
3270

3271
  int32_t code = 0;
67✔
3272
  int32_t numOfRows = infos[0].bind->num;
67✔
3273
  SArray *colValArray, *bufArray;
3274
  SColVal colVal;
3275

3276
  if ((colValArray = taosArrayInit(numOfInfos, sizeof(SColVal))) == NULL) {
67!
3277
    return terrno;
×
3278
  }
3279
  if ((bufArray = taosArrayInit(numOfInfos, sizeof(uint8_t *))) == NULL) {
67!
3280
    taosArrayDestroy(colValArray);
×
3281
    return terrno;
×
3282
  }
3283
  for (int i = 0; i < numOfInfos; ++i) {
205✔
3284
    if (!taosArrayPush(bufArray, &infos[i].bind->buffer)) {
276!
3285
      taosArrayDestroy(colValArray);
×
3286
      taosArrayDestroy(bufArray);
×
3287
      return terrno;
×
3288
    }
3289
  }
3290

3291
  SRowKey rowKey, lastRowKey;
3292
  for (int32_t iRow = 0; iRow < numOfRows; iRow++) {
250✔
3293
    taosArrayClear(colValArray);
184✔
3294

3295
    for (int32_t iInfo = 0; iInfo < numOfInfos; iInfo++) {
572✔
3296
      if (infos[iInfo].bind->is_null && infos[iInfo].bind->is_null[iRow]) {
389✔
3297
        if (infos[iInfo].bind->is_null[iRow] == 1) {
1!
3298
          if(iInfo == 0) {
1!
3299
            code = TSDB_CODE_PAR_PRIMARY_KEY_IS_NULL;
1✔
3300
            goto _exit;
1✔
3301
          }
3302
          colVal = COL_VAL_NULL(infos[iInfo].columnId, infos[iInfo].type);
×
3303
        } else {
3304
          colVal = COL_VAL_NONE(infos[iInfo].columnId, infos[iInfo].type);
×
3305
        }
3306
      } else {
3307
        SValue value = {
388✔
3308
            .type = infos[iInfo].type,
388✔
3309
        };
3310
        if (IS_VAR_DATA_TYPE(infos[iInfo].type)) {
388!
3311
          int32_t   length = infos[iInfo].bind->length[iRow];
191✔
3312
          uint8_t **data = &((uint8_t **)TARRAY_DATA(bufArray))[iInfo];
191✔
3313
          value.nData = length;
191✔
3314
          if (value.nData > pTSchema->columns[iInfo].bytes - VARSTR_HEADER_SIZE) {
191!
3315
            code = TSDB_CODE_INVALID_PARA;
×
3316
            goto _exit;
×
3317
          }
3318
          value.pData = *data;
191✔
3319
          *data += length;
191✔
3320
          // value.pData = (uint8_t *)infos[iInfo].bind->buffer + infos[iInfo].bind->buffer_length * iRow;
3321
        } else {
3322
          uint8_t *val = (uint8_t *)infos[iInfo].bind->buffer + infos[iInfo].bytes * iRow;
197✔
3323
          if (TSDB_DATA_TYPE_BOOL == value.type && *val > 1) {
197✔
3324
            *val = 1;
1✔
3325
          }
3326
          valueSetDatum(&value, infos[iInfo].type, val, infos[iInfo].bytes);
197✔
3327
        }
3328
        colVal = COL_VAL_VALUE(infos[iInfo].columnId, value);
388✔
3329
      }
3330
      if (taosArrayPush(colValArray, &colVal) == NULL) {
388!
3331
        code = terrno;
×
3332
        goto _exit;
×
3333
      }
3334
    }
3335

3336
    SRow *row;
3337
    if ((code = tRowBuild(colValArray, pTSchema, &row))) {
183!
3338
      goto _exit;
×
3339
    }
3340

3341
    if ((taosArrayPush(rowArray, &row)) == NULL) {
183!
3342
      code = terrno;
×
3343
      goto _exit;
×
3344
    }
3345

3346
    if (pOrdered && pDupTs) {
183!
3347
      tRowGetKey(row, &rowKey);
366!
3348
      if (iRow == 0) {
183✔
3349
        *pOrdered = true;
66✔
3350
        *pDupTs = false;
66✔
3351
      } else {
3352
        // no more compare if we already get disordered or duplicate rows
3353
        if (*pOrdered && !*pDupTs) {
117!
3354
          int32_t code = tRowKeyCompare(&rowKey, &lastRowKey);
117✔
3355
          *pOrdered = (code >= 0);
117✔
3356
          *pDupTs = (code == 0);
117✔
3357
        }
3358
      }
3359
      lastRowKey = rowKey;
183✔
3360
    }
3361
  }
3362

3363
_exit:
66✔
3364
  taosArrayDestroy(colValArray);
67✔
3365
  taosArrayDestroy(bufArray);
67✔
3366
  return code;
67✔
3367
}
3368

3369
static int32_t tColDataCopyRowCell(SColData *pFromColData, int32_t iFromRow, SColData *pToColData, int32_t iToRow) {
×
3370
  int32_t code = TSDB_CODE_SUCCESS;
×
3371

3372
  if (IS_VAR_DATA_TYPE(pToColData->type)) {
×
3373
    int32_t nData = (iFromRow < pFromColData->nVal - 1)
×
3374
                        ? pFromColData->aOffset[iFromRow + 1] - pFromColData->aOffset[iFromRow]
×
3375
                        : pFromColData->nData - pFromColData->aOffset[iFromRow];
×
3376
    if (iToRow == 0) {
×
3377
      pToColData->aOffset[iToRow] = 0;
×
3378
    }
3379

3380
    if (iToRow < pToColData->nVal - 1) {
×
3381
      pToColData->aOffset[iToRow + 1] = pToColData->aOffset[iToRow] + nData;
×
3382
    }
3383

3384
    (void)memcpy(pToColData->pData + pToColData->aOffset[iToRow], pFromColData->pData + pFromColData->aOffset[iFromRow],
×
3385
                 nData);
3386
  } else {
3387
    (void)memcpy(&pToColData->pData[TYPE_BYTES[pToColData->type] * iToRow],
×
3388
                 &pFromColData->pData[TYPE_BYTES[pToColData->type] * iFromRow], TYPE_BYTES[pToColData->type]);
×
3389
  }
3390
  return code;
×
3391
}
3392

3393
static int32_t tColDataCopyRowSingleCol(SColData *pFromColData, int32_t iFromRow, SColData *pToColData,
×
3394
                                        int32_t iToRow) {
3395
  int32_t code = TSDB_CODE_SUCCESS;
×
3396

3397
  switch (pFromColData->flag) {
×
3398
    case HAS_NONE:
×
3399
    case HAS_NULL:
3400
      break;
×
3401
    case (HAS_NULL | HAS_NONE): {
×
3402
      SET_BIT1(pToColData->pBitMap, iToRow, GET_BIT1(pFromColData->pBitMap, iFromRow));
×
3403
    } break;
×
3404
    case HAS_VALUE: {
×
3405
      TAOS_CHECK_RETURN(tColDataCopyRowCell(pFromColData, iFromRow, pToColData, iToRow));
×
3406
    } break;
×
3407
    case (HAS_VALUE | HAS_NONE):
×
3408
    case (HAS_VALUE | HAS_NULL): {
3409
      SET_BIT1(pToColData->pBitMap, iToRow, GET_BIT1(pFromColData->pBitMap, iFromRow));
×
3410
      TAOS_CHECK_RETURN(tColDataCopyRowCell(pFromColData, iFromRow, pToColData, iToRow));
×
3411
    } break;
×
3412
    case (HAS_VALUE | HAS_NULL | HAS_NONE): {
×
3413
      SET_BIT2(pToColData->pBitMap, iToRow, GET_BIT2(pFromColData->pBitMap, iFromRow));
×
3414
      TAOS_CHECK_RETURN(tColDataCopyRowCell(pFromColData, iFromRow, pToColData, iToRow));
×
3415
    } break;
×
3416
    default:
×
3417
      return -1;
×
3418
  }
3419

3420
  return code;
×
3421
}
3422

3423
static int32_t tColDataCopyRow(SColData *aFromColData, int32_t iFromRow, SColData *aToColData, int32_t iToRow,
×
3424
                               int32_t nColData) {
3425
  int32_t code = TSDB_CODE_SUCCESS;
×
3426

3427
  for (int32_t i = 0; i < nColData; i++) {
×
3428
    code = tColDataCopyRowSingleCol(&aFromColData[i], iFromRow, &aToColData[i], iToRow);
×
3429
    if (code != TSDB_CODE_SUCCESS) {
×
3430
      return code;
×
3431
    }
3432
  }
3433

3434
  return code;
×
3435
}
3436

3437
static int32_t tColDataCopyRowAppend(SColData *aFromColData, int32_t iFromRow, SColData *aToColData, int32_t nColData) {
×
3438
  int32_t code = TSDB_CODE_SUCCESS;
×
3439

3440
  for (int32_t i = 0; i < nColData; i++) {
×
3441
    SColVal cv = {0};
×
3442
    code = tColDataGetValue(&aFromColData[i], iFromRow, &cv);
×
3443
    if (code != TSDB_CODE_SUCCESS) {
×
3444
      return code;
×
3445
    }
3446
    code = tColDataAppendValue(&aToColData[i], &cv);
×
3447
    if (code != TSDB_CODE_SUCCESS) {
×
3448
      return code;
×
3449
    }
3450
  }
3451

3452
  return code;
×
3453
}
3454

3455
void tColDataArrGetRowKey(SColData *aColData, int32_t nColData, int32_t iRow, SRowKey *key) {
648✔
3456
  SColVal cv;
3457

