Result for 01C2358CC07E3D1D19BCAC9DE80C78C5AD0EFA9B

Query result

Key Value
FileName./usr/share/gnuradio/grc/blocks/blocks_probe_rate.block.yml
FileSize1124
MD5924410F6C502C051B4F0940CB63AB100
SHA-101C2358CC07E3D1D19BCAC9DE80C78C5AD0EFA9B
SHA-256549945684DD78496208DDB43DC48BDF9629368C0DD2389BB324842E9930FEE86
SSDEEP24:09EQ/voTc18d2IblhvGbRORGyo96fUJezsYGJIYP:tqoTc14hh62Q96f9sYCIYP
TLSHT18D21F39644B7EB51BBE250A67D64A3004721520F3F015638FA8EA3F87F0D65CE299B85
tar:gnameroot
tar:unameroot
hashlookup:parent-total27
hashlookup:trust100

Network graph view

Parents (Total: 27)

The searched file hash is included in 27 parent files which include package known and seen by metalookup. A sample is included below:

Key Value
FileSize17801984
MD523A7A01FA5B303C751CF5310D7677693
PackageDescriptionGNU Radio Software Radio Toolkit GNU Radio provides signal processing blocks to implement software radios. It can be used with readily-available low-cost external RF hardware to create software-defined radios, or without hardware in a simulation-like environment. It is widely used in hobbyist, academic and commercial environments to support both wireless communications research and real-world radio systems. . GNU Radio applications are primarily written using the Python programming language, while the supplied performance-critical signal processing path is implemented in C++ using processor floating-point extensions, where available. Thus, the developer is able to implement real-time, high-throughput radio systems in a simple-to-use, rapid-application-development environment. . While not primarily a simulation tool, GNU Radio does support development of signal processing algorithms using pre-recorded or generated data, avoiding the need for actual RF hardware. . This package contains the gnuradio-companion, a graphical tool for creating signal flow graphs and generating flow-graph source code. Also included are a variety of tools and utility programs.
PackageMaintainerA. Maitland Bottoms <bottoms@debian.org>
PackageNamegnuradio
PackageSectioncomm
PackageVersion3.9.4.0-1
SHA-10E73697A2138C05A341BE927CD394DBD639BE1A0
SHA-2567553388DA8181CB46E9BA5DC86B1BE2AAC1F833F42B077A5FD45323694EC978B
Key Value
FileSize17955524
MD5DF7EBB4A996AC9F6D8F210BB46D2B949
PackageDescriptionGNU Radio Software Radio Toolkit GNU Radio provides signal processing blocks to implement software radios. It can be used with readily-available low-cost external RF hardware to create software-defined radios, or without hardware in a simulation-like environment. It is widely used in hobbyist, academic and commercial environments to support both wireless communications research and real-world radio systems. . GNU Radio applications are primarily written using the Python programming language, while the supplied performance-critical signal processing path is implemented in C++ using processor floating-point extensions, where available. Thus, the developer is able to implement real-time, high-throughput radio systems in a simple-to-use, rapid-application-development environment. . While not primarily a simulation tool, GNU Radio does support development of signal processing algorithms using pre-recorded or generated data, avoiding the need for actual RF hardware. . This package contains the gnuradio-companion, a graphical tool for creating signal flow graphs and generating flow-graph source code. Also included are a variety of tools and utility programs.
PackageMaintainerA. Maitland Bottoms <bottoms@debian.org>
PackageNamegnuradio
PackageSectioncomm
PackageVersion3.9.2.0-2
SHA-1170B6F90A213082DE0A7DB88C7BA5A6092B1082C
SHA-256986BF89341B41D536696FB4C2036DC820C63761F0F15F9ED0B884228366ADF27
Key Value
FileSize17791364
MD56A21AEC0954CB3B88061F830FCE71C7E
