//**************************************************************************** // DPP example for QXK // Last updated for version 5.8.0 // Last updated on 2016-11-30 // // 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 //**************************************************************************** #include "qpcpp.h" #include "dpp.h" #include "test.h" #include "bsp.h" //............................................................................ int main() { static QP::QEvt const *tableQueueSto[N_PHILO]; static QP::QEvt const *philoQueueSto[N_PHILO][N_PHILO]; static QP::QEvt const *testQueueSto[5]; static QP::QSubscrList subscrSto[DPP::MAX_PUB_SIG]; static QF_MPOOL_EL(DPP::TableEvt) smlPoolSto[2*N_PHILO]; // small pool // stack for the QXK extended thread static uint64_t testStackSto[64]; QP::QF::init(); // initialize the framework DPP::BSP::init(); // initialize the BSP // object dictionaries... QS_OBJ_DICTIONARY(smlPoolSto); QS_OBJ_DICTIONARY(tableQueueSto); QS_OBJ_DICTIONARY(philoQueueSto[0]); QS_OBJ_DICTIONARY(philoQueueSto[1]); QS_OBJ_DICTIONARY(philoQueueSto[2]); QS_OBJ_DICTIONARY(philoQueueSto[3]); QS_OBJ_DICTIONARY(philoQueueSto[4]); // initialize publish-subscribe... QP::QF::psInit(subscrSto, Q_DIM(subscrSto)); // initialize event pools... QP::QF::poolInit(smlPoolSto, sizeof(smlPoolSto), sizeof(smlPoolSto[0])); // start the active objects... for (uint8_t n = 0U; n < N_PHILO; ++n) { DPP::AO_Philo[n]->start( static_cast(n + 1), // QP priority philoQueueSto[n], // event queue storage Q_DIM(philoQueueSto[n]), // queue length [events] static_cast(0), // no stack storage static_cast(0)); // stack size [bytes] } DPP::AO_Table->start( static_cast(N_PHILO + 2U), // QP priority tableQueueSto, // event queue storage Q_DIM(tableQueueSto), // queue length [events] static_cast(0), // no stack storage static_cast(0)); // stack size [bytes] // start the extended thread for testing DPP::XT_Test->start( static_cast(N_PHILO + 3U), // QP priority testQueueSto, // event queue storage Q_DIM(testQueueSto), // queue length [events] testStackSto, // stack storage sizeof(testStackSto)); // stack size [bytes] return QP::QF::run(); // run the QF application }