import java.beans.PropertyChangeSupport;
import java.util.ArrayList;
import java.util.Arrays;
+import java.util.Collections;
import java.util.HashMap;
+import java.util.HashSet;
import java.util.Hashtable;
-import java.util.Iterator;
import java.util.List;
import java.util.Map;
import java.util.Set;
synchronized (fd)
{
fd.clear();
- java.util.Iterator<String> fdisp = _fr.getFeaturesDisplayed()
- .getVisibleFeatures();
- while (fdisp.hasNext())
+ for (String type : _fr.getFeaturesDisplayed()
+ .getVisibleFeatures())
{
- fd.setVisible(fdisp.next());
+ fd.setVisible(type);
}
}
}
@Override
public List<SequenceFeature> findFeaturesAtRes(SequenceI sequence, int res)
{
- ArrayList<SequenceFeature> tmp = new ArrayList<SequenceFeature>();
- SequenceFeature[] features = sequence.getSequenceFeatures();
-
- if (features != null)
+ List<SequenceFeature> result = new ArrayList<SequenceFeature>();
+ if (!av.areFeaturesDisplayed())
{
- for (int i = 0; i < features.length; i++)
- {
- if (!av.areFeaturesDisplayed()
- || !av.getFeaturesDisplayed().isVisible(
- features[i].getType()))
- {
- continue;
- }
+ return result;
+ }
- if (features[i].featureGroup != null
- && featureGroups != null
- && featureGroups.containsKey(features[i].featureGroup)
- && !featureGroups.get(features[i].featureGroup)
- .booleanValue())
- {
- continue;
- }
+ Set<String> visibleFeatures = getFeaturesDisplayed()
+ .getVisibleFeatures();
+ String[] visibleTypes = visibleFeatures
+ .toArray(new String[visibleFeatures.size()]);
- // check if start/end are at res, and if not a contact feature, that res
- // lies between start and end
- if ((features[i].getBegin() == res || features[i].getEnd() == res)
- || (!features[i].isContactFeature()
- && (features[i].getBegin() < res) && (features[i]
- .getEnd() >= res)))
- {
- tmp.add(features[i]);
- }
+ /*
+ * include features at the position provided their feature type is
+ * displayed, and feature group is null or marked for display
+ */
+ List<SequenceFeature> features = sequence.getFeatures().findFeatures(
+ res, res, visibleTypes);
+
+ for (SequenceFeature sf : features)
+ {
+ if (!featureGroupNotShown(sf))
+ {
+ result.add(sf);
}
}
- return tmp;
+ return result;
}
/**
* Searches alignment for all features and updates colours
*
* @param newMadeVisible
- * if true newly added feature types will be rendered immediatly
+ * if true newly added feature types will be rendered immediately
* TODO: check to see if this method should actually be proxied so
* repaint events can be propagated by the renderer code
*/
}
FeaturesDisplayedI featuresDisplayed = av.getFeaturesDisplayed();
- ArrayList<String> allfeatures = new ArrayList<String>();
- ArrayList<String> oldfeatures = new ArrayList<String>();
+ Set<String> oldfeatures = new HashSet<String>();
if (renderOrder != null)
{
for (int i = 0; i < renderOrder.length; i++)
}
}
}
- if (minmax == null)
- {
- minmax = new Hashtable<String, float[][]>();
- }
+ // <<<<<<< HEAD
+ //
+ // =======
+ // if (minmax == null)
+ // {
+ // minmax = new Hashtable<String, float[][]>();
+ // }
+ //
+ // Set<String> oldGroups = new HashSet<String>(featureGroups.keySet());
+ // >>>>>>> refs/heads/develop
AlignmentI alignment = av.getAlignment();
+ List<String> allfeatures = new ArrayList<String>(); // or HashSet?
