Files
sanderling/internal/verifier/verifier_test.go
T

1345 lines
44 KiB
Go

package verifier
import (
"encoding/json"
"errors"
"os"
"path/filepath"
"slices"
"strings"
"testing"
"github.com/dop251/goja"
"github.com/priyanshujain/sanderling/internal/bundler"
"github.com/priyanshujain/sanderling/internal/hierarchy"
"github.com/priyanshujain/sanderling/internal/ltl"
)
func newVerifier(t *testing.T, options ...Option) *Verifier {
t.Helper()
verifier, err := New(options...)
if err != nil {
t.Fatal(err)
}
return verifier
}
func mustLoad(t *testing.T, verifier *Verifier, source string) {
t.Helper()
if err := verifier.Load(source); err != nil {
t.Fatalf("Load: %v", err)
}
}
// bundleActionSpec bundles an inline TS spec authored against @sanderling/spec
// together with the goja runtime entry, so loading it installs
// __sanderlingNextAction__ (the shared picker). Action targets must be resolved
// ax elements (carrying x/y) or builtins; raw selector strings no longer
// resolve to coordinates in the unified contract.
func bundleActionSpec(t *testing.T, specSource string) string {
t.Helper()
dir := t.TempDir()
specPath := filepath.Join(dir, "spec.ts")
if err := os.WriteFile(specPath, []byte(specSource), 0o600); err != nil {
t.Fatal(err)
}
apiPath, err := filepath.Abs("../../pkg/spec/src/index.ts")
if err != nil {
t.Fatal(err)
}
runtimePath, err := filepath.Abs("../../pkg/spec/src/goja-runtime.ts")
if err != nil {
t.Fatal(err)
}
bundle, err := bundler.Bundle(bundler.Options{
EntryFile: specPath,
RuntimeFile: runtimePath,
Aliases: map[string]string{"@sanderling/spec": apiPath},
})
if err != nil {
t.Fatal(err)
}
return string(bundle.JavaScript)
}
// loadActionSpec bundles and loads an inline authored spec into the verifier.
func loadActionSpec(t *testing.T, verifier *Verifier, specSource string) {
t.Helper()
mustLoad(t, verifier, bundleActionSpec(t, specSource))
}
const helloSpec = `
const screen = __sanderling__.extract(state => state.snapshots.screen ?? "");
const balance = __sanderling__.extract(state => state.snapshots["ledger.balance"] ?? 0);
globalThis.screen = screen;
globalThis.balance = balance;
globalThis.properties = {
balanceNonNegative: __sanderling__.always(() => balance.current >= 0),
};
`
func TestLoad_ExposesRuntimeBindings(t *testing.T) {
verifier := newVerifier(t)
mustLoad(t, verifier, helloSpec)
if len(verifier.extractors) != 2 {
t.Errorf("extractors registered: got %d, want 2", len(verifier.extractors))
}
if len(verifier.formulas) != 1 {
t.Errorf("formulas registered: got %d, want 1", len(verifier.formulas))
}
if _, ok := verifier.properties["balanceNonNegative"]; !ok {
t.Errorf("balanceNonNegative property missing: %+v", verifier.properties)
}
}
func TestPushSnapshot_UpdatesExtractorCurrentAndPrevious(t *testing.T) {
verifier := newVerifier(t)
mustLoad(t, verifier, helloSpec)
if err := verifier.PushSnapshot(SnapshotInput{Snapshots: Snapshots{
"screen": json.RawMessage(`"customer_ledger"`),
"ledger.balance": json.RawMessage(`1500`),
}}); err != nil {
t.Fatal(err)
}
screenValue := verifier.runtime.GlobalObject().Get("screen").ToObject(verifier.runtime)
if screenValue.Get("current").String() != "customer_ledger" {
t.Errorf("screen.current wrong: %v", screenValue.Get("current"))
}
balanceValue := verifier.runtime.GlobalObject().Get("balance").ToObject(verifier.runtime)
if balanceValue.Get("current").ToInteger() != 1500 {
t.Errorf("balance.current wrong: %v", balanceValue.Get("current"))
}
// Push again: previous should mirror the prior current.
if err := verifier.PushSnapshot(SnapshotInput{Snapshots: Snapshots{"ledger.balance": json.RawMessage(`2000`)}}); err != nil {
t.Fatal(err)
}
balanceValue = verifier.runtime.GlobalObject().Get("balance").ToObject(verifier.runtime)
if balanceValue.Get("previous").ToInteger() != 1500 {
t.Errorf("balance.previous wrong: %v", balanceValue.Get("previous"))
}
if balanceValue.Get("current").ToInteger() != 2000 {
t.Errorf("balance.current wrong: %v", balanceValue.Get("current"))
}
}
func TestEvaluateProperties_HoldsThenViolates(t *testing.T) {
verifier := newVerifier(t)
mustLoad(t, verifier, helloSpec)
cases := []struct {
balance int
want ltl.Verdict
}{
{1500, ltl.VerdictHolds},
{0, ltl.VerdictHolds},
{-1, ltl.VerdictViolated},
{500, ltl.VerdictViolated}, // sticky
}
for index, testCase := range cases {
raw, _ := json.Marshal(testCase.balance)
if err := verifier.PushSnapshot(SnapshotInput{Snapshots: Snapshots{"ledger.balance": raw}}); err != nil {
t.Fatal(err)
}
verdicts := verifier.EvaluateProperties()
if got := verdicts["balanceNonNegative"]; got != testCase.want {
t.Errorf("step %d (balance=%d): got %v, want %v", index, testCase.balance, got, testCase.want)
}
}
}
func TestNewlyViolatedProperties_OnsetOnly(t *testing.T) {
verifier := newVerifier(t)
mustLoad(t, verifier, helloSpec)
// Balance trajectory: holds, holds, violates, stays violated, stays violated.
