Applied-Energistics-2-tiler.../src/main/java/appeng/client/render/blocks/RenderQNB.java

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/*
* This file is part of Applied Energistics 2.
* Copyright (c) 2013 - 2014, AlgorithmX2, All rights reserved.
*
* Applied Energistics 2 is free software: you can redistribute it and/or modify
* it under the terms of the GNU Lesser General Public License as published by
* the Free Software Foundation, either version 3 of the License, or
* (at your option) any later version.
*
* Applied Energistics 2 is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU Lesser General Public License for more details.
*
* You should have received a copy of the GNU Lesser General Public License
* along with Applied Energistics 2. If not, see <http://www.gnu.org/licenses/lgpl>.
*/
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package appeng.client.render.blocks;
import java.util.EnumSet;
import net.minecraft.client.renderer.RenderBlocks;
import net.minecraft.client.renderer.Tessellator;
import net.minecraft.item.Item;
import net.minecraft.item.ItemStack;
import net.minecraft.util.IIcon;
import net.minecraft.world.IBlockAccess;
import net.minecraftforge.client.IItemRenderer.ItemRenderType;
import net.minecraftforge.common.util.ForgeDirection;
import appeng.api.AEApi;
import appeng.api.util.AEColor;
import appeng.api.util.AEColoredItemDefinition;
import appeng.block.AEBaseBlock;
import appeng.client.render.BaseBlockRender;
import appeng.client.texture.ExtraBlockTextures;
import appeng.tile.qnb.TileQuantumBridge;
public class RenderQNB extends BaseBlockRender
{
public void renderCableAt(double Thickness, IBlockAccess world, int x, int y, int z, AEBaseBlock block, RenderBlocks renderer, IIcon texture, double pull,
EnumSet<ForgeDirection> connections)
{
block.getRendererInstance().setTemporaryRenderIcon( texture );
if ( connections.contains( ForgeDirection.UNKNOWN ) )
{
renderer.setRenderBounds( 0.5D - Thickness, 0.5D - Thickness, 0.5D - Thickness, 0.5D + Thickness, 0.5D + Thickness, 0.5D + Thickness );
renderer.renderStandardBlock( block, x, y, z );
}
if ( connections.contains( ForgeDirection.WEST ) )
{
renderer.setRenderBounds( 0.0D, 0.5D - Thickness, 0.5D - Thickness, 0.5D - Thickness - pull, 0.5D + Thickness, 0.5D + Thickness );
renderer.renderStandardBlock( block, x, y, z );
}
if ( connections.contains( ForgeDirection.EAST ) )
{
renderer.setRenderBounds( 0.5D + Thickness + pull, 0.5D - Thickness, 0.5D - Thickness, 1.0D, 0.5D + Thickness, 0.5D + Thickness );
renderer.renderStandardBlock( block, x, y, z );
}
if ( connections.contains( ForgeDirection.NORTH ) )
{
renderer.setRenderBounds( 0.5D - Thickness, 0.5D - Thickness, 0.0D, 0.5D + Thickness, 0.5D + Thickness, 0.5D - Thickness - pull );
renderer.renderStandardBlock( block, x, y, z );
}
if ( connections.contains( ForgeDirection.SOUTH ) )
{
renderer.setRenderBounds( 0.5D - Thickness, 0.5D - Thickness, 0.5D + Thickness + pull, 0.5D + Thickness, 0.5D + Thickness, 1.0D );
renderer.renderStandardBlock( block, x, y, z );
}
if ( connections.contains( ForgeDirection.DOWN ) )
{
renderer.setRenderBounds( 0.5D - Thickness, 0.0D, 0.5D - Thickness, 0.5D + Thickness, 0.5D - Thickness - pull, 0.5D + Thickness );
renderer.renderStandardBlock( block, x, y, z );
}
if ( connections.contains( ForgeDirection.UP ) )
{
renderer.setRenderBounds( 0.5D - Thickness, 0.5D + Thickness + pull, 0.5D - Thickness, 0.5D + Thickness, 1.0D, 0.5D + Thickness );
renderer.renderStandardBlock( block, x, y, z );
}
block.getRendererInstance().setTemporaryRenderIcon( null );
}
@Override
public void renderInventory(AEBaseBlock block, ItemStack item, RenderBlocks renderer, ItemRenderType type, Object[] obj)
{
float minPx = 2.0f / 16.0f;
float maxPx = 14.0f / 16.0f;
renderer.setRenderBounds( minPx, minPx, minPx, maxPx, maxPx, maxPx );
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super.renderInventory( block, item, renderer, type, obj );
}
@Override
public boolean renderInWorld(AEBaseBlock block, IBlockAccess world, int x, int y, int z, RenderBlocks renderer)
{
TileQuantumBridge tqb = block.getTileEntity( world, x, y, z );
if ( tqb == null )
return false;
renderer.renderAllFaces = true;
