staging: vt6656: baseband.c: Remove commented code
This patch removes a lot of commented code, and some return calls of void functions. Signed-off-by: Marcos Paulo de Souza <marcos.mage@gmail.com> Cc: Forest Bond <forest@alittletooquiet.net> Signed-off-by: Greg Kroah-Hartman <gregkh@suse.de>
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@ -1558,7 +1558,6 @@ void TimerSQ3CallBack(void *hDeviceContext)
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spin_unlock_irq(&pDevice->lock);
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return;
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}
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@ -1606,7 +1605,6 @@ void TimerSQ3Tmax3CallBack(void *hDeviceContext)
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add_timer(&pDevice->TimerSQ3Tmax1);
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spin_unlock_irq(&pDevice->lock);
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return;
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}
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void
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@ -216,26 +216,6 @@ PKnownBSS BSSpSearchBSSList(void *hDeviceContext,
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continue;
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}
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}
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/*
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if (pMgmt->eAuthenMode < WMAC_AUTH_WPA) {
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if (pCurrBSS->bWPAValid == TRUE) {
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// WPA AP will reject connection of station without WPA enable.
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continue;
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}
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} else if ((pMgmt->eAuthenMode == WMAC_AUTH_WPA) ||
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(pMgmt->eAuthenMode == WMAC_AUTH_WPAPSK)) {
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if (pCurrBSS->bWPAValid == FALSE) {
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// station with WPA enable can't join NonWPA AP.
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continue;
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}
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} else if ((pMgmt->eAuthenMode == WMAC_AUTH_WPA2) ||
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(pMgmt->eAuthenMode == WMAC_AUTH_WPA2PSK)) {
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if (pCurrBSS->bWPA2Valid == FALSE) {
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// station with WPA2 enable can't join NonWPA2 AP.
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continue;
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}
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}
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*/
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pMgmt->pSameBSS[jj].uChannel = pCurrBSS->uChannel;
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DBG_PRT(MSG_LEVEL_DEBUG, KERN_INFO"BSSpSearchBSSList pSelect1[%02X %02X %02X-%02X %02X %02X]\n",*pCurrBSS->abyBSSID,*(pCurrBSS->abyBSSID+1),*(pCurrBSS->abyBSSID+2),*(pCurrBSS->abyBSSID+3),*(pCurrBSS->abyBSSID+4),*(pCurrBSS->abyBSSID+5));
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@ -300,18 +280,11 @@ void BSSvClearBSSList(void *hDeviceContext, BOOL bKeepCurrBSSID)
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continue;
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}
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}
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/*
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if ((pMgmt->sBSSList[ii].bActive) && (pMgmt->sBSSList[ii].uClearCount < BSS_CLEAR_COUNT)) {
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pMgmt->sBSSList[ii].uClearCount ++;
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continue;
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}
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*/
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pMgmt->sBSSList[ii].bActive = FALSE;
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pMgmt->sBSSList[ii].bActive = FALSE;
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memset(&pMgmt->sBSSList[ii], 0, sizeof(KnownBSS));
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}
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BSSvClearAnyBSSJoinRecord(pDevice);
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return;
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}
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@ -524,46 +497,6 @@ BOOL BSSbInsertToBSSList(void *hDeviceContext,
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pBSSList->ldBmAverage[ii] = 0;
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}
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/*
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if ((pIE_Country != NULL) &&
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(pMgmt->b11hEnable == TRUE)) {
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CARDvSetCountryInfo(pMgmt->pAdapter,
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pBSSList->eNetworkTypeInUse,
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pIE_Country);
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}
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if ((bParsingQuiet == TRUE) && (pIE_Quiet != NULL)) {
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if ((((PWLAN_IE_QUIET)pIE_Quiet)->len == 8) &&
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(((PWLAN_IE_QUIET)pIE_Quiet)->byQuietCount != 0)) {
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// valid EID
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if (pQuiet == NULL) {
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pQuiet = (PWLAN_IE_QUIET)pIE_Quiet;
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CARDbSetQuiet( pMgmt->pAdapter,
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TRUE,
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pQuiet->byQuietCount,
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pQuiet->byQuietPeriod,
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*((PWORD)pQuiet->abyQuietDuration),
