mirror of https://gitee.com/openkylin/linux.git
staging: vt6656: device_init_registers remove camel case
camel case changes pDevice -> priv byAntenna -> antenna ntStatus -> status byTmp-> tmp byCalibTXIQ -> calib_tx_iq byCalibTXDC -> calib_tx_dc byCalibRXIQ -> calib_rx_iq Signed-off-by: Malcolm Priestley <tvboxspy@gmail.com> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
This commit is contained in:
parent
da3b67b343
commit
3ce54934df
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@ -220,22 +220,22 @@ static void device_set_options(struct vnt_private *priv)
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/*
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* initialization of MAC & BBP registers
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*/
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static int device_init_registers(struct vnt_private *pDevice)
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static int device_init_registers(struct vnt_private *priv)
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{
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struct vnt_cmd_card_init *init_cmd = &pDevice->init_command;
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struct vnt_rsp_card_init *init_rsp = &pDevice->init_response;
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u8 byAntenna;
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struct vnt_cmd_card_init *init_cmd = &priv->init_command;
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struct vnt_rsp_card_init *init_rsp = &priv->init_response;
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u8 antenna;
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int ii;
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int ntStatus = STATUS_SUCCESS;
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u8 byTmp;
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u8 byCalibTXIQ = 0, byCalibTXDC = 0, byCalibRXIQ = 0;
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int status = STATUS_SUCCESS;
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u8 tmp;
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u8 calib_tx_iq = 0, calib_tx_dc = 0, calib_rx_iq = 0;
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DBG_PRT(MSG_LEVEL_DEBUG, KERN_INFO "---->INIbInitAdapter. [%d][%d]\n",
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DEVICE_INIT_COLD, pDevice->byPacketType);
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DEVICE_INIT_COLD, priv->byPacketType);
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if (!vnt_check_firmware_version(pDevice)) {
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if (vnt_download_firmware(pDevice) == true) {
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if (vnt_firmware_branch_to_sram(pDevice) == false) {
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if (!vnt_check_firmware_version(priv)) {
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if (vnt_download_firmware(priv) == true) {
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if (vnt_firmware_branch_to_sram(priv) == false) {
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DBG_PRT(MSG_LEVEL_DEBUG, KERN_INFO
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" vnt_firmware_branch_to_sram fail\n");
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return false;
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@ -247,63 +247,63 @@ static int device_init_registers(struct vnt_private *pDevice)
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}
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}
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if (!vnt_vt3184_init(pDevice)) {
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if (!vnt_vt3184_init(priv)) {
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DBG_PRT(MSG_LEVEL_DEBUG, KERN_INFO" vnt_vt3184_init fail\n");
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return false;
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}
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init_cmd->init_class = DEVICE_INIT_COLD;
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init_cmd->exist_sw_net_addr = (u8) pDevice->bExistSWNetAddr;
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init_cmd->exist_sw_net_addr = (u8) priv->bExistSWNetAddr;
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for (ii = 0; ii < 6; ii++)
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init_cmd->sw_net_addr[ii] = pDevice->abyCurrentNetAddr[ii];
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init_cmd->short_retry_limit = pDevice->byShortRetryLimit;
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init_cmd->long_retry_limit = pDevice->byLongRetryLimit;
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init_cmd->sw_net_addr[ii] = priv->abyCurrentNetAddr[ii];
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init_cmd->short_retry_limit = priv->byShortRetryLimit;
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init_cmd->long_retry_limit = priv->byLongRetryLimit;
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/* issue card_init command to device */
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ntStatus = vnt_control_out(pDevice,
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status = vnt_control_out(priv,
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MESSAGE_TYPE_CARDINIT, 0, 0,
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sizeof(struct vnt_cmd_card_init), (u8 *)init_cmd);
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if (ntStatus != STATUS_SUCCESS) {
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if (status != STATUS_SUCCESS) {
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DBG_PRT(MSG_LEVEL_DEBUG, KERN_INFO" Issue Card init fail\n");
