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https://github.com/AuxXxilium/linux_dsm_epyc7002.git
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staging:vt6655:wroute: Whitespace cleanups
Neatening only. git diff -w shows no differences. Signed-off-by: Joe Perches <joe@perches.com> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
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180071a1c3
@ -43,7 +43,7 @@
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/*--------------------- Static Classes ----------------------------*/
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/*--------------------- Static Variables --------------------------*/
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static int msglevel =MSG_LEVEL_INFO;
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static int msglevel = MSG_LEVEL_INFO;
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//static int msglevel =MSG_LEVEL_DEBUG;
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/*--------------------- Static Functions --------------------------*/
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@ -65,134 +65,134 @@ static int msglevel =MSG_LEVEL_INFO;
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* Return Value: true if packet duplicate; otherwise false
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*
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*/
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bool ROUTEbRelay (PSDevice pDevice, unsigned char *pbySkbData, unsigned int uDataLen, unsigned int uNodeIndex)
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bool ROUTEbRelay(PSDevice pDevice, unsigned char *pbySkbData, unsigned int uDataLen, unsigned int uNodeIndex)
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{
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PSMgmtObject pMgmt = pDevice->pMgmt;
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PSTxDesc pHeadTD, pLastTD;
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unsigned int cbFrameBodySize;
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unsigned int uMACfragNum;
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unsigned char byPktType;
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bool bNeedEncryption = false;
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SKeyItem STempKey;
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PSKeyItem pTransmitKey = NULL;
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unsigned int cbHeaderSize;
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unsigned int ii;
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unsigned char *pbyBSSID;
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PSMgmtObject pMgmt = pDevice->pMgmt;
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PSTxDesc pHeadTD, pLastTD;
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unsigned int cbFrameBodySize;
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unsigned int uMACfragNum;
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unsigned char byPktType;
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bool bNeedEncryption = false;
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SKeyItem STempKey;
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PSKeyItem pTransmitKey = NULL;
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unsigned int cbHeaderSize;
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unsigned int ii;
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unsigned char *pbyBSSID;
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if (AVAIL_TD(pDevice, TYPE_AC0DMA)<=0) {
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DBG_PRT(MSG_LEVEL_DEBUG, KERN_INFO "Relay can't allocate TD1..\n");
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return false;
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}
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if (AVAIL_TD(pDevice, TYPE_AC0DMA) <= 0) {
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DBG_PRT(MSG_LEVEL_DEBUG, KERN_INFO "Relay can't allocate TD1..\n");
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return false;
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}
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pHeadTD = pDevice->apCurrTD[TYPE_AC0DMA];
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pHeadTD = pDevice->apCurrTD[TYPE_AC0DMA];
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pHeadTD->m_td1TD1.byTCR = (TCR_EDP|TCR_STP);
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pHeadTD->m_td1TD1.byTCR = (TCR_EDP | TCR_STP);
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memcpy(pDevice->sTxEthHeader.abyDstAddr, (unsigned char *)pbySkbData, ETH_HLEN);
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memcpy(pDevice->sTxEthHeader.abyDstAddr, (unsigned char *)pbySkbData, ETH_HLEN);
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cbFrameBodySize = uDataLen - ETH_HLEN;
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cbFrameBodySize = uDataLen - ETH_HLEN;
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if (ntohs(pDevice->sTxEthHeader.wType) > ETH_DATA_LEN) {
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cbFrameBodySize += 8;
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}
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if (ntohs(pDevice->sTxEthHeader.wType) > ETH_DATA_LEN) {
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cbFrameBodySize += 8;
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}
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if (pDevice->bEncryptionEnable == true) {
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bNeedEncryption = true;
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if (pDevice->bEncryptionEnable == true) {
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bNeedEncryption = true;
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// get group key
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pbyBSSID = pDevice->abyBroadcastAddr;
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if(KeybGetTransmitKey(&(pDevice->sKey), pbyBSSID, GROUP_KEY, &pTransmitKey) == false) {
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pTransmitKey = NULL;
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DBG_PRT(MSG_LEVEL_DEBUG, KERN_DEBUG"KEY is NULL. [%d]\n", pDevice->pMgmt->eCurrMode);
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} else {
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DBG_PRT(MSG_LEVEL_DEBUG, KERN_DEBUG"Get GTK.\n");
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}
