package contract_test import ( "bytes" "database/sql" "encoding/json" "io" "net/http" "net/http/httptest" "path/filepath" "strconv" "strings" "testing" "time" "go-backend/internal/auth" httpserver "go-backend/internal/http" "go-backend/internal/http/handler" "go-backend/internal/http/response" "go-backend/internal/store/repo" "gorm.io/gorm" ) func TestCaptchaVerifyLoginContract(t *testing.T) { secret := "contract-jwt-secret" router, r := setupContractRouter(t, secret) verifiedToken := "" if err := r.DB().Exec(` INSERT INTO vite_config(name, value, time) VALUES(?, ?, ?) ON CONFLICT(name) DO UPDATE SET value = excluded.value, time = excluded.time `, "captcha_enabled", "true", time.Now().UnixMilli()).Error; err != nil { t.Fatalf("enable captcha: %v", err) } t.Run("login allowed when cloudflare keys are missing", func(t *testing.T) { body := bytes.NewBufferString(`{"username":"admin_user","password":"admin_user","captchaId":""}`) req := httptest.NewRequest(http.MethodPost, "/api/v1/user/login", body) req.Header.Set("Content-Type", "application/json") resp := httptest.NewRecorder() router.ServeHTTP(resp, req) assertCode(t, resp, 0) }) t.Run("captcha verify remains compatible without cloudflare secret", func(t *testing.T) { verifyReq := httptest.NewRequest(http.MethodPost, "/api/v1/captcha/verify", bytes.NewBufferString(`{"id":"captcha-token-1","data":"ok"}`)) verifyReq.Header.Set("Content-Type", "application/json") verifyResp := httptest.NewRecorder() router.ServeHTTP(verifyResp, verifyReq) var verifyOut struct { Success bool `json:"success"` Data struct { ValidToken string `json:"validToken"` } `json:"data"` } if err := json.NewDecoder(verifyResp.Body).Decode(&verifyOut); err != nil { t.Fatalf("decode captcha verify response: %v", err) } if !verifyOut.Success || verifyOut.Data.ValidToken != "captcha-token-1" { t.Fatalf("unexpected captcha verify payload: success=%v token=%q", verifyOut.Success, verifyOut.Data.ValidToken) } verifiedToken = verifyOut.Data.ValidToken }) if err := r.DB().Exec(` INSERT INTO vite_config(name, value, time) VALUES(?, ?, ?) ON CONFLICT(name) DO UPDATE SET value = excluded.value, time = excluded.time `, "cloudflare_site_key", "test-site-key", time.Now().UnixMilli()).Error; err != nil { t.Fatalf("set cloudflare site key: %v", err) } if err := r.DB().Exec(` INSERT INTO vite_config(name, value, time) VALUES(?, ?, ?) ON CONFLICT(name) DO UPDATE SET value = excluded.value, time = excluded.time `, "cloudflare_secret_key", "test-secret-key", time.Now().UnixMilli()).Error; err != nil { t.Fatalf("set cloudflare secret key: %v", err) } t.Run("login denied without verified captcha token", func(t *testing.T) { body := bytes.NewBufferString(`{"username":"admin_user","password":"admin_user","captchaId":""}`) req := httptest.NewRequest(http.MethodPost, "/api/v1/user/login", body) req.Header.Set("Content-Type", "application/json") resp := httptest.NewRecorder() router.ServeHTTP(resp, req) assertCodeMsg(t, resp, -1, "验证码校验失败") }) t.Run("whmcs api client bypasses captcha", func(t *testing.T) { body := bytes.NewBufferString(`{"username":"admin_user","password":"admin_user","captchaId":""}`) req := httptest.NewRequest(http.MethodPost, "/api/v1/user/login", body) req.Header.Set("Content-Type", "application/json") req.Header.Set("X-FLVX-API-Client", "whmcs") resp := httptest.NewRecorder() router.ServeHTTP(resp, req) assertCode(t, resp, 0) }) t.Run("captcha token is one-time and consumed by login", func(t *testing.T) { if strings.TrimSpace(verifiedToken) == "" { t.Fatalf("expected verified token from compatibility captcha verify") } loginBody := bytes.NewBufferString(`{"username":"admin_user","password":"admin_user","captchaId":"` + verifiedToken + `"}`) loginReq := httptest.NewRequest(http.MethodPost, "/api/v1/user/login", loginBody) loginReq.Header.Set("Content-Type", "application/json") loginResp := httptest.NewRecorder() router.ServeHTTP(loginResp, loginReq) assertCode(t, loginResp, 0) replayBody := bytes.NewBufferString(`{"username":"admin_user","password":"admin_user","captchaId":"` + verifiedToken + `"}`) replayReq := httptest.NewRequest(http.MethodPost, "/api/v1/user/login", replayBody) replayReq.Header.Set("Content-Type", "application/json") replayResp := httptest.NewRecorder() router.ServeHTTP(replayResp, replayReq) assertCodeMsg(t, replayResp, -1, "验证码校验失败") }) } func TestOpenAPISubStoreContracts(t *testing.T) { router, r := setupContractRouter(t, "contract-jwt-secret") const tunnelFlowGB = int64(500) const tunnelInFlow = int64(123) const tunnelOutFlow = int64(456) const tunnelExpTimeMs = int64(2727251700000) now := time.Now().UnixMilli() if err := r.DB().Exec(`INSERT INTO tunnel(name, traffic_ratio, type, protocol, flow, created_time, updated_time, status, in_ip, inx) VALUES(?, ?, ?, ?, ?, ?, ?, ?, ?, ?)`, "contract-tunnel", 1.0, 1, "tls", 1, now, now, 1, nil, 0).Error; err != nil { t.Fatalf("insert tunnel: %v", err) } tunnelID := mustLastInsertID(t, r, "contract-tunnel") if err := r.DB().Exec(`INSERT INTO user_tunnel(user_id, tunnel_id, speed_id, num, flow, in_flow, out_flow, flow_reset_time, exp_time, status) VALUES(?, ?, NULL, ?, ?, ?, ?, ?, ?, ?)`, 1, tunnelID, 99999, tunnelFlowGB, tunnelInFlow, tunnelOutFlow, 1, tunnelExpTimeMs, 1).Error; err != nil { t.Fatalf("insert user_tunnel: %v", err) } t.Run("default user subscription payload", func(t *testing.T) { req := httptest.NewRequest(http.MethodGet, "/api/v1/open_api/sub_store?user=admin_user&pwd=admin_user", nil) resp := httptest.NewRecorder() router.ServeHTTP(resp, req) body, err := io.ReadAll(resp.Body) if err != nil { t.Fatalf("read body: %v", err) } expected := "upload=0; download=0; total=107373108658176; expire=2727251700" if string(body) != expected { t.Fatalf("expected body %q, got %q", expected, string(body)) } if got := resp.Header().Get("subscription-userinfo"); got != expected { t.Fatalf("expected subscription-userinfo %q, got %q", expected, got) } if !strings.Contains(resp.Header().Get("Content-Type"), "text/plain") { t.Fatalf("expected text/plain content type, got %q", resp.Header().Get("Content-Type")) } }) t.Run("tunnel scoped subscription payload", func(t *testing.T) { req := httptest.NewRequest(http.MethodGet, "/api/v1/open_api/sub_store?user=admin_user&pwd=admin_user&tunnel="+strconv.FormatInt(tunnelID, 10), nil) resp := httptest.NewRecorder() router.ServeHTTP(resp, req) body, err := io.ReadAll(resp.Body) if err != nil { t.Fatalf("read body: %v", err) } expected := "upload=123; download=456; total=536870912000; expire=2727251700" if string(body) != expected { t.Fatalf("expected body %q, got %q", expected, string(body)) } if got := resp.Header().Get("subscription-userinfo"); got != expected { t.Fatalf("expected subscription-userinfo %q, got %q", expected, got) } }) t.Run("invalid credentials returns contract error", func(t *testing.T) { req := httptest.NewRequest(http.MethodGet, "/api/v1/open_api/sub_store?user=admin_user&pwd=wrong", nil) resp := httptest.NewRecorder() router.ServeHTTP(resp, req) assertCodeMsg(t, resp, -1, "鉴权失败") }) t.Run("missing tunnel returns contract error", func(t *testing.T) { req := httptest.NewRequest(http.MethodGet, "/api/v1/open_api/sub_store?user=admin_user&pwd=admin_user&tunnel=999999", nil) resp := httptest.NewRecorder() router.ServeHTTP(resp, req) assertCodeMsg(t, resp, -1, "隧道不存在") }) } func TestSpeedLimitTunnelsRouteRemoved(t *testing.T) { secret := "contract-jwt-secret" router, _ := setupContractRouter(t, secret) token, err := auth.GenerateToken(1, "admin_user", 0, secret) if err != nil { t.Fatalf("generate token: %v", err) } req := httptest.NewRequest(http.MethodPost, "/api/v1/speed-limit/tunnels", nil) req.Header.Set("Authorization", token) resp := httptest.NewRecorder() router.ServeHTTP(resp, req) if resp.Code != http.StatusNotFound { t.Fatalf("expected status 404 after route removal, got %d", resp.Code) } } func TestBackupExportImportRestoreContracts(t *testing.T) { secret := "contract-jwt-secret" router, r := setupContractRouter(t, secret) adminToken, err := auth.GenerateToken(1, "admin_user", 0, secret) if err != nil { t.Fatalf("generate admin token: %v", err) } userToken, err := auth.GenerateToken(2, "normal_user", 1, secret) if err != nil { t.Fatalf("generate user token: %v", err) } key := "backup_contract_key" if err := r.DB().Exec(` INSERT INTO vite_config(name, value, time) VALUES(?, ?, ?) ON CONFLICT(name) DO UPDATE SET value = excluded.value, time = excluded.time `, key, "v1", time.Now().UnixMilli()).Error; err != nil { t.Fatalf("seed config for backup contract: %v", err) } t.Run("non-admin is blocked on backup export", func(t *testing.T) { req := httptest.NewRequest(http.MethodPost, "/api/v1/backup/export", nil) req.Header.Set("Authorization", userToken) resp := httptest.NewRecorder() router.ServeHTTP(resp, req) assertCodeMsg(t, resp, 403, "权限不足,仅管理员可操作") }) t.Run("standard and duplicate export routes both work", func(t *testing.T) { payloadA := exportBackupPayload(t, router, "/api/v1/backup/export", adminToken) if len(payloadA.Configs) == 0 { t.Fatalf("expected exported configs, got none") } if _, ok := payloadA.Configs[key]; !ok { t.Fatalf("expected %q in exported configs", key) } payloadB := exportBackupPayload(t, router, "/api/v1/api/v1/backup/export", adminToken) if len(payloadB.Configs) == 0 { t.Fatalf("expected exported configs from duplicate-prefix route, got none") } }) t.Run("backup import applies exported data", func(t *testing.T) { payload := exportBackupPayload(t, router, "/api/v1/backup/export", adminToken) payload.Configs[key] = "v2" raw, err := json.Marshal(backupImportPayload{Types: []string{"configs"}, backupExportPayload: payload}) if err != nil { t.Fatalf("marshal import payload: %v", err) } req := httptest.NewRequest(http.MethodPost, "/api/v1/backup/import", bytes.NewReader(raw)) req.Header.Set("Authorization", adminToken) req.Header.Set("Content-Type", "application/json") resp := httptest.NewRecorder() router.ServeHTTP(resp, req) var out response.R if err := json.NewDecoder(resp.Body).Decode(&out); err != nil { t.Fatalf("decode import response: %v", err) } if out.Code != 0 { t.Fatalf("expected import code 0, got %d (%s)", out.Code, out.Msg) } cfg, err := r.GetConfigByName(key) if err != nil { t.Fatalf("query imported config: %v", err) } if cfg == nil || cfg.Value != "v2" { t.Fatalf("expected imported config value v2, got %+v", cfg) } }) t.Run("backup restore alias applies exported data", func(t *testing.T) { payload := exportBackupPayload(t, router, "/api/v1/backup/export", adminToken) payload.Configs[key] = "v3" raw, err := json.Marshal(backupImportPayload{Types: []string{"configs"}, backupExportPayload: payload}) if err != nil { t.Fatalf("marshal restore payload: %v", err) } req := httptest.NewRequest(http.MethodPost, "/api/v1/backup/restore", bytes.NewReader(raw)) req.Header.Set("Authorization", adminToken) req.Header.Set("Content-Type", "application/json") resp := httptest.NewRecorder() router.ServeHTTP(resp, req) var out response.R if err := json.NewDecoder(resp.Body).Decode(&out); err != nil { t.Fatalf("decode restore response: %v", err) } if out.Code != 0 { t.Fatalf("expected restore code 0, got %d (%s)", out.Code, out.Msg) } cfg, err := r.GetConfigByName(key) if err != nil { t.Fatalf("query restored config: %v", err) } if cfg == nil || cfg.Value != "v3" { t.Fatalf("expected restored config value v3, got %+v", cfg) } }) t.Run("backup export and import preserve forward ports", func(t *testing.T) { now := time.Now().UnixMilli() if err := r.DB().Exec(` INSERT INTO tunnel(name, traffic_ratio, type, protocol, flow, created_time, updated_time, status, in_ip, inx) VALUES(?, ?, ?, ?, ?, ?, ?, ?, ?, ?) `, "backup-forward-tunnel", 1.0, 1, "tls", 0, now, now, 1, "", 88).Error; err != nil { t.Fatalf("seed tunnel for forward backup: %v", err) } tunnelID := mustLastInsertID(t, r, "backup-forward-tunnel") if err := r.DB().Exec(` INSERT INTO forward(user_id, user_name, name, tunnel_id, remote_addr, strategy, in_flow, out_flow, created_time, updated_time, status, inx) VALUES(?, ?, ?, ?, ?, ?, ?, ?, ?, ?, ?, ?) `, 1, "admin_user", "backup-forward", tunnelID, "127.0.0.1:9000", "fifo", 0, 0, now, now, 1, 88).Error; err != nil { t.Fatalf("seed forward for backup: %v", err) } forwardID := mustLastInsertID(t, r, "backup-forward") expected := map[int64]int{ 2001: 21001, 2002: 21002, } for nodeID, port := range expected { if err := r.DB().Exec(`INSERT INTO forward_port(forward_id, node_id, port) VALUES(?, ?, ?)`, forwardID, nodeID, port).Error; err != nil { t.Fatalf("seed forward_port %d:%d: %v", nodeID, port, err) } } exportReq := httptest.NewRequest(http.MethodPost, "/api/v1/backup/export", bytes.NewBufferString(`{"types":["forwards"]}`)) exportReq.Header.Set("Authorization", adminToken) exportReq.Header.Set("Content-Type", "application/json") exportResp := httptest.NewRecorder() router.ServeHTTP(exportResp, exportReq) if exportResp.Code != http.StatusOK { t.Fatalf("expected export status 200, got %d", exportResp.Code) } exportBody, err := io.ReadAll(exportResp.Body) if err != nil { t.Fatalf("read forwards backup body: %v", err) } var payload map[string]interface{} if err := json.Unmarshal(exportBody, &payload); err != nil { t.Fatalf("decode forwards backup payload: %v", err) } version, _ := payload["version"].(string) if strings.TrimSpace(version) == "" { t.Fatalf("expected backup payload version, body=%s", string(exportBody)) } forwardsRaw, ok := payload["forwards"].([]interface{}) if !ok { t.Fatalf("expected forwards array in payload, body=%s", string(exportBody)) } foundForward := false foundPorts := map[int64]int{} for _, item := range forwardsRaw { forwardMap, ok := item.(map[string]interface{}) if !ok { continue } idValue, ok := forwardMap["id"].(float64) if !ok || int64(idValue) != forwardID { continue } foundForward = true portsRaw, ok := forwardMap["forwardPorts"].([]interface{}) if !ok { t.Fatalf("expected forwardPorts for forward %d in payload", forwardID) } for _, p := range portsRaw { portMap, ok := p.(map[string]interface{}) if !ok { continue } nodeID, nodeOK := portMap["nodeId"].(float64) port, portOK := portMap["port"].(float64) if nodeOK && portOK { foundPorts[int64(nodeID)] = int(port) } } break } if !foundForward { t.Fatalf("expected forward %d in exported forwards payload", forwardID) } if len(foundPorts) != len(expected) { t.Fatalf("expected %d exported forward ports, got %d", len(expected), len(foundPorts)) } for nodeID, port := range expected { if got, ok := foundPorts[nodeID]; !ok || got != port { t.Fatalf("expected exported forward port node=%d port=%d, got %v", nodeID, port, foundPorts) } } if err := r.DB().Exec(`DELETE FROM forward_port WHERE forward_id = ?