PackageDescriptionGNU Radio Software Radio Toolkit GNU Radio provides signal processing blocks to implement software radios. It can be used with readily-available low-cost external RF hardware to create software-defined radios, or without hardware in a simulation-like environment. It is widely used in hobbyist, academic and commercial environments to support both wireless communications research and real-world radio systems. . GNU Radio applications are primarily written using the Python programming language, while the supplied performance-critical signal processing path is implemented in C++ using processor floating-point extensions, where available. Thus, the developer is able to implement real-time, high-throughput radio systems in a simple-to-use, rapid-application-development environment. . While not primarily a simulation tool, GNU Radio does support development of signal processing algorithms using pre-recorded or generated data, avoiding the need for actual RF hardware. . This package contains the gnuradio-companion, a graphical tool for creating signal flow graphs and generating flow-graph source code. Also included are a variety of tools and utility programs.
PackageMaintainerA. Maitland Bottoms <bottoms@debian.org>
PackageNamegnuradio
PackageSectioncomm
PackageVersion3.9.2.0-2
SHA-135980ED43620A84847430CF1220C598709F8DA4A
SHA-25694A3DCD29F7E8F17CD18971AFDD3BBCA4A4D0CBCE1410DEC9DD9BC7B7D3835C3
Key Value
MD59BA885209447E1A03C786B264A261812
PackageArcharmv7hl
PackageDescriptionGRC is a graphical flowgraph editor for the GNU Software Radio.
PackageMaintainerpapoteur <papoteur>
PackageNamegnuradio-companion
PackageRelease4.mga9
PackageVersion3.10.4.0
SHA-138D1CC4D13F05BEFB6C95F078862956F9C674DEA
SHA-2561FF2D82B346B058909666F09E30C656F38BA74469578E1D0EEDDEAF256820B75
Key Value
FileSize18148712
MD5930420B81C99CD51EEC37FB86518F13F
PackageDescriptionGNU Radio Software Radio Toolkit GNU Radio provides signal processing blocks to implement software radios. It can be used with readily-available low-cost external RF hardware to create software-defined radios, or without hardware in a simulation-like environment. It is widely used in hobbyist, academic and commercial environments to support both wireless communications research and real-world radio systems. . GNU Radio applications are primarily written using the Python programming language, while the supplied performance-critical signal processing path is implemented in C++ using processor floating-point extensions, where available. Thus, the developer is able to implement real-time, high-throughput radio systems in a simple-to-use, rapid-application-development environment. . While not primarily a simulation tool, GNU Radio does support development of signal processing algorithms using pre-recorded or generated data, avoiding the need for actual RF hardware. . This package contains the gnuradio-companion, a graphical tool for creating signal flow graphs and generating flow-graph source code. Also included are a variety of tools and utility programs.
PackageMaintainerA. Maitland Bottoms <bottoms@debian.org>
PackageNamegnuradio
PackageSectioncomm
PackageVersion3.9.4.0-1
SHA-14D331CD80E0088A8BEFBC9469AA3F51D788C8AE4
SHA-2568BB92C2BBAE13235F1198CBD1176CC1CC0558D9D4A007DDC0FF66FE4C190E463
Key Value
MD5092EF27E7CF56505FE7F79E7162DEDB4
PackageArchi586
PackageDescriptionGRC is a graphical flowgraph editor for the GNU Software Radio.
PackageMaintainerpapoteur <papoteur>
PackageNamegnuradio-companion
PackageRelease4.mga9
PackageVersion3.10.4.0
SHA-14FFB57810B6C7635A755A275C839AE4042E12DF0
SHA-256B09D16B3879FFFABC501ED3D99C129014B9C063B9305F8724CCC1350BDEE271A
Key Value
FileNamehttp://mirror.math.princeton.edu/pub/blackarch/blackarch/os//aarch64//gnuradio-3.9.2.0-3-aarch64.pkg.tar.xz
MD52529014F104BAEA0EE64493C3B77BD57
SHA-154716904E41EFD9DA1573D16279035BA35FA1AE3
SHA-25657A64E534FF5F7EAAB00FA3FE729911E901CF8273B701E516A21086ACC9FB590
SSDEEP98304:b96B2fBpklC2393InAs9z2CzKIahXZ7hTkaMeZniF0jGR0F/E:b96B2/CN3IAKVzKLv7hT3llE
TLSHT11B563307381D71EB8B7951E3811FA96C7977088F694A6EBC13E6C7F08431ADE609E12D
Key Value
FileSize17663716
MD529B6E1708966B9ADDD752C03072B7DE9
