org.hl7.fhir.r5.openehr.OBSERVATION Maven / Gradle / Ivy
package org.hl7.fhir.r5.openehr;
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// Generated on Thu, Mar 23, 2023 19:59+1100 for FHIR v5.0.0
import java.util.ArrayList;
import java.util.Date;
import java.util.List;
import org.hl7.fhir.r5.openehr.Enumerations.*;
import org.hl7.fhir.exceptions.FHIRException;
import org.hl7.fhir.r5.model.*;
import org.hl7.fhir.instance.model.api.ICompositeType;
import ca.uhn.fhir.model.api.annotation.Child;
import ca.uhn.fhir.model.api.annotation.ChildOrder;
import ca.uhn.fhir.model.api.annotation.DatatypeDef;
import ca.uhn.fhir.model.api.annotation.Description;
import ca.uhn.fhir.model.api.annotation.Block;
/**
* Entry subtype for all clinical data in the past or present, i.e. which (by the time it is recorded) has already occurred. OBSERVATION data is expressed using the class HISTORY, which guarantees that it is situated in time. OBSERVATION is used for all notionally objective (i.e. measured in some way) observations of phenomena, and patient-reported phenomena, e.g. pain. Not to be used for recording opinion or future statements of any kind, including instructions, intentions, plans etc.
*/
@DatatypeDef(name="OBSERVATION")
public class OBSERVATION extends CARE_ENTRY implements ICompositeType {
/**
* The data of this observation, in the form of a history of values which may be of any complexity.
*/
@Child(name = "data", type = {HISTORY.class}, order=0, min=1, max=1, modifier=false, summary=false)
@Description(shortDefinition="The data of this observation, in the form of a history of values which may be of any complexity", formalDefinition="The data of this observation, in the form of a history of values which may be of any complexity." )
protected HISTORY data;
/**
* Optional recording of the state of subject of this observation during the observation process, in the form of a separate history of values which may be of any complexity. State may also be recorded within the History of the data attribute.
*/
@Child(name = "state", type = {HISTORY.class}, order=1, min=0, max=1, modifier=false, summary=false)
@Description(shortDefinition="Optional recording of the state of subject of this observation during the observation process", formalDefinition="Optional recording of the state of subject of this observation during the observation process, in the form of a separate history of values which may be of any complexity. State may also be recorded within the History of the data attribute." )
protected HISTORY state;
private static final long serialVersionUID = -787276715L;
/**
* Constructor
*/
public OBSERVATION() {
super();
}
/**
* Constructor
*/
public OBSERVATION(HISTORY data) {
super();
this.setData(data);
}
/**
* @return {@link #data} (The data of this observation, in the form of a history of values which may be of any complexity.)
*/
public HISTORY getData() {
if (this.data == null)
if (Configuration.errorOnAutoCreate())
throw new Error("Attempt to auto-create OBSERVATION.data");
else if (Configuration.doAutoCreate())
this.data = new HISTORY(); // cc
return this.data;
}
public boolean hasData() {
return this.data != null && !this.data.isEmpty();
}
/**
* @param value {@link #data} (The data of this observation, in the form of a history of values which may be of any complexity.)
*/
public OBSERVATION setData(HISTORY value) {
this.data = value;
return this;
}
/**
* @return {@link #state} (Optional recording of the state of subject of this observation during the observation process, in the form of a separate history of values which may be of any complexity. State may also be recorded within the History of the data attribute.)
*/
public HISTORY getState() {
if (this.state == null)
if (Configuration.errorOnAutoCreate())
throw new Error("Attempt to auto-create OBSERVATION.state");
else if (Configuration.doAutoCreate())
this.state = new HISTORY(); // cc
return this.state;
}
public boolean hasState() {
return this.state != null && !this.state.isEmpty();
}
/**
* @param value {@link #state} (Optional recording of the state of subject of this observation during the observation process, in the form of a separate history of values which may be of any complexity. State may also be recorded within the History of the data attribute.)
