WP-20/21: contract and failing tests for vulnerability management
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Co-Authored-By: Claude Fable 5.1 <noreply@anthropic.com>
This commit is contained in:
Dennis Nemec
2026-09-02 22:40:48 +02:00
parent e6ef9b21d3
commit 5c6e09ad10
17 changed files with 1530 additions and 1 deletions

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@ -7,6 +7,7 @@ pub mod scheduler;
pub mod settings_service;
pub mod upgrade_service;
pub mod user_service;
pub mod vuln_service;
pub use auth_service::AuthService;
pub use cluster_service::ClusterService;
@ -15,6 +16,7 @@ pub use jobs::{JobHandler, JobLog, JobRunner};
pub use settings_service::SettingsService;
pub use upgrade_service::{PackageUpgradeJob, UpgradeParams};
pub use user_service::UserService;
pub use vuln_service::{VulnerabilityScanJob, VulnerabilityService};
#[cfg(test)]
pub(crate) mod test_fakes;

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@ -6,6 +6,8 @@ use domain::settings::{SmtpSettings, KEY_SMTP, SECRET_KEYS};
use domain::DomainError;
use crate::scheduler::validate_cron;
use crate::vuln_service::{DEFAULT_NOTIFY_MIN_SEVERITY, KEY_NOTIFY_MIN_SEVERITY};
use domain::vuln::Severity;
pub struct SettingsService {
repo: Arc<dyn SettingsRepository>,
@ -104,6 +106,20 @@ impl SettingsService {
}
}
impl SettingsService {
pub async fn notify_min_severity(&self) -> Result<Severity, DomainError> {
Ok(self
.get(KEY_NOTIFY_MIN_SEVERITY)
.await?
.map(|s| Severity::parse(&s))
.unwrap_or(DEFAULT_NOTIFY_MIN_SEVERITY))
}
pub async fn set_notify_min_severity(&self, severity: Severity) -> Result<(), DomainError> {
self.set(KEY_NOTIFY_MIN_SEVERITY, severity.as_str()).await
}
}
fn schedule_key(kind: JobKind) -> String {
format!("schedule.{}", kind.as_str())
}

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@ -494,3 +494,150 @@ impl ClusterGateway for MemCluster {
Ok(())
}
}
use domain::ports::{FindingRepository, VulnerabilityScanner};
use domain::vuln::{
Finding, FindingFilter, FindingStatus, RawFinding, Severity, SeverityCounts, TargetKind,
};
pub fn raw(
cve: &str,
pkg: &str,
installed: &str,
sev: Severity,
fixed: Option<&str>,
) -> RawFinding {
RawFinding {
cve_id: cve.into(),
severity: sev,
package: pkg.into(),
installed_version: installed.into(),
fixed_version: fixed.map(String::from),
title: format!("{cve} in {pkg}"),
url: format!("https://nvd.nist.gov/vuln/detail/{cve}"),
}
}
pub type ScanResults = Arc<Mutex<HashMap<String, Result<Vec<RawFinding>, String>>>>;
/// Scanner returning configurable results per target ("os" or image ref).
#[derive(Default)]
pub struct FakeScanner {
pub results: ScanResults,
}
impl FakeScanner {
pub fn with(self, target: &str, r: Result<Vec<RawFinding>, &str>) -> Self {
self.results
.lock()
.unwrap()
.insert(target.into(), r.map_err(String::from));
self
}
fn get(&self, target: &str) -> Result<Vec<RawFinding>, DomainError> {
match self.results.lock().unwrap().get(target) {
Some(Ok(v)) => Ok(v.clone()),
Some(Err(e)) => Err(DomainError::Unavailable(e.clone())),
None => Ok(vec![]),
}
}
}
#[async_trait]
impl VulnerabilityScanner for FakeScanner {
async fn version(&self) -> Result<String, DomainError> {
Ok("fake 0.1".into())
}
async fn scan_os(
&self,
out: &dyn domain::ports::LineSink,
) -> Result<Vec<RawFinding>, DomainError> {
out.line("scanning os");
self.get("os")
}
async fn scan_image(
&self,
image: &str,
out: &dyn domain::ports::LineSink,
) -> Result<Vec<RawFinding>, DomainError> {
out.line(&format!("scanning {image}"));
self.get(image)
}
}
#[derive(Default)]
pub struct MemFindings(pub Mutex<Vec<Finding>>);
#[async_trait]
impl FindingRepository for MemFindings {
async fn active_by_target(&self, target: &str) -> Result<Vec<Finding>, DomainError> {
