cloudapi: add multi-tenancy test
This commit adds a very in-depth test for multi-tenancy. It queues several composes and then runs all jobs belonging to them while checking that they are run by the correct tenant. Signed-off-by: Ondřej Budai <ondrej@budai.cz>
This commit is contained in:
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commit
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2 changed files with 280 additions and 2 deletions
278
internal/cloudapi/v2/v2_multi_tenancy_test.go
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278
internal/cloudapi/v2/v2_multi_tenancy_test.go
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@ -0,0 +1,278 @@
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package v2_test
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import (
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"context"
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"encoding/json"
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"fmt"
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"io/ioutil"
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"net/http"
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"os"
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"testing"
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"time"
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"github.com/golang-jwt/jwt"
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"github.com/google/uuid"
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"github.com/openshift-online/ocm-sdk-go/authentication"
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"github.com/stretchr/testify/require"
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"github.com/osbuild/osbuild-composer/internal/cloudapi/v2"
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"github.com/osbuild/osbuild-composer/internal/distro/test_distro"
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"github.com/osbuild/osbuild-composer/internal/jobqueue"
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"github.com/osbuild/osbuild-composer/internal/test"
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)
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func kojiRequest() string {
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return fmt.Sprintf(`
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{
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"distribution":"%[1]s",
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"image_requests": [
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{
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"architecture": "%[2]s",
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"image_type": "%[3]s",
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"repositories": [
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{
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"baseurl": "https://repo.example.com/"
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}
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]
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}
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],
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"koji": {
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"server": "koji.example.com",
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"task_id": 1,
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"name":"foo",
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"version":"1",
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"release":"2"
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}
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}`, test_distro.TestDistroName, test_distro.TestArch3Name, string(v2.ImageTypesGuestImage))
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}
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func s3Request() string {
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return fmt.Sprintf(`
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{
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"distribution":"%[1]s",
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"image_requests": [
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{
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"architecture": "%[2]s",
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"image_type": "%[3]s",
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"repositories": [
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{
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"baseurl": "https://repo.example.com/"
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}
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],
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"upload_options": {
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"region": "us-east-1"
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}
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}
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]
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}`, test_distro.TestDistroName, test_distro.TestArch3Name, string(v2.ImageTypesGuestImage))
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}
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var reqContextCallCount = 0
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func reqContext(orgID string) context.Context {
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// Alternate between rh-org-id and account_id so we verify that the APIs understand
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// both fields.
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tenantFields := []string{"rh-org-id", "account_id"}
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tenantField := tenantFields[reqContextCallCount%2]
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reqContextCallCount++
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return authentication.ContextWithToken(context.Background(), &jwt.Token{
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Claims: jwt.MapClaims{
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tenantField: orgID,
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},
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})
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}
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func scheduleRequest(t *testing.T, handler http.Handler, orgID, request string) uuid.UUID {
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result := test.APICall{
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Handler: handler,
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Context: reqContext(orgID),
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Method: http.MethodPost,
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Path: "/api/image-builder-composer/v2/compose",
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RequestBody: test.JSONRequestBody(request),
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ExpectedStatus: http.StatusCreated,
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}.Do(t)
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// Parse ID
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var id v2.ComposeId
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require.NoError(t, json.Unmarshal(result.Body, &id))
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return uuid.MustParse(id.Id)
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}
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func getAllJobsOfCompose(t *testing.T, q jobqueue.JobQueue, finalJob uuid.UUID) []uuid.UUID {
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// This is basically a BFS on job dependencies
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// It may return duplicates (job dependencies are not a tree) but we don't care for our purposes
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jobsToQuery := []uuid.UUID{finalJob}
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discovered := []uuid.UUID{finalJob}
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for len(jobsToQuery) > 0 {
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current := jobsToQuery[0]
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jobsToQuery = jobsToQuery[1:]
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_, _, deps, _, err := q.Job(current)
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require.NoError(t, err)
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discovered = append(discovered, deps...)
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jobsToQuery = append(jobsToQuery, deps...)
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}
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return discovered
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}
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func jobRequest() string {
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return fmt.Sprintf(`
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{
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"types": [
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"koji-init",
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"osbuild",
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"osbuild-koji",
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"koji-finalize",
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"depsolve"
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],
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"arch": "%s"
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}`, test_distro.TestArch3Name)
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}
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func runNextJob(t *testing.T, jobs []uuid.UUID, workerHandler http.Handler, orgID string) {
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// test that a different tenant doesn't get any job
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// 100ms ought to be enough 🤞
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ctx, cancel := context.WithDeadline(reqContext("987"), time.Now().Add(time.Millisecond*100))
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defer cancel()
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test.APICall{
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Handler: workerHandler,
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Method: http.MethodPost,
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Path: "/api/worker/v1/jobs",
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RequestBody: test.JSONRequestBody(jobRequest()),
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Context: ctx,
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ExpectedStatus: http.StatusNoContent,
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}.Do(t)
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// get a job using the right tenant
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resp := test.APICall{
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Handler: workerHandler,
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Method: http.MethodPost,
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Path: "/api/worker/v1/jobs",
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RequestBody: test.JSONRequestBody(jobRequest()),
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Context: reqContext(orgID),
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ExpectedStatus: http.StatusCreated,
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}.Do(t)
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// get the job ID and test if it belongs to the list of jobs belonging to a particular compose (and thus tenant)
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var job struct {
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ID string `json:"id"`
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Location string `json:"location"`
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}
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require.NoError(t, json.Unmarshal(resp.Body, &job))
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jobID := uuid.MustParse(job.ID)
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require.Contains(t, jobs, jobID)
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// finish the job
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test.APICall{
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Handler: workerHandler,
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Method: http.MethodPatch,
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Path: job.Location,
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RequestBody: test.JSONRequestBody(`{"result": {"job_result":{}}}`),
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ExpectedStatus: http.StatusOK,
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}.Do(t)
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}
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// TestMultitenancy tests that the cloud API is securely multi-tenant.
