The Experts below are selected from a list of 63 Experts worldwide ranked by ideXlab platform
Nicholas Fullagar - One of the best experts on this subject based on the ideXlab platform.
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IEEE Symposium on Security and Privacy - Native Client: A Sandbox for Portable, Untrusted x86 Native Code
2009 30th IEEE Symposium on Security and Privacy, 2009Co-Authors: David Sehr, Gregory Dardyk, J. Bradley Chen, Tavis Ormandy, Shiki Okasaka, Robert Muth, Neha Narula, Nicholas FullagarAbstract:This paper describes the design, implementation and evaluation of Native Client, a sandbox for untrusted x86 native code. Native Client aims to give browser-based applications the computational performance of native applications without compromising safety. Native Client uses software fault isolation and a secure runtime to direct system interaction and side effects through interfaces managed by Native Client. Native Client provides operating system portability for binary code while supporting performance-oriented features generally absent from web application programming environments, such as thread support, instruction set extensions such as SSE, and use of Compiler Intrinsics and hand-coded assembler. We combine these properties in an open architecture that encourages community review and 3rd-party tools.
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Native client: A sandbox for portable, untrusted x86 native code
Proceedings - IEEE Symposium on Security and Privacy, 2009Co-Authors: Bennet Yee, David Sehr, Gregory Dardyk, J. Bradley Chen, Tavis Ormandy, Shiki Okasaka, Robert Muth, Neha Narula, Nicholas FullagarAbstract:This paper describes the design, implementation and evaluation of Native Client, a sandbox for untrusted x86 native code. Native Client aims to give browser-based applications the computational performance of native applications without compromising safety. Native Client uses software fault isolation and a secure runtime to direct system interaction and side effects through interfaces managed by Native Client. Native Client provides operating system portability for binary code while supporting performance-oriented features generally absent from Web application programming environments, such as thread support, instruction set extensions such as SSE, and use of Compiler Intrinsics and hand-coded assembler. We combine these properties in an open architecture that encourages community review and 3rd-party tools.
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Will appear in the 2009 IEEE Symposium on Security and Privacy Native Client: A Sandbox for Portable, Untrusted x86 Native Code
2009Co-Authors: David Sehr, Gregory Dardyk, J. Bradley Chen, Tavis Ormandy, Shiki Okasaka, Robert Muth, Neha Narula, Nicholas FullagarAbstract:This paper describes the design, implementation and evaluation of Native Client, a sandbox for untrusted x86 native code. Native Client aims to give browser-based applications the computational performance of native applications without compromising safety. Native Client uses software fault isolation and a secure runtime to direct system interaction and side effects through interfaces managed by Native Client. Native Client provides operating system portability for binary code while supporting performance-oriented features generally absent from web application programming environments, such as thread support, instruction set extensions such as SSE, and use of Compiler Intrinsics and hand-coded assembler. We combine these properties in an open architecture that encourages community review and 3rd-party tools.
David Sehr - One of the best experts on this subject based on the ideXlab platform.
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IEEE Symposium on Security and Privacy - Native Client: A Sandbox for Portable, Untrusted x86 Native Code
2009 30th IEEE Symposium on Security and Privacy, 2009Co-Authors: David Sehr, Gregory Dardyk, J. Bradley Chen, Tavis Ormandy, Shiki Okasaka, Robert Muth, Neha Narula, Nicholas FullagarAbstract:This paper describes the design, implementation and evaluation of Native Client, a sandbox for untrusted x86 native code. Native Client aims to give browser-based applications the computational performance of native applications without compromising safety. Native Client uses software fault isolation and a secure runtime to direct system interaction and side effects through interfaces managed by Native Client. Native Client provides operating system portability for binary code while supporting performance-oriented features generally absent from web application programming environments, such as thread support, instruction set extensions such as SSE, and use of Compiler Intrinsics and hand-coded assembler. We combine these properties in an open architecture that encourages community review and 3rd-party tools.
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Native client: A sandbox for portable, untrusted x86 native code
Proceedings - IEEE Symposium on Security and Privacy, 2009Co-Authors: Bennet Yee, David Sehr, Gregory Dardyk, J. Bradley Chen, Tavis Ormandy, Shiki Okasaka, Robert Muth, Neha Narula, Nicholas FullagarAbstract:This paper describes the design, implementation and evaluation of Native Client, a sandbox for untrusted x86 native code. Native Client aims to give browser-based applications the computational performance of native applications without compromising safety. Native Client uses software fault isolation and a secure runtime to direct system interaction and side effects through interfaces managed by Native Client. Native Client provides operating system portability for binary code while supporting performance-oriented features generally absent from Web application programming environments, such as thread support, instruction set extensions such as SSE, and use of Compiler Intrinsics and hand-coded assembler. We combine these properties in an open architecture that encourages community review and 3rd-party tools.
