package fakes import ( "strings" "testing" ) // newFakes creates a faker over a single data directory, failing on error. Most // tests load one dir; newFakesN loads several (last-loaded wins on conflicts). func newFakes(t *testing.T, dir string, opts ...Option) *Fakes { t.Helper() return newFakesN(t, []string{dir}, opts...) } func newFakesN(t *testing.T, dirs []string, opts ...Option) *Fakes { t.Helper() f, err := New(dirs, opts...) if err != nil { t.Fatalf("New(%q): %v", dirs, err) } return f } // fake generates a value, failing the test on error. func fake(t *testing.T, f *Fakes, path string) string { t.Helper() s, err := f.Fake(path) if err != nil { t.Fatalf("Fake(%q): %v", path, err) } return s } func TestNewMissingDirectory(t *testing.T) { _, err := New([]string{"data/de_DE"}) if err == nil || !strings.Contains(err.Error(), "de_DE") { t.Fatalf("New(missing) error = %v, want it to name the path", err) } } func TestWithSeedIsDeterministic(t *testing.T) { a, b := newFakes(t, "data/sv_SE", WithSeed(42)), newFakes(t, "data/sv_SE", WithSeed(42)) for i := 0; i < 50; i++ { if x, y := fake(t, a, "person"), fake(t, b, "person"); x != y { t.Fatalf("same seed diverged at %d: %q != %q", i, x, y) } } } func TestDifferentSeedsDiffer(t *testing.T) { a, b := newFakes(t, "data/en_US", WithSeed(1)), newFakes(t, "data/en_US", WithSeed(2)) for i := 0; i < 50; i++ { if fake(t, a, "person") != fake(t, b, "person") { return } } t.Fatal("seeds 1 and 2 produced identical sequences") }