/***************************************************************************/ /* 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 concentrates on the IP Interface Address Set operation. */ #include "tx_api.h" #include "nx_api.h" extern void test_control_return(UINT status); #if (NX_MAX_PHYSICAL_INTERFACES > 1) && !defined(NX_DISABLE_IPV4) #define DEMO_STACK_SIZE 2048 /* Define the ThreadX and NetX object control blocks... */ static TX_THREAD ntest_0; static NX_PACKET_POOL pool_0; static NX_IP ip_0; static NX_IP ip_1; /* Define the counters used in the test application... */ static ULONG error_counter; /* Define thread prototypes. */ static void ntest_0_entry(ULONG thread_input); void _nx_ram_network_driver_1500(struct NX_IP_DRIVER_STRUCT *driver_req); VOID ip_address_change_notify(NX_IP *ip_ptr, VOID *additional_info); /* Define what the initial system looks like. */ #ifdef CTEST VOID test_application_define(void *first_unused_memory) #else void netx_ip_interface_address_set_test_application_define(void *first_unused_memory) #endif { CHAR *pointer; UINT status; /* Setup the working pointer. */ pointer = (CHAR *) first_unused_memory; /* Create the main thread. */ tx_thread_create(&ntest_0, "thread 0", ntest_0_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", 256, pointer, 8192); pointer = pointer + 8192; if (status) error_counter++; /* Create an IP instance. */ status = nx_ip_create(&ip_0, "NetX IP Instance 0", IP_ADDRESS(1, 2, 3, 14), 0xFFFFFF00UL, &pool_0, _nx_ram_network_driver_1500, 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, 15), 0xFFFFFF00UL, &pool_0, _nx_ram_network_driver_1500, pointer, 2048, 2); pointer = pointer + 2048; if (status) error_counter++; /* Enable ARP and supply ARP cache memory for IP Instance 0. */ status = nx_arp_enable(&ip_0, (void *) pointer, 1024); pointer = pointer + 1024; if (status) error_counter++; /* Enable ARP and supply ARP cache memory for IP Instance 1. */ status = nx_arp_enable(&ip_1, (void *) pointer, 1024); pointer = pointer + 1024; if (status) error_counter++; /* Enable ICMP processing for both IP instances. */ status = nx_icmp_enable(&ip_0); status += nx_icmp_enable(&ip_1); /* Check TCP enable status. */ if (status) error_counter++; } /* Define the test threads. */ static void ntest_0_entry(ULONG thread_input) { UINT status; ULONG address; ULONG mask; NX_PACKET *my_packet; ULONG pings_sent; ULONG ping_timeouts; ULONG ping_threads_suspended; ULONG ping_responses_received; ULONG icmp_checksum_errors; ULONG icmp_unhandled_messages; /* Print out test information banner. */ printf("NetX Test: IP Interface Address Set Test............................."); /* Check for earlier error. */ if (error_counter) { printf("ERROR!\n"); test_control_return(1); } /* Attach the 2nd interface to IP instance0 */ status = nx_ip_interface_attach(&ip_0, "2nd interface", IP_ADDRESS(4, 3, 2, 110), 0xFF000000, _nx_ram_network_driver_1500); if(status != NX_SUCCESS) { printf("ERROR!\n"); test_control_return(1); } #ifdef __PRODUCT_NETXDUO__ /* Attach the same address to IP instance0 */ status = nx_ip_interface_attach(&ip_0, "2nd interface", IP_ADDRESS(4, 3, 2, 110), 0xFF000000, _nx_ram_network_driver_1500); if(status != NX_DUPLICATED_ENTRY) { printf("ERROR!\n"); test_control_return(1); } #endif /* Attach the 2nd interface to IP instance1 */ status = nx_ip_interface_attach(&ip_1, "2nd interface", IP_ADDRESS(4, 3, 2, 111), 0xFF000000, _nx_ram_network_driver_1500); if(status != NX_SUCCESS) { printf("ERROR!