using System; using System.Collections; using System.Collections.Generic; using System.Diagnostics; using System.Globalization; using System.IO; using System.IO.Compression; using System.Linq; using System.Reflection; using System.Reflection.Emit; using System.Runtime.CompilerServices; using System.Runtime.Serialization; using System.Runtime.Versioning; using BepInEx; using BepInEx.Bootstrap; using BepInEx.Configuration; using BepInEx.Logging; using HarmonyLib; using JetBrains.Annotations; using Microsoft.CodeAnalysis; using ServerSync; using TMPro; using Unity.Collections; using UnityEngine; [assembly: CompilationRelaxations(8)] [assembly: RuntimeCompatibility(WrapNonExceptionThrows = true)] [assembly: Debuggable(DebuggableAttribute.DebuggingModes.IgnoreSymbolStoreSequencePoints)] [assembly: AssemblyFileVersion("1.2.0.0")] [assembly: AssemblyInformationalVersion("1.2.0")] [assembly: TargetFramework(".NETStandard,Version=v2.1", FrameworkDisplayName = ".NET Standard 2.1")] [assembly: AssemblyCompany("sighsorry")] [assembly: AssemblyConfiguration("Release")] [assembly: AssemblyProduct("BlastedSwimmingTarredBugFix")] [assembly: AssemblyTitle("BlastedSwimmingTarredBugFix")] [assembly: AssemblyVersion("1.2.0.0")] [module: RefSafetyRules(11)] namespace Microsoft.CodeAnalysis { [CompilerGenerated] [Embedded] internal sealed class EmbeddedAttribute : Attribute { } } namespace System.Runtime.CompilerServices { [CompilerGenerated] [Embedded] [AttributeUsage(AttributeTargets.Class | AttributeTargets.Property | AttributeTargets.Field | AttributeTargets.Event | AttributeTargets.Parameter | AttributeTargets.ReturnValue | AttributeTargets.GenericParameter, AllowMultiple = false, Inherited = false)] internal sealed class NullableAttribute : Attribute { public readonly byte[] NullableFlags; public NullableAttribute(byte P_0) { NullableFlags = new byte[1] { P_0 }; } public NullableAttribute(byte[] P_0) { NullableFlags = P_0; } } [CompilerGenerated] [Embedded] [AttributeUsage(AttributeTargets.Class | AttributeTargets.Struct | AttributeTargets.Method | AttributeTargets.Interface | AttributeTargets.Delegate, AllowMultiple = false, Inherited = false)] internal sealed class NullableContextAttribute : Attribute { public readonly byte Flag; public NullableContextAttribute(byte P_0) { Flag = P_0; } } [CompilerGenerated] [Embedded] [AttributeUsage(AttributeTargets.Module, AllowMultiple = false, Inherited = false)] internal sealed class RefSafetyRulesAttribute : Attribute { public readonly int Version; public RefSafetyRulesAttribute(int P_0) { Version = P_0; } } } namespace BlastedSwimmingTarredBugFix { internal static class CharacterLifecycleCompatibility { private static bool _installed; internal static void TryInstall(Harmony harmony) { //IL_0199: Unknown result type (might be due to invalid IL or missing references) //IL_019e: Unknown result type (might be due to invalid IL or missing references) //IL_01b2: Expected O, but got Unknown //IL_01b7: Unknown result type (might be due to invalid IL or missing references) //IL_01bc: Unknown result type (might be due to invalid IL or missing references) //IL_01d0: Expected O, but got Unknown //IL_01d5: Unknown result type (might be due to invalid IL or missing references) //IL_01da: Unknown result type (might be due to invalid IL or missing references) //IL_01e5: Unknown result type (might be due to invalid IL or missing references) //IL_01ea: Unknown result type (might be due to invalid IL or missing references) //IL_01f7: Expected O, but got Unknown //IL_01f7: Expected O, but got Unknown //IL_01fd: Unknown result type (might be due to invalid IL or missing references) //IL_020a: Expected O, but got Unknown if (_installed) { return; } MethodInfo methodInfo = AccessTools.DeclaredMethod(typeof(ZNetScene), "Destroy", new Type[1] { typeof(GameObject) }, (Type[])null); MethodInfo methodInfo2 = AccessTools.DeclaredMethod(typeof(StatusEffect), "RemoveStartEffects", (Type[])null, (Type[])null); MethodInfo methodInfo3 = AccessTools.DeclaredMethod(typeof(Character), "OnDestroy", (Type[])null, (Type[])null); MethodInfo methodInfo4 = AccessTools.DeclaredMethod(typeof(ZNetScene), "OnDestroy", (Type[])null, (Type[])null); FieldInfo fieldInfo = AccessTools.Field(typeof(StatusEffect), "m_startEffectInstances"); FieldInfo fieldInfo2 = AccessTools.Field(typeof(Character), "m_seman"); MethodInfo methodInfo5 = AccessTools.DeclaredMethod(typeof(CharacterLifecycleCompatibility), "TrackDestroyPrefix", (Type[])null, (Type[])null); MethodInfo methodInfo6 = AccessTools.DeclaredMethod(typeof(CharacterLifecycleCompatibility), "RemoveStartEffectsPrefix", (Type[])null, (Type[])null); MethodInfo methodInfo7 = AccessTools.DeclaredMethod(typeof(CharacterLifecycleCompatibility), "CharacterOnDestroyPrefix", (Type[])null, (Type[])null); MethodInfo methodInfo8 = AccessTools.DeclaredMethod(typeof(CharacterLifecycleCompatibility), "CharacterOnDestroyFinalizer", (Type[])null, (Type[])null); MethodInfo methodInfo9 = AccessTools.DeclaredMethod(typeof(CharacterLifecycleCompatibility), "SceneOnDestroyPostfix", (Type[])null, (Type[])null); if (methodInfo == null || methodInfo2 == null || methodInfo3 == null || methodInfo4 == null || fieldInfo == null || fieldInfo2 == null || methodInfo5 == null || methodInfo6 == null || methodInfo7 == null || methodInfo8 == null || methodInfo9 == null) { LiquidStuckFixPlugin.ModLogger.LogWarning((object)"Character lifecycle compatibility skipped: one or more required Valheim methods or fields were not found."); return; } try { harmony.Patch((MethodBase)methodInfo, new HarmonyMethod(methodInfo5) { priority = 800 }, (HarmonyMethod)null, (HarmonyMethod)null, (HarmonyMethod)null, (HarmonyMethod)null); harmony.Patch((MethodBase)methodInfo2, new HarmonyMethod(methodInfo6) { priority = 800 }, (HarmonyMethod)null, (HarmonyMethod)null, (HarmonyMethod)null, (HarmonyMethod)null); harmony.Patch((MethodBase)methodInfo3, new HarmonyMethod(methodInfo7) { priority = 0 }, (HarmonyMethod)null, (HarmonyMethod)null, new HarmonyMethod(methodInfo8) { priority = 0 }, (HarmonyMethod)null); harmony.Patch((MethodBase)methodInfo4, (HarmonyMethod)null, new HarmonyMethod(methodInfo9), (HarmonyMethod)null, (HarmonyMethod)null, (HarmonyMethod)null); _installed = true; LiquidStuckFixPlugin.ModLogger.LogInfo((object)"Installed Character removal tracking, StatusEffect teardown guard, and Character.OnDestroy repair."); } catch (Exception ex) { SafeUnpatch(harmony, methodInfo, methodInfo5); SafeUnpatch(harmony, methodInfo2, methodInfo6); SafeUnpatch(harmony, methodInfo3, methodInfo7); SafeUnpatch(harmony, methodInfo3, methodInfo8); SafeUnpatch(harmony, methodInfo4, methodInfo9); CreatureRemovalTracker.Clear(); bool flag = !IsPatchInstalled(methodInfo, methodInfo5) && !IsPatchInstalled(methodInfo2, methodInfo6) && !IsPatchInstalled(methodInfo3, methodInfo7) && !IsPatchInstalled(methodInfo3, methodInfo8) && !IsPatchInstalled(methodInfo4, methodInfo9); if (!flag) { try { harmony.UnpatchSelf(); } catch { } flag = !IsPatchInstalled(methodInfo, methodInfo5) && !IsPatchInstalled(methodInfo2, methodInfo6) && !IsPatchInstalled(methodInfo3, methodInfo7) && !IsPatchInstalled(methodInfo3, methodInfo8) && !IsPatchInstalled(methodInfo4, methodInfo9); } if (flag) { LiquidStuckFixPlugin.ModLogger.LogWarning((object)("Character lifecycle compatibility was rolled back after an installation failure: " + ex.Message)); } else { LiquidStuckFixPlugin.ModLogger.LogError((object)$"Character lifecycle compatibility installation failed and rollback was incomplete: {ex}"); } _installed = !flag; } } internal static void ResetInstallationState() { _installed = false; } private static void TrackDestroyPrefix(GameObject __0) { CreatureRemovalTracker.Track(__0); } private static void RemoveStartEffectsPrefix(ref GameObject[]? ___m_startEffectInstances) { GameObject[] array = ___m_startEffectInstances; if (array == null || !Object.op_Implicit((Object)(object)ZNetScene.instance)) { return; } for (int i = 0; i < array.Length; i++) { GameObject val = array[i]; if (Object.op_Implicit((Object)(object)val)) { ZNetView component = val.GetComponent(); if (!Object.op_Implicit((Object)(object)component) || !component.IsValid()) { array[i] = null; Object.Destroy((Object)(object)val); } } } } private static bool CharacterOnDestroyPrefix(Character __instance, SEMan? ___m_seman) { if (___m_seman != null) { return true; } try { CreatureRemovalTracker.RepairCharacterReferences(__instance); } catch (Exception arg) { LiquidStuckFixPlugin.ModLogger.LogWarning((object)$"Failed to repair an uninitialized Character.OnDestroy: {arg}"); } finally { CreatureRemovalTracker.Complete(__instance); } return false; } private static Exception? CharacterOnDestroyFinalizer(Character __instance, Exception? __exception) { bool flag = CreatureRemovalTracker.IsPending(__instance); try { if (flag || __exception != null) { CreatureRemovalTracker.RepairCharacterReferences(__instance); } } catch (Exception arg) { LiquidStuckFixPlugin.ModLogger.LogWarning((object)$"Failed to repair Character.OnDestroy bookkeeping: {arg}"); } finally { CreatureRemovalTracker.Complete(__instance); } return __exception; } private static void SceneOnDestroyPostfix() { CreatureRemovalTracker.Clear(); } private static void SafeUnpatch(Harmony harmony, MethodBase original, MethodInfo patch) { try { harmony.Unpatch(original, patch); } catch { } } private static bool IsPatchInstalled(MethodBase original, MethodInfo expectedPatch) { Patches patchInfo = Harmony.GetPatchInfo(original); if (patchInfo == null) { return false; } if (!ContainsPatch(patchInfo.Prefixes, expectedPatch) && !ContainsPatch(patchInfo.Postfixes, expectedPatch)) { return ContainsPatch(patchInfo.Finalizers, expectedPatch); } return true; } private static bool ContainsPatch(IEnumerable patches, MethodInfo expectedPatch) { foreach (Patch patch in patches) { MethodInfo patchMethod = patch.PatchMethod; if ((object)patchMethod == expectedPatch || patchMethod.Equals(expectedPatch)) { return true; } } return false; } } internal static class CreatureRemovalTracker { private sealed class PendingRemoval { internal Character Character { get; } internal float ExpiresAt { get; set; } internal PendingRemoval(Character character, float expiresAt) { Character = character; ExpiresAt = expiresAt; } } private const float PendingLifetimeSeconds = 15f; private const float PruneIntervalSeconds = 1f; private static readonly Dictionary PendingByInstanceId = new Dictionary(); private static readonly List ExpiredInstanceIds = new List(); private static float _nextPruneAt; internal static void Track(GameObject gameObject) { if (!Object.op_Implicit((Object)(object)gameObject)) { return; } Character component = gameObject.GetComponent(); if (Object.op_Implicit((Object)(object)component)) { int instanceID = ((Object)component).GetInstanceID(); float expiresAt = Time.realtimeSinceStartup + 15f; if (PendingByInstanceId.TryGetValue(instanceID, out PendingRemoval value) && value.Character == component) { value.ExpiresAt = expiresAt; } else { PendingByInstanceId[instanceID] = new PendingRemoval(component, expiresAt); } } } internal static bool IsPending(Character character) { if (character == null) { return false; } int instanceID = ((Object)character).GetInstanceID(); if (PendingByInstanceId.TryGetValue(instanceID, out PendingRemoval value)) { return value.Character == character; } return false; } internal static void Complete(Character character) { if (character != null) { int instanceID = ((Object)character).GetInstanceID(); if (PendingByInstanceId.TryGetValue(instanceID, out PendingRemoval value) && value.Character == character) { PendingByInstanceId.Remove(instanceID); } } } internal static void Update() { float realtimeSinceStartup = Time.realtimeSinceStartup; if (PendingByInstanceId.Count == 0 || realtimeSinceStartup < _nextPruneAt) { return; } _nextPruneAt = realtimeSinceStartup + 1f; ExpiredInstanceIds.Clear(); foreach (KeyValuePair item in PendingByInstanceId) { if (realtimeSinceStartup >= item.Value.ExpiresAt) { ExpiredInstanceIds.Add(item.Key); } } foreach (int expiredInstanceId in ExpiredInstanceIds) { PendingByInstanceId.Remove(expiredInstanceId); } ExpiredInstanceIds.Clear(); } internal static void RepairCharacterReferences(Character character) { if (character == null) { return; } List allCharacters = Character.GetAllCharacters(); for (int num = allCharacters.Count - 1; num >= 0; num--) { if (allCharacters[num] == character) { allCharacters.RemoveAt(num); } } TryRemoveCharacterHud(character); } internal static void Clear() { PendingByInstanceId.Clear(); ExpiredInstanceIds.Clear(); _nextPruneAt = 0f; } private static void TryRemoveCharacterHud(Character character) { try { if (Object.op_Implicit((Object)(object)EnemyHud.instance)) { EnemyHud.instance.RemoveCharacterHud(character); } } catch (Exception ex) { LiquidStuckFixPlugin.ModLogger.LogDebug((object)("Failed to repair a removed Character HUD reference: " + ex.Message)); } } } internal static class LiquidStateModule { private static readonly Type[] PatchTypes = new Type[10] { typeof(CharacterSetLiquidLevelPatch), typeof(FloatingSetLiquidLevelPatch), typeof(WaterVolumeUpdateFloatersPatch), typeof(LiquidSurfaceUpdateFloatersPatch), typeof(CharacterIncrementPatch), typeof(CharacterDecrementPatch), typeof(FloatingIncrementPatch), typeof(FloatingDecrementPatch), typeof(CharacterUpdateWaterPatch), typeof(PlayerTeleportToPatch) }; private static bool _installed; internal static bool TryInstall(Harmony harmony) { if (_installed) { return true; } try { Type[] patchTypes = PatchTypes; foreach (Type type in patchTypes) { harmony.CreateClassProcessor(type).Patch(); } _installed = true; return true; } catch (Exception ex) { bool num = LiquidStuckFixPlugin.TryUnpatch(harmony, "Liquid state compatibility rollback"); if (num) { LiquidStuckFixPlugin.Log.LogWarning((object)("Liquid state compatibility could not be installed and was rolled back: " + ex.Message)); } else { LiquidStuckFixPlugin.Log.LogError((object)$"Liquid state compatibility installation failed and rollback was incomplete: {ex}"); } _installed = !num; return false; } } internal static bool Uninstall(Harmony harmony) { if (!_installed) { return true; } bool num = LiquidStuckFixPlugin.TryUnpatch(harmony, "Liquid state"); if (num) { _installed = false; } return num; } } internal static class LiquidGuard { private enum RejectReason { TargetTeleporting = 1, SourceNoLongerOverlapsTarget } private readonly struct RejectLogKey : IEquatable { private readonly int _targetId; private readonly int _sourceId; private readonly int _liquidType; private readonly int _reason; public RejectLogKey(Component target, Component source, LiquidType liquidType, RejectReason reason) { //IL_002f: Unknown result type (might be due to invalid IL or missing references) //IL_0035: Expected I4, but got Unknown _targetId = ((!IsUnityNull(target)) ? ((Object)target).GetInstanceID() : 0); _sourceId = ((!IsUnityNull(source)) ? ((Object)source).GetInstanceID() : 0); _liquidType = (int)liquidType; _reason = (int)reason; } public bool Equals(RejectLogKey other) { if (_targetId == other._targetId && _sourceId == other._sourceId && _liquidType == other._liquidType) { return _reason == other._reason; } return false; } public override bool Equals(object? obj) { if (obj is RejectLogKey other) { return Equals(other); } return false; } public override int GetHashCode() { return (((((_targetId * 397) ^ _sourceId) * 397) ^ _liquidType) * 397) ^ _reason; } } private const float NoLiquidLevel = -10000f; private const float NoLiquidThreshold = -9999f; private const float ActualOverlapPadding = 0.35f; private const float PlayerRecoveryProbeInterval = 0.5f; private const float RejectedLogInterval = 1f; private const string WaterVolumeLayerName = "WaterVolume"; private static readonly Collider[] ProbeBuffer = (Collider[])(object)new Collider[256]; private static readonly List SourceColliderBuffer = new List(64); private static readonly List TargetColliderBuffer = new List(64); private static readonly Dictionary LastRejectLogTimes = new Dictionary(); private static readonly FieldInfo CharacterWaterLevel = AccessTools.Field(typeof(Character), "m_waterLevel"); private static readonly FieldInfo CharacterTarLevel = AccessTools.Field(typeof(Character), "m_tarLevel"); private static readonly FieldInfo CharacterLiquidLevel = AccessTools.Field(typeof(Character), "m_liquidLevel"); private static readonly FieldInfo CharacterCachedLiquidDepth = AccessTools.Field(typeof(Character), "m_cashedInLiquidDepth"); private static readonly FieldInfo CharacterSwimTimer = AccessTools.Field(typeof(Character), "m_swimTimer"); private static readonly FieldInfo CharacterLiquids = AccessTools.Field(typeof(Character), "m_liquids"); private static readonly FieldInfo FloatingWaterLevel = AccessTools.Field(typeof(Floating), "m_waterLevel"); private static readonly FieldInfo FloatingTarLevel = AccessTools.Field(typeof(Floating), "m_tarLevel"); private static readonly FieldInfo FloatingLiquids = AccessTools.Field(typeof(Floating), "m_liquids"); private static readonly FieldInfo WaterVolumeInWater = AccessTools.Field(typeof(WaterVolume), "m_inWater"); private static readonly FieldInfo LiquidSurfaceInWater = AccessTools.Field(typeof(LiquidSurface), "m_inWater"); private static readonly MethodInfo? LiquidSurfaceGetLiquidType = AccessTools.Method(typeof(LiquidSurface), "GetLiquidType", (Type[])null, (Type[])null); private static int _waterVolumeMask; private static float _nextPlayerRecoveryProbeTime; internal static bool ShouldRejectLiquidLevel(Component target, float level, LiquidType type, Component liquidObj, out bool shouldClearTarget) { //IL_0066: Unknown result type (might be due to invalid IL or missing references) //IL_0071: Unknown result type (might be due to invalid IL or missing references) //IL_007d: Unknown result type (might be due to invalid IL or missing references) //IL_0053: Unknown result type (might be due to invalid IL or missing references) shouldClearTarget = false; if (!LiquidStuckFixPlugin.LiquidEnabled.Value) { return false; } if (level <= -9999f) { return false; } if (IsUnityNull(target) || IsUnityNull(liquidObj)) { return false; } Component val = TryGetLiquidSourceComponent(liquidObj); if (IsUnityNull(val)) { return false; } Character val2 = (Character)(object)((target is Character) ? target : null); if (val2 != null) { try { if (val2.IsTeleporting()) { LogRejectedLiquidLevel(target, level, type, liquidObj, RejectReason.TargetTeleporting); return true; } } catch { } } if (!SourceStillTouchesTarget(val, target, type)) { shouldClearTarget = !HasActualLiquidOverlap(target, type); LogRejectedLiquidLevel(target, level, type, liquidObj, RejectReason.SourceNoLongerOverlapsTarget); return true; } return false; } internal static void RecoverLocalPlayerLiquidState(Character character) { if (!LiquidStuckFixPlugin.LiquidEnabled.Value || IsUnityNull(character)) { return; } Player val = (Player)(object)((character is Player) ? character : null); if (val == null || IsUnityNull(Player.m_localPlayer) || (Object)(object)val != (Object)(object)Player.m_localPlayer || ((Character)val).IsTeleporting() || GetFloat(CharacterLiquidLevel, val, -10000f) <= -9999f) { return; } float realtimeSinceStartup = Time.realtimeSinceStartup; if (!