Staging: vt6655: remove custom UINT typedef

Signed-off-by: Charles Clément <caratorn@gmail.com>
Signed-off-by: Greg Kroah-Hartman <gregkh@suse.de>
This commit is contained in:
Charles Clément 2010-06-02 09:52:01 -07:00 коммит произвёл Greg Kroah-Hartman
Родитель 800acdbdf8
Коммит b6e95cd52a
47 изменённых файлов: 544 добавлений и 537 удалений

Просмотреть файл

@ -495,8 +495,8 @@ typedef struct _WLAN_IE_IBSS_DFS {
// prototype structure, all mgmt frame types will start with these members
typedef struct tagWLAN_FR_MGMT {
UINT uType;
UINT len;
unsigned int uType;
unsigned int len;
PBYTE pBuf;
PUWLAN_80211HDR pHdr;
@ -505,8 +505,8 @@ typedef struct tagWLAN_FR_MGMT {
// Beacon frame
typedef struct tagWLAN_FR_BEACON {
UINT uType;
UINT len;
unsigned int uType;
unsigned int len;
PBYTE pBuf;
PUWLAN_80211HDR pHdr;
// fixed fields
@ -537,8 +537,8 @@ typedef struct tagWLAN_FR_BEACON {
// IBSS ATIM frame
typedef struct tagWLAN_FR_IBSSATIM {
UINT uType;
UINT len;
unsigned int uType;
unsigned int len;
PBYTE pBuf;
PUWLAN_80211HDR pHdr;
@ -551,8 +551,8 @@ typedef struct tagWLAN_FR_IBSSATIM {
// Disassociation
typedef struct tagWLAN_FR_DISASSOC {
UINT uType;
UINT len;
unsigned int uType;
unsigned int len;
PBYTE pBuf;
PUWLAN_80211HDR pHdr;
/*-- fixed fields -----------*/
@ -564,8 +564,8 @@ typedef struct tagWLAN_FR_DISASSOC {
// Association Request
typedef struct tagWLAN_FR_ASSOCREQ {
UINT uType;
UINT len;
unsigned int uType;
unsigned int len;
PBYTE pBuf;
PUWLAN_80211HDR pHdr;
/*-- fixed fields -----------*/
@ -585,8 +585,8 @@ typedef struct tagWLAN_FR_ASSOCREQ {
// Association Response
typedef struct tagWLAN_FR_ASSOCRESP {
UINT uType;
UINT len;
unsigned int uType;
unsigned int len;
PBYTE pBuf;
PUWLAN_80211HDR pHdr;
/*-- fixed fields -----------*/
@ -602,8 +602,8 @@ typedef struct tagWLAN_FR_ASSOCRESP {
// Reassociation Request
typedef struct tagWLAN_FR_REASSOCREQ {
UINT uType;
UINT len;
unsigned int uType;
unsigned int len;
PBYTE pBuf;
PUWLAN_80211HDR pHdr;
@ -624,8 +624,8 @@ typedef struct tagWLAN_FR_REASSOCREQ {
// Reassociation Response
typedef struct tagWLAN_FR_REASSOCRESP {
UINT uType;
UINT len;
unsigned int uType;
unsigned int len;
PBYTE pBuf;
PUWLAN_80211HDR pHdr;
/*-- fixed fields -----------*/
@ -641,8 +641,8 @@ typedef struct tagWLAN_FR_REASSOCRESP {
// Probe Request
typedef struct tagWLAN_FR_PROBEREQ {
UINT uType;
UINT len;
unsigned int uType;
unsigned int len;
PBYTE pBuf;
PUWLAN_80211HDR pHdr;
/*-- fixed fields -----------*/
@ -656,8 +656,8 @@ typedef struct tagWLAN_FR_PROBEREQ {
// Probe Response
typedef struct tagWLAN_FR_PROBERESP {
UINT uType;
UINT len;
unsigned int uType;
unsigned int len;
PBYTE pBuf;
PUWLAN_80211HDR pHdr;
/*-- fixed fields -----------*/
@ -685,8 +685,8 @@ typedef struct tagWLAN_FR_PROBERESP {
// Authentication
typedef struct tagWLAN_FR_AUTHEN {
UINT uType;
UINT len;
unsigned int uType;
unsigned int len;
PBYTE pBuf;
PUWLAN_80211HDR pHdr;
/*-- fixed fields -----------*/
@ -701,8 +701,8 @@ typedef struct tagWLAN_FR_AUTHEN {
// Deauthenication
typedef struct tagWLAN_FR_DEAUTHEN {
UINT uType;
UINT len;
unsigned int uType;
unsigned int len;
PBYTE pBuf;
PUWLAN_80211HDR pHdr;
/*-- fixed fields -----------*/

Просмотреть файл

@ -97,7 +97,8 @@ typedef struct _WLAN_FRAME_TPCREP {
/*--------------------- Static Variables --------------------------*/
/*--------------------- Static Functions --------------------------*/
static BOOL s_bRxMSRReq(PSMgmtObject pMgmt, PWLAN_FRAME_MSRREQ pMSRReq, UINT uLength)
static BOOL s_bRxMSRReq(PSMgmtObject pMgmt, PWLAN_FRAME_MSRREQ pMSRReq,
unsigned int uLength)
{
size_t uNumOfEIDs = 0;
BOOL bResult = TRUE;
@ -209,7 +210,7 @@ IEEE11hbMgrRxAction (
{
PSMgmtObject pMgmt = (PSMgmtObject) pMgmtHandle;
PWLAN_FRAME_ACTION pAction = NULL;
UINT uLength = 0;
unsigned int uLength = 0;
PWLAN_IE_CH_SW pChannelSwitch = NULL;

Просмотреть файл

@ -1776,19 +1776,19 @@ s_vChangeAntenna (
* Return Value: FrameTime
*
*/
UINT
unsigned int
BBuGetFrameTime (
BYTE byPreambleType,
BYTE byPktType,
UINT cbFrameLength,
unsigned int cbFrameLength,
WORD wRate
)
{
UINT uFrameTime;
UINT uPreamble;
UINT uTmp;
UINT uRateIdx = (UINT)wRate;
UINT uRate = 0;
unsigned int uFrameTime;
unsigned int uPreamble;
unsigned int uTmp;
unsigned int uRateIdx = (unsigned int) wRate;
unsigned int uRate = 0;
if (uRateIdx > RATE_54M) {
@ -1796,7 +1796,7 @@ BBuGetFrameTime (
return 0;
}
uRate = (UINT)awcFrameTime[uRateIdx];
uRate = (unsigned int) awcFrameTime[uRateIdx];
if (uRateIdx <= 3) { //CCK mode
@ -1846,7 +1846,7 @@ BBuGetFrameTime (
void
BBvCaculateParameter (
PSDevice pDevice,
UINT cbFrameLength,
unsigned int cbFrameLength,
WORD wRate,
BYTE byPacketType,
PWORD pwPhyLen,
@ -1854,9 +1854,9 @@ BBvCaculateParameter (
PBYTE pbyPhySgn
)
{
UINT cbBitCount;
UINT cbUsCount = 0;
UINT cbTmp;
unsigned int cbBitCount;
unsigned int cbUsCount = 0;
unsigned int cbTmp;
BOOL bExtBit;
BYTE byPreambleType = pDevice->byPreambleType;
BOOL bCCK = pDevice->bCCK;
@ -2762,7 +2762,7 @@ ULONG ulPacketNum;
void
BBvClearAntDivSQ3Value (PSDevice pDevice)
{
UINT ii;
unsigned int ii;
pDevice->uDiversityCnt = 0;
for (ii = 0; ii < MAX_RATE; ii++) {

Просмотреть файл

@ -118,18 +118,18 @@
/*--------------------- Export Functions --------------------------*/
UINT
unsigned int
BBuGetFrameTime(
BYTE byPreambleType,
BYTE byPktType,
UINT cbFrameLength,
unsigned int cbFrameLength,
WORD wRate
);
void
BBvCaculateParameter (
PSDevice pDevice,
UINT cbFrameLength,
unsigned int cbFrameLength,
WORD wRate,
BYTE byPacketType,
PWORD pwPhyLen,

Просмотреть файл

@ -138,8 +138,8 @@ BSSpSearchBSSList(
PKnownBSS pCurrBSS = NULL;
PKnownBSS pSelect = NULL;
BYTE ZeroBSSID[WLAN_BSSID_LEN]={0x00,0x00,0x00,0x00,0x00,0x00};
UINT ii = 0;
// UINT jj = 0; //DavidWang
unsigned int ii = 0;
if (pbyDesireBSSID != NULL) {
DBG_PRT(MSG_LEVEL_DEBUG, KERN_INFO"BSSpSearchBSSList BSSID[%02X %02X %02X-%02X %02X %02X]\n",
*pbyDesireBSSID,*(pbyDesireBSSID+1),*(pbyDesireBSSID+2),
@ -288,7 +288,7 @@ BSSvClearBSSList(
{
PSDevice pDevice = (PSDevice)hDeviceContext;
PSMgmtObject pMgmt = pDevice->pMgmt;
UINT ii;
unsigned int ii;
for (ii = 0; ii < MAX_BSS_NUM; ii++) {
if (bKeepCurrBSSID) {
@ -333,7 +333,7 @@ BSSpAddrIsInBSSList(
PSDevice pDevice = (PSDevice)hDeviceContext;
PSMgmtObject pMgmt = pDevice->pMgmt;
PKnownBSS pBSSList = NULL;
UINT ii;
unsigned int ii;
for (ii = 0; ii < MAX_BSS_NUM; ii++) {
pBSSList = &(pMgmt->sBSSList[ii]);
@ -382,7 +382,7 @@ BSSbInsertToBSSList (
PWLAN_IE_RSN_EXT pRSNWPA,
PWLAN_IE_COUNTRY pIE_Country,
PWLAN_IE_QUIET pIE_Quiet,
UINT uIELength,
unsigned int uIELength,
PBYTE pbyIEs,
void *pRxPacketContext
)
@ -392,7 +392,7 @@ BSSbInsertToBSSList (
PSMgmtObject pMgmt = pDevice->pMgmt;
PSRxMgmtPacket pRxPacket = (PSRxMgmtPacket)pRxPacketContext;
PKnownBSS pBSSList = NULL;
UINT ii;
unsigned int ii;
BOOL bParsingQuiet = FALSE;
PWLAN_IE_QUIET pQuiet = NULL;
@ -468,9 +468,9 @@ BSSbInsertToBSSList (
WPA_ClearRSN(pBSSList);
if (pRSNWPA != NULL) {
UINT uLen = pRSNWPA->len + 2;
unsigned int uLen = pRSNWPA->len + 2;
if (uLen <= (uIELength - (UINT)(ULONG_PTR)((PBYTE)pRSNWPA - pbyIEs))) {
if (uLen <= (uIELength - (unsigned int)(ULONG_PTR)((PBYTE)pRSNWPA - pbyIEs))) {
pBSSList->wWPALen = uLen;
memcpy(pBSSList->byWPAIE, pRSNWPA, uLen);
WPA_ParseRSN(pBSSList, pRSNWPA);
@ -480,8 +480,8 @@ BSSbInsertToBSSList (
WPA2_ClearRSN(pBSSList);
if (pRSN != NULL) {
UINT uLen = pRSN->len + 2;
if (uLen <= (uIELength - (UINT)(ULONG_PTR)((PBYTE)pRSN - pbyIEs))) {
unsigned int uLen = pRSN->len + 2;
if (uLen <= (uIELength - (unsigned int)(ULONG_PTR)((PBYTE)pRSN - pbyIEs))) {
pBSSList->wRSNLen = uLen;
memcpy(pBSSList->byRSNIE, pRSN, uLen);
WPA2vParseRSN(pBSSList, pRSN);
@ -600,7 +600,7 @@ BSSbUpdateToBSSList (
PWLAN_IE_COUNTRY pIE_Country,
PWLAN_IE_QUIET pIE_Quiet,
PKnownBSS pBSSList,
UINT uIELength,
unsigned int uIELength,
PBYTE pbyIEs,
void *pRxPacketContext
)
@ -670,8 +670,8 @@ BSSbUpdateToBSSList (
WPA_ClearRSN(pBSSList); //mike update
if (pRSNWPA != NULL) {
UINT uLen = pRSNWPA->len + 2;
if (uLen <= (uIELength - (UINT)(ULONG_PTR)((PBYTE)pRSNWPA - pbyIEs))) {
unsigned int uLen = pRSNWPA->len + 2;
if (uLen <= (uIELength - (unsigned int)(ULONG_PTR)((PBYTE)pRSNWPA - pbyIEs))) {
pBSSList->wWPALen = uLen;
memcpy(pBSSList->byWPAIE, pRSNWPA, uLen);
WPA_ParseRSN(pBSSList, pRSNWPA);
@ -681,8 +681,8 @@ BSSbUpdateToBSSList (
WPA2_ClearRSN(pBSSList); //mike update
if (pRSN != NULL) {
UINT uLen = pRSN->len + 2;
if (uLen <= (uIELength - (UINT)(ULONG_PTR)((PBYTE)pRSN - pbyIEs))) {
unsigned int uLen = pRSN->len + 2;
if (uLen <= (uIELength - (unsigned int)(ULONG_PTR)((PBYTE)pRSN - pbyIEs))) {
pBSSList->wRSNLen = uLen;
memcpy(pBSSList->byRSNIE, pRSN, uLen);
WPA2vParseRSN(pBSSList, pRSN);
@ -770,7 +770,7 @@ BSSDBbIsSTAInNodeDB(
)
{
PSMgmtObject pMgmt = (PSMgmtObject) pMgmtObject;
UINT ii;
unsigned int ii;
// Index = 0 reserved for AP Node
for (ii = 1; ii < (MAX_NODE_NUM + 1); ii++) {
@ -806,9 +806,9 @@ BSSvCreateOneNode(
PSDevice pDevice = (PSDevice)hDeviceContext;
PSMgmtObject pMgmt = pDevice->pMgmt;
UINT ii;
UINT BigestCount = 0;
UINT SelectIndex;
unsigned int ii;
unsigned int BigestCount = 0;
unsigned int SelectIndex;
struct sk_buff *skb;
// Index = 0 reserved for AP Node (In STA mode)
// Index = 0 reserved for Broadcast/MultiCast (In AP mode)
@ -865,7 +865,7 @@ BSSvCreateOneNode(
void
BSSvRemoveOneNode(
void *hDeviceContext,
UINT uNodeIndex
unsigned int uNodeIndex
)
{
@ -905,7 +905,7 @@ BSSvUpdateAPNode(
{
PSDevice pDevice = (PSDevice)hDeviceContext;
PSMgmtObject pMgmt = pDevice->pMgmt;
UINT uRateLen = WLAN_RATES_MAXLEN;
unsigned int uRateLen = WLAN_RATES_MAXLEN;
memset(&pMgmt->sNodeDBTable[0], 0, sizeof(KnownNodeDB));
@ -1009,7 +1009,7 @@ BSSvAddMulticastNode(
//2008-4-14 <add> by chester for led issue
#ifdef FOR_LED_ON_NOTEBOOK
BOOL cc=FALSE;
UINT status;
unsigned int status;
#endif
void
BSSvSecondCallBack(
@ -1018,11 +1018,11 @@ BSSvSecondCallBack(
{
PSDevice pDevice = (PSDevice)hDeviceContext;
PSMgmtObject pMgmt = pDevice->pMgmt;
UINT ii;
unsigned int ii;
PWLAN_IE_SSID pItemSSID, pCurrSSID;
UINT uSleepySTACnt = 0;
UINT uNonShortSlotSTACnt = 0;
UINT uLongPreambleSTACnt = 0;
unsigned int uSleepySTACnt = 0;
unsigned int uNonShortSlotSTACnt = 0;
unsigned int uLongPreambleSTACnt = 0;
viawget_wpa_header* wpahdr; //DavidWang
spin_lock_irq(&pDevice->lock);
@ -1394,20 +1394,20 @@ BSSvUpdateNodeTxCounter(
BYTE byTsr0,
BYTE byTsr1,
PBYTE pbyBuffer,
UINT uFIFOHeaderSize
unsigned int uFIFOHeaderSize
)
{
PSDevice pDevice = (PSDevice)hDeviceContext;
PSMgmtObject pMgmt = pDevice->pMgmt;
UINT uNodeIndex = 0;
unsigned int uNodeIndex = 0;
BYTE byTxRetry = (byTsr0 & TSR0_NCR);
PSTxBufHead pTxBufHead;
PS802_11Header pMACHeader;
WORD wRate;
WORD wFallBackRate = RATE_1M;
BYTE byFallBack;
UINT ii;
// UINT txRetryTemp;
unsigned int ii;
// unsigned int txRetryTemp;
//PLICE_DEBUG->
//txRetryTemp = byTxRetry;
//if (txRetryTemp== 8)
@ -1584,14 +1584,14 @@ BSSvUpdateNodeTxCounter(
void
BSSvClearNodeDBTable(
void *hDeviceContext,
UINT uStartIndex
unsigned int uStartIndex
)
{
PSDevice pDevice = (PSDevice)hDeviceContext;
PSMgmtObject pMgmt = pDevice->pMgmt;
struct sk_buff *skb;
UINT ii;
unsigned int ii;
for (ii = uStartIndex; ii < (MAX_NODE_NUM + 1); ii++) {
if (pMgmt->sNodeDBTable[ii].bActive) {
@ -1666,7 +1666,7 @@ BSSvClearAnyBSSJoinRecord (
{
PSDevice pDevice = (PSDevice)hDeviceContext;
PSMgmtObject pMgmt = pDevice->pMgmt;
UINT ii;
unsigned int ii;
for (ii = 0; ii < MAX_BSS_NUM; ii++) {
pMgmt->sBSSList[ii].bSelected = FALSE;

