Driver for CC3000 Wi-Fi module

Dependencies:   NVIC_set_all_priorities

Dependents:   CC3000_Simple_Socket Wi-Go_IOT_Demo

Information

The current code has been reworked to a full object oriented application and contains an mbed socket compatible API.

CC3000 Wi-Fi module library

Info

This is the low level driver for TI's SimpleLink CC3000 device.
Port from Avnet's Wi-Go KEIL code (based on TI's CC3000 code).
Special thanks to Jim Carver from Avnet for providing the Wi-Go board and for his assistance.

Differences with TI's original code

The code functionality stays exactly the same.
In order to make it easier to use the code, following changes were made :

  • Addition of a tool to shift all IRQ priorities to a lower level since it is very important to keep the SPI handler at the highest system priority, the WLAN interrupt the second highest and all other system interrupts at a lower priority, so their handlers can be preempted by the CC3000 interrupts.
  • Addition of low level I/O controls and conditional compiler controls in cc3000_common.h.
  • CC3000 initialisation, pin declarations, SPI and WLAN irq priorities are set in Init_HostDriver , we need to call this function at the start of the main function.
  • The SPI and HCI code are joined into one file.
  • The include list has been rearranged - Only #include "wlan.h" is needed in the user API.
  • Part of the CC3000's user eeprom memory is used to store additional info (52 bytes in NVMEM_USER_FILE_1):
# bytesDescriptionInfo
1First time config parameterUseful when connecting
2Firmware updater versionused with the Firmware update tool
2Service Pack versionused with the Firmware update tool
3Driver Versionused with the Firmware update tool
3Firmware Versionused with the Firmware update tool
1CIK validation (Client Interface Key)
40CIK data (Client Interface Key)used with the exosite

Using the Library

A user API is needed to access the CC3000 functions.
Examples:

Using the library with other processors

cc3000_common.cpp loads the irq tool for all targets:
All current mbed targets are supported by this library.

#include "NVIC_set_all_priorities.h"


All low level settings that need to change are available in cc3000_common.h

//*****************************************************************************
//              PIN CONTROLS & COMPILE CONTROLS
//*****************************************************************************
// Compiler control
#define CC3000_UNENCRYPTED_SMART_CONFIG   // No encryption
//#define CC3000_TINY_DRIVER                // Driver for small memory model CPUs

//Interrupt controls
#define NVIC_ALL_IRQ        NVIC_set_all_irq_priorities(3);         // Set ALL interrupt priorities to level 3
#define NVIC_SPI_IRQ        NVIC_SetPriority(SPI0_IRQn, 0x0);       // Wi-Fi SPI interrupt must be higher priority than SysTick
#define NVIC_PORT_IRQ       NVIC_SetPriority(PORTA_IRQn, 0x1);
#define NVIC_SYSTICK_IRQ    NVIC_SetPriority(SysTick_IRQn, 0x2);    // SysTick set to lower priority than Wi-Fi SPI bus interrupt
//#define NVIC_ADC_IRQ        NVIC_SetPriority(ADC0_IRQn, 0x3);       // ADC is the lowest of all

// Wlan controls
#define WLAN_ISF_PCR        PORTA->PCR[16]
#define WLAN_ISF_ISFR       PORTA->ISFR
#define WLAN_ISF_MASK       (1<<16)

#define WLAN_ASSERT_CS      wlan_cs = 0;   //CS : active low
#define WLAN_DEASSERT_CS    wlan_cs = 1;

#define WLAN_ASSERT_EN      wlan_en = 1;   //EN : active high
#define WLAN_DEASSERT_EN    wlan_en = 0;

#define WLAN_READ_IRQ       wlan_int

#define WLAN_ENABLE_IRQ     wlan_int.fall(&WLAN_IRQHandler);
#define WLAN_DISABLE_IRQ    wlan_int.fall(NULL);

#define WLAN_IRQ_PIN_CREATE         InterruptIn wlan_int (PTA16);
#define WLAN_EN_PIN_CREATE          DigitalOut  wlan_en  (PTA13);
#define WLAN_CS_PIN_CREATE          DigitalOut  wlan_cs  (PTD0);
#define WLAN_SPI_PORT_CREATE        SPI wlan(PTD2, PTD3, PTC5); // mosi, miso, sclk

#define WLAN_SPI_PORT_INIT          wlan.format(8,1);
#define WLAN_SPI_SET_FREQ           wlan.frequency(12000000);
#define WLAN_SPI_SET_IRQ_HANDLER    wlan_int.fall(&WLAN_IRQHandler);

#define WLAN_SPI_WRITE              wlan.write(*data++);
#define WLAN_SPI_READ               wlan.write(0x03);          // !! DO NOT MODIFY the 0x03 parameter (CC3000 will not respond).

