Result for 45FE111CC08898EF486DF8E9FC82826EEF482032

Query result

Key Value
FileName./usr/lib/libkido.so.0.1.0
FileSize4461696
MD5298CA7C8AF438788FA6397ADCB0E935D
SHA-145FE111CC08898EF486DF8E9FC82826EEF482032
SHA-256C6A67D71063C0D195AEDC524E6CADE18A15559BA4E4CB2AE8EADF7BB2EE8065C
SSDEEP49152:WL+lIO60XqtB1liz+9UDRSiK+Y90WOD0pES+shUlghcpF4KBnt8KFgRH71:W/O60XqtB1liz+9UDRSiK+Y90w
TLSHT1C8266C9BA7C50F13F9C29E708E799EAA020E1C67F5C5C61ABCC01A4D795708F2F86D49
hashlookup:parent-total1
hashlookup:trust55

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Parents (Total: 1)

The searched file hash is included in 1 parent files which include package known and seen by metalookup. A sample is included below:

Key Value
FileSize720058
MD5B121FD1DEF6C810F94E43AAF04945C50
PackageDescriptionKinematics Dynamics and Optimization Library - main library KIDO is a collaborative, cross-platform, open source library created by the Georgia Tech Graphics Lab and Humanoid Robotics Lab. The library provides data structures and algorithms for kinematic and dynamic applications in robotics and computer animation. KIDO is distinguished by it's accuracy and stability due to its use of generalized coordinates to represent articulated rigid body systems and computation of Lagrange's equations derived from D.Alembert's principle to describe the dynamics of motion. For developers, in contrast to many popular physics engines which view the simulator as a black box, KIDO gives full access to internal kinematic and dynamic quantities, such as the mass matrix, Coriolis and centrifugal forces, transformation matrices and their derivatives. KIDO also provides efficient computation of Jacobian matrices for arbitrary body points and coordinate frames. Contact and collision are handled using an implicit time-stepping, velocity-based LCP (linear-complementarity problem) to guarantee non-penetration, directional friction, and approximated Coulomb friction cone conditions. For collision detection, KIDO uses FCL developed by Willow Garage and the UNC Gamma Lab. KIDO has applications in robotics and computer animation because it features a multibody dynamic simulator and tools for control and motion planning. Multibody dynamic simulation in KIDO is an extension of RTQL8, an open source software created by the Georgia Tech Graphics Lab. This package contains the main library of KIDO.
PackageMaintainerDebian Science Maintainers <debian-science-maintainers@lists.alioth.debian.org>
PackageNamelibkido0.1
PackageSectionlibs
PackageVersion0.1.0+dfsg-2+b2
SHA-1190603329D635BF0B1F290296E425CE4AD309122
SHA-256DCA36B978932084E5DB8B4348F9BFD38105DC866B5EDCCF59B797349D062A0B2