- // and shift the rest.
- this.compensateForEdits(deletions);
- }
- }
- }
-
- /**
- * This Method is used to return all the HiddenColumn regions less than the
- * given index.
- *
- * @param end
- * int
- * @return Vector
- */
- public Vector getHiddenColumns()
- {
- return hiddenColumns;
- }
-
- /**
- * Return absolute column index for a visible column index
- *
- * @param column
- * int column index in alignment view
- * @return alignment column index for column
- */
- public int adjustForHiddenColumns(int column)
- {
- int result = column;
- if (hiddenColumns != null)
- {
- for (int i = 0; i < hiddenColumns.size(); i++)
- {
- int[] region = (int[]) hiddenColumns.elementAt(i);
- if (result >= region[0])
- {
- result += region[1] - region[0] + 1;
- }
- }
- }
- return result;
- }
-
- /**
- * Use this method to find out where a column will appear in the visible
- * alignment when hidden columns exist. If the column is not visible, then the
- * left-most visible column will always be returned.
- *
- * @param hiddenColumn
- * int
- * @return int
- */
- public int findColumnPosition(int hiddenColumn)
- {
- int result = hiddenColumn;
- if (hiddenColumns != null)
- {
- int index = 0;
- int[] region;
- do
- {
- region = (int[]) hiddenColumns.elementAt(index++);
- if (hiddenColumn > region[1])
- {
- result -= region[1] + 1 - region[0];
- }
- } while ((hiddenColumn > region[1]) && (index < hiddenColumns.size()));
- if (hiddenColumn > region[0] && hiddenColumn < region[1])
- {
- return region[0] + hiddenColumn - result;
- }
- }
- return result; // return the shifted position after removing hidden columns.
- }
-
- /**
- * Use this method to determine where the next hiddenRegion starts
- */
- public int findHiddenRegionPosition(int hiddenRegion)
- {
- int result = 0;
- if (hiddenColumns != null)
- {
- int index = 0;
- int gaps = 0;
- do
- {
- int[] region = (int[]) hiddenColumns.elementAt(index);
- if (hiddenRegion == 0)
- {
- return region[0];
- }
-
- gaps += region[1] + 1 - region[0];
- result = region[1] + 1;
- index++;
- } while (index < hiddenRegion + 1);
-
- result -= gaps;
- }
-
- return result;
- }
-
- /**
- * THis method returns the rightmost limit of a region of an alignment with
- * hidden columns. In otherwords, the next hidden column.
- *
- * @param index
- * int
- */
- public int getHiddenBoundaryRight(int alPos)
- {
- if (hiddenColumns != null)
- {
- int index = 0;
- do
- {
- int[] region = (int[]) hiddenColumns.elementAt(index);
- if (alPos < region[0])
- {
- return region[0];
- }
-
- index++;
- } while (index < hiddenColumns.size());
- }
-
- return alPos;
-
- }
-
- /**
- * This method returns the leftmost limit of a region of an alignment with
- * hidden columns. In otherwords, the previous hidden column.
- *
- * @param index
- * int
- */
- public int getHiddenBoundaryLeft(int alPos)
- {
- if (hiddenColumns != null)
- {
- int index = hiddenColumns.size() - 1;
- do
- {
- int[] region = (int[]) hiddenColumns.elementAt(index);
- if (alPos > region[1])
- {
- return region[1];
- }
-
- index--;
- } while (index > -1);
- }
-
- return alPos;
-
- }
-
- public void hideSelectedColumns()
- {
- while (size() > 0)
- {
- int column = ((Integer) getSelected().firstElement()).intValue();
- hideColumns(column);
- }
-
- }
-
- public void hideColumns(int start, int end)
- {
- if (hiddenColumns == null)
- {
- hiddenColumns = new Vector();
- }
-
- boolean added = false;
- boolean overlap = false;
-
- for (int i = 0; i < hiddenColumns.size(); i++)
- {
- int[] region = (int[]) hiddenColumns.elementAt(i);
- if (start <= region[1] && end >= region[0])
- {
- hiddenColumns.removeElementAt(i);
- overlap = true;
- break;
- }
- else if (end < region[0] && start < region[0])
- {
- hiddenColumns.insertElementAt(new int[]
- { start, end }, i);
- added = true;
- break;
- }
- }
-
- if (overlap)
- {
- hideColumns(start, end);
- }
- else if (!added)
- {
- hiddenColumns.addElement(new int[]
- { start, end });
- }
-
- }
-
- /**
- * This method will find a range of selected columns around the column
