using System; using System.Collections; using System.Collections.Concurrent; using System.Collections.Generic; using System.Collections.ObjectModel; using System.ComponentModel; using System.Diagnostics; using System.Diagnostics.CodeAnalysis; using System.Globalization; using System.IO; using System.IO.Compression; using System.Linq; using System.Linq.Expressions; using System.Reflection; using System.Reflection.Emit; using System.Runtime.CompilerServices; using System.Runtime.InteropServices; using System.Runtime.Serialization; using System.Runtime.Versioning; using System.Security; using System.Security.Cryptography; using System.Security.Permissions; using System.Text; using System.Text.RegularExpressions; using System.Threading; using BepInEx; using BepInEx.Bootstrap; using BepInEx.Configuration; using BepInEx.Logging; using HarmonyLib; using JetBrains.Annotations; using Microsoft.CodeAnalysis; using ServerSync; using TMPro; using UnityEngine; using UnityEngine.EventSystems; using UnityEngine.UI; using YamlDotNet.Core; using YamlDotNet.Core.Events; using YamlDotNet.Core.ObjectPool; using YamlDotNet.Core.Tokens; using YamlDotNet.Helpers; using YamlDotNet.Serialization; using YamlDotNet.Serialization.BufferedDeserialization; using YamlDotNet.Serialization.BufferedDeserialization.TypeDiscriminators; using YamlDotNet.Serialization.Callbacks; using YamlDotNet.Serialization.Converters; using YamlDotNet.Serialization.EventEmitters; using YamlDotNet.Serialization.NamingConventions; using YamlDotNet.Serialization.NodeDeserializers; using YamlDotNet.Serialization.NodeTypeResolvers; using YamlDotNet.Serialization.ObjectFactories; using YamlDotNet.Serialization.ObjectGraphTraversalStrategies; using YamlDotNet.Serialization.ObjectGraphVisitors; using YamlDotNet.Serialization.Schemas; using YamlDotNet.Serialization.TypeInspectors; using YamlDotNet.Serialization.TypeResolvers; using YamlDotNet.Serialization.Utilities; using YamlDotNet.Serialization.ValueDeserializers; [assembly: CompilationRelaxations(8)] [assembly: RuntimeCompatibility(WrapNonExceptionThrows = true)] [assembly: Debuggable(DebuggableAttribute.DebuggingModes.IgnoreSymbolStoreSequencePoints)] [assembly: AssemblyTitle("RepairRequiresMaterials")] [assembly: AssemblyDescription("")] [assembly: AssemblyConfiguration("")] [assembly: AssemblyCompany("sighsorry")] [assembly: AssemblyProduct("RepairRequiresMaterials")] [assembly: AssemblyCopyright("Copyright © 2021")] [assembly: AssemblyTrademark("")] [assembly: ComVisible(false)] [assembly: Guid("4358610B-F3F4-4843-B7AF-98B7BC60DCDE")] [assembly: AssemblyFileVersion("1.0.0")] [assembly: TargetFramework(".NETFramework,Version=v4.8", FrameworkDisplayName = ".NET Framework 4.8")] [assembly: SecurityPermission(SecurityAction.RequestMinimum, SkipVerification = true)] [assembly: AssemblyVersion("1.0.0.0")] [module: UnverifiableCode] 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; } } } namespace RepairRequiresMaterials { internal static class AdminCommands { private const string SetDurabilityCommand = "rrm_setdurability"; private static bool _registered; internal static void Register() { //IL_001f: 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) //IL_003d: Expected O, but got Unknown //IL_003d: Expected O, but got Unknown //IL_0038: Unknown result type (might be due to invalid IL or missing references) if (!_registered) { _registered = true; new ConsoleCommand("rrm_setdurability", "<0-100> - set all durability-bearing equipment in your inventory to a percentage of its quality-adjusted maximum", new ConsoleEventFailable(SetInventoryEquipmentDurability), false, false, false, false, false, new ConsoleOptionsFetcher(GetDurabilityOptions), false, false, false); } } private static object SetInventoryEquipmentDurability(ConsoleEventArgs args) { //IL_00a9: Unknown result type (might be due to invalid IL or missing references) float num = default(float); if (args.Length != 2 || !args.TryParameterFloat(1, ref num) || float.IsNaN(num) || float.IsInfinity(num) || num < 0f || num > 100f) { return "Usage: rrm_setdurability <0-100>"; } Player localPlayer = Player.m_localPlayer; if ((Object)(object)localPlayer == (Object)null) { return "A local player is not available."; } if ((Object)(object)ZNet.instance == (Object)null || !ZNet.instance.LocalPlayerIsAdminOrHost()) { return "Administrator or host privileges are required."; } Inventory inventory = ((Humanoid)localPlayer).GetInventory(); int num2 = 0; int num3 = 0; float num4 = num / 100f; foreach (ItemData allItem in inventory.GetAllItems()) { if (allItem == null || !EquipmentTypeRules.IsEquipment(allItem.m_shared.m_itemType) || !allItem.m_shared.m_useDurability) { continue; } float maxDurability = allItem.GetMaxDurability(); if (maxDurability > 0f && !float.IsNaN(maxDurability) && !float.IsInfinity(maxDurability)) { num2++; float num5 = Mathf.Clamp(maxDurability * num4, 0f, maxDurability); if (!allItem.m_durability.Equals(num5)) { allItem.m_durability = num5; num3++; } } } if (num3 > 0) { inventory.Changed(); } string text = num.ToString("0.##", CultureInfo.InvariantCulture); Terminal context = args.Context; if (context != null) { context.AddString(string.Format("{0}: set {1} of {2} eligible equipment items to {3}% durability.", "RepairRequiresMaterials", num3, num2, text)); } return true; } private static List GetDurabilityOptions() { return new List { "0", "25", "50", "75", "100" }; } } internal static class AzuCraftyBoxesCompat { private sealed class ContainerConsumption { internal object Container { get; } internal MethodInfo GetPrefabNameMethod { get; } internal MethodInfo ItemCountMethod { get; } internal MethodInfo ProcessInventoryMethod { get; } internal int Amount { get; } internal ContainerConsumption(object container, MethodInfo getPrefabNameMethod, MethodInfo itemCountMethod, MethodInfo processInventoryMethod, int amount) { Container = container; GetPrefabNameMethod = getPrefabNameMethod; ItemCountMethod = itemCountMethod; ProcessInventoryMethod = processInventoryMethod; Amount = amount; } } private sealed class RequirementConsumption { internal string ItemName { get; } internal string PrefabName { get; } internal int InventoryAmount { get; } internal List Containers { get; } = new List(); internal RequirementConsumption(string itemName, string prefabName, int inventoryAmount) { ItemName = itemName; PrefabName = prefabName; InventoryAmount = inventoryAmount; } } private const string DeferredKgDrawerTypeName = "AzuCraftyBoxes.IContainers.kgDrawer"; internal const string PluginGuid = "Azumatt.AzuCraftyBoxes"; private static bool _initialized; private static bool _available; private static bool _failureLogged; private static FieldInfo? _rangeField; private static MethodInfo? _queryFrameGetMethod; private static MethodInfo? _shouldPreventMethod; private static MethodInfo? _canItemBePulledMethod; private static MethodInfo? _checkAndDecrementMethod; internal static bool ShouldUseNearbyContainers() { try { return EnsureInitialized() && !ShouldPrevent(); } catch (Exception exception) { DisableAfterFailure("availability check", exception); return false; } } internal static bool TryCountAvailable(Player player, RepairMaterialCost cost, int currentAmount, out int totalAmount) { totalAmount = currentAmount; if (!_available) { return false; } try { Requirement sourceRequirement = cost.SourceRequirement; if ((Object)(object)sourceRequirement?.m_resItem == (Object)null) { return false; } IList nearbyContainers = GetNearbyContainers(player); if (nearbyContainers == null) { return false; } string name = sourceRequirement.m_resItem.m_itemData.m_shared.m_name; string resourcePrefabName = cost.ResourcePrefabName; foreach (object item in nearbyContainers) { if (item != null && TryGetContainerMethods(item, out MethodInfo getPrefabNameMethod, out MethodInfo itemCountMethod, out MethodInfo _) && CanPull(item, getPrefabNameMethod, resourcePrefabName)) { totalAmount += GetPullableAmount(item, itemCountMethod, name); } } return true; } catch (Exception exception) { DisableAfterFailure("container count", exception); totalAmount = currentAmount; return false; } } internal static bool TryConsume(Player player, IReadOnlyList costs, out bool shouldCompleteRepair) { shouldCompleteRepair = false; if (!ShouldUseNearbyContainers()) { return false; } try { IList nearbyContainers = GetNearbyContainers(player); if (nearbyContainers == null) { return false; } Inventory inventory = ((Humanoid)player).GetInventory(); List list = new List(costs.Count); foreach (RepairMaterialCost cost in costs) { Requirement sourceRequirement = cost.SourceRequirement; if ((Object)(object)sourceRequirement?.m_resItem == (Object)null) { return false; } int num = Math.Max(0, cost.RequiredAmount); if (num <= 0) { continue; } string name = sourceRequirement.m_resItem.m_itemData.m_shared.m_name; string resourcePrefabName = cost.ResourcePrefabName; int num2 = Math.Min(num, inventory.CountItems(name, -1, true)); int num3 = num - num2; RequirementConsumption requirementConsumption = new RequirementConsumption(name, resourcePrefabName, num2); foreach (object item in nearbyContainers) { if (num3 <= 0) { break; } if (item != null && TryGetContainerMethods(item, out MethodInfo getPrefabNameMethod, out MethodInfo itemCountMethod, out MethodInfo processInventoryMethod) && CanPull(item, getPrefabNameMethod, resourcePrefabName)) { int num4 = Math.Min(num3, GetPullableAmount(item, itemCountMethod, name)); if (num4 > 0) { requirementConsumption.Containers.Add(new ContainerConsumption(item, getPrefabNameMethod, itemCountMethod, processInventoryMethod, num4)); num3 -= num4; } } } if (num3 > 0) { return false; } list.Add(requirementConsumption); } if (!ValidateConsumptionPlan(inventory, list)) { return false; } return ExecuteConsumptionPlan(inventory, list, out shouldCompleteRepair); } catch (Exception exception) { DisableAfterFailure("material consumption", exception, shouldCompleteRepair); return false; } } private static bool ValidateConsumptionPlan(Inventory inventory, IEnumerable plan) { foreach (RequirementConsumption item in plan) { if (inventory.CountItems(item.ItemName, -1, true) < item.InventoryAmount) { return false; } foreach (ContainerConsumption container in item.Containers) { if (!CanPull(container.Container, container.GetPrefabNameMethod, item.PrefabName) || GetPullableAmount(container.Container, container.ItemCountMethod, item.ItemName) < container.Amount) { return false; } } } return true; } private static bool ExecuteConsumptionPlan(Inventory inventory, IEnumerable plan, out bool shouldCompleteRepair) { shouldCompleteRepair = false; foreach (RequirementConsumption item in plan) { if (item.InventoryAmount > 0) { int num = inventory.CountItems(item.ItemName, -1, true); int num2; try { inventory.RemoveItem(item.ItemName, item.InventoryAmount, -1, true); num2 = num - inventory.CountItems(item.ItemName, -1, true); } catch (Exception exception) { try { shouldCompleteRepair |= num - inventory.CountItems(item.ItemName, -1, true) > 0; } catch { shouldCompleteRepair = true; } DisableAfterFailure("player inventory material removal", exception, shouldCompleteRepair); return false; } shouldCompleteRepair |= num2 > 0; if (num2 != item.InventoryAmount) { return DisableAfterConsumptionMismatch("player inventory changed during material removal", shouldCompleteRepair); } } foreach (ContainerConsumption container in item.Containers) { int rawContainerAmount = GetRawContainerAmount(container.Container, container.ItemCountMethod, item.ItemName); int num3; int rawContainerAmount2; try { num3 = Convert.ToInt32(container.ProcessInventoryMethod.Invoke(container.Container, new object[3] { item.ItemName, 0, container.Amount }) ?? ((object)0)); rawContainerAmount2 = GetRawContainerAmount(container.Container, container.ItemCountMethod, item.ItemName); } catch (Exception exception2) { try { shouldCompleteRepair |= rawContainerAmount - GetRawContainerAmount(container.Container, container.ItemCountMethod, item.ItemName) > 0; } catch { shouldCompleteRepair = true; } DisableAfterFailure("container material removal", exception2, shouldCompleteRepair); return false; } int num4 = rawContainerAmount - rawContainerAmount2; shouldCompleteRepair |= num4 > 0; if (num3 != container.Amount || num4 != container.Amount) { return DisableAfterConsumptionMismatch("container '" + GetContainerName(container) + "' did not remove the planned amount of " + item.ItemName, shouldCompleteRepair); } } } return true; } private static bool EnsureInitialized() { if (_initialized) { return _available; } _initialized = true; if (!Chainloader.PluginInfos.TryGetValue("Azumatt.AzuCraftyBoxes", out var value) || (Object)(object)value.Instance == (Object)null) { return false; } Assembly assembly = ((object)value.Instance).GetType().Assembly; Type type = assembly.GetType("AzuCraftyBoxes.AzuCraftyBoxesPlugin"); Type type2 = assembly.GetType("AzuCraftyBoxes.Util.Functions.Boxes"); Type type3 = assembly.GetType("AzuCraftyBoxes.Util.Functions.Boxes+QueryFrame"); Type type4 = assembly.GetType("AzuCraftyBoxes.Util.Functions.MiscFunctions"); _rangeField = type?.GetField("mRange", BindingFlags.Static | BindingFlags.Public | BindingFlags.NonPublic); _queryFrameGetMethod = type3?.GetMethods(BindingFlags.Static | BindingFlags.Public | BindingFlags.NonPublic).FirstOrDefault((MethodInfo method) => method.Name == "Get" && method.IsGenericMethodDefinition); _shouldPreventMethod = type4?.GetMethod("ShouldPrevent", BindingFlags.Static | BindingFlags.Public | BindingFlags.NonPublic); _canItemBePulledMethod = type2?.GetMethod("CanItemBePulled", BindingFlags.Static | BindingFlags.Public | BindingFlags.NonPublic); _checkAndDecrementMethod = type2?.GetMethod("CheckAndDecrement", BindingFlags.Static | BindingFlags.Public | BindingFlags.NonPublic); _available = type != null && type2 != null && type3 != null && type4 != null && _rangeField != null && _queryFrameGetMethod != null && _shouldPreventMethod != null && _canItemBePulledMethod != null && _checkAndDecrementMethod != null; if (!_available && !_failureLogged) { _failureLogged = true; RepairRequiresMaterialsPlugin.Log.LogWarning((object)"AzuCraftyBoxes was found, but its compatible container API was not available. Nearby-container repair support is disabled."); } return _available; } private static bool TryGetContainerMethods(object container, out MethodInfo getPrefabNameMethod, out MethodInfo itemCountMethod, out MethodInfo processInventoryMethod) { Type type = container.GetType(); getPrefabNameMethod = type.GetMethod("GetPrefabName", BindingFlags.Instance | BindingFlags.Public | BindingFlags.NonPublic); itemCountMethod = type.GetMethod("ItemCount", BindingFlags.Instance | BindingFlags.Public | BindingFlags.NonPublic); processInventoryMethod = type.GetMethod("ProcessContainerInventory", BindingFlags.Instance | BindingFlags.Public | BindingFlags.NonPublic); if (getPrefabNameMethod != null && itemCountMethod != null && processInventoryMethod != null) { return SupportsVerifiedRemoval(container); } return false; } private static bool CanPull(object container, MethodInfo getPrefabNameMethod, string prefabName) { string text = Convert.ToString(getPrefabNameMethod.Invoke(container, null)) ?? string.Empty; return Convert.ToBoolean(_canItemBePulledMethod.Invoke(null, new object[3] { text, prefabName, string.Empty }) ?? ((object)false)); } private static bool SupportsVerifiedRemoval(object container) { return !string.Equals(container.GetType().FullName, "AzuCraftyBoxes.IContainers.kgDrawer", StringComparison.Ordinal); } private static int GetPullableAmount(object container, MethodInfo itemCountMethod, string itemName) { int rawContainerAmount = GetRawContainerAmount(container, itemCountMethod, itemName); return Math.Max(0, Convert.ToInt32(_checkAndDecrementMethod.Invoke(null, new object[1] { rawContainerAmount }) ?? ((object)0))); } private static int GetRawContainerAmount(object container, MethodInfo itemCountMethod, string itemName) { return Math.Max(0, Convert.ToInt32(itemCountMethod.Invoke(container, new object[1] { itemName }) ?? ((object)0))); } private static string GetContainerName(ContainerConsumption container) { return Convert.ToString(container.GetPrefabNameMethod.Invoke(container.Container, null)) ?? "unknown"; } private static bool ShouldPrevent() { return Convert.ToBoolean(_shouldPreventMethod.Invoke(null, null) ?? ((object)true)); } private static IList? GetNearbyContainers(Player player) { object value = _rangeField.GetValue(null); float num = Convert.ToSingle((value?.GetType().GetProperty("Value"))?.GetValue(value) ?? ((object)0f)); return _queryFrameGetMethod.MakeGenericMethod(typeof(Player)).Invoke(null, new object[2] { player, num }) as IList; } private static bool DisableAfterConsumptionMismatch(string reason, bool repairWillComplete) { _available = false; if (!_failureLogged) { _failureLogged = true; string text = (repairWillComplete ? "The selected item will still be repaired because materials were already consumed." : "The repair was cancelled because no material removal was confirmed."); RepairRequiresMaterialsPlugin.Log.LogWarning((object)("AzuCraftyBoxes consumption verification failed; nearby-container repair support is disabled for this session. " + text + " Reason: " + reason)); } return false; } private static void DisableAfterFailure(string operation, Exception exception, bool repairWillComplete = false) { _available = false; if (!_failureLogged) { _failureLogged = true; Exception ex = ((exception is TargetInvocationException && exception.InnerException != null) ? exception.InnerException : exception); string text = (repairWillComplete ? " The selected item will still be repaired because consumption may already have started." : string.Empty); RepairRequiresMaterialsPlugin.Log.LogWarning((object)("AzuCraftyBoxes " + operation + " failed; nearby-container repair support is disabled for this session: " + ex.Message + "." + text)); } } } [HarmonyPatch] internal static class PlayerCraftingEquipSpeedPatch { private readonly struct QueueState { internal readonly MinorActionData? ExistingAction; internal readonly ActionType ActionType; internal QueueState(MinorActionData? existingAction, ActionType actionType) { //IL_0008: Unknown result type (might be due to invalid IL or missing references) //IL_0009: Unknown result type (might be due to invalid IL or missing references) ExistingAction = existingAction; ActionType = actionType; } } private static bool _missingTargetWarningLogged; private static IEnumerable TargetMethods() { MethodBase methodBase = AccessTools.Method(typeof(Player), "QueueEquipAction", new Type[1] { typeof(ItemData) }, (Type[])null); if (methodBase != null) { yield return methodBase; } else { LogMissingTarget("QueueEquipAction"); } MethodBase methodBase2 = AccessTools.Method(typeof(Player), "QueueUnequipAction", new Type[1] { typeof(ItemData) }, (Type[])null); if (methodBase2 != null) { yield return methodBase2; } else { LogMissingTarget("QueueUnequipAction"); } } private static void Prefix(Player __instance, ItemData item, MethodBase __originalMethod, out QueueState __state) { //IL_0016: 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) ActionType actionType = (ActionType)(__originalMethod.Name == "QueueUnequipAction"); __state = new QueueState(FindAction(__instance, item, actionType), actionType); } [HarmonyPriority(0)] private static void Postfix(Player __instance, ItemData item, QueueState __state) { //IL_0001: Unknown result type (might be due to invalid IL or missing references) //IL_000c: Expected O, but got Unknown //IL_0039: Unknown result type (might be due to invalid IL or missing references) if ((Object)__instance == (Object)null || __instance != Player.m_localPlayer || item == null) { return; } float value = RepairRequiresMaterialsPlugin.CraftingEquipTimeReductionAtLevel100.Value; if (value <= 0f || float.IsNaN(value)) { return; } MinorActionData val = FindAction(__instance, item, __state.ActionType); if (val != null && val != __state.ExistingAction) { val.m_duration = CalculateAdjustedDuration(val.m_duration, ((Character)__instance).GetSkillFactor((SkillType)107), value); if (val.m_duration < 1f) { val.m_startEffect = null; } } } private static MinorActionData? FindAction(Player player, ItemData? item, ActionType actionType) { //IL_0023: 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) if (item == null) { return null; } for (int num = player.m_actionQueue.Count - 1; num >= 0; num--) { MinorActionData val = player.m_actionQueue[num]; if (val.m_type == actionType && val.m_item == item) { return val; } } return null; } private static float CalculateAdjustedDuration(float baseDuration, float skillFactor, float maximumReductionPercent) { if (float.IsNaN(baseDuration) || float.IsInfinity(baseDuration) || baseDuration <= 0f) { return 0f; } double num = ClampUnit(skillFactor); double num2 = ClampPercent(maximumReductionPercent) / 100.0; if (num <= 0.0 || num2 <= 0.0) { return baseDuration; } double num3 = Math.Max(0.0, 1.0 - num * num2); return (float)((double)baseDuration * num3); } private static double ClampUnit(float value) { if (float.IsNaN(value) || value <= 0f) { return 0.0; } if (!float.IsPositiveInfinity(value) && !(value >= 1f)) { return value; } return 1.0; } private static double ClampPercent(float value) { if (float.IsNaN(value) || value <= 0f) { return 0.0; } if (!float.IsPositiveInfinity(value) && !(value >= 100f)) { return value; } return 100.0; } private static void LogMissingTarget(string methodName) { if (!_missingTargetWarningLogged) { _missingTargetWarningLogged = true; RepairRequiresMaterialsPlugin.Log.LogWarning((object)("Crafting equip-time reduction was not fully applied because Player." + methodName + " was not found.")); } } } internal static class CraftingFreeRepairSystem { private enum TicketOutcome { None, Free, Paid } private sealed class TicketState { internal string ItemId { get; set; } internal ulong Cycle { get; set; } internal TicketOutcome Outcome { get; set; } internal string PlanFingerprint { get; set; } internal TicketState(string itemId, ulong cycle, TicketOutcome outcome, string planFingerprint) { ItemId = itemId; Cycle = cycle; Outcome = outcome; PlanFingerprint = planFingerprint; } internal string Serialize() { char c = Outcome switch { TicketOutcome.Free => 'F', TicketOutcome.Paid => 'P', _ => 'N', }; return string.Join("|", "v1", ItemId, Cycle.ToString(CultureInfo.InvariantCulture), c.ToString(), PlanFingerprint); } } private const string TicketKey = "sighsorry.RepairRequiresMaterials.SkillFreeRepairTicket"; private const string TicketSchema = "v1"; private const string RollDomain = "sighsorry.RepairRequiresMaterials.SkillFreeRepairRoll.v1"; private static readonly Dictionary SessionMinimumCycles = new Dictionary(StringComparer.Ordinal); internal static RepairPreview ResolvePreview(Player player, RepairPreview stationPreview) { if (stationPreview.PaymentKind != RepairPaymentKind.StationMaterials) { return stationPreview; } ItemData item = stationPreview.Item; Inventory inventory = ((Humanoid)player).GetInventory(); string text = BuildPlanFingerprint(stationPreview); bool flag = HasMaterialCost(stationPreview); TicketState ticketState = ReadState(item, inventory, out var corruptState); if (corruptState) { if (!flag) { return stationPreview; } ticketState = new TicketState(Guid.NewGuid().ToString("N"), 0uL, TicketOutcome.Paid, text); if (!WriteState(item, inventory, ticketState)) { return stationPreview; } return stationPreview.WithPayment(RepairPaymentKind.StationMaterials, ticketState.Serialize()); } if (ticketState != null) { NormalizeSessionCycle(item, inventory, ticketState); } if (ticketState != null && ticketState.Outcome == TicketOutcome.Paid) { return stationPreview.WithPayment(RepairPaymentKind.StationMaterials, ticketState.Serialize()); } if (ticketState != null && ticketState.Outcome == TicketOutcome.Free) { if (!string.Equals(ticketState.PlanFingerprint, text, StringComparison.Ordinal)) { ticketState.Outcome = TicketOutcome.Paid; if (!WriteState(item, inventory, ticketState)) { return stationPreview; } return stationPreview.WithPayment(RepairPaymentKind.StationMaterials, ticketState.Serialize()); } RepairPaymentKind paymentKind = ((!IsFeatureEnabled()) ? RepairPaymentKind.StationMaterials : RepairPaymentKind.CraftingSkillFree); return stationPreview.WithPayment(paymentKind, ticketState.Serialize()); } if (!flag || !IsFeatureEnabled()) { return stationPreview; } if (ticketState == null) { ticketState = new TicketState(Guid.NewGuid().ToString("N"), 0uL, TicketOutcome.None, string.Empty); } double num = CalculateFreeRepairChance(((Character)player).GetSkillFactor((SkillType)107), RepairRequiresMaterialsPlugin.CraftingSkillFreeRepairChanceAtLevel0.Value, RepairRequiresMaterialsPlugin.CraftingSkillFreeRepairChanceAtLevel100.Value); ticketState.Outcome = ((GetDeterministicRoll(ticketState.ItemId, ticketState.Cycle) < num) ? TicketOutcome.Free : TicketOutcome.Paid); ticketState.PlanFingerprint = text; if (!WriteState(item, inventory, ticketState)) { return stationPreview; } return stationPreview.WithPayment((ticketState.Outcome != TicketOutcome.Free) ? RepairPaymentKind.StationMaterials : RepairPaymentKind.CraftingSkillFree, ticketState.Serialize()); } internal static void CompleteSuccessfulRepair(Player player, RepairPreview preview) { if (!preview.HasRawMaterialCost || string.IsNullOrEmpty(preview.SkillFreeTicketToken)) { return; } try { if (!TryParseState(preview.SkillFreeTicketToken, out TicketState state) || state == null) { return; } ulong num = ((state.Cycle == ulong.MaxValue) ? 0 : (state.Cycle + 1)); string itemId = ((state.Cycle == ulong.MaxValue) ? Guid.NewGuid().ToString("N") : state.ItemId); if (!SessionMinimumCycles.TryGetValue(state.ItemId, out var value) || num > value) { SessionMinimumCycles[state.ItemId] = num; } ItemData item = preview.Item; Inventory inventory = ((Humanoid)player).GetInventory(); bool corruptState; TicketState ticketState = ReadState(item, inventory, out corruptState); if (ticketState != null && (!string.Equals(ticketState.ItemId, state.ItemId, StringComparison.Ordinal) || ticketState.Cycle != state.Cycle)) { RepairRequiresMaterialsPlugin.Log.LogWarning((object)"A skill-free repair ticket changed during a completed repair; the newer item state was preserved."); return; } TicketState state2 = new TicketState(itemId, num, TicketOutcome.None, string.Empty); if (!WriteState(item, inventory, state2)) { RepairRequiresMaterialsPlugin.Log.LogWarning((object)"A completed skill-free repair ticket could not be persisted; its cycle remains advanced for this session."); } } catch (Exception ex) { RepairRequiresMaterialsPlugin.Log.LogWarning((object)("Could not complete the skill-free repair ticket: " + ex.GetType().Name + ": " + ex.Message)); } } private static bool IsFeatureEnabled() { return RepairRequiresMaterialsPlugin.EnableCraftingSkillFreeRepairs.Value.IsOn(); } internal static double CalculateFreeRepairChance(float skillFactor, float chanceAtLevel0Percent, float chanceAtLevel100Percent) { double num = NormalizePercent(chanceAtLevel100Percent) / 100.0; double num2 = Math.Min(NormalizePercent(chanceAtLevel0Percent) / 100.0, num); double num3 = NormalizeSkillFactor(skillFactor); return num2 + (num - num2) * num3; } private static double NormalizeSkillFactor(float value) { if (float.IsNaN(value) || value <= 0f) { return 0.0; } if (!float.IsPositiveInfinity(value) && !(value >= 1f)) { return value; } return 1.0; } private static double NormalizePercent(float value) { if (float.IsNaN(value) || value <= 0f) { return 0.0; } if (!float.IsPositiveInfinity(value) && !(value >= 100f)) { return value; } return 100.0; } private static bool HasMaterialCost(RepairPreview preview) { return preview.Costs.Any((RepairMaterialCost cost) => cost.RequiredAmount > 0); } private static TicketState? ReadState(ItemData item, Inventory inventory, out bool corruptState) { corruptState = false; if (item.m_customData == null || !item.m_customData.TryGetValue("sighsorry.RepairRequiresMaterials.SkillFreeRepairTicket", out var value)) { return null; } if (TryParseState(value, out TicketState state)) { return state; } corruptState = true; try { item.m_customData.Remove("sighsorry.RepairRequiresMaterials.SkillFreeRepairTicket"); RepairService.MarkInventoryDirty(inventory); } catch { } return null; } private static bool TryParseState(string serialized, out TicketState? state) { state = null; string[] array = serialized.Split(new char[1] { '|' }, 5); if (array.Length != 5 || !string.Equals(array[0], "v1", StringComparison.Ordinal) || !Guid.TryParseExact(array[1], "N", out var _) || !ulong.TryParse(array[2], NumberStyles.None, CultureInfo.InvariantCulture, out var result2) || array[3].Length != 1) { return false; } TicketOutcome ticketOutcome = array[3][0] switch { 'F' => TicketOutcome.Free, 'P' => TicketOutcome.Paid, 'N' => TicketOutcome.None, _ => (TicketOutcome)(-1), }; if (ticketOutcome < TicketOutcome.None || (ticketOutcome != TicketOutcome.None && array[4].Length == 0) || (ticketOutcome == TicketOutcome.None && array[4].Length != 0)) { return false; } state = new TicketState(array[1], result2, ticketOutcome, array[4]); return true; } private static void NormalizeSessionCycle(ItemData item, Inventory inventory, TicketState state) { if (SessionMinimumCycles.TryGetValue(state.ItemId, out var value) && state.Cycle < value) { state.Cycle = value; state.Outcome = TicketOutcome.None; state.PlanFingerprint = string.Empty; WriteState(item, inventory, state); } } private static bool WriteState(ItemData item, Inventory inventory, TicketState state) { try { if (item.m_customData == null) { item.m_customData = new Dictionary(); } string text = state.Serialize(); if (item.m_customData.TryGetValue("sighsorry.RepairRequiresMaterials.SkillFreeRepairTicket", out var value) && string.Equals(value, text, StringComparison.Ordinal)) { return true; } item.m_customData["sighsorry.RepairRequiresMaterials.SkillFreeRepairTicket"] = text; RepairService.MarkInventoryDirty(inventory); return true; } catch (Exception ex) { RepairRequiresMaterialsPlugin.Log.LogWarning((object)("Could not persist a skill-free repair ticket: " + ex.GetType().Name + ": " + ex.Message)); return false; } } private static string BuildPlanFingerprint(RepairPreview preview) { StringBuilder stringBuilder = new StringBuilder(); AppendPart(stringBuilder, "plan-v1"); AppendPart(stringBuilder, ResolveItemPrefabName(preview.Item)); AppendPart(stringBuilder, preview.Item.m_quality.ToString(CultureInfo.InvariantCulture)); AppendPart(stringBuilder, preview.DurabilityBucketPercent.ToString(CultureInfo.InvariantCulture)); foreach (RepairMaterialCost item in preview.Costs.Where((RepairMaterialCost cost) => cost.RequiredAmount > 0).OrderBy((RepairMaterialCost cost) => cost.ResourcePrefabName, StringComparer.Ordinal).ThenBy((RepairMaterialCost cost) => cost.RequiredAmount)) { AppendPart(stringBuilder, item.ResourcePrefabName); AppendPart(stringBuilder, item.RequiredAmount.ToString(CultureInfo.InvariantCulture)); } return Sha256Hex(stringBuilder.ToString()); } private static void AppendPart(StringBuilder builder, string value) { builder.Append(value.Length.ToString(CultureInfo.InvariantCulture)); builder.Append(':'); builder.Append(value); builder.Append('|'); } private static string ResolveItemPrefabName(ItemData item) { string text = (((Object)(object)item.m_dropPrefab != (Object)null) ? ((Object)item.m_dropPrefab).name : item.m_shared.m_name)?.Trim() ?? string.Empty; if (!text.EndsWith("(Clone)", StringComparison.OrdinalIgnoreCase)) { return text; } return text.Substring(0, text.Length - "(Clone)".Length).Trim(); } private static double GetDeterministicRoll(string itemId, ulong cycle) { string s = string.Join("|", "sighsorry.RepairRequiresMaterials.SkillFreeRepairRoll.v1", itemId, cycle.ToString(CultureInfo.InvariantCulture)); byte[] array; using (SHA256 sHA = SHA256.Create()) { array = sHA.ComputeHash(Encoding.UTF8.GetBytes(s)); } ulong num = 0uL; for (int i = 0; i < 8; i++) { num = (num << 8) | array[i]; } return (double)(num >> 11) / 9007199254740992.0; } private static string Sha256Hex(string value) { byte[] array; using (SHA256 sHA = SHA256.Create()) { array = sHA.ComputeHash(Encoding.UTF8.GetBytes(value)); } StringBuilder stringBuilder = new StringBuilder(array.Length * 2); byte[] array2 = array; foreach (byte b in array2) { stringBuilder.Append(b.ToString("x2", CultureInfo.InvariantCulture)); } return stringBuilder.ToString(); } } internal static class CraftingProductionBonusSystem { internal const int UseVanillaBonus = -1; internal const string DefaultExcludedOutputPrefabPatterns = "Simple_*_Socket, Advanced_*_Socket, Perfect_*_Socket"; private const int MaximumIndependentRolls = 10000; private static bool _largeOutputWarningLogged; private static volatile PrefabPatternMatcher _excludedOutputPrefabs = PrefabPatternMatcher.Empty; internal static void SetExcludedOutputPrefabPatterns(string? patterns) { _excludedOutputPrefabs = PrefabPatternMatcher.Parse(patterns); } internal static float CalculatePerItemChance(float skillFactor, float bonusOutputChanceAtLevel100Percent) { double num = NormalizeNonNegative(skillFactor); double num2 = ClampLevel100ChancePercent(bonusOutputChanceAtLevel100Percent) / 100.0; if (num <= 0.0 || num2 <= 0.0) { return 0f; } return (float)ClampProbability(num * num2); } internal static int RollBonusItems(int baseItemCount, float itemChance, Func nextRandomValue) { if (baseItemCount <= 0) { return 0; } int num = int.MaxValue - baseItemCount; if (num <= 0) { return 0; } double num2 = ClampProbability(itemChance); if (num2 <= 0.0) { return 0; } if (num2 >= 1.0) { return Math.Min(baseItemCount, num); } if (nextRandomValue == null) { throw new ArgumentNullException("nextRandomValue"); } int num3 = 0; for (int i = 0; i < baseItemCount; i++) { if (num3 >= num) { break; } if ((double)nextRandomValue() < num2) { num3++; } } return num3; } internal static int CalculateCraftingSkillBonusOrUseVanilla(InventoryGui gui, Player player, CraftingStation station, int baseItemCount) { //IL_0001: Unknown result type (might be due to invalid IL or missing references) //IL_000c: Expected O, but got Unknown //IL_000f: Unknown result type (might be due to invalid IL or missing references) //IL_0016: Invalid comparison between Unknown and I4 //IL_001b: Unknown result type (might be due to invalid IL or missing references) //IL_0026: Expected O, but got Unknown //IL_0036: Unknown result type (might be due to invalid IL or missing references) //IL_0041: Expected O, but got Unknown //IL_0049: Unknown result type (might be due to invalid IL or missing references) //IL_0054: Expected O, but got Unknown if ((Object)station == (Object)null || (int)station.m_craftingSkill != 107) { return -1; } if ((Object)player == (Object)null || baseItemCount <= 0) { return 0; } Recipe craftRecipe = gui.m_craftRecipe; if ((Object)craftRecipe == (Object)null || (Object)craftRecipe.m_item == (Object)null) { return 0; } string name = ((Object)((Component)craftRecipe.m_item).gameObject).name; if (_excludedOutputPrefabs.IsMatch(name) || craftRecipe.m_item.m_itemData.m_shared.m_maxStackSize <= 1) { return 0; } float value = RepairRequiresMaterialsPlugin.CraftingBonusOutputChanceAtLevel100.Value; float num = CalculatePerItemChance(((Character)player).GetSkillFactor((SkillType)107), value); if (num <= 0f) { return 0; } if (baseItemCount > 10000 && num < 1f) { if (!_largeOutputWarningLogged) { _largeOutputWarningLogged = true; RepairRequiresMaterialsPlugin.Log.LogWarning((object)($"A crafting result exceeded {10000} base items; " + "using Valheim's production-bonus calculation to avoid a long main-thread roll loop.")); } return -1; } return RollBonusItems(baseItemCount, num, NextRandomValue); } private static double NormalizeNonNegative(float value) { if (float.IsNaN(value) || value <= 0f) { return 0.0; } return value; } private static double ClampProbability(double value) { if (double.IsNaN(value) || value <= 0.0) { return 0.0; } if (!double.IsPositiveInfinity(value) && !(value >= 1.0)) { return value; } return 1.0; } private static double ClampLevel100ChancePercent(float value) { if (float.IsNaN(value) || value <= 0f) { return 0.0; } if (!float.IsPositiveInfinity(value) && !(value >= 25f)) { return value; } return 25.0; } private static float NextRandomValue() { return Random.value; } } [HarmonyPatch(typeof(InventoryGui), "DoCrafting")] [HarmonyPriority(0)] internal static class InventoryGuiCraftingProductionBonusPatch { private static readonly MethodInfo GetAmountMethod = AccessTools.Method(typeof(Recipe), "GetAmount", new Type[4] { typeof(int), typeof(int).MakeByRefType(), typeof(ItemData).MakeByRefType(), typeof(int) }, (Type[])null); private static readonly MethodInfo GetCurrentCraftingStationMethod = AccessTools.Method(typeof(Player), "GetCurrentCraftingStation", (Type[])null, (Type[])null); private static readonly MethodInfo BonusHelperMethod = AccessTools.Method(typeof(CraftingProductionBonusSystem), "CalculateCraftingSkillBonusOrUseVanilla", (Type[])null, (Type[])null); private static readonly MethodInfo RandomValueGetter = AccessTools.PropertyGetter(typeof(Random), "value"); private static readonly FieldInfo CraftUpgradeItemField = AccessTools.Field(typeof(InventoryGui), "m_craftUpgradeItem"); private static readonly FieldInfo CraftBonusChanceField = AccessTools.Field(typeof(InventoryGui), "m_craftBonusChance"); private static readonly FieldInfo CraftBonusAmountField = AccessTools.Field(typeof(InventoryGui), "m_craftBonusAmount"); private static bool _patternWarningLogged; [HarmonyTranspiler] private static IEnumerable Transpiler(IEnumerable instructions, ILGenerator generator) { List list = new List(instructions); try { if (!TryInject(list, generator, out string failure)) { LogPatternFailure(failure); } } catch (Exception arg) { LogPatternFailure($"unexpected transpiler error: {arg}"); } return list; } private static bool TryInject(List codes, ILGenerator generator, out string failure) { //IL_02c1: Unknown result type (might be due to invalid IL or missing references) //IL_02c8: Expected O, but got Unknown //IL_02e2: Unknown result type (might be due to invalid IL or missing references) //IL_02ec: Expected O, but got Unknown //IL_02f3: Unknown result type (might be due to invalid IL or missing references) //IL_02fd: Expected O, but got Unknown //IL_032e: Unknown result type (might be due to invalid IL or missing references) //IL_0338: Expected O, but got Unknown //IL_0365: Unknown result type (might be due to invalid IL or missing references) //IL_036f: Expected O, but got Unknown //IL_037c: Unknown result type (might be due to invalid IL or missing references) //IL_0386: Expected O, but got Unknown //IL_03b3: Unknown result type (might be due to invalid IL or missing references) //IL_03bd: Expected O, but got Unknown //IL_03de: Unknown result type (might be due to invalid IL or missing references) //IL_03e8: Expected O, but got Unknown failure = string.Empty; int num = FindCall(codes, GetAmountMethod, 0); int num2 = FindCall(codes, GetCurrentCraftingStationMethod, 0); if (num < 0 || num2 < 0 || num >= num2) { failure = "could not locate Recipe.GetAmount and GetCurrentCraftingStation anchors"; return false; } if (num + 1 >= codes.Count || !TryGetStoredLocal(codes[num + 1], out var localIndex)) { failure = "could not resolve the pre-bonus result amount local"; return false; } int index = num2 + 1; int index2 = num2 + 2; int index3 = num2 + 3; int num3 = num2 + 4; if (num3 >= codes.Count || !TryGetStoredLocal(codes[index], out var localIndex2) || !IsLoadConstantZero(codes[index2]) || !TryGetStoredLocal(codes[index3], out var localIndex3) || !LoadsLocal(codes[num3], localIndex2)) { failure = "the vanilla crafting-bonus entry pattern changed"; return false; } int num4 = FindFieldLoad(codes, CraftBonusChanceField, num3); int num5 = FindFieldLoad(codes, CraftBonusAmountField, num3); int num6 = FindCall(codes, RandomValueGetter, num3); if (num6 <= num3 || num4 <= num6 || num5 <= num4) { failure = "could not locate the ordered vanilla crafting-bonus roll"; return false; } int num7 = num5 - 2; int index4 = num5 + 2; int index5 = num5 + 3; int index6 = num5 + 4; int num8 = num5 + 6; if (num7 < num3 || num8 >= codes.Count || !LoadsLocal(codes[num7], localIndex3) || codes[num5 - 1].opcode != OpCodes.Ldarg_0 || codes[num5 + 1].opcode != OpCodes.Add || !StoresLocal(codes[index4], localIndex3) || !LoadsLocal(codes[index5], localIndex) || !LoadsLocal(codes[index6], localIndex3) || codes[num5 + 5].opcode != OpCodes.Add || !StoresLocal(codes[num8], localIndex)) { failure = "the vanilla crafting-bonus accumulation pattern changed"; return false; } int num9 = FindFieldLoad(codes, CraftUpgradeItemField, num8 + 1); int num10 = num9 - 1; if (num9 <= num3 || num10 < 0 || num9 + 1 >= codes.Count || codes[num10].opcode != OpCodes.Ldarg_0 || !IsBranchTrue(codes[num9 + 1])) { failure = "could not locate the post-bonus inventory-capacity check"; return false; } if (num6 >= num10 || num4 >= num10 || num8 >= num10) { failure = "the vanilla crafting-bonus anchors crossed the capacity-check boundary"; return false; } Label label = generator.DefineLabel(); Label label2; if (codes[num10].labels.Count > 0) { label2 = codes[num10].labels[0]; } else { label2 = generator.DefineLabel(); codes[num10].labels.Add(label2); } CodeInstruction val = new CodeInstruction(OpCodes.Ldc_I4_0, (object)null); val.labels.Add(label); List list = new List { new CodeInstruction(OpCodes.Ldarg_0, (object)null), new CodeInstruction(OpCodes.Ldarg_1, (object)null), CloneWithoutMetadata(codes[num3]), CloneWithoutMetadata(codes[index5]), new CodeInstruction(OpCodes.Call, (object)BonusHelperMethod), CloneWithoutMetadata(codes[index3]), CloneWithoutMetadata(codes[index6]), new CodeInstruction(OpCodes.Ldc_I4_0, (object)null), new CodeInstruction(OpCodes.Blt, (object)label), CloneWithoutMetadata(codes[index5]), CloneWithoutMetadata(codes[index6]), new CodeInstruction(OpCodes.Add, (object)null), CloneWithoutMetadata(codes[num + 1]), new CodeInstruction(OpCodes.Br, (object)label2), val, CloneWithoutMetadata(codes[index3]) }; list[0].labels.AddRange(codes[num3].labels); codes[num3].labels.Clear(); list[0].blocks.AddRange(codes[num3].blocks); codes[num3].blocks.Clear(); codes.InsertRange(num3, list); return true; } private static int FindCall(List codes, MethodInfo method, int startIndex) { for (int i = Math.Max(0, startIndex); i < codes.Count; i++) { if ((codes[i].opcode == OpCodes.Call || codes[i].opcode == OpCodes.Callvirt) && object.Equals(codes[i].operand, method)) { return i; } } return -1; } private static int FindFieldLoad(List codes, FieldInfo field, int startIndex) { for (int i = Math.Max(0, startIndex); i < codes.Count; i++) { if ((codes[i].opcode == OpCodes.Ldfld || codes[i].opcode == OpCodes.Ldsfld) && object.Equals(codes[i].operand, field)) { return i; } } return -1; } private static bool LoadsLocal(CodeInstruction instruction, int localIndex) { if (TryGetLocalIndex(instruction, load: true, out var localIndex2)) { return localIndex2 == localIndex; } return false; } private static bool StoresLocal(CodeInstruction instruction, int localIndex) { if (TryGetLocalIndex(instruction, load: false, out var localIndex2)) { return localIndex2 == localIndex; } return false; } private static bool TryGetStoredLocal(CodeInstruction instruction, out int localIndex) { return TryGetLocalIndex(instruction, load: false, out localIndex); } private static bool TryGetLocalIndex(CodeInstruction instruction, bool load, out int localIndex) { localIndex = -1; OpCode opcode = instruction.opcode; if (load) { if (opcode == OpCodes.Ldloc_0) { localIndex = 0; return true; } if (opcode == OpCodes.Ldloc_1) { localIndex = 1; return true; } if (opcode == OpCodes.Ldloc_2) { localIndex = 2; return true; } if (opcode == OpCodes.Ldloc_3) { localIndex = 3; return true; } if (opcode != OpCodes.Ldloc && opcode != OpCodes.Ldloc_S) { return false; } } else { if (opcode == OpCodes.Stloc_0) { localIndex = 0; return true; } if (opcode == OpCodes.Stloc_1) { localIndex = 1; return true; } if (opcode == OpCodes.Stloc_2) { localIndex = 2; return true; } if (opcode == OpCodes.Stloc_3) { localIndex = 3; return true; } if (opcode != OpCodes.Stloc && opcode != OpCodes.Stloc_S) { return false; } } object operand = instruction.operand; if (!(operand is LocalBuilder localBuilder)) { if (!(operand is LocalVariableInfo localVariableInfo)) { if (!(operand is byte b)) { if (operand is int num) { localIndex = num; return true; } return false; } localIndex = b; return true; } localIndex = localVariableInfo.LocalIndex; return true; } localIndex = localBuilder.LocalIndex; return true; } private static bool IsLoadConstantZero(CodeInstruction instruction) { if (!(instruction.opcode == OpCodes.Ldc_I4_0) && (!(instruction.opcode == OpCodes.Ldc_I4) || !object.Equals(instruction.operand, 0))) { if (instruction.opcode == OpCodes.Ldc_I4_S) { return Convert.ToInt32(instruction.operand) == 0; } return false; } return true; } private static bool IsBranchTrue(CodeInstruction instruction) { if (!(instruction.opcode == OpCodes.Brtrue)) { return instruction.opcode == OpCodes.Brtrue_S; } return true; } private static CodeInstruction CloneWithoutMetadata(CodeInstruction source) { //IL_000c: Unknown result type (might be due to invalid IL or missing references) //IL_0012: Expected O, but got Unknown return new CodeInstruction(source.opcode, source.operand); } private static void LogPatternFailure(string reason) { if (!_patternWarningLogged) { _patternWarningLogged = true; RepairRequiresMaterialsPlugin.Log.LogWarning((object)("Per-item Crafting bonus patch was not applied; vanilla behavior remains active (" + reason + ").")); } } } internal static class CraftingSkillTooltipText { internal const string HeadingToken = "$rrm_skill_crafting_heading"; internal const string FreeRepairToken = "$rrm_skill_crafting_free_repair"; internal const string BonusOutputToken = "$rrm_skill_crafting_bonus_output"; internal const string EquipSpeedToken = "$rrm_skill_crafting_equip_speed"; internal static string Append(string? original, bool freeRepairEnabled, float freeRepairChanceAtLevel0, float freeRepairChanceAtLevel100, float bonusOutputChanceAtLevel100, float equipTimeReductionAtLevel100) { if (original == null) { original = string.Empty; } if (HasRepairRequiresMaterialsHeading(original)) { return original; } float value = (float)(CraftingFreeRepairSystem.CalculateFreeRepairChance(0f, freeRepairChanceAtLevel0, freeRepairChanceAtLevel100) * 100.0); float num = (float)(CraftingFreeRepairSystem.CalculateFreeRepairChance(1f, freeRepairChanceAtLevel0, freeRepairChanceAtLevel100) * 100.0); float num2 = NormalizePercent(bonusOutputChanceAtLevel100, 25f); float num3 = NormalizePercent(equipTimeReductionAtLevel100, 100f); bool flag = freeRepairEnabled && num > 0f; bool flag2 = num2 > 0f; bool flag3 = num3 > 0f; if (!flag && !flag2 && !flag3) { return original; } StringBuilder stringBuilder = new StringBuilder("$rrm_skill_crafting_heading"); if (flag) { stringBuilder.Append('\n').Append(RepairRequiresMaterialsLocalization.Localize("$rrm_skill_crafting_free_repair", FormatPercent(value), FormatPercent(num))); } if (flag2) { stringBuilder.Append('\n').Append(RepairRequiresMaterialsLocalization.Localize("$rrm_skill_crafting_bonus_output", FormatPercent(num2))); } if (flag3) { stringBuilder.Append('\n').Append(RepairRequiresMaterialsLocalization.Localize("$rrm_skill_crafting_equip_speed", FormatPercent(num3))); } if (original.Length <= 0) { return stringBuilder.ToString(); } return original + "\n\n" + stringBuilder; } internal static bool MatchesSkillDescription(string? tooltipText, string? skillDescription) { if (!string.IsNullOrWhiteSpace(tooltipText) && !string.IsNullOrWhiteSpace(skillDescription)) { return tooltipText.IndexOf(skillDescription, StringComparison.Ordinal) >= 0; } return false; } internal static bool HasRepairRequiresMaterialsHeading(string? tooltipText) { if (!string.IsNullOrEmpty(tooltipText)) { return tooltipText.IndexOf("$rrm_skill_crafting_heading", StringComparison.Ordinal) >= 0; } return false; } private static float NormalizePercent(float value, float maximum) { if (float.IsNaN(value) || value <= 0f) { return 0f; } if (!float.IsPositiveInfinity(value) && !(value >= maximum)) { return value; } return maximum; } private static string FormatPercent(float value) { return value.ToString("0.##", CultureInfo.InvariantCulture); } } [HarmonyPatch(typeof(UITooltip), "UpdateTextElements")] internal static class CraftingSkillTooltipAlignmentPatch { [HarmonyPostfix] [HarmonyPriority(0)] private static void Postfix(UITooltip __instance) { if ((Object)(object)__instance == (Object)null || !CraftingSkillTooltipText.HasRepairRequiresMaterialsHeading(__instance.m_text) || ((Object)(object)UITooltip.m_current != (Object)null && (Object)(object)UITooltip.m_current != (Object)(object)__instance) || (Object)(object)UITooltip.m_tooltip == (Object)null) { return; } TMP_Text[] componentsInChildren = UITooltip.m_tooltip.GetComponentsInChildren(true); foreach (TMP_Text val in componentsInChildren) { if ((Object)(object)val != (Object)null && string.Equals(((Object)val).name, "Text", StringComparison.Ordinal)) { val.horizontalAlignment = (HorizontalAlignmentOptions)1; break; } } } } [HarmonyPatch(typeof(SkillsDialog), "Setup")] internal static class CraftingSkillTooltipPatch { private static bool _failureLogged; [HarmonyPostfix] [HarmonyPriority(0)] [HarmonyAfter(new string[] { "randyknapp.mods.epicloot" })] private static void Postfix(SkillsDialog __instance, Player player) { //IL_005d: Unknown result type (might be due to invalid IL or missing references) //IL_006b: Unknown result type (might be due to invalid IL or missing references) //IL_0072: Invalid comparison between Unknown and I4 //IL_0128: Unknown result type (might be due to invalid IL or missing references) if ((Object)(object)__instance == (Object)null || (Object)(object)player == (Object)null) { return; } try { Skills skills = ((Character)player).GetSkills(); List list = ((skills != null) ? skills.GetSkillList() : null); if (list == null) { return; } Skill val = null; int craftingIndex = -1; for (int i = 0; i < list.Count; i++) { Skill val2 = list[i]; if (val2 != null && (int)(val2.m_info?.m_skill).GetValueOrDefault() == 107) { val = val2; craftingIndex = i; break; } } if (val?.m_info == null) { return; } UITooltip val3 = FindCraftingTooltip(__instance, craftingIndex, val.m_info.m_description); if (!((Object)(object)val3 == (Object)null)) { bool freeRepairEnabled = RepairRequiresMaterialsPlugin.EnableCraftingSkillFreeRepairs.Value.IsOn(); string text = CraftingSkillTooltipText.Append(val3.m_text, freeRepairEnabled, RepairRequiresMaterialsPlugin.CraftingSkillFreeRepairChanceAtLevel0.Value, RepairRequiresMaterialsPlugin.CraftingSkillFreeRepairChanceAtLevel100.Value, RepairRequiresMaterialsPlugin.CraftingBonusOutputChanceAtLevel100.Value, RepairRequiresMaterialsPlugin.CraftingEquipTimeReductionAtLevel100.Value); if (!string.Equals(text, val3.m_text, StringComparison.Ordinal)) { val3.Set(val3.m_topic, text, val3.m_anchor, val3.m_fixedPosition); } } } catch (Exception ex) { if (!_failureLogged) { _failureLogged = true; RepairRequiresMaterialsPlugin.Log.LogWarning((object)("Could not extend the Crafting skill tooltip: " + ex.GetBaseException().Message)); } } } private static UITooltip? FindCraftingTooltip(SkillsDialog dialog, int craftingIndex, string craftingDescription) { if (dialog.m_elements != null && craftingIndex >= 0 && craftingIndex < dialog.m_elements.Count) { GameObject obj = dialog.m_elements[craftingIndex]; UITooltip val = ((obj != null) ? obj.GetComponentInChildren() : null); if ((Object)(object)val != (Object)null && CraftingSkillTooltipText.MatchesSkillDescription(val.m_text, craftingDescription)) { return val; } } InventoryGui componentInParent = ((Component)dialog).GetComponentInParent(); if ((Object)(object)componentInParent == (Object)null) { return null; } UITooltip[] componentsInChildren = ((Component)componentInParent).GetComponentsInChildren(true); UITooltip val2 = null; UITooltip[] array = componentsInChildren; foreach (UITooltip val3 in array) { if ((Object)(object)val3 != (Object)null && CraftingSkillTooltipText.MatchesSkillDescription(val3.m_text, craftingDescription)) { if (((Component)val3).gameObject.activeInHierarchy) { return val3; } if (val2 == null) { val2 = val3; } } } return val2; } } internal static class EquipmentTypeRules { internal static bool IsEquipment(ItemType itemType) { //IL_0000: Unknown result type (might be due to invalid IL or missing references) //IL_0002: Unknown result type (might be due to invalid IL or missing references) //IL_0060: Expected I4, but got Unknown return (itemType - 3) switch { 16 => true, 0 => true, 11 => true, 19 => true, 1 => true, 2 => true, 12 => true, 3 => true, 4 => true, 8 => true, 14 => true, 15 => true, 21 => true, _ => false, }; } } internal enum IncineratorDismantleResponse { Failed, Success, NoEligibleItems, NoRoom, Busy, NoAccess, InventoryChanged } internal sealed class IncineratorDismantleController : MonoBehaviour { private const string RequestRpc = "sighsorry.RepairRequiresMaterials.RequestIncineratorDismantle"; private const string ResponseRpc = "sighsorry.RepairRequiresMaterials.IncineratorDismantleResponse"; private const int RequestSchemaVersion = 1; private const int MaxKnownRecipeCount = 4096; private const int RequestHeaderBytes = 16; private const int RecipeTokenBytes = 16; private const int MaxRequestBytes = 65552; private Incinerator? _incinerator; private ZNetView? _nview; private bool _registered; private bool _operationInProgress; private void Start() { TryRegisterRpcs(); } private void OnDisable() { ReleaseOperation(); } internal void Initialize(Incinerator incinerator) { _incinerator = incinerator; _nview = ((Component)incinerator).GetComponent(); TryRegisterRpcs(); } internal bool RequestDismantle(Player player) { TryRegisterRpcs(); if ((Object)(object)_nview == (Object)null || !_nview.IsValid() || !_nview.HasOwner()) { return false; } if (!TryBuildRequest(player, out ZPackage request) || request == null) { return false; } _nview.InvokeRPC("sighsorry.RepairRequiresMaterials.RequestIncineratorDismantle", new object[1] { request }); return true; } private void TryRegisterRpcs() { if (!_registered && !((Object)(object)_nview == (Object)null) && _nview.IsValid()) { _nview.Register("sighsorry.RepairRequiresMaterials.RequestIncineratorDismantle", (Action)RpcRequestDismantle); _nview.Register("sighsorry.RepairRequiresMaterials.IncineratorDismantleResponse", (Action)RpcDismantleResponse); _registered = true; } } private void RpcRequestDismantle(long senderUid, ZPackage request) { if ((Object)(object)_incinerator == (Object)null || (Object)(object)_nview == (Object)null || !_nview.IsValid() || !_nview.IsOwner()) { return; } if (!RepairRequiresMaterialsPlugin.EnableIncineratorDismantling.Value.IsOn()) { SendResponse(senderUid, IncineratorDismantleResponse.Failed); return; } if (_operationInProgress || _incinerator.isInUse || _incinerator.m_container.IsInUse() || _incinerator.m_container.m_loading) { SendResponse(senderUid, IncineratorDismantleResponse.Busy); return; } if (!TryReadRequestHeader(request, out var playerId, out var knownRecipeCount)) { SendResponse(senderUid, IncineratorDismantleResponse.Failed); return; } if (!TryValidateRequester(senderUid, playerId, requireProximity: true)) { SendResponse(senderUid, IncineratorDismantleResponse.NoAccess); return; } if (!TryReadKnownRecipeTokens(request, knownRecipeCount, out HashSet knownRecipeTokens) || knownRecipeTokens == null) { SendResponse(senderUid, IncineratorDismantleResponse.Failed); return; } _operationInProgress = true; _incinerator.isInUse = true; try { Inventory inventory = _incinerator.m_container.GetInventory(); IncineratorDismantleRollSeed rollSeed = IncineratorDismantleRollSeed.CreateRandom(); if (!IncineratorDismantleCostSystem.TryBuildPlan(inventory, knownRecipeTokens, rollSeed, out IncineratorDismantlePlan plan) || plan == null) { SendResponse(senderUid, IncineratorDismantleResponse.NoEligibleItems); ReleaseOperation(); } else if (!IncineratorDismantleCostSystem.CanApplyPlan(inventory, plan)) { SendResponse(senderUid, IncineratorDismantleResponse.NoRoom); ReleaseOperation(); } else { byte[] fingerprint = IncineratorDismantleCostSystem.GetFingerprint(inventory); ((MonoBehaviour)this).StartCoroutine(DismantleCoroutine(senderUid, playerId, fingerprint, knownRecipeTokens, rollSeed)); } } catch (Exception ex) { RepairRequiresMaterialsPlugin.Log.LogError((object)("Could not start incinerator dismantling: " + ex.GetType().Name + ": " + ex.Message)); SendResponse(senderUid, IncineratorDismantleResponse.Failed); ReleaseOperation(); } } private IEnumerator DismantleCoroutine(long senderUid, long playerId, byte[] expectedFingerprint, HashSet knownRecipeTokens, IncineratorDismantleRollSeed rollSeed) { bool leverPulled = false; try { if ((Object)(object)_incinerator == (Object)null || (Object)(object)_nview == (Object)null) { yield break; } _nview.InvokeRPC(ZNetView.Everybody, "RPC_AnimateLever", Array.Empty()); leverPulled = true; _incinerator.m_leverEffects.Create(((Component)this).transform.position, ((Component)this).transform.rotation, (Transform)null, 1f, -1); yield return (object)new WaitForSeconds(Random.Range(_incinerator.m_effectDelayMin, _incinerator.m_effectDelayMax)); _nview.InvokeRPC(ZNetView.Everybody, "RPC_AnimateLeverReturn", Array.Empty()); leverPulled = false; if (!_operationInProgress || !TryValidateRequester(senderUid, playerId, requireProximity: false) || _incinerator.m_container.IsInUse() || _incinerator.m_container.m_loading) { SendResponse(senderUid, IncineratorDismantleResponse.NoAccess); yield break; } Inventory inventory = _incinerator.m_container.GetInventory(); if (!expectedFingerprint.SequenceEqual(IncineratorDismantleCostSystem.GetFingerprint(inventory))) { SendResponse(senderUid, IncineratorDismantleResponse.InventoryChanged); yield break; } if (!IncineratorDismantleCostSystem.TryBuildPlan(inventory, knownRecipeTokens, rollSeed, out IncineratorDismantlePlan plan) || plan == null) { SendResponse(senderUid, IncineratorDismantleResponse.NoEligibleItems); yield break; } if (!IncineratorDismantleCostSystem.CanApplyPlan(inventory, plan)) { SendResponse(senderUid, IncineratorDismantleResponse.NoRoom); yield break; } if (!IncineratorDismantleCostSystem.TryApplyPlan(_incinerator.m_container, inventory, plan)) { SendResponse(senderUid, IncineratorDismantleResponse.Failed); yield break; } if ((Object)(object)_incinerator.m_lightingAOEs != (Object)null) { Object.Instantiate(_incinerator.m_lightingAOEs, ((Component)this).transform.position, ((Component)this).transform.rotation); } SendResponse(senderUid, IncineratorDismantleResponse.Success, plan.SourceUnitCount); yield return (object)new WaitForSeconds(4f); } finally { IncineratorDismantleController incineratorDismantleController = this; if (leverPulled && (Object)(object)incineratorDismantleController._nview != (Object)null && incineratorDismantleController._nview.IsValid()) { incineratorDismantleController._nview.InvokeRPC(ZNetView.Everybody, "RPC_AnimateLeverReturn", Array.Empty()); } incineratorDismantleController.ReleaseOperation(); } } private bool TryValidateRequester(long senderUid, long playerId, bool requireProximity) { //IL_0100: Unknown result type (might be due to invalid IL or missing references) //IL_00d2: Unknown result type (might be due to invalid IL or missing references) //IL_00d8: Unknown result type (might be due to invalid IL or missing references) if ((Object)(object)_incinerator == (Object)null || (Object)(object)_nview == (Object)null || !_nview.IsValid() || !_nview.IsOwner() || !_incinerator.m_container.IsOwner() || playerId == 0L) { return false; } Player player = Player.GetPlayer(playerId); if ((Object)(object)player == (Object)null || ((Character)player).IsDead() || (Object)(object)((Character)player).m_nview == (Object)null || !((Character)player).m_nview.IsValid() || ((Character)player).GetOwner() != senderUid) { return false; } if (requireProximity) { Transform val = (((Object)(object)_incinerator.m_incinerateSwitch != (Object)null) ? ((Component)_incinerator.m_incinerateSwitch).transform : ((Component)this).transform); float num = Math.Max(0f, player.m_maxInteractDistance) + 1f; if (Vector3.Distance(((Character)player).GetEyePoint(), val.position) > num) { return false; } } if (!_incinerator.m_container.CheckAccess(playerId) || !HasWardAccess(((Component)this).transform.position, playerId)) { return false; } return true; } private bool TryBuildRequest(Player player, out ZPackage? request) { //IL_0125: Unknown result type (might be due to invalid IL or missing references) //IL_012b: Expected O, but got Unknown request = null; if ((Object)(object)player == (Object)null || player.GetPlayerID() == 0L || (Object)(object)_incinerator == (Object)null || (Object)(object)_incinerator.m_container == (Object)null || (Object)(object)_incinerator.m_container.m_nview == (Object)null || !_incinerator.m_container.m_nview.IsValid()) { return false; } HashSet hashSet = new HashSet(); _incinerator.m_container.CheckForChanges(); foreach (ItemData allItem in _incinerator.m_container.GetInventory().GetAllItems()) { string text = allItem?.m_shared?.m_name; if (IncineratorDismantleCostSystem.IsDismantleCandidate(allItem) && !string.IsNullOrEmpty(text) && player.IsRecipeKnown(text)) { hashSet.Add(IncineratorKnownRecipeToken.Create(text)); } } if (hashSet.Count > 4096) { RepairRequiresMaterialsPlugin.Log.LogWarning((object)$"Known-recipe dismantle request exceeded the {4096} recipe limit."); return false; } ZPackage val = new ZPackage(); val.Write(1); val.Write(player.GetPlayerID()); val.Write(hashSet.Count); foreach (IncineratorKnownRecipeToken item in from value in hashSet orderby value.First, value.Second select value) { val.Write(item.First); val.Write(item.Second); } if (val.Size() > 65552) { RepairRequiresMaterialsPlugin.Log.LogWarning((object)$"Known-recipe dismantle request exceeded the {65552}-byte limit."); return false; } request = val; return true; } private static bool TryReadRequestHeader(ZPackage request, out long playerId, out int knownRecipeCount) { playerId = 0L; knownRecipeCount = 0; if (request == null || request.Size() <= 0 || request.Size() > 65552) { return false; } try { request.SetPos(0); if (request.ReadInt() != 1) { return false; } playerId = request.ReadLong(); knownRecipeCount = request.ReadInt(); if (playerId == 0L || knownRecipeCount < 0 || knownRecipeCount > 4096) { return false; } int num = 16 + knownRecipeCount * 16; return request.Size() == num; } catch (Exception) { return false; } } private static bool TryReadKnownRecipeTokens(ZPackage request, int knownRecipeCount, out HashSet? knownRecipeTokens) { knownRecipeTokens = null; if (request == null || knownRecipeCount < 0 || knownRecipeCount > 4096 || request.Size() != 16 + knownRecipeCount * 16) { return false; } try { request.SetPos(16); HashSet hashSet = new HashSet(); for (int i = 0; i < knownRecipeCount; i++) { IncineratorKnownRecipeToken item = new IncineratorKnownRecipeToken(request.ReadULong(), request.ReadULong()); if (!hashSet.Add(item)) { return false; } } if (request.GetPos() != request.Size()) { return false; } knownRecipeTokens = hashSet; return true; } catch (Exception) { return false; } } private static bool HasWardAccess(Vector3 position, long playerId) { //IL_0030: Unknown result type (might be due to invalid IL or missing references) bool flag = false; bool flag2 = false; foreach (PrivateArea item in PrivateArea.m_allAreas.ToList()) { if (!((Object)(object)item == (Object)null) && item.IsEnabled() && item.IsInside(position, 0f)) { bool flag3 = (Object)(object)item.m_piece != (Object)null && (item.m_piece.GetCreator() == playerId || item.IsPermitted(playerId)); flag = flag || flag3; flag2 = flag2 || !flag3; } } if (!flag) { return !flag2; } return true; } private void SendResponse(long targetUid, IncineratorDismantleResponse response, int dismantledCount = 0) { if ((Object)(object)_nview != (Object)null && _nview.IsValid()) { _nview.InvokeRPC(targetUid, "sighsorry.RepairRequiresMaterials.IncineratorDismantleResponse", new object[2] { (int)response, dismantledCount }); } } private static void RpcDismantleResponse(long senderUid, int responseValue, int dismantledCount) { Player localPlayer = Player.m_localPlayer; if (!((Object)(object)localPlayer == (Object)null)) { ((Character)localPlayer).Message((MessageType)2, (IncineratorDismantleResponse)(Enum.IsDefined(typeof(IncineratorDismantleResponse), responseValue) ? responseValue : 0) switch { IncineratorDismantleResponse.Success => RepairRequiresMaterialsLocalization.Localize("$rrm_dismantle_success", Math.Max(0, dismantledCount)), IncineratorDismantleResponse.NoEligibleItems => "$rrm_dismantle_no_equipment", IncineratorDismantleResponse.NoRoom => "$rrm_dismantle_no_room", IncineratorDismantleResponse.Busy => "$rrm_dismantle_busy", IncineratorDismantleResponse.NoAccess => "$rrm_dismantle_no_access", IncineratorDismantleResponse.InventoryChanged => "$rrm_dismantle_inventory_changed", _ => "$rrm_dismantle_failed", }, 0, (Sprite)null); } } private void ReleaseOperation() { if (_operationInProgress && (Object)(object)_incinerator != (Object)null) { _incinerator.isInUse = false; } _operationInProgress = false; } } internal readonly struct IncineratorKnownRecipeToken : IEquatable { private const string HashDomain = "sighsorry.RepairRequiresMaterials.KnownDismantleRecipe.v1\0"; internal ulong First { get; } internal ulong Second { get; } internal IncineratorKnownRecipeToken(ulong first, ulong second) { First = first; Second = second; } internal static IncineratorKnownRecipeToken Create(string recipeName) { byte[] array; using (SHA256 sHA = SHA256.Create()) { array = sHA.ComputeHash(Encoding.UTF8.GetBytes("sighsorry.RepairRequiresMaterials.KnownDismantleRecipe.v1\0" + recipeName)); } ulong num = 0uL; ulong num2 = 0uL; for (int i = 0; i < 8; i++) { num = (num << 8) | array[i]; num2 = (num2 << 8) | array[i + 8]; } return new IncineratorKnownRecipeToken(num, num2); } public bool Equals(IncineratorKnownRecipeToken other) { if (First == other.First) { return Second == other.Second; } return false; } public override bool Equals(object? obj) { if (obj is IncineratorKnownRecipeToken other) { return Equals(other); } return false; } public override int GetHashCode() { return (First.GetHashCode() * 397) ^ Second.GetHashCode(); } } internal readonly struct IncineratorDismantleRollSeed { internal ulong First { get; } internal ulong Second { get; } internal IncineratorDismantleRollSeed(ulong first, ulong second) { First = first; Second = second; } internal static IncineratorDismantleRollSeed CreateRandom() { byte[] array = new byte[16]; using (RandomNumberGenerator randomNumberGenerator = RandomNumberGenerator.Create()) { randomNumberGenerator.GetBytes(array); } ulong num = 0uL; ulong num2 = 0uL; for (int i = 0; i < 8; i++) { num = (num << 8) | array[i]; num2 = (num2 << 8) | array[i + 8]; } return new IncineratorDismantleRollSeed(num, num2); } } internal sealed class IncineratorDismantleOutput { internal ItemDrop Resource { get; } internal string PrefabName { get; } internal int Amount { get; } internal IncineratorDismantleOutput(ItemDrop resource, string prefabName, int amount) { Resource = resource; PrefabName = prefabName; Amount = amount; } } internal sealed class IncineratorDismantlePlan { internal IReadOnlyList SourceItems { get; } internal IReadOnlyList Outputs { get; } internal int SourceUnitCount { get; } internal IncineratorDismantlePlan(IReadOnlyList sourceItems, IReadOnlyList outputs) { SourceItems = sourceItems; Outputs = outputs; int num = 0; foreach (ItemData sourceItem in sourceItems) { int num2 = Math.Max(0, sourceItem.m_stack); num = ((num >= int.MaxValue - num2) ? int.MaxValue : (num + num2)); } SourceUnitCount = num; } } internal static class IncineratorDismantleCostSystem { private sealed class RecipeMaterialAmount { internal ItemDrop Resource { get; } internal string PrefabName { get; } internal decimal BaseAmount { get; set; } internal decimal UpgradeAmount { get; set; } internal RecipeMaterialAmount(ItemDrop resource, string prefabName) { Resource = resource; PrefabName = prefabName; } } private sealed class RawMaterialTotal { internal ItemDrop Resource { get; } internal string PrefabName { get; } internal decimal Amount { get; set; } internal RawMaterialTotal(ItemDrop resource, string prefabName) { Resource = resource; PrefabName = prefabName; } } private sealed class ItemReferenceComparer : IEqualityComparer { internal static readonly ItemReferenceComparer Instance = new ItemReferenceComparer(); public bool Equals(ItemData? x, ItemData? y) { return x == y; } public int GetHashCode(ItemData obj) { return RuntimeHelpers.GetHashCode(obj); } } private const string FractionalReturnHashDomain = "sighsorry.RepairRequiresMaterials.DismantleFractionalReturn.v1\0"; private const decimal UInt64Range = 18446744073709551616m; private static volatile PrefabPatternMatcher _additionalDismantleablePrefabs = PrefabPatternMatcher.Empty; internal static void SetAdditionalDismantleablePrefabPatterns(string? patterns) { _additionalDismantleablePrefabs = PrefabPatternMatcher.Parse(patterns); } internal static bool TryBuildPlan(Inventory inventory, HashSet? knownRecipeTokens, IncineratorDismantleRollSeed rollSeed, out IncineratorDismantlePlan? plan) { plan = null; if (inventory == null) { return false; } decimal num = (decimal)Mathf.Clamp(RepairRequiresMaterialsPlugin.DismantleBaseReturnPercent.Value, 0f, 100f) / 100m; decimal num2 = (decimal)Mathf.Clamp(RepairRequiresMaterialsPlugin.DismantleUpgradeReturnPercent.Value, 0f, 100f) / 100m; if (num <= 0m && num2 <= 0m) { return false; } Dictionary dictionary = new Dictionary(StringComparer.Ordinal); List list = new List(); foreach (ItemData item in inventory.GetAllItems().ToList()) { if (!TryGetRecipeMaterials(item, knownRecipeTokens, out List selectedMaterials) || selectedMaterials == null) { continue; } bool flag = false; foreach (RecipeMaterialAmount item2 in selectedMaterials) { decimal num3 = item2.BaseAmount * num + item2.UpgradeAmount * num2; if (!(num3 <= 0m)) { flag = true; if (!dictionary.TryGetValue(item2.PrefabName, out var value)) { value = new RawMaterialTotal(item2.Resource, item2.PrefabName); dictionary.Add(item2.PrefabName, value); } value.Amount += num3; } } if (flag) { list.Add(item); } } if (list.Count == 0) { return false; } List list2 = new List(dictionary.Count); foreach (RawMaterialTotal item3 in dictionary.Values.OrderBy((RawMaterialTotal rawMaterialTotal) => rawMaterialTotal.PrefabName, StringComparer.Ordinal)) { decimal num4 = decimal.Floor(item3.Amount); int num5; if (num4 >= 2147483647m) { num5 = int.MaxValue; } else { num5 = decimal.ToInt32(num4); decimal num6 = item3.Amount - num4; if (num6 > 0m && ShouldRoundFractionUp(rollSeed, item3.PrefabName, num6)) { num5++; } } if (num5 > 0) { list2.Add(new IncineratorDismantleOutput(item3.Resource, item3.PrefabName, num5)); } } plan = new IncineratorDismantlePlan(list, list2); return true; } private static bool ShouldRoundFractionUp(IncineratorDismantleRollSeed rollSeed, string materialPrefabName, decimal fraction) { if (fraction <= 0m) { return false; } if (fraction >= 1m) { return true; } byte[] bytes = Encoding.UTF8.GetBytes("sighsorry.RepairRequiresMaterials.DismantleFractionalReturn.v1\0" + materialPrefabName); byte[] array = new byte[16 + bytes.Length]; WriteUInt64BigEndian(array, 0, rollSeed.First); WriteUInt64BigEndian(array, 8, rollSeed.Second); Buffer.BlockCopy(bytes, 0, array, 16, bytes.Length); byte[] array2; using (SHA256 sHA = SHA256.Create()) { array2 = sHA.ComputeHash(array); } ulong num = 0uL; for (int i = 0; i < 8; i++) { num = (num << 8) | array2[i]; } return (decimal)num / 18446744073709551616m < fraction; } private static void WriteUInt64BigEndian(byte[] destination, int offset, ulong value) { for (int num = 7; num >= 0; num--) { destination[offset + num] = (byte)value; value >>= 8; } } internal static bool CanApplyPlan(Inventory inventory, IncineratorDismantlePlan plan) { //IL_0018: Unknown result type (might be due to invalid IL or missing references) //IL_001e: Expected O, but got Unknown Inventory val = new Inventory(inventory.GetName(), inventory.GetBkg(), inventory.GetWidth(), inventory.GetHeight()); HashSet hashSet = new HashSet(plan.SourceItems, ItemReferenceComparer.Instance); foreach (ItemData allItem in inventory.GetAllItems()) { if (!hashSet.Contains(allItem)) { val.GetAllItems().Add(allItem.Clone()); } } val.Changed(); foreach (IncineratorDismantleOutput output in plan.Outputs) { if (!HasCompatibleSharedName(val, output) || !TryAddOutput(val, output)) { return false; } } return true; } internal static bool TryApplyPlan(Container container, Inventory inventory, IncineratorDismantlePlan plan) { if ((Object)(object)container == (Object)null || inventory == null || container.m_loading) { return false; } List list = (from item in inventory.GetAllItems() select item.Clone()).ToList(); bool loading = container.m_loading; bool result = false; container.m_loading = true; try { foreach (ItemData sourceItem in plan.SourceItems) { if (!inventory.RemoveItem(sourceItem)) { throw new InvalidOperationException("The incinerator inventory changed before dismantling completed."); } } foreach (IncineratorDismantleOutput output in plan.Outputs) { if (!TryAddOutput(inventory, output)) { throw new InvalidOperationException("The incinerator could not accept dismantle output '" + output.PrefabName + "'."); } } result = true; } catch (Exception ex) { RepairRequiresMaterialsPlugin.Log.LogWarning((object)("Dismantle transaction rolled back: " + ex.GetType().Name + ": " + ex.Message)); inventory.GetAllItems().Clear(); foreach (ItemData item in list) { inventory.GetAllItems().Add(item); } } finally { container.m_loading = loading; inventory.Changed(); } return result; } internal static byte[] GetFingerprint(Inventory inventory) { //IL_0000: Unknown result type (might be due to invalid IL or missing references) //IL_0006: Expected O, but got Unknown ZPackage val = new ZPackage(); inventory.Save(val); return val.GetArray(); } internal static bool IsDismantleCandidate(ItemData? item) { string prefabName; bool isEquipment; return TryGetDismantleCandidatePrefab(item, out prefabName, out isEquipment); } private static bool TryGetRecipeMaterials(ItemData item, HashSet? knownRecipeTokens, out List? selectedMaterials) { selectedMaterials = null; if (!TryGetDismantleCandidatePrefab(item, out string prefabName, out bool isEquipment) || string.IsNullOrEmpty(item.m_shared.m_name) || knownRecipeTokens == null || !knownRecipeTokens.Contains(IncineratorKnownRecipeToken.Create(item.m_shared.m_name))) { return false; } List> list = new List>(); foreach (Recipe recipe in RepairRecipeCatalog.GetRecipes(item)) { if (!