Fixes #675 No disabled feature should log spam or crash anymore.

Deprecates the old usage of the AEItemDefinitions via the direct method access of

* blocks()
* parts()
* items()
* materials()

and thus use the new re-direct via definitions().

All definitions are now initialized, no matter what. But SubItems, Items and Blocks are not registered, if by chance are disabled.
This commit is contained in:
thatsIch
2015-01-03 02:53:14 +01:00
parent 3dd81433ac
commit 9986ffc458
385 changed files with 12477 additions and 8292 deletions
@@ -18,6 +18,7 @@
package appeng.parts.networking;
import java.util.EnumSet;
import org.lwjgl.opengl.GL11;
@@ -50,10 +51,19 @@ import appeng.client.texture.CableBusTextures;
import appeng.client.texture.FlippableIcon;
import appeng.client.texture.OffsetIcon;
import appeng.client.texture.TaughtIcon;
import appeng.helpers.Reflected;
import appeng.util.Platform;
public class PartDenseCable extends PartCable
{
@Reflected
public PartDenseCable( ItemStack is )
{
super( is );
this.proxy.setFlags( GridFlags.DENSE_CAPACITY, GridFlags.PREFERRED );
}
@Override
public BusSupport supportsBuses()
@@ -61,25 +71,15 @@ public class PartDenseCable extends PartCable
return BusSupport.DENSE_CABLE;
}
@MENetworkEventSubscribe
public void channelUpdated(MENetworkChannelsChanged c)
@Override
public IIcon getTexture( AEColor c )
{
this.getHost().markForUpdate();
}
if ( c == AEColor.Transparent )
{
return AEApi.instance().definitions().parts().cableSmart().stack( AEColor.Transparent, 1 ).getIconIndex();
}
@MENetworkEventSubscribe
public void powerRender(MENetworkPowerStatusChange c)
{
this.getHost().markForUpdate();
}
public PartDenseCable(Class c, ItemStack is) {
super( c, is );
this.proxy.setFlags( GridFlags.DENSE_CAPACITY, GridFlags.PREFERRED );
}
public PartDenseCable(ItemStack is) {
this( PartDenseCable.class, is );
return this.getSmartTexture( c );
}
@Override
@@ -89,64 +89,7 @@ public class PartDenseCable extends PartCable
}
@Override
public IIcon getTexture(AEColor c)
{
if ( c == AEColor.Transparent )
return AEApi.instance().parts().partCableSmart.stack( AEColor.Transparent, 1 ).getIconIndex();
return this.getSmartTexture( c );
}
@Override
@SideOnly(Side.CLIENT)
public void renderInventory(IPartRenderHelper rh, RenderBlocks renderer)
{
GL11.glTranslated( -0.0, -0.0, 0.3 );
rh.setBounds( 4.0f, 4.0f, 2.0f, 12.0f, 12.0f, 14.0f );
float offU = 0;
float offV = 9;
OffsetIcon main = new OffsetIcon( this.getTexture( this.getCableColor() ), offU, offV );
OffsetIcon ch1 = new OffsetIcon( this.getChannelTex( 4, false ).getIcon(), offU, offV );
OffsetIcon ch2 = new OffsetIcon( this.getChannelTex( 4, true ).getIcon(), offU, offV );
for (ForgeDirection side : EnumSet.of( ForgeDirection.UP, ForgeDirection.DOWN ))
{
rh.renderInventoryFace( main, side, renderer );
rh.renderInventoryFace( ch1, side, renderer );
rh.renderInventoryFace( ch2, side, renderer );
}
offU = 9;
offV = 0;
main = new OffsetIcon( this.getTexture( this.getCableColor() ), offU, offV );
ch1 = new OffsetIcon( this.getChannelTex( 4, false ).getIcon(), offU, offV );
ch2 = new OffsetIcon( this.getChannelTex( 4, true ).getIcon(), offU, offV );
for (ForgeDirection side : EnumSet.of( ForgeDirection.EAST, ForgeDirection.WEST ))
{
rh.renderInventoryFace( main, side, renderer );
