kopia lustrzana https://github.com/micropython/micropython
534 wiersze
23 KiB
C
534 wiersze
23 KiB
C
/*****************************************************************************
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*
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* wlan.h - CC3000 Host Driver Implementation.
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* Copyright (C) 2011 Texas Instruments Incorporated - http://www.ti.com/
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*
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* Adapted for use with the Arduino/AVR by KTOWN (Kevin Townsend)
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* & Limor Fried for Adafruit Industries
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* This library works with the Adafruit CC3000 breakout
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* ----> https://www.adafruit.com/products/1469
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* Adafruit invests time and resources providing this open source code,
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* please support Adafruit and open-source hardware by purchasing
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* products from Adafruit!
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*
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* Redistribution and use in source and binary forms, with or without
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* modification, are permitted provided that the following conditions
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* are met:
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*
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* Redistributions of source code must retain the above copyright
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* notice, this list of conditions and the following disclaimer.
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*
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* Redistributions in binary form must reproduce the above copyright
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* notice, this list of conditions and the following disclaimer in the
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* documentation and/or other materials provided with the
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* distribution.
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*
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* Neither the name of Texas Instruments Incorporated nor the names of
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* its contributors may be used to endorse or promote products derived
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* from this software without specific prior written permission.
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*
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* THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
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* "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
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* LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
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* A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
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* OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
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* SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
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* LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
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* DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
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* THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
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* (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
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* OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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*
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Adapted for use with the Arduino/AVR by KTOWN for Adafruit Industries
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This library works with the Adafruit CC3000 breakout
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----> https://www.adafruit.com/products/1469
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Adafruit invests time and resources providing this open source code,
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please support Adafruit and open-source hardware by purchasing
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products from Adafruit!
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*****************************************************************************/
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#ifndef __WLAN_H__
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#define __WLAN_H__
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#include "cc3000_common.h"
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//*****************************************************************************
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//
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// If building with a C++ compiler, make all of the definitions in this header
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// have a C binding.
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//
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//*****************************************************************************
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#ifdef __cplusplus
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extern "C" {
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#endif
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#define WLAN_SEC_UNSEC (0)
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#define WLAN_SEC_WEP (1)
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#define WLAN_SEC_WPA (2)
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#define WLAN_SEC_WPA2 (3)
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//*****************************************************************************
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//
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//! \addtogroup wlan_api
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//! @{
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//
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//*****************************************************************************
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//*****************************************************************************
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//
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//! wlan_init
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//!
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//! @param sWlanCB Asynchronous events callback.
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//! 0 no event call back.
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//! -call back parameters:
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//! 1) event_type: HCI_EVNT_WLAN_UNSOL_CONNECT connect event,
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//! HCI_EVNT_WLAN_UNSOL_DISCONNECT disconnect event,
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//! HCI_EVNT_WLAN_ASYNC_SIMPLE_CONFIG_DONE config done,
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//! HCI_EVNT_WLAN_UNSOL_DHCP dhcp report,
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//! HCI_EVNT_WLAN_ASYNC_PING_REPORT ping report OR
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//! HCI_EVNT_WLAN_KEEPALIVE keepalive.
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//! 2) data: pointer to extra data that received by the event
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//! (NULL no data).
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//! 3) length: data length.
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//! -Events with extra data:
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//! HCI_EVNT_WLAN_UNSOL_DHCP: 4 bytes IP, 4 bytes Mask,
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//! 4 bytes default gateway, 4 bytes DHCP server and 4 bytes
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//! for DNS server.
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//! HCI_EVNT_WLAN_ASYNC_PING_REPORT: 4 bytes Packets sent,
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//! 4 bytes Packets received, 4 bytes Min round time,
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//! 4 bytes Max round time and 4 bytes for Avg round time.
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//!
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//! @param sFWPatches 0 no patch or pointer to FW patches
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//! @param sDriverPatches 0 no patch or pointer to driver patches
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//! @param sBootLoaderPatches 0 no patch or pointer to bootloader patches
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//! @param sReadWlanInterruptPin init callback. the callback read wlan
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//! interrupt status.
