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To put that into perspective, says you’d need at least 75 Nvidia RTX-2080Ti graphics cards to match that performance.

For the second version, they bumped that up to 18 boards for a total of 72 FPGAs, and made incremental improvements to the power and connectivity systems.Įach 4U FPGA cracker is capable of 2.1 million bcrypt hashes per second, while consuming just 585 watts. The first version of the hardware crammed a dozen of the ZTEX FPGA boards and a master control computer computer into a standard 4U server case. An earlier version of the FPGA crackerĪfter seeing what a single quad FPGA board was capable of, the team started scaling the concept up. Using a decade-old FPGA board intended for mining cryptocurrency, the team was able to demonstrate a four-fold performance improvement over the latest generation of GPUs. This makes the dedicated circuitry in the FPGA many times more efficient at performing the same task. While the clock speed on these programmable chips might seem low compared to a modern CPUs and GPUs, they don’t have all that burdensome overhead to contend with. Luckily, advanced password hashing functions such as bcrypt are designed specifically to make these sort of brute-force attacks impractically slow.Ĭracking bcrypt on desktop hardware might be out of the question, but the folks over at had a hunch that an array of FPGAs might be up to the task. When a single desktop machine can run through 50+ billion password combinations per second, even decent passwords can be guessed in a worryingly short amount of time. When used for cracking passwords, a modern high-end graphics card will absolutely chew through “classic” hashing algorithms like SHA-1 and SHA-2.
