using System; using System.Collections.Generic; using System.Globalization; using System.Linq; using NStack; namespace Terminal.Gui { /// /// Text alignment enumeration, controls how text is displayed. /// public enum TextAlignment { /// /// Aligns the text to the left of the frame. /// Left, /// /// Aligns the text to the right side of the frame. /// Right, /// /// Centers the text in the frame. /// Centered, /// /// Shows the text as justified text in the frame. /// Justified } /// /// Vertical text alignment enumeration, controls how text is displayed. /// public enum VerticalTextAlignment { /// /// Aligns the text to the top of the frame. /// Top, /// /// Aligns the text to the bottom of the frame. /// Bottom, /// /// Centers the text verticaly in the frame. /// Middle, /// /// Shows the text as justified text in the frame. /// Justified } /// TextDirection [H] = Horizontal [V] = Vertical /// ============= /// LeftRight_TopBottom [H] Normal /// TopBottom_LeftRight [V] Normal /// /// RightLeft_TopBottom [H] Invert Text /// TopBottom_RightLeft [V] Invert Lines /// /// LeftRight_BottomTop [H] Invert Lines /// BottomTop_LeftRight [V] Invert Text /// /// RightLeft_BottomTop [H] Invert Text + Invert Lines /// BottomTop_RightLeft [V] Invert Text + Invert Lines /// /// /// Text direction enumeration, controls how text is displayed. /// public enum TextDirection { /// /// Normal horizontal direction. /// HELLO
WORLD
///
LeftRight_TopBottom, /// /// Normal vertical direction. /// H W
E O
L R
L L
O D
///
TopBottom_LeftRight, /// /// This is a horizontal direction.
RTL /// OLLEH
DLROW
///
RightLeft_TopBottom, /// /// This is a vertical direction. /// W H
O E
R L
L L
D O
///
TopBottom_RightLeft, /// /// This is a horizontal direction. /// WORLD
HELLO
///
LeftRight_BottomTop, /// /// This is a vertical direction. /// O D
L L
L R
E O
H W
///
BottomTop_LeftRight, /// /// This is a horizontal direction. /// DLROW
OLLEH
///
RightLeft_BottomTop, /// /// This is a vertical direction. /// D O
L L
R L
O E
W H
///
BottomTop_RightLeft } /// /// Provides text formatting capabilities for console apps. Supports, hotkeys, horizontal alignment, multiple lines, and word-based line wrap. /// public class TextFormatter { List lines = new List (); ustring text; TextAlignment textAlignment; VerticalTextAlignment textVerticalAlignment; TextDirection textDirection; Attribute textColor = -1; bool needsFormat; Key hotKey; Size size; /// /// Event invoked when the is changed. /// public event Action HotKeyChanged; /// /// The text to be displayed. This text is never modified. /// public virtual ustring Text { get => text; set { text = value; if (text != null && text.RuneCount > 0 && (Size.Width == 0 || Size.Height == 0 || Size.Width != text.ConsoleWidth)) { // Provide a default size (width = length of longest line, height = 1) // TODO: It might makes more sense for the default to be width = length of first line? Size = new Size (TextFormatter.MaxWidth (Text, int.MaxValue), 1); } NeedsFormat = true; } } /// /// Used by to resize the view's with the . /// Setting to true only work if the and are null or /// values and doesn't work with layout, /// to avoid breaking the and settings. /// public bool AutoSize { get; set; } /// /// Gets or sets a flag that determines whether will have trailing spaces preserved /// or not when is enabled. If `true` any trailing spaces will be trimmed when /// either the property is changed or when is set to `true`. /// The default is `false`. /// public bool PreserveTrailingSpaces { get; set; } /// /// Controls the horizontal text-alignment property. /// /// The text alignment. public TextAlignment Alignment { get => textAlignment; set { textAlignment = value; NeedsFormat = true; } } /// /// Controls the vertical text-alignment property. /// /// The text vertical alignment. public VerticalTextAlignment VerticalAlignment { get => textVerticalAlignment; set { textVerticalAlignment = value; NeedsFormat = true; } } /// /// Controls the text-direction property. /// /// The text vertical alignment. public TextDirection Direction { get => textDirection; set { textDirection = value; NeedsFormat = true; } } /// /// Check if it is a horizontal direction /// public static bool IsHorizontalDirection (TextDirection textDirection) { switch (textDirection) { case TextDirection.LeftRight_TopBottom: case TextDirection.LeftRight_BottomTop: case TextDirection.RightLeft_TopBottom: case TextDirection.RightLeft_BottomTop: return true; default: return false; } } /// /// Check if it is a vertical direction /// public static bool IsVerticalDirection (TextDirection textDirection) { switch (textDirection) { case TextDirection.TopBottom_LeftRight: case TextDirection.TopBottom_RightLeft: case TextDirection.BottomTop_LeftRight: case TextDirection.BottomTop_RightLeft: return true; default: return false; } } /// /// Check if it is Left to Right direction /// public static bool IsLeftToRight (TextDirection textDirection) { switch (textDirection) { case TextDirection.LeftRight_TopBottom: case TextDirection.LeftRight_BottomTop: return true; default: return false; } } /// /// Check if it is Top to Bottom direction /// public static bool IsTopToBottom (TextDirection textDirection) { switch (textDirection) { case TextDirection.TopBottom_LeftRight: case TextDirection.TopBottom_RightLeft: return true; default: return false; } } /// /// Gets or sets the size of the area the text will be constrained to when formatted. /// public Size Size { get => size; set { size = value; NeedsFormat = true; } } /// /// The specifier character for the hotkey (e.g. '_'). Set to '\xffff' to disable hotkey support for this View instance. The default is '\xffff'. /// public Rune HotKeySpecifier { get; set; } = (Rune)0xFFFF; /// /// The position in the text of the hotkey. The hotkey will be rendered using the hot color. /// public int HotKeyPos { get => hotKeyPos; set => hotKeyPos = value; } /// /// Gets the hotkey. Will be an upper case letter or digit. /// public Key HotKey { get => hotKey; internal set { if (hotKey != value) { var oldKey = hotKey; hotKey = value; HotKeyChanged?.Invoke (oldKey); } } } /// /// Gets the cursor position from . If the is defined, the cursor will be positioned over it. /// public int CursorPosition { get; set; } /// /// Gets the formatted lines. /// /// /// /// Upon a 'get' of this property, if the text needs to be formatted (if is true) /// will be called internally. /// /// public List Lines { get { // With this check, we protect against subclasses with overrides of Text if (ustring.IsNullOrEmpty (Text) || Size.IsEmpty) { lines = new List { ustring.Empty }; NeedsFormat = false; return lines; } if (NeedsFormat) { var shown_text = text; if (FindHotKey (text, HotKeySpecifier, true, out hotKeyPos, out Key newHotKey)) { HotKey = newHotKey; shown_text = RemoveHotKeySpecifier (Text, hotKeyPos, HotKeySpecifier); shown_text = ReplaceHotKeyWithTag (shown_text, hotKeyPos); } if (IsVerticalDirection (textDirection)) { var colsWidth = GetSumMaxCharWidth (shown_text, 0, 1); lines = Format (shown_text, Size.Height, textVerticalAlignment == VerticalTextAlignment.Justified, Size.Width > colsWidth, PreserveTrailingSpaces, 0, textDirection); if (!AutoSize) { colsWidth = GetMaxColsForWidth (lines, Size.Width); if (lines.Count > colsWidth) { lines.RemoveRange (colsWidth, lines.Count - colsWidth); } } } else { lines = Format (shown_text, Size.Width, textAlignment == TextAlignment.Justified, Size.Height > 1, PreserveTrailingSpaces, 0, textDirection); if (!AutoSize && lines.Count > Size.Height) { lines.RemoveRange (Size.Height, lines.Count - Size.Height); } } NeedsFormat = false; } return lines; } } /// /// Gets or sets whether the needs to format the text when is called. /// If it is false when Draw is called, the Draw call will be faster. /// /// /// /// This is set to true when the properties of are set. /// /// public bool NeedsFormat { get => needsFormat; set => needsFormat = value; } static ustring StripCRLF (ustring str, bool keepNewLine = false) { var runes = str.ToRuneList (); for (int i = 0; i < runes.Count; i++) { switch (runes [i]) { case '\n': if (!keepNewLine) { runes.RemoveAt (i); } break; case '\r': if ((i + 1) < runes.Count && runes [i + 1] == '\n') { runes.RemoveAt (i); if (!keepNewLine) { runes.RemoveAt (i); } i++; } else { if (!keepNewLine) { runes.RemoveAt (i); } } break; } } return ustring.Make (runes); } static ustring ReplaceCRLFWithSpace (ustring str) { var runes = str.ToRuneList (); for (int i = 0; i < runes.Count; i++) { switch (runes [i]) { case '\n': runes [i] = (Rune)' '; break; case '\r': if ((i + 1) < runes.Count && runes [i + 1] == '\n') { runes [i] = (Rune)' '; runes.RemoveAt (i + 1); i++; } else { runes [i] = (Rune)' '; } break; } } return ustring.Make (runes); } /// /// Splits all newlines in the into a list /// and supports both CRLF and LF, preserving the ending newline. /// /// The text. /// A list of text without the newline characters. public static List SplitNewLine (ustring text) { var runes = text.ToRuneList (); var lines = new List (); var start = 0; var end = 0; for (int i = 0; i < runes.Count; i++) { end = i; switch (runes [i]) { case '\n': lines.Add (ustring.Make (runes.GetRange (start, end - start))); i++; start = i; break; case '\r': if ((i + 1) < runes.Count && runes [i + 1] == '\n') { lines.Add (ustring.Make (runes.GetRange (start, end - start))); i += 2; start = i; } else { lines.Add (ustring.Make (runes.GetRange (start, end - start))); i++; start = i; } break; } } if (runes.Count > 0 && lines.Count == 0) { lines.Add (ustring.Make (runes)); } else if (runes.Count > 0 && start < runes.Count) { lines.Add (ustring.Make (runes.GetRange (start, runes.Count - start))); } else { lines.Add (ustring.Make ("")); } return lines; } /// /// Adds trailing whitespace or truncates /// so that it fits exactly console units. /// Note that some unicode characters take 2+ columns /// /// /// /// public static string ClipOrPad (string text, int width) { if (string.IsNullOrEmpty (text)) return text; // if value is not wide enough if (text.Sum (c => Rune.ColumnWidth (c)) < width) { // pad it out with spaces to the given alignment int toPad = width - (text.Sum (c => Rune.ColumnWidth (c))); return text + new string (' ', toPad); } // value is too wide return new string (text.TakeWhile (c => (width -= Rune.ColumnWidth (c)) >= 0).ToArray ()); } /// /// Formats the provided text to fit within the width provided using word wrapping. /// /// The text to word wrap /// The width to contain the text to /// If true, the wrapped text will keep the trailing spaces. /// If false, the trailing spaces will be trimmed. /// The tab width. /// The text direction. /// Returns a list of word wrapped lines. /// /// /// This method does not do any justification. /// /// /// This method strips Newline ('\n' and '\r\n') sequences before processing. /// /// public static List WordWrap (ustring text, int width, bool preserveTrailingSpaces = false, int tabWidth = 0, TextDirection textDirection = TextDirection.LeftRight_TopBottom) { if (width < 0) { throw new ArgumentOutOfRangeException ("Width cannot be negative."); } int start = 0, end; var lines = new List (); if (ustring.IsNullOrEmpty (text)) { return lines; } var runes = StripCRLF (text).ToRuneList (); if (!preserveTrailingSpaces) { if (IsHorizontalDirection (textDirection)) { while ((end = start + Math.Max (GetMaxLengthForWidth (runes.GetRange (start, runes.Count - start), width), 1)) < runes.Count) { while (runes [end] != ' ' && end > start) end--; if (end == start) end = start + GetMaxLengthForWidth (runes.GetRange (end, runes.Count - end), width); lines.Add (ustring.Make (runes.GetRange (start, end - start))); start = end; if (runes [end] == ' ') { start++; } } } else { while ((end = start + width) < runes.Count) { while (runes [end] != ' ' && end > start) end--; if (end == start) end = start + width; lines.Add (ustring.Make (runes.GetRange (start, end - start))); start = end; if (runes [end] == ' ') { start++; } } } } else { while ((end = start) < runes.Count) { end = GetNextWhiteSpace (start, width, out bool incomplete); if (end == 0 && incomplete) { start = text.RuneCount; break; } lines.Add (ustring.Make (runes.GetRange (start, end - start))); start = end; if (incomplete) { start = text.RuneCount; break; } } } int GetNextWhiteSpace (int from, int cWidth, out bool incomplete, int cLength = 0) { var lastFrom = from; var