Files
fejkdata/reference_test.go
2026-09-02 18:45:21 +02:00

349 lines
13 KiB
Go

package fejkdata
import (
"strings"
"testing"
)
// TestRootReferenceAcrossFolders is the headline case: a category in one folder
// pulls a value from another via a {/path} reference resolved from the data root.
func TestRootReferenceAcrossFolders(t *testing.T) {
dir := writeData(t, map[string]string{
"en_US/person": `"Pat Smith"`,
"sv_SE/greeting": `"Hej, {/en_US.person}!"`,
})
f := newGenerator(t, dir, WithSeed(1))
if got := fake(t, f, "sv_SE.greeting"); got != "Hej, Pat Smith!" {
t.Fatalf("greeting = %q, want \"Hej, Pat Smith!\"", got)
}
}
// TestReferenceIntoAField reaches a field inside a referenced category.
func TestReferenceIntoAField(t *testing.T) {
dir := writeData(t, map[string]string{
"who": `{"format":"{first} {last}","first":"Ada","last":"Byron"}`,
"card": `"signed {/who.last}"`,
})
f := newGenerator(t, dir, WithSeed(1))
if got := fake(t, f, "card"); got != "signed Byron" {
t.Fatalf("card = %q, want \"signed Byron\"", got)
}
}
// TestReferenceInAlternation lets a reference stand as one arm of a {a|/b}
// alternation, so a field and a cross-file value share one slot.
func TestReferenceInAlternation(t *testing.T) {
dir := writeData(t, map[string]string{
"far": `"X"`,
"near": `{"format":"{here|/far}","here":"H"}`,
})
f := newGenerator(t, dir, WithSeed(2))
seen := map[string]bool{}
for i := 0; i < 100; i++ {
seen[fake(t, f, "near")] = true
}
if !seen["H"] || !seen["X"] || len(seen) != 2 {
t.Fatalf("alternation produced %v, want both H and X", seen)
}
}
// TestReferenceCombinesLoadedPaths is the point of references over the merge
// model: data layered from two dirs can point at each other through the root.
func TestReferenceCombinesLoadedPaths(t *testing.T) {
a := writeData(t, map[string]string{"en_US/word": `"river"`})
b := writeData(t, map[string]string{"mine/slug": `"the-{/en_US.word}"`})
f := newGeneratorN(t, []string{a, b}, WithSeed(1))
if got := fake(t, f, "mine.slug"); got != "the-river" {
t.Fatalf("slug = %q, want the-river", got)
}
}
// TestReferenceChain follows a reference to a node that is itself a reference, so
// linking order cannot matter.
func TestReferenceChain(t *testing.T) {
dir := writeData(t, map[string]string{
"a": `"{/b}"`,
"b": `"{/c}"`,
"c": `"deep"`,
})
f := newGenerator(t, dir, WithSeed(1))
if got := fake(t, f, "a"); got != "deep" {
t.Fatalf("a = %q, want deep", got)
}
}
// TestReferenceErrors lists the references New must reject up front, so a bad path
// fails at load, never at a random render.
func TestReferenceErrors(t *testing.T) {
cases := map[string]map[string]string{
"missing target": {"card": `"{/nope.gone}"`},
"folder target": {"en_US/word": `"w"`, "card": `"{/en_US}"`},
"a variant on the path lacks the field": {
"who": `[{"format":"{f}","f":"1"},{"format":"{g}","g":"2"}]`,
"card": `"{/who.f}"`,
},
"empty reference path": {"card": `"{/}"`},
// A reference that leads back to its own value never terminates at render,
// so New must reject the cycle up front (direct, mutual, or chained).
"direct cycle": {"a": `"x{/a}"`},
"mutual cycle": {"a": `"{/b}"`, "b": `"{/a}"`},
"chain cycle": {"a": `"{/b}"`, "b": `"{/c}"`, "c": `"{/a}"`},
// calc renders its operands, so a cycle through one must be caught too.
"calc operand cycle": {"x": `{"format":"{calc(y)}","y":"{/x}"}`},
// A field its parent's format never renders is still reachable by dot path,
// so a cycle hiding in one must fail at New rather than at render.
"cycle in an unrendered field": {"cat": `{"format":"hi","x":"{/cat.x}"}`},
"mutual cycle between unrendered fields": {
"cat": `{"format":"hi","x":"{/cat.y}","y":"{/cat.x}"}`,
},
"cycle in an unrendered field of a choice arm": {
"cat": `{"format":"hi","x":"{/cat.x}"}`,
},
// The shipped layout puts categories in folders, so a cycle one level down
// is the common case, not an edge case.
"cycle in a subfolder": {"sv_SE/a": `"x{/sv_SE.a}"`},
"mutual cycle within a subfolder": {"sv_SE/a": `"{/sv_SE.b}"`, "sv_SE/b": `"{/sv_SE.a}"`},
"mutual cycle across two folders": {"en_US/a": `"{/sv_SE.b}"`, "sv_SE/b": `"{/en_US.a}"`},
// ".." is reserved for bound references, so an authored key using it would
// name a node nothing can reach and nothing would validate.
