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Change Dandelion++ fluff probability to 20%, and embargo timeout to 39s
A 20% fluff probability increases the precision of a spy connected to every node by 10% on average, compared to a network using 0% fluff probability. The current value (10% fluff) should increase precision by ~5% compared to baseline. This decreases the expected stem length from 10 to 5. The embargo timeout was therefore lowered to 39s; the fifth node in a stem is expected to have a 90% chance of being the first to timeout, which is the same probability we currently have with an expected stem length of 10 nodes.
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@ -102,11 +102,11 @@
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#define CRYPTONOTE_DANDELIONPP_STEMS 2 // number of outgoing stem connections per epoch
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#define CRYPTONOTE_DANDELIONPP_FLUFF_PROBABILITY 10 // out of 100
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#define CRYPTONOTE_DANDELIONPP_FLUFF_PROBABILITY 20 // out of 100
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#define CRYPTONOTE_DANDELIONPP_MIN_EPOCH 10 // minutes
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#define CRYPTONOTE_DANDELIONPP_EPOCH_RANGE 30 // seconds
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#define CRYPTONOTE_DANDELIONPP_FLUSH_AVERAGE 5 // seconds average for poisson distributed fluff flush
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#define CRYPTONOTE_DANDELIONPP_EMBARGO_AVERAGE 173 // seconds (see tx_pool.cpp for more info)
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#define CRYPTONOTE_DANDELIONPP_EMBARGO_AVERAGE 39 // seconds (see tx_pool.cpp for more info)
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// see src/cryptonote_protocol/levin_notify.cpp
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#define CRYPTONOTE_NOISE_MIN_EPOCH 5 // minutes
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@ -75,11 +75,11 @@ namespace cryptonote
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not ideal since a blackhole is more likely to reveal earlier nodes in
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the chain.
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This value was calculated with k=10, ep=0.10, and hop = 175 ms. A
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This value was calculated with k=5, ep=0.10, and hop = 175 ms. A
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testrun from a recent Intel laptop took ~80ms to
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receive+parse+proces+send transaction. At least 50ms will be added to
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the latency if crossing an ocean. So 175ms is the fudge factor for
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a single hop with 173s being the embargo timer. */
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a single hop with 39s being the embargo timer. */
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constexpr const std::chrono::seconds dandelionpp_embargo_average{CRYPTONOTE_DANDELIONPP_EMBARGO_AVERAGE};
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//TODO: constants such as these should at least be in the header,
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