/***************************************************************************/ /* Copyright (c) 2024 Microsoft Corporation */ /* Copyright (c) 2026 Eclipse ThreadX contributors */ /* */ /* This program and the accompanying materials are made available under */ /* the terms of the MIT License which is available at */ /* https://opensource.org/licenses/MIT. */ /* */ /* SPDX-License-Identifier: MIT */ /***************************************************************************/ /* This NetX test case test _nx_tcp_packet_receive function with non standard operation . */ #include "tx_api.h" #include "nx_api.h" #include "nx_tcp.h" #include "nx_ip.h" extern void test_control_return(UINT status); #if !defined(NX_DISABLE_IPV4) #define DEMO_STACK_SIZE 2048 #define TEST_INTERFACE 1 /* Define the ThreadX and NetX object control blocks... */ static TX_THREAD thread_0; static TX_THREAD thread_1; static NX_PACKET_POOL pool_0; static NX_IP ip_0; static NX_IP ip_1; static NX_TCP_SOCKET client_socket; static NX_TCP_SOCKET server_socket; /* Define the counters used in the demo application... */ static ULONG error_counter; static UINT packet_count = 0; static NX_PACKET *my_packet1; static NX_PACKET *my_packet2; static NX_PACKET *copy_packet_1; static NX_PACKET *copy_packet_2; static NX_PACKET *copy_packet_3; /* Define thread prototypes. */ static void thread_0_entry(ULONG thread_input); static void thread_1_entry(ULONG thread_input); static void thread_1_connect_received(NX_TCP_SOCKET *server_socket, UINT port); static void thread_1_disconnect_received(NX_TCP_SOCKET *server_socket); extern void _nx_ram_network_driver_512(struct NX_IP_DRIVER_STRUCT *driver_req); static void packet_receive(NX_IP *ip_ptr, NX_PACKET *packet_ptr); /* Define what the initial system looks like. */ #ifdef CTEST VOID test_application_define(void *first_unused_memory) #else void netx_tcp_packet_receive_function_test_application_define(void *first_unused_memory) #endif { CHAR *pointer; UINT status; /* Setup the working pointer. */ pointer = (CHAR *) first_unused_memory; error_counter = 0; /* Create the main thread. */ tx_thread_create(&thread_0, "thread 0", thread_0_entry, 0, pointer, DEMO_STACK_SIZE, 4, 4, TX_NO_TIME_SLICE, TX_AUTO_START); pointer = pointer + DEMO_STACK_SIZE; /* Create the main thread. */ tx_thread_create(&thread_1, "thread 1", thread_1_entry, 0, pointer, DEMO_STACK_SIZE, 4, 4, TX_NO_TIME_SLICE, TX_AUTO_START); pointer = pointer + DEMO_STACK_SIZE; /* Initialize the NetX system. */ nx_system_initialize(); /* Create a packet pool. */ status = nx_packet_pool_create(&pool_0, "NetX Main Packet Pool", 1536, pointer, 1536*16); pointer = pointer + 1536*16; if(status) error_counter++; /* Create an IP instance. */ status = _nx_ip_create(&ip_0, "NetX IP Instance 0", IP_ADDRESS(1,2,3,4), 0xFFFFFF00UL, &pool_0, _nx_ram_network_driver_512, pointer, 2048, 1); pointer = pointer + 2048; /* Create another IP instance. */ status += _nx_ip_create(&ip_1, "NetX IP Instance 1", IP_ADDRESS(1,2,3,5), 0xFFFFFF00UL, &pool_0, _nx_ram_network_driver_512, pointer, 2048, 1); pointer = pointer + 2048; /* Enable ARP and supply ARP cache memory for IP Instance 0. */ status = nx_arp_enable(&ip_0, (void *) pointer, 1024); pointer = pointer + 1024; /* Enable ARP and supply ARP cache memory for IP Instance 1. */ status += nx_arp_enable(&ip_1, (void *) pointer, 1024); pointer = pointer + 1024; /* Check ARP enable status. */ if(status) error_counter++; /* Enable TCP processing for both IP instances. */ status = nx_tcp_enable(&ip_0); status += nx_tcp_enable(&ip_1); /* Check TCP enable status. */ if(status) error_counter++; } /* Define the test threads. */ static void thread_0_entry(ULONG thread_input) { UINT status; /* Print out test information banner. */ printf("NetX Test: TCP Packet Receive Function Test.........................."); /* Check for earlier error. */ if(error_counter) { printf("ERROR!