1use std::{io::Read, path::Path};
2use sha256::digest;
3pub struct Chunk {
4 pub data: Vec<u8>,
5 pub hash: String,
6 pub idx: usize
7}
8
9pub fn chunk_file<P>(path: P, chunk_size: usize, use_blake: bool) -> Vec<Chunk> where P: AsRef<Path> {
10 let mut file = std::fs::File::open(path).unwrap();
11 let mut output: Vec<Chunk> = Vec::new();
12 let mut idx = 0;
13 loop {
14 let mut chunk: Vec<u8> = Vec::with_capacity(chunk_size);
15 let n = file.by_ref().take(chunk_size as u64).read_to_end(&mut chunk).unwrap();
16 if n == 0 { break; } let hash;
18 if use_blake {
19 hash = blake3::hash(&chunk).to_string();
20 }
21 else {
22 hash = digest(chunk.clone());
23 }
24 output.push(Chunk { data: chunk, hash, idx });
25 idx += 1;
26 if n < chunk_size { break; } }
28
29 output
30}
31
32pub fn hash_file<P>(path: P, chunk_size: usize, use_blake: bool) -> Vec<String> where P: AsRef<Path> {
33 let mut file = std::fs::File::open(path).unwrap();
34 let mut output: Vec<String> = Vec::new();
35
36 loop {
37 let mut chunk: Vec<u8> = Vec::with_capacity(chunk_size);
38 let n = file.by_ref().take(chunk_size as u64).read_to_end(&mut chunk).unwrap();
39 if n == 0 { break; } let hash: String;
41 if use_blake {
42 hash = blake3::hash(&chunk).to_string();
43 }
44 else {
45 hash = digest(chunk.clone());
46 }
47 output.push(hash);
48 if n < chunk_size { break; } }
50
51 output
52}