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default buffer allocation相关的网络例句

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Based on the above ideas, I will use line buffer as a first design. And then integrate loop buffer as my second design. Finally we use instruction content bus to deliver the buffer access position as my third design. Under this design, the buffer inside CPU core can store the nested loop and reuse them.

以上述的想法做为出发,我的设计将会以line buffer做为此种缓冲器的初步设计,之后结合田滨华的loop buffer设计做更进一步的改良,最后再采用藉由指令内容汇流排来传送存取缓冲器中的指令的想法来使得CPU之中的缓冲器可以储存巢状回圈进而提升缓冲器的使用率使得指令内容汇流排的存取次数可以持续地下降。

To render and display the scene, the sample code in this step clears the back buffer to a blue color, transfers the contents of the back buffer to the front buffer, and presents the front buffer to the screen.

为了渲染和显示场景,这段示例代码在这一步中清除了背景缓存,并填充上了蓝色,将背景缓存转换到前景缓存,将前景缓存刷新到屏幕上。

In this paper we propose a low-power frame buffer design called word line charge recycling frame buffer, which can be used in TFT-LCD. Based on the sequential access feature of the frame buffer, our design use the charge recycling technique to reduce the frame buffer power dissipated in the word lines switches.

中文摘要在本论文中,我们将提出一个低功率的页面缓冲区设计,利用液晶薄膜显示器循序存取页面缓冲区的特性,使用充电再利用的技术,将字元线所充电的电量导引到下一条字元线,以降低动态的功率消耗。

This algorithm first generates and compresses the frame buffer and writes the compressed frame buffer to hard disk, after the whole frame buffer is generated, it starts the engine of imagesetter, then it reads the compressed frame buffer from hard disk and decompresses it and sends it to the imagesetter while the imagesetter is recording.

该算法首先逐段生成页面点阵并压缩存放于主机的硬盘上,页面点阵全部生成完毕后,一边从硬盘上读出页面点阵,一边解压缩送往照排机。

Reliability allocation is an important phase of overall system design. Traditional methods for solving reliability allocation problems, such as AGREE allocation, proportional allocation and so on, have different advantages and shortcomings.

系统可靠性分配是型号总体设计的一个重要环节,传统的用于解决可靠性分配问题的方法,如AGREE分配法、比例分配法等,具有不同的优缺点。

In order to understand the pros and cons of variance allowance allocation rule (i.e. grandfathering, benchmark and auctioning mixed allocation rule), we surveyed the stakeholders' attitude with regard to implement Emission Trading Scheme in Taiwan. We found that almost 70% people more like auctioning mixes allocation principle than other two allocation methods.

为了解不同排放权核配方式之优劣,藉以提出客观的核配建议,本研究调查台湾能源密集产业利害关系人对实施排放交易制度之态度发现,约七成受访者希望以混合拍卖之方式核配排放权。

In order to understand the pros and cons of variance allowance allocation rule (i.e. grandfathering, benchmark and auctioning mixed allocation rule), we surveyed the stakeholders' attitude with regard to implement Emission Trading Scheme in Taiwan. We found that almost 70% people more like auctioning mixes allocation principle than other two allocation methods.

中文摘要爲了解不同排放权核配方式之优劣,藉以提出客观的核配建议,本研究调查台湾能源密集产业利害关系人对实施排放交易制度之态度发现,约七成受访者希望以混合拍卖之方式核配排放权。

Judging from the historical change of international legislation concerning the onus probandi allocation of the carrier in sea transportation claims and from the challenges of theories of the onus probandi by some of China's legislative regulations, there is not a general standard for the allocation of onus probandi. There is a close relationship between this allocation and civil responsibility. In present age, China can consider solve the allocation of onus probandi by means of legal explanation.

从关于海运索赔中承运人过失举证责任分配的国际立法的历史变化和部分国内立法的有关规定对举证责任分配诸学说的挑战中得到的启示是,不存在举证责任分配的一般性标准,更不应过于迷信罗森贝克的规范说;举证责任分配与民事责任之间存在密切联系;我国目前可以考虑用法律解释的方法解决举证责任分配问题。

GetBufferSysStringLen(b + 1;::WideCharToMultiByteCP_ACP,// ANSI Code Page 0,// no flags b,// source widechar string -1,// assume NUL-terminated p,// target buffer SysStringLen(b+1,// target buffer length NULL,// use system default char NULL;// don''t care if default used s.

注意这个代码使用与::WideCharToMultiByte 相同的参数值。所以你只能在想要改变这些参数进行转换时使用该技术。

Command: d Partition number (1-11): 6 Command: n Command action l logical (5 or over) p primary partition (1-4) l First cylinder (5001-20886, default 5001): Using default value 5001 Last cylinder or +size or +sizeM or +sizeK (5001-7500, default 7500): Using default value 7500 Command: p Disk /dev/sda: 171.7 GB, 171798691840 bytes 255 heads, 63 sectors/track, 20886 cylinders Units = cylinders of 16065 * 512 = 8225280 bytes Device Boot Start End Blocks Id System /dev/sda1 * 1 1250 10040593+ 7 HPFS/NTFS /dev/sda2 1251 20886 157726170 5 Extended /dev/sda5 1251 2500 10040593+ 7 HPFS/NTFS /dev/sda6 7501 10000 20081218+ b W95 FAT32 /dev/sda7 10001 20886 87441763+ 7 HPFS/NTFS /dev/sda8 2501 3000 4016218+ 83 Linux /dev/sda9 3001 3125 1004031 82 Linux swap / Solaris /dev/sda10 3126 5000 15060906 83 Linux /dev/sda11 5001 7500 20081218+ 83 Linux Partition table entries are not in disk order Command: t Partition number (1-11): 11 Hex code: 7 Changed system type of partition 11 to 7 Command: p Disk /dev/sda: 171.7 GB, 171798691840 bytes 255 heads, 63 sectors/track, 20886 cylinders Units = cylinders of 16065 * 512 = 8225280 bytes Device Boot Start End Blocks Id System /dev/sda1 * 1 1250 10040593+ 7 HPFS/NTFS /dev/sda2 1251 20886 157726170 5 Extended /dev/sda5 1251 2500 10040593+ 7 HPFS/NTFS /dev/sda6 7501 10000 20081218+ c W95 FAT32 /dev/sda7 10001 20886 87441763+ 7 HPFS/NTFS /dev/sda8 2501 3000 4016218+ 83 Linux /dev/sda9 3001 3125 1004031 82 Linux swap / Solaris /dev/sda10 3126 5000 15060906 83 Linux /dev/sda11 5001 7500 20081218+ 7 HPFS/NTFS Partition table entries are not in disk order Command m for help

到这里,就已经将原先的windows的E盘(2501到5000柱面),那个/dev/sda6分成了三个区。现在如果保存分区操作后,再使用格式化工具创建文件系统后,原先的 2501到5000柱面上的数据将丢失。当然,我们不必担心,因为事先已经将文件复制到了其它的地方了。注意:现在有一个问题,看上面/dev/sda11 的尾柱面是 5000 ,而/dev/sda6的首柱面是5001 。一直到/dev/sda8 的首柱面都位于/dev/sda11的尾柱面之后。也就是说它们的物理位置在后面,但分区编号在前面。为改变这一状况,有一个简易的方法。就是先删紧靠 5000柱面之后的一个分区,然后立即按默认首柱面和尾柱面进行分配,在重建分区表的时候注意把分区的系统标识也改也原先的(因为 Linux的fdisk中默认的新建的分区系统标识为id为83。

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