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		<title>DIA Multi-Randomness Live On Astar Network</title>
		<link>https://smartliquidity.info/2022/08/06/dia-multi-randomness/</link>
		
		<dc:creator><![CDATA[Ana Marie]]></dc:creator>
		<pubDate>Sat, 06 Aug 2022 12:44:11 +0000</pubDate>
				<category><![CDATA[Polkadot News]]></category>
		<category><![CDATA[#Astar]]></category>
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		<category><![CDATA[DIA]]></category>
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					<description><![CDATA[<p>DIA Multi-Randomness: Distributed Multi-chain Randomness Oracle The DIA Multi-Randomness, in collaboration with drand, provides smart contracts with unpredictable and unbiased random numbers, facilitating the development of Web3 use cases across multiple blockchains. DIA Multi-Randomness Demo Oracles Astar Network: 0xBF5E…6103 Aurora: ​0x9055…4b22​ Aurora Testnet: ​0x8A81…7bA2​ Moonbeam Alpha: ​0x48d3….6cec​ Moonbeam: ​0xa052…5767​ Polygon: ​0xa9c0…2895​ Polygon Mumbai: ​0xb0dd…e87f​ Overview Unpredictable [&#8230;]</p>
<p>The post <a href="https://smartliquidity.info/2022/08/06/dia-multi-randomness/">DIA Multi-Randomness Live On Astar Network</a> appeared first on <a href="https://smartliquidity.info">Smart Liquidity Research</a>.</p>
]]></description>
										<content:encoded><![CDATA[<h3 id="b1b2" class="pw-post-title ix iy iz bn ja jb jc jd je jf jg jh ji jj jk jl jm jn jo jp jq jr js jt ju jv gb" style="text-align: center;"><em><strong class="ba"><span style="color: #00ccff;">DIA</span> Multi-Randomness: Distributed Multi-chain Randomness Oracle</strong></em></h3>
<p id="0ed6" class="pw-subtitle-paragraph jw iy iz bn b jx jy jz ka kb kc kd ke kf kg kh ki kj kk kl km kn co">The <a href="https://diadata.org/"><strong><span style="color: #00ccff;">DIA</span> </strong></a>Multi-Randomness, in collaboration with drand, provides smart contracts with unpredictable and unbiased random numbers, facilitating the development of Web3 use cases across multiple blockchains.</p>
<h2 id="1c91" class="la lb iz bn lc ld le lf lg lh li lj lk ll lm ln lo lp lq lr ls lt lu lv lw lx gb" data-selectable-paragraph=""><strong>DIA Multi-Randomness Demo Oracles</strong></h2>
<ul class="">
<li id="f21a" class="ly lz iz ma b mb mc md me ll mf lp mg lt mh mi mj mk ml mm gb" data-selectable-paragraph=""><strong class="ma ja">Astar Network:</strong> <a class="au mn" href="https://blockscout.com/astar/address/0xBF5E8A605b45d1583F0d45BBb1eE1e48ff076103/transactions?block_number=1249169&amp;id=0xBF5E8A605b45d1583F0d45BBb1eE1e48ff076103&amp;index=1&amp;items_count=100#address-tabs" target="_blank" rel="noopener ugc nofollow">0xBF5E…6103</a></li>
<li id="56f4" class="ly lz iz ma b mb mo md mp ll mq lp mr lt ms mi mj mk ml mm gb" data-selectable-paragraph=""><strong class="ma ja">Aurora</strong>: ​<a class="au mn" href="https://explorer.mainnet.aurora.dev/address/0x905506f6dA815e73CA13547B45d1998867104b22/transactions" target="_blank" rel="noopener ugc nofollow">0x9055…4b22</a>​</li>
<li id="ce5b" class="ly lz iz ma b mb mo md mp ll mq lp mr lt ms mi mj mk ml mm gb" data-selectable-paragraph=""><strong class="ma ja">Aurora Testnet</strong>: ​<a class="au mn" href="https://explorer.testnet.aurora.dev/address/0x8A81965D4c6D92DCbBd537A178c7C29Dc1C37bA2/transactions" target="_blank" rel="noopener ugc nofollow">0x8A81…7bA2</a>​</li>
<li id="3613" class="ly lz iz ma b mb mo md mp ll mq lp mr lt ms mi mj mk ml mm gb" data-selectable-paragraph=""><strong class="ma ja">Moonbeam Alpha</strong>: ​<a class="au mn" href="https://moonbase.moonscan.io/address/0x48d351ab7f8646239bbade95c3cc6de3ef4a6cec" target="_blank" rel="noopener ugc nofollow">0x48d3….6cec</a>​</li>
