当用户在我们的网站上失去他的密码和首脑关于丢失密码的网页,我们需要给他一个新的临时密码。我真的不介意如何随机的,这是,或者如果它符合所有的"必要的"强密码的规则,所有我想做的就是给他们一个密码,他们可以改变之后。

该应用程序是一个网络编写的应用程序。所以我的想法的意思和你的容易路线的使用的一部分Guid。即

Guid.NewGuid().ToString("d").Substring(1,8)

Suggesstions?想法?

其他提示

public string CreatePassword(int length)
{
        const string valid = "abcdefghijklmnopqrstuvwxyzABCDEFGHIJKLMNOPQRSTUVWXYZ1234567890";
        StringBuilder res = new StringBuilder();
        Random rnd = new Random();
        while (0 < length--)
        {
            res.Append(valid[rnd.Next(valid.Length)]);
        }
        return res.ToString();
}

这有一个好处是能够选择一个名单的可用字符的密码的生成(例如数字,仅大写字或只有小写的等)。

主要目标,我的代码是:

  1. 分配的串几乎是均匀(不关心微小的偏差,因为只要他们小)
  2. 它就输出超过几十亿串对每个参数的设置。产生一个8字符串(~47位的熵)是毫无意义的,如果你的养恤金条例》仅产生2亿美元(31位的熵值)不同的数值。
  3. 它是安全的,由于我希望人们使用这个密码或其他安全标记。

第一个属性,是通过采取一64位值模字母的大小。对于小的字母(例如62符的问题),这导致可以忽略不计的偏见。第二和第三产是通过使用 RNGCryptoServiceProvider 而不是的 System.Random.

using System;
using System.Security.Cryptography;

public static string GetRandomAlphanumericString(int length)
{
    const string alphanumericCharacters =
        "ABCDEFGHIJKLMNOPQRSTUVWXYZ" +
        "abcdefghijklmnopqrstuvwxyz" +
        "0123456789";
    return GetRandomString(length, alphanumericCharacters);
}

public static string GetRandomString(int length, IEnumerable<char> characterSet)
{
    if (length < 0)
        throw new ArgumentException("length must not be negative", "length");
    if (length > int.MaxValue / 8) // 250 million chars ought to be enough for anybody
        throw new ArgumentException("length is too big", "length");
    if (characterSet == null)
        throw new ArgumentNullException("characterSet");
    var characterArray = characterSet.Distinct().ToArray();
    if (characterArray.Length == 0)
        throw new ArgumentException("characterSet must not be empty", "characterSet");

    var bytes = new byte[length * 8];
    new RNGCryptoServiceProvider().GetBytes(bytes);
    var result = new char[length];
    for (int i = 0; i < length; i++)
    {
        ulong value = BitConverter.ToUInt64(bytes, i * 8);
        result[i] = characterArray[value % (uint)characterArray.Length];
    }
    return new string(result);
}

(这是一个复制的,我的答案 我怎么能产生随机的8字、字母数字符串在C#?)

这里就是我如何产生随机tokens:

public string GenerateToken(int length)
{
    RNGCryptoServiceProvider cryptRNG = new RNGCryptoServiceProvider();
    byte[] tokenBuffer = new byte[length];
    cryptRNG.GetBytes(tokenBuffer);
    return Convert.ToBase64String(tokenBuffer);
}

它已经注意到,作为这返回基地-64串,输出的长度是始终是一个多4,使用额外的空间 = 作为一个填字符。的 length 参数规定的长度字节的缓冲,不是出string(因此也许不是最好的名称为参数,现在我想它)。这控制多少字节的 密码。然而,因为基-64使用4个字符块编码每3个字节的输入,如果你要求的长度不是一个多的3,会有一些额外的"空间",它将使用 = 填补的额外费用。

如果你不喜欢使用base-64串由于任何原因,你可以替代的 Convert.ToBase64String() 呼吁有转换为经常串,或与任何的 Encoding 方法;例如。 Encoding.UTF8.GetString(tokenBuffer) -只是确保你挑一个角色设定可能表示完整的数值范围未来的丽贝卡,并生产符,是兼容的,无论你送或储存这一点。使用Unicode,例如,往往给予了很多的中文字符。使用基-64保证广泛兼容设置的字符,并特点的这样一串不应该让它的任何不安全的只要你使用一个体面的散列算法。

