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Will Windows 10 On ARM Finally Materialize?

December 14, 2016 by  
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Microsoft dropped a bomb on December 7th.  At WinHEC it announced that the Next generation Qualcomm Snapdragon processors have full Windows 10 support. Yes, this time, they will run every Windows X86 application via an emulator.

It looks like 2017 will be a fun year. Qualcomm,  all of a sudden got support for Windows 10 on its mobile computing devices. This will enable new anytime, anywhere connected device form factors. What Qualcomm and Microsoft are trying to say is that you can expect some tablet/notebook devices powered by SoCs that aren’t coming from Intel nor AMD.

This will help the synergy between mobile devices and computers and may well be the right way to do the Windows “continuum” in the right way.

The Windows 10 devices powered by Snapdragon are expected to support all aspects of Microsoft’s latest operating system including Microsoft Office, Microsoft Edge browser, Windows 10 gaming titles like Crysis 2 and World of Tanks, Windows Hello, and touchscreen features like Windows Pen. Qualcomm Snapdragon powered devices are expected to support Universal Windows Platform (UWP) apps and Win32 apps through emulation, providing users with a wide selection of full featured applications. There is no label but most things should work, if not all of them.

This is definitely better than Windows RT, when Microsoft tried to develop Windows on ARM – a platform that simply confused the market as it would not run X86 applications. Now that problem is solved.

Terry Myerson, executive vice president of the Windows and Devices Group at Microsoft said:

“We are excited to bring Windows 10 to the ARM ecosystem with our partner, Qualcomm Technologies, We continue to look for ways to empower our customers to create wherever they are. Bringing Windows 10 to life with a range of thin, light, power-efficient and always-connected devices, powered by the Qualcomm Snapdragon platform, is the next step in delivering the innovations our customers love – touch, pen, Windows Hello, and more – anytime, anywhere.”

Cristiano Amon, executive vice president, Qualcomm Technologies, Inc. and president, QCT said:

“Qualcomm Snapdragon processors offer one of the world’s most advanced mobile computing features, including Gigabit LTE connectivity, advanced multimedia support, machine learning and superior hardware security features, all while supporting thin, fan-less designs and long battery life. “With full compatibility with the Windows 10 ecosystem, the Qualcomm Snapdragon platform is expected to support mobility to cloud computing and redefine how people will use their compute devices.”

The first devices running the full Windows 10 experience based on Snapdragon processors are expected to be commercially available in the second half of 2017. From what we understand, this cooperation will not only include Snapdragon 835 and it looks like that all  future chips might end up getting  support for Windows 10. We will have to wait until  the second half of next year to see which will be the first company to launch a device powered by Snapdragon.

It will be interesting to see if that incurs a performance penalty for emulating the applications written for X86 on ARM architecture as emulation always cost you some performance. But Qualcomm and Microsoft would not go to this venture if it wasn’t something they could generally contribute to. This announcement has just put a lot of fuel to a Snapdragon 835 powered Surface phone, or at least a Surface device at some point.

We have a feeling that that might be Microsoft itself of one of the big OEMs think Dell, HP, Lenovo kind of customers.

 

Courtesy-Fud

‘Stegano’ Malvertising Exposes Millions To Hacking

December 13, 2016 by  
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Since October, millions of internet users have been exposed to malicious code embedded in the pixels from tainted banner ads designed to install Trojans and spyware, according to security firm ESET.

The attack campaign, called Stegano, has been spreading from malicious ads in a “number of reputable news websites,” ESET said in a Tuesday blog post. It’s been preying on Internet Explorer users by scanning for vulnerabilities in Adobe Flash and then exploiting them.

The attack is designed to infect victims with malware that can steal email password credentials through its keylogging and screenshot grabbing features, among others.

The attack is also hard to detect. To infect their victims, the hackers were essentially poisoning the pixels used in the tainted banner ads, ESET said in a separate post.

