mbed-os/features/cellular/TESTS/api/cellular_information/main.cpp

136 lines
4.5 KiB
C++

/*
* Copyright (c) 2018, Arm Limited and affiliates.
* SPDX-License-Identifier: Apache-2.0
*
* Licensed under the Apache License, Version 2.0 (the "License");
* you may not use this file except in compliance with the License.
* You may obtain a copy of the License at
*
* http://www.apache.org/licenses/LICENSE-2.0
*
* Unless required by applicable law or agreed to in writing, software
* distributed under the License is distributed on an "AS IS" BASIS,
* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
* See the License for the specific language governing permissions and
* limitations under the License.
*/
#if !defined(MBED_CONF_NSAPI_PRESENT)
#error [NOT_SUPPORTED] A json configuration file is needed. Skipping this build.
#endif
#include "CellularUtil.h" // for CELLULAR_ helper macros
#include "CellularTargets.h"
#ifndef CELLULAR_DEVICE
#error [NOT_SUPPORTED] CELLULAR_DEVICE must be defined
#endif
#ifndef MBED_CONF_APP_CELLULAR_SIM_PIN
#error [NOT_SUPPORTED] SIM pin code is needed. Skipping this build.
#endif
#include "greentea-client/test_env.h"
#include "unity.h"
#include "utest.h"
#include "mbed.h"
#include "AT_CellularInformation.h"
#include "CellularConnectionFSM.h"
#include "CellularDevice.h"
#include "../../cellular_tests_common.h"
#define SIM_TIMEOUT (180*1000)
static UARTSerial cellular_serial(MDMTXD, MDMRXD, MBED_CONF_PLATFORM_DEFAULT_SERIAL_BAUD_RATE);
static EventQueue queue(2 * EVENTS_EVENT_SIZE);
static CellularConnectionFSM cellular;
static CellularConnectionFSM::CellularState cellular_target_state;
static rtos::Semaphore fsm_semaphore(0);
static bool fsm_callback(int state, int next_state)
{
if (next_state == CellularConnectionFSM::STATE_SIM_PIN) {
TEST_ASSERT(fsm_semaphore.release() == osOK);
return false;
}
return true;
}
static void init_to_sim_state()
{
cellular.set_serial(&cellular_serial);
TEST_ASSERT(cellular.init() == NSAPI_ERROR_OK);
#if defined (MDMRTS) && defined (MDMCTS)
cellular_serial.set_flow_control(SerialBase::RTSCTS, MDMRTS, MDMCTS);
#endif
cellular.set_callback(&fsm_callback);
TEST_ASSERT(cellular.start_dispatch() == NSAPI_ERROR_OK);
cellular_target_state = CellularConnectionFSM::STATE_SIM_PIN;
TEST_ASSERT(cellular.continue_to_state(cellular_target_state) == NSAPI_ERROR_OK);
TEST_ASSERT(fsm_semaphore.wait(SIM_TIMEOUT) == 1);
}
static void test_information_interface()
{
CellularInformation *info = cellular.get_device()->open_information(&cellular_serial);
const int kbuf_size = 100;
char *buf = (char *)malloc(sizeof(char) * kbuf_size);
TEST_ASSERT(info->get_manufacturer(buf, kbuf_size) == NSAPI_ERROR_OK);
TEST_ASSERT(info->get_model(buf, kbuf_size) == NSAPI_ERROR_OK);
TEST_ASSERT(info->get_revision(buf, kbuf_size) == NSAPI_ERROR_OK);
TEST_ASSERT((info->get_serial_number(buf, kbuf_size, CellularInformation::SN) == NSAPI_ERROR_OK) ||
((((AT_CellularInformation *)info)->get_device_error().errType == 3) && // 3 == CME error from the modem
(((AT_CellularInformation *)info)->get_device_error().errCode == 4))); // 4 == "operation not supported"
nsapi_error_t err = info->get_serial_number(buf, kbuf_size, CellularInformation::IMEI);
TEST_ASSERT(err == NSAPI_ERROR_UNSUPPORTED || err == NSAPI_ERROR_OK);
err = info->get_serial_number(buf, kbuf_size, CellularInformation::IMEISV);
TEST_ASSERT(err == NSAPI_ERROR_UNSUPPORTED || err == NSAPI_ERROR_OK);
err = info->get_serial_number(buf, kbuf_size, CellularInformation::SVN);
TEST_ASSERT(err == NSAPI_ERROR_UNSUPPORTED || err == NSAPI_ERROR_OK);
cellular.get_device()->close_information();
free(buf);
}
using namespace utest::v1;
static utest::v1::status_t greentea_failure_handler(const Case *const source, const failure_t reason)
{
greentea_case_failure_abort_handler(source, reason);
return STATUS_ABORT;
}
static Case cases[] = {
Case("CellularInformation init", init_to_sim_state, greentea_failure_handler),
Case("CellularInformation test interface", test_information_interface, greentea_failure_handler)
};
static utest::v1::status_t test_setup(const size_t number_of_cases)
{
GREENTEA_SETUP(10 * 60, "default_auto");
return verbose_test_setup_handler(number_of_cases);
}
static Specification specification(test_setup, cases);
int main()
{
#if MBED_CONF_MBED_TRACE_ENABLE
trace_open();
#endif
int ret = Harness::run(specification);
#if MBED_CONF_MBED_TRACE_ENABLE
trace_close();
#endif
return ret;
}