(realtimeSinceStartup < _nextPlayerRecoveryProbeTime)) { _nextPlayerRecoveryProbeTime = realtimeSinceStartup + 0.5f; if (!HasActualLiquidOverlap((Component)(object)val, (LiquidType)10)) { ClearCharacter((Character)(object)val, (LiquidType)10, resetCounter: true, forceStopSwimming: true); DebugLog("Recovered stale local player liquid state: " + SafeName(val)); } } } internal static void PurgeStaleEntries(Component source, LiquidType sourceType) { //IL_005c: Unknown result type (might be due to invalid IL or missing references) //IL_00cf: Unknown result type (might be due to invalid IL or missing references) //IL_00b2: Unknown result type (might be due to invalid IL or missing references) //IL_00b9: Unknown result type (might be due to invalid IL or missing references) //IL_0089: Unknown result type (might be due to invalid IL or missing references) //IL_00c2: Unknown result type (might be due to invalid IL or missing references) if (!LiquidStuckFixPlugin.LiquidEnabled.Value || IsUnityNull(source)) { return; } IList inWaterList = GetInWaterList(source); if (inWaterList == null || inWaterList.Count == 0) { return; } for (int num = inWaterList.Count - 1; num >= 0; num--) { object obj = inWaterList[num]; bool flag = IsUnityNull(obj); if (!flag) { Component val = (Component)((obj is Component) ? obj : null); if (!IsUnityNull(val)) { flag = !SourceStillTouchesTarget(source, val, sourceType); } else { IWaterInteractable val2 = (IWaterInteractable)((obj is IWaterInteractable) ? obj : null); if (val2 != null) { Transform val3 = TryGetInteractableTransform(val2); flag = IsUnityNull(val3) || !SourceBoundsContainPoint(source, val3.position); } else { flag = true; } } } if (flag) { try { inWaterList.RemoveAt(num); if (!IsUnityNull(obj)) { DecrementInteractable(obj, sourceType); if (!TargetHasActualLiquidOverlap(obj, sourceType)) { ClearTargetLiquid(obj, sourceType, resetCounter: true, forceStopSwimming: true); } } DebugLog($"Purged stale {sourceType} entry from {SafeName(source)} -> {SafeName(obj)}"); } catch (Exception ex) { LiquidStuckFixPlugin.Log.LogWarning((object)("Failed to purge stale liquid entry from " + SafeName(source) + ": " + ex.Message)); } } } } internal static bool SafeIncrement(object target, LiquidType type, ref int result) { //IL_0015: Unknown result type (might be due to invalid IL or missing references) //IL_0017: Expected I4, but got Unknown if (!LiquidStuckFixPlugin.LiquidEnabled.Value) { return true; } int[] liquidCounters = GetLiquidCounters(target); int num = (int)type; if (liquidCounters == null || num < 0 || num >= liquidCounters.Length) { return true; } liquidCounters[num] = Math.Max(0, liquidCounters[num]) + 1; result = liquidCounters[num]; return false; } internal static bool SafeDecrement(object target, LiquidType type, ref int result) { //IL_0015: Unknown result type (might be due to invalid IL or missing references) //IL_0017: Expected I4, but got Unknown if (!LiquidStuckFixPlugin.LiquidEnabled.Value) { return true; } int[] liquidCounters = GetLiquidCounters(target); int num = (int)type; if (liquidCounters == null || num < 0 || num >= liquidCounters.Length) { return true; } liquidCounters[num] = Math.Max(0, liquidCounters[num] - 1); result = liquidCounters[num]; return false; } internal static void ClearTargetLiquid(object target, LiquidType type, bool resetCounter, bool forceStopSwimming) { //IL_0013: Unknown result type (might be due to invalid IL or missing references) //IL_0047: Unknown result type (might be due to invalid IL or missing references) //IL_002f: Unknown result type (might be due to invalid IL or missing references) Character val = (Character)((target is Character) ? target : null); if (val != null && !IsUnityNull(val)) { ClearCharacter(val, type, resetCounter, forceStopSwimming); return; } Floating val2 = (Floating)((target is Floating) ? target : null); if (val2 != null && !IsUnityNull(val2)) { ClearFloating(val2, type, resetCounter); return; } IWaterInteractable val3 = (IWaterInteractable)((target is IWaterInteractable) ? target : null); if (val3 != null) { SetInteractableLiquidLevel(val3, -10000f, type, null); } } private static void ClearCharacter(Character character, LiquidType type, bool resetCounter, bool forceStopSwimming) { //IL_000d: Unknown result type (might be due to invalid IL or missing references) //IL_00bc: Unknown result type (might be due to invalid IL or missing references) ForEachLiquidIndex(type, delegate(int index) { switch (index) { case 0: SetFloat(CharacterWaterLevel, character, -10000f); break; case 1: SetFloat(CharacterTarLevel, character, -10000f); break; } }); float num = GetFloat(CharacterWaterLevel, character, -10000f); float num2 = GetFloat(CharacterTarLevel, character, -10000f); float num3 = Mathf.Max(num, num2); SetFloat(CharacterLiquidLevel, character, num3); SetFloat(CharacterCachedLiquidDepth, character, 0f); if (forceStopSwimming && num3 <= -9999f) { float num4 = GetFloat(CharacterSwimTimer, character, 999f); SetFloat(CharacterSwimTimer, character, Mathf.Max(num4, 1f)); } if (resetCounter) { ZeroLiquidCounters(character, type); } } private static void ClearFloating(Floating floating, LiquidType type, bool resetCounter) { //IL_000d: Unknown result type (might be due to invalid IL or missing references) //IL_0028: Unknown result type (might be due to invalid IL or missing references) ForEachLiquidIndex(type, delegate(int index) { switch (index) { case 0: SetFloat(FloatingWaterLevel, floating, -10000f); break; case 1: SetFloat(FloatingTarLevel, floating, -10000f); break; } }); if (resetCounter) { ZeroLiquidCounters(floating, type); } } private static bool SourceStillTouchesTarget(Component source, Component target, LiquidType requestedType) { //IL_0010: Unknown result type (might be due to invalid IL or missing references) //IL_0013: Unknown result type (might be due to invalid IL or missing references) //IL_002d: Unknown result type (might be due to invalid IL or missing references) //IL_002e: Unknown result type (might be due to invalid IL or missing references) //IL_004f: Unknown result type (might be due to invalid IL or missing references) //IL_0094: Unknown result type (might be due to invalid IL or missing references) //IL_0099: Unknown result type (might be due to invalid IL or missing references) //IL_00ab: Unknown result type (might be due to invalid IL or missing references) LiquidType? val = TryGetSourceLiquidType(source); if (val.HasValue && !LiquidTypeMatches(requestedType, val.Value)) { return false; } if (!TryGetSourceBounds(source, out var bounds)) { return true; } Bounds val2 = bounds; float boundsPadding = GetBoundsPadding(); ((Bounds)(ref val2)).Expand(boundsPadding * 2f); Transform transform = target.transform; if (((Bounds)(ref val2)).Contains(transform.position)) { return true; } GetColliders(target, includeChildren: true, TargetColliderBuffer); foreach (Collider item in TargetColliderBuffer) { if (!IsUnityNull(item) && item.enabled) { Bounds bounds2 = item.bounds; ((Bounds)(ref bounds2)).Expand(boundsPadding * 2f); if (((Bounds)(ref val2)).Intersects(bounds2)) { return true; } } } return false; } private static bool TargetHasActualLiquidOverlap(object target, LiquidType requestedType) { //IL_0013: Unknown result type (might be due to invalid IL or missing references) Component val = (Component)((target is Component) ? target : null); if (val != null && !IsUnityNull(val)) { return HasActualLiquidOverlap(val, requestedType); } return false; } private static bool HasActualLiquidOverlap(Component target, LiquidType requestedType) { //IL_0061: Unknown result type (might be due to invalid IL or missing references) //IL_0068: Unknown result type (might be due to invalid IL or missing references) //IL_0072: Unknown result type (might be due to invalid IL or missing references) //IL_007e: Unknown result type (might be due to invalid IL or missing references) //IL_007f: Unknown result type (might be due to invalid IL or missing references) //IL_0025: Unknown result type (might be due to invalid IL or missing references) //IL_003b: Unknown result type (might be due to invalid IL or missing references) if (IsUnityNull(target)) { return false; } int waterVolumeMask = GetWaterVolumeMask(); if (waterVolumeMask == 0) { return true; } if (!TryGetTargetBounds(target, out var bounds)) { return AnyHitMatchesCurrentLiquid(Physics.OverlapSphereNonAlloc(target.transform.position, 1.35f, ProbeBuffer, waterVolumeMask, (QueryTriggerInteraction)2), requestedType, null); } float num = 0.35f; ((Bounds)(ref bounds)).Expand(num * 2f); return AnyHitMatchesCurrentLiquid(Physics.OverlapBoxNonAlloc(((Bounds)(ref bounds)).center, ((Bounds)(ref bounds)).extents, ProbeBuffer, Quaternion.identity, waterVolumeMask, (QueryTriggerInteraction)2), requestedType, bounds); } private static bool AnyHitMatchesCurrentLiquid(int count, LiquidType requestedType, Bounds? targetBounds) { //IL_0051: Unknown result type (might be due to invalid IL or missing references) //IL_0054: Unknown result type (might be due to invalid IL or missing references) //IL_0091: Unknown result type (might be due to invalid IL or missing references) if (count >= ProbeBuffer.Length) { return true; } int num = Math.Min(count, ProbeBuffer.Length); for (int i = 0; i < num; i++) { Collider val = ProbeBuffer[i]; if (IsUnityNull(val)) { continue; } Component val2 = TryGetLiquidSourceComponent((Component)(object)val); if (IsUnityNull(val2)) { continue; } LiquidType? val3 = TryGetSourceLiquidType(val2); if (!val3.HasValue || LiquidTypeMatches(requestedType, val3.Value)) { if (!targetBounds.HasValue) { return true; } if (!TryGetSourceBounds(val2, out var bounds)) { return true; } float num2 = 0.35f; ((Bounds)(ref bounds)).Expand(num2 * 2f); if (((Bounds)(ref bounds)).Intersects(targetBounds.Value)) { return true; } } } return false; } private static int GetWaterVolumeMask() { if (_waterVolumeMask == 0) { _waterVolumeMask = LayerMask.GetMask(new string[1] { "WaterVolume" }); } return _waterVolumeMask; } private static float GetBoundsPadding() { return Math.Max(0f, LiquidStuckFixPlugin.BoundsPadding.Value); } private static IList? GetInWaterList(Component source) { if (source is WaterVolume) { return WaterVolumeInWater?.GetValue(source) as IList; } if (source is LiquidSurface) { return LiquidSurfaceInWater?.GetValue(source) as IList; } return null; } private static bool SourceBoundsContainPoint(Component source, Vector3 point) { //IL_0020: Unknown result type (might be due to invalid IL or missing references) if (!TryGetSourceBounds(source, out var bounds)) { return true; } ((Bounds)(ref bounds)).Expand(GetBoundsPadding() * 2f); return ((Bounds)(ref bounds)).Contains(point); } private static bool TryGetSourceBounds(Component source, out Bounds bounds) { return TryGetColliderBounds(source, includeChildren: true, preferTriggerColliders: true, SourceColliderBuffer, out bounds); } private static bool TryGetTargetBounds(Component target, out Bounds bounds) { return TryGetColliderBounds(target, includeChildren: true, preferTriggerColliders: false, TargetColliderBuffer, out bounds); } private static bool TryGetColliderBounds(Component component, bool includeChildren, bool preferTriggerColliders, List buffer, out Bounds bounds) { //IL_0002: Unknown result type (might be due to invalid IL or missing references) bounds = default(Bounds); if (IsUnityNull(component)) { return false; } GetColliders(component, includeChildren, buffer); if (preferTriggerColliders && TryBuildBounds(buffer, triggerOnly: true, out bounds)) { return true; } return TryBuildBounds(buffer, triggerOnly: false, out bounds); } private static void GetColliders(Component component, bool includeChildren, List buffer) { buffer.Clear(); if (includeChildren) { component.GetComponentsInChildren(true, buffer); } else { component.GetComponents(buffer); } } private static bool TryBuildBounds(List colliders, bool triggerOnly, out Bounds bounds) { //IL_0001: Unknown result type (might be due to invalid IL or missing references) //IL_004a: Unknown result type (might be due to invalid IL or missing references) //IL_003a: Unknown result type (might be due to invalid IL or missing references) //IL_003f: Unknown result type (might be due to invalid IL or missing references) bounds = default(Bounds); bool flag = false; foreach (Collider collider in colliders) { if (!IsUnityNull(collider) && collider.enabled && (!triggerOnly || collider.isTrigger)) { if (!flag) { bounds = collider.bounds; flag = true; } else { ((Bounds)(ref bounds)).Encapsulate(collider.bounds); } } } return flag; } private static Component? TryGetLiquidSourceComponent(Component source) { if (IsUnityNull(source)) { return null; } if (source is WaterVolume || source is LiquidSurface) { return source; } WaterVolume val = source.GetComponent() ?? source.GetComponentInParent() ?? source.GetComponentInChildren(); if (!IsUnityNull(val)) { return (Component?)(object)val; } LiquidSurface val2 = source.GetComponent() ?? source.GetComponentInParent() ?? source.GetComponentInChildren(); if (!IsUnityNull(val2)) { return (Component?)(object)val2; } return null; } internal static LiquidType? TryGetSourceLiquidType(Component source) { //IL_0058: Unknown result type (might be due to invalid IL or missing references) Component val = TryGetLiquidSourceComponent(source); if (IsUnityNull(val)) { return null; } if (val is WaterVolume) { return (LiquidType)0; } if (!