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test(odm): add the scheduled provider interop lane (#7114)
* test(odm): drive the migration cases from an env-named source The ODM e2e suite only ever migrates from the in-process fake source, so path-style addressing, region handling, ETag shape and list pagination on real implementations stay untested. OdmInteropEnv resolves the source from RUSTFS_ODM_INTEROP_*, seeding into a per-run source_prefix so a shared real bucket can host concurrent runs and every seeded key is removed afterwards. A named provider with a missing variable is an error, never a silent fallback to the fake source. interop_test holds the four cases that run against either source, and the e2e-odm-interop profile is the lane that selects them; e2e-full excludes them, so its committed selection is unchanged. wait_until_odm_engaged replaces the fake source's journal probe for the readiness wait, since a real source keeps no journal. * ci(odm): add the scheduled provider interop lane on-demand-migration-interop.yml runs the interop cases against a pinned MinIO container with a 5,000-object backfill - past the fake source's 4,096 version and journal caps - and the three-case minimum against AWS, R2 and GCS when their ODM_INTEROP_* secrets exist, skipping with a summary note when they do not. Each provider gets one JSON report merging the per-case entries with the nextest JUnit, which stays authoritative for what ran. Report-only and never required: it depends on third-party endpoints and on secrets a fork does not have.
This commit is contained in:
@@ -30,6 +30,7 @@ use aws_sdk_s3::Client;
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use aws_sdk_s3::config::{Credentials, Region};
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use aws_smithy_http_client::Builder as SmithyHttpClientBuilder;
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use bytes::Bytes;
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use futures::stream::{StreamExt, TryStreamExt};
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use serde::Serialize;
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use std::fmt;
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use std::time::{Duration, Instant};
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@@ -627,6 +628,37 @@ impl OdmTestEnv {
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}
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}
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/// Waits until the migration runtime for `bucket` is live, whatever the
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/// source is. [`Self::wait_until_source_consulted`] proves the same thing
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/// from the fake source's journal, which a real source does not have; this
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/// one reads the bucket's own `requests_total.get` counters instead, which
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/// only start moving once the state has been built. The probe is a GET of a
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/// key that exists nowhere and is unique per call, so nothing is pulled and
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/// only that key enters the negative cache.
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pub async fn wait_until_odm_engaged(&self, bucket: &str) -> Result<(), BoxError> {
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let probe_key = format!("_odm-engaged-probe-{}", uuid::Uuid::new_v4());
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let deadline = Instant::now() + Duration::from_secs(60);
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loop {
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let _ = self.raw_get(bucket, &probe_key).await?;
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let counted: u64 = self
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.status_json(bucket)
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.await
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.ok()
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.as_ref()
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.and_then(|status| status.pointer("/counters/requests_total/get"))
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.and_then(serde_json::Value::as_object)
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.map(|by_outcome| by_outcome.values().filter_map(serde_json::Value::as_u64).sum())
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.unwrap_or(0);
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if counted > 0 {
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return Ok(());
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}
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if Instant::now() >= deadline {
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return Err(format!("on-demand migration runtime for {bucket} did not engage in time").into());
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}
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tokio::time::sleep(Duration::from_millis(100)).await;
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}
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}
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/// Creates `bucket` unless it already exists, installs `spec` on it and
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/// returns once the runtime consults the source. Scenarios with a second
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/// bucket, a bucket created with non-default options, or a reinstalled
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@@ -821,3 +853,400 @@ pub async fn start_configured_env_with(
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env.configure_and_wait(bucket, &spec).await?;
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Ok(env)
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}
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// ---------------------------------------------------------------------------
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// Provider interoperability lane (ODM-20, rustfs/backlog#2167)
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// ---------------------------------------------------------------------------
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//
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// `interop_test.rs` has one body per case; which source that body runs against
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// is decided here, from the environment. Unset means the in-process fake
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// source, which is what a local run gets; the scheduled interop workflow sets
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// the variables below to a MinIO container or a real cloud provider. Nothing
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// else about the cases changes, so a provider difference shows up as the same
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// assertion failing rather than as a separate, drifting test file.
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/// Provider preset of the interop source (`minio`, `aws`, `r2`, `gcs`, `s3`).
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/// Unset selects the in-process fake source.
