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CI was red across backend/frontend/mobile: - backend: migration 132 made issue.space_id/autopilot.space_id NOT NULL, but ~28 test files across internal/handler, cmd/server, and cmd/migrate still raw-SQL-inserted issue/autopilot rows without space_id. Backfilled every one via (SELECT id FROM workspace_space WHERE workspace_id = $N LIMIT 1), reusing the existing workspace_id positional param — matches the convention already established in daemon_test.go/comment_resolve_test.go. Seeded a workspace_space row for every test that creates its own local workspace (cross-workspace fixtures), mirroring setupHandlerTestFixture. - frontend: scripts/generate-reserved-slugs.mjs had a stale hardcoded `/create-team` example in its generated doc comment (never updated in the team→space rename), so `pnpm generate:reserved-slugs`'s output diverged from the committed reserved-slugs.ts and CI's drift-check failed. - mobile: agent-schema.test.ts asserted the unknown-target_type fallback was "team"; the schema's actual .catch() fallback is "space" — stale assertion, not a schema bug. go test ./... and go vet ./... are clean; pnpm generate:reserved-slugs produces no diff; mobile's agent-schema test passes. Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>
255 lines
8.1 KiB
Go
255 lines
8.1 KiB
Go
package handler
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import (
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"context"
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"encoding/json"
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"net/http"
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"net/http/httptest"
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"sync"
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"testing"
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"time"
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"github.com/multica-ai/multica/server/internal/events"
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"github.com/multica-ai/multica/server/pkg/protocol"
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)
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// resolveCommentHTTP drives the POST /api/comments/{id}/resolve handler and
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// returns the decoded response. Mirrors the resolve path the web/desktop client
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// hits.
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func resolveCommentHTTP(t *testing.T, commentID string) CommentResponse {
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t.Helper()
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w := httptest.NewRecorder()
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r := newRequest("POST", "/api/comments/"+commentID+"/resolve", nil)
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r = withURLParam(r, "commentId", commentID)
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testHandler.ResolveComment(w, r)
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if w.Code != http.StatusOK {
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t.Fatalf("resolve %s: status %d: %s", commentID, w.Code, w.Body.String())
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}
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var resp CommentResponse
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if err := json.Unmarshal(w.Body.Bytes(), &resp); err != nil {
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t.Fatalf("decode resolve response: %v", err)
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}
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return resp
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}
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// commentResolved reports whether a comment currently has resolved_at set,
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// read straight from the row so the assertion sees committed state.
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func commentResolved(t *testing.T, id string) bool {
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t.Helper()
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var resolvedAt *time.Time
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if err := testPool.QueryRow(context.Background(),
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`SELECT resolved_at FROM comment WHERE id = $1`, id,
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).Scan(&resolvedAt); err != nil {
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t.Fatalf("query resolved_at for %s: %v", id, err)
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}
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return resolvedAt != nil
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}
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// commentResolvedAt returns the raw resolved_at timestamp (nil when cleared).
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func commentResolvedAt(t *testing.T, id string) *time.Time {
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t.Helper()
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var resolvedAt *time.Time
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if err := testPool.QueryRow(context.Background(),
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`SELECT resolved_at FROM comment WHERE id = $1`, id,
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).Scan(&resolvedAt); err != nil {
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t.Fatalf("query resolved_at for %s: %v", id, err)
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}
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return resolvedAt
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}
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// commentEventCapture records comment:resolved / comment:unresolved events for a
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// single issue. The handler bus has no Unsubscribe, so the closure filters by
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// issue id; events for other tests' issues are ignored.
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type commentEventCapture struct {
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mu sync.Mutex
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events []struct {
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Type string
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CommentID string
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}
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}
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func captureCommentEvents(t *testing.T, issueID string) *commentEventCapture {
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t.Helper()
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cap := &commentEventCapture{}
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record := func(e events.Event) {
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m, ok := e.Payload.(map[string]any)
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if !ok {
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return
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}
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c, ok := m["comment"].(CommentResponse)
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if !ok || c.IssueID != issueID {
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return
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}
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cap.mu.Lock()
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cap.events = append(cap.events, struct {
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Type string
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CommentID string
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}{e.Type, c.ID})
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cap.mu.Unlock()
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}
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testHandler.Bus.Subscribe(protocol.EventCommentResolved, record)
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testHandler.Bus.Subscribe(protocol.EventCommentUnresolved, record)
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return cap
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}
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func (c *commentEventCapture) countFor(eventType, commentID string) int {
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c.mu.Lock()
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defer c.mu.Unlock()
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n := 0
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for _, e := range c.events {
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if e.Type == eventType && e.CommentID == commentID {
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n++
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}
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}
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return n
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}
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// resolveTestFixture seeds an issue with two independent threads so the tests
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// can prove the single-resolution invariant is thread-scoped, not issue-scoped:
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//
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// root1
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// ├── a1
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// └── b1
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// root2 (separate thread)
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// └── a2
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type resolveTestFixture struct {
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IssueID string
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Root1 string
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A1 string
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B1 string
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Root2 string
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A2 string
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}
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func newResolveTestFixture(t *testing.T) resolveTestFixture {
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t.Helper()
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ctx := context.Background()
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var issueID string
