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热词
    • 1. 发明授权
    • Signature generating device and method, signature verifying device and method, and computer product
    • 签名生成装置和方法,签名验证装置和方法以及计算机产品
    • US08667302B2
    • 2014-03-04
    • US12888553
    • 2010-09-23
    • Takashi YoshiokaMasahiko TakenakaFumitsugu MatsuoFumiaki Chiba
    • Takashi YoshiokaMasahiko TakenakaFumitsugu MatsuoFumiaki Chiba
    • G06F21/24
    • G01N21/93G01N21/9501G01N2021/8861H04L9/3247H04N5/77
    • A signature generating device includes a receiving unit that receives a sequence of data; a summary data generating unit that generates summary data of the data upon reception of each of the data by the receiving unit; an obtaining unit that obtains, when the number of data included in a sequence of the generated summary data reaches a given number, the sequence of the summary data as a block; a setting unit that sets, as a signature subject, a current block constituted by the sequence of the summary data, and the summary data selected from at least one block contiguous to the current block; a digital signature generating unit that generates a digital signature concerning data summarized for the current block; and a sending unit that sends the generated digital signature, the signature subject associated with the digital signature, and the data summarized for the current block.
    • 签名产生装置包括:接收单元,其接收数据序列; 汇总数据生成单元,其通过接收单元接收到每个数据时生成数据的汇总数据; 获取单元,当所生成的汇总数据的序列中包括的数据的数量达到给定的数量时,获得作为块的汇总数据的序列; 设置单元,其将签名对象设置为由所述汇总数据的序列构成的当前块以及从与所述当前块相邻的至少一个块中选择的汇总数据; 数字签名生成单元,生成关于当前块的总结的数据的数字签名; 以及发送单元,其发送生成的数字签名,与数字签名相关联的签名主体以及针对当前块总结的数据。
    • 3. 发明授权
    • Digital signature program, digital signature apparatus, and digital signature method
    • 数字签名程序,数字签名装置和数字签名方法
    • US08566597B2
    • 2013-10-22
    • US13137543
    • 2011-08-24
    • Masahiko TakenakaTakashi YoshiokaFumitsugu MatsuoFumiaki Chiba
    • Masahiko TakenakaTakashi YoshiokaFumitsugu MatsuoFumiaki Chiba
    • H04L9/32
    • H04L9/3247H04L9/3236H04L2209/125
    • When input data (f0) is read into a digital signature generating apparatus, a hash value (h0) is calculated. The hash value (h0) is stored to a storage area (M1), which has the highest priority rank among 5 storage areas. Subsequently, when input data (f1) is read in, a hash value (h1) is calculated. Since the storage area (M1) is already occupied by the hash value (h0), the hash value (h0) is read out from storage area (M1), emptying the storage area (M1). The read hash value (h0) and the hash value (h1) are concatenated, forming a concatenated hash value (h0|h1) and a hash value (h0,1) is calculated. The hash value (h0,1) is stored to a storage area (M2), which has the highest priority rank after the storage area (M1). When input data (f2) is read in, a hash value (h2) is calculated and stored to the storage area (M1).
    • 当将数据(f0)读入数字签名生成装置时,计算散列值(h0)。 散列值(h0)被存储到在5个存储区域中具有最高优先级的存储区域(M1)。 随后,当读入输入数据(f1)时,计算散列值(h1)。 由于存储区域(M1)已经被哈希值(h0)占据,所以从存储区域(M1)读出散列值(h0),从而清空存储区域(M1)。 读取散列值(h0)和散列值(h1)被级联,形成连接的散列值(h0 | h1)和哈希值(h0,1)。 哈希值(h0,1)被存储到在存储区域(M1)之后具有最高优先级的存储区域(M2)。 当读入输入数据(f2)时,计算散列值(h2)并将其存储到存储区域(M1)。
    • 4. 发明申请
    • Digital signature program, digital signature apparatus, and digital signature method
    • 数字签名程序,数字签名装置和数字签名方法
    • US20110314291A1
    • 2011-12-22
    • US13137543
    • 2011-08-24
    • Masahiko TakenakaTakashi YoshiokaFumitsugu MatsuoFumiaki Chiba
    • Masahiko TakenakaTakashi YoshiokaFumitsugu MatsuoFumiaki Chiba
    • H04L9/32
    • H04L9/3247H04L9/3236H04L2209/125
    • When input data (f0) is read into a digital signature generating apparatus, a hash value (h0) is calculated. The hash value (h0) is stored to a storage area (M1), which has the highest priority rank among 5 storage areas. Subsequently, when input data (f1) is read in, a hash value (h1) is calculated. Since the storage area (M1) is already occupied by the hash value (h0), the hash value (h0) is read out from storage area (M1), emptying the storage area (M1). The read hash value (h0) and the hash value (h1) are concatenated, forming a concatenated hash value (h0|h1) and a hash value (h0,1) is calculated. The hash value (h0,1) is stored to a storage area (M2), which has the highest priority rank after the storage area (M1). When input data (f2) is read in, a hash value (h2) is calculated and stored to the storage area (M1).
    • 当将数据(f0)读入数字签名生成装置时,计算散列值(h0)。 散列值(h0)被存储到在5个存储区域中具有最高优先级的存储区域(M1)。 随后,当读入输入数据(f1)时,计算散列值(h1)。 由于存储区域(M1)已经被哈希值(h0)占据,所以从存储区域(M1)读出散列值(h0),从而清空存储区域(M1)。 读取散列值(h0)和散列值(h1)被级联,形成连接的散列值(h0 | h1)和哈希值(h0,1)。 哈希值(h0,1)被存储到在存储区域(M1)之后具有最高优先级的存储区域(M2)。 当读入输入数据(f2)时,计算散列值(h2)并将其存储到存储区域(M1)。