leocad/common/piece.cpp

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// A piece object in the LeoCAD world.
//
#include "lc_global.h"
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#include "lc_mesh.h"
#include "lc_colors.h"
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#include <stdlib.h>
#include <string.h>
#include <stdio.h>
#include <math.h>
#include "opengl.h"
#include "pieceinf.h"
#include "piece.h"
#include "group.h"
#include "project.h"
#include "lc_application.h"
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#include "lc_library.h"
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#define LC_PIECE_SAVE_VERSION 11 // LeoCAD 0.77
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static LC_OBJECT_KEY_INFO piece_key_info[LC_PK_COUNT] =
{
{ "Position", 3, LC_PK_POSITION },
{ "Rotation", 4, LC_PK_ROTATION }
};
/////////////////////////////////////////////////////////////////////////////
// Piece construction/destruction
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lcPiece::lcPiece(PieceInfo* pPieceInfo)
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: lcObject (LC_OBJECT_PIECE)
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{
mPieceInfo = pPieceInfo;
mState = 0;
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mColorIndex = 0;
mColorCode = 0;
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mStepShow = 1;
mStepHide = LC_STEP_MAX;
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memset(m_strName, 0, sizeof(m_strName));
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mGroup = NULL;
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if (mPieceInfo != NULL)
mPieceInfo->AddRef();
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float *values[] = { mPosition, mRotation };
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RegisterKeys (values, piece_key_info, LC_PK_COUNT);
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float pos[3] = { 0, 0, 0 }, rot[4] = { 0, 0, 1, 0 };
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ChangeKey(1, true, pos, LC_PK_POSITION);
ChangeKey(1, true, rot, LC_PK_ROTATION);
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}
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lcPiece::~lcPiece()
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{
if (mPieceInfo != NULL)
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mPieceInfo->Release();
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}
/////////////////////////////////////////////////////////////////////////////
// Piece save/load
// Use only when loading from a file
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void lcPiece::SetPieceInfo(PieceInfo* pPieceInfo)
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{
mPieceInfo = pPieceInfo;
mPieceInfo->AddRef();
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}
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bool lcPiece::FileLoad(lcFile& file)
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{
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lcuint8 version, ch;
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version = file.ReadU8();
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if (version > LC_PIECE_SAVE_VERSION)
return false;
if (version > 8)
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if (!lcObject::FileLoad (file))
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return false;
if (version < 9)
{
lcuint16 time;
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lcuint8 type;
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if (version > 5)
{
lcuint32 keys;
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float param[4];
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file.ReadU32(&keys, 1);
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while (keys--)
{
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file.ReadFloats(param, 4);
file.ReadU16(&time, 1);
file.ReadU8(&type, 1);
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ChangeKey(time, true, param, type);
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}
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file.ReadU32(&keys, 1);
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while (keys--)
{
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file.ReadFloats(param, 4);
file.ReadU16(&time, 1);
file.ReadU8(&type, 1);
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}
}
else
{
if (version > 2)
{
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file.ReadU8(&ch, 1);
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while (ch--)
{
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lcMatrix44 ModelWorld;
if (version > 3)
{
file.ReadFloats(ModelWorld, 16);
}
else
{
lcVector3 Translation;
float Rotation[3];
file.ReadFloats(Translation, 3);
file.ReadFloats(Rotation, 3);
ModelWorld = lcMatrix44Translation(Translation);
ModelWorld = lcMul(lcMatrix44RotationZ(Rotation[2] * LC_DTOR), lcMul(lcMatrix44RotationY(Rotation[1] * LC_DTOR), lcMul(lcMatrix44RotationX(Rotation[0] * LC_DTOR), ModelWorld)));
}
lcuint8 b;
file.ReadU8(&b, 1);
time = b;
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ChangeKey(1, true, ModelWorld.r[3], LC_PK_POSITION);
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lcVector4 AxisAngle = lcMatrix44ToAxisAngle(ModelWorld);
AxisAngle[3] *= LC_RTOD;
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ChangeKey(time, true, AxisAngle, LC_PK_ROTATION);
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lcint32 bl;
file.ReadS32(&bl, 1);
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}
}
else
{
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lcVector3 Translation;
float Rotation[3];
file.ReadFloats(Translation, 3);
file.ReadFloats(Rotation, 3);
lcMatrix44 ModelWorld = lcMatrix44Translation(Translation);
ModelWorld = lcMul(lcMatrix44RotationZ(Rotation[2] * LC_DTOR), lcMul(lcMatrix44RotationY(Rotation[1] * LC_DTOR), lcMul(lcMatrix44RotationX(Rotation[0] * LC_DTOR), ModelWorld)));
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ChangeKey(1, true, ModelWorld.r[3], LC_PK_POSITION);
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lcVector4 AxisAngle = lcMatrix44ToAxisAngle(ModelWorld);
AxisAngle[3] *= LC_RTOD;
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ChangeKey(1, true, AxisAngle, LC_PK_ROTATION);
}
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}
}
// Common to all versions.
