Topology

All devices are virtualised, and built on top of an EVE-NG server

Topology Details

P1 - P2 - P3 - P4 vJUNOS-EVO

PE1-PE2-PE3-PE4 vJUNOS-EVO

PE5 - PE6 vCisco NX9K

PE7 - PE8 Arista vEOS-Router

CE1-CE2-CE3-CE4 Arista vEOS-Switch

Configuration Notes

The P routers here are only MPLS LSR’s.

All P & PE routers use ISIS as the IGP.

The PE’s are the clever one’s doing L3VPN’s, iBGP etc. We start with 10 x L3VPN’s.

CE’s run OSPF for routing redundancy from the PE routing instances. PE’s have policies to export L3VPN BGP routes into OSPF.

The PC’s on each edge are only to test connectivity end-to-end.

The “Net” clouds are the Management LAN

Cisco’s and Arista’s are here for interop fun !

Network Configuration Sheets

All the input parameters are managed through an Excel spreadsheet. This shows some of the option (there are many others)

How it works

The configbuilder script - written in Perl - pulls in this Excel sheet, understands where the parameters are (and the sheet can expand or contract depending on requirements), and processes every cell.

If it sees a blank line in for instance, the BGP neighbors, then assume no more needed & move onto the next config block.

Each router has it’s own worksheet in the workbook, so once one device is set up, it’s just a matter of copying the sheet and amending the Device Name, IP addresses etc.

$ perl config_builder_eve_1.01.pl

~~~~~~~~~~~~~~~~~~~~~~

device ............... PE1

excel input file ..... eve_v1.1.xls

configuration file ... PE1.script

~~~~~~~~~~~~~~~~~~~~~~

~~~~~~~~~~~~~~~~~~~~~~

device ............... PE2

excel input file ..... eve_v1.1.xls

configuration file ... PE2.script

~~~~~~~~~~~~~~~~~~~~~~

~~~~~~~~~~~~~~~~~~~~~~

device ............... PE3

excel input file ..... eve_v1.1.xls

configuration file ... PE3.script

~~~~~~~~~~~~~~~~~~~~~~

~~~~~~~~~~~~~~~~~~~~~~

device ............... PE4

excel input file ..... eve_v1.1.xls

configuration file ... PE4.script

~~~~~~~~~~~~~~~~~~~~~~

You can then send the configuration files to all devices using Ansible (for example)

$ ansible-playbook SP-push.set.yaml

PLAY [Load merge config] ***********************************************************************************************

TASK [Push config] ***********************************************************************************************

ok: [PE1]

ok: [P2]

ok: [P1]

ok: [P3]

ok: [P4]

ok: [PE3]

ok: [PE2]

ok: [PE4]

PLAY RECAP *************************************************************************************************************

P1 : ok=2 changed=1 unreachable=0 failed=0 skipped=0 rescued=0 ignored=0

P2 : ok=2 changed=1 unreachable=0 failed=0 skipped=0 rescued=0 ignored=0

P3 : ok=2 changed=1 unreachable=0 failed=0 skipped=0 rescued=0 ignored=0

P4 : ok=2 changed=1 unreachable=0 failed=0 skipped=0 rescued=0 ignored=0

PE1 : ok=2 changed=1 unreachable=0 failed=0 skipped=0 rescued=0 ignored=0

PE2 : ok=2 changed=1 unreachable=0 failed=0 skipped=0 rescued=0 ignored=0

PE3 : ok=2 changed=1 unreachable=0 failed=0 skipped=0 rescued=0 ignored=0

PE4 : ok=2 changed=1 unreachable=0 failed=0 skipped=0 rescued=0 ignored=0

Checking the configs with some outputs :

sclarke@PE2-re0> show isis adjacency

Interface System L State Hold (secs) SNPA

et-0/0/0.0 PE4-re0 2 Up 24

et-0/0/1.0 PE1-re0 2 Up 25

et-0/0/2.0 P2-re0 2 Up 26

sclarke@PE2-re0> show bgp summary

Threading mode: BGP I/O

Default eBGP mode: advertise - accept, receive - accept

Groups: 2 Peers: 6 Down peers: 0

Table Tot Paths Act Paths Suppressed History Damp State Pending

inet.0

0 0 0 0 0 0

inet.2

0 0 0 0 0 0

bgp.l3vpn.0

106 106 0 0 0 0

inet6.0

0 0 0 0 0 0

Peer AS InPkt OutPkt OutQ Flaps Last Up/Dwn State|#Active/Received/Accepted/Damped..

