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Decompiled source of SmartBallista v1.0.1
SmartBallista.dll
Decompiled 15 hours agousing 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.Runtime.CompilerServices; using System.Runtime.Serialization; using System.Runtime.Versioning; using System.Security; using System.Security.Permissions; using System.Text; using BepInEx; using BepInEx.Configuration; using BepInEx.Logging; using HarmonyLib; using Microsoft.CodeAnalysis; using ServerSync; using TMPro; using UnityEngine; using UnityEngine.SceneManagement; [assembly: CompilationRelaxations(8)] [assembly: RuntimeCompatibility(WrapNonExceptionThrows = true)] [assembly: Debuggable(DebuggableAttribute.DebuggingModes.IgnoreSymbolStoreSequencePoints)] [assembly: TargetFramework(".NETStandard,Version=v2.1", FrameworkDisplayName = ".NET Standard 2.1")] [assembly: AssemblyCompany("SmartBallista")] [assembly: AssemblyConfiguration("Release")] [assembly: AssemblyFileVersion("1.0.1.0")] [assembly: AssemblyInformationalVersion("1.0.1+901b84ab23f2f10926b13865f9b40bb283490874")] [assembly: AssemblyProduct("SmartBallista")] [assembly: AssemblyTitle("SmartBallista")] [assembly: SecurityPermission(SecurityAction.RequestMinimum, SkipVerification = true)] [assembly: AssemblyVersion("1.0.1.0")] [module: UnverifiableCode] [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 ServerSync { public abstract class OwnConfigEntryBase { public object? LocalBaseValue; public bool SynchronizedConfig = true; public abstract ConfigEntryBase BaseConfig { get; } } public class SyncedConfigEntry<T>(ConfigEntry<T> sourceConfig) : OwnConfigEntryBase() { public readonly ConfigEntry<T> 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; } } } public 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; }; } } public sealed class CustomSyncedValue<T> : 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 { public bool? ReadOnly = false; } public 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<ZPackage>(configSync2.Name + " ConfigSync", (Action<long, ZPackage>)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<ZNetPeer> 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<string> CurrentList = new List<string>(adminList.GetList()); while (true) { yield return (object)new WaitForSeconds(30f); if (!adminList.GetList().SequenceEqual(CurrentList)) { CurrentList = new List<string>(adminList.GetList()); List<ZNetPeer> list = ZNet.instance.GetPeers().Where(delegate(ZNetPeer p) { string hostName = p.m_rpc.GetSocket().GetHostName(); return ((object)listContainsId != null) ? ((bool)listContainsId.Invoke(ZNet.instance, new object[2] { adminList, hostName })) : adminList.Contains(hostName); }).ToList(); SendAdmin(ZNet.instance.GetPeers().Except(list).ToList(), isAdmin: false); SendAdmin(list, 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<ZPackage>(configSync.Name + " ConfigSync", (Action<ZRpc, ZPackage>)configSync.RPC_FromServerConfigSync); } } } private class ParsedConfigs { public readonly Dictionary<OwnConfigEntryBase, object?> configValues = new Dictionary<OwnConfigEntryBase, object>(); public readonly Dictionary<CustomSyncedValueBase, object?> customValues = new Dictionary<CustomSyncedValueBase, object>(); } [HarmonyPatch(typeof(ZNet), "Shutdown")] private class ResetConfigsOnShutdown { [HarmonyPostfix] private static void Postfix() { ProcessingServerUpdate = true; try { foreach (ConfigSync configSync in configSyncs) { configSync.resetConfigsFromServer(); configSync.IsSourceOfTruth = true; configSync.InitialSyncDone = false; } } finally { lockExempt = false; ProcessingServerUpdate = false; } } } [HarmonyPatch(typeof(ZNet), "RPC_PeerInfo")] private class SendConfigsAfterLogin { private class BufferingSocket : ZPlayFabSocket, ISocket { public volatile bool finished; public volatile int versionMatchQueued = -1; public readonly List<ZPackage> Package = new List<ZPackage>(); 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_004c: Unknown result type (might be due to invalid IL or missing references) //IL_0052: 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<Assembly, BufferingSocket>? __state, ZNet __instance, ZRpc rpc) { //IL_0073: Unknown result type (might be due to invalid IL or missing references) 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<Assembly, BufferingSocket>(); } __state[Assembly.GetExecutingAssembly()] = bufferingSocket; } [HarmonyPostfix] private static void Postfix(Dictionary<Assembly, BufferingSocket> __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<PackageEntry> list = new List<PackageEntry>(); if (configSync.CurrentVersion != null) { list.Add(new PackageEntry { section = "Internal", key = "serverversion", type = typeof(string), value = configSync.CurrentVersion }); } MethodInfo methodInfo = AccessTools.DeclaredMethod(typeof(ZNet), "ListContainsId", (Type[])null, (Type[])null); SyncedList val = (SyncedList)AccessTools.DeclaredField(typeof(ZNet), "m_adminList").GetValue(ZNet.instance); list.Add(new PackageEntry { section = "Internal", key = "lockexempt", type = typeof(bool), value = (((object)methodInfo == null) ? ((object)val.Contains(rpc.GetSocket().GetHostName())) : methodInfo.Invoke(ZNet.instance, new object[2] { val, rpc.GetSocket().GetHostName() })) }); ZPackage package = ConfigsToPackage(configSync.allConfigs.Select((OwnConfigEntryBase c) => c.BaseConfig), configSync.allCustomValues, list, partial: false); yield return ((MonoBehaviour)__instance).StartCoroutine(configSync.sendZPackage(new