private int imgWidth;
- public void drawNotCanonicalAnnot(Graphics g, Color nonCanColor, Annotation[] row_annotations,
+ public void drawPseudoNode(Graphics g, Color nonCanColor, Annotation[] row_annotations,
int lastSSX, int x, int y, int iconOffset, int startRes,
int column, boolean validRes, boolean validEnd)
{
int sCol = (lastSSX / charWidth) + startRes;
int x1 = lastSSX;
int x2 = (x * charWidth);
- Regex closeparen = new Regex("}|]|<|a|b|c|d|e|f|g|h|i|j|k|l|m|n|o|p|q|r|s|t|u|v|w|x|y|z");
+ Regex closeparen = new Regex("}|]|<|[a-z]");
String dc = (column == 0 || row_annotations[column - 1] == null) ? ""
: row_annotations[column - 1].displayCharacter;
updateFromAwtRenderPanel(annotPanel, av);
fm = g.getFontMetrics();
AlignmentAnnotation[] aa = av.getAlignment().getAlignmentAnnotation();
-
+ int temp = 0;
int x = 0, y = 0;
int column = 0;
char lastSS;
}
}
- if (ss == 'A')
+ if (ss >=65)
{
+ // System.out.println("ss="+ss);
// distinguish between forward/backward base-pairing
- if (row_annotations[column].displayCharacter.indexOf('a') > -1)
+ if (row_annotations[column].displayCharacter.indexOf(ss+32) > -1)
{
- ss = 'a';
+
+ ss = (char) (ss+32);
}
}
+
- if (ss == 'B')
- {
- // distinguish between forward/backward base-pairing
- if (row_annotations[column].displayCharacter.indexOf('b') > -1)
- {
- ss = 'b';
-
- }
- }
-
- if (ss == 'C')
- {
- // distinguish between forward/backward base-pairing
- if (row_annotations[column].displayCharacter.indexOf('c') > -1)
- {
- ss = 'c';
-
- }
- }
- if (ss == 'D')
- {
- // distinguish between forward/backward base-pairing
- if (row_annotations[column].displayCharacter.indexOf('d') > -1)
- {
- ss = 'd';
-
- }
- }
- if (ss == '1')
- {
- // distinguish between forward/backward base-pairing
- if (row_annotations[column].displayCharacter.indexOf('e') > -1)
- {
- ss = 'e';
-
- }
- }
- if (ss == 'F')
- {
- // distinguish between forward/backward base-pairing
- if (row_annotations[column].displayCharacter.indexOf('f') > -1)
- {
- ss = 'f';
-
- }
- }
- if (ss == 'G')
- {
- // distinguish between forward/backward base-pairing
- if (row_annotations[column].displayCharacter.indexOf('g') > -1)
- {
- ss = 'g';
-
- }
- }
- if (ss == '2')
- {
- // distinguish between forward/backward base-pairing
- if (row_annotations[column].displayCharacter.indexOf('h') > -1)
- {
- ss = 'h';
-
- }
- }
- if (ss == 'I')
- {
- // distinguish between forward/backward base-pairing
- if (row_annotations[column].displayCharacter.indexOf('i') > -1)
- {
- ss = 'i';
-
- }
- }
- if (ss == 'J')
- {
- // distinguish between forward/backward base-pairing
- if (row_annotations[column].displayCharacter.indexOf('j') > -1)
- {
- ss = 'j';
-
- }
- }
- if (ss == 'K')
- {
- // distinguish between forward/backward base-pairing
- if (row_annotations[column].displayCharacter.indexOf('k') > -1)
- {
- ss = 'k';
-
- }
- }
- if (ss == 'L')
- {
- // distinguish between forward/backward base-pairing
- if (row_annotations[column].displayCharacter.indexOf('l') > -1)
- {
- ss = 'l';
-
- }
- }
- if (ss == 'M')
- {
- // distinguish between forward/backward base-pairing
- if (row_annotations[column].displayCharacter.indexOf('m') > -1)