192.68.0.205 65000 69 66 0 0 23:31 Establ

inet.0: 0/0/0/0

inet.2: 0/0/0/0

bgp.l3vpn.0: 36/36/36/0

L3VPN-1000.inet.0: 0/9/9/0

L3VPN-1001.inet.0: 3/3/3/0

L3VPN-1002.inet.0: 3/3/3/0

L3VPN-1003.inet.0: 3/3/3/0

L3VPN-1004.inet.0: 3/3/3/0

L3VPN-1005.inet.0: 3/3/3/0

L3VPN-1006.inet.0: 3/3/3/0

L3VPN-1007.inet.0: 3/3/3/0

L3VPN-1008.inet.0: 3/3/3/0

L3VPN-1009.inet.0: 3/3/3/0

192.68.0.207 65000 66 65 0 0 23:25 Establ

inet.0: 0/0/0/0

inet.2: 0/0/0/0

bgp.l3vpn.0: 35/35/35/0

L3VPN-1000.inet.0: 3/8/8/0

L3VPN-1001.inet.0: 3/3/3/0

L3VPN-1002.inet.0: 3/3/3/0

L3VPN-1003.inet.0: 3/3/3/0

L3VPN-1004.inet.0: 3/3/3/0

L3VPN-1005.inet.0: 3/3/3/0

L3VPN-1006.inet.0: 3/3/3/0

L3VPN-1007.inet.0: 3/3/3/0

L3VPN-1008.inet.0: 3/3/3/0

L3VPN-1009.inet.0: 3/3/3/0

192.68.0.208 65000 67 65 0 0 23:34 Establ

inet.0: 0/0/0/0

inet.2: 0/0/0/0

bgp.l3vpn.0: 35/35/35/0

L3VPN-1000.inet.0: 5/8/8/0

L3VPN-1001.inet.0: 3/3/3/0

L3VPN-1002.inet.0: 3/3/3/0

L3VPN-1003.inet.0: 3/3/3/0

L3VPN-1004.inet.0: 3/3/3/0

L3VPN-1005.inet.0: 3/3/3/0

L3VPN-1006.inet.0: 3/3/3/0

L3VPN-1007.inet.0: 3/3/3/0

L3VPN-1008.inet.0: 3/3/3/0

L3VPN-1009.inet.0: 3/3/3/0

::192:68:0:205 65000 54 52 0 0 23:34 Establ

inet6.0: 0/0/0/0

::192:68:0:207 65000 54 52 0 0 23:46 Establ

inet6.0: 0/0/0/0

::192:68:0:208 65000 54 53 0 0 23:50 Establ

inet6.0: 0/0/0/0

sclarke@PE2-re0> show rsvp neighbor

RSVP neighbor: 9 learned

Address Idle Up/Dn LastChange HelloInt HelloTx/Rx MsgRcvd

192.68.0.201 0 1/0 22:56 9 153/153 3

192.68.0.202 0 1/0 22:57 9 153/153 0

192.68.0.204 0 1/0 22:11 9 149/149 0

192.68.0.205 0 1/0 23:16 9 157/157 3

192.68.0.207 0 1/0 23:25 9 154/154 0

192.68.0.208 0 1/0 24:00 9 150/150 0

10.206.208.2 0 1/0 24:30 9 163/163 178

10.205.206.1 0 2/1 22:47 9 92/92 158

10.202.206.1 0 1/0 24:22 9 164/163 103

sclarke@PE2-re0> show mpls lsp

Ingress LSP: 3 sessions

To From State Rt P ActivePath LSPname

192.68.0.205 192.68.0.206 Up 0 * PE2-->PE1

192.68.0.207 192.68.0.206 Up 0 * PE2-->PE3

192.68.0.208 192.68.0.206 Up 0 * PE2-->PE4

Total 3 displayed, Up 3, Down 0

Egress LSP: 7 sessions

To From State Rt Style Labelin Labelout LSPname

192.68.0.206 192.68.0.202 Up 0 1 SE 3 - Bypass->10.202.206.2

192.68.0.206 192.68.0.208 Up 0 1 SE 3 - PE4-->PE2

192.68.0.206 192.68.0.201 Up 0 1 SE 3 - Bypass->10.201.202.2->10.202.206.2

192.68.0.206 192.68.0.205 Up 0 1 SE 3 - PE1-->PE2

192.68.0.206 192.68.0.205 Up 0 1 SE 3 - Bypass->10.205.206.2

192.68.0.206 192.68.0.207 Up 0 1 SE 3 - PE3-->PE2

192.68.0.206 192.68.0.204 Up 0 1 SE 3 - Bypass->10.202.204.1->10.202.206.2

Total 7 displayed, Up 7, Down 0

