amiro-blt / Target / Source / gateway.c @ fb5a5c5b
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/************************************************************************************//** |
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* \file Source\gateway.c
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* \brief Bootloader gateway interface source file. Needs the communication module!
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* \ingroup Core
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* \internal
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*----------------------------------------------------------------------------------------
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* C O P Y R I G H T
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*----------------------------------------------------------------------------------------
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* Copyright (c) 2011 by Feaser http://www.feaser.com All rights reserved
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*
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*----------------------------------------------------------------------------------------
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* L I C E N S E
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*----------------------------------------------------------------------------------------
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* This file is part of OpenBLT. OpenBLT is free software: you can redistribute it and/or
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* modify it under the terms of the GNU General Public License as published by the Free
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* Software Foundation, either version 3 of the License, or (at your option) any later
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* version.
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*
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* OpenBLT is distributed in the hope that it will be useful, but WITHOUT ANY WARRANTY;
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* without even the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR
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* PURPOSE. See the GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License along with OpenBLT.
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* If not, see <http://www.gnu.org/licenses/>.
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*
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* A special exception to the GPL is included to allow you to distribute a combined work
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* that includes OpenBLT without being obliged to provide the source code for any
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* proprietary components. The exception text is included at the bottom of the license
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* file <license.html>.
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*
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* \endinternal
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****************************************************************************************/
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/****************************************************************************************
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* Include files
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****************************************************************************************/
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#include "boot.h" /* bootloader generic header */ |
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#if (BOOT_GATE_CAN_ENABLE > 0) |
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#include "can.h" /* can driver module */ |
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#endif
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#if (BOOT_GATE_UART_ENABLE > 0) |
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#include "uart.h" /* uart driver module */ |
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#endif
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#if (BOOT_GATE_USB_ENABLE > 0) |
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#include "usb.h" /* usb driver module */ |
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#endif
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#if (BOOT_GATE_NET_ENABLE > 0) |
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#include "net.h" /* tcp/ip driver module */ |
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#endif
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#if (BOOT_GATE_ENABLE > 0) |
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/****************************************************************************************
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* Local data declarations
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****************************************************************************************/
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/** \brief Holds the gateway interface of the currently active interface. */
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static tGateInterfaceId gateActiveInterface = GATE_IF_OTHER;
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#if (BOOT_DEBUGGING_UART2_ENABLE > 0) |
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static void InitDebugData(void); |
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#endif
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blt_bool forwarded; |
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/************************************************************************************//** |
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** \brief Initializes the gateway module. The hardware needed for the
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** communication should be initialized in the communication module!
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** \return none
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**
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****************************************************************************************/
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void GateInit(void) |
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{
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forwarded = BLT_FALSE; |
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#if (BOOT_DEBUGGING_UART2_ENABLE > 0) |
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InitDebugData(); |
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#endif
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#if (BOOT_GATE_CAN_ENABLE > 0) |
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#if (BOOT_COM_CAN_ENABLE <= 0) |
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/* initialize the CAN controller */
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CanInit(); |
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#endif
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/* set it as active */
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gateActiveInterface = GATE_IF_CAN; |
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#endif
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#if (BOOT_GATE_UART_ENABLE > 0) |
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#if (BOOT_COM_UART_ENABLE <= 0) |
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/* initialize the UART interface */
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UartInit(); |
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#endif
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/* set it as active */
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gateActiveInterface = GATE_IF_UART; |
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#endif
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#if (BOOT_GATE_USB_ENABLE > 0) |
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#if (BOOT_COM_USB_ENABLE <= 0) |
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/* initialize the USB interface */
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UsbInit(); |
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#endif
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/* set it as active */
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gateActiveInterface = GATE_IF_USB; |
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#endif
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#if (BOOT_GATE_NET_ENABLE > 0) |
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#if (BOOT_COM_NET_ENABLE <= 0) |
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/* initialize the TCP/IP interface */
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NetInit(); |
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#endif
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/* set it as active */
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gateActiveInterface = GATE_IF_NET; |
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#endif
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} /*** end of GateInit ***/
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#if (BOOT_DEBUGGING_UART2_ENABLE > 0) |
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/************************************************************************************//** |
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** \brief Initializes the debugging data.
