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I'm trying to generate a random string in .NET and convert to bytes, and running into a little difficulty. I'd like the full set of possible characters, and my understanding is that a string can contain any character.

My code is currently as follows:

var plainText = new StringBuilder();
for (int j = 0; j < stringLength; ++j)
    plainText.Append((char)_random.Next(char.MinValue, char.MaxValue));
byte[] x = Encoding.Unicode.GetBytes(plainText.ToString());
string result = Encoding.Unicode.GetString(x);

In theory, plainText and result should be identical. They're mostly the same, but some of the original characters are lost, seems to be characters in the 55000-57000 range - they're replaced with character 65533.

I'm assuming the problem is with my encoding, but I thought Unicode would handle this properly. I've tried UTF8 and UTF32, but those give me the same problem.

Any thoughts?

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strange?! unicode could be, but when you tested it with utf-32?! –  TheHe Aug 26 '12 at 5:32
What are you trying to achieve? –  CodesInChaos Aug 26 '12 at 5:33
I assume you're producing an invalid UTF-16 string with unpaired surrogate characters. –  CodesInChaos Aug 26 '12 at 5:34
@CodesInChaos I'm writing a test on an encryption library by generating a random Unicode string, encrypting it, decrypting it, and ensuring the input and output are identical. –  Joe Enos Aug 26 '12 at 5:37
Encryption libraries usually operate on bytes or byte blocks, so it might be more worthwhile to simply generate random byte arrays. –  nneonneo Aug 26 '12 at 5:41

2 Answers 2

up vote 7 down vote accepted

The problem is that the characters in the range 0xD800-0xDFFF (55296-57343), called Unicode surrogate characters, are not valid on their own. They must appear as a pair (0xD800-0xDBFF first, 0xDC00-0xDFFF second) in order to be valid (in the UTF-16 encoding scheme). Alone, they will be treated as invalid characters and decoded to 0xFFFD (65533). C# uses UTF-16 to represent its strings, so that's why you are seeing that output.

You can either choose to filter them out (e.g. calling _random.Next until you get a non-surrogate character), or generate legal surrogate pairs whenever you generate a surrogate character.

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Awesome, thanks. I hadn't dealt with surrogate characters before. –  Joe Enos Aug 26 '12 at 5:41

Those are surrogate characters 55296-57343 (0xD800-0xDFFF). You need to pair them up correctly. A pair of surrogate characters in UTF-16 describes a single unicode codepoint.

You seem to operate on the assumption that a char and a code-point are the same thing. That's not true, there are >2^16 code-points.

I recommend reading the UTF-16 Wikipedia Article.

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