/// @file /// @brief QXK/C++ preemptive extended (blocking) kernel, platform-independent /// public interface. /// @ingroup qxk /// @cond ///*************************************************************************** /// Last updated for version 5.7.2 /// Last updated on 2016-09-28 /// /// Q u a n t u m L e a P s /// --------------------------- /// innovating embedded systems /// /// Copyright (C) Quantum Leaps, LLC. All rights reserved. /// /// This program is open source software: you can redistribute it and/or /// modify it under the terms of the GNU General Public License as published /// by the Free Software Foundation, either version 3 of the License, or /// (at your option) any later version. /// /// Alternatively, this program may be distributed and modified under the /// terms of Quantum Leaps commercial licenses, which expressly supersede /// the GNU General Public License and are specifically designed for /// licensees interested in retaining the proprietary status of their code. /// /// This program is distributed in the hope that it will be useful, /// but WITHOUT ANY WARRANTY; without even the implied warranty of /// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the /// GNU General Public License for more details. /// /// You should have received a copy of the GNU General Public License /// along with this program. If not, see . /// /// Contact information: /// http://www.state-machine.com /// mailto:info@state-machine.com ///*************************************************************************** /// @endcond #ifndef qxk_h #define qxk_h #include "qequeue.h" // QXK kernel uses the native QF event queue #include "qmpool.h" // QXK kernel uses the native QF memory pool #include "qpset.h" // QXK kernel uses the native QF priority set //**************************************************************************** // QF configuration for QXK: data members of the ::QMActive class... //! This macro defines the type of the event queue used for the AOs /// @description /// QXK uses the native QF event queue QEQueue. /// #define QF_EQUEUE_TYPE QEQueue //! OS-dependent representation of the private thread /// @description /// QXK uses this member to store the private stack poiner for the thread. /// (The private stack pointer is NULL for AO-threads)./// /// #define QF_THREAD_TYPE void* //**************************************************************************** extern "C" { //! attributes of the QXK kernel struct QXK_Attr { void *curr; //!< currently executing thread void *next; //!< next thread to execute uint_fast8_t volatile actPrio; //!< prio of the active basic thread uint_fast8_t volatile lockPrio; //!< lock prio (0 == no-lock) uint_fast8_t volatile lockHolder; //!< prio of the lock holder #ifndef QXK_ISR_CONTEXT_ uint_fast8_t volatile intNest; //!< ISR nesting level #endif // QXK_ISR_CONTEXT_ QP::QPSet readySet; //!< ready-set of basic- and extended-threads }; //! global attributes of the QXK kernel extern QXK_Attr QXK_attr_; //! QXK initialization /// /// QXK_init() is called from QF_init() in qxk.c. This function is /// defined in the QXK ports. /// void QXK_init(void); //! QXK scheduler finds the highest-priority thread ready to run uint_fast8_t QXK_sched_(void); //! QXK activator activates the next active object. The activated AO preempts // the currently executing AOs. // void QXK_activate_(void); } // extern "C" //**************************************************************************** namespace QP { //**************************************************************************** //! QXK services. /// @description /// This class groups together QXK services. It has only static members and /// should not be instantiated. /// /// @note The QXK initialization and the QXK scheduler belong conceptually /// to the QXK class (as static class members). However, to avoid C++ /// potential name-mangling problems in assembly language, these elements /// are defined outside of the QXK class and outside the QP namespace with /// the extern "C" linkage specification. class QXK { public: //! QXK initialization /// @description /// QP::QXK::init() must be called from the application before /// QP::QF::run() to initialize the stack for the QXK idle thread. static void init(void * const idleStkSto, uint_fast16_t const idleStkSize); //! QXK idle callback (customized in BSPs for QXK) /// @description /// QP::QXK::onIdle() is called continously by the QXK idle loop. This /// callback gives the application an opportunity to enter a power-saving /// CPU mode, or perform some other idle processing. /// /// @note QP::QXK::onIdle() is invoked with interrupts enabled and must /// also return with interrupts enabled. /// /// @sa QP::QF::onIdle() static void onIdle(void); //! get the current QXK version number string of the form X.Y.Z static char_t const *getVersion(void) { return versionStr; } }; //**************************************************************************** //! Priority Ceiling Mutex the QXK preemptive kernel class QXMutex { public: //! initialize the QXK priority-ceiling mutex void init(uint_fast8_t const prio); //! lock the QXK priority-ceiling mutex void lock(void); //! unlock the QXK priority-ceiling mutex void unlock(void); private: uint_fast8_t m_lockPrio; //!< lock prio (priority ceiling) uint_fast8_t m_prevPrio; //!< previoius lock prio uint_fast8_t m_prevHolder; //!< priority of the thread holding the lock friend class QF; }; } // namespace QP //**************************************************************************** // interface used only inside QF, but not in applications #ifdef QP_IMPL #ifndef QXK_ISR_CONTEXT_ //! Internal port-specific macro that reports the execution context // (ISR vs. thread). /// @returns true if the code executes in the ISR context and false /// otherwise #define QXK_ISR_CONTEXT_() \ (QXK_attr_.intNest != static_cast(0)) #endif // QXK_ISR_CONTEXT_ // QXK-specific scheduler locking //! Internal macro to represent the scheduler lock status // that needs to be preserved to allow nesting of locks. // #define QF_SCHED_STAT_ QXMutex schedLock_; //! Internal macro for selective scheduler locking. #define QF_SCHED_LOCK_(prio_) do { \ if (QXK_ISR_CONTEXT_()) { \ schedLock_.m_lockPrio = static_cast(0); \ } else { \ schedLock_.init((prio_)); \ schedLock_.lock(); \ } \ } while (false) //! Internal macro for selective scheduler unlocking. #define QF_SCHED_UNLOCK_() do { \ if (schedLock_.m_lockPrio != static_cast(0)) { \ schedLock_.unlock(); \ } \ } while (false) // native event queue operations... #define QACTIVE_EQUEUE_WAIT_(me_) \ Q_ASSERT_ID(0, (me_)->m_eQueue.m_frontEvt != static_cast(0)) #define QACTIVE_EQUEUE_SIGNAL_(me_) do { \ QXK_attr_.readySet.insert((me_)->m_prio); \ if (!QXK_ISR_CONTEXT_()) { \ if (QXK_sched_() != static_cast(0)) { \ QXK_activate_(); \ } \ } \ } while (false) #define QACTIVE_EQUEUE_ONEMPTY_(me_) \ QXK_attr_.readySet.remove((me_)->m_prio) // native QF event pool operations... #define QF_EPOOL_TYPE_ QMPool #define QF_EPOOL_INIT_(p_, poolSto_, poolSize_, evtSize_) \ (p_).init((poolSto_), (poolSize_), (evtSize_)) #define QF_EPOOL_EVENT_SIZE_(p_) \ static_cast((p_).getBlockSize()) #define QF_EPOOL_GET_(p_, e_, m_) \ ((e_) = static_cast((p_).get((m_)))) #define QF_EPOOL_PUT_(p_, e_) ((p_).put(e_)) #endif // QP_IMPL #endif // qxk_h