- {
- ss = 'm';
-
- }
- }
- if (ss == 'N')
- {
- // distinguish between forward/backward base-pairing
- if (row_annotations[column].displayCharacter.indexOf('n') > -1)
- {
- ss = 'n';
-
- }
- }
- if (ss == 'O')
- {
- // distinguish between forward/backward base-pairing
- if (row_annotations[column].displayCharacter.indexOf('o') > -1)
- {
- ss = 'o';
-
- }
- }
- if (ss == 'P')
- {
- // distinguish between forward/backward base-pairing
- if (row_annotations[column].displayCharacter.indexOf('p') > -1)
- {
- ss = 'p';
-
- }
- }
- if (ss == 'Q')
- {
- // distinguish between forward/backward base-pairing
- if (row_annotations[column].displayCharacter.indexOf('q') > -1)
- {
- ss = 'q';
-
- }
- }
- if (ss == 'R')
- {
- // distinguish between forward/backward base-pairing
- if (row_annotations[column].displayCharacter.indexOf('r') > -1)
- {
- ss = 'r';
-
- }
- }
- if (ss == 'S')
- {
- // distinguish between forward/backward base-pairing
- if (row_annotations[column].displayCharacter.indexOf('s') > -1)
- {
- ss = 's';
-
- }
- }
- if (ss == 'T')
- {
- // distinguish between forward/backward base-pairing
- if (row_annotations[column].displayCharacter.indexOf('t') > -1)
- {
- ss = 't';
-
- }
- }
- if (ss == 'U')
- {
- // distinguish between forward/backward base-pairing
- if (row_annotations[column].displayCharacter.indexOf('u') > -1)
- {
- ss = 'u';
-
- }
- }
- if (ss == 'V')
- {
- // distinguish between forward/backward base-pairing
- if (row_annotations[column].displayCharacter.indexOf('v') > -1)
- {
- ss = 'v';
-
- }
- }
- if (ss == 'W')
- {
- // distinguish between forward/backward base-pairing
- if (row_annotations[column].displayCharacter.indexOf('w') > -1)
- {
- ss = 'w';
-
- }
- }
- if (ss == 'X')
- {
- // distinguish between forward/backward base-pairing
- if (row_annotations[column].displayCharacter.indexOf('x') > -1)
- {
- ss = 'x';
-
- }
- }
- if (ss == 'Y')
- {
- // distinguish between forward/backward base-pairing
- if (row_annotations[column].displayCharacter.indexOf('y') > -1)
- {
- ss = 'y';
-
- }
- }
- if (ss == 'Z')
- {
- // distinguish between forward/backward base-pairing
- if (row_annotations[column].displayCharacter.indexOf('z') > -1)
- {
- ss = 'z';
-
- }
- }
if (!validRes || (ss != lastSS))
{
+
+
if (x > -1)
{
+
+
+ int nb_annot=x-temp;
+ //System.out.println("\t type :"+lastSS+"\t x :"+x+"\t nbre annot :"+nb_annot);
switch (lastSS)
{
- case 'H':
- drawHelixAnnot(g, row_annotations, lastSSX, x, y,
- iconOffset, startRes, column, validRes, validEnd);
+
+ case '$':
+ drawHelixAnnot(g, row_annotations, lastSSX, x, y, iconOffset, startRes,
+ column, validRes, validEnd);
break;
- case 'E':
- drawSheetAnnot(g, row_annotations, lastSSX, x, y,
- iconOffset, startRes, column, validRes, validEnd);
+ case 'µ':
+ drawSheetAnnot(g, row_annotations, lastSSX, x, y, iconOffset, startRes,
+ column, validRes, validEnd);
break;
case '(': // Stem case for RNA secondary structure
case ')': // and opposite direction
+
+
drawStemAnnot(g, row_annotations, lastSSX, x, y, iconOffset, startRes,
column, validRes, validEnd);
-// case 'S': // Stem case for RNA secondary structure