<li id="554a" class="ly lz iz ma b mb mo md mp ll mq lp mr lt ms mi mj mk ml mm gb" data-selectable-paragraph=""><strong class="ma ja">Moonbeam</strong>: ​<a class="au mn" href="https://moonscan.io/address/0xa0521112f11e59fbef643424bc9a8639ab1f5767" target="_blank" rel="noopener ugc nofollow">0xa052…5767</a>​</li>
<li id="bf90" class="ly lz iz ma b mb mo md mp ll mq lp mr lt ms mi mj mk ml mm gb" data-selectable-paragraph=""><strong class="ma ja">Polygon</strong>: ​<a class="au mn" href="https://polygonscan.com/address/0xa9c0e6cc01e0be4c44b729806d56f1c3bad02895" target="_blank" rel="noopener ugc nofollow">0xa9c0…2895</a>​</li>
<li id="f386" class="ly lz iz ma b mb mo md mp ll mq lp mr lt ms mi mj mk ml mm gb" data-selectable-paragraph=""><strong class="ma ja">Polygon Mumbai</strong>: ​<a class="au mn" href="https://mumbai.polygonscan.com/address/0xb0ddfe834e2006050fa500d661ac01464f05e87f" target="_blank" rel="noopener ugc nofollow">0xb0dd…e87f</a>​</li>
</ul>
<h2 id="5e28" class="nj lb iz bn lc nk nl nm lg nn no np lk kf nq kg lo ki nr kj ls kl ns km lw nt gb"><strong class="ba">Overview</strong></h2>
<p id="6892" class="pw-post-body-paragraph mt mu iz ma b mb mc ka mw md me kd my ll nu na nb lp nv nd ne lt nw ng nh mi is gb" data-selectable-paragraph="">Unpredictable random number generation has become an essential building block for Web3. Decentralised applications, ranging from Web3 games to NFT collections or prediction markets, rely on random numbers to operate. For instance, a random number can grant a game with a lottery mechanism to reward players fairly or provide unpredictable attributes to a collection of NFT artworks.</p>
<p id="34ae" class="pw-post-body-paragraph mt mu iz ma b mb mv ka mw md mx kd my ll mz na nb lp nc nd ne lt nf ng nh mi is gb" data-selectable-paragraph="">Providing a source of randomness on-chain is a difficult task due to two main aspects. On one hand, it is very difficult to create random events on-chain <a class="au mn" href="https://ethereum.org/en/developers/docs/evm/#the-ethereum-state-transition-function" target="_blank" rel="noopener ugc nofollow">due to the deterministic nature of any EVM environment</a>. On the other hand, if the random number generation comes from a centralized source. Malicious actors can manipulate the randomness from the source, &amp; provoke irreversible damage to protocols &amp; users.</p>
<p id="de2e" class="pw-post-body-paragraph mt mu iz ma b mb mv ka mw md mx kd my ll mz na nb lp nc nd ne lt nf ng nh mi is gb" data-selectable-paragraph="">In order to effectively serve the needs of Web3 applications, random number generation must be tamper-proof, distributed, publicly verifiable and available on multiple blockchain networks.</p>
<h2 id="c0fd" class="nj lb iz bn lc nk nl nm lg nn no np lk kf nq kg lo ki nr kj ls kl ns km lw nt gb"><strong class="ba">Introducing DIA Multi-Randomness</strong></h2>
<p id="c1bd" class="pw-post-body-paragraph mt mu iz ma b mb mc ka mw md me kd my ll nu na nb lp nv nd ne lt nw ng nh mi is gb" data-selectable-paragraph="">They are delighted to present new addition to the DIA oracle suite: DIA Multi-Randomness. Verifiable and distributed multi-chain randomness oracle. In close collaboration with <a class="au mn" href="https://drand.love/" target="_blank" rel="noopener ugc nofollow">drand</a>, DIA Multi-Randomness will provide dApps with an auditable random number via oracle smart contract, available in 20+ L1s and L2s.</p>
<h3 id="71a8" class="pw-post-body-paragraph mt mu iz ma b mb mv ka mw md mx kd my ll mz na nb lp nc nd ne lt nf ng nh mi is gb"><strong>DIA Multi-Randomness tackles essential Web3 development needs:</strong></h3>
<ul class="">
<li id="b9c4" class="ly lz iz ma b mb mv md mx ll nx lp ny lt nz mi mj mk ml mm gb" data-selectable-paragraph=""><strong class="ma ja">Multi-chain compatibility:</strong> DIA’s Multi-Randomness can be easily deployed in all EVM-compatible networks served by DIA including Astar, Arbitrum, Fantom and many more.</li>
