TL;DR
CBlockSim is a modular, high-performance blockchain simulator that significantly improves scalability and speed, enabling detailed simulation of large blockchain networks like Bitcoin and Ethereum.
Contribution
It extends an existing simulator with network modules, C++ implementation, and modular design, achieving faster simulation and greater scalability for large blockchain networks.
Findings
Simulation time reduced by an order of magnitude
Can simulate over ten thousand nodes
Enables investigation of network-related issues
Abstract
Blockchain has attracted much attention from both academia and industry since emerging in 2008. Due to the inconvenience of the deployment of large-scale blockchains, blockchain simulators are used to facilitate blockchain design and implementation. We evaluate state-of-the-art simulators applied to both Bitcoin and Ethereum and find that they suffer from low performance and scalability which are significant limitations. To build a more general and faster blockchain simulator, we extend an existing blockchain simulator, i.e. BlockSim. We add a network module integrated with a network topology generation algorithm and a block propagation algorithm to generate a realistic blockchain network and simulate the block propagation efficiently. We design a binary transaction pool structure and migrate BlockSim from Python to C++ so that bitwise operations can be used to accelerate the simulation…
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