AMD, the chip rival for Intel has released “the fundamental Linux code” that is needed to develop open-source 3D-acceleration drivers for its R600 and R700 ATI graphic-processors series.
The news is intended for those who want to create drivers for potent GPU series of ATI Radeon HD 2x00, HD 3x00 (both R600), and Radeon HD 4x00 (R700). Also, unleash of open source code is good for Linux-lovers who have access to the R600/700’s 3D powers.
The announcement made by GPU to support the recently released open-source OpenCL 1.0 allowing GPU to be used for general-purpose computing (GPGPU), it is expected that GPUniverse is moving slowly toOpen Source Software (OSS) model.
The OSS future looks bright for GPUs. The segment was still new to AMD as Intel is open with its drivers. OSS development should proceed swiftly, both in 3D acceleration and GPGPU.
Showing posts with label gpu. Show all posts
Showing posts with label gpu. Show all posts
Core 2 processors with TDP desktop systems
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Despite the recent debut of solutions based on Nehalem architecture, marketed under the brand name of Core I7 few days, Intel seems not willing to stop the development of solutions Core 2 Duo systems for Socket 775 LGA least for the first part of 2009 .
The debut of some new cpu with Intel quad core architecture characterized by low levels of consumption of particular content, with maximum TDP in 65 Watt said.
The models are to debut Core 2 Quad Q9550, with clock frequency of 2.83 GHz and L2 cache of 12 Mbytes, Core 2 Quad Q9400 with clock of 2.66 GHz and 6 MB of L2 cache and Core 2 Quad Q8200 with clock of 2.33 GHz and L2 cache of 4 MB. For all these cpu are the same value as TDP quad pumped bus and by 1333 for MHz clock.he prices are respectively 369, 320 and 245 U.S. dollars excluding taxes.
The following versions of the processor that will be presented by Intel during the month of November.
Core 2 Extreme QX9300
Core 2 Quad Q9100
Core 2 Extreme X9100
Core 2 Duo T9600
Core 2 Duo P9500
Core 2 Duo T9400
Core 2 Duo P8600.
The debut of some new cpu with Intel quad core architecture characterized by low levels of consumption of particular content, with maximum TDP in 65 Watt said.
The models are to debut Core 2 Quad Q9550, with clock frequency of 2.83 GHz and L2 cache of 12 Mbytes, Core 2 Quad Q9400 with clock of 2.66 GHz and 6 MB of L2 cache and Core 2 Quad Q8200 with clock of 2.33 GHz and L2 cache of 4 MB. For all these cpu are the same value as TDP quad pumped bus and by 1333 for MHz clock.he prices are respectively 369, 320 and 245 U.S. dollars excluding taxes.
The following versions of the processor that will be presented by Intel during the month of November.
Core 2 Extreme QX9300
Core 2 Quad Q9100
Core 2 Extreme X9100
Core 2 Duo T9600
Core 2 Duo P9500
Core 2 Duo T9400
Core 2 Duo P8600.
AMD pushes Fusion platform to 2011
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AMD's executives gave an update of th company's progress toward profitability, products, marketing, manufacturing and operational initiatives on Thursday at the company's 2008 Financial Analyst Day in Sunnyvale, Calif.AMD has changed its original plans to introduce chips that combine CPU and and graphics cores to 2011, at a time where the when it will roll its first 32 nm products.
AMD pushes Fusion platform to 2011The company has canceled its plans to release in 2010 its first dual-core 45 nm processor that would combine graphics and x86 cores. Instead, AMD will inntroduce in 2010 a four-core notebook processor in a BGA package.
AMD's "rival" Intel is expected to release a notebook processor that includes a graphics core in the end of 2009.AMD's first 32 nm processors will be delivered in 2011. The Orochi (UMPC/notebook) and Llano (mainstream desktop/notebook) chips will be the first to use AMD's next-generation Bulldozer core. The desktop chips will have four x86 cores and support four to eight Mbytes cache and DDR3 memory. The Llano chip will also include a graphics core.
Also in 2011, AMD will deliver Ontario, a 32nkm notebook chip with two x86 and one graphics core, supporting DDR3 memory.
Desktop/notebook Roadmap 2009-2010
AMD also provided details bout the CPU roadmap for mobile and desktop PCs for 2009/2010.