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pub const INTEROP_PROVIDER_ENV: &str = "RUSTFS_ODM_INTEROP_PROVIDER";
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/// `http(s)://host[:port]`. Required for every provider including `aws`, where
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/// the runtime could derive it from the region: the lane pins exactly one
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/// endpoint per provider so its report names what was actually reached.
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pub const INTEROP_ENDPOINT_ENV: &str = "RUSTFS_ODM_INTEROP_ENDPOINT";
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pub const INTEROP_REGION_ENV: &str = "RUSTFS_ODM_INTEROP_REGION";
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/// Source bucket, which must already exist: the harness never creates a bucket
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/// on a real provider account.
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pub const INTEROP_BUCKET_ENV: &str = "RUSTFS_ODM_INTEROP_BUCKET";
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pub const INTEROP_ACCESS_KEY_ENV: &str = "RUSTFS_ODM_INTEROP_ACCESS_KEY";
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pub const INTEROP_SECRET_KEY_ENV: &str = "RUSTFS_ODM_INTEROP_SECRET_KEY";
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pub const INTEROP_SESSION_TOKEN_ENV: &str = "RUSTFS_ODM_INTEROP_SESSION_TOKEN";
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/// `auto` (default), `path` or `virtual`.
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pub const INTEROP_PATH_STYLE_ENV: &str = "RUSTFS_ODM_INTEROP_PATH_STYLE";
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/// Objects the backfill case seeds.
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pub const INTEROP_BACKFILL_OBJECTS_ENV: &str = "RUSTFS_ODM_INTEROP_BACKFILL_OBJECTS";
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/// Directory each case writes its JSON report entry into. Unset means no
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/// report, which is what a local run wants.
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pub const INTEROP_REPORT_DIR_ENV: &str = "RUSTFS_ODM_INTEROP_REPORT_DIR";
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/// Backfill objects when [`INTEROP_BACKFILL_OBJECTS_ENV`] is unset. The fake
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/// source retains at most 4,096 object versions and 4,096 journal entries, and
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/// one pull is a HEAD plus a GET, so the default has to stay far below that.
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/// A real source has no such cap and the workflow raises the count there.
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pub const INTEROP_DEFAULT_BACKFILL_OBJECTS: usize = 200;
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/// In-flight requests while seeding or cleaning a real source. High enough to
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/// hide the round-trip on a few thousand tiny objects, low enough not to look
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/// like a burst to a cloud provider.
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const INTEROP_SOURCE_CONCURRENCY: usize = 32;
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/// A real S3-compatible endpoint acting as the migration source.
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#[derive(Clone)]
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pub struct InteropRemoteSource {
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pub provider: String,
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pub endpoint: String,
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pub region: String,
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pub bucket: String,
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pub path_style: String,
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pub access_key: String,
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pub secret_key: String,
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pub session_token: Option<String>,
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}
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impl fmt::Debug for InteropRemoteSource {
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/// The interop lane uploads its logs as an artifact; keep the credentials
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/// out of them.
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fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
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f.debug_struct("InteropRemoteSource")
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.field("provider", &self.provider)
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.field("endpoint", &self.endpoint)
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.field("region", &self.region)
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.field("bucket", &self.bucket)
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.field("path_style", &self.path_style)
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.field("access_key", &self.access_key)
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.field("secret_key", &"REDACTED")
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.field("session_token", &self.session_token.as_ref().map(|_| "REDACTED"))
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.finish()
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}
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}
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impl InteropRemoteSource {
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/// Enabled configuration pointing at this source.
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fn spec(&self) -> OdmSourceSpec {
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let mut spec = OdmSourceSpec::new(
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&self.provider,
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&self.endpoint,
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&self.region,
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self.bucket.clone(),
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&self.access_key,
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&self.secret_key,
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);
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spec.source.path_style = self.path_style.clone();
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spec.source.credentials = Some(OdmCredentials {
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access_key: self.access_key.clone(),
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secret_key: self.secret_key.clone(),
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session_token: self.session_token.clone(),
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});
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spec
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}
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/// S3 client for seeding and cleaning the source bucket. Retries are off
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/// so a provider-side failure surfaces as itself instead of being masked
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/// by a second attempt.
