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Proof of Stake not only replicates the same dynamics that Bitcoin was designed to eliminate (more wealth -> more power in system) but also can only be made secu
by martindale 6y ago
Proof of Stake not only replicates the same dynamics that Bitcoin was designed to eliminate (more wealth -> more power in system) but also can only be made secure against a maximum of ⅓ byzantine actors, compared to Proof of Work's superior ½.
As for using it for Layer 1 systems, Andrew Poelstra nailed it in his conclusion [0]:
"We showed that by depending only on resources within the system, proof of stake cannot be used to form a distributed consensus, since it depends on the very history it is trying to form to enforce loss of value."
Proof of Stake might be useful at Layer 2 (becoming equivalent to voting stock in a company), but not as a base-layer consensus mechanism.
[0]: https://download.wpsoftware.net/bitcoin/pos.pdf https://download.wpsoftware.net/bitcoin/pos.pdf
- gvhst 6y agoNot sure if you are claiming that BTC currently solves the "more wealth -> more power in system" problem but it clearly doesn't. The current state of affairs is more wealth -> more ASICS R&D and infrastructure budget -> more hash power -> more power in the system.
- splintercell 6y agoMatthew principle strikes again.
- Geee 6y agoThere's a difference. You can't physically centralize energy production. Local energy price will increase when more energy is used. This ensures that no one can get in a position of control. In PoS, it's possible to get > 50% ownership, and it's game over.
- wmf 6y agoIs 70% of Bitcoin mining still in China?
- latchkey 6y agoDoes it matter? As long as there is enough mining that isn't controlled by a single entity (mining in China isn't a single entity), then the network is secure.
- sp821543 6y agoAren't 65% of all bitcoin miners in China? Couldn't the CCP sabotage the network at any time? Say, a month before the launch of their digital currency? https://cbeci.org/mining_map https://cbeci.org/mining_map
- pmohun 6y agoThis specific visualization is limited to 37% of the hash power on the network. It's possible that it is a representative sample, but I don't think we can assume that.
- latchkey 6y agoEven better, it is limited to pools that primarily operate in China. I really wish someone would turn off that link. It is really awkwardly bad and mis-quoted a lot.
- T0Bi 6y agoWith proof of work you have economy of scale working in your favor. You'll get different deals on asic, power, server farms, etc. the more you buy. PoW by design leads to centralization and we can see it happening live with bitcoin mining. At least with proof of stake there's no economy of scale. Everyone can participate fairly easily.
- pjmorris 6y ago> You can't physically centralize energy production. But you can centralize ownership of energy production.
- gvhst 6y agoThat is true, but its easy to centralize private ASIC designs or in a more extreme case the underlying chip fabs. If TSMC wanted to control the Bitcoin network they'd have a fair shot given they have by far and away the best fabrication technology for high performance chips
- latchkey 6y agoYou hit the nail on the head. TSMC, Samsung and GlobalFoundries are the centralization points of all of mining because they produce the chips. Good thing they like money and they are global corporations.
- latchkey 6y agoThis doesn't work for ETH1, which is PoW, but memory hard, which ties the network to GPUs over ASICs due to the cost structure of producing ASICs. It is cheaper to buy an off the shelf GPU than it is to buy an ASIC. You also have to factor in the fact that the latest GPUs are not necessarily the best ROI. If you can get lower speed GPUs for a fraction of the cost, then your return on that is much faster. Of course, that is starting to change now that mining is becoming so profitable again. But regardless, you are still tied to GPUs, so anything you can get there is good.
- gruez 6y ago> It is cheaper to buy an off the shelf GPU than it is to buy an ASIC. Ahh I guess all the people making/buying ETH mining ASICs must be out of their minds then? First result I found: https://www.coindesk.com/linzhi-rollout-long-awaited-ethereum-miner-phoenix https://www.coindesk.com/linzhi-rollout-long-awaited-ethereu...
- latchkey 6y agoYou know how much that costs? I specifically mentioned ROI. If you did the research into that one, it also only has 4.4gigs of ram. It will also slow down (aka: zombie mode) starting early November 2021 once the DAG gets large enough. https://minerstat.com/dag-size-calculator https://minerstat.com/dag-size-calculator It takes about an hour of running it, just to start mining because the DAG generation takes so long. By the way, Linzhi only sells to large customers because they've taken so long to produce this thing (years now) that they don't have enough money to front the production run. They are also a super sketchy company. You should have seen the stuff they pulled during the ProgPoW debate. Disclosure: I'm a very very large GPU miner and I'm deeply involved in this business.