List<ZNetPeer> { peer }, package)); } SendBufferedData(); } } } private class PackageEntry { public string section; public string key; public Type type; 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; public string received; public string field = ""; } public static bool ProcessingServerUpdate; public readonly string Name; public string? DisplayName; public string? CurrentVersion; public string? MinimumRequiredVersion; public bool ModRequired; private bool? forceConfigLocking; private bool isSourceOfTruth = true; private static readonly HashSet<ConfigSync> configSyncs; private readonly HashSet<OwnConfigEntryBase> allConfigs = new HashSet<OwnConfigEntryBase>(); private HashSet<CustomSyncedValueBase> allCustomValues = new HashSet<CustomSyncedValueBase>(); private static bool isServer; private static bool lockExempt; private OwnConfigEntryBase? lockedConfig; private const byte PARTIAL_CONFIGS = 1; private const byte FRAGMENTED_CONFIG = 2; private const byte COMPRESSED_CONFIG = 4; private readonly Dictionary<string, SortedDictionary<int, byte[]>> configValueCache = new Dictionary<string, SortedDictionary<int, byte[]>>(); private readonly List<KeyValuePair<long, string>> cacheExpirations = new List<KeyValuePair<long, string>>(); private static long packageCounter; public bool IsLocked { get { bool? flag = forceConfigLocking; bool num; if (!flag.HasValue) { if (lockedConfig == null) { goto IL_0051; } num = ((IConvertible)lockedConfig.BaseConfig.BoxedValue).ToInt32(CultureInfo.InvariantCulture) != 0; } else { num = flag == true; } if (num) { return !lockExempt; } goto IL_0051; IL_0051: return false; } set { forceConfigLocking = value; } } public bool IsAdmin { get { if (!lockExempt) { return isSourceOfTruth; } return true; } } public bool IsSourceOfTruth { get { return isSourceOfTruth; } private set { if (value != isSourceOfTruth) { isSourceOfTruth = value; this.SourceOfTruthChanged?.Invoke(value); } } } public bool InitialSyncDone { get; private set; } public event Action<bool>? SourceOfTruthChanged; private event Action? lockedConfigChanged; static ConfigSync() { ProcessingServerUpdate = false; configSyncs = new HashSet<ConfigSync>(); lockExempt = false; packageCounter = 0L; RuntimeHelpers.RunClassConstructor(typeof(VersionCheck).TypeHandle); } public ConfigSync(string name) { Name = name; configSyncs.Add(this); new VersionCheck(this); } public SyncedConfigEntry<T> AddConfigEntry<T>(ConfigEntry<T> configEntry) { OwnConfigEntryBase ownConfigEntryBase = configData((ConfigEntryBase)(object)configEntry); SyncedConfigEntry<T> syncedEntry = ownConfigEntryBase as SyncedConfigEntry<T>; if (syncedEntry == null) { syncedEntry = new SyncedConfigEntry<T>(configEntry); AccessTools.DeclaredField(typeof(ConfigDescription), "<Tags>k__BackingField").SetValue(((ConfigEntryBase)configEntry).Description, new object[1] { new ConfigurationManagerAttributes() }.Concat(((ConfigEntryBase)configEntry).Description.Tags ?? Array.Empty<object>()).Concat(new SyncedConfigEntry<T>[1] { syncedEntry }).ToArray()); configEntry.SettingChanged += delegate { if (!ProcessingServerUpdate && syncedEntry.SynchronizedConfig) { Broadcast(0L, (ConfigEntryBase)configEntry); } }; allConfigs.Add(syncedEntry); } return syncedEntry; } public SyncedConfigEntry<T> AddLockingConfigEntry<T>(ConfigEntry<T> lockingConfig) where T : IConvertible { if (lockedConfig != null) { throw new Exception("Cannot initialize locking ConfigEntry twice"); } lockedConfig = AddConfigEntry<T>(lockingConfig); lockingConfig.SettingChanged += delegate { this.lockedConfigChanged?.Invoke(); }; return (SyncedConfigEntry<T>)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<CustomSyncedValueBase>(allCustomValues.OrderByDescending((CustomSyncedValueBase v) => v.Priority)); customValue.ValueChanged += delegate { if (!ProcessingServerUpdate) { Broadcast(0L, customValue); } }; } private void RPC_FromServerConfigSync(ZRpc rpc, ZPackage package) { lockedConfigChanged -= serverLockedSettingChanged; 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_0209: Unknown result type (might be due to invalid IL or missing references) //IL_0210: Expected O, but got Unknown //IL_01b8: Unknown result type (might be due to invalid IL or missing references) //IL_01bf: Expected O, but got Unknown //IL_006c: Unknown result type (might be due to invalid IL or missing references) //IL_0073: 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<long, string> 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<int, byte[]> value)) { value = new SortedDictionary<int, byte[]>(); configValueCache[text2] = value; cacheExpirations.Add(new KeyValuePair<long, string>(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) { MemoryStream stream = new MemoryStream(package.ReadByteArray()); 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); if (!isServer) { foreach (KeyValuePair<OwnConfigEntryBase, object> configValue in parsedConfigs.configValues) { OwnConfigEntryBase key2 = configValue.Key; if (key2.LocalBaseValue == null) { key2.LocalBaseValue = configValue.Key.BaseConfig.BoxedValue; } } foreach (KeyValuePair<CustomSyncedValueBase, object> customValue in parsedConfigs.customValues) { CustomSyncedValueBase key3 = customValue.Key; if (key3.LocalBaseValue == null) { key3.LocalBaseValue = customValue.Key.BoxedValue; } } serverLockedSettingChanged(); } ConfigFile val2 = null; bool saveOnConfigSet = false; try { foreach (KeyValuePair<OwnConfigEntryBase, object> configValue2 in parsedConfigs.configValues) { if (val2 == null) { val2 = configValue2.Key.BaseConfig.ConfigFile; saveOnConfigSet = val2.SaveOnConfigSet; val2.SaveOnConfigSet = false; } configValue2.Key.BaseConfig.BoxedValue = configValue2.Value; } if (val2 != null) { val2.Save(); } } finally { if (val2 != null) { val2.SaveOnConfigSet = saveOnConfigSet; } } foreach (KeyValuePair<CustomSyncedValueBase, object> customValue2 in parsedConfigs.customValues) { if (!isServer) { CustomSyncedValueBase key3 = customValue2.Key; if (key3.LocalBaseValue == null) { key3.LocalBaseValue = customValue2.Key.BoxedValue; } } customValue2.Key.BoxedValue = customValue2.