refactor: 重构 MSCanvas 颜色配置
This commit is contained in:
300
src/mscanvas.rs
300
src/mscanvas.rs
@@ -122,9 +122,8 @@ pub struct MSCanvas {
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pixels: Vec<u8>,
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pixels_bak: Vec<u8>,
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/// 当前笔画颜色
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foreground_color: MSColor,
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background_color: MSColor,
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fill_color: MSColor,
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stroke_color: MSColor,
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line_width: i32,
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@@ -139,32 +138,32 @@ impl MSCanvas {
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height,
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pixels: vec![255; (width * height * 4) as usize],
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pixels_bak: Vec::new(),
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foreground_color: MSColor::BLACK,
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background_color: MSColor::WHITE,
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fill_color: MSColor::BLACK,
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stroke_color: MSColor::WHITE,
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line_width: 1,
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path2d: Path2D::new(),
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}
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}
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pub fn set_foreground_color(&mut self, color: MSColor) {
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self.foreground_color = color;
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}
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pub fn set_background_color(&mut self, color: MSColor) {
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self.background_color = color;
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}
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pub fn set_line_width(&mut self, line_width: i32) {
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pub fn line_width(&mut self, line_width: i32) {
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self.line_width = line_width;
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}
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}
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#[allow(unused)]
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impl MSCanvas {
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pub fn fill_color(&mut self, color: MSColor) {
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self.fill_color = color;
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}
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pub fn stroke_color(&mut self, color: MSColor) {
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self.stroke_color = color;
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}
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pub fn size(&self) -> (i32, i32) {
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(self.width, self.height)
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}
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pub fn get_pixels_ref(&self) -> &[u8] {
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&self.pixels
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}
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pub fn get_pixels(&self) -> Vec<u8> {
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self.pixels.clone()
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}
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@@ -222,30 +221,21 @@ impl MSCanvas {
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self.pixels[index + 3],
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)
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}
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}
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pub fn draw_pixel_at(&mut self, point: Point) {
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#[allow(unused)]
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impl MSCanvas {
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pub fn fill_pixel_at(&mut self, point: Point) {
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let Point { x, y } = point;
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let x = x as i32;
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let y = y as i32;
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// 边界检查
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if x < 0 || x >= self.width || y < 0 || y >= self.height {
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return;
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}
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// 计算索引:(y * width + x) * 4
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let index = ((y * self.width + x) * 4) as usize;
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// 写入 RGBA 数据
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// 注意:Color 的 r, g, b, a 是 0.0 - 1.0,需要转为 0 - 255
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self.pixels[index] = self.foreground_color.r; // R