// Onset must appear only on step 3 even though the residual stays false
// through steps 4 and 5 (LTL `always` sticky semantics).
balances := []int{1500, 1500, -1, 500, 500}
for index, balance := range balances {
raw, _ := json.Marshal(balance)
if err := verifier.PushSnapshot(SnapshotInput{Snapshots: Snapshots{"ledger.balance": raw}}); err != nil {
t.Fatal(err)
}
_ = verifier.EvaluateProperties()
got := verifier.NewlyViolatedProperties()
step := index + 1
if step == 3 {
want := []string{"balanceNonNegative"}
if !slices.Equal(got, want) {
t.Errorf("step %d (onset): got %v, want %v", step, got, want)
}
} else if len(got) != 0 {
t.Errorf("step %d: expected empty onset set, got %v", step, got)
}
}
}
func TestNewlyViolatedProperties_FirstStepViolation(t *testing.T) {
const spec = `
globalThis.properties = {
alwaysFalse: __sanderling__.always(() => false),
};
`
verifier := newVerifier(t)
mustLoad(t, verifier, spec)
for step := 1; step <= 3; step++ {
if err := verifier.PushSnapshot(SnapshotInput{Snapshots: Snapshots{}}); err != nil {
t.Fatal(err)
}
_ = verifier.EvaluateProperties()
got := verifier.NewlyViolatedProperties()
if step == 1 {
want := []string{"alwaysFalse"}
if !slices.Equal(got, want) {
t.Errorf("step 1 (onset): got %v, want %v", got, want)
}
} else if len(got) != 0 {
t.Errorf("step %d: expected empty onset set after first-step violation, got %v", step, got)
}
}
}
func TestNewlyViolatedProperties_MultipleProperties(t *testing.T) {
const spec = `
const a = __sanderling__.extract(state => state.snapshots["a"] ?? 0);
const b = __sanderling__.extract(state => state.snapshots["b"] ?? 0);
globalThis.properties = {
propA: __sanderling__.always(() => a.current >= 0),
propB: __sanderling__.always(() => b.current >= 0),
};
`
verifier := newVerifier(t)
mustLoad(t, verifier, spec)
// propA violates at step 2, propB violates at step 4. Each must surface
// only on its own onset step.
aValues := []int{1, -1, -1, -1}
bValues := []int{1, 1, 1, -1}
expectOnset := map[int][]string{
2: {"propA"},
4: {"propB"},
}
for index := range aValues {
aRaw, _ := json.Marshal(aValues[index])
bRaw, _ := json.Marshal(bValues[index])
if err := verifier.PushSnapshot(SnapshotInput{Snapshots: Snapshots{"a": aRaw, "b": bRaw}}); err != nil {
t.Fatal(err)
}
_ = verifier.EvaluateProperties()
got := verifier.NewlyViolatedProperties()
step := index + 1
want := expectOnset[step]
if !slices.Equal(got, want) {
t.Errorf("step %d: got %v, want %v", step, got, want)
}
}
}
func TestNewlyViolatedProperties_DeterministicOrder(t *testing.T) {
const spec = `
globalThis.properties = {
zebra: __sanderling__.always(() => false),
apple: __sanderling__.always(() => false),
mango: __sanderling__.always(() => false),
};
`
verifier := newVerifier(t)
mustLoad(t, verifier, spec)
if err := verifier.PushSnapshot(SnapshotInput{Snapshots: Snapshots{}}); err != nil {
t.Fatal(err)
}
_ = verifier.EvaluateProperties()
got := verifier.NewlyViolatedProperties()
want := []string{"apple", "mango", "zebra"}
if !slices.Equal(got, want) {
t.Errorf("onset order: got %v, want %v (sorted lexicographically)", got, want)
}
}
func TestNextAction_FromActionsGenerator(t *testing.T) {
const treeJSON = `{
"attributes": {"resource-id": "root", "bounds": "[0,0,100,100]"},
"children": [
{"attributes": {"resource-id": "home_button", "bounds": "[0,40,100,80]"}, "clickable": true, "enabled": true, "children": []}
]
}`
verifier := newVerifier(t)
loadActionSpec(t, verifier, `
import { actions, Tap } from "@sanderling/spec";
globalThis.actions = actions(() => {
const home = state.ax.find("id:home_button");
return home ? [Tap({ on: home })] : [];
});
`)
tree, err := hierarchy.Parse(treeJSON)
if err != nil {
t.Fatal(err)
}
_ = verifier.PushSnapshot(SnapshotInput{Snapshots: Snapshots{}, Tree: tree})
action, err := verifier.NextAction()
if err != nil {
t.Fatal(err)
}
if action.Kind != ActionKindTap {
t.Errorf("kind: got %v, want Tap", action.Kind)
}
if action.On != "id:home_button" {
t.Errorf("selector: got %q, want id:home_button", action.On)
}
}
func TestNextAction_WeightedSelectsByWeight(t *testing.T) {
const treeJSON = `{
"attributes": {"resource-id": "root", "bounds": "[0,0,100,100]"},
"children": [
{"attributes": {"resource-id": "home", "bounds": "[0,0,100,40]"}, "clickable": true, "enabled": true, "children": []},
{"attributes": {"resource-id": "away", "bounds": "[0,40,100,80]"}, "clickable": true, "enabled": true, "children": []}
]
}`
verifier := newVerifier(t, WithSeed(42))
loadActionSpec(t, verifier, `
import { actions, weighted, Tap } from "@sanderling/spec";
const tapHome = actions(() => {
const home = state.ax.find("id:home");
return home ? [Tap({ on: home })] : [];
});
const tapAway = actions(() => {
const away = state.ax.find("id:away");
return away ? [Tap({ on: away })] : [];
});
globalThis.actions = weighted([1, tapHome], [99, tapAway]);
`)
tree, err := hierarchy.Parse(treeJSON)
if err != nil {
t.Fatal(err)
}
_ = verifier.PushSnapshot(SnapshotInput{Snapshots: Snapshots{}, Tree: tree})
awayCount := 0
homeCount := 0
for range 200 {
action, err := verifier.NextAction()
if err != nil {
t.Fatal(err)
}
switch action.On {
case "id:home":
homeCount++
case "id:away":
awayCount++
}
}
// Weights are 99:1, so away must dominate by a wide margin. Requiring a 5x
// skew (rather than a bare >) keeps the assertion robust to harmless picker
// reshuffles while still failing if the weight is ignored or inverted.
if awayCount <= 5*homeCount {
t.Errorf("expected away to outweigh home by >5x (weights 99:1), got home=%d away=%d", homeCount, awayCount)
}
}
func TestNextAction_EmptyGeneratorReturnsErrNoAction(t *testing.T) {
verifier := newVerifier(t)
loadActionSpec(t, verifier, `
import { actions } from "@sanderling/spec";
globalThis.actions = actions(() => []);
`)
_ = verifier.PushSnapshot(SnapshotInput{Snapshots: Snapshots{}})
_, err := verifier.NextAction()
if !errors.Is(err, ErrNoAction) {
t.Errorf("expected ErrNoAction, got %v", err)
}
}
// setupTree carries the three targets the setup-precedence tests resolve.
