ExampleCable

Package: inet.tutorials.queueing

ExampleCable

compound module

(no description)

aDelayer : PacketDelayer

Connects one packet producer to one packet consumer.

Source:
aDelayer: PacketDelayer {
    @display("p=100,100");
} bDelayer : PacketDelayer

Connects one packet producer to one packet consumer.

Source:
bDelayer: PacketDelayer {
    @display("p=100,200");
}

Usage diagram

The following diagram shows usage relationships between types. Unresolved types are missing from the diagram.

Used in

Name Type Description
ExampleNetworkTutorialStep network (no description)

Properties

Name Value Description
display i=block/mac

Gates

Name Direction Size Description
aIn input
aOut output
bIn input
bOut output

Unassigned submodule parameters

Name Type Default value Description
aDelayer.displayStringTextFormat string "processed %p pk (%l)"

Determines the text that is written on top of the submodule, supports displaying pars, watches, and module-specific information

aDelayer.clockModule string ""

Relative path of a module that implements IClock(1,2); optional

aDelayer.schedulingPriority int 0
aDelayer.scheduleZeroDelay bool true
aDelayer.delay double

Specifies delay per packet

aDelayer.bitrate double inf bps

Determines additional delay per bit

bDelayer.displayStringTextFormat string "processed %p pk (%l)"

Determines the text that is written on top of the submodule, supports displaying pars, watches, and module-specific information

bDelayer.clockModule string ""

Relative path of a module that implements IClock(1,2); optional

bDelayer.schedulingPriority int 0
bDelayer.scheduleZeroDelay bool true
bDelayer.delay double

Specifies delay per packet

bDelayer.bitrate double inf bps

Determines additional delay per bit

Source code

module ExampleCable
{
    parameters:
        @display("i=block/mac");
    gates:
        input aIn;
        output aOut;
        input bIn;
        output bOut;
    submodules:
        aDelayer: PacketDelayer {
            @display("p=100,100");
        }
        bDelayer: PacketDelayer {
            @display("p=100,200");
        }
    connections:
        aIn --> { @display("m=w"); } --> aDelayer.in;
        aDelayer.out --> { @display("m=e"); } --> aOut;
        bIn --> { @display("m=e"); } --> bDelayer.in;
        bDelayer.out --> { @display("m=w"); } --> bOut;
}

//-------------------------------------------------

File: tutorials/queueing/QueueingTutorial.ned