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*((PWORD)pQuiet->abyQuietOffset)
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);
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} else {
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pQuiet = (PWLAN_IE_QUIET)pIE_Quiet;
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CARDbSetQuiet( pMgmt->pAdapter,
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FALSE,
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pQuiet->byQuietCount,
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pQuiet->byQuietPeriod,
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*((PWORD)pQuiet->abyQuietDuration),
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*((PWORD)pQuiet->abyQuietOffset)
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);
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}
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}
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}
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if ((bParsingQuiet == TRUE) &&
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(pQuiet != NULL)) {
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CARDbStartQuiet(pMgmt->pAdapter);
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}
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*/
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pBSSList->uIELength = uIELength;
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if (pBSSList->uIELength > WLAN_BEACON_FR_MAXLEN)
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pBSSList->uIELength = WLAN_BEACON_FR_MAXLEN;
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@ -609,8 +542,6 @@ BOOL BSSbUpdateToBSSList(void *hDeviceContext,
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PSRxMgmtPacket pRxPacket = (PSRxMgmtPacket)pRxPacketContext;
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signed long ldBm, ldBmSum;
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BOOL bParsingQuiet = FALSE;
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// BYTE abyTmpSSID[WLAN_IEHDR_LEN + WLAN_SSID_MAXLEN + 1];
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if (pBSSList == NULL)
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return FALSE;
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@ -622,7 +553,6 @@ BOOL BSSbUpdateToBSSList(void *hDeviceContext,
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pBSSList->wCapInfo = cpu_to_le16(wCapInfo);
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pBSSList->uClearCount = 0;
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pBSSList->uChannel = byCurrChannel;
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// DBG_PRT(MSG_LEVEL_DEBUG, KERN_INFO"BSSbUpdateToBSSList: pBSSList->uChannel: %d\n", pBSSList->uChannel);
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if (pSSID->len > WLAN_SSID_MAXLEN)
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pSSID->len = WLAN_SSID_MAXLEN;
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@ -809,7 +739,6 @@ void BSSvCreateOneNode(void *hDeviceContext, unsigned int *puNodeIndex)
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pMgmt->sNodeDBTable[*puNodeIndex].byAuthSequence = 0;
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pMgmt->sNodeDBTable[*puNodeIndex].wEnQueueCnt = 0;
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DBG_PRT(MSG_LEVEL_DEBUG, KERN_INFO "Create node index = %d\n", ii);
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return;
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};
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@ -840,8 +769,6 @@ void BSSvRemoveOneNode(void *hDeviceContext, unsigned int uNodeIndex)
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memset(&pMgmt->sNodeDBTable[uNodeIndex], 0, sizeof(KnownNodeDB));
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// clear tx bit map
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pMgmt->abyPSTxMap[pMgmt->sNodeDBTable[uNodeIndex].wAID >> 3] &= ~byMask[pMgmt->sNodeDBTable[uNodeIndex].wAID & 7];
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return;
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};
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/*+
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*
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@ -1054,10 +981,6 @@ if((pMgmt->eCurrState!=WMAC_STATE_ASSOC) &&
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// Rate fallback check
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if (!pDevice->bFixRate) {
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/*
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if ((pMgmt->eCurrMode == WMAC_MODE_ESS_STA) && (ii == 0))
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RATEvTxRateFallBack(pDevice, &(pMgmt->sNodeDBTable[ii]));
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*/
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if (ii > 0) {
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// ii = 0 for multicast node (AP & Adhoc)
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RATEvTxRateFallBack((void *)pDevice,
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@ -1152,7 +1075,6 @@ if((pMgmt->eCurrState!=WMAC_STATE_ASSOC) &&
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(pMgmt->eCurrMode == WMAC_MODE_ESS_STA)) {
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if (pMgmt->sNodeDBTable[0].bActive) { // Assoc with BSS
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// DBG_PRT(MSG_LEVEL_INFO, KERN_INFO "Callback inactive Count = [%d]\n", pMgmt->sNodeDBTable[0].uInActiveCount);
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if (pDevice->bUpdateBBVGA) {
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/* s_vCheckSensitivity((void *) pDevice); */
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@ -1194,7 +1116,6 @@ if((pMgmt->eCurrState!=WMAC_STATE_ASSOC) &&
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pDevice->skb = dev_alloc_skb((int)pDevice->rx_buf_sz);
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}
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#ifdef WPA_SUPPLICANT_DRIVER_WEXT_SUPPORT
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// if(pDevice->bWPASuppWextEnabled == TRUE)
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{
