mirror of
https://github.com/priyanshujain/sanderling.git
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* perf(sidecar): use exec-out + tmpfs for hierarchy dump Avoids FUSE overhead on /sdcard and shell startup cost by using exec-out with /data/local/tmp. Saves ~100ms per hierarchy fetch. * perf(sidecar): replace Thread.sleep waitForIdle with real idle detection Poll `dumpsys window -a` for mAnimating=true every 50ms instead of blindly sleeping. Breaks early when device is idle, saving 500-800ms per step since most settle in <200ms after an action. * test(sidecar): add idle detection parsing tests * perf(runner): parallelize hierarchy, metrics, and logs fetch Run fetchHierarchy, captureMetrics, and collectLogs concurrently via errgroup so metrics+logs (~150ms) hide behind the hierarchy fetch (~2s) instead of running serially. * perf(runner): pipeline post-action screenshot with next step Defer the post-action screenshot from step N and run it concurrently with step N+1's hierarchy/metrics/logs fetch. Saves ~335ms per step by hiding screenshot latency behind the hierarchy fetch. * test(runner): add tests for parallel fetch and pipelined screenshots Verify that hierarchy, metrics, and logs are all called per step. Verify post-action screenshots are written with correct step indices when pipelined, including the final flush after the loop. * perf(sidecar): grep mAnimating on-device instead of pulling full dump The full `dumpsys window -a` output is ~88KB per poll. Running grep on-device transfers only a count byte, cutting per-poll overhead from ~63ms to ~56ms and eliminating 88KB of ADB transfer.
513 lines
14 KiB
Go
513 lines
14 KiB
Go
package runner
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import (
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"context"
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"encoding/json"
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"errors"
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"fmt"
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"log/slog"
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"time"
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"golang.org/x/sync/errgroup"
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"github.com/priyanshujain/sanderling/internal/agent"
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"github.com/priyanshujain/sanderling/internal/driver"
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"github.com/priyanshujain/sanderling/internal/hierarchy"
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"github.com/priyanshujain/sanderling/internal/ltl"
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"github.com/priyanshujain/sanderling/internal/trace"
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"github.com/priyanshujain/sanderling/internal/verifier"
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)
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type Options struct {
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Duration time.Duration
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SnapshotTimeout time.Duration
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IdleTimeout time.Duration
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BundleID string
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Connection *agent.Conn
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Driver driver.Driver
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Verifier *verifier.Verifier
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TraceWriter *trace.Writer
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Logger *slog.Logger
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}
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type Summary struct {
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StartTime time.Time
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EndTime time.Time
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Steps int
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Violations []ViolationRecord
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}
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type ViolationRecord struct {
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StepIndex int
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Properties []string
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}
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// Run drives the snapshot/evaluate/release/act loop until the duration
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// elapses or the context is canceled. The caller is responsible for
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// launching the app and connecting the SDK before Run is called, and for
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// terminating the app afterwards.
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func Run(ctx context.Context, options Options) (Summary, error) {
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if err := validate(options); err != nil {
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return Summary{}, err
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}
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logger := options.Logger
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if logger == nil {
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logger = slog.Default()
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}
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summary := Summary{StartTime: time.Now()}
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deadline := summary.StartTime.Add(options.Duration)
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stepIndex := 0
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var lastAction *verifier.Action
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var lastLogTime time.Time
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var pendingPostScreenshotStep int
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pendingPostScreenshot := false
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for time.Now().Before(deadline) {
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if err := ctx.Err(); err != nil {
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break
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}
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stepIndex++
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stepStart := time.Now()
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// Hierarchy, metrics, and logs are independent device reads. Run
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// them concurrently so metrics+logs hide behind the hierarchy
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// fetch (~2s). All three must finish before snapshotStep pauses
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// the SDK.
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var tree *hierarchy.Tree
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var hierarchyErr error
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var metrics *trace.Metrics
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var logs []verifier.LogEntry
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g, _ := errgroup.WithContext(ctx)
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g.Go(func() error {
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tree, hierarchyErr = fetchHierarchy(ctx, options.Driver)
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return nil
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})
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si := stepIndex
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g.Go(func() error {
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metrics = captureMetrics(ctx, options, logger, si)
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return nil
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})
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logSince := lastLogTime
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g.Go(func() error {
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logs = collectLogs(ctx, options.Driver, logSince)
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return nil
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})
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if pendingPostScreenshot {
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postStep := pendingPostScreenshotStep
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g.Go(func() error {
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captureScreenshot(ctx, options, logger, postStep, true)
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return nil
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})
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pendingPostScreenshot = false
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}
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g.Wait()
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if hierarchyErr != nil {
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logger.Warn("hierarchy fetch failed", "step", stepIndex, "err", hierarchyErr)
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}
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treeSize := 0
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if tree != nil {
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treeSize = len(tree.Elements)
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}
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snapshot, err := snapshotStep(ctx, options)
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if err != nil {
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return summary, fmt.Errorf("step %d snapshot: %w", stepIndex, err)
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}
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lastLogTime = stepStart
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exceptions := decodeExceptions(snapshot)
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if err := options.Verifier.PushSnapshot(verifier.SnapshotInput{
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Snapshots: verifier.Snapshots(snapshot.Snapshots),
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Tree: tree,
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LastAction: lastAction,
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StepTime: stepStart,
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RunStart: summary.StartTime,
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Logs: logs,
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Exceptions: exceptions,
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}); err != nil {
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return summary, fmt.Errorf("step %d push: %w", stepIndex, err)
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}
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screen, screenErr := screenFromSnapshot(snapshot.Snapshots)
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if screenErr != nil {
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logger.Warn("screen snapshot decode failed", "step", stepIndex, "err", screenErr)
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}
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logger.Info("step", "index", stepIndex, "screen", screen, "nodes", treeSize)
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verdicts := options.Verifier.EvaluateProperties()
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violations := violationNames(verdicts)