\n"); test_control_return(1); } /* Create a socket. */ status = nx_tcp_socket_create(&ip_0, &client_socket, "Client Socket", NX_IP_NORMAL, NX_FRAGMENT_OKAY, NX_IP_TIME_TO_LIVE, 600, NX_NULL, NX_NULL); /* Check for error. */ if(status) error_counter++; /* Bind the socket. */ status = nx_tcp_client_socket_bind(&client_socket, 12, NX_WAIT_FOREVER); /* Check for error. */ if(status) error_counter++; /* Attempt to connect the socket. */ tx_thread_relinquish(); /* Determine if the timeout error occurred. */ if((status != NX_SUCCESS)) { printf("ERROR!\n"); test_control_return(1); } /* Call connect. */ status = nx_tcp_client_socket_connect(&client_socket, IP_ADDRESS(1,2,3,5), 12, 5 * NX_IP_PERIODIC_RATE); /* Check for error. */ if((status != NX_SUCCESS)) { printf("ERROR!\n"); test_control_return(1); } /* Allocate a packet. */ status = nx_packet_allocate(&pool_0, &my_packet1, NX_TCP_PACKET, NX_WAIT_FOREVER); /* Check for error. */ if((status != NX_SUCCESS)) { printf("ERROR!\n"); test_control_return(1); } memcpy(my_packet1 -> nx_packet_prepend_ptr,"ABCDEFGHIJKLMNOPQRSTUVWXYZ12", 28); my_packet1 -> nx_packet_length = 28; my_packet1 -> nx_packet_append_ptr = my_packet1 -> nx_packet_prepend_ptr + 28; /* Send the packet. */ status = nx_tcp_socket_send(&client_socket, my_packet1, 2 * NX_IP_PERIODIC_RATE); /* Check for error. */ if((status != NX_SUCCESS)) { printf("ERROR!\n"); test_control_return(1); } /* Point to new receive function */ ip_1.nx_ip_tcp_packet_receive = packet_receive; /* Allocate a new packet. */ status = nx_packet_allocate(&pool_0, &my_packet2, NX_TCP_PACKET, NX_WAIT_FOREVER); /* Check for error. */ if((status != NX_SUCCESS)) { printf("ERROR!\n"); test_control_return(1); } memcpy(my_packet2 -> nx_packet_prepend_ptr, "ABCDEFGHIJKLMNOPQRSTUVWXYZ12", 28); my_packet2 -> nx_packet_length = 28; my_packet2 -> nx_packet_append_ptr = my_packet2 -> nx_packet_prepend_ptr + 28; /* Send the packet. */ status = nx_tcp_socket_send(&client_socket, my_packet2, 2 * NX_IP_PERIODIC_RATE); /* Check for error. */ if(status) { printf("ERROR!\n"); test_control_return(1); } } static void thread_1_entry(ULONG thread_input) { UINT status; ULONG actual_status; NX_PACKET *packet_ptr; #ifndef NX_DISABLE_RX_SIZE_CHECKING NX_PACKET *invalid_packet; #endif /* Ensure the IP instance has been initialized. */ status = nx_ip_status_check(&ip_1, NX_IP_INITIALIZE_DONE, &actual_status, NX_IP_PERIODIC_RATE); /* Check status. */ if(status != NX_SUCCESS) { error_counter++; } /* Create a socket. */ status = nx_tcp_socket_create(&ip_1, &server_socket, "Server Socket", NX_IP_NORMAL, NX_FRAGMENT_OKAY, NX_IP_TIME_TO_LIVE, 650, NX_NULL, thread_1_disconnect_received); /* Check for error. */ if(status) error_counter++; /* Setup this thread to listen. */ status = nx_tcp_server_socket_listen(&ip_1, 12, &server_socket, 5, thread_1_connect_received); /* Check for error. */ if(status) error_counter++; /* Accept a client socket connection. */ status = nx_tcp_server_socket_accept(&server_socket, NX_IP_PERIODIC_RATE); if(status) error_counter++; /* Receive a TCP message from the socket. */ status = nx_tcp_socket_receive(&server_socket, &packet_ptr, 5 * NX_IP_PERIODIC_RATE); /* Check for error. */ if (status) { error_counter++; } else { /* Release the packet. */ nx_packet_release(packet_ptr); } #ifndef NX_DISABLE_RX_SIZE_CHECKING /* Allocate a packet. */ status = nx_packet_allocate(&pool_0, &invalid_packet, NX_TCP_PACKET, NX_WAIT_FOREVER); /* Check for error. */ if((status != NX_SUCCESS)) { error_counter++; } /* Set the packet length with