Update code

This commit is contained in:
Loic Guegan 2019-04-12 10:48:33 +02:00
parent c40644ec64
commit 23e8f7f688
2 changed files with 74 additions and 30 deletions

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@ -20,15 +20,18 @@
#include "ns3/constant-position-mobility-model.h"
#include "ns3/energy-module.h"
#include "ns3/wifi-radio-energy-model-helper.h"
#include "ns3/point-to-point-helper.h"
// C++ library
#include <iostream>
#include <utility> // To use std::pair
#include <iomanip>
using namespace ns3;
NS_LOG_COMPONENT_DEFINE ("wifi-tcp");
Ipv4Address cloudIP;
int cloudPort=50;
// ---------- Code ----------
@ -37,22 +40,37 @@ typedef std::pair<NodeContainer,NodeContainer> CellNodes;
typedef std::pair<NetDeviceContainer,NetDeviceContainer> CellNetDevices;
typedef std::pair<CellNodes,CellNetDevices> Cell;
void CloudSwitchRx(Ptr< const Packet > packet, const Address &address){
NS_LOG_UNCOND(std::setw(7)<<Simulator::Now ().GetSeconds ()<< " Cloud switch receive a packet!");
}
void
TotalEnergy (std::string context,double oldValue, double newValue)
{
NS_LOG_UNCOND ("Energy Value of node " << context << " at time " <<Simulator::Now ().GetSeconds ()
<< "\t"<< newValue);
}
/**
* Create a sensors cell
* Create a sensors cell base on
* nbSensors Number of temperature sensors in the cell
* ap the Access Point (usually linked to the cloud)
*/
Cell createCell(uint32_t nbSensors){
Cell createCell(uint32_t nbSensors, Ptr<ns3::Node> ap){
// Create sensors
NodeContainer sensors;
sensors.Create(nbSensors);
NodeContainer ap;
ap.Create(1);
// Place nodes somehow, this is required by every wireless simulation
for (uint8_t i = 0; i < nbSensors; ++i)
{
sensors.Get (i)->AggregateObject (CreateObject<ConstantPositionMobilityModel> ());
}
ap.Get (0)->AggregateObject (CreateObject<ConstantPositionMobilityModel> ());
ap->AggregateObject (CreateObject<ConstantPositionMobilityModel> ());
// To apply XXWifiPhy and WifiMac on sensors
WifiHelper wifiHelper;
@ -92,6 +110,7 @@ Cell createCell(uint32_t nbSensors){
return(std::make_pair(std::make_pair(ap,sensors),std::make_pair(apNetDevice,sensorsNetDevices)));
}
/**
* Install network stack and applications
*/
@ -103,16 +122,15 @@ void applyScenarios(Cell cell,int sensorsPktSize, int sensorsSendInterval){
// 6. Install TCP/IP stack & assign IP addresses
InternetStackHelper internet;
internet.Install (ap);
// internet.Install (ap);
internet.Install (sensors);
Ipv4AddressHelper ipv4;
ipv4.SetBase ("10.0.0.0", "255.0.0.0");
ipv4.SetBase ("10.0.0.0", "255.255.255.0");
Ipv4InterfaceContainer apInt,sensorsInt;
apInt=ipv4.Assign(apNetDev);
sensorsInt=ipv4.Assign(sensorsNetDev);
uint16_t echoPort = 9;
UdpEchoClientHelper echoClientHelper (InetSocketAddress (apInt.GetAddress (0), echoPort));
UdpEchoClientHelper echoClientHelper (InetSocketAddress (cloudIP, cloudPort));
// echoClientHelper.SetAttribute ("MaxPackets", UintegerValue (10));
echoClientHelper.SetAttribute ("Interval", TimeValue (Seconds (sensorsSendInterval)));
echoClientHelper.SetAttribute ("PacketSize", UintegerValue (sensorsPktSize));
@ -121,17 +139,43 @@ void applyScenarios(Cell cell,int sensorsPktSize, int sensorsSendInterval){
// again using different start times to workaround Bug 388 and Bug 912