if ( tqb.getBlockType() == AEApi.instance().blocks().blockQuantumLink.block() )
{
if ( tqb.isFormed() )
{
AEColoredItemDefinition glassCableDefinition = AEApi.instance().parts().partCableGlass;
Item transparentGlassCable = glassCableDefinition.item( AEColor.Transparent );
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AEColoredItemDefinition coveredCableDefinition = AEApi.instance().parts().partCableCovered;
Item transparentCoveredCable = coveredCableDefinition.item( AEColor.Transparent );
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EnumSet<ForgeDirection> sides = tqb.getConnections();
renderCableAt( 0.11D, world, x, y, z, block, renderer, transparentGlassCable.getIconIndex( glassCableDefinition.stack( AEColor.Transparent, 1 ) ), 0.141D, sides );
renderCableAt( 0.188D, world, x, y, z, block, renderer, transparentCoveredCable.getIconIndex( coveredCableDefinition.stack( AEColor.Transparent, 1 ) ), 0.1875D, sides );
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}
float renderMin = 2.0f / 16.0f;
float renderMax = 14.0f / 16.0f;
renderer.setRenderBounds( renderMin, renderMin, renderMin, renderMax, renderMax, renderMax );
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renderer.renderStandardBlock( block, x, y, z );
// super.renderWorldBlock(world, x, y, z, block, modelId, renderer);
}
else
{
if ( !tqb.isFormed() )
{
float renderMin = 2.0f / 16.0f;
float renderMax = 14.0f / 16.0f;
renderer.setRenderBounds( renderMin, renderMin, renderMin, renderMax, renderMax, renderMax );
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renderer.renderStandardBlock( block, x, y, z );
}
else if ( tqb.isCorner() )
{
// renderCableAt(0.11D, world, x, y, z, block, modelId,
// renderer,
// AppEngTextureRegistry.Blocks.MECable.get(), true, 0.0D);
AEColoredItemDefinition coveredCableDefinition = AEApi.instance().parts().partCableCovered;
Item transparentCoveredCable = coveredCableDefinition.item( AEColor.Transparent );
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renderCableAt( 0.188D, world, x, y, z, block, renderer, transparentCoveredCable.getIconIndex( coveredCableDefinition.stack( AEColor.Transparent, 1 ) ), 0.05D,
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tqb.getConnections() );
float renderMin = 4.0f / 16.0f;
float renderMax = 12.0f / 16.0f;
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renderer.setRenderBounds( renderMin, renderMin, renderMin, renderMax, renderMax, renderMax );
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renderer.renderStandardBlock( block, x, y, z );
if ( tqb.isPowered() )
{
renderMin = 3.9f / 16.0f;
renderMax = 12.1f / 16.0f;
renderer.setRenderBounds( renderMin, renderMin, renderMin, renderMax, renderMax, renderMax );
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int bn = 15;
Tessellator.instance.setColorOpaque_F( 1.0F, 1.0F, 1.0F );
Tessellator.instance.setBrightness( bn << 20 | bn << 4 );
for (ForgeDirection side : ForgeDirection.VALID_DIRECTIONS)
renderFace( x, y, z, block, ExtraBlockTextures.BlockQRingCornerLight.getIcon(), renderer, side );
}
}
else
{
float renderMin = 2.0f / 16.0f;
float renderMax = 14.0f / 16.0f;
renderer.setRenderBounds( 0, renderMin, renderMin, 1, renderMax, renderMax );
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renderer.renderStandardBlock( block, x, y, z );
renderer.setRenderBounds( renderMin, 0, renderMin, renderMax, 1, renderMax );
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renderer.renderStandardBlock( block, x, y, z );
renderer.setRenderBounds( renderMin, renderMin, 0, renderMax, renderMax, 1 );
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renderer.renderStandardBlock( block, x, y, z );
if ( tqb.isPowered() )
{
renderMin = -0.01f / 16.0f;
renderMax = 16.01f / 16.0f;
renderer.setRenderBounds( renderMin, renderMin, renderMin, renderMax, renderMax, renderMax );
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int bn = 15;
Tessellator.instance.setColorOpaque_F( 1.0F, 1.0F, 1.0F );
Tessellator.instance.setBrightness( bn << 20 | bn << 4 );
for (ForgeDirection side : ForgeDirection.VALID_DIRECTIONS)
renderFace( x, y, z, block, ExtraBlockTextures.BlockQRingEdgeLight.getIcon(), renderer, side );
}
}
}
renderer.renderAllFaces = false;
return true;
}
}