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Will appear in the 2009 IEEE Symposium on Security and Privacy Native Client: A Sandbox for Portable, Untrusted x86 Native Code
2009Co-Authors: David Sehr, Gregory Dardyk, J. Bradley Chen, Tavis Ormandy, Shiki Okasaka, Robert Muth, Neha Narula, Nicholas FullagarAbstract:This paper describes the design, implementation and evaluation of Native Client, a sandbox for untrusted x86 native code. Native Client aims to give browser-based applications the computational performance of native applications without compromising safety. Native Client uses software fault isolation and a secure runtime to direct system interaction and side effects through interfaces managed by Native Client. Native Client provides operating system portability for binary code while supporting performance-oriented features generally absent from web application programming environments, such as thread support, instruction set extensions such as SSE, and use of Compiler Intrinsics and hand-coded assembler. We combine these properties in an open architecture that encourages community review and 3rd-party tools.
Robert Muth - One of the best experts on this subject based on the ideXlab platform.
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IEEE Symposium on Security and Privacy - Native Client: A Sandbox for Portable, Untrusted x86 Native Code
2009 30th IEEE Symposium on Security and Privacy, 2009Co-Authors: David Sehr, Gregory Dardyk, J. Bradley Chen, Tavis Ormandy, Shiki Okasaka, Robert Muth, Neha Narula, Nicholas FullagarAbstract:This paper describes the design, implementation and evaluation of Native Client, a sandbox for untrusted x86 native code. Native Client aims to give browser-based applications the computational performance of native applications without compromising safety. Native Client uses software fault isolation and a secure runtime to direct system interaction and side effects through interfaces managed by Native Client. Native Client provides operating system portability for binary code while supporting performance-oriented features generally absent from web application programming environments, such as thread support, instruction set extensions such as SSE, and use of Compiler Intrinsics and hand-coded assembler. We combine these properties in an open architecture that encourages community review and 3rd-party tools.
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Native client: A sandbox for portable, untrusted x86 native code
Proceedings - IEEE Symposium on Security and Privacy, 2009Co-Authors: Bennet Yee, David Sehr, Gregory Dardyk, J. Bradley Chen, Tavis Ormandy, Shiki Okasaka, Robert Muth, Neha Narula, Nicholas FullagarAbstract:This paper describes the design, implementation and evaluation of Native Client, a sandbox for untrusted x86 native code. Native Client aims to give browser-based applications the computational performance of native applications without compromising safety. Native Client uses software fault isolation and a secure runtime to direct system interaction and side effects through interfaces managed by Native Client. Native Client provides operating system portability for binary code while supporting performance-oriented features generally absent from Web application programming environments, such as thread support, instruction set extensions such as SSE, and use of Compiler Intrinsics and hand-coded assembler. We combine these properties in an open architecture that encourages community review and 3rd-party tools.
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Will appear in the 2009 IEEE Symposium on Security and Privacy Native Client: A Sandbox for Portable, Untrusted x86 Native Code
2009Co-Authors: David Sehr, Gregory Dardyk, J. Bradley Chen, Tavis Ormandy, Shiki Okasaka, Robert Muth, Neha Narula, Nicholas FullagarAbstract:This paper describes the design, implementation and evaluation of Native Client, a sandbox for untrusted x86 native code. Native Client aims to give browser-based applications the computational performance of native applications without compromising safety. Native Client uses software fault isolation and a secure runtime to direct system interaction and side effects through interfaces managed by Native Client. Native Client provides operating system portability for binary code while supporting performance-oriented features generally absent from web application programming environments, such as thread support, instruction set extensions such as SSE, and use of Compiler Intrinsics and hand-coded assembler. We combine these properties in an open architecture that encourages community review and 3rd-party tools.
Gregory Dardyk - One of the best experts on this subject based on the ideXlab platform.
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IEEE Symposium on Security and Privacy - Native Client: A Sandbox for Portable, Untrusted x86 Native Code
2009 30th IEEE Symposium on Security and Privacy, 2009Co-Authors: David Sehr, Gregory Dardyk, J. Bradley Chen, Tavis Ormandy, Shiki Okasaka, Robert Muth, Neha Narula, Nicholas FullagarAbstract:This paper describes the design, implementation and evaluation of Native Client, a sandbox for untrusted x86 native code. Native Client aims to give browser-based applications the computational performance of native applications without compromising safety. Native Client uses software fault isolation and a secure runtime to direct system interaction and side effects through interfaces managed by Native Client. Native Client provides operating system portability for binary code while supporting performance-oriented features generally absent from web application programming environments, such as thread support, instruction set extensions such as SSE, and use of Compiler Intrinsics and hand-coded assembler. We combine these properties in an open architecture that encourages community review and 3rd-party tools.
