2014-03-09 17:04:29 -04:00
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// POCPieceGenerator.cpp
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// Implements the cPOCPieceGenerator class representing a Proof-Of_Concept structure generator using the cPieceGenerator technique
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2014-03-10 16:16:13 -04:00
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// The generator generates a maze of rooms at {0, 50, 0}
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2014-03-09 17:04:29 -04:00
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#include "Globals.h"
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#include "POCPieceGenerator.h"
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#include "ChunkDesc.h"
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/** POC pieces are simple boxes that have connectors in the middle of their walls.
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Each wall has one connector, there are 3 connector types that get assigned semi-randomly.
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The piece also knows how to imprint itself in a cChunkDesc, each piece has a different color glass
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and each connector is uses a different color wool frame. */
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class cPOCPiece :
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public cPiece
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{
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public:
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2014-03-10 03:38:40 -04:00
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cPOCPiece(int a_SizeXZ, int a_Height) :
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m_SizeXZ(a_SizeXZ),
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m_Height(a_Height)
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2014-03-09 17:04:29 -04:00
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{
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m_Connectors.push_back(cConnector(m_SizeXZ / 2, a_Height / 2, 0, 0, BLOCK_FACE_ZM));
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m_Connectors.push_back(cConnector(m_SizeXZ / 2, a_Height / 2, m_SizeXZ - 1, 1, BLOCK_FACE_ZP));
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m_Connectors.push_back(cConnector(0, a_Height / 2, m_SizeXZ / 2, 2, BLOCK_FACE_XM));
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m_Connectors.push_back(cConnector(m_SizeXZ - 1, a_Height - 1, m_SizeXZ / 2, m_SizeXZ % 3, BLOCK_FACE_XP));
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2014-03-09 17:04:29 -04:00
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}
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/** Imprints the piece in the specified chunk. Assumes they intersect. */
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void ImprintInChunk(cChunkDesc & a_ChunkDesc, const Vector3i & a_Pos, int a_NumCCWRotations)
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{
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int BlockX = a_ChunkDesc.GetChunkX() * cChunkDef::Width;
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int BlockZ = a_ChunkDesc.GetChunkZ() * cChunkDef::Width;
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Vector3i Min = a_Pos;
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Min.Move(-BlockX, 0, -BlockZ);
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Vector3i Max = Min;
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Max.Move(m_SizeXZ - 1, m_Height - 1, m_SizeXZ - 1);
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2014-03-09 17:04:29 -04:00
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ASSERT(Min.x < cChunkDef::Width);
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ASSERT(Min.z < cChunkDef::Width);
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ASSERT(Max.x >= 0);
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ASSERT(Max.z >= 0);
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if (Min.x >= 0)
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{
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// Draw the XM wall:
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a_ChunkDesc.FillRelCuboid(Min.x, Min.x, Min.y, Max.y, Min.z, Max.z, E_BLOCK_STAINED_GLASS, m_SizeXZ % 16);
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2014-03-09 17:04:29 -04:00
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}
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if (Min.z >= 0)
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{
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// Draw the ZM wall:
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a_ChunkDesc.FillRelCuboid(Min.x, Max.x, Min.y, Max.y, Min.z, Min.z, E_BLOCK_STAINED_GLASS, m_SizeXZ % 16);
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}
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if (Max.x < cChunkDef::Width)
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{
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// Draw the XP wall:
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a_ChunkDesc.FillRelCuboid(Max.x, Max.x, Min.y, Max.y, Min.z, Max.z, E_BLOCK_STAINED_GLASS, m_SizeXZ % 16);
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}
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if (Max.z < cChunkDef::Width)
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{
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// Draw the ZP wall:
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a_ChunkDesc.FillRelCuboid(Min.x, Max.x, Min.y, Max.y, Max.z, Max.z, E_BLOCK_STAINED_GLASS, m_SizeXZ % 16);
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2014-03-09 17:04:29 -04:00
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}
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// Draw all the connectors:
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for (cConnectors::const_iterator itr = m_Connectors.begin(), end = m_Connectors.end(); itr != end; ++itr)
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{
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cConnector Conn = cPiece::RotateMoveConnector(*itr, a_NumCCWRotations, a_Pos.x, a_Pos.y, a_Pos.z);
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Conn.m_Pos.Move(-BlockX, 0, -BlockZ);
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if (
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(Conn.m_Pos.x >= 0) && (Conn.m_Pos.x < cChunkDef::Width) &&
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(Conn.m_Pos.z >= 0) && (Conn.m_Pos.z < cChunkDef::Width)
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)
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{
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a_ChunkDesc.SetBlockTypeMeta(Conn.m_Pos.x, Conn.m_Pos.y, Conn.m_Pos.z, E_BLOCK_WOOL, itr->m_Type % 16);
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}
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/*
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// TODO: Frame the connectors
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switch (itr->m_Direction)
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{
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case BLOCK_FACE_XM:
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case BLOCK_FACE_XP:
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{
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// TODO
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break;
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}
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case BLOCK_FACE_ZM:
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case BLOCK_FACE_ZP:
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{
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// TODO
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break;
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}
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}
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*/
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} // for itr - m_Connectors[]
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}
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protected:
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int m_SizeXZ;
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int m_Height;
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cConnectors m_Connectors;
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// cPiece overrides:
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virtual cConnectors GetConnectors(void) const override
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{
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return m_Connectors;
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}
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virtual Vector3i GetSize(void) const override
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{
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return Vector3i(m_SizeXZ, m_Height, m_SizeXZ);
