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@@ -9,8 +9,10 @@ namespace anki
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{
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template<typename T, typename TNode, typename TIndex, PtrSize TBucketSize, PtrSize TLinearProbingSize>
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-TNode** SparseArrayBase<T, TNode, TIndex, TBucketSize, TLinearProbingSize>::findPlace(Index idx)
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+TNode** SparseArrayBase<T, TNode, TIndex, TBucketSize, TLinearProbingSize>::findPlace(Index idx, Node*& parent)
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{
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+ parent = nullptr;
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+
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// Update the first node
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const Index modIdx = mod(idx);
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if(modIdx < m_firstElementModIdx)
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@@ -51,12 +53,14 @@ TNode** SparseArrayBase<T, TNode, TIndex, TBucketSize, TLinearProbingSize>::find
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otherNode->m_saIdx = idx;
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// ...and try to find a new place for it. If we don't do the trick above findPlace will return the same place
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- Node** newPlace = findPlace(otherNodeIdx);
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+ Node* parent;
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+ Node** newPlace = findPlace(otherNodeIdx, parent);
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ANKI_ASSERT(*newPlace != m_bucket.m_elements[modIdx]);
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// ...point the other node to the new place and restore it
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*newPlace = otherNode;
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otherNode->m_saIdx = otherNodeIdx;
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+ otherNode->m_saParent = parent;
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// ...now the modIdx place is free for out node
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m_bucket.m_elements[modIdx] = nullptr;
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@@ -80,6 +84,7 @@ TNode** SparseArrayBase<T, TNode, TIndex, TBucketSize, TLinearProbingSize>::find
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}
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else
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{
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+ parent = it;
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return &it->m_saRight;
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}
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}
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@@ -94,12 +99,14 @@ TNode** SparseArrayBase<T, TNode, TIndex, TBucketSize, TLinearProbingSize>::find
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}
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else
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{
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+ parent = it;
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return &it->m_saLeft;
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}
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}
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else
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{
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// Equal
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+ parent = it->m_saParent;
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return pit;
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}
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}
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@@ -123,13 +130,13 @@ const TNode* SparseArrayBase<T, TNode, TIndex, TBucketSize, TLinearProbingSize>:
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{
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break;
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}
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- else if(it->m_saIdx < idx)
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+ else if(idx > it->m_saIdx)
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{
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- it = it->m_saLeft;
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+ it = it->m_saRight;
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}
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else
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{
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- it = it->m_saRight;
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+ it = it->m_saLeft;
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}
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} while(it);
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@@ -278,14 +285,14 @@ void SparseArrayBase<T, TNode, TIndex, TBucketSize, TLinearProbingSize>::remove(
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const Index modIdx = mod(node->m_saIdx);
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// Update the first node
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- ANKI_ASSERT(m_firstElementModIdx >= modIdx);
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+ ANKI_ASSERT(m_firstElementModIdx <= modIdx);
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if(ANKI_UNLIKELY(m_firstElementModIdx == modIdx))
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{
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for(Index i = 0; i < BUCKET_SIZE; ++i)
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{
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if(m_bucket.m_elements[i])
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{
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- m_firstElementModIdx = modIdx;
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+ m_firstElementModIdx = i;
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break;
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}
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}
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@@ -412,4 +419,36 @@ void SparseArray<T, TIndex, TBucketSize, TLinearProbingSize>::destroy(TAlloc& al
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m_elementCount = 0;
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}
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+template<typename T, typename TIndex, PtrSize TBucketSize, PtrSize TLinearProbingSize>
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+template<typename TAlloc, typename... TArgs>
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+typename SparseArray<T, TIndex, TBucketSize, TLinearProbingSize>::Iterator
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+SparseArray<T, TIndex, TBucketSize, TLinearProbingSize>::setAt(TAlloc& alloc, Index idx, TArgs&&... args)
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+{
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+ Node* parent;
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+ Node** place = Base::findPlace(idx, parent);
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+ ANKI_ASSERT(place);
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+
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+ if(*place)
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+ {
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+ // Node exists, recycle
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+
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+ Node* const n = *place;
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+ n->m_saValue.~Value();
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+ ::new(&n->m_saValue) Value(std::forward<TArgs>(args)...);
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+ }
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+ else
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+ {
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+ // Node doesn't exit,
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+
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+ Node* newNode = alloc.template newInstance<Node>(std::forward<TArgs>(args)...);
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+ newNode->m_saIdx = idx;
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+ *place = newNode;
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+ newNode->m_saParent = parent;
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+
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+ ++Base::m_elementCount;
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+ }
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+
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+ return Iterator(*place, this);
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+}
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+
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} // end namespace anki
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