128 lines
4.4 KiB
C++
128 lines
4.4 KiB
C++
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#include "ns3/core-module.h"
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#include "ns3/applications-module.h"
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#include "ns3/command-line.h"
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#include "ns3/simulator.h"
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#include "ns3/node.h"
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#include "ns3/drop-tail-queue.h"
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#include "ns3/tsn-node.h"
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#include "ns3/tsn-net-device.h"
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#include "ns3/ethernet-channel.h"
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#include "ns3/clock.h"
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#include "ns3/clock-constant-drift.h"
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#include "ns3/gPTP.h"
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/**
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* \file
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*
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* Example of the use of gPTP with two domain on a network composed of two
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* end-stations connected by a 1Gb/s full duplex link.
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* ES1 is the GPTP Grandmaster for the two domains.
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* Is this example, all the clock on the same node are slaved on the main clock
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* ES1 ====== ES2
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*/
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using namespace ns3;
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NS_LOG_COMPONENT_DEFINE("Example");
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static void
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PdelayCallback(std::string context, Ptr<TsnNetDevice> net, double pdelay)
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{
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NS_LOG_INFO("[GPTP] At " << Simulator::Now() << " on "<< context << "/" << Names::FindName(net) << " computed pdelay = " << pdelay);
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}
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static void
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ClockAfterCorrectionCallback(std::string context, Time clockValue)
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{
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NS_LOG_INFO("[GPTP] At " << Simulator::Now() << " on "<< context << " clock value after correction = " << clockValue.GetNanoSeconds() << "ns (error = "<< (Simulator::Now()-clockValue).GetNanoSeconds() << "ns)");
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}
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int
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main(int argc, char* argv[])
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{
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//Enable logging
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LogComponentEnable("Example", LOG_LEVEL_INFO);
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CommandLine cmd(__FILE__);
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cmd.Parse(argc, argv);
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//Create two nodes
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Ptr<TsnNode> n0 = CreateObject<TsnNode>();
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Names::Add("ES1", n0);
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Ptr<TsnNode> n1 = CreateObject<TsnNode>();
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Names::Add("ES2", n1);
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//Create and add clock to TsnNode
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Ptr<Clock> c0 = CreateObject<Clock>(); //Perfect clock
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n0->SetMainClock(c0);
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Ptr<ConstantDriftClock> c1 = CreateObject<ConstantDriftClock>();
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c1->SetAttribute("InitialOffset", TimeValue(Seconds(1)));
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c1->SetAttribute("DriftRate", DoubleValue(10));
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c1->SetAttribute("Granularity", TimeValue(NanoSeconds(10)));
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n1->SetMainClock(c1);
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//Create and add a netDevice to each node
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Ptr<TsnNetDevice> net0 = CreateObject<TsnNetDevice>();
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net0->SetAttribute("DataRate", DataRateValue(DataRate("1Gb/s")));
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n0->AddDevice(net0);
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Names::Add("ES1#01", net0);
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Ptr<TsnNetDevice> net1 = CreateObject<TsnNetDevice>();
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net1->SetAttribute("DataRate", DataRateValue(DataRate("1Gb/s")));
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n1->AddDevice(net1);
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Names::Add("ES2#01", net1);
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//Create a Ethernet Channel and attach it two the two netDevices
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Ptr<EthernetChannel> channel = CreateObject<EthernetChannel>();
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channel->SetAttribute("Delay", TimeValue(Time(NanoSeconds(200))));
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net0->Attach(channel);
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net1->Attach(channel);
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//Allocate a Mac address
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net0->SetAddress(Mac48Address::Allocate());
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net1->SetAddress(Mac48Address::Allocate());
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//Add two fifo per netdevice.
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net0->SetQueue(CreateObject<DropTailQueue<Packet>>());
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net0->SetQueue(CreateObject<DropTailQueue<Packet>>());
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net1->SetQueue(CreateObject<DropTailQueue<Packet>>());
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net1->SetQueue(CreateObject<DropTailQueue<Packet>>());
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//Add and configure GPTP
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Ptr<GPTP> gPTP0 = CreateObject<GPTP>();
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gPTP0->SetNode(n0);
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gPTP0->SetMainClock(c0);
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gPTP0->AddDomain(0);
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gPTP0->AddDomain(4);
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gPTP0->AddPort(net0, GPTP::MASTER, 0);
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gPTP0->AddPort(net0, GPTP::MASTER, 4);
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gPTP0->SetAttribute("SyncInterval", TimeValue(Seconds(0.125))); //This line is not mandatory because 0.125s is the default value
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gPTP0->SetAttribute("PdelayInterval", TimeValue(Seconds(1))); //This line is not mandatory because 1s is the default value
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gPTP0->SetAttribute("Priority", UintegerValue(1));
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n0->AddApplication(gPTP0);
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gPTP0->SetStartTime(Seconds(0));
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Ptr<GPTP> gPTP1 = CreateObject<GPTP>();
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gPTP1->SetNode(n1);
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gPTP1->SetMainClock(c1);
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gPTP1->AddDomain(0);
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gPTP1->AddDomain(4);
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gPTP1->AddPort(net1, GPTP::SLAVE, 0);
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gPTP1->AddPort(net1, GPTP::SLAVE, 4);
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gPTP1->SetAttribute("Priority", UintegerValue(1));
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n1->AddApplication(gPTP1);
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gPTP1->SetStartTime(Seconds(0));
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//Callback to displa information about GPTP execution
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gPTP1->TraceConnectWithoutContext("Pdelay", MakeBoundCallback(&PdelayCallback, Names::FindName(n1)));
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gPTP1->TraceConnectWithoutContext("ClockAfterCorrection", MakeBoundCallback(&ClockAfterCorrectionCallback, Names::FindName(n1)));
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//Execute the simulation
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Simulator::Stop(Seconds(3));
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Simulator::Run();
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Simulator::Destroy();
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return 0;
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}
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