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	Also cleaned up some #includes Removed a few asserts. Vector already throws an out_of_range error.
		
			
				
	
	
		
			140 lines
		
	
	
		
			No EOL
		
	
	
		
			4.5 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
			
		
		
	
	
			140 lines
		
	
	
		
			No EOL
		
	
	
		
			4.5 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
| ///File to handle keys used by nif file records
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| 
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| #ifndef OPENMW_COMPONENTS_NIF_NIFKEY_HPP
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| #define OPENMW_COMPONENTS_NIF_NIFKEY_HPP
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| 
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| #include <OgreStringConverter.h>
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| 
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| #include "nifstream.hpp"
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| 
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| namespace Nif
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| {
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| 
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| template<typename T>
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| struct KeyT {
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|     float mTime;
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|     T mValue;
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|     T mForwardValue;  // Only for Quadratic interpolation, and never for QuaternionKeyList
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|     T mBackwardValue; // Only for Quadratic interpolation, and never for QuaternionKeyList
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|     float mTension;    // Only for TBC interpolation
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|     float mBias;       // Only for TBC interpolation
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|     float mContinuity; // Only for TBC interpolation
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| };
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| typedef KeyT<float> FloatKey;
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| typedef KeyT<Ogre::Vector3> Vector3Key;
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| typedef KeyT<Ogre::Vector4> Vector4Key;
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| typedef KeyT<Ogre::Quaternion> QuaternionKey;
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| 
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| template<typename T, T (NIFStream::*getValue)()>
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| struct KeyListT {
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|     typedef std::vector< KeyT<T> > VecType;
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| 
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|     static const unsigned int sLinearInterpolation = 1;
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|     static const unsigned int sQuadraticInterpolation = 2;
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|     static const unsigned int sTBCInterpolation = 3;
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|     static const unsigned int sXYZInterpolation = 4;
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| 
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|     unsigned int mInterpolationType;
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|     VecType mKeys;
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| 
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|     KeyListT() : mInterpolationType(sLinearInterpolation) {}
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| 
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|     //Read in a KeyGroup (see http://niftools.sourceforge.net/doc/nif/NiKeyframeData.html)
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|     void read(NIFStream *nif, bool force=false)
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|     {
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|         assert(nif);
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| 
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|         mInterpolationType = 0;
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| 
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|         size_t count = nif->getUInt();
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|         if(count == 0 && !force)
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|             return;
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| 
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|         //If we aren't forcing things, make sure that read clears any previous keys
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|         if(!force)
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|             mKeys.clear();
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| 
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|         mInterpolationType = nif->getUInt();
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| 
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|         KeyT<T> key;
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|         NIFStream &nifReference = *nif;
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| 
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|         if(mInterpolationType == sLinearInterpolation)
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|         {
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|             for(size_t i = 0;i < count;i++)
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|             {
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|                 readTimeAndValue(nifReference, key);
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|                 mKeys.push_back(key);
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|             }
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|         }
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|         else if(mInterpolationType == sQuadraticInterpolation)
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|         {
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|             for(size_t i = 0;i < count;i++)
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|             {
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|                 readQuadratic(nifReference, key);
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|                 mKeys.push_back(key);
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|             }
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|         }
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|         else if(mInterpolationType == sTBCInterpolation)
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|         {
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|             for(size_t i = 0;i < count;i++)
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|             {
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|                 readTBC(nifReference, key);
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|                 mKeys.push_back(key);
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|             }
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|         }
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|         //XYZ keys aren't actually read here.
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|         //data.hpp sees that the last type read was sXYZInterpolation and:
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|         //    Eats a floating point number, then
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|         //    Re-runs the read function 3 more times, with force enabled so that the previous values aren't cleared.
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|         //        When it does that it's reading in a bunch of sLinearInterpolation keys, not sXYZInterpolation.
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|         else if(mInterpolationType == sXYZInterpolation)
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|         {
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|             //Don't try to read XYZ keys into the wrong part
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|             if ( count != 1 )
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|                 nif->file->fail("XYZ_ROTATION_KEY count should always be '1' .  Retrieved Value: "+Ogre::StringConverter::toString(count));
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|         }
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|         else if (0 == mInterpolationType)
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|         {
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|             if (count != 0)
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|                 nif->file->fail("Interpolation type 0 doesn't work with keys");
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|         }
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|         else
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|             nif->file->fail("Unhandled interpolation type: "+Ogre::StringConverter::toString(mInterpolationType));
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|     }
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| 
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| private:
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|     static void readTimeAndValue(NIFStream &nif, KeyT<T> &key)
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|     {
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|         key.mTime = nif.getFloat();
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|         key.mValue = (nif.*getValue)();
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|     }
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| 
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|     static void readQuadratic(NIFStream &nif, KeyT<Ogre::Quaternion> &key)
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|     {
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|         readTimeAndValue(nif, key);
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|     }
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| 
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|     template <typename U>
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|     static void readQuadratic(NIFStream &nif, KeyT<U> &key)
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|     {
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|         readTimeAndValue(nif, key);
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|         key.mForwardValue = (nif.*getValue)();
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|         key.mBackwardValue = (nif.*getValue)();
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|     }
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| 
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|     static void readTBC(NIFStream &nif, KeyT<T> &key)
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|     {
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|         readTimeAndValue(nif, key);
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|         key.mTension = nif.getFloat();
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|         key.mBias = nif.getFloat();
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|         key.mContinuity = nif.getFloat();
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|     }
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| };
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| typedef KeyListT<float,&NIFStream::getFloat> FloatKeyList;
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| typedef KeyListT<Ogre::Vector3,&NIFStream::getVector3> Vector3KeyList;
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| typedef KeyListT<Ogre::Vector4,&NIFStream::getVector4> Vector4KeyList;
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| typedef KeyListT<Ogre::Quaternion,&NIFStream::getQuaternion> QuaternionKeyList;
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| 
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| } // Namespace
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| #endif //#ifndef OPENMW_COMPONENTS_NIF_NIFKEY_HPP
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