mirror of
https://github.com/FreeRTOS/FreeRTOS-Plus-TCP
synced 2025-10-19 20:13:05 +08:00
540 lines
23 KiB
C
540 lines
23 KiB
C
/*
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* FreeRTOS+TCP V4.3.0
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* Copyright (C) 2022 Amazon.com, Inc. or its affiliates. All Rights Reserved.
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*
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* SPDX-License-Identifier: MIT
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*
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* Permission is hereby granted, free of charge, to any person obtaining a copy of
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* this software and associated documentation files (the "Software"), to deal in
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* the Software without restriction, including without limitation the rights to
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* use, copy, modify, merge, publish, distribute, sublicense, and/or sell copies of
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* the Software, and to permit persons to whom the Software is furnished to do so,
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* subject to the following conditions:
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*
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* The above copyright notice and this permission notice shall be included in all
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* copies or substantial portions of the Software.
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*
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* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
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* IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, FITNESS
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* FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR
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* COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER
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* IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN
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* CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
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*
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* http://aws.amazon.com/freertos
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* http://www.FreeRTOS.org
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*/
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/**
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* @file FreeRTOS_TCP_Transmission_IPv6.c
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* @brief Module which prepares the packet to be sent through
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* a socket for FreeRTOS+TCP.
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* It depends on FreeRTOS_TCP_WIN.c, which handles the TCP windowing
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* schemes.
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*
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* Endianness: in this module all ports and IP addresses are stored in
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* host byte-order, except fields in the IP-packets
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*/
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/* Standard includes. */
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#include <stdint.h>
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#include <stdio.h>
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/* FreeRTOS includes. */
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#include "FreeRTOS.h"
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#include "task.h"
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#include "queue.h"
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#include "semphr.h"
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/* FreeRTOS+TCP includes. */
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#include "FreeRTOS_IP.h"
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#include "FreeRTOS_Sockets.h"
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#include "FreeRTOS_IP_Private.h"
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#include "NetworkInterface.h"
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#include "NetworkBufferManagement.h"
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#include "FreeRTOSIPConfigDefaults.h"
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#include "FreeRTOS_ND.h"
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#include "FreeRTOS_TCP_IP.h"
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#include "FreeRTOS_TCP_Reception.h"
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#include "FreeRTOS_TCP_Transmission.h"
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#include "FreeRTOS_TCP_State_Handling.h"
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#include "FreeRTOS_TCP_Utils.h"
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/* Just make sure the contents doesn't get compiled if TCP is not enabled. */
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/* *INDENT-OFF* */
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#if( ipconfigUSE_IPv6 != 0 ) && ( ipconfigUSE_TCP == 1 )
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/* *INDENT-ON* */
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/*------------------------------------------------------------------------*/
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/**
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* @brief Return (or send) a packet to the peer. The data is stored in pxBuffer,
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* which may either point to a real network buffer or to a TCP socket field
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* called 'xTCP.xPacket'. A temporary xNetworkBuffer will be used to pass
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* the data to the NIC.
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*
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* @param[in] pxSocket The socket owning the connection.
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* @param[in] pxDescriptor The network buffer descriptor carrying the packet.
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* @param[in] ulLen Length of the packet being sent.
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* @param[in] xReleaseAfterSend pdTRUE if the ownership of the descriptor is
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* transferred to the network interface.
