📄 hdlctranslatec.nc
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//$Id: HdlcTranslateC.nc,v 1.5 2007/01/24 17:17:01 bengreenstein Exp $/* "Copyright (c) 2000-2005 The Regents of the University of California. * All rights reserved. * * Permission to use, copy, modify, and distribute this software and its * documentation for any purpose, without fee, and without written agreement * is hereby granted, provided that the above copyright notice, the following * two paragraphs and the author appear in all copies of this software. * * IN NO EVENT SHALL THE UNIVERSITY OF CALIFORNIA BE LIABLE TO ANY PARTY FOR * DIRECT, INDIRECT, SPECIAL, INCIDENTAL, OR CONSEQUENTIAL DAMAGES ARISING OUT * OF THE USE OF THIS SOFTWARE AND ITS DOCUMENTATION, EVEN IF THE UNIVERSITY * OF CALIFORNIA HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. * * THE UNIVERSITY OF CALIFORNIA SPECIFICALLY DISCLAIMS ANY WARRANTIES, * INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY * AND FITNESS FOR A PARTICULAR PURPOSE. THE SOFTWARE PROVIDED HEREUNDER IS * ON AN "AS IS" BASIS, AND THE UNIVERSITY OF CALIFORNIA HAS NO OBLIGATION TO * PROVIDE MAINTENANCE, SUPPORT, UPDATES, ENHANCEMENTS, OR MODIFICATIONS." *//** * This is an implementation of HDLC serial encoding, supporting framing * through frame delimiter bytes and escape bytes. * * @author Philip Levis * @author Ben Greenstein * @date August 7 2005 * */#include "Serial.h"module HdlcTranslateC { provides interface SerialFrameComm; uses { interface UartStream; interface Leds; }}implementation { typedef struct { uint8_t sendEscape:1; uint8_t receiveEscape:1; } HdlcState; //norace uint8_t debugCnt = 0; norace HdlcState state = {0,0}; norace uint8_t txTemp; norace uint8_t m_data; // TODO: add reset for when SerialM goes no-sync. async command void SerialFrameComm.resetReceive(){ state.receiveEscape = 0; } async command void SerialFrameComm.resetSend(){ state.sendEscape = 0; } async event void UartStream.receivedByte(uint8_t data) { //debugCnt++; // 7E 41 0E 05 04 03 02 01 00 01 8F 7E/* if (debugCnt == 1 && data == 0x7E) call Leds.led0On(); *//* if (debugCnt == 2 && data == 0x41) call Leds.led1On(); *//* if (debugCnt == 3 && data == 0x0E) call Leds.led2On(); */ if (data == HDLC_FLAG_BYTE) { //call Leds.led1On(); signal SerialFrameComm.delimiterReceived(); return; } else if (data == HDLC_CTLESC_BYTE) { //call Leds.led1On(); state.receiveEscape = 1; return; } else if (state.receiveEscape) { //call Leds.led1On(); state.receiveEscape = 0; data = data ^ 0x20; } signal SerialFrameComm.dataReceived(data); } async command error_t SerialFrameComm.putDelimiter() { state.sendEscape = 0; m_data = HDLC_FLAG_BYTE; return call UartStream.send(&m_data, 1); } async command error_t SerialFrameComm.putData(uint8_t data) { if (data == HDLC_CTLESC_BYTE || data == HDLC_FLAG_BYTE) { state.sendEscape = 1; txTemp = data ^ 0x20; m_data = HDLC_CTLESC_BYTE; } else { m_data = data; } return call UartStream.send(&m_data, 1); } async event void UartStream.sendDone( uint8_t* buf, uint16_t len, error_t error ) { if (state.sendEscape) { state.sendEscape = 0; m_data = txTemp; call UartStream.send(&m_data, 1); } else { signal SerialFrameComm.putDone(); } } async event void UartStream.receiveDone( uint8_t* buf, uint16_t len, error_t error ) {}}
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