rh.renderInventoryFace( ch1, side, renderer );
rh.renderInventoryFace( ch2, side, renderer );
}
main = new OffsetIcon( this.getTexture( this.getCableColor() ), 0, 0 );
ch1 = new OffsetIcon( this.getChannelTex( 4, false ).getIcon(), 0, 0 );
ch2 = new OffsetIcon( this.getChannelTex( 4, true ).getIcon(), 0, 0 );
for (ForgeDirection side : EnumSet.of( ForgeDirection.SOUTH, ForgeDirection.NORTH ))
{
rh.renderInventoryFace( main, side, renderer );
rh.renderInventoryFace( ch1, side, renderer );
rh.renderInventoryFace( ch2, side, renderer );
}
rh.setTexture( null );
}
@Override
public void getBoxes(IPartCollisionHelper bch)
public void getBoxes( IPartCollisionHelper bch )
{
boolean noLadder = !bch.isBBCollision();
double min = noLadder ? 3.0 : 4.9;
@@ -163,85 +106,249 @@ public class PartDenseCable extends PartCable
this.connections.clear();
}
for (ForgeDirection of : this.connections)
for ( ForgeDirection of : this.connections )
{
if ( this.isDense( of ) )
{
switch (of)
switch ( of )
{
case DOWN:
bch.addBox( min, 0.0, min, max, min, max );
break;
case EAST:
bch.addBox( max, min, min, 16.0, max, max );
break;
case NORTH:
bch.addBox( min, min, 0.0, max, max, min );
break;
case SOUTH:
bch.addBox( min, min, max, max, max, 16.0 );
break;
case UP:
bch.addBox( min, max, min, max, 16.0, max );
break;
case WEST:
bch.addBox( 0.0, min, min, min, max, max );
break;
default:
case DOWN:
bch.addBox( min, 0.0, min, max, min, max );
break;
case EAST:
bch.addBox( max, min, min, 16.0, max, max );
break;
case NORTH:
bch.addBox( min, min, 0.0, max, max, min );
break;
case SOUTH:
bch.addBox( min, min, max, max, max, 16.0 );
break;
case UP:
bch.addBox( min, max, min, max, 16.0, max );
break;
case WEST:
bch.addBox( 0.0, min, min, min, max, max );
break;
default:
}
}
else
{
switch (of)
switch ( of )
{
case DOWN:
bch.addBox( 5.0, 0.0, 5.0, 11.0, 5.0, 11.0 );
break;
case EAST:
bch.addBox( 11.0, 5.0, 5.0, 16.0, 11.0, 11.0 );
break;
case NORTH:
bch.addBox( 5.0, 5.0, 0.0, 11.0, 11.0, 5.0 );
break;
case SOUTH:
bch.addBox( 5.0, 5.0, 11.0, 11.0, 11.0, 16.0 );
break;
case UP:
bch.addBox( 5.0, 11.0, 5.0, 11.0, 16.0, 11.0 );
break;
case WEST:
bch.addBox( 0.0, 5.0, 5.0, 5.0, 11.0, 11.0 );
break;
default:
case DOWN:
bch.addBox( 5.0, 0.0, 5.0, 11.0, 5.0, 11.0 );
break;
case EAST:
bch.addBox( 11.0, 5.0, 5.0, 16.0, 11.0, 11.0 );
break;
case NORTH:
bch.addBox( 5.0, 5.0, 0.0, 11.0, 11.0, 5.0 );
break;
case SOUTH:
bch.addBox( 5.0, 5.0, 11.0, 11.0, 11.0, 16.0 );
break;
case UP:
bch.addBox( 5.0, 11.0, 5.0, 11.0, 16.0, 11.0 );
break;
case WEST:
bch.addBox( 0.0, 5.0, 5.0, 5.0, 11.0, 11.0 );
break;
default:
}
}
}
}
private boolean isDense(ForgeDirection of)
@Override
@SideOnly( Side.CLIENT )
public void renderInventory( IPartRenderHelper rh, RenderBlocks renderer )
{
TileEntity te = this.tile.getWorldObj().getTileEntity( this.tile.xCoord + of.offsetX, this.tile.yCoord + of.offsetY, this.tile.zCoord + of.offsetZ );
if ( te instanceof IGridHost )
GL11.glTranslated( -0.0, -0.0, 0.3 );
rh.setBounds( 4.0f, 4.0f, 2.0f, 12.0f, 12.0f, 14.0f );
float offU = 0;
float offV = 9;
OffsetIcon main = new OffsetIcon( this.getTexture( this.getCableColor() ), offU, offV );
OffsetIcon ch1 = new OffsetIcon( this.getChannelTex( 4, false ).getIcon(), offU, offV );
OffsetIcon ch2 = new OffsetIcon( this.getChannelTex( 4, true ).getIcon(), offU, offV );