Просмотреть файл

@ -106,10 +106,10 @@ typedef struct tagKnownBSS {
// BSS info
BOOL bActive;
BYTE abyBSSID[WLAN_BSSID_LEN];
UINT uChannel;
unsigned int uChannel;
BYTE abySuppRates[WLAN_IEHDR_LEN + WLAN_RATES_MAXLEN + 1];
BYTE abyExtSuppRates[WLAN_IEHDR_LEN + WLAN_RATES_MAXLEN + 1];
UINT uRSSI;
unsigned int uRSSI;
BYTE bySQ;
WORD wBeaconInterval;
WORD wCapInfo;
@ -150,9 +150,9 @@ typedef struct tagKnownBSS {
WORD wRSNLen;
// Clear count
UINT uClearCount;
unsigned int uClearCount;
// BYTE abyIEs[WLAN_BEACON_FR_MAXLEN];
UINT uIELength;
unsigned int uIELength;
QWORD qwBSSTimestamp;
QWORD qwLocalTSF; // local TSF timer
@ -189,7 +189,7 @@ typedef struct tagKnownNodeDB {
BOOL bShortPreamble;
BOOL bERPExist;
BOOL bShortSlotTime;
UINT uInActiveCount;
unsigned int uInActiveCount;
WORD wMaxBasicRate; //Get from byTopOFDMBasicRate or byTopCCKBasicRate which depends on packetTyp.
WORD wMaxSuppRate; //Records the highest supported rate getting from SuppRates IE and ExtSuppRates IE in Beacon.
WORD wSuppRate;
@ -217,23 +217,23 @@ typedef struct tagKnownNodeDB {
BYTE byCipherSuite;
DWORD dwTSC47_16;
WORD wTSC15_0;
UINT uWepKeyLength;
unsigned int uWepKeyLength;
BYTE abyWepKey[WLAN_WEPMAX_KEYLEN];
//
// Auto rate fallback vars
BOOL bIsInFallback;
UINT uAverageRSSI;
UINT uRateRecoveryTimeout;
UINT uRatePollTimeout;
UINT uTxFailures;
UINT uTxAttempts;
unsigned int uAverageRSSI;
unsigned int uRateRecoveryTimeout;
unsigned int uRatePollTimeout;
unsigned int uTxFailures;
unsigned int uTxAttempts;
UINT uTxRetry;
UINT uFailureRatio;
UINT uRetryRatio;
UINT uTxOk[MAX_RATE+1];
UINT uTxFail[MAX_RATE+1];
UINT uTimeCount;
unsigned int uTxRetry;
unsigned int uFailureRatio;
unsigned int uRetryRatio;
unsigned int uTxOk[MAX_RATE+1];
unsigned int uTxFail[MAX_RATE+1];
unsigned int uTimeCount;
} KnownNodeDB, *PKnownNodeDB;
@ -279,7 +279,7 @@ BSSbInsertToBSSList(
PWLAN_IE_RSN_EXT pRSNWPA,
PWLAN_IE_COUNTRY pIE_Country,
PWLAN_IE_QUIET pIE_Quiet,
UINT uIELength,
unsigned int uIELength,
PBYTE pbyIEs,
void *pRxPacketContext
);
@ -302,7 +302,7 @@ BSSbUpdateToBSSList(
PWLAN_IE_COUNTRY pIE_Country,
PWLAN_IE_QUIET pIE_Quiet,
PKnownBSS pBSSList,
UINT uIELength,
unsigned int uIELength,
PBYTE pbyIEs,
void *pRxPacketContext
);
@ -342,13 +342,13 @@ BSSvUpdateNodeTxCounter(
BYTE byTsr0,
BYTE byTsr1,
PBYTE pbyBuffer,
UINT uFIFOHeaderSize
unsigned int uFIFOHeaderSize
);
void
BSSvRemoveOneNode(
void *hDeviceContext,
UINT uNodeIndex
unsigned int uNodeIndex
);
void
@ -360,7 +360,7 @@ BSSvAddMulticastNode(
void
BSSvClearNodeDBTable(
void *hDeviceContext,
UINT uStartIndex
unsigned int uStartIndex
);
void

Просмотреть файл

@ -82,7 +82,7 @@ static int msglevel =MSG_LEVEL_INFO;
typedef struct tagSChannelTblElement {
BYTE byChannelNumber;
UINT uFrequency;
unsigned int uFrequency;
BOOL bValid;
BYTE byMAP;
}SChannelTblElement, *PSChannelTblElement;
@ -457,7 +457,7 @@ s_vCaculateOFDMRParameter(
************************************************************************/
//2008-8-4 <add> by chester
BOOL
ChannelValid(UINT ChannelIndex)
ChannelValid(unsigned int ChannelIndex)
{
BOOL bValid;
@ -729,7 +729,7 @@ s_vSetRSPINF (PSDevice pDevice, CARD_PHY_TYPE ePHYType, void *pvSupportRateIEs,
/*--------------------- Export Functions --------------------------*/
BYTE CARDbyGetChannelMapping (void *pDeviceHandler, BYTE byChannelNumber, CARD_PHY_TYPE ePhyType)
{
UINT ii;
unsigned int ii;
if ((ePhyType == PHY_TYPE_11B) || (ePhyType == PHY_TYPE_11G)) {
return (byChannelNumber);
@ -764,7 +764,7 @@ BYTE CARDbyGetChannelNumber (void *pDeviceHandler, BYTE byChannelIndex)
* Return Value: TRUE if succeeded; FALSE if failed.
*
*/
BOOL CARDbSetChannel (void *pDeviceHandler, UINT uConnectionChannel)
BOOL CARDbSetChannel (void *pDeviceHandler, unsigned int uConnectionChannel)
{
PSDevice pDevice = (PSDevice) pDeviceHandler;
BOOL bResult = TRUE;
@ -852,7 +852,7 @@ BOOL CARDbSetChannel (void *pDeviceHandler, UINT uConnectionChannel)
*
*/
/*
BOOL CARDbSendPacket (void *pDeviceHandler, void *pPacket, CARD_PKT_TYPE ePktType, UINT uLength)
BOOL CARDbSendPacket (void *pDeviceHandler, void *pPacket, CARD_PKT_TYPE ePktType, unsigned int uLength)
{
PSDevice pDevice = (PSDevice) pDeviceHandler;
if (ePktType == PKT_TYPE_802_11_MNG) {
@ -1145,10 +1145,10 @@ BOOL CARDbUpdateTSF (void *pDeviceHandler, BYTE byRxRate, QWORD qwBSSTimestamp,
BOOL CARDbSetBeaconPeriod (void *pDeviceHandler, WORD wBeaconInterval)
{
PSDevice pDevice = (PSDevice) pDeviceHandler;
UINT uBeaconInterval = 0;
UINT uLowNextTBTT = 0;
UINT uHighRemain = 0;
UINT uLowRemain = 0;
unsigned int uBeaconInterval = 0;
unsigned int uLowNextTBTT = 0;
unsigned int uHighRemain = 0;
unsigned int uLowRemain = 0;
QWORD qwNextTBTT;
HIDWORD(qwNextTBTT) = 0;
@ -1396,7 +1396,7 @@ CARDbPowerDown(
)
{
PSDevice pDevice = (PSDevice)pDeviceHandler;
UINT uIdx;
unsigned int uIdx;
// check if already in Doze mode
if (MACbIsRegBitsOn(pDevice->PortOffset, MAC_REG_PSCTL, PSCTL_PS))
@ -1557,7 +1557,7 @@ CARDbAdd_PMKID_Candidate (
{
PSDevice pDevice = (PSDevice) pDeviceHandler;
PPMKID_CANDIDATE pCandidateList;
UINT ii = 0;
unsigned int ii = 0;
DBG_PRT(MSG_LEVEL_DEBUG, KERN_INFO"bAdd_PMKID_Candidate START: (%d)\n", (int)pDevice->gsPMKIDCandidate.NumCandidates);
@ -1614,7 +1614,7 @@ void CARDvInitChannelTable (void *pDeviceHandler)
{
PSDevice pDevice = (PSDevice) pDeviceHandler;
BOOL bMultiBand = FALSE;
UINT ii;
unsigned int ii;
for(ii=1;ii<=CARD_MAX_CHANNEL_TBL;ii++) {
sChannelTbl[ii].bValid = FALSE;
@ -1709,7 +1709,7 @@ BOOL
CARDbStartMeasure (
void *pDeviceHandler,
void *pvMeasureEIDs,
UINT uNumOfMeasureEIDs
unsigned int uNumOfMeasureEIDs
)
{
PSDevice pDevice = (PSDevice) pDeviceHandler;
@ -1886,7 +1886,7 @@ CARDbSetQuiet (
)
{
PSDevice pDevice = (PSDevice) pDeviceHandler;
UINT ii = 0;
unsigned int ii = 0;
if (bResetQuiet == TRUE) {
MACvRegBitsOff(pDevice->PortOffset, MAC_REG_MSRCTL, (MSRCTL_QUIETTXCHK | MSRCTL_QUIETEN));
@ -1937,9 +1937,9 @@ CARDbStartQuiet (
)
{
PSDevice pDevice = (PSDevice) pDeviceHandler;
UINT ii = 0;
unsigned int ii = 0;
DWORD dwStartTime = 0xFFFFFFFF;
UINT uCurrentQuietIndex = 0;
unsigned int uCurrentQuietIndex = 0;
DWORD dwNextTime = 0;
DWORD dwGap = 0;
DWORD dwDuration = 0;
@ -2040,10 +2040,10 @@ CARDvSetCountryInfo (
)
{
PSDevice pDevice = (PSDevice) pDeviceHandler;
UINT ii = 0;
UINT uu = 0;
UINT step = 0;
UINT uNumOfCountryInfo = 0;
unsigned int ii = 0;
unsigned int uu = 0;
unsigned int step = 0;
unsigned int uNumOfCountryInfo = 0;
BYTE byCh = 0;
PWLAN_IE_COUNTRY pIE_Country = (PWLAN_IE_COUNTRY) pIE;
@ -2169,7 +2169,7 @@ CARDbySetSupportChannels (
)
{
PSDevice pDevice = (PSDevice) pDeviceHandler;
UINT ii;
unsigned int ii;
BYTE byCount;
PWLAN_IE_SUPP_CH pIE = (PWLAN_IE_SUPP_CH) pbyIEs;
PBYTE pbyChTupple;
@ -2266,7 +2266,7 @@ CARDbyGetTransmitPower (
BOOL
CARDbChannelGetList (
UINT uCountryCodeIdx,
unsigned int uCountryCodeIdx,
PBYTE pbyChannelTable
)
{
@ -2285,7 +2285,7 @@ CARDvSetCountryIE(
)
{
PSDevice pDevice = (PSDevice) pDeviceHandler;
UINT ii;
unsigned int ii;
PWLAN_IE_COUNTRY pIECountry = (PWLAN_IE_COUNTRY) pIE;
pIECountry->byElementID = WLAN_EID_COUNTRY;
@ -2307,7 +2307,7 @@ CARDvSetCountryIE(
BOOL
CARDbGetChannelMapInfo(
void *pDeviceHandler,
UINT uChannelIndex,
unsigned int uChannelIndex,
PBYTE pbyChannelNumber,
PBYTE pbyMap
)
@ -2326,7 +2326,7 @@ CARDbGetChannelMapInfo(
void
CARDvSetChannelMapInfo(
void *pDeviceHandler,
UINT uChannelIndex,
unsigned int uChannelIndex,
BYTE byMap
)
{
@ -2345,7 +2345,7 @@ CARDvClearChannelMapInfo(
)
{
// PSDevice pDevice = (PSDevice) pDeviceHandler;
UINT ii = 0;
unsigned int ii = 0;
for (ii = 1; ii <= CB_MAX_CHANNEL; ii++) {
sChannelTbl[ii].byMAP = 0;
@ -2360,7 +2360,7 @@ CARDbyAutoChannelSelect(
)
{
// PSDevice pDevice = (PSDevice) pDeviceHandler;
UINT ii = 0;
unsigned int ii = 0;
BYTE byOptionChannel = 0;
int aiWeight[CB_MAX_CHANNEL_24G+1] = {-1000,0,0,0,0,0,0,0,0,0,0,0,0,0,0};
@ -2425,7 +2425,7 @@ CARDvSafeResetTx (
)
{
PSDevice pDevice = (PSDevice) pDeviceHandler;
UINT uu;
unsigned int uu;
PSTxDesc pCurrTD;
// initialize TD index
@ -2481,7 +2481,7 @@ CARDvSafeResetRx (
)
{
PSDevice pDevice = (PSDevice) pDeviceHandler;
UINT uu;
unsigned int uu;
PSRxDesc pDesc;
@ -2539,7 +2539,7 @@ CARDvSafeResetRx (
WORD CARDwGetCCKControlRate(void *pDeviceHandler, WORD wRateIdx)
{
PSDevice pDevice = (PSDevice) pDeviceHandler;
UINT ui = (UINT)wRateIdx;
unsigned int ui = (unsigned int) wRateIdx;
while (ui > RATE_1M) {
if (pDevice->wBasicRate & ((WORD)1 << ui)) {
@ -2566,7 +2566,7 @@ WORD CARDwGetCCKControlRate(void *pDeviceHandler, WORD wRateIdx)
WORD CARDwGetOFDMControlRate (void *pDeviceHandler, WORD wRateIdx)
{
PSDevice pDevice = (PSDevice) pDeviceHandler;
UINT ui = (UINT)wRateIdx;
unsigned int ui = (unsigned int) wRateIdx;
DBG_PRT(MSG_LEVEL_DEBUG, KERN_INFO"BASIC RATE: %X\n", pDevice->wBasicRate);
@ -3002,9 +3002,9 @@ BOOL CARDbGetCurrentTSF (DWORD_PTR dwIoBase, PQWORD pqwCurrTSF)
QWORD CARDqGetNextTBTT (QWORD qwTSF, WORD wBeaconInterval)
{
UINT uLowNextTBTT;
UINT uHighRemain, uLowRemain;
UINT uBeaconInterval;
unsigned int uLowNextTBTT;
unsigned int uHighRemain, uLowRemain;
unsigned int uBeaconInterval;
uBeaconInterval = wBeaconInterval * 1024;
// Next TBTT = ((local_current_TSF / beacon_interval) + 1 ) * beacon_interval
@ -3084,7 +3084,8 @@ void CARDvUpdateNextTBTT (DWORD_PTR dwIoBase, QWORD qwTSF, WORD wBeaconInterval)
VNSvOutPortD(dwIoBase + MAC_REG_NEXTTBTT, LODWORD(qwTSF));
VNSvOutPortD(dwIoBase + MAC_REG_NEXTTBTT + 4, HIDWORD(qwTSF));
MACvRegBitsOn(dwIoBase, MAC_REG_TFTCTL, TFTCTL_TBTTSYNCEN);
DBG_PRT(MSG_LEVEL_DEBUG, KERN_INFO"Card:Update Next TBTT[%8xh:%8xh] \n",(UINT)HIDWORD(qwTSF), (UINT)LODWORD(qwTSF));
DBG_PRT(MSG_LEVEL_DEBUG, KERN_INFO"Card:Update Next TBTT[%8xh:%8xh] \n",
(unsigned int) HIDWORD(qwTSF), (unsigned int) LODWORD(qwTSF));
return;
}

Просмотреть файл

@ -86,7 +86,7 @@ typedef enum _CARD_OP_MODE {
/*--------------------- Export Functions --------------------------*/
BOOL ChannelValid(UINT ChannelIndex);
BOOL ChannelValid(unsigned int ChannelIndex);
void CARDvSetRSPINF(void *pDeviceHandler, CARD_PHY_TYPE ePHYType);
void vUpdateIFS(void *pDeviceHandler);
void CARDvUpdateBasicTopRate(void *pDeviceHandler);
@ -107,8 +107,8 @@ void CARDvSafeResetRx(void *pDeviceHandler);
//xxx
BOOL CARDbRadioPowerOff(void *pDeviceHandler);
BOOL CARDbRadioPowerOn(void *pDeviceHandler);
BOOL CARDbSetChannel(void *pDeviceHandler, UINT uConnectionChannel);
//BOOL CARDbSendPacket(void *pDeviceHandler, void *pPacket, CARD_PKT_TYPE ePktType, UINT uLength);
BOOL CARDbSetChannel(void *pDeviceHandler, unsigned int uConnectionChannel);
//BOOL CARDbSendPacket(void *pDeviceHandler, void *pPacket, CARD_PKT_TYPE ePktType, unsigned int uLength);
BOOL CARDbIsShortPreamble(void *pDeviceHandler);
BOOL CARDbIsShorSlotTime(void *pDeviceHandler);
BOOL CARDbSetPhyParameter(void *pDeviceHandler, CARD_PHY_TYPE ePHYType, WORD wCapInfo, BYTE byERPField, void *pvSupportRateIEs, void *pvExtSupportRateIEs);
@ -152,7 +152,7 @@ BOOL
CARDbStartMeasure (
void *pDeviceHandler,
void *pvMeasureEIDs,
UINT uNumOfMeasureEIDs
unsigned int uNumOfMeasureEIDs
);
BOOL
@ -212,7 +212,7 @@ CARDbyGetTransmitPower (
BOOL
CARDbChannelGetList (
UINT uCountryCodeIdx,
unsigned int uCountryCodeIdx,
PBYTE pbyChannelTable
);
@ -225,7 +225,7 @@ CARDvSetCountryIE(
BOOL
CARDbGetChannelMapInfo(
void *pDeviceHandler,
UINT uChannelIndex,
unsigned int uChannelIndex,
PBYTE pbyChannelNumber,
PBYTE pbyMap
);
@ -233,7 +233,7 @@ CARDbGetChannelMapInfo(
void
CARDvSetChannelMapInfo(
void *pDeviceHandler,
UINT uChannelIndex,
unsigned int uChannelIndex,
BYTE byMap
);

