mirror of
https://github.com/jmarshall23/DoomRTX.git
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346 lines
11 KiB
C++
346 lines
11 KiB
C++
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#ifndef __PREY_INTERPOLATE_H__
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#define __PREY_INTERPOLATE_H__
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//==============================================================================================
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//
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// Hermite interpolation.
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//
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//==============================================================================================
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template< class type >
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class hhHermiteInterpolate {
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public:
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hhHermiteInterpolate();
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void Init( const int startTime, const int duration, const type startValue, const type endValue, float S1, float S2 );
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void Init( const int startTime, const int duration, const type startValue, const type endValue );
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void SetStartTime( int time ) { this->startTime = time; }
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void SetDuration( int duration ) { this->duration = duration; }
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void SetStartValue( const type &start ) { this->startValue = start; }
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void SetEndValue( const type &end ) { this->endValue = end; }
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void SetHermiteParms( float S1, float S2 ) { this->S1 = S1; this->S2 = S2; }
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type GetCurrentValue( int time ) const;
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bool IsDone( int time ) const { return ( time >= startTime + duration ); }
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int GetStartTime( void ) const { return startTime; }
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int GetDuration( void ) const { return duration; }
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const type & GetStartValue( void ) const { return startValue; }
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const type & GetEndValue( void ) const { return endValue; }
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float GetS1( void ) const { return S1; }
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float GetS2( void ) const { return S2; }
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float HermiteAlpha(float t) const;
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private:
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float S1; // Slope of curve leaving start point
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float S2; // Slope of curve arriving at end point
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int startTime;
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int duration;
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type startValue;
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type endValue;
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mutable int currentTime;
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mutable type currentValue;
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};
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/*
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====================
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hhHermiteInterpolate::hhHermiteInterpolate
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====================
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*/
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template< class type >
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ID_INLINE hhHermiteInterpolate<type>::hhHermiteInterpolate() {
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currentTime = startTime = duration = 0;
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memset( ¤tValue, 0, sizeof( currentValue ) );
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startValue = endValue = currentValue;
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S1 = S2 = 1;
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}
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/*
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====================
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hhHermiteInterpolate::Init
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====================
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*/
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template< class type >
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ID_INLINE void hhHermiteInterpolate<type>::Init( const int startTime, const int duration, const type startValue, const type endValue, const float S1, const float S2 ) {
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this->S1 = S1;
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this->S2 = S2;
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this->startTime = startTime;
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this->duration = duration;
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this->startValue = startValue;
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this->endValue = endValue;
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this->currentTime = startTime - 1;
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this->currentValue = startValue;
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}
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/*
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====================
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hhHermiteInterpolate::Init
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====================
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*/
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template< class type >
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ID_INLINE void hhHermiteInterpolate<type>::Init( const int startTime, const int duration, const type startValue, const type endValue ) {
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this->startTime = startTime;
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this->duration = duration;
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this->startValue = startValue;
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this->endValue = endValue;
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this->currentTime = startTime - 1;
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this->currentValue = startValue;
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}
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/*
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====================
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hhHermiteInterpolate::GetCurrentValue
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====================
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*/
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template< class type >
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ID_INLINE type hhHermiteInterpolate<type>::GetCurrentValue( int time ) const {
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int deltaTime;
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deltaTime = time - startTime;
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if ( time != currentTime ) {
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currentTime = time;
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if ( deltaTime <= 0 ) {
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currentValue = startValue;
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}
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else if ( deltaTime >= duration ) {
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currentValue = endValue;
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}
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else {
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currentValue = startValue + ( endValue - startValue ) * HermiteAlpha( (float) deltaTime / duration );
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}
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}
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return currentValue;
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}
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// Hermite()
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// Hermite Interpolator
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// Returns an alpha value [0..1] based on Hermite Parameters N1, N2, S1, S2 and an input alpha 't'
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template< class type >
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ID_INLINE float hhHermiteInterpolate<type>::HermiteAlpha(const float t) const {
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float N1 = 0.0f;
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float N2 = 1.0f;
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float tSquared = t*t;
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float tCubed = tSquared*t;
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return (2*tCubed - 3*tSquared + 1)*N1 +
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(-2*tCubed + 3*tSquared)*N2 +
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(tCubed - 2*tSquared + t)*S1 +
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(tCubed - tSquared)*S2;
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}
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//==============================================================================================
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//
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// TCB Spline Interpolation
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//
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// Defines a Kochanek-Bartels spline, basically a Hermite spline with formulae to calculate the tangents
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// Requires extra points at the ends, try duplicating first and last
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//==============================================================================================
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class hhTCBSpline {
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//TODO: Make a template like the others so it can handle something other than vec3 types
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public:
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hhTCBSpline() { Clear(); }
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void Clear();
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void AddPoint(const idVec3 &point);
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void SetControls(float tension, float continuity, float bias);
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idVec3 GetValue(float alpha);
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float tension; // How sharply does the curve bend?