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union iwreq_data wrqu;
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memset(&wrqu, 0, sizeof (wrqu));
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@ -1223,7 +1144,6 @@ DBG_PRT(MSG_LEVEL_DEBUG, KERN_INFO "bIsRoaming %d, !\n", pDevice->bIsRoaming );
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pDevice->uIsroamingTime = 0;
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pDevice->bRoaming = FALSE;
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// if ((pDevice->bWPADEVUp) && (pDevice->skb != NULL)) {
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wpahdr = (viawget_wpa_header *)pDevice->skb->data;
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wpahdr->type = VIAWGET_CCKM_ROAM_MSG;
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wpahdr->resp_ie_len = 0;
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@ -1237,7 +1157,6 @@ DBG_PRT(MSG_LEVEL_DEBUG, KERN_INFO "bIsRoaming %d, !\n", pDevice->bIsRoaming );
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netif_rx(pDevice->skb);
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pDevice->skb = dev_alloc_skb((int)pDevice->rx_buf_sz);
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// }
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}
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else if ((pDevice->bRoaming == FALSE)&&(pDevice->bIsRoaming == TRUE)) {
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pDevice->uIsroamingTime++;
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@ -1315,7 +1234,6 @@ else {
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pMgmt->sTimerSecondCallback.expires = RUN_AT(HZ);
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add_timer(&pMgmt->sTimerSecondCallback);
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return;
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}
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/*+
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@ -1364,7 +1282,6 @@ void BSSvUpdateNodeTxCounter(void *hDeviceContext,
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// Only Unicast using support rates
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if (wFIFOCtl & FIFOCTL_NEEDACK) {
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//DBG_PRN_GRP21(("Device %08X, wRate %04X, byTSR %02X\n", hDeviceContext, wRate, byTSR));
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if (pMgmt->eCurrMode == WMAC_MODE_ESS_STA) {
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pMgmt->sNodeDBTable[0].uTxAttempts += 1;
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if ( !(byTSR & (TSR_TMO | TSR_RETRYTMO))) {
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@ -1475,10 +1392,6 @@ void BSSvUpdateNodeTxCounter(void *hDeviceContext,
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}
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}
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}
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return;
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}
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/*+
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@ -1519,8 +1432,6 @@ void BSSvClearNodeDBTable(void *hDeviceContext,
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memset(&pMgmt->sNodeDBTable[ii], 0, sizeof(KnownNodeDB));
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}
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}
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return;
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};
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void s_vCheckSensitivity(void *hDeviceContext)
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@ -1584,7 +1495,6 @@ RxOkRatio = (RxCnt < 6) ? 2000:((pDevice->scStatistic.RxOkCnt * 2000) / RxCnt);
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//decide link quality
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if(pDevice->bLinkPass !=TRUE)
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{
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// printk("s_uCalculateLinkQual-->Link disconnect and Poor quality**\n");
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pDevice->scStatistic.LinkQuality = 0;
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pDevice->scStatistic.SignalStren = 0;
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}
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@ -1608,7 +1518,6 @@ else
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pDevice->scStatistic.TxFailCount = 0;
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pDevice->scStatistic.TxNoRetryOkCount = 0;
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pDevice->scStatistic.TxRetryOkCount = 0;
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return;
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}
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void BSSvClearAnyBSSJoinRecord(void *hDeviceContext)
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@ -1617,10 +1526,8 @@ void BSSvClearAnyBSSJoinRecord(void *hDeviceContext)
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PSMgmtObject pMgmt = &(pDevice->sMgmtObj);
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unsigned int ii;
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for (ii = 0; ii < MAX_BSS_NUM; ii++) {
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for (ii = 0; ii < MAX_BSS_NUM; ii++)
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pMgmt->sBSSList[ii].bSelected = FALSE;
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}
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return;
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}
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void s_vCheckPreEDThreshold(void *hDeviceContext)
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@ -1637,6 +1544,5 @@ void s_vCheckPreEDThreshold(void *hDeviceContext)
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BBvUpdatePreEDThreshold(pDevice, FALSE);
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}
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}
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return;
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}
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