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153 lines
3.8 KiB
Plaintext
153 lines
3.8 KiB
Plaintext
DHT messages
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DHT messages can be either wrapped in a LIDM message or sent anonymously over a path inside a DHT routing message
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The distance function is A xor B (traditional kademlia)
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The dht implements both iterative and recursive lookups.
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Recursive lookups forward the request to a node closer if not found.
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Iterative lookups return the key and of the DHT node who is closer.
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In the case of iterative FRCM the RC of the closer router is provided.
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In the case of iterative FIM the pubkey of a dht node who is closer is provided in the GIM.
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find introduction message (FIM)
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variant 1: find an IS by SA
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{
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A: "F",
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R: 0 for iterative and 1 for recurisve,
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S: "<32 bytes SA>",
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T: transaction_id_uint64,
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V: 0
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}
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variant 2: recursively find many IS in a tag
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{
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A: "F",
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E: [list, of, excluded, SA],
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R: 0 for iterative and 1 for recurisve,
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N: "<16 bytes topic tag>",
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T: transaction_id_uint64,
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V: 0
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}
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exclude adding service addresses in E if present
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got introduction message (GIM)
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sent in reply to FIM containing the result of the search
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sent in reply to PIM to acknoledge the publishing of an IS
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{
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A: "G",
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I: [IS, IS, IS, ...],
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K: "<32 bytes public key of router who is closer, provided ONLY if FIM.R is 0>",
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T: transaction_id_uint64,
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V: 0,
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}
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The I value MUST NOT contain more than 4 IS.
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The I value MUST contain either 1 or 0 IS for PIM and FIM variant 1.
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publish introduction message (PIM)
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publish one IS to the DHT.
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version 0 uses the SA of the IS as the keyspace location.
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in the future the location will be determined by the dht kdf
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which uses a shared random source to obfuscate keyspace location.
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R is currently set to 0 by the sender.
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{
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A: "I",
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I: IS,
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R: random_walk_counter,
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S: optional member 0 for immediate store otherwise non zero,
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T: transaction_id_uint64,
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V: 0
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}
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if R is greater than 0, decrement R and forward the request to a random DHT
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node without storing the IS.
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As of protocol version 0, R is always 0.
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If S is provided store the IS for later lookup unconditionally, then
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decrement S by 1 and forward to dht peer who is next closest to
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the SA of the IS. If S is greater than 3, don't store the IS and
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discard this message.
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acknoledge introduction message (AIM)
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acknoledge the publishing of an introduction
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{
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A: "A",
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P: published_to_counter,
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T: transaction_id_uint64,
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V: 0
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}
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increment P by 1 and forward to requester
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find router contact message (FRCM)
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find a router by long term RC.k public key
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{
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A: "R",
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E: 0 or 1 if exploritory lookup,
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I: 0 or 1 if iterative lookup,
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K: "<32 byte public key of router>",
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T: transaction_id_uint64,
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V: 0
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}
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if E is provided and non zero then return E dht nodes that are closest to K
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if I is provided and non zero then this request is considered an iterative lookup
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during an iterative lookup the response's GRCM.K is set to the pubkey of the router closer in key space.
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during a recursive lookup the request is forwarded to a router who is closer in
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keyspace to K.
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If we have no peers that are closer to K and we don't have the RC known locally
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we reply with a GRCM whose R value is emtpy.
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In any case if we have a locally known RC with pubkey equal to K reply with
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a GRCM with 1 RC in the R value corrisponding to that locally known RC.
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got router contact message (GRCM)
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R is a list containing a single RC if found or is an empty list if not found
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sent in reply to FRCM only
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{
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A: "S",
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K: "<32 bytes public identity key of router closer, provided ONLY if FRCM.I is 1>",
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R: [RC],
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T: transaction_id_uint64,
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V: 0
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}
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in response to an exploritory router lookup, where FRCM.E is provided and non zero.
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{
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A: "S",
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N: [list, of, router, publickeys, near, K],
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T: transaction_id_uint64,
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V: 0
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}
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sent in reply to a dht request to indicate transaction timeout
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{
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A: "T",
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T: transaction_id_uint64,
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V: 0
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} |