mirror of https://github.com/ARMmbed/mbed-os.git
190 lines
5.6 KiB
C++
190 lines
5.6 KiB
C++
/* mbed Microcontroller Library
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* Copyright (c) 2016 ARM Limited
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*
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* Licensed under the Apache License, Version 2.0 (the "License");
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* you may not use this file except in compliance with the License.
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* You may obtain a copy of the License at
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*
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* http://www.apache.org/licenses/LICENSE-2.0
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*
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* Unless required by applicable law or agreed to in writing, software
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* distributed under the License is distributed on an "AS IS" BASIS,
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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* See the License for the specific language governing permissions and
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* limitations under the License.
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*/
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#if !DEVICE_LOWPOWERTIMER
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#error [NOT_SUPPORTED] Low power timer not supported for this target
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#endif
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#include "utest/utest.h"
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#include "unity/unity.h"
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#include "greentea-client/test_env.h"
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#include "mbed.h"
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#include "lp_ticker_api.h"
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using namespace utest::v1;
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static volatile bool complete;
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static volatile timestamp_t complete_time;
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static ticker_event_t delay_event;
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static const ticker_data_t *lp_ticker_data = get_lp_ticker_data();
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static Timer timer;
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static LowPowerTimer lp_timer;
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/* Timeouts are quite arbitrary due to large number of boards with varying level of accuracy */
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#define LONG_TIMEOUT (100000)
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#define SHORT_TIMEOUT (600)
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void cb_done(uint32_t id) {
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if ((uint32_t)&delay_event == id) {
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complete_time = timer.read_us();
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complete = true;
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} else {
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// Normal ticker handling
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TimerEvent::irq(id);
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}
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}
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void cb_done_deepsleep(uint32_t id) {
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if ((uint32_t)&delay_event == id) {
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complete_time = lp_timer.read_us();
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complete = true;
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} else {
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// Normal ticker handling
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TimerEvent::irq(id);
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}
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}
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void lp_ticker_delay_us(uint32_t delay_us, uint32_t tolerance)
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{
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complete = false;
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uint32_t delay_ts;
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ticker_set_handler(lp_ticker_data, cb_done);
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ticker_remove_event(lp_ticker_data, &delay_event);
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delay_ts = ticker_read(lp_ticker_data) + delay_us;
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timer.reset();
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timer.start();
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ticker_insert_event(lp_ticker_data, &delay_event, delay_ts, (uint32_t)&delay_event);
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while (!complete);
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timer.stop();
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TEST_ASSERT_UINT32_WITHIN(tolerance, delay_us, complete_time);
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TEST_ASSERT_TRUE(complete);
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}
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#if DEVICE_SLEEP
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void lp_ticker_1s_deepsleep()
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{
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complete = false;
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uint32_t delay_ts;
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/*
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* Since deepsleep() may shut down the UART peripheral, we wait for 10ms
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* to allow for hardware serial buffers to completely flush.
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* This should be replaced with a better function that checks if the
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* hardware buffers are empty. However, such an API does not exist now,
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* so we'll use the wait_ms() function for now.
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*/
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wait_ms(10);
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ticker_set_handler(lp_ticker_data, cb_done_deepsleep);
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ticker_remove_event(lp_ticker_data, &delay_event);
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delay_ts = ticker_read(lp_ticker_data) + 1000000;
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/*
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* We use here the low power timer instead of microsecond timer for start and
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* end because the microseconds timer might be disable during deepsleep.
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*/
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lp_timer.reset();
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lp_timer.start();
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ticker_insert_event(lp_ticker_data, &delay_event, delay_ts, (uint32_t)&delay_event);
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/* Make sure deepsleep is allowed, to go to deepsleep */
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bool deep_sleep_allowed = sleep_manager_can_deep_sleep();
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TEST_ASSERT_TRUE_MESSAGE(deep_sleep_allowed, "Deep sleep should be allowed");
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sleep();
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while (!complete);
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lp_timer.stop();
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TEST_ASSERT_UINT32_WITHIN(LONG_TIMEOUT, 1000000, complete_time);
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TEST_ASSERT_TRUE(complete);
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}
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void lp_ticker_1s_sleep()
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{
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complete = false;
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uint32_t delay_ts;
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ticker_set_handler(lp_ticker_data, cb_done);
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ticker_remove_event(lp_ticker_data, &delay_event);
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delay_ts = ticker_read(lp_ticker_data) + 1000000;
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sleep_manager_lock_deep_sleep();
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timer.reset();
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timer.start();
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bool deep_sleep_allowed = sleep_manager_can_deep_sleep();
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TEST_ASSERT_FALSE_MESSAGE(deep_sleep_allowed, "Deep sleep should be disallowed");
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ticker_insert_event(lp_ticker_data, &delay_event, delay_ts, (uint32_t)&delay_event);
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sleep();
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while (!complete);
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timer.stop();
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sleep_manager_unlock_deep_sleep();
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TEST_ASSERT_UINT32_WITHIN(LONG_TIMEOUT, 1000000, complete_time);
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TEST_ASSERT_TRUE(complete);
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}
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#endif /* DEVICE_SLEEP */
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void lp_ticker_500us(void)
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{
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lp_ticker_delay_us(500, SHORT_TIMEOUT);
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}
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void lp_ticker_1ms(void)
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{
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lp_ticker_delay_us(1000, SHORT_TIMEOUT);
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}
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void lp_ticker_1s(void)
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{
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lp_ticker_delay_us(1000000, LONG_TIMEOUT);
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}
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void lp_ticker_5s(void)
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{
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lp_ticker_delay_us(5000000, LONG_TIMEOUT);
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}
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utest::v1::status_t greentea_failure_handler(const Case *const source, const failure_t reason) {
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greentea_case_failure_abort_handler(source, reason);
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return STATUS_CONTINUE;
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}
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Case cases[] = {
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Case("500us lp_ticker", lp_ticker_500us, greentea_failure_handler),
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Case("1ms lp_ticker", lp_ticker_1ms, greentea_failure_handler),
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Case("1s lp_ticker", lp_ticker_1s, greentea_failure_handler),
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Case("5s lp_ticker", lp_ticker_5s, greentea_failure_handler),
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#if DEVICE_SLEEP
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Case("1s lp_ticker sleep", lp_ticker_1s_sleep, greentea_failure_handler),
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Case("1s lp_ticker deepsleep", lp_ticker_1s_deepsleep, greentea_failure_handler),
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#endif /* DEVICE_SLEEP */
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};
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utest::v1::status_t greentea_test_setup(const size_t number_of_cases) {
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GREENTEA_SETUP(20, "default_auto");
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lp_ticker_data->interface->init();
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return greentea_test_setup_handler(number_of_cases);
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}
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Specification specification(greentea_test_setup, cases, greentea_test_teardown_handler);
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int main() {
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Harness::run(specification);
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}
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