提交 ed98fddf 编写于 作者: S Shengliang Guan

enh: adjusting the operation mode of the stream thread pool

上级 e47bf7ba
...@@ -733,7 +733,7 @@ To prevent system resource from being exhausted by multiple concurrent streams, ...@@ -733,7 +733,7 @@ To prevent system resource from being exhausted by multiple concurrent streams,
| 42 | numOfCommitThreads | Yes | Yes | | 42 | numOfCommitThreads | Yes | Yes |
| 43 | numOfMnodeReadThreads | No | Yes | | 43 | numOfMnodeReadThreads | No | Yes |
| 44 | numOfVnodeQueryThreads | No | Yes | | 44 | numOfVnodeQueryThreads | No | Yes |
| 45 | numOfVnodeStreamThreads | No | Yes | | 45 | ratioOfVnodeStreamThreads | No | Yes |
| 46 | numOfVnodeFetchThreads | No | Yes | | 46 | numOfVnodeFetchThreads | No | Yes |
| 47 | numOfVnodeRsmaThreads | No | Yes | | 47 | numOfVnodeRsmaThreads | No | Yes |
| 48 | numOfQnodeQueryThreads | No | Yes | | 48 | numOfQnodeQueryThreads | No | Yes |
......
...@@ -709,7 +709,7 @@ charset 的有效值是 UTF-8。 ...@@ -709,7 +709,7 @@ charset 的有效值是 UTF-8。
| 42 | numOfCommitThreads | 是 | 是 | | | 42 | numOfCommitThreads | 是 | 是 | |
| 43 | numOfMnodeReadThreads | 否 | 是 | | | 43 | numOfMnodeReadThreads | 否 | 是 | |
| 44 | numOfVnodeQueryThreads | 否 | 是 | | | 44 | numOfVnodeQueryThreads | 否 | 是 | |
| 45 | numOfVnodeStreamThreads | 否 | 是 | | | 45 | ratioOfVnodeStreamThreads | 否 | 是 | |
| 46 | numOfVnodeFetchThreads | 否 | 是 | | | 46 | numOfVnodeFetchThreads | 否 | 是 | |
| 47 | numOfVnodeRsmaThreads | 否 | 是 | | | 47 | numOfVnodeRsmaThreads | 否 | 是 | |
| 48 | numOfQnodeQueryThreads | 否 | 是 | | | 48 | numOfQnodeQueryThreads | 否 | 是 | |
......
...@@ -55,7 +55,7 @@ extern int32_t tsNumOfMnodeQueryThreads; ...@@ -55,7 +55,7 @@ extern int32_t tsNumOfMnodeQueryThreads;
extern int32_t tsNumOfMnodeFetchThreads; extern int32_t tsNumOfMnodeFetchThreads;
extern int32_t tsNumOfMnodeReadThreads; extern int32_t tsNumOfMnodeReadThreads;
extern int32_t tsNumOfVnodeQueryThreads; extern int32_t tsNumOfVnodeQueryThreads;
extern int32_t tsNumOfVnodeStreamThreads; extern float tsRatioOfVnodeStreamThreads;
extern int32_t tsNumOfVnodeFetchThreads; extern int32_t tsNumOfVnodeFetchThreads;
extern int32_t tsNumOfVnodeRsmaThreads; extern int32_t tsNumOfVnodeRsmaThreads;
extern int32_t tsNumOfQnodeQueryThreads; extern int32_t tsNumOfQnodeQueryThreads;
......
