cChunk::SetBlock() now uses cChunk::FastSetBlock() for the common code path.
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@ -1379,74 +1379,15 @@ void cChunk::CalculateHeightmap()
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void cChunk::SetBlock(int a_RelX, int a_RelY, int a_RelZ, BLOCKTYPE a_BlockType, NIBBLETYPE a_BlockMeta)
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{
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if (a_RelX < 0 || a_RelX >= Width || a_RelY < 0 || a_RelY >= Height || a_RelZ < 0 || a_RelZ >= Width)
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{
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return; // Clip
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}
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FastSetBlock(a_RelX, a_RelY, a_RelZ, a_BlockType, a_BlockMeta);
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ASSERT(IsValid()); // Is this chunk loaded / generated?
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int index = MakeIndexNoCheck( a_RelX, a_RelY, a_RelZ );
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BLOCKTYPE OldBlockMeta = GetNibble( m_BlockMeta, index );
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BLOCKTYPE OldBlockType = m_BlockTypes[index];
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m_BlockTypes[index] = a_BlockType;
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SetNibble( m_BlockMeta, index, a_BlockMeta );
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if ((OldBlockType == a_BlockType) && (OldBlockMeta == a_BlockMeta))
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{
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return;
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}
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MarkDirty();
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// The client doesn't need to distinguish between stationary and nonstationary fluids:
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if (
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(OldBlockMeta != a_BlockMeta) || // Different meta always gets updated
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!(
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((OldBlockType == E_BLOCK_STATIONARY_WATER) && (a_BlockType == E_BLOCK_WATER)) || // Replacing stationary water with water
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((OldBlockType == E_BLOCK_WATER) && (a_BlockType == E_BLOCK_STATIONARY_WATER)) || // Replacing water with stationary water
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((OldBlockType == E_BLOCK_STATIONARY_LAVA) && (a_BlockType == E_BLOCK_LAVA)) || // Replacing stationary water with water
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((OldBlockType == E_BLOCK_LAVA) && (a_BlockType == E_BLOCK_STATIONARY_LAVA)) // Replacing water with stationary water
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)
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)
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{
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m_PendingSendBlocks.push_back(sSetBlock(m_PosX, m_PosZ, a_RelX, a_RelY, a_RelZ, a_BlockType, a_BlockMeta));
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}
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// ONLY recalculate lighting if it's necessary!
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if(
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(g_BlockLightValue[ OldBlockType ] != g_BlockLightValue[ a_BlockType ]) ||
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(g_BlockSpreadLightFalloff[ OldBlockType ] != g_BlockSpreadLightFalloff[ a_BlockType ]) ||
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(g_BlockTransparent[ OldBlockType ] != g_BlockTransparent[ a_BlockType ] )
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)
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{
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m_IsLightValid = false;
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}
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// Update heightmap, if needed:
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if (a_RelY >= m_HeightMap[a_RelX + a_RelZ * Width])
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{
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if (a_BlockType != E_BLOCK_AIR)
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{
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SetHeight(m_HeightMap, a_RelX, a_RelZ, a_RelY);
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}
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else
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{
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for (int y = a_RelY - 1; y > 0; --y)
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{
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if (cChunkDef::GetBlock(m_BlockTypes, a_RelX, y, a_RelZ) != E_BLOCK_AIR)
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{
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SetHeight(m_HeightMap, a_RelX, a_RelZ, y);
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break;
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}
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} // for y - column in m_BlockData
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}
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}
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const int index = MakeIndexNoCheck(a_RelX, a_RelY, a_RelZ);
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// Tick this block and its neighbors:
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m_ToTickBlocks.push_back(index);
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QueueTickBlockNeighbors(a_RelX, a_RelY, a_RelZ);
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// If there was a block entity, remove it:
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Vector3i WorldPos = PositionToWorldPosition(a_RelX, a_RelY, a_RelZ);
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cBlockEntity * BlockEntity = GetBlockEntity(WorldPos);
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if (BlockEntity != NULL)
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@ -1456,6 +1397,7 @@ void cChunk::SetBlock( int a_RelX, int a_RelY, int a_RelZ, BLOCKTYPE a_BlockType
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delete BlockEntity;
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}
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// If the new block is a block entity, create the entity object:
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switch (a_BlockType)
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{
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case E_BLOCK_CHEST:
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