PackageDescriptionGNU Radio Software Radio Toolkit GNU Radio provides signal processing blocks to implement software radios. It can be used with readily-available low-cost external RF hardware to create software-defined radios, or without hardware in a simulation-like environment. It is widely used in hobbyist, academic and commercial environments to support both wireless communications research and real-world radio systems. . GNU Radio applications are primarily written using the Python programming language, while the supplied performance-critical signal processing path is implemented in C++ using processor floating-point extensions, where available. Thus, the developer is able to implement real-time, high-throughput radio systems in a simple-to-use, rapid-application-development environment. . While not primarily a simulation tool, GNU Radio does support development of signal processing algorithms using pre-recorded or generated data, avoiding the need for actual RF hardware. . This package contains the gnuradio-companion, a graphical tool for creating signal flow graphs and generating flow-graph source code. Also included are a variety of tools and utility programs.
PackageMaintainerA. Maitland Bottoms <bottoms@debian.org>
PackageNamegnuradio
PackageSectioncomm
PackageVersion3.9.4.0-1
SHA-16413E6A7967E1932705AC871ED49463266162BCF
SHA-2560EEC335B922B263D273A32E5DB60DF6EDC00DE57A923E9AD3BC7CE09BF5FE59B
Key Value
FileSize17665504
MD5198E928FA6F67BBD43E59ED3DD7D105E
PackageDescriptionGNU Radio Software Radio Toolkit GNU Radio provides signal processing blocks to implement software radios. It can be used with readily-available low-cost external RF hardware to create software-defined radios, or without hardware in a simulation-like environment. It is widely used in hobbyist, academic and commercial environments to support both wireless communications research and real-world radio systems. . GNU Radio applications are primarily written using the Python programming language, while the supplied performance-critical signal processing path is implemented in C++ using processor floating-point extensions, where available. Thus, the developer is able to implement real-time, high-throughput radio systems in a simple-to-use, rapid-application-development environment. . While not primarily a simulation tool, GNU Radio does support development of signal processing algorithms using pre-recorded or generated data, avoiding the need for actual RF hardware. . This package contains the gnuradio-companion, a graphical tool for creating signal flow graphs and generating flow-graph source code. Also included are a variety of tools and utility programs.
PackageMaintainerA. Maitland Bottoms <bottoms@debian.org>
PackageNamegnuradio
PackageSectioncomm
PackageVersion3.9.2.0-2
SHA-1667D1EA3B7C434F5615231A9698526D4524139D8
SHA-2568E10EB77F1E3B5907ABF0DADE174847B095553B2CFC5886BCE1873FC2BB869D2
Key Value
FileSize17503100
MD5645E475ED05CE8698635C2FD81D77A4B
PackageDescriptionGNU Radio Software Radio Toolkit GNU Radio provides signal processing blocks to implement software radios. It can be used with readily-available low-cost external RF hardware to create software-defined radios, or without hardware in a simulation-like environment. It is widely used in hobbyist, academic and commercial environments to support both wireless communications research and real-world radio systems. . GNU Radio applications are primarily written using the Python programming language, while the supplied performance-critical signal processing path is implemented in C++ using processor floating-point extensions, where available. Thus, the developer is able to implement real-time, high-throughput radio systems in a simple-to-use, rapid-application-development environment. . While not primarily a simulation tool, GNU Radio does support development of signal processing algorithms using pre-recorded or generated data, avoiding the need for actual RF hardware. . This package contains the gnuradio-companion, a graphical tool for creating signal flow graphs and generating flow-graph source code. Also included are a variety of tools and utility programs.
PackageMaintainerA. Maitland Bottoms <bottoms@debian.org>
PackageNamegnuradio
PackageSectioncomm
PackageVersion3.9.4.0-1
SHA-167B87F95BBD1B69B08CEAA4611E1306810179068
SHA-256F13041874CD775DCDB1734D26D8129FC87EB2548024456C9B3D2F0BAB2F20D4B