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Xilinx and IBM Partner to Deliver FPGA-Based Acceleration in the SuperVessel OpenPOWER Development Cloud
Supervessel is for FPGA acceleration using C, C++ and OpenCL.
Includes Xilinx SDAccel development environment
Xilinx announced that it will accelerate FPGA-based acceleration in the IBM SuperVessel OpenPOWER development cloud. Performance-intensive applications such as big data analytics and machine learning on SuperVessel will utilize the Xilinx SDAccel™ development environment.
SDAccel allows application developers to create algorithms in OpenCL™, C, and C++ and compile them directly onto Xilinx FPGA-based accelerator boards. This management environment is expected to accelerate the development of FPGA-based applications and further improve accessibility for the global developer community.
SuperVessel is the first open-access cloud service that serves as a virtual R&D engine for application developers, system designers, and academic researchers to build, test, and pilot solutions for cutting-edge applications such as deep analytics, machine learning, and the Internet of Things (IoT).

The Xilinx SDAccel development environment is a complete software-defined integrated development environment (IDE) that enables developers to compile, profile, debug, and deploy FPGA-based acceleration.
The SuperVessel, IBM POWER architecture, SDAccel development environment, and Xilinx FPGA accelerator boards combine to provide a high-throughput, high-availability, cloud-based platform for application developers to develop and run high-performance applications.
“SDAccel on SuperVessel Cloud is a critical enabler for developers to more easily develop and accelerate applications using FPGAs,” said Sumit Gupta, vice president of high-performance computing and data analytics at IBM.
“Using SDAccel on SuperVessel represents another breakthrough in application acceleration development on the IBM POWER architecture,” said Andy Walsh, senior vice president and general manager of the Data Center Business Unit at Xilinx. “This will provide a very interesting solution for those looking to accelerate modern data center applications,” he said, adding, “It already shows tremendous potential for accelerating data center workloads.”
Includes Xilinx SDAccel development environment
Xilinx announced that it will accelerate FPGA-based acceleration in the IBM SuperVessel OpenPOWER development cloud. Performance-intensive applications such as big data analytics and machine learning on SuperVessel will utilize the Xilinx SDAccel™ development environment.
SDAccel allows application developers to create algorithms in OpenCL™, C, and C++ and compile them directly onto Xilinx FPGA-based accelerator boards. This management environment is expected to accelerate the development of FPGA-based applications and further improve accessibility for the global developer community.
SuperVessel is the first open-access cloud service that serves as a virtual R&D engine for application developers, system designers, and academic researchers to build, test, and pilot solutions for cutting-edge applications such as deep analytics, machine learning, and the Internet of Things (IoT).
The Xilinx SDAccel development environment is a complete software-defined integrated development environment (IDE) that enables developers to compile, profile, debug, and deploy FPGA-based acceleration.
The SuperVessel, IBM POWER architecture, SDAccel development environment, and Xilinx FPGA accelerator boards combine to provide a high-throughput, high-availability, cloud-based platform for application developers to develop and run high-performance applications.
“SDAccel on SuperVessel Cloud is a critical enabler for developers to more easily develop and accelerate applications using FPGAs,” said Sumit Gupta, vice president of high-performance computing and data analytics at IBM.
“Using SDAccel on SuperVessel represents another breakthrough in application acceleration development on the IBM POWER architecture,” said Andy Walsh, senior vice president and general manager of the Data Center Business Unit at Xilinx. “This will provide a very interesting solution for those looking to accelerate modern data center applications,” he said, adding, “It already shows tremendous potential for accelerating data center workloads.”
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