API documentation

Due to a little problem with the links on the mbed site, the API documentation is not directly accessible (will be solved in a next release).
Currently, it is only accessible by adding modules.html to the API doc link: http://mbed.org/users/frankvnk/code/CC3000_Hostdriver/docs/tip/modules.html

Committer:
frankvnk
Date:
Fri Nov 29 13:20:07 2013 +0000
Revision:
13:e1ab6b5ab826
Parent:
6:d733efcc2c56
update CC3000_MAXIMAL_RX_SIZE

Who changed what in which revision?

UserRevisionLine numberNew contents of line
frankvnk 0:c44f0314d6ec 1 /*****************************************************************************
frankvnk 0:c44f0314d6ec 2 *
frankvnk 0:c44f0314d6ec 3 * evnt_handler.h - CC3000 Host Driver Implementation.
frankvnk 0:c44f0314d6ec 4 * Copyright (C) 2011 Texas Instruments Incorporated - http://www.ti.com/
frankvnk 0:c44f0314d6ec 5 *
frankvnk 0:c44f0314d6ec 6 * Redistribution and use in source and binary forms, with or without
frankvnk 0:c44f0314d6ec 7 * modification, are permitted provided that the following conditions
frankvnk 0:c44f0314d6ec 8 * are met:
frankvnk 0:c44f0314d6ec 9 *
frankvnk 0:c44f0314d6ec 10 * Redistributions of source code must retain the above copyright
frankvnk 0:c44f0314d6ec 11 * notice, this list of conditions and the following disclaimer.
frankvnk 0:c44f0314d6ec 12 *
frankvnk 0:c44f0314d6ec 13 * Redistributions in binary form must reproduce the above copyright
frankvnk 0:c44f0314d6ec 14 * notice, this list of conditions and the following disclaimer in the
frankvnk 0:c44f0314d6ec 15 * documentation and/or other materials provided with the
frankvnk 0:c44f0314d6ec 16 * distribution.
frankvnk 0:c44f0314d6ec 17 *
frankvnk 0:c44f0314d6ec 18 * Neither the name of Texas Instruments Incorporated nor the names of
frankvnk 0:c44f0314d6ec 19 * its contributors may be used to endorse or promote products derived
frankvnk 0:c44f0314d6ec 20 * from this software without specific prior written permission.
frankvnk 0:c44f0314d6ec 21 *
frankvnk 0:c44f0314d6ec 22 * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
frankvnk 0:c44f0314d6ec 23 * "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
frankvnk 0:c44f0314d6ec 24 * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
frankvnk 0:c44f0314d6ec 25 * A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
frankvnk 0:c44f0314d6ec 26 * OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
frankvnk 0:c44f0314d6ec 27 * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
frankvnk 0:c44f0314d6ec 28 * LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
frankvnk 0:c44f0314d6ec 29 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
frankvnk 0:c44f0314d6ec 30 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
frankvnk 0:c44f0314d6ec 31 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
frankvnk 0:c44f0314d6ec 32 * OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
frankvnk 0:c44f0314d6ec 33 *
frankvnk 0:c44f0314d6ec 34 *****************************************************************************/
frankvnk 0:c44f0314d6ec 35 #ifndef __EVENT_HANDLER_H__
frankvnk 0:c44f0314d6ec 36 #define __EVENT_HANDLER_H__