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fn client(&self) -> Result<Client, BoxError> {
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let credentials =
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Credentials::new(&self.access_key, &self.secret_key, self.session_token.clone(), None, "odm-interop-source");
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let mut config = aws_sdk_s3::Config::builder()
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.credentials_provider(credentials)
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.region(Region::new(self.region.clone()))
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.endpoint_url(&self.endpoint)
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.force_path_style(self.path_style == "path")
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.behavior_version_latest()
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.retry_config(RetryConfig::standard().with_max_attempts(1));
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// The default connector is HTTPS-only; a container source is plain HTTP.
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if self.endpoint.starts_with("http://") {
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config = config.http_client(SmithyHttpClientBuilder::new().build_http());
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}
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Ok(Client::from_conf(config.build()))
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}
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}
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/// Where an interop case gets its source objects from.
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#[derive(Debug, Clone)]
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pub enum InteropSource {
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/// The in-process fake source of the [`OdmTestEnv`].
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Fake,
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/// A real S3-compatible endpoint described by the environment.
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Remote(InteropRemoteSource),
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}
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impl InteropSource {
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/// Reads the source description from the environment. An unset
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/// [`INTEROP_PROVIDER_ENV`] means the fake source; a named provider with
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/// any required variable missing is an error rather than a silent
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/// fallback, so a misconfigured CI secret can never pass as a green
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/// real-source run.
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pub fn from_env() -> Result<Self, BoxError> {
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let Some(provider) = interop_env(INTEROP_PROVIDER_ENV) else {
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return Ok(Self::Fake);
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};
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let mut missing = Vec::new();
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let mut required = |name: &'static str| {
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interop_env(name).unwrap_or_else(|| {
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missing.push(name);
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String::new()
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})
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};
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let endpoint = required(INTEROP_ENDPOINT_ENV);
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let region = required(INTEROP_REGION_ENV);
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let bucket = required(INTEROP_BUCKET_ENV);
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let access_key = required(INTEROP_ACCESS_KEY_ENV);
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let secret_key = required(INTEROP_SECRET_KEY_ENV);
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if !missing.is_empty() {
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return Err(format!("{INTEROP_PROVIDER_ENV}={provider} needs {}", missing.join(", ")).into());
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}
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Ok(Self::Remote(InteropRemoteSource {
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provider,
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endpoint,
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region,
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bucket,
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path_style: interop_env(INTEROP_PATH_STYLE_ENV).unwrap_or_else(|| "auto".to_string()),
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access_key,
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secret_key,
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session_token: interop_env(INTEROP_SESSION_TOKEN_ENV),
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}))
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}
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/// Name the report uses for this source.
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pub fn provider(&self) -> &str {
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match self {
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Self::Fake => "fake",
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Self::Remote(remote) => &remote.provider,
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}
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}
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}
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/// A set but empty variable is the shape a missing GitHub secret takes, so it
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/// reads the same as unset here.
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fn interop_env(name: &str) -> Option<String> {
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std::env::var(name)
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.ok()
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.map(|value| value.trim().to_string())
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.filter(|value| !value.is_empty())
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}
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/// Objects the backfill case seeds, from [`INTEROP_BACKFILL_OBJECTS_ENV`].
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pub fn interop_backfill_objects() -> Result<usize, BoxError> {
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match interop_env(INTEROP_BACKFILL_OBJECTS_ENV) {
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Some(value) => Ok(value
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.parse::<usize>()
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.map_err(|error| format!("{INTEROP_BACKFILL_OBJECTS_ENV}: {error}"))?),
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None => Ok(INTEROP_DEFAULT_BACKFILL_OBJECTS),
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}
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}
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/// One interop case: a RustFS under test migrating `bucket` from whichever
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/// source [`InteropSource::from_env`] resolved.
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///
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/// Every source key of a run lives under a unique `filter.source_prefix`, so
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/// a shared real bucket can host concurrent runs, a backfill lists only this
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/// run's objects, and [`Self::finish`] can delete exactly what it seeded.
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pub struct OdmInteropEnv {
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pub env: OdmTestEnv,
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pub source: InteropSource,
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pub bucket: String,
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case: &'static str,
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source_bucket: String,
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source_prefix: String,
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remote: Option<Client>,
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/// Source-side keys this run created, for cleanup.
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seeded: std::sync::Mutex<Vec<String>>,
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/// Start of the case body, after the fixture is up. The report keeps this
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/// next to the JUnit wall time so a provider's own latency is readable
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/// without the constant cost of starting a RustFS server drowning it.