- * specified
- *
- * @param res
- * int
- */
- public void hideColumns(int col)
- {
- // First find out range of columns to hide
- int min = col, max = col + 1;
- while (contains(min))
- {
- removeElement(min);
- min--;
- }
-
- while (contains(max))
- {
- removeElement(max);
- max++;
- }
-
- min++;
- max--;
- if (min > max)
- {
- min = max;
- }
-
- hideColumns(min, max);
- }
-
- public void revealAllHiddenColumns()
- {
- if (hiddenColumns != null)
- {
- for (int i = 0; i < hiddenColumns.size(); i++)
- {
- int[] region = (int[]) hiddenColumns.elementAt(i);
- for (int j = region[0]; j < region[1] + 1; j++)
- {
- addElement(j);
- }
- }
- }
-
- hiddenColumns = null;
- }
-
- public void revealHiddenColumns(int res)
- {
- for (int i = 0; i < hiddenColumns.size(); i++)
- {
- int[] region = (int[]) hiddenColumns.elementAt(i);
- if (res == region[0])
- {
- for (int j = region[0]; j < region[1] + 1; j++)
- {
- addElement(j);
- }
-
- hiddenColumns.removeElement(region);
- break;
- }
- }
- if (hiddenColumns.size() == 0)
- {
- hiddenColumns = null;
- }
- }
-
- public boolean isVisible(int column)
- {
- if (hiddenColumns != null)
- for (int i = 0; i < hiddenColumns.size(); i++)
- {
- int[] region = (int[]) hiddenColumns.elementAt(i);
- if (column >= region[0] && column <= region[1])
- {
- return false;
- }
- }
-
- return true;
- }
-
- /**
- * Copy constructor
- *
- * @param copy
- */
- public ColumnSelection(ColumnSelection copy)
- {
- if (copy != null)
- {
- if (copy.selected != null)
- {
- selected = new Vector();
- for (int i = 0, j = copy.selected.size(); i < j; i++)
- {
- selected.addElement(copy.selected.elementAt(i));
- }
- }
- if (copy.hiddenColumns != null)
- {
- hiddenColumns = new Vector(copy.hiddenColumns.size());
- for (int i = 0, j = copy.hiddenColumns.size(); i < j; i++)
- {
- int[] rh, cp;
- rh = (int[]) copy.hiddenColumns.elementAt(i);
- if (rh != null)
- {
- cp = new int[rh.length];
- System.arraycopy(rh, 0, cp, 0, rh.length);
- hiddenColumns.addElement(cp);
- }
- }
- }
- }
- }
-
- /**
- * ColumnSelection
- */
- public ColumnSelection()
- {
- }
-
- public String[] getVisibleSequenceStrings(int start, int end,
- SequenceI[] seqs)
- {
- int i, iSize = seqs.length;
- String selection[] = new String[iSize];
- if (hiddenColumns != null && hiddenColumns.size() > 0)
- {
- for (i = 0; i < iSize; i++)
- {
- StringBuffer visibleSeq = new StringBuffer();
- Vector regions = getHiddenColumns();
-
- int blockStart = start, blockEnd = end;
- int[] region;
- int hideStart, hideEnd;
-
- for (int j = 0; j < regions.size(); j++)
- {
- region = (int[]) regions.elementAt(j);
- hideStart = region[0];
- hideEnd = region[1];
-
- if (hideStart < start)
- {
- continue;
- }
-
- blockStart = Math.min(blockStart, hideEnd + 1);
- blockEnd = Math.min(blockEnd, hideStart);
-
- if (blockStart > blockEnd)
- {
- break;
- }
-
- visibleSeq.append(seqs[i].getSequence(blockStart, blockEnd));
-
- blockStart = hideEnd + 1;
- blockEnd = end;
- }
-
- if (end > blockStart)
- {
- visibleSeq.append(seqs[i].getSequence(blockStart, end));
- }
-
- selection[i] = visibleSeq.toString();
- }
- }
- else
- {
- for (i = 0; i < iSize; i++)
- {
- selection[i] = seqs[i].getSequenceAsString(start, end);
- }
- }
-
- return selection;
- }
-
- /**
- * return all visible segments between the given start and end boundaries
- *
- * @param start
- * (first column inclusive from 0)
- * @param end
- * (last column - not inclusive)
- * @return int[] {i_start, i_end, ..} where intervals lie in
- * start<=i_start<=i_end<end
- */
- public int[] getVisibleContigs(int start, int end)
- {
- if (hiddenColumns != null && hiddenColumns.size() > 0)
- {
- Vector visiblecontigs = new Vector();
- Vector regions = getHiddenColumns();
-
- int vstart = start;
- int[] region;
- int hideStart, hideEnd;
-
- for (int j = 0; vstart < end && j < regions.size(); j++)
- {
- region = (int[]) regions.elementAt(j);
- hideStart = region[0];
- hideEnd = region[1];
-
- if (hideEnd < vstart)
- {
- continue;
- }
- if (hideStart > vstart)