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char name[LC_PIECE_NAME_LEN];
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if (version < 10)
{
memset(name, 0, LC_PIECE_NAME_LEN);
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file.ReadBuffer(name, 9);
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}
else
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file.ReadBuffer(name, LC_PIECE_NAME_LEN);
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PieceInfo* pInfo = lcGetPiecesLibrary()->FindPiece(name, true);
SetPieceInfo(pInfo);
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// 11 (0.77)
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if (version < 11)
{
lcuint8 Color;
file.ReadU8(&Color, 1);
if (version < 5)
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mColorCode = lcGetColorCodeFromOriginalColor(Color);
else
mColorCode = lcGetColorCodeFromExtendedColor(Color);
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}
else
file.ReadU32(&mColorCode, 1);
mColorIndex = lcGetColorIndex(mColorCode);
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lcuint8 Step;
file.ReadU8(&Step, 1);
mStepShow = Step;
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if (version > 1)
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{
file.ReadU8(&Step, 1);
mStepHide = Step == 255 ? LC_STEP_MAX : Step;
}
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else
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mStepHide = LC_STEP_MAX;
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if (version > 5)
{
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file.ReadU16(); // m_nFrameShow
file.ReadU16(); // m_nFrameHide
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if (version > 7)
{
lcuint8 Hidden;
file.ReadU8(&Hidden, 1);
if (Hidden & 1)
mState |= LC_PIECE_HIDDEN;
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file.ReadU8(&ch, 1);
file.ReadBuffer(m_strName, ch);
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}
else
{
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lcint32 hide;
file.ReadS32(&hide, 1);
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if (hide != 0)
mState |= LC_PIECE_HIDDEN;
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file.ReadBuffer(m_strName, 81);
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}
// 7 (0.64)
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lcint32 i = -1;
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if (version > 6)
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file.ReadS32(&i, 1);
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mGroup = (lcGroup*)(long)i;
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}
else
{
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file.ReadU8(&ch, 1);
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if (ch == 0)
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mGroup = (lcGroup*)-1;
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else
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mGroup = (lcGroup*)(long)ch;
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file.ReadU8(&ch, 1);
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if (ch & 0x01)
mState |= LC_PIECE_HIDDEN;
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}
return true;
}
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void lcPiece::FileSave(lcFile& file) const
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{
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file.WriteU8(LC_PIECE_SAVE_VERSION);
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lcObject::FileSave (file);
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file.WriteBuffer(mPieceInfo->m_strName, LC_PIECE_NAME_LEN);
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file.WriteU32(mColorCode);
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file.WriteU8(lcMin(mStepShow, 254U));
file.WriteU8(lcMin(mStepHide, 255U));
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file.WriteU16(1); // m_nFrameShow
file.WriteU16(100); // m_nFrameHide
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// version 8
file.WriteU8(mState & LC_PIECE_HIDDEN ? 1 : 0);
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lcuint8 Length = strlen(m_strName);
file.WriteU8(Length);
file.WriteBuffer(m_strName, Length);
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// version 7
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lcint32 GroupIndex = lcGetActiveProject()->GetGroupIndex(mGroup);
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file.WriteS32(GroupIndex);
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}
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void lcPiece::Initialize(float x, float y, float z, lcStep Step)
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{
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mStepShow = Step;
