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4 changes: 2 additions & 2 deletions docs/cmd/generate.md
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Expand Up @@ -23,9 +23,9 @@ With the global `--name | -n` flag a user sets the name of the lab that will be
#### nodes
The user configures the CLOS fabric topology by using the `--nodes` flag. The flag value is a comma separated list of CLOS tiers where each tier is defined by the number of nodes, its kind and type. Multiple `--node` flags can be specified.

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<script type="text/javascript" src="https://cdn.jsdelivr.net/gh/hellt/drawio-js@main/embed2.js?&fetch=https%3A%2F%2Fraw.githubusercontent.com%2Fsrl-wim%2Fcontainerlab-diagrams%2Fmain%2Fcontainerlab.drawio" async></script>
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For example, the following flag value will define a 2-tier CLOS fabric with tier1 (leafs) consists of 4x SR Linux containers of IXR6 type and the 2x Arista cEOS spines:
```
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6 changes: 3 additions & 3 deletions docs/index.md
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Expand Up @@ -12,7 +12,7 @@ Unfortunately, container orchestration tools like docker/podman/etc are not a go

Containerlab provides a framework for setting up networking labs with containers. It starts the containers and builds a virtual wiring between them to create lab topologies of users choice.

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Containerlab focuses on containerized Network Operating Systems which are typically used to test network features and designs, such as:

Expand All @@ -22,7 +22,7 @@ Containerlab focuses on containerized Network Operating Systems which are typica
* [Juniper cRPD](https://www.juniper.net/documentation/en_US/crpd/topics/concept/understanding-crpd.html)

But, of course, containerlab is perfectly capable of wiring up arbitrary containers which can host your network applications, virtual router or simply be a test client.
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## Features
* **IaaC approach**
Expand All @@ -40,4 +40,4 @@ But, of course, containerlab is perfectly capable of wiring up arbitrary contain
* **Lab catalog**
The "most-wanted" lab topologies are [documented and included](lab-examples/lab-examples.md) with containerlab installation. Based on this cherry-picked selection you can start crafting the labs answering your needs.

<script type="text/javascript" src="https://cdn.jsdelivr.net/gh/hellt/drawio-js@main/embed2.js?&fetch=https%3A%2F%2Fraw.githubusercontent.com%2Fsrl-wim%2Fcontainerlab-diagrams%2Fmain%2Fcontainerlab.drawio" async></script>
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4 changes: 2 additions & 2 deletions docs/lab-examples/ext-bridge.md
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Expand Up @@ -9,7 +9,7 @@
## Description
This lab consists of three Nokia SR Linux nodes connected to a linux bridge.

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<center><div class="mxgraph" style="max-width:100%;border:1px solid transparent;" data-mxgraph="{&quot;page&quot;:8,&quot;zoom&quot;:1.5,&quot;highlight&quot;:&quot;#0000ff&quot;,&quot;nav&quot;:true,&quot;check-visible-state&quot;:true,&quot;resize&quot;:true,&quot;url&quot;:&quot;https://raw.githubusercontent.com/srl-wim/container-lab/diagrams/containerlab.drawio&quot;}"></div></center>

!!!note
`containerlab` **will not** create/remove the bridge interface on your behalf.
Expand All @@ -29,4 +29,4 @@ By introducing a link of `bridge` type to the containerlab topology, we are open

[^1]: Resource requirements are provisional. Consult with SR Linux Software Installation guide for additional information.

<script type="text/javascript" src="https://cdn.jsdelivr.net/gh/hellt/drawio-js@main/embed2.js?&fetch=https%3A%2F%2Fraw.githubusercontent.com%2Fsrl-wim%2Fcontainerlab-diagrams%2Fmain%2Fcontainerlab.drawio" async></script>
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4 changes: 2 additions & 2 deletions docs/lab-examples/lab-examples.md
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@@ -1,6 +1,6 @@
# About lab examples
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<center><div class="mxgraph" style="max-width:100%;border:1px solid transparent;" data-mxgraph="{&quot;page&quot;:4,&quot;zoom&quot;:1.5,&quot;highlight&quot;:&quot;#0000ff&quot;,&quot;nav&quot;:true,&quot;check-visible-state&quot;:true,&quot;resize&quot;:true,&quot;url&quot;:&quot;https://raw.githubusercontent.com/srl-wim/container-lab/diagrams/containerlab.drawio&quot;}"></div></center>
<script type="text/javascript" src="https://cdn.jsdelivr.net/gh/hellt/drawio-js@main/embed2.js" async></script>

`containerlab` aims to provide a simple, intuitive and yet customizable way to run container based labs. To help our users to have a running and functional lab as quickly as possible, we ship some essential lab topologies within the `containerlab` package.