Просмотреть файл

@ -208,11 +208,11 @@ RATEvParseMaxRate (
)
{
PSDevice pDevice = (PSDevice) pDeviceHandler;
UINT ii;
unsigned int ii;
BYTE byHighSuppRate = 0;
BYTE byRate = 0;
WORD wOldBasicRate = pDevice->wBasicRate;
UINT uRateLen;
unsigned int uRateLen;
if (pItemRates == NULL)
@ -248,7 +248,7 @@ UINT uRateLen;
if ((pItemExtRates != NULL) && (pItemExtRates->byElementID == WLAN_EID_EXTSUPP_RATES) &&
(pDevice->eCurrentPHYType != PHY_TYPE_11B)) {
UINT uExtRateLen = pItemExtRates->len;
unsigned int uExtRateLen = pItemExtRates->len;
if (uExtRateLen > WLAN_RATES_MAXLEN)
uExtRateLen = WLAN_RATES_MAXLEN;
@ -315,7 +315,7 @@ RATEvTxRateFallBack (
{
PSDevice pDevice = (PSDevice) pDeviceHandler;
WORD wIdxDownRate = 0;
UINT ii;
unsigned int ii;
//DWORD dwRateTable[MAX_RATE] = {1, 2, 5, 11, 6, 9, 12, 18, 24, 36, 48, 54};
BOOL bAutoRate[MAX_RATE] = {TRUE,TRUE,TRUE,TRUE,FALSE,FALSE,TRUE,TRUE,TRUE,TRUE,TRUE,TRUE};
DWORD dwThroughputTbl[MAX_RATE] = {10, 20, 55, 110, 60, 90, 120, 180, 240, 360, 480, 540};
@ -413,10 +413,10 @@ BYTE
RATEuSetIE (
PWLAN_IE_SUPP_RATES pSrcRates,
PWLAN_IE_SUPP_RATES pDstRates,
UINT uRateLen
unsigned int uRateLen
)
{
UINT ii, uu, uRateCnt = 0;
unsigned int ii, uu, uRateCnt = 0;
if ((pSrcRates == NULL) || (pDstRates == NULL))
return 0;

Просмотреть файл

@ -77,7 +77,7 @@ BYTE
RATEuSetIE(
PWLAN_IE_SUPP_RATES pSrcRates,
PWLAN_IE_SUPP_RATES pDstRates,
UINT uRateLen
unsigned int uRateLen
);
WORD

Просмотреть файл

@ -311,7 +311,7 @@ typedef struct tagSCache{
/* The receive cache is updated circularly. The next entry to be written is
* indexed by the "InPtr".
*/
UINT uInPtr; // Place to use next
unsigned int uInPtr; // Place to use next
SCacheEntry asCacheEntry[DUPLICATE_RX_CACHE_LENGTH];
} SCache, *PSCache;
@ -322,10 +322,10 @@ typedef struct tagSDeFragControlBlock
WORD wSequence;
WORD wFragNum;
BYTE abyAddr2[ETH_ALEN];
UINT uLifetime;
unsigned int uLifetime;
struct sk_buff* skb;
PBYTE pbyRxBuffer;
UINT cbFrameLength;
unsigned int cbFrameLength;
BOOL bInUse;
} SDeFragControlBlock, *PSDeFragControlBlock;
@ -448,9 +448,9 @@ typedef struct __device_info {
SCache sDupRxCache;
SDeFragControlBlock sRxDFCB[CB_MAX_RX_FRAG];
UINT cbDFCB;
UINT cbFreeDFCB;
UINT uCurrentDFCBIdx;
unsigned int cbDFCB;
unsigned int cbFreeDFCB;
unsigned int uCurrentDFCBIdx;
OPTIONS sOpts;
@ -497,7 +497,7 @@ typedef struct __device_info {
SMgmtObject sMgmtObj;
// 802.11 MAC specific
UINT uCurrRSSI;
unsigned int uCurrRSSI;
BYTE byCurrSQ;
DWORD dwTxAntennaSel;
@ -508,12 +508,12 @@ typedef struct __device_info {
BOOL bTxRxAntInv;
PBYTE pbyTmpBuff;
UINT uSIFS; //Current SIFS
UINT uDIFS; //Current DIFS
UINT uEIFS; //Current EIFS
UINT uSlot; //Current SlotTime
UINT uCwMin; //Current CwMin
UINT uCwMax; //CwMax is fixed on 1023.
unsigned int uSIFS; //Current SIFS
unsigned int uDIFS; //Current DIFS
unsigned int uEIFS; //Current EIFS
unsigned int uSlot; //Current SlotTime
unsigned int uCwMin; //Current CwMin
unsigned int uCwMax; //CwMax is fixed on 1023.
// PHY parameter
BYTE bySIFS;
BYTE byDIFS;
@ -532,7 +532,7 @@ typedef struct __device_info {
BYTE byMinChannel;
BYTE byMaxChannel;
UINT uConnectionRate;
unsigned int uConnectionRate;
BYTE byPreambleType;
BYTE byShortPreamble;
@ -588,10 +588,10 @@ typedef struct __device_info {
BOOL bBeaconBufReady;
BOOL bBeaconSent;
BOOL bIsBeaconBufReadySet;
UINT cbBeaconBufReadySetCnt;
unsigned int cbBeaconBufReadySetCnt;
BOOL bFixRate;
BYTE byCurrentCh;
UINT uScanTime;
unsigned int uScanTime;
CMD_STATE eCommandState;
@ -601,14 +601,14 @@ typedef struct __device_info {
BOOL bStopBeacon;
BOOL bStopDataPkt;
BOOL bStopTx0Pkt;
UINT uAutoReConnectTime;
unsigned int uAutoReConnectTime;
// 802.11 counter
CMD_ITEM eCmdQueue[CMD_Q_SIZE];
UINT uCmdDequeueIdx;
UINT uCmdEnqueueIdx;
UINT cbFreeCmdQueue;
unsigned int uCmdDequeueIdx;
unsigned int uCmdEnqueueIdx;
unsigned int cbFreeCmdQueue;
BOOL bCmdRunning;
BOOL bCmdClear;
@ -629,19 +629,19 @@ typedef struct __device_info {
DWORD dwIVCounter;
QWORD qwPacketNumber; //For CCMP and TKIP as TSC(6 bytes)
UINT uCurrentWEPMode;
unsigned int uCurrentWEPMode;
RC4Ext SBox;
BYTE abyPRNG[WLAN_WEPMAX_KEYLEN+3];
BYTE byKeyIndex;
UINT uKeyLength;
unsigned int uKeyLength;
BYTE abyKey[WLAN_WEP232_KEYLEN];
BOOL bAES;
BYTE byCntMeasure;
// for AP mode
UINT uAssocCount;
unsigned int uAssocCount;
BOOL bMoreData;
// QoS
@ -657,12 +657,12 @@ typedef struct __device_info {
BOOL bRxMICFail;
UINT uRATEIdx;
unsigned int uRATEIdx;
// For Update BaseBand VGA Gain Offset
BOOL bUpdateBBVGA;
UINT uBBVGADiffCount;
unsigned int uBBVGADiffCount;
BYTE byBBVGANew;
BYTE byBBVGACurrent;
BYTE abyBBVGA[BB_VGA_LEVEL];
@ -766,7 +766,7 @@ typedef struct __device_info {
BOOL b11hEnable;
BYTE abyCountryCode[3];
// for 802.11h DFS
UINT uNumOfMeasureEIDs;
unsigned int uNumOfMeasureEIDs;
PWLAN_IE_MEASURE_REQ pCurrMeasureEID;
BOOL bMeasureInProgress;
BYTE byOrgChannel;
@ -783,7 +783,7 @@ typedef struct __device_info {
BOOL bQuietEnable;
BOOL bEnableFirstQuiet;
BYTE byQuietStartCount;
UINT uQuietEnqueue;
unsigned int uQuietEnqueue;
DWORD dwCurrentQuietEndTime;
SQuietControl sQuiet[MAX_QUIET_COUNT];
// for 802.11h TPC
@ -803,7 +803,7 @@ typedef struct __device_info {
BOOL bwextstep2;
BOOL bwextstep3;
*/
UINT bwextcount;
unsigned int bwextcount;
BOOL bWPASuppWextEnabled;
#endif
@ -816,7 +816,7 @@ typedef struct __device_info {
struct net_device *apdev;
int (*tx_80211)(struct sk_buff *skb, struct net_device *dev);
#endif
UINT uChannel;
unsigned int uChannel;
BOOL bMACSuspend;
struct iw_statistics wstats; // wireless stats
@ -920,7 +920,7 @@ static inline PDEVICE_TD_INFO alloc_td_info(void) {
/*--------------------- Export Functions --------------------------*/
BOOL device_dma0_xmit(PSDevice pDevice, struct sk_buff *skb, UINT uNodeIndex);
BOOL device_dma0_xmit(PSDevice pDevice, struct sk_buff *skb, unsigned int uNodeIndex);
BOOL device_alloc_frag_buf(PSDevice pDevice, PSDeFragControlBlock pDeF);
int Config_FileOperation(PSDevice pDevice,BOOL fwrite,unsigned char *Parameter);
#endif

Просмотреть файл

@ -329,8 +329,8 @@ static int device_dma0_tx_80211(struct sk_buff *skb, struct net_device *dev);
static BOOL device_release_WPADEV(PSDevice pDevice);
static int ethtool_ioctl(struct net_device *dev, void *useraddr);
static int device_rx_srv(PSDevice pDevice, UINT uIdx);
static int device_tx_srv(PSDevice pDevice, UINT uIdx);
static int device_rx_srv(PSDevice pDevice, unsigned int uIdx);
static int device_tx_srv(PSDevice pDevice, unsigned int uIdx);
static BOOL device_alloc_rx_buf(PSDevice pDevice, PSRxDesc pDesc);
static void device_init_registers(PSDevice pDevice, DEVICE_INIT_TYPE InitType);
static void device_free_tx_buf(PSDevice pDevice, PSTxDesc pDesc);
@ -481,7 +481,7 @@ pDevice->bUpdateBBVGA = TRUE;
static void s_vCompleteCurrentMeasure (PSDevice pDevice, BYTE byResult)
{
UINT ii;
unsigned int ii;
DWORD dwDuration = 0;
BYTE byRPI0 = 0;
@ -526,7 +526,7 @@ static void s_vCompleteCurrentMeasure (PSDevice pDevice, BYTE byResult)
static void device_init_registers(PSDevice pDevice, DEVICE_INIT_TYPE InitType)
{
UINT ii;
unsigned int ii;
BYTE byValue;
BYTE byValue1;
BYTE byCCKPwrdBm = 0;
@ -1153,7 +1153,7 @@ static BOOL device_get_pci_info(PSDevice pDevice, struct pci_dev* pcid) {
u16 pci_cmd;
u8 b;
UINT cis_addr;
unsigned int cis_addr;
#ifdef PLICE_DEBUG
BYTE pci_config[256];
BYTE value =0x00;
@ -1594,7 +1594,7 @@ static void device_free_td1_ring(PSDevice pDevice) {
/*-----------------------------------------------------------------*/
static int device_rx_srv(PSDevice pDevice, UINT uIdx) {
static int device_rx_srv(PSDevice pDevice, unsigned int uIdx) {
PSRxDesc pRD;
int works = 0;
@ -1662,17 +1662,17 @@ BOOL device_alloc_frag_buf(PSDevice pDevice, PSDeFragControlBlock pDeF) {
static int device_tx_srv(PSDevice pDevice, UINT uIdx) {
static int device_tx_srv(PSDevice pDevice, unsigned int uIdx) {
PSTxDesc pTD;
BOOL bFull=FALSE;
int works = 0;
BYTE byTsr0;
BYTE byTsr1;
UINT uFrameSize, uFIFOHeaderSize;
unsigned int uFrameSize, uFIFOHeaderSize;
PSTxBufHead pTxBufHead;
struct net_device_stats* pStats = &pDevice->stats;
struct sk_buff* skb;
UINT uNodeIndex;
unsigned int uNodeIndex;
PSMgmtObject pMgmt = pDevice->pMgmt;
@ -2084,7 +2084,7 @@ device_release_WPADEV(pDevice);
static int device_dma0_tx_80211(struct sk_buff *skb, struct net_device *dev) {
PSDevice pDevice=netdev_priv(dev);
PBYTE pbMPDU;
UINT cbMPDULen = 0;
unsigned int cbMPDULen = 0;
DBG_PRT(MSG_LEVEL_DEBUG, KERN_INFO "device_dma0_tx_80211\n");
@ -2116,16 +2116,16 @@ static int device_dma0_tx_80211(struct sk_buff *skb, struct net_device *dev) {
BOOL device_dma0_xmit(PSDevice pDevice, struct sk_buff *skb, UINT uNodeIndex) {
BOOL device_dma0_xmit(PSDevice pDevice, struct sk_buff *skb, unsigned int uNodeIndex) {
PSMgmtObject pMgmt = pDevice->pMgmt;
PSTxDesc pHeadTD, pLastTD;
UINT cbFrameBodySize;
UINT uMACfragNum;
unsigned int cbFrameBodySize;
unsigned int uMACfragNum;
BYTE byPktType;
BOOL bNeedEncryption = FALSE;
PSKeyItem pTransmitKey = NULL;
UINT cbHeaderSize;
UINT ii;
unsigned int cbHeaderSize;
unsigned int ii;
SKeyItem STempKey;
// BYTE byKeyIndex = 0;
@ -2270,17 +2270,17 @@ static int device_xmit(struct sk_buff *skb, struct net_device *dev) {
PSMgmtObject pMgmt = pDevice->pMgmt;
PSTxDesc pHeadTD, pLastTD;
UINT uNodeIndex = 0;
unsigned int uNodeIndex = 0;
BYTE byMask[8] = {1, 2, 4, 8, 0x10, 0x20, 0x40, 0x80};
WORD wAID;
UINT uMACfragNum = 1;
UINT cbFrameBodySize;
unsigned int uMACfragNum = 1;
unsigned int cbFrameBodySize;
BYTE byPktType;
UINT cbHeaderSize;
unsigned int cbHeaderSize;
BOOL bNeedEncryption = FALSE;
PSKeyItem pTransmitKey = NULL;
SKeyItem STempKey;
UINT ii;
unsigned int ii;
BOOL bTKIP_UseGTK = FALSE;
BOOL bNeedDeAuth = FALSE;
PBYTE pbyBSSID;

