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Come up with a rendezvous INTRODUCE1 format that actually works for unknown rendezvous points. This will take some doing to implement
svn:r4464
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@ -253,7 +253,15 @@ $Id$
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g^x Diffie-Hellman data, part 1 [128 octets]
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g^x Diffie-Hellman data, part 1 [128 octets]
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OR
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OR
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VER Version byte: set to 1. [1 octet]
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VER Version byte: set to 1. [1 octet]
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RP [42 octets]
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RP Rendezvous point nick or ID [42 octets]
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RC Rendezvous cookie [20 octets]
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g^x Diffie-Hellman data, part 1 [128 octets]
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OR
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VER Version byte: set to 2. [1 octet]
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IP Rendezvous point's address [4 octets]
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PORT Rendezvous point's OR port [2 octets]
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ID Rendezvous point identity ID [20 octets]
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KEY Rendezvous point onion key [128 octets]
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RC Rendezvous cookie [20 octets]
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RC Rendezvous cookie [20 octets]
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g^x Diffie-Hellman data, part 1 [128 octets]
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g^x Diffie-Hellman data, part 1 [128 octets]
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@ -261,13 +269,14 @@ $Id$
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and must contain EITHER a nickname, or an identity key digest, encoded in
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and must contain EITHER a nickname, or an identity key digest, encoded in
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hex, and prefixed with a '$'.
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hex, and prefixed with a '$'.
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Implementations must accept both variants, but should only generate the
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Implementations must accept all variants, but should only generate the
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first so long as Tor 0.0.7 is in use.
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first so long as any version of Tor before 0.1.1 is still in use.
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Implementations should never generate the second version.
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The hybrid encryption to Bob's PK works just like the hybrid
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The hybrid encryption to Bob's PK works just like the hybrid
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encryption in CREATE cells (see main spec). Thus the payload of the
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encryption in CREATE cells (see main spec). Thus the payload of the
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RELAY_INTRODUCE1 cell on the wire will contain 20+42+16+20+20+128=246
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RELAY_INTRODUCE1 cell on the wire will contain 20+42+16+20+20+128=246
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bytes.
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bytes. [XXXX not really]
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1.9. Introduction: From the Introduction Point to Bob's OP
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1.9. Introduction: From the Introduction Point to Bob's OP
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