\n"); test_control_return(1); } /* Make sure we can ping using the current IP address. */ /* Ping an unknown IP address. This will timeout after 100 ticks. */ status = nx_icmp_ping(&ip_1, IP_ADDRESS(4, 3, 2, 91), "ABCDEFGHIJKLMNOPQRSTUVWXYZ", 28, &my_packet, NX_IP_PERIODIC_RATE); /* Determine if the timeout error occurred. */ if ((status != NX_NO_RESPONSE) || (my_packet)) { printf("ERROR!\n"); test_control_return(1); } /* Now ping an IP address that does exist. */ status = nx_icmp_ping(&ip_1, IP_ADDRESS(4, 3, 2, 110), "ABCDEFGHIJKLMNOPQRSTUVWXYZ", 28, &my_packet, NX_IP_PERIODIC_RATE); if((status != NX_SUCCESS) || (my_packet == NX_NULL) || (my_packet -> nx_packet_length != 28)) { printf("ERROR!\n"); test_control_return(1); } /* It should also be able to ping an IP address that is accessible via the primary interface. */ status = nx_icmp_ping(&ip_1, IP_ADDRESS(1, 2, 3, 14), "ABCDEFGHIJKLMNOPQRSTUVWXYZ", 28, &my_packet, NX_IP_PERIODIC_RATE); if((status != NX_SUCCESS) || (my_packet == NX_NULL) || (my_packet -> nx_packet_length != 28)) { printf("ERROR!\n"); test_control_return(1); } /* Ping via the other direction. */ /* Ping an unknown IP address. This will timeout after 100 ticks. */ status = nx_icmp_ping(&ip_0, IP_ADDRESS(4, 3, 2, 9), "ABCDEFGHIJKLMNOPQRSTUVWXYZ", 28, &my_packet, NX_IP_PERIODIC_RATE); /* Determine if the timeout error occurred. */ if ((status != NX_NO_RESPONSE) || (my_packet)) { printf("ERROR!\n"); test_control_return(1); } /* Now ping an IP address that does exist. */ status = nx_icmp_ping(&ip_0, IP_ADDRESS(4, 3, 2, 111), "ABCDEFGHIJKLMNOPQRSTUVWXYZ", 28, &my_packet, NX_IP_PERIODIC_RATE); if((status != NX_SUCCESS) || (my_packet == NX_NULL) || (my_packet -> nx_packet_length != 28)) { printf("ERROR!\n"); test_control_return(1); } /* It should also be able to ping an IP address that is accessible via the primary interface. */ status = nx_icmp_ping(&ip_0, IP_ADDRESS(1, 2, 3, 15), "ABCDEFGHIJKLMNOPQRSTUVWXYZ", 28, &my_packet, NX_IP_PERIODIC_RATE); if((status != NX_SUCCESS) || (my_packet == NX_NULL) || (my_packet -> nx_packet_length != 28)) { printf("ERROR!\n"); test_control_return(1); } /* Get ICMP information. */ status = nx_icmp_info_get(&ip_0, &pings_sent, &ping_timeouts, &ping_threads_suspended, &ping_responses_received, &icmp_checksum_errors, &icmp_unhandled_messages); #ifndef NX_DISABLE_ICMP_INFO if ((pings_sent != 3) || (ping_timeouts != 1) || (ping_responses_received != 2) ||(icmp_checksum_errors) || (icmp_unhandled_messages)) { printf("ERROR!\n"); test_control_return(1); } #endif /* Determine if the timeout error occurred. */ if ((status != NX_SUCCESS) || (ping_threads_suspended)) { printf("ERROR!\n"); test_control_return(1); } /* Get ICMP information. */ status = nx_icmp_info_get(&ip_1, &pings_sent, &ping_timeouts, &ping_threads_suspended, &ping_responses_received, &icmp_checksum_errors, &icmp_unhandled_messages); #ifndef NX_DISABLE_ICMP_INFO if ((pings_sent != 3) || (ping_timeouts != 1) || (ping_responses_received != 2) ||(icmp_checksum_errors) || (icmp_unhandled_messages)) { printf("ERROR!\n"); test_control_return(1); } #endif /* Determine if the timeout error occurred. */ if ((status != NX_SUCCESS) || (ping_threads_suspended)) { printf("ERROR!\n"); test_control_return(1); } /* Reconfigure the interface IP addresses. */ status = nx_ip_interface_address_set(&ip_0, 0, IP_ADDRESS(1, 2, 3, 4), 0xFFFFFF00); if(status != NX_SUCCESS) { printf("ERROR!\n"); test_control_return(1); } status = nx_ip_interface_address_set(&ip_0, 1, IP_ADDRESS(4, 3, 2, 10), 0xFFFFFF00); if(status != NX_SUCCESS) { printf("ERROR!\n"); test_control_return(1); } #ifndef NX_DISABLE_ERROR_CHECKING status = nx_ip_interface_address_set(&ip_0, 2, IP_ADDRESS(4, 3, 2, 15), 0xFFFFF000); if(status != NX_INVALID_INTERFACE) { printf("ERROR!