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Monitoring the Event-Building Features of the ATLAS RPCs ROD With an Embedded Microprocessor

机译:使用嵌入式微处理器监控ATLAS RPC ROD的事件构建功能

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The readout data of ATLAS' resistive plate chamber muon spectrometer are collected by the front-end electronics and transferred via optical fibers to the readout driver (ROD) boards in the counting room. Each ROD arranges all the data fragments of one sector of the spectrometer in a unique event. This is made by the Event Builder logic, a cluster of finite state machines that parses the fragments, checks their syntax, and builds an event containing all the sector data. In this paper, we describe the Builder Monitor, developed to analyze the Event Builder timing performance. It is designed around a 32-bit soft-core microprocessor embedded in the same field-programmable gate array hosting the Event Builder logic. This approach makes it possible to track the algorithm execution. The monitor performs real-time and statistical analysis of the state machine dynamics. The microprocessor is interfaced with custom peripherals, which read out the state registers and fill histograms and transfer them via direct memory access to the processor memory. The Builder Monitor also measures the elapsed time for each event and its length, and keeps track of status words and errors.
机译:前端电子设备收集ATLAS电阻板腔式μon光谱仪的读数数据,并通过光纤将其传输到计数室的读数驱动器(ROD)板上。每个ROD在一个唯一的事件中排列光谱仪一个扇区的所有数据片段。这是由事件生成器逻辑完成的,事件生成器逻辑是一组有限状态机,用于解析片段,检查其语法并构建包含所有扇区数据的事件。在本文中,我们描述了构建器监视器,它是为分析事件构建器计时性能而开发的。它是围绕一个32位软核微处理器而设计的,该微处理器嵌入在托管Event Builder逻辑的同一现场可编程门阵列中。这种方法使跟踪算法执行成为可能。该监视器对状态机动态进行实时和统计分析。微处理器与定制外围设备接口,定制外围设备读出状态寄存器并填充直方图,并通过直接存储器访问将其传输到处理器存储器。 Builder Monitor还可以测量每个事件的经过时间及其长度,并跟踪状态字和错误。

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