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Hating On Craig Wright Has Become Crypto's Feel-Good Uniting Force

Hating on craig wright has become crypto's feel-good uniting force

Hating On Craig Wright Has Become Crypto's Feel-Good Uniting Force

Hating on craig wright has become crypto's feel-good uniting force

Satoshi or not, it’s been a rough week for Craig Wright.

The man who rose to notoriety in 2016 by boldly claiming he was bitcoin’s creator is under fire from not just some of the industry’s most respected names, but the very people that have most embraced his shaky affirmation. Indeed, despite not offering any evidence to date to prove his claim, the Australian cryptographer and nChain founder had found a home among supporters of bitcoin cash.

From supportive T-shirts to displays of public support, Wright has developed a close association with the cryptocurrency that split from bitcoin and that is valued at $10 billion today.

Recently, though, he’s faced a round of backlash.

It all started earlier this week when ethereum creator Vitalik Buterin took the microphone at a Q&A session at the Deconomy conference in Seoul, South Korea. There, Buterin used the moment to attack Wright’s technical arguments issued onstage, highlighting a criticism levied by anyone and everyone respected in crypto since: that his technical commentary just doesn’t make sense.

“Given that he makes so many nonsensical claims, why is this fraud allowed to speak at this conference?” Buterin told the crowd to tumultuous applause.

Though some in the community have hurried to Wright’s defense, the backlash has only mounted.

“I wrote the lightning network whitepaper and I still didn’t understand your talk,” developer Joseph Poon, co-inventor of the lightning network, later shouted.

Miles away, litecoin creator Charlie Lee couldn’t help but join in.

“Craig S Wright’s talks and papers are filled with illogical technobabble and his Satoshi proof is fraudulent. He’s a fraud. Why give this guy a platform?” he said.

And with that, it seems, Buterin has started something of a movement.

Generally sympathetic to bitcoin cash’s approach to scaling, Cornell computer scientist Emin Gun Sirer perhaps summarized the general sentiment the best.

He said in a tweet:

“Right now, I have bitcoin, bitcoin cash, ethereum and zcash devs in my mentions, all roundly ridiculing Craig Wright’s technobabble. Cryptocurrencies have never been as united.”

Long-standing feud

The particular criticisms would go on to reignite a long-standing battle between Wright and Peter Rizun, a well-known bitcoin cash and aggressive bitcoin scaling advocate who has faced no shortage of criticism in the past for his views.

The technical feud started last summer when Rizun critiqued one of Wright’s white papers wherein he argued (with math) that an attack in bitcoin called “selfish mining” is not actually viable.

Rizun essentially replied, in detail, that his paper doesn’t make sense.

More recently, on March 25, Rizun – much like Vitalik – cornered Wright after a lecture, to argue his technical ideas related to unconfirmed transactions were not feasible. Rizun implied Wright’s ideas would lead to mining attacks.

Rizun and Wright have since taken the argument to Twitter, with Rizun going as far as to call Wright a “proven fraud.”

He’s not the only one. Sirer expanded upon Rizun’s critiques, arguing Wright has “repeatedly failed to grasp” selfish mining. (This is a notable claim since Sirer was one of the first to independently find the attack.)

Sirer went as far as to argue, “He is done. No one takes him seriously as a technical person,” before adding Wright hasn’t yet delivered on last year’s promise to release another bitcoin code.

This weariness of Wright now seems to be spreading to the rest of the community, even on forums that have been historically friendly to ideas he’s championed.

One Reddit user on the forum stated in a post: “I am now downvoting every post with Craig Wright’s face on it.

Inclusive community

Still, it’s worth noting many others in the community have come to Wright’s defense.

A popular argument is that, whether or not he is Satoshi, his high profile and allegedly well-capitalized startup have done a lot for certain cryptocurrencies like bitcoin cash.

“Regardless of whether he’s Satoshi or not, or whether he’s even right or wrong about various technical points, I think [it’s] unfair to accuse him of ‘fraud’ because claiming to be Satoshi (and then not proving) isn’t fraud,” Jonald Fyookball, who’s penned many critical essays for the community, argued.

“Also, giving away tons of money to various bitcoin cash endeavours doesn’t seem like fraud either,” Jonald continued.

His comments to back up Wright were met with a chorus of agreement.

That said, many other key members of the community have been quiet on the issue, or equivocal in whether they have a similar opinion of Wright. Still, with crypto enthusiasts never seeming to shy away from a debate, the comments can’t help but feel unique in context.

As Poon concluded on Twitter, this type of dispute is not normal in the technical community. Whereas fits of rage and public animosity may not exactly be rare (investor Roger Ver accused bitcoin’s developers of “killing babies” at the Seoul event), he argued that among the world’s top developers, respectful disagreements are tactfully embraced.

“The confrontation at the conference should not be seen as a normal response to disagreements in the crypto ecosystem,” he wrote, adding:

“It was an extremely strong response to extreme, intentional deception.”

