Files
summercms/tide/manifest.go
Jakub Zych 4c1259aafd fix(02-03): keep a recorded seed when --update recaptures routes
Re-running bootstrap against an already seeded PHP instance 409s.
Route --update must not recapture a complete seed fixture.

Co-authored-by: Cursor <cursoragent@cursor.com>
2026-09-17 13:00:44 +02:00

562 lines
14 KiB
Go

package tide
import (
"bytes"
"context"
"crypto/sha256"
"encoding/hex"
"errors"
"fmt"
"os"
"path/filepath"
"strconv"
"strings"
"github.com/goccy/go-yaml"
)
const MaxBatch = 15
const (
StatusPending = "pending"
StatusPorted = "ported"
)
const (
ModeAllowIncomplete = "allow-incomplete"
ModeRequireRecorded = "require-recorded"
)
// Manifest is a generic ordered list of route cases. It has no app-specific names.
type Manifest struct {
Version int `yaml:"version"`
AuthGroups []string `yaml:"auth_groups"`
Seed *Seed `yaml:"seed,omitempty"`
Routes []Route `yaml:"routes"`
}
// Seed names an optional bootstrap flow recorded before route cases.
type Seed struct {
Hook string `yaml:"hook,omitempty"`
Spec string `yaml:"spec,omitempty"`
Fixture string `yaml:"fixture,omitempty"`
}
// Route is one manifest entry with identity, cases and fixture path.
type Route struct {
ID string `yaml:"id"`
Method string `yaml:"method"`
Path string `yaml:"path"`
AuthGroup string `yaml:"auth_group"`
Status string `yaml:"status"`
Identities []string `yaml:"identities,omitempty"`
Cases []RouteCase `yaml:"cases,omitempty"`
Headers map[string]string `yaml:"headers,omitempty"`
Normalize []NormalizeRule `yaml:"normalize,omitempty"`
SeedHook string `yaml:"seed_hook,omitempty"`
Fixture string `yaml:"fixture,omitempty"`
}
// RouteCase is one recorded request/response expectation for a route.
type RouteCase struct {
ID string `yaml:"id"`
Identity string `yaml:"identity,omitempty"`
Status int `yaml:"status,omitempty"`
Headers map[string]string `yaml:"headers,omitempty"`
Fixture string `yaml:"fixture,omitempty"`
Request *Request `yaml:"request,omitempty"`
Capture []CaptureRule `yaml:"capture,omitempty"`
}
// ManifestConfig drives recording or replay of a manifest.
type ManifestConfig struct {
Target string
Fixtures string
Store *Store
Rules Rules
Update bool
Resume bool
NextBatch int
Mode string
SelfCheck bool
}
// LoadManifest reads a strict YAML manifest.
func LoadManifest(path string) (Manifest, error) {
raw, err := os.ReadFile(path)
if err != nil {
return Manifest{}, fmt.Errorf("tide: read manifest %s: %w", path, err)
}
return ParseManifest(raw)
}
// ParseManifest decodes a manifest, rejecting unknown fields.
func ParseManifest(raw []byte) (Manifest, error) {
var m Manifest
dec := yaml.NewDecoder(bytes.NewReader(raw), yaml.DisallowUnknownField())
if err := dec.Decode(&m); err != nil {
return Manifest{}, fmt.Errorf("tide: parse manifest: %w", err)
}
if m.Version != CurrentVersion {
return Manifest{}, fmt.Errorf("tide: unsupported manifest version %d", m.Version)
}
return m, nil
}
// ValidateManifest checks identities in both modes; case/fixture completeness depends on mode.
