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Nero's MMD World VIP and 18+ Code

Scheduled Pinned Locked Moved Unsolved Worlds
codemmd
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  • SkeebooS
    SkeebooS
    Skeeboo
    wrote on last edited by
    #167

    I believe in y'all o7

    i don't "trade" models. trading is stupid.
    share with everyone or shut the hell up.

    1 Reply Last reply
    1
    • L
      L
      Layui
      wrote on last edited by
      #168

      someone is selling the codes on discord already so it's possible.
      only the persistence does not work so you need to put the code always in.

      1 Reply Last reply
      0
      • LucianL Lucian

        @Worcestershire yeah, i am currently working on getting a better outcome on the script.

        So far, I am getting the exact code within vrchat, but unable to replicate it within python env.

        So I got an idea, I am going to use the file structures instead so it will utilize the udonsharp code directly.

        it might take a few days

        WorcestershireW
        WorcestershireW
        Worcestershire
        wrote on last edited by
        #169

        @Lucian Any progress? couldn't get my python script to work so I gave up.

        1 Reply Last reply
        0
        • R
          R
          RedCob
          wrote on last edited by RedCob
          #170

          I'm suspecting that they're using a nonstandard SHA256-UTF8 implementation. @Lucian Is there a way for you to obtain the Udon implementation of the hashing algorithm?

          WorcestershireW 1 Reply Last reply
          1
          • R RedCob

            I'm suspecting that they're using a nonstandard SHA256-UTF8 implementation. @Lucian Is there a way for you to obtain the Udon implementation of the hashing algorithm?

            WorcestershireW
            WorcestershireW
            Worcestershire
            wrote on last edited by
            #171

            @RedCob If my reading of the code @Lucian pasted here is correct they're using the vrchat-udon-hashlib. Both call the lib using "_hashLibrary".

            Here's the code of the hashing it uses if it's of any help:

            // -*- coding: utf-8 -*-
            /*
            MIT License
            
            Copyright (c) 2021-present Devon (Gorialis) R
            
            Permission is hereby granted, free of charge, to any person obtaining a copy
            of this software and associated documentation files (the "Software"), to deal
            in the Software without restriction, including without limitation the rights
            to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
            copies of the Software, and to permit persons to whom the Software is
            furnished to do so, subject to the following conditions:
            
            The above copyright notice and this permission notice shall be included in all
            copies or substantial portions of the Software.
            
            THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
            IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
            FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
            AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
            LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
            OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
            SOFTWARE.
            
            */
            
            using System;
            using System.Linq;
            using UnityEngine;
            using UdonSharp;
            
            #if !COMPILER_UDONSHARP && UNITY_EDITOR
            using UnityEditor;
            using UdonSharpEditor;
            #endif
            
            
            public class UdonHashLib : UdonSharpBehaviour
            {
                // Udon does not support UTF-8 or expose System.Text.Encoding so we must implement this ourselves
                private byte[] ToUTF8(char[] characters)
                {
                    byte[] buffer = new byte[characters.Length * 4];
            
                    int writeIndex = 0;
                    for (int i = 0; i < characters.Length; i++)
                    {
                        uint character = characters[i];
            
                        if (character < 0x80)
                        {
                            buffer[writeIndex++] = (byte)character;
                        } else if (character < 0x800)
                        {
                            buffer[writeIndex++] = (byte)(0b11000000 | ((character >> 6) & 0b11111));
                            buffer[writeIndex++] = (byte)(0b10000000 | (character & 0b111111));
                        } else if (character < 0x10000)
                        {
                            buffer[writeIndex++] = (byte)(0b11100000 | ((character >> 12) & 0b1111));
                            buffer[writeIndex++] = (byte)(0b10000000 | ((character >> 6) & 0b111111));
                            buffer[writeIndex++] = (byte)(0b10000000 | (character & 0b111111));
                        } else
                        {
                            buffer[writeIndex++] = (byte)(0b11110000 | ((character >> 18) & 0b111));
                            buffer[writeIndex++] = (byte)(0b10000000 | ((character >> 12) & 0b111111));
                            buffer[writeIndex++] = (byte)(0b10000000 | ((character >> 6) & 0b111111));
                            buffer[writeIndex++] = (byte)(0b10000000 | (character & 0b111111));
                        }
                    }
            
                    // We do this to truncate off the end of the array
                    // This would be a lot easier with Array.Resize, but Udon once again does not allow access to it.
                    byte[] output = new byte[writeIndex];
            
                    for (int i = 0; i < writeIndex; i++)
                        output[i] = buffer[i];
            
                    return output;
                }
            
                /*  MD5  */
            
                private readonly ulong[] md5_init =
                {
                    0x67452301, 0xefcdab89, 0x98badcfe, 0x10325476,
                };
            
                private readonly ulong[] md5_constants = {
                    0xd76aa478, 0xe8c7b756, 0x242070db, 0xc1bdceee, 0xf57c0faf, 0x4787c62a, 0xa8304613, 0xfd469501,
                    0x698098d8, 0x8b44f7af, 0xffff5bb1, 0x895cd7be, 0x6b901122, 0xfd987193, 0xa679438e, 0x49b40821,
                    0xf61e2562, 0xc040b340, 0x265e5a51, 0xe9b6c7aa, 0xd62f105d, 0x02441453, 0xd8a1e681, 0xe7d3fbc8,
                    0x21e1cde6, 0xc33707d6, 0xf4d50d87, 0x455a14ed, 0xa9e3e905, 0xfcefa3f8, 0x676f02d9, 0x8d2a4c8a,
                    0xfffa3942, 0x8771f681, 0x6d9d6122, 0xfde5380c, 0xa4beea44, 0x4bdecfa9, 0xf6bb4b60, 0xbebfbc70,
                    0x289b7ec6, 0xeaa127fa, 0xd4ef3085, 0x04881d05, 0xd9d4d039, 0xe6db99e5, 0x1fa27cf8, 0xc4ac5665,
                    0xf4292244, 0x432aff97, 0xab9423a7, 0xfc93a039, 0x655b59c3, 0x8f0ccc92, 0xffeff47d, 0x85845dd1,
                    0x6fa87e4f, 0xfe2ce6e0, 0xa3014314, 0x4e0811a1, 0xf7537e82, 0xbd3af235, 0x2ad7d2bb, 0xeb86d391,
                };
            
                private readonly int[] md5_shifts =
                {
                    7, 12, 17, 22,  7, 12, 17, 22,  7, 12, 17, 22,  7, 12, 17, 22,
                    5,  9, 14, 20,  5,  9, 14, 20,  5,  9, 14, 20,  5,  9, 14, 20,
                    4, 11, 16, 23,  4, 11, 16, 23,  4, 11, 16, 23,  4, 11, 16, 23,
                    6, 10, 15, 21,  6, 10, 15, 21,  6, 10, 15, 21,  6, 10, 15, 21,
                };
            
                private string MD5_Core(byte[] payload_bytes, ulong[] init, ulong[] constants, int[] shifts, ulong size_mask, int word_size, int chunk_modulo, int appended_length, int round_count, string output_format, int output_segments)
                {
                    int word_bytes = word_size / 8;
            
                    // Working variables a0->d0
                    ulong[] working_variables = new ulong[4];
                    init.CopyTo(working_variables, 0);
            
                    byte[] input = new byte[chunk_modulo];
                    ulong[] message_schedule = new ulong[16];
            
                    // Each 64-byte/512-bit chunk
                    // 64 bits/8 bytes are required at the end for the bit size
                    for (int chunk_index = 0; chunk_index < payload_bytes.Length + appended_length + 1; chunk_index += chunk_modulo)
                    {
                        int chunk_size = Mathf.Min(chunk_modulo, payload_bytes.Length - chunk_index);
                        int schedule_index = 0;
            
                        // Buffer message
                        for (; schedule_index < chunk_size; ++schedule_index)
                            input[schedule_index] = payload_bytes[chunk_index + schedule_index];
                        // Append a 1-bit if not an even chunk
                        if (schedule_index < chunk_modulo && chunk_size >= 0)
                            input[schedule_index++] = 0b10000000;
                        // Pad with zeros until the end
                        for (; schedule_index < chunk_modulo; ++schedule_index)
                            input[schedule_index] = 0x00;
                        // If the chunk is less than 56 bytes, this will be the final chunk containing the data size in bits
                        if (chunk_size < chunk_modulo - appended_length)
                        {
                            ulong bit_size = (ulong)payload_bytes.Length * 8ul;
                            input[chunk_modulo - 8] = Convert.ToByte((bit_size >> 0x00) & 0xFFul);
                            input[chunk_modulo - 7] = Convert.ToByte((bit_size >> 0x08) & 0xFFul);
                            input[chunk_modulo - 6] = Convert.ToByte((bit_size >> 0x10) & 0xFFul);
                            input[chunk_modulo - 5] = Convert.ToByte((bit_size >> 0x18) & 0xFFul);
                            input[chunk_modulo - 4] = Convert.ToByte((bit_size >> 0x20) & 0xFFul);
                            input[chunk_modulo - 3] = Convert.ToByte((bit_size >> 0x28) & 0xFFul);
                            input[chunk_modulo - 2] = Convert.ToByte((bit_size >> 0x30) & 0xFFul);
                            input[chunk_modulo - 1] = Convert.ToByte((bit_size >> 0x38) & 0xFFul);
                        }
            
                        // Copy into w[0..15]
                        int copy_index = 0;
                        for (; copy_index < 16; copy_index++)
                        {
                            message_schedule[copy_index] = 0ul;
                            for (int i = 0; i < word_bytes; i++)
                            {
                                message_schedule[copy_index] = message_schedule[copy_index] | ((ulong)input[(copy_index * word_bytes) + i] << (i * 8));
                            }
            
                            message_schedule[copy_index] = message_schedule[copy_index] & size_mask;
                        }
            
                        // temp vars
                        ulong f, g;
                        // work is equivalent to A, B, C, D
                        // This copies work from a0, b0, c0, d0
                        ulong[] work = new ulong[4];
                        working_variables.CopyTo(work, 0);
            
                        // Compression function main loop
                        for (copy_index = 0; copy_index < round_count; copy_index++)
                        {
                            if (copy_index < 16)
                            {
                                f = ((work[1] & work[2]) | ((size_mask ^ work[1]) & work[3])) & size_mask;
                                g = (ulong)copy_index;
                            } else if (copy_index < 32)
                            {
                                f = ((work[3] & work[1]) | ((size_mask ^ work[3]) & work[2])) & size_mask;
                                g = (ulong)(((5 * copy_index) + 1) % 16);
                            } else if (copy_index < 48)
                            {
                                f = work[1] ^ work[2] ^ work[3];
                                g = (ulong)(((3 * copy_index) + 5) % 16);
                            } else
                            {
                                f = (work[2] ^ (work[1] | (size_mask ^ work[3]))) & size_mask;
                                g = (ulong)(7 * copy_index % 16);
                            }
            
                            f = (f + work[0] + constants[copy_index] + message_schedule[g]) & size_mask;
                            work[0] = work[3];
                            work[3] = work[2];
                            work[2] = work[1];
                            work[1] = (work[1] + ((f << shifts[copy_index]) | (f >> word_size - shifts[copy_index]))) & size_mask;
                        }
            
