feat(T1.8): implement health checks for Kubernetes deployment

- Add internal/health package with health checker
- Implement three endpoints: /health, /health/live, /health/ready
- /health returns full JSON report with component status, latency, timestamp
- /health/live for K8s liveness probe (service running)
- /health/ready for K8s readiness probe (ready to accept traffic)
- Temporal connectivity check via GetWorkflow call with timeout
- Health check caching (30s interval) to prevent excessive checks
- Graceful shutdown: health server stops on SIGINT/SIGTERM
- Add --health flag to starter command to run health check
- Worker runs health server on port 8081 alongside task queue worker
- 10/10 unit tests passing
- All verification criteria met

Closes T1.8
This commit is contained in:
Test
2026-08-23 16:31:33 -07:00
parent e3a5e571bf
commit 90fcd6a9df
7 changed files with 612 additions and 10 deletions
+84
View File
@@ -0,0 +1,84 @@
package health
import (
"encoding/json"
"net/http"
)
// Handler provides HTTP endpoints for health checks
type Handler struct {
checker *Checker
}
// NewHandler creates a new HTTP handler for health checks
func NewHandler(checker *Checker) *Handler {
return &Handler{
checker: checker,
}
}
// RegisterRoutes registers health check routes on a mux
func (h *Handler) RegisterRoutes(mux *http.ServeMux) {
mux.HandleFunc("/health", h.handleHealth)
mux.HandleFunc("/health/live", h.handleLive)
mux.HandleFunc("/health/ready", h.handleReady)
}
// handleHealth returns full health report
func (h *Handler) handleHealth(w http.ResponseWriter, r *http.Request) {
if r.Method != http.MethodGet {
w.WriteHeader(http.StatusMethodNotAllowed)
return
}
report := h.checker.Check(r.Context())
w.Header().Set("Content-Type", "application/json")
// Return 200 if healthy, 503 if unhealthy
if report.Status != StatusHealthy {
w.WriteHeader(http.StatusServiceUnavailable)
}
json.NewEncoder(w).Encode(report)
}
// handleLive is Kubernetes liveness probe endpoint
// Returns 200 if the service is running, 503 otherwise
func (h *Handler) handleLive(w http.ResponseWriter, r *http.Request) {
if r.Method != http.MethodGet {
w.WriteHeader(http.StatusMethodNotAllowed)
return
}
if h.checker.temporalClient == nil {
w.WriteHeader(http.StatusServiceUnavailable)
w.Write([]byte("service not initialized"))
return
}
w.WriteHeader(http.StatusOK)
w.Write([]byte("alive"))
}
// handleReady is Kubernetes readiness probe endpoint
// Returns 200 if the service is ready to accept traffic, 503 otherwise
func (h *Handler) handleReady(w http.ResponseWriter, r *http.Request) {
if r.Method != http.MethodGet {
w.WriteHeader(http.StatusMethodNotAllowed)
return
}
report := h.checker.Check(r.Context())
w.Header().Set("Content-Type", "application/json")
// Service is ready only if healthy
if report.Status != StatusHealthy {
w.WriteHeader(http.StatusServiceUnavailable)
}
json.NewEncoder(w).Encode(map[string]interface{}{
"ready": report.Status == StatusHealthy,
"components": report.Components,
})
}
+167
View File
@@ -0,0 +1,167 @@
package health
import (
"context"
"encoding/json"
"sync"
"time"
"go.temporal.io/sdk/client"
)
// Status represents the health status of a component
type Status string
const (
StatusHealthy Status = "healthy"
StatusUnhealthy Status = "unhealthy"
StatusUnknown Status = "unknown"
)
// ComponentHealth represents the health of a single system component
type ComponentHealth struct {
Name string `json:"name"`
Status Status `json:"status"`
Latency int64 `json:"latency_ms"`
LastCheck time.Time `json:"last_check"`
Error string `json:"error,omitempty"`
}
// HealthReport is the overall health status of the system
type HealthReport struct {
Status Status `json:"status"`
Timestamp time.Time `json:"timestamp"`
Components map[string]ComponentHealth `json:"components"`
Latency int64 `json:"latency_ms"`
}
// Checker provides health check functionality
type Checker struct {
temporalClient client.Client
mu sync.RWMutex
lastReport *HealthReport
lastCheckTime time.Time
checkInterval time.Duration
}
// NewChecker creates a new health checker
func NewChecker(temporalClient client.Client) *Checker {
return &Checker{
temporalClient: temporalClient,
checkInterval: 30 * time.Second,
}
}
// Check performs a comprehensive health check
func (h *Checker) Check(ctx context.Context) *HealthReport {
startTime := time.Now()
h.mu.Lock()
defer h.mu.Unlock()
// Skip check if recently done
if time.Since(h.lastCheckTime) < h.checkInterval && h.lastReport != nil {
return h.lastReport
}
components := make(map[string]ComponentHealth)
// Check Temporal connectivity
temporalHealth := h.checkTemporal(ctx)
components["temporal"] = temporalHealth
// Determine overall status
overallStatus := StatusHealthy
for _, comp := range components {
if comp.Status == StatusUnhealthy {
overallStatus = StatusUnhealthy
break
}
}
latency := time.Since(startTime).Milliseconds()
report := &HealthReport{
Status: overallStatus,
Timestamp: time.Now(),
Components: components,
Latency: latency,
}
h.lastReport = report
h.lastCheckTime = time.Now()
return report
}
// checkTemporal verifies Temporal cluster connectivity
func (h *Checker) checkTemporal(ctx context.Context) ComponentHealth {
startTime := time.Now()
comp := ComponentHealth{
Name: "temporal",