\n"); test_control_return(1); } #endif /* NX_DISABLE_ERROR_CHECKING */ status = nx_ip_interface_address_set(&ip_1, 0, IP_ADDRESS(1, 2, 3, 5), 0xFFFFFF00); if(status != NX_SUCCESS) { printf("ERROR!\n"); test_control_return(1); } status = nx_ip_interface_address_set(&ip_1, 1, IP_ADDRESS(4, 3, 2, 11), 0xFFFFFF00); if(status != NX_SUCCESS) { printf("ERROR!\n"); test_control_return(1); } #ifndef NX_DISABLE_ERROR_CHECKING status = nx_ip_interface_address_set(&ip_1, 2, IP_ADDRESS(4, 3, 2, 15), 0xFFFFF000); if(status != NX_INVALID_INTERFACE) { printf("ERROR!\n"); test_control_return(1); } #endif /* NX_DISABLE_ERROR_CHECKING */ /* Make sure we can ping via the new interface IP address. */ /* Make sure we can ping using the current IP address. */ /* Ping an unknown IP address. This will timeout after 100 ticks. */ status = nx_icmp_ping(&ip_1, IP_ADDRESS(4, 3, 2, 91), "ABCDEFGHIJKLMNOPQRSTUVWXYZ", 28, &my_packet, NX_IP_PERIODIC_RATE); /* Determine if the timeout error occurred. */ if ((status != NX_NO_RESPONSE) || (my_packet)) { printf("ERROR!\n"); test_control_return(1); } /* Now ping an IP address that does exist. */ status = nx_icmp_ping(&ip_1, IP_ADDRESS(4, 3, 2, 10), "ABCDEFGHIJKLMNOPQRSTUVWXYZ", 28, &my_packet, NX_IP_PERIODIC_RATE); if((status != NX_SUCCESS) || (my_packet == NX_NULL) || (my_packet -> nx_packet_length != 28)) { printf("ERROR!\n"); test_control_return(1); } /* It should also be able to ping an IP address that is accessible via the primary interface. */ status = nx_icmp_ping(&ip_1, IP_ADDRESS(1, 2, 3, 4), "ABCDEFGHIJKLMNOPQRSTUVWXYZ", 28, &my_packet, NX_IP_PERIODIC_RATE); if((status != NX_SUCCESS) || (my_packet == NX_NULL) || (my_packet -> nx_packet_length != 28)) { printf("ERROR!\n"); test_control_return(1); } /* Ping via the other direction. */ /* Ping an unknown IP address. This will timeout after 100 ticks. */ status = nx_icmp_ping(&ip_0, IP_ADDRESS(4, 3, 2, 9), "ABCDEFGHIJKLMNOPQRSTUVWXYZ", 28, &my_packet, NX_IP_PERIODIC_RATE); /* Determine if the timeout error occurred. */ if ((status != NX_NO_RESPONSE) || (my_packet)) { printf("ERROR!\n"); test_control_return(1); } /* Now ping an IP address that does exist. */ status = nx_icmp_ping(&ip_0, IP_ADDRESS(4, 3, 2, 11), "ABCDEFGHIJKLMNOPQRSTUVWXYZ", 28, &my_packet, NX_IP_PERIODIC_RATE); if((status != NX_SUCCESS) || (my_packet == NX_NULL) || (my_packet -> nx_packet_length != 28)) { printf("ERROR!\n"); test_control_return(1); } /* It should also be able to ping an IP address that is accessible via the primary interface. */ status = nx_icmp_ping(&ip_0, IP_ADDRESS(1, 2, 3, 5), "ABCDEFGHIJKLMNOPQRSTUVWXYZ", 28, &my_packet, NX_IP_PERIODIC_RATE); if((status != NX_SUCCESS) || (my_packet == NX_NULL) || (my_packet -> nx_packet_length != 28)) { printf("ERROR!\n"); test_control_return(1); } /* Get ICMP information. */ status = nx_icmp_info_get(&ip_0, &pings_sent, &ping_timeouts, &ping_threads_suspended, &ping_responses_received, &icmp_checksum_errors, &icmp_unhandled_messages); #ifndef NX_DISABLE_ICMP_INFO if ((pings_sent != 6) || (ping_timeouts != 2) || (ping_responses_received != 4) ||(icmp_checksum_errors) || (icmp_unhandled_messages)) { printf("ERROR!\n"); test_control_return(1); } #endif /* Determine if the timeout error occurred. */ if ((status != NX_SUCCESS) || (ping_threads_suspended)) { printf("ERROR!\n"); test_control_return(1); } /* Get ICMP information. */ status = nx_icmp_info_get(&ip_1, &pings_sent, &ping_timeouts, &ping_threads_suspended, &ping_responses_received, &icmp_checksum_errors, &icmp_unhandled_messages); #ifndef NX_DISABLE_ICMP_INFO if ((pings_sent != 6) || (ping_timeouts != 2) || (ping_responses_received != 4) ||(icmp_checksum_errors) || (icmp_unhandled_messages)) { printf("ERROR!