Transit LSP: 6 sessions

To From State Rt Style Labelin Labelout LSPname

192.68.0.202 192.68.0.208 Up 0 1 SE 46 3 Bypass->10.204.208.1->10.202.204.1

192.68.0.202 192.68.0.205 Up 0 1 SE 47 3 Bypass->10.201.205.1->10.201.202.2

192.68.0.203 192.68.0.205 Up 0 1 SE 50 37 Bypass->10.205.207.2->10.203.207.1

192.68.0.205 192.68.0.202 Up 0 1 SE 45 3 Bypass->10.201.202.1->10.201.205.2

192.68.0.207 192.68.0.205 Up 0 1 SE 44 45 Bypass->10.205.207.2

192.68.0.208 192.68.0.202 Up 0 1 SE 48 3 Bypass->10.202.204.2->10.204.208.2

Total 6 displayed, Up 6, Down 0

PING Tests

Checking end to end connectivity from VPC1 (100.201.0.2) attached to CE1

VPC1> ping 100.201.0.1 -c 2 # Local CE1 interface

84 bytes from 100.201.0.1 icmp_seq=1 ttl=64 time=1.956 ms

84 bytes from 100.201.0.1 icmp_seq=2 ttl=64 time=1.810 ms

VPC1> ping 100.202.0.2 -c 2 # Attached to CE2

84 bytes from 100.202.0.2 icmp_seq=1 ttl=61 time=7.417 ms

84 bytes from 100.202.0.2 icmp_seq=2 ttl=61 time=7.762 ms

VPC1> ping 100.203.0.2 -c 2 # Attached to CE3

84 bytes from 100.203.0.2 icmp_seq=1 ttl=60 time=31.141 ms

84 bytes from 100.203.0.2 icmp_seq=2 ttl=60 time=15.817 ms

VPC1> ping 100.204.0.2 -c 2 # Attached to CE4

84 bytes from 100.204.0.2 icmp_seq=1 ttl=60 time=39.725 ms

84 bytes from 100.204.0.2 icmp_seq=2 ttl=60 time=16.637 ms

From CE1’s point of view

CE1#show ip route

VRF: default

Gateway of last resort is not set

C 100.101.0.0/24 is directly connected, Ethernet1.1000

O 100.102.0.0/24 [110/11] via 100.101.0.1, Ethernet1.1000

C 100.103.0.0/24 is directly connected, Ethernet2.1000

O 100.104.0.0/24 [110/11] via 100.103.0.1, Ethernet2.1000

O E2 100.105.0.0/24 [110/0] via 100.101.0.1, Ethernet1.1000

via 100.103.0.1, Ethernet2.1000

O E2 100.106.0.0/24 [110/0] via 100.101.0.1, Ethernet1.1000

via 100.103.0.1, Ethernet2.1000

O E2 100.107.0.0/24 [110/0] via 100.101.0.1, Ethernet1.1000

via 100.103.0.1, Ethernet2.1000

O E2 100.108.0.0/24 [110/0] via 100.101.0.1, Ethernet1.1000

via 100.103.0.1, Ethernet2.1000

C 100.201.0.0/24 is directly connected, Ethernet3

O 100.202.0.0/24 [110/21] via 100.101.0.1, Ethernet1.1000

via 100.103.0.1, Ethernet2.1000

O IA 100.203.0.0/24 [110/21] via 100.101.0.1, Ethernet1.1000

via 100.103.0.1, Ethernet2.1000

O IA 100.204.0.0/24 [110/21] via 100.101.0.1, Ethernet1.1000

via 100.103.0.1, Ethernet2.1000

O 192.68.0.205/32 [110/10] via 100.101.0.1, Ethernet1.1000

O 192.68.0.206/32 [110/10] via 100.103.0.1, Ethernet2.1000

O E2 192.68.0.207/32 [110/0] via 100.101.0.1, Ethernet1.1000

via 100.103.0.1, Ethernet2.1000

O E2 192.68.0.208/32 [110/0] via 100.101.0.1, Ethernet1.1000

