Files
cairnobs/enterprise/internal/chrunner/chrunner_test.go
T
jcoffey-dev 13cf9a30cb Rebrand: Sentry -> Cairn OBS
Full rebrand across cosmetic branding, code identifiers, and
infrastructure/data-plane naming, using the supplied Cairn OBS logo
package. Cosmetic: favicon/logo swap (also closes a stale license-audit
finding -- the old favicon was SvelteKit's unreplaced scaffold logo),
new centered welcome landing page, larger/legible sidebar logo, page
titles, CLAUDE.md/README/docs prose.

Code identifiers: Go module path github.com/sentry/sentry ->
github.com/cairnobs/cairnobs across all 13 modules and ~91 files (protoc
regenerated); Rust crates sentry-agent/sentry-parser/sentry-search ->
cairnobs-*; CLI sentryctl -> cairnobsctl; Terraform provider fully
renamed (sentry_dashboard etc. -> cairnobs_dashboard, provider type,
env vars); every session/auth cookie name; agent config paths and
Windows service identity.

Deliberately preserved: the gRPC wire protocol's protobuf packages
(sentry.logs.v1, sentry.agent.v1) and their Go import directory
(proto/sentry/...) -- renaming the wire-level package would break every
currently-deployed agent binary (confirmed two real hosts, including
mail.inbuxa.com, are actively streaming through this exact contract)
until rebuilt and redeployed in lockstep with an ingest cutover. Only
the Go module path wrapping the generated code changes.

Infrastructure: every docker-compose container name (root and three
component-level compose files); the Helm chart (directory, Chart.yaml,
named-template helpers, all templates, values.yaml image repos);
Kubernetes Operator (CRD group sentry.io -> cairnobs.io, both CRD YAML
files, Go identifiers, RBAC markers); the coupled enterprise/tenantcrd
package. Caught and fixed real path-coupling bugs along the way: the
Helm chart's search/ingest volume mounts and the dev-only-credential
detection constant vs. docker-compose.yml's literal values had to move
together or a security warning would have silently stopped firing.

Data plane: Postgres database sentry_metadata -> cairnobs_metadata and
role sentry -> cairnobs; ClickHouse database sentry -> cairnobs; Kafka
topic sentry.logs.raw -> cairnobs.logs.raw and its consumer groups.
Source-level defaults, docker-compose.yml, and every migrate.sh/
provision script default updated together; already-applied migration
files left untouched per this repo's immutable-migration convention.

Verified at every layer: all 13 Go modules build/vet/test clean, both
Rust workspaces (agent, search) build/clippy/test clean, npm run check/
build clean, docker compose config validates on all four compose files.
Live-verified against a real docker stack multiple times through this
work, including a final fresh-volume run confirming the actual renamed
Postgres database/role, ClickHouse database, and Kafka topic all work
end to end with a real login and query, zero console errors.
2026-08-21 20:53:32 -07:00

