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@ -9,6 +9,8 @@
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#include <OgreRenderTexture.h>
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#include <OgreRenderTexture.h>
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#include <OgreViewport.h>
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#include <OgreViewport.h>
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#include <components/esm/fogstate.hpp>
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#include "../mwbase/environment.hpp"
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#include "../mwbase/environment.hpp"
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#include "../mwbase/world.hpp"
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#include "../mwbase/world.hpp"
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#include "../mwbase/windowmanager.hpp"
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#include "../mwbase/windowmanager.hpp"
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@ -46,7 +48,6 @@ LocalMap::LocalMap(OEngine::Render::OgreRenderer* rend, MWRender::RenderingManag
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LocalMap::~LocalMap()
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LocalMap::~LocalMap()
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{
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{
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deleteBuffers();
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}
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}
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const Ogre::Vector2 LocalMap::rotatePoint(const Ogre::Vector2& p, const Ogre::Vector2& c, const float angle)
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const Ogre::Vector2 LocalMap::rotatePoint(const Ogre::Vector2& p, const Ogre::Vector2& c, const float angle)
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@ -55,59 +56,83 @@ const Ogre::Vector2 LocalMap::rotatePoint(const Ogre::Vector2& p, const Ogre::Ve
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Math::Sin(angle) * (p.x - c.x) + Math::Cos(angle) * (p.y - c.y) + c.y);
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Math::Sin(angle) * (p.x - c.x) + Math::Cos(angle) * (p.y - c.y) + c.y);
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}
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}
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void LocalMap::deleteBuffers()
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std::string LocalMap::coordStr(const int x, const int y)
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{
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mBuffers.clear();
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}
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void LocalMap::saveTexture(const std::string& texname, const std::string& filename)
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{
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{
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TexturePtr tex = TextureManager::getSingleton().getByName(texname);
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return StringConverter::toString(x) + "_" + StringConverter::toString(y);
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if (tex.isNull()) return;
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HardwarePixelBufferSharedPtr readbuffer = tex->getBuffer();
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readbuffer->lock(HardwareBuffer::HBL_NORMAL );
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const PixelBox &readrefpb = readbuffer->getCurrentLock();
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uchar *readrefdata = static_cast<uchar*>(readrefpb.data);
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Image img;
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img = img.loadDynamicImage (readrefdata, tex->getWidth(),
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tex->getHeight(), tex->getFormat());
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img.save("./" + filename);
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readbuffer->unlock();
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}
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}
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std::string LocalMap::coordStr(const int x, const int y)
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void LocalMap::clear()
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{
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{
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return StringConverter::toString(x) + "_" + StringConverter::toString(y);
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// Not actually removing the Textures here. That doesnt appear to work properly. It seems MyGUI still keeps some pointers.
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mBuffers.clear();
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}
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}
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void LocalMap::saveFogOfWar(MWWorld::CellStore* cell)
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void LocalMap::saveFogOfWar(MWWorld::CellStore* cell)
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{
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{
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if (!mInterior)
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if (!mInterior)
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{
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{
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/*saveTexture("Cell_"+coordStr(mCellX, mCellY)+"_fog",
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std::string textureName = "Cell_"+coordStr(cell->getCell()->getGridX(), cell->getCell()->getGridY())+"_fog";
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"Cell_"+coordStr(mCellX, mCellY)+"_fog.png");*/
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std::auto_ptr<ESM::FogState> fog (new ESM::FogState());
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fog->mFogTextures.push_back(ESM::FogTexture());
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TexturePtr tex = TextureManager::getSingleton().getByName(textureName);
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if (tex.isNull())
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return;
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Ogre::Image image;
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tex->convertToImage(image);
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Ogre::DataStreamPtr encoded = image.encode("tga");
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fog->mFogTextures.back().mImageData.resize(encoded->size());
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encoded->read(&fog->mFogTextures.back().mImageData[0], encoded->size());
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cell->setFog(fog.release());
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}
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}
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else
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else
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{
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{
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Vector2 min(mBounds.getMinimum().x, mBounds.getMinimum().y);
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Vector2 min(mBounds.getMinimum().x, mBounds.getMinimum().y);
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Vector2 max(mBounds.getMaximum().x, mBounds.getMaximum().y);
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Vector2 max(mBounds.getMaximum().x, mBounds.getMaximum().y);
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Vector2 length = max-min;
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Vector2 length = max-min;
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// divide into segments
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const int segsX = std::ceil( length.x / sSize );
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const int segsX = std::ceil( length.x / sSize );
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const int segsY = std::ceil( length.y / sSize );
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const int segsY = std::ceil( length.y / sSize );
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mInteriorName = cell->getCell()->mName;
