Experience in the design, implementation and use of PL-11, a programming language for the PDP-11

R. Russell
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引用次数: 2

Abstract

PL-11 is a programming language for the PDP-11 family of computers designed and implemented as part of the OMEGA Project at CERN (the European Organization for Nuclear Research). Its purpose is to provide an effective tool for both physicists and systems programmers to use in building real-time data acquisition systems that are online to high-energy physics experiments. It is a fairly typical member of the PL-class of programming languages (44) which are based on the initial design of PL360 (41) (See Table 1). Each of these languages represents a linguistic model of its specific machine architecture, thereby providing a Systems Implementation Language (SIL) that is extremely efficient on its target machine, yet is also highly effective for human programmers to use. The need for such a tool is obvious on all computer systems, but especially on minicomputers, where most applications are in fact "systems programs". For example, in any data acquisition environment the distinction between "user" and "operating system" largely disappears---the user's prime concern is to handle time-dependent sequences of events involving the manipulation of special I/O devices through direct status checking and data streaming---all functions which are usually buried in the operating system of conventional computing systems.
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有PDP-11编程语言PL-11的设计、实现和使用经验
PL-11是为PDP-11系列计算机设计和实现的编程语言,作为CERN(欧洲核研究组织)OMEGA项目的一部分。它的目的是为物理学家和系统程序员提供一个有效的工具,用于构建在线高能物理实验的实时数据采集系统。它是基于PL360(41)的初始设计的pl类编程语言(44)的一个相当典型的成员(见表1)。这些语言中的每一种都代表了其特定机器架构的语言模型,从而提供了在其目标机器上极其高效的系统实现语言(SIL),但对于人类程序员来说也是非常有效的。对这种工具的需求在所有计算机系统上都是显而易见的,尤其是在小型计算机上,因为大多数应用程序实际上是“系统程序”。例如,在任何数据采集环境中,“用户”和“操作系统”之间的区别在很大程度上消失了——用户主要关心的是处理与时间相关的事件序列,这些事件涉及通过直接状态检查和数据流对特殊I/O设备的操作——所有这些功能通常都隐藏在传统计算系统的操作系统中。
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