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if err := testPool.QueryRow(ctx, `
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INSERT INTO issue (workspace_id, space_id, creator_type, creator_id, title)
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VALUES ($1, (SELECT id FROM workspace_space WHERE workspace_id = $1 LIMIT 1), 'member', $2, $3)
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RETURNING id
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`, testWorkspaceID, testUserID, "resolve fixture").Scan(&issueID); err != nil {
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t.Fatalf("create issue: %v", err)
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}
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t.Cleanup(func() {
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testPool.Exec(context.Background(), `DELETE FROM issue WHERE id = $1`, issueID)
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})
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base := time.Now().UTC().Add(-1 * time.Hour).Truncate(time.Second)
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insert := func(parent *string, offset time.Duration, body string) string {
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t.Helper()
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var id string
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if err := testPool.QueryRow(ctx, `
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INSERT INTO comment (issue_id, workspace_id, author_type, author_id, content, type, parent_id, created_at)
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VALUES ($1, $2, 'member', $3, $4, 'comment', $5, $6)
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RETURNING id
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`, issueID, testWorkspaceID, testUserID, body, parent, base.Add(offset)).Scan(&id); err != nil {
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t.Fatalf("insert comment %q: %v", body, err)
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}
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return id
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}
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root1 := insert(nil, 0, "root1")
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a1 := insert(&root1, 1*time.Minute, "a1")
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b1 := insert(&root1, 2*time.Minute, "b1")
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root2 := insert(nil, 10*time.Minute, "root2")
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a2 := insert(&root2, 11*time.Minute, "a2")
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return resolveTestFixture{IssueID: issueID, Root1: root1, A1: a1, B1: b1, Root2: root2, A2: a2}
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}
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// TestResolveComment_ReplacesPriorThreadResolution is the core regression for
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// MUL-3180: a thread must have at most one resolved comment, and resolving a new
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// one atomically clears the previous resolution (instead of leaving two resolved
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// rows that the UI only papered over).
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func TestResolveComment_ReplacesPriorThreadResolution(t *testing.T) {
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if testHandler == nil || testPool == nil {
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t.Skip("database not available")
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}
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fx := newResolveTestFixture(t)
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cap := captureCommentEvents(t, fx.IssueID)
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// Resolve a1 → it is the resolution.
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resolveCommentHTTP(t, fx.A1)
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if !commentResolved(t, fx.A1) {
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t.Fatalf("a1 should be resolved after first resolve")
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}
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// Resolve b1 → b1 becomes the resolution and a1 is cleared in the same write.
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resolveCommentHTTP(t, fx.B1)
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if !commentResolved(t, fx.B1) {
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t.Fatalf("b1 should be resolved")
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}
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if commentResolved(t, fx.A1) {
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t.Fatalf("a1 should have been cleared when b1 was resolved (single-resolution invariant)")
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}
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// The cleared sibling must broadcast comment:unresolved so granular realtime
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// consumers drop the stale resolution; b1 must broadcast comment:resolved.
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if got := cap.countFor(protocol.EventCommentUnresolved, fx.A1); got != 1 {
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t.Fatalf("expected exactly 1 comment:unresolved for a1, got %d", got)
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}
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if got := cap.countFor(protocol.EventCommentResolved, fx.B1); got != 1 {
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t.Fatalf("expected exactly 1 comment:resolved for b1, got %d", got)
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}
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}
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// TestResolveComment_ScopedToThread proves the clear never reaches across into a
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// sibling thread on the same issue.
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func TestResolveComment_ScopedToThread(t *testing.T) {
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if testHandler == nil || testPool == nil {
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t.Skip("database not available")
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}
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fx := newResolveTestFixture(t)
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resolveCommentHTTP(t, fx.B1) // thread 1 resolution
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resolveCommentHTTP(t, fx.A2) // thread 2 resolution — must NOT touch thread 1
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if !commentResolved(t, fx.B1) {
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t.Fatalf("b1 (thread 1) must stay resolved when a separate thread is resolved")
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}
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if !commentResolved(t, fx.A2) {
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t.Fatalf("a2 (thread 2) should be resolved")
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}
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// Resolving the root of thread 1 overrides the reply resolution (override
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// works in both directions: reply→reply and reply→root).
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resolveCommentHTTP(t, fx.Root1)
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if !commentResolved(t, fx.Root1) {
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t.Fatalf("root1 should be resolved")
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}
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if commentResolved(t, fx.B1) {
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t.Fatalf("b1 should be cleared when root1 becomes the resolution")
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}
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if !commentResolved(t, fx.A2) {
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t.Fatalf("a2 (other thread) must remain resolved throughout")
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}
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}
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// TestResolveComment_ReResolveIsIdempotent pins the COALESCE idempotency +
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// event suppression: re-resolving the current resolution keeps its original
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// timestamp and emits no second comment:resolved event.
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func TestResolveComment_ReResolveIsIdempotent(t *testing.T) {
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if testHandler == nil || testPool == nil {
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t.Skip("database not available")
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}
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fx := newResolveTestFixture(t)
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cap := captureCommentEvents(t, fx.IssueID)
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resolveCommentHTTP(t, fx.A1)
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first := commentResolvedAt(t, fx.A1)
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if first == nil {
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t.Fatalf("a1 should be resolved")
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}
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resolveCommentHTTP(t, fx.A1) // re-resolve same comment
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second := commentResolvedAt(t, fx.A1)
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if second == nil || !second.Equal(*first) {
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t.Fatalf("re-resolve must keep the original resolved_at (got %v, want %v)", second, first)
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}
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if got := cap.countFor(protocol.EventCommentResolved, fx.A1); got != 1 {
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t.Fatalf("re-resolve no-op must not emit a second comment:resolved (got %d)", got)
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}
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}
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