<li id="4d7f" class="ly lz iz ma b mb mo md mp ll mq lp mr lt ms mi mj mk ml mm gb" data-selectable-paragraph=""><strong class="ma ja">Verifiable randomness</strong>: all random values provided by DIA are verifiable off-chain, before becoming available to consuming smart contracts and hence, the oracle is not capable of manipulating the generated result.</li>
<li id="2665" class="ly lz iz ma b mb mo md mp ll mq lp mr lt ms mi mj mk ml mm gb" data-selectable-paragraph=""><strong class="ma ja">Distributed and decentralised:</strong> DIA’s Multi-Randomness leverages <a class="au mn" href="https://drand.love/" target="_blank" rel="noopener ugc nofollow">drand</a>, a distributed beacon generated by a network of participants named <a class="au mn" href="https://blog.cloudflare.com/league-of-entropy/" target="_blank" rel="noopener ugc nofollow">the League of Entropy</a> — LoE. As drand not singularly controlled by any of its members, there is no single point of failure and none of the operators themselves can bias the randomness generated by the League.</li>
<li id="c8c8" class="ly lz iz ma b mb mo md mp ll mq lp mr lt ms mi mj mk ml mm gb" data-selectable-paragraph=""><strong class="ma ja">Power your on-chain use cases</strong>: DIA’s Multi-Randomness can support a wide range of Web3 use cases including gaming, lotteries, prediction markets, NFT launches and many more.</li>
</ul>
<h2 id="f0b5" class="nj lb iz bn lc nk nl nm lg nn no np lk kf nq kg lo ki nr kj ls kl ns km lw nt gb"><strong class="ba">How Does it Work?</strong></h2>
<p id="e314" class="pw-post-body-paragraph mt mu iz ma b mb mc ka mw md me kd my ll nu na nb lp nv nd ne lt nw ng nh mi is gb" data-selectable-paragraph="">To offer distributed and verifiable randomness on-chain, DIA leverages <a class="au mn" href="https://drand.love/" target="_blank" rel="noopener ugc nofollow">drand</a>’s distributed randomness beacon, enabling verifiable, unpredictable and unbiased random numbers. From random number generation to on-chain distribution, DIA Multi-Randomness operates as follows:</p>
<ol class="">
<li id="9279" class="ly lz iz ma b mb mv md mx ll nx lp ny lt nz mi oa mk ml mm gb" data-selectable-paragraph=""><strong class="ma ja">Drand randomness generation:</strong> in every drand epoch (currently set at 30s for the existing LoE beacons, but <a class="au mn" href="https://drand.love/blog/2022/02/21/multi-frequency-support-and-timelock-encryption-capabilities/" target="_blank" rel="noopener ugc nofollow">planned to be decreased</a> on future “unchained” beacons) each of the nodes that form the drand network generates a partial signature, which it broadcasts to the rest of the nodes. Once any node has enough, a threshold number of signatures. It computes the new randomness beacon, which is the hash of the signature aggregate.</li>
<li id="1dc9" class="ly lz iz ma b mb mo md mp ll mq lp mr lt ms mi oa mk ml mm gb" data-selectable-paragraph=""><strong class="ma ja">Drand randomness propagation and consumption</strong>: the new beacon is propagated through the network to all other nodes. Any node can verify and accept or reject the hash of the signature (i.e., beacon) that it received. Any client or application can consume randomness out of band (i.e., without needing to be part of the drand network) either through <a class="au mn" href="https://drand.love/developer/http-api/" target="_blank" rel="noopener ugc nofollow">the public HTTP APIs</a> or through <a class="au mn" href="https://drand.love/developer/gossipsub/#public-endpoints" target="_blank" rel="noopener ugc nofollow">libp2p’s pubsub protocol</a>, Gossipsub. Clients can also verify that the randomness they receive indeed the one produce by the drand network.</li>