via 100.103.0.1, Ethernet2.1000

C 192.68.0.211/32 is directly connected, Loopback0 ## CE1 loopback

O 192.68.0.212/32 [110/21] via 100.101.0.1, Ethernet1.1000 ## CE2 loopback

via 100.103.0.1, Ethernet2.1000

O IA 192.68.0.213/32 [110/21] via 100.101.0.1, Ethernet1.1000 ## CE3 loopback

via 100.103.0.1, Ethernet2.1000

O IA 192.68.0.214/32 [110/21] via 100.101.0.1, Ethernet1.1000 ## CE4 loopback

via 100.103.0.1, Ethernet2.1000

C 192.168.68.0/24 is directly connected, Management1

sclarke@PE2-re0> show route table L3VPN-1000

L3VPN-1000.inet.0: 20 destinations, 37 routes (20 active, 0 holddown, 0 hidden)

+ = Active Route, - = Last Active, * = Both

100.101.0.0/24 *[OSPF/10] 00:28:28, metric 11

> to 100.103.0.2 via et-0/0/3.1000

[BGP/170] 00:12:02, localpref 100, from 192.68.0.205

AS path: I, validation-state: unverified

> to 10.202.206.1 via et-0/0/2.0, label-switched-path PE2-->PE1

to 10.205.206.1 via et-0/0/1.0, label-switched-path Bypass->10.202.206.1->10.201.202.1

100.102.0.0/24 *[OSPF/10] 00:28:01, metric 11

> to 100.104.0.2 via et-0/0/4.1000

[BGP/170] 00:12:02, localpref 100, from 192.68.0.205

AS path: I, validation-state: unverified

> to 10.202.206.1 via et-0/0/2.0, label-switched-path PE2-->PE1

to 10.205.206.1 via et-0/0/1.0, label-switched-path Bypass->10.202.206.1->10.201.202.1

100.103.0.0/24 *[Direct/0] 00:28:42

> via et-0/0/3.1000

[BGP/170] 00:12:02, MED 11, localpref 100, from 192.68.0.205

AS path: I, validation-state: unverified

> to 10.202.206.1 via et-0/0/2.0, label-switched-path PE2-->PE1

to 10.205.206.1 via et-0/0/1.0, label-switched-path Bypass->10.202.206.1->10.201.202.1

100.103.0.1/32 *[Local/0] 00:28:42

Local via et-0/0/3.1000

100.104.0.0/24 *[Direct/0] 00:28:43

> via et-0/0/4.1000

[BGP/170] 00:12:02, MED 11, localpref 100, from 192.68.0.205

AS path: I, validation-state: unverified

> to 10.202.206.1 via et-0/0/2.0, label-switched-path PE2-->PE1

to 10.205.206.1 via et-0/0/1.0, label-switched-path Bypass->10.202.206.1->10.201.202.1

100.104.0.1/32 *[Local/0] 00:28:43

Local via et-0/0/4.1000

100.105.0.0/24 *[BGP/170] 00:26:57, localpref 100, from 192.68.0.207

AS path: I, validation-state: unverified

> to 10.202.206.1 via et-0/0/2.0, label-switched-path PE2-->PE3

to 10.206.208.2 via et-0/0/0.0, label-switched-path Bypass->10.202.206.1->10.202.204.2

[BGP/170] 00:26:52, MED 11, localpref 100, from 192.68.0.208

AS path: I, validation-state: unverified

> to 10.202.206.1 via et-0/0/2.0, label-switched-path PE2-->PE4

to 10.206.208.2 via et-0/0/0.0, label-switched-path Bypass->10.202.206.1->10.202.204.2

