package mods.eln.sixnode.electricalalarm;
import mods.eln.Eln;
import mods.eln.i18n.I18N;
import mods.eln.misc.Direction;
import mods.eln.misc.LRDU;
import mods.eln.misc.Utils;
import mods.eln.node.NodeBase;
import mods.eln.node.six.SixNode;
import mods.eln.node.six.SixNodeDescriptor;
import mods.eln.node.six.SixNodeElement;
import mods.eln.sim.ElectricalLoad;
import mods.eln.sim.ThermalLoad;
import mods.eln.sim.nbt.NbtElectricalGateInput;
import net.minecraft.entity.player.EntityPlayer;
import net.minecraft.item.ItemStack;
import net.minecraft.nbt.NBTTagCompound;
import java.io.DataInputStream;
import java.io.DataOutputStream;
import java.io.IOException;
import java.util.HashMap;
import java.util.Map;
public class ElectricalAlarmElement extends SixNodeElement {
ElectricalAlarmDescriptor descriptor;
public NbtElectricalGateInput inputGate = new NbtElectricalGateInput("inputGate");
public ElectricalAlarmSlowProcess slowProcess = new ElectricalAlarmSlowProcess(this);
boolean warm = false;
boolean mute = false;
public static final byte clientSoundToggle = 1;
public ElectricalAlarmElement(SixNode sixNode, Direction side, SixNodeDescriptor descriptor) {
super(sixNode, side, descriptor);
electricalLoadList.add(inputGate);
slowProcessList.add(slowProcess);
this.descriptor = (ElectricalAlarmDescriptor) descriptor;
}
public static boolean canBePlacedOnSide(Direction side, int type) {
return true;
}
@Override
public void readFromNBT(NBTTagCompound nbt) {
super.readFromNBT(nbt);
byte value = nbt.getByte("front");
front = LRDU.fromInt((value >> 0) & 0x3);
mute = nbt.getBoolean("mute");
}
@Override
public void writeToNBT(NBTTagCompound nbt) {
super.writeToNBT(nbt);
nbt.setByte("front", (byte) ((front.toInt() << 0)));
nbt.setBoolean("mute", mute);
}
@Override
public ElectricalLoad getElectricalLoad(LRDU lrdu) {
if (front == lrdu) return inputGate;
return null;
}
@Override
public ThermalLoad getThermalLoad(LRDU lrdu) {
return null;
}
@Override
public int getConnectionMask(LRDU lrdu) {
if (front == lrdu) return NodeBase.maskElectricalInputGate;
return 0;
}
@Override
public String multiMeterString() {
return Utils.plotVolt("U:", inputGate.getU()) + Utils.plotAmpere("I:", inputGate.getCurrent());
}
@Override
public Map<String, String> getWaila() {
Map<String, String> info = new HashMap<String, String>();
info.put(I18N.tr("Engaged"), inputGate.stateHigh() ? I18N.tr("Yes") : I18N.tr("No"));
if (Eln.wailaEasyMode) {
info.put(I18N.tr("Input Voltage"), Utils.plotVolt("", inputGate.getU()));
}
return info;
}
@Override
public String thermoMeterString() {
return "";
}
@Override
public void networkSerialize(DataOutputStream stream) {
super.networkSerialize(stream);
try {
stream.writeByte((front.toInt() << 4) + (warm ? 1 : 0));
stream.writeBoolean(mute);
} catch (IOException e) {
e.printStackTrace();
}
}
public void setWarm(boolean value) {
if (warm != value) {
warm = value;
sixNode.recalculateLightValue();
needPublish();
}
}
@Override
public void initialize() {
}
public int getLightValue() {
return warm ? descriptor.light : 0;
}
@Override
public boolean hasGui() {
return true;
}
@Override
public void networkUnserialize(DataInputStream stream) {
super.networkUnserialize(stream);
try {
switch (stream.readByte()) {
case clientSoundToggle:
mute = !mute;
needPublish();
break;
}
} catch (IOException e) {
e.printStackTrace();
}
}
}