In 2009, the 45nm quad-core "Deneb" CPU (8m cache, DDR2/3) will power the entusiast desktop platforms. The "Propos" quad-core chips will be also available at that time featuring 2MB of cache and they will be found at mainstearm desktop PCs.
In the notebook segment for clients, AMD will release in 2009 the new 2-core "Caspian" CPU (2MB cache, DDR2) followed by the quad-core "Champlain" CPU (2MB cache, DDR3) in 2010. For ultramobiles, AMd prepares the "Conesus" (2-core, 1M cache, DDR2) chip for 2009 and the "Geneva" (2-core, 2M cache, DDR3) chip one year later.
Broad Software Ecosystem Support from AMD
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AMD today announced ecosystem support by leading x86 operating system (OS) and virtualization partners for the new Quad-Core AMD Opteron processor, codenamed “Shanghai.” Built on 45nm process technology, the enhanced processor will offer innovations for AMD software partners like Microsoft, Red Hat, Sun Microsystems and VMware specifically designed to improve OS and virtualization performance. Strategic improvements in comparison to 65nm Quad-Core AMD Opteron processors include a larger L3 memory cache, and features designed to further optimize application performance in virtualized environments. The new AMD Opteron processor is uniquely architected to handle more memory-intensive applications while also enabling customers of all sizes to operate a flexible and scalable IT infrastructure.
“AMD is seeing rapid industry growth and demand for cutting edge technologies such as cloud computing and virtualization,” said Earl Stahl, vice president, Software Development, AMD. “As a result of our ongoing collaboration with software partners, AMD customers can soon easily upgrade to the new Quad-Core AMD Opteron processor. Enterprise customers can leverage the ongoing enhanced performance and features like AMD Virtualization (AMD-V) technology that AMD continues to deliver, while protecting the investments made to their current software infrastructure.”With more companies turning to virtualization to help improve data center efficiency and costs, AMD designed the new AMD Opteron processor to deliver a robust platform that can manage customers’ most demanding workloads, such as web hosting and complex database management, helping to maximize the business benefits of virtualization.
ISV Ecosystem Support
By collaborating with leading OS and virtual infrastructure vendors to help ensure applications are optimized for the new Quad-Core AMD Opteron processor, AMD is providing customers with greater opportunity to utilize the software solutions that best meet the needs of their businesses.
“With the adoption of Microsoft Windows Server 2008 Hyper-V to address customers’ infrastructure virtualization needs, it’s exciting to see the new Quad-Core AMD Opteron processor coming to market to help improve the performance and scalability of virtualized environments and help provide power savings benefits for customers,” said Mike Schutz, director of product management, Windows Server virtualization at Microsoft. “We look forward to continuing to work closely with AMD to help customers utilize virtualization technologies and enable businesses of all sizes to make the most of their IT investments.”
“Red Hat is committed to bringing performance, reliability and security to our customers as they expand their use of open source virtualization throughout the enterprise,” said Brian Stevens, CTO at Red Hat. “As evidenced by our recent collaboration with AMD on live migration technology, Red Hat continues to deliver business value to customers via high-performance, standards-based virtualization solutions for heterogeneous environments.”
“Sun is committed to working with AMD to include optimization and tuning advancements in the Sun xVM virtualization software portfolio in order to meet the desktop and server virtualization requirements of our customers,” said Jim McHugh, vice president of marketing, Datacenter, Sun Microsystems. “Sun xVM Server, a datacenter-grade server virtualization solution, runs on 45 nm Quad-Core AMD Opteron™ processor-based systems and offers customers the ability to virtualize and manage heterogeneous workloads, including Windows, Linux and Solaris™ operating systems, as guests. Sun xVM Server is an easy-to-use, open source hypervisor that enables a simplified and secure environment for our customers.”
“The VMware platform helps AMD customers to minimize capital and operating costs, increase availability of mission-critical applications, and promote energy efficiencies,” said Shekar Ayyar, vice president of infrastructure alliances, VMware. “The advanced virtualization features in the new Quad-Core AMD Opteron processors, such as AMD Extended Migration and AMD-V with Rapid Virtualization Indexing, can extend those benefits to optimize application performance in VMware virtualized environments.”
