mirror of https://github.com/ARMmbed/mbed-os.git
251 lines
8.1 KiB
C
251 lines
8.1 KiB
C
/* mbed Microcontroller Library
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* Copyright (c) 2006-2019 ARM Limited
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* SPDX-License-Identifier: Apache-2.0
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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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#ifndef MBED_POWER_MGMT_H
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#define MBED_POWER_MGMT_H
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#include "platform/mbed_toolchain.h"
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#include "hal/ticker_api.h"
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#include <stdbool.h>
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#ifdef __cplusplus
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extern "C" {
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#endif
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/** \addtogroup platform-public-api */
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/** @{*/
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/**
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* \defgroup platform_power_mgmt Power management functions
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* @{
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*/
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/**
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* @defgroup hal_sleep_manager Sleep manager API
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* The sleep manager provides API to automatically select sleep mode.
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*
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* There are two sleep modes:
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* - sleep
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* - deepsleep
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*
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* Use locking/unlocking deepsleep for drivers that depend on features that
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* are not allowed (=disabled) during the deepsleep. For instance, high frequency
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* clocks.
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*
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* # Defined behavior
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* * The lock is a counter
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* * The lock can be locked up to USHRT_MAX - Verified by ::test_lock_eq_ushrt_max
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* * The lock has to be equally unlocked as locked - Verified by ::test_lock_eq_ushrt_max
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* * The function sleep_manager_lock_deep_sleep_internal() locks the automatic deep mode selection - Verified by ::test_lock_unlock
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* * The function sleep_manager_unlock_deep_sleep_internal() unlocks the automatic deep mode selection - Verified by ::test_lock_unlock
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* * The function sleep_manager_sleep_auto() chooses the sleep or deep sleep modes based on the lock - Verified by ::test_sleep_auto
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* * The function sleep_manager_lock_deep_sleep_internal() is IRQ and thread safe - Verified by ::sleep_manager_multithread_test and ::sleep_manager_irq_test
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* * The function sleep_manager_unlock_deep_sleep_internal() is IRQ and thread safe - Verified by ::sleep_manager_multithread_test and ::sleep_manager_irq_test
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* * The function sleep_manager_sleep_auto() is IRQ and thread safe
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*
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* Example:
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* @code
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*
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* void driver::handler()
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* {
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* if (_sensor.get_event()) {
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* // any event - we are finished, unlock the deepsleep
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* sleep_manager_unlock_deep_sleep();
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* _callback();
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* }
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* }
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*
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* int driver::measure(event_t event, callback_t& callback)
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* {
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* _callback = callback;
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* sleep_manager_lock_deep_sleep();
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* // start async transaction, we are waiting for an event
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* return _sensor.start(event, callback);
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* }
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* @endcode
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* @{
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*/
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/**
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* @defgroup hal_sleep_manager_tests Sleep manager API tests
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* Tests to validate the proper implementation of the sleep manager
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*
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* To run the sleep manager hal tests use the command:
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*
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* mbed test -t <toolchain> -m <target> -n tests-mbed_hal-sleep_manager*
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*
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*/
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#ifdef MBED_SLEEP_TRACING_ENABLED
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void sleep_tracker_lock(const char *const filename, int line);
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void sleep_tracker_unlock(const char *const filename, int line);
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#define sleep_manager_lock_deep_sleep() \
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do \
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{ \
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sleep_manager_lock_deep_sleep_internal(); \
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sleep_tracker_lock(MBED_FILENAME, __LINE__); \
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} while (0);
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#define sleep_manager_unlock_deep_sleep() \
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do \
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{ \
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sleep_manager_unlock_deep_sleep_internal(); \
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sleep_tracker_unlock(MBED_FILENAME, __LINE__); \
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} while (0);
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#else
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#define sleep_manager_lock_deep_sleep() \
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sleep_manager_lock_deep_sleep_internal()
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#define sleep_manager_unlock_deep_sleep() \
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sleep_manager_unlock_deep_sleep_internal()
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#endif // MBED_SLEEP_TRACING_ENABLED
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/** Lock the deep sleep mode
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*
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* This locks the automatic deep mode selection.
