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Prevent answering path requests on roaming-mode interfaces for next-hop instances on same roaming-mode interface
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@ -2046,41 +2046,45 @@ class Transport:
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packet = Transport.destination_table[destination_hash][6]
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next_hop = Transport.destination_table[destination_hash][1]
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received_from = Transport.destination_table[destination_hash][5]
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if requestor_transport_id != None and next_hop == requestor_transport_id:
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# TODO: Find a bandwidth efficient way to invalidate our
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# known path on this signal. The obvious way of signing
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# path requests with transport instance keys is quite
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# inefficient. There is probably a better way. Doing
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# path invalidation here would decrease the network
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# convergence time. Maybe just drop it?
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RNS.log("Not answering path request for "+RNS.prettyhexrep(destination_hash)+interface_str+", since next hop is the requestor", RNS.LOG_DEBUG)
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if attached_interface.mode == RNS.Interfaces.Interface.Interface.MODE_ROAMING and attached_interface == received_from:
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RNS.log("Not answering path request on roaming-mode interface, since next hop is on same roaming-mode interface", RNS.LOG_DEBUG)
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else:
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RNS.log("Answering path request for "+RNS.prettyhexrep(destination_hash)+interface_str+", path is known", RNS.LOG_DEBUG)
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now = time.time()
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retries = Transport.PATHFINDER_R
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local_rebroadcasts = 0
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block_rebroadcasts = True
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announce_hops = packet.hops
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if is_from_local_client:
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retransmit_timeout = now
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if requestor_transport_id != None and next_hop == requestor_transport_id:
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# TODO: Find a bandwidth efficient way to invalidate our
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# known path on this signal. The obvious way of signing
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# path requests with transport instance keys is quite
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# inefficient. There is probably a better way. Doing
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# path invalidation here would decrease the network
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# convergence time. Maybe just drop it?
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RNS.log("Not answering path request for "+RNS.prettyhexrep(destination_hash)+interface_str+", since next hop is the requestor", RNS.LOG_DEBUG)
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else:
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# TODO: Look at this timing
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retransmit_timeout = now + Transport.PATH_REQUEST_GRACE # + (RNS.rand() * Transport.PATHFINDER_RW)
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RNS.log("Answering path request for "+RNS.prettyhexrep(destination_hash)+interface_str+", path is known", RNS.LOG_DEBUG)
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# This handles an edge case where a peer sends a past
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# request for a destination just after an announce for
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# said destination has arrived, but before it has been
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# rebroadcast locally. In such a case the actual announce
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# is temporarily held, and then reinserted when the path
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# request has been served to the peer.
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if packet.destination_hash in Transport.announce_table:
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held_entry = Transport.announce_table[packet.destination_hash]
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Transport.held_announces[packet.destination_hash] = held_entry
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Transport.announce_table[packet.destination_hash] = [now, retransmit_timeout, retries, received_from, announce_hops, packet, local_rebroadcasts, block_rebroadcasts, attached_interface]
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now = time.time()
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retries = Transport.PATHFINDER_R
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local_rebroadcasts = 0
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block_rebroadcasts = True
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announce_hops = packet.hops
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if is_from_local_client:
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retransmit_timeout = now
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else:
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# TODO: Look at this timing
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retransmit_timeout = now + Transport.PATH_REQUEST_GRACE # + (RNS.rand() * Transport.PATHFINDER_RW)
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# This handles an edge case where a peer sends a past
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# request for a destination just after an announce for
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# said destination has arrived, but before it has been
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# rebroadcast locally. In such a case the actual announce
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# is temporarily held, and then reinserted when the path
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# request has been served to the peer.
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if packet.destination_hash in Transport.announce_table:
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held_entry = Transport.announce_table[packet.destination_hash]
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Transport.held_announces[packet.destination_hash] = held_entry
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Transport.announce_table[packet.destination_hash] = [now, retransmit_timeout, retries, received_from, announce_hops, packet, local_rebroadcasts, block_rebroadcasts, attached_interface]
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elif is_from_local_client:
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# Forward path request on all interfaces
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