to = from; var length = cLength; incomplete = false; while (length < cWidth && to < runes.Count) { var rune = runes [to]; if (IsHorizontalDirection (textDirection)) { length += Rune.ColumnWidth (rune); } else { length++; } if (length > cWidth) { if (to >= runes.Count || (length > 1 && cWidth <= 1)) { incomplete = true; } return to; } if (rune == ' ') { if (length == cWidth) { return to + 1; } else if (length > cWidth) { return to; } else { return GetNextWhiteSpace (to + 1, cWidth, out incomplete, length); } } else if (rune == '\t') { length += tabWidth + 1; if (length == tabWidth && tabWidth > cWidth) { return to + 1; } else if (length > cWidth && tabWidth > cWidth) { return to; } else { return GetNextWhiteSpace (to + 1, cWidth, out incomplete, length); } } to++; } if (cLength > 0 && to < runes.Count && runes [to] != ' ' && runes [to] != '\t') { return from; } else if (cLength > 0 && to < runes.Count && (runes [to] == ' ' || runes [to] == '\t')) { return lastFrom; } else { return to; } } if (start < text.RuneCount) { lines.Add (ustring.Make (runes.GetRange (start, runes.Count - start))); } return lines; } /// /// Justifies text within a specified width. /// /// The text to justify. /// If the text length is greater that width it will be clipped. /// Alignment. /// The text direction. /// Justified and clipped text. public static ustring ClipAndJustify (ustring text, int width, TextAlignment talign, TextDirection textDirection = TextDirection.LeftRight_TopBottom) { return ClipAndJustify (text, width, talign == TextAlignment.Justified, textDirection); } /// /// Justifies text within a specified width. /// /// The text to justify. /// If the text length is greater that width it will be clipped. /// Justify. /// The text direction. /// Justified and clipped text. public static ustring ClipAndJustify (ustring text, int width, bool justify, TextDirection textDirection = TextDirection.LeftRight_TopBottom) { if (width < 0) { throw new ArgumentOutOfRangeException ("Width cannot be negative."); } if (ustring.IsNullOrEmpty (text)) { return text; } var runes = text.ToRuneList (); int slen = runes.Count; if (slen > width) { if (IsHorizontalDirection (textDirection)) { return ustring.Make (runes.GetRange (0, GetMaxLengthForWidth (text, width))); } else { return ustring.Make (runes.GetRange (0, width)); } } else { if (justify) { return Justify (text, width, ' ', textDirection); } else if (IsHorizontalDirection (textDirection) && GetTextWidth (text) > width) { return ustring.Make (runes.GetRange (0, GetMaxLengthForWidth (text, width))); } return text; } } /// /// Justifies the text to fill the width provided. Space will be added between words (demarked by spaces and tabs) to /// make the text just fit width. Spaces will not be added to the ends. /// /// /// /// Character to replace whitespace and pad with. For debugging purposes. /// The text direction. /// The justified text. public static ustring Justify (ustring text, int width, char spaceChar = ' ', TextDirection textDirection = TextDirection.LeftRight_TopBottom) { if (width < 0) { throw new ArgumentOutOfRangeException ("Width cannot be negative."); } if (ustring.IsNullOrEmpty (text)) { return text; } var words = text.Split (ustring.Make (' ')); int textCount; if (IsHorizontalDirection (textDirection)) { textCount = words.Sum (arg => GetTextWidth (arg)); } else { textCount = words.Sum (arg => arg.RuneCount); } var spaces = words.Length > 1 ? (width - textCount) / (words.Length - 1) : 0; var extras = words.Length > 1 ? (width - textCount) % (words.Length - 1) : 0; var s = new System.Text.StringBuilder (); for (int w = 0; w < words.Length; w++) { var x = words [w]; s.Append (x); if (w + 1 < words.Length) for (int i = 0; i < spaces; i++) s.Append (spaceChar); if (extras > 0) { for (int i = 0; i < 1; i++) s.Append (spaceChar); extras--; } if (w + 1 == words.Length - 1) { for (int i = 0; i < extras; i++) s.Append (spaceChar); } } return ustring.Make (s.ToString ()); } static char [] whitespace = new char [] { ' ', '\t' }; private int hotKeyPos = -1; /// /// Reformats text into lines, applying text alignment and optionally wrapping text to