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335 lines
11 KiB
C
335 lines
11 KiB
C
/*****************************************************************************
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* Product: DPP example, Windows
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* Last updated for version 5.5.0
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* Last updated on 2015-08-19
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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) Quantum Leaps, www.state-machine.com.
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*
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* This program is open source software: you can redistribute it and/or
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* modify it under the terms of the GNU General Public License as published
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* by 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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*
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* Alternatively, this program 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 GNU General Public License and are specifically designed for
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* licensees interested in retaining the proprietary status of their code.
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*
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* This program 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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*
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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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* Contact information:
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* Web: www.state-machine.com
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* Email: info@state-machine.com
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*****************************************************************************/
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#include "qpc.h"
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#include "dpp.h"
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#include "bsp.h"
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#include <conio.h>
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#include <stdio.h>
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#include <stdlib.h>
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Q_DEFINE_THIS_FILE
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/* local variables ---------------------------------------------------------*/
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static uint32_t l_rnd; /* random seed */
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#ifdef Q_SPY
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enum {
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PHILO_STAT = QS_USER,
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COMMAND_STAT
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};
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static uint8_t l_running;
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static uint8_t const l_clock_tick = 0U;
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#endif
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/*..........................................................................*/
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void QF_onStartup(void) {
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QF_setTickRate(BSP_TICKS_PER_SEC); /* set the desired tick rate */
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}
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/*..........................................................................*/
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void QF_onCleanup(void) {
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printf("\nBye! Bye!\n");
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}
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/*..........................................................................*/
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void QF_onClockTick(void) {
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QF_TICK_X(0U, &l_clock_tick); /* perform the QF clock tick processing */
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if (_kbhit()) { /* any key pressed? */
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int ch = _getch();
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if (ch == '\33') { /* see if the ESC key pressed */
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QF_PUBLISH(Q_NEW(QEvt, TERMINATE_SIG), &l_clock_tick);
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}
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else if (ch == 'p') {
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QF_PUBLISH(Q_NEW(QEvt, PAUSE_SIG), &l_clock_tick);
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}
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else if (ch == 's') {
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QF_PUBLISH(Q_NEW(QEvt, SERVE_SIG), &l_clock_tick);
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}
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}
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}
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/*..........................................................................*/
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void Q_onAssert(char const Q_ROM * const module, int loc) {
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QS_ASSERTION(module, loc, (uint32_t)10000U); /* report assertion to QS */
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fprintf(stderr, "Assertion failed in %s, line %d", module, loc);
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exit(-1);
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}
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/*..........................................................................*/
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void BSP_init(int argc, char *argv[]) {
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printf("Dining Philosophers Problem example"
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"\nQP %s\n"
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"Press 'p' to pause\n"
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"Press 's' to serve\n"
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"Press ESC to quit...\n",
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QP_versionStr);
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BSP_randomSeed(1234U);
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Q_ALLEGE(QS_INIT((argc > 1) ? argv[1] : ""));
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QS_OBJ_DICTIONARY(&l_clock_tick); /* must be called *after* QF_init() */
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QS_USR_DICTIONARY(PHILO_STAT);
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QS_USR_DICTIONARY(COMMAND_STAT);
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}
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/*..........................................................................*/
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void BSP_terminate(int16_t result) {
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(void)result;
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#ifdef Q_SPY
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l_running = (uint8_t)0; /* stop the QS output thread */
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#endif
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QF_stop(); /* stop the main "ticker thread" */
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}
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/*..........................................................................*/
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void BSP_displayPhilStat(uint8_t n, char const *stat) {
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printf("Philosopher %2d is %s\n", (int)n, stat);
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QS_BEGIN(PHILO_STAT, AO_Philo[n]) /* application-specific record begin */
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QS_U8(1, n); /* Philosopher number */
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QS_STR(stat); /* Philosopher status */
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QS_END()
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}
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/*..........................................................................*/
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void BSP_displayPaused(uint8_t paused) {
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printf("Paused is %s\n", paused ? "ON" : "OFF");
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}
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/*..........................................................................*/
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uint32_t BSP_random(void) { /* a very cheap pseudo-random-number generator */
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/* "Super-Duper" Linear Congruential Generator (LCG)
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* LCG(2^32, 3*7*11*13*23, 0, seed)
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*/
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l_rnd = l_rnd * (3*7*11*13*23);
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return l_rnd >> 8;
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}
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/*..........................................................................*/
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void BSP_randomSeed(uint32_t seed) {
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l_rnd = seed;
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}
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/*--------------------------------------------------------------------------*/
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#ifdef Q_SPY /* define QS callbacks */
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#include <time.h>
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#define WIN32_LEAN_AND_MEAN
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#include <windows.h> /* Win32 API for multithreading */
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#include <winsock2.h> /* for Windows network facilities */
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/*
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* In this demo, the QS software tracing output is sent out of the application
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* through a TCP/IP socket. This requires the QSPY host application to
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* be started first to open a server socket (qspy -t ...) to wait for the
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* incoming TCP/IP connection from the DPP demo.
