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    • 2. 发明申请
    • PARTITIONED DATA COMPRESSION USING ACCELERATOR
    • 使用加速器分段数据压缩
    • US20160173123A1
    • 2016-06-16
    • US14571658
    • 2014-12-16
    • Intel Corporation
    • VINODH GOPALJAMES D. GUILFORDGILBERT M. WOLRICHDANIEL F. CUTTER
    • H03M7/40H03M7/30
    • H03M7/40H03M7/3086H03M7/6011
    • In an embodiment, a processor includes a compression accelerator coupled to a plurality of hardware processing cores. The compression accelerator is to: receive input data to be compressed; select a particular intermediate format of a plurality of intermediate formats based on a type of compression software to be executed by at least one of the plurality of hardware processing cores; perform a duplicate string elimination operation on the input data to generate a partially compressed output in the particular intermediate format; and provide the partially compressed output in the particular intermediate format to the compression software, wherein the compression software is to perform an encoding operation on the partially compressed output to generate a final compressed output. Other embodiments are described and claimed.
    • 在一个实施例中,处理器包括耦合到多个硬件处理核心的压缩加速器。 压缩加速器是:接收要压缩的输入数据; 基于由所述多个硬件处理核心中的至少一个执行的压缩软件的类型,选择多个中间格式的特定中间格式; 对输入数据执行重复字符串消除操作,以产生特定中间格式的部分压缩输出; 并将特定中间格式的部分压缩的输出提供给压缩软件,其中压缩软件将对部分压缩的输出执行编码操作以产生最终的压缩输出。 描述和要求保护其他实施例。
    • 4. 发明申请
    • TECHNIQUES TO ACCELERATE LOSSLESS COMPRESSION
    • 加快无损压缩的技术
    • US20160173126A1
    • 2016-06-16
    • US15053921
    • 2016-02-25
    • INTEL CORPORATION
    • JAMES D. GUILFORDVINODH GOPALGILBERT M. WOLRICHERDING OZTURKWAJDI K. FEGHALI
    • H03M7/30G06F9/30
    • H03M7/60G06F9/30029H03M7/3068H03M7/6058
    • An embodiment may include circuitry that may be capable of performing compression-related operations that may include: (a) indicating, at least in part, in a data structure at least one position of at least one subset of characters that are to be encoded as a symbol, (b) comparing, at least in part, at least one pair of multi-byte data words that are of identical predetermined fixed size, (c) maintaining, at least in part, an array of pointers to potentially matching strings that are to be compared with at least one currently examined string, and/or (d) allocating, at least in part, a first buffer portion to store at least one portion of uncompressed data from an application buffer that is to be input for compression to produce a compressed data stream. Other embodiments are described and claimed.
    • 实施例可以包括可以执行压缩相关操作的电路,其可以包括:(a)至少部分地在数据结构中指示要被编码为的至少一个字符子集的至少一个位置 (b)至少部分比较至少一对具有相同预定固定大小的多字节数据字,(c)至少部分维持指向潜在匹配字符串的指针数组, 与至少一个当前检查的字符串进行比较,和/或(d)至少部分地分配第一缓冲器部分,以将来自要输入的压缩数据的至少一部分未压缩数据存储到要压缩的应用缓冲器中 产生压缩数据流。 描述和要求保护其他实施例。
    • 7. 发明申请
    • EFFICIENT DATA COMPRESSION FOR SOLID-STATE MEMORY
    • 用于固态存储器的高效数据压缩
    • US20160283159A1
    • 2016-09-29
    • US14671929
    • 2015-03-27
    • Intel Corporation
    • VINODH GOPALKIRK S. YAPJAMES D. GUILFORDJAWAD B. KHAN
    • G06F3/06G06F12/08H03M7/30
    • G06F3/0638G06F3/061G06F3/0671G06F12/0875G06F12/0895G06F2212/401G06F2212/60H03M7/3086H03M7/3095H03M7/6058
    • Compression and decompression technology within a solid-state device (SSD) is disclosed that provides a good compression ratio while taking up less on-chip area. An input interface receives an input stream to be compressed. An output interface provides a compressed stream. A history buffer is of a fixed size that is a fraction of a size of a data buffer. Processing logic encodes into the compressed stream element types, literals and pointers, the latter which reference copies of data found elsewhere within the history buffer during compression. The history buffer may be multiple banks in width, where the data is loaded from the input stream sequentially across rows of the banks. The decompression side may be similarly designed, optionally with a different number of banks. The pointers may be a fixed two bytes including four bits for length and eleven bits for offset of back reference to a copy (or other combination).
    • 公开了在固态设备(SSD)中的压缩和解压缩技术,其提供了良好的压缩比,同时占用较少的片上区域。 输入接口接收要压缩的输入流。 输出接口提供压缩流。 历史缓冲区具有固定大小,它是数据缓冲区大小的一小部分。 处理逻辑编码为压缩流元素类型,文字和指针,后者在压缩期间引用历史缓冲区中其他位置的数据副本。 历史缓冲器可以是宽度的多个存储体,其中数据从输入流顺序地跨越存储体的行加载。 减压侧可以类似地设计,可选地具有不同数量的堤。 指针可以是固定的两个字节,包括用于长度的四个位和用于对拷贝(或其他组合)的反参考偏移的十一位)。