3458
  key->ts = ((TSKEY *)aColData[0].pData)[iRow];
648✔
3459
  key->numOfPKs = 0;
648✔
3460

3461
  for (int i = 1; i < nColData; i++) {
648!
3462
    if (aColData[i].cflag & COL_IS_KEY) {
648!
3463
      tColDataGetValue4(&aColData[i], iRow, &cv);
×
3464
      key->pks[key->numOfPKs++] = cv.value;
×
3465
    } else {
3466
      break;
648✔
3467
    }
3468
  }
3469
}
648✔
3470

3471
static int32_t tColDataMergeSortMerge(SColData *aColData, int32_t start, int32_t mid, int32_t end, int32_t nColData) {
×
3472
  SColData *aDstColData = NULL;
×
3473
  int32_t   i = start, j = mid + 1, k = 0;
×
3474
  SRowKey   keyi, keyj;
3475

3476
  if (end > start) {
×
3477
    aDstColData = taosMemoryCalloc(1, sizeof(SColData) * nColData);
×
3478
    if (aDstColData == NULL) {
×
3479
      return terrno;
×
3480
    }
3481
    for (int c = 0; c < nColData; ++c) {
×
3482
      tColDataInit(&aDstColData[c], aColData[c].cid, aColData[c].type, aColData[c].cflag);
×
3483
    }
3484
  }
3485

3486
  tColDataArrGetRowKey(aColData, nColData, i, &keyi);
×
3487
  tColDataArrGetRowKey(aColData, nColData, j, &keyj);
×
3488
  while (i <= mid && j <= end) {
×
3489
    if (tRowKeyCompare(&keyi, &keyj) <= 0) {
×
3490
      TAOS_CHECK_RETURN(tColDataCopyRowAppend(aColData, i++, aDstColData, nColData));
×
3491
      tColDataArrGetRowKey(aColData, nColData, i, &keyi);
×
3492
    } else {
3493
      TAOS_CHECK_RETURN(tColDataCopyRowAppend(aColData, j++, aDstColData, nColData));
×
3494
      tColDataArrGetRowKey(aColData, nColData, j, &keyj);
×
3495
    }
3496
  }
3497

3498
  while (i <= mid) {
×
3499
    TAOS_CHECK_RETURN(tColDataCopyRowAppend(aColData, i++, aDstColData, nColData));
×
3500
  }
3501

3502
  while (j <= end) {
×
3503
    TAOS_CHECK_RETURN(tColDataCopyRowAppend(aColData, j++, aDstColData, nColData));
×
3504
  }
3505

3506
  for (i = start, k = 0; i <= end; ++i, ++k) {
×
3507
    TAOS_CHECK_RETURN(tColDataCopyRow(aDstColData, k, aColData, i, nColData));
×
3508
  }
3509

3510
  if (aDstColData) {
×
3511
    for (int32_t i = 0; i < nColData; i++) {
×
3512
      tColDataDestroy(&aDstColData[i]);
×
3513
    }
3514
    taosMemoryFree(aDstColData);
×
3515
  }
3516

3517
  return TSDB_CODE_SUCCESS;
×
3518
}
3519

3520
static int32_t tColDataMergeSort(SColData *aColData, int32_t start, int32_t end, int32_t nColData) {
×
3521
  int32_t ret = TSDB_CODE_SUCCESS;
×
3522
  int32_t mid;
3523

3524
  if (start >= end) {
×
3525
    return TSDB_CODE_SUCCESS;
×
3526
  }
3527

3528
  mid = (start + end) / 2;
×
3529

3530
  ret = tColDataMergeSort(aColData, start, mid, nColData);
×
3531
  if (ret != TSDB_CODE_SUCCESS) {
×
3532
    return ret;
×
3533
  }
3534

3535
  ret = tColDataMergeSort(aColData, mid + 1, end, nColData);
×
3536
  if (ret != TSDB_CODE_SUCCESS) {
×
3537
    return ret;
×
3538
  }
3539

3540
  return tColDataMergeSortMerge(aColData, start, mid, end, nColData);
×
3541
}
3542

3543
static int32_t tColDataSort(SColData *aColData, int32_t nColData) {
×
3544
  int32_t nVal = aColData[0].nVal;
×
3545

3546
  if (nVal < 2) return TSDB_CODE_SUCCESS;
×
3547

3548
  return tColDataMergeSort(aColData, 0, nVal - 1, nColData);
×
3549
}
3550

3551
static int32_t tColDataMerge(SArray **colArr) {
×
3552
  int32_t code = 0;
×
3553
  SArray *src = *colArr;
×
3554
  SArray *dst = NULL;
×
3555

3556
  dst = taosArrayInit(taosArrayGetSize(src), sizeof(SColData));
×
3557
  if (dst == NULL) {
×
3558
    return terrno;
×
3559
  }
3560

3561
  for (int32_t i = 0; i < taosArrayGetSize(src); i++) {
×
3562
    SColData *srcCol = taosArrayGet(src, i);
×
3563

3564
    SColData *dstCol = taosArrayReserve(dst, 1);
×
3565
    if (dstCol == NULL) {
×
3566
      code = terrno;
×
3567
      goto _exit;
×
3568
    }
3569
    tColDataInit(dstCol, srcCol->cid, srcCol->type, srcCol->cflag);
×
3570
  }
3571

3572
  int32_t numRows = ((SColData *)TARRAY_DATA(src))->nVal;
×
3573
  SRowKey lastKey;
3574
  for (int32_t i = 0; i < numRows; i++) {
×
3575
    SRowKey key;
3576
    tColDataArrGetRowKey((SColData *)TARRAY_DATA(src), taosArrayGetSize(src), i, &key);
×
3577

3578
    if (i == 0 || tRowKeyCompare(&key, &lastKey) != 0) {  // append new row
×
3579
      for (int32_t j = 0; j < taosArrayGetSize(src); j++) {
×
3580
        SColData *srcCol = taosArrayGet(src, j);
×
3581
        SColData *dstCol = taosArrayGet(dst, j);
×
3582

3583
        SColVal cv;
3584
        code = tColDataGetValue(srcCol, i, &cv);
×
3585
        if (code != TSDB_CODE_SUCCESS) {
×
3586
          goto _exit;
×
3587
        }
3588
        code = tColDataAppendValue(dstCol, &cv);
×
3589
        if (code) {
×
3590
          goto _exit;
×
3591
        }
3592
      }
3593
      lastKey = key;
×
3594
    } else {  // update existing row
3595
      for (int32_t j = 0; j < taosArrayGetSize(src); j++) {
×
3596
        SColData *srcCol = taosArrayGet(src, j);
×
3597
        SColData *dstCol = taosArrayGet(dst, j);
×
3598

3599
        SColVal cv;
3600
        code = tColDataGetValue(srcCol, i, &cv);
×
3601
        if (code != TSDB_CODE_SUCCESS) {
×
3602
          goto _exit;
×
3603
        }
3604
        code = tColDataUpdateValue(dstCol, &cv, true);
×
3605
        if (code) {
×
3606
          goto _exit;
×
3607
        }
3608
      }
3609
    }
3610
  }
3611

3612
_exit:
×
3613
  if (code) {
×
3614
    taosArrayDestroyEx(dst, tColDataDestroy);
×
3615
  } else {
3616
    taosArrayDestroyEx(src, tColDataDestroy);
×
3617
    *colArr = dst;
×
3618
  }
3619
  return code;
×
3620
}
3621

3622
int32_t tColDataSortMerge(SArray **arr) {
113✔
3623
  SArray   *colDataArr = *arr;
113✔
3624
  int32_t   nColData = TARRAY_SIZE(colDataArr);
113✔
3625
  SColData *aColData = (SColData *)TARRAY_DATA(colDataArr);
113✔
3626

3627
  if (!(aColData[0].type == TSDB_DATA_TYPE_TIMESTAMP)) {
113!
3628
    return TSDB_CODE_PAR_INVALID_FIRST_COLUMN;
×
3629
  }
3630
  if (!(aColData[0].cid == PRIMARYKEY_TIMESTAMP_COL_ID)) {
113!
3631
    return TSDB_CODE_PAR_INVALID_FIRST_COLUMN;
×
3632
  }
3633
  if (!(aColData[0].flag == HAS_VALUE)) {
113!
3634
    return TSDB_CODE_PAR_PRIMARY_KEY_IS_NULL;
×
3635
  }
3636

3637
  if (aColData[0].nVal <= 1) goto _exit;
113✔
3638

3639
  int8_t doSort = 0;
110✔
3640
  int8_t doMerge = 0;
110✔
3641
  // scan -------
3642
  SRowKey lastKey;
3643
  tColDataArrGetRowKey(aColData, nColData, 0, &lastKey);
110✔
3644
  for (int32_t iVal = 1; iVal < aColData[0].nVal; ++iVal) {
324✔
3645
    SRowKey key;
3646
    tColDataArrGetRowKey(aColData, nColData, iVal, &key);
214✔
3647

3648
    int32_t c = tRowKeyCompare(&lastKey, &key);
214✔
3649
    if (c < 0) {
214!
3650
      lastKey = key;
214✔
3651
      continue;
214✔
3652
    } else if (c > 0) {
×
3653
      doSort = 1;
×
3654
      break;
×
3655
    } else {
3656
      doMerge = 1;
×
3657
    }
3658
  }
3659

3660
  // sort -------
3661
  if (doSort) {
110!
3662
    TAOS_CHECK_RETURN(tColDataSort(aColData, nColData));
×
3663
  }
3664