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*
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* In an embedded target, the QS software tracing output can be sent out
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* using any method available, such as a UART. This would require changing
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* the implementation of the functions in this section, but the rest of the
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* application code does not "know" (and should not care) how the QS ouptut
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* is actually performed. In other words, the rest of the application does NOT
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* need to change in any way to produce QS output.
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*/
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static SOCKET l_sock = INVALID_SOCKET;
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/*..........................................................................*/
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static DWORD WINAPI idleThread(LPVOID par) {/* signature for CreateThread() */
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(void)par;
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while (l_sock != INVALID_SOCKET) {
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uint16_t nBytes;
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uint8_t const *block;
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/* try to receive bytes from the QS socket... */
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nBytes = QS_rxGetNfree();
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if (nBytes > 0U) {
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uint8_t buf[64];
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int status;
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if (nBytes > sizeof(buf)) {
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nBytes = sizeof(buf);
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}
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status = recv(l_sock, (char *)buf, (int)nBytes, 0);
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if (status != SOCKET_ERROR) {
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uint16_t i;
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nBytes = (uint16_t)status;
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for (i = 0U; i < nBytes; ++i) {
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QS_RX_PUT(buf[i]);
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}
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}
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}
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QS_rxParse(); /* parse all the received bytes */
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nBytes = 1024U;
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QF_CRIT_ENTRY(dummy);
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block = QS_getBlock(&nBytes);
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QF_CRIT_EXIT(dummy);
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if (block != (uint8_t *)0) {
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send(l_sock, (char const *)block, nBytes, 0);
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}
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Sleep(20); /* sleep for xx milliseconds */
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}
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return (DWORD)0; /* return success */
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}
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/*..........................................................................*/
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uint8_t QS_onStartup(void const *arg) {
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static uint8_t qsBuf[1024]; /* buffer for QS output */
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static uint8_t qsRxBuf[100]; /* buffer for QS receive channel */
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static WSADATA wsaData;
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char hostName[64];
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char const *src;
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char *dst;
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USHORT port = 6601; /* default QSPY server port */
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ULONG ioctl_opt = 1;
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struct sockaddr_in sockAddr;
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struct hostent *server;
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QS_initBuf(qsBuf, sizeof(qsBuf));
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QS_rxInitBuf(qsRxBuf, sizeof(qsRxBuf));
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/* initialize Windows sockets */
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if (WSAStartup(MAKEWORD(2,0), &wsaData) == SOCKET_ERROR) {
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printf("Windows Sockets cannot be initialized.");
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return (uint8_t)0;
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}
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src = (arg != (void const *)0)
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? (char const *)arg
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: "localhost";
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dst = hostName;
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while ((*src != '\0') && (*src != ':') && (dst < &hostName[sizeof(hostName)])) {
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*dst++ = *src++;
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}
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*dst = '\0';
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if (*src == ':') {
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port = (USHORT)strtoul(src + 1, NULL, 10);
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}
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l_sock = socket(AF_INET, SOCK_STREAM, IPPROTO_TCP); /* TCP socket */
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if (l_sock == INVALID_SOCKET){
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printf("Socket cannot be created; error 0x%08X\n",
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WSAGetLastError());
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return (uint8_t)0; /* failure */
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}
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server = gethostbyname(hostName);
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if (server == NULL) {
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printf("QSpy host name %s cannot be resolved; error 0x%08X\n",