(val is LiquidSurface)) { return null; } try { if (LiquidSurfaceGetLiquidType != null) { return (LiquidType)LiquidSurfaceGetLiquidType.Invoke(val, Array.Empty()); } } catch { } return null; } private static bool LiquidTypeMatches(LiquidType requested, LiquidType source) { //IL_0000: Unknown result type (might be due to invalid IL or missing references) //IL_0003: Invalid comparison between Unknown and I4 //IL_0005: Unknown result type (might be due to invalid IL or missing references) //IL_0008: Invalid comparison between Unknown and I4 //IL_000a: Unknown result type (might be due to invalid IL or missing references) //IL_000b: Unknown result type (might be due to invalid IL or missing references) if ((int)requested != 10 && (int)source != 10) { return requested == source; } return true; } private static Transform? TryGetInteractableTransform(IWaterInteractable interactable) { try { return interactable.GetTransform(); } catch { } return null; } private static void DecrementInteractable(object item, LiquidType type) { //IL_000d: Unknown result type (might be due to invalid IL or missing references) IWaterInteractable val = (IWaterInteractable)((item is IWaterInteractable) ? item : null); if (val == null) { return; } try { val.Decrement(type); } catch { } } private static void SetInteractableLiquidLevel(IWaterInteractable interactable, float level, LiquidType type, Component? source) { //IL_0002: Unknown result type (might be due to invalid IL or missing references) try { interactable.SetLiquidLevel(level, type, source); } catch { } } private static int[]? GetLiquidCounters(object target) { try { Character val = (Character)((target is Character) ? target : null); if (val != null && !IsUnityNull(val)) { return CharacterLiquids?.GetValue(val) as int[]; } Floating val2 = (Floating)((target is Floating) ? target : null); if (val2 != null && !IsUnityNull(val2)) { return FloatingLiquids?.GetValue(val2) as int[]; } return null; } catch { return null; } } private static void ZeroLiquidCounters(object target, LiquidType type) { //IL_001b: Unknown result type (might be due to invalid IL or missing references) int[] counters = GetLiquidCounters(target); if (counters == null) { return; } ForEachLiquidIndex(type, delegate(int index) { if (index >= 0 && index < counters.Length) { counters[index] = 0; } }); } private static void ForEachLiquidIndex(LiquidType type, Action action) { //IL_0000: Unknown result type (might be due to invalid IL or missing references) //IL_0003: Invalid comparison between Unknown and I4 //IL_0014: Unknown result type (might be due to invalid IL or missing references) //IL_0016: Expected I4, but got Unknown if ((int)type == 10) { action(0); action(1); return; } int num = (int)type; if (num == 0 || num == 1) { action(num); } } private static float GetFloat(FieldInfo field, object instance, float fallback) { try { return (field?.GetValue(instance) is float num) ? num : fallback; } catch { return fallback; } } private static void SetFloat(FieldInfo field, object instance, float value) { try { field?.SetValue(instance, value); } catch { } } private static bool IsUnityNull(object? obj) { if (obj == null) { return true; } Object val = (Object)((obj is Object) ? obj : null); if (val != null) { return val == (Object)null; } return false; } private static string SafeName(object? obj) { if (IsUnityNull(obj)) { return ""; } Object val = (Object)((obj is Object) ? obj : null); if (val != null) { return val.name; } return obj.GetType().Name; } private static string SafeTypeName(object? obj) { if (!IsUnityNull(obj)) { return obj.GetType().Name; } return ""; } private static string SafePosition(Component? component) { //IL_0015: Unknown result type (might be due to invalid IL or missing references) //IL_001a: Unknown result type (might be due to invalid IL or missing references) //IL_0020: Unknown result type (might be due to invalid IL or missing references) //IL_002b: Unknown result type (might be due to invalid IL or missing references) //IL_0036: Unknown result type (might be due to invalid IL or missing references) if (IsUnityNull(component)) { return ""; } try { Vector3 position = component.transform.position; return $"({position.x:0.##}, {position.y:0.##}, {position.z:0.##})"; } catch { return ""; } } private static string RejectReasonText(RejectReason reason) { return reason switch { RejectReason.TargetTeleporting => "target is teleporting", RejectReason.SourceNoLongerOverlapsTarget => "source no longer overlaps target", _ => reason.ToString(), }; } private static bool ShouldLogRejectedLiquidLevel(Component target, LiquidType type, Component liquidObj, RejectReason reason) { //IL_002d: Unknown result type (might be due to invalid IL or missing references) if (!LiquidStuckFixPlugin.DebugLogging.Value) { return false; } if (LastRejectLogTimes.Count > 2048) { LastRejectLogTimes.Clear(); } RejectLogKey key = new RejectLogKey(target, liquidObj, type, reason); float realtimeSinceStartup = Time.realtimeSinceStartup; if (LastRejectLogTimes.TryGetValue(key, out var value) && realtimeSinceStartup - value < 1f) { return false; } LastRejectLogTimes[key] = realtimeSinceStartup; return true; } private static void LogRejectedLiquidLevel(Component target, float level, LiquidType type, Component liquidObj, RejectReason reason) { //IL_0001: Unknown result type (might be due to invalid IL or missing references) //IL_00bb: Unknown result type (might be due to invalid IL or missing references) if (ShouldLogRejectedLiquidLevel(target, type, liquidObj, reason)) { Component obj = TryGetLiquidSourceComponent(liquidObj); DebugLog("Rejected SetLiquidLevel: target=" + SafeName(target) + " targetType=" + SafeTypeName(target) + " targetPos=" + SafePosition(target) + " source=" + SafeName(liquidObj) + " sourceType=" + SafeTypeName(liquidObj) + " sourcePos=" + SafePosition(liquidObj) + " recognizedSource=" + SafeName(obj) + " recognizedSourceType=" + SafeTypeName(obj) + " " + $"liquid={type} level={level:0.###} reason={RejectReasonText(reason)}"); } } private static void DebugLog(string message) { if (LiquidStuckFixPlugin.DebugLogging.Value) { LiquidStuckFixPlugin.Log.LogInfo((object)message); } } } [HarmonyPatch(typeof(Character), "SetLiquidLevel")] internal static class CharacterSetLiquidLevelPatch { private static bool Prefix(Character __instance, float level, LiquidType type, Component liquidObj) { //IL_0002: Unknown result type (might be due to invalid IL or missing references) //IL_0011: Unknown result type (might be due to invalid IL or missing references) try { if (LiquidGuard.ShouldRejectLiquidLevel((Component)(object)__instance, level, type, liquidObj, out var shouldClearTarget)) { if (shouldClearTarget) { LiquidGuard.ClearTargetLiquid(__instance, type, resetCounter: true, forceStopSwimming: true); } return false; } } catch (Exception ex) { LiquidStuckFixPlugin.Log.LogWarning((object)("Character.SetLiquidLevel guard failed: " + ex.Message)); } return true; } } [HarmonyPatch(typeof(Floating), "SetLiquidLevel")] internal static class FloatingSetLiquidLevelPatch { private static bool Prefix(Floating __instance, float level, LiquidType type, Component liquidObj) { //IL_0002: Unknown result type (might be due to invalid IL or missing references) //IL_0011: Unknown result type (might be due to invalid IL or missing references) try { if (LiquidGuard.ShouldRejectLiquidLevel((Component)(object)__instance, level, type, liquidObj, out var shouldClearTarget)) { if (shouldClearTarget) { LiquidGuard.ClearTargetLiquid(__instance, type, resetCounter: true, forceStopSwimming: false); } return false; } } catch (Exception ex) { LiquidStuckFixPlugin.Log.LogWarning((object)("Floating.SetLiquidLevel guard failed: " + ex.Message)); } return true; } } [HarmonyPatch(typeof(WaterVolume), "UpdateFloaters")] internal static class WaterVolumeUpdateFloatersPatch { private static void Prefix(WaterVolume __instance) { try { LiquidGuard.PurgeStaleEntries((Component)(object)__instance, (LiquidType)0); } catch (Exception ex) { LiquidStuckFixPlugin.Log.LogWarning((object)("WaterVolume.UpdateFloaters purge failed: " + ex.Message)); } } } [HarmonyPatch(typeof(LiquidSurface), "UpdateFloaters")] internal static class LiquidSurfaceUpdateFloatersPatch { private static void Prefix(LiquidSurface __instance) { //IL_0013: Unknown result type (might be due to invalid IL or missing references) try { LiquidType? val = LiquidGuard.TryGetSourceLiquidType((Component)(object)__instance); if (val.HasValue) { LiquidGuard.PurgeStaleEntries((Component)(object)__instance, val.Value); } } catch (Exception ex) { LiquidStuckFixPlugin.Log.LogWarning((object)("LiquidSurface.UpdateFloaters purge failed: " + ex.Message)); } } } [HarmonyPatch(typeof(Character), "Increment")] internal static class CharacterIncrementPatch { private static bool Prefix(Character __instance, LiquidType type, ref int __result) { //IL_0001: Unknown result type (might be due to invalid IL or missing references) return LiquidGuard.SafeIncrement(__instance, type, ref __result); } } [HarmonyPatch(typeof(Character), "Decrement")] internal static class CharacterDecrementPatch { private static bool Prefix(Character __instance, LiquidType type, ref int __result) { //IL_0001: Unknown result type (might be due to invalid IL or missing references) return LiquidGuard.SafeDecrement(__instance, type, ref __result); } } [HarmonyPatch(typeof(Floating), "Increment")] internal static class FloatingIncrementPatch { private static bool Prefix(Floating __instance, LiquidType type, ref int __result) { //IL_0001: Unknown result type (might be due to invalid IL or missing references) return LiquidGuard.SafeIncrement(__instance, type, ref __result); } } [HarmonyPatch(typeof(Floating), "Decrement")] internal static class FloatingDecrementPatch { private static bool Prefix(Floating __instance, LiquidType type, ref int __result) { //IL_0001: Unknown result type (might be due to invalid IL or missing references) return LiquidGuard.SafeDecrement(__instance, type, ref __result); } } [HarmonyPatch(typeof(Character), "UpdateWater")] internal static class CharacterUpdateWaterPatch { private static void Postfix(Character __instance) { try { LiquidGuard.RecoverLocalPlayerLiquidState(__instance); } catch (Exception ex) { LiquidStuckFixPlugin.Log.LogWarning((object)("Character.UpdateWater recovery failed: " + ex.Message)); } } } [HarmonyPatch(typeof(Player), "TeleportTo")] internal static class PlayerTeleportToPatch { private static void Postfix(Player __instance, bool __result) { if (!LiquidStuckFixPlugin.LiquidEnabled.Value || !__result) { return; } try { LiquidGuard.ClearTargetLiquid(__instance, (LiquidType)10, resetCounter: true, forceStopSwimming: true); } catch (Exception ex) { LiquidStuckFixPlugin.Log.LogWarning((object)("Player.TeleportTo liquid reset failed: " + ex.Message)); } } } [BepInPlugin("sighsorry.blastedswimmingtarredbugfix", "BlastedSwimmingTarredBugFix", "1.2.0")] [BepInDependency(/*Could not decode attribute arguments.*/)] [BepInDependency(/*Could not decode attribute arguments.*/)] [BepInDependency(/*Could not decode attribute arguments.*/)] public sealed class LiquidStuckFixPlugin : BaseUnityPlugin { public const string ModGuid = "sighsorry.blastedswimmingtarredbugfix"; public const string ModName = "BlastedSwimmingTarredBugFix"; public const string ModVersion = "1.2.0"; internal const string MyPitsDontLeakGuid = "Azumatt.MyPitsDontLeak"; internal const string ScenicGuid = "redseiko.valheim.scenic"; internal const string MagicPluginGuid = "blacks7ar.MagicPlugin"; private const string LiquidHarmonyId = "sighsorry.blastedswimmingtarredbugfix.LiquidState"; private const string LiquidVolumeHarmonyId = "sighsorry.blastedswimmingtarredbugfix.LiquidVolumeLifetime"; private const string SceneCleanupHarmonyId = "sighsorry.blastedswimmingtarredbugfix.SceneCleanup"; private const string CharacterLifecycleHarmonyId = "sighsorry.blastedswimmingtarredbugfix.CharacterLifecycle"; private const string MagicPluginHarmonyId = "sighsorry.blastedswimmingtarredbugfix.MagicPlugin"; private static readonly ConfigSync SyncedConfig = new ConfigSync("sighsorry.blastedswimmingtarredbugfix") { DisplayName = "BlastedSwimmingTarredBugFix", CurrentVersion = "1.2.0", MinimumRequiredVersion = "1.2.0", ModRequired = true }; private Harmony? _liquidHarmony; private Harmony? _liquidVolumeHarmony; private Harmony? _sceneCleanupHarmony; private Harmony? _characterLifecycleHarmony; private Harmony? _magicPluginHarmony; internal static ManualLogSource Log { get; private set; } = null; internal static ManualLogSource ModLogger => Log; internal static ConfigEntry LockConfiguration { get; private set; } = null; internal static ConfigEntry LiquidEnabled { get; private set; } = null; internal static ConfigEntry BoundsPadding { get; private set; } = null; internal static ConfigEntry DebugLogging { get; private set; } = null; private void Awake() { Log = ((BaseUnityPlugin)this).Logger; BindConfiguration(); InstallLiquidAndSceneModules(); InstallCompatibilityModules(); Log.LogInfo((object)"BlastedSwimmingTarredBugFix 1.2.0 loaded"); } private void Update() { if (_characterLifecycleHarmony != null) { CreatureRemovalTracker.Update(); } } private void OnDestroy() { StopMagicPluginModule(); StopCharacterLifecycleModule(); StopSceneCleanupModule(); StopLiquidVolumeModule(); StopLiquidStateModule(); } private void BindConfiguration() { LockConfiguration = ((BaseUnityPlugin)this).Config.Bind("Synchronization", "LockConfiguration", true, "Lock the synchronized liquid settings to the server's values."); SyncedConfig.AddLockingConfigEntry(LockConfiguration); LiquidEnabled = BindSynced("Liquid", "Enabled", defaultValue: true, "Enable stale water and tar state protection."); BoundsPadding = BindSynced("Liquid", "BoundsPadding", 0.75f, "Meters added to liquid source and target bounds while validating stale water or tar state."); DebugLogging = ((BaseUnityPlugin)this).Config.Bind("Diagnostics", "DebugLogging", false, "Log rejected liquid updates, stale purges, and compatibility diagnostics. [Not Synced with Server]"); } private ConfigEntry BindSynced(string section, string key, T defaultValue, string description) { ConfigEntry val = ((BaseUnityPlugin)this).Config.Bind(section, key, defaultValue, description + " [Synced with Server]"); SyncedConfig.AddConfigEntry(val).SynchronizedConfig = true; return val; } private void InstallLiquidAndSceneModules() { //IL_000b: Unknown result type (might be due to invalid IL or missing references) //IL_0015: Expected O, but got Unknown //IL_0027: Unknown result type (might be due to invalid IL or missing references) //IL_0031: Expected O, but got Unknown //IL_0042: Unknown result type (might be due to invalid IL or missing references) //IL_004c: Expected O, but got Unknown RuntimePatchCompatibility.Initialize(); _liquidHarmony = new Harmony("sighsorry.blastedswimmingtarredbugfix.LiquidState"); LiquidStateModule.TryInstall(_liquidHarmony); _liquidVolumeHarmony = new Harmony("sighsorry.blastedswimmingtarredbugfix.LiquidVolumeLifetime"); LiquidVolumeLifetimeInstaller.TryInstall(_liquidVolumeHarmony); _sceneCleanupHarmony = new Harmony("sighsorry.blastedswimmingtarredbugfix.SceneCleanup"); SceneCleanupInstaller.TryInstall(_sceneCleanupHarmony); } private void InstallCompatibilityModules() { //IL_0006: Unknown result type (might be due to invalid IL or missing references) //IL_0010: Expected O, but got Unknown //IL_003b: Unknown result type (might be due to invalid IL or missing references) //IL_0045: Expected O, but got Unknown _characterLifecycleHarmony = new Harmony("sighsorry.blastedswimmingtarredbugfix.CharacterLifecycle"); try { CharacterLifecycleCompatibility.TryInstall(_characterLifecycleHarmony); } catch (Exception arg) { Log.LogError((object)$"Character lifecycle compatibility initialization failed safely: {arg}"); } _magicPluginHarmony = new Harmony("sighsorry.blastedswimmingtarredbugfix.MagicPlugin"); try { MagicPluginCompatibility.TryInstall(_magicPluginHarmony); } catch (Exception arg2) { Log.LogError((object)$"MagicPlugin compatibility initialization failed safely: {arg2}"); } } private void StopMagicPluginModule() { if (_magicPluginHarmony == null) { return; } if (!TryUnpatch(_magicPluginHarmony, "MagicPlugin")) { Log.LogError((object)"Skipped restoring the original MagicPlugin patches because BlastedSwimmingTarredBugFix replacement removal failed."); return; } try { MagicPluginCompatibility.RestoreExternalPatchesAndReset(); _magicPluginHarmony = null; } catch (Exception arg) { Log.LogError((object)$"MagicPlugin compatibility state could not be restored: {arg}"); } } private void StopCharacterLifecycleModule() { CreatureRemovalTracker.Clear(); if (_characterLifecycleHarmony != null && TryUnpatch(_characterLifecycleHarmony, "Character lifecycle")) { CharacterLifecycleCompatibility.ResetInstallationState(); _characterLifecycleHarmony = null; } } private void StopSceneCleanupModule() { if (_sceneCleanupHarmony != null && TryUnpatch(_sceneCleanupHarmony, "scene cleanup")) { SceneCleanupInstaller.ResetInstallationState(); _sceneCleanupHarmony = null; } } private void StopLiquidVolumeModule() { if (_liquidVolumeHarmony != null && TryUnpatch(_liquidVolumeHarmony, "LiquidVolume lifetime")) { LiquidVolumeLifetimeInstaller.ResetInstallationState(); _liquidVolumeHarmony = null; } } private void StopLiquidStateModule() { if (_liquidHarmony == null) { return; } try { if (LiquidStateModule.Uninstall(_liquidHarmony)) { _liquidHarmony = null; } } catch (Exception arg) { Log.LogError((object)$"Liquid state patches could not be fully removed: {arg}"); } } internal static bool TryUnpatch(Harmony harmony, string capability) { Exception ex = null; try { harmony.UnpatchSelf(); } catch (Exception ex2) { ex = ex2; } try { using IEnumerator enumerator = harmony.GetPatchedMethods().GetEnumerator(); if (enumerator.MoveNext()) { MethodBase current = enumerator.Current; string text = ((ex == null) ? string.Empty : $" UnpatchSelf also reported: {ex}"); string text2 = current.DeclaringType?.FullName ?? ""; Log.LogError((object)(capability + " patches could not be fully removed; BlastedSwimmingTarredBugFix still owns a patch on " + text2 + "." + current.Name + "." + text)); return false; } } catch (Exception arg) { Log.LogError((object)($"Could not verify that {capability} patches were fully removed: {arg}" + ((ex == null) ? string.Empty : $" UnpatchSelf also reported: {ex}"))); return false; } if (ex != null) { Log.LogWarning((object)(capability + " patch removal reported an error, but verification found no remaining owned patches: " + ex.Message)); } return true; } } internal static class MagicPluginCompatibility { private sealed class ProjectileConfiguration { internal ConfigEntry MagicVelocity { get; } internal ConfigEntry MagicAccuracy { get; } internal ConfigEntry SurtlingStaffAoe { get; } internal ConfigEntry EikthyrStaffAoe { get; } internal ConfigEntry LightningStaffAoe { get; } internal ConfigEntry PoisonStaffAoe { get; } internal ConfigEntry ArcticStaffAoe { get; } internal ConfigEntry ModersAoeRange { get; } internal ConfigEntry ModersChopDamage { get; } internal ConfigEntry ModersFrostDamage { get; } internal ConfigEntry ModersPickaxeDamage { get; } internal ConfigEntry ModersPierceDamage { get; } internal ConfigEntry YagluthAoeRange { get; } internal ConfigEntry YagluthBluntDamage { get; } internal ConfigEntry YagluthChopDamage { get; } internal ConfigEntry YagluthFireDamage { get; } internal ConfigEntry YagluthPickaxeDamage { get; } private ProjectileConfiguration(ConfigEntry magicVelocity, ConfigEntry magicAccuracy, ConfigEntry surtlingStaffAoe, ConfigEntry eikthyrStaffAoe, ConfigEntry lightningStaffAoe, ConfigEntry poisonStaffAoe, ConfigEntry arcticStaffAoe, ConfigEntry modersAoeRange, ConfigEntry modersChopDamage, ConfigEntry modersFrostDamage, ConfigEntry modersPickaxeDamage, ConfigEntry modersPierceDamage, ConfigEntry yagluthAoeRange, ConfigEntry yagluthBluntDamage, ConfigEntry yagluthChopDamage, ConfigEntry yagluthFireDamage, ConfigEntry yagluthPickaxeDamage) { MagicVelocity = magicVelocity; MagicAccuracy = magicAccuracy; SurtlingStaffAoe = surtlingStaffAoe; EikthyrStaffAoe = eikthyrStaffAoe; LightningStaffAoe = lightningStaffAoe; PoisonStaffAoe = poisonStaffAoe; ArcticStaffAoe = arcticStaffAoe; ModersAoeRange = modersAoeRange; ModersChopDamage = modersChopDamage; ModersFrostDamage = modersFrostDamage; ModersPickaxeDamage = modersPickaxeDamage; ModersPierceDamage = modersPierceDamage; YagluthAoeRange = yagluthAoeRange; YagluthBluntDamage = yagluthBluntDamage; YagluthChopDamage = yagluthChopDamage; YagluthFireDamage = yagluthFireDamage; YagluthPickaxeDamage = yagluthPickaxeDamage; } internal static bool TryCreate(Type? pluginType, Type? configType, out ProjectileConfiguration? configuration, out string missingField) { configuration = null; missingField = "MagicPlugin.Plugin"; if (pluginType == null) { return false; } missingField = "MagicPlugin.Functions.ConfigSetup"; if (configType == null) { return false; } if (!TryGetFloatConfig(pluginType, "_magicVelocity", out ConfigEntry entry, out missingField) || !TryGetFloatConfig(pluginType, "_magciAccuracy", out ConfigEntry entry2, out missingField) || !TryGetFloatConfig(configType, "_surtlingStaffAOE", out ConfigEntry entry3, out missingField) || !TryGetFloatConfig(configType, "_eikthyrStaffAOE", out ConfigEntry entry4, out missingField) || !TryGetFloatConfig(configType, "_lightningStaffAOE", out ConfigEntry entry5, out missingField) || !TryGetFloatConfig(configType, "_poisonStaffAOE", out ConfigEntry entry6, out missingField) || !TryGetFloatConfig(configType, "_arcticStaffAOE", out ConfigEntry entry7, out missingField) || !TryGetFloatConfig(configType, "_modersAoeRange", out ConfigEntry entry8, out missingField) || !TryGetFloatConfig(configType, "_modersChopDamage", out ConfigEntry entry9, out missingField) || !TryGetFloatConfig(configType, "_modersFrostDamage", out ConfigEntry entry10, out missingField) || !TryGetFloatConfig(configType, "_modersPickaxeDamage", out ConfigEntry entry11, out missingField) || !TryGetFloatConfig(configType, "_modersPierceDamage", out ConfigEntry entry12, out missingField) || !TryGetFloatConfig(configType, "_yagluthAoeRange", out ConfigEntry entry13, out missingField) || !TryGetFloatConfig(configType, "_yagluthBluntDamage", out ConfigEntry entry14, out missingField) || !TryGetFloatConfig(configType, "_yagluthChopDamage", out ConfigEntry entry15, out missingField) || !TryGetFloatConfig(configType, "_yagluthFireDamage", out ConfigEntry entry16, out missingField) || !TryGetFloatConfig(configType, "_yagluthPickaxeDamage", out ConfigEntry entry17, out missingField)) { return false; } configuration = new ProjectileConfiguration(entry, entry2, entry3, entry4, entry5, entry6, entry7, entry8, entry9, entry10, entry11, entry12, entry13, entry14, entry15, entry16, entry17); return true; } private static bool TryGetFloatConfig(Type ownerType, string fieldName, out ConfigEntry entry, out string missingField) { missingField = ownerType.FullName + "." + fieldName; FieldInfo fieldInfo = AccessTools.Field(ownerType, fieldName); if (fieldInfo == null || !fieldInfo.IsStatic || fieldInfo.FieldType != typeof(ConfigEntry) || !(fieldInfo.GetValue(null) is ConfigEntry val)) { entry = null; return false; } entry = val; return true; } } private sealed class PatchReplacement { internal MethodInfo Original { get; } internal Patch ExternalPatch { get; } internal HarmonyPatchType PatchType { get; } internal PatchReplacement(MethodInfo original, Patch externalPatch, HarmonyPatchType patchType) { //IL_0015: Unknown result type (might be due to invalid IL or missing references) //IL_0016: Unknown result type (might be due to invalid IL or missing references) Original = original; ExternalPatch = externalPatch; PatchType = patchType; } } private const string PluginTypeName = "MagicPlugin.Plugin"; private const string ConfigTypeName = "MagicPlugin.Functions.ConfigSetup"; private const string AttackPatchTypeName = "MagicPlugin.Patches.AttackPatch"; private const string PlayerPatchTypeName = "MagicPlugin.Patches.PlayerPatch"; private static ProjectileConfiguration? _projectileConfiguration; private static bool _projectilePatchInstalled; private static bool _teleportPatchInstalled; private static bool _registryGuardInstalled; private static bool _reportedProjectileRuntimeError; private static bool _reportedTeleportRuntimeError; private static bool _reportedRegistryRuntimeError; private static PatchReplacement? _projectileReplacement; private static PatchReplacement? _teleportReplacement; private static FieldRef? _characterNViewAccessor; private static FieldRef? _tameableMonsterAiAccessor; internal static void TryInstall(Harmony harmony) { if (!Chainloader.PluginInfos.TryGetValue("blacks7ar.MagicPlugin", out var value)) { LiquidStuckFixPlugin.ModLogger.LogDebug((object)"MagicPlugin is not loaded; MagicPlugin-specific compatibility fixes are inactive."); return; } Assembly magicAssembly = ((object)value.Instance)?.GetType().Assembly ?? FindAssemblyWithType("MagicPlugin.Plugin"); if (magicAssembly == null) { LiquidStuckFixPlugin.ModLogger.LogWarning((object)"MagicPlugin compatibility skipped: the plugin assembly could not be resolved."); return; } string version = value.Metadata.Version?.ToString() ?? "unknown"; TryInstallCapability("projectile compatibility", delegate { TryInstallProjectilePatch(harmony, magicAssembly, version); }); TryInstallCapability("teleport compatibility", delegate { TryInstallTeleportPatch(harmony, magicAssembly, version); }); TryInstallCapability("Character registry guard", delegate { TryInstallRegistryGuard(harmony, magicAssembly, version); }); } internal static void RestoreExternalPatchesAndReset() { RestoreExternalPatch(_projectileReplacement); RestoreExternalPatch(_teleportReplacement); _projectileConfiguration = null; _projectileReplacement = null; _teleportReplacement = null; _characterNViewAccessor = null; _tameableMonsterAiAccessor = null; _projectilePatchInstalled = false; _teleportPatchInstalled = false; _registryGuardInstalled = false; _reportedProjectileRuntimeError = false; _reportedTeleportRuntimeError = false; _reportedRegistryRuntimeError = false; } private static void TryInstallProjectilePatch(Harmony harmony, Assembly magicAssembly, string version) { if (_projectilePatchInstalled) { return; } MethodInfo methodInfo = AccessTools.DeclaredMethod(typeof(Attack), "FireProjectileBurst", (Type[])null, (Type[])null); MethodInfo methodInfo2 = magicAssembly.GetType("MagicPlugin.Patches.AttackPatch", throwOnError: false)?.GetMethod("FireProjectileBurst_Prefix", BindingFlags.Static | BindingFlags.Public | BindingFlags.NonPublic, null, new Type[1] { typeof(Attack) }, null); if (methodInfo == null || methodInfo2 == null || methodInfo2.ReturnType != typeof(bool)) { LiquidStuckFixPlugin.ModLogger.LogWarning((object)"MagicPlugin projectile compatibility skipped: the expected FireProjectileBurst patch structure was not found."); return; } Patch val = FindOwnedPatch(methodInfo, (HarmonyPatchType)1, methodInfo2); if (val == null) { LiquidStuckFixPlugin.ModLogger.LogWarning((object)"MagicPlugin projectile compatibility skipped: the exact MagicPlugin FireProjectileBurst prefix is not installed."); return; } Type? type = magicAssembly.GetType("MagicPlugin.Plugin", throwOnError: false); Type type2 = magicAssembly.GetType("MagicPlugin.Functions.ConfigSetup", throwOnError: false); if (!ProjectileConfiguration.TryCreate(type, type2, out ProjectileConfiguration configuration, out string missingField)) { LiquidStuckFixPlugin.ModLogger.LogWarning((object)("MagicPlugin projectile compatibility skipped: required float config '" + missingField + "' was not found.")); return; } MethodInfo methodInfo3 = AccessTools.DeclaredMethod(typeof(MagicPluginCompatibility), "FireProjectileBurstPrefix", (Type[])null, (Type[])null); string failure = "the BlastedSwimmingTarredBugFix replacement prefix was not found."; if (methodInfo3 == null || !TryReplacePatch(harmony, methodInfo, val, methodInfo3, (HarmonyPatchType)1, out failure)) { LiquidStuckFixPlugin.ModLogger.LogWarning((object)("MagicPlugin projectile compatibility skipped: " + failure)); return; } _projectileConfiguration = configuration; _projectileReplacement = new PatchReplacement(methodInfo, val, (HarmonyPatchType)1); _projectilePatchInstalled = true; LiquidStuckFixPlugin.ModLogger.LogInfo((object)("Installed MagicPlugin FireProjectileBurst compatibility for MagicPlugin " + version + ".")); } private static void TryInstallTeleportPatch(Harmony harmony, Assembly magicAssembly, string version) { if (_teleportPatchInstalled) { return; } MethodInfo methodInfo = AccessTools.DeclaredMethod(typeof(Player), "TeleportTo", new Type[3] { typeof(Vector3), typeof(Quaternion), typeof(bool) }, (Type[])null); MethodInfo methodInfo2 = magicAssembly.GetType("MagicPlugin.Patches.PlayerPatch", throwOnError: false)?.GetMethod("TeleportTo_Postfix", BindingFlags.Static | BindingFlags.Public | BindingFlags.NonPublic, null, new Type[3] { typeof(Player), typeof(Vector3).MakeByRefType(), typeof(Quaternion).MakeByRefType() }, null); if (methodInfo == null || methodInfo2 == null || methodInfo2.ReturnType != typeof(void)) { LiquidStuckFixPlugin.ModLogger.LogWarning((object)"MagicPlugin teleport compatibility skipped: the expected Player.TeleportTo patch structure was not found."); return; } Patch val = FindOwnedPatch(methodInfo, (HarmonyPatchType)2, methodInfo2); if (val == null) { LiquidStuckFixPlugin.ModLogger.LogWarning((object)"MagicPlugin teleport compatibility skipped: the exact MagicPlugin TeleportTo postfix is not installed."); return; } FieldRef characterNViewAccessor; FieldRef tameableMonsterAiAccessor; try { characterNViewAccessor = AccessTools.FieldRefAccess("m_nview"); tameableMonsterAiAccessor = AccessTools.FieldRefAccess("m_monsterAI"); } catch (Exception ex) { LiquidStuckFixPlugin.ModLogger.LogWarning((object)("MagicPlugin teleport compatibility skipped: required Valheim field accessors could not be created (" + ex.Message + ").")); return; } MethodInfo methodInfo3 = AccessTools.DeclaredMethod(typeof(MagicPluginCompatibility), "TeleportToPostfix", (Type[])null, (Type[])null); string failure = "the BlastedSwimmingTarredBugFix replacement postfix was not found."; _characterNViewAccessor = characterNViewAccessor; _tameableMonsterAiAccessor = tameableMonsterAiAccessor; if (methodInfo3 == null || !TryReplacePatch(harmony, methodInfo, val, methodInfo3, (HarmonyPatchType)2, out failure)) { _characterNViewAccessor = null; _tameableMonsterAiAccessor = null; LiquidStuckFixPlugin.ModLogger.LogWarning((object)("MagicPlugin teleport compatibility skipped: " + failure)); } else { _teleportReplacement = new PatchReplacement(methodInfo, val, (HarmonyPatchType)2); _teleportPatchInstalled = true; LiquidStuckFixPlugin.ModLogger.LogInfo((object)("Installed MagicPlugin safe teleport compatibility for MagicPlugin " + version + ".")); } } private static void TryInstallRegistryGuard(Harmony harmony, Assembly magicAssembly, string version) { //IL_0083: Unknown result type (might be due to invalid IL or missing references) //IL_0088: Unknown result type (might be due to invalid IL or missing references) //IL_009c: Expected O, but got Unknown if (_registryGuardInstalled) { return; } MethodInfo methodInfo = magicAssembly.GetType("MagicPlugin.Plugin", throwOnError: false)?.GetMethod("Update", BindingFlags.Instance | BindingFlags.Public | BindingFlags.NonPublic, null, Type.EmptyTypes, null); MethodInfo methodInfo2 = AccessTools.DeclaredMethod(typeof(MagicPluginCompatibility), "MagicPluginUpdatePrefix", (Type[])null, (Type[])null); if (methodInfo == null || methodInfo.ReturnType != typeof(void) || methodInfo2 == null) { LiquidStuckFixPlugin.ModLogger.LogWarning((object)"MagicPlugin Character registry guard skipped: MagicPlugin.Plugin.Update did not match the expected structure."); return; } try { harmony.Patch((MethodBase)methodInfo, new HarmonyMethod(methodInfo2) { priority = 800 }, (HarmonyMethod)null, (HarmonyMethod)null, (HarmonyMethod)null, (HarmonyMethod)null); _registryGuardInstalled = true; LiquidStuckFixPlugin.ModLogger.LogInfo((object)("Installed MagicPlugin Character registry guard for MagicPlugin " + version + ".")); } catch (Exception ex) { harmony.Unpatch((MethodBase)methodInfo, methodInfo2); LiquidStuckFixPlugin.ModLogger.LogWarning((object)("MagicPlugin Character registry guard skipped after a patching failure: " + ex.Message)); } } private static bool FireProjectileBurstPrefix(Attack __instance, Humanoid ___m_character, ItemData ___m_weapon) { try { ProjectileConfiguration projectileConfiguration = _projectileConfiguration; if (projectileConfiguration != null) { ApplyFireProjectileBurstAdjustments(__instance, ___m_character, ___m_weapon, projectileConfiguration); } } catch (Exception ex) { if (!