'Bigger is better' is back for hardware – without any obvious benefits
- Reference: 1649834827
- News link: https://www.theregister.co.uk/2022/04/13/bigger_is_better_is_back/
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I felt it was impossible. Not a chip – not even a bunch of chiplets – just a monstrous silicon wafer.
Cerebras's secret sauce allows it to treat that [1]massive wafer as a single computing device, by neatly connecting the bits that managed to get through the manufacturing process, while ignoring the (undoubtedly numerous) bits that didn't.
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That approach resembles the [3]17-year cicada strategy , applied to computing – availability in such overwhelming numbers that it simply doesn't matter if thirty per cent of capacity disappears into the belly of every bird and lizard within a hundred kilometers. Cerebras says sure – we'll take the whole wafer, we'll make as many processors as we can, and if a percentage of them don't work, no biggie.
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At first it seemed that Cerebras was simply an outlier. But this year we've learned it was actually a forerunner. When Apple introduced its Mac Studio – powered by its latest M1 Ultra silicon – we got a look at what happens when a mainstream computer hardware manufacturer decides to go all in: over 100 billion transistors spread across a monstrous 1000mm 2 die. To cool all of that silicon, Apple had to [6]strap a huge copper heatsink to the top of its chip. This monster breathes fire.
[7]Russia cobbles together supercomputing platform to wean off foreign suppliers
[8]Swiss researchers make spin ice supercomputing breakthrough
[9]Fujitsu to open Arm-based A64X HPC systems to public cloud
[10]US to rev fastest supercomputer with powerful test system
Curiously, the kind of monstrous computing power offered by M1 Ultra – and new designs from Intel, AMD, and Arm – has not inspired a new class of applications that could benefit from the exponentially increased capabilities of the hardware. We might have expected some next-level artificial intelligence, augmented reality or other game-changer. All Apple offered was the opportunity to edit 4K video more efficiently.
Yawn.
It feels as though our capacity to etch transistors onto a bit of silicon has outgrown our ability to imagine how they could be put to work. The [11]supercomputer of just 20 years ago has shrunk into a tidy desktop workstation, but where are the supercomputer-class applications?
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Back in March, Nvidia announced its latest architecture – Hopper – previewing its [13]fused 'superchip' , with 144 Arm cores, integrated RAM and GPU. It effectively squeezes a lot of datacenter functionality into a few massive pieces of silicon, all creatively bonded together to operate efficiently. It's another monstrous bit of hardware – but at least it offers a price-performance benefit for existing datacenters.
On the desktop and the within the datacenter, the pendulum has begun to swing back toward 'bigger is better'. Moore's Law may still apply – [14]until we exhaust the periodic table – but my iPhone 13 is significantly chunkier than my iPhone X, and my next MacBook Pro will be bigger and heavier than my 2015 model. Something has shifted in computing. While it makes sense that the datacenter should see such advances, it remains unclear what that means for the desktop, and personal computing.
When I started my career in IT, mainframes had given way to minicomputers, and those minicomputers would soon be overwhelmed by microcomputers. We've lived in the micro era ever since. Now we're witnessing the dawn of a new era: monstrocomputers – devices where trillions of transistors and kilowatts of power blend.
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But to what end? Raw capacity has never been the point of computing. These monsters need to be tamed, trained, and put to work. ®
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[1] https://www.nextplatform.com/2022/03/02/cerebras-shows-off-scale-up-ai-performance-for-big-pharma-and-big-oil/
[2] https://pubads.g.doubleclick.net/gampad/jump?co=1&iu=/6978/reg_onprem/front&sz=300x50%7C300x100%7C300x250%7C300x251%7C300x252%7C300x600%7C300x601&tile=2&c=2YlafUypB6KLuF4ZhmppORgAAAME&t=ct%3Dns%26unitnum%3D2%26raptor%3Dcondor%26pos%3Dtop%26test%3D0
[3] https://en.wikipedia.org/wiki/Periodical_cicadas
[4] https://pubads.g.doubleclick.net/gampad/jump?co=1&iu=/6978/reg_onprem/front&sz=300x50%7C300x100%7C300x250%7C300x251%7C300x252%7C300x600%7C300x601&tile=4&c=44YlafUypB6KLuF4ZhmppORgAAAME&t=ct%3Dns%26unitnum%3D4%26raptor%3Dfalcon%26pos%3Dmid%26test%3D0
[5] https://pubads.g.doubleclick.net/gampad/jump?co=1&iu=/6978/reg_onprem/front&sz=300x50%7C300x100%7C300x250%7C300x251%7C300x252%7C300x600%7C300x601&tile=3&c=33YlafUypB6KLuF4ZhmppORgAAAME&t=ct%3Dns%26unitnum%3D3%26raptor%3Deagle%26pos%3Dmid%26test%3D0
[6] https://www.theregister.com/2022/03/24/ifixit_mac_studio/
[7] https://www.theregister.com/2022/04/11/russia_reveal_supercomputer_to_help/
[8] https://www.theregister.com/2022/04/09/swiss_spin_supercomputing/
[9] https://www.theregister.com/2022/04/06/fujitsu_hpc_as_a_service/
[10] https://www.theregister.com/2022/03/28/us_revs_up_new_fastest/
[11] https://www.theregister.com/2022/03/14/apple_m1_opinion_column/
[12] https://pubads.g.doubleclick.net/gampad/jump?co=1&iu=/6978/reg_onprem/front&sz=300x50%7C300x100%7C300x250%7C300x251%7C300x252%7C300x600%7C300x601&tile=4&c=44YlafUypB6KLuF4ZhmppORgAAAME&t=ct%3Dns%26unitnum%3D4%26raptor%3Dfalcon%26pos%3Dmid%26test%3D0
[13] https://www.theregister.com/2022/03/22/nvidia_reveals_epyccrushing_144core_grace/
[14] https://www.theregister.com/2022/02/18/intel_gelsinger_plan/
[15] https://pubads.g.doubleclick.net/gampad/jump?co=1&iu=/6978/reg_onprem/front&sz=300x50%7C300x100%7C300x250%7C300x251%7C300x252%7C300x600%7C300x601&tile=3&c=33YlafUypB6KLuF4ZhmppORgAAAME&t=ct%3Dns%26unitnum%3D3%26raptor%3Deagle%26pos%3Dmid%26test%3D0
[16] https://whitepapers.theregister.com/
You're speaking from my soul there !