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<string, OwnConfigEntryBase> dictionary = allConfigs.Where((OwnConfigEntryBase c) => c.SynchronizedConfig).ToDictionary((OwnConfigEntryBase c) => c.BaseConfig.Definition.Section + "_" + c.BaseConfig.Definition.Key, (OwnConfigEntryBase c) => c); Dictionary<string, CustomSyncedValueBase> 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; } if (!configSync.IsSourceOfTruth && config.SynchronizedConfig && config.LocalBaseValue != null) { if (!configSync.IsLocked) { if (config == configSync.lockedConfig) { return lockExempt; } return true; } return false; } return true; } private void serverLockedSettingChanged() { foreach (OwnConfigEntryBase allConfig in allConfigs) { configAttribute<ConfigurationManagerAttributes>(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<bool> 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 val = new ZPackage(); val.Write((byte)2); val.Write(packageIdentifier); val.Write(fragment); val.Write(fragments); val.Write(data.Skip(250000 * fragment).Take(250000).ToArray()); SendPackage(val); 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<bool> 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<object>().GetEnumerator(); } List<ZNetPeer> list = (List<ZNetPeer>)AccessTools.DeclaredField(typeof(ZRoutedRpc), "m_peers").GetValue(ZRoutedRpc.instance); if (target != 0L) { list = list.Where((ZNetPeer p) => p.m_uid == target).ToList(); } return sendZPackage(list, package); } private IEnumerator sendZPackage(List<ZNetPeer> peers, ZPackage package) { if (!Object.op_Implicit((Object)(object)ZNet.instance)) { yield break; } byte[] array = package.GetArray(); if (array != null && array.LongLength > 10000) { ZPackage val = new ZPackage(); val.Write((byte)4); MemoryStream memoryStream = new MemoryStream(); using (DeflateStream deflateStream = new DeflateStream(memoryStream, CompressionLevel.Optimal)) { deflateStream.Write(array, 0, array.Length); } val.Write(memoryStream.ToArray()); package = val; } List<IEnumerator<bool>> writers = (from p in peers where p.IsReady() select distributeConfigToPeers(p, package)).ToList(); writers.RemoveAll((IEnumerator<bool> writer) => !writer.MoveNext()); while (writers.Count > 0) { yield return null; writers.RemoveAll((IEnumerator<bool> 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<OwnConfigEntryBase>().SingleOrDefault(); } public static SyncedConfigEntry<T>? ConfigData<T>(ConfigEntry<T> config) { return ((ConfigEntryBase)config).Description.Tags?.OfType<SyncedConfigEntry<T>>().SingleOrDefault(); } private static T configAttribute<T>(ConfigEntryBase config) { return config.Description.Tags.OfType<T>().First(); } private static Type configType(ConfigEntryBase config) { return configType(config.SettingType); } private static Type configType(Type type) { if (!type.IsEnum) { return type; } return Enum.GetUnderlyingType(type); } private static ZPackage ConfigsToPackage(IEnumerable<ConfigEntryBase>? configs = null, IEnumerable<CustomSyncedValueBase>? customValues = null, IEnumerable<PackageEntry>? packageEntries = null, bool partial = true) { //IL_0050: Unknown result type (might be due to invalid IL or missing references) //IL_0056: Expected O, but got Unknown List<ConfigEntryBase> list = configs?.Where((ConfigEntryBase config) => configData(config).SynchronizedConfig).ToList() ?? new List<ConfigEntryBase>(); List<CustomSyncedValueBase> list2 = customValues?.ToList() ?? new List<CustomSyncedValueBase>(); ZPackage val = new ZPackage(); val.Write(partial ? ((byte)1) : ((byte)0)); val.Write(list.Count + list2.Count + (packageEntries?.Count() ?? 0)); foreach (PackageEntry item in packageEntries ?? Array.Empty<PackageEntry>()) { 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<string>) && 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<object> source = new List<object>(); ZRpc.Deserialize(new ParameterInfo[2] { null, parameterInfo }, package, ref source); return source.First(); } } [HarmonyPatch] public class VersionCheck { private static readonly HashSet<VersionCheck> versionChecks; private static readonly Dictionary<string, string> 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<ZRpc> ValidatedClients = new List<ZRpc>(); 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 { string text = minimumRequiredVersion; if (text == null) { if (!ModRequired) { return "0.0.0"; } text = CurrentVersion; } return text; } set { minimumRequiredVersion = value; } } private static bool AlreadyPatchedBySiblingCopy() { MethodInfo[] array = new MethodInfo[2] { AccessTools.DeclaredMethod(typeof(ZNet), "RPC_PeerInfo", (Type[])null, (Type[])null), AccessTools.DeclaredMethod(typeof(ZNet), "Awake", (Type[])null, (Type[])null) }; for (int i = 0; i < array.Length; i++) { Patches patchInfo = PatchProcessor.GetPatchInfo((MethodBase)array[i]); if (patchInfo == null) { continue; } foreach (Patch item in patchInfo.Prefixes.Concat(patchInfo.Postfixes)) { Type type = item.PatchMethod?.DeclaringType; if (type != null && (type.FullName ?? string.Empty).StartsWith("ServerSync.", StringComparison.Ordinal)) { return true; } } } return false; } private static void PatchServerSync() { //IL_0068: Unknown result type (might be due to invalid IL or missing references) //IL_006e: Expected O, but got Unknown if (AlreadyPatchedBySiblingCopy()) { Debug.LogWarning((object)"Smart Ballista: another mod already patched the ServerSync transport; this mod's settings will not be synchronised this session."); return; } 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<VersionCheck>(); notProcessedNames = new Dictionary<string, string>(); 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 num = new Version(CurrentVersion) >= new Version(ReceivedMinimumRequiredVersion); bool flag = new Version(ReceivedCurrentVersion) >= new Version(MinimumRequiredVersion); return num && flag; } private string ErrorClient() { if (ReceivedMinimumRequiredVersion == null) { return DisplayName + " is not installed on the server."; } if (!(new Version(CurrentVersion) >= new Version(ReceivedMinimumRequiredVersion))) { return DisplayName + " needs to be at least version " + ReceivedMinimumRequiredVersion + ". You have version " + CurrentVersion + "."; } return DisplayName + " may not be higher than version " + ReceivedCurrentVersion + ". 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) { if (rpc != null) { return ErrorServer(rpc); } return ErrorClient(); } 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<ZRpc, ZPackage>? 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; for (int i = 0; i < array2.Length; i++) { Debug.LogWarning((object)array2[i].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_0172: Unknown result type (might be due to invalid IL or missing references) //IL_0179: 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<ZRpc, ZPackage> action = (Action<ZRpc, ZPackage>)obj.GetType().GetField("m_action", BindingFlags.Instance | BindingFlags.NonPublic).GetValue(obj); peer.m_rpc.Register<ZPackage>("ServerSync VersionCheck", (Action<ZRpc, ZPackage>)delegate(ZRpc rpc, ZPackage pkg) { CheckVersion(rpc, pkg, action); }); } else { peer.m_rpc.Register<ZPackage>("ServerSync VersionCheck", (Action<ZRpc, ZPackage>)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_000d: Unknown result type (might be due to invalid IL or missing references) //IL_0013: Invalid comparison between Unknown and I4 //IL_014e: Unknown result type (might be due to invalid IL or missing references) //IL_0153: Unknown result type (might be due to invalid IL or missing references) //IL_0161: Unknown result type (might be due to invalid IL or missing references) //IL_01a4: Unknown result type (might be due to invalid IL or missing references) //IL_01b0: Unknown result type (might be due to invalid IL or missing references) //IL_01be: Unknown result type (might be due to invalid IL or missing references) //IL_01d0: 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_01e3: Unknown result type (might be due to invalid IL or missing references) //IL_01ee: 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<string, string> item in notProcessedNames.OrderBy<KeyValuePair<string, string>, string>((KeyValuePair<string, string> 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<RectTransform>(); 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<RectTransform>(); component2.anchoredPosition = new Vector2(component2.anchoredPosition.x, component2.anchoredPosition.y - (num - component.sizeDelta.y) / 2f); sizeDelta = component.sizeDelta; sizeDelta.y = num; component.sizeDelta = sizeDelta; } } } } namespace SmartBallista { internal static class AmmoAllowList { private static List<ItemDrop> s_candidates; private static int s_itemCount = -1; private static bool s_boltOnly; private static bool s_allAmmo; internal static void Apply(Turret turret, SmartBallistaTurret state, bool active) { if (active) { AddMissing(turret, state); } else { RemoveAll(turret, state); } } private static void AddMissing(Turret turret, SmartBallistaTurret state) { //IL_00dd: Unknown result type (might be due to invalid IL or missing references) //IL_00e4: Expected O, but got Unknown //IL_0107: Unknown result type (might be due to invalid IL or missing references) //IL_011f: Unknown result type (might be due to invalid IL or missing references) if (turret.m_allowedAmmo == null) { turret.m_allowedAmmo = new List<AmmoType>(); } bool value = Settings.BoltOnlyMode.Value; bool value2 = Settings.AllowAllBoltAmmo.Value; if (!value && !value2) { RemoveAll(turret, state); return; } HashSet<string> hashSet = new HashSet<string>(from entry in turret.m_allowedAmmo where (Object)(object)entry.m_ammo != (Object)null select ((Object)entry.m_ammo).name); int num = 0; foreach (ItemDrop item in CandidateAmmo()) { if (!