CryptoNight: Difference between revisions

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It is designed to be suitable for ordinary PC CPUs, but currently no special purpose devices for mining are available.
It is designed to be suitable for ordinary PC CPUs, but currently no special purpose devices for mining are available.
Therefore, CryptoNight can only be CPU-mined for the time being.
Therefore, CryptoNight can only be CPU-mined for the time being.
CryptoNight is the main CryptoNote's hash-function.  
CryptoNight is the main CryptoNote's hash function.  


== Principles ==
== Principles ==

Revision as of 16:10, 19 June 2014

CryptoNight is a proof-of-work algorithm. It is designed to be suitable for ordinary PC CPUs, but currently no special purpose devices for mining are available. Therefore, CryptoNight can only be CPU-mined for the time being. CryptoNight is the main CryptoNote's hash function.

Principles

CryptoNight relies on random access to the slow memory and emphasizes latency dependence. Each new block depends on all the previous blocks (unlike, for example, scrypt). The algorithm requires about 2 Mb per instance:

  1. It fits in the L3 cache (per core) of modern processors.
  2. A megabyte of internal memory is almost unacceptable for the modern ASICs.
  3. GPUs may run hundreds of concurrent instances, but they are limited in other ways. GDDR5 memory is slower than the CPU L3 cache and remarkable for its bandwidth, not random access speed.
  4. Significant expansion of the scratchpad would require an increase in iterations, which in turn implies an overall time increase. "Heavy" calls in a trustless p2p network may lead to serious vulnerabilities, because nodes are obliged to check every new block's proof-of-work. If a node spends a considerable amount of time on each hash evaluation, it can be easily DDoSed by a flood of fake objects with arbitrary work data (nonce values).

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