((Object)(object)recipe == (Object)null) && recipe.m_enabled && recipe.m_amount > 0 && (!isEquipment || recipe.m_amount == 1) && !recipe.m_requireOnlyOneIngredient && TryBuildRecipeMaterialAmounts(item, prefabName, recipe, out List materials) && materials != null) { list.Add(materials); } } if (list.Count == 0) { return false; } List list2 = list[0]; for (int i = 1; i < list.Count; i++) { if (!HaveEquivalentMaterialCosts(list2, list[i])) { return false; } } selectedMaterials = list2; return true; } private static bool TryBuildRecipeMaterialAmounts(ItemData item, string itemPrefabName, Recipe recipe, out List? materials) { materials = null; Dictionary dictionary = new Dictionary(StringComparer.Ordinal); int val = Math.Max(1, item.m_shared.m_maxQuality); int num = Math.Max(1, Math.Min(item.m_quality, val)); int sourceStack = Math.Max(1, item.m_stack); int amount = recipe.m_amount; Requirement[] array = recipe.m_resources ?? Array.Empty(); foreach (Requirement val2 in array) { if (val2 == null || (Object)(object)val2.m_resItem == (Object)null) { return false; } ItemDrop resItem = val2.m_resItem; string text = ResolveItemDropPrefabName(resItem); if (text.Length == 0 || string.Equals(text, itemPrefabName, StringComparison.Ordinal)) { return false; } decimal num2 = ScaleRecipeAmount(Math.Max(0, val2.GetAmount(1)), sourceStack, amount); decimal amountPerCraft = default(decimal); for (int j = 2; j <= num; j++) { amountPerCraft += (decimal)Math.Max(0, val2.GetAmount(j)); } decimal num3 = ScaleRecipeAmount(amountPerCraft, sourceStack, amount); if (!(num2 <= 0m) || !(num3 <= 0m)) { if (!dictionary.TryGetValue(text, out var value)) { value = new RecipeMaterialAmount(resItem, text); dictionary.Add(text, value); } value.BaseAmount += num2; value.UpgradeAmount += num3; } } if (dictionary.Count == 0) { return false; } materials = dictionary.Values.OrderBy((RecipeMaterialAmount material) => material.PrefabName, StringComparer.Ordinal).ToList(); return true; } internal static decimal ScaleRecipeAmount(decimal amountPerCraft, int sourceStack, int recipeOutputAmount) { if (!(amountPerCraft <= 0m) && sourceStack > 0 && recipeOutputAmount > 0) { return amountPerCraft * (decimal)sourceStack / (decimal)recipeOutputAmount; } return 0m; } private static bool HaveEquivalentMaterialCosts(IReadOnlyList first, IReadOnlyList second) { if (first.Count != second.Count) { return false; } for (int i = 0; i < first.Count; i++) { RecipeMaterialAmount recipeMaterialAmount = first[i]; RecipeMaterialAmount recipeMaterialAmount2 = second[i]; if (!string.Equals(recipeMaterialAmount.PrefabName, recipeMaterialAmount2.PrefabName, StringComparison.Ordinal) || recipeMaterialAmount.BaseAmount != recipeMaterialAmount2.BaseAmount || recipeMaterialAmount.UpgradeAmount != recipeMaterialAmount2.UpgradeAmount) { return false; } } return true; } private static bool HasCompatibleSharedName(Inventory inventory, IncineratorDismantleOutput output) { string name = output.Resource.m_itemData.m_shared.m_name; foreach (ItemData allItem in inventory.GetAllItems()) { if (string.Equals(allItem.m_shared.m_name, name, StringComparison.Ordinal) && !string.Equals(CleanPrefabName(((Object)(object)allItem.m_dropPrefab != (Object)null) ? ((Object)allItem.m_dropPrefab).name : string.Empty), output.PrefabName, StringComparison.Ordinal)) { return false; } } return true; } private static bool TryAddOutput(Inventory inventory, IncineratorDismantleOutput output) { GameObject gameObject = ((Component)output.Resource).gameObject; int val = Math.Max(1, output.Resource.m_itemData.m_shared.m_maxStackSize); int num = output.Amount; while (num > 0) { int num2 = Math.Min(num, val); if (!inventory.AddItem(gameObject, num2)) { return false; } num -= num2; } return true; } private static bool IsBlacklisted(string prefabName) { string value = RepairRequiresMaterialsPlugin.DismantleBlacklist.Value; if (string.IsNullOrWhiteSpace(value)) { return false; } string[] array = value.Split(new char[1] { ',' }, StringSplitOptions.RemoveEmptyEntries); for (int i = 0; i < array.Length; i++) { if (string.Equals(CleanPrefabName(array[i]), prefabName, StringComparison.OrdinalIgnoreCase)) { return true; } } return false; } private static bool TryGetDismantleCandidatePrefab(ItemData? item, out string prefabName, out bool isEquipment) { //IL_0067: Unknown result type (might be due to invalid IL or missing references) prefabName = string.Empty; isEquipment = false; if (item == null || item.m_shared.m_questItem || item.m_stack <= 0) { return false; } prefabName = CleanPrefabName(((Object)(object)item.m_dropPrefab != (Object)null) ? ((Object)item.m_dropPrefab).name : string.Empty); if (prefabName.Length == 0 || IsBlacklisted(prefabName)) { return false; } isEquipment = EquipmentTypeRules.IsEquipment(item.m_shared.m_itemType); if (isEquipment) { if (item.m_shared.m_maxStackSize == 1) { return item.m_stack == 1; } return false; } return _additionalDismantleablePrefabs.IsMatch(prefabName); } private static string ResolveItemDropPrefabName(ItemDrop itemDrop) { string text = (((Object)(object)itemDrop.m_itemData.m_dropPrefab != (Object)null) ? ((Object)itemDrop.m_itemData.m_dropPrefab).name : string.Empty); return CleanPrefabName(string.IsNullOrWhiteSpace(text) ? ((Object)itemDrop).name : text); } private static string CleanPrefabName(string? value) { string text = value?.Trim() ?? string.Empty; if (!text.EndsWith("(Clone)", StringComparison.OrdinalIgnoreCase)) { return text; } return text.Substring(0, text.Length - "(Clone)".Length).Trim(); } } [HarmonyPatch] internal static class IncineratorBuildRecipeLifecyclePatch { private static IEnumerable TargetMethods() { yield return AccessTools.Method(typeof(ZNetScene), "Awake", (Type[])null, (Type[])null); yield return AccessTools.Method(typeof(ObjectDB), "UpdateRegisters", (Type[])null, (Type[])null); } [HarmonyPriority(0)] private static void Postfix() { IncineratorBuildRecipeSystem.Apply(); } } internal static class IncineratorBuildRecipeSystem { internal const string DefaultRecipe = "Iron:8,Copper:4,Thunderstone:1"; private const string IncineratorPrefabName = "incinerator"; private static Piece? _trackedPiece; private static Requirement[] _originalRequirements = Array.Empty(); private static string _lastWarningKey = string.Empty; internal static void Apply() { ZNetScene instance = ZNetScene.instance; if ((Object)(object)instance == (Object)null) { return; } GameObject prefab = instance.GetPrefab("incinerator"); if ((Object)(object)prefab == (Object)null) { return; } Piece component = prefab.GetComponent(); if ((Object)(object)component == (Object)null || (Object)(object)prefab.GetComponent() == (Object)null) { return; } TrackOriginalRecipe(component); ObjectDB instance2 = ObjectDB.instance; if (!((Object)(object)instance2 == (Object)null)) { string text = RepairRequiresMaterialsPlugin.IncineratorBuildRecipe.Value?.Trim() ?? string.Empty; Requirement[] requirements; string error; if (text.Length == 0) { ApplyRequirements(component, CloneRequirements(_originalRequirements)); _lastWarningKey = string.Empty; } else if (text.Equals("None", StringComparison.OrdinalIgnoreCase) || text.Equals("Free", StringComparison.OrdinalIgnoreCase) || text == "-") { ApplyRequirements(component, Array.Empty()); _lastWarningKey = string.Empty; } else if (!TryCreateRequirements(instance2, text, out requirements, out error)) { ApplyRequirements(component, CloneRequirements(_originalRequirements)); WarnInvalidRecipeOnce(text, error); } else { ApplyRequirements(component, requirements); _lastWarningKey = string.Empty; } } } private static void TrackOriginalRecipe(Piece piece) { if (_trackedPiece != piece) { _trackedPiece = piece; _originalRequirements = CloneRequirements(piece.m_resources); _lastWarningKey = string.Empty; } } private static bool TryCreateRequirements(ObjectDB objectDb, string recipe, out Requirement[] requirements, out string error) { //IL_019a: Unknown result type (might be due to invalid IL or missing references) //IL_019f: Unknown result type (might be due to invalid IL or missing references) //IL_01a7: Unknown result type (might be due to invalid IL or missing references) //IL_01af: Unknown result type (might be due to invalid IL or missing references) //IL_01b6: Unknown result type (might be due to invalid IL or missing references) //IL_01bd: Unknown result type (might be due to invalid IL or missing references) //IL_01c9: Expected O, but got Unknown requirements = Array.Empty(); error = string.Empty; string[] array = recipe.Split(new char[4] { ',', ';', '\r', '\n' }, StringSplitOptions.RemoveEmptyEntries); if (array.Length == 0) { error = "the recipe has no ingredients"; return false; } List list = new List(array.Length); HashSet hashSet = new HashSet(StringComparer.Ordinal); HashSet hashSet2 = new HashSet(StringComparer.Ordinal); string[] array2 = array; for (int i = 0; i < array2.Length; i++) { string text = array2[i].Trim(); int num = text.IndexOf(':'); if (num <= 0 || num != text.LastIndexOf(':') || num >= text.Length - 1) { error = "'" + text + "' is not an ItemPrefab:Amount entry"; return false; } string text2 = text.Substring(0, num).Trim(); string s = text.Substring(num + 1).Trim(); if (text2.Length == 0 || !int.TryParse(s, NumberStyles.None, CultureInfo.InvariantCulture, out var result) || result <= 0) { error = "'" + text + "' does not contain an exact item prefab and a positive integer amount"; return false; } GameObject itemPrefab = objectDb.GetItemPrefab(text2); ItemDrop val = (((Object)(object)itemPrefab != (Object)null) ? itemPrefab.GetComponent() : null); if ((Object)(object)val == (Object)null) { error = "item prefab '" + text2 + "' is not registered"; return false; } string text3 = val.m_itemData.m_shared.m_name?.Trim() ?? string.Empty; if (!hashSet.Add(text2) || text3.Length == 0 || !hashSet2.Add(text3)) { error = "item prefab '" + text2 + "' duplicates another ingredient"; return false; } list.Add(new Requirement { m_resItem = val, m_amount = result, m_extraAmountOnlyOneIngredient = 0, m_amountPerLevel = 1, m_recover = true }); } requirements = list.ToArray(); return true; } private static void ApplyRequirements(Piece piece, Requirement[] requirements) { piece.m_resources = requirements; Player localPlayer = Player.m_localPlayer; if (localPlayer != null) { localPlayer.UpdateAvailablePiecesList(); } } private static Requirement[] CloneRequirements(Requirement[]? source) { //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_0031: Unknown result type (might be due to invalid IL or missing references) //IL_003d: Unknown result type (might be due to invalid IL or missing references) //IL_0049: Unknown result type (might be due to invalid IL or missing references) //IL_0055: Unknown result type (might be due to invalid IL or missing references) //IL_0062: Expected O, but got Unknown if (source == null || source.Length == 0) { return Array.Empty(); } Requirement[] array = (Requirement[])(object)new Requirement[source.Length]; for (int i = 0; i < source.Length; i++) { Requirement val = source[i]; array[i] = new Requirement { m_resItem = val.m_resItem, m_amount = val.m_amount, m_extraAmountOnlyOneIngredient = val.m_extraAmountOnlyOneIngredient, m_amountPerLevel = val.m_amountPerLevel, m_recover = val.m_recover }; } return array; } private static void WarnInvalidRecipeOnce(string recipe, string error) { string text = recipe + "\0" + error; if (!string.Equals(_lastWarningKey, text, StringComparison.Ordinal)) { _lastWarningKey = text; RepairRequiresMaterialsPlugin.Log.LogWarning((object)("Invalid Incinerator Build Recipe '" + recipe + "': " + error + ". Restored the original recipe.")); } } } [HarmonyPatch(typeof(Incinerator), "Awake")] internal static class IncineratorDismantleAwakePatch { [HarmonyPriority(0)] private static void Postfix(Incinerator __instance) { if (IncineratorDismantlePatches.IsSupportedIncinerator(__instance)) { IncineratorDismantleController incineratorDismantleController = ((Component)__instance).GetComponent(); if ((Object)(object)incineratorDismantleController == (Object)null) { incineratorDismantleController = ((Component)__instance).gameObject.AddComponent(); } incineratorDismantleController.Initialize(__instance); } } } [HarmonyPatch(typeof(Switch), "Interact")] internal static class IncineratorDismantleSwitchInteractPatch { [HarmonyPriority(800)] private static bool Prefix(Switch __instance, Humanoid character, bool hold, ref bool __result) { //IL_002b: 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) //IL_0031: Unknown result type (might be due to invalid IL or missing references) //IL_0034: Unknown result type (might be due to invalid IL or missing references) //IL_0059: Unknown result type (might be due to invalid IL or missing references) if (!RepairRequiresMaterialsPlugin.EnableIncineratorDismantling.Value.IsOn() || !IncineratorDismantlePatches.TryGetIncineratorLever(__instance, out Incinerator incinerator) || (Object)(object)incinerator == (Object)null) { return true; } KeyCode value = RepairRequiresMaterialsPlugin.DismantleModifierKey.Value; if ((int)value == 0 || !ZInput.GetKey(value, false)) { return true; } __result = false; if (hold) { return false; } Player val = (Player)(object)((character is Player) ? character : null); if (val == null) { return false; } if (!PrivateArea.CheckAccess(((Component)incinerator).transform.position, 0f, true, false) || !incinerator.m_container.CheckAccess(val.GetPlayerID())) { ((Character)val).Message((MessageType)2, "$piece_noaccess", 0, (Sprite)null); return false; } IncineratorDismantleController component = ((Component)incinerator).GetComponent(); if ((Object)(object)component == (Object)null || !component.RequestDismantle(val)) { ((Character)val).Message((MessageType)2, "$rrm_dismantle_unavailable", 0, (Sprite)null); return false; } __result = true; return false; } } [HarmonyPatch(typeof(Incinerator), "GetLeverHoverText")] internal static class IncineratorDismantleHoverTextPatch { [HarmonyPriority(0)] private static void Postfix(Incinerator __instance, ref string __result) { //IL_001e: 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_0044: Unknown result type (might be due to invalid IL or missing references) //IL_0049: Unknown result type (might be due to invalid IL or missing references) if (RepairRequiresMaterialsPlugin.EnableIncineratorDismantling.Value.IsOn() && IncineratorDismantlePatches.IsSupportedIncinerator(__instance) && (int)RepairRequiresMaterialsPlugin.DismantleModifierKey.Value != 0 && PrivateArea.CheckAccess(((Component)__instance).transform.position, 0f, false, false)) { string text = ((object)RepairRequiresMaterialsPlugin.DismantleModifierKey.Value/*cast due to .constrained prefix*/).ToString(); __result += Localization.instance.Localize("\n[" + text + " + $KEY_Use] $rrm_dismantle_action"); } } } internal static class IncineratorDismantlePatches { private const string IncineratorPrefabName = "incinerator"; internal static bool TryGetIncineratorLever(Switch lever, out Incinerator? incinerator) { incinerator = (((Object)(object)lever != (Object)null) ? ((Component)lever).GetComponentInParent(true) : null); if ((Object)(object)incinerator != (Object)null && (Object)(object)incinerator.m_incinerateSwitch == (Object)(object)lever) { return IsSupportedIncinerator(incinerator); } return false; } internal static bool IsSupportedIncinerator(Incinerator? incinerator) { if ((Object)(object)incinerator == (Object)null) { return false; } string text = ((Object)((Component)incinerator).gameObject).name?.Trim() ?? string.Empty; if (text.EndsWith("(Clone)", StringComparison.OrdinalIgnoreCase)) { text = text.Substring(0, text.Length - "(Clone)".Length).Trim(); } return string.Equals(text, "incinerator", StringComparison.Ordinal); } } [HarmonyPatch(typeof(InventoryGui), "HaveRepairableItems")] internal static class InventoryGuiHaveRepairableItemsPatch { private static bool Prefix(ref bool __result) { //IL_0007: Unknown result type (might be due to invalid IL or missing references) //IL_0012: Expected O, but got Unknown Player localPlayer = Player.m_localPlayer; if ((Object)localPlayer == (Object)null) { __result = false; return false; } __result = RepairSelectionState.TryGetSelectedPreview(localPlayer, out RepairPreview preview) && preview != null && RepairCostSystem.CanAfford(localPlayer, preview); return false; } } [HarmonyPatch(typeof(InventoryGui), "RepairOneItem")] internal static class InventoryGuiRepairOneItemPatch { private static bool Prefix() { //IL_0007: Unknown result type (might be due to invalid IL or missing references) //IL_0012: Expected O, but got Unknown Player localPlayer = Player.m_localPlayer; if ((Object)localPlayer == (Object)null) { return false; } RepairService.TryRepairSelected(localPlayer); return false; } } [HarmonyPatch(typeof(InventoryGui), "UpdateRepair")] internal static class InventoryGuiUpdateRepairPatch { private static void Prefix() { //IL_0007: Unknown result type (might be due to invalid IL or missing references) //IL_0012: Expected O, but got Unknown Player localPlayer = Player.m_localPlayer; if ((Object)localPlayer != (Object)null) { RepairSelectionState.Refresh(localPlayer); } } [HarmonyPriority(0)] private static void Postfix(InventoryGui __instance) { try { RepairStripController.Refresh(__instance); } finally { RepairService.FlushDirtyNotifications(); } } } [HarmonyPatch(typeof(InventoryGui), "Hide")] internal static class InventoryGuiHidePatch { private static void Postfix() { RepairStripController.Hide(); RepairService.FlushDirtyNotifications(); } } [HarmonyPatch(typeof(InventoryGui), "OnDestroy")] internal static class InventoryGuiOnDestroyPatch { private static void Prefix() { RepairStripController.Destroy(); RepairSelectionState.Reset(); } } [BepInPlugin("sighsorry.RepairRequiresMaterials", "RepairRequiresMaterials", "1.0.0")] [BepInDependency(/*Could not decode attribute arguments.*/)] public sealed class RepairRequiresMaterialsPlugin : BaseUnityPlugin { private readonly struct ConfigSection { internal string Name { get; } internal int Order { get; } internal ConfigSection(string name, int order) { Name = name; Order = order; } } private sealed class ConfigurationManagerAttributes { public int? CategoryOrder { get; set; } public int? Order { get; set; } } public enum Toggle { On = 1, Off = 0 } internal const string ModName = "RepairRequiresMaterials"; internal const string ModVersion = "1.0.0"; internal const string Author = "sighsorry"; internal const string ModGuid = "sighsorry.RepairRequiresMaterials"; private static readonly string ConfigFileName = "sighsorry.RepairRequiresMaterials.cfg"; private static readonly string ConfigFileFullPath = Path.Combine(Paths.ConfigPath, ConfigFileName); private static readonly ConfigSection GeneralConfig = new ConfigSection("1 - General", 400); private static readonly ConfigSection RepairCostsConfig = new ConfigSection("2 - Repair Costs", 300); private static readonly ConfigSection CraftingSkillEffectsConfig = new ConfigSection("3 - Crafting Skill Effects", 200); private static readonly ConfigSection IncineratorDismantlingConfig = new ConfigSection("4 - Incinerator Dismantling", 100); private static readonly ConfigSync ConfigSync = new ConfigSync("sighsorry.RepairRequiresMaterials") { DisplayName = "RepairRequiresMaterials", CurrentVersion = "1.0.0", MinimumRequiredVersion = "1.0.0", ModRequired = true }; private readonly Harmony _harmony = new Harmony("sighsorry.RepairRequiresMaterials"); private readonly object _reloadLock = new object(); private FileSystemWatcher? _watcher; private DateTime _lastConfigReloadTime; internal static readonly ManualLogSource Log = Logger.CreateLogSource("RepairRequiresMaterials"); internal static ConfigEntry ServerConfigLocked = null; internal static ConfigEntry BaseMaterialCostPercent = null; internal static ConfigEntry QualityIncrementMaterialCostPercent = null; internal static ConfigEntry RepairMaterialBlacklist = null; internal static ConfigEntry EnableCraftingSkillFreeRepairs = null; internal static ConfigEntry CraftingSkillFreeRepairChanceAtLevel0 = null; internal static ConfigEntry CraftingSkillFreeRepairChanceAtLevel100 = null; internal static ConfigEntry CraftingBonusOutputChanceAtLevel100 = null; internal static ConfigEntry CraftingBonusExcludedOutputPrefabs = null; internal static ConfigEntry CraftingEquipTimeReductionAtLevel100 = null; internal static ConfigEntry EnableIncineratorDismantling = null; internal static ConfigEntry DismantleModifierKey = null; internal static ConfigEntry DismantleBaseReturnPercent = null; internal static ConfigEntry DismantleUpgradeReturnPercent = null; internal static ConfigEntry IncineratorBuildRecipe = null; internal static ConfigEntry AdditionalDismantleableItems = null; internal static ConfigEntry DismantleBlacklist = null; public void Awake() { bool saveOnConfigSet = ((BaseUnityPlugin)this).Config.SaveOnConfigSet; ((BaseUnityPlugin)this).Config.SaveOnConfigSet = false; try { InitializePlugin(); } finally { ((BaseUnityPlugin)this).Config.SaveOnConfigSet = saveOnConfigSet; } } private void InitializePlugin() { //IL_005c: Unknown result type (might be due to invalid IL or missing references) //IL_006c: Expected O, but got Unknown //IL_009a: Unknown result type (might be due to invalid IL or missing references) //IL_00aa: Expected O, but got Unknown //IL_0153: Unknown result type (might be due to invalid IL or missing references) //IL_0163: Expected O, but got Unknown //IL_0191: Unknown result type (might be due to invalid IL or missing references) //IL_01a1: Expected O, but got Unknown //IL_01cf: Unknown result type (might be due to invalid IL or missing references) //IL_01df: Expected O, but got Unknown //IL_026a: Unknown result type (might be due to invalid IL or missing references) //IL_0277: Expected O, but got Unknown //IL_02eb: Unknown result type (might be due to invalid IL or missing references) //IL_02fb: Expected O, but got Unknown //IL_0329: Unknown result type (might be due to invalid IL or missing references) //IL_0339: Expected O, but got Unknown RepairRequiresMaterialsLocalization.Initialize(); ServerConfigLocked = config(GeneralConfig, "Lock Configuration", Toggle.On, "If on, the configuration is locked and can be changed by server admins only.", 100); ConfigSync.AddLockingConfigEntry(ServerConfigLocked); BaseMaterialCostPercent = config(RepairCostsConfig, "Base Material Cost Percent", 15f, new ConfigDescription("Percent of each quality-1 recipe material amount used for a full repair before the durability bucket multiplier is applied.", (AcceptableValueBase)(object)new AcceptableValueRange(0f, 100f), Array.Empty()), 300); QualityIncrementMaterialCostPercent = config(RepairCostsConfig, "Quality Increment Material Cost Percent", 5f, new ConfigDescription("Percent of each current quality increment, (quality - 1) times the recipe amount per level, used for a full repair before the durability bucket multiplier is applied.", (AcceptableValueBase)(object)new AcceptableValueRange(0f, 100f), Array.Empty()), 200); RepairMaterialBlacklist = config(RepairCostsConfig, "Repair Material Blacklist", string.Empty, "Comma-, semicolon-, or newline-separated ingredient prefab names that are excluded from repair material costs. A '*' matches any number of characters and each pattern must match the whole prefab name. For example, 'Iron' excludes only Iron, while 'Simple_*_Socket' also matches Simple_Red_Socket. Matching is case-insensitive; equipment and Trophy item types are always excluded separately.", 100); RepairMaterialBlacklist.SettingChanged += delegate { RepairMaterialRules.SetBlacklistedPrefabPatterns(RepairMaterialBlacklist.Value); RepairSelectionState.Reset(); }; RepairMaterialRules.SetBlacklistedPrefabPatterns(RepairMaterialBlacklist.Value); EnableCraftingSkillFreeRepairs = config(CraftingSkillEffectsConfig, "Enable Free Repairs", Toggle.On, "If on, a deterministic per-item repair ticket can waive a non-zero material cost based on the repairing player's Crafting skill.", 600); CraftingSkillFreeRepairChanceAtLevel0 = config(CraftingSkillEffectsConfig, "Free Repair Chance At Level 0", 10f, new ConfigDescription("Minimum percent chance for a material-cost repair to be free at Crafting skill 0. Higher skill levels interpolate linearly toward the level-100 setting; values above that maximum are capped to it.", (AcceptableValueBase)(object)new AcceptableValueRange(0f, 100f), Array.Empty()), 500); CraftingSkillFreeRepairChanceAtLevel100 = config(CraftingSkillEffectsConfig, "Free Repair Chance At Level 100", 30f, new ConfigDescription("Maximum percent chance for a material-cost repair to be free at Crafting skill 100. Lower skill levels interpolate from the configured level-0 minimum.", (AcceptableValueBase)(object)new AcceptableValueRange(0f, 100f), Array.Empty()), 400); CraftingBonusOutputChanceAtLevel100 = config(CraftingSkillEffectsConfig, "Bonus Output Chance At Level 100", 25f, new ConfigDescription("Independent per-item bonus-output chance at Crafting skill 100 for eligible stackable results made at a Crafting-skill station. Lower skill levels scale this chance linearly. The default 25 matches Valheim's normal maximum chance for a single-output craft. Set to 0 to disable Crafting-skill bonus output.", (AcceptableValueBase)(object)new AcceptableValueRange(0f, 25f), Array.Empty()), 300); CraftingBonusExcludedOutputPrefabs = config(CraftingSkillEffectsConfig, "Bonus Output Excluded Prefabs", "Simple_*_Socket, Advanced_*_Socket, Perfect_*_Socket", "Comma-, semicolon-, or newline-separated output prefab names that receive no Crafting production bonus. A '*' matches any number of characters and each pattern must match the whole prefab name. Matching is case-insensitive; exact names and wildcard patterns can be mixed.", 200); CraftingBonusExcludedOutputPrefabs.SettingChanged += delegate { CraftingProductionBonusSystem.SetExcludedOutputPrefabPatterns(CraftingBonusExcludedOutputPrefabs.Value); }; CraftingProductionBonusSystem.SetExcludedOutputPrefabPatterns(CraftingBonusExcludedOutputPrefabs.Value); CraftingEquipTimeReductionAtLevel100 = config(CraftingSkillEffectsConfig, "Equip Time Reduction At Level 100", 50f, new ConfigDescription("Maximum percent reduction to queued equipment equip and manual unequip time at Crafting skill 100. Lower skill levels scale the reduction linearly. Set to 0 to disable this feature; 100 makes the queued duration zero at Crafting skill 100.", (AcceptableValueBase)(object)new AcceptableValueRange(0f, 100f), Array.Empty()), 100); EnableIncineratorDismantling = config(IncineratorDismantlingConfig, "Enabled", Toggle.On, "If on, the configured modifier plus Valheim's Use input dismantles eligible items in an incinerator while ordinary Use keeps its existing behavior.", 600); DismantleModifierKey = config(IncineratorDismantlingConfig, "Modifier Key", (KeyCode)308, "Local modifier held together with Valheim's current Use binding to dismantle eligible items. Set to None to disable the shortcut on this client.", 500, synchronizedSetting: false); DismantleBaseReturnPercent = config(IncineratorDismantlingConfig, "Base Material Return Percent", 10f, new ConfigDescription("Percent of each eligible item's quality-1 recipe material cost returned by incinerator dismantling.", (AcceptableValueBase)(object)new AcceptableValueRange(0f, 100f), Array.Empty()), 400); DismantleUpgradeReturnPercent = config(IncineratorDismantlingConfig, "Cumulative Upgrade Material Return Percent", 20f, new ConfigDescription("Percent of all material costs from quality 2 through the item's current quality returned by incinerator dismantling.", (AcceptableValueBase)(object)new AcceptableValueRange(0f, 100f), Array.Empty()), 300); IncineratorBuildRecipe = config(IncineratorDismantlingConfig, "Incinerator Build Recipe", "Iron:8,Copper:4,Thunderstone:1", "Materials required to build the vanilla incinerator. Use comma-, semicolon-, or newline-separated ItemPrefab:Amount entries, for example 'Iron:8,Copper:4,Thunderstone:1'. Amounts must be positive integers and item prefab names are exact. Leave empty to restore the original build recipe, or use 'None' for no build cost. This does not change normal incineration conversions or dismantling returns.", 700); IncineratorBuildRecipe.SettingChanged += delegate { IncineratorBuildRecipeSystem.Apply(); }; AdditionalDismantleableItems = config(IncineratorDismantlingConfig, "Additional Dismantleable Items", string.Empty, "Comma-, semicolon-, or newline-separated non-equipment prefab names that are additionally eligible for dismantling. A '*' matches any number of characters and each pattern must match the whole prefab name. For example, 'DragonEgg' adds that exact prefab and 'Perfect_*_Socket' adds every matching socket prefab. Matching is case-insensitive; equipment remains eligible without being listed, while the item blacklist, quest-item exclusion, and recipe checks still take priority.", 200); AdditionalDismantleableItems.SettingChanged += delegate { IncineratorDismantleCostSystem.SetAdditionalDismantleablePrefabPatterns(AdditionalDismantleableItems.Value); }; IncineratorDismantleCostSystem.SetAdditionalDismantleablePrefabPatterns(AdditionalDismantleableItems.Value); DismantleBlacklist = config(IncineratorDismantlingConfig, "Item Blacklist", string.Empty, "Comma-separated exact prefab names that can never be dismantled, including otherwise eligible equipment and explicitly added items.", 100); AdminCommands.Register(); _harmony.PatchAll(Assembly.GetExecutingAssembly()); SetupWatcher(); ((BaseUnityPlugin)this).Config.Save(); } private void OnDestroy() { try { SaveWithRespectToConfigSet(); } finally { _watcher?.Dispose(); _watcher = null; try { _harmony.UnpatchSelf(); } finally { RepairRequiresMaterialsLocalization.Shutdown(); } } } private void SetupWatcher() { _watcher = new FileSystemWatcher(Paths.ConfigPath, ConfigFileName); _watcher.Changed += ReadConfigValues; _watcher.Created += ReadConfigValues; _watcher.Renamed += ReadConfigValues; _watcher.SynchronizingObject = ThreadingHelper.SynchronizingObject; _watcher.EnableRaisingEvents = true; } private void ReadConfigValues(object sender, FileSystemEventArgs e) { DateTime now = DateTime.Now; if (now.Ticks - _lastConfigReloadTime.Ticks < 10000000) { return; } lock (_reloadLock) { if (!File.Exists(ConfigFileFullPath)) { Log.LogWarning((object)"Config file does not exist. Skipping reload."); return; } try { SaveWithRespectToConfigSet(reload: true); } catch (Exception ex) { Log.LogError((object)("Error reloading configuration: " + ex.Message)); } } _lastConfigReloadTime = now; } private void SaveWithRespectToConfigSet(bool reload = false) { bool saveOnConfigSet = ((BaseUnityPlugin)this).Config.SaveOnConfigSet; ((BaseUnityPlugin)this).Config.SaveOnConfigSet = false; try { if (reload) { ((BaseUnityPlugin)this).Config.Reload(); } ((BaseUnityPlugin)this).Config.Save(); } finally { ((BaseUnityPlugin)this).Config.SaveOnConfigSet = saveOnConfigSet; } } private ConfigEntry config(ConfigSection section, string name, T value, ConfigDescription description, int order, bool synchronizedSetting = true) { //IL_0073: Unknown result type (might be due to invalid IL or missing references) //IL_0079: Expected O, but got Unknown object[] array = description.Tags ?? Array.Empty(); object[] array2 = new object[array.Length + 1]; Array.Copy(array, array2, array.Length); array2[array.Length] = new ConfigurationManagerAttributes { CategoryOrder = section.Order, Order = order }; ConfigDescription val = new ConfigDescription(description.Description + (synchronizedSetting ? " [Synced with Server]" : " [Not Synced with Server]"), description.AcceptableValues, array2); ConfigEntry val2 = ((BaseUnityPlugin)this).Config.Bind(section.Name, name, value, val); ConfigSync.AddConfigEntry(val2).SynchronizedConfig = synchronizedSetting; return val2; } private ConfigEntry config(ConfigSection section, string name, T value, string description, int order, bool synchronizedSetting = true) { //IL_000c: Unknown result type (might be due to invalid IL or missing references) //IL_001a: Expected O, but got Unknown return config(section, name, value, new ConfigDescription(description, (AcceptableValueBase)null, Array.Empty()), order, synchronizedSetting); } } internal static class ToggleExtensions { internal static bool IsOn(this RepairRequiresMaterialsPlugin.Toggle value) { return value == RepairRequiresMaterialsPlugin.Toggle.On; } } internal sealed class PrefabPatternMatcher { internal static readonly PrefabPatternMatcher Empty = new PrefabPatternMatcher(new HashSet(StringComparer.OrdinalIgnoreCase), Array.Empty()); private static readonly char[] Separators = new char[4] { ',', ';', '\r', '\n' }; private readonly HashSet _exactNames; private readonly string[] _wildcardPatterns; private PrefabPatternMatcher(HashSet exactNames, string[] wildcardPatterns) { _exactNames = exactNames; _wildcardPatterns = wildcardPatterns; } internal static PrefabPatternMatcher Parse(string? source) { if (source == null || string.IsNullOrWhiteSpace(source)) { return Empty; } HashSet hashSet = new HashSet(StringComparer.OrdinalIgnoreCase); HashSet hashSet2 = new HashSet(StringComparer.OrdinalIgnoreCase); List list = new List(); string[] array = source.Split(Separators, StringSplitOptions.RemoveEmptyEntries); for (int i = 0; i < array.Length; i++) { string text = array[i].Trim(); if (text.Length != 0) { if (text.IndexOf('*') < 0) { hashSet.Add(text); } else if (hashSet2.Add(text)) { list.Add(text); } } } if (hashSet.Count != 0 || list.Count != 0) { return new PrefabPatternMatcher(hashSet, list.ToArray()); } return Empty; } internal bool IsMatch(string? prefabName) { if (prefabName == null || prefabName.Length == 0) { return false; } if (_exactNames.Contains(prefabName)) { return true; } string[] wildcardPatterns = _wildcardPatterns; foreach (string pattern in wildcardPatterns) { if (WildcardMatches(prefabName, pattern)) { return true; } } return false; } private static bool WildcardMatches(string value, string pattern) { int num = 0; int i = 0; int num2 = -1; int num3 = -1; while (num < value.Length) { if (i < pattern.Length && pattern[i] != '*' && CharactersEqual(value[num], pattern[i])) { num++; i++; continue; } if (i < pattern.Length && pattern[i] == '*') { num2 = i++; num3 = num; continue; } if (num2 < 0) { return false; } i = num2 + 1; num = ++num3; } for (; i < pattern.Length && pattern[i] == '*'; i++) { } return i == pattern.Length; } private static bool CharactersEqual(char left, char right) { if (left != right) { return char.ToUpperInvariant(left) == char.ToUpperInvariant(right); } return true; } } internal enum RepairPaymentKind { Free, StationMaterials, CraftingSkillFree } internal sealed class RepairPreview { internal ItemData Item { get; } internal RepairPaymentKind PaymentKind { get; } internal IReadOnlyList Costs { get; } internal int DurabilityBucketPercent { get; } internal bool UsesNearbyContainers { get; } internal bool HasRawMaterialCost { get; } internal string RepairCostRoundingToken { get; } internal string SkillFreeTicketToken { get; } internal int VisualKey { get { int hashCode = ((object)Item).GetHashCode(); hashCode = (hashCode * 397) ^ DurabilityBucketPercent; hashCode = (hashCode * 397) ^ (int)PaymentKind; hashCode = (hashCode * 397) ^ (HasRawMaterialCost ? 1 : 0); hashCode = (hashCode * 397) ^ RepairCostRoundingToken.GetHashCode(); hashCode = (hashCode * 397) ^ SkillFreeTicketToken.GetHashCode(); foreach (RepairMaterialCost cost in Costs) { hashCode = (hashCode * 397) ^ cost.ResourcePrefabName.GetHashCode(); hashCode = (hashCode * 397) ^ cost.RequiredAmount; hashCode = (hashCode * 397) ^ cost.AvailableAmount; } return hashCode; } } internal RepairPreview(ItemData item, RepairPaymentKind paymentKind, IReadOnlyList costs, int durabilityBucketPercent, bool usesNearbyContainers, bool hasRawMaterialCost = false, string repairCostRoundingToken = "", string skillFreeTicketToken = "") { Item = item; PaymentKind = paymentKind; Costs = costs; DurabilityBucketPercent = durabilityBucketPercent; UsesNearbyContainers = usesNearbyContainers; HasRawMaterialCost = hasRawMaterialCost; RepairCostRoundingToken = repairCostRoundingToken; SkillFreeTicketToken = skillFreeTicketToken; } internal RepairPreview WithPayment(RepairPaymentKind paymentKind, string ticketToken) { return new RepairPreview(Item, paymentKind, Costs, DurabilityBucketPercent, UsesNearbyContainers, HasRawMaterialCost, RepairCostRoundingToken, ticketToken); } internal bool HasSamePaymentPlan(RepairPreview other) { if (Item != other.Item || PaymentKind != other.PaymentKind || DurabilityBucketPercent != other.DurabilityBucketPercent || HasRawMaterialCost != other.HasRawMaterialCost || !string.Equals(RepairCostRoundingToken, other.RepairCostRoundingToken, StringComparison.Ordinal) || !string.Equals(SkillFreeTicketToken, other.SkillFreeTicketToken, StringComparison.Ordinal) || (PaymentKind != RepairPaymentKind.CraftingSkillFree && UsesNearbyContainers != other.UsesNearbyContainers) || Costs.Count != other.Costs.Count) { return false; } for (int i = 0; i < Costs.Count; i++) { RepairMaterialCost repairMaterialCost = Costs[i]; RepairMaterialCost repairMaterialCost2 = other.Costs[i]; if (!string.Equals(repairMaterialCost.ResourcePrefabName, repairMaterialCost2.ResourcePrefabName, StringComparison.Ordinal) || repairMaterialCost.RequiredAmount != repairMaterialCost2.RequiredAmount) { return false; } } return true; } } internal sealed class RepairMaterialCost { internal Requirement SourceRequirement { get; } internal int RequiredAmount { get; } internal int AvailableAmount { get; set; } internal string ResourcePrefabName { get; } internal bool IsAffordable => AvailableAmount >= RequiredAmount; internal Sprite Icon => SourceRequirement.m_resItem.m_itemData.GetIcon(); internal RepairMaterialCost(Requirement sourceRequirement, int requiredAmount, int availableAmount, string resourcePrefabName) { SourceRequirement = sourceRequirement; RequiredAmount = requiredAmount; AvailableAmount = availableAmount; ResourcePrefabName = resourcePrefabName; } } internal static class RepairCostSystem { private sealed class AggregatedRequirement { internal Requirement SourceRequirement { get; } internal long BaseRecipeAmount { get; set; } internal long QualityIncrementRecipeAmount { get; set; } internal string PrefabName { get; } internal AggregatedRequirement(Requirement sourceRequirement, long baseRecipeAmount, long qualityIncrementRecipeAmount, string prefabName) { SourceRequirement = sourceRequirement; BaseRecipeAmount = baseRecipeAmount; QualityIncrementRecipeAmount = qualityIncrementRecipeAmount; PrefabName = prefabName; } } private const string OnlyOneIngredientRoundingKey = "#only-one-ingredient-group"; private static readonly List WornItems = new List(); internal static void GetRepairableItems(Player player, List results) { //IL_0007: Unknown result type (might be due to invalid IL or missing references) //IL_0012: Expected O, but got Unknown results.Clear(); if ((Object)player == (Object)null) { return; } CraftingStation currentCraftingStation = player.GetCurrentCraftingStation(); WornItems.Clear(); ((Humanoid)player).GetInventory().GetWornItems(WornItems); foreach (ItemData wornItem in WornItems) { if (CanBuildPaymentPlan(player, wornItem, currentCraftingStation)) { results.Add(wornItem); } } } internal static bool TryGetRepairPreview(Player player, ItemData item, out RepairPreview? preview) { preview = null; if (!CanRepairStructurally(player, item)) { return false; } if (player.NoCostCheat()) { preview = new RepairPreview(item, RepairPaymentKind.Free, Array.Empty(), GetDurabilityBucketPercent(item), usesNearbyContainers: false); return true; } CraftingStation currentCraftingStation = player.GetCurrentCraftingStation(); if ((Object)(object)currentCraftingStation == (Object)null) { return false; } Recipe val = FindStationRepairRecipe(player, item, currentCraftingStation); if ((Object)(object)val == (Object)null) { return false; } RepairPreview repairPreview = BuildStationPreview(player, item, val); if (repairPreview == null) { return false; } preview = CraftingFreeRepairSystem.ResolvePreview(player, repairPreview); return true; } internal static bool CanAfford(Player player, RepairPreview preview) { if (player.NoCostCheat()) { return true; } return preview.PaymentKind switch { RepairPaymentKind.Free => true, RepairPaymentKind.CraftingSkillFree => true, RepairPaymentKind.StationMaterials => preview.Costs.All((RepairMaterialCost cost) => cost.IsAffordable), _ => false, }; } internal static bool ConsumeRequirements(Player player, RepairPreview preview) { if (player.NoCostCheat() || preview.PaymentKind == RepairPaymentKind.Free || preview.PaymentKind == RepairPaymentKind.CraftingSkillFree) { return true; } if (preview.PaymentKind != RepairPaymentKind.StationMaterials) { return false; } if (!CanAfford(player, preview)) { return false; } if (preview.Costs.Count == 0) { return true; } bool shouldCompleteRepair; if (preview.UsesNearbyContainers) { return AzuCraftyBoxesCompat.TryConsume(player, preview.Costs, out shouldCompleteRepair) || shouldCompleteRepair; } return ConsumeInventoryRequirementsSafely(((Humanoid)player).GetInventory(), preview.Costs); } internal static bool CanRepairStructurally(Player player, ItemData item) { //IL_0001: Unknown result type (might be due to invalid IL or missing references) //IL_000c: Expected O, but got Unknown if ((Object)player == (Object)null || item == null || !((Humanoid)player).GetInventory().ContainsItem(item) || !item.m_shared.m_useDurability || !item.m_shared.m_canBeReparied) { return false; } float maxDurability = item.GetMaxDurability(); if (maxDurability > 0f) { return item.m_durability < maxDurability; } return false; } internal static bool CanRepairAtStation(Player player, ItemData item, CraftingStation? station, Recipe recipe) { //IL_0022: Unknown result type (might be due to invalid IL or missing references) //IL_002d: Expected O, but got Unknown //IL_0035: Unknown result type (might be due to invalid IL or missing references) //IL_0040: Expected O, but got Unknown if ((Object)(object)station == (Object)null || (Object)(object)recipe == (Object)null || !station.CheckUsable(player, false) || ((Object)recipe.m_craftingStation == (Object)null && (Object)recipe.m_repairStation == (Object)null)) { return false; } if (((Object)(object)recipe.m_repairStation != (Object)null && recipe.m_repairStation.m_name == station.m_name) || ((Object)(object)recipe.m_craftingStation != (Object)null && recipe.m_craftingStation.m_name == station.m_name) || item.m_worldLevel < Game.m_worldLevel) { return Mathf.Min(station.GetLevel(true), 4) >= recipe.m_minStationLevel; } return false; } private static bool CanBuildPaymentPlan(Player player, ItemData item, CraftingStation? station) { if (!CanRepairStructurally(player, item)) { return false; } if (player.NoCostCheat()) { return true; } if ((Object)(object)station != (Object)null) { return (Object)(object)FindStationRepairRecipe(player, item, station) != (Object)null; } return false; } private static Recipe? FindStationRepairRecipe(Player player, ItemData item, CraftingStation station) { IReadOnlyList recipes = RepairRecipeCatalog.GetRecipes(item); bool flag = false; foreach (Recipe item2 in recipes) { if (!((Object)(object)item2 == (Object)null) && item2.m_enabled) { flag = true; if (CanUseMaterialRepairRecipe(item, item2) && CanRepairAtStation(player, item, station, item2)) { return item2; } } } if (!flag) { foreach (Recipe item3 in recipes) { if ((Object)(object)item3 != (Object)null && !item3.m_enabled && CanUseMaterialRepairRecipe(item, item3) && CanRepairAtStation(player, item, station, item3)) { return item3; } } } if (recipes.Count == 0 && (Object)(object)item.m_dropPrefab == (Object)null && (Object)(object)ObjectDB.instance != (Object)null) { Recipe recipe = ObjectDB.instance.GetRecipe(item); if ((Object)(object)recipe != (Object)null && CanUseMaterialRepairRecipe(item, recipe) && CanRepairAtStation(player, item, station, recipe)) { return recipe; } } return null; } private static bool CanUseMaterialRepairRecipe(ItemData item, Recipe recipe) { //IL_00df: Unknown result type (might be due to invalid IL or missing references) string text = CleanPrefabName(((Object)(object)item.m_dropPrefab != (Object)null) ? ((Object)item.m_dropPrefab).name : string.Empty); string name = item.m_shared.m_name; bool result = false; Requirement[] array = recipe.m_resources ?? Array.Empty(); foreach (Requirement val in array) { if (!((Object)(object)val?.m_resItem == (Object)null) && (GetBaseRecipeAmount(val) > 0 || GetQualityIncrementRecipeAmount(val, item.m_quality) > 0)) { string text2 = ResolveItemDropPrefabName(val.m_resItem); string name2 = val.m_resItem.m_itemData.m_shared.m_name; if ((text.Length > 0 && string.Equals(text2, text, StringComparison.Ordinal)) || string.Equals(name2, name, StringComparison.Ordinal)) { return false; } if (!RepairMaterialRules.IsExcluded(val.m_resItem.m_itemData.m_shared.m_itemType, text2)) { result = true; } } } return result; } private static RepairPreview? BuildStationPreview(Player player, ItemData item, Recipe recipe) { //IL_00d7: Unknown result type (might be due to invalid IL or missing references) int durabilityBucketPercent = GetDurabilityBucketPercent(item); int missingDurabilityPercent = 100 - durabilityBucketPercent; double baseMaterialPercent = Mathf.Clamp(RepairRequiresMaterialsPlugin.BaseMaterialCostPercent.Value, 0f, 100f); double qualityIncrementMaterialPercent = Mathf.Clamp(RepairRequiresMaterialsPlugin.QualityIncrementMaterialCostPercent.Value, 0f, 100f); Requirement[] obj = recipe.m_resources ?? Array.Empty(); Dictionary dictionary = new Dictionary(StringComparer.Ordinal); List list = new List(obj.Length); Requirement[] array = obj; foreach (Requirement val in array) { if ((Object)(object)val?.m_resItem == (Object)null) { continue; } long baseRecipeAmount = GetBaseRecipeAmount(val); long qualityIncrementRecipeAmount = GetQualityIncrementRecipeAmount(val, item.m_quality); if (baseRecipeAmount <= 0 && qualityIncrementRecipeAmount <= 0) { continue; } string prefabName = ResolveItemDropPrefabName(val.m_resItem); if (!RepairMaterialRules.IsExcluded(val.m_resItem.m_itemData.m_shared.m_itemType, prefabName)) { string name = val.m_resItem.m_itemData.m_shared.m_name; AggregatedRequirement value; if (recipe.m_requireOnlyOneIngredient) { list.Add(new AggregatedRequirement(val, baseRecipeAmount, qualityIncrementRecipeAmount, prefabName)); } else if (dictionary.TryGetValue(name, out value)) { value.BaseRecipeAmount += baseRecipeAmount; value.QualityIncrementRecipeAmount += qualityIncrementRecipeAmount; } else { AggregatedRequirement aggregatedRequirement = new AggregatedRequirement(val, baseRecipeAmount, qualityIncrementRecipeAmount, prefabName); dictionary.Add(name, aggregatedRequirement); list.Add(aggregatedRequirement); } } } if (list.Count == 0) { return null; } bool flag = AzuCraftyBoxesCompat.ShouldUseNearbyContainers(); bool flag2 = false; List list2 = new List(list.Count); List<(RepairMaterialCost, bool)> list3 = (recipe.m_requireOnlyOneIngredient ? new List<(RepairMaterialCost, bool)>(list.Count) : null); RepairCostRoundingContext repairCostRoundingContext = null; bool flag3 = false; foreach (AggregatedRequirement item3 in list) { double num = CalculateRawRepairAmount(item3.BaseRecipeAmount, item3.QualityIncrementRecipeAmount, baseMaterialPercent, qualityIncrementMaterialPercent, missingDurabilityPercent); bool flag4 = num > 0.0; if (flag4) { if (repairCostRoundingContext == null) { repairCostRoundingContext = RepairCostRoundingSystem.CreateContext(item, ((Humanoid)player).GetInventory()); } flag3 = true; } string materialKey = (recipe.m_requireOnlyOneIngredient ? "#only-one-ingredient-group" : item3.SourceRequirement.m_resItem.m_itemData.m_shared.m_name); int num2 = (flag4 ? repairCostRoundingContext.Round(num, materialKey) : 0); if (num2 <= 0) { if (recipe.m_requireOnlyOneIngredient) { list3.Add((new RepairMaterialCost(item3.SourceRequirement, 0, 0, item3.PrefabName), flag4)); } continue; } Requirement sourceRequirement = item3.SourceRequirement; int num3 = CountInventory(player, sourceRequirement); RepairMaterialCost repairMaterialCost = new RepairMaterialCost(sourceRequirement, num2, num3, item3.PrefabName); int totalAmount = num3; if (flag && !AzuCraftyBoxesCompat.TryCountAvailable(player, repairMaterialCost, num3, out totalAmount)) { flag = false; flag2 = true; totalAmount = num3; } repairMaterialCost.AvailableAmount = totalAmount; if (list3 != null) { list3.Add((repairMaterialCost, flag4)); } else { list2.Add(repairMaterialCost); } } if (flag2) { IEnumerable enumerable2; if (list3 == null) { IEnumerable enumerable = list2; enumerable2 = enumerable; } else { enumerable2 = list3.Select<(RepairMaterialCost, bool), RepairMaterialCost>(((RepairMaterialCost Cost, bool HasRawCost) alternative) => alternative.Cost); } foreach (RepairMaterialCost item4 in enumerable2) { item4.AvailableAmount = CountInventory(player, item4.SourceRequirement); } } if (list3 != null && list3.Count > 0) { int num4 = list3.FindIndex(((RepairMaterialCost Cost, bool HasRawCost) alternative) => alternative.Cost.IsAffordable); if (num4 < 0) { num4 = 0; } (RepairMaterialCost, bool) tuple = list3[num4]; RepairMaterialCost item2 = tuple.Item1; flag3 = tuple.Item2; list2 = ((item2.RequiredAmount > 0) ? new List { item2 } : new List()); } return new RepairPreview(item, RepairPaymentKind.StationMaterials, list2, durabilityBucketPercent, flag && list2.Count > 0, flag3, (!flag3) ? string.Empty : (repairCostRoundingContext?.Token ?? string.Empty)); } private static int CountInventory(Player player, Requirement requirement) { string name = requirement.m_resItem.m_itemData.m_shared.m_name; return ((Humanoid)player).GetInventory().CountItems(name, -1, true); } private static bool ConsumeInventoryRequirementsSafely(Inventory inventory, IReadOnlyList costs) { RepairMaterialCost[] source = costs.ToArray(); if (source.Any((RepairMaterialCost cost) => cost == null || (Object)(object)cost.SourceRequirement?.m_resItem == (Object)null)) { return false; } RepairMaterialCost[] array = source.Where((RepairMaterialCost cost) => cost.RequiredAmount > 0).ToArray(); RepairMaterialCost[] array2 = array; foreach (RepairMaterialCost repairMaterialCost in array2) { string name = repairMaterialCost.SourceRequirement.m_resItem.m_itemData.m_shared.m_name; if (inventory.CountItems(name, -1, true) < repairMaterialCost.RequiredAmount) { return false; } } bool flag = false; array2 = array; foreach (RepairMaterialCost repairMaterialCost2 in array2) { string name2 = repairMaterialCost2.SourceRequirement.m_resItem.m_itemData.m_shared.m_name; int num2 = inventory.CountItems(name2, -1, true); if (num2 < repairMaterialCost2.RequiredAmount) { LogConsumptionMismatch("inventory amount for '" + name2 + "' changed before removal", flag); return flag; } int num3; try { inventory.RemoveItem(name2, repairMaterialCost2.RequiredAmount, -1, true); num3 = num2 - inventory.CountItems(name2, -1, true); } catch (Exception ex) { try { flag |= num2 - inventory.CountItems(name2, -1, true) > 0; } catch { flag = true; } LogConsumptionMismatch("inventory removal threw " + ex.GetType().Name + ": " + ex.Message, flag); return flag; } flag = flag || num3 > 0; if (num3 != repairMaterialCost2.RequiredAmount) { LogConsumptionMismatch($"inventory removed {num3} instead of {repairMaterialCost2.RequiredAmount} for '{name2}'", flag); return flag; } } return true; } private static void LogConsumptionMismatch(string reason, bool repairWillComplete) { string text = (repairWillComplete ? "The selected item will still be repaired because consumption may already have started." : "The repair was cancelled before consumption started."); RepairRequiresMaterialsPlugin.Log.LogWarning((object)("Repair material consumption mismatch: " + reason + ". " + text)); } private static long GetBaseRecipeAmount(Requirement requirement) { return Math.Max(0L, requirement.GetAmount(1)); } private static long GetQualityIncrementRecipeAmount(Requirement requirement, int quality) { if (quality <= 1) { return 0L; } return Math.Max(0L, requirement.GetAmount(quality)); } private static double CalculateRawRepairAmount(long baseRecipeAmount, long qualityIncrementRecipeAmount, double baseMaterialPercent, double qualityIncrementMaterialPercent, int missingDurabilityPercent) { if (missingDurabilityPercent <= 0 || ((baseRecipeAmount <= 0 || baseMaterialPercent <= 0.0) && (qualityIncrementRecipeAmount <= 0 || qualityIncrementMaterialPercent <= 0.0))) { return 0.0; } double num = ((double)baseRecipeAmount * baseMaterialPercent + (double)qualityIncrementRecipeAmount * qualityIncrementMaterialPercent) * (double)missingDurabilityPercent / 10000.0; if (!(num > 0.0)) { return 0.0; } return num; } private static int GetDurabilityBucketPercent(ItemData item) { float maxDurability = item.GetMaxDurability(); if (maxDurability <= 0f) { return 0; } return Mathf.Clamp(Mathf.CeilToInt(Mathf.Clamp01(item.m_durability / maxDurability) * 10f), 0, 10) * 10; } private static string ResolveItemDropPrefabName(ItemDrop itemDrop) { string text = (((Object)(object)itemDrop?.m_itemData?.m_dropPrefab != (Object)null) ? ((Object)itemDrop.m_itemData.m_dropPrefab).name : string.Empty); return CleanPrefabName((!string.IsNullOrWhiteSpace(text)) ? text : (((itemDrop != null) ? ((Object)itemDrop).name : null) ?? string.Empty)); } private static string CleanPrefabName(string value) { string text = value?.Trim() ?? string.Empty; if (!text.EndsWith("(Clone)", StringComparison.OrdinalIgnoreCase)) { return text; } return text.Substring(0, text.Length - "(Clone)".Length).Trim(); } } internal sealed class RepairCostRoundingContext { private readonly string _itemId; private readonly ulong _cycle; private readonly bool _failClosed; internal string Token { get; } internal RepairCostRoundingContext(string itemId, ulong cycle, string token, bool failClosed) { _itemId = itemId; _cycle = cycle; Token = token; _failClosed = failClosed; } internal int Round(double rawAmount, string materialKey) { double roll = (_failClosed ? 0.0 : RepairCostRoundingSystem.GetDeterministicRoll(_itemId, _cycle, materialKey)); return RepairCostRoundingSystem.StochasticRound(rawAmount, roll); } } internal static class RepairCostRoundingSystem { private sealed class RoundingState { internal string ItemId { get; set; } internal ulong Cycle { get; set; } internal bool ForceCeiling { get; set; } internal RoundingState(string itemId, ulong cycle, bool forceCeiling) { ItemId = itemId; Cycle = cycle; ForceCeiling = forceCeiling; } internal string Serialize() { return string.Join("|", "v1", ItemId, Cycle.ToString(CultureInfo.InvariantCulture), ForceCeiling ? "C" : "N"); } } private const string StateKey = "sighsorry.RepairRequiresMaterials.RepairCostRoundingState"; private const string StateSchema = "v1"; private const string RollDomain = "sighsorry.RepairRequiresMaterials.RepairCostRoundingRoll.v1"; private static readonly Dictionary SessionMinimumCycles = new Dictionary(StringComparer.Ordinal); internal static RepairCostRoundingContext CreateContext(ItemData item, Inventory inventory) { bool corruptState; RoundingState roundingState = ReadState(item, inventory, out corruptState); if (roundingState == null) { roundingState = new RoundingState(Guid.NewGuid().ToString("N"), 0uL, corruptState); if (!WriteState(item, inventory, roundingState)) { return CreateFailClosedContext(); } } if (SessionMinimumCycles.TryGetValue(roundingState.ItemId, out var value) && roundingState.Cycle < value) { roundingState.Cycle = value; if (!WriteState(item, inventory, roundingState)) { return CreateFailClosedContext(); } } return new RepairCostRoundingContext(roundingState.ItemId, roundingState.Cycle, roundingState.Serialize(), roundingState.ForceCeiling); } internal static void CompleteSuccessfulRepair(Player player, RepairPreview preview) { if (string.IsNullOrEmpty(preview.RepairCostRoundingToken)) { return; } try { if (!TryParseState(preview.RepairCostRoundingToken, out RoundingState state) || state == null) { return; } ulong num = ((state.Cycle == ulong.MaxValue) ? 0 : (state.Cycle + 1)); string itemId = ((state.Cycle == ulong.MaxValue) ? Guid.NewGuid().ToString("N") : state.ItemId); if (!SessionMinimumCycles.TryGetValue(state.ItemId, out var value) || num > value) { SessionMinimumCycles[state.ItemId] = num; } ItemData item = preview.Item; Inventory inventory = ((Humanoid)player).GetInventory(); bool corruptState; RoundingState roundingState = ReadState(item, inventory, out corruptState); if (roundingState != null && (!string.Equals(roundingState.ItemId, state.ItemId, StringComparison.Ordinal) || roundingState.Cycle != state.Cycle)) { RepairRequiresMaterialsPlugin.Log.LogWarning((object)"A repair-cost rounding cycle changed during a completed repair; the newer item state was preserved."); return; } RoundingState state2 = new RoundingState(itemId, num, forceCeiling: false); if (!WriteState(item, inventory, state2)) { RepairRequiresMaterialsPlugin.Log.LogWarning((object)"A completed repair-cost rounding cycle could not be persisted; its cycle remains advanced for this session."); } } catch (Exception ex) { RepairRequiresMaterialsPlugin.Log.LogWarning((object)("Could not complete the repair-cost rounding cycle: " + ex.GetType().Name + ": " + ex.Message)); } } internal static double GetDeterministicRoll(string itemId, ulong cycle, string materialKey) { string s = string.Join("|", "sighsorry.RepairRequiresMaterials.RepairCostRoundingRoll.v1", itemId, cycle.ToString(CultureInfo.InvariantCulture), materialKey ?? string.Empty); byte[] array; using (SHA256 sHA = SHA256.Create()) { array = sHA.ComputeHash(Encoding.UTF8.GetBytes(s)); } ulong num = 0uL; for (int i = 0; i < 8; i++) { num = (num << 8) | array[i]; } return (double)(num >> 11) / 9007199254740992.0; } internal static int StochasticRound(double rawAmount, double roll) { if (double.IsNaN(rawAmount) || rawAmount <= 0.0) { return 0; } if (double.IsPositiveInfinity(rawAmount) || rawAmount >= 2147483647.0) { return int.MaxValue; } int num = (int)Math.Floor(rawAmount); double num2 = rawAmount - (double)num; if (num2 <= 0.0) { return num; } if (!(((roll >= 0.0 && roll < 1.0) ? roll : 0.0) < num2)) { return num; } return num + 1; } private static RepairCostRoundingContext CreateFailClosedContext() { return new RepairCostRoundingContext(string.Empty, 0uL, string.Empty, failClosed: true); } private static RoundingState? ReadState(ItemData item, Inventory inventory, out bool corruptState) { corruptState = false; if (item.m_customData == null || !item.m_customData.TryGetValue("sighsorry.RepairRequiresMaterials.RepairCostRoundingState", out var value)) { return null; } if (TryParseState(value, out RoundingState state)) { return state; } corruptState = true; try { item.m_customData.Remove("sighsorry.RepairRequiresMaterials.RepairCostRoundingState"); RepairService.MarkInventoryDirty(inventory); } catch { } return null; } private static bool TryParseState(string serialized, out RoundingState? state) { state = null; string[] array = serialized.Split(new char[1] { '|' }, 4); if (array.Length != 4 || !string.Equals(array[0], "v1", StringComparison.Ordinal) || !Guid.TryParseExact(array[1], "N", out var _) || !ulong.TryParse(array[2], NumberStyles.None, CultureInfo.InvariantCulture, out var result2) || (array[3] != "C" && array[3] != "N")) { return false; } state = new RoundingState(array[1], result2, array[3] == "C"); return true; } private static bool WriteState(ItemData item, Inventory inventory, RoundingState state) { try { if (item.m_customData == null) { item.m_customData = new Dictionary(); } string text = state.Serialize(); if (item.m_customData.TryGetValue("sighsorry.RepairRequiresMaterials.RepairCostRoundingState", out var value) && string.Equals(value, text, StringComparison.Ordinal)) { return true; } item.m_customData["sighsorry.RepairRequiresMaterials.RepairCostRoundingState"] = text; RepairService.MarkInventoryDirty(inventory); return true; } catch (Exception ex) { RepairRequiresMaterialsPlugin.Log.LogWarning((object)("Could not persist a repair-cost rounding cycle: " + ex.GetType().Name + ": " + ex.Message)); return false; } } } internal static class RepairMaterialRules { private static volatile PrefabPatternMatcher _blacklistedPrefabs = PrefabPatternMatcher.Empty; internal static void SetBlacklistedPrefabPatterns(string? patterns) { _blacklistedPrefabs = PrefabPatternMatcher.Parse(patterns); } internal static bool IsExcluded(ItemType itemType, string? prefabName) { //IL_0000: Unknown result type (might be due to invalid IL or missing references) //IL_0008: Unknown result type (might be due to invalid IL or missing references) //IL_000b: Invalid comparison between Unknown and I4 if (!EquipmentTypeRules.IsEquipment(itemType) && (int)itemType != 13) { return _blacklistedPrefabs.IsMatch(prefabName); } return true; } } internal static class RepairRecipeCatalog { private static readonly IReadOnlyList NoRecipes = Array.Empty(); private static readonly Dictionary> RecipesByOutput = new Dictionary>(StringComparer.Ordinal); private static ObjectDB? _indexedDatabase; private static List? _indexedRecipeList; private static int _indexedRecipeCount = -1; internal static IReadOnlyList GetRecipes(ItemData item) { EnsureIndex(); object value; if (item == null) { value = null; } else { GameObject dropPrefab = item.m_dropPrefab; value = ((dropPrefab != null) ? ((Object)dropPrefab).name : null); } string text = CleanPrefabName((string?)value); if (text.Length <= 0 || !RecipesByOutput.TryGetValue(text, out List value2)) { return NoRecipes; } return value2; } private static string ResolveOutputPrefabName(Recipe? recipe) { ItemDrop val = recipe?.m_item; object value; if (val == null) { value = null; } else { ItemData itemData = val.m_itemData; if (itemData == null) { value = null; } else { GameObject dropPrefab = itemData.m_dropPrefab; value = ((dropPrefab != null) ? ((Object)dropPrefab).name : null); } } string text = CleanPrefabName((string?)value); if (text.Length <= 0) { return CleanPrefabName((val != null) ? ((Object)val).name : null); } return text; } internal static void Invalidate() { _indexedDatabase = null; _indexedRecipeList = null; _indexedRecipeCount = -1; RecipesByOutput.Clear(); } private static void EnsureIndex() { ObjectDB instance = ObjectDB.instance; List list = instance?.m_recipes; int num = list?.Count ?? 0; if (_indexedDatabase == instance && _indexedRecipeList == list && _indexedRecipeCount == num) { return; } RecipesByOutput.Clear(); _indexedDatabase = instance; _indexedRecipeList = list; _indexedRecipeCount = num; if (list == null) { return; } foreach (Recipe item in list) { if ((Object)(object)item == (Object)null) { continue; } string text = ResolveOutputPrefabName(item); if (text.Length != 0) { if (!RecipesByOutput.TryGetValue(text, out List value)) { value = new List(); RecipesByOutput.Add(text, value); } value.Add(item); } } } private static string CleanPrefabName(string? value) { string text = value?.Trim() ?? string.Empty; if (!text.EndsWith("(Clone)", StringComparison.OrdinalIgnoreCase)) { return text; } return text.Substring(0, text.Length - "(Clone)".Length).Trim(); } } [HarmonyPatch] internal static class ObjectDBRecipeCachePatch { private static IEnumerable TargetMethods() { yield return AccessTools.Method(typeof(ObjectDB), "Awake", (Type[])null, (Type[])null); yield return AccessTools.Method(typeof(ObjectDB), "CopyOtherDB", (Type[])null, (Type[])null); yield return AccessTools.Method(typeof(ObjectDB), "UpdateRegisters", (Type[])null, (Type[])null); } [HarmonyPriority(0)] private static void Postfix() { RepairRecipeCatalog.Invalidate(); } } internal static class RepairRequiresMaterialsLocalization { private enum EmbeddedTranslationResult { NotFound, Loaded, Failed } private static readonly string[] FileExtensions = new string[2] { ".json", ".yml" }; private static readonly IDeserializer Deserializer = new DeserializerBuilder().IgnoreFields().Build(); private static Dictionary _englishTexts = new Dictionary(StringComparer.Ordinal); internal static void Initialize() { _englishTexts = new Dictionary(LoadRequiredEmbeddedEnglish(), StringComparer.Ordinal); } internal static void Shutdown() { _englishTexts = new Dictionary(StringComparer.Ordinal); } internal static void LoadLocalizationLater() { if (_englishTexts.Count > 0 && Localization.instance != null) { LoadLocalization(Localization.instance, Localization.instance.GetSelectedLanguage()); } } internal static string Localize(string token, params object[] args) { if (string.IsNullOrEmpty(token)) { return string.Empty; } string text = GetEnglishFallback(token); if (Localization.instance != null) { try { string tokenKey = GetTokenKey(token); string text2 = Localization.instance.Localize(token); if (!string.IsNullOrEmpty(text2) && !string.Equals(text2, token, StringComparison.Ordinal) && !string.Equals(text2, "[" + tokenKey + "]", StringComparison.Ordinal)) { text = text2; } } catch (Exception exception) { Warn("Failed to localize token '" + token + "'. Using its English fallback.", exception); } } if (args == null || args.Length == 0) { return text; } try { return string.Format(CultureInfo.InvariantCulture, text, args); } catch (Exception exception2) { Warn("Failed to format localization token '" + token + "'. Using the unformatted text.", exception2); return text; } } internal static void LoadLocalization(Localization localization, string language) { if (_englishTexts.Count == 0) { return; } Dictionary dictionary = new Dictionary(_englishTexts, StringComparer.Ordinal); string text = (string.IsNullOrWhiteSpace(language) ? "English" : language); if (!text.Equals("English", StringComparison.OrdinalIgnoreCase)) { Dictionary dictionary2 = TryLoadOptionalEmbeddedTranslation(text); if (dictionary2 != null) { Overlay(dictionary, dictionary2); } } OverlayExternalTranslation(dictionary, Paths.PluginPath, text); OverlayExternalTranslation(dictionary, Paths.ConfigPath, text); foreach (KeyValuePair item in dictionary) { localization.AddWord(item.Key, item.Value); } localization.m_cache.EvictAll(); } private static Dictionary LoadRequiredEmbeddedEnglish() { Dictionary translations; Exception error; EmbeddedTranslationResult embeddedTranslationResult = TryReadEmbeddedTranslation("English", out translations, out error); if (embeddedTranslationResult == EmbeddedTranslationResult.Loaded && translations != null && translations.Count > 0) { return translations; } string text = ((embeddedTranslationResult == EmbeddedTranslationResult.NotFound) ? "the resource was not found" : (error?.Message ?? "the resource was empty")); throw new InvalidOperationException("RepairRequiresMaterials requires an embedded translations/English.yml or translations/English.json file, but " + text + ".", error); } private static Dictionary? TryLoadOptionalEmbeddedTranslation(string language) { Dictionary translations; Exception error; switch (TryReadEmbeddedTranslation(language, out translations, out error)) { case EmbeddedTranslationResult.Failed: Warn("Failed to load embedded " + language + " localization. Keeping the embedded English text.", error); return null; default: return null; case EmbeddedTranslationResult.Loaded: return translations; } } private static EmbeddedTranslationResult TryReadEmbeddedTranslation(string language, out Dictionary? translations, out Exception? error) { translations = null; error = null; Assembly assembly = typeof(RepairRequiresMaterialsLocalization).Assembly; string[] manifestResourceNames = assembly.GetManifestResourceNames(); string[] fileExtensions = FileExtensions; foreach (string text in fileExtensions) { string suffix = "translations." + language + text; string text2 = manifestResourceNames.FirstOrDefault((string name) => name.EndsWith(suffix, StringComparison.OrdinalIgnoreCase)); if (text2 == null) { continue; } try { using Stream stream = assembly.GetManifestResourceStream(text2); if (stream == null) { throw new IOException("Could not open embedded resource '" + text2 + "'."); } using StreamReader streamReader = new StreamReader(stream, Encoding.UTF8, detectEncodingFromByteOrderMarks: true); translations = Deserialize(streamReader.ReadToEnd()); return EmbeddedTranslationResult.Loaded; } catch (Exception ex) { error = ex; return EmbeddedTranslationResult.Failed; } } return EmbeddedTranslationResult.NotFound; } private static void OverlayExternalTranslation(IDictionary destination, string root, string language) { Dictionary dictionary = TryLoadExternalTranslationFromRoot(root, language); if (dictionary != null) { Overlay(destination, dictionary); } } private static Dictionary? TryLoadExternalTranslationFromRoot(string root, string language) { if (string.IsNullOrEmpty(root) || !Directory.Exists(root)) { return null; } List list; try { string expectedName = "RepairRequiresMaterials." + language; list = (from path in Directory.EnumerateFiles(root, "RepairRequiresMaterials.*", SearchOption.AllDirectories) where FileExtensions.Contains(Path.GetExtension(path), StringComparer.OrdinalIgnoreCase) where Path.GetFileNameWithoutExtension(path).Equals(expectedName, StringComparison.OrdinalIgnoreCase) select path).OrderBy(GetExtensionPriority).ThenBy((string path) => path, StringComparer.OrdinalIgnoreCase).ToList(); } catch (Exception exception) { Warn("Failed to search '" + root + "' for the " + language + " localization. Keeping the localization layers loaded so far.", exception); return null; } if (list.Count == 0) { return null; } string text = list[0]; if (list.Count > 1) { Warn("Multiple " + language + " localization files were found under '" + root + "'. Using '" + text + "'."); } try { return Deserialize(File.ReadAllText(text, Encoding.UTF8)); } catch (Exception exception2) { Warn("Failed to read or parse external localization '" + text + "'. Keeping the localization layers loaded so far.", exception2); return null; } } private static Dictionary Deserialize(string data) { return Deserializer.Deserialize>(data) ?? new Dictionary(StringComparer.Ordinal); } private static void Overlay(IDictionary destination, IEnumerable> overlay) { foreach (KeyValuePair item in overlay) { if (!string.IsNullOrEmpty(item.Key) && item.Value != null) { destination[item.Key] = item.Value; } } } private static int GetExtensionPriority(string path) { string extension = Path.GetExtension(path); for (int i = 0; i < FileExtensions.Length; i++) { if (extension.Equals(FileExtensions[i], StringComparison.OrdinalIgnoreCase)) { return i; } } return FileExtensions.Length; } private static string GetEnglishFallback(string token) { string tokenKey = GetTokenKey(token); if (!