((Object)(object)item == (Object)null) && item.m_itemData?.m_shared != null && !hashSet.Contains(((Object)item).name)) { GameObject val = new GameObject("SmartBallistaAmmoVisual"); val.transform.SetParent(((Component)turret).transform, false); val.SetActive(false); turret.m_allowedAmmo.Add(new AmmoType { m_ammo = item, m_visual = val }); state.AddedAmmo.Add(item); state.AddedAmmoVisuals.Add(val); hashSet.Add(((Object)item).name); num++; } } if (num > 0) { Plugin.LogDebug($"Added {num} ammunition type(s) to '{((Object)turret).name}' ({turret.m_allowedAmmo.Count} total)."); } } private static void RemoveAll(Turret turret, SmartBallistaTurret state) { if (turret.m_allowedAmmo == null || state.AddedAmmo.Count == 0) { return; } HashSet<ItemDrop> ours = new HashSet<ItemDrop>(state.AddedAmmo); turret.m_allowedAmmo.RemoveAll((AmmoType entry) => ours.Contains(entry.m_ammo)); for (int num = 0; num < state.AddedAmmoVisuals.Count; num++) { if ((Object)(object)state.AddedAmmoVisuals[num] != (Object)null) { Object.Destroy((Object)(object)state.AddedAmmoVisuals[num]); } } state.AddedAmmo.Clear(); state.AddedAmmoVisuals.Clear(); } internal static void Invalidate() { s_candidates = null; s_itemCount = -1; } private static List<ItemDrop> CandidateAmmo() { bool value = Settings.BoltOnlyMode.Value; bool value2 = Settings.AllowAllBoltAmmo.Value; int valueOrDefault = (ObjectDB.instance?.m_items?.Count).GetValueOrDefault(); if (s_candidates != null && s_itemCount == valueOrDefault && s_boltOnly == value && s_allAmmo == value2) { return s_candidates; } s_itemCount = valueOrDefault; s_boltOnly = value; s_allAmmo = value2; HashSet<ItemDrop> hashSet = new HashSet<ItemDrop>(); List<ItemDrop> list = new List<ItemDrop>(); if (ObjectDB.instance?.m_items != null) { foreach (GameObject item in ObjectDB.instance.m_items) { if (!((Object)(object)item == (Object)null)) { ItemDrop component = item.GetComponent<ItemDrop>(); if (!((Object)(object)component == (Object)null) && component.m_itemData?.m_shared != null && hashSet.Add(component) && Matches(component, value)) { list.Add(component); } } } } s_candidates = list; return list; } private static bool Matches(ItemDrop item, bool boltOnly) { //IL_0022: Unknown result type (might be due to invalid IL or missing references) //IL_0029: Invalid comparison between Unknown and I4 SharedData shared = item.m_itemData.m_shared; if (boltOnly) { return string.Equals(shared.m_ammoType, "bolt", StringComparison.Ordinal); } return (int)shared.m_itemType == 9; } } internal static class Diagnostics { private static readonly HashSet<string> Described = new HashSet<string>(); internal static int PrefabAssetSkipped; internal static int FilteredOut; internal static void Describe(Turret turret, SmartBallistaTurret state) { //IL_0058: 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_0198: Unknown result type (might be due to invalid IL or missing references) //IL_019d: 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_0274: Unknown result type (might be due to invalid IL or missing references) //IL_0254: Unknown result type (might be due to invalid IL or missing references) if (!Settings.EnableDiagnostics.Value || !Described.Add(((Object)turret).name)) { return; } StringBuilder stringBuilder = new StringBuilder(); stringBuilder.Append("Turret '").Append(((Object)turret).name).Append("': "); StringBuilder stringBuilder2 = stringBuilder.Append("scene="); Scene scene = ((Component)turret).gameObject.scene; stringBuilder2.Append(((Scene)(ref scene)).IsValid() ? "world" : "asset"); stringBuilder.Append(", activeInHierarchy=").Append(((Component)turret).gameObject.activeInHierarchy); stringBuilder.Append(", nview=").Append((Object)(object)((Component)turret).GetComponent<ZNetView>() != (Object)null); stringBuilder.Append(", marker=").Append((Object)(object)turret.m_marker != (Object)null); stringBuilder.Append("\n ammo: maxAmmo=").Append(state.BaseMaxAmmo); stringBuilder.Append(", m_ammoType='").Append(turret.m_ammoType).Append('\''); stringBuilder.Append(", GetAmmoType()='").Append(SafeAmmoType(turret)).Append('\''); stringBuilder.Append(", defaultAmmo=").Append(((Object)(object)turret.m_defaultAmmo != (Object)null) ? ((Object)turret.m_defaultAmmo).name : "<null>"); stringBuilder.Append(", allowedAmmo=").Append((turret.m_allowedAmmo != null) ? turret.m_allowedAmmo.Count : 0); if (turret.m_allowedAmmo != null) { foreach (AmmoType item in turret.m_allowedAmmo) { ItemDrop ammo = item.m_ammo; stringBuilder.Append("\n - ").Append(((Object)(object)ammo != (Object)null) ? ((Object)ammo).name : "<null>"); stringBuilder.Append(" ammoType='").Append(ammo?.m_itemData?.m_shared?.m_ammoType).Append('\''); stringBuilder.Append(" itemType=").Append(ammo?.m_itemData?.m_shared?.m_itemType); stringBuilder.Append(" hasVisual=").Append((Object)(object)item.m_visual != (Object)null); } } stringBuilder.Append("\n targeting: viewDistance=").Append(state.BaseViewDistance); stringBuilder.Append(", targetPlayers=").Append(state.BaseTargetPlayers); stringBuilder.Append(", targetEnemies=").Append(turret.m_targetEnemies); stringBuilder.Append(", targetTamed=").Append(turret.m_targetTamed); stringBuilder.Append(", horizontalAngle=").Append(turret.m_horizontalAngle); stringBuilder.Append(", verticalAngle=").Append(turret.m_verticalAngle); stringBuilder.Append("\n performance: attackCooldown=").Append(state.BaseAttackCooldown); stringBuilder.Append(", attackWarmup=").Append(turret.m_attackWarmup); stringBuilder.Append(", turnRate=").Append(state.BaseTurnRate); stringBuilder.Append(", lookAcceleration=").Append(turret.m_lookAcceleration); stringBuilder.Append(", lookDeacceleration=").Append(turret.m_lookDeacceleration); stringBuilder.Append("\n parts: body=").Append((Object)(object)turret.m_turretBody != (Object)null); stringBuilder.Append(", neck=").Append((Object)(object)turret.m_turretNeck != (Object)null); stringBuilder.Append(", eye=").Append((Object)(object)turret.m_eye != (Object)null); stringBuilder.Append(", armed=").Append((Object)(object)turret.m_turretBodyArmed != (Object)null); stringBuilder.Append(", unarmed=").Append((Object)(object)turret.m_turretBodyUnarmed != (Object)null); Plugin.LogInfo(stringBuilder.ToString()); } private static string SafeAmmoType(Turret turret) { try { return turret.GetAmmoType() ?? "<null>"; } catch { return "<threw>"; } } internal static void LogSummary() { Plugin.LogInfo($"Startup summary: modified turret instances={Described.Count}, " + $"prefab assets skipped={PrefabAssetSkipped}, turrets filtered out by VanillaBallistaOnly={FilteredOut}."); } internal static void Reset() { Described.Clear(); PrefabAssetSkipped = 0; FilteredOut = 0; } } internal static class ServerSyncBridge { [HarmonyPatch(typeof(ZNet), "Awake")] internal static class DeferredInitialisePatch { private static void Postfix() { Initialise(); } } private const string ConfigSyncTypeName = "ServerSync.ConfigSync"; private static Type _ownerType; private static object _owner; private static MethodInfo _addConfigEntry; private static bool _initialised; private static bool _warnedUnavailable; internal static bool UsingVendoredCopy { get; private set; } internal static string Owner => _ownerType?.Assembly.GetName().Name ?? "<none>"; internal static void Initialise() { if (_initialised) { return; } _initialised = true; try { _ownerType = FindForeignConfigSyncType() ?? typeof(ConfigSync); UsingVendoredCopy = _ownerType == typeof(ConfigSync); if (UsingVendoredCopy) { Plugin.LogInfo("No other ServerSync transport found; Smart Ballista will use its own vendored copy."); } else { Plugin.LogInfo("Reusing the ServerSync transport owned by '" + _ownerType.Assembly.GetName().Name + "' so only one copy of the transport patches the network layer."); } _owner = Activator.CreateInstance(_ownerType, "SmartBallista"); _addConfigEntry = _ownerType.GetMethod("AddConfigEntry", BindingFlags.Instance | BindingFlags.Public); if (_addConfigEntry == null) { Plugin.LogWarning("Could not find AddConfigEntry on '" + _ownerType.FullName + "'; settings will be local only."); _owner = null; return; } SetOwnerProperty("DisplayName", "Smart Ballista"); SetOwnerProperty("CurrentVersion", "1.0.1"); SetOwnerProperty("MinimumRequiredVersion", "1.0.1"); SetOwnerProperty("ModRequired", true); foreach (ConfigEntryBase item in Settings.SyncedEntries()) { RegisterUntyped(item); } } catch (Exception arg) { Plugin.LogWarning($"Config synchronisation is unavailable this session: {arg}"); _owner = null; } } private static void RegisterUntyped(ConfigEntryBase entry) { if (_owner == null || _addConfigEntry == null || entry == null) { if (!_warnedUnavailable) { _warnedUnavailable = true; Plugin.LogWarning("No ServerSync transport available; Smart Ballista settings are local to this client."); } return; } try { _addConfigEntry.MakeGenericMethod(entry.SettingType).Invoke(_owner, new object[1] { entry }); } catch (Exception ex) { Plugin.LogWarning("Failed to register '" + entry.Definition.Section + "." + entry.Definition.Key + "' for synchronisation: " + ex.Message); } } internal static void Register<T>(ConfigEntry<T> entry) { RegisterUntyped((ConfigEntryBase)(object)entry); } private static void SetOwnerProperty(string name, object value) { _ownerType.GetProperty(name, BindingFlags.Instance | BindingFlags.Public)?.SetValue(_owner, value); } private static Type FindForeignConfigSyncType() { Assembly assembly = typeof(ServerSyncBridge).Assembly; Assembly[] assemblies = AppDomain.CurrentDomain.GetAssemblies(); foreach (Assembly assembly2 in assemblies) { if (!(assembly2 == assembly) && !assembly2.IsDynamic) { Type type = null; try { type = assembly2.GetType("ServerSync.ConfigSync", throwOnError: false); } catch { } if (!(type == null) && !(type.GetMethod("AddConfigEntry", BindingFlags.Instance | BindingFlags.Public) == null)) { return type; } } } return null; } } internal static class Settings { internal const string DisplayName = "Smart Ballista"; internal const string HarmonyId = "com.dfg.smartballista"; internal const string PluginGuid = "com.dfg.smartballista"; internal const string ConfigSyncName = "SmartBallista"; internal const string Version = "1.0.1"; internal const string VanillaBallistaPrefab = "fuling_turret"; internal const string BoltAmmoType = "bolt"; private const string LegacyConfigFile = "custom.turretammofix.cfg"; internal static ConfigEntry<bool> Enabled; internal static ConfigEntry<bool> EnableDiagnostics; internal static ConfigEntry<bool> AllowAllBoltAmmo; internal static ConfigEntry<bool> BoltOnlyMode; internal static ConfigEntry<bool> InfiniteAmmo; internal static ConfigEntry<bool> DisablePlayerTargeting; internal static ConfigEntry<float> TargetRangeMultiplier; internal static ConfigEntry<float> FireRateMultiplier; internal static ConfigEntry<float> TurnRateMultiplier; internal static ConfigEntry<bool> VanillaBallistaOnly; internal static event EventHandler Changed; internal static void Bind(ConfigFile config, string configFolder) { HashSet<ConfigDefinition> preexisting = new HashSet<ConfigDefinition>(config.Keys); ConfigFile legacy; bool migrating = TryLoadLegacy(configFolder, out legacy); Enabled = Bind(config, preexisting, legacy, migrating, "General", "Enabled", defaultValue: true, "Master toggle. When false Smart Ballista restores every turret to its vanilla values and makes no other changes."); EnableDiagnostics = Bind(config, preexisting, legacy, migrating, "General", "EnableDiagnostics", defaultValue: false, "Log a one-time field dump for each turret prefab. Client-local; never