-// case 's': // and opposite direction
-// drawStemAnnot(g, row_annotations, lastSSX, x, y,
-// iconOffset, startRes, column, validRes, validEnd);
+ temp=x;
break;
case '{':
case '}':
case 'c':
case 'D':
case 'd':
- case '1':
+ case 'E':
case 'e':
case 'F':
case 'f':
case 'G':
case 'g':
- case '2':
+ case 'H':
case 'h':
case 'I':
case 'i':
case 'y':
case 'Z':
case 'z':
- //System.out.println(lastSS);
+
Color nonCanColor= getNotCanonicalColor(lastSS);
- drawNotCanonicalAnnot(g, nonCanColor, row_annotations, lastSSX, x, y, iconOffset, startRes,
+ drawPseudoNode(g, nonCanColor, row_annotations, lastSSX, x, y, iconOffset, startRes,
column, validRes, validEnd);
+ temp=x;
break;
default:
g.setColor(Color.gray);
g.fillRect(lastSSX, y + 6 + iconOffset, (x * charWidth)
- lastSSX, 2);
-
+ temp=x;
break;
}
}
{
switch (lastSS)
{
- case 'H':
- drawHelixAnnot(g, row_annotations, lastSSX, x, y, iconOffset,
- startRes, column, validRes, validEnd);
+ case '$':
+ drawHelixAnnot(g, row_annotations, lastSSX, x, y, iconOffset, startRes,
+ column, validRes, validEnd);
break;
- case 'E':
- drawSheetAnnot(g, row_annotations, lastSSX, x, y, iconOffset,
- startRes, column, validRes, validEnd);
+ case 'µ':
+ drawSheetAnnot(g, row_annotations, lastSSX, x, y, iconOffset, startRes,
+ column, validRes, validEnd);
break;
case 's':
case 'S': // Stem case for RNA secondary structure
- drawStemAnnot(g, row_annotations, lastSSX, x, y, iconOffset,
- startRes, column, validRes, validEnd);
+
+ drawStemAnnot(g, row_annotations, lastSSX, x, y, iconOffset, startRes,
+ column, validRes, validEnd);
+
break;
case '{':
case '}':
case 'c':
case 'D':
case 'd':
- case '1':
+ case 'E':
case 'e':
case 'F':
case 'f':
case 'G':
case 'g':
- case '2':
+ case 'H':
case 'h':
case 'I':
case 'i':
case 'Z':
case 'z':
//System.out.println(lastSS);
+
Color nonCanColor = getNotCanonicalColor(lastSS);
- drawNotCanonicalAnnot(g,nonCanColor, row_annotations, lastSSX, x, y, iconOffset, startRes,
+ drawPseudoNode(g,nonCanColor, row_annotations, lastSSX, x, y, iconOffset, startRes,
column, validRes, validEnd);
+
break;
+
default:
- drawGlyphLine(g, row_annotations, lastSSX, x, y, iconOffset,
- startRes, column, validRes, validEnd);
+ drawGlyphLine(g, row_annotations, lastSSX, x, y, iconOffset, startRes,
+ column, validRes, validEnd);
break;
}
}
{
aa[gg].visible = false;
}
+
if (aa[gg].graphMax > groupmax)
{
groupmax = aa[gg].graphMax;
{
if (aa[gg].graphGroup == row.graphGroup)
{
- drawLineGraph(g, aa[gg], aa[gg].annotations, startRes,
- endRes, y, groupmin, groupmax, row.graphHeight);
+ drawLineGraph(g, aa[gg], aa[gg].annotations, startRes, endRes, y, groupmin,
+ groupmax, row.graphHeight);
}
}
}
else
{
- drawLineGraph(g, row, row_annotations, startRes, endRes, y,
- row.graphMin, row.graphMax, row.graphHeight);
+ drawLineGraph(g, row, row_annotations, startRes, endRes, y, row.graphMin,
+ row.graphMax, row.graphHeight);
}
}
else if (row.graph == AlignmentAnnotation.BAR_GRAPH)
{
- drawBarGraph(g, row, row_annotations, startRes, endRes,
- row.graphMin, row.graphMax, y);
+ drawBarGraph(g, row, row_annotations, startRes, endRes, row.graphMin,
+ row.graphMax, y);
}
}
