2020-08-03 16:45:38 +00:00
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using System;
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using Gamecraft.Wires;
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using Svelto.ECS;
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using Svelto.ECS.Experimental;
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using GamecraftModdingAPI.Utility;
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namespace GamecraftModdingAPI.Blocks
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{
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public class Wire
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{
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internal static SignalEngine signalEngine;
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protected EGID startPortEGID;
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protected EGID endPortEGID;
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protected EGID startBlockEGID;
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protected EGID endBlockEGID;
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protected EGID wireEGID;
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protected bool inputToOutput;
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2020-08-07 16:05:49 +00:00
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protected byte startPort;
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protected byte endPort;
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2020-08-03 16:45:38 +00:00
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public static Wire Connect(SignalingBlock start, byte startPort, SignalingBlock end, byte endPort)
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{
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2020-08-03 17:24:35 +00:00
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WireEntityStruct wire = signalEngine.CreateNewWire(start.Id, startPort, end.Id, endPort);
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2020-08-23 13:59:13 +00:00
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return new Wire(wire, start, end);
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2020-08-03 16:45:38 +00:00
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}
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/// <summary>
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/// An existing wire connection ending at the specified input.
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/// If multiple exist, this will return the first one found.
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/// </summary>
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/// <param name="end">Destination block.</param>
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/// <param name="endPort">Port number.</param>
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/// <returns>The wire, where the end of the wire is the block port specified, or null if does not exist.</returns>
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public static Wire ConnectedToInputPort(SignalingBlock end, byte endPort)
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{
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EGID port = signalEngine.MatchBlockInputToPort(end, endPort, out bool exists);
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if (!exists) return null;
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WireEntityStruct wire = signalEngine.MatchPortToWire(port, end.Id, out exists);
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if (exists)
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{
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return new Wire(new Block(wire.sourceBlockEGID), end, wire.sourcePortUsage, endPort);
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}
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return null;
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}
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/// <summary>
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/// An existing wire connection starting at the specified output.
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/// If multiple exist, this will return the first one found.
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/// </summary>
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/// <param name="start">Source block entity ID.</param>
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/// <param name="startPort">Port number.</param>
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/// <returns>The wire, where the start of the wire is the block port specified, or null if does not exist.</returns>
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public static Wire ConnectedToOutputPort(SignalingBlock start, byte startPort)
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{
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EGID port = signalEngine.MatchBlockOutputToPort(start, startPort, out bool exists);
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if (!exists) return null;
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WireEntityStruct wire = signalEngine.MatchPortToWire(port, start.Id, out exists);
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if (exists)
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{
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return new Wire(start, new Block(wire.destinationBlockEGID), startPort, wire.destinationPortUsage);
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}
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return null;
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}
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/// <summary>
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/// Construct a wire object from an existing connection.
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/// </summary>
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/// <param name="start">Starting block ID.</param>
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/// <param name="end">Ending block ID.</param>
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/// <param name="startPort">Starting port number, or guess if omitted.</param>
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/// <param name="endPort">Ending port number, or guess if omitted.</param>
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/// <exception cref="WireInvalidException">Guessing failed or wire does not exist.</exception>
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public Wire(Block start, Block end, byte startPort = Byte.MaxValue, byte endPort = Byte.MaxValue)
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{
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startBlockEGID = start.Id;
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endBlockEGID = end.Id;
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// find block ports
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WireEntityStruct wire = signalEngine.MatchBlocksToWire(start.Id, end.Id, out bool exists, startPort, endPort);
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if (exists)
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{
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wireEGID = wire.ID;
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endPortEGID = signalEngine.MatchBlockInputToPort(end, wire.destinationPortUsage, out exists);
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if (!exists) throw new WireInvalidException("Wire end port not found");
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startPortEGID = signalEngine.MatchBlockOutputToPort(start, wire.sourcePortUsage, out exists);
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if (!exists) throw new WireInvalidException("Wire start port not found");
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inputToOutput = false;
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2020-08-07 16:05:49 +00:00
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endPort = wire.destinationPortUsage;
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startPort = wire.sourcePortUsage;
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2020-08-03 16:45:38 +00:00
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}
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else
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{
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// flip I/O around and try again
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wire = signalEngine.MatchBlocksToWire(end.Id, start.Id, out exists, endPort, startPort);
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if (exists)
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{
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wireEGID = wire.ID;
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endPortEGID = signalEngine.MatchBlockOutputToPort(end, wire.sourcePortUsage, out exists);
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if (!exists) throw new WireInvalidException("Wire end port not found");
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startPortEGID = signalEngine.MatchBlockInputToPort(start, wire.destinationPortUsage, out exists);
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if (!exists) throw new WireInvalidException("Wire start port not found");
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inputToOutput = true; // end is actually the source
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// NB: start and end are handled exactly as they're received as params.