new lines on word boundaries. /// /// /// The width to bound the text to for word wrapping and clipping. /// Specifies how the text will be aligned horizontally. /// If true, the text will be wrapped to new lines as need. If false, forces text to fit a single line. Line breaks are converted to spaces. The text will be clipped to width /// If true and 'wordWrap' also true, the wrapped text will keep the trailing spaces. If false, the trailing spaces will be trimmed. /// The tab width. /// The text direction. /// A list of word wrapped lines. /// /// /// An empty text string will result in one empty line. /// /// /// If width is 0, a single, empty line will be returned. /// /// /// If width is int.MaxValue, the text will be formatted to the maximum width possible. /// /// public static List Format (ustring text, int width, TextAlignment talign, bool wordWrap, bool preserveTrailingSpaces = false, int tabWidth = 0, TextDirection textDirection = TextDirection.LeftRight_TopBottom) { return Format (text, width, talign == TextAlignment.Justified, wordWrap, preserveTrailingSpaces, tabWidth, textDirection); } /// /// Reformats text into lines, applying text alignment and optionally wrapping text to new lines on word boundaries. /// /// /// The width to bound the text to for word wrapping and clipping. /// Specifies whether the text should be justified. /// If true, the text will be wrapped to new lines as need. If false, forces text to fit a single line. Line breaks are converted to spaces. The text will be clipped to width /// If true and 'wordWrap' also true, the wrapped text will keep the trailing spaces. If false, the trailing spaces will be trimmed. /// The tab width. /// The text direction. /// A list of word wrapped lines. /// /// /// An empty text string will result in one empty line. /// /// /// If width is 0, a single, empty line will be returned. /// /// /// If width is int.MaxValue, the text will be formatted to the maximum width possible. /// /// public static List Format (ustring text, int width, bool justify, bool wordWrap, bool preserveTrailingSpaces = false, int tabWidth = 0, TextDirection textDirection = TextDirection.LeftRight_TopBottom) { if (width < 0) { throw new ArgumentOutOfRangeException ("width cannot be negative"); } List lineResult = new List (); if (ustring.IsNullOrEmpty (text) || width == 0) { lineResult.Add (ustring.Empty); return lineResult; } if (wordWrap == false) { text = ReplaceCRLFWithSpace (text); lineResult.Add (ClipAndJustify (text, width, justify, textDirection)); return lineResult; } var runes = StripCRLF (text, true).ToRuneList (); int runeCount = runes.Count; int lp = 0; for (int i = 0; i < runeCount; i++) { Rune c = runes [i]; if (c == '\n') { var wrappedLines = WordWrap (ustring.Make (runes.GetRange (lp, i - lp)), width, preserveTrailingSpaces, tabWidth, textDirection); foreach (var line in wrappedLines) { lineResult.Add (ClipAndJustify (line, width, justify, textDirection)); } if (wrappedLines.Count == 0) { lineResult.Add (ustring.Empty); } lp = i + 1; } } foreach (var line in WordWrap (ustring.Make (runes.GetRange (lp, runeCount - lp)), width, preserveTrailingSpaces, tabWidth, textDirection)) { lineResult.Add (ClipAndJustify (line, width, justify, textDirection)); } return lineResult; } /// /// Computes the number of lines needed to render the specified text given the width. /// /// Number of lines. /// Text, may contain newlines. /// The minimum width for the text. public static int MaxLines (ustring text, int width) { var result = TextFormatter.Format (text, width, false, true); return result.Count; } /// /// Computes the maximum width needed to render the text (single line or multiple lines) given a minimum width. /// /// Max width of lines. /// Text, may contain newlines. /// The minimum width for the text. public static int MaxWidth (ustring text, int width) { var result = TextFormatter.Format (text, width, false, true); var max = 0; result.ForEach (s => { var m = 0; s.ToRuneList ().ForEach (r => m += Math.Max (Rune.ColumnWidth (r), 1)); if (m > max) { max = m; } }); return max; } /// /// Determines the line with the highest width