frankvnk 0:c44f0314d6ec 37
frankvnk 0:c44f0314d6ec 38 #include "netapp.h"
frankvnk 0:c44f0314d6ec 39
frankvnk 5:854f9b13a0f9 40 //*****************************************************************************
frankvnk 5:854f9b13a0f9 41 //
frankvnk 5:854f9b13a0f9 42 //! \addtogroup evnt_handler
frankvnk 5:854f9b13a0f9 43 //! @{
frankvnk 5:854f9b13a0f9 44 //
frankvnk 5:854f9b13a0f9 45 //*****************************************************************************
frankvnk 5:854f9b13a0f9 46
frankvnk 0:c44f0314d6ec 47 /** CC3000 Host driver - event handler
frankvnk 0:c44f0314d6ec 48 *
frankvnk 0:c44f0314d6ec 49 */
frankvnk 4:d8255a5aad46 50
frankvnk 0:c44f0314d6ec 51 #ifdef __cplusplus
frankvnk 0:c44f0314d6ec 52 extern "C" {
frankvnk 0:c44f0314d6ec 53 #endif
frankvnk 0:c44f0314d6ec 54
frankvnk 0:c44f0314d6ec 55 //*****************************************************************************
frankvnk 4:d8255a5aad46 56 // COMMON DEFINES
frankvnk 4:d8255a5aad46 57 //*****************************************************************************
frankvnk 4:d8255a5aad46 58
frankvnk 4:d8255a5aad46 59 #define FLOW_CONTROL_EVENT_HANDLE_OFFSET (0)
frankvnk 4:d8255a5aad46 60 #define FLOW_CONTROL_EVENT_BLOCK_MODE_OFFSET (1)
frankvnk 4:d8255a5aad46 61 #define FLOW_CONTROL_EVENT_FREE_BUFFS_OFFSET (2)
frankvnk 4:d8255a5aad46 62 #define FLOW_CONTROL_EVENT_SIZE (4)
frankvnk 4:d8255a5aad46 63
frankvnk 4:d8255a5aad46 64 #define BSD_RSP_PARAMS_SOCKET_OFFSET (0)
frankvnk 4:d8255a5aad46 65 #define BSD_RSP_PARAMS_STATUS_OFFSET (4)
frankvnk 4:d8255a5aad46 66
frankvnk 4:d8255a5aad46 67 #define GET_HOST_BY_NAME_RETVAL_OFFSET (0)
frankvnk 4:d8255a5aad46 68 #define GET_HOST_BY_NAME_ADDR_OFFSET (4)
frankvnk 4:d8255a5aad46 69
frankvnk 4:d8255a5aad46 70 #define ACCEPT_SD_OFFSET (0)
frankvnk 4:d8255a5aad46 71 #define ACCEPT_RETURN_STATUS_OFFSET (4)
frankvnk 4:d8255a5aad46 72 #define ACCEPT_ADDRESS__OFFSET (8)
frankvnk 4:d8255a5aad46 73
frankvnk 4:d8255a5aad46 74 #define SL_RECEIVE_SD_OFFSET (0)
frankvnk 4:d8255a5aad46 75 #define SL_RECEIVE_NUM_BYTES_OFFSET (4)
frankvnk 4:d8255a5aad46 76 #define SL_RECEIVE__FLAGS__OFFSET (8)
frankvnk 4:d8255a5aad46 77
frankvnk 4:d8255a5aad46 78
frankvnk 4:d8255a5aad46 79 #define SELECT_STATUS_OFFSET (0)
frankvnk 4:d8255a5aad46 80 #define SELECT_READFD_OFFSET (4)
frankvnk 4:d8255a5aad46 81 #define SELECT_WRITEFD_OFFSET (8)
frankvnk 4:d8255a5aad46 82 #define SELECT_EXFD_OFFSET (12)
frankvnk 4:d8255a5aad46 83
frankvnk 4:d8255a5aad46 84
frankvnk 4:d8255a5aad46 85 #define NETAPP_IPCONFIG_IP_OFFSET (0)
frankvnk 4:d8255a5aad46 86 #define NETAPP_IPCONFIG_SUBNET_OFFSET (4)
frankvnk 4:d8255a5aad46 87 #define NETAPP_IPCONFIG_GW_OFFSET (8)
frankvnk 4:d8255a5aad46 88 #define NETAPP_IPCONFIG_DHCP_OFFSET (12)
frankvnk 4:d8255a5aad46 89 #define NETAPP_IPCONFIG_DNS_OFFSET (16)
frankvnk 4:d8255a5aad46 90 #define NETAPP_IPCONFIG_MAC_OFFSET (20)
frankvnk 4:d8255a5aad46 91 #define NETAPP_IPCONFIG_SSID_OFFSET (26)
frankvnk 4:d8255a5aad46 92
frankvnk 4:d8255a5aad46 93 #define NETAPP_IPCONFIG_IP_LENGTH (4)
frankvnk 4:d8255a5aad46 94 #define NETAPP_IPCONFIG_MAC_LENGTH (6)
frankvnk 4:d8255a5aad46 95 #define NETAPP_IPCONFIG_SSID_LENGTH (32)
