b486678290
Library -Artifacts
311 lines
12 KiB
C#
311 lines
12 KiB
C#
using System;
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using System.Collections.Generic;
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using System.Linq;
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using UnityEngine;
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namespace Unity.VisualScripting
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{
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[Analyser(typeof(IUnit))]
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public class UnitAnalyser<TUnit> : Analyser<TUnit, UnitAnalysis>
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where TUnit : class, IUnit
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{
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public UnitAnalyser(GraphReference reference, TUnit target) : base(reference, target) { }
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public TUnit unit => target;
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[Assigns]
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protected bool IsEntered()
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{
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using (var recursion = Recursion.New(1))
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{
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return IsEntered(unit, recursion);
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}
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}
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private static bool IsEntered(IUnit unit, Recursion recursion)
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{
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if (unit.isControlRoot)
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{
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return true;
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}
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foreach (var controlInput in unit.controlInputs)
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{
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if (!controlInput.isPredictable || controlInput.couldBeEntered)
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{
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return true;
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}
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}
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foreach (var valueOutput in unit.valueOutputs)
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{
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if (!recursion?.TryEnter(valueOutput) ?? false)
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{
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continue;
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}
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var valueOutputEntered = valueOutput.validConnections.Any(c => IsEntered(c.destination.unit, recursion));
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recursion?.Exit(valueOutput);
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if (valueOutputEntered)
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{
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return true;
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}
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}
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return false;
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}
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private string PortLabel(IUnitPort port)
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{
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return port.Description<UnitPortDescription>().label;
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}
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[Assigns]
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protected virtual IEnumerable<Warning> Warnings()
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{
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var isEntered = IsEntered();
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if (!unit.isDefined)
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{
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if (unit.definitionException != null)
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{
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yield return Warning.Exception(unit.definitionException);
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}
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else if (!unit.canDefine)
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{
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yield return Warning.Caution("Node is not properly configured.");
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}
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}
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if (!isEntered)
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{
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yield return Warning.Info("Node is never entered.");
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}
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// Obsolete attribute is not inherited, so traverse the chain manually
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var obsoleteAttribute = unit.GetType().AndHierarchy().FirstOrDefault(t => t.HasAttribute<ObsoleteAttribute>())?.GetAttribute<ObsoleteAttribute>();
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if (obsoleteAttribute != null)
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{
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var unitName = BoltFlowNameUtility.UnitTitle(unit.GetType(), true, false);
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if (obsoleteAttribute.Message != null)
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{
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Debug.LogWarning($"\"{unitName}\" node is deprecated: {obsoleteAttribute.Message}");
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yield return Warning.Caution($"Deprecated: {obsoleteAttribute.Message}");
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}
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else
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{
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Debug.LogWarning($"\"{unitName}\" node is deprecated.");
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yield return Warning.Caution("This node is deprecated.");
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}
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}
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if (unit.isDefined)
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{
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foreach (var invalidInput in unit.invalidInputs)
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{
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yield return Warning.Caution($"{PortLabel(invalidInput)} is not used by this unit.");
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}
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foreach (var invalidOutput in unit.invalidOutputs)
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{
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yield return Warning.Caution($"{PortLabel(invalidOutput)} is not provided by this unit.");
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}
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foreach (var validPort in unit.validPorts)
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{
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if (validPort.hasInvalidConnection)
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{
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yield return Warning.Caution($"{PortLabel(validPort)} has an invalid connection.");
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}
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}
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#if UNITY_IOS || UNITY_ANDROID || UNITY_TVOS
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if (unit is IMouseEventUnit)
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{
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var graphName = string.IsNullOrEmpty(unit.graph.title) ? "A ScriptGraph" : $"The ScriptGraph {unit.graph.title}";
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var unitName = BoltFlowNameUtility.UnitTitle(unit.GetType(), true, false);
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Debug.LogWarning($"{graphName} contains a {unitName} node. Presence of MouseEvent nodes might impact performance on handheld devices.");
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yield return Warning.Caution("Presence of MouseEvent nodes might impact performance on handheld devices.");
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}
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#endif
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}
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foreach (var controlInput in unit.controlInputs)
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{
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if (!controlInput.hasValidConnection)
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{
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continue;
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}
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foreach (var relation in controlInput.relations)
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{
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if (relation.source is ValueInput)
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{
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var valueInput = (ValueInput)relation.source;
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foreach (var warning in ValueInputWarnings(valueInput))
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{
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yield return warning;
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}
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}
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}
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}
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foreach (var controlOutput in unit.controlOutputs)
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{
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if (!controlOutput.hasValidConnection)
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{
