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The NetCDF-Java Library is a Java interface to NetCDF files,
as well as to many other types of scientific data formats.
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/*
* Copyright (c) 1998 - 2010. 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.ft.grid;
import ucar.ma2.*;
import ucar.nc2.Dimension;
import ucar.nc2.VariableSimpleIF;
import ucar.nc2.util.NamedObject;
import java.util.List;
/**
* Experimental Coverage feature type.
* Superclass of gridded data types
* Can we do this without indexed reads?
* @author caron
* @since Jan 19, 2010
*/
public interface Coverage extends IsMissingEvaluator, VariableSimpleIF, NamedObject {
/**
* Convenience function; lookup Attribute value by name. Must be String valued
*
* @param attName name of the attribute
* @param defaultValue if not found, use this as the default
* @return Attribute string value, or default if not found.
*/
public String findAttValueIgnoreCase(String attName, String defaultValue);
/**
* Returns a List of Dimension containing the dimensions used by this Coverage.
* The dimension are put into canonical order: (rt, e, t, z, y, x).
* Only the x and y are required.
* If the Horizontal axes are 2D, the x and y dimensions are arbitrarily chosen to be
* gcs.getXHorizAxis().getDimension(1), gcs.getXHorizAxis().getDimension(0), respectively.
*
* @return List with objects of type Dimension, in canonical order.
*/
public List getDimensions();
/**
* get the Coverage's Coordinate System.
* @return the Coverage's Coordinate System.
*/
public CoverageCS getCoordinateSystem();
/**
* true if there may be missing data
* @return true if there may be missing data
*/
public boolean hasMissing();
/**
* if val is missing data
* @param val test this value
* @return true if val is missing data
*/
public boolean isMissing(double val);
/*
* Get the minimum and the maximum data value of the previously read Array,
* skipping missing values as defined by isMissingData(double val).
*
* @param data Array to get min/max values
* @return both min and max value.
*
public MAMath.MinMax getMinMaxSkipMissingData(Array data); */
/**
* This reads an arbitrary data slice, returning the data in
* canonical order (rt-e-t-z-y-x). If any dimension does not exist, ignore it.
*
* @param subset subset that you want. Must be created through this.getCoordinateSystem().makeSubset()
* @return data[rt,e,t,z,y,x], eliminating missing or fixed dimension.
* @throws java.io.IOException on io error
*/
public Array readData(CoverageCS.Subset subset) throws java.io.IOException, InvalidRangeException;
/*
* Create a new GeoGrid that is a logical subset of this GeoGrid.
*
* @param subset subset that you want
* @return subsetted GeoGrid
* @throws ucar.ma2.InvalidRangeException if ranges are invalid
*
public Coverage makeSubset(Subset subset) throws ucar.ma2.InvalidRangeException; */
/**
* human readable information about this Coverage.
* @return human readable information about this Coverage.
*/
public String getInfo();
}