use std::cmp::{max, min}; use theme::ColorStyle; use vec::Vec2; use Printer; /// Provide scrolling functionalities to a view. #[derive(Default)] pub struct ScrollBase { /// First line visible pub start_line: usize, /// Content height pub content_height: usize, /// Number of lines displayed pub view_height: usize, /// Padding for the scrollbar /// /// If present, the scrollbar will be shifted /// `scrollbar_padding` columns to the left. /// /// (Useful when each item includes its own side borders, /// to draw the scrollbar inside.) pub scrollbar_padding: usize, } impl ScrollBase { /// Creates a new, uninitialized scrollbar. pub fn new() -> Self { ScrollBase { start_line: 0, content_height: 0, view_height: 0, scrollbar_padding: 0, } } /// Shifts the scrollbar toward the inside of the view. /// /// Used by views that draw their side borders in the children. /// Pushing the scrollbar to the left allows it to stay inside /// the borders. pub fn bar_padding(mut self, padding: usize) -> Self { self.scrollbar_padding = padding; self } /// Call this method whem the content or the view changes. pub fn set_heights(&mut self, view_height: usize, content_height: usize) { self.view_height = view_height; self.content_height = content_height; if self.scrollable() { self.start_line = min(self.start_line, self.content_height - self.view_height); } else { self.start_line = 0; } } /// Returns `TRUE` if the view needs to scroll. pub fn scrollable(&self) -> bool { self.view_height < self.content_height } /// Returns `TRUE` unless we are at the top. pub fn can_scroll_up(&self) -> bool { self.start_line > 0 } /// Returns `TRUE` unless we are at the bottom. pub fn can_scroll_down(&self) -> bool { self.start_line + self.view_height < self.content_height } /// Scroll to the top of the view. pub fn scroll_top(&mut self) { self.start_line = 0; } /// Makes sure that the given line is visible, scrolling if needed. pub fn scroll_to(&mut self, y: usize) { if y >= self.start_line + self.view_height { self.start_line = 1 + y - self.view_height; } else if y < self.start_line { self.start_line = y; } } /// Scroll to the bottom of the view. pub fn scroll_bottom(&mut self) { self.start_line = self.content_height - self.view_height; } /// Scroll down by the given number of line. /// /// Never further than the bottom of the view. pub fn scroll_down(&mut self, n: usize) { self.start_line = min(self.start_line + n, self.content_height - self.view_height); } /// Scroll up by the given number of lines. /// /// Never above the top of the view. pub fn scroll_up(&mut self, n: usize) { self.start_line -= min(self.start_line, n); } /// Draws the scroll bar and the content using the given drawer. /// /// `line_drawer` will be called once for each line that needs to be drawn. /// It will be given the absolute ID of the item to draw.. /// It will also be given a printer with the correct offset, /// so it should only print on the first line. /// /// # Examples /// /// ``` /// # use cursive::view::ScrollBase; /// # use cursive::Printer; /// # use cursive::theme; /// # let scrollbase = ScrollBase::new(); /// # let printer = Printer::new((5,1), theme::load_default()); /// # let printer = &printer; /// let lines = ["Line 1", "Line number 2"]; /// scrollbase.draw(printer, |printer, i| { /// printer.print((0,0), lines[i]); /// }); /// ``` pub fn draw(&self, printer: &Printer, line_drawer: F) where F: Fn(&Printer, usize) { if self.view_height == 0 { return; } // Print the content in a sub_printer let max_y = min(self.view_height, self.content_height - self.start_line); let w = if self.scrollable() { if printer.size.x < 2 { return; } printer.size.x - 2 + self.scrollbar_padding // TODO: 2 } else { printer.size.x }; for y in 0..max_y { // Y is the actual coordinate of the line. // The item ID is then Y + self.start_line line_drawer(&printer.sub_printer(Vec2::new(0, y), Vec2::new(w, 1), true), y + self.start_line); } // And draw the scrollbar if needed if self.view_height < self.content_height { // We directly compute the size of the scrollbar // (that way we avoid using floats). // (ratio) * max_height // Where ratio is ({start or end} / content.height) let height = max(1, self.view_height * self.view_height / self.content_height); // Number of different possible positions let steps = self.view_height - height + 1; // Now let start = steps * self.start_line / (1 + self.content_height - self.view_height); let color = if printer.focused { ColorStyle::Highlight } else { ColorStyle::HighlightInactive }; // TODO: use 1 instead of 2 let scrollbar_x = printer.size.x - 1 - self.scrollbar_padding; printer.print_vline((scrollbar_x, 0), printer.size.y, "|"); printer.with_color(color, |printer| { printer.print_vline((scrollbar_x, start), height, " "); }); } } }