tqPush.c 13.9 KB
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/*
 * Copyright (c) 2019 TAOS Data, Inc. <jhtao@taosdata.com>
 *
 * This program is free software: you can use, redistribute, and/or modify
 * it under the terms of the GNU Affero General Public License, version 3
 * or later ("AGPL"), as published by the Free Software Foundation.
 *
 * This program is distributed in the hope that it will be useful, but WITHOUT
 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
 * FITNESS FOR A PARTICULAR PURPOSE.
 *
 * You should have received a copy of the GNU Affero General Public License
 * along with this program. If not, see <http://www.gnu.org/licenses/>.
 */
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#include "tq.h"
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#include "vnd.h"
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#if 0
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void tqTmrRspFunc(void* param, void* tmrId) {
  STqHandle* pHandle = (STqHandle*)param;
  atomic_store_8(&pHandle->pushHandle.tmrStopped, 1);
}

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static int32_t tqLoopExecFromQueue(STQ* pTq, STqHandle* pHandle, SStreamDataSubmit** ppSubmit, SMqDataRsp* pRsp) {
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  SStreamDataSubmit* pSubmit = *ppSubmit;
  while (pSubmit != NULL) {
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    if (tqLogScanExec(pTq, &pHandle->execHandle, pSubmit->data, pRsp, 0) < 0) {
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    }
    // update processed
    atomic_store_64(&pHandle->pushHandle.processedVer, pSubmit->ver);
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    streamQueueProcessSuccess(&pHandle->pushHandle.inputQ);
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    streamDataSubmitRefDec(pSubmit);
    if (pRsp->blockNum > 0) {
      *ppSubmit = pSubmit;
      return 0;
    } else {
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      pSubmit = streamQueueNextItem(&pHandle->pushHandle.inputQ);
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    }
  }
  *ppSubmit = pSubmit;
  return -1;
}

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int32_t tqExecFromInputQ(STQ* pTq, STqHandle* pHandle) {
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  SMqDataRsp rsp = {0};
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  // 1. guard and set status executing
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  int8_t execStatus = atomic_val_compare_exchange_8(&pHandle->pushHandle.execStatus, TASK_EXEC_STATUS__IDLE,
                                                    TASK_EXEC_STATUS__EXECUTING);
  if (execStatus == TASK_EXEC_STATUS__IDLE) {
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    SStreamDataSubmit* pSubmit = NULL;
    // 2. check processedVer
    // 2.1. if not missed, get msg from queue
    // 2.2. if missed, scan wal
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    pSubmit = streamQueueNextItem(&pHandle->pushHandle.inputQ);
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    while (pHandle->pushHandle.processedVer <= pSubmit->ver) {
      // read from wal
    }
    while (pHandle->pushHandle.processedVer > pSubmit->ver + 1) {
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      streamQueueProcessSuccess(&pHandle->pushHandle.inputQ);
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      streamDataSubmitRefDec(pSubmit);
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      pSubmit = streamQueueNextItem(&pHandle->pushHandle.inputQ);
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      if (pSubmit == NULL) break;
    }
    // 3. exec, after each success, update processed ver
    // first run
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    if (tqLoopExecFromQueue(pTq, pHandle, &pSubmit, &rsp) == 0) {
      goto SEND_RSP;
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    }
    // set exec status closing
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    atomic_store_8(&pHandle->pushHandle.execStatus, TASK_EXEC_STATUS__CLOSING);
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    // second run
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    if (tqLoopExecFromQueue(pTq, pHandle, &pSubmit, &rsp) == 0) {
      goto SEND_RSP;
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    }
    // set exec status idle
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    atomic_store_8(&pHandle->pushHandle.execStatus, TASK_EXEC_STATUS__IDLE);
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  }
SEND_RSP:
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  // 4. if get result
  // 4.1 set exec input status blocked and exec status idle
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  atomic_store_8(&pHandle->pushHandle.execStatus, TASK_EXEC_STATUS__IDLE);
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  // 4.2 rpc send
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  rsp.rspOffset = pHandle->pushHandle.processedVer;
  /*if (tqSendPollRsp(pTq, pMsg, pReq, &rsp) < 0) {*/
  /*return -1;*/
  /*}*/
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  // 4.3 clear rpc info
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  memset(&pHandle->pushHandle.rpcInfo, 0, sizeof(SRpcHandleInfo));
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  return 0;
}

int32_t tqOpenPushHandle(STQ* pTq, STqHandle* pHandle) {
  memset(&pHandle->pushHandle, 0, sizeof(STqPushHandle));
  pHandle->pushHandle.inputQ.queue = taosOpenQueue();
  pHandle->pushHandle.inputQ.qall = taosAllocateQall();
  if (pHandle->pushHandle.inputQ.queue == NULL || pHandle->pushHandle.inputQ.qall == NULL) {
    if (pHandle->pushHandle.inputQ.queue) {
      taosCloseQueue(pHandle->pushHandle.inputQ.queue);
    }
    if (pHandle->pushHandle.inputQ.qall) {
      taosFreeQall(pHandle->pushHandle.inputQ.qall);
    }
    return -1;
  }
  return 0;
}

