347 lines
11 KiB
C
347 lines
11 KiB
C
/*
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ChibiOS/RT - Copyright (C) 2006,2007,2008,2009,2010,
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2011,2012,2013 Giovanni Di Sirio.
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This file is part of ChibiOS/RT.
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ChibiOS/RT is free software; you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation; either version 3 of the License, or
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(at your option) any later version.
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ChibiOS/RT is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program. If not, see <http://www.gnu.org/licenses/>.
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*/
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/**
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* @file chsys.h
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* @brief System related macros and structures.
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*
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* @addtogroup system
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* @{
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*/
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#ifndef _CHSYS_H_
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#define _CHSYS_H_
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/*===========================================================================*/
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/* Module constants. */
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/*===========================================================================*/
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/*===========================================================================*/
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/* Module pre-compile time settings. */
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/*===========================================================================*/
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/*===========================================================================*/
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/* Derived constants and error checks. */
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/*===========================================================================*/
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/*===========================================================================*/
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/* Module data structures and types. */
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/*===========================================================================*/
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/*===========================================================================*/
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/* Module macros. */
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/*===========================================================================*/
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/**
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* @name ISRs abstraction macros
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*/
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/**
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* @brief IRQ handler enter code.
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* @note Usually IRQ handlers functions are also declared naked.
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* @note On some architectures this macro can be empty.
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*
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* @special
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*/
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#define CH_IRQ_PROLOGUE() \
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PORT_IRQ_PROLOGUE(); \
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_stats_increase_irq(); \
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_dbg_check_enter_isr()
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/**
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* @brief IRQ handler exit code.
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* @note Usually IRQ handlers function are also declared naked.
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* @note This macro usually performs the final reschedule by using
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* @p chSchIsPreemptionRequired() and @p chSchDoReschedule().
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*
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* @special
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*/
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#define CH_IRQ_EPILOGUE() \
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_dbg_check_leave_isr(); \
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PORT_IRQ_EPILOGUE()
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/**
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* @brief Standard normal IRQ handler declaration.
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* @note @p id can be a function name or a vector number depending on the
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* port implementation.
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*
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* @special
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*/
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#define CH_IRQ_HANDLER(id) PORT_IRQ_HANDLER(id)
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/** @} */
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/**
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* @name Fast ISRs abstraction macros
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*/
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/**
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* @brief Standard fast IRQ handler declaration.
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* @note @p id can be a function name or a vector number depending on the
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* port implementation.
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* @note Not all architectures support fast interrupts.
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*
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* @special
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*/
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#define CH_FAST_IRQ_HANDLER(id) PORT_FAST_IRQ_HANDLER(id)
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/** @} */
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/**
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* @name Time conversion utilities for the realtime counter
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* @{
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*/
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/**
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* @brief Seconds to realtime counter.
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* @details Converts from seconds to realtime counter cycles.
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* @note The result is rounded upward to the next tick boundary.
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*
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* @param[in] sec number of seconds
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* @return The number of cycles.
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*
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* @api
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*/
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#define S2RTV(sec) (CH_CFG_RTC_FREQUENCY * (sec))
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/**
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* @brief Milliseconds to realtime counter.
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* @details Converts from milliseconds to realtime counter cycles.
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* @note The result is rounded upward to the next tick boundary.
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*
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* @param[in] msec number of milliseconds
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* @return The number of cycles.
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*
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* @api
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*/
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#define MS2RTC(msec) (rtcnt_t)(((CH_CFG_RTC_FREQUENCY + 999UL) / \
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1000UL) * (msec))
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/**
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* @brief Microseconds to realtime counter.
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* @details Converts from microseconds to realtime counter cycles.
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* @note The result is rounded upward to the next tick boundary.
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*
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* @param[in] usec number of microseconds
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* @return The number of cycles.
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*
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* @api
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*/
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#define US2RTC(usec) (rtcnt_t)(((CH_CFG_RTC_FREQUENCY + 999999UL) / \
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1000000UL) * (usec))
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/**
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* @brief Realtime counter cycles to seconds.
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* @details Converts from realtime counter cycles number to seconds.
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*
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* @param[in] n number of cycles
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* @return The number of seconds.
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*
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* @api
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*/
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#define RTC2S(n) (rtcnt_t)(CH_CFG_RTC_FREQUENCY / (freq))
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/**
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* @brief Realtime counter cycles to milliseconds.
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* @details Converts from realtime counter cycles number to milliseconds.
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*
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* @param[in] n number of cycles
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* @return The number of milliseconds.
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*
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* @api
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*/
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#define RTC2MS(n) ((n) / (CH_CFG_RTC_FREQUENCY / 1000UL))
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/**
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* @brief Realtime counter cycles to microseconds.
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* @details Converts from realtime counter cycles number to microseconds.
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*
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* @param[in] n number of cycles
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* @return The number of microseconds.