for ( ForgeDirection side : EnumSet.of( ForgeDirection.UP, ForgeDirection.DOWN ) )
{
AECableType t = ((IGridHost) te).getCableConnectionType( of.getOpposite() );
return t == AECableType.DENSE;
rh.renderInventoryFace( main, side, renderer );
rh.renderInventoryFace( ch1, side, renderer );
rh.renderInventoryFace( ch2, side, renderer );
}
return false;
offU = 9;
offV = 0;
main = new OffsetIcon( this.getTexture( this.getCableColor() ), offU, offV );
ch1 = new OffsetIcon( this.getChannelTex( 4, false ).getIcon(), offU, offV );
ch2 = new OffsetIcon( this.getChannelTex( 4, true ).getIcon(), offU, offV );
for ( ForgeDirection side : EnumSet.of( ForgeDirection.EAST, ForgeDirection.WEST ) )
{
rh.renderInventoryFace( main, side, renderer );
rh.renderInventoryFace( ch1, side, renderer );
rh.renderInventoryFace( ch2, side, renderer );
}
main = new OffsetIcon( this.getTexture( this.getCableColor() ), 0, 0 );
ch1 = new OffsetIcon( this.getChannelTex( 4, false ).getIcon(), 0, 0 );
ch2 = new OffsetIcon( this.getChannelTex( 4, true ).getIcon(), 0, 0 );
for ( ForgeDirection side : EnumSet.of( ForgeDirection.SOUTH, ForgeDirection.NORTH ) )
{
rh.renderInventoryFace( main, side, renderer );
rh.renderInventoryFace( ch1, side, renderer );
rh.renderInventoryFace( ch2, side, renderer );
}
rh.setTexture( null );
}
private boolean isSmart(ForgeDirection of)
@Override
@SideOnly( Side.CLIENT )
public void renderStatic( int x, int y, int z, IPartRenderHelper rh, RenderBlocks renderer )
{
TileEntity te = this.tile.getWorldObj().getTileEntity( this.tile.xCoord + of.offsetX, this.tile.yCoord + of.offsetY, this.tile.zCoord + of.offsetZ );
if ( te instanceof IGridHost )
this.renderCache = rh.useSimplifiedRendering( x, y, z, this, this.renderCache );
rh.setTexture( this.getTexture( this.getCableColor() ) );
EnumSet<ForgeDirection> sides = this.connections.clone();
boolean hasBuses = false;
for ( ForgeDirection of : this.connections )
{
AECableType t = ((IGridHost) te).getCableConnectionType( of.getOpposite() );
return t == AECableType.SMART;
if ( !this.isDense( of ) )
hasBuses = true;
}
return false;
if ( sides.size() != 2 || !this.nonLinear( sides ) || hasBuses )
{
for ( ForgeDirection of : this.connections )
{
if ( this.isDense( of ) )
this.renderDenseConnection( x, y, z, rh, renderer, this.channelsOnSide[of.ordinal()], of );
else if ( this.isSmart( of ) )
this.renderSmartConnection( x, y, z, rh, renderer, this.channelsOnSide[of.ordinal()], of );
else
this.renderCoveredConnection( x, y, z, rh, renderer, this.channelsOnSide[of.ordinal()], of );
}
rh.setTexture( this.getDenseTexture( this.getCableColor() ) );
rh.setBounds( 3, 3, 3, 13, 13, 13 );
rh.renderBlock( x, y, z, renderer );
}
else
{
ForgeDirection selectedSide = ForgeDirection.UNKNOWN;
for ( ForgeDirection of : this.connections )
{
selectedSide = of;
break;
}
int channels = this.channelsOnSide[selectedSide.ordinal()];
IIcon def = this.getTexture( this.getCableColor() );
IIcon off = new OffsetIcon( def, 0, -12 );
IIcon firstIcon = new TaughtIcon( this.getChannelTex( channels, false ).getIcon(), -0.2f );
IIcon firstOffset = new OffsetIcon( firstIcon, 0, -12 );
IIcon secondIcon = new TaughtIcon( this.getChannelTex( channels, true ).getIcon(), -0.2f );