3665
  if (doMerge != 1) {
110!
3666
    tColDataArrGetRowKey(aColData, nColData, 0, &lastKey);
110✔
3667
    for (int32_t iVal = 1; iVal < aColData[0].nVal; ++iVal) {
324✔
3668
      SRowKey key;
3669
      tColDataArrGetRowKey(aColData, nColData, iVal, &key);
214✔
3670

3671
      int32_t c = tRowKeyCompare(&lastKey, &key);
214✔
3672
      if (c == 0) {
214!
3673
        doMerge = 1;
×
3674
        break;
×
3675
      }
3676
      lastKey = key;
214✔
3677
    }
3678
  }
3679

3680
  // merge -------
3681
  if (doMerge) {
110!
3682
    int32_t code = tColDataMerge(arr);
×
3683
    if (code) return code;
×
3684
  }
3685

3686
_exit:
110✔
3687
  return 0;
113✔
3688
}
3689

3690
static int32_t tEncodeColDataVersion0(SEncoder *pEncoder, SColData *pColData) {
564✔
3691
  int32_t code = 0;
564✔
3692

3693
  if ((code = tEncodeI16v(pEncoder, pColData->cid))) return code;
1,128!
3694
  if ((code = tEncodeI8(pEncoder, pColData->type))) return code;
1,128!
3695
  if ((code = tEncodeI32v(pEncoder, pColData->nVal))) return code;
1,128!
3696
  if ((code = tEncodeI8(pEncoder, pColData->flag))) return code;
1,128!
3697

3698
  // bitmap
3699
  switch (pColData->flag) {
564!
3700
    case (HAS_NULL | HAS_NONE):
×
3701
    case (HAS_VALUE | HAS_NONE):
3702
    case (HAS_VALUE | HAS_NULL):
3703
      code = tEncodeFixed(pEncoder, pColData->pBitMap, BIT1_SIZE(pColData->nVal));
×
3704
      if (code) return code;
×
3705
      break;
×
3706
    case (HAS_VALUE | HAS_NULL | HAS_NONE):
×
3707
      code = tEncodeFixed(pEncoder, pColData->pBitMap, BIT2_SIZE(pColData->nVal));
×
3708
      if (code) return code;
×
3709
      break;
×
3710
    default:
564✔
3711
      break;
564✔
3712
  }
3713

3714
  // value
3715
  if (pColData->flag & HAS_VALUE) {
564!
3716
    if (IS_VAR_DATA_TYPE(pColData->type)) {
564!
3717
      code = tEncodeFixed(pEncoder, pColData->aOffset, pColData->nVal << 2);
184✔
3718
      if (code) return code;
184!
3719

3720
      code = tEncodeI32v(pEncoder, pColData->nData);
184✔
3721
      if (code) return code;
184!
3722

3723
      code = tEncodeFixed(pEncoder, pColData->pData, pColData->nData);
184✔
3724
      if (code) return code;
184!
3725
    } else {
3726
      code = tEncodeFixed(pEncoder, pColData->pData, pColData->nData);
380✔
3727
      if (code) return code;
380!
3728
    }
3729
  }
3730

3731
  return code;
564✔
3732
}
3733

3734
static int32_t tDecodeColDataVersion0(SDecoder *pDecoder, SColData *pColData) {
×
3735
  int32_t code = 0;
×
3736

3737
  if ((code = tDecodeI16v(pDecoder, &pColData->cid))) return code;
×
3738
  if ((code = tDecodeI8(pDecoder, &pColData->type))) return code;
×
3739
  if ((code = tDecodeI32v(pDecoder, &pColData->nVal))) return code;
×
3740
  if ((code = tDecodeI8(pDecoder, &pColData->flag))) return code;
×
3741

3742
  if (pColData->type <= 0 || pColData->type >= TSDB_DATA_TYPE_MAX || pColData->flag <= 0 || pColData->flag >= 8) {
×
3743
    return TSDB_CODE_INVALID_PARA;
×
3744
  }
3745

3746
  // bitmap
3747
  switch (pColData->flag) {
×
3748
    case (HAS_NULL | HAS_NONE):
×
3749
    case (HAS_VALUE | HAS_NONE):
3750
    case (HAS_VALUE | HAS_NULL):
3751
      code = tDecodeBinaryWithSize(pDecoder, BIT1_SIZE(pColData->nVal), &pColData->pBitMap);
×
3752
      if (code) return code;
×
3753
      break;
×
3754
    case (HAS_VALUE | HAS_NULL | HAS_NONE):
×
3755
      code = tDecodeBinaryWithSize(pDecoder, BIT2_SIZE(pColData->nVal), &pColData->pBitMap);
×
3756
      if (code) return code;
×
3757
      break;
×
3758
    default:
×
3759
      break;
×
3760
  }
3761

3762
  // value
3763
  if (pColData->flag & HAS_VALUE) {
×
3764
    if (IS_VAR_DATA_TYPE(pColData->type)) {
×
3765
      code = tDecodeBinaryWithSize(pDecoder, pColData->nVal << 2, (uint8_t **)&pColData->aOffset);
×
3766
      if (code) return code;
×
3767

3768
      code = tDecodeI32v(pDecoder, &pColData->nData);
×
3769
      if (code) return code;
×
3770

3771
      code = tDecodeBinaryWithSize(pDecoder, pColData->nData, &pColData->pData);
×
3772
      if (code) return code;
×
3773
    } else {
3774
      pColData->nData = TYPE_BYTES[pColData->type] * pColData->nVal;
×
3775
      code = tDecodeBinaryWithSize(pDecoder, pColData->nData, &pColData->pData);
×
3776
      if (code) return code;
×
3777
    }
3778
  }
3779
  pColData->cflag = 0;
×
3780

3781
  return code;
×
3782
}
3783

3784
static int32_t tEncodeColDataVersion1(SEncoder *pEncoder, SColData *pColData) {
564✔
3785
  int32_t code = tEncodeColDataVersion0(pEncoder, pColData);
564✔
3786
  if (code) return code;
564!
3787
  return tEncodeI8(pEncoder, pColData->cflag);
1,128✔
3788
}
3789

3790
static int32_t tDecodeColDataVersion1(SDecoder *pDecoder, SColData *pColData) {
×
3791
  int32_t code = tDecodeColDataVersion0(pDecoder, pColData);
×
3792
  if (code) return code;
×
3793

3794
  code = tDecodeI8(pDecoder, &pColData->cflag);
×
3795
  return code;
×
3796
}
3797

3798
int32_t tEncodeColData(uint8_t version, SEncoder *pEncoder, SColData *pColData) {
564✔
3799
  if (version == 0) {
564!
3800
    return tEncodeColDataVersion0(pEncoder, pColData);
×
3801
  } else if (version == 1) {
564!
3802
    return tEncodeColDataVersion1(pEncoder, pColData);
564✔
3803
  } else {
3804
    return TSDB_CODE_INVALID_PARA;
×
3805
  }
3806
}
3807

3808
int32_t tDecodeColData(uint8_t version, SDecoder *pDecoder, SColData *pColData) {
×
3809
  if (version == 0) {
×
3810
    return tDecodeColDataVersion0(pDecoder, pColData);
×
3811
  } else if (version == 1) {
×
3812
    return tDecodeColDataVersion1(pDecoder, pColData);
×
3813
  } else {
3814
    return TSDB_CODE_INVALID_PARA;
×
3815
  }
3816
}
3817

3818
int32_t tEncodeRow(SEncoder *pEncoder, SRow *pRow) { return tEncodeFixed(pEncoder, pRow, pRow->len); }
41,772✔
3819

3820
int32_t tDecodeRow(SDecoder *pDecoder, SRow **ppRow) {
×
3821
  if (ppRow == NULL) {
×
3822
    return TSDB_CODE_INVALID_PARA;
×
3823
  }
3824

3825
  if (pDecoder->pos + sizeof(SRow) > pDecoder->size) {
×
3826
    return TSDB_CODE_OUT_OF_RANGE;
×
3827
  }
3828

3829
  SRow *pRow = (SRow *)(pDecoder->data + pDecoder->pos);
×
3830
  return tDecodeBinaryWithSize(pDecoder, pRow->len, (uint8_t **)ppRow);
×
3831
}
3832

3833
#define CALC_SUM_MAX_MIN(SUM, MAX, MIN, VAL) \
3834
  do {                                       \
3835
    (SUM) += (VAL);                          \
3836
    if ((MAX) < (VAL)) (MAX) = (VAL);        \
3837
    if ((MIN) > (VAL)) (MIN) = (VAL);        \
3838
  } while (0)
3839

3840
static FORCE_INLINE void tColDataCalcSMABool(SColData *pColData, SColumnDataAgg* pAggs) {
×
3841
  int64_t *sum = &pAggs->sum, *max = &pAggs->max, *min = &pAggs->min;
×
3842
  int16_t*numOfNull = &pAggs->numOfNull;
×
3843
  *sum = 0;
×
3844
  *max = 0;
×
3845
  *min = 1;
×
3846
  *numOfNull = 0;
×
3847