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*/
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void prvTCPReturnPacket_IPV6( FreeRTOS_Socket_t * pxSocket,
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NetworkBufferDescriptor_t * pxDescriptor,
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uint32_t ulLen,
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BaseType_t xReleaseAfterSend )
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{
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TCPPacket_IPv6_t * pxTCPPacket = NULL;
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ProtocolHeaders_t * pxProtocolHeaders = NULL;
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IPHeader_IPv6_t * pxIPHeader = NULL;
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BaseType_t xDoRelease = xReleaseAfterSend;
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EthernetHeader_t * pxEthernetHeader = NULL;
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NetworkBufferDescriptor_t * pxNetworkBuffer = pxDescriptor;
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NetworkBufferDescriptor_t xTempBuffer;
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/* memcpy() helper variables for MISRA Rule 21.15 compliance*/
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MACAddress_t xMACAddress;
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const void * pvCopySource = NULL;
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void * pvCopyDest = NULL;
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const size_t uxIPHeaderSize = ipSIZE_OF_IPv6_HEADER;
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IPv6_Address_t xDestinationIPAddress;
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do
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{
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/* Use do/while to be able to break out of the flow */
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if( ( pxNetworkBuffer == NULL ) && ( pxSocket == NULL ) )
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{
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/* Either 'pxNetworkBuffer' or 'pxSocket' should be defined. */
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break;
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}
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/* For sending, a pseudo network buffer will be used, as explained above. */
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if( pxNetworkBuffer == NULL )
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{
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pxNetworkBuffer = &xTempBuffer;
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( void ) memset( &xTempBuffer, 0, sizeof( xTempBuffer ) );
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#if ( ipconfigUSE_LINKED_RX_MESSAGES != 0 )
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{
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pxNetworkBuffer->pxNextBuffer = NULL;
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}
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#endif
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pxNetworkBuffer->pucEthernetBuffer = pxSocket->u.xTCP.xPacket.u.ucLastPacket;
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pxNetworkBuffer->xDataLength = sizeof( pxSocket->u.xTCP.xPacket.u.ucLastPacket );
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xDoRelease = pdFALSE;
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}
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#if ( ipconfigZERO_COPY_TX_DRIVER != 0 )
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{
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if( xDoRelease == pdFALSE )
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{
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/* A zero-copy network driver wants to pass the packet buffer
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* to DMA, so a new buffer must be created. */
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pxNetworkBuffer = pxDuplicateNetworkBufferWithDescriptor( pxNetworkBuffer, ( size_t ) pxNetworkBuffer->xDataLength );
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if( pxNetworkBuffer != NULL )
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{
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xDoRelease = pdTRUE;
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}
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else
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{
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FreeRTOS_debug_printf( ( "prvTCPReturnPacket: duplicate failed\n" ) );
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}
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}
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}
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#endif /* ipconfigZERO_COPY_TX_DRIVER */
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#ifndef __COVERITY__
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if( pxNetworkBuffer != NULL ) /* LCOV_EXCL_BR_LINE the 2nd branch will never be reached */
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#endif
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{
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eResolutionLookupResult_t eResult;
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NetworkInterface_t * pxInterface;
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configASSERT( pxNetworkBuffer->pucEthernetBuffer != NULL );
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/* MISRA Ref 11.3.1 [Misaligned access] */
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/* More details at: https://github.com/FreeRTOS/FreeRTOS-Plus-TCP/blob/main/MISRA.md#rule-113 */
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/* coverity[misra_c_2012_rule_11_3_violation] */
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pxIPHeader = ( ( IPHeader_IPv6_t * ) &( pxNetworkBuffer->pucEthernetBuffer[ ipSIZE_OF_ETH_HEADER ] ) );
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/* Map the Ethernet buffer onto a TCPPacket_t struct for easy access to the fields. */
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/* MISRA Ref 11.3.1 [Misaligned access] */
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/* More details at: https://github.com/FreeRTOS/FreeRTOS-Plus-TCP/blob/main/MISRA.md#rule-113 */
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/* coverity[misra_c_2012_rule_11_3_violation] */
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pxTCPPacket = ( TCPPacket_IPv6_t * ) pxNetworkBuffer->pucEthernetBuffer;
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pxEthernetHeader = ( EthernetHeader_t * ) &( pxTCPPacket->xEthernetHeader );
