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📄 philo.cpp

📁 Quantum Platform(QP) is a family of very lightweight, state machine-based frameworks for embedded sy
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//////////////////////////////////////////////////////////////////////////////// Product: QDPP example// Version: Compatible with QF/C 3.1.yy// Updated: Dec 09, 2005//// Copyright (C) 2002-2005 Quantum Leaps, LLC. All rights reserved.//// This software may be distributed and modified under the terms of the GNU// General Public License version 2 (GPL) as published by the Free Software// Foundation and appearing in the file GPL.TXT included in the packaging of// this file. Please note that GPL Section 2[b] requires that all works based// on this software must also be made publicly available under the terms of// the GPL ("Copyleft").//// Alternatively, this software may be distributed and modified under the// terms of Quantum Leaps commercial licenses, which are designed for users// who want to retain proprietary status of their code. This "dual-licensing"// model is possible because Quantum Leaps owns the copyright to this source// code and as such can license its intelectual property any number of times.// The users who license this software under one of Quantum Leaps commercial// licenses do not use this software under the GPL and therefore are not// subject to any of its terms.//// Contact information:// Quantum Leaps Web site:  http://www.quantum-leaps.com// Quantum Leaps licensing: http://www.quantum-leaps.com/licensing// Quantum Leaps products:  http://www.quantum-leaps.com/products// e-mail:                  sales@quantum-leaps.com//////////////////////////////////////////////////////////////////////////////#include "qf_port.h"#include "qdpp.h"#include "qassert.h"Q_DEFINE_THIS_FILEenum {    THINK_TIME = 7,    EAT_TIME = 5,                                  // internal events (not published to the QF)    TIMEOUT_SIG = MAX_PUB_SIG};//............................................................................class Philosopher : public QActive {private:    uint8_t num_;                                // number of this philosopher    QTimeEvt timeEvt_;                        // to timeout thinking or eatingpublic:    Philosopher::Philosopher()        : QActive((QState)&Philosopher::initial),          timeEvt_(TIMEOUT_SIG)    {}protected:    static void initial(Philosopher *me, QEvent const *e);    static QSTATE thinking(Philosopher *me, QEvent const *e);    static QSTATE hungry(Philosopher *me, QEvent const *e);    static QSTATE eating(Philosopher *me, QEvent const *e);};//............................................................................void philosopherStart(uint8_t n, uint8_t prio,                      QEvent const *qSto[], uint32_t qLen,                      void *stkSto, uint32_t stkSize){    static Philosopher philo[N];    TableEvt ie;                                       // initialization event    Q_REQUIRE(n < N);    ie.philNum = n;    philo[n].start(prio,                   qSto, qLen, stkSto, stkSize,                   (QEvent *)&ie);}//............................................................................void Philosopher::initial(Philosopher *me, QEvent const *e) {    me->num_ = ((TableEvt const *)e)->philNum;    me->subscribe(EAT_SIG);    Q_INIT(&Philosopher::thinking);}//............................................................................QSTATE Philosopher::thinking(Philosopher *me, QEvent const *e) {    switch (e->sig) {        case Q_ENTRY_SIG: {            me->timeEvt_.postIn(me, THINK_TIME);            return 0;        }        case TIMEOUT_SIG: {            Q_TRAN(&Philosopher::hungry);            return 0;        }    }    return (QSTATE)&QHsm::top;}//............................................................................QSTATE Philosopher::hungry(Philosopher *me, QEvent const *e) {    TableEvt *pe;    switch (e->sig) {        case Q_ENTRY_SIG: {            pe = Q_NEW(TableEvt, HUNGRY_SIG);            pe->philNum = me->num_;            QDPP_table->postFIFO(pe);            return 0;        }        case EAT_SIG: {            if (((TableEvt *)e)->philNum == me->num_) {                Q_TRAN(&Philosopher::eating);                return 0;            }            break;        }    }    return (QSTATE)&QHsm::top;}//............................................................................QSTATE Philosopher::eating(Philosopher *me, QEvent const *e) {    TableEvt *pe;    switch (e->sig) {        case Q_ENTRY_SIG: {            me->timeEvt_.postIn(me, EAT_TIME);            return 0;        }        case TIMEOUT_SIG: {            Q_TRAN(&Philosopher::thinking);            return 0;        }        case Q_EXIT_SIG: {            pe = Q_NEW(TableEvt, DONE_SIG);            pe->philNum = me->num_;            QF::publish(pe);            return 0;        }    }    return (QSTATE)&QHsm::top;}

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