...@@ -17,6 +17,7 @@ ...@@ -17,6 +17,7 @@
#define _TD_UTIL_WORKER_H_ #define _TD_UTIL_WORKER_H_
#include "tqueue.h" #include "tqueue.h"
#include "tarray.h"
#ifdef __cplusplus #ifdef __cplusplus
extern "C" { extern "C" {
...@@ -26,10 +27,10 @@ typedef struct SQWorkerPool SQWorkerPool; ...@@ -26,10 +27,10 @@ typedef struct SQWorkerPool SQWorkerPool;
typedef struct SWWorkerPool SWWorkerPool; typedef struct SWWorkerPool SWWorkerPool;
typedef struct SQWorker { typedef struct SQWorker {
int32_t id; // worker id int32_t id; // worker id
int64_t pid; // thread pid int64_t pid; // thread pid
TdThread thread; // thread id TdThread thread; // thread id
SQWorkerPool *pool; void *pool;
} SQWorker; } SQWorker;
typedef struct SQWorkerPool { typedef struct SQWorkerPool {
...@@ -42,6 +43,14 @@ typedef struct SQWorkerPool { ...@@ -42,6 +43,14 @@ typedef struct SQWorkerPool {
TdThreadMutex mutex; TdThreadMutex mutex;
} SQWorkerPool; } SQWorkerPool;
typedef struct SAutoQWorkerPool {
float ratio;
STaosQset *qset;
const char *name;
SArray *workers;
TdThreadMutex mutex;
} SAutoQWorkerPool;
typedef struct SWWorker { typedef struct SWWorker {
int32_t id; // worker id int32_t id; // worker id
int64_t pid; // thread pid int64_t pid; // thread pid
...@@ -65,6 +74,11 @@ void tQWorkerCleanup(SQWorkerPool *pool); ...@@ -65,6 +74,11 @@ void tQWorkerCleanup(SQWorkerPool *pool);
STaosQueue *tQWorkerAllocQueue(SQWorkerPool *pool, void *ahandle, FItem fp); STaosQueue *tQWorkerAllocQueue(SQWorkerPool *pool, void *ahandle, FItem fp);
void tQWorkerFreeQueue(SQWorkerPool *pool, STaosQueue *queue); void tQWorkerFreeQueue(SQWorkerPool *pool, STaosQueue *queue);
int32_t tAutoQWorkerInit(SAutoQWorkerPool *pool);
void tAutoQWorkerCleanup(SAutoQWorkerPool *pool);
STaosQueue *tAutoQWorkerAllocQueue(SAutoQWorkerPool *pool, void *ahandle, FItem fp);
void tAutoQWorkerFreeQueue(SAutoQWorkerPool *pool, STaosQueue *queue);
int32_t tWWorkerInit(SWWorkerPool *pool); int32_t tWWorkerInit(SWWorkerPool *pool);
void tWWorkerCleanup(SWWorkerPool *pool); void tWWorkerCleanup(SWWorkerPool *pool);
STaosQueue *tWWorkerAllocQueue(SWWorkerPool *pool, void *ahandle, FItems fp); STaosQueue *tWWorkerAllocQueue(SWWorkerPool *pool, void *ahandle, FItems fp);
......