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// This makes wire traversal easier, but makes logic in this class a bit more complex
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2020-08-07 16:05:49 +00:00
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endPort = wire.sourcePortUsage;
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startPort = wire.destinationPortUsage;
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2020-08-03 16:45:38 +00:00
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}
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else
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{
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throw new WireInvalidException("Wire not found");
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}
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}
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}
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/// <summary>
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/// Construct a wire object from an existing wire connection.
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/// </summary>
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/// <param name="start">Starting block ID.</param>
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/// <param name="end">Ending block ID.</param>
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/// <param name="startPort">Starting port number.</param>
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/// <param name="endPort">Ending port number.</param>
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/// <param name="wire">The wire ID.</param>
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/// <param name="inputToOutput">Whether the wire direction goes input -> output (true) or output -> input (false, preferred).</param>
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public Wire(Block start, Block end, byte startPort, byte endPort, EGID wire, bool inputToOutput)
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{
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this.startBlockEGID = start.Id;
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this.endBlockEGID = end.Id;
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this.inputToOutput = inputToOutput;
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this.wireEGID = wire;
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if (inputToOutput)
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{
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endPortEGID = signalEngine.MatchBlockOutputToPort(start, startPort, out bool exists);
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if (!exists) throw new WireInvalidException("Wire end port not found");
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startPortEGID = signalEngine.MatchBlockInputToPort(end, endPort, out exists);
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if (!exists) throw new WireInvalidException("Wire start port not found");
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}
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else
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{
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endPortEGID = signalEngine.MatchBlockInputToPort(end, endPort, out bool exists);
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if (!exists) throw new WireInvalidException("Wire end port not found");
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startPortEGID = signalEngine.MatchBlockOutputToPort(start, startPort, out exists);
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if (!exists) throw new WireInvalidException("Wire start port not found");
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}
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2020-08-07 16:05:49 +00:00
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this.startPort = startPort;
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this.endPort = endPort;
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2020-08-03 16:45:38 +00:00
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}
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/// <summary>
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/// Construct a wire object from an existing wire connection.
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/// </summary>
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/// <param name="wireEgid">The wire ID.</param>
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public Wire(EGID wireEgid)
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{
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this.wireEGID = wireEgid;
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WireEntityStruct wire = signalEngine.GetWire(wireEGID);
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this.startBlockEGID = wire.sourceBlockEGID;
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this.endBlockEGID = wire.destinationBlockEGID;
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this.inputToOutput = false;
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2020-08-03 17:24:35 +00:00
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endPortEGID = signalEngine.MatchBlockInputToPort(wire.destinationBlockEGID, wire.destinationPortUsage, out bool exists);
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if (!exists) throw new WireInvalidException("Wire end port not found");
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startPortEGID = signalEngine.MatchBlockOutputToPort(wire.sourceBlockEGID, wire.sourcePortUsage, out exists);
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if (!exists) throw new WireInvalidException("Wire start port not found");
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2020-08-07 16:05:49 +00:00
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this.endPort = wire.destinationPortUsage;
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this.startPort = wire.sourcePortUsage;
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2020-08-03 17:24:35 +00:00
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}
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2020-08-23 13:59:13 +00:00
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internal Wire(WireEntityStruct wire, SignalingBlock src, SignalingBlock dest)
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{
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this.wireEGID = wire.ID;
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this.startBlockEGID = wire.sourceBlockEGID;
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this.endBlockEGID = wire.destinationBlockEGID;
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inputToOutput = false;
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2020-08-23 13:59:13 +00:00
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endPortEGID = signalEngine.MatchBlockInputToPort(dest, wire.destinationPortUsage, out bool exists);
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2020-08-03 17:24:35 +00:00
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if (!exists) throw new WireInvalidException("Wire end port not found");
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2020-08-23 13:59:13 +00:00
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startPortEGID = signalEngine.MatchBlockOutputToPort(src, wire.sourcePortUsage, out exists);
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2020-08-03 17:24:35 +00:00
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if (!exists) throw new WireInvalidException("Wire start port not found");
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2020-08-07 16:05:49 +00:00
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this.endPort = wire.destinationPortUsage;
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this.startPort = wire.sourcePortUsage;
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2020-08-03 16:45:38 +00:00
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}
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/// <summary>
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/// The wire's in-game id.
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/// </summary>
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public EGID Id
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{
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get => wireEGID;
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}
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/// <summary>
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/// The wire's signal value, as a float.
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/// </summary>
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public float Float
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{
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get
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{
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ref ChannelDataStruct cds = ref signalEngine.GetChannelDataStruct(startPortEGID, out bool exists);
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if (!exists) return 0f;
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return cds.valueAsFloat;
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}
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set
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{
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ref ChannelDataStruct cds = ref signalEngine.GetChannelDataStruct(startPortEGID, out bool exists);
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if (!exists) return;
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cds.valueAsFloat = value;
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}
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}
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/// <summary>
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/// The wire's string signal.