frankvnk 4:d8255a5aad46 96
frankvnk 4:d8255a5aad46 97
frankvnk 4:d8255a5aad46 98 #define NETAPP_PING_PACKETS_SENT_OFFSET (0)
frankvnk 4:d8255a5aad46 99 #define NETAPP_PING_PACKETS_RCVD_OFFSET (4)
frankvnk 4:d8255a5aad46 100 #define NETAPP_PING_MIN_RTT_OFFSET (8)
frankvnk 4:d8255a5aad46 101 #define NETAPP_PING_MAX_RTT_OFFSET (12)
frankvnk 4:d8255a5aad46 102 #define NETAPP_PING_AVG_RTT_OFFSET (16)
frankvnk 4:d8255a5aad46 103
frankvnk 4:d8255a5aad46 104 #define GET_SCAN_RESULTS_TABlE_COUNT_OFFSET (0)
frankvnk 4:d8255a5aad46 105 #define GET_SCAN_RESULTS_SCANRESULT_STATUS_OFFSET (4)
frankvnk 4:d8255a5aad46 106 #define GET_SCAN_RESULTS_ISVALID_TO_SSIDLEN_OFFSET (8)
frankvnk 4:d8255a5aad46 107 #define GET_SCAN_RESULTS_FRAME_TIME_OFFSET (10)
frankvnk 4:d8255a5aad46 108 #define GET_SCAN_RESULTS_SSID_MAC_LENGTH (38)
frankvnk 4:d8255a5aad46 109
frankvnk 4:d8255a5aad46 110 //*****************************************************************************
frankvnk 0:c44f0314d6ec 111 //
frankvnk 0:c44f0314d6ec 112 // Prototypes for the APIs.
frankvnk 0:c44f0314d6ec 113 //
frankvnk 0:c44f0314d6ec 114 //*****************************************************************************
frankvnk 0:c44f0314d6ec 115
frankvnk 5:854f9b13a0f9 116 /** Handle unsolicited event from type patch request.
frankvnk 4:d8255a5aad46 117 * @param event_hdr event header
frankvnk 4:d8255a5aad46 118 * @return none
frankvnk 4:d8255a5aad46 119 */
frankvnk 4:d8255a5aad46 120 void hci_unsol_handle_patch_request(char *event_hdr);
frankvnk 4:d8255a5aad46 121
frankvnk 4:d8255a5aad46 122
frankvnk 4:d8255a5aad46 123 /**
frankvnk 5:854f9b13a0f9 124 * Parse the incoming event packets and issue corresponding event handler from global array of handlers pointers.
frankvnk 4:d8255a5aad46 125 * @param pRetParams incoming data buffer
frankvnk 4:d8255a5aad46 126 * @param from from information (in case of data received)
frankvnk 4:d8255a5aad46 127 * @param fromlen from information length (in case of data received)
frankvnk 4:d8255a5aad46 128 * @return none
frankvnk 4:d8255a5aad46 129 */
frankvnk 0:c44f0314d6ec 130 extern unsigned char *hci_event_handler(void *pRetParams, unsigned char *from, unsigned char *fromlen);
frankvnk 0:c44f0314d6ec 131
frankvnk 4:d8255a5aad46 132 /**
frankvnk 5:854f9b13a0f9 133 * Handle unsolicited events.
frankvnk 4:d8255a5aad46 134 * @param event_hdr event header
frankvnk 4:d8255a5aad46 135 * @return 1 if event supported and handled
frankvnk 4:d8255a5aad46 136 * @return 0 if event is not supported
frankvnk 4:d8255a5aad46 137 */
frankvnk 0:c44f0314d6ec 138 extern long hci_unsol_event_handler(char *event_hdr);
frankvnk 0:c44f0314d6ec 139
frankvnk 4:d8255a5aad46 140 /**
frankvnk 4:d8255a5aad46 141 * Parse the incoming unsolicited event packets and start corresponding event handler.
frankvnk 4:d8255a5aad46 142 * @param None
frankvnk 4:d8255a5aad46 143 * @return ESUCCESS if successful, EFAIL if an error occurred
frankvnk 4:d8255a5aad46 144 */
frankvnk 0:c44f0314d6ec 145 extern long hci_unsolicited_event_handler(void);
frankvnk 0:c44f0314d6ec 146
frankvnk 4:d8255a5aad46 147
frankvnk 0:c44f0314d6ec 148 #define M_BSD_RESP_PARAMS_OFFSET(hci_event_hdr)((char *)(hci_event_hdr) + HCI_EVENT_HEADER_SIZE)