func ValidateManifest(m Manifest, fixtures, mode string) error {
if len(m.AuthGroups) == 0 {
return fmt.Errorf("tide: manifest auth_groups is required")
}
groups := make(map[string]struct{}, len(m.AuthGroups))
for _, g := range m.AuthGroups {
if strings.TrimSpace(g) == "" {
return fmt.Errorf("tide: empty auth group")
}
groups[g] = struct{}{}
}
if len(m.Routes) == 0 {
return fmt.Errorf("tide: manifest has no routes")
}
seen := map[string]struct{}{}
for i, route := range m.Routes {
if strings.TrimSpace(route.ID) == "" {
return fmt.Errorf("tide: routes[%d] is missing id", i)
}
if _, dup := seen[route.ID]; dup {
return fmt.Errorf("tide: duplicate route id %q", route.ID)
}
seen[route.ID] = struct{}{}
if strings.TrimSpace(route.Method) == "" || strings.TrimSpace(route.Path) == "" {
return fmt.Errorf("tide: route %s is missing method or path", route.ID)
}
if _, ok := groups[route.AuthGroup]; !ok {
return fmt.Errorf("tide: route %s has unknown auth group %q", route.ID, route.AuthGroup)
}
if route.Status != StatusPending && route.Status != StatusPorted {
return fmt.Errorf("tide: route %s has unknown status %q", route.ID, route.Status)
}
if err := validateFixturePath(route.Fixture); err != nil {
return fmt.Errorf("tide: route %s: %w", route.ID, err)
}
for j, c := range route.Cases {
if err := validateFixturePath(c.Fixture); err != nil {
return fmt.Errorf("tide: route %s case[%d]: %w", route.ID, j, err)
}
if mode == ModeRequireRecorded {
if err := requireCase(route, c); err != nil {
return err
}
}
}
if mode == ModeRequireRecorded {
if len(route.Cases) == 0 {
return fmt.Errorf("tide: route %s is missing cases", route.ID)
}
for _, c := range routeCases(route) {
path := caseFixturePath(fixtures, route, c)
if _, err := LoadFlow(path); err != nil {
return fmt.Errorf("tide: route %s missing valid fixture %s: %w", route.ID, path, err)
}
}
}
}
return nil
}
func requireCase(route Route, c RouteCase) error {
if strings.TrimSpace(c.ID) == "" {
return fmt.Errorf("tide: route %s has a case without id", route.ID)
}
if c.Status == 0 {
return fmt.Errorf("tide: route %s case %s is missing status", route.ID, c.ID)
}
req := caseRequest(route, c)
if strings.TrimSpace(req.Method) == "" || strings.TrimSpace(req.Path) == "" {
return fmt.Errorf("tide: route %s case %s is missing request", route.ID, c.ID)
}
if caseFixturePath("", route, c) == "" {
return fmt.Errorf("tide: route %s case %s is missing fixture", route.ID, c.ID)
}
return nil
}
func validateFixturePath(p string) error {
if p == "" {
return nil
}
if filepath.IsAbs(p) {
return fmt.Errorf("fixture %q must be a relative path", p)
}
clean := filepath.ToSlash(filepath.Clean(p))
if clean == ".." || strings.HasPrefix(clean, "../") {
return fmt.Errorf("fixture %q escapes the fixture directory", p)
}
return nil
}
func routeCases(route Route) []RouteCase {
if len(route.Cases) > 0 {
return route.Cases
}
return nil
}
func caseRequest(route Route, c RouteCase) Request {
if c.Request != nil {
return *c.Request
}
return Request{Method: route.Method, Path: route.Path}
}
func caseFixturePath(root string, route Route, c RouteCase) string {
rel := c.Fixture
if rel == "" {
rel = route.Fixture
}
if rel == "" && c.ID != "" {
rel = filepath.ToSlash(filepath.Join("routes", sanitizeFile(route.ID)+"__"+sanitizeFile(c.ID)+".yaml"))
}
if rel == "" && route.ID != "" {
rel = filepath.ToSlash(filepath.Join("routes", sanitizeFile(route.ID)+".yaml"))
}
if root == "" {
return rel
}
return filepath.Join(root, rel)
}
func sanitizeFile(s string) string {
s = strings.TrimSpace(s)
repl := strings.NewReplacer("/", "_", "\\", "_", " ", "_")
return repl.Replace(s)
}
func fixtureHash(path string) (string, error) {
raw, err := os.ReadFile(path)
if err != nil {
return "", err
}
if len(bytes.TrimSpace(raw)) == 0 {
return "", fmt.Errorf("empty fixture")
}
sum := sha256.Sum256(raw)
return hex.EncodeToString(sum[:]), nil
}
func recordedCase(fixtures string, route Route, c RouteCase) (bool, error) {
path := caseFixturePath(fixtures, route, c)
if _, err := os.Stat(path); err != nil {
if os.IsNotExist(err) {
return false, nil
}
return false, err
}
if _, err := LoadFlow(path); err != nil {
return false, fmt.Errorf("tide: existing fixture %s is invalid: %w", path, err)
}
if _, err := fixtureHash(path); err != nil {
return false, fmt.Errorf("tide: existing fixture %s hash: %w", path, err)
}
return true, nil
}
// RecordManifest records seed then route cases. NextBatch>15 is refused.