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float continuity; // How rapid is the change in speed and direction?
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float bias; // What is the direction of the curve as it passes through the key point?
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idList<idVec3> nodes; // control points
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protected:
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idVec3 GetNode(int i);
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idVec3 IncomingTangent(int i);
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idVec3 OutgoingTangent(int i);
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};
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ID_INLINE void hhTCBSpline::Clear() {
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tension = continuity = bias = 0.0f;
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nodes.Clear();
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}
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ID_INLINE void hhTCBSpline::AddPoint(const idVec3 &point) {
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nodes.Append(point);
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}
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ID_INLINE void hhTCBSpline::SetControls(float tension, float continuity, float bias) {
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this->tension = idMath::ClampFloat(0.0f, 1.0f, tension);
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this->continuity = idMath::ClampFloat(0.0f, 1.0f, continuity);
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this->bias = idMath::ClampFloat(0.0f, 1.0f, bias);
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}
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ID_INLINE idVec3 hhTCBSpline::GetNode(int i) {
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// Clamping has the effect of having duplicate nodes beyond the array boundaries
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int index = idMath::ClampInt(0, nodes.Num()-1, i);
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return nodes[index];
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}
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ID_INLINE idVec3 hhTCBSpline::IncomingTangent(int i) {
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return ((1.0f-tension)*(1.0f-continuity)*(1.0f+bias) * 0.5f) * (GetNode(i) - GetNode(i-1)) +
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((1.0f-tension)*(1.0f+continuity)*(1.0f-bias) * 0.5f) * (GetNode(i+1) - GetNode(i));
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}
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ID_INLINE idVec3 hhTCBSpline::OutgoingTangent(int i) {
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return ((1.0f-tension)*(1.0f+continuity)*(1.0f+bias) * 0.5f) * (GetNode(i) - GetNode(i-1)) +
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((1.0f-tension)*(1.0f-continuity)*(1.0f-bias) * 0.5f) * (GetNode(i+1) - GetNode(i));
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}
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ID_INLINE idVec3 hhTCBSpline::GetValue(float alpha) {
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float t = idMath::ClampFloat(0.0f, 1.0f, alpha);
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int numNodes = nodes.Num();
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int numSegments = numNodes-1;
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int startNode = t * numSegments;
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t = (t * numSegments) - startNode; // t = alpha within this segment
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// Calculate hermite parameters
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idVec3 N1 = GetNode(startNode);
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idVec3 N2 = GetNode(startNode+1);
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idVec3 S1 = OutgoingTangent(startNode);
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idVec3 S2 = IncomingTangent(startNode+1);
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float tSquared = t*t;
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float tCubed = tSquared*t;
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return (2*tCubed - 3*tSquared + 1)*N1 +
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(-2*tCubed + 3*tSquared)*N2 +
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(tCubed - 2*tSquared + t)*S1 +
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(tCubed - tSquared)*S2;
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}
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//==============================================================================================
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//
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// Sawtooth interpolation.