const setupTree = `{
"attributes": {"resource-id": "root", "bounds": "[0,0,100,120]"},
"children": [
{"attributes": {"resource-id": "setup", "bounds": "[0,0,100,40]"}, "clickable": true, "enabled": true, "children": []},
{"attributes": {"resource-id": "main", "bounds": "[0,40,100,80]"}, "clickable": true, "enabled": true, "children": []},
{"attributes": {"resource-id": "login", "bounds": "[0,80,100,120]"}, "clickable": true, "enabled": true, "children": []}
]
}`
func TestNextAction_SetupTakesPrecedenceWhenYielding(t *testing.T) {
verifier := newVerifier(t)
loadActionSpec(t, verifier, `
import { actions, Tap } from "@sanderling/spec";
globalThis.setup = actions(() => {
const target = state.ax.find("id:setup");
return target ? [Tap({ on: target })] : [];
});
globalThis.actions = actions(() => {
const target = state.ax.find("id:main");
return target ? [Tap({ on: target })] : [];
});
`)
tree, err := hierarchy.Parse(setupTree)
if err != nil {
t.Fatal(err)
}
_ = verifier.PushSnapshot(SnapshotInput{Snapshots: Snapshots{}, Tree: tree})
action, err := verifier.NextAction()
if err != nil {
t.Fatal(err)
}
if action.On != "id:setup" {
t.Errorf("setup precedence: got %q, want id:setup", action.On)
}
}
func TestNextAction_FallsThroughToActionsWhenSetupEmpty(t *testing.T) {
verifier := newVerifier(t)
loadActionSpec(t, verifier, `
import { actions, Tap } from "@sanderling/spec";
globalThis.setup = actions(() => []);
globalThis.actions = actions(() => {
const target = state.ax.find("id:main");
return target ? [Tap({ on: target })] : [];
});
`)
tree, err := hierarchy.Parse(setupTree)
if err != nil {
t.Fatal(err)
}
_ = verifier.PushSnapshot(SnapshotInput{Snapshots: Snapshots{}, Tree: tree})
action, err := verifier.NextAction()
if err != nil {
t.Fatal(err)
}
if action.On != "id:main" {
t.Errorf("fallthrough: got %q, want id:main", action.On)
}
}
func TestNextAction_SetupReengagesAfterRegression(t *testing.T) {
verifier := newVerifier(t)
loadActionSpec(t, verifier, `
import { actions, extract, Tap } from "@sanderling/spec";
const loggedIn = extract(state => state.snapshots["loggedIn"] === true);
globalThis.setup = actions(() => {
if (loggedIn.current) return [];
const target = state.ax.find("id:login");
return target ? [Tap({ on: target })] : [];
});
globalThis.actions = actions(() => {
const target = state.ax.find("id:main");
return target ? [Tap({ on: target })] : [];
});
`)
tree, err := hierarchy.Parse(setupTree)
if err != nil {
t.Fatal(err)
}
push := func(loggedIn bool) {
raw := json.RawMessage(`false`)
if loggedIn {
raw = json.RawMessage(`true`)
}
if err := verifier.PushSnapshot(SnapshotInput{Snapshots: Snapshots{"loggedIn": raw}, Tree: tree}); err != nil {
t.Fatal(err)
}
}
push(false)
action, err := verifier.NextAction()
if err != nil {
t.Fatal(err)
}
if action.On != "id:login" {
t.Fatalf("step 1 (logged out): got %q, want id:login", action.On)
}
push(true)
action, err = verifier.NextAction()
if err != nil {
t.Fatal(err)
}
if action.On != "id:main" {
t.Fatalf("step 2 (logged in): got %q, want id:main", action.On)
}
push(false)
action, err = verifier.NextAction()
if err != nil {
t.Fatal(err)
}
if action.On != "id:login" {
t.Fatalf("step 3 (regressed): got %q, want id:login", action.On)
}
}
func TestNextAction_NoSetupRegistered(t *testing.T) {
verifier := newVerifier(t)
loadActionSpec(t, verifier, `
import { actions, Tap } from "@sanderling/spec";
globalThis.actions = actions(() => {
const target = state.ax.find("id:main");
return target ? [Tap({ on: target })] : [];
});
`)
tree, err := hierarchy.Parse(setupTree)
if err != nil {
t.Fatal(err)
}
_ = verifier.PushSnapshot(SnapshotInput{Snapshots: Snapshots{}, Tree: tree})
action, err := verifier.NextAction()
if err != nil {
t.Fatal(err)
}
if action.On != "id:main" {
t.Errorf("got %q, want id:main", action.On)
}
}
// TestDoubleTapsBuiltin_TargetsClickable verifies the doubleTaps builtin emits
// a DoubleTap action targeting a clickable, enabled element's center.
func TestDoubleTapsBuiltin_TargetsClickable(t *testing.T) {
const treeJSON = `{
"attributes": {"resource-id": "root", "bounds": "[0,0,100,100]"},
"children": [
{"attributes": {"testTag": "SubmitButton", "bounds": "[0,40,100,80]"}, "clickable": true, "enabled": true, "children": []}
]
}`
verifier := newVerifier(t)
loadActionSpec(t, verifier, `
import { doubleTaps } from "@sanderling/spec";
globalThis.actions = doubleTaps;
`)
tree, err := hierarchy.Parse(treeJSON)
if err != nil {
t.Fatal(err)
}
if err := verifier.PushSnapshot(SnapshotInput{Snapshots: Snapshots{}, Tree: tree}); err != nil {
t.Fatal(err)
}
action, err := verifier.NextAction()
if err != nil {
t.Fatal(err)
}
if action.Kind != ActionKindDoubleTap {
t.Fatalf("kind = %v, want DoubleTap", action.Kind)
}
if action.X != 50 || action.Y != 60 {
t.Errorf("coords = (%d,%d), want (50,60) at SubmitButton center", action.X, action.Y)
}
// Action-gated properties read lastAction.on to tell which target the
// chooser hit. An empty On reduces those properties to vacuously-true and
// they never fire on the real tap event.