                        for (copy_index = 0; copy_index < 4; copy_index++)
                            working_variables[copy_index] = (working_variables[copy_index] + work[copy_index]) & size_mask;
                    }
            
                    // Finalization
                    string output = "";
            
                    for (int character_index = 0; character_index < output_segments; character_index++)
                    {
                        ulong value = working_variables[character_index];
                        output += string.Format(output_format,
                            ((value & 0x000000FFul) << 0x18) |
                            ((value & 0x0000FF00ul) << 0x08) |
                            ((value & 0x00FF0000ul) >> 0x08) |
                            ((value & 0xFF000000ul) >> 0x18)
                        );
                    }
            
                    return output;
                }
            
                public string MD5_Bytes(byte[] data)
                {
                    return MD5_Core(data, md5_init, md5_constants, md5_shifts, 0xFFFFFFFFul, 32, 64, 8, 64, "{0:x8}", 4);
                }
            
                public string MD5_UTF8(string text)
                {
                    return MD5_Core(ToUTF8(text.ToCharArray()), md5_init, md5_constants, md5_shifts, 0xFFFFFFFFul, 32, 64, 8, 64, "{0:x8}", 4);
                }
            
                /*  SHA1  */
            
                private readonly ulong[] sha1_init = {
                    0x67452301, 0xefcdab89, 0x98badcfe, 0x10325476, 0xc3d2e1f0,
                };
            
                private string SHA1_Core(byte[] payload_bytes, ulong[] init, ulong size_mask, int word_size, int chunk_modulo, int appended_length, int left_rotations, int round_count, string output_format, int output_segments)
                {
                    int word_bytes = word_size / 8;
            
                    // Working variables h0->h4
                    ulong[] working_variables = new ulong[5];
                    init.CopyTo(working_variables, 0);
            
                    byte[] input = new byte[chunk_modulo];
                    ulong[] message_schedule = new ulong[round_count];
            
                    // Each 64-byte/512-bit chunk
                    // 64 bits/8 bytes are required at the end for the bit size
                    for (int chunk_index = 0; chunk_index < payload_bytes.Length + appended_length + 1; chunk_index += chunk_modulo)
                    {
                        int chunk_size = Mathf.Min(chunk_modulo, payload_bytes.Length - chunk_index);
                        int schedule_index = 0;
            
                        // Buffer message
                        for (; schedule_index < chunk_size; ++schedule_index)
                            input[schedule_index] = payload_bytes[chunk_index + schedule_index];
                        // Append a 1-bit if not an even chunk
                        if (schedule_index < chunk_modulo && chunk_size >= 0)
                            input[schedule_index++] = 0b10000000;
                        // Pad with zeros until the end
                        for (; schedule_index < chunk_modulo; ++schedule_index)
                            input[schedule_index] = 0x00;
                        // If the chunk is less than 56 bytes, this will be the final chunk containing the data size in bits
                        if (chunk_size < chunk_modulo - appended_length)
                        {
                            ulong bit_size = (ulong)payload_bytes.Length * 8ul;
                            input[chunk_modulo - 1] = Convert.ToByte((bit_size >> 0x00) & 0xFFul);
                            input[chunk_modulo - 2] = Convert.ToByte((bit_size >> 0x08) & 0xFFul);
                            input[chunk_modulo - 3] = Convert.ToByte((bit_size >> 0x10) & 0xFFul);
                            input[chunk_modulo - 4] = Convert.ToByte((bit_size >> 0x18) & 0xFFul);
                            input[chunk_modulo - 5] = Convert.ToByte((bit_size >> 0x20) & 0xFFul);
                            input[chunk_modulo - 6] = Convert.ToByte((bit_size >> 0x28) & 0xFFul);
                            input[chunk_modulo - 7] = Convert.ToByte((bit_size >> 0x30) & 0xFFul);
                            input[chunk_modulo - 8] = Convert.ToByte((bit_size >> 0x38) & 0xFFul);
                        }
            
                        // Copy into w[0..15]
                        int copy_index = 0;
                        for (; copy_index < 16; copy_index++)
                        {
                            message_schedule[copy_index] = 0ul;
                            for (int i = 0; i < word_bytes; i++)
                            {
                                message_schedule[copy_index] = (message_schedule[copy_index] << 8) | input[(copy_index * word_bytes) + i];
                            }
            
                            message_schedule[copy_index] = message_schedule[copy_index] & size_mask;
                        }
                        // Extend
                        for (; copy_index < round_count; copy_index++)
                        {
                            ulong w = message_schedule[copy_index - 3] ^ message_schedule[copy_index - 8] ^ message_schedule[copy_index - 14] ^ message_schedule[copy_index - 16];
                            message_schedule[copy_index] = (
                                (w << left_rotations) | (w >> word_size - left_rotations)
                            ) & size_mask;
                        }
            
                        // temp vars
                        ulong temp, k, f;
                        // work is equivalent to a, b, c, d, e
                        // This copies work from h0, h1, h2, h3, h4
                        ulong[] work = new ulong[5];
                        working_variables.CopyTo(work, 0);
            
                        // Compression function main loop
                        for (copy_index = 0; copy_index < round_count; copy_index++)
                        {
                            if (copy_index < 20)
                            {
                                f = ((work[1] & work[2]) | ((size_mask ^ work[1]) & work[3])) & size_mask;
                                k = 0x5A827999;
                            } else if (copy_index < 40)
                            {
                                f = work[1] ^ work[2] ^ work[3];
                                k = 0x6ED9EBA1;
                            } else if (copy_index < 60)
                            {
                                f = (work[1] & work[2]) ^ (work[1] & work[3]) ^ (work[2] & work[3]);
                                k = 0x8F1BBCDC;
                            } else
                            {
                                f = work[1] ^ work[2] ^ work[3];
                                k = 0xCA62C1D6;
                            }
            
                            temp = (((work[0] << 5) | (work[0] >> word_size - 5)) + f + work[4] + k + message_schedule[copy_index]) & size_mask;
                            work[4] = work[3];
                            work[3] = work[2];
                            work[2] = ((work[1] << 30) | (work[1] >> word_size - 30)) & size_mask;
                            work[1] = work[0];
                            work[0] = temp;
                        }
            
                        for (copy_index = 0; copy_index < 5; copy_index++)
                            working_variables[copy_index] = (working_variables[copy_index] + work[copy_index]) & size_mask;
                    }
            
                    // Finalization
                    string output = "";
            
                    for (int character_index = 0; character_index < output_segments; character_index++)
                    {
                        output += string.Format(output_format, working_variables[character_index]);
                    }
            
                    return output;
                }
            
                /* SHA0 */
                /* This algorithm has had documented vulnerabilites since before its formal release. */
                /* Near to nothing uses it, and it should not be trusted for real applications under any circumstances */
                /* It is only here for completeness, and there may be bugs with it due to the difficulty of finding RFC-complying implementations to test against. */
                /*
                public string SHA0_Bytes(byte[] data)
                {
                    return SHA1_Core(data, sha1_init, 0xFFFFFFFFul, 32, 64, 8, 0, 80, "{0:x8}", 5);
                }
            
                public string SHA0_UTF8(string text)
                {
                    return SHA1_Core(ToUTF8(text.ToCharArray()), sha1_init, 0xFFFFFFFFul, 32, 64, 8, 0, 80, "{0:x8}", 5);
                }
                */
            
                /* SHA1 */
                public string SHA1_Bytes(byte[] data)
                {
                    return SHA1_Core(data, sha1_init, 0xFFFFFFFFul, 32, 64, 8, 1, 80, "{0:x8}", 5);
                }
            
                public string SHA1_UTF8(string text)
                {
                    return SHA1_Core(ToUTF8(text.ToCharArray()), sha1_init, 0xFFFFFFFFul, 32, 64, 8, 1, 80, "{0:x8}", 5);
                }
            
                /*  SHA2  */
            
                private readonly ulong[] sha224_init = {
                    0xc1059ed8, 0x367cd507, 0x3070dd17, 0xf70e5939, 0xffc00b31, 0x68581511, 0x64f98fa7, 0xbefa4fa4,
                };
            
                private readonly ulong[] sha256_init = {
                    0x6a09e667, 0xbb67ae85, 0x3c6ef372, 0xa54ff53a, 0x510e527f, 0x9b05688c, 0x1f83d9ab, 0x5be0cd19,
                };
            
                private readonly ulong[] sha256_constants = {
                    0x428a2f98, 0x71374491, 0xb5c0fbcf, 0xe9b5dba5, 0x3956c25b, 0x59f111f1, 0x923f82a4, 0xab1c5ed5,
                    0xd807aa98, 0x12835b01, 0x243185be, 0x550c7dc3, 0x72be5d74, 0x80deb1fe, 0x9bdc06a7, 0xc19bf174,
                    0xe49b69c1, 0xefbe4786, 0x0fc19dc6, 0x240ca1cc, 0x2de92c6f, 0x4a7484aa, 0x5cb0a9dc, 0x76f988da,
                    0x983e5152, 0xa831c66d, 0xb00327c8, 0xbf597fc7, 0xc6e00bf3, 0xd5a79147, 0x06ca6351, 0x14292967,
                    0x27b70a85, 0x2e1b2138, 0x4d2c6dfc, 0x53380d13, 0x650a7354, 0x766a0abb, 0x81c2c92e, 0x92722c85,
                    0xa2bfe8a1, 0xa81a664b, 0xc24b8b70, 0xc76c51a3, 0xd192e819, 0xd6990624, 0xf40e3585, 0x106aa070,
                    0x19a4c116, 0x1e376c08, 0x2748774c, 0x34b0bcb5, 0x391c0cb3, 0x4ed8aa4a, 0x5b9cca4f, 0x682e6ff3,
                    0x748f82ee, 0x78a5636f, 0x84c87814, 0x8cc70208, 0x90befffa, 0xa4506ceb, 0xbef9a3f7, 0xc67178f2,
                };
            
                private readonly int[] sha256_sums =
                {
                    7, 18, 3,  // s0
                    17, 19, 10,  // s1
                };
            
                private readonly int[] sha256_sigmas =
                {
                    2, 13, 22,  // S0
                    6, 11, 25,  // S1
                };
            
                private readonly ulong[] sha384_init = {
                    0xcbbb9d5dc1059ed8, 0x629a292a367cd507, 0x9159015a3070dd17, 0x152fecd8f70e5939, 0x67332667ffc00b31,
                    0x8eb44a8768581511, 0xdb0c2e0d64f98fa7, 0x47b5481dbefa4fa4,
                };
            
                private readonly ulong[] sha512_init = {
                    0x6a09e667f3bcc908, 0xbb67ae8584caa73b, 0x3c6ef372fe94f82b, 0xa54ff53a5f1d36f1, 0x510e527fade682d1,
                    0x9b05688c2b3e6c1f, 0x1f83d9abfb41bd6b, 0x5be0cd19137e2179,
                };
            
