mirror of
https://github.com/kwsch/PKHeX
synced 2024-11-30 15:59:13 +00:00
88830e0d00
Updates from net46->net7, dropping support for mono in favor of using the latest runtime (along with the performance/API improvements). Releases will be posted as 64bit only for now. Refactors a good amount of internal API methods to be more performant and more customizable for future updates & fixes. Adds functionality for Batch Editor commands to `>`, `<` and <=/>= TID/SID properties renamed to TID16/SID16 for clarity; other properties exposed for Gen7 / display variants. Main window has a new layout to account for DPI scaling (8 point grid) Fixed: Tatsugiri and Paldean Tauros now output Showdown form names as Showdown expects Changed: Gen9 species now interact based on the confirmed National Dex IDs (closes #3724) Fixed: Pokedex set all no longer clears species with unavailable non-base forms (closes #3720) Changed: Hyper Training suggestions now apply for level 50 in SV. (closes #3714) Fixed: B2/W2 hatched egg met locations exclusive to specific versions are now explicitly checked (closes #3691) Added: Properties for ribbon/mark count (closes #3659) Fixed: Traded SV eggs are now checked correctly (closes #3692)
226 lines
8.2 KiB
C#
226 lines
8.2 KiB
C#
using System;
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using System.Diagnostics;
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using System.IO;
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using static System.Buffers.Binary.BinaryPrimitives;
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namespace PKHeX.Core;
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/// <summary>
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/// Block of <see cref="Data"/> obtained from a <see cref="SwishCrypto"/> encrypted block storage binary.
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/// </summary>
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public sealed class SCBlock
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{
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/// <summary>
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/// Used to encrypt the rest of the block.
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/// </summary>
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public readonly uint Key;
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/// <summary>
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/// What kind of block is it?
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/// </summary>
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public SCTypeCode Type { get; private set; }
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/// <summary>
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/// For <see cref="SCTypeCode.Array"/>: What kind of array is it?
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/// </summary>
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public readonly SCTypeCode SubType;
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/// <summary>
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/// Decrypted data for this block.
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/// </summary>
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public readonly byte[] Data;
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/// <summary>
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/// Changes the block's Boolean type. Will throw if the old / new <see cref="Type"/> is not boolean.
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/// </summary>
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/// <param name="value">New boolean type to set.</param>
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/// <remarks>Will throw if the requested block state changes are incorrect.</remarks>
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public void ChangeBooleanType(SCTypeCode value)
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{
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if (Type is not (SCTypeCode.Bool1 or SCTypeCode.Bool2) || value is not (SCTypeCode.Bool1 or SCTypeCode.Bool2))
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throw new InvalidOperationException($"Cannot change {Type} to {value}.");
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Type = value;
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}
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/// <summary>
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/// Replaces the current <see cref="Data"/> with a same-sized array <see cref="value"/>.
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/// </summary>
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/// <param name="value">New array to load (copy from).</param>
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/// <remarks>Will throw if the requested block state changes are incorrect.</remarks>
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public void ChangeData(ReadOnlySpan<byte> value)
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{
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if (value.Length != Data.Length)
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throw new InvalidOperationException($"Cannot change size of {Type} block from {Data.Length} to {value.Length}.");
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value.CopyTo(Data);
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}
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/// <summary>
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/// Creates a new block reference to indicate a boolean value via the <see cref="type"/> (no data).
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/// </summary>
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/// <param name="key">Hash key</param>
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/// <param name="type">Value the block has</param>
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internal SCBlock(uint key, SCTypeCode type) : this(key, type, Array.Empty<byte>())
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{
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}
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/// <summary>
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/// Creates a new block reference to indicate an object or single primitive value.
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/// </summary>
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/// <param name="key">Hash key</param>
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/// <param name="type">Type of data that can be read</param>
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/// <param name="arr">Backing byte array to interpret as a typed value</param>
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internal SCBlock(uint key, SCTypeCode type, byte[] arr)
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{
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Key = key;
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Type = type;
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Data = arr;
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}
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/// <summary>
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/// Creates a new block reference to indicate an array of primitive values.
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/// </summary>
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/// <param name="key">Hash key</param>
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/// <param name="arr">Backing byte array to read primitives from</param>
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/// <param name="subType">Primitive value type</param>
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internal SCBlock(uint key, byte[] arr, SCTypeCode subType)
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{
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Key = key;
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Type = SCTypeCode.Array;
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Data = arr;
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SubType = subType;
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}
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/// <summary> Indicates if the block represents a single primitive value. </summary>
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public bool HasValue() => Type > SCTypeCode.Array;
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/// <summary> Returns a boxed reference to a single primitive value. </summary>
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/// <remarks> Throws an exception if the block does not represent a single primitive value. </remarks>
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public object GetValue() => Type.GetValue(Data);
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/// <summary> Sets a boxed primitive value to the block data. </summary>
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/// <remarks> Throws an exception if the block does not represent a single primitive value, or if the primitive type does not match. </remarks>
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/// <param name="value">Boxed primitive value to be set to the block</param>
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public void SetValue(object value) => Type.SetValue(Data, value);
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/// <summary>
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/// Creates a deep copy of the block.
