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taosdata / TDengine / #3646

12 Mar 2025 12:34PM UTC coverage: 28.375% (-27.8%) from 56.156%
#3646

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Merge pull request #30119 from taosdata/ciup30

ci: Update workflow to fix param issue of run_tdgpt_test

59085 of 286935 branches covered (20.59%)

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102775 of 283490 relevant lines covered (36.25%)

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73.02
/source/util/src/ttimer.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 "ttimer.h"
18
#include "taoserror.h"
19
#include "tdef.h"
20
#include "tlog.h"
21
#include "tsched.h"
22

23
// clang-format off
24
#define tmrFatal(...) { if (tmrDebugFlag & DEBUG_FATAL) { taosPrintLog("TMR FATAL ", DEBUG_FATAL, tmrDebugFlag, __VA_ARGS__); }}
25
#define tmrError(...) { if (tmrDebugFlag & DEBUG_ERROR) { taosPrintLog("TMR ERROR ", DEBUG_ERROR, tmrDebugFlag, __VA_ARGS__); }}
26
#define tmrWarn(...)  { if (tmrDebugFlag & DEBUG_WARN)  { taosPrintLog("TMR WARN  ", DEBUG_WARN,  tmrDebugFlag, __VA_ARGS__); }}
27
#define tmrInfo(...)  { if (tmrDebugFlag & DEBUG_INFO)  { taosPrintLog("TMR INFO  ", DEBUG_INFO,  tmrDebugFlag, __VA_ARGS__); }}
28
#define tmrDebug(...) { if (tmrDebugFlag & DEBUG_DEBUG) { taosPrintLog("TMR DEBUG ", DEBUG_DEBUG, tmrDebugFlag, __VA_ARGS__); }}
29
#define tmrTrace(...) { if (tmrDebugFlag & DEBUG_TRACE) { taosPrintLog("TMR TRACE ", DEBUG_TRACE, tmrDebugFlag, __VA_ARGS__); }}
30
// clang-format on
31

32
#define TIMER_STATE_WAITING  0
33
#define TIMER_STATE_EXPIRED  1
34
#define TIMER_STATE_STOPPED  2
35
#define TIMER_STATE_CANCELED 3
36

37
typedef union _tmr_ctrl_t {
38
  char label[16];
39
  struct {
40
    // pad to ensure 'next' is the end of this union
41
    char               padding[16 - sizeof(union _tmr_ctrl_t*)];
42
    union _tmr_ctrl_t* next;
43
  };
44
} tmr_ctrl_t;
45

46
typedef struct tmr_obj_t {
47
  uintptr_t         id;
48
  tmr_ctrl_t*       ctrl;
49
  struct tmr_obj_t* mnext;
50
  struct tmr_obj_t* prev;
51
  struct tmr_obj_t* next;
52
  uint16_t          slot;
53
  uint8_t           wheel;
54
  uint8_t           state;
55
  uint8_t           refCount;
56
  uint8_t           reserved1;
57
  uint16_t          reserved2;
58
  union {
59
    int64_t expireAt;
60
    int64_t executedBy;
61
  };
62
  TAOS_TMR_CALLBACK fp;
63
  void*             param;
64
  uint8_t           priority;
65
} tmr_obj_t;
66

67
typedef struct timer_list_t {
68
  int64_t    lockedBy;
69
  tmr_obj_t* timers;
70
} timer_list_t;
71

72
typedef struct timer_map_t {
73
  uint32_t      size;
74
  uint32_t      count;
75
  timer_list_t* slots;
76
} timer_map_t;
77

78
typedef struct time_wheel_t {
79
  TdThreadMutex mutex;
80
  int64_t       nextScanAt;
81
  uint32_t      resolution;
82
  uint16_t      size;
83
  uint16_t      index;
84
  tmr_obj_t**   slots;
85
} time_wheel_t;
86

87
static int32_t tsMaxTmrCtrl = TSDB_MAX_VNODES_PER_DB + 100;
88

89
static int32_t       tmrModuleInit = 0;
90
static TdThreadMutex tmrCtrlMutex;
91
static tmr_ctrl_t*   tmrCtrls;
92
static tmr_ctrl_t*   unusedTmrCtrl = NULL;
93
static void*         tmrQhandle;
94
static void*         tmrQhandleHigh;
95
static int32_t       numOfTmrCtrl = 0;
96

