Files
cloud-ip-validator/internal/httpapi/handlers_autocycle_test.go
T
ayurishchevandClaude Sonnet 5.5 aff8fe38b5 Scan floating IPs in the background, page by page, so thousands of addresses work
The "Scan Floating IP" button failed with a client timeout: the project now
holds ~6.4k floating IPs and the scan listed them all in one unpaginated,
timeout-less Neutron request on the HTTP request context.

openstack: ListFreeFloatingIPs reads marker-based pages (fields= keeps them
small) with per-page retry/backoff on transport errors, 5xx and 429, and every
request now has a timeout (also ends hangs inside the orchestrator tick).

orchestrator: the scan is a single-flight background job on the process
context with progress (clearing/listing/enqueuing/done/error), dry_run, full
discovery before anything is enqueued, then SubmitIPs in chunks of 500 in
ascending IP order; a failed read leaves the queue untouched. The auto-cycle
gets a "scanning" phase that polls the job, so the control loop and
autoCycleMu are never held across OpenStack/DB work; it recovers after a
restart and waits for (instead of adopting) a scan started by someone else.

db: migration 0009 (indexes), paged ListIPsPage/ListRegistryPage, GROUP BY
counters, EXISTS completion check, set-based ClearAllIPs.

API: POST /admin/ips/scan -> 202 (dry_run, wait), GET /admin/ips/scan, paging
and filters on /admin/ips and /admin/registry (bare arrays without limit),
results_by_overall in /admin/status.

dashboard: scan progress panel and dry-run button, paginated /ips and
/registry with server-side filters, Overview on counters and capped lists
with progress/ETA, "select all N by filter", hx-params fix for per-row
buttons, real counts in confirmations.

Also: docs (API, USAGE, DASHBOARD, README), plan and review under
docs/changes/, bin/ rebuilt with new SHA256SUMS.

Co-Authored-By: Claude Sonnet 5.5 <noreply@anthropic.com>
2026-10-01 19:31:11 +03:00