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/// </summary>
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public SCBlock Clone()
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{
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if (Data.Length == 0)
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return new SCBlock(Key, Type);
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var clone = Data.AsSpan().ToArray();
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if (SubType == 0)
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return new SCBlock(Key, Type, clone);
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return new SCBlock(Key, clone, SubType);
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}
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/// <summary>
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/// Encrypts the <see cref="Data"/> according to the <see cref="Type"/> and <see cref="SubType"/>.
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/// </summary>
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public void WriteBlock(BinaryWriter bw)
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{
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var xk = new SCXorShift32(Key);
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bw.Write(Key);
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bw.Write((byte)((byte)Type ^ xk.Next()));
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if (Type == SCTypeCode.Object)
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{
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bw.Write((uint)Data.Length ^ xk.Next32());
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}
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else if (Type == SCTypeCode.Array)
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{
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var entries = (uint)(Data.Length / SubType.GetTypeSize());
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bw.Write(entries ^ xk.Next32());
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bw.Write((byte)((byte)SubType ^ xk.Next()));
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}
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foreach (var b in Data)
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bw.Write((byte)(b ^ xk.Next()));
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}
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/// <summary>
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/// Reads a new <see cref="SCBlock"/> object from the <see cref="data"/>, determining the <see cref="Type"/> and <see cref="SubType"/> during read.
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/// </summary>
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/// <param name="data">Decrypted data</param>
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/// <param name="offset">Offset the block is to be read from (modified to offset by the amount of bytes consumed).</param>
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/// <returns>New object containing all info for the block.</returns>
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public static SCBlock ReadFromOffset(ReadOnlySpan<byte> data, ref int offset)
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{
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// Get key, initialize xorshift to decrypt
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var key = ReadUInt32LittleEndian(data[offset..]);
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offset += 4;
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var xk = new SCXorShift32(key);
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// Parse the block's type
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var type = (SCTypeCode)(data[offset++] ^ xk.Next());
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switch (type)
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{
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case SCTypeCode.Bool1:
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case SCTypeCode.Bool2:
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case SCTypeCode.Bool3:
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// Block types are empty, and have no extra data.
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Debug.Assert(type != SCTypeCode.Bool3); // invalid type, haven't seen it used yet
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return new SCBlock(key, type);
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case SCTypeCode.Object: // Cast raw bytes to Object
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{
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var num_bytes = ReadInt32LittleEndian(data[offset..]) ^ (int)xk.Next32();
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offset += 4;
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var arr = data.Slice(offset, num_bytes).ToArray();
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offset += num_bytes;
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for (int i = 0; i < arr.Length; i++)
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arr[i] ^= (byte)xk.Next();
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return new SCBlock(key, type, arr);
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}
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case SCTypeCode.Array: // Cast raw bytes to SubType[]
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{
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var num_entries = ReadInt32LittleEndian(data[offset..]) ^ (int)xk.Next32();
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offset += 4;
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var sub = (SCTypeCode)(data[offset++] ^ xk.Next());
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var num_bytes = num_entries * sub.GetTypeSize();
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var arr = data.Slice(offset, num_bytes).ToArray();
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offset += num_bytes;
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for (int i = 0; i < arr.Length; i++)
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arr[i] ^= (byte)xk.Next();
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EnsureArrayIsSane(sub, arr);
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return new SCBlock(key, arr, sub);
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}
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default: // Single Value Storage
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{
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var num_bytes = type.GetTypeSize();
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var arr = data.Slice(offset, num_bytes).ToArray();
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offset += num_bytes;
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for (int i = 0; i < arr.Length; i++)
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arr[i] ^= (byte)xk.Next();
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return new SCBlock(key, type, arr);
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}
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}
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}
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[Conditional("DEBUG")]
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private static void EnsureArrayIsSane(SCTypeCode sub, ReadOnlySpan<byte> arr)
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{
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if (sub == SCTypeCode.Bool3)
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Debug.Assert(arr.IndexOfAnyExcept<byte>(0, 1, 2) == -1);
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else
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Debug.Assert(sub > SCTypeCode.Array);
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}
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/// <summary>
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/// Merges the properties from <see cref="other"/> into this object.
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/// </summary>
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/// <param name="other">Block to copy all values from.</param>
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public void CopyFrom(SCBlock other)
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{
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if (Type.IsBoolean())
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ChangeBooleanType(other.Type);
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else
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ChangeData(other.Data);
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}
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}
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