feat: 优化 slide.rs
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@@ -1,23 +1,24 @@
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use ddddocr_rs::models::slide::Slide;
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use ddddocr_rs::{DdddOcr, DdddOcrBuilder}; // 假设你的包名是这个
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use image::Rgb;
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use std::fs;
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use std::path::Path;
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use image::Rgb;
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use ddddocr_rs::{DdddOcr, DdddOcrBuilder}; // 假设你的包名是这个
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use ddddocr_rs::models::slide::Slide;
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fn load_image<P: AsRef<Path>>(path: P) -> anyhow::Result<image::DynamicImage> {
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// 1. 先将泛型转为具体的 &Path 引用
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let path_ref = path.as_ref();
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// 2. 调用 open 时传入引用(utils::open 支持 AsRef<Path>)
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image::open(path_ref)
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.map_err(|e| {
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// 3. 此时 path_ref 依然有效,可以安全地在闭包中使用
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anyhow::anyhow!("无法加载图片 {:?}: {}", path_ref, e)
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})
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image::open(path_ref).map_err(|e| {
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// 3. 此时 path_ref 依然有效,可以安全地在闭包中使用
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anyhow::anyhow!("无法加载图片 {:?}: {}", path_ref, e)
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})
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}
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/// 将检测结果绘制在图像上并保存
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fn save_debug_image( image_bytes: &[u8], bboxes: &Vec<Vec<i32>>, output_path: &str) -> anyhow::Result<()> {
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fn save_debug_image(
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image_bytes: &[u8],
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bboxes: &Vec<Vec<i32>>,
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output_path: &str,
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) -> anyhow::Result<()> {
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let dynamic_img = image::load_from_memory(image_bytes)?;
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let mut img = dynamic_img.to_rgb8();
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let (width, height) = img.dimensions();
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@@ -35,16 +36,24 @@ fn save_debug_image( image_bytes: &[u8], bboxes: &Vec<Vec<i32>>, output_path: &s
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img.put_pixel(x, y1, red);
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img.put_pixel(x, y2, red);
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// 如果要加粗,多画一行
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if y1 + 1 < height { img.put_pixel(x, y1 + 1, red); }
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if y2.saturating_sub(1) > 0 { img.put_pixel(x, y2 - 1, red); }
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if y1 + 1 < height {
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img.put_pixel(x, y1 + 1, red);
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}
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if y2.saturating_sub(1) > 0 {
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img.put_pixel(x, y2 - 1, red);
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}
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}
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// 绘制纵向线条
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for y in y1..=y2 {
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img.put_pixel(x1, y, red);
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img.put_pixel(x2, y, red);
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// 如果要加粗,多画一列
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if x1 + 1 < width { img.put_pixel(x1 + 1, y, red); }
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if x2.saturating_sub(1) > 0 { img.put_pixel(x2 - 1, y, red); }
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if x1 + 1 < width {
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img.put_pixel(x1 + 1, y, red);
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}
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if x2.saturating_sub(1) > 0 {
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img.put_pixel(x2 - 1, y, red);
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}
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}
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}
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@@ -66,43 +75,44 @@ fn test_full_classification() {
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assert!(!result.is_empty());
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}
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#[test]
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fn test_det_load()->anyhow::Result<()>{
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fn test_det_load() -> anyhow::Result<()> {
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let det = DdddOcrBuilder::new().det().build()?;
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let image_path = "samples/det1.png";
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let image_bytes = fs::read(image_path)
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.map_err(|e| anyhow::anyhow!("无法读取图片 {}: {}", image_path, e))?;
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let image_bytes =
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fs::read(image_path).map_err(|e| anyhow::anyhow!("无法读取图片 {}: {}", image_path, e))?;
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println!("图片读取成功,字节大小: {}", image_bytes.len());
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let bboxes =det.detection(&image_bytes)?;
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println!(":?{}",det);
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let bboxes = det.detection(&image_bytes)?;
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println!(":?{}", det);
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println!("检测到的目标数量: {}", bboxes.len());
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if bboxes.is_empty() {
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println!("未检测到任何目标。");
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} else {
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save_debug_image(&image_bytes, &bboxes, "samples/result.jpg")?;
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for (i, bbox) in bboxes.iter().enumerate() {
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println!("目标 [{}]: x1={}, y1={}, x2={}, y2={}", i, bbox[0], bbox[1], bbox[2], bbox[3]);
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println!(
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"目标 [{}]: x1={}, y1={}, x2={}, y2={}",
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i, bbox[0], bbox[1], bbox[2], bbox[3]
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);
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}
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}
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Ok(())
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}
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#[test]
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fn test_real_slide_match() {
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let engine = Slide::new();
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// 1. 加载你准备好的测试图
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// 假设图片放在项目根目录下的 assets 文件夹
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let target_img = load_image("samples/hua.png")
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.expect("请确保 samples/hua.png 存在");
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let bg_img = load_image("samples/huatu.png")
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.expect("请确保 samples/huatu.png 存在");
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let target_img = load_image("samples/hua.png").expect("请确保 samples/hua.png 存在");
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let bg_img = load_image("samples/huatu.png").expect("请确保 samples/huatu.png 存在");
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// 2. 执行匹配
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// 如果是那种带有明显阴影边缘的复杂滑块,建议 simple_target 传 false
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let start = std::time::Instant::now();
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let result = engine.slide_match(&target_img, &bg_img, false)
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let result = engine
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.slide_match(&target_img, &bg_img, false)
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.expect("Slide match 执行失败");
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let duration = start.elapsed();
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@@ -126,15 +136,14 @@ fn test_real_slide_comparison() {
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// 1. 加载你准备好的测试图
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// 假设图片放在项目根目录下的 assets 文件夹
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let target_img = load_image("samples/ken.jpg")
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.expect("请确保 samples/ken.jpg 存在");
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let bg_img = load_image("samples/kenyuan.jpg")
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.expect("请确保 samples/kenyuan.jpg 存在");
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let target_img = load_image("samples/ken.jpg").expect("请确保 samples/ken.jpg 存在");
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let bg_img = load_image("samples/kenyuan.jpg").expect("请确保 samples/kenyuan.jpg 存在");
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// 2. 执行匹配
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// 如果是那种带有明显阴影边缘的复杂滑块,建议 simple_target 传 false
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let start = std::time::Instant::now();
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let result = engine.slide_comparison(&target_img, &bg_img)
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let result = engine
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.slide_comparison(&target_img, &bg_img)
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.expect("Slide match 执行失败");
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let duration = start.elapsed();
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@@ -150,4 +159,4 @@ fn test_real_slide_comparison() {
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assert_eq!(result.target_x, 171);
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assert_eq!(result.target_y, 90);
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assert!(result.confidence > 0.0);
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}
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}
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