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64-Bit - Programming and Assembly Issues

Thorsten Schneider

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Abstract

The 64-Bit technology introduces several new and and complex tasks for software-developers. Even that the hardware developing industry claims that future software development should take care about the new introduced compiler systems, it is necessary to have a deep inside view on how the new underlaying 64-Bit assembly language works. This paper describes what 64-Bit means for future software devlopments, how 64-Bit influences assembly programming and how to port applications programmed under 32-Bit to 64-Bit. It is heavy based on the IA architecture and the Windows R operationsys

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The 64-Bit technology introduces several new and and complex tasks for software-developers. Even that the hardware developing industry claims that future software development should take care about the new introduced compiler systems, it is necessary to have a deep inside view on how the new underlaying 64-Bit assembly language works. This paper describes what 64-Bit means for future software devlopments, how 64-Bit influences assembly programming and how to port applications programmed under 32-Bit to 64-Bit. It is heavy based on the IA architecture and the Windows R operationsys

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Available abstract

The 64-Bit technology introduces several new and and complex tasks for software-developers. Even that the hardware developing industry claims that future software development should take care about the new introduced compiler systems, it is necessary to have a deep inside view on how the new underlaying 64-Bit assembly language works. This paper describes what 64-Bit means for future software devlopments, how 64-Bit influences assembly programming and how to port applications programmed under 32-Bit to 64-Bit. It is heavy based on the IA architecture and the Windows R operationsys

Key concepts: Bit (key), Computer science, Compiler, Assembly language, Software, 32-bit, Programming language, Computer architecture

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