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authorChristian Poessinger <christian@poessinger.com>2019-07-08 21:48:09 +0200
committerGitHub <noreply@github.com>2019-07-08 21:48:09 +0200
commit8026a9ecec339d7210375a41a408facfe915f81c (patch)
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parentf6dad581d54b1f3b1d2647eea429d4ad0f0570af (diff)
downloadvyos-documentation-8026a9ecec339d7210375a41a408facfe915f81c.tar.gz
vyos-documentation-8026a9ecec339d7210375a41a408facfe915f81c.zip
GRE: make GRE occurance uppercase
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-rw-r--r--docs/vpn/gre-ipsec.rst4
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diff --git a/docs/vpn/gre-ipsec.rst b/docs/vpn/gre-ipsec.rst
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.. _gre-ipsec:
-Gre/IPsec
+GRE/IPsec
---------
-**GRE/IPsec** (or IPIP/IPsec, SIT/IPsec, or any other stateless tunnel protocol over IPsec) is the usual way to protect the traffic inside a tunnel.
+Generic Routing Encapsulation (GRE), GRE/IPsec (or IPIP/IPsec, SIT/IPsec, or any other stateless tunnel protocol over IPsec) is the usual way to protect the traffic inside a tunnel.
An advantage of this scheme is that you get a real interface with its own address, which makes it easier to setup static routes or use dynamic routing protocols without having to modify IPsec policies. The other advantage is that it greatly simplifies router to router communication, which can be tricky with plain IPsec because the external outgoing address of the router usually doesn't match the IPsec policy of typical site-to-site setup and you need to add special configuration for it, or adjust the source address for outgoing traffic of your applications. GRE/IPsec has no such problem and is completely transparent for the applications.