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float pos[3] = { x, y, z }, rot[4] = { 0, 0, 1, 0 };
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ChangeKey(1, true, pos, LC_PK_POSITION);
ChangeKey(1, true, rot, LC_PK_ROTATION);
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UpdatePosition(1);
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}
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void lcPiece::CreateName(const lcArray<lcPiece*>& Pieces)
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{
int i, max = 0;
for (int PieceIdx = 0; PieceIdx < Pieces.GetSize(); PieceIdx++)
{
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lcPiece* Piece = Pieces[PieceIdx];
if (strncmp(Piece->m_strName, mPieceInfo->m_strDescription, strlen(mPieceInfo->m_strDescription)) == 0)
if (sscanf(Piece->m_strName + strlen(mPieceInfo->m_strDescription), " #%d", &i) == 1)
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if (i > max)
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max = i;
}
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snprintf(m_strName, sizeof(m_strName), "%s #%.2d", mPieceInfo->m_strDescription, max+1);
m_strName[sizeof(m_strName) - 1] = 0;
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}
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void lcPiece::InsertTime(lcStep Start, lcStep Time)
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{
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if (mStepShow >= Start)
{
if (mStepShow < LC_STEP_MAX - Time)
mStepShow += Time;
else
mStepShow = LC_STEP_MAX;
}
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if (mStepHide >= Start)
{
if (mStepHide < LC_STEP_MAX - Time)
mStepHide += Time;
else
mStepHide = LC_STEP_MAX;
}
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if (mStepShow >= mStepHide)
{
if (mStepShow != LC_STEP_MAX)
mStepHide = mStepShow + 1;
else
{
mStepShow = LC_STEP_MAX - 1;
mStepHide = LC_STEP_MAX;
}
}
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lcObject::InsertTime(Start, Time);
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}
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void lcPiece::RemoveTime(lcStep Start, lcStep Time)
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{
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if (mStepShow >= Start)
{
if (mStepShow > Time)
mStepShow -= Time;
else
mStepShow = 1;
}
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if (mStepHide != LC_STEP_MAX)
{
if (mStepHide > Time)
mStepHide -= Time;
else
mStepHide = 1;
}
if (mStepShow >= mStepHide)
{
if (mStepShow != LC_STEP_MAX)
mStepHide = mStepShow + 1;
else
{
mStepShow = LC_STEP_MAX - 1;
mStepHide = LC_STEP_MAX;
}
}
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lcObject::RemoveTime(Start, Time);
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}
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void lcPiece::RayTest(lcObjectRayTest& ObjectRayTest) const
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{
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lcVector3 Min(mPieceInfo->m_fDimensions[3], mPieceInfo->m_fDimensions[4], mPieceInfo->m_fDimensions[5]);
lcVector3 Max(mPieceInfo->m_fDimensions[0], mPieceInfo->m_fDimensions[1], mPieceInfo->m_fDimensions[2]);
lcMatrix44 WorldModel = lcMatrix44AffineInverse(mModelWorld);
lcVector3 Start = lcMul31(ObjectRayTest.Start, WorldModel);
lcVector3 End = lcMul31(ObjectRayTest.End, WorldModel);
float Distance;
if (!lcBoundingBoxRayMinIntersectDistance(Min, Max, Start, End, &Distance, NULL) || (Distance >= ObjectRayTest.Distance))
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return;
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lcVector3 Intersection;
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if (mPieceInfo->mMesh->MinIntersectDist(Start, End, ObjectRayTest.Distance, Intersection))
{
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ObjectRayTest.ObjectSection.Object = const_cast<lcPiece*>(this);
ObjectRayTest.ObjectSection.Section = 0;
}
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}
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void lcPiece::BoxTest(lcObjectBoxTest& ObjectBoxTest) const
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{
lcVector3 Box[8] =
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{
lcVector3(mPieceInfo->m_fDimensions[0], mPieceInfo->m_fDimensions[1], mPieceInfo->m_fDimensions[5]),
lcVector3(mPieceInfo->m_fDimensions[3], mPieceInfo->m_fDimensions[1], mPieceInfo->m_fDimensions[5]),
lcVector3(mPieceInfo->m_fDimensions[0], mPieceInfo->m_fDimensions[1], mPieceInfo->m_fDimensions[2]),
lcVector3(mPieceInfo->m_fDimensions[3], mPieceInfo->m_fDimensions[4], mPieceInfo->m_fDimensions[5]),
lcVector3(mPieceInfo->m_fDimensions[3], mPieceInfo->m_fDimensions[4], mPieceInfo->m_fDimensions[2]),
