Key | Value |
---|---|
FileName | ./usr/share/doc/python3-stetl/html/_sources/using.rst.txt |
FileSize | 21474 |
MD5 | 72C03BCB9DDA483CA2F5A6B47EDD7CC9 |
SHA-1 | 03D373CEE46054FACBE04A792D223F1599B1B3D6 |
SHA-256 | 15D941B22BB89D8092C15498C9C1C702BAD64454212346B6E9569108C912C7B1 |
SSDEEP | 384:CI9Z1mpzf7m2MOl/X5niXwbHYKli8q4gPJ0jpwc3XpTTHB2tZ0:lZ1mpT7hMOt5tHYK88q4gPCpwc3Zvh24 |
TLSH | T18AA2D727EE8467394243D0E6BBC951D9FB31C0F8E7911A2670BD4509A30792563FABDC |
hashlookup:parent-total | 4 |
hashlookup:trust | 70 |
The searched file hash is included in 4 parent files which include package known and seen by metalookup. A sample is included below:
Key | Value |
---|---|
FileSize | 6182860 |
MD5 | 2B0E1F9A743EBEEF33AB648718C45EB6 |
PackageDescription | Streaming ETL - Geospatial ETL framework for Python 3 Stetl, streaming ETL, pronounced "staedl", is a lightweight ETL-framework for the conversion of rich (as GML) geospatial data conversion. . It basically glues together existing parsing and transformation tools like GDAL/OGR (ogr2ogr) and XSLT. By using native tools like libxml and libxslt (via Python lxml) Stetl is speed-optimized. . Stetl has a similar design as Spring (Java) and other modern frameworks based on IoC (Inversion of Control). A configuration file (in Python config format) specifies your chain of ETL steps. This chain is formed by a series of Python modules/objects and their parameters. These are symbolically specified in the config file. You just invoke etl.py the main program with a config file. The config file specifies the input modules (e.g. PostGIS), transformers (e.g. XSLT) and outputs (e.g. a GML file or even WFS-T a geospatial protocol to publish GML to a server). . This package contains the module for Python 3. |
PackageMaintainer | Ubuntu Developers <ubuntu-devel-discuss@lists.ubuntu.com> |
PackageName | python3-stetl |
PackageSection | python |
PackageVersion | 2.0+ds-3 |
SHA-1 | 2AF0B684B53CA6042D9117F5C784AC3762E2EBC5 |
SHA-256 | 07E562C9B1E3709F26614DF64E07B15A02C6106C5769931457B70C06A859336C |
Key | Value |
---|---|
FileSize | 6201780 |
MD5 | AF01B166767BC531A83F4E551322937D |
PackageDescription | Streaming ETL - Geospatial ETL framework for Python 3 Stetl, streaming ETL, pronounced "staedl", is a lightweight ETL-framework for the conversion of rich (as GML) geospatial data conversion. . It basically glues together existing parsing and transformation tools like GDAL/OGR (ogr2ogr) and XSLT. By using native tools like libxml and libxslt (via Python lxml) Stetl is speed-optimized. . Stetl has a similar design as Spring (Java) and other modern frameworks based on IoC (Inversion of Control). A configuration file (in Python config format) specifies your chain of ETL steps. This chain is formed by a series of Python modules/objects and their parameters. These are symbolically specified in the config file. You just invoke etl.py the main program with a config file. The config file specifies the input modules (e.g. PostGIS), transformers (e.g. XSLT) and outputs (e.g. a GML file or even WFS-T a geospatial protocol to publish GML to a server). . This package contains the module for Python 3. |
PackageMaintainer | Ubuntu Developers <ubuntu-devel-discuss@lists.ubuntu.com> |
PackageName | python3-stetl |
PackageSection | python |
PackageVersion | 2.0+ds-2 |
SHA-1 | CD9C77551F55382E5C557CEAED0017A796E652EF |
SHA-256 | DCA0E78564C46AAAC61AECDE1EE93CF464CDEC535743C660E3E4D5441DAB66DD |
Key | Value |
---|---|
FileSize | 6203604 |
MD5 | 4E6759843B86E5C6EB05B36FBEA2CD10 |
PackageDescription | Streaming ETL - Geospatial ETL framework for Python 3 Stetl, streaming ETL, pronounced "staedl", is a lightweight ETL-framework for the conversion of rich (as GML) geospatial data conversion. . It basically glues together existing parsing and transformation tools like GDAL/OGR (ogr2ogr) and XSLT. By using native tools like libxml and libxslt (via Python lxml) Stetl is speed-optimized. . Stetl has a similar design as Spring (Java) and other modern frameworks based on IoC (Inversion of Control). A configuration file (in Python config format) specifies your chain of ETL steps. This chain is formed by a series of Python modules/objects and their parameters. These are symbolically specified in the config file. You just invoke etl.py the main program with a config file. The config file specifies the input modules (e.g. PostGIS), transformers (e.g. XSLT) and outputs (e.g. a GML file or even WFS-T a geospatial protocol to publish GML to a server). . This package contains the module for Python 3. |
PackageMaintainer | Debian GIS Project <pkg-grass-devel@lists.alioth.debian.org> |
PackageName | python3-stetl |
PackageSection | python |
PackageVersion | 2.0+ds-1~bpo10+1 |
SHA-1 | 699BA9FFD9B436BEE2F5ABC718571900E401CC9F |
SHA-256 | 6C22B81FA2D4AAD2AC3B3BD546B46E4330061BDC7A2C7CB7407B11849BA212FB |
Key | Value |
---|---|
FileSize | 6184632 |
MD5 | 98B09927A30190D71225B4CC4AF409C8 |
PackageDescription | Streaming ETL - Geospatial ETL framework for Python 3 Stetl, streaming ETL, pronounced "staedl", is a lightweight ETL-framework for the conversion of rich (as GML) geospatial data conversion. . It basically glues together existing parsing and transformation tools like GDAL/OGR (ogr2ogr) and XSLT. By using native tools like libxml and libxslt (via Python lxml) Stetl is speed-optimized. . Stetl has a similar design as Spring (Java) and other modern frameworks based on IoC (Inversion of Control). A configuration file (in Python config format) specifies your chain of ETL steps. This chain is formed by a series of Python modules/objects and their parameters. These are symbolically specified in the config file. You just invoke etl.py the main program with a config file. The config file specifies the input modules (e.g. PostGIS), transformers (e.g. XSLT) and outputs (e.g. a GML file or even WFS-T a geospatial protocol to publish GML to a server). . This package contains the module for Python 3. |
PackageMaintainer | Debian GIS Project <pkg-grass-devel@lists.alioth.debian.org> |
PackageName | python3-stetl |
PackageSection | python |
PackageVersion | 2.0+ds-3 |
SHA-1 | 4CC31A59AF4F41D12BC0830ED2BDFB9A61AC17AC |
SHA-256 | 6005FD70048E8CA238E8D56E1B8617080E8F8AF41CF54FDD5C6D9A221F898F8E |