...@@ -47,7 +47,7 @@ int32_t tsNumOfMnodeQueryThreads = 4; ...@@ -47,7 +47,7 @@ int32_t tsNumOfMnodeQueryThreads = 4;
int32_t tsNumOfMnodeFetchThreads = 1; int32_t tsNumOfMnodeFetchThreads = 1;
int32_t tsNumOfMnodeReadThreads = 1; int32_t tsNumOfMnodeReadThreads = 1;
int32_t tsNumOfVnodeQueryThreads = 4; int32_t tsNumOfVnodeQueryThreads = 4;
int32_t tsNumOfVnodeStreamThreads = 2; float tsRatioOfVnodeStreamThreads = 1.0;
int32_t tsNumOfVnodeFetchThreads = 4; int32_t tsNumOfVnodeFetchThreads = 4;
int32_t tsNumOfVnodeRsmaThreads = 2; int32_t tsNumOfVnodeRsmaThreads = 2;
int32_t tsNumOfQnodeQueryThreads = 4; int32_t tsNumOfQnodeQueryThreads = 4;
...@@ -392,9 +392,7 @@ static int32_t taosAddServerCfg(SConfig *pCfg) { ...@@ -392,9 +392,7 @@ static int32_t taosAddServerCfg(SConfig *pCfg) {
tsNumOfVnodeQueryThreads = TMAX(tsNumOfVnodeQueryThreads, 4); tsNumOfVnodeQueryThreads = TMAX(tsNumOfVnodeQueryThreads, 4);
if (cfgAddInt32(pCfg, "numOfVnodeQueryThreads", tsNumOfVnodeQueryThreads, 4, 1024, 0) != 0) return -1; if (cfgAddInt32(pCfg, "numOfVnodeQueryThreads", tsNumOfVnodeQueryThreads, 4, 1024, 0) != 0) return -1;
tsNumOfVnodeStreamThreads = tsNumOfCores / 4; if (cfgAddFloat(pCfg, "ratioOfVnodeStreamThreads", tsRatioOfVnodeStreamThreads, 0.01, 100, 0) != 0) return -1;
tsNumOfVnodeStreamThreads = TMAX(tsNumOfVnodeStreamThreads, 4);
if (cfgAddInt32(pCfg, "numOfVnodeStreamThreads", tsNumOfVnodeStreamThreads, 4, 1024, 0) != 0) return -1;
tsNumOfVnodeFetchThreads = tsNumOfCores / 4; tsNumOfVnodeFetchThreads = tsNumOfCores / 4;
tsNumOfVnodeFetchThreads = TMAX(tsNumOfVnodeFetchThreads, 4); tsNumOfVnodeFetchThreads = TMAX(tsNumOfVnodeFetchThreads, 4);
...@@ -513,11 +511,9 @@ static int32_t taosUpdateServerCfg(SConfig *pCfg) { ...@@ -513,11 +511,9 @@ static int32_t taosUpdateServerCfg(SConfig *pCfg) {
pItem->stype = stype; pItem->stype = stype;
} }
pItem = cfgGetItem(tsCfg, "numOfVnodeStreamThreads"); pItem = cfgGetItem(tsCfg, "ratioOfVnodeStreamThreads");
if (pItem != NULL && pItem->stype == CFG_STYPE_DEFAULT) { if (pItem != NULL && pItem->stype == CFG_STYPE_DEFAULT) {
tsNumOfVnodeStreamThreads = numOfCores / 4; pItem->fval = tsRatioOfVnodeStreamThreads;
tsNumOfVnodeStreamThreads = TMAX(tsNumOfVnodeStreamThreads, 4);
pItem->i32 = tsNumOfVnodeStreamThreads;
pItem->stype = stype; pItem->stype = stype;
} }
...@@ -710,7 +706,7 @@ static int32_t taosSetServerCfg(SConfig *pCfg) { ...@@ -710,7 +706,7 @@ static int32_t taosSetServerCfg(SConfig *pCfg) {
tsNumOfCommitThreads = cfgGetItem(pCfg, "numOfCommitThreads")->i32; tsNumOfCommitThreads = cfgGetItem(pCfg, "numOfCommitThreads")->i32;
tsNumOfMnodeReadThreads = cfgGetItem(pCfg, "numOfMnodeReadThreads")->i32; tsNumOfMnodeReadThreads = cfgGetItem(pCfg, "numOfMnodeReadThreads")->i32;
tsNumOfVnodeQueryThreads = cfgGetItem(pCfg, "numOfVnodeQueryThreads")->i32; tsNumOfVnodeQueryThreads = cfgGetItem(pCfg, "numOfVnodeQueryThreads")->i32;
tsNumOfVnodeStreamThreads = cfgGetItem(pCfg, "numOfVnodeStreamThreads")->i32; tsRatioOfVnodeStreamThreads = cfgGetItem(pCfg, "ratioOfVnodeStreamThreads")->fval;
tsNumOfVnodeFetchThreads = cfgGetItem(pCfg, "numOfVnodeFetchThreads")->i32; tsNumOfVnodeFetchThreads = cfgGetItem(pCfg, "numOfVnodeFetchThreads")->i32;
tsNumOfVnodeRsmaThreads = cfgGetItem(pCfg, "numOfVnodeRsmaThreads")->i32; tsNumOfVnodeRsmaThreads = cfgGetItem(pCfg, "numOfVnodeRsmaThreads")->i32;
tsNumOfQnodeQueryThreads = cfgGetItem(pCfg, "numOfQnodeQueryThreads")->i32; tsNumOfQnodeQueryThreads = cfgGetItem(pCfg, "numOfQnodeQueryThreads")->i32;
......