The hackers concealed their malicious coding in the parameters controlling the pixels’ transparency on the banner ad. This allowed their attack to go unnoticed by the legitimate advertising networks.

Victims will typically see a banner ad for a product called “Browser Defense” or “Broxu.” But in reality, the ad is also designed to run Javascript that will secretly open a new browser window to a malicious website designed to exploit vulnerabilities in Flash that will help carry out the rest of the attack.

Hackers have used similar so-called malvertising tactics to secretly serve malicious coding over legitimate online advertising networks. It’s an attack method that has proven to be a successful at quickly spreading malware to potentially millions.

The makers behind the Stegano attack were also careful to create safeguards to prevent detection, ESET said. For instance, the banner ads will alternate between serving a malicious version or a clean version, depending on the settings run on the victim’s computer. It will also check for any security products or virtualization software on the machine before proceeding with the attack.

ESET declined to name the news websites that were found unknowingly displaying the malicious ads, but cautioned that the attack was widespread, and could have been hosted through other popular sites as well.

Source-http://www.thegurureview.net/aroundnet-category/stegano-malvertising-ads-expose-millions-of-online-users-to-hacking.html

Is Google Going After Facebook?

December 12, 2016 by  
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The word on the information street is that Google wants to buy Facebook. It is entirely speculative, but could have legs.

Information leaked suggests that talks are well advanced between the two companies.

Anecdotal evidence from many Facebook users suggests that talks are well advanced and the companies are already sharing experimental data, between themselves, of user data. Other sources suggest that Microsoft (Vole) is also interested in Facebook and, conversely, that Facebook is interested in buying Microsoft.

None of the companies cared enough to comment to Fudzilla at press time.

Courtesy-Fud

Will The TeraHertz Band Increase Wi-Fi Speeds?

December 9, 2016 by  
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Researchers have worked out a way to push Wi-Fi speeds to 34 Gbps using the TeraHertz band.

While greater bandwidth in the 300GHz and above band has been known for a while it is pointless because the range makes it a chocolate teapot.

Some researchers have managed to hit 100 Gbps but when it only works for a few centimeters it is not commercially viable.

Now boffins at the Tokyo Institute of Technology have got the technology to provide a great 34 Gbps speed with a decent range.

Naoto Oshimo, one of the scientists behind this latest test, said that “device performance is almost sufficient for short-distance wireless communication such as KIOSK downloads, which might be its first application”. By that they mean that they have managed 10 metres, almost OK for home use.

Oshimo believes that this technology will scale hugely in terms of the speed as well, and we could eventually be looking at topping the 1Tbps mark.

Courtesy-Fud

Helio Finally Launches X27

December 8, 2016 by  
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MediaTek has announced two more Helio X20 series products – a Helio X27 and an X23 and as you can figure out from the names; Helio X27 is faster than the X25 while X23 is a bit slower.

Helio X25 was the fastest deca-core 20nm SoC from MediaTek with three cluster designs and this SoC ended up in quite a few prominent China higher end phones including a few Meizu devices. But it looks like customers wanted a bit faster camera, SoC and GPU performance for its late 2016 early 2017 phones, the ones that will launch before the Helio X30 comes to market.

Jeffrey Ju, Executive Vice President and Co-Chief Operating Officer at MediaTek said: “The MediaTek Helio platform fulfills the diverse needs of device makers. Based on the success of MediaTek Helio X20 and X25, we are introducing the upgraded MediaTek Helio X23 and X27. The new SoCs support premium dual camera photography and provide best in-class performance and power consumption,”

The Helio X25 has two Cortex A73 cores clocked at 2.5 GHz, four Cortex A53 clocked at 2.00 GHz and last four Cortex A53 clocked at 1.55GHz. The Mali GT880 graphics is clocked at 850 MHz.