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started: Instant,
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}
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impl OdmInteropEnv {
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/// Starts the pair and installs the configuration `adjust` tweaked,
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/// returning once the migration runtime is live.
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pub async fn start(case: &'static str, bucket: &str, adjust: impl FnOnce(&mut OdmSourceSpec)) -> Result<Self, BoxError> {
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let source = InteropSource::from_env()?;
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let env = OdmTestEnv::start().await?;
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env.rustfs.create_test_bucket(bucket).await?;
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let source_prefix = format!("odm-interop/{case}/{}/", uuid::Uuid::new_v4());
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let (mut spec, remote, source_bucket) = match &source {
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InteropSource::Fake => {
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let source_bucket = format!("{bucket}-source");
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env.source.create_bucket_with_mode(&source_bucket, BucketMode::Unversioned);
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(env.fake_source_spec(&source_bucket), None, source_bucket)
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}
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InteropSource::Remote(remote) => {
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let client = remote.client()?;
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client
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.head_bucket()
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.bucket(&remote.bucket)
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.send()
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.await
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.map_err(|error| format!("interop source bucket {} is not reachable: {error}", remote.bucket))?;
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(remote.spec(), Some(client), remote.bucket.clone())
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}
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};
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spec.filter.source_prefix = Some(source_prefix.clone());
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adjust(&mut spec);
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let response = env.configure_source(bucket, &spec).await?;
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if response.status != 200 {
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return Err(format!("configure on-demand migration for {bucket}: {} {}", response.status, response.body).into());
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}
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env.wait_until_odm_engaged(bucket).await?;
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Ok(Self {
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env,
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source,
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bucket: bucket.to_string(),
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case,
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source_bucket,
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source_prefix,
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remote,
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seeded: std::sync::Mutex::new(Vec::new()),
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started: Instant::now(),
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})
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}
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/// Source-side key for a local key, the same mapping the runtime applies.
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fn source_key(&self, local_key: &str) -> String {
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format!("{}{local_key}", self.source_prefix)
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}
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/// Stores `objects` in the source under this run's prefix and returns
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/// their ETags, unquoted, in input order.
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pub async fn seed(&self, objects: &[SeedObject]) -> Result<Vec<String>, BoxError> {
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let etags = match &self.remote {
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None => objects
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.iter()
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.map(|object| {
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self.env.source.put_seed_object(
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&self.source_bucket,
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self.source_key(&object.key),
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object.body.clone(),
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&object.metadata,
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)
|
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})
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.collect(),
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Some(client) => {
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futures::stream::iter(objects.iter().map(|object| {
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let key = self.source_key(&object.key);
|
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let body = object.body.clone();
|
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async move {
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let output = client
|
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.put_object()
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.bucket(&self.source_bucket)
|
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.key(&key)
|
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.body(aws_sdk_s3::primitives::ByteStream::from(body))
|
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.send()
|
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.await
|
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.map_err(|error| format!("seeding {}/{key}: {error}", self.source_bucket))?;
|
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Ok::<String, BoxError>(unquote_etag(output.e_tag().unwrap_or_default()))
|
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}
|
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}))
|
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.buffered(INTEROP_SOURCE_CONCURRENCY)
|
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.try_collect::<Vec<String>>()
|
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.await?
|
||||
}
|
||||
};
|
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self.seeded
|
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.lock()
|
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.expect("interop seed ledger is not poisoned")
|
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.extend(objects.iter().map(|object| self.source_key(&object.key)));
|
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Ok(etags)
|
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}
|
||||
|
||||
/// Records the case in the lane's report and removes everything it seeded
|
||||
/// from the source. Call it at the end of every case: a case that fails
|
||||
/// before this point leaves no report entry, which is why the workflow
|
||||
/// reconciles the entries against the JUnit case list rather than trusting
|
||||
/// them to be complete.
|
||||
pub async fn finish(self) -> Result<(), BoxError> {
|
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let duration = self.started.elapsed();
|
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let counters = self
|
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.env
|
||||
.status_json(&self.bucket)
|
||||
.await
|
||||
.ok()
|
||||
.and_then(|status| status.get("counters").cloned());
|
||||
self.write_report(duration, counters).await?;
|
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self.clean_source().await
|
||||
}
|
||||
|
||||
async fn write_report(&self, duration: Duration, counters: Option<serde_json::Value>) -> Result<(), BoxError> {
|
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let Some(dir) = interop_env(INTEROP_REPORT_DIR_ENV) else {
|
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return Ok(());
|
||||
};
|
||||
// The fake source journals every wire request, so its count is exact.