...@@ -26,20 +26,20 @@ extern "C" { ...@@ -26,20 +26,20 @@ extern "C" {
#endif #endif
typedef struct SVnodeMgmt { typedef struct SVnodeMgmt {
SDnodeData *pData; SDnodeData *pData;
SMsgCb msgCb; SMsgCb msgCb;
const char *path; const char *path;
const char *name; const char *name;
SQWorkerPool queryPool; SQWorkerPool queryPool;
SQWorkerPool streamPool; SAutoQWorkerPool streamPool;
SWWorkerPool fetchPool; SWWorkerPool fetchPool;
SSingleWorker mgmtWorker; SSingleWorker mgmtWorker;
SHashObj *hash; SHashObj *hash;
TdThreadRwlock lock; TdThreadRwlock lock;
SVnodesStat state; SVnodesStat state;
STfs *pTfs; STfs *pTfs;
TdThread thread; TdThread thread;
bool stop; bool stop;
} SVnodeMgmt; } SVnodeMgmt;
typedef struct { typedef struct {
......
...@@ -318,7 +318,7 @@ int32_t vmAllocQueue(SVnodeMgmt *pMgmt, SVnodeObj *pVnode) { ...@@ -318,7 +318,7 @@ int32_t vmAllocQueue(SVnodeMgmt *pMgmt, SVnodeObj *pVnode) {
(void)tMultiWorkerInit(&pVnode->pApplyW, &acfg); (void)tMultiWorkerInit(&pVnode->pApplyW, &acfg);
pVnode->pQueryQ = tQWorkerAllocQueue(&pMgmt->queryPool, pVnode, (FItem)vmProcessQueryQueue); pVnode->pQueryQ = tQWorkerAllocQueue(&pMgmt->queryPool, pVnode, (FItem)vmProcessQueryQueue);
pVnode->pStreamQ = tQWorkerAllocQueue(&pMgmt->streamPool, pVnode, (FItem)vmProcessStreamQueue); pVnode->pStreamQ = tAutoQWorkerAllocQueue(&pMgmt->streamPool, pVnode, (FItem)vmProcessStreamQueue);
pVnode->pFetchQ = tWWorkerAllocQueue(&pMgmt->fetchPool, pVnode, (FItems)vmProcessFetchQueue); pVnode->pFetchQ = tWWorkerAllocQueue(&pMgmt->fetchPool, pVnode, (FItems)vmProcessFetchQueue);
if (pVnode->pWriteW.queue == NULL || pVnode->pSyncW.queue == NULL || pVnode->pSyncCtrlW.queue == NULL || if (pVnode->pWriteW.queue == NULL || pVnode->pSyncW.queue == NULL || pVnode->pSyncCtrlW.queue == NULL ||
...@@ -344,7 +344,7 @@ int32_t vmAllocQueue(SVnodeMgmt *pMgmt, SVnodeObj *pVnode) { ...@@ -344,7 +344,7 @@ int32_t vmAllocQueue(SVnodeMgmt *pMgmt, SVnodeObj *pVnode) {
void vmFreeQueue(SVnodeMgmt *pMgmt, SVnodeObj *pVnode) { void vmFreeQueue(SVnodeMgmt *pMgmt, SVnodeObj *pVnode) {
tQWorkerFreeQueue(&pMgmt->queryPool, pVnode->pQueryQ); tQWorkerFreeQueue(&pMgmt->queryPool, pVnode->pQueryQ);
tQWorkerFreeQueue(&pMgmt->streamPool, pVnode->pStreamQ); tAutoQWorkerFreeQueue(&pMgmt->streamPool, pVnode->pStreamQ);
tWWorkerFreeQueue(&pMgmt->fetchPool, pVnode->pFetchQ); tWWorkerFreeQueue(&pMgmt->fetchPool, pVnode->pFetchQ);
pVnode->pQueryQ = NULL; pVnode->pQueryQ = NULL;
pVnode->pStreamQ = NULL; pVnode->pStreamQ = NULL;
...@@ -359,11 +359,10 @@ int32_t vmStartWorker(SVnodeMgmt *pMgmt) { ...@@ -359,11 +359,10 @@ int32_t vmStartWorker(SVnodeMgmt *pMgmt) {