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int32_t tqPreparePush(STQ* pTq, STqHandle* pHandle, int64_t reqId, const SRpcHandleInfo* pInfo, int64_t processedVer,
                      int64_t timeout) {
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  memcpy(&pHandle->pushHandle.rpcInfo, pInfo, sizeof(SRpcHandleInfo));
  atomic_store_64(&pHandle->pushHandle.reqId, reqId);
  atomic_store_64(&pHandle->pushHandle.processedVer, processedVer);
  atomic_store_8(&pHandle->pushHandle.inputStatus, TASK_INPUT_STATUS__NORMAL);
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  atomic_store_8(&pHandle->pushHandle.tmrStopped, 0);
  taosTmrReset(tqTmrRspFunc, (int32_t)timeout, pHandle, tqMgmt.timer, &pHandle->pushHandle.timerId);
  return 0;
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}

int32_t tqEnqueue(STqHandle* pHandle, SStreamDataSubmit* pSubmit) {
  int8_t inputStatus = atomic_load_8(&pHandle->pushHandle.inputStatus);
  if (inputStatus == TASK_INPUT_STATUS__NORMAL) {
    SStreamDataSubmit* pSubmitClone = streamSubmitRefClone(pSubmit);
    if (pSubmitClone == NULL) {
      return -1;
    }
    taosWriteQitem(pHandle->pushHandle.inputQ.queue, pSubmitClone);
    return 0;
  }
  return -1;
}

int32_t tqSendExecReq(STQ* pTq, STqHandle* pHandle) {
  //
  return 0;
}

int32_t tqPushMsgNew(STQ* pTq, void* msg, int32_t msgLen, tmsg_t msgType, int64_t ver, SRpcHandleInfo handleInfo) {
  if (msgType != TDMT_VND_SUBMIT) return 0;
  void*       pIter = NULL;
  STqHandle*  pHandle = NULL;
  SSubmitReq* pReq = (SSubmitReq*)msg;
  int32_t     workerId = 4;
  int64_t     fetchOffset = ver;

  while (1) {
    pIter = taosHashIterate(pTq->pushMgr, pIter);
    if (pIter == NULL) break;
    pHandle = *(STqHandle**)pIter;

    taosWLockLatch(&pHandle->pushHandle.lock);

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    SMqDataRsp rsp = {0};
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    rsp.reqOffset = pHandle->pushHandle.reqOffset;
    rsp.blockData = taosArrayInit(0, sizeof(void*));
    rsp.blockDataLen = taosArrayInit(0, sizeof(int32_t));

    if (msgType == TDMT_VND_SUBMIT) {
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      tqLogScanExec(pTq, &pHandle->execHandle, pReq, &rsp, workerId);
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    } else {
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      tqError("tq push unexpected msg type %d", msgType);
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    }

    if (rsp.blockNum == 0) {
      taosWUnLockLatch(&pHandle->pushHandle.lock);
      continue;
    }

    rsp.rspOffset = fetchOffset;

    int32_t tlen = sizeof(SMqRspHead) + tEncodeSMqDataBlkRsp(NULL, &rsp);
    void*   buf = rpcMallocCont(tlen);
    if (buf == NULL) {
      // todo free
      return -1;
    }

    ((SMqRspHead*)buf)->mqMsgType = TMQ_MSG_TYPE__POLL_RSP;
    ((SMqRspHead*)buf)->epoch = pHandle->pushHandle.epoch;
    ((SMqRspHead*)buf)->consumerId = pHandle->pushHandle.consumerId;

    void* abuf = POINTER_SHIFT(buf, sizeof(SMqRspHead));
    tEncodeSMqDataBlkRsp(&abuf, &rsp);

    SRpcMsg resp = {
        .info = pHandle->pushHandle.rpcInfo,
        .pCont = buf,
        .contLen = tlen,
        .code = 0,
    };
    tmsgSendRsp(&resp);

    memset(&pHandle->pushHandle.rpcInfo, 0, sizeof(SRpcHandleInfo));
    taosWUnLockLatch(&pHandle->pushHandle.lock);

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    tqDebug("vgId:%d offset %" PRId64 " from consumer:%" PRId64 ", (epoch %d) send rsp, block num: %d, req:%" PRId64 ", rsp:%" PRId64,
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            TD_VID(pTq->pVnode), fetchOffset, pHandle->pushHandle.consumerId, pHandle->pushHandle.epoch, rsp.blockNum,
            rsp.reqOffset, rsp.rspOffset);