                private readonly ulong[] sha512_constants = {
                    0x428a2f98d728ae22, 0x7137449123ef65cd, 0xb5c0fbcfec4d3b2f, 0xe9b5dba58189dbbc, 0x3956c25bf348b538,
                    0x59f111f1b605d019, 0x923f82a4af194f9b, 0xab1c5ed5da6d8118, 0xd807aa98a3030242, 0x12835b0145706fbe,
                    0x243185be4ee4b28c, 0x550c7dc3d5ffb4e2, 0x72be5d74f27b896f, 0x80deb1fe3b1696b1, 0x9bdc06a725c71235,
                    0xc19bf174cf692694, 0xe49b69c19ef14ad2, 0xefbe4786384f25e3, 0x0fc19dc68b8cd5b5, 0x240ca1cc77ac9c65,
                    0x2de92c6f592b0275, 0x4a7484aa6ea6e483, 0x5cb0a9dcbd41fbd4, 0x76f988da831153b5, 0x983e5152ee66dfab,
                    0xa831c66d2db43210, 0xb00327c898fb213f, 0xbf597fc7beef0ee4, 0xc6e00bf33da88fc2, 0xd5a79147930aa725,
                    0x06ca6351e003826f, 0x142929670a0e6e70, 0x27b70a8546d22ffc, 0x2e1b21385c26c926, 0x4d2c6dfc5ac42aed,
                    0x53380d139d95b3df, 0x650a73548baf63de, 0x766a0abb3c77b2a8, 0x81c2c92e47edaee6, 0x92722c851482353b,
                    0xa2bfe8a14cf10364, 0xa81a664bbc423001, 0xc24b8b70d0f89791, 0xc76c51a30654be30, 0xd192e819d6ef5218,
                    0xd69906245565a910, 0xf40e35855771202a, 0x106aa07032bbd1b8, 0x19a4c116b8d2d0c8, 0x1e376c085141ab53,
                    0x2748774cdf8eeb99, 0x34b0bcb5e19b48a8, 0x391c0cb3c5c95a63, 0x4ed8aa4ae3418acb, 0x5b9cca4f7763e373,
                    0x682e6ff3d6b2b8a3, 0x748f82ee5defb2fc, 0x78a5636f43172f60, 0x84c87814a1f0ab72, 0x8cc702081a6439ec,
                    0x90befffa23631e28, 0xa4506cebde82bde9, 0xbef9a3f7b2c67915, 0xc67178f2e372532b, 0xca273eceea26619c,
                    0xd186b8c721c0c207, 0xeada7dd6cde0eb1e, 0xf57d4f7fee6ed178, 0x06f067aa72176fba, 0x0a637dc5a2c898a6,
                    0x113f9804bef90dae, 0x1b710b35131c471b, 0x28db77f523047d84, 0x32caab7b40c72493, 0x3c9ebe0a15c9bebc,
                    0x431d67c49c100d4c, 0x4cc5d4becb3e42b6, 0x597f299cfc657e2a, 0x5fcb6fab3ad6faec, 0x6c44198c4a475817,
                };
            
                private readonly int[] sha512_sums =
                {
                    1, 8, 7,  // s0
                    19, 61, 6,  // s1
                };
            
                private readonly int[] sha512_sigmas =
                {
                    28, 34, 39,  // S0
                    14, 18, 41,  // S1
                };
            
                private string SHA2_Core(byte[] payload_bytes, ulong[] init, ulong[] constants, int[] sums, int[] sigmas, ulong size_mask, int word_size, int chunk_modulo, int appended_length, int round_count, string output_format, int output_segments)
                {
                    int word_bytes = word_size / 8;
            
                    // Working variables h0->h7
                    ulong[] working_variables = new ulong[8];
                    init.CopyTo(working_variables, 0);
            
                    byte[] input = new byte[chunk_modulo];
                    ulong[] message_schedule = new ulong[round_count];
            
                    // Each 64-byte/512-bit chunk
                    // 64 bits/8 bytes are required at the end for the bit size
                    for (int chunk_index = 0; chunk_index < payload_bytes.Length + appended_length + 1; chunk_index += chunk_modulo) {
                        int chunk_size = Mathf.Min(chunk_modulo, payload_bytes.Length - chunk_index);
                        int schedule_index = 0;
            
                        // Buffer message
                        for (; schedule_index < chunk_size; ++schedule_index)
                            input[schedule_index] = payload_bytes[chunk_index + schedule_index];
                        // Append a 1-bit if not an even chunk
                        if (schedule_index < chunk_modulo && chunk_size >= 0)
                            input[schedule_index++] = 0b10000000;
                        // Pad with zeros until the end
                        for (; schedule_index < chunk_modulo; ++schedule_index)
                            input[schedule_index] = 0x00;
                        // If the chunk is less than 56 bytes, this will be the final chunk containing the data size in bits
                        if (chunk_size < chunk_modulo - appended_length) {
                            ulong bit_size = (ulong)payload_bytes.Length * 8ul;
                            input[chunk_modulo - 1] = Convert.ToByte((bit_size >> 0x00) & 0xFFul);
                            input[chunk_modulo - 2] = Convert.ToByte((bit_size >> 0x08) & 0xFFul);
                            input[chunk_modulo - 3] = Convert.ToByte((bit_size >> 0x10) & 0xFFul);
                            input[chunk_modulo - 4] = Convert.ToByte((bit_size >> 0x18) & 0xFFul);
                            input[chunk_modulo - 5] = Convert.ToByte((bit_size >> 0x20) & 0xFFul);
                            input[chunk_modulo - 6] = Convert.ToByte((bit_size >> 0x28) & 0xFFul);
                            input[chunk_modulo - 7] = Convert.ToByte((bit_size >> 0x30) & 0xFFul);
                            input[chunk_modulo - 8] = Convert.ToByte((bit_size >> 0x38) & 0xFFul);
                        }
            
                        // Copy into w[0..15]
                        int copy_index = 0;
                        for (; copy_index < 16; copy_index++)
                        {
                            message_schedule[copy_index] = 0ul;
                            for (int i = 0; i < word_bytes; i++)
                            {
                                message_schedule[copy_index] = (message_schedule[copy_index] << 8) | input[(copy_index * word_bytes) + i];
                            }
            
                            message_schedule[copy_index] = message_schedule[copy_index] & size_mask;
                        }
                        // Extend
                        for(; copy_index < round_count; copy_index++) {
                            ulong s0_read = message_schedule[copy_index - 15];
                            ulong s1_read = message_schedule[copy_index - 2];
            
                            message_schedule[copy_index] = (
                                message_schedule[copy_index - 16] +
                                (((s0_read >> sums[0]) | (s0_read << word_size - sums[0])) ^ ((s0_read >> sums[1]) | (s0_read << word_size - sums[1])) ^ (s0_read >> sums[2])) + // s0
                                message_schedule[copy_index - 7] +
                                (((s1_read >> sums[3]) | (s1_read << word_size - sums[3])) ^ ((s1_read >> sums[4]) | (s1_read << word_size - sums[4])) ^ (s1_read >> sums[5])) // s1
                            ) & size_mask;
                        }
            
                        // temp vars
                        ulong temp1, temp2;
                        // work is equivalent to a, b, c, d, e, f, g, h
                        // This copies work from h0, h1, h2, h3, h4, h5, h6, h7
                        ulong[] work = new ulong[8];
                        working_variables.CopyTo(work, 0);
            
                        // Compression function main loop
                        for (copy_index = 0; copy_index < round_count; copy_index++)
                        {
                            ulong ep1 = ((work[4] >> sigmas[3]) | (work[4] << word_size - sigmas[3])) ^ ((work[4] >> sigmas[4]) | (work[4] << word_size - sigmas[4])) ^ ((work[4] >> sigmas[5]) | (work[4] << word_size - sigmas[5]));
                            ulong ch = (work[4] & work[5]) ^ ((size_mask ^ work[4]) & work[6]);
                            ulong ep0 = ((work[0] >> sigmas[0]) | (work[0] << word_size - sigmas[0])) ^ ((work[0] >> sigmas[1]) | (work[0] << word_size - sigmas[1])) ^ ((work[0] >> sigmas[2]) | (work[0] << word_size - sigmas[2]));
                            ulong maj = (work[0] & work[1]) ^ (work[0] & work[2]) ^ (work[1] & work[2]);
                            temp1 = work[7] + ep1 + ch + constants[copy_index] + message_schedule[copy_index];
                            temp2 = ep0 + maj;
                            work[7] = work[6];
                            work[6] = work[5];
                            work[5] = work[4];
                            work[4] = (work[3] + temp1) & size_mask;
                            work[3] = work[2];
                            work[2] = work[1];
                            work[1] = work[0];
                            work[0] = (temp1 + temp2) & size_mask;
                        }
            
                        for (copy_index = 0; copy_index < 8; copy_index++)
                            working_variables[copy_index] = (working_variables[copy_index] + work[copy_index]) & size_mask;
                    }
            
                    // Finalization
                    string output = "";
            
                    for (int character_index = 0; character_index < output_segments; character_index++) {
                        output += string.Format(output_format, working_variables[character_index]);
                    }
            
                    return output;
                }
            
                /* SHA224 */
                public string SHA224_Bytes(byte[] data)
                {
                    return SHA2_Core(data, sha224_init, sha256_constants, sha256_sums, sha256_sigmas, 0xFFFFFFFFul, 32, 64, 8, 64, "{0:x8}", 7);
                }
            
                public string SHA224_UTF8(string text)
                {
                    return SHA2_Core(ToUTF8(text.ToCharArray()), sha224_init, sha256_constants, sha256_sums, sha256_sigmas, 0xFFFFFFFFul, 32, 64, 8, 64, "{0:x8}", 7);
                }
            
                /* SHA256 */
                public string SHA256_Bytes(byte[] data)
                {
                    return SHA2_Core(data, sha256_init, sha256_constants, sha256_sums, sha256_sigmas, 0xFFFFFFFFul, 32, 64, 8, 64, "{0:x8}", 8);
                }
            
                public string SHA256_UTF8(string text)
                {
                    return SHA2_Core(ToUTF8(text.ToCharArray()), sha256_init, sha256_constants, sha256_sums, sha256_sigmas, 0xFFFFFFFFul, 32, 64, 8, 64, "{0:x8}", 8);
                }
            
                /* SHA384 */
                public string SHA384_Bytes(byte[] data)
                {
                    return SHA2_Core(data, sha384_init, sha512_constants, sha512_sums, sha512_sigmas, 0xFFFFFFFFFFFFFFFFul, 64, 128, 16, 80, "{0:x16}", 6);
                }
            
                public string SHA384_UTF8(string text)
                {
                    return SHA2_Core(ToUTF8(text.ToCharArray()), sha384_init, sha512_constants, sha512_sums, sha512_sigmas, 0xFFFFFFFFFFFFFFFFul, 64, 128, 16, 80, "{0:x16}", 6);
                }
            
                /* SHA512 */
                public string SHA512_Bytes(byte[] data)
                {
                    return SHA2_Core(data, sha512_init, sha512_constants, sha512_sums, sha512_sigmas, 0xFFFFFFFFFFFFFFFFul, 64, 128, 16, 80, "{0:x16}", 8);
                }
            
                public string SHA512_UTF8(string text)
                {
                    return SHA2_Core(ToUTF8(text.ToCharArray()), sha512_init, sha512_constants, sha512_sums, sha512_sigmas, 0xFFFFFFFFFFFFFFFFul, 64, 128, 16, 80, "{0:x16}", 8);
                }
            }
            