<li id="94f4" class="ly lz iz ma b mb mo md mp ll mq lp mr lt ms mi oa mk ml mm gb" data-selectable-paragraph=""><strong class="ma ja">DIA on-chain distribution:</strong> the final randomness signature is shipped on-chain as an oracle smart contract. In order to effectively and securely execute these on-chain transactions, DIA has built a robust. Decentralized node infrastructure — dubbed DIA xNode. DIA xNode is a network of third-party, decentralized node providers that grant DIA the blockchain infrastructure to push data on-chain ensuring high rate limits.</li>
</ol>
<h2 id="a835" class="nj lb iz bn lc nk nl nm lg nn no np lk kf nq kg lo ki nr kj ls kl ns km lw nt gb"><strong class="ba">Powering on-chain use cases</strong></h2>
<p id="098b" class="pw-post-body-paragraph mt mu iz ma b mb mc ka mw md me kd my ll nu na nb lp nv nd ne lt nw ng nh mi is gb" data-selectable-paragraph="">DIA’s Multi-Randomness can support a wide range of Web3 use cases, such as:</p>
<ul class="">
<li id="12ef" class="ly lz iz ma b mb mv md mx ll nx lp ny lt nz mi mj mk ml mm gb" data-selectable-paragraph=""><strong class="ma ja">On-chain lottery:</strong> due to the deterministic nature of blockchains, decentralised applications require trustless and tamper-proof on-chain random numbers to execute lotteries.</li>
<li id="fa7f" class="ly lz iz ma b mb mo md mp ll mq lp mr lt ms mi mj mk ml mm gb" data-selectable-paragraph=""><strong class="ma ja">Randomized NFTs</strong>: a random number can enable the randomised assignment of characteristics and attributes for non-fungible tokens</li>
<li id="0c5a" class="ly lz iz ma b mb mo md mp ll mq lp mr lt ms mi mj mk ml mm gb" data-selectable-paragraph=""><strong class="ma ja">On-chain gaming</strong>: DIA’s multi-randomness can be used to generate unpredictable scenarios and rewards, creating engaging experiences for on-chain games.</li>
</ul>
<h3 id="d126" class="md me ix bn mf mg mh mi mj mk ml mm mn kd mo ke mp kg mq kh mr kj ms kk mt mu gb"><strong>About DIA</strong></h3>
<p id="b45c" class="pw-post-body-paragraph kz la ix lb b lc mv jy le lf mw kb lh li mx lk ll lm my lo lp lq mz ls lt lu iq gb" data-selectable-paragraph="">DIA a multi-chain, end-to-end, open-source data and oracle platform for Web3. The DIA platform enables the sourcing, validation and sharing of transparent. And verified data feeds for traditional and digital financial applications. DIA’s institutional-grade data feeds cover digital asset prices, NFT floor prices, lending rates, FX rates and more.</p>
<p id="5c2b" class="pw-post-body-paragraph kz la ix lb b lc ld jy le lf lg kb lh li lj lk ll lm ln lo lp lq lr ls lt lu iq gb" data-selectable-paragraph="">DIA’s data directly source from a broad array of on-chain and off-chain sources at individual trade-level.</p>
<p data-selectable-paragraph=""><span style="color: #00ccff;"><a class="au lv" style="color: #00ccff;" href="https://diadata.org/" target="_blank" rel="noopener ugc nofollow"><strong class="lb iy">Website</strong></a></span><strong class="lb iy"><span style="color: #00ccff;"> </span>|</strong><span style="color: #00ccff;"><a class="au lv" style="color: #00ccff;" href="https://twitter.com/DIAdata_org" target="_blank" rel="noopener ugc nofollow"><strong class="lb iy">Twitter</strong></a> </span>|</p>
<p><span style="color: #00ccff;"><a style="color: #00ccff;" href="https://medium.com/stafi/stafihub-genesis-validator-on-mainnet-stakelab-57b6340503f3"><strong>Source</strong></a></span></p>
<h4><span style="color: #ffff00;"><a style="color: #ffff00;" href="https://docs.google.com/forms/d/e/1FAIpQLSdACnREL_I_9ZxTj4-6Xu6_kwmIAg4KZmnNHOyn0sIttl2zZw/viewform"><strong>REQUEST AN ARTICLE</strong></a></span></h4>
<p>The post <a href="https://smartliquidity.info/2022/08/06/dia-multi-randomness/">DIA Multi-Randomness Live On Astar Network</a> appeared first on <a href="https://smartliquidity.info">Smart Liquidity Research</a>.</p>
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