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return false;
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}
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ntStatus = vnt_control_in(pDevice, MESSAGE_TYPE_INIT_RSP, 0, 0,
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status = vnt_control_in(priv, MESSAGE_TYPE_INIT_RSP, 0, 0,
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sizeof(struct vnt_rsp_card_init), (u8 *)init_rsp);
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if (ntStatus != STATUS_SUCCESS) {
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if (status != STATUS_SUCCESS) {
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DBG_PRT(MSG_LEVEL_DEBUG, KERN_INFO
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"Cardinit request in status fail!\n");
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return false;
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}
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/* local ID for AES functions */
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ntStatus = vnt_control_in(pDevice, MESSAGE_TYPE_READ,
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status = vnt_control_in(priv, MESSAGE_TYPE_READ,
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MAC_REG_LOCALID, MESSAGE_REQUEST_MACREG, 1,
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&pDevice->byLocalID);
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if (ntStatus != STATUS_SUCCESS)
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&priv->byLocalID);
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if (status != STATUS_SUCCESS)
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return false;
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/* do MACbSoftwareReset in MACvInitialize */
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pDevice->byTopOFDMBasicRate = RATE_24M;
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pDevice->byTopCCKBasicRate = RATE_1M;
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priv->byTopOFDMBasicRate = RATE_24M;
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priv->byTopCCKBasicRate = RATE_1M;
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/* target to IF pin while programming to RF chip */
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pDevice->byCurPwr = 0xFF;
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priv->byCurPwr = 0xFF;
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pDevice->byCCKPwr = pDevice->abyEEPROM[EEP_OFS_PWR_CCK];
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pDevice->byOFDMPwrG = pDevice->abyEEPROM[EEP_OFS_PWR_OFDMG];
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priv->byCCKPwr = priv->abyEEPROM[EEP_OFS_PWR_CCK];
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priv->byOFDMPwrG = priv->abyEEPROM[EEP_OFS_PWR_OFDMG];
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/* load power table */
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for (ii = 0; ii < 14; ii++) {
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pDevice->abyCCKPwrTbl[ii] =
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pDevice->abyEEPROM[ii + EEP_OFS_CCK_PWR_TBL];
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priv->abyCCKPwrTbl[ii] =
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priv->abyEEPROM[ii + EEP_OFS_CCK_PWR_TBL];
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if (pDevice->abyCCKPwrTbl[ii] == 0)
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pDevice->abyCCKPwrTbl[ii] = pDevice->byCCKPwr;
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pDevice->abyOFDMPwrTbl[ii] =
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pDevice->abyEEPROM[ii + EEP_OFS_OFDM_PWR_TBL];
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if (pDevice->abyOFDMPwrTbl[ii] == 0)
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pDevice->abyOFDMPwrTbl[ii] = pDevice->byOFDMPwrG;
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if (priv->abyCCKPwrTbl[ii] == 0)
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priv->abyCCKPwrTbl[ii] = priv->byCCKPwr;
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priv->abyOFDMPwrTbl[ii] =
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priv->abyEEPROM[ii + EEP_OFS_OFDM_PWR_TBL];
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if (priv->abyOFDMPwrTbl[ii] == 0)
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priv->abyOFDMPwrTbl[ii] = priv->byOFDMPwrG;
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}
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/*
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@ -311,111 +311,111 @@ static int device_init_registers(struct vnt_private *pDevice)
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* then need to recover 12, 13, 14 channels with 11 channel
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*/
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for (ii = 11; ii < 14; ii++) {
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pDevice->abyCCKPwrTbl[ii] = pDevice->abyCCKPwrTbl[10];
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pDevice->abyOFDMPwrTbl[ii] = pDevice->abyOFDMPwrTbl[10];
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priv->abyCCKPwrTbl[ii] = priv->abyCCKPwrTbl[10];
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priv->abyOFDMPwrTbl[ii] = priv->abyOFDMPwrTbl[10];
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}
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pDevice->byOFDMPwrA = 0x34; /* same as RFbMA2829SelectChannel */
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priv->byOFDMPwrA = 0x34; /* same as RFbMA2829SelectChannel */
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/* load OFDM A power table */
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for (ii = 0; ii < CB_MAX_CHANNEL_5G; ii++) {
