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#![cfg(feature = "rawkit-tests")] |
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use image::codecs::png::{CompressionType, FilterType, PngEncoder}; |
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use image::{ColorType, ImageEncoder}; |
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use libraw::Processor; |
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use rawkit::RawImage; |
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use rayon::prelude::*; |
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use std::collections::HashMap; |
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use std::fmt::Write; |
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use std::fs::{File, create_dir, metadata, read_dir}; |
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use std::io::{BufWriter, Cursor, Read}; |
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use std::path::{Path, PathBuf}; |
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use std::sync::atomic::{AtomicUsize, Ordering}; |
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use std::time::Duration; |
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const TEST_FILES: [&str; 3] = ["ILCE-7M3-ARW2.3.5-blossoms.arw", "ILCE-7RM4-ARW2.3.5-kestrel.arw", "ILCE-6000-ARW2.3.1-windsock.arw"]; |
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const BASE_URL: &str = "https://static.graphite.rs/test-data/libraries/rawkit/"; |
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const BASE_PATH: &str = "./tests/images/"; |
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#[test] |
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fn test_images_match_with_libraw() { |
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download_images(); |
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let paths: Vec<_> = read_dir(BASE_PATH) |
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.unwrap() |
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.map(|dir_entry| dir_entry.unwrap().path()) |
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.filter(|path| path.is_file() && path.file_name().map(|file_name| file_name != ".gitkeep").unwrap_or(false)) |
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.collect(); |
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let failed_tests = if std::env::var("RAWKIT_TEST_RUN_SEQUENTIALLY").is_ok() { |
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let mut failed_tests = 0; |
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paths.iter().for_each(|path| { |
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if !test_image(path) { |
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failed_tests += 1; |
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} |
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}); |
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failed_tests |
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} else { |
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let failed_tests = AtomicUsize::new(0); |
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paths.par_iter().for_each(|path| { |
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if !test_image(path) { |
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failed_tests.fetch_add(1, Ordering::SeqCst); |
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} |
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}); |
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failed_tests.load(Ordering::SeqCst) |
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}; |
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if failed_tests != 0 { |
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panic!("{} images have failed the tests", failed_tests); |
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} |
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} |
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fn test_image(path: &Path) -> bool { |
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let mut f = File::open(path).unwrap(); |
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let mut content = vec![]; |
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f.read_to_end(&mut content).unwrap(); |
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let raw_image = match test_raw_data(&content) { |
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Err(err_msg) => { |
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println!("{} => {}", path.display(), err_msg); |
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return false; |
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} |
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Ok(raw_image) => raw_image, |
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}; |
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println!("{} => Passed", path.display()); |
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let mut image = raw_image.process_8bit(); |
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store_image(path, "rawkit", &mut image.data, image.width, image.height); |
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let processor = Processor::new(); |
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let libraw_image = processor.process_8bit(&content).unwrap(); |
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let mut data = Vec::from_iter(libraw_image.iter().copied()); |
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store_image(path, "libraw_rs", &mut data[..], libraw_image.width() as usize, libraw_image.height() as usize); |
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true |
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} |
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fn store_image(path: &Path, suffix: &str, data: &mut [u8], width: usize, height: usize) { |
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let mut output_path = PathBuf::new(); |
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if let Some(parent) = path.parent() { |
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output_path.push(parent); |
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} |
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output_path.push("output"); |
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if metadata(&output_path).is_err() { |
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create_dir(&output_path).unwrap(); |
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} |
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if let Some(filename) = path.file_stem() { |
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let new_filename = format!("{}_{}.{}", filename.to_string_lossy(), suffix, "png"); |
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output_path.push(new_filename); |
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} |
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output_path.set_extension("png"); |
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let file = BufWriter::new(File::create(output_path).unwrap()); |
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let png_encoder = PngEncoder::new_with_quality(file, CompressionType::Fast, FilterType::Adaptive); |
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png_encoder.write_image(data, width as u32, height as u32, ColorType::Rgb8.into()).unwrap(); |
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} |
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fn download_images() { |
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let mut path = Path::new(BASE_PATH).to_owned(); |
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let client = reqwest::blocking::Client::builder().timeout(Duration::from_secs(60 * 5)).build().unwrap(); |
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for filename in TEST_FILES { |
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path.push(filename); |
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if !path.exists() { |
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let url = BASE_URL.to_owned() + filename; |
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let mut response = client.get(url).send().unwrap(); |
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let mut file = File::create(BASE_PATH.to_owned() + filename).unwrap(); |
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std::io::copy(&mut response, &mut file).unwrap(); |
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} |
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path.pop(); |
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} |
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} |