private Color sdNOTCANONICAL_COLOUR;
- public void drawGlyphLine(Graphics g, Annotation[] row, int lastSSX,
- int x, int y, int iconOffset, int startRes, int column,
- boolean validRes, boolean validEnd)
+ public void drawGlyphLine(Graphics g, Annotation[] row,
+ int lastSSX, int x, int y, int iconOffset, int startRes,
+ int column, boolean validRes, boolean validEnd)
{
g.setColor(GLYPHLINE_COLOR);
g.fillRect(lastSSX, y + 6 + iconOffset, (x * charWidth) - lastSSX, 2);
}
- public void drawSheetAnnot(Graphics g, Annotation[] row, int lastSSX,
- int x, int y, int iconOffset, int startRes, int column,
- boolean validRes, boolean validEnd)
+ public void drawSheetAnnot(Graphics g, Annotation[] row,
+
+ int lastSSX, int x, int y, int iconOffset, int startRes,
+ int column, boolean validRes, boolean validEnd)
{
g.setColor(SHEET_COLOUR);
{
case '{':
case '}':
- return Color.cyan;
+ return new Color(255,125,5);
case '[':
case ']':
- return Color.green;
+ return new Color(245,115,10);
case '>':
case '<':
- return Color.magenta;
+ return new Color(235,135,15);
case 'A':
case 'a':
- return Color.orange;
+ return new Color(225,105,20);
case 'B':
case 'b':
- return Color.pink;
+ return new Color(215,145,30);
case 'C':
case 'c':
- return Color.red;
+ return new Color(205,95,35);
case 'D':
case 'd':
- return Color.yellow;
+ return new Color(195,155,45);
- case '1':
+ case 'E':
case 'e':
- return Color.black;
+ return new Color(185,85,55);
case 'F':
case 'f':
- return Color.darkGray;
+ return new Color(175,165,65);
case 'G':
case 'g':
- return Color.gray;
+ return new Color(170,75,75);
- case '2':
+ case 'H':
case 'h':
- return Color.lightGray;
+ return new Color(160,175,85);
case 'I':
case 'i':
- return Color.white;
+ return new Color(150,65,95);
case 'J':
case 'j':
- return Color.cyan;
+ return new Color(140,185,105);
case 'K':
case 'k':
- return Color.magenta;
+ return new Color(130,55,110);
case 'L':
case 'l':
- return Color.orange;
+ return new Color(120,195,120);
case 'M':
case 'm':
- return Color.red;
+ return new Color(110,45,130);
case 'N':
case 'n':
- return Color.yellow;
+ return new Color(100,205,140);
case 'O':
case 'o':
- return Color.pink;
+ return new Color(90,35,150);
case 'P':
case 'p':
- return Color.black;
+ return new Color(85,215,160);
case 'Q':
case 'q':
- return Color.blue;
+ return new Color(75,25,170);
case 'R':
case 'r':
- return Color.cyan;
+ return new Color(65,225,180);
case 'S':
case 's':
- return Color.magenta;
+ return new Color(55,15,185);
case 'T':
case 't':
- return Color.darkGray;
+ return new Color(45,235,195);
case 'U':
case 'u':
- return Color.yellow;
+ return new Color(35,5,205);
case 'V':
case 'v':
- return Color.blue;
+ return new Color(25,245,215);
case 'W':
case 'w':
- return Color.orange;
+ return new Color(15,0,225);
case 'X':
case 'x':
- return Color.magenta;
+ return new Color(10,255,235);
case 'Y':
case 'y':
- return Color.blue;
+ return new Color(5,150,245);
case 'Z':
case 'z':
- return Color.blue;
+ return new Color(0,80,255);
default :
- System.out.println("This is not a interaction");
+ System.out.println("This is not a interaction : "+lastss);
return null;
}