pQPool->max = tsNumOfVnodeQueryThreads; pQPool->max = tsNumOfVnodeQueryThreads;
if (tQWorkerInit(pQPool) != 0) return -1; if (tQWorkerInit(pQPool) != 0) return -1;
SQWorkerPool *pStreamPool = &pMgmt->streamPool; SAutoQWorkerPool *pStreamPool = &pMgmt->streamPool;
pStreamPool->name = "vnode-stream"; pStreamPool->name = "vnode-stream";
pStreamPool->min = tsNumOfVnodeStreamThreads; pStreamPool->ratio = tsRatioOfVnodeStreamThreads;
pStreamPool->max = tsNumOfVnodeStreamThreads; if (tAutoQWorkerInit(pStreamPool) != 0) return -1;
if (tQWorkerInit(pStreamPool) != 0) return -1;
SWWorkerPool *pFPool = &pMgmt->fetchPool; SWWorkerPool *pFPool = &pMgmt->fetchPool;
pFPool->name = "vnode-fetch"; pFPool->name = "vnode-fetch";
...@@ -385,7 +384,7 @@ int32_t vmStartWorker(SVnodeMgmt *pMgmt) { ...@@ -385,7 +384,7 @@ int32_t vmStartWorker(SVnodeMgmt *pMgmt) {
void vmStopWorker(SVnodeMgmt *pMgmt) { void vmStopWorker(SVnodeMgmt *pMgmt) {
tQWorkerCleanup(&pMgmt->queryPool); tQWorkerCleanup(&pMgmt->queryPool);
tQWorkerCleanup(&pMgmt->streamPool); tAutoQWorkerCleanup(&pMgmt->streamPool);
tWWorkerCleanup(&pMgmt->fetchPool); tWWorkerCleanup(&pMgmt->fetchPool);
dDebug("vnode workers are closed"); dDebug("vnode workers are closed");
} }
...@@ -36,7 +36,7 @@ int32_t tQWorkerInit(SQWorkerPool *pool) { ...@@ -36,7 +36,7 @@ int32_t tQWorkerInit(SQWorkerPool *pool) {
worker->pool = pool; worker->pool = pool;
} }
uDebug("worker:%s is initialized, min:%d max:%d", pool->name, pool->min, pool->max); uInfo("worker:%s is initialized, min:%d max:%d", pool->name, pool->min, pool->max);
return 0; return 0;
} }
...@@ -51,8 +51,10 @@ void tQWorkerCleanup(SQWorkerPool *pool) { ...@@ -51,8 +51,10 @@ void tQWorkerCleanup(SQWorkerPool *pool) {
for (int32_t i = 0; i < pool->max; ++i) { for (int32_t i = 0; i < pool->max; ++i) {
SQWorker *worker = pool->workers + i; SQWorker *worker = pool->workers + i;
if (taosCheckPthreadValid(worker->thread)) { if (taosCheckPthreadValid(worker->thread)) {
uInfo("worker:%s:%d is stopping", pool->name, worker->id);
taosThreadJoin(worker->thread, NULL); taosThreadJoin(worker->thread, NULL);
taosThreadClear(&worker->thread); taosThreadClear(&worker->thread);
uInfo("worker:%s:%d is stopped", pool->name, worker->id);
} }
} }
...@@ -60,7 +62,7 @@ void tQWorkerCleanup(SQWorkerPool *pool) { ...@@ -60,7 +62,7 @@ void tQWorkerCleanup(SQWorkerPool *pool) {
taosCloseQset(pool->qset); taosCloseQset(pool->qset);
taosThreadMutexDestroy(&pool->mutex); taosThreadMutexDestroy(&pool->mutex);
uDebug("worker:%s is closed", pool->name); uInfo("worker:%s is closed", pool->name);