这是一个很大的,但我认为它看起来有点更加全面:http://www.obviex.com/Samples/Password.aspx

///////////////////////////////////////////////////////////////////////////////
// SAMPLE: Generates random password, which complies with the strong password
//         rules and does not contain ambiguous characters.
//
// To run this sample, create a new Visual C# project using the Console
// Application template and replace the contents of the Class1.cs file with
// the code below.
//
// THIS CODE AND INFORMATION IS PROVIDED "AS IS" WITHOUT WARRANTY OF ANY KIND,
// EITHER EXPRESSED OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE IMPLIED
// WARRANTIES OF MERCHANTABILITY AND/OR FITNESS FOR A PARTICULAR PURPOSE.
// 
// Copyright (C) 2004 Obviex(TM). All rights reserved.
// 
using System;
using System.Security.Cryptography;

/// <summary>
/// This class can generate random passwords, which do not include ambiguous 
/// characters, such as I, l, and 1. The generated password will be made of
/// 7-bit ASCII symbols. Every four characters will include one lower case
/// character, one upper case character, one number, and one special symbol
/// (such as '%') in a random order. The password will always start with an
/// alpha-numeric character; it will not start with a special symbol (we do
/// this because some back-end systems do not like certain special
/// characters in the first position).
/// </summary>
public class RandomPassword
{
    // Define default min and max password lengths.
    private static int DEFAULT_MIN_PASSWORD_LENGTH  = 8;
    private static int DEFAULT_MAX_PASSWORD_LENGTH  = 10;

    // Define supported password characters divided into groups.
    // You can add (or remove) characters to (from) these groups.
    private static string PASSWORD_CHARS_LCASE  = "abcdefgijkmnopqrstwxyz";
    private static string PASSWORD_CHARS_UCASE  = "ABCDEFGHJKLMNPQRSTWXYZ";
    private static string PASSWORD_CHARS_NUMERIC= "23456789";
    private static string PASSWORD_CHARS_SPECIAL= "*$-+?_&=!%{}/";

    /// <summary>
    /// Generates a random password.
    /// </summary>
    /// <returns>
    /// Randomly generated password.
    /// </returns>
    /// <remarks>
    /// The length of the generated password will be determined at
    /// random. It will be no shorter than the minimum default and
    /// no longer than maximum default.
    /// </remarks>
    public static string Generate()
    {
        return Generate(DEFAULT_MIN_PASSWORD_LENGTH, 
                        DEFAULT_MAX_PASSWORD_LENGTH);
    }

    /// <summary>
    /// Generates a random password of the exact length.
    /// </summary>
    /// <param name="length">
    /// Exact password length.
    /// </param>
    /// <returns>
    /// Randomly generated password.
    /// </returns>
    public static string Generate(int length)
    {
        return Generate(length, length);
    }

    /// <summary>
    /// Generates a random password.
    /// </summary>
    /// <param name="minLength">
    /// Minimum password length.
    /// </param>
    /// <param name="maxLength">
    /// Maximum password length.
    /// </param>
    /// <returns>
    /// Randomly generated password.
    /// </returns>
    /// <remarks>
    /// The length of the generated password will be determined at
    /// random and it will fall with the range determined by the
    /// function parameters.
    /// </remarks>
    public static string Generate(int   minLength,
                                  int   maxLength)
    {
        // Make sure that input parameters are valid.
        if (minLength <= 0 || maxLength <= 0 || minLength > maxLength)
            return null;

        // Create a local array containing supported password characters
        // grouped by types. You can remove character groups from this
        // array, but doing so will weaken the password strength.
        char[][] charGroups = new char[][] 
        {
            PASSWORD_CHARS_LCASE.ToCharArray(),
            PASSWORD_CHARS_UCASE.ToCharArray(),
            PASSWORD_CHARS_NUMERIC.ToCharArray(),
            PASSWORD_CHARS_SPECIAL.ToCharArray()
        };

        // Use this array to track the number of unused characters in each
        // character group.
        int[] charsLeftInGroup = new int[charGroups.Length];

        // Initially, all characters in each group are not used.
        for (int i=0; i<charsLeftInGroup.Length; i++)
            charsLeftInGroup[i] = charGroups[i].Length;

        // Use this array to track (iterate through) unused character groups.
        int[] leftGroupsOrder = new int[charGroups.Length];

        // Initially, all character groups are not used.
        for (int i=0; i<leftGroupsOrder.Length; i++)
            leftGroupsOrder[i] = i;

        // Because we cannot use the default randomizer, which is based on the
        // current time (it will produce the same "random" number within a
        // second), we will use a random number generator to seed the
        // randomizer.

