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/***************************************************************************/
/* 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 basic UDP operation. */
#include "tx_api.h"
#include "nx_api.h"
#include "nx_ip.h"
extern void test_control_return(UINT status);
#if !defined(NX_DISABLE_ERROR_CHECKING) && defined(__PRODUCT_NETXDUO__) && !defined(NX_DISABLE_IPV4)
#define DEMO_STACK_SIZE 2048
/* Define the ThreadX and NetX object control blocks... */
static TX_THREAD thread_0;
static NX_PACKET_POOL pool_0;
static NX_IP ip_0;
static NX_IP invalid_ip;
static UCHAR cache_memory[1024];
/* Define the counters used in the demo application... */
static ULONG error_counter;
/* Define thread prototypes. */
static void thread_0_entry(ULONG thread_input);
static void responder_handler(NX_IP *ip_ptr, NX_PACKET *packet_ptr);
extern void _nx_ram_network_driver_256(struct NX_IP_DRIVER_STRUCT *driver_req);
/* Define what the initial system looks like. */
#ifdef CTEST
VOID test_application_define(void *first_unused_memory)
#else
void netx_arp_nxe_api_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,
3, 3, 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, 2048);
pointer = pointer + 2048;
/* Check for pool creation error. */
if (status)
error_counter++;
/* Create an IP instance. */
status = nx_ip_create(&ip_0, "NetX IP Instance 0", IP_ADDRESS(1, 2, 3, 4), 0xFFFFF000UL, &pool_0, _nx_ram_network_driver_256,
pointer, 2048, 1);
pointer = pointer + 2048;
/* Check for IP create errors. */
if (status)
error_counter++;
}
/* Define the test threads. */
static void thread_0_entry(ULONG thread_input)
{
UINT status;
ULONG ip_address;
ULONG physical_msw;
ULONG physical_lsw;
ULONG arp_requests_sent;
ULONG arp_requests_received;
ULONG arp_responses_sent;
ULONG arp_responses_received;
ULONG arp_dynamic_entries;
ULONG arp_static_entries;
ULONG arp_aged_entries;
ULONG arp_invalid_messages;
/* Print out some test information banners. */
printf("NetX Test: ARP NXE API Test..........................................");
/* Check for earlier error. */
if (error_counter)
{
printf("ERROR!\n");
test_control_return(1);
}
/************************************************/
/* Tested the nxe_arp_enable api */
/************************************************/
/* Enable the ARP feature for NULL IP instance. */
status = nx_arp_enable(NX_NULL, cache_memory, 1024);
/* Check for error. */
if (status != NX_PTR_ERROR)
{
printf("ERROR!\n");
test_control_return(1);
}
/* Enable the ARP feature for invalid IP instance. */
status = nx_arp_enable(&invalid_ip, cache_memory, 1024);
/* Check for error. */
if (status != NX_PTR_ERROR)
{
printf("ERROR!\n");
test_control_return(1);
}
/* Enable the ARP feature for IP instance with invalid cache. */
status = nx_arp_enable(&ip_0, NX_NULL, 1024);
/* Check for error. */
if (status != NX_PTR_ERROR)
{
printf("ERROR!\n");
test_control_return(1);
}
/* Enable the ARP feature for IP instance with invalid cache size. */
status = nx_arp_enable(&ip_0, cache_memory, 2);
/* Check for error. */
if (status != NX_SIZE_ERROR)
{
printf("ERROR!\n");
test_control_return(1);
}
/* Enable the ARP feature for valid IP instance. */
status = nx_arp_enable(&ip_0, cache_memory, 1024);
/* Check for error. */
if (status)
{
printf("ERROR!\n");
test_control_return(1);
}
/* Enable the ARP feature again. */
status = nx_arp_enable(&ip_0, cache_memory, 1024);
/* Check for error. */
if (status != NX_ALREADY_ENABLED)
{
printf("ERROR!\n");
test_control_return(1);
}
/************************************************/