AMD also recognizes support for its forthcoming and current Quad-Core AMD Opteron processors from software and virtualization partners such as Parallels, Transitive and Virtual Iron. For more information about the software support of the Quad-Core AMD Opteron processor. source
“AMD is seeing rapid industry growth and demand for cutting edge technologies such as cloud computing and virtualization,” said Earl Stahl, vice president, Software Development, AMD. “As a result of our ongoing collaboration with software partners, AMD customers can soon easily upgrade to the new Quad-Core AMD Opteron processor. Enterprise customers can leverage the ongoing enhanced performance and features like AMD Virtualization (AMD-V) technology that AMD continues to deliver, while protecting the investments made to their current software infrastructure.”With more companies turning to virtualization to help improve data center efficiency and costs, AMD designed the new AMD Opteron processor to deliver a robust platform that can manage customers’ most demanding workloads, such as web hosting and complex database management, helping to maximize the business benefits of virtualization.
ISV Ecosystem Support
By collaborating with leading OS and virtual infrastructure vendors to help ensure applications are optimized for the new Quad-Core AMD Opteron processor, AMD is providing customers with greater opportunity to utilize the software solutions that best meet the needs of their businesses.
“With the adoption of Microsoft Windows Server 2008 Hyper-V to address customers’ infrastructure virtualization needs, it’s exciting to see the new Quad-Core AMD Opteron processor coming to market to help improve the performance and scalability of virtualized environments and help provide power savings benefits for customers,” said Mike Schutz, director of product management, Windows Server virtualization at Microsoft. “We look forward to continuing to work closely with AMD to help customers utilize virtualization technologies and enable businesses of all sizes to make the most of their IT investments.”
“Red Hat is committed to bringing performance, reliability and security to our customers as they expand their use of open source virtualization throughout the enterprise,” said Brian Stevens, CTO at Red Hat. “As evidenced by our recent collaboration with AMD on live migration technology, Red Hat continues to deliver business value to customers via high-performance, standards-based virtualization solutions for heterogeneous environments.”
“Sun is committed to working with AMD to include optimization and tuning advancements in the Sun xVM virtualization software portfolio in order to meet the desktop and server virtualization requirements of our customers,” said Jim McHugh, vice president of marketing, Datacenter, Sun Microsystems. “Sun xVM Server, a datacenter-grade server virtualization solution, runs on 45 nm Quad-Core AMD Opteron™ processor-based systems and offers customers the ability to virtualize and manage heterogeneous workloads, including Windows, Linux and Solaris™ operating systems, as guests. Sun xVM Server is an easy-to-use, open source hypervisor that enables a simplified and secure environment for our customers.”
“The VMware platform helps AMD customers to minimize capital and operating costs, increase availability of mission-critical applications, and promote energy efficiencies,” said Shekar Ayyar, vice president of infrastructure alliances, VMware. “The advanced virtualization features in the new Quad-Core AMD Opteron processors, such as AMD Extended Migration and AMD-V with Rapid Virtualization Indexing, can extend those benefits to optimize application performance in VMware virtualized environments.”
AMD also recognizes support for its forthcoming and current Quad-Core AMD Opteron processors from software and virtualization partners such as Parallels, Transitive and Virtual Iron. For more information about the software support of the Quad-Core AMD Opteron processor. source
Intel shows working 80-core processor
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Last year, Intel announced a project to build a processor that would pack no less than 80 cores. While the idea may seem rather futuristic to some, the chip maker is reported to have already demonstrated the CPU at the Gitex Dubai trade show. Reports say that the Santa Clara based company wasn't shy at all at showcasing the processor, with the demonstration being made in the general public area outside of the trade show.
As we all know, Intel has other multi-core projects in the pipeline, and Larrabee is one of them. However, the showcased processor was not Larrabee, but another CPU. The company is said to have started working on this CPU long before Larrabee came into play. The showcased CPU features 80 small cores, and is able to deliver 1 Teraflops of computing power. The 80-core chip is said to need only 78.35W of power, and that it features a 3.13GHz clock speed.
According to Fudzilla, Intel also detailed several other features of the CPU. The technology it comes with allows for almost all of the cores to be totally shut down when not needed. Also, it seems that the CPU can downclock all the way to 780MHz in such situations, and that the peak Teraflops performance will drop to 0.01. The CPU would only need 6.45W to compute the 4tile, 4x4 matrix mult withcomm equation.The research processor was built under the 65nm process and the company expects it to be ready for the market in the next five or seven years. It seems that Intel will come out with this eighty-core CPU as a part of the future line of sixteen, thirty two, sixty four CPUs, right before a ninety six-core version. The chip manufacturer considers the multi-core as being the near future for the CPU industry, although such an approach might sound rather idealistic.