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std::auto_ptr<ESM::FogState> fog (new ESM::FogState());
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fog->mBounds.mMinX = mBounds.getMinimum().x;
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fog->mBounds.mMaxX = mBounds.getMaximum().x;
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fog->mBounds.mMinY = mBounds.getMinimum().y;
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fog->mBounds.mMaxY = mBounds.getMaximum().y;
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fog->mNorthMarkerAngle = mAngle;
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fog->mFogTextures.reserve(segsX*segsY);
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for (int x=0; x<segsX; ++x)
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for (int x=0; x<segsX; ++x)
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{
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{
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for (int y=0; y<segsY; ++y)
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for (int y=0; y<segsY; ++y)
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{
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{
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/*saveTexture(
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std::string textureName = cell->getCell()->mName + "_" + coordStr(x,y) + "_fog";
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mInteriorName + "_" + coordStr(x,y) + "_fog",
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mInteriorName + "_" + coordStr(x,y) + "_fog.png");*/
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TexturePtr tex = TextureManager::getSingleton().getByName(textureName);
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if (tex.isNull())
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return;
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Ogre::Image image;
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tex->convertToImage(image);
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fog->mFogTextures.push_back(ESM::FogTexture());
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Ogre::DataStreamPtr encoded = image.encode("tga");
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fog->mFogTextures.back().mImageData.resize(encoded->size());
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encoded->read(&fog->mFogTextures.back().mImageData[0], encoded->size());
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fog->mFogTextures.back().mX = x;
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fog->mFogTextures.back().mY = y;
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}
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}
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}
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}
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cell->setFog(fog.release());
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}
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}
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}
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}
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@ -126,29 +151,34 @@ void LocalMap::requestMap(MWWorld::CellStore* cell, float zMin, float zMax)
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mCameraPosNode->setPosition(Vector3(0,0,0));
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mCameraPosNode->setPosition(Vector3(0,0,0));
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render((x+0.5)*sSize, (y+0.5)*sSize, zMin, zMax, sSize, sSize, name);
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render((x+0.5)*sSize, (y+0.5)*sSize, zMin, zMax, sSize, sSize, name);
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if (mBuffers.find(name) == mBuffers.end())
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{
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if (cell->getFog())
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loadFogOfWar(name, cell->getFog()->mFogTextures.back());
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else
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createFogOfWar(name);
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}
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}
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}
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void LocalMap::requestMap(MWWorld::CellStore* cell,
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void LocalMap::requestMap(MWWorld::CellStore* cell,
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AxisAlignedBox bounds)
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AxisAlignedBox bounds)
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{
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{
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// if we're in an empty cell, don't bother rendering anything
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// If we're in an empty cell, bail out
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// The operations in this function are only valid for finite bounds
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if (bounds.isNull ())
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if (bounds.isNull ())
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return;
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return;
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mInterior = true;
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mInterior = true;
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mBounds = bounds;
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float zMin = mBounds.getMinimum().z;
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mBounds = bounds;
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float zMax = mBounds.getMaximum().z;
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// Get the cell's NorthMarker rotation. This is used to rotate the entire map.
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const Vector2& north = MWBase::Environment::get().getWorld()->getNorthVector(cell);
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const Vector2& north = MWBase::Environment::get().getWorld()->getNorthVector(cell);
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Radian angle = Ogre::Math::ATan2 (north.x, north.y);
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Radian angle = Ogre::Math::ATan2 (north.x, north.y) + Ogre::Degree(2);
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mAngle = angle.valueRadians();
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mAngle = angle.valueRadians();
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mCellCamera->setOrientation(Quaternion::IDENTITY);
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// Rotate the cell and merge the rotated corners to the bounding box
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mCameraRotNode->setOrientation(Quaternion(Math::Cos(mAngle/2.f), 0, 0, -Math::Sin(mAngle/2.f)));
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// rotate the cell and merge the rotated corners to the bounding box
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Vector2 _center(bounds.getCenter().x, bounds.getCenter().y);
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Vector2 _center(bounds.getCenter().x, bounds.getCenter().y);
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Vector3 _c1 = bounds.getCorner(AxisAlignedBox::FAR_LEFT_BOTTOM);
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Vector3 _c1 = bounds.getCorner(AxisAlignedBox::FAR_LEFT_BOTTOM);
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Vector3 _c2 = bounds.getCorner(AxisAlignedBox::FAR_RIGHT_BOTTOM);
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Vector3 _c2 = bounds.getCorner(AxisAlignedBox::FAR_RIGHT_BOTTOM);
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@ -168,9 +198,48 @@ void LocalMap::requestMap(MWWorld::CellStore* cell,
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mBounds.merge(Vector3(c3.x, c3.y, 0));
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mBounds.merge(Vector3(c3.x, c3.y, 0));
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mBounds.merge(Vector3(c4.x, c4.y, 0));
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mBounds.merge(Vector3(c4.x, c4.y, 0));
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// apply a little padding
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// Do NOT change padding! This will break older savegames.
