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Deciphering a novel image cipher based on mixed transformed Logistic maps

14 April 2014
Yuansheng Liu
Hua Fan
Eric Yong Xie
Ge Cheng
Chengqing Li
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Abstract

Since John von Neumann suggested utilizing Logistic map as a random number generator in 1947, a great number of encryption schemes based on Logistic map and/or its variants have been proposed. This paper re-evaluates the security of an image cipher based on transformed logistic maps and proves that the image cipher can be deciphered efficiently under two different conditions: 1) two pairs of known plain-images and the corresponding cipher-images with computational complexity of O(218+L)O(2^{18}+L)O(218+L); 2) two pairs of chosen plain-images and the corresponding cipher-images with computational complexity of O(L)O(L)O(L), where LLL is the number of pixels in the plain-image. In contrast, the required condition in the previous deciphering method is eighty-seven pairs of chosen plain-images and the corresponding cipher-images with computational complexity of O(27+L)O(2^{7}+L)O(27+L). In addition, three other security flaws existing in most Logistic-map-based ciphers are also reported.

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