📄 radiocounttoledsc.nc
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// $Id: RadioCountToLedsC.nc,v 1.1 2007/04/12 17:14:08 rincon Exp $/* tab:4 * "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." * * Copyright (c) 2002-2003 Intel Corporation * All rights reserved. * * This file is distributed under the terms in the attached INTEL-LICENSE * file. If you do not find these files, copies can be found by writing to * Intel Research Berkeley, 2150 Shattuck Avenue, Suite 1300, Berkeley, CA, * 94704. Attention: Intel License Inquiry. */ #include "Timer.h"#include "RadioCountToLeds.h" /** * Implementation of the RadioCountToLeds application. RadioCountToLeds * maintains a 4Hz counter, broadcasting its value in an AM packet * every time it gets updated. A RadioCountToLeds node that hears a counter * displays the bottom three bits on its LEDs. This application is a useful * test to show that basic AM communication and timers work. * * @author Philip Levis * @date June 6 2005 */module RadioCountToLedsC { uses { interface Leds; interface Boot; interface Receive; interface AMSend; interface Timer<TMilli> as MilliTimer; interface SplitControl as AMControl; interface Packet; interface LowPowerListening; }}implementation { message_t packet; bool locked; uint16_t counter = 0; event void Boot.booted() { call AMControl.start(); } event void AMControl.startDone(error_t err) { if (err == SUCCESS) { // Note we can setup LPL before or after the radio turns on call LowPowerListening.setLocalSleepInterval(1000); call MilliTimer.startOneShot(1500); } else { call AMControl.start(); } } event void AMControl.stopDone(error_t err) { // do nothing } event void MilliTimer.fired() { counter++; dbg("RadioCountToLedsC", "RadioCountToLedsC: timer fired, counter is %hu.\n", counter); if (locked) { return; } else { radio_count_msg_t* rcm = (radio_count_msg_t*)call Packet.getPayload(&packet, NULL); if (call Packet.maxPayloadLength() < sizeof(radio_count_msg_t)) { return; } rcm->counter = counter; call LowPowerListening.setRxSleepInterval(&packet, 1000); if (call AMSend.send(AM_BROADCAST_ADDR, &packet, sizeof(radio_count_msg_t)) == SUCCESS) { dbg("RadioCountToLedsC", "RadioCountToLedsC: packet sent.\n", counter); locked = TRUE; } } } event message_t* Receive.receive(message_t* bufPtr, void* payload, uint8_t len) { dbg("RadioCountToLedsC", "Received packet of length %hhu.\n", len); if (len != sizeof(radio_count_msg_t)) { return bufPtr; } else { call Leds.set(((radio_count_msg_t*) payload)->counter); return bufPtr; } } event void AMSend.sendDone(message_t* bufPtr, error_t error) { call MilliTimer.startOneShot(1500); if (&packet == bufPtr) { locked = FALSE; } }}
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