        // Use a 4-byte array to fill it with random bytes and convert it then
        // to an integer value.
        byte[] randomBytes = new byte[4];

        // Generate 4 random bytes.
        RNGCryptoServiceProvider rng = new RNGCryptoServiceProvider();
        rng.GetBytes(randomBytes);

        // Convert 4 bytes into a 32-bit integer value.
        int seed = BitConverter.ToInt32(randomBytes, 0);

        // Now, this is real randomization.
        Random  random  = new Random(seed);

        // This array will hold password characters.
        char[] password = null;

        // Allocate appropriate memory for the password.
        if (minLength < maxLength)
            password = new char[random.Next(minLength, maxLength+1)];
        else
            password = new char[minLength];

        // Index of the next character to be added to password.
        int nextCharIdx;

        // Index of the next character group to be processed.
        int nextGroupIdx;

        // Index which will be used to track not processed character groups.
        int nextLeftGroupsOrderIdx;

        // Index of the last non-processed character in a group.
        int lastCharIdx;

        // Index of the last non-processed group.
        int lastLeftGroupsOrderIdx = leftGroupsOrder.Length - 1;

        // Generate password characters one at a time.
        for (int i=0; i<password.Length; i++)
        {
            // If only one character group remained unprocessed, process it;
            // otherwise, pick a random character group from the unprocessed
            // group list. To allow a special character to appear in the
            // first position, increment the second parameter of the Next
            // function call by one, i.e. lastLeftGroupsOrderIdx + 1.
            if (lastLeftGroupsOrderIdx == 0)
                nextLeftGroupsOrderIdx = 0;
            else
                nextLeftGroupsOrderIdx = random.Next(0, 
                                                     lastLeftGroupsOrderIdx);

            // Get the actual index of the character group, from which we will
            // pick the next character.
            nextGroupIdx = leftGroupsOrder[nextLeftGroupsOrderIdx];

            // Get the index of the last unprocessed characters in this group.
            lastCharIdx = charsLeftInGroup[nextGroupIdx] - 1;

            // If only one unprocessed character is left, pick it; otherwise,
            // get a random character from the unused character list.
            if (lastCharIdx == 0)
                nextCharIdx = 0;
            else
                nextCharIdx = random.Next(0, lastCharIdx+1);

            // Add this character to the password.
            password[i] = charGroups[nextGroupIdx][nextCharIdx];

            // If we processed the last character in this group, start over.
            if (lastCharIdx == 0)
                charsLeftInGroup[nextGroupIdx] = 
                                          charGroups[nextGroupIdx].Length;
            // There are more unprocessed characters left.
            else
            {
                // Swap processed character with the last unprocessed character
                // so that we don't pick it until we process all characters in
                // this group.
                if (lastCharIdx != nextCharIdx)
                {
                    char temp = charGroups[nextGroupIdx][lastCharIdx];
                    charGroups[nextGroupIdx][lastCharIdx] = 
                                charGroups[nextGroupIdx][nextCharIdx];
                    charGroups[nextGroupIdx][nextCharIdx] = temp;
                }
                // Decrement the number of unprocessed characters in
                // this group.
                charsLeftInGroup[nextGroupIdx]--;
            }

            // If we processed the last group, start all over.
            if (lastLeftGroupsOrderIdx == 0)
                lastLeftGroupsOrderIdx = leftGroupsOrder.Length - 1;
            // There are more unprocessed groups left.
            else
            {
                // Swap processed group with the last unprocessed group
                // so that we don't pick it until we process all groups.
                if (lastLeftGroupsOrderIdx != nextLeftGroupsOrderIdx)
                {
                    int temp = leftGroupsOrder[lastLeftGroupsOrderIdx];
                    leftGroupsOrder[lastLeftGroupsOrderIdx] = 
                                leftGroupsOrder[nextLeftGroupsOrderIdx];
                    leftGroupsOrder[nextLeftGroupsOrderIdx] = temp;
                }
                // Decrement the number of unprocessed groups.
                lastLeftGroupsOrderIdx--;
            }
        }