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self.pixels[index + 1] = self.foreground_color.g; // G
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self.pixels[index + 2] = self.foreground_color.b; // B
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self.pixels[index + 3] = self.foreground_color.a; // A
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self.fill_pixel_at1(x as i32, y as i32);
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}
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pub fn draw_pixel_color_at(&mut self, point: Point, color: MSColor) {
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pub fn stroke_pixel_at(&mut self, point: Point) {
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let Point { x, y } = point;
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let x = x as i32;
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let y = y as i32;
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self.stroke_pixel_at1(x as i32, y as i32);
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}
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fn fill_pixel_at1(&mut self, x: i32, y: i32) {
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// 边界检查
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if x < 0 || x >= self.width || y < 0 || y >= self.height {
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return;
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@@ -255,13 +245,13 @@ impl MSCanvas {
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// 写入 RGBA 数据
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// 注意:Color 的 r, g, b, a 是 0.0 - 1.0,需要转为 0 - 255
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self.pixels[index] = color.r; // R
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self.pixels[index + 1] = color.g; // G
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self.pixels[index + 2] = color.b; // B
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self.pixels[index + 3] = color.a; // A
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self.pixels[index] = self.fill_color.r; // R
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self.pixels[index + 1] = self.fill_color.g; // G
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self.pixels[index + 2] = self.fill_color.b; // B
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self.pixels[index + 3] = self.fill_color.a; // A
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}
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fn draw_pixel_color_at1(&mut self, x: i32, y: i32, color: MSColor) {
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fn stroke_pixel_at1(&mut self, x: i32, y: i32) {
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// 边界检查
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if x < 0 || x >= self.width || y < 0 || y >= self.height {
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return;
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@@ -271,60 +261,51 @@ impl MSCanvas {
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// 写入 RGBA 数据
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// 注意:Color 的 r, g, b, a 是 0.0 - 1.0,需要转为 0 - 255
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self.pixels[index] = color.r; // R
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self.pixels[index + 1] = color.g; // G
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self.pixels[index + 2] = color.b; // B
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self.pixels[index + 3] = color.a; // A
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self.pixels[index] = self.stroke_color.r; // R
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self.pixels[index + 1] = self.stroke_color.g; // G
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self.pixels[index + 2] = self.stroke_color.b; // B
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self.pixels[index + 3] = self.stroke_color.a; // A
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}
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fn draw_pixel_at1(&mut self, x: i32, y: i32) {
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self.draw_pixel_color_at1(x, y, self.foreground_color);
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}
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pub fn draw_pixel_row(&mut self, xs: i32, xe: i32, y: i32) {
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self.draw_pixel_row_color(xs, xe, y, self.foreground_color);
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}
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pub fn draw_pixel_row_color(&mut self, xs: i32, xe: i32, y: i32, color: MSColor) {
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fn fill_row(&mut self, xs: i32, xe: i32, y: i32) {
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if y < 0 || y >= self.height {
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return;
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}
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let xs = xs.clamp(0, self.width - 1);
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let xe = xe.clamp(0, self.width as i32);
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let y = y;
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for x in xs..xe {
