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    • 3. 发明授权
    • Japanese hyphenation processing program, apparatus, method, and printing system
    • 日本连字处理程序,装置,方法和打印系统
    • US08958106B2
    • 2015-02-17
    • US14202509
    • 2014-03-10
    • Rieko IshiharaHongyang GuoToshiki YamanishiHiroyuki NishiyamaMasahiko YoshimuraYoshikazu TanakaSeiji Tokuoka
    • Rieko IshiharaHongyang GuoToshiki YamanishiHiroyuki NishiyamaMasahiko YoshimuraYoshikazu TanakaSeiji Tokuoka
    • G06F3/12
    • G06F3/126G06F3/1205G06F3/1255G06F3/1285
    • A non-transitory computer-readable storage medium which has stored thereon Japanese hyphenation processing programs is disclosed. The programs which, when executed by a computer, cause the computer to function as a first Japanese hyphenation information obtaining unit which obtains functional Japanese hyphenation information based on information on equipment capabilities obtained from an equipment unit and functional Japanese hyphenation setting information using the equipment capabilities; a second Japanese hyphenation information obtaining unit which obtains logical Japanese hyphenation information to be used by an application program from logical hyphenation setting information to be defined and used by the respective programs; a determining unit which determines a setting item to be inactive from setting items set for a print job based on the functional Japanese hyphenation information and the logical Japanese hyphenation information; and a transmitting unit which transmits information on the determined setting item to be inactive to the application program.
    • 公开了一种其中存储有日本连字处理程序的非暂时性计算机可读存储介质。 由计算机执行时,使计算机作为第一日本连字信息获取单元,其基于从设备单元获得的设备能力的信息和使用设备能力的功能日语连字符设置信息获得功能性日语连字信息 ; 第二日本连字信息获取单元,其从由各个节目定义和使用的逻辑连字设置信息获得由应用程序使用的逻辑日语连字信息; 确定单元,其基于所述功能性日语连字符信息和所述逻辑日语连字信息,从设置用于打印作业的项目确定设置项目为无效; 以及发送单元,其将关于所确定的设置项目的信息发送到应用程序无效。
    • 7. 发明授权
    • Kernel substitution method in multi-processor system and multi-processor
system having kernel substitution function
    • 具有内核替代功能的多处理器系统和多处理器系统中的内核替代方法
    • US5825649A
    • 1998-10-20
    • US443773
    • 1995-05-18
    • Masahiko Yoshimura
    • Masahiko Yoshimura
    • G06F15/16G06F9/06G06F9/445G06F9/46G06F9/50G06F15/177G05B9/02
    • G06F9/4856G06F8/67
    • At the time of starting to a kernel substitution, all processes executed on a first process are migrated to a second processor. Thereafter, a new kernel is loaded onto a main memory (substitution memory) set to be in a standby state in advance, and the first processor is rebooted based on the new kernel. Thereby, the new kernel can be applied to only the first processor. Thereafter, the process on the second processor operated based on a previous kernel is migrated to the first processor operated based on the new kernel. Thereafter, the second processor is rebooted based on the new kernel, and the main memory (substitution memory) is accessed, so that the first and second processors are operated based on the new kernel. As a result, a function of the new kernel can be applied to the multi-processor system. Therefore, the kernel can be substituted with a new one without stopping the operation of the system.
    • 在开始进行内核替换时,在第一个进程上执行的所有进程都迁移到第二个处理器。 此后,将新的内核预先加载到设置为处于待机状态的主存储器(替换存储器)上,并且基于新的内核重新启动第一处理器。 因此,新内核可以仅应用于第一处理器。 此后,基于先前内核操作的第二处理器上的处理被迁移到基于新内核操作的第一处理器。 此后,基于新内核重新启动第二处理器,并且访问主存储器(替换存储器),使得基于新内核操作第一和第二处理器。 因此,新内核的功能可以应用于多处理器系统。 因此,内核可以用新的代替,而不会停止系统的操作。