• Captain Aggravated@sh.itjust.works
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      3 hours ago

      Sure, it’s technologically possible. Is there even an inkling of a plan to go from “dev kit” to “widely available consumer product?” Because basically the only “widely available consumer products” are locked down playpens like iPhones and such. Even a lot of x86 devices are going to the soldered everything approach.

      • tekato@lemmy.world
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        1 hour ago

        Is there even an inkling of a plan to go from “dev kit” to “widely available consumer product?”

        It’s not a dev kit, it’s meant to be a regular PC with upgradable storage, RAM, and PCIe slot for $120. Milk-V and other RISC-V companies already have widely available consumer products (Milk-V Mars, Banana Pi, etc.), they’re just usually SBCs because that’s what’s easiest to produce and RISC-V is early in development. Remember that the first standard with Vector instructions just came out a few months ago (RVA23), and there’s no point in trying to seriously compete with X86/ARM PCs until you have that.

        Even a lot of x86 devices are going to the soldered everything approach.

        That right there tells you this is not a RISC-V/ARM problem. It’s just that everyone knows on-SOC memory performs better than DIMM, and manufacturers are starting to offer these to compete with Apple M chips.

        • Captain Aggravated@sh.itjust.works
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          10 minutes ago

          I didn’t say it’s a problem inherent to RISC-V; it’s more that anyone who can make the jump to RISC-V (or ARM) will do so in a locked down sealed shut proprietary format like Apple, or doesn’t have the capability of making a platform shift at all like Microsoft. You could make an ATX form factor ARM or RISC-V machine with a lot of processing power and run Linux on it, but who would buy it and for what? That question is why no one makes such a thing.