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370 lines
16 KiB
C
370 lines
16 KiB
C
/*
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* FreeRTOS Kernel V10.2.1
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* Copyright (C) 2017 Amazon.com, Inc. or its affiliates. All Rights Reserved.
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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://www.FreeRTOS.org
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* http://aws.amazon.com/freertos
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*
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* 1 tab == 4 spaces!
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*/
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/*
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* Creates two transmitting tasks and two receiving tasks. The transmitting
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* tasks send values that are received by the receiving tasks. One set of tasks
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* uses the standard API. The other set of tasks uses the zero copy API.
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*
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* See the following web page for essential demo usage and configuration
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* details:
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* http://www.FreeRTOS.org/FreeRTOS-Plus/FreeRTOS_Plus_TCP/examples_FreeRTOS_simulator.html
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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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/* FreeRTOS+TCP includes. */
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#include "FreeRTOS_IP.h"
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#include "FreeRTOS_Sockets.h"
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#if( configASSERT_DEFINED == 0 )
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#error This demo uses configASSERT() to trap errors. configASSERT() must be defined in FreeRTOSConfig.h https://www.freertos.org/a00110.html#configASSERT
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#endif
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#define simpTINY_DELAY ( ( TickType_t ) 2 )
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/*
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* Uses a socket to send data without using the zero copy option.
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* prvSimpleServerTask() will receive the data.
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*/
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static void prvSimpleClientTask( void *pvParameters );
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/*
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* Uses a socket to receive the data sent by the prvSimpleClientTask() task.
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* Does not use the zero copy option.
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*/
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static void prvSimpleServerTask( void *pvParameters );
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/*
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* Uses a socket to send data using the zero copy option.
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* prvSimpleZeroCopyServerTask() will receive the data.
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*/
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static void prvSimpleZeroCopyUDPClientTask( void *pvParameters );
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/*
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* Uses a socket to receive the data sent by the prvSimpleZeroCopyUDPClientTask()
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* task. Uses the zero copy option.
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*/
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static void prvSimpleZeroCopyServerTask( void *pvParameters );
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/*-----------------------------------------------------------*/
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void vStartSimpleUDPClientServerTasks( uint16_t usStackSize, uint32_t ulPort, UBaseType_t uxPriority )
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{
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/* Create the client and server tasks that do not use the zero copy
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interface. */
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xTaskCreate( prvSimpleClientTask, "SimpCpyClnt", usStackSize, ( void * ) ulPort, uxPriority, NULL );
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xTaskCreate( prvSimpleServerTask, "SimpCpySrv", usStackSize, ( void * ) ulPort, uxPriority + 1, NULL );
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/* Create the client and server tasks that do use the zero copy interface. */
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xTaskCreate( prvSimpleZeroCopyUDPClientTask, "SimpZCpyClnt", usStackSize, ( void * ) ( ulPort + 1 ), uxPriority, NULL );
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xTaskCreate( prvSimpleZeroCopyServerTask, "SimpZCpySrv", usStackSize, ( void * ) ( ulPort + 1 ), uxPriority + 1, NULL );
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}
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/*-----------------------------------------------------------*/
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static void prvSimpleClientTask( void *pvParameters )
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{
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Socket_t xClientSocket;
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struct freertos_sockaddr xDestinationAddress;
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uint8_t cString[ 65 ];
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BaseType_t lReturned;
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uint32_t ulCount = 0UL, ulIPAddress;
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const uint32_t ulLoopsPerSocket = 10UL;
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const TickType_t x150ms = 150UL / portTICK_PERIOD_MS;
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/* Remove compiler warning about unused parameters. */
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( void ) pvParameters;
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FreeRTOS_printf( ( "Starting prvSimpleClientTask\r\n" ) );
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/* It is assumed that this task is not created until the network is up,
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so the IP address can be obtained immediately. store the IP address being
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used in ulIPAddress. This is done so the socket can send to a different
