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Staging: bcm: Qos.c: fix checkpatch errors: whitespaces
This patch improves coding style in Qos.c Whitespaces according to the coding guideline Signed-off-by: Martin Gumbrecht <martin.gumbrecht@googlemail.com> Signed-off-by: Christian Bay <christian.bay@studium.fau.de> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
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@ -303,7 +303,7 @@ VOID PruneQueueAllSF(struct bcm_mini_adapter *Adapter)
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*/
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*/
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static VOID PruneQueue(struct bcm_mini_adapter *Adapter, INT iIndex)
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static VOID PruneQueue(struct bcm_mini_adapter *Adapter, INT iIndex)
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{
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{
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struct sk_buff* PacketToDrop = NULL;
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struct sk_buff *PacketToDrop = NULL;
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struct net_device_stats *netstats;
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struct net_device_stats *netstats;
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BCM_DEBUG_PRINT(Adapter, DBG_TYPE_TX, PRUNE_QUEUE, DBG_LVL_ALL, "=====> Index %d", iIndex);
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BCM_DEBUG_PRINT(Adapter, DBG_TYPE_TX, PRUNE_QUEUE, DBG_LVL_ALL, "=====> Index %d", iIndex);
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@ -371,9 +371,9 @@ static VOID PruneQueue(struct bcm_mini_adapter *Adapter, INT iIndex)
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VOID flush_all_queues(struct bcm_mini_adapter *Adapter)
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VOID flush_all_queues(struct bcm_mini_adapter *Adapter)
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{
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{
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INT iQIndex;
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INT iQIndex;
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UINT uiTotalPacketLength;
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UINT uiTotalPacketLength;
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struct sk_buff* PacketToDrop = NULL;
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struct sk_buff *PacketToDrop = NULL;
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BCM_DEBUG_PRINT(Adapter, DBG_TYPE_OTHERS, DUMP_INFO, DBG_LVL_ALL, "=====>");
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BCM_DEBUG_PRINT(Adapter, DBG_TYPE_OTHERS, DUMP_INFO, DBG_LVL_ALL, "=====>");
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@ -415,24 +415,24 @@ VOID flush_all_queues(struct bcm_mini_adapter *Adapter)
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BCM_DEBUG_PRINT(Adapter, DBG_TYPE_OTHERS, DUMP_INFO, DBG_LVL_ALL, "<=====");
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BCM_DEBUG_PRINT(Adapter, DBG_TYPE_OTHERS, DUMP_INFO, DBG_LVL_ALL, "<=====");
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}
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}
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USHORT ClassifyPacket(struct bcm_mini_adapter *Adapter, struct sk_buff* skb)
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USHORT ClassifyPacket(struct bcm_mini_adapter *Adapter, struct sk_buff *skb)
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{
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{
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INT uiLoopIndex = 0;
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INT uiLoopIndex = 0;
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struct bcm_classifier_rule *pstClassifierRule = NULL;
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struct bcm_classifier_rule *pstClassifierRule = NULL;
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struct bcm_eth_packet_info stEthCsPktInfo;
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struct bcm_eth_packet_info stEthCsPktInfo;
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PVOID pvEThPayload = NULL;
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PVOID pvEThPayload = NULL;
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struct iphdr *pIpHeader = NULL;
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struct iphdr *pIpHeader = NULL;
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INT uiSfIndex = 0;
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INT uiSfIndex = 0;
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USHORT usIndex = Adapter->usBestEffortQueueIndex;
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USHORT usIndex = Adapter->usBestEffortQueueIndex;
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bool bFragmentedPkt = false, bClassificationSucceed = false;
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bool bFragmentedPkt = false, bClassificationSucceed = false;
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USHORT usCurrFragment = 0;
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USHORT usCurrFragment = 0;
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struct bcm_tcp_header *pTcpHeader;
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struct bcm_tcp_header *pTcpHeader;
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UCHAR IpHeaderLength;
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UCHAR IpHeaderLength;
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UCHAR TcpHeaderLength;
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UCHAR TcpHeaderLength;
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pvEThPayload = skb->data;
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pvEThPayload = skb->data;
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*((UINT32*) (skb->cb) +SKB_CB_TCPACK_OFFSET) = 0;
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*((UINT32 *) (skb->cb) + SKB_CB_TCPACK_OFFSET) = 0;
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EThCSGetPktInfo(Adapter, pvEThPayload, &stEthCsPktInfo);
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EThCSGetPktInfo(Adapter, pvEThPayload, &stEthCsPktInfo);
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switch (stEthCsPktInfo.eNwpktEthFrameType) {
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switch (stEthCsPktInfo.eNwpktEthFrameType) {