_reportedProjectileRuntimeError) { _reportedProjectileRuntimeError = true; LiquidStuckFixPlugin.ModLogger.LogWarning((object)("MagicPlugin projectile compatibility failed while applying an adjustment: " + ex.Message)); } } return true; } private static void ApplyFireProjectileBurstAdjustments(Attack attack, Humanoid character, ItemData weapon, ProjectileConfiguration configuration) { //IL_001f: Unknown result type (might be due to invalid IL or missing references) //IL_0026: Invalid comparison between Unknown and I4 if (attack == null) { return; } Player val = (Player)(object)((character is Player) ? character : null); if (val == null) { return; } SharedData val2 = weapon?.m_shared; if (val2 == null || (int)val2.m_skillType != 9) { return; } string text = val2.m_name ?? ""; if (text.EndsWith("scepter", StringComparison.Ordinal) || text.Contains("flamestaff") || text.Contains("thunderstaff")) { return; } string ammoType = val2.m_ammoType; if ((ammoType != null && ammoType.Contains("ammo_spells")) || ((Object)(object)val2.m_secondaryAttack?.m_attackProjectile != (Object)null && ((Object)val2.m_secondaryAttack.m_attackProjectile).name == "BDS_DvergerStaffFire_clusterbomb_projectile")) { return; } if (text == "$bmp_arcticstaff" || text == "$item_stafficeshards") { attack.m_projectileVel *= 1.2f; attack.m_projectileVelMin *= 1.2f; attack.m_projectileAccuracy *= 0f; attack.m_projectileAccuracyMin *= 0f; } else { attack.m_projectileVel *= configuration.MagicVelocity.Value; attack.m_projectileVelMin *= configuration.MagicVelocity.Value; attack.m_projectileAccuracy *= configuration.MagicAccuracy.Value; attack.m_projectileAccuracyMin *= configuration.MagicAccuracy.Value; } GameObject attackProjectile = attack.m_attackProjectile; if (Object.op_Implicit((Object)(object)attackProjectile)) { string obj = ((Object)attackProjectile).name ?? ""; string text2 = obj.ToLowerInvariant(); float skillFactor = ((Character)val).GetSkillFactor((SkillType)9); if (text2.Contains("surtlingstaff")) { ApplyProjectileAoe(attackProjectile, configuration.SurtlingStaffAoe, skillFactor); } if (text2.Contains("eikthyrsstaff")) { ApplyProjectileAoe(attackProjectile, configuration.EikthyrStaffAoe, skillFactor); } if (text2.Contains("lightningstaff")) { ApplyProjectileAoe(attackProjectile, configuration.LightningStaffAoe, skillFactor); } if (text2.Contains("poisonstaff")) { ApplyProjectileAoe(attackProjectile, configuration.PoisonStaffAoe, skillFactor); } if (text2.Contains("arcticstaff")) { ApplyProjectileAoe(attackProjectile, configuration.ArcticStaffAoe, skillFactor); } if (obj == "bmp_modersheritage_projectile") { ApplyModersHeritage(attackProjectile, skillFactor, configuration); } if (obj == "bmp_yagluthsheritage_projectile") { ApplyYagluthsHeritage(attackProjectile, skillFactor, configuration); } } } private static void ApplyProjectileAoe(GameObject projectilePrefab, ConfigEntry aoeConfig, float elementalSkillFactor) { Projectile component = projectilePrefab.GetComponent(); if (Object.op_Implicit((Object)(object)component)) { component.m_aoe = aoeConfig.Value + 2f * elementalSkillFactor; } } private static void ApplyModersHeritage(GameObject projectilePrefab, float elementalSkillFactor, ProjectileConfiguration configuration) { Projectile val = TryGetSpawnedProjectile(projectilePrefab); if (Object.op_Implicit((Object)(object)val)) { val.m_aoe = configuration.ModersAoeRange.Value + 2f * elementalSkillFactor; val.m_damage.m_chop = configuration.ModersChopDamage.Value; val.m_damage.m_frost = configuration.ModersFrostDamage.Value * (1f + elementalSkillFactor); val.m_damage.m_pickaxe = configuration.ModersPickaxeDamage.Value; val.m_damage.m_pierce = configuration.ModersPierceDamage.Value; } } private static void ApplyYagluthsHeritage(GameObject projectilePrefab, float elementalSkillFactor, ProjectileConfiguration configuration) { Projectile val = TryGetSpawnedProjectile(projectilePrefab); if (Object.op_Implicit((Object)(object)val)) { val.m_aoe = configuration.YagluthAoeRange.Value + 2f * elementalSkillFactor; val.m_damage.m_blunt = configuration.YagluthBluntDamage.Value; val.m_damage.m_chop = configuration.YagluthChopDamage.Value; val.m_damage.m_fire = configuration.YagluthFireDamage.Value * (1f + elementalSkillFactor); val.m_damage.m_pickaxe = configuration.YagluthPickaxeDamage.Value; } } private static Projectile? TryGetSpawnedProjectile(GameObject projectilePrefab) { GameObject obj = projectilePrefab.GetComponent()?.m_spawnOnHit; SpawnAbility val = ((obj != null) ? obj.GetComponent() : null); if (val?.m_spawnPrefab == null || val.m_spawnPrefab.Length == 0) { return null; } GameObject obj2 = val.m_spawnPrefab[0]; if (obj2 == null) { return null; } return obj2.GetComponent(); } private static void TeleportToPostfix(Player __instance, ref Vector3 pos, ref Quaternion rot, bool __result) { //IL_0007: Unknown result type (might be due to invalid IL or missing references) //IL_000d: Unknown result type (might be due to invalid IL or missing references) if (!__result) { return; } try { TeleportFollowingMagicSummons(__instance, pos, rot); } catch (Exception ex) { if (!_reportedTeleportRuntimeError) { _reportedTeleportRuntimeError = true; LiquidStuckFixPlugin.ModLogger.LogWarning((object)("MagicPlugin teleport compatibility failed while moving followed summons: " + ex.Message)); } } } private static void TeleportFollowingMagicSummons(Player player, Vector3 position, Quaternion rotation) { //IL_0019: Unknown result type (might be due to invalid IL or missing references) //IL_0020: Unknown result type (might be due to invalid IL or missing references) //IL_0025: Unknown result type (might be due to invalid IL or missing references) //IL_002a: Unknown result type (might be due to invalid IL or missing references) //IL_0050: Unknown result type (might be due to invalid IL or missing references) //IL_0056: Unknown result type (might be due to invalid IL or missing references) if (!Object.op_Implicit((Object)(object)player)) { return; } GameObject gameObject = ((Component)player).gameObject; if (!Object.op_Implicit((Object)(object)gameObject)) { return; } Vector3 position2 = position + ((Component)player).transform.forward; List allCharacters = Character.GetAllCharacters(); for (int i = 0; i < allCharacters.Count; i++) { Character val = allCharacters[i]; if (IsFollowedMagicSummon(val, gameObject)) { Transform transform = ((Component)val).transform; transform.position = position2; transform.rotation = rotation; } } } private static bool IsFollowedMagicSummon(Character character, GameObject owner) { if (!Object.op_Implicit((Object)(object)character) || !Object.op_Implicit((Object)(object)((Component)character).gameObject)) { return false; } FieldRef characterNViewAccessor = _characterNViewAccessor; if (characterNViewAccessor == null) { return false; } ZNetView val = characterNViewAccessor.Invoke(character); if (!Object.op_Implicit((Object)(object)val) || !val.IsValid()) { return false; } if (!(((Object)((Component)character).gameObject).name ?? "").StartsWith("BMP_", StringComparison.Ordinal) || !character.IsTamed()) { return false; } Tameable component = ((Component)character).GetComponent(); FieldRef tameableMonsterAiAccessor = _tameableMonsterAiAccessor; MonsterAI val2 = ((Object.op_Implicit((Object)(object)component) && tameableMonsterAiAccessor != null) ? tameableMonsterAiAccessor.Invoke(component) : null); return (Object)(object)(Object.op_Implicit((Object)(object)val2) ? val2.GetFollowTarget() : null) == (Object)(object)owner; } private static void MagicPluginUpdatePrefix() { try { List allCharacters = Character.GetAllCharacters(); for (int num = allCharacters.Count - 1; num >= 0; num--) { Character val = allCharacters[num]; if (val == null || !Object.op_Implicit((Object)(object)val)) { allCharacters.RemoveAt(num); if (val != null) { TryRemoveCharacterHud(val); } } } } catch (Exception ex) { ReportRegistryRuntimeError(ex); } } private static void TryRemoveCharacterHud(Character character) { try { if (Object.op_Implicit((Object)(object)EnemyHud.instance)) { EnemyHud.instance.RemoveCharacterHud(character); } } catch (Exception ex) { ReportRegistryRuntimeError(ex); } } private static void ReportRegistryRuntimeError(Exception ex) { if (!_reportedRegistryRuntimeError) { _reportedRegistryRuntimeError = true; LiquidStuckFixPlugin.ModLogger.LogWarning((object)("MagicPlugin Character registry guard failed while pruning stale references: " + ex.Message)); } } private static Patch? FindOwnedPatch(MethodBase original, HarmonyPatchType patchType, MethodInfo expectedMethod) { //IL_000c: Unknown result type (might be due to invalid IL or missing references) //IL_000e: Invalid comparison between Unknown and I4 Patches patchInfo = Harmony.GetPatchInfo(original); if (patchInfo == null) { return null; } foreach (Patch item in (IEnumerable)(((int)patchType == 1) ? patchInfo.Prefixes : patchInfo.Postfixes)) { if (item.owner == "blacks7ar.MagicPlugin" && IsSameMethod(item.PatchMethod, expectedMethod)) { return item; } } return null; } private static bool TryReplacePatch(Harmony harmony, MethodInfo original, Patch externalPatch, MethodInfo replacement, HarmonyPatchType patchType, out string failure) { //IL_0010: Unknown result type (might be due to invalid IL or missing references) //IL_0040: Unknown result type (might be due to invalid IL or missing references) //IL_0045: Unknown result type (might be due to invalid IL or missing references) //IL_0051: Unknown result type (might be due to invalid IL or missing references) //IL_005d: Unknown result type (might be due to invalid IL or missing references) //IL_006a: Expected O, but got Unknown //IL_006a: Unknown result type (might be due to invalid IL or missing references) //IL_006d: Invalid comparison between Unknown and I4 //IL_002b: Unknown result type (might be due to invalid IL or missing references) //IL_00aa: Unknown result type (might be due to invalid IL or missing references) bool flag = false; try { harmony.Unpatch((MethodBase)original, externalPatch.PatchMethod); flag = FindOwnedPatch(original, patchType, externalPatch.PatchMethod) == null; if (!flag) { failure = $"the exact external {patchType} could not be removed."; return false; } HarmonyMethod val = new HarmonyMethod(replacement) { priority = externalPatch.priority, before = externalPatch.before, after = externalPatch.after }; if ((int)patchType == 1) { harmony.Patch((MethodBase)original, val, (HarmonyMethod)null, (HarmonyMethod)null, (HarmonyMethod)null, (HarmonyMethod)null); } else { harmony.Patch((MethodBase)original, (HarmonyMethod)null, val, (HarmonyMethod)null, (HarmonyMethod)null, (HarmonyMethod)null); } failure = ""; return true; } catch (Exception ex) { try { harmony.Unpatch((MethodBase)original, replacement); } catch { } if (flag) { TryRestoreExternalPatch(original, externalPatch, patchType); } failure = "patch replacement failed (" + ex.Message + ")."; return false; } } private static void TryRestoreExternalPatch(MethodInfo original, Patch externalPatch, HarmonyPatchType patchType) { //IL_0006: Unknown result type (might be due to invalid IL or missing references) //IL_000b: Unknown result type (might be due to invalid IL or missing references) //IL_0017: Unknown result type (might be due to invalid IL or missing references) //IL_0023: Unknown result type (might be due to invalid IL or missing references) //IL_0030: Expected O, but got Unknown //IL_0036: Unknown result type (might be due to invalid IL or missing references) //IL_003c: Expected O, but got Unknown //IL_003c: Unknown result type (might be due to invalid IL or missing references) //IL_003e: Invalid comparison between Unknown and I4 try { HarmonyMethod val = new HarmonyMethod(externalPatch.PatchMethod) { priority = externalPatch.priority, before = externalPatch.before, after = externalPatch.after }; Harmony val2 = new Harmony(externalPatch.owner); if ((int)patchType == 1) { val2.Patch((MethodBase)original, val, (HarmonyMethod)null, (HarmonyMethod)null, (HarmonyMethod)null, (HarmonyMethod)null); } else { val2.Patch((MethodBase)original, (HarmonyMethod)null, val, (HarmonyMethod)null, (HarmonyMethod)null, (HarmonyMethod)null); } } catch (Exception arg) { LiquidStuckFixPlugin.ModLogger.LogError((object)$"Failed to restore a MagicPlugin patch after compatibility installation failed: {arg}"); } } private static void RestoreExternalPatch(PatchReplacement? replacement) { //IL_000c: Unknown result type (might be due to invalid IL or missing references) //IL_0030: Unknown result type (might be due to invalid IL or missing references) if (replacement == null) { return; } try { if (FindOwnedPatch(replacement.Original, replacement.PatchType, replacement.ExternalPatch.PatchMethod) == null) { TryRestoreExternalPatch(replacement.Original, replacement.ExternalPatch, replacement.PatchType); } } catch (Exception arg) { LiquidStuckFixPlugin.ModLogger.LogError((object)$"Failed to restore a replaced MagicPlugin patch while BlastedSwimmingTarredBugFix was shutting down: {arg}"); } } private static void TryInstallCapability(string capability, Action install) { try { install(); } catch (Exception ex) { LiquidStuckFixPlugin.ModLogger.LogWarning((object)("MagicPlugin " + capability + " skipped after a structural probe failed: " + ex.Message)); } } private static bool IsSameMethod(MethodInfo left, MethodInfo right) { if ((object)left == right || left.Equals(right)) { return true; } try { return left.Module.Equals(right.Module) && left.MetadataToken == right.MetadataToken; } catch { return false; } } private static Assembly? FindAssemblyWithType(string fullTypeName) { Assembly[] assemblies = AppDomain.CurrentDomain.GetAssemblies(); foreach (Assembly assembly in assemblies) { if (assembly.GetType(fullTypeName, throwOnError: false) != null) { return assembly; } } return null; } } internal static class RuntimePatchCompatibility { internal static bool MyPitsDontLeakLoaded { get; private set; } internal static bool ScenicLoaded { get; private set; } internal static void Initialize() { MyPitsDontLeakLoaded = Chainloader.PluginInfos.ContainsKey("Azumatt.MyPitsDontLeak"); ScenicLoaded = Chainloader.PluginInfos.ContainsKey("redseiko.valheim.scenic"); if (MyPitsDontLeakLoaded) { LiquidStuckFixPlugin.Log.LogInfo((object)"MyPitsDontLeak detected; skipping the integrated LiquidVolume lifetime patches."); } if (ScenicLoaded) { LiquidStuckFixPlugin.Log.LogWarning((object)"Scenic detected; skipping the integrated scene cleanup patch. Remove Scenic to use the hardened built-in implementation."); } } } internal static class LiquidVolumeLifetimeInstaller { private static bool _installed; internal static void TryInstall(Harmony harmony) { //IL_00ad: Unknown result type (might be due to invalid IL or missing references) //IL_00b9: Expected O, but got Unknown //IL_00bf: Unknown result type (might be due to invalid IL or missing references) //IL_00cb: Expected O, but got Unknown if (_installed || RuntimePatchCompatibility.MyPitsDontLeakLoaded) { return; } MethodInfo methodInfo = AccessTools.DeclaredMethod(typeof(LiquidVolume), "Awake", Type.EmptyTypes, (Type[])null); MethodInfo methodInfo2 = AccessTools.DeclaredMethod(typeof(LiquidVolume), "OnDestroy", Type.EmptyTypes, (Type[])null); MethodInfo methodInfo3 = AccessTools.DeclaredMethod(typeof(LiquidVolumeAwakeLifetimePatch), "Transpiler", (Type[])null, (Type[])null); MethodInfo methodInfo4 = AccessTools.DeclaredMethod(typeof(LiquidVolumeOnDestroyLifetimePatch), "Transpiler", (Type[])null, (Type[])null); if (methodInfo == null || methodInfo2 == null || methodInfo3 == null || methodInfo4 == null) { LiquidStuckFixPlugin.Log.LogWarning((object)"LiquidVolume lifetime compatibility skipped: one or more required methods were not found."); return; } try { harmony.Patch((MethodBase)methodInfo, (HarmonyMethod)null, (HarmonyMethod)null, new HarmonyMethod(methodInfo3), (HarmonyMethod)null, (HarmonyMethod)null); harmony.Patch((MethodBase)methodInfo2, (HarmonyMethod)null, (HarmonyMethod)null, new HarmonyMethod(methodInfo4), (HarmonyMethod)null, (HarmonyMethod)null); _installed = true; LiquidStuckFixPlugin.Log.LogInfo((object)"Installed LiquidVolume lifetime compatibility."); } catch (Exception ex) { SafeUnpatch(harmony, methodInfo, methodInfo3); SafeUnpatch(harmony, methodInfo2, methodInfo4); bool flag = !IsPatchInstalled(methodInfo, methodInfo3) && !IsPatchInstalled(methodInfo2, methodInfo4); if (!flag) { TryUnpatchSelf(harmony); flag = !IsPatchInstalled(methodInfo, methodInfo3) && !IsPatchInstalled(methodInfo2, methodInfo4); } if (flag) { LiquidStuckFixPlugin.Log.LogWarning((object)("LiquidVolume lifetime compatibility was rolled back after an installation failure: " + ex.Message)); } else { LiquidStuckFixPlugin.Log.LogError((object)$"LiquidVolume lifetime compatibility installation failed and rollback was incomplete: {ex}"); } _installed = !flag; } } internal static void ResetInstallationState() { _installed = false; } private static void SafeUnpatch(Harmony harmony, MethodBase original, MethodInfo patch) { try { harmony.Unpatch(original, patch); } catch { } } private static bool IsPatchInstalled(MethodBase original, MethodInfo expectedPatch) { Patches patchInfo = Harmony.GetPatchInfo(original); if (patchInfo == null) { return false; } return ContainsPatch(patchInfo.Transpilers, expectedPatch); } private static bool ContainsPatch(IEnumerable patches, MethodInfo expectedPatch) { foreach (Patch patch in patches) { MethodInfo patchMethod = patch.PatchMethod; if ((object)patchMethod == expectedPatch || patchMethod.Equals(expectedPatch)) { return true; } } return false; } private static void TryUnpatchSelf(Harmony harmony) { try { harmony.UnpatchSelf(); } catch { } } } internal static class SceneCleanupInstaller { private static bool _installed; internal static void TryInstall(Harmony harmony) { //IL_00a0: Unknown result type (might be due to invalid IL or missing references) //IL_00ae: Expected O, but got Unknown if (_installed || RuntimePatchCompatibility.ScenicLoaded) { return; } MethodInfo methodInfo = AccessTools.DeclaredMethod(typeof(ZNetScene), "RemoveObjects", new Type[2] { typeof(List), typeof(List) }, (Type[])null); FieldInfo fieldInfo = AccessTools.Field(typeof(ZNetScene), "m_instances"); MethodInfo methodInfo2 = AccessTools.DeclaredMethod(typeof(ZNetSceneRemoveObjectsPatch), "Prefix", (Type[])null, (Type[])null); if (methodInfo == null || fieldInfo == null || methodInfo2 == null) { LiquidStuckFixPlugin.Log.LogWarning((object)"Integrated scene cleanup skipped: one or more required ZNetScene members were not found."); return; } try { harmony.Patch((MethodBase)methodInfo, new HarmonyMethod(methodInfo2), (HarmonyMethod)null, (HarmonyMethod)null, (HarmonyMethod)null, (HarmonyMethod)null); _installed = true; LiquidStuckFixPlugin.Log.LogInfo((object)"Installed integrated scene cleanup compatibility."); } catch (Exception ex) { SafeUnpatch(harmony, methodInfo, methodInfo2); bool flag = !IsPatchInstalled(methodInfo, methodInfo2); if (!flag) { TryUnpatchSelf(harmony); flag = !IsPatchInstalled(methodInfo, methodInfo2); } if (flag) { LiquidStuckFixPlugin.Log.LogWarning((object)("Integrated scene cleanup was rolled back after an installation failure: " + ex.Message)); } else { LiquidStuckFixPlugin.Log.LogError((object)$"Integrated scene cleanup installation failed and rollback was incomplete: {ex}"); } _installed = !flag; } } internal static void ResetInstallationState() { _installed = false; ZNetSceneRemoveObjectsPatch.ResetState(); } private static void SafeUnpatch(Harmony harmony, MethodBase original, MethodInfo patch) { try { harmony.Unpatch(original, patch); } catch { } } private static bool IsPatchInstalled(MethodBase original, MethodInfo expectedPatch) { Patches patchInfo = Harmony.GetPatchInfo(original); if (patchInfo == null) { return false; } foreach (Patch prefix in patchInfo.Prefixes) { MethodInfo patchMethod = prefix.PatchMethod; if ((object)patchMethod == expectedPatch || patchMethod.Equals(expectedPatch)) { return true; } } return false; } private static void TryUnpatchSelf(Harmony harmony) { try { harmony.UnpatchSelf(); } catch { } } } internal static class LiquidVolumeLifetime { private static readonly Type[] NativeArrayConstructorParameters = new Type[3] { typeof(int), typeof(Allocator), typeof(NativeArrayOptions) }; internal static Allocator SelectAllocator() { return (Allocator)4; } internal static void DisposeRaycastHits(ref NativeArray array) { if (array.IsCreated) { array.Dispose(); } } internal static void DisposeRaycastCommands(ref NativeArray array) { if (array.IsCreated) { array.Dispose(); } } internal static IEnumerable ReplaceAllocators(IEnumerable instructions) { List list = new List(instructions); ConstructorInfo constructorInfo = AccessTools.Constructor(typeof(NativeArray), NativeArrayConstructorParameters, false); ConstructorInfo constructorInfo2 = AccessTools.Constructor(typeof(NativeArray), NativeArrayConstructorParameters, false); MethodInfo methodInfo = AccessTools.Method(typeof(LiquidVolumeLifetime), "SelectAllocator", (Type[])null, (Type[])null); if (constructorInfo == null || constructorInfo2 == null || methodInfo == null) { throw new MissingMethodException("LiquidVolume allocator patch could not find its required NativeArray members."); } List list2 = FindAllocatorIndices(list, constructorInfo); List list3 = FindAllocatorIndices(list, constructorInfo2); if (list2.Count != 1 || list3.Count != 1) { throw new InvalidOperationException("LiquidVolume allocator patch expected one allocation site for each NativeArray type but found " + $"{list2.Count} RaycastHit and {list3.Count} RaycastCommand sites."); } list[list2[0]].opcode = OpCodes.Call; list[list2[0]].operand = methodInfo; list[list3[0]].opcode = OpCodes.Call; list[list3[0]].operand = methodInfo; return list; } internal static IEnumerable ReplaceDisposals(IEnumerable instructions) { List list = new List(instructions); MethodInfo methodInfo = AccessTools.Method(typeof(NativeArray), "Dispose", Type.EmptyTypes, (Type[])null); MethodInfo methodInfo2 = AccessTools.Method(typeof(NativeArray), "Dispose", Type.EmptyTypes, (Type[])null); MethodInfo methodInfo3 = AccessTools.Method(typeof(LiquidVolumeLifetime), "DisposeRaycastHits", (Type[])null, (Type[])null); MethodInfo methodInfo4 = AccessTools.Method(typeof(LiquidVolumeLifetime), "DisposeRaycastCommands", (Type[])null, (Type[])null); if (methodInfo == null || methodInfo2 == null || methodInfo3 == null || methodInfo4 == null) { throw new MissingMethodException("LiquidVolume disposal patch could not find its required NativeArray members."); } List list2 = FindCallIndices(list, methodInfo); List list3 = FindCallIndices(list, methodInfo2); if (list2.Count != 1 || list3.Count != 1) { throw new InvalidOperationException("LiquidVolume disposal patch expected one disposal call for each NativeArray type but found " + $"{list2.Count} RaycastHit and {list3.Count} RaycastCommand calls."); } list[list2[0]].opcode = OpCodes.Call; list[list2[0]].operand = methodInfo3; list[list3[0]].opcode = OpCodes.Call; list[list3[0]].operand = methodInfo4; return list; } private static List FindAllocatorIndices(List codes, ConstructorInfo constructor) { List list = new List(); for (int i = 2; i < codes.Count; i++) { if (!(codes[i].opcode != OpCodes.Newobj) && CodeInstructionExtensions.OperandIs(codes[i], (MemberInfo)constructor)) { int num = i - 2; if (CodeInstructionExtensions.LoadsConstant(codes[num], (Enum)(object)(Allocator)3)) { list.Add(num); } } } return list; } private static List FindCallIndices(List codes, MethodInfo method) { List list = new List(); for (int i = 0; i < codes.Count; i++) { if (CodeInstructionExtensions.Calls(codes[i], method)) { list.Add(i); } } return list; } } [HarmonyPatch(typeof(LiquidVolume), "Awake")] internal static class LiquidVolumeAwakeLifetimePatch { internal static IEnumerable Transpiler(IEnumerable instructions) { return LiquidVolumeLifetime.ReplaceAllocators(instructions); } } [HarmonyPatch(typeof(LiquidVolume), "OnDestroy")] internal static class LiquidVolumeOnDestroyLifetimePatch { internal static IEnumerable Transpiler(IEnumerable instructions) { return LiquidVolumeLifetime.ReplaceDisposals(instructions); } } [HarmonyPatch(typeof(ZNetScene), "RemoveObjects", new Type[] { typeof(List), typeof(List) })] internal static class ZNetSceneRemoveObjectsPatch { private static readonly List RemovalBuffer = new List(); internal static bool Prefix(List currentNearObjects, List currentDistantObjects, Dictionary ___m_instances) { //IL_0127: Unknown result type (might be due to invalid IL or missing references) //IL_0133: Unknown result type (might be due to invalid IL or missing references) bool flag = false; try { byte b = (byte)(Time.frameCount & 0xFF); MarkCurrentObjects(currentNearObjects, b); MarkCurrentObjects(currentDistantObjects, b); RemovalBuffer.Clear(); foreach (KeyValuePair ___m_instance in ___m_instances) { ZDO key = ___m_instance.Key; if (key != null) { ZNetView value = ___m_instance.Value; if ((Object)(object)value == (Object)null || !Object.op_Implicit((Object)(object)value) || key.TempRemoveEarmark != b) { RemovalBuffer.Add(key); } } } ZDOMan instance = ZDOMan.instance; foreach (ZDO item in RemovalBuffer) { ___m_instances.TryGetValue(item, out ZNetView value2); flag = true; if ((Object)(object)value2 != (Object)null && Object.op_Implicit((Object)(object)value2)) { ZDO zDO = value2.GetZDO(); if (zDO == null) { Object.Destroy((Object)(object)((Component)value2).gameObject); } else if (zDO == item) { value2.ResetZDO(); Object.Destroy((Object)(object)((Component)value2).gameObject); } else if (LiquidStuckFixPlugin.DebugLogging.Value) { LiquidStuckFixPlugin.Log.LogWarning((object)("Removed mismatched ZNetScene entry without destroying its active view: " + $"{item.m_uid} -> {zDO.m_uid}")); } } if (instance != null && !item.Persistent && item.IsOwner()) { instance.DestroyZDO(item); } item.Created = false; ___m_instances.Remove(item); } return false; } catch (Exception ex) { string text = (flag ? "stopping this cleanup pass; remaining entries will be retried" : "falling back to vanilla"); LiquidStuckFixPlugin.Log.LogWarning((object)("Integrated ZNetScene.RemoveObjects cleanup failed; " + text + ": " + ex.Message)); return !flag; } finally { RemovalBuffer.Clear(); } } internal static void ResetState() { RemovalBuffer.Clear(); } private static void MarkCurrentObjects(List objects, byte earmark) { for (int i = 0; i < objects.Count; i++) { ZDO val = objects[i]; if (val != null) { val.TempRemoveEarmark = earmark; } } } } } namespace ServerSync { [PublicAPI] internal abstract class OwnConfigEntryBase { public object? LocalBaseValue; public bool SynchronizedConfig = true; public abstract ConfigEntryBase BaseConfig { get; } } [PublicAPI] internal class SyncedConfigEntry(ConfigEntry sourceConfig) : OwnConfigEntryBase() { public readonly ConfigEntry SourceConfig = sourceConfig; public override ConfigEntryBase BaseConfig => (ConfigEntryBase)(object)SourceConfig; public T Value { get { return SourceConfig.Value; } set { SourceConfig.Value = value; } } public void AssignLocalValue(T value) { if (LocalBaseValue == null) { Value = value; } else { LocalBaseValue = value; } } } internal abstract class CustomSyncedValueBase { public object? LocalBaseValue; public readonly string Identifier; public readonly Type Type; private object? boxedValue; protected bool localIsOwner; public readonly int Priority; public object? BoxedValue { get { return boxedValue; } set { boxedValue = value; this.ValueChanged?.Invoke(); } } public event Action? ValueChanged; protected CustomSyncedValueBase(ConfigSync configSync, string identifier, Type type, int priority) { Priority = priority; Identifier = identifier; Type = type; configSync.AddCustomValue(this); localIsOwner = configSync.IsSourceOfTruth; configSync.SourceOfTruthChanged += delegate(bool truth) { localIsOwner = truth; }; } } [PublicAPI] internal sealed class CustomSyncedValue : CustomSyncedValueBase { public T Value { get { return (T)base.BoxedValue; } set { base.BoxedValue = value; } } public CustomSyncedValue(ConfigSync configSync, string identifier, T value = default(T), int priority = 0) : base(configSync, identifier, typeof(T), priority) { Value = value; } public void AssignLocalValue(T value) { if (localIsOwner) { Value = value; } else { LocalBaseValue = value; } } } internal class ConfigurationManagerAttributes { [UsedImplicitly] public bool? ReadOnly = false; } [PublicAPI] internal class ConfigSync { [HarmonyPatch(typeof(ZRpc), "HandlePackage")] private static class SnatchCurrentlyHandlingRPC { public static ZRpc? currentRpc; [HarmonyPrefix] private static void Prefix(ZRpc __instance) { currentRpc = __instance; } } [HarmonyPatch(typeof(ZNet), "Awake")] internal static class RegisterRPCPatch { [HarmonyPostfix] private static void Postfix(ZNet __instance) { isServer = __instance.IsServer(); foreach (ConfigSync configSync2 in configSyncs) { ZRoutedRpc.instance.Register(configSync2.Name + " ConfigSync", (Action)configSync2.RPC_FromOtherClientConfigSync); if (isServer) { configSync2.InitialSyncDone = true; Debug.Log((object)("Registered '" + configSync2.Name + " ConfigSync' RPC - waiting for incoming connections")); } } if (isServer) { ((MonoBehaviour)__instance).StartCoroutine(WatchAdminListChanges()); } static void SendAdmin(List peers, bool isAdmin) { ZPackage package = ConfigsToPackage(null, null, new PackageEntry[1] { new PackageEntry { section = "Internal", key = "lockexempt", type = typeof(bool), value = isAdmin } }); ConfigSync configSync = configSyncs.First(); if (configSync != null) { ((MonoBehaviour)ZNet.instance).StartCoroutine(configSync.sendZPackage(peers, package)); } } static IEnumerator WatchAdminListChanges() { MethodInfo listContainsId = AccessTools.DeclaredMethod(typeof(ZNet), "ListContainsId", (Type[])null, (Type[])null); SyncedList adminList = (SyncedList)AccessTools.DeclaredField(typeof(ZNet), "m_adminList").GetValue(ZNet.instance); List CurrentList = new List(adminList.GetList()); while (true) { yield return (object)new WaitForSeconds(30f); if (!adminList.GetList().SequenceEqual(CurrentList)) { CurrentList = new List(adminList.GetList()); List adminPeer = ZNet.instance.GetPeers().Where(delegate(ZNetPeer p) { string hostName = p.m_rpc.GetSocket().GetHostName(); return ((object)listContainsId == null) ? adminList.Contains(hostName) : ((bool)listContainsId.Invoke(ZNet.instance, new object[2] { adminList, hostName })); }).ToList(); List nonAdminPeer = ZNet.instance.GetPeers().Except(adminPeer).ToList(); SendAdmin(nonAdminPeer, isAdmin: false); SendAdmin(adminPeer, isAdmin: true); } } } } } [HarmonyPatch(typeof(ZNet), "OnNewConnection")] private static class RegisterClientRPCPatch { [HarmonyPostfix] private static void Postfix(ZNet __instance, ZNetPeer peer) { if (__instance.IsServer()) { return; } foreach (ConfigSync configSync in configSyncs) { peer.m_rpc.Register(configSync.Name + " ConfigSync", (Action)configSync.RPC_FromServerConfigSync); } } } private class ParsedConfigs { public readonly Dictionary configValues = new Dictionary(); public readonly Dictionary customValues = new Dictionary(); } [HarmonyPatch(typeof(ZNet), "Shutdown")] private class ResetConfigsOnShutdown { [HarmonyPostfix] private static void Postfix() { ProcessingServerUpdate = true; foreach (ConfigSync configSync in configSyncs) { configSync.resetConfigsFromServer(); configSync.IsSourceOfTruth = true; configSync.InitialSyncDone = false; } ProcessingServerUpdate = false; } } [HarmonyPatch(typeof(ZNet), "RPC_PeerInfo")] private class SendConfigsAfterLogin { private class BufferingSocket : ZPlayFabSocket, ISocket { public volatile bool finished = false; public volatile int versionMatchQueued = -1; public readonly List Package = new List(); public readonly ISocket Original; public BufferingSocket(ISocket original) { Original = original; ((ZPlayFabSocket)this)..ctor(); } public bool IsConnected() { return Original.IsConnected(); } public ZPackage Recv() { return Original.Recv(); } public int GetSendQueueSize() { return Original.GetSendQueueSize(); } public int GetCurrentSendRate() { return Original.GetCurrentSendRate(); } public bool IsHost() { return Original.IsHost(); } public void Dispose() { Original.Dispose(); } public bool GotNewData() { return Original.GotNewData(); } public void Close() { Original.Close(); } public string GetEndPointString() { return Original.GetEndPointString(); } public void GetAndResetStats(out int totalSent, out int totalRecv) { Original.GetAndResetStats(ref totalSent, ref totalRecv); } public void GetConnectionQuality(out float localQuality, out float remoteQuality, out int ping, out float outByteSec, out float inByteSec) { Original.GetConnectionQuality(ref localQuality, ref remoteQuality, ref ping, ref outByteSec, ref inByteSec); } public ISocket Accept() { return Original.Accept(); } public int GetHostPort() { return Original.GetHostPort(); } public bool Flush() { return Original.Flush(); } public string GetHostName() { return Original.GetHostName(); } public void VersionMatch() { if (finished) { Original.VersionMatch(); } else { versionMatchQueued = Package.Count; } } public void Send(ZPackage pkg) { //IL_0057: Unknown result type (might be due to invalid IL or missing references) //IL_005d: Expected O, but got Unknown int pos = pkg.GetPos(); pkg.SetPos(0); int num = pkg.ReadInt(); if ((num == StringExtensionMethods.GetStableHashCode("PeerInfo") || num == StringExtensionMethods.GetStableHashCode("RoutedRPC") || num == StringExtensionMethods.GetStableHashCode("ZDOData")) && !finished) { ZPackage val = new ZPackage(pkg.GetArray()); val.SetPos(pos); Package.Add(val); } else { pkg.SetPos(pos); Original.Send(pkg); } } } [HarmonyPriority(800)] [HarmonyPrefix] private static void Prefix(ref Dictionary? __state, ZNet __instance, ZRpc rpc) { //IL_0078: Unknown result type (might be due to invalid IL or missing references) //IL_007e: Invalid comparison between Unknown and I4 if (!