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/* MISRA Ref 11.3.1 [Misaligned access] */
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/* More details at: https://github.com/FreeRTOS/FreeRTOS-Plus-TCP/blob/main/MISRA.md#rule-113 */
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/* coverity[misra_c_2012_rule_11_3_violation] */
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pxProtocolHeaders = ( ProtocolHeaders_t * ) &( pxNetworkBuffer->pucEthernetBuffer[ ipSIZE_OF_ETH_HEADER + uxIPHeaderSize ] );
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if( pxNetworkBuffer->pxEndPoint == NULL )
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{
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prvTCPReturn_SetEndPoint( pxSocket, pxNetworkBuffer, uxIPHeaderSize );
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if( pxNetworkBuffer->pxEndPoint == NULL )
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{
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if( xDoRelease != pdFALSE )
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{
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vReleaseNetworkBufferAndDescriptor( pxNetworkBuffer );
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}
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pxNetworkBuffer = NULL;
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break;
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}
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}
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/* Fill the packet, swapping from- and to-addresses. */
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if( pxSocket != NULL )
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{
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prvTCPReturn_CheckTCPWindow( pxSocket, pxNetworkBuffer, uxIPHeaderSize );
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prvTCPReturn_SetSequenceNumber( pxSocket, pxNetworkBuffer, uxIPHeaderSize, ulLen );
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( void ) memcpy( pxIPHeader->xDestinationAddress.ucBytes, pxSocket->u.xTCP.xRemoteIP.xIP_IPv6.ucBytes, ipSIZE_OF_IPv6_ADDRESS );
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( void ) memcpy( pxIPHeader->xSourceAddress.ucBytes, pxNetworkBuffer->pxEndPoint->ipv6_settings.xIPAddress.ucBytes, ipSIZE_OF_IPv6_ADDRESS );
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}
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else
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{
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IPv6_Address_t xTempAddress;
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/* Sending data without a socket, probably replying with a RST flag
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* Just swap the two sequence numbers. */
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vFlip_32( pxProtocolHeaders->xTCPHeader.ulSequenceNumber, pxProtocolHeaders->xTCPHeader.ulAckNr );
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( void ) memcpy( xTempAddress.ucBytes, pxIPHeader->xDestinationAddress.ucBytes, ipSIZE_OF_IPv6_ADDRESS );
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( void ) memcpy( pxIPHeader->xDestinationAddress.ucBytes, pxIPHeader->xSourceAddress.ucBytes, ipSIZE_OF_IPv6_ADDRESS );
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( void ) memcpy( pxIPHeader->xSourceAddress.ucBytes, xTempAddress.ucBytes, ipSIZE_OF_IPv6_ADDRESS );
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}
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/* In IPv6, the "payload length" does not include the size of the IP-header */
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pxIPHeader->usPayloadLength = FreeRTOS_htons( ulLen - sizeof( IPHeader_IPv6_t ) );
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#if ( ipconfigDRIVER_INCLUDED_TX_IP_CHECKSUM == 0 )
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{
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/* calculate the TCP checksum for an outgoing packet. */
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uint32_t ulTotalLength = ulLen + ipSIZE_OF_ETH_HEADER;
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( void ) usGenerateProtocolChecksum( ( uint8_t * ) pxNetworkBuffer->pucEthernetBuffer, ulTotalLength, pdTRUE );
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}
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#endif /* ipconfigDRIVER_INCLUDED_TX_IP_CHECKSUM == 0 */
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vFlip_16( pxProtocolHeaders->xTCPHeader.usSourcePort, pxProtocolHeaders->xTCPHeader.usDestinationPort );
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/* Important: tell NIC driver how many bytes must be sent. */
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pxNetworkBuffer->xDataLength = ( size_t ) ulLen;
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pxNetworkBuffer->xDataLength += ipSIZE_OF_ETH_HEADER;
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#if ( ipconfigUSE_LINKED_RX_MESSAGES != 0 )
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{
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pxNetworkBuffer->pxNextBuffer = NULL;
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}
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#endif
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( void ) memcpy( xDestinationIPAddress.ucBytes, pxIPHeader->xDestinationAddress.ucBytes, ipSIZE_OF_IPv6_ADDRESS );
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eResult = eNDGetCacheEntry( &xDestinationIPAddress, &xMACAddress, &( pxNetworkBuffer->pxEndPoint ) );
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if( eResult == eResolutionCacheHit )
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{
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pvCopySource = &xMACAddress;
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}
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else
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{
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pvCopySource = &pxEthernetHeader->xSourceAddress;
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}
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/* Fill in the destination MAC addresses. */
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pvCopyDest = &pxEthernetHeader->xDestinationAddress;
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( void ) memcpy( pvCopyDest, pvCopySource, sizeof( pxEthernetHeader->xDestinationAddress ) );
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/*
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* Use helper variables for memcpy() to remain
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* compliant with MISRA Rule 21.15. These should be
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* optimized away.