        // Convert password characters into a string and return the result.
        return new string(password);
     }
}

/// <summary>
/// Illustrates the use of the RandomPassword class.
/// </summary>
public class RandomPasswordTest
{
    /// <summary>
    /// The main entry point for the application.
    /// </summary>
    [STAThread]
    static void Main(string[] args)
    {
        // Print 100 randomly generated passwords (8-to-10 char long).
        for (int i=0; i<100; i++)
            Console.WriteLine(RandomPassword.Generate(8, 10));
    }
}
//
// END OF FILE
///////////////////////////////////////////////////////////////////////////////

我知道,这是一个旧线,但是我有什么可能是一个相当简单的解决方案的人使用。容易实现的,容易理解,易于验证。

考虑下列要求:

我需要一个随机的密码产生它具有至少2小写字母,2上写字母和图2的数字。密码还必须是最低的8个字符长。

以下常规的表达可以验证这样的情况:

^(?=\b\w*[a-z].*[a-z]\w*\b)(?=\b\w*[A-Z].*[A-Z]\w*\b)(?=\b\w*[0-9].*[0-9]\w*\b)[a-zA-Z0-9]{8,}$

它的范围之外这个问题-但是regex是基于 lookahead/lookbehind环视.

以下代码将创建一个随机的字符合这一要求:

public static string GeneratePassword(int lowercase, int uppercase, int numerics) {
    string lowers = "abcdefghijklmnopqrstuvwxyz";
    string uppers = "ABCDEFGHIJKLMNOPQRSTUVWXYZ";
    string number = "0123456789";

    Random random = new Random();

    string generated = "!";
    for (int i = 1; i <= lowercase; i++)
        generated = generated.Insert(
            random.Next(generated.Length), 
            lowers[random.Next(lowers.Length - 1)].ToString()
        );

    for (int i = 1; i <= uppercase; i++)
        generated = generated.Insert(
            random.Next(generated.Length), 
            uppers[random.Next(uppers.Length - 1)].ToString()
        );

    for (int i = 1; i <= numerics; i++)
        generated = generated.Insert(
            random.Next(generated.Length), 
            number[random.Next(number.Length - 1)].ToString()
        );

    return generated.Replace("!", string.Empty);

}

满足上述要求,只需拨打以下:

String randomPassword = GeneratePassword(3, 3, 3);

代码开始用一个无效的角色("!")-使串具有长进入其新的角色,可以注射。

它然后循环从1到的大写字的需要,并在每次迭代,抓住一个随机的项目从小写的清单,并将它在随机的位置在string.

它然后再循环用大写字母和数字.

这个给你回串的长度= lowercase + uppercase + numerics 到这小写的,大写字母和数字字符的计你想已经放在一个随机单。

这种密码,我倾向于使用一个系统,该系统是可能会产生更容易"使用"密码。短,往往由pronouncable碎片和一些数字,并没有intercharacter模糊性(这是0或O?1还是I?).喜欢的东西

string[] words = { 'bur', 'ler', 'meh', 'ree' };
string word = "";

Random rnd = new Random();
for (i = 0; i < 3; i++)
   word += words[rnd.Next(words.length)]

int numbCount = rnd.Next(4);
for (i = 0; i < numbCount; i++)
  word += (2 + rnd.Next(7)).ToString();

return word;

(类型的权利进入浏览,因此仅使用作准则。此外,添加更多的话)。

我创造的 此类 使用RNGCryptoServiceProvider,它是灵活的。例如:

var generator = new PasswordGenerator(minimumLengthPassword: 8,
                                      maximumLengthPassword: 15,
                                      minimumUpperCaseChars: 2,
                                      minimumNumericChars: 3,
                                      minimumSpecialChars: 2);
string password = generator.Generate();

我不喜欢的密码,成员资格。GeneratePassword()创建,因为他们太丑恶和有太多的特殊字符。

这个代码产生的10个数字不太丑陋的密码。

string password = Guid.NewGuid().ToString("N").ToLower()
                      .Replace("1", "").Replace("o", "").Replace("0","")
                      .Substring(0,10);