97
int32_t          taosTmrThreads = 1;
98
static uintptr_t nextTimerId = 0;
99

100
static time_wheel_t wheels[] = {
101
    {.resolution = MSECONDS_PER_TICK, .size = 4096},
102
    {.resolution = 1000, .size = 1024},
103
    {.resolution = 60000, .size = 1024},
104
};
105
static timer_map_t timerMap;
106

107
static uintptr_t getNextTimerId() {
17,081✔
108
  uintptr_t id;
109
  do {
110
    id = (uintptr_t)atomic_add_fetch_ptr((void**)&nextTimerId, 1);
17,081✔
111
  } while (id == 0);
17,081!
112
  return id;
17,081✔
113
}
114

115
static void timerAddRef(tmr_obj_t* timer) {
50,577✔
116
  (void)atomic_add_fetch_8(&timer->refCount, 1);
50,577✔
117
}
50,578✔
118

119
static void timerDecRef(tmr_obj_t* timer) {
50,472✔
120
  if (atomic_sub_fetch_8(&timer->refCount, 1) == 0) {
50,472✔
121
    taosMemoryFree(timer);
17,003!
122
  }
123
}
50,473✔
124

125
static void lockTimerList(timer_list_t* list) {
51,595✔
126
  int64_t tid = taosGetSelfPthreadId();
51,595✔
127
  int32_t i = 0;
51,595✔
128
  while (atomic_val_compare_exchange_64(&(list->lockedBy), 0, tid) != 0) {
51,595!
129
    if (++i % 1000 == 0) {
×
130
      (void)sched_yield();
×
131
    }
132
  }
133
}
51,595✔
134

135
static void unlockTimerList(timer_list_t* list) {
51,594✔
136
  int64_t tid = taosGetSelfPthreadId();
51,594✔
137
  if (atomic_val_compare_exchange_64(&(list->lockedBy), tid, 0) != tid) {
51,594!
138
    uError("%" PRId64 " trying to unlock a timer list not locked by current thread.", tid);
×
139
  }
140
}
51,593✔
141

142
static void addTimer(tmr_obj_t* timer) {
17,081✔
143
  timerAddRef(timer);
17,081✔
144
  timer->wheel = tListLen(wheels);
17,081✔
145

146
  uint32_t      idx = (uint32_t)(timer->id % timerMap.size);
17,081✔
147
  timer_list_t* list = timerMap.slots + idx;
17,081✔
148

149
  lockTimerList(list);
17,081✔
150
  timer->mnext = list->timers;
17,081✔
151
  list->timers = timer;
17,081✔
152
  unlockTimerList(list);
17,081✔
153
}
17,081✔
154

155
static tmr_obj_t* findTimer(uintptr_t id) {
21,930✔
156
  tmr_obj_t* timer = NULL;
21,930✔
157
  if (id > 0) {
21,930✔
158
    uint32_t      idx = (uint32_t)(id % timerMap.size);
17,459✔
159
    timer_list_t* list = timerMap.slots + idx;
17,459✔
160
    lockTimerList(list);
17,459✔
161
    for (timer = list->timers; timer != NULL; timer = timer->mnext) {
17,459✔
162
      if (timer->id == id) {
16,416!
163
        timerAddRef(timer);
16,416✔
164
        break;
16,416✔
165
      }
166
    }
167
    unlockTimerList(list);
17,459✔
168
  }
169
  return timer;
21,930✔
170
}
171

172
static void removeTimer(uintptr_t id) {
17,055✔
173
  tmr_obj_t*    prev = NULL;
17,055✔
174
  uint32_t      idx = (uint32_t)(id % timerMap.size);
17,055✔
175
  timer_list_t* list = timerMap.slots + idx;
17,055✔
176
  lockTimerList(list);
17,055✔
177
  for (tmr_obj_t* p = list->timers; p != NULL; p = p->mnext) {
17,055!
178
    if (p->id == id) {
17,055!
179
      if (prev == NULL) {
17,055!
180
        list->timers = p->mnext;
17,055✔
181
      } else {
182
        prev->mnext = p->mnext;
×
183
      }
184
      timerDecRef(p);
17,055✔
185
      break;
17,055✔
186
    }
187
    prev = p;
×
188
  }
189
  unlockTimerList(list);
17,055✔
190
}
17,055✔
191