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* sleep_manager_sleep_auto() will ignore deepsleep mode if
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* this function is invoked at least once (the internal counter is non-zero)
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*
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* Use this locking mechanism for interrupt driven API that are
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* running in the background and deepsleep could affect their functionality
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*
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* The lock is a counter, can be locked up to USHRT_MAX
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* This function is IRQ and thread safe
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*/
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void sleep_manager_lock_deep_sleep_internal(void);
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/** Unlock the deep sleep mode
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*
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* Use unlocking in pair with sleep_manager_lock_deep_sleep().
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*
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* The lock is a counter, should be equally unlocked as locked
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* This function is IRQ and thread safe
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*/
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void sleep_manager_unlock_deep_sleep_internal(void);
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/** Get the status of deep sleep allowance for a target
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*
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* @return true if a target can go to deepsleep, false otherwise
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*/
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bool sleep_manager_can_deep_sleep(void);
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/** Check if the target can deep sleep within a period of time
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*
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* This function in intended for use in testing. The amount
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* of time this functions waits for deeps sleep to be available
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* is currently 2ms. This may change in the future depending
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* on testing requirements.
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*
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* @return true if a target can go to deepsleep, false otherwise
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*/
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bool sleep_manager_can_deep_sleep_test_check(void);
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/** Enter auto selected sleep mode. It chooses the sleep or deepsleep modes based
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* on the deepsleep locking counter
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*
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* This function is IRQ and thread safe
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*
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* @note
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* If MBED_DEBUG is defined, only hal_sleep is allowed. This ensures the debugger
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* to be active for debug modes.
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*
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*/
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void sleep_manager_sleep_auto(void);
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/** Send the microcontroller to sleep
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*
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* @note This function can be a noop if not implemented by the platform.
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* @note This function will be a noop in debug mode (debug build profile when MBED_DEBUG is defined).
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* @note This function will be a noop if the following conditions are met:
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* - The RTOS is present
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* - The processor turn off the Systick clock during sleep
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* - The target does not implement tickless mode
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*
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* The processor is setup ready for sleep, and sent to sleep using __WFI(). In this mode, the
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* system clock to the core is stopped until a reset or an interrupt occurs. This eliminates
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* dynamic power used by the processor, memory systems and buses. The processor, peripheral and
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* memory state are maintained, and the peripherals continue to work and can generate interrupts.
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*
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* The processor can be woken up by any internal peripheral interrupt or external pin interrupt.
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*
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* @note
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* The mbed interface semihosting is disconnected as part of going to sleep, and can not be restored.
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* Flash re-programming and the USB serial port will remain active, but the mbed program will no longer be
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* able to access the LocalFileSystem
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*/
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static inline void sleep(void)
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{
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#if DEVICE_SLEEP
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#if (MBED_CONF_RTOS_PRESENT == 0) || (DEVICE_SYSTICK_CLK_OFF_DURING_SLEEP == 0) || defined(MBED_TICKLESS)
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sleep_manager_sleep_auto();
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#endif /* (MBED_CONF_RTOS_PRESENT == 0) || (DEVICE_SYSTICK_CLK_OFF_DURING_SLEEP == 0) || defined(MBED_TICKLESS) */
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#endif /* DEVICE_SLEEP */
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}
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/** Provides the time spent in sleep mode since boot.
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*
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* @return Time spent in sleep
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* @note Works only if platform supports LP ticker.
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*/
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us_timestamp_t mbed_time_sleep(void);
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/** Provides the time spent in deep sleep mode since boot.
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*
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* @return Time spent in deep sleep
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* @note Works only if platform supports LP ticker.
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*/
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us_timestamp_t mbed_time_deepsleep(void);
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/** Provides the time spent in idle mode since boot.
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*
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* @return Idle thread time.
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* @note Works only if platform supports LP ticker.
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*/
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us_timestamp_t mbed_time_idle(void);
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/** Provides the time since the system is up i.e. boot.
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*
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* @return System uptime.
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* @note Works only if platform supports LP ticker.
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*/
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us_timestamp_t mbed_uptime(void);
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/** @}*/
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/** Resets the processor and most of the sub-system
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*
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* @note Does not affect the debug sub-system
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*/
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MBED_NORETURN static inline void system_reset(void)
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{
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NVIC_SystemReset();
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}
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#ifdef __cplusplus
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}
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#endif
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#endif
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/** @}*/
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/** @}*/
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