/* Tested the nxe_arp_entry_delete api */
/************************************************/
/* Delete the entry for NULL IP instance. */
status = nx_arp_entry_delete(NX_NULL, IP_ADDRESS(1, 2, 3, 4));
/* Check for error. */
if (status != NX_PTR_ERROR)
{
printf("ERROR!\n");
test_control_return(1);
}
/* Delete the entry for invalid IP instance. */
status = nx_arp_entry_delete(&invalid_ip, IP_ADDRESS(1, 2, 3, 4));
/* Check for error. */
if (status != NX_PTR_ERROR)
{
printf("ERROR!\n");
test_control_return(1);
}
/* Delete the entry with invalid IP address. */
status = nx_arp_entry_delete(&ip_0, NX_NULL);
/* Check for error. */
if (status != NX_IP_ADDRESS_ERROR)
{
printf("ERROR!\n");
test_control_return(1);
}
/************************************************/
/* Tested the nxe_arp_gratuitous_send api */
/************************************************/
/* Call the gratuitous send for NULL IP instance. */
status = nx_arp_gratuitous_send(NX_NULL, responder_handler);
/* Check for error. */
if (status != NX_PTR_ERROR)
{
printf("ERROR!\n");
test_control_return(1);
}
/* Call the gratuitous send for invalid IP instance. */
status = nx_arp_gratuitous_send(&invalid_ip, responder_handler);
/* Check for error. */
if (status != NX_PTR_ERROR)
{
printf("ERROR!\n");
test_control_return(1);
}
/* Set the ID for invalid IP instance. */
invalid_ip.nx_ip_id = NX_IP_ID;
/* Call the gratuitous send for invalid IP instance. */
status = nx_arp_gratuitous_send(&invalid_ip, responder_handler);
/* Check for error. */
if (status != NX_IP_ADDRESS_ERROR)
{
printf("ERROR!\n");
test_control_return(1);
}
/* Disable the ARP feature. */
ip_0.nx_ip_arp_allocate = NX_NULL;
/* Call the gratuitous send for valid IP instance without ARP feature. */
status = nx_arp_gratuitous_send(&ip_0, responder_handler);
/* Check for error. */
if (status != NX_NOT_ENABLED)
{
printf("ERROR!\n");
test_control_return(1);
}
/************************************************/
/* Tested the nxe_arp_hardware_address_find api */
/************************************************/
/* Find the hardware address for NULL IP instance. */
status = nx_arp_hardware_address_find(NX_NULL, IP_ADDRESS(1, 2, 3, 4), &physical_msw, &physical_lsw);
/* Check for error. */
if (status != NX_PTR_ERROR)
{
printf("ERROR!\n");
test_control_return(1);
}
/* Clear the ID for invalid IP instance. */
invalid_ip.nx_ip_id = NX_NULL;
/* Find the hardware address for invalid IP instance. */
status = nx_arp_hardware_address_find(&invalid_ip, IP_ADDRESS(1, 2, 3, 4), &physical_msw, &physical_lsw);
/* Check for error. */
if (status != NX_PTR_ERROR)
{
printf("ERROR!\n");
test_control_return(1);
}
/* Find the hardware address for valid IP instance with invalid physical_msw pointer. */
status = nx_arp_hardware_address_find(&ip_0, IP_ADDRESS(1, 2, 3, 4), NX_NULL, &physical_lsw);
/* Check for error. */
if (status != NX_PTR_ERROR)
{
printf("ERROR!\n");
test_control_return(1);
}
/* Find the hardware address for valid IP instance with invalid physical_msw pointer. */
status = nx_arp_hardware_address_find(&ip_0, IP_ADDRESS(1, 2, 3, 4), &physical_msw, NX_NULL);
/* Check for error. */
if (status != NX_PTR_ERROR)
{
printf("ERROR!\n");
test_control_return(1);
}
/* Find the hardware address for valid IP instance with NULL IP address. */
status = nx_arp_hardware_address_find(&ip_0, NX_NULL, &physical_msw, &physical_lsw);
/* Check for error. */
if (status != NX_IP_ADDRESS_ERROR)
{
printf("ERROR!\n");
test_control_return(1);
}
/* Disable the ARP feature. */
ip_0.nx_ip_arp_allocate = NX_NULL;
/* Find the hardware address for valid IP instance without ARP feature. */
