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bf2746b8ea
re: issue https://github.com/Unidata/netcdf-c/issues/1251 Assume that you have the URL to a remote dataset which is a normal netcdf-3 or netcdf-4 file. This PR allows the netcdf-c to read that dataset's contents as a netcdf file using HTTP byte ranges if the remote server supports byte-range access. Originally, this PR was set up to access Amazon S3 objects, but it can also access other remote datasets such as those provided by a Thredds server via the HTTPServer access protocol. It may also work for other kinds of servers. Note that this is not intended as a true production capability because, as is known, this kind of access to can be quite slow. In addition, the byte-range IO drivers do not currently do any sort of optimization or caching. An additional goal here is to gain some experience with the Amazon S3 REST protocol. This architecture and its use documented in the file docs/byterange.dox. There are currently two test cases: 1. nc_test/tst_s3raw.c - this does a simple open, check format, close cycle for a remote netcdf-3 file and a remote netcdf-4 file. 2. nc_test/test_s3raw.sh - this uses ncdump to investigate some remote datasets. This PR also incorporates significantly changed model inference code (see the superceded PR https://github.com/Unidata/netcdf-c/pull/1259). 1. It centralizes the code that infers the dispatcher. 2. It adds support for byte-range URLs Other changes: 1. NC_HDF5_finalize was not being properly called by nc_finalize(). 2. Fix minor bug in ncgen3.l 3. fix memory leak in nc4info.c 4. add code to walk the .daprc triples and to replace protocol= fragment tag with a more general mode= tag. Final Note: Th inference code is still way too complicated. We need to move to the validfile() model used by netcdf Java, where each dispatcher is asked if it can process the file. This decentralizes the inference code. This will be done after all the major new dispatchers (PIO, Zarr, etc) have been implemented.
78 lines
2.5 KiB
Plaintext
78 lines
2.5 KiB
Plaintext
netcdf \2004050300_eta_211 {
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dimensions:
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record = UNLIMITED ; // (1 currently)
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x = 135 ;
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y = 95 ;
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datetime_len = 21 ;
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nmodels = 1 ;
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ngrids = 1 ;
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nav = 1 ;
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nav_len = 100 ;
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variables:
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double reftime(record) ;
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reftime:long_name = "reference time" ;
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reftime:units = "hours since 1992-1-1" ;
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double valtime(record) ;
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valtime:long_name = "valid time" ;
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valtime:units = "hours since 1992-1-1" ;
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char datetime(record, datetime_len) ;
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datetime:long_name = "reference date and time" ;
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float valtime_offset(record) ;
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valtime_offset:long_name = "hours from reference time" ;
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valtime_offset:units = "hours" ;
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int model_id(nmodels) ;
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model_id:long_name = "generating process ID number" ;
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char nav_model(nav, nav_len) ;
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nav_model:long_name = "navigation model name" ;
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int grid_type_code(nav) ;
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grid_type_code:long_name = "GRIB-1 GDS data representation type" ;
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char grid_type(nav, nav_len) ;
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grid_type:long_name = "GRIB-1 grid type" ;
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char grid_name(nav, nav_len) ;
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grid_name:long_name = "grid name" ;
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int grid_center(nav) ;
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grid_center:long_name = "GRIB-1 originating center ID" ;
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int grid_number(nav, ngrids) ;
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grid_number:long_name = "GRIB-1 catalogued grid numbers" ;
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grid_number:_FillValue = -9999 ;
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char x_dim(nav, nav_len) ;
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x_dim:long_name = "x dimension name" ;
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char y_dim(nav, nav_len) ;
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y_dim:long_name = "y dimension name" ;
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int Nx(nav) ;
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Nx:long_name = "number of points along x-axis" ;
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int Ny(nav) ;
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Ny:long_name = "number of points along y-axis" ;
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float La1(nav) ;
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La1:long_name = "latitude of first grid point" ;
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La1:units = "degrees_north" ;
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float Lo1(nav) ;
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Lo1:long_name = "longitude of first grid point" ;
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Lo1:units = "degrees_east" ;
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float Lov(nav) ;
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Lov:long_name = "orientation of the grid" ;
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Lov:units = "degrees_east" ;
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float Dx(nav) ;
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Dx:long_name = "x-direction grid length" ;
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Dx:units = "km" ;
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float Dy(nav) ;
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Dy:long_name = "y-direction grid length" ;
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Dy:units = "km" ;
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byte ProjFlag(nav) ;
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ProjFlag:long_name = "projection center flag" ;
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byte ResCompFlag(nav) ;
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ResCompFlag:long_name = "resolution and component flags" ;
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float Z_sfc(record, y, x) ;
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Z_sfc:long_name = "Geopotential height, gpm" ;
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Z_sfc:units = "gp m" ;
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Z_sfc:_FillValue = -9999.f ;
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Z_sfc:navigation = "nav" ;
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// global attributes:
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:record = "reftime, valtime" ;
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:history = "2003-09-25 16:09:26 - created by gribtocdl 1.4 - 12.12.2002" ;
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:title = "CMC_reg_HGT_SFC_0_ps60km_2003092500_P000.grib" ;
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:Conventions = "NUWG" ;
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:version = 0. ;
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}
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