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//! @param sWlanInterruptEnable init callback. the callback enable wlan
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//! interrupt.
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//! @param sWlanInterruptDisable init callback. the callback disable wlan
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//! interrupt.
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//! @param sWriteWlanPin init callback. the callback write value
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//! to device pin.
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//!
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//! @return none
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//!
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//! @sa wlan_set_event_mask , wlan_start , wlan_stop
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//!
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//! @brief Initialize wlan driver
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//!
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//! @warning This function must be called before ANY other wlan driver function
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//
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//*****************************************************************************
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extern void wlan_init( tWlanCB sWlanCB,
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tFWPatches sFWPatches,
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tDriverPatches sDriverPatches,
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tBootLoaderPatches sBootLoaderPatches,
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tWlanReadInteruptPin sReadWlanInterruptPin,
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tWlanInterruptEnable sWlanInterruptEnable,
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tWlanInterruptDisable sWlanInterruptDisable,
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tWriteWlanPin sWriteWlanPin);
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//*****************************************************************************
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//
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//! wlan_start
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//!
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//! @param usPatchesAvailableAtHost - flag to indicate if patches available
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//! from host or from EEPROM. Due to the
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//! fact the patches are burn to the EEPROM
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//! using the patch programmer utility, the
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//! patches will be available from the EEPROM
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//! and not from the host.
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//!
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//! @return none
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//!
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//! @brief Start WLAN device. This function asserts the enable pin of
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//! the device (WLAN_EN), starting the HW initialization process.
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//! The function blocked until device Initialization is completed.
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//! Function also configure patches (FW, driver or bootloader)
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//! and calls appropriate device callbacks.
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//!
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//! @Note Prior calling the function wlan_init shall be called.
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//! @Warning This function must be called after wlan_init and before any
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//! other wlan API
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//! @sa wlan_init , wlan_stop
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//!
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//
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//*****************************************************************************
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extern void wlan_start(unsigned short usPatchesAvailableAtHost);
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//*****************************************************************************
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//
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//! wlan_stop
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//!
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//! @param none
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//!
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//! @return none
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//!
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//! @brief Stop WLAN device by putting it into reset state.
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//!
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//! @sa wlan_start
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//
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//*****************************************************************************
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extern void wlan_stop(void);
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//*****************************************************************************
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//
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//! wlan_connect
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//!
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//! @param sec_type security options:
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//! WLAN_SEC_UNSEC,
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//! WLAN_SEC_WEP (ASCII support only),
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//! WLAN_SEC_WPA or WLAN_SEC_WPA2
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//! @param ssid up to 32 bytes and is ASCII SSID of the AP
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//! @param ssid_len length of the SSID
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//! @param bssid 6 bytes specified the AP bssid
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//! @param key up to 16 bytes specified the AP security key
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//! @param key_len key length
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//!
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//! @return On success, zero is returned. On error, negative is returned.
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//! Note that even though a zero is returned on success to trigger
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//! connection operation, it does not mean that CCC3000 is already
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//! connected. An asynchronous "Connected" event is generated when
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//! actual association process finishes and CC3000 is connected to
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//! the AP. If DHCP is set, An asynchronous "DHCP" event is
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//! generated when DHCP process is finish.
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//!
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//!
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//! @brief Connect to AP
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//! @warning Please Note that when connection to AP configured with security
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//! type WEP, please confirm that the key is set as ASCII and not
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//! as HEX.
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//! @sa wlan_disconnect
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//
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//*****************************************************************************
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#ifndef CC3000_TINY_DRIVER
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extern long wlan_connect(unsigned long ulSecType, const char *ssid, long ssid_len,
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unsigned char *bssid, unsigned char *key, long key_len);
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#else
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extern long wlan_connect(const char *ssid, long ssid_len);
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#endif
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//*****************************************************************************
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//
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//! wlan_disconnect
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//!
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//! @return 0 disconnected done, other CC3000 already disconnected
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//!