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pDevice->abyOFDMAPwrTbl[ii] =
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pDevice->abyEEPROM[ii + EEP_OFS_OFDMA_PWR_TBL];
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priv->abyOFDMAPwrTbl[ii] =
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priv->abyEEPROM[ii + EEP_OFS_OFDMA_PWR_TBL];
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if (pDevice->abyOFDMAPwrTbl[ii] == 0)
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pDevice->abyOFDMAPwrTbl[ii] = pDevice->byOFDMPwrA;
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if (priv->abyOFDMAPwrTbl[ii] == 0)
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priv->abyOFDMAPwrTbl[ii] = priv->byOFDMPwrA;
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}
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byAntenna = pDevice->abyEEPROM[EEP_OFS_ANTENNA];
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antenna = priv->abyEEPROM[EEP_OFS_ANTENNA];
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if (byAntenna & EEP_ANTINV)
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pDevice->bTxRxAntInv = true;
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if (antenna & EEP_ANTINV)
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priv->bTxRxAntInv = true;
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else
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pDevice->bTxRxAntInv = false;
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priv->bTxRxAntInv = false;
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byAntenna &= (EEP_ANTENNA_AUX | EEP_ANTENNA_MAIN);
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antenna &= (EEP_ANTENNA_AUX | EEP_ANTENNA_MAIN);
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if (byAntenna == 0) /* if not set default is both */
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byAntenna = (EEP_ANTENNA_AUX | EEP_ANTENNA_MAIN);
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if (antenna == 0) /* if not set default is both */
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antenna = (EEP_ANTENNA_AUX | EEP_ANTENNA_MAIN);
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if (byAntenna == (EEP_ANTENNA_AUX | EEP_ANTENNA_MAIN)) {
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pDevice->byAntennaCount = 2;
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pDevice->byTxAntennaMode = ANT_B;
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pDevice->dwTxAntennaSel = 1;
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pDevice->dwRxAntennaSel = 1;
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if (antenna == (EEP_ANTENNA_AUX | EEP_ANTENNA_MAIN)) {
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priv->byAntennaCount = 2;
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priv->byTxAntennaMode = ANT_B;
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priv->dwTxAntennaSel = 1;
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priv->dwRxAntennaSel = 1;
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if (pDevice->bTxRxAntInv == true)
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pDevice->byRxAntennaMode = ANT_A;
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if (priv->bTxRxAntInv == true)
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priv->byRxAntennaMode = ANT_A;
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else
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pDevice->byRxAntennaMode = ANT_B;
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priv->byRxAntennaMode = ANT_B;
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} else {
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pDevice->byAntennaCount = 1;
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pDevice->dwTxAntennaSel = 0;
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pDevice->dwRxAntennaSel = 0;
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priv->byAntennaCount = 1;
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priv->dwTxAntennaSel = 0;
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priv->dwRxAntennaSel = 0;
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if (byAntenna & EEP_ANTENNA_AUX) {
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pDevice->byTxAntennaMode = ANT_A;
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if (antenna & EEP_ANTENNA_AUX) {
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priv->byTxAntennaMode = ANT_A;
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if (pDevice->bTxRxAntInv == true)
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pDevice->byRxAntennaMode = ANT_B;
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if (priv->bTxRxAntInv == true)
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priv->byRxAntennaMode = ANT_B;
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else
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pDevice->byRxAntennaMode = ANT_A;
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priv->byRxAntennaMode = ANT_A;
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} else {
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pDevice->byTxAntennaMode = ANT_B;
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priv->byTxAntennaMode = ANT_B;
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if (pDevice->bTxRxAntInv == true)
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pDevice->byRxAntennaMode = ANT_A;
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if (priv->bTxRxAntInv == true)
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priv->byRxAntennaMode = ANT_A;
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else
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pDevice->byRxAntennaMode = ANT_B;
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priv->byRxAntennaMode = ANT_B;
