mirror of https://gitee.com/openkylin/linux.git
staging: vt6655: rf.c rename bResult ret.
Removing camel case and reflecting return value. Signed-off-by: Malcolm Priestley <tvboxspy@gmail.com> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
This commit is contained in:
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b379916559
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9a012c4297
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@ -420,9 +420,9 @@ static bool s_bAL7230Init(struct vnt_private *priv)
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{
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void __iomem *dwIoBase = priv->PortOffset;
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int ii;
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bool bResult;
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bool ret;
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bResult = true;
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ret = true;
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/* 3-wire control for normal mode */
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VNSvOutPortB(dwIoBase + MAC_REG_SOFTPWRCTL, 0);
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@ -432,7 +432,7 @@ static bool s_bAL7230Init(struct vnt_private *priv)
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BBvPowerSaveModeOFF(priv); /* RobertYu:20050106, have DC value for Calibration */
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for (ii = 0; ii < CB_AL7230_INIT_SEQ; ii++)
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bResult &= IFRFbWriteEmbedded(priv, dwAL7230InitTable[ii]);
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ret &= IFRFbWriteEmbedded(priv, dwAL7230InitTable[ii]);
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/* PLL On */
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MACvWordRegBitsOn(dwIoBase, MAC_REG_SOFTPWRCTL, SOFTPWRCTL_SWPE3);
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@ -440,13 +440,13 @@ static bool s_bAL7230Init(struct vnt_private *priv)
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/* Calibration */
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MACvTimer0MicroSDelay(dwIoBase, 150);/* 150us */
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/* TXDCOC:active, RCK:disable */
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bResult &= IFRFbWriteEmbedded(priv, (0x9ABA8F00+(BY_AL7230_REG_LEN<<3)+IFREGCTL_REGW));
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ret &= IFRFbWriteEmbedded(priv, (0x9ABA8F00+(BY_AL7230_REG_LEN<<3)+IFREGCTL_REGW));
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MACvTimer0MicroSDelay(dwIoBase, 30);/* 30us */
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/* TXDCOC:disable, RCK:active */
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bResult &= IFRFbWriteEmbedded(priv, (0x3ABA8F00+(BY_AL7230_REG_LEN<<3)+IFREGCTL_REGW));
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ret &= IFRFbWriteEmbedded(priv, (0x3ABA8F00+(BY_AL7230_REG_LEN<<3)+IFREGCTL_REGW));
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MACvTimer0MicroSDelay(dwIoBase, 30);/* 30us */
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/* TXDCOC:disable, RCK:disable */
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bResult &= IFRFbWriteEmbedded(priv, dwAL7230InitTable[CB_AL7230_INIT_SEQ-1]);
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ret &= IFRFbWriteEmbedded(priv, dwAL7230InitTable[CB_AL7230_INIT_SEQ-1]);
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MACvWordRegBitsOn(dwIoBase, MAC_REG_SOFTPWRCTL, (SOFTPWRCTL_SWPE3 |
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SOFTPWRCTL_SWPE2 |
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@ -459,7 +459,7 @@ static bool s_bAL7230Init(struct vnt_private *priv)
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/* 3-wire control for power saving mode */
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VNSvOutPortB(dwIoBase + MAC_REG_PSPWRSIG, (PSSIG_WPE3 | PSSIG_WPE2)); /* 1100 0000 */
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return bResult;
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return ret;
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}
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/* Need to Pull PLLON low when writing channel registers through
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@ -467,16 +467,16 @@ static bool s_bAL7230Init(struct vnt_private *priv)
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static bool s_bAL7230SelectChannel(struct vnt_private *priv, unsigned char byChannel)
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{
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void __iomem *dwIoBase = priv->PortOffset;
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bool bResult;
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bool ret;
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bResult = true;
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ret = true;
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/* PLLON Off */
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MACvWordRegBitsOff(dwIoBase, MAC_REG_SOFTPWRCTL, SOFTPWRCTL_SWPE3);
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bResult &= IFRFbWriteEmbedded(priv, dwAL7230ChannelTable0[byChannel - 1]);
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bResult &= IFRFbWriteEmbedded(priv, dwAL7230ChannelTable1[byChannel - 1]);
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bResult &= IFRFbWriteEmbedded(priv, dwAL7230ChannelTable2[byChannel - 1]);
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ret &= IFRFbWriteEmbedded(priv, dwAL7230ChannelTable0[byChannel - 1]);
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ret &= IFRFbWriteEmbedded(priv, dwAL7230ChannelTable1[byChannel - 1]);
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ret &= IFRFbWriteEmbedded(priv, dwAL7230ChannelTable2[byChannel - 1]);
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/* PLLOn On */
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MACvWordRegBitsOn(dwIoBase, MAC_REG_SOFTPWRCTL, SOFTPWRCTL_SWPE3);
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@ -487,7 +487,7 @@ static bool s_bAL7230SelectChannel(struct vnt_private *priv, unsigned char byCha
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/* Set Channel[7] = 1 to tell H/W channel change is done. */
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VNSvOutPortB(dwIoBase + MAC_REG_CHANNEL, (byChannel | 0x80));
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return bResult;
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return ret;
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}