192
static void addToWheel(tmr_obj_t* timer, uint32_t delay) {
17,081✔
193
  timerAddRef(timer);
17,081✔
194
  // select a wheel for the timer, we are not an accurate timer,
195
  // but the inaccuracy should not be too large.
196
  timer->wheel = tListLen(wheels) - 1;
17,081✔
197
  for (uint8_t i = 0; i < tListLen(wheels); i++) {
17,301!
198
    time_wheel_t* wheel = wheels + i;
17,301✔
199
    if (delay < wheel->resolution * wheel->size) {
17,301✔
200
      timer->wheel = i;
17,081✔
201
      break;
17,081✔
202
    }
203
  }
204

205
  time_wheel_t* wheel = wheels + timer->wheel;
17,081✔
206
  timer->prev = NULL;
17,081✔
207
  timer->expireAt = taosGetMonotonicMs() + delay;
17,081✔
208

209
  (void)taosThreadMutexLock(&wheel->mutex);
17,081✔
210

211
  uint32_t idx = 0;
17,081✔
212
  if (timer->expireAt > wheel->nextScanAt) {
17,081!
213
    // adjust delay according to next scan time of this wheel
214
    // so that the timer is not fired earlier than desired.
215
    delay = (uint32_t)(timer->expireAt - wheel->nextScanAt);
17,081✔
216
    idx = (delay + wheel->resolution - 1) / wheel->resolution;
17,081✔
217
  }
218

219
  timer->slot = (uint16_t)((wheel->index + idx + 1) % wheel->size);
17,081✔
220
  tmr_obj_t* p = wheel->slots[timer->slot];
17,081✔
221
  wheel->slots[timer->slot] = timer;
17,081✔
222
  timer->next = p;
17,081✔
223
  if (p != NULL) {
17,081✔
224
    p->prev = timer;
5,996✔
225
  }
226

227
  (void)taosThreadMutexUnlock(&wheel->mutex);
17,081✔
228
}
17,081✔
229

230
static bool removeFromWheel(tmr_obj_t* timer) {
2,062✔
231
  uint8_t wheelIdx = timer->wheel;
2,062✔
232
  if (wheelIdx >= tListLen(wheels)) {
2,062!
233
    return false;
×
234
  }
235
  time_wheel_t* wheel = wheels + wheelIdx;
2,062✔
236

237
  bool removed = false;
2,062✔
238
  (void)taosThreadMutexLock(&wheel->mutex);
2,062✔
239
  // other thread may modify timer->wheel, check again.
240
  if (timer->wheel < tListLen(wheels)) {
2,062!
241
    if (timer->prev != NULL) {
2,062✔
242
      timer->prev->next = timer->next;
165✔
243
    }
244
    if (timer->next != NULL) {
2,062✔
245
      timer->next->prev = timer->prev;
78✔
246
    }
247
    if (timer == wheel->slots[timer->slot]) {
2,062✔
248
      wheel->slots[timer->slot] = timer->next;
1,897✔
249
    }
250
    timer->wheel = tListLen(wheels);
2,062✔
251
    timer->next = NULL;
2,062✔
252
    timer->prev = NULL;
2,062✔
253
    timerDecRef(timer);
2,062✔
254
    removed = true;
2,062✔
255
  }
256
  (void)taosThreadMutexUnlock(&wheel->mutex);
2,062✔
257

258
  return removed;
2,062✔
259
}
260

261
static void processExpiredTimer(void* handle, void* arg) {
14,983✔
262
  tmr_obj_t* timer = (tmr_obj_t*)handle;
14,983✔
263
  timer->executedBy = taosGetSelfPthreadId();
14,983✔
264
  uint8_t state = atomic_val_compare_exchange_8(&timer->state, TIMER_STATE_WAITING, TIMER_STATE_EXPIRED);
14,993✔
265
  if (state == TIMER_STATE_WAITING) {
14,993!
266
    const char* fmt = "%s timer[id=%" PRIuPTR ", fp=%p, param=%p] execution start.";
14,993✔
267
    tmrDebug(fmt, timer->ctrl->label, timer->id, timer->fp, timer->param);
14,993!
268

