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package miscutil.gregtech.common.tileentities.machines.multi;
import gregtech.api.GregTech_API;
import gregtech.api.enums.Textures;
import gregtech.api.gui.GT_GUIContainer_MultiMachine;
import gregtech.api.interfaces.ITexture;
import gregtech.api.interfaces.metatileentity.IMetaTileEntity;
import gregtech.api.interfaces.tileentity.IGregTechTileEntity;
import gregtech.api.metatileentity.implementations.GT_MetaTileEntity_MultiBlockBase;
import gregtech.api.objects.GT_RenderedTexture;
import gregtech.api.util.GT_Recipe;
import gregtech.api.util.GT_Utility;
import java.util.ArrayList;
import miscutil.core.util.Utils;
import net.minecraft.entity.player.InventoryPlayer;
import net.minecraft.item.ItemStack;
import net.minecraftforge.common.util.ForgeDirection;
public class GregtechMetaTileEntityIndustrialPlatePress
extends GT_MetaTileEntity_MultiBlockBase {
public GregtechMetaTileEntityIndustrialPlatePress(int aID, String aName, String aNameRegional) {
super(aID, aName, aNameRegional);
}
public GregtechMetaTileEntityIndustrialPlatePress(String aName) {
super(aName);
}
@Override
public IMetaTileEntity newMetaEntity(IGregTechTileEntity aTileEntity) {
return new GregtechMetaTileEntityIndustrialPlatePress(this.mName);
}
@Override
public String[] getDescription() {
return new String[]{"Controller Block for the Vacuum Freezer", "Size: 3x3x3 (Hollow)", "Controller (front centered)", "1x Input (anywhere)", "1x Output (anywhere)", "1x Energy Hatch (anywhere)", "1x Maintenance Hatch (anywhere)", "Frost Proof Casings for the rest (16 at least!)"};
}
@Override
public ITexture[] getTexture(IGregTechTileEntity aBaseMetaTileEntity, byte aSide, byte aFacing, byte aColorIndex, boolean aActive, boolean aRedstone) {
if (aSide == aFacing) {
return new ITexture[]{Textures.BlockIcons.CASING_BLOCKS[17], new GT_RenderedTexture(aActive ? Textures.BlockIcons.OVERLAY_FRONT_VACUUM_FREEZER_ACTIVE : Textures.BlockIcons.OVERLAY_FRONT_VACUUM_FREEZER)};
}
return new ITexture[]{Textures.BlockIcons.CASING_BLOCKS[17]};
}
@Override
public Object getClientGUI(int aID, InventoryPlayer aPlayerInventory, IGregTechTileEntity aBaseMetaTileEntity) {
return new GT_GUIContainer_MultiMachine(aPlayerInventory, aBaseMetaTileEntity, getLocalName(), "VacuumFreezer.png");
}
@Override
public GT_Recipe.GT_Recipe_Map getRecipeMap() {
return GT_Recipe.GT_Recipe_Map.sBenderRecipes;
}
@Override
public boolean isCorrectMachinePart(ItemStack aStack) {
return true;
}
@Override
public boolean isFacingValid(byte aFacing) {
return aFacing > 1;
}
@Override
public boolean checkRecipe(ItemStack aStack) {
ArrayList<ItemStack> tInputList = getStoredInputs();
for (ItemStack tInput : tInputList) {
long tVoltage = getMaxInputVoltage();
byte tTier = (byte) Math.max(1, GT_Utility.getTier(tVoltage));