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port on the same IP address. */
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FreeRTOS_GetAddressConfiguration( &ulIPAddress, NULL, NULL, NULL );
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/* This test sends to itself, so data sent from here is received by a server
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socket on the same IP address. Setup the freertos_sockaddr structure with
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this nodes IP address, and the port number being sent to. The strange
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casting is to try and remove compiler warnings on 32 bit machines. */
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xDestinationAddress.sin_addr = ulIPAddress;
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xDestinationAddress.sin_port = ( uint16_t ) ( ( uint32_t ) pvParameters ) & 0xffffUL;
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xDestinationAddress.sin_port = FreeRTOS_htons( xDestinationAddress.sin_port );
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for( ;; )
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{
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/* Create the socket. */
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xClientSocket = FreeRTOS_socket( FREERTOS_AF_INET, FREERTOS_SOCK_DGRAM, FREERTOS_IPPROTO_UDP );
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configASSERT( xClientSocket != FREERTOS_INVALID_SOCKET );
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/* The count is used to differentiate between different messages sent to
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the server, and to break out of the do while loop below. */
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ulCount = 0UL;
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do
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{
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/* Create the string that is sent to the server. */
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sprintf( ( char * ) cString, "Server received (not zero copy): Message number %lu\r\n", ulCount );
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/* Send the string to the socket. ulFlags is set to 0, so the zero
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copy option is not selected. That means the data from cString[] is
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copied into a network buffer inside FreeRTOS_sendto(), and cString[]
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can be reused as soon as FreeRTOS_sendto() has returned. */
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lReturned = FreeRTOS_sendto( xClientSocket, ( void * ) cString, strlen( ( const char * ) cString ), 0, &xDestinationAddress, sizeof( xDestinationAddress ) );
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ulCount++;
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} while( ( lReturned != FREERTOS_SOCKET_ERROR ) && ( ulCount < ulLoopsPerSocket ) );
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FreeRTOS_closesocket( xClientSocket );
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/* A short delay to prevent the messages printed by the server task
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scrolling off the screen too quickly, and to prevent reduce the network
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loading. */
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vTaskDelay( x150ms );
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}
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}
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/*-----------------------------------------------------------*/
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static void prvSimpleServerTask( void *pvParameters )
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{
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int32_t lBytes;
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uint8_t cReceivedString[ 60 ];
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struct freertos_sockaddr xClient, xBindAddress;
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uint32_t xClientLength = sizeof( xClient );
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Socket_t xListeningSocket;
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/* Just to prevent compiler warnings. */
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( void ) pvParameters;
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FreeRTOS_printf( ( "Starting prvSimpleServerTask\r\n" ) );
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/* Attempt to open the socket. */
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xListeningSocket = FreeRTOS_socket( FREERTOS_AF_INET, FREERTOS_SOCK_DGRAM, FREERTOS_IPPROTO_UDP );
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configASSERT( xListeningSocket != FREERTOS_INVALID_SOCKET );
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/* This test receives data sent from a different port on the same IP
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address. Configure the freertos_sockaddr structure with the address being
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bound to. The strange casting is to try and remove compiler warnings on 32
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bit machines. Note that this task is only created after the network is up,
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so the IP address is valid here. */
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xBindAddress.sin_port = ( uint16_t ) ( ( uint32_t ) pvParameters ) & 0xffffUL;
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xBindAddress.sin_port = FreeRTOS_htons( xBindAddress.sin_port );
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/* Bind the socket to the port that the client task will send to. */
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FreeRTOS_bind( xListeningSocket, &xBindAddress, sizeof( xBindAddress ) );
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for( ;; )
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{
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/* Zero out the receive array so there is NULL at the end of the string
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when it is printed out. */
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memset( cReceivedString, 0x00, sizeof( cReceivedString ) );
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/* Receive data on the socket. ulFlags is zero, so the zero copy option
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is not set and the received data is copied into the buffer pointed to by
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cReceivedString. By default the block time is portMAX_DELAY.