100.106.0.0/24 *[BGP/170] 00:26:57, localpref 100, from 192.68.0.207

AS path: I, validation-state: unverified

> to 10.202.206.1 via et-0/0/2.0, label-switched-path PE2-->PE3

to 10.206.208.2 via et-0/0/0.0, label-switched-path Bypass->10.202.206.1->10.202.204.2

[BGP/170] 00:26:52, MED 11, localpref 100, from 192.68.0.208

AS path: I, validation-state: unverified

> to 10.202.206.1 via et-0/0/2.0, label-switched-path PE2-->PE4

to 10.206.208.2 via et-0/0/0.0, label-switched-path Bypass->10.202.206.1->10.202.204.2

100.107.0.0/24 *[BGP/170] 00:26:52, localpref 100, from 192.68.0.208

AS path: I, validation-state: unverified

> to 10.202.206.1 via et-0/0/2.0, label-switched-path PE2-->PE4

to 10.206.208.2 via et-0/0/0.0, label-switched-path Bypass->10.202.206.1->10.202.204.2

[BGP/170] 00:26:57, MED 11, localpref 100, from 192.68.0.207

AS path: I, validation-state: unverified

> to 10.202.206.1 via et-0/0/2.0, label-switched-path PE2-->PE3

to 10.206.208.2 via et-0/0/0.0, label-switched-path Bypass->10.202.206.1->10.202.204.2

100.108.0.0/24 *[BGP/170] 00:26:52, localpref 100, from 192.68.0.208

AS path: I, validation-state: unverified

> to 10.202.206.1 via et-0/0/2.0, label-switched-path PE2-->PE4

to 10.206.208.2 via et-0/0/0.0, label-switched-path Bypass->10.202.206.1->10.202.204.2

[BGP/170] 00:26:57, MED 11, localpref 100, from 192.68.0.207

AS path: I, validation-state: unverified

> to 10.202.206.1 via et-0/0/2.0, label-switched-path PE2-->PE3

to 10.206.208.2 via et-0/0/0.0, label-switched-path Bypass->10.202.206.1->10.202.204.2

100.201.0.0/24 *[OSPF/10] 00:28:28, metric 11

> to 100.103.0.2 via et-0/0/3.1000

[BGP/170] 00:12:02, MED 11, localpref 100, from 192.68.0.205

AS path: I, validation-state: unverified

> to 10.202.206.1 via et-0/0/2.0, label-switched-path PE2-->PE1

to 10.205.206.1 via et-0/0/1.0, label-switched-path Bypass->10.202.206.1->10.201.202.1

100.202.0.0/24 *[OSPF/10] 00:28:01, metric 11

> to 100.104.0.2 via et-0/0/4.1000

[BGP/170] 00:12:02, MED 11, localpref 100, from 192.68.0.205

AS path: I, validation-state: unverified

> to 10.202.206.1 via et-0/0/2.0, label-switched-path PE2-->PE1

to 10.205.206.1 via et-0/0/1.0, label-switched-path Bypass->10.202.206.1->10.201.202.1

100.203.0.0/24 *[BGP/170] 00:26:52, MED 11, localpref 100, from 192.68.0.208

AS path: I, validation-state: unverified

> to 10.202.206.1 via et-0/0/2.0, label-switched-path PE2-->PE4

to 10.206.208.2 via et-0/0/0.0, label-switched-path Bypass->10.202.206.1->10.202.204.2

[BGP/170] 00:26:57, MED 11, localpref 100, from 192.68.0.207

AS path: I, validation-state: unverified

> to 10.202.206.1 via et-0/0/2.0, label-switched-path PE2-->PE3

to 10.206.208.2 via et-0/0/0.0, label-switched-path Bypass->10.202.206.1->10.202.204.2

100.204.0.0/24 *[BGP/170] 00:26:52, MED 11, localpref 100, from 192.68.0.208

AS path: I, validation-state: unverified

> to 10.202.206.1 via et-0/0/2.0, label-switched-path PE2-->PE4

to 10.206.208.2 via et-0/0/0.0, label-switched-path Bypass->10.202.206.1->10.202.204.2

[BGP/170] 00:26:57, MED 11, localpref 100, from 192.68.0.207

AS path: I, validation-state: unverified

> to 10.202.206.1 via et-0/0/2.0, label-switched-path PE2-->PE3

to 10.206.208.2 via et-0/0/0.0, label-switched-path Bypass->10.202.206.1->10.202.204.2