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//! @brief Disconnect connection from AP.
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//!
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//! @sa wlan_connect
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//
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//*****************************************************************************
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extern long wlan_disconnect(void);
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//*****************************************************************************
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//
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//! wlan_add_profile
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//!
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//! @param ulSecType WLAN_SEC_UNSEC,WLAN_SEC_WEP,WLAN_SEC_WPA,WLAN_SEC_WPA2
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//! @param ucSsid ssid SSID up to 32 bytes
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//! @param ulSsidLen ssid length
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//! @param ucBssid bssid 6 bytes
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//! @param ulPriority ulPriority profile priority. Lowest priority:0.
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//! @param ulPairwiseCipher_Or_TxKeyLen key length for WEP security
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//! @param ulGroupCipher_TxKeyIndex key index
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//! @param ulKeyMgmt KEY management
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//! @param ucPf_OrKey security key
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//! @param ulPassPhraseLen security key length for WPA\WPA2
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//!
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//! @return On success, zero is returned. On error, -1 is returned
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//!
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//! @brief When auto start is enabled, the device connects to
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//! station from the profiles table. Up to 7 profiles are supported.
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//! If several profiles configured the device choose the highest
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//! priority profile, within each priority group, device will choose
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//! profile based on security policy, signal strength, etc
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//! parameters. All the profiles are stored in CC3000 NVMEM.
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//!
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//! @sa wlan_ioctl_del_profile
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//
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//*****************************************************************************
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extern long wlan_add_profile(unsigned long ulSecType, unsigned char* ucSsid,
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unsigned long ulSsidLen,
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unsigned char *ucBssid,
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unsigned long ulPriority,
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unsigned long ulPairwiseCipher_Or_Key,
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unsigned long ulGroupCipher_TxKeyLen,
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unsigned long ulKeyMgmt,
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unsigned char* ucPf_OrKey,
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unsigned long ulPassPhraseLen);
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//*****************************************************************************
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//
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//! wlan_ioctl_del_profile
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//!
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//! @param index number of profile to delete
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//!
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//! @return On success, zero is returned. On error, -1 is returned
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//!
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//! @brief Delete WLAN profile
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//!
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//! @Note In order to delete all stored profile, set index to 255.
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//!
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//! @sa wlan_add_profile
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//
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//*****************************************************************************
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extern long wlan_ioctl_del_profile(unsigned long ulIndex);
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//*****************************************************************************
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//
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//! wlan_set_event_mask
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//!
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//! @param mask mask option:
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//! HCI_EVNT_WLAN_UNSOL_CONNECT connect event
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//! HCI_EVNT_WLAN_UNSOL_DISCONNECT disconnect event
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//! HCI_EVNT_WLAN_ASYNC_SIMPLE_CONFIG_DONE smart config done
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//! HCI_EVNT_WLAN_UNSOL_INIT init done
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//! HCI_EVNT_WLAN_UNSOL_DHCP dhcp event report
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//! HCI_EVNT_WLAN_ASYNC_PING_REPORT ping report
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//! HCI_EVNT_WLAN_KEEPALIVE keepalive
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//! HCI_EVNT_WLAN_TX_COMPLETE - disable information on end of transmission
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//! Saved: no.
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//!
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//! @return On success, zero is returned. On error, -1 is returned
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//!
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//! @brief Mask event according to bit mask. In case that event is
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//! masked (1), the device will not send the masked event to host.
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//
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//*****************************************************************************
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extern long wlan_set_event_mask(unsigned long ulMask);
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//*****************************************************************************
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//
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//! wlan_ioctl_statusget
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//!
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//! @param none
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//!
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//! @return WLAN_STATUS_DISCONNECTED, WLAN_STATUS_SCANING,
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//! STATUS_CONNECTING or WLAN_STATUS_CONNECTED
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//!
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//! @brief get wlan status: disconnected, scanning, connecting or connected
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//
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//*****************************************************************************
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extern long wlan_ioctl_statusget(void);
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//*****************************************************************************
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//
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//! wlan_ioctl_set_connection_policy
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//!