__instance.IsServer()) { return; } BufferingSocket bufferingSocket = new BufferingSocket(rpc.GetSocket()); AccessTools.DeclaredField(typeof(ZRpc), "m_socket").SetValue(rpc, bufferingSocket); object? obj = AccessTools.DeclaredMethod(typeof(ZNet), "GetPeer", new Type[1] { typeof(ZRpc) }, (Type[])null).Invoke(__instance, new object[1] { rpc }); ZNetPeer val = (ZNetPeer)((obj is ZNetPeer) ? obj : null); if (val != null && (int)ZNet.m_onlineBackend > 0) { FieldInfo fieldInfo = AccessTools.DeclaredField(typeof(ZNetPeer), "m_socket"); object? value = fieldInfo.GetValue(val); ZPlayFabSocket val2 = (ZPlayFabSocket)((value is ZPlayFabSocket) ? value : null); if (val2 != null) { typeof(ZPlayFabSocket).GetField("m_remotePlayerId").SetValue(bufferingSocket, val2.m_remotePlayerId); } fieldInfo.SetValue(val, bufferingSocket); } if (__state == null) { __state = new Dictionary(); } __state[Assembly.GetExecutingAssembly()] = bufferingSocket; } [HarmonyPostfix] private static void Postfix(Dictionary __state, ZNet __instance, ZRpc rpc) { ZNetPeer peer; if (__instance.IsServer()) { object obj = AccessTools.DeclaredMethod(typeof(ZNet), "GetPeer", new Type[1] { typeof(ZRpc) }, (Type[])null).Invoke(__instance, new object[1] { rpc }); peer = (ZNetPeer)((obj is ZNetPeer) ? obj : null); if (peer == null) { SendBufferedData(); } else { ((MonoBehaviour)__instance).StartCoroutine(sendAsync()); } } void SendBufferedData() { if (rpc.GetSocket() is BufferingSocket bufferingSocket) { AccessTools.DeclaredField(typeof(ZRpc), "m_socket").SetValue(rpc, bufferingSocket.Original); object? obj2 = AccessTools.DeclaredMethod(typeof(ZNet), "GetPeer", new Type[1] { typeof(ZRpc) }, (Type[])null).Invoke(__instance, new object[1] { rpc }); ZNetPeer val = (ZNetPeer)((obj2 is ZNetPeer) ? obj2 : null); if (val != null) { AccessTools.DeclaredField(typeof(ZNetPeer), "m_socket").SetValue(val, bufferingSocket.Original); } } BufferingSocket bufferingSocket2 = __state[Assembly.GetExecutingAssembly()]; bufferingSocket2.finished = true; for (int i = 0; i < bufferingSocket2.Package.Count; i++) { if (i == bufferingSocket2.versionMatchQueued) { bufferingSocket2.Original.VersionMatch(); } bufferingSocket2.Original.Send(bufferingSocket2.Package[i]); } if (bufferingSocket2.Package.Count == bufferingSocket2.versionMatchQueued) { bufferingSocket2.Original.VersionMatch(); } } IEnumerator sendAsync() { foreach (ConfigSync configSync in configSyncs) { List entries = new List(); if (configSync.CurrentVersion != null) { entries.Add(new PackageEntry { section = "Internal", key = "serverversion", type = typeof(string), value = configSync.CurrentVersion }); } MethodInfo listContainsId = AccessTools.DeclaredMethod(typeof(ZNet), "ListContainsId", (Type[])null, (Type[])null); SyncedList adminList = (SyncedList)AccessTools.DeclaredField(typeof(ZNet), "m_adminList").GetValue(ZNet.instance); entries.Add(new PackageEntry { section = "Internal", key = "lockexempt", type = typeof(bool), value = (((object)listContainsId == null) ? ((object)adminList.Contains(rpc.GetSocket().GetHostName())) : listContainsId.Invoke(ZNet.instance, new object[2] { adminList, rpc.GetSocket().GetHostName() })) }); ZPackage package = ConfigsToPackage(configSync.allConfigs.Select((OwnConfigEntryBase c) => c.BaseConfig), configSync.allCustomValues, entries, partial: false); yield return ((MonoBehaviour)__instance).StartCoroutine(configSync.sendZPackage(new List { peer }, package)); } SendBufferedData(); } } } private class PackageEntry { public string section = null; public string key = null; public Type type = null; public object? value; } [HarmonyPatch(typeof(ConfigEntryBase), "GetSerializedValue")] private static class PreventSavingServerInfo { [HarmonyPrefix] private static bool Prefix(ConfigEntryBase __instance, ref string __result) { OwnConfigEntryBase ownConfigEntryBase = configData(__instance); if (ownConfigEntryBase == null || isWritableConfig(ownConfigEntryBase)) { return true; } __result = TomlTypeConverter.ConvertToString(ownConfigEntryBase.LocalBaseValue, __instance.SettingType); return false; } } [HarmonyPatch(typeof(ConfigEntryBase), "SetSerializedValue")] private static class PreventConfigRereadChangingValues { [HarmonyPrefix] private static bool Prefix(ConfigEntryBase __instance, string value) { OwnConfigEntryBase ownConfigEntryBase = configData(__instance); if (ownConfigEntryBase == null || ownConfigEntryBase.LocalBaseValue == null) { return true; } try { ownConfigEntryBase.LocalBaseValue = TomlTypeConverter.ConvertToValue(value, __instance.SettingType); } catch (Exception ex) { Debug.LogWarning((object)$"Config value of setting \"{__instance.Definition}\" could not be parsed and will be ignored. Reason: {ex.Message}; Value: {value}"); } return false; } } private class InvalidDeserializationTypeException : Exception { public string expected = null; public string received = null; public string field = ""; } public static bool ProcessingServerUpdate; public readonly string Name; public string? DisplayName; public string? CurrentVersion; public string? MinimumRequiredVersion; public bool ModRequired = false; private bool? forceConfigLocking; private bool isSourceOfTruth = true; private static readonly HashSet configSyncs; private readonly HashSet allConfigs = new HashSet(); private HashSet allCustomValues = new HashSet(); private static bool isServer; private static bool lockExempt; private OwnConfigEntryBase? lockedConfig = null; private const byte PARTIAL_CONFIGS = 1; private const byte FRAGMENTED_CONFIG = 2; private const byte COMPRESSED_CONFIG = 4; private readonly Dictionary> configValueCache = new Dictionary>(); private readonly List> cacheExpirations = new List>(); private static long packageCounter; public bool IsLocked { get { bool? flag = forceConfigLocking; bool num; if (!flag.HasValue) { if (lockedConfig == null) { goto IL_0052; } num = ((IConvertible)lockedConfig.BaseConfig.BoxedValue).ToInt32(CultureInfo.InvariantCulture) != 0; } else { num = flag == true; } if (!num) { goto IL_0052; } int result = ((!lockExempt) ? 1 : 0); goto IL_0053; IL_0052: result = 0; goto IL_0053; IL_0053: return (byte)result != 0; } set { forceConfigLocking = value; } } public bool IsAdmin => lockExempt || isSourceOfTruth; public bool IsSourceOfTruth { get { return isSourceOfTruth; } private set { if (value != isSourceOfTruth) { isSourceOfTruth = value; this.SourceOfTruthChanged?.Invoke(value); } } } public bool InitialSyncDone { get; private set; } = false; public event Action? SourceOfTruthChanged; private event Action? lockedConfigChanged; static ConfigSync() { ProcessingServerUpdate = false; configSyncs = new HashSet(); lockExempt = false; packageCounter = 0L; RuntimeHelpers.RunClassConstructor(typeof(VersionCheck).TypeHandle); } public ConfigSync(string name) { Name = name; configSyncs.Add(this); new VersionCheck(this); } public SyncedConfigEntry AddConfigEntry(ConfigEntry configEntry) { OwnConfigEntryBase ownConfigEntryBase = configData((ConfigEntryBase)(object)configEntry); SyncedConfigEntry syncedEntry = ownConfigEntryBase as SyncedConfigEntry; if (syncedEntry == null) { syncedEntry = new SyncedConfigEntry(configEntry); AccessTools.DeclaredField(typeof(ConfigDescription), "k__BackingField").SetValue(((ConfigEntryBase)configEntry).Description, new object[1] { new ConfigurationManagerAttributes() }.Concat(((ConfigEntryBase)configEntry).Description.Tags ?? Array.Empty()).Concat(new SyncedConfigEntry[1] { syncedEntry }).ToArray()); configEntry.SettingChanged += delegate { if (!ProcessingServerUpdate && syncedEntry.SynchronizedConfig) { Broadcast(ZRoutedRpc.Everybody, (ConfigEntryBase)configEntry); } }; allConfigs.Add(syncedEntry); } return syncedEntry; } public SyncedConfigEntry AddLockingConfigEntry(ConfigEntry lockingConfig) where T : IConvertible { if (lockedConfig != null) { throw new Exception("Cannot initialize locking ConfigEntry twice"); } lockedConfig = AddConfigEntry(lockingConfig); lockingConfig.SettingChanged += delegate { this.lockedConfigChanged?.Invoke(); }; return (SyncedConfigEntry)lockedConfig; } internal void AddCustomValue(CustomSyncedValueBase customValue) { if (allCustomValues.Select((CustomSyncedValueBase v) => v.Identifier).Concat(new string[1] { "serverversion" }).Contains(customValue.Identifier)) { throw new Exception("Cannot have multiple settings with the same name or with a reserved name (serverversion)"); } allCustomValues.Add(customValue); allCustomValues = new HashSet(allCustomValues.OrderByDescending((CustomSyncedValueBase v) => v.Priority)); customValue.ValueChanged += delegate { if (!ProcessingServerUpdate) { Broadcast(ZRoutedRpc.Everybody, customValue); } }; } private void RPC_FromServerConfigSync(ZRpc rpc, ZPackage package) { lockedConfigChanged += serverLockedSettingChanged; IsSourceOfTruth = false; if (HandleConfigSyncRPC(0L, package, clientUpdate: false)) { InitialSyncDone = true; } } private void RPC_FromOtherClientConfigSync(long sender, ZPackage package) { HandleConfigSyncRPC(sender, package, clientUpdate: true); } private bool HandleConfigSyncRPC(long sender, ZPackage package, bool clientUpdate) { //IL_0076: Unknown result type (might be due to invalid IL or missing references) //IL_007d: Expected O, but got Unknown //IL_0250: Unknown result type (might be due to invalid IL or missing references) //IL_0257: Expected O, but got Unknown //IL_01ea: Unknown result type (might be due to invalid IL or missing references) //IL_01f1: Expected O, but got Unknown try { if (isServer && IsLocked) { ZRpc? currentRpc = SnatchCurrentlyHandlingRPC.currentRpc; object obj; if (currentRpc == null) { obj = null; } else { ISocket socket = currentRpc.GetSocket(); obj = ((socket != null) ? socket.GetHostName() : null); } string text = (string)obj; if (text != null) { MethodInfo methodInfo = AccessTools.DeclaredMethod(typeof(ZNet), "ListContainsId", (Type[])null, (Type[])null); SyncedList val = (SyncedList)AccessTools.DeclaredField(typeof(ZNet), "m_adminList").GetValue(ZNet.instance); if (!(((object)methodInfo == null) ? val.Contains(text) : ((bool)methodInfo.Invoke(ZNet.instance, new object[2] { val, text })))) { return false; } } } cacheExpirations.RemoveAll(delegate(KeyValuePair kv) { if (kv.Key < DateTimeOffset.Now.Ticks) { configValueCache.Remove(kv.Value); return true; } return false; }); byte b = package.ReadByte(); if ((b & 2) != 0) { long num = package.ReadLong(); string text2 = sender.ToString() + num; if (!configValueCache.TryGetValue(text2, out SortedDictionary value)) { value = new SortedDictionary(); configValueCache[text2] = value; cacheExpirations.Add(new KeyValuePair(DateTimeOffset.Now.AddSeconds(60.0).Ticks, text2)); } int key = package.ReadInt(); int num2 = package.ReadInt(); value.Add(key, package.ReadByteArray()); if (value.Count < num2) { return false; } configValueCache.Remove(text2); package = new ZPackage(value.Values.SelectMany((byte[] a) => a).ToArray()); b = package.ReadByte(); } ProcessingServerUpdate = true; if ((b & 4) != 0) { byte[] buffer = package.ReadByteArray(); MemoryStream stream = new MemoryStream(buffer); MemoryStream memoryStream = new MemoryStream(); using (DeflateStream deflateStream = new DeflateStream(stream, CompressionMode.Decompress)) { deflateStream.CopyTo(memoryStream); } package = new ZPackage(memoryStream.ToArray()); b = package.ReadByte(); } if ((b & 1) == 0) { resetConfigsFromServer(); } ParsedConfigs parsedConfigs = ReadConfigsFromPackage(package); ConfigFile val2 = null; bool saveOnConfigSet = false; foreach (KeyValuePair configValue in parsedConfigs.configValues) { if (!isServer && configValue.Key.LocalBaseValue == null) { configValue.Key.LocalBaseValue = configValue.Key.BaseConfig.BoxedValue; } if (val2 == null) { val2 = configValue.Key.BaseConfig.ConfigFile; saveOnConfigSet = val2.SaveOnConfigSet; val2.SaveOnConfigSet = false; } configValue.Key.BaseConfig.BoxedValue = configValue.Value; } if (val2 != null) { val2.SaveOnConfigSet = saveOnConfigSet; val2.Save(); } foreach (KeyValuePair customValue in parsedConfigs.customValues) { if (!isServer) { CustomSyncedValueBase key2 = customValue.Key; if (key2.LocalBaseValue == null) { key2.LocalBaseValue = customValue.Key.BoxedValue; } } customValue.Key.BoxedValue = customValue.Value; } Debug.Log((object)string.Format("Received {0} configs and {1} custom values from {2} for mod {3}", parsedConfigs.configValues.Count, parsedConfigs.customValues.Count, (isServer || clientUpdate) ? $"client {sender}" : "the server", DisplayName ?? Name)); if (!isServer) { serverLockedSettingChanged(); } return true; } finally { ProcessingServerUpdate = false; } } private ParsedConfigs ReadConfigsFromPackage(ZPackage package) { ParsedConfigs parsedConfigs = new ParsedConfigs(); Dictionary dictionary = allConfigs.Where((OwnConfigEntryBase c) => c.SynchronizedConfig).ToDictionary((OwnConfigEntryBase c) => c.BaseConfig.Definition.Section + "_" + c.BaseConfig.Definition.Key, (OwnConfigEntryBase c) => c); Dictionary dictionary2 = allCustomValues.ToDictionary((CustomSyncedValueBase c) => c.Identifier, (CustomSyncedValueBase c) => c); int num = package.ReadInt(); for (int num2 = 0; num2 < num; num2++) { string text = package.ReadString(); string text2 = package.ReadString(); string text3 = package.ReadString(); Type type = Type.GetType(text3); if (text3 == "" || type != null) { object obj; try { obj = ((text3 == "") ? null : ReadValueWithTypeFromZPackage(package, type)); } catch (InvalidDeserializationTypeException ex) { Debug.LogWarning((object)("Got unexpected struct internal type " + ex.received + " for field " + ex.field + " struct " + text3 + " for " + text2 + " in section " + text + " for mod " + (DisplayName ?? Name) + ", expecting " + ex.expected)); continue; } OwnConfigEntryBase value2; if (text == "Internal") { CustomSyncedValueBase value; if (text2 == "serverversion") { if (obj?.ToString() != CurrentVersion) { Debug.LogWarning((object)("Received server version is not equal: server version = " + (obj?.ToString() ?? "null") + "; local version = " + (CurrentVersion ?? "unknown"))); } } else if (text2 == "lockexempt") { if (obj is bool flag) { lockExempt = flag; } } else if (dictionary2.TryGetValue(text2, out value)) { if ((text3 == "" && (!value.Type.IsValueType || Nullable.GetUnderlyingType(value.Type) != null)) || GetZPackageTypeString(value.Type) == text3) { parsedConfigs.customValues[value] = obj; continue; } Debug.LogWarning((object)("Got unexpected type " + text3 + " for internal value " + text2 + " for mod " + (DisplayName ?? Name) + ", expecting " + value.Type.AssemblyQualifiedName)); } } else if (dictionary.TryGetValue(text + "_" + text2, out value2)) { Type type2 = configType(value2.BaseConfig); if ((text3 == "" && (!type2.IsValueType || Nullable.GetUnderlyingType(type2) != null)) || GetZPackageTypeString(type2) == text3) { parsedConfigs.configValues[value2] = obj; continue; } Debug.LogWarning((object)("Got unexpected type " + text3 + " for " + text2 + " in section " + text + " for mod " + (DisplayName ?? Name) + ", expecting " + type2.AssemblyQualifiedName)); } else { Debug.LogWarning((object)("Received unknown config entry " + text2 + " in section " + text + " for mod " + (DisplayName ?? Name) + ". This may happen if client and server versions of the mod do not match.")); } continue; } Debug.LogWarning((object)("Got invalid type " + text3 + ", abort reading of received configs")); return new ParsedConfigs(); } return parsedConfigs; } private static bool isWritableConfig(OwnConfigEntryBase config) { ConfigSync configSync = configSyncs.FirstOrDefault((ConfigSync cs) => cs.allConfigs.Contains(config)); if (configSync == null) { return true; } return configSync.IsSourceOfTruth || !config.SynchronizedConfig || config.LocalBaseValue == null || (!configSync.IsLocked && (config != configSync.lockedConfig || lockExempt)); } private void serverLockedSettingChanged() { foreach (OwnConfigEntryBase allConfig in allConfigs) { configAttribute(allConfig.BaseConfig).ReadOnly = !isWritableConfig(allConfig); } } private void resetConfigsFromServer() { ConfigFile val = null; bool saveOnConfigSet = false; foreach (OwnConfigEntryBase item in allConfigs.Where((OwnConfigEntryBase config) => config.LocalBaseValue != null)) { if (val == null) { val = item.BaseConfig.ConfigFile; saveOnConfigSet = val.SaveOnConfigSet; val.SaveOnConfigSet = false; } item.BaseConfig.BoxedValue = item.LocalBaseValue; item.LocalBaseValue = null; } if (val != null) { val.SaveOnConfigSet = saveOnConfigSet; } foreach (CustomSyncedValueBase item2 in allCustomValues.Where((CustomSyncedValueBase config) => config.LocalBaseValue != null)) { item2.BoxedValue = item2.LocalBaseValue; item2.LocalBaseValue = null; } lockedConfigChanged -= serverLockedSettingChanged; serverLockedSettingChanged(); } private IEnumerator distributeConfigToPeers(ZNetPeer peer, ZPackage package) { ZRoutedRpc rpc = ZRoutedRpc.instance; if (rpc == null) { yield break; } byte[] data = package.GetArray(); if (data != null && data.LongLength > 250000) { int fragments = (int)(1 + (data.LongLength - 1) / 250000); long packageIdentifier = ++packageCounter; int fragment = 0; while (fragment < fragments) { foreach (bool item in waitForQueue()) { yield return item; } if (peer.m_socket.IsConnected()) { ZPackage fragmentedPackage = new ZPackage(); fragmentedPackage.Write((byte)2); fragmentedPackage.Write(packageIdentifier); fragmentedPackage.Write(fragment); fragmentedPackage.Write(fragments); fragmentedPackage.Write(data.Skip(250000 * fragment).Take(250000).ToArray()); SendPackage(fragmentedPackage); if (fragment != fragments - 1) { yield return true; } int num = fragment + 1; fragment = num; continue; } break; } yield break; } foreach (bool item2 in waitForQueue()) { yield return item2; } SendPackage(package); void SendPackage(ZPackage pkg) { string text = Name + " ConfigSync"; if (isServer) { peer.m_rpc.Invoke(text, new object[1] { pkg }); } else { rpc.InvokeRoutedRPC(peer.m_server ? 