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/// </summary>
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public string String
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{
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get
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{
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ref ChannelDataStruct cds = ref signalEngine.GetChannelDataStruct(startPortEGID, out bool exists);
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if (!exists) return "";
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return cds.valueAsEcsString;
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}
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set
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{
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ref ChannelDataStruct cds = ref signalEngine.GetChannelDataStruct(startPortEGID, out bool exists);
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if (!exists) return;
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cds.valueAsEcsString.Set(value);
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}
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}
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/// <summary>
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/// The wire's raw string signal.
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/// </summary>
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public ECSString ECSString
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{
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get
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{
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ref ChannelDataStruct cds = ref signalEngine.GetChannelDataStruct(startPortEGID, out bool exists);
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if (!exists) return default;
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return cds.valueAsEcsString;
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}
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set
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{
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ref ChannelDataStruct cds = ref signalEngine.GetChannelDataStruct(startPortEGID, out bool exists);
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if (!exists) return;
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cds.valueAsEcsString = value;
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}
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}
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/// <summary>
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/// The wire's signal id.
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/// I'm 50% sure this is useless.
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/// </summary>
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public uint SignalId
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{
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get
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{
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ref ChannelDataStruct cds = ref signalEngine.GetChannelDataStruct(startPortEGID, out bool exists);
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if (!exists) return uint.MaxValue;
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return cds.valueAsID;
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}
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set
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{
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ref ChannelDataStruct cds = ref signalEngine.GetChannelDataStruct(startPortEGID, out bool exists);
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if (!exists) return;
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cds.valueAsID = value;
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}
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}
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/// <summary>
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/// The block at the beginning of the wire.
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/// </summary>
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public SignalingBlock Start
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{
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get => new SignalingBlock(startBlockEGID);
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}
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/// <summary>
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/// The port number that the beginning of the wire connects to.
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/// </summary>
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public byte StartPort
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{
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2020-08-07 16:05:49 +00:00
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get => startPort;
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2020-08-03 16:45:38 +00:00
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}
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/// <summary>
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/// The block at the end of the wire.
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/// </summary>
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public SignalingBlock End
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{
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get => new SignalingBlock(endBlockEGID);
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}
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/// <summary>
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/// The port number that the end of the wire connects to.
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/// </summary>
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public byte EndPort
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{
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2020-08-07 16:05:49 +00:00
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get => endPort;
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2020-08-03 16:45:38 +00:00
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}
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/// <summary>
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/// Create a copy of the wire object where the direction of the wire is guaranteed to be from a block output to a block input.
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/// This is simply a different memory configuration and does not affect the in-game wire (which is always output -> input).
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/// </summary>
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/// <returns>A copy of the wire object.</returns>
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public Wire OutputToInputCopy()
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{
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return new Wire(wireEGID);
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}
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/// <summary>
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/// Convert the wire object to the direction the signal flows.
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/// Signals on wires always flow from a block output port to a block input port.
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2020-08-03 16:45:38 +00:00
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/// This is simply a different memory configuration and does not affect the in-game wire (which is always output -> input).
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/// </summary>
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public void OutputToInputInPlace()
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{
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if (inputToOutput)
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{
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inputToOutput = false;
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// swap inputs and outputs
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EGID temp = endBlockEGID;
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endBlockEGID = startBlockEGID;
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startBlockEGID = temp;
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temp = endPortEGID;
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endPortEGID = startPortEGID;
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startPortEGID = temp;
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2020-08-07 16:05:49 +00:00
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byte tempPortNumber = endPort;
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endPort = startPort;
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startPort = tempPortNumber;
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2020-08-03 16:45:38 +00:00
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}
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}
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public override string ToString()
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{
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if (signalEngine.Exists<WireEntityStruct>(wireEGID))
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{
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2020-08-03 17:24:35 +00:00
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return $"{nameof(Id)}: {Id}, Start{nameof(Start.Id)}: {Start.Id}, End{nameof(End.Id)}: {End.Id}, ({Start.Type}::{StartPort} aka {Start.PortName(StartPort, inputToOutput)}) -> ({End.Type}::{EndPort} aka {End.PortName(EndPort, !inputToOutput)})";
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2020-08-03 16:45:38 +00:00
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}
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2020-08-07 16:05:49 +00:00
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return $"{nameof(Id)}: {Id}, Start{nameof(Start.Id)}: {Start.Id}, End{nameof(End.Id)}: {End.Id}, ({Start.Type}::{StartPort} -> {End.Type}::{EndPort})";
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2020-08-03 16:45:38 +00:00
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}
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internal static void Init() { }
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}
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}
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