📄 push-gear.tcl
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# push-gear.tcl# simple directed diffusion example# This example tests directed diffusion in 2 simple scenarios# (1) where all 3 nodes can hear each other and a source and sink application pair is setup on two of the nodes.# and# (2) where node0 and node2 donot hear one another and communicats thru the third node1. src and snk apps reside on node 0 and node2.# ==================================================================# Define options# ===================================================================set opt(chan) Channel/WirelessChannelset opt(prop) Propagation/TwoRayGroundset opt(netif) Phy/WirelessPhyset opt(mac) Mac/802_11set opt(ifq) Queue/DropTail/PriQueueset opt(ll) LLset opt(ant) Antenna/OmniAntennaset opt(diffFilters) GradientFilter/GeoRoutingFilterset opt(x) 670 ;# X dimension of the topographyset opt(y) 670 ;# Y dimension of the topographyset opt(ifqlen) 50 ;# max packet in ifqset opt(nn) 2 ;# number of nodesset opt(seed) 0.0set opt(stop) 300 ;# simulation timeset opt(prestop) 299 ;# time to prepare to stopset opt(tr) "diffusion.tr" ;# trace fileset opt(nam) "diffusion.nam" ;# nam fileset opt(adhocRouting) Directed_Diffusion#set opt(traf) "diffusion-traf.tcl" ;# traffic file# ==================================================================LL set mindelay_ 50usLL set delay_ 25usLL set bandwidth_ 0 ;# not usedQueue/DropTail/PriQueue set Prefer_Routing_Protocols 1# unity gain, omni-directional antennas# set up the antennas to be centered in the node and 1.5 meters above itAntenna/OmniAntenna set X_ 0Antenna/OmniAntenna set Y_ 0Antenna/OmniAntenna set Z_ 1.5Antenna/OmniAntenna set Gt_ 1.0Antenna/OmniAntenna set Gr_ 1.0# Initialize the SharedMedia interface with parameters to make# it work like the 914MHz Lucent WaveLAN DSSS radio interfacePhy/WirelessPhy set CPThresh_ 10.0Phy/WirelessPhy set CSThresh_ 1.559e-11Phy/WirelessPhy set RXThresh_ 3.652e-10Phy/WirelessPhy set Rb_ 2*1e6Phy/WirelessPhy set Pt_ 0.2818Phy/WirelessPhy set freq_ 914e+6 Phy/WirelessPhy set L_ 1.0# ==================================================================# Main Program# =================================================================## Initialize Global Variables#set ns_ [new Simulator] set topo [new Topography]set tracefd [open $opt(tr) w]$ns_ trace-all $tracefdset nf [open $opt(nam) w]$ns_ namtrace-all-wireless $nf $opt(x) $opt(y)#$ns_ use-newtrace$topo load_flatgrid $opt(x) $opt(y)set god_ [create-god $opt(nn)]# log the mobile nodes movements if desired#if { $opt(lm) == "on" } {# log-movement#}#global node setting$ns_ node-config -adhocRouting $opt(adhocRouting) \ -llType $opt(ll) \ -macType $opt(mac) \ -ifqType $opt(ifq) \ -ifqLen $opt(ifqlen) \ -antType $opt(ant) \ -propType $opt(prop) \ -phyType $opt(netif) \ -channelType $opt(chan) \ -topoInstance $topo \ -diffusionFilter $opt(diffFilters) \ -agentTrace ON \ -routerTrace ON \ -macTrace ON \ -stopTime $opt(prestop)# Create the specified number of nodes [$opt(nn)] and "attach" them# to the channel. for {set i 0} {$i < $opt(nn) } {incr i} { set node_($i) [$ns_ node $i] $node_($i) color black $node_($i) random-motion 0 ;# disable random motion $god_ new_node $node_($i)}puts "Loading connection pattern..."$node_(0) set X_ 100.716707738489$node_(0) set Y_ 120.707335765875$node_(0) set Z_ 0.000000000000$node_(1) set X_ 60.00$node_(1) set Y_ 54.00$node_(1) set Z_ 0.000000000000# 3rd node in hearing range of other two#$node_(2) set X_ 477.438972165239#$node_(2) set Y_ 545.843469852367#$node_(2) set Z_ 0.000000000000#3rd node NOT in hearing range of other two#$node_(2) set X_ 177.438972165239#$node_(2) set Y_ 245.843469852367#$node_(2) set Z_ 0.000000000000#Diffusion src applicationset src_(0) [new Application/DiffApp/PushSender]$ns_ attach-diffapp $node_(0) $src_(0)$ns_ at 3.123 "$src_(0) publish"#$ns_ add-gear $node_(0)#Diffusion sink applicationset snk_(0) [new Application/DiffApp/PushReceiver]$ns_ attach-diffapp $node_(1) $snk_(0)$ns_ at 1.456 "$snk_(0) subscribe"#$ns_ add-gear $node_(1)# Define node initial position in namfor {set i 0} {$i < $opt(nn)} {incr i} { # 20 defines the node size in nam, must adjust it according to your scenario # The function must be called after mobility model is defined $ns_ initial_node_pos $node_($i) 20}## Tell nodes when the simulation ends#for {set i 0} {$i < $opt(nn) } {incr i} { $ns_ at $opt(stop).000000001 "$node_($i) reset";}# tell nam the simulation stop time$ns_ at $opt(stop) "$ns_ nam-end-wireless $opt(stop)"$ns_ at $opt(stop).000000001 "puts \"NS EXITING...\" ; $ns_ halt"puts $tracefd "Directed Diffusion:"puts $tracefd "M 0.0 nn $opt(nn) x $opt(x) y $opt(y)"puts $tracefd "M 0.0 prop $opt(prop) ant $opt(ant)"puts "Starting Simulation...\ time: [clock format [clock seconds] -format %X]"$ns_ run
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