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Native client: A sandbox for portable, untrusted x86 native code
Proceedings - IEEE Symposium on Security and Privacy, 2009Co-Authors: Bennet Yee, David Sehr, Gregory Dardyk, J. Bradley Chen, Tavis Ormandy, Shiki Okasaka, Robert Muth, Neha Narula, Nicholas FullagarAbstract:This paper describes the design, implementation and evaluation of Native Client, a sandbox for untrusted x86 native code. Native Client aims to give browser-based applications the computational performance of native applications without compromising safety. Native Client uses software fault isolation and a secure runtime to direct system interaction and side effects through interfaces managed by Native Client. Native Client provides operating system portability for binary code while supporting performance-oriented features generally absent from Web application programming environments, such as thread support, instruction set extensions such as SSE, and use of Compiler Intrinsics and hand-coded assembler. We combine these properties in an open architecture that encourages community review and 3rd-party tools.
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Will appear in the 2009 IEEE Symposium on Security and Privacy Native Client: A Sandbox for Portable, Untrusted x86 Native Code
2009Co-Authors: David Sehr, Gregory Dardyk, J. Bradley Chen, Tavis Ormandy, Shiki Okasaka, Robert Muth, Neha Narula, Nicholas FullagarAbstract:This paper describes the design, implementation and evaluation of Native Client, a sandbox for untrusted x86 native code. Native Client aims to give browser-based applications the computational performance of native applications without compromising safety. Native Client uses software fault isolation and a secure runtime to direct system interaction and side effects through interfaces managed by Native Client. Native Client provides operating system portability for binary code while supporting performance-oriented features generally absent from web application programming environments, such as thread support, instruction set extensions such as SSE, and use of Compiler Intrinsics and hand-coded assembler. We combine these properties in an open architecture that encourages community review and 3rd-party tools.
J. Bradley Chen - One of the best experts on this subject based on the ideXlab platform.
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IEEE Symposium on Security and Privacy - Native Client: A Sandbox for Portable, Untrusted x86 Native Code
2009 30th IEEE Symposium on Security and Privacy, 2009Co-Authors: David Sehr, Gregory Dardyk, J. Bradley Chen, Tavis Ormandy, Shiki Okasaka, Robert Muth, Neha Narula, Nicholas FullagarAbstract:This paper describes the design, implementation and evaluation of Native Client, a sandbox for untrusted x86 native code. Native Client aims to give browser-based applications the computational performance of native applications without compromising safety. Native Client uses software fault isolation and a secure runtime to direct system interaction and side effects through interfaces managed by Native Client. Native Client provides operating system portability for binary code while supporting performance-oriented features generally absent from web application programming environments, such as thread support, instruction set extensions such as SSE, and use of Compiler Intrinsics and hand-coded assembler. We combine these properties in an open architecture that encourages community review and 3rd-party tools.
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Native client: A sandbox for portable, untrusted x86 native code
Proceedings - IEEE Symposium on Security and Privacy, 2009Co-Authors: Bennet Yee, David Sehr, Gregory Dardyk, J. Bradley Chen, Tavis Ormandy, Shiki Okasaka, Robert Muth, Neha Narula, Nicholas FullagarAbstract:This paper describes the design, implementation and evaluation of Native Client, a sandbox for untrusted x86 native code. Native Client aims to give browser-based applications the computational performance of native applications without compromising safety. Native Client uses software fault isolation and a secure runtime to direct system interaction and side effects through interfaces managed by Native Client. Native Client provides operating system portability for binary code while supporting performance-oriented features generally absent from Web application programming environments, such as thread support, instruction set extensions such as SSE, and use of Compiler Intrinsics and hand-coded assembler. We combine these properties in an open architecture that encourages community review and 3rd-party tools.
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Will appear in the 2009 IEEE Symposium on Security and Privacy Native Client: A Sandbox for Portable, Untrusted x86 Native Code
2009Co-Authors: David Sehr, Gregory Dardyk, J. Bradley Chen, Tavis Ormandy, Shiki Okasaka, Robert Muth, Neha Narula, Nicholas FullagarAbstract:This paper describes the design, implementation and evaluation of Native Client, a sandbox for untrusted x86 native code. Native Client aims to give browser-based applications the computational performance of native applications without compromising safety. Native Client uses software fault isolation and a secure runtime to direct system interaction and side effects through interfaces managed by Native Client. Native Client provides operating system portability for binary code while supporting performance-oriented features generally absent from web application programming environments, such as thread support, instruction set extensions such as SSE, and use of Compiler Intrinsics and hand-coded assembler. We combine these properties in an open architecture that encourages community review and 3rd-party tools.