Somehow, it feels as if the increases of the "power at your fingertips" we've seen in the last decades have largely been used to ... make the eyecandy a little sweeter still. Advances in usability ? Word'365 or what it's called today is not so far ahead of what Winword'95 could do; user interfaces haven't become more obvious or snappier either (but thanks to the huge compute power increases, also not slower even though every mouse pointer move in your Electron-Framework-App pushes around 100 REST API requests with a number of grpc-to-json-to-yaml-to-binary-to-toml data conversions. Oh, forgot about that old Java component in there that's using a REST-to-XMLRPC bridge thing. anyway ...).
Mobile Apps have seen advances; the interface on current Android or iOS devices beats 00's era S60 or Windows Mobile any day for sure. Desktop Apps have stagnated, though, and for a longtime. Still no voice dictation. Still no talking to my computer. It's not even taking advantage of my two widescreen displays ... still puts taskbar, menubars, toolbars, ribbon bars ... vertically on top of each other, to shrink the space that already shrank from the screens getting wider even more ... so I can now see four top halves of A4 pages next to each other alright, . Thanks Microsoft, but please train the monkey brigade doing your UI reviews a bit more in practical tasks.
Still, much of the time it feels like modern computing is like modern cars - only available as huge SUV and ultra-huge-hyperluxurious-SuperSUV, with a fuel efficiency quite a bit worse than an early-1980s Corsa, but oh yea it'll have airconditioning inside the tires as well as an exhaust pipe camera livestreaming the glow of the catalytic converter to the cloud.
Spin one of those screens through 90 degrees, and then you'll have a decent document viewer.
Soon MS will spot the adobe style "detachable menu" and decide that's a great idea, then three years later they'll stop doing so, then rinse and repeat.
They just changed the UI for track changes such that even when my wife had figured out *how* to turn it of and on, nd was pointing me at the change that indicated it... it still took my ~30 seconds to see what the indicator was. And I could only tell by repeatedly turning it off/on and watching for the change.
It used to be a little slider button that was green when it was on (right hand side), and grey when it was off (left hand side). Now the icon *background* changes between two subtly different greyscales...
Wafer-scale devices? That was going to be Sir Clive Sinclair's Next Big Thing in the 1980s. He'd even got Rick Dickinson to [1]design a casing for his range of wafer-scale SSDs.
[1] https://www.flickr.com/photos/9574086@N02/830029700
Ah yes Anamartic. Wasn't good old Ivor Catt involved in some way?
death spiral
Absolutely agree, the use-case for recent Mac Studio Ultra is pretty much niche.
Wafer fabs need to shrink and ship large quantities of wafers to stay viable. hardware vendors need to trump the other hardware vendors for sales. Users don't need the extra compute. The result must be that things last longer. I'm writing This on a 4 year old machine and feel no need to change it. Once every house is saturated and there is no new app, then there will be a culling
"Raw capacity has never been the point of computing"
We have to remember that technological 'innovation' is driven by vendor interest, not customer demand. Raw capacity (i.e. ever bigger numbers) leads to constant churn, which is what has kept the industry rolling for so long. If everyone's kit was felt to be adequate for its functional lifetime, the revenue stream would dry up. I still have an perfectly adequate and reliable system with an Athlon single core processor which has been driving a SCSI professional graphics scanner since 2005, but obviously that represents lots of lost opportunities for vendors to take money over the intervening 17 years.
whatever personal computer performance we have
Some crappy pointless JavaScript overkill website will bring it grinding to a halt.