当然,我可以使用Regex做所有的替代,但这是更具可读性和可维护的国际海事组织。

我一直非常高兴的密码发电机的内置到诺.因为诺。净节目,并开放源,我决定周围挖代码的一点。最后我只是referncing KeePass.exe,复中提供的标准安装应用程序,作为参考,在我的项目和编写代码如下。你可以看到如何灵活的这是感谢诺.你可以指定的长度,这符包括/不包括,等等。

using KeePassLib.Cryptography.PasswordGenerator;
using KeePassLib.Security;


public static string GeneratePassword(int passwordLength, bool lowerCase, bool upperCase, bool digits,
        bool punctuation, bool brackets, bool specialAscii, bool excludeLookAlike)
    {
        var ps = new ProtectedString();
        var profile = new PwProfile();
        profile.CharSet = new PwCharSet();
        profile.CharSet.Clear();

        if (lowerCase)
            profile.CharSet.AddCharSet('l');
        if(upperCase)
            profile.CharSet.AddCharSet('u');
        if(digits)
            profile.CharSet.AddCharSet('d');
        if (punctuation)
            profile.CharSet.AddCharSet('p');
        if (brackets)
            profile.CharSet.AddCharSet('b');
        if (specialAscii)
            profile.CharSet.AddCharSet('s');

        profile.ExcludeLookAlike = excludeLookAlike;
        profile.Length = (uint)passwordLength;
        profile.NoRepeatingCharacters = true;

        KeePassLib.Cryptography.PasswordGenerator.PwGenerator.Generate(out ps, profile, null, _pool);

        return ps.ReadString();
    }

我创造了这个方法类似于在会员国提供商。这是有用的,如果你不想加入网络的参考在一些应用程序。

它的伟大工程。

public static string GeneratePassword(int Length, int NonAlphaNumericChars)
    {
        string allowedChars = "abcdefghijkmnopqrstuvwxyzABCDEFGHJKLMNOPQRSTUVWXYZ0123456789";
        string allowedNonAlphaNum = "!@#$%^&*()_-+=[{]};:<>|./?";
        Random rd = new Random();

        if (NonAlphaNumericChars > Length || Length <= 0 || NonAlphaNumericChars < 0)
            throw new ArgumentOutOfRangeException();

            char[] pass = new char[Length];
            int[] pos = new int[Length];
            int i = 0, j = 0, temp = 0;
            bool flag = false;

            //Random the position values of the pos array for the string Pass
            while (i < Length - 1)
            {
                j = 0;
                flag = false;
                temp = rd.Next(0, Length);
                for (j = 0; j < Length; j++)
                    if (temp == pos[j])
                    {
                        flag = true;
                        j = Length;
                    }

                if (!flag)
                {
                    pos[i] = temp;
                    i++;
                }
            }

            //Random the AlphaNumericChars
            for (i = 0; i < Length - NonAlphaNumericChars; i++)
                pass[i] = allowedChars[rd.Next(0, allowedChars.Length)];

            //Random the NonAlphaNumericChars
            for (i = Length - NonAlphaNumericChars; i < Length; i++)
                pass[i] = allowedNonAlphaNum[rd.Next(0, allowedNonAlphaNum.Length)];

            //Set the sorted array values by the pos array for the rigth posistion
            char[] sorted = new char[Length];
            for (i = 0; i < Length; i++)
                sorted[i] = pass[pos[i]];

            string Pass = new String(sorted);

            return Pass;
    }

我想看看产生的密码,就像生成软件的钥匙。你应该选择一系列人物,遵循良好做法。采取什么样的 @Radu094回答 与和修改,以遵循的良好做法。不要把每个字母的角色阵列。有些字母很难说或理解通过电话。

你也应该考虑使用一个校上的密码产生,以确保它产生的。一个很好的方式完成,这是使用 卢恩的算法.