} }
static void *tQWorkerThreadFp(SQWorker *worker) { static void *tQWorkerThreadFp(SQWorker *worker) {
...@@ -119,7 +121,7 @@ STaosQueue *tQWorkerAllocQueue(SQWorkerPool *pool, void *ahandle, FItem fp) { ...@@ -119,7 +121,7 @@ STaosQueue *tQWorkerAllocQueue(SQWorkerPool *pool, void *ahandle, FItem fp) {
taosThreadAttrDestroy(&thAttr); taosThreadAttrDestroy(&thAttr);
pool->num++; pool->num++;
uDebug("worker:%s:%d is launched, total:%d", pool->name, worker->id, pool->num); uInfo("worker:%s:%d is launched, total:%d", pool->name, worker->id, pool->num);
} while (pool->num < pool->min); } while (pool->num < pool->min);
} }
...@@ -130,7 +132,132 @@ STaosQueue *tQWorkerAllocQueue(SQWorkerPool *pool, void *ahandle, FItem fp) { ...@@ -130,7 +132,132 @@ STaosQueue *tQWorkerAllocQueue(SQWorkerPool *pool, void *ahandle, FItem fp) {
} }
void tQWorkerFreeQueue(SQWorkerPool *pool, STaosQueue *queue) { void tQWorkerFreeQueue(SQWorkerPool *pool, STaosQueue *queue) {
uDebug("worker:%s, queue:%p is freed", pool->name, queue); uInfo("worker:%s, queue:%p is freed", pool->name, queue);
taosCloseQueue(queue);
}
int32_t tAutoQWorkerInit(SAutoQWorkerPool *pool) {
pool->qset = taosOpenQset();
pool->workers = taosArrayInit(2, sizeof(SQWorker));
if (pool->workers == NULL) {
terrno = TSDB_CODE_OUT_OF_MEMORY;
return -1;
}
(void)taosThreadMutexInit(&pool->mutex, NULL);
uInfo("worker:%s is initialized as auto", pool->name);
return 0;
}
void tAutoQWorkerCleanup(SAutoQWorkerPool *pool) {
int32_t size = taosArrayGetSize(pool->workers);
for (int32_t i = 0; i < size; ++i) {
SQWorker *worker = taosArrayGet(pool->workers, i);
if (taosCheckPthreadValid(worker->thread)) {
taosQsetThreadResume(pool->qset);
}
}
for (int32_t i = 0; i < size; ++i) {
SQWorker *worker = taosArrayGet(pool->workers, i);
if (taosCheckPthreadValid(worker->thread)) {
uInfo("worker:%s:%d is stopping", pool->name, worker->id);
taosThreadJoin(worker->thread, NULL);
taosThreadClear(&worker->thread);
uInfo("worker:%s:%d is stopped", pool->name, worker->id);
}
}
taosArrayDestroy(pool->workers);
taosCloseQset(pool->qset);
taosThreadMutexDestroy(&pool->mutex);
uInfo("worker:%s is closed", pool->name);
}
static void *tAutoQWorkerThreadFp(SQWorker *worker) {
SAutoQWorkerPool *pool = worker->pool;
SQueueInfo qinfo = {0};
void *msg = NULL;
int32_t code = 0;
taosBlockSIGPIPE();
setThreadName(pool->name);
worker->pid = taosGetSelfPthreadId();
uInfo("worker:%s:%d is running, thread:%08" PRId64, pool->name, worker->id, worker->pid);
while (1) {
if (taosReadQitemFromQset(pool->qset, (void **)&msg, &qinfo) == 0) {
