staging: vt6656: removed '#if 1'/'#if 0' definitions
Removed code guarded by always false definitions. Signed-off-by: Andres More <more.andres@gmail.com> Signed-off-by: Greg Kroah-Hartman <gregkh@suse.de>
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@ -309,7 +309,6 @@ RATEvTxRateFallBack(
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{
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{
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PSDevice pDevice = (PSDevice) pDeviceHandler;
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PSDevice pDevice = (PSDevice) pDeviceHandler;
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PSMgmtObject pMgmt = &(pDevice->sMgmtObj);
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PSMgmtObject pMgmt = &(pDevice->sMgmtObj);
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#if 1 //mike fixed old: use packet lose ratio algorithm to control rate
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WORD wIdxDownRate = 0;
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WORD wIdxDownRate = 0;
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unsigned int ii;
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unsigned int ii;
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BOOL bAutoRate[MAX_RATE] = {TRUE,TRUE,TRUE,TRUE,FALSE,FALSE,TRUE,TRUE,TRUE,TRUE,TRUE,TRUE};
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BOOL bAutoRate[MAX_RATE] = {TRUE,TRUE,TRUE,TRUE,FALSE,FALSE,TRUE,TRUE,TRUE,TRUE,TRUE,TRUE};
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@ -389,66 +388,6 @@ DWORD dwTxDiff = 0;
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s_vResetCounter(psNodeDBTable);
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s_vResetCounter(psNodeDBTable);
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DBG_PRT(MSG_LEVEL_DEBUG, KERN_INFO"Rate: %d, U:%d, D:%d\n", (int)psNodeDBTable->wTxDataRate, (int)wIdxUpRate, (int)wIdxDownRate);
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DBG_PRT(MSG_LEVEL_DEBUG, KERN_INFO"Rate: %d, U:%d, D:%d\n", (int)psNodeDBTable->wTxDataRate, (int)wIdxUpRate, (int)wIdxDownRate);
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return;
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return;
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#else //mike fixed new: use differ-signal strength to control rate
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WORD wIdxUpRate = 0;
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BOOL bAutoRate[MAX_RATE] = {TRUE,TRUE,TRUE,TRUE,FALSE,FALSE,TRUE,TRUE,TRUE,TRUE,TRUE,TRUE};
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unsigned int ii;
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long ldBm;
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if (pMgmt->eScanState != WMAC_NO_SCANNING) {
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// Don't do Fallback when scanning Channel
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return;
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}
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for (ii = 0; ii < MAX_RATE; ii++) {
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if (psNodeDBTable->wSuppRate & (0x0001<<ii)) {
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if (bAutoRate[ii] == TRUE) {
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wIdxUpRate = (WORD) ii;
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}
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} else {
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bAutoRate[ii] = FALSE;
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}
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}
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RFvRSSITodBm(pDevice, (BYTE)(pDevice->uCurrRSSI), &ldBm);
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if (ldBm > -55) {
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if ( psNodeDBTable->wSuppRate & (0x0001<<RATE_54M) ) //11a/g
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{
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psNodeDBTable->wTxDataRate = RATE_54M;
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}
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else{ //11b
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psNodeDBTable->wTxDataRate = RATE_11M;
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}
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}
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if (wIdxUpRate == RATE_54M ) { //11a/g
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if (ldBm > -56 )
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psNodeDBTable->wTxDataRate = RATE_54M;
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else if (ldBm > -61 )
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psNodeDBTable->wTxDataRate = RATE_48M;
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else if (ldBm > -66 )
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psNodeDBTable->wTxDataRate = RATE_36M;
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else if (ldBm > -72 )
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psNodeDBTable->wTxDataRate = RATE_24M;
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else if (ldBm > -80 )
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psNodeDBTable->wTxDataRate = RATE_5M;
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else {
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psNodeDBTable->wTxDataRate = RATE_1M;
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//increasingVGA = TRUE;
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}
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}
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else { //11b
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if (ldBm > -65 )
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psNodeDBTable->wTxDataRate = RATE_11M;
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else if (ldBm > -75 )
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psNodeDBTable->wTxDataRate = RATE_5M;
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else
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psNodeDBTable->wTxDataRate = RATE_1M;
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}
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return;
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#endif
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}
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}
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/*+
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/*+
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@ -84,24 +84,6 @@ struct iw_statistics *iwctl_get_wireless_stats(struct net_device *dev)
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pDevice->wstats.status = pDevice->eOPMode;
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pDevice->wstats.status = pDevice->eOPMode;
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#ifdef Calcu_LinkQual
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#ifdef Calcu_LinkQual
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#if 0
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if(pDevice->byBBType == BB_TYPE_11B) {
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if(pDevice->byCurrSQ > 120)