这里是我的放在一起很快。

    public string GeneratePassword(int len)
    {
        string res = "";
        Random rnd = new Random();
        while (res.Length < len) res += (new Func<Random, string>((r) => {
            char c = (char)((r.Next(123) * DateTime.Now.Millisecond % 123)); 
            return (Char.IsLetterOrDigit(c)) ? c.ToString() : ""; 
        }))(rnd);
        return res;
    }
public static string GeneratePassword(int passLength) {
        var chars = "abcdefghijklmnopqrstuvwxyz@#$&ABCDEFGHIJKLMNOPQRSTUVWXYZ0123456789";
        var random = new Random();
        var result = new string(
            Enumerable.Repeat(chars, passLength)
                      .Select(s => s[random.Next(s.Length)])
                      .ToArray());
        return result;
    }

这是短暂的,它的伟大工程,对于我。

public static string GenerateRandomCode(int length)
{
    Random rdm = new Random();
    StringBuilder sb = new StringBuilder();

    for(int i = 0; i < length; i++)
        sb.Append(Convert.ToChar(rdm.Next(101,132)));

    return sb.ToString();
}

在我的网站上我使用这种方法:

    //Symb array
    private const string _SymbolsAll = "~`!@#$%^&*()_+=-\\|[{]}'\";:/?.>,<";

    //Random symb
    public string GetSymbol(int Length)
    {
        Random Rand = new Random(DateTime.Now.Millisecond);
        StringBuilder result = new StringBuilder();
        for (int i = 0; i < Length; i++)
            result.Append(_SymbolsAll[Rand.Next(0, _SymbolsAll.Length)]);
        return result.ToString();
    }

编辑串 _SymbolsAll 你的阵列表。

添加一些补充码以接受的答案。它提高了当的答案只是使用随机和允许一些密码的选择。我也喜欢的一些选项,从诺的答复,但没有要包括执行在我的解决方案。

private string RandomPassword(int length, bool includeCharacters, bool includeNumbers, bool includeUppercase, bool includeNonAlphaNumericCharacters, bool includeLookAlikes)
{
    if (length < 8 || length > 128) throw new ArgumentOutOfRangeException("length");
    if (!includeCharacters && !includeNumbers && !includeNonAlphaNumericCharacters) throw new ArgumentException("RandomPassword-Key arguments all false, no values would be returned");

    string pw = "";
    do
    {
        pw += System.Web.Security.Membership.GeneratePassword(128, 25);
        pw = RemoveCharacters(pw, includeCharacters, includeNumbers, includeUppercase, includeNonAlphaNumericCharacters, includeLookAlikes);
    } while (pw.Length < length);

    return pw.Substring(0, length);
}

private string RemoveCharacters(string passwordString, bool includeCharacters, bool includeNumbers, bool includeUppercase, bool includeNonAlphaNumericCharacters, bool includeLookAlikes)
{
    if (!includeCharacters)
    {
        var remove = new string[] { "a", "b", "c", "d", "e", "f", "g", "h", "i", "j", "k", "l", "m", "n", "o", "p", "q", "r", "s", "t", "u", "v", "w", "x", "y", "z" };
        foreach (string r in remove)
        {
            passwordString = passwordString.Replace(r, string.Empty);
            passwordString = passwordString.Replace(r.ToUpper(), string.Empty);
        }
    }

    if (!includeNumbers)
    {
        var remove = new string[] { "0", "1", "2", "3", "4", "5", "6", "7", "8", "9" };
        foreach (string r in remove)
            passwordString = passwordString.Replace(r, string.Empty);
    }

    if (!includeUppercase)
        passwordString = passwordString.ToLower();

    if (!includeNonAlphaNumericCharacters)
    {
        var remove = new string[] { "!", "@", "#", "$", "%", "^", "&", "*", "(", ")", "-", "_", "+", "=", "{", "}", "[", "]", "|", "\\", ":", ";", "<", ">", "/", "?", "." };
        foreach (string r in remove)
            passwordString = passwordString.Replace(r, string.Empty);
    }

    if (!includeLookAlikes)
    {
        var remove = new string[] { "(", ")", "0", "O", "o", "1", "i", "I", "l", "|", "!", ":", ";" };
        foreach (string r in remove)
            passwordString = passwordString.Replace(r, string.Empty);
    }