frankvnk 0:c44f0314d6ec 149
frankvnk 0:c44f0314d6ec 150 #define SOCKET_STATUS_ACTIVE 0
frankvnk 0:c44f0314d6ec 151 #define SOCKET_STATUS_INACTIVE 1
frankvnk 0:c44f0314d6ec 152 /* Init socket_active_status = 'all ones': init all sockets with SOCKET_STATUS_INACTIVE.
frankvnk 0:c44f0314d6ec 153 Will be changed by 'set_socket_active_status' upon 'connect' and 'accept' calls */
frankvnk 0:c44f0314d6ec 154 #define SOCKET_STATUS_INIT_VAL 0xFFFF
frankvnk 0:c44f0314d6ec 155 #define M_IS_VALID_SD(sd) ((0 <= (sd)) && ((sd) <= 7))
frankvnk 0:c44f0314d6ec 156 #define M_IS_VALID_STATUS(status) (((status) == SOCKET_STATUS_ACTIVE)||((status) == SOCKET_STATUS_INACTIVE))
frankvnk 0:c44f0314d6ec 157
frankvnk 0:c44f0314d6ec 158 extern unsigned long socket_active_status;
frankvnk 0:c44f0314d6ec 159
frankvnk 4:d8255a5aad46 160 /**
frankvnk 4:d8255a5aad46 161 * Check if the socket ID and status are valid and set the global socket status accordingly.
frankvnk 4:d8255a5aad46 162 * @param Sd
frankvnk 4:d8255a5aad46 163 * @param Status
frankvnk 4:d8255a5aad46 164 * @return none
frankvnk 4:d8255a5aad46 165 */
frankvnk 0:c44f0314d6ec 166 extern void set_socket_active_status(long Sd, long Status);
frankvnk 4:d8255a5aad46 167
frankvnk 4:d8255a5aad46 168 /**
frankvnk 4:d8255a5aad46 169 * Keep track on the number of packets transmitted and update the number of free buffer in the SL device.
frankvnk 5:854f9b13a0f9 170 * Called when unsolicited event = HCI_EVNT_DATA_UNSOL_FREE_BUFF has received.\n
frankvnk 4:d8255a5aad46 171 * @param pEvent pointer to the string contains parameters for IPERF
frankvnk 4:d8255a5aad46 172 * @return ESUCCESS if successful, EFAIL if an error occurred
frankvnk 4:d8255a5aad46 173 */
frankvnk 4:d8255a5aad46 174 long hci_event_unsol_flowcontrol_handler(char *pEvent);
frankvnk 4:d8255a5aad46 175
frankvnk 4:d8255a5aad46 176 /**
frankvnk 5:854f9b13a0f9 177 * Get the socket status.
frankvnk 4:d8255a5aad46 178 * @param Sd Socket IS
frankvnk 4:d8255a5aad46 179 * @return Current status of the socket.
frankvnk 4:d8255a5aad46 180 */
frankvnk 0:c44f0314d6ec 181 extern long get_socket_active_status(long Sd);
frankvnk 0:c44f0314d6ec 182
frankvnk 4:d8255a5aad46 183 /**
frankvnk 5:854f9b13a0f9 184 * Update the socket status.
frankvnk 4:d8255a5aad46 185 * @param resp_params Socket IS
frankvnk 4:d8255a5aad46 186 * @return Current status of the socket.
frankvnk 4:d8255a5aad46 187 */
frankvnk 4:d8255a5aad46 188 void update_socket_active_status(char *resp_params);
frankvnk 4:d8255a5aad46 189
frankvnk 4:d8255a5aad46 190 /**
frankvnk 4:d8255a5aad46 191 * Wait for event, pass it to the hci_event_handler and update the event opcode in a global variable.
frankvnk 4:d8255a5aad46 192 * @param usOpcode command operation code
frankvnk 4:d8255a5aad46 193 * @param pRetParams command return parameters
frankvnk 4:d8255a5aad46 194 * @return none
frankvnk 4:d8255a5aad46 195 */
frankvnk 4:d8255a5aad46 196 void SimpleLinkWaitEvent(unsigned short usOpcode, void *pRetParams);
frankvnk 4:d8255a5aad46 197
frankvnk 4:d8255a5aad46 198 /**
frankvnk 5:854f9b13a0f9 199 * Wait for data, pass it to the hci_event_handler and set the data available flag.