IIcon secondOffset = new OffsetIcon( secondIcon, 0, -12 );
switch ( selectedSide )
{
case DOWN:
case UP:
renderer.setRenderBounds( 3 / 16.0, 0, 3 / 16.0, 13 / 16.0, 16 / 16.0, 13 / 16.0 );
rh.setTexture( def, def, off, off, off, off );
rh.renderBlockCurrentBounds( x, y, z, renderer );
renderer.uvRotateTop = 0;
renderer.uvRotateBottom = 0;
renderer.uvRotateSouth = 3;
renderer.uvRotateEast = 3;
Tessellator.instance.setBrightness( 15 << 20 | 15 << 4 );
Tessellator.instance.setColorOpaque_I( this.getCableColor().blackVariant );
rh.setTexture( firstIcon, firstIcon, firstOffset, firstOffset, firstOffset, firstOffset );
this.renderAllFaces( (AEBaseBlock) rh.getBlock(), x, y, z, rh, renderer );
Tessellator.instance.setColorOpaque_I( this.getCableColor().whiteVariant );
rh.setTexture( secondIcon, secondIcon, secondOffset, secondOffset, secondOffset, secondOffset );
this.renderAllFaces( (AEBaseBlock) rh.getBlock(), x, y, z, rh, renderer );
break;
case EAST:
case WEST:
rh.setTexture( off, off, off, off, def, def );
renderer.uvRotateEast = 2;
renderer.uvRotateWest = 1;
renderer.uvRotateBottom = 2;
renderer.uvRotateTop = 1;
renderer.uvRotateSouth = 0;
renderer.uvRotateNorth = 0;
AEBaseBlock blk = (AEBaseBlock) rh.getBlock();
FlippableIcon ico = blk.getRendererInstance().getTexture( ForgeDirection.EAST );
ico.setFlip( false, true );
renderer.setRenderBounds( 0, 3 / 16.0, 3 / 16.0, 16 / 16.0, 13 / 16.0, 13 / 16.0 );
rh.renderBlockCurrentBounds( x, y, z, renderer );
Tessellator.instance.setBrightness( 15 << 20 | 15 << 4 );
FlippableIcon fpA = new FlippableIcon( firstIcon );
FlippableIcon fpB = new FlippableIcon( secondIcon );
fpA.setFlip( true, false );
fpB.setFlip( true, false );
Tessellator.instance.setColorOpaque_I( this.getCableColor().blackVariant );
rh.setTexture( firstOffset, firstOffset, firstOffset, firstOffset, firstIcon, fpA );
this.renderAllFaces( (AEBaseBlock) rh.getBlock(), x, y, z, rh, renderer );
Tessellator.instance.setColorOpaque_I( this.getCableColor().whiteVariant );
rh.setTexture( secondOffset, secondOffset, secondOffset, secondOffset, secondIcon, fpB );
this.renderAllFaces( (AEBaseBlock) rh.getBlock(), x, y, z, rh, renderer );
break;
case NORTH:
case SOUTH:
rh.setTexture( off, off, def, def, off, off );
renderer.uvRotateTop = 3;
renderer.uvRotateBottom = 3;
renderer.uvRotateNorth = 1;
renderer.uvRotateSouth = 2;
renderer.uvRotateWest = 1;
renderer.setRenderBounds( 3 / 16.0, 3 / 16.0, 0, 13 / 16.0, 13 / 16.0, 16 / 16.0 );
rh.renderBlockCurrentBounds( x, y, z, renderer );
Tessellator.instance.setBrightness( 15 << 20 | 15 << 4 );
Tessellator.instance.setColorOpaque_I( this.getCableColor().blackVariant );
rh.setTexture( firstOffset, firstOffset, firstIcon, firstIcon, firstOffset, firstOffset );
this.renderAllFaces( (AEBaseBlock) rh.getBlock(), x, y, z, rh, renderer );
Tessellator.instance.setColorOpaque_I( this.getCableColor().whiteVariant );
rh.setTexture( secondOffset, secondOffset, secondIcon, secondIcon, secondOffset, secondOffset );
this.renderAllFaces( (AEBaseBlock) rh.getBlock(), x, y, z, rh, renderer );
break;
default:
break;
}
}
renderer.uvRotateBottom = renderer.uvRotateEast = renderer.uvRotateNorth = renderer.uvRotateSouth = renderer.uvRotateTop = renderer.uvRotateWest = 0;
rh.setTexture( null );
}
@SideOnly(Side.CLIENT)
