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We are talking about the memory bandwidth available to the CPU cores and not all the co-processors/accelerators present in the SoC so you're pulling in the argument that is not valid.

https://web.archive.org/web/20240902200818/https://www.anand...

> While 243GB/s is massive, and overshadows any other design in the industry, it’s still quite far from the 409GB/s the chip is capable of.

> That begs the question, why does the M1 Max have such massive bandwidth? The GPU naturally comes to mind, however in my testing, I’ve had extreme trouble to find workloads that would stress the GPU sufficiently to take advantage of the available bandwidth.

> Granted, this is also an issue of lacking workloads, but for actual 3D rendering and benchmarks, I haven’t seen the GPU use more than 90GB/s (measured via system performance counters)





The cited article is pretty clear: the M1 Max maxes out at (approximately) 100 Gb/sec per a single CPU core, 243 Gb/sec per a CPU cluster, and 409 Gb/sec per the entire SOC.

They did not (or, rather, could not) measure the theoretical peak GPU core saturation for the M1 Max SOC because such benchmarks did not exist at the time due to the sheer novelty of such wide hardware.


> The cited article is pretty clear: the M1 Max maxes out at (approximately) 100 Gb/sec per a single CPU core, 243 Gb/sec per a CPU cluster, and 409 Gb/sec per the entire SOC.

So, which part of "We are talking about the memory bandwidth available to the CPU cores and not all the co-processors/accelerators present in the SoC" you didn't understand?


Well I think we talked about memory channels and the maximum speed reachable. And you claimed it was marketing fluff. I don't think it's unreasonable to say that if that speed is reachable using some workload it's not marketing fluff. It was not clear at all to me you limited your claims to CPU speed only. Seems like a classic motte-and-bailey to me.



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