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hostName, WSAGetLastError());
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return (uint8_t)0;
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}
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memset(&sockAddr, 0, sizeof(sockAddr));
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sockAddr.sin_family = AF_INET;
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memcpy(&sockAddr.sin_addr, server->h_addr, server->h_length);
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sockAddr.sin_port = htons(port);
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if (connect(l_sock, (struct sockaddr *)&sockAddr, sizeof(sockAddr))
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== SOCKET_ERROR)
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{
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printf("Cannot connect to the QSPY server; error 0x%08X\n",
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WSAGetLastError());
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QS_EXIT();
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return (uint8_t)0; /* failure */
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}
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/* Set the socket to non-blocking mode. */
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if (ioctlsocket(l_sock, FIONBIO, &ioctl_opt) == SOCKET_ERROR) {
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printf("Socket configuration failed.\n"
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"Windows socket error 0x%08X.",
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WSAGetLastError());
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QS_EXIT();
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return (uint8_t)0; /* failure */
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}
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/* set up the QS filters... */
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QS_FILTER_ON(QS_QEP_STATE_ENTRY);
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QS_FILTER_ON(QS_QEP_STATE_EXIT);
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QS_FILTER_ON(QS_QEP_STATE_INIT);
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QS_FILTER_ON(QS_QEP_INIT_TRAN);
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QS_FILTER_ON(QS_QEP_INTERN_TRAN);
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QS_FILTER_ON(QS_QEP_TRAN);
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QS_FILTER_ON(QS_QEP_IGNORED);
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QS_FILTER_ON(QS_QEP_DISPATCH);
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QS_FILTER_ON(QS_QEP_UNHANDLED);
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QS_FILTER_ON(QS_QF_ACTIVE_POST_FIFO);
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QS_FILTER_ON(QS_QF_ACTIVE_POST_LIFO);
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QS_FILTER_ON(QS_QF_PUBLISH);
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QS_FILTER_ON(PHILO_STAT);
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QS_FILTER_ON(COMMAND_STAT);
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/* return the status of creating the idle thread */
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return (CreateThread(NULL, 1024, &idleThread, (void *)0, 0, NULL)
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!= (HANDLE)0) ? (uint8_t)1 : (uint8_t)0;
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}
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/*..........................................................................*/
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void QS_onCleanup(void) {
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if (l_sock != INVALID_SOCKET) {
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closesocket(l_sock);
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l_sock = INVALID_SOCKET;
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}
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WSACleanup();
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}
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/*..........................................................................*/
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void QS_onFlush(void) {
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uint16_t nBytes = 1000;
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uint8_t const *block;
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while ((block = QS_getBlock(&nBytes)) != (uint8_t *)0) {
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send(l_sock, (char const *)block, nBytes, 0);
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nBytes = 1000;
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}
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}
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/*..........................................................................*/
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QSTimeCtr QS_onGetTime(void) {
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return (QSTimeCtr)clock();
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}
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/*..........................................................................*/
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/*! callback function to reset the target (to be implemented in the BSP) */
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void QS_onReset(void) {
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//TBD
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}
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/*..........................................................................*/
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/*! callback function to execute a uesr command (to be implemented in BSP) */
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void QS_onCommand(uint8_t cmdId, uint32_t param) {
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(void)cmdId;
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(void)param;
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QS_BEGIN(COMMAND_STAT, (void *)0) /* application-specific record begin */
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QS_U8(2, cmdId);
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QS_U32(8, param);
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QS_END()
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if (cmdId == 10U) {
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Q_ERROR();
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}
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}
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#endif /* Q_SPY */
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/*--------------------------------------------------------------------------*/
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