TI_STATUS txDataQ_InsertPacket (TI_HANDLE hTxDataQ, TTxCtrlBlk *pPktCtrlBlk, TI_UINT8 uPacketDtag) { TTxDataQ *pTxDataQ = (TTxDataQ *)hTxDataQ; TEthernetHeader *pEthHead = (TEthernetHeader *)(pPktCtrlBlk->tTxnStruct.aBuf[0]); TI_STATUS eStatus; TI_UINT32 uQueId; TI_UINT32 uQueSize; txCtrl_t *pTxCtrl = (txCtrl_t *)(pTxDataQ->hTxCtrl); TI_BOOL bRequestSchedule = TI_FALSE; TI_BOOL bStopNetStack = TI_FALSE; CL_TRACE_START_L3(); /* If packet is EAPOL or from the generic Ethertype, forward it to the Mgmt-Queue and exit */ if ((HTOWLANS(pEthHead->type) == ETHERTYPE_EAPOL) || (HTOWLANS(pEthHead->type) == pTxCtrl->genericEthertype)) { pPktCtrlBlk->tTxPktParams.uPktType = TX_PKT_TYPE_EAPOL; return txMgmtQ_Xmit (pTxDataQ->hTxMgmtQ, pPktCtrlBlk, TI_TRUE); /* Note: The last parameter indicates that we are running in external context */ } pPktCtrlBlk->tTxPktParams.uPktType = TX_PKT_TYPE_ETHER; /* Enter critical section to protect classifier data and queue access */ context_EnterCriticalSection (pTxDataQ->hContext); /* Call the Classify function to set the TID field */ if (txDataClsfr_ClassifyTxPacket (hTxDataQ, pPktCtrlBlk, uPacketDtag) != TI_OK) { #ifdef TI_DBG pTxDataQ->uClsfrMismatchCount++; TRACE0(pTxDataQ->hReport, REPORT_SEVERITY_WARNING, "txDataQueue_xmit: No matching classifier found \n"); #endif /* TI_DBG */ } /* Enqueue the packet in the appropriate Queue */ uQueId = aTidToQueueTable[pPktCtrlBlk->tTxDescriptor.tid]; eStatus = que_Enqueue (pTxDataQ->aQueues[uQueId], (TI_HANDLE)pPktCtrlBlk); /* Get number of packets in current queue */ uQueSize = que_Size (pTxDataQ->aQueues[uQueId]); /* If the current queue is not stopped */ if (pTxDataQ->aQueueBusy[uQueId] == TI_FALSE) { /* If the queue has the desired number of packets, request switch to driver context for handling them */ if (uQueSize == pTxDataQ->aTxSendPaceThresh[uQueId]) { tmr_StopTimer (pTxDataQ->hTxSendPaceTimer); bRequestSchedule = TI_TRUE; } /* If below Tx-Send pacing threshold, start timer to trigger packets handling if expired */ else if (uQueSize < pTxDataQ->aTxSendPaceThresh[uQueId]) { tmr_StartTimer (pTxDataQ->hTxSendPaceTimer, txDataQ_TxSendPaceTimeout, hTxDataQ, TX_SEND_PACE_TIMEOUT_MSEC, TI_FALSE); } } /* If allowed to stop network stack and the queue is full, indicate to stop network and to schedule Tx handling (both are executed below, outside the critical section!) */ if ((pTxDataQ->bStopNetStackTx) && (uQueSize == pTxDataQ->aQueueMaxSize[uQueId])) { pTxDataQ->aNetStackQueueStopped[uQueId] = TI_TRUE; bRequestSchedule = TI_TRUE; bStopNetStack = TI_TRUE; } /* Leave critical section */ context_LeaveCriticalSection (pTxDataQ->hContext); /* If needed, schedule Tx handling */ if (bRequestSchedule) { context_RequestSchedule (pTxDataQ->hContext, pTxDataQ->uContextId); } /* If needed, stop the network stack Tx */ if (bStopNetStack) { /* Stop the network stack from sending Tx packets as we have at least one date queue full. Note that in some of the OS's (e.g Win Mobile) it is implemented by blocking the thread*/ wlanDrvIf_StopTx (pTxDataQ->hOs); } if (eStatus != TI_OK) { /* If the packet can't be queued drop it */ txCtrl_FreePacket (pTxDataQ->hTxCtrl, pPktCtrlBlk, TI_NOK); #ifdef TI_DBG pTxDataQ->aQueueCounters[uQueId].uDroppedPacket++; #endif /* TI_DBG */ } else { #ifdef TI_DBG pTxDataQ->aQueueCounters[uQueId].uEnqueuePacket++; #endif /* TI_DBG */ } CL_TRACE_END_L3 ("tiwlan_drv.ko", "INHERIT", "TX", ""); return eStatus; }
