139 lines
5.2 KiB
Go
139 lines
5.2 KiB
Go
package fejkdata
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import (
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"slices"
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"strings"
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"testing"
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)
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func TestWalkPathStopsAtAMissingSegment(t *testing.T) {
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n := compiled(t, `{"format":"{a}","a":{"format":"{b}","b":"leaf"}}`)
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var seen []string
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walk := pathWalk{
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level: func(tm *template, rest []string) error { seen = append(seen, "level:"+rest[0]); return nil },
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leaf: func(n node) error { seen = append(seen, "leaf"); return nil },
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}
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if err := walkPath(n, []string{"a", "b"}, walk); err != nil {
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t.Fatalf("walkPath(a.b) = %v", err)
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}
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if want := []string{"level:a", "level:b", "leaf"}; !slices.Equal(seen, want) {
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t.Errorf("walk visited %v, want %v", seen, want)
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}
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seen = nil
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err := walkPath(n, []string{"a", "nope", "deeper"}, walk)
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if err == nil || !strings.Contains(err.Error(), `no field "nope"`) {
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t.Errorf("walkPath(a.nope.deeper) = %v, want the missing segment named", err)
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}
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if slices.Contains(seen, "leaf") {
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t.Errorf("walk reached a leaf past a missing segment: %v", seen)
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}
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}
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func TestWalkPathChoiceConsumesNoSegment(t *testing.T) {
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n := compiled(t, `[{"format":"{f}","f":"1"},{"format":"{f}","f":"2"}]`)
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var leaves []node
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err := walkPath(n, []string{"f"}, pathWalk{
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choice: func(c *choice, rest []string) ([]node, error) {
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if len(rest) != 1 || rest[0] != "f" {
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t.Errorf("choice saw rest %v, want [f]", rest)
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}
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return c.items, nil
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},
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leaf: func(n node) error { leaves = append(leaves, n); return nil },
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})
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if err != nil || len(leaves) != 2 {
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t.Fatalf("walkPath through a choice = %v, %d leaves, want both variants' f", err, len(leaves))
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}
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}
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func TestDeepDottedPath(t *testing.T) {
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// A 5-segment path descends through alternating object/array nodes; choices
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// on the path are single-variant, so it resolves deterministically.
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f := engine(1)
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f.categories = map[string]node{
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"deep": compiled(t, `{"format":"{a}","a":{"format":"{b}","b":{"format":"{c}","c":{"format":"{d}","d":"leaf"}}}}`),
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}
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if got, err := f.Fake("deep.a.b.c.d"); err != nil || got != "leaf" {
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t.Fatalf("Fake(deep.a.b.c.d) = %q, %v, want leaf", got, err)
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}
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// Rendering the whole tree resolves the same chain.
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if got, err := f.Fake("deep"); err != nil || got != "leaf" {
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t.Fatalf("Fake(deep) = %q, %v, want leaf", got, err)
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}
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}
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func TestDescendIntoStringErrors(t *testing.T) {
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f := engine(1)
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f.categories = map[string]node{"greeting": compiled(t, `"hej"`)}
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if _, err := f.Fake("greeting.extra"); err == nil || !strings.Contains(err.Error(), `no field "extra"`) {
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t.Fatalf("Fake(greeting.extra) = %v, want a no-field error", err)
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}
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}
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// TestPathThroughChoice pins the rule that keeps a dotted path from rendering on
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// one call and failing on the next: every variant must carry the rest of the path.
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func TestPathThroughChoice(t *testing.T) {
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dir := writeData(t, map[string]string{
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"every": `[{"format":"{f}","f":"1"},{"format":"{f}","f":"2"}]`,
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"notall": `[{"format":"{f}","f":"1"},"plain"]`,
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"some": `[{"format":"{f}","f":"1"},{"format":"{f}","f":"2","extra":"x"}]`,
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})
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f := newGenerator(t, dir, WithSeed(1))
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for i := 0; i < 200; i++ {
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if got := fake(t, f, "every.f"); got != "1" && got != "2" {
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t.Fatalf("every.f = %q, want 1 or 2", got)
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}
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}
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// A path only some variants carry is reported against what all of them carry.
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if _, err := f.Fake("some.extra"); err == nil || !strings.Contains(err.Error(), "all carry [f]") {
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t.Errorf("Fake(some.extra) = %v, want it to name what every variant carries", err)
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}
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var first string
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for i := 0; i < 200; i++ {
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_, err := f.Fake("notall.f")
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if err == nil {
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t.Fatal("notall.f = nil error, want the same failure every call")
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}
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if i == 0 {
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first = err.Error()
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} else if err.Error() != first {
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t.Fatalf("notall.f error varies between calls:\n %s\n %s", first, err.Error())
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}
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}
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}
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// TestPathKeyIsUnambiguous pins that the one shape which could collide cannot be
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// written: a field literally named "a.b" and a field "a" holding "b" would both
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// spell "a.b", so a dotted field name is rejected at New and a dot means a path
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// wherever it appears.
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func TestPathKeyIsUnambiguous(t *testing.T) {
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dir := writeData(t, map[string]string{
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"cat": `[{"format":"{a.b}","a.b":"1"},{"format":"{a}","a":{"format":"{b}","b":"2"}}]`,
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})
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_, err := New(WithoutShippedData(), WithDataPath(dir))
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if err == nil || !strings.Contains(err.Error(), `field "a.b" contains "."`) {
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t.Fatalf("New = %v, want the dotted field name rejected", err)
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}
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// The same data without the dotted key is fine, and the path resolves.
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f := newGenerator(t, writeData(t, map[string]string{
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"cat": `{"format":"{a.b}","a":{"format":"{b}","b":"2"}}`,
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}), WithSeed(1))
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if !slices.Contains(f.List(), "cat.a.b") {
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t.Error("List() omits cat.a.b, which the data carries")
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}
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if got := fake(t, f, "cat"); got != "2" {
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t.Fatalf("cat = %q, want 2", got)
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}
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}
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// TestMissingFieldNamesItself keeps the precise diagnosis for the ordinary typo: a
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// single-variant choice always picks the same item, so it needs no every-variant
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// guard and the error can name the field that is missing.
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func TestMissingFieldNamesItself(t *testing.T) {
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f := newGenerator(t, "data/sv_SE", WithSeed(1))
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_, err := f.Fake("person.typo")
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if err == nil || !strings.Contains(err.Error(), `no field "typo"`) {
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t.Errorf("Fake(person.typo) = %v, want it to name the missing field", err)
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}
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}
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