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  2. International Components for Unicode - Wikipedia

    en.wikipedia.org/wiki/International_Components...

    International Components for Unicode (ICU) is an open-source project of mature C/C++ and Java libraries for Unicode support, software internationalization, and software globalization. ICU is widely portable to many operating systems and environments.

  3. C++ string handling - Wikipedia

    en.wikipedia.org/wiki/C++_string_handling

    Some string implementations store 16-bit or 32-bit code points instead of bytes, this was intended to facilitate processing of Unicode text. [5] However, it means that conversion to these types from std::string or from arrays of bytes is dependent on the "locale" and can throw exceptions. [6]

  4. Implicit directional marks - Wikipedia

    en.wikipedia.org/wiki/Implicit_directional_marks

    In the first example, without an LRM control character, a web browser will render the ++ on the left of the "C" because the browser recognizes that the paragraph is in a right-to-left text and applies punctuation, which is neutral as to its direction, according to the direction of the adjacent text. The LRM control character causes the ...

  5. C0 and C1 control codes - Wikipedia

    en.wikipedia.org/wiki/C0_and_C1_control_codes

    In 1973, ECMA-35 and ISO 2022 [18] attempted to define a method so an 8-bit "extended ASCII" code could be converted to a corresponding 7-bit code, and vice versa. [19] In a 7-bit environment, the Shift Out would change the meaning of the 96 bytes 0x20 through 0x7F [a] [21] (i.e. all but the C0 control codes), to be the characters that an 8-bit environment would print if it used the same code ...

  6. C string handling - Wikipedia

    en.wikipedia.org/wiki/C_string_handling

    String literals ("text" in the C source code) are converted to arrays during compilation. [2] The result is an array of code units containing all the characters plus a trailing zero code unit. In C90 L"text" produces a wide string. A string literal can contain the zero code unit (one way is to put \0 into the source), but this will cause the ...

  7. Unicode control characters - Wikipedia

    en.wikipedia.org/wiki/Unicode_control_characters

    Many Unicode characters are used to control the interpretation or display of text, but these characters themselves have no visual or spatial representation. For example, the null character ( U+0000 NULL ) is used in C-programming application environments to indicate the end of a string of characters.

  8. Module:Unicode convert - Wikipedia

    en.wikipedia.org/wiki/Module:Unicode_convert

    Converts Unicode character codes, always given in hexadecimal, to their UTF-8 or UTF-16 representation in upper-case hex or decimal. Can also reverse this for UTF-8. The UTF-16 form will accept and pass through unpaired surrogates e.g. {{#invoke:Unicode convert|getUTF8|D835}} → D835.

  9. String (computer science) - Wikipedia

    en.wikipedia.org/wiki/String_(computer_science)

    A primary purpose of strings is to store human-readable text, like words and sentences. Strings are used to communicate information from a computer program to the user of the program. [2] A program may also accept string input from its user. Further, strings may store data expressed as characters yet not intended for human reading.