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    • 2. 发明授权
    • Method and system for distributed serverless file management
    • 分布式无服务器文件管理方法和系统
    • US07463264B2
    • 2008-12-09
    • US11105199
    • 2005-04-12
    • Mark HarrisonChris WalkerRudro SamantaMiles EganMichael Fong
    • Mark HarrisonChris WalkerRudro SamantaMiles EganMichael Fong
    • G06T13/00
    • G06F17/30194G06F17/301G06Q10/02
    • A method for serverless data management includes receiving an asset identifier in a first system, receiving data associated with the asset identifier in the first system, determining a resource in a storage network for storage of the asset data, in response to a path algorithm and the asset identifier, wherein the determination is made substantially free of interaction with the storage network, storing the asset data on the resource, creating a link between the asset identifier and the resource in the first system, receiving the asset identifier in a second system, determining the storage resource where the asset data is stored, in response to the path algorithm and the asset identifier, wherein the determination is made substantially free of interaction with the storage network and the first system, and creating a link between the asset identifier and the resource in the second computer system.
    • 一种用于无服务器数据管理的方法包括在第一系统中接收资产标识符,接收与第一系统中的资产标识符相关联的数据,响应于路径算法确定存储网络中的资源以存储资产数据,并且 资产标识符,其中所述确定基本上不与所述存储网络进行交互,将所述资产数据存储在所述资源上,在所述资产标识符与所述第一系统中的资源之间建立链接,在第二系统中接收所述资产标识符,确定 响应于路径算法和资产标识符而存储资产数据的存储资源,其中所述确定基本上不与存储网络和第一系统进行交互,并且在资产标识符与资源之间建立链接 在第二台计算机系统中。
    • 5. 发明申请
    • Method and system for distributed serverless file management
    • 分布式无服务器文件管理方法和系统
    • US20050256881A1
    • 2005-11-17
    • US11105199
    • 2005-04-12
    • Mark HarrisonChris WalkerRudro SamantaMiles EganMichael Fong
    • Mark HarrisonChris WalkerRudro SamantaMiles EganMichael Fong
    • G06F7/00G06F17/30
    • G06F17/30194G06F17/301G06Q10/02
    • A method for serverless data management includes receiving an asset identifier in a first system, receiving data associated with the asset identifier in the first system, determining a resource in a storage network for storage of the asset data, in response to a path algorithm and the asset identifier, wherein the determination is made substantially free of interaction with the storage network, storing the asset data on the resource, creating a link between the asset identifier and the resource in the first system, receiving the asset identifier in a second system, determining the storage resource where the asset data is stored, in response to the path algorithm and the asset identifier, wherein the determination is made substantially free of interaction with the storage network and the first system, and creating a link between the asset identifier and the resource in the second computer system.
    • 一种用于无服务器数据管理的方法包括在第一系统中接收资产标识符,接收与第一系统中的资产标识符相关联的数据,响应于路径算法确定存储网络中的资源以存储资产数据,并且 资产标识符,其中所述确定基本上不与所述存储网络进行交互,将所述资产数据存储在所述资源上,在所述资产标识符与所述第一系统中的资源之间建立链接,在第二系统中接收所述资产标识符,确定 响应于路径算法和资产标识符而存储资产数据的存储资源,其中所述确定基本上不与存储网络和第一系统进行交互,并且在资产标识符与资源之间建立链接 在第二台计算机系统中。
    • 7. 发明授权
    • Temporally coherent hair deformation
    • 时间一致的头发变形
    • US08169438B1
    • 2012-05-01
    • US12059863
    • 2008-03-31
    • David BaraffMichael FongChristine Waggoner
    • David BaraffMichael FongChristine Waggoner
    • G06T13/00
    • G06T19/20G06T13/40G06T2219/2021
    • In various embodiments, deformations caused by kinematic or reference objects to secondary objects such as hair or fur may be computed in parallel using a temporally coherent deformation technique. A single or uniform direction for a deformation may be determined from which the deformation of the secondary object will occur with respect to a reference object. The uniform direction for the deformation may be determined rather than allowing the direction of the deformation to vary along a dimension of the secondary object. The magnitude of the deformation may be determined to vary along the dimension of the secondary object in response to the penetration depth or the measure of how far inside the secondary object finds itself within the reference object.
    • 在各种实施例中,可以使用时间相干变形技术平行地计算由运动学或参考对象引起的次要对象(例如毛发或毛皮)的变形。 可以确定用于变形的单个或均匀的方向,相对于参考对象将发生次要对象的变形。 可以确定变形的均匀方向,而不是允许变形的方向沿着次要物体的尺寸变化。 变形的大小可以被确定为响应于穿透深度或辅助对象内的多远距离发现自身在参考对象内的次要对象的尺寸而变化。