/* * Copyright 1998-2009 University Corporation for Atmospheric Research/Unidata * * Portions of this software were developed by the Unidata Program at the * University Corporation for Atmospheric Research. * * Access and use of this software shall impose the following obligations * and understandings on the user. The user is granted the right, without * any fee or cost, to use, copy, modify, alter, enhance and distribute * this software, and any derivative works thereof, and its supporting * documentation for any purpose whatsoever, provided that this entire * notice appears in all copies of the software, derivative works and * supporting documentation. Further, UCAR requests that the user credit * UCAR/Unidata in any publications that result from the use of this * software or in any product that includes this software. The names UCAR * and/or Unidata, however, may not be used in any advertising or publicity * to endorse or promote any products or commercial entity unless specific * written permission is obtained from UCAR/Unidata. The user also * understands that UCAR/Unidata is not obligated to provide the user with * any support, consulting, training or assistance of any kind with regard * to the use, operation and performance of this software nor to provide * the user with any updates, revisions, new versions or "bug fixes." * * THIS SOFTWARE IS PROVIDED BY UCAR/UNIDATA "AS IS" AND ANY EXPRESS OR * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED * WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE * DISCLAIMED. IN NO EVENT SHALL UCAR/UNIDATA BE LIABLE FOR ANY SPECIAL, * INDIRECT OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES WHATSOEVER RESULTING * FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN ACTION OF CONTRACT, * NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF OR IN CONNECTION * WITH THE ACCESS, USE OR PERFORMANCE OF THIS SOFTWARE. */ package ucar.nc2.iosp.dorade; import org.junit.Test; import org.junit.experimental.categories.Category; import ucar.nc2.NetcdfFile; import ucar.nc2.*; import ucar.nc2.constants._Coordinate; import ucar.ma2.Array; import ucar.ma2.IndexIterator; import ucar.unidata.util.test.category.NeedsCdmUnitTest; import ucar.unidata.util.test.TestDir; import java.io.IOException; @Category(NeedsCdmUnitTest.class) public class TestDorade { public static String groundDoradeFile = TestDir.cdmUnitTestDir + "formats/dorade/swp.1020511015815.SP0L.573.1.2_SUR_v1"; public static String airDoradeFile = TestDir.cdmUnitTestDir + "formats/dorade/swp.1030524195200.TA-ELDR.291.-16.5_AIR_v-999"; public static boolean show = false; @Test public void testDoradeGround() throws IOException { System.out.println("**** Open " + groundDoradeFile); try (NetcdfFile ncfile = NetcdfFile.open(groundDoradeFile)) { for (Variable v : ncfile.getVariables()) { System.out.println(v.getFullName()); } /* test both gate and radial dimension */ Dimension gateDim = ncfile.getRootGroup().findDimension("gate_1"); assert (gateDim.getLength() == 1008); Dimension radialDim = ncfile.getRootGroup().findDimension("radial"); assert (radialDim.getLength() == 439); /* test some att */ Attribute testAtt = ncfile.getRootGroup().findAttribute("Conventions"); assert (testAtt.getStringValue().equals(_Coordinate.Convention)); testAtt = ncfile.getRootGroup().findAttribute("format"); assert (testAtt.getStringValue().equals("Unidata/netCDF/Dorade")); testAtt = ncfile.getRootGroup().findAttribute("Project_name"); assert (testAtt.getStringValue().equalsIgnoreCase("IHOP_2002")); testAtt = ncfile.getRootGroup().findAttribute("Radar_Name"); assert (testAtt.getStringValue().equalsIgnoreCase("SPOL")); testAtt = ncfile.getRootGroup().findAttribute("VolumeCoveragePatternName"); assert (testAtt.getStringValue().equalsIgnoreCase("SUR")); testAtt = ncfile.getRootGroup().findAttribute("Volume_Number"); assert (testAtt.getStringValue().equalsIgnoreCase("1")); testAtt = ncfile.getRootGroup().findAttribute("Sweep_Number"); assert (testAtt.getStringValue().equalsIgnoreCase("2")); testAtt = ncfile.getRootGroup().findAttribute("Sweep_Date"); assert (testAtt.getStringValue().equalsIgnoreCase("2002-05-11 01:58:15Z")); Variable var; var = ncfile.findVariable("elevation"); testReadData(var); var = ncfile.findVariable("azimuth"); testReadData(var); var = ncfile.findVariable("distance_1"); testReadData(var); var = ncfile.findVariable("latitudes_1"); testReadData(var); var = ncfile.findVariable("longitudes_1"); testReadData(var); var = ncfile.findVariable("altitudes_1"); testReadData(var); var = ncfile.findVariable("rays_time"); testReadData(var); var = ncfile.findVariable("Range_to_First_Cell"); float t = testReadScalar(var); assert (t == (float) 150.0); var = ncfile.findVariable("Cell_Spacing"); t = testReadScalar(var); assert (t == (float) 149.89624); var = ncfile.findVariable("Fixed_Angle"); t = testReadScalar(var); assert (t == (float) 1.1975098); var = ncfile.findVariable("Nyquist_Velocity"); t = testReadScalar(var); assert (t == (float) 25.618269); var = ncfile.findVariable("Unambiguous_Range"); t = testReadScalar(var); assert (t == (float) 156.11694); var = ncfile.findVariable("Radar_Constant"); t = testReadScalar(var); assert (t == (float) 70.325195); var = ncfile.findVariable("rcvr_gain"); t = testReadScalar(var); assert (t == (float) 46.95); var = ncfile.findVariable("ant_gain"); t = testReadScalar(var); assert (t == (float) 45.58); var = ncfile.findVariable("sys_gain"); t = testReadScalar(var); assert (t == (float) 46.95); var = ncfile.findVariable("bm_width"); t = testReadScalar(var); assert (t == (float) 0.92); var = ncfile.findVariable("VE"); testReadData(var); var = ncfile.findVariable("DM"); testReadData(var); var = ncfile.findVariable("NCP"); testReadData(var); var = ncfile.findVariable("SW"); testReadData(var); var = ncfile.findVariable("DZ"); testReadData(var); var = ncfile.findVariable("DCZ"); testReadData(var); var = ncfile.findVariable("LVDR"); testReadData(var); var = ncfile.findVariable("NIQ"); testReadData(var); var = ncfile.findVariable("AIQ"); testReadData(var); var = ncfile.findVariable("CH"); testReadData(var); var = ncfile.findVariable("AH"); testReadData(var); var = ncfile.findVariable("CV"); testReadData(var); var = ncfile.findVariable("AV"); testReadData(var); var = ncfile.findVariable("RHOHV"); testReadData(var); var = ncfile.findVariable("LDR"); testReadData(var); var = ncfile.findVariable("DL"); testReadData(var); var = ncfile.findVariable("DX"); testReadData(var); var = ncfile.findVariable("ZDR"); testReadData(var); var = ncfile.findVariable("PHI"); testReadData(var); var = ncfile.findVariable("KDP"); testReadData(var); assert (0 == var.findDimensionIndex("radial")); assert (1 == var.findDimensionIndex("gate_1")); } } @Test public void testDoradeAir() throws IOException { System.out.println("**** Open " + airDoradeFile); try (NetcdfFile ncfile = NetcdfFile.open(airDoradeFile)) { for (Variable v : ncfile.getVariables()) { System.out.println(v.getFullName()); } Dimension gateDim = ncfile.getRootGroup().findDimension("gate_1"); assert (gateDim.getLength() == 320); Dimension radialDim = ncfile.getRootGroup().findDimension("radial"); assert (radialDim.getLength() == 274); Variable var; var = ncfile.findVariable("elevation"); testReadData(var); var = ncfile.findVariable("azimuth"); testReadData(var); var = ncfile.findVariable("distance_1"); testReadData(var); var = ncfile.findVariable("latitudes_1"); testReadData(var); var = ncfile.findVariable("longitudes_1"); testReadData(var); var = ncfile.findVariable("altitudes_1"); testReadData(var); var = ncfile.findVariable("rays_time"); testReadData(var); var = ncfile.findVariable("Range_to_First_Cell"); float t = testReadScalar(var); assert (t == (float) -2.0); var = ncfile.findVariable("Cell_Spacing"); t = testReadScalar(var); assert (t == (float) 150.0); var = ncfile.findVariable("Fixed_Angle"); t = testReadScalar(var); assert (t == (float) -16.53); var = ncfile.findVariable("Nyquist_Velocity"); t = testReadScalar(var); assert (t == (float) 78.03032); var = ncfile.findVariable("Unambiguous_Range"); t = testReadScalar(var); assert (t == (float) 60.0); var = ncfile.findVariable("Radar_Constant"); t = testReadScalar(var); assert (t == (float) -81.17389); var = ncfile.findVariable("rcvr_gain"); t = testReadScalar(var); assert (t == (float) 32.64); var = ncfile.findVariable("ant_gain"); t = testReadScalar(var); assert (t == (float) 39.35); var = ncfile.findVariable("sys_gain"); t = testReadScalar(var); assert (t == (float) 52.34); var = ncfile.findVariable("bm_width"); t = testReadScalar(var); assert (t == (float) 1.79); var = ncfile.findVariable("VS"); testReadData(var); var = ncfile.findVariable("VL"); testReadData(var); var = ncfile.findVariable("SW"); testReadData(var); var = ncfile.findVariable("VR"); testReadData(var); var = ncfile.findVariable("NCP"); testReadData(var); var = ncfile.findVariable("DBZ"); testReadData(var); var = ncfile.findVariable("VG"); testReadData(var); var = ncfile.findVariable("VT"); testReadData(var); assert (null != var.getDimension(0)); assert (null != var.getDimension(1)); } } private void testReadData(Variable v) throws IOException { if (show) System.out.printf(" read %s%n", v.getNameAndDimensions()); assert (null != v); assert (null != v.getDimension(0)); Array a = v.read(); assert (null != a); assert (v.getSize() == a.getSize()); } private float testReadScalar(Variable v) throws IOException { if (show) System.out.printf(" read %s%n", v.getNameAndDimensions()); assert (null != v); Array a = v.read(); assert (null != a); IndexIterator ii = a.getIndexIterator(); return ii.getFloatNext(); } }