uInfo("worker:%s:%d qset:%p, got no message and exiting, thread:%08" PRId64, pool->name, worker->id, pool->qset,
worker->pid);
break;
}
if (qinfo.fp != NULL) {
qinfo.workerId = worker->id;
qinfo.threadNum = taosArrayGetSize(pool->workers);
(*((FItem)qinfo.fp))(&qinfo, msg);
}
taosUpdateItemSize(qinfo.queue, 1);
}
return NULL;
}
STaosQueue *tAutoQWorkerAllocQueue(SAutoQWorkerPool *pool, void *ahandle, FItem fp) {
STaosQueue *queue = taosOpenQueue();
if (queue == NULL) return NULL;
taosThreadMutexLock(&pool->mutex);
taosSetQueueFp(queue, fp, NULL);
taosAddIntoQset(pool->qset, queue, ahandle);
int32_t queueNum = taosGetQueueNumber(pool->qset);
int32_t curWorkerNum = taosArrayGetSize(pool->workers);
int32_t dstWorkerNum = ceil(queueNum * pool->ratio);
if (dstWorkerNum < 1) dstWorkerNum = 1;
// spawn a thread to process queue
while (curWorkerNum < dstWorkerNum) {
SQWorker wobj = {
.id = (int32_t)taosArrayGetSize(pool->workers),
.pool = pool,
};
SQWorker *worker = taosArrayPush(pool->workers, &wobj);
if (worker == NULL) {
uError("worker:%s:%d failed to create, total:%d", pool->name, wobj.id, (int32_t)taosArrayGetSize(pool->workers));
taosCloseQueue(queue);
terrno = TSDB_CODE_OUT_OF_MEMORY;
return NULL;
}
TdThreadAttr thAttr;
taosThreadAttrInit(&thAttr);
taosThreadAttrSetDetachState(&thAttr, PTHREAD_CREATE_JOINABLE);
if (taosThreadCreate(&worker->thread, &thAttr, (ThreadFp)tAutoQWorkerThreadFp, worker) != 0) {
uError("worker:%s:%d failed to create thread, total:%d", pool->name, wobj.id,
(int32_t)taosArrayGetSize(pool->workers));
taosCloseQueue(queue);
terrno = TSDB_CODE_OUT_OF_MEMORY;
return NULL;
}
taosThreadAttrDestroy(&thAttr);
uInfo("worker:%s:%d is launched, total:%d", pool->name, worker->id, (int32_t)taosArrayGetSize(pool->workers));
curWorkerNum++;
}
taosThreadMutexUnlock(&pool->mutex);
uInfo("worker:%s, queue:%p is allocated, ahandle:%p", pool->name, queue, ahandle);
return queue;
}
void tAutoQWorkerFreeQueue(SAutoQWorkerPool *pool, STaosQueue *queue) {
uInfo("worker:%s, queue:%p is freed", pool->name, queue);
taosCloseQueue(queue); taosCloseQueue(queue);
} }
...@@ -152,7 +279,7 @@ int32_t tWWorkerInit(SWWorkerPool *pool) { ...@@ -152,7 +279,7 @@ int32_t tWWorkerInit(SWWorkerPool *pool) {
worker->pool = pool; worker->pool = pool;
} }
uDebug("worker:%s is initialized, max:%d", pool->name, pool->max); uInfo("worker:%s is initialized, max:%d", pool->name, pool->max);
return 0; return 0;
} }
...@@ -169,17 +296,19 @@ void tWWorkerCleanup(SWWorkerPool *pool) { ...@@ -169,17 +296,19 @@ void tWWorkerCleanup(SWWorkerPool *pool) {
for (int32_t i = 0; i < pool->max; ++i) { for (int32_t i = 0; i < pool->max; ++i) {