    // TODO destroy
    taosArrayDestroy(rsp.blockData);
    taosArrayDestroy(rsp.blockDataLen);
  }

  return 0;
}
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#endif
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int tqPushMsg(STQ* pTq, void* msg, int32_t msgLen, tmsg_t msgType, int64_t ver) {
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  void*   pReq = POINTER_SHIFT(msg, sizeof(SSubmitReq2Msg));
  int32_t len = msgLen - sizeof(SSubmitReq2Msg);
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  int32_t vgId = TD_VID(pTq->pVnode);
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  if (msgType == TDMT_VND_SUBMIT) {
    // lock push mgr to avoid potential msg lost
    taosWLockLatch(&pTq->pushLock);
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    int32_t numOfRegisteredPush = taosHashGetSize(pTq->pPushMgr);
    if (numOfRegisteredPush > 0) {
      tqDebug("vgId:%d tq push msg version:%" PRId64 " type:%s, head:%p, body:%p len:%d, numOfPushed consumers:%d",
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          vgId, ver, TMSG_INFO(msgType), msg, pReq, len, numOfRegisteredPush);
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      SArray* cachedKeys = taosArrayInit(0, sizeof(void*));
      SArray* cachedKeyLens = taosArrayInit(0, sizeof(size_t));
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      void*   data = taosMemoryMalloc(len);
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      if (data == NULL) {
        terrno = TSDB_CODE_OUT_OF_MEMORY;
        tqError("failed to copy data for stream since out of memory");
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        taosArrayDestroyP(cachedKeys, (FDelete)taosMemoryFree);
        taosArrayDestroy(cachedKeyLens);
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        // unlock
        taosWUnLockLatch(&pTq->pushLock);
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        return -1;
      }
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      memcpy(data, pReq, len);
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      void* pIter = NULL;
      while (1) {
        pIter = taosHashIterate(pTq->pPushMgr, pIter);
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        if (pIter == NULL) {
          break;
        }

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        STqPushEntry* pPushEntry = *(STqPushEntry**)pIter;

        STqHandle* pHandle = taosHashGet(pTq->pHandle, pPushEntry->subKey, strlen(pPushEntry->subKey));
        if (pHandle == NULL) {
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          tqDebug("vgId:%d, cannot find handle %s", pTq->pVnode->config.vgId, pPushEntry->subKey);
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          continue;
        }
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        SMqDataRsp* pRsp = pPushEntry->pDataRsp;
        if (pRsp->reqOffset.version >= ver) {
          tqDebug("vgId:%d, push entry req version %" PRId64 ", while push version %" PRId64 ", skip", vgId,
                  pRsp->reqOffset.version, ver);
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          continue;
        }
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        STqExecHandle* pExec = &pHandle->execHandle;
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        qTaskInfo_t    task = pExec->task;
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        // prepare scan mem data
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        SPackedData submit = {
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            .msgStr = data,
            .msgLen = len,
            .ver = ver,
        };
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        if(qStreamSetScanMemData(task, submit) != 0){
          continue;
        }
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        // here start to scan submit block to extract the subscribed data
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        while (1) {
          SSDataBlock* pDataBlock = NULL;
          uint64_t     ts = 0;
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          if (qExecTask(task, &pDataBlock, &ts) < 0) {
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            tqDebug("vgId:%d, tq exec error since %s", vgId, terrstr());
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          }

          if (pDataBlock == NULL) {
            break;
          }

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          tqAddBlockDataToRsp(pDataBlock, pRsp, pExec->numOfCols, pTq->pVnode->config.tsdbCfg.precision);
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          pRsp->blockNum++;
        }
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        tqDebug("vgId:%d, tq handle push, subkey:%s, block num:%d", vgId, pPushEntry->subKey, pRsp->blockNum);
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        if (pRsp->blockNum > 0) {
          // set offset
          tqOffsetResetToLog(&pRsp->rspOffset, ver);
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          // remove from hash
          size_t kLen;
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          void*  key = taosHashGetKey(pIter, &kLen);
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          void*  keyCopy = taosMemoryCalloc(1, kLen + 1);
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          memcpy(keyCopy, key, kLen);

          taosArrayPush(cachedKeys, &keyCopy);
          taosArrayPush(cachedKeyLens, &kLen);

          tqPushDataRsp(pTq, pPushEntry);
        }
      }
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      // delete entry
      for (int32_t i = 0; i < taosArrayGetSize(cachedKeys); i++) {
        void*  key = taosArrayGetP(cachedKeys, i);
        size_t kLen = *(size_t*)taosArrayGet(cachedKeyLens, i);
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        if (taosHashRemove(pTq->pPushMgr, key, kLen) != 0) {
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          tqError("vgId:%d, tq push hash remove key error, key: %s", pTq->pVnode->config.vgId, (char*)key);
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        }
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      }
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      taosArrayDestroyP(cachedKeys, (FDelete)taosMemoryFree);
      taosArrayDestroy(cachedKeyLens);
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      taosMemoryFree(data);
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    }
    // unlock
    taosWUnLockLatch(&pTq->pushLock);
  }