            
            #if !COMPILER_UDONSHARP && UNITY_EDITOR
            
            [CustomEditor(typeof(UdonHashLib))]
            public class UdonHashLibEditor : Editor
            {
                private string inputString = "";
            
                public override void OnInspectorGUI()
                {
                    // Draws the default convert to UdonBehaviour button, program asset field, sync settings, etc.
                    if (UdonSharpGUI.DrawDefaultUdonSharpBehaviourHeader(target)) return;
            
                    UdonHashLib inspectorBehaviour = (UdonHashLib)target;
            
                    if (!EditorApplication.isPlaying)
                        EditorGUILayout.HelpBox("Enter play mode to run tests", MessageType.Info);
            
                    EditorGUI.BeginDisabledGroup(!EditorApplication.isPlaying);
            
                    // A simple string field modification with Undo handling
                    EditorGUILayout.LabelField("Input for hash");
                    inputString = EditorGUILayout.TextArea(inputString);
            
                    if (GUILayout.Button("Calculate hashes"))
                    {
            
                        CheckHash(inputString, true);
                    }
            
                    if (GUILayout.Button("Run test suite"))
                    {
                        int testBatch = 4096;
                        int testCount = 0, succeeded = 0;
            
                        System.Random random = new System.Random();
                        string chars = "0123456789abcdefghijklmnopqrstuvwxyzABCDEFGHIJKLMNOPQRSTUVWXYZ!\"#$%&\'()*+,-./:;<=>?@[\\]^_`{|}~\n";
                        string buffer = new string(Enumerable.Repeat(chars, testBatch).Select(s => s[random.Next(s.Length)]).ToArray());
            
                        Debug.Log($"Buffer generated for ASCII testing: {buffer}");
            
                        for (int i = 0; i < testBatch; i++)
                        {
                            string test = buffer.Substring(random.Next(buffer.Length - i), i);
            
                            testCount++;
                            if (CheckHash(test))
                                succeeded++;
                        }
            
                        // Japanese character (UTF-8) test
                        chars = "\u3042\u3044\u3046\u3048\u304a\u304b\u304d\u304f\u3051\u3053\u3055\u3057\u3059\u305b\u305d\u305f\u3061\u3064\u3066\u3068\u306a\u306b\u306c\u306d\u306e\u306f\u3072\u3075\u3078\u307b\u307e\u307f\u3080\u3081\u3082\u3084\u3086\u3088\u3089\u308a\u308b\u308c\u308d\u308f\u3090\u3091\u3092\u3093\u30a2\u30a4\u30a6\u30a8\u30aa\u30ab\u30ad\u30af\u30b1\u30b3\u30b5\u30b7\u30b9\u30bb\u30bd\u30bf\u30c1\u30c4\u30c6\u30c8\u30ca\u30cb\u30cc\u30cd\u30ce\u30cf\u30d2\u30d5\u30d8\u30db\u30de\u30df\u30e0\u30e1\u30e2\u30e4\u30e6\u30e8\u30e9\u30ea\u30eb\u30ec\u30ed\u30ef\u30f0\u30f1\u30f2\u30f3";
                        buffer = new string(Enumerable.Repeat(chars, testBatch).Select(s => s[random.Next(s.Length)]).ToArray());
            
                        Debug.Log($"Buffer generated for JPN/UTF-8 testing: {buffer}");
            
                        for (int i = 0; i < testBatch; i++)
                        {
                            string test = buffer.Substring(random.Next(buffer.Length - i), i);
            
                            testCount++;
                            if (CheckHash(test))
                                succeeded++;
                        }
            
                        EditorUtility.DisplayDialog("Results", $"{testCount} tests ran, {succeeded} succeeded in all hashes", "OK");
                    }
            
                    EditorGUI.EndDisabledGroup();
                }
            
                private bool CheckHash(string input, bool showDialog = false, bool showDialogWhenFailed = true)
                {
                    UdonHashLib inspectorBehaviour = (UdonHashLib)target;
            
                    string md5_udon = inspectorBehaviour.MD5_UTF8(input);
                    string sha1_udon = inspectorBehaviour.SHA1_UTF8(input);
                    string sha224_udon = inspectorBehaviour.SHA224_UTF8(input);
                    string sha256_udon = inspectorBehaviour.SHA256_UTF8(input);
                    string sha384_udon = inspectorBehaviour.SHA384_UTF8(input);
                    string sha512_udon = inspectorBehaviour.SHA512_UTF8(input);
            
                    string md5_csharp = GenerateNonUdon(input, System.Security.Cryptography.MD5.Create());
                    string sha1_csharp = GenerateNonUdon(input, System.Security.Cryptography.SHA1.Create());
                    string sha256_csharp = GenerateNonUdon(input, System.Security.Cryptography.SHA256.Create());
                    string sha384_csharp = GenerateNonUdon(input, System.Security.Cryptography.SHA384.Create());
                    string sha512_csharp = GenerateNonUdon(input, System.Security.Cryptography.SHA512.Create());
            
                    bool allPass = (
                        md5_udon == md5_csharp &&
                        sha1_udon == sha1_csharp &&
                        sha256_udon == sha256_csharp &&
                        sha384_udon == sha384_csharp &&
                        sha512_udon == sha512_csharp
                    );
            
                    if (showDialog || (!allPass && showDialogWhenFailed))
                        EditorUtility.DisplayDialog("Hashes", string.Join("\n", new string[] {
                            input,
                            "",
                            $"md5 [{(md5_udon == md5_csharp ? "PASS" : "FAIL")}]: {md5_udon}",
                            $"sha1 [{(sha1_udon == sha1_csharp ? "PASS" : "FAIL")}]: {sha1_udon}",
                            $"sha224: {sha224_udon}", // No system impl for this
                            $"sha256 [{(sha256_udon == sha256_csharp ? "PASS" : "FAIL")}]: {sha256_udon}",
                            $"sha384 [{(sha384_udon == sha384_csharp ? "PASS" : "FAIL")}]: {sha384_udon}",
                            $"sha512 [{(sha512_udon == sha512_csharp ? "PASS" : "FAIL")}]: {sha512_udon}",
                        }), "OK");
            
                    return allPass;
                }
            
                private string GenerateNonUdon(string input, System.Security.Cryptography.HashAlgorithm algorithm)
                {
                    using (var hash = algorithm)
                    {
                        var bytes = hash.ComputeHash(System.Text.Encoding.UTF8.GetBytes(input));
            
                        string output = "";
            
                        foreach (byte x in bytes)
                        {
                            output += string.Format("{0:x2}", x);
                        }
            
                        return output;
                    }
                }
            }
            #endif
            
            
            RoseVelvetteR 1 Reply Last reply
            1
            • WorcestershireW Worcestershire

              @RedCob If my reading of the code @Lucian pasted here is correct they're using the vrchat-udon-hashlib. Both call the lib using "_hashLibrary".

              Here's the code of the hashing it uses if it's of any help:

              // -*- coding: utf-8 -*-
              /*
              MIT License
              
              Copyright (c) 2021-present Devon (Gorialis) R
              
              Permission is hereby granted, free of charge, to any person obtaining a copy
              of this software and associated documentation files (the "Software"), to deal
              in the Software without restriction, including without limitation the rights
              to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
              copies of the Software, and to permit persons to whom the Software is
              furnished to do so, subject to the following conditions:
              
              The above copyright notice and this permission notice shall be included in all
              copies or substantial portions of the Software.
              
              THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
              IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
              FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
              AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
              LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
              OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
              SOFTWARE.
              
              */
              
              using System;
              using System.Linq;
              using UnityEngine;
              using UdonSharp;
              
              #if !COMPILER_UDONSHARP && UNITY_EDITOR
              using UnityEditor;
              using UdonSharpEditor;
              #endif
              
              
              public class UdonHashLib : UdonSharpBehaviour
              {
                  // Udon does not support UTF-8 or expose System.Text.Encoding so we must implement this ourselves
                  private byte[] ToUTF8(char[] characters)
                  {
                      byte[] buffer = new byte[characters.Length * 4];
              
                      int writeIndex = 0;
                      for (int i = 0; i < characters.Length; i++)
                      {
                          uint character = characters[i];
              
                          if (character < 0x80)
                          {
                              buffer[writeIndex++] = (byte)character;
                          } else if (character < 0x800)
                          {
                              buffer[writeIndex++] = (byte)(0b11000000 | ((character >> 6) & 0b11111));
                              buffer[writeIndex++] = (byte)(0b10000000 | (character & 0b111111));
                          } else if (character < 0x10000)
                          {
                              buffer[writeIndex++] = (byte)(0b11100000 | ((character >> 12) & 0b1111));
                              buffer[writeIndex++] = (byte)(0b10000000 | ((character >> 6) & 0b111111));
                              buffer[writeIndex++] = (byte)(0b10000000 | (character & 0b111111));
                          } else
                          {
                              buffer[writeIndex++] = (byte)(0b11110000 | ((character >> 18) & 0b111));
                              buffer[writeIndex++] = (byte)(0b10000000 | ((character >> 12) & 0b111111));
                              buffer[writeIndex++] = (byte)(0b10000000 | ((character >> 6) & 0b111111));
                              buffer[writeIndex++] = (byte)(0b10000000 | (character & 0b111111));
                          }
                      }
              
                      // We do this to truncate off the end of the array
                      // This would be a lot easier with Array.Resize, but Udon once again does not allow access to it.
                      byte[] output = new byte[writeIndex];
              
                      for (int i = 0; i < writeIndex; i++)
                          output[i] = buffer[i];
              
                      return output;
                  }
              
                  /*  MD5  */
              
                  private readonly ulong[] md5_init =
                  {
                      0x67452301, 0xefcdab89, 0x98badcfe, 0x10325476,
                  };
              
                  private readonly ulong[] md5_constants = {
                      0xd76aa478, 0xe8c7b756, 0x242070db, 0xc1bdceee, 0xf57c0faf, 0x4787c62a, 0xa8304613, 0xfd469501,
                      0x698098d8, 0x8b44f7af, 0xffff5bb1, 0x895cd7be, 0x6b901122, 0xfd987193, 0xa679438e, 0x49b40821,
                      0xf61e2562, 0xc040b340, 0x265e5a51, 0xe9b6c7aa, 0xd62f105d, 0x02441453, 0xd8a1e681, 0xe7d3fbc8,
                      0x21e1cde6, 0xc33707d6, 0xf4d50d87, 0x455a14ed, 0xa9e3e905, 0xfcefa3f8, 0x676f02d9, 0x8d2a4c8a,
                      0xfffa3942, 0x8771f681, 0x6d9d6122, 0xfde5380c, 0xa4beea44, 0x4bdecfa9, 0xf6bb4b60, 0xbebfbc70,
                      0x289b7ec6, 0xeaa127fa, 0xd4ef3085, 0x04881d05, 0xd9d4d039, 0xe6db99e5, 0x1fa27cf8, 0xc4ac5665,
                      0xf4292244, 0x432aff97, 0xab9423a7, 0xfc93a039, 0x655b59c3, 0x8f0ccc92, 0xffeff47d, 0x85845dd1,
                      0x6fa87e4f, 0xfe2ce6e0, 0xa3014314, 0x4e0811a1, 0xf7537e82, 0xbd3af235, 0x2ad7d2bb, 0xeb86d391,
                  };
              
                  private readonly int[] md5_shifts =
                  {
                      7, 12, 17, 22,  7, 12, 17, 22,  7, 12, 17, 22,  7, 12, 17, 22,
                      5,  9, 14, 20,  5,  9, 14, 20,  5,  9, 14, 20,  5,  9, 14, 20,
                      4, 11, 16, 23,  4, 11, 16, 23,  4, 11, 16, 23,  4, 11, 16, 23,
                      6, 10, 15, 21,  6, 10, 15, 21,  6, 10, 15, 21,  6, 10, 15, 21,
                  };
              
                  private string MD5_Core(byte[] payload_bytes, ulong[] init, ulong[] constants, int[] shifts, ulong size_mask, int word_size, int chunk_modulo, int appended_length, int round_count, string output_format, int output_segments)
                  {
                      int word_bytes = word_size / 8;
              
