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    • 1. 发明授权
    • Method for preventing laundering and repackaging of multimedia content in content distribution systems
    • 内容分发系统中防止多媒体内容的洗涤和重新包装的方法
    • US09252957B2
    • 2016-02-02
    • US12736262
    • 2009-04-07
    • Alain DurandMarc JoyeMohamed KarroumiYan-Mei Tang Talpin
    • Alain DurandMarc JoyeMohamed KarroumiYan-Mei Tang Talpin
    • G06F11/30H04L9/32H04L9/08
    • H04L9/3247H04L9/0836H04L2209/60
    • A method for distributing content in a content distribution system is disclosed which comprises the steps of: encrypting at a Content Packager a content using a content encryption key to generate an encrypted content; sending the content encryption key to a Licensing Authority; receiving from the Licensing Authority a distribution key containing an encryption of the content decryption key (Kc) for a given set of authorized devices; creating a secure link between the content encryption key (Kc) and the content protected by this content encryption key using a signature of the content; and distributing the encrypted content together with the signature of the content. A method for receiving content distributed according to the above-mentioned method in a device able to play back the content is also disclosed where the content signature is checked before any play back of the content.
    • 公开了一种在内容分发系统中分发内容的方法,包括以下步骤:使用内容加密密钥在内容打包机处加密内容以生成加密的内容; 将内容加密密钥发送给授权机构; 从授权机构接收包含对于给定的授权设备集合的内容解密密钥(Kc)的加密的分发密钥; 使用内容的签名在内容加密密钥(Kc)和由该内容加密密钥保护的内容之间建立安全链接; 并且将加密的内容与内容的签名一起分发。 还公开了一种在能够回放内容的设备中接收根据上述方法分发的内容的方法,其中在内容的任何回放之前检查内容签名。
    • 2. 发明申请
    • FAULT-RESISTANT EXPONENTIATIONI ALGORITHM
    • 阻抗指数算法
    • US20120321075A1
    • 2012-12-20
    • US13487457
    • 2012-06-04
    • Marc JoyeMohamed Karroumi
    • Marc JoyeMohamed Karroumi
    • H04L9/28
    • G06F7/723G06F2207/7261G06F2207/7271H04L9/003H04L9/004H04L9/302H04L2209/122
    • A method for performing a m-ary right-to-left exponentiation using a base x, a secret exponent d and a modulus N, wherein m is a power of 2. A device having a processor and m+1 registers R[0]-R[m] in at least one memory: initializes register R[0] to h for a chosen value h, wherein the order of the value h is a divisor of m*(m−1)/2, register R[m] to x(m−1) and the registers other than R[0] and R[m] to the value h; updates register R[r] to R[r] times x, wherein r is the remainder of a division of d by (m−1) mod N; obtains a working exponent q that is the quotient of the division of d by (m−1); performs l iterations, starting at i=0, of: setting R[qi] to R[qi] times R[m] and raising R[m] to the power of m, where l is the length of q in base m and qi is the i-th digit of the representation of q in base m and ql−1 is non-zero; verifies the correctness of the result by checking that R[m] equals the product of registers R[0]-R[m−1] to the power of m−1; and outputs the product of R[l]j, where 1≦j≦m−1, only if the correctness is successfully verified.