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** \return none
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**
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****************************************************************************************/
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static void InitDebugData(void) { |
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debugDataRCan[0] = 'r'; |
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debugDataRCan[1] = 'C'; |
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debugDataRCan[2] = 'A'; |
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debugDataRCan[3] = 'N'; |
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debugDataRCan[4] = ' '; |
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debugDataRCan[5] = ':'; |
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debugDataRCan[6] = ' '; |
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debugDataRCan[7] = 10; |
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debugDataTCan[0] = 't'; |
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debugDataTCan[1] = 'C'; |
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debugDataTCan[2] = 'A'; |
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debugDataTCan[3] = 'N'; |
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debugDataTCan[4] = ' '; |
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debugDataTCan[5] = ':'; |
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debugDataTCan[6] = ' '; |
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debugDataTCan[7] = 10; |
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} /*** end of InitDebugData ***/
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#endif
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/************************************************************************************//** |
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** \brief Updates the gateway module by checking if new data was received
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** and submitting the request to process newly received data.
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** \return none
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**
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****************************************************************************************/
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void GateTask(void) |
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{
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blt_int16s messageLength; |
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/* make xcpCtoReqPacket static for runtime efficiency */
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static unsigned char xcpCtoReqPacket[BOOT_COM_RX_MAX_DATA]; |
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#if (BOOT_GATE_CAN_ENABLE > 0) |
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messageLength = (blt_int16s)CanReceivePacket(&xcpCtoReqPacket[0]);
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if (messageLength > 0) |
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{
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/* make this the active interface */
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gateActiveInterface = GATE_IF_CAN; |
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/* process packet */
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if (forwarded == BLT_TRUE) {
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XcpGatewayPacketReceived(&xcpCtoReqPacket[0], messageLength);
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} else {
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XcpPacketReceived(&xcpCtoReqPacket[0], messageLength, BLT_TRUE);
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} |
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forwarded = BLT_FALSE; |
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} |
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#endif
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#if (BOOT_GATE_UART_ENABLE > 0) |
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messageLength = (blt_int16s)UartReceivePacket(&xcpCtoReqPacket[0]);
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if (messageLength > 0) |
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{
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/* make this the active interface */
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gateActiveInterface = GATE_IF_UART; |
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/* process packet */
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if (forwarded == BLT_TRUE) {
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XcpGatewayPacketReceived(&xcpCtoReqPacket[0], messageLength);
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} else {
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XcpPacketReceived(&xcpCtoReqPacket[0], messageLength, BLT_TRUE);
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} |
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forwarded = BLT_FALSE; |
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} |
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#endif
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#if (BOOT_GATE_USB_ENABLE > 0) |
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messageLength = (blt_int16s)UsbReceivePacket(&xcpCtoReqPacket[0]);
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if (messageLength > 0) |
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{
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/* make this the active interface */
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gateActiveInterface = GATE_IF_USB; |
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/* process packet */
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if (forwarded == BLT_TRUE) {
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XcpGatewayPacketReceived(&xcpCtoReqPacket[0], messageLength);
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} else {
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XcpPacketReceived(&xcpCtoReqPacket[0], messageLength, BLT_TRUE);
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} |
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forwarded = BLT_FALSE; |
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} |
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#endif
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} /*** end of GateTask ***/
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/************************************************************************************//** |
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** \brief Releases the gateway module.
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** \return none
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**
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****************************************************************************************/
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void GateFree(void) |
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{
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#if (BOOT_GATE_USB_ENABLE > 0) |
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/* disconnect the usb device from the usb host */
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UsbFree(); |
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#endif
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} /*** end of GateFree ***/
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/************************************************************************************//** |
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** \brief Transmits the packet using the xcp transport layer.
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** \param data Pointer to the byte buffer with packet data.
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** \param len Number of data bytes that need to be transmitted.
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** \return none
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**
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****************************************************************************************/
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void GateTransmitPacket(blt_int8u *data, blt_int16u len)
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{
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#if (BOOT_GATE_CAN_ENABLE > 0) |
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/* transmit the packet. note that len is limited to 8 in the plausibility check,
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* so cast is okay.
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*/
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if (gateActiveInterface == GATE_IF_CAN)
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{
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CanTransmitPacket(data, (blt_int8u)len, 0);
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} |
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#endif
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#if (BOOT_GATE_UART_ENABLE > 0) |
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/* transmit the packet. note that len is limited to 255 in the plausibility check,
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* so cast is okay.
