if (pDevice->bShortSlotTime) {
pDevice->bShortSlotTime = false;
BBvSetShortSlotTime(pDevice);
- vUpdateIFS((void *) pDevice);
+ vnt_update_ifs(pDevice);
}
} else if (!pDevice->bShortSlotTime) {
pDevice->bShortSlotTime = true;
BBvSetShortSlotTime(pDevice);
- vUpdateIFS((void *) pDevice);
+ vnt_update_ifs(pDevice);
}
/* on/off barker long preamble mode */
* Functions:
* s_vSafeResetTx - Rest Tx
* CARDvSetRSPINF - Set RSPINF
- * vUpdateIFS - Update slotTime,SIFS,DIFS, and EIFS
+ * vnt_update_ifs - Update slotTime,SIFS,DIFS, and EIFS
* CARDvUpdateBasicTopRate - Update BasicTopRate
* CARDbAddBasicRate - Add to BasicRateSet
* CARDbSetBasicRate - Set Basic Tx Rate
* Revision History:
* 06-10-2003 Bryan YC Fan: Re-write codes to support VT3253 spec.
* 08-26-2003 Kyle Hsu: Modify the definition type of dwIoBase.
- * 09-01-2003 Bryan YC Fan: Add vUpdateIFS().
+ * 09-01-2003 Bryan YC Fan: Add vnt_update_ifs().
*
*/
* Return Value: None.
*
*/
-void vUpdateIFS(struct vnt_private *priv)
+void vnt_update_ifs(struct vnt_private *priv)
{
u8 max_min = 0;
u8 data[4];
else if (priv->byBBType == BB_TYPE_11G)
vnt_control_out_u8(priv, MESSAGE_REQUEST_BBREG, 0x88, 0x08);
- vUpdateIFS(priv);
+ vnt_update_ifs(priv);
CARDvSetRSPINF(priv, (u8)priv->byBBType);
if (priv->byBBType == BB_TYPE_11A) {
void vnt_set_channel(struct vnt_private *, u32);
void CARDvSetRSPINF(struct vnt_private *, u8);
-void vUpdateIFS(struct vnt_private *);
+void vnt_update_ifs(struct vnt_private *);
void CARDvUpdateBasicTopRate(struct vnt_private *);
void CARDbAddBasicRate(struct vnt_private *, u16);
int CARDbIsOFDMinBasicRate(struct vnt_private *pDevice);
} else {
MACvDisableProtectMD(pDevice);
}
- vUpdateIFS(pDevice);
+ vnt_update_ifs(pDevice);
}
if ((pBSSList->sERP.byERP & WLAN_EID_ERP_NONERP_PRESENT) != pDevice->bNonERPPresent) {//0000 0001
pDevice->bNonERPPresent = (pBSSList->sERP.byERP & WLAN_EID_ERP_USE_PROTECTION);
if (bShortSlotTime != pDevice->bShortSlotTime) {
pDevice->bShortSlotTime = bShortSlotTime;
BBvSetShortSlotTime(pDevice);
- vUpdateIFS(pDevice);
+ vnt_update_ifs(pDevice);
}
}
RATEvParseMaxRate((void *)pDevice, pItemRates, pItemExtRates, true,
&wMaxBasicRate, &wMaxSuppRate, &wSuppRate,
&byTopCCKBasicRate, &byTopOFDMBasicRate);
- vUpdateIFS(pDevice);
+
+ vnt_update_ifs(pDevice);
// TODO: deal with if wCapInfo the privacy is on, but station WEP is off
// TODO: deal with if wCapInfo the PS-Pollable is on.
pMgmt->wCurrBeaconPeriod = pCurr->wBeaconInterval;
} else {
MACvDisableProtectMD(pDevice);
}
- vUpdateIFS(pDevice);
+ vnt_update_ifs(pDevice);
}
if ((pCurr->sERP.byERP & WLAN_EID_ERP_NONERP_PRESENT) != pDevice->bNonERPPresent) {//0000 0001
pDevice->bNonERPPresent = (pCurr->sERP.byERP & WLAN_EID_ERP_USE_PROTECTION);
if (bShortSlotTime != pDevice->bShortSlotTime) {
pDevice->bShortSlotTime = bShortSlotTime;
BBvSetShortSlotTime(pDevice);
- vUpdateIFS(pDevice);
+ vnt_update_ifs(pDevice);
}
}
(PWLAN_IE_SUPP_RATES)pMgmt->abyCurrSuppRates,
NULL, true, &wMaxBasicRate, &wMaxSuppRate, &wSuppRate,
&byTopCCKBasicRate, &byTopOFDMBasicRate);
- vUpdateIFS(pDevice);
+ vnt_update_ifs(pDevice);
pMgmt->wCurrCapInfo = pCurr->wCapInfo;
pMgmt->wCurrBeaconPeriod = pCurr->wBeaconInterval;
memset(pMgmt->abyCurrSSID, 0, WLAN_IEHDR_LEN + WLAN_SSID_MAXLEN);