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*/
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pvCopySource = pxNetworkBuffer->pxEndPoint->xMACAddress.ucBytes;
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pvCopyDest = &pxEthernetHeader->xSourceAddress;
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( void ) memcpy( pvCopyDest, pvCopySource, ( size_t ) ipMAC_ADDRESS_LENGTH_BYTES );
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#if ( ipconfigETHERNET_MINIMUM_PACKET_BYTES > 0 )
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{
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if( pxNetworkBuffer->xDataLength < ( size_t ) ipconfigETHERNET_MINIMUM_PACKET_BYTES )
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{
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BaseType_t xIndex;
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for( xIndex = ( BaseType_t ) pxNetworkBuffer->xDataLength; xIndex < ( BaseType_t ) ipconfigETHERNET_MINIMUM_PACKET_BYTES; xIndex++ )
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{
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pxNetworkBuffer->pucEthernetBuffer[ xIndex ] = 0U;
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}
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pxNetworkBuffer->xDataLength = ( size_t ) ipconfigETHERNET_MINIMUM_PACKET_BYTES;
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}
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}
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#endif /* if( ipconfigETHERNET_MINIMUM_PACKET_BYTES > 0 ) */
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/* Send! */
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iptraceNETWORK_INTERFACE_OUTPUT( pxNetworkBuffer->xDataLength, pxNetworkBuffer->pucEthernetBuffer );
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configASSERT( pxNetworkBuffer->pxEndPoint->pxNetworkInterface != NULL );
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configASSERT( pxNetworkBuffer->pxEndPoint->pxNetworkInterface->pfOutput != NULL );
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pxInterface = pxNetworkBuffer->pxEndPoint->pxNetworkInterface;
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( void ) pxInterface->pfOutput( pxInterface, pxNetworkBuffer, xDoRelease );
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if( xDoRelease == pdFALSE )
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{
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/* Swap-back some fields, as pxBuffer probably points to a socket field
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* containing the packet header. */
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vFlip_16( pxTCPPacket->xTCPHeader.usSourcePort, pxTCPPacket->xTCPHeader.usDestinationPort );
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( void ) memcpy( pxIPHeader->xSourceAddress.ucBytes, pxIPHeader->xDestinationAddress.ucBytes, ipSIZE_OF_IPv6_ADDRESS );
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}
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else
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{
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/* Nothing to do: the buffer has been passed to DMA and will be released after use */
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}
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} /* if( pxNetworkBuffer != NULL ) */
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} while( ipFALSE_BOOL );
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}
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/*-----------------------------------------------------------*/
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/**
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* @brief Let ND look-up the MAC-address of the peer and initialise the first SYN
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* packet.
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*
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* @param[in] pxSocket The socket owning the TCP connection. The first packet shall
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* be created in this socket.
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*
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* @return pdTRUE: if the packet was successfully created and the first SYN can be sent.
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* Else pdFALSE.
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*
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* @note Connecting sockets have a special state: eCONNECT_SYN. In this phase,
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* the Ethernet address of the target will be found using ND. In case the
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* target IP address is not within the netmask, the hardware address of the
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* gateway will be used.