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pDevice->scStatistic.LinkQuality = 100;
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else
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pDevice->scStatistic.LinkQuality = pDevice->byCurrSQ*100/120;
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}
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else if(pDevice->byBBType == BB_TYPE_11G) {
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if(pDevice->byCurrSQ < 20)
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pDevice->scStatistic.LinkQuality = 100;
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else if(pDevice->byCurrSQ >96)
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pDevice->scStatistic.LinkQuality = 0;
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else
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pDevice->scStatistic.LinkQuality = (96-pDevice->byCurrSQ)*100/76;
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}
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if(pDevice->bLinkPass !=TRUE)
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pDevice->scStatistic.LinkQuality = 0;
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#endif
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if(pDevice->scStatistic.LinkQuality > 100)
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if(pDevice->scStatistic.LinkQuality > 100)
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pDevice->scStatistic.LinkQuality = 100;
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pDevice->scStatistic.LinkQuality = 100;
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pDevice->wstats.qual.qual =(BYTE) pDevice->scStatistic.LinkQuality;
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pDevice->wstats.qual.qual =(BYTE) pDevice->scStatistic.LinkQuality;
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@ -1548,7 +1548,6 @@ static int Read_config_file(PSDevice pDevice) {
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}
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}
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}
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}
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#if 1
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//get other parameter
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//get other parameter
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{
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{
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memset(tmpbuffer,0,sizeof(tmpbuffer));
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memset(tmpbuffer,0,sizeof(tmpbuffer));
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@ -1561,7 +1560,6 @@ static int Read_config_file(PSDevice pDevice) {
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pDevice->config_file.eEncryptionStatus= (int) simple_strtol(tmpbuffer, NULL, 10);
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pDevice->config_file.eEncryptionStatus= (int) simple_strtol(tmpbuffer, NULL, 10);
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}
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}
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}
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}
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#endif
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kfree(buffer);
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kfree(buffer);
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return result;
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return result;
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@ -1291,12 +1291,8 @@ void BSSvSecondTxData(void *hDeviceContext)
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spin_lock_irq(&pDevice->lock);
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spin_lock_irq(&pDevice->lock);
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//is wap_supplicant running successful OR only open && sharekey mode!
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//is wap_supplicant running successful OR only open && sharekey mode!
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#if 1
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if(((pDevice->bLinkPass ==TRUE)&&(pMgmt->eAuthenMode < WMAC_AUTH_WPA)) || //open && sharekey linking
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if(((pDevice->bLinkPass ==TRUE)&&(pMgmt->eAuthenMode < WMAC_AUTH_WPA)) || //open && sharekey linking
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(pDevice->fWPA_Authened == TRUE)) { //wpa linking
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(pDevice->fWPA_Authened == TRUE)) { //wpa linking
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#else
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if(pDevice->bLinkPass ==TRUE) {
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#endif
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// printk("mike:%s-->InSleep Tx Data Procedure\n",__FUNCTION__);
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// printk("mike:%s-->InSleep Tx Data Procedure\n",__FUNCTION__);
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pDevice->fTxDataInSleep = TRUE;
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pDevice->fTxDataInSleep = TRUE;
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PSbSendNullPacket(pDevice); //send null packet
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PSbSendNullPacket(pDevice); //send null packet
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@ -1053,7 +1053,6 @@ s_vMgrRxAssocResponse(
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}
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}
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#if 1
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#ifdef WPA_SUPPLICANT_DRIVER_WEXT_SUPPORT
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#ifdef WPA_SUPPLICANT_DRIVER_WEXT_SUPPORT
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//need clear flags related to Networkmanager
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//need clear flags related to Networkmanager
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pDevice->bwextstep0 = FALSE;
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pDevice->bwextstep0 = FALSE;
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@ -1062,7 +1061,6 @@ s_vMgrRxAssocResponse(
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pDevice->bwextstep3 = FALSE;
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pDevice->bwextstep3 = FALSE;
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pDevice->bWPASuppWextEnabled = FALSE;
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pDevice->bWPASuppWextEnabled = FALSE;
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#endif
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#endif
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#endif
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if(pMgmt->eCurrState == WMAC_STATE_ASSOC)
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if(pMgmt->eCurrState == WMAC_STATE_ASSOC)
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timer_expire(pDevice->sTimerCommand, 0);
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timer_expire(pDevice->sTimerCommand, 0);
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