    • 一种用于使用基数x,秘密指数d和模数N执行从右到左取幂的方法,其中m是2的幂。具有处理器并且m + 1寄存器R [0] 在至少一个存储器中的-R [m]:将寄存器R [0]初始化为h以选择值h,其中值h的顺序是m *(m-1)/ 2的除数,寄存器R [m ]到x(m-1)以及除R [0]和R [m]之外的寄存器到值h; 将寄存器R [r]更新为R [r]乘以x,其中r是d除以(m-1)mod N的余数的剩余部分; 得到一个工作指数q,即d(m-1)的除法的商; 从i = 0开始执行l次迭代,将R [qi]设置为R [qi]次R [m],并将R [m]提高到m的幂,其中l是基本m中q的长度, qi是基数m中q的表示的第i位数,ql-1是非零; 通过检查R [m]等于寄存器R [0] -R [m-1]的乘积与m-1的幂来验证结果的正确性; 并且仅当正确性被成功验证时才输出R [1] j的乘积,其中1≦̸ j≦̸ m-1。
    • 3. 发明申请
    • METHOD FOR PREVENTING LAUNDERING AND REPACKAGING OF MULTIMEDIA CONTENT IN CONTENT DISTRIBUTION SYSTEMS
    • 内容分发系统中多媒体内容的清除和重新包装的方法
    • US20110016311A1
    • 2011-01-20
    • US12736262
    • 2009-04-07
    • Alain DurandMarc JoyeMohamed KarroumiYan-Mei Tang Talpin
    • Alain DurandMarc JoyeMohamed KarroumiYan-Mei Tang Talpin
    • H04L9/08
    • H04L9/3247H04L9/0836H04L2209/60
    • A method for distributing content in a content distribution system is disclosed which comprises the steps of: encrypting at a Content Packager a content using a content encryption key to generate an encrypted content; sending the content encryption key to a Licensing Authority; receiving from the Licensing Authority a distribution key containing an encryption of the content decryption key (Kc) for a given set of authorized devices; creating a secure link between the content encryption key (Kc) and the content protected by this content encryption key using a signature of the content; and distributing the encrypted content together with the signature of the content. A method for receiving content distributed according to the above-mentioned method in a device able to play back the content is also disclosed where the content signature is checked before any play back of the content.
    • 公开了一种在内容分发系统中分发内容的方法,包括以下步骤:使用内容加密密钥在内容打包机处加密内容以生成加密的内容; 将内容加密密钥发送给授权机构; 从授权机构接收包含对于给定的授权设备集合的内容解密密钥(Kc)的加密的分发密钥; 使用内容的签名在内容加密密钥(Kc)和由该内容加密密钥保护的内容之间建立安全链接; 并且将加密的内容与内容的签名一起分发。 还公开了一种在能够回放内容的设备中接收根据上述方法分发的内容的方法,其中在内容的任何回放之前检查内容签名。
    • 4. 发明授权
    • Fault-resistant exponentiation algorithm
    • 故障求幂算法
    • US08700921B2
    • 2014-04-15
    • US13487457
    • 2012-06-04
    • Marc JoyeMohamed Karroumi
    • Marc JoyeMohamed Karroumi
    • H04L9/28H04K1/00
    • G06F7/723G06F2207/7261G06F2207/7271H04L9/003H04L9/004H04L9/302H04L2209/122
    • A method for performing a m-ary right-to-left exponentiation using a base x, a secret exponent d and a modulus N, wherein m is a power of 2. A device having a processor and m+1 registers R[0]−R[m] in at least one memory: initializes register R[0] to h for a chosen value h, wherein the order of the value h is a divisor of m*(m−1)/2, register R[m] to x(m−1) and the registers other than R[0] and R[m] to the value h; updates register R[r] to R[r] times x, wherein r is the remainder of a division of d by (m−1) mod N; obtains a working exponent q that is the quotient of the division of d by (m−1); performs l iterations, starting at i=0, of: setting R[qi] to R[qi] times R[m] and raising R[m] to the power of m, where l is the length of q in base m and qi is the i-th digit of the representation of q in base m and ql−1 is non-zero; verifies the correctness of the result by checking that R[m] equals the product of registers R[0]-R[m−1] to the power of m−1; and outputs the product of R[j]j, where 1≦j≦m−1, only if the correctness is successfully verified.