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//
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// Interpolates from startValue to endValue to startValue over duration
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//==============================================================================================
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template< class type >
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class hhSawToothInterpolate {
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public:
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hhSawToothInterpolate();
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void Init( const int startTime, const int duration, const type startValue, const type endValue );
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void SetStartTime( int time ) { this->startTime = time; }
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void SetDuration( int duration ) { this->duration = duration; }
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void SetStartValue( const type &start ) { this->startValue = start; }
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void SetEndValue( const type &end ) { this->endValue = end; }
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type GetCurrentValue( int time ) const;
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bool IsDone( int time ) const { return ( time >= startTime + duration ); }
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int GetStartTime( void ) const { return startTime; }
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int GetDuration( void ) const { return duration; }
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const type & GetStartValue( void ) const { return startValue; }
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const type & GetEndValue( void ) const { return endValue; }
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private:
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int startTime;
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int duration;
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type startValue;
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type endValue;
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mutable int currentTime;
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mutable type currentValue;
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};
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template< class type >
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ID_INLINE hhSawToothInterpolate<type>::hhSawToothInterpolate() {
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currentTime = startTime = duration = 0;
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memset( ¤tValue, 0, sizeof( currentValue ) );
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startValue = endValue = currentValue;
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}
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template< class type >
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ID_INLINE void hhSawToothInterpolate<type>::Init( const int startTime, const int duration, const type startValue, const type endValue ) {
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this->startTime = startTime;
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this->duration = duration;
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this->startValue = startValue;
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this->endValue = endValue;
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this->currentTime = startTime - 1;
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this->currentValue = startValue;
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}
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template< class type >
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ID_INLINE type hhSawToothInterpolate<type>::GetCurrentValue( int time ) const {
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int deltaTime;
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deltaTime = time - startTime;
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if ( time != currentTime ) {
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currentTime = time;
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if ( deltaTime <= 0 ) {
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currentValue = startValue;
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}
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else if ( deltaTime >= duration ) {
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currentValue = startValue;
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}
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else {
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float frac = ((float) deltaTime / duration );
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if (frac < 0.5f) {
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currentValue = startValue + ( endValue - startValue ) * frac * 2.0f;
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}
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else {
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currentValue = startValue + ( endValue - startValue ) * (1.0f - frac) * 2.0f;
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}
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}
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}
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return currentValue;
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}
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//==============================================================================================
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//
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// Sine wave oscillator
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//
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// Oscillates between min and max over given period
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//==============================================================================================
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template< class type >
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class hhSinOscillator {
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public:
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hhSinOscillator();
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void Init( const int startTime, const int period, const type min, const type max );
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void SetStartTime( int time ) { this->startTime = time; }
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void SetPeriod( int period ) { this->period = period; }
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void SetMinValue( const type &min ) { this->minValue = min; }
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void SetMaxValue( const type &max ) { this->MaxValue = max; }
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type GetCurrentValue( int time ) const;
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int GetStartTime( void ) const { return startTime; }
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int GetPeriod( void ) const { return period; }
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const type & GetMinValue( void ) const { return minValue; }
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const type & GetMaxValue( void ) const { return maxValue; }
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private:
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int startTime;
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int period;
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type minValue;
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type maxValue;
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mutable int currentTime;
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mutable type currentValue;
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};
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template< class type >
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ID_INLINE hhSinOscillator<type>::hhSinOscillator() {
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currentTime = startTime = period = 0;
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memset( ¤tValue, 0, sizeof( currentValue ) );
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minValue = maxValue = currentValue;
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}
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template< class type >
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ID_INLINE void hhSinOscillator<type>::Init( const int startTime, const int period, const type minValue, const type maxValue ) {
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this->startTime = startTime;
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this->period = period;
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this->minValue = minValue;
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this->maxValue = maxValue;
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this->currentTime = startTime - 1;
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this->currentValue = minValue;
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}
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template< class type >
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ID_INLINE type hhSinOscillator<type>::GetCurrentValue( int time ) const {
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if ( time != currentTime ) {
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currentTime = time;
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float deltaTime = period == 0 ? 0.0f : ( time - startTime ) / (float) period;
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float s = (1.0f + (float) sin(deltaTime * idMath::TWO_PI)) * 0.5f;
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currentValue = minValue + s * (maxValue - minValue);
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}
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return currentValue;
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}
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#endif // __PREY_INTERPOLATE_H__
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