status = nx_arp_hardware_address_find(&ip_0, IP_ADDRESS(1, 2, 3, 4), &physical_msw, &physical_lsw);
/* Check for error. */
if (status != NX_NOT_ENABLED)
{
printf("ERROR!\n");
test_control_return(1);
}
/************************************************/
/* Tested the nxe_arp_info_get api */
/************************************************/
/* Get the ARP information for NULL IP instance. */
status = nx_arp_info_get(NX_NULL, &arp_requests_sent, &arp_requests_received, &arp_responses_sent, &arp_responses_received, &arp_dynamic_entries, &arp_static_entries, &arp_aged_entries, &arp_invalid_messages);
/* Check for error. */
if (status != NX_PTR_ERROR)
{
printf("ERROR!\n");
test_control_return(1);
}
/* Clear the ID for invalid IP instance. */
invalid_ip.nx_ip_id = NX_NULL;
/* Get the ARP information for invalid IP instance. */
status = nx_arp_info_get(&invalid_ip, &arp_requests_sent, &arp_requests_received, &arp_responses_sent, &arp_responses_received, &arp_dynamic_entries, &arp_static_entries, &arp_aged_entries, &arp_invalid_messages);
/* Check for error. */
if (status != NX_PTR_ERROR)
{
printf("ERROR!\n");
test_control_return(1);
}
/* Disable the ARP feature. */
ip_0.nx_ip_arp_allocate = NX_NULL;
/* Get the ARP information for invalid IP instance. */
status = nx_arp_info_get(&ip_0, &arp_requests_sent, &arp_requests_received, &arp_responses_sent, &arp_responses_received, &arp_dynamic_entries, &arp_static_entries, &arp_aged_entries, &arp_invalid_messages);
/* Check for error. */
if (status != NX_NOT_ENABLED)
{
printf("ERROR!\n");
test_control_return(1);
}
/************************************************/
/* Tested the nxe_arp_ip_address_find api */
/************************************************/
/* Find the ip address for NULL IP instance. */
status = nx_arp_ip_address_find(NX_NULL, &ip_address, 0x0011, 0x22334456);
/* Check for error. */
if (status != NX_PTR_ERROR)
{
printf("ERROR!\n");
test_control_return(1);
}
/* Clear the ID for invalid IP instance. */
invalid_ip.nx_ip_id = NX_NULL;
/* Find the ip address for invalid IP instance. */
status = nx_arp_ip_address_find(&invalid_ip, &ip_address, 0x0011, 0x22334456);
/* Check for error. */
if (status != NX_PTR_ERROR)
{
printf("ERROR!\n");
test_control_return(1);
}
/* Find the ip address for valid IP instance with invalid ip address pointer. */
status = nx_arp_ip_address_find(&ip_0, NX_NULL, 0x0011, 0x22334456);
/* Check for error. */
if (status != NX_PTR_ERROR)
{
printf("ERROR!\n");
test_control_return(1);
}
/* Find the ip address for valid IP instance with NULL physical address. */
status = nx_arp_ip_address_find(&ip_0, &ip_address, 0, 0);
/* Check for error. */
if (status != NX_INVALID_PARAMETERS)
{
printf("ERROR!\n");
test_control_return(1);
}
/* Disable the ARP feature. */
ip_0.nx_ip_arp_allocate = NX_NULL;
/* Find the ip address for valid IP instance without ARP feature. */
status = nx_arp_ip_address_find(&ip_0, &ip_address, 0x0011, 0x22334456);
/* Check for error. */
if (status != NX_NOT_ENABLED)
{
printf("ERROR!\n");
test_control_return(1);
}
/*****************************************************/
/* Tested the nxe_arp_dynamic_entries_invalidate api */
/*****************************************************/
/* Delete the dynamic entries for NULL IP instance. */
status = nx_arp_dynamic_entries_invalidate(NX_NULL);
/* Check for error. */
if (status != NX_PTR_ERROR)
{
printf("ERROR!\n");
test_control_return(1);
}
/* Set the ID for invalid IP instance. */
invalid_ip.nx_ip_id = NX_NULL;
/* Delete the dynamic entries for invalid IP instance. */
status = nx_arp_dynamic_entries_invalidate(&invalid_ip);