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mBounds.setMinimum (mBounds.getMinimum() - Vector3(500,500,0));
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// If the padding really needs to be changed, then it must be saved in the ESM::FogState and
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mBounds.setMaximum (mBounds.getMaximum() + Vector3(500,500,0));
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// assume the old (500) value as default for older savegames.
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const int padding = 500;
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// Apply a little padding
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mBounds.setMinimum (mBounds.getMinimum() - Vector3(padding,padding,0));
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mBounds.setMaximum (mBounds.getMaximum() + Vector3(padding,padding,0));
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float zMin = mBounds.getMinimum().z;
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float zMax = mBounds.getMaximum().z;
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// If there is fog state in the CellStore (e.g. when it came from a savegame) we need to do some checks
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// to see if this state is still valid.
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// Both the cell bounds and the NorthMarker rotation could be changed by the content files or exchanged models.
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// If they changed by too much (for bounds, < padding is considered acceptable) then parts of the interior might not
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// be covered by the map anymore.
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// The following code detects this, and discards the CellStore's fog state if it needs to.
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if (cell->getFog())
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{
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ESM::FogState* fog = cell->getFog();
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Ogre::Vector3 newMin (fog->mBounds.mMinX, fog->mBounds.mMinY, zMin);
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Ogre::Vector3 newMax (fog->mBounds.mMaxX, fog->mBounds.mMaxY, zMax);
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Ogre::Vector3 minDiff = newMin - mBounds.getMinimum();
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Ogre::Vector3 maxDiff = newMax - mBounds.getMaximum();
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if (std::abs(minDiff.x) > 500 || std::abs(minDiff.y) > 500
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|| std::abs(maxDiff.x) > 500 || std::abs(maxDiff.y) > 500
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|| std::abs(mAngle - fog->mNorthMarkerAngle) > Ogre::Degree(5).valueRadians())
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{
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// Nuke it
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cell->setFog(NULL);
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}
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else
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{
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// Looks sane, use it
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mBounds = Ogre::AxisAlignedBox(newMin, newMax);
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mAngle = fog->mNorthMarkerAngle;
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}
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}
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Vector2 center(mBounds.getCenter().x, mBounds.getCenter().y);
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Vector2 center(mBounds.getCenter().x, mBounds.getCenter().y);
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@ -179,6 +248,9 @@ void LocalMap::requestMap(MWWorld::CellStore* cell,
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Vector2 length = max-min;
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Vector2 length = max-min;
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mCellCamera->setOrientation(Quaternion::IDENTITY);
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mCameraRotNode->setOrientation(Quaternion(Math::Cos(mAngle/2.f), 0, 0, -Math::Sin(mAngle/2.f)));
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mCameraPosNode->setPosition(Vector3(center.x, center.y, 0));
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mCameraPosNode->setPosition(Vector3(center.x, center.y, 0));
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// divide into segments
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// divide into segments
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@ -187,17 +259,94 @@ void LocalMap::requestMap(MWWorld::CellStore* cell,
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mInteriorName = cell->getCell()->mName;
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mInteriorName = cell->getCell()->mName;
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int i=0;
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for (int x=0; x<segsX; ++x)
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for (int x=0; x<segsX; ++x)
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{
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{
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for (int y=0; y<segsY; ++y)
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for (int y=0; y<segsY; ++y)
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{
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{
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Vector2 start = min + Vector2(sSize*x,sSize*y);
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Vector2 start = min + Vector2(sSize*x,sSize*y);
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Vector2 newcenter = start + 4096;
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Vector2 newcenter = start + sSize/2;
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render(newcenter.x - center.x, newcenter.y - center.y, zMin, zMax, sSize, sSize,
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std::string texturePrefix = cell->getCell()->mName + "_" + coordStr(x,y);
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cell->getCell()->mName + "_" + coordStr(x,y));
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render(newcenter.x - center.x, newcenter.y - center.y, zMin, zMax, sSize, sSize, texturePrefix);
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if (!cell->getFog())
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createFogOfWar(texturePrefix);
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else
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{
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ESM::FogState* fog = cell->getFog();
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// We are using the same bounds and angle as we were using when the textures were originally made. Segments should come out the same.