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xClientLength is not actually used by FreeRTOS_recvfrom(), but is set
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appropriately in case future versions do use it. */
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lBytes = FreeRTOS_recvfrom( xListeningSocket, cReceivedString, sizeof( cReceivedString ), 0, &xClient, &xClientLength );
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/* Error check. */
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configASSERT( lBytes == ( BaseType_t ) strlen( ( const char * ) cReceivedString ) );
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FreeRTOS_printf( ( "prvSimpleServerTask() recieved %s\r\n", ( const char * ) cReceivedString ) );
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}
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}
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/*-----------------------------------------------------------*/
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static void prvSimpleZeroCopyUDPClientTask( void *pvParameters )
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{
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Socket_t xClientSocket;
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uint8_t *pucUDPPayloadBuffer;
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struct freertos_sockaddr xDestinationAddress;
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BaseType_t lReturned;
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uint32_t ulCount = 0UL, ulIPAddress;
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const uint32_t ulLoopsPerSocket = 10UL;
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const char *pcStringToSend = "Server received (using zero copy): Message number ";
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const TickType_t x150ms = 150UL / portTICK_PERIOD_MS;
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/* 15 is added to ensure the number, \r\n and terminating zero fit. */
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const size_t xStringLength = strlen( pcStringToSend ) + 15;
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/* Remove compiler warning about unused parameters. */
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( void ) pvParameters;
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FreeRTOS_printf( ( "Starting prvSimpleZeroCopyUDPClientTask\r\n" ) );
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/* It is assumed that this task is not created until the network is up,
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so the IP address can be obtained immediately. store the IP address being
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used in ulIPAddress. This is done so the socket can send to a different
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port on the same IP address. */
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FreeRTOS_GetAddressConfiguration( &ulIPAddress, NULL, NULL, NULL );
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/* This test sends to itself, so data sent from here is received by a server
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socket on the same IP address. Setup the freertos_sockaddr structure with
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this nodes IP address, and the port number being sent to. The strange
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casting is to try and remove compiler warnings on 32 bit machines. */
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xDestinationAddress.sin_addr = ulIPAddress;
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xDestinationAddress.sin_port = ( uint16_t ) ( ( uint32_t ) pvParameters ) & 0xffffUL;
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xDestinationAddress.sin_port = FreeRTOS_htons( xDestinationAddress.sin_port );
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for( ;; )
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{
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/* Create the socket. */
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xClientSocket = FreeRTOS_socket( FREERTOS_AF_INET, FREERTOS_SOCK_DGRAM, FREERTOS_IPPROTO_UDP );
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configASSERT( xClientSocket != FREERTOS_INVALID_SOCKET );
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/* The count is used to differentiate between different messages sent to
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the server, and to break out of the do while loop below. */
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ulCount = 0UL;
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do
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{
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/* This task is going to send using the zero copy interface. The
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data being sent is therefore written directly into a buffer that is
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passed into, rather than copied into, the FreeRTOS_sendto()
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function.
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First obtain a buffer of adequate length from the IP stack into which
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the string will be written. Although a max delay is used, the actual
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delay will be capped to ipconfigMAX_SEND_BLOCK_TIME_TICKS, hence
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the do while loop is used to ensure a buffer is obtained. */
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do
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{
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} while( ( pucUDPPayloadBuffer = ( uint8_t * ) FreeRTOS_GetUDPPayloadBuffer( xStringLength, portMAX_DELAY ) ) == NULL );
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/* A buffer was successfully obtained. Create the string that is
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sent to the server. First the string is filled with zeros as this will
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effectively be the null terminator when the string is received at the other
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end. Note that the string is being written directly into the buffer
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obtained from the IP stack above. */
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memset( ( void * ) pucUDPPayloadBuffer, 0x00, xStringLength );
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sprintf( ( char * ) pucUDPPayloadBuffer, "%s%lu\r\n", pcStringToSend, ulCount );
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/* Pass the buffer into the send function. ulFlags has the
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FREERTOS_ZERO_COPY bit set so the IP stack will take control of the
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buffer rather than copy data out of the buffer. */
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lReturned = FreeRTOS_sendto( xClientSocket, /* The socket being sent to. */
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( void * ) pucUDPPayloadBuffer, /* A pointer to the the data being sent. */
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strlen( ( const char * ) pucUDPPayloadBuffer ) + 1, /* The length of the data being sent - including the string's null terminator. */
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FREERTOS_ZERO_COPY, /* ulFlags with the FREERTOS_ZERO_COPY bit set. */
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&xDestinationAddress, /* Where the data is being sent. */
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sizeof( xDestinationAddress ) );
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if( lReturned == 0 )
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{
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/* The send operation failed, so this task is still responsible
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for the buffer obtained from the IP stack. To ensure the buffer
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is not lost it must either be used again, or, as in this case,
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returned to the IP stack using FreeRTOS_ReleaseUDPPayloadBuffer().
