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01583602a9
The bulk of this commit was generated with a script, executed at the top level of a typical source code checkout. The only non-machine-generated part was modifying MFBT's moz.build to reflect the new naming. CLOSED TREE makes big refactorings like this a piece of cake. # The main substitution. find . -name '*.cpp' -o -name '*.cc' -o -name '*.h' -o -name '*.mm' -o -name '*.idl'| \ xargs perl -p -i -e ' s/nsRefPtr\.h/RefPtr\.h/g; # handle includes s/nsRefPtr ?</RefPtr</g; # handle declarations and variables ' # Handle a special friend declaration in gfx/layers/AtomicRefCountedWithFinalize.h. perl -p -i -e 's/::nsRefPtr;/::RefPtr;/' gfx/layers/AtomicRefCountedWithFinalize.h # Handle nsRefPtr.h itself, a couple places that define constructors # from nsRefPtr, and code generators specially. We do this here, rather # than indiscriminantly s/nsRefPtr/RefPtr/, because that would rename # things like nsRefPtrHashtable. perl -p -i -e 's/nsRefPtr/RefPtr/g' \ mfbt/nsRefPtr.h \ xpcom/glue/nsCOMPtr.h \ xpcom/base/OwningNonNull.h \ ipc/ipdl/ipdl/lower.py \ ipc/ipdl/ipdl/builtin.py \ dom/bindings/Codegen.py \ python/lldbutils/lldbutils/utils.py # In our indiscriminate substitution above, we renamed # nsRefPtrGetterAddRefs, the class behind getter_AddRefs. Fix that up. find . -name '*.cpp' -o -name '*.h' -o -name '*.idl' | \ xargs perl -p -i -e 's/nsRefPtrGetterAddRefs/RefPtrGetterAddRefs/g' if [ -d .git ]; then git mv mfbt/nsRefPtr.h mfbt/RefPtr.h else hg mv mfbt/nsRefPtr.h mfbt/RefPtr.h fi --HG-- rename : mfbt/nsRefPtr.h => mfbt/RefPtr.h
203 lines
6.2 KiB
C++
203 lines
6.2 KiB
C++
/* -*- Mode: C++; tab-width: 2; indent-tabs-mode: nil; c-basic-offset: 2 -*- */
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/* This Source Code Form is subject to the terms of the Mozilla Public
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* License, v. 2.0. If a copy of the MPL was not distributed with this
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* file, You can obtain one at http://mozilla.org/MPL/2.0/. */
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#include "TextUpdater.h"
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#include "Accessible-inl.h"
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#include "DocAccessible-inl.h"
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#include "TextLeafAccessible.h"
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#include <algorithm>
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using namespace mozilla::a11y;
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void
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TextUpdater::Run(DocAccessible* aDocument, TextLeafAccessible* aTextLeaf,
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const nsAString& aNewText)
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{
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NS_ASSERTION(aTextLeaf, "No text leaf accessible?");
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const nsString& oldText = aTextLeaf->Text();
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uint32_t oldLen = oldText.Length(), newLen = aNewText.Length();
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uint32_t minLen = std::min(oldLen, newLen);
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// Skip coinciding begin substrings.
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uint32_t skipStart = 0;
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for (; skipStart < minLen; skipStart++) {
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if (aNewText[skipStart] != oldText[skipStart])
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break;
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}
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// The text was changed. Do update.
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if (skipStart != minLen || oldLen != newLen) {
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TextUpdater updater(aDocument, aTextLeaf);
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updater.DoUpdate(aNewText, oldText, skipStart);
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}
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}
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void
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TextUpdater::DoUpdate(const nsAString& aNewText, const nsAString& aOldText,
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uint32_t aSkipStart)
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{
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Accessible* parent = mTextLeaf->Parent();
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if (!parent)
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return;
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mHyperText = parent->AsHyperText();
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if (!mHyperText) {
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NS_ERROR("Text leaf parent is not hypertext!");
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return;
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}
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// Get the text leaf accessible offset and invalidate cached offsets after it.
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mTextOffset = mHyperText->GetChildOffset(mTextLeaf, true);
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NS_ASSERTION(mTextOffset != -1,
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"Text leaf hasn't offset within hyper text!");
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uint32_t oldLen = aOldText.Length(), newLen = aNewText.Length();
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uint32_t minLen = std::min(oldLen, newLen);
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// Trim coinciding substrings from the end.
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uint32_t skipEnd = 0;
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while (minLen - skipEnd > aSkipStart &&
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aNewText[newLen - skipEnd - 1] == aOldText[oldLen - skipEnd - 1]) {
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skipEnd++;
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}
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uint32_t strLen1 = oldLen - aSkipStart - skipEnd;
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uint32_t strLen2 = newLen - aSkipStart - skipEnd;
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const nsAString& str1 = Substring(aOldText, aSkipStart, strLen1);
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const nsAString& str2 = Substring(aNewText, aSkipStart, strLen2);
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// Increase offset of the text leaf on skipped characters amount.