synchronised."); AllowAllBoltAmmo = Bind(config, preexisting, legacy, migrating, "Ammo", "AllowAllBoltAmmo", defaultValue: true, "Allow every Ammo-type item to be loaded into turrets. This is the behaviour inherited from TurretAmmoFix."); BoltOnlyMode = Bind(config, preexisting, legacy, migrating, "Ammo", "BoltOnlyMode", defaultValue: false, "Restrict the added ammunition to items whose ammo type is 'bolt'. Takes precedence over AllowAllBoltAmmo."); InfiniteAmmo = Bind(config, preexisting, legacy, migrating, "Ammo", "InfiniteAmmo", defaultValue: false, "Give turrets unlimited ammunition by setting their native max ammo to 0. The game already treats 0 as 'never deplete'."); DisablePlayerTargeting = Bind(config, preexisting, legacy, migrating, "Targeting", "DisablePlayerTargeting", defaultValue: false, "Force turrets to ignore players as targets. When false the prefab default is left alone."); TargetRangeMultiplier = Bind(config, preexisting, legacy, migrating, "Targeting", "TargetRangeMultiplier", 1f, "Multiplier on the turret target detection range. 1.0 is vanilla, 2.0 doubles it.", 0.1f, 20f); FireRateMultiplier = Bind(config, preexisting, legacy, migrating, "Performance", "FireRateMultiplier", 1f, "Multiplier on turret fire rate. 1.0 is vanilla, 2.0 fires twice as often. Applied by dividing the attack cooldown.", 0.1f, 10f); TurnRateMultiplier = Bind(config, preexisting, legacy, migrating, "Performance", "TurnRateMultiplier", 1f, "Multiplier on turret turn rate. 1.0 is vanilla, 2.0 turns twice as fast.", 0.1f, 10f); VanillaBallistaOnly = Bind(config, preexisting, legacy, migrating, "Compatibility", "VanillaBallistaOnly", defaultValue: false, "Only modify the vanilla ballista prefab and skip every other turret, including modded ones. Off means all turrets are modified."); } private static ConfigEntry<T> Bind<T>(ConfigFile config, HashSet<ConfigDefinition> preexisting, ConfigFile legacy, bool migrating, string section, string key, T defaultValue, string description) { ConfigEntry<T> obj = config.Bind<T>(section, key, defaultValue, description); TryImportLegacyValue<T>(obj, preexisting, legacy, migrating, section, key); Watch<T>(obj); return obj; } private static ConfigEntry<T> Bind<T>(ConfigFile config, HashSet<ConfigDefinition> preexisting, ConfigFile legacy, bool migrating, string section, string key, T defaultValue, string description, float min, float max) { //IL_0010: Unknown result type (might be due to invalid IL or missing references) //IL_0016: Expected O, but got Unknown //IL_001b: Unknown result type (might be due to invalid IL or missing references) //IL_0028: Expected O, but got Unknown ConfigDescription val = new ConfigDescription(description, (AcceptableValueBase)(object)new AcceptableValueRange<float>(min, max), Array.Empty<object>()); ConfigEntry<T> obj = config.Bind<T>(new ConfigDefinition(section, key), defaultValue, val); TryImportLegacyValue<T>(obj, preexisting, legacy, migrating, section, key); Watch<T>(obj); return obj; } private static void Watch<T>(ConfigEntry<T> entry) { entry.SettingChanged += delegate(object sender, EventArgs args) { Settings.Changed?.Invoke(sender, args); }; } private static void TryImportLegacyValue<T>(ConfigEntry<T> entry, HashSet<ConfigDefinition> preexisting, ConfigFile legacy, bool migrating, string section, string key) { //IL_0004: Unknown result type (might be due to invalid IL or missing references) //IL_000a: Expected O, but got Unknown ConfigDefinition val = new ConfigDefinition(section, key); if (!preexisting.Contains(val) && migrating && legacy.ContainsKey(val)) { ConfigEntryBase obj = legacy[val]; if (((obj != null) ? obj.BoxedValue : null) is T val2) { entry.Value = val2; Plugin.Log(string.Format("Imported '{0}.{1}' = {2} from the legacy {3}.", section, key, val2, "custom.turretammofix.cfg")); } } } private static bool TryLoadLegacy(string configFolder, out ConfigFile legacy) { //IL_002a: Unknown result type (might be due to invalid IL or missing references) //IL_0030: Expected O, but got Unknown legacy = null; try { if (string.IsNullOrEmpty(configFolder)) { return false; } string text = Path.Combine(configFolder, "custom.turretammofix.cfg"); if (!File.Exists(text)) { return false; } legacy = new ConfigFile(text, false); Plugin.Log("Found legacy custom.turretammofix.cfg; importing any value the Smart Ballista config does not already define."); return true; } catch (Exception ex) { Plugin.LogWarning("Could not read legacy custom.turretammofix.cfg, continuing without importing: " + ex.Message); legacy = null; return false; } } internal static IEnumerable<ConfigEntryBase> SyncedEntries() { yield return (ConfigEntryBase)(object)Enabled; yield return (ConfigEntryBase)(object)AllowAllBoltAmmo; yield return (ConfigEntryBase)(object)BoltOnlyMode; yield return (ConfigEntryBase)(object)InfiniteAmmo; yield return (ConfigEntryBase)(object)DisablePlayerTargeting; yield return (ConfigEntryBase)(object)TargetRangeMultiplier; yield return (ConfigEntryBase)(object)FireRateMultiplier; yield return (ConfigEntryBase)(object)TurnRateMultiplier; yield return (ConfigEntryBase)(object)VanillaBallistaOnly; } } internal sealed class SmartBallistaTurret : MonoBehaviour { internal int BaseMaxAmmo; internal float BaseViewDistance; internal float BaseAttackCooldown; internal float BaseTurnRate; internal bool BaseTargetPlayers; internal readonly List<ItemDrop> AddedAmmo = new List<ItemDrop>(); internal readonly List<GameObject> AddedAmmoVisuals = new List<GameObject>(); internal bool AmmoReady; } internal static class TurretTweaks { internal static bool ShouldProcess(Turret turret) { //IL_0011: 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) if ((Object)(object)turret == (Object)null) { return false; } Scene scene = ((Component)turret).gameObject.scene; if (!