Associative capabilities for mass storage through array organization

A. Peskin
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引用次数: 3

Abstract

Since computers first came into wide usage, digital systems designers have been intrigued by the possibilities of associative or content addressable memories. The concept is quite easy to understand; whereas, in the conventional case, the address is furnished to the memory and the data stored at that location is the expected result, in the associative reference, the data is furnished and the expected result is a list of all addresses which contain matching data. Up to now, however, the physical systems which exhibit the requisite symmetry to realize this concept have been necessarily very costly because the commonly used, low cost, random access memories do not easily lend themselves to this new operation. Those digital systems designers who predicted widespread use of associative memories by the late 1960's are found in retrospect to have seriously underestimated the difficulty in implementing thin magnetic film or superconducting memory systems, on which these forecasts heavily depended.
通过阵列组织进行大容量存储的关联能力
自从计算机第一次被广泛使用以来,数字系统设计师就对联想存储器或内容寻址存储器的可能性很感兴趣。这个概念很容易理解;然而,在常规情况下,地址被提供给内存,存储在该位置的数据是预期结果,在关联引用中,数据被提供,预期结果是包含匹配数据的所有地址的列表。然而,到目前为止,表现出必要的对称性来实现这一概念的物理系统必须非常昂贵,因为常用的低成本随机存取存储器不容易适合这种新的操作。回想起来,那些预测到20世纪60年代末联想记忆将被广泛使用的数字系统设计者们,发现他们严重低估了实现磁性薄膜或超导存储系统的难度,而这些预测在很大程度上依赖于这些系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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