Removed RenderRift
Removed the RenderRift class since it relates to unused functionality and references fields that I removed from TileEntityRift.
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1 changed files with 0 additions and 218 deletions
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package StevenDimDoors.mod_pocketDimClient;
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import static org.lwjgl.opengl.GL11.GL_BLEND;
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import static org.lwjgl.opengl.GL11.GL_LIGHTING;
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import static org.lwjgl.opengl.GL11.GL_ONE_MINUS_DST_COLOR;
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import static org.lwjgl.opengl.GL11.GL_TEXTURE_2D;
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import static org.lwjgl.opengl.GL11.GL_ZERO;
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import static org.lwjgl.opengl.GL11.glBlendFunc;
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import java.util.HashMap;
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import net.minecraft.client.renderer.tileentity.TileEntitySpecialRenderer;
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import net.minecraft.tileentity.TileEntity;
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import org.lwjgl.opengl.GL11;
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import StevenDimDoors.mod_pocketDim.tileentities.TileEntityRift;
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import cpw.mods.fml.relauncher.Side;
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import cpw.mods.fml.relauncher.SideOnly;
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@SideOnly(Side.CLIENT)
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public class RenderRift extends TileEntitySpecialRenderer
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{
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@Override
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public void renderTileEntityAt(TileEntity te, double xWorld, double yWorld,
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double zWorld, float f)
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{
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yWorld = yWorld+.75;
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GL11.glPushMatrix();
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GL11.glDisable(GL11.GL_CULL_FACE);
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GL11.glDisable(GL_TEXTURE_2D);
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GL11.glDisable(GL_LIGHTING);
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//GL11.glLogicOp(GL11.GL_INVERT);
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// GL11.glEnable(GL11.GL_COLOR_LOGIC_OP);
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GL11.glColor4f(.2F, .2F, .2F, 1F);
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GL11.glEnable(GL_BLEND);
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glBlendFunc(GL_ONE_MINUS_DST_COLOR, GL_ZERO);
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/**
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* just draws the verticies
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*/
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this.drawCrack(TileEntityRift.class.cast(te).renderingCenters, xWorld, yWorld, zWorld);
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this.drawCrackRotated(TileEntityRift.class.cast(te).renderingCenters, xWorld, yWorld, zWorld);
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GL11.glEnable(GL11.GL_CULL_FACE);
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GL11.glEnable(GL11.GL_LIGHTING);
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GL11.glEnable(GL_TEXTURE_2D);
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GL11.glDisable(GL11.GL_COLOR_LOGIC_OP);
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GL11.glPopMatrix();
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}
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public void drawCrack(HashMap<Integer, double[]> quads,double xWorld,double yWorld,double zWorld)
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{
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GL11.glBegin(GL11.GL_QUAD_STRIP);
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drawVertex(xWorld+.5, yWorld-Math.log(Math.pow(quads.size(),2)+1)/14, zWorld+.5);
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drawVertex(xWorld+.5, yWorld+Math.log(Math.pow(quads.size(),2)+1)/14, zWorld+.5);
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for(int i = 0;;i++)
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{
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if(!quads.containsKey(i))
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{
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break;
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}
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double[] coords = quads.get(i);
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double width=Math.log(Math.pow(quads.size(),2-Math.log(i+1))+1)/14;
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if(coords[3]==0)
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{
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if(quads.containsKey(i+1))
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{
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drawVertex(xWorld+coords[0]+.5, yWorld+coords[1]-width/2 , zWorld+coords[2]);
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drawVertex(xWorld+coords[0]+.5 , yWorld+coords[1]+width/2 , zWorld+coords[2]);
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}
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else
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{
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drawVertex(xWorld+coords[0]+.5, yWorld+coords[1]-width/200 , zWorld+coords[2]);
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drawVertex(xWorld+coords[0]+.5 , yWorld+coords[1]+width/200 , zWorld+coords[2]);
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}
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}
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else
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{
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if(quads.containsKey(i+1))
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{
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drawVertex(xWorld+coords[0], yWorld+coords[1]-width/2 , zWorld+coords[2]+.5);
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drawVertex(xWorld+coords[0], yWorld+coords[1]+width/2 , zWorld+coords[2]+.5);
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}
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else