echoClientHelper.SetAttribute ("StartTime", TimeValue (Seconds (1))); // Start at 1 (WIFI seems to not work when t<1)
echoClientHelper.Install (sensors);
PacketSinkHelper apSink("ns3::UdpSocketFactory",InetSocketAddress (Ipv4Address::GetAny (), echoPort));
ApplicationContainer sinkApp=apSink.Install(ap);
sinkApp.Start (Seconds (0));
}
void
TotalEnergy (std::string context,double oldValue, double newValue)
{
NS_LOG_UNCOND ("Energy Value of node " << context << " at time " <<Simulator::Now ().GetSeconds ()
<< "\t"<< newValue);
Ptr<ns3::Node> buildEdgeAndCloud(int nbOp){
NodeContainer OpNodes;
OpNodes.Create(nbOp+1);
InternetStackHelper stack;
stack.Install(OpNodes);
for(int i=0;i<nbOp;i++){ // Not nbOp-1 (We add a AP)
NodeContainer curNodes(OpNodes.Get(i),OpNodes.Get(i+1));
PointToPointHelper pointToPoint;
pointToPoint.SetDeviceAttribute ("DataRate", StringValue ("5Mbps"));
pointToPoint.SetChannelAttribute ("Delay", StringValue ("2ms"));
NetDeviceContainer p2pDevices;
p2pDevices = pointToPoint.Install (curNodes);
Ipv4AddressHelper address;
address.SetBase (("10.1."+std::to_string(i)+".0").c_str(), "255.255.255.0");
Ipv4InterfaceContainer p2pInterfaces;
p2pInterfaces = address.Assign (p2pDevices);
// NS_LOG_UNCOND(i);
if(i==nbOp-1){ // If we are on the last Op
cloudIP=p2pInterfaces.GetAddress (1);
PacketSinkHelper apSink("ns3::UdpSocketFactory",InetSocketAddress (Ipv4Address::GetAny (), cloudPort));
ApplicationContainer sinkApp=apSink.Install(curNodes.Get(1));
sinkApp.Get(0)->TraceConnectWithoutContext("Rx",MakeCallback(&CloudSwitchRx));
sinkApp.Start (Seconds (0));
}
}
return(OpNodes.Get(0));
}
@ -169,9 +213,6 @@ void setupEnergy(Cell cell){
// Ptr<BasicEnergySource> basicSourcePtr0 = DynamicCast<BasicEnergySource> (wifiEdgeNodesSources.Get (0));
// //basicSourcePtr0->TraceConnectWithoutContext ("RemainingEnergy", MakeCallback (&RemainingEnergy));
@ -189,24 +230,27 @@ void setupEnergy(Cell cell){
int main(int argc, char* argv[]){
LogComponentEnable("UdpEchoClientApplication", LOG_LEVEL_INFO);
LogComponentEnable("PacketSink", LOG_LEVEL_INFO);
//LogComponentEnable("UdpEchoClientApplication", LOG_LEVEL_INFO);
// LogComponentEnable("PacketSink", LOG_LEVEL_INFO);
uint32_t sensorsFrequency=1;
uint32_t sensorsPktSize=150;
uint32_t sensorsNumber=2;
uint32_t nbHop=5;
CommandLine cmd;
cmd.AddValue ("sensorsSendInterval", "Number of temperature measurement per second (default 1)", sensorsFrequency);
cmd.AddValue ("sensorsPktSize", "Sensor measurements packet size (default 64 bytes)", sensorsPktSize);
cmd.AddValue ("sensorsNumber", "Number of sensors (default 10)", sensorsNumber);
cmd.AddValue ("sensorsSendInterval", "Number of temperature measurement per second", sensorsFrequency);
cmd.AddValue ("sensorsPktSize", "Sensor measurements packet size (bytes)", sensorsPktSize);
cmd.AddValue ("sensorsNumber", "Number of sensors", sensorsNumber);
cmd.AddValue ("nbHop", "Number of hop between AP and Cloud sensors", sensorsNumber);
cmd.Parse (argc, argv);
Cell c=createCell(sensorsNumber);
Cell c=createCell(sensorsNumber,buildEdgeAndCloud(nbHop));
applyScenarios(c,sensorsPktSize,sensorsFrequency);
setupEnergy(c);
// setupEnergy(c);
Ipv4GlobalRoutingHelper::PopulateRoutingTables ();
// Run simulators
Simulator::Stop (Seconds (20));
Simulator::Run ();