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208 lines
7.7 KiB
C
208 lines
7.7 KiB
C
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/*****************************************************************************
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* Product: Time Bomb Example with "Nested Switch Statement"
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* Last Updated for Version: 4.1.01
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* Date of the Last Update: Nov 04, 2009
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*
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* Q u a n t u m L e a P s
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* ---------------------------
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* innovating embedded systems
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*
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* Copyright (C) 2002-2009 Quantum Leaps, LLC. All rights reserved.
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*
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* This software may be distributed and modified under the terms of the GNU
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* General Public License version 2 (GPL) as published by the Free Software
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* Foundation and appearing in the file GPL.TXT included in the packaging of
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* this file. Please note that GPL Section 2[b] requires that all works based
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* on this software must also be made publicly available under the terms of
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* the GPL ("Copyleft").
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*
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* Alternatively, this software may be distributed and modified under the
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* terms of Quantum Leaps commercial licenses, which expressly supersede
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* the GPL and are specifically designed for licensees interested in
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* retaining the proprietary status of their code.
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*
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* Contact information:
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* Quantum Leaps Web site: http://www.quantum-leaps.com
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* e-mail: info@quantum-leaps.com
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*****************************************************************************/
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#include "bsp.h"
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enum BombSignals { /* all signals for the Bomb FSM */
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UP_SIG,
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DOWN_SIG,
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ARM_SIG,
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TICK_SIG
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};
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enum BombStates { /* all states for the Bomb FSM */
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SETTING_STATE,
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TIMING_STATE
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};
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typedef struct EventTag {
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uint16_t sig; /* signal of the event */
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/* add event parameters by derivation from the Event structure... */
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} Event;
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typedef struct TickEvtTag {
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Event super; /* derive from the Event structure */
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uint8_t fine_time; /* the fine 1/10 s counter */
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} TickEvt;
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typedef struct Bomb1Tag { /* the Bomb FSM */
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uint8_t state; /* the scalar state-variable */
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uint8_t timeout; /* number of seconds till explosion */
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uint8_t code; /* currently entered code to disarm the bomb */
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uint8_t defuse; /* secret defuse code to disarm the bomb */
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} Bomb1;
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void Bomb1_ctor(Bomb1 *me, uint8_t defuse); /* the "constructor" */
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void Bomb1_init(Bomb1 *me); /* init() function */
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void Bomb1_dispatch(Bomb1 *me, Event const *e);
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/* macro for taking a state transition */
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#define TRAN(target_) (me->state = (uint8_t)(target_))
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/* the initial value of the timeout */
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#define INIT_TIMEOUT 10
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/*..........................................................................*/
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void Bomb1_ctor(Bomb1 *me, uint8_t defuse) {
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me->defuse = defuse; /* the defuse code is assigned at instantiation */
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}
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/*..........................................................................*/
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void Bomb1_init(Bomb1 *me) {
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me->timeout = INIT_TIMEOUT; /* timeout is initialized in initial tran. */
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TRAN(SETTING_STATE);
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}
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/*..........................................................................*/
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void Bomb1_dispatch(Bomb1 *me, Event const *e) {
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switch (me->state) {
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case SETTING_STATE: {
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switch (e->sig) {
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case UP_SIG: {
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if (me->timeout < 60) {
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++me->timeout;
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BSP_display(me->timeout);
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}
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break;
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}
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case DOWN_SIG: {
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if (me->timeout > 1) {
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--me->timeout;
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BSP_display(me->timeout);
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}
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break;
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}
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case ARM_SIG: {
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me->code = 0;
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TRAN(TIMING_STATE); /* transition to "timing" */
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break;
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}
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}
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break;
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}
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case TIMING_STATE: {
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switch (e->sig) {
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case UP_SIG: {
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me->code <<= 1;
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me->code |= 1;
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break;
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}
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case DOWN_SIG: {
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me->code <<= 1;
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break;
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}
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case ARM_SIG: {
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if (me->code == me->defuse) {
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TRAN(SETTING_STATE); /* transition to "setting" */
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}
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break;
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}
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case TICK_SIG: {
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if (((TickEvt const *)e)->fine_time == 0) {
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--me->timeout;
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BSP_display(me->timeout);
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if (me->timeout == 0) {
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BSP_boom(); /* destroy the bomb */
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}
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}
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break;
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}
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}
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break;
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}
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}
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}
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/* Test harness ------------------------------------------------------------*/
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#include <stdio.h>
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#include <conio.h>
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#include <dos.h>
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#include <stdlib.h> /* for _exit() */
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static Bomb1 l_bomb; /* time bomb FSM */
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/*..........................................................................*/
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void main() {
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Bomb1_ctor(&l_bomb, 0x0D); /* the secret defuse code, 1101 binary */
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printf("Time Bomb (Nested switch)\n"
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"Press 'u' for UP event\n"
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"Press 'd' for DOWN event\n"
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"Press 'a' for ARM event\n"
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"Press <Esc> to quit.\n");
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Bomb1_init(&l_bomb); /* take the initial transition */
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for (;;) { /* event loop */
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static TickEvt tick_evt = { TICK_SIG, 0};
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delay(100); /* 100 ms delay */
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if (++tick_evt.fine_time == 10) {
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tick_evt.fine_time = 0;
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}
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printf("T(%1d)%c", tick_evt.fine_time,
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(tick_evt.fine_time == 0) ? '\n' : ' ');
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Bomb1_dispatch(&l_bomb, (Event *)&tick_evt); /* dispatch tick event */
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if (_kbhit()) {
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static Event const up_evt = { UP_SIG };
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static Event const down_evt = { DOWN_SIG };
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static Event const arm_evt = { ARM_SIG };
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Event const *e = (Event *)0;
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switch (_getch()) {
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case 'u': { /* UP event */
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printf("\nUP : ");
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e = &up_evt; /* generate the UP event */
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break;
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}
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case 'd': { /* DOWN event */
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printf("\nDOWN: ");
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e = &down_evt; /* generate the DOWN event */
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break;
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}
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case 'a': { /* ARM event */
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printf("\nARM : ");
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e = &arm_evt; /* generate the ARM event */
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break;
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}
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case '\33': { /* <Esc> key */
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printf("\nESC : Bye! Bye!");
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fflush(stdout);
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_exit(0);
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break;
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}
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}
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if (e != (Event *)0) { /* keyboard event available? */
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Bomb1_dispatch(&l_bomb, e); /* dispatch the event */
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}
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}
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}
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}
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