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* chore(test): start test-suite refactor sweep * test(ltl): pin exact multi-obligation residual AST * test(ltl): table-test finalize Kleene connective combinations * test(ltl): pin reduce over pending inner for bound, Or, Not * test(ltl): marshal bounded Always steps/duration/deadline * test(verifier): cover LTL combinator verdict transitions and within unit panic * test(verifier): table-test DecodeAction kinds and lastAction field exposure * test(verifier): assert WithPlatform(ios) reaches the picker host and key pool * test(verifier): widen weighted-selection assertion to a 5x skew margin * test(verifier): un-skip ax-find round trip with a committed tree fixture * test(runner): pin isWDADrop to sidecar reconnect-failed message origin * test(runner): assert PressKey/Wait trace encoding records kind-specific fields * test(runner): cover RenderSummary unsupported-verbs surfacing branch * test(trace): set Hierarchy in round-trip and lock lossy Tree contract Also add a -race concurrent WriteStep test that asserts N well-formed JSONL lines, catching torn lines if the writer mutex is dropped. * test(trace): round-trip witnesses/changes/metrics/exceptions, pin step-0 witness * test(trace): document ViolationsAreGreppable grep contract and lock-free WriteScreenshot * test(hierarchy): cover invalid-JSON and malformed-bounds parser paths * test(trace): guard writer mutex via WriteStep/Close race on w.file * test(replay): drop unfailable assets and devproxy assertions * test(replay): cache reuses on equal mtime, reparses after append * test(replay): violation marker falls back to detection step when attributed missing * test(replay): corrupt meta/trace dirs return 500 with error body * test(replay): SSE client receives runs.changed after a broadcast * test(replay): Run coalesces creates, ignores write/chmod, closes subs on cancel * fix(sidecar): synchronize health fixture writes and exercise healthError * test(sidecar): cover swipe/longpress/doubletap/erase/presskey/metrics/logs translations * test(sidecar): cover DoubleTapSelector composition and mid-gesture cancel * test(sidecar): assert gRPC error status surfaces from action RPC * fix(chrome): route action methods through runCtx so caller cancellation aborts CDP * fix(chrome): route hierarchy/screenshot/waitidle/metrics through runCtx * refactor(ios): extract pure simctl JSON parsers * refactor(ios): add command-runner seams for EnsureSimulator * test(ios): table-test simctl parsers and EnsureSimulator seams * test(sidecarassets): cover placeholder build path * test(sidecarassets): assert reuse via sentinel bytes not mtime * test(bundler): cover properties-only spec registration * refactor(testrun): extract prepareBundleInputs from Execute * test(testrun): cover prepareBundleInputs aliases and missing-runtime error * test(testrun): table-test resolveRuntimeSibling search edges * test(testrun): exact-output tests for progressHandler line format * fix(cmd): point bundle-check aliases at pkg/spec/src * test(cmd): smoke-test bundle-check resolves spec aliases * test(cmd): table-test hier-check parse and FindAll on fixture * test(cmd): unit-test buildBrowseURL deep-link vs root * test(cmd): drop flaky TestRun_Doctor that launched real Chromium * test(cmd): pin pipeline error to bundle resolution on web platform * test(replay-ui): add bun test script * ci(replay-ui): run bun test via make web-test target * ci(replay-ui): point bun cache key at replay-ui/bun.lock * test(replay-ui): exercise real URL encoding and non-ok throw in getJson * refactor(replay-ui): extract snapshot flatten/getAtPath into lib module * test(replay-ui): pin snapshot flatten/getAtPath path round-trip * refactor(replay-ui): extract action selector/format into lib module * test(replay-ui): pin action selector parse and row formatting * refactor(replay-ui): share one statusFor between panels * refactor(replay-ui): extract run-history derivation into lib module * test(replay-ui): pin shared statusFor precedence and ordering * test(replay-ui): pin run-history derivation alignment * refactor(replay-ui): export clampIndex for testing * refactor(replay-ui): extract keyboard-nav dispatch into pure module * refactor(replay-ui): extract metrics formatters into lib module * test(replay-ui): pin clampIndex step boundaries * test(replay-ui): pin keyboard-nav ownership and key routing * test(replay-ui): pin metrics formatters and path gap handling * refactor(sidecar): expose device-output parsers as internal for testing * test(sidecar): table-test device-output parsers against malformed input * test(sidecar): cover logcat parsing year inference and line skipping * test(sidecar): pin pressKey keycode mapping and unknown-key rejection * test(sidecar): metrics bundleId falls back to launched app and honors override * test(sidecar): loosen deadline upper bound to tolerate slow CI scheduling * test(web-runtime): export selector builders for unit tests * test(web-runtime): guard sanitize cycle, function, and depth limits * test(web-runtime): table-test selector builder quoting and escaping * test(sidecar): collapse scalar-forwarding RPC tests into a table * test(replay-ui): dedup step/summary fixtures into shared module * test(ios): collapse pickSimulator point-tests into a table
291 lines
10 KiB
Go
291 lines
10 KiB
Go
package ltl
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import (
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"encoding/json"
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"strings"
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"testing"
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"time"
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)
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func TestDescribe_NowNextEventually(t *testing.T) {
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now := Always(Now(Pure(true)))
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if got := Describe(now); !strings.Contains(got, "Now") || !strings.Contains(got, "Always") {
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t.Errorf("Describe(Always(Now(Pure(true)))) = %q", got)
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}
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next := Always(Next(Pure(false)))
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if got := Describe(next); !strings.Contains(got, "Next") {
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t.Errorf("Describe next = %q", got)
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}
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ev := Always(EventuallyWithinSteps(Pure(true), 3))
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if got := Describe(ev); !strings.Contains(got, "Eventually") || !strings.Contains(got, "steps=3") {