221 lines
8.5 KiB
Go

// Integration tests against a real ClickHouse -- exercises the actual
// question this package exists to answer: does a query authenticated as
// tenant A ever see tenant B's data. Uses enterprise/internal/
// tenantprovision to set up real per-tenant users first (this is the
// adversarial probe api/queryapi/tenant_isolation_gap_test.go's
// TestAdversarial_ClickHouseUserCannotReadOtherTenantDatabaseByFullyQualifiedName
// names as blocked -- this is where it stops being blocked, at the
// chrunner/query-execution layer specifically, complementing
// tenantprovision's own version of the same probe at the raw-SQL-user
// layer).
//
// Skipped unless CHRUNNER_TEST_CLICKHOUSE_ADDR is set; run via:
//
// docker run --rm --network sentry_default -v $(pwd)/../../..:/src -w /src/enterprise \
// -e CHRUNNER_TEST_CLICKHOUSE_ADDR=clickhouse:9000 \
// -e CHRUNNER_TEST_CLICKHOUSE_PASSWORD=cairnobs-dev-only \
// golang:1.25-alpine go test ./internal/chrunner/... -v
package chrunner
import (
"context"
"fmt"
"os"
"testing"
chdriver "github.com/ClickHouse/clickhouse-go/v2"
"github.com/google/uuid"
"github.com/cairnobs/cairnobs/api/authz"
"github.com/cairnobs/cairnobs/enterprise/internal/tenantprovision"
)
func testAddr(t *testing.T) string {
t.Helper()
addr := os.Getenv("CHRUNNER_TEST_CLICKHOUSE_ADDR")
if addr == "" {
t.Skip("CHRUNNER_TEST_CLICKHOUSE_ADDR not set -- skipping live-ClickHouse integration test")
}
return addr
}
func provisionTestTenant(t *testing.T, addr string) (tenantID string, creds tenantprovision.Credentials) {
t.Helper()
admin, err := chdriver.Open(&chdriver.Options{
Addr: []string{addr},
Auth: chdriver.Auth{Database: "default", Username: "default", Password: os.Getenv("CHRUNNER_TEST_CLICKHOUSE_PASSWORD")},
})
if err != nil {
t.Fatalf("opening admin connection: %v", err)
}
t.Cleanup(func() { admin.Close() })
tenantID = "cr" + uuid.NewString()[:8]
creds, err = tenantprovision.New(admin).ProvisionClickHouse(context.Background(), tenantID)
if err != nil {
t.Fatalf("provisioning tenant %s: %v", tenantID, err)
}
return tenantID, creds
}
func TestRegistryRoutesQueryToCorrectTenant(t *testing.T) {
addr := testAddr(t)
ctx := context.Background()
tenantA, credsA := provisionTestTenant(t, addr)
// Seed a distinguishing row directly as the tenant (SELECT-only
// grant means chrunner's own connection can't INSERT -- use a
// throwaway admin connection to seed data, matching how a real
// deployment's ingest path would write, not how api's read-only
// query path does).
admin, err := chdriver.Open(&chdriver.Options{
Addr: []string{addr},
Auth: chdriver.Auth{Database: "default", Username: "default", Password: os.Getenv("CHRUNNER_TEST_CLICKHOUSE_PASSWORD")},
})
if err != nil {
t.Fatalf("opening admin connection: %v", err)
}
defer admin.Close()
if err := admin.Exec(ctx, fmt.Sprintf("CREATE TABLE `%s`.marker (id UInt8) ENGINE = Memory", tenantA)); err != nil {
t.Fatalf("creating marker table: %v", err)
}
if err := admin.Exec(ctx, fmt.Sprintf("INSERT INTO `%s`.marker VALUES (42)", tenantA)); err != nil {
t.Fatalf("seeding marker row: %v", err)
}
reg, err := New(ctx, addr, []DataSource{
{TenantID: tenantA, Database: tenantA, Username: credsA.Username, Password: credsA.Password},
})
if err != nil {
t.Fatalf("New: %v", err)
}
defer reg.Close()
reqCtx := authz.WithIdentity(ctx, authz.Identity{TenantID: tenantA, Role: authz.RoleViewer})
result, err := reg.RunSQL(reqCtx, "SELECT id FROM marker")
if err != nil {
t.Fatalf("RunSQL: %v", err)
}
if len(result.Rows) != 1 || result.Rows[0][0] != uint8(42) {
t.Fatalf("unexpected result: %+v", result.Rows)
}
}
func TestRegistryRefusesQueryWithNoTenantContext(t *testing.T) {
addr := testAddr(t)
ctx := context.Background()
tenantA, credsA := provisionTestTenant(t, addr)
reg, err := New(ctx, addr, []DataSource{
{TenantID: tenantA, Database: tenantA, Username: credsA.Username, Password: credsA.Password},
})
if err != nil {
t.Fatalf("New: %v", err)
}
defer reg.Close()
if _, err := reg.RunSQL(ctx, "SELECT 1"); err == nil {
t.Fatal("expected RunSQL to refuse a request with no authenticated identity in context")
}
}
func TestRegistryRefusesUnknownTenant(t *testing.T) {
addr := testAddr(t)
ctx := context.Background()
tenantA, credsA := provisionTestTenant(t, addr)
