*/
 bool RFbSetPower(
        struct vnt_private *priv,
-       unsigned int uRATE,
+       unsigned int rate,
        u16 uCH
 )
 {
        if ((uCH < 1) || (uCH > CB_MAX_CHANNEL))
                return false;
 
-       switch (uRATE) {
+       switch (rate) {
        case RATE_1M:
        case RATE_2M:
        case RATE_5M:
        if (priv->byCurPwr == byPwr)
                return true;
 
-       bResult = RFbRawSetPower(priv, byPwr, uRATE);
+       bResult = RFbRawSetPower(priv, byPwr, rate);
        if (bResult)
                priv->byCurPwr = byPwr;
 
 bool RFbRawSetPower(
        struct vnt_private *priv,
        unsigned char byPwr,
-       unsigned int uRATE
+       unsigned int rate
 )
 {
        bool bResult = true;
        switch (priv->byRFType) {
        case RF_AIROHA:
                bResult &= IFRFbWriteEmbedded(priv, dwAL2230PowerTable[byPwr]);
-               if (uRATE <= RATE_11M)
+               if (rate <= RATE_11M)
                        bResult &= IFRFbWriteEmbedded(priv, 0x0001B400+(BY_AL2230_REG_LEN<<3)+IFREGCTL_REGW);
                else
                        bResult &= IFRFbWriteEmbedded(priv, 0x0005A400+(BY_AL2230_REG_LEN<<3)+IFREGCTL_REGW);
 
        case RF_AL2230S:
                bResult &= IFRFbWriteEmbedded(priv, dwAL2230PowerTable[byPwr]);
-               if (uRATE <= RATE_11M) {
+               if (rate <= RATE_11M) {
                        bResult &= IFRFbWriteEmbedded(priv, 0x040C1400+(BY_AL2230_REG_LEN<<3)+IFREGCTL_REGW);
                        bResult &= IFRFbWriteEmbedded(priv, 0x00299B00+(BY_AL2230_REG_LEN<<3)+IFREGCTL_REGW);
                } else {
 
        struct vnt_private *
 );
 bool RFvWriteWakeProgSyn(struct vnt_private *, unsigned char byRFType, u16);
-bool RFbSetPower(struct vnt_private *, unsigned int uRATE, u16);
+bool RFbSetPower(struct vnt_private *, unsigned int rate, u16);
 bool RFbRawSetPower(
        struct vnt_private *,
        unsigned char byPwr,
-       unsigned int uRATE
+       unsigned int rate
 );
 
 void