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*/
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BaseType_t prvTCPPrepareConnect_IPV6( FreeRTOS_Socket_t * pxSocket )
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{
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TCPPacket_IPv6_t * pxTCPPacket = NULL;
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IPHeader_IPv6_t * pxIPHeader = NULL;
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eResolutionLookupResult_t eReturned;
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IP_Address_t xRemoteIP;
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MACAddress_t xEthAddress;
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BaseType_t xReturn = pdTRUE;
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uint32_t ulInitialSequenceNumber = 0;
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ProtocolHeaders_t * pxProtocolHeaders = NULL;
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NetworkEndPoint_t * pxEndPoint = NULL;
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#if ( ipconfigHAS_PRINTF != 0 )
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{
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/* Only necessary for nicer logging. */
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( void ) memset( xEthAddress.ucBytes, 0, sizeof( xEthAddress.ucBytes ) );
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}
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#endif /* ipconfigHAS_PRINTF != 0 */
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( void ) memset( xRemoteIP.xIP_IPv6.ucBytes, 0, ipSIZE_OF_IPv6_ADDRESS );
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( void ) memcpy( xRemoteIP.xIP_IPv6.ucBytes, pxSocket->u.xTCP.xRemoteIP.xIP_IPv6.ucBytes, ipSIZE_OF_IPv6_ADDRESS );
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eReturned = eNDGetCacheEntry( &( xRemoteIP.xIP_IPv6 ), &( xEthAddress ), &( pxEndPoint ) );
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FreeRTOS_printf( ( "eNDGetCacheEntry: %d with end-point %p\n", eReturned, ( void * ) pxEndPoint ) );
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if( pxEndPoint != NULL )
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{
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pxSocket->pxEndPoint = pxEndPoint;
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}
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/* MISRA Ref 11.3.1 [Misaligned access] */
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/* More details at: https://github.com/FreeRTOS/FreeRTOS-Plus-TCP/blob/main/MISRA.md#rule-113 */
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/* coverity[misra_c_2012_rule_11_3_violation] */
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pxProtocolHeaders = ( ( ProtocolHeaders_t * )
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&( pxSocket->u.xTCP.xPacket.u.ucLastPacket[ ipSIZE_OF_ETH_HEADER + uxIPHeaderSizeSocket( pxSocket ) ] ) );
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switch( eReturned )
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{
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case eResolutionCacheHit: /* An ND table lookup found a valid entry. */
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break; /* We can now prepare the SYN packet. */
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case eResolutionCacheMiss: /* An ND table lookup did not find a valid entry. */
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case eResolutionFailed: /* There is no IP address, or an ND is still in progress. */
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default:
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/* Count the number of times it could not find the ND address. */
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pxSocket->u.xTCP.ucRepCount++;
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FreeRTOS_printf( ( "Looking up %pip with%s end-point\n", ( void * ) xRemoteIP.xIP_IPv6.ucBytes, ( pxEndPoint != NULL ) ? "" : "out" ) );
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if( pxEndPoint != NULL )
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{
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size_t uxNeededSize;
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NetworkBufferDescriptor_t * pxNetworkBuffer;
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uxNeededSize = ipSIZE_OF_ETH_HEADER + ipSIZE_OF_IPv6_HEADER + sizeof( ICMPHeader_IPv6_t );
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pxNetworkBuffer = pxGetNetworkBufferWithDescriptor( uxNeededSize, 0U );
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if( pxNetworkBuffer != NULL )
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{
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pxNetworkBuffer->pxEndPoint = pxEndPoint;
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vNDSendNeighbourSolicitation( pxNetworkBuffer, &( xRemoteIP.xIP_IPv6 ) );
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}
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}
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xReturn = pdFALSE;
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break;
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}
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if( xReturn != pdFALSE )
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{
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/* Get a difficult-to-predict initial sequence number for this 4-tuple. */
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ulInitialSequenceNumber = ulApplicationGetNextSequenceNumber( pxSocket->xLocalAddress.ulIP_IPv4,