frankvnk 4:d8255a5aad46 200 * @param pBuf data buffer
frankvnk 4:d8255a5aad46 201 * @param from from information
frankvnk 4:d8255a5aad46 202 * @param fromlen from information length
frankvnk 4:d8255a5aad46 203 * @return none
frankvnk 4:d8255a5aad46 204 */
frankvnk 4:d8255a5aad46 205 void SimpleLinkWaitData(unsigned char *pBuf, unsigned char *from, unsigned char *fromlen);
frankvnk 4:d8255a5aad46 206
frankvnk 4:d8255a5aad46 207
frankvnk 0:c44f0314d6ec 208 typedef struct _bsd_accept_return_t
frankvnk 0:c44f0314d6ec 209 {
frankvnk 0:c44f0314d6ec 210 long iSocketDescriptor;
frankvnk 0:c44f0314d6ec 211 long iStatus;
frankvnk 0:c44f0314d6ec 212 sockaddr tSocketAddress;
frankvnk 0:c44f0314d6ec 213
frankvnk 0:c44f0314d6ec 214 } tBsdReturnParams;
frankvnk 0:c44f0314d6ec 215
frankvnk 0:c44f0314d6ec 216
frankvnk 0:c44f0314d6ec 217 typedef struct _bsd_read_return_t
frankvnk 0:c44f0314d6ec 218 {
frankvnk 0:c44f0314d6ec 219 long iSocketDescriptor;
frankvnk 0:c44f0314d6ec 220 long iNumberOfBytes;
frankvnk 4:d8255a5aad46 221 unsigned long uiFlags;
frankvnk 0:c44f0314d6ec 222 } tBsdReadReturnParams;
frankvnk 0:c44f0314d6ec 223
frankvnk 0:c44f0314d6ec 224 #define BSD_RECV_FROM_FROMLEN_OFFSET (4)
frankvnk 0:c44f0314d6ec 225 #define BSD_RECV_FROM_FROM_OFFSET (16)
frankvnk 0:c44f0314d6ec 226
frankvnk 0:c44f0314d6ec 227
frankvnk 0:c44f0314d6ec 228 typedef struct _bsd_select_return_t
frankvnk 0:c44f0314d6ec 229 {
frankvnk 0:c44f0314d6ec 230 long iStatus;
frankvnk 0:c44f0314d6ec 231 unsigned long uiRdfd;
frankvnk 0:c44f0314d6ec 232 unsigned long uiWrfd;
frankvnk 0:c44f0314d6ec 233 unsigned long uiExfd;
frankvnk 0:c44f0314d6ec 234 } tBsdSelectRecvParams;
frankvnk 0:c44f0314d6ec 235
frankvnk 0:c44f0314d6ec 236
frankvnk 0:c44f0314d6ec 237 typedef struct _bsd_getsockopt_return_t
frankvnk 0:c44f0314d6ec 238 {
frankvnk 4:d8255a5aad46 239 unsigned char ucOptValue[4];
frankvnk 4:d8255a5aad46 240 char iStatus;
frankvnk 0:c44f0314d6ec 241 } tBsdGetSockOptReturnParams;
frankvnk 0:c44f0314d6ec 242
frankvnk 0:c44f0314d6ec 243 typedef struct _bsd_gethostbyname_return_t
frankvnk 0:c44f0314d6ec 244 {
frankvnk 4:d8255a5aad46 245 long retVal;
frankvnk 4:d8255a5aad46 246 long outputAddress;
frankvnk 0:c44f0314d6ec 247 } tBsdGethostbynameParams;
frankvnk 0:c44f0314d6ec 248
frankvnk 0:c44f0314d6ec 249 #ifdef __cplusplus
frankvnk 0:c44f0314d6ec 250 }
frankvnk 0:c44f0314d6ec 251 #endif // __cplusplus
frankvnk 0:c44f0314d6ec 252
frankvnk 5:854f9b13a0f9 253 //*****************************************************************************
frankvnk 5:854f9b13a0f9 254 //
frankvnk 5:854f9b13a0f9 255 // Close the Doxygen group.
frankvnk 5:854f9b13a0f9 256 //! @}
frankvnk 5:854f9b13a0f9 257 //
frankvnk 5:854f9b13a0f9 258 //*****************************************************************************
frankvnk 5:854f9b13a0f9 259
frankvnk 0:c44f0314d6ec 260 #endif // __EVENT_HANDLER_H__
frankvnk 0:c44f0314d6ec 261
frankvnk 0:c44f0314d6ec 262
frankvnk 0:c44f0314d6ec 263
frankvnk 6:d733efcc2c56 264
frankvnk 6:d733efcc2c56 265
frankvnk 6:d733efcc2c56 266
frankvnk 6:d733efcc2c56 267
frankvnk 6:d733efcc2c56 268