"field key using the reference prefix": {"cat": `{"format":"hi","..x":"{/nope}"}`},
}
for name, files := range cases {
if _, err := New(WithoutShippedData(), WithDataPath(writeData(t, files))); err == nil {
t.Errorf("%s: New = nil error, want a reference error", name)
}
}
}
// TestDotPrefixedDataEntriesAreSkipped pins what a leading dot means on disk: the
// entry is hidden, not data, so a data directory can also be a checkout. A name
// starting with the reference prefix is covered by that same rule, since ".."
// starts with "." — it is skipped, not rejected.
func TestDotPrefixedDataEntriesAreSkipped(t *testing.T) {
f := newGenerator(t, writeData(t, map[string]string{
"sv_SE/ok": `"fine"`,
"sv_SE/..bad": `"{/nope}"`,
"sv_SE/..y/ct": `"{/nope}"`,
".git/config": `"not data"`,
}), WithSeed(1))
if got := f.List(); len(got) != 1 || got[0] != "sv_SE.ok" {
t.Fatalf("List() = %v, want only sv_SE.ok", got)
}
}
// TestReferenceFromUnrenderedFieldTerminates guards the cycle check against
// over-rejecting: a field the format never renders may point back at its own
// category, which terminates, and stays renderable by path.
func TestReferenceFromUnrenderedFieldTerminates(t *testing.T) {
dir := writeData(t, map[string]string{"cat": `{"format":"hi","x":"see {/cat}"}`})
f := newGenerator(t, dir, WithSeed(1))
if got := fake(t, f, "cat"); got != "hi" {
t.Fatalf("cat = %q, want hi", got)
}
if got := fake(t, f, "cat.x"); got != "see hi" {
t.Fatalf("cat.x = %q, want \"see hi\"", got)
}
}
// TestNewErrorIsDeterministic pins one message per broken data set: map iteration
// order must not decide which of several problems the user is told about, whether
// they sit in separate categories or in one template's fields.
func TestNewErrorIsDeterministic(t *testing.T) {
cases := map[string]map[string]string{
"three bad references": {
"a": `"{/nope.one}"`,
"b": `"{/nope.two}"`,
"c": `"{/nope.three}"`,
},
"two bad fields in one template": {
"cat": `{"format":"hi","aaa":{"no":1},"zzz":{"no":2}}`,
},
}
for name, files := range cases {
dir := writeData(t, files)
var first string
for i := 0; i < 50; i++ {
_, err := New(WithoutShippedData(), WithDataPath(dir))
if err == nil {
t.Fatalf("%s: New = nil error, want a load error", name)
}
if i == 0 {
first = err.Error()
continue
}
if err.Error() != first {
t.Fatalf("%s: New error varies between runs:\n %s\n %s", name, first, err.Error())
}
}
t.Logf("%s -> %s", name, first)
}
}
// TestNewErrorPathIsCanonical pins the node path a load error names: a choice arm
// adds no segment, and a bound {/path} reference is not a containment segment at
// all, so a bad reference is reported against the node that holds it.
func TestNewErrorPathIsCanonical(t *testing.T) {
cases := []struct {
name string
files map[string]string
want string
}{
{
"cycle inside a choice arm",
map[string]string{"cat": `{"format":"hi","x":"{/cat.x}"}`},
"fejkdata: reference cycle: cat.x -> /cat.x",
},
{
"bad reference reached through another reference",
map[string]string{"a": `"{/b}"`, "b": `"{/nope}"`},
`fejkdata: b: reference {/nope}: no entry "nope"`,
},
}
for _, c := range cases {
_, err := New(WithoutShippedData(), WithDataPath(writeData(t, c.files)))
if err == nil {
t.Errorf("%s: New = nil error", c.name)
continue
}
if err.Error() != c.want {
t.Errorf("%s:\n got %s\n want %s", c.name, err, c.want)
}
}
}
func TestReferencePathIsHeld(t *testing.T) {
dir := writeData(t, map[string]string{
"person": `[{"format":"{first} {last}","first":"Anna","last":"Andersson"},{"format":"{first} {last}","first":"Bo","last":"Berg"}]`,
"card": `"{/person.first} {/person.last}"`,
})
f := newGenerator(t, dir, WithSeed(3))
seen := map[string]bool{}
for i := 0; i < 50; i++ {
got := fake(t, f, "card")
if got != "Anna Andersson" && got != "Bo Berg" {
t.Fatalf("card = %q, want one person's first and last name", got)
}
seen[got] = true
}
if len(seen) != 2 {
t.Fatalf("card only ever rendered %v", seen)
}
}
func TestReferenceThroughChoiceNeedsEveryVariant(t *testing.T) {
_, err := New(WithoutShippedData(), WithDataPath(writeData(t, map[string]string{
"who": `[{"format":"{f}{h}","f":"1","h":"x"},{"format":"{g}{h}","g":"2","h":"y"}]`,