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continue;
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}
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var controlInputs = controlOutput.relations.Select(r => r.source).OfType<ControlInput>();
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var isTriggered = !controlInputs.Any() || controlInputs.Any(ci => !ci.isPredictable || ci.couldBeEntered);
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foreach (var relation in controlOutput.relations)
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{
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if (relation.source is ValueInput)
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{
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var valueInput = (ValueInput)relation.source;
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foreach (var warning in ValueInputWarnings(valueInput))
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{
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yield return warning;
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}
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}
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}
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if (isEntered && !isTriggered)
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{
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yield return Warning.Caution($"{PortLabel(controlOutput)} is connected, but it is never triggered.");
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}
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}
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foreach (var valueOutput in unit.valueOutputs)
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{
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if (!valueOutput.hasValidConnection)
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{
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continue;
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}
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foreach (var relation in valueOutput.relations)
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{
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if (relation.source is ControlInput)
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{
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var controlInput = (ControlInput)relation.source;
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if (isEntered && controlInput.isPredictable && !controlInput.couldBeEntered)
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{
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yield return Warning.Severe($"{PortLabel(controlInput)} is required, but it is never entered.");
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}
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}
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else if (relation.source is ValueInput)
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{
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var valueInput = (ValueInput)relation.source;
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foreach (var warning in ValueInputWarnings(valueInput))
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{
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yield return warning;
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}
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}
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}
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}
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}
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private IEnumerable<Warning> ValueInputWarnings(ValueInput valueInput)
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{
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// We can disable null reference check if no self is available
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// and the port requires an owner, for example in macros.
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var trustFutureOwner = valueInput.nullMeansSelf && reference.self == null;
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var checkForNullReference = BoltFlow.Configuration.predictPotentialNullReferences && !valueInput.allowsNull && !trustFutureOwner;
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var checkForMissingComponent = BoltFlow.Configuration.predictPotentialMissingComponents && typeof(Component).IsAssignableFrom(valueInput.type);
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// Note that we cannot directly check the input's predicted value, because it
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// will return false for safeguard specifically because it might be missing requirements.
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// Therefore, we first check the connected value, then the default value.
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// If the port is connected to a predictable output, use the connected value to perform checks.
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if (valueInput.hasValidConnection)
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{
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var valueOutput = valueInput.validConnectedPorts.Single();
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if (Flow.CanPredict(valueOutput, reference))
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{
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if (checkForNullReference)
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{
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if (Flow.Predict(valueOutput, reference) == null)
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{
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yield return Warning.Severe($"{PortLabel(valueInput)} cannot be null.");
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}
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}
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if (checkForMissingComponent)
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{
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var connectedPredictedValue = Flow.Predict(valueOutput, reference);
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// This check is necessary, because the predicted value could be
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// incompatible as connections with non-guaranteed conversions are allowed.
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if (ConversionUtility.CanConvert(connectedPredictedValue, typeof(GameObject), true))
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{
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var gameObject = ConversionUtility.Convert<GameObject>(connectedPredictedValue);
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if (gameObject != null)
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{
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var component = (Component)ConversionUtility.Convert(gameObject, valueInput.type);
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if (component == null)
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{
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yield return Warning.Caution($"{PortLabel(valueInput)} is missing a {valueInput.type.DisplayName()} component.");
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}
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}
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}
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}
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}
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}
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// If the port isn't connected but has a default value, use the default value to perform checks.
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else if (valueInput.hasDefaultValue)
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{
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if (checkForNullReference)
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{
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if (Flow.Predict(valueInput, reference) == null)
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{
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yield return Warning.Severe($"{PortLabel(valueInput)} cannot be null.");
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}
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}
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if (checkForMissingComponent)
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{
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var unconnectedPredictedValue = Flow.Predict(valueInput, reference);
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if (ConversionUtility.CanConvert(unconnectedPredictedValue, typeof(GameObject), true))
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{
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var gameObject = ConversionUtility.Convert<GameObject>(unconnectedPredictedValue);
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if (gameObject != null)
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{
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var component = (Component)ConversionUtility.Convert(gameObject, valueInput.type);
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if (component == null)
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{
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yield return Warning.Caution($"{PortLabel(valueInput)} is missing a {valueInput.type.DisplayName()} component.");
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}
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}
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}
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}
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}
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// The value isn't connected and has no default value,
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// therefore it is certain to be missing at runtime.
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else
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{
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yield return Warning.Severe($"{PortLabel(valueInput)} is missing.");
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}
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}
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}
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}
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