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On April 16, RSK Labs chief scientist Sergio DemiĂĄn Lerner published a new research study concerning the earliest blocks mined on the Bitcoin network. The report concerning one of Bitcoinâs earliest miners provides strong evidence to suggest that a single miner processed 22,000 blocks. Additionally, Lerner has released a new website called Satoshi Blocks that aims to help crypto enthusiasts visualize mining during the protocolâs earliest days.
Also read: Are You Ready for What Happens If Satoshiâs Coins Move?
New Data Stemming from Bitcoinâs Earliest Miners Hardens Prior Evidence
Years ago, independent researcher and cryptographer Sergio DemiĂĄn Lerner released one of the most in-depth studies concerning Bitcoinâs earliest mining periods. According to his first study published on April 17, 2013, the vast majority of the initial BTC mined was done by a single miner. Moreover, Lerner produced data sets from his blockchain analysis that tracked the extranonce fields within the coinbase field stemming from the coinbase transactions themselves. At the time Lerner estimated that the miner was able to gather precisely 1,814,400 BTC. In addition to this large number of mined coins, 63% of those coins, or 1.1 million, have never been spent since the day they were created.
Fast forward to six years later and Lerner has published another rigorous study that provides an even stronger argument that backs his prior claims. The latest paper, called âThe Return of the Deniers and the Revenge of Patoshi,â at first discusses Lernerâs original study and how he originally came to his previous conclusion. Lerner detailed how he found the information in the extranonce field and how certain flaws revealed information in a ânon-privacy preserving way.â
Lerner calls these patterns shown as blue lines the âPatoshi patternâ after identifying a single miner who accumulated about 1.1M bitcoins during 2009-2010. The Patoshi pattern (blue) and other miner patterns (green). The data can be visualized on Lernerâs new website Satoshiblocks.info.
Lernerâs paper then discusses the single miner who has been dubbed âPatoshiâ and describes how he was able to find the minerâs pattern. Lerner explains how a few people have accepted the existence of the Patoshi pattern, a few years on, yet believe multiple miners may have been synchronized or there was some form of an early mining pool in place since the genesis block. Lerner debunks these arguments with many reasons and by explaining various factors including:
- 99.9% of all Patoshi blocks are unspent.
- Each Patoshi block âlinksâ to a block in the pattern set, but not to any of the remaining blocks.
- There are some time intervals where the Patoshi pattern interrupts abruptly.
- Mining pools were invented several years later.
- Mining pools were created to reduce reward variance due to the low individual probability of solving a block, but during 2009 single miners could easily solve blocks frequently.
By the end of 2013, Lerner said he had found proof âbeyond any doubt, that the pattern was real, using a completely different method.â His latest study describes how he discovered that all of the blocks mined by Patoshi were identifiable by a depleted range of nonces used in processed blocks to a specific range. From 2014 to early 2019, Lerner didnât have much more to add to his prior research and there were a few other studies published recently that suggest Patoshi only mined around 700,000 coins. However, Lernerâs latest study âproves with overwhelming probabilityâ that a single miner extracted all of the coins in his Patoshi pattern, which is well over a million BTC. The researcherâs new argument is based on computer clocks because even in the early days miners used a local computerâs clock to timestamp blocks after processing them.
According to Lerner, Patoshi paused mining for 10 days. Lerner also suggests that the miner called âPatoshiâ gave away approximately 550 BTC to other people in the form of donations
âIf youâve studied the Bitcoin protocol, youâll know that block timestamps are not necessarily monotonically increasing,â Lerner writes. âThis is true from the Bitcoin source code 0.1.0 to the latest version of Bitcoin Core that had an internal miner (before mining pools were created).â
Clocks and Timestamps
Some of the latest evidence Lerner provides also concerns why he strongly believes the single miner extracted close to 1.1M coins, which is even more than the initial 1M BTC discovered by Lerner years ago. For instance, Lerner states that âcomputer clocks can be unsynchronized from each other,â âtimestamps were not updated continuously during mining,â and âblock timestamps are adjusted by the Bitcoin software to match the median time of the peers that are connected to a node.â Because of these reasons, the study notes that the same computer will almost never reverse its own timestamps and âthe delta between inverted block timestamps indirectly measures the hashrate of the parent block miner.â
Lernerâs study shows a few cases of timestamp inversions.
âThere are no time inversions between Patoshi blocks â Zero â This result is very relevant considering the Patoshi blocks account for 43% of all the blocks in the first 50k. Iâm open to considering other explanations, but for me, this can only mean one thing â There is a single PC clock whose time is stamped in the Patoshi blocks.â Lernerâs paper continues:
A single software that controls how block templates are created â A single miner.
The RSK Labs chief scientist concludes that there is evidence that links the Patoshi patterns to Satoshi but he prefers to stop there and âleave Patoshi alone once for all.â Lerner believes the evidence he provided is reliable but he expects more people to deny the information in forums. Lerner also infers that he has discovered a more precise figure and coded a more accurate pattern-following algorithm which can be viewed on his new site satoshiblocks.info.
Do you think the Patoshi pattern belongs to Satoshi? Do you believe a single miner mined over 1.1 million BTC during the networkâs earliest days? Let us know what you think about this subject in the comments section below.
Image credits: Shutterstock, Sergio DemiĂĄn Lernerâs blog Bitslog.com, Pixabay, and Satoshiblocks.info.
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