if action.On == "" {
t.Fatal("On must be populated so action-gated properties can identify the target")
}
if !strings.Contains(action.On, "SubmitButton") {
t.Errorf("On = %q, want a selector containing SubmitButton", action.On)
}
resolved := tree.Find(action.On)
if resolved == nil {
t.Fatalf("On = %q does not resolve in the same tree", action.On)
}
rx, ry := resolved.Bounds.Center()
if rx != action.X || ry != action.Y {
t.Errorf("On %q resolves to (%d,%d), want the picked element's center (%d,%d)",
action.On, rx, ry, action.X, action.Y)
}
}
func TestDoubleTap_RoundTrip(t *testing.T) {
const treeJSON = `{
"attributes": {"resource-id": "root", "bounds": "[0,0,100,100]"},
"children": [
{"attributes": {"resource-id": "save", "bounds": "[0,0,100,40]"}, "clickable": true, "enabled": true, "children": []}
]
}`
verifier := newVerifier(t)
loadActionSpec(t, verifier, `
import { actions, DoubleTap } from "@sanderling/spec";
globalThis.actions = actions(() => {
const save = state.ax.find("id:save");
return save ? [DoubleTap({ on: save })] : [];
});
`)
tree, err := hierarchy.Parse(treeJSON)
if err != nil {
t.Fatal(err)
}
_ = verifier.PushSnapshot(SnapshotInput{Snapshots: Snapshots{}, Tree: tree})
action, err := verifier.NextAction()
if err != nil {
t.Fatal(err)
}
if action.Kind != ActionKindDoubleTap {
t.Errorf("kind: got %v, want DoubleTap", action.Kind)
}
if action.On != "id:save" {
t.Errorf("selector: got %q, want id:save", action.On)
}
}
func TestInputText_RoundTrip(t *testing.T) {
const treeJSON = `{
"attributes": {"resource-id": "root", "bounds": "[0,0,100,100]"},
"children": [
{"attributes": {"resource-id": "phone", "bounds": "[0,0,100,40]"}, "editable": true, "enabled": true, "children": []}
]
}`
verifier := newVerifier(t)
loadActionSpec(t, verifier, `
import { actions, InputText } from "@sanderling/spec";
globalThis.actions = actions(() => {
const phone = state.ax.find("id:phone");
return phone ? [InputText({ into: phone, text: "+919876543210" })] : [];
});
`)
tree, err := hierarchy.Parse(treeJSON)
if err != nil {
t.Fatal(err)
}
_ = verifier.PushSnapshot(SnapshotInput{Snapshots: Snapshots{}, Tree: tree})
action, err := verifier.NextAction()
if err != nil {
t.Fatal(err)
}
if action.Kind != ActionKindInputText {
t.Errorf("kind: %v", action.Kind)
}
if action.On != "id:phone" || action.Text != "+919876543210" {
t.Errorf("payload wrong: %+v", action)
}
}
// TestTypingBuiltin_TargetsEditableField verifies the typing generator emits an
// InputText action aimed at an editable, enabled element's center and fills it
// with a corpus value, ignoring clickable-but-not-editable elements.
func TestTypingBuiltin_TargetsEditableField(t *testing.T) {
const treeJSON = `{
"attributes": {"resource-id": "root", "bounds": "[0,0,100,100]"},
"children": [
{"attributes": {"testTag": "EmailField", "bounds": "[0,0,100,40]"}, "editable": true, "enabled": true, "children": []},
{"attributes": {"testTag": "SubmitButton", "bounds": "[0,40,100,80]"}, "clickable": true, "enabled": true, "children": []}
]
}`
verifier := newVerifier(t)
loadActionSpec(t, verifier, `
import { typing } from "@sanderling/spec";
globalThis.actions = typing;
`)
tree, err := hierarchy.Parse(treeJSON)
if err != nil {
t.Fatal(err)
}
if err := verifier.PushSnapshot(SnapshotInput{Snapshots: Snapshots{}, Tree: tree}); err != nil {
t.Fatal(err)
}
action, err := verifier.NextAction()
if err != nil {
t.Fatal(err)
}
if action.Kind != ActionKindInputText {
t.Fatalf("kind = %v, want InputText", action.Kind)
}
if action.X != 50 || action.Y != 20 {
t.Errorf("coords = (%d,%d), want (50,20) at EmailField center", action.X, action.Y)
}
// The typing builtin draws from corpus.ts INPUT_CORPUS; the single editable
// field means any draw lands here, so the text must be a corpus member.
if !slices.Contains(testInputCorpus, action.Text) {
t.Errorf("text %q not drawn from the input corpus", action.Text)
}
}
// testInputCorpus mirrors pkg/spec/src/corpus.ts INPUT_CORPUS so the typing
// builtin's emitted text can be asserted to come from the shared pool.
var testInputCorpus = []string{
"", "a", strings.Repeat("a", 4096), "🙂🔥💸", " ", "\t\n", "-1",
"999999999999999999999", "0.0000001", "1e10", "'; DROP TABLE--",
"<script>alert(1)</script>", "../../etc/passwd", "%s%n", "NaN",
}
// TestTypingBuiltin_NoEditableYieldsErrNoAction verifies the typing generator
// declines (ErrNoAction) when no editable element is present, so a weighted
// layer falls through to another generator.