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let index = ((y * self.width + x) * 4) as usize;
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// 写入 RGBA 数据
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// 注意:Color 的 r, g, b, a 是 0.0 - 1.0,需要转为 0 - 255
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self.pixels[index] = color.r; // R
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self.pixels[index + 1] = color.g; // G
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self.pixels[index + 2] = color.b; // B
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self.pixels[index + 3] = color.a; // A
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self.pixels[index] = self.fill_color.r; // R
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self.pixels[index + 1] = self.fill_color.g; // G
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self.pixels[index + 2] = self.fill_color.b; // B
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self.pixels[index + 3] = self.fill_color.a; // A
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}
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}
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pub fn draw_pixels(&mut self, points: Vec<Point>) {
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pub fn fill_pixels(&mut self, points: Vec<Point>) {
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for point in points {
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self.draw_pixel_at(point);
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self.fill_pixel_at(point);
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}
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}
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pub fn draw_cross_color(&mut self, point: Point, color: MSColor) {
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pub fn stroke_cross_color(&mut self, point: Point) {
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let Point { x, y } = point;
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let r = 10;
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for dy in -r..=r {
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self.draw_pixel_color_at(Point::new(point.x, point.y + dy as f32), color);
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self.stroke_pixel_at(Point::new(point.x, point.y + dy as f32));
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}
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for dx in -r..=r {
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self.draw_pixel_color_at(Point::new(point.x + dx as f32, point.y), color);
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self.stroke_pixel_at(Point::new(point.x + dx as f32, point.y));
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}
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}
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pub fn brush_circle(&mut self, center: Point) {
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if self.line_width <= 1 {
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self.draw_pixel_at(center);
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self.fill_pixel_at(center);
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return;
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}
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let square = (self.line_width as f32) * (self.line_width as f32) / 4.0;
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@@ -333,7 +314,7 @@ impl MSCanvas {
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for dy in -l..r {
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for dx in -l..r {
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if (dx * dx + dy * dy) as f32 <= square {
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self.draw_pixel_at(Point::new(center.x + dx as f32, center.y + dy as f32));
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self.fill_pixel_at(Point::new(center.x + dx as f32, center.y + dy as f32));
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}
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}
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}
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@@ -341,14 +322,14 @@ impl MSCanvas {
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pub fn brush_square(&mut self, center: Point) {
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if self.line_width <= 1 {
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self.draw_pixel_at(center);
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self.fill_pixel_at(center);
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return;
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}
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let l = self.line_width / 2;
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let r = self.line_width - l;
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for dy in -l..r {
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for dx in -l..r {
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self.draw_pixel_at(Point::new(center.x + dx as f32, center.y + dy as f32));
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self.fill_pixel_at(Point::new(center.x + dx as f32, center.y + dy as f32));
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}
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}