3848
  int8_t val;
3849
  if (HAS_VALUE == pColData->flag) {
×
3850
    for (int32_t iVal = 0; iVal < pColData->nVal; iVal++) {
×
3851
      val = ((int8_t *)pColData->pData)[iVal] ? 1 : 0;
×
3852
      CALC_SUM_MAX_MIN(*sum, *max, *min, val);
×
3853
    }
3854
  } else {
3855
    for (int32_t iVal = 0; iVal < pColData->nVal; iVal++) {
×
3856
      switch (tColDataGetBitValue(pColData, iVal)) {
×
3857
        case 0:
×
3858
        case 1:
3859
          (*numOfNull)++;
×
3860
          break;
×
3861
        case 2:
×
3862
          val = ((int8_t *)pColData->pData)[iVal] ? 1 : 0;
×
3863
          CALC_SUM_MAX_MIN(*sum, *max, *min, val);
×
3864
          break;
×
3865
        default:
×
3866
          break;
×
3867
      }
3868
    }
3869
  }
3870
}
×
3871

3872
static FORCE_INLINE void tColDataCalcSMATinyInt(SColData *pColData, SColumnDataAgg* pAggs) {
×
3873
  int64_t *sum = &pAggs->sum, *max = &pAggs->max, *min = &pAggs->min;
×
3874
  int16_t *numOfNull = &pAggs->numOfNull;
×
3875
  *sum = 0;
×
3876
  *max = INT8_MIN;
×
3877
  *min = INT8_MAX;
×
3878
  *numOfNull = 0;
×
3879

3880
  int8_t val;
3881
  if (HAS_VALUE == pColData->flag) {
×
3882
    for (int32_t iVal = 0; iVal < pColData->nVal; iVal++) {
×
3883
      val = ((int8_t *)pColData->pData)[iVal];
×
3884
      CALC_SUM_MAX_MIN(*sum, *max, *min, val);
×
3885
    }
3886
  } else {
3887
    for (int32_t iVal = 0; iVal < pColData->nVal; iVal++) {
×
3888
      switch (tColDataGetBitValue(pColData, iVal)) {
×
3889
        case 0:
×
3890
        case 1:
3891
          (*numOfNull)++;
×
3892
          break;
×
3893
        case 2:
×
3894
          val = ((int8_t *)pColData->pData)[iVal];
×
3895
          CALC_SUM_MAX_MIN(*sum, *max, *min, val);
×
3896
          break;
×
3897
        default:
×
3898
          break;
×
3899
      }
3900
    }
3901
  }
3902
}
×
3903

3904
static FORCE_INLINE void tColDataCalcSMATinySmallInt(SColData *pColData, SColumnDataAgg* pAggs) {
×
3905
  int64_t *sum = &pAggs->sum, *max = &pAggs->max, *min = &pAggs->min;
×
3906
  int16_t *numOfNull = &pAggs->numOfNull;
×
3907
  *sum = 0;
×
3908
  *max = INT16_MIN;
×
3909
  *min = INT16_MAX;
×
3910
  *numOfNull = 0;
×
3911

3912
  int16_t val;
3913
  if (HAS_VALUE == pColData->flag) {
×
3914
    for (int32_t iVal = 0; iVal < pColData->nVal; iVal++) {
×
3915
      val = ((int16_t *)pColData->pData)[iVal];
×
3916
      CALC_SUM_MAX_MIN(*sum, *max, *min, val);
×
3917
    }
3918
  } else {
3919
    for (int32_t iVal = 0; iVal < pColData->nVal; iVal++) {
×
3920
      switch (tColDataGetBitValue(pColData, iVal)) {
×
3921
        case 0:
×
3922
        case 1:
3923
          (*numOfNull)++;
×
3924
          break;
×
3925
        case 2:
×
3926
          val = ((int16_t *)pColData->pData)[iVal];
×
3927
          CALC_SUM_MAX_MIN(*sum, *max, *min, val);
×
3928
          break;
×
3929
        default:
×
3930
          break;
×
3931
      }
3932
    }
3933
  }
3934
}
×
3935

3936
static FORCE_INLINE void tColDataCalcSMAInt(SColData *pColData, SColumnDataAgg* pAggs) {
×
3937
  int64_t *sum = &pAggs->sum, *max = &pAggs->max, *min = &pAggs->min;
×
3938
  int16_t *numOfNull = &pAggs->numOfNull;
×
3939
  *sum = 0;
×
3940
  *max = INT32_MIN;
×
3941
  *min = INT32_MAX;
×
3942
  *numOfNull = 0;
×
3943

3944
  int32_t val;
3945
  if (HAS_VALUE == pColData->flag) {
×
3946
    for (int32_t iVal = 0; iVal < pColData->nVal; iVal++) {
×
3947
      val = ((int32_t *)pColData->pData)[iVal];
×
3948
      CALC_SUM_MAX_MIN(*sum, *max, *min, val);
×
3949
    }
3950
  } else {
3951
    for (int32_t iVal = 0; iVal < pColData->nVal; iVal++) {
×
3952
      switch (tColDataGetBitValue(pColData, iVal)) {
×
3953
        case 0:
×
3954
        case 1:
3955
          (*numOfNull)++;
×
3956
          break;
×
3957
        case 2:
×
3958
          val = ((int32_t *)pColData->pData)[iVal];
×
3959
          CALC_SUM_MAX_MIN(*sum, *max, *min, val);
×
3960
          break;
×
3961
        default:
×
3962
          break;
×
3963
      }
3964
    }
3965
  }
3966
}
×
3967

3968
static FORCE_INLINE void tColDataCalcSMABigInt(SColData *pColData, SColumnDataAgg* pAggs) {
×
3969
  int64_t *sum = &pAggs->sum, *max = &pAggs->max, *min = &pAggs->min;
×
3970
  int16_t *numOfNull = &pAggs->numOfNull;
×
3971
  *sum = 0;
×
3972
  *max = INT64_MIN;
×
3973
  *min = INT64_MAX;
×
3974
  *numOfNull = 0;
×
3975

3976
  int64_t val;
3977
  if (HAS_VALUE == pColData->flag) {
×
3978
    for (int32_t iVal = 0; iVal < pColData->nVal; iVal++) {
×
3979
      val = ((int64_t *)pColData->pData)[iVal];
×
3980
      CALC_SUM_MAX_MIN(*sum, *max, *min, val);
×
3981
    }
3982
  } else {
3983
    for (int32_t iVal = 0; iVal < pColData->nVal; iVal++) {
×
3984
      switch (tColDataGetBitValue(pColData, iVal)) {
×
3985
        case 0:
×
3986
        case 1:
3987
          (*numOfNull)++;
×
3988
          break;
×
3989
        case 2:
×
3990
          val = ((int64_t *)pColData->pData)[iVal];
×
3991
          CALC_SUM_MAX_MIN(*sum, *max, *min, val);
×
3992
          break;
×
3993
        default:
×
3994
          break;
×
3995
      }
3996
    }
3997
  }
3998
}
×
3999

4000
static FORCE_INLINE void tColDataCalcSMAFloat(SColData *pColData, SColumnDataAgg* pAggs) {
×
4001
  int64_t *sum = &pAggs->sum, *max = &pAggs->max, *min = &pAggs->min;
×
4002
  int16_t *numOfNull = &pAggs->numOfNull;
×
4003
  *(double *)sum = 0;
×
4004
  *(double *)max = -FLT_MAX;
×
4005
  *(double *)min = FLT_MAX;
×
4006
  *numOfNull = 0;
×
4007

4008
  float val;
4009
  if (HAS_VALUE == pColData->flag) {
×
4010
    for (int32_t iVal = 0; iVal < pColData->nVal; iVal++) {
×
4011
      val = ((float *)pColData->pData)[iVal];
×
4012
      CALC_SUM_MAX_MIN(*(double *)sum, *(double *)max, *(double *)min, val);
×
4013
    }
4014
  } else {
4015
    for (int32_t iVal = 0; iVal < pColData->nVal; iVal++) {
×
4016
      switch (tColDataGetBitValue(pColData, iVal)) {
×
4017
        case 0:
×
4018
        case 1:
4019
          (*numOfNull)++;
×
4020
          break;
×
4021
        case 2:
×
4022
          val = ((float *)pColData->pData)[iVal];
×
4023
          CALC_SUM_MAX_MIN(*(double *)sum, *(double *)max, *(double *)min, val);
×
4024
          break;
×
4025
        default:
×
4026
          break;
×
4027
      }
4028
    }
4029
  }
4030
}
×
4031

4032
static FORCE_INLINE void tColDataCalcSMADouble(SColData *pColData, SColumnDataAgg* pAggs) {
×
4033
  int64_t *sum = &pAggs->sum, *max = &pAggs->max, *min = &pAggs->min;
×
4034
  int16_t *numOfNull = &pAggs->numOfNull;
×
4035
  *(double *)sum = 0;
×
4036
  *(double *)max = -DBL_MAX;
×
4037
  *(double *)min = DBL_MAX;
×
4038
  *numOfNull = 0;
×
4039

4040
  double val;
4041
  if (HAS_VALUE == pColData->flag) {
×
4042
    for (int32_t iVal = 0; iVal < pColData->nVal; iVal++) {
×
4043
      val = ((double *)pColData->pData)[iVal];
×
4044
      CALC_SUM_MAX_MIN(*(double *)sum, *(double *)max, *(double *)min, val);
×
4045
    }
4046
  } else {
4047
    for (int32_t iVal = 0; iVal < pColData->nVal; iVal++) {
×
4048
      switch (tColDataGetBitValue(pColData, iVal)) {
×
4049
        case 0:
×
4050
        case 1:
4051
          (*numOfNull)++;
×
4052
          break;
×
4053
        case 2:
×
4054
          val = ((double *)pColData->pData)[iVal];
×
4055
          CALC_SUM_MAX_MIN(*(double *)sum, *(double *)max, *(double *)min, val);
×
4056
          break;
×
4057
        default:
×
4058
          break;
×
4059
      }
4060
    }
4061
  }
4062
}
×
4063