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/*
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@ -540,9 +540,9 @@ static bool RFbAL2230Init(struct vnt_private *priv)
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{
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void __iomem *dwIoBase = priv->PortOffset;
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int ii;
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bool bResult;
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bool ret;
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bResult = true;
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ret = true;
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/* 3-wire control for normal mode */
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VNSvOutPortB(dwIoBase + MAC_REG_SOFTPWRCTL, 0);
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@ -556,18 +556,18 @@ static bool RFbAL2230Init(struct vnt_private *priv)
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IFRFbWriteEmbedded(priv, (0x07168700+(BY_AL2230_REG_LEN<<3)+IFREGCTL_REGW));
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for (ii = 0; ii < CB_AL2230_INIT_SEQ; ii++)
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bResult &= IFRFbWriteEmbedded(priv, dwAL2230InitTable[ii]);
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ret &= IFRFbWriteEmbedded(priv, dwAL2230InitTable[ii]);
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MACvTimer0MicroSDelay(dwIoBase, 30); /* delay 30 us */
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/* PLL On */
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MACvWordRegBitsOn(dwIoBase, MAC_REG_SOFTPWRCTL, SOFTPWRCTL_SWPE3);
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MACvTimer0MicroSDelay(dwIoBase, 150);/* 150us */
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bResult &= IFRFbWriteEmbedded(priv, (0x00d80f00+(BY_AL2230_REG_LEN<<3)+IFREGCTL_REGW));
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ret &= IFRFbWriteEmbedded(priv, (0x00d80f00+(BY_AL2230_REG_LEN<<3)+IFREGCTL_REGW));
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MACvTimer0MicroSDelay(dwIoBase, 30);/* 30us */
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bResult &= IFRFbWriteEmbedded(priv, (0x00780f00+(BY_AL2230_REG_LEN<<3)+IFREGCTL_REGW));
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ret &= IFRFbWriteEmbedded(priv, (0x00780f00+(BY_AL2230_REG_LEN<<3)+IFREGCTL_REGW));
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MACvTimer0MicroSDelay(dwIoBase, 30);/* 30us */
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bResult &= IFRFbWriteEmbedded(priv, dwAL2230InitTable[CB_AL2230_INIT_SEQ-1]);
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ret &= IFRFbWriteEmbedded(priv, dwAL2230InitTable[CB_AL2230_INIT_SEQ-1]);
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MACvWordRegBitsOn(dwIoBase, MAC_REG_SOFTPWRCTL, (SOFTPWRCTL_SWPE3 |
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SOFTPWRCTL_SWPE2 |
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@ -577,18 +577,18 @@ static bool RFbAL2230Init(struct vnt_private *priv)
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/* 3-wire control for power saving mode */
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VNSvOutPortB(dwIoBase + MAC_REG_PSPWRSIG, (PSSIG_WPE3 | PSSIG_WPE2)); /* 1100 0000 */
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return bResult;
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return ret;
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}
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static bool RFbAL2230SelectChannel(struct vnt_private *priv, unsigned char byChannel)
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{
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void __iomem *dwIoBase = priv->PortOffset;
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bool bResult;
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bool ret;
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bResult = true;
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ret = true;
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bResult &= IFRFbWriteEmbedded(priv, dwAL2230ChannelTable0[byChannel - 1]);
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bResult &= IFRFbWriteEmbedded(priv, dwAL2230ChannelTable1[byChannel - 1]);
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ret &= IFRFbWriteEmbedded(priv, dwAL2230ChannelTable0[byChannel - 1]);
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ret &= IFRFbWriteEmbedded(priv, dwAL2230ChannelTable1[byChannel - 1]);
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/* Set Channel[7] = 0 to tell H/W channel is changing now. */
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VNSvOutPortB(dwIoBase + MAC_REG_CHANNEL, (byChannel & 0x7F));
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@ -596,7 +596,7 @@ static bool RFbAL2230SelectChannel(struct vnt_private *priv, unsigned char byCha
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/* Set Channel[7] = 1 to tell H/W channel change is done. */
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VNSvOutPortB(dwIoBase + MAC_REG_CHANNEL, (byChannel | 0x80));
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return bResult;
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return ret;
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}
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/*
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@ -616,26 +616,26 @@ bool RFbInit(
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struct vnt_private *priv
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)
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{
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bool bResult = true;
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bool ret = true;
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switch (priv->byRFType) {
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case RF_AIROHA:
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case RF_AL2230S:
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priv->byMaxPwrLevel = AL2230_PWR_IDX_LEN;
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bResult = RFbAL2230Init(priv);
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ret = RFbAL2230Init(priv);
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break;
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case RF_AIROHA7230:
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priv->byMaxPwrLevel = AL7230_PWR_IDX_LEN;
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bResult = s_bAL7230Init(priv);
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ret = s_bAL7230Init(priv);
