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SUSE Brings Hadoop To IBM z Mainframes

April 1, 2015 by  
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SUSE and Apache Hadoop vendor Veristorm are teaming up to bring Hadoop to IBM z and IBM Power systems.

The result will mean that regardless of system architecture, users will be able to run Apache Hadoop within a Linux container on their existing hardware, meaning that more users than ever will be able to process big data into meaningful information to inform their business decisions.

SUSE’s Veristorm Data Hub and vStorm Enterprise Hadoop will now be available as zDoop, the first mainframe-compatible Hadoop iteration, running on SUSE Linux Enterprise Server for System z, either on IBM Power12 or Power8 machines in little-endian mode, which makes it significantly easier for x86 based software to be ported to the IBM platform.

SUSE and Veristorm have also committed to work together on educating partners and channels on the benefits of the overall package.

Naji Almahmoud, head of global business development for SUSE, said: “The growing need for big data processing to make informed business decisions is becoming increasingly unavoidable.

“However, existing solutions often struggle to handle the processing load, which in turn leads to more servers and difficult-to-manage sprawl. This partnership with Veristorm allows enterprises to efficiently analyse their mainframe data using Hadoop.”

Veristorm launched Hadoop for Linux in April of last year, explaining that it “will help clients to avoid staging and offloading of mainframe data to maintain existing security and governance controls”.

Sanjay Mazumder, CEO of Veristorm, said that the partnership will help customers “maximize their processing ability and leverage their richest data sources” and deploy “successful, pragmatic projects”.

SUSE has been particularly active of late, announcing last month that its software-defined Enterprise Storage product, built around the open source Ceph framework, was to become available as a standalone product for the first time.

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Will AMD’s Kaveri Launch As Godavari?

February 13, 2015 by  
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The new desktop refresh according to SweClockers is going to end up with A10-8850K branding. The new processor will get a 100MHz faster turbo clock and is based on the same 28nm manufacturing process. The base CPU clock for the A10-8850K is 3.7GHz, the same speed as the AMD A10-7850K, but the Turbo clock will jump to 4.1GHz with the new one. The A10-7850K has 4.0 GHz top turbo clock and 720 MHz GPU speed for its GCN Sea Island GPU.

The new A10-8850K will get the GPU to 856MHz. The memory speed supported stays at 2133MHz and the socket of choice remains FM2+. The TDP stays at 95W.

As you can see this is a small evolution and you can expect some cool parts for AMD on the desktop side in the latter part of 2016, some eighteen months from now, in 14nm.

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Can Qualcomm Comptete With Intel?

December 2, 2014 by  
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Qualcomm has confirmed that it will branch out from offering its Snapdragon mobile chips and will soon launch a line of server processors.

The firm’s CEO, Steve Mollenkopf, has remained tight lipped about the plans so far but, according to The Wall Street Journal, said during a meeting with financial analysts in New York on Wednesday that the company is working on chips for the data centre.

There’s no timing yet, either, although Mollenkopf said that his firm is currently “engaged with customers”.

Qualcomm is already the world leader in ARM chips for smartphones, and we assume that the company will develop server chips based on ARM’s 64-bit ARMv8-A architecture as rivals such as AMD have done.

The move will place Qualcomm in competition with chip giant Intel, which is currently one of the biggest server chip makers.

Qualcomm announced last month that it had acquired Cambridge-based chipmaker CSR for a hefty $2.5bn (£1.6bn), as the company looks to push further into the Internet of Things (IoT).

The buyout, which comes two months after CSR rejected a takeover bid from Microchip Technology, will see Qualcomm using the British company to push further into the IoT, automotive and mobile communications markets.

CSR rejected an initial bid from Microchip, but reports claim that the firm has until 5pm UK time today to make a better offer.

However, CSR’s board of directors has unanimously accepted Qualcomm’s offer of 900p a share. The closing price at the time of the offer was 660p.

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China Using Home Servers Admidst Cyber Concerns

November 5, 2014 by  
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A Chinese firm has developed the country’s first homegrown servers, built entirely out of domestic technologies including a processor from local chip maker Loongson Technology.

China’s Dawning Information Industry, also known as Sugon, has developed a series of four servers using the Loongson 3B processor, the country’s state-run Xinhua News Agency reported Thursday.

“Servers are crucial applications in a country’s politics, economy, and information security. We must fully master all these technologies,” Dawning’s vice president Sha Chaoqun was quoted as saying.

The servers, including their operating systems, have all been developed from Chinese technology. The Loongson 3B processor inside them has eight cores made with a total of 1.1 billion transistors built using a 28-nanometer production process.

The Xinhua report quoted Li Guojie, a top computing researcher in the country, as saying the new servers would ensure that the security around China’s military, financial and energy sectors would no longer be in foreign control.

Dawning was contacted on Friday, but an employee declined to offer more specifics about the servers. “We don’t want to promote this product in the U.S. media,” she said. “It involves propriety intellectual property rights, and Chinese government organizations.”