func TestTypingBuiltin_NoEditableYieldsErrNoAction(t *testing.T) {
const treeJSON = `{
"attributes": {"resource-id": "root", "bounds": "[0,0,100,100]"},
"children": [
{"attributes": {"testTag": "SubmitButton", "bounds": "[0,0,100,40]"}, "clickable": true, "enabled": true, "children": []}
]
}`
verifier := newVerifier(t)
loadActionSpec(t, verifier, `
import { typing } from "@sanderling/spec";
globalThis.actions = typing;
`)
tree, err := hierarchy.Parse(treeJSON)
if err != nil {
t.Fatal(err)
}
if err := verifier.PushSnapshot(SnapshotInput{Snapshots: Snapshots{}, Tree: tree}); err != nil {
t.Fatal(err)
}
if _, err := verifier.NextAction(); !errors.Is(err, ErrNoAction) {
t.Fatalf("err = %v, want ErrNoAction", err)
}
}
func TestPushSnapshot_FeedsSnapshotsToExtractorState(t *testing.T) {
verifier := newVerifier(t)
mustLoad(t, verifier, `
globalThis.captured = __sanderling__.extract(state => state.snapshots["k"]);
`)
if err := verifier.PushSnapshot(SnapshotInput{Snapshots: Snapshots{"k": json.RawMessage(`"hello"`)}}); err != nil {
t.Fatal(err)
}
value := verifier.runtime.GlobalObject().Get("captured").ToObject(verifier.runtime).Get("current")
if value.String() != "hello" {
t.Errorf("snapshot value not propagated: %v", value)
}
}
func TestLoad_PropagatesSyntaxError(t *testing.T) {
verifier := newVerifier(t)
err := verifier.Load(`const x = ;`)
if err == nil || !strings.Contains(err.Error(), "run spec") {
t.Errorf("expected run-spec error, got %v", err)
}
}
func TestEvaluateProperties_ThrowingPredicateDoesNotPanic(t *testing.T) {
const spec = `
globalThis.properties = {
broken: __sanderling__.always(() => { throw new Error("bad predicate"); }),
};
`
verifier := newVerifier(t)
mustLoad(t, verifier, spec)
if err := verifier.PushSnapshot(SnapshotInput{Snapshots: Snapshots{}}); err != nil {
t.Fatal(err)
}
verdicts := verifier.EvaluateProperties()
if got := verdicts["broken"]; got != ltl.VerdictViolated {
t.Errorf("verdict: got %v, want %v", got, ltl.VerdictViolated)
}
witness := verifier.Witness("broken")
if witness == nil {
t.Fatal("Witness: got nil, want non-nil")
}
if !witness.IsError {
t.Errorf("Witness.IsError = false, want true for a thrown predicate")
}
if !strings.Contains(witness.Reason, "bad predicate") {
t.Errorf("Witness.Reason: got %q, want to contain %q", witness.Reason, "bad predicate")
}
}
// An unbounded eventually that never fires stays pending during the run and is
// only reported by Finalize at run end. The witness records why it failed.
func TestFinalize_UnmetEventuallyReportedWithWitness(t *testing.T) {
const spec = `
globalThis.flag = __sanderling__.extract(state => state.snapshots["flag"] ?? false, "flag");
globalThis.properties = {
flagEventuallyTrue: __sanderling__.always(__sanderling__.eventually(() => flag.current === true)),
};
`
verifier := newVerifier(t)
mustLoad(t, verifier, spec)
for step := 0; step < 3; step++ {
if err := verifier.PushSnapshot(SnapshotInput{Snapshots: Snapshots{"flag": json.RawMessage(`false`)}}); err != nil {
t.Fatal(err)
}
verdicts := verifier.EvaluateProperties()
if got := verdicts["flagEventuallyTrue"]; got != ltl.VerdictPending {
t.Fatalf("step %d: verdict = %v, want pending", step, got)
}
}
ended := verifier.Finalize()
if !slices.Contains(ended, "flagEventuallyTrue") {
t.Fatalf("Finalize ended = %v, want to contain flagEventuallyTrue", ended)
}
witness := verifier.Witness("flagEventuallyTrue")
if witness == nil {
t.Fatal("Witness = nil after Finalize, want non-nil")
}
if !strings.Contains(witness.Reason, "eventually") {
t.Errorf("Witness.Reason = %q, want to mention eventually", witness.Reason)
}
}
// A next obligation spawned at step k and checked against step k+1's state is
// attributed to step k, the step that caused it. StepIndex from SnapshotInput
// labels the evaluator observations so the witness carries runner step numbers.
func TestEvaluateProperties_NextViolationCarriesOriginStepIndex(t *testing.T) {
const spec = `
globalThis.flag = __sanderling__.extract(state => state.snapshots["flag"] ?? false, "flag");
globalThis.properties = {
flagStaysTrue: __sanderling__.always(__sanderling__.next(() => flag.current === true)),
};
`
verifier := newVerifier(t)
mustLoad(t, verifier, spec)
push := func(stepIndex int, flag string) map[string]ltl.Verdict {
t.Helper()
if err := verifier.PushSnapshot(SnapshotInput{
Snapshots: Snapshots{"flag": json.RawMessage(flag)},
StepIndex: stepIndex,
}); err != nil {
t.Fatal(err)
}
return verifier.EvaluateProperties()
}
push(7, `true`)
push(8, `true`)
verdicts := push(9, `false`)
if got := verdicts["flagStaysTrue"]; got != ltl.VerdictViolated {
t.Fatalf("step 9: verdict = %v, want violated", got)
}
witness := verifier.Witness("flagStaysTrue")
if witness == nil {
t.Fatal("Witness = nil, want non-nil")
}
if witness.Step != 8 {
t.Errorf("Witness.Step = %d, want 8 (the step that spawned the next obligation)", witness.Step)
}
}
func TestLoad_AcceptsSpecWithoutPropertiesOrActions(t *testing.T) {
verifier := newVerifier(t)
if err := verifier.Load(`const noop = 1;`); err != nil {
t.Fatal(err)
}
if got := verifier.EvaluateProperties(); len(got) != 0 {
t.Errorf("no properties expected, got %v", got)
}
if _, err := verifier.NextAction(); !errors.Is(err, ErrNoAction) {
t.Errorf("expected ErrNoAction, got %v", err)
}
}
// TestSelectorPath_ScopedDescent ensures the JS-side `find([{...}, {...}])`
// shape walks each segment scoped under the previous match.
