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    • 1. 发明申请
    • PROCESSING ENCRYPTED ELECTRONIC DOCUMENTS
    • 加工加密电子文件
    • US20090097662A1
    • 2009-04-16
    • US11872561
    • 2007-10-15
    • Scott OlechowskiShawn EldridgeCayce Ullman
    • Scott OlechowskiShawn EldridgeCayce Ullman
    • H04L9/06G06F21/00
    • H04L63/1441G06F21/554G06F21/56H04L63/0428H04L63/06
    • Electronic document processing logic coupled to a computer and to a quarantine is operable to identify an encrypted electronic document received at the computer; determine whether the key server stores particular decryption data, or credentials to access decryption data, that can decrypt the encrypted electronic document; in response to determining that the key server does not store particular decryption data that can decrypt the encrypted electronic document: store the electronic document in the quarantine; notify one of the users; receive from the one of the users the particular decryption data; decrypt the electronic document; scan the electronic document to identify specified content in the electronic document; and perform one or more responsive actions based on the specified content. As a result, encrypted content in documents or e-mail can be decrypted, scanned for viruses, malware, or prohibited content, and re-encrypted or delivered.
    • 耦合到计算机和隔离的电子文档处理逻辑可操作以识别在计算机处接收的加密的电子文档; 确定密钥服务器是否存储可以解密加密电子文档的特定解密数据或访问解密数据的凭证; 响应于确定密钥服务器不存储可以解密加密的电子文档的特定解密数据:将电子文档存储在隔离区中; 通知用户之一; 从一个用户接收特定的解密数据; 解密电子文件; 扫描电子文件以识别电子文件中的指定内容; 并且基于指定的内容执行一个或多个响应动作。 因此,文件或电子邮件中的加密内容可以被解密,扫描病毒,恶意软件或禁止的内容,并重新加密或传递。
    • 2. 发明授权
    • Processing encrypted electronic documents
    • 处理加密的电子文件
    • US08631227B2
    • 2014-01-14
    • US11872561
    • 2007-10-15
    • Scott OlechowskiShawn EldridgeCayce Ullman
    • Scott OlechowskiShawn EldridgeCayce Ullman
    • H04L29/06H04L9/32H04L9/08
    • H04L63/1441G06F21/554G06F21/56H04L63/0428H04L63/06
    • Electronic document processing logic coupled to a computer and to a quarantine is operable to identify an encrypted electronic document received at the computer; determine whether the key server stores particular decryption data, or credentials to access decryption data, that can decrypt the encrypted electronic document; in response to determining that the key server does not store particular decryption data that can decrypt the encrypted electronic document: store the electronic document in the quarantine; notify one of the users; receive from the one of the users the particular decryption data; decrypt the electronic document; scan the electronic document to identify specified content in the electronic document; and perform one or more responsive actions based on the specified content. As a result, encrypted content in documents or e-mail can be decrypted, scanned for viruses, malware, or prohibited content, and re-encrypted or delivered.
    • 耦合到计算机和隔离的电子文档处理逻辑可操作以识别在计算机处接收的加密的电子文档; 确定密钥服务器是否存储可以解密加密电子文档的特定解密数据或访问解密数据的凭证; 响应于确定密钥服务器不存储可以解密加密的电子文档的特定解密数据:将电子文档存储在隔离区中; 通知用户之一; 从一个用户接收特定的解密数据; 解密电子文件; 扫描电子文件以识别电子文件中的指定内容; 并且基于指定的内容执行一个或多个响应动作。 因此,文件或电子邮件中的加密内容可以被解密,扫描病毒,恶意软件或禁止的内容,并重新加密或传递。
    • 4. 发明申请
    • Method and Apparatus For Transmitting Arbitrarily Large Amounts of Data Over The Internet
    • 通过互联网传输任意大量数据的方法和装置
    • US20070208824A1
    • 2007-09-06
    • US11467113
    • 2006-08-24
    • Cayce UllmanBrian Matthews
    • Cayce UllmanBrian Matthews
    • G06F15/16
    • G06F17/30899H04L67/02
    • Embodiments are described that leverage commonly used HTML tags to enable the transfer of large quantities of data in a network. Embodiments are described where large amounts of data can be sent to a server by fragmenting data into small portions and encoding each portion as part of a URL contained in, for example, the src attribute of an tag. The path of this URL can refer to a predetermined resource contained on the server that is responsible for retrieving fragments of data from the requested URL. Each fragment of data can be sent together with whatever additional pieces of information are required by the server to correctly reassemble the portions to obtain the original, defragmented data. Methods are described that enable a client to communicate an arbitrarily large amount of data to a server using only the GET method.
    • 描述了利用常用的HTML标签来实现网络中大量数据的传送的实施例。 描述了通过将数据分段成小部分并将每个部分编码为例如包含在标签的src属性中的URL的一部分的方式将大量数据发送到服务器的实施例。 该URL的路径可以指负责从请求的URL检索数据片段的服务器上包含的预定资源。 数据的每个片段可以与服务器需要的任何附加信息片段一起发送,以正确地重新组合这些部分以获得原始的,碎片整理的数据。 描述使得客户端仅使用GET方法将任意大量的数据传送到服务器的方法。