269
    (*timer->fp)(timer->param, (tmr_h)timer->id);
14,993✔
270
    atomic_store_8(&timer->state, TIMER_STATE_STOPPED);
14,993✔
271

272
    fmt = "%s timer[id=%" PRIuPTR ", fp=%p, param=%p] execution end.";
14,993✔
273
    tmrDebug(fmt, timer->ctrl->label, timer->id, timer->fp, timer->param);
14,993!
274
  }
275
  removeTimer(timer->id);
14,993✔
276
  timerDecRef(timer);
14,993✔
277
}
14,993✔
278

279
static void addToExpired(tmr_obj_t* head) {
2,560,029✔
280
  const char* fmt = "%s adding expired timer[id=%" PRIuPTR ", fp=%p, param=%p] to queue.";
2,560,029✔
281

282
  while (head != NULL) {
2,575,022✔
283
    uintptr_t  id = head->id;
14,993✔
284
    tmr_obj_t* next = head->next;
14,993✔
285
    tmrDebug(fmt, head->ctrl->label, id, head->fp, head->param);
14,993!
286

287
    SSchedMsg schedMsg;
288
    schedMsg.fp = NULL;
14,993✔
289
    schedMsg.tfp = processExpiredTimer;
14,993✔
290
    schedMsg.msg = NULL;
14,993✔
291
    schedMsg.ahandle = head;
14,993✔
292
    schedMsg.thandle = NULL;
14,993✔
293
    uint8_t priority = head->priority;
14,993✔
294

295
    if (priority == 1) {
14,993✔
296
      if (taosScheduleTask(tmrQhandle, &schedMsg) != 0) {
14,387!
297
        tmrError("%s failed to add expired timer[id=%" PRIuPTR "] to queue.", head->ctrl->label, id);
×
298
      }
299
    } else if (priority == 2) {
606!
300
      if (taosScheduleTask(tmrQhandleHigh, &schedMsg) != 0) {
606!
301
        tmrError("%s failed to add expired timer[id=%" PRIuPTR "] to high level queue.", head->ctrl->label, id);
×
302
      }
303
    }
304
    else{
305
      tmrError("%s invalid priority level %d for timer[id=%" PRIuPTR "].", head->ctrl->label, priority, id);
×
306
    }
307

308
    tmrDebug("timer[id=%" PRIuPTR "] has been added to queue priority:%d.", id, priority);
14,993!
309
    head = next;
14,993✔
310
  }
311
}
2,560,029✔
312

313
static uintptr_t doStartTimer(tmr_obj_t* timer, TAOS_TMR_CALLBACK fp, int32_t mseconds, void* param, tmr_ctrl_t* ctrl,
17,081✔
314
                              uint8_t priority) {
315
  uintptr_t id = getNextTimerId();
17,081✔
316
  timer->id = id;
17,081✔
317
  timer->state = TIMER_STATE_WAITING;
17,081✔
318
  timer->fp = fp;
17,081✔
319
  timer->param = param;
17,081✔
320
  timer->ctrl = ctrl;
17,081✔
321
  timer->priority = priority;
17,081✔
322
  addTimer(timer);
17,081✔
323

324
  const char* fmt = "%s timer[id=%" PRIuPTR ", fp=%p, param=%p] started";
17,081✔
325
  tmrDebug(fmt, ctrl->label, timer->id, timer->fp, timer->param);
17,081!
326

327
  if (mseconds == 0) {
17,081!
328
    timer->wheel = tListLen(wheels);
×
329
    timerAddRef(timer);
×
330
    addToExpired(timer);
×
331
  } else {
332
    addToWheel(timer, mseconds);
17,081✔
333
  }
334

335
  // note: use `timer->id` here is unsafe as `timer` may already be freed
336
  return id;
17,081✔
337
}
338

339
tmr_h taosTmrStartPriority(TAOS_TMR_CALLBACK fp, int32_t mseconds, void* param, void* handle, uint8_t priority) {
17,029✔
340
  tmr_ctrl_t* ctrl = (tmr_ctrl_t*)handle;
17,029✔
341
  if (ctrl == NULL || ctrl->label[0] == 0) {
17,029!
342
    return NULL;
×
343
  }
344

