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  2. ANSI escape code - Wikipedia

    en.wikipedia.org/wiki/ANSI_escape_code

    Escape sequences vary in length. The general format for an ANSI-compliant escape sequence is defined by ANSI X3.41 (equivalent to ECMA-35 or ISO/IEC 2022). [12]: 13.1 The escape sequences consist only of bytes in the range 0x20—0x7F (all the non-control ASCII characters), and can be parsed without looking ahead. The behavior when a control ...

  3. Escape sequences in C - Wikipedia

    en.wikipedia.org/wiki/Escape_sequences_in_C

    For example, \11 is an octal escape sequence denoting a byte with decimal value 9 (11 in octal). However, \1111 is the octal escape sequence \111 followed by the digit 1 . In order to denote the byte with numerical value 1, followed by the digit 1 , one could use "\1""1" , since C concatenates adjacent string literals.

  4. Escape character - Wikipedia

    en.wikipedia.org/wiki/Escape_character

    For example, the sequence of ^[, followed by the printable characters [2;10H, would cause a Digital Equipment Corporation (DEC) VT102 terminal to move its cursor to the 10th cell of the 2nd line of the screen. This was later developed into ANSI escape codes covered by the ANSI X3.64 standard.

  5. Escape sequence - Wikipedia

    en.wikipedia.org/wiki/Escape_sequence

    In C and many derivative programming languages, a string escape sequence is a series of two or more characters, starting with a backslash \. [3]Note that in C a backslash immediately followed by a newline does not constitute an escape sequence, but splices physical source lines into logical ones in the second translation phase, whereas string escape sequences are converted in the fifth ...

  6. Text-based user interface - Wikipedia

    en.wikipedia.org/wiki/Text-based_user_interface

    American National Standards Institute (ANSI) standard ANSI X3.64 defines a standard set of escape sequences that can be used to drive terminals to create TUIs (see ANSI escape code). Escape sequences may be supported for all three cases mentioned in the above section, allowing arbitrary cursor movements and color changes. However, not all ...

  7. Terminal capabilities - Wikipedia

    en.wikipedia.org/wiki/Terminal_capabilities

    An example of one of the simplest is the output sequence to clear the screen, which may be the form feed (ASCII FF) character on some types of terminal but may, say, be the escape sequence ␛2J on a terminal that requires ANSI escape sequences. [6] [2] control sequences sent as input by the terminal

  8. VT100 - Wikipedia

    en.wikipedia.org/wiki/VT100

    The VT100 is a video terminal, introduced in August 1978 by Digital Equipment Corporation (DEC). It was one of the first terminals to support ANSI escape codes for cursor control and other tasks, and added a number of extended codes for special features like controlling the status lights on the keyboard.

  9. Control character - Wikipedia

    en.wikipedia.org/wiki/Control_character

    Specifically, they used ASCII code 27 10 (escape), followed by a series of characters called a "control sequence" or "escape sequence". The mechanism was invented by Bob Bemer , the father of ASCII. For example, the sequence of code 27 10 , followed by the printable characters "[2;10H", would cause a Digital Equipment Corporation VT100 terminal ...