Earlier quoted context omitted.
I doubt we'll be seeing desktop ARM systems any time soon, especially high end workstation or enthusiast systems. The problem is that the ARM64 architecture is completely different from x86-64, which almost every desktop application is compiled for exclusively . Remember when Microsoft launched an ARM Surface? It had a special version of Windows, and almost nothing would run on it, as very few applications are compil…
> It had a special version of Windows, and almost nothing would run on it, as very few applications are compiled for Windows on ARM. That wasn't the reason. It was because Windows RT was artificially locked-down to only allow sandboxed "apps" from the Windows App Store to run. There's not much of a use-case for only glorified web-service clients on a machine with a desktop UI regardless of the ISA they're compiled fo…
All AMD ThreadRipper CPU's will have 64 PCIe Lanes
51–60 of 144 posts
Re: All AMD ThreadRipper CPU's will have 64 PCIe Lanes
#52Earlier quoted context omitted.
I don't fully understand. So 1 SSD need 1 lane. How many lanes need something like NVisia 1080Ti? What use of the remaining lanes? If I want to build something like 1 CPU/1 GPU/1 SSD configuration without additional peripherals, 62 lanes will be effectively wasted?
A GPU can use 16x 3.0 lanes, theoretically. In practice 8 lanes is enough, people have measured performance between 16x and 8x, it's almost the same. SSDs use 4x, if you do buy an NVMe drive that is. (In my country, these things are TWICE as expensive as SATA SSDs lol)
Re: All AMD ThreadRipper CPU's will have 64 PCIe Lanes
#53Salient point: > all 64 lanes being enabled for all ThreadRipper SKUs. This will be broken up into 60+4: 60 lanes directly from the CPU for feeding PCIe and M.2 slots , and then another 4 lanes going to the chipset And > the 16 core processor will for most purposes be half of an Epyc processor Epyc (formerly Naples) is the server-grade arch with 8 memory channels, 32 cores and 128 PCIe lanes per socket.
Or maybe there's one less chip in the package?
Re: All AMD ThreadRipper CPU's will have 64 PCIe Lanes
#54Earlier quoted context omitted.
Enthusiasts tend to be gamers, and once you have a high end machine, most games tend to be limited on disk bandwidth, which affects load times. By consumers, I meant enthusiasts, since that's who the Threadripper (X399) and Intel's Extreme Edition (X299) platforms are aimed at.
Enthusiast here - can confirm, an array of nvme's makes a huge difference over single standard SSD. I set this up last year, check the benchmark results, it's night and day. http://imgur.com/a/N4FpD note: be sure to note the scaling at the bottom. 4-500MB/s old vs 3000+ MB/s new
Re: All AMD ThreadRipper CPU's will have 64 PCIe Lanes
#55Salient point: > all 64 lanes being enabled for all ThreadRipper SKUs. This will be broken up into 60+4: 60 lanes directly from the CPU for feeding PCIe and M.2 slots , and then another 4 lanes going to the chipset And > the 16 core processor will for most purposes be half of an Epyc processor Epyc (formerly Naples) is the server-grade arch with 8 memory channels, 32 cores and 128 PCIe lanes per socket.
I wonder if it's the same silicon as Epyc, just ThreadRipper gets the worse bins. Or maybe there's one less chip in the package?
Re: All AMD ThreadRipper CPU's will have 64 PCIe Lanes
#56Earlier quoted context omitted.
I've long been thinking that it would make sense for e.g. US+EU to fund AMD just in order to get some actual competition going.
Some years ago I read a moderately well fleshed out proposal to create a European semiconductor consortium as a sort of an Airbus for CPUs. My recollection is that, while it was somewhat flawed, it was an idea with significant merit.
Re: All AMD ThreadRipper CPU's will have 64 PCIe Lanes
#57Competition is supposed to bring prices down, yet Intel released i9 processor for an insane prize (nearly 2000$). If AMD manages to ship similar performance (not necessarily higher) at a lower price... Sooner or later Intel will have to slash its prices. Looking forward to such times.
EDIT - of course there are also Xeons between 10 and 18 cores, but it should show that you had to pay much more to get 18 cores, or only slightly less for much less cores.
Re: All AMD ThreadRipper CPU's will have 64 PCIe Lanes
#58Earlier quoted context omitted.
I doubt we'll be seeing desktop ARM systems any time soon, especially high end workstation or enthusiast systems. The problem is that the ARM64 architecture is completely different from x86-64, which almost every desktop application is compiled for exclusively . Remember when Microsoft launched an ARM Surface? It had a special version of Windows, and almost nothing would run on it, as very few applications are compil…
Funny you say that, MS just announced they're taking another stab at it. https://www.theverge.com/2017/5/31/15711334/microsoft-window...
Re: All AMD ThreadRipper CPU's will have 64 PCIe Lanes
#59Salient point: > all 64 lanes being enabled for all ThreadRipper SKUs. This will be broken up into 60+4: 60 lanes directly from the CPU for feeding PCIe and M.2 slots , and then another 4 lanes going to the chipset And > the 16 core processor will for most purposes be half of an Epyc processor Epyc (formerly Naples) is the server-grade arch with 8 memory channels, 32 cores and 128 PCIe lanes per socket.
Well shit... what am I going to do with this pair of useless Xeon E5s I just bought?
Re: All AMD ThreadRipper CPU's will have 64 PCIe Lanes
#60I was of the opinion that Intel will only face real competition when arm reaches parity with desktop class cpu. Nice to see AMD rise back up again. Hope Intel is not able to strong arm the oems like last time when AMD had design wins but Intel using anti competitive practice stalled its growth till it was able to catch-up and later go ahead.
I doubt we'll be seeing desktop ARM systems any time soon, especially high end workstation or enthusiast systems. The problem is that the ARM64 architecture is completely different from x86-64, which almost every desktop application is compiled for exclusively . Remember when Microsoft launched an ARM Surface? It had a special version of Windows, and almost nothing would run on it, as very few applications are compil…
Every motherboard has it's own size, it's own closed bios supporting only some kinds of memory (if at all, due to on die memory of most soc), which is fine for embedded use but leaves a lot to be desired if you try to use it as a "desktop pc" replacement.