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break;
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case RF_NOTHING:
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bResult = true;
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ret = true;
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break;
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default:
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bResult = false;
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ret = false;
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break;
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}
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return bResult;
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return ret;
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}
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/*
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@ -654,26 +654,26 @@ bool RFbInit(
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bool RFbSelectChannel(struct vnt_private *priv, unsigned char byRFType,
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u16 byChannel)
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{
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bool bResult = true;
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bool ret = true;
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switch (byRFType) {
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case RF_AIROHA:
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case RF_AL2230S:
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bResult = RFbAL2230SelectChannel(priv, byChannel);
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ret = RFbAL2230SelectChannel(priv, byChannel);
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break;
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/*{{ RobertYu: 20050104 */
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case RF_AIROHA7230:
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bResult = s_bAL7230SelectChannel(priv, byChannel);
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ret = s_bAL7230SelectChannel(priv, byChannel);
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break;
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/*}} RobertYu */
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case RF_NOTHING:
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bResult = true;
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ret = true;
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break;
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default:
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bResult = false;
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ret = false;
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break;
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}
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return bResult;
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return ret;
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}
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/*
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u16 uCH
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)
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{
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bool bResult = true;
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bool ret = true;
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unsigned char byPwr = 0;
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unsigned char byDec = 0;
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@ -818,11 +818,11 @@ bool RFbSetPower(
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if (priv->byCurPwr == byPwr)
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return true;
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bResult = RFbRawSetPower(priv, byPwr, rate);
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if (bResult)
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ret = RFbRawSetPower(priv, byPwr, rate);
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if (ret)
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priv->byCurPwr = byPwr;
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return bResult;
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return ret;
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}
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/*
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unsigned int rate
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)
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{
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bool bResult = true;
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bool ret = true;
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unsigned long dwMax7230Pwr = 0;
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if (byPwr >= priv->byMaxPwrLevel)
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@ -853,22 +853,22 @@ bool RFbRawSetPower(
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switch (priv->byRFType) {
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case RF_AIROHA:
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bResult &= IFRFbWriteEmbedded(priv, dwAL2230PowerTable[byPwr]);
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ret &= IFRFbWriteEmbedded(priv, dwAL2230PowerTable[byPwr]);
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if (rate <= RATE_11M)
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bResult &= IFRFbWriteEmbedded(priv, 0x0001B400+(BY_AL2230_REG_LEN<<3)+IFREGCTL_REGW);
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ret &= IFRFbWriteEmbedded(priv, 0x0001B400+(BY_AL2230_REG_LEN<<3)+IFREGCTL_REGW);
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else
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bResult &= IFRFbWriteEmbedded(priv, 0x0005A400+(BY_AL2230_REG_LEN<<3)+IFREGCTL_REGW);
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ret &= IFRFbWriteEmbedded(priv, 0x0005A400+(BY_AL2230_REG_LEN<<3)+IFREGCTL_REGW);
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break;
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case RF_AL2230S:
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bResult &= IFRFbWriteEmbedded(priv, dwAL2230PowerTable[byPwr]);
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ret &= IFRFbWriteEmbedded(priv, dwAL2230PowerTable[byPwr]);
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if (rate <= RATE_11M) {
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bResult &= IFRFbWriteEmbedded(priv, 0x040C1400+(BY_AL2230_REG_LEN<<3)+IFREGCTL_REGW);