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}
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@@ -359,7 +340,7 @@ impl MSCanvas {
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// 左右扩展,填补线条的空白
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for dx in 0..2 {
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for d in -l..r {
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self.draw_pixel_at(Point::new(
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self.fill_pixel_at(Point::new(
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center.x - (d as f32) + (dx as f32),
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center.y - d as f32,
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));
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@@ -373,7 +354,7 @@ impl MSCanvas {
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// 左右扩展,填补线条的空白
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for dx in 0..2 {
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for d in -l..r {
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self.draw_pixel_at(Point::new(
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self.fill_pixel_at(Point::new(
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center.x + d as f32 + (dx as f32),
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center.y - d as f32,
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));
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@@ -463,7 +444,7 @@ impl MSCanvas {
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pub fn draw_line(&mut self, begin: Point, end: Point) {
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let points = self.bresenham_line(begin, end);
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for point in points {
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self.draw_pixel_at(point);
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self.fill_pixel_at(point);
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}
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}
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@@ -493,28 +474,23 @@ impl MSCanvas {
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self.pixels = self.pixels_bak.clone();
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}
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pub fn fill_slow(&mut self, begin: Point) -> (i32, i32) {
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pub fn fill_slow(&mut self, begin: Point) {
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let start_x = begin.x as i32;
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let start_y = begin.y as i32;
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let target_color = self.pixel_at(start_x, start_y);
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if target_color == self.foreground_color {
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return (0, 0);
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if target_color == self.fill_color {
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return;
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}
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let mut scan_points = vec![(start_x, start_y)];
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let width = self.width;
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let height = self.height;
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let mut iter_count = 0;
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let mut fill_count = 0;
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while let Some((x, y)) = scan_points.pop() {
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iter_count += 1;
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if x < 0 || x >= self.width || y < 0 || y >= self.height {
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continue;
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}
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if self.pixel_at(x, y) == target_color {
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self.draw_pixel_at1(x, y);
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fill_count += 1;
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self.fill_pixel_at1(x, y);
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let p1 = (x - 1, y);
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let p2 = (x + 1, y);
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@@ -526,10 +502,9 @@ impl MSCanvas {
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scan_points.push(p4);
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}
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}
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(iter_count, fill_count)
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}
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fn fill_scanline_with_color(&mut self, begin: Point, color: MSColor) {
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pub fn fill_scanline(&mut self, begin: Point) {
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let start_x = begin.x as i32;
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let start_y = begin.y as i32;
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let width = self.width;
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@@ -541,7 +516,7 @@ impl MSCanvas {