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t.Errorf("Describe eventually = %q", got)
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}
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}
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func TestDescribe_ImpliesOrAndNot(t *testing.T) {
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implies := Implies(Pure(true), Pure(false))
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if got := Describe(implies); !strings.Contains(got, "Implies") {
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t.Errorf("Describe implies = %q", got)
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}
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or := Or(Pure(true), Pure(false))
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if got := Describe(or); !strings.Contains(got, "Or") {
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t.Errorf("Describe or = %q", got)
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}
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and := And(Pure(true), Pure(false))
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if got := Describe(and); !strings.Contains(got, "And") {
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t.Errorf("Describe and = %q", got)
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}
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not := Not(Pure(true))
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if got := Describe(not); !strings.Contains(got, "Not") {
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t.Errorf("Describe not = %q", got)
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}
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}
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func TestAlways_Now_ViolatesImmediately(t *testing.T) {
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evaluator := NewEvaluator(Always(Now(Pure(false))))
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if got := evaluator.Observe(); got != VerdictViolated {
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t.Errorf("step 1: got %v, want violated", got)
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}
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}
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func TestAlways_Next_PendingThenViolated(t *testing.T) {
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y := true
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evaluator := NewEvaluator(Always(Next(Thunk(func() (bool, error) { return y, nil }))))
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if got := evaluator.Observe(); got != VerdictPending {
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t.Errorf("step 1: got %v, want pending", got)
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}
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y = false
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if got := evaluator.Observe(); got != VerdictViolated {
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t.Errorf("step 2: got %v, want violated", got)
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}
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}
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func TestAlways_Next_StaysPendingWhileInnerHolds(t *testing.T) {
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evaluator := NewEvaluator(Always(Next(Thunk(func() (bool, error) { return true, nil }))))
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for index := range 3 {
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if got := evaluator.ObserveAt(time.Unix(int64(index), 0)); got != VerdictPending {
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t.Errorf("step %d: got %v, want pending", index+1, got)
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}
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}
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}
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func TestAlways_NowImpliesEventuallyWithin_ViolatesWhenYLate(t *testing.T) {
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// always(now(() => x).implies(eventually(() => y).within(3, "steps")))
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// x = true only at step 1; y = true only at step 4.
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xValues := []bool{true, false, false, false, false}
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yValues := []bool{false, false, false, true, true}
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step := 0
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predX := Thunk(func() (bool, error) { return xValues[step], nil })
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predY := Thunk(func() (bool, error) { return yValues[step], nil })
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formula := Always(Implies(Now(predX), EventuallyWithinSteps(predY, 3)))
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evaluator := NewEvaluator(formula)
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verdicts := make([]Verdict, 0, 5)
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for range 5 {
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verdicts = append(verdicts, evaluator.Observe())
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step++
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}
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// Step 1: X true, eventually(Y, 3) spawned pending. Pending.
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// Step 2: pending eventually decrements (Y false). Pending.
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// Step 3: eventually bound exhausted (Y still false). Violated.
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if verdicts[0] != VerdictPending {
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t.Errorf("step 1: got %v, want pending", verdicts[0])
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}
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if verdicts[1] != VerdictPending {
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t.Errorf("step 2: got %v, want pending", verdicts[1])
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}
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if verdicts[2] != VerdictViolated {
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t.Errorf("step 3: got %v, want violated", verdicts[2])
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}
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}
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func TestAlways_NowImpliesEventuallyWithin_HoldsWhenYInBound(t *testing.T) {
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// Same formula, y = true at step 3 (within the 3-step bound).
