1) kernel mode
核心态
1.
Preventing code injection attack with hook in kernel mode;
利用核心态钩挂技术防止代码注入攻击
2.
This paper studied Kernel mode of Windows NT, and discussed the routine of interruption and DMA,then a device driver program was designed to solve this problem.
对在核心态下采用编制虚拟设备驱动程序的方法进行探讨 ,重点讨论了如何在 Windows NT下实现数据采集卡的中断和 DMA过程并给出了相应例程。
3.
VI Architecture (VIA) reduces the communication overhead by eliminating the context switch between the user mode and the kernel mode and using the application space as the network data buffer .
VI Architecture(VIA)通过消除数据传输过程中用户态和核心态之间上下文切换、将应用程序空间直接作为网络数据缓存来降低通信开销 。
2) core-stateless
核心无状态
1.
Virtual delay vector-based core-stateless packet scheduling architecture;
基于虚拟延迟矢量的核心无状态分组调度框架DVRS
2.
A new core-stateless packet scheduling algorithm,VCSVC(G)(vector core-stateless virtual clock),is proposed.
提出一种新的核心无状态分组调度算法VCSVC(G)(vector core-stateless virtual clock)。
3.
Under the framework of the CSFQ algorithm,while change its designing rule from the fair allocation of flow rates to that of the utility functions representing the user demands,we proposed a core-stateless user fair queueing algorithm-CSUFQ.
在对"流"公平的CSFQ(Core-Stateless Fair Queueing)算法基础上进行改进,将算法设计思想由对流速率的公平分配改为对表征用户需求的效用函数的公平分配,从而提出一种对用户公平的核心无状态队列管理算法(Core-Stateless User Fair Queueing,CSUFQ),该算法能近似实现边界及核心路由器上对用户需求的最大最小公平,仿真实验证明了其效果。
3) core stateless
核心无状态
1.
A core stateless virtual clock-based scheduling algorithm applied to DiffServ;
用于DiffServ的核心无状态的虚拟时钟调度算法
2.
Proposed a new core stateless packet scheduling algorithm that can allocate accurate reserved bandwidth to each flow at each traversed node,called VCSVC(Vector Core Stateless Virtual Clock).
提出一种新的核心无状态调度策略VCSVC(V ector Core S tate less V irtua l C lock),可实现与VC相同的延迟特性,并提供逐点精确的基本(预留)带宽保证。
4) Kernel logic
核心态逻辑
5) ecological core areas
生态核心区
1.
New countryside construction of upper-Yangtze River ecological core areas;
长江上游生态核心区新农村建设探讨
6) Kernel Mechanism
核心态机制
补充资料:单线态-单线态能量转移
分子式:
CAS号:
性质:处于电子激发单线态的能量给体,通过激发能的转移使能量受体处于激发单线态的过程。
CAS号:
性质:处于电子激发单线态的能量给体,通过激发能的转移使能量受体处于激发单线态的过程。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条