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}
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let target_color = self.pixel_at(start_x, start_y);
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if target_color == color {
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if target_color == self.fill_color {
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return;
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}
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@@ -560,7 +535,7 @@ impl MSCanvas {
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// 填充当前行 [lx, rx]
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for x in lx..=rx {
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self.draw_pixel_color_at1(x, y, color);
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self.fill_pixel_at1(x, y);
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}
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// 检查上一行 (y - 1)
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@@ -599,61 +574,8 @@ impl MSCanvas {
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}
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}
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pub fn fill_scanline(&mut self, begin: Point) {
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self.fill_scanline_with_color(begin, self.foreground_color);
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}
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pub fn arc_1px(
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&mut self,
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center: Point,
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radius: f32,
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start_angle: f32,
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end_angle: f32,
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counterclockwise: bool,
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) {
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if radius <= 0.0 {
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return;
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}
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// 根据半径确定步长,步长越小曲线越平滑
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// 圆周长约为 2πr,每像素对应的角度步长约为 1/r 弧度
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let step = (1.0 / radius).max(0.001_f32);
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// 将角度规范化,确保 start_angle 和 end_angle 在合理范围内
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let (start, end) = if counterclockwise {
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// 逆时针:角度递减,将区间转成递增处理
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// 逆时针从 start_angle 到 end_angle,等价于顺时针从 end_angle 到 start_angle
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let mut s = end_angle;
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let mut e = start_angle;
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// 保证 e >= s
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while e < s {
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e += std::f32::consts::TAU;
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}
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(s, e)
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} else {
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// 顺时针:角度递增
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let mut s = start_angle;
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let mut e = end_angle;
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// 保证 e >= s
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while e < s {
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e += std::f32::consts::TAU;
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}
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(s, e)
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};
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// 沿角度步进,绘制每个像素点
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let mut angle = start;
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while angle <= end + step {
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let a = angle.min(end);
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let x = center.x + radius * a.cos();
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let y = center.y + radius * a.sin();
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self.draw_pixel_at(Point::new(x, y));
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angle += step;
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}
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}
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/// 圆弧从 x 轴方向开始计算, start_angle end_angle 为弧度,counterclockwise 是否逆时针方向
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pub fn arc(
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pub fn stroke_arc(
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&mut self,
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center: Point,
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radius: f32,
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@@ -662,7 +584,7 @@ impl MSCanvas {
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counterclockwise: bool,
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) {
