Ever-changing memory could lead to faster processors

Virtually every central processor in your devices uses a tiered set of memory caches to speed things up by fetching commonly used data. But it’s not very efficient — in trying to accommodate everything, it’s rarely the fastest at anything. MIT’s CSAIL researchers want to fix that. They’ve developed a cache system (appropriately named Jenga ) that creates new cache structures on the spot to optimize for a specific app. As Jenga knows the physical locations of each memory bank, it can calculate how to store data to reduce the travel time (and thus lag) as much as possible, even if that means changing the hierarchy. Whether an app would benefit from multiple cache levels or one gigantic cache, this system would be ready. The gains could be huge. A simulated 36-core chip ran up to 30 percent faster just by adopting Jenga, and could use up to 85 percent less power. You wouldn’t necessarily face a penalty for having many cores in a chip, even in laptops and smartphones where every watt counts. Of course, there’s one major problem: Jenga is just a simulation. It could take a while before you see real-world examples of this cache, and longer still before chip manufacturers adopt it (assuming they like the idea, that is). This also assumes that Jenga scales neatly across different core counts. Will you see similar gains with ‘just’ an 8-core chip? It’s easy to imagine CPU giants like Intel or Qualcomm leaping on this concept, though. Chip makers frequently boost performance by moving to ever-smaller manufacturing processes, but they’re gradually running into physical limits . So long as there’s software to take advantage of it, Jenga could wring extra performance out of chips with relatively little effort. Source: MIT News

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Ever-changing memory could lead to faster processors

NVIDIA ‘Max-Q’ gaming laptops are ultrabooks with GTX 1080 power

Based on NVIDIA’s 2017 Computex announcements, PC gamers won’t have to choose between bulky gaming laptops and desktop-level processing power for much longer. A new design called “Max-Q” is arriving in new laptops that it claims are both 3x thinner and 3x more powerful than their predecessors — think 18mm thick, 5 pounds and with the power of NVIDIA’s GTX 1080 inside. Plus, there’s “WhisperMode, ” which can pace the game’s framerate to keep the laptop cool and quiet during a plugged-in gaming session. When the new laptops roll out beginning June 27th , the top of the line options well outpace current options like Razer’s GTX 1060-powered 4K Blade . There aren’t specific benchmarks listed, but a graph on the official website claims an average 1.8x performance increase over GTX1060 when running “AAA” titles at 4K. During the demo, CEO Jen-Hsun Huang showed off a 5-lb laptop running Project Cars 2 , saying it was 60 percent faster than the PS4 Pro. NVIDIA says that they’re not only engineered to be thin and light across the “chip, drivers, thermal and electrical components, ” but that its software optimizes settings and the workload across CPU/GPU to regulate power and heat. They aren’t all super powerful however, with models on the way from “Acer, Aftershock, Alienware, ASUS, Clevo, Dream Machine, ECT, Gigabyte, Hasee, HP, LDLC, Lenovo, Machenike, Maingear, Mechrevo, MSI, Multicom, Origin PC, PC Specialist, Sager, Scan, Terrans Force, Tronic’5, and XoticPC, ” they will include GTX 1060, 1070 and 1080 level GPUs inside. Source: NVIDIA Blog , NVIDIA

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NVIDIA ‘Max-Q’ gaming laptops are ultrabooks with GTX 1080 power