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}
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}
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/* Set initial antenna mode */
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vnt_set_antenna_mode(pDevice, pDevice->byRxAntennaMode);
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vnt_set_antenna_mode(priv, priv->byRxAntennaMode);
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/* get Auto Fall Back type */
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pDevice->byAutoFBCtrl = AUTO_FB_0;
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priv->byAutoFBCtrl = AUTO_FB_0;
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/* default Auto Mode */
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pDevice->byBBType = BB_TYPE_11G;
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priv->byBBType = BB_TYPE_11G;
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/* get RFType */
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pDevice->byRFType = init_rsp->rf_type;
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priv->byRFType = init_rsp->rf_type;
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/* load vt3266 calibration parameters in EEPROM */
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if (pDevice->byRFType == RF_VT3226D0) {
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if ((pDevice->abyEEPROM[EEP_OFS_MAJOR_VER] == 0x1) &&
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(pDevice->abyEEPROM[EEP_OFS_MINOR_VER] >= 0x4)) {
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if (priv->byRFType == RF_VT3226D0) {
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if ((priv->abyEEPROM[EEP_OFS_MAJOR_VER] == 0x1) &&
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(priv->abyEEPROM[EEP_OFS_MINOR_VER] >= 0x4)) {
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byCalibTXIQ = pDevice->abyEEPROM[EEP_OFS_CALIB_TX_IQ];
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byCalibTXDC = pDevice->abyEEPROM[EEP_OFS_CALIB_TX_DC];
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byCalibRXIQ = pDevice->abyEEPROM[EEP_OFS_CALIB_RX_IQ];
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if (byCalibTXIQ || byCalibTXDC || byCalibRXIQ) {
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calib_tx_iq = priv->abyEEPROM[EEP_OFS_CALIB_TX_IQ];
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calib_tx_dc = priv->abyEEPROM[EEP_OFS_CALIB_TX_DC];
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calib_rx_iq = priv->abyEEPROM[EEP_OFS_CALIB_RX_IQ];
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if (calib_tx_iq || calib_tx_dc || calib_rx_iq) {
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/* CR255, enable TX/RX IQ and
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DC compensation mode */
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vnt_control_out_u8(pDevice,
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vnt_control_out_u8(priv,
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MESSAGE_REQUEST_BBREG,
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0xff,
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0x03);
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/* CR251, TX I/Q Imbalance Calibration */
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vnt_control_out_u8(pDevice,
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vnt_control_out_u8(priv,
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MESSAGE_REQUEST_BBREG,
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0xfb,
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byCalibTXIQ);
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calib_tx_iq);
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/* CR252, TX DC-Offset Calibration */
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vnt_control_out_u8(pDevice,
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vnt_control_out_u8(priv,
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MESSAGE_REQUEST_BBREG,
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0xfC,
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byCalibTXDC);
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calib_tx_dc);
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/* CR253, RX I/Q Imbalance Calibration */
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vnt_control_out_u8(pDevice,
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vnt_control_out_u8(priv,
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MESSAGE_REQUEST_BBREG,
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0xfd,
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byCalibRXIQ);
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calib_rx_iq);
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} else {
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/* CR255, turn off
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BB Calibration compensation */
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vnt_control_out_u8(pDevice,
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vnt_control_out_u8(priv,
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MESSAGE_REQUEST_BBREG,
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0xff,
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0x0);
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@ -424,58 +424,58 @@ static int device_init_registers(struct vnt_private *pDevice)
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}
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/* get permanent network address */
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memcpy(pDevice->abyPermanentNetAddr, init_rsp->net_addr, 6);
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memcpy(pDevice->abyCurrentNetAddr,
