有关PVFS有一件好的事情:不需做任何修改就可以在其上运行普通文件系统的二进制形式——这在并行编程领域多少是个例外。
A good thing about PVFS is that it allows binaries meant for regular filesystems to run on it without modification — this is somewhat of an exception in the parallel programming arena.
它采用二进制计数器以把被乘数由并行形式转换成脉冲序列形式。
It USES binary counters for the conversion of the multiplicand from parallel to pulse-train form.
本文提出了一种能实时完成二进制逻辑运算的光学并行处理系统,并给出了作为半加法器的实验结果。
A real time optical logic processor is presented, that can perform binary logic operations in parallel. Experimental result is given of the system as a half adder.
Subversion (SVN)是一种开源的版本控制系统,它为源文件、脚本、二进制文件和其它文件类型的存储、访问和并行开发提供便利。
Subversion (SVN) is an open source version control system that facilitates storage, access, and parallel development of source, scripts, binaries, and other file types.
基于符号数字负二进制表达,提出了任意字长操作数的并行两步加法与一步减法。
Based on sign digit negabinary representation, the two step addition and one step subtraction of arbitrary length operands can be performed.
考虑到血液保障组织系统系统中资源的特殊性,编码方式采用二进制编码,并行模型为粗粒度并行模型。
In view of resource particularity in wartime information systems of blood security organizations, binary system coding mode and coarse granularity parallel model were adopted.
它所具有的阈值分解和堆栈两个重要性质保证了滤波过程可以在二进制域并行实现。
Those have two important properties: the threshold decomposition and the stack properties, which ensure that the filtering process go on in binary field parallelly.
将剩余数系统算术和冗余二进制表示算术相结合,提出了一种并行实现乘法器的算法,这种算法不仅具有溢出检测功能,而且具有容错能力。
An algorithm for the parallel realization of multiplier is presented in this paper by combining redundant Residue Number System (RRNS) with redundant binary represent.
研究了二进制多操作数并行加法问题。
堆栈滤波器的特点是具有阈值分解和堆栈特性,这两个重要性质将滤波过程转化到二进制运算,易于VLSI 并行实现。
These two important properties ensure that thefiltering go on in binary filed only with easy comparison, addition and multiplication, which allow an efficient VLSI implementation.
堆栈滤波器的特点是具有阈值分解和堆栈特性,这两个重要性质将滤波过程转化到二进制运算,易于VLSI 并行实现。
These two important properties ensure that thefiltering go on in binary filed only with easy comparison, addition and multiplication, which allow an efficient VLSI implementation.
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