Because the root page is used so often, it always resides in the memory buffer. 因为根页使用十分频繁,所以它通常驻留在内存缓冲区中。
Ring buffer logging consists of a fixed size of allocated memory buffer that is used by the process for logging. 循环缓冲区日志记录由一个固定大小的内存缓冲区构成,进程使用这个内存缓冲区进行日志记录。
This is the size in bytes of the memory buffer InnoDB uses to cache data and indexes of its tables. 这个参数是内存缓冲区的字节数,InnoDB使用这个缓冲区来缓存表的数据和索引。
MemBufFormatTarget is initialized to have a memory buffer of1023 upon construction and will grow as needed. MemBufFormatTarget在构造时初始化为一个1023字节的内存缓冲区,并可根据需要增加。
A pbuf is a pinned memory buffer. pbuf是一个固定内存缓冲区。
Finally, purify_what_colors is called to print the color of the memory buffer. 最后,purifywhatcolors被调用来打印这个内存缓冲的颜色。
Libcurl, like libjpeg, prefers to work on a stdio FILE object instead of a memory buffer. 与libjpeg一样,Libcurl用于处理stdioFILE对象,而不是内存缓冲区。
Audit records are typically written into a memory buffer before being flushed to disk. 审计记录通常首先被写入到一个内存缓冲区,然后才刷新到磁盘。
The following diagram illustrates the usage of a memory buffer allocated via a call to malloc. 下表说明了通过调用malloc函数来使用一段内存缓存。
Memory buffer address register 存储器缓冲地址寄存器
This parameter is commonly used to pass the memory buffer that is used by the asynchronous I/ O call. 这个参数通常用来传递异步I/O请求使用的内存缓冲。
Maximum size for the replay memory buffer. 重播记忆体的最大缓冲区大小。
Application-Controlled Caching for Web Server COATINGS FOR DISK MEMORY BUFFER CAPACITY 应用控制的Web服务器磁盘缓冲方法
Use Memory Buffer to Store and Re-Show Remote Bitmap 利用内存缓冲区存储和再现远程位图图像
We implement layered caching mechanism ( global disk caching and memory caching) using dynamic sharing running memory buffer algorithm to support more stable and real-time parallel streams; 采用动态共享运行缓冲区算法实现了分层缓存机制(全局磁盘缓存和内存缓存)以支持更多稳定、实时的并发流;
Firstly, we analysed the OSD graphics device driver, puting forward the design of graphical display memory and memory buffer. 首先从分析OSD图形层的设备驱动入手,提出了图形显示内存和图形内存缓冲区的设计方案,为图形引擎的实现奠定了基础。
In the function for distributing memory buffer, the allocation of Nbuf resources has been done by the addition of certain signal. 在用于分配存储器缓存的函数中,通过加入一定的信号量控制,实现对全局统一的Nbuf资源进行统一调配。
SAILII includes five parts: establishment of user's request for connection, query analysis processor, management of memory buffer and disk, and transaction processing. 该系统分为:用户请求连接建立、查询分析处理器、内存缓冲区管理、磁盘管理和事务处理五部分。
Instead of using file for image's buffer and exchange, this article uses memory buffer directly to create Device Independent Bitmap ( DIB) and send it in remote workstation, and show the image in console the same way. 本文对利用文件进行图像缓冲和交换的方式进行了改进,在远程工作站利用内存缓冲区直接进行设备无关位图(DIB)的建立且进行传送,并在控制台直接显示内存缓冲区中的DIB。
This paper discusses the theory of Slab memory buffer manager and how to use Slab manager to manage all kinds of kernel objects in Linux kernel. 该文介绍了Slab内存缓冲区管理器的原理,以及Linux怎样使用Slab管理器管理内核中各种各样的内核对象。
This paper makes an analysis of the structure of the FIFO memory buffer as well as its performances, with emphasis on explaining how it boosts up system performance by expanding the data transfer rate to match the different data transfer rates. 本文介绍了FIFO缓冲存储器的结构和性能,说明它如何扩大数据传输率,匹配不同的数据传输速率;
Once master trigger event appears, the time distribution and amount of correlating events ( neutron burst) can be recorded in the double ports memory buffer in 128 μ s period. 本电路主要用于记录关联主触发事件发生后128μs时间内,关联事件(骤发中子群)发生的时间和数量。
It realized the information mutual by visit memory buffer through interface. 该方式通过接口访问内存缓存器来达到信息交互的目的;
Memory buffer link-lists are created for every planar-table object, and each buffer has two queues for memory distribution and reclaiming. 对于每个二维表对象系统创建了内存缓冲池链表,每个缓冲池中含有2个队列,用于分配和回收内存数据。
Also, the paper points out some of the problems to be considered when applying the FIFO memory buffer in system designing. 同时也指出了应用FIFO存储器进行系统设计时应考虑的问题。
Regarding the memory buffer region as the subjunctive equipment, the paper brings forward the conversion technology between the vector data having no relation to equipment and bit image data. 以内存缓冲区为虚拟设备,提供了一种与设备无关的矢量数据与位映像数据之间的转换方法。
Linux Kernel Slab Memory Buffer Manager Linux内核Slab内存缓冲区管理器
In the storage tier, it should pay more attention to the rational utilization of the limited resources, and adopt the way of memory buffer to promote systematic function. 存储层的设计尤其要注意对有限设备资源的合理利用,并采用缓存策略来提升系统性能。
Cache is actually a relatively high speed memory buffer for holding data, to allow fast re-access of subsequent request. 缓存技术通过将数据暂存在相对高速的存储器中,可以提高后续的重复访问速度。
Since simulating chip multi-processor needs vast FPGA resource, we use software memory buffer technique to store data in the host computer, reduce the occupation of FPGA resource. 片上多处理器的模拟需要大量的FPGA资源,我们使用软件实现的存储缓存机制可以将数据缓存到宿主机器上,有效调节FPGA资源。