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mTextOffset += aSkipStart;
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// It could be single insertion or removal or the case of long strings. Do not
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// calculate the difference between long strings and prefer to fire pair of
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// insert/remove events as the old string was replaced on the new one.
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if (strLen1 == 0 || strLen2 == 0 ||
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strLen1 > kMaxStrLen || strLen2 > kMaxStrLen) {
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if (strLen1 > 0) {
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// Fire text change event for removal.
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RefPtr<AccEvent> textRemoveEvent =
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new AccTextChangeEvent(mHyperText, mTextOffset, str1, false);
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mDocument->FireDelayedEvent(textRemoveEvent);
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}
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if (strLen2 > 0) {
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// Fire text change event for insertion.
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RefPtr<AccEvent> textInsertEvent =
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new AccTextChangeEvent(mHyperText, mTextOffset, str2, true);
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mDocument->FireDelayedEvent(textInsertEvent);
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}
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mDocument->MaybeNotifyOfValueChange(mHyperText);
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// Update the text.
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mTextLeaf->SetText(aNewText);
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return;
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}
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// Otherwise find the difference between strings and fire events.
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// Note: we can skip initial and final coinciding characters since they don't
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// affect the Levenshtein distance.
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// Compute the flat structured matrix need to compute the difference.
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uint32_t len1 = strLen1 + 1, len2 = strLen2 + 1;
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uint32_t* entries = new uint32_t[len1 * len2];
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for (uint32_t colIdx = 0; colIdx < len1; colIdx++)
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entries[colIdx] = colIdx;
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uint32_t* row = entries;
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for (uint32_t rowIdx = 1; rowIdx < len2; rowIdx++) {
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uint32_t* prevRow = row;
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row += len1;
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row[0] = rowIdx;
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for (uint32_t colIdx = 1; colIdx < len1; colIdx++) {
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if (str1[colIdx - 1] != str2[rowIdx - 1]) {
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uint32_t left = row[colIdx - 1];
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uint32_t up = prevRow[colIdx];
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uint32_t upleft = prevRow[colIdx - 1];
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row[colIdx] = std::min(upleft, std::min(left, up)) + 1;
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} else {
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row[colIdx] = prevRow[colIdx - 1];
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}
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}
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}
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// Compute events based on the difference.
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nsTArray<RefPtr<AccEvent> > events;
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ComputeTextChangeEvents(str1, str2, entries, events);
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delete [] entries;
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// Fire events.
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for (int32_t idx = events.Length() - 1; idx >= 0; idx--)
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mDocument->FireDelayedEvent(events[idx]);
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mDocument->MaybeNotifyOfValueChange(mHyperText);
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// Update the text.
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mTextLeaf->SetText(aNewText);
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}
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void
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TextUpdater::ComputeTextChangeEvents(const nsAString& aStr1,
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const nsAString& aStr2,
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uint32_t* aEntries,
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nsTArray<RefPtr<AccEvent> >& aEvents)
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{
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int32_t colIdx = aStr1.Length(), rowIdx = aStr2.Length();
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// Point at which strings last matched.
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int32_t colEnd = colIdx;
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int32_t rowEnd = rowIdx;
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int32_t colLen = colEnd + 1;
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uint32_t* row = aEntries + rowIdx * colLen;
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uint32_t dist = row[colIdx]; // current Levenshtein distance
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while (rowIdx && colIdx) { // stop when we can't move diagonally
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if (aStr1[colIdx - 1] == aStr2[rowIdx - 1]) { // match
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if (rowIdx < rowEnd) { // deal with any pending insertion
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FireInsertEvent(Substring(aStr2, rowIdx, rowEnd - rowIdx),
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rowIdx, aEvents);
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}
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if (colIdx < colEnd) { // deal with any pending deletion
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FireDeleteEvent(Substring(aStr1, colIdx, colEnd - colIdx),
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rowIdx, aEvents);
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}
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colEnd = --colIdx; // reset the match point
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rowEnd = --rowIdx;
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row -= colLen;
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continue;
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}
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--dist;
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if (dist == row[colIdx - 1 - colLen]) { // substitution
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--colIdx;
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--rowIdx;
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row -= colLen;
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continue;
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}
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if (dist == row[colIdx - colLen]) { // insertion
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--rowIdx;
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row -= colLen;
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continue;
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}
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if (dist == row[colIdx - 1]) { // deletion
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--colIdx;
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continue;
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}
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NS_NOTREACHED("huh?");
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return;
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}
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if (rowEnd)
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FireInsertEvent(Substring(aStr2, 0, rowEnd), 0, aEvents);
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if (colEnd)
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FireDeleteEvent(Substring(aStr1, 0, colEnd), 0, aEvents);
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}
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