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}
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virtual cCuboid GetHitBox(void) const override
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{
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return cCuboid(0, 0, 0, m_SizeXZ - 1, m_Height - 1, m_SizeXZ - 1);
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}
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virtual bool CanRotateCCW(int a_NumRotations) const override
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{
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return true;
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}
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};
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2014-03-10 16:16:13 -04:00
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/*
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static void DebugPieces(const cPlacedPieces & a_Pieces)
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{
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size_t idx = 0;
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for (cPlacedPieces::const_iterator itr = a_Pieces.begin(), end = a_Pieces.end(); itr != end; ++itr, ++idx)
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{
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const cCuboid & HitBox = (*itr)->GetHitBox();
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printf(" %u: %d rotations, {%d - %d, %d - %d}\n",
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idx, (*itr)->GetNumCCWRotations(),
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HitBox.p1.x, HitBox.p2.x, HitBox.p1.z, HitBox.p2.z
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);
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} // for itr - a_Pieces[]
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}
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//*/
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2014-07-17 16:15:34 -04:00
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////////////////////////////////////////////////////////////////////////////////
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2014-03-09 17:04:29 -04:00
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// cPOCPieceGenerator:
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cPOCPieceGenerator::cPOCPieceGenerator(int a_Seed) :
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m_Seed(a_Seed)
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{
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// Prepare a vector of available pieces:
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m_AvailPieces.push_back(new cPOCPiece(5, 3));
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m_AvailPieces.push_back(new cPOCPiece(7, 5));
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m_AvailPieces.push_back(new cPOCPiece(9, 5));
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m_AvailPieces.push_back(new cPOCPiece(5, 7));
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// Generate the structure:
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cBFSPieceGenerator Gen(*this, a_Seed);
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Gen.PlacePieces(0, 50, 0, 6, m_Pieces);
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// DebugPieces(m_Pieces);
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// Get the smallest cuboid encompassing the entire generated structure:
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cCuboid Bounds(0, 50, 0, 0, 50, 0);
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for (cPlacedPieces::const_iterator itr = m_Pieces.begin(), end = m_Pieces.end(); itr != end; ++itr)
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{
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Vector3i MinCoords = (*itr)->GetCoords();
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Bounds.Engulf(MinCoords);
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Bounds.Engulf(MinCoords + (*itr)->GetPiece().GetSize());
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} // for itr - m_Pieces[]
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m_Bounds = Bounds;
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}
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cPOCPieceGenerator::~cPOCPieceGenerator()
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{
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cPieceGenerator::FreePieces(m_Pieces);
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2014-05-29 03:19:20 -04:00
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for (cPieces::iterator itr = m_AvailPieces.begin(), end = m_AvailPieces.end(); itr != end; ++itr)
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{
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delete *itr;
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}
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m_AvailPieces.clear();
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}
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void cPOCPieceGenerator::GenFinish(cChunkDesc & a_ChunkDesc)
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{
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int BlockX = a_ChunkDesc.GetChunkX() * cChunkDef::Width;
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int BlockZ = a_ChunkDesc.GetChunkZ() * cChunkDef::Width;
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if (
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(BlockX + 16 < m_Bounds.p1.x) || (BlockX > m_Bounds.p2.x) || // X coords out of bounds of the generated structure
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(BlockZ + 16 < m_Bounds.p1.z) || (BlockZ > m_Bounds.p2.z) // Z coords out of bounds of the generated structure
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)
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{
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return;
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}
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// Imprint each piece in the chunk:
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for (cPlacedPieces::const_iterator itr = m_Pieces.begin(), end = m_Pieces.end(); itr != end; ++itr)
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{
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const Vector3i & Pos = (*itr)->GetCoords();
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Vector3i Size = (*itr)->GetPiece().GetSize();
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if (((*itr)->GetNumCCWRotations() % 2) == 1)
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{
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std::swap(Size.x, Size.z);
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}
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if (
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(Pos.x >= BlockX + 16) || (Pos.x + Size.x - 1 < BlockX) ||
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(Pos.z >= BlockZ + 16) || (Pos.z + Size.z - 1 < BlockZ)
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)
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{
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// This piece doesn't intersect the chunk
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continue;
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}
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((cPOCPiece &)(*itr)->GetPiece()).ImprintInChunk(a_ChunkDesc, Pos, (*itr)->GetNumCCWRotations());
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} // for itr - m_Pieces[]
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a_ChunkDesc.UpdateHeightmap();
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}
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cPieces cPOCPieceGenerator::GetPiecesWithConnector(int a_ConnectorType)
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{
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// Each piece has each connector
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return m_AvailPieces;
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}
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cPieces cPOCPieceGenerator::GetStartingPieces(void)
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{
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// Any piece can be a starting piece
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return m_AvailPieces;
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}
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void cPOCPieceGenerator::PiecePlaced(const cPiece & a_Piece)
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{
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UNUSED(a_Piece);
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}
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void cPOCPieceGenerator::Reset(void)
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{
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// Nothing needed
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}
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