+
for (int i = 0; i < alignment.getHeight(); i++)
{
SequenceI asq = alignment.getSequenceAt(i);
- SequenceFeature[] features = asq.getSequenceFeatures();
-
- if (features == null)
- {
- continue;
- }
-
- int index = 0;
- while (index < features.length)
+ for (String group : asq.getFeatures().getFeatureGroups(true))
{
- if (!featuresDisplayed.isRegistered(features[index].getType()))
+ // <<<<<<< HEAD
+ /*
+ * features in null group are always displayed; other groups
+ * keep their current visibility; new groups as 'newMadeVisible'
+ */
+ boolean groupDisplayed = true;
+ if (group != null)
+ // =======
+ // continue;
+ // }
+ //
+ // int index = 0;
+ // while (index < features.length)
+ // {
+ // String fgrp = features[index].getFeatureGroup();
+ // oldGroups.remove(fgrp);
+ // if (!featuresDisplayed.isRegistered(features[index].getType()))
+ // >>>>>>> refs/heads/develop
{
- String fgrp = features[index].getFeatureGroup();
- if (fgrp != null)
+ // <<<<<<< HEAD
+ if (featureGroups.containsKey(group))
+ // =======
+ // if (fgrp != null)
+ // >>>>>>> refs/heads/develop
{
- Boolean groupDisplayed = featureGroups.get(fgrp);
- if (groupDisplayed == null)
- {
- groupDisplayed = Boolean.valueOf(newMadeVisible);
- featureGroups.put(fgrp, groupDisplayed);
- }
- if (!groupDisplayed.booleanValue())
- {
- index++;
- continue;
- }
+ groupDisplayed = featureGroups.get(group);
}
- if (!(features[index].begin == 0 && features[index].end == 0))
+ else
{
- // If beginning and end are 0, the feature is for the whole sequence
- // and we don't want to render the feature in the normal way
-
- if (newMadeVisible
- && !oldfeatures.contains(features[index].getType()))
- {
- // this is a new feature type on the alignment. Mark it for
- // display.
- featuresDisplayed.setVisible(features[index].getType());
- setOrder(features[index].getType(), 0);
- }
+ groupDisplayed = newMadeVisible;
+ featureGroups.put(group, groupDisplayed);
}
}
- if (!allfeatures.contains(features[index].getType()))
- {
- allfeatures.add(features[index].getType());
- }
- if (!Float.isNaN(features[index].score))
+ if (groupDisplayed)
{
- int nonpos = features[index].getBegin() >= 1 ? 0 : 1;
- float[][] mm = minmax.get(features[index].getType());
- if (mm == null)
- {
- mm = new float[][] { null, null };
- minmax.put(features[index].getType(), mm);
- }
- if (mm[nonpos] == null)
+ Set<String> types = asq.getFeatures().getFeatureTypesForGroups(
+ true, group);
+ for (String type : types)
{
- mm[nonpos] = new float[] { features[index].score,
- features[index].score };
-
- }
- else
- {
- if (mm[nonpos][0] > features[index].score)
- {
- mm[nonpos][0] = features[index].score;
- }
- if (mm[nonpos][1] < features[index].score)
+ if (!allfeatures.contains(type)) // or use HashSet and no test?
{
- mm[nonpos][1] = features[index].score;
+ allfeatures.add(type);
}
+ updateMinMax(asq, type, true); // todo: for all features?
}
}
- index++;
}
}
+
+ /*
+ //<<<<<<< HEAD
+ * mark any new feature types as visible
+ */
+ Collections.sort(allfeatures, String.CASE_INSENSITIVE_ORDER);
+ if (newMadeVisible)
+ {
+ for (String type : allfeatures)
+ {
+ if (!oldfeatures.contains(type))
+ {
+ featuresDisplayed.setVisible(type);
+ setOrder(type, 0);
+ }
+ }
+ // =======
+ // * oldGroups now consists of groups that no longer
+ // * have any feature in them - remove these
+ // */
+ // for (String grp : oldGroups)
+ // {
+ // featureGroups.remove(grp);
+ // >>>>>>> refs/heads/develop
+ }
+
updateRenderOrder(allfeatures);
findingFeatures = false;
}
+ /**
+ * Updates the global (alignment) min and max values for a feature type from
+ * the score for a sequence, if the score is not NaN. Values are stored
+ * separately for positional and non-positional features.