Ok(self
.0
.lock()
.unwrap()
.iter()
.filter(|f| f.target == target && f.status != FindingStatus::Fixed)
.cloned()
.collect())
}
async fn insert(&self, finding: &Finding) -> Result<(), DomainError> {
self.0.lock().unwrap().push(finding.clone());
Ok(())
}
async fn touch(
&self,
ids: &[Uuid],
last_seen: chrono::DateTime<Utc>,
) -> Result<(), DomainError> {
self.0
.lock()
.unwrap()
.iter_mut()
.filter(|f| ids.contains(&f.id))
.for_each(|f| f.last_seen = last_seen);
Ok(())
}
async fn set_status(&self, id: Uuid, status: FindingStatus) -> Result<(), DomainError> {
let mut v = self.0.lock().unwrap();
let f = v
.iter_mut()
.find(|f| f.id == id)
.ok_or(DomainError::NotFound)?;
f.status = status;
Ok(())
}
async fn get(&self, id: Uuid) -> Result<Option<Finding>, DomainError> {
Ok(self.0.lock().unwrap().iter().find(|f| f.id == id).cloned())
}
async fn list(&self, filter: &FindingFilter) -> Result<Vec<Finding>, DomainError> {
let mut v: Vec<Finding> = self
.0
.lock()
.unwrap()
.iter()
.filter(|f| filter.include_fixed || f.status != FindingStatus::Fixed)
.filter(|f| filter.min_severity.is_none_or(|m| f.raw.severity >= m))
.filter(|f| filter.target.as_ref().is_none_or(|t| &f.target == t))
.filter(|f| filter.status.is_none_or(|s| f.status == s))
.cloned()
.collect();
v.sort_by(|a, b| {
b.raw
.severity
.cmp(&a.raw.severity)
.then(a.raw.cve_id.cmp(&b.raw.cve_id))
});
Ok(v)
}
async fn counts(&self, kind: Option<TargetKind>) -> Result<SeverityCounts, DomainError> {
let mut c = SeverityCounts::default();
for f in
self.0.lock().unwrap().iter().filter(|f| {
f.status != FindingStatus::Fixed && kind.is_none_or(|k| f.target_kind == k)
})
{
c.add(f.raw.severity);
}
Ok(c)
}
}

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@ -6,3 +6,4 @@ mod scheduler_tests;
mod settings_tests;
mod upgrade_tests;
mod user_service_tests;
mod vuln_tests;

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@ -0,0 +1,278 @@
use std::sync::{Arc, Mutex};
use async_trait::async_trait;
use domain::vuln::{FindingFilter, FindingStatus, Severity, TargetKind};
use domain::DomainError;
use crate::jobs::JobLog;
use crate::test_fakes::{
raw, smtp, FakeCipher, FakeScanner, MemCluster, MemFindings, MemMailer, MemSettings,
ScanResults,
};
use crate::{SettingsService, VulnerabilityService};
#[derive(Default)]
struct VecLog(Mutex<Vec<String>>);
#[async_trait]
impl JobLog for VecLog {
async fn line(&self, text: &str) {
self.0.lock().unwrap().push(text.into());
}
}
struct F {
findings: Arc<MemFindings>,
mailer: Arc<MemMailer>,
settings: Arc<SettingsService>,
results: ScanResults,
}
fn fixture(scanner: FakeScanner) -> (F, VulnerabilityService) {
let findings = Arc::new(MemFindings::default());
let mailer = Arc::new(MemMailer::default());
let results = scanner.results.clone();
let settings = Arc::new(SettingsService::new(
Arc::new(MemSettings::default()),
Arc::new(FakeCipher),
mailer.clone(),
));
let svc = VulnerabilityService::new(
Arc::new(scanner),
findings.clone(),
Arc::new(MemCluster::default()),
settings.clone(),
);
(
F {
findings,
mailer,
settings,
results,
},
svc,
)
}
const GITEA: &str = "gitea/gitea:1.22.3";
const PG: &str = "bitnami/postgresql:16.4.0";
#[tokio::test]
async fn first_scan_inserts_findings_for_os_and_all_cluster_images() {
let scanner = FakeScanner::default()
.with(
"os",
Ok(vec![raw(
"CVE-1",
"openssl",
"3.0.1",
Severity::High,
Some("3.0.2"),
)]),
)
.with(
GITEA,
Ok(vec![
raw("CVE-2", "git", "2.39", Severity::Critical, None),
raw("CVE-3", "curl", "7.88", Severity::Low, None),
]),
);
let (f, svc) = fixture(scanner);
let log = VecLog::default();
let report = svc.scan(&log).await.unwrap();
assert_eq!(report.targets, vec!["os", PG, GITEA]);
assert_eq!(report.new_findings.len(), 3);