|
||||
// A real provider has no such journal, so the report falls back to the
|
||||
// bucket's own counters, which count client requests that entered
|
||||
// migration rather than requests that left for the source; the
|
||||
// `counted_by` field says which of the two a reader is looking at.
|
||||
let (counted_by, total) = match self.remote {
|
||||
None => ("fake_source_journal", self.env.source.requests().len() as u64),
|
||||
Some(_) => (
|
||||
"odm_status_counters",
|
||||
counters
|
||||
.as_ref()
|
||||
.and_then(|counters| counters.pointer("/requests_total"))
|
||||
.and_then(serde_json::Value::as_object)
|
||||
.map(|by_op| {
|
||||
by_op
|
||||
.values()
|
||||
.filter_map(serde_json::Value::as_object)
|
||||
.flat_map(|by_outcome| by_outcome.values().filter_map(serde_json::Value::as_u64))
|
||||
.sum()
|
||||
})
|
||||
.unwrap_or(0),
|
||||
),
|
||||
};
|
||||
let entry = serde_json::json!({
|
||||
"case": self.case,
|
||||
"provider": self.source.provider(),
|
||||
"source_bucket": self.source_bucket,
|
||||
"source_prefix": self.source_prefix,
|
||||
"duration_ms": duration.as_millis() as u64,
|
||||
"source_requests": {"counted_by": counted_by, "total": total},
|
||||
"odm_counters": counters,
|
||||
});
|
||||
tokio::fs::create_dir_all(&dir).await?;
|
||||
tokio::fs::write(
|
||||
format!("{dir}/{}-{}.json", self.source.provider(), self.case),
|
||||
serde_json::to_vec_pretty(&entry)?,
|
||||
)
|
||||
.await?;
|
||||
Ok(())
|
||||
}
|
||||
|
||||
/// Deletes this run's source keys one by one: the multi-object delete is
|
||||
/// not available on every provider the lane targets (the GCS XML API has
|
||||
/// no equivalent), and the object counts here are small enough that the
|
||||
/// portable form costs nothing worth saving.
|
||||
async fn clean_source(&self) -> Result<(), BoxError> {
|
||||
let Some(client) = &self.remote else {
|
||||
return Ok(());
|
||||
};
|
||||
let keys = std::mem::take(&mut *self.seeded.lock().expect("interop seed ledger is not poisoned"));
|
||||
futures::stream::iter(keys.into_iter().map(|key| async move {
|
||||
client
|
||||
.delete_object()
|
||||
.bucket(&self.source_bucket)
|
||||
.key(&key)
|
||||
.send()
|
||||
.await
|
||||
.map_err(|error| format!("deleting {}/{key}: {error}", self.source_bucket))?;
|
||||
Ok::<(), BoxError>(())
|
||||
}))
|
||||
.buffered(INTEROP_SOURCE_CONCURRENCY)
|
||||
.try_collect::<Vec<()>>()
|
||||
.await?;
|
||||
Ok(())
|
||||
}
|
||||
}
|
||||
|
||||
fn unquote_etag(etag: &str) -> String {
|
||||
etag.trim_matches('"').to_string()
|
||||
}
|
||||
|
||||
@@ -0,0 +1,243 @@
|
||||
// Copyright 2024 RustFS Team
|
||||
//
|
||||
// Licensed under the Apache License, Version 2.0 (the "License");
|
||||
// you may not use this file except in compliance with the License.
|
||||
// You may obtain a copy of the License at
|
||||
//
|
||||
// http://www.apache.org/licenses/LICENSE-2.0
|
||||
//
|
||||
// Unless required by applicable law or agreed to in writing, software
|
||||
// distributed under the License is distributed on an "AS IS" BASIS,
|
||||
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
|
||||
// See the License for the specific language governing permissions and
|
||||
// limitations under the License.
|
||||
|
||||
//! Provider interoperability cases (ODM-20, rustfs/backlog#2167).
|
||||
//!
