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    • 11. 发明授权
    • Handling mutex locks in a dynamic binary translation across heterogeneous computer systems
    • 在异构计算机系统中处理动态二进制转换中的互斥锁
    • US08346531B2
    • 2013-01-01
    • US12264944
    • 2008-11-05
    • Abhinav DasJiwei LuWilliam Y. ChenChandramouli Banerjee
    • Abhinav DasJiwei LuWilliam Y. ChenChandramouli Banerjee
    • G06F9/455
    • G06F9/45516G06F9/45504
    • A method for executing non-native binaries on a host computer architecture comprises receiving a guest executable binary encoded on a computer readable medium. The guest executable binary is executable on a first computer architecture. Moreover, the guest executable binary includes a mutex lock encoded instructions for implementing a mutex lock. The guest executable binary is then executed on the host computer architecture by first translating the guest executable binary to a translated executable binary. The encoded instructions for implementing a mutex lock are translated by mapping the mutex lock to an instance of a compound mutex lock data structure. A computer system implementing methods for executing non-native binaries on a host computer architecture is also provided.
    • 用于在主计算机体系结构上执行非本地二进制文件的方法包括:接收在计算机可读介质上编码的访客可执行二进制文件。 访客可执行二进制文件可在第一个计算机体系结构上执行。 此外,访客可执行二进制包括用于实现互斥锁的互斥锁编码指令。 然后通过首先将访客可执行二进制文件翻译成可翻译的可执行二进制文件,在主计算机体系结构上执行访客执行二进制文件 通过将互斥锁锁定到复合互斥锁数据结构的实例来转换用于实现互斥锁的编码指令。 还提供了一种实现用于在主机结构上执行非本地二进制文件的方法的计算机系统。
    • 12. 发明申请
    • HANDLING MUTEX LOCKS IN A DYNAMIC BINARY TRANSLATION ACROSS HETEROGENOUS COMPUTER SYSTEMS
    • 通过异构计算机系统处理动态二进制翻译中的静音锁
    • US20100114555A1
    • 2010-05-06
    • US12264944
    • 2008-11-05
    • Abhinav DasJiwei LuWilliam Y. ChenChandramouli Banerjee
    • Abhinav DasJiwei LuWilliam Y. ChenChandramouli Banerjee
    • G06F9/455
    • G06F9/45516G06F9/45504
    • A method for executing non-native binaries on a host computer architecture comprises receiving a guest executable binary encoded on a computer readable medium. The guest executable binary is executable on a first computer architecture. Moreover, the guest executable binary includes a mutex lock encoded instructions for implementing a mutex lock. The guest executable binary is then executed on the host computer architecture by first translating the guest executable binary to a translated executable binary. The encoded instructions for implementing a mutex lock are translated by mapping the mutex lock to an instance of a compound mutex lock data structure. A computer system implementing methods for executing non-native binaries on a host computer architecture is also provided.
    • 用于在主计算机体系结构上执行非本地二进制文件的方法包括:接收在计算机可读介质上编码的访客可执行二进制文件。 访客可执行二进制文件可在第一个计算机体系结构上执行。 此外,访客可执行二进制包括用于实现互斥锁的互斥锁编码指令。 然后通过首先将访客可执行二进制文件翻译成可翻译的可执行二进制文件,在主计算机体系结构上执行访客执行二进制文件。 通过将互斥锁锁定到复合互斥锁数据结构的实例来转换用于实现互斥锁的编码指令。 还提供了一种实现用于在主机结构上执行非本地二进制文件的方法的计算机系统。