                      // Working variables a0->d0
                      ulong[] working_variables = new ulong[4];
                      init.CopyTo(working_variables, 0);
              
                      byte[] input = new byte[chunk_modulo];
                      ulong[] message_schedule = new ulong[16];
              
                      // Each 64-byte/512-bit chunk
                      // 64 bits/8 bytes are required at the end for the bit size
                      for (int chunk_index = 0; chunk_index < payload_bytes.Length + appended_length + 1; chunk_index += chunk_modulo)
                      {
                          int chunk_size = Mathf.Min(chunk_modulo, payload_bytes.Length - chunk_index);
                          int schedule_index = 0;
              
                          // Buffer message
                          for (; schedule_index < chunk_size; ++schedule_index)
                              input[schedule_index] = payload_bytes[chunk_index + schedule_index];
                          // Append a 1-bit if not an even chunk
                          if (schedule_index < chunk_modulo && chunk_size >= 0)
                              input[schedule_index++] = 0b10000000;
                          // Pad with zeros until the end
                          for (; schedule_index < chunk_modulo; ++schedule_index)
                              input[schedule_index] = 0x00;
                          // If the chunk is less than 56 bytes, this will be the final chunk containing the data size in bits
                          if (chunk_size < chunk_modulo - appended_length)
                          {
                              ulong bit_size = (ulong)payload_bytes.Length * 8ul;
                              input[chunk_modulo - 8] = Convert.ToByte((bit_size >> 0x00) & 0xFFul);
                              input[chunk_modulo - 7] = Convert.ToByte((bit_size >> 0x08) & 0xFFul);
                              input[chunk_modulo - 6] = Convert.ToByte((bit_size >> 0x10) & 0xFFul);
                              input[chunk_modulo - 5] = Convert.ToByte((bit_size >> 0x18) & 0xFFul);
                              input[chunk_modulo - 4] = Convert.ToByte((bit_size >> 0x20) & 0xFFul);
                              input[chunk_modulo - 3] = Convert.ToByte((bit_size >> 0x28) & 0xFFul);
                              input[chunk_modulo - 2] = Convert.ToByte((bit_size >> 0x30) & 0xFFul);
                              input[chunk_modulo - 1] = Convert.ToByte((bit_size >> 0x38) & 0xFFul);
                          }
              
                          // Copy into w[0..15]
                          int copy_index = 0;
                          for (; copy_index < 16; copy_index++)
                          {
                              message_schedule[copy_index] = 0ul;
                              for (int i = 0; i < word_bytes; i++)
                              {
                                  message_schedule[copy_index] = message_schedule[copy_index] | ((ulong)input[(copy_index * word_bytes) + i] << (i * 8));
                              }
              
                              message_schedule[copy_index] = message_schedule[copy_index] & size_mask;
                          }
              
                          // temp vars
                          ulong f, g;
                          // work is equivalent to A, B, C, D
                          // This copies work from a0, b0, c0, d0
                          ulong[] work = new ulong[4];
                          working_variables.CopyTo(work, 0);
              
                          // Compression function main loop
                          for (copy_index = 0; copy_index < round_count; copy_index++)
                          {
                              if (copy_index < 16)
                              {
                                  f = ((work[1] & work[2]) | ((size_mask ^ work[1]) & work[3])) & size_mask;
                                  g = (ulong)copy_index;
                              } else if (copy_index < 32)
                              {
                                  f = ((work[3] & work[1]) | ((size_mask ^ work[3]) & work[2])) & size_mask;
                                  g = (ulong)(((5 * copy_index) + 1) % 16);
                              } else if (copy_index < 48)
                              {
                                  f = work[1] ^ work[2] ^ work[3];
                                  g = (ulong)(((3 * copy_index) + 5) % 16);
                              } else
                              {
                                  f = (work[2] ^ (work[1] | (size_mask ^ work[3]))) & size_mask;
                                  g = (ulong)(7 * copy_index % 16);
                              }
              
                              f = (f + work[0] + constants[copy_index] + message_schedule[g]) & size_mask;
                              work[0] = work[3];
                              work[3] = work[2];
                              work[2] = work[1];
                              work[1] = (work[1] + ((f << shifts[copy_index]) | (f >> word_size - shifts[copy_index]))) & size_mask;
                          }
              
                          for (copy_index = 0; copy_index < 4; copy_index++)
                              working_variables[copy_index] = (working_variables[copy_index] + work[copy_index]) & size_mask;
                      }
              
                      // Finalization
                      string output = "";
              
                      for (int character_index = 0; character_index < output_segments; character_index++)
                      {
                          ulong value = working_variables[character_index];
                          output += string.Format(output_format,
                              ((value & 0x000000FFul) << 0x18) |
                              ((value & 0x0000FF00ul) << 0x08) |
                              ((value & 0x00FF0000ul) >> 0x08) |
                              ((value & 0xFF000000ul) >> 0x18)
                          );
                      }
              
                      return output;
                  }
              
                  public string MD5_Bytes(byte[] data)
                  {
                      return MD5_Core(data, md5_init, md5_constants, md5_shifts, 0xFFFFFFFFul, 32, 64, 8, 64, "{0:x8}", 4);
                  }
              
                  public string MD5_UTF8(string text)
                  {
                      return MD5_Core(ToUTF8(text.ToCharArray()), md5_init, md5_constants, md5_shifts, 0xFFFFFFFFul, 32, 64, 8, 64, "{0:x8}", 4);
                  }
              
                  /*  SHA1  */
              
                  private readonly ulong[] sha1_init = {
                      0x67452301, 0xefcdab89, 0x98badcfe, 0x10325476, 0xc3d2e1f0,
                  };
              
                  private string SHA1_Core(byte[] payload_bytes, ulong[] init, ulong size_mask, int word_size, int chunk_modulo, int appended_length, int left_rotations, int round_count, string output_format, int output_segments)
                  {
                      int word_bytes = word_size / 8;
              
                      // Working variables h0->h4
                      ulong[] working_variables = new ulong[5];
                      init.CopyTo(working_variables, 0);
              
                      byte[] input = new byte[chunk_modulo];
                      ulong[] message_schedule = new ulong[round_count];
              
                      // Each 64-byte/512-bit chunk
                      // 64 bits/8 bytes are required at the end for the bit size
                      for (int chunk_index = 0; chunk_index < payload_bytes.Length + appended_length + 1; chunk_index += chunk_modulo)
                      {
                          int chunk_size = Mathf.Min(chunk_modulo, payload_bytes.Length - chunk_index);
                          int schedule_index = 0;
              
                          // Buffer message
                          for (; schedule_index < chunk_size; ++schedule_index)
                              input[schedule_index] = payload_bytes[chunk_index + schedule_index];
                          // Append a 1-bit if not an even chunk
                          if (schedule_index < chunk_modulo && chunk_size >= 0)
                              input[schedule_index++] = 0b10000000;
                          // Pad with zeros until the end
                          for (; schedule_index < chunk_modulo; ++schedule_index)
                              input[schedule_index] = 0x00;
                          // If the chunk is less than 56 bytes, this will be the final chunk containing the data size in bits
                          if (chunk_size < chunk_modulo - appended_length)
                          {
                              ulong bit_size = (ulong)payload_bytes.Length * 8ul;
                              input[chunk_modulo - 1] = Convert.ToByte((bit_size >> 0x00) & 0xFFul);
                              input[chunk_modulo - 2] = Convert.ToByte((bit_size >> 0x08) & 0xFFul);
                              input[chunk_modulo - 3] = Convert.ToByte((bit_size >> 0x10) & 0xFFul);
                              input[chunk_modulo - 4] = Convert.ToByte((bit_size >> 0x18) & 0xFFul);
                              input[chunk_modulo - 5] = Convert.ToByte((bit_size >> 0x20) & 0xFFul);
                              input[chunk_modulo - 6] = Convert.ToByte((bit_size >> 0x28) & 0xFFul);
                              input[chunk_modulo - 7] = Convert.ToByte((bit_size >> 0x30) & 0xFFul);
                              input[chunk_modulo - 8] = Convert.ToByte((bit_size >> 0x38) & 0xFFul);
                          }
              
                          // Copy into w[0..15]
                          int copy_index = 0;
                          for (; copy_index < 16; copy_index++)
                          {
                              message_schedule[copy_index] = 0ul;
                              for (int i = 0; i < word_bytes; i++)
                              {
                                  message_schedule[copy_index] = (message_schedule[copy_index] << 8) | input[(copy_index * word_bytes) + i];
                              }
              
                              message_schedule[copy_index] = message_schedule[copy_index] & size_mask;
                          }
                          // Extend
                          for (; copy_index < round_count; copy_index++)
                          {
                              ulong w = message_schedule[copy_index - 3] ^ message_schedule[copy_index - 8] ^ message_schedule[copy_index - 14] ^ message_schedule[copy_index - 16];
                              message_schedule[copy_index] = (
                                  (w << left_rotations) | (w >> word_size - left_rotations)
                              ) & size_mask;
                          }
              
                          // temp vars
                          ulong temp, k, f;
                          // work is equivalent to a, b, c, d, e
                          // This copies work from h0, h1, h2, h3, h4
                          ulong[] work = new ulong[5];
                          working_variables.CopyTo(work, 0);
              
                          // Compression function main loop
                          for (copy_index = 0; copy_index < round_count; copy_index++)
                          {
                              if (copy_index < 20)
                              {
                                  f = ((work[1] & work[2]) | ((size_mask ^ work[1]) & work[3])) & size_mask;
                                  k = 0x5A827999;
                              } else if (copy_index < 40)
                              {
                                  f = work[1] ^ work[2] ^ work[3];
                                  k = 0x6ED9EBA1;
                              } else if (copy_index < 60)
                              {
                                  f = (work[1] & work[2]) ^ (work[1] & work[3]) ^ (work[2] & work[3]);
                                  k = 0x8F1BBCDC;
                              } else
                              {
                                  f = work[1] ^ work[2] ^ work[3];
                                  k = 0xCA62C1D6;
                              }
              