0 : peer.m_uid, text, new object[1] { pkg }); } } IEnumerable waitForQueue() { float timeout = Time.time + 30f; while (peer.m_socket.GetSendQueueSize() > 20000) { if (Time.time > timeout) { Debug.Log((object)$"Disconnecting {peer.m_uid} after 30 seconds config sending timeout"); peer.m_rpc.Invoke("Error", new object[1] { (object)(ConnectionStatus)5 }); ZNet.instance.Disconnect(peer); break; } yield return false; } } } private IEnumerator sendZPackage(long target, ZPackage package) { if (!Object.op_Implicit((Object)(object)ZNet.instance)) { return Enumerable.Empty().GetEnumerator(); } List list = (List)AccessTools.DeclaredField(typeof(ZRoutedRpc), "m_peers").GetValue(ZRoutedRpc.instance); if (target != ZRoutedRpc.Everybody) { list = list.Where((ZNetPeer p) => p.m_uid == target).ToList(); } return sendZPackage(list, package); } private IEnumerator sendZPackage(List peers, ZPackage package) { if (!Object.op_Implicit((Object)(object)ZNet.instance)) { yield break; } byte[] rawData = package.GetArray(); if (rawData != null && rawData.LongLength > 10000) { ZPackage compressedPackage = new ZPackage(); compressedPackage.Write((byte)4); MemoryStream output = new MemoryStream(); using (DeflateStream deflateStream = new DeflateStream(output, CompressionLevel.Optimal)) { deflateStream.Write(rawData, 0, rawData.Length); } compressedPackage.Write(output.ToArray()); package = compressedPackage; } List> writers = (from p in peers where p.IsReady() select distributeConfigToPeers(p, package)).ToList(); writers.RemoveAll((IEnumerator writer) => !writer.MoveNext()); while (writers.Count > 0) { yield return null; writers.RemoveAll((IEnumerator writer) => !writer.MoveNext()); } } private void Broadcast(long target, params ConfigEntryBase[] configs) { if (!IsLocked || isServer) { ZPackage package = ConfigsToPackage(configs); ZNet instance = ZNet.instance; if (instance != null) { ((MonoBehaviour)instance).StartCoroutine(sendZPackage(target, package)); } } } private void Broadcast(long target, params CustomSyncedValueBase[] customValues) { if (!IsLocked || isServer) { ZPackage package = ConfigsToPackage(null, customValues); ZNet instance = ZNet.instance; if (instance != null) { ((MonoBehaviour)instance).StartCoroutine(sendZPackage(target, package)); } } } private static OwnConfigEntryBase? configData(ConfigEntryBase config) { return config.Description.Tags?.OfType().SingleOrDefault(); } public static SyncedConfigEntry? ConfigData(ConfigEntry config) { return ((ConfigEntryBase)config).Description.Tags?.OfType>().SingleOrDefault(); } private static T configAttribute(ConfigEntryBase config) { return config.Description.Tags.OfType().First(); } private static Type configType(ConfigEntryBase config) { return configType(config.SettingType); } private static Type configType(Type type) { return type.IsEnum ? Enum.GetUnderlyingType(type) : type; } private static ZPackage ConfigsToPackage(IEnumerable? configs = null, IEnumerable? customValues = null, IEnumerable? packageEntries = null, bool partial = true) { //IL_0051: Unknown result type (might be due to invalid IL or missing references) //IL_0057: Expected O, but got Unknown List list = configs?.Where((ConfigEntryBase config) => configData(config).SynchronizedConfig).ToList() ?? new List(); List list2 = customValues?.ToList() ?? new List(); ZPackage val = new ZPackage(); val.Write((byte)(partial ? 1 : 0)); val.Write(list.Count + list2.Count + (packageEntries?.Count() ?? 0)); foreach (PackageEntry item in packageEntries ?? Array.Empty()) { AddEntryToPackage(val, item); } foreach (CustomSyncedValueBase item2 in list2) { AddEntryToPackage(val, new PackageEntry { section = "Internal", key = item2.Identifier, type = item2.Type, value = item2.BoxedValue }); } foreach (ConfigEntryBase item3 in list) { AddEntryToPackage(val, new PackageEntry { section = item3.Definition.Section, key = item3.Definition.Key, type = configType(item3), value = item3.BoxedValue }); } return val; } private static void AddEntryToPackage(ZPackage package, PackageEntry entry) { package.Write(entry.section); package.Write(entry.key); package.Write((entry.value == null) ? "" : GetZPackageTypeString(entry.type)); AddValueToZPackage(package, entry.value); } private static string GetZPackageTypeString(Type type) { return type.AssemblyQualifiedName; } private static void AddValueToZPackage(ZPackage package, object? value) { Type type = value?.GetType(); if (value is Enum) { value = ((IConvertible)value).ToType(Enum.GetUnderlyingType(value.GetType()), CultureInfo.InvariantCulture); } else { if (value is ICollection collection) { package.Write(collection.Count); { foreach (object item in collection) { AddValueToZPackage(package, item); } return; } } if ((object)type != null && type.IsValueType && !type.IsPrimitive) { FieldInfo[] fields = type.GetFields(BindingFlags.Instance | BindingFlags.Public | BindingFlags.NonPublic); package.Write(fields.Length); FieldInfo[] array = fields; foreach (FieldInfo fieldInfo in array) { package.Write(GetZPackageTypeString(fieldInfo.FieldType)); AddValueToZPackage(package, fieldInfo.GetValue(value)); } return; } } ZRpc.Serialize(new object[1] { value }, ref package); } private static object ReadValueWithTypeFromZPackage(ZPackage package, Type type) { if ((object)type != null && type.IsValueType && !type.IsPrimitive && !type.IsEnum) { FieldInfo[] fields = type.GetFields(BindingFlags.Instance | BindingFlags.Public | BindingFlags.NonPublic); int num = package.ReadInt(); if (num != fields.Length) { throw new InvalidDeserializationTypeException { received = $"(field count: {num})", expected = $"(field count: {fields.Length})" }; } object uninitializedObject = FormatterServices.GetUninitializedObject(type); FieldInfo[] array = fields; foreach (FieldInfo fieldInfo in array) { string text = package.ReadString(); if (text != GetZPackageTypeString(fieldInfo.FieldType)) { throw new InvalidDeserializationTypeException { received = text, expected = GetZPackageTypeString(fieldInfo.FieldType), field = fieldInfo.Name }; } fieldInfo.SetValue(uninitializedObject, ReadValueWithTypeFromZPackage(package, fieldInfo.FieldType)); } return uninitializedObject; } if (type.IsGenericType && type.GetGenericTypeDefinition() == typeof(Dictionary<, >)) { int num2 = package.ReadInt(); IDictionary dictionary = (IDictionary)Activator.CreateInstance(type); Type type2 = typeof(KeyValuePair<, >).MakeGenericType(type.GenericTypeArguments); FieldInfo field = type2.GetField("key", BindingFlags.Instance | BindingFlags.NonPublic); FieldInfo field2 = type2.GetField("value", BindingFlags.Instance | BindingFlags.NonPublic); for (int j = 0; j < num2; j++) { object obj = ReadValueWithTypeFromZPackage(package, type2); dictionary.Add(field.GetValue(obj), field2.GetValue(obj)); } return dictionary; } if (type != typeof(List) && type.IsGenericType) { Type type3 = typeof(ICollection<>).MakeGenericType(type.GenericTypeArguments[0]); if ((object)type3 != null && type3.IsAssignableFrom(type)) { int num3 = package.ReadInt(); object obj2 = Activator.CreateInstance(type); MethodInfo method = type3.GetMethod("Add"); for (int k = 0; k < num3; k++) { method.Invoke(obj2, new object[1] { ReadValueWithTypeFromZPackage(package, type.GenericTypeArguments[0]) }); } return obj2; } } ParameterInfo parameterInfo = (ParameterInfo)FormatterServices.GetUninitializedObject(typeof(ParameterInfo)); AccessTools.DeclaredField(typeof(ParameterInfo), "ClassImpl").SetValue(parameterInfo, type); List source = new List(); ZRpc.Deserialize(new ParameterInfo[2] { null, parameterInfo }, package, ref source); return source.First(); } } [PublicAPI] [HarmonyPatch] internal class VersionCheck { private static readonly HashSet versionChecks; private static readonly Dictionary notProcessedNames; public string Name; private string? displayName; private string? currentVersion; private string? minimumRequiredVersion; public bool ModRequired = true; private string? ReceivedCurrentVersion; private string? ReceivedMinimumRequiredVersion; private readonly List ValidatedClients = new List(); private ConfigSync? ConfigSync; public string DisplayName { get { return displayName ?? Name; } set { displayName = value; } } public string CurrentVersion { get { return currentVersion ?? "0.0.0"; } set { currentVersion = value; } } public string MinimumRequiredVersion { get { return minimumRequiredVersion ?? (ModRequired ? CurrentVersion : "0.0.0"); } set { minimumRequiredVersion = value; } } private static void PatchServerSync() { //IL_005e: Unknown result type (might be due to invalid IL or missing references) //IL_0064: Expected O, but got Unknown Patches patchInfo = PatchProcessor.GetPatchInfo((MethodBase)AccessTools.DeclaredMethod(typeof(ZNet), "Awake", (Type[])null, (Type[])null)); if (patchInfo != null && patchInfo.Postfixes.Count((Patch p) => p.PatchMethod.DeclaringType == typeof(ConfigSync.RegisterRPCPatch)) > 0) { return; } Harmony val = new Harmony("org.bepinex.helpers.ServerSync"); foreach (Type item in from t in typeof(ConfigSync).GetNestedTypes(BindingFlags.NonPublic).Concat(new Type[1] { typeof(VersionCheck) }) where t.IsClass select t) { val.PatchAll(item); } } static VersionCheck() { versionChecks = new HashSet(); notProcessedNames = new Dictionary(); typeof(ThreadingHelper).GetMethod("StartSyncInvoke").Invoke(ThreadingHelper.Instance, new object[1] { new Action(PatchServerSync) }); } public VersionCheck(string name) { Name = name; ModRequired = true; versionChecks.Add(this); } public VersionCheck(ConfigSync configSync) { ConfigSync = configSync; Name = ConfigSync.Name; versionChecks.Add(this); } public void Initialize() { ReceivedCurrentVersion = null; ReceivedMinimumRequiredVersion = null; if (ConfigSync != null) { Name = ConfigSync.Name; DisplayName = ConfigSync.DisplayName; CurrentVersion = ConfigSync.CurrentVersion; MinimumRequiredVersion = ConfigSync.MinimumRequiredVersion; ModRequired = ConfigSync.ModRequired; } } private bool IsVersionOk() { if (ReceivedMinimumRequiredVersion == null || ReceivedCurrentVersion == null) { return !ModRequired; } bool flag = new Version(CurrentVersion) >= new Version(ReceivedMinimumRequiredVersion); bool flag2 = new Version(ReceivedCurrentVersion) >= new Version(MinimumRequiredVersion); return flag && flag2; } private string ErrorClient() { if (ReceivedMinimumRequiredVersion == null) { return DisplayName + " is not installed on the server."; } return (new Version(CurrentVersion) >= new Version(ReceivedMinimumRequiredVersion)) ? (DisplayName + " may not be higher than version " + ReceivedCurrentVersion + ". You have version " + CurrentVersion + ".") : (DisplayName + " needs to be at least version " + ReceivedMinimumRequiredVersion + ". You have version " + CurrentVersion + "."); } private string ErrorServer(ZRpc rpc) { return "Disconnect: The client (" + rpc.GetSocket().GetHostName() + ") doesn't have the correct " + DisplayName + " version " + MinimumRequiredVersion; } private string Error(ZRpc? rpc = null) { return (rpc == null) ? ErrorClient() : ErrorServer(rpc); } private static VersionCheck[] GetFailedClient() { return versionChecks.Where((VersionCheck check) => !check.IsVersionOk()).ToArray(); } private static VersionCheck[] GetFailedServer(ZRpc rpc) { return versionChecks.Where((VersionCheck check) => check.ModRequired && !check.ValidatedClients.Contains(rpc)).ToArray(); } private static void Logout() { Game.instance.Logout(true, true); AccessTools.DeclaredField(typeof(ZNet), "m_connectionStatus").SetValue(null, (object)(ConnectionStatus)3); } private static void DisconnectClient(ZRpc rpc) { rpc.Invoke("Error", new object[1] { 3 }); } private static void CheckVersion(ZRpc rpc, ZPackage pkg) { CheckVersion(rpc, pkg, null); } private static void CheckVersion(ZRpc rpc, ZPackage pkg, Action? original) { string text = pkg.ReadString(); string text2 = pkg.ReadString(); string text3 = pkg.ReadString(); bool flag = false; foreach (VersionCheck versionCheck in versionChecks) { if (!(text != versionCheck.Name)) { Debug.Log((object)("Received " + versionCheck.DisplayName + " version " + text3 + " and minimum version " + text2 + " from the " + (ZNet.instance.IsServer() ? "client" : "server") + ".")); versionCheck.ReceivedMinimumRequiredVersion = text2; versionCheck.ReceivedCurrentVersion = text3; if (ZNet.instance.IsServer() && versionCheck.IsVersionOk()) { versionCheck.ValidatedClients.Add(rpc); } flag = true; } } if (flag) { return; } pkg.SetPos(0); if (original != null) { original(rpc, pkg); if (pkg.GetPos() == 0) { notProcessedNames.Add(text, text3); } } } [HarmonyPatch(typeof(ZNet), "RPC_PeerInfo")] [HarmonyPrefix] private static bool RPC_PeerInfo(ZRpc rpc, ZNet __instance) { VersionCheck[] array = (__instance.IsServer() ? GetFailedServer(rpc) : GetFailedClient()); if (array.Length == 0) { return true; } VersionCheck[] array2 = array; foreach (VersionCheck versionCheck in array2) { Debug.LogWarning((object)versionCheck.Error(rpc)); } if (__instance.IsServer()) { DisconnectClient(rpc); } else { Logout(); } return false; } [HarmonyPatch(typeof(ZNet), "OnNewConnection")] [HarmonyPrefix] private static void RegisterAndCheckVersion(ZNetPeer peer, ZNet __instance) { //IL_018e: Unknown result type (might be due to invalid IL or missing references) //IL_0195: Expected O, but got Unknown notProcessedNames.Clear(); IDictionary dictionary = (IDictionary)typeof(ZRpc).GetField("m_functions", BindingFlags.Instance | BindingFlags.NonPublic).GetValue(peer.m_rpc); if (dictionary.Contains(StringExtensionMethods.GetStableHashCode("ServerSync VersionCheck"))) { object obj = dictionary[StringExtensionMethods.GetStableHashCode("ServerSync VersionCheck")]; Action action = (Action)obj.GetType().GetField("m_action", BindingFlags.Instance | BindingFlags.NonPublic).GetValue(obj); peer.m_rpc.Register("ServerSync VersionCheck", (Action)delegate(ZRpc rpc, ZPackage pkg) { CheckVersion(rpc, pkg, action); }); } else { peer.m_rpc.Register("ServerSync VersionCheck", (Action)CheckVersion); } foreach (VersionCheck versionCheck in versionChecks) { versionCheck.Initialize(); if (versionCheck.ModRequired || __instance.IsServer()) { Debug.Log((object)("Sending " + versionCheck.DisplayName + " version " + versionCheck.CurrentVersion + " and minimum version " + versionCheck.MinimumRequiredVersion + " to the " + (__instance.IsServer() ? "client" : "server") + ".")); ZPackage val = new ZPackage(); val.Write(versionCheck.Name); val.Write(versionCheck.MinimumRequiredVersion); val.Write(versionCheck.CurrentVersion); peer.m_rpc.Invoke("ServerSync VersionCheck", new object[1] { val }); } } } [HarmonyPatch(typeof(ZNet), "Disconnect")] [HarmonyPrefix] private static void RemoveDisconnected(ZNetPeer peer, ZNet __instance) { if (!__instance.IsServer()) { return; } foreach (VersionCheck versionCheck in versionChecks) { versionCheck.ValidatedClients.Remove(peer.m_rpc); } } [HarmonyPatch(typeof(FejdStartup), "ShowConnectError")] [HarmonyPostfix] private static void ShowConnectionError(FejdStartup __instance) { //IL_000e: Unknown result type (might be due to invalid IL or missing references) //IL_0014: Invalid comparison between Unknown and I4 //IL_0186: Unknown result type (might be due to invalid IL or missing references) //IL_018b: Unknown result type (might be due to invalid IL or missing references) //IL_0199: Unknown result type (might be due to invalid IL or missing references) //IL_01de: Unknown result type (might be due to invalid IL or missing references) //IL_01ea: Unknown result type (might be due to invalid IL or missing references) //IL_01f8: Unknown result type (might be due to invalid IL or missing references) //IL_020a: Unknown result type (might be due to invalid IL or missing references) //IL_0219: Unknown result type (might be due to invalid IL or missing references) //IL_021e: Unknown result type (might be due to invalid IL or missing references) //IL_0229: Unknown result type (might be due to invalid IL or missing references) if (!__instance.m_connectionFailedPanel.activeSelf || (int)ZNet.GetConnectionStatus() != 3) { return; } bool flag = false; VersionCheck[] failedClient = GetFailedClient(); if (failedClient.Length != 0) { string text = string.Join("\n", failedClient.Select((VersionCheck check) => check.Error())); TMP_Text connectionFailedError = __instance.m_connectionFailedError; connectionFailedError.text = connectionFailedError.text + "\n" + text; flag = true; } foreach (KeyValuePair item in notProcessedNames.OrderBy, string>((KeyValuePair kv) => kv.Key)) { if (!__instance.m_connectionFailedError.text.Contains(item.Key)) { TMP_Text connectionFailedError2 = __instance.m_connectionFailedError; connectionFailedError2.text = connectionFailedError2.text + "\nServer expects you to have " + item.Key + " (Version: " + item.Value + ") installed."; flag = true; } } if (flag) { RectTransform component = ((Component)__instance.m_connectionFailedPanel.transform.Find("Image")).GetComponent(); Vector2 sizeDelta = component.sizeDelta; sizeDelta.x = 675f; component.sizeDelta = sizeDelta; __instance.m_connectionFailedError.ForceMeshUpdate(false, false); float num = __instance.m_connectionFailedError.renderedHeight + 105f; RectTransform component2 = ((Component)((Component)component).transform.Find("ButtonOk")).GetComponent(); component2.anchoredPosition = new Vector2(component2.anchoredPosition.x, component2.anchoredPosition.y - (num - component.sizeDelta.y) / 2f); sizeDelta = component.sizeDelta; sizeDelta.y = num; component.sizeDelta = sizeDelta; } } } }