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    • 73. 发明授权
    • Method for skipping multimedia file and multimedia apparatus thereof
    • 跳过多媒体文件及其多媒体装置的方法
    • US08634702B2
    • 2014-01-21
    • US13464637
    • 2012-05-04
    • Liang ChenJianglong ChangMing Liu
    • Liang ChenJianglong ChangMing Liu
    • H04N9/80
    • H04N5/783H04N9/8042H04N9/8205
    • A multimedia file skipping method. The skipping method adds obtained increased amount of time to a current decoding time stamp to determine a target time stamp, determines a PCR (Program Clock Reference) corresponding to the target time stamp as a PCR prediction value; determines a position offset corresponding to the PCR prediction value as a target position offset according to a linear relationship between the PCR and position offset of the multimedia file; and skips to the target position offset and plays the multimedia file from this position. By the aforementioned, it is not necessary to set a time stamp index file, and calculation is performed by utilizing the linear relationship between the PCR and the position offset, and thus the amount of calculation is reduced, time cost is reduced, and skipping speed is significantly improved.
    • 多媒体文件跳过方法。 跳过方法将获得的增加的时间量添加到当前解码时间戳中以确定目标时间戳,将与目标时间戳对应的PCR(程序时钟参考)确定为PCR预测值; 根据PCR和多媒体文件的位置偏移之间的线性关系,确定与PCR预测值相对应的位置偏移作为目标位置偏移; 并跳到目标位置偏移,并从该位置播放多媒体文件。 通过上述,不需要设置时间戳索引文件,并且通过利用PCR和位置偏移之间的线性关系来进行计算,因此减少了计算量,降低了时间成本和跳过速度 明显改善。
    • 79. 发明申请
    • CONTENT ADDRESSABLE MEMORY AND METHOD OF SEARCHING DATA THEREOF
    • 内容可寻址存储器及其数据搜索方法
    • US20130046922A1
    • 2013-02-21
    • US13372869
    • 2012-02-14
    • Yong Feng PanYufei LiBo FanLiang Chen
    • Yong Feng PanYufei LiBo FanLiang Chen
    • G06F12/00
    • G06F17/30982G06F12/0864G06F12/0895G06F17/3033G06F2212/1024
    • The present invention discloses a content addressable memory and a method of searching data thereof. The method includes generating a hash index data item from a received input data item; searching the cache for presence of a row tag of the RAM data row corresponding to the data item of hash index; in response to presence, searching the RAM for a RAM data item corresponding to the input data item according to the corresponding row tag of the RAM data row; in response to absence, searching the RAM for a RAM data item corresponding to the input data item by using the data item of hash index; and in response to finding a RAM data item corresponding to the input data item in the RAM, outputting data corresponding to the RAM data item. The method can accelerate data search in the CAM.
    • 本发明公开了一种内容寻址存储器及其数据搜索方法。 该方法包括从接收到的输入数据项生成散列索引数据项; 搜索高速缓存存在对应于散列索引的数据项的RAM数据行的行标签; 响应于存在,根据RAM数据行的相应行标签,在RAM中搜索与输入数据项对应的RAM数据项; 响应于不存在,通过使用散列索引的数据项搜索对应于输入数据项的RAM数据项的RAM; 并且响应于找到与RAM中的输入数据项相对应的RAM数据项,输出对应于RAM数据项的数据。 该方法可以加速CAM中的数据搜索。
    • 80. 发明授权
    • Data storage system and method
    • 数据存储系统及方法
    • US08347180B2
    • 2013-01-01
    • US12783698
    • 2010-05-20
    • Bo ZhangHonggang ChaiLiang Chen
    • Bo ZhangHonggang ChaiLiang Chen
    • G11C29/00
    • G06F11/1068
    • A data storage system includes a first memory, a controller, a counting module, and a checking and correcting module. Copyback operations are performed in the first memory. The controller couples the first memory to the counting module and the checking and correcting module. The counting module provides a counting operation for the copyback operations at different logic addresses of the first memory and, according to a counting result of the counting operation, determines whether a checking and correcting requirement has been satisfied by any of the logic addresses. The checking and correcting module receives data read out from the first memory, wherein the received data corresponds to a satisfying logic address, and checks the received data and corrects the received data when it is checked that the received data is incorrect, to correct the first memory accordingly.
    • 数据存储系统包括第一存储器,控制器,计数模块和校验和校正模块。 复印操作在第一个存储器中执行。 控制器将第一个存储器耦合到计数模块和检查和校正模块。 计数模块提供对第一存储器的不同逻辑地址的复制操作的计数操作,并且根据计数操作的计数结果,确定是否通过任何逻辑地址来满足校验和校正要求。 检查和校正模块接收从第一存储器读出的数据,其中所接收的数据对应于令人满意的逻辑地址,并且当检查接收到的数据不正确时,检查所接收的数据并校正接收到的数据,以校正第一 相应地记忆。