345
  tmr_obj_t* timer = (tmr_obj_t*)taosMemoryCalloc(1, sizeof(tmr_obj_t));
17,029!
346
  if (timer == NULL) {
17,029!
347
    tmrError("%s failed to allocated memory for new timer object.", ctrl->label);
×
348
    return NULL;
×
349
  }
350

351
  return (tmr_h)doStartTimer(timer, fp, mseconds, param, ctrl, priority);
17,029✔
352
}
353

354
tmr_h taosTmrStart(TAOS_TMR_CALLBACK fp, int32_t mseconds, void* param, void* handle) {
723✔
355
  return taosTmrStartPriority(fp, mseconds, param, handle, 1);
723✔
356
}
357

358
static void taosTimerLoopFunc(int32_t signo) {
853,343✔
359
  int64_t now = taosGetMonotonicMs();
853,343✔
360

361
  for (int32_t i = 0; i < tListLen(wheels); i++) {
3,413,372✔
362
    // `expried` is a temporary expire list.
363
    // expired timers are first add to this list, then move
364
    // to expired queue as a batch to improve performance.
365
    // note this list is used as a stack in this function.
366
    tmr_obj_t* expired = NULL;
2,560,029✔
367

368
    time_wheel_t* wheel = wheels + i;
2,560,029✔
369
    while (now >= wheel->nextScanAt) {
3,417,720✔
370
      (void)taosThreadMutexLock(&wheel->mutex);
857,691✔
371
      wheel->index = (wheel->index + 1) % wheel->size;
857,691✔
372
      tmr_obj_t* timer = wheel->slots[wheel->index];
857,691✔
373
      while (timer != NULL) {
872,684✔
374
        tmr_obj_t* next = timer->next;
14,993✔
375
        if (now < timer->expireAt) {
14,993!
376
          timer = next;
×
377
          continue;
×
378
        }
379

380
        // remove from the wheel
381
        if (timer->prev == NULL) {
14,993!
382
          wheel->slots[wheel->index] = next;
14,993✔
383
          if (next != NULL) {
14,993✔
384
            next->prev = NULL;
5,787✔
385
          }
386
        } else {
387
          timer->prev->next = next;
×
388
          if (next != NULL) {
×
389
            next->prev = timer->prev;
×
390
          }
391
        }
392
        timer->wheel = tListLen(wheels);
14,993✔
393

394
        // add to temporary expire list
395
        timer->next = expired;
14,993✔
396
        timer->prev = NULL;
14,993✔
397
        if (expired != NULL) {
14,993✔
398
          expired->prev = timer;
5,787✔
399
        }
400
        expired = timer;
14,993✔
401

402
        timer = next;
14,993✔
403
      }
404
      wheel->nextScanAt += wheel->resolution;
857,691✔
405
      (void)taosThreadMutexUnlock(&wheel->mutex);
857,691✔
406
    }
407

408
    addToExpired(expired);
2,560,029✔
409
  }
410
}
853,343✔
411

412
static bool doStopTimer(tmr_obj_t* timer, uint8_t state) {
16,416✔
413
  if (state == TIMER_STATE_WAITING) {
16,416✔
414
    bool reusable = false;
2,062✔
415
    if (removeFromWheel(timer)) {
2,062!
416
      removeTimer(timer->id);
2,062✔
417
      // only safe to reuse the timer when timer is removed from the wheel.
418
      // we cannot guarantee the thread safety of the timr in all other cases.
419
      reusable = true;
2,062✔
420
    }
421
    const char* fmt = "%s timer[id=%" PRIuPTR ", fp=%p, param=%p] is cancelled.";
2,062✔
422
    tmrDebug(fmt, timer->ctrl->label, timer->id, timer->fp, timer->param);
2,062!
423
    return reusable;
2,062✔
424
  }
425

426
  if (state != TIMER_STATE_EXPIRED) {
14,354!
427
    // timer already stopped or cancelled, has nothing to do in this case
428
    return false;
×
429
  }
430

