Files
tbd-station-14/Content.Shared/SensorMonitoring/SharedSensorMonitoringConsoleComponent.cs
Pieter-Jan Briers a242af506e Adds the thermo-electric generator (#18840)
* Basic TEG start.

Connects via node group.

* Basic TEG test map

* Sensor monitoring basics, TEG circulator flow

* Basic power generation (it doesn't work)

* More sensor monitoring work

* Battery (SMES) monitoring system.

* Sensor monitoring fixes

Make it work properly when mapped.

* Test map improvements

* Revise TEG power output mechanism.

Now uses a fixed supplier with a custom ramping system.

* TEG test map fixes

* Make air alarms and pumps open UI on activate.

* Clean up thermo machines power switch.

Removed separate Enabled bool from the component that always matched the power receiver's state.

This enables adding a PowerSwitch component to give us alt click/verb menu.

* TEG but now fancy

* Make sensor monitoring console obviously WiP to mappers.

* Vending machine sound, because of course.

* Terrible, terrible graph background color

* Examine improvements for the TEG.

* Account for electrical power when equalizing gas mixtures.

* Get rid of the TegCirculatorArrow logic.

Use TimedDespawn instead. The "no show in right-click menuu" goes into a new general-purpose component.

Thanks Julian.

* Put big notice of "not ready, here's why" on the sensor monitoring console.

* TryGetComponent -> TryComp

* Lol there's a HideContextMenu tag

* Test fixes

* Guidebook for TEG

Fixed rotation on GuideEntityEmbed not working correctly.

Added Margin property to GuideEntityEmbed

* Make TEG power bar default to invisible.

So it doesn't appear in the guidebook and spawn menu.
2023-08-12 15:41:55 -05:00

113 lines
2.7 KiB
C#

using Robust.Shared.Serialization;
using ConsoleUIState = Content.Shared.SensorMonitoring.SensorMonitoringConsoleBoundInterfaceState;
namespace Content.Shared.SensorMonitoring;
[Serializable, NetSerializable]
public sealed class SensorMonitoringConsoleBoundInterfaceState : BoundUserInterfaceState
{
public TimeSpan RetentionTime;
public SensorData[] Sensors = Array.Empty<SensorData>();
[Serializable, NetSerializable]
public sealed class SensorData
{
public int NetId;
public string Name = "";
public string Address = "";
public SensorDeviceType DeviceType;
public SensorStream[] Streams = Array.Empty<SensorStream>();
}
[Serializable, NetSerializable]
public sealed class SensorStream
{
public int NetId;
public string Name = "";
public SensorUnit Unit;
public SensorSample[] Samples = Array.Empty<SensorSample>();
}
}
[Serializable, NetSerializable]
public sealed class SensorMonitoringIncrementalUpdate : BoundUserInterfaceMessage
{
public TimeSpan RelTime;
public SensorData[] Sensors = Array.Empty<SensorData>();
public int[] RemovedSensors = Array.Empty<int>();
[Serializable, NetSerializable]
public sealed class SensorData
{
public int NetId;
public SensorStream[] Streams = Array.Empty<SensorStream>();
}
[Serializable, NetSerializable]
public sealed class SensorStream
{
public int NetId;
public SensorUnit Unit;
// Note: these samples have their time values relative to RelTime.
// This improves effectiveness of integer compression in NetSerializer.
public SensorSample[] Samples = Array.Empty<SensorSample>();
}
}
[Serializable, NetSerializable]
public enum SensorMonitoringConsoleUiKey
{
Key
}
[Serializable, NetSerializable]
public enum SensorUnit : byte
{
Undetermined = 0,
/// <summary>
/// A pressure value in kilopascals (kPa).
/// </summary>
PressureKpa,
/// <summary>
/// A temperature value in Kelvin (K).
/// </summary>
TemperatureK,
/// <summary>
/// An amount of matter in moles.
/// </summary>
Moles,
/// <summary>
/// A value in the range 0-1.
/// </summary>
/* L + */ Ratio,
/// <summary>
/// Power in Watts (W).
/// </summary>
PowerW,
/// <summary>
/// Energy in Joules (J).
/// </summary>
EnergyJ
}
[Serializable, NetSerializable]
public enum SensorDeviceType
{
Unknown = 0,
Teg,
AtmosSensor,
ThermoMachine,
VolumePump,
Battery,
}
[Serializable, NetSerializable]
public record struct SensorSample(TimeSpan Time, float Value);