192.68.0.205/32 *[OSPF/10] 00:27:24, metric 11

to 100.104.0.2 via et-0/0/4.1000

> to 100.103.0.2 via et-0/0/3.1000

[BGP/170] 00:12:02, localpref 100, from 192.68.0.205

AS path: I, validation-state: unverified

> to 10.202.206.1 via et-0/0/2.0, label-switched-path PE2-->PE1

to 10.205.206.1 via et-0/0/1.0, label-switched-path Bypass->10.202.206.1->10.201.202.1

192.68.0.206/32 *[Direct/0] 00:29:36

> via lo0.1000

[BGP/170] 00:12:02, MED 11, localpref 100, from 192.68.0.205

AS path: I, validation-state: unverified

> to 10.202.206.1 via et-0/0/2.0, label-switched-path PE2-->PE1

to 10.205.206.1 via et-0/0/1.0, label-switched-path Bypass->10.202.206.1->10.201.202.1

192.68.0.207/32 *[BGP/170] 00:26:57, localpref 100, from 192.68.0.207

AS path: I, validation-state: unverified

> to 10.202.206.1 via et-0/0/2.0, label-switched-path PE2-->PE3

to 10.206.208.2 via et-0/0/0.0, label-switched-path Bypass->10.202.206.1->10.202.204.2

[BGP/170] 00:26:52, MED 11, localpref 100, from 192.68.0.208

AS path: I, validation-state: unverified

> to 10.202.206.1 via et-0/0/2.0, label-switched-path PE2-->PE4

to 10.206.208.2 via et-0/0/0.0, label-switched-path Bypass->10.202.206.1->10.202.204.2

192.68.0.208/32 *[BGP/170] 00:26:52, localpref 100, from 192.68.0.208

AS path: I, validation-state: unverified

> to 10.202.206.1 via et-0/0/2.0, label-switched-path PE2-->PE4

to 10.206.208.2 via et-0/0/0.0, label-switched-path Bypass->10.202.206.1->10.202.204.2

[BGP/170] 00:26:57, MED 11, localpref 100, from 192.68.0.207

AS path: I, validation-state: unverified

> to 10.202.206.1 via et-0/0/2.0, label-switched-path PE2-->PE3

to 10.206.208.2 via et-0/0/0.0, label-switched-path Bypass->10.202.206.1->10.202.204.2

192.68.0.211/32 *[OSPF/10] 00:28:28, metric 11

> to 100.103.0.2 via et-0/0/3.1000

[BGP/170] 00:12:02, MED 11, localpref 100, from 192.68.0.205

AS path: I, validation-state: unverified

> to 10.202.206.1 via et-0/0/2.0, label-switched-path PE2-->PE1

to 10.205.206.1 via et-0/0/1.0, label-switched-path Bypass->10.202.206.1->10.201.202.1

224.0.0.5/32 *[OSPF/10] 00:29:38, metric 1

MultiRecv

Scaling Up !

Bored with only 10 L3VPN’s ? Why not do 500 instead, simply by amending the numbers in the Excel sheet - see no. of vlans here is increased to 500. Run the script again and send the new configs to each device.

Checking with PE2

sclarke@PE2-re0# run show bgp summary

Threading mode: BGP I/O

Default eBGP mode: advertise - accept, receive - accept

Groups: 2 Peers: 6 Down peers: 0

Table Tot Paths Act Paths Suppressed History Damp State Pending

inet.0

0 0 0 0 0 0

inet.2

0 0 0 0 0 0

bgp.l3vpn.0

4582 4582 0 0 0 0

inet6.0

0 0 0 0 0 0

Peer AS InPkt OutPkt OutQ Flaps Last Up/Dwn State|#Active/Received/Accepted/Damped...

192.68.0.205 65000 509 508 0 0 1:06 Establ

inet.0: 0/0/0/0

inet.2: 0/0/0/0

bgp.l3vpn.0: 1528/1528/1528/0

L3VPN-1000.inet.0: 0/13/13/0

L3VPN-1001.inet.0: 5/5/5/0

L3VPN-1002.inet.0: 5/5/5/0

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