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if radius <= 1.0 {
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self.draw_pixel_at(center);
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self.fill_pixel_at(center);
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return;
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}
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@@ -702,7 +624,7 @@ impl MSCanvas {
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|| (counterclockwise && (theta >= end_angle || theta <= start_angle))
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|| (!counterclockwise && theta >= start_angle && theta <= end_angle)
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{
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self.draw_pixel_at(Point::new(x as f32, y as f32));
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self.stroke_pixel_at1(x, y);
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}
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}
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}
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@@ -714,18 +636,19 @@ impl MSCanvas {
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}
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}
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fn fill_rect_color(&mut self, x: i32, y: i32, width: i32, height: i32, color: MSColor) {
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fn fill_rect_stroke_color(&mut self, x: i32, y: i32, width: i32, height: i32) {
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let old_fill_color = self.fill_color;
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self.fill_color(self.stroke_color);
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for yi in y..(y + height) {
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self.draw_pixel_row_color(x, x + width, yi, color);
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self.fill_row(x, x + width, yi);
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}
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}
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fn fill_rect_foreground_color(&mut self, x: i32, y: i32, width: i32, height: i32) {
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self.fill_rect_color(x, y, width, height, self.foreground_color);
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self.fill_color(old_fill_color);
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}
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pub fn fill_rect(&mut self, x: i32, y: i32, width: i32, height: i32) {
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self.fill_rect_color(x, y, width, height, self.background_color)
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for yi in y..(y + height) {
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self.fill_row(x, x + width, yi);
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}
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}
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/// 填充一个圆角矩形
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@@ -769,12 +692,12 @@ impl MSCanvas {
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// 判断是否在“直边区域”(无需检查圆角)
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if px >= min_x + radius_int && px <= max_x - radius_int {
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// 在左右圆角之间的竖直带 → 一定在内部
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self.draw_pixel_at1(px, py);
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self.fill_pixel_at1(px, py);
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continue;
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}
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if py >= min_y + radius_int && py <= max_y - radius_int {
|
||||
// 在上下圆角之间的水平带 → 一定在内部
|
||||
self.draw_pixel_at1(px, py);
|
||||
self.fill_pixel_at1(px, py);
|
||||
continue;
|
||||
}
|
||||
|
||||
@@ -790,7 +713,7 @@ impl MSCanvas {
|
||||
(distance_sq1((px, py), corners[3]) <= radius_sq);
|
||||
|
||||
if in_corner {
|
||||
self.draw_pixel_at1(px, py);
|
||||
self.fill_pixel_at1(px, py);
|
||||
}
|
||||
}
|
||||
}
|
||||
@@ -816,63 +739,63 @@ impl MSCanvas {
|
||||
self.fill_round_rect(x, y, width, height, radius);
|
||||
}
|
||||
|
||||
pub fn round_rect(&mut self, x: f32, y: f32, width: f32, height: f32, radius: f32) {
|
||||
pub fn stroke_round_rect(&mut self, x: f32, y: f32, width: f32, height: f32, radius: f32) {
|
||||
if (width as i32) < 2 * self.line_width
|
||||
|| (height as i32) < 2 * self.line_width
|
||||
|| width < 2.0 * radius
|
||||
|| height < 2.0 * radius
|
||||
{
|
||||
self.fill_rect(x as i32, y as i32, width as i32, height as i32);
|
||||
self.fill_rect_stroke_color(x as i32, y as i32, width as i32, height as i32);
|
||||
return;
|
||||
}
|
||||
|
||||
self.fill_rect_foreground_color(
|
||||
self.fill_rect_stroke_color(
|
||||
(x + radius) as i32,
|
||||
y as i32,
|
||||
(width - 2.0 * radius) as i32,
|
||||
self.line_width,
|
||||
);
|
||||
self.fill_rect_foreground_color(
|
||||
self.fill_rect_stroke_color(
|
||||
(x + radius) as i32,
|
||||
(y + height) as i32 - self.line_width,
|
||||
(width - 2.0 * radius) as i32,
|
||||
self.line_width,
|
||||
);
|
||||
self.fill_rect_foreground_color(
|
||||
self.fill_rect_stroke_color(
|
||||
x as i32,
|
||||