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}
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// get group key
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pbyBSSID = pDevice->abyBroadcastAddr;
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if (KeybGetTransmitKey(&(pDevice->sKey), pbyBSSID, GROUP_KEY, &pTransmitKey) == false) {
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pTransmitKey = NULL;
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DBG_PRT(MSG_LEVEL_DEBUG, KERN_DEBUG "KEY is NULL. [%d]\n", pDevice->pMgmt->eCurrMode);
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} else {
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DBG_PRT(MSG_LEVEL_DEBUG, KERN_DEBUG "Get GTK.\n");
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}
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}
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if (pDevice->bEnableHostWEP) {
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if (uNodeIndex < MAX_NODE_NUM + 1) {
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pTransmitKey = &STempKey;
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pTransmitKey->byCipherSuite = pMgmt->sNodeDBTable[uNodeIndex].byCipherSuite;
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pTransmitKey->dwKeyIndex = pMgmt->sNodeDBTable[uNodeIndex].dwKeyIndex;
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pTransmitKey->uKeyLength = pMgmt->sNodeDBTable[uNodeIndex].uWepKeyLength;
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pTransmitKey->dwTSC47_16 = pMgmt->sNodeDBTable[uNodeIndex].dwTSC47_16;
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pTransmitKey->wTSC15_0 = pMgmt->sNodeDBTable[uNodeIndex].wTSC15_0;
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memcpy(pTransmitKey->abyKey,
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&pMgmt->sNodeDBTable[uNodeIndex].abyWepKey[0],
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pTransmitKey->uKeyLength
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);
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}
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}
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if (pDevice->bEnableHostWEP) {
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if (uNodeIndex < MAX_NODE_NUM + 1) {
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pTransmitKey = &STempKey;
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pTransmitKey->byCipherSuite = pMgmt->sNodeDBTable[uNodeIndex].byCipherSuite;
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pTransmitKey->dwKeyIndex = pMgmt->sNodeDBTable[uNodeIndex].dwKeyIndex;
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pTransmitKey->uKeyLength = pMgmt->sNodeDBTable[uNodeIndex].uWepKeyLength;
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pTransmitKey->dwTSC47_16 = pMgmt->sNodeDBTable[uNodeIndex].dwTSC47_16;
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pTransmitKey->wTSC15_0 = pMgmt->sNodeDBTable[uNodeIndex].wTSC15_0;
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memcpy(pTransmitKey->abyKey,
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&pMgmt->sNodeDBTable[uNodeIndex].abyWepKey[0],
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pTransmitKey->uKeyLength
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);
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}
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}
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uMACfragNum = cbGetFragCount(pDevice, pTransmitKey, cbFrameBodySize, &pDevice->sTxEthHeader);
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uMACfragNum = cbGetFragCount(pDevice, pTransmitKey, cbFrameBodySize, &pDevice->sTxEthHeader);
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if (uMACfragNum > AVAIL_TD(pDevice,TYPE_AC0DMA)) {
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return false;
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}
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byPktType = (unsigned char)pDevice->byPacketType;
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if (uMACfragNum > AVAIL_TD(pDevice, TYPE_AC0DMA)) {
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return false;
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}
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byPktType = (unsigned char)pDevice->byPacketType;
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if (pDevice->bFixRate) {
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if (pDevice->eCurrentPHYType == PHY_TYPE_11B) {
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if (pDevice->uConnectionRate >= RATE_11M) {
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pDevice->wCurrentRate = RATE_11M;
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} else {
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pDevice->wCurrentRate = (unsigned short)pDevice->uConnectionRate;
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}
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} else {
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if ((pDevice->eCurrentPHYType == PHY_TYPE_11A) &&
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(pDevice->uConnectionRate <= RATE_6M)) {
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pDevice->wCurrentRate = RATE_6M;
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} else {
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if (pDevice->uConnectionRate >= RATE_54M)
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pDevice->wCurrentRate = RATE_54M;
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else
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pDevice->wCurrentRate = (unsigned short)pDevice->uConnectionRate;
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}
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}
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}
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else {
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pDevice->wCurrentRate = pDevice->pMgmt->sNodeDBTable[uNodeIndex].wTxDataRate;
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}
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if (pDevice->bFixRate) {
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if (pDevice->eCurrentPHYType == PHY_TYPE_11B) {
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if (pDevice->uConnectionRate >= RATE_11M) {
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pDevice->wCurrentRate = RATE_11M;
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} else {