func TestSelectorPath_ScopedDescent(t *testing.T) {
const treeJSON = `{
"attributes": {"resource-id": "rootView", "bounds": "[0,0,1080,2340]"},
"children": [
{
"attributes": {"testTag": "HomeScreen", "bounds": "[0,0,540,2340]"},
"children": [
{
"attributes": {"testTag": "AccountCard", "bounds": "[0,0,540,200]"},
"children": [
{"attributes": {"testTag": "AccountName", "text": "Checking", "bounds": "[10,10,200,40]"}, "children": []}
]
}
]
},
{
"attributes": {"testTag": "LedgerScreen", "bounds": "[540,0,1080,2340]"},
"children": [
{"attributes": {"testTag": "AccountName", "text": "Other", "bounds": "[600,10,800,40]"}, "children": []}
]
}
]
}`
verifier := newVerifier(t)
mustLoad(t, verifier, `
globalThis.found = __sanderling__.extract(state =>
state.ax.find([{ testTag: "HomeScreen" }, { testTag: "AccountCard" }, { testTag: "AccountName" }])
);
globalThis.foundUnreachable = __sanderling__.extract(state =>
state.ax.find([{ testTag: "LedgerScreen" }, { testTag: "AccountCard" }])
);
globalThis.allInHome = __sanderling__.extract(state =>
state.ax.findAll([{ testTag: "HomeScreen" }, { testTag: "AccountName" }])
);
`)
tree, err := hierarchy.Parse(treeJSON)
if err != nil {
t.Fatal(err)
}
if err := verifier.PushSnapshot(SnapshotInput{Snapshots: Snapshots{}, Tree: tree}); err != nil {
t.Fatal(err)
}
found := verifier.runtime.GlobalObject().Get("found").ToObject(verifier.runtime).Get("current")
if found == nil || goja.IsUndefined(found) {
t.Fatal("expected path lookup to find AccountName under HomeScreen > AccountCard")
}
text := found.ToObject(verifier.runtime).Get("text")
if text.String() != "Checking" {
t.Fatalf("text = %q, want Checking", text.String())
}
unreachable := verifier.runtime.GlobalObject().Get("foundUnreachable").ToObject(verifier.runtime).Get("current")
if !goja.IsUndefined(unreachable) {
t.Fatalf("AccountCard is not under LedgerScreen, expected undefined, got %v", unreachable)
}
allInHome := verifier.runtime.GlobalObject().Get("allInHome").ToObject(verifier.runtime).Get("current")
allObject := allInHome.ToObject(verifier.runtime)
length := allObject.Get("length").ToInteger()
if length != 1 {
t.Fatalf("findAll path length = %d, want 1 (Checking only, not Other in LedgerScreen)", length)
}
}
// TestSelector_BooleanValue ensures a native JS boolean in the selector
// (e.g. `find({ focused: true })`) matches the "true"/"false" string
// serialization the hierarchy uses for boolean state attributes.
func TestSelector_BooleanValue(t *testing.T) {
const treeJSON = `{
"attributes": {"resource-id": "root", "bounds": "[0,0,100,100]"},
"children": [
{"attributes": {"testTag": "EmailField", "bounds": "[0,0,100,40]"}, "focused": true, "children": []},
{"attributes": {"testTag": "PasswordField", "bounds": "[0,40,100,80]"}, "focused": false, "children": []}
]
}`
verifier := newVerifier(t)
mustLoad(t, verifier, `
globalThis.focusedTag = __sanderling__.extract(state =>
state.ax.find({ focused: true })?.attrs?.testTag ?? null
);
`)
tree, err := hierarchy.Parse(treeJSON)
if err != nil {
t.Fatal(err)
}
if err := verifier.PushSnapshot(SnapshotInput{Snapshots: Snapshots{}, Tree: tree}); err != nil {
t.Fatal(err)
}
got := verifier.runtime.GlobalObject().Get("focusedTag").ToObject(verifier.runtime).Get("current")
if got == nil || got.String() != "EmailField" {
t.Fatalf("expected EmailField, got %v", got)
}
}
// TestFrom_SeededReplayIsDeterministic guarantees `from()` over a per-step
// dynamic array picks the same element under the same seed across runs. The
// folio spec relies on this to replace Math.random() in account-card taps.
func TestFrom_SeededReplayIsDeterministic(t *testing.T) {
const treeJSON = `{
"attributes": {"resource-id": "root", "bounds": "[0,0,100,200]"},
"children": [
{"attributes": {"resource-id": "card_a", "bounds": "[0,0,100,40]"}, "clickable": true, "enabled": true, "children": []},
{"attributes": {"resource-id": "card_b", "bounds": "[0,40,100,80]"}, "clickable": true, "enabled": true, "children": []},
{"attributes": {"resource-id": "card_c", "bounds": "[0,80,100,120]"}, "clickable": true, "enabled": true, "children": []},
{"attributes": {"resource-id": "card_d", "bounds": "[0,120,100,160]"}, "clickable": true, "enabled": true, "children": []}
]
}`
tree, err := hierarchy.Parse(treeJSON)
if err != nil {
t.Fatal(err)
}
pickedSequence := func(seed uint64) []string {
verifier := newVerifier(t, WithSeed(seed))
loadActionSpec(t, verifier, `
import { actions, from, Tap } from "@sanderling/spec";
const cards = ["id:card_a", "id:card_b", "id:card_c", "id:card_d"];
globalThis.actions = actions(() => {
const target = state.ax.find(from(cards).generate());
return target ? [Tap({ on: target })] : [];
});
`)
_ = verifier.PushSnapshot(SnapshotInput{Snapshots: Snapshots{}, Tree: tree})
var picks []string
for range 20 {
action, err := verifier.NextAction()
if err != nil {
t.Fatal(err)
}
picks = append(picks, action.On)
}
return picks
}
first := pickedSequence(1234)
second := pickedSequence(1234)
for i := range first {
if first[i] != second[i] {
t.Fatalf("step %d: %q != %q (replay not deterministic)", i, first[i], second[i])
}
}
other := pickedSequence(5678)
identical := true
for i := range first {
if first[i] != other[i] {
identical = false
break
}
}
if identical {
t.Fatal("expected different seeds to produce different pick sequences")
}
}
// A thrown predicate is a witnessed violation at the step it first throws, and
// the property latches violated thereafter (sticky always semantics). The
// witness captures the onset step's error text (count=1) and the extractor
// snapshot at that step; it does not keep updating to later counts because the
// verdict has latched.
func TestThrowingPredicate_WitnessCapturesOnsetStep(t *testing.T) {
const spec = `
globalThis.counter = __sanderling__.extract(state => state.snapshots["count"], "counter");
globalThis.properties = {
reportsCounter: __sanderling__.always(() => { throw new Error("count=" + counter.current); }),
};
`
verifier := newVerifier(t)
mustLoad(t, verifier, spec)
for step := 1; step <= 3; step++ {
raw := json.RawMessage([]byte{'"', byte('0' + step), '"'})
if err := verifier.PushSnapshot(SnapshotInput{Snapshots: Snapshots{"count": raw}}); err != nil {
t.Fatal(err)
}
verdicts := verifier.EvaluateProperties()
if got := verdicts["reportsCounter"]; got != ltl.VerdictViolated {
t.Fatalf("step %d: verdict = %v, want violated", step, got)
}
}
witness := verifier.Witness("reportsCounter")
if witness == nil {
t.Fatal("Witness = nil, want non-nil")
}
if witness.Step != 1 {
t.Errorf("Witness.Step = %d, want 1 (onset)", witness.Step)
}
if !strings.Contains(witness.Reason, "count=1") {
t.Errorf("Witness.Reason = %q, want to contain %q", witness.Reason, "count=1")
}
if got := string(witness.Extractors["counter"]); got != `"1"` {
t.Errorf("Witness.Extractors[counter] = %s, want %q", got, `"1"`)
}
}
func TestOverrideExtractorValues_PreservesPrevious(t *testing.T) {
verifier := newVerifier(t)
mustLoad(t, verifier, helloSpec)
if err := verifier.PushSnapshot(SnapshotInput{Snapshots: Snapshots{"ledger.balance": json.RawMessage(`100`)}}); err != nil {
t.Fatal(err)
}
if _, err := verifier.OverrideExtractorValues(map[int]json.RawMessage{1: json.RawMessage(`777`)}); err != nil {
t.Fatal(err)
}
balance := verifier.runtime.GlobalObject().Get("balance").ToObject(verifier.runtime)
if balance.Get("current").ToInteger() != 777 {
t.Errorf("override didn't take: current=%v", balance.Get("current"))
}
// Next push: previous mirrors the *override*, not the snapshot value.