_englishTexts.TryGetValue(tokenKey, out string value)) { return token; } return value; } private static string GetTokenKey(string token) { if (token.Length <= 0 || token[0] != '$') { return token; } return token.Substring(1); } private static void Warn(string message, Exception? exception = null) { string text = ((exception == null) ? message : (message + " " + exception.Message)); RepairRequiresMaterialsPlugin.Log.LogWarning((object)text); } } [HarmonyPatch(typeof(Localization), "SetupLanguage")] internal static class RepairRequiresMaterialsLocalizationLanguagePatch { [HarmonyPostfix] private static void Postfix(Localization __instance, string language) { RepairRequiresMaterialsLocalization.LoadLocalization(__instance, language); } } [HarmonyPatch(typeof(FejdStartup), "SetupGui")] internal static class RepairRequiresMaterialsLocalizationGuiPatch { [HarmonyPostfix] private static void Postfix() { RepairRequiresMaterialsLocalization.LoadLocalizationLater(); } } internal static class RepairSelectionState { private const float RefreshIntervalSeconds = 0.15f; private static readonly List Candidates = new List(); private static Player? _player; private static ItemData? _selectedItem; private static RepairPreview? _preview; private static RepairPreview? _displayedPreview; private static int _selectedIndex; private static int _lastRefreshFrame = -1; private static float _lastRefreshTime = float.NegativeInfinity; internal static int CandidateCount => Candidates.Count; internal static int SelectedIndex => _selectedIndex; internal static bool Refresh(Player player, bool force = false) { //IL_0001: Unknown result type (might be due to invalid IL or missing references) //IL_000c: Expected O, but got Unknown if ((Object)player == (Object)null) { Reset(); return false; } if (_player != player) { Candidates.Clear(); _player = player; _selectedItem = null; _selectedIndex = 0; InvalidatePreviewCache(); } if (!force && _lastRefreshFrame == Time.frameCount) { return _preview != null; } if (!force && Time.unscaledTime - _lastRefreshTime < 0.15f) { return _preview != null; } ItemData selectedItem = _selectedItem; int selectedIndex = _selectedIndex; RepairCostSystem.GetRepairableItems(player, Candidates); if (Candidates.Count == 0) { _selectedItem = null; _preview = null; _selectedIndex = 0; _lastRefreshFrame = Time.frameCount; _lastRefreshTime = Time.unscaledTime; return false; } int num = FindCandidateIndex(selectedItem); if (num < 0) { num = Mathf.Clamp(selectedIndex, 0, Candidates.Count - 1); } _selectedIndex = num; _selectedItem = Candidates[num]; _preview = (RepairCostSystem.TryGetRepairPreview(player, _selectedItem, out RepairPreview preview) ? preview : null); _lastRefreshFrame = Time.frameCount; _lastRefreshTime = Time.unscaledTime; return _preview != null; } internal static bool TryGetSelectedPreview(Player player, out RepairPreview? preview, bool force = false) { bool num = Refresh(player, force); preview = _preview; if (num) { return preview != null; } return false; } internal static bool TryGetDisplayedPreview(Player player, out RepairPreview? preview) { preview = ((_player == player) ? _displayedPreview : null); return preview != null; } internal static void MarkDisplayedPreview(RepairPreview preview) { _displayedPreview = ((_selectedItem == preview.Item) ? preview : null); } internal static void ClearDisplayedPreview() { _displayedPreview = null; } internal static bool TryGetPreviewForRepair(Player player, out RepairPreview? preview) { //IL_0004: Unknown result type (might be due to invalid IL or missing references) //IL_000f: Expected O, but got Unknown preview = null; if ((Object)player == (Object)null) { return false; } if ((_player != player || _selectedItem == null) && (!Refresh(player, force: true) || _selectedItem == null)) { return false; } ItemData selectedItem = _selectedItem; RepairCostSystem.GetRepairableItems(player, Candidates); int num = FindCandidateIndex(selectedItem); if (num < 0) { _selectedItem = null; _preview = null; _selectedIndex = 0; _lastRefreshFrame = Time.frameCount; return false; } _selectedIndex = num; _selectedItem = selectedItem; if (!RepairCostSystem.TryGetRepairPreview(player, selectedItem, out preview) || preview == null) { _preview = null; _lastRefreshFrame = Time.frameCount; return false; } _preview = preview; _lastRefreshFrame = Time.frameCount; _lastRefreshTime = Time.unscaledTime; return true; } internal static bool SelectOffset(Player player, int offset) { if (!Refresh(player, force: true) || Candidates.Count == 0) { return false; } int num = (_selectedIndex + offset) % Candidates.Count; if (num < 0) { num += Candidates.Count; } _selectedIndex = num; _selectedItem = Candidates[num]; InvalidatePreviewCache(); _preview = (RepairCostSystem.TryGetRepairPreview(player, _selectedItem, out RepairPreview preview) ? preview : null); _lastRefreshFrame = Time.frameCount; _lastRefreshTime = Time.unscaledTime; return _preview != null; } internal static void OnItemRepaired(ItemData repairedItem) { int num = FindCandidateIndex(repairedItem); if (num >= 0 && Candidates.Count > 1) { int num2 = (num + 1) % Candidates.Count; _selectedItem = Candidates[num2]; _selectedIndex = num2; } else { _selectedItem = null; _selectedIndex = 0; } InvalidatePreviewCache(); } internal static void Reset() { Candidates.Clear(); _player = null; _selectedItem = null; _selectedIndex = 0; InvalidatePreviewCache(); } private static void InvalidatePreviewCache() { _preview = null; _displayedPreview = null; _lastRefreshFrame = -1; _lastRefreshTime = float.NegativeInfinity; } private static int FindCandidateIndex(ItemData? item) { if (item == null) { return -1; } for (int i = 0; i < Candidates.Count; i++) { if (Candidates[i] == item) { return i; } } return -1; } } internal static class RepairService { private static readonly HashSet DirtyInventories = new HashSet(); private static bool _isFlushingStateChanges; internal static bool TryRepairSelected(Player player) { try { return TryRepairSelectedCore(player); } finally { FlushDirtyNotifications(); } } internal static void MarkInventoryDirty(Inventory inventory) { DirtyInventories.Add(inventory); } internal static void FlushDirtyNotifications() { if (_isFlushingStateChanges || DirtyInventories.Count == 0) { return; } Inventory[] array = DirtyInventories.ToArray(); DirtyInventories.Clear(); _isFlushingStateChanges = true; try { Inventory[] array2 = array; foreach (Inventory val in array2) { try { val.Changed(); } catch (Exception ex) { DirtyInventories.Add(val); RepairRequiresMaterialsPlugin.Log.LogWarning((object)("Could not publish a persisted repair-item state change: " + ex.GetType().Name + ": " + ex.Message)); } } } finally { _isFlushingStateChanges = false; } } private static bool TryRepairSelectedCore(Player player) { //IL_0013: Unknown result type (might be due to invalid IL or missing references) //IL_001e: Expected O, but got Unknown if ((Object)player == (Object)null) { return false; } RepairSelectionState.TryGetDisplayedPreview(player, out RepairPreview preview); if (!RepairSelectionState.TryGetPreviewForRepair(player, out RepairPreview currentPreview) || currentPreview == null) { ((Character)player).Message((MessageType)2, "$msg_missingrequirement", 0, (Sprite)null); return false; } if (preview != null && !preview.HasSamePaymentPlan(currentPreview)) { ((Character)player).Message((MessageType)2, "$msg_missingrequirement", 0, (Sprite)null); RepairSelectionState.Refresh(player, force: true); return false; } float maxDurability = currentPreview.Item.GetMaxDurability(); if (maxDurability <= 0f) { return false; } if (!RepairCostSystem.ConsumeRequirements(player, currentPreview)) { ((Character)player).Message((MessageType)2, "$msg_missingrequirement", 0, (Sprite)null); RepairSelectionState.Refresh(player, force: true); return false; } float repairedFraction = 1f - currentPreview.Item.m_durability / maxDurability; currentPreview.Item.m_durability = maxDurability; RepairCostRoundingSystem.CompleteSuccessfulRepair(player, currentPreview); CraftingFreeRepairSystem.CompleteSuccessfulRepair(player, currentPreview); RepairSelectionState.OnItemRepaired(currentPreview.Item); RunPostRepairAction("crafting skill gain", delegate { ((Character)player).RaiseSkill((SkillType)107, repairedFraction); }); CraftingStation station = player.GetCurrentCraftingStation(); if ((currentPreview.PaymentKind == RepairPaymentKind.StationMaterials || currentPreview.PaymentKind == RepairPaymentKind.CraftingSkillFree) && (Object)(object)station != (Object)null) { RunPostRepairAction("station repair effect", delegate { //IL_0016: Unknown result type (might be due to invalid IL or missing references) //IL_001b: Unknown result type (might be due to invalid IL or missing references) station.m_repairItemDoneEffects.Create(((Component)station).transform.position, Quaternion.identity, (Transform)null, 1f, -1); }); } RunPostRepairAction("repair message", delegate { ((Character)player).Message((MessageType)2, Localization.instance.Localize("$msg_repaired", new string[1] { currentPreview.Item.m_shared.m_name }), 0, (Sprite)null); }); return true; } private static void RunPostRepairAction(string operation, Action action) { try { action(); } catch (Exception ex) { RepairRequiresMaterialsPlugin.Log.LogWarning((object)("Repair completed, but the " + operation + " failed: " + ex.GetType().Name + ": " + ex.Message)); } } } internal sealed class RepairScrollHandler : MonoBehaviour, IScrollHandler, IEventSystemHandler { private InventoryGui? _gui; internal void Initialize(InventoryGui gui) { _gui = gui; } public void OnScroll(PointerEventData eventData) { //IL_000f: Unknown result type (might be due to invalid IL or missing references) //IL_0027: Unknown result type (might be due to invalid IL or missing references) if (!((Object)(object)_gui == (Object)null) && !(Mathf.Abs(eventData.scrollDelta.y) < 0.01f)) { int offset = ((!(eventData.scrollDelta.y > 0f)) ? 1 : (-1)); if (RepairStripController.ScrollSelection(_gui, offset)) { ((AbstractEventData)eventData).Use(); } } } } internal static class RepairStripController { private sealed class MaterialSlot { internal GameObject Root { get; } internal Image Icon { get; } internal TMP_Text Amount { get; } internal Color NormalAmountColor { get; } internal MaterialSlot(GameObject root, Image icon, TMP_Text amount, Color normalAmountColor) { //IL_001c: Unknown result type (might be due to invalid IL or missing references) //IL_001e: Unknown result type (might be due to invalid IL or missing references) Root = root; Icon = icon; Amount = amount; NormalAmountColor = normalAmountColor; } } private const string VanillaWheelSpriteName = "mousew_icon"; private const float StripGap = 7f; private const float MaterialSlotWidth = 42f; private const float MaterialSlotHeight = 50f; private const float ItemSlotWidth = 52f; private const float ItemSlotHeight = 56f; private const float WheelWidth = 30f; private const float WheelHeight = 44f; private static readonly Color MissingAmountColor = new Color(1f, 0.32f, 0.32f, 1f); private static readonly List MaterialSlots = new List(); private static InventoryGui? _owner; private static GameObject? _root; private static GameObject? _materialsRoot; private static RectTransform? _materialsTransform; private static GameObject? _skillFreeRoot; private static TMP_Text? _skillFreeText; private static Image? _itemIcon; private static TMP_Text? _itemQuality; private static GuiBar? _itemDurability; private static Image? _wheelImage; private static RepairScrollHandler? _scrollHandler; private static Sprite? _wheelSprite; private static bool _wheelLookupWarningLogged; private static int _lastVisualKey = int.MinValue; internal static void Refresh(InventoryGui gui) { //IL_0007: Unknown result type (might be due to invalid IL or missing references) //IL_0012: Expected O, but got Unknown Player localPlayer = Player.m_localPlayer; if ((Object)localPlayer == (Object)null || (Object)(object)gui.m_repairButton == (Object)null) { Hide(); return; } if (!RepairSelectionState.TryGetSelectedPreview(localPlayer, out RepairPreview preview) || preview == null) { Hide(); return; } EnsureCreated(gui); if ((Object)(object)_root == (Object)null) { return; } RefreshWheelSprite(); if ((Object)(object)_skillFreeText != (Object)null) { string text = RepairRequiresMaterialsLocalization.Localize("$rrm_ui_free"); if (!string.Equals(_skillFreeText.text, text, StringComparison.Ordinal)) { _skillFreeText.text = text; } } if (!_root.activeSelf) { _root.SetActive(true); } int num = BuildVisualKey(preview); if (_lastVisualKey != num) { UpdateContents(preview); _lastVisualKey = num; } RepairSelectionState.MarkDisplayedPreview(preview); } internal static void Hide() { RepairSelectionState.ClearDisplayedPreview(); if ((Object)(object)_root != (Object)null) { _root.SetActive(false); } } internal static void Destroy() { if ((Object)(object)_scrollHandler != (Object)null) { Object.Destroy((Object)(object)_scrollHandler); } if ((Object)(object)_root != (Object)null) { Object.Destroy((Object)(object)_root); } _owner = null; _root = null; _materialsRoot = null; _materialsTransform = null; _skillFreeRoot = null; _skillFreeText = null; _itemIcon = null; _itemQuality = null; _itemDurability = null; _wheelImage = null; _scrollHandler = null; _wheelSprite = null; _wheelLookupWarningLogged = false; _lastVisualKey = int.MinValue; MaterialSlots.Clear(); } internal static bool ScrollSelection(InventoryGui gui, int offset) { //IL_0007: Unknown result type (might be due to invalid IL or missing references) //IL_0012: Expected O, but got Unknown Player localPlayer = Player.m_localPlayer; if ((Object)localPlayer == (Object)null || RepairSelectionState.CandidateCount <= 1 || !RepairSelectionState.SelectOffset(localPlayer, offset)) { return false; } _lastVisualKey = int.MinValue; gui.UpdateRepair(); return true; } private static void EnsureCreated(InventoryGui gui) { //IL_0053: Unknown result type (might be due to invalid IL or missing references) //IL_005d: Expected O, but got Unknown //IL_0082: Unknown result type (might be due to invalid IL or missing references) //IL_0087: Unknown result type (might be due to invalid IL or missing references) //IL_0092: Unknown result type (might be due to invalid IL or missing references) //IL_009c: Unknown result type (might be due to invalid IL or missing references) //IL_00a7: Unknown result type (might be due to invalid IL or missing references) //IL_00b1: 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) //IL_00d0: Unknown result type (might be due to invalid IL or missing references) if ((Object)(object)_root != (Object)null && _owner == gui) { return; } Destroy(); _owner = gui; try { _root = new GameObject("RepairRequiresMaterialsStrip", new Type[3] { typeof(RectTransform), typeof(HorizontalLayoutGroup), typeof(ContentSizeFitter) }); _root.transform.SetParent(((Component)gui.m_repairButton).transform, false); RectTransform val = (RectTransform)_root.transform; val.anchorMin = new Vector2(0f, 0.5f); val.anchorMax = new Vector2(0f, 0.5f); val.pivot = new Vector2(1f, 0.5f); val.anchoredPosition = new Vector2(-7f, 0f); HorizontalLayoutGroup component = _root.GetComponent(); ((HorizontalOrVerticalLayoutGroup)component).spacing = 5f; ((LayoutGroup)component).childAlignment = (TextAnchor)5; ((HorizontalOrVerticalLayoutGroup)component).childControlWidth = true; ((HorizontalOrVerticalLayoutGroup)component).childControlHeight = true; ((HorizontalOrVerticalLayoutGroup)component).childForceExpandWidth = false; ((HorizontalOrVerticalLayoutGroup)component).childForceExpandHeight = false; ContentSizeFitter component2 = _root.GetComponent(); component2.horizontalFit = (FitMode)2; component2.verticalFit = (FitMode)2; CreateMaterialsRoot(); CreateSkillFreeLabel(gui); CreateItemSlot(gui); CreateWheelHint(); _scrollHandler = ((Component)gui.m_repairButton).GetComponent() ?? ((Component)gui.m_repairButton).gameObject.AddComponent(); _scrollHandler.Initialize(gui); SetLayerRecursively(_root, ((Component)gui.m_repairButton).gameObject.layer); _root.SetActive(false); } catch (Exception ex) { RepairRequiresMaterialsPlugin.Log.LogWarning((object)("Could not create the compact repair strip: " + ex.GetType().Name + ": " + ex.Message)); Destroy(); } } private static void CreateMaterialsRoot() { //IL_003f: Unknown result type (might be due to invalid IL or missing references) //IL_0049: Expected O, but got Unknown //IL_006d: Unknown result type (might be due to invalid IL or missing references) //IL_0077: Expected O, but got Unknown _materialsRoot = new GameObject("Materials", new Type[4] { typeof(RectTransform), typeof(HorizontalLayoutGroup), typeof(ContentSizeFitter), typeof(LayoutElement) }); _materialsRoot.transform.SetParent(_root.transform, false); _materialsTransform = (RectTransform)_materialsRoot.transform; HorizontalLayoutGroup component = _materialsRoot.GetComponent(); ((HorizontalOrVerticalLayoutGroup)component).spacing = 4f; ((LayoutGroup)component).childAlignment = (TextAnchor)5; ((HorizontalOrVerticalLayoutGroup)component).childControlWidth = true; ((HorizontalOrVerticalLayoutGroup)component).childControlHeight = true; ((HorizontalOrVerticalLayoutGroup)component).childForceExpandWidth = false; ((HorizontalOrVerticalLayoutGroup)component).childForceExpandHeight = false; ContentSizeFitter component2 = _materialsRoot.GetComponent(); component2.horizontalFit = (FitMode)2; component2.verticalFit = (FitMode)2; LayoutElement component3 = _materialsRoot.GetComponent(); component3.minHeight = 50f; component3.preferredHeight = 50f; } private static void CreateItemSlot(InventoryGui gui) { //IL_0051: 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) //IL_00e4: Unknown result type (might be due to invalid IL or missing references) //IL_0102: Unknown result type (might be due to invalid IL or missing references) //IL_015c: 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_016c: Unknown result type (might be due to invalid IL or missing references) //IL_0176: Unknown result type (might be due to invalid IL or missing references) //IL_0181: 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_0196: Unknown result type (might be due to invalid IL or missing references) //IL_01a0: Unknown result type (might be due to invalid IL or missing references) //IL_01ab: Unknown result type (might be due to invalid IL or missing references) //IL_01bf: Unknown result type (might be due to invalid IL or missing references) GameObject val = CreateSlotRoot("SelectedRepairItem", 52f, 56f, _root.transform); GameObject val2 = new GameObject("Icon", new Type[3] { typeof(RectTransform), typeof(CanvasRenderer), typeof(Image) }); val2.transform.SetParent(val.transform, false); _itemIcon = val2.GetComponent(); _itemIcon.preserveAspect = true; ((Graphic)_itemIcon).raycastTarget = false; StretchToParent(((Graphic)_itemIcon).rectTransform, 2f, 7f); _itemQuality = CreateOverlayText(FindInventoryTextTemplate(gui, "quality"), val.transform, "Quality"); _itemQuality.alignment = (TextAlignmentOptions)260; _itemQuality.rectTransform.offsetMin = new Vector2(0f, 0f); _itemQuality.rectTransform.offsetMax = new Vector2(-1f, -1f); if ((Object)(object)gui.m_upgradeItemDurability != (Object)null) { _itemDurability = Object.Instantiate(gui.m_upgradeItemDurability, val.transform); ((Object)_itemDurability).name = "Durability"; ((Component)_itemDurability).gameObject.SetActive(true); RectTransform val3 = (RectTransform)((Component)_itemDurability).transform; val3.anchorMin = new Vector2(0.08f, 0f); val3.anchorMax = new Vector2(0.92f, 0f); val3.pivot = new Vector2(0.5f, 0f); val3.anchoredPosition = new Vector2(0f, 2f); val3.sizeDelta = new Vector2(0f, 5f); _itemDurability.SetMaxValue(1f); } } private static void CreateSkillFreeLabel(InventoryGui gui) { //IL_00cc: Unknown result type (might be due to invalid IL or missing references) //IL_00d2: Unknown result type (might be due to invalid IL or missing references) //IL_00f1: Unknown result type (might be due to invalid IL or missing references) //IL_0105: Unknown result type (might be due to invalid IL or missing references) //IL_0119: Unknown result type (might be due to invalid IL or missing references) _skillFreeRoot = CreateSlotRoot("CraftingSkillFreeRepair", 42f, 50f, (Transform)(object)_materialsTransform); _skillFreeText = CreateOverlayText(FindInventoryTextTemplate(gui, "amount") ?? FindRequirementAmountTemplate(gui), _skillFreeRoot.transform, "FreeRepairLabel"); float num = ((_skillFreeText.fontSize > 0f) ? _skillFreeText.fontSize : 16f); _skillFreeText.text = RepairRequiresMaterialsLocalization.Localize("$rrm_ui_free"); _skillFreeText.alignment = (TextAlignmentOptions)514; _skillFreeText.enableAutoSizing = true; _skillFreeText.fontSizeMin = 10f; _skillFreeText.fontSizeMax = Mathf.Max(18f, num); TMP_Text? skillFreeText = _skillFreeText; skillFreeText.fontStyle = (FontStyles)(skillFreeText.fontStyle | 1); ((Graphic)_skillFreeText).color = new Color(1f, 0.82f, 0.2f, 1f); _skillFreeText.rectTransform.offsetMin = Vector2.zero; _skillFreeText.rectTransform.offsetMax = Vector2.zero; _skillFreeRoot.SetActive(false); } private static void CreateWheelHint() { GameObject obj = CreateSlotRoot("MouseWheelHint", 30f, 44f, _root.transform); _wheelImage = obj.AddComponent(); ((Graphic)_wheelImage).raycastTarget = false; _wheelImage.preserveAspect = true; obj.SetActive(false); RefreshWheelSprite(); } private static MaterialSlot CreateMaterialSlot(InventoryGui gui, int index) { //IL_0057: Unknown result type (might be due to invalid IL or missing references) //IL_005c: Unknown result type (might be due to invalid IL or missing references) //IL_0116: Unknown result type (might be due to invalid IL or missing references) //IL_0130: Unknown result type (might be due to invalid IL or missing references) //IL_013e: Unknown result type (might be due to invalid IL or missing references) GameObject val = CreateSlotRoot($"RepairMaterial_{index}", 42f, 50f, (Transform)(object)_materialsTransform); GameObject val2 = new GameObject("Icon", new Type[3] { typeof(RectTransform), typeof(CanvasRenderer), typeof(Image) }); val2.transform.SetParent(val.transform, false); Image component = val2.GetComponent(); component.preserveAspect = true; ((Graphic)component).raycastTarget = false; StretchToParent(((Graphic)component).rectTransform, 2f, 3f); TMP_Text val3 = CreateOverlayText(FindInventoryTextTemplate(gui, "amount") ?? FindRequirementAmountTemplate(gui), val.transform, "AvailableRequiredAmount"); float num = ((val3.fontSize > 0f) ? val3.fontSize : 16f); val3.alignment = (TextAlignmentOptions)1026; val3.enableAutoSizing = true; val3.fontSizeMin = 8f; val3.fontSizeMax = Mathf.Max(8f, num); val3.rectTransform.offsetMin = new Vector2(0f, 0f); val3.rectTransform.offsetMax = new Vector2(0f, -1f); return new MaterialSlot(val, component, val3, ((Graphic)val3).color); } private static GameObject CreateSlotRoot(string name, float width, float height, Transform parent) { //IL_0021: Unknown result type (might be due to invalid IL or missing references) //IL_0026: Unknown result type (might be due to invalid IL or missing references) //IL_0033: Unknown result type (might be due to invalid IL or missing references) //IL_006b: Expected O, but got Unknown GameObject val = new GameObject(name, new Type[2] { typeof(RectTransform), typeof(LayoutElement) }); val.transform.SetParent(parent, false); LayoutElement component = val.GetComponent(); component.minWidth = width; component.preferredWidth = width; component.minHeight = height; component.preferredHeight = height; component.flexibleWidth = 0f; component.flexibleHeight = 0f; return val; } private static void UpdateContents(RepairPreview preview) { //IL_00a8: Unknown result type (might be due to invalid IL or missing references) //IL_0163: Unknown result type (might be due to invalid IL or missing references) //IL_00f3: Unknown result type (might be due to invalid IL or missing references) //IL_00eb: Unknown result type (might be due to invalid IL or missing references) //IL_020c: Unknown result type (might be due to invalid IL or missing references) //IL_0211: Unknown result type (might be due to invalid IL or missing references) //IL_0233: Unknown result type (might be due to invalid IL or missing references) bool flag = preview.PaymentKind == RepairPaymentKind.CraftingSkillFree; if (!flag) { EnsureMaterialSlotCount(preview.Costs.Count); } if ((Object)(object)_skillFreeRoot != (Object)null) { _skillFreeRoot.SetActive(flag); } for (int i = 0; i < MaterialSlots.Count; i++) { MaterialSlot materialSlot = MaterialSlots[i]; if (flag || i >= preview.Costs.Count) { materialSlot.Root.SetActive(false); continue; } RepairMaterialCost repairMaterialCost = preview.Costs[preview.Costs.Count - 1 - i]; materialSlot.Root.SetActive(true); materialSlot.Icon.sprite = repairMaterialCost.Icon; ((Graphic)materialSlot.Icon).color = Color.white; materialSlot.Amount.text = $"{repairMaterialCost.AvailableAmount}/{repairMaterialCost.RequiredAmount}"; ((Graphic)materialSlot.Amount).color = (repairMaterialCost.IsAffordable ? materialSlot.NormalAmountColor : MissingAmountColor); } if ((Object)(object)_materialsRoot != (Object)null) { _materialsRoot.SetActive(flag || preview.Costs.Count > 0); } if ((Object)(object)_itemIcon != (Object)null) { _itemIcon.sprite = preview.Item.GetIcon(); ((Graphic)_itemIcon).color = Color.white; } if ((Object)(object)_itemQuality != (Object)null) { bool flag2 = preview.Item.m_shared.m_maxQuality > 1; ((Component)_itemQuality).gameObject.SetActive(flag2); if (flag2) { _itemQuality.text = preview.Item.m_quality.ToString(); } } if ((Object)(object)_itemDurability != (Object)null) { ((Component)_itemDurability).gameObject.SetActive(preview.Item.m_shared.m_useDurability); _itemDurability.SetValue(preview.Item.GetDurabilityPercentage()); } if ((Object)(object)_wheelImage != (Object)null) { Color white = Color.white; white.a = ((RepairSelectionState.CandidateCount > 1) ? 1f : 0.38f); ((Graphic)_wheelImage).color = white; } Canvas.ForceUpdateCanvases(); } private static void EnsureMaterialSlotCount(int count) { if (!((Object)(object)_owner == (Object)null) && !((Object)(object)_materialsTransform == (Object)null)) { while (MaterialSlots.Count < count) { MaterialSlots.Add(CreateMaterialSlot(_owner, MaterialSlots.Count)); } } } private static TMP_Text? FindInventoryTextTemplate(InventoryGui gui, string childName) { InventoryGrid playerGrid = gui.m_playerGrid; object obj; if (playerGrid == null) { obj = null; } else { GameObject elementPrefab = playerGrid.m_elementPrefab; obj = ((elementPrefab != null) ? elementPrefab.transform.Find(childName) : null); } Transform val = (Transform)obj; if (!((Object)(object)val != (Object)null)) { return null; } return ((Component)val).GetComponent(); } private static TMP_Text? FindRequirementAmountTemplate(InventoryGui gui) { if (gui.m_recipeRequirementList == null || gui.m_recipeRequirementList.Length == 0) { return null; } GameObject obj = gui.m_recipeRequirementList[0]; Transform val = ((obj != null) ? obj.transform.Find("res_amount") : null); if (!((Object)(object)val != (Object)null)) { return null; } return ((Component)val).GetComponent(); } private static TMP_Text CreateOverlayText(TMP_Text? template, Transform parent, string name) { //IL_0042: 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_0066: Unknown result type (might be due to invalid IL or missing references) //IL_00a6: Unknown result type (might be due to invalid IL or missing references) //IL_00b1: Unknown result type (might be due to invalid IL or missing references) //IL_00c6: Unknown result type (might be due to invalid IL or missing references) //IL_00d1: Unknown result type (might be due to invalid IL or missing references) //IL_00db: Unknown result type (might be due to invalid IL or missing references) TMP_Text val; if ((Object)(object)template != (Object)null) { val = Object.Instantiate(template, parent, false); } else { GameObject val2 = new GameObject(name, new Type[3] { typeof(RectTransform), typeof(CanvasRenderer), typeof(TextMeshProUGUI) }); val2.transform.SetParent(parent, false); val = (TMP_Text)(object)val2.GetComponent(); val.fontSize = 16f; ((Graphic)val).color = Color.white; } ((Object)val).name = name; ((Component)val).gameObject.SetActive(true); ((Behaviour)val).enabled = true; ((Graphic)val).raycastTarget = false; val.textWrappingMode = (TextWrappingModes)0; val.overflowMode = (TextOverflowModes)0; RectTransform rectTransform = val.rectTransform; rectTransform.anchorMin = Vector2.zero; rectTransform.anchorMax = Vector2.one; rectTransform.pivot = new Vector2(0.5f, 0.5f); rectTransform.anchoredPosition = Vector2.zero; ((Transform)rectTransform).localScale = Vector3.one; return val; } private static void RefreshWheelSprite() { if (!((Object)(object)_wheelImage == (Object)null) && !((Object)(object)_wheelImage.sprite != (Object)null)) { Sprite val = FindVanillaWheelSprite(); if (!((Object)(object)val == (Object)null)) { _wheelImage.sprite = val; ((Component)_wheelImage).gameObject.SetActive(true); } } } private static Sprite? FindVanillaWheelSprite() { if ((Object)(object)_wheelSprite != (Object)null) { return _wheelSprite; } GameObject val = KeyHints.instance?.m_buildHints; if ((Object)(object)val == (Object)null) { return null; } Image[] componentsInChildren = val.GetComponentsInChildren(true); for (int i = 0; i < componentsInChildren.Length; i++) { Sprite sprite = componentsInChildren[i].sprite; if ((Object)(object)sprite != (Object)null && string.Equals(((Object)sprite).name, "mousew_icon", StringComparison.Ordinal)) { _wheelSprite = sprite; return _wheelSprite; } } if (!_wheelLookupWarningLogged) { _wheelLookupWarningLogged = true; RepairRequiresMaterialsPlugin.Log.LogWarning((object)"Valheim's 'mousew_icon' sprite was not found; the mouse-wheel hint will be hidden."); } return null; } private static int BuildVisualKey(RepairPreview preview) { return (((((((preview.VisualKey * 397) ^ preview.Item.m_quality) * 397) ^ Mathf.RoundToInt(preview.Item.GetDurabilityPercentage() * 1000f)) * 397) ^ RepairSelectionState.SelectedIndex) * 397) ^ RepairSelectionState.CandidateCount; } private static void StretchToParent(RectTransform rect, float horizontalPadding, float bottomPadding) { //IL_0001: Unknown result type (might be due to invalid IL or missing references) //IL_000c: Unknown result type (might be due to invalid IL or missing references) //IL_0019: 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) //IL_0033: Unknown result type (might be due to invalid IL or missing references) rect.anchorMin = Vector2.zero; rect.anchorMax = Vector2.one; rect.offsetMin = new Vector2(horizontalPadding, bottomPadding); rect.offsetMax = new Vector2(0f - horizontalPadding, 0f - horizontalPadding); ((Transform)rect).localScale = Vector3.one; } private static void SetLayerRecursively(GameObject root, int layer) { //IL_001b: Unknown result type (might be due to invalid IL or missing references) root.layer = layer; foreach (Transform item in root.transform) { SetLayerRecursively(((Component)item).gameObject, layer); } } } } namespace System.Runtime.CompilerServices { [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 { [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 System.Version(CurrentVersion) >= new System.Version(ReceivedMinimumRequiredVersion); bool flag2 = new System.Version(ReceivedCurrentVersion) >= new System.Version(MinimumRequiredVersion); return flag && flag2; } private string ErrorClient() { if (ReceivedMinimumRequiredVersion == null) { return DisplayName + " is not installed on the server."; } return (new System.Version(CurrentVersion) >= new System.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; } } } } namespace System.Runtime.CompilerServices { [CompilerGenerated] [Embedded] internal sealed class IsReadOnlyAttribute : Attribute { } } namespace YamlDotNet { internal sealed class CultureInfoAdapter : CultureInfo { private readonly IFormatProvider provider; public CultureInfoAdapter(CultureInfo baseCulture, IFormatProvider provider) : base(baseCulture.Name) { this.provider = provider; } public override object? GetFormat(Type formatType) { return provider.GetFormat(formatType); } } internal static class Polyfills { [MethodImpl(MethodImplOptions.AggressiveInlining)] internal static bool Contains(this string source, char c) { return source.IndexOf(c) != -1; } [MethodImpl(MethodImplOptions.AggressiveInlining)] internal static bool EndsWith(this string source, char c) { if (source.Length > 0) { return source[source.Length - 1] == c; } return false; } [MethodImpl(MethodImplOptions.AggressiveInlining)] internal static bool StartsWith(this string source, char c) { if (source.Length > 0) { return source[0] == c; } return false; } } internal static class PropertyInfoExtensions { public static object? ReadValue(this PropertyInfo property, object target) { return property.GetValue(target, null); } } internal static class ReflectionExtensions { private static readonly Func IsInstance = (PropertyInfo property) => !(property.GetMethod ?? property.SetMethod).IsStatic; private static readonly Func IsInstancePublic = (PropertyInfo property) => IsInstance(property) && (property.GetMethod ?? property.SetMethod).IsPublic; public static Type? BaseType(this Type type) { return type.GetTypeInfo().BaseType; } public static bool IsValueType(this Type type) { return type.GetTypeInfo().IsValueType; } public static bool IsGenericType(this Type type) { return type.GetTypeInfo().IsGenericType; } public static bool IsGenericTypeDefinition(this Type type) { return type.GetTypeInfo().IsGenericTypeDefinition; } public static Type? GetImplementationOfOpenGenericInterface(this Type type, Type openGenericType) { if (!openGenericType.IsGenericType || !openGenericType.IsInterface) { throw new ArgumentException("The type must be a generic type definition and an interface", "openGenericType"); } if (IsGenericDefinitionOfType(type, openGenericType)) { return type; } return type.FindInterfaces((Type t, object context) => IsGenericDefinitionOfType(t, context), openGenericType).FirstOrDefault(); static bool IsGenericDefinitionOfType(Type t, object? context) { if (t.IsGenericType) { return t.GetGenericTypeDefinition() == (Type)context; } return false; } } public static bool IsInterface(this Type type) { return type.GetTypeInfo().IsInterface; } public static bool IsEnum(this Type type) { return type.GetTypeInfo().IsEnum; } public static bool IsRequired(this MemberInfo member) { return member.GetCustomAttributes(inherit: true).Any((object x) => x.GetType().FullName == "System.Runtime.CompilerServices.RequiredMemberAttribute"); } public static bool HasDefaultConstructor(this Type type, bool allowPrivateConstructors) { BindingFlags bindingFlags = BindingFlags.Instance | BindingFlags.Public; if (allowPrivateConstructors) { bindingFlags |= BindingFlags.NonPublic; } if (!type.IsValueType) { return type.GetConstructor(bindingFlags, null, Type.EmptyTypes, null) != null; } return true; } public static bool IsAssignableFrom(this Type type, Type source) { return type.IsAssignableFrom(source.GetTypeInfo()); } public static bool IsAssignableFrom(this Type type, TypeInfo source) { return type.GetTypeInfo().IsAssignableFrom(source); } public static TypeCode GetTypeCode(this Type type) { if (type.IsEnum()) { type = Enum.GetUnderlyingType(type); } if (type == typeof(bool)) { return TypeCode.Boolean; } if (type == typeof(char)) { return TypeCode.Char; } if (type == typeof(sbyte)) { return TypeCode.SByte; } if (type == typeof(byte)) { return TypeCode.Byte; } if (type == typeof(short)) { return TypeCode.Int16; } if (type == typeof(ushort)) { return TypeCode.UInt16; } if (type == typeof(int)) { return TypeCode.Int32; } if (type == typeof(uint)) { return TypeCode.UInt32; } if (type == typeof(long)) { return TypeCode.Int64; } if (type == typeof(ulong)) { return TypeCode.UInt64; } if (type == typeof(float)) { return TypeCode.Single; } if (type == typeof(double)) { return TypeCode.Double; } if (type == typeof(decimal)) { return TypeCode.Decimal; } if (type == typeof(DateTime)) { return TypeCode.DateTime; } if (type == typeof(string)) { return TypeCode.String; } return TypeCode.Object; } public static bool IsDbNull(this object value) { return value?.GetType()?.FullName == "System.DBNull"; } public static Type[] GetGenericArguments(this Type type) { return type.GetTypeInfo().GenericTypeArguments; } public static PropertyInfo? GetPublicProperty(this Type type, string name) { return type.GetProperties(BindingFlags.Instance | BindingFlags.Static | BindingFlags.Public).FirstOrDefault((PropertyInfo p) => p.Name == name); } public static FieldInfo? GetPublicStaticField(this Type type, string name) { return type.GetRuntimeField(name); } public static IEnumerable GetProperties(this Type type, bool includeNonPublic) { Func predicate = (includeNonPublic ? IsInstance : IsInstancePublic); if (!type.IsInterface()) { return type.GetRuntimeProperties().Where(predicate); } return new Type[1] { type }.Concat(type.GetInterfaces()).SelectMany((Type i) => i.GetRuntimeProperties().Where(predicate)); } public static IEnumerable GetPublicProperties(this Type type) { return type.GetProperties(includeNonPublic: false); } public static IEnumerable GetPublicFields(this Type type) { return from f in type.GetRuntimeFields() where !f.IsStatic && f.IsPublic select f; } public static IEnumerable GetPublicStaticMethods(this Type type) { return from m in type.GetRuntimeMethods() where m.IsPublic && m.IsStatic select m; } public static MethodInfo GetPrivateStaticMethod(this Type type, string name) { return type.GetRuntimeMethods().FirstOrDefault((MethodInfo m) => !m.IsPublic && m.IsStatic && m.Name.Equals(name)) ?? throw new MissingMethodException("Expected to find a method named '" + name + "' in '" + type.FullName + "'."); } public static MethodInfo? GetPublicStaticMethod(this Type type, string name, params Type[] parameterTypes) { return type.GetRuntimeMethods().FirstOrDefault(delegate(MethodInfo m) { if (m.IsPublic && m.IsStatic && m.Name.Equals(name)) { ParameterInfo[] parameters = m.GetParameters(); if (parameters.Length == parameterTypes.Length) { return parameters.Zip(parameterTypes, (ParameterInfo pi, Type pt) => pi.ParameterType == pt).All((bool r) => r); } return false; } return false; }); } public static MethodInfo? GetPublicInstanceMethod(this Type type, string name) { return type.GetRuntimeMethods().FirstOrDefault((MethodInfo m) => m.IsPublic && !m.IsStatic && m.Name.Equals(name)); } public static MethodInfo? GetGetMethod(this PropertyInfo property, bool nonPublic) { MethodInfo methodInfo = property.GetMethod; if (!nonPublic && !methodInfo.IsPublic) { methodInfo = null; } return methodInfo; } public static MethodInfo? GetSetMethod(this PropertyInfo property) { return property.SetMethod; } public static IEnumerable GetInterfaces(this Type type) { return type.GetTypeInfo().ImplementedInterfaces; } public static bool IsInstanceOf(this Type type, object o) { if (!(o.GetType() == type)) { return o.GetType().GetTypeInfo().IsSubclassOf(type); } return true; } public static Attribute[] GetAllCustomAttributes(this PropertyInfo member) { return Attribute.GetCustomAttributes(member, typeof(TAttribute), inherit: true); } public static bool AcceptsNull(this MemberInfo member) { object[] customAttributes = member.DeclaringType.GetCustomAttributes(inherit: true); object obj = customAttributes.FirstOrDefault((object x) => x.GetType().FullName == "System.Runtime.CompilerServices.NullableContextAttribute"); int num = 0; if (obj != null) { Type type = obj.GetType(); PropertyInfo property = type.GetProperty("Flag"); num = (byte)property.GetValue(obj); } object[] customAttributes2 = member.GetCustomAttributes(inherit: true); object obj2 = customAttributes2.FirstOrDefault((object x) => x.GetType().FullName == "System.Runtime.CompilerServices.NullableAttribute"); PropertyInfo propertyInfo = (obj2?.GetType())?.GetProperty("NullableFlags"); byte[] source = (byte[])propertyInfo.GetValue(obj2); return source.Any((byte x) => x == 2) || num == 2; } } internal static class StandardRegexOptions { public const RegexOptions Compiled = RegexOptions.Compiled; } } namespace YamlDotNet.Serialization { internal abstract class BuilderSkeleton where TBuilder : BuilderSkeleton { internal INamingConvention namingConvention = NullNamingConvention.Instance; internal INamingConvention enumNamingConvention = NullNamingConvention.Instance; internal ITypeResolver typeResolver; internal readonly YamlAttributeOverrides overrides; internal readonly LazyComponentRegistrationList typeConverterFactories; internal readonly LazyComponentRegistrationList typeInspectorFactories; internal bool ignoreFields; internal bool includeNonPublicProperties; internal Settings settings; internal YamlFormatter yamlFormatter = YamlFormatter.Default; protected abstract TBuilder Self { get; } internal BuilderSkeleton(ITypeResolver typeResolver) { overrides = new YamlAttributeOverrides(); typeConverterFactories = new LazyComponentRegistrationList { { typeof(YamlDotNet.Serialization.Converters.GuidConverter), (Nothing _) => new YamlDotNet.Serialization.Converters.GuidConverter(jsonCompatible: false) }, { typeof(SystemTypeConverter), (Nothing _) => new SystemTypeConverter() } }; typeInspectorFactories = new LazyComponentRegistrationList(); this.typeResolver = typeResolver ?? throw new ArgumentNullException("typeResolver"); settings = new Settings(); } public TBuilder IgnoreFields() { ignoreFields = true; return Self; } public TBuilder IncludeNonPublicProperties() { includeNonPublicProperties = true; return Self; } public TBuilder EnablePrivateConstructors() { settings.AllowPrivateConstructors = true; return Self; } public TBuilder WithNamingConvention(INamingConvention namingConvention) { this.namingConvention = namingConvention ?? throw new ArgumentNullException("namingConvention"); return Self; } public TBuilder WithEnumNamingConvention(INamingConvention enumNamingConvention) { this.enumNamingConvention = enumNamingConvention; return Self; } public TBuilder WithTypeResolver(ITypeResolver typeResolver) { this.typeResolver = typeResolver ?? throw new ArgumentNullException("typeResolver"); return Self; } public abstract TBuilder WithTagMapping(TagName tag, Type type); public TBuilder WithAttributeOverride(Expression> propertyAccessor, Attribute attribute) { overrides.Add(propertyAccessor, attribute); return Self; } public TBuilder WithAttributeOverride(Type type, string member, Attribute attribute) { overrides.Add(type, member, attribute); return Self; } public TBuilder WithTypeConverter(IYamlTypeConverter typeConverter) { return WithTypeConverter(typeConverter, delegate(IRegistrationLocationSelectionSyntax w) { w.OnTop(); }); } public TBuilder WithTypeConverter(IYamlTypeConverter typeConverter, Action> where) { if (typeConverter == null) { throw new ArgumentNullException("typeConverter"); } if (where == null) { throw new ArgumentNullException("where"); } where(typeConverterFactories.CreateRegistrationLocationSelector(typeConverter.GetType(), (Nothing _) => typeConverter)); return Self; } public TBuilder WithTypeConverter(WrapperFactory typeConverterFactory, Action> where) where TYamlTypeConverter : IYamlTypeConverter { if (typeConverterFactory == null) { throw new ArgumentNullException("typeConverterFactory"); } if (where == null) { throw new ArgumentNullException("where"); } where(typeConverterFactories.CreateTrackingRegistrationLocationSelector(typeof(TYamlTypeConverter), (IYamlTypeConverter wrapped, Nothing _) => typeConverterFactory(wrapped))); return Self; } public TBuilder WithoutTypeConverter() where TYamlTypeConverter : IYamlTypeConverter { return WithoutTypeConverter(typeof(TYamlTypeConverter)); } public TBuilder WithoutTypeConverter(Type converterType) { if (converterType == null) { throw new ArgumentNullException("converterType"); } typeConverterFactories.Remove(converterType); return Self; } public TBuilder WithTypeInspector(Func typeInspectorFactory) where TTypeInspector : ITypeInspector { return WithTypeInspector(typeInspectorFactory, delegate(IRegistrationLocationSelectionSyntax w) { w.OnTop(); }); } public TBuilder WithTypeInspector(Func typeInspectorFactory, Action> where) where TTypeInspector : ITypeInspector { if (typeInspectorFactory == null) { throw new ArgumentNullException("typeInspectorFactory"); } if (where == null) { throw new ArgumentNullException("where"); } where(typeInspectorFactories.CreateRegistrationLocationSelector(typeof(TTypeInspector), (ITypeInspector inner) => typeInspectorFactory(inner))); return Self; } public TBuilder WithTypeInspector(WrapperFactory typeInspectorFactory, Action> where) where TTypeInspector : ITypeInspector { if (typeInspectorFactory == null) { throw new ArgumentNullException("typeInspectorFactory"); } if (where == null) { throw new ArgumentNullException("where"); } where(typeInspectorFactories.CreateTrackingRegistrationLocationSelector(typeof(TTypeInspector), (ITypeInspector wrapped, ITypeInspector inner) => typeInspectorFactory(wrapped, inner))); return Self; } public TBuilder WithoutTypeInspector() where TTypeInspector : ITypeInspector { return WithoutTypeInspector(typeof(TTypeInspector)); } public TBuilder WithoutTypeInspector(Type inspectorType) { if (inspectorType == null) { throw new ArgumentNullException("inspectorType"); } typeInspectorFactories.Remove(inspectorType); return Self; } public TBuilder WithYamlFormatter(YamlFormatter formatter) { yamlFormatter = formatter ?? throw new ArgumentNullException("formatter"); return Self; } protected IEnumerable BuildTypeConverters() { return typeConverterFactories.BuildComponentList(); } } internal delegate TComponent WrapperFactory(TComponentBase wrapped) where TComponent : TComponentBase; internal delegate TComponent WrapperFactory(TComponentBase wrapped, TArgument argument) where TComponent : TComponentBase; [Flags] internal enum DefaultValuesHandling { Preserve = 0, OmitNull = 1, OmitDefaults = 2, OmitEmptyCollections = 4 } internal sealed class Deserializer : IDeserializer { private readonly IValueDeserializer valueDeserializer; public Deserializer() : this(new DeserializerBuilder().BuildValueDeserializer()) { } private Deserializer(IValueDeserializer valueDeserializer) { this.valueDeserializer = valueDeserializer ?? throw new ArgumentNullException("valueDeserializer"); } public static Deserializer FromValueDeserializer(IValueDeserializer valueDeserializer) { return new Deserializer(valueDeserializer); } public T Deserialize(string input) { using StringReader input2 = new StringReader(input); return Deserialize(input2); } public T Deserialize(TextReader input) { return Deserialize(new Parser(input)); } public T Deserialize(IParser parser) { return (T)Deserialize(parser, typeof(T)); } public object? Deserialize(string input) { return Deserialize(input); } public object? Deserialize(TextReader input) { return Deserialize(input); } public object? Deserialize(IParser parser) { return Deserialize(parser); } public object? Deserialize(string input, Type type) { using StringReader input2 = new StringReader(input); return Deserialize(input2, type); } public object? Deserialize(TextReader input, Type type) { return Deserialize(new Parser(input), type); } public object? Deserialize(IParser parser, Type type) { if (parser == null) { throw new ArgumentNullException("parser"); } if (type == null) { throw new ArgumentNullException("type"); } YamlDotNet.Core.Events.StreamStart @event; bool flag = parser.TryConsume(out @event); YamlDotNet.Core.Events.DocumentStart event2; bool flag2 = parser.TryConsume(out event2); object result = null; if (!parser.Accept(out var _) && !parser.Accept(out var _)) { using SerializerState serializerState = new SerializerState(); result = valueDeserializer.DeserializeValue(parser, type, serializerState, valueDeserializer); serializerState.OnDeserialization(); } if (flag2) { parser.Consume(); } if (flag) { parser.Consume(); } return result; } } internal sealed class DeserializerBuilder : BuilderSkeleton { private Lazy objectFactory; private readonly LazyComponentRegistrationList nodeDeserializerFactories; private readonly LazyComponentRegistrationList nodeTypeResolverFactories; private readonly Dictionary tagMappings; private readonly Dictionary typeMappings; private readonly ITypeConverter typeConverter; private bool ignoreUnmatched; private bool duplicateKeyChecking; private bool attemptUnknownTypeDeserialization; private bool enforceNullability; private bool caseInsensitivePropertyMatching; private bool enforceRequiredProperties; protected override DeserializerBuilder Self => this; public DeserializerBuilder() : base((ITypeResolver)new StaticTypeResolver()) { typeMappings = new Dictionary(); objectFactory = new Lazy(() => new DefaultObjectFactory(typeMappings, settings), isThreadSafe: true); tagMappings = new Dictionary { { FailsafeSchema.Tags.Map, typeof(Dictionary) }, { FailsafeSchema.Tags.Str, typeof(string) }, { JsonSchema.Tags.Bool, typeof(bool) }, { JsonSchema.Tags.Float, typeof(double) }, { JsonSchema.Tags.Int, typeof(int) }, { DefaultSchema.Tags.Timestamp, typeof(DateTime) } }; typeInspectorFactories.Add(typeof(CachedTypeInspector), (ITypeInspector inner) => new CachedTypeInspector(inner)); typeInspectorFactories.Add(typeof(NamingConventionTypeInspector), (ITypeInspector inner) => (!(namingConvention is NullNamingConvention)) ? new NamingConventionTypeInspector(inner, namingConvention) : inner); typeInspectorFactories.Add(typeof(YamlAttributesTypeInspector), (ITypeInspector inner) => new YamlAttributesTypeInspector(inner)); typeInspectorFactories.Add(typeof(YamlAttributeOverridesInspector), (ITypeInspector inner) => (overrides == null) ? inner : new YamlAttributeOverridesInspector(inner, overrides.Clone())); typeInspectorFactories.Add(typeof(ReadableAndWritablePropertiesTypeInspector), (ITypeInspector inner) => new ReadableAndWritablePropertiesTypeInspector(inner)); nodeDeserializerFactories = new LazyComponentRegistrationList { { typeof(YamlConvertibleNodeDeserializer), (Nothing _) => new YamlConvertibleNodeDeserializer(objectFactory.Value) }, { typeof(YamlSerializableNodeDeserializer), (Nothing _) => new YamlSerializableNodeDeserializer(objectFactory.Value) }, { typeof(TypeConverterNodeDeserializer), (Nothing _) => new TypeConverterNodeDeserializer(BuildTypeConverters()) }, { typeof(NullNodeDeserializer), (Nothing _) => new NullNodeDeserializer() }, { typeof(ScalarNodeDeserializer), (Nothing _) => new ScalarNodeDeserializer(attemptUnknownTypeDeserialization, typeConverter, BuildTypeInspector(), yamlFormatter, enumNamingConvention) }, { typeof(ArrayNodeDeserializer), (Nothing _) => new ArrayNodeDeserializer(enumNamingConvention, BuildTypeInspector()) }, { typeof(DictionaryNodeDeserializer), (Nothing _) => new DictionaryNodeDeserializer(objectFactory.Value, duplicateKeyChecking) }, { typeof(CollectionNodeDeserializer), (Nothing _) => new CollectionNodeDeserializer(objectFactory.Value, enumNamingConvention, BuildTypeInspector()) }, { typeof(EnumerableNodeDeserializer), (Nothing _) => new EnumerableNodeDeserializer() }, { typeof(ObjectNodeDeserializer), (Nothing _) => new ObjectNodeDeserializer(objectFactory.Value, BuildTypeInspector(), ignoreUnmatched, duplicateKeyChecking, typeConverter, enumNamingConvention, enforceNullability, caseInsensitivePropertyMatching, enforceRequiredProperties, BuildTypeConverters()) }, { typeof(FsharpListNodeDeserializer), (Nothing _) => new FsharpListNodeDeserializer(BuildTypeInspector(), enumNamingConvention) } }; nodeTypeResolverFactories = new LazyComponentRegistrationList { { typeof(MappingNodeTypeResolver), (Nothing _) => new MappingNodeTypeResolver(typeMappings) }, { typeof(YamlConvertibleTypeResolver), (Nothing _) => new YamlConvertibleTypeResolver() }, { typeof(YamlSerializableTypeResolver), (Nothing _) => new YamlSerializableTypeResolver() }, { typeof(TagNodeTypeResolver), (Nothing _) => new TagNodeTypeResolver(tagMappings) }, { typeof(PreventUnknownTagsNodeTypeResolver), (Nothing _) => new PreventUnknownTagsNodeTypeResolver() }, { typeof(DefaultContainersNodeTypeResolver), (Nothing _) => new DefaultContainersNodeTypeResolver() } }; typeConverter = new ReflectionTypeConverter(); } public ITypeInspector BuildTypeInspector() { ITypeInspector typeInspector = new WritablePropertiesTypeInspector(typeResolver, includeNonPublicProperties); if (!ignoreFields) { typeInspector = new CompositeTypeInspector(new ReadableFieldsTypeInspector(typeResolver), typeInspector); } return typeInspectorFactories.BuildComponentChain(typeInspector); } public DeserializerBuilder WithAttemptingUnquotedStringTypeDeserialization() { attemptUnknownTypeDeserialization = true; return this; } public DeserializerBuilder WithObjectFactory(IObjectFactory objectFactory) { if (objectFactory == null) { throw new ArgumentNullException("objectFactory"); } this.objectFactory = new Lazy(() => objectFactory, isThreadSafe: true); return this; } public DeserializerBuilder WithObjectFactory(Func objectFactory) { if (objectFactory == null) { throw new ArgumentNullException("objectFactory"); } return WithObjectFactory(new LambdaObjectFactory(objectFactory)); } public DeserializerBuilder WithNodeDeserializer(INodeDeserializer nodeDeserializer) { return WithNodeDeserializer(nodeDeserializer, delegate(IRegistrationLocationSelectionSyntax w) { w.OnTop(); }); } public DeserializerBuilder WithNodeDeserializer(INodeDeserializer nodeDeserializer, Action> where) { if (nodeDeserializer == null) { throw new ArgumentNullException("nodeDeserializer"); } if (where == null) { throw new ArgumentNullException("where"); } where(nodeDeserializerFactories.CreateRegistrationLocationSelector(nodeDeserializer.GetType(), (Nothing _) => nodeDeserializer)); return this; } public DeserializerBuilder WithNodeDeserializer(WrapperFactory nodeDeserializerFactory, Action> where) where TNodeDeserializer : INodeDeserializer { if (nodeDeserializerFactory == null) { throw new ArgumentNullException("nodeDeserializerFactory"); } if (where == null) { throw new ArgumentNullException("where"); } where(nodeDeserializerFactories.CreateTrackingRegistrationLocationSelector(typeof(TNodeDeserializer), (INodeDeserializer wrapped, Nothing _) => nodeDeserializerFactory(wrapped))); return this; } public DeserializerBuilder WithoutNodeDeserializer() where TNodeDeserializer : INodeDeserializer { return WithoutNodeDeserializer(typeof(TNodeDeserializer)); } public DeserializerBuilder WithoutNodeDeserializer(Type nodeDeserializerType) { if (nodeDeserializerType == null) { throw new ArgumentNullException("nodeDeserializerType"); } nodeDeserializerFactories.Remove(nodeDeserializerType); return this; } public DeserializerBuilder WithTypeDiscriminatingNodeDeserializer(Action configureTypeDiscriminatingNodeDeserializerOptions, int maxDepth = -1, int maxLength = -1) { TypeDiscriminatingNodeDeserializerOptions typeDiscriminatingNodeDeserializerOptions = new TypeDiscriminatingNodeDeserializerOptions(); configureTypeDiscriminatingNodeDeserializerOptions(typeDiscriminatingNodeDeserializerOptions); TypeDiscriminatingNodeDeserializer nodeDeserializer = new TypeDiscriminatingNodeDeserializer(nodeDeserializerFactories.BuildComponentList(), typeDiscriminatingNodeDeserializerOptions.discriminators, maxDepth, maxLength); return WithNodeDeserializer(nodeDeserializer, delegate(IRegistrationLocationSelectionSyntax s) { s.Before(); }); } public DeserializerBuilder WithNodeTypeResolver(INodeTypeResolver nodeTypeResolver) { return WithNodeTypeResolver(nodeTypeResolver, delegate(IRegistrationLocationSelectionSyntax w) { w.OnTop(); }); } public DeserializerBuilder WithNodeTypeResolver(INodeTypeResolver nodeTypeResolver, Action> where) { if (nodeTypeResolver == null) { throw new ArgumentNullException("nodeTypeResolver"); } if (where == null) { throw new ArgumentNullException("where"); } where(nodeTypeResolverFactories.CreateRegistrationLocationSelector(nodeTypeResolver.GetType(), (Nothing _) => nodeTypeResolver)); return this; } public DeserializerBuilder WithNodeTypeResolver(WrapperFactory nodeTypeResolverFactory, Action> where) where TNodeTypeResolver : INodeTypeResolver { if (nodeTypeResolverFactory == null) { throw new ArgumentNullException("nodeTypeResolverFactory"); } if (where == null) { throw new ArgumentNullException("where"); } where(nodeTypeResolverFactories.CreateTrackingRegistrationLocationSelector(typeof(TNodeTypeResolver), (INodeTypeResolver wrapped, Nothing _) => nodeTypeResolverFactory(wrapped))); return this; } public DeserializerBuilder WithCaseInsensitivePropertyMatching() { caseInsensitivePropertyMatching = true; return this; } public DeserializerBuilder WithEnforceNullability() { enforceNullability = true; return this; } public DeserializerBuilder WithEnforceRequiredMembers() { enforceRequiredProperties = true; return this; } public DeserializerBuilder WithoutNodeTypeResolver() where TNodeTypeResolver : INodeTypeResolver { return WithoutNodeTypeResolver(typeof(TNodeTypeResolver)); } public DeserializerBuilder WithoutNodeTypeResolver(Type nodeTypeResolverType) { if (nodeTypeResolverType == null) { throw new ArgumentNullException("nodeTypeResolverType"); } nodeTypeResolverFactories.Remove(nodeTypeResolverType); return this; } public override DeserializerBuilder WithTagMapping(TagName tag, Type type) { if (tag.IsEmpty) { throw new ArgumentException("Non-specific tags cannot be maped"); } if (type == null) { throw new ArgumentNullException("type"); } if (tagMappings.TryGetValue(tag, out Type value)) { throw new ArgumentException($"Type already has a registered type '{value.FullName}' for tag '{tag}'", "tag"); } tagMappings.Add(tag, type); return this; } public DeserializerBuilder WithTypeMapping() where TConcrete : TInterface { Type typeFromHandle = typeof(TInterface); Type typeFromHandle2 = typeof(TConcrete); if (!typeFromHandle.IsAssignableFrom(typeFromHandle2)) { throw new InvalidOperationException("The type '" + typeFromHandle2.Name + "' does not implement interface '" + typeFromHandle.Name + "'."); } if (!DictionaryExtensions.TryAdd(typeMappings, typeFromHandle, typeFromHandle2)) { typeMappings[typeFromHandle] = typeFromHandle2; } return this; } public DeserializerBuilder WithoutTagMapping(TagName tag) { if (tag.IsEmpty) { throw new ArgumentException("Non-specific tags cannot be maped"); } if (!tagMappings.Remove(tag)) { throw new KeyNotFoundException($"Tag '{tag}' is not registered"); } return this; } public DeserializerBuilder IgnoreUnmatchedProperties() { ignoreUnmatched = true; return this; } public DeserializerBuilder WithDuplicateKeyChecking() { duplicateKeyChecking = true; return this; } public IDeserializer Build() { if (FsharpHelper.Instance == null) { FsharpHelper.Instance = new DefaultFsharpHelper(); } return Deserializer.FromValueDeserializer(BuildValueDeserializer()); } public IValueDeserializer BuildValueDeserializer() { return new AliasValueDeserializer(new NodeValueDeserializer(nodeDeserializerFactories.BuildComponentList(), nodeTypeResolverFactories.BuildComponentList(), typeConverter, enumNamingConvention, BuildTypeInspector())); } } internal sealed class EmissionPhaseObjectGraphVisitorArgs { private readonly IEnumerable> preProcessingPhaseVisitors; public IObjectGraphVisitor InnerVisitor { get; private set; } public IEventEmitter EventEmitter { get; private set; } public ObjectSerializer NestedObjectSerializer { get; private set; } public IEnumerable TypeConverters { get; private set; } public EmissionPhaseObjectGraphVisitorArgs(IObjectGraphVisitor innerVisitor, IEventEmitter eventEmitter, IEnumerable> preProcessingPhaseVisitors, IEnumerable typeConverters, ObjectSerializer nestedObjectSerializer) { InnerVisitor = innerVisitor ?? throw new ArgumentNullException("innerVisitor"); EventEmitter = eventEmitter ?? throw new ArgumentNullException("eventEmitter"); this.preProcessingPhaseVisitors = preProcessingPhaseVisitors ?? throw new ArgumentNullException("preProcessingPhaseVisitors"); TypeConverters = typeConverters ?? throw new ArgumentNullException("typeConverters"); NestedObjectSerializer = nestedObjectSerializer ?? throw new ArgumentNullException("nestedObjectSerializer"); } public T GetPreProcessingPhaseObjectGraphVisitor() where T : IObjectGraphVisitor { return preProcessingPhaseVisitors.OfType().Single(); } } internal abstract class EventInfo { public IObjectDescriptor Source { get; } protected EventInfo(IObjectDescriptor source) { Source = source ?? throw new ArgumentNullException("source"); } } internal class AliasEventInfo : EventInfo { public AnchorName Alias { get; } public bool NeedsExpansion { get; set; } public AliasEventInfo(IObjectDescriptor source, AnchorName alias) : base(source) { if (alias.IsEmpty) { throw new ArgumentNullException("alias"); } Alias = alias; } } internal class ObjectEventInfo : EventInfo { public AnchorName Anchor { get; set; } public TagName Tag { get; set; } protected ObjectEventInfo(IObjectDescriptor source) : base(source) { } } internal sealed class ScalarEventInfo : ObjectEventInfo { public string RenderedValue { get; set; } public ScalarStyle Style { get; set; } public bool IsPlainImplicit { get; set; } public bool IsQuotedImplicit { get; set; } public ScalarEventInfo(IObjectDescriptor source) : base(source) { Style = source.ScalarStyle; RenderedValue = string.Empty; } } internal sealed class MappingStartEventInfo : ObjectEventInfo { public bool IsImplicit { get; set; } public MappingStyle Style { get; set; } public MappingStartEventInfo(IObjectDescriptor source) : base(source) { } } internal sealed class MappingEndEventInfo : EventInfo { public MappingEndEventInfo(IObjectDescriptor source) : base(source) { } } internal sealed class SequenceStartEventInfo : ObjectEventInfo { public bool IsImplicit { get; set; } public SequenceStyle Style { get; set; } public SequenceStartEventInfo(IObjectDescriptor source) : base(source) { } } internal sealed class SequenceEndEventInfo : EventInfo { public SequenceEndEventInfo(IObjectDescriptor source) : base(source) { } } internal interface IAliasProvider { AnchorName GetAlias(object target); } internal interface IDeserializer { T Deserialize(string input); T Deserialize(TextReader input); T Deserialize(IParser parser); object? Deserialize(string input); object? Deserialize(TextReader input); object? Deserialize(IParser parser); object? Deserialize(string input, Type type); object? Deserialize(TextReader input, Type type); object? Deserialize(IParser parser, Type type); } internal interface IEventEmitter { void Emit(AliasEventInfo eventInfo, IEmitter emitter); void Emit(ScalarEventInfo eventInfo, IEmitter emitter); void Emit(MappingStartEventInfo eventInfo, IEmitter emitter); void Emit(MappingEndEventInfo eventInfo, IEmitter emitter); void Emit(SequenceStartEventInfo eventInfo, IEmitter emitter); void Emit(SequenceEndEventInfo eventInfo, IEmitter emitter); } internal interface INamingConvention { string Apply(string value); string Reverse(string value); } internal interface INodeDeserializer { bool Deserialize(IParser reader, Type expectedType, Func nestedObjectDeserializer, out object? value, ObjectDeserializer rootDeserializer); } internal interface INodeTypeResolver { bool Resolve(NodeEvent? nodeEvent, ref Type currentType); } internal interface IObjectAccessor { void Set(string name, object target, object value); object? Read(string name, object target); } internal interface IObjectDescriptor { object? Value { get; } Type Type { get; } Type StaticType { get; } ScalarStyle ScalarStyle { get; } } internal static class ObjectDescriptorExtensions { public static object NonNullValue(this IObjectDescriptor objectDescriptor) { return objectDescriptor.Value ?? throw new InvalidOperationException("Attempted to use a IObjectDescriptor of type '" + objectDescriptor.Type.FullName + "' whose Value is null at a point whete it is invalid to do so. This may indicate a bug in YamlDotNet."); } } internal interface IObjectFactory { object Create(Type type); object? CreatePrimitive(Type type); bool GetDictionary(IObjectDescriptor descriptor, out IDictionary? dictionary, out Type[]? genericArguments); Type GetValueType(Type type); void ExecuteOnDeserializing(object value); void ExecuteOnDeserialized(object value); void ExecuteOnSerializing(object value); void ExecuteOnSerialized(object value); } internal interface IObjectGraphTraversalStrategy { void Traverse(IObjectDescriptor graph, IObjectGraphVisitor visitor, TContext context, ObjectSerializer serializer); } internal interface IObjectGraphVisitor { bool Enter(IPropertyDescriptor? propertyDescriptor, IObjectDescriptor value, TContext context, ObjectSerializer serializer); bool EnterMapping(IObjectDescriptor key, IObjectDescriptor value, TContext context, ObjectSerializer serializer); bool EnterMapping(IPropertyDescriptor key, IObjectDescriptor value, TContext context, ObjectSerializer serializer); void VisitScalar(IObjectDescriptor scalar, TContext context, ObjectSerializer serializer); void VisitMappingStart(IObjectDescriptor mapping, Type keyType, Type valueType, TContext context, ObjectSerializer serializer); void VisitMappingEnd(IObjectDescriptor mapping, TContext context, ObjectSerializer serializer); void VisitSequenceStart(IObjectDescriptor sequence, Type elementType, TContext context, ObjectSerializer serializer); void VisitSequenceEnd(IObjectDescriptor sequence, TContext context, ObjectSerializer serializer); } internal interface IPropertyDescriptor { string Name { get; } bool AllowNulls { get; } bool CanWrite { get; } Type Type { get; } Type? TypeOverride { get; set; } int Order { get; set; } ScalarStyle ScalarStyle { get; set; } bool Required { get; } Type? ConverterType { get; } T? GetCustomAttribute() where T : Attribute; IObjectDescriptor Read(object target); void Write(object target, object? value); } internal interface IRegistrationLocationSelectionSyntax { void InsteadOf() where TRegistrationType : TBaseRegistrationType; void Before() where TRegistrationType : TBaseRegistrationType; void After() where TRegistrationType : TBaseRegistrationType; void OnTop(); void OnBottom(); } internal interface ITrackingRegistrationLocationSelectionSyntax { void InsteadOf() where TRegistrationType : TBaseRegistrationType; } internal interface ISerializer { string Serialize(object? graph); string Serialize(object? graph, Type type); void Serialize(TextWriter writer, object? graph); void Serialize(TextWriter writer, object? graph, Type type); void Serialize(IEmitter emitter, object? graph); void Serialize(IEmitter emitter, object? graph, Type type); } internal interface ITypeInspector { IEnumerable GetProperties(Type type, object? container); IPropertyDescriptor GetProperty(Type type, object? container, string name, [MaybeNullWhen(true)] bool ignoreUnmatched, bool caseInsensitivePropertyMatching); string GetEnumName(Type enumType, string name); string GetEnumValue(object enumValue); } internal interface ITypeResolver { Type Resolve(Type staticType, object? actualValue); } internal interface IValueDeserializer { object? DeserializeValue(IParser parser, Type expectedType, SerializerState state, IValueDeserializer nestedObjectDeserializer); } internal interface IValuePromise { event Action ValueAvailable; } internal interface IValueSerializer { void SerializeValue(IEmitter emitter, object? value, Type? type); } internal interface IYamlConvertible { void Read(IParser parser, Type expectedType, ObjectDeserializer nestedObjectDeserializer); void Write(IEmitter emitter, ObjectSerializer nestedObjectSerializer); } internal delegate object? ObjectDeserializer(Type type); internal delegate void ObjectSerializer(object? value, Type? type = null); [Obsolete("Please use IYamlConvertible instead")] internal interface IYamlSerializable { void ReadYaml(IParser parser); void WriteYaml(IEmitter emitter); } internal interface IYamlTypeConverter { bool Accepts(Type type); object? ReadYaml(IParser parser, Type type, ObjectDeserializer rootDeserializer); void WriteYaml(IEmitter emitter, object? value, Type type, ObjectSerializer serializer); } internal sealed class LazyComponentRegistrationList : IEnumerable>, IEnumerable { public sealed class LazyComponentRegistration { public readonly Type ComponentType; public readonly Func Factory; public LazyComponentRegistration(Type componentType, Func factory) { ComponentType = componentType; Factory = factory; } } public sealed class TrackingLazyComponentRegistration { public readonly Type ComponentType; public readonly Func Factory; public TrackingLazyComponentRegistration(Type componentType, Func factory) { ComponentType = componentType; Factory = factory; } } private class RegistrationLocationSelector : IRegistrationLocationSelectionSyntax { private readonly LazyComponentRegistrationList registrations; private readonly LazyComponentRegistration newRegistration; public RegistrationLocationSelector(LazyComponentRegistrationList registrations, LazyComponentRegistration newRegistration) { this.registrations = registrations; this.newRegistration = newRegistration; } void IRegistrationLocationSelectionSyntax.InsteadOf() { if (newRegistration.ComponentType != typeof(TRegistrationType)) { registrations.EnsureNoDuplicateRegistrationType(newRegistration.ComponentType); } int index = registrations.EnsureRegistrationExists(); registrations.entries[index] = newRegistration; } void IRegistrationLocationSelectionSyntax.After() { registrations.EnsureNoDuplicateRegistrationType(newRegistration.ComponentType); int num = registrations.EnsureRegistrationExists(); registrations.entries.Insert(num + 1, newRegistration); } void IRegistrationLocationSelectionSyntax.Before() { registrations.EnsureNoDuplicateRegistrationType(newRegistration.ComponentType); int index = registrations.EnsureRegistrationExists(); registrations.entries.Insert(index, newRegistration); } void IRegistrationLocationSelectionSyntax.OnBottom() { registrations.EnsureNoDuplicateRegistrationType(newRegistration.ComponentType); registrations.entries.Add(newRegistration); } void IRegistrationLocationSelectionSyntax.OnTop() { registrations.EnsureNoDuplicateRegistrationType(newRegistration.ComponentType); registrations.entries.Insert(0, newRegistration); } } private class TrackingRegistrationLocationSelector : ITrackingRegistrationLocationSelectionSyntax { private readonly LazyComponentRegistrationList registrations; private readonly TrackingLazyComponentRegistration newRegistration; public TrackingRegistrationLocationSelector(LazyComponentRegistrationList registrations, TrackingLazyComponentRegistration newRegistration) { this.registrations = registrations; this.newRegistration = newRegistration; } void ITrackingRegistrationLocationSelectionSyntax.InsteadOf() { if (newRegistration.ComponentType != typeof(TRegistrationType)) { registrations.EnsureNoDuplicateRegistrationType(newRegistration.ComponentType); } int index = registrations.EnsureRegistrationExists(); Func innerComponentFactory = registrations.entries[index].Factory; registrations.entries[index] = new LazyComponentRegistration(newRegistration.ComponentType, (TArgument arg) => newRegistration.Factory(innerComponentFactory(arg), arg)); } } private readonly List entries = new List(); public int Count => entries.Count; public IEnumerable> InReverseOrder { get { int i = entries.Count - 1; while (i >= 0) { yield return entries[i].Factory; int num = i - 1; i = num; } } } public LazyComponentRegistrationList Clone() { LazyComponentRegistrationList lazyComponentRegistrationList = new LazyComponentRegistrationList(); foreach (LazyComponentRegistration entry in entries) { lazyComponentRegistrationList.entries.Add(entry); } return lazyComponentRegistrationList; } public void Clear() { entries.Clear(); } public void Add(Type componentType, Func factory) { entries.Add(new LazyComponentRegistration(componentType, factory)); } public void Remove(Type componentType) { for (int i = 0; i < entries.Count; i++) { if (entries[i].ComponentType == componentType) { entries.RemoveAt(i); return; } } throw new KeyNotFoundException("A component registration of type '" + componentType.FullName + "' was not found."); } public IRegistrationLocationSelectionSyntax CreateRegistrationLocationSelector(Type componentType, Func factory) { return new RegistrationLocationSelector(this, new LazyComponentRegistration(componentType, factory)); } public ITrackingRegistrationLocationSelectionSyntax CreateTrackingRegistrationLocationSelector(Type componentType, Func factory) { return new TrackingRegistrationLocationSelector(this, new TrackingLazyComponentRegistration(componentType, factory)); } public IEnumerator> GetEnumerator() { return entries.Select((LazyComponentRegistration e) => e.Factory).GetEnumerator(); } IEnumerator IEnumerable.GetEnumerator() { return GetEnumerator(); } private int IndexOfRegistration(Type registrationType) { for (int i = 0; i < entries.Count; i++) { if (registrationType == entries[i].ComponentType) { return i; } } return -1; } private void EnsureNoDuplicateRegistrationType(Type componentType) { if (IndexOfRegistration(componentType) != -1) { throw new InvalidOperationException("A component of type '" + componentType.FullName + "' has already been registered."); } } private int EnsureRegistrationExists() { int num = IndexOfRegistration(typeof(TRegistrationType)); if (num == -1) { throw new InvalidOperationException("A component of type '" + typeof(TRegistrationType).FullName + "' has not been registered."); } return num; } } internal static class LazyComponentRegistrationListExtensions { public static TComponent BuildComponentChain(this LazyComponentRegistrationList registrations, TComponent innerComponent) { return registrations.InReverseOrder.Aggregate(innerComponent, (TComponent inner, Func factory) => factory(inner)); } public static TComponent BuildComponentChain(this LazyComponentRegistrationList registrations, TComponent innerComponent, Func argumentBuilder) { return registrations.InReverseOrder.Aggregate(innerComponent, (TComponent inner, Func factory) => factory(argumentBuilder(inner))); } public static List BuildComponentList(this LazyComponentRegistrationList registrations) { return registrations.Select((Func factory) => factory(default(Nothing))).ToList(); } public static List BuildComponentList(this LazyComponentRegistrationList registrations, TArgument argument) { return registrations.Select((Func factory) => factory(argument)).ToList(); } } [StructLayout(LayoutKind.Sequential, Size = 1)] internal struct Nothing { } internal sealed class ObjectDescriptor : IObjectDescriptor { public object? Value { get; private set; } public Type Type { get; private set; } public Type StaticType { get; private set; } public ScalarStyle ScalarStyle { get; private set; } public ObjectDescriptor(object? value, Type type, Type staticType) : this(value, type, staticType, ScalarStyle.Any) { } public ObjectDescriptor(object? value, Type type, Type staticType, ScalarStyle scalarStyle) { Value = value; Type = type ?? throw new ArgumentNullException("type"); StaticType = staticType ?? throw new ArgumentNullException("staticType"); ScalarStyle = scalarStyle; } } internal delegate IObjectGraphTraversalStrategy ObjectGraphTraversalStrategyFactory(ITypeInspector typeInspector, ITypeResolver typeResolver, IEnumerable typeConverters, int maximumRecursion); internal sealed class PropertyDescriptor : IPropertyDescriptor { private readonly IPropertyDescriptor baseDescriptor; public bool AllowNulls => baseDescriptor.AllowNulls; public string Name { get; set; } public bool Required => baseDescriptor.Required; public Type Type => baseDescriptor.Type; public Type? TypeOverride { get { return baseDescriptor.TypeOverride; } set { baseDescriptor.TypeOverride = value; } } public Type? ConverterType => baseDescriptor.ConverterType; public int Order { get; set; } public ScalarStyle ScalarStyle { get { return baseDescriptor.ScalarStyle; } set { baseDescriptor.ScalarStyle = value; } } public bool CanWrite => baseDescriptor.CanWrite; public PropertyDescriptor(IPropertyDescriptor baseDescriptor) { this.baseDescriptor = baseDescriptor; Name = baseDescriptor.Name; } public void Write(object target, object? value) { baseDescriptor.Write(target, value); } public T? GetCustomAttribute() where T : Attribute { return baseDescriptor.GetCustomAttribute(); } public IObjectDescriptor Read(object target) { return baseDescriptor.Read(target); } } internal sealed class Serializer : ISerializer { private readonly IValueSerializer valueSerializer; private readonly EmitterSettings emitterSettings; public Serializer() : this(new SerializerBuilder().BuildValueSerializer(), EmitterSettings.Default) { } private Serializer(IValueSerializer valueSerializer, EmitterSettings emitterSettings) { this.valueSerializer = valueSerializer ?? throw new ArgumentNullException("valueSerializer"); this.emitterSettings = emitterSettings ?? throw new ArgumentNullException("emitterSettings"); } public static Serializer FromValueSerializer(IValueSerializer valueSerializer, EmitterSettings emitterSettings) { return new Serializer(valueSerializer, emitterSettings); } public string Serialize(object? graph) { using StringWriter stringWriter = new StringWriter(); Serialize(stringWriter, graph); return stringWriter.ToString(); } public string Serialize(object? graph, Type type) { using StringWriter stringWriter = new StringWriter(); Serialize(stringWriter, graph, type); return stringWriter.ToString(); } public void Serialize(TextWriter writer, object? graph) { Serialize(new Emitter(writer, emitterSettings), graph); } public void Serialize(TextWriter writer, object? graph, Type type) { Serialize(new Emitter(writer, emitterSettings), graph, type); } public void Serialize(IEmitter emitter, object? graph) { if (emitter == null) { throw new ArgumentNullException("emitter"); } EmitDocument(emitter, graph, null); } public void Serialize(IEmitter emitter, object? graph, Type type) { if (emitter == null) { throw new ArgumentNullException("emitter"); } if (type == null) { throw new ArgumentNullException("type"); } EmitDocument(emitter, graph, type); } private void EmitDocument(IEmitter emitter, object? graph, Type? type) { emitter.Emit(new YamlDotNet.Core.Events.StreamStart()); emitter.Emit(new YamlDotNet.Core.Events.DocumentStart()); valueSerializer.SerializeValue(emitter, graph, type); emitter.Emit(new YamlDotNet.Core.Events.DocumentEnd(isImplicit: true)); emitter.Emit(new YamlDotNet.Core.Events.StreamEnd()); } } internal sealed class SerializerBuilder : BuilderSkeleton { private class ValueSerializer : IValueSerializer { private readonly IObjectGraphTraversalStrategy traversalStrategy; private readonly IEventEmitter eventEmitter; private readonly IEnumerable typeConverters; private readonly LazyComponentRegistrationList, IObjectGraphVisitor> preProcessingPhaseObjectGraphVisitorFactories; private readonly LazyComponentRegistrationList> emissionPhaseObjectGraphVisitorFactories; public ValueSerializer(IObjectGraphTraversalStrategy traversalStrategy, IEventEmitter eventEmitter, IEnumerable typeConverters, LazyComponentRegistrationList, IObjectGraphVisitor> preProcessingPhaseObjectGraphVisitorFactories, LazyComponentRegistrationList> emissionPhaseObjectGraphVisitorFactories) { this.traversalStrategy = traversalStrategy; this.eventEmitter = eventEmitter; this.typeConverters = typeConverters; this.preProcessingPhaseObjectGraphVisitorFactories = preProcessingPhaseObjectGraphVisitorFactories; this.emissionPhaseObjectGraphVisitorFactories = emissionPhaseObjectGraphVisitorFactories; } public void SerializeValue(IEmitter emitter, object? value, Type? type) { Type type2 = type ?? ((value != null) ? value.GetType() : typeof(object)); Type staticType = type ?? typeof(object); ObjectDescriptor graph = new ObjectDescriptor(value, type2, staticType); List> preProcessingPhaseObjectGraphVisitors = preProcessingPhaseObjectGraphVisitorFactories.BuildComponentList(typeConverters); IObjectGraphVisitor visitor = emissionPhaseObjectGraphVisitorFactories.BuildComponentChain>(new EmittingObjectGraphVisitor(eventEmitter), (IObjectGraphVisitor inner) => new EmissionPhaseObjectGraphVisitorArgs(inner, eventEmitter, preProcessingPhaseObjectGraphVisitors, typeConverters, NestedObjectSerializer)); foreach (IObjectGraphVisitor item in preProcessingPhaseObjectGraphVisitors) { traversalStrategy.Traverse(graph, item, default(Nothing), NestedObjectSerializer); } traversalStrategy.Traverse(graph, visitor, emitter, NestedObjectSerializer); void NestedObjectSerializer(object? v, Type? t) { SerializeValue(emitter, v, t); } } } private ObjectGraphTraversalStrategyFactory objectGraphTraversalStrategyFactory; private readonly LazyComponentRegistrationList, IObjectGraphVisitor> preProcessingPhaseObjectGraphVisitorFactories; private readonly LazyComponentRegistrationList> emissionPhaseObjectGraphVisitorFactories; private readonly LazyComponentRegistrationList eventEmitterFactories; private readonly Dictionary tagMappings = new Dictionary(); private readonly IObjectFactory objectFactory; private int maximumRecursion = 50; private EmitterSettings emitterSettings = EmitterSettings.Default; private DefaultValuesHandling defaultValuesHandlingConfiguration; private ScalarStyle defaultScalarStyle; private bool quoteNecessaryStrings; private bool quoteYaml1_1Strings; protected override SerializerBuilder Self => this; public SerializerBuilder() : base((ITypeResolver)new DynamicTypeResolver()) { typeInspectorFactories.Add(typeof(CachedTypeInspector), (ITypeInspector inner) => new CachedTypeInspector(inner)); typeInspectorFactories.Add(typeof(NamingConventionTypeInspector), (ITypeInspector inner) => (!