*/
public OBSERVATION setState(HISTORY value) {
this.state = value;
return this;
}
protected void listChildren(List children) {
super.listChildren(children);
children.add(new Property("data", "http://openehr.org/fhir/StructureDefinition/HISTORY", "The data of this observation, in the form of a history of values which may be of any complexity.", 0, 1, data));
children.add(new Property("state", "http://openehr.org/fhir/StructureDefinition/HISTORY", "Optional recording of the state of subject of this observation during the observation process, in the form of a separate history of values which may be of any complexity. State may also be recorded within the History of the data attribute.", 0, 1, state));
}
@Override
public Property getNamedProperty(int _hash, String _name, boolean _checkValid) throws FHIRException {
switch (_hash) {
case 3076010: /*data*/ return new Property("data", "http://openehr.org/fhir/StructureDefinition/HISTORY", "The data of this observation, in the form of a history of values which may be of any complexity.", 0, 1, data);
case 109757585: /*state*/ return new Property("state", "http://openehr.org/fhir/StructureDefinition/HISTORY", "Optional recording of the state of subject of this observation during the observation process, in the form of a separate history of values which may be of any complexity. State may also be recorded within the History of the data attribute.", 0, 1, state);
default: return super.getNamedProperty(_hash, _name, _checkValid);
}
}
@Override
public Base[] getProperty(int hash, String name, boolean checkValid) throws FHIRException {
switch (hash) {
case 3076010: /*data*/ return this.data == null ? new Base[0] : new Base[] {this.data}; // HISTORY
case 109757585: /*state*/ return this.state == null ? new Base[0] : new Base[] {this.state}; // HISTORY
default: return super.getProperty(hash, name, checkValid);
}
}
@Override
public Base setProperty(int hash, String name, Base value) throws FHIRException {
switch (hash) {
case 3076010: // data
this.data = (HISTORY) value; // HISTORY
return value;
case 109757585: // state
this.state = (HISTORY) value; // HISTORY
return value;
default: return super.setProperty(hash, name, value);
}
}
@Override
public Base setProperty(String name, Base value) throws FHIRException {
if (name.equals("data")) {
this.data = (HISTORY) value; // HISTORY
} else if (name.equals("state")) {
this.state = (HISTORY) value; // HISTORY
} else
return super.setProperty(name, value);
return value;
}
@Override
public Base makeProperty(int hash, String name) throws FHIRException {
switch (hash) {
case 3076010: return getData();
case 109757585: return getState();
default: return super.makeProperty(hash, name);
}
}
@Override
public String[] getTypesForProperty(int hash, String name) throws FHIRException {
switch (hash) {
case 3076010: /*data*/ return new String[] {"http://openehr.org/fhir/StructureDefinition/HISTORY"};
case 109757585: /*state*/ return new String[] {"http://openehr.org/fhir/StructureDefinition/HISTORY"};
default: return super.getTypesForProperty(hash, name);
}
}
@Override
public Base addChild(String name) throws FHIRException {
if (name.equals("data")) {
this.data = new HISTORY();
return this.data;
}
else if (name.equals("state")) {
this.state = new HISTORY();
return this.state;
}
else
return super.addChild(name);
}
public String fhirType() {
return "OBSERVATION";
}
public OBSERVATION copy() {
OBSERVATION dst = new OBSERVATION();
copyValues(dst);
return dst;
}
public void copyValues(OBSERVATION dst) {
super.copyValues(dst);
dst.data = data == null ? null : data.copy();
dst.state = state == null ? null : state.copy();
}
protected OBSERVATION typedCopy() {
return copy();
}
@Override
public boolean equalsDeep(Base other_) {
if (!super.equalsDeep(other_))
return false;
if (!(other_ instanceof OBSERVATION))
return false;
OBSERVATION o = (OBSERVATION) other_;
return compareDeep(data, o.data, true) && compareDeep(state, o.state, true);
}
@Override
public boolean equalsShallow(Base other_) {
if (!super.equalsShallow(other_))
return false;
if (!(other_ instanceof OBSERVATION))
return false;
OBSERVATION o = (OBSERVATION) other_;
return true;
}
public boolean isEmpty() {
return super.isEmpty() && ca.uhn.fhir.util.ElementUtil.isEmpty(data, state);
}
}
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