func RecordManifest(ctx context.Context, m Manifest, cfg ManifestConfig) (Coverage, error) {
if cfg.NextBatch > MaxBatch {
return Coverage{}, fmt.Errorf("tide: --next-batch %d exceeds %d", cfg.NextBatch, MaxBatch)
}
if err := ValidateManifest(m, cfg.Fixtures, ModeAllowIncomplete); err != nil {
return Coverage{}, err
}
cov := newCoverage(m)
if m.Seed != nil && strings.TrimSpace(m.Seed.Spec) != "" {
if err := recordSeed(ctx, m.Seed, cfg); err != nil {
return cov, err
}
}
limit := cfg.NextBatch
if limit <= 0 {
limit = len(m.Routes)
}
taken := 0
for _, route := range m.Routes {
cases := route.Cases
if len(cases) == 0 {
cov.markUnrecorded(route)
continue
}
allRecorded := true
for _, c := range cases {
ok, err := recordedCase(cfg.Fixtures, route, c)
if err != nil {
return cov, err
}
if !ok {
allRecorded = false
break
}
}
if allRecorded && !cfg.Update {
cov.markRecorded(route)
continue
}
if taken >= limit {
cov.markUnrecorded(route)
continue
}
if err := recordRoute(ctx, route, cfg); err != nil {
return cov, err
}
cov.markRecorded(route)
taken++
}
cov.ResumeRemaining = countUnrecorded(m, cfg.Fixtures)
return cov, nil
}
func recordSeed(ctx context.Context, seed *Seed, cfg ManifestConfig) error {
dest := seed.Fixture
if dest == "" {
dest = seed.Spec
}
if cfg.Fixtures != "" && !filepath.IsAbs(dest) {
dest = filepath.Join(cfg.Fixtures, dest)
}
if recorded, err := seedAlreadyRecorded(dest); err != nil {
return err
} else if recorded {
return nil
}
spec, err := LoadFlow(resolveSeedSpec(seed.Spec, cfg.Fixtures))
if err != nil {
return err
}
flow, err := RecordFlow(ctx, spec, RecordConfig{Target: cfg.Target, Store: cfg.Store, Rules: cfg.Rules})
if err != nil {
return err
}
return SaveFlow(dest, flow)
}
func seedAlreadyRecorded(path string) (bool, error) {
st, err := os.Stat(path)
if err != nil {
if os.IsNotExist(err) {
return false, nil
}
return false, err
}
if st.IsDir() || st.Size() == 0 {
return false, nil
}
flow, err := LoadFlow(path)
if err != nil {
return false, nil
}
for _, step := range flow.Steps {
if step.Response.Status == 0 {
return false, nil
}
}
return len(flow.Steps) > 0, nil
}
func resolveSeedSpec(spec, fixtures string) string {
if spec == "" || filepath.IsAbs(spec) || fixtures == "" {
return spec
}
joined := filepath.Join(fixtures, spec)
if _, err := os.Stat(joined); err == nil {
return joined
}
return spec
}
func recordRoute(ctx context.Context, route Route, cfg ManifestConfig) error {
for _, c := range route.Cases {
dest := caseFixturePath(cfg.Fixtures, route, c)
if _, err := os.Stat(dest); err == nil {
if cfg.Resume && !cfg.Update {
if _, err := LoadFlow(dest); err != nil {
return err
}
continue
}
if !cfg.Update {
return fmt.Errorf("tide: fixture %s exists; pass --update to overwrite", dest)
}
}
spec := Flow{
Version: CurrentVersion,
Name: route.ID + "/" + c.ID,
SeedHook: route.SeedHook,
Steps: []Step{{
ID: c.ID,
RouteID: route.ID,
Request: caseRequest(route, c),
Capture: c.Capture,
Normalize: route.Normalize,
Headers: mergeHeaders(route.Headers, c.Headers),
}},
}
flow, err := RecordFlow(ctx, spec, RecordConfig{Target: cfg.Target, Store: cfg.Store, Rules: cfg.Rules})
if err != nil {
return err
}
if err := SaveFlow(dest, flow); err != nil {
return err
}
}
return nil
}
func mergeHeaders(a, b map[string]string) map[string]string {
if len(a) == 0 && len(b) == 0 {
return nil
}
out := make(map[string]string)
for k, v := range a {
out[k] = v
}
for k, v := range b {
out[k] = v
}
return out
}
func countUnrecorded(m Manifest, fixtures string) int {
n := 0
for _, route := range m.Routes {
if len(route.Cases) == 0 {
n++
continue
}
for _, c := range route.Cases {
ok, err := recordedCase(fixtures, route, c)
if err != nil || !ok {
n++
break
}
}
}
return n
}
// ReplayManifest replays recorded route fixtures and builds a coverage table.