(namingConvention is NullNamingConvention)) ? new NamingConventionTypeInspector(inner, namingConvention) : inner); typeInspectorFactories.Add(typeof(YamlAttributesTypeInspector), (ITypeInspector inner) => new YamlAttributesTypeInspector(inner)); typeInspectorFactories.Add(typeof(YamlAttributeOverridesInspector), (ITypeInspector inner) => (overrides == null) ? inner : new YamlAttributeOverridesInspector(inner, overrides.Clone())); preProcessingPhaseObjectGraphVisitorFactories = new LazyComponentRegistrationList, IObjectGraphVisitor> { { typeof(AnchorAssigner), (IEnumerable typeConverters) => new AnchorAssigner(typeConverters) } }; emissionPhaseObjectGraphVisitorFactories = new LazyComponentRegistrationList> { { typeof(CustomSerializationObjectGraphVisitor), (EmissionPhaseObjectGraphVisitorArgs args) => new CustomSerializationObjectGraphVisitor(args.InnerVisitor, args.TypeConverters, args.NestedObjectSerializer) }, { typeof(AnchorAssigningObjectGraphVisitor), (EmissionPhaseObjectGraphVisitorArgs args) => new AnchorAssigningObjectGraphVisitor(args.InnerVisitor, args.EventEmitter, args.GetPreProcessingPhaseObjectGraphVisitor()) }, { typeof(DefaultValuesObjectGraphVisitor), (EmissionPhaseObjectGraphVisitorArgs args) => new DefaultValuesObjectGraphVisitor(defaultValuesHandlingConfiguration, args.InnerVisitor, new DefaultObjectFactory()) }, { typeof(CommentsObjectGraphVisitor), (EmissionPhaseObjectGraphVisitorArgs args) => new CommentsObjectGraphVisitor(args.InnerVisitor) } }; eventEmitterFactories = new LazyComponentRegistrationList { { typeof(TypeAssigningEventEmitter), (IEventEmitter inner) => new TypeAssigningEventEmitter(inner, tagMappings, quoteNecessaryStrings, quoteYaml1_1Strings, defaultScalarStyle, yamlFormatter, enumNamingConvention, BuildTypeInspector()) } }; objectFactory = new DefaultObjectFactory(); objectGraphTraversalStrategyFactory = (ITypeInspector typeInspector, ITypeResolver typeResolver, IEnumerable typeConverters, int maximumRecursion) => new FullObjectGraphTraversalStrategy(typeInspector, typeResolver, maximumRecursion, namingConvention, objectFactory); } public SerializerBuilder WithQuotingNecessaryStrings(bool quoteYaml1_1Strings = false) { quoteNecessaryStrings = true; this.quoteYaml1_1Strings = quoteYaml1_1Strings; return this; } public SerializerBuilder WithDefaultScalarStyle(ScalarStyle style) { defaultScalarStyle = style; return this; } public SerializerBuilder WithMaximumRecursion(int maximumRecursion) { if (maximumRecursion <= 0) { throw new ArgumentOutOfRangeException("maximumRecursion", $"The maximum recursion specified ({maximumRecursion}) is invalid. It should be a positive integer."); } this.maximumRecursion = maximumRecursion; return this; } public SerializerBuilder WithEventEmitter(Func eventEmitterFactory) where TEventEmitter : IEventEmitter { return WithEventEmitter(eventEmitterFactory, delegate(IRegistrationLocationSelectionSyntax w) { w.OnTop(); }); } public SerializerBuilder WithEventEmitter(Func eventEmitterFactory) where TEventEmitter : IEventEmitter { return WithEventEmitter(eventEmitterFactory, delegate(IRegistrationLocationSelectionSyntax w) { w.OnTop(); }); } public SerializerBuilder WithEventEmitter(Func eventEmitterFactory, Action> where) where TEventEmitter : IEventEmitter { return WithEventEmitter((IEventEmitter e, ITypeInspector _) => eventEmitterFactory(e), where); } public SerializerBuilder WithEventEmitter(Func eventEmitterFactory, Action> where) where TEventEmitter : IEventEmitter { if (eventEmitterFactory == null) { throw new ArgumentNullException("eventEmitterFactory"); } if (where == null) { throw new ArgumentNullException("where"); } where(eventEmitterFactories.CreateRegistrationLocationSelector(typeof(TEventEmitter), (IEventEmitter inner) => eventEmitterFactory(inner, BuildTypeInspector()))); return Self; } public SerializerBuilder WithEventEmitter(WrapperFactory eventEmitterFactory, Action> where) where TEventEmitter : IEventEmitter { if (eventEmitterFactory == null) { throw new ArgumentNullException("eventEmitterFactory"); } if (where == null) { throw new ArgumentNullException("where"); } where(eventEmitterFactories.CreateTrackingRegistrationLocationSelector(typeof(TEventEmitter), (IEventEmitter wrapped, IEventEmitter inner) => eventEmitterFactory(wrapped, inner))); return Self; } public SerializerBuilder WithoutEventEmitter() where TEventEmitter : IEventEmitter { return WithoutEventEmitter(typeof(TEventEmitter)); } public SerializerBuilder WithoutEventEmitter(Type eventEmitterType) { if (eventEmitterType == null) { throw new ArgumentNullException("eventEmitterType"); } eventEmitterFactories.Remove(eventEmitterType); return this; } public override SerializerBuilder WithTagMapping(TagName tag, Type type) { if (tag.IsEmpty) { throw new ArgumentException("Non-specific tags cannot be maped"); } if (type == null) { throw new ArgumentNullException("type"); } if (tagMappings.TryGetValue(type, out var value)) { throw new ArgumentException($"Type already has a registered tag '{value}' for type '{type.FullName}'", "type"); } tagMappings.Add(type, tag); return this; } public SerializerBuilder WithoutTagMapping(Type type) { if (type == null) { throw new ArgumentNullException("type"); } if (!tagMappings.Remove(type)) { throw new KeyNotFoundException("Tag for type '" + type.FullName + "' is not registered"); } return this; } public SerializerBuilder EnsureRoundtrip() { objectGraphTraversalStrategyFactory = (ITypeInspector typeInspector, ITypeResolver typeResolver, IEnumerable typeConverters, int maximumRecursion) => new RoundtripObjectGraphTraversalStrategy(typeConverters, typeInspector, typeResolver, maximumRecursion, namingConvention, settings, objectFactory); WithEventEmitter((IEventEmitter inner) => new TypeAssigningEventEmitter(inner, tagMappings, quoteNecessaryStrings, quoteYaml1_1Strings, defaultScalarStyle, yamlFormatter, enumNamingConvention, BuildTypeInspector()), delegate(IRegistrationLocationSelectionSyntax loc) { loc.InsteadOf(); }); return WithTypeInspector((ITypeInspector inner) => new ReadableAndWritablePropertiesTypeInspector(inner), delegate(IRegistrationLocationSelectionSyntax loc) { loc.OnBottom(); }); } public SerializerBuilder DisableAliases() { preProcessingPhaseObjectGraphVisitorFactories.Remove(typeof(AnchorAssigner)); emissionPhaseObjectGraphVisitorFactories.Remove(typeof(AnchorAssigningObjectGraphVisitor)); return this; } [Obsolete("The default behavior is now to always emit default values, thefore calling this method has no effect. This behavior is now controlled by ConfigureDefaultValuesHandling.", true)] public SerializerBuilder EmitDefaults() { return ConfigureDefaultValuesHandling(DefaultValuesHandling.Preserve); } public SerializerBuilder ConfigureDefaultValuesHandling(DefaultValuesHandling configuration) { defaultValuesHandlingConfiguration = configuration; return this; } public SerializerBuilder JsonCompatible() { emitterSettings = emitterSettings.WithMaxSimpleKeyLength(int.MaxValue).WithoutAnchorName().WithUtf16SurrogatePairs(); return WithTypeConverter(new YamlDotNet.Serialization.Converters.GuidConverter(jsonCompatible: true), delegate(IRegistrationLocationSelectionSyntax w) { w.InsteadOf(); }).WithTypeConverter(new DateTime8601Converter(ScalarStyle.DoubleQuoted)).WithEventEmitter((IEventEmitter inner) => new JsonEventEmitter(inner, yamlFormatter, enumNamingConvention, BuildTypeInspector()), delegate(IRegistrationLocationSelectionSyntax loc) { loc.InsteadOf(); }); } public SerializerBuilder WithNewLine(string newLine) { emitterSettings = emitterSettings.WithNewLine(newLine); return this; } public SerializerBuilder WithPreProcessingPhaseObjectGraphVisitor(TObjectGraphVisitor objectGraphVisitor) where TObjectGraphVisitor : IObjectGraphVisitor { return WithPreProcessingPhaseObjectGraphVisitor(objectGraphVisitor, delegate(IRegistrationLocationSelectionSyntax> w) { w.OnTop(); }); } public SerializerBuilder WithPreProcessingPhaseObjectGraphVisitor(Func, TObjectGraphVisitor> objectGraphVisitorFactory) where TObjectGraphVisitor : IObjectGraphVisitor { return WithPreProcessingPhaseObjectGraphVisitor(objectGraphVisitorFactory, delegate(IRegistrationLocationSelectionSyntax> w) { w.OnTop(); }); } public SerializerBuilder WithPreProcessingPhaseObjectGraphVisitor(TObjectGraphVisitor objectGraphVisitor, Action>> where) where TObjectGraphVisitor : IObjectGraphVisitor { if (objectGraphVisitor == null) { throw new ArgumentNullException("objectGraphVisitor"); } if (where == null) { throw new ArgumentNullException("where"); } where(preProcessingPhaseObjectGraphVisitorFactories.CreateRegistrationLocationSelector(typeof(TObjectGraphVisitor), (IEnumerable _) => objectGraphVisitor)); return this; } public SerializerBuilder WithPreProcessingPhaseObjectGraphVisitor(Func, TObjectGraphVisitor> objectGraphVisitorFactory, Action>> where) where TObjectGraphVisitor : IObjectGraphVisitor { if (objectGraphVisitorFactory == null) { throw new ArgumentNullException("objectGraphVisitorFactory"); } if (where == null) { throw new ArgumentNullException("where"); } where(preProcessingPhaseObjectGraphVisitorFactories.CreateRegistrationLocationSelector(typeof(TObjectGraphVisitor), (IEnumerable typeConverters) => objectGraphVisitorFactory(typeConverters))); return this; } public SerializerBuilder WithPreProcessingPhaseObjectGraphVisitor(WrapperFactory, TObjectGraphVisitor> objectGraphVisitorFactory, Action>> where) where TObjectGraphVisitor : IObjectGraphVisitor { if (objectGraphVisitorFactory == null) { throw new ArgumentNullException("objectGraphVisitorFactory"); } if (where == null) { throw new ArgumentNullException("where"); } where(preProcessingPhaseObjectGraphVisitorFactories.CreateTrackingRegistrationLocationSelector(typeof(TObjectGraphVisitor), (IObjectGraphVisitor wrapped, IEnumerable _) => objectGraphVisitorFactory(wrapped))); return this; } public SerializerBuilder WithPreProcessingPhaseObjectGraphVisitor(WrapperFactory, IObjectGraphVisitor, TObjectGraphVisitor> objectGraphVisitorFactory, Action>> where) where TObjectGraphVisitor : IObjectGraphVisitor { if (objectGraphVisitorFactory == null) { throw new ArgumentNullException("objectGraphVisitorFactory"); } if (where == null) { throw new ArgumentNullException("where"); } where(preProcessingPhaseObjectGraphVisitorFactories.CreateTrackingRegistrationLocationSelector(typeof(TObjectGraphVisitor), (IObjectGraphVisitor wrapped, IEnumerable typeConverters) => objectGraphVisitorFactory(wrapped, typeConverters))); return this; } public SerializerBuilder WithoutPreProcessingPhaseObjectGraphVisitor() where TObjectGraphVisitor : IObjectGraphVisitor { return WithoutPreProcessingPhaseObjectGraphVisitor(typeof(TObjectGraphVisitor)); } public SerializerBuilder WithoutPreProcessingPhaseObjectGraphVisitor(Type objectGraphVisitorType) { if (objectGraphVisitorType == null) { throw new ArgumentNullException("objectGraphVisitorType"); } preProcessingPhaseObjectGraphVisitorFactories.Remove(objectGraphVisitorType); return this; } public SerializerBuilder WithObjectGraphTraversalStrategyFactory(ObjectGraphTraversalStrategyFactory objectGraphTraversalStrategyFactory) { this.objectGraphTraversalStrategyFactory = objectGraphTraversalStrategyFactory; return this; } public SerializerBuilder WithEmissionPhaseObjectGraphVisitor(Func objectGraphVisitorFactory) where TObjectGraphVisitor : IObjectGraphVisitor { return WithEmissionPhaseObjectGraphVisitor(objectGraphVisitorFactory, delegate(IRegistrationLocationSelectionSyntax> w) { w.OnTop(); }); } public SerializerBuilder WithEmissionPhaseObjectGraphVisitor(Func objectGraphVisitorFactory, Action>> where) where TObjectGraphVisitor : IObjectGraphVisitor { if (objectGraphVisitorFactory == null) { throw new ArgumentNullException("objectGraphVisitorFactory"); } if (where == null) { throw new ArgumentNullException("where"); } where(emissionPhaseObjectGraphVisitorFactories.CreateRegistrationLocationSelector(typeof(TObjectGraphVisitor), (EmissionPhaseObjectGraphVisitorArgs args) => objectGraphVisitorFactory(args))); return this; } public SerializerBuilder WithEmissionPhaseObjectGraphVisitor(WrapperFactory, TObjectGraphVisitor> objectGraphVisitorFactory, Action>> where) where TObjectGraphVisitor : IObjectGraphVisitor { if (objectGraphVisitorFactory == null) { throw new ArgumentNullException("objectGraphVisitorFactory"); } if (where == null) { throw new ArgumentNullException("where"); } where(emissionPhaseObjectGraphVisitorFactories.CreateTrackingRegistrationLocationSelector(typeof(TObjectGraphVisitor), (IObjectGraphVisitor wrapped, EmissionPhaseObjectGraphVisitorArgs args) => objectGraphVisitorFactory(wrapped, args))); return this; } public SerializerBuilder WithoutEmissionPhaseObjectGraphVisitor() where TObjectGraphVisitor : IObjectGraphVisitor { return WithoutEmissionPhaseObjectGraphVisitor(typeof(TObjectGraphVisitor)); } public SerializerBuilder WithoutEmissionPhaseObjectGraphVisitor(Type objectGraphVisitorType) { if (objectGraphVisitorType == null) { throw new ArgumentNullException("objectGraphVisitorType"); } emissionPhaseObjectGraphVisitorFactories.Remove(objectGraphVisitorType); return this; } public SerializerBuilder WithIndentedSequences() { emitterSettings = emitterSettings.WithIndentedSequences(); return this; } public ISerializer Build() { if (FsharpHelper.Instance == null) { FsharpHelper.Instance = new DefaultFsharpHelper(); } return Serializer.FromValueSerializer(BuildValueSerializer(), emitterSettings); } public IValueSerializer BuildValueSerializer() { IEnumerable typeConverters = BuildTypeConverters(); ITypeInspector typeInspector = BuildTypeInspector(); IObjectGraphTraversalStrategy traversalStrategy = objectGraphTraversalStrategyFactory(typeInspector, typeResolver, typeConverters, maximumRecursion); IEventEmitter eventEmitter = eventEmitterFactories.BuildComponentChain(new WriterEventEmitter()); return new ValueSerializer(traversalStrategy, eventEmitter, typeConverters, preProcessingPhaseObjectGraphVisitorFactories.Clone(), emissionPhaseObjectGraphVisitorFactories.Clone()); } public ITypeInspector BuildTypeInspector() { ITypeInspector typeInspector = new ReadablePropertiesTypeInspector(typeResolver, includeNonPublicProperties); if (!ignoreFields) { typeInspector = new CompositeTypeInspector(new ReadableFieldsTypeInspector(typeResolver), typeInspector); } return typeInspectorFactories.BuildComponentChain(typeInspector); } } internal class Settings { public bool AllowPrivateConstructors { get; set; } } internal abstract class StaticBuilderSkeleton where TBuilder : StaticBuilderSkeleton { internal INamingConvention namingConvention = NullNamingConvention.Instance; internal INamingConvention enumNamingConvention = NullNamingConvention.Instance; internal ITypeResolver typeResolver; internal readonly LazyComponentRegistrationList typeConverterFactories; internal readonly LazyComponentRegistrationList typeInspectorFactories; internal bool includeNonPublicProperties; internal Settings settings; internal YamlFormatter yamlFormatter = YamlFormatter.Default; protected abstract TBuilder Self { get; } internal StaticBuilderSkeleton(ITypeResolver typeResolver) { typeConverterFactories = new LazyComponentRegistrationList { { typeof(YamlDotNet.Serialization.Converters.GuidConverter), (Nothing _) => new YamlDotNet.Serialization.Converters.GuidConverter(jsonCompatible: false) } }; typeInspectorFactories = new LazyComponentRegistrationList(); this.typeResolver = typeResolver ?? throw new ArgumentNullException("typeResolver"); settings = new Settings(); } public TBuilder WithNamingConvention(INamingConvention namingConvention) { this.namingConvention = namingConvention ?? throw new ArgumentNullException("namingConvention"); return Self; } public TBuilder WithEnumNamingConvention(INamingConvention enumNamingConvention) { this.enumNamingConvention = enumNamingConvention ?? throw new ArgumentNullException("enumNamingConvention"); return Self; } public TBuilder WithTypeResolver(ITypeResolver typeResolver) { this.typeResolver = typeResolver ?? throw new ArgumentNullException("typeResolver"); return Self; } public abstract TBuilder WithTagMapping(TagName tag, Type type); public TBuilder WithTypeConverter(IYamlTypeConverter typeConverter) { return WithTypeConverter(typeConverter, delegate(IRegistrationLocationSelectionSyntax w) { w.OnTop(); }); } public TBuilder WithTypeConverter(IYamlTypeConverter typeConverter, Action> where) { if (typeConverter == null) { throw new ArgumentNullException("typeConverter"); } if (where == null) { throw new ArgumentNullException("where"); } where(typeConverterFactories.CreateRegistrationLocationSelector(typeConverter.GetType(), (Nothing _) => typeConverter)); return Self; } public TBuilder WithTypeConverter(WrapperFactory typeConverterFactory, Action> where) where TYamlTypeConverter : IYamlTypeConverter { if (typeConverterFactory == null) { throw new ArgumentNullException("typeConverterFactory"); } if (where == null) { throw new ArgumentNullException("where"); } where(typeConverterFactories.CreateTrackingRegistrationLocationSelector(typeof(TYamlTypeConverter), (IYamlTypeConverter wrapped, Nothing _) => typeConverterFactory(wrapped))); return Self; } public TBuilder WithoutTypeConverter() where TYamlTypeConverter : IYamlTypeConverter { return WithoutTypeConverter(typeof(TYamlTypeConverter)); } public TBuilder WithoutTypeConverter(Type converterType) { if (converterType == null) { throw new ArgumentNullException("converterType"); } typeConverterFactories.Remove(converterType); return Self; } public TBuilder WithTypeInspector(Func typeInspectorFactory) where TTypeInspector : ITypeInspector { return WithTypeInspector(typeInspectorFactory, delegate(IRegistrationLocationSelectionSyntax w) { w.OnTop(); }); } public TBuilder WithTypeInspector(Func typeInspectorFactory, Action> where) where TTypeInspector : ITypeInspector { if (typeInspectorFactory == null) { throw new ArgumentNullException("typeInspectorFactory"); } if (where == null) { throw new ArgumentNullException("where"); } where(typeInspectorFactories.CreateRegistrationLocationSelector(typeof(TTypeInspector), (ITypeInspector inner) => typeInspectorFactory(inner))); return Self; } public TBuilder WithTypeInspector(WrapperFactory typeInspectorFactory, Action> where) where TTypeInspector : ITypeInspector { if (typeInspectorFactory == null) { throw new ArgumentNullException("typeInspectorFactory"); } if (where == null) { throw new ArgumentNullException("where"); } where(typeInspectorFactories.CreateTrackingRegistrationLocationSelector(typeof(TTypeInspector), (ITypeInspector wrapped, ITypeInspector inner) => typeInspectorFactory(wrapped, inner))); return Self; } public TBuilder WithoutTypeInspector() where TTypeInspector : ITypeInspector { return WithoutTypeInspector(typeof(TTypeInspector)); } public TBuilder WithoutTypeInspector(Type inspectorType) { if (inspectorType == null) { throw new ArgumentNullException("inspectorType"); } typeInspectorFactories.Remove(inspectorType); return Self; } public TBuilder WithYamlFormatter(YamlFormatter formatter) { yamlFormatter = formatter ?? throw new ArgumentNullException("formatter"); return Self; } protected IEnumerable BuildTypeConverters() { return typeConverterFactories.BuildComponentList(); } } internal abstract class StaticContext { public virtual bool IsKnownType(Type type) { throw new NotImplementedException(); } public virtual ITypeResolver GetTypeResolver() { throw new NotImplementedException(); } public virtual StaticObjectFactory GetFactory() { throw new NotImplementedException(); } public virtual ITypeInspector GetTypeInspector() { throw new NotImplementedException(); } } internal sealed class StaticDeserializerBuilder : StaticBuilderSkeleton { private readonly StaticContext context; private readonly StaticObjectFactory factory; private readonly LazyComponentRegistrationList nodeDeserializerFactories; private readonly LazyComponentRegistrationList nodeTypeResolverFactories; private readonly Dictionary tagMappings; private readonly ITypeConverter typeConverter; private readonly Dictionary typeMappings; private bool ignoreUnmatched; private bool duplicateKeyChecking; private bool attemptUnknownTypeDeserialization; private bool enforceNullability; private bool caseInsensitivePropertyMatching; protected override StaticDeserializerBuilder Self => this; public StaticDeserializerBuilder(StaticContext context) : base(context.GetTypeResolver()) { this.context = context; factory = context.GetFactory(); typeMappings = new Dictionary(); tagMappings = new Dictionary { { FailsafeSchema.Tags.Map, typeof(Dictionary) }, { FailsafeSchema.Tags.Str, typeof(string) }, { JsonSchema.Tags.Bool, typeof(bool) }, { JsonSchema.Tags.Float, typeof(double) }, { JsonSchema.Tags.Int, typeof(int) }, { DefaultSchema.Tags.Timestamp, typeof(DateTime) } }; typeInspectorFactories.Add(typeof(CachedTypeInspector), (ITypeInspector inner) => new CachedTypeInspector(inner)); typeInspectorFactories.Add(typeof(NamingConventionTypeInspector), (ITypeInspector inner) => (!(namingConvention is NullNamingConvention)) ? new NamingConventionTypeInspector(inner, namingConvention) : inner); typeInspectorFactories.Add(typeof(YamlAttributesTypeInspector), (ITypeInspector inner) => new YamlAttributesTypeInspector(inner)); nodeDeserializerFactories = new LazyComponentRegistrationList { { typeof(YamlConvertibleNodeDeserializer), (Nothing _) => new YamlConvertibleNodeDeserializer(factory) }, { typeof(YamlSerializableNodeDeserializer), (Nothing _) => new YamlSerializableNodeDeserializer(factory) }, { typeof(TypeConverterNodeDeserializer), (Nothing _) => new TypeConverterNodeDeserializer(BuildTypeConverters()) }, { typeof(NullNodeDeserializer), (Nothing _) => new NullNodeDeserializer() }, { typeof(ScalarNodeDeserializer), (Nothing _) => new ScalarNodeDeserializer(attemptUnknownTypeDeserialization, typeConverter, BuildTypeInspector(), yamlFormatter, enumNamingConvention) }, { typeof(StaticArrayNodeDeserializer), (Nothing _) => new StaticArrayNodeDeserializer(factory) }, { typeof(StaticDictionaryNodeDeserializer), (Nothing _) => new StaticDictionaryNodeDeserializer(factory, duplicateKeyChecking) }, { typeof(StaticCollectionNodeDeserializer), (Nothing _) => new StaticCollectionNodeDeserializer(factory) }, { typeof(ObjectNodeDeserializer), (Nothing _) => new ObjectNodeDeserializer(factory, BuildTypeInspector(), ignoreUnmatched, duplicateKeyChecking, typeConverter, enumNamingConvention, enforceNullability, caseInsensitivePropertyMatching, enforceRequiredProperties: false, BuildTypeConverters()) } }; nodeTypeResolverFactories = new LazyComponentRegistrationList { { typeof(MappingNodeTypeResolver), (Nothing _) => new MappingNodeTypeResolver(typeMappings) }, { typeof(YamlConvertibleTypeResolver), (Nothing _) => new YamlConvertibleTypeResolver() }, { typeof(YamlSerializableTypeResolver), (Nothing _) => new YamlSerializableTypeResolver() }, { typeof(TagNodeTypeResolver), (Nothing _) => new TagNodeTypeResolver(tagMappings) }, { typeof(PreventUnknownTagsNodeTypeResolver), (Nothing _) => new PreventUnknownTagsNodeTypeResolver() }, { typeof(DefaultContainersNodeTypeResolver), (Nothing _) => new DefaultContainersNodeTypeResolver() } }; typeConverter = new NullTypeConverter(); } public ITypeInspector BuildTypeInspector() { ITypeInspector typeInspector = context.GetTypeInspector(); return typeInspectorFactories.BuildComponentChain(typeInspector); } public StaticDeserializerBuilder WithAttemptingUnquotedStringTypeDeserialization() { attemptUnknownTypeDeserialization = true; return this; } public StaticDeserializerBuilder WithNodeDeserializer(INodeDeserializer nodeDeserializer) { return WithNodeDeserializer(nodeDeserializer, delegate(IRegistrationLocationSelectionSyntax w) { w.OnTop(); }); } public StaticDeserializerBuilder WithNodeDeserializer(INodeDeserializer nodeDeserializer, Action> where) { if (nodeDeserializer == null) { throw new ArgumentNullException("nodeDeserializer"); } if (where == null) { throw new ArgumentNullException("where"); } where(nodeDeserializerFactories.CreateRegistrationLocationSelector(nodeDeserializer.GetType(), (Nothing _) => nodeDeserializer)); return this; } public StaticDeserializerBuilder WithNodeDeserializer(WrapperFactory nodeDeserializerFactory, Action> where) where TNodeDeserializer : INodeDeserializer { if (nodeDeserializerFactory == null) { throw new ArgumentNullException("nodeDeserializerFactory"); } if (where == null) { throw new ArgumentNullException("where"); } where(nodeDeserializerFactories.CreateTrackingRegistrationLocationSelector(typeof(TNodeDeserializer), (INodeDeserializer wrapped, Nothing _) => nodeDeserializerFactory(wrapped))); return this; } public StaticDeserializerBuilder WithCaseInsensitivePropertyMatching() { caseInsensitivePropertyMatching = true; return this; } public StaticDeserializerBuilder WithEnforceNullability() { enforceNullability = true; return this; } public StaticDeserializerBuilder WithoutNodeDeserializer() where TNodeDeserializer : INodeDeserializer { return WithoutNodeDeserializer(typeof(TNodeDeserializer)); } public StaticDeserializerBuilder WithoutNodeDeserializer(Type nodeDeserializerType) { if (nodeDeserializerType == null) { throw new ArgumentNullException("nodeDeserializerType"); } nodeDeserializerFactories.Remove(nodeDeserializerType); return this; } public StaticDeserializerBuilder WithTypeDiscriminatingNodeDeserializer(Action configureTypeDiscriminatingNodeDeserializerOptions, int maxDepth = -1, int maxLength = -1) { TypeDiscriminatingNodeDeserializerOptions typeDiscriminatingNodeDeserializerOptions = new TypeDiscriminatingNodeDeserializerOptions(); configureTypeDiscriminatingNodeDeserializerOptions(typeDiscriminatingNodeDeserializerOptions); TypeDiscriminatingNodeDeserializer nodeDeserializer = new TypeDiscriminatingNodeDeserializer(nodeDeserializerFactories.BuildComponentList(), typeDiscriminatingNodeDeserializerOptions.discriminators, maxDepth, maxLength); return WithNodeDeserializer(nodeDeserializer, delegate(IRegistrationLocationSelectionSyntax s) { s.Before(); }); } public StaticDeserializerBuilder WithNodeTypeResolver(INodeTypeResolver nodeTypeResolver) { return WithNodeTypeResolver(nodeTypeResolver, delegate(IRegistrationLocationSelectionSyntax w) { w.OnTop(); }); } public StaticDeserializerBuilder WithNodeTypeResolver(INodeTypeResolver nodeTypeResolver, Action> where) { if (nodeTypeResolver == null) { throw new ArgumentNullException("nodeTypeResolver"); } if (where == null) { throw new ArgumentNullException("where"); } where(nodeTypeResolverFactories.CreateRegistrationLocationSelector(nodeTypeResolver.GetType(), (Nothing _) => nodeTypeResolver)); return this; } public StaticDeserializerBuilder WithNodeTypeResolver(WrapperFactory nodeTypeResolverFactory, Action> where) where TNodeTypeResolver : INodeTypeResolver { if (nodeTypeResolverFactory == null) { throw new ArgumentNullException("nodeTypeResolverFactory"); } if (where == null) { throw new ArgumentNullException("where"); } where(nodeTypeResolverFactories.CreateTrackingRegistrationLocationSelector(typeof(TNodeTypeResolver), (INodeTypeResolver wrapped, Nothing _) => nodeTypeResolverFactory(wrapped))); return this; } public StaticDeserializerBuilder WithoutNodeTypeResolver() where TNodeTypeResolver : INodeTypeResolver { return WithoutNodeTypeResolver(typeof(TNodeTypeResolver)); } public StaticDeserializerBuilder WithoutNodeTypeResolver(Type nodeTypeResolverType) { if (nodeTypeResolverType == null) { throw new ArgumentNullException("nodeTypeResolverType"); } nodeTypeResolverFactories.Remove(nodeTypeResolverType); return this; } public override StaticDeserializerBuilder WithTagMapping(TagName tag, Type type) { if (tag.IsEmpty) { throw new ArgumentException("Non-specific tags cannot be maped"); } if (type == null) { throw new ArgumentNullException("type"); } if (tagMappings.TryGetValue(tag, out Type value)) { throw new ArgumentException($"Type already has a registered type '{value.FullName}' for tag '{tag}'", "tag"); } tagMappings.Add(tag, type); return this; } public StaticDeserializerBuilder WithTypeMapping() where TConcrete : TInterface { Type typeFromHandle = typeof(TInterface); Type typeFromHandle2 = typeof(TConcrete); if (!typeFromHandle.IsAssignableFrom(typeFromHandle2)) { throw new InvalidOperationException("The type '" + typeFromHandle2.Name + "' does not implement interface '" + typeFromHandle.Name + "'."); } typeMappings[typeFromHandle] = typeFromHandle2; return this; } public StaticDeserializerBuilder WithoutTagMapping(TagName tag) { if (tag.IsEmpty) { throw new ArgumentException("Non-specific tags cannot be maped"); } if (!tagMappings.Remove(tag)) { throw new KeyNotFoundException($"Tag '{tag}' is not registered"); } return this; } public StaticDeserializerBuilder IgnoreUnmatchedProperties() { ignoreUnmatched = true; return this; } public StaticDeserializerBuilder WithDuplicateKeyChecking() { duplicateKeyChecking = true; return this; } public IDeserializer Build() { return Deserializer.FromValueDeserializer(BuildValueDeserializer()); } public IValueDeserializer BuildValueDeserializer() { return new AliasValueDeserializer(new NodeValueDeserializer(nodeDeserializerFactories.BuildComponentList(), nodeTypeResolverFactories.BuildComponentList(), typeConverter, enumNamingConvention, BuildTypeInspector())); } } internal sealed class StaticSerializerBuilder : StaticBuilderSkeleton { private class ValueSerializer : IValueSerializer { private readonly IObjectGraphTraversalStrategy traversalStrategy; private readonly IEventEmitter eventEmitter; private readonly IEnumerable typeConverters; private readonly LazyComponentRegistrationList, IObjectGraphVisitor> preProcessingPhaseObjectGraphVisitorFactories; private readonly LazyComponentRegistrationList> emissionPhaseObjectGraphVisitorFactories; public ValueSerializer(IObjectGraphTraversalStrategy traversalStrategy, IEventEmitter eventEmitter, IEnumerable typeConverters, LazyComponentRegistrationList, IObjectGraphVisitor> preProcessingPhaseObjectGraphVisitorFactories, LazyComponentRegistrationList> emissionPhaseObjectGraphVisitorFactories) { this.traversalStrategy = traversalStrategy; this.eventEmitter = eventEmitter; this.typeConverters = typeConverters; this.preProcessingPhaseObjectGraphVisitorFactories = preProcessingPhaseObjectGraphVisitorFactories; this.emissionPhaseObjectGraphVisitorFactories = emissionPhaseObjectGraphVisitorFactories; } public void SerializeValue(IEmitter emitter, object? value, Type? type) { Type type2 = type ?? ((value != null) ? value.GetType() : typeof(object)); Type staticType = type ?? typeof(object); ObjectDescriptor graph = new ObjectDescriptor(value, type2, staticType); List> preProcessingPhaseObjectGraphVisitors = preProcessingPhaseObjectGraphVisitorFactories.BuildComponentList(typeConverters); foreach (IObjectGraphVisitor item in preProcessingPhaseObjectGraphVisitors) { traversalStrategy.Traverse(graph, item, default(Nothing), NestedObjectSerializer); } IObjectGraphVisitor visitor = emissionPhaseObjectGraphVisitorFactories.BuildComponentChain>(new EmittingObjectGraphVisitor(eventEmitter), (IObjectGraphVisitor inner) => new EmissionPhaseObjectGraphVisitorArgs(inner, eventEmitter, preProcessingPhaseObjectGraphVisitors, typeConverters, NestedObjectSerializer)); traversalStrategy.Traverse(graph, visitor, emitter, NestedObjectSerializer); void NestedObjectSerializer(object? v, Type? t) { SerializeValue(emitter, v, t); } } } private readonly StaticContext context; private readonly StaticObjectFactory factory; private ObjectGraphTraversalStrategyFactory objectGraphTraversalStrategyFactory; private readonly LazyComponentRegistrationList, IObjectGraphVisitor> preProcessingPhaseObjectGraphVisitorFactories; private readonly LazyComponentRegistrationList> emissionPhaseObjectGraphVisitorFactories; private readonly LazyComponentRegistrationList eventEmitterFactories; private readonly Dictionary tagMappings = new Dictionary(); private int maximumRecursion = 50; private EmitterSettings emitterSettings = EmitterSettings.Default; private DefaultValuesHandling defaultValuesHandlingConfiguration; private bool quoteNecessaryStrings; private bool quoteYaml1_1Strings; private ScalarStyle defaultScalarStyle; protected override StaticSerializerBuilder Self => this; public StaticSerializerBuilder(StaticContext context) : base((ITypeResolver)new DynamicTypeResolver()) { this.context = context; factory = context.GetFactory(); typeInspectorFactories.Add(typeof(CachedTypeInspector), (ITypeInspector inner) => new CachedTypeInspector(inner)); typeInspectorFactories.Add(typeof(NamingConventionTypeInspector), (ITypeInspector inner) => (!(namingConvention is NullNamingConvention)) ? new NamingConventionTypeInspector(inner, namingConvention) : inner); typeInspectorFactories.Add(typeof(YamlAttributesTypeInspector), (ITypeInspector inner) => new YamlAttributesTypeInspector(inner)); preProcessingPhaseObjectGraphVisitorFactories = new LazyComponentRegistrationList, IObjectGraphVisitor> { { typeof(AnchorAssigner), (IEnumerable typeConverters) => new AnchorAssigner(typeConverters) } }; emissionPhaseObjectGraphVisitorFactories = new LazyComponentRegistrationList> { { typeof(CustomSerializationObjectGraphVisitor), (EmissionPhaseObjectGraphVisitorArgs args) => new CustomSerializationObjectGraphVisitor(args.InnerVisitor, args.TypeConverters, args.NestedObjectSerializer) }, { typeof(AnchorAssigningObjectGraphVisitor), (EmissionPhaseObjectGraphVisitorArgs args) => new AnchorAssigningObjectGraphVisitor(args.InnerVisitor, args.EventEmitter, args.GetPreProcessingPhaseObjectGraphVisitor()) }, { typeof(DefaultValuesObjectGraphVisitor), (EmissionPhaseObjectGraphVisitorArgs args) => new DefaultValuesObjectGraphVisitor(defaultValuesHandlingConfiguration, args.InnerVisitor, factory) }, { typeof(CommentsObjectGraphVisitor), (EmissionPhaseObjectGraphVisitorArgs args) => new CommentsObjectGraphVisitor(args.InnerVisitor) } }; eventEmitterFactories = new LazyComponentRegistrationList { { typeof(TypeAssigningEventEmitter), (IEventEmitter inner) => new TypeAssigningEventEmitter(inner, tagMappings, quoteNecessaryStrings, quoteYaml1_1Strings, defaultScalarStyle, yamlFormatter, enumNamingConvention, BuildTypeInspector()) } }; objectGraphTraversalStrategyFactory = (ITypeInspector typeInspector, ITypeResolver typeResolver, IEnumerable typeConverters, int maximumRecursion) => new FullObjectGraphTraversalStrategy(typeInspector, typeResolver, maximumRecursion, namingConvention, factory); } public StaticSerializerBuilder WithQuotingNecessaryStrings(bool quoteYaml1_1Strings = false) { quoteNecessaryStrings = true; this.quoteYaml1_1Strings = quoteYaml1_1Strings; return this; } public StaticSerializerBuilder WithQuotingNecessaryStrings() { quoteNecessaryStrings = true; return this; } public StaticSerializerBuilder WithDefaultScalarStyle(ScalarStyle style) { defaultScalarStyle = style; return this; } public StaticSerializerBuilder WithMaximumRecursion(int maximumRecursion) { if (maximumRecursion <= 0) { throw new ArgumentOutOfRangeException("maximumRecursion", $"The maximum recursion specified ({maximumRecursion}) is invalid. It should be a positive integer."); } this.maximumRecursion = maximumRecursion; return this; } public StaticSerializerBuilder WithEventEmitter(Func eventEmitterFactory) where TEventEmitter : IEventEmitter { return WithEventEmitter(eventEmitterFactory, delegate(IRegistrationLocationSelectionSyntax w) { w.OnTop(); }); } public StaticSerializerBuilder WithEventEmitter(Func eventEmitterFactory) where TEventEmitter : IEventEmitter { return WithEventEmitter(eventEmitterFactory, delegate(IRegistrationLocationSelectionSyntax w) { w.OnTop(); }); } public StaticSerializerBuilder WithEventEmitter(Func eventEmitterFactory, Action> where) where TEventEmitter : IEventEmitter { return WithEventEmitter((IEventEmitter e, ITypeInspector _) => eventEmitterFactory(e), where); } public StaticSerializerBuilder WithEventEmitter(Func eventEmitterFactory, Action> where) where TEventEmitter : IEventEmitter { if (eventEmitterFactory == null) { throw new ArgumentNullException("eventEmitterFactory"); } if (where == null) { throw new ArgumentNullException("where"); } where(eventEmitterFactories.CreateRegistrationLocationSelector(typeof(TEventEmitter), (IEventEmitter inner) => eventEmitterFactory(inner, BuildTypeInspector()))); return Self; } public StaticSerializerBuilder WithEventEmitter(WrapperFactory eventEmitterFactory, Action> where) where TEventEmitter : IEventEmitter { if (eventEmitterFactory == null) { throw new ArgumentNullException("eventEmitterFactory"); } if (where == null) { throw new ArgumentNullException("where"); } where(eventEmitterFactories.CreateTrackingRegistrationLocationSelector(typeof(TEventEmitter), (IEventEmitter wrapped, IEventEmitter inner) => eventEmitterFactory(wrapped, inner))); return Self; } public StaticSerializerBuilder WithoutEventEmitter() where TEventEmitter : IEventEmitter { return WithoutEventEmitter(typeof(TEventEmitter)); } public StaticSerializerBuilder WithoutEventEmitter(Type eventEmitterType) { if (eventEmitterType == null) { throw new ArgumentNullException("eventEmitterType"); } eventEmitterFactories.Remove(eventEmitterType); return this; } public override StaticSerializerBuilder WithTagMapping(TagName tag, Type type) { if (tag.IsEmpty) { throw new ArgumentException("Non-specific tags cannot be maped"); } if (type == null) { throw new ArgumentNullException("type"); } if (tagMappings.TryGetValue(type, out var value)) { throw new ArgumentException($"Type already has a registered tag '{value}' for type '{type.FullName}'", "type"); } tagMappings.Add(type, tag); return this; } public StaticSerializerBuilder WithoutTagMapping(Type type) { if (type == null) { throw new ArgumentNullException("type"); } if (!tagMappings.Remove(type)) { throw new KeyNotFoundException("Tag for type '" + type.FullName + "' is not registered"); } return this; } public StaticSerializerBuilder EnsureRoundtrip() { objectGraphTraversalStrategyFactory = (ITypeInspector typeInspector, ITypeResolver typeResolver, IEnumerable typeConverters, int maximumRecursion) => new RoundtripObjectGraphTraversalStrategy(typeConverters, typeInspector, typeResolver, maximumRecursion, namingConvention, settings, factory); WithEventEmitter((IEventEmitter inner) => new TypeAssigningEventEmitter(inner, tagMappings, quoteNecessaryStrings, quoteYaml1_1Strings: false, ScalarStyle.Plain, YamlFormatter.Default, enumNamingConvention, BuildTypeInspector()), delegate(IRegistrationLocationSelectionSyntax loc) { loc.InsteadOf(); }); return WithTypeInspector((ITypeInspector inner) => new ReadableAndWritablePropertiesTypeInspector(inner), delegate(IRegistrationLocationSelectionSyntax loc) { loc.OnBottom(); }); } public StaticSerializerBuilder DisableAliases() { preProcessingPhaseObjectGraphVisitorFactories.Remove(typeof(AnchorAssigner)); emissionPhaseObjectGraphVisitorFactories.Remove(typeof(AnchorAssigningObjectGraphVisitor)); return this; } [Obsolete("The default behavior is now to always emit default values, thefore calling this method has no effect. This behavior is now controlled by ConfigureDefaultValuesHandling.", true)] public StaticSerializerBuilder EmitDefaults() { return ConfigureDefaultValuesHandling(DefaultValuesHandling.Preserve); } public StaticSerializerBuilder ConfigureDefaultValuesHandling(DefaultValuesHandling configuration) { defaultValuesHandlingConfiguration = configuration; return this; } public StaticSerializerBuilder JsonCompatible() { emitterSettings = emitterSettings.WithMaxSimpleKeyLength(int.MaxValue).WithoutAnchorName().WithUtf16SurrogatePairs(); return WithTypeConverter(new YamlDotNet.Serialization.Converters.GuidConverter(jsonCompatible: true), delegate(IRegistrationLocationSelectionSyntax w) { w.InsteadOf(); }).WithTypeConverter(new DateTime8601Converter(ScalarStyle.DoubleQuoted)).WithEventEmitter((IEventEmitter inner) => new JsonEventEmitter(inner, yamlFormatter, enumNamingConvention, BuildTypeInspector()), delegate(IRegistrationLocationSelectionSyntax loc) { loc.InsteadOf(); }); } public StaticSerializerBuilder WithNewLine(string newLine) { emitterSettings = emitterSettings.WithNewLine(newLine); return this; } public StaticSerializerBuilder WithPreProcessingPhaseObjectGraphVisitor(TObjectGraphVisitor objectGraphVisitor) where TObjectGraphVisitor : IObjectGraphVisitor { return WithPreProcessingPhaseObjectGraphVisitor(objectGraphVisitor, delegate(IRegistrationLocationSelectionSyntax> w) { w.OnTop(); }); } public StaticSerializerBuilder WithPreProcessingPhaseObjectGraphVisitor(Func, TObjectGraphVisitor> objectGraphVisitorFactory) where TObjectGraphVisitor : IObjectGraphVisitor { return WithPreProcessingPhaseObjectGraphVisitor(objectGraphVisitorFactory, delegate(IRegistrationLocationSelectionSyntax> w) { w.OnTop(); }); } public StaticSerializerBuilder WithPreProcessingPhaseObjectGraphVisitor(TObjectGraphVisitor objectGraphVisitor, Action>> where) where TObjectGraphVisitor : IObjectGraphVisitor { if (objectGraphVisitor == null) { throw new ArgumentNullException("objectGraphVisitor"); } if (where == null) { throw new ArgumentNullException("where"); } where(preProcessingPhaseObjectGraphVisitorFactories.CreateRegistrationLocationSelector(typeof(TObjectGraphVisitor), (IEnumerable _) => objectGraphVisitor)); return this; } public StaticSerializerBuilder WithPreProcessingPhaseObjectGraphVisitor(Func, TObjectGraphVisitor> objectGraphVisitorFactory, Action>> where) where TObjectGraphVisitor : IObjectGraphVisitor { if (objectGraphVisitorFactory == null) { throw new ArgumentNullException("objectGraphVisitorFactory"); } if (where == null) { throw new ArgumentNullException("where"); } where(preProcessingPhaseObjectGraphVisitorFactories.CreateRegistrationLocationSelector(typeof(TObjectGraphVisitor), (IEnumerable typeConverters) => objectGraphVisitorFactory(typeConverters))); return this; } public StaticSerializerBuilder WithPreProcessingPhaseObjectGraphVisitor(WrapperFactory, TObjectGraphVisitor> objectGraphVisitorFactory, Action>> where) where TObjectGraphVisitor : IObjectGraphVisitor { if (objectGraphVisitorFactory == null) { throw new ArgumentNullException("objectGraphVisitorFactory"); } if (where == null) { throw new ArgumentNullException("where"); } where(preProcessingPhaseObjectGraphVisitorFactories.CreateTrackingRegistrationLocationSelector(typeof(TObjectGraphVisitor), (IObjectGraphVisitor wrapped, IEnumerable _) => objectGraphVisitorFactory(wrapped))); return this; } public StaticSerializerBuilder WithPreProcessingPhaseObjectGraphVisitor(WrapperFactory, IObjectGraphVisitor, TObjectGraphVisitor> objectGraphVisitorFactory, Action>> where) where TObjectGraphVisitor : IObjectGraphVisitor { if (objectGraphVisitorFactory == null) { throw new ArgumentNullException("objectGraphVisitorFactory"); } if (where == null) { throw new ArgumentNullException("where"); } where(preProcessingPhaseObjectGraphVisitorFactories.CreateTrackingRegistrationLocationSelector(typeof(TObjectGraphVisitor), (IObjectGraphVisitor wrapped, IEnumerable typeConverters) => objectGraphVisitorFactory(wrapped, typeConverters))); return this; } public StaticSerializerBuilder WithoutPreProcessingPhaseObjectGraphVisitor() where TObjectGraphVisitor : IObjectGraphVisitor { return WithoutPreProcessingPhaseObjectGraphVisitor(typeof(TObjectGraphVisitor)); } public StaticSerializerBuilder WithoutPreProcessingPhaseObjectGraphVisitor(Type objectGraphVisitorType) { if (objectGraphVisitorType == null) { throw new ArgumentNullException("objectGraphVisitorType"); } preProcessingPhaseObjectGraphVisitorFactories.Remove(objectGraphVisitorType); return this; } public StaticSerializerBuilder WithObjectGraphTraversalStrategyFactory(ObjectGraphTraversalStrategyFactory objectGraphTraversalStrategyFactory) { this.objectGraphTraversalStrategyFactory = objectGraphTraversalStrategyFactory; return this; } public StaticSerializerBuilder WithEmissionPhaseObjectGraphVisitor(Func objectGraphVisitorFactory) where TObjectGraphVisitor : IObjectGraphVisitor { return WithEmissionPhaseObjectGraphVisitor(objectGraphVisitorFactory, delegate(IRegistrationLocationSelectionSyntax> w) { w.OnTop(); }); } public StaticSerializerBuilder WithEmissionPhaseObjectGraphVisitor(Func objectGraphVisitorFactory, Action>> where) where TObjectGraphVisitor : IObjectGraphVisitor { if (objectGraphVisitorFactory == null) { throw new ArgumentNullException("objectGraphVisitorFactory"); } if (where == null) { throw new ArgumentNullException("where"); } where(emissionPhaseObjectGraphVisitorFactories.CreateRegistrationLocationSelector(typeof(TObjectGraphVisitor), (EmissionPhaseObjectGraphVisitorArgs args) => objectGraphVisitorFactory(args))); return this; } public StaticSerializerBuilder WithEmissionPhaseObjectGraphVisitor(WrapperFactory, TObjectGraphVisitor> objectGraphVisitorFactory, Action>> where) where TObjectGraphVisitor : IObjectGraphVisitor { if (objectGraphVisitorFactory == null) { throw new ArgumentNullException("objectGraphVisitorFactory"); } if (where == null) { throw new ArgumentNullException("where"); } where(emissionPhaseObjectGraphVisitorFactories.CreateTrackingRegistrationLocationSelector(typeof(TObjectGraphVisitor), (IObjectGraphVisitor wrapped, EmissionPhaseObjectGraphVisitorArgs args) => objectGraphVisitorFactory(wrapped, args))); return this; } public StaticSerializerBuilder WithoutEmissionPhaseObjectGraphVisitor() where TObjectGraphVisitor : IObjectGraphVisitor { return WithoutEmissionPhaseObjectGraphVisitor(typeof(TObjectGraphVisitor)); } public StaticSerializerBuilder WithoutEmissionPhaseObjectGraphVisitor(Type objectGraphVisitorType) { if (objectGraphVisitorType == null) { throw new ArgumentNullException("objectGraphVisitorType"); } emissionPhaseObjectGraphVisitorFactories.Remove(objectGraphVisitorType); return this; } public StaticSerializerBuilder WithIndentedSequences() { emitterSettings = emitterSettings.WithIndentedSequences(); return this; } public ISerializer Build() { return Serializer.FromValueSerializer(BuildValueSerializer(), emitterSettings); } public IValueSerializer BuildValueSerializer() { IEnumerable typeConverters = BuildTypeConverters(); ITypeInspector typeInspector = BuildTypeInspector(); IObjectGraphTraversalStrategy traversalStrategy = objectGraphTraversalStrategyFactory(typeInspector, typeResolver, typeConverters, maximumRecursion); IEventEmitter eventEmitter = eventEmitterFactories.BuildComponentChain(new WriterEventEmitter()); return new ValueSerializer(traversalStrategy, eventEmitter, typeConverters, preProcessingPhaseObjectGraphVisitorFactories.Clone(), emissionPhaseObjectGraphVisitorFactories.Clone()); } public ITypeInspector BuildTypeInspector() { ITypeInspector typeInspector = context.GetTypeInspector(); return typeInspectorFactories.BuildComponentChain(typeInspector); } } internal sealed class StreamFragment : IYamlConvertible { private readonly List events = new List(); public IList Events => events; void IYamlConvertible.Read(IParser parser, Type expectedType, ObjectDeserializer nestedObjectDeserializer) { events.Clear(); int num = 0; do { if (!parser.MoveNext()) { throw new InvalidOperationException("The parser has reached the end before deserialization completed."); } ParsingEvent current = parser.Current; events.Add(current); num += current.NestingIncrease; } while (num > 0); } void IYamlConvertible.Write(IEmitter emitter, ObjectSerializer nestedObjectSerializer) { foreach (ParsingEvent @event in events) { emitter.Emit(@event); } } } internal sealed class TagMappings { private readonly Dictionary mappings; public TagMappings() { mappings = new Dictionary(); } public TagMappings(IDictionary mappings) { this.mappings = new Dictionary(mappings); } public void Add(string tag, Type mapping) { mappings.Add(tag, mapping); } internal Type? GetMapping(string tag) { if (!mappings.TryGetValue(tag, out Type value)) { return null; } return value; } } internal sealed class YamlAttributeOverrides { private readonly struct AttributeKey { public readonly Type AttributeType; public readonly string PropertyName; public AttributeKey(Type attributeType, string propertyName) { AttributeType = attributeType; PropertyName = propertyName; } public override bool Equals(object? obj) { if (obj is AttributeKey attributeKey && AttributeType.Equals(attributeKey.AttributeType)) { return PropertyName.Equals(attributeKey.PropertyName); } return false; } public override int GetHashCode() { return YamlDotNet.Core.HashCode.CombineHashCodes(AttributeType.GetHashCode(), PropertyName.GetHashCode()); } } private sealed class AttributeMapping { public readonly Type RegisteredType; public readonly Attribute Attribute; public AttributeMapping(Type registeredType, Attribute attribute) { RegisteredType = registeredType; Attribute = attribute; } public override bool Equals(object? obj) { if (obj is AttributeMapping attributeMapping && RegisteredType.Equals(attributeMapping.RegisteredType)) { return Attribute.Equals(attributeMapping.Attribute); } return false; } public override int GetHashCode() { return YamlDotNet.Core.HashCode.CombineHashCodes(RegisteredType.GetHashCode(), Attribute.GetHashCode()); } public int Matches(Type matchType) { int num = 0; Type type = matchType; while (type != null) { num++; if (type == RegisteredType) { return num; } type = type.BaseType(); } if (matchType.GetInterfaces().Contains(RegisteredType)) { return num; } return 0; } } private readonly Dictionary> overrides = new Dictionary>(); [return: MaybeNull] public T GetAttribute(Type type, string member) where T : Attribute { if (overrides.TryGetValue(new AttributeKey(typeof(T), member), out List value)) { int num = 0; AttributeMapping attributeMapping = null; foreach (AttributeMapping item in value) { int num2 = item.Matches(type); if (num2 > num) { num = num2; attributeMapping = item; } } if (num > 0) { return (T)attributeMapping.Attribute; } } return null; } public void Add(Type type, string member, Attribute attribute) { AttributeMapping item = new AttributeMapping(type, attribute); AttributeKey key = new AttributeKey(attribute.GetType(), member); if (!overrides.TryGetValue(key, out List value)) { value = new List(); overrides.Add(key, value); } else if (value.Contains(item)) { throw new InvalidOperationException($"Attribute ({attribute}) already set for Type {type.FullName}, Member {member}"); } value.Add(item); } public YamlAttributeOverrides Clone() { YamlAttributeOverrides yamlAttributeOverrides = new YamlAttributeOverrides(); foreach (KeyValuePair> @override in overrides) { foreach (AttributeMapping item in @override.Value) { yamlAttributeOverrides.Add(item.RegisteredType, @override.Key.PropertyName, item.Attribute); } } return yamlAttributeOverrides; } public void Add(Expression> propertyAccessor, Attribute attribute) { PropertyInfo propertyInfo = propertyAccessor.AsProperty(); Add(typeof(TClass), propertyInfo.Name, attribute); } } internal sealed class YamlAttributeOverridesInspector : ReflectionTypeInspector { public sealed class OverridePropertyDescriptor : IPropertyDescriptor { private readonly IPropertyDescriptor baseDescriptor; private readonly YamlAttributeOverrides overrides; private readonly Type classType; public string Name => baseDescriptor.Name; public bool Required => baseDescriptor.Required; public bool AllowNulls => baseDescriptor.AllowNulls; public bool CanWrite => baseDescriptor.CanWrite; public Type Type => baseDescriptor.Type; public Type? TypeOverride { get { return baseDescriptor.TypeOverride; } set { baseDescriptor.TypeOverride = value; } } public Type? ConverterType => GetCustomAttribute()?.ConverterType ?? baseDescriptor.ConverterType; public int Order { get { return baseDescriptor.Order; } set { baseDescriptor.Order = value; } } public ScalarStyle ScalarStyle { get { return baseDescriptor.ScalarStyle; } set { baseDescriptor.ScalarStyle = value; } } public OverridePropertyDescriptor(IPropertyDescriptor baseDescriptor, YamlAttributeOverrides overrides, Type classType) { this.baseDescriptor = baseDescriptor; this.overrides = overrides; this.classType = classType; } public void Write(object target, object? value) { baseDescriptor.Write(target, value); } public T? GetCustomAttribute() where T : Attribute { T attribute = overrides.GetAttribute(classType, Name); return attribute ?? baseDescriptor.GetCustomAttribute(); } public IObjectDescriptor Read(object target) { return baseDescriptor.Read(target); } } private readonly ITypeInspector innerTypeDescriptor; private readonly YamlAttributeOverrides overrides; public YamlAttributeOverridesInspector(ITypeInspector innerTypeDescriptor, YamlAttributeOverrides overrides) { this.innerTypeDescriptor = innerTypeDescriptor; this.overrides = overrides; } public override IEnumerable GetProperties(Type type, object? container) { IEnumerable enumerable = innerTypeDescriptor.GetProperties(type, container); if (overrides != null) { enumerable = enumerable.Select((Func)((IPropertyDescriptor p) => new OverridePropertyDescriptor(p, overrides, type))); } return enumerable; } } internal sealed class YamlAttributesTypeInspector : TypeInspectorSkeleton { private readonly ITypeInspector innerTypeDescriptor; public YamlAttributesTypeInspector(ITypeInspector innerTypeDescriptor) { this.innerTypeDescriptor = innerTypeDescriptor; } public override string GetEnumName(Type enumType, string name) { return innerTypeDescriptor.GetEnumName(enumType, name); } public override string GetEnumValue(object enumValue) { return innerTypeDescriptor.GetEnumValue(enumValue); } public override IEnumerable GetProperties(Type type, object? container) { return from p in (from p in innerTypeDescriptor.GetProperties(type, container) where p.GetCustomAttribute() == null select p).Select((Func)delegate(IPropertyDescriptor p) { PropertyDescriptor propertyDescriptor = new PropertyDescriptor(p); YamlMemberAttribute customAttribute = p.GetCustomAttribute(); if (customAttribute != null) { if (customAttribute.SerializeAs != null) { propertyDescriptor.TypeOverride = customAttribute.SerializeAs; } propertyDescriptor.Order = customAttribute.Order; propertyDescriptor.ScalarStyle = customAttribute.ScalarStyle; if (customAttribute.Alias != null) { propertyDescriptor.Name = customAttribute.Alias; } } return propertyDescriptor; }) orderby p.Order select p; } } [AttributeUsage(AttributeTargets.Property | AttributeTargets.Field)] internal sealed class YamlConverterAttribute : Attribute { public Type ConverterType { get; } public YamlConverterAttribute(Type converterType) { ConverterType = converterType; } } internal class YamlFormatter { public static YamlFormatter Default { get; } = new YamlFormatter(); public NumberFormatInfo NumberFormat { get; set; } = new NumberFormatInfo { CurrencyDecimalSeparator = ".", CurrencyGroupSeparator = "_", CurrencyGroupSizes = new int[1] { 3 }, CurrencySymbol = string.Empty, CurrencyDecimalDigits = 99, NumberDecimalSeparator = ".", NumberGroupSeparator = "_", NumberGroupSizes = new int[1] { 3 }, NumberDecimalDigits = 99, NaNSymbol = ".nan", PositiveInfinitySymbol = ".inf", NegativeInfinitySymbol = "-.inf" }; public virtual Func FormatEnum { get; set; } = delegate(object value, ITypeInspector typeInspector, INamingConvention enumNamingConvention) { string empty = string.Empty; empty = ((value != null) ? typeInspector.GetEnumValue(value) : string.Empty); return enumNamingConvention.Apply(empty); }; public virtual Func PotentiallyQuoteEnums { get; set; } = (object _) => true; public string FormatNumber(object number) { return Convert.ToString(number, NumberFormat); } public string FormatNumber(double number) { return number.ToString("G", NumberFormat); } public string FormatNumber(float number) { return number.ToString("G", NumberFormat); } public string FormatBoolean(object boolean) { if (!boolean.Equals(true)) { return "false"; } return "true"; } public string FormatDateTime(object dateTime) { return ((DateTime)dateTime).ToString("o", CultureInfo.InvariantCulture); } public string FormatTimeSpan(object timeSpan) { return ((TimeSpan)timeSpan/*cast due to .constrained prefix*/).ToString(); } } [AttributeUsage(AttributeTargets.Property | AttributeTargets.Field, AllowMultiple = false)] internal sealed class YamlIgnoreAttribute : Attribute { } [AttributeUsage(AttributeTargets.Property | AttributeTargets.Field, AllowMultiple = false)] internal sealed class YamlMemberAttribute : Attribute { private DefaultValuesHandling? defaultValuesHandling; public string? Description { get; set; } public Type? SerializeAs { get; set; } public int Order { get; set; } public string? Alias { get; set; } public bool ApplyNamingConventions { get; set; } public ScalarStyle ScalarStyle { get; set; } public DefaultValuesHandling DefaultValuesHandling { get { return defaultValuesHandling.GetValueOrDefault(); } set { defaultValuesHandling = value; } } public bool IsDefaultValuesHandlingSpecified => defaultValuesHandling.HasValue; public YamlMemberAttribute() { ScalarStyle = ScalarStyle.Any; ApplyNamingConventions = true; } public YamlMemberAttribute(Type serializeAs) : this() { SerializeAs = serializeAs ?? throw new ArgumentNullException("serializeAs"); } } [AttributeUsage(AttributeTargets.Class | AttributeTargets.Struct | AttributeTargets.Enum, Inherited = false, AllowMultiple = true)] internal sealed class YamlSerializableAttribute : Attribute { public YamlSerializableAttribute() { } public YamlSerializableAttribute(Type serializableType) { } } [AttributeUsage(AttributeTargets.Class)] internal sealed class YamlStaticContextAttribute : Attribute { } } namespace YamlDotNet.Serialization.ValueDeserializers { internal sealed class AliasValueDeserializer : IValueDeserializer { private sealed class AliasState : Dictionary, IPostDeserializationCallback { public void OnDeserialization() { foreach (ValuePromise value in base.Values) { if (!value.HasValue) { YamlDotNet.Core.Events.AnchorAlias alias = value.Alias; throw new AnchorNotFoundException(alias.Start, alias.End, $"Anchor '{alias.Value}' not found"); } } } } private sealed class ValuePromise : IValuePromise { private object? value; public readonly YamlDotNet.Core.Events.AnchorAlias? Alias; public bool HasValue { get; private set; } public object? Value { get { if (!HasValue) { throw new InvalidOperationException("Value not set"); } return value; } set { if (HasValue) { throw new InvalidOperationException("Value already set"); } HasValue = true; this.value = value; this.ValueAvailable?.Invoke(value); } } public event Action? ValueAvailable; public ValuePromise(YamlDotNet.Core.Events.AnchorAlias alias) { Alias = alias; } public ValuePromise(object? value) { HasValue = true; this.value = value; } } private readonly IValueDeserializer innerDeserializer; public AliasValueDeserializer(IValueDeserializer innerDeserializer) { this.innerDeserializer = innerDeserializer ?? throw new ArgumentNullException("innerDeserializer"); } public object? DeserializeValue(IParser parser, Type expectedType, SerializerState state, IValueDeserializer nestedObjectDeserializer) { if (parser.TryConsume(out var @event)) { AliasState aliasState = state.Get(); if (!aliasState.TryGetValue(@event.Value, out ValuePromise value)) { throw new AnchorNotFoundException(@event.Start, @event.End, $"Alias ${@event.Value} cannot precede anchor declaration"); } if (!value.HasValue) { return value; } return value.Value; } AnchorName anchorName = AnchorName.Empty; if (parser.Accept(out var event2) && !event2.Anchor.IsEmpty) { anchorName = event2.Anchor; AliasState aliasState2 = state.Get(); if (!aliasState2.ContainsKey(anchorName)) { aliasState2[anchorName] = new ValuePromise(new YamlDotNet.Core.Events.AnchorAlias(anchorName)); } } object obj = innerDeserializer.DeserializeValue(parser, expectedType, state, nestedObjectDeserializer); if (!anchorName.IsEmpty) { AliasState aliasState3 = state.Get(); if (!aliasState3.TryGetValue(anchorName, out ValuePromise value2)) { aliasState3.Add(anchorName, new ValuePromise(obj)); } else if (!value2.HasValue) { value2.Value = obj; } else { aliasState3[anchorName] = new ValuePromise(obj); } } return obj; } } internal sealed class NodeValueDeserializer : IValueDeserializer { private readonly IList deserializers; private readonly IList typeResolvers; private readonly ITypeConverter typeConverter; private readonly INamingConvention enumNamingConvention; private readonly ITypeInspector typeInspector; public NodeValueDeserializer(IList deserializers, IList typeResolvers, ITypeConverter typeConverter, INamingConvention enumNamingConvention, ITypeInspector typeInspector) { this.deserializers = deserializers ?? throw new ArgumentNullException("deserializers"); this.typeResolvers = typeResolvers ?? throw new ArgumentNullException("typeResolvers"); this.typeConverter = typeConverter ?? throw new ArgumentNullException("typeConverter"); this.enumNamingConvention = enumNamingConvention ?? throw new ArgumentNullException("enumNamingConvention"); this.typeInspector = typeInspector; } public object? DeserializeValue(IParser parser, Type expectedType, SerializerState state, IValueDeserializer nestedObjectDeserializer) { parser.Accept(out var @event); Type typeFromEvent = GetTypeFromEvent(@event, expectedType); ObjectDeserializer rootDeserializer = (Type x) => DeserializeValue(parser, x, state, nestedObjectDeserializer); try { foreach (INodeDeserializer deserializer in deserializers) { if (deserializer.Deserialize(parser, typeFromEvent, (IParser r, Type t) => nestedObjectDeserializer.DeserializeValue(r, t, state, nestedObjectDeserializer), out object value, rootDeserializer)) { return typeConverter.ChangeType(value, expectedType, enumNamingConvention, typeInspector); } } } catch (YamlException) { throw; } catch (Exception innerException) { throw new YamlException(@event?.Start ?? Mark.Empty, @event?.End ?? Mark.Empty, "Exception during deserialization", innerException); } throw new YamlException(@event?.Start ?? Mark.Empty, @event?.End ?? Mark.Empty, "No node deserializer was able to deserialize the node into type " + expectedType.AssemblyQualifiedName); } private Type GetTypeFromEvent(NodeEvent? nodeEvent, Type currentType) { foreach (INodeTypeResolver typeResolver in typeResolvers) { if (typeResolver.Resolve(nodeEvent, ref currentType)) { break; } } return currentType; } } } namespace YamlDotNet.Serialization.Utilities { internal interface IPostDeserializationCallback { void OnDeserialization(); } internal interface ITypeConverter { object? ChangeType(object? value, Type expectedType, INamingConvention enumNamingConvention, ITypeInspector typeInspector); } internal class NullTypeConverter : ITypeConverter { public object? ChangeType(object? value, Type expectedType, INamingConvention enumNamingConvention, ITypeInspector typeInspector) { return value; } } internal sealed class ObjectAnchorCollection { private readonly Dictionary objectsByAnchor = new Dictionary(); private readonly Dictionary anchorsByObject = new Dictionary(); public object this[string anchor] { get { if (objectsByAnchor.TryGetValue(anchor, out object value)) { return value; } throw new AnchorNotFoundException("The anchor '" + anchor + "' does not exists"); } } public void Add(string anchor, object @object) { objectsByAnchor.Add(anchor, @object); if (@object != null) { anchorsByObject.Add(@object, anchor); } } public bool TryGetAnchor(object @object, [MaybeNullWhen(false)] out string? anchor) { return anchorsByObject.TryGetValue(@object, out anchor); } } internal class ReflectionTypeConverter : ITypeConverter { public object? ChangeType(object? value, Type expectedType, ITypeInspector typeInspector) { return ChangeType(value, expectedType, NullNamingConvention.Instance, typeInspector); } public object? ChangeType(object? value, Type expectedType, INamingConvention enumNamingConvention, ITypeInspector typeInspector) { return TypeConverter.ChangeType(value, expectedType, enumNamingConvention, typeInspector); } } internal sealed class SerializerState : IDisposable { private readonly Dictionary items = new Dictionary(); public T Get() where T : class, new() { if (!items.TryGetValue(typeof(T), out object value)) { value = new T(); items.Add(typeof(T), value); } return (T)value; } public void OnDeserialization() { foreach (IPostDeserializationCallback item in items.Values.OfType()) { item.OnDeserialization(); } } public void Dispose() { foreach (IDisposable item in items.Values.OfType()) { item.Dispose(); } } } internal static class StringExtensions { private static string ToCamelOrPascalCase(string str, Func firstLetterTransform) { string text = Regex.Replace(str, "([_\\-])(?[a-z])", (Match match) => match.Groups["char"].Value.ToUpperInvariant(), RegexOptions.IgnoreCase); return firstLetterTransform(text[0]) + text.Substring(1); } public static string ToCamelCase(this string str) { return ToCamelOrPascalCase(str, char.ToLowerInvariant); } public static string ToPascalCase(this string str) { return ToCamelOrPascalCase(str, char.ToUpperInvariant); } public static string FromCamelCase(this string str, string separator) { str = char.ToLower(str[0], CultureInfo.InvariantCulture) + str.Substring(1); str = Regex.Replace(str.ToCamelCase(), "(?[A-Z])", (Match match) => separator + match.Groups["char"].Value.ToLowerInvariant()); return str; } } internal static class TypeConverter { public static T ChangeType(object? value, INamingConvention enumNamingConvention, ITypeInspector typeInspector) { return (T)ChangeType(value, typeof(T), enumNamingConvention, typeInspector); } public static object? ChangeType(object? value, Type destinationType, INamingConvention enumNamingConvention, ITypeInspector typeInspector) { return ChangeType(value, destinationType, CultureInfo.InvariantCulture, enumNamingConvention, typeInspector); } public static object? ChangeType(object? value, Type destinationType, IFormatProvider provider, INamingConvention enumNamingConvention, ITypeInspector typeInspector) { return ChangeType(value, destinationType, new CultureInfoAdapter(CultureInfo.CurrentCulture, provider), enumNamingConvention, typeInspector); } public static object? ChangeType(object? value, Type destinationType, CultureInfo culture, INamingConvention enumNamingConvention, ITypeInspector typeInspector) { if (value == null || value.IsDbNull()) { if (!destinationType.IsValueType()) { return null; } return Activator.CreateInstance(destinationType); } Type type = value.GetType(); if (destinationType == type || destinationType.IsAssignableFrom(type)) { return value; } if (destinationType.IsGenericType()) { Type genericTypeDefinition = destinationType.GetGenericTypeDefinition(); if (genericTypeDefinition == typeof(Nullable<>) || FsharpHelper.IsOptionType(genericTypeDefinition)) { Type destinationType2 = destinationType.GetGenericArguments()[0]; object obj = ChangeType(value, destinationType2, culture, enumNamingConvention, typeInspector); return Activator.CreateInstance(destinationType, obj); } } if (destinationType.IsEnum()) { object result = value; if (value is string value2) { string name = enumNamingConvention.Reverse(value2); name = typeInspector.GetEnumName(destinationType, name); result = Enum.Parse(destinationType, name, ignoreCase: true); } return result; } if (destinationType == typeof(bool)) { if ("0".Equals(value)) { return false; } if ("1".Equals(value)) { return true; } } System.ComponentModel.TypeConverter converter = TypeDescriptor.GetConverter(type); if (converter != null && converter.CanConvertTo(destinationType)) { return converter.ConvertTo(null, culture, value, destinationType); } System.ComponentModel.TypeConverter converter2 = TypeDescriptor.GetConverter(destinationType); if (converter2 != null && converter2.CanConvertFrom(type)) { return converter2.ConvertFrom(null, culture, value); } Type[] array = new Type[2] { type, destinationType }; foreach (Type type2 in array) { foreach (MethodInfo publicStaticMethod2 in type2.GetPublicStaticMethods()) { if (!publicStaticMethod2.IsSpecialName || (!