mirror of
https://github.com/kwsch/PKHeX
synced 2024-11-28 06:50:23 +00:00
28547b00f7
Move into the object.
327 lines
13 KiB
C#
327 lines
13 KiB
C#
using System;
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using System.Linq;
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using System.Text;
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namespace PKHeX
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{
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public enum GameVersion
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{
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Invalid = -2,
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Any = -1,
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Unknown = 0,
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S = 1, R = 2, E = 3, FR = 4, LG = 5, CXD = 15,
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D = 10, P = 11, Pt = 12, HG = 7, SS = 8,
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W = 20, B = 21, W2 = 22, B2 = 23,
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X = 24, Y = 25, AS = 26, OR = 27,
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SN = 28, MN = 29,
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// Game Groupings (SaveFile type)
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RS = 100,
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FRLG = 101,
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DP = 102,
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HGSS = 103,
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BW = 104,
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B2W2 = 105,
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XY = 106,
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ORASDEMO = 107,
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ORAS = 108,
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SM = 109,
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}
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public static class SaveUtil
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{
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internal const int BEEF = 0x42454546;
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internal const int SIZE_G6XY = 0x65600;
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internal const int SIZE_G6ORAS = 0x76000;
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internal const int SIZE_G6ORASDEMO = 0x5A00;
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internal const int SIZE_G5RAW = 0x80000;
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internal const int SIZE_G5BW = 0x24000;
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internal const int SIZE_G5B2W2 = 0x26000;
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internal const int SIZE_G4RAW = 0x80000;
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internal const int SIZE_G3RAW = 0x20000;
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internal const int SIZE_G3RAWHALF = 0x10000;
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internal static readonly byte[] FOOTER_DSV = Encoding.ASCII.GetBytes("|-DESMUME SAVE-|");
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/// <summary>Determines the generation of the given save data.</summary>
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/// <param name="data">Save data of which to determine the generation</param>
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/// <returns>Version Identifier or Invalid if type cannot be determined.</returns>
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public static int getSAVGeneration(byte[] data)
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{
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if (getIsG3SAV(data) != GameVersion.Invalid)
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return 3;
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if (getIsG4SAV(data) != GameVersion.Invalid)
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return 4;
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if (getIsG5SAV(data) != GameVersion.Invalid)
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return 5;
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if (getIsG6SAV(data) != GameVersion.Invalid)
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return 6;
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return -1;
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}
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/// <summary>Determines the type of 3th gen save</summary>
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/// <param name="data">Save data of which to determine the type</param>
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/// <returns>Version Identifier or Invalid if type cannot be determined.</returns>
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public static GameVersion getIsG3SAV(byte[] data)
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{
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if (data.Length != SIZE_G3RAW && data.Length != SIZE_G3RAWHALF)
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return GameVersion.Invalid;
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int[] BlockOrder = new int[14];
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for (int i = 0; i < 14; i++)
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BlockOrder[i] = BitConverter.ToInt16(data, i * 0x1000 + 0xFF4);
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if (BlockOrder.Any(i => i > 0xD || i < 0))
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return GameVersion.Invalid;
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// Detect RS/E/FRLG
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// Section 0 stores Game Code @ 0x00AC; 0 for RS, 1 for FRLG, else for Emerald
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uint GameCode = BitConverter.ToUInt32(data, Array.IndexOf(BlockOrder, 0) * 0x1000 + 0xAC);
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switch (GameCode)
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{
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case 0: return GameVersion.RS;
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case 1: return GameVersion.FRLG;
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default: return GameVersion.E;
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}
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}
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/// <summary>Determines the type of 4th gen save</summary>
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/// <param name="data">Save data of which to determine the type</param>
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/// <returns>Version Identifier or Invalid if type cannot be determined.</returns>
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public static GameVersion getIsG4SAV(byte[] data)