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bResult &= IFRFbWriteEmbedded(priv, 0x00299B00+(BY_AL2230_REG_LEN<<3)+IFREGCTL_REGW);
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ret &= IFRFbWriteEmbedded(priv, 0x040C1400+(BY_AL2230_REG_LEN<<3)+IFREGCTL_REGW);
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ret &= IFRFbWriteEmbedded(priv, 0x00299B00+(BY_AL2230_REG_LEN<<3)+IFREGCTL_REGW);
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} else {
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bResult &= IFRFbWriteEmbedded(priv, 0x0005A400+(BY_AL2230_REG_LEN<<3)+IFREGCTL_REGW);
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bResult &= IFRFbWriteEmbedded(priv, 0x00099B00+(BY_AL2230_REG_LEN<<3)+IFREGCTL_REGW);
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ret &= IFRFbWriteEmbedded(priv, 0x0005A400+(BY_AL2230_REG_LEN<<3)+IFREGCTL_REGW);
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ret &= IFRFbWriteEmbedded(priv, 0x00099B00+(BY_AL2230_REG_LEN<<3)+IFREGCTL_REGW);
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}
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break;
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dwMax7230Pwr = 0x080C0B00 | ((byPwr) << 12) |
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(BY_AL7230_REG_LEN << 3) | IFREGCTL_REGW;
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bResult &= IFRFbWriteEmbedded(priv, dwMax7230Pwr);
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ret &= IFRFbWriteEmbedded(priv, dwMax7230Pwr);
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break;
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default:
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break;
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}
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return bResult;
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return ret;
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}
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/*+
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@ -934,32 +934,32 @@ bool RFbAL7230SelectChannelPostProcess(struct vnt_private *priv,
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u16 byOldChannel,
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u16 byNewChannel)
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{
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bool bResult;
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bool ret;
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bResult = true;
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ret = true;
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/* if change between 11 b/g and 11a need to update the following
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* register
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* Channel Index 1~14 */
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if ((byOldChannel <= CB_MAX_CHANNEL_24G) && (byNewChannel > CB_MAX_CHANNEL_24G)) {
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/* Change from 2.4G to 5G [Reg] */
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bResult &= IFRFbWriteEmbedded(priv, dwAL7230InitTableAMode[2]);
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bResult &= IFRFbWriteEmbedded(priv, dwAL7230InitTableAMode[3]);
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bResult &= IFRFbWriteEmbedded(priv, dwAL7230InitTableAMode[5]);
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bResult &= IFRFbWriteEmbedded(priv, dwAL7230InitTableAMode[7]);
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bResult &= IFRFbWriteEmbedded(priv, dwAL7230InitTableAMode[10]);
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bResult &= IFRFbWriteEmbedded(priv, dwAL7230InitTableAMode[12]);
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bResult &= IFRFbWriteEmbedded(priv, dwAL7230InitTableAMode[15]);
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ret &= IFRFbWriteEmbedded(priv, dwAL7230InitTableAMode[2]);
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ret &= IFRFbWriteEmbedded(priv, dwAL7230InitTableAMode[3]);
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ret &= IFRFbWriteEmbedded(priv, dwAL7230InitTableAMode[5]);
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ret &= IFRFbWriteEmbedded(priv, dwAL7230InitTableAMode[7]);
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ret &= IFRFbWriteEmbedded(priv, dwAL7230InitTableAMode[10]);
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ret &= IFRFbWriteEmbedded(priv, dwAL7230InitTableAMode[12]);
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ret &= IFRFbWriteEmbedded(priv, dwAL7230InitTableAMode[15]);
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} else if ((byOldChannel > CB_MAX_CHANNEL_24G) && (byNewChannel <= CB_MAX_CHANNEL_24G)) {
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/* Change from 5G to 2.4G [Reg] */
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bResult &= IFRFbWriteEmbedded(priv, dwAL7230InitTable[2]);
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bResult &= IFRFbWriteEmbedded(priv, dwAL7230InitTable[3]);
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bResult &= IFRFbWriteEmbedded(priv, dwAL7230InitTable[5]);
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bResult &= IFRFbWriteEmbedded(priv, dwAL7230InitTable[7]);
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bResult &= IFRFbWriteEmbedded(priv, dwAL7230InitTable[10]);
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bResult &= IFRFbWriteEmbedded(priv, dwAL7230InitTable[12]);
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bResult &= IFRFbWriteEmbedded(priv, dwAL7230InitTable[15]);
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ret &= IFRFbWriteEmbedded(priv, dwAL7230InitTable[2]);
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ret &= IFRFbWriteEmbedded(priv, dwAL7230InitTable[3]);
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ret &= IFRFbWriteEmbedded(priv, dwAL7230InitTable[5]);
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ret &= IFRFbWriteEmbedded(priv, dwAL7230InitTable[7]);
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ret &= IFRFbWriteEmbedded(priv, dwAL7230InitTable[10]);
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ret &= IFRFbWriteEmbedded(priv, dwAL7230InitTable[12]);
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ret &= IFRFbWriteEmbedded(priv, dwAL7230InitTable[15]);
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}
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return bResult;
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return ret;
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}
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