                              temp = (((work[0] << 5) | (work[0] >> word_size - 5)) + f + work[4] + k + message_schedule[copy_index]) & size_mask;
                              work[4] = work[3];
                              work[3] = work[2];
                              work[2] = ((work[1] << 30) | (work[1] >> word_size - 30)) & size_mask;
                              work[1] = work[0];
                              work[0] = temp;
                          }
              
                          for (copy_index = 0; copy_index < 5; copy_index++)
                              working_variables[copy_index] = (working_variables[copy_index] + work[copy_index]) & size_mask;
                      }
              
                      // Finalization
                      string output = "";
              
                      for (int character_index = 0; character_index < output_segments; character_index++)
                      {
                          output += string.Format(output_format, working_variables[character_index]);
                      }
              
                      return output;
                  }
              
                  /* SHA0 */
                  /* This algorithm has had documented vulnerabilites since before its formal release. */
                  /* Near to nothing uses it, and it should not be trusted for real applications under any circumstances */
                  /* It is only here for completeness, and there may be bugs with it due to the difficulty of finding RFC-complying implementations to test against. */
                  /*
                  public string SHA0_Bytes(byte[] data)
                  {
                      return SHA1_Core(data, sha1_init, 0xFFFFFFFFul, 32, 64, 8, 0, 80, "{0:x8}", 5);
                  }
              
                  public string SHA0_UTF8(string text)
                  {
                      return SHA1_Core(ToUTF8(text.ToCharArray()), sha1_init, 0xFFFFFFFFul, 32, 64, 8, 0, 80, "{0:x8}", 5);
                  }
                  */
              
                  /* SHA1 */
                  public string SHA1_Bytes(byte[] data)
                  {
                      return SHA1_Core(data, sha1_init, 0xFFFFFFFFul, 32, 64, 8, 1, 80, "{0:x8}", 5);
                  }
              
                  public string SHA1_UTF8(string text)
                  {
                      return SHA1_Core(ToUTF8(text.ToCharArray()), sha1_init, 0xFFFFFFFFul, 32, 64, 8, 1, 80, "{0:x8}", 5);
                  }
              
                  /*  SHA2  */
              
                  private readonly ulong[] sha224_init = {
                      0xc1059ed8, 0x367cd507, 0x3070dd17, 0xf70e5939, 0xffc00b31, 0x68581511, 0x64f98fa7, 0xbefa4fa4,
                  };
              
                  private readonly ulong[] sha256_init = {
                      0x6a09e667, 0xbb67ae85, 0x3c6ef372, 0xa54ff53a, 0x510e527f, 0x9b05688c, 0x1f83d9ab, 0x5be0cd19,
                  };
              
                  private readonly ulong[] sha256_constants = {
                      0x428a2f98, 0x71374491, 0xb5c0fbcf, 0xe9b5dba5, 0x3956c25b, 0x59f111f1, 0x923f82a4, 0xab1c5ed5,
                      0xd807aa98, 0x12835b01, 0x243185be, 0x550c7dc3, 0x72be5d74, 0x80deb1fe, 0x9bdc06a7, 0xc19bf174,
                      0xe49b69c1, 0xefbe4786, 0x0fc19dc6, 0x240ca1cc, 0x2de92c6f, 0x4a7484aa, 0x5cb0a9dc, 0x76f988da,
                      0x983e5152, 0xa831c66d, 0xb00327c8, 0xbf597fc7, 0xc6e00bf3, 0xd5a79147, 0x06ca6351, 0x14292967,
                      0x27b70a85, 0x2e1b2138, 0x4d2c6dfc, 0x53380d13, 0x650a7354, 0x766a0abb, 0x81c2c92e, 0x92722c85,
                      0xa2bfe8a1, 0xa81a664b, 0xc24b8b70, 0xc76c51a3, 0xd192e819, 0xd6990624, 0xf40e3585, 0x106aa070,
                      0x19a4c116, 0x1e376c08, 0x2748774c, 0x34b0bcb5, 0x391c0cb3, 0x4ed8aa4a, 0x5b9cca4f, 0x682e6ff3,
                      0x748f82ee, 0x78a5636f, 0x84c87814, 0x8cc70208, 0x90befffa, 0xa4506ceb, 0xbef9a3f7, 0xc67178f2,
                  };
              
                  private readonly int[] sha256_sums =
                  {
                      7, 18, 3,  // s0
                      17, 19, 10,  // s1
                  };
              
                  private readonly int[] sha256_sigmas =
                  {
                      2, 13, 22,  // S0
                      6, 11, 25,  // S1
                  };
              
                  private readonly ulong[] sha384_init = {
                      0xcbbb9d5dc1059ed8, 0x629a292a367cd507, 0x9159015a3070dd17, 0x152fecd8f70e5939, 0x67332667ffc00b31,
                      0x8eb44a8768581511, 0xdb0c2e0d64f98fa7, 0x47b5481dbefa4fa4,
                  };
              
                  private readonly ulong[] sha512_init = {
                      0x6a09e667f3bcc908, 0xbb67ae8584caa73b, 0x3c6ef372fe94f82b, 0xa54ff53a5f1d36f1, 0x510e527fade682d1,
                      0x9b05688c2b3e6c1f, 0x1f83d9abfb41bd6b, 0x5be0cd19137e2179,
                  };
              
                  private readonly ulong[] sha512_constants = {
                      0x428a2f98d728ae22, 0x7137449123ef65cd, 0xb5c0fbcfec4d3b2f, 0xe9b5dba58189dbbc, 0x3956c25bf348b538,
                      0x59f111f1b605d019, 0x923f82a4af194f9b, 0xab1c5ed5da6d8118, 0xd807aa98a3030242, 0x12835b0145706fbe,
                      0x243185be4ee4b28c, 0x550c7dc3d5ffb4e2, 0x72be5d74f27b896f, 0x80deb1fe3b1696b1, 0x9bdc06a725c71235,
                      0xc19bf174cf692694, 0xe49b69c19ef14ad2, 0xefbe4786384f25e3, 0x0fc19dc68b8cd5b5, 0x240ca1cc77ac9c65,
                      0x2de92c6f592b0275, 0x4a7484aa6ea6e483, 0x5cb0a9dcbd41fbd4, 0x76f988da831153b5, 0x983e5152ee66dfab,
                      0xa831c66d2db43210, 0xb00327c898fb213f, 0xbf597fc7beef0ee4, 0xc6e00bf33da88fc2, 0xd5a79147930aa725,
                      0x06ca6351e003826f, 0x142929670a0e6e70, 0x27b70a8546d22ffc, 0x2e1b21385c26c926, 0x4d2c6dfc5ac42aed,
                      0x53380d139d95b3df, 0x650a73548baf63de, 0x766a0abb3c77b2a8, 0x81c2c92e47edaee6, 0x92722c851482353b,
                      0xa2bfe8a14cf10364, 0xa81a664bbc423001, 0xc24b8b70d0f89791, 0xc76c51a30654be30, 0xd192e819d6ef5218,
                      0xd69906245565a910, 0xf40e35855771202a, 0x106aa07032bbd1b8, 0x19a4c116b8d2d0c8, 0x1e376c085141ab53,
                      0x2748774cdf8eeb99, 0x34b0bcb5e19b48a8, 0x391c0cb3c5c95a63, 0x4ed8aa4ae3418acb, 0x5b9cca4f7763e373,
                      0x682e6ff3d6b2b8a3, 0x748f82ee5defb2fc, 0x78a5636f43172f60, 0x84c87814a1f0ab72, 0x8cc702081a6439ec,
                      0x90befffa23631e28, 0xa4506cebde82bde9, 0xbef9a3f7b2c67915, 0xc67178f2e372532b, 0xca273eceea26619c,
                      0xd186b8c721c0c207, 0xeada7dd6cde0eb1e, 0xf57d4f7fee6ed178, 0x06f067aa72176fba, 0x0a637dc5a2c898a6,
                      0x113f9804bef90dae, 0x1b710b35131c471b, 0x28db77f523047d84, 0x32caab7b40c72493, 0x3c9ebe0a15c9bebc,
                      0x431d67c49c100d4c, 0x4cc5d4becb3e42b6, 0x597f299cfc657e2a, 0x5fcb6fab3ad6faec, 0x6c44198c4a475817,
                  };
              
                  private readonly int[] sha512_sums =
                  {
                      1, 8, 7,  // s0
                      19, 61, 6,  // s1
                  };
              
                  private readonly int[] sha512_sigmas =
                  {
                      28, 34, 39,  // S0
                      14, 18, 41,  // S1
                  };
              
                  private string SHA2_Core(byte[] payload_bytes, ulong[] init, ulong[] constants, int[] sums, int[] sigmas, ulong size_mask, int word_size, int chunk_modulo, int appended_length, int round_count, string output_format, int output_segments)
                  {
                      int word_bytes = word_size / 8;
              
                      // Working variables h0->h7
                      ulong[] working_variables = new ulong[8];
                      init.CopyTo(working_variables, 0);
              
                      byte[] input = new byte[chunk_modulo];
                      ulong[] message_schedule = new ulong[round_count];
              
                      // Each 64-byte/512-bit chunk
                      // 64 bits/8 bytes are required at the end for the bit size
                      for (int chunk_index = 0; chunk_index < payload_bytes.Length + appended_length + 1; chunk_index += chunk_modulo) {
                          int chunk_size = Mathf.Min(chunk_modulo, payload_bytes.Length - chunk_index);
                          int schedule_index = 0;
              
                          // Buffer message
                          for (; schedule_index < chunk_size; ++schedule_index)
                              input[schedule_index] = payload_bytes[chunk_index + schedule_index];
                          // Append a 1-bit if not an even chunk
                          if (schedule_index < chunk_modulo && chunk_size >= 0)
                              input[schedule_index++] = 0b10000000;
                          // Pad with zeros until the end
                          for (; schedule_index < chunk_modulo; ++schedule_index)
                              input[schedule_index] = 0x00;
                          // If the chunk is less than 56 bytes, this will be the final chunk containing the data size in bits
                          if (chunk_size < chunk_modulo - appended_length) {
                              ulong bit_size = (ulong)payload_bytes.Length * 8ul;
                              input[chunk_modulo - 1] = Convert.ToByte((bit_size >> 0x00) & 0xFFul);
                              input[chunk_modulo - 2] = Convert.ToByte((bit_size >> 0x08) & 0xFFul);
                              input[chunk_modulo - 3] = Convert.ToByte((bit_size >> 0x10) & 0xFFul);
                              input[chunk_modulo - 4] = Convert.ToByte((bit_size >> 0x18) & 0xFFul);
                              input[chunk_modulo - 5] = Convert.ToByte((bit_size >> 0x20) & 0xFFul);
                              input[chunk_modulo - 6] = Convert.ToByte((bit_size >> 0x28) & 0xFFul);
                              input[chunk_modulo - 7] = Convert.ToByte((bit_size >> 0x30) & 0xFFul);
                              input[chunk_modulo - 8] = Convert.ToByte((bit_size >> 0x38) & 0xFFul);
                          }
              
                          // Copy into w[0..15]
                          int copy_index = 0;
                          for (; copy_index < 16; copy_index++)
                          {
                              message_schedule[copy_index] = 0ul;
                              for (int i = 0; i < word_bytes; i++)
                              {
                                  message_schedule[copy_index] = (message_schedule[copy_index] << 8) | input[(copy_index * word_bytes) + i];
                              }
              