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4 changes: 2 additions & 2 deletions docs/lab-examples/min-5clos.md
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Expand Up @@ -9,7 +9,7 @@
## Description
This labs provides a lightweight folded 5-stage CLOS fabric with Super Spine level bridging two PODs.

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The topology is additionally equipped with the Linux containers connected to leaves to facilitate use cases which require access side emulation.

Expand All @@ -24,4 +24,4 @@ With this lightweight CLOS topology a user can exhibit the following scenarios:

[^1]: Resource requirements are provisional. Consult with SR Linux Software Installation guide for additional information.

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4 changes: 2 additions & 2 deletions docs/lab-examples/min-clos.md
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Expand Up @@ -9,7 +9,7 @@
## Description
This labs provides a lightweight folded CLOS fabric topology using a minimal set of nodes: two leaves and a single spine.

<center><div class="mxgraph" style="max-width:100%;border:1px solid transparent;" data-mxgraph="{&quot;page&quot;:5,&quot;zoom&quot;:1.5,&quot;highlight&quot;:&quot;#0000ff&quot;,&quot;nav&quot;:true,&quot;check-visible-state&quot;:true,&quot;resize&quot;:true,&quot;url&quot;:&quot;https://raw.githubusercontent.com/srl-wim/containerlab-diagrams/main/containerlab.drawio&quot;}"></div></center>
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The topology is additionally equipped with the Linux containers connected to leaves to facilitate use cases which require access side emulation.

Expand All @@ -24,4 +24,4 @@ With this lightweight CLOS topology a user can exhibit the following scenarios:

[^1]: Resource requirements are provisional. Consult with SR Linux Software Installation guide for additional information.

<script type="text/javascript" src="https://cdn.jsdelivr.net/gh/hellt/drawio-js@main/embed2.js?&fetch=https%3A%2F%2Fraw.githubusercontent.com%2Fsrl-wim%2Fcontainerlab-diagrams%2Fmain%2Fcontainerlab.drawio" async></script>
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4 changes: 2 additions & 2 deletions docs/lab-examples/single-srl.md
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Expand Up @@ -9,7 +9,7 @@
## Description
A lab consists of a single SR Linux container equipped with a single interface - its management interface. No other network/data interfaces are created.

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<center><div class="mxgraph" style="max-width:100%;border:1px solid transparent;" data-mxgraph="{&quot;page&quot;:2,&quot;zoom&quot;:1.5,&quot;highlight&quot;:&quot;#0000ff&quot;,&quot;nav&quot;:true,&quot;check-visible-state&quot;:true,&quot;resize&quot;:true,&quot;url&quot;:&quot;https://raw.githubusercontent.com/srl-wim/container-lab/diagrams/containerlab.drawio&quot;}"></div></center>

The SR Linux's `mgmt` interface is connected to the `containerlab` docker network that is created as part of the lab deployment process. The `mgmt` interface of SRL will get IPv4/6 address information via DHCP service provided by docker daemon.

Expand All @@ -28,4 +28,4 @@ This lightweight lab enables the users to perform the following exercises:
[^1]: Resource requirements are provisional. Consult with SR Linux Software Installation guide for additional information.
[^2]: Check out [gnmic](https://gnmic.kmrd.dev) gNMI client to interact with SR Linux gNMI server.

<script type="text/javascript" src="https://cdn.jsdelivr.net/gh/hellt/drawio-js@main/embed2.js?&fetch=https%3A%2F%2Fraw.githubusercontent.com%2Fsrl-wim%2Fcontainerlab-diagrams%2Fmain%2Fcontainerlab.drawio" async></script>
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2 changes: 1 addition & 1 deletion docs/lab-examples/two-srls.md
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Expand Up @@ -37,4 +37,4 @@ This lab, besides having the same objectives as [srl01](single-srl.md) lab, also
[^1]: Resource requirements are provisional. Consult with SR Linux Software Installation guide for additional information.