    return passwordString;
}

这是第一个链接,当我搜索产生随机的密码和以下范围内对当前的问题,但可能是重要的考虑。

  • 基于的假设 System.Web.Security.Membership.GeneratePassword 是密码保护的一个最低的20%的人物正在非字母数字。
  • 不知道,如果删除的人物和追加串被认为是良好做法在这种情况下,提供足够的熵。
  • 可能希望考虑实施某种方式与 SecureString 对于安全密码存储在存储器。

validChars可以是任何建造,但是我决定选择的基础上ascii码的范围内除去控制的字符。在这个例子中,这是一个12字符串。

string validChars = String.Join("", Enumerable.Range(33, (126 - 33)).Where(i => !(new int[] { 34, 38, 39, 44, 60, 62, 96 }).Contains(i)).Select(i => { return (char)i; }));
string.Join("", Enumerable.Range(1, 12).Select(i => { return validChars[(new Random(Guid.NewGuid().GetHashCode())).Next(0, validChars.Length - 1)]; }))
 Generate random password of specified length with 
  - Special characters   
  - Number
  - Lowecase
  - Uppercase

  public static string CreatePassword(int length = 12)
    {
        const string lower = "abcdefghijklmnopqrstuvwxyz";
        const string upper = "ABCDEFGHIJKLMNOPQRSTUVWXYZ";
        const string number = "1234567890";
        const string special = "!@#$%^&*";

        var middle = length / 2;
        StringBuilder res = new StringBuilder();
        Random rnd = new Random();
        while (0 < length--)
        {
            if (middle == length)
            {
                res.Append(number[rnd.Next(number.Length)]);
            }
            else if (middle - 1 == length)
            {
                res.Append(special[rnd.Next(special.Length)]);
            }
            else
            {
                if (length % 2 == 0)
                {
                    res.Append(lower[rnd.Next(lower.Length)]);
                }
                else
                {
                    res.Append(upper[rnd.Next(upper.Length)]);
                }
            }
        }
        return res.ToString();
    }

我将增加的另一个不明智的回答。

我有一个利用的情况下,我需要随机的密码机的计算机通信,因此我没有任何要求对于人的可读性。我还没有访问 Membership.GeneratePassword 在我的项目,而不想增加的依赖性。

我相当肯定 Membership.GeneratePassword 是做什么与此类似,但在这里你可以为你的游泳池的人物画。

public static class PasswordGenerator
{
    private readonly static Random _rand = new Random();

    public static string Generate(int length = 24)
    {
        const string lower = "abcdefghijklmnopqrstuvwxyz";
        const string upper = "ABCDEFGHIJKLMNOPQRSTUVWXYZ";
        const string number = "1234567890";
        const string special = "!@#$%^&*_-=+";

        // Get cryptographically random sequence of bytes
        var bytes = new byte[length];
        new RNGCryptoServiceProvider().GetBytes(bytes);

        // Build up a string using random bytes and character classes
        var res = new StringBuilder();
        foreach(byte b in bytes)
        {
            // Randomly select a character class for each byte
            switch (_rand.Next(4))
            {
                // In each case use mod to project byte b to the correct range
                case 0:
                    res.Append(lower[b % lower.Count()]);
                    break;
                case 1:
                    res.Append(upper[b % upper.Count()]);
                    break;
                case 2:
                    res.Append(number[b % number.Count()]);
                    break;
                case 3:
                    res.Append(special[b % special.Count()]);
                    break;
            }
        }
        return res.ToString();
    }
}

和一些例子产出:

PasswordGenerator.Generate(12)
"pzY=64@-ChS$"
"BG0OsyLbYnI_"
"l9#5^2&adj_i"
"#++Ws9d$%O%X"
"IWhdIN-#&O^s"

抢占投诉的使用 Random:的主要来源的随机性仍然是加密丽贝卡.甚至如果你能明确地preordain序列出来的 Random (说它只产生的 1)你仍然不知道下一个焦炭,将被挑选的(虽然这 限制范围的可能性).

一个简单的扩展将是增添加权的不同的字符组,这可能是简单作为增加最大价值和增加秋通过的情况下,以增加重量。

switch (_rand.Next(6))
{
    // Prefer letters 2:1
    case 0:
    case 1:
        res.Append(lower[b % lower.Count()]);
        break;
    case 2:
    case 3:
        res.Append(upper[b % upper.Count()]);
        break;
    case 4:
        res.Append(number[b % number.Count()]);
        break;
    case 5:
        res.Append(special[b % special.Count()]);
        break;
}

对于一个更加人性化的随机的密码生我一旦实施一个提示系统的使用 联邦军骰子-字名单.