GT_Recipe tRecipe = GT_Recipe.GT_Recipe_Map.sVacuumRecipes.findRecipe(getBaseMetaTileEntity(), false, gregtech.api.enums.GT_Values.V[tTier], null, new ItemStack[]{tInput});
if (tRecipe != null) {
if (tRecipe.isRecipeInputEqual(true, null, new ItemStack[]{tInput})) {
this.mEfficiency = (10000 - (getIdealStatus() - getRepairStatus()) * 1000);
this.mEfficiencyIncrease = 10000;
if (tRecipe.mEUt <= 16) {
this.mEUt = (tRecipe.mEUt * (1 << tTier - 1) * (1 << tTier - 1));
this.mMaxProgresstime = (tRecipe.mDuration / (1 << tTier - 1));
} else {
this.mEUt = tRecipe.mEUt;
this.mMaxProgresstime = tRecipe.mDuration;
while (this.mEUt <= gregtech.api.enums.GT_Values.V[(tTier - 1)]) {
this.mEUt *= 4;
this.mMaxProgresstime /= 2;
}
}
if (this.mEUt > 0) {
this.mEUt = (-this.mEUt);
}
this.mMaxProgresstime = Math.max(1, this.mMaxProgresstime);
this.mOutputItems = new ItemStack[]{tRecipe.getOutput(0)};
updateSlots();
return true;
}
}
}
return false;
}
/*public boolean checkMachine(IGregTechTileEntity aBaseMetaTileEntity, ItemStack aStack) {
int xDir = ForgeDirection.getOrientation(aBaseMetaTileEntity.getBackFacing()).offsetX;
int zDir = ForgeDirection.getOrientation(aBaseMetaTileEntity.getBackFacing()).offsetZ;
if (!aBaseMetaTileEntity.getAirOffset(xDir, 0, zDir)) {
return false;
}
int stepX = 0;
int stepY = 0;
int stepZ = 0;
int tAmount = 0;
for (int i = -1; i < 2; i++) {
stepX=+i;
for (int j = -1; j < 2; j++) {
stepZ=+j;
for (int h = -1; h < 2; h++) {
stepY=+h;
Utils.LOG_INFO("X:"+stepX);
Utils.LOG_INFO("Y:"+stepY);
Utils.LOG_INFO("Z:"+stepZ);
Utils.LOG_INFO("Block Facing - X:"+xDir+" Z:"+zDir);
Utils.LOG_INFO("(h != 0) || (((xDir + i != 0) || (zDir + j != 0)) && ((i != 0) || (j != 0)))");
Utils.LOG_INFO(" "+(h != 0)+" || "+(((xDir + i != 0)+" || "+(zDir + j != 0))+" && "+((i != 0)+" || "+(j != 0))));
try {
IGregTechTileEntity tTileEntity = aBaseMetaTileEntity.getIGregTechTileEntityOffset(xDir + i, h, zDir + j);
Utils.LOG_INFO("IPP - RESULT - ? - ["+tTileEntity.getXCoord()+"] y ["+tTileEntity.getYCoord()+"] z ["+tTileEntity.getZCoord()+"] || i ["+i+"] j ["+j+"] h ["+h+"]");
} catch(Throwable t){Utils.LOG_INFO("Bad move");
}
if ((h != 0) || (((xDir + i != 0) || (zDir + j != 0)) && ((i != 0) || (j != 0)))) {
IGregTechTileEntity tTileEntity = aBaseMetaTileEntity.getIGregTechTileEntityOffset(xDir + i, h, zDir + j);
if ((!addMaintenanceToMachineList(tTileEntity, 17)) && (!addInputToMachineList(tTileEntity, 17)) && (!addOutputToMachineList(tTileEntity, 17)) && (!addEnergyInputToMachineList(tTileEntity, 17))) {
if (aBaseMetaTileEntity.getBlockOffset(xDir + i, h, zDir + j) != GregTech_API.sBlockCasings2) {
return false;
}
if (aBaseMetaTileEntity.getMetaIDOffset(xDir + i, h, zDir + j) != 1) {
return false;
}
tAmount++;
}
}
}
}
}
return tAmount >= 16;
}*/
@Override
public boolean checkMachine(IGregTechTileEntity aBaseMetaTileEntity, ItemStack aStack) {