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{
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drawVertex(xWorld+coords[0], yWorld+coords[1]+width/200 , zWorld+coords[2]+.5);
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drawVertex(xWorld+coords[0], yWorld+coords[1]-width/200, zWorld+coords[2]+.5);
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}
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}
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}
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GL11.glEnd();
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}
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public void drawCrackRotated(HashMap<Integer, double[]> quads,double xWorld,double yWorld,double zWorld)
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{
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GL11.glBegin(GL11.GL_QUAD_STRIP);
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drawVertex(xWorld+.5, yWorld+Math.log(Math.pow(quads.size(),2)+1)/14, zWorld+.5);
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drawVertex(xWorld+.5, yWorld-Math.log(Math.pow(quads.size(),2)+1)/14, zWorld+.5);
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for(int i = 0;;i++)
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{
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if(!quads.containsKey(i))
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{
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break;
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}
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double[] coords = quads.get(i);
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double width=Math.log(Math.pow(quads.size(),2-Math.log(i+1))+1)/14;
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if(coords[3]==0)
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{
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if(quads.containsKey(i+1))
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{
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drawVertex(xWorld+coords[0]+.5, yWorld-(coords[1]-width/2) , zWorld-coords[2]+1);
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drawVertex(xWorld+coords[0]+.5 , yWorld-(coords[1]+width/2) , zWorld-coords[2]+1);
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}
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else
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{
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drawVertex(xWorld+coords[0]+.5, yWorld-(coords[1]-width/200) , zWorld-coords[2]+1);
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drawVertex(xWorld+coords[0]+.5 , yWorld-(coords[1]+width/200) , zWorld-coords[2]+1);
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}
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}
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else
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{
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if(quads.containsKey(i+1))
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{
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drawVertex(xWorld-coords[0]+1, yWorld-(coords[1]-width/2) , zWorld+coords[2]+.5);
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drawVertex(xWorld-coords[0]+1, yWorld-(coords[1]+width/2) , zWorld+coords[2]+.5);
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}
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else
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{
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drawVertex(xWorld-coords[0]+1, yWorld-(coords[1]+width/200) , zWorld+coords[2]+.5);
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drawVertex(xWorld-coords[0]+1, yWorld-(coords[1]-width/200), zWorld+coords[2]+.5);
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}
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}
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}
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GL11.glEnd();
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}
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public void testDraw(HashMap<Integer, double[]> quads,double xWorld,double yWorld,double zWorld)
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{
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GL11.glBegin(GL11.GL_QUADS);
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for(int i = 0;;i++)
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{
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if(!quads.containsKey(i))
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{
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break;
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}
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double[] coords = quads.get(i);
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drawVertex(xWorld-coords[0], yWorld , zWorld+.1);
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drawVertex(xWorld-coords[0], yWorld+.1 , zWorld+.1);
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drawVertex(xWorld-coords[0], yWorld +.1, zWorld);
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drawVertex(xWorld-coords[0], yWorld , zWorld);
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}
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GL11.glEnd();
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}
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public void drawVertex(double x, double y, double z)
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{
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GL11.glVertex3f((float)x,(float)y,(float)z);
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}
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public double[] rotateCoords(int rotation, double[] coords)
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{
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double[] rotatedCoords = new double[4];
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if(rotation == 180)
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{
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rotatedCoords[0]=-coords[0];
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rotatedCoords[1]=-coords[1];
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rotatedCoords[2]=-coords[2];
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rotatedCoords[3]=-coords[3];
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//return rotatedCoords;
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}
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return coords;
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}
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}
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