The Helio X20 has two Cortex A73 cores clocked at 2.1 GHz, four Cortex A53 clocked at 1.85 GHz and last four Cortex A53 clocked at 1.4GHz. The Mali GT880 graphics is clocked at 780 MHz.

The newcomer, Helio X27, has two Cortex A73 cores clocked at 2.6 GHz, four Cortex A53 clocked at 2.00 GHz and the last four Cortex A53 clocked at 1.6 GHz. The Mali GT880 graphics is clocked at 875 MHz. The rest of the specification is identical to the Helio X25.

The Helio X23 has two Cortex A73 cores clocked at 2.3 GHz, four Cortex A53 clocked at 1.85 GHz and the last four Cortex A53 clocked at 1.4GHz. The Mali GT880 graphics is clocked at 780 MHz. As you can see, this is just a slightly faster version of Helio X20 and it sits just below Helio X25 with its specs.

Thanks to MediaTek-engineered advancements in the CPU/GPU heterogeneous computing scheduling algorithm, both products deliver more than a 20 percent overall processing improvement and significant increases in web browsing and application launching speeds. This definitely sounds promising but you should bear in mind that MediaTek had enough time to optimize these designs of the new and updated SoCs.

Phones based on the Helio X27 and X23 will be available soon.

Courtesy-Fud

Can iOS Activation Lock Be Bypassed?

December 7, 2016 by  
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Two researchers report that they have discovered a way to bypass the activation lock feature in iOS that’s supposed to prevent anyone from using an iPhone or iPad marked as lost by its owner.

The first report came Sunday from an Indian security researcher named Hemanth Joseph, who started investigating possible bypasses after being confronted with a locked iPad he acquired from eBay.

The activation lock gets enabled automatically when users turn on the Find My iPhone feature via iCloud. It links the device to their Apple IDs and prevents anyone else from accessing the device without entering the associated password.

One of the few things allowed from the activation lock screen is connecting the device to a Wi-Fi network, including manually configuring one. Hemanth had the idea of trying to crash the service that enforces the lock screen by entering very long strings of characters in the WPA2-Enterprise username and password fields.

The researcher claims that, after awhile, the screen froze, and he used the iPad smart cover sold by Apple to put the tablet to sleep and then reopen it. This is supposed to restore the state of the tablet from where it was left off, in this case, loading the WPA2 screen again with the long strings of characters filled in.

“After 20-25 seconds the Add Wifi Connection screen crashed to the iPad home screen, thereby bypassing the so-called Find My iPhone Activation Lock,” he said in a blog post.

Hemanth said he reported the issue to Apple on Nov. 4, and the company is investigating it. He tested the bypass on iOS 10.1, which was released on Oct. 24.

Last week, a researcher named Benjamin Kunz Mejri, from German outfit Vulnerability Lab, posted a video showing the same bypass, but on the newer iOS 10.1.1 version.

Kunz Mejri’s method is similar and also involves overflowing the Add Wi-Fi form fields with long strings of characters but also requires rotating the tablet’s screen in order to trigger the crash after the smart cover trick.

Apple has not yet confirmed that issue and did not immediately respond to a request for comment.

Source- http://www.thegurureview.net/mobile-category/researcher-prove-ios-activation-lock-can-be-bypassed.html

PC Market Showing Signs Of Life

September 23, 2016 by  
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The PC market is showing some signs of growth, with Intel boosting its revenue guidance based on improved chip shipments.

The chip maker has raised its revenue guidance for the third quarter to $15.6 billion, plus or minus $300 million, an improvement from $14.9 million, plus or minus $500 million.

That’s due to PC makers replenishing laptop and desktop inventory, which means Intel is shipping out more chips. It’s likely in anticipation of the holiday season, when PC shipments rocket.

“The company is also seeing some signs of improving PC demand,” Intel said in a statement.

In the second quarter of the year, PC makers slowed down chip orders and were clearing out existing stock of laptops and desktops. PC shipments declined by 4.5 percent during that period, according to IDC.