插入一个定时器:定时器1、2个按钮:button1,button2,1个框:文本框1,一个组合框:comboBox1.确保你宣布:

int count = 0;

源代码:

 private void button1_Click(object sender, EventArgs e)
    {
    // This clears the textBox, resets the count, and starts the timer
        count = 0;
        textBox1.Clear();
        timer1.Start();
    }

    private void timer1_Tick(object sender, EventArgs e)
    {
    // This generates the password, and types it in the textBox
        count += 1;
            string possible = "abcdefghijklmnopqrstuvwxyzABCDEFGHIJKLMNOPQRSTUVWXYZ1234567890";
            string psw = "";
            Random rnd = new Random { };
            psw += possible[rnd.Next(possible.Length)];
            textBox1.Text += psw;
            if (count == (comboBox1.SelectedIndex + 1))
            {
                timer1.Stop();
            }
    }
    private void Form1_Load(object sender, EventArgs e)
    {
        // This adds password lengths to the comboBox to choose from.
        comboBox1.Items.Add("1");
        comboBox1.Items.Add("2");
        comboBox1.Items.Add("3");
        comboBox1.Items.Add("4");
        comboBox1.Items.Add("5");
        comboBox1.Items.Add("6");
        comboBox1.Items.Add("7");
        comboBox1.Items.Add("8");
        comboBox1.Items.Add("9");
        comboBox1.Items.Add("10");
        comboBox1.Items.Add("11");
        comboBox1.Items.Add("12");
    }
    private void button2_click(object sender, EventArgs e)
    {
        // This encrypts the password
        tochar = textBox1.Text;
        textBox1.Clear();
        char[] carray = tochar.ToCharArray();
        for (int i = 0; i < carray.Length; i++)
        {
            int num = Convert.ToInt32(carray[i]) + 10;
            string cvrt = Convert.ToChar(num).ToString();
            textBox1.Text += cvrt;
        }
    }
public string Sifre_Uret(int boy, int noalfa)
{

    //  01.03.2016   
    // Genel amaçlı şifre üretme fonksiyonu


    //Fonskiyon 128 den büyük olmasına izin vermiyor.
    if (boy > 128 ) { boy = 128; }
    if (noalfa > 128) { noalfa = 128; }
    if (noalfa > boy) { noalfa = boy; }


    string passch = System.Web.Security.Membership.GeneratePassword(boy, noalfa);

    //URL encoding ve Url Pass + json sorunu yaratabilecekler pass ediliyor.
    //Microsoft Garanti etmiyor. Alfa Sayısallar Olabiliyorimiş . !@#$%^&*()_-+=[{]};:<>|./?.
    //https://msdn.microsoft.com/tr-tr/library/system.web.security.membership.generatepassword(v=vs.110).aspx


    //URL ve Json ajax lar için filtreleme
    passch = passch.Replace(":", "z");
    passch = passch.Replace(";", "W");
    passch = passch.Replace("'", "t");
    passch = passch.Replace("\"", "r");
    passch = passch.Replace("/", "+");
    passch = passch.Replace("\\", "e");

    passch = passch.Replace("?", "9");
    passch = passch.Replace("&", "8");
    passch = passch.Replace("#", "D");
    passch = passch.Replace("%", "u");
    passch = passch.Replace("=", "4");
    passch = passch.Replace("~", "1");

    passch = passch.Replace("[", "2");
    passch = passch.Replace("]", "3");
    passch = passch.Replace("{", "g");
    passch = passch.Replace("}", "J");


    //passch = passch.Replace("(", "6");
    //passch = passch.Replace(")", "0");
    //passch = passch.Replace("|", "p");
    //passch = passch.Replace("@", "4");
    //passch = passch.Replace("!", "u");
    //passch = passch.Replace("$", "Z");
    //passch = passch.Replace("*", "5");
    //passch = passch.Replace("_", "a");

    passch = passch.Replace(",", "V");
    passch = passch.Replace(".", "N");
    passch = passch.Replace("+", "w");
    passch = passch.Replace("-", "7");





    return passch;



}
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