/* Check for error. */
if (status != NX_PTR_ERROR)
{
printf("ERROR!\n");
test_control_return(1);
}
/* Disable the ARP feature. */
ip_0.nx_ip_arp_allocate = NX_NULL;
/* Delete the dynamic entries for valid IP instance without ARP feature. */
status = nx_arp_dynamic_entries_invalidate(&ip_0);
/* Check for error. */
if (status != NX_NOT_ENABLED)
{
printf("ERROR!\n");
test_control_return(1);
}
/************************************************/
/* Tested the nxe_arp_dynamic_entry_set api */
/************************************************/
/* Create the dynamic entry for NULL IP instance. */
status = nx_arp_dynamic_entry_set(NX_NULL, IP_ADDRESS(1, 2, 3, 4), 0x0011, 0x22334456);
/* Check for error. */
if (status != NX_PTR_ERROR)
{
printf("ERROR!\n");
test_control_return(1);
}
/* Clear the ID for invalid IP instance. */
invalid_ip.nx_ip_id = NX_NULL;
/* Create the dynamic entry for invalid IP instance. */
status = nx_arp_dynamic_entry_set(&invalid_ip, IP_ADDRESS(1, 2, 3, 4), 0x0011, 0x22334456);
/* Check for error. */
if (status != NX_PTR_ERROR)
{
printf("ERROR!\n");
test_control_return(1);
}
/* Create the dynamic entry with invalid IP address. */
status = nx_arp_dynamic_entry_set(&ip_0, NX_NULL, 0x0011, 0x22334456);
/* Check for error. */
if (status != NX_IP_ADDRESS_ERROR)
{
printf("ERROR!\n");
test_control_return(1);
}
/* Create the dynamic entry with multicast IP address. */
status = nx_arp_dynamic_entry_set(&ip_0, IP_ADDRESS(224,0,0,251), 0x0011, 0x22334456);
/* Check for error. */
if (status != NX_IP_ADDRESS_ERROR)
{
printf("ERROR!\n");
test_control_return(1);
}
/* Create the dynamic entry with directed broadcast IP address. */
status = nx_arp_dynamic_entry_set(&ip_0, IP_ADDRESS(255, 255, 255, 255), 0x0011, 0x22334456);
/* Check for error. */
if (status != NX_IP_ADDRESS_ERROR)
{
printf("ERROR!\n");
test_control_return(1);
}
/* Disable the ARP feature. */
ip_0.nx_ip_arp_allocate = NX_NULL;
/* Create the dynamic entry for valid IP instance without ARP feature. */
status = nx_arp_dynamic_entry_set(&ip_0, IP_ADDRESS(1, 2, 3, 4), 0x0011, 0x22334456);
/* Check for error. */
if (status != NX_NOT_ENABLED)
{
printf("ERROR!\n");
test_control_return(1);
}
/************************************************/
/* Tested the nxe_arp_static_entries_delete api */
/************************************************/
/* Delete the static entries for NULL IP instance. */
status = nx_arp_static_entries_delete(NX_NULL);
/* Check for error. */
if (status != NX_PTR_ERROR)
{
printf("ERROR!\n");
test_control_return(1);
}
/* Clear the ID for invalid IP instance. */
invalid_ip.nx_ip_id = NX_NULL;
/* Delete the static entries for invalid IP instance. */
status = nx_arp_static_entries_delete(&invalid_ip);
/* Check for error. */
if (status != NX_PTR_ERROR)
{
printf("ERROR!\n");
test_control_return(1);
}
/* Disable the ARP feature. */
ip_0.nx_ip_arp_allocate = NX_NULL;
/* Delete the static entries for valid IP instance without ARP feature. */
status = nx_arp_static_entries_delete(&ip_0);
/* Check for error. */
if (status != NX_NOT_ENABLED)
{
printf("ERROR!\n");
test_control_return(1);
}
/************************************************/
/* Tested the nxe_arp_static_entry_create api */
/************************************************/
/* Create the static entry for NULL IP instance. */
status = nx_arp_static_entry_create(NX_NULL, IP_ADDRESS(1, 2, 3, 4), 0x0011, 0x22334456);
/* Check for error. */
if (status != NX_PTR_ERROR)
{
printf("ERROR!\n");
test_control_return(1);
}
/* Clear the ID for invalid IP instance. */
invalid_ip.nx_ip_id = NX_NULL;