- martin1975 6y agowas this submitted to any crypto journals for peer review (CCS, Eurocrypt) or did the author arrive at this conclusion in isolation?
- regisg 6y agoOuroboros Genesis ? Yes : CCS 2018.
- Zaytion 6y agoThe linked paper was submitted to CRYPTO 2017 (https://link.springer.com/chapter/10.1007/978-3-319-63688-7_12 https://link.springer.com/chapter/10.1007/978-3-319-63688-7_...) The next paper Ouroboros Praos was submitted to EUROCRYPT 2018 (https://link.springer.com/chapter/10.1007/978-3-319-78375-8_3 https://link.springer.com/chapter/10.1007/978-3-319-78375-8_...) The next paper Ouroboros Genesis was submitted to CCS 2018 (https://dl.acm.org/doi/abs/10.1145/3243734.3243848 https://dl.acm.org/doi/abs/10.1145/3243734.3243848) I don't know about the papers after this that seem to be to other places or just eprints.
- dgellow 6y agoThe Ouroboros paper seems to say that it is 50% resistant. See the parts highlighted here and the additional comments in this forum thread: https://forum.cardano.org/t/is-cardano-51-attack-resistant/16578/4 https://forum.cardano.org/t/is-cardano-51-attack-resistant/1....
- RhodoGSA 6y agoCheck out Polkadot - They NPOS system works and not how you described.
- dane-pgp 6y agoI wasn't familiar with Polkadot, but this documentation page seems to be a good introduction to how its "Nominated Proof-of-Stake" system works: https://wiki.polkadot.network/docs/en/learn-staking https://wiki.polkadot.network/docs/en/learn-staking
- wmf 6y agoIt's true that PoS requires subjectivity to prevent long-range attacks, but everyone is already using subjectivity so this is not an additional constraint. (People say that, in theory, new users might not use subjectivity in PoW but this is not actually true in practice.)
- dane-pgp 6y ago> only be made secure against a maximum of ⅓ byzantine actors What is the threat model here, and in particular what is the outcome of a successful attack? For example, if the only "power in the system" the attacker has is the ability to prevent transactions from occurring, then the attacker is damaging the value of their own coins. The honest majority could, as a last resort, also decide to manually fork the currency to invalidate the attacker's coins. Assuming the ⅓ number is weighted by stake, the attacker is potentially risking billions of dollars in order to carry out this short-term attack. With that amount of money it would be cheaper to locate and destroy the major bitcoin mining farms.
- wmf 6y agoThere are concerns (or concern trolls) about an attacker buying old keys for almost nothing, trashing the chain, then profiting by shorting. And there are concerns that the honest majority can't figure out how to switch to the honest fork.
- regisg 6y agoThat's why there are KES keys.
- wmf 6y agoFor people like me who haven't heard of this feature: https://docs.cardano.org/projects/cardano-node/en/latest/stake-pool-operations/KES_period.html https://docs.cardano.org/projects/cardano-node/en/latest/sta... It's true that this prevents an attacker from using current keys to perform a long-range attack but old keys can still be used for attacks.
- ilap 6y agoAfaik, long range attack is eliminated by bootstrapping from genesis, where the densest chain is selected.
- gruez 6y ago
- BluSyn 6y agoFundamentally Proof-of-Work relies on the laws of thermodynamics and mathematics to secure the network. Fundamentally Proof-of-Stake relies on a high-level abstract game theory of social interactions between selfish players. One of these is not like the other.
- wmf 6y agoYep, one's destroying the planet and the other isn't.
- endgame 6y agowmf's snarky comment aside, I think there is something important here. What's the big markets story this week and last? A bunch of people intentionally acting "irrationally" fuelled by their spite. How much "smash the system" energy can PoS systems accept?
- jude- 6y agoNo distributed consensus algorithm can tolerate more than f faults with 3f+1 replicas and maintain liveness. This includes Bitcoin (replace "replicas" with "hashes per unit time").