News of the servers has just been among the ongoing developments in China for the country to build up its own homegrown technology. Work is being done on local mobile operating systems, supercomputing, and in chip making, with much of it government-backed. Earlier this year, China outlined a plan to make the country into a major player in the semiconductor space.

But it also comes at a time when cybersecurity has become a major concern for the Chinese government, following revelations about the U.S. government’s own secret surveillance programs. “Without cybersecurity there is no national security,” declared China’s Xi Jinping in March, as he announced plans to turn the country into an “Internet power.”

Two months later, China threatened to block companiesfrom selling IT products to the country if they failed to pass a new vetting system meant to comb out secret spying programs.

Dawning, which was founded using local government-supported research, is perhaps best known for developing some of China’s supercomputers. But it also sells server products built with Intel chips. In this year’s first quarter, it had an 8.7 percent share of China’s server market, putting it in 7th place, according to research firm IDC.

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TSMC’s FinFet Coming In 2015?

October 27, 2014 by  
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TSMC has announced that it will begin volume production of 16nm FinFET products in the second half of 2015, in late Q2 or early Q3.

For consumers, this means products based on TSMC 16nm FinFET silicon should appear in late 2015 and early 2016. The first TSMC 16nm FinFET product was announced a few weeks ago.

TSMC executive CC Wei said sales of 16nm FinFET products should account for 7-9% of the foundry’s total revenue in Q4 2015. The company already has more than 60 clients lined up for the new process and it expects 16nm FinFET to be its fastest growing process ever.

Although TSMC is not talking about the actual clients, we already know the roster looks like the who’s who of tech, with Qualcomm, AMD, Nvidia and Apple on board.

This also means the 20nm node will have a limited shelf life. The first 20nm products are rolling out as we speak, but the transition is slow and if TSMC sticks to its schedule, 20nm will be its top node for roughly a year, giving it much less time on top than earlier 28nm and 40nm nodes.

The road to 10nm

TSMC’s 16nm FinFET, or 16FinFET, is just part of the story. The company hopes to tape out the first 10nm products in 2015, but there is no clear timeframe yet.

Volume production of 10nm products is slated for 2016, most likely late 2016. As transitions speed up, TSMC capex will go up. The company expects to invest more than $10bn in 2015, up from $9.6bn this year.

TSMC expects global smartphone shipments to reach 1.5bn units next year, up 19 percent year-on-year. Needless to say, TSMC silicon will power the majority of them.

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Is The EU Going After Qualcomm

September 9, 2014 by  
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Qualcomm faces an antitrust investigation in Europe, even as it seeks to end a probe of its alleged monopoly practices in China.

Reuters reported that Qualcomm is looking for an amicable resolution of an investigation conducted by China’s National Development and Reform Commission (NDRC) over suspicions that it holds a monopoly in the Chinese telecoms market.

The investigation involves allegations that Qualcomm’s China subsidiary has been overcharging and exploiting its position in the wireless communications sector.

The antitrust probe of Qualcomm has been ongoing since last November, when the firm revealed that it was under investigation by the NDRC, though at the time it said the NDRC had not revealed the substance of the investigation.

In February, the NDRC declared it had received complaints against Qualcomm from the China Communications Industry Association, regarding its market position and patent fees it charged Chinese mobile phone manufacturers.

While the NDRC has ruled that Qualcomm does hold a monopoly in China, it has yet to decide whether the company has abused its position in the market.

Under China’s 2008 anti-monopoly laws, Qualcomm could face high fines, potentially topping $1bn.

In a statement to Reuters, Qualcomm said that it is seeking an amicable conclusion to the investigation. “Qualcomm executives discussed with NDRC officials several topics in an effort to reach a comprehensive resolution. We are continuing to cooperate with NDRC and cannot comment further,” the firm said.

Given that the NDRC is targeting at least another 30 foreign firms with antitrust investigations, including Microsoft and Volkswagen, critics have suggested that the monopoly law is being used to unfairly target overseas firms so that China can protect its native businesses.

Even if the China case is settled Qualcomm is now facing the prospect of a monopoly probe in Europe. Reuters has also reported the company could face a European Commission antitrust investigation following a complaint made four years ago by British software defined modem company Icera, a subsidiary of Nvidia.

Icera alleged that Qualcomm had engaged in anti-competitive behaviour by discouraging customers from doing businesses with Icera through patent related incentives and exclusionary pricing of chipsets.

While it was thought that the allegations had dropped from the European Commission’s agenda, the issue has resurfaced. It could even be fast-tracked following a similar monopoly case and subsequent fine made against Intel, which cost the company €1.1bn.

As yet, no official investigation has been opened by the European Comission. Qualcomm was contacted for a statement on both antitrust investigations, but the company has not yet responded.

Patents and their subsequent enforcement tend to play a major part in the technology industry as companies vie for market shares or state their supremacy. Qualcomm is no different, with the company having snapped up 2,400 patents from HP, including one for the now-defunct Palm technology, earlier this year.