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{
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if (data.Length != SIZE_G4RAW)
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return GameVersion.Invalid;
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// General Block Checksum
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if (BitConverter.ToUInt16(data, 0xC0FE) == ccitt16(data.Take(0xC0EC).ToArray()))
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return GameVersion.DP;
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if (BitConverter.ToUInt16(data, 0xCF2A) == ccitt16(data.Take(0xCF18).ToArray()))
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return GameVersion.Pt;
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if (BitConverter.ToUInt16(data, 0xF626) == ccitt16(data.Take(0xF618).ToArray()))
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return GameVersion.HGSS;
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// General Block Checksum is invalid, check for block identifiers
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if (data.Skip(0xC0F4).Take(10).SequenceEqual(new byte[] { 0x00, 0xC1, 0x00, 0x00, 0x23, 0x06, 0x06, 0x20, 0x00, 0x00 }))
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return GameVersion.DP;
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if (data.Skip(0xCF20).Take(10).SequenceEqual(new byte[] { 0x2C, 0xCF, 0x00, 0x00, 0x23, 0x06, 0x06, 0x20, 0x00, 0x00 }))
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return GameVersion.Pt;
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if (data.Skip(0xF61C).Take(10).SequenceEqual(new byte[] { 0x28, 0xF6, 0x00, 0x00, 0x23, 0x06, 0x06, 0x20, 0x00, 0x00 }))
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return GameVersion.HGSS;
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return GameVersion.Invalid;
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}
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/// <summary>Determines the type of 5th gen save</summary>
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/// <param name="data">Save data of which to determine the type</param>
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/// <returns>Version Identifier or Invalid if type cannot be determined.</returns>
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public static GameVersion getIsG5SAV(byte[] data)
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{
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if (data.Length != SIZE_G5RAW)
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return GameVersion.Invalid;
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ushort chk1 = BitConverter.ToUInt16(data, SIZE_G5BW - 0x100 + 0x8C + 0xE);
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ushort actual1 = ccitt16(data.Skip(SIZE_G5BW - 0x100).Take(0x8C).ToArray());
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if (chk1 == actual1)
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return GameVersion.BW;
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ushort chk2 = BitConverter.ToUInt16(data, SIZE_G5B2W2 - 0x100 + 0x94 + 0xE);
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ushort actual2 = ccitt16(data.Skip(SIZE_G5B2W2 - 0x100).Take(0x94).ToArray());
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if (chk2 == actual2)
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return GameVersion.B2W2;
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return GameVersion.Invalid;
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}
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/// <summary>Determines the type of 6th gen save</summary>
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/// <param name="data">Save data of which to determine the type</param>
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/// <returns>Version Identifier or Invalid if type cannot be determined.</returns>
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public static GameVersion getIsG6SAV(byte[] data)
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{
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if (!SizeValidSAV6(data.Length))
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return GameVersion.Invalid;
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if (BitConverter.ToUInt32(data, data.Length - 0x1F0) != BEEF)
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return GameVersion.Invalid;
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switch (data.Length)
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{
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case SIZE_G6XY:
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return GameVersion.XY;
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case SIZE_G6ORASDEMO:
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return GameVersion.ORASDEMO;
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case SIZE_G6ORAS:
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return GameVersion.ORAS;
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}
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return GameVersion.Invalid;
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}
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/// <summary>Creates an instance of a SaveFile using the given save data.</summary>
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/// <param name="data">Save data from which to create a SaveFile.</param>
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/// <returns>An appropriate type of save file for the given data, or null if the save data is invalid.</returns>
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public static SaveFile getVariantSAV(byte[] data)
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{
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switch (getSAVGeneration(data))
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{
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case 3:
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return new SAV3(data);
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case 4:
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return new SAV4(data);
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case 5:
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return new SAV5(data);
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case 6:
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return new SAV6(data);
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default:
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return null;
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}
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}
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/// <summary>
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/// Determines whether the save data size is valid for 6th generation saves.