(y + radius) as i32,
|
||||
self.line_width,
|
||||
(height - 2.0 * radius) as i32,
|
||||
);
|
||||
self.fill_rect_foreground_color(
|
||||
self.fill_rect_stroke_color(
|
||||
(x + width) as i32 - self.line_width,
|
||||
(y + radius) as i32,
|
||||
self.line_width,
|
||||
(height - 2.0 * radius) as i32,
|
||||
);
|
||||
|
||||
self.arc(
|
||||
self.stroke_arc(
|
||||
Point::new(x + radius, y + radius),
|
||||
radius,
|
||||
std::f32::consts::PI,
|
||||
std::f32::consts::PI + std::f32::consts::FRAC_PI_2,
|
||||
false,
|
||||
);
|
||||
self.arc(
|
||||
self.stroke_arc(
|
||||
Point::new(x + width - 1.0 - radius, y + radius),
|
||||
radius,
|
||||
0.0,
|
||||
std::f32::consts::PI + std::f32::consts::FRAC_PI_2,
|
||||
true,
|
||||
);
|
||||
self.arc(
|
||||
self.stroke_arc(
|
||||
Point::new(x + radius, y + height - 1.0 - radius),
|
||||
radius,
|
||||
std::f32::consts::FRAC_PI_2,
|
||||
std::f32::consts::PI,
|
||||
false,
|
||||
);
|
||||
self.arc(
|
||||
self.stroke_arc(
|
||||
Point::new(x + width - 1.0 - radius, y + height - 1.0 - radius),
|
||||
radius,
|
||||
0.0,
|
||||
@@ -881,7 +804,7 @@ impl MSCanvas {
|
||||
);
|
||||
}
|
||||
|
||||
pub fn round_rect1(&mut self, p1: Point, p2: Point, radius: f32) {
|
||||
pub fn stroke_round_rect1(&mut self, p1: Point, p2: Point, radius: f32) {
|
||||
let mut x = p1.x;
|
||||
let mut y = p1.y;
|
||||
let mut width = (p2.x - p1.x);
|
||||
@@ -898,21 +821,21 @@ impl MSCanvas {
|
||||
y += height;
|
||||
height = -height;
|
||||
}
|
||||
self.round_rect(x, y, width, height, radius);
|
||||
self.stroke_round_rect(x, y, width, height, radius);
|
||||
}
|
||||
|
||||
pub fn rect(&mut self, x: i32, y: i32, width: i32, height: i32) {
|
||||
pub fn stroke_rect(&mut self, x: i32, y: i32, width: i32, height: i32) {
|
||||
if width < 2 * self.line_width || height < 2 * self.line_width {
|
||||
self.fill_rect_foreground_color(x, y, width, height);
|
||||
self.fill_rect_stroke_color(x, y, width, height);
|
||||
return;
|
||||
}
|
||||
self.fill_rect_foreground_color(x, y, width, self.line_width);
|
||||
self.fill_rect_foreground_color(x, y + height - self.line_width, width, self.line_width);
|
||||
self.fill_rect_foreground_color(x, y, self.line_width, height);
|
||||
self.fill_rect_foreground_color(x + width - self.line_width, y, self.line_width, height);
|
||||
self.fill_rect_stroke_color(x, y, width, self.line_width);
|
||||
self.fill_rect_stroke_color(x, y + height - self.line_width, width, self.line_width);
|
||||
self.fill_rect_stroke_color(x, y, self.line_width, height);
|
||||
self.fill_rect_stroke_color(x + width - self.line_width, y, self.line_width, height);
|
||||
}
|
||||
|
||||
pub fn rect1(&mut self, p1: Point, p2: Point) {
|
||||
pub fn stroke_rect1(&mut self, p1: Point, p2: Point) {
|
||||
let mut x = p1.x;
|
||||
let mut y = p1.y;
|
||||
let mut width = (p2.x - p1.x);
|
||||
@@ -929,7 +852,7 @@ impl MSCanvas {
|
||||
y += height;
|
||||
height = -height;
|
||||
}
|
||||
self.rect(x as i32, y as i32, width as i32, height as i32);
|
||||
self.stroke_rect(x as i32, y as i32, width as i32, height as i32);
|
||||
}
|
||||
|
||||
pub fn clear(&mut self) {
|
||||
@@ -967,7 +890,7 @@ impl MSCanvas {
|
||||
// 确保我们只在圆形区域内绘制,而非整个正方形区域
|
||||
if (offset_x * offset_x + offset_y * offset_y) <= (radius * radius) {
|
||||
let point = Point::new(center.x + offset_x as f32, center.y + offset_y as f32);
|
||||
self.draw_pixel_at(point);
|
||||
self.fill_pixel_at(point);
|
||||
}
|
||||
}
|
||||
}
|
||||
@@ -1008,7 +931,7 @@ impl MSCanvas {
|
||||
self.bezier(points);
|
||||
}
|
||||
|
||||
pub fn ellipse(&mut self, center: Point, rx: f32, ry: f32) {
|
||||
pub fn stroke_ellipse(&mut self, center: Point, rx: f32, ry: f32) {
|
||||
let mut x = 0.0;
|
||||
let mut y = ry; // 初始时将y设置为半高
|
||||
|
||||
@@ -1017,10 +940,10 @@ impl MSCanvas {
|
||||
|
||||
while ry * ry * x < rx * rx * y {
|
||||
// 在每个阶段,根据对称性绘制四个方向上的点
|
||||
self.draw_pixel_at(Point::new(center.x + x, center.y + y));
|
||||
self.draw_pixel_at(Point::new(center.x - x, center.y + y));
|
||||
self.draw_pixel_at(Point::new(center.x + x, center.y - y));
|
||||
self.draw_pixel_at(Point::new(center.x - x, center.y - y));
|
||||
self.stroke_pixel_at(Point::new(center.x + x, center.y + y));
|
||||
self.stroke_pixel_at(Point::new(center.x - x, center.y + y));
|
||||
self.stroke_pixel_at(Point::new(center.x + x, center.y - y));
|
||||
self.stroke_pixel_at(Point::new(center.x - x, center.y - y));
|
||||
|
||||
if decision < 0.0 {
|
||||
x += 1.0;
|
||||
@@ -1037,10 +960,10 @@ impl MSCanvas {
|
||||
|
||||
while y > 0.0 {
|
||||
// 同样地,根据对称性绘制四个方向上的点
|
||||
self.draw_pixel_at(Point::new(center.x + x, center.y + y));
|
||||
self.draw_pixel_at(Point::new(center.x - x, center.y + y));
|
||||
self.draw_pixel_at(Point::new(center.x + x, center.y - y));
|
||||
self.draw_pixel_at(Point::new(center.x - x, center.y - y));
|
||||
self.stroke_pixel_at(Point::new(center.x + x, center.y + y));
|
||||
self.stroke_pixel_at(Point::new(center.x - x, center.y + y));
|
||||
self.stroke_pixel_at(Point::new(center.x + x, center.y - y));
|
||||
self.stroke_pixel_at(Point::new(center.x - x, center.y - y));
|
||||
|
||||
if decision > 0.0 {
|
||||
y -= 1.0;
|
||||
@@ -1053,25 +976,25 @@ impl MSCanvas {
|
||||
}
|
||||
}
|
||||
|
||||
pub fn ellipse1(&mut self, p1: Point, p2: Point) {
|
||||
pub fn stroke_ellipse1(&mut self, p1: Point, p2: Point) {
|