431
  if (timer->executedBy == taosGetSelfPthreadId()) {
14,354!
432
    // taosTmrReset is called in the timer callback, should do nothing in this
433
    // case to avoid dead lock. note taosTmrReset must be the last statement
434
    // of the callback funtion, will be a bug otherwise.
435
    return false;
14,354✔
436
  }
437

438
  // timer callback is executing in another thread, we SHOULD wait it to stop,
439
  // BUT this may result in dead lock if current thread are holding a lock which
440
  // the timer callback need to acquire. so, we HAVE TO return directly.
441
  const char* fmt = "%s timer[id=%" PRIuPTR ", fp=%p, param=%p] is executing and cannot be stopped.";
×
442
  tmrDebug(fmt, timer->ctrl->label, timer->id, timer->fp, timer->param);
×
443
  return false;
×
444
}
445

446
bool taosTmrStop(tmr_h timerId) {
5,571✔
447
  uintptr_t id = (uintptr_t)timerId;
5,571✔
448

449
  tmr_obj_t* timer = findTimer(id);
5,571✔
450
  if (timer == NULL) {
5,571✔
451
    tmrDebug("timer[id=%" PRIuPTR "] does not exist", id);
3,561!
452
    return false;
3,561✔
453
  }
454

455
  uint8_t state = atomic_val_compare_exchange_8(&timer->state, TIMER_STATE_WAITING, TIMER_STATE_CANCELED);
2,010✔
456
  (void)doStopTimer(timer, state);
2,010✔
457
  timerDecRef(timer);
2,010✔
458

459
  return state == TIMER_STATE_WAITING;
2,010✔
460
}
461

462
bool taosTmrStopA(tmr_h* timerId) {
68✔
463
  bool ret = taosTmrStop(*timerId);
68✔
464
  *timerId = NULL;
68✔
465
  return ret;
68✔
466
}
467

468
bool taosTmrIsStopped(tmr_h* timerId) {
1✔
469
  uintptr_t id = (uintptr_t)*timerId;
1✔
470

471
  tmr_obj_t* timer = findTimer(id);
1✔
472
  if (timer == NULL) {
1!
473
    tmrDebug("timer[id=%" PRIuPTR "] does not exist", id);
1!
474
    return true;
1✔
475
  }
476

477
  uint8_t state = atomic_load_8(&timer->state);
×
478

479
  return (state == TIMER_STATE_CANCELED) || (state == TIMER_STATE_STOPPED);
×
480
}
481

482
bool taosTmrResetPriority(TAOS_TMR_CALLBACK fp, int32_t mseconds, void* param, void* handle, tmr_h* pTmrId,
16,357✔
483
                          uint8_t priority) {
484
  tmr_ctrl_t* ctrl = (tmr_ctrl_t*)handle;
16,357✔
485
  if (ctrl == NULL || ctrl->label[0] == 0) {
16,357!
486
    return false;
×
487
  }
488

489
  uintptr_t  id = (uintptr_t)*pTmrId;
16,358✔
490
  bool       stopped = false;
16,358✔
491
  tmr_obj_t* timer = findTimer(id);
16,358✔
492
  if (timer == NULL) {
16,358✔
493
    tmrDebug("%s timer[id=%" PRIuPTR "] does not exist", ctrl->label, id);
1,952!
494
  } else {
495
    uint8_t state = atomic_val_compare_exchange_8(&timer->state, TIMER_STATE_WAITING, TIMER_STATE_CANCELED);
14,406✔
496
    if (!doStopTimer(timer, state)) {
14,406✔
497
      timerDecRef(timer);
14,354✔
498
      timer = NULL;
14,354✔
499
    }
500
    stopped = state == TIMER_STATE_WAITING;
14,406✔
501
  }
502

503
  if (timer == NULL) {
16,358✔
504
    *pTmrId = taosTmrStartPriority(fp, mseconds, param, handle, priority);
16,306✔
505
    if (NULL == *pTmrId) {
16,306!
506
      stopped = true;
×
507
    }
508
    return stopped;
16,306✔
509
  }
510

511
  tmrDebug("%s timer[id=%" PRIuPTR "] is reused", ctrl->label, timer->id);
52!
512