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fn test_raw_data(content: &[u8]) -> Result<RawImage, String> { |
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let processor = libraw::Processor::new(); |
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let libraw_raw_image = processor.decode(content).unwrap(); |
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let mut content = Cursor::new(content); |
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let raw_image = RawImage::decode(&mut content).unwrap(); |
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if libraw_raw_image.sizes().raw_height as usize != raw_image.height { |
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return Err(format!( |
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"The height of raw image is {} but the expected value was {}", |
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raw_image.height, |
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libraw_raw_image.sizes().raw_height |
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)); |
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} |
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if libraw_raw_image.sizes().raw_width as usize != raw_image.width { |
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return Err(format!( |
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"The width of raw image is {} but the expected value was {}", |
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raw_image.width, |
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libraw_raw_image.sizes().raw_width |
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)); |
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} |
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if (*libraw_raw_image).len() != raw_image.data.len() { |
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return Err(format!( |
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"The size of data of raw image is {} but the expected value was {}", |
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raw_image.data.len(), |
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(*libraw_raw_image).len() |
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)); |
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} |
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if (*libraw_raw_image) != raw_image.data { |
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let mut err_msg = String::new(); |
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write!(&mut err_msg, "The raw data does not match").unwrap(); |
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if std::env::var("RAWKIT_TEST_PRINT_HISTOGRAM").is_ok() { |
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writeln!(err_msg).unwrap(); |
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let mut histogram: HashMap<i32, usize> = HashMap::new(); |
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let mut non_zero_count: usize = 0; |
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(*libraw_raw_image) |
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.iter() |
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.zip(raw_image.data.iter()) |
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.map(|(&a, &b)| { |
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let a: i32 = a.into(); |
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let b: i32 = b.into(); |
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a - b |
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}) |
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.filter(|&x| x != 0) |
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.for_each(|x| { |
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*histogram.entry(x).or_default() += 1; |
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non_zero_count += 1; |
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}); |
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let total_pixels = raw_image.height * raw_image.width; |
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writeln!(err_msg, "{} ({:.5}%) pixels are different from expected", non_zero_count, non_zero_count as f64 / total_pixels as f64).unwrap(); |
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writeln!(err_msg, "Diff Histogram:").unwrap(); |
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let mut items: Vec<_> = histogram.iter().map(|(&a, &b)| (a, b)).collect(); |
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items.sort(); |
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for (key, value) in items { |
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writeln!(err_msg, "{:05}: {:05} ({:02.5}%)", key, value, value as f64 / total_pixels as f64).unwrap(); |
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} |
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} |
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return Err(err_msg); |
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} |
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Ok(raw_image) |
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} |
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fn _test_final_image(content: &[u8], raw_image: RawImage) -> Result<(), String> { |
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let processor = libraw::Processor::new(); |
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let libraw_image = processor.process_8bit(content).unwrap(); |
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let image = raw_image.process_8bit(); |
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if libraw_image.height() as usize != image.height { |
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return Err(format!("The height of image is {} but the expected value was {}", image.height, libraw_image.height())); |
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} |
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if libraw_image.width() as usize != image.width { |
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return Err(format!("The width of image is {} but the expected value was {}", image.width, libraw_image.width())); |
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} |
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if (*libraw_image).len() != image.data.len() { |
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return Err(format!("The size of data of image is {} but the expected value was {}", image.data.len(), (*libraw_image).len())); |
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} |
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if (*libraw_image) != image.data { |
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let mut err_msg = String::new(); |
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write!(&mut err_msg, "The final image does not match").unwrap(); |
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if std::env::var("RAWKIT_TEST_PRINT_HISTOGRAM").is_ok() { |
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writeln!(err_msg).unwrap(); |
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let mut histogram_red: HashMap<i16, usize> = HashMap::new(); |
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let mut histogram_green: HashMap<i16, usize> = HashMap::new(); |
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let mut histogram_blue: HashMap<i16, usize> = HashMap::new(); |
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let mut non_zero_count: usize = 0; |
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let mut non_zero_count_red: usize = 0; |
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let mut non_zero_count_green: usize = 0; |
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let mut non_zero_count_blue: usize = 0; |
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(*libraw_image) |
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.chunks_exact(3) |
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.zip(image.data.chunks_exact(3)) |
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.map(|(a, b)| { |
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let a: [u8; 3] = a.try_into().unwrap(); |
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let b: [u8; 3] = b.try_into().unwrap(); |
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(a, b) |
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}) |
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.map(|([r1, g1, b1], [r2, g2, b2])| { |
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let r1: i16 = r1.into(); |
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let g1: i16 = g1.into(); |
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let b1: i16 = b1.into(); |