+ *
+ * @param seq
+ * @param featureType
+ * @param positional
+ */
+ protected void updateMinMax(SequenceI seq, String featureType,
+ boolean positional)
+ {
+ float min = seq.getFeatures().getMinimumScore(featureType, positional);
+ if (Float.isNaN(min))
+ {
+ return;
+ }
+
+ float max = seq.getFeatures().getMaximumScore(featureType, positional);
+
+ /*
+ * stored values are
+ * { {positionalMin, positionalMax}, {nonPositionalMin, nonPositionalMax} }
+ */
+ if (minmax == null)
+ {
+ minmax = new Hashtable<String, float[][]>();
+ }
+ synchronized (minmax)
+ {
+ float[][] mm = minmax.get(featureType);
+ int index = positional ? 0 : 1;
+ if (mm == null)
+ {
+ mm = new float[][] { null, null };
+ minmax.put(featureType, mm);
+ }
+ if (mm[index] == null)
+ {
+ mm[index] = new float[] { min, max };
+ }
+ else
+ {
+ mm[index][0] = Math.min(mm[index][0], min);
+ mm[index][1] = Math.max(mm[index][1], max);
+ }
+ }
+ }
protected Boolean firing = Boolean.FALSE;
/**
}
/**
- * Returns the configured colour for a specific feature using current feature
- * settings. This does not include any consideration of feature visibility,
- * colour transparency, graduated colour shading etc.
+ * Returns the configured colour for a particular feature instance. This
+ * includes calculation of 'colour by label', or of a graduated score colour,
+ * if applicable. It does not take into account feature visibility or colour
+ * transparency.
*
* @param feature
* @return
return fc.getColor(feature);
}
+ /**
+ * Answers true unless the feature has a graduated colour scheme and the
+ * feature value lies outside the current threshold for display
+ *
+ * @param sequenceFeature
+ * @return
+ */
protected boolean showFeature(SequenceFeature sequenceFeature)
{
FeatureColourI fc = getFeatureStyle(sequenceFeature.type);
}
/**
- * Sets the priority order for features
+ * Sets the priority order for features, with the highest priority (displayed
+ * on top) at the start of the data array
*
* @param data
* { String(Type), Colour(Type), Boolean(Displayed) }
{
return fcols;
}
- Iterator<String> features = getViewport().getFeaturesDisplayed()
+ Set<String> features = getViewport().getFeaturesDisplayed()
.getVisibleFeatures();
- while (features.hasNext())
+ for (String feature : features)
{
- String feature = features.next();
fcols.put(feature, getFeatureStyle(feature));
}
return fcols;
public List<String> getDisplayedFeatureGroups()
{
List<String> _gps = new ArrayList<String>();
- boolean valid = false;
for (String gp : getFeatureGroups())
{
if (checkGroupVisibility(gp, false))
{
- valid = true;
_gps.add(gp);
}
- if (!valid)
- {
- return null;
- }
- else
- {
- // gps = new String[_gps.size()];
- // _gps.toArray(gps);
- }
}
return _gps;
}
+ /**
+ * Answers true if the feature belongs to a feature group which is not
+ * currently displayed, else false
+ *
+ * @param sequenceFeature
+ * @return
+ */
+ protected boolean featureGroupNotShown(final SequenceFeature sequenceFeature)
+ {
+ return featureGroups != null
+ && sequenceFeature.featureGroup != null
+ && sequenceFeature.featureGroup.length() != 0
+ && featureGroups.containsKey(sequenceFeature.featureGroup)
+ && !featureGroups.get(sequenceFeature.featureGroup)
+ .booleanValue();
+ }
+
}