Просмотреть файл

@ -92,7 +92,7 @@ void
s_vProcessRxMACHeader (
PSDevice pDevice,
PBYTE pbyRxBufferAddr,
UINT cbPacketSize,
unsigned int cbPacketSize,
BOOL bIsWEP,
BOOL bExtIV,
PUINT pcbHeadSize
@ -109,8 +109,8 @@ static BOOL s_bAPModeRxCtl(
static BOOL s_bAPModeRxData (
PSDevice pDevice,
struct sk_buff* skb,
UINT FrameSize,
UINT cbHeaderOffset,
unsigned int FrameSize,
unsigned int cbHeaderOffset,
int iSANodeIndex,
int iDANodeIndex
);
@ -119,7 +119,7 @@ static BOOL s_bAPModeRxData (
static BOOL s_bHandleRxEncryption(
PSDevice pDevice,
PBYTE pbyFrame,
UINT FrameSize,
unsigned int FrameSize,
PBYTE pbyRsr,
PBYTE pbyNewRsr,
PSKeyItem *pKeyOut,
@ -132,7 +132,7 @@ static BOOL s_bHostWepRxEncryption(
PSDevice pDevice,
PBYTE pbyFrame,
UINT FrameSize,
unsigned int FrameSize,
PBYTE pbyRsr,
BOOL bOnFly,
PSKeyItem pKey,
@ -167,14 +167,14 @@ void
s_vProcessRxMACHeader (
PSDevice pDevice,
PBYTE pbyRxBufferAddr,
UINT cbPacketSize,
unsigned int cbPacketSize,
BOOL bIsWEP,
BOOL bExtIV,
PUINT pcbHeadSize
)
{
PBYTE pbyRxBuffer;
UINT cbHeaderSize = 0;
unsigned int cbHeaderSize = 0;
PWORD pwType;
PS802_11Header pMACHeader;
int ii;
@ -269,7 +269,7 @@ s_vGetDASA (
PSEthernetHeader psEthHeader
)
{
UINT cbHeaderSize = 0;
unsigned int cbHeaderSize = 0;
PS802_11Header pMACHeader;
int ii;
@ -357,18 +357,18 @@ device_receive_frame (
PBYTE pbyFrame;
BOOL bDeFragRx = FALSE;
BOOL bIsWEP = FALSE;
UINT cbHeaderOffset;
UINT FrameSize;
unsigned int cbHeaderOffset;
unsigned int FrameSize;
WORD wEtherType = 0;
int iSANodeIndex = -1;
int iDANodeIndex = -1;
UINT ii;
UINT cbIVOffset;
unsigned int ii;
unsigned int cbIVOffset;
BOOL bExtIV = FALSE;
PBYTE pbyRxSts;
PBYTE pbyRxRate;
PBYTE pbySQ;
UINT cbHeaderSize;
unsigned int cbHeaderSize;
PSKeyItem pKey = NULL;
WORD wRxTSC15_0 = 0;
DWORD dwRxTSC47_16 = 0;
@ -1165,7 +1165,7 @@ static BOOL s_bAPModeRxCtl (
static BOOL s_bHandleRxEncryption (
PSDevice pDevice,
PBYTE pbyFrame,
UINT FrameSize,
unsigned int FrameSize,
PBYTE pbyRsr,
PBYTE pbyNewRsr,
PSKeyItem *pKeyOut,
@ -1174,7 +1174,7 @@ static BOOL s_bHandleRxEncryption (
PDWORD pdwRxTSC47_16
)
{
UINT PayloadLen = FrameSize;
unsigned int PayloadLen = FrameSize;
PBYTE pbyIV;
BYTE byKeyIdx;
PSKeyItem pKey = NULL;
@ -1311,7 +1311,7 @@ static BOOL s_bHandleRxEncryption (
static BOOL s_bHostWepRxEncryption (
PSDevice pDevice,
PBYTE pbyFrame,
UINT FrameSize,
unsigned int FrameSize,
PBYTE pbyRsr,
BOOL bOnFly,
PSKeyItem pKey,
@ -1321,7 +1321,7 @@ static BOOL s_bHostWepRxEncryption (
PDWORD pdwRxTSC47_16
)
{
UINT PayloadLen = FrameSize;
unsigned int PayloadLen = FrameSize;
PBYTE pbyIV;
BYTE byKeyIdx;
BYTE byDecMode = KEY_CTL_WEP;
@ -1442,8 +1442,8 @@ static BOOL s_bHostWepRxEncryption (
static BOOL s_bAPModeRxData (
PSDevice pDevice,
struct sk_buff* skb,
UINT FrameSize,
UINT cbHeaderOffset,
unsigned int FrameSize,
unsigned int cbHeaderOffset,
int iSANodeIndex,
int iDANodeIndex
)
@ -1515,7 +1515,7 @@ static BOOL s_bAPModeRxData (
iDANodeIndex = 0;
if ((pDevice->uAssocCount > 1) && (iDANodeIndex >= 0)) {
ROUTEbRelay(pDevice, (PBYTE)(skb->data + cbHeaderOffset), FrameSize, (UINT)iDANodeIndex);
ROUTEbRelay(pDevice, (PBYTE)(skb->data + cbHeaderOffset), FrameSize, (unsigned int)iDANodeIndex);
}
if (bRelayOnly)

Просмотреть файл

@ -215,7 +215,7 @@ int vt6655_hostap_set_hostapd(PSDevice pDevice, int val, int rtnl_locked)
static int hostap_remove_sta(PSDevice pDevice,
struct viawget_hostapd_param *param)
{
UINT uNodeIndex;
unsigned int uNodeIndex;
if (BSSDBbIsSTAInNodeDB(pDevice->pMgmt, param->sta_addr, &uNodeIndex)) {
@ -244,7 +244,7 @@ static int hostap_add_sta(PSDevice pDevice,
struct viawget_hostapd_param *param)
{
PSMgmtObject pMgmt = pDevice->pMgmt;
UINT uNodeIndex;
unsigned int uNodeIndex;
if (!BSSDBbIsSTAInNodeDB(pMgmt, param->sta_addr, &uNodeIndex)) {
@ -304,7 +304,7 @@ static int hostap_get_info_sta(PSDevice pDevice,
struct viawget_hostapd_param *param)
{
PSMgmtObject pMgmt = pDevice->pMgmt;
UINT uNodeIndex;
unsigned int uNodeIndex;
if (BSSDBbIsSTAInNodeDB(pMgmt, param->sta_addr, &uNodeIndex)) {
param->u.get_info_sta.inactive_sec =
@ -338,7 +338,7 @@ static int hostap_reset_txexc_sta(PSDevice pDevice,
struct viawget_hostapd_param *param)
{
PSMgmtObject pMgmt = pDevice->pMgmt;
UINT uNodeIndex;
unsigned int uNodeIndex;
if (BSSDBbIsSTAInNodeDB(pMgmt, param->sta_addr, &uNodeIndex)) {
pMgmt->sNodeDBTable[uNodeIndex].uTxAttempts = 0;
@ -368,13 +368,13 @@ static int hostap_set_flags_sta(PSDevice pDevice,
struct viawget_hostapd_param *param)
{
PSMgmtObject pMgmt = pDevice->pMgmt;
UINT uNodeIndex;
unsigned int uNodeIndex;
if (BSSDBbIsSTAInNodeDB(pMgmt, param->sta_addr, &uNodeIndex)) {
pMgmt->sNodeDBTable[uNodeIndex].dwFlags |= param->u.set_flags_sta.flags_or;
pMgmt->sNodeDBTable[uNodeIndex].dwFlags &= param->u.set_flags_sta.flags_and;
DBG_PRT(MSG_LEVEL_DEBUG, KERN_INFO " dwFlags = %x \n",
(UINT)pMgmt->sNodeDBTable[uNodeIndex].dwFlags);
(unsigned int)pMgmt->sNodeDBTable[uNodeIndex].dwFlags);
}
else {
return -ENOENT;

Просмотреть файл

@ -70,10 +70,10 @@ int private_ioctl(PSDevice pDevice, struct ifreq *rq) {
SNodeList sNodeList;
PSBSSIDList pList;
PSNodeList pNodeList;
UINT cbListCount;
unsigned int cbListCount;
PKnownBSS pBSS;
PKnownNodeDB pNode;
UINT ii, jj;
unsigned int ii, jj;
SCmdLinkStatus sLinkStatus;
BYTE abySuppRates[] = {WLAN_EID_SUPP_RATES, 4, 0x02, 0x04, 0x0B, 0x16};
BYTE abyNullAddr[] = {0x00, 0x00, 0x00, 0x00, 0x00, 0x00};
@ -341,7 +341,7 @@ int private_ioctl(PSDevice pDevice, struct ifreq *rq) {
pList->sBSSIDList[ii].wCapInfo = pBSS->wCapInfo;
// pList->sBSSIDList[ii].uRSSI = pBSS->uRSSI;
RFvRSSITodBm(pDevice, (BYTE)(pBSS->uRSSI), &ldBm);
pList->sBSSIDList[ii].uRSSI = (UINT)ldBm;
pList->sBSSIDList[ii].uRSSI = (unsigned int)ldBm;
memcpy(pList->sBSSIDList[ii].abyBSSID, pBSS->abyBSSID, WLAN_BSSID_LEN);
pItemSSID = (PWLAN_IE_SSID)pBSS->abySSID;
memset(pList->sBSSIDList[ii].abySSID, 0, WLAN_SSID_MAXLEN + 1);

Просмотреть файл

@ -714,7 +714,7 @@ if (pMgmt->eScanState == WMAC_IS_SCANNING) {
//mike add: if desired AP is hidden ssid(there are two same BSSID in list),
// then ignore,because you don't known which one to be connect with??
{
UINT ii , uSameBssidNum=0;
unsigned int ii , uSameBssidNum=0;
for (ii = 0; ii < MAX_BSS_NUM; ii++) {
if (pMgmt->sBSSList[ii].bActive &&
!compare_ether_addr(pMgmt->sBSSList[ii].abyBSSID, pMgmt->abyDesireBSSID)) {
@ -886,7 +886,7 @@ if (pMgmt->eScanState == WMAC_IS_SCANNING) {
{
PKnownBSS pCurr = NULL;
BYTE abyTmpDesireSSID[WLAN_IEHDR_LEN + WLAN_SSID_MAXLEN + 1];
UINT ii , uSameBssidNum=0;
unsigned int ii , uSameBssidNum=0;
memcpy(abyTmpDesireSSID,pMgmt->abyDesireSSID,sizeof(abyTmpDesireSSID));
pCurr = BSSpSearchBSSList(pDevice,
@ -1515,7 +1515,7 @@ int iwctl_giwencode(struct net_device *dev,
PSMgmtObject pMgmt = &(pDevice->sMgmtObj);
int rc = 0;
char abyKey[WLAN_WEP232_KEYLEN];
UINT index = (UINT)(wrq->flags & IW_ENCODE_INDEX);
unsigned int index = (unsigned int)(wrq->flags & IW_ENCODE_INDEX);
PSKeyItem pKey = NULL;
DBG_PRT(MSG_LEVEL_DEBUG, KERN_INFO " SIOCGIWENCODE\n");
@ -1584,7 +1584,7 @@ int iwctl_giwencode(struct net_device *dev,
PSMgmtObject pMgmt = &(pDevice->sMgmtObj);
char abyKey[WLAN_WEP232_KEYLEN];
UINT index = (UINT)(wrq->flags & IW_ENCODE_INDEX);
unsigned int index = (unsigned int)(wrq->flags & IW_ENCODE_INDEX);
PSKeyItem pKey = NULL;
DBG_PRT(MSG_LEVEL_DEBUG, KERN_INFO " SIOCGIWENCODE\n");

Просмотреть файл

@ -202,9 +202,9 @@ BOOL KeybSetKey (
)
{
int i,j;
UINT ii;
unsigned int ii;
PSKeyItem pKey;
UINT uKeyIdx;
unsigned int uKeyIdx;
DBG_PRT(MSG_LEVEL_DEBUG, KERN_INFO"Enter KeybSetKey: %lX\n", dwKeyIndex);
@ -642,9 +642,9 @@ BOOL KeybSetDefaultKey (
BYTE byLocalID
)
{
UINT ii;
unsigned int ii;
PSKeyItem pKey;
UINT uKeyIdx;
unsigned int uKeyIdx;
DBG_PRT(MSG_LEVEL_DEBUG, KERN_INFO"Enter KeybSetDefaultKey: %1x, %d \n", (int)dwKeyIndex, (int)uKeyLength);
@ -750,9 +750,9 @@ BOOL KeybSetAllGroupKey (
)
{
int i;
UINT ii;
unsigned int ii;
PSKeyItem pKey;
UINT uKeyIdx;
unsigned int uKeyIdx;
DBG_PRT(MSG_LEVEL_DEBUG, KERN_INFO"Enter KeybSetAllGroupKey: %lX\n", dwKeyIndex);

Просмотреть файл

@ -209,7 +209,7 @@ BOOL MACbIsIntDisable (DWORD_PTR dwIoBase)
* Return Value: Mask Value read
*
*/
BYTE MACbyReadMultiAddr (DWORD_PTR dwIoBase, UINT uByteIdx)
BYTE MACbyReadMultiAddr (DWORD_PTR dwIoBase, unsigned int uByteIdx)
{
BYTE byData;
@ -234,7 +234,7 @@ BYTE MACbyReadMultiAddr (DWORD_PTR dwIoBase, UINT uByteIdx)
* Return Value: none
*
*/
void MACvWriteMultiAddr (DWORD_PTR dwIoBase, UINT uByteIdx, BYTE byData)
void MACvWriteMultiAddr (DWORD_PTR dwIoBase, unsigned int uByteIdx, BYTE byData)
{
MACvSelectPage1(dwIoBase);
VNSvOutPortB(dwIoBase + MAC_REG_MAR0 + uByteIdx, byData);
@ -257,7 +257,7 @@ void MACvWriteMultiAddr (DWORD_PTR dwIoBase, UINT uByteIdx, BYTE byData)
*/
void MACvSetMultiAddrByHash (DWORD_PTR dwIoBase, BYTE byHashIdx)
{
UINT uByteIdx;
unsigned int uByteIdx;
BYTE byBitMask;
BYTE byOrgValue;
@ -288,7 +288,7 @@ void MACvSetMultiAddrByHash (DWORD_PTR dwIoBase, BYTE byHashIdx)
*/
void MACvResetMultiAddrByHash (DWORD_PTR dwIoBase, BYTE byHashIdx)
{
UINT uByteIdx;
unsigned int uByteIdx;
BYTE byBitMask;
BYTE byOrgValue;
@ -1244,10 +1244,10 @@ void MACvSetCurrTXDescAddr (int iTxType, DWORD_PTR dwIoBase, DWORD dwCurrDescAdd
* Return Value: none
*
*/
void MACvTimer0MicroSDelay (DWORD_PTR dwIoBase, UINT uDelay)
void MACvTimer0MicroSDelay (DWORD_PTR dwIoBase, unsigned int uDelay)
{
BYTE byValue;
UINT uu,ii;
unsigned int uu,ii;
VNSvOutPortB(dwIoBase + MAC_REG_TMCTL0, 0);
VNSvOutPortD(dwIoBase + MAC_REG_TMDATA0, uDelay);
@ -1280,7 +1280,7 @@ UINT uu,ii;
* Return Value: none
*
*/
void MACvOneShotTimer0MicroSec (DWORD_PTR dwIoBase, UINT uDelayTime)
void MACvOneShotTimer0MicroSec (DWORD_PTR dwIoBase, unsigned int uDelayTime)
{
VNSvOutPortB(dwIoBase + MAC_REG_TMCTL0, 0);
VNSvOutPortD(dwIoBase + MAC_REG_TMDATA0, uDelayTime);
@ -1301,7 +1301,7 @@ void MACvOneShotTimer0MicroSec (DWORD_PTR dwIoBase, UINT uDelayTime)
* Return Value: none
*
*/
void MACvOneShotTimer1MicroSec (DWORD_PTR dwIoBase, UINT uDelayTime)
void MACvOneShotTimer1MicroSec (DWORD_PTR dwIoBase, unsigned int uDelayTime)
{
VNSvOutPortB(dwIoBase + MAC_REG_TMCTL1, 0);
VNSvOutPortD(dwIoBase + MAC_REG_TMDATA1, uDelayTime);
@ -1319,10 +1319,10 @@ void MACvSetMISCFifo (DWORD_PTR dwIoBase, WORD wOffset, DWORD dwData)
}
BOOL MACbTxDMAOff (DWORD_PTR dwIoBase, UINT idx)
BOOL MACbTxDMAOff (DWORD_PTR dwIoBase, unsigned int idx)
{
BYTE byData;
UINT ww = 0;
unsigned int ww = 0;
if (idx == TYPE_TXDMA0) {
VNSvOutPortB(dwIoBase + MAC_REG_TXDMACTL0+2, DMACTL_RUN);
@ -1350,7 +1350,7 @@ UINT ww = 0;
void MACvClearBusSusInd (DWORD_PTR dwIoBase)
{
DWORD dwOrgValue;
UINT ww;
unsigned int ww;
// check if BcnSusInd enabled
VNSvInPortD(dwIoBase + MAC_REG_ENCFG , &dwOrgValue);
if( !(dwOrgValue & EnCFG_BcnSusInd))
@ -1373,7 +1373,7 @@ void MACvEnableBusSusEn (DWORD_PTR dwIoBase)
{
BYTE byOrgValue;
DWORD dwOrgValue;
UINT ww;
unsigned int ww;
// check if BcnSusInd enabled
VNSvInPortB(dwIoBase + MAC_REG_CFG , &byOrgValue);
@ -1394,7 +1394,7 @@ void MACvEnableBusSusEn (DWORD_PTR dwIoBase)
BOOL MACbFlushSYNCFifo (DWORD_PTR dwIoBase)
{
BYTE byOrgValue;
UINT ww;
unsigned int ww;
// Read MACCR
VNSvInPortB(dwIoBase + MAC_REG_MACCR , &byOrgValue);
@ -1418,7 +1418,7 @@ BOOL MACbFlushSYNCFifo (DWORD_PTR dwIoBase)
BOOL MACbPSWakeup (DWORD_PTR dwIoBase)
{
BYTE byOrgValue;
UINT ww;
unsigned int ww;
// Read PSCTL
if (MACbIsRegBitsOff(dwIoBase, MAC_REG_PSCTL, PSCTL_PS)) {
return TRUE;
@ -1455,7 +1455,8 @@ BOOL MACbPSWakeup (DWORD_PTR dwIoBase)
*
*/
void MACvSetKeyEntry (DWORD_PTR dwIoBase, WORD wKeyCtl, UINT uEntryIdx, UINT uKeyIdx, PBYTE pbyAddr, PDWORD pdwKey, BYTE byLocalID)
void MACvSetKeyEntry (DWORD_PTR dwIoBase, WORD wKeyCtl, unsigned int uEntryIdx,
unsigned int uKeyIdx, PBYTE pbyAddr, PDWORD pdwKey, BYTE byLocalID)
{
WORD wOffset;
DWORD dwData;
@ -1521,7 +1522,7 @@ int ii;
* Return Value: none
*
*/
void MACvDisableKeyEntry (DWORD_PTR dwIoBase, UINT uEntryIdx)
void MACvDisableKeyEntry (DWORD_PTR dwIoBase, unsigned int uEntryIdx)
{
WORD wOffset;
@ -1549,7 +1550,8 @@ WORD wOffset;
*
*/
void MACvSetDefaultKeyEntry (DWORD_PTR dwIoBase, UINT uKeyLen, UINT uKeyIdx, PDWORD pdwKey, BYTE byLocalID)
void MACvSetDefaultKeyEntry (DWORD_PTR dwIoBase, unsigned int uKeyLen,
unsigned int uKeyIdx, PDWORD pdwKey, BYTE byLocalID)
{
WORD wOffset;
DWORD dwData;
@ -1664,7 +1666,8 @@ DWORD dwData;
* Return Value: none
*
*/
void MACvSetDefaultTKIPKeyEntry (DWORD_PTR dwIoBase, UINT uKeyLen, UINT uKeyIdx, PDWORD pdwKey, BYTE byLocalID)
void MACvSetDefaultTKIPKeyEntry (DWORD_PTR dwIoBase, unsigned int uKeyLen,
unsigned int uKeyIdx, PDWORD pdwKey, BYTE byLocalID)
{
WORD wOffset;
DWORD dwData;
@ -1720,7 +1723,7 @@ int ii;
*
*/
void MACvSetDefaultKeyCtl (DWORD_PTR dwIoBase, WORD wKeyCtl, UINT uEntryIdx, BYTE byLocalID)
void MACvSetDefaultKeyCtl (DWORD_PTR dwIoBase, WORD wKeyCtl, unsigned int uEntryIdx, BYTE byLocalID)
{
WORD wOffset;
DWORD dwData;