public void renderDenseConnection(int x, int y, int z, IPartRenderHelper rh, RenderBlocks renderer, int channels, ForgeDirection of)
@SideOnly( Side.CLIENT )
public void renderDenseConnection( int x, int y, int z, IPartRenderHelper rh, RenderBlocks renderer, int channels, ForgeDirection of )
{
TileEntity te = this.tile.getWorldObj().getTileEntity( x + of.offsetX, y + of.offsetY, z + of.offsetZ );
IPartHost partHost = te instanceof IPartHost ? (IPartHost) te : null;
@@ -280,34 +387,33 @@ public class PartDenseCable extends PartCable
*/
rh.setFacesToRender( EnumSet.complementOf( EnumSet.of( of, of.getOpposite() ) ) );
if ( ghh != null && partHost != null && ghh.getCableConnectionType( of ) != AECableType.GLASS && partHost.getColor() != AEColor.Transparent
&& partHost.getPart( of.getOpposite() ) == null )
if ( ghh != null && partHost != null && ghh.getCableConnectionType( of ) != AECableType.GLASS && partHost.getColor() != AEColor.Transparent && partHost.getPart( of.getOpposite() ) == null )
rh.setTexture( this.getTexture( myColor = partHost.getColor() ) );
else
rh.setTexture( this.getTexture( this.getCableColor() ) );
switch (of)
switch ( of )
{
case DOWN:
rh.setBounds( 4, 0, 4, 12, 5, 12 );
break;
case EAST:
rh.setBounds( 11, 4, 4, 16, 12, 12 );
break;
case NORTH:
rh.setBounds( 4, 4, 0, 12, 12, 5 );
break;
case SOUTH:
rh.setBounds( 4, 4, 11, 12, 12, 16 );
break;
case UP:
rh.setBounds( 4, 11, 4, 12, 16, 12 );
break;
case WEST:
rh.setBounds( 0, 4, 4, 5, 12, 12 );
break;
default:
return;
case DOWN:
rh.setBounds( 4, 0, 4, 12, 5, 12 );
break;
case EAST:
rh.setBounds( 11, 4, 4, 16, 12, 12 );
break;
case NORTH:
rh.setBounds( 4, 4, 0, 12, 12, 5 );
break;
case SOUTH:
rh.setBounds( 4, 4, 11, 12, 12, 16 );
break;
case UP:
rh.setBounds( 4, 11, 4, 12, 16, 12 );
break;
case WEST:
rh.setBounds( 0, 4, 4, 5, 12, 12 );
break;
default:
return;
}
rh.renderBlock( x, y, z, renderer );
@@ -333,183 +439,79 @@ public class PartDenseCable extends PartCable
}
}
@Override
@SideOnly(Side.CLIENT)
public void renderStatic(int x, int y, int z, IPartRenderHelper rh, RenderBlocks renderer)
private boolean isSmart( ForgeDirection of )
{
this.renderCache = rh.useSimplifiedRendering( x, y, z, this, this.renderCache );
rh.setTexture( this.getTexture( this.getCableColor() ) );
EnumSet<ForgeDirection> sides = this.connections.clone();
boolean hasBuses = false;
for (ForgeDirection of : this.connections)
TileEntity te = this.tile.getWorldObj().getTileEntity( this.tile.xCoord + of.offsetX, this.tile.yCoord + of.offsetY, this.tile.zCoord + of.offsetZ );
if ( te instanceof IGridHost )
{
if ( !this.isDense( of ) )
hasBuses = true;
AECableType t = ( (IGridHost) te ).getCableConnectionType( of.getOpposite() );
return t == AECableType.SMART;
}
if ( sides.size() != 2 || !this.nonLinear( sides ) || hasBuses )
{
for (ForgeDirection of : this.connections)
{
if ( this.isDense( of ) )
this.renderDenseConnection( x, y, z, rh, renderer, this.channelsOnSide[of.ordinal()], of );
else if ( this.isSmart( of ) )
this.renderSmartConnection( x, y, z, rh, renderer, this.channelsOnSide[of.ordinal()], of );
else
this.renderCoveredConnection( x, y, z, rh, renderer, this.channelsOnSide[of.ordinal()], of );
}
rh.setTexture( this.getDenseTexture( this.getCableColor() ) );
rh.setBounds( 3, 3, 3, 13, 13, 13 );