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//! @param should_connect_to_open_ap enable(1), disable(0) connect to any
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//! available AP. This parameter corresponds to the configuration of
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//! item # 3 in the brief description.
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//! @param should_use_fast_connect enable(1), disable(0). if enabled, tries
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//! to connect to the last connected AP. This parameter corresponds
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//! to the configuration of item # 1 in the brief description.
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//! @param auto_start enable(1), disable(0) auto connect
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//! after reset and periodically reconnect if needed. This
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//! configuration configures option 2 in the above description.
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//!
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//! @return On success, zero is returned. On error, -1 is returned
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//!
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//! @brief When auto is enabled, the device tries to connect according
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//! the following policy:
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//! 1) If fast connect is enabled and last connection is valid,
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//! the device will try to connect to it without the scanning
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//! procedure (fast). The last connection will be marked as
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//! invalid, due to adding/removing profile.
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//! 2) If profile exists, the device will try to connect it
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//! (Up to seven profiles).
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//! 3) If fast and profiles are not found, and open mode is
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//! enabled, the device will try to connect to any AP.
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//! * Note that the policy settings are stored in the CC3000 NVMEM.
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//!
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//! @sa wlan_add_profile , wlan_ioctl_del_profile
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//
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//*****************************************************************************
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extern long wlan_ioctl_set_connection_policy(
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unsigned long should_connect_to_open_ap,
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unsigned long should_use_fast_connect,
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unsigned long ulUseProfiles);
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//*****************************************************************************
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//
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//! wlan_ioctl_get_scan_results
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//!
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//! @param[in] scan_timeout parameter not supported
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//! @param[out] ucResults scan result (_wlan_full_scan_results_args_t)
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//!
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//! @return On success, zero is returned. On error, -1 is returned
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//!
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//! @brief Gets entry from scan result table.
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//! The scan results are returned one by one, and each entry
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//! represents a single AP found in the area. The following is a
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//! format of the scan result:
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//! - 4 Bytes: number of networks found
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//! - 4 Bytes: The status of the scan: 0 - aged results,
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//! 1 - results valid, 2 - no results
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//! - 42 bytes: Result entry, where the bytes are arranged as follows:
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//!
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//! - 1 bit isValid - is result valid or not
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//! - 7 bits rssi - RSSI value;
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//! - 2 bits: securityMode - security mode of the AP:
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//! 0 - Open, 1 - WEP, 2 WPA, 3 WPA2
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//! - 6 bits: SSID name length
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//! - 2 bytes: the time at which the entry has entered into
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//! scans result table
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//! - 32 bytes: SSID name
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//! - 6 bytes: BSSID
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//!
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//! @Note scan_timeout, is not supported on this version.
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//!
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//! @sa wlan_ioctl_set_scan_params
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//
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//*****************************************************************************
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extern long wlan_ioctl_get_scan_results(unsigned long ulScanTimeout,
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unsigned char *ucResults);
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//*****************************************************************************
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//
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//! wlan_ioctl_set_scan_params
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//!
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//! @param uiEnable - start/stop application scan:
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//! 1 = start scan with default interval value of 10 min.
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//! in order to set a different scan interval value apply the value
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//! in milliseconds. minimum 1 second. 0=stop). Wlan reset
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//! (wlan_stop() wlan_start()) is needed when changing scan interval
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//! value. Saved: No
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//! @param uiMinDwellTime minimum dwell time value to be used for each
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//! channel, in milliseconds. Saved: yes
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//! Recommended Value: 100 (Default: 20)
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//! @param uiMaxDwellTime maximum dwell time value to be used for each
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//! channel, in milliseconds. Saved: yes
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//! Recommended Value: 100 (Default: 30)
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//! @param uiNumOfProbeRequests max probe request between dwell time.
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//! Saved: yes. Recommended Value: 5 (Default:2)
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//! @param uiChannelMask bitwise, up to 13 channels (0x1fff).