Просмотреть файл

@ -1082,8 +1082,8 @@ BOOL MACbIsRegBitsOff(DWORD_PTR dwIoBase, BYTE byRegOfs, BYTE byTestBits);
BOOL MACbIsIntDisable(DWORD_PTR dwIoBase);
BYTE MACbyReadMultiAddr(DWORD_PTR dwIoBase, UINT uByteIdx);
void MACvWriteMultiAddr(DWORD_PTR dwIoBase, UINT uByteIdx, BYTE byData);
BYTE MACbyReadMultiAddr(DWORD_PTR dwIoBase, unsigned int uByteIdx);
void MACvWriteMultiAddr(DWORD_PTR dwIoBase, unsigned int uByteIdx, BYTE byData);
void MACvSetMultiAddrByHash(DWORD_PTR dwIoBase, BYTE byHashIdx);
void MACvResetMultiAddrByHash(DWORD_PTR dwIoBase, BYTE byHashIdx);
@ -1125,13 +1125,13 @@ void MACvSetCurrTx0DescAddrEx(DWORD_PTR dwIoBase, DWORD dwCurrDescAddr);
void MACvSetCurrAC0DescAddrEx(DWORD_PTR dwIoBase, DWORD dwCurrDescAddr);
void MACvSetCurrSyncDescAddrEx(DWORD_PTR dwIoBase, DWORD dwCurrDescAddr);
void MACvSetCurrATIMDescAddrEx(DWORD_PTR dwIoBase, DWORD dwCurrDescAddr);
void MACvTimer0MicroSDelay(DWORD_PTR dwIoBase, UINT uDelay);
void MACvOneShotTimer0MicroSec(DWORD_PTR dwIoBase, UINT uDelayTime);
void MACvOneShotTimer1MicroSec(DWORD_PTR dwIoBase, UINT uDelayTime);
void MACvTimer0MicroSDelay(DWORD_PTR dwIoBase, unsigned int uDelay);
void MACvOneShotTimer0MicroSec(DWORD_PTR dwIoBase, unsigned int uDelayTime);
void MACvOneShotTimer1MicroSec(DWORD_PTR dwIoBase, unsigned int uDelayTime);
void MACvSetMISCFifo(DWORD_PTR dwIoBase, WORD wOffset, DWORD dwData);
BOOL MACbTxDMAOff (DWORD_PTR dwIoBase, UINT idx);
BOOL MACbTxDMAOff (DWORD_PTR dwIoBase, unsigned int idx);
void MACvClearBusSusInd(DWORD_PTR dwIoBase);
void MACvEnableBusSusEn(DWORD_PTR dwIoBase);
@ -1139,13 +1139,16 @@ void MACvEnableBusSusEn(DWORD_PTR dwIoBase);
BOOL MACbFlushSYNCFifo(DWORD_PTR dwIoBase);
BOOL MACbPSWakeup(DWORD_PTR dwIoBase);
void MACvSetKeyEntry(DWORD_PTR dwIoBase, WORD wKeyCtl, UINT uEntryIdx, UINT uKeyIdx, PBYTE pbyAddr, PDWORD pdwKey, BYTE byLocalID);
void MACvDisableKeyEntry(DWORD_PTR dwIoBase, UINT uEntryIdx);
void MACvSetDefaultKeyEntry(DWORD_PTR dwIoBase, UINT uKeyLen, UINT uKeyIdx, PDWORD pdwKey, BYTE byLocalID);
void MACvSetKeyEntry(DWORD_PTR dwIoBase, WORD wKeyCtl, unsigned int uEntryIdx,
unsigned int uKeyIdx, PBYTE pbyAddr, PDWORD pdwKey, BYTE byLocalID);
void MACvDisableKeyEntry(DWORD_PTR dwIoBase, unsigned int uEntryIdx);
void MACvSetDefaultKeyEntry(DWORD_PTR dwIoBase, unsigned int uKeyLen,
unsigned int uKeyIdx, PDWORD pdwKey, BYTE byLocalID);
//void MACvEnableDefaultKey(DWORD_PTR dwIoBase, BYTE byLocalID);
void MACvDisableDefaultKey(DWORD_PTR dwIoBase);
void MACvSetDefaultTKIPKeyEntry(DWORD_PTR dwIoBase, UINT uKeyLen, UINT uKeyIdx, PDWORD pdwKey, BYTE byLocalID);
void MACvSetDefaultKeyCtl(DWORD_PTR dwIoBase, WORD wKeyCtl, UINT uEntryIdx, BYTE byLocalID);
void MACvSetDefaultTKIPKeyEntry(DWORD_PTR dwIoBase, unsigned int uKeyLen,
unsigned int uKeyIdx, PDWORD pdwKey, BYTE byLocalID);
void MACvSetDefaultKeyCtl(DWORD_PTR dwIoBase, WORD wKeyCtl, unsigned int uEntryIdx, BYTE byLocalID);
#endif // __MAC_H__

Просмотреть файл

@ -178,7 +178,7 @@ void STAvUpdateIsrStatCounter (PSStatCounter pStatistic, DWORD dwIsr)
*/
void STAvUpdateRDStatCounter (PSStatCounter pStatistic,
BYTE byRSR, BYTE byNewRSR, BYTE byRxRate,
PBYTE pbyBuffer, UINT cbFrameLength)
PBYTE pbyBuffer, unsigned int cbFrameLength)
{
//need change
PS802_11Header pHeader = (PS802_11Header)pbyBuffer;
@ -393,7 +393,7 @@ STAvUpdateRDStatCounterEx (
BYTE byNewRSR,
BYTE byRxRate,
PBYTE pbyBuffer,
UINT cbFrameLength
unsigned int cbFrameLength
)
{
STAvUpdateRDStatCounter(
@ -435,8 +435,8 @@ STAvUpdateTDStatCounter (
BYTE byTSR0,
BYTE byTSR1,
PBYTE pbyBuffer,
UINT cbFrameLength,
UINT uIdx
unsigned int cbFrameLength,
unsigned int uIdx
)
{
PWLAN_80211HDR_A4 pHeader;
@ -526,9 +526,9 @@ STAvUpdateTDStatCounterEx (
DWORD cbFrameLength
)
{
UINT uPktLength;
unsigned int uPktLength;
uPktLength = (UINT)cbFrameLength;
uPktLength = (unsigned int)cbFrameLength;
// tx length
pStatistic->dwCntTxBufLength = uPktLength;

Просмотреть файл

@ -301,7 +301,7 @@ typedef struct tagSStatCounter {
DWORD dwCntRxDataErr; // rx buffer data software compare CRC err count
DWORD dwCntDecryptErr; // rx buffer data software compare CRC err count
DWORD dwCntRxICVErr; // rx buffer data software compare CRC err count
UINT idxRxErrorDesc[TYPE_MAXRD]; // index for rx data error RD
unsigned int idxRxErrorDesc[TYPE_MAXRD]; // index for rx data error RD
// 64-bit OID
ULONGLONG ullTsrOK[TYPE_MAXTD];
@ -348,15 +348,14 @@ void STAvUpdateIsrStatCounter(PSStatCounter pStatistic, DWORD dwIsr);
void STAvUpdateRDStatCounter(PSStatCounter pStatistic,
BYTE byRSR, BYTE byNewRSR, BYTE byRxRate,
PBYTE pbyBuffer, UINT cbFrameLength);
PBYTE pbyBuffer, unsigned int cbFrameLength);
void STAvUpdateRDStatCounterEx(PSStatCounter pStatistic,
BYTE byRSR, BYTE byNewRsr, BYTE byRxRate,
PBYTE pbyBuffer, UINT cbFrameLength);
PBYTE pbyBuffer, unsigned int cbFrameLength);
void STAvUpdateTDStatCounter(PSStatCounter pStatistic,
BYTE byTSR0, BYTE byTSR1,
PBYTE pbyBuffer, UINT cbFrameLength, UINT uIdx );
void STAvUpdateTDStatCounter(PSStatCounter pStatistic, BYTE byTSR0, BYTE byTSR1,
PBYTE pbyBuffer, unsigned int cbFrameLength, unsigned int uIdx);
void STAvUpdateTDStatCounterEx(
PSStatCounter pStatistic,

Просмотреть файл

@ -61,7 +61,7 @@ static DWORD L, R; // Current state
static DWORD K0, K1; // Key
static DWORD M; // Message accumulator (single word)
static UINT nBytesInM; // # bytes in M
static unsigned int nBytesInM; // # bytes in M
/*--------------------- Export Functions --------------------------*/
@ -70,7 +70,7 @@ static DWORD s_dwGetUINT32 (BYTE * p)
// Convert from BYTE[] to DWORD in a portable way
{
DWORD res = 0;
UINT i;
unsigned int i;
for(i=0; i<4; i++ )
{
res |= (*p++) << (8*i);
@ -81,7 +81,7 @@ static DWORD s_dwGetUINT32 (BYTE * p)
static void s_vPutUINT32 (BYTE* p, DWORD val)
// Convert from DWORD to BYTE[] in a portable way
{
UINT i;
unsigned int i;
for(i=0; i<4; i++ )
{
*p++ = (BYTE) (val & 0xff);
@ -149,7 +149,7 @@ void MIC_vUnInit (void)
s_vClear();
}
void MIC_vAppend (PBYTE src, UINT nBytes)
void MIC_vAppend (PBYTE src, unsigned int nBytes)
{
// This is simple
while (nBytes > 0)

Просмотреть файл

@ -40,7 +40,7 @@ void MIC_vInit(DWORD dwK0, DWORD dwK1);
void MIC_vUnInit(void);
// Append bytes to the message to be MICed
void MIC_vAppend(PBYTE src, UINT nBytes);
void MIC_vAppend(PBYTE src, unsigned int nBytes);
// Get the MIC result. Destination should accept 8 bytes of result.
// This also resets the message to empty.

Просмотреть файл

@ -191,7 +191,7 @@ PSbConsiderPowerDown(
{
PSDevice pDevice = (PSDevice)hDeviceContext;
PSMgmtObject pMgmt = pDevice->pMgmt;
UINT uIdx;
unsigned int uIdx;
// check if already in Doze mode
if (MACbIsRegBitsOn(pDevice->PortOffset, MAC_REG_PSCTL, PSCTL_PS))
@ -304,7 +304,7 @@ PSbSendNullPacket(
PSDevice pDevice = (PSDevice)hDeviceContext;
PSTxMgmtPacket pTxPacket = NULL;
PSMgmtObject pMgmt = pDevice->pMgmt;
UINT uIdx;
unsigned int uIdx;
if (pDevice->bLinkPass == FALSE) {

Просмотреть файл

@ -32,13 +32,13 @@
#include "rc4.h"
void rc4_init(PRC4Ext pRC4, PBYTE pbyKey, UINT cbKey_len)
void rc4_init(PRC4Ext pRC4, PBYTE pbyKey, unsigned int cbKey_len)
{
UINT ust1, ust2;
UINT keyindex;
UINT stateindex;
unsigned int ust1, ust2;
unsigned int keyindex;
unsigned int stateindex;
PBYTE pbyst;
UINT idx;
unsigned int idx;
pbyst = pRC4->abystate;
pRC4->ux = 0;
@ -58,11 +58,11 @@ void rc4_init(PRC4Ext pRC4, PBYTE pbyKey, UINT cbKey_len)
}
}
UINT rc4_byte(PRC4Ext pRC4)
unsigned int rc4_byte(PRC4Ext pRC4)
{
UINT ux;
UINT uy;
UINT ustx, usty;
unsigned int ux;
unsigned int uy;
unsigned int ustx, usty;
PBYTE pbyst;
pbyst = pRC4->abystate;
@ -79,9 +79,9 @@ UINT rc4_byte(PRC4Ext pRC4)
}
void rc4_encrypt(PRC4Ext pRC4, PBYTE pbyDest,
PBYTE pbySrc, UINT cbData_len)
PBYTE pbySrc, unsigned int cbData_len)
{
UINT ii;
unsigned int ii;
for (ii = 0; ii < cbData_len; ii++)
pbyDest[ii] = (BYTE)(pbySrc[ii] ^ rc4_byte(pRC4));
}

Просмотреть файл

@ -35,13 +35,13 @@
/*--------------------- Export Definitions -------------------------*/
/*--------------------- Export Types ------------------------------*/
typedef struct {
UINT ux;
UINT uy;
unsigned int ux;
unsigned int uy;
BYTE abystate[256];
} RC4Ext, *PRC4Ext;
void rc4_init(PRC4Ext pRC4, PBYTE pbyKey, UINT cbKey_len);
UINT rc4_byte(PRC4Ext pRC4);
void rc4_encrypt(PRC4Ext pRC4, PBYTE pbyDest, PBYTE pbySrc, UINT cbData_len);
void rc4_init(PRC4Ext pRC4, PBYTE pbyKey, unsigned int cbKey_len);
unsigned int rc4_byte(PRC4Ext pRC4);
void rc4_encrypt(PRC4Ext pRC4, PBYTE pbyDest, PBYTE pbySrc, unsigned int cbData_len);
#endif //__RC4_H__

Просмотреть файл

@ -911,7 +911,7 @@ BOOL bResult = TRUE;
* Return Value: None.
*
*/
BOOL RFvWriteWakeProgSyn (DWORD_PTR dwIoBase, BYTE byRFType, UINT uChannel)
BOOL RFvWriteWakeProgSyn (DWORD_PTR dwIoBase, BYTE byRFType, unsigned int uChannel)
{
int ii;
BYTE byInitCount = 0;
@ -998,8 +998,8 @@ BOOL RFvWriteWakeProgSyn (DWORD_PTR dwIoBase, BYTE byRFType, UINT uChannel)
*/
BOOL RFbSetPower (
PSDevice pDevice,
UINT uRATE,
UINT uCH
unsigned int uRATE,
unsigned int uCH
)
{
BOOL bResult = TRUE;
@ -1138,7 +1138,7 @@ BYTE byPwrdBm = 0;
BOOL RFbRawSetPower (
PSDevice pDevice,
BYTE byPwr,
UINT uRATE
unsigned int uRATE
)
{
BOOL bResult = TRUE;

Просмотреть файл

@ -81,12 +81,12 @@ BOOL RFbSelectChannel(DWORD_PTR dwIoBase, BYTE byRFType, BYTE byChannel);
BOOL RFbInit (
PSDevice pDevice
);
BOOL RFvWriteWakeProgSyn(DWORD_PTR dwIoBase, BYTE byRFType, UINT uChannel);
BOOL RFbSetPower(PSDevice pDevice, UINT uRATE, UINT uCH);
BOOL RFvWriteWakeProgSyn(DWORD_PTR dwIoBase, BYTE byRFType, unsigned int uChannel);
BOOL RFbSetPower(PSDevice pDevice, unsigned int uRATE, unsigned int uCH);
BOOL RFbRawSetPower(
PSDevice pDevice,
BYTE byPwr,
UINT uRATE
unsigned int uRATE
);
void

