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package org.eclipse.jgit.diff;

/**
 * Compares two {@link Sequence}s to create an {@link EditList} of changes.
 * 

* An algorithm's {@code diff} method must be callable from concurrent threads * without data collisions. This permits some algorithms to use a singleton * pattern, with concurrent invocations using the same singleton. Other * algorithms may support parameterization, in which case the caller can create * a unique instance per thread. */ public abstract class DiffAlgorithm { /** * Supported diff algorithm */ public enum SupportedAlgorithm { /** * Myers diff algorithm */ MYERS, /** * Histogram diff algorithm */ HISTOGRAM } /** * @param alg * the diff algorithm for which an implementation should be * returned * @return an implementation of the specified diff algorithm */ public static DiffAlgorithm getAlgorithm(SupportedAlgorithm alg) { switch (alg) { case MYERS: return MyersDiff.INSTANCE; case HISTOGRAM: return new HistogramDiff(); default: throw new IllegalArgumentException(); } } /** * Compare two sequences and identify a list of edits between them. * * @param * type of sequence being compared. * @param cmp * the comparator supplying the element equivalence function. * @param a * the first (also known as old or pre-image) sequence. Edits * returned by this algorithm will reference indexes using the * 'A' side: {@link Edit#getBeginA()}, {@link Edit#getEndA()}. * @param b * the second (also known as new or post-image) sequence. Edits * returned by this algorithm will reference indexes using the * 'B' side: {@link Edit#getBeginB()}, {@link Edit#getEndB()}. * @return a modifiable edit list comparing the two sequences. If empty, the * sequences are identical according to {@code cmp}'s rules. The * result list is never null. */ public EditList diff( SequenceComparator cmp, S a, S b) { Edit region = cmp.reduceCommonStartEnd(a, b, coverEdit(a, b)); switch (region.getType()) { case INSERT: case DELETE: return EditList.singleton(region); case REPLACE: { SubsequenceComparator cs = new SubsequenceComparator(cmp); Subsequence as = Subsequence.a(a, region); Subsequence bs = Subsequence.b(b, region); EditList e = Subsequence.toBase(diffNonCommon(cs, as, bs), as, bs); // The last insertion may need to be shifted later if it // inserts elements that were previously reduced out as // common at the end. // Edit last = e.get(e.size() - 1); if (last.getType() == Edit.Type.INSERT) { while (last.endB < b.size() && cmp.equals(b, last.beginB, b, last.endB)) { last.beginA++; last.endA++; last.beginB++; last.endB++; } } return e; } case EMPTY: return new EditList(0); default: throw new IllegalStateException(); } } private static Edit coverEdit(S a, S b) { return new Edit(0, a.size(), 0, b.size()); } /** * Compare two sequences and identify a list of edits between them. * * This method should be invoked only after the two sequences have been * proven to have no common starting or ending elements. The expected * elimination of common starting and ending elements is automatically * performed by the {@link #diff(SequenceComparator, Sequence, Sequence)} * method, which invokes this method using {@link Subsequence}s. * * @param * type of sequence being compared. * @param cmp * the comparator supplying the element equivalence function. * @param a * the first (also known as old or pre-image) sequence. Edits * returned by this algorithm will reference indexes using the * 'A' side: {@link Edit#getBeginA()}, {@link Edit#getEndA()}. * @param b * the second (also known as new or post-image) sequence. Edits * returned by this algorithm will reference indexes using the * 'B' side: {@link Edit#getBeginB()}, {@link Edit#getEndB()}. * @return a modifiable edit list comparing the two sequences. */ public abstract EditList diffNonCommon( SequenceComparator cmp, S a, S b); }