SWWorker *worker = pool->workers + i; SWWorker *worker = pool->workers + i;
if (taosCheckPthreadValid(worker->thread)) { if (taosCheckPthreadValid(worker->thread)) {
uInfo("worker:%s:%d is stopping", pool->name, worker->id);
taosThreadJoin(worker->thread, NULL); taosThreadJoin(worker->thread, NULL);
taosThreadClear(&worker->thread); taosThreadClear(&worker->thread);
taosFreeQall(worker->qall); taosFreeQall(worker->qall);
taosCloseQset(worker->qset); taosCloseQset(worker->qset);
uInfo("worker:%s:%d is stopped", pool->name, worker->id);
} }
} }
taosMemoryFreeClear(pool->workers); taosMemoryFreeClear(pool->workers);
taosThreadMutexDestroy(&pool->mutex); taosThreadMutexDestroy(&pool->mutex);
uDebug("worker:%s is closed", pool->name); uInfo("worker:%s is closed", pool->name);
} }
static void *tWWorkerThreadFp(SWWorker *worker) { static void *tWWorkerThreadFp(SWWorker *worker) {
...@@ -235,7 +364,7 @@ STaosQueue *tWWorkerAllocQueue(SWWorkerPool *pool, void *ahandle, FItems fp) { ...@@ -235,7 +364,7 @@ STaosQueue *tWWorkerAllocQueue(SWWorkerPool *pool, void *ahandle, FItems fp) {
taosThreadAttrSetDetachState(&thAttr, PTHREAD_CREATE_JOINABLE); taosThreadAttrSetDetachState(&thAttr, PTHREAD_CREATE_JOINABLE);
if (taosThreadCreate(&worker->thread, &thAttr, (ThreadFp)tWWorkerThreadFp, worker) != 0) goto _OVER; if (taosThreadCreate(&worker->thread, &thAttr, (ThreadFp)tWWorkerThreadFp, worker) != 0) goto _OVER;
uDebug("worker:%s:%d is launched, max:%d", pool->name, worker->id, pool->max); uInfo("worker:%s:%d is launched, max:%d", pool->name, worker->id, pool->max);
pool->nextId = (pool->nextId + 1) % pool->max; pool->nextId = (pool->nextId + 1) % pool->max;
taosThreadAttrDestroy(&thAttr); taosThreadAttrDestroy(&thAttr);
...@@ -259,13 +388,14 @@ _OVER: ...@@ -259,13 +388,14 @@ _OVER:
} else { } else {
while (worker->pid <= 0) taosMsleep(10); while (worker->pid <= 0) taosMsleep(10);
queue->threadId = worker->pid; queue->threadId = worker->pid;
uInfo("worker:%s, queue:%p is allocated, ahandle:%p thread:%08" PRId64, pool->name, queue, ahandle, queue->threadId); uInfo("worker:%s, queue:%p is allocated, ahandle:%p thread:%08" PRId64, pool->name, queue, ahandle,
queue->threadId);
return queue; return queue;
} }
} }
void tWWorkerFreeQueue(SWWorkerPool *pool, STaosQueue *queue) { void tWWorkerFreeQueue(SWWorkerPool *pool, STaosQueue *queue) {
uDebug("worker:%s, queue:%p is freed", pool->name, queue); uInfo("worker:%s, queue:%p is freed", pool->name, queue);
taosCloseQueue(queue); taosCloseQueue(queue);
} }
......
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