assert_eq!(report.total_open, 3);
assert_eq!(report.fixed, 0);
let all = f.findings.0.lock().unwrap();
let os = all.iter().find(|x| x.target == "os").unwrap();
assert_eq!(os.target_kind, TargetKind::Os);
assert_eq!(os.status, FindingStatus::Open);
assert_eq!(os.raw.fixed_version.as_deref(), Some("3.0.2"));
assert!(all
.iter()
.any(|x| x.target == GITEA && x.target_kind == TargetKind::Image));
let lines = log.0.lock().unwrap().join("\n");
assert!(lines.contains("scanning os"), "{lines}");
assert!(lines.contains(GITEA), "{lines}");
}
#[tokio::test]
async fn rescan_keeps_existing_marks_fixed_and_reports_only_new() {
let scanner = FakeScanner::default().with(
"os",
Ok(vec![
raw("CVE-1", "openssl", "3.0.1", Severity::High, None),
raw("CVE-9", "bash", "5.2", Severity::Low, None),
]),
);
let (f, svc) = fixture(scanner);
let first = svc.scan(&VecLog::default()).await.unwrap();
assert_eq!(first.new_findings.len(), 2);
let first_seen = f.findings.0.lock().unwrap()[0].first_seen;
// CVE-9 disappears (fixed), CVE-1 stays, CVE-2 is new
*f.results.lock().unwrap() = std::collections::HashMap::from([(
"os".to_string(),
Ok(vec![
raw("CVE-1", "openssl", "3.0.1", Severity::High, None),
raw("CVE-2", "openssl", "3.0.1", Severity::Critical, None),
]),
)]);
let second = svc.scan(&VecLog::default()).await.unwrap();
assert_eq!(
second
.new_findings
.iter()
.map(|f| f.raw.cve_id.as_str())
.collect::<Vec<_>>(),
vec!["CVE-2"]
);
assert_eq!(second.fixed, 1);
assert_eq!(second.total_open, 2);
let all = f.findings.0.lock().unwrap();
let cve1 = all.iter().find(|x| x.raw.cve_id == "CVE-1").unwrap();
assert_eq!(cve1.first_seen, first_seen, "first_seen is preserved");
assert!(cve1.last_seen > first_seen);
assert_eq!(
all.iter().find(|x| x.raw.cve_id == "CVE-9").unwrap().status,
FindingStatus::Fixed
);
}
#[tokio::test]
async fn failed_target_is_skipped_and_its_findings_are_kept() {
let scanner = FakeScanner::default()
.with("os", Ok(vec![raw("CVE-1", "a", "1", Severity::High, None)]))
.with(GITEA, Err("pull failed"));
let (f, svc) = fixture(scanner);
svc.scan(&VecLog::default()).await.unwrap();
*f.results.lock().unwrap() =
std::collections::HashMap::from([("os".to_string(), Err("trivy crashed".to_string()))]);
let log = VecLog::default();
let report = svc.scan(&log).await.unwrap();
assert_eq!(report.failed_targets, vec!["os"]);
assert_eq!(
f.findings
.0
.lock()
.unwrap()
.iter()
.filter(|x| x.status == FindingStatus::Open)
.count(),
1,
"not marked fixed on failure"
);
assert!(log
.0
.lock()
.unwrap()
.iter()
.any(|l| l.contains("trivy crashed")));
// scanner not installed at all -> hard error
*f.results.lock().unwrap() = std::collections::HashMap::new();
svc.scan(&VecLog::default()).await.unwrap();
}
#[tokio::test]
async fn new_findings_at_or_above_threshold_trigger_one_mail() {
let scanner = FakeScanner::default().with(
"os",
Ok(vec![
raw("CVE-1", "a", "1", Severity::Critical, Some("2")),
raw("CVE-2", "b", "1", Severity::Medium, None),
]),
);
let (f, svc) = fixture(scanner);
// no smtp configured -> no mail, no error
svc.scan(&VecLog::default()).await.unwrap();
assert!(f.mailer.0.lock().unwrap().is_empty());
f.settings.set_smtp(smtp()).await.unwrap();
*f.results.lock().unwrap() = std::collections::HashMap::from([(
"os".to_string(),
Ok(vec![
raw("CVE-3", "c", "1", Severity::High, None),
raw("CVE-4", "d", "1", Severity::Low, None),
]),
)]);
svc.scan(&VecLog::default()).await.unwrap();
let sent = f.mailer.0.lock().unwrap();
assert_eq!(sent.len(), 1);
assert!(sent[0].1.contains("1 new"), "{}", sent[0].1);
assert!(sent[0].2.contains("CVE-3"));
assert!(!sent[0].2.contains("CVE-4"), "below threshold");
drop(sent);
f.settings
.set_notify_min_severity(Severity::Low)
.await
.unwrap();
*f.results.lock().unwrap() = std::collections::HashMap::from([(