Просмотреть файл

@ -134,7 +134,7 @@ s_vFillRTSHead(
PSDevice pDevice,
BYTE byPktType,
void * pvRTS,
UINT cbFrameLength,
unsigned int cbFrameLength,
BOOL bNeedAck,
BOOL bDisCRC,
PSEthernetHeader psEthHeader,
@ -151,9 +151,9 @@ s_vGenerateTxParameter(
void * pvRrvTime,
void * pvRTS,
void * pvCTS,
UINT cbFrameSize,
unsigned int cbFrameSize,
BOOL bNeedACK,
UINT uDMAIdx,
unsigned int uDMAIdx,
PSEthernetHeader psEthHeader,
WORD wCurrentRate
);
@ -163,43 +163,43 @@ s_vGenerateTxParameter(
static void s_vFillFragParameter(
PSDevice pDevice,
PBYTE pbyBuffer,
UINT uTxType,
unsigned int uTxType,
void * pvtdCurr,
WORD wFragType,
UINT cbReqCount
unsigned int cbReqCount
);
static
UINT
unsigned int
s_cbFillTxBufHead (
PSDevice pDevice,
BYTE byPktType,
PBYTE pbyTxBufferAddr,
UINT cbFrameBodySize,
UINT uDMAIdx,
unsigned int cbFrameBodySize,
unsigned int uDMAIdx,
PSTxDesc pHeadTD,
PSEthernetHeader psEthHeader,
PBYTE pPacket,
BOOL bNeedEncrypt,
PSKeyItem pTransmitKey,
UINT uNodeIndex,
unsigned int uNodeIndex,
PUINT puMACfragNum
);
static
UINT
unsigned int
s_uFillDataHead (
PSDevice pDevice,
BYTE byPktType,
void * pTxDataHead,
UINT cbFrameLength,
UINT uDMAIdx,
unsigned int cbFrameLength,
unsigned int uDMAIdx,
BOOL bNeedAck,
UINT uFragIdx,
UINT cbLastFragmentSize,
UINT uMACfragNum,
unsigned int uFragIdx,
unsigned int cbLastFragmentSize,
unsigned int uMACfragNum,
BYTE byFBOption,
WORD wCurrentRate
);
@ -336,7 +336,7 @@ s_vSWencryption (
WORD wPayloadSize
)
{
UINT cbICVlen = 4;
unsigned int cbICVlen = 4;
DWORD dwICV = 0xFFFFFFFFL;
PDWORD pdwICV;
@ -377,16 +377,16 @@ s_vSWencryption (
PK_TYPE_11GA 3
*/
static
UINT
unsigned int
s_uGetTxRsvTime (
PSDevice pDevice,
BYTE byPktType,
UINT cbFrameLength,
unsigned int cbFrameLength,
WORD wRate,
BOOL bNeedAck
)
{
UINT uDataTime, uAckTime;
unsigned int uDataTime, uAckTime;
uDataTime = BBuGetFrameTime(pDevice->byPreambleType, byPktType, cbFrameLength, wRate);
#ifdef PLICE_DEBUG
@ -408,16 +408,16 @@ s_uGetTxRsvTime (
//byFreqType: 0=>5GHZ 1=>2.4GHZ
static
UINT
unsigned int
s_uGetRTSCTSRsvTime (
PSDevice pDevice,
BYTE byRTSRsvType,
BYTE byPktType,
UINT cbFrameLength,
unsigned int cbFrameLength,
WORD wCurrentRate
)
{
UINT uRrvTime , uRTSTime, uCTSTime, uAckTime, uDataTime;
unsigned int uRrvTime , uRTSTime, uCTSTime, uAckTime, uDataTime;
uRrvTime = uRTSTime = uCTSTime = uAckTime = uDataTime = 0;
@ -450,22 +450,22 @@ s_uGetRTSCTSRsvTime (
//byFreqType 0: 5GHz, 1:2.4Ghz
static
UINT
unsigned int
s_uGetDataDuration (
PSDevice pDevice,
BYTE byDurType,
UINT cbFrameLength,
unsigned int cbFrameLength,
BYTE byPktType,
WORD wRate,
BOOL bNeedAck,
UINT uFragIdx,
UINT cbLastFragmentSize,
UINT uMACfragNum,
unsigned int uFragIdx,
unsigned int cbLastFragmentSize,
unsigned int uMACfragNum,
BYTE byFBOption
)
{
BOOL bLastFrag = 0;
UINT uAckTime =0, uNextPktTime = 0;
unsigned int uAckTime =0, uNextPktTime = 0;
@ -621,18 +621,18 @@ s_uGetDataDuration (
//byFreqType: 0=>5GHZ 1=>2.4GHZ
static
UINT
unsigned int
s_uGetRTSCTSDuration (
PSDevice pDevice,
BYTE byDurType,
UINT cbFrameLength,
unsigned int cbFrameLength,
BYTE byPktType,
WORD wRate,
BOOL bNeedAck,
BYTE byFBOption
)
{
UINT uCTSTime = 0, uDurTime = 0;
unsigned int uCTSTime = 0, uDurTime = 0;
switch (byDurType) {
@ -719,17 +719,17 @@ s_uGetRTSCTSDuration (
static
UINT
unsigned int
s_uFillDataHead (
PSDevice pDevice,
BYTE byPktType,
void * pTxDataHead,
UINT cbFrameLength,
UINT uDMAIdx,
unsigned int cbFrameLength,
unsigned int uDMAIdx,
BOOL bNeedAck,
UINT uFragIdx,
UINT cbLastFragmentSize,
UINT uMACfragNum,
unsigned int uFragIdx,
unsigned int cbLastFragmentSize,
unsigned int uMACfragNum,
BYTE byFBOption,
WORD wCurrentRate
)
@ -856,7 +856,7 @@ s_vFillRTSHead (
PSDevice pDevice,
BYTE byPktType,
void * pvRTS,
UINT cbFrameLength,
unsigned int cbFrameLength,
BOOL bNeedAck,
BOOL bDisCRC,
PSEthernetHeader psEthHeader,
@ -864,7 +864,7 @@ s_vFillRTSHead (
BYTE byFBOption
)
{
UINT uRTSFrameLen = 20;
unsigned int uRTSFrameLen = 20;
WORD wLen = 0x0000;
if (pvRTS == NULL)
@ -1048,17 +1048,17 @@ static
void
s_vFillCTSHead (
PSDevice pDevice,
UINT uDMAIdx,
unsigned int uDMAIdx,
BYTE byPktType,
void * pvCTS,
UINT cbFrameLength,
unsigned int cbFrameLength,
BOOL bNeedAck,
BOOL bDisCRC,
WORD wCurrentRate,
BYTE byFBOption
)
{
UINT uCTSFrameLen = 14;
unsigned int uCTSFrameLen = 14;
WORD wLen = 0x0000;
if (pvCTS == NULL) {
@ -1148,7 +1148,7 @@ s_vFillCTSHead (
* Return Value: none
*
-*/
// UINT cbFrameSize,//Hdr+Payload+FCS
// unsigned int cbFrameSize,//Hdr+Payload+FCS
static
void
s_vGenerateTxParameter (
@ -1158,14 +1158,14 @@ s_vGenerateTxParameter (
void * pvRrvTime,
void * pvRTS,
void * pvCTS,
UINT cbFrameSize,
unsigned int cbFrameSize,
BOOL bNeedACK,
UINT uDMAIdx,
unsigned int uDMAIdx,
PSEthernetHeader psEthHeader,
WORD wCurrentRate
)
{
UINT cbMACHdLen = WLAN_HDR_ADDR3_LEN; //24
unsigned int cbMACHdLen = WLAN_HDR_ADDR3_LEN; //24
WORD wFifoCtl;
BOOL bDisCRC = FALSE;
BYTE byFBOption = AUTO_FB_NONE;
@ -1265,17 +1265,17 @@ s_vGenerateTxParameter (
/*
PBYTE pbyBuffer,//point to pTxBufHead
WORD wFragType,//00:Non-Frag, 01:Start, 02:Mid, 03:Last
UINT cbFragmentSize,//Hdr+payoad+FCS
unsigned int cbFragmentSize,//Hdr+payoad+FCS
*/
static
void
s_vFillFragParameter(
PSDevice pDevice,
PBYTE pbyBuffer,
UINT uTxType,
unsigned int uTxType,
void * pvtdCurr,
WORD wFragType,
UINT cbReqCount
unsigned int cbReqCount
)
{
PSTxBufHead pTxBufHead = (PSTxBufHead) pbyBuffer;
@ -1316,57 +1316,57 @@ s_vFillFragParameter(
}
static
UINT
unsigned int
s_cbFillTxBufHead (
PSDevice pDevice,
BYTE byPktType,
PBYTE pbyTxBufferAddr,
UINT cbFrameBodySize,
UINT uDMAIdx,
unsigned int cbFrameBodySize,
unsigned int uDMAIdx,
PSTxDesc pHeadTD,
PSEthernetHeader psEthHeader,
PBYTE pPacket,
BOOL bNeedEncrypt,
PSKeyItem pTransmitKey,
UINT uNodeIndex,
unsigned int uNodeIndex,
PUINT puMACfragNum
)
{
UINT cbMACHdLen;
UINT cbFrameSize;
UINT cbFragmentSize; //Hdr+(IV)+payoad+(MIC)+(ICV)+FCS
UINT cbFragPayloadSize;
UINT cbLastFragmentSize; //Hdr+(IV)+payoad+(MIC)+(ICV)+FCS
UINT cbLastFragPayloadSize;
UINT uFragIdx;
unsigned int cbMACHdLen;
unsigned int cbFrameSize;
unsigned int cbFragmentSize; //Hdr+(IV)+payoad+(MIC)+(ICV)+FCS
unsigned int cbFragPayloadSize;
unsigned int cbLastFragmentSize; //Hdr+(IV)+payoad+(MIC)+(ICV)+FCS
unsigned int cbLastFragPayloadSize;
unsigned int uFragIdx;
PBYTE pbyPayloadHead;
PBYTE pbyIVHead;
PBYTE pbyMacHdr;
WORD wFragType; //00:Non-Frag, 01:Start, 10:Mid, 11:Last
UINT uDuration;
unsigned int uDuration;
PBYTE pbyBuffer;
// UINT uKeyEntryIdx = NUM_KEY_ENTRY+1;
// unsigned int uKeyEntryIdx = NUM_KEY_ENTRY+1;
// BYTE byKeySel = 0xFF;
UINT cbIVlen = 0;
UINT cbICVlen = 0;
UINT cbMIClen = 0;
UINT cbFCSlen = 4;
UINT cb802_1_H_len = 0;
UINT uLength = 0;
UINT uTmpLen = 0;
unsigned int cbIVlen = 0;
unsigned int cbICVlen = 0;
unsigned int cbMIClen = 0;
unsigned int cbFCSlen = 4;
unsigned int cb802_1_H_len = 0;
unsigned int uLength = 0;
unsigned int uTmpLen = 0;
// BYTE abyTmp[8];
// DWORD dwCRC;
UINT cbMICHDR = 0;
unsigned int cbMICHDR = 0;
DWORD dwMICKey0, dwMICKey1;
DWORD dwMIC_Priority;
PDWORD pdwMIC_L;
PDWORD pdwMIC_R;
DWORD dwSafeMIC_L, dwSafeMIC_R; //Fix "Last Frag Size" < "MIC length".
BOOL bMIC2Frag = FALSE;
UINT uMICFragLen = 0;
UINT uMACfragNum = 1;
UINT uPadding = 0;
UINT cbReqCount = 0;
unsigned int uMICFragLen = 0;
unsigned int uMACfragNum = 1;
unsigned int uPadding = 0;
unsigned int cbReqCount = 0;
BOOL bNeedACK;
BOOL bRTS;
@ -1374,15 +1374,15 @@ s_cbFillTxBufHead (
PBYTE pbyType;
PSTxDesc ptdCurr;
PSTxBufHead psTxBufHd = (PSTxBufHead) pbyTxBufferAddr;
// UINT tmpDescIdx;
UINT cbHeaderLength = 0;
// unsigned int tmpDescIdx;
unsigned int cbHeaderLength = 0;
void * pvRrvTime;
PSMICHDRHead pMICHDR;
void * pvRTS;
void * pvCTS;
void * pvTxDataHd;
WORD wTxBufSize; // FFinfo size
UINT uTotalCopyLength = 0;
unsigned int uTotalCopyLength = 0;
BYTE byFBOption = AUTO_FB_NONE;
BOOL bIsWEP256 = FALSE;
PSMgmtObject pMgmt = pDevice->pMgmt;
@ -2099,18 +2099,18 @@ vGenerateFIFOHeader (
BYTE byPktType,
PBYTE pbyTxBufferAddr,
BOOL bNeedEncrypt,
UINT cbPayloadSize,
UINT uDMAIdx,
unsigned int cbPayloadSize,
unsigned int uDMAIdx,
PSTxDesc pHeadTD,
PSEthernetHeader psEthHeader,
PBYTE pPacket,
PSKeyItem pTransmitKey,
UINT uNodeIndex,
unsigned int uNodeIndex,
PUINT puMACfragNum,
PUINT pcbHeaderSize
)
{
UINT wTxBufSize; // FFinfo size
unsigned int wTxBufSize; // FFinfo size
BOOL bNeedACK;
BOOL bIsAdhoc;
WORD cbMacHdLen;
@ -2272,8 +2272,8 @@ vGenerateMACHeader (
PSEthernetHeader psEthHeader,
BOOL bNeedEncrypt,
WORD wFragType,
UINT uDMAIdx,
UINT uFragIdx
unsigned int uDMAIdx,
unsigned int uFragIdx
)
{
PS802_11Header pMACHeader = (PS802_11Header)pbyBufferAddr;
@ -2345,22 +2345,22 @@ CMD_STATUS csMgmt_xmit(PSDevice pDevice, PSTxMgmtPacket pPacket) {
void * pvRTS;
PSCTS pCTS;
void * pvTxDataHd;
UINT uDuration;
UINT cbReqCount;
unsigned int uDuration;
unsigned int cbReqCount;
PS802_11Header pMACHeader;
UINT cbHeaderSize;
UINT cbFrameBodySize;
unsigned int cbHeaderSize;
unsigned int cbFrameBodySize;
BOOL bNeedACK;
BOOL bIsPSPOLL = FALSE;
PSTxBufHead pTxBufHead;
UINT cbFrameSize;
UINT cbIVlen = 0;
UINT cbICVlen = 0;
UINT cbMIClen = 0;
UINT cbFCSlen = 4;
UINT uPadding = 0;
unsigned int cbFrameSize;
unsigned int cbIVlen = 0;
unsigned int cbICVlen = 0;
unsigned int cbMIClen = 0;
unsigned int cbFCSlen = 4;
unsigned int uPadding = 0;
WORD wTxBufSize;
UINT cbMacHdLen;
unsigned int cbMacHdLen;
SEthernetHeader sEthHeader;
void * pvRrvTime;
void * pMICHDR;
@ -2663,8 +2663,8 @@ CMD_STATUS csBeacon_xmit(PSDevice pDevice, PSTxMgmtPacket pPacket) {
BYTE byPktType;
PBYTE pbyBuffer = (PBYTE)pDevice->tx_beacon_bufs;
UINT cbFrameSize = pPacket->cbMPDULen + WLAN_FCS_LEN;
UINT cbHeaderSize = 0;
unsigned int cbFrameSize = pPacket->cbMPDULen + WLAN_FCS_LEN;
unsigned int cbHeaderSize = 0;
WORD wTxBufSize = sizeof(STxShortBufHead);
PSTxShortBufHead pTxBufHead = (PSTxShortBufHead) pbyBuffer;
PSTxDataHead_ab pTxDataHead = (PSTxDataHead_ab) (pbyBuffer + wTxBufSize);
@ -2736,24 +2736,24 @@ CMD_STATUS csBeacon_xmit(PSDevice pDevice, PSTxMgmtPacket pPacket) {
UINT
unsigned int
cbGetFragCount (
PSDevice pDevice,
PSKeyItem pTransmitKey,
UINT cbFrameBodySize,
unsigned int cbFrameBodySize,
PSEthernetHeader psEthHeader
)
{
UINT cbMACHdLen;
UINT cbFrameSize;
UINT cbFragmentSize; //Hdr+(IV)+payoad+(MIC)+(ICV)+FCS
UINT cbFragPayloadSize;
UINT cbLastFragPayloadSize;
UINT cbIVlen = 0;
UINT cbICVlen = 0;
UINT cbMIClen = 0;
UINT cbFCSlen = 4;
UINT uMACfragNum = 1;
unsigned int cbMACHdLen;
unsigned int cbFrameSize;
unsigned int cbFragmentSize; //Hdr+(IV)+payoad+(MIC)+(ICV)+FCS
unsigned int cbFragPayloadSize;
unsigned int cbLastFragPayloadSize;
unsigned int cbIVlen = 0;
unsigned int cbICVlen = 0;
unsigned int cbMIClen = 0;
unsigned int cbFCSlen = 4;
unsigned int uMACfragNum = 1;
BOOL bNeedACK;
@ -2826,7 +2826,7 @@ cbGetFragCount (
void
vDMA0_tx_80211(PSDevice pDevice, struct sk_buff *skb, PBYTE pbMPDU, UINT cbMPDULen) {
vDMA0_tx_80211(PSDevice pDevice, struct sk_buff *skb, PBYTE pbMPDU, unsigned int cbMPDULen) {
PSTxDesc pFrstTD;
BYTE byPktType;
@ -2834,35 +2834,35 @@ vDMA0_tx_80211(PSDevice pDevice, struct sk_buff *skb, PBYTE pbMPDU, UINT cbMPDU
void * pvRTS;
void * pvCTS;
void * pvTxDataHd;
UINT uDuration;
UINT cbReqCount;
unsigned int uDuration;
unsigned int cbReqCount;
PS802_11Header pMACHeader;
UINT cbHeaderSize;
UINT cbFrameBodySize;
unsigned int cbHeaderSize;
unsigned int cbFrameBodySize;
BOOL bNeedACK;
BOOL bIsPSPOLL = FALSE;
PSTxBufHead pTxBufHead;
UINT cbFrameSize;
UINT cbIVlen = 0;
UINT cbICVlen = 0;
UINT cbMIClen = 0;
UINT cbFCSlen = 4;
UINT uPadding = 0;
UINT cbMICHDR = 0;
UINT uLength = 0;
unsigned int cbFrameSize;
unsigned int cbIVlen = 0;
unsigned int cbICVlen = 0;
unsigned int cbMIClen = 0;
unsigned int cbFCSlen = 4;
unsigned int uPadding = 0;
unsigned int cbMICHDR = 0;
unsigned int uLength = 0;
DWORD dwMICKey0, dwMICKey1;
DWORD dwMIC_Priority;
PDWORD pdwMIC_L;
PDWORD pdwMIC_R;
WORD wTxBufSize;
UINT cbMacHdLen;
unsigned int cbMacHdLen;
SEthernetHeader sEthHeader;
void * pvRrvTime;
void * pMICHDR;
PSMgmtObject pMgmt = pDevice->pMgmt;
WORD wCurrentRate = RATE_1M;
PUWLAN_80211HDR p80211Header;
UINT uNodeIndex = 0;
unsigned int uNodeIndex = 0;
BOOL bNodeExist = FALSE;
SKeyItem STempKey;
PSKeyItem pTransmitKey = NULL;
@ -2870,7 +2870,7 @@ vDMA0_tx_80211(PSDevice pDevice, struct sk_buff *skb, PBYTE pbMPDU, UINT cbMPDU
PBYTE pbyPayloadHead;
PBYTE pbyMacHdr;
UINT cbExtSuppRate = 0;
unsigned int cbExtSuppRate = 0;
// PWLAN_IE pItem;