(publicStaticMethod2.Name == "op_Implicit") && !(publicStaticMethod2.Name == "op_Explicit")) || !destinationType.IsAssignableFrom(publicStaticMethod2.ReturnParameter.ParameterType)) { continue; } ParameterInfo[] parameters = publicStaticMethod2.GetParameters(); if (parameters.Length == 1 && parameters[0].ParameterType.IsAssignableFrom(type)) { try { return publicStaticMethod2.Invoke(null, new object[1] { value }); } catch (TargetInvocationException ex) { throw ex.InnerException; } } } } if (type == typeof(string)) { try { MethodInfo publicStaticMethod = destinationType.GetPublicStaticMethod("Parse", typeof(string), typeof(IFormatProvider)); if (publicStaticMethod != null) { return publicStaticMethod.Invoke(null, new object[2] { value, culture }); } publicStaticMethod = destinationType.GetPublicStaticMethod("Parse", typeof(string)); if (publicStaticMethod != null) { return publicStaticMethod.Invoke(null, new object[1] { value }); } } catch (TargetInvocationException ex2) { throw ex2.InnerException; } } if (destinationType == typeof(TimeSpan)) { return TimeSpan.Parse((string)ChangeType(value, typeof(string), CultureInfo.InvariantCulture, enumNamingConvention, typeInspector), CultureInfo.InvariantCulture); } return Convert.ChangeType(value, destinationType, CultureInfo.InvariantCulture); } public static void RegisterTypeConverter() where TConverter : System.ComponentModel.TypeConverter { if (!TypeDescriptor.GetAttributes(typeof(TConvertible)).OfType().Any((TypeConverterAttribute a) => a.ConverterTypeName == typeof(TConverter).AssemblyQualifiedName)) { TypeDescriptor.AddAttributes(typeof(TConvertible), new TypeConverterAttribute(typeof(TConverter))); } } } internal sealed class TypeConverterCache { private readonly IYamlTypeConverter[] typeConverters; private readonly ConcurrentDictionary cache = new ConcurrentDictionary(); public TypeConverterCache(IEnumerable? typeConverters) : this(typeConverters?.ToArray() ?? Array.Empty()) { } public TypeConverterCache(IYamlTypeConverter[] typeConverters) { this.typeConverters = typeConverters; } public bool TryGetConverterForType(Type type, [NotNullWhen(true)] out IYamlTypeConverter? typeConverter) { (bool, IYamlTypeConverter) orAdd = DictionaryExtensions.GetOrAdd(cache, type, (Type t, IYamlTypeConverter[] tc) => LookupTypeConverter(t, tc), typeConverters); typeConverter = orAdd.Item2; return orAdd.Item1; } public IYamlTypeConverter GetConverterByType(Type converter) { IYamlTypeConverter[] array = typeConverters; foreach (IYamlTypeConverter yamlTypeConverter in array) { if (yamlTypeConverter.GetType() == converter) { return yamlTypeConverter; } } throw new ArgumentException("IYamlTypeConverter of type " + converter.FullName + " not found", "converter"); } private static (bool HasMatch, IYamlTypeConverter? TypeConverter) LookupTypeConverter(Type type, IYamlTypeConverter[] typeConverters) { foreach (IYamlTypeConverter yamlTypeConverter in typeConverters) { if (yamlTypeConverter.Accepts(type)) { return (HasMatch: true, TypeConverter: yamlTypeConverter); } } return (HasMatch: false, TypeConverter: null); } } } namespace YamlDotNet.Serialization.TypeResolvers { internal sealed class DynamicTypeResolver : ITypeResolver { public Type Resolve(Type staticType, object? actualValue) { if (actualValue == null) { return staticType; } return actualValue.GetType(); } } internal class StaticTypeResolver : ITypeResolver { public virtual Type Resolve(Type staticType, object? actualValue) { if (actualValue != null) { if (actualValue.GetType().IsEnum) { return staticType; } switch (actualValue.GetType().GetTypeCode()) { case TypeCode.Boolean: return typeof(bool); case TypeCode.Char: return typeof(char); case TypeCode.SByte: return typeof(sbyte); case TypeCode.Byte: return typeof(byte); case TypeCode.Int16: return typeof(short); case TypeCode.UInt16: return typeof(ushort); case TypeCode.Int32: return typeof(int); case TypeCode.UInt32: return typeof(uint); case TypeCode.Int64: return typeof(long); case TypeCode.UInt64: return typeof(ulong); case TypeCode.Single: return typeof(float); case TypeCode.Double: return typeof(double); case TypeCode.Decimal: return typeof(decimal); case TypeCode.String: return typeof(string); case TypeCode.DateTime: return typeof(DateTime); } } return staticType; } } } namespace YamlDotNet.Serialization.TypeInspectors { internal class CachedTypeInspector : TypeInspectorSkeleton { private readonly ITypeInspector innerTypeDescriptor; private readonly ConcurrentDictionary> cache = new ConcurrentDictionary>(); private readonly ConcurrentDictionary> enumNameCache = new ConcurrentDictionary>(); private readonly ConcurrentDictionary enumValueCache = new ConcurrentDictionary(); public CachedTypeInspector(ITypeInspector innerTypeDescriptor) { this.innerTypeDescriptor = innerTypeDescriptor ?? throw new ArgumentNullException("innerTypeDescriptor"); } public override string GetEnumName(Type enumType, string name) { ConcurrentDictionary orAdd = enumNameCache.GetOrAdd(enumType, (Type _) => new ConcurrentDictionary()); return DictionaryExtensions.GetOrAdd(orAdd, name, delegate(string n, (Type enumType, ITypeInspector innerTypeDescriptor) context) { var (enumType2, typeInspector) = context; return typeInspector.GetEnumName(enumType2, n); }, (enumType, innerTypeDescriptor)); } public override string GetEnumValue(object enumValue) { return DictionaryExtensions.GetOrAdd(enumValueCache, enumValue, delegate(object _, (object enumValue, ITypeInspector innerTypeDescriptor) context) { var (enumValue2, typeInspector) = context; return typeInspector.GetEnumValue(enumValue2); }, (enumValue, innerTypeDescriptor)); } public override IEnumerable GetProperties(Type type, object? container) { return DictionaryExtensions.GetOrAdd(cache, type, delegate(Type t, (object container, ITypeInspector innerTypeDescriptor) context) { var (container2, typeInspector) = context; return typeInspector.GetProperties(t, container2).ToList(); }, (container, innerTypeDescriptor)); } } internal class CompositeTypeInspector : TypeInspectorSkeleton { private readonly IEnumerable typeInspectors; public CompositeTypeInspector(params ITypeInspector[] typeInspectors) : this((IEnumerable)typeInspectors) { } public CompositeTypeInspector(IEnumerable typeInspectors) { this.typeInspectors = typeInspectors?.ToList() ?? throw new ArgumentNullException("typeInspectors"); } public override string GetEnumName(Type enumType, string name) { foreach (ITypeInspector typeInspector in typeInspectors) { try { return typeInspector.GetEnumName(enumType, name); } catch { } } throw new ArgumentOutOfRangeException("enumType,name", "Name not found on enum type"); } public override string GetEnumValue(object enumValue) { if (enumValue == null) { throw new ArgumentNullException("enumValue"); } foreach (ITypeInspector typeInspector in typeInspectors) { try { return typeInspector.GetEnumValue(enumValue); } catch { } } throw new ArgumentOutOfRangeException("enumValue", $"Value not found for ({enumValue})"); } public override IEnumerable GetProperties(Type type, object? container) { return typeInspectors.SelectMany((ITypeInspector i) => i.GetProperties(type, container)); } } internal class NamingConventionTypeInspector : TypeInspectorSkeleton { private readonly ITypeInspector innerTypeDescriptor; private readonly INamingConvention namingConvention; public NamingConventionTypeInspector(ITypeInspector innerTypeDescriptor, INamingConvention namingConvention) { this.innerTypeDescriptor = innerTypeDescriptor ?? throw new ArgumentNullException("innerTypeDescriptor"); this.namingConvention = namingConvention ?? throw new ArgumentNullException("namingConvention"); } public override string GetEnumName(Type enumType, string name) { return innerTypeDescriptor.GetEnumName(enumType, name); } public override string GetEnumValue(object enumValue) { return innerTypeDescriptor.GetEnumValue(enumValue); } public override IEnumerable GetProperties(Type type, object? container) { return innerTypeDescriptor.GetProperties(type, container).Select(delegate(IPropertyDescriptor p) { YamlMemberAttribute customAttribute = p.GetCustomAttribute(); return (customAttribute != null && !customAttribute.ApplyNamingConventions) ? p : new PropertyDescriptor(p) { Name = namingConvention.Apply(p.Name) }; }); } } internal class ReadableAndWritablePropertiesTypeInspector : TypeInspectorSkeleton { private readonly ITypeInspector innerTypeDescriptor; public ReadableAndWritablePropertiesTypeInspector(ITypeInspector innerTypeDescriptor) { this.innerTypeDescriptor = innerTypeDescriptor ?? throw new ArgumentNullException("innerTypeDescriptor"); } public override string GetEnumName(Type enumType, string name) { return innerTypeDescriptor.GetEnumName(enumType, name); } public override string GetEnumValue(object enumValue) { return innerTypeDescriptor.GetEnumValue(enumValue); } public override IEnumerable GetProperties(Type type, object? container) { return from p in innerTypeDescriptor.GetProperties(type, container) where p.CanWrite select p; } } internal class ReadableFieldsTypeInspector : ReflectionTypeInspector { protected class ReflectionFieldDescriptor : IPropertyDescriptor { private readonly FieldInfo fieldInfo; private readonly ITypeResolver typeResolver; public string Name => fieldInfo.Name; public bool Required => fieldInfo.IsRequired(); public Type Type => fieldInfo.FieldType; public Type? ConverterType { get; } public Type? TypeOverride { get; set; } public bool AllowNulls => fieldInfo.AcceptsNull(); public int Order { get; set; } public bool CanWrite => !fieldInfo.IsInitOnly; public ScalarStyle ScalarStyle { get; set; } public ReflectionFieldDescriptor(FieldInfo fieldInfo, ITypeResolver typeResolver) { this.fieldInfo = fieldInfo; this.typeResolver = typeResolver; YamlConverterAttribute customAttribute = fieldInfo.GetCustomAttribute(); if (customAttribute != null) { ConverterType = customAttribute.ConverterType; } ScalarStyle = ScalarStyle.Any; } public void Write(object target, object? value) { fieldInfo.SetValue(target, value); } public T? GetCustomAttribute() where T : Attribute { object[] customAttributes = fieldInfo.GetCustomAttributes(typeof(T), inherit: true); return (T)customAttributes.FirstOrDefault(); } public IObjectDescriptor Read(object target) { object value = fieldInfo.GetValue(target); Type type = TypeOverride ?? typeResolver.Resolve(Type, value); return new ObjectDescriptor(value, type, Type, ScalarStyle); } } private readonly ITypeResolver typeResolver; public ReadableFieldsTypeInspector(ITypeResolver typeResolver) { this.typeResolver = typeResolver ?? throw new ArgumentNullException("typeResolver"); } public override IEnumerable GetProperties(Type type, object? container) { return type.GetPublicFields().Select((Func)((FieldInfo p) => new ReflectionFieldDescriptor(p, typeResolver))); } } internal class ReadablePropertiesTypeInspector : ReflectionTypeInspector { protected class ReflectionPropertyDescriptor : IPropertyDescriptor { private readonly PropertyInfo propertyInfo; private readonly ITypeResolver typeResolver; public string Name => propertyInfo.Name; public bool Required => propertyInfo.IsRequired(); public Type Type => propertyInfo.PropertyType; public Type? TypeOverride { get; set; } public Type? ConverterType { get; set; } public bool AllowNulls => propertyInfo.AcceptsNull(); public int Order { get; set; } public bool CanWrite => propertyInfo.CanWrite; public ScalarStyle ScalarStyle { get; set; } public ReflectionPropertyDescriptor(PropertyInfo propertyInfo, ITypeResolver typeResolver) { this.propertyInfo = propertyInfo ?? throw new ArgumentNullException("propertyInfo"); this.typeResolver = typeResolver ?? throw new ArgumentNullException("typeResolver"); ScalarStyle = ScalarStyle.Any; YamlConverterAttribute customAttribute = propertyInfo.GetCustomAttribute(); if (customAttribute != null) { ConverterType = customAttribute.ConverterType; } } public void Write(object target, object? value) { propertyInfo.SetValue(target, value, null); } public T? GetCustomAttribute() where T : Attribute { Attribute[] allCustomAttributes = propertyInfo.GetAllCustomAttributes(); return (T)allCustomAttributes.FirstOrDefault(); } public IObjectDescriptor Read(object target) { object obj = propertyInfo.ReadValue(target); Type type = TypeOverride ?? typeResolver.Resolve(Type, obj); return new ObjectDescriptor(obj, type, Type, ScalarStyle); } } private readonly ITypeResolver typeResolver; private readonly bool includeNonPublicProperties; public ReadablePropertiesTypeInspector(ITypeResolver typeResolver) : this(typeResolver, includeNonPublicProperties: false) { } public ReadablePropertiesTypeInspector(ITypeResolver typeResolver, bool includeNonPublicProperties) { this.typeResolver = typeResolver ?? throw new ArgumentNullException("typeResolver"); this.includeNonPublicProperties = includeNonPublicProperties; } private static bool IsValidProperty(PropertyInfo property) { if (property.CanRead) { return property.GetGetMethod(nonPublic: true).GetParameters().Length == 0; } return false; } public override IEnumerable GetProperties(Type type, object? container) { return type.GetProperties(includeNonPublicProperties).Where(IsValidProperty).Select((Func)((PropertyInfo p) => new ReflectionPropertyDescriptor(p, typeResolver))); } } internal abstract class ReflectionTypeInspector : TypeInspectorSkeleton { public override string GetEnumName(Type enumType, string name) { return name; } public override string GetEnumValue(object enumValue) { if (enumValue == null) { return string.Empty; } return enumValue.ToString(); } } internal abstract class TypeInspectorSkeleton : ITypeInspector { public abstract string GetEnumName(Type enumType, string name); public abstract string GetEnumValue(object enumValue); public abstract IEnumerable GetProperties(Type type, object? container); public IPropertyDescriptor GetProperty(Type type, object? container, string name, [MaybeNullWhen(true)] bool ignoreUnmatched, bool caseInsensitivePropertyMatching) { IEnumerable enumerable = ((!caseInsensitivePropertyMatching) ? (from p in GetProperties(type, container) where p.Name == name select p) : (from p in GetProperties(type, container) where p.Name.Equals(name, StringComparison.OrdinalIgnoreCase) select p)); using IEnumerator enumerator = enumerable.GetEnumerator(); if (!enumerator.MoveNext()) { if (ignoreUnmatched) { return null; } throw new SerializationException("Property '" + name + "' not found on type '" + type.FullName + "'."); } IPropertyDescriptor current = enumerator.Current; if (enumerator.MoveNext()) { throw new SerializationException("Multiple properties with the name/alias '" + name + "' already exists on type '" + type.FullName + "', maybe you're misusing YamlAlias or maybe you are using the wrong naming convention? The matching properties are: " + string.Join(", ", enumerable.Select((IPropertyDescriptor p) => p.Name).ToArray())); } return current; } } internal class WritablePropertiesTypeInspector : ReflectionTypeInspector { protected class ReflectionPropertyDescriptor : IPropertyDescriptor { private readonly PropertyInfo propertyInfo; private readonly ITypeResolver typeResolver; public string Name => propertyInfo.Name; public bool Required => propertyInfo.IsRequired(); public Type Type => propertyInfo.PropertyType; public Type? TypeOverride { get; set; } public Type? ConverterType { get; set; } public bool AllowNulls => propertyInfo.AcceptsNull(); public int Order { get; set; } public bool CanWrite => propertyInfo.CanWrite; public ScalarStyle ScalarStyle { get; set; } public ReflectionPropertyDescriptor(PropertyInfo propertyInfo, ITypeResolver typeResolver) { this.propertyInfo = propertyInfo ?? throw new ArgumentNullException("propertyInfo"); this.typeResolver = typeResolver ?? throw new ArgumentNullException("typeResolver"); ScalarStyle = ScalarStyle.Any; YamlConverterAttribute customAttribute = propertyInfo.GetCustomAttribute(); if (customAttribute != null) { ConverterType = customAttribute.ConverterType; } } public void Write(object target, object? value) { propertyInfo.SetValue(target, value, null); } public T? GetCustomAttribute() where T : Attribute { Attribute[] allCustomAttributes = propertyInfo.GetAllCustomAttributes(); return (T)allCustomAttributes.FirstOrDefault(); } public IObjectDescriptor Read(object target) { object obj = propertyInfo.ReadValue(target); Type type = TypeOverride ?? typeResolver.Resolve(Type, obj); return new ObjectDescriptor(obj, type, Type, ScalarStyle); } } private readonly ITypeResolver typeResolver; private readonly bool includeNonPublicProperties; public WritablePropertiesTypeInspector(ITypeResolver typeResolver) : this(typeResolver, includeNonPublicProperties: false) { } public WritablePropertiesTypeInspector(ITypeResolver typeResolver, bool includeNonPublicProperties) { this.typeResolver = typeResolver ?? throw new ArgumentNullException("typeResolver"); this.includeNonPublicProperties = includeNonPublicProperties; } private static bool IsValidProperty(PropertyInfo property) { if (property.CanWrite) { return property.GetSetMethod(nonPublic: true).GetParameters().Length == 1; } return false; } public override IEnumerable GetProperties(Type type, object? container) { return type.GetProperties(includeNonPublicProperties).Where(IsValidProperty).Select((Func)((PropertyInfo p) => new ReflectionPropertyDescriptor(p, typeResolver))) .ToArray(); } } } namespace YamlDotNet.Serialization.Schemas { internal sealed class FailsafeSchema { public static class Tags { public static readonly TagName Map = new TagName("tag:yaml.org,2002:map"); public static readonly TagName Seq = new TagName("tag:yaml.org,2002:seq"); public static readonly TagName Str = new TagName("tag:yaml.org,2002:str"); } } internal sealed class JsonSchema { public static class Tags { public static readonly TagName Null = new TagName("tag:yaml.org,2002:null"); public static readonly TagName Bool = new TagName("tag:yaml.org,2002:bool"); public static readonly TagName Int = new TagName("tag:yaml.org,2002:int"); public static readonly TagName Float = new TagName("tag:yaml.org,2002:float"); } } internal sealed class CoreSchema { public static class Tags { } } internal sealed class DefaultSchema { public static class Tags { public static readonly TagName Timestamp = new TagName("tag:yaml.org,2002:timestamp"); } } } namespace YamlDotNet.Serialization.ObjectGraphVisitors { internal sealed class AnchorAssigner : PreProcessingPhaseObjectGraphVisitorSkeleton, IAliasProvider { private class AnchorAssignment { public AnchorName Anchor; } private readonly Dictionary assignments = new Dictionary(); private uint nextId; public AnchorAssigner(IEnumerable typeConverters) : base(typeConverters) { } protected override bool Enter(IObjectDescriptor value, ObjectSerializer serializer) { if (value.Value != null && assignments.TryGetValue(value.Value, out AnchorAssignment value2)) { if (value2.Anchor.IsEmpty) { value2.Anchor = new AnchorName("o" + nextId.ToString(CultureInfo.InvariantCulture)); nextId++; } return false; } return true; } protected override bool EnterMapping(IObjectDescriptor key, IObjectDescriptor value, ObjectSerializer serializer) { return true; } protected override bool EnterMapping(IPropertyDescriptor key, IObjectDescriptor value, ObjectSerializer serializer) { return true; } protected override void VisitScalar(IObjectDescriptor scalar, ObjectSerializer serializer) { } protected override void VisitMappingStart(IObjectDescriptor mapping, Type keyType, Type valueType, ObjectSerializer serializer) { VisitObject(mapping); } protected override void VisitMappingEnd(IObjectDescriptor mapping, ObjectSerializer serializer) { } protected override void VisitSequenceStart(IObjectDescriptor sequence, Type elementType, ObjectSerializer serializer) { VisitObject(sequence); } protected override void VisitSequenceEnd(IObjectDescriptor sequence, ObjectSerializer serializer) { } private void VisitObject(IObjectDescriptor value) { if (value.Value != null) { assignments.Add(value.Value, new AnchorAssignment()); } } AnchorName IAliasProvider.GetAlias(object target) { if (target != null && assignments.TryGetValue(target, out AnchorAssignment value)) { return value.Anchor; } return AnchorName.Empty; } } internal sealed class AnchorAssigningObjectGraphVisitor : ChainedObjectGraphVisitor { private readonly IEventEmitter eventEmitter; private readonly IAliasProvider aliasProvider; private readonly HashSet emittedAliases = new HashSet(); public AnchorAssigningObjectGraphVisitor(IObjectGraphVisitor nextVisitor, IEventEmitter eventEmitter, IAliasProvider aliasProvider) : base(nextVisitor) { this.eventEmitter = eventEmitter; this.aliasProvider = aliasProvider; } public override bool Enter(IPropertyDescriptor? propertyDescriptor, IObjectDescriptor value, IEmitter context, ObjectSerializer serializer) { if (value.Value != null) { AnchorName alias = aliasProvider.GetAlias(value.Value); if (!alias.IsEmpty && !emittedAliases.Add(alias)) { AliasEventInfo aliasEventInfo = new AliasEventInfo(value, alias); eventEmitter.Emit(aliasEventInfo, context); return aliasEventInfo.NeedsExpansion; } } return base.Enter(propertyDescriptor, value, context, serializer); } public override void VisitMappingStart(IObjectDescriptor mapping, Type keyType, Type valueType, IEmitter context, ObjectSerializer serializer) { AnchorName alias = aliasProvider.GetAlias(mapping.NonNullValue()); eventEmitter.Emit(new MappingStartEventInfo(mapping) { Anchor = alias }, context); } public override void VisitSequenceStart(IObjectDescriptor sequence, Type elementType, IEmitter context, ObjectSerializer serializer) { AnchorName alias = aliasProvider.GetAlias(sequence.NonNullValue()); eventEmitter.Emit(new SequenceStartEventInfo(sequence) { Anchor = alias }, context); } public override void VisitScalar(IObjectDescriptor scalar, IEmitter context, ObjectSerializer serializer) { ScalarEventInfo scalarEventInfo = new ScalarEventInfo(scalar); if (scalar.Value != null) { scalarEventInfo.Anchor = aliasProvider.GetAlias(scalar.Value); } eventEmitter.Emit(scalarEventInfo, context); } } internal abstract class ChainedObjectGraphVisitor : IObjectGraphVisitor { private readonly IObjectGraphVisitor nextVisitor; protected ChainedObjectGraphVisitor(IObjectGraphVisitor nextVisitor) { this.nextVisitor = nextVisitor; } public virtual bool Enter(IPropertyDescriptor? propertyDescriptor, IObjectDescriptor value, IEmitter context, ObjectSerializer serializer) { return nextVisitor.Enter(propertyDescriptor, value, context, serializer); } public virtual bool EnterMapping(IObjectDescriptor key, IObjectDescriptor value, IEmitter context, ObjectSerializer serializer) { return nextVisitor.EnterMapping(key, value, context, serializer); } public virtual bool EnterMapping(IPropertyDescriptor key, IObjectDescriptor value, IEmitter context, ObjectSerializer serializer) { return nextVisitor.EnterMapping(key, value, context, serializer); } public virtual void VisitScalar(IObjectDescriptor scalar, IEmitter context, ObjectSerializer serializer) { nextVisitor.VisitScalar(scalar, context, serializer); } public virtual void VisitMappingStart(IObjectDescriptor mapping, Type keyType, Type valueType, IEmitter context, ObjectSerializer serializer) { nextVisitor.VisitMappingStart(mapping, keyType, valueType, context, serializer); } public virtual void VisitMappingEnd(IObjectDescriptor mapping, IEmitter context, ObjectSerializer serializer) { nextVisitor.VisitMappingEnd(mapping, context, serializer); } public virtual void VisitSequenceStart(IObjectDescriptor sequence, Type elementType, IEmitter context, ObjectSerializer serializer) { nextVisitor.VisitSequenceStart(sequence, elementType, context, serializer); } public virtual void VisitSequenceEnd(IObjectDescriptor sequence, IEmitter context, ObjectSerializer serializer) { nextVisitor.VisitSequenceEnd(sequence, context, serializer); } } internal sealed class CommentsObjectGraphVisitor : ChainedObjectGraphVisitor { public CommentsObjectGraphVisitor(IObjectGraphVisitor nextVisitor) : base(nextVisitor) { } public override bool EnterMapping(IPropertyDescriptor key, IObjectDescriptor value, IEmitter context, ObjectSerializer serializer) { YamlMemberAttribute customAttribute = key.GetCustomAttribute(); if (customAttribute != null && customAttribute.Description != null) { context.Emit(new YamlDotNet.Core.Events.Comment(customAttribute.Description, isInline: false)); } return base.EnterMapping(key, value, context, serializer); } } internal sealed class CustomSerializationObjectGraphVisitor : ChainedObjectGraphVisitor { private readonly TypeConverterCache typeConverters; private readonly ObjectSerializer nestedObjectSerializer; public CustomSerializationObjectGraphVisitor(IObjectGraphVisitor nextVisitor, IEnumerable typeConverters, ObjectSerializer nestedObjectSerializer) : base(nextVisitor) { this.typeConverters = new TypeConverterCache(typeConverters); this.nestedObjectSerializer = nestedObjectSerializer; } public override bool Enter(IPropertyDescriptor? propertyDescriptor, IObjectDescriptor value, IEmitter context, ObjectSerializer serializer) { if (propertyDescriptor?.ConverterType != null) { IYamlTypeConverter converterByType = typeConverters.GetConverterByType(propertyDescriptor.ConverterType); converterByType.WriteYaml(context, value.Value, value.Type, serializer); return false; } if (typeConverters.TryGetConverterForType(value.Type, out IYamlTypeConverter typeConverter)) { typeConverter.WriteYaml(context, value.Value, value.Type, serializer); return false; } if (value.Value is IYamlConvertible yamlConvertible) { yamlConvertible.Write(context, nestedObjectSerializer); return false; } if (value.Value is IYamlSerializable yamlSerializable) { yamlSerializable.WriteYaml(context); return false; } return base.Enter(propertyDescriptor, value, context, serializer); } } internal sealed class DefaultExclusiveObjectGraphVisitor : ChainedObjectGraphVisitor { public DefaultExclusiveObjectGraphVisitor(IObjectGraphVisitor nextVisitor) : base(nextVisitor) { } private static object? GetDefault(Type type) { if (!type.IsValueType()) { return null; } return Activator.CreateInstance(type); } public override bool EnterMapping(IObjectDescriptor key, IObjectDescriptor value, IEmitter context, ObjectSerializer serializer) { if (!object.Equals(value.Value, GetDefault(value.Type))) { return base.EnterMapping(key, value, context, serializer); } return false; } public override bool EnterMapping(IPropertyDescriptor key, IObjectDescriptor value, IEmitter context, ObjectSerializer serializer) { DefaultValueAttribute customAttribute = key.GetCustomAttribute(); object objB = ((customAttribute != null) ? customAttribute.Value : GetDefault(key.Type)); if (!object.Equals(value.Value, objB)) { return base.EnterMapping(key, value, context, serializer); } return false; } } internal sealed class DefaultValuesObjectGraphVisitor : ChainedObjectGraphVisitor { private readonly DefaultValuesHandling handling; private readonly IObjectFactory factory; public DefaultValuesObjectGraphVisitor(DefaultValuesHandling handling, IObjectGraphVisitor nextVisitor, IObjectFactory factory) : base(nextVisitor) { this.handling = handling; this.factory = factory; } private object? GetDefault(Type type) { return factory.CreatePrimitive(type); } public override bool EnterMapping(IPropertyDescriptor key, IObjectDescriptor value, IEmitter context, ObjectSerializer serializer) { DefaultValuesHandling defaultValuesHandling = handling; YamlMemberAttribute customAttribute = key.GetCustomAttribute(); if (customAttribute != null && customAttribute.IsDefaultValuesHandlingSpecified) { defaultValuesHandling = customAttribute.DefaultValuesHandling; } if ((defaultValuesHandling & DefaultValuesHandling.OmitNull) != DefaultValuesHandling.Preserve && value.Value == null) { return false; } if ((defaultValuesHandling & DefaultValuesHandling.OmitEmptyCollections) != DefaultValuesHandling.Preserve && value.Value is IEnumerable enumerable) { IEnumerator enumerator = enumerable.GetEnumerator(); bool flag = enumerator.MoveNext(); if (enumerator is IDisposable disposable) { disposable.Dispose(); } if (!flag) { return false; } } if ((defaultValuesHandling & DefaultValuesHandling.OmitDefaults) != DefaultValuesHandling.Preserve) { object objB = key.GetCustomAttribute()?.Value ?? GetDefault(key.Type); if (object.Equals(value.Value, objB)) { return false; } } return base.EnterMapping(key, value, context, serializer); } } internal sealed class EmittingObjectGraphVisitor : IObjectGraphVisitor { private readonly IEventEmitter eventEmitter; public EmittingObjectGraphVisitor(IEventEmitter eventEmitter) { this.eventEmitter = eventEmitter; } bool IObjectGraphVisitor.Enter(IPropertyDescriptor? propertyDescriptor, IObjectDescriptor value, IEmitter context, ObjectSerializer serializer) { return true; } bool IObjectGraphVisitor.EnterMapping(IObjectDescriptor key, IObjectDescriptor value, IEmitter context, ObjectSerializer serializer) { return true; } bool IObjectGraphVisitor.EnterMapping(IPropertyDescriptor key, IObjectDescriptor value, IEmitter context, ObjectSerializer serializer) { return true; } void IObjectGraphVisitor.VisitScalar(IObjectDescriptor scalar, IEmitter context, ObjectSerializer serializer) { eventEmitter.Emit(new ScalarEventInfo(scalar), context); } void IObjectGraphVisitor.VisitMappingStart(IObjectDescriptor mapping, Type keyType, Type valueType, IEmitter context, ObjectSerializer serializer) { eventEmitter.Emit(new MappingStartEventInfo(mapping), context); } void IObjectGraphVisitor.VisitMappingEnd(IObjectDescriptor mapping, IEmitter context, ObjectSerializer serializer) { eventEmitter.Emit(new MappingEndEventInfo(mapping), context); } void IObjectGraphVisitor.VisitSequenceStart(IObjectDescriptor sequence, Type elementType, IEmitter context, ObjectSerializer serializer) { eventEmitter.Emit(new SequenceStartEventInfo(sequence), context); } void IObjectGraphVisitor.VisitSequenceEnd(IObjectDescriptor sequence, IEmitter context, ObjectSerializer serializer) { eventEmitter.Emit(new SequenceEndEventInfo(sequence), context); } } internal abstract class PreProcessingPhaseObjectGraphVisitorSkeleton : IObjectGraphVisitor { protected readonly IEnumerable typeConverters; private readonly TypeConverterCache typeConverterCache; public PreProcessingPhaseObjectGraphVisitorSkeleton(IEnumerable typeConverters) { typeConverterCache = new TypeConverterCache((IYamlTypeConverter[])(this.typeConverters = typeConverters?.ToArray() ?? Array.Empty())); } bool IObjectGraphVisitor.Enter(IPropertyDescriptor? propertyDescriptor, IObjectDescriptor value, Nothing context, ObjectSerializer serializer) { if (typeConverterCache.TryGetConverterForType(value.Type, out IYamlTypeConverter _)) { return false; } if (value.Value is IYamlConvertible) { return false; } if (value.Value is IYamlSerializable) { return false; } return Enter(value, serializer); } bool IObjectGraphVisitor.EnterMapping(IPropertyDescriptor key, IObjectDescriptor value, Nothing context, ObjectSerializer serializer) { return EnterMapping(key, value, serializer); } bool IObjectGraphVisitor.EnterMapping(IObjectDescriptor key, IObjectDescriptor value, Nothing context, ObjectSerializer serializer) { return EnterMapping(key, value, serializer); } void IObjectGraphVisitor.VisitMappingEnd(IObjectDescriptor mapping, Nothing context, ObjectSerializer serializer) { VisitMappingEnd(mapping, serializer); } void IObjectGraphVisitor.VisitMappingStart(IObjectDescriptor mapping, Type keyType, Type valueType, Nothing context, ObjectSerializer serializer) { VisitMappingStart(mapping, keyType, valueType, serializer); } void IObjectGraphVisitor.VisitScalar(IObjectDescriptor scalar, Nothing context, ObjectSerializer serializer) { VisitScalar(scalar, serializer); } void IObjectGraphVisitor.VisitSequenceEnd(IObjectDescriptor sequence, Nothing context, ObjectSerializer serializer) { VisitSequenceEnd(sequence, serializer); } void IObjectGraphVisitor.VisitSequenceStart(IObjectDescriptor sequence, Type elementType, Nothing context, ObjectSerializer serializer) { VisitSequenceStart(sequence, elementType, serializer); } protected abstract bool Enter(IObjectDescriptor value, ObjectSerializer serializer); protected abstract bool EnterMapping(IPropertyDescriptor key, IObjectDescriptor value, ObjectSerializer serializer); protected abstract bool EnterMapping(IObjectDescriptor key, IObjectDescriptor value, ObjectSerializer serializer); protected abstract void VisitMappingEnd(IObjectDescriptor mapping, ObjectSerializer serializer); protected abstract void VisitMappingStart(IObjectDescriptor mapping, Type keyType, Type valueType, ObjectSerializer serializer); protected abstract void VisitScalar(IObjectDescriptor scalar, ObjectSerializer serializer); protected abstract void VisitSequenceEnd(IObjectDescriptor sequence, ObjectSerializer serializer); protected abstract void VisitSequenceStart(IObjectDescriptor sequence, Type elementType, ObjectSerializer serializer); } } namespace YamlDotNet.Serialization.ObjectGraphTraversalStrategies { internal class FullObjectGraphTraversalStrategy : IObjectGraphTraversalStrategy { protected readonly struct ObjectPathSegment { public readonly object Name; public readonly IObjectDescriptor Value; public ObjectPathSegment(object name, IObjectDescriptor value) { Name = name; Value = value; } } private readonly int maxRecursion; private readonly ITypeInspector typeDescriptor; private readonly ITypeResolver typeResolver; private readonly INamingConvention namingConvention; private readonly IObjectFactory objectFactory; public FullObjectGraphTraversalStrategy(ITypeInspector typeDescriptor, ITypeResolver typeResolver, int maxRecursion, INamingConvention namingConvention, IObjectFactory objectFactory) { if (maxRecursion <= 0) { throw new ArgumentOutOfRangeException("maxRecursion", maxRecursion, "maxRecursion must be greater than 1"); } this.typeDescriptor = typeDescriptor ?? throw new ArgumentNullException("typeDescriptor"); this.typeResolver = typeResolver ?? throw new ArgumentNullException("typeResolver"); this.maxRecursion = maxRecursion; this.namingConvention = namingConvention ?? throw new ArgumentNullException("namingConvention"); this.objectFactory = objectFactory ?? throw new ArgumentNullException("objectFactory"); } void IObjectGraphTraversalStrategy.Traverse(IObjectDescriptor graph, IObjectGraphVisitor visitor, TContext context, ObjectSerializer serializer) { Traverse(null, "", graph, visitor, context, new Stack(maxRecursion), serializer); } protected virtual void Traverse(IPropertyDescriptor? propertyDescriptor, object name, IObjectDescriptor value, IObjectGraphVisitor visitor, TContext context, Stack path, ObjectSerializer serializer) { if (path.Count >= maxRecursion) { StringBuilder stringBuilder = new StringBuilder(); stringBuilder.AppendLine("Too much recursion when traversing the object graph."); stringBuilder.AppendLine("The path to reach this recursion was:"); Stack> stack = new Stack>(path.Count); int num = 0; foreach (ObjectPathSegment item in path) { string text = item.Name?.ToString() ?? string.Empty; num = Math.Max(num, text.Length); stack.Push(new KeyValuePair(text, item.Value.Type.FullName)); } foreach (KeyValuePair item2 in stack) { stringBuilder.Append(" -> ").Append(item2.Key.PadRight(num)).Append(" [") .Append(item2.Value) .AppendLine("]"); } throw new MaximumRecursionLevelReachedException(stringBuilder.ToString()); } if (!visitor.Enter(propertyDescriptor, value, context, serializer)) { return; } path.Push(new ObjectPathSegment(name, value)); try { TypeCode typeCode = value.Type.GetTypeCode(); switch (typeCode) { case TypeCode.Boolean: case TypeCode.Char: case TypeCode.SByte: case TypeCode.Byte: case TypeCode.Int16: case TypeCode.UInt16: case TypeCode.Int32: case TypeCode.UInt32: case TypeCode.Int64: case TypeCode.UInt64: case TypeCode.Single: case TypeCode.Double: case TypeCode.Decimal: case TypeCode.DateTime: case TypeCode.String: visitor.VisitScalar(value, context, serializer); return; case TypeCode.Empty: throw new NotSupportedException($"TypeCode.{typeCode} is not supported."); } if (value.IsDbNull()) { visitor.VisitScalar(new ObjectDescriptor(null, typeof(object), typeof(object)), context, serializer); } if (value.Value == null || value.Type == typeof(TimeSpan)) { visitor.VisitScalar(value, context, serializer); return; } Type underlyingType = Nullable.GetUnderlyingType(value.Type); Type type = underlyingType ?? FsharpHelper.GetOptionUnderlyingType(value.Type); object obj = ((type != null) ? FsharpHelper.GetValue(value) : null); if (underlyingType != null) { Traverse(propertyDescriptor, "Value", new ObjectDescriptor(value.Value, underlyingType, value.Type, value.ScalarStyle), visitor, context, path, serializer); } else if (type != null && obj != null) { Traverse(propertyDescriptor, "Value", new ObjectDescriptor(FsharpHelper.GetValue(value), type, value.Type, value.ScalarStyle), visitor, context, path, serializer); } else { TraverseObject(propertyDescriptor, value, visitor, context, path, serializer); } } finally { path.Pop(); } } protected virtual void TraverseObject(IPropertyDescriptor? propertyDescriptor, IObjectDescriptor value, IObjectGraphVisitor visitor, TContext context, Stack path, ObjectSerializer serializer) { IDictionary dictionary; Type[] genericArguments; if (typeof(IDictionary).IsAssignableFrom(value.Type)) { TraverseDictionary(propertyDescriptor, value, visitor, typeof(object), typeof(object), context, path, serializer); } else if (objectFactory.GetDictionary(value, out dictionary, out genericArguments)) { TraverseDictionary(propertyDescriptor, new ObjectDescriptor(dictionary, value.Type, value.StaticType, value.ScalarStyle), visitor, genericArguments[0], genericArguments[1], context, path, serializer); } else if (typeof(IEnumerable).IsAssignableFrom(value.Type)) { TraverseList(propertyDescriptor, value, visitor, context, path, serializer); } else { TraverseProperties(value, visitor, context, path, serializer); } } protected virtual void TraverseDictionary(IPropertyDescriptor? propertyDescriptor, IObjectDescriptor dictionary, IObjectGraphVisitor visitor, Type keyType, Type valueType, TContext context, Stack path, ObjectSerializer serializer) { visitor.VisitMappingStart(dictionary, keyType, valueType, context, serializer); bool flag = dictionary.Type.FullName.Equals("System.Dynamic.ExpandoObject"); foreach (DictionaryEntry? item in (IDictionary)dictionary.NonNullValue()) { DictionaryEntry value = item.Value; object obj = (flag ? namingConvention.Apply(value.Key.ToString()) : value.Key); ObjectDescriptor objectDescriptor = GetObjectDescriptor(obj, keyType); ObjectDescriptor objectDescriptor2 = GetObjectDescriptor(value.Value, valueType); if (visitor.EnterMapping(objectDescriptor, objectDescriptor2, context, serializer)) { Traverse(propertyDescriptor, obj, objectDescriptor, visitor, context, path, serializer); Traverse(propertyDescriptor, obj, objectDescriptor2, visitor, context, path, serializer); } } visitor.VisitMappingEnd(dictionary, context, serializer); } private void TraverseList(IPropertyDescriptor propertyDescriptor, IObjectDescriptor value, IObjectGraphVisitor visitor, TContext context, Stack path, ObjectSerializer serializer) { Type valueType = objectFactory.GetValueType(value.Type); visitor.VisitSequenceStart(value, valueType, context, serializer); int num = 0; foreach (object item in (IEnumerable)value.NonNullValue()) { Traverse(propertyDescriptor, num, GetObjectDescriptor(item, valueType), visitor, context, path, serializer); num++; } visitor.VisitSequenceEnd(value, context, serializer); } protected virtual void TraverseProperties(IObjectDescriptor value, IObjectGraphVisitor visitor, TContext context, Stack path, ObjectSerializer serializer) { if (context.GetType() != typeof(Nothing)) { objectFactory.ExecuteOnSerializing(value.Value); } visitor.VisitMappingStart(value, typeof(string), typeof(object), context, serializer); object obj = value.NonNullValue(); foreach (IPropertyDescriptor property in typeDescriptor.GetProperties(value.Type, obj)) { IObjectDescriptor value2 = property.Read(obj); if (visitor.EnterMapping(property, value2, context, serializer)) { Traverse(null, property.Name, new ObjectDescriptor(property.Name, typeof(string), typeof(string), ScalarStyle.Plain), visitor, context, path, serializer); Traverse(property, property.Name, value2, visitor, context, path, serializer); } } visitor.VisitMappingEnd(value, context, serializer); if (context.GetType() != typeof(Nothing)) { objectFactory.ExecuteOnSerialized(value.Value); } } private ObjectDescriptor GetObjectDescriptor(object? value, Type staticType) { return new ObjectDescriptor(value, typeResolver.Resolve(staticType, value), staticType); } } internal class RoundtripObjectGraphTraversalStrategy : FullObjectGraphTraversalStrategy { private readonly TypeConverterCache converters; private readonly Settings settings; public RoundtripObjectGraphTraversalStrategy(IEnumerable converters, ITypeInspector typeDescriptor, ITypeResolver typeResolver, int maxRecursion, INamingConvention namingConvention, Settings settings, IObjectFactory factory) : base(typeDescriptor, typeResolver, maxRecursion, namingConvention, factory) { this.converters = new TypeConverterCache(converters); this.settings = settings; } protected override void TraverseProperties(IObjectDescriptor value, IObjectGraphVisitor visitor, TContext context, Stack path, ObjectSerializer serializer) { if (!value.Type.HasDefaultConstructor(settings.AllowPrivateConstructors) && !converters.TryGetConverterForType(value.Type, out IYamlTypeConverter _)) { throw new InvalidOperationException($"Type '{value.Type}' cannot be deserialized because it does not have a default constructor or a type converter."); } base.TraverseProperties(value, visitor, context, path, serializer); } } } namespace YamlDotNet.Serialization.ObjectFactories { internal class DefaultObjectFactory : ObjectFactoryBase { private readonly Dictionary> stateMethods = new Dictionary> { { typeof(YamlDotNet.Serialization.Callbacks.OnDeserializedAttribute), new ConcurrentDictionary() }, { typeof(YamlDotNet.Serialization.Callbacks.OnDeserializingAttribute), new ConcurrentDictionary() }, { typeof(YamlDotNet.Serialization.Callbacks.OnSerializedAttribute), new ConcurrentDictionary() }, { typeof(YamlDotNet.Serialization.Callbacks.OnSerializingAttribute), new ConcurrentDictionary() } }; private readonly Dictionary defaultGenericInterfaceImplementations = new Dictionary { { typeof(IEnumerable<>), typeof(List<>) }, { typeof(ICollection<>), typeof(List<>) }, { typeof(IList<>), typeof(List<>) }, { typeof(IDictionary<, >), typeof(Dictionary<, >) } }; private readonly Dictionary defaultNonGenericInterfaceImplementations = new Dictionary { { typeof(IEnumerable), typeof(List) }, { typeof(ICollection), typeof(List) }, { typeof(IList), typeof(List) }, { typeof(IDictionary), typeof(Dictionary) } }; private readonly Settings settings; public DefaultObjectFactory() : this(new Dictionary(), new Settings()) { } public DefaultObjectFactory(IDictionary mappings) : this(mappings, new Settings()) { } public DefaultObjectFactory(IDictionary mappings, Settings settings) { foreach (KeyValuePair mapping in mappings) { if (!mapping.Key.IsAssignableFrom(mapping.Value)) { throw new InvalidOperationException($"Type '{mapping.Value}' does not implement type '{mapping.Key}'."); } defaultNonGenericInterfaceImplementations.Add(mapping.Key, mapping.Value); } this.settings = settings; } public override object Create(Type type) { if (type.IsInterface()) { Type value2; if (type.IsGenericType()) { if (defaultGenericInterfaceImplementations.TryGetValue(type.GetGenericTypeDefinition(), out Type value)) { type = value.MakeGenericType(type.GetGenericArguments()); } } else if (defaultNonGenericInterfaceImplementations.TryGetValue(type, out value2)) { type = value2; } } try { return Activator.CreateInstance(type, settings.AllowPrivateConstructors); } catch (Exception innerException) { string message = "Failed to create an instance of type '" + type.FullName + "'."; throw new InvalidOperationException(message, innerException); } } public override void ExecuteOnDeserialized(object value) { ExecuteState(typeof(YamlDotNet.Serialization.Callbacks.OnDeserializedAttribute), value); } public override void ExecuteOnDeserializing(object value) { ExecuteState(typeof(YamlDotNet.Serialization.Callbacks.OnDeserializingAttribute), value); } public override void ExecuteOnSerialized(object value) { ExecuteState(typeof(YamlDotNet.Serialization.Callbacks.OnSerializedAttribute), value); } public override void ExecuteOnSerializing(object value) { ExecuteState(typeof(YamlDotNet.Serialization.Callbacks.OnSerializingAttribute), value); } private void ExecuteState(Type attributeType, object value) { if (value != null) { Type type = value.GetType(); MethodInfo[] array = GetStateMethods(attributeType, type); MethodInfo[] array2 = array; foreach (MethodInfo methodInfo in array2) { methodInfo.Invoke(value, null); } } } private MethodInfo[] GetStateMethods(Type attributeType, Type valueType) { ConcurrentDictionary concurrentDictionary = stateMethods[attributeType]; return concurrentDictionary.GetOrAdd(valueType, delegate(Type type) { MethodInfo[] methods = type.GetMethods(BindingFlags.Instance | BindingFlags.Public | BindingFlags.NonPublic); return methods.Where((MethodInfo x) => x.GetCustomAttributes(attributeType, inherit: true).Length != 0).ToArray(); }); } } internal sealed class LambdaObjectFactory : ObjectFactoryBase { private readonly Func factory; public LambdaObjectFactory(Func factory) { this.factory = factory ?? throw new ArgumentNullException("factory"); } public override object Create(Type type) { return factory(type); } } internal abstract class ObjectFactoryBase : IObjectFactory { public abstract object Create(Type type); public virtual object? CreatePrimitive(Type type) { if (!type.IsValueType()) { return null; } return Activator.CreateInstance(type); } public virtual void ExecuteOnDeserialized(object value) { } public virtual void ExecuteOnDeserializing(object value) { } public virtual void ExecuteOnSerialized(object value) { } public virtual void ExecuteOnSerializing(object value) { } public virtual bool GetDictionary(IObjectDescriptor descriptor, out IDictionary? dictionary, out Type[]? genericArguments) { Type implementationOfOpenGenericInterface = descriptor.Type.GetImplementationOfOpenGenericInterface(typeof(IDictionary<, >)); if (implementationOfOpenGenericInterface != null) { genericArguments = implementationOfOpenGenericInterface.GetGenericArguments(); object obj = Activator.CreateInstance(typeof(GenericDictionaryToNonGenericAdapter<, >).MakeGenericType(genericArguments), descriptor.Value); dictionary = obj as IDictionary; return true; } genericArguments = null; dictionary = null; return false; } public virtual Type GetValueType(Type type) { Type implementationOfOpenGenericInterface = type.GetImplementationOfOpenGenericInterface(typeof(IEnumerable<>)); return (implementationOfOpenGenericInterface != null) ? implementationOfOpenGenericInterface.GetGenericArguments()[0] : typeof(object); } } internal abstract class StaticObjectFactory : IObjectFactory { public abstract object Create(Type type); public abstract Array CreateArray(Type type, int count); public abstract bool IsDictionary(Type type); public abstract bool IsArray(Type type); public abstract bool IsList(Type type); public abstract Type GetKeyType(Type type); public abstract Type GetValueType(Type type); public virtual object? CreatePrimitive(Type type) { return Type.GetTypeCode(type) switch { TypeCode.Boolean => false, TypeCode.Byte => (byte)0, TypeCode.Int16 => (short)0, TypeCode.Int32 => 0, TypeCode.Int64 => 0L, TypeCode.SByte => (sbyte)0, TypeCode.UInt16 => (ushort)0, TypeCode.UInt32 => 0u, TypeCode.UInt64 => 0uL, TypeCode.Single => 0f, TypeCode.Double => 0.0, TypeCode.Decimal => 0m, TypeCode.Char => '\0', TypeCode.DateTime => default(DateTime), _ => null, }; } public bool GetDictionary(IObjectDescriptor descriptor, out IDictionary? dictionary, out Type[]? genericArguments) { dictionary = null; genericArguments = null; return false; } public abstract void ExecuteOnDeserializing(object value); public abstract void ExecuteOnDeserialized(object value); public abstract void ExecuteOnSerializing(object value); public abstract void ExecuteOnSerialized(object value); } } namespace YamlDotNet.Serialization.NodeTypeResolvers { internal sealed class DefaultContainersNodeTypeResolver : INodeTypeResolver { bool INodeTypeResolver.Resolve(NodeEvent? nodeEvent, ref Type currentType) { if (currentType == typeof(object)) { if (nodeEvent is SequenceStart) { currentType = typeof(List); return true; } if (nodeEvent is MappingStart) { currentType = typeof(Dictionary); return true; } } return false; } } internal class MappingNodeTypeResolver : INodeTypeResolver { private readonly IDictionary mappings; public MappingNodeTypeResolver(IDictionary mappings) { if (mappings == null) { throw new ArgumentNullException("mappings"); } foreach (KeyValuePair mapping in mappings) { if (!mapping.Key.IsAssignableFrom(mapping.Value)) { throw new InvalidOperationException($"Type '{mapping.Value}' does not implement type '{mapping.Key}'."); } } this.mappings = mappings; } public bool Resolve(NodeEvent? nodeEvent, ref Type currentType) { if (mappings.TryGetValue(currentType, out Type value)) { currentType = value; return true; } return false; } } internal class PreventUnknownTagsNodeTypeResolver : INodeTypeResolver { bool INodeTypeResolver.Resolve(NodeEvent? nodeEvent, ref Type currentType) { if (nodeEvent != null && !nodeEvent.Tag.IsEmpty) { throw new YamlException(nodeEvent.Start, nodeEvent.End, $"Encountered an unresolved tag '{nodeEvent.Tag}'"); } return false; } } internal sealed class TagNodeTypeResolver : INodeTypeResolver { private readonly IDictionary tagMappings; public TagNodeTypeResolver(IDictionary tagMappings) { this.tagMappings = tagMappings ?? throw new ArgumentNullException("tagMappings"); } bool INodeTypeResolver.Resolve(NodeEvent? nodeEvent, ref Type currentType) { if (nodeEvent != null && !nodeEvent.Tag.IsEmpty && tagMappings.TryGetValue(nodeEvent.Tag, out Type value)) { currentType = value; return true; } return false; } } [Obsolete("The mechanism that this class uses to specify type names is non-standard. Register the tags explicitly instead of using this convention.")] internal sealed class TypeNameInTagNodeTypeResolver : INodeTypeResolver { bool INodeTypeResolver.Resolve(NodeEvent? nodeEvent, ref Type currentType) { if (nodeEvent != null && !nodeEvent.Tag.IsEmpty) { Type type = Type.GetType(nodeEvent.Tag.Value.Substring(1), throwOnError: false); if (type != null) { currentType = type; return true; } } return false; } } internal sealed class YamlConvertibleTypeResolver : INodeTypeResolver { public bool Resolve(NodeEvent? nodeEvent, ref Type currentType) { return typeof(IYamlConvertible).IsAssignableFrom(currentType); } } internal sealed class YamlSerializableTypeResolver : INodeTypeResolver { public bool Resolve(NodeEvent? nodeEvent, ref Type currentType) { return typeof(IYamlSerializable).IsAssignableFrom(currentType); } } } namespace YamlDotNet.Serialization.NodeDeserializers { internal sealed class ArrayNodeDeserializer : INodeDeserializer { private sealed class ArrayList : IList, ICollection, IEnumerable { private object?[] data; public bool IsFixedSize => false; public bool IsReadOnly => false; public object? this[int index] { get { return data[index]; } set { data[index] = value; } } public int Count { get; private set; } public bool IsSynchronized => false; public object SyncRoot => data; public ArrayList() { Clear(); } public int Add(object? value) { if (Count == data.Length) { Array.Resize(ref data, data.Length * 2); } data[Count] = value; return Count++; } public void Clear() { data = new object[10]; Count = 0; } bool IList.Contains(object? value) { throw new NotSupportedException(); } int IList.IndexOf(object? value) { throw new NotSupportedException(); } void IList.Insert(int index, object? value) { throw new NotSupportedException(); } void IList.Remove(object? value) { throw new NotSupportedException(); } void IList.RemoveAt(int index) { throw new NotSupportedException(); } public void CopyTo(Array array, int index) { Array.Copy(data, 0, array, index, Count); } public IEnumerator GetEnumerator() { int i = 0; while (i < Count) { yield return data[i]; int num = i + 1; i = num; } } } private readonly INamingConvention enumNamingConvention; private readonly ITypeInspector typeInspector; public ArrayNodeDeserializer(INamingConvention enumNamingConvention, ITypeInspector typeInspector) { this.enumNamingConvention = enumNamingConvention; this.typeInspector = typeInspector; } public bool Deserialize(IParser parser, Type expectedType, Func nestedObjectDeserializer, out object? value, ObjectDeserializer rootDeserializer) { if (!expectedType.IsArray) { value = false; return false; } Type itemType = expectedType.GetElementType(); ArrayList arrayList = new ArrayList(); Array array = null; CollectionNodeDeserializer.DeserializeHelper(itemType, parser, nestedObjectDeserializer, arrayList, canUpdate: true, enumNamingConvention, typeInspector, PromiseResolvedHandler); array = Array.CreateInstance(itemType, arrayList.Count); arrayList.CopyTo(array, 0); value = array; return true; void PromiseResolvedHandler(int index, object? value2) { if (array == null) { throw new InvalidOperationException("Destination array is still null"); } array.SetValue(YamlDotNet.Serialization.Utilities.TypeConverter.ChangeType(value2, itemType, enumNamingConvention, typeInspector), index); } } } internal abstract class CollectionDeserializer { protected static void DeserializeHelper(Type tItem, IParser parser, Func nestedObjectDeserializer, IList result, bool canUpdate, IObjectFactory objectFactory) { parser.Consume(); SequenceEnd @event; while (!parser.TryConsume(out @event)) { ParsingEvent current = parser.Current; object obj = nestedObjectDeserializer(parser, tItem); if (obj is IValuePromise valuePromise) { if (!canUpdate) { throw new ForwardAnchorNotSupportedException(current?.Start ?? Mark.Empty, current?.End ?? Mark.Empty, "Forward alias references are not allowed because this type does not implement IList<>"); } int index = result.Add(objectFactory.CreatePrimitive(tItem)); valuePromise.ValueAvailable += delegate(object? v) { result[index] = v; }; } else { result.Add(obj); } } } } internal sealed class CollectionNodeDeserializer : INodeDeserializer { private readonly IObjectFactory objectFactory; private readonly INamingConvention enumNamingConvention; private readonly ITypeInspector typeInspector; public CollectionNodeDeserializer(IObjectFactory objectFactory, INamingConvention enumNamingConvention, ITypeInspector typeInspector) { this.objectFactory = objectFactory ?? throw new ArgumentNullException("objectFactory"); this.enumNamingConvention = enumNamingConvention; this.typeInspector = typeInspector; } public bool Deserialize(IParser parser, Type expectedType, Func nestedObjectDeserializer, out object? value, ObjectDeserializer rootDeserializer) { bool canUpdate = true; Type implementationOfOpenGenericInterface = expectedType.GetImplementationOfOpenGenericInterface(typeof(ICollection<>)); Type type; IList list; if (implementationOfOpenGenericInterface != null) { Type[] genericArguments = implementationOfOpenGenericInterface.GetGenericArguments(); type = genericArguments[0]; value = objectFactory.Create(expectedType); list = value as IList; if (list == null) { Type implementationOfOpenGenericInterface2 = expectedType.GetImplementationOfOpenGenericInterface(typeof(IList<>)); canUpdate = implementationOfOpenGenericInterface2 != null; list = (IList)Activator.CreateInstance(typeof(GenericCollectionToNonGenericAdapter<>).MakeGenericType(type), value); } } else { if (!typeof(IList).IsAssignableFrom(expectedType)) { value = null; return false; } type = typeof(object); value = objectFactory.Create(expectedType); list = (IList)value; } DeserializeHelper(type, parser, nestedObjectDeserializer, list, canUpdate, enumNamingConvention, typeInspector); return true; } internal static void DeserializeHelper(Type tItem, IParser parser, Func nestedObjectDeserializer, IList result, bool canUpdate, INamingConvention enumNamingConvention, ITypeInspector typeInspector, Action? promiseResolvedHandler = null) { parser.Consume(); SequenceEnd @event; while (!parser.TryConsume(out @event)) { ParsingEvent current = parser.Current; object obj = nestedObjectDeserializer(parser, tItem); if (obj is IValuePromise valuePromise) { if (!canUpdate) { throw new ForwardAnchorNotSupportedException(current?.Start ?? Mark.Empty, current?.End ?? Mark.Empty, "Forward alias references are not allowed because this type does not implement IList<>"); } int index = result.Add(tItem.IsValueType() ? Activator.CreateInstance(tItem) : null); if (promiseResolvedHandler != null) { valuePromise.ValueAvailable += delegate(object? v) { promiseResolvedHandler(index, v); }; } else { valuePromise.ValueAvailable += delegate(object? v) { result[index] = YamlDotNet.Serialization.Utilities.TypeConverter.ChangeType(v, tItem, enumNamingConvention, typeInspector); }; } } else { result.Add(YamlDotNet.Serialization.Utilities.TypeConverter.ChangeType(obj, tItem, enumNamingConvention, typeInspector)); } } } } internal abstract class DictionaryDeserializer { private readonly bool duplicateKeyChecking; public DictionaryDeserializer(bool duplicateKeyChecking) { this.duplicateKeyChecking = duplicateKeyChecking; } private void TryAssign(IDictionary result, object key, object value, MappingStart propertyName) { if (duplicateKeyChecking && result.Contains(key)) { throw new YamlException(propertyName.Start, propertyName.End, $"Encountered duplicate key {key}"); } result[key] = value; } protected virtual void Deserialize(Type tKey, Type tValue, IParser parser, Func nestedObjectDeserializer, IDictionary result, ObjectDeserializer rootDeserializer) { MappingStart property = parser.Consume(); MappingEnd @event; while (!parser.TryConsume(out @event)) { object key = nestedObjectDeserializer(parser, tKey); object value = nestedObjectDeserializer(parser, tValue); IValuePromise valuePromise = value as IValuePromise; if (key is IValuePromise valuePromise2) { if (valuePromise == null) { valuePromise2.ValueAvailable += delegate(object? v) { result[v] = value; }; continue; } bool hasFirstPart = false; valuePromise2.ValueAvailable += delegate(object? v) { if (hasFirstPart) { TryAssign(result, v, value, property); } else { key = v; hasFirstPart = true; } }; valuePromise.ValueAvailable += delegate(object? v) { if (hasFirstPart) { TryAssign(result, key, v, property); } else { value = v; hasFirstPart = true; } }; continue; } if (key == null) { throw new ArgumentException("Empty key names are not supported yet.", "tKey"); } if (valuePromise == null) { TryAssign(result, key, value, property); continue; } valuePromise.ValueAvailable += delegate(object? v) { result[key] = v; }; } } } internal class DictionaryNodeDeserializer : DictionaryDeserializer, INodeDeserializer { private readonly IObjectFactory objectFactory; public DictionaryNodeDeserializer(IObjectFactory objectFactory, bool duplicateKeyChecking) : base(duplicateKeyChecking) { this.objectFactory = objectFactory ?? throw new ArgumentNullException("objectFactory"); } public bool Deserialize(IParser parser, Type expectedType, Func nestedObjectDeserializer, out object? value, ObjectDeserializer rootDeserializer) { Type implementationOfOpenGenericInterface = expectedType.GetImplementationOfOpenGenericInterface(typeof(IDictionary<, >)); Type type; Type type2; IDictionary dictionary; if (implementationOfOpenGenericInterface != null) { Type[] genericArguments = implementationOfOpenGenericInterface.GetGenericArguments(); type = genericArguments[0]; type2 = genericArguments[1]; value = objectFactory.Create(expectedType); dictionary = value as IDictionary; if (dictionary == null) { dictionary = (IDictionary)Activator.CreateInstance(typeof(GenericDictionaryToNonGenericAdapter<, >).MakeGenericType(type, type2), value); } } else { if (!typeof(IDictionary).IsAssignableFrom(expectedType)) { value = null; return false; } type = typeof(object); type2 = typeof(object); value = objectFactory.Create(expectedType); dictionary = (IDictionary)value; } Deserialize(type, type2, parser, nestedObjectDeserializer, dictionary, rootDeserializer); return true; } } internal sealed class EnumerableNodeDeserializer : INodeDeserializer { public bool Deserialize(IParser parser, Type expectedType, Func nestedObjectDeserializer, out object? value, ObjectDeserializer rootDeserializer) { Type type; if (expectedType == typeof(IEnumerable)) { type = typeof(object); } else { Type implementationOfOpenGenericInterface = expectedType.GetImplementationOfOpenGenericInterface(typeof(IEnumerable<>)); if (implementationOfOpenGenericInterface != expectedType) { value = null; return false; } type = implementationOfOpenGenericInterface.GetGenericArguments()[0]; } Type arg = typeof(List<>).MakeGenericType(type); value = nestedObjectDeserializer(parser, arg); return true; } } internal sealed class FsharpListNodeDeserializer : INodeDeserializer { private readonly ITypeInspector typeInspector; private readonly INamingConvention enumNamingConvention; public FsharpListNodeDeserializer(ITypeInspector typeInspector, INamingConvention enumNamingConvention) { this.typeInspector = typeInspector; this.enumNamingConvention = enumNamingConvention; } public bool Deserialize(IParser parser, Type expectedType, Func nestedObjectDeserializer, out object? value, ObjectDeserializer rootDeserializer) { if (!FsharpHelper.IsFsharpListType(expectedType)) { value = false; return false; } Type type = expectedType.GetGenericArguments()[0]; Type t = expectedType.GetGenericTypeDefinition().MakeGenericType(type); ArrayList arrayList = new ArrayList(); CollectionNodeDeserializer.DeserializeHelper(type, parser, nestedObjectDeserializer, arrayList, canUpdate: true, enumNamingConvention, typeInspector); Array array = Array.CreateInstance(type, arrayList.Count); arrayList.CopyTo(array, 0); object obj = FsharpHelper.CreateFsharpListFromArray(t, type, array); value = obj; return true; } } internal sealed class NullNodeDeserializer : INodeDeserializer { public bool Deserialize(IParser parser, Type expectedType, Func nestedObjectDeserializer, out object? value, ObjectDeserializer rootDeserializer) { value = null; if (parser.Accept(out var @event) && NodeIsNull(@event)) { parser.SkipThisAndNestedEvents(); return true; } return false; } private static bool NodeIsNull(NodeEvent nodeEvent) { if (nodeEvent.Tag == "tag:yaml.org,2002:null") { return true; } if (nodeEvent is YamlDotNet.Core.Events.Scalar { Style: ScalarStyle.Plain, IsKey: false } scalar) { string value = scalar.Value; switch (value) { default: return value == "NULL"; case "": case "~": case "null": case "Null": return true; } } return false; } } internal sealed class ObjectNodeDeserializer : INodeDeserializer { private readonly IObjectFactory objectFactory; private readonly ITypeInspector typeInspector; private readonly bool ignoreUnmatched; private readonly bool duplicateKeyChecking; private readonly ITypeConverter typeConverter; private readonly INamingConvention enumNamingConvention; private readonly bool enforceNullability; private readonly bool caseInsensitivePropertyMatching; private readonly bool enforceRequiredProperties; private readonly TypeConverterCache typeConverters; public ObjectNodeDeserializer(IObjectFactory objectFactory, ITypeInspector typeInspector, bool ignoreUnmatched, bool duplicateKeyChecking, ITypeConverter typeConverter, INamingConvention enumNamingConvention, bool enforceNullability, bool caseInsensitivePropertyMatching, bool enforceRequiredProperties, IEnumerable typeConverters) { this.objectFactory = objectFactory ?? throw new ArgumentNullException("objectFactory"); this.typeInspector = typeInspector ?? throw new ArgumentNullException("typeInspector"); this.ignoreUnmatched = ignoreUnmatched; this.duplicateKeyChecking = duplicateKeyChecking; this.typeConverter = typeConverter ?? throw new ArgumentNullException("typeConverter"); this.enumNamingConvention = enumNamingConvention ?? throw new ArgumentNullException("enumNamingConvention"); this.enforceNullability = enforceNullability; this.caseInsensitivePropertyMatching = caseInsensitivePropertyMatching; this.enforceRequiredProperties = enforceRequiredProperties; this.typeConverters = new TypeConverterCache(typeConverters); } public bool Deserialize(IParser parser, Type expectedType, Func nestedObjectDeserializer, out object? value, ObjectDeserializer rootDeserializer) { if (!parser.TryConsume(out var _)) { value = null; return false; } Type type = Nullable.GetUnderlyingType(expectedType) ?? FsharpHelper.GetOptionUnderlyingType(expectedType) ?? expectedType; value = objectFactory.Create(type); objectFactory.ExecuteOnDeserializing(value); HashSet hashSet = new HashSet(StringComparer.Ordinal); HashSet hashSet2 = new HashSet(StringComparer.Ordinal); Mark start = Mark.Empty; MappingEnd event2; while (!parser.TryConsume(out event2)) { YamlDotNet.Core.Events.Scalar propertyName = parser.Consume(); if (duplicateKeyChecking && !hashSet.Add(propertyName.Value)) { throw new YamlException(propertyName.Start, propertyName.End, "Encountered duplicate key " + propertyName.Value); } try { IPropertyDescriptor property = typeInspector.GetProperty(type, null, propertyName.Value, ignoreUnmatched, caseInsensitivePropertyMatching); if (property == null) { parser.SkipThisAndNestedEvents(); continue; } hashSet2.Add(property.Name); object obj; if (property.ConverterType != null) { IYamlTypeConverter converterByType = typeConverters.GetConverterByType(property.ConverterType); obj = converterByType.ReadYaml(parser, property.Type, rootDeserializer); } else { obj = nestedObjectDeserializer(parser, property.Type); } if (obj is IValuePromise valuePromise) { object valueRef = value; valuePromise.ValueAvailable += delegate(object? v) { object value3 = typeConverter.ChangeType(v, property.Type, enumNamingConvention, typeInspector); NullCheck(value3, property, propertyName); property.Write(valueRef, value3); }; } else { object value2 = typeConverter.ChangeType(obj, property.Type, enumNamingConvention, typeInspector); NullCheck(value2, property, propertyName); property.Write(value, value2); } } catch (SerializationException ex) { throw new YamlException(propertyName.Start, propertyName.End, ex.Message); } catch (YamlException) { throw; } catch (Exception innerException) { throw new YamlException(propertyName.Start, propertyName.End, "Exception during deserialization", innerException); } start = propertyName.End; } if (enforceRequiredProperties) { IEnumerable properties = typeInspector.GetProperties(type, value); List list = new List(); foreach (IPropertyDescriptor item in properties) { if (item.Required && !hashSet2.Contains(item.Name)) { list.Add(item.Name); } } if (list.Count > 0) { string text = string.Join(",", list); throw new YamlException(in start, in start, "Missing properties, '" + text + "' in source yaml."); } } objectFactory.ExecuteOnDeserialized(value); return true; } public void NullCheck(object value, IPropertyDescriptor property, YamlDotNet.Core.Events.Scalar propertyName) { if (enforceNullability && value == null && !property.AllowNulls) { throw new YamlException(propertyName.Start, propertyName.End, "Strict nullability enforcement error.", new NullReferenceException("Yaml value is null when target property requires non null values.")); } } } internal sealed class ScalarNodeDeserializer : INodeDeserializer { private const string BooleanTruePattern = "^(true|y|yes|on)$"; private const string BooleanFalsePattern = "^(false|n|no|off)$"; private readonly bool attemptUnknownTypeDeserialization; private readonly ITypeConverter typeConverter; private readonly ITypeInspector typeInspector; private readonly YamlFormatter formatter; private readonly INamingConvention enumNamingConvention; public ScalarNodeDeserializer(bool attemptUnknownTypeDeserialization, ITypeConverter typeConverter, ITypeInspector typeInspector, YamlFormatter formatter, INamingConvention enumNamingConvention) { this.attemptUnknownTypeDeserialization = attemptUnknownTypeDeserialization; this.typeConverter = typeConverter ?? throw new ArgumentNullException("typeConverter"); this.typeInspector = typeInspector; this.formatter = formatter; this.enumNamingConvention = enumNamingConvention; } public bool Deserialize(IParser parser, Type expectedType, Func nestedObjectDeserializer, out object? value, ObjectDeserializer rootDeserializer) { if (!parser.TryConsume(out var @event)) { value = null; return false; } Type type = Nullable.GetUnderlyingType(expectedType) ?? FsharpHelper.GetOptionUnderlyingType(expectedType) ?? expectedType; if (type.IsEnum()) { string name = enumNamingConvention.Reverse(@event.Value); name = typeInspector.GetEnumName(type, name); value = Enum.Parse(type, name, ignoreCase: true); return true; } TypeCode typeCode = type.GetTypeCode(); switch (typeCode) { case TypeCode.Boolean: value = DeserializeBooleanHelper(@event.Value); break; case TypeCode.SByte: case TypeCode.Byte: case TypeCode.Int16: case TypeCode.UInt16: case TypeCode.Int32: case TypeCode.UInt32: case TypeCode.Int64: case TypeCode.UInt64: value = DeserializeIntegerHelper(typeCode, @event.Value); break; case TypeCode.Single: value = float.Parse(@event.Value, formatter.NumberFormat); break; case TypeCode.Double: value = double.Parse(@event.Value, formatter.NumberFormat); break; case TypeCode.Decimal: value = decimal.Parse(@event.Value, formatter.NumberFormat); break; case TypeCode.String: value = @event.Value; break; case TypeCode.Char: value = @event.Value[0]; break; case TypeCode.DateTime: value = DateTime.Parse(@event.Value, CultureInfo.InvariantCulture, DateTimeStyles.RoundtripKind); break; default: if (expectedType == typeof(object)) { if (!@event.IsKey && attemptUnknownTypeDeserialization) { value = AttemptUnknownTypeDeserialization(@event); } else { value = @event.Value; } } else { value = typeConverter.ChangeType(@event.Value, expectedType, enumNamingConvention, typeInspector); } break; } return true; } private static bool DeserializeBooleanHelper(string value) { if (Regex.IsMatch(value, "^(true|y|yes|on)$", RegexOptions.IgnoreCase)) { return true; } if (Regex.IsMatch(value, "^(false|n|no|off)$", RegexOptions.IgnoreCase)) { return false; } throw new FormatException("The value \"" + value + "\" is not a valid YAML Boolean"); } private object DeserializeIntegerHelper(TypeCode typeCode, string value) { StringBuilderPool.BuilderWrapper builderWrapper = StringBuilderPool.Rent(); try { StringBuilder builder = builderWrapper.Builder; int i = 0; bool flag = false; ulong num = 0uL; if (value[0] == '-') { i++; flag = true; } else if (value[0] == '+') { i++; } if (value[i] == '0') { int num2; if (i == value.Length - 1) { num2 = 10; num = 0uL; } else { i++; if (value[i] == 'b') { num2 = 2; i++; } else if (value[i] == 'x') { num2 = 16; i++; } else { num2 = 8; } } for (; i < value.Length; i++) { if (value[i] != '_') { builder.Append(value[i]); } } switch (num2) { case 2: case 8: num = Convert.ToUInt64(builder.ToString(), num2); break; case 16: num = ulong.Parse(builder.ToString(), NumberStyles.HexNumber, formatter.NumberFormat); break; } } else { string[] array = value.Substring(i).Split(new char[1] { ':' }); num = 0uL; for (int j = 0; j < array.Length; j++) { num *= 60; num += ulong.Parse(array[j].Replace("_", ""), CultureInfo.InvariantCulture); } } if (!flag) { return CastInteger(num, typeCode); } long number = ((num != 9223372036854775808uL) ? checked(-(long)num) : long.MinValue); return CastInteger(number, typeCode); } finally { ((IDisposable)builderWrapper/*cast due to .constrained prefix*/).Dispose(); } } private static object CastInteger(long number, TypeCode typeCode) { return checked(typeCode switch { TypeCode.Byte => (byte)number, TypeCode.Int16 => (short)number, TypeCode.Int32 => (int)number, TypeCode.Int64 => number, TypeCode.SByte => (sbyte)number, TypeCode.UInt16 => (ushort)number, TypeCode.UInt32 => (uint)number, TypeCode.UInt64 => (ulong)number, _ => number, }); } private static object CastInteger(ulong number, TypeCode typeCode) { return checked(typeCode switch { TypeCode.Byte => (byte)number, TypeCode.Int16 => (short)number, TypeCode.Int32 => (int)number, TypeCode.Int64 => (long)number, TypeCode.SByte => (sbyte)number, TypeCode.UInt16 => (ushort)number, TypeCode.UInt32 => (uint)number, TypeCode.UInt64 => number, _ => number, }); } private object? AttemptUnknownTypeDeserialization(YamlDotNet.Core.Events.Scalar value) { if (value.Style == ScalarStyle.SingleQuoted || value.Style == ScalarStyle.DoubleQuoted || value.Style == ScalarStyle.Folded) { return value.Value; } string v = value.Value; switch (v) { case "null": case "Null": case "NULL": case "~": case "": return null; case "true": case "True": case "TRUE": return true; case "False": case "FALSE": case "false": return false; default: if (Regex.IsMatch(v, "^0x[0-9a-fA-F]+$")) { v = v.Substring(2); if (byte.TryParse(v, NumberStyles.AllowHexSpecifier, formatter.NumberFormat, out var result)) { return result; } if (short.TryParse(v, NumberStyles.AllowHexSpecifier, formatter.NumberFormat, out var result2)) { return result2; } if (int.TryParse(v, NumberStyles.AllowHexSpecifier, formatter.NumberFormat, out var result3)) { return result3; } if (long.TryParse(v, NumberStyles.AllowHexSpecifier, formatter.NumberFormat, out var result4)) { return result4; } if (ulong.TryParse(v, NumberStyles.AllowHexSpecifier, formatter.NumberFormat, out var result5)) { return result5; } return v; } if (Regex.IsMatch(v, "^0o[0-9a-fA-F]+$")) { if (!TryAndSwallow(() => Convert.ToByte(v, 8), out object value2) && !TryAndSwallow(() => Convert.ToInt16(v, 8), out value2) && !TryAndSwallow(() => Convert.ToInt32(v, 8), out value2) && !TryAndSwallow(() => Convert.ToInt64(v, 8), out value2) && !TryAndSwallow(() => Convert.ToUInt64(v, 8), out value2)) { return v; } return value2; } if (Regex.IsMatch(v, "^[-+]?