WILC_Sint32 CoreConfiguratorInit(void)
{
WILC_Sint32 s32Error = WILC_SUCCESS;
- PRINT_D(CORECONFIG_DBG, "CoreConfiguratorInit() \n");
+ PRINT_D(CORECONFIG_DBG, "CoreConfiguratorInit()\n");
sema_init(&SemHandleSendPkt, 1);
sema_init(&SemHandlePktResp, 0);
gps8ConfigPacket = (WILC_Sint8 *)WILC_MALLOC(MAX_PACKET_BUFF_SIZE);
if (gps8ConfigPacket == NULL) {
- PRINT_ER("failed in gps8ConfigPacket allocation \n");
+ PRINT_ER("failed in gps8ConfigPacket allocation\n");
s32Error = WILC_NO_MEM;
goto _fail_;
}
void ProcessBinWid(WILC_Char *pcPacket, WILC_Sint32 *ps32PktLen,
tstrWID *pstrWID, u8 *pu8val, WILC_Sint32 s32ValueSize)
{
- /* WILC_ERROR("processing Binary WIDs is not supported \n"); */
+ /* WILC_ERROR("processing Binary WIDs is not supported\n"); */
WILC_Uint16 u16MsgLen = 0;
WILC_Uint16 idx = 0;
WILC_memcpy(pstrWIDresult->ps8WidVal, cfg_str, cfg_len); /* mostafa: no need currently for the extra NULL byte */
pstrWIDresult->s32ValueSize = cfg_len;
} else {
- PRINT_ER("allocated WID buffer length is smaller than the received WID Length \n");
+ PRINT_ER("allocated WID buffer length is smaller than the received WID Length\n");
retval = -2;
}
} else {
WILC_memcpy(gstrConfigPktInfo.pcRespBuffer, pcRespBuffer, gstrConfigPktInfo.s32MaxRespBuffLen);
gstrConfigPktInfo.s32BytesRead = gstrConfigPktInfo.s32MaxRespBuffLen;
- PRINT_ER("BusProvideResponse() Response greater than the prepared Buffer Size \n");
+ PRINT_ER("BusProvideResponse() Response greater than the prepared Buffer Size\n");
}
up(&SemHandlePktResp);
break;
default:
- PRINT_ER("ConfigPktReceived(): invalid received msg type at the Core Configurator \n");
+ PRINT_ER("ConfigPktReceived(): invalid received msg type at the Core Configurator\n");
break;
}
{
WILC_Sint32 s32Error = WILC_SUCCESS;
- PRINT_D(CORECONFIG_DBG, "CoreConfiguratorDeInit() \n");
+ PRINT_D(CORECONFIG_DBG, "CoreConfiguratorDeInit()\n");
if (gps8ConfigPacket != NULL) {