219 lines
7.7 KiB
Go

package httpapi
import (
"encoding/json"
"net/http"
"strings"
"testing"
"time"
"cloudipvalidator/internal/orchestrator"
)
// stepAutoCycleThroughScan drives one cycle start: the first step launches the
// background scan (phase scanning), then it waits for the job and runs the
// step that consumes its result.
func stepAutoCycleThroughScan(t *testing.T, orch *orchestrator.Orchestrator) {
t.Helper()
orch.AutoCycleStep(t.Context())
waitForScan(t, orch)
orch.AutoCycleStep(t.Context())
}
func waitForScan(t *testing.T, orch *orchestrator.Orchestrator) orchestrator.ScanStatus {
t.Helper()
deadline := time.Now().Add(30 * time.Second)
for {
if st := orch.ScanStatus(); !st.Running {
return st
}
if time.Now().After(deadline) {
t.Fatalf("scan did not finish: %+v", orch.ScanStatus())
}
time.Sleep(2 * time.Millisecond)
}
}
func decodeAutoCycle(t *testing.T, body []byte) autoCycleDTO {
t.Helper()
var dto autoCycleDTO
if err := json.Unmarshal(body, &dto); err != nil {
t.Fatalf("unmarshal auto-cycle %q: %v", body, err)
}
return dto
}
func TestAutoCycleGetDefaults(t *testing.T) {
fc, _, _, _ := newConfigTestHarness(t)
resp, body := fc.do(http.MethodGet, "/api/v1/admin/auto-cycle", nil)
if resp.StatusCode != http.StatusOK {
t.Fatalf("get: status=%d body=%s", resp.StatusCode, body)
}
dto := decodeAutoCycle(t, body)
if dto.Enabled || dto.IntervalSeconds != 3600 || dto.MaxRunSeconds != 0 || dto.Phase != "idle" || dto.RunsTotal != 0 {
t.Fatalf("unexpected defaults: %+v", dto)
}
// Unset times must be explicit JSON nulls with snake_case keys.
var raw map[string]json.RawMessage
if err := json.Unmarshal(body, &raw); err != nil {
t.Fatalf("unmarshal raw: %v", err)
}
for _, k := range []string{"enabled", "interval_seconds", "max_run_seconds", "phase", "run_started_at",
"next_run_at", "last_run_started_at", "last_run_finished_at", "last_outcome", "last_error",
"last_scanned_free", "runs_total"} {
v, ok := raw[k]
if !ok {
t.Fatalf("missing key %q in %s", k, body)
}
if strings.HasSuffix(k, "_at") && string(v) != "null" {
t.Fatalf("expected %s to be null, got %s", k, v)
}
}
}
func TestAutoCyclePutPartialUpdate(t *testing.T) {
fc, _, _, _ := newConfigTestHarness(t)
interval, maxRun := 120, 1800
resp, body := fc.do(http.MethodPut, "/api/v1/admin/auto-cycle", putAutoCycleRequest{IntervalSeconds: &interval, MaxRunSeconds: &maxRun})
if resp.StatusCode != http.StatusOK {
t.Fatalf("put: status=%d body=%s", resp.StatusCode, body)
}
dto := decodeAutoCycle(t, body)
if dto.IntervalSeconds != 120 || dto.MaxRunSeconds != 1800 {
t.Fatalf("expected 120/1800, got %+v", dto)
}
// Only max_run_seconds in the body: interval stays.
resp, body = fc.do(http.MethodPut, "/api/v1/admin/auto-cycle", map[string]int{"max_run_seconds": 0})
if resp.StatusCode != http.StatusOK {
t.Fatalf("partial put: status=%d body=%s", resp.StatusCode, body)
}
dto = decodeAutoCycle(t, body)
if dto.IntervalSeconds != 120 || dto.MaxRunSeconds != 0 {
t.Fatalf("expected 120/0 after partial update, got %+v", dto)
}
resp, body = fc.do(http.MethodGet, "/api/v1/admin/auto-cycle", nil)
if resp.StatusCode != http.StatusOK {
t.Fatalf("get: status=%d body=%s", resp.StatusCode, body)
}
if dto = decodeAutoCycle(t, body); dto.IntervalSeconds != 120 {
t.Fatalf("expected persisted interval 120, got %+v", dto)
}
}
func TestAutoCyclePutValidation(t *testing.T) {
fc, _, _, _ := newConfigTestHarness(t)
resp, body := fc.do(http.MethodPut, "/api/v1/admin/auto-cycle", map[string]int{"interval_seconds": 59})
if resp.StatusCode != http.StatusBadRequest {
t.Fatalf("interval 59: expected 400, got %d body=%s", resp.StatusCode, body)
}
resp, body = fc.do(http.MethodPut, "/api/v1/admin/auto-cycle", map[string]int{"max_run_seconds": -1})
if resp.StatusCode != http.StatusBadRequest {
t.Fatalf("max_run -1: expected 400, got %d body=%s", resp.StatusCode, body)
