1mod column_formatter;
2mod dir_comparer;
3mod file_comparer;
4mod file_hash_cache;
5mod file_hasher;
6mod file_item;
7mod file_iterator;
8mod progress;
9mod sort_stream;
10mod system_time_ext;
11
12pub(crate) use column_formatter::ColumnFormatter;
13pub use dir_comparer::{DirectoryComparer, FileComparisonMethod};
14pub use file_comparer::{Classification, FileComparer, FileComparisonResult};
15pub(crate) use file_hash_cache::FileHashCache;
16pub use file_hasher::{DuplicatedFiles, FileHasher};
17pub use file_item::FileItem;
18pub(crate) use file_iterator::FileIterator;
19pub(crate) use progress::Progress;
20pub use progress::ProgressBuilder;
21pub(crate) use progress::ProgressValue;
22pub(crate) use progress::SharedProgress;
23pub(crate) use sort_stream::sort_stream;
24pub(crate) use system_time_ext::SystemTimeExt;
25
26#[derive(Debug, Clone, Copy, PartialEq, Eq)]
28pub enum OutputFormat {
29 Default,
30 Symbol,
31 Yaml,
32 Shell,
33 PowerShell,
34}
35
36#[derive(Debug, Clone, Copy, PartialEq, Eq)]
38pub enum CheckMode {
39 Check,
41 Update,
43 UpdateAll,
45}
46
47use std::path::{Path, PathBuf};
48
49pub(crate) fn build_thread_pool(
50 threads: usize,
51) -> Result<rayon::ThreadPool, rayon::ThreadPoolBuildError> {
52 rayon::ThreadPoolBuilder::new().num_threads(threads).build()
53}
54
55pub(crate) fn human_readable_size(size: u64) -> String {
56 const KB: u64 = 1024;
57 if size < KB {
58 return format!("{} bytes", size);
59 }
60 const KB_AS_F: f64 = KB as f64;
61 let mut size = size as f64;
62 for unit in ["KB", "MB"] {
63 size /= KB_AS_F;
64 if size < KB_AS_F {
65 return format!("{:.1}{}", size, unit);
66 }
67 }
68 format!("{:.1}GB", size / KB_AS_F)
69}
70
71pub(crate) fn common_ancestor(paths: &[impl AsRef<Path>]) -> Option<PathBuf> {
72 if paths.is_empty() {
73 return None;
74 }
75 let mut iter = paths.iter();
76 let mut common = iter.next()?.as_ref().to_path_buf();
77 for path in iter {
78 let path = path.as_ref();
79 let mut new_common = PathBuf::new();
80 for (c, p) in common.components().zip(path.components()) {
81 if c == p {
82 new_common.push(c);
83 } else {
84 break;
85 }
86 }
87 common = new_common;
88 if common.as_os_str().is_empty() {
89 return None;
90 }
91 }
92 Some(common)
93}
94
95#[cfg(test)]
96mod tests {
97 use super::*;
98
99 #[test]
100 fn human_readable_size_tests() {
101 assert_eq!(human_readable_size(0), "0 bytes");
102 assert_eq!(human_readable_size(1), "1 bytes");
103 assert_eq!(human_readable_size(1023), "1023 bytes");
104 assert_eq!(human_readable_size(1024), "1.0KB");
105 assert_eq!(human_readable_size(1024 * 1024), "1.0MB");
106 assert_eq!(human_readable_size(1024 * 1024 * 1024), "1.0GB");
107 assert_eq!(human_readable_size(1024 * 1024 * 1024 * 1024), "1024.0GB");
108 }
109
110 #[test]
111 fn common_ancestor_tests() {
112 let empty: &[PathBuf] = &[];
113 assert_eq!(common_ancestor(empty), None);
114
115 let p1 = Path::new("/a/b/c");
116 assert_eq!(common_ancestor(&[p1]), Some(PathBuf::from("/a/b/c")));
117
118 let p2 = Path::new("/a/b/d");
119 assert_eq!(common_ancestor(&[p1, p2]), Some(PathBuf::from("/a/b")));
120
121 let p3 = Path::new("/a/x/y");
122 assert_eq!(common_ancestor(&[p1, p2, p3]), Some(PathBuf::from("/a")));
123
124 let p4 = Path::new("/b/c");
125 assert_eq!(common_ancestor(&[p1, p4]), Some(PathBuf::from("/")));
126
127 let p5 = Path::new("/a/b");
129 assert_eq!(common_ancestor(&[p1, p5]), Some(PathBuf::from("/a/b")));
130
131 let r1 = Path::new("a/b");
133 let r2 = Path::new("c/d");
134 assert_eq!(common_ancestor(&[r1, r2]), None);
135
136 let a1 = Path::new("/a/b");
138 let r3 = Path::new("a/b");
139 assert_eq!(common_ancestor(&[a1, r3]), None);
140 }
141}