- vbuterin 6y agoThere's a couple things wrong here: > Proof of Stake not only replicates the same dynamics that Bitcoin was designed to eliminate (more wealth -> more power in system) There is no legitimate sense in which PoS _is_ an instance of "rich have more power and get richer" but PoW is not. In fact, PoW is _worse_ than PoS in this regard, because PoW has economies of scale (if someone with a $100k investment earns $10k/year, someone with a $100m investment can earn significantly more than $10m/year). PoS on the other hand is much closer to a clean "what you earn is proportional to what you put in" design, which is realistically the best that you can do in an anonymous system where users can generate as many independent identities as they want. > can only be made secure against a maximum of ⅓ byzantine actors, compared to Proof of Work's superior ½. This is also not true. The 1/3 bound is for safety-under-asynchrony (a form of safety for which PoW's security margin is zero). If you assume synchrony, then PoS protocols' safety approaches 50% much like PoW does. Protocols like Casper FFG combine the "best of both worlds", giving you both of those security guarantees (50% BFT if the network is good, 33% BFT if the network is terrible) at the same time.
- jude- 6y ago> There is no legitimate sense in which PoS _is_ an instance of "rich have more power and get richer" but PoW is not. In PoW, miners must sell their tokens to buy capital-intensive mining equipment and power to stay competitive. In PoS, stakers have no incentive to sell enough tokens to anyone who could turn around and stake them as a competitor, since that would cut into the seller's future staking rewards. > The 1/3 bound is for safety-under-asynchrony (a form of safety for which PoW's security margin is zero). If you assume synchrony, then PoS protocols' safety approaches 50% much like PoW does. First, consensus protocols can be trivially safe regardless of the network's behavior -- you simply require a majority vote for any proposed agreement. Second, any consensus protocol can only remain live as long as there are no more than f faults out of 3f+1 replicas. This is again irrespective of the network model -- Leslie Lamport's proofs do not make any assumptions about the network.
- vbuterin 6y ago> Second, any consensus protocol can only remain live as long as there are no more than f faults out of 3f+1 replicas. This is again irrespective of the network model We actually know of consensus protocols that require synchrony including between participants and clients that go up to 99% fault tolerance for both liveness and safety; in fact Lamport himself described one in his original paper (remember that it's "written messages" and not "oral messages" in his vocab that's the relevant category; these days public key cryptography is cheap and uncontroversial so there's no need to care about the "oral" case). There's also a table on page 291 in the 1988 DLS paper (see https://groups.csail.mit.edu/tds/papers/Lynch/jacm88.pdf https://groups.csail.mit.edu/tds/papers/Lynch/jacm88.pdf, the "authenticated byzantine" row and the "synchronous" column) that gives an overview of the fault tolerance levels in various different cases. The original definition of consensus did not have a notion of passive clients needing to learn the result, so the "active participants synchronous, passive clients asynchronous" model common in blockchain land was not really analyzed well back then. It turns out that with a synchronous network, the passive client requirement is what brings safety and liveness down from 99% to 50%. And it also happens that the 50% fault tolerance protocols are less fragile in the case that the synchrony assumption breaks temporarily.
- ilap 6y agoWhat is your point? One wrote something 5-years ago, when Ouroborus was not even invented at all, does it mean is it still hold? Or do you want to believe that's still true because it would be very inconvenient to your biases (we all have our own biases) otherwise? Sorry, I really did not want to be rude, just tried to find out whether you're trying to seek for the truth or just want to be right.
- dimkarakostas 6y ago> Proof of Stake not only replicates the same dynamics that Bitcoin was designed to eliminate (more wealth -> more power in system) Bitcoin may have been _aimed_ at eliminating the "rich get richer" system, but in fact it failed at it, as others comment below. It has been formally shown [1] that investors who have enough money to buy the most efficient ASICs out there earn disproportionately more, compared to smaller investors who can only afford less efficient ASICs/GPUs; in contrast, in PoS every investor has a fixed ROI for each one of their $ (regardless of their total investment); as also shown in that paper, this is the best you can hope for in an anonymous system. In other words, unless you can authenticate users and distribute rewards in a democratic (and possibly egalitarian) manner, the rich will always get richer, and the rate with which this happens is actually worse in PoW than PoS. [1] https://arxiv.org/pdf/1907.02434.pdf https://arxiv.org/pdf/1907.02434.pdf