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package jalview.analysis; |
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import java.util.ArrayList; |
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import java.util.Hashtable; |
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| 0% |
Uncovered Elements: 112 (112) |
Complexity: 25 |
Complexity Density: 0.37 |
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public class SecStrConsensus |
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{ |
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@author |
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| 50% |
Uncovered Elements: 7 (14) |
Complexity: 7 |
Complexity Density: 1 |
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public static class SimpleBP |
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{ |
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int bp5; |
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int bp3; |
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| - |
Uncovered Elements: 0 (0) |
Complexity: 1 |
Complexity Density: - |
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0 |
public SimpleBP()... |
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{ |
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} |
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| 100% |
Uncovered Elements: 0 (2) |
Complexity: 1 |
Complexity Density: 0.5 |
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18835 |
public SimpleBP(int i5, int i3)... |
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{ |
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18835 |
bp5 = i5; |
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18835 |
bp3 = i3; |
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} |
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| 0% |
Uncovered Elements: 1 (1) |
Complexity: 1 |
Complexity Density: 1 |
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0 |
public void setBP5(int i5)... |
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{ |
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bp5 = i5; |
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} |
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| 0% |
Uncovered Elements: 1 (1) |
Complexity: 1 |
Complexity Density: 1 |
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0 |
public void setBP3(int i3)... |
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{ |
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bp3 = i3; |
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} |
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| 100% |
Uncovered Elements: 0 (1) |
Complexity: 1 |
Complexity Density: 1 |
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443539 |
public int getBP5()... |
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{ |
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443539 |
return bp5; |
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} |
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| 100% |
Uncovered Elements: 0 (1) |
Complexity: 1 |
Complexity Density: 1 |
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18825 |
public int getBP3()... |
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{ |
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18825 |
return bp3; |
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} |
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| 0% |
Uncovered Elements: 1 (1) |
Complexity: 1 |
Complexity Density: 1 |
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public String toString()... |
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{ |
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return "(" + bp5 + "," + bp3 + ")"; |
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} |
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} |
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| 0% |
Uncovered Elements: 30 (30) |
Complexity: 4 |
Complexity Density: 0.17 |
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public static int[] extractConsensus(ArrayList<ArrayList<SimpleBP>> bps)... |
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{ |
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int maxlength = 0; |
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for (ArrayList<SimpleBP> strs : bps) |
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{ |
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for (SimpleBP bp : strs) |
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{ |
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maxlength = Math.max(1 + Math.max(bp.bp5, bp.bp3), maxlength); |
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} |
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} |
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ArrayList<Hashtable<Integer, Double>> seq = new ArrayList<Hashtable<Integer, Double>>(); |
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for (int i = 0; i < maxlength; i++) |
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{ |
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seq.add(new Hashtable<Integer, Double>()); |
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} |
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for (ArrayList<SimpleBP> strs : bps) |
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{ |
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for (SimpleBP bp : strs) |
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{ |
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int i = bp.bp5; |
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int j = bp.bp3; |
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Hashtable<Integer, Double> h = seq.get(i); |
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if (!h.containsKey(j)) |
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{ |
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h.put(j, 0.0); |
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} |
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h.put(j, h.get(j) + 1.); |
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} |
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} |
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double[][] mat = fillMatrix(seq); |
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ArrayList<SimpleBP> res = backtrack(mat, seq); |
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int[] finalres = new int[seq.size()]; |
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for (int i = 0; i < seq.size(); i++) |
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{ |
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finalres[i] = -1; |
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} |
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for (SimpleBP bp : res) |
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{ |
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finalres[bp.bp5] = bp.bp3; |
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finalres[bp.bp3] = bp.bp5; |
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} |
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return finalres; |
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} |
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| 0% |
Uncovered Elements: 1 (1) |
Complexity: 1 |
Complexity Density: 1 |
|
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0 |
private static boolean canBasePair(... |
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ArrayList<Hashtable<Integer, Double>> seq, int i, int k) |
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{ |
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return seq.get(i).containsKey(k); |
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} |
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| 0% |
