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README.md
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README.md
@@ -21,17 +21,18 @@ The key features of Glorytun come directly from mud:
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* **Fast and highly secure**
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The use of UDP and libsodium allows you to secure your communications without impacting performance.
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Glorytun uses AEGIS-256 (a new and very fast AEAD construction) only if AES-NI is available otherwise ChaCha20-Poly1305 is used.
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Glorytun uses a new and very fast AEAD construction called AEGIS-256 if AES-NI is available otherwise ChaCha20-Poly1305 is used.
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Of course, you can force the use of ChaCha20-Poly1305 for higher security.
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All messages are encrypted, authenticated and timestamped to mitigate a large set of attacks.
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This implies that the client and the server must be synchronized, an offset of 10min is accepted by default.
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Perfect forward secrecy is also implemented with ECDH over Curve25519. Keys are rotated every hours.
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* **Multipath and active failover**
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Connectivity is now crucial, especially in the SD-WAN world.
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This feature allows a TCP connection (and all other protocols) to explore and exploit all available links without being disconnected.
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Aggregation should work on all conventional links, only very high latency (+500ms) links are not recommended for now.
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Aggregation should work on all conventional links.
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Only very high latency (+500ms) links are not recommended for now.
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* **Traffic shaping**
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@@ -46,13 +47,6 @@ The key features of Glorytun come directly from mud:
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It doesn't rely on Next-hop MTU to avoid ICMP black holes.
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In asymmetric situations the minimum MTU is selected.
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## Caveats
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Glorytun is strongly secure by default and protects against replay attacks,
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the clock between the client and the server must be synchronized.
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By default, an offset of 10min is accepted.
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---
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For feature requests and bug reports, please create an [issue](https://github.com/angt/glorytun/issues).
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Reference in New Issue
Block a user