(\\.[0-9]+|[0-9]+(\\.[0-9]*)?)([eE][-+]?[0-9]+)?$")) { if (byte.TryParse(v, NumberStyles.Integer, formatter.NumberFormat, out var result6)) { return result6; } if (short.TryParse(v, NumberStyles.Integer, formatter.NumberFormat, out var result7)) { return result7; } if (int.TryParse(v, NumberStyles.Integer, formatter.NumberFormat, out var result8)) { return result8; } if (long.TryParse(v, NumberStyles.Integer, formatter.NumberFormat, out var result9)) { return result9; } if (ulong.TryParse(v, NumberStyles.Integer, formatter.NumberFormat, out var result10)) { return result10; } if (float.TryParse(v, NumberStyles.Float, formatter.NumberFormat, out var result11)) { return result11; } if (double.TryParse(v, NumberStyles.Float, formatter.NumberFormat, out var result12)) { return result12; } return v; } if (Regex.IsMatch(v, "^[-+]?(\\.inf|\\.Inf|\\.INF)$")) { if (Polyfills.StartsWith(v, '-')) { return float.NegativeInfinity; } return float.PositiveInfinity; } if (Regex.IsMatch(v, "^(\\.nan|\\.NaN|\\.NAN)$")) { return float.NaN; } return v; } } private static bool TryAndSwallow(Func attempt, out object? value) { try { value = attempt(); return true; } catch { value = null; return false; } } } internal sealed class StaticArrayNodeDeserializer : INodeDeserializer { private sealed class ArrayList : IList, ICollection, IEnumerable { private object?[] data; public bool IsFixedSize => false; public bool IsReadOnly => false; public object? this[int index] { get { return data[index]; } set { data[index] = value; } } public int Count { get; private set; } public bool IsSynchronized => false; public object SyncRoot => data; public ArrayList() { Clear(); } public int Add(object? value) { if (Count == data.Length) { Array.Resize(ref data, data.Length * 2); } data[Count] = value; return Count++; } public void Clear() { data = new object[10]; Count = 0; } bool IList.Contains(object? value) { throw new NotSupportedException(); } int IList.IndexOf(object? value) { throw new NotSupportedException(); } void IList.Insert(int index, object? value) { throw new NotSupportedException(); } void IList.Remove(object? value) { throw new NotSupportedException(); } void IList.RemoveAt(int index) { throw new NotSupportedException(); } public void CopyTo(Array array, int index) { Array.Copy(data, 0, array, index, Count); } public IEnumerator GetEnumerator() { int i = 0; while (i < Count) { yield return data[i]; int num = i + 1; i = num; } } } private readonly StaticObjectFactory factory; public StaticArrayNodeDeserializer(StaticObjectFactory factory) { this.factory = factory ?? throw new ArgumentNullException("factory"); } public bool Deserialize(IParser parser, Type expectedType, Func nestedObjectDeserializer, out object? value, ObjectDeserializer rootDeserializer) { if (!factory.IsArray(expectedType)) { value = false; return false; } Type valueType = factory.GetValueType(expectedType); ArrayList arrayList = new ArrayList(); StaticCollectionNodeDeserializer.DeserializeHelper(valueType, parser, nestedObjectDeserializer, arrayList, factory); Array array = factory.CreateArray(expectedType, arrayList.Count); arrayList.CopyTo(array, 0); value = array; return true; } } internal sealed class StaticCollectionNodeDeserializer : INodeDeserializer { private readonly StaticObjectFactory factory; public StaticCollectionNodeDeserializer(StaticObjectFactory factory) { this.factory = factory ?? throw new ArgumentNullException("factory"); } public bool Deserialize(IParser parser, Type expectedType, Func nestedObjectDeserializer, out object? value, ObjectDeserializer rootDeserializer) { if (!factory.IsList(expectedType)) { value = null; return false; } DeserializeHelper(result: (IList)(value = factory.Create(expectedType) as IList), tItem: factory.GetValueType(expectedType), parser: parser, nestedObjectDeserializer: nestedObjectDeserializer, factory: factory); return true; } internal static void DeserializeHelper(Type tItem, IParser parser, Func nestedObjectDeserializer, IList result, IObjectFactory factory) { parser.Consume(); SequenceEnd @event; while (!parser.TryConsume(out @event)) { ParsingEvent current = parser.Current; object obj = nestedObjectDeserializer(parser, tItem); if (obj is IValuePromise valuePromise) { int index = result.Add(factory.CreatePrimitive(tItem)); valuePromise.ValueAvailable += delegate(object? v) { result[index] = v; }; } else { result.Add(obj); } } } } internal class StaticDictionaryNodeDeserializer : DictionaryDeserializer, INodeDeserializer { private readonly StaticObjectFactory objectFactory; public StaticDictionaryNodeDeserializer(StaticObjectFactory objectFactory, bool duplicateKeyChecking) : base(duplicateKeyChecking) { this.objectFactory = objectFactory ?? throw new ArgumentNullException("objectFactory"); } public bool Deserialize(IParser reader, Type expectedType, Func nestedObjectDeserializer, out object? value, ObjectDeserializer rootDeserializer) { if (objectFactory.IsDictionary(expectedType)) { if (!(objectFactory.Create(expectedType) is IDictionary dictionary)) { value = null; return false; } Type keyType = objectFactory.GetKeyType(expectedType); Type valueType = objectFactory.GetValueType(expectedType); value = dictionary; base.Deserialize(keyType, valueType, reader, nestedObjectDeserializer, dictionary, rootDeserializer); return true; } value = null; return false; } } internal sealed class TypeConverterNodeDeserializer : INodeDeserializer { private readonly TypeConverterCache converters; public TypeConverterNodeDeserializer(IEnumerable converters) { this.converters = new TypeConverterCache(converters); } public bool Deserialize(IParser parser, Type expectedType, Func nestedObjectDeserializer, out object? value, ObjectDeserializer rootDeserializer) { if (!converters.TryGetConverterForType(expectedType, out IYamlTypeConverter typeConverter)) { value = null; return false; } value = typeConverter.ReadYaml(parser, expectedType, rootDeserializer); return true; } } internal sealed class YamlConvertibleNodeDeserializer : INodeDeserializer { private readonly IObjectFactory objectFactory; public YamlConvertibleNodeDeserializer(IObjectFactory objectFactory) { this.objectFactory = objectFactory; } public bool Deserialize(IParser parser, Type expectedType, Func nestedObjectDeserializer, out object? value, ObjectDeserializer rootDeserializer) { if (typeof(IYamlConvertible).IsAssignableFrom(expectedType)) { IYamlConvertible yamlConvertible = (IYamlConvertible)objectFactory.Create(expectedType); yamlConvertible.Read(parser, expectedType, (Type type) => nestedObjectDeserializer(parser, type)); value = yamlConvertible; return true; } value = null; return false; } } internal sealed class YamlSerializableNodeDeserializer : INodeDeserializer { private readonly IObjectFactory objectFactory; public YamlSerializableNodeDeserializer(IObjectFactory objectFactory) { this.objectFactory = objectFactory; } public bool Deserialize(IParser parser, Type expectedType, Func nestedObjectDeserializer, out object? value, ObjectDeserializer rootDeserializer) { if (typeof(IYamlSerializable).IsAssignableFrom(expectedType)) { IYamlSerializable yamlSerializable = (IYamlSerializable)objectFactory.Create(expectedType); yamlSerializable.ReadYaml(parser); value = yamlSerializable; return true; } value = null; return false; } } } namespace YamlDotNet.Serialization.NamingConventions { internal sealed class CamelCaseNamingConvention : INamingConvention { public static readonly INamingConvention Instance = new CamelCaseNamingConvention(); [Obsolete("Use the Instance static field instead of creating new instances")] public CamelCaseNamingConvention() { } public string Apply(string value) { return value.ToCamelCase(); } public string Reverse(string value) { return value.ToPascalCase(); } } internal sealed class HyphenatedNamingConvention : INamingConvention { public static readonly INamingConvention Instance = new HyphenatedNamingConvention(); [Obsolete("Use the Instance static field instead of creating new instances")] public HyphenatedNamingConvention() { } public string Apply(string value) { return value.FromCamelCase("-"); } public string Reverse(string value) { return value.ToPascalCase(); } } internal sealed class LowerCaseNamingConvention : INamingConvention { public static readonly INamingConvention Instance = new LowerCaseNamingConvention(); private LowerCaseNamingConvention() { } public string Apply(string value) { return value.ToCamelCase().ToLower(CultureInfo.InvariantCulture); } public string Reverse(string value) { if (string.IsNullOrEmpty(value)) { return value; } return char.ToUpperInvariant(value[0]) + value.Substring(1); } } internal sealed class NullNamingConvention : INamingConvention { public static readonly INamingConvention Instance = new NullNamingConvention(); [Obsolete("Use the Instance static field instead of creating new instances")] public NullNamingConvention() { } public string Apply(string value) { return value; } public string Reverse(string value) { return value; } } internal sealed class PascalCaseNamingConvention : INamingConvention { public static readonly INamingConvention Instance = new PascalCaseNamingConvention(); [Obsolete("Use the Instance static field instead of creating new instances")] public PascalCaseNamingConvention() { } public string Apply(string value) { return value.ToPascalCase(); } public string Reverse(string value) { return value.ToPascalCase(); } } internal sealed class UnderscoredNamingConvention : INamingConvention { public static readonly INamingConvention Instance = new UnderscoredNamingConvention(); [Obsolete("Use the Instance static field instead of creating new instances")] public UnderscoredNamingConvention() { } public string Apply(string value) { return value.FromCamelCase("_"); } public string Reverse(string value) { return value.ToPascalCase(); } } } namespace YamlDotNet.Serialization.EventEmitters { internal abstract class ChainedEventEmitter : IEventEmitter { protected readonly IEventEmitter nextEmitter; protected ChainedEventEmitter(IEventEmitter nextEmitter) { this.nextEmitter = nextEmitter ?? throw new ArgumentNullException("nextEmitter"); } public virtual void Emit(AliasEventInfo eventInfo, IEmitter emitter) { nextEmitter.Emit(eventInfo, emitter); } public virtual void Emit(ScalarEventInfo eventInfo, IEmitter emitter) { nextEmitter.Emit(eventInfo, emitter); } public virtual void Emit(MappingStartEventInfo eventInfo, IEmitter emitter) { nextEmitter.Emit(eventInfo, emitter); } public virtual void Emit(MappingEndEventInfo eventInfo, IEmitter emitter) { nextEmitter.Emit(eventInfo, emitter); } public virtual void Emit(SequenceStartEventInfo eventInfo, IEmitter emitter) { nextEmitter.Emit(eventInfo, emitter); } public virtual void Emit(SequenceEndEventInfo eventInfo, IEmitter emitter) { nextEmitter.Emit(eventInfo, emitter); } } internal sealed class JsonEventEmitter : ChainedEventEmitter { private readonly YamlFormatter formatter; private readonly INamingConvention enumNamingConvention; private readonly ITypeInspector typeInspector; public JsonEventEmitter(IEventEmitter nextEmitter, YamlFormatter formatter, INamingConvention enumNamingConvention, ITypeInspector typeInspector) : base(nextEmitter) { this.formatter = formatter; this.enumNamingConvention = enumNamingConvention; this.typeInspector = typeInspector; } public override void Emit(AliasEventInfo eventInfo, IEmitter emitter) { eventInfo.NeedsExpansion = true; } public override void Emit(ScalarEventInfo eventInfo, IEmitter emitter) { eventInfo.IsPlainImplicit = true; eventInfo.Style = ScalarStyle.Plain; object value = eventInfo.Source.Value; if (value == null) { eventInfo.RenderedValue = "null"; } else { TypeCode typeCode = eventInfo.Source.Type.GetTypeCode(); switch (typeCode) { case TypeCode.Boolean: eventInfo.RenderedValue = formatter.FormatBoolean(value); break; case TypeCode.SByte: case TypeCode.Byte: case TypeCode.Int16: case TypeCode.UInt16: case TypeCode.Int32: case TypeCode.UInt32: case TypeCode.Int64: case TypeCode.UInt64: if (eventInfo.Source.Type.IsEnum()) { eventInfo.RenderedValue = formatter.FormatEnum(value, typeInspector, enumNamingConvention); eventInfo.Style = ((!formatter.PotentiallyQuoteEnums(value)) ? ScalarStyle.Plain : ScalarStyle.DoubleQuoted); } else { eventInfo.RenderedValue = formatter.FormatNumber(value); } break; case TypeCode.Single: { float f = (float)value; eventInfo.RenderedValue = f.ToString("G", CultureInfo.InvariantCulture); if (float.IsNaN(f) || float.IsInfinity(f)) { eventInfo.Style = ScalarStyle.DoubleQuoted; } break; } case TypeCode.Double: { double d = (double)value; eventInfo.RenderedValue = d.ToString("G", CultureInfo.InvariantCulture); if (double.IsNaN(d) || double.IsInfinity(d)) { eventInfo.Style = ScalarStyle.DoubleQuoted; } break; } case TypeCode.Decimal: eventInfo.RenderedValue = ((decimal)value).ToString(CultureInfo.InvariantCulture); break; case TypeCode.Char: case TypeCode.String: eventInfo.RenderedValue = value.ToString(); eventInfo.Style = ScalarStyle.DoubleQuoted; break; case TypeCode.DateTime: eventInfo.RenderedValue = formatter.FormatDateTime(value); break; case TypeCode.Empty: eventInfo.RenderedValue = "null"; break; default: if (eventInfo.Source.Type == typeof(TimeSpan)) { eventInfo.RenderedValue = formatter.FormatTimeSpan(value); break; } throw new NotSupportedException($"TypeCode.{typeCode} is not supported."); } } base.Emit(eventInfo, emitter); } public override void Emit(MappingStartEventInfo eventInfo, IEmitter emitter) { eventInfo.Style = MappingStyle.Flow; base.Emit(eventInfo, emitter); } public override void Emit(SequenceStartEventInfo eventInfo, IEmitter emitter) { eventInfo.Style = SequenceStyle.Flow; base.Emit(eventInfo, emitter); } } internal sealed class TypeAssigningEventEmitter : ChainedEventEmitter { private readonly IDictionary tagMappings; private readonly bool quoteNecessaryStrings; private readonly Regex? isSpecialStringValue_Regex; private static readonly string SpecialStrings_Pattern = "^(null|Null|NULL|\\~|true|True|TRUE|false|False|FALSE|[-+]?[0-9]+|0o[0-7]+|0x[0-9a-fA-F]+|[-+]?(\\.[0-9]+|[0-9]+(\\.[0-9]*)?)([eE][-+]?[0-9]+)?|[-+]?(\\.inf|\\.Inf|\\.INF)|\\.nan|\\.NaN|\\.NAN|\\s.*)$"; private static readonly string CombinedYaml1_1SpecialStrings_Pattern = "^(null|Null|NULL|\\~|true|True|TRUE|false|False|FALSE|y|Y|yes|Yes|YES|n|N|no|No|NO|on|On|ON|off|Off|OFF|[-+]?0b[0-1_]+|[-+]?0o?[0-7_]+|[-+]?(0|[1-9][0-9_]*)|[-+]?0x[0-9a-fA-F_]+|[-+]?[1-9][0-9_]*(:[0-5]?[0-9])+|[-+]?([0-9][0-9_]*)?\\.[0-9_]*([eE][-+][0-9]+)?|[-+]?[0-9][0-9_]*(:[0-5]?[0-9])+\\.[0-9_]*|[-+]?\\.(inf|Inf|INF)|\\.(nan|NaN|NAN))$"; private readonly ScalarStyle defaultScalarStyle; private readonly YamlFormatter formatter; private readonly INamingConvention enumNamingConvention; private readonly ITypeInspector typeInspector; public TypeAssigningEventEmitter(IEventEmitter nextEmitter, IDictionary tagMappings, bool quoteNecessaryStrings, bool quoteYaml1_1Strings, ScalarStyle defaultScalarStyle, YamlFormatter formatter, INamingConvention enumNamingConvention, ITypeInspector typeInspector) : base(nextEmitter) { this.defaultScalarStyle = defaultScalarStyle; this.formatter = formatter; this.tagMappings = tagMappings; this.quoteNecessaryStrings = quoteNecessaryStrings; isSpecialStringValue_Regex = new Regex(quoteYaml1_1Strings ? CombinedYaml1_1SpecialStrings_Pattern : SpecialStrings_Pattern, RegexOptions.Compiled); this.enumNamingConvention = enumNamingConvention; this.typeInspector = typeInspector; } public override void Emit(ScalarEventInfo eventInfo, IEmitter emitter) { ScalarStyle style = ScalarStyle.Plain; object value = eventInfo.Source.Value; if (value == null) { eventInfo.Tag = JsonSchema.Tags.Null; eventInfo.RenderedValue = ""; } else { TypeCode typeCode = eventInfo.Source.Type.GetTypeCode(); switch (typeCode) { case TypeCode.Boolean: eventInfo.Tag = JsonSchema.Tags.Bool; eventInfo.RenderedValue = formatter.FormatBoolean(value); break; case TypeCode.SByte: case TypeCode.Byte: case TypeCode.Int16: case TypeCode.UInt16: case TypeCode.Int32: case TypeCode.UInt32: case TypeCode.Int64: case TypeCode.UInt64: if (eventInfo.Source.Type.IsEnum) { eventInfo.Tag = FailsafeSchema.Tags.Str; eventInfo.RenderedValue = formatter.FormatEnum(value, typeInspector, enumNamingConvention); style = ((!quoteNecessaryStrings || !IsSpecialStringValue(eventInfo.RenderedValue) || !formatter.PotentiallyQuoteEnums(value)) ? defaultScalarStyle : ScalarStyle.DoubleQuoted); } else { eventInfo.Tag = JsonSchema.Tags.Int; eventInfo.RenderedValue = formatter.FormatNumber(value); } break; case TypeCode.Single: eventInfo.Tag = JsonSchema.Tags.Float; eventInfo.RenderedValue = formatter.FormatNumber((float)value); break; case TypeCode.Double: eventInfo.Tag = JsonSchema.Tags.Float; eventInfo.RenderedValue = formatter.FormatNumber((double)value); break; case TypeCode.Decimal: eventInfo.Tag = JsonSchema.Tags.Float; eventInfo.RenderedValue = formatter.FormatNumber(value); break; case TypeCode.Char: case TypeCode.String: eventInfo.Tag = FailsafeSchema.Tags.Str; eventInfo.RenderedValue = value.ToString(); style = ((!quoteNecessaryStrings || !IsSpecialStringValue(eventInfo.RenderedValue)) ? defaultScalarStyle : ScalarStyle.DoubleQuoted); break; case TypeCode.DateTime: eventInfo.Tag = DefaultSchema.Tags.Timestamp; eventInfo.RenderedValue = formatter.FormatDateTime(value); break; case TypeCode.Empty: eventInfo.Tag = JsonSchema.Tags.Null; eventInfo.RenderedValue = ""; break; default: if (eventInfo.Source.Type == typeof(TimeSpan)) { eventInfo.RenderedValue = formatter.FormatTimeSpan(value); break; } throw new NotSupportedException($"TypeCode.{typeCode} is not supported."); } } eventInfo.IsPlainImplicit = true; if (eventInfo.Style == ScalarStyle.Any) { eventInfo.Style = style; } base.Emit(eventInfo, emitter); } public override void Emit(MappingStartEventInfo eventInfo, IEmitter emitter) { AssignTypeIfNeeded(eventInfo); base.Emit(eventInfo, emitter); } public override void Emit(SequenceStartEventInfo eventInfo, IEmitter emitter) { AssignTypeIfNeeded(eventInfo); base.Emit(eventInfo, emitter); } private void AssignTypeIfNeeded(ObjectEventInfo eventInfo) { if (tagMappings.TryGetValue(eventInfo.Source.Type, out var value)) { eventInfo.Tag = value; } } private bool IsSpecialStringValue(string value) { if (value.Trim() == string.Empty) { return true; } return isSpecialStringValue_Regex?.IsMatch(value) ?? false; } } internal sealed class WriterEventEmitter : IEventEmitter { void IEventEmitter.Emit(AliasEventInfo eventInfo, IEmitter emitter) { emitter.Emit(new YamlDotNet.Core.Events.AnchorAlias(eventInfo.Alias)); } void IEventEmitter.Emit(ScalarEventInfo eventInfo, IEmitter emitter) { emitter.Emit(new YamlDotNet.Core.Events.Scalar(eventInfo.Anchor, eventInfo.Tag, eventInfo.RenderedValue, eventInfo.Style, eventInfo.IsPlainImplicit, eventInfo.IsQuotedImplicit)); } void IEventEmitter.Emit(MappingStartEventInfo eventInfo, IEmitter emitter) { emitter.Emit(new MappingStart(eventInfo.Anchor, eventInfo.Tag, eventInfo.IsImplicit, eventInfo.Style)); } void IEventEmitter.Emit(MappingEndEventInfo eventInfo, IEmitter emitter) { emitter.Emit(new MappingEnd()); } void IEventEmitter.Emit(SequenceStartEventInfo eventInfo, IEmitter emitter) { emitter.Emit(new SequenceStart(eventInfo.Anchor, eventInfo.Tag, eventInfo.IsImplicit, eventInfo.Style)); } void IEventEmitter.Emit(SequenceEndEventInfo eventInfo, IEmitter emitter) { emitter.Emit(new SequenceEnd()); } } } namespace YamlDotNet.Serialization.Converters { internal class DateTime8601Converter : IYamlTypeConverter { private readonly ScalarStyle scalarStyle; public DateTime8601Converter() : this(ScalarStyle.Any) { } public DateTime8601Converter(ScalarStyle scalarStyle) { this.scalarStyle = scalarStyle; } public bool Accepts(Type type) { return type == typeof(DateTime); } public object ReadYaml(IParser parser, Type type, ObjectDeserializer rootDeserializer) { string value = parser.Consume().Value; DateTime dateTime = DateTime.ParseExact(value, "O", CultureInfo.InvariantCulture, DateTimeStyles.RoundtripKind); return dateTime; } public void WriteYaml(IEmitter emitter, object? value, Type type, ObjectSerializer serializer) { string value2 = ((DateTime)value).ToString("O", CultureInfo.InvariantCulture); emitter.Emit(new YamlDotNet.Core.Events.Scalar(AnchorName.Empty, TagName.Empty, value2, scalarStyle, isPlainImplicit: true, isQuotedImplicit: false)); } } internal class DateTimeConverter : IYamlTypeConverter { private readonly DateTimeKind kind; private readonly IFormatProvider provider; private readonly bool doubleQuotes; private readonly string[] formats; public DateTimeConverter(DateTimeKind kind = DateTimeKind.Utc, IFormatProvider? provider = null, bool doubleQuotes = false, params string[] formats) { this.kind = ((kind == DateTimeKind.Unspecified) ? DateTimeKind.Utc : kind); this.provider = provider ?? CultureInfo.InvariantCulture; this.doubleQuotes = doubleQuotes; this.formats = formats.DefaultIfEmpty("G").ToArray(); } public bool Accepts(Type type) { return type == typeof(DateTime); } public object ReadYaml(IParser parser, Type type, ObjectDeserializer rootDeserializer) { string value = parser.Consume().Value; DateTimeStyles style = ((kind == DateTimeKind.Local) ? DateTimeStyles.AssumeLocal : DateTimeStyles.AssumeUniversal); DateTime dt = DateTime.ParseExact(value, formats, provider, style); dt = EnsureDateTimeKind(dt, kind); return dt; } public void WriteYaml(IEmitter emitter, object? value, Type type, ObjectSerializer serializer) { DateTime dateTime = (DateTime)value; string value2 = ((kind == DateTimeKind.Local) ? dateTime.ToLocalTime() : dateTime.ToUniversalTime()).ToString(formats.First(), provider); emitter.Emit(new YamlDotNet.Core.Events.Scalar(AnchorName.Empty, TagName.Empty, value2, doubleQuotes ? ScalarStyle.DoubleQuoted : ScalarStyle.Any, isPlainImplicit: true, isQuotedImplicit: false)); } private static DateTime EnsureDateTimeKind(DateTime dt, DateTimeKind kind) { if (dt.Kind == DateTimeKind.Local && kind == DateTimeKind.Utc) { return dt.ToUniversalTime(); } if (dt.Kind == DateTimeKind.Utc && kind == DateTimeKind.Local) { return dt.ToLocalTime(); } return dt; } } internal class DateTimeOffsetConverter : IYamlTypeConverter { private readonly IFormatProvider provider; private readonly ScalarStyle style; private readonly DateTimeStyles dateStyle; private readonly string[] formats; public DateTimeOffsetConverter(IFormatProvider? provider = null, ScalarStyle style = ScalarStyle.Any, DateTimeStyles dateStyle = DateTimeStyles.None, params string[] formats) { this.provider = provider ?? CultureInfo.InvariantCulture; this.style = style; this.dateStyle = dateStyle; this.formats = formats.DefaultIfEmpty("O").ToArray(); } public bool Accepts(Type type) { return type == typeof(DateTimeOffset); } public object ReadYaml(IParser parser, Type type, ObjectDeserializer rootDeserializer) { string value = parser.Consume().Value; DateTimeOffset dateTimeOffset = DateTimeOffset.ParseExact(value, formats, provider, dateStyle); return dateTimeOffset; } public void WriteYaml(IEmitter emitter, object? value, Type type, ObjectSerializer serializer) { string value2 = ((DateTimeOffset)value).ToString(formats.First(), provider); emitter.Emit(new YamlDotNet.Core.Events.Scalar(AnchorName.Empty, TagName.Empty, value2, style, isPlainImplicit: true, isQuotedImplicit: false)); } } internal class GuidConverter : IYamlTypeConverter { private readonly bool jsonCompatible; public GuidConverter(bool jsonCompatible) { this.jsonCompatible = jsonCompatible; } public bool Accepts(Type type) { return type == typeof(Guid); } public object ReadYaml(IParser parser, Type type, ObjectDeserializer rootDeserializer) { string value = parser.Consume().Value; return new Guid(value); } public void WriteYaml(IEmitter emitter, object? value, Type type, ObjectSerializer serializer) { Guid guid = (Guid)value; emitter.Emit(new YamlDotNet.Core.Events.Scalar(AnchorName.Empty, TagName.Empty, guid.ToString("D"), jsonCompatible ? ScalarStyle.DoubleQuoted : ScalarStyle.Any, isPlainImplicit: true, isQuotedImplicit: false)); } } internal class SystemTypeConverter : IYamlTypeConverter { public bool Accepts(Type type) { return typeof(Type).IsAssignableFrom(type); } public object ReadYaml(IParser parser, Type type, ObjectDeserializer rootDeserializer) { string value = parser.Consume().Value; return Type.GetType(value, throwOnError: true); } public void WriteYaml(IEmitter emitter, object? value, Type type, ObjectSerializer serializer) { Type type2 = (Type)value; emitter.Emit(new YamlDotNet.Core.Events.Scalar(AnchorName.Empty, TagName.Empty, type2.AssemblyQualifiedName, ScalarStyle.Any, isPlainImplicit: true, isQuotedImplicit: false)); } } } namespace YamlDotNet.Serialization.Callbacks { [AttributeUsage(AttributeTargets.Method)] internal sealed class OnDeserializedAttribute : Attribute { } [AttributeUsage(AttributeTargets.Method)] internal sealed class OnDeserializingAttribute : Attribute { } [AttributeUsage(AttributeTargets.Method)] internal sealed class OnSerializedAttribute : Attribute { } [AttributeUsage(AttributeTargets.Method)] internal sealed class OnSerializingAttribute : Attribute { } } namespace YamlDotNet.Serialization.BufferedDeserialization { internal interface ITypeDiscriminatingNodeDeserializerOptions { void AddTypeDiscriminator(ITypeDiscriminator discriminator); void AddKeyValueTypeDiscriminator(string discriminatorKey, IDictionary valueTypeMapping); void AddUniqueKeyTypeDiscriminator(IDictionary uniqueKeyTypeMapping); } internal class ParserBuffer : IParser { private readonly LinkedList buffer; private LinkedListNode? current; public ParsingEvent? Current => current?.Value; public ParserBuffer(IParser parserToBuffer, int maxDepth, int maxLength) { buffer = new LinkedList(); buffer.AddLast(parserToBuffer.Consume()); int num = 0; do { ParsingEvent parsingEvent = parserToBuffer.Consume(); num += parsingEvent.NestingIncrease; buffer.AddLast(parsingEvent); if (maxDepth > -1 && num > maxDepth) { throw new ArgumentOutOfRangeException("parserToBuffer", "Parser buffer exceeded max depth"); } if (maxLength > -1 && buffer.Count > maxLength) { throw new ArgumentOutOfRangeException("parserToBuffer", "Parser buffer exceeded max length"); } } while (num >= 0); current = buffer.First; } public bool MoveNext() { current = current?.Next; return current != null; } public void Reset() { current = buffer.First; } } internal class TypeDiscriminatingNodeDeserializer : INodeDeserializer { private readonly IList innerDeserializers; private readonly IList typeDiscriminators; private readonly int maxDepthToBuffer; private readonly int maxLengthToBuffer; public TypeDiscriminatingNodeDeserializer(IList innerDeserializers, IList typeDiscriminators, int maxDepthToBuffer, int maxLengthToBuffer) { this.innerDeserializers = innerDeserializers; this.typeDiscriminators = typeDiscriminators; this.maxDepthToBuffer = maxDepthToBuffer; this.maxLengthToBuffer = maxLengthToBuffer; } public bool Deserialize(IParser reader, Type expectedType, Func nestedObjectDeserializer, out object? value, ObjectDeserializer rootDeserializer) { if (!reader.Accept(out var _)) { value = null; return false; } IEnumerable enumerable = typeDiscriminators.Where((ITypeDiscriminator t) => t.BaseType.IsAssignableFrom(expectedType)); if (!enumerable.Any()) { value = null; return false; } Mark start = reader.Current.Start; Type expectedType2 = expectedType; ParserBuffer parserBuffer; try { parserBuffer = new ParserBuffer(reader, maxDepthToBuffer, maxLengthToBuffer); } catch (Exception innerException) { throw new YamlException(in start, reader.Current.End, "Failed to buffer yaml node", innerException); } try { foreach (ITypeDiscriminator item in enumerable) { parserBuffer.Reset(); if (item.TryDiscriminate(parserBuffer, out Type suggestedType)) { expectedType2 = suggestedType; break; } } } catch (Exception innerException2) { throw new YamlException(in start, reader.Current.End, "Failed to discriminate type", innerException2); } parserBuffer.Reset(); foreach (INodeDeserializer innerDeserializer in innerDeserializers) { if (innerDeserializer.Deserialize(parserBuffer, expectedType2, nestedObjectDeserializer, out value, rootDeserializer)) { return true; } } value = null; return false; } } internal class TypeDiscriminatingNodeDeserializerOptions : ITypeDiscriminatingNodeDeserializerOptions { internal readonly List discriminators = new List(); public void AddTypeDiscriminator(ITypeDiscriminator discriminator) { discriminators.Add(discriminator); } public void AddKeyValueTypeDiscriminator(string discriminatorKey, IDictionary valueTypeMapping) { discriminators.Add(new KeyValueTypeDiscriminator(typeof(T), discriminatorKey, valueTypeMapping)); } public void AddUniqueKeyTypeDiscriminator(IDictionary uniqueKeyTypeMapping) { discriminators.Add(new UniqueKeyTypeDiscriminator(typeof(T), uniqueKeyTypeMapping)); } } } namespace YamlDotNet.Serialization.BufferedDeserialization.TypeDiscriminators { internal interface ITypeDiscriminator { Type BaseType { get; } bool TryDiscriminate(IParser buffer, out Type? suggestedType); } internal class KeyValueTypeDiscriminator : ITypeDiscriminator { private readonly string targetKey; private readonly IDictionary typeMapping; public Type BaseType { get; private set; } public KeyValueTypeDiscriminator(Type baseType, string targetKey, IDictionary typeMapping) { foreach (KeyValuePair item in typeMapping) { if (!baseType.IsAssignableFrom(item.Value)) { throw new ArgumentOutOfRangeException("typeMapping", $"{item.Value} is not a assignable to {baseType}"); } } BaseType = baseType; this.targetKey = targetKey; this.typeMapping = typeMapping; } public bool TryDiscriminate(IParser parser, out Type? suggestedType) { if (parser.TryFindMappingEntry((YamlDotNet.Core.Events.Scalar scalar2) => targetKey == scalar2.Value, out YamlDotNet.Core.Events.Scalar _, out ParsingEvent value) && value is YamlDotNet.Core.Events.Scalar scalar && typeMapping.TryGetValue(scalar.Value, out Type value2)) { suggestedType = value2; return true; } suggestedType = null; return false; } } internal class UniqueKeyTypeDiscriminator : ITypeDiscriminator { private readonly IDictionary typeMapping; public Type BaseType { get; private set; } public UniqueKeyTypeDiscriminator(Type baseType, IDictionary typeMapping) { foreach (KeyValuePair item in typeMapping) { if (!baseType.IsAssignableFrom(item.Value)) { throw new ArgumentOutOfRangeException("typeMapping", $"{item.Value} is not a assignable to {baseType}"); } } BaseType = baseType; this.typeMapping = typeMapping; } public bool TryDiscriminate(IParser parser, out Type? suggestedType) { if (parser.TryFindMappingEntry((YamlDotNet.Core.Events.Scalar scalar) => typeMapping.ContainsKey(scalar.Value), out YamlDotNet.Core.Events.Scalar key, out ParsingEvent _)) { suggestedType = typeMapping[key.Value]; return true; } suggestedType = null; return false; } } } namespace YamlDotNet.RepresentationModel { internal class DocumentLoadingState { private readonly Dictionary anchors = new Dictionary(); private readonly List nodesWithUnresolvedAliases = new List(); public void AddAnchor(YamlNode node) { if (node.Anchor.IsEmpty) { throw new ArgumentException("The specified node does not have an anchor"); } anchors[node.Anchor] = node; } public YamlNode GetNode(AnchorName anchor, Mark start, Mark end) { if (anchors.TryGetValue(anchor, out YamlNode value)) { return value; } throw new AnchorNotFoundException(in start, in end, $"The anchor '{anchor}' does not exists"); } public bool TryGetNode(AnchorName anchor, [NotNullWhen(true)] out YamlNode? node) { return anchors.TryGetValue(anchor, out node); } public void AddNodeWithUnresolvedAliases(YamlNode node) { nodesWithUnresolvedAliases.Add(node); } public void ResolveAliases() { foreach (YamlNode nodesWithUnresolvedAlias in nodesWithUnresolvedAliases) { nodesWithUnresolvedAlias.ResolveAliases(this); } } } internal class EmitterState { public HashSet EmittedAnchors { get; } = new HashSet(); } internal interface IYamlVisitor { void Visit(YamlStream stream); void Visit(YamlDocument document); void Visit(YamlScalarNode scalar); void Visit(YamlSequenceNode sequence); void Visit(YamlMappingNode mapping); } internal class LibYamlEventStream { private readonly IParser parser; public LibYamlEventStream(IParser iParser) { parser = iParser ?? throw new ArgumentNullException("iParser"); } public void WriteTo(TextWriter textWriter) { while (parser.MoveNext()) { ParsingEvent current = parser.Current; if (!(current is YamlDotNet.Core.Events.AnchorAlias anchorAlias)) { if (!(current is YamlDotNet.Core.Events.DocumentEnd documentEnd)) { if (!(current is YamlDotNet.Core.Events.DocumentStart documentStart)) { if (!(current is MappingEnd)) { if (!(current is MappingStart nodeEvent)) { if (!(current is YamlDotNet.Core.Events.Scalar scalar)) { if (!(current is SequenceEnd)) { if (!(current is SequenceStart nodeEvent2)) { if (!(current is YamlDotNet.Core.Events.StreamEnd)) { if (current is YamlDotNet.Core.Events.StreamStart) { textWriter.Write("+STR"); } } else { textWriter.Write("-STR"); } } else { textWriter.Write("+SEQ"); WriteAnchorAndTag(textWriter, nodeEvent2); } } else { textWriter.Write("-SEQ"); } } else { textWriter.Write("=VAL"); WriteAnchorAndTag(textWriter, scalar); switch (scalar.Style) { case ScalarStyle.DoubleQuoted: textWriter.Write(" \""); break; case ScalarStyle.SingleQuoted: textWriter.Write(" '"); break; case ScalarStyle.Folded: textWriter.Write(" >"); break; case ScalarStyle.Literal: textWriter.Write(" |"); break; default: textWriter.Write(" :"); break; } string value = scalar.Value; foreach (char c in value) { switch (c) { case '\b': textWriter.Write("\\b"); break; case '\t': textWriter.Write("\\t"); break; case '\n': textWriter.Write("\\n"); break; case '\r': textWriter.Write("\\r"); break; case '\\': textWriter.Write("\\\\"); break; default: textWriter.Write(c); break; } } } } else { textWriter.Write("+MAP"); WriteAnchorAndTag(textWriter, nodeEvent); } } else { textWriter.Write("-MAP"); } } else { textWriter.Write("+DOC"); if (!documentStart.IsImplicit) { textWriter.Write(" ---"); } } } else { textWriter.Write("-DOC"); if (!documentEnd.IsImplicit) { textWriter.Write(" ..."); } } } else { textWriter.Write("=ALI *"); textWriter.Write(anchorAlias.Value); } textWriter.WriteLine(); } } private static void WriteAnchorAndTag(TextWriter textWriter, NodeEvent nodeEvent) { if (!nodeEvent.Anchor.IsEmpty) { textWriter.Write(" &"); textWriter.Write(nodeEvent.Anchor); } if (!nodeEvent.Tag.IsEmpty) { textWriter.Write(" <"); textWriter.Write(nodeEvent.Tag.Value); textWriter.Write(">"); } } } internal class YamlAliasNode : YamlNode { public override YamlNodeType NodeType => YamlNodeType.Alias; internal YamlAliasNode(AnchorName anchor) { base.Anchor = anchor; } internal override void ResolveAliases(DocumentLoadingState state) { throw new NotSupportedException("Resolving an alias on an alias node does not make sense"); } internal override void Emit(IEmitter emitter, EmitterState state) { throw new NotSupportedException("A YamlAliasNode is an implementation detail and should never be saved."); } public override void Accept(IYamlVisitor visitor) { throw new NotSupportedException("A YamlAliasNode is an implementation detail and should never be visited."); } public override bool Equals(object? obj) { if (obj is YamlAliasNode yamlAliasNode && Equals(yamlAliasNode)) { return object.Equals(base.Anchor, yamlAliasNode.Anchor); } return false; } public override int GetHashCode() { return base.GetHashCode(); } internal override string ToString(RecursionLevel level) { return "*" + base.Anchor; } internal override IEnumerable SafeAllNodes(RecursionLevel level) { yield return this; } } internal class YamlDocument { private class AnchorAssigningVisitor : YamlVisitorBase { private readonly HashSet existingAnchors = new HashSet(); private readonly Dictionary visitedNodes = new Dictionary(); public void AssignAnchors(YamlDocument document) { existingAnchors.Clear(); visitedNodes.Clear(); document.Accept(this); Random random = new Random(); foreach (KeyValuePair visitedNode in visitedNodes) { if (!visitedNode.Value) { continue; } AnchorName anchorName; if (!visitedNode.Key.Anchor.IsEmpty && !existingAnchors.Contains(visitedNode.Key.Anchor)) { anchorName = visitedNode.Key.Anchor; } else { do { anchorName = new AnchorName(random.Next().ToString(CultureInfo.InvariantCulture)); } while (existingAnchors.Contains(anchorName)); } existingAnchors.Add(anchorName); visitedNode.Key.Anchor = anchorName; } } private bool VisitNodeAndFindDuplicates(YamlNode node) { if (visitedNodes.TryGetValue(node, out var value)) { if (!value) { visitedNodes[node] = true; } return !value; } visitedNodes.Add(node, value: false); return false; } public override void Visit(YamlScalarNode scalar) { VisitNodeAndFindDuplicates(scalar); } public override void Visit(YamlMappingNode mapping) { if (!VisitNodeAndFindDuplicates(mapping)) { base.Visit(mapping); } } public override void Visit(YamlSequenceNode sequence) { if (!VisitNodeAndFindDuplicates(sequence)) { base.Visit(sequence); } } } public YamlNode RootNode { get; private set; } public IEnumerable AllNodes => RootNode.AllNodes; public YamlDocument(YamlNode rootNode) { RootNode = rootNode; } public YamlDocument(string rootNode) { RootNode = new YamlScalarNode(rootNode); } internal YamlDocument(IParser parser) { DocumentLoadingState documentLoadingState = new DocumentLoadingState(); parser.Consume(); YamlDotNet.Core.Events.DocumentEnd @event; while (!parser.TryConsume(out @event)) { RootNode = YamlNode.ParseNode(parser, documentLoadingState); if (RootNode is YamlAliasNode) { throw new YamlException("A document cannot contain only an alias"); } } documentLoadingState.ResolveAliases(); if (RootNode == null) { throw new ArgumentException("Atempted to parse an empty document"); } } private void AssignAnchors() { AnchorAssigningVisitor anchorAssigningVisitor = new AnchorAssigningVisitor(); anchorAssigningVisitor.AssignAnchors(this); } internal void Save(IEmitter emitter, bool assignAnchors = true) { if (assignAnchors) { AssignAnchors(); } emitter.Emit(new YamlDotNet.Core.Events.DocumentStart()); RootNode.Save(emitter, new EmitterState()); emitter.Emit(new YamlDotNet.Core.Events.DocumentEnd(isImplicit: false)); } public void Accept(IYamlVisitor visitor) { visitor.Visit(this); } } internal sealed class YamlMappingNode : YamlNode, IEnumerable>, IEnumerable, IYamlConvertible { private readonly OrderedDictionary children = new OrderedDictionary(); public IOrderedDictionary Children => children; public MappingStyle Style { get; set; } public override YamlNodeType NodeType => YamlNodeType.Mapping; internal YamlMappingNode(IParser parser, DocumentLoadingState state) { Load(parser, state); } private void Load(IParser parser, DocumentLoadingState state) { MappingStart mappingStart = parser.Consume(); Load(mappingStart, state); Style = mappingStart.Style; bool flag = false; MappingEnd @event; while (!parser.TryConsume(out @event)) { YamlNode yamlNode = YamlNode.ParseNode(parser, state); YamlNode yamlNode2 = YamlNode.ParseNode(parser, state); if (!children.TryAdd(yamlNode, yamlNode2)) { throw new YamlException(yamlNode.Start, yamlNode.End, $"Duplicate key {yamlNode}"); } flag = flag || yamlNode is YamlAliasNode || yamlNode2 is YamlAliasNode; } if (flag) { state.AddNodeWithUnresolvedAliases(this); } } public YamlMappingNode() { } public YamlMappingNode(params KeyValuePair[] children) : this((IEnumerable>)children) { } public YamlMappingNode(IEnumerable> children) { foreach (KeyValuePair child in children) { this.children.Add(child); } } public YamlMappingNode(params YamlNode[] children) : this((IEnumerable)children) { } public YamlMappingNode(IEnumerable children) { using IEnumerator enumerator = children.GetEnumerator(); while (enumerator.MoveNext()) { YamlNode current = enumerator.Current; if (!enumerator.MoveNext()) { throw new ArgumentException("When constructing a mapping node with a sequence, the number of elements of the sequence must be even."); } Add(current, enumerator.Current); } } public void Add(YamlNode key, YamlNode value) { children.Add(key, value); } public void Add(string key, YamlNode value) { children.Add(new YamlScalarNode(key), value); } public void Add(YamlNode key, string value) { children.Add(key, new YamlScalarNode(value)); } public void Add(string key, string value) { children.Add(new YamlScalarNode(key), new YamlScalarNode(value)); } internal override void ResolveAliases(DocumentLoadingState state) { Dictionary dictionary = null; Dictionary dictionary2 = null; foreach (KeyValuePair child in children) { if (child.Key is YamlAliasNode) { if (dictionary == null) { dictionary = new Dictionary(); } dictionary.Add(child.Key, state.GetNode(child.Key.Anchor, child.Key.Start, child.Key.End)); } if (child.Value is YamlAliasNode) { if (dictionary2 == null) { dictionary2 = new Dictionary(); } dictionary2.Add(child.Key, state.GetNode(child.Value.Anchor, child.Value.Start, child.Value.End)); } } if (dictionary2 != null) { foreach (KeyValuePair item in dictionary2) { children[item.Key] = item.Value; } } if (dictionary == null) { return; } foreach (KeyValuePair item2 in dictionary) { YamlNode value = children[item2.Key]; children.Remove(item2.Key); children.Add(item2.Value, value); } } internal override void Emit(IEmitter emitter, EmitterState state) { emitter.Emit(new MappingStart(base.Anchor, base.Tag, isImplicit: true, Style)); foreach (KeyValuePair child in children) { child.Key.Save(emitter, state); child.Value.Save(emitter, state); } emitter.Emit(new MappingEnd()); } public override void Accept(IYamlVisitor visitor) { visitor.Visit(this); } public override bool Equals(object? obj) { if (!(obj is YamlMappingNode yamlMappingNode) || !object.Equals(base.Tag, yamlMappingNode.Tag) || children.Count != yamlMappingNode.children.Count) { return false; } foreach (KeyValuePair child in children) { if (!yamlMappingNode.children.TryGetValue(child.Key, out YamlNode value) || !object.Equals(child.Value, value)) { return false; } } return true; } public override int GetHashCode() { int num = base.GetHashCode(); foreach (KeyValuePair child in children) { num = YamlDotNet.Core.HashCode.CombineHashCodes(num, child.Key); num = (child.Value.Anchor.IsEmpty ? YamlDotNet.Core.HashCode.CombineHashCodes(num, child.Value) : YamlDotNet.Core.HashCode.CombineHashCodes(num, child.Value.Anchor)); } return num; } internal override IEnumerable SafeAllNodes(RecursionLevel level) { level.Increment(); yield return this; foreach (KeyValuePair child in children) { foreach (YamlNode item in child.Key.SafeAllNodes(level)) { yield return item; } foreach (YamlNode item2 in child.Value.SafeAllNodes(level)) { yield return item2; } } level.Decrement(); } internal override string ToString(RecursionLevel level) { if (!level.TryIncrement()) { return "WARNING! INFINITE RECURSION!"; } StringBuilderPool.BuilderWrapper builderWrapper = StringBuilderPool.Rent(); try { StringBuilder builder = builderWrapper.Builder; builder.Append("{ "); foreach (KeyValuePair child in children) { if (builder.Length > 2) { builder.Append(", "); } builder.Append("{ ").Append(child.Key.ToString(level)).Append(", ") .Append(child.Value.ToString(level)) .Append(" }"); } builder.Append(" }"); level.Decrement(); return builder.ToString(); } finally { ((IDisposable)builderWrapper/*cast due to .constrained prefix*/).Dispose(); } } public IEnumerator> GetEnumerator() { return children.GetEnumerator(); } IEnumerator IEnumerable.GetEnumerator() { return GetEnumerator(); } void IYamlConvertible.Read(IParser parser, Type expectedType, ObjectDeserializer nestedObjectDeserializer) { Load(parser, new DocumentLoadingState()); } void IYamlConvertible.Write(IEmitter emitter, ObjectSerializer nestedObjectSerializer) { Emit(emitter, new EmitterState()); } public static YamlMappingNode FromObject(object mapping) { if (mapping == null) { throw new ArgumentNullException("mapping"); } YamlMappingNode yamlMappingNode = new YamlMappingNode(); foreach (PropertyInfo publicProperty in mapping.GetType().GetPublicProperties()) { if (publicProperty.CanRead && publicProperty.GetGetMethod(nonPublic: false).GetParameters().Length == 0) { object value = publicProperty.GetValue(mapping, null); YamlNode yamlNode = value as YamlNode; if (yamlNode == null) { string text = Convert.ToString(value, CultureInfo.InvariantCulture); yamlNode = text ?? string.Empty; } yamlMappingNode.Add(publicProperty.Name, yamlNode); } } return yamlMappingNode; } } internal abstract class YamlNode { private const int MaximumRecursionLevel = 1000; internal const string MaximumRecursionLevelReachedToStringValue = "WARNING! INFINITE RECURSION!"; public AnchorName Anchor { get; set; } public TagName Tag { get; set; } public Mark Start { get; private set; } = Mark.Empty; public Mark End { get; private set; } = Mark.Empty; public IEnumerable AllNodes { get { RecursionLevel level = new RecursionLevel(1000); return SafeAllNodes(level); } } public abstract YamlNodeType NodeType { get; } public YamlNode this[int index] { get { if (!(this is YamlSequenceNode yamlSequenceNode)) { throw new ArgumentException($"Accessed '{NodeType}' with an invalid index: {index}. Only Sequences can be indexed by number."); } return yamlSequenceNode.Children[index]; } } public YamlNode this[YamlNode key] { get { if (!(this is YamlMappingNode yamlMappingNode)) { throw new ArgumentException($"Accessed '{NodeType}' with an invalid index: {key}. Only Mappings can be indexed by key."); } return yamlMappingNode.Children[key]; } } internal void Load(NodeEvent yamlEvent, DocumentLoadingState state) { Tag = yamlEvent.Tag; if (!yamlEvent.Anchor.IsEmpty) { Anchor = yamlEvent.Anchor; state.AddAnchor(this); } Start = yamlEvent.Start; End = yamlEvent.End; } internal static YamlNode ParseNode(IParser parser, DocumentLoadingState state) { if (parser.Accept(out var _)) { return new YamlScalarNode(parser, state); } if (parser.Accept(out var _)) { return new YamlSequenceNode(parser, state); } if (parser.Accept(out var _)) { return new YamlMappingNode(parser, state); } if (parser.TryConsume(out var event4)) { if (!state.TryGetNode(event4.Value, out YamlNode node)) { return new YamlAliasNode(event4.Value); } return node; } throw new ArgumentException("The current event is of an unsupported type.", "parser"); } internal abstract void ResolveAliases(DocumentLoadingState state); internal void Save(IEmitter emitter, EmitterState state) { if (!Anchor.IsEmpty && !state.EmittedAnchors.Add(Anchor)) { emitter.Emit(new YamlDotNet.Core.Events.AnchorAlias(Anchor)); } else { Emit(emitter, state); } } internal abstract void Emit(IEmitter emitter, EmitterState state); public abstract void Accept(IYamlVisitor visitor); public override string ToString() { RecursionLevel recursionLevel = new RecursionLevel(1000); return ToString(recursionLevel); } internal abstract string ToString(RecursionLevel level); internal abstract IEnumerable SafeAllNodes(RecursionLevel level); public static implicit operator YamlNode(string value) { return new YamlScalarNode(value); } public static implicit operator YamlNode(string[] sequence) { return new YamlSequenceNode(((IEnumerable)sequence).Select((Func)((string i) => i))); } public static explicit operator string?(YamlNode node) { if (!(node is YamlScalarNode yamlScalarNode)) { throw new ArgumentException($"Attempted to convert a '{node.NodeType}' to string. This conversion is valid only for Scalars."); } return yamlScalarNode.Value; } } internal sealed class YamlNodeIdentityEqualityComparer : IEqualityComparer { public bool Equals([AllowNull] YamlNode x, [AllowNull] YamlNode y) { return x == y; } public int GetHashCode(YamlNode obj) { return obj.GetHashCode(); } } internal enum YamlNodeType { Alias, Mapping, Scalar, Sequence } [DebuggerDisplay("{Value}")] internal sealed class YamlScalarNode : YamlNode, IYamlConvertible { private bool forceImplicitPlain; private string? value; public string? Value { get { return value; } set { if (value == null) { forceImplicitPlain = true; } else { forceImplicitPlain = false; } this.value = value; } } public ScalarStyle Style { get; set; } public override YamlNodeType NodeType => YamlNodeType.Scalar; internal YamlScalarNode(IParser parser, DocumentLoadingState state) { Load(parser, state); } [MethodImpl(MethodImplOptions.AggressiveInlining)] private void Load(IParser parser, DocumentLoadingState state) { YamlDotNet.Core.Events.Scalar scalar = parser.Consume(); Load(scalar, state); string text = scalar.Value; if (scalar.Style == ScalarStyle.Plain && base.Tag.IsEmpty) { forceImplicitPlain = text.Length switch { 0 => true, 1 => text == "~", 4 => text == "null" || text == "Null" || text == "NULL", _ => false, }; } value = text; Style = scalar.Style; } public YamlScalarNode() { } public YamlScalarNode(string? value) { Value = value; } internal override void ResolveAliases(DocumentLoadingState state) { throw new NotSupportedException("Resolving an alias on a scalar node does not make sense"); } internal override void Emit(IEmitter emitter, EmitterState state) { TagName tag = base.Tag; bool isPlainImplicit = tag.IsEmpty; if (forceImplicitPlain && Style == ScalarStyle.Plain && (Value == null || Value == "")) { tag = JsonSchema.Tags.Null; isPlainImplicit = true; } else if (tag.IsEmpty && Value == null && (Style == ScalarStyle.Plain || Style == ScalarStyle.Any)) { tag = JsonSchema.Tags.Null; isPlainImplicit = true; } emitter.Emit(new YamlDotNet.Core.Events.Scalar(base.Anchor, tag, Value ?? string.Empty, Style, isPlainImplicit, isQuotedImplicit: false)); } public override void Accept(IYamlVisitor visitor) { visitor.Visit(this); } public override bool Equals(object? obj) { if (obj is YamlScalarNode yamlScalarNode && object.Equals(base.Tag, yamlScalarNode.Tag)) { return object.Equals(Value, yamlScalarNode.Value); } return false; } public override int GetHashCode() { return YamlDotNet.Core.HashCode.CombineHashCodes(base.Tag.GetHashCode(), Value); } public static explicit operator string?(YamlScalarNode value) { return value.Value; } internal override string ToString(RecursionLevel level) { return Value ?? string.Empty; } internal override IEnumerable SafeAllNodes(RecursionLevel level) { yield return this; } void IYamlConvertible.Read(IParser parser, Type expectedType, ObjectDeserializer nestedObjectDeserializer) { Load(parser, new DocumentLoadingState()); } void IYamlConvertible.Write(IEmitter emitter, ObjectSerializer nestedObjectSerializer) { Emit(emitter, new EmitterState()); } } [DebuggerDisplay("Count = {children.Count}")] internal sealed class YamlSequenceNode : YamlNode, IEnumerable, IEnumerable, IYamlConvertible { private readonly List children = new List(); public IList Children => children; public SequenceStyle Style { get; set; } public override YamlNodeType NodeType => YamlNodeType.Sequence; internal YamlSequenceNode(IParser parser, DocumentLoadingState state) { Load(parser, state); } private void Load(IParser parser, DocumentLoadingState state) { SequenceStart sequenceStart = parser.Consume(); Load(sequenceStart, state); Style = sequenceStart.Style; bool flag = false; SequenceEnd @event; while (!parser.TryConsume(out @event)) { YamlNode yamlNode = YamlNode.ParseNode(parser, state); children.Add(yamlNode); flag = flag || yamlNode is YamlAliasNode; } if (flag) { state.AddNodeWithUnresolvedAliases(this); } } public YamlSequenceNode() { } public YamlSequenceNode(params YamlNode[] children) : this((IEnumerable)children) { } public YamlSequenceNode(IEnumerable children) { foreach (YamlNode child in children) { this.children.Add(child); } } public void Add(YamlNode child) { children.Add(child); } public void Add(string child) { children.Add(new YamlScalarNode(child)); } internal override void ResolveAliases(DocumentLoadingState state) { for (int i = 0; i < children.Count; i++) { if (children[i] is YamlAliasNode) { children[i] = state.GetNode(children[i].Anchor, children[i].Start, children[i].End); } } } internal override void Emit(IEmitter emitter, EmitterState state) { emitter.Emit(new SequenceStart(base.Anchor, base.Tag, base.Tag.IsEmpty, Style)); foreach (YamlNode child in children) { child.Save(emitter, state); } emitter.Emit(new SequenceEnd()); } public override void Accept(IYamlVisitor visitor) { visitor.Visit(this); } public override bool Equals(object? obj) { if (!(obj is YamlSequenceNode yamlSequenceNode) || !object.Equals(base.Tag, yamlSequenceNode.Tag) || children.Count != yamlSequenceNode.children.Count) { return false; } for (int i = 0; i < children.Count; i++) { if (!object.Equals(children[i], yamlSequenceNode.children[i])) { return false; } } return true; } public override int GetHashCode() { int h = 0; foreach (YamlNode child in children) { h = YamlDotNet.Core.HashCode.CombineHashCodes(h, child); } return YamlDotNet.Core.HashCode.CombineHashCodes(h, base.Tag); } internal override IEnumerable SafeAllNodes(RecursionLevel level) { level.Increment(); yield return this; foreach (YamlNode child in children) { foreach (YamlNode item in child.SafeAllNodes(level)) { yield return item; } } level.Decrement(); } internal override string ToString(RecursionLevel level) { if (!level.TryIncrement()) { return "WARNING! INFINITE RECURSION!"; } StringBuilderPool.BuilderWrapper builderWrapper = StringBuilderPool.Rent(); try { StringBuilder builder = builderWrapper.Builder; builder.Append("[ "); foreach (YamlNode child in children) { if (builder.Length > 2) { builder.Append(", "); } builder.Append(child.ToString(level)); } builder.Append(" ]"); level.Decrement(); return builder.ToString(); } finally { ((IDisposable)builderWrapper/*cast due to .constrained prefix*/).Dispose(); } } public IEnumerator GetEnumerator() { return Children.GetEnumerator(); } IEnumerator IEnumerable.GetEnumerator() { return GetEnumerator(); } void IYamlConvertible.Read(IParser parser, Type expectedType, ObjectDeserializer nestedObjectDeserializer) { Load(parser, new DocumentLoadingState()); } void IYamlConvertible.Write(IEmitter emitter, ObjectSerializer nestedObjectSerializer) { Emit(emitter, new EmitterState()); } } internal class YamlStream : IEnumerable, IEnumerable { private readonly List documents = new List(); public IList Documents => documents; public YamlStream() { } public YamlStream(params YamlDocument[] documents) : this((IEnumerable)documents) { } public YamlStream(IEnumerable documents) { foreach (YamlDocument document in documents) { this.documents.Add(document); } } public void Add(YamlDocument document) { documents.Add(document); } public void Load(TextReader input) { Load(new Parser(input)); } public void Load(IParser parser) { documents.Clear(); parser.Consume(); YamlDotNet.Core.Events.StreamEnd @event; while (!parser.TryConsume(out @event)) { YamlDocument item = new YamlDocument(parser); documents.Add(item); } } public void Save(TextWriter output) { Save(output, assignAnchors: true); } public void Save(TextWriter output, bool assignAnchors) { Save(new Emitter(output), assignAnchors); } public void Save(IEmitter emitter, bool assignAnchors) { emitter.Emit(new YamlDotNet.Core.Events.StreamStart()); foreach (YamlDocument document in documents) { document.Save(emitter, assignAnchors); } emitter.Emit(new YamlDotNet.Core.Events.StreamEnd()); } public void Accept(IYamlVisitor visitor) { visitor.Visit(this); } public IEnumerator GetEnumerator() { return documents.GetEnumerator(); } IEnumerator IEnumerable.GetEnumerator() { return GetEnumerator(); } } [Obsolete("Use YamlVisitorBase")] internal abstract class YamlVisitor : IYamlVisitor { protected virtual void Visit(YamlStream stream) { } protected virtual void Visited(YamlStream stream) { } protected virtual void Visit(YamlDocument document) { } protected virtual void Visited(YamlDocument document) { } protected virtual void Visit(YamlScalarNode scalar) { } protected virtual void Visited(YamlScalarNode scalar) { } protected virtual void Visit(YamlSequenceNode sequence) { } protected virtual void Visited(YamlSequenceNode sequence) { } protected virtual void Visit(YamlMappingNode mapping) { } protected virtual void Visited(YamlMappingNode mapping) { } protected virtual void VisitChildren(YamlStream stream) { foreach (YamlDocument document in stream.Documents) { document.Accept(this); } } protected virtual void VisitChildren(YamlDocument document) { if (document.RootNode != null) { document.RootNode.Accept(this); } } protected virtual void VisitChildren(YamlSequenceNode sequence) { foreach (YamlNode child in sequence.Children) { child.Accept(this); } } protected virtual void VisitChildren(YamlMappingNode mapping) { foreach (KeyValuePair child in mapping.Children) { child.Key.Accept(this); child.Value.Accept(this); } } void IYamlVisitor.Visit(YamlStream stream) { Visit(stream); VisitChildren(stream); Visited(stream); } void IYamlVisitor.Visit(YamlDocument document) { Visit(document); VisitChildren(document); Visited(document); } void IYamlVisitor.Visit(YamlScalarNode scalar) { Visit(scalar); Visited(scalar); } void IYamlVisitor.Visit(YamlSequenceNode sequence) { Visit(sequence); VisitChildren(sequence); Visited(sequence); } void IYamlVisitor.Visit(YamlMappingNode mapping) { Visit(mapping); VisitChildren(mapping); Visited(mapping); } } internal abstract class YamlVisitorBase : IYamlVisitor { public virtual void Visit(YamlStream stream) { VisitChildren(stream); } public virtual void Visit(YamlDocument document) { VisitChildren(document); } public virtual void Visit(YamlScalarNode scalar) { } public virtual void Visit(YamlSequenceNode sequence) { VisitChildren(sequence); } public virtual void Visit(YamlMappingNode mapping) { VisitChildren(mapping); } protected virtual void VisitPair(YamlNode key, YamlNode value) { key.Accept(this); value.Accept(this); } protected virtual void VisitChildren(YamlStream stream) { foreach (YamlDocument document in stream.Documents) { document.Accept(this); } } protected virtual void VisitChildren(YamlDocument document) { if (document.RootNode != null) { document.RootNode.Accept(this); } } protected virtual void VisitChildren(YamlSequenceNode sequence) { foreach (YamlNode child in sequence.Children) { child.Accept(this); } } protected virtual void VisitChildren(YamlMappingNode mapping) { foreach (KeyValuePair child in mapping.Children) { VisitPair(child.Key, child.Value); } } } } namespace YamlDotNet.Helpers { internal class DefaultFsharpHelper : IFsharpHelper { private static bool IsFsharpCore(Type t) { return t.Namespace == "Microsoft.FSharp.Core"; } public bool IsOptionType(Type t) { if (IsFsharpCore(t)) { return t.Name == "FSharpOption`1"; } return false; } public Type? GetOptionUnderlyingType(Type t) { if (!t.IsGenericType || !IsOptionType(t)) { return null; } return t.GenericTypeArguments[0]; } public object? GetValue(IObjectDescriptor objectDescriptor) { if (!IsOptionType(objectDescriptor.Type)) { throw new InvalidOperationException("Should not be called on non-Option<> type"); } if (objectDescriptor.Value == null) { return null; } return objectDescriptor.Type.GetProperty("Value").GetValue(objectDescriptor.Value); } public bool IsFsharpListType(Type t) { if (t.Namespace == "Microsoft.FSharp.Collections") { return t.Name == "FSharpList`1"; } return false; } public object? CreateFsharpListFromArray(Type t, Type itemsType, Array arr) { if (!IsFsharpListType(t)) { return null; } return t.Assembly.GetType("Microsoft.FSharp.Collections.ListModule").GetMethod("OfArray").MakeGenericMethod(itemsType) .Invoke(null, new object[1] { arr }); } } internal static class DictionaryExtensions { public static bool TryAdd(this Dictionary dictionary, T key, V value) { if (dictionary.ContainsKey(key)) { return false; } dictionary.Add(key, value); return true; } public static TValue GetOrAdd(this ConcurrentDictionary dictionary, TKey key, Func valueFactory, TArg arg) { if (dictionary == null) { throw new ArgumentNullException("dictionary"); } if (key == null) { throw new ArgumentNullException("key"); } if (valueFactory == null) { throw new ArgumentNullException("valueFactory"); } TValue value; do { if (dictionary.TryGetValue(key, out value)) { return value; } value = valueFactory(key, arg); } while (!dictionary.TryAdd(key, value)); return value; } } internal static class ExpressionExtensions { public static PropertyInfo AsProperty(this LambdaExpression propertyAccessor) { PropertyInfo propertyInfo = TryGetMemberExpression(propertyAccessor); if (propertyInfo == null) { throw new ArgumentException("Expected a lambda expression in the form: x => x.SomeProperty", "propertyAccessor"); } return propertyInfo; } [return: MaybeNull] private static TMemberInfo TryGetMemberExpression(LambdaExpression lambdaExpression) where TMemberInfo : MemberInfo { if (lambdaExpression.Parameters.Count != 1) { return null; } Expression expression = lambdaExpression.Body; if (expression is UnaryExpression unaryExpression) { if (unaryExpression.NodeType != ExpressionType.Convert) { return null; } expression = unaryExpression.Operand; } if (expression is MemberExpression memberExpression) { if (memberExpression.Expression != lambdaExpression.Parameters[0]) { return null; } return memberExpression.Member as TMemberInfo; } return null; } } internal static class FsharpHelper { public static IFsharpHelper? Instance { get; set; } public static bool IsOptionType(Type t) { return Instance?.IsOptionType(t) ?? false; } public static Type? GetOptionUnderlyingType(Type t) { return Instance?.GetOptionUnderlyingType(t); } public static object? GetValue(IObjectDescriptor objectDescriptor) { return Instance?.GetValue(objectDescriptor); } public static bool IsFsharpListType(Type t) { return Instance?.IsFsharpListType(t) ?? false; } public static object? CreateFsharpListFromArray(Type t, Type itemsType, Array arr) { return Instance?.CreateFsharpListFromArray(t, itemsType, arr); } } internal sealed class GenericCollectionToNonGenericAdapter : IList, ICollection, IEnumerable { private readonly ICollection genericCollection; public bool IsFixedSize { get { throw new NotSupportedException(); } } public bool IsReadOnly { get { throw new NotSupportedException(); } } public object? this[int index] { get { throw new NotSupportedException(); } set { ((IList)genericCollection)[index] = (T)value; } } public int Count { get { throw new NotSupportedException(); } } public bool IsSynchronized { get { throw new NotSupportedException(); } } public object SyncRoot { get { throw new NotSupportedException(); } } public GenericCollectionToNonGenericAdapter(ICollection genericCollection) { this.genericCollection = genericCollection ?? throw new ArgumentNullException("genericCollection"); } public int Add(object? value) { int count = genericCollection.Count; genericCollection.Add((T)value); return count; } public void Clear() { genericCollection.Clear(); } public bool Contains(object? value) { throw new NotSupportedException(); } public int IndexOf(object? value) { throw new NotSupportedException(); } public void Insert(int index, object? value) { throw new NotSupportedException(); } public void Remove(object? value) { throw new NotSupportedException(); } public void RemoveAt(int index) { throw new NotSupportedException(); } public void CopyTo(Array array, int index) { throw new NotSupportedException(); } public IEnumerator GetEnumerator() { return genericCollection.GetEnumerator(); } } internal sealed class GenericDictionaryToNonGenericAdapter : IDictionary, ICollection, IEnumerable where TKey : notnull { private class DictionaryEnumerator : IDictionaryEnumerator, IEnumerator { private readonly IEnumerator> enumerator; public DictionaryEntry Entry => new DictionaryEntry(Key, Value); public object Key => enumerator.Current.Key; public object? Value => enumerator.Current.Value; public object Current => Entry; public DictionaryEnumerator(IEnumerator> enumerator) { this.enumerator = enumerator; } public bool MoveNext() { return enumerator.MoveNext(); } public void Reset() { enumerator.Reset(); } } private readonly IDictionary genericDictionary; public bool IsFixedSize { get { throw new NotSupportedException(); } } public bool IsReadOnly { get { throw new NotSupportedException(); } } public ICollection Keys { get { throw new NotSupportedException(); } } public ICollection Values { get { throw new NotSupportedException(); } } public object? this[object key] { get { throw new NotSupportedException(); } set { genericDictionary[(TKey)key] = (TValue)value; } } public int Count { get { throw new NotSupportedException(); } } public bool IsSynchronized { get { throw new NotSupportedException(); } } public object SyncRoot { get { throw new NotSupportedException(); } } public GenericDictionaryToNonGenericAdapter(IDictionary genericDictionary) { this.genericDictionary = genericDictionary ?? throw new ArgumentNullException("genericDictionary"); } public void Add(object key, object? value) { throw new NotSupportedException(); } public void Clear() { throw new NotSupportedException(); } public bool Contains(object key) { throw new NotSupportedException(); } public IDictionaryEnumerator GetEnumerator() { return new DictionaryEnumerator(genericDictionary.GetEnumerator()); } public void Remove(object key) { throw new NotSupportedException(); } public void CopyTo(Array array, int index) { throw new NotSupportedException(); } IEnumerator IEnumerable.GetEnumerator() { return GetEnumerator(); } } internal interface IFsharpHelper { bool IsOptionType(Type t); Type? GetOptionUnderlyingType(Type t); object? GetValue(IObjectDescriptor objectDescriptor); bool IsFsharpListType(Type t); object? CreateFsharpListFromArray(Type t, Type itemsType, Array arr); } internal interface IOrderedDictionary : IDictionary, ICollection>, IEnumerable>, IEnumerable where TKey : notnull { KeyValuePair this[int index] { get; set; } void Insert(int index, TKey key, TValue value); void RemoveAt(int index); } internal class NullFsharpHelper : IFsharpHelper { public object? CreateFsharpListFromArray(Type t, Type itemsType, Array arr) { return null; } public Type? GetOptionUnderlyingType(Type t) { return null; } public object? GetValue(IObjectDescriptor objectDescriptor) { return null; } public bool IsFsharpListType(Type t) { return false; } public bool IsOptionType(Type t) { return false; } } internal static class NumberExtensions { public static bool IsPowerOfTwo(this int value) { return (value & (value - 1)) == 0; } } [Serializable] internal sealed class OrderedDictionary : IOrderedDictionary, IDictionary, ICollection>, IEnumerable>, IEnumerable where TKey : notnull { private class KeyCollection : ICollection, IEnumerable, IEnumerable { private readonly OrderedDictionary orderedDictionary; public int Count => orderedDictionary.list.Count; public bool IsReadOnly => true; public void Add(TKey item) { throw new NotSupportedException(); } public void Clear() { throw new NotSupportedException(); } public bool Contains(TKey item) { return orderedDictionary.dictionary.ContainsKey(item); } public KeyCollection(OrderedDictionary orderedDictionary) { this.orderedDictionary = orderedDictionary; } public void CopyTo(TKey[] array, int arrayIndex) { for (int i = 0; i < orderedDictionary.list.Count; i++) { array[i] = orderedDictionary.list[i + arrayIndex].Key; } } public IEnumerator GetEnumerator() { return orderedDictionary.list.Select((KeyValuePair kvp) => kvp.Key).GetEnumerator(); } public bool Remove(TKey item) { throw new NotSupportedException(); } IEnumerator IEnumerable.GetEnumerator() { return GetEnumerator(); } } private class ValueCollection : ICollection, IEnumerable, IEnumerable { private readonly OrderedDictionary orderedDictionary; public int Count => orderedDictionary.list.Count; public bool IsReadOnly => true; public void Add(TValue item) { throw new NotSupportedException(); } public void Clear() { throw new NotSupportedException(); } public bool Contains(TValue item) { return orderedDictionary.dictionary.ContainsValue(item); } public ValueCollection(OrderedDictionary orderedDictionary) { this.orderedDictionary = orderedDictionary; } public void CopyTo(TValue[] array, int arrayIndex) { for (int i = 0; i < orderedDictionary.list.Count; i++) { array[i] = orderedDictionary.list[i + arrayIndex].Value; } } public IEnumerator GetEnumerator() { return orderedDictionary.list.Select((KeyValuePair kvp) => kvp.Value).GetEnumerator(); } public bool Remove(TValue item) { throw new NotSupportedException(); } IEnumerator IEnumerable.GetEnumerator() { return GetEnumerator(); } } [NonSerialized] private Dictionary dictionary; private readonly List> list; private readonly IEqualityComparer comparer; public TValue this[TKey key] { get { return dictionary[key]; } set { if (dictionary.ContainsKey(key)) { int index = list.FindIndex((KeyValuePair kvp) => comparer.Equals(kvp.Key, key)); dictionary[key] = value; list[index] = new KeyValuePair(key, value); } else { Add(key, value); } } } public ICollection Keys => new KeyCollection(this); public ICollection Values => new ValueCollection(this); public int Count => dictionary.Count; public bool IsReadOnly => false; public KeyValuePair this[int index] { get { return list[index]; } set { list[index] = value; } } public OrderedDictionary() : this((IEqualityComparer)EqualityComparer.Default) { } public OrderedDictionary(IEqualityComparer comparer) { list = new List>(); dictionary = new Dictionary(comparer); this.comparer = comparer; } public void Add(KeyValuePair item) { if (!TryAdd(item)) { ThrowDuplicateKeyException(item.Key); } } public void Add(TKey key, TValue value) { if (!TryAdd(key, value)) { ThrowDuplicateKeyException(key); } } private static void ThrowDuplicateKeyException(TKey key) { throw new ArgumentException($"An item with the same key {key} has already been added."); } [MethodImpl(MethodImplOptions.AggressiveInlining)] public bool TryAdd(TKey key, TValue value) { if (DictionaryExtensions.TryAdd(dictionary, key, value)) { list.Add(new KeyValuePair(key, value)); return true; } return false; } [MethodImpl(MethodImplOptions.AggressiveInlining)] public bool TryAdd(KeyValuePair item) { if (DictionaryExtensions.TryAdd(dictionary, item.Key, item.Value)) { list.Add(item); return true; } return false; } public void Clear() { dictionary.Clear(); list.Clear(); } public bool Contains(KeyValuePair item) { return dictionary.Contains(item); } public bool ContainsKey(TKey key) { return dictionary.ContainsKey(key); } public void CopyTo(KeyValuePair[] array, int arrayIndex) { list.CopyTo(array, arrayIndex); } public IEnumerator> GetEnumerator() { return list.GetEnumerator(); } public void Insert(int index, TKey key, TValue value) { dictionary.Add(key, value); list.Insert(index, new KeyValuePair(key, value)); } public bool Remove(TKey key) { if (dictionary.ContainsKey(key)) { int index = list.FindIndex((KeyValuePair kvp) => comparer.Equals(kvp.Key, key)); list.RemoveAt(index); if (!dictionary.Remove(key)) { throw new InvalidOperationException(); } return true; } return false; } public bool Remove(KeyValuePair item) { return Remove(item.Key); } public void RemoveAt(int index) { TKey key = list[index].Key; dictionary.Remove(key); list.RemoveAt(index); } public bool TryGetValue(TKey key, [MaybeNullWhen(false)] out TValue value) { return dictionary.TryGetValue(key, out value); } IEnumerator IEnumerable.GetEnumerator() { return list.GetEnumerator(); } [System.Runtime.Serialization.OnDeserialized] internal void OnDeserializedMethod(StreamingContext context) { dictionary = new Dictionary(); foreach (KeyValuePair item in list) { dictionary[item.Key] = item.Value; } } } internal static class ReadOnlyCollectionExtensions { public static IReadOnlyList AsReadonlyList(this List list) { return list; } public static IReadOnlyDictionary AsReadonlyDictionary(this Dictionary dictionary) where TKey : notnull { return dictionary; } } internal static class ThrowHelper { [MethodImpl(MethodImplOptions.NoInlining)] public static void ThrowArgumentOutOfRangeException(string paramName, string message) { throw new ArgumentOutOfRangeException(paramName, message); } } } namespace YamlDotNet.Core { internal readonly struct AnchorName : IEquatable { public static readonly AnchorName Empty; private static readonly Regex AnchorPattern = new Regex("^[^\\[\\]\\{\\},]+$", RegexOptions.Compiled); private readonly string? value; public string Value => value ?? throw new InvalidOperationException("Cannot read the Value of an empty anchor"); public bool IsEmpty => value == null; public AnchorName(string value) { this.value = value ?? throw new ArgumentNullException("value"); if (!AnchorPattern.IsMatch(value)) { throw new ArgumentException("Anchor cannot be empty or contain disallowed characters: []{},\nThe value was '" + value + "'.", "value"); } } public override string ToString() { return value ?? "[empty]"; } public bool Equals(AnchorName other) { return object.Equals(value, other.value); } public override bool Equals(object? obj) { if (obj is AnchorName other) { return Equals(other); } return false; } public override int GetHashCode() { return value?.GetHashCode() ?? 