}
// Boundary values are accepted.
resp, body = fc.do(http.MethodPut, "/api/v1/admin/auto-cycle", map[string]int{"interval_seconds": 60, "max_run_seconds": 0})
if resp.StatusCode != http.StatusOK {
t.Fatalf("boundary put: status=%d body=%s", resp.StatusCode, body)
}
// Nothing from the rejected requests leaked through.
resp, body = fc.do(http.MethodGet, "/api/v1/admin/auto-cycle", nil)
if resp.StatusCode != http.StatusOK {
t.Fatalf("get: status=%d body=%s", resp.StatusCode, body)
}
if dto := decodeAutoCycle(t, body); dto.IntervalSeconds != 60 || dto.MaxRunSeconds != 0 {
t.Fatalf("expected 60/0, got %+v", dto)
}
}
func TestAutoCycleStartStop(t *testing.T) {
fc, _, orch, mock := newConfigTestHarness(t)
mock.Seed("fip-1", "1.1.1.1", "svc-project")
resp, body := fc.do(http.MethodPost, "/api/v1/admin/auto-cycle/start", nil)
if resp.StatusCode != http.StatusOK {
t.Fatalf("start: status=%d body=%s", resp.StatusCode, body)
}
dto := decodeAutoCycle(t, body)
if !dto.Enabled || dto.Phase != "idle" || dto.NextRunAt == nil {
t.Fatalf("expected enabled+idle with next_run_at after start, got %+v", dto)
}
// The engine picks it up on the next step and the API reflects it.
orch.AutoCycleStep(t.Context())
resp, body = fc.do(http.MethodGet, "/api/v1/admin/auto-cycle", nil)
if dto := decodeAutoCycle(t, body); dto.Phase != "scanning" && dto.Phase != "running" {
t.Fatalf("expected scanning right after the first step, got %+v", dto)
}
waitForScan(t, orch)
orch.AutoCycleStep(t.Context())
resp, body = fc.do(http.MethodGet, "/api/v1/admin/auto-cycle", nil)
if resp.StatusCode != http.StatusOK {
t.Fatalf("get: status=%d body=%s", resp.StatusCode, body)
}
dto = decodeAutoCycle(t, body)
if dto.Phase != "running" || dto.RunStartedAt == nil || dto.LastScannedFree != 1 {
t.Fatalf("expected running with 1 scanned FIP, got %+v", dto)
}
resp, body = fc.do(http.MethodPost, "/api/v1/admin/auto-cycle/stop", nil)
if resp.StatusCode != http.StatusOK {
t.Fatalf("stop: status=%d body=%s", resp.StatusCode, body)
}
dto = decodeAutoCycle(t, body)
if dto.Enabled || dto.Phase != "idle" || dto.LastOutcome != "stopped" {
t.Fatalf("expected disabled/idle/stopped, got %+v", dto)
}
}
func TestAutoCycleStartIsIdempotent(t *testing.T) {
fc, _, orch, mock := newConfigTestHarness(t)
mock.Seed("fip-1", "1.1.1.1", "svc-project")
if resp, body := fc.do(http.MethodPost, "/api/v1/admin/auto-cycle/start", nil); resp.StatusCode != http.StatusOK {
t.Fatalf("start: status=%d body=%s", resp.StatusCode, body)
}
stepAutoCycleThroughScan(t, orch)
resp, body := fc.do(http.MethodPost, "/api/v1/admin/auto-cycle/start", nil)
if resp.StatusCode != http.StatusOK {
t.Fatalf("second start: status=%d body=%s", resp.StatusCode, body)
}
dto := decodeAutoCycle(t, body)
if !dto.Enabled || dto.Phase != "running" {
t.Fatalf("second start must not disturb a running cycle, got %+v", dto)
}
// Stop is idempotent too.
for i := 0; i < 2; i++ {
resp, body = fc.do(http.MethodPost, "/api/v1/admin/auto-cycle/stop", nil)
if resp.StatusCode != http.StatusOK {
t.Fatalf("stop #%d: status=%d body=%s", i, resp.StatusCode, body)
}
}
}
func TestAutoCyclePreservesParamsAcrossStartStop(t *testing.T) {
fc, _, _, _ := newConfigTestHarness(t)
interval := 300
if resp, body := fc.do(http.MethodPut, "/api/v1/admin/auto-cycle", putAutoCycleRequest{IntervalSeconds: &interval}); resp.StatusCode != http.StatusOK {
t.Fatalf("put: status=%d body=%s", resp.StatusCode, body)
}
fc.do(http.MethodPost, "/api/v1/admin/auto-cycle/start", nil)
resp, body := fc.do(http.MethodPost, "/api/v1/admin/auto-cycle/stop", nil)
if resp.StatusCode != http.StatusOK {
t.Fatalf("stop: status=%d body=%s", resp.StatusCode, body)
}
if dto := decodeAutoCycle(t, body); dto.IntervalSeconds != 300 {
t.Fatalf("expected interval 300 preserved, got %+v", dto)
}
}