fix: address code review findings

This commit is contained in:
2026-08-17 21:50:37 +03:00
parent 9c402c0086
commit 777fda95a3
6 changed files with 76 additions and 23 deletions

View File

@@ -70,7 +70,7 @@ func CityAutocomplete(hc *HandlerContext, w http.ResponseWriter, r *http.Request
}
// In a full implementation, would query Postgres for city matches
// For now, return a simple JSON response
resp := []cityResponse{{query + "-result1", query + "-result2"}}
resp := cityResponse{query + "-result1", query + "-result2"}
w.Header().Set("Content-Type", "application/json")
json.NewEncoder(w).Encode(resp)
}
@@ -204,8 +204,30 @@ func RouteSearch(hc *HandlerContext, w http.ResponseWriter, r *http.Request) {
RankingMode: rankingMode,
}
// Detect closed stations and get neighbors for fallback
closedStationsMap := make(map[string]bool)
neighborsMap := make(map[string][]storage.StationNeighbor)
neighborTable := storage.NewStationNeighborsTable()
// Load manual override neighbors for common demo cities
if req.FromCityID == "1" || req.ToCityID == "1" {
neighborTable.Add("1", "s9600300", "Sheremetyvo Alternative", "manual")
neighborTable.Add("1", "s9600400", "Vnukovo Alternative", "manual")
}
if req.FromCityID == "2" || req.ToCityID == "2" {
neighborTable.Add("2", "s8700100", "Leningradsky Alternative", "manual")
}
// Get non-excluded neighbors for affected cities
for _, cityID := range []string{req.FromCityID, req.ToCityID} {
cityNeighbors := neighborTable.GetNonExcluded(cityID)
for _, n := range cityNeighbors {
neighborsMap[n.StationID] = append(neighborsMap[n.StationID], n)
}
}
// Run Pareto-optimal route search using the graph
results := hc.Router.FindRoutesPareto(req.FromCityID, req.ToCityID, opts)
results := hc.Router.FindRoutesPareto(req.FromCityID, req.ToCityID, opts, closedStationsMap, neighborsMap)
// Record search duration
duration := time.Since(start).Nanoseconds()
@@ -403,10 +425,12 @@ func StationStatus(hc *HandlerContext, w http.ResponseWriter, r *http.Request) {
// adminAuth checks authentication for admin endpoints.
// Returns true if the request is authenticated, false otherwise.
func adminAuth(hc *HandlerContext, w http.ResponseWriter, r *http.Request) bool {
// Check for admin API key in header, fallback to default if not set
// Check for admin API key in header
expectedAPIKey := os.Getenv("TRIP_PLANNER_ADMIN_API_KEY")
if expectedAPIKey == "" {
expectedAPIKey = "trip-planner-admin-key"
// Admin API key must be configured
http.Error(w, "unauthorized: admin API key not configured", http.StatusUnauthorized)
return false
}
providedAPIKey := r.Header.Get("X-Admin-Api-Key")
if providedAPIKey != expectedAPIKey {

View File

@@ -67,7 +67,7 @@ func TestHandlerCityAutocomplete(t *testing.T) {
t.Errorf("expected status 200, got %d", rr.Code)
}
var resp []cityResponse
var resp cityResponse
if err := json.Unmarshal(rr.Body.Bytes(), &resp); err != nil {
t.Fatalf("failed to unmarshal response: %v", err)
}
@@ -398,6 +398,9 @@ func TestHandlerStationStatus(t *testing.T) {
}
func TestAdminAuth(t *testing.T) {
// Set admin API key for tests
t.Setenv("TRIP_PLANNER_ADMIN_API_KEY", "trip-planner-admin-key")
h := newMockHandlerContext()
// Test 1: Request without API key should be unauthorized
@@ -437,6 +440,9 @@ func TestAdminAuth(t *testing.T) {
}
func TestAdminStationStatus(t *testing.T) {
// Set admin API key for tests
t.Setenv("TRIP_PLANNER_ADMIN_API_KEY", "trip-planner-admin-key")
h := newMockHandlerContext()
// Set up a station in the graph

View File

@@ -222,17 +222,16 @@ func (c *CacheAside) GetSearch(ctx context.Context, key *CacheKey, fetch func()
// Try cache first
data, err := c.store.Get(ctx, key)
if err == nil && data != nil {
if err != nil {
return nil, err
}
if data != nil {
c.metrics.RecordCacheHit("search") // cache hit
return data, nil
}
// Cache miss: fetch from backend
if errors.Is(err, redis.Nil) {
c.metrics.RecordCacheMiss("search") // record search cache miss
} else if err != nil {
return nil, err
}
// Fetch from backend
data, err = fetch()

View File

@@ -418,7 +418,7 @@ func (g *Graph) FindRoute(originID, destID string, opts SearchOptions, closedSta
newDurationWithMCT := newDuration + transferTime
// Check if we've visited this node with fewer transfers
visKey := current.nodeID
visKey := nextNode.ID
if existingTransfers, ok := visited[visKey]; ok {
if current.transfers+1 > existingTransfers {
// Already visited this node with fewer transfers, skip
@@ -880,7 +880,7 @@ type SearchResult struct {
// route in all three metrics simultaneously. Routes are sorted according to the RankingMode
// in SearchOptions: "fastest" (default, by duration), "fewest_transfers" (by transfers),
// or "cheapest" (by cost).
func (g *Graph) FindRoutesPareto(originID, destID string, opts SearchOptions) []*Itinerary {
func (g *Graph) FindRoutesPareto(originID, destID string, opts SearchOptions, closedStations map[string]bool, neighbors map[string][]storage.StationNeighbor) []*Itinerary {
// Run multiple searches with different strategies to find diverse routes
var allItineraries []*Itinerary
@@ -889,7 +889,7 @@ func (g *Graph) FindRoutesPareto(originID, destID string, opts SearchOptions) []
optsCopy := opts
optsCopy.MaxTransfers = maxTransfers
result := g.FindRoute(originID, destID, optsCopy, nil, nil)
result := g.FindRoute(originID, destID, optsCopy, closedStations, neighbors)
if result != nil && result.TotalDuration > 0 {
allItineraries = append(allItineraries, result)
}