Since the current multi-core processors are already facing problems concerning the lack of adequate software able to scale on a large number of cores, Intel should also consider conducting a research project in this area as well, so as to allow users to benefit from all the eighty featured cores.
As we all know, Intel has other multi-core projects in the pipeline, and Larrabee is one of them. However, the showcased processor was not Larrabee, but another CPU. The company is said to have started working on this CPU long before Larrabee came into play. The showcased CPU features 80 small cores, and is able to deliver 1 Teraflops of computing power. The 80-core chip is said to need only 78.35W of power, and that it features a 3.13GHz clock speed.
According to Fudzilla, Intel also detailed several other features of the CPU. The technology it comes with allows for almost all of the cores to be totally shut down when not needed. Also, it seems that the CPU can downclock all the way to 780MHz in such situations, and that the peak Teraflops performance will drop to 0.01. The CPU would only need 6.45W to compute the 4tile, 4x4 matrix mult withcomm equation.The research processor was built under the 65nm process and the company expects it to be ready for the market in the next five or seven years. It seems that Intel will come out with this eighty-core CPU as a part of the future line of sixteen, thirty two, sixty four CPUs, right before a ninety six-core version. The chip manufacturer considers the multi-core as being the near future for the CPU industry, although such an approach might sound rather idealistic.
Since the current multi-core processors are already facing problems concerning the lack of adequate software able to scale on a large number of cores, Intel should also consider conducting a research project in this area as well, so as to allow users to benefit from all the eighty featured cores.
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Cooler Master Hyper Z600
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When you're looking for a silent cooler for your high-end PC or you want to overclock your CPU to it's maximum sooner or later you'll find yourself buying an expensive water based cooling system or a huge heat pipe cooler. In these days coolers like these are becoming easier to find. Some brands are a bit more interesting to the consumers though, because of their high availability, good reputation and balanced price (if possible), and that's the case with Cooler Master and their new cooler Hyper Z600, which very recently became available.
Cooler Master are the definite veterans in cooling technology. The brand is well known around the world and their products can be found in most PC stores. Aside from CPU coolers and full PC cooling solutions, the company also manufactures PC cases, PSUs, modding accessories, and many other things, and is a partner of NVIDIA and many other manufacturers, assisting them in the manufacture of coolers, cases and accessories for their products. Adding those things together makes the expectations for a top quality product logical. And that's exactly what Hyper Z600 is.Cooler Master Hyper Z600 comes well packed in it's cardboard box, wrapped with even more cardboard and a fine synthetic fiber, which helps the radiator fins stay intact even during it's extraction from the box.The size of Hyper Z600 isn't accidental. It's meant to be passive. It's no coincidence that it comes w/o a ventilator and that it has such dimestions. In a modern PC case the CPU cooler rests just below the PSU and often next to another ventilator that pulls air outside the box from behind. The X-Shape design of the Cooler Master Hyper Z600 allows easy airflow from every direction, so the whole work of creating a steady airflow to cool the CPU goes to the PSU this time (especially modern PSUs with a 120mm vent inside) and the rear vent. Of course the 6 heat pipes "take the blame" for supplying the fins with equal heat from each side.
Cooler Master are the definite veterans in cooling technology. The brand is well known around the world and their products can be found in most PC stores. Aside from CPU coolers and full PC cooling solutions, the company also manufactures PC cases, PSUs, modding accessories, and many other things, and is a partner of NVIDIA and many other manufacturers, assisting them in the manufacture of coolers, cases and accessories for their products. Adding those things together makes the expectations for a top quality product logical. And that's exactly what Hyper Z600 is.Cooler Master Hyper Z600 comes well packed in it's cardboard box, wrapped with even more cardboard and a fine synthetic fiber, which helps the radiator fins stay intact even during it's extraction from the box.The size of Hyper Z600 isn't accidental. It's meant to be passive. It's no coincidence that it comes w/o a ventilator and that it has such dimestions. In a modern PC case the CPU cooler rests just below the PSU and often next to another ventilator that pulls air outside the box from behind. The X-Shape design of the Cooler Master Hyper Z600 allows easy airflow from every direction, so the whole work of creating a steady airflow to cool the CPU goes to the PSU this time (especially modern PSUs with a 120mm vent inside) and the rear vent. Of course the 6 heat pipes "take the blame" for supplying the fins with equal heat from each side.
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