0; } public static bool operator ==(AnchorName left, AnchorName right) { return left.Equals(right); } public static bool operator !=(AnchorName left, AnchorName right) { return !(left == right); } public static implicit operator AnchorName(string? value) { if (value != null) { return new AnchorName(value); } return Empty; } } internal class AnchorNotFoundException : YamlException { public AnchorNotFoundException(string message) : base(message) { } public AnchorNotFoundException(in Mark start, in Mark end, string message) : base(in start, in end, message) { } public AnchorNotFoundException(string message, Exception inner) : base(message, inner) { } } [DebuggerStepThrough] internal readonly struct CharacterAnalyzer where TBuffer : ILookAheadBuffer { public TBuffer Buffer { get; } public bool EndOfInput => Buffer.EndOfInput; public CharacterAnalyzer(TBuffer buffer) { if (buffer == null) { throw new ArgumentNullException("buffer"); } Buffer = buffer; } public char Peek(int offset) { return Buffer.Peek(offset); } public void Skip(int length) { Buffer.Skip(length); } public bool IsAlphaNumericDashOrUnderscore(int offset = 0) { char c = Buffer.Peek(offset); if ((c < '0' || c > '9') && (c < 'A' || c > 'Z') && (c < 'a' || c > 'z') && c != '_') { return c == '-'; } return true; } public bool IsAscii(int offset = 0) { return Buffer.Peek(offset) <= '\u007f'; } public bool IsPrintable(int offset = 0) { char c = Buffer.Peek(offset); switch (c) { default: if (c != '\u0085' && (c < '\u00a0' || c > '\ud7ff')) { if (c >= '\ue000') { return c <= '\ufffd'; } return false; } break; case '\t': case '\n': case '\r': case ' ': case '!': case '"': case '#': case '$': case '%': case '&': case '\'': case '(': case ')': case '*': case '+': case ',': case '-': case '.': case '/': case '0': case '1': case '2': case '3': case '4': case '5': case '6': case '7': case '8': case '9': case ':': case ';': case '<': case '=': case '>': case '?': case '@': case 'A': case 'B': case 'C': case 'D': case 'E': case 'F': case 'G': case 'H': case 'I': case 'J': case 'K': case 'L': case 'M': case 'N': case 'O': case 'P': case 'Q': case 'R': case 'S': case 'T': case 'U': case 'V': case 'W': case 'X': case 'Y': case 'Z': case '[': case '\\': case ']': case '^': case '_': case '`': case 'a': case 'b': case 'c': case 'd': case 'e': case 'f': case 'g': case 'h': case 'i': case 'j': case 'k': case 'l': case 'm': case 'n': case 'o': case 'p': case 'q': case 'r': case 's': case 't': case 'u': case 'v': case 'w': case 'x': case 'y': case 'z': case '{': case '|': case '}': case '~': break; } return true; } public bool IsDigit(int offset = 0) { char c = Buffer.Peek(offset); if (c >= '0') { return c <= '9'; } return false; } public int AsDigit(int offset = 0) { return Buffer.Peek(offset) - 48; } public bool IsHex(int offset) { char c = Buffer.Peek(offset); if ((c < '0' || c > '9') && (c < 'A' || c > 'F')) { if (c >= 'a') { return c <= 'f'; } return false; } return true; } public int AsHex(int offset) { char c = Buffer.Peek(offset); if (c <= '9') { return c - 48; } if (c <= 'F') { return c - 65 + 10; } return c - 97 + 10; } public bool IsSpace(int offset = 0) { return Check(' ', offset); } public bool IsZero(int offset = 0) { return Check('\0', offset); } public bool IsTab(int offset = 0) { return Check('\t', offset); } public bool IsWhite(int offset = 0) { if (!IsSpace(offset)) { return IsTab(offset); } return true; } public bool IsBreak(int offset = 0) { return Check("\r\n\u0085\u2028\u2029", offset); } public bool IsCrLf(int offset = 0) { if (Check('\r', offset)) { return Check('\n', offset + 1); } return false; } public bool IsBreakOrZero(int offset = 0) { if (!IsBreak(offset)) { return IsZero(offset); } return true; } public bool IsWhiteBreakOrZero(int offset = 0) { if (!IsWhite(offset)) { return IsBreakOrZero(offset); } return true; } public bool Check(char expected, int offset = 0) { return Buffer.Peek(offset) == expected; } public bool Check(string expectedCharacters, int offset = 0) { char c = Buffer.Peek(offset); return Polyfills.Contains(expectedCharacters, c); } } internal static class Constants { public static readonly TagDirective[] DefaultTagDirectives = new TagDirective[2] { new TagDirective("!", "!"), new TagDirective("!!", "tag:yaml.org,2002:") }; public const int MajorVersion = 1; public const int MinorVersion = 3; } [DebuggerStepThrough] internal sealed class Cursor { public long Index { get; private set; } public long Line { get; private set; } public long LineOffset { get; private set; } public Cursor() { Line = 1L; } public Cursor(Cursor cursor) { Index = cursor.Index; Line = cursor.Line; LineOffset = cursor.LineOffset; } public Mark Mark() { return new Mark(Index, Line, LineOffset + 1); } public void Skip() { Index++; LineOffset++; } public void SkipLineByOffset(int offset) { Index += offset; Line++; LineOffset = 0L; } public void ForceSkipLineAfterNonBreak() { if (LineOffset != 0L) { Line++; LineOffset = 0L; } } } internal class Emitter : IEmitter { private class AnchorData { public AnchorName Anchor; public bool IsAlias; } private class TagData { public string? Handle; public string? Suffix; } private class ScalarData { public string Value = string.Empty; public bool IsMultiline; public bool IsFlowPlainAllowed; public bool IsBlockPlainAllowed; public bool IsSingleQuotedAllowed; public bool IsBlockAllowed; public bool HasSingleQuotes; public ScalarStyle Style; } private static readonly Regex UriReplacer = new Regex("[^0-9A-Za-z_\\-;?@=$~\\\\\\)\\]/:&+,\\.\\*\\(\\[!]", RegexOptions.Compiled | RegexOptions.Singleline); private static readonly string[] NewLineSeparators = new string[3] { "\r\n", "\r", "\n" }; private readonly TextWriter output; private readonly bool outputUsesUnicodeEncoding; private readonly int maxSimpleKeyLength; private readonly bool isCanonical; private readonly bool skipAnchorName; private readonly int bestIndent; private readonly int bestWidth; private EmitterState state; private readonly Stack states = new Stack(); private readonly Queue events = new Queue(); private readonly Stack indents = new Stack(); private readonly TagDirectiveCollection tagDirectives = new TagDirectiveCollection(); private int indent; private int flowLevel; private bool isMappingContext; private bool isSimpleKeyContext; private int column; private bool isWhitespace; private bool isIndentation; private readonly bool forceIndentLess; private readonly bool useUtf16SurrogatePair; private bool isDocumentEndWritten; private readonly AnchorData anchorData = new AnchorData(); private readonly TagData tagData = new TagData(); private readonly ScalarData scalarData = new ScalarData(); public Emitter(TextWriter output) : this(output, EmitterSettings.Default) { } public Emitter(TextWriter output, int bestIndent) : this(output, bestIndent, int.MaxValue) { } public Emitter(TextWriter output, int bestIndent, int bestWidth) : this(output, bestIndent, bestWidth, isCanonical: false) { } public Emitter(TextWriter output, int bestIndent, int bestWidth, bool isCanonical) : this(output, new EmitterSettings(bestIndent, bestWidth, isCanonical, 1024)) { } public Emitter(TextWriter output, EmitterSettings settings) { bestIndent = settings.BestIndent; bestWidth = settings.BestWidth; isCanonical = settings.IsCanonical; maxSimpleKeyLength = settings.MaxSimpleKeyLength; skipAnchorName = settings.SkipAnchorName; forceIndentLess = !settings.IndentSequences; useUtf16SurrogatePair = settings.UseUtf16SurrogatePairs; this.output = output; this.output.NewLine = settings.NewLine; outputUsesUnicodeEncoding = IsUnicode(output.Encoding); } public void Emit(ParsingEvent @event) { events.Enqueue(@event); while (!NeedMoreEvents()) { ParsingEvent evt = events.Peek(); try { AnalyzeEvent(evt); StateMachine(evt); } finally { events.Dequeue(); } } } private bool NeedMoreEvents() { if (events.Count == 0) { return true; } int num; switch (events.Peek().Type) { case EventType.DocumentStart: num = 1; break; case EventType.SequenceStart: num = 2; break; case EventType.MappingStart: num = 3; break; default: return false; } if (events.Count > num) { return false; } int num2 = 0; foreach (ParsingEvent @event in events) { switch (@event.Type) { case EventType.DocumentStart: case EventType.SequenceStart: case EventType.MappingStart: num2++; break; case EventType.DocumentEnd: case EventType.SequenceEnd: case EventType.MappingEnd: num2--; break; } if (num2 == 0) { return false; } } return true; } private void AnalyzeEvent(ParsingEvent evt) { anchorData.Anchor = AnchorName.Empty; tagData.Handle = null; tagData.Suffix = null; if (evt is YamlDotNet.Core.Events.AnchorAlias anchorAlias) { AnalyzeAnchor(anchorAlias.Value, isAlias: true); } else if (evt is NodeEvent nodeEvent) { if (evt is YamlDotNet.Core.Events.Scalar scalar) { AnalyzeScalar(scalar); } AnalyzeAnchor(nodeEvent.Anchor, isAlias: false); if (!nodeEvent.Tag.IsEmpty && (isCanonical || nodeEvent.IsCanonical)) { AnalyzeTag(nodeEvent.Tag); } } } private void AnalyzeAnchor(AnchorName anchor, bool isAlias) { anchorData.Anchor = anchor; anchorData.IsAlias = isAlias; } private void AnalyzeScalar(YamlDotNet.Core.Events.Scalar scalar) { string value = scalar.Value; scalarData.Value = value; if (value.Length == 0) { if (scalar.Tag == "tag:yaml.org,2002:null") { scalarData.IsMultiline = false; scalarData.IsFlowPlainAllowed = false; scalarData.IsBlockPlainAllowed = true; scalarData.IsSingleQuotedAllowed = false; scalarData.IsBlockAllowed = false; } else { scalarData.IsMultiline = false; scalarData.IsFlowPlainAllowed = false; scalarData.IsBlockPlainAllowed = false; scalarData.IsSingleQuotedAllowed = true; scalarData.IsBlockAllowed = false; } return; } bool flag = false; bool flag2 = false; if (value.StartsWith("---", StringComparison.Ordinal) || value.StartsWith("...", StringComparison.Ordinal)) { flag = true; flag2 = true; } StringLookAheadBufferPool.BufferWrapper bufferWrapper = StringLookAheadBufferPool.Rent(value); try { CharacterAnalyzer characterAnalyzer = new CharacterAnalyzer(bufferWrapper.Buffer); bool flag3 = true; bool flag4 = characterAnalyzer.IsWhiteBreakOrZero(1); bool flag5 = false; bool flag6 = false; bool flag7 = false; bool flag8 = false; bool flag9 = false; bool flag10 = false; bool flag11 = false; bool flag12 = false; bool flag13 = false; bool flag14 = false; bool flag15 = false; bool flag16 = !ValueIsRepresentableInOutputEncoding(value); bool flag17 = false; bool flag18 = false; bool flag19 = true; while (!characterAnalyzer.EndOfInput) { if (flag19) { if (characterAnalyzer.Check("#,[]{}&*!|>\"%@`'")) { flag = true; flag2 = true; flag9 = characterAnalyzer.Check('\''); flag17 |= characterAnalyzer.Check('\''); } if (characterAnalyzer.Check("?:")) { flag = true; if (flag4) { flag2 = true; } } if (characterAnalyzer.Check('-') && flag4) { flag = true; flag2 = true; } } else { if (characterAnalyzer.Check(",?[]{}")) { flag = true; } if (characterAnalyzer.Check(':')) { flag = true; if (flag4) { flag2 = true; } } if (characterAnalyzer.Check('#') && flag3) { flag = true; flag2 = true; } flag17 |= characterAnalyzer.Check('\''); } if (!flag16 && !characterAnalyzer.IsPrintable()) { flag16 = true; } if (characterAnalyzer.IsBreak()) { flag15 = true; } if (characterAnalyzer.IsSpace()) { if (flag19) { flag5 = true; } if (characterAnalyzer.Buffer.Position >= characterAnalyzer.Buffer.Length - 1) { flag7 = true; } if (flag13) { flag10 = true; flag14 = true; } flag12 = true; flag13 = false; } else if (characterAnalyzer.IsBreak()) { if (flag19) { flag6 = true; } if (characterAnalyzer.Buffer.Position >= characterAnalyzer.Buffer.Length - 1) { flag8 = true; } if (flag12) { flag11 = true; } if (flag14) { flag18 = true; } flag12 = false; flag13 = true; } else { flag12 = false; flag13 = false; flag14 = false; } flag3 = characterAnalyzer.IsWhiteBreakOrZero(); characterAnalyzer.Skip(1); if (!characterAnalyzer.EndOfInput) { flag4 = characterAnalyzer.IsWhiteBreakOrZero(1); } flag19 = false; } scalarData.IsFlowPlainAllowed = true; scalarData.IsBlockPlainAllowed = true; scalarData.IsSingleQuotedAllowed = true; scalarData.IsBlockAllowed = true; if (flag5 || flag6 || flag7 || flag8 || flag9) { scalarData.IsFlowPlainAllowed = false; scalarData.IsBlockPlainAllowed = false; } if (flag7) { scalarData.IsBlockAllowed = false; } if (flag10) { scalarData.IsFlowPlainAllowed = false; scalarData.IsBlockPlainAllowed = false; scalarData.IsSingleQuotedAllowed = false; } if (flag11 || flag16) { scalarData.IsFlowPlainAllowed = false; scalarData.IsBlockPlainAllowed = false; scalarData.IsSingleQuotedAllowed = false; } if (flag18) { scalarData.IsBlockAllowed = false; } scalarData.IsMultiline = flag15; if (flag15) { scalarData.IsFlowPlainAllowed = false; scalarData.IsBlockPlainAllowed = false; } if (flag) { scalarData.IsFlowPlainAllowed = false; } if (flag2) { scalarData.IsBlockPlainAllowed = false; } scalarData.HasSingleQuotes = flag17; } finally { ((IDisposable)bufferWrapper/*cast due to .constrained prefix*/).Dispose(); } } private bool ValueIsRepresentableInOutputEncoding(string value) { if (outputUsesUnicodeEncoding) { return true; } try { byte[] bytes = output.Encoding.GetBytes(value); string text = output.Encoding.GetString(bytes, 0, bytes.Length); return text.Equals(value); } catch (EncoderFallbackException) { return false; } catch (ArgumentOutOfRangeException) { return false; } } private static bool IsUnicode(Encoding encoding) { if (!(encoding is UTF8Encoding) && !(encoding is UnicodeEncoding)) { return encoding is UTF7Encoding; } return true; } private void AnalyzeTag(TagName tag) { tagData.Handle = tag.Value; foreach (TagDirective tagDirective in tagDirectives) { if (tag.Value.StartsWith(tagDirective.Prefix, StringComparison.Ordinal)) { tagData.Handle = tagDirective.Handle; tagData.Suffix = tag.Value.Substring(tagDirective.Prefix.Length); break; } } } private void StateMachine(ParsingEvent evt) { if (evt is YamlDotNet.Core.Events.Comment comment) { EmitComment(comment); return; } switch (state) { case EmitterState.StreamStart: EmitStreamStart(evt); break; case EmitterState.FirstDocumentStart: EmitDocumentStart(evt, isFirst: true); break; case EmitterState.DocumentStart: EmitDocumentStart(evt, isFirst: false); break; case EmitterState.DocumentContent: EmitDocumentContent(evt); break; case EmitterState.DocumentEnd: EmitDocumentEnd(evt); break; case EmitterState.FlowSequenceFirstItem: EmitFlowSequenceItem(evt, isFirst: true); break; case EmitterState.FlowSequenceItem: EmitFlowSequenceItem(evt, isFirst: false); break; case EmitterState.FlowMappingFirstKey: EmitFlowMappingKey(evt, isFirst: true); break; case EmitterState.FlowMappingKey: EmitFlowMappingKey(evt, isFirst: false); break; case EmitterState.FlowMappingSimpleValue: EmitFlowMappingValue(evt, isSimple: true); break; case EmitterState.FlowMappingValue: EmitFlowMappingValue(evt, isSimple: false); break; case EmitterState.BlockSequenceFirstItem: EmitBlockSequenceItem(evt, isFirst: true); break; case EmitterState.BlockSequenceItem: EmitBlockSequenceItem(evt, isFirst: false); break; case EmitterState.BlockMappingFirstKey: EmitBlockMappingKey(evt, isFirst: true); break; case EmitterState.BlockMappingKey: EmitBlockMappingKey(evt, isFirst: false); break; case EmitterState.BlockMappingSimpleValue: EmitBlockMappingValue(evt, isSimple: true); break; case EmitterState.BlockMappingValue: EmitBlockMappingValue(evt, isSimple: false); break; case EmitterState.StreamEnd: throw new YamlException("Expected nothing after STREAM-END"); default: throw new InvalidOperationException(); } } private void EmitComment(YamlDotNet.Core.Events.Comment comment) { if (flowLevel > 0 || state == EmitterState.FlowMappingFirstKey || state == EmitterState.FlowSequenceFirstItem) { return; } string[] array = comment.Value.Split(NewLineSeparators, StringSplitOptions.None); if (comment.IsInline) { Write(" # "); Write(string.Join(" ", array)); } else { bool flag = state == EmitterState.BlockMappingFirstKey; if (flag) { IncreaseIndent(isFlow: false, isIndentless: false); } string[] array2 = array; foreach (string value in array2) { WriteIndent(); Write("# "); Write(value); WriteBreak(); } if (flag) { indent = indents.Pop(); } } isIndentation = true; } private void EmitStreamStart(ParsingEvent evt) { if (!(evt is YamlDotNet.Core.Events.StreamStart)) { throw new ArgumentException("Expected STREAM-START.", "evt"); } indent = -1; column = 0; isWhitespace = true; isIndentation = true; state = EmitterState.FirstDocumentStart; } private void EmitDocumentStart(ParsingEvent evt, bool isFirst) { if (evt is YamlDotNet.Core.Events.DocumentStart documentStart) { bool flag = documentStart.IsImplicit && isFirst && !isCanonical; TagDirectiveCollection tagDirectiveCollection = NonDefaultTagsAmong(documentStart.Tags); if (!isFirst && !isDocumentEndWritten && (documentStart.Version != null || tagDirectiveCollection.Count > 0)) { isDocumentEndWritten = false; WriteIndicator("...", needWhitespace: true, whitespace: false, indentation: false); WriteIndent(); } if (documentStart.Version != null) { AnalyzeVersionDirective(documentStart.Version); Version version = documentStart.Version.Version; flag = false; WriteIndicator("%YAML", needWhitespace: true, whitespace: false, indentation: false); WriteIndicator(string.Format(CultureInfo.InvariantCulture, "{0}.{1}", version.Major, version.Minor), needWhitespace: true, whitespace: false, indentation: false); WriteIndent(); } foreach (TagDirective item in tagDirectiveCollection) { AppendTagDirectiveTo(item, allowDuplicates: false, tagDirectives); } TagDirective[] defaultTagDirectives = Constants.DefaultTagDirectives; foreach (TagDirective value in defaultTagDirectives) { AppendTagDirectiveTo(value, allowDuplicates: true, tagDirectives); } if (tagDirectiveCollection.Count > 0) { flag = false; TagDirective[] defaultTagDirectives2 = Constants.DefaultTagDirectives; foreach (TagDirective value2 in defaultTagDirectives2) { AppendTagDirectiveTo(value2, allowDuplicates: true, tagDirectiveCollection); } foreach (TagDirective item2 in tagDirectiveCollection) { WriteIndicator("%TAG", needWhitespace: true, whitespace: false, indentation: false); WriteTagHandle(item2.Handle); WriteTagContent(item2.Prefix, needsWhitespace: true); WriteIndent(); } } if (CheckEmptyDocument()) { flag = false; } if (!flag) { WriteIndent(); WriteIndicator("---", needWhitespace: true, whitespace: false, indentation: false); if (isCanonical) { WriteIndent(); } } state = EmitterState.DocumentContent; } else { if (!(evt is YamlDotNet.Core.Events.StreamEnd)) { throw new YamlException("Expected DOCUMENT-START or STREAM-END"); } state = EmitterState.StreamEnd; } } private static TagDirectiveCollection NonDefaultTagsAmong(IEnumerable? tagCollection) { TagDirectiveCollection tagDirectiveCollection = new TagDirectiveCollection(); if (tagCollection == null) { return tagDirectiveCollection; } foreach (TagDirective item2 in tagCollection) { AppendTagDirectiveTo(item2, allowDuplicates: false, tagDirectiveCollection); } TagDirective[] defaultTagDirectives = Constants.DefaultTagDirectives; foreach (TagDirective item in defaultTagDirectives) { tagDirectiveCollection.Remove(item); } return tagDirectiveCollection; } private static void AnalyzeVersionDirective(VersionDirective versionDirective) { if (versionDirective.Version.Major != 1 || versionDirective.Version.Minor > 3) { throw new YamlException("Incompatible %YAML directive"); } } private static void AppendTagDirectiveTo(TagDirective value, bool allowDuplicates, TagDirectiveCollection tagDirectives) { if (tagDirectives.Contains(value)) { if (!allowDuplicates) { throw new YamlException("Duplicate %TAG directive."); } } else { tagDirectives.Add(value); } } private void EmitDocumentContent(ParsingEvent evt) { states.Push(EmitterState.DocumentEnd); EmitNode(evt, isMapping: false, isSimpleKey: false); } private void EmitNode(ParsingEvent evt, bool isMapping, bool isSimpleKey) { isMappingContext = isMapping; isSimpleKeyContext = isSimpleKey; switch (evt.Type) { case EventType.Alias: EmitAlias(); break; case EventType.Scalar: EmitScalar(evt); break; case EventType.SequenceStart: EmitSequenceStart(evt); break; case EventType.MappingStart: EmitMappingStart(evt); break; default: throw new YamlException($"Expected SCALAR, SEQUENCE-START, MAPPING-START, or ALIAS, got {evt.Type}"); } } private void EmitAlias() { ProcessAnchor(); state = states.Pop(); } private void EmitScalar(ParsingEvent evt) { SelectScalarStyle(evt); ProcessAnchor(); ProcessTag(); IncreaseIndent(isFlow: true, isIndentless: false); ProcessScalar(); indent = indents.Pop(); state = states.Pop(); } private void SelectScalarStyle(ParsingEvent evt) { YamlDotNet.Core.Events.Scalar scalar = (YamlDotNet.Core.Events.Scalar)evt; ScalarStyle scalarStyle = scalar.Style; bool flag = tagData.Handle == null && tagData.Suffix == null; if (flag && !scalar.IsPlainImplicit && !scalar.IsQuotedImplicit) { throw new YamlException("Neither tag nor isImplicit flags are specified."); } if (scalarStyle == ScalarStyle.Any) { scalarStyle = ((!scalarData.IsMultiline) ? ScalarStyle.Plain : ScalarStyle.Folded); } if (isCanonical) { scalarStyle = ScalarStyle.DoubleQuoted; } if (isSimpleKeyContext && scalarData.IsMultiline) { scalarStyle = ScalarStyle.DoubleQuoted; } if (scalarStyle == ScalarStyle.Plain) { if ((flowLevel != 0 && !scalarData.IsFlowPlainAllowed) || (flowLevel == 0 && !scalarData.IsBlockPlainAllowed)) { scalarStyle = ((scalarData.IsSingleQuotedAllowed && !scalarData.HasSingleQuotes) ? ScalarStyle.SingleQuoted : ScalarStyle.DoubleQuoted); } if (string.IsNullOrEmpty(scalarData.Value) && (flowLevel != 0 || isSimpleKeyContext)) { scalarStyle = ScalarStyle.SingleQuoted; } if (flag && !scalar.IsPlainImplicit) { scalarStyle = ScalarStyle.SingleQuoted; } } if (scalarStyle == ScalarStyle.SingleQuoted && !scalarData.IsSingleQuotedAllowed) { scalarStyle = ScalarStyle.DoubleQuoted; } if ((scalarStyle == ScalarStyle.Literal || scalarStyle == ScalarStyle.Folded) && (!scalarData.IsBlockAllowed || flowLevel != 0 || isSimpleKeyContext)) { scalarStyle = ScalarStyle.DoubleQuoted; } if (scalarStyle == ScalarStyle.ForcePlain) { scalarStyle = ScalarStyle.Plain; } scalarData.Style = scalarStyle; } private void ProcessScalar() { switch (scalarData.Style) { case ScalarStyle.Plain: WritePlainScalar(scalarData.Value, !isSimpleKeyContext); break; case ScalarStyle.SingleQuoted: WriteSingleQuotedScalar(scalarData.Value, !isSimpleKeyContext); break; case ScalarStyle.DoubleQuoted: WriteDoubleQuotedScalar(scalarData.Value, !isSimpleKeyContext); break; case ScalarStyle.Literal: WriteLiteralScalar(scalarData.Value); break; case ScalarStyle.Folded: WriteFoldedScalar(scalarData.Value); break; default: throw new InvalidOperationException(); } } private void WritePlainScalar(string value, bool allowBreaks) { if (!isWhitespace) { Write(' '); } bool flag = false; bool flag2 = false; for (int i = 0; i < value.Length; i++) { char c = value[i]; if (IsSpace(c)) { if (allowBreaks && !flag && column > bestWidth && i + 1 < value.Length && value[i + 1] != ' ') { WriteIndent(); } else { Write(c); } flag = true; continue; } if (IsBreak(c, out var breakChar)) { if (!flag2 && c == '\n') { WriteBreak(); } WriteBreak(breakChar); isIndentation = true; flag2 = true; continue; } if (flag2) { WriteIndent(); } Write(c); isIndentation = false; flag = false; flag2 = false; } isWhitespace = false; isIndentation = false; } private void WriteSingleQuotedScalar(string value, bool allowBreaks) { WriteIndicator("'", needWhitespace: true, whitespace: false, indentation: false); bool flag = false; bool flag2 = false; for (int i = 0; i < value.Length; i++) { char c = value[i]; if (c == ' ') { if (allowBreaks && !flag && column > bestWidth && i != 0 && i + 1 < value.Length && value[i + 1] != ' ') { WriteIndent(); } else { Write(c); } flag = true; continue; } if (IsBreak(c, out var breakChar)) { if (!flag2 && c == '\n') { WriteBreak(); } WriteBreak(breakChar); isIndentation = true; flag2 = true; continue; } if (flag2) { WriteIndent(); } if (c == '\'') { Write(c); } Write(c); isIndentation = false; flag = false; flag2 = false; } WriteIndicator("'", needWhitespace: false, whitespace: false, indentation: false); isWhitespace = false; isIndentation = false; } private void WriteDoubleQuotedScalar(string value, bool allowBreaks) { WriteIndicator("\"", needWhitespace: true, whitespace: false, indentation: false); bool flag = false; for (int i = 0; i < value.Length; i++) { char c = value[i]; if (IsPrintable(c) && !IsBreak(c, out var _)) { switch (c) { case '"': case '\\': break; case ' ': if (allowBreaks && !flag && column > bestWidth && i > 0 && i + 1 < value.Length) { WriteIndent(); if (value[i + 1] == ' ') { Write('\\'); } } else { Write(c); } flag = true; continue; default: Write(c); flag = false; continue; } } Write('\\'); switch (c) { case '\0': Write('0'); break; case '\a': Write('a'); break; case '\b': Write('b'); break; case '\t': Write('t'); break; case '\n': Write('n'); break; case '\v': Write('v'); break; case '\f': Write('f'); break; case '\r': Write('r'); break; case '\u001b': Write('e'); break; case '"': Write('"'); break; case '\\': Write('\\'); break; case '\u0085': Write('N'); break; case '\u00a0': Write('_'); break; case '\u2028': Write('L'); break; case '\u2029': Write('P'); break; default: { ushort num = c; if (num <= 255) { Write('x'); Write(num.ToString("X02", CultureInfo.InvariantCulture)); } else if (IsHighSurrogate(c)) { if (i + 1 >= value.Length || !IsLowSurrogate(value[i + 1])) { throw new SyntaxErrorException("While writing a quoted scalar, found an orphaned high surrogate."); } if (useUtf16SurrogatePair) { Write('u'); Write(num.ToString("X04", CultureInfo.InvariantCulture)); Write('\\'); Write('u'); Write(((ushort)value[i + 1]).ToString("X04", CultureInfo.InvariantCulture)); } else { Write('U'); Write(char.ConvertToUtf32(c, value[i + 1]).ToString("X08", CultureInfo.InvariantCulture)); } i++; } else { Write('u'); Write(num.ToString("X04", CultureInfo.InvariantCulture)); } break; } } flag = false; } WriteIndicator("\"", needWhitespace: false, whitespace: false, indentation: false); isWhitespace = false; isIndentation = false; } private void WriteLiteralScalar(string value) { bool flag = true; WriteIndicator("|", needWhitespace: true, whitespace: false, indentation: false); WriteBlockScalarHints(value); WriteBreak(); isIndentation = true; isWhitespace = true; for (int i = 0; i < value.Length; i++) { char c = value[i]; if (c == '\r' && i + 1 < value.Length && value[i + 1] == '\n') { continue; } if (IsBreak(c, out var breakChar)) { WriteBreak(breakChar); isIndentation = true; flag = true; continue; } if (flag) { WriteIndent(); } Write(c); isIndentation = false; flag = false; } } private void WriteFoldedScalar(string value) { bool flag = true; bool flag2 = true; WriteIndicator(">", needWhitespace: true, whitespace: false, indentation: false); WriteBlockScalarHints(value); WriteBreak(); isIndentation = true; isWhitespace = true; for (int i = 0; i < value.Length; i++) { char c = value[i]; if (IsBreak(c, out var breakChar)) { if (c == '\r' && i + 1 < value.Length && value[i + 1] == '\n') { continue; } if (!flag && !flag2 && breakChar == '\n') { int j; char breakChar2; for (j = 0; i + j < value.Length && IsBreak(value[i + j], out breakChar2); j++) { } if (i + j < value.Length && !IsBlank(value[i + j]) && !IsBreak(value[i + j], out breakChar2)) { WriteBreak(); } } WriteBreak(breakChar); isIndentation = true; flag = true; } else { if (flag) { WriteIndent(); flag2 = IsBlank(c); } if (!flag && c == ' ' && i + 1 < value.Length && value[i + 1] != ' ' && column > bestWidth) { WriteIndent(); } else { Write(c); } isIndentation = false; flag = false; } } } private static bool IsSpace(char character) { return character == ' '; } private static bool IsBreak(char character, out char breakChar) { switch (character) { case '\n': case '\r': case '\u0085': breakChar = '\n'; return true; case '\u2028': case '\u2029': breakChar = character; return true; default: breakChar = '\0'; return false; } } private static bool IsBlank(char character) { if (character != ' ') { return character == '\t'; } return true; } private static bool IsPrintable(char character) { switch (character) { default: if (character != '\u0085' && (character < '\u00a0' || character > '\ud7ff')) { if (character >= '\ue000') { return character <= '\ufffd'; } return false; } break; case '\t': case '\n': case '\r': case ' ': case '!': case '"': case '#': case '$': case '%': case '&': case '\'': case '(': case ')': case '*': case '+': case ',': case '-': case '.': case '/': case '0': case '1': case '2': case '3': case '4': case '5': case '6': case '7': case '8': case '9': case ':': case ';': case '<': case '=': case '>': case '?': case '@': case 'A': case 'B': case 'C': case 'D': case 'E': case 'F': case 'G': case 'H': case 'I': case 'J': case 'K': case 'L': case 'M': case 'N': case 'O': case 'P': case 'Q': case 'R': case 'S': case 'T': case 'U': case 'V': case 'W': case 'X': case 'Y': case 'Z': case '[': case '\\': case ']': case '^': case '_': case '`': case 'a': case 'b': case 'c': case 'd': case 'e': case 'f': case 'g': case 'h': case 'i': case 'j': case 'k': case 'l': case 'm': case 'n': case 'o': case 'p': case 'q': case 'r': case 's': case 't': case 'u': case 'v': case 'w': case 'x': case 'y': case 'z': case '{': case '|': case '}': case '~': break; } return true; } private static bool IsHighSurrogate(char c) { if ('\ud800' <= c) { return c <= '\udbff'; } return false; } private static bool IsLowSurrogate(char c) { if ('\udc00' <= c) { return c <= '\udfff'; } return false; } private void EmitSequenceStart(ParsingEvent evt) { ProcessAnchor(); ProcessTag(); SequenceStart sequenceStart = (SequenceStart)evt; if (flowLevel != 0 || isCanonical || sequenceStart.Style == SequenceStyle.Flow || CheckEmptySequence()) { state = EmitterState.FlowSequenceFirstItem; } else { state = EmitterState.BlockSequenceFirstItem; } } private void EmitMappingStart(ParsingEvent evt) { ProcessAnchor(); ProcessTag(); MappingStart mappingStart = (MappingStart)evt; if (flowLevel != 0 || isCanonical || mappingStart.Style == MappingStyle.Flow || CheckEmptyMapping()) { state = EmitterState.FlowMappingFirstKey; } else { state = EmitterState.BlockMappingFirstKey; } } private void ProcessAnchor() { if (!anchorData.Anchor.IsEmpty && !skipAnchorName) { WriteIndicator(anchorData.IsAlias ? "*" : "&", needWhitespace: true, whitespace: false, indentation: false); WriteAnchor(anchorData.Anchor); } } private void ProcessTag() { if (tagData.Handle == null && tagData.Suffix == null) { return; } if (tagData.Handle != null) { WriteTagHandle(tagData.Handle); if (tagData.Suffix != null) { WriteTagContent(tagData.Suffix, needsWhitespace: false); } } else { WriteIndicator("!<", needWhitespace: true, whitespace: false, indentation: false); WriteTagContent(tagData.Suffix, needsWhitespace: false); WriteIndicator(">", needWhitespace: false, whitespace: false, indentation: false); } } private void EmitDocumentEnd(ParsingEvent evt) { if (evt is YamlDotNet.Core.Events.DocumentEnd documentEnd) { WriteIndent(); if (!documentEnd.IsImplicit) { WriteIndicator("...", needWhitespace: true, whitespace: false, indentation: false); WriteIndent(); isDocumentEndWritten = true; } state = EmitterState.DocumentStart; tagDirectives.Clear(); return; } throw new YamlException("Expected DOCUMENT-END."); } private void EmitFlowSequenceItem(ParsingEvent evt, bool isFirst) { if (isFirst) { WriteIndicator("[", needWhitespace: true, whitespace: true, indentation: false); IncreaseIndent(isFlow: true, isIndentless: false); flowLevel++; } if (evt is SequenceEnd) { flowLevel--; indent = indents.Pop(); if (isCanonical && !isFirst) { WriteIndicator(",", needWhitespace: false, whitespace: false, indentation: false); WriteIndent(); } WriteIndicator("]", needWhitespace: false, whitespace: false, indentation: false); state = states.Pop(); } else { if (!isFirst) { WriteIndicator(",", needWhitespace: false, whitespace: false, indentation: false); } if (isCanonical || column > bestWidth) { WriteIndent(); } states.Push(EmitterState.FlowSequenceItem); EmitNode(evt, isMapping: false, isSimpleKey: false); } } private void EmitFlowMappingKey(ParsingEvent evt, bool isFirst) { if (isFirst) { WriteIndicator("{", needWhitespace: true, whitespace: true, indentation: false); IncreaseIndent(isFlow: true, isIndentless: false); flowLevel++; } if (evt is MappingEnd) { flowLevel--; indent = indents.Pop(); if (isCanonical && !isFirst) { WriteIndicator(",", needWhitespace: false, whitespace: false, indentation: false); WriteIndent(); } WriteIndicator("}", needWhitespace: false, whitespace: false, indentation: false); state = states.Pop(); return; } if (!isFirst) { WriteIndicator(",", needWhitespace: false, whitespace: false, indentation: false); } if (isCanonical || column > bestWidth) { WriteIndent(); } if (!isCanonical && CheckSimpleKey()) { states.Push(EmitterState.FlowMappingSimpleValue); EmitNode(evt, isMapping: true, isSimpleKey: true); } else { WriteIndicator("?", needWhitespace: true, whitespace: false, indentation: false); states.Push(EmitterState.FlowMappingValue); EmitNode(evt, isMapping: true, isSimpleKey: false); } } private void EmitFlowMappingValue(ParsingEvent evt, bool isSimple) { if (isSimple) { WriteIndicator(":", needWhitespace: false, whitespace: false, indentation: false); } else { if (isCanonical || column > bestWidth) { WriteIndent(); } WriteIndicator(":", needWhitespace: true, whitespace: false, indentation: false); } states.Push(EmitterState.FlowMappingKey); EmitNode(evt, isMapping: true, isSimpleKey: false); } private void EmitBlockSequenceItem(ParsingEvent evt, bool isFirst) { if (isFirst) { IncreaseIndent(isFlow: false, isMappingContext && !isIndentation); } if (evt is SequenceEnd) { indent = indents.Pop(); state = states.Pop(); return; } WriteIndent(); WriteIndicator("-", needWhitespace: true, whitespace: false, indentation: true); states.Push(EmitterState.BlockSequenceItem); EmitNode(evt, isMapping: false, isSimpleKey: false); } private void EmitBlockMappingKey(ParsingEvent evt, bool isFirst) { if (isFirst) { IncreaseIndent(isFlow: false, isIndentless: false); } if (evt is MappingEnd) { indent = indents.Pop(); state = states.Pop(); return; } WriteIndent(); if (CheckSimpleKey()) { states.Push(EmitterState.BlockMappingSimpleValue); EmitNode(evt, isMapping: true, isSimpleKey: true); WriteIndicator(":", needWhitespace: false, whitespace: false, indentation: false); } else { WriteIndicator("?", needWhitespace: true, whitespace: false, indentation: true); states.Push(EmitterState.BlockMappingValue); EmitNode(evt, isMapping: true, isSimpleKey: false); } } private void EmitBlockMappingValue(ParsingEvent evt, bool isSimple) { if (!isSimple) { WriteIndent(); WriteIndicator(":", needWhitespace: true, whitespace: false, indentation: true); } states.Push(EmitterState.BlockMappingKey); EmitNode(evt, isMapping: true, isSimpleKey: false); } private void IncreaseIndent(bool isFlow, bool isIndentless) { indents.Push(indent); if (indent < 0) { indent = (isFlow ? bestIndent : 0); } else if (!isIndentless || !forceIndentLess) { indent += bestIndent; } } private bool CheckEmptyDocument() { int num = 0; foreach (ParsingEvent @event in events) { num++; if (num == 2) { if (@event is YamlDotNet.Core.Events.Scalar scalar) { return string.IsNullOrEmpty(scalar.Value); } break; } } return false; } private bool CheckSimpleKey() { if (events.Count < 1) { return false; } int num; switch (events.Peek().Type) { case EventType.Alias: num = AnchorNameLength(anchorData.Anchor); break; case EventType.Scalar: if (scalarData.IsMultiline) { return false; } num = AnchorNameLength(anchorData.Anchor) + SafeStringLength(tagData.Handle) + SafeStringLength(tagData.Suffix) + SafeStringLength(scalarData.Value); break; case EventType.SequenceStart: if (!CheckEmptySequence()) { return false; } num = AnchorNameLength(anchorData.Anchor) + SafeStringLength(tagData.Handle) + SafeStringLength(tagData.Suffix); break; case EventType.MappingStart: if (!CheckEmptySequence()) { return false; } num = AnchorNameLength(anchorData.Anchor) + SafeStringLength(tagData.Handle) + SafeStringLength(tagData.Suffix); break; default: return false; } return num <= maxSimpleKeyLength; } private static int AnchorNameLength(AnchorName value) { if (!value.IsEmpty) { return value.Value.Length; } return 0; } private static int SafeStringLength(string? value) { return value?.Length ?? 0; } private bool CheckEmptySequence() { return CheckEmptyStructure(); } private bool CheckEmptyMapping() { return CheckEmptyStructure(); } private bool CheckEmptyStructure() where TStart : NodeEvent where TEnd : ParsingEvent { if (events.Count < 2) { return false; } using Queue.Enumerator enumerator = events.GetEnumerator(); return enumerator.MoveNext() && enumerator.Current is TStart && enumerator.MoveNext() && enumerator.Current is TEnd; } private void WriteBlockScalarHints(string value) { StringLookAheadBufferPool.BufferWrapper bufferWrapper = StringLookAheadBufferPool.Rent(value); try { CharacterAnalyzer characterAnalyzer = new CharacterAnalyzer(bufferWrapper.Buffer); if (characterAnalyzer.IsSpace() || characterAnalyzer.IsBreak()) { int num = bestIndent; string indicator = num.ToString(CultureInfo.InvariantCulture); WriteIndicator(indicator, needWhitespace: false, whitespace: false, indentation: false); } string text = null; if (value.Length == 0 || !characterAnalyzer.IsBreak(value.Length - 1)) { text = "-"; } else if (value.Length >= 2 && characterAnalyzer.IsBreak(value.Length - 2)) { text = "+"; } if (text != null) { WriteIndicator(text, needWhitespace: false, whitespace: false, indentation: false); } } finally { ((IDisposable)bufferWrapper/*cast due to .constrained prefix*/).Dispose(); } } private void WriteIndicator(string indicator, bool needWhitespace, bool whitespace, bool indentation) { if (needWhitespace && !isWhitespace) { Write(' '); } Write(indicator); isWhitespace = whitespace; isIndentation &= indentation; } private void WriteIndent() { int num = Math.Max(indent, 0); if (!isIndentation || column > num || (column == num && !isWhitespace)) { WriteBreak(); } while (column < num) { Write(' '); } isWhitespace = true; isIndentation = true; } private void WriteAnchor(AnchorName value) { Write(value.Value); isWhitespace = false; isIndentation = false; } private void WriteTagHandle(string value) { if (!isWhitespace) { Write(' '); } Write(value); isWhitespace = false; isIndentation = false; } private void WriteTagContent(string value, bool needsWhitespace) { if (needsWhitespace && !isWhitespace) { Write(' '); } Write(UrlEncode(value)); isWhitespace = false; isIndentation = false; } private static string UrlEncode(string text) { return UriReplacer.Replace(text, delegate(Match match) { StringBuilderPool.BuilderWrapper builderWrapper = StringBuilderPool.Rent(); try { StringBuilder builder = builderWrapper.Builder; byte[] bytes = Encoding.UTF8.GetBytes(match.Value); foreach (byte b in bytes) { builder.AppendFormat(CultureInfo.InvariantCulture, "%{0:X02}", b); } return builder.ToString(); } finally { ((IDisposable)builderWrapper/*cast due to .constrained prefix*/).Dispose(); } }); } private void Write(char value) { output.Write(value); column++; } private void Write(string value) { output.Write(value); column += value.Length; } private void WriteBreak(char breakCharacter = '\n') { if (breakCharacter == '\n') { output.WriteLine(); } else { output.Write(breakCharacter); } column = 0; } } internal sealed class EmitterSettings { public static readonly EmitterSettings Default = new EmitterSettings(); public int BestIndent { get; } = 2; public int BestWidth { get; } = int.MaxValue; public string NewLine { get; } = Environment.NewLine; public bool IsCanonical { get; } public bool SkipAnchorName { get; private set; } public int MaxSimpleKeyLength { get; } = 1024; public bool IndentSequences { get; } public bool UseUtf16SurrogatePairs { get; } public EmitterSettings() { } public EmitterSettings(int bestIndent, int bestWidth, bool isCanonical, int maxSimpleKeyLength, bool skipAnchorName = false, bool indentSequences = false, string? newLine = null, bool useUtf16SurrogatePairs = false) { if (bestIndent < 2 || bestIndent > 9) { throw new ArgumentOutOfRangeException("bestIndent", "BestIndent must be between 2 and 9, inclusive"); } if (bestWidth <= bestIndent * 2) { throw new ArgumentOutOfRangeException("bestWidth", "BestWidth must be greater than BestIndent x 2."); } if (maxSimpleKeyLength < 0) { throw new ArgumentOutOfRangeException("maxSimpleKeyLength", "MaxSimpleKeyLength must be >= 0"); } BestIndent = bestIndent; BestWidth = bestWidth; IsCanonical = isCanonical; MaxSimpleKeyLength = maxSimpleKeyLength; SkipAnchorName = skipAnchorName; IndentSequences = indentSequences; NewLine = newLine ?? Environment.NewLine; UseUtf16SurrogatePairs = useUtf16SurrogatePairs; } public EmitterSettings WithBestIndent(int bestIndent) { return new EmitterSettings(bestIndent, BestWidth, IsCanonical, MaxSimpleKeyLength, SkipAnchorName, IndentSequences, NewLine, UseUtf16SurrogatePairs); } public EmitterSettings WithBestWidth(int bestWidth) { return new EmitterSettings(BestIndent, bestWidth, IsCanonical, MaxSimpleKeyLength, SkipAnchorName, IndentSequences, NewLine, UseUtf16SurrogatePairs); } public EmitterSettings WithMaxSimpleKeyLength(int maxSimpleKeyLength) { return new EmitterSettings(BestIndent, BestWidth, IsCanonical, maxSimpleKeyLength, SkipAnchorName, IndentSequences, NewLine, UseUtf16SurrogatePairs); } public EmitterSettings WithNewLine(string newLine) { return new EmitterSettings(BestIndent, BestWidth, IsCanonical, MaxSimpleKeyLength, SkipAnchorName, IndentSequences, newLine, UseUtf16SurrogatePairs); } public EmitterSettings Canonical() { return new EmitterSettings(BestIndent, BestWidth, isCanonical: true, MaxSimpleKeyLength, SkipAnchorName); } public EmitterSettings WithoutAnchorName() { return new EmitterSettings(BestIndent, BestWidth, IsCanonical, MaxSimpleKeyLength, skipAnchorName: true, IndentSequences, NewLine, UseUtf16SurrogatePairs); } public EmitterSettings WithIndentedSequences() { return new EmitterSettings(BestIndent, BestWidth, IsCanonical, MaxSimpleKeyLength, SkipAnchorName, indentSequences: true, NewLine, UseUtf16SurrogatePairs); } public EmitterSettings WithUtf16SurrogatePairs() { return new EmitterSettings(BestIndent, BestWidth, IsCanonical, MaxSimpleKeyLength, SkipAnchorName, IndentSequences, NewLine, useUtf16SurrogatePairs: true); } } internal enum EmitterState { StreamStart, StreamEnd, FirstDocumentStart, DocumentStart, DocumentContent, DocumentEnd, FlowSequenceFirstItem, FlowSequenceItem, FlowMappingFirstKey, FlowMappingKey, FlowMappingSimpleValue, FlowMappingValue, BlockSequenceFirstItem, BlockSequenceItem, BlockMappingFirstKey, BlockMappingKey, BlockMappingSimpleValue, BlockMappingValue } internal sealed class ForwardAnchorNotSupportedException : YamlException { public ForwardAnchorNotSupportedException(string message) : base(message) { } public ForwardAnchorNotSupportedException(in Mark start, in Mark end, string message) : base(in start, in end, message) { } public ForwardAnchorNotSupportedException(string message, Exception inner) : base(message, inner) { } } internal static class HashCode { public static int CombineHashCodes(int h1, int h2) { return ((h1 << 5) + h1) ^ h2; } public static int CombineHashCodes(int h1, object? o2) { return CombineHashCodes(h1, GetHashCode(o2)); } private static int GetHashCode(object? obj) { return obj?.GetHashCode() ?? 0; } } internal interface IEmitter { void Emit(ParsingEvent @event); } internal interface ILookAheadBuffer { bool EndOfInput { get; } char Peek(int offset); void Skip(int length); } internal sealed class InsertionQueue : IEnumerable, IEnumerable { private const int DefaultInitialCapacity = 128; private T[] items; private int readPtr; private int writePtr; private int mask; private int count; public int Count => count; public int Capacity => items.Length; public InsertionQueue(int initialCapacity = 128) { if (initialCapacity <= 0) { throw new ArgumentOutOfRangeException("initialCapacity", "The initial capacity must be a positive number."); } if (!initialCapacity.IsPowerOfTwo()) { throw new ArgumentException("The initial capacity must be a power of 2.", "initialCapacity"); } items = new T[initialCapacity]; readPtr = initialCapacity / 2; writePtr = initialCapacity / 2; mask = initialCapacity - 1; } public void Enqueue(T item) { ResizeIfNeeded(); items[writePtr] = item; writePtr = (writePtr - 1) & mask; count++; } public T Dequeue() { if (count == 0) { throw new InvalidOperationException("The queue is empty"); } T result = items[readPtr]; readPtr = (readPtr - 1) & mask; count--; return result; } public void Insert(int index, T item) { if (index > count) { throw new InvalidOperationException("Cannot insert outside of the bounds of the queue"); } ResizeIfNeeded(); CalculateInsertionParameters(mask, count, index, ref readPtr, ref writePtr, out var insertPtr, out var copyIndex, out var copyOffset, out var copyLength); if (copyLength != 0) { Array.Copy(items, copyIndex, items, copyIndex + copyOffset, copyLength); } items[insertPtr] = item; count++; } private void ResizeIfNeeded() { int num = items.Length; if (count == num) { T[] destinationArray = new T[num * 2]; int num2 = readPtr + 1; if (num2 > 0) { Array.Copy(items, 0, destinationArray, 0, num2); } writePtr += num; int num3 = num - num2; if (num3 > 0) { Array.Copy(items, readPtr + 1, destinationArray, writePtr + 1, num3); } items = destinationArray; mask = mask * 2 + 1; } } internal static void CalculateInsertionParameters(int mask, int count, int index, ref int readPtr, ref int writePtr, out int insertPtr, out int copyIndex, out int copyOffset, out int copyLength) { int num = (readPtr + 1) & mask; if (index == 0) { insertPtr = (readPtr = num); copyIndex = 0; copyOffset = 0; copyLength = 0; return; } insertPtr = (readPtr - index) & mask; if (index == count) { writePtr = (writePtr - 1) & mask; copyIndex = 0; copyOffset = 0; copyLength = 0; return; } int num2 = ((num >= insertPtr) ? (readPtr - insertPtr) : int.MaxValue); int num3 = ((writePtr <= insertPtr) ? (insertPtr - writePtr) : int.MaxValue); if (num2 <= num3) { insertPtr++; readPtr++; copyIndex = insertPtr; copyOffset = 1; copyLength = num2; } else { copyIndex = writePtr + 1; copyOffset = -1; copyLength = num3; writePtr = (writePtr - 1) & mask; } } public IEnumerator GetEnumerator() { int ptr = readPtr; for (int i = 0; i < Count; i++) { yield return items[ptr]; ptr = (ptr - 1) & mask; } } IEnumerator IEnumerable.GetEnumerator() { return GetEnumerator(); } } internal interface IParser { ParsingEvent? Current { get; } bool MoveNext(); } internal interface IScanner { Mark CurrentPosition { get; } Token? Current { get; } bool MoveNext(); bool MoveNextWithoutConsuming(); void ConsumeCurrent(); } [DebuggerStepThrough] internal sealed class LookAheadBuffer : ILookAheadBuffer { private readonly TextReader input; private readonly char[] buffer; private readonly int blockSize; private readonly int mask; private int firstIndex; private int writeOffset; private int count; private bool endOfInput; public bool EndOfInput { get { if (endOfInput) { return count == 0; } return false; } } public LookAheadBuffer(TextReader input, int capacity) { if (capacity < 1) { throw new ArgumentOutOfRangeException("capacity", "The capacity must be positive."); } if (!capacity.IsPowerOfTwo()) { throw new ArgumentException("The capacity must be a power of 2.", "capacity"); } this.input = input ?? throw new ArgumentNullException("input"); blockSize = capacity; buffer = new char[capacity * 2]; mask = capacity * 2 - 1; } private int GetIndexForOffset(int offset) { return (firstIndex + offset) & mask; } public char Peek(int offset) { if (offset >= count) { FillBuffer(); } if (offset < count) { return buffer[(firstIndex + offset) & mask]; } return '\0'; } public void Cache(int length) { if (length >= count) { FillBuffer(); } } private void FillBuffer() { if (endOfInput) { return; } int num = blockSize; do { int num2 = input.Read(buffer, writeOffset, num); if (num2 == 0) { endOfInput = true; return; } num -= num2; writeOffset += num2; count += num2; } while (num > 0); if (writeOffset == buffer.Length) { writeOffset = 0; } } public void Skip(int length) { if (length < 1 || length > blockSize) { throw new ArgumentOutOfRangeException("length", "The length must be between 1 and the number of characters in the buffer. Use the Peek() and / or Cache() methods to fill the buffer."); } firstIndex = GetIndexForOffset(length); count -= length; } } internal readonly struct Mark : IEquatable, IComparable, IComparable { public static readonly Mark Empty = new Mark(0L, 1L, 1L); public long Index { get; } public long Line { get; } public long Column { get; } public Mark(long index, long line, long column) { if (index < 0) { ThrowHelper.ThrowArgumentOutOfRangeException("index", "Index must be greater than or equal to zero."); } if (line < 1) { ThrowHelper.ThrowArgumentOutOfRangeException("line", "Line must be greater than or equal to 1."); } if (column < 1) { ThrowHelper.ThrowArgumentOutOfRangeException("column", "Column must be greater than or equal to 1."); } Index = index; Line = line; Column = column; } public override string ToString() { return $"Line: {Line}, Col: {Column}, Idx: {Index}"; } public override bool Equals(object? obj) { return Equals((Mark)(obj ?? ((object)Empty))); } public bool Equals(Mark other) { if (Index == other.Index && Line == other.Line) { return Column == other.Column; } return false; } public override int GetHashCode() { return HashCode.CombineHashCodes(Index.GetHashCode(), HashCode.CombineHashCodes(Line.GetHashCode(), Column.GetHashCode())); } public int CompareTo(object? obj) { return CompareTo((Mark)(obj ?? ((object)Empty))); } public int CompareTo(Mark other) { int num = Line.CompareTo(other.Line); if (num == 0) { num = Column.CompareTo(other.Column); } return num; } public static bool operator ==(Mark left, Mark right) { return left.Equals(right); } public static bool operator !=(Mark left, Mark right) { return !(left == right); } public static bool operator <(Mark left, Mark right) { return left.CompareTo(right) < 0; } public static bool operator <=(Mark left, Mark right) { return left.CompareTo(right) <= 0; } public static bool operator >(Mark left, Mark right) { return left.CompareTo(right) > 0; } public static bool operator >=(Mark left, Mark right) { return left.CompareTo(right) >= 0; } } internal sealed class MaximumRecursionLevelReachedException : YamlException { public MaximumRecursionLevelReachedException(string message) : base(message) { } public MaximumRecursionLevelReachedException(in Mark start, in Mark end, string message) : base(in start, in end, message) { } public MaximumRecursionLevelReachedException(string message, Exception inner) : base(message, inner) { } } internal sealed class MergingParser : IParser { private sealed class ParsingEventCollection : IEnumerable>, IEnumerable { private readonly LinkedList events; private readonly HashSet> deleted; private readonly Dictionary> references; public ParsingEventCollection() { events = new LinkedList(); deleted = new HashSet>(); references = new Dictionary>(); } public void AddAfter(LinkedListNode node, IEnumerable items) { foreach (ParsingEvent item in items) { node = events.AddAfter(node, item); } } public void Add(ParsingEvent item) { LinkedListNode node = events.AddLast(item); AddReference(item, node); } public void MarkDeleted(LinkedListNode node) { deleted.Add(node); } public bool IsDeleted(LinkedListNode node) { return deleted.Contains(node); } public void CleanMarked() { foreach (LinkedListNode item in deleted) { events.Remove(item); } } public IEnumerable> FromAnchor(AnchorName anchor) { LinkedListNode next = references[anchor].Next; return Enumerate(next); } public IEnumerator> GetEnumerator() { return Enumerate(events.First).GetEnumerator(); } IEnumerator IEnumerable.GetEnumerator() { return GetEnumerator(); } private static IEnumerable> Enumerate(LinkedListNode? node) { while (node != null) { yield return node; node = node.Next; } } private void AddReference(ParsingEvent item, LinkedListNode node) { if (item is MappingStart { Anchor: { IsEmpty: false } anchor }) { references[anchor] = node; } } } private sealed class ParsingEventCloner : IParsingEventVisitor { private ParsingEvent? clonedEvent; public ParsingEvent Clone(ParsingEvent e) { e.Accept(this); if (clonedEvent == null) { throw new InvalidOperationException($"Could not clone event of type '{e.Type}'"); } return clonedEvent; } void IParsingEventVisitor.Visit(YamlDotNet.Core.Events.AnchorAlias e) { clonedEvent = new YamlDotNet.Core.Events.AnchorAlias(e.Value, e.Start, e.End); } void IParsingEventVisitor.Visit(YamlDotNet.Core.Events.StreamStart e) { throw new NotSupportedException(); } void IParsingEventVisitor.Visit(YamlDotNet.Core.Events.StreamEnd e) { throw new NotSupportedException(); } void IParsingEventVisitor.Visit(YamlDotNet.Core.Events.DocumentStart e) { throw new NotSupportedException(); } void IParsingEventVisitor.Visit(YamlDotNet.Core.Events.DocumentEnd e) { throw new NotSupportedException(); } void IParsingEventVisitor.Visit(YamlDotNet.Core.Events.Scalar e) { clonedEvent = new YamlDotNet.Core.Events.Scalar(AnchorName.Empty, e.Tag, e.Value, e.Style, e.IsPlainImplicit, e.IsQuotedImplicit, e.Start, e.End); } void IParsingEventVisitor.Visit(SequenceStart e) { clonedEvent = new SequenceStart(AnchorName.Empty, e.Tag, e.IsImplicit, e.Style, e.Start, e.End); } void IParsingEventVisitor.Visit(SequenceEnd e) { clonedEvent = new SequenceEnd(e.Start, e.End); } void IParsingEventVisitor.Visit(MappingStart e) { clonedEvent = new MappingStart(AnchorName.Empty, e.Tag, e.IsImplicit, e.Style, e.Start, e.End); } void IParsingEventVisitor.Visit(MappingEnd e) { clonedEvent = new MappingEnd(e.Start, e.End); } void IParsingEventVisitor.Visit(YamlDotNet.Core.Events.Comment e) { throw new NotSupportedException(); } } private readonly ParsingEventCollection events; private readonly IParser innerParser; private IEnumerator> iterator; private bool merged; public ParsingEvent? Current => iterator.Current?.Value; public MergingParser(IParser innerParser) { events = new ParsingEventCollection(); merged = false; iterator = events.GetEnumerator(); this.innerParser = innerParser; } public bool MoveNext() { if (!merged) { Merge(); events.CleanMarked(); iterator = events.GetEnumerator(); merged = true; } return iterator.MoveNext(); } private void Merge() { while (innerParser.MoveNext()) { events.Add(innerParser.Current); } foreach (LinkedListNode @event in events) { if (IsMergeToken(@event)) { events.MarkDeleted(@event); if (!HandleMerge(@event.Next)) { throw new SemanticErrorException(@event.Value.Start, @event.Value.End, "Unrecognized merge key pattern"); } } } } private bool HandleMerge(LinkedListNode? node) { if (node == null) { return false; } if (node.Value is YamlDotNet.Core.Events.AnchorAlias anchorAlias) { return HandleAnchorAlias(node, node, anchorAlias); } if (node.Value is SequenceStart) { return HandleSequence(node); } return false; } private bool HandleMergeSequence(LinkedListNode sequenceStart, LinkedListNode? node) { if (node == null) { return false; } if (node.Value is YamlDotNet.Core.Events.AnchorAlias anchorAlias) { return HandleAnchorAlias(sequenceStart, node, anchorAlias); } if (node.Value is SequenceStart) { return HandleSequence(node); } return false; } private static bool IsMergeToken(LinkedListNode node) { if (node.Value is YamlDotNet.Core.Events.Scalar scalar) { return scalar.Value == "<<"; } return false; } private bool HandleAnchorAlias(LinkedListNode node, LinkedListNode anchorNode, YamlDotNet.Core.Events.AnchorAlias anchorAlias) { IEnumerable mappingEvents = GetMappingEvents(anchorAlias.Value); events.AddAfter(node, mappingEvents); events.MarkDeleted(anchorNode); return true; } private bool HandleSequence(LinkedListNode node) { events.MarkDeleted(node); LinkedListNode linkedListNode = node; while (linkedListNode != null) { if (linkedListNode.Value is SequenceEnd) { events.MarkDeleted(linkedListNode); return true; } LinkedListNode next = linkedListNode.Next; HandleMergeSequence(node, next); linkedListNode = next; } return true; } private IEnumerable GetMappingEvents(AnchorName anchor) { ParsingEventCloner parsingEventCloner = new ParsingEventCloner(); int nesting = 0; return (from e in events.FromAnchor(anchor) where !events.IsDeleted(e) select e.Value).TakeWhile((ParsingEvent e) => (nesting += e.NestingIncrease) >= 0).Select(parsingEventCloner.Clone); } } internal class Parser : IParser { private class EventQueue { private readonly Queue highPriorityEvents = new Queue(); private readonly Queue normalPriorityEvents = new Queue(); public int Count => highPriorityEvents.Count + normalPriorityEvents.Count; public void Enqueue(ParsingEvent @event) { EventType type = @event.Type; if (type == EventType.StreamStart || type == EventType.DocumentStart) { highPriorityEvents.Enqueue(@event); } else { normalPriorityEvents.Enqueue(@event); } } public ParsingEvent Dequeue() { if (highPriorityEvents.Count <= 0) { return normalPriorityEvents.Dequeue(); } return highPriorityEvents.Dequeue(); } } private readonly Stack states = new Stack(); private readonly TagDirectiveCollection tagDirectives = new TagDirectiveCollection(); private ParserState state; private readonly IScanner scanner; private Token? currentToken; private VersionDirective? version; private readonly EventQueue pendingEvents = new EventQueue(); public ParsingEvent? Current { get; private set; } private Token? GetCurrentToken() { if (currentToken == null) { while (scanner.MoveNextWithoutConsuming()) { currentToken = scanner.Current; if (!(currentToken is YamlDotNet.Core.Tokens.Comment comment)) { break; } pendingEvents.Enqueue(new YamlDotNet.Core.Events.Comment(comment.Value, comment.IsInline, comment.Start, comment.End)); scanner.ConsumeCurrent(); } } return currentToken; } public Parser(TextReader input) : this(new Scanner(input)) { } public Parser(IScanner scanner) { this.scanner = scanner; } public bool MoveNext() { if (state == ParserState.StreamEnd) { Current = null; return false; } if (pendingEvents.Count == 0) { pendingEvents.Enqueue(StateMachine()); } Current = pendingEvents.Dequeue(); return true; } private ParsingEvent StateMachine() { return state switch { ParserState.StreamStart => ParseStreamStart(), ParserState.ImplicitDocumentStart => ParseDocumentStart(isImplicit: true), ParserState.DocumentStart => ParseDocumentStart(isImplicit: false), ParserState.DocumentContent => ParseDocumentContent(), ParserState.DocumentEnd => ParseDocumentEnd(), ParserState.BlockNode => ParseNode(isBlock: true, isIndentlessSequence: false), ParserState.BlockNodeOrIndentlessSequence => ParseNode(isBlock: true, isIndentlessSequence: true), ParserState.FlowNode => ParseNode(isBlock: false, isIndentlessSequence: false), ParserState.BlockSequenceFirstEntry => ParseBlockSequenceEntry(isFirst: true), ParserState.BlockSequenceEntry => ParseBlockSequenceEntry(isFirst: false), ParserState.IndentlessSequenceEntry => ParseIndentlessSequenceEntry(), ParserState.BlockMappingFirstKey => ParseBlockMappingKey(isFirst: true), ParserState.BlockMappingKey => ParseBlockMappingKey(isFirst: false), ParserState.BlockMappingValue => ParseBlockMappingValue(), ParserState.FlowSequenceFirstEntry => ParseFlowSequenceEntry(isFirst: true), ParserState.FlowSequenceEntry => ParseFlowSequenceEntry(isFirst: false), ParserState.FlowSequenceEntryMappingKey => ParseFlowSequenceEntryMappingKey(), ParserState.FlowSequenceEntryMappingValue => ParseFlowSequenceEntryMappingValue(), ParserState.FlowSequenceEntryMappingEnd => ParseFlowSequenceEntryMappingEnd(), ParserState.FlowMappingFirstKey => ParseFlowMappingKey(isFirst: true), ParserState.FlowMappingKey => ParseFlowMappingKey(isFirst: false), ParserState.FlowMappingValue => ParseFlowMappingValue(isEmpty: false), ParserState.FlowMappingEmptyValue => ParseFlowMappingValue(isEmpty: true), _ => throw new InvalidOperationException(), }; } private void Skip() { if (currentToken != null) { currentToken = null; scanner.ConsumeCurrent(); } } private YamlDotNet.Core.Events.StreamStart ParseStreamStart() { Token token = GetCurrentToken(); if (!(token is YamlDotNet.Core.Tokens.StreamStart streamStart)) { throw new SemanticErrorException(token?.Start ?? Mark.Empty, token?.End ?? Mark.Empty, "Did not find expected ."); } Skip(); state = ParserState.ImplicitDocumentStart; return new YamlDotNet.Core.Events.StreamStart(streamStart.Start, streamStart.End); } private ParsingEvent ParseDocumentStart(bool isImplicit) { if (currentToken is VersionDirective) { throw new SyntaxErrorException("While parsing a document start node, could not find document end marker before version directive."); } Token token = GetCurrentToken(); if (!isImplicit) { while (token is YamlDotNet.Core.Tokens.DocumentEnd) { Skip(); token = GetCurrentToken(); } } if (token == null) { throw new SyntaxErrorException("Reached the end of the stream while parsing a document start."); } if (token is YamlDotNet.Core.Tokens.Scalar && (state == ParserState.ImplicitDocumentStart || state == ParserState.DocumentStart)) { isImplicit = true; } if ((isImplicit && !(token is VersionDirective) && !(token is TagDirective) && !(token is YamlDotNet.Core.Tokens.DocumentStart) && !(token is YamlDotNet.Core.Tokens.StreamEnd) && !(token is YamlDotNet.Core.Tokens.DocumentEnd)) || token is BlockMappingStart) { TagDirectiveCollection tags = new TagDirectiveCollection(); ProcessDirectives(tags); states.Push(ParserState.DocumentEnd); state = ParserState.BlockNode; return new YamlDotNet.Core.Events.DocumentStart(null, tags, isImplicit: true, token.Start, token.End); } if (!(token is YamlDotNet.Core.Tokens.StreamEnd) && !(token is YamlDotNet.Core.Tokens.DocumentEnd)) { Mark start = token.Start; TagDirectiveCollection tags2 = new TagDirectiveCollection(); VersionDirective versionDirective = ProcessDirectives(tags2); token = GetCurrentToken() ?? throw new SemanticErrorException("Reached the end of the stream while parsing a document start"); if (!(token is YamlDotNet.Core.Tokens.DocumentStart)) { throw new SemanticErrorException(token.Start, token.End, "Did not find expected ."); } states.Push(ParserState.DocumentEnd); state = ParserState.DocumentContent; Mark end = token.End; Skip(); return new YamlDotNet.Core.Events.DocumentStart(versionDirective, tags2, isImplicit: false, start, end); } if (token is YamlDotNet.Core.Tokens.DocumentEnd) { Skip(); } state = ParserState.StreamEnd; token = GetCurrentToken() ?? throw new SemanticErrorException("Reached the end of the stream while parsing a document start"); YamlDotNet.Core.Events.StreamEnd result = new YamlDotNet.Core.Events.StreamEnd(token.Start, token.End); if (scanner.MoveNextWithoutConsuming()) { throw new InvalidOperationException("The scanner should contain no more tokens."); } return result; } private VersionDirective? ProcessDirectives(TagDirectiveCollection tags) { bool flag = false; VersionDirective result = null; while (true) { if (GetCurrentToken() is VersionDirective versionDirective) { if (version != null) { throw new SemanticErrorException(versionDirective.Start, versionDirective.End, "Found duplicate %YAML directive."); } if (versionDirective.Version.Major != 1 || versionDirective.Version.Minor > 3) { throw new SemanticErrorException(versionDirective.Start, versionDirective.End, "Found incompatible YAML document."); } result = (version = versionDirective); flag = true; } else { if (!(GetCurrentToken() is TagDirective tagDirective)) { break; } if (tags.Contains(tagDirective.Handle)) { throw new SemanticErrorException(tagDirective.Start, tagDirective.End, "Found duplicate %TAG directive."); } tags.Add(tagDirective); flag = true; } Skip(); } if (GetCurrentToken() is YamlDotNet.Core.Tokens.DocumentStart && (version == null || (version.Version.Major == 1 && version.Version.Minor > 1))) { if (GetCurrentToken() is YamlDotNet.Core.Tokens.DocumentStart && version == null) { version = new VersionDirective(new Version(1, 2)); } flag = true; } AddTagDirectives(tags, Constants.DefaultTagDirectives); if (flag) { tagDirectives.Clear(); } AddTagDirectives(tagDirectives, tags); return result; } private static void AddTagDirectives(TagDirectiveCollection directives, IEnumerable source) { foreach (TagDirective item in source) { if (!directives.Contains(item)) { directives.Add(item); } } } private ParsingEvent ParseDocumentContent() { if (GetCurrentToken() is VersionDirective || GetCurrentToken() is TagDirective || GetCurrentToken() is YamlDotNet.Core.Tokens.DocumentStart || GetCurrentToken() is YamlDotNet.Core.Tokens.DocumentEnd || GetCurrentToken() is YamlDotNet.Core.Tokens.StreamEnd) { state = states.Pop(); return ProcessEmptyScalar(scanner.CurrentPosition); } return ParseNode(isBlock: true, isIndentlessSequence: false); } private static YamlDotNet.Core.Events.Scalar ProcessEmptyScalar(in Mark position) { return new YamlDotNet.Core.Events.Scalar(AnchorName.Empty, TagName.Empty, string.Empty, ScalarStyle.Plain, isPlainImplicit: true, isQuotedImplicit: false, position, position); } private ParsingEvent ParseNode(bool isBlock, bool isIndentlessSequence) { if (GetCurrentToken() is Error { Start: var start } error) { throw new SemanticErrorException(in start, error.End, error.Value); } Token token = GetCurrentToken() ?? throw new SemanticErrorException("Reached the end of the stream while parsing a node"); if (token is YamlDotNet.Core.Tokens.AnchorAlias anchorAlias) { state = states.Pop(); ParsingEvent result = new YamlDotNet.Core.Events.AnchorAlias(anchorAlias.Value, anchorAlias.Start, anchorAlias.End); Skip(); return result; } Mark start2 = token.Start; AnchorName anchor = AnchorName.Empty; TagName tag = TagName.Empty; Anchor anchor2 = null; Tag tag2 = null; while (true) { if (anchor.IsEmpty && token is Anchor anchor3) { anchor2 = anchor3; anchor = anchor3.Value; Skip(); } else { if (!tag.IsEmpty || !(token is Tag tag3)) { if (token is Anchor { Start: var start3 } anchor4) { throw new SemanticErrorException(in start3, anchor4.End, "While parsing a node, found more than one anchor."); } if (token is YamlDotNet.Core.Tokens.AnchorAlias { Start: var start4 } anchorAlias2) { throw new SemanticErrorException(in start4, anchorAlias2.End, "While parsing a node, did not find expected token."); } if (!(token is Error error2)) { break; } if (tag2 != null && anchor2 != null && !anchor.IsEmpty) { return new YamlDotNet.Core.Events.Scalar(anchor, default(TagName), string.Empty, ScalarStyle.Any, isPlainImplicit: false, isQuotedImplicit: false, anchor2.Start, anchor2.End); } throw new SemanticErrorException(error2.Start, error2.End, error2.Value); } tag2 = tag3; if (string.IsNullOrEmpty(tag3.Handle)) { tag = new TagName(tag3.Suffix); } else { if (!tagDirectives.Contains(tag3.Handle)) { throw new SemanticErrorException(tag3.Start, tag3.End, "While parsing a node, found undefined tag handle."); } tag = new TagName(tagDirectives[tag3.Handle].Prefix + tag3.Suffix); } Skip(); } token = GetCurrentToken() ?? throw new SemanticErrorException("Reached the end of the stream while parsing a node"); } bool isEmpty = tag.IsEmpty; if (isIndentlessSequence && GetCurrentToken() is BlockEntry) { state = ParserState.IndentlessSequenceEntry; return new SequenceStart(anchor, tag, isEmpty, SequenceStyle.Block, start2, token.End); } if (token is YamlDotNet.Core.Tokens.Scalar scalar) { bool isPlainImplicit = false; bool isQuotedImplicit = false; if ((scalar.Style == ScalarStyle.Plain && tag.IsEmpty) || tag.IsNonSpecific) { isPlainImplicit = true; } else if (tag.IsEmpty) { isQuotedImplicit = true; } state = states.Pop(); Skip(); ParsingEvent result2 = new YamlDotNet.Core.Events.Scalar(anchor, tag, scalar.Value, scalar.Style, isPlainImplicit, isQuotedImplicit, start2, scalar.End, scalar.IsKey); if (!anchor.IsEmpty && scanner.MoveNextWithoutConsuming()) { currentToken = scanner.Current; if (currentToken is Error) { Error error3 = currentToken as Error; throw new SemanticErrorException(error3.Start, error3.End, error3.Value); } } if (state == ParserState.FlowMappingKey && !(scanner.Current is FlowMappingEnd) && scanner.MoveNextWithoutConsuming()) { currentToken = scanner.Current; if (currentToken != null && !(currentToken is FlowEntry) && !(currentToken is FlowMappingEnd)) { throw new SemanticErrorException(currentToken.Start, currentToken.End, "While parsing a flow mapping, did not find expected ',' or '}'."); } } return result2; } if (token is FlowSequenceStart flowSequenceStart) { state = ParserState.FlowSequenceFirstEntry; return new SequenceStart(anchor, tag, isEmpty, SequenceStyle.Flow, start2, flowSequenceStart.End); } if (token is FlowMappingStart flowMappingStart) { state = ParserState.FlowMappingFirstKey; return new MappingStart(anchor, tag, isEmpty, MappingStyle.Flow, start2, flowMappingStart.End); } if (isBlock) { if (token is BlockSequenceStart blockSequenceStart) { state = ParserState.BlockSequenceFirstEntry; return new SequenceStart(anchor, tag, isEmpty, SequenceStyle.Block, start2, blockSequenceStart.End); } if (token is BlockMappingStart blockMappingStart) { state = ParserState.BlockMappingFirstKey; return new MappingStart(anchor, tag, isEmpty, MappingStyle.Block, start2, blockMappingStart.End); } } if (!anchor.IsEmpty || !tag.IsEmpty) { state = states.Pop(); return new YamlDotNet.Core.Events.Scalar(anchor, tag, string.Empty, ScalarStyle.Plain, isEmpty, isQuotedImplicit: false, start2, token.End); } throw new SemanticErrorException(token.Start, token.End, "While parsing a node, did not find expected node content."); } private YamlDotNet.Core.Events.DocumentEnd ParseDocumentEnd() { Token token = GetCurrentToken() ?? throw new SemanticErrorException("Reached the end of the stream while parsing a document end"); bool isImplicit = true; Mark start = token.Start; Mark end = start; if (token is YamlDotNet.Core.Tokens.DocumentEnd) { end = token.End; Skip(); isImplicit = false; } else if (!(currentToken is YamlDotNet.Core.Tokens.StreamEnd) && !(currentToken is YamlDotNet.Core.Tokens.DocumentStart) && !(currentToken is FlowSequenceEnd) && !(currentToken is VersionDirective) && (!(Current is YamlDotNet.Core.Events.Scalar) || !(currentToken is Error))) { throw new SemanticErrorException(in start, in end, "Did not find expected ."); } if (version != null && version.Version.Major == 1 && version.Version.Minor > 1) { version = null; } state = ParserState.DocumentStart; return new YamlDotNet.Core.Events.DocumentEnd(isImplicit, start, end); } private ParsingEvent ParseBlockSequenceEntry(bool isFirst) { if (isFirst) { GetCurrentToken(); Skip(); } Token token = GetCurrentToken(); if (token is BlockEntry { End: var position }) { Skip(); token = GetCurrentToken(); if (!(token is BlockEntry) && !(token is BlockEnd)) { states.Push(ParserState.BlockSequenceEntry); return ParseNode(isBlock: true, isIndentlessSequence: false); } state = ParserState.BlockSequenceEntry; return ProcessEmptyScalar(in position); } if (token is BlockEnd blockEnd) { state = states.Pop(); ParsingEvent result = new SequenceEnd(blockEnd.Start, blockEnd.End); Skip(); return result; } throw new SemanticErrorException(token?.Start ?? Mark.Empty, token?.End ?? Mark.Empty, "While parsing a block collection, did not find expected '-' indicator."); } private ParsingEvent ParseIndentlessSequenceEntry() { Token token = GetCurrentToken(); if (token is BlockEntry { End: var position }) { Skip(); token = GetCurrentToken(); if (!(token is BlockEntry) && !(token is Key) && !(token is Value) && !(token is BlockEnd)) { states.Push(ParserState.IndentlessSequenceEntry); return ParseNode(isBlock: true, isIndentlessSequence: false); } state = ParserState.IndentlessSequenceEntry; return ProcessEmptyScalar(in position); } state = states.Pop(); return new SequenceEnd(token?.Start ?? Mark.Empty, token?.End ?? Mark.Empty); } private ParsingEvent ParseBlockMappingKey(bool isFirst) { if (isFirst) { GetCurrentToken(); Skip(); } Token token = GetCurrentToken(); if (token is Key { End: var position }) { Skip(); token = GetCurrentToken(); if (!(token is Key) && !(token is Value) && !