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pucUDPPayloadBuffer can be safely re-used after this call. */
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FreeRTOS_ReleaseUDPPayloadBuffer( ( void * ) pucUDPPayloadBuffer );
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}
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else
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{
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/* The send was successful so the IP stack is now managing the
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buffer pointed to by pucUDPPayloadBuffer, and the IP stack will
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return the buffer once it has been sent. pucUDPPayloadBuffer can
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be safely re-used. */
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}
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ulCount++;
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} while( ( lReturned != FREERTOS_SOCKET_ERROR ) && ( ulCount < ulLoopsPerSocket ) );
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FreeRTOS_closesocket( xClientSocket );
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/* A short delay to prevent the messages scrolling off the screen too
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quickly. */
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vTaskDelay( x150ms );
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}
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}
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/*-----------------------------------------------------------*/
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static void prvSimpleZeroCopyServerTask( void *pvParameters )
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{
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int32_t lBytes;
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uint8_t *pucUDPPayloadBuffer;
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struct freertos_sockaddr xClient, xBindAddress;
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uint32_t xClientLength = sizeof( xClient ), ulIPAddress;
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Socket_t xListeningSocket;
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/* Just to prevent compiler warnings. */
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( void ) pvParameters;
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FreeRTOS_printf( ( "Starting prvSimpleZeroCopyServerTask\r\n" ) );
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/* Attempt to open the socket. */
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xListeningSocket = FreeRTOS_socket( FREERTOS_AF_INET, FREERTOS_SOCK_DGRAM, FREERTOS_IPPROTO_UDP );
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configASSERT( xListeningSocket != FREERTOS_INVALID_SOCKET );
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/* This test receives data sent from a different port on the same IP address.
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Obtain the nodes IP address. Configure the freertos_sockaddr structure with
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the address being bound to. The strange casting is to try and remove
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compiler warnings on 32 bit machines. Note that this task is only created
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after the network is up, so the IP address is valid here. */
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FreeRTOS_GetAddressConfiguration( &ulIPAddress, NULL, NULL, NULL );
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xBindAddress.sin_addr = ulIPAddress;
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xBindAddress.sin_port = ( uint16_t ) ( ( uint32_t ) pvParameters ) & 0xffffUL;
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xBindAddress.sin_port = FreeRTOS_htons( xBindAddress.sin_port );
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/* Bind the socket to the port that the client task will send to. */
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FreeRTOS_bind( xListeningSocket, &xBindAddress, sizeof( xBindAddress ) );
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for( ;; )
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{
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/* Receive data on the socket. ulFlags has the zero copy bit set
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(FREERTOS_ZERO_COPY) indicating to the stack that a reference to the
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received data should be passed out to this task using the second
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parameter to the FreeRTOS_recvfrom() call. When this is done the
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IP stack is no longer responsible for releasing the buffer, and
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the task *must* return the buffer to the stack when it is no longer
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needed. By default the block time is portMAX_DELAY. */
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lBytes = FreeRTOS_recvfrom( xListeningSocket, ( void * ) &pucUDPPayloadBuffer, 0, FREERTOS_ZERO_COPY, &xClient, &xClientLength );
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/* Print the received characters. */
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if( lBytes > 0 )
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{
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/* It is expected to receive one more byte than the string length as
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the NULL terminator is also transmitted. */
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configASSERT( lBytes == ( ( BaseType_t ) strlen( ( const char * ) pucUDPPayloadBuffer ) + 1 ) );
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FreeRTOS_printf( ( "prvSimpleZeroCopyServerTask() recieved %s\r\n", ( const char * ) pucUDPPayloadBuffer ) );
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}
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if( lBytes >= 0 )
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{
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/* The buffer *must* be freed once it is no longer needed. */
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FreeRTOS_ReleaseUDPPayloadBuffer( pucUDPPayloadBuffer );
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}
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}
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}
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