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assert (i < int(fog->mFogTextures.size()));
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ESM::FogTexture& esm = fog->mFogTextures[i];
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loadFogOfWar(texturePrefix, esm);
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}
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++i;
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}
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}
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}
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void LocalMap::createFogOfWar(const std::string& texturePrefix)
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{
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const std::string texName = texturePrefix + "_fog";
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TexturePtr tex = createFogOfWarTexture(texName);
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// create a buffer to use for dynamic operations
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std::vector<uint32> buffer;
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// initialize to (0, 0, 0, 1)
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buffer.resize(sFogOfWarResolution*sFogOfWarResolution, (255 << 24));
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// upload to the texture
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memcpy(tex->getBuffer()->lock(HardwareBuffer::HBL_DISCARD), &buffer[0], sFogOfWarResolution*sFogOfWarResolution*4);
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tex->getBuffer()->unlock();
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mBuffers[texturePrefix] = buffer;
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}
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Ogre::TexturePtr LocalMap::createFogOfWarTexture(const std::string &texName)
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{
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TexturePtr tex = TextureManager::getSingleton().getByName(texName);
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if (tex.isNull())
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{
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tex = TextureManager::getSingleton().createManual(
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texName,
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ResourceGroupManager::DEFAULT_RESOURCE_GROUP_NAME,
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TEX_TYPE_2D,
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sFogOfWarResolution, sFogOfWarResolution,
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0,
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PF_A8R8G8B8,
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TU_DYNAMIC_WRITE_ONLY_DISCARDABLE);
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}
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}
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else
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tex->unload();
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return tex;
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}
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}
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void LocalMap::loadFogOfWar (const std::string& texturePrefix, ESM::FogTexture& esm)
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{
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std::vector<char>& data = esm.mImageData;
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Ogre::DataStreamPtr stream(new Ogre::MemoryDataStream(&data[0], data.size()));
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Ogre::Image image;
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image.load(stream, "tga");
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assert (image.getWidth() == sFogOfWarResolution && image.getHeight() == sFogOfWarResolution);
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std::string texName = texturePrefix + "_fog";
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Ogre::TexturePtr tex = createFogOfWarTexture(texName);
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tex->loadImage(image);
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// create a buffer to use for dynamic operations
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std::vector<uint32> buffer;
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buffer.resize(sFogOfWarResolution*sFogOfWarResolution);
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memcpy(&buffer[0], image.getData(), image.getSize());
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mBuffers[texturePrefix] = buffer;
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}
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}
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void LocalMap::render(const float x, const float y,
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void LocalMap::render(const float x, const float y,
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@ -249,31 +398,6 @@ void LocalMap::render(const float x, const float y,
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vp->setMaterialScheme("local_map");
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vp->setMaterialScheme("local_map");
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rtt->update();
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rtt->update();
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// create "fog of war" texture
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TexturePtr tex2 = TextureManager::getSingleton().createManual(
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texture + "_fog",
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ResourceGroupManager::DEFAULT_RESOURCE_GROUP_NAME,
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TEX_TYPE_2D,
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xw*sFogOfWarResolution/sSize, yw*sFogOfWarResolution/sSize,
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0,
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PF_A8R8G8B8,
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TU_DYNAMIC_WRITE_ONLY_DISCARDABLE);
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// create a buffer to use for dynamic operations
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std::vector<uint32> buffer;
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buffer.resize(sFogOfWarResolution*sFogOfWarResolution);
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// initialize to (0, 0, 0, 1)
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for (int p=0; p<sFogOfWarResolution*sFogOfWarResolution; ++p)
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{
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buffer[p] = (255 << 24);
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}
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memcpy(tex2->getBuffer()->lock(HardwareBuffer::HBL_DISCARD), &buffer[0], sFogOfWarResolution*sFogOfWarResolution*4);
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tex2->getBuffer()->unlock();
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mBuffers[texture] = buffer;
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}
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}
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mRenderingManager->enableLights(true);
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mRenderingManager->enableLights(true);
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@ -304,6 +428,9 @@ bool LocalMap::isPositionExplored (float nX, float nY, int x, int y, bool interi
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if (mBuffers.find(texName) == mBuffers.end())
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if (mBuffers.find(texName) == mBuffers.end())
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return false;
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return false;
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nX = std::max(0.f, std::min(1.f, nX));
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nY = std::max(0.f, std::min(1.f, nY));
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int texU = (sFogOfWarResolution-1) * nX;
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int texU = (sFogOfWarResolution-1) * nX;
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int texV = (sFogOfWarResolution-1) * nY;
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int texV = (sFogOfWarResolution-1) * nY;
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@ -414,6 +541,8 @@ void LocalMap::updatePlayer (const Ogre::Vector3& position, const Ogre::Quaterni
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}
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}
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// copy to the texture
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// copy to the texture
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// NOTE: Could be optimized later. We actually only need to update the region that changed.
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// Not a big deal at the moment, the FoW is only 32x32 anyway.
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memcpy(tex->getBuffer()->lock(HardwareBuffer::HBL_DISCARD), &aBuffer[0], sFogOfWarResolution*sFogOfWarResolution*4);
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memcpy(tex->getBuffer()->lock(HardwareBuffer::HBL_DISCARD), &aBuffer[0], sFogOfWarResolution*sFogOfWarResolution*4);
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tex->getBuffer()->unlock();
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tex->getBuffer()->unlock();
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}
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}
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