(token is BlockEnd)) { states.Push(ParserState.BlockMappingValue); return ParseNode(isBlock: true, isIndentlessSequence: true); } state = ParserState.BlockMappingValue; return ProcessEmptyScalar(in position); } if (token is Value value) { Skip(); return ProcessEmptyScalar(value.End); } if (token is YamlDotNet.Core.Tokens.AnchorAlias anchorAlias) { Skip(); return new YamlDotNet.Core.Events.AnchorAlias(anchorAlias.Value, anchorAlias.Start, anchorAlias.End); } if (token is BlockEnd blockEnd) { state = states.Pop(); ParsingEvent result = new MappingEnd(blockEnd.Start, blockEnd.End); Skip(); return result; } if (GetCurrentToken() is Error { Start: var start } error) { throw new SyntaxErrorException(in start, error.End, error.Value); } throw new SemanticErrorException(token?.Start ?? Mark.Empty, token?.End ?? Mark.Empty, "While parsing a block mapping, did not find expected key."); } private ParsingEvent ParseBlockMappingValue() { Token token = GetCurrentToken(); if (token is Value { End: var position }) { Skip(); token = GetCurrentToken(); if (!(token is Key) && !(token is Value) && !(token is BlockEnd)) { states.Push(ParserState.BlockMappingKey); return ParseNode(isBlock: true, isIndentlessSequence: true); } state = ParserState.BlockMappingKey; return ProcessEmptyScalar(in position); } if (token is Error { Start: var start } error) { throw new SemanticErrorException(in start, error.End, error.Value); } state = ParserState.BlockMappingKey; return ProcessEmptyScalar(token?.Start ?? Mark.Empty); } private ParsingEvent ParseFlowSequenceEntry(bool isFirst) { if (isFirst) { GetCurrentToken(); Skip(); } Token token = GetCurrentToken(); ParsingEvent result; if (!(token is FlowSequenceEnd)) { if (!isFirst) { if (!(token is FlowEntry)) { throw new SemanticErrorException(token?.Start ?? Mark.Empty, token?.End ?? Mark.Empty, "While parsing a flow sequence, did not find expected ',' or ']'."); } Skip(); token = GetCurrentToken(); } if (token is Key) { state = ParserState.FlowSequenceEntryMappingKey; result = new MappingStart(AnchorName.Empty, TagName.Empty, isImplicit: true, MappingStyle.Flow); Skip(); return result; } if (!(token is FlowSequenceEnd)) { states.Push(ParserState.FlowSequenceEntry); return ParseNode(isBlock: false, isIndentlessSequence: false); } } state = states.Pop(); result = new SequenceEnd(token?.Start ?? Mark.Empty, token?.End ?? Mark.Empty); Skip(); return result; } private ParsingEvent ParseFlowSequenceEntryMappingKey() { Token token = GetCurrentToken(); if (!(token is Value) && !(token is FlowEntry) && !(token is FlowSequenceEnd)) { states.Push(ParserState.FlowSequenceEntryMappingValue); return ParseNode(isBlock: false, isIndentlessSequence: false); } Mark position = token?.End ?? Mark.Empty; Skip(); state = ParserState.FlowSequenceEntryMappingValue; return ProcessEmptyScalar(in position); } private ParsingEvent ParseFlowSequenceEntryMappingValue() { Token token = GetCurrentToken(); if (token is Value) { Skip(); token = GetCurrentToken(); if (!(token is FlowEntry) && !(token is FlowSequenceEnd)) { states.Push(ParserState.FlowSequenceEntryMappingEnd); return ParseNode(isBlock: false, isIndentlessSequence: false); } } state = ParserState.FlowSequenceEntryMappingEnd; return ProcessEmptyScalar(token?.Start ?? Mark.Empty); } private MappingEnd ParseFlowSequenceEntryMappingEnd() { state = ParserState.FlowSequenceEntry; Token token = GetCurrentToken(); return new MappingEnd(token?.Start ?? Mark.Empty, token?.End ?? Mark.Empty); } private ParsingEvent ParseFlowMappingKey(bool isFirst) { if (isFirst) { GetCurrentToken(); Skip(); } Token token = GetCurrentToken(); if (!(token is FlowMappingEnd)) { if (!isFirst) { if (token is FlowEntry) { Skip(); token = GetCurrentToken(); } else if (!(token is YamlDotNet.Core.Tokens.Scalar)) { throw new SemanticErrorException(token?.Start ?? Mark.Empty, token?.End ?? Mark.Empty, "While parsing a flow mapping, did not find expected ',' or '}'."); } } if (token is Key) { Skip(); token = GetCurrentToken(); if (!(token is Value) && !(token is FlowEntry) && !(token is FlowMappingEnd)) { states.Push(ParserState.FlowMappingValue); return ParseNode(isBlock: false, isIndentlessSequence: false); } state = ParserState.FlowMappingValue; return ProcessEmptyScalar(token?.Start ?? Mark.Empty); } if (token is YamlDotNet.Core.Tokens.Scalar) { states.Push(ParserState.FlowMappingValue); return ParseNode(isBlock: false, isIndentlessSequence: false); } if (!(token is FlowMappingEnd)) { states.Push(ParserState.FlowMappingEmptyValue); return ParseNode(isBlock: false, isIndentlessSequence: false); } } state = states.Pop(); Skip(); return new MappingEnd(token?.Start ?? Mark.Empty, token?.End ?? Mark.Empty); } private ParsingEvent ParseFlowMappingValue(bool isEmpty) { Token token = GetCurrentToken(); if (!isEmpty && token is Value) { Skip(); token = GetCurrentToken(); if (!(token is FlowEntry) && !(token is FlowMappingEnd)) { states.Push(ParserState.FlowMappingKey); return ParseNode(isBlock: false, isIndentlessSequence: false); } } state = ParserState.FlowMappingKey; if (!isEmpty && token is YamlDotNet.Core.Tokens.Scalar scalar) { Skip(); return new YamlDotNet.Core.Events.Scalar(AnchorName.Empty, TagName.Empty, scalar.Value, scalar.Style, isPlainImplicit: false, isQuotedImplicit: false, token.Start, scalar.End); } return ProcessEmptyScalar(token?.Start ?? Mark.Empty); } } internal static class ParserExtensions { public static T Consume(this IParser parser) where T : ParsingEvent { T result = parser.Require(); parser.MoveNext(); return result; } public static bool TryConsume(this IParser parser, [MaybeNullWhen(false)] out T @event) where T : ParsingEvent { if (parser.Accept(out @event)) { parser.MoveNext(); return true; } return false; } public static T Require(this IParser parser) where T : ParsingEvent { if (!parser.Accept(out var @event)) { ParsingEvent current = parser.Current; if (current == null) { throw new YamlException("Expected '" + typeof(T).Name + "', got nothing."); } throw new YamlException(current.Start, current.End, $"Expected '{typeof(T).Name}', got '{current.GetType().Name}' (at {current.Start})."); } return @event; } public static bool Accept(this IParser parser, [MaybeNullWhen(false)] out T @event) where T : ParsingEvent { if (parser.Current == null && !parser.MoveNext()) { throw new EndOfStreamException(); } if (parser.Current is T val) { @event = val; return true; } @event = null; return false; } public static void SkipThisAndNestedEvents(this IParser parser) { int num = 0; do { ParsingEvent parsingEvent = parser.Consume(); num += parsingEvent.NestingIncrease; } while (num > 0); } [Obsolete("Please use Consume() instead")] public static T Expect(this IParser parser) where T : ParsingEvent { return parser.Consume(); } [Obsolete("Please use TryConsume(out var evt) instead")] [return: MaybeNull] public static T? Allow(this IParser parser) where T : ParsingEvent { if (!parser.TryConsume(out var @event)) { return null; } return @event; } [Obsolete("Please use Accept(out var evt) instead")] [return: MaybeNull] public static T? Peek(this IParser parser) where T : ParsingEvent { if (!parser.Accept(out var @event)) { return null; } return @event; } [Obsolete("Please use TryConsume(out var evt) or Accept(out var evt) instead")] public static bool Accept(this IParser parser) where T : ParsingEvent { T @event; return parser.Accept(out @event); } public static bool TryFindMappingEntry(this IParser parser, Func selector, [MaybeNullWhen(false)] out YamlDotNet.Core.Events.Scalar? key, [MaybeNullWhen(false)] out ParsingEvent? value) { if (parser.TryConsume(out var _)) { while (parser.Current != null) { ParsingEvent current = parser.Current; if (!(current is YamlDotNet.Core.Events.Scalar scalar)) { if (current is MappingStart || current is SequenceStart) { parser.SkipThisAndNestedEvents(); } else { parser.MoveNext(); } continue; } bool flag = selector(scalar); parser.MoveNext(); if (flag) { value = parser.Current; key = scalar; return true; } parser.SkipThisAndNestedEvents(); } } key = null; value = null; return false; } } internal enum ParserState { StreamStart, StreamEnd, ImplicitDocumentStart, DocumentStart, DocumentContent, DocumentEnd, BlockNode, BlockNodeOrIndentlessSequence, FlowNode, BlockSequenceFirstEntry, BlockSequenceEntry, IndentlessSequenceEntry, BlockMappingFirstKey, BlockMappingKey, BlockMappingValue, FlowSequenceFirstEntry, FlowSequenceEntry, FlowSequenceEntryMappingKey, FlowSequenceEntryMappingValue, FlowSequenceEntryMappingEnd, FlowMappingFirstKey, FlowMappingKey, FlowMappingValue, FlowMappingEmptyValue } internal sealed class RecursionLevel { private int current; public int Maximum { get; } public RecursionLevel(int maximum) { Maximum = maximum; } public void Increment() { if (!TryIncrement()) { throw new MaximumRecursionLevelReachedException("Maximum level of recursion reached"); } } public bool TryIncrement() { if (current < Maximum) { current++; return true; } return false; } public void Decrement() { if (current == 0) { throw new InvalidOperationException("Attempted to decrement RecursionLevel to a negative value"); } current--; } } internal enum ScalarStyle { Any, Plain, SingleQuoted, DoubleQuoted, Literal, Folded, ForcePlain } internal class Scanner : IScanner { private const int MaxVersionNumberLength = 9; private static readonly SortedDictionary SimpleEscapeCodes = new SortedDictionary { { '0', '\0' }, { 'a', '\a' }, { 'b', '\b' }, { 't', '\t' }, { '\t', '\t' }, { 'n', '\n' }, { 'v', '\v' }, { 'f', '\f' }, { 'r', '\r' }, { 'e', '\u001b' }, { ' ', ' ' }, { '"', '"' }, { '\\', '\\' }, { '/', '/' }, { 'N', '\u0085' }, { '_', '\u00a0' }, { 'L', '\u2028' }, { 'P', '\u2029' } }; private readonly Stack indents = new Stack(); private readonly InsertionQueue tokens = new InsertionQueue(); private readonly Stack simpleKeys = new Stack(); private readonly CharacterAnalyzer analyzer; private readonly Cursor cursor; private bool streamStartProduced; private bool streamEndProduced; private bool plainScalarFollowedByComment; private bool flowCollectionFetched; private bool startFlowCollectionFetched; private long indent = -1L; private bool flowScalarFetched; private bool simpleKeyAllowed; private int flowLevel; private int tokensParsed; private bool tokenAvailable; private Token? previous; private Anchor? previousAnchor; private YamlDotNet.Core.Tokens.Scalar? lastScalar; private readonly int maxKeySize; private static readonly byte[] EmptyBytes = Array.Empty(); public bool SkipComments { get; private set; } public Token? Current { get; private set; } public Mark CurrentPosition => cursor.Mark(); private bool IsDocumentStart() { if (!analyzer.EndOfInput && cursor.LineOffset == 0L && analyzer.Check('-') && analyzer.Check('-', 1) && analyzer.Check('-', 2)) { return analyzer.IsWhiteBreakOrZero(3); } return false; } private bool IsDocumentEnd() { if (!analyzer.EndOfInput && cursor.LineOffset == 0L && analyzer.Check('.') && analyzer.Check('.', 1) && analyzer.Check('.', 2)) { return analyzer.IsWhiteBreakOrZero(3); } return false; } private bool IsDocumentIndicator() { if (!IsDocumentStart()) { return IsDocumentEnd(); } return true; } public Scanner(TextReader input, bool skipComments = true) : this(input, skipComments, 1024) { } public Scanner(TextReader input, bool skipComments, int maxKeySize) { analyzer = new CharacterAnalyzer(new LookAheadBuffer(input, 1024)); cursor = new Cursor(); SkipComments = skipComments; this.maxKeySize = maxKeySize; } public bool MoveNext() { if (Current != null) { ConsumeCurrent(); } return MoveNextWithoutConsuming(); } public bool MoveNextWithoutConsuming() { if (!tokenAvailable && !streamEndProduced) { FetchMoreTokens(); } if (tokens.Count > 0) { Current = tokens.Dequeue(); tokenAvailable = false; return true; } Current = null; return false; } public void ConsumeCurrent() { tokensParsed++; tokenAvailable = false; previous = Current; Current = null; } private char ReadCurrentCharacter() { char result = analyzer.Peek(0); Skip(); return result; } private char ReadLine() { if (analyzer.Check("\r\n\u0085")) { SkipLine(); return '\n'; } char result = analyzer.Peek(0); SkipLine(); return result; } private void FetchMoreTokens() { while (true) { bool flag = false; if (tokens.Count == 0) { flag = true; } else { foreach (SimpleKey simpleKey in simpleKeys) { if (simpleKey.IsPossible && simpleKey.TokenNumber == tokensParsed) { flag = true; break; } } } if (!flag) { break; } FetchNextToken(); } tokenAvailable = true; } private static bool StartsWith(StringBuilder what, char start) { if (what.Length > 0) { return what[0] == start; } return false; } private void StaleSimpleKeys() { foreach (SimpleKey simpleKey in simpleKeys) { if (simpleKey.IsPossible && (simpleKey.Line < cursor.Line || simpleKey.Index + maxKeySize < cursor.Index)) { if (simpleKey.IsRequired) { Mark mark = cursor.Mark(); tokens.Enqueue(new Error("While scanning a simple key, could not find expected ':'.", mark, mark)); } simpleKey.MarkAsImpossible(); } } } private void FetchNextToken() { if (!streamStartProduced) { FetchStreamStart(); return; } ScanToNextToken(); StaleSimpleKeys(); UnrollIndent(cursor.LineOffset); analyzer.Buffer.Cache(4); if (analyzer.Buffer.EndOfInput) { lastScalar = null; FetchStreamEnd(); } if (cursor.LineOffset == 0L && analyzer.Check('%')) { lastScalar = null; FetchDirective(); return; } if (IsDocumentStart()) { lastScalar = null; FetchDocumentIndicator(isStartToken: true); return; } if (IsDocumentEnd()) { lastScalar = null; FetchDocumentIndicator(isStartToken: false); return; } if (analyzer.Check('[')) { lastScalar = null; FetchFlowCollectionStart(isSequenceToken: true); return; } if (analyzer.Check('{')) { lastScalar = null; FetchFlowCollectionStart(isSequenceToken: false); return; } if (analyzer.Check(']')) { lastScalar = null; FetchFlowCollectionEnd(isSequenceToken: true); return; } if (analyzer.Check('}')) { lastScalar = null; FetchFlowCollectionEnd(isSequenceToken: false); return; } if (analyzer.Check(',')) { lastScalar = null; FetchFlowEntry(); return; } if (analyzer.Check('-')) { if (analyzer.IsWhiteBreakOrZero(1)) { FetchBlockEntry(); return; } if (flowLevel > 0 && analyzer.Check(",[]{}", 1)) { tokens.Enqueue(new Error("Invalid key indicator format.", cursor.Mark(), cursor.Mark())); } } if (analyzer.Check('?') && (flowLevel > 0 || analyzer.IsWhiteBreakOrZero(1)) && analyzer.IsWhiteBreakOrZero(1)) { FetchKey(); } else if (analyzer.Check(':') && (flowLevel > 0 || analyzer.IsWhiteBreakOrZero(1)) && (!simpleKeyAllowed || flowLevel <= 0) && (!flowScalarFetched || !analyzer.Check(':', 1)) && (analyzer.IsWhiteBreakOrZero(1) || analyzer.Check(',', 1) || flowScalarFetched || flowCollectionFetched || startFlowCollectionFetched)) { if (lastScalar != null) { lastScalar.IsKey = true; lastScalar = null; } FetchValue(); } else if (analyzer.Check('*')) { FetchAnchor(isAlias: true); } else if (analyzer.Check('&')) { FetchAnchor(isAlias: false); } else if (analyzer.Check('!')) { FetchTag(); } else if (analyzer.Check('|') && flowLevel == 0) { FetchBlockScalar(isLiteral: true); } else if (analyzer.Check('>') && flowLevel == 0) { FetchBlockScalar(isLiteral: false); } else if (analyzer.Check('\'')) { FetchQuotedScalar(isSingleQuoted: true); } else if (analyzer.Check('"')) { FetchQuotedScalar(isSingleQuoted: false); } else if ((!analyzer.IsWhiteBreakOrZero() && !analyzer.Check("-?:,[]{}#&*!|>'\"%@`")) || (analyzer.Check('-') && !analyzer.IsWhite(1)) || (analyzer.Check("?:") && !analyzer.IsWhiteBreakOrZero(1)) || (simpleKeyAllowed && flowLevel > 0)) { if (plainScalarFollowedByComment) { Mark mark = cursor.Mark(); tokens.Enqueue(new Error("While scanning plain scalar, found a comment between adjacent scalars.", mark, mark)); } if ((flowScalarFetched || (flowCollectionFetched && !startFlowCollectionFetched)) && analyzer.Check(':')) { Skip(); } flowScalarFetched = false; flowCollectionFetched = false; startFlowCollectionFetched = false; plainScalarFollowedByComment = false; FetchPlainScalar(); } else { if (simpleKeyAllowed && indent >= cursor.LineOffset && analyzer.IsTab()) { throw new SyntaxErrorException("While scanning a mapping, found invalid tab as indentation."); } if (!analyzer.IsWhiteBreakOrZero()) { Mark start = cursor.Mark(); Skip(); throw new SyntaxErrorException(in start, cursor.Mark(), "While scanning for the next token, found character that cannot start any token."); } Skip(); } } private bool CheckWhiteSpace() { if (!analyzer.Check(' ')) { if (flowLevel > 0 || !simpleKeyAllowed) { return analyzer.Check('\t'); } return false; } return true; } private void Skip() { cursor.Skip(); analyzer.Buffer.Skip(1); } private void SkipLine() { if (analyzer.IsCrLf()) { cursor.SkipLineByOffset(2); analyzer.Buffer.Skip(2); } else if (analyzer.IsBreak()) { cursor.SkipLineByOffset(1); analyzer.Buffer.Skip(1); } else if (!analyzer.IsZero()) { throw new InvalidOperationException("Not at a break."); } } private void ScanToNextToken() { while (true) { if (CheckWhiteSpace()) { Skip(); continue; } ProcessComment(); if (analyzer.IsBreak()) { SkipLine(); if (flowLevel == 0) { simpleKeyAllowed = true; } continue; } break; } } private void ProcessComment() { if (!analyzer.Check('#')) { return; } Mark start = cursor.Mark(); Skip(); while (analyzer.IsSpace()) { Skip(); } StringBuilderPool.BuilderWrapper builderWrapper = StringBuilderPool.Rent(); try { StringBuilder builder = builderWrapper.Builder; while (!analyzer.IsBreakOrZero()) { builder.Append(ReadCurrentCharacter()); } if (!SkipComments) { bool isInline = previous != null && previous.End.Line == start.Line && previous.End.Column != 1 && !(previous is YamlDotNet.Core.Tokens.StreamStart); tokens.Enqueue(new YamlDotNet.Core.Tokens.Comment(builder.ToString(), isInline, start, cursor.Mark())); } } finally { ((IDisposable)builderWrapper/*cast due to .constrained prefix*/).Dispose(); } } private void FetchStreamStart() { simpleKeys.Push(new SimpleKey()); simpleKeyAllowed = true; streamStartProduced = true; Mark start = cursor.Mark(); tokens.Enqueue(new YamlDotNet.Core.Tokens.StreamStart(in start, in start)); } private void UnrollIndent(long column) { if (flowLevel == 0) { while (indent > column) { Mark start = cursor.Mark(); tokens.Enqueue(new BlockEnd(in start, in start)); indent = indents.Pop(); } } } private void FetchStreamEnd() { cursor.ForceSkipLineAfterNonBreak(); UnrollIndent(-1L); RemoveSimpleKey(); simpleKeyAllowed = false; streamEndProduced = true; Mark start = cursor.Mark(); tokens.Enqueue(new YamlDotNet.Core.Tokens.StreamEnd(in start, in start)); } private void FetchDirective() { UnrollIndent(-1L); RemoveSimpleKey(); simpleKeyAllowed = false; Token token = ScanDirective(); if (token != null) { tokens.Enqueue(token); } } private Token? ScanDirective() { Mark start = cursor.Mark(); Skip(); string text = ScanDirectiveName(in start); Token result; if (!(text == "YAML")) { if (!(text == "TAG")) { while (!analyzer.EndOfInput && !analyzer.Check('#') && !analyzer.IsBreak()) { Skip(); } return null; } result = ScanTagDirectiveValue(in start); } else { if (!(previous is YamlDotNet.Core.Tokens.DocumentStart) && !(previous is YamlDotNet.Core.Tokens.StreamStart) && !(previous is YamlDotNet.Core.Tokens.DocumentEnd)) { throw new SemanticErrorException(in start, cursor.Mark(), "While scanning a version directive, did not find preceding ."); } result = ScanVersionDirectiveValue(in start); } while (analyzer.IsWhite()) { Skip(); } ProcessComment(); if (!analyzer.IsBreakOrZero()) { throw new SyntaxErrorException(in start, cursor.Mark(), "While scanning a directive, did not find expected comment or line break."); } if (analyzer.IsBreak()) { SkipLine(); } return result; } private void FetchDocumentIndicator(bool isStartToken) { UnrollIndent(-1L); RemoveSimpleKey(); simpleKeyAllowed = false; Mark start = cursor.Mark(); Skip(); Skip(); Skip(); if (isStartToken) { tokens.Enqueue(new YamlDotNet.Core.Tokens.DocumentStart(in start, cursor.Mark())); return; } Token token = null; while (!analyzer.EndOfInput && !analyzer.IsBreak() && !analyzer.Check('#')) { if (!analyzer.IsWhite()) { token = new Error("While scanning a document end, found invalid content after '...' marker.", start, cursor.Mark()); break; } Skip(); } tokens.Enqueue(new YamlDotNet.Core.Tokens.DocumentEnd(in start, in start)); if (token != null) { tokens.Enqueue(token); } } private void FetchFlowCollectionStart(bool isSequenceToken) { SaveSimpleKey(); IncreaseFlowLevel(); simpleKeyAllowed = true; Mark start = cursor.Mark(); Skip(); Token item = ((!isSequenceToken) ? ((Token)new FlowMappingStart(in start, in start)) : ((Token)new FlowSequenceStart(in start, in start))); tokens.Enqueue(item); startFlowCollectionFetched = true; } private void IncreaseFlowLevel() { simpleKeys.Push(new SimpleKey()); flowLevel++; } private void FetchFlowCollectionEnd(bool isSequenceToken) { RemoveSimpleKey(); DecreaseFlowLevel(); simpleKeyAllowed = false; Mark start = cursor.Mark(); Skip(); Token token = null; Token item; if (isSequenceToken) { if (analyzer.Check('#')) { token = new Error("While scanning a flow sequence end, found invalid comment after ']'.", start, start); } item = new FlowSequenceEnd(in start, in start); } else { item = new FlowMappingEnd(in start, in start); } tokens.Enqueue(item); if (token != null) { tokens.Enqueue(token); } flowCollectionFetched = true; } private void DecreaseFlowLevel() { if (flowLevel > 0) { flowLevel--; simpleKeys.Pop(); } } private void FetchFlowEntry() { RemoveSimpleKey(); simpleKeyAllowed = true; Mark start = cursor.Mark(); Skip(); Mark end = cursor.Mark(); if (analyzer.Check('#')) { tokens.Enqueue(new Error("While scanning a flow entry, found invalid comment after comma.", start, end)); } else { tokens.Enqueue(new FlowEntry(in start, in end)); } } private void FetchBlockEntry() { if (flowLevel == 0) { if (!simpleKeyAllowed) { if (previousAnchor != null && previousAnchor.End.Line == cursor.Line) { throw new SemanticErrorException(previousAnchor.Start, previousAnchor.End, "Anchor before sequence entry on same line is not allowed."); } Mark mark = cursor.Mark(); tokens.Enqueue(new Error("Block sequence entries are not allowed in this context.", mark, mark)); } RollIndent(cursor.LineOffset, -1, isSequence: true, cursor.Mark()); } RemoveSimpleKey(); simpleKeyAllowed = true; Mark start = cursor.Mark(); Skip(); tokens.Enqueue(new BlockEntry(in start, cursor.Mark())); } private void FetchKey() { if (flowLevel == 0) { if (!simpleKeyAllowed) { Mark start = cursor.Mark(); throw new SyntaxErrorException(in start, in start, "Mapping keys are not allowed in this context."); } RollIndent(cursor.LineOffset, -1, isSequence: false, cursor.Mark()); } RemoveSimpleKey(); simpleKeyAllowed = flowLevel == 0; Mark start2 = cursor.Mark(); Skip(); tokens.Enqueue(new Key(in start2, cursor.Mark())); } private void FetchValue() { SimpleKey simpleKey = simpleKeys.Peek(); if (simpleKey.IsPossible) { tokens.Insert(simpleKey.TokenNumber - tokensParsed, new Key(simpleKey.Mark, simpleKey.Mark)); RollIndent(simpleKey.LineOffset, simpleKey.TokenNumber, isSequence: false, simpleKey.Mark); simpleKey.MarkAsImpossible(); simpleKeyAllowed = false; } else { bool flag = flowLevel == 0; if (flag) { if (!simpleKeyAllowed) { Mark mark = cursor.Mark(); tokens.Enqueue(new Error("Mapping values are not allowed in this context.", mark, mark)); return; } RollIndent(cursor.LineOffset, -1, isSequence: false, cursor.Mark()); if (cursor.LineOffset == 0L && simpleKey.LineOffset == 0L) { tokens.Insert(tokens.Count, new Key(simpleKey.Mark, simpleKey.Mark)); flag = false; } } simpleKeyAllowed = flag; } Mark start = cursor.Mark(); Skip(); tokens.Enqueue(new Value(in start, cursor.Mark())); } private void RollIndent(long column, int number, bool isSequence, Mark position) { if (flowLevel <= 0 && indent < column) { indents.Push(indent); indent = column; Token item = ((!isSequence) ? ((Token)new BlockMappingStart(in position, in position)) : ((Token)new BlockSequenceStart(in position, in position))); if (number == -1) { tokens.Enqueue(item); } else { tokens.Insert(number - tokensParsed, item); } } } private void FetchAnchor(bool isAlias) { SaveSimpleKey(); simpleKeyAllowed = false; tokens.Enqueue(ScanAnchor(isAlias)); } private Token ScanAnchor(bool isAlias) { Mark start = cursor.Mark(); Skip(); bool flag = false; if (isAlias) { SimpleKey simpleKey = simpleKeys.Peek(); flag = simpleKey.IsRequired && simpleKey.IsPossible; } StringBuilderPool.BuilderWrapper builderWrapper = StringBuilderPool.Rent(); try { StringBuilder builder = builderWrapper.Builder; while (!analyzer.IsWhiteBreakOrZero() && !analyzer.Check("[]{},") && (!flag || !analyzer.Check(':') || !analyzer.IsWhiteBreakOrZero(1))) { builder.Append(ReadCurrentCharacter()); } if (builder.Length == 0 || (!analyzer.IsWhiteBreakOrZero() && !analyzer.Check("?:,]}%@`"))) { throw new SyntaxErrorException(in start, cursor.Mark(), "While scanning an anchor or alias, found value containing disallowed: []{},"); } AnchorName value = new AnchorName(builder.ToString()); if (isAlias) { return new YamlDotNet.Core.Tokens.AnchorAlias(value, start, cursor.Mark()); } return previousAnchor = new Anchor(value, start, cursor.Mark()); } finally { ((IDisposable)builderWrapper/*cast due to .constrained prefix*/).Dispose(); } } private void FetchTag() { SaveSimpleKey(); simpleKeyAllowed = false; tokens.Enqueue(ScanTag()); } private Tag ScanTag() { Mark start = cursor.Mark(); string text; string text2; if (analyzer.Check('<', 1)) { text = string.Empty; Skip(); Skip(); text2 = ScanTagUri(null, start); if (!analyzer.Check('>')) { throw new SyntaxErrorException(in start, cursor.Mark(), "While scanning a tag, did not find the expected '>'."); } Skip(); } else { string text3 = ScanTagHandle(isDirective: false, start); if (text3.Length > 1 && text3[0] == '!' && text3[text3.Length - 1] == '!') { text = text3; text2 = ScanTagUri(null, start); } else { text2 = ScanTagUri(text3, start); text = "!"; if (text2.Length == 0) { text2 = text; text = string.Empty; } } } if (!analyzer.IsWhiteBreakOrZero() && !analyzer.Check(',')) { throw new SyntaxErrorException(in start, cursor.Mark(), "While scanning a tag, did not find expected whitespace, comma or line break."); } return new Tag(text, text2, start, cursor.Mark()); } private void FetchBlockScalar(bool isLiteral) { SaveSimpleKey(); simpleKeyAllowed = true; tokens.Enqueue(ScanBlockScalar(isLiteral)); } private YamlDotNet.Core.Tokens.Scalar ScanBlockScalar(bool isLiteral) { StringBuilderPool.BuilderWrapper builderWrapper = StringBuilderPool.Rent(); try { StringBuilder builder = builderWrapper.Builder; StringBuilderPool.BuilderWrapper builderWrapper2 = StringBuilderPool.Rent(); try { StringBuilder builder2 = builderWrapper2.Builder; StringBuilderPool.BuilderWrapper builderWrapper3 = StringBuilderPool.Rent(); try { StringBuilder builder3 = builderWrapper3.Builder; int num = 0; int num2 = 0; long currentIndent = 0L; bool flag = false; bool? isFirstLine = null; Mark start = cursor.Mark(); Skip(); if (analyzer.Check("+-")) { num = (analyzer.Check('+') ? 1 : (-1)); Skip(); if (analyzer.IsDigit()) { if (analyzer.Check('0')) { throw new SyntaxErrorException(in start, cursor.Mark(), "While scanning a block scalar, found an indentation indicator equal to 0."); } num2 = analyzer.AsDigit(); Skip(); } } else if (analyzer.IsDigit()) { if (analyzer.Check('0')) { throw new SyntaxErrorException(in start, cursor.Mark(), "While scanning a block scalar, found an indentation indicator equal to 0."); } num2 = analyzer.AsDigit(); Skip(); if (analyzer.Check("+-")) { num = (analyzer.Check('+') ? 1 : (-1)); Skip(); } } if (analyzer.Check('#')) { throw new SyntaxErrorException(in start, cursor.Mark(), "While scanning a block scalar, found a comment without whtespace after '>' indicator."); } while (analyzer.IsWhite()) { Skip(); } ProcessComment(); if (!analyzer.IsBreakOrZero()) { throw new SyntaxErrorException(in start, cursor.Mark(), "While scanning a block scalar, did not find expected comment or line break."); } if (analyzer.IsBreak()) { SkipLine(); if (!isFirstLine.HasValue) { isFirstLine = true; } else if (isFirstLine == true) { isFirstLine = false; } } Mark end = cursor.Mark(); if (num2 != 0) { currentIndent = ((indent >= 0) ? (indent + num2) : num2); } currentIndent = ScanBlockScalarBreaks(currentIndent, builder3, isLiteral, ref end, ref isFirstLine); isFirstLine = false; while (cursor.LineOffset == currentIndent && !analyzer.IsZero() && !IsDocumentEnd()) { bool flag2 = analyzer.IsWhite(); if (!isLiteral && StartsWith(builder2, '\n') && !flag && !flag2) { if (builder3.Length == 0) { builder.Append(' '); } builder2.Length = 0; } else { builder.Append((object?)builder2); builder2.Length = 0; } builder.Append((object?)builder3); builder3.Length = 0; flag = analyzer.IsWhite(); while (!analyzer.IsBreakOrZero()) { builder.Append(ReadCurrentCharacter()); } char c = ReadLine(); if (c != 0) { builder2.Append(c); } currentIndent = ScanBlockScalarBreaks(currentIndent, builder3, isLiteral, ref end, ref isFirstLine); } if (num != -1) { builder.Append((object?)builder2); } if (num == 1) { builder.Append((object?)builder3); } ScalarStyle style = (isLiteral ? ScalarStyle.Literal : ScalarStyle.Folded); return new YamlDotNet.Core.Tokens.Scalar(builder.ToString(), style, start, end); } finally { ((IDisposable)builderWrapper3/*cast due to .constrained prefix*/).Dispose(); } } finally { ((IDisposable)builderWrapper2/*cast due to .constrained prefix*/).Dispose(); } } finally { ((IDisposable)builderWrapper/*cast due to .constrained prefix*/).Dispose(); } } private long ScanBlockScalarBreaks(long currentIndent, StringBuilder breaks, bool isLiteral, ref Mark end, ref bool? isFirstLine) { long num = 0L; long num2 = -1L; end = cursor.Mark(); while (true) { if ((currentIndent == 0L || cursor.LineOffset < currentIndent) && analyzer.IsSpace()) { Skip(); continue; } if (cursor.LineOffset > num) { num = cursor.LineOffset; } if (!analyzer.IsBreak()) { break; } if (isFirstLine == true) { isFirstLine = false; num2 = cursor.LineOffset; } breaks.Append(ReadLine()); end = cursor.Mark(); } if (isLiteral && isFirstLine == true) { long num3 = cursor.LineOffset; int num4 = 0; while (!analyzer.IsBreak(num4) && analyzer.IsSpace(num4)) { num4++; num3++; } if (analyzer.IsBreak(num4) && num3 > cursor.LineOffset) { isFirstLine = false; num2 = num3; } } if (isLiteral && num2 > 1 && currentIndent < num2 - 1) { throw new SemanticErrorException(in end, cursor.Mark(), "While scanning a literal block scalar, found extra spaces in first line."); } if (!isLiteral && num > cursor.LineOffset && num2 > -1) { throw new SemanticErrorException(in end, cursor.Mark(), "While scanning a literal block scalar, found more spaces in lines above first content line."); } if (currentIndent == 0L && (cursor.LineOffset > 0 || indent > -1)) { currentIndent = Math.Max(num, Math.Max(indent + 1, 1L)); } return currentIndent; } private void FetchQuotedScalar(bool isSingleQuoted) { SaveSimpleKey(); simpleKeyAllowed = false; flowScalarFetched = flowLevel > 0; YamlDotNet.Core.Tokens.Scalar item = ScanFlowScalar(isSingleQuoted); tokens.Enqueue(item); lastScalar = item; if (!isSingleQuoted && analyzer.Check('#')) { Mark mark = cursor.Mark(); tokens.Enqueue(new Error("While scanning a flow sequence end, found invalid comment after double-quoted scalar.", mark, mark)); } } private YamlDotNet.Core.Tokens.Scalar ScanFlowScalar(bool isSingleQuoted) { Mark start = cursor.Mark(); Skip(); StringBuilderPool.BuilderWrapper builderWrapper = StringBuilderPool.Rent(); try { StringBuilder builder = builderWrapper.Builder; StringBuilderPool.BuilderWrapper builderWrapper2 = StringBuilderPool.Rent(); try { StringBuilder builder2 = builderWrapper2.Builder; StringBuilderPool.BuilderWrapper builderWrapper3 = StringBuilderPool.Rent(); try { StringBuilder builder3 = builderWrapper3.Builder; StringBuilderPool.BuilderWrapper builderWrapper4 = StringBuilderPool.Rent(); try { StringBuilder builder4 = builderWrapper4.Builder; bool flag = false; while (true) { if (IsDocumentIndicator()) { throw new SyntaxErrorException(in start, cursor.Mark(), "While scanning a quoted scalar, found unexpected document indicator."); } if (analyzer.IsZero()) { throw new SyntaxErrorException(in start, cursor.Mark(), "While scanning a quoted scalar, found unexpected end of stream."); } if (flag && !isSingleQuoted && indent >= cursor.LineOffset) { throw new SyntaxErrorException(in start, cursor.Mark(), "While scanning a multi-line double-quoted scalar, found wrong indentation."); } flag = false; while (!analyzer.IsWhiteBreakOrZero()) { if (isSingleQuoted && analyzer.Check('\'') && analyzer.Check('\'', 1)) { builder.Append('\''); Skip(); Skip(); continue; } if (analyzer.Check(isSingleQuoted ? '\'' : '"')) { break; } if (!isSingleQuoted && analyzer.Check('\\') && analyzer.IsBreak(1)) { Skip(); SkipLine(); flag = true; break; } if (!isSingleQuoted && analyzer.Check('\\')) { int num = 0; char c = analyzer.Peek(1); switch (c) { case 'x': num = 2; break; case 'u': num = 4; break; case 'U': num = 8; break; default: { if (SimpleEscapeCodes.TryGetValue(c, out var value)) { builder.Append(value); break; } throw new SyntaxErrorException(in start, cursor.Mark(), "While scanning a quoted scalar, found unknown escape character."); } } Skip(); Skip(); if (num <= 0) { continue; } int num2 = 0; for (int i = 0; i < num; i++) { if (!analyzer.IsHex(i)) { throw new SyntaxErrorException(in start, cursor.Mark(), "While scanning a quoted scalar, did not find expected hexadecimal number."); } num2 = (num2 << 4) + analyzer.AsHex(i); } if (num2 >= 55296 && num2 <= 57343) { for (int j = 0; j < num; j++) { Skip(); } if (analyzer.Peek(0) != '\\' || (analyzer.Peek(1) != 'u' && analyzer.Peek(1) != 'U')) { throw new SyntaxErrorException(in start, cursor.Mark(), "While scanning a quoted scalar, found invalid Unicode surrogates."); } Skip(); num = ((analyzer.Peek(0) != 'u') ? 8 : 4); Skip(); int num3 = 0; for (int k = 0; k < num; k++) { if (!analyzer.IsHex(0)) { throw new SyntaxErrorException(in start, cursor.Mark(), "While scanning a quoted scalar, did not find expected hexadecimal number."); } num3 = (num3 << 4) + analyzer.AsHex(k); } for (int l = 0; l < num; l++) { Skip(); } num2 = char.ConvertToUtf32((char)num2, (char)num3); } else { if (num2 > 1114111) { throw new SyntaxErrorException(in start, cursor.Mark(), "While scanning a quoted scalar, found invalid Unicode character escape code."); } for (int m = 0; m < num; m++) { Skip(); } } builder.Append(char.ConvertFromUtf32(num2)); } else { builder.Append(ReadCurrentCharacter()); } } if (analyzer.Check(isSingleQuoted ? '\'' : '"')) { break; } while (analyzer.IsWhite() || analyzer.IsBreak()) { if (analyzer.IsWhite()) { if (!flag) { builder2.Append(ReadCurrentCharacter()); } else { Skip(); } } else if (!flag) { builder2.Length = 0; builder3.Append(ReadLine()); flag = true; } else { builder4.Append(ReadLine()); } } if (flag) { if (StartsWith(builder3, '\n')) { if (builder4.Length == 0) { builder.Append(' '); } else { builder.Append((object?)builder4); } } else { builder.Append((object?)builder3); builder.Append((object?)builder4); } builder3.Length = 0; builder4.Length = 0; } else { builder.Append((object?)builder2); builder2.Length = 0; } } Skip(); return new YamlDotNet.Core.Tokens.Scalar(builder.ToString(), isSingleQuoted ? ScalarStyle.SingleQuoted : ScalarStyle.DoubleQuoted, start, cursor.Mark()); } finally { ((IDisposable)builderWrapper4/*cast due to .constrained prefix*/).Dispose(); } } finally { ((IDisposable)builderWrapper3/*cast due to .constrained prefix*/).Dispose(); } } finally { ((IDisposable)builderWrapper2/*cast due to .constrained prefix*/).Dispose(); } } finally { ((IDisposable)builderWrapper/*cast due to .constrained prefix*/).Dispose(); } } private void FetchPlainScalar() { SaveSimpleKey(); simpleKeyAllowed = false; bool isMultiline = false; YamlDotNet.Core.Tokens.Scalar item = (lastScalar = ScanPlainScalar(ref isMultiline)); if (isMultiline && analyzer.Check(':') && flowLevel == 0 && indent < cursor.LineOffset) { tokens.Enqueue(new Error("While scanning a multiline plain scalar, found invalid mapping.", cursor.Mark(), cursor.Mark())); } tokens.Enqueue(item); } private YamlDotNet.Core.Tokens.Scalar ScanPlainScalar(ref bool isMultiline) { StringBuilderPool.BuilderWrapper builderWrapper = StringBuilderPool.Rent(); try { StringBuilder builder = builderWrapper.Builder; StringBuilderPool.BuilderWrapper builderWrapper2 = StringBuilderPool.Rent(); try { StringBuilder builder2 = builderWrapper2.Builder; StringBuilderPool.BuilderWrapper builderWrapper3 = StringBuilderPool.Rent(); try { StringBuilder builder3 = builderWrapper3.Builder; StringBuilderPool.BuilderWrapper builderWrapper4 = StringBuilderPool.Rent(); try { StringBuilder builder4 = builderWrapper4.Builder; bool flag = false; long num = indent + 1; Mark start = cursor.Mark(); Mark end = start; SimpleKey simpleKey = simpleKeys.Peek(); while (!IsDocumentIndicator()) { if (analyzer.Check('#')) { if (indent < 0 && flowLevel == 0) { plainScalarFollowedByComment = true; } break; } bool flag2 = analyzer.Check('*') && (!simpleKey.IsPossible || !simpleKey.IsRequired); while (!analyzer.IsWhiteBreakOrZero()) { if ((analyzer.Check(':') && !flag2 && (analyzer.IsWhiteBreakOrZero(1) || (flowLevel > 0 && analyzer.Check(',', 1)))) || (flowLevel > 0 && analyzer.Check(",[]{}"))) { if (flowLevel == 0 && !simpleKey.IsPossible) { tokens.Enqueue(new Error("While scanning a plain scalar value, found invalid mapping.", cursor.Mark(), cursor.Mark())); } break; } if (flag || builder2.Length > 0) { if (flag) { if (StartsWith(builder3, '\n')) { if (builder4.Length == 0) { builder.Append(' '); } else { builder.Append((object?)builder4); } } else { builder.Append((object?)builder3); builder.Append((object?)builder4); } builder3.Length = 0; builder4.Length = 0; flag = false; } else { builder.Append((object?)builder2); builder2.Length = 0; } } if (flowLevel > 0 && cursor.LineOffset < num) { throw new InvalidOperationException(); } builder.Append(ReadCurrentCharacter()); end = cursor.Mark(); } if (!analyzer.IsWhite() && !analyzer.IsBreak()) { break; } while (analyzer.IsWhite() || analyzer.IsBreak()) { if (analyzer.IsWhite()) { if (flag && cursor.LineOffset < num && analyzer.IsTab()) { throw new SyntaxErrorException(in start, cursor.Mark(), "While scanning a plain scalar, found a tab character that violate indentation."); } if (!flag) { builder2.Append(ReadCurrentCharacter()); } else { Skip(); } } else { isMultiline = true; if (!flag) { builder2.Length = 0; builder3.Append(ReadLine()); flag = true; } else { builder4.Append(ReadLine()); } } } if (flowLevel == 0 && cursor.LineOffset < num) { break; } } if (flag) { simpleKeyAllowed = true; } return new YamlDotNet.Core.Tokens.Scalar(builder.ToString(), ScalarStyle.Plain, start, end); } finally { ((IDisposable)builderWrapper4/*cast due to .constrained prefix*/).Dispose(); } } finally { ((IDisposable)builderWrapper3/*cast due to .constrained prefix*/).Dispose(); } } finally { ((IDisposable)builderWrapper2/*cast due to .constrained prefix*/).Dispose(); } } finally { ((IDisposable)builderWrapper/*cast due to .constrained prefix*/).Dispose(); } } private void RemoveSimpleKey() { SimpleKey simpleKey = simpleKeys.Peek(); if (simpleKey.IsPossible && simpleKey.IsRequired) { throw new SyntaxErrorException(simpleKey.Mark, simpleKey.Mark, "While scanning a simple key, could not find expected ':'."); } simpleKey.MarkAsImpossible(); } private string ScanDirectiveName(in Mark start) { StringBuilderPool.BuilderWrapper builderWrapper = StringBuilderPool.Rent(); try { StringBuilder builder = builderWrapper.Builder; while (analyzer.IsAlphaNumericDashOrUnderscore()) { builder.Append(ReadCurrentCharacter()); } if (builder.Length == 0) { throw new SyntaxErrorException(in start, cursor.Mark(), "While scanning a directive, could not find expected directive name."); } if (analyzer.EndOfInput) { throw new SyntaxErrorException(in start, cursor.Mark(), "While scanning a directive, found unexpected end of stream."); } if (!analyzer.IsWhiteBreakOrZero()) { throw new SyntaxErrorException(in start, cursor.Mark(), "While scanning a directive, found unexpected non-alphabetical character."); } return builder.ToString(); } finally { ((IDisposable)builderWrapper/*cast due to .constrained prefix*/).Dispose(); } } private void SkipWhitespaces() { while (analyzer.IsWhite()) { Skip(); } } private VersionDirective ScanVersionDirectiveValue(in Mark start) { SkipWhitespaces(); int major = ScanVersionDirectiveNumber(in start); if (!analyzer.Check('.')) { throw new SyntaxErrorException(in start, cursor.Mark(), "While scanning a %YAML directive, did not find expected digit or '.' character."); } Skip(); int minor = ScanVersionDirectiveNumber(in start); return new VersionDirective(new Version(major, minor), start, start); } private TagDirective ScanTagDirectiveValue(in Mark start) { SkipWhitespaces(); string handle = ScanTagHandle(isDirective: true, start); if (!analyzer.IsWhite()) { throw new SyntaxErrorException(in start, cursor.Mark(), "While scanning a %TAG directive, did not find expected whitespace."); } SkipWhitespaces(); string prefix = ScanTagUri(null, start); if (!analyzer.IsWhiteBreakOrZero()) { throw new SyntaxErrorException(in start, cursor.Mark(), "While scanning a %TAG directive, did not find expected whitespace or line break."); } return new TagDirective(handle, prefix, start, start); } private string ScanTagUri(string? head, Mark start) { StringBuilderPool.BuilderWrapper builderWrapper = StringBuilderPool.Rent(); try { StringBuilder builder = builderWrapper.Builder; if (head != null && head.Length > 1) { builder.Append(head.Substring(1)); } while (analyzer.IsAlphaNumericDashOrUnderscore() || analyzer.Check(";/?:@&=+$.!~*'()[]%") || (analyzer.Check(',') && !analyzer.IsBreak(1))) { if (analyzer.Check('%')) { builder.Append(ScanUriEscapes(in start)); } else if (analyzer.Check('+')) { builder.Append(' '); Skip(); } else { builder.Append(ReadCurrentCharacter()); } } if (builder.Length == 0) { return string.Empty; } string text = builder.ToString(); if (Polyfills.EndsWith(text, ',')) { throw new SyntaxErrorException(cursor.Mark(), cursor.Mark(), "Unexpected comma at end of tag"); } return text; } finally { ((IDisposable)builderWrapper/*cast due to .constrained prefix*/).Dispose(); } } private string ScanUriEscapes(in Mark start) { byte[] array = EmptyBytes; int count = 0; int num = 0; do { if (!analyzer.Check('%') || !analyzer.IsHex(1) || !analyzer.IsHex(2)) { throw new SyntaxErrorException(in start, cursor.Mark(), "While scanning a tag, did not find URI escaped octet."); } int num2 = (analyzer.AsHex(1) << 4) + analyzer.AsHex(2); if (num == 0) { num = (((num2 & 0x80) == 0) ? 1 : (((num2 & 0xE0) == 192) ? 2 : (((num2 & 0xF0) == 224) ? 3 : (((num2 & 0xF8) == 240) ? 4 : 0)))); if (num == 0) { throw new SyntaxErrorException(in start, cursor.Mark(), "While scanning a tag, found an incorrect leading UTF-8 octet."); } array = new byte[num]; } else if ((num2 & 0xC0) != 128) { throw new SyntaxErrorException(in start, cursor.Mark(), "While scanning a tag, found an incorrect trailing UTF-8 octet."); } array[count++] = (byte)num2; Skip(); Skip(); Skip(); } while (--num > 0); string text = Encoding.UTF8.GetString(array, 0, count); if (text.Length == 0 || text.Length > 2) { throw new SyntaxErrorException(in start, cursor.Mark(), "While scanning a tag, found an incorrect UTF-8 sequence."); } return text; } private string ScanTagHandle(bool isDirective, Mark start) { if (!analyzer.Check('!')) { throw new SyntaxErrorException(in start, cursor.Mark(), "While scanning a tag, did not find expected '!'."); } StringBuilderPool.BuilderWrapper builderWrapper = StringBuilderPool.Rent(); try { StringBuilder builder = builderWrapper.Builder; builder.Append(ReadCurrentCharacter()); while (analyzer.IsAlphaNumericDashOrUnderscore()) { builder.Append(ReadCurrentCharacter()); } if (analyzer.Check('!')) { builder.Append(ReadCurrentCharacter()); } else if (isDirective && (builder.Length != 1 || builder[0] != '!')) { throw new SyntaxErrorException(in start, cursor.Mark(), "While scanning a tag directive, did not find expected '!'."); } return builder.ToString(); } finally { ((IDisposable)builderWrapper/*cast due to .constrained prefix*/).Dispose(); } } private int ScanVersionDirectiveNumber(in Mark start) { int num = 0; int num2 = 0; while (analyzer.IsDigit()) { if (++num2 > 9) { throw new SyntaxErrorException(in start, cursor.Mark(), "While scanning a %YAML directive, found extremely long version number."); } num = num * 10 + analyzer.AsDigit(); Skip(); } if (num2 == 0) { throw new SyntaxErrorException(in start, cursor.Mark(), "While scanning a %YAML directive, did not find expected version number."); } return num; } private void SaveSimpleKey() { bool isRequired = flowLevel == 0 && indent == cursor.LineOffset; if (simpleKeyAllowed) { SimpleKey item = new SimpleKey(isRequired, tokensParsed + tokens.Count, cursor); RemoveSimpleKey(); simpleKeys.Pop(); simpleKeys.Push(item); } } } internal class SemanticErrorException : YamlException { public SemanticErrorException(string message) : base(message) { } public SemanticErrorException(in Mark start, in Mark end, string message) : base(in start, in end, message) { } public SemanticErrorException(string message, Exception inner) : base(message, inner) { } } internal sealed class SimpleKey { private readonly Cursor cursor; public bool IsPossible { get; private set; } public bool IsRequired { get; } public int TokenNumber { get; } public long Index => cursor.Index; public long Line => cursor.Line; public long LineOffset => cursor.LineOffset; public Mark Mark => cursor.Mark(); public void MarkAsImpossible() { IsPossible = false; } public SimpleKey() { cursor = new Cursor(); } public SimpleKey(bool isRequired, int tokenNumber, Cursor cursor) { IsPossible = true; IsRequired = isRequired; TokenNumber = tokenNumber; this.cursor = new Cursor(cursor); } } internal sealed class StringLookAheadBuffer : ILookAheadBuffer, IResettable { public string Value { get; set; } = string.Empty; public int Position { get; private set; } public int Length => Value.Length; public bool EndOfInput => IsOutside(Position); public char Peek(int offset) { int index = Position + offset; if (!IsOutside(index)) { return Value[index]; } return '\0'; } private bool IsOutside(int index) { return index >= Value.Length; } public void Skip(int length) { if (length < 0) { throw new ArgumentOutOfRangeException("length", "The length must be positive."); } Position += length; } public bool TryReset() { Position = 0; Value = string.Empty; return true; } } internal sealed class SyntaxErrorException : YamlException { public SyntaxErrorException(string message) : base(message) { } public SyntaxErrorException(in Mark start, in Mark end, string message) : base(in start, in end, message) { } public SyntaxErrorException(string message, Exception inner) : base(message, inner) { } } internal sealed class TagDirectiveCollection : KeyedCollection { public TagDirectiveCollection() { } public TagDirectiveCollection(IEnumerable tagDirectives) { foreach (TagDirective tagDirective in tagDirectives) { Add(tagDirective); } } protected override string GetKeyForItem(TagDirective item) { return item.Handle; } public new bool Contains(TagDirective directive) { return Contains(GetKeyForItem(directive)); } } internal readonly struct TagName : IEquatable { public static readonly TagName Empty; private readonly string? value; public string Value => value ?? throw new InvalidOperationException("Cannot read the Value of a non-specific tag"); public bool IsEmpty => value == null; public bool IsNonSpecific { get { if (!IsEmpty) { if (!(value == "!")) { return value == "?"; } return true; } return false; } } public bool IsLocal { get { if (!IsEmpty) { return Value[0] == '!'; } return false; } } public bool IsGlobal { get { if (!IsEmpty) { return !IsLocal; } return false; } } public TagName(string value) { this.value = value ?? throw new ArgumentNullException("value"); if (value.Length == 0) { throw new ArgumentException("Tag value must not be empty.", "value"); } if (IsGlobal && !Uri.IsWellFormedUriString(value, UriKind.RelativeOrAbsolute)) { throw new ArgumentException("Global tags must be valid URIs.", "value"); } } public override string ToString() { return value ?? "?"; } public bool Equals(TagName other) { return object.Equals(value, other.value); } public override bool Equals(object? obj) { if (obj is TagName other) { return Equals(other); } return false; } public override int GetHashCode() { return value?.GetHashCode() ?? 0; } public static bool operator ==(TagName left, TagName right) { return left.Equals(right); } public static bool operator !=(TagName left, TagName right) { return !(left == right); } public static bool operator ==(TagName left, string right) { return object.Equals(left.value, right); } public static bool operator !=(TagName left, string right) { return !(left == right); } public static implicit operator TagName(string? value) { if (value != null) { return new TagName(value); } return Empty; } } internal sealed class Version { public int Major { get; } public int Minor { get; } public Version(int major, int minor) { if (major < 0) { throw new ArgumentOutOfRangeException("major", $"{major} should be >= 0"); } Major = major; if (minor < 0) { throw new ArgumentOutOfRangeException("minor", $"{minor} should be >= 0"); } Minor = minor; } public override bool Equals(object? obj) { if (obj is Version version && Major == version.Major) { return Minor == version.Minor; } return false; } public override int GetHashCode() { return HashCode.CombineHashCodes(Major.GetHashCode(), Minor.GetHashCode()); } } internal class YamlException : Exception { public Mark Start { get; } public Mark End { get; } public YamlException(string message) : this(in Mark.Empty, in Mark.Empty, message) { } public YamlException(in Mark start, in Mark end, string message) : this(in start, in end, message, null) { } public YamlException(in Mark start, in Mark end, string message, Exception? innerException) : base(message, innerException) { Start = start; End = end; } public YamlException(string message, Exception inner) : this(in Mark.Empty, in Mark.Empty, message, inner) { } public override string ToString() { return $"({Start}) - ({End}): {Message}"; } } } namespace YamlDotNet.Core.Tokens { internal class Anchor : Token { public AnchorName Value { get; } public Anchor(AnchorName value) : this(value, Mark.Empty, Mark.Empty) { } public Anchor(AnchorName value, Mark start, Mark end) : base(in start, in end) { if (value.IsEmpty) { throw new ArgumentNullException("value"); } Value = value; } } internal sealed class AnchorAlias : Token { public AnchorName Value { get; } public AnchorAlias(AnchorName value) : this(value, Mark.Empty, Mark.Empty) { } public AnchorAlias(AnchorName value, Mark start, Mark end) : base(in start, in end) { if (value.IsEmpty) { throw new ArgumentNullException("value"); } Value = value; } } internal sealed class BlockEnd : Token { public BlockEnd() : this(in Mark.Empty, in Mark.Empty) { } public BlockEnd(in Mark start, in Mark end) : base(in start, in end) { } } internal sealed class BlockEntry : Token { public BlockEntry() : this(in Mark.Empty, in Mark.Empty) { } public BlockEntry(in Mark start, in Mark end) : base(in start, in end) { } } internal sealed class BlockMappingStart : Token { public BlockMappingStart() : this(in Mark.Empty, in Mark.Empty) { } public BlockMappingStart(in Mark start, in Mark end) : base(in start, in end) { } } internal sealed class BlockSequenceStart : Token { public BlockSequenceStart() : this(in Mark.Empty, in Mark.Empty) { } public BlockSequenceStart(in Mark start, in Mark end) : base(in start, in end) { } } internal sealed class Comment : Token { public string Value { get; } public bool IsInline { get; } public Comment(string value, bool isInline) : this(value, isInline, Mark.Empty, Mark.Empty) { } public Comment(string value, bool isInline, Mark start, Mark end) : base(in start, in end) { Value = value ?? throw new ArgumentNullException("value"); IsInline = isInline; } } internal sealed class DocumentEnd : Token { public DocumentEnd() : this(in Mark.Empty, in Mark.Empty) { } public DocumentEnd(in Mark start, in Mark end) : base(in start, in end) { } } internal sealed class DocumentStart : Token { public DocumentStart() : this(in Mark.Empty, in Mark.Empty) { } public DocumentStart(in Mark start, in Mark end) : base(in start, in end) { } } internal class Error : Token { public string Value { get; } public Error(string value, Mark start, Mark end) : base(in start, in end) { Value = value; } } internal sealed class FlowEntry : Token { public FlowEntry() : this(in Mark.Empty, in Mark.Empty) { } public FlowEntry(in Mark start, in Mark end) : base(in start, in end) { } } internal sealed class FlowMappingEnd : Token { public FlowMappingEnd() : this(in Mark.Empty, in Mark.Empty) { } public FlowMappingEnd(in Mark start, in Mark end) : base(in start, in end) { } } internal sealed class FlowMappingStart : Token { public FlowMappingStart() : this(in Mark.Empty, in Mark.Empty) { } public FlowMappingStart(in Mark start, in Mark end) : base(in start, in end) { } } internal sealed class FlowSequenceEnd : Token { public FlowSequenceEnd() : this(in Mark.Empty, in Mark.Empty) { } public FlowSequenceEnd(in Mark start, in Mark end) : base(in start, in end) { } } internal sealed class FlowSequenceStart : Token { public FlowSequenceStart() : this(in Mark.Empty, in Mark.Empty) { } public FlowSequenceStart(in Mark start, in Mark end) : base(in start, in end) { } } internal sealed class Key : Token { public Key() : this(in Mark.Empty, in Mark.Empty) { } public Key(in Mark start, in Mark end) : base(in start, in end) { } } internal sealed class Scalar : Token { public bool IsKey { get; set; } public string Value { get; } public ScalarStyle Style { get; } public Scalar(string value) : this(value, ScalarStyle.Any) { } public Scalar(string value, ScalarStyle style) : this(value, style, Mark.Empty, Mark.Empty) { } public Scalar(string value, ScalarStyle style, Mark start, Mark end) : base(in start, in end) { Value = value ?? throw new ArgumentNullException("value"); Style = style; } } internal sealed class StreamEnd : Token { public StreamEnd() : this(in Mark.Empty, in Mark.Empty) { } public StreamEnd(in Mark start, in Mark end) : base(in start, in end) { } } internal sealed class StreamStart : Token { public StreamStart() : this(in Mark.Empty, in Mark.Empty) { } public StreamStart(in Mark start, in Mark end) : base(in start, in end) { } } internal sealed class Tag : Token { public string Handle { get; } public string Suffix { get; } public Tag(string handle, string suffix) : this(handle, suffix, Mark.Empty, Mark.Empty) { } public Tag(string handle, string suffix, Mark start, Mark end) : base(in start, in end) { Handle = handle ?? throw new ArgumentNullException("handle"); Suffix = suffix ?? throw new ArgumentNullException("suffix"); } } internal class TagDirective : Token { private static readonly Regex TagHandlePattern = new Regex("^!([0-9A-Za-z_\\-]*!)?$", RegexOptions.Compiled); public string Handle { get; } public string Prefix { get; } public TagDirective(string handle, string prefix) : this(handle, prefix, Mark.Empty, Mark.Empty) { } public TagDirective(string handle, string prefix, Mark start, Mark end) : base(in start, in end) { if (string.IsNullOrEmpty(handle)) { throw new ArgumentNullException("handle", "Tag handle must not be empty."); } if (!TagHandlePattern.IsMatch(handle)) { throw new ArgumentException("Tag handle must start and end with '!' and contain alphanumerical characters only.", "handle"); } Handle = handle; if (string.IsNullOrEmpty(prefix)) { throw new ArgumentNullException("prefix", "Tag prefix must not be empty."); } Prefix = prefix; } public override bool Equals(object? obj) { if (obj is TagDirective tagDirective && Handle.Equals(tagDirective.Handle)) { return Prefix.Equals(tagDirective.Prefix); } return false; } public override int GetHashCode() { return Handle.GetHashCode() ^ Prefix.GetHashCode(); } public override string ToString() { return Handle + " => " + Prefix; } } internal abstract class Token { public Mark Start { get; } public Mark End { get; } protected Token(in Mark start, in Mark end) { Start = start; End = end; } } internal sealed class Value : Token { public Value() : this(in Mark.Empty, in Mark.Empty) { } public Value(in Mark start, in Mark end) : base(in start, in end) { } } internal sealed class VersionDirective : Token { public Version Version { get; } public VersionDirective(Version version) : this(version, Mark.Empty, Mark.Empty) { } public VersionDirective(Version version, Mark start, Mark end) : base(in start, in end) { Version = version; } public override bool Equals(object? obj) { if (obj is VersionDirective versionDirective) { return Version.Equals(versionDirective.Version); } return false; } public override int GetHashCode() { return Version.GetHashCode(); } } } namespace YamlDotNet.Core.ObjectPool { internal class DefaultObjectPool : ObjectPool where T : class { private readonly Func createFunc; private readonly Func returnFunc; private readonly int maxCapacity; private int numItems; private protected readonly ConcurrentQueue items = new ConcurrentQueue(); private protected T? fastItem; public DefaultObjectPool(IPooledObjectPolicy policy) : this(policy, Environment.ProcessorCount * 2) { } public DefaultObjectPool(IPooledObjectPolicy policy, int maximumRetained) { createFunc = policy.Create; returnFunc = policy.Return; maxCapacity = maximumRetained - 1; } public override T Get() { T result = fastItem; if (result == null || Interlocked.CompareExchange(ref fastItem, null, result) != result) { if (items.TryDequeue(out result)) { Interlocked.Decrement(ref numItems); return result; } return createFunc(); } return result; } public override void Return(T obj) { ReturnCore(obj); } private protected bool ReturnCore(T obj) { if (!returnFunc(obj)) { return false; } if (fastItem != null || Interlocked.CompareExchange(ref fastItem, obj, null) != null) { if (Interlocked.Increment(ref numItems) <= maxCapacity) { items.Enqueue(obj); return true; } Interlocked.Decrement(ref numItems); return false; } return true; } } internal class DefaultPooledObjectPolicy : IPooledObjectPolicy where T : class, new() { public T Create() { return new T(); } public bool Return(T obj) { if (obj is IResettable resettable) { return resettable.TryReset(); } return true; } } internal interface IPooledObjectPolicy where T : notnull { T Create(); bool Return(T obj); } internal interface IResettable { bool TryReset(); } internal abstract class ObjectPool where T : class { public abstract T Get(); public abstract void Return(T obj); } internal static class ObjectPool { public static ObjectPool Create(IPooledObjectPolicy? policy = null) where T : class, new() { return new DefaultObjectPool(policy ?? new DefaultPooledObjectPolicy()); } public static ObjectPool Create(int maximumRetained, IPooledObjectPolicy? policy = null) where T : class, new() { return new DefaultObjectPool(policy ?? new DefaultPooledObjectPolicy(), maximumRetained); } } [DebuggerStepThrough] internal static class StringBuilderPool { internal readonly struct BuilderWrapper : IDisposable { public readonly StringBuilder Builder; private readonly ObjectPool pool; public BuilderWrapper(StringBuilder builder, ObjectPool pool) { Builder = builder; this.pool = pool; } public override string ToString() { return Builder.ToString(); } public void Dispose() { pool.Return(Builder); } } private static readonly ObjectPool Pool = ObjectPool.Create(new StringBuilderPooledObjectPolicy { InitialCapacity = 16, MaximumRetainedCapacity = 1024 }); public static BuilderWrapper Rent() { StringBuilder builder = Pool.Get(); return new BuilderWrapper(builder, Pool); } } internal class StringBuilderPooledObjectPolicy : IPooledObjectPolicy { public int InitialCapacity { get; set; } = 100; public int MaximumRetainedCapacity { get; set; } = 4096; public StringBuilder Create() { return new StringBuilder(InitialCapacity); } public bool Return(StringBuilder obj) { if (obj.Capacity > MaximumRetainedCapacity) { return false; } obj.Clear(); return true; } } internal static class StringLookAheadBufferPool { internal readonly struct BufferWrapper : IDisposable { public readonly StringLookAheadBuffer Buffer; private readonly ObjectPool pool; public BufferWrapper(StringLookAheadBuffer buffer, ObjectPool pool) { Buffer = buffer; this.pool = pool; } public override string ToString() { return Buffer.ToString(); } public void Dispose() { pool.Return(Buffer); } } private static readonly ObjectPool Pool = ObjectPool.Create(new DefaultPooledObjectPolicy()); public static BufferWrapper Rent(string value) { StringLookAheadBuffer stringLookAheadBuffer = Pool.Get(); stringLookAheadBuffer.Value = value; return new BufferWrapper(stringLookAheadBuffer, Pool); } } } namespace YamlDotNet.Core.Events { internal sealed class AnchorAlias : ParsingEvent { internal override EventType Type => EventType.Alias; public AnchorName Value { get; } public AnchorAlias(AnchorName value, Mark start, Mark end) : base(in start, in end) { if (value.IsEmpty) { throw new YamlException(in start, in end, "Anchor value must not be empty."); } Value = value; } public AnchorAlias(AnchorName value) : this(value, Mark.Empty, Mark.Empty) { } public override string ToString() { return $"Alias [value = {Value}]"; } public override void Accept(IParsingEventVisitor visitor) { visitor.Visit(this); } } internal sealed class Comment : ParsingEvent { public string Value { get; } public bool IsInline { get; } internal override EventType Type => EventType.Comment; public Comment(string value, bool isInline) : this(value, isInline, Mark.Empty, Mark.Empty) { } public Comment(string value, bool isInline, Mark start, Mark end) : base(in start, in end) { Value = value; IsInline = isInline; } public override void Accept(IParsingEventVisitor visitor) { visitor.Visit(this); } public override string ToString() { return (IsInline ? "Inline" : "Block") + " Comment [" + Value + "]"; } } internal sealed class DocumentEnd : ParsingEvent { public override int NestingIncrease => -1; internal override EventType Type => EventType.DocumentEnd; public bool IsImplicit { get; } public DocumentEnd(bool isImplicit, Mark start, Mark end) : base(in start, in end) { IsImplicit = isImplicit; } public DocumentEnd(bool isImplicit) : this(isImplicit, Mark.Empty, Mark.Empty) { } public override string ToString() { return $"Document end [isImplicit = {IsImplicit}]"; } public override void Accept(IParsingEventVisitor visitor) { visitor.Visit(this); } } internal sealed class DocumentStart : ParsingEvent { public override int NestingIncrease => 1; internal override EventType Type => EventType.DocumentStart; public TagDirectiveCollection? Tags { get; } public VersionDirective? Version { get; } public bool IsImplicit { get; } public DocumentStart(VersionDirective? version, TagDirectiveCollection? tags, bool isImplicit, Mark start, Mark end) : base(in start, in end) { Version = version; Tags = tags; IsImplicit = isImplicit; } public DocumentStart(VersionDirective? version, TagDirectiveCollection? tags, bool isImplicit) : this(version, tags, isImplicit, Mark.Empty, Mark.Empty) { } public DocumentStart(in Mark start, in Mark end) : this(null, null, isImplicit: true, start, end) { } public DocumentStart() : this(null, null, isImplicit: true, Mark.Empty, Mark.Empty) { } public override string ToString() { return $"Document start [isImplicit = {IsImplicit}]"; } public override void Accept(IParsingEventVisitor visitor) { visitor.Visit(this); } } internal enum EventType { None, StreamStart, StreamEnd, DocumentStart, DocumentEnd, Alias, Scalar, SequenceStart, SequenceEnd, MappingStart, MappingEnd, Comment } internal interface IParsingEventVisitor { void Visit(AnchorAlias e); void Visit(StreamStart e); void Visit(StreamEnd e); void Visit(DocumentStart e); void Visit(DocumentEnd e); void Visit(Scalar e); void Visit(SequenceStart e); void Visit(SequenceEnd e); void Visit(MappingStart e); void Visit(MappingEnd e); void Visit(Comment e); } internal class MappingEnd : ParsingEvent { public override int NestingIncrease => -1; internal override EventType Type => EventType.MappingEnd; public MappingEnd(in Mark start, in Mark end) : base(in start, in end) { } public MappingEnd() : this(in Mark.Empty, in Mark.Empty) { } public override string ToString() { return "Mapping end"; } public override void Accept(IParsingEventVisitor visitor) { visitor.Visit(this); } } internal sealed class MappingStart : NodeEvent { public override int NestingIncrease => 1; internal override EventType Type => EventType.MappingStart; public bool IsImplicit { get; } public override bool IsCanonical => !IsImplicit; public MappingStyle Style { get; } public MappingStart(AnchorName anchor, TagName tag, bool isImplicit, MappingStyle style, Mark start, Mark end) : base(anchor, tag, start, end) { IsImplicit = isImplicit; Style = style; } public MappingStart(AnchorName anchor, TagName tag, bool isImplicit, MappingStyle style) : this(anchor, tag, isImplicit, style, Mark.Empty, Mark.Empty) { } public MappingStart() : this(AnchorName.Empty, TagName.Empty, isImplicit: true, MappingStyle.Any, Mark.Empty, Mark.Empty) { } public override string ToString() { return $"Mapping start [anchor = {base.Anchor}, tag = {base.Tag}, isImplicit = {IsImplicit}, style = {Style}]"; } public override void Accept(IParsingEventVisitor visitor) { visitor.Visit(this); } } internal enum MappingStyle { Any, Block, Flow } internal abstract class NodeEvent : ParsingEvent { public AnchorName Anchor { get; } public TagName Tag { get; } public abstract bool IsCanonical { get; } protected NodeEvent(AnchorName anchor, TagName tag, Mark start, Mark end) : base(in start, in end) { Anchor = anchor; Tag = tag; } protected NodeEvent(AnchorName anchor, TagName tag) : this(anchor, tag, Mark.Empty, Mark.Empty) { } } internal abstract class ParsingEvent { public virtual int NestingIncrease => 0; internal abstract EventType Type { get; } public Mark Start { get; } public Mark End { get; } public abstract void Accept(IParsingEventVisitor visitor); internal ParsingEvent(in Mark start, in Mark end) { Start = start; End = end; } } internal sealed class Scalar : NodeEvent { internal override EventType Type => EventType.Scalar; public string Value { get; } public ScalarStyle Style { get; } public bool IsPlainImplicit { get; } public bool IsQuotedImplicit { get; } public override bool IsCanonical { get { if (!IsPlainImplicit) { return !IsQuotedImplicit; } return false; } } public bool IsKey { get; } public Scalar(AnchorName anchor, TagName tag, string value, ScalarStyle style, bool isPlainImplicit, bool isQuotedImplicit, Mark start, Mark end, bool isKey = false) : base(anchor, tag, start, end) { Value = value; Style = style; IsPlainImplicit = isPlainImplicit; IsQuotedImplicit = isQuotedImplicit; IsKey = isKey; } public Scalar(AnchorName anchor, TagName tag, string value, ScalarStyle style, bool isPlainImplicit, bool isQuotedImplicit) : this(anchor, tag, value, style, isPlainImplicit, isQuotedImplicit, Mark.Empty, Mark.Empty) { } public Scalar(string value) : this(AnchorName.Empty, TagName.Empty, value, ScalarStyle.Any, isPlainImplicit: true, isQuotedImplicit: true, Mark.Empty, Mark.Empty) { } public Scalar(TagName tag, string value) : this(AnchorName.Empty, tag, value, ScalarStyle.Any, isPlainImplicit: true, isQuotedImplicit: true, Mark.Empty, Mark.Empty) { } public Scalar(AnchorName anchor, TagName tag, string value) : this(anchor, tag, value, ScalarStyle.Any, isPlainImplicit: true, isQuotedImplicit: true, Mark.Empty, Mark.Empty) { } public override string ToString() { return $"Scalar [anchor = {base.Anchor}, tag = {base.Tag}, value = {Value}, style = {Style}, isPlainImplicit = {IsPlainImplicit}, isQuotedImplicit = {IsQuotedImplicit}]"; } public override void Accept(IParsingEventVisitor visitor) { visitor.Visit(this); } } internal sealed class SequenceEnd : ParsingEvent { public override int NestingIncrease => -1; internal override EventType Type => EventType.SequenceEnd; public SequenceEnd(in Mark start, in Mark end) : base(in start, in end) { } public SequenceEnd() : this(in Mark.Empty, in Mark.Empty) { } public override string ToString() { return "Sequence end"; } public override void Accept(IParsingEventVisitor visitor) { visitor.Visit(this); } } internal sealed class SequenceStart : NodeEvent { public override int NestingIncrease => 1; internal override EventType Type => EventType.SequenceStart; public bool IsImplicit { get; } public override bool IsCanonical => !IsImplicit; public SequenceStyle Style { get; } public SequenceStart(AnchorName anchor, TagName tag, bool isImplicit, SequenceStyle style, Mark start, Mark end) : base(anchor, tag, start, end) { IsImplicit = isImplicit; Style = style; } public SequenceStart(AnchorName anchor, TagName tag, bool isImplicit, SequenceStyle style) : this(anchor, tag, isImplicit, style, Mark.Empty, Mark.Empty) { } public override string ToString() { return $"Sequence start [anchor = {base.Anchor}, tag = {base.Tag}, isImplicit = {IsImplicit}, style = {Style}]"; } public override void Accept(IParsingEventVisitor visitor) { visitor.Visit(this); } } internal enum SequenceStyle { Any, Block, Flow } internal sealed class StreamEnd : ParsingEvent { public override int NestingIncrease => -1; internal override EventType Type => EventType.StreamEnd; public StreamEnd(in Mark start, in Mark end) : base(in start, in end) { } public StreamEnd() : this(in Mark.Empty, in Mark.Empty) { } public override string ToString() { return "Stream end"; } public override void Accept(IParsingEventVisitor visitor) { visitor.Visit(this); } } internal sealed class StreamStart : ParsingEvent { public override int NestingIncrease => 1; internal override EventType Type => EventType.StreamStart; public StreamStart() : this(in Mark.Empty, in Mark.Empty) { } public StreamStart(in Mark start, in Mark end) : base(in start, in end) { } public override string ToString() { return "Stream start"; } public override void Accept(IParsingEventVisitor visitor) { visitor.Visit(this); } } } namespace System.Diagnostics.CodeAnalysis { [AttributeUsage(AttributeTargets.Property | AttributeTargets.Field | AttributeTargets.Parameter, Inherited = false)] [ExcludeFromCodeCoverage] [DebuggerNonUserCode] internal sealed class AllowNullAttribute : Attribute { } [AttributeUsage(AttributeTargets.Property | AttributeTargets.Field | AttributeTargets.Parameter, Inherited = false)] [ExcludeFromCodeCoverage] [DebuggerNonUserCode] internal sealed class DisallowNullAttribute : Attribute { } [AttributeUsage(AttributeTargets.Method, Inherited = false)] [ExcludeFromCodeCoverage] [DebuggerNonUserCode] internal sealed class DoesNotReturnAttribute : Attribute { } [AttributeUsage(AttributeTargets.Parameter, Inherited = false)] [ExcludeFromCodeCoverage] [DebuggerNonUserCode] internal sealed class DoesNotReturnIfAttribute : Attribute { public bool ParameterValue { get; } public DoesNotReturnIfAttribute(bool parameterValue) { ParameterValue = parameterValue; } } [AttributeUsage(AttributeTargets.Property | AttributeTargets.Field | AttributeTargets.Parameter | AttributeTargets.ReturnValue, Inherited = false)] [ExcludeFromCodeCoverage] [DebuggerNonUserCode] internal sealed class MaybeNullAttribute : Attribute { } [AttributeUsage(AttributeTargets.Parameter, Inherited = false)] [ExcludeFromCodeCoverage] [DebuggerNonUserCode] internal sealed class MaybeNullWhenAttribute : Attribute { public bool ReturnValue { get; } public MaybeNullWhenAttribute(bool returnValue) { ReturnValue = returnValue; } } [AttributeUsage(AttributeTargets.Method | AttributeTargets.Property, Inherited = false, AllowMultiple = true)] [ExcludeFromCodeCoverage] [DebuggerNonUserCode] internal sealed class MemberNotNullAttribute : Attribute { public string[] Members { get; } public MemberNotNullAttribute(string member) { Members = new string[1] { member }; } public MemberNotNullAttribute(params string[] members) { Members = members; } } [AttributeUsage(AttributeTargets.Method | AttributeTargets.Property, Inherited = false, AllowMultiple = true)] [ExcludeFromCodeCoverage] [DebuggerNonUserCode] internal sealed class MemberNotNullWhenAttribute : Attribute { public bool ReturnValue { get; } public string[] Members { get; } public MemberNotNullWhenAttribute(bool returnValue, string member) { ReturnValue = returnValue; Members = new string[1] { member }; } public MemberNotNullWhenAttribute(bool returnValue, params string[] members) { ReturnValue = returnValue; Members = members; } } [AttributeUsage(AttributeTargets.Property | AttributeTargets.Field | AttributeTargets.Parameter | AttributeTargets.ReturnValue, Inherited = false)] [ExcludeFromCodeCoverage] [DebuggerNonUserCode] internal sealed class NotNullAttribute : Attribute { } [AttributeUsage(AttributeTargets.Property | AttributeTargets.Parameter | AttributeTargets.ReturnValue, AllowMultiple = true, Inherited = false)] [ExcludeFromCodeCoverage] [DebuggerNonUserCode] internal sealed class NotNullIfNotNullAttribute : Attribute { public string ParameterName { get; } public NotNullIfNotNullAttribute(string parameterName) { ParameterName = parameterName; } } [AttributeUsage(AttributeTargets.Parameter, Inherited = false)] [ExcludeFromCodeCoverage] [DebuggerNonUserCode] internal sealed class NotNullWhenAttribute : Attribute { public bool ReturnValue { get; } public NotNullWhenAttribute(bool returnValue) { ReturnValue = returnValue; } } }