Shipments of gaming PCs, 2-in-1s and Chromebooks are driving PC shipments. Microsoft’s free upgrade offer to Windows 10 has also ended, which means users are more likely to buy new PCs to get Windows 10.

Meanwhile, new laptops with Intel’s Kaby Lake chips are now available. All the top PC makers have announced new 2-in-1s and laptops with Intel’s new chips. New Kaby Lake chips for gaming PCs will be announced in January.

Intel also has started shipping Pentium and Celeron chips, both aimed at low-cost laptops, based on the same architecture and code-named Apollo Lake. Many Chromebooks are based on Apollo Lake chips.

Courtesy- http://www.thegurureview.net/computing-category/pc-market-showing-signs-of-life.html

Will Intel’s Kaby Lake Outshine AMD’s ZEN?

September 23, 2016 by  
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A Wall Street analyst, with no thought to his personal safety, has dared to question what AMD fans have been telling us for ages – Zen will bring about peace on earth, cure cancer and above all give Intel a good kicking.

However, Christopher Danely with Citigroup has bravely claimed that with its “Kaby Lake” family of processors, Intel remains a “step-function ahead of AMD Zen when Zen chips are released in Q416.”

He also doubts the benchmark stats that AMD presented to promote Zen’s capabilities relative to Intel’s microprocessors claiming that the AMD controlled benchmark compared an engineering sample of a Zen processor that has not been released yet against a three-month old Intel processor, with both chips clocked at 3.0 Ghz.

“We note the maximum speed for the Intel chip is 3.2 GHz. The result showed AMD completing the benchmark 2 per cent faster than Intel, implying higher CPU efficiency on a “clock for clock” basis. AMD kept both 8 core chips at the same clock speed of 3.0 Ghz, below the native clock speed of the Intel chip. The benchmark result showed the Zen Summit Ridge processor completing the Blender rendering benchmark in 48.07 seconds, 2 per cent ahead of Intel Broadwell-E chip’s time of 49.06 seconds. We note this is only one benchmark using a custom workload performed at an AMD event under controlled conditions, and therefore cannot be verified by third parties and does not represent expected results under all workloads, Danely said.

Instead he thinks that Chipzilla will benefit from its process technology lead while AMD’s manufacturing partner, Global Foundries, which has a “spotty track record.”

“After several of delays and eventually failing to develop 20nm and 14nm on its own, GlobalFoundries entered into a partnership agreement with Samsung in April 2014 to adopt Samsung’s 14nm FinFET process. Despite using the same tools, recipes, and materials as Samsung’s 14nm process, products built on GlobalFoundries’ 14nm did not appear until earlier this year, roughly a year after Samsung released its Exynos 7420 SoC built on its 14nm process,” Danely pointed out.

Since the partnership agreement with Samsung does not include 10nm or lower nodes, we think the technology gap between AMD and Intel will widen again once Intel migrates to 10nm next year.

Meanwhile Intel released its new Kaby Lake chips on an improved 14+nm process this month, featuring a 15 per cent performance improvement over its Skylake chips. Kaby Lake chips deliver up to 12 per cent faster productivity performance and 19 per cent faster web performance over comparable Skylake chips

“We expect independent benchmarks to show Intel’ performance is a step function ahead of AMD Zen when Zen chips are released in 4Q16,” he said.

Below you will find lots of rantings from Intel and AMD fanboys and we expect the language to be colourful. Those of a sensitive disposition might want to look away now.

Courtesy-Fud

nVidia Updates Its Grid Platform

September 2, 2016 by  
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Nvidia has updated its Grid software platform with deeper performance profiling and analytics tools for planning, deployment, and support of virtual GPU users.

According to the company the improved management tools address both host (server) managment and virtual client monitoring. Nvidia says that with the new Grid software, admins will be able to get information about the number of virtual graphics instances in use and the number they can potentially create.

