fix(ecstore): align Deep verifier shard geometry (#4656)

This commit is contained in:
Zhengchao An
2026-07-10 16:06:38 +08:00
committed by GitHub
parent d29e637890
commit aaffd3ede8
2 changed files with 111 additions and 3 deletions
+72 -3
View File
@@ -32,7 +32,7 @@ use crate::disk::{
os,
os::{check_path_length, is_empty_dir, is_root_disk, rename_all, rename_all_ignore_missing_source},
};
use crate::erasure::coding::bitrot_verify;
use crate::erasure::coding::{self, bitrot_verify};
use crate::runtime::sources as runtime_sources;
use bytes::Bytes;
use metrics::counter;
@@ -5285,6 +5285,12 @@ impl DiskAPI for LocalDisk {
};
let erasure = &fi.erasure;
let codec_erasure = coding::Erasure::new_with_options(
erasure.data_blocks,
erasure.parity_blocks,
erasure.block_size,
fi.uses_legacy_checksum,
);
for (i, part) in fi.parts.iter().enumerate() {
let checksum_info = erasure.get_checksum_info(part.number);
let checksum_algo =
@@ -5305,9 +5311,9 @@ impl DiskAPI for LocalDisk {
let err = self
.bitrot_verify(
&part_path,
erasure.shard_file_size(part.size as i64) as usize,
codec_erasure.shard_file_size(part.size as i64) as usize,
checksum_algo,
erasure.shard_size(),
codec_erasure.shard_size(),
)
.await
.err();
@@ -12352,6 +12358,69 @@ mod test {
assert_eq!(result.results, vec![CHECK_PART_FILE_CORRUPT]);
}
#[tokio::test]
async fn local_disk_verify_file_matches_legacy_and_nonlegacy_shard_geometry() {
use crate::erasure::coding::{BitrotWriter, Erasure};
use rustfs_filemeta::ChecksumInfo;
use tempfile::tempdir;
let root_dir = tempdir().expect("temp dir should be created");
let endpoint = Endpoint::try_from(root_dir.path().to_string_lossy().as_ref()).expect("endpoint should parse");
let disk = LocalDisk::new(&endpoint, false).await.expect("local disk should be created");
let volume = "verify-volume";
ensure_test_volume(&disk, volume).await;
for (object, payload, uses_legacy_checksum) in [
("nonlegacy.bin", Bytes::from_static(b"sharddata"), false),
("legacy.bin", Bytes::from_static(b"legacydata"), true),
] {
let data_dir = Uuid::new_v4();
let part_number = 1;
let codec_erasure = Erasure::new_with_options(2, 2, 16, uses_legacy_checksum);
let mut file_info = FileInfo::new(object, 2, 2);
file_info.volume = volume.to_string();
file_info.name = object.to_string();
file_info.size = 17;
file_info.data_dir = Some(data_dir);
file_info.uses_legacy_checksum = uses_legacy_checksum;
file_info.erasure.block_size = 16;
file_info.erasure.index = 1;
file_info.erasure.checksums = vec![ChecksumInfo {
part_number,
algorithm: HashAlgorithm::HighwayHash256S,
hash: Bytes::new(),
}];
file_info.parts = vec![ObjectPartInfo {
number: part_number,
size: 17,
actual_size: 17,
..Default::default()
}];
let checksum_algo = if uses_legacy_checksum {
HashAlgorithm::HighwayHash256SLegacy
} else {
HashAlgorithm::HighwayHash256S
};
let mut writer = BitrotWriter::new(std::io::Cursor::new(Vec::new()), codec_erasure.shard_size(), checksum_algo);
writer.write(&payload[..8]).await.expect("first shard block should encode");
writer.write(&payload[8..]).await.expect("final shard block should encode");
writer.shutdown().await.expect("bitrot writer should flush test payload");
let part_path = path_join_buf(&[object, &data_dir.to_string(), &format!("part.{part_number}")]);
disk.write_all(volume, &part_path, Bytes::from(writer.into_inner().into_inner()))
.await
.expect("encoded part should be written");
let result = disk
.verify_file(volume, object, &file_info)
.await
.expect("verify_file should return per-part status");
assert_eq!(result.results, vec![CHECK_PART_SUCCESS]);
}
}
// ----- HP-6: O_DIRECT shard write -----
#[test]
@@ -565,4 +565,43 @@ mod serial_tests {
"version must remain byte-identical after heal"
);
}
#[tokio::test(flavor = "multi_thread", worker_threads = 4)]
#[serial]
async fn deep_heal_keeps_present_ec2_plus_2_shards_healthy() {
disable_dangling_grace();
let (disk_paths, ecstore, heal_storage) = setup_test_env_n(4).await;
let bucket = "b1044-deep-verify";
let object = "obj.bin";
create_versioned_bucket(&ecstore, bucket).await;
let data_v1 = versioned_test_data(12);
let v1 = put_versioned(&ecstore, bucket, object, &data_v1).await;
std::fs::remove_dir_all(object_dir(&disk_paths[3], bucket, object)).expect("wipe object on disk3");
for disk in &disk_paths[..3] {
assert_eq!(count_part_files(&object_dir(disk, bucket, object)), 1, "intact shard must remain present");
}
let (_result, error) = heal_storage
.heal_object(bucket, object, Some(&v1), &deep_heal_opts())
.await
.expect("deep heal_object call must not itself error");
assert!(error.is_none(), "Deep heal must retain the three intact EC2+2 shards: {error:?}");
assert!(
xl_meta_path(&object_dir(&disk_paths[3], bucket, object)).exists(),
"Deep heal must restore xl.meta on the missing disk"
);
assert_eq!(
count_part_files(&object_dir(&disk_paths[3], bucket, object)),
1,
"Deep heal must restore the missing shard"
);
assert_eq!(
read_version(&ecstore, bucket, object, &v1).await,
data_v1,
"Deep-healed EC2+2 object must remain byte-identical"
);
}
}