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/// </summary>
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/// <param name="size">Size in bytes of the save data</param>
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/// <returns>A boolean indicating whether or not the save data size is valid.</returns>
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public static bool SizeValidSAV6(int size)
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{
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switch (size)
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{
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case SIZE_G6XY:
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case SIZE_G6ORASDEMO:
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case SIZE_G6ORAS:
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return true;
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}
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return false;
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}
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// SAV Manipulation
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/// <summary>Calculates the CRC16-CCITT checksum over an input byte array.</summary>
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/// <param name="data">Input byte array</param>
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/// <returns>Checksum</returns>
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public static ushort ccitt16(byte[] data)
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{
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const ushort init = 0xFFFF;
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const ushort poly = 0x1021;
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ushort crc = init;
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foreach (byte b in data)
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{
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crc ^= (ushort)(b << 8);
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for (int j = 0; j < 8; j++)
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{
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bool flag = (crc & 0x8000) > 0;
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crc <<= 1;
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if (flag)
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crc ^= poly;
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}
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}
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return crc;
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}
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/// <summary>Calculates the 32bit checksum over an input byte array. Used in GBA save files.</summary>
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/// <param name="data">Input byte array</param>
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/// <returns>Checksum</returns>
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internal static ushort check32(byte[] data)
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{
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uint val = 0;
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for (int i = 0; i < data.Length; i += 4)
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val += BitConverter.ToUInt32(data, i);
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return (ushort)(val + val >> 16);
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}
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public static int getDexFormIndexXY(int species, int formct)
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{
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if (formct < 1 || species < 0)
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return -1; // invalid
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switch (species)
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{
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case 201: return 000; // 28 Unown
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case 386: return 028; // 4 Deoxys
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case 492: return 032; // 2 Shaymin
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case 487: return 034; // 2 Giratina
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case 479: return 036; // 6 Rotom
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case 422: return 042; // 2 Shellos
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case 423: return 044; // 2 Gastrodon
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case 412: return 046; // 3 Burmy
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case 413: return 049; // 3 Wormadam
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case 351: return 052; // 4 Castform
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case 421: return 056; // 2 Cherrim
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case 585: return 058; // 4 Deerling
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case 586: return 062; // 4 Sawsbuck
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case 648: return 066; // 2 Meloetta
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case 555: return 068; // 2 Darmanitan
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case 550: return 070; // 2 Basculin
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case 646: return 072; // 3 Kyurem
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case 647: return 075; // 2 Keldeo
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case 642: return 077; // 2 Thundurus
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case 641: return 079; // 2 Tornadus
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case 645: return 081; // 2 Landorus
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case 666: return 083; // 20 Vivillion
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case 669: return 103; // 5 Flabébé
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case 670: return 108; // 6 Floette
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case 671: return 114; // 5 Florges
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case 710: return 119; // 4 Pumpkaboo
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case 711: return 123; // 4 Gourgeist
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case 681: return 127; // 2 Aegislash
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case 716: return 129; // 2 Xerneas
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case 003: return 131; // 2 Venusaur
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case 006: return 133; // 3 Charizard
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case 009: return 136; // 2 Blastoise
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case 065: return 138; // 2 Alakazam
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case 094: return 140; // 2 Gengar
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case 115: return 142; // 2 Kangaskhan
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case 127: return 144; // 2 Pinsir
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case 130: return 146; // 2 Gyarados
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case 142: return 148; // 2 Aerodactyl
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case 150: return 150; // 3 Mewtwo
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case 181: return 153; // 2 Ampharos
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case 212: return 155; // 2 Scizor
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case 214: return 157; // 2 Heracros
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case 229: return 159; // 2 Houndoom
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case 248: return 161; // 2 Tyranitar
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case 257: return 163; // 2 Blaziken
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case 282: return 165; // 2 Gardevoir
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case 303: return 167; // 2 Mawile
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case 306: return 169; // 2 Aggron
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case 308: return 171; // 2 Medicham
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case 310: return 173; // 2 Manetric
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case 354: return 175; // 2 Banette
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case 359: return 177; // 2 Absol
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case 380: return 179; // 2 Latias
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case 381: return 181; // 2 Latios
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case 445: return 183; // 2 Garchomp
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case 448: return 185; // 2 Lucario
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case 460: return 187; // 2 Abomasnow
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default: return -1;
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}
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}
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public static int getDexFormIndexORAS(int species, int formct)
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{
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if (formct < 1 || species < 0)
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return -1; // invalid
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switch (species)
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{
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case 025: return 189; // 7 Pikachu
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case 720: return 196; // 2 Hoopa
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case 015: return 198; // 2 Beedrill
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case 018: return 200; // 2 Pidgeot
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case 080: return 202; // 2 Slowbro
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case 208: return 204; // 2 Steelix
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case 254: return 206; // 2 Sceptile
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case 360: return 208; // 2 Swampert
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case 302: return 210; // 2 Sableye
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case 319: return 212; // 2 Sharpedo
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case 323: return 214; // 2 Camerupt
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case 334: return 216; // 2 Altaria
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case 362: return 218; // 2 Glalie
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case 373: return 220; // 2 Salamence
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case 376: return 222; // 2 Metagross
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case 384: return 224; // 2 Rayquaza
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case 428: return 226; // 2 Lopunny
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case 475: return 228; // 2 Gallade
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case 531: return 230; // 2 Audino
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case 719: return 232; // 2 Diancie
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case 382: return 234; // 2 Kyogre
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case 383: return 236; // 2 Groudon
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case 493: return 238; // 18 Arceus
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case 649: return 256; // 5 Genesect
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case 676: return 261; // 10 Furfrou
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default: return getDexFormIndexXY(species, formct);
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}
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}
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}
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}
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