instruction n. 1.教育,教導(dǎo)。 2.教訓(xùn),教誨。 3.〔 pl.〕 指令,訓(xùn)令,指示,細(xì)目。 give sb. instructions to do sth. 命令某人做什么。 an instruction book 說(shuō)明書(shū)。 maintenance instructions 維護(hù)說(shuō)明。 operating instructions 業(yè)務(wù)[工作]須知,操作規(guī)程。 ask for instruction 請(qǐng)示。 give instruction in 教授。 give instructions to 訓(xùn)令。 receive in instruction 接受指導(dǎo)。
Any compiler that imports metadata with one or more fields marked as volatile must use instructions prefixed with 對(duì)于任何編譯器,如果導(dǎo)入的元數(shù)據(jù)具有一個(gè)或多個(gè)標(biāo)記為易失的字段,則編譯器必須使用以
The instruction encoding is designed so that commonly used instructions and ones with fewer operands require a smaller number of bytes than do less common ones or ones with more operands 這種指令編碼的目的,是為了使常用指令和具有較少操作數(shù)的指令比那些不常用指令或者具有較多操作數(shù)的指令占用更少的字節(jié)數(shù)。
We propose two implementations of momr : one employs only hardware changes while the other uses instruction set architecture support . we show that momr execution leverages available resources in typical multi - issue processors with minimal additional cost 我們提出了momr的兩種實(shí)現(xiàn):一是利用硬件的改變而是使用instruction set architecture指令集體系結(jié)構(gòu),簡(jiǎn)稱isa的支持。
This paper mainly focuses on the following three field : system structure , system hw / sw ( hardware / software ) partition . synthesis and verification . and presents a hw / sw co - design method based on ip ( intellectual property ) core . we use this method to design asip , and verify this virtual machine using instruction codes , ac - 3 codes and ts ( transport stream ) flow 本文從芯片系統(tǒng)的整體入手,重點(diǎn)從系統(tǒng)的結(jié)構(gòu)、軟硬件分割以及芯片系統(tǒng)的設(shè)計(jì)驗(yàn)證三個(gè)方面對(duì)該芯片系統(tǒng)的設(shè)計(jì)做了深入的研究,提出了一種基于ip核的軟硬件協(xié)同設(shè)計(jì)方法,運(yùn)用該方法對(duì)asip進(jìn)行設(shè)計(jì),并采用虛擬機(jī)的模型,采用指令集程序、 ac - 3解碼程序、 ts流程序進(jìn)行仿真驗(yàn)證。
Abstract : intelligent and computer simulation training system for steelmaking of conevrter has been developed by combining cai with techniques of ai and computer simulation . the system which include four training layers combined theoretical training with practical training , and made the instruction and training intelligent , individualized and imaged by using instruction model , student model and simulation model 文摘:將人工智能技術(shù)和計(jì)算機(jī)模擬技術(shù)引入cai ,建立了用于轉(zhuǎn)爐煉鋼教學(xué)與培訓(xùn)的計(jì)算機(jī)模擬仿真智能培訓(xùn)系統(tǒng).該系統(tǒng)分為4個(gè)層次,將理論培訓(xùn)與實(shí)踐培訓(xùn)相結(jié)合,并通過(guò)教學(xué)模型、學(xué)生模型和仿真模型實(shí)行智能化、個(gè)別化和形象化教學(xué)與培訓(xùn)