513
  // wait until there's no other reference to this timer,
514
  // so that we can reuse this timer safely.
515
  for (int32_t i = 1; atomic_load_8(&timer->refCount) > 1; ++i) {
52!
516
    if (i % 1000 == 0) {
×
517
      (void)sched_yield();
×
518
    }
519
  }
520

521
  if (timer->refCount != 1) {
52!
522
    uError("timer refCount=%d not expected 1", timer->refCount);
×
523
  }
524
  memset(timer, 0, sizeof(*timer));
52✔
525
  *pTmrId = (tmr_h)doStartTimer(timer, fp, mseconds, param, ctrl, priority);
52✔
526

527
  return stopped;
52✔
528
}
529

530
bool taosTmrReset(TAOS_TMR_CALLBACK fp, int32_t mseconds, void* param, void* handle, tmr_h* pTmrId) {
15,582✔
531
  return taosTmrResetPriority(fp, mseconds, param, handle, pTmrId, 1);
15,582✔
532
}
533

534
static int32_t taosTmrModuleInit(void) {
35✔
535
  tmrCtrls = taosMemoryMalloc(sizeof(tmr_ctrl_t) * tsMaxTmrCtrl);
35!
536
  if (tmrCtrls == NULL) {
35!
537
    tmrError("failed to allocate memory for timer controllers.");
×
538
    return terrno;
×
539
  }
540

541
  memset(&timerMap, 0, sizeof(timerMap));
35✔
542

543
  for (uint32_t i = 0; i < tsMaxTmrCtrl - 1; ++i) {
39,340✔
544
    tmr_ctrl_t* ctrl = tmrCtrls + i;
39,305✔
545
    ctrl->next = ctrl + 1;
39,305✔
546
  }
547
  (tmrCtrls + tsMaxTmrCtrl - 1)->next = NULL;
35✔
548
  unusedTmrCtrl = tmrCtrls;
35✔
549

550
  (void)taosThreadMutexInit(&tmrCtrlMutex, NULL);
35✔
551

552
  int64_t now = taosGetMonotonicMs();
35✔
553
  for (int32_t i = 0; i < tListLen(wheels); i++) {
140✔
554
    time_wheel_t* wheel = wheels + i;
105✔
555
    if (taosThreadMutexInit(&wheel->mutex, NULL) != 0) {
105!
556
      tmrError("failed to create the mutex for wheel, reason:%s", strerror(errno));
×
557
      return terrno;
×
558
    }
559
    wheel->nextScanAt = now + wheel->resolution;
105✔
560
    wheel->index = 0;
105✔
561
    wheel->slots = (tmr_obj_t**)taosMemoryCalloc(wheel->size, sizeof(tmr_obj_t*));
105!
562
    if (wheel->slots == NULL) {
105!
563
      tmrError("failed to allocate wheel slots");
×
564
      return terrno;
×
565
    }
566
    timerMap.size += wheel->size;
105✔
567
  }
568

569
  timerMap.count = 0;
35✔
570
  timerMap.slots = (timer_list_t*)taosMemoryCalloc(timerMap.size, sizeof(timer_list_t));
35!
571
  if (timerMap.slots == NULL) {
35!
572
    tmrError("failed to allocate hash map");
×
573
    return terrno;
×
574
  }
575

576
  tmrQhandle = taosInitScheduler(10000, taosTmrThreads, "tmr", NULL);
35✔
577
  tmrQhandleHigh = taosInitScheduler(10000, taosTmrThreads, "high-tmr", NULL);
35✔
578
  if (taosInitTimer(taosTimerLoopFunc, MSECONDS_PER_TICK) != 0) {
35!
579
    tmrError("failed to initialize timer");
×
580
  }
581

582
  tmrDebug("timer module is initialized, number of threads: %d", taosTmrThreads);
35!
583

584
  return 2;
35✔
585
}
586

587
static int32_t taosTmrInitModule(void) {
392✔
588
  if (atomic_load_32(&tmrModuleInit) == 2) {
392✔
589
    return 0;
357✔
590
  }
591

592
  if (atomic_load_32(&tmrModuleInit) < 0) {
35!
593
    return -1;
×
594
  }
595

