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Steganographic embedding of executable code

机译:隐式嵌入可执行代码

摘要

A method for digital immunity includes identifying a call graph of an executable entity, and mapping nodes of the call graph to a cipher table of obscured information, such that each node based on invariants in the executable entity. A cipher table maintains associations between the invariants and the obscured information. Construction of an obscured information item, such as a executable set of instructions or a program, involves extracting, from the cipher table, ordered portions of the obscured information, in which the ordered portions have a sequence based on the ordering of the invariants, and ensuring that the obscured information matches a predetermined ordering corresponding to acceptable operation, such as by execution of the instructions represented by the obscured information, or steganographic target program (to distinguish from the executable entity being evaluated). The unmodified nature of the executable entity is assured by successful execution of the steganographic target program.
机译:一种用于数字免疫的方法包括:识别可执行实体的调用图,并将该调用图的节点映射到模糊信息的密码表,以使得每个节点都基于可执行实体中的不变量。密码表维护不变量和模糊信息之间的关联。构造隐蔽信息项(例如可执行的指令集或程序)涉及从密码表中提取隐蔽信息的有序部分,其中有序部分具有基于不变量的顺序的序列,并且确保被遮盖的信息与对应于可接受操作的预定顺序相匹配,例如通过执行由被遮盖的信息表示的指令或隐写目标程序(以区别于被评估的可执行实体)。通过成功执行隐写目标程序,可以确保可执行实体的未修改性质。

著录项

  • 公开/公告号US9602289B2

    专利类型

  • 公开/公告日2017-03-21

    原文格式PDF

  • 申请/专利权人 DIGITAL IMMUNITY LLC;

    申请/专利号US201514951707

  • 发明设计人 THOMAS H PROBERT;

    申请日2015-11-25

  • 分类号G06F21/10;H04L9/32;G06F21/12;G09C5/00;G06F21/70;G06F12/14;

  • 国家 US

  • 入库时间 2022-08-21 13:43:20

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