Status: StatusHealthy,
LastCheck: time.Now(),
}
if h.temporalClient == nil {
comp.Status = StatusUnhealthy
comp.Error = "Temporal client not initialized"
comp.Latency = time.Since(startTime).Milliseconds()
return comp
}
// Create a short timeout context for the health check
checkCtx, cancel := context.WithTimeout(ctx, 5*time.Second)
defer cancel()
// Try to get a workflow to verify connectivity
// Use a dummy workflow ID that likely doesn't exist - we're just testing connectivity
// If Temporal is unreachable, this will fail; if it's reachable, it will return NotFound error (which is fine)
wfRun := h.temporalClient.GetWorkflow(checkCtx, "health-check-dummy-id-"+time.Now().Format("20060102150405"), "")
comp.Latency = time.Since(startTime).Milliseconds()
// We're only checking connectivity, so we try to peek at the result
// This will fail if Temporal is unreachable, but return nil error if it just doesn't exist
var result interface{}
err := wfRun.Get(checkCtx, &result)
if err != nil {
errMsg := err.Error()
// NotFound errors mean Temporal responded but workflow doesn't exist - this is healthy
if !contains(errMsg, "not found") && !contains(errMsg, "NotFound") {
comp.Status = StatusUnhealthy
comp.Error = err.Error()
}
}
return comp
}
// contains checks if a string contains a substring (case-insensitive)
func contains(s, substr string) bool {
for i := 0; i <= len(s)-len(substr); i++ {
if s[i:i+len(substr)] == substr {
return true
}
}
return false
}
// IsHealthy returns true if the system is healthy
func (h *Checker) IsHealthy(ctx context.Context) bool {
report := h.Check(ctx)
return report.Status == StatusHealthy
}
// GetReport returns the last health report
func (h *Checker) GetReport(ctx context.Context) *HealthReport {
return h.Check(ctx)
}
// ToJSON converts the health report to JSON
func (report *HealthReport) ToJSON() ([]byte, error) {
return json.MarshalIndent(report, "", " ")
}
// String returns the health status as a string
func (s Status) String() string {
return string(s)
}
+110
View File
@@ -0,0 +1,110 @@
package health
import (
"context"
"testing"
"time"
"github.com/stretchr/testify/assert"
)
// TestNewChecker tests the creation of a new health checker
func TestNewChecker(t *testing.T) {
checker := NewChecker(nil)
assert.NotNil(t, checker)
assert.Equal(t, 30*time.Second, checker.checkInterval)
}
// TestCheckWithNilClient tests health check with nil client
func TestCheckWithNilClient(t *testing.T) {
checker := NewChecker(nil)
report := checker.Check(context.Background())
assert.NotNil(t, report)
assert.Equal(t, StatusUnhealthy, report.Status)
assert.Len(t, report.Components, 1)
assert.Equal(t, StatusUnhealthy, report.Components["temporal"].Status)
assert.Equal(t, "Temporal client not initialized", report.Components["temporal"].Error)
}
// TestIsHealthy tests the IsHealthy method
func TestIsHealthy(t *testing.T) {
checker := NewChecker(nil)
assert.False(t, checker.IsHealthy(context.Background()))
}
// TestGetReport tests the GetReport method
func TestGetReport(t *testing.T) {
checker := NewChecker(nil)
report := checker.GetReport(context.Background())
assert.NotNil(t, report)
assert.Equal(t, StatusUnhealthy, report.Status)
}
// TestHealthReportJSON tests JSON serialization
func TestHealthReportJSON(t *testing.T) {
checker := NewChecker(nil)
report := checker.Check(context.Background())
jsonData, err := report.ToJSON()
assert.NoError(t, err)
assert.NotEmpty(t, jsonData)
assert.Contains(t, string(jsonData), "unhealthy")
assert.Contains(t, string(jsonData), "temporal")
}
// TestHealthReportTimestamp tests that timestamp is set
func TestHealthReportTimestamp(t *testing.T) {
checker := NewChecker(nil)
before := time.Now()
report := checker.Check(context.Background())
after := time.Now()
assert.True(t, report.Timestamp.After(before) || report.Timestamp.Equal(before))
assert.True(t, report.Timestamp.Before(after) || report.Timestamp.Equal(after))
}
// TestStatusString tests Status string representation
func TestStatusString(t *testing.T) {
assert.Equal(t, "healthy", StatusHealthy.String())
assert.Equal(t, "unhealthy", StatusUnhealthy.String())
assert.Equal(t, "unknown", StatusUnknown.String())
}
// TestComponentHealthLatency tests that latency is recorded
func TestComponentHealthLatency(t *testing.T) {
checker := NewChecker(nil)
report := checker.Check(context.Background())
assert.NotNil(t, report.Components["temporal"])
assert.GreaterOrEqual(t, report.Components["temporal"].Latency, int64(0))
}
// TestHealthCheckCaching tests that recent checks are cached
func TestHealthCheckCaching(t *testing.T) {
checker := NewChecker(nil)
// First check
report1 := checker.Check(context.Background())
time1 := report1.Timestamp
// Second check immediately (should be cached)
time.Sleep(100 * time.Millisecond)
report2 := checker.Check(context.Background())
time2 := report2.Timestamp
// Timestamps should be the same or very close (cached)
assert.Equal(t, time1, time2, "second check should use cached result")
}
// TestComponentHealthDefaults tests default component health values
func TestComponentHealthDefaults(t *testing.T) {
comp := ComponentHealth{
Name: "test",
Status: StatusHealthy,
}
assert.Equal(t, "test", comp.Name)
assert.Equal(t, StatusHealthy, comp.Status)
assert.Empty(t, comp.Error)
}