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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 */
/***************************************************************************/
#include "tls_test_frame.h"
INT demo_server_entry(TLS_TEST_INSTANCE* instance_ptr);
INT demo_client_entry(TLS_TEST_INSTANCE* instance_ptr);
/* Global demo semaphore. */
TLS_TEST_SEMAPHORE* demo_semaphore;
INT main( INT argc, CHAR* argv[])
{
INT status, exit_status[2];
TLS_TEST_INSTANCE *ins0;
TLS_TEST_INSTANCE *ins1;
/* Create two test instances. */
status = tls_test_instance_create(&ins0, /* test instance ptr */
"demo_server", /* instance name */
demo_server_entry, /* test entry */
0, /* delay(seconds) */
20, /* timeout(seconds) */
1024, /* shared buffer size */
NULL); /* reserved */
return_value_if_fail(TLS_TEST_SUCCESS == status, status);
status = tls_test_instance_create(&ins1,
"demo_client",
demo_client_entry,
0,
20,
1024,
NULL);
return_value_if_fail(TLS_TEST_SUCCESS == status, status);
/* Create a semaphore and set the initial value as 0. */
status = tls_test_semaphore_create(&demo_semaphore, 0);
/* Create the test director. */
TLS_TEST_DIRECTOR *director;
status = tls_test_director_create(&director, NULL /* reserved */);
return_value_if_fail(TLS_TEST_SUCCESS == status, status);
/* Register test instances to the director. */
status = tls_test_director_register_test_instance(director, ins0);
status += tls_test_director_register_test_instance(director, ins1);
return_value_if_fail(TLS_TEST_SUCCESS == status, TLS_TEST_UNKNOWN_TYPE_ERROR);
/* Launch test. */
status = tls_test_director_test_start(director);
return_value_if_fail(TLS_TEST_SUCCESS == status, status);
/* Collect exit code. */
tls_test_instance_get_exit_status(ins0, &(exit_status[0]));
tls_test_instance_get_exit_status(ins1, &(exit_status[1]));
tls_test_instance_show_exit_status(ins0);
tls_test_instance_show_exit_status(ins1);
/* Destroy registered test instances and the director. */
tls_test_director_clean_all(director);
/* Destroy the semaphore. */
tls_test_semaphore_destroy(demo_semaphore);
/* Is this test point disabled? */
if ((TLS_TEST_NOT_AVAILABLE == exit_status[0]) || (TLS_TEST_NOT_AVAILABLE == exit_status[1]))
return TLS_TEST_NOT_AVAILABLE;
return exit_status[0] | exit_status[1];
}
/* Instance two test entry. */
INT demo_client_entry( TLS_TEST_INSTANCE* instance_ptr)
{
CHAR* external_cmd[] = { "demo_openssl_client.sh", TLS_TEST_IP_ADDRESS_STRING, DEVICE_SERVER_PORT_STRING, "-dtls1_2", (CHAR*)NULL};
INT status, exit_status, instance_status = TLS_TEST_SUCCESS, i = 0;
for ( ; i < 1; i++)
{
print_error_message("Client connection %d: waiting for semaphore.\n", i);
tls_test_semaphore_wait(demo_semaphore);
tls_test_sleep(1);
print_error_message("Client connection %d: client get semaphore. Launch a external test program.\n", i);
/* Call an external program to connect to tls server. */
status = tls_test_launch_external_test_process(&exit_status, external_cmd);
return_value_if_fail(TLS_TEST_SUCCESS == status, status);
/* Check for exit_status. */
if (exit_status)
{
/* Record errors. */
instance_status = TLS_TEST_INSTANCE_EXTERNAL_PROGRAM_FAILED;
}
}
return instance_status;
}
/* The definition of demo_server_entry is located at demo_tls_test_server.c */
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