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pxSocket->usLocalPort,
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pxSocket->u.xTCP.xRemoteIP.ulIP_IPv4,
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pxSocket->u.xTCP.usRemotePort );
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/* Check for a random number generation error. */
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if( ulInitialSequenceNumber == 0U )
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{
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xReturn = pdFALSE;
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}
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}
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if( xReturn != pdFALSE )
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{
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/* The MAC-address of the peer (or gateway) has been found,
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* now prepare the initial TCP packet and some fields in the socket. Map
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* the buffer onto the TCPPacket_IPv6_t struct to easily access it's field. */
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/* MISRA Ref 11.3.1 [Misaligned access] */
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/* More details at: https://github.com/FreeRTOS/FreeRTOS-Plus-TCP/blob/main/MISRA.md#rule-113 */
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/* coverity[misra_c_2012_rule_11_3_violation] */
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pxTCPPacket = ( ( TCPPacket_IPv6_t * ) pxSocket->u.xTCP.xPacket.u.ucLastPacket );
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pxIPHeader = &( pxTCPPacket->xIPHeader );
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/* reset the retry counter to zero. */
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pxSocket->u.xTCP.ucRepCount = 0U;
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/* And remember that the connect/SYN data are prepared. */
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pxSocket->u.xTCP.bits.bConnPrepared = pdTRUE_UNSIGNED;
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/* Now that the Ethernet address is known, the initial packet can be
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* prepared. */
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( void ) memset( pxSocket->u.xTCP.xPacket.u.ucLastPacket, 0, sizeof( pxSocket->u.xTCP.xPacket.u.ucLastPacket ) );
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/* Write the Ethernet address in Source, because it will be swapped by
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* prvTCPReturnPacket(). */
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( void ) memcpy( ( void * ) ( &( pxTCPPacket->xEthernetHeader.xSourceAddress ) ), ( const void * ) ( &xEthAddress ), sizeof( xEthAddress ) );
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if( pxSocket->bits.bIsIPv6 != pdFALSE_UNSIGNED )
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{
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/* 'ipIPv4_FRAME_TYPE' is already in network-byte-order. */
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pxTCPPacket->xEthernetHeader.usFrameType = ipIPv6_FRAME_TYPE;
|
|
|
|
pxIPHeader->ucVersionTrafficClass = ( uint8_t ) 0x60U;
|
|
pxIPHeader->ucTrafficClassFlow = ( uint8_t ) 0x00;
|
|
pxIPHeader->usFlowLabel = ( uint16_t ) 0x0000U;
|
|
pxIPHeader->usPayloadLength = FreeRTOS_htons( sizeof( TCPHeader_t ) );
|
|
pxIPHeader->ucNextHeader = ( uint8_t ) ipPROTOCOL_TCP;
|
|
pxIPHeader->ucHopLimit = 128;
|
|
/* The Source and Destination addresses will be swapped later. */
|
|
( void ) memcpy( pxIPHeader->xSourceAddress.ucBytes, pxSocket->u.xTCP.xRemoteIP.xIP_IPv6.ucBytes, sizeof( pxIPHeader->xSourceAddress.ucBytes ) );
|
|
( void ) memcpy( pxIPHeader->xDestinationAddress.ucBytes, pxSocket->xLocalAddress.xIP_IPv6.ucBytes, sizeof( pxIPHeader->xDestinationAddress.ucBytes ) );
|
|
pxEndPoint = pxSocket->pxEndPoint;
|
|
}
|
|
}
|
|
|
|
if( pxEndPoint != NULL )
|
|
{
|
|
pxSocket->pxEndPoint = pxEndPoint;
|
|
|
|
pxProtocolHeaders->xTCPHeader.usSourcePort = FreeRTOS_htons( pxSocket->u.xTCP.usRemotePort );
|
|
pxProtocolHeaders->xTCPHeader.usDestinationPort = FreeRTOS_htons( pxSocket->usLocalPort );
|
|
|
|
/* We are actively connecting, so the peer's Initial Sequence Number (ISN)
|
|
* isn't known yet. */
|
|
pxSocket->u.xTCP.xTCPWindow.rx.ulCurrentSequenceNumber = 0U;
|
|
|
|
/* Start with ISN (Initial Sequence Number). */
|
|
pxSocket->u.xTCP.xTCPWindow.ulOurSequenceNumber = ulInitialSequenceNumber;
|
|
|
|
/* The TCP header size is 20 bytes, divided by 4 equals 5, which is put in
|
|
* the high nibble of the TCP offset field. */
|
|
pxProtocolHeaders->xTCPHeader.ucTCPOffset = 0x50U;
|
|
|
|
/* Only set the SYN flag. */
|
|
pxProtocolHeaders->xTCPHeader.ucTCPFlags = tcpTCP_FLAG_SYN;
|
|
|
|
/* Set the value of usMSS for this socket. */
|
|
prvSocketSetMSS( pxSocket );
|
|
|
|
/* The initial sequence numbers at our side are known. Later
|
|
* vTCPWindowInit() will be called to fill in the peer's sequence numbers, but
|
|
* first wait for a SYN+ACK reply. */
|
|
if( prvTCPCreateWindow( pxSocket ) != pdTRUE )
|
|
{
|
|
xReturn = pdFAIL;
|
|
}
|
|
}
|
|
else
|
|
{
|
|
FreeRTOS_printf( ( "prvTCPPrepareConnect: No pxEndPoint yet?\n" ) );
|
|
xReturn = pdFAIL;
|
|
}
|
|
|
|
return xReturn;
|
|
}
|
|
/*-----------------------------------------------------------*/
|
|
|
|
|
|
/**
|
|
* @brief Common code for sending a TCP protocol control packet (i.e. no options, no
|
|
* payload, just flags).