/* Create the static entry for invalid IP instance. */
status = nx_arp_static_entry_create(&invalid_ip, IP_ADDRESS(1, 2, 3, 4), 0x0011, 0x22334456);
/* Check for error. */
if (status != NX_PTR_ERROR)
{
printf("ERROR!\n");
test_control_return(1);
}
/* Create the static entry with invalid IP address. */
status = nx_arp_static_entry_create(&ip_0, NX_NULL, 0x0011, 0x22334456);
/* Check for error. */
if (status != NX_IP_ADDRESS_ERROR)
{
printf("ERROR!\n");
test_control_return(1);
}
/* Create the static entry with multicast IP address. */
status = nx_arp_static_entry_create(&ip_0, IP_ADDRESS(224,0,0,251), 0x0011, 0x22334456);
/* Check for error. */
if (status != NX_IP_ADDRESS_ERROR)
{
printf("ERROR!\n");
test_control_return(1);
}
/* Create the static entry with directed broadcast IP address. */
status = nx_arp_static_entry_create(&ip_0, IP_ADDRESS(255, 255, 255, 255), 0x0011, 0x22334456);
/* Check for error. */
if (status != NX_IP_ADDRESS_ERROR)
{
printf("ERROR!\n");
test_control_return(1);
}
/* Create the static entry with invalid IP address. */
status = nx_arp_static_entry_create(&ip_0, IP_ADDRESS(1, 2, 3, 4), 0, 0);
/* Check for error. */
if (status != NX_INVALID_PARAMETERS)
{
printf("ERROR!\n");
test_control_return(1);
}
/* Disable the ARP feature. */
ip_0.nx_ip_arp_allocate = NX_NULL;
/* Create the static entry for valid IP instance without ARP feature. */
status = nx_arp_static_entry_create(&ip_0, IP_ADDRESS(1, 2, 3, 4), 0x0011, 0x22334456);
/* Check for error. */
if (status != NX_NOT_ENABLED)
{
printf("ERROR!\n");
test_control_return(1);
}
/************************************************/
/* Tested the nxe_arp_static_entry_delete api */
/************************************************/
/* Delete the static entry for NULL IP instance. */
status = nx_arp_static_entry_delete(NX_NULL, IP_ADDRESS(1, 2, 3, 4), 0x0011, 0x22334456);
/* Check for error. */
if (status != NX_PTR_ERROR)
{
printf("ERROR!\n");
test_control_return(1);
}
/* Clear the ID for invalid IP instance. */
invalid_ip.nx_ip_id = NX_NULL;
/* Delete the static entry for invalid IP instance. */
status = nx_arp_static_entry_delete(&invalid_ip, IP_ADDRESS(1, 2, 3, 4), 0x0011, 0x22334456);
/* Check for error. */
if (status != NX_PTR_ERROR)
{
printf("ERROR!\n");
test_control_return(1);
}
/* Delete the static entry for valid IP address. */
status = nx_arp_static_entry_delete(&ip_0, NX_NULL, 0x0011, 0x22334456);
/* Check for error. */
if (status != NX_IP_ADDRESS_ERROR)
{
printf("ERROR!\n");
test_control_return(1);
}
/* Delete the static entry for valid physical address. */
status = nx_arp_static_entry_delete(&ip_0, IP_ADDRESS(1, 2, 3, 4), 0, 0);
/* Check for error. */
if (status != NX_INVALID_PARAMETERS)
{
printf("ERROR!\n");
test_control_return(1);
}
/* Disable the ARP feature. */
ip_0.nx_ip_arp_allocate = NX_NULL;
/* Delete the static entry for valid IP instance without ARP feature. */
status = nx_arp_static_entry_delete(&ip_0, IP_ADDRESS(1, 2, 3, 4), 0x0011, 0x22334456);
/* Check for error. */
if (status != NX_NOT_ENABLED)
{
printf("ERROR!\n");
test_control_return(1);
}
/* Output success. */
printf("SUCCESS!\n");
test_control_return(0);
}
static void responder_handler(NX_IP *ip_ptr, NX_PACKET *packet_ptr)
{
}
#else
#ifdef CTEST
VOID test_application_define(void *first_unused_memory)
#else
void netx_arp_nxe_api_test_application_define(void *first_unused_memory)
#endif
{
/* Print out test information banner. */
printf("NetX Test: ARP NXE API Test..........................................N/A\n");
test_control_return(3);
}
#endif
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