4064
static FORCE_INLINE void tColDataCalcSMAUTinyInt(SColData *pColData, SColumnDataAgg* pAggs) {
×
4065
  int64_t *sum = &pAggs->sum, *max = &pAggs->max, *min = &pAggs->min;
×
4066
  int16_t *numOfNull = &pAggs->numOfNull;
×
4067
  *(uint64_t *)sum = 0;
×
4068
  *(uint64_t *)max = 0;
×
4069
  *(uint64_t *)min = UINT8_MAX;
×
4070
  *numOfNull = 0;
×
4071

4072
  uint8_t val;
4073
  if (HAS_VALUE == pColData->flag) {
×
4074
    for (int32_t iVal = 0; iVal < pColData->nVal; iVal++) {
×
4075
      val = ((uint8_t *)pColData->pData)[iVal];
×
4076
      CALC_SUM_MAX_MIN(*(uint64_t *)sum, *(uint64_t *)max, *(uint64_t *)min, val);
×
4077
    }
4078
  } else {
4079
    for (int32_t iVal = 0; iVal < pColData->nVal; iVal++) {
×
4080
      switch (tColDataGetBitValue(pColData, iVal)) {
×
4081
        case 0:
×
4082
        case 1:
4083
          (*numOfNull)++;
×
4084
          break;
×
4085
        case 2:
×
4086
          val = ((uint8_t *)pColData->pData)[iVal];
×
4087
          CALC_SUM_MAX_MIN(*(uint64_t *)sum, *(uint64_t *)max, *(uint64_t *)min, val);
×
4088
          break;
×
4089
        default:
×
4090
          break;
×
4091
      }
4092
    }
4093
  }
4094
}
×
4095

4096
static FORCE_INLINE void tColDataCalcSMATinyUSmallInt(SColData *pColData, SColumnDataAgg* pAggs) {
×
4097
  int64_t *sum = &pAggs->sum, *max = &pAggs->max, *min = &pAggs->min;
×
4098
  int16_t *numOfNull = &pAggs->numOfNull;
×
4099
  *(uint64_t *)sum = 0;
×
4100
  *(uint64_t *)max = 0;
×
4101
  *(uint64_t *)min = UINT16_MAX;
×
4102
  *numOfNull = 0;
×
4103

4104
  uint16_t val;
4105
  if (HAS_VALUE == pColData->flag) {
×
4106
    for (int32_t iVal = 0; iVal < pColData->nVal; iVal++) {
×
4107
      val = ((uint16_t *)pColData->pData)[iVal];
×
4108
      CALC_SUM_MAX_MIN(*(uint64_t *)sum, *(uint64_t *)max, *(uint64_t *)min, val);
×
4109
    }
4110
  } else {
4111
    for (int32_t iVal = 0; iVal < pColData->nVal; iVal++) {
×
4112
      switch (tColDataGetBitValue(pColData, iVal)) {
×
4113
        case 0:
×
4114
        case 1:
4115
          (*numOfNull)++;
×
4116
          break;
×
4117
        case 2:
×
4118
          val = ((uint16_t *)pColData->pData)[iVal];
×
4119
          CALC_SUM_MAX_MIN(*(uint64_t *)sum, *(uint64_t *)max, *(uint64_t *)min, val);
×
4120
          break;
×
4121
        default:
×
4122
          break;
×
4123
      }
4124
    }
4125
  }
4126
}
×
4127

4128
static FORCE_INLINE void tColDataCalcSMAUInt(SColData *pColData, SColumnDataAgg* pAggs) {
×
4129
  int64_t *sum = &pAggs->sum, *max = &pAggs->max, *min = &pAggs->min;
×
4130
  int16_t *numOfNull = &pAggs->numOfNull;
×
4131
  *(uint64_t *)sum = 0;
×
4132
  *(uint64_t *)max = 0;
×
4133
  *(uint64_t *)min = UINT32_MAX;
×
4134
  *numOfNull = 0;
×
4135

4136
  uint32_t val;
4137
  if (HAS_VALUE == pColData->flag) {
×
4138
    for (int32_t iVal = 0; iVal < pColData->nVal; iVal++) {
×
4139
      val = ((uint32_t *)pColData->pData)[iVal];
×
4140
      CALC_SUM_MAX_MIN(*(uint64_t *)sum, *(uint64_t *)max, *(uint64_t *)min, val);
×
4141
    }
4142
  } else {
4143
    for (int32_t iVal = 0; iVal < pColData->nVal; iVal++) {
×
4144
      switch (tColDataGetBitValue(pColData, iVal)) {
×
4145
        case 0:
×
4146
        case 1:
4147
          (*numOfNull)++;
×
4148
          break;
×
4149
        case 2:
×
4150
          val = ((uint32_t *)pColData->pData)[iVal];
×
4151
          CALC_SUM_MAX_MIN(*(uint64_t *)sum, *(uint64_t *)max, *(uint64_t *)min, val);
×
4152
          break;
×
4153
        default:
×
4154
          break;
×
4155
      }
4156
    }
4157
  }
4158
}
×
4159

4160
static FORCE_INLINE void tColDataCalcSMAUBigInt(SColData *pColData, SColumnDataAgg* pAggs) {
×
4161
  int64_t *sum = &pAggs->sum, *max = &pAggs->max, *min = &pAggs->min;
×
4162
  int16_t *numOfNull = &pAggs->numOfNull;
×
4163
  *(uint64_t *)sum = 0;
×
4164
  *(uint64_t *)max = 0;
×
4165
  *(uint64_t *)min = UINT64_MAX;
×
4166
  *numOfNull = 0;
×
4167

4168
  uint64_t val;
4169
  if (HAS_VALUE == pColData->flag) {
×
4170
    for (int32_t iVal = 0; iVal < pColData->nVal; iVal++) {
×
4171
      val = ((uint64_t *)pColData->pData)[iVal];
×
4172
      CALC_SUM_MAX_MIN(*(uint64_t *)sum, *(uint64_t *)max, *(uint64_t *)min, val);
×
4173
    }
4174
  } else {
4175
    for (int32_t iVal = 0; iVal < pColData->nVal; iVal++) {
×
4176
      switch (tColDataGetBitValue(pColData, iVal)) {
×
4177
        case 0:
×
4178
        case 1:
4179
          (*numOfNull)++;
×
4180
          break;
×
4181
        case 2:
×
4182
          val = ((uint64_t *)pColData->pData)[iVal];
×
4183
          CALC_SUM_MAX_MIN(*(uint64_t *)sum, *(uint64_t *)max, *(uint64_t *)min, val);
×
4184
          break;
×
4185
        default:
×
4186
          break;
×
4187
      }
4188
    }
4189
  }
4190
}
×
4191

4192
static FORCE_INLINE void tColDataCalcSMAVarType(SColData *pColData, SColumnDataAgg* pAggs) {
×
4193
  int64_t *sum = &pAggs->sum, *max = &pAggs->max, *min = &pAggs->min;
×
4194
  int16_t *numOfNull = &pAggs->numOfNull;
×
4195
  *(uint64_t *)sum = 0;
×
4196
  *(uint64_t *)max = 0;
×
4197
  *(uint64_t *)min = 0;
×
4198
  *numOfNull = 0;
×
4199

4200
  switch (pColData->flag) {
×
4201
    case HAS_NONE:
×
4202
    case HAS_NULL:
4203
    case (HAS_NONE | HAS_NULL):
4204
      *numOfNull = pColData->nVal;
×
4205
      break;
×
4206
    case HAS_VALUE:
×
4207
      *numOfNull = 0;
×
4208
      break;
×
4209
    case (HAS_VALUE | HAS_NULL):
×
4210
    case (HAS_VALUE | HAS_NONE):
4211
      for (int32_t iVal = 0; iVal < pColData->nVal; iVal++) {
×
4212
        if (GET_BIT1(pColData->pBitMap, iVal) == 0) {
×
4213
          (*numOfNull)++;
×
4214
        }
4215
      }
4216
      break;
×
4217
    case (HAS_VALUE | HAS_NONE | HAS_NULL):
×
4218
      for (int32_t iVal = 0; iVal < pColData->nVal; iVal++) {
×
4219
        if (GET_BIT2(pColData->pBitMap, iVal) != 2) {
×
4220
          (*numOfNull)++;
×
4221
        }
4222
      }
4223
      break;
×
4224
    default:
×
4225
      break;
×
4226
  }
4227
}
×
4228

4229
#define CALC_DECIMAL_SUM_MAX_MIN(TYPE, pSumOp, pCompOp, pColData, pSum, pMax, pMin)           \
4230
  do {                                                                                        \
4231
    if (decimal128AddCheckOverflow((Decimal *)pSum, pVal, DECIMAL_WORD_NUM(TYPE))) *pOverflow = true; \
4232
    pSumOp->add(pSum, pVal, DECIMAL_WORD_NUM(TYPE));                                                  \
4233
    if (pCompOp->gt(pVal, pMax, DECIMAL_WORD_NUM(TYPE))) {                                            \
4234
      *(pMax) = *pVal;                                                                        \
4235
    }                                                                                         \
4236
    if (pCompOp->lt(pVal, pMin, DECIMAL_WORD_NUM(TYPE))) {                                            \
4237
      *(pMin) = *pVal;                                                                        \
4238
    }                                                                                         \
4239
  } while (0)
4240