\n"); test_control_return(1); } #endif /* Determine if the timeout error occurred. */ if ((status != NX_SUCCESS) || (ping_threads_suspended)) { printf("ERROR!\n"); test_control_return(1); } status = nx_ip_interface_address_get(&ip_0, 0, &address, &mask); if((status != NX_SUCCESS) || (address != IP_ADDRESS(1, 2, 3, 4)) || (mask != 0xFFFFFF00)) { printf("ERROR!\n"); test_control_return(1); } status = nx_ip_interface_address_get(&ip_0, 1, &address, &mask); if((status != NX_SUCCESS) || (address != IP_ADDRESS(4, 3, 2, 10)) || (mask != 0xFFFFFF00)) { printf("ERROR!\n"); test_control_return(1); } #ifndef NX_DISABLE_ERROR_CHECKING status = nx_ip_interface_address_get(&ip_0, 2, &address, &mask); if(status != NX_INVALID_INTERFACE) { printf("ERROR!\n"); test_control_return(1); } #endif /* NX_DISABLE_ERROR_CHECKING */ status = nx_ip_interface_address_get(&ip_1, 0, &address, &mask); if((status != NX_SUCCESS) || (address != IP_ADDRESS(1, 2, 3, 5)) || (mask != 0xFFFFFF00)) { printf("ERROR!\n"); test_control_return(1); } status = nx_ip_interface_address_get(&ip_1, 1, &address, &mask); if((status != NX_SUCCESS ) || (address != IP_ADDRESS(4, 3, 2, 11)) || (mask != 0xFFFFFF00)) { printf("ERROR!\n"); test_control_return(1); } #ifndef NX_DISABLE_ERROR_CHECKING status = nx_ip_interface_address_get(&ip_1, 2, &address, &mask); if(status != NX_INVALID_INTERFACE) { printf("ERROR!\n"); test_control_return(1); } #endif /* NX_DISABLE_ERROR_CHECKING */ /* Test the condition for network mask if ((address_change_notify) && ((ip_address != previous_ip_address) || (network_mask != previous_network_mask)) in _nx_ip_interface_address_set. Same network mask. */ status = nx_ip_address_change_notify(&ip_0, ip_address_change_notify, NX_NULL); if(status) { printf("ERROR!\n"); test_control_return(1); } status = nx_ip_interface_address_set(&ip_0, 0, IP_ADDRESS(1, 2, 3, 4), 0xFFFFFF00); if(status) { printf("ERROR!\n"); test_control_return(1); } /* Test the condition for network mask if ((address_change_notify) && ((ip_address != previous_ip_address) || (network_mask != previous_network_mask)) in _nx_ip_interface_address_set. Different network mask. */ status = nx_ip_interface_address_set(&ip_0, 0, IP_ADDRESS(1, 2, 3, 4), 0xFFFF0000); if(status) { printf("ERROR!\n"); test_control_return(1); } /* Test the condition for network mask if ((address_change_notify) && ((ip_address != previous_ip_address) || (network_mask != previous_network_mask)) in _nx_ip_interface_address_set. Same network mask. */ status = nx_ip_interface_address_set(&ip_0, 0, IP_ADDRESS(1, 2, 3, 39), 0xFFFFFF00); if(status) { printf("ERROR!\n"); test_control_return(1); } /* Test the condition for network mask if ((address_change_notify) && ((ip_address != previous_ip_address) || (network_mask != previous_network_mask)) in _nx_ip_interface_address_set. Different network mask. */ status = nx_ip_interface_address_set(&ip_0, 0, IP_ADDRESS(1, 2, 3, 40), 0xFFFF0000); if(status) { printf("ERROR!\n"); test_control_return(1); } printf("SUCCESS!\n"); test_control_return(0); } VOID ip_address_change_notify(NX_IP *ip_ptr, VOID *additional_info) { } #else #ifdef CTEST VOID test_application_define(void *first_unused_memory) #else void netx_ip_interface_address_set_test_application_define(void *first_unused_memory) #endif { printf("NetX Test: IP Interface Address Set Test.............................N/A\n"); test_control_return(3); } #endif