Uncovered Elements: 1 (1) |
Complexity: 1 |
Complexity Density: 1 |
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0 |
private static double basePairScore(... |
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ArrayList<Hashtable<Integer, Double>> seq, int i, int k) |
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{ |
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return seq.get(i).get(k); |
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} |
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| 0% |
Uncovered Elements: 32 (32) |
Complexity: 8 |
Complexity Density: 0.44 |
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0 |
private static double[][] fillMatrix(... |
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ArrayList<Hashtable<Integer, Double>> seq) |
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{ |
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int n = seq.size(); |
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double[][] tab = new double[n][n]; |
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for (int m = 1; m <= n; m++) |
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{ |
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for (int i = 0; i < n - m + 1; i++) |
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{ |
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int j = i + m - 1; |
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tab[i][j] = 0; |
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if (i < j) |
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{ |
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tab[i][j] = Math.max(tab[i][j], tab[i + 1][j]); |
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for (int k = i + 1; k <= j; k++) |
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{ |
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if (canBasePair(seq, i, k)) |
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{ |
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double fact1 = 0; |
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if (k > i + 1) |
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{ |
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fact1 = tab[i + 1][k - 1]; |
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} |
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0 |
double fact2 = 0; |
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0 |
if (k < j) |
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{ |
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fact2 = tab[k + 1][j]; |
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} |
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tab[i][j] = Math.max(tab[i][j], |
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basePairScore(seq, i, k) + fact1 + fact2); |
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} |
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} |
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} |
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} |
188 |
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} |
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0 |
return tab; |
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} |
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| 0% |
Uncovered Elements: 1 (1) |
Complexity: 1 |
Complexity Density: 1 |
|
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0 |
private static ArrayList<SimpleBP> backtrack(double[][] tab,... |
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ArrayList<Hashtable<Integer, Double>> seq) |
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{ |
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return backtrack(tab, seq, 0, seq.size() - 1); |
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} |
197 |
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| 0% |
Uncovered Elements: 41 (41) |
Complexity: 10 |
Complexity Density: 0.43 |
|
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0 |
private static ArrayList<SimpleBP> backtrack(double[][] tab,... |
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ArrayList<Hashtable<Integer, Double>> seq, int i, int j) |
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{ |
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0 |
ArrayList<SimpleBP> result = new ArrayList<SimpleBP>(); |
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if (i < j) |
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{ |
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ArrayList<Integer> indices = new ArrayList<Integer>(); |
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indices.add(-1); |
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0 |
for (int k = i + 1; k <= j; k++) |
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{ |
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indices.add(k); |
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} |
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0 |
for (int k : indices) |
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{ |
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if (k == -1) |
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{ |
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if (tab[i][j] == tab[i + 1][j]) |
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{ |
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result = backtrack(tab, seq, i + 1, j); |
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} |
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} |
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else |
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{ |
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if (canBasePair(seq, i, k)) |
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{ |
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0 |
double fact1 = 0; |
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0 |
if (k > i + 1) |
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{ |
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fact1 = tab[i + 1][k - 1]; |
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} |
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0 |
double fact2 = 0; |
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0 |
if (k < j) |
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{ |
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fact2 = tab[k + 1][j]; |
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} |
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if (tab[i][j] == basePairScore(seq, i, k) + fact1 + fact2) |
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{ |
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result = backtrack(tab, seq, i + 1, k - 1); |
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result.addAll(backtrack(tab, seq, k + 1, j)); |
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result.add(new SimpleBP(i, k)); |
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} |
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} |
240 |
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} |
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} |
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} |
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0 |
else if (i == j) |
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{ |
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246 |
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} |
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else |
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{ |
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250 |
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} |
251 |
0 |
return result; |
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} |
253 |
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} |