`, forwardID).Error; err != nil { t.Fatalf("clear forward_port before import: %v", err) } if err := r.DB().Exec(`INSERT INTO forward_port(forward_id, node_id, port) VALUES(?, ?, ?)`, forwardID, 9999, 39999).Error; err != nil { t.Fatalf("seed wrong forward_port before import: %v", err) } payload["types"] = []string{"forwards"} importBody, err := json.Marshal(payload) if err != nil { t.Fatalf("marshal forwards import payload: %v", err) } importReq := httptest.NewRequest(http.MethodPost, "/api/v1/backup/import", bytes.NewReader(importBody)) importReq.Header.Set("Authorization", adminToken) importReq.Header.Set("Content-Type", "application/json") importResp := httptest.NewRecorder() router.ServeHTTP(importResp, importReq) var out response.R if err := json.NewDecoder(importResp.Body).Decode(&out); err != nil { t.Fatalf("decode forwards import response: %v", err) } if out.Code != 0 { t.Fatalf("expected forwards import code 0, got %d (%s)", out.Code, out.Msg) } after := mustQueryNodePorts(t, r, `SELECT node_id, port FROM forward_port WHERE forward_id = ? ORDER BY id ASC`, forwardID) if len(after) != len(expected) { t.Fatalf("expected %d forward ports after import, got %d (%v)", len(expected), len(after), after) } for nodeID, port := range expected { if got, ok := after[nodeID]; !ok || got != port { t.Fatalf("expected forward_port node=%d port=%d after import, got %v", nodeID, port, after) } } }) t.Run("backup export tolerates nullable legacy tunnel chain fields", func(t *testing.T) { now := time.Now().UnixMilli() if err := r.DB().Exec(` INSERT INTO tunnel(name, traffic_ratio, type, protocol, flow, created_time, updated_time, status, in_ip, inx) VALUES(?, ?, ?, ?, ?, ?, ?, ?, ?, ?) `, "legacy-null-chain", 1.0, 1, "tls", 1000, now, now, 1, nil, 1).Error; err != nil { t.Fatalf("seed tunnel for nullable chain export: %v", err) } tunnelID := mustLastInsertID(t, r, "legacy-null-chain") if err := r.DB().Exec(` INSERT INTO chain_tunnel(tunnel_id, chain_type, node_id, port, strategy, inx, protocol) VALUES(?, ?, ?, ?, ?, ?, ?) `, tunnelID, "1", 1, nil, nil, nil, nil).Error; err != nil { t.Fatalf("seed nullable chain_tunnel row: %v", err) } req := httptest.NewRequest(http.MethodPost, "/api/v1/backup/export", bytes.NewBufferString(`{"types":["tunnels"]}`)) req.Header.Set("Authorization", adminToken) req.Header.Set("Content-Type", "application/json") resp := httptest.NewRecorder() router.ServeHTTP(resp, req) if resp.Code != http.StatusOK { t.Fatalf("expected status 200, got %d", resp.Code) } var payload struct { Version string `json:"version"` Tunnels []struct { ID int64 `json:"id"` ChainTunnels []struct { Inx int `json:"inx"` Strategy string `json:"strategy"` Protocol string `json:"protocol"` } `json:"chainTunnels"` } `json:"tunnels"` } if err := json.NewDecoder(resp.Body).Decode(&payload); err != nil { t.Fatalf("decode tunnels backup payload: %v", err) } if strings.TrimSpace(payload.Version) == "" { t.Fatalf("expected backup payload version, got empty") } found := false for _, tunnel := range payload.Tunnels { if tunnel.ID != tunnelID { continue } if len(tunnel.ChainTunnels) != 1 { t.Fatalf("expected one chain tunnel for seeded tunnel %d, got %d", tunnelID, len(tunnel.ChainTunnels)) } if tunnel.ChainTunnels[0].Inx != 0 { t.Fatalf("expected nullable chain inx to export as 0, got %d", tunnel.ChainTunnels[0].Inx) } if tunnel.ChainTunnels[0].Strategy != "" { t.Fatalf("expected