596
  while (true) {
597
    if (0 == atomic_val_compare_exchange_32(&tmrModuleInit, 0, 1)) {
70✔
598
      atomic_store_32(&tmrModuleInit, taosTmrModuleInit());
35✔
599
    } else if (atomic_load_32(&tmrModuleInit) < 0) {
35!
600
      return -1;
×
601
    } else if (atomic_load_32(&tmrModuleInit) == 2) {
35!
602
      return 0;
35✔
603
    } else {
604
      taosMsleep(1);
×
605
    }
606
  }
607

608
  return -1;
609
}
610

611
void* taosTmrInit(int32_t maxNumOfTmrs, int32_t resolution, int32_t longest, const char* label) {
392✔
612
  const char* ret = taosMonotonicInit();
392✔
613
  tmrDebug("ttimer monotonic clock source:%s", ret);
392!
614

615
  if (taosTmrInitModule() < 0) {
392!
616
    return NULL;
×
617
  }
618

619
  (void)taosThreadMutexLock(&tmrCtrlMutex);
392✔
620
  tmr_ctrl_t* ctrl = unusedTmrCtrl;
392✔
621
  if (ctrl != NULL) {
392!
622
    unusedTmrCtrl = ctrl->next;
392✔
623
    numOfTmrCtrl++;
392✔
624
  }
625
  (void)taosThreadMutexUnlock(&tmrCtrlMutex);
392✔
626

627
  if (ctrl == NULL) {
392!
628
    tmrError("%s too many timer controllers, failed to create timer controller.", label);
×
629
    terrno = TSDB_CODE_OUT_OF_MEMORY;
×
630
    return NULL;
×
631
  }
632

633
  tstrncpy(ctrl->label, label, sizeof(ctrl->label));
392✔
634

635
  tmrDebug("%s timer controller is initialized, number of timer controllers: %d.", label, numOfTmrCtrl);
392!
636
  return ctrl;
392✔
637
}
638

639
void taosTmrCleanUp(void* handle) {
375✔
640
  tmr_ctrl_t* ctrl = (tmr_ctrl_t*)handle;
375✔
641
  if (ctrl == NULL || ctrl->label[0] == 0) {
375!
642
    return;
×
643
  }
644

645
  tmrDebug("%s timer controller is cleaned up.", ctrl->label);
375!
646
  ctrl->label[0] = 0;
375✔
647

648
  (void)taosThreadMutexLock(&tmrCtrlMutex);
375✔
649
  ctrl->next = unusedTmrCtrl;
375✔
650
  numOfTmrCtrl--;
375✔
651
  unusedTmrCtrl = ctrl;
375✔
652
  (void)taosThreadMutexUnlock(&tmrCtrlMutex);
375✔
653

654
  tmrDebug("time controller's tmr ctrl size:  %d", numOfTmrCtrl);
375!
655
  if (numOfTmrCtrl <= 0) {
375✔
656
    taosUninitTimer();
18✔
657

658
    taosCleanUpScheduler(tmrQhandle);
18✔
659
    taosMemoryFreeClear(tmrQhandle);
18!
660

661
    taosCleanUpScheduler(tmrQhandleHigh);
18✔
662
    taosMemoryFreeClear(tmrQhandleHigh);
18!
663

664
    for (int32_t i = 0; i < tListLen(wheels); i++) {
72✔
665
      time_wheel_t* wheel = wheels + i;
54✔
666
      (void)taosThreadMutexDestroy(&wheel->mutex);
54✔
667
      taosMemoryFree(wheel->slots);
54!
668
    }
669

670
    (void)taosThreadMutexDestroy(&tmrCtrlMutex);
18✔
671

672
    for (size_t i = 0; i < timerMap.size; i++) {
110,610✔
673
      timer_list_t* list = timerMap.slots + i;
110,592✔
674
      tmr_obj_t*    t = list->timers;
110,592✔
675
      while (t != NULL) {
110,606✔
676
        tmr_obj_t* next = t->mnext;
14✔
677
        taosMemoryFree(t);
14!
678
        t = next;
14✔
679
      }
680
    }
681
    taosMemoryFree(timerMap.slots);
18!
682
    taosMemoryFree(tmrCtrls);
18!
683

684
    tmrCtrls = NULL;
18✔
685
    unusedTmrCtrl = NULL;
18✔
686
    atomic_store_32(&tmrModuleInit, 0);
18✔
687
  }
688
}
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