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Is Snapdragon A Security Flaw?

August 21, 2014 by  
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Security researcher Dan Rosenberg has told a Black Hat conference how it is possible to permanently unlock the bootloader on Android phones – provided they use a Qualcomm Snapdragon chip.

Rosenberg said that the flaw is in ARM’s TrustZone technology, which runs a trusted operating system and another for normal apps. This is supposed to improve device security, but in Qualcomm’s implementation, they cocked it up. It means that if a hacker gets access to the trusted operation part of the chip, it can run whatever application he or she likes.

This affects all known Android devices with a Qualcomm Snapdragon SoC, including the Nexus 5, the HTC One, and Samsung’s Galaxy Note 3, as well as the Moto X. The Samsung Galaxy S5 and the HTC One M8 have already been patched.

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AMD Changes Kaveri

January 28, 2014 by  
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Since AMD officially launched its 4th generation A-Series Kaveri APUs and lifted the NDA veil from all press materials, we noticed that it has started to use a new term to define the structure of its new Kaveri APUs. As we reported last week, AMD is now talking about Compute Cores, which practically puts CPU and GPU cores on an equal footing, suggesting that there should not be any difference between them and that some tasks, previously limited to the CPU, can be done by the GPU as well.

If you take a look at the official AMD slide below which details the three new Kaveri APUs, the A10-7850K, A10-7700K and the A8-7600, you will notice that AMD lists the flagship as the APU with 12 Compute Cores or simply four CPU and eight GPU cores. Since the Kaveri APU is actually the first APU with HSA (Heterogeneous System Architecture) support, with hUMA, or equal memory access by both CPU and the GPU, heterogeneous queuing, which allows the GPU and CPU to have equal flexibility to create/dispatch work and an ability to talk about APU GFLOPS, or combined compute power of the entire APU, it makes sense for AMD to also talk about Compute Cores.

Of course, there are still some application specific tasks where the CPU or the GPU are much better, but, according to AMD, Kaveri is the first true APU, where the GPU is not just for gaming, it can actually do much more.

AMD Senior Manager Sasa Marinkovic, Technology lead for the Client Business Unit, said: “At AMD, we recognize that our customers often think of processors (CPUs) and graphics cards (GPUs) in terms of the number of cores that each product has. We have established a definition of the term “Compute Core” so that we are taking a consistent and transparent approach to describing the number of cores in our HSA-enabled APUs. A Compute Core can be either a CPU core or GPU core i.e. Kaveri can have up to 12 Compute Cores (4 CPU and 8 GPU).”

Although it does sound like a marketing gimmick, but actually is not due to HSA, it will definitely mark a new way for AMD to market/sell its APUs and it will definitely simplify the shopping experience for many casual buyers, more Compute Cores, more performance.

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Did Qualcomm Snub Intel?

December 24, 2013 by  
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Earlier this year Intel made a lot of noise about leasing its foundries to third parties, but at least one big played does not appear to be interested.

Speaking at a tech conference, Qualcomm CEO Paul Jacobs said his company is not interested in using Intel fabs and that it will continue to cooperate with established foundries like TSMC.

Jacobs argued that Intel is great at building huge volumes of equally huge cores, but TSMC is a tad more flexible. He pointed out that foundries like TSMC can run build multiple different products simultaneously, controlling the process using software.
“Intel is famous, has been known for having a copy-exact model, so they need very large volumes of a particular chip to run through that,” Jacobs said, reports ITProPortal.

However, Jacobs did point out that he was glad to hear Intel is joining the foundry space and that it will be interesting to see how it plays out.

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Is Qualcomm’s Adreno 400 Coming in 2014?

November 14, 2013 by  
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Qualcomm’s Adreno 330 GPU will be replaced by new Adreno 400-series parts and naturally the new generation will be faster than the one that sits inside the Snapdragon 800.

Our sources are telling us that Adreno 400 is expected with the new version of Snapdragon that is set to debut in early 2014. Traditionally Qualcomm uses CES to showcase its new chips and CES 2014 starts on January 7th, so it sounds like the right time for it.

The only key detail that we learned about Adreno 400 is that despite a significant increase in GPU performance the chip won’t have a compute part and it doesn’t support OpenCL. Many will see this as a handicap, but to be honest we see limited uses for OpenCL in mobile chips, at least for now.

Nvidia’s Logan comes with Open CL 1.1 as well as Open GL 4.4 support. Adreno 330 can push 3.6 Gigapixels a second making it one of the fastest GPUs in mobile market, capable of going head to head with the Tegra 4. Adreno 400 naturally ends up faster.

Then again we expect that Logan Tegra 5 has what it takes to dominate the mobile GPU market in 2014. Let’s not forget about PowerVR 6-series parts, ARM’s recently announced Mali 700-series or Vivante’s upcoming mobile GPU designs, either.

Unlike the AMD-Nvidia duopoly in the PC GPU market, right now there are five players vying for the top spot in the mobile space and things are bound to get interesting.

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