in the /// if it contains newlines. /// /// Text, may contain newlines. /// The highest line width. public static int MaxWidthLine (ustring text) { var result = TextFormatter.SplitNewLine (text); return result.Max (x => x.ConsoleWidth); } /// /// Gets the total width of the passed text. /// /// /// The text width. public static int GetTextWidth (ustring text) { return text.ToRuneList ().Sum (r => Math.Max (Rune.ColumnWidth (r), 1)); } /// /// Gets the maximum characters width from the list based on the /// and the . /// /// The lines. /// The start index. /// The length. /// The maximum characters width. public static int GetSumMaxCharWidth (List lines, int startIndex = -1, int length = -1) { var max = 0; for (int i = (startIndex == -1 ? 0 : startIndex); i < (length == -1 ? lines.Count : startIndex + length); i++) { var runes = lines [i]; if (runes.Length > 0) max += runes.Max (r => Math.Max (Rune.ColumnWidth (r), 1)); } return max; } /// /// Gets the maximum characters width from the text based on the /// and the . /// /// The text. /// The start index. /// The length. /// The maximum characters width. public static int GetSumMaxCharWidth (ustring text, int startIndex = -1, int length = -1) { var max = 0; var runes = text.ToRunes (); for (int i = (startIndex == -1 ? 0 : startIndex); i < (length == -1 ? runes.Length : startIndex + length); i++) { max += Math.Max (Rune.ColumnWidth (runes [i]), 1); } return max; } /// /// Gets the index position from the text based on the . /// /// The text. /// The width. /// The index of the text that fit the width. public static int GetMaxLengthForWidth (ustring text, int width) { var runes = text.ToRuneList (); var runesLength = 0; var runeIdx = 0; for (; runeIdx < runes.Count; runeIdx++) { var runeWidth = Math.Max (Rune.ColumnWidth (runes [runeIdx]), 1); if (runesLength + runeWidth > width) { break; } runesLength += runeWidth; } return runeIdx; } /// /// Gets the index position from the list based on the . /// /// The runes. /// The width. /// The index of the list that fit the width. public static int GetMaxLengthForWidth (List runes, int width) { var runesLength = 0; var runeIdx = 0; for (; runeIdx < runes.Count; runeIdx++) { var runeWidth = Math.Max (Rune.ColumnWidth (runes [runeIdx]), 1); if (runesLength + runeWidth > width) { break; } runesLength += runeWidth; } return runeIdx; } /// /// Gets the index position from the list based on the . /// /// The lines. /// The width. /// The index of the list that fit the width. public static int GetMaxColsForWidth (List lines, int width) { var runesLength = 0; var lineIdx = 0; for (; lineIdx < lines.Count; lineIdx++) { var runes = lines [lineIdx].ToRuneList (); var maxRruneWidth = runes.Count > 0 ? runes.Max (r => Math.Max (Rune.ColumnWidth (r), 1)) : 1; if (runesLength + maxRruneWidth > width) { break; } runesLength += maxRruneWidth; } return lineIdx; } /// /// Calculates the rectangle required to hold text, assuming no word wrapping. /// /// The x location of the rectangle /// The y location of the rectangle /// The text to measure /// The text direction. /// public static Rect CalcRect (int x, int y, ustring text, TextDirection direction = TextDirection.LeftRight_TopBottom) { if (ustring.IsNullOrEmpty (text)) { return new Rect (new Point (x, y), Size.Empty); } int w, h; if (IsHorizontalDirection (direction)) { int mw = 0; int ml = 1; int cols = 0; foreach (var rune in text) { if (rune == '\n') { ml++; if (cols > mw) { mw = cols; } cols = 0; } else if (rune != '\r') { cols++; var rw = Rune.ColumnWidth (rune); if (rw > 0) { rw--; } cols += rw; } } if (cols > mw) { mw = cols; } w = mw; h = ml; } else { int vw = 1, cw = 1; int vh = 0; int rows = 0; foreach (var rune in text) { if (rune == '\n') { vw++; if (rows > vh) { vh = rows; } rows = 0; cw = 1; } else if (rune != '\r') { rows++; var rw = Rune.ColumnWidth (rune); if (cw < rw) { cw = rw; vw++; } } } if (rows > vh) { vh = rows; } w = vw; h = vh; } return new Rect (x, y, w, h); } /// /// Finds the hotkey and its location in text. /// /// The text to look in. /// The hotkey specifier (e.g. '_') to look for. /// If true the legacy behavior of