    • 一种用于使用基数x,秘密指数d和模数N执行从右到左取幂的方法,其中m是2的幂。具有处理器并且m + 1寄存器R [0] 在至少一个存储器中的-R [m]:将寄存器R [0]初始化为h以选择值h,其中值h的顺序是m *(m-1)/ 2的除数,寄存器R [m ]到x(m-1)以及除R [0]和R [m]之外的寄存器到值h; 将寄存器R [r]更新为R [r]乘以x,其中r是d除以(m-1)mod N的余数的剩余部分; 得到一个工作指数q,即d(m-1)的除法的商; 从i = 0开始执行l次迭代,将R [qi]设置为R [qi]次R [m],并将R [m]提高到m的幂,其中l是基本m中q的长度, qi是基数m中q的表示的第i位数,ql-1是非零; 通过检查R [m]等于寄存器R [0] -R [m-1]的乘积与m-1的幂来验证结果的正确性; 并输出R [j] j的乘积,其中1≦̸ j≦̸ m-1,只有正确性被成功验证。
    • 6. 发明授权
    • Method and a device for performing torus-based cryptography
    • 方法和用于执行基于环面的密码学的设备
    • US08548162B2
    • 2013-10-01
    • US13377663
    • 2010-06-10
    • Marc Joye
    • Marc Joye
    • H04L9/00
    • H04L9/3013H04L9/302H04L9/3255H04L2209/12H04L2209/30
    • At CRYPTO 2003, Rubin and Silverberg introduced the concept of torus-based cryptography over a finite field. The present invention extends their setting to the ring of integers modulo N, thus obtaining compact representations for cryptographic systems that base their security on the discrete logarithm problem and the factoring problem. This can result in small key sizes and substantial savings in memory and bandwidth. However, unlike the case of finite field, analogous trace-based compression methods cannot be adapted to accommodate the extended setting of the invention when the underlying systems require more than a mere exponentiation. The invention finds particular application in a torus-based implementation of the ACJT group signature scheme. Also provided is a processor.
    • 在CRYPTO 2003年,Rubin和Silverberg在有限的领域上介绍了基于环面的加密技术的概念。 本发明将它们的设置扩展到模N的整数环,从而获得基于离散对数问题和保理问题的安全性的密码系统的紧凑表示。 这可能导致小的密钥大小,并显着节省内存和带宽。 然而,与有限域的情况不同,当底层系统需要的不仅仅是求幂时,类似的基于跟踪的压缩方法不能适应于适应本发明的扩展设置。 本发明在ACJT组签名方案的基于环面的实现中发现具体应用。 还提供了处理器。
    • 7. 发明授权
    • Method and apparatus for generating a signature for a message and method and apparatus for verifying such a signature
    • 用于生成用于消息的签名的方法和装置以及用于验证这样的签名的方法和装置
    • US08223963B2
    • 2012-07-17
    • US12737073
    • 2009-06-02
    • Marc Joye
    • Marc Joye
    • G06F21/00
    • H04L9/3249H04L9/302H04L2209/56H04L2209/80
    • A method of generating a signature σ for a message m, the method enabling online/offline signatures. Two random primes p and q are generated, with N=pq; two random quadratic residues g and x are chosen in Z*N, and, for an integer z, h=g−z mod N is calculated. This gives the public key {g, h, x, N} and the private key {p, q, z}. Then, an integer t and a prime e are chosen. The offline signature part y may then be calculated as y=(xg−t)1/eb mod N where b is an integer bigger than 0, predetermined in the signature scheme. The online part k of the signature on message m is then calculated as k=t+mz and the signature σ on message m is generated as σ=(k, y, e) and returned. To verify the signature, it is checked that 1) e is an odd IE-bit integer, 2) k is an IK-bit integer, and 3) yebgkhm≡x(mod N). An advantage of the method is that it may be performed without hashing. Also provided are a signing device, a verification device, and computer program supports.
    • 生成签名和方法的方法 对于消息m,该方法启用在线/离线签名。 产生两个随机素数p和q,其中N = pq; 在Z * N中选择两个随机二次残差g和x,对于整数z,计算h = g-z mod N。 这给出公钥{g,h,x,N}和私钥{p,q,z}。 然后,选择整数t和素数e。 然后可以将离线签名部分y计算为y =(xg-t)1 / eb mod N,其中b是大于0的整数,在签名方案中是预定的。 然后,消息m上的签名的在线部分k被计算为k = t + mz和签名&sgr; on消息m生成为&sgr; =(k,y,e)并返回。 为了验证签名,检查1)e是奇数IE位整数,2)k是IK位整数,以及3)yebgkhm≡x(mod N)。 该方法的优点在于可以不进行散列来执行。 还提供了签名装置,验证装置和计算机程序支持。