Feasible, yes. Practical, hard to say. Good idea, yes.
RISC-V is open-source architecture based in Switzerland (although it started in University of California).
One thing going for it is China is spending billions a year towards RISC-V adoption so they do not get sanctioned by the US. You need money and engineers working on it towards these type of open source to compete with existing players.
The great thing about RISC-V if you care about sovereignty in an age where CPUs run the world is that it’s an open standard. Contrast this with x86 which is owned in some part by US-based Intel and some part by US-based AMD as well as ARM which is owned by Japanese-owned, UK-based Arm Holdings. If you want to use x86, you’re shelling out license money to Intel and AMD, and if you want to use ARM, you’re shelling out license money to Arm Holdings. You never truly “own” what you’re producing.
Can anyone knowledgeable tell us if this is feasible, practical, or a good idea?
Feasible, yes. Practical, hard to say. Good idea, yes.
RISC-V is open-source architecture based in Switzerland (although it started in University of California).
One thing going for it is China is spending billions a year towards RISC-V adoption so they do not get sanctioned by the US. You need money and engineers working on it towards these type of open source to compete with existing players.
Yes, yes and yes, but it’ll take a while. It’s a six year project overall.
I’m not knowledgeable enough to answer, but I know China’s also going big on RISC-V.
The great thing about RISC-V if you care about sovereignty in an age where CPUs run the world is that it’s an open standard. Contrast this with x86 which is owned in some part by US-based Intel and some part by US-based AMD as well as ARM which is owned by Japanese-owned, UK-based Arm Holdings. If you want to use x86, you’re shelling out license money to Intel and AMD, and if you want to use ARM, you’re shelling out license money to Arm Holdings. You never truly “own” what you’re producing.
This is the way
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