4241
static FORCE_INLINE void tColDataCalcSMADecimal64Type(SColData* pColData, SColumnDataAgg* pAggs) {
×
4242
  Decimal128 *pSum = (Decimal128 *)pAggs->decimal128Sum;
×
4243
  Decimal64  *pMax = (Decimal64 *)pAggs->decimal128Max, *pMin = (Decimal64 *)pAggs->decimal128Min;
×
4244
  uint8_t *pOverflow = &pAggs->overflow;
×
4245
  *pSum = DECIMAL128_ZERO;
×
4246
  *pMax = DECIMAL64_MIN;
×
4247
  *pMin = DECIMAL64_MAX;
×
4248
  pAggs->numOfNull = 0;
×
4249
  pAggs->colId |= DECIMAL_AGG_FLAG;
×
4250

4251
  Decimal64   *pVal = NULL;
×
4252
  const SDecimalOps *pSumOps = getDecimalOps(TSDB_DATA_TYPE_DECIMAL);
×
4253
  const SDecimalOps *pCompOps = getDecimalOps(TSDB_DATA_TYPE_DECIMAL64);
×
4254
  if (HAS_VALUE == pColData->flag) {
×
4255
    for (int32_t iVal = 0; iVal < pColData->nVal; ++iVal) {
×
4256
      pVal = ((Decimal64*)pColData->pData) + iVal;
×
4257
      CALC_DECIMAL_SUM_MAX_MIN(Decimal64, pSumOps, pCompOps, pColData, pSum, pMax, pMin);
×
4258
    }
4259
  } else {
4260
    for (int32_t iVal = 0; iVal < pColData->nVal; ++iVal) {
×
4261
      switch (tColDataGetBitValue(pColData, iVal)) {
×
4262
        case 0:
×
4263
        case 1:
4264
          pAggs->numOfNull++;
×
4265
          break;
×
4266
        case 2:
×
4267
          pVal = ((Decimal64 *)pColData->pData) + iVal;
×
4268
          CALC_DECIMAL_SUM_MAX_MIN(Decimal64, pSumOps, pCompOps, pColData, pSum, pMax, pMin);
×
4269
          break;
×
4270
        default:
×
4271
          break;
×
4272
      }
4273
    }
4274
  }
4275
}
×
4276

4277
static FORCE_INLINE void tColDataCalcSMADecimal128Type(SColData* pColData, SColumnDataAgg* pAggs) {
×
4278
  Decimal128 *pSum = (Decimal128 *)pAggs->decimal128Sum, *pMax = (Decimal128 *)pAggs->decimal128Max,
×
4279
             *pMin = (Decimal128 *)pAggs->decimal128Min;
×
4280
  uint8_t *pOverflow = &pAggs->overflow;
×
4281
  *pSum = DECIMAL128_ZERO;
×
4282
  *pMax = DECIMAL128_MIN;
×
4283
  *pMin = DECIMAL128_MAX;
×
4284
  pAggs->numOfNull = 0;
×
4285
  pAggs->colId |= DECIMAL_AGG_FLAG;
×
4286

4287
  Decimal128        *pVal = NULL;
×
4288
  const SDecimalOps *pOps = getDecimalOps(TSDB_DATA_TYPE_DECIMAL);
×
4289
  if (HAS_VALUE == pColData->flag) {
×
4290
    for (int32_t iVal = 0; iVal < pColData->nVal; ++iVal) {
×
4291
      pVal = ((Decimal128*)pColData->pData) + iVal;
×
4292
      CALC_DECIMAL_SUM_MAX_MIN(Decimal128, pOps, pOps, pColData, pSum, pMax, pMin);
×
4293
    }
4294
  } else {
4295
    for (int32_t iVal = 0; iVal < pColData->nVal; ++iVal) {
×
4296
      switch (tColDataGetBitValue(pColData, iVal)) {
×
4297
        case 0:
×
4298
        case 1:
4299
          pAggs->numOfNull++;
×
4300
          break;
×
4301
        case 2:
×
4302
          pVal = ((Decimal128*)pColData->pData) + iVal;
×
4303
          CALC_DECIMAL_SUM_MAX_MIN(Decimal128, pOps, pOps, pColData, pSum, pMax, pMin);
×
4304
          break;
×
4305
        default:
×
4306
          break;
×
4307
      }
4308
    }
4309
  }
4310
}
×
4311

4312
void (*tColDataCalcSMA[])(SColData *pColData, SColumnDataAgg* pAggs) = {
4313
    NULL,
4314
    tColDataCalcSMABool,           // TSDB_DATA_TYPE_BOOL
4315
    tColDataCalcSMATinyInt,        // TSDB_DATA_TYPE_TINYINT
4316
    tColDataCalcSMATinySmallInt,   // TSDB_DATA_TYPE_SMALLINT
4317
    tColDataCalcSMAInt,            // TSDB_DATA_TYPE_INT
4318
    tColDataCalcSMABigInt,         // TSDB_DATA_TYPE_BIGINT
4319
    tColDataCalcSMAFloat,          // TSDB_DATA_TYPE_FLOAT
4320
    tColDataCalcSMADouble,         // TSDB_DATA_TYPE_DOUBLE
4321
    tColDataCalcSMAVarType,        // TSDB_DATA_TYPE_VARCHAR
4322
    tColDataCalcSMABigInt,         // TSDB_DATA_TYPE_TIMESTAMP
4323
    tColDataCalcSMAVarType,        // TSDB_DATA_TYPE_NCHAR
4324
    tColDataCalcSMAUTinyInt,       // TSDB_DATA_TYPE_UTINYINT
4325
    tColDataCalcSMATinyUSmallInt,  // TSDB_DATA_TYPE_USMALLINT
4326
    tColDataCalcSMAUInt,           // TSDB_DATA_TYPE_UINT
4327
    tColDataCalcSMAUBigInt,        // TSDB_DATA_TYPE_UBIGINT
4328
    tColDataCalcSMAVarType,        // TSDB_DATA_TYPE_JSON
4329
    tColDataCalcSMAVarType,        // TSDB_DATA_TYPE_VARBINARY
4330
    tColDataCalcSMADecimal128Type, // TSDB_DATA_TYPE_DECIMAL
4331
    tColDataCalcSMAVarType,        // TSDB_DATA_TYPE_BLOB
4332
    NULL,                          // TSDB_DATA_TYPE_MEDIUMBLOB
4333
    tColDataCalcSMAVarType,         // TSDB_DATA_TYPE_GEOMETRY
4334
    tColDataCalcSMADecimal64Type,  // TSDB_DATA_TYPE_DECIMAL64
4335
};
4336

4337
// SValueColumn ================================
4338
int32_t tValueColumnInit(SValueColumn *valCol) {
×
4339
  valCol->type = TSDB_DATA_TYPE_NULL;
×
4340
  valCol->numOfValues = 0;
×
4341
  tBufferInit(&valCol->data);
×
4342
  tBufferInit(&valCol->offsets);
×
4343
  return 0;
×
4344
}
4345

4346
void tValueColumnDestroy(SValueColumn *valCol) {
×
4347
  valCol->type = TSDB_DATA_TYPE_NULL;
×
4348
  valCol->numOfValues = 0;
×
4349
  tBufferDestroy(&valCol->data);
×
4350
  tBufferDestroy(&valCol->offsets);
×
4351
  return;
×
4352
}
4353

4354
void tValueColumnClear(SValueColumn *valCol) {
×
4355
  valCol->type = TSDB_DATA_TYPE_NULL;
×
4356
  valCol->numOfValues = 0;
×
4357
  tBufferClear(&valCol->data);
×
4358
  tBufferClear(&valCol->offsets);
×
4359
  return;
×
4360
}
4361

4362
int32_t tValueColumnAppend(SValueColumn *valCol, const SValue *value) {
×
4363
  int32_t code;
4364

4365
  if (valCol->numOfValues == 0) {
×
4366
    valCol->type = value->type;
×
4367
  }
4368

4369
  if (!(value->type == valCol->type)) {
×
4370
    return TSDB_CODE_INVALID_PARA;
×
4371
  }
4372

4373
  if (IS_VAR_DATA_TYPE(value->type)) {
×
4374
    if ((code = tBufferPutI32(&valCol->offsets, tBufferGetSize(&valCol->data)))) {
×
4375
      return code;
×
4376
    }
4377
    if ((code = tBufferPut(&valCol->data, value->pData, value->nData))) {
×
4378
      return code;
×
4379
    }
4380
  } else {
4381
    code = tBufferPut(&valCol->data, VALUE_GET_DATUM(value, value->type), tDataTypes[value->type].bytes);
×
4382
    if (code) return code;
×
4383
  }
4384
  valCol->numOfValues++;
×
4385

4386
  return 0;
×
4387
}
4388

4389
int32_t tValueColumnUpdate(SValueColumn *valCol, int32_t idx, const SValue *value) {
×
4390
  int32_t code;
4391

4392
  if (idx < 0 || idx >= valCol->numOfValues) {
×
4393
    return TSDB_CODE_OUT_OF_RANGE;
×
4394
  }
4395

4396
  if (IS_VAR_DATA_TYPE(valCol->type)) {
×
4397
    int32_t *offsets = (int32_t *)tBufferGetData(&valCol->offsets);
×
4398
    int32_t  nextOffset = (idx == valCol->numOfValues - 1) ? tBufferGetSize(&valCol->data) : offsets[idx + 1];
×
4399
    int32_t  oldDataSize = nextOffset - offsets[idx];
×
4400
    int32_t  bytesAdded = value->nData - oldDataSize;
×
4401