They can also see usage information for the stream processors on board each card, the percentage of the card’s frame buffer that’s in use, and the load on each card’s dedicated video encode and decode hardware.

Each guest vGPU instance will tell admins information on encoder and decoder usage, frame buffer occupancy, and the vGPU use. Nvidia adds that it all takes the guess work out of vGPU provisioning and the data it’s exposing about vGPU usage will let system administrators tailor their virtual user profiles better.

All this means that it might stop the admins giving too much processing power to accounts when it is needed for the graphics team. Nvidia thinks those operational improvements will also help lower costs. The August 2016 Grid software update should be available immediately.

Courtesy-Fud

nVidia NVLINK 2.0 Going In IBM Servers

August 31, 2016 by  
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On Monday, PCWorld reported that the first servers expected to use Nvidia’s second-generation NVLINK 2.0 technology will be arriving sometime next year using IBM’s upcoming Power9 chip family.

IBM launched its Power8 lineup of superscalar symmetric multiprocessors back in August 2013 at the Hot Chips conference, and the first systems became available in August 2014. The announcement was significant because it signaled the beginning of a continuing partnership between IBM and Nvidia to develop GPU-accelerated IBM server systems, beginning with the Tesla K40 GPU.

The result was an HPC “tag-team” where IBM’s Power8 architecture, a 12-core chip with 96MB of embedded memory, would eventually go on to power Nvidia’s next-generation Pascal architecture which debuted in April 2016 at the company’s GPU Technology Conference.

NVLINK, first announced in March 2014, uses a proprietary High-Speed Signaling interconnect (NVHS) developed by Nvidia. The company says NVHS transmits data over a differential pair running at up to 20Gbps, so eight of these differential 20Gbps connections will form a 160Gbps “Sub-Link” that sends data in one direction. Two sub-links—one for each direction—will form a 320Gbps, or 40GB/s bi-directional “Link” that connects processors together in a mesh framework (GPU-to-GPU or GPU-to-CPU).

NVLINK lanes upgrade from 20Gbps to 25Gbps

IBM is projecting its Power9 servers to be available beginning in the middle of 2017, with PCWorld reporting that the new processor lineup will include support for NVLINK 2.0 technology. Each NVLINK lane will communicate at 25Gbps, up from 20Gbps in the first iteration. With eight differential lanes, this translates to a 400Gbps (50GB/s) bi-directional link between CPUs and GPUs, or about 25 percent more performance if the information is correct.

NVLINK 2.0 capable servers arriving next year

Meanwhile, Nvidia has yet to release any NVLINK 2.0-capable GPUs, but a company presentation slide in Korean language suggests that the technology will first appear in Volta GPUs which are also scheduled for release sometime next year. We were originally under the impression that the new GPU architecture would release in 2018, as per Nvidia’s roadmap. But a source hinted last month that Volta would be getting 16nm FinFET treatment and may show up in roughly the same timeframe as AMD’s HBM 2.0-powered Vega sometime in 2017. After all, it is easier for Nvidia to launch sooner if the new architecture is built on the same node as the Pascal lineup.

Still ahead of PCI-Express 4.0

Nvidia claims that PCI-Express 3.0 (32GB/s with x16 bandwidth) significantly limits a GPU’s ability to access a CPU’s memory system and is about “four to five times slower” than its proprietary standard. Even PCI-Express 4.0, releasing later in 2017, is limited to 64GB/s on a slot with x16 bandwidth.

To put this in perspective, Nvidia’s Tesla P100 Accelerator uses four 40GB/s NVLINK ports to connect clusters of GPUs and CPUs, for a total of 160GB/s of bandwidth.

With a generational NVLINK upgrade from 40GB/s to 50GB/s bi-directional links, the company could release a future Volta-based GPU with four 50GB/s NVLINK ports totaling of 200GB/s of bandwidth, well above and beyond the specifications of the new PCI-Express standard.

Courtesy-Fud

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