Result for 132780D1BD781774C5F969F6A4D986418702C711

Query result

Key Value
FileName./usr/include/loki/readme.txt
FileSize446
MD57EAE1010D3AEE46DE5BB9AB78733139E
RDS:package_id182052
SHA-1132780D1BD781774C5F969F6A4D986418702C711
SHA-25648473BE89CF721933F4CB7DEBF7A983F25CE779AF09441056226998DAC2D0AC1
SSDEEP12:jEas5ESFMOQyVyqjPWs8qEMncuW7rAfdYFHXvk2e6S0B:6rFMsDjPWs8HpOgHXbed0B
TLSHT19DF0A36B02AC9B571D5620C0F715D0CB176BC029D905A1602DB3C168320FDF0C1F78B6
insert-timestamp1679426051.294047
sourceRDS.db
hashlookup:parent-total23
hashlookup:trust100

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Parents (Total: 23)

The searched file hash is included in 23 parent files which include package known and seen by metalookup. A sample is included below:

Key Value
MD57FBEC1EC5EFEC86F854B8425125AB444
PackageArchx86_64
PackageDescriptionHeaders, static libraries, and shared object symlinks for the Loki C++ Library.
PackageMaintainerhttps://bugs.opensuse.org
PackageNamelibloki-devel
PackageReleaselp152.3.8
PackageVersion0.1.7
SHA-1027E60C7A9937B4AC23C2674099AFC0D26DE152E
SHA-2565058FE3C7D758C96E9C9244DABF4C275DF39AF9ED9876BA14928A3FDC3BC0A4E
Key Value
MD5BC3E98C7312A10A52EFBD1C28ECFAA2A
PackageArchx86_64
PackageDescriptionHeaders, static libraries, and shared object symlinks for the Loki C++ Library.
PackageMaintainerhttps://bugs.opensuse.org
PackageNamelibloki-devel
PackageReleasebp155.2.10
PackageVersion0.1.7
SHA-108DE77D93F71B09A5557D9184D79EFE5BBB3D433
SHA-256B96EC7175C8F39E83D333ED0399971D1BF54184A3FA3364B291A33EDA4748C4C
Key Value
MD587C7FCC33E555D7B2C79C7AE3F2819A7
PackageArchs390x
PackageDescriptionHeaders, static libraries, and shared object symlinks for the Loki C++ Library.
PackageMaintainerhttps://bugs.opensuse.org
PackageNamelibloki-devel
PackageReleasebp155.2.10
PackageVersion0.1.7
SHA-1159A4FF8CBD0C7DFCC623CD87A0C75BC1B673C4B
SHA-2561578B7902117076A8679796F634E03DAD02356232B0D8F5A61F1C325A1FA1EB1
Key Value
FileSize10698342
MD544A6B8190C2FD8DFB7574233C647DC03
PackageDescriptionsimulations of chemical reactions Cain performs stochastic and deterministic simulations of chemical reactions. It can spawn multiple simulation processes to utilize multi-core computers. It stores models, methods, and simulation output (populations and reaction counts) in an XML format. In addition, SBML models can be imported and exported. The models and methods can be read from input files or edited within the program. . The GUI (Graphical User Interface) is written in Python and uses the wxPython toolkit. Most of the solvers are implemented as command line executables, written in C++, which are driven by Cain. This makes it easy to launch batch jobs. It also simplifies the process of adding new solvers. Cain offers a variety of solvers: * Gillespie's direct method. * Gillespie's first reaction method. * Gibson and Bruck's next reaction method. * Tau-leaping. * Hybrid direct/tau-leaping. * ODE integration. . This package provides the architecture independent files for cain
PackageMaintainerUbuntu Developers <ubuntu-devel-discuss@lists.ubuntu.com>
PackageNamecain
PackageSectionscience
PackageVersion1.9-8
SHA-1162AE7EA7D89664C85B0ABCA1EE4384225B367E7
SHA-256677199E5C82A3833174ABD12F76867C6FCABA0D960FCDEF5100EA206846E5004
Key Value
FileSize10753368
MD51973F8FD9FA1CB60078DF48B6DF04C19
PackageDescriptionsimulations of chemical reactions Cain performs stochastic and deterministic simulations of chemical reactions. It can spawn multiple simulation processes to utilize multi-core computers. It stores models, methods, and simulation output (populations and reaction counts) in an XML format. In addition, SBML models can be imported and exported. The models and methods can be read from input files or edited within the program. . The GUI (Graphical User Interface) is written in Python and uses the wxPython toolkit. Most of the solvers are implemented as command line executables, written in C++, which are driven by Cain. This makes it easy to launch batch jobs. It also simplifies the process of adding new solvers. Cain offers a variety of solvers: * Gillespie's direct method. * Gillespie's first reaction method. * Gibson and Bruck's next reaction method. * Tau-leaping. * Hybrid direct/tau-leaping. * ODE integration. . This package provides the architecture independent files for cain
PackageMaintainerDebian Med Packaging Team <debian-med-packaging@lists.alioth.debian.org>
PackageNamecain
PackageSectionscience
PackageVersion1.10+dfsg-3
SHA-1234082557F41EDC427FBAE00BF5A3FDF178BF67C
SHA-256AD72765C99C8B362C9CF737A9258572834B39C73C3135F5E248D55A7C24B142B
Key Value
FileSize10798584
MD5156C7F685059841A0EE8B62EEE432909