func ReplayManifest(ctx context.Context, m Manifest, cfg ManifestConfig) (Coverage, error) {
if err := ValidateManifest(m, cfg.Fixtures, ModeAllowIncomplete); err != nil {
return Coverage{}, err
}
cov := newCoverage(m)
var fail error
for _, route := range m.Routes {
cases := route.Cases
if len(cases) == 0 {
cov.markUnrecorded(route)
if cfg.Mode == ModeRequireRecorded {
fail = firstErr(fail, fmt.Errorf("tide: unrecorded required route %s", route.ID))
}
continue
}
routeFail := false
routeRecorded := true
for _, c := range cases {
path := caseFixturePath(cfg.Fixtures, route, c)
flow, err := LoadFlow(path)
if err != nil {
routeRecorded = false
if cfg.Mode == ModeRequireRecorded {
fail = firstErr(fail, fmt.Errorf("tide: unrecorded required route %s", route.ID))
}
continue
}
res, err := ReplayFlow(ctx, flow, ReplayConfig{Target: cfg.Target, Store: cfg.Store, BaseDir: filepath.Dir(path)})
if err != nil {
var mis *MismatchError
if !errors.As(err, &mis) {
return cov, err
}
res = mis.Result
}
if !res.OK {
routeFail = true
cov.addDiffs(route.ID, res)
if cfg.SelfCheck || route.Status == StatusPorted {
fail = firstErr(fail, fmt.Errorf("tide: route %s failed", route.ID))
}
}
}
if !routeRecorded {
cov.markUnrecorded(route)
continue
}
if routeFail {
cov.markFailing(route)
continue
}
cov.markPassing(route)
}
return cov, fail
}
func firstErr(cur, next error) error {
if cur == nil {
return next
}
return cur
}
func newCoverage(m Manifest) Coverage {
c := Coverage{Total: len(m.Routes), Rows: make([]CoverageRow, 0, len(m.Routes))}
for _, route := range m.Routes {
if route.Status == StatusPending {
c.Pending++
} else if route.Status == StatusPorted {
c.Ported++
}
}
return c
}
func (c *Coverage) markRecorded(route Route) {
c.Recorded++
c.Rows = append(c.Rows, CoverageRow{ID: route.ID, Status: route.Status, Outcome: "recorded"})
}
func (c *Coverage) markPassing(route Route) {
c.Recorded++
c.Passing++
c.Rows = append(c.Rows, CoverageRow{ID: route.ID, Status: route.Status, Outcome: "passing"})
}
func (c *Coverage) markFailing(route Route) {
c.Recorded++
c.Failing++
c.Rows = append(c.Rows, CoverageRow{ID: route.ID, Status: route.Status, Outcome: "failing"})
}
func (c *Coverage) markUnrecorded(route Route) {
c.Unrecorded++
c.Rows = append(c.Rows, CoverageRow{ID: route.ID, Status: route.Status, Outcome: "unrecorded"})
}
func (c *Coverage) addDiffs(id string, res Result) {
for _, sr := range res.Steps {
for _, d := range sr.Diffs {
c.Diffs = append(c.Diffs, fmt.Sprintf("%s %s: %s expected %s actual %s", id, sr.ID, d.Path, d.Expected, d.Actual))
}
}
}
func ParseNextBatch(s string) (int, error) {
if strings.TrimSpace(s) == "" {
return 0, nil
}
n, err := strconv.Atoi(s)
if err != nil {
return 0, fmt.Errorf("tide: --next-batch: %w", err)
}
return n, nil
}