[^2]: versions of respective container images or software that was used to create the lab.

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4 changes: 2 additions & 2 deletions docs/lab-examples/wan.md
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Expand Up @@ -9,7 +9,7 @@
## Description
Nokia SR Linux while focusing on the data center deployments in the first releases, will also be suitable for WAN deployments. In this lab users presented with a small WAN topology of four interconnected SR Linux nodes with multiple p2p interfaces between them.

<center><div class="mxgraph" style="max-width:100%;border:1px solid transparent;" data-mxgraph="{&quot;page&quot;:9,&quot;zoom&quot;:1.5,&quot;highlight&quot;:&quot;#0000ff&quot;,&quot;nav&quot;:true,&quot;check-visible-state&quot;:true,&quot;resize&quot;:true,&quot;url&quot;:&quot;https://raw.githubusercontent.com/srl-wim/containerlab-diagrams/main/containerlab.drawio&quot;}"></div></center>
<center><div class="mxgraph" style="max-width:100%;border:1px solid transparent;" data-mxgraph="{&quot;page&quot;:9,&quot;zoom&quot;:1.5,&quot;highlight&quot;:&quot;#0000ff&quot;,&quot;nav&quot;:true,&quot;check-visible-state&quot;:true,&quot;resize&quot;:true,&quot;url&quot;:&quot;https://raw.githubusercontent.com/srl-wim/container-lab/diagrams/containerlab.drawio&quot;}"></div></center>

## Use cases
The WAN-centric scenarios can be tested with this lab:
Expand All @@ -22,4 +22,4 @@ The WAN-centric scenarios can be tested with this lab:

[^1]: Resource requirements are provisional. Consult with SR Linux Software Installation guide for additional information.

<script type="text/javascript" src="https://cdn.jsdelivr.net/gh/hellt/drawio-js@main/embed2.js?&fetch=https%3A%2F%2Fraw.githubusercontent.com%2Fsrl-wim%2Fcontainerlab-diagrams%2Fmain%2Fcontainerlab.drawio" async></script>
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6 changes: 3 additions & 3 deletions docs/manual/network.md
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<script type="text/javascript" src="https://cdn.jsdelivr.net/gh/hellt/drawio-js@main/embed2.js" async></script>
One of the most important tasks in the process of building container based labs is to create a virtual wiring between the containers and the host. That is one of the problems that containerlab was designed to solve.

In this document we will discuss the networking concepts that containerlab employs to provide the following connectivity scenarios:
Expand Down Expand Up @@ -34,7 +34,7 @@ topology:
As seen from the topology definition file, the lab consists of the two SR Linux nodes which are interconnected via a single point-to-point link.
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<div class="mxgraph" style="max-width:100%;border:1px solid transparent;margin:0 auto; display:block;" data-mxgraph="{&quot;page&quot;:3,&quot;zoom&quot;:1.5,&quot;highlight&quot;:&quot;#0000ff&quot;,&quot;nav&quot;:true,&quot;check-visible-state&quot;:true,&quot;resize&quot;:true,&quot;url&quot;:&quot;https://raw.githubusercontent.com/srl-wim/container-lab/diagrams/containerlab.drawio&quot;}"></div>
The diagram above shows that these two nodes are not only interconnected between themselves, but also connected to a bridge interface on the lab host. This is driven by the containerlab default management network settings.
Expand Down Expand Up @@ -188,7 +188,7 @@ As explained in the beginning of this article, containers will connect to this d
## Point-to-point links
Management network is used to provide management access to the NOS containers, it does not carry control or dataplane traffic. In containerlab we create additional point-to-point links between the containers to provide the datapath between the lab nodes.

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<div class="mxgraph" style="max-width:100%;border:1px solid transparent;margin:0 auto; display:block;" data-mxgraph="{&quot;page&quot;:11,&quot;zoom&quot;:1.5,&quot;highlight&quot;:&quot;#0000ff&quot;,&quot;nav&quot;:true,&quot;check-visible-state&quot;:true,&quot;resize&quot;:true,&quot;url&quot;:&quot;https://raw.githubusercontent.com/srl-wim/container-lab/diagrams/containerlab.drawio&quot;}"></div>

The above diagram shows how links are created in the topology definition file. In this example, the datapath consists of the two virtual point-to-point wires between SR Linux and cEOS containers. These links are created on-demand by containerlab itself.

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