|
|
*
|
|
* @param[in] pxNetworkBuffer The network buffer received from the peer.
|
|
* @param[in] ucTCPFlags The flags to determine what kind of packet this is.
|
|
*
|
|
* @return pdFAIL always indicating that the packet was not consumed.
|
|
*/
|
|
BaseType_t prvTCPSendSpecialPktHelper_IPV6( NetworkBufferDescriptor_t * pxNetworkBuffer,
|
|
uint8_t ucTCPFlags )
|
|
{
|
|
#if ( ipconfigIGNORE_UNKNOWN_PACKETS == 1 )
|
|
/* Configured to ignore unknown packets just suppress a compiler warning. */
|
|
( void ) pxNetworkBuffer;
|
|
( void ) ucTCPFlags;
|
|
#else
|
|
{
|
|
/* Map the ethernet buffer onto the TCPPacket_t struct for easy access to the fields. */
|
|
|
|
/* MISRA Ref 11.3.1 [Misaligned access] */
|
|
/* More details at: https://github.com/FreeRTOS/FreeRTOS-Plus-TCP/blob/main/MISRA.md#rule-113 */
|
|
/* coverity[misra_c_2012_rule_11_3_violation] */
|
|
TCPPacket_IPv6_t * pxTCPPacket = ( ( TCPPacket_IPv6_t * ) pxNetworkBuffer->pucEthernetBuffer );
|
|
const uint32_t ulSendLength =
|
|
ipSIZE_OF_IPv6_HEADER + ipSIZE_OF_TCP_HEADER; /* Plus 0 options. */
|
|
|
|
uint8_t ucFlagsReceived = pxTCPPacket->xTCPHeader.ucTCPFlags;
|
|
pxTCPPacket->xTCPHeader.ucTCPFlags = ucTCPFlags;
|
|
pxTCPPacket->xTCPHeader.ucTCPOffset = ( ipSIZE_OF_TCP_HEADER ) << 2;
|
|
|
|
if( ( ucFlagsReceived & tcpTCP_FLAG_SYN ) != 0U )
|
|
{
|
|
/* A synchronize packet is received. It counts as 1 pseudo byte of data,
|
|
* so increase the variable with 1. Before sending a reply, the values of
|
|
* 'ulSequenceNumber' and 'ulAckNr' will be swapped. */
|
|
uint32_t ulSequenceNumber = FreeRTOS_ntohl( pxTCPPacket->xTCPHeader.ulSequenceNumber );
|
|
ulSequenceNumber++;
|
|
pxTCPPacket->xTCPHeader.ulSequenceNumber = FreeRTOS_htonl( ulSequenceNumber );
|
|
}
|
|
|
|
prvTCPReturnPacket( NULL, pxNetworkBuffer, ulSendLength, pdFALSE );
|
|
}
|
|
#endif /* !ipconfigIGNORE_UNKNOWN_PACKETS */
|
|
|
|
/* The packet was not consumed. */
|
|
return pdFAIL;
|
|
}
|
|
/*-----------------------------------------------------------*/
|
|
|
|
|
|
/* *INDENT-OFF* */
|
|
#endif /* ( ipconfigUSE_IPv6 != 0 ) && ( ipconfigUSE_TCP == 1 ) */
|
|
/* *INDENT-ON* */
|