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xValues := []bool{true, false, false}
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yValues := []bool{false, false, true}
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step := 0
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predX := Thunk(func() (bool, error) { return xValues[step], nil })
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predY := Thunk(func() (bool, error) { return yValues[step], nil })
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formula := Always(Implies(Now(predX), EventuallyWithinSteps(predY, 3)))
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evaluator := NewEvaluator(formula)
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verdicts := make([]Verdict, 0, 3)
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for range 3 {
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verdicts = append(verdicts, evaluator.Observe())
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step++
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}
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if verdicts[0] != VerdictPending {
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t.Errorf("step 1: got %v, want pending", verdicts[0])
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}
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if verdicts[1] != VerdictPending {
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t.Errorf("step 2: got %v, want pending", verdicts[1])
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}
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if verdicts[2] != VerdictHolds {
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t.Errorf("step 3: got %v, want holds", verdicts[2])
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}
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}
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func TestEventually_DeadlineViolation(t *testing.T) {
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base := time.Unix(0, 0)
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deadline := base.Add(1 * time.Second)
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formula := Always(EventuallyBefore(Pure(false), deadline))
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evaluator := NewEvaluator(formula)
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// Well before deadline: pending.
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if got := evaluator.ObserveAt(base.Add(100 * time.Millisecond)); got != VerdictPending {
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t.Errorf("pre-deadline: got %v, want pending", got)
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}
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// At or past deadline: violated.
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if got := evaluator.ObserveAt(base.Add(2 * time.Second)); got != VerdictViolated {
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t.Errorf("post-deadline: got %v, want violated", got)
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}
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}
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func TestEventually_RelativeDurationResolvesOnFirstReduce(t *testing.T) {
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base := time.Unix(0, 0)
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// One-shot Eventually (not wrapped in Always) with a 1s relative deadline.
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evaluator := NewEvaluator(EventuallyWithin(Pure(false), 1*time.Second))
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if got := evaluator.ObserveAt(base); got != VerdictPending {
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t.Errorf("creation step: got %v, want pending", got)
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}
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if got := evaluator.ObserveAt(base.Add(500 * time.Millisecond)); got != VerdictPending {
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t.Errorf("mid-window: got %v, want pending", got)
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}
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if got := evaluator.ObserveAt(base.Add(2 * time.Second)); got != VerdictViolated {
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t.Errorf("past-window: got %v, want violated", got)
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}
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}
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func TestOr_OneBranchHolds(t *testing.T) {
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evaluator := NewEvaluator(Always(Or(Pure(false), Pure(true))))
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if got := evaluator.Observe(); got != VerdictHolds {
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t.Errorf("or(false,true): got %v, want holds", got)
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}
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}
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func TestAnd_OneBranchViolatesLatches(t *testing.T) {
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evaluator := NewEvaluator(Always(And(Pure(true), Pure(false))))
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if got := evaluator.Observe(); got != VerdictViolated {
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t.Errorf("and(true,false): got %v, want violated", got)
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}
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}
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func TestNot_InvertsPure(t *testing.T) {
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holds := NewEvaluator(Always(Not(Pure(false))))
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if got := holds.Observe(); got != VerdictHolds {
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t.Errorf("not(false): got %v, want holds", got)
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}
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violates := NewEvaluator(Always(Not(Pure(true))))
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if got := violates.Observe(); got != VerdictViolated {
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t.Errorf("not(true): got %v, want violated", got)
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}
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}
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func TestMarshalJSON_AlwaysImpliesEventually(t *testing.T) {
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formula := Always(Implies(Now(Pure(true)), EventuallyWithinSteps(Pure(false), 3)))
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body, err := json.Marshal(formula)
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if err != nil {
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t.Fatal(err)
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}
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want := `{"op":"always","arg":{"op":"implies","left":{"op":"now","arg":{"op":"true"}},"right":{"op":"eventually","arg":{"op":"false"},"within":{"amount":3,"unit":"steps"}}}}`
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if string(body) != want {
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t.Errorf("marshal mismatch:\n got: %s\nwant: %s", body, want)
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}
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}
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func TestMarshalJSON_AndOrNot(t *testing.T) {
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formula := And(Or(Pure(true), Pure(false)), Not(Pure(true)))
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body, _ := json.Marshal(formula)
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want := `{"op":"and","left":{"op":"or","left":{"op":"true"},"right":{"op":"false"}},"right":{"op":"not","arg":{"op":"true"}}}`
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if string(body) != want {
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t.Errorf("and/or/not marshal mismatch:\n got: %s\nwant: %s", body, want)
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}
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}
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func TestMarshalJSON_EventuallyMillisecondsAndDeadline(t *testing.T) {
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body, _ := json.Marshal(EventuallyWithin(Pure(true), 250*time.Millisecond))
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if !strings.Contains(string(body), `"unit":"milliseconds"`) || !strings.Contains(string(body), `"amount":250`) {
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t.Errorf("milliseconds within wrong: %s", body)
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}
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deadline := time.UnixMilli(1700000000000)
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body, _ = json.Marshal(EventuallyBefore(Pure(true), deadline))
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if !strings.Contains(string(body), `"unit":"deadline"`) || !strings.Contains(string(body), `"amount":1700000000000`) {
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t.Errorf("deadline within wrong: %s", body)
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}
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}
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// TestMarshalJSON_AlwaysStepsMillisecondsDeadline mirrors the Eventually
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// marshal test for bounded Always: the within node must carry the right unit
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// and amount for each bound flavor. Bug class: a bounded Always serializing the
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// wrong bound (unit/amount) into the trace AST the replay UI consumes.
