use bytes::Bytes;
use opendal_core::*;
use rand::Rng;
use rand::rng;
use crate::utils::sha256_digest;
#[derive(Debug, Clone, Copy, Eq, PartialEq)]
pub enum ReadAction {
Read(usize, usize),
}
pub struct ReadChecker {
raw_data: Bytes,
}
impl ReadChecker {
pub fn new(size: usize) -> Self {
let mut rng = rng();
let mut data = vec![0; size];
rng.fill_bytes(&mut data);
let raw_data = Bytes::from(data);
Self { raw_data }
}
pub fn data(&self) -> Bytes {
self.raw_data.clone()
}
fn check_read(&self, offset: usize, size: usize, output: &[u8]) {
if size == 0 {
assert_eq!(
output.len(),
0,
"check read failed: output must be empty if buf_size is 0"
);
return;
}
if size > 0 && output.is_empty() {
assert!(
offset >= self.raw_data.len(),
"check read failed: no data read means cur must outsides of ranged_data",
);
return;
}
assert!(
offset + output.len() <= self.raw_data.len(),
"check read failed: cur + output length must be less than ranged_data length, offset: {}, output: {}, ranged_data: {}",
offset,
output.len(),
self.raw_data.len(),
);
let expected = &self.raw_data[offset..offset + output.len()];
if output != expected {
assert_eq!(
sha256_digest(output),
sha256_digest(expected),
"check read failed: output bs is different with expected bs",
);
}
}
pub async fn check(&mut self, r: Reader, actions: &[ReadAction]) {
for action in actions {
match *action {
ReadAction::Read(offset, size) => {
let bs = r
.read(offset as u64..(offset + size) as u64)
.await
.expect("read must success");
self.check_read(offset, size, bs.to_bytes().as_ref());
}
}
}
}
}