invalid value. */ memcpy(invalid_packet -> nx_packet_prepend_ptr, "ABCDEFGHIJKLMNOPQRSTUVWXYZ12", 28); invalid_packet -> nx_packet_length = sizeof(NX_TCP_HEADER) - 1; invalid_packet -> nx_packet_append_ptr = invalid_packet -> nx_packet_prepend_ptr + invalid_packet -> nx_packet_length; /* Directly call _nx_tcp_packet_receive invalid packet. */ _nx_tcp_packet_receive(&ip_1, invalid_packet); /* Receive a TCP message from the socket. */ status = nx_tcp_socket_receive(&server_socket, &packet_ptr, 5 * NX_IP_PERIODIC_RATE); /* Check for error. */ if (status == NX_SUCCESS) { error_counter++; } #endif /* Obtain the IP internal mutex before processing the IP event. */ tx_mutex_get(&(ip_1.nx_ip_protection), TX_WAIT_FOREVER); /* Directly call _nx_tcp_packet_receive valid packet. */ _nx_tcp_packet_receive(&ip_1, copy_packet_1); /* Directly call _nx_tcp_packet_receive valid packet. */ _nx_tcp_packet_receive(&ip_1, copy_packet_2); /* Directly call _nx_tcp_packet_receive to receive packet with incorrect checksum. */ _nx_tcp_packet_receive(&ip_1, copy_packet_3); /* Release the IP internal mutex. */ tx_mutex_put(&(ip_1.nx_ip_protection)); /* Receive a TCP message from the socket. */ status = nx_tcp_socket_receive(&server_socket, &packet_ptr, 5 * NX_IP_PERIODIC_RATE); /* Check for error. */ if (status) { error_counter++; } else { /* Release the packet. */ nx_packet_release(packet_ptr); } /* Determine if the test was successful. */ if(error_counter) { printf("ERROR!\n"); test_control_return(1); } else { printf("SUCCESS!\n"); test_control_return(0); } } static void thread_1_connect_received(NX_TCP_SOCKET *socket_ptr, UINT port) { /* Check for the proper socket and port. */ if((socket_ptr != &server_socket) || (port != 12)) error_counter++; } static void thread_1_disconnect_received(NX_TCP_SOCKET *socket) { /* Check for proper disconnected socket. */ if(socket != &server_socket) error_counter++; } static void packet_receive(NX_IP *ip_ptr, NX_PACKET *packet_ptr) { UINT status; /* Only store the packet one time. */ if (packet_count == 0) { /* Update the packet prepend and length to include the IP header. */ packet_ptr -> nx_packet_prepend_ptr -= 20; packet_ptr -> nx_packet_length += 20; /* Store the packet. */ status = nx_packet_copy(packet_ptr, ©_packet_1, &pool_0, 2 * NX_IP_PERIODIC_RATE); /* Check for error. */ if (status) { error_counter++; } else { /* Update the packet prepend and length. */ copy_packet_1 -> nx_packet_prepend_ptr += 20; copy_packet_1 -> nx_packet_length -= 20; } /* Store the packet. */ status = nx_packet_copy(packet_ptr, ©_packet_2, &pool_0, 2 * NX_IP_PERIODIC_RATE); /* Check for error. */ if (status) { error_counter++; } else { /* Update the packet prepend and length. */ copy_packet_2 -> nx_packet_prepend_ptr += 20; copy_packet_2 -> nx_packet_length -= 20; } /* Store the packet. */ status = nx_packet_copy(packet_ptr, ©_packet_3, &pool_0, 2 * NX_IP_PERIODIC_RATE); /* Check for error. */ if (status) { error_counter++; } else { /* Update the packet prepend and length. */ copy_packet_3 -> nx_packet_prepend_ptr += 20; copy_packet_3 -> nx_packet_length -= 20; /* Clear the checksum field. */ *(copy_packet_3 -> nx_packet_prepend_ptr + 16) = 0; *(copy_packet_3 -> nx_packet_prepend_ptr + 17) = 0; } /* Update the packet count. */ packet_count ++; } /* Release the packet. */ nx_packet_release(packet_ptr); /* Stop the process. */ return; } #else #ifdef CTEST VOID test_application_define(void *first_unused_memory) #else void netx_tcp_packet_receive_function_test_application_define(void *first_unused_memory) #endif { /* Print out test information banner. */ printf("NetX Test: TCP Packet Receive Function Test..........................N/A\n"); test_control_return(3); } #endif