159 lines
3.7 KiB
C++
159 lines
3.7 KiB
C++
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// SetChunkData.cpp
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// Implements the cSetChunkData class used for sending loaded / generated chunk
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#include "Globals.h"
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#include "SetChunkData.h"
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#include "BlockEntities/BlockEntity.h"
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#include "Entities/Entity.h"
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namespace
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{
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struct sMemCallbacks:
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cAllocationPool<cChunkData::sChunkSection>::cStarvationCallbacks
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{
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virtual void OnStartUsingReserve() override {}
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virtual void OnEndUsingReserve() override {}
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virtual void OnOutOfReserve() override {}
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};
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} // namespace (anonymous)
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cSetChunkData::cSetChunkData(int a_ChunkX, int a_ChunkZ, bool a_ShouldMarkDirty) :
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m_ChunkX(a_ChunkX),
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m_ChunkZ(a_ChunkZ),
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m_Pool(cpp14::make_unique<sMemCallbacks>(), 0u, cChunkData::NumSections),
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m_ChunkData(m_Pool),
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m_IsLightValid(false),
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m_IsHeightMapValid(false),
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m_AreBiomesValid(false),
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m_ShouldMarkDirty(a_ShouldMarkDirty)
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{
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}
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cSetChunkData::cSetChunkData(
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int a_ChunkX, int a_ChunkZ,
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const BLOCKTYPE * a_BlockTypes,
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const NIBBLETYPE * a_BlockMetas,
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const NIBBLETYPE * a_BlockLight,
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const NIBBLETYPE * a_SkyLight,
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const cChunkDef::HeightMap * a_HeightMap,
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const cChunkDef::BiomeMap * a_Biomes,
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cEntityList && a_Entities,
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cBlockEntities && a_BlockEntities,
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bool a_ShouldMarkDirty
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) :
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cSetChunkData(a_ChunkX, a_ChunkZ, a_ShouldMarkDirty)
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{
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// Check the params' validity:
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ASSERT(a_BlockTypes != nullptr);
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ASSERT(a_BlockMetas != nullptr);
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// Copy block types and metas:
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m_ChunkData.SetBlockTypes(a_BlockTypes);
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m_ChunkData.SetMetas(a_BlockMetas);
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// Copy lights, if both given:
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if ((a_BlockLight != nullptr) && (a_SkyLight != nullptr))
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{
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m_ChunkData.SetBlockLight(a_BlockLight);
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m_ChunkData.SetSkyLight(a_SkyLight);
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m_IsLightValid = true;
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}
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// Copy the heightmap, if available:
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if (a_HeightMap != nullptr)
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{
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memcpy(m_HeightMap, a_HeightMap, sizeof(m_HeightMap));
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m_IsHeightMapValid = true;
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}
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// Copy biomes, if available:
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if (a_Biomes != nullptr)
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{
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memcpy(m_Biomes, a_Biomes, sizeof(m_Biomes));
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m_AreBiomesValid = true;
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}
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// Move entities and blockentities:
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m_Entities = std::move(a_Entities);
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m_BlockEntities = std::move(a_BlockEntities);
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}
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void cSetChunkData::CalculateHeightMap(void)
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{
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// Find the heighest present section in the chunk
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size_t MaxSection = 0;
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for (size_t i = cChunkData::NumSections - 1; i != 0; --i)
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{
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if (m_ChunkData.GetSection(i) != nullptr)
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{
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MaxSection = i;
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break;
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}
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}
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const int MaxHeight = static_cast<int>(MaxSection + 1) * cChunkData::SectionHeight - 1;
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for (int x = 0; x < cChunkDef::Width; x++)
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{
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for (int z = 0; z < cChunkDef::Width; z++)
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{
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for (int y = MaxHeight; y > -1; y--)
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{
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if (m_ChunkData.GetBlock({x, y, z}) != E_BLOCK_AIR)
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{
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m_HeightMap[x + z * cChunkDef::Width] = static_cast<HEIGHTTYPE>(y);
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break;
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}
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} // for y
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} // for z
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} // for x
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m_IsHeightMapValid = true;
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}
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void cSetChunkData::RemoveInvalidBlockEntities(void)
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{
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for (cBlockEntities::iterator itr = m_BlockEntities.begin(); itr != m_BlockEntities.end();)
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{
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cBlockEntity * BlockEntity = itr->second;
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BLOCKTYPE EntityBlockType = BlockEntity->GetBlockType();
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BLOCKTYPE WorldBlockType = m_ChunkData.GetBlock({BlockEntity->GetRelX(), BlockEntity->GetPosY(), BlockEntity->GetRelZ()});
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if (EntityBlockType != WorldBlockType)
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{
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// Bad blocktype, remove the block entity:
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FLOGD("Block entity blocktype mismatch at {0}: entity for blocktype {1}({2}) in block {3}({4}). Deleting the block entity.",
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BlockEntity->GetPos(),
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ItemTypeToString(EntityBlockType), EntityBlockType,
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ItemTypeToString(WorldBlockType), WorldBlockType
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);
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delete BlockEntity;
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itr = m_BlockEntities.erase(itr);
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}
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else
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{
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// Good blocktype, keep the block entity:
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++itr;
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}
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} // for itr - m_BlockEntities[]
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}
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