4402
    if (bytesAdded != 0) {
×
4403
      if ((code = tBufferEnsureCapacity(&valCol->data, tBufferGetSize(&valCol->data) + bytesAdded))) return code;
×
4404
      memmove(tBufferGetDataAt(&valCol->data, nextOffset + bytesAdded), tBufferGetDataAt(&valCol->data, nextOffset),
×
4405
              tBufferGetSize(&valCol->data) - nextOffset);
×
4406
      valCol->data.size += bytesAdded;
×
4407

4408
      for (int32_t i = idx + 1; i < valCol->numOfValues; i++) {
×
4409
        offsets[i] += bytesAdded;
×
4410
      }
4411
    }
4412
    return tBufferPutAt(&valCol->data, offsets[idx], value->pData, value->nData);
×
4413
  } else {
4414
    return tBufferPutAt(&valCol->data, idx * tDataTypes[valCol->type].bytes, VALUE_GET_DATUM(value, valCol->type),
×
4415
                        tDataTypes[valCol->type].bytes);
×
4416
  }
4417
  return 0;
4418
}
4419

4420
int32_t tValueColumnGet(SValueColumn *valCol, int32_t idx, SValue *value) {
×
4421
  if (idx < 0 || idx >= valCol->numOfValues) {
×
4422
    return TSDB_CODE_OUT_OF_RANGE;
×
4423
  }
4424

4425
  value->type = valCol->type;
×
4426
  if (IS_VAR_DATA_TYPE(value->type)) {
×
4427
    int32_t       offset, nextOffset;
4428
    SBufferReader reader = BUFFER_READER_INITIALIZER(idx * sizeof(offset), &valCol->offsets);
×
4429

4430
    TAOS_CHECK_RETURN(tBufferGetI32(&reader, &offset));
×
4431
    if (idx == valCol->numOfValues - 1) {
×
4432
      nextOffset = tBufferGetSize(&valCol->data);
×
4433
    } else {
4434
      TAOS_CHECK_RETURN(tBufferGetI32(&reader, &nextOffset));
×
4435
    }
4436
    value->nData = nextOffset - offset;
×
4437
    value->pData = (uint8_t *)tBufferGetDataAt(&valCol->data, offset);
×
4438
  } else {
4439
    SBufferReader reader = BUFFER_READER_INITIALIZER(idx * tDataTypes[value->type].bytes, &valCol->data);
×
4440
    TAOS_CHECK_RETURN(tBufferGet(&reader, tDataTypes[value->type].bytes, VALUE_GET_DATUM(value, value->type)));
×
4441
  }
4442
  return 0;
×
4443
}
4444

4445
int32_t tValueColumnCompress(SValueColumn *valCol, SValueColumnCompressInfo *info, SBuffer *output, SBuffer *assist) {
×
4446
  int32_t code;
4447

4448
  if (!(valCol->numOfValues > 0)) {
×
4449
    return TSDB_CODE_INVALID_PARA;
×
4450
  }
4451

4452
  (*info) = (SValueColumnCompressInfo){
×
4453
      .cmprAlg = info->cmprAlg,
×
4454
      .type = valCol->type,
×
4455
  };
4456

4457
  // offset
4458
  if (IS_VAR_DATA_TYPE(valCol->type)) {
×
4459
    SCompressInfo cinfo = {
×
4460
        .cmprAlg = info->cmprAlg,
×
4461
        .dataType = TSDB_DATA_TYPE_INT,
4462
        .originalSize = valCol->offsets.size,
×
4463
    };
4464

4465
    code = tCompressDataToBuffer(valCol->offsets.data, &cinfo, output, assist);
×
4466
    if (code) return code;
×
4467

4468
    info->offsetOriginalSize = cinfo.originalSize;
×
4469
    info->offsetCompressedSize = cinfo.compressedSize;
×
4470
  }
4471

4472
  // data
4473
  SCompressInfo cinfo = {
×
4474
      .cmprAlg = info->cmprAlg,
×
4475
      .dataType = valCol->type,
×
4476
      .originalSize = valCol->data.size,
×
4477
  };
4478

4479
  code = tCompressDataToBuffer(valCol->data.data, &cinfo, output, assist);
×
4480
  if (code) return code;
×
4481

4482
  info->dataOriginalSize = cinfo.originalSize;
×
4483
  info->dataCompressedSize = cinfo.compressedSize;
×
4484

4485
  return 0;
×
4486
}
4487

4488
int32_t tValueColumnDecompress(void *input, const SValueColumnCompressInfo *info, SValueColumn *valCol,
×
4489
                               SBuffer *assist) {
4490
  int32_t code;
4491

4492
  tValueColumnClear(valCol);
×
4493
  valCol->type = info->type;
×
4494
  // offset
4495
  if (IS_VAR_DATA_TYPE(valCol->type)) {
×
4496
    valCol->numOfValues = info->offsetOriginalSize / tDataTypes[TSDB_DATA_TYPE_INT].bytes;
×
4497

4498
    SCompressInfo cinfo = {
×
4499
        .dataType = TSDB_DATA_TYPE_INT,
4500
        .cmprAlg = info->cmprAlg,
×
4501
        .originalSize = info->offsetOriginalSize,
×
4502
        .compressedSize = info->offsetCompressedSize,
×
4503
    };
4504

4505
    code = tDecompressDataToBuffer(input, &cinfo, &valCol->offsets, assist);
×
4506
    if (code) {
×
4507
      return code;
×
4508
    }
4509
  } else {
4510
    valCol->numOfValues = info->dataOriginalSize / tDataTypes[valCol->type].bytes;
×
4511
  }
4512

4513
  // data
4514
  SCompressInfo cinfo = {
×
4515
      .dataType = valCol->type,
×
4516
      .cmprAlg = info->cmprAlg,
×
4517
      .originalSize = info->dataOriginalSize,
×
4518
      .compressedSize = info->dataCompressedSize,
×
4519
  };
4520

4521
  code = tDecompressDataToBuffer((char *)input + info->offsetCompressedSize, &cinfo, &valCol->data, assist);
×
4522
  if (code) {
×
4523
    return code;
×
4524
  }
4525

4526
  return 0;
×
4527
}
4528

4529
int32_t tValueColumnCompressInfoEncode(const SValueColumnCompressInfo *info, SBuffer *buffer) {
×
4530
  int32_t code;
4531
  uint8_t fmtVer = 0;
×
4532

4533
  if ((code = tBufferPutU8(buffer, fmtVer))) return code;
×
4534
  if ((code = tBufferPutI8(buffer, info->cmprAlg))) return code;
×
4535
  if ((code = tBufferPutI8(buffer, info->type))) return code;
×
4536
  if (IS_VAR_DATA_TYPE(info->type)) {
×
4537
    if ((code = tBufferPutI32v(buffer, info->offsetOriginalSize))) return code;
×
4538
    if ((code = tBufferPutI32v(buffer, info->offsetCompressedSize))) return code;
×
4539
  }
4540
  if ((code = tBufferPutI32v(buffer, info->dataOriginalSize))) return code;
×
4541
  if ((code = tBufferPutI32v(buffer, info->dataCompressedSize))) return code;
×
4542

4543
  return 0;
×
4544
}
4545

4546
int32_t tValueColumnCompressInfoDecode(SBufferReader *reader, SValueColumnCompressInfo *info) {
×
4547
  int32_t code;
4548
  uint8_t fmtVer;
4549

4550
  if ((code = tBufferGetU8(reader, &fmtVer))) return code;
×
4551
  if (fmtVer == 0) {
×
4552
    if ((code = tBufferGetI8(reader, &info->cmprAlg))) return code;
×
4553
    if ((code = tBufferGetI8(reader, &info->type))) return code;
×
4554
    if (IS_VAR_DATA_TYPE(info->type)) {
×
4555
      if ((code = tBufferGetI32v(reader, &info->offsetOriginalSize))) return code;
×
4556
      if ((code = tBufferGetI32v(reader, &info->offsetCompressedSize))) return code;
×
4557
    } else {
4558
      info->offsetOriginalSize = 0;
×
4559
      info->offsetCompressedSize = 0;
×
4560
    }
4561
    if ((code = tBufferGetI32v(reader, &info->dataOriginalSize))) return code;
×
4562
    if ((code = tBufferGetI32v(reader, &info->dataCompressedSize))) return code;
×
4563
  } else {
4564
    return TSDB_CODE_INVALID_PARA;
×
4565
  }
4566

4567
  return 0;
×
4568
}
4569

4570
int32_t tCompressData(void          *input,       // input
×
4571
                      SCompressInfo *info,        // compress info
4572
                      void          *output,      // output
4573
                      int32_t        outputSize,  // output size
4574
                      SBuffer       *buffer       // assistant buffer provided by caller, can be NULL
4575
) {
4576
  int32_t extraSizeNeeded;
4577
  int32_t code;
4578

4579
  extraSizeNeeded = (info->cmprAlg == NO_COMPRESSION) ? info->originalSize : info->originalSize + COMP_OVERFLOW_BYTES;
×
4580
  if (!(outputSize >= extraSizeNeeded)) {
×
4581
    return TSDB_CODE_INVALID_PARA;
×
4582
  }
4583

4584
  if (info->cmprAlg == NO_COMPRESSION) {
×
4585
    (void)memcpy(output, input, info->originalSize);
×
4586
    info->compressedSize = info->originalSize;
×
4587
  } else if (info->cmprAlg == ONE_STAGE_COMP || info->cmprAlg == TWO_STAGE_COMP) {
×
4588
    SBuffer local;
4589

4590
    tBufferInit(&local);
4591
    if (buffer == NULL) {
×
4592
      buffer = &local;
×
4593
    }
4594