if err := verifier.PushSnapshot(SnapshotInput{Snapshots: Snapshots{"ledger.balance": json.RawMessage(`200`)}}); err != nil {
t.Fatal(err)
}
balance = verifier.runtime.GlobalObject().Get("balance").ToObject(verifier.runtime)
if balance.Get("previous").ToInteger() != 777 {
t.Errorf("previous should reflect override, got %v", balance.Get("previous"))
}
}
func TestOverrideExtractorValues_NilIsNoop(t *testing.T) {
verifier := newVerifier(t)
mustLoad(t, verifier, helloSpec)
if err := verifier.PushSnapshot(SnapshotInput{Snapshots: Snapshots{"ledger.balance": json.RawMessage(`42`)}}); err != nil {
t.Fatal(err)
}
if _, err := verifier.OverrideExtractorValues(nil); err != nil {
t.Fatal(err)
}
if _, err := verifier.OverrideExtractorValues(map[int]json.RawMessage{}); err != nil {
t.Fatal(err)
}
balance := verifier.runtime.GlobalObject().Get("balance").ToObject(verifier.runtime)
if balance.Get("current").ToInteger() != 42 {
t.Errorf("expected snapshot-driven current to remain 42, got %v", balance.Get("current"))
}
}
func TestOverrideExtractorValues_UnknownIndexSkipped(t *testing.T) {
verifier := newVerifier(t)
mustLoad(t, verifier, helloSpec)
if err := verifier.PushSnapshot(SnapshotInput{Snapshots: Snapshots{"ledger.balance": json.RawMessage(`42`)}}); err != nil {
t.Fatal(err)
}
skipped, err := verifier.OverrideExtractorValues(map[int]json.RawMessage{
1: json.RawMessage(`777`),
99: json.RawMessage(`1`),
})
if err != nil {
t.Fatalf("unexpected error: %v", err)
}
if skipped != 1 {
t.Errorf("expected 1 skipped entry, got %d", skipped)
}
balance := verifier.runtime.GlobalObject().Get("balance").ToObject(verifier.runtime)
if balance.Get("current").ToInteger() != 777 {
t.Errorf("valid override should still apply alongside skipped one, got current=%v", balance.Get("current"))
}
}
const objectExtractorSpec = `
const card = __sanderling__.extract(state => ({attrs: {testTag: "default"}, balance: 0}));
globalThis.card = card;
globalThis.properties = {
hasTestTag: __sanderling__.always(() => typeof card.current.attrs.testTag === "string"),
};
`
// TestSelectorStringFromJS_CanonicalGrammar guarantees the selector tag stamped
// on returned AX nodes round-trips back to a parseable selector string when the
// node is later used as an action target. Without this, an action emitted from
// `tap({ on: state.ax.find({ testTag: "LoginEmail" }) })` ends up with
// `action.selector = "[object Object]"` in the trace.
func TestSelectorStringFromJS_CanonicalGrammar(t *testing.T) {
const treeJSON = `{
"attributes": {"resource-id": "root", "bounds": "[0,0,100,100]"},
"children": [
{"attributes": {"testTag": "LoginScreen", "bounds": "[0,0,100,40]"},
"children": [
{"attributes": {"testTag": "LoginEmail", "bounds": "[0,0,100,20]"}, "editable": true, "enabled": true, "children": []}
]}
]
}`
verifier := newVerifier(t)
mustLoad(t, verifier, `
globalThis.objectSelector = __sanderling__.extract(state =>
state.ax.find({ testTag: "LoginScreen" })
);
globalThis.chainSelector = __sanderling__.extract(state =>
state.ax.find([{ testTag: "LoginScreen" }, { testTag: "LoginEmail" }])
);
globalThis.stringSelector = __sanderling__.extract(state =>
state.ax.find("testTag:LoginScreen")
);
`)
tree, err := hierarchy.Parse(treeJSON)
if err != nil {
t.Fatal(err)
}
if err := verifier.PushSnapshot(SnapshotInput{Snapshots: Snapshots{}, Tree: tree}); err != nil {
t.Fatal(err)
}
read := func(name string) string {
handle := verifier.runtime.GlobalObject().Get(name).ToObject(verifier.runtime)
current := handle.Get("current")
if goja.IsUndefined(current) || goja.IsNull(current) {
return ""
}
object := current.ToObject(verifier.runtime)
return object.Get(tagSelector).String()
}
cases := []struct {
name string
want string
}{
{"objectSelector", "testTag:LoginScreen"},
{"chainSelector", "testTag:LoginScreen > testTag:LoginEmail"},
{"stringSelector", "testTag:LoginScreen"},
}
for _, testCase := range cases {
got := read(testCase.name)
if got != testCase.want {
t.Errorf("%s: got %q, want %q", testCase.name, got, testCase.want)
}
if strings.Contains(got, "[object") {
t.Errorf("%s: selector contains garbage %q", testCase.name, got)
}
}
}
// TestChangedExtractors_DiffsBetweenSnapshots verifies the per-step diff
// surfaces only extractors whose value actually changed, keyed by name (or
// extractor_N fallback when unnamed).