int xDir = ForgeDirection.getOrientation(aBaseMetaTileEntity.getBackFacing()).offsetX;
int zDir = ForgeDirection.getOrientation(aBaseMetaTileEntity.getBackFacing()).offsetZ;
if (!aBaseMetaTileEntity.getAirOffset(xDir, 0, zDir)) {
return false;
}
int stepX = aBaseMetaTileEntity.getXCoord();
int stepY = aBaseMetaTileEntity.getYCoord();
int stepZ = aBaseMetaTileEntity.getZCoord();
int temp = 0;
Utils.LOG_INFO("Starting Block located @ "+"[X:"+stepX+"][Y:"+stepY+"][Z:"+stepZ+"]");
int tAmount = 0;
switch (xDir) {
case -1:
stepX++;
Utils.LOG_INFO("Modifying stepX + accomodate a "+xDir+" xDir - [X:"+stepX+"][Y:"+stepY+"][Z:"+stepZ+"]");
break;
case 1:
stepX--;
Utils.LOG_INFO("Modifying stepX - accomodate a "+xDir+" xDir - [X:"+stepX+"][Y:"+stepY+"][Z:"+stepZ+"]");
break;
}
switch (zDir) {
case -1:
stepZ++;
Utils.LOG_INFO("Modifying stepZ + accomodate a "+zDir+" zDir - [X:"+stepX+"][Y:"+stepY+"][Z:"+stepZ+"]");
break;
case 1:
stepZ--;
Utils.LOG_INFO("Modifying stepZ - accomodate a "+zDir+" zDir - [X:"+stepX+"][Y:"+stepY+"][Z:"+stepZ+"]");
break;
}
for (int i = stepX-1; i <= stepX+1; i++){
for (int j = stepZ-1; j <= stepZ+1; j++){
for (int h = stepY-1; h <= stepY+1; h++){
Utils.LOG_INFO("Block Facing - X:"+xDir+" Z:"+zDir);
Utils.LOG_INFO("(h != 0) || (((xDir + i != 0) || (zDir + j != 0)) && ((i != 0) || (j != 0)))");
Utils.LOG_INFO(" "+(h != 0)+" || "+(((xDir + i != 0)+" || "+(zDir + j != 0))+" && "+((i != 0)+" || "+(j != 0))));
try {
IGregTechTileEntity tTileEntity = aBaseMetaTileEntity.getIGregTechTileEntityOffset(xDir + i, h, zDir + j);
Utils.LOG_INFO("IPP - RESULT - ? - ["+tTileEntity.getXCoord()+"] y ["+tTileEntity.getYCoord()+"] z ["+tTileEntity.getZCoord()+"] || i ["+i+"] j ["+j+"] h ["+h+"]");
} catch(Throwable t){Utils.LOG_INFO("Checking Non-Hatch/Bus Block/Casing");
}
if ((h != 0) || (((xDir + i != 0) || (zDir + j != 0)) && ((i != 0) || (j != 0)))) {
IGregTechTileEntity tTileEntity = aBaseMetaTileEntity.getIGregTechTileEntityOffset(xDir + i, h, zDir + j);
if ((!addMaintenanceToMachineList(tTileEntity, 17)) && (!addInputToMachineList(tTileEntity, 17)) && (!addOutputToMachineList(tTileEntity, 17)) && (!addEnergyInputToMachineList(tTileEntity, 17))) {
if (aBaseMetaTileEntity.getBlockOffset(xDir + i, h, zDir + j) != GregTech_API.sBlockCasings2) {
return false;
}
if (aBaseMetaTileEntity.getMetaIDOffset(xDir + i, h, zDir + j) != 1) {
return false;
}
tAmount++;
}
}
}
}
}
return tAmount >= 16;
}
@Override
public int getMaxEfficiency(ItemStack aStack) {
return 10000;
}
@Override
public int getPollutionPerTick(ItemStack aStack) {
return 0;
}
@Override
public int getDamageToComponent(ItemStack aStack) {
return 0;
}
@Override
public int getAmountOfOutputs() {
return 1;
}
@Override
public boolean explodesOnComponentBreak(ItemStack aStack) {
return false;
}
}
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