Files
Applied-Energistics-2/src/main/java/appeng/block/AEBaseItemBlockChargeable.java
T
2022-09-17 08:08:02 -03:00

137 lines
4.7 KiB
Java

/*
* 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>.
*/
package appeng.block;
import appeng.api.config.AccessRestriction;
import appeng.api.config.Actionable;
import appeng.api.config.PowerUnits;
import appeng.api.definitions.IBlockDefinition;
import appeng.api.implementations.items.IAEItemPowerStorage;
import appeng.core.Api;
import appeng.core.localization.GuiText;
import appeng.util.Platform;
import net.minecraft.block.Block;
import net.minecraft.client.util.ITooltipFlag;
import net.minecraft.item.ItemStack;
import net.minecraft.nbt.NBTTagCompound;
import net.minecraft.world.World;
import net.minecraftforge.fml.relauncher.Side;
import net.minecraftforge.fml.relauncher.SideOnly;
import java.text.MessageFormat;
import java.util.List;
public class AEBaseItemBlockChargeable extends AEBaseItemBlock implements IAEItemPowerStorage {
public AEBaseItemBlockChargeable(final Block id) {
super(id);
}
@Override
@SideOnly(Side.CLIENT)
public void addCheckedInformation(final ItemStack stack, final World world, final List<String> lines, final ITooltipFlag advancedTooltips) {
final NBTTagCompound tag = stack.getTagCompound();
double internalCurrentPower = 0;
final double internalMaxPower = this.getMaxEnergyCapacity();
if (internalMaxPower > 0) {
if (tag != null) {
internalCurrentPower = tag.getDouble("internalCurrentPower");
}
final double percent = internalCurrentPower / internalMaxPower;
lines.add(GuiText.StoredEnergy.getLocal() + ':' + MessageFormat.format(" {0,number,#} ", internalCurrentPower) + Platform
.gui_localize(PowerUnits.AE.unlocalizedName) + " - " + MessageFormat.format(" {0,number,#.##%} ", percent));
}
}
@Override
public double injectAEPower(final ItemStack is, double amount, Actionable mode) {
final double internalCurrentPower = this.getInternal(is);
final double internalMaxPower = this.getAEMaxPower(is);
final double required = internalMaxPower - internalCurrentPower;
final double overflow = Math.max(0, amount - required);
if (mode == Actionable.MODULATE) {
final double toAdd = Math.min(required, amount);
final double newPowerStored = internalCurrentPower + toAdd;
this.setInternal(is, newPowerStored);
}
return overflow;
}
@Override
public double extractAEPower(final ItemStack is, double amount, Actionable mode) {
final double internalCurrentPower = this.getInternal(is);
final double fulfillable = Math.min(amount, internalCurrentPower);
if (mode == Actionable.MODULATE) {
final double newPowerStored = internalCurrentPower - fulfillable;
this.setInternal(is, newPowerStored);
}
return fulfillable;
}
@Override
public double getAEMaxPower(final ItemStack is) {
return this.getMaxEnergyCapacity();
}
@Override
public double getAECurrentPower(final ItemStack is) {
return this.getInternal(is);
}
@Override
public AccessRestriction getPowerFlow(final ItemStack is) {
return AccessRestriction.WRITE;
}
private double getMaxEnergyCapacity() {
final Block blockID = Block.getBlockFromItem(this);
final IBlockDefinition energyCell = Api.INSTANCE.definitions().blocks().energyCell();
return energyCell.maybeBlock().map(block ->
{
if (blockID == block) {
return 200000;
} else {
return 8 * 200000;
}
}).orElse(0);
}
private double getInternal(final ItemStack is) {
final NBTTagCompound nbt = Platform.openNbtData(is);
return nbt.getDouble("internalCurrentPower");
}
private void setInternal(final ItemStack is, final double amt) {
final NBTTagCompound nbt = Platform.openNbtData(is);
nbt.setDouble("internalCurrentPower", amt);
}
}