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*/
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if (gateActiveInterface == GATE_IF_UART)
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{
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UartTransmitPacket(data, (blt_int8u)len); |
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} |
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#endif
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#if (BOOT_GATE_USB_ENABLE > 0) |
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/* transmit the packet */
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if (gateActiveInterface == GATE_IF_USB)
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{
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UsbTransmitPacket(data, len); |
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} |
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#endif
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#if (BOOT_GATE_NET_ENABLE > 0) |
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if (gateActiveInterface == GATE_IF_NET)
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{
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/* transmit the packet */
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NetTransmitPacket(data, len); |
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} |
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#endif
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/* send signal that the packet was transmitted */
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XcpPacketTransmitted(); |
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} /*** end of GateTransmitPacket ***/
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/************************************************************************************//** |
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** \brief Obtains the maximum number of bytes that can be received on the specified
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** gateway interface.
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** \return Maximum number of bytes that can be received.
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**
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****************************************************************************************/
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blt_int16u GateGetActiveInterfaceMaxRxLen(void)
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{
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blt_int16u result; |
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/* filter on gateway interface identifier */
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switch (gateActiveInterface)
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{
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case GATE_IF_UART:
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result = BOOT_COM_UART_RX_MAX_DATA; |
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break;
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case GATE_IF_CAN:
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result = BOOT_COM_CAN_RX_MAX_DATA; |
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break;
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case GATE_IF_USB:
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result = BOOT_COM_USB_RX_MAX_DATA; |
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break;
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case GATE_IF_NET:
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result = BOOT_COM_NET_RX_MAX_DATA; |
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break;
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default:
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result = BOOT_COM_RX_MAX_DATA; |
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break;
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} |
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return result;
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} /*** end of GateGetActiveInterfaceMaxRxLen ***/
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/************************************************************************************//** |
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** \brief Obtains the maximum number of bytes that can be transmitted on the
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** specified gateway interface.
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** \return Maximum number of bytes that can be received.
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**
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****************************************************************************************/
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blt_int16u GateGetActiveInterfaceMaxTxLen(void)
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{
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blt_int16u result; |
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/* filter on gateway interface identifier */
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switch (gateActiveInterface)
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{
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case GATE_IF_UART:
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result = BOOT_COM_UART_TX_MAX_DATA; |
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break;
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case GATE_IF_CAN:
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result = BOOT_COM_CAN_TX_MAX_DATA; |
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break;
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case GATE_IF_USB:
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result = BOOT_COM_USB_TX_MAX_DATA; |
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break;
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case GATE_IF_NET:
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result = BOOT_COM_NET_TX_MAX_DATA; |
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break;
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default:
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result = BOOT_COM_TX_MAX_DATA; |
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break;
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} |
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return result;
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} /*** end of GateGetActiveInterfaceMaxTxLen ***/
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/************************************************************************************//** |
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** \brief This function obtains the XCP connection state.
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** \return BLT_TRUE when an XCP connection is established, BLT_FALSE otherwise.
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**
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****************************************************************************************/
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blt_bool GateIsConnected(void)
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{
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return XcpIsConnected();
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} /*** end of GateIsConnected ***/
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#endif /* BOOT_GATE_ENABLE > 0 */ |
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#if (BOOT_GATE_CAN_ENABLE > 0) |
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/************************************************************************************//** |
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** \brief This function transmitts the packet direct with CAN.
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** \param data Pointer to the byte buffer with packet data.
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** \param len Number of data bytes that need to be transmitted.
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** \param deviceID ID of the device the data has to be sent to.
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** \return none.
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**
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****************************************************************************************/
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void GateTransmitPacketDirect(blt_int8u *data, blt_int8u len, blt_int32u deviceID) {
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forwarded = BLT_TRUE; |
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CanTransmitPacket(data, len, deviceID); |
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XcpPacketTransmitted(); |
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} /*** end of GateTransmitPacketDirect ***/
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#if (BOOT_DEBUGGING_UART2_ENABLE > 0) |
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/************************************************************************************//** |
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** \brief This function transmitts debugging data with UART2.
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** \param debugData Pointer to the byte buffer with additional debugging data.
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** \param data Pointer to the byte buffer with packet data.
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** \param len Number of packet data bytes that need to be transmitted.
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** \return none.
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**
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****************************************************************************************/
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void BuildData(blt_int8u *debugData, blt_int8u *data, blt_int8u len) {
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UartSendDebuggingPacket(debugData, 7);
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UartSendDebuggingPacket(data, len); |
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UartSendDebuggingPacket(&debugData[7], 1); |
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} /*** end of BuildData ***/
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#endif /* BOOT_DEBUGGING_UART2_ENABLE > 0 */ |
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#endif /* BOOT_GATE_CAN_ENABLE > 0 */ |
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/*********************************** end of gateway.c **************************************/
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