nullable chain strategy to export as empty string, got %q", tunnel.ChainTunnels[0].Strategy) } if tunnel.ChainTunnels[0].Protocol != "" { t.Fatalf("expected nullable chain protocol to export as empty string, got %q", tunnel.ChainTunnels[0].Protocol) } found = true break } if !found { t.Fatalf("expected seeded tunnel %d in backup export", tunnelID) } }) } type backupExportPayload struct { Version string `json:"version"` ExportedAt int64 `json:"exportedAt"` Configs map[string]string `json:"configs"` } type backupImportPayload struct { Types []string `json:"types"` backupExportPayload } func exportBackupPayload(t *testing.T, router http.Handler, path, token string) backupExportPayload { t.Helper() req := httptest.NewRequest(http.MethodPost, path, bytes.NewBufferString(`{"types":["configs"]}`)) req.Header.Set("Authorization", token) req.Header.Set("Content-Type", "application/json") resp := httptest.NewRecorder() router.ServeHTTP(resp, req) if resp.Code != http.StatusOK { t.Fatalf("expected status 200 on %s, got %d", path, resp.Code) } body, err := io.ReadAll(resp.Body) if err != nil { t.Fatalf("read backup payload from %s: %v", path, err) } var payload backupExportPayload if err := json.Unmarshal(body, &payload); err != nil { t.Fatalf("decode backup payload from %s: %v", path, err) } if strings.TrimSpace(payload.Version) == "" { var out response.R if err := json.Unmarshal(body, &out); err == nil { t.Fatalf("expected backup payload on %s, got envelope code=%d msg=%q", path, out.Code, out.Msg) } t.Fatalf("expected non-empty backup payload version on %s, body=%s", path, string(body)) } if payload.Configs == nil { t.Fatalf("expected configs map in backup payload on %s", path) } return payload } func setupContractRouter(t *testing.T, jwtSecret string) (http.Handler, *repo.Repository) { t.Helper() dbPath := filepath.Join(t.TempDir(), "contract.db") r, err := repo.Open(dbPath) if err != nil { t.Fatalf("open sqlite: %v", err) } t.Cleanup(func() { _ = r.Close() }) h := handler.New(r, jwtSecret) return httpserver.NewRouter(h, jwtSecret), r } func TestOpenMigratesLegacyNodeDualStackColumns(t *testing.T) { dbPath := filepath.Join(t.TempDir(), "legacy-2.0.7-beta.db") legacyDB, err := sql.Open("sqlite", dbPath) if err != nil { t.Fatalf("open legacy sqlite: %v", err) } t.Cleanup(func() { _ = legacyDB.Close() }) if _, err := legacyDB.Exec(` CREATE TABLE IF NOT EXISTS node ( id INTEGER PRIMARY KEY AUTOINCREMENT, name VARCHAR(100) NOT NULL, secret VARCHAR(100) NOT NULL, server_ip VARCHAR(100) NOT NULL, port TEXT NOT NULL, interface_name VARCHAR(200), version VARCHAR(100), http INTEGER NOT NULL DEFAULT 0, tls INTEGER NOT NULL DEFAULT 0, socks INTEGER NOT NULL DEFAULT 0, created_time INTEGER NOT NULL, updated_time INTEGER, status INTEGER NOT NULL, tcp_listen_addr VARCHAR(100) NOT NULL DEFAULT '[::]', udp_listen_addr VARCHAR(100) NOT NULL DEFAULT '[::]' ) `); err != nil { t.Fatalf("create legacy node table: %v", err) } if _, err := legacyDB.Exec(` CREATE TABLE IF NOT EXISTS tunnel ( id INTEGER PRIMARY KEY AUTOINCREMENT, name VARCHAR(100) NOT NULL, traffic_ratio REAL NOT NULL DEFAULT 1.0, type INTEGER NOT NULL, protocol VARCHAR(10) NOT NULL DEFAULT 'tls', flow INTEGER NOT NULL, created_time INTEGER NOT NULL, updated_time INTEGER NOT NULL, status INTEGER NOT NULL, in_ip TEXT ) `); err != nil { t.Fatalf("create legacy tunnel table: %v", err) } now := time.Now().UnixMilli() if _, err := legacyDB.Exec(` INSERT INTO node(name, secret, server_ip, port, interface_name, version, http, tls, socks, created_time, updated_time, status, tcp_listen_addr, udp_listen_addr) VALUES(?, ?, ?, ?, ?, ?, ?, ?, ?, ?, ?, ?, ?, ?) `, "legacy-node", "legacy-secret", "10.10.0.1", "10000-10010", "eth0", "v-old", 