📄 radiostressc.nc
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// $Id: RadioStressC.nc,v 1.5 2007/09/13 23:10:20 scipio 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.
*/
/**
* Implementation of the OSKI RadioCountToLeds application. This
* application periodically broadcasts a 16-bit counter, and displays
* broadcasts it hears on its LEDs.
*
* @author Philip Levis
* @date June 6 2005
*
**/
#include "Timer.h"
#include "RadioStress.h"
module RadioStressC {
uses {
interface Leds;
interface Boot;
interface Receive;
interface AMSend;
interface SplitControl as RadioControl;
interface Packet;
interface Timer<TMilli>;
interface PacketAcknowledgements as Acks;
}
}
implementation {
message_t packet;
bool locked;
bool resourceHeld;
uint32_t txCounter = 0;
uint32_t ackCounter = 0;
uint32_t rxCounter = 0;
int16_t timerCounter = -1;
uint16_t taskCounter = 0;
uint16_t errorCounter = 0;
event void Boot.booted() {
call Leds.led0On();
call RadioControl.start();
}
task void sendTask();
void sendPacket() {
RadioCountMsg* rcm = (RadioCountMsg*)call Packet.getPayload(&packet, sizeof(RadioCountMsg));
if (locked) {return;}
rcm->counter = txCounter;
if (call AMSend.send(AM_BROADCAST_ADDR, &packet, 2) == SUCCESS) {
locked = TRUE;
}
else {
post sendTask();
}
}
task void sendTask() {
taskCounter++;
sendPacket();
}
event void RadioControl.startDone(error_t err) {
if (err != SUCCESS) {
call RadioControl.start();
}
else {
call Leds.led1On();
call Timer.startPeriodic(1000);
//call Acks.enable();
}
}
event void RadioControl.stopDone(error_t err) {
}
event message_t* Receive.receive(message_t* bufPtr,
void* payload, uint8_t len) {
rxCounter++;
if ((rxCounter % 32) == 0) {
call Leds.led0Toggle();
}
return bufPtr;
}
event void AMSend.sendDone(message_t* bufPtr, error_t error) {
if (error != SUCCESS) {
errorCounter++;
}
txCounter++;
if (txCounter % 32 == 0) {
call Leds.led1Toggle();
}
if (call Acks.wasAcked(bufPtr)) {
ackCounter++;
if (ackCounter % 32 == 0) {
call Leds.led2Toggle();
}
}
locked = FALSE;
sendPacket();
}
event void Timer.fired() {
call Leds.led2Toggle();
timerCounter++;
if (!locked) {
sendPacket();
}
}
}
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