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let r2: i16 = r2.into(); |
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let g2: i16 = g2.into(); |
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let b2: i16 = b2.into(); |
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[r1 - r2, g1 - g2, b1 - b2] |
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}) |
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.filter(|&[r, g, b]| r != 0 || g != 0 || b != 0) |
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.for_each(|[r, g, b]| { |
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non_zero_count += 1; |
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if r != 0 { |
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*histogram_red.entry(r).or_default() += 1; |
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non_zero_count_red += 1; |
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} |
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if g != 0 { |
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*histogram_green.entry(g).or_default() += 1; |
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non_zero_count_green += 1; |
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} |
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if b != 0 { |
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*histogram_blue.entry(b).or_default() += 1; |
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non_zero_count_blue += 1; |
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} |
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}); |
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let total_pixels = image.height * image.width; |
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writeln!(err_msg, "{} ({:.5}%) pixels are different from expected", non_zero_count, non_zero_count as f64 / total_pixels as f64,).unwrap(); |
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writeln!( |
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err_msg, |
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"{} ({:.5}%) red pixels are different from expected", |
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non_zero_count_red, |
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non_zero_count_red as f64 / total_pixels as f64, |
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) |
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.unwrap(); |
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writeln!( |
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err_msg, |
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"{} ({:.5}%) green pixels are different from expected", |
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non_zero_count_green, |
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non_zero_count_green as f64 / total_pixels as f64, |
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) |
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.unwrap(); |
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writeln!( |
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err_msg, |
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"{} ({:.5}%) blue pixels are different from expected", |
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non_zero_count_blue, |
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non_zero_count_blue as f64 / total_pixels as f64, |
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) |
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.unwrap(); |
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writeln!(err_msg, "Diff Histogram for Red pixels:").unwrap(); |
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let mut items: Vec<_> = histogram_red.iter().map(|(&a, &b)| (a, b)).collect(); |
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items.sort(); |
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for (key, value) in items { |
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writeln!(err_msg, "{:05}: {:05} ({:02.5}%)", key, value, value as f64 / total_pixels as f64).unwrap(); |
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} |
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writeln!(err_msg, "Diff Histogram for Green pixels:").unwrap(); |
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let mut items: Vec<_> = histogram_green.iter().map(|(&a, &b)| (a, b)).collect(); |
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items.sort(); |
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for (key, value) in items { |
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writeln!(err_msg, "{:05}: {:05} ({:02.5}%)", key, value, value as f64 / total_pixels as f64).unwrap(); |
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} |
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writeln!(err_msg, "Diff Histogram for Blue pixels:").unwrap(); |
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let mut items: Vec<_> = histogram_blue.iter().map(|(&a, &b)| (a, b)).collect(); |
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items.sort(); |
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for (key, value) in items { |
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writeln!(err_msg, "{:05}: {:05} ({:02.5}%)", key, value, value as f64 / total_pixels as f64).unwrap(); |
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} |
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} |
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return Err(err_msg); |
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} |
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Ok(()) |
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} |
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#[ignore] |
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#[test] |
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fn extract_data_from_dng_images() { |
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read_dir(BASE_PATH) |
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.unwrap() |
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.map(|dir_entry| dir_entry.unwrap().path()) |
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.filter(|path| path.is_file() && path.file_name().map(|file_name| file_name != ".gitkeep").unwrap_or(false)) |
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.for_each(|path| { |
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extract_data_from_dng_image(&path); |
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}); |
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} |
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fn extract_data_from_dng_image(path: &Path) { |
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use rawkit::tiff::Ifd; |
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use rawkit::tiff::file::TiffRead; |
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use rawkit::tiff::tags::{ColorMatrix2, Make, Model}; |
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use rawkit::tiff::values::ToFloat; |
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use std::io::{BufReader, Write}; |
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let reader = BufReader::new(File::open(path).unwrap()); |
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let mut file = TiffRead::new(reader).unwrap(); |
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let ifd = Ifd::new_first_ifd(&mut file).unwrap(); |
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let make = ifd.get_value::<Make, _>(&mut file).unwrap(); |
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let model = ifd.get_value::<Model, _>(&mut file).unwrap(); |
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let matrix = ifd.get_value::<ColorMatrix2, _>(&mut file).unwrap(); |
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if model == "MODEL-NAME" { |
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println!("{}", path.display()); |
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return; |
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} |
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let output_folder = path.parent().unwrap().join(make); |
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std::fs::create_dir_all(&output_folder).unwrap(); |
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let mut output_file = File::create(output_folder.join(model + ".toml")).unwrap(); |
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let matrix: Vec<_> = matrix.iter().map(|x| x.to_float()).collect(); |
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writeln!(output_file, "camera_to_xyz = {:.4?}", matrix).unwrap(); |
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} |
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