|
||||
//! One body per case, run against whichever source the environment names:
|
||||
//! the in-process fake source locally, a MinIO container or a real cloud
|
||||
//! provider under `.github/workflows/on-demand-migration-interop.yml`. The
|
||||
//! source is resolved by [`OdmInteropEnv`], so a provider difference in
|
||||
//! path-style addressing, region handling, ETag shape or list pagination
|
||||
//! shows up as one of these assertions failing rather than as a second,
|
||||
//! drifting copy of the suite.
|
||||
//!
|
||||
//! Consequently these cases assert only on what every S3 implementation has
|
||||
//! to agree on — what the client receives and what RustFS stored — never on
|
||||
//! the fake source's request journal, which a real provider does not have.
|
||||
//! The journal-backed expectations stay in `get_basic_test.rs` and
|
||||
//! `interaction_test.rs`.
|
||||
//!
|
||||
//! The first three cases are the minimum a cloud provider is asked for (GET
|
||||
//! miss, HEAD miss, merged list pagination); the backfill case runs against
|
||||
//! the MinIO container, whose object count the lane raises well past the fake
|
||||
//! source's caps.
|
||||
|
||||
use super::common::{BackfillRequest, BoxError, OdmInteropEnv, SeedObject, interop_backfill_objects};
|
||||
use bytes::Bytes;
|
||||
use std::time::Duration;
|
||||
|
||||
type TestResult = Result<(), BoxError>;
|
||||
|
||||
const ODM_RESPONSE_HEADER: &str = "x-rustfs-on-demand-migration";
|
||||
/// Background pulls land after the response that triggered them; generous for
|
||||
/// a loaded runner talking to a container.
|
||||
const SETTLE: Duration = Duration::from_secs(90);
|
||||
|
||||
/// Position-dependent payload so a misaligned or truncated copy is caught.
|
||||
fn payload(len: usize) -> Bytes {
|
||||
(0..len).map(|index| (index % 251) as u8).collect::<Vec<u8>>().into()
|
||||
}
|
||||
|
||||
/// A GET miss is answered from the source with the source's own ETag, and the
|
||||
/// object it stored serves every later read locally.
|
||||
#[tokio::test]
|
||||
async fn interop_get_miss_pulls_from_the_source_and_serves_locally() -> TestResult {
|
||||
let case =
|
||||
OdmInteropEnv::start("interop_get_miss_pulls_from_the_source_and_serves_locally", "odm-interop-get", |_| {}).await?;
|
||||
let key = "interop/report.bin";
|
||||
let body = payload(200 * 1024);
|
||||
let etag = case.seed(&[SeedObject::new(key, body.clone())]).await?.remove(0);
|
||||
let quoted_etag = format!("\"{etag}\"");
|
||||
|
||||
let first = case.env.raw_get(&case.bucket, key).await?;
|
||||
assert_eq!(first.status, 200, "{}", String::from_utf8_lossy(&first.body));
|
||||
assert_eq!(first.header(ODM_RESPONSE_HEADER), Some("source"), "a source answer is marked");
|
||||
assert_eq!(first.header("content-length"), Some(body.len().to_string().as_str()));
|
||||
assert_eq!(
|
||||
first.header("etag"),
|
||||
Some(quoted_etag.as_str()),
|
||||
"the source ETag is passed through unchanged"
|
||||
);
|
||||
assert_eq!(first.body, body, "the client receives the source bytes");
|
||||
|
||||
assert!(
|
||||
case.env.wait_local_listed(&case.bucket, key, SETTLE).await?,
|
||||
"the inline pull must store the object locally"
|
||||
);
|
||||
let second = case.env.raw_get(&case.bucket, key).await?;
|
||||
assert_eq!(second.status, 200, "{}", String::from_utf8_lossy(&second.body));
|
||||
assert_eq!(second.header(ODM_RESPONSE_HEADER), None, "a local hit carries no source marker");
|
||||
assert_eq!(second.body, body, "the local copy is the source bytes");
|
||||
assert_eq!(
|
||||
second.header("etag"),
|
||||
Some(quoted_etag.as_str()),
|
||||
"preserve_etag keeps the source ETag on the stored object"
|
||||
);
|
||||
case.finish().await
|
||||
}
|
||||
|
||||
/// A HEAD miss is proxied with the source's size and ETag and stores nothing.