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pDevice->abyPermanentNetAddr, ETH_ALEN);
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memcpy(priv->abyPermanentNetAddr, init_rsp->net_addr, 6);
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memcpy(priv->abyCurrentNetAddr,
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priv->abyPermanentNetAddr, ETH_ALEN);
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/* if exist SW network address, use it */
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DBG_PRT(MSG_LEVEL_DEBUG, KERN_INFO"Network address = %pM\n",
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pDevice->abyCurrentNetAddr);
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priv->abyCurrentNetAddr);
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/*
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* set BB and packet type at the same time
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* set Short Slot Time, xIFS, and RSPINF
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*/
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if (pDevice->byBBType == BB_TYPE_11A)
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pDevice->bShortSlotTime = true;
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if (priv->byBBType == BB_TYPE_11A)
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priv->bShortSlotTime = true;
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else
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pDevice->bShortSlotTime = false;
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priv->bShortSlotTime = false;
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vnt_set_short_slot_time(pDevice);
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vnt_set_short_slot_time(priv);
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pDevice->byRadioCtl = pDevice->abyEEPROM[EEP_OFS_RADIOCTL];
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pDevice->bHWRadioOff = false;
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priv->byRadioCtl = priv->abyEEPROM[EEP_OFS_RADIOCTL];
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priv->bHWRadioOff = false;
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if ((pDevice->byRadioCtl & EEP_RADIOCTL_ENABLE) != 0) {
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ntStatus = vnt_control_in(pDevice, MESSAGE_TYPE_READ,
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MAC_REG_GPIOCTL1, MESSAGE_REQUEST_MACREG, 1, &byTmp);
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if ((priv->byRadioCtl & EEP_RADIOCTL_ENABLE) != 0) {
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status = vnt_control_in(priv, MESSAGE_TYPE_READ,
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MAC_REG_GPIOCTL1, MESSAGE_REQUEST_MACREG, 1, &tmp);
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if (ntStatus != STATUS_SUCCESS)
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if (status != STATUS_SUCCESS)
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return false;
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if ((byTmp & GPIO3_DATA) == 0) {
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pDevice->bHWRadioOff = true;
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vnt_mac_reg_bits_on(pDevice, MAC_REG_GPIOCTL1,
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if ((tmp & GPIO3_DATA) == 0) {
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priv->bHWRadioOff = true;
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vnt_mac_reg_bits_on(priv, MAC_REG_GPIOCTL1,
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GPIO3_INTMD);
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} else {
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vnt_mac_reg_bits_off(pDevice, MAC_REG_GPIOCTL1,
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vnt_mac_reg_bits_off(priv, MAC_REG_GPIOCTL1,
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GPIO3_INTMD);
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pDevice->bHWRadioOff = false;
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priv->bHWRadioOff = false;
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}
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}
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vnt_mac_set_led(pDevice, LEDSTS_TMLEN, 0x38);
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vnt_mac_set_led(priv, LEDSTS_TMLEN, 0x38);
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vnt_mac_set_led(pDevice, LEDSTS_STS, LEDSTS_SLOW);
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vnt_mac_set_led(priv, LEDSTS_STS, LEDSTS_SLOW);
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vnt_mac_reg_bits_on(pDevice, MAC_REG_GPIOCTL0, 0x01);
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vnt_mac_reg_bits_on(priv, MAC_REG_GPIOCTL0, 0x01);
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if ((pDevice->bHWRadioOff == true) ||
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(pDevice->bRadioControlOff == true)) {
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vnt_radio_power_off(pDevice);
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if ((priv->bHWRadioOff == true) ||
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(priv->bRadioControlOff == true)) {
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vnt_radio_power_off(priv);
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} else {
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vnt_radio_power_on(pDevice);
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vnt_radio_power_on(priv);
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}
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DBG_PRT(MSG_LEVEL_DEBUG, KERN_INFO"<----INIbInitAdapter Exit\n");
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