                              message_schedule[copy_index] = message_schedule[copy_index] & size_mask;
                          }
                          // Extend
                          for(; copy_index < round_count; copy_index++) {
                              ulong s0_read = message_schedule[copy_index - 15];
                              ulong s1_read = message_schedule[copy_index - 2];
              
                              message_schedule[copy_index] = (
                                  message_schedule[copy_index - 16] +
                                  (((s0_read >> sums[0]) | (s0_read << word_size - sums[0])) ^ ((s0_read >> sums[1]) | (s0_read << word_size - sums[1])) ^ (s0_read >> sums[2])) + // s0
                                  message_schedule[copy_index - 7] +
                                  (((s1_read >> sums[3]) | (s1_read << word_size - sums[3])) ^ ((s1_read >> sums[4]) | (s1_read << word_size - sums[4])) ^ (s1_read >> sums[5])) // s1
                              ) & size_mask;
                          }
              
                          // temp vars
                          ulong temp1, temp2;
                          // work is equivalent to a, b, c, d, e, f, g, h
                          // This copies work from h0, h1, h2, h3, h4, h5, h6, h7
                          ulong[] work = new ulong[8];
                          working_variables.CopyTo(work, 0);
              
                          // Compression function main loop
                          for (copy_index = 0; copy_index < round_count; copy_index++)
                          {
                              ulong ep1 = ((work[4] >> sigmas[3]) | (work[4] << word_size - sigmas[3])) ^ ((work[4] >> sigmas[4]) | (work[4] << word_size - sigmas[4])) ^ ((work[4] >> sigmas[5]) | (work[4] << word_size - sigmas[5]));
                              ulong ch = (work[4] & work[5]) ^ ((size_mask ^ work[4]) & work[6]);
                              ulong ep0 = ((work[0] >> sigmas[0]) | (work[0] << word_size - sigmas[0])) ^ ((work[0] >> sigmas[1]) | (work[0] << word_size - sigmas[1])) ^ ((work[0] >> sigmas[2]) | (work[0] << word_size - sigmas[2]));
                              ulong maj = (work[0] & work[1]) ^ (work[0] & work[2]) ^ (work[1] & work[2]);
                              temp1 = work[7] + ep1 + ch + constants[copy_index] + message_schedule[copy_index];
                              temp2 = ep0 + maj;
                              work[7] = work[6];
                              work[6] = work[5];
                              work[5] = work[4];
                              work[4] = (work[3] + temp1) & size_mask;
                              work[3] = work[2];
                              work[2] = work[1];
                              work[1] = work[0];
                              work[0] = (temp1 + temp2) & size_mask;
                          }
              
                          for (copy_index = 0; copy_index < 8; copy_index++)
                              working_variables[copy_index] = (working_variables[copy_index] + work[copy_index]) & size_mask;
                      }
              
                      // Finalization
                      string output = "";
              
                      for (int character_index = 0; character_index < output_segments; character_index++) {
                          output += string.Format(output_format, working_variables[character_index]);
                      }
              
                      return output;
                  }
              
                  /* SHA224 */
                  public string SHA224_Bytes(byte[] data)
                  {
                      return SHA2_Core(data, sha224_init, sha256_constants, sha256_sums, sha256_sigmas, 0xFFFFFFFFul, 32, 64, 8, 64, "{0:x8}", 7);
                  }
              
                  public string SHA224_UTF8(string text)
                  {
                      return SHA2_Core(ToUTF8(text.ToCharArray()), sha224_init, sha256_constants, sha256_sums, sha256_sigmas, 0xFFFFFFFFul, 32, 64, 8, 64, "{0:x8}", 7);
                  }
              
                  /* SHA256 */
                  public string SHA256_Bytes(byte[] data)
                  {
                      return SHA2_Core(data, sha256_init, sha256_constants, sha256_sums, sha256_sigmas, 0xFFFFFFFFul, 32, 64, 8, 64, "{0:x8}", 8);
                  }
              
                  public string SHA256_UTF8(string text)
                  {
                      return SHA2_Core(ToUTF8(text.ToCharArray()), sha256_init, sha256_constants, sha256_sums, sha256_sigmas, 0xFFFFFFFFul, 32, 64, 8, 64, "{0:x8}", 8);
                  }
              
                  /* SHA384 */
                  public string SHA384_Bytes(byte[] data)
                  {
                      return SHA2_Core(data, sha384_init, sha512_constants, sha512_sums, sha512_sigmas, 0xFFFFFFFFFFFFFFFFul, 64, 128, 16, 80, "{0:x16}", 6);
                  }
              
                  public string SHA384_UTF8(string text)
                  {
                      return SHA2_Core(ToUTF8(text.ToCharArray()), sha384_init, sha512_constants, sha512_sums, sha512_sigmas, 0xFFFFFFFFFFFFFFFFul, 64, 128, 16, 80, "{0:x16}", 6);
                  }
              
                  /* SHA512 */
                  public string SHA512_Bytes(byte[] data)
                  {
                      return SHA2_Core(data, sha512_init, sha512_constants, sha512_sums, sha512_sigmas, 0xFFFFFFFFFFFFFFFFul, 64, 128, 16, 80, "{0:x16}", 8);
                  }
              
                  public string SHA512_UTF8(string text)
                  {
                      return SHA2_Core(ToUTF8(text.ToCharArray()), sha512_init, sha512_constants, sha512_sums, sha512_sigmas, 0xFFFFFFFFFFFFFFFFul, 64, 128, 16, 80, "{0:x16}", 8);
                  }
              }
              
              
              #if !COMPILER_UDONSHARP && UNITY_EDITOR
              
              [CustomEditor(typeof(UdonHashLib))]
              public class UdonHashLibEditor : Editor
              {
                  private string inputString = "";
              
                  public override void OnInspectorGUI()
                  {
                      // Draws the default convert to UdonBehaviour button, program asset field, sync settings, etc.
                      if (UdonSharpGUI.DrawDefaultUdonSharpBehaviourHeader(target)) return;
              
                      UdonHashLib inspectorBehaviour = (UdonHashLib)target;
              
                      if (!EditorApplication.isPlaying)
                          EditorGUILayout.HelpBox("Enter play mode to run tests", MessageType.Info);
              
                      EditorGUI.BeginDisabledGroup(!EditorApplication.isPlaying);
              
                      // A simple string field modification with Undo handling
                      EditorGUILayout.LabelField("Input for hash");
                      inputString = EditorGUILayout.TextArea(inputString);
              
                      if (GUILayout.Button("Calculate hashes"))
                      {
              
                          CheckHash(inputString, true);
                      }
              
                      if (GUILayout.Button("Run test suite"))
                      {
                          int testBatch = 4096;
                          int testCount = 0, succeeded = 0;
              
                          System.Random random = new System.Random();
                          string chars = "0123456789abcdefghijklmnopqrstuvwxyzABCDEFGHIJKLMNOPQRSTUVWXYZ!\"#$%&\'()*+,-./:;<=>?@[\\]^_`{|}~\n";
                          string buffer = new string(Enumerable.Repeat(chars, testBatch).Select(s => s[random.Next(s.Length)]).ToArray());
              
                          Debug.Log($"Buffer generated for ASCII testing: {buffer}");
              
                          for (int i = 0; i < testBatch; i++)
                          {
                              string test = buffer.Substring(random.Next(buffer.Length - i), i);
              
                              testCount++;
                              if (CheckHash(test))
                                  succeeded++;
                          }
              
                          // Japanese character (UTF-8) test
                          chars = "\u3042\u3044\u3046\u3048\u304a\u304b\u304d\u304f\u3051\u3053\u3055\u3057\u3059\u305b\u305d\u305f\u3061\u3064\u3066\u3068\u306a\u306b\u306c\u306d\u306e\u306f\u3072\u3075\u3078\u307b\u307e\u307f\u3080\u3081\u3082\u3084\u3086\u3088\u3089\u308a\u308b\u308c\u308d\u308f\u3090\u3091\u3092\u3093\u30a2\u30a4\u30a6\u30a8\u30aa\u30ab\u30ad\u30af\u30b1\u30b3\u30b5\u30b7\u30b9\u30bb\u30bd\u30bf\u30c1\u30c4\u30c6\u30c8\u30ca\u30cb\u30cc\u30cd\u30ce\u30cf\u30d2\u30d5\u30d8\u30db\u30de\u30df\u30e0\u30e1\u30e2\u30e4\u30e6\u30e8\u30e9\u30ea\u30eb\u30ec\u30ed\u30ef\u30f0\u30f1\u30f2\u30f3";
                          buffer = new string(Enumerable.Repeat(chars, testBatch).Select(s => s[random.Next(s.Length)]).ToArray());
              
                          Debug.Log($"Buffer generated for JPN/UTF-8 testing: {buffer}");
              
                          for (int i = 0; i < testBatch; i++)
                          {
                              string test = buffer.Substring(random.Next(buffer.Length - i), i);
              
                              testCount++;
                              if (CheckHash(test))
                                  succeeded++;
                          }
              
                          EditorUtility.DisplayDialog("Results", $"{testCount} tests ran, {succeeded} succeeded in all hashes", "OK");
                      }
              
                      EditorGUI.EndDisabledGroup();
                  }
              
                  private bool CheckHash(string input, bool showDialog = false, bool showDialogWhenFailed = true)
                  {
                      UdonHashLib inspectorBehaviour = (UdonHashLib)target;
              
                      string md5_udon = inspectorBehaviour.MD5_UTF8(input);
                      string sha1_udon = inspectorBehaviour.SHA1_UTF8(input);
                      string sha224_udon = inspectorBehaviour.SHA224_UTF8(input);
                      string sha256_udon = inspectorBehaviour.SHA256_UTF8(input);
                      string sha384_udon = inspectorBehaviour.SHA384_UTF8(input);
                      string sha512_udon = inspectorBehaviour.SHA512_UTF8(input);
              
                      string md5_csharp = GenerateNonUdon(input, System.Security.Cryptography.MD5.Create());
                      string sha1_csharp = GenerateNonUdon(input, System.Security.Cryptography.SHA1.Create());
                      string sha256_csharp = GenerateNonUdon(input, System.Security.Cryptography.SHA256.Create());
                      string sha384_csharp = GenerateNonUdon(input, System.Security.Cryptography.SHA384.Create());
                      string sha512_csharp = GenerateNonUdon(input, System.Security.Cryptography.SHA512.Create());
              
                      bool allPass = (
                          md5_udon == md5_csharp &&
                          sha1_udon == sha1_csharp &&
                          sha256_udon == sha256_csharp &&
                          sha384_udon == sha384_csharp &&
                          sha512_udon == sha512_csharp
                      );
              
                      if (showDialog || (!allPass && showDialogWhenFailed))
                          EditorUtility.DisplayDialog("Hashes", string.Join("\n", new string[] {
                              input,
                              "",
                              $"md5 [{(md5_udon == md5_csharp ? "PASS" : "FAIL")}]: {md5_udon}",
                              $"sha1 [{(sha1_udon == sha1_csharp ? "PASS" : "FAIL")}]: {sha1_udon}",
                              $"sha224: {sha224_udon}", // No system impl for this
                              $"sha256 [{(sha256_udon == sha256_csharp ? "PASS" : "FAIL")}]: {sha256_udon}",
                              $"sha384 [{(sha384_udon == sha384_csharp ? "PASS" : "FAIL")}]: {sha384_udon}",
                              $"sha512 [{(sha512_udon == sha512_csharp ? "PASS" : "FAIL")}]: {sha512_udon}",
                          }), "OK");
              
                      return allPass;
                  }
              
                  private string GenerateNonUdon(string input, System.Security.Cryptography.HashAlgorithm algorithm)
                  {
                      using (var hash = algorithm)
                      {
                          var bytes = hash.ComputeHash(System.Text.Encoding.UTF8.GetBytes(input));
              
                          string output = "";
              
                          foreach (byte x in bytes)
                          {
                              output += string.Format("{0:x2}", x);
                          }
              
                          return output;
                      }
                  }
              }
              #endif
              
              
              RoseVelvetteR
              RoseVelvetteR
              RoseVelvette
              wrote on last edited by
              #172

              @Worcestershire im sorry but what kind of coding is that??

              is there a simple number code to put in the key pad in nero VIP mmd world??