rh.renderBlock( x, y, z, renderer );
}
else
{
ForgeDirection selectedSide = ForgeDirection.UNKNOWN;
for (ForgeDirection of : this.connections)
{
selectedSide = of;
break;
}
int channels = this.channelsOnSide[selectedSide.ordinal()];
IIcon def = this.getTexture( this.getCableColor() );
IIcon off = new OffsetIcon( def, 0, -12 );
IIcon firstIcon = new TaughtIcon( this.getChannelTex( channels, false ).getIcon(), -0.2f );
IIcon firstOffset = new OffsetIcon( firstIcon, 0, -12 );
IIcon secondIcon = new TaughtIcon( this.getChannelTex( channels, true ).getIcon(), -0.2f );
IIcon secondOffset = new OffsetIcon( secondIcon, 0, -12 );
switch (selectedSide)
{
case DOWN:
case UP:
renderer.setRenderBounds( 3 / 16.0, 0, 3 / 16.0, 13 / 16.0, 16 / 16.0, 13 / 16.0 );
rh.setTexture( def, def, off, off, off, off );
rh.renderBlockCurrentBounds( x, y, z, renderer );
renderer.uvRotateTop = 0;
renderer.uvRotateBottom = 0;
renderer.uvRotateSouth = 3;
renderer.uvRotateEast = 3;
Tessellator.instance.setBrightness( 15 << 20 | 15 << 4 );
Tessellator.instance.setColorOpaque_I( this.getCableColor().blackVariant );
rh.setTexture( firstIcon, firstIcon, firstOffset, firstOffset, firstOffset, firstOffset );
this.renderAllFaces( (AEBaseBlock) rh.getBlock(), x, y, z, rh, renderer );
Tessellator.instance.setColorOpaque_I( this.getCableColor().whiteVariant );
rh.setTexture( secondIcon, secondIcon, secondOffset, secondOffset, secondOffset, secondOffset );
this.renderAllFaces( (AEBaseBlock) rh.getBlock(), x, y, z, rh, renderer );
break;
case EAST:
case WEST:
rh.setTexture( off, off, off, off, def, def );
renderer.uvRotateEast = 2;
renderer.uvRotateWest = 1;
renderer.uvRotateBottom = 2;
renderer.uvRotateTop = 1;
renderer.uvRotateSouth = 0;
renderer.uvRotateNorth = 0;
AEBaseBlock blk = (AEBaseBlock) rh.getBlock();
FlippableIcon ico = blk.getRendererInstance().getTexture( ForgeDirection.EAST );
ico.setFlip( false, true );
renderer.setRenderBounds( 0, 3 / 16.0, 3 / 16.0, 16 / 16.0, 13 / 16.0, 13 / 16.0 );
rh.renderBlockCurrentBounds( x, y, z, renderer );
Tessellator.instance.setBrightness( 15 << 20 | 15 << 4 );
FlippableIcon fpA = new FlippableIcon( firstIcon );
FlippableIcon fpB = new FlippableIcon( secondIcon );
fpA.setFlip( true, false );
fpB.setFlip( true, false );
Tessellator.instance.setColorOpaque_I( this.getCableColor().blackVariant );
rh.setTexture( firstOffset, firstOffset, firstOffset, firstOffset, firstIcon, fpA );
this.renderAllFaces( (AEBaseBlock) rh.getBlock(), x, y, z, rh, renderer );
Tessellator.instance.setColorOpaque_I( this.getCableColor().whiteVariant );
rh.setTexture( secondOffset, secondOffset, secondOffset, secondOffset, secondIcon, fpB );
this.renderAllFaces( (AEBaseBlock) rh.getBlock(), x, y, z, rh, renderer );
break;
case NORTH:
case SOUTH:
rh.setTexture( off, off, def, def, off, off );
renderer.uvRotateTop = 3;
renderer.uvRotateBottom = 3;
renderer.uvRotateNorth = 1;
renderer.uvRotateSouth = 2;
renderer.uvRotateWest = 1;
renderer.setRenderBounds( 3 / 16.0, 3 / 16.0, 0, 13 / 16.0, 13 / 16.0, 16 / 16.0 );
rh.renderBlockCurrentBounds( x, y, z, renderer );
Tessellator.instance.setBrightness( 15 << 20 | 15 << 4 );
Tessellator.instance.setColorOpaque_I( this.getCableColor().blackVariant );
rh.setTexture( firstOffset, firstOffset, firstIcon, firstIcon, firstOffset, firstOffset );
