u16index += (IE_HDR_LEN + pu8msa[u16index + 1]);
}
- return 0;
+ return NULL;
}
/* This function gets the current channel information from
u16 u16WidID = (u16)WID_NIL;
u16 u16WidLen = 0;
- u8 *pu8WidVal = 0;
+ u8 *pu8WidVal = NULL;
u8MsgType = pu8MsgBuffer[0];
/* parse the WID value of the WID "WID_NEWORK_INFO" */
{
- u8 *pu8msa = 0;
+ u8 *pu8msa = NULL;
u16 u16RxLen = 0;
- u8 *pu8TimElm = 0;
- u8 *pu8IEs = 0;
+ u8 *pu8TimElm = NULL;
+ u8 *pu8IEs = NULL;
u16 u16IEsLen = 0;
u8 u8index = 0;
u32 u32Tsf_Lo;
/* Get DTIM Period */
pu8TimElm = get_tim_elm(pu8msa, (u16RxLen + FCS_LEN), u8index);
- if (pu8TimElm != 0)
+ if (pu8TimElm != NULL)
pstrNetworkInfo->u8DtimPeriod = pu8TimElm[3];
pu8IEs = &pu8msa[MAC_HDR_LEN + TIME_STAMP_LEN + BEACON_INTERVAL_LEN + CAP_INFO_LEN];
u16IEsLen = u16RxLen - (MAC_HDR_LEN + TIME_STAMP_LEN + BEACON_INTERVAL_LEN + CAP_INFO_LEN);
s32 s32Error = WILC_SUCCESS;
tstrConnectRespInfo *pstrConnectRespInfo = NULL;
u16 u16AssocRespLen = 0;
- u8 *pu8IEs = 0;
+ u8 *pu8IEs = NULL;
u16 u16IEsLen = 0;
pstrConnectRespInfo = kmalloc(sizeof(tstrConnectRespInfo), GFP_KERNEL);
break;
}
PRINT_D(INT_DBG, "Interrupt received BH\n");
- if (g_linux_wlan->oup.wlan_handle_rx_isr != 0)
+ if (g_linux_wlan->oup.wlan_handle_rx_isr != NULL)
g_linux_wlan->oup.wlan_handle_rx_isr();
else
PRINT_ER("wlan_handle_rx_isr() hasn't been initialized\n");
#elif (RX_BH_TYPE == RX_BH_KTHREAD)
PRINT_D(INIT_DBG, "Creating kthread for Rxq BH\n");
g_linux_wlan->rx_bh_thread = kthread_run(isr_bh_routine, (void *)g_linux_wlan, "K_RXQ_BH");
- if (g_linux_wlan->rx_bh_thread == 0) {
+ if (g_linux_wlan->rx_bh_thread == NULL) {
PRINT_ER("couldn't create RX BH thread\n");
ret = -ENOBUFS;
goto _fail_;
/* create tx task */
PRINT_D(INIT_DBG, "Creating kthread for transmission\n");
g_linux_wlan->txq_thread = kthread_run(linux_wlan_txq_task, (void *)g_linux_wlan, "K_TXQ_TASK");
- if (g_linux_wlan->txq_thread == 0) {
+ if (g_linux_wlan->txq_thread == NULL) {
PRINT_ER("couldn't create TXQ thread\n");
ret = -ENOBUFS;
goto _fail_2;