Wolfie Zhao contributed reporting.

Craig S. Wright image via a BBC interview 

The leader in blockchain news, CoinDesk is a media outlet that strives for the highest journalistic standards and abides by a strict set of editorial policies. CoinDesk is an independent operating subsidiary of Digital Currency Group, which invests in cryptocurrencies and blockchain startups.

Published at Sat, 07 Apr 2018 10:15:39 +0000

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Op Ed: Three Technical Requirements to Connect Blockchains Without a Token

Op Ed: Three Technical Requirements to Connect Blockchains Without a Token

In my last post, I was talking about how connecting all blockchains is the final stepping stone for mass-crypto adoption. Here I want to outline the technical building blocks with which this idea can be implemented.

Since I see a lot of downsides to having one large uber-blockchain connecting all others, I will focus on a token-LESS solution. This would have several advantages:

  • No need for an additional token.

  • Users can “remain” on their blockchain.

  • No need to trust a centralized third party.

There are a couple of downsides to such an approach however. Since there is no uber-blockchain or a centralized party ensuring the connection, there needs to be enough liquidity between two blockchains to be connected. If I want to transfer funds from the Ethereum to the bitcoin blockchain, for example, I need someone who, at the same time, wants to go from bitcoin to ether. For these two large blockchains, you will always find someone willing to go in either direction, but what about from Ethereum to a smaller blockchain or a small blockchain to another small blockchain? While I will be laying out a way on how that could even be solved, I want to stress that liquidity is the key economic factor in such a cryptographically secure multi-asset network.

Basic Building Blocks

Let’s look at the three very basic building blocks that are needed to connect any two blockchains:

  1. Multisignature feature (Multisig);

  2. Hashing functionality; and

  3. Time-lock functionality

Let’s work through each of these three and combine them into a larger single picture.

1. Multisig is an old and well-trusted concept that can be compared to a shared checkbook with multiple required signatories. A multisig transaction allows for the enforcement of arbitrary joint signature rules. In the case of a cryptographically secure, off-chain, multi-asset, instant transaction network (COMIT) one would use 2-of-2 multisig transactions for which both signers have to sign a transaction to become valid and be accepted by the network (an example of this will follow right after). This means a multisig transaction established between two parties needs to be signed by both so that its outcome becomes valid and can be accepted by the network.

In the picture below, a transaction was created with 1 BTC as input; however, in order to get it out, both parties (Alice and Bob) have to sign the transaction:

 

2. Hash functions are standard cryptographic concepts. These are one-way functions to convert arbitrary data (in our case a secret “s”) into a unique hash “h.” This hash h can then be shared safely without anyone being able to compute the secret s used to create it. This allows us to build a hash-lock transaction which will only unlock the funds with the knowledge of the secret s. In order to route across different blockchains, we need the same cryptographic hash function available in the smart contracting language of each blockchain participating on such a route.

In the picture below, someone put 1 BTC into a contract, but Alice can only take it out once she has the secret (which she normally would get from Bob).

3. Time-lock is a simple requirement for funds to be locked up until a future date. Blockchains are found to have two different time-locks: relative and absolute. Absolute time-locks will lock a transaction output until a fixed point in time in the future, whereas relative time-locks will lock a transaction output relative to an event or a point in time. That is to say, a relative time-lock rather defines a time span than a specific point in time. Time-locks are a requirement for trustless payment channels, and relative time-locks are recommended as they allow for indefinitely open payment channels.

In the example below, someone put 1 BTC in, but in order for Alice to get it out, she has to wait a predefined time. 

Putting It Together 

If we go ahead and combine these three building blocks, we get something called HTLCs (Hashed Time-Lock Contracts) whose states can be updated on a multisig basis. HTLCs combine the concept of a time-lock for refund purposes with a hash-lock. If the recipient can provide the secret s for the hash-lock before the expiry of the time-lock, he will be able to retrieve the funds. Otherwise, the sender can safely reclaim the funds. In case one party wants to update the HTLCs state, he needs the other party’s approval (signature). This is how the multisig function comes into play.

In the example below, Alice put 1 BTC into the contract with Bob. Bob can either take the 1 BTC out if he gets the hash from Alice within a predefined time, or Alice will get the funds back automatically after that predefined time has past.

Two HTLCs can be coupled with each other resulting in something called atomic transactions. To do so, the recipient first generates a secret s and computes its hash h. Subsequently, the recipient will share this hash h with a sender who in turn creates the first conditional transaction, i.e., its output is (hash-)locked by h. This output can only be redeemed with the knowledge of the secret s.

In layman’s terms, this would mean that if Bob wants to send Alice 1 BTC and wants ETH in return, they could open two payment channels (one with BTC and the other with ETH) and couple them with a hash h. Bob sends Alice BTC as long as she sends him ETH. In case either one backs out, the original amounts would just be returned.