this.renderAllFaces( (AEBaseBlock) rh.getBlock(), x, y, z, rh, renderer );
Tessellator.instance.setColorOpaque_I( this.getCableColor().whiteVariant );
rh.setTexture( secondOffset, secondOffset, secondIcon, secondIcon, secondOffset, secondOffset );
this.renderAllFaces( (AEBaseBlock) rh.getBlock(), x, y, z, rh, renderer );
break;
default:
break;
}
}
renderer.uvRotateBottom = renderer.uvRotateEast = renderer.uvRotateNorth = renderer.uvRotateSouth = renderer.uvRotateTop = renderer.uvRotateWest = 0;
rh.setTexture( null );
return false;
}
private IIcon getDenseTexture(AEColor c)
private IIcon getDenseTexture( AEColor c )
{
switch (c)
switch ( c )
{
case Black:
return CableBusTextures.MEDense_Black.getIcon();
case Blue:
return CableBusTextures.MEDense_Blue.getIcon();
case Brown:
return CableBusTextures.MEDense_Brown.getIcon();
case Cyan:
return CableBusTextures.MEDense_Cyan.getIcon();
case Gray:
return CableBusTextures.MEDense_Gray.getIcon();
case Green:
return CableBusTextures.MEDense_Green.getIcon();
case LightBlue:
return CableBusTextures.MEDense_LightBlue.getIcon();
case LightGray:
return CableBusTextures.MEDense_LightGrey.getIcon();
case Lime:
return CableBusTextures.MEDense_Lime.getIcon();
case Magenta:
return CableBusTextures.MEDense_Magenta.getIcon();
case Orange:
return CableBusTextures.MEDense_Orange.getIcon();
case Pink:
return CableBusTextures.MEDense_Pink.getIcon();
case Purple:
return CableBusTextures.MEDense_Purple.getIcon();
case Red:
return CableBusTextures.MEDense_Red.getIcon();
case White:
return CableBusTextures.MEDense_White.getIcon();
case Yellow:
return CableBusTextures.MEDense_Yellow.getIcon();
default:
case Black:
return CableBusTextures.MEDense_Black.getIcon();
case Blue:
return CableBusTextures.MEDense_Blue.getIcon();
case Brown:
return CableBusTextures.MEDense_Brown.getIcon();
case Cyan:
return CableBusTextures.MEDense_Cyan.getIcon();
case Gray:
return CableBusTextures.MEDense_Gray.getIcon();
case Green:
return CableBusTextures.MEDense_Green.getIcon();
case LightBlue:
return CableBusTextures.MEDense_LightBlue.getIcon();
case LightGray:
return CableBusTextures.MEDense_LightGrey.getIcon();
case Lime:
return CableBusTextures.MEDense_Lime.getIcon();
case Magenta:
return CableBusTextures.MEDense_Magenta.getIcon();
case Orange:
return CableBusTextures.MEDense_Orange.getIcon();
case Pink:
return CableBusTextures.MEDense_Pink.getIcon();
case Purple:
return CableBusTextures.MEDense_Purple.getIcon();
case Red:
return CableBusTextures.MEDense_Red.getIcon();
case White:
return CableBusTextures.MEDense_White.getIcon();
case Yellow:
return CableBusTextures.MEDense_Yellow.getIcon();
default:
}
return this.is.getIconIndex();
}
private boolean isDense( ForgeDirection of )
{
TileEntity te = this.tile.getWorldObj().getTileEntity( this.tile.xCoord + of.offsetX, this.tile.yCoord + of.offsetY, this.tile.zCoord + of.offsetZ );
if ( te instanceof IGridHost )
{
AECableType t = ( (IGridHost) te ).getCableConnectionType( of.getOpposite() );
return t == AECableType.DENSE;
}
return false;
}
@MENetworkEventSubscribe
public void channelUpdated( MENetworkChannelsChanged c )
{
this.getHost().markForUpdate();
}
@MENetworkEventSubscribe
public void powerRender( MENetworkPowerStatusChange c )
{
this.getHost().markForUpdate();
}
}