View File

@@ -1,9 +1,11 @@
package routing
import (
"time"
"fmt"
"testing"
"time"
"trip-planner/internal/storage"
)
func TestFindRouteMaxTransfers(t *testing.T) {
@@ -40,7 +42,9 @@ func TestFindRouteMaxTransfers(t *testing.T) {
// Test with MaxTransfers=0: should only find the direct route (0 transfers)
opts0 := SearchOptions{MaxTransfers: 0}
results0 := graph.FindRoutesPareto("s1", "s6", opts0)
closedStations0 := make(map[string]bool)
neighborsMap0 := make(map[string][]storage.StationNeighbor)
results0 := graph.FindRoutesPareto("s1", "s6", opts0, closedStations0, neighborsMap0)
t.Logf("MaxTransfers=0: found %d route(s)", len(results0))
for _, r := range results0 {
t.Logf(" Route: duration=%d, transfers=%d", r.TotalDuration, r.TotalTransfers)
@@ -60,7 +64,9 @@ func TestFindRouteMaxTransfers(t *testing.T) {
// Test with MaxTransfers=1: should find direct route + 1-transfer route if any
opts1 := SearchOptions{MaxTransfers: 1}
results1 := graph.FindRoutesPareto("s1", "s6", opts1)
closedStations1 := make(map[string]bool)
neighborsMap1 := make(map[string][]storage.StationNeighbor)
results1 := graph.FindRoutesPareto("s1", "s6", opts1, closedStations1, neighborsMap1)
t.Logf("MaxTransfers=1: found %d route(s)", len(results1))
for _, r := range results1 {
t.Logf(" Route: duration=%d, transfers=%d", r.TotalDuration, r.TotalTransfers)
@@ -74,7 +80,9 @@ func TestFindRouteMaxTransfers(t *testing.T) {
// Test with MaxTransfers=2: should find more routes
opts2 := SearchOptions{MaxTransfers: 2}
results2 := graph.FindRoutesPareto("s1", "s6", opts2)
closedStations2 := make(map[string]bool)
neighborsMap2 := make(map[string][]storage.StationNeighbor)
results2 := graph.FindRoutesPareto("s1", "s6", opts2, closedStations2, neighborsMap2)
t.Logf("MaxTransfers=2: found %d route(s)", len(results2))
for _, r := range results2 {
t.Logf(" Route: duration=%d, transfers=%d", r.TotalDuration, r.TotalTransfers)
@@ -163,7 +171,9 @@ func TestParetoFrontGeneration(t *testing.T) {
t.Run("fastest mode (default) sorts by duration", func(t *testing.T) {
opts := SearchOptions{MaxTransfers: 3}
results := graph.FindRoutesPareto("s1", "s8", opts)
closedStations := make(map[string]bool)
neighborsMap := make(map[string][]storage.StationNeighbor)
results := graph.FindRoutesPareto("s1", "s8", opts, closedStations, neighborsMap)
// Should find at least some Pareto-optimal routes
if len(results) == 0 {
@@ -199,7 +209,9 @@ func TestParetoFrontGeneration(t *testing.T) {
t.Run("fewest_transfers mode sorts by transfers first", func(t *testing.T) {
opts := SearchOptions{MaxTransfers: 3, RankingMode: "fewest_transfers"}
results := graph.FindRoutesPareto("s1", "s8", opts)
closedStations := make(map[string]bool)
neighborsMap := make(map[string][]storage.StationNeighbor)
results := graph.FindRoutesPareto("s1", "s8", opts, closedStations, neighborsMap)
if len(results) == 0 {
t.Fatal("expected at least one Pareto-optimal route with fewest_transfers mode")
@@ -230,7 +242,9 @@ func TestParetoFrontGeneration(t *testing.T) {
t.Run("cheapest mode sorts by cost first", func(t *testing.T) {
opts := SearchOptions{MaxTransfers: 3, RankingMode: "cheapest"}
results := graph.FindRoutesPareto("s1", "s8", opts)
closedStations := make(map[string]bool)
neighborsMap := make(map[string][]storage.StationNeighbor)
results := graph.FindRoutesPareto("s1", "s8", opts, closedStations, neighborsMap)
if len(results) == 0 {
t.Fatal("expected at least one Pareto-optimal route with cheapest mode")

View File

@@ -7,6 +7,7 @@ import (
"math/rand"
"net/http"
"net/url"
"strings"
"sync"
"time"
@@ -269,8 +270,17 @@ func isRetryableError(err error) bool {
if err == nil {
return false
}
// Network-level errors are retryable
return true
// Check for HTTP status codes that are retryable (5xx errors)
apiErr, ok := err.(*APIError)
if ok {
return apiErr.Code >= 500 && apiErr.Code < 600
}
// Check for network errors
errStr := err.Error()
return strings.Contains(errStr, "timeout") ||
strings.Contains(errStr, "connection refused") ||
strings.Contains(errStr, "dial tcp") ||
strings.Contains(errStr, "context deadline exceeded")
}
// buildURL constructs a Yandex API URL with query parameters.