func TestChangedExtractors_DiffsBetweenSnapshots(t *testing.T) {
verifier := newVerifier(t)
mustLoad(t, verifier, `
__sanderling__.extract(state => state.snapshots["a"] ?? 0, "alpha");
__sanderling__.extract(state => state.snapshots["b"] ?? 0);
`)
push := func(a, b int) {
raw := func(n int) json.RawMessage {
body, _ := json.Marshal(n)
return body
}
if err := verifier.PushSnapshot(SnapshotInput{Snapshots: Snapshots{"a": raw(a), "b": raw(b)}}); err != nil {
t.Fatal(err)
}
}
push(1, 1)
first := verifier.ChangedExtractors()
if _, ok := first["alpha"]; !ok {
t.Errorf("step 1: expected alpha in diff (initial value), got %+v", first)
}
if _, ok := first["extractor_1"]; !ok {
t.Errorf("step 1: expected extractor_1 fallback name in diff, got %+v", first)
}
push(1, 2)
second := verifier.ChangedExtractors()
if _, ok := second["alpha"]; ok {
t.Errorf("step 2: alpha did not change, should not appear: %+v", second)
}
change, ok := second["extractor_1"]
if !ok {
t.Fatalf("step 2: expected extractor_1 in diff, got %+v", second)
}
if string(change.Prev) != "1" || string(change.Curr) != "2" {
t.Errorf("step 2: extractor_1 diff prev=%s curr=%s, want 1 -> 2", change.Prev, change.Curr)
}
push(1, 2)
third := verifier.ChangedExtractors()
if len(third) != 0 {
t.Errorf("step 3: nothing changed, diff should be empty, got %+v", third)
}
}
// TestExtract_DefaultsAndNamedNames verifies bindExtract assigns a fallback
// `extractor_N` name when no name is supplied and respects an explicit one.
func TestExtract_DefaultsAndNamedNames(t *testing.T) {
verifier := newVerifier(t)
mustLoad(t, verifier, `
__sanderling__.extract(state => 1);
__sanderling__.extract(state => 2, "ledgerRows");
__sanderling__.extract(state => 3);
`)
if len(verifier.extractors) != 3 {
t.Fatalf("extractors registered: got %d, want 3", len(verifier.extractors))
}
want := []string{"extractor_0", "ledgerRows", "extractor_2"}
for i, name := range want {
if got := verifier.extractors[i].name; got != name {
t.Errorf("extractor %d name: got %q, want %q", i, got, name)
}
}
}
// TestSelectorStringFromJS_NullEmpty verifies that nil/undefined args produce
// an empty string instead of "null"/"undefined" garbage.
func TestSelectorStringFromJS_NullEmpty(t *testing.T) {
verifier := newVerifier(t)
if got := selectorStringFromJS(verifier.runtime, goja.Undefined()); got != "" {
t.Errorf("undefined: got %q, want empty", got)
}
if got := selectorStringFromJS(verifier.runtime, goja.Null()); got != "" {
t.Errorf("null: got %q, want empty", got)
}
}
func TestOverrideExtractorValues_PropagatesNestedObjectFields(t *testing.T) {
verifier := newVerifier(t)
mustLoad(t, verifier, objectExtractorSpec)
if err := verifier.PushSnapshot(SnapshotInput{}); err != nil {
t.Fatal(err)
}
override := json.RawMessage(`{"attrs": {"testTag": "account-card"}, "balance": 12345}`)
skipped, err := verifier.OverrideExtractorValues(map[int]json.RawMessage{0: override})
if err != nil {
t.Fatal(err)
}
if skipped != 0 {
t.Errorf("unexpected skipped count: %d", skipped)
}
card := verifier.runtime.GlobalObject().Get("card").ToObject(verifier.runtime)
current := card.Get("current").ToObject(verifier.runtime)
attrs := current.Get("attrs").ToObject(verifier.runtime)
if got := attrs.Get("testTag").String(); got != "account-card" {
t.Errorf("nested override missing: card.current.attrs.testTag = %q, want %q", got, "account-card")
}
if got := current.Get("balance").ToInteger(); got != 12345 {
t.Errorf("scalar field missing: card.current.balance = %d, want 12345", got)
}
}
// TestUnsupportedVerbs_CollectedDedupedInOrder drives the real host binding the
// shared picker invokes (__sanderlingHost__.reportUnsupported) and asserts the
// verifier collects each verb once, in first-seen order, for the run report.
func TestUnsupportedVerbs_CollectedDedupedInOrder(t *testing.T) {
verifier := newVerifier(t)
report, ok := goja.AssertFunction(
verifier.runtime.GlobalObject().Get("__sanderlingHost__").
ToObject(verifier.runtime).Get("reportUnsupported"),
)
if !ok {
t.Fatal("reportUnsupported host binding missing")
}
for _, verb := range []string{"scrolls", "swipes", "scrolls", "longPresses"} {
if _, err := report(goja.Undefined(), verifier.runtime.ToValue(verb)); err != nil {
t.Fatalf("reportUnsupported(%q): %v", verb, err)
}
}
got := verifier.UnsupportedVerbs()
want := []string{"scrolls", "swipes", "longPresses"}
if !slices.Equal(got, want) {
t.Errorf("UnsupportedVerbs = %v, want %v", got, want)
}
}
// TestWithPlatform_IOSReachesPicker asserts WithPlatform("ios") is plumbed all
// the way to the host binding the shared picker reads (host.platform()), and
// that a platform-gated builtin (pressKeys) still resolves on iOS, drawing from
// the native key pool. Bug class: the platform option is dropped before the
// picker, so iOS silently runs the android (default) verb matrix / key pool.
func TestWithPlatform_IOSReachesPicker(t *testing.T) {
verifier := newVerifier(t, WithPlatform("ios"))
platform, ok := goja.AssertFunction(
verifier.runtime.GlobalObject().Get("__sanderlingHost__").
ToObject(verifier.runtime).Get("platform"),
)
if !ok {
t.Fatal("platform host binding missing")
}
value, err := platform(goja.Undefined())
if err != nil {
t.Fatal(err)
}
if value.String() != "ios" {
t.Errorf("host.platform() = %q, want ios", value.String())
}
loadActionSpec(t, verifier, `
import { pressKeys } from "@sanderling/spec";
globalThis.actions = pressKeys;
`)
if err := verifier.PushSnapshot(SnapshotInput{Snapshots: Snapshots{}}); err != nil {
t.Fatal(err)
}
action, err := verifier.NextAction()
if err != nil {
t.Fatal(err)
}
if action.Kind != ActionKindPressKey {
t.Fatalf("kind = %v, want PressKey", action.Kind)
}
// iOS draws from NATIVE_PRESS_KEYS (corpus.ts), which contains only "back".
if action.Key != "back" {
t.Errorf("key = %q, want back (native press-key pool)", action.Key)
}
}