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func TestMarshalJSON_AlwaysStepsMillisecondsDeadline(t *testing.T) {
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steps := AlwaysFormula{Inner: Pure(true), StepBound: 4, HasStepBound: true}
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body, _ := json.Marshal(steps)
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if !strings.Contains(string(body), `"unit":"steps"`) || !strings.Contains(string(body), `"amount":4`) {
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t.Errorf("always steps within wrong: %s", body)
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}
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duration := AlwaysFormula{Inner: Pure(true), Duration: 250 * time.Millisecond}
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body, _ = json.Marshal(duration)
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if !strings.Contains(string(body), `"unit":"milliseconds"`) || !strings.Contains(string(body), `"amount":250`) {
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t.Errorf("always milliseconds within wrong: %s", body)
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}
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deadline := AlwaysFormula{Inner: Pure(true), Deadline: time.UnixMilli(1700000000000), HasDeadline: true}
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body, _ = json.Marshal(deadline)
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if !strings.Contains(string(body), `"unit":"deadline"`) || !strings.Contains(string(body), `"amount":1700000000000`) {
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t.Errorf("always deadline within wrong: %s", body)
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}
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}
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func TestMarshalJSON_NextAndThunkAndError(t *testing.T) {
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body, _ := json.Marshal(Next(Pure(true)))
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if string(body) != `{"op":"next","arg":{"op":"true"}}` {
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t.Errorf("next marshal wrong: %s", body)
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}
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body, _ = json.Marshal(Thunk(func() (bool, error) { return true, nil }))
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if string(body) != `{"op":"predicate"}` {
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t.Errorf("thunk marshal wrong: %s", body)
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}
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body, _ = json.Marshal(ErrorFormula{Message: "bad"})
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if string(body) != `{"op":"error","message":"bad"}` {
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t.Errorf("error marshal wrong: %s", body)
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}
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}
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func TestResidual_HoldsViolatedPending(t *testing.T) {
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holdsEval := NewEvaluator(Always(Pure(true)))
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holdsEval.Observe()
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if got := holdsEval.Residual(); got != (PureFormula{Value: true}) {
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t.Errorf("holds residual = %v, want true", got)
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}
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violEval := NewEvaluator(Always(Now(Pure(false))))
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violEval.Observe()
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if got := violEval.Residual(); got != (PureFormula{Value: false}) {
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t.Errorf("violated residual = %v, want false", got)
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}
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// A genuinely multi-obligation residual: both Next inners survive to the
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// next step folded under And, in registration order. A residual that
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// dropped or transposed an obligation would change this exact AST.
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predP := ThunkNamed("p", func() (bool, error) { return true, nil })
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predQ := ThunkNamed("q", func() (bool, error) { return true, nil })
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pendingEval := NewEvaluator(Always(And(Next(predP), Next(predQ))))
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pendingEval.Observe()
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body, err := json.Marshal(pendingEval.Residual())
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if err != nil {
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t.Fatal(err)
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}
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want := `{"op":"and","left":{"op":"predicate","name":"p"},"right":{"op":"predicate","name":"q"}}`
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if string(body) != want {
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t.Errorf("pending residual:\n got: %s\nwant: %s", body, want)
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}
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}
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