              WorcestershireW 1 Reply Last reply
              1
              • RoseVelvetteR RoseVelvette

                @Worcestershire im sorry but what kind of coding is that??

                is there a simple number code to put in the key pad in nero VIP mmd world??

                WorcestershireW
                WorcestershireW
                Worcestershire
                wrote on last edited by
                #173

                @VelvetteCakeYT not unless someone programs a code generator ¯\_(ツ)_/¯
                The code is generated based on your VRChat user, so there won't be a simple code to put in the keypad.

                RoseVelvetteR 1 Reply Last reply
                0
                • WorcestershireW Worcestershire

                  @VelvetteCakeYT not unless someone programs a code generator ¯\_(ツ)_/¯
                  The code is generated based on your VRChat user, so there won't be a simple code to put in the keypad.

                  RoseVelvetteR
                  RoseVelvetteR
                  RoseVelvette
                  wrote on last edited by
                  #174

                  @Worcestershire if people sub to nero patreon will they get the simple number code to put on key pad?

                  Gamerfart9000G 1 Reply Last reply
                  1
                  • RoseVelvetteR RoseVelvette

                    @Worcestershire if people sub to nero patreon will they get the simple number code to put on key pad?

                    Gamerfart9000G
                    Gamerfart9000G
                    Gamerfart9000
                    wrote on last edited by
                    #175

                    @VelvetteCakeYT yea

                    RoseVelvetteR 1 Reply Last reply
                    0
                    • Gamerfart9000G Gamerfart9000

                      @VelvetteCakeYT yea

                      RoseVelvetteR
                      RoseVelvetteR
                      RoseVelvette
                      wrote on last edited by
                      #176

                      @Gamerfart9000 do you need to pay to sub to nero patreon to get simple number code?

                      can someone with patreon account just give us the number code instead

                      1 Reply Last reply
                      1
                      • SnaggletoothS
                        SnaggletoothS
                        Snaggletooth
                        wrote on last edited by
                        #177

                        There is no simple code. Each person has a different code. It is based on your name. When you sub to the patreon, you can be given your specific code.

                        That is why people are trying to figure out how it is generated. There have not been simple codes for 12 days, it is unlikely there will be simple codes again. If I were to give you my code, it would not work for you. If you were to give me yours, it would not work for me.

                        1 Reply Last reply
                        1
                        • C0rd3dC
                          C0rd3dC
                          C0rd3d
                          wrote on last edited by
                          #178

                          So how would we be even able to crack the code then, I'm assuming they can see what codes are coming in or have a certain whitelist of the codes from patreon? Surely they wouldn't leave a loop hole like that for people to generate codes for their own names?

                          Furry femboy looking for things because money is hard to come by.

                          WorcestershireW 1 Reply Last reply
                          0
                          • C0rd3dC C0rd3d

                            So how would we be even able to crack the code then, I'm assuming they can see what codes are coming in or have a certain whitelist of the codes from patreon? Surely they wouldn't leave a loop hole like that for people to generate codes for their own names?

                            WorcestershireW
                            WorcestershireW
                            Worcestershire
                            wrote on last edited by
                            #179

                            @C4s3y If the code @Lucian posted is correct. They generate a code at runtime based on your VRChat name and check if the code you input matches. So unless there's more to that the only thing stopping us from getting the code seems to be the mystery of why replicating the code doesn't work.

                            1 Reply Last reply
                            1
                            • WorcestershireW
                              WorcestershireW
                              Worcestershire
                              wrote on last edited by Worcestershire
                              #180

                              I've uploaded an executable that so far worked for me and my friends. [register or login to view this hidden content] It'll show you the codes and create a text file with them. The codes are generated based on the month so you'll have to generate a new one every month. Type your username EXACTLY as it appears in your VRChat profile.

                              If someone knows javascript they can turn this into a site to make it more accessible.

                              In case you don't trust the exe and want to run/compile the code yourself I'll post it bellow. You'll need python installed and the hashlib package to run it yourself.

                              import datetime, calendar, hashlib
                              PRE_SEED = '7oXtAXHz'
                              
                              def get_date():
                                  now = datetime.datetime.now()
                                  last_day = calendar.monthrange(now.year, now.month)[1]  
                                  date = datetime.date(now.year, now.month, last_day)
                                  return date
                              
                              def generate_code(name : bytes, date : datetime.datetime, is_spicy : bool, is_retry : bool):
                                  hash_key = "bundabunda" if is_retry and is_spicy else \
                                  "mikumiku"   if is_retry and not is_spicy else \
                                  "bunda"      if not is_retry and is_spicy else \
                                  "miku"
                                      
                                  formatted_date = date.strftime('%d/%m/%Y')
                              
                                  code_key = f'{hash_key}{name}#{formatted_date}{PRE_SEED}'.encode()
                                      
                                  hash64 = hashlib.sha256(code_key).hexdigest()
                                  final_code = ''
                                  for ch in hash64:
                                      if ch.isdigit():
                                          final_code = final_code+ch
                              
                                  if len(final_code) == 5: 
                                       final_code = f'{final_code}{date.strftime("%m")}'
                                  if not is_retry and len(final_code) <= 4:
                                      return generate_code(name * 2,date,is_spicy,True)
                              
                                  return final_code[:6]
                              
                              
                              def main():
                                  player_name = input('VRChat Username: ')
                                  date = get_date()
                                  premium_code = generate_code(name=player_name,date=date,is_spicy=False,is_retry=False)
                                  spicy_code = generate_code(name=player_name,date=date,is_spicy=True,is_retry=False)
                                  print(f'Premium:\t{premium_code}\nSpicy:\t\t{spicy_code}')
                                  with open('codes.txt', 'w') as f:
                                      f.write(f'Premium:\t{premium_code}\nSpicy:\t\t{spicy_code}')
                                  print('\nCodes saved to "codes.txt"')
                                  input('Press enter to continue...')
                              
                              if __name__ == '__main__':
                                  main()
                              
                              TriTachyonT wwryW SkyrimDaPupperS A 4 Replies Last reply
                              👍
                              11
                              • M
                                M
                                macrats
                                wrote on last edited by
                                #181

                                worked

                                1 Reply Last reply
                                1
                                • WorcestershireW Worcestershire

                                  I've uploaded an executable that so far worked for me and my friends. [register or login to view this hidden content] It'll show you the codes and create a text file with them. The codes are generated based on the month so you'll have to generate a new one every month. Type your username EXACTLY as it appears in your VRChat profile.

                                  If someone knows javascript they can turn this into a site to make it more accessible.

                                  In case you don't trust the exe and want to run/compile the code yourself I'll post it bellow. You'll need python installed and the hashlib package to run it yourself.

                                  import datetime, calendar, hashlib
                                  PRE_SEED = '7oXtAXHz'
                                  
                                  def get_date():
                                      now = datetime.datetime.now()
                                      last_day = calendar.monthrange(now.year, now.month)[1]  
                                      date = datetime.date(now.year, now.month, last_day)
                                      return date
                                  
                                  def generate_code(name : bytes, date : datetime.datetime, is_spicy : bool, is_retry : bool):
                                      hash_key = "bundabunda" if is_retry and is_spicy else \
                                      "mikumiku"   if is_retry and not is_spicy else \
                                      "bunda"      if not is_retry and is_spicy else \
                                      "miku"
                                          
                                      formatted_date = date.strftime('%d/%m/%Y')
                                  
                                      code_key = f'{hash_key}{name}#{formatted_date}{PRE_SEED}'.encode()
                                          
                                      hash64 = hashlib.sha256(code_key).hexdigest()
                                      final_code = ''
                                      for ch in hash64:
                                          if ch.isdigit():
                                              final_code = final_code+ch
                                  
                                      if len(final_code) == 5: 
                                           final_code = f'{final_code}{date.strftime("%m")}'
                                      if not is_retry and len(final_code) <= 4:
                                          return generate_code(name * 2,date,is_spicy,True)
                                  
                                      return final_code[:6]
                                  
                                  
                                  def main():
                                      player_name = input('VRChat Username: ')
                                      date = get_date()
                                      premium_code = generate_code(name=player_name,date=date,is_spicy=False,is_retry=False)
                                      spicy_code = generate_code(name=player_name,date=date,is_spicy=True,is_retry=False)
                                      print(f'Premium:\t{premium_code}\nSpicy:\t\t{spicy_code}')
                                      with open('codes.txt', 'w') as f:
                                          f.write(f'Premium:\t{premium_code}\nSpicy:\t\t{spicy_code}')
                                      print('\nCodes saved to "codes.txt"')
                                      input('Press enter to continue...')
                                  
                                  if __name__ == '__main__':
                                      main()
                                  
                                  TriTachyonT
                                  TriTachyonT
                                  TriTachyon
                                  wrote on last edited by
                                  #182

                                  @Worcestershire 51263a88-6230-438e-ad7e-dce06cedacdf-image.png Welp, it works!

                                  ilovegiyuunsabiI 1 Reply Last reply
                                  1
                                  • Gamerfart9000G
                                    Gamerfart9000G
                                    Gamerfart9000
                                    wrote on last edited by
                                    #183

                                    gonna get on and test it out

                                    1 Reply Last reply
                                    0
                                    • Gamerfart9000G
                                      Gamerfart9000G
                                      Gamerfart9000
                                      wrote on last edited by
                                      #184

                                      it workss

                                      1 Reply Last reply
                                      0
                                      • T
                                        T
                                        Tailendo
                                        wrote on last edited by
                                        #185

                                        I guess nobody is gonna mention where the keypad is to enter the codes.

                                        WorcestershireW 1 Reply Last reply
                                        0
                                        • T Tailendo

                                          I guess nobody is gonna mention where the keypad is to enter the codes.

                                          WorcestershireW
                                          WorcestershireW
                                          Worcestershire
                                          wrote on last edited by
                                          #186

                                          @Tailendo On the wall to the left of where you select the songs, there should be a VIP button, click it and the keypad appears.

                                          1 Reply Last reply
                                          1

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