//Fill RsvTime
             if (pvRrvTime) {
-                PSRrvTime_gCTS pBuf = (PSRrvTime_gCTS)pvRrvTime;
+               struct vnt_rrv_time_cts *pBuf =
+                               (struct vnt_rrv_time_cts *)pvRrvTime;
                 pBuf->wTxRrvTime_a = cpu_to_le16((u16)s_uGetTxRsvTime(pDevice, byPktType, cbFrameSize, wCurrentRate, bNeedACK));//2.4G OFDM
                 pBuf->wTxRrvTime_b = cpu_to_le16((u16)s_uGetTxRsvTime(pDevice, PK_TYPE_11B, cbFrameSize, pDevice->byTopCCKBasicRate, bNeedACK));//1:CCK
                 pBuf->wCTSTxRrvTime_ba = cpu_to_le16((u16)s_uGetRTSCTSRsvTime(pDevice, 3, byPktType, cbFrameSize, wCurrentRate));//3:CTSTxRrvTime_Ba, 1:2.4GHz
                                sizeof(STxDataHead_g);
             }
             else { //RTS_needless
-                pvRrvTime = (PSRrvTime_gCTS) (pbyTxBufferAddr + wTxBufSize);
-                pMICHDR = (PSMICHDRHead) (pbyTxBufferAddr + wTxBufSize + sizeof(SRrvTime_gCTS));
+               pvRrvTime = (struct vnt_rrv_time_cts *)
+                               (pbyTxBufferAddr + wTxBufSize);
+               pMICHDR = (PSMICHDRHead) (pbyTxBufferAddr + wTxBufSize +
+                       sizeof(struct vnt_rrv_time_cts));
                 pvRTS = NULL;
                pvCTS = (struct vnt_cts *) (pbyTxBufferAddr + wTxBufSize +
-                               sizeof(SRrvTime_gCTS) + cbMICHDR);
+                               sizeof(struct vnt_rrv_time_cts) + cbMICHDR);
                pvTxDataHd = (PSTxDataHead_g) (pbyTxBufferAddr + wTxBufSize +
-                       sizeof(SRrvTime_gCTS) + cbMICHDR +
+                       sizeof(struct vnt_rrv_time_cts) + cbMICHDR +
                                                sizeof(struct vnt_cts));
-               cbHeaderLength = wTxBufSize + sizeof(SRrvTime_gCTS) + cbMICHDR +
-                       sizeof(struct vnt_cts) + sizeof(STxDataHead_g);
+               cbHeaderLength = wTxBufSize + sizeof(struct vnt_rrv_time_cts) +
+                       cbMICHDR + sizeof(struct vnt_cts) +
+                               sizeof(STxDataHead_g);
             }
         } else {
             // Auto Fall Back
                                sizeof(STxDataHead_g_FB);
             }
             else if (bRTS == false) { //RTS_needless
-                pvRrvTime = (PSRrvTime_gCTS) (pbyTxBufferAddr + wTxBufSize);
-                pMICHDR = (PSMICHDRHead) (pbyTxBufferAddr + wTxBufSize + sizeof(SRrvTime_gCTS));
+               pvRrvTime = (struct vnt_rrv_time_cts *)
+                               (pbyTxBufferAddr + wTxBufSize);
+               pMICHDR = (PSMICHDRHead) (pbyTxBufferAddr + wTxBufSize +
+                               sizeof(struct vnt_rrv_time_cts));
                 pvRTS = NULL;
                pvCTS = (struct vnt_cts_fb *) (pbyTxBufferAddr + wTxBufSize +
-                                       sizeof(SRrvTime_gCTS) + cbMICHDR);
+                       sizeof(struct vnt_rrv_time_cts) + cbMICHDR);
                pvTxDataHd = (PSTxDataHead_g_FB) (pbyTxBufferAddr +
-                       wTxBufSize + sizeof(SRrvTime_gCTS) + cbMICHDR +
-                                               sizeof(struct vnt_cts_fb));
-               cbHeaderLength = wTxBufSize + sizeof(SRrvTime_gCTS) +
+                       wTxBufSize + sizeof(struct vnt_rrv_time_cts) +
+                               cbMICHDR + sizeof(struct vnt_cts_fb));
+               cbHeaderLength = wTxBufSize + sizeof(struct vnt_rrv_time_cts) +
                                cbMICHDR + sizeof(struct vnt_cts_fb) +
                                        sizeof(STxDataHead_g_FB);
             }
     //Set RrvTime/RTS/CTS Buffer
     if (byPktType == PK_TYPE_11GB || byPktType == PK_TYPE_11GA) {//802.11g packet
 
-        pvRrvTime = (PSRrvTime_gCTS) (pbyTxBufferAddr + wTxBufSize);
+       pvRrvTime = (struct vnt_rrv_time_cts *) (pbyTxBufferAddr + wTxBufSize);
         pMICHDR = NULL;
         pvRTS = NULL;
        pCTS = (struct vnt_cts *) (pbyTxBufferAddr + wTxBufSize +
-                                               sizeof(SRrvTime_gCTS));
+                                       sizeof(struct vnt_rrv_time_cts));
        pvTxDataHd = (PSTxDataHead_g) (pbyTxBufferAddr + wTxBufSize +
-               sizeof(SRrvTime_gCTS) + sizeof(struct vnt_cts));
-       cbHeaderSize = wTxBufSize + sizeof(SRrvTime_gCTS) +
+               sizeof(struct vnt_rrv_time_cts) + sizeof(struct vnt_cts));
+       cbHeaderSize = wTxBufSize + sizeof(struct vnt_rrv_time_cts) +
                sizeof(struct vnt_cts) + sizeof(STxDataHead_g);
     }
     else { // 802.11a/b packet
     //the rest of pTxBufHead->wFragCtl:FragTyp will be set later in s_vFillFragParameter()
 
     if (byPktType == PK_TYPE_11GB || byPktType == PK_TYPE_11GA) {//802.11g packet
-
-        pvRrvTime = (PSRrvTime_gCTS) (pbyTxBufferAddr + wTxBufSize);
-        pMICHDR = (PSMICHDRHead) (pbyTxBufferAddr + wTxBufSize + sizeof(SRrvTime_gCTS));
+       pvRrvTime = (struct vnt_rrv_time_cts *) (pbyTxBufferAddr + wTxBufSize);
+       pMICHDR = (PSMICHDRHead) (pbyTxBufferAddr + wTxBufSize +
+                                       sizeof(struct vnt_rrv_time_cts));
         pvRTS = NULL;
        pvCTS = (struct vnt_cts *) (pbyTxBufferAddr + wTxBufSize +
-                       sizeof(SRrvTime_gCTS) + cbMICHDR);
+                       sizeof(struct vnt_rrv_time_cts) + cbMICHDR);
        pvTxDataHd = (PSTxDataHead_g) (pbyTxBufferAddr + wTxBufSize +
-               sizeof(SRrvTime_gCTS) + cbMICHDR + sizeof(struct vnt_cts));
-       cbHeaderSize = wTxBufSize + sizeof(SRrvTime_gCTS) + cbMICHDR +
+               sizeof(struct vnt_rrv_time_cts) + cbMICHDR +
+                                       sizeof(struct vnt_cts));
+       cbHeaderSize = wTxBufSize + sizeof(struct vnt_rrv_time_cts) + cbMICHDR +
                                sizeof(struct vnt_cts) + sizeof(STxDataHead_g);
 
     }