reg, err := New(ctx, addr, []DataSource{
{TenantID: tenantA, Database: tenantA, Username: credsA.Username, Password: credsA.Password},
})
if err != nil {
t.Fatalf("New: %v", err)
}
defer reg.Close()
reqCtx := authz.WithIdentity(ctx, authz.Identity{TenantID: "some-other-tenant-never-provisioned", Role: authz.RoleViewer})
if _, err := reg.RunSQL(reqCtx, "SELECT 1"); err == nil {
t.Fatal("expected RunSQL to refuse a tenant with no provisioned connection, not silently fall back")
}
}
// TestRegistryTenantCannotReadOtherTenantEvenViaRawSQL is the full
// end-to-end adversarial probe: two tenants, two connections inside one
// Registry, and a raw-SQL attempt (which the query language's escape
// hatch would pass straight through unmodified) to read the other
// tenant's data by fully-qualified name. This is what proves the
// connection-layer isolation model actually holds through chrunner, not
// just through tenantprovision's own grants (already covered by
// tenantprovision_test.go) -- this test exercises the exact code path
// api/queryapi.Handler calls in production.
func TestRegistryTenantCannotReadOtherTenantEvenViaRawSQL(t *testing.T) {
addr := testAddr(t)
ctx := context.Background()
tenantA, credsA := provisionTestTenant(t, addr)
tenantB, credsB := provisionTestTenant(t, addr)
admin, err := chdriver.Open(&chdriver.Options{
Addr: []string{addr},
Auth: chdriver.Auth{Database: "default", Username: "default", Password: os.Getenv("CHRUNNER_TEST_CLICKHOUSE_PASSWORD")},
})
if err != nil {
t.Fatalf("opening admin connection: %v", err)
}
defer admin.Close()
if err := admin.Exec(ctx, fmt.Sprintf("CREATE TABLE `%s`.secret (id UInt8) ENGINE = Memory", tenantB)); err != nil {
t.Fatalf("creating secret table: %v", err)
}
if err := admin.Exec(ctx, fmt.Sprintf("INSERT INTO `%s`.secret VALUES (99)", tenantB)); err != nil {
t.Fatalf("seeding secret row: %v", err)
}
reg, err := New(ctx, addr, []DataSource{
{TenantID: tenantA, Database: tenantA, Username: credsA.Username, Password: credsA.Password},
{TenantID: tenantB, Database: tenantB, Username: credsB.Username, Password: credsB.Password},
})
if err != nil {
t.Fatalf("New: %v", err)
}
defer reg.Close()
reqCtx := authz.WithIdentity(ctx, authz.Identity{TenantID: tenantA, Role: authz.RoleViewer})
_, err = reg.RunSQL(reqCtx, fmt.Sprintf("SELECT * FROM `%s`.secret", tenantB))
if err == nil {
t.Fatal("tenant A's request was able to read tenant B's database by fully-qualified name -- isolation is broken")
}
}
// TestRegistryRefusesMidProvisioningTenant is Phase 4 task 8's item 4
// adversarial probe (see /docs/phase-4-isolation-design.md's
// verification plan and api/queryapi/tenant_isolation_gap_test.go):
// a tenant row that exists in rbacstore but hasn't reached the
// active+credentialed gate yet must be refused, not served via some
// ambient connection. Unlike every other test in this file, this one
// needs no live ClickHouse at all -- New never dials out for an empty
// DataSource list, so an empty Registry (as if every tenant in
// `tenants` were still mid-provisioning) is exactly what
// enterprise-api's main.go would build from
// rbacstore.ListProvisionedDataSources before any tenant clears that
// filter. "Mid-provisioning" and "entirely unknown" collapse to the
// identical code path here by construction: Registry has no concept of
// "a tenant row exists," only of "a runner is in my map" -- the real
// gate is ListProvisionedDataSources's SQL WHERE clause, already
// covered by rbacstore_test.go's
// TestListProvisionedDataSourcesExcludesUnprovisionedAndInactive. This
// test is the Docker-free proof that RunSQL's refusal actually holds on
// the empty-map end of that gate, complementing
// TestRegistryRefusesUnknownTenant's live-ClickHouse proof on the
// populated end.
func TestRegistryRefusesMidProvisioningTenant(t *testing.T) {
ctx := context.Background()
reg, err := New(ctx, "unused:9000", nil)
if err != nil {
t.Fatalf("New: %v", err)
}
defer reg.Close()
reqCtx := authz.WithIdentity(ctx, authz.Identity{TenantID: "mid-provisioning-tenant", Role: authz.RoleViewer})
if _, err := reg.RunSQL(reqCtx, "SELECT 1"); err == nil {
t.Fatal("expected RunSQL to refuse a tenant that hasn't reached the active+credentialed gate, not silently serve it")
}
}