mirror of
https://github.com/nzp-team/vhlt.git
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158 lines
No EOL
4.7 KiB
C++
158 lines
No EOL
4.7 KiB
C++
// Copyright (C) 2000 Sean Cavanaugh
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// This file is licensed under the terms of the Lesser GNU Public License
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// (see LPGL.txt, or http://www.gnu.org/copyleft/lesser.txt)
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// AJM:
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#pragma warning(disable: 4305) // truncation from 'const double' to 'float'
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#ifndef BOUNDINGBOX_H__
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#define BOUNDINGBOX_H__
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#include "cmdlib.h" //--vluzacn
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#if _MSC_VER >= 1000
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#pragma once
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#endif
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class BoundingBox
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{
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public:
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typedef enum
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{
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eDisjoint, // neither boxes touch
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eUnion, // this box intersects with the other box
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eSubset, // this box is inside the other box
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eSuperset // this box is completly envelops the other box
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} eBoundingState;
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// Tests if other box is completely outside of this box
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bool testDisjoint(const BoundingBox& other) const
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{
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#ifdef ZHLT_BOUNDINGBOX_PRECISION_FIX
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if ((m_Mins[0] > other.m_Maxs[0] + ON_EPSILON) ||
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(m_Mins[1] > other.m_Maxs[1] + ON_EPSILON) ||
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(m_Mins[2] > other.m_Maxs[2] + ON_EPSILON) ||
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(m_Maxs[0] < other.m_Mins[0] - ON_EPSILON) ||
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(m_Maxs[1] < other.m_Mins[1] - ON_EPSILON) ||
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(m_Maxs[2] < other.m_Mins[2] - ON_EPSILON))
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#else
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if ((m_Mins[0] > other.m_Maxs[0]) ||
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(m_Mins[1] > other.m_Maxs[1]) ||
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(m_Mins[2] > other.m_Maxs[2]) ||
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(m_Maxs[0] < other.m_Mins[0]) ||
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(m_Maxs[1] < other.m_Mins[1]) ||
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(m_Maxs[2] < other.m_Mins[2]))
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#endif
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{
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return true;
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}
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return false;
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}
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// returns true if this box is completely inside other box
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bool testSubset(const BoundingBox& other) const
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{
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if (
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(m_Mins[0] >= other.m_Mins[0]) &&
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(m_Maxs[0] <= other.m_Maxs[0]) &&
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(m_Mins[1] >= other.m_Mins[1]) &&
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(m_Maxs[1] <= other.m_Maxs[1]) &&
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(m_Mins[2] >= other.m_Mins[2]) &&
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(m_Maxs[2] <= other.m_Maxs[2])
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)
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{
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return true;
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}
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return false;
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}
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// returns true if this box contains the other box completely
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bool testSuperset(const BoundingBox& other) const
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{
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return other.testSubset(*this);
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}
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// returns true if this box partially intersects the other box
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bool testUnion(const BoundingBox& other) const
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{
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BoundingBox tmpBox;
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tmpBox.m_Mins[0] = qmax(m_Mins[0], other.m_Mins[0]);
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tmpBox.m_Mins[1] = qmax(m_Mins[1], other.m_Mins[1]);
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tmpBox.m_Mins[2] = qmax(m_Mins[2], other.m_Mins[2]);
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tmpBox.m_Maxs[0] = qmin(m_Maxs[0], other.m_Maxs[0]);
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tmpBox.m_Maxs[1] = qmin(m_Maxs[1], other.m_Maxs[1]);
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tmpBox.m_Maxs[2] = qmin(m_Maxs[2], other.m_Maxs[2]);
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if ((tmpBox.m_Mins[0] > tmpBox.m_Maxs[0]) ||
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(tmpBox.m_Mins[1] > tmpBox.m_Maxs[1]) ||
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(tmpBox.m_Mins[2] > tmpBox.m_Maxs[2]))
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{
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return false;
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}
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return true;
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}
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eBoundingState test(const BoundingBox& other) const
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{
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eBoundingState rval;
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if (testDisjoint(other))
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{
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rval = eDisjoint;
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}
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else if (testSubset(other))
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{
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rval = eSubset;
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}
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else if (testSuperset(other))
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{
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rval = eSuperset;
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}
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else
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{
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rval = eUnion;
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}
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return rval;
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}
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void set(const vec3_t mins, const vec3_t maxs)
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{
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VectorCopy(mins, m_Mins);
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VectorCopy(maxs, m_Maxs);
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}
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void reset()
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{
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VectorFill(m_Mins, 999999999.999);
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VectorFill(m_Maxs, -999999999.999);
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}
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void add(const vec3_t point)
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{
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m_Mins[0] = qmin(m_Mins[0], point[0]);
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m_Maxs[0] = qmax(m_Maxs[0], point[0]);
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m_Mins[1] = qmin(m_Mins[1], point[1]);
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m_Maxs[1] = qmax(m_Maxs[1], point[1]);
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m_Mins[2] = qmin(m_Mins[2], point[2]);
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m_Maxs[2] = qmax(m_Maxs[2], point[2]);
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}
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void add(const BoundingBox& other)
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{
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add(other.m_Mins);
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add(other.m_Maxs);
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}
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public:
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// BoundingBox(const BoundingBox& other) // Default copy constructor ok
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// BoundingBox& operator=(const BoundingBox& other); // Default copy operator ok
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BoundingBox()
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{
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reset();
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}
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BoundingBox(const vec3_t& mins, const vec3_t& maxs)
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{
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VectorCopy(mins, m_Mins);
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VectorCopy(maxs, m_Maxs);
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}
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~BoundingBox() {}
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public:
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// Bounding box
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vec3_t m_Mins;
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vec3_t m_Maxs;
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};
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#endif//BOUNDINGBOX_H__
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