||||
let mut rx = (p2.x - p1.x) / 2.0;
|
||||
let mut ry = (p2.y - p1.y) / 2.0;
|
||||
if rx > 0.0 && ry > 0.0 {
|
||||
let center = Point::new(p1.x + rx, p1.y + ry);
|
||||
self.ellipse(center, rx, ry);
|
||||
self.stroke_ellipse(center, rx, ry);
|
||||
} else if rx < 0.0 && ry < 0.0 {
|
||||
rx = -rx;
|
||||
ry = -ry;
|
||||
let center = Point::new(p1.x - rx, p1.y - ry);
|
||||
self.ellipse(center, rx, ry);
|
||||
self.stroke_ellipse(center, rx, ry);
|
||||
} else if ry < 0.0 {
|
||||
ry = -ry;
|
||||
let center = Point::new(p1.x + rx, p1.y - ry);
|
||||
self.ellipse(center, rx, ry);
|
||||
self.stroke_ellipse(center, rx, ry);
|
||||
} else {
|
||||
rx = -rx;
|
||||
let center = Point::new(p1.x - rx, p1.y + ry);
|
||||
self.ellipse(center, rx, ry);
|
||||
self.stroke_ellipse(center, rx, ry);
|
||||
}
|
||||
}
|
||||
|
||||
@@ -1106,7 +1029,7 @@ impl MSCanvas {
|
||||
// 判断是否在椭圆内:dx²/ rx² + dy²/ ry² <= 1
|
||||
// 等价于:dx² * ry² + dy² * rx² <= rx² * ry²
|
||||
if dx * dx * ry2 + dy * dy * rx2 <= rxy2 {
|
||||
self.draw_pixel_color_at1(x, y, self.background_color);
|
||||
self.fill_pixel_at1(x, y);
|
||||
}
|
||||
}
|
||||
}
|
||||
@@ -1184,10 +1107,7 @@ impl MSCanvas {
|
||||
let x_start = active_edges[i].x.ceil() as i32;
|
||||
let x_end = active_edges[i + 1].x.floor() as i32;
|
||||
for x in x_start..=x_end {
|
||||
self.draw_pixel_color_at(
|
||||
Point::new(x as f32, y as f32),
|
||||
self.background_color,
|
||||
);
|
||||
self.fill_pixel_at1(x, y);
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
37
src/paint.rs
37
src/paint.rs
@@ -291,12 +291,11 @@ impl PaintApp {
|
||||
// region iced application
|
||||
|
||||
pub fn new() -> Self {
|
||||
let mut canvas = MSCanvas::new(WIDTH as i32, HEIGHT as i32);
|
||||
let canvas = MSCanvas::new(WIDTH as i32, HEIGHT as i32);
|
||||
let (width, height) = canvas.size();
|
||||
let pixels = canvas.get_pixels();
|
||||
let config = Config::default();
|
||||
canvas.set_line_width(config.line_width);
|
||||
Self {
|
||||
|
||||
let mut ins = Self {
|
||||
tool_states: [false; Tool::Count as usize],
|
||||
tool_selected: Tool::Count,
|
||||
canvas,
|
||||
@@ -307,11 +306,17 @@ impl PaintApp {
|
||||
control_points: Vec::with_capacity(2),
|
||||
image_handle: image::Handle::from_rgba(width as u32, height as u32, pixels),
|
||||
dirty: false,
|
||||
config,
|
||||
config: Config::default(),
|
||||
brush_selected: None,
|
||||
foreground_color: MSColor::BLACK,
|
||||
background_color: MSColor::WHITE,
|
||||
}
|
||||
};
|
||||
|
||||
ins.canvas.fill_color(ins.foreground_color);
|
||||
ins.canvas.stroke_color(ins.foreground_color);
|
||||
ins.canvas.line_width(ins.config.line_width);
|
||||
|
||||
ins
|
||||
}
|
||||
|
||||
pub fn view(&self) -> Column<'_, Message> {
|
||||
@@ -577,13 +582,13 @@ impl PaintApp {
|
||||
Message::Increment(opt) => {
|
||||
self.config.incr(opt, 1);
|
||||
if opt == ConfigOption::LineWidth {
|
||||
self.canvas.set_line_width(self.config.line_width);
|
||||
self.canvas.line_width(self.config.line_width);
|
||||
}
|
||||
}
|
||||
Message::Decrement(opt) => {
|
||||
self.config.incr(opt, -1);
|
||||
if opt == ConfigOption::LineWidth {
|
||||
self.canvas.set_line_width(self.config.line_width);
|
||||
self.canvas.line_width(self.config.line_width);
|
||||
}
|
||||
}
|
||||
Message::BrushSelected(kind) => {
|
||||
@@ -605,18 +610,18 @@ impl PaintApp {
|
||||
}
|
||||
Message::ClickForegroundColor(color) => {
|
||||
self.foreground_color = color;
|
||||
self.canvas.set_foreground_color(color);
|
||||
self.canvas.stroke_color(color);
|
||||
self.canvas.fill_color(color);
|
||||
}
|
||||
Message::ClickBackgroundColor(color) => {
|
||||
self.background_color = color;
|
||||
self.canvas.set_background_color(color);
|
||||
}
|
||||
Message::SwapForeBackColor => {
|
||||
let tmp = self.foreground_color;
|
||||
self.foreground_color = self.background_color;
|
||||
self.background_color = tmp;
|
||||
self.canvas.set_foreground_color(self.foreground_color);
|
||||
self.canvas.set_background_color(self.background_color);
|
||||
self.canvas.stroke_color(self.foreground_color);
|
||||
self.canvas.fill_color(self.foreground_color);
|
||||
}
|
||||
_ => {}
|
||||
}
|
||||
@@ -692,7 +697,7 @@ impl PaintApp {
|
||||
match message {
|
||||
Message::MousePressed(pos) => {
|
||||
self.is_drawing = true;
|
||||
self.canvas.draw_pixel_at(pos);
|
||||
self.canvas.fill_pixel_at(pos);
|
||||
self.begin_point = pos;
|
||||
self.dirty = true;
|
||||
}
|
||||
@@ -894,7 +899,7 @@ impl PaintApp {
|
||||
Message::MouseMoved(pos) => {
|
||||
if self.is_drawing {
|
||||
self.canvas.restore_pixels();
|
||||
self.canvas.rect1(self.begin_point, pos);
|
||||
self.canvas.stroke_rect1(self.begin_point, pos);
|
||||
self.dirty = true;
|
||||
}
|
||||
}
|
||||
@@ -962,7 +967,7 @@ impl PaintApp {
|
||||
Message::MouseMoved(pos) => {
|
||||
if self.is_drawing {
|
||||
self.canvas.restore_pixels();
|
||||
self.canvas.ellipse1(self.begin_point, pos);
|
||||
self.canvas.stroke_ellipse1(self.begin_point, pos);
|
||||
self.dirty = true;
|
||||
}
|
||||
}
|
||||
@@ -984,7 +989,7 @@ impl PaintApp {
|
||||
Message::MouseMoved(pos) => {
|
||||
if self.is_drawing {
|
||||
self.canvas.restore_pixels();
|
||||
self.canvas.round_rect1(
|
||||
self.canvas.stroke_round_rect1(
|
||||
self.begin_point,
|
||||
pos,
|
||||
self.config.rounded_radius as f32,
|
||||
|
||||
Reference in New Issue
Block a user