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  if (!tsDisableStream && vnodeIsRoleLeader(pTq->pVnode)) {
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    if (taosHashGetSize(pTq->pStreamMeta->pTasks) == 0) return 0;
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    if (msgType == TDMT_VND_SUBMIT) {
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      void* data = taosMemoryMalloc(len);
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      if (data == NULL) {
        terrno = TSDB_CODE_OUT_OF_MEMORY;
        tqError("failed to copy data for stream since out of memory");
        return -1;
      }
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      memcpy(data, pReq, len);
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      SPackedData submit = {
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          .msgStr = data,
          .msgLen = len,
          .ver = ver,
      };

      tqDebug("tq copy write msg %p %d %" PRId64 " from %p", data, len, ver, pReq);
      tqProcessSubmitReq(pTq, submit);
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    }
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    if (msgType == TDMT_VND_DELETE) {
      tqProcessDelReq(pTq, POINTER_SHIFT(msg, sizeof(SMsgHead)), msgLen - sizeof(SMsgHead), ver);
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    }
  }

  return 0;
}
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int32_t tqRegisterPushEntry(STQ* pTq, void* pHandle, const SMqPollReq* pRequest, SRpcMsg* pRpcMsg,
                            SMqDataRsp* pDataRsp, int32_t type) {
  uint64_t   consumerId = pRequest->consumerId;
  int32_t    vgId = TD_VID(pTq->pVnode);
  STqHandle* pTqHandle = pHandle;

  STqPushEntry* pPushEntry = taosMemoryCalloc(1, sizeof(STqPushEntry));
  if (pPushEntry == NULL) {
    tqDebug("tmq poll: consumer:0x%" PRIx64 ", vgId:%d failed to malloc, size:%d", consumerId, vgId,
            (int32_t)sizeof(STqPushEntry));
    terrno = TSDB_CODE_OUT_OF_MEMORY;
    return -1;
  }

  pPushEntry->info = pRpcMsg->info;
  memcpy(pPushEntry->subKey, pTqHandle->subKey, TSDB_SUBSCRIBE_KEY_LEN);

  if (type == TMQ_MSG_TYPE__TAOSX_RSP) {
    pPushEntry->pDataRsp =  taosMemoryCalloc(1, sizeof(STaosxRsp));
    memcpy(pPushEntry->pDataRsp, pDataRsp, sizeof(STaosxRsp));
  } else if (type == TMQ_MSG_TYPE__POLL_RSP) {
    pPushEntry->pDataRsp = taosMemoryCalloc(1, sizeof(SMqDataRsp));
    memcpy(pPushEntry->pDataRsp, pDataRsp, sizeof(SMqDataRsp));
  }

  SMqRspHead* pHead = &pPushEntry->pDataRsp->head;
  pHead->consumerId = consumerId;
  pHead->epoch = pRequest->epoch;
  pHead->mqMsgType = type;

  taosHashPut(pTq->pPushMgr, pTqHandle->subKey, strlen(pTqHandle->subKey), &pPushEntry, sizeof(void*));

  tqDebug("tmq poll: consumer:0x%" PRIx64 ", subkey %s offset:%" PRId64 ", vgId:%d save handle to push mgr, total:%d", consumerId,
          pTqHandle->subKey, pDataRsp->reqOffset.version, vgId, taosHashGetSize(pTq->pPushMgr));
  return 0;
}

int32_t tqRemovePushEntry(STQ* pTq, const char* pKey, int32_t keyLen, uint64_t consumerId, bool rspConsumer) {
  int32_t       vgId = TD_VID(pTq->pVnode);
  STqPushEntry** pEntry = taosHashGet(pTq->pPushMgr, pKey, keyLen);

  if (pEntry != NULL) {
    uint64_t cId = (*pEntry)->pDataRsp->head.consumerId;
    ASSERT(consumerId == cId);

    tqDebug("tmq poll: consumer:0x%" PRIx64 ", subkey %s vgId:%d remove from push mgr, remains:%d", consumerId,
            (*pEntry)->subKey, vgId, taosHashGetSize(pTq->pPushMgr) - 1);

    if (rspConsumer) { // rsp the old consumer with empty block.
      tqPushDataRsp(pTq, *pEntry);
    }

    taosHashRemove(pTq->pPushMgr, pKey, keyLen);
  }

  return 0;
}