((Scene)(ref scene)).IsValid()) { Diagnostics.PrefabAssetSkipped++; return false; } if (Settings.VanillaBallistaOnly.Value && !string.Equals(((Object)turret).name, "fuling_turret", StringComparison.OrdinalIgnoreCase)) { Diagnostics.FilteredOut++; return false; } return true; } internal static SmartBallistaTurret GetOrAddState(Turret turret) { SmartBallistaTurret component = ((Component)turret).GetComponent<SmartBallistaTurret>(); if ((Object)(object)component != (Object)null) { return component; } component = ((Component)turret).gameObject.AddComponent<SmartBallistaTurret>(); component.BaseMaxAmmo = turret.m_maxAmmo; component.BaseViewDistance = turret.m_viewDistance; component.BaseAttackCooldown = turret.m_attackCooldown; component.BaseTurnRate = turret.m_turnRate; component.BaseTargetPlayers = turret.m_targetPlayers; Diagnostics.Describe(turret, component); return component; } internal static void Apply(Turret turret) { SmartBallistaTurret component = ((Component)turret).GetComponent<SmartBallistaTurret>(); if (!((Object)(object)component == (Object)null)) { bool value = Settings.Enabled.Value; turret.m_targetPlayers = (!value || !Settings.DisablePlayerTargeting.Value) && component.BaseTargetPlayers; float radius = (turret.m_viewDistance = (value ? (component.BaseViewDistance * Settings.TargetRangeMultiplier.Value) : component.BaseViewDistance)); if ((Object)(object)turret.m_marker != (Object)null) { turret.m_marker.m_radius = radius; } turret.m_attackCooldown = (value ? (component.BaseAttackCooldown / Settings.FireRateMultiplier.Value) : component.BaseAttackCooldown); turret.m_turnRate = (value ? (component.BaseTurnRate * Settings.TurnRateMultiplier.Value) : component.BaseTurnRate); turret.m_maxAmmo = ((!value || !Settings.InfiniteAmmo.Value) ? component.BaseMaxAmmo : 0); try { AmmoAllowList.Apply(turret, component, value); } catch (Exception ex) { Plugin.LogWarning("Failed to update the ammunition list for '" + ((Object)turret).name + "': " + ex.Message); } if (ObjectDB.instance?.m_items != null && ObjectDB.instance.m_items.Count > 0) { component.AmmoReady = true; } } } internal static void ReapplyAll() { AmmoAllowList.Invalidate(); SmartBallistaTurret[] array = Object.FindObjectsByType<SmartBallistaTurret>((FindObjectsSortMode)0); foreach (SmartBallistaTurret obj in array) { obj.AmmoReady = false; Turret component = ((Component)obj).GetComponent<Turret>(); if ((Object)(object)component != (Object)null) { Apply(component); } } } } [HarmonyPatch(typeof(Turret), "Awake")] internal static class TurretAwakePatch { private static void Postfix(Turret __instance) { if (!TurretTweaks.ShouldProcess(__instance)) { return; } try { TurretTweaks.GetOrAddState(__instance); TurretTweaks.Apply(__instance); } catch (Exception arg) { Plugin.LogWarning($"Failed to apply Smart Ballista to '{((Object)__instance).name}': {arg}"); } } } [BepInPlugin("com.dfg.smartballista", "Smart Ballista", "1.0.1")] public sealed class Plugin : BaseUnityPlugin { internal static ManualLogSource LogSource; private float m_retry; private float m_sinceScene; private void Awake() { //IL_003e: Unknown result type (might be due to invalid IL or missing references) LogSource = ((BaseUnityPlugin)this).Logger; string configFilePath = ((BaseUnityPlugin)this).Config.ConfigFilePath; Settings.Bind(((BaseUnityPlugin)this).Config, Path.GetDirectoryName(configFilePath)); Settings.Changed += OnSettingsChanged; new Harmony("com.dfg.smartballista").PatchAll(Assembly.GetExecutingAssembly()); LogInfo("Smart Ballista 1.0.1 loaded (Harmony id 'com.dfg.smartballista')."); LogInfo("Config: " + configFilePath); LogInfo("Turret prefab filter target: 'fuling_turret' (VanillaBallistaOnly=" + (Settings.VanillaBallistaOnly.Value ? "on" : "off") + ")."); } private void OnSettingsChanged(object sender, EventArgs args) { TurretTweaks.ReapplyAll(); } private void Update() { if (m_sinceScene > 15f || (Object)(object)ZNetScene.instance == (Object)null) { return; } m_sinceScene += Time.unscaledDeltaTime; m_retry += Time.unscaledDeltaTime; if (m_retry < 1f) { return; } m_retry = 0f; SmartBallistaTurret[] array = Object.FindObjectsByType<SmartBallistaTurret>((FindObjectsSortMode)0); foreach (SmartBallistaTurret smartBallistaTurret in array) { if (!smartBallistaTurret.AmmoReady) { Turret component = ((Component)smartBallistaTurret).GetComponent<Turret>(); if ((Object)(object)component != (Object)null) { TurretTweaks.Apply(component); } } } } private void OnDestroy() { LogInfo("Unloading."); Diagnostics.Reset(); } internal static void Log(string message) { ManualLogSource logSource = LogSource; if (logSource != null) { logSource.LogInfo((object)("[SmartBallista] " + message)); } } internal static void LogInfo(string message) { ManualLogSource logSource = LogSource; if (logSource != null) { logSource.LogInfo((object)message); } } internal static void LogWarning(string message) { ManualLogSource logSource = LogSource; if (logSource != null) { logSource.LogWarning((object)("[SmartBallista] " + message)); } } internal static void LogDebug(string message) { ManualLogSource logSource = LogSource; if (logSource != null) { logSource.LogDebug((object)("[SmartBallista] " + message)); } } } }