1, 1, 1, now, now, 1, "[::]", "[::]"); err != nil { t.Fatalf("seed legacy node row: %v", err) } r, err := repo.Open(dbPath) if err != nil { t.Fatalf("open migrated sqlite: %v", err) } t.Cleanup(func() { _ = r.Close() }) nodes, err := r.ListNodes() if err != nil { t.Fatalf("list nodes after migration: %v", err) } if len(nodes) != 1 { t.Fatalf("expected 1 node after migration, got %d", len(nodes)) } columns := readTableColumns(t, r.DB(), "node") for _, required := range []string{"server_ip_v4", "server_ip_v6", "inx", "extra_ips"} { if !columns[required] { t.Fatalf("expected node column %q to exist after migration", required) } } tunnelColumns := readTableColumns(t, r.DB(), "tunnel") for _, required := range []string{"inx", "ip_preference"} { if !tunnelColumns[required] { t.Fatalf("expected tunnel column %q to exist after migration", required) } } } func TestOpenMigratesVeryLegacyNodeAndTunnelColumns(t *testing.T) { dbPath := filepath.Join(t.TempDir(), "legacy-1.x.db") legacyDB, err := sql.Open("sqlite", dbPath) if err != nil { t.Fatalf("open legacy sqlite: %v", err) } t.Cleanup(func() { _ = legacyDB.Close() }) if _, err := legacyDB.Exec(` CREATE TABLE IF NOT EXISTS node ( id INTEGER PRIMARY KEY AUTOINCREMENT, name VARCHAR(100) NOT NULL, secret VARCHAR(100) NOT NULL, server_ip VARCHAR(100) NOT NULL, port TEXT NOT NULL, interface_name VARCHAR(200), version VARCHAR(100), http INTEGER NOT NULL DEFAULT 0, tls INTEGER NOT NULL DEFAULT 0, socks INTEGER NOT NULL DEFAULT 0, created_time INTEGER NOT NULL, updated_time INTEGER, status INTEGER NOT NULL ) `); err != nil { t.Fatalf("create very legacy node table: %v", err) } if _, err := legacyDB.Exec(` CREATE TABLE IF NOT EXISTS tunnel ( id INTEGER PRIMARY KEY AUTOINCREMENT, name VARCHAR(100) NOT NULL, traffic_ratio REAL NOT NULL DEFAULT 1.0, type INTEGER NOT NULL, protocol VARCHAR(10) NOT NULL DEFAULT 'tls', flow INTEGER NOT NULL, created_time INTEGER NOT NULL, updated_time INTEGER NOT NULL, status INTEGER NOT NULL, in_ip TEXT ) `); err != nil { t.Fatalf("create very legacy tunnel table: %v", err) } now := time.Now().UnixMilli() if _, err := legacyDB.Exec(` INSERT INTO node(name, secret, server_ip, port, interface_name, version, http, tls, socks, created_time, updated_time, status) VALUES(?, ?, ?, ?, ?, ?, ?, ?, ?, ?, ?, ?) `, "legacy-node", "legacy-secret", "10.10.0.1", "10000-10010", "eth0", "v-old", 1, 1, 1, now, now, 1); err != nil { t.Fatalf("seed legacy node row: %v", err) } r, err := repo.Open(dbPath) if err != nil { t.Fatalf("open migrated sqlite: %v", err) } t.Cleanup(func() { _ = r.Close() }) columns := readTableColumns(t, r.DB(), "node") for _, required := range []string{ "server_ip_v4", "server_ip_v6", "extra_ips", "tcp_listen_addr", "udp_listen_addr", "inx", "is_remote", "remote_url", "remote_token", "remote_config", } { if !columns[required] { t.Fatalf("expected node column %q to exist after migration", required) } } tunnelColumns := readTableColumns(t, r.DB(), "tunnel") for _, required := range []string{"inx", "ip_preference"} { if !tunnelColumns[required] { t.Fatalf("expected tunnel column %q to exist after migration", required) } } } func readTableColumns(t *testing.T, db *gorm.DB, table string) map[string]bool { t.Helper() columnTypes, err := db.Migrator().ColumnTypes(table) if err != nil { t.Fatalf("inspect %s columns: %v", table, err) } columns := map[string]bool{} for _, col := range columnTypes { name := strings.TrimSpace(col.Name()) if name == "" { continue } columns[name] = true } return columns }