Files
sanderling/internal/verifier/verifier_test.go
T
pj ef04a6de9d fix(verifier): record the extractor state the predicates actually read
On the web path extractor bodies are evaluated in V8 and injected here, but only
the goja value was replaced. The trace diff and the violation witness therefore
described a state no property ever saw.

Claude-Session: https://claude.ai/code/session_01Fj4wJUikdABuMQEETwW55J
2026-08-12 16:47:40 +05:30

1385 lines
46 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)
}
}
// TestOverrideExtractorValues_RecordedStateMatchesEvaluatedState pins the
// reported state to the state predicates read. The web path evaluates
// extractor bodies in V8 and injects the results here, so a diff or a witness
// built from the goja value would describe a state no property ever saw.
func TestOverrideExtractorValues_RecordedStateMatchesEvaluatedState(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(`-7`),
}); err != nil {
t.Fatal(err)
}
verifier.EvaluateProperties()
balance := verifier.runtime.GlobalObject().Get("balance").ToObject(verifier.runtime)
evaluated := balance.Get("current").String()
change, ok := verifier.ChangedExtractors()["extractor_1"]
if !ok {
t.Fatal("ChangedExtractors reported no change for the overridden extractor")
}
if string(change.Curr) != evaluated {
t.Errorf("ChangedExtractors curr = %s, want %s (the value predicates read)",
change.Curr, evaluated)
}
witness := verifier.Witness("balanceNonNegative")
if witness == nil {
t.Fatal("balanceNonNegative did not violate on the overridden value")
}
if got := string(witness.Extractors["extractor_1"]); got != evaluated {
t.Errorf("witness extractor = %s, want %s (the value predicates read)",
got, evaluated)
}
}
// 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)
}
}