4595
    if (info->cmprAlg == TWO_STAGE_COMP) {
×
4596
      code = tBufferEnsureCapacity(buffer, extraSizeNeeded);
×
4597
      if (code) {
×
4598
        tBufferDestroy(&local);
4599
        return code;
×
4600
      }
4601
    }
4602

4603
    info->compressedSize = tDataTypes[info->dataType].compFunc(  //
×
4604
        input,                                                   // input
4605
        info->originalSize,                                      // input size
4606
        info->originalSize / tDataTypes[info->dataType].bytes,   // number of elements
×
4607
        output,                                                  // output
4608
        outputSize,                                              // output size
4609
        info->cmprAlg,                                           // compression algorithm
×
4610
        buffer->data,                                            // buffer
4611
        buffer->capacity                                         // buffer size
×
4612
    );
4613
    if (info->compressedSize < 0) {
×
4614
      tBufferDestroy(&local);
4615
      return TSDB_CODE_COMPRESS_ERROR;
×
4616
    }
4617

4618
    tBufferDestroy(&local);
4619
  } else {
4620
    DEFINE_VAR(info->cmprAlg)
×
4621
    if ((l1 == L1_UNKNOWN && l2 == L2_UNKNOWN) || (l1 == L1_DISABLED && l2 == L2_DISABLED)) {
×
4622
      (void)memcpy(output, input, info->originalSize);
×
4623
      info->compressedSize = info->originalSize;
×
4624
      return 0;
×
4625
    }
4626
    SBuffer local;
4627

4628
    tBufferInit(&local);
4629
    if (buffer == NULL) {
×
4630
      buffer = &local;
×
4631
    }
4632
    code = tBufferEnsureCapacity(buffer, extraSizeNeeded);
×
4633

4634
    info->compressedSize = tDataCompress[info->dataType].compFunc(  //
×
4635
        input,                                                      // input
4636
        info->originalSize,                                         // input size
4637
        info->originalSize / tDataTypes[info->dataType].bytes,      // number of elements
×
4638
        output,                                                     // output
4639
        outputSize,                                                 // output size
4640
        info->cmprAlg,                                              // compression algorithm
4641
        buffer->data,                                               // buffer
4642
        buffer->capacity                                            // buffer size
×
4643
    );
4644
    if (info->compressedSize < 0) {
×
4645
      tBufferDestroy(&local);
4646
      return TSDB_CODE_COMPRESS_ERROR;
×
4647
    }
4648

4649
    tBufferDestroy(&local);
4650
    // new col compress
4651
  }
4652

4653
  return 0;
×
4654
}
4655

4656
int32_t tDecompressData(void                *input,       // input
×
4657
                        const SCompressInfo *info,        // compress info
4658
                        void                *output,      // output
4659
                        int32_t              outputSize,  // output size
4660
                        SBuffer             *buffer       // assistant buffer provided by caller, can be NULL
4661
) {
4662
  int32_t code;
4663

4664
  if (!(outputSize >= info->originalSize)) {
×
4665
    return TSDB_CODE_INVALID_PARA;
×
4666
  }
4667

4668
  if (info->cmprAlg == NO_COMPRESSION) {
×
4669
    if (!(info->compressedSize == info->originalSize)) {
×
4670
      return TSDB_CODE_INVALID_PARA;
×
4671
    }
4672
    (void)memcpy(output, input, info->compressedSize);
×
4673
  } else if (info->cmprAlg == ONE_STAGE_COMP || info->cmprAlg == TWO_STAGE_COMP) {
×
4674
    SBuffer local;
4675

4676
    tBufferInit(&local);
4677
    if (buffer == NULL) {
×
4678
      buffer = &local;
×
4679
    }
4680

4681
    if (info->cmprAlg == TWO_STAGE_COMP) {
×
4682
      code = tBufferEnsureCapacity(buffer, info->originalSize + COMP_OVERFLOW_BYTES);
×
4683
      if (code) {
×
4684
        tBufferDestroy(&local);
4685
        return code;
×
4686
      }
4687
    }
4688

4689
    int32_t decompressedSize = tDataTypes[info->dataType].decompFunc(
×
4690
        input,                                                  // input
4691
        info->compressedSize,                                   // inputSize
×
4692
        info->originalSize / tDataTypes[info->dataType].bytes,  // number of elements
×
4693
        output,                                                 // output
4694
        outputSize,                                             // output size
4695
        info->cmprAlg,                                          // compression algorithm
×
4696
        buffer->data,                                           // helper buffer
4697
        buffer->capacity                                        // extra buffer size
×
4698
    );
4699
    if (decompressedSize < 0) {
×
4700
      tBufferDestroy(&local);
4701
      return TSDB_CODE_COMPRESS_ERROR;
×
4702
    }
4703

4704
    if (!(decompressedSize == info->originalSize)) {
×
4705
      return TSDB_CODE_COMPRESS_ERROR;
×
4706
    }
4707
    tBufferDestroy(&local);
4708
  } else {
4709
    DEFINE_VAR(info->cmprAlg);
×
4710
    if (l1 == L1_DISABLED && l2 == L2_DISABLED) {
×
4711
      (void)memcpy(output, input, info->compressedSize);
×
4712
      return 0;
×
4713
    }
4714
    SBuffer local;
4715

4716
    tBufferInit(&local);
4717
    if (buffer == NULL) {
×
4718
      buffer = &local;
×
4719
    }
4720
    code = tBufferEnsureCapacity(buffer, info->originalSize + COMP_OVERFLOW_BYTES);
×
4721
    if (code) {
×
4722
      return code;
×
4723
    }
4724

4725
    int32_t decompressedSize = tDataCompress[info->dataType].decompFunc(
×
4726
        input,                                                  // input
4727
        info->compressedSize,                                   // inputSize
×
4728
        info->originalSize / tDataTypes[info->dataType].bytes,  // number of elements
×
4729
        output,                                                 // output
4730
        outputSize,                                             // output size
4731
        info->cmprAlg,                                          // compression algorithm
×
4732
        buffer->data,                                           // helper buffer
4733
        buffer->capacity                                        // extra buffer size
×
4734
    );
4735
    if (decompressedSize < 0) {
×
4736
      tBufferDestroy(&local);
4737
      return TSDB_CODE_COMPRESS_ERROR;
×
4738
    }
4739

4740
    if (!(decompressedSize == info->originalSize)) {
×
4741
      return TSDB_CODE_COMPRESS_ERROR;
×
4742
    }
4743
    tBufferDestroy(&local);
4744
  }
4745

4746
  return 0;
×
4747
}
4748

4749
int32_t tCompressDataToBuffer(void *input, SCompressInfo *info, SBuffer *output, SBuffer *assist) {
×
4750
  int32_t code;
4751

4752
  code = tBufferEnsureCapacity(output, output->size + info->originalSize + COMP_OVERFLOW_BYTES);
×
4753
  if (code) return code;
×
4754

4755
  code = tCompressData(input, info, tBufferGetDataEnd(output), output->capacity - output->size, assist);
×
4756
  if (code) return code;
×
4757

4758
  output->size += info->compressedSize;
×
4759
  return 0;
×
4760
}
4761

4762
int32_t tDecompressDataToBuffer(void *input, SCompressInfo *info, SBuffer *output, SBuffer *assist) {
×
4763
  int32_t code;
4764

4765
  code = tBufferEnsureCapacity(output, output->size + info->originalSize);
×
4766
  if (code) return code;
×
4767

4768
  code = tDecompressData(input, info, tBufferGetDataEnd(output), output->capacity - output->size, assist);
×
4769
  if (code) return code;
×
4770

4771
  output->size += info->originalSize;
×
4772
  return 0;
×
4773
}
4774

4775
// handle all types, including var data
4776
void valueSetDatum(SValue *pVal, int8_t type, void *pDatum, uint32_t len) {
487✔
4777
  if (IS_VAR_DATA_TYPE(type) || type == TSDB_DATA_TYPE_DECIMAL) {
487!
4778
    pVal->pData = pDatum;
×
4779
    pVal->nData = len;
×
4780
  } else {
4781
    switch (len) {
487!
4782
      case sizeof(uint8_t):
28✔
4783
        pVal->val = *(uint8_t *)pDatum;
28✔
4784
        break;
28✔
4785
      case sizeof(uint16_t):
36✔
4786
        pVal->val = *(uint16_t *)pDatum;
36✔
4787
        break;
36✔
4788
      case sizeof(uint32_t):
119✔
4789
        pVal->val = *(uint32_t *)pDatum;
119✔
4790
        break;
119✔
4791
      case sizeof(uint64_t):
304✔
4792
        pVal->val = *(uint64_t *)pDatum;
304✔
4793
        break;
304✔
4794
      default:
×
4795
        break;
×
4796
    }
4797
  }
4798
}
487✔
4799

4800
void valueCloneDatum(SValue *pDst, const SValue *pSrc, int8_t type) {
×
4801
  if (IS_VAR_DATA_TYPE(type) || type == TSDB_DATA_TYPE_DECIMAL) {
×
4802
    memcpy(pDst->pData, pSrc->pData, pSrc->nData);
×
4803
    pDst->nData = pSrc->nData;
×
4804
  } else {
4805
    pDst->val = pSrc->val;
×
4806
  }
4807
}
×
4808
void valueClearDatum(SValue *pVal, int8_t type) {
×
4809
  if (IS_VAR_DATA_TYPE(type) || type == TSDB_DATA_TYPE_DECIMAL) {
×
4810
    taosMemoryFreeClear(pVal->pData);
×
4811
    pVal->nData = 0;
×
4812
  } else {
4813
    pVal->val = 0;
×
4814
  }
4815
}
×
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