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//! Saved: yes. Default: 0x7ff
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//! @param uiRSSIThreshold RSSI threshold. Saved: yes (Default: -80)
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//! @param uiSNRThreshold NSR threshold. Saved: yes (Default: 0)
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//! @param uiDefaultTxPower probe Tx power. Saved: yes (Default: 205)
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//! @param aiIntervalList pointer to array with 16 entries (16 channels)
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//! each entry (unsigned long) holds timeout between periodic scan
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//! (connection scan) - in milliseconds. Saved: yes. Default 2000ms.
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//!
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//! @return On success, zero is returned. On error, -1 is returned
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//!
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//! @brief start and stop scan procedure. Set scan parameters.
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//!
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//! @Note uiDefaultTxPower, is not supported on this version.
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//!
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//! @sa wlan_ioctl_get_scan_results
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//
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//*****************************************************************************
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extern long wlan_ioctl_set_scan_params(unsigned long uiEnable, unsigned long
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uiMinDwellTime,unsigned long uiMaxDwellTime,
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unsigned long uiNumOfProbeRequests,
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unsigned long uiChannelMask,
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long iRSSIThreshold,unsigned long uiSNRThreshold,
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unsigned long uiDefaultTxPower,
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unsigned long *aiIntervalList);
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//*****************************************************************************
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//
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//! wlan_smart_config_start
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//!
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//! @param algoEncryptedFlag indicates whether the information is encrypted
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//!
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//! @return On success, zero is returned. On error, -1 is returned
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//!
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//! @brief Start to acquire device profile. The device acquire its own
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//! profile, if profile message is found. The acquired AP information
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//! is stored in CC3000 EEPROM only in case AES128 encryption is used.
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//! In case AES128 encryption is not used, a profile is created by
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//! CC3000 internally.
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//!
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//! @Note An asynchronous event - Smart Config Done will be generated as soon
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//! as the process finishes successfully.
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//!
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//! @sa wlan_smart_config_set_prefix , wlan_smart_config_stop
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//
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//*****************************************************************************
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extern long wlan_smart_config_start(unsigned long algoEncryptedFlag);
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//*****************************************************************************
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//
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//! wlan_smart_config_stop
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//!
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//! @param algoEncryptedFlag indicates whether the information is encrypted
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//!
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//! @return On success, zero is returned. On error, -1 is returned
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//!
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//! @brief Stop the acquire profile procedure
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//!
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//! @sa wlan_smart_config_start , wlan_smart_config_set_prefix
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//
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//*****************************************************************************
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extern long wlan_smart_config_stop(void);
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//*****************************************************************************
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//
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//! wlan_smart_config_set_prefix
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//!
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//! @param newPrefix 3 bytes identify the SSID prefix for the Smart Config.
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//!
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//! @return On success, zero is returned. On error, -1 is returned
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//!
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//! @brief Configure station ssid prefix. The prefix is used internally
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//! in CC3000. It should always be TTT.
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//!
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//! @Note The prefix is stored in CC3000 NVMEM
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//!
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//! @sa wlan_smart_config_start , wlan_smart_config_stop
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//
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//*****************************************************************************
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extern long wlan_smart_config_set_prefix(char* cNewPrefix);
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//*****************************************************************************
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//
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//! wlan_smart_config_process
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//!
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//! @param none
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//!
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//! @return On success, zero is returned. On error, -1 is returned
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//!
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//! @brief process the acquired data and store it as a profile. The acquired
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//! AP information is stored in CC3000 EEPROM encrypted.
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//! The encrypted data is decrypted and stored as a profile.
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//! behavior is as defined by connection policy.
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//
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//*****************************************************************************
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extern long wlan_smart_config_process(void);
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//*****************************************************************************
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//
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// Close the Doxygen group.
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//! @}
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//
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//*****************************************************************************
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//*****************************************************************************
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//
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// Mark the end of the C bindings section for C++ compilers.
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//
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//*****************************************************************************
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#ifdef __cplusplus
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}
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#endif // __cplusplus
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#endif // __WLAN_H__
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