|
||||
#[tokio::test]
|
||||
async fn interop_head_miss_answers_from_the_source_without_persisting() -> TestResult {
|
||||
let case =
|
||||
OdmInteropEnv::start("interop_head_miss_answers_from_the_source_without_persisting", "odm-interop-head", |_| {}).await?;
|
||||
let key = "interop/head-only.bin";
|
||||
let body = payload(9_000);
|
||||
let etag = case.seed(&[SeedObject::new(key, body.clone())]).await?.remove(0);
|
||||
|
||||
let head = case
|
||||
.env
|
||||
.raw_object_request(http::Method::HEAD, &case.bucket, key, &[])
|
||||
.await?;
|
||||
assert_eq!(head.status, 200, "HEAD must be answered from the source");
|
||||
assert_eq!(head.header(ODM_RESPONSE_HEADER), Some("source"));
|
||||
assert_eq!(head.header("content-length"), Some(body.len().to_string().as_str()));
|
||||
assert_eq!(head.header("etag"), Some(format!("\"{etag}\"").as_str()));
|
||||
assert!(head.body.is_empty(), "a HEAD carries no body");
|
||||
case.env.assert_local_absent(&case.bucket, key).await;
|
||||
|
||||
// A key the source does not hold is a plain 404, not a source error.
|
||||
let missing = case
|
||||
.env
|
||||
.raw_object_request(http::Method::HEAD, &case.bucket, "interop/absent.bin", &[])
|
||||
.await?;
|
||||
assert_eq!(missing.status, 404, "a source miss is a 404");
|
||||
case.finish().await
|
||||
}
|
||||
|
||||
/// The merged `ListObjectsV2` pages the source namespace in byte order, keeps
|
||||
/// every page within `max_keys`, and lets a local object win a shared key.
|
||||
#[tokio::test]
|
||||
async fn interop_list_through_pages_the_source_namespace() -> TestResult {
|
||||
const SOURCE_KEYS: usize = 120;
|
||||
const PAGE_SIZE: i32 = 50;
|
||||
const SOURCE_BODY_LEN: usize = 3;
|
||||
const LOCAL_BODY_LEN: usize = 11;
|
||||
|
||||
let case = OdmInteropEnv::start("interop_list_through_pages_the_source_namespace", "odm-interop-list", |spec| {
|
||||
spec.policy.list_through = true
|
||||
})
|
||||
.await?;
|
||||
let keys: Vec<String> = (0..SOURCE_KEYS).map(|index| format!("page/obj-{index:05}")).collect();
|
||||
let seeds: Vec<SeedObject> = keys
|
||||
.iter()
|
||||
.map(|key| SeedObject::new(key.clone(), payload(SOURCE_BODY_LEN)))
|
||||
.collect();
|
||||
case.seed(&seeds).await?;
|
||||
|
||||
// Five keys the local bucket also holds, with a body length that tells the
|
||||
// two sides apart in the listing.
|
||||
let shared: Vec<String> = keys.iter().step_by(25).cloned().collect();
|
||||
for key in &shared {
|
||||
case.env
|
||||
.client
|
||||
.put_object()
|
||||
.bucket(&case.bucket)
|
||||
.key(key)
|
||||
.body(aws_sdk_s3::primitives::ByteStream::from(payload(LOCAL_BODY_LEN)))
|
||||
.send()
|
||||
.await?;
|
||||
}
|
||||
|
||||
let mut listed: Vec<(String, i64)> = Vec::new();
|
||||
let mut token: Option<String> = None;
|
||||
let mut completed = false;
|
||||
for _ in 0..SOURCE_KEYS {
|
||||
let page = case
|
||||
.env
|
||||
.client
|
||||
.list_objects_v2()
|
||||
.bucket(&case.bucket)
|
||||
.prefix("page/")
|
||||
.max_keys(PAGE_SIZE)
|
||||
.set_continuation_token(token.take())
|
||||
.send()
|
||||
.await?;
|
||||
assert!(page.contents().len() <= PAGE_SIZE as usize, "a merged page must not exceed max_keys");
|
||||
for object in page.contents() {
|
||||
listed.push((object.key().unwrap_or_default().to_string(), object.size().unwrap_or_default()));
|
||||
}
|
||||
if !page.is_truncated().unwrap_or(false) {
|
||||
completed = true;
|
||||
break;
|
||||
}
|
||||
token = Some(
|
||||
page.next_continuation_token()
|
||||
.ok_or("truncated merged page without a continuation token")?