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//
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// It creates 4 composes (mixed s3 and koji ones) and then simulates workers of
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// 5 different tenants and makes sure that the workers only pick jobs that
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// belong to their tenant.
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//
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// The test is not written in a parallel way but since our queue is FIFO and
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// the test is running the job in a LIFO way, it should cover everything.
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//
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// It's important to acknowledge that this test is not E2E. We don't pass raw
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// JWT here but an already parsed one inside a request context. A proper E2E
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// also exists to test the full setup. Unfortunately, it cannot properly test
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// that all jobs are assigned to the correct channel, therefore we need also
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// this test.
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func TestMultitenancy(t *testing.T) {
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dir, err := ioutil.TempDir("", "osbuild-composer-test-api-v2-")
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require.NoError(t, err)
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defer os.RemoveAll(dir)
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// Passing an empty list as depsolving channels, we want to do depsolves
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// ourselvess
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apiServer, workerServer, q, cancel := newV2Server(t, dir, []string{}, true)
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handler := apiServer.Handler("/api/image-builder-composer/v2")
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defer cancel()
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// define 4 composes
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composes := []*struct {
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koji bool
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orgID string
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id uuid.UUID
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jobIDs []uuid.UUID
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}{
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{
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koji: true,
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orgID: "42",
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},
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{
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koji: false,
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orgID: "123",
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},
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{
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koji: true,
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orgID: "2022",
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},
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{
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koji: true,
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orgID: "1995",
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},
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}
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// schedule all composes and retrieve some information about them
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for _, c := range composes {
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var request string
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if c.koji {
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request = kojiRequest()
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} else {
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request = s3Request()
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}
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id := scheduleRequest(t, handler, c.orgID, request)
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c.id = id
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// make sure that the channel is prefixed with "org-"
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_, _, _, channel, err := q.Job(id)
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require.NoError(t, err)
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require.Equal(t, "org-"+c.orgID, channel)
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// get all jobs belonging to this compose
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c.jobIDs = getAllJobsOfCompose(t, q, id)
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}
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// Run the composes in a LIFO way
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for i := len(composes) - 1; i >= 0; i -= 1 {
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c := composes[i]
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// We have to run 2 jobs for S3 composes (depsolve, osbuild)
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// 4 jobs for koji composes (depsolve, koji-init, osbuild-koji, koji-finalize)
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numjobs := 2
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if c.koji {
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numjobs = 4
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}
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// Run all jobs
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for j := 0; j < numjobs; j++ {
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runNextJob(t, c.jobIDs, workerServer.Handler(), c.orgID)
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}
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// Make sure that the compose is not pending (i.e. all jobs did run)
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resp := test.APICall{
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Handler: handler,
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Method: http.MethodGet,
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Path: "/api/image-builder-composer/v2/composes/" + c.id.String(),
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ExpectedStatus: http.StatusOK,
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}.Do(t)
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var result struct {
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Status string `json:"status"`
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}
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require.NoError(t, json.Unmarshal(resp.Body, &result))
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require.NotEqual(t, "pending", result.Status)
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}
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}
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@ -26,7 +26,7 @@ import (
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func newV2Server(t *testing.T, dir string, depsolveChannels []string, enableJWT bool) (*v2.Server, *worker.Server, jobqueue.JobQueue, context.CancelFunc) {
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q, err := fsjobqueue.New(dir)
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require.NoError(t, err)
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workerServer := worker.NewServer(nil, q, worker.Config{BasePath: "/api/worker/v1", JWTEnabled: enableJWT, TenantProviderFields: []string{"rh-org-id"}})
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workerServer := worker.NewServer(nil, q, worker.Config{BasePath: "/api/worker/v1", JWTEnabled: enableJWT, TenantProviderFields: []string{"rh-org-id", "account_id"}})
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distros, err := distro_mock.NewDefaultRegistry()
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require.NoError(t, err)
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@ -35,7 +35,7 @@ func newV2Server(t *testing.T, dir string, depsolveChannels []string, enableJWT
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config := v2.ServerConfig{
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AWSBucket: "image-builder.service",
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JWTEnabled: enableJWT,
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TenantProviderFields: []string{"rh-org-id"},
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TenantProviderFields: []string{"rh-org-id", "account_id"},
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}
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v2Server := v2.NewServer(workerServer, distros, config)
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require.NotNil(t, v2Server)
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