PackageDescriptionsimulations of chemical reactions Cain performs stochastic and deterministic simulations of chemical reactions. It can spawn multiple simulation processes to utilize multi-core computers. It stores models, methods, and simulation output (populations and reaction counts) in an XML format. In addition, SBML models can be imported and exported. The models and methods can be read from input files or edited within the program. . The GUI (Graphical User Interface) is written in Python and uses the wxPython toolkit. Most of the solvers are implemented as command line executables, written in C++, which are driven by Cain. This makes it easy to launch batch jobs. It also simplifies the process of adding new solvers. Cain offers a variety of solvers: * Gillespie's direct method. * Gillespie's first reaction method. * Gibson and Bruck's next reaction method. * Tau-leaping. * Hybrid direct/tau-leaping. * ODE integration. . This package provides the architecture independent files for cain
PackageMaintainerDebian Med Packaging Team <debian-med-packaging@lists.alioth.debian.org>
PackageNamecain
PackageSectionscience
PackageVersion1.9-8
SHA-13151B6B6F196F84B7E400258067C1CDDC8A85E4D
SHA-2569A36B5153115414B91073011E6256F7B3EC80C227DA3B3DD3EDC77E9AEDAD539
Key Value
FileSize10718040
MD55B23C5B020464C183BBFF41F2E9F2167
PackageDescriptionsimulations of chemical reactions Cain performs stochastic and deterministic simulations of chemical reactions. It can spawn multiple simulation processes to utilize multi-core computers. It stores models, methods, and simulation output (populations and reaction counts) in an XML format. In addition, SBML models can be imported and exported. The models and methods can be read from input files or edited within the program. . The GUI (Graphical User Interface) is written in Python and uses the wxPython toolkit. Most of the solvers are implemented as command line executables, written in C++, which are driven by Cain. This makes it easy to launch batch jobs. It also simplifies the process of adding new solvers. Cain offers a variety of solvers: * Gillespie's direct method. * Gillespie's first reaction method. * Gibson and Bruck's next reaction method. * Tau-leaping. * Hybrid direct/tau-leaping. * ODE integration. . This package provides the architecture independent files for cain
PackageMaintainerUbuntu Developers <ubuntu-devel-discuss@lists.ubuntu.com>
PackageNamecain
PackageSectionscience
PackageVersion1.9-6
SHA-131542295AB8420FBD73E349B64E7A45FB610D25F
SHA-256BB436E6E9C0801C7C5190EBD65822F95B233277CF39FE363B22E3A21E2637BA4
Key Value
MD5C5D52FA512720293C21D5B30BA5C8B24
PackageArchx86_64
PackageDescriptionHeaders, static libraries, and shared object symlinks for the Loki C++ Library.
PackageMaintainerhttps://bugs.opensuse.org
PackageNamelibloki-devel
PackageReleasebp153.1.15
PackageVersion0.1.7
SHA-135A05AA820476D9C862864BEDD54B6121661A0F4
SHA-256BCC25AEC2783F1DAD56BF97BDF8518FD25D1C4EA811B7DA2041D95EF3A50275D
Key Value
MD5C6A72D693461C10FAA035D4C6ADBD4D0
PackageArchx86_64
PackageDescriptionHeaders, static libraries, and shared object symlinks for the Loki C++ Library.
PackageMaintainerhttps://bugs.opensuse.org
PackageNamelibloki-devel
PackageReleasebp154.1.23
PackageVersion0.1.7
SHA-155986D2DF6CC0FD77718BA0F2A883BEE0DEFA500
SHA-2565551BC420157FAB3CE7805ADEDE9294F29ADFCE752B0975179FEEF0002B8B242
Key Value
FileSize10756446
MD5041ABDAF4E18B67F392C5529E6CA9748
PackageDescriptionsimulations of chemical reactions Cain performs stochastic and deterministic simulations of chemical reactions. It can spawn multiple simulation processes to utilize multi-core computers. It stores models, methods, and simulation output (populations and reaction counts) in an XML format. In addition, SBML models can be imported and exported. The models and methods can be read from input files or edited within the program. . The GUI (Graphical User Interface) is written in Python and uses the wxPython toolkit. Most of the solvers are implemented as command line executables, written in C++, which are driven by Cain. This makes it easy to launch batch jobs. It also simplifies the process of adding new solvers. Cain offers a variety of solvers: * Gillespie's direct method. * Gillespie's first reaction method. * Gibson and Bruck's next reaction method. * Tau-leaping. * Hybrid direct/tau-leaping. * ODE integration. . This package provides the architecture independent files for cain
PackageMaintainerDebian Med Packaging Team <debian-med-packaging@lists.alioth.debian.org>
PackageNamecain
PackageSectionscience
PackageVersion1.10+dfsg-2
SHA-165B5E6B3669CC005D83E18366C53474EE40F35E1
SHA-2569A3EDEA5D81260518B646ACC2C55D874D88A6203EC7464CC499418E6A1B5ECE6