|
||||
.to_string(),
|
||||
);
|
||||
}
|
||||
assert!(completed, "the merged listing did not terminate");
|
||||
|
||||
let listed_keys: Vec<String> = listed.iter().map(|(key, _)| key.clone()).collect();
|
||||
assert_eq!(listed_keys, keys, "the merged listing is the source namespace in byte order");
|
||||
for (key, size) in &listed {
|
||||
let expected = if shared.contains(key) {
|
||||
LOCAL_BODY_LEN
|
||||
} else {
|
||||
SOURCE_BODY_LEN
|
||||
};
|
||||
assert_eq!(*size, expected as i64, "{key} must be reported by the side that wins it");
|
||||
}
|
||||
case.finish().await
|
||||
}
|
||||
|
||||
/// A backfill pulls every object under the run's source prefix. The count
|
||||
/// comes from the environment: the fake source caps out around 4,096 stored
|
||||
/// versions, while the MinIO lane runs the full production-shaped batch.
|
||||
#[tokio::test]
|
||||
async fn interop_backfill_pulls_every_source_object() -> TestResult {
|
||||
const KEY_PREFIX: &str = "cold/";
|
||||
let count = interop_backfill_objects()?;
|
||||
assert!(count > 0, "the backfill case needs at least one source object");
|
||||
let case = OdmInteropEnv::start("interop_backfill_pulls_every_source_object", "odm-interop-backfill", |_| {}).await?;
|
||||
|
||||
let objects: Vec<SeedObject> = (0..count)
|
||||
.map(|index| SeedObject::new(format!("{KEY_PREFIX}{index:06}"), Bytes::from(format!("object-{index:06}"))))
|
||||
.collect();
|
||||
case.seed(&objects).await?;
|
||||
|
||||
let started = case.env.start_backfill(&case.bucket, BackfillRequest::default()).await?;
|
||||
assert_eq!(started.status, 200, "start backfill: {}", started.body);
|
||||
|
||||
// One pull is a HEAD plus a GET plus a local write; the ceiling scales
|
||||
// with the object count so raising it in the workflow does not need a
|
||||
// second knob here.
|
||||
let timeout = Duration::from_secs(180 + count as u64 / 5);
|
||||
let done = case
|
||||
.env
|
||||
.wait_for_backfill(&case.bucket, timeout, |job| job["state"] == "completed")
|
||||
.await?;
|
||||
for (name, expected) in [
|
||||
("listed", count as u64),
|
||||
("enqueued", count as u64),
|
||||
("pulled", count as u64),
|
||||
("failed", 0),
|
||||
] {
|
||||
assert_eq!(
|
||||
done[name].as_u64().unwrap_or_else(|| panic!("{name} missing in {done}")),
|
||||
expected,
|
||||
"backfill {name}"
|
||||
);
|
||||
}
|
||||
assert_eq!(
|
||||
case.env.local_key_count(&case.bucket, KEY_PREFIX).await?,
|
||||
count,
|
||||
"every source object must be stored locally"
|
||||
);
|
||||
case.env
|
||||
.assert_local_present(&case.bucket, &objects[count - 1].key, &objects[count - 1].body)
|
||||
.await;
|
||||
case.finish().await
|
||||
}
|
||||
@@ -22,7 +22,10 @@
|
||||
//! optional merged `ListObjectsV2` (ODM-17, rustfs/backlog#2164). The fault, concurrency,
|
||||
//! interaction and real-source matrix is rustfs/backlog#2158; its lane split
|
||||
//! lives in `.config/nextest.toml` (fault / concurrency / real source run
|
||||
//! nightly, the rest in the merge lane).
|
||||
//! nightly, the rest in the merge lane). `interop_test` is the provider
|
||||
//! interoperability lane (ODM-20, rustfs/backlog#2167): the same case bodies
|
||||
//! against the fake source locally and against a real provider named by the
|
||||
//! environment in `.github/workflows/on-demand-migration-interop.yml`.
|
||||
|
||||
pub mod common;
|
||||
|
||||
@@ -32,5 +35,6 @@ mod fault_test;
|
||||
mod get_basic_test;
|
||||
mod harness_self_test;
|
||||
mod interaction_test;
|
||||
mod interop_test;
|
||||
mod list_through_test;
|
||||
mod real_source_test;
|
||||
|
||||
Reference in New Issue
Block a user