📄 rf230testm.nc
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/*
* Copyright (c) 2007, Vanderbilt University
* 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 VANDERBILT UNIVERSITY 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 VANDERBILT
* UNIVERSITY HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
*
* THE VANDERBILT UNIVERSITY 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 VANDERBILT UNIVERSITY HAS NO OBLIGATION TO
* PROVIDE MAINTENANCE, SUPPORT, UPDATES, ENHANCEMENTS, OR MODIFICATIONS.
*
* Author: Miklos Maroti
*/
#include <Tasklet.h>
module RF230TestM
{
uses
{
interface Leds;
interface Boot;
interface DiagMsg;
interface SplitControl;
interface Timer<TMilli> as Timer;
interface RadioState;
interface AMSend[am_id_t id];
}
}
implementation
{
task void serialPowerUp()
{
if( call SplitControl.start() != SUCCESS )
post serialPowerUp();
}
event void SplitControl.startDone(error_t error)
{
if( error != SUCCESS )
post serialPowerUp();
else
call Timer.startPeriodic(1000);
}
event void SplitControl.stopDone(error_t error)
{
}
event void Boot.booted()
{
call Leds.led0On();
post serialPowerUp();
}
message_t testMsg;
void testStateTransitions(uint8_t seqNo)
{
seqNo &= 15;
if( seqNo == 1 )
call RadioState.standby();
else if( seqNo == 2 )
call RadioState.turnOff();
else if( seqNo == 3 )
call RadioState.standby();
else if( seqNo == 4 )
call RadioState.turnOn();
else if( seqNo == 5 )
call RadioState.turnOff();
else if( seqNo == 6 )
call RadioState.turnOn();
else if( seqNo == 7 )
{
*(uint16_t*)(call AMSend.getPayload[111](
&testMsg,
call AMSend.maxPayloadLength[111]())) = seqNo;
call AMSend.send[111](0xFFFF, &testMsg, 2);
}
}
void testTransmission(uint8_t seqNo)
{
uint8_t seqMod = seqNo & 15;
if( seqMod == 1 )
call RadioState.turnOn();
else if( 2 <= seqMod && seqMod <= 14 )
{
*(uint16_t*)(call AMSend.getPayload[111](
&testMsg,
call AMSend.maxPayloadLength[111]())) = seqNo;
call AMSend.send[111](0xFFFF, &testMsg, 2);
}
else if( seqMod == 15 )
call RadioState.turnOff();
}
tasklet_async event void RadioState.done()
{
}
event void AMSend.sendDone[am_id_t id](message_t* msg, error_t error)
{
}
norace uint8_t payload[3];
norace uint8_t receiveLength;
norace uint8_t receiveData[10];
norace error_t receiveError;
task void reportReceive()
{
if( call DiagMsg.record() )
{
call DiagMsg.hex8s(receiveData, receiveLength);
call DiagMsg.uint8(receiveError);
call DiagMsg.send();
}
}
uint8_t seqNo;
event void Timer.fired()
{
++seqNo;
// testStateTransitions(seqNo);
testTransmission(seqNo);
}
}
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