"card": `"{/who.f}"`,
})))
if err == nil || !strings.Contains(err.Error(), "not every variant") {
t.Fatalf("New = %v, want the missing variant named", err)
}
}
func TestBareReferenceDrawsEachTime(t *testing.T) {
dir := writeData(t, map[string]string{
"die": `["1","2","3","4","5","6"]`,
"roll": `"{/die} {/die}"`,
})
f := newGenerator(t, dir, WithSeed(1))
for i := 0; i < 50; i++ {
if got := fake(t, f, "roll"); got[0] != got[2] {
return
}
}
t.Fatal("two bare references always agreed; each should be its own draw")
}
func TestReferenceOverlapIsRejected(t *testing.T) {
for name, file := range map[string]string{
"head beside a path": `{"format":"{/cat.p} {/cat.p.first}","p":[{"format":"{first}","first":"A"},{"format":"{first}","first":"B"}]}`,
"sibling path beside a reference path": `{"format":"{p.first} {/cat.p.last}","p":[{"format":"{first}","first":"A","last":"1"},{"format":"{first}","first":"B","last":"2"}]}`,
} {
_, err := New(WithoutShippedData(), WithDataPath(writeData(t, map[string]string{"cat": file})))
if err == nil || !strings.Contains(err.Error(), "reads a path into") {
t.Errorf("%s: New = %v, want the overlap rejected", name, err)
}
}
}
func TestRelativeReferences(t *testing.T) {
dir := writeData(t, map[string]string{
"sv_SE/username": `"bob"`,
"sv_SE/email": `"{.username}@example.com"`,
"sv_SE/deep/card": `"{..username} via {/sv_SE.username}"`,
"top": `"{.sv_SE.username}"`,
})
f := newGenerator(t, dir, WithSeed(1))
for path, want := range map[string]string{
"sv_SE.email": "bob@example.com",
"sv_SE.deep.card": "bob via bob",
"top": "bob",
} {
if got := fake(t, f, path); got != want {
t.Errorf("%s = %q, want %q", path, got, want)
}
}
}
func TestRelativeAndRootSpellingsBindOneDraw(t *testing.T) {
dir := writeData(t, map[string]string{
"sv_SE/person": `[{"format":"{first} {last}","first":"Anna","last":"Andersson"},{"format":"{first} {last}","first":"Bo","last":"Berg"}]`,
"sv_SE/card": `"{.person.first} {/sv_SE.person.last}"`,
})
f := newGenerator(t, dir, WithSeed(3))
for i := 0; i < 50; i++ {
if got := fake(t, f, "sv_SE.card"); got != "Anna Andersson" && got != "Bo Berg" {
t.Fatalf("card = %q, want both spellings to read one person", got)
}
}
}
func TestReferenceSigilErrors(t *testing.T) {
for name, files := range map[string]map[string]string{
"no folder above the root": {"a": `"{..b}"`, "b": `"x"`},
"three dots": {"a": `"{...b}"`, "b": `"x"`},
"root sigil alone": {"a": `"{/}"`},
"dot alone": {"a": `"{.}"`},
"missing sibling": {"sv_SE/a": `"{.nope}"`},
"slash in a field name": {"a": `{"format":"{x}","x":"1","a/b":"2"}`},
} {
if _, err := New(WithoutShippedData(), WithDataPath(writeData(t, files))); err == nil {
t.Errorf("%s: New = nil error, want a reference error", name)
}
}
}
func TestSpellingsOfOneReferenceAreOneLevel(t *testing.T) {
person := `[{"format":"{first} {last}","first":"Ada","last":"Byron"},{"format":"{first} {last}","first":"Bo","last":"Ek"}]`
_, err := New(WithoutShippedData(), WithDataPath(writeData(t, map[string]string{
"sv_SE/person": person,
"sv_SE/mail": `"{.person} <{/sv_SE.person.first}>"`,
})))
if err == nil || !strings.Contains(err.Error(), "reads a path into") || !strings.Contains(err.Error(), "{.person}") {
t.Errorf("New = %v, want the bare spelling rejected beside the path spelling", err)
}
dir := writeData(t, map[string]string{
"sv_SE/word": `["alpha","beta","gamma"]`,
"sv_SE/loud": `"{/sv_SE.word} {uppercase(.word)}"`,
})
f := newGenerator(t, dir, WithSeed(2))
for i := 0; i < 50; i++ {
got := strings.Fields(fake(t, f, "sv_SE.loud"))
if len(got) != 2 || strings.ToUpper(got[0]) != got[1] {
t.Fatalf("loud = %q, want one draw under both spellings", got)
}
}
}
func TestSlashAfterAReferenceSigilIsRejected(t *testing.T) {
for name, files := range map[string]map[string]string{
"after ..": {"sv_SE/person": `"Ada"`, "sv_SE/deep/a": `"{../person}"`},
"after .": {"sv_SE/person": `"Ada"`, "sv_SE/a": `"{./person}"`},
} {
_, err := New(WithoutShippedData(), WithDataPath(writeData(t, files)))
if err == nil || !strings.Contains(err.Error(), "person}") || !strings.Contains(err.Error(), "write {") {
t.Errorf("%s: New = %v, want the slash rejected naming the spelling", name, err)
}
}
}