The Full Route 

Now we can stack an arbitrary amount of transactions onto each other as every node in this chain can safely use the same hash to create a transaction which is also conditional on knowing the secret s. This hash is initially shared with the sender, who will then subsequently send a conditional payment to the first node requiring knowledge of the secret s to redeem it. Each node in the route can then safely forward the transaction while adding the same condition to the transaction redemption. Through the use of HTLCs we can guarantee that either all of the transactions via this route get fulfilled or all payment channel transactions will be unredeemable. No trust has to be put in any of the nodes in the middle of the route. In the end, you have a chain of transactions which all depend on the same secret to be fulfilled. When the receiver takes the last transaction and uses the secret to redeem the money, every other node will see the secret that was used and can then fulfill their own incoming transaction.

After the secret s has been shared across the route, every payment channel will then settle the transaction back into the channel. This is done by updating the payment channel’s state to the final balances and then invalidating the HTLC transactions by revealing the invalidation key k to the payment channel counterparty, which will eventually make the transaction complete.

The time-lock mechanism is used as a refund mechanism in case of an intermittent routing failure. The time-locks need to be stacked from receiver to sender to make sure no one is able to cheat by having a shorter period than someone after him/her and thereby being able to pull out first.

Conclusion 

These transactions can span within the same blockchain, but can also go cross-chain as long as you find someone who is willing to transact on both blockchains. This is where the concept of liquidity and routing comes in. To go back to the beginning where we thought about connecting two low-liquidity blockchains we see now, that we actually don’t necessarily transact between those two directly. By using stacked payment channels one after the other, money could flow from one low liquidity chain to a high liquidity chain and then to the final low liquidity chain. 

This concept connects payment channels to a large network that is now:

  • Cryptographically-secure (relies on cryptographic standards),

  • Off-chain (like the Lightning- or Raiden-Network) ,

  • Multi-Asset (cross-chain),

  • Instant (no need for a transaction to settle on the blockchain as updates only happen between the parties until it gets broadcasted)

  • A Transaction Network, such as COMIT.

In the next blog post, I will talk about the concept of liquidity and Liquidity Providers (LP) and also on how routing through such a network could work.


This is a guest post by Dr. Julian Hosp, the co-founder of TenX and co-author of the whitepapers of TenX and COMIT. The views expressed are his alone and do not necessarily reflect those of bitcoin Magazine.

The post Op Ed: Three Technical Requirements to Connect Blockchains Without a Token appeared first on Bitcoin Magazine.

Who Created Ethereum?

Who Created Ethereum?

While working on a number of bitcoin projects, a 19-year-old programmer from Toronto, Vitalik Buterin, conceived the idea for Ethereum. Ethereum was intended to be a robust platform that allows developers to build blockchain applications. Buterin was inspired by some of the shortcomings he faced when trying to build applications on the bitcoin blockchain. He believed that the potential of blockchain technology was not limited to financial applications and quickly set out to create a blockchain that could support more common computations.

Vitalik Buterin was first introduced to bitcoin and cryptocurrencies in 2011. That same year he co-founded Bitcoin Magazine and wrote many articles explaining his views on the digital currency’s future. He later worked on Mastercoin and some alternate coins based on the bitcoin codebase. This work led him to believe the bitcoin blockchain was limited in scope.

The Ethereum white paper was released in 2013, and it documented a new open-source protocol for creating decentralized applications.   

Ethereum was officially announced on the Bitcointalk forum in 2014. In addition to Buterin, Ethereum was co-founded by Mihai Alisie, Anthony Di Iorio and Charles Hoskinson. Buterin also announced that he was working with developer Dr. Gavin Wood and Joseph Lubin. Wood soon released the Ethereum yellow paper, which covered the Ethereum Virtual Machine (EVM), the runtime environment that executes all of the smart contracts on the network. Lubin would go on to found ConsenSys, a venture studio focusing on decentralized applications.

The Ethereum Foundation held an ether crowdsale in July 2014 during which they sold 60 million tokens. 12 million ether (ETH) tokens were created so the Ethereum Foundation could expand its development and marketing efforts. The Frontier was the first release of the Ethereum network. It was released a year after the crowdsale and provided a bare-bones mechanism for developers to interact with and build apps on the network.  

Both the Ethereum network and community have grown substantially over the last year. The Ethereum Enterprise Alliance, an initiative working to connect the world’s largest companies to the Ethereum network, recently announced 86 new partners including Microsoft, Intel and BP. Similarly, a multitude of new blockchain projects leveraging the Ethereum blockchain have gained attention and capital.

Ethereum broke into the mainstream in early 2017 when the price of ETH increased by 1000 percent over the course of a couple months. This led to a similar rise in the price of alternative blockchain tokens, dubbed “altcoins.” A slew of new investors quickly entered the space as Ethereum was covered by large media outlets including CNBC, Reuters and Quartz. Investors and developers are awaiting the release of Metropolis, the next update to the Ethereum network promising to abstract a lot of functions and pave the way for user-friendly application designs.

The post Who Created Ethereum? appeared first on Bitcoin Magazine.