"os".to_string(),
Ok(vec![raw("CVE-5", "e", "1", Severity::Low, None)]),
)]);
svc.scan(&VecLog::default()).await.unwrap();
assert_eq!(f.mailer.0.lock().unwrap().len(), 2);
}
#[tokio::test]
async fn list_summary_and_status_changes() {
let scanner = FakeScanner::default()
.with(
"os",
Ok(vec![
raw("CVE-1", "a", "1", Severity::Critical, None),
raw("CVE-2", "b", "1", Severity::Low, None),
]),
)
.with(
GITEA,
Ok(vec![raw("CVE-3", "c", "1", Severity::High, None)]),
);
let (_f, svc) = fixture(scanner);
svc.scan(&VecLog::default()).await.unwrap();
let high = svc
.list(FindingFilter {
min_severity: Some(Severity::High),
..Default::default()
})
.await
.unwrap();
assert_eq!(
high.iter()
.map(|f| f.raw.cve_id.as_str())
.collect::<Vec<_>>(),
vec!["CVE-1", "CVE-3"]
);
let s = svc.summary().await.unwrap();
assert_eq!(s.total.total(), 3);
assert_eq!(s.os.critical, 1);
assert_eq!(s.images.high, 1);
assert!(s.last_scan.is_some());
let id = high[0].id;
let f = svc
.set_status(id, FindingStatus::Acknowledged)
.await
.unwrap();
assert_eq!(f.status, FindingStatus::Acknowledged);
assert!(matches!(
svc.set_status(id, FindingStatus::Fixed).await.unwrap_err(),
DomainError::Validation(_)
));
assert_eq!(
svc.set_status(uuid::Uuid::new_v4(), FindingStatus::Open)
.await
.unwrap_err(),
DomainError::NotFound
);
let ack = svc
.list(FindingFilter {
status: Some(FindingStatus::Acknowledged),
..Default::default()
})
.await
.unwrap();
assert_eq!(ack.len(), 1);
}

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@ -0,0 +1,84 @@
//! Vulnerability scanning: diffs scanner results against stored findings,
//! notifies about new ones by mail.
use std::sync::Arc;
use async_trait::async_trait;
use domain::ports::{ClusterGateway, FindingRepository, VulnerabilityScanner};
use domain::vuln::{
Finding, FindingFilter, FindingStatus, ScanReport, Severity, SeverityCounts, TargetKind,
};
use domain::DomainError;
use uuid::Uuid;
use crate::jobs::{JobHandler, JobLog};
use crate::SettingsService;
pub struct VulnerabilityService {
pub(crate) scanner: Arc<dyn VulnerabilityScanner>,
pub(crate) findings: Arc<dyn FindingRepository>,
pub(crate) cluster: Arc<dyn ClusterGateway>,
pub(crate) settings: Arc<SettingsService>,
}
impl VulnerabilityService {
pub fn new(
scanner: Arc<dyn VulnerabilityScanner>,
findings: Arc<dyn FindingRepository>,
cluster: Arc<dyn ClusterGateway>,
settings: Arc<SettingsService>,
) -> Self {
Self {
scanner,
findings,
cluster,
settings,
}
}
/// Scan the OS and all cluster images, persist the diff, notify about new findings.
pub async fn scan(&self, _log: &dyn JobLog) -> Result<ScanReport, DomainError> {
todo!()
}
pub async fn list(&self, _filter: FindingFilter) -> Result<Vec<Finding>, DomainError> {
todo!()
}
pub async fn summary(&self) -> Result<Summary, DomainError> {
todo!()
}
/// Only open <-> acknowledged transitions are allowed by users.
pub async fn set_status(
&self,
_id: Uuid,
_status: FindingStatus,
) -> Result<Finding, DomainError> {
todo!()
}
pub async fn scanner_version(&self) -> Result<String, DomainError> {
self.scanner.version().await
}
}
#[derive(Clone, Debug, Default, PartialEq, Eq, serde::Serialize)]
pub struct Summary {
pub total: SeverityCounts,
pub os: SeverityCounts,
pub images: SeverityCounts,
pub last_scan: Option<chrono::DateTime<chrono::Utc>>,
}
pub struct VulnerabilityScanJob(pub Arc<VulnerabilityService>);
#[async_trait]
impl JobHandler for VulnerabilityScanJob {
async fn run(&self, _params: Option<String>, _log: &dyn JobLog) -> Result<(), String> {
todo!()
}
}
/// Key of the notification threshold setting.
pub const KEY_NOTIFY_MIN_SEVERITY: &str = "vuln.notify_min_severity";
pub const DEFAULT_NOTIFY_MIN_SEVERITY: Severity = Severity::High;