Просмотреть файл

@ -44,7 +44,7 @@ void vGenerateMACHeader(
PSDevice pDevice,
DWORD dwTxBufferAddr,
PBYTE pbySkbData,
UINT cbPacketSize,
unsigned int cbPacketSize,
BOOL bDMA0Used,
PUINT pcbHeadSize,
PUINT pcbAppendPayload
@ -53,7 +53,7 @@ void vGenerateMACHeader(
void vProcessRxMACHeader (
PSDevice pDevice,
DWORD dwRxBufferAddr,
UINT cbPacketSize,
unsigned int cbPacketSize,
BOOL bIsWEP,
PUINT pcbHeadSize
);
@ -68,16 +68,16 @@ vGenerateMACHeader (
PSEthernetHeader psEthHeader,
BOOL bNeedEncrypt,
WORD wFragType,
UINT uDMAIdx,
UINT uFragIdx
unsigned int uDMAIdx,
unsigned int uFragIdx
);
UINT
unsigned int
cbGetFragCount(
PSDevice pDevice,
PSKeyItem pTransmitKey,
UINT cbFrameBodySize,
unsigned int cbFrameBodySize,
PSEthernetHeader psEthHeader
);
@ -88,19 +88,19 @@ vGenerateFIFOHeader (
BYTE byPktTyp,
PBYTE pbyTxBufferAddr,
BOOL bNeedEncrypt,
UINT cbPayloadSize,
UINT uDMAIdx,
unsigned int cbPayloadSize,
unsigned int uDMAIdx,
PSTxDesc pHeadTD,
PSEthernetHeader psEthHeader,
PBYTE pPacket,
PSKeyItem pTransmitKey,
UINT uNodeIndex,
unsigned int uNodeIndex,
PUINT puMACfragNum,
PUINT pcbHeaderSize
);
void vDMA0_tx_80211(PSDevice pDevice, struct sk_buff *skb, PBYTE pbMPDU, UINT cbMPDULen);
void vDMA0_tx_80211(PSDevice pDevice, struct sk_buff *skb, PBYTE pbMPDU, unsigned int cbMPDULen);
CMD_STATUS csMgmt_xmit(PSDevice pDevice, PSTxMgmtPacket pPacket);
CMD_STATUS csBeacon_xmit(PSDevice pDevice, PSTxMgmtPacket pPacket);

Просмотреть файл

@ -132,7 +132,7 @@ static const DWORD s_adwCrc32Table[256] = {
* Return Value: CRC-32
*
-*/
DWORD CRCdwCrc32 (PBYTE pbyData, UINT cbByte, DWORD dwCrcSeed)
DWORD CRCdwCrc32 (PBYTE pbyData, unsigned int cbByte, DWORD dwCrcSeed)
{
DWORD dwCrc;
@ -164,7 +164,7 @@ DWORD CRCdwCrc32 (PBYTE pbyData, UINT cbByte, DWORD dwCrcSeed)
* Return Value: CRC-32
*
-*/
DWORD CRCdwGetCrc32 (PBYTE pbyData, UINT cbByte)
DWORD CRCdwGetCrc32 (PBYTE pbyData, unsigned int cbByte)
{
return ~CRCdwCrc32(pbyData, cbByte, 0xFFFFFFFFL);
}
@ -190,7 +190,7 @@ DWORD CRCdwGetCrc32 (PBYTE pbyData, UINT cbByte)
* Return Value: CRC-32
*
-*/
DWORD CRCdwGetCrc32Ex(PBYTE pbyData, UINT cbByte, DWORD dwPreCRC)
DWORD CRCdwGetCrc32Ex(PBYTE pbyData, unsigned int cbByte, DWORD dwPreCRC)
{
return CRCdwCrc32(pbyData, cbByte, dwPreCRC);
}

Просмотреть файл

@ -43,9 +43,9 @@
/*--------------------- Export Functions --------------------------*/
DWORD CRCdwCrc32(PBYTE pbyData, UINT cbByte, DWORD dwCrcSeed);
DWORD CRCdwGetCrc32(PBYTE pbyData, UINT cbByte);
DWORD CRCdwGetCrc32Ex(PBYTE pbyData, UINT cbByte, DWORD dwPreCRC);
DWORD CRCdwCrc32(PBYTE pbyData, unsigned int cbByte, DWORD dwCrcSeed);
DWORD CRCdwGetCrc32(PBYTE pbyData, unsigned int cbByte);
DWORD CRCdwGetCrc32Ex(PBYTE pbyData, unsigned int cbByte, DWORD dwPreCRC);
#endif // __TCRC_H__

Просмотреть файл

@ -96,7 +96,7 @@ BYTE ETHbyGetHashIndexByCrc32 (PBYTE pbyMultiAddr)
* Return Value: TRUE if ok; FALSE if error.
*
*/
BOOL ETHbIsBufferCrc32Ok (PBYTE pbyBuffer, UINT cbFrameLength)
BOOL ETHbIsBufferCrc32Ok (PBYTE pbyBuffer, unsigned int cbFrameLength)
{
DWORD dwCRC;

Просмотреть файл

@ -195,7 +195,7 @@ S802_11Header, *PS802_11Header;
BYTE ETHbyGetHashIndexByCrc32(PBYTE pbyMultiAddr);
//BYTE ETHbyGetHashIndexByCrc(PBYTE pbyMultiAddr);
BOOL ETHbIsBufferCrc32Ok(PBYTE pbyBuffer, UINT cbFrameLength);
BOOL ETHbIsBufferCrc32Ok(PBYTE pbyBuffer, unsigned int cbFrameLength);
#endif // __TETHER_H__

Просмотреть файл

@ -68,7 +68,6 @@ typedef int BOOL;
* but it doesn't matter if they're signed or unsigned.
*/
typedef unsigned int UINT;
typedef unsigned long ULONG;
typedef unsigned long long ULONGLONG; //64 bit

Просмотреть файл

@ -103,7 +103,7 @@ VNTWIFIvSetIBSSParameter (
void *pMgmtHandle,
WORD wBeaconPeriod,
WORD wATIMWindow,
UINT uChannel
unsigned int uChannel
)
{
PSMgmtObject pMgmt = (PSMgmtObject)pMgmtHandle;
@ -150,7 +150,7 @@ VNTWIFIpGetCurrentSSID (
* Return Value: current Channel.
*
-*/
UINT
unsigned int
VNTWIFIpGetCurrentChannel (
void *pMgmtHandle
)
@ -210,7 +210,7 @@ VNTWIFIbyGetMaxSupportRate (
{
BYTE byMaxSupportRate = RATE_1M;
BYTE bySupportRate = RATE_1M;
UINT ii = 0;
unsigned int ii = 0;
if (pSupportRateIEs) {
for (ii = 0; ii < pSupportRateIEs->len; ii++) {
@ -257,7 +257,7 @@ VNTWIFIbyGetACKTxRate (
{
BYTE byMaxAckRate;
BYTE byBasicRate;
UINT ii;
unsigned int ii;
if (byRxDataRate <= RATE_11M) {
byMaxAckRate = RATE_1M;
@ -431,10 +431,10 @@ VNTWIFIvQueryBSSList (
void **pvFirstBSS
)
{
UINT ii = 0;
unsigned int ii = 0;
PSMgmtObject pMgmt = (PSMgmtObject)pMgmtHandle;
PKnownBSS pBSS = NULL;
UINT uCount = 0;
unsigned int uCount = 0;
*pvFirstBSS = NULL;
@ -504,8 +504,8 @@ VNTWIFIvUpdateNodeTxCounter(
)
{
PSMgmtObject pMgmt = (PSMgmtObject)pMgmtHandle;
UINT uNodeIndex = 0;
UINT ii;
unsigned int uNodeIndex = 0;
unsigned int ii;
if ((pMgmt->eCurrMode == WMAC_MODE_IBSS_STA) ||
(pMgmt->eCurrMode == WMAC_MODE_ESS_AP)) {
@ -540,7 +540,7 @@ VNTWIFIvGetTxRate(
)
{
PSMgmtObject pMgmt = (PSMgmtObject)pMgmtHandle;
UINT uNodeIndex = 0;
unsigned int uNodeIndex = 0;
WORD wTxDataRate = RATE_1M;
BYTE byACKRate = RATE_1M;
BYTE byCCKBasicRate = RATE_1M;
@ -626,7 +626,7 @@ VNTWIFIbInit(
{
PSMgmtObject pMgmt = NULL;
UINT ii;
unsigned int ii;
pMgmt = (PSMgmtObject)kmalloc(sizeof(SMgmtObject), (int)GFP_ATOMIC);

Просмотреть файл

@ -145,7 +145,7 @@ VNTWIFIvSetIBSSParameter (
void *pMgmtHandle,
WORD wBeaconPeriod,
WORD wATIMWindow,
UINT uChannel
unsigned int uChannel
);
void
@ -159,7 +159,7 @@ VNTWIFIpGetCurrentSSID(
void *pMgmtHandle
);
UINT
unsigned int
VNTWIFIpGetCurrentChannel(
void *pMgmtHandle
);

Просмотреть файл

@ -216,7 +216,7 @@ s_vProbeChannel(
PBYTE pbyRate;
PSTxMgmtPacket pTxPacket;
PSMgmtObject pMgmt = pDevice->pMgmt;
UINT ii;
unsigned int ii;
if (pDevice->eCurrentPHYType == PHY_TYPE_11A) {
@ -320,7 +320,7 @@ s_MgrMakeProbeRequest(
void
vCommandTimerWait(
void *hDeviceContext,
UINT MSecond
unsigned int MSecond
)
{
PSDevice pDevice = (PSDevice)hDeviceContext;
@ -329,7 +329,7 @@ vCommandTimerWait(
pDevice->sTimerCommand.data = (ULONG)pDevice;
pDevice->sTimerCommand.function = (TimerFunction)vCommandTimer;
// RUN_AT :1 msec ~= (HZ/1024)
pDevice->sTimerCommand.expires = (UINT)RUN_AT((MSecond * HZ) >> 10);
pDevice->sTimerCommand.expires = (unsigned int)RUN_AT((MSecond * HZ) >> 10);
add_timer(&pDevice->sTimerCommand);
return;
}
@ -347,7 +347,7 @@ vCommandTimer (
PWLAN_IE_SSID pItemSSID;
PWLAN_IE_SSID pItemSSIDCurr;
CMD_STATUS Status;
UINT ii;
unsigned int ii;
BYTE byMask[8] = {1, 2, 4, 8, 0x10, 0x20, 0x40, 0x80};
struct sk_buff *skb;
@ -1065,8 +1065,8 @@ BOOL bClearBSSID_SCAN (
)
{
PSDevice pDevice = (PSDevice)hDeviceContext;
UINT uCmdDequeueIdx = pDevice->uCmdDequeueIdx;
UINT ii;
unsigned int uCmdDequeueIdx = pDevice->uCmdDequeueIdx;
unsigned int ii;
if ((pDevice->cbFreeCmdQueue < CMD_Q_SIZE) && (uCmdDequeueIdx != pDevice->uCmdEnqueueIdx)) {
for (ii = 0; ii < (CMD_Q_SIZE - pDevice->cbFreeCmdQueue); ii ++) {

Просмотреть файл

@ -133,7 +133,7 @@ bScheduleCommand(
void
vCommandTimerWait(
void *hDeviceContext,
UINT MSecond
unsigned int MSecond
);
#ifdef TxInSleep
void

Просмотреть файл

@ -68,8 +68,8 @@
BOOL WCTLbIsDuplicate (PSCache pCache, PS802_11Header pMACHeader)
{
UINT uIndex;
UINT ii;
unsigned int uIndex;
unsigned int ii;
PSCacheEntry pCacheEntry;
if (IS_FC_RETRY(pMACHeader)) {
@ -108,9 +108,9 @@ BOOL WCTLbIsDuplicate (PSCache pCache, PS802_11Header pMACHeader)
* Return Value: index number in Defragment Database
*
*/
UINT WCTLuSearchDFCB (PSDevice pDevice, PS802_11Header pMACHeader)
unsigned int WCTLuSearchDFCB (PSDevice pDevice, PS802_11Header pMACHeader)
{
UINT ii;
unsigned int ii;
for(ii=0;ii<pDevice->cbDFCB;ii++) {
if ((pDevice->sRxDFCB[ii].bInUse == TRUE) &&
@ -138,9 +138,9 @@ UINT ii;
* Return Value: index number in Defragment Database
*
*/
UINT WCTLuInsertDFCB (PSDevice pDevice, PS802_11Header pMACHeader)
unsigned int WCTLuInsertDFCB (PSDevice pDevice, PS802_11Header pMACHeader)
{
UINT ii;
unsigned int ii;
if (pDevice->cbFreeDFCB == 0)
return(pDevice->cbDFCB);
@ -175,9 +175,9 @@ UINT ii;
* Return Value: TRUE if it is valid fragment packet and we have resource to defragment; otherwise FALSE
*
*/
BOOL WCTLbHandleFragment (PSDevice pDevice, PS802_11Header pMACHeader, UINT cbFrameLength, BOOL bWEP, BOOL bExtIV)
BOOL WCTLbHandleFragment (PSDevice pDevice, PS802_11Header pMACHeader, unsigned int cbFrameLength, BOOL bWEP, BOOL bExtIV)
{
UINT uHeaderSize;
unsigned int uHeaderSize;
if (bWEP == TRUE) {

Просмотреть файл

@ -98,9 +98,10 @@
/*--------------------- Export Functions --------------------------*/
BOOL WCTLbIsDuplicate(PSCache pCache, PS802_11Header pMACHeader);
BOOL WCTLbHandleFragment(PSDevice pDevice, PS802_11Header pMACHeader, UINT cbFrameLength, BOOL bWEP, BOOL bExtIV);
UINT WCTLuSearchDFCB(PSDevice pDevice, PS802_11Header pMACHeader);
UINT WCTLuInsertDFCB(PSDevice pDevice, PS802_11Header pMACHeader);
BOOL WCTLbHandleFragment(PSDevice pDevice, PS802_11Header pMACHeader,
unsigned int cbFrameLength, BOOL bWEP, BOOL bExtIV);
unsigned int WCTLuSearchDFCB(PSDevice pDevice, PS802_11Header pMACHeader);
unsigned int WCTLuInsertDFCB(PSDevice pDevice, PS802_11Header pMACHeader);
#endif // __WCTL_H__