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*
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* @api
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*/
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#define RTC2US(n) ((n) / (CH_CFG_RTC_FREQUENCY / 1000000UL))
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/** @} */
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/**
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* @brief Returns the current value of the system real time counter.
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* @note This function is only available if the port layer supports the
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* option @p CH_PORT_SUPPORTS_RT.
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*
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* @return The value of the system realtime counter of
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* type rtcnt_t.
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*
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* @xclass
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*/
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#if CH_PORT_SUPPORTS_RT || defined(__DOXYGEN__)
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#define chSysGetRealtimeCounterX() (rtcnt_t)port_rt_get_counter_value()
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#endif
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/**
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* @brief Performs a context switch.
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* @note Not a user function, it is meant to be invoked by the scheduler
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* itself or from within the port layer.
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*
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* @param[in] ntp the thread to be switched in
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* @param[in] otp the thread to be switched out
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*
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* @special
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*/
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#define chSysSwitch(ntp, otp) { \
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\
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_dbg_trace(otp); \
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_stats_ctxswc(ntp, otp); \
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CH_CFG_CONTEXT_SWITCH_HOOK(ntp, otp); \
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port_switch(ntp, otp); \
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}
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/*===========================================================================*/
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/* External declarations. */
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/*===========================================================================*/
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#ifdef __cplusplus
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extern "C" {
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#endif
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void chSysInit(void);
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void chSysHalt(const char *reason);
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void chSysTimerHandlerI(void);
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syssts_t chSysGetAndLockX(void);
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void chSysRestoreLockX(syssts_t sts);
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#if CH_PORT_SUPPORTS_RT
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bool chSysIsCounterWithinX(rtcnt_t cnt, rtcnt_t start, rtcnt_t end);
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void chSysPolledDelayX(rtcnt_t cycles);
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#endif
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#ifdef __cplusplus
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}
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#endif
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/*===========================================================================*/
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/* Module inline functions. */
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/*===========================================================================*/
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/**
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* @brief Raises the system interrupt priority mask to the maximum level.
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* @details All the maskable interrupt sources are disabled regardless their
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* hardware priority.
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* @note Do not invoke this API from within a kernel lock.
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*
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* @special
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*/
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static inline void chSysDisable(void) {
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port_disable();
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_dbg_check_disable();
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}
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/**
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* @brief Raises the system interrupt priority mask to system level.
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* @details The interrupt sources that should not be able to preempt the kernel
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* are disabled, interrupt sources with higher priority are still
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* enabled.
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* @note Do not invoke this API from within a kernel lock.
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* @note This API is no replacement for @p chSysLock(), the @p chSysLock()
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* could do more than just disable the interrupts.
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*
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* @special
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*/
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static inline void chSysSuspend(void) {
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port_suspend();
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_dbg_check_suspend();
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}
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/**
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* @brief Lowers the system interrupt priority mask to user level.
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* @details All the interrupt sources are enabled.
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* @note Do not invoke this API from within a kernel lock.
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* @note This API is no replacement for @p chSysUnlock(), the
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* @p chSysUnlock() could do more than just enable the interrupts.
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*
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* @special
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*/
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static inline void chSysEnable(void) {
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_dbg_check_enable();
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port_enable();
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}
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/**
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* @brief Enters the kernel lock mode.
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*
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* @special
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*/
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static inline void chSysLock(void) {
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port_lock();
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_stats_start_measure_crit_thd();
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_dbg_check_lock();
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}
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/**
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* @brief Leaves the kernel lock mode.
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*
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* @special
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*/
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static inline void chSysUnlock(void) {
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_dbg_check_unlock();
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_stats_stop_measure_crit_thd();
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port_unlock();
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}
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/**
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* @brief Enters the kernel lock mode from within an interrupt handler.
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* @note This API may do nothing on some architectures, it is required
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* because on ports that support preemptable interrupt handlers
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* it is required to raise the interrupt mask to the same level of
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* the system mutual exclusion zone.<br>
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* It is good practice to invoke this API before invoking any I-class
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* syscall from an interrupt handler.
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* @note This API must be invoked exclusively from interrupt handlers.
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*
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* @special
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*/
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static inline void chSysLockFromISR(void) {
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port_lock_from_isr();
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_stats_start_measure_crit_isr();
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_dbg_check_lock_from_isr();
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}
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/**
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* @brief Leaves the kernel lock mode from within an interrupt handler.
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*
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* @note This API may do nothing on some architectures, it is required
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* because on ports that support preemptable interrupt handlers
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* it is required to raise the interrupt mask to the same level of
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* the system mutual exclusion zone.<br>
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* It is good practice to invoke this API after invoking any I-class
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* syscall from an interrupt handler.
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* @note This API must be invoked exclusively from interrupt handlers.
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*
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* @special
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*/
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static inline void chSysUnlockFromISR(void) {
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_dbg_check_unlock_from_isr();
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_stats_stop_measure_crit_isr();
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port_unlock_from_isr();
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}
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#endif /* _CHSYS_H_ */
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/** @} */
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