TI_STATUS txDataQ_InsertPacket (TI_HANDLE hTxDataQ, TTxCtrlBlk *pPktCtrlBlk, TI_UINT8 uPacketDtag, TIntraBssBridge *pIntraBssBridgeParam) { TTxDataQ *pTxDataQ = (TTxDataQ *)hTxDataQ; TEthernetHeader *pEthHead = (TEthernetHeader *)(pPktCtrlBlk->tTxnStruct.aBuf[0]); TI_STATUS eStatus; TI_UINT32 uQueId; TI_UINT32 uQueSize; txCtrl_t *pTxCtrl = (txCtrl_t *)(pTxDataQ->hTxCtrl); TI_BOOL bRequestSchedule = TI_FALSE; TI_BOOL bStopNetStack = TI_FALSE; TDataLinkQ *pLinkQ; TI_UINT32 uHlid; /* If packet is EAPOL or from the generic Ethertype, forward it to the Mgmt-Queue and exit */ if ((HTOWLANS(pEthHead->type) == ETHERTYPE_EAPOL) || (HTOWLANS(pEthHead->type) == pTxCtrl->genericEthertype)) { pPktCtrlBlk->tTxPktParams.uPktType = TX_PKT_TYPE_EAPOL; return txMgmtQ_Xmit (pTxDataQ->hTxMgmtQ, pPktCtrlBlk, TI_TRUE); /* Note: The last parameter indicates that we are running in external context */ } /* Find link id by destination MAC address, if not found drop the packet */ /* use Intra Bss bridge params*/ if(!pIntraBssBridgeParam) { if (TI_UNLIKELY(MAC_MULTICAST(pEthHead->dst))) { uHlid = pTxDataQ->uBcastHlid; } else { if (txDataQ_LinkMacFind( hTxDataQ, &uHlid, pEthHead->dst) != TI_OK) { /* If the packet can't be queued drop it */ txCtrl_FreePacket (pTxDataQ->hTxCtrl, pPktCtrlBlk, TI_NOK); pTxDataQ->uLinkNotFoundCount++; return TI_NOK; } } } else { uHlid = pIntraBssBridgeParam->uParam; } pPktCtrlBlk->tTxDescriptor.hlid = uHlid; pLinkQ = &pTxDataQ->aDataLinkQ[uHlid]; /* Link queues */ pPktCtrlBlk->tTxPktParams.uPktType = TX_PKT_TYPE_ETHER; /* set encryption bit */ if (pLinkQ->bEncrypt) { SET_PKT_TYPE_ENCRYPT(pPktCtrlBlk); } /* Enter critical section to protect classifier data and queue access */ context_EnterCriticalSection (pTxDataQ->hContext); /* Call the Classify function to set the TID field */ if (txDataClsfr_ClassifyTxPacket (hTxDataQ, pPktCtrlBlk, uPacketDtag) != TI_OK) { #ifdef TI_DBG pTxDataQ->uClsfrMismatchCount++; #endif /* TI_DBG */ } uQueId = aTidToQueueTable[pPktCtrlBlk->tTxDescriptor.tid]; /* Check resources per LINK and per AC */ if (txDataQ_AllocCheckResources( hTxDataQ, pPktCtrlBlk) != TI_OK) { #ifdef TI_DBG pLinkQ->aQueueCounters[uQueId].uDroppedPacket++; pTxDataQ->uNoResourcesCount++; #endif /* TI_DBG */ /* Leave critical section */ context_LeaveCriticalSection (pTxDataQ->hContext); /* If the packet can't be queued drop it - Should be out of the critical section */ /* !!! This call should be out of the critical section */ txCtrl_FreePacket (pTxDataQ->hTxCtrl, pPktCtrlBlk, TI_NOK); return TI_NOK; } /* Enqueue the packet in the appropriate Queue */ eStatus = que_Enqueue (pLinkQ->aQueues[uQueId], (TI_HANDLE)pPktCtrlBlk); /* Get number of packets in current queue */ uQueSize = que_Size (pLinkQ->aQueues[uQueId]); /* If the current queue is not stopped */ if (pTxDataQ->aQueueBusy[uQueId] == TI_FALSE) { /* If the queue has the desired number of packets, request switch to driver context for handling them */ if (uQueSize == pTxDataQ->aTxSendPaceThresh[uQueId]) { tmr_StopTimer (pTxDataQ->hTxSendPaceTimer); bRequestSchedule = TI_TRUE; } /* If below Tx-Send pacing threshold, start timer to trigger packets handling if expired */ else if (uQueSize < pTxDataQ->aTxSendPaceThresh[uQueId]) { tmr_StartTimer (pTxDataQ->hTxSendPaceTimer, txDataQ_TxSendPaceTimeout, hTxDataQ, TX_SEND_PACE_TIMEOUT_MSEC, TI_FALSE); } } /* If allowed to stop network stack and the queue is full, indicate to stop network and to schedule Tx handling (both are executed below, outside the critical section!) */ if ((pTxDataQ->bStopNetStackTx) && (uQueSize == pTxDataQ->aQueueMaxSize[uQueId])) { pLinkQ->aNetStackQueueStopped[uQueId] = TI_TRUE; bRequestSchedule = TI_TRUE; bStopNetStack = TI_TRUE; } /* Leave critical section */ context_LeaveCriticalSection (pTxDataQ->hContext); /* If needed, schedule Tx handling */ if (bRequestSchedule) { context_RequestSchedule (pTxDataQ->hContext, pTxDataQ->uContextId); } /* If needed, stop the network stack Tx */ if (bStopNetStack) { /* Stop the network stack from sending Tx packets as we have at least one date queue full. Note that in some of the OS's (e.g Win Mobile) it is implemented by blocking the thread! */ wlanDrvIf_StopTx (pTxDataQ->hOs); } if (eStatus != TI_OK) { /* If the packet can't be queued drop it */ txCtrl_FreePacket (pTxDataQ->hTxCtrl, pPktCtrlBlk, TI_NOK); #ifdef TI_DBG pLinkQ->aQueueCounters[uQueId].uDroppedPacket++; #endif /* TI_DBG */ } else { #ifdef TI_DBG pLinkQ->aQueueCounters[uQueId].uEnqueuePacket++; #endif /* TI_DBG */ } return eStatus; }