identifying the first upper case character as the hotkey will be enabled. /// Regardless of the value of this parameter, hotKeySpecifier takes precedence. /// Outputs the Rune index into text. /// Outputs the hotKey. /// true if a hotkey was found; false otherwise. public static bool FindHotKey (ustring text, Rune hotKeySpecifier, bool firstUpperCase, out int hotPos, out Key hotKey) { if (ustring.IsNullOrEmpty (text) || hotKeySpecifier == (Rune)0xFFFF) { hotPos = -1; hotKey = Key.Unknown; return false; } Rune hot_key = (Rune)0; int hot_pos = -1; // Use first hot_key char passed into 'hotKey'. // TODO: Ignore hot_key of two are provided // TODO: Do not support non-alphanumeric chars that can't be typed int i = 0; foreach (Rune c in text) { if ((char)c != 0xFFFD) { if (c == hotKeySpecifier) { hot_pos = i; } else if (hot_pos > -1) { hot_key = c; break; } } i++; } // Legacy support - use first upper case char if the specifier was not found if (hot_pos == -1 && firstUpperCase) { i = 0; foreach (Rune c in text) { if ((char)c != 0xFFFD) { if (Rune.IsUpper (c)) { hot_key = c; hot_pos = i; break; } } i++; } } if (hot_key != (Rune)0 && hot_pos != -1) { hotPos = hot_pos; if (hot_key.IsValid && char.IsLetterOrDigit ((char)hot_key)) { hotKey = (Key)char.ToUpperInvariant ((char)hot_key); return true; } } hotPos = -1; hotKey = Key.Unknown; return false; } /// /// Replaces the Rune at the index specified by the hotPos parameter with a tag identifying /// it as the hotkey. /// /// The text to tag the hotkey in. /// The Rune index of the hotkey in text. /// The text with the hotkey tagged. /// /// The returned string will not render correctly without first un-doing the tag. To undo the tag, search for /// public ustring ReplaceHotKeyWithTag (ustring text, int hotPos) { // Set the high bit var runes = text.ToRuneList (); if (Rune.IsLetterOrNumber (runes [hotPos])) { runes [hotPos] = new Rune ((uint)runes [hotPos]); } return ustring.Make (runes); } /// /// Removes the hotkey specifier from text. /// /// The text to manipulate. /// The hot-key specifier (e.g. '_') to look for. /// Returns the position of the hot-key in the text. -1 if not found. /// The input text with the hotkey specifier ('_') removed. public static ustring RemoveHotKeySpecifier (ustring text, int hotPos, Rune hotKeySpecifier) { if (ustring.IsNullOrEmpty (text)) { return text; } // Scan ustring start = ustring.Empty; int i = 0; foreach (Rune c in text) { if (c == hotKeySpecifier && i == hotPos) { i++; continue; } start += ustring.Make (c); i++; } return start; } /// /// Draws the text held by to using the colors specified. /// /// Specifies the screen-relative location and maximum size for drawing the text. /// The color to use for all text except the hotkey /// The color to use to draw the hotkey /// Specifies the screen-relative location and maximum container size. /// Determines if the bounds width will be used (default) or only the text width will be used. public void Draw (Rect bounds, Attribute normalColor, Attribute hotColor, Rect containerBounds = default, bool fillRemaining = true) { // With this check, we protect against subclasses with overrides of Text (like Button) if (ustring.IsNullOrEmpty (text)) { return; } Application.Driver?.SetAttribute (normalColor); // Use "Lines" to ensure a Format (don't use "lines")) var linesFormated = Lines; switch (textDirection) { case TextDirection.TopBottom_RightLeft: case TextDirection.LeftRight_BottomTop: case TextDirection.RightLeft_BottomTop: case TextDirection.BottomTop_RightLeft: linesFormated.Reverse (); break; } var isVertical = IsVerticalDirection (textDirection); var savedClip = Application.Driver?.Clip; var maxBounds = bounds; if (Application.Driver != null) { Application.Driver.Clip = maxBounds = containerBounds == default ? bounds : new Rect (Math.Max (containerBounds.X, bounds.X), Math.Max (containerBounds.Y, bounds.Y), Math.Max (Math.Min (containerBounds.Width, containerBounds.Right - bounds.Left), 0), Math.Max (Math.Min (containerBounds.Height, containerBounds.Bottom - bounds.Top), 0)); } for (int line = 0; line < linesFormated.Count; line++) { if ((isVertical && line > bounds.Width) || (!isVertical && line > bounds.Height)) continue; if ((isVertical && line >= maxBounds.Left + maxBounds.Width - 1) || (!isVertical && line >= maxBounds.Top + maxBounds.Height - 1)) break; var runes = lines [line].ToRunes (); switch (textDirection) { case TextDirection.RightLeft_BottomTop: case TextDirection.RightLeft_TopBottom: case TextDirection.BottomTop_LeftRight: case TextDirection.BottomTop_RightLeft: runes = runes.Reverse ().ToArray (); break; } // When text is justified, we lost left or right, so we use the direction to align. int x, y; // Horizontal Alignment if (textAlignment == TextAlignment.Right || (textAlignment == TextAlignment.Justified && !IsLeftToRight (textDirection))) { if (isVertical) { var runesWidth = GetSumMaxCharWidth (Lines, line); x = bounds.Right - runesWidth; CursorPosition = bounds.Width - runesWidth + (hotKeyPos > -1 ? hotKeyPos : 0); } else { var runesWidth = GetTextWidth (ustring.Make (runes)); x = bounds.Right - runesWidth; CursorPosition = bounds.Width - runesWidth + (hotKeyPos > -1 ? hotKeyPos : 0); } } else if (textAlignment == TextAlignment.Left || textAlignment == TextAlignment.Justified) { if (isVertical) { var runesWidth = line > 0 ? GetSumMaxCharWidth (Lines, 0, line) : 0; x = bounds.Left + runesWidth; } else { x = bounds.Left; } CursorPosition = hotKeyPos > -1 ? hotKeyPos : 0; } else if (textAlignment == TextAlignment.Centered) { if (isVertical) { var runesWidth = GetSumMaxCharWidth (Lines, line); x = bounds.Left + line + ((bounds.Width - runesWidth) / 2); CursorPosition = (bounds.Width - runesWidth) / 2 + (hotKeyPos > -1 ? hotKeyPos : 0); } else { var runesWidth = GetTextWidth (ustring.Make (runes)); x = bounds.Left + (bounds.Width - runesWidth) / 2; CursorPosition = (bounds.Width - runesWidth) / 2 + (hotKeyPos > -1 ? hotKeyPos : 0); } } else { throw new ArgumentOutOfRangeException (); } // Vertical Alignment if (textVerticalAlignment == VerticalTextAlignment.Bottom || (textVerticalAlignment == VerticalTextAlignment.Justified && !IsTopToBottom (textDirection))) { if (isVertical) { y = bounds.Bottom - runes.Length; } else { y = bounds.Bottom - Lines.Count + line; } } else if (textVerticalAlignment == VerticalTextAlignment.Top || textVerticalAlignment == VerticalTextAlignment.Justified) { if (isVertical) { y = bounds.Top; } else { y = bounds.Top + line; } } else if (textVerticalAlignment == VerticalTextAlignment.Middle) { if (isVertical) { var s = (bounds.Height - runes.Length) / 2; y = bounds.Top + s; } else { var s = (bounds.Height - Lines.Count) / 2; y = bounds.Top + line + s; } } else { throw new ArgumentOutOfRangeException (); } var start = isVertical ? bounds.Top : bounds.Left; var size = isVertical ? bounds.Height : bounds.Width; var current = start; for (var idx = (isVertical ? start - y : start - x); current < start + size; idx++) { if (!fillRemaining && idx < 0) { current++; continue; } else if (!fillRemaining && idx > runes.Length - 1) { break; } if ((!isVertical && idx > maxBounds.Left + maxBounds.Width - bounds.X) || (isVertical && idx > maxBounds.Top + maxBounds.Height - bounds.Y)) break; var rune = (Rune)' '; if (isVertical) { Application.Driver?.Move (x, current); if (idx >= 0 && idx < runes.Length) { rune = runes [idx]; } } else { Application.Driver?.Move (current, y); if (idx >= 0 && idx < runes.Length) { rune = runes [idx]; } } if (HotKeyPos > -1 && idx == HotKeyPos) { if ((isVertical && textVerticalAlignment == VerticalTextAlignment.Justified) || (!isVertical && textAlignment == TextAlignment.Justified)) { CursorPosition = idx - start; } Application.Driver?.SetAttribute (hotColor); Application.Driver?.AddRune (rune); Application.Driver?.SetAttribute (normalColor); } else { Application.Driver?.AddRune (rune); } var runeWidth = Math.Max (Rune.ColumnWidth (rune), 1); if (isVertical) { current++; } else { current += runeWidth; } var nextRuneWidth = idx + 1 > -1 && idx + 1 < runes.Length ? Rune.ColumnWidth (runes [idx + 1]) : 0; if (!isVertical && idx + 1 < runes.Length && current + nextRuneWidth > start + size) { break; } } } if (Application.Driver != null) Application.Driver.Clip = (Rect)savedClip; } } }