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pDevice->wCurrentRate = (unsigned short)pDevice->uConnectionRate;
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}
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} else {
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if ((pDevice->eCurrentPHYType == PHY_TYPE_11A) &&
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(pDevice->uConnectionRate <= RATE_6M)) {
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pDevice->wCurrentRate = RATE_6M;
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} else {
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if (pDevice->uConnectionRate >= RATE_54M)
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pDevice->wCurrentRate = RATE_54M;
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else
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pDevice->wCurrentRate = (unsigned short)pDevice->uConnectionRate;
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}
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}
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}
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else {
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pDevice->wCurrentRate = pDevice->pMgmt->sNodeDBTable[uNodeIndex].wTxDataRate;
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}
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if (pDevice->wCurrentRate <= RATE_11M)
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byPktType = PK_TYPE_11B;
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if (pDevice->wCurrentRate <= RATE_11M)
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byPktType = PK_TYPE_11B;
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vGenerateFIFOHeader(pDevice, byPktType, pDevice->pbyTmpBuff, bNeedEncryption,
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cbFrameBodySize, TYPE_AC0DMA, pHeadTD,
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&pDevice->sTxEthHeader, pbySkbData, pTransmitKey, uNodeIndex,
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&uMACfragNum,
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&cbHeaderSize
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);
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vGenerateFIFOHeader(pDevice, byPktType, pDevice->pbyTmpBuff, bNeedEncryption,
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cbFrameBodySize, TYPE_AC0DMA, pHeadTD,
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&pDevice->sTxEthHeader, pbySkbData, pTransmitKey, uNodeIndex,
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&uMACfragNum,
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&cbHeaderSize
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);
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if (MACbIsRegBitsOn(pDevice->PortOffset, MAC_REG_PSCTL, PSCTL_PS)) {
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// Disable PS
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MACbPSWakeup(pDevice->PortOffset);
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}
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if (MACbIsRegBitsOn(pDevice->PortOffset, MAC_REG_PSCTL, PSCTL_PS)) {
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// Disable PS
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MACbPSWakeup(pDevice->PortOffset);
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}
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pDevice->bPWBitOn = false;
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pDevice->bPWBitOn = false;
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pLastTD = pHeadTD;
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for (ii = 0; ii < uMACfragNum; ii++) {
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// Poll Transmit the adapter
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wmb();
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pHeadTD->m_td0TD0.f1Owner=OWNED_BY_NIC;
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wmb();
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if (ii == (uMACfragNum - 1))
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pLastTD = pHeadTD;
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pHeadTD = pHeadTD->next;
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}
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pLastTD = pHeadTD;
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for (ii = 0; ii < uMACfragNum; ii++) {
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// Poll Transmit the adapter
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wmb();
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pHeadTD->m_td0TD0.f1Owner = OWNED_BY_NIC;
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wmb();
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if (ii == (uMACfragNum - 1))
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pLastTD = pHeadTD;
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pHeadTD = pHeadTD->next;
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}
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pLastTD->pTDInfo->skb = 0;
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pLastTD->pTDInfo->byFlags = 0;
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pLastTD->pTDInfo->skb = 0;
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pLastTD->pTDInfo->byFlags = 0;
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pDevice->apCurrTD[TYPE_AC0DMA] = pHeadTD;
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pDevice->apCurrTD[TYPE_AC0DMA] = pHeadTD;
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MACvTransmitAC0(pDevice->PortOffset);
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MACvTransmitAC0(pDevice->PortOffset);
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return true;
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return true;
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}
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@ -39,7 +39,7 @@
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/*--------------------- Export Functions --------------------------*/
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bool ROUTEbRelay (PSDevice pDevice, unsigned char *pbySkbData, unsigned int uDataLen, unsigned int uNodeIndex);
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bool ROUTEbRelay(PSDevice pDevice, unsigned char *pbySkbData, unsigned int uDataLen, unsigned int uNodeIndex);
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#endif // __WROUTE_H__
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