lcVector3(mPieceInfo->m_fDimensions[0], mPieceInfo->m_fDimensions[4], mPieceInfo->m_fDimensions[2]),
lcVector3(mPieceInfo->m_fDimensions[0], mPieceInfo->m_fDimensions[4], mPieceInfo->m_fDimensions[5]),
lcVector3(mPieceInfo->m_fDimensions[3], mPieceInfo->m_fDimensions[1], mPieceInfo->m_fDimensions[2])
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};
lcMatrix44 WorldToLocal = lcMatrix44FromAxisAngle(lcVector3(mRotation[0], mRotation[1], mRotation[2]), -mRotation[3] * LC_DTOR);
WorldToLocal.SetTranslation(lcMul31(lcVector3(-mPosition[0], -mPosition[1], -mPosition[2]), WorldToLocal));
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const int NumPlanes = 6;
lcVector4 LocalPlanes[NumPlanes];
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int i;
for (i = 0; i < NumPlanes; i++)
{
lcVector3 PlaneNormal = lcMul30(ObjectBoxTest.Planes[i], WorldToLocal);
LocalPlanes[i] = lcVector4(PlaneNormal, ObjectBoxTest.Planes[i][3] - lcDot3(WorldToLocal[3], PlaneNormal));
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}
int Outcodes[8];
for (i = 0; i < 8; i++)
{
Outcodes[i] = 0;
for (int j = 0; j < NumPlanes; j++)
{
if (lcDot3(Box[i], LocalPlanes[j]) + LocalPlanes[j][3] > 0)
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Outcodes[i] |= 1 << j;
}
}
int OutcodesOR = 0, OutcodesAND = 0x3f;
for (i = 0; i < 8; i++)
{
OutcodesAND &= Outcodes[i];
OutcodesOR |= Outcodes[i];
}
if (OutcodesAND != 0)
return;
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if (OutcodesOR == 0 || mPieceInfo->mMesh->IntersectsPlanes(LocalPlanes))
{
lcObjectSection& ObjectSection = ObjectBoxTest.ObjectSections.Add();
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ObjectSection.Object = const_cast<lcPiece*>(this);
ObjectSection.Section = 0;
}
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}
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void lcPiece::Move(lcStep Step, bool AddKey, const lcVector3& Distance)
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{
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mPosition += Distance;
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ChangeKey(Step, AddKey, mPosition, LC_PK_POSITION);
mModelWorld.SetTranslation(mPosition);
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}
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bool lcPiece::IsVisible(lcStep Step)
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{
if (mState & LC_PIECE_HIDDEN)
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return false;
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return (mStepShow <= Step) && (mStepHide > Step);
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}
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void lcPiece::CompareBoundingBox(float box[6])
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{
lcVector3 Points[8] =
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{
lcVector3(mPieceInfo->m_fDimensions[0], mPieceInfo->m_fDimensions[1], mPieceInfo->m_fDimensions[5]),
lcVector3(mPieceInfo->m_fDimensions[3], mPieceInfo->m_fDimensions[1], mPieceInfo->m_fDimensions[5]),
lcVector3(mPieceInfo->m_fDimensions[0], mPieceInfo->m_fDimensions[1], mPieceInfo->m_fDimensions[2]),
lcVector3(mPieceInfo->m_fDimensions[3], mPieceInfo->m_fDimensions[4], mPieceInfo->m_fDimensions[5]),
lcVector3(mPieceInfo->m_fDimensions[3], mPieceInfo->m_fDimensions[4], mPieceInfo->m_fDimensions[2]),
lcVector3(mPieceInfo->m_fDimensions[0], mPieceInfo->m_fDimensions[4], mPieceInfo->m_fDimensions[2]),
lcVector3(mPieceInfo->m_fDimensions[0], mPieceInfo->m_fDimensions[4], mPieceInfo->m_fDimensions[5]),
lcVector3(mPieceInfo->m_fDimensions[3], mPieceInfo->m_fDimensions[1], mPieceInfo->m_fDimensions[2])
};
for (int i = 0; i < 8; i++)
{
lcVector3 Point = lcMul31(Points[i], mModelWorld);
if (Point[0] < box[0]) box[0] = Point[0];
if (Point[1] < box[1]) box[1] = Point[1];
if (Point[2] < box[2]) box[2] = Point[2];
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if (Point[0] > box[3]) box[3] = Point[0];
if (Point[1] > box[4]) box[4] = Point[1];
if (Point[2] > box[5]) box[5] = Point[2];
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}
}
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lcGroup* lcPiece::GetTopGroup()
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{
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return mGroup ? mGroup->GetTopGroup() : NULL;
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}
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void lcPiece::UpdatePosition(lcStep Step)
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{
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CalculateKeys(Step);
mModelWorld = lcMatrix44FromAxisAngle(lcVector3(mRotation[0], mRotation[1], mRotation[2]), mRotation[3] * LC_DTOR);
mModelWorld.SetTranslation(mPosition);
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}