Просмотреть файл

@ -118,7 +118,7 @@ s_vMgrRxAssocRequest(
PSDevice pDevice,
PSMgmtObject pMgmt,
PSRxMgmtPacket pRxPacket,
UINT uNodeIndex
unsigned int uNodeIndex
);
static
@ -242,7 +242,7 @@ s_MgrMakeBeacon(
PSMgmtObject pMgmt,
WORD wCurrCapInfo,
WORD wCurrBeaconPeriod,
UINT uCurrChannel,
unsigned int uCurrChannel,
WORD wCurrATIMWinodw,
PWLAN_IE_SSID pCurrSSID,
PBYTE pCurrBSSID,
@ -287,7 +287,7 @@ s_MgrMakeProbeResponse(
PSMgmtObject pMgmt,
WORD wCurrCapInfo,
WORD wCurrBeaconPeriod,
UINT uCurrChannel,
unsigned int uCurrChannel,
WORD wCurrATIMWinodw,
PBYTE pDstAddr,
PWLAN_IE_SSID pCurrSSID,
@ -310,7 +310,7 @@ static
void
s_vMgrSynchBSS (
PSDevice pDevice,
UINT uBSSMode,
unsigned int uBSSMode,
PKnownBSS pCurr,
PCMD_STATUS pStatus
);
@ -683,7 +683,7 @@ s_vMgrRxAssocRequest(
PSDevice pDevice,
PSMgmtObject pMgmt,
PSRxMgmtPacket pRxPacket,
UINT uNodeIndex
unsigned int uNodeIndex
)
{
WLAN_FR_ASSOCREQ sFrame;
@ -691,7 +691,7 @@ s_vMgrRxAssocRequest(
PSTxMgmtPacket pTxPacket;
WORD wAssocStatus = 0;
WORD wAssocAID = 0;
UINT uRateLen = WLAN_RATES_MAXLEN;
unsigned int uRateLen = WLAN_RATES_MAXLEN;
BYTE abyCurrSuppRates[WLAN_IEHDR_LEN + WLAN_RATES_MAXLEN + 1];
BYTE abyCurrExtSuppRates[WLAN_IEHDR_LEN + WLAN_RATES_MAXLEN + 1];
@ -845,7 +845,7 @@ s_vMgrRxReAssocRequest(
PSDevice pDevice,
PSMgmtObject pMgmt,
PSRxMgmtPacket pRxPacket,
UINT uNodeIndex
unsigned int uNodeIndex
)
{
WLAN_FR_REASSOCREQ sFrame;
@ -853,7 +853,7 @@ s_vMgrRxReAssocRequest(
PSTxMgmtPacket pTxPacket;
WORD wAssocStatus = 0;
WORD wAssocAID = 0;
UINT uRateLen = WLAN_RATES_MAXLEN;
unsigned int uRateLen = WLAN_RATES_MAXLEN;
BYTE abyCurrSuppRates[WLAN_IEHDR_LEN + WLAN_RATES_MAXLEN + 1];
BYTE abyCurrExtSuppRates[WLAN_IEHDR_LEN + WLAN_RATES_MAXLEN + 1];
@ -1331,7 +1331,7 @@ s_vMgrRxAuthenSequence_1(
)
{
PSTxMgmtPacket pTxPacket = NULL;
UINT uNodeIndex;
unsigned int uNodeIndex;
WLAN_FR_AUTHEN sFrame;
PSKeyItem pTransmitKey;
@ -1539,8 +1539,8 @@ s_vMgrRxAuthenSequence_3(
)
{
PSTxMgmtPacket pTxPacket = NULL;
UINT uStatusCode = 0 ;
UINT uNodeIndex = 0;
unsigned int uStatusCode = 0 ;
unsigned int uNodeIndex = 0;
WLAN_FR_AUTHEN sFrame;
if (!WLAN_GET_FC_ISWEP(pFrame->pHdr->sA3.wFrameCtl)) {
@ -1666,7 +1666,7 @@ s_vMgrRxDisassociation(
)
{
WLAN_FR_DISASSOC sFrame;
UINT uNodeIndex = 0;
unsigned int uNodeIndex = 0;
// CMD_STATUS CmdStatus;
viawget_wpa_header *wpahdr;
@ -1745,7 +1745,7 @@ s_vMgrRxDeauthentication(
)
{
WLAN_FR_DEAUTHEN sFrame;
UINT uNodeIndex = 0;
unsigned int uNodeIndex = 0;
viawget_wpa_header *wpahdr;
@ -1882,17 +1882,17 @@ s_vMgrRxBeacon(
BOOL bUpdateTSF = FALSE;
BOOL bIsAPBeacon = FALSE;
BOOL bIsChannelEqual = FALSE;
UINT uLocateByteIndex;
unsigned int uLocateByteIndex;
BYTE byTIMBitOn = 0;
WORD wAIDNumber = 0;
UINT uNodeIndex;
unsigned int uNodeIndex;
QWORD qwTimestamp, qwLocalTSF;
QWORD qwCurrTSF;
WORD wStartIndex = 0;
WORD wAIDIndex = 0;
BYTE byCurrChannel = pRxPacket->byRxChannel;
ERPObject sERP;
UINT uRateLen = WLAN_RATES_MAXLEN;
unsigned int uRateLen = WLAN_RATES_MAXLEN;
BOOL bChannelHit = FALSE;
BOOL bUpdatePhyParameter = FALSE;
BYTE byIEChannel = 0;
@ -2397,7 +2397,7 @@ vMgrCreateOwnIBSS(
BYTE byTopCCKBasicRate;
BYTE byTopOFDMBasicRate;
QWORD qwCurrTSF;
UINT ii;
unsigned int ii;
BYTE abyRATE[] = {0x82, 0x84, 0x8B, 0x96, 0x24, 0x30, 0x48, 0x6C, 0x0C, 0x12, 0x18, 0x60};
BYTE abyCCK_RATE[] = {0x82, 0x84, 0x8B, 0x96};
BYTE abyOFDM_RATE[] = {0x0C, 0x12, 0x18, 0x24, 0x30, 0x48, 0x60, 0x6C};
@ -2661,11 +2661,11 @@ vMgrJoinBSSBegin(
PSDevice pDevice = (PSDevice)hDeviceContext;
PSMgmtObject pMgmt = pDevice->pMgmt;
PKnownBSS pCurr = NULL;
UINT ii, uu;
unsigned int ii, uu;
PWLAN_IE_SUPP_RATES pItemRates = NULL;
PWLAN_IE_SUPP_RATES pItemExtRates = NULL;
PWLAN_IE_SSID pItemSSID;
UINT uRateLen = WLAN_RATES_MAXLEN;
unsigned int uRateLen = WLAN_RATES_MAXLEN;
WORD wMaxBasicRate = RATE_1M;
WORD wMaxSuppRate = RATE_1M;
WORD wSuppRate;
@ -2764,7 +2764,7 @@ vMgrJoinBSSBegin(
uRateLen);
// Stuffing Rate IE
if ((pItemExtRates->len > 0) && (pItemRates->len < 8)) {
for (ii = 0; ii < (UINT)(8 - pItemRates->len); ) {
for (ii = 0; ii < (unsigned int)(8 - pItemRates->len); ) {
pItemRates->abyRates[pItemRates->len + ii] = pItemExtRates->abyRates[ii];
ii ++;
if (pItemExtRates->len <= ii)
@ -2923,7 +2923,7 @@ static
void
s_vMgrSynchBSS (
PSDevice pDevice,
UINT uBSSMode,
unsigned int uBSSMode,
PKnownBSS pCurr,
PCMD_STATUS pStatus
)
@ -3094,7 +3094,7 @@ s_vMgrSynchBSS (
)
{
PSMgmtObject pMgmt = &(pDevice->sMgmtObj);
// UINT ii , uSameBssidNum=0;
// unsigned int ii , uSameBssidNum=0;
// for (ii = 0; ii < MAX_BSS_NUM; ii++) {
// if (pMgmt->sBSSList[ii].bActive &&
@ -3153,7 +3153,7 @@ s_vMgrFormatTIM(
{
BYTE byMask[8] = {1, 2, 4, 8, 0x10, 0x20, 0x40, 0x80};
BYTE byMap;
UINT ii, jj;
unsigned int ii, jj;
BOOL bStartFound = FALSE;
BOOL bMulticast = FALSE;
WORD wStartIndex = 0;
@ -3226,7 +3226,7 @@ s_MgrMakeBeacon(
PSMgmtObject pMgmt,
WORD wCurrCapInfo,
WORD wCurrBeaconPeriod,
UINT uCurrChannel,
unsigned int uCurrChannel,
WORD wCurrATIMWinodw,
PWLAN_IE_SSID pCurrSSID,
PBYTE pCurrBSSID,
@ -3238,9 +3238,9 @@ s_MgrMakeBeacon(
WLAN_FR_BEACON sFrame;
BYTE abyBroadcastAddr[] = {0xff, 0xff, 0xff, 0xff, 0xff, 0xff};
PBYTE pbyBuffer;
UINT uLength = 0;
unsigned int uLength = 0;
PWLAN_IE_IBSS_DFS pIBSSDFS = NULL;
UINT ii;
unsigned int ii;
// prepare beacon frame
pTxPacket = (PSTxMgmtPacket)pMgmt->pbyMgmtPacketPool;
@ -3455,7 +3455,7 @@ s_MgrMakeProbeResponse(
PSMgmtObject pMgmt,
WORD wCurrCapInfo,
WORD wCurrBeaconPeriod,
UINT uCurrChannel,
unsigned int uCurrChannel,
WORD wCurrATIMWinodw,
PBYTE pDstAddr,
PWLAN_IE_SSID pCurrSSID,
@ -3468,9 +3468,9 @@ s_MgrMakeProbeResponse(
PSTxMgmtPacket pTxPacket = NULL;
WLAN_FR_PROBERESP sFrame;
PBYTE pbyBuffer;
UINT uLength = 0;
unsigned int uLength = 0;
PWLAN_IE_IBSS_DFS pIBSSDFS = NULL;
UINT ii;
unsigned int ii;
pTxPacket = (PSTxMgmtPacket)pMgmt->pbyMgmtPacketPool;
@ -3799,7 +3799,7 @@ s_MgrMakeAssocRequest(
} else if (((pMgmt->eAuthenMode == WMAC_AUTH_WPA2) ||
(pMgmt->eAuthenMode == WMAC_AUTH_WPA2PSK)) &&
(pMgmt->pCurrBSS != NULL)) {
UINT ii;
unsigned int ii;
PWORD pwPMKID;
// WPA IE
@ -4055,7 +4055,7 @@ s_MgrMakeReAssocRequest(
} else if (((pMgmt->eAuthenMode == WMAC_AUTH_WPA2) ||
(pMgmt->eAuthenMode == WMAC_AUTH_WPA2PSK)) &&
(pMgmt->pCurrBSS != NULL)) {
UINT ii;
unsigned int ii;
PWORD pwPMKID;
/* WPA IE */
@ -4543,7 +4543,7 @@ vMgrRxManagePacket(
{
PSDevice pDevice = (PSDevice)hDeviceContext;
BOOL bInScan = FALSE;
UINT uNodeIndex = 0;
unsigned int uNodeIndex = 0;
NODE_STATE eNodeState = 0;
CMD_STATUS Status;
@ -4816,7 +4816,7 @@ bAdd_PMKID_Candidate (
{
PSDevice pDevice = (PSDevice)hDeviceContext;
PPMKID_CANDIDATE pCandidateList;
UINT ii = 0;
unsigned int ii = 0;
DBG_PRT(MSG_LEVEL_DEBUG, KERN_INFO"bAdd_PMKID_Candidate START: (%d)\n", (int)pDevice->gsPMKIDCandidate.NumCandidates);

Просмотреть файл

@ -224,8 +224,8 @@ typedef enum tagWMAC_POWER_MODE {
typedef struct tagSTxMgmtPacket {
PUWLAN_80211HDR p80211Header;
UINT cbMPDULen;
UINT cbPayloadLen;
unsigned int cbMPDULen;
unsigned int cbPayloadLen;
} STxMgmtPacket, *PSTxMgmtPacket;
@ -235,9 +235,9 @@ typedef struct tagSRxMgmtPacket {
PUWLAN_80211HDR p80211Header;
QWORD qwLocalTSF;
UINT cbMPDULen;
UINT cbPayloadLen;
UINT uRSSI;
unsigned int cbMPDULen;
unsigned int cbPayloadLen;
unsigned int uRSSI;
BYTE bySQ;
BYTE byRxRate;
BYTE byRxChannel;
@ -271,7 +271,7 @@ typedef struct tagSMgmtObject
// BYTE abyNewExtSuppRates[WLAN_IEHDR_LEN + WLAN_RATES_MAXLEN];
// Current state vars
UINT uCurrChannel;
unsigned int uCurrChannel;
BYTE abyCurrSuppRates[WLAN_IEHDR_LEN + WLAN_RATES_MAXLEN + 1];
BYTE abyCurrExtSuppRates[WLAN_IEHDR_LEN + WLAN_RATES_MAXLEN + 1];
BYTE abyCurrSSID[WLAN_IEHDR_LEN + WLAN_SSID_MAXLEN + 1];
@ -284,7 +284,7 @@ typedef struct tagSMgmtObject
BYTE byERPContext;
CMD_STATE eCommandState;
UINT uScanChannel;
unsigned int uScanChannel;
// Desire joinning BSS vars
BYTE abyDesireSSID[WLAN_IEHDR_LEN + WLAN_SSID_MAXLEN + 1];
@ -294,22 +294,22 @@ typedef struct tagSMgmtObject
//BYTE abyAdHocSSID[WLAN_IEHDR_LEN + WLAN_SSID_MAXLEN + 1];
WORD wIBSSBeaconPeriod;
WORD wIBSSATIMWindow;
UINT uIBSSChannel;
unsigned int uIBSSChannel;
BYTE abyIBSSSuppRates[WLAN_IEHDR_LEN + WLAN_RATES_MAXLEN + 1];
BYTE byAPBBType;
BYTE abyWPAIE[MAX_WPA_IE_LEN];
WORD wWPAIELen;
UINT uAssocCount;
unsigned int uAssocCount;
BOOL bMoreData;
// Scan state vars
WMAC_SCAN_STATE eScanState;
WMAC_SCAN_TYPE eScanType;
UINT uScanStartCh;
UINT uScanEndCh;
unsigned int uScanStartCh;
unsigned int uScanEndCh;
WORD wScanSteps;
UINT uScanBSSType;
unsigned int uScanBSSType;
// Desire scannig vars
BYTE abyScanSSID[WLAN_IEHDR_LEN + WLAN_SSID_MAXLEN + 1];
BYTE abyScanBSSID[WLAN_BSSID_LEN];
@ -338,8 +338,8 @@ typedef struct tagSMgmtObject
BYTE abyPSTxMap[MAX_NODE_NUM + 1];
// management command related
UINT uCmdBusy;
UINT uCmdHostAPBusy;
unsigned int uCmdBusy;
unsigned int uCmdHostAPBusy;
// management packet pool
PBYTE pbyMgmtPacketPool;
@ -381,7 +381,7 @@ typedef struct tagSMgmtObject
BOOL bSwitchChannel;
BYTE byNewChannel;
PWLAN_IE_MEASURE_REP pCurrMeasureEIDRep;
UINT uLengthOfRepEIDs;
unsigned int uLengthOfRepEIDs;
BYTE abyCurrentMSRReq[sizeof(STxMgmtPacket) + WLAN_A3FR_MAXLEN];
BYTE abyCurrentMSRRep[sizeof(STxMgmtPacket) + WLAN_A3FR_MAXLEN];
BYTE abyIECountry[WLAN_A3FR_MAXLEN];

Просмотреть файл

@ -261,7 +261,7 @@ WPA2vParseRSN (
* Return Value: length of IEs.
*
-*/
UINT
unsigned int
WPA2uSetIEs(
void *pMgmtHandle,
PWLAN_IE_RSN pRSNIEs
@ -269,7 +269,7 @@ WPA2uSetIEs(
{
PSMgmtObject pMgmt = (PSMgmtObject) pMgmtHandle;
PBYTE pbyBuffer = NULL;
UINT ii = 0;
unsigned int ii = 0;
PWORD pwPMKID = NULL;
if (pRSNIEs == NULL) {

Просмотреть файл

@ -69,7 +69,7 @@ WPA2vParseRSN (
PWLAN_IE_RSN pRSN
);
UINT
unsigned int
WPA2uSetIEs(
void *pMgmtHandle,
PWLAN_IE_RSN pRSNIEs

Просмотреть файл

@ -65,18 +65,18 @@ static int msglevel =MSG_LEVEL_INFO;
* Return Value: TRUE if packet duplicate; otherwise FALSE
*
*/
BOOL ROUTEbRelay (PSDevice pDevice, PBYTE pbySkbData, UINT uDataLen, UINT uNodeIndex)
BOOL ROUTEbRelay (PSDevice pDevice, PBYTE pbySkbData, unsigned int uDataLen, unsigned int uNodeIndex)
{
PSMgmtObject pMgmt = pDevice->pMgmt;
PSTxDesc pHeadTD, pLastTD;
UINT cbFrameBodySize;
UINT uMACfragNum;
unsigned int cbFrameBodySize;
unsigned int uMACfragNum;
BYTE byPktType;
BOOL bNeedEncryption = FALSE;
SKeyItem STempKey;
PSKeyItem pTransmitKey = NULL;
UINT cbHeaderSize;
UINT ii;
unsigned int cbHeaderSize;
unsigned int ii;
PBYTE pbyBSSID;

Просмотреть файл

@ -39,7 +39,7 @@
/*--------------------- Export Functions --------------------------*/
BOOL ROUTEbRelay (PSDevice pDevice, PBYTE pbySkbData, UINT uDataLen, UINT uNodeIndex);
BOOL ROUTEbRelay (PSDevice pDevice, PBYTE pbySkbData, unsigned int uDataLen, unsigned int uNodeIndex);
#endif // __WROUTE_H__