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@ -555,15 +555,15 @@ USHORT ClassifyPacket(struct bcm_mini_adapter *Adapter, struct sk_buff* skb)
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BCM_DEBUG_PRINT(Adapter, DBG_TYPE_TX, IPV4_DBG, DBG_LVL_ALL, "CF id : %d, SF ID is =%lu", pstClassifierRule->uiClassifierRuleIndex, pstClassifierRule->ulSFID);
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BCM_DEBUG_PRINT(Adapter, DBG_TYPE_TX, IPV4_DBG, DBG_LVL_ALL, "CF id : %d, SF ID is =%lu", pstClassifierRule->uiClassifierRuleIndex, pstClassifierRule->ulSFID);
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/* Store The matched Classifier in SKB */
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/* Store The matched Classifier in SKB */
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*((UINT32*)(skb->cb)+SKB_CB_CLASSIFICATION_OFFSET) = pstClassifierRule->uiClassifierRuleIndex;
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*((UINT32 *)(skb->cb)+SKB_CB_CLASSIFICATION_OFFSET) = pstClassifierRule->uiClassifierRuleIndex;
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if ((TCP == pIpHeader->protocol) && !bFragmentedPkt && (ETH_AND_IP_HEADER_LEN + TCP_HEADER_LEN <= skb->len)) {
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if ((TCP == pIpHeader->protocol) && !bFragmentedPkt && (ETH_AND_IP_HEADER_LEN + TCP_HEADER_LEN <= skb->len)) {
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IpHeaderLength = pIpHeader->ihl;
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IpHeaderLength = pIpHeader->ihl;
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pTcpHeader = (struct bcm_tcp_header *)(((PUCHAR)pIpHeader)+(IpHeaderLength*4));
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pTcpHeader = (struct bcm_tcp_header *)(((PUCHAR)pIpHeader)+(IpHeaderLength*4));
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TcpHeaderLength = GET_TCP_HEADER_LEN(pTcpHeader->HeaderLength);
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TcpHeaderLength = GET_TCP_HEADER_LEN(pTcpHeader->HeaderLength);
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if ((pTcpHeader->ucFlags & TCP_ACK) &&
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if ((pTcpHeader->ucFlags & TCP_ACK) &&
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(ntohs(pIpHeader->tot_len) == (IpHeaderLength*4)+(TcpHeaderLength*4)))
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(ntohs(pIpHeader->tot_len) == (IpHeaderLength*4)+(TcpHeaderLength*4)))
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*((UINT32*) (skb->cb) + SKB_CB_TCPACK_OFFSET) = TCP_ACK;
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*((UINT32 *) (skb->cb) + SKB_CB_TCPACK_OFFSET) = TCP_ACK;
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}
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}
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usIndex = SearchSfid(Adapter, pstClassifierRule->ulSFID);
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usIndex = SearchSfid(Adapter, pstClassifierRule->ulSFID);
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@ -629,7 +629,7 @@ static bool EthCSMatchDestMACAddress(struct bcm_classifier_rule *pstClassifierRu
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return TRUE;
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return TRUE;
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}
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}
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static bool EthCSMatchEThTypeSAP(struct bcm_classifier_rule *pstClassifierRule, struct sk_buff* skb, struct bcm_eth_packet_info *pstEthCsPktInfo)
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static bool EthCSMatchEThTypeSAP(struct bcm_classifier_rule *pstClassifierRule, struct sk_buff *skb, struct bcm_eth_packet_info *pstEthCsPktInfo)
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{
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{
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struct bcm_mini_adapter *Adapter = GET_BCM_ADAPTER(gblpnetdev);
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struct bcm_mini_adapter *Adapter = GET_BCM_ADAPTER(gblpnetdev);
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if ((pstClassifierRule->ucEtherTypeLen == 0) ||
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if ((pstClassifierRule->ucEtherTypeLen == 0) ||
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@ -662,7 +662,7 @@ static bool EthCSMatchEThTypeSAP(struct bcm_classifier_rule *pstClassifierRule,
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}
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}
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static bool EthCSMatchVLANRules(struct bcm_classifier_rule *pstClassifierRule, struct sk_buff* skb, struct bcm_eth_packet_info *pstEthCsPktInfo)
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static bool EthCSMatchVLANRules(struct bcm_classifier_rule *pstClassifierRule, struct sk_buff *skb, struct bcm_eth_packet_info *pstEthCsPktInfo)
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{
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{
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bool bClassificationSucceed = false;
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bool bClassificationSucceed = false;
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USHORT usVLANID;
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USHORT usVLANID;
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@ -713,7 +713,7 @@ static bool EthCSMatchVLANRules(struct bcm_classifier_rule *pstClassifierRule, s
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}
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}
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static bool EThCSClassifyPkt(struct bcm_mini_adapter *Adapter, struct sk_buff* skb,
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static bool EThCSClassifyPkt(struct bcm_mini_adapter *Adapter, struct sk_buff *skb,
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struct bcm_eth_packet_info *pstEthCsPktInfo,
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struct bcm_eth_packet_info *pstEthCsPktInfo,
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struct bcm_classifier_rule *pstClassifierRule,
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struct bcm_classifier_rule *pstClassifierRule,
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B_UINT8 EthCSCupport)
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B_UINT8 EthCSCupport)
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