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for _, name := range violations {
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if predicateErr := options.Verifier.PredicateError(name); predicateErr != nil {
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logger.Warn("predicate error", "step", stepIndex, "property", name, "err", predicateErr)
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}
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}
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nextAction, nextErr := options.Verifier.NextAction()
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var traceAction *trace.Action
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if nextErr == nil {
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traceAction = traceActionFor(nextAction, tree)
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} else if !errors.Is(nextErr, verifier.ErrNoAction) {
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return summary, fmt.Errorf("step %d next action: %w", stepIndex, nextErr)
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}
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residuals, residualErr := encodeResiduals(options.Verifier.Residuals())
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if residualErr != nil {
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logger.Warn("residual encode failed", "step", stepIndex, "err", residualErr)
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}
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step := trace.Step{
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Index: stepIndex,
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Timestamp: stepStart,
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Screen: screen,
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Snapshots: snapshot.Snapshots,
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Action: traceAction,
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Exceptions: traceExceptions(exceptions),
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Violations: violations,
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Hierarchy: tree,
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Residuals: residuals,
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Metrics: metrics,
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}
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if err := options.TraceWriter.WriteStep(step); err != nil {
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return summary, fmt.Errorf("step %d trace: %w", stepIndex, err)
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}
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captureScreenshot(ctx, options, logger, stepIndex, false)
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summary.Steps = stepIndex
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if len(violations) > 0 {
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summary.Violations = append(summary.Violations, ViolationRecord{
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StepIndex: stepIndex,
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Properties: violations,
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})
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}
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if err := options.Connection.Release(ctx); err != nil {
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return summary, fmt.Errorf("step %d release: %w", stepIndex, err)
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}
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if nextErr == nil {
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if err := applyAction(ctx, options.Driver, nextAction, tree); err != nil {
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return summary, fmt.Errorf("step %d apply: %w", stepIndex, err)
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}
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actionCopy := nextAction
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lastAction = &actionCopy
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} else {
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lastAction = nil
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}
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idleCtx, idleCancel := context.WithTimeout(ctx, options.IdleTimeout)
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idleErr := options.Driver.WaitForIdle(idleCtx, options.IdleTimeout)
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if nextErr == nil {
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pendingPostScreenshot = true
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pendingPostScreenshotStep = stepIndex
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}
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if idleErr != nil && idleCtx.Err() == nil {
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logger.Warn("wait_for_idle failed", "step", stepIndex, "err", idleErr)
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}
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idleCancel()
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}
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if pendingPostScreenshot {
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captureScreenshot(ctx, options, logger, pendingPostScreenshotStep, true)
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}
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summary.EndTime = time.Now()
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return summary, nil
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}
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func validate(options Options) error {
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if options.Connection == nil {
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return errors.New("runner: Connection is required")
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}
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if options.Driver == nil {
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return errors.New("runner: Driver is required")
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}
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if options.Verifier == nil {
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return errors.New("runner: Verifier is required")
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}
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if options.TraceWriter == nil {
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return errors.New("runner: TraceWriter is required")
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}
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if options.Duration <= 0 {
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return errors.New("runner: Duration must be positive")
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}
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if options.SnapshotTimeout <= 0 {
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options.SnapshotTimeout = 5 * time.Second
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}
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if options.IdleTimeout <= 0 {
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options.IdleTimeout = 2 * time.Second
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}
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return nil
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}
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func snapshotStep(ctx context.Context, options Options) (agent.Message, error) {
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snapshotTimeout := options.SnapshotTimeout
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if snapshotTimeout <= 0 {
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snapshotTimeout = 5 * time.Second
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}
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snapshotCtx, snapshotCancel := context.WithTimeout(ctx, snapshotTimeout)
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defer snapshotCancel()
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return options.Connection.Snapshot(snapshotCtx)
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}
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func violationNames(verdicts map[string]ltl.Verdict) []string {
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var names []string
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for name, verdict := range verdicts {
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if verdict == ltl.VerdictViolated {
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names = append(names, name)
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}
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}
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return names
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}
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func screenFromSnapshot(snapshots map[string]json.RawMessage) (string, error) {
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raw, ok := snapshots["screen"]
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if !ok {
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return "", nil
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}
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var screen string
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if err := json.Unmarshal(raw, &screen); err != nil {
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return "", err
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}
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return screen, nil
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}
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func applyAction(ctx context.Context, drv driver.Driver, action verifier.Action, tree *hierarchy.Tree) error {
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switch action.Kind {
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case verifier.ActionKindTap:
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x, y, ok := resolveCoordinates(action, tree)
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if !ok {
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if action.On == "" {
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return nil
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}
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return drv.TapSelector(ctx, action.On)
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}
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return drv.Tap(ctx, x, y)
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case verifier.ActionKindInputText:
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if x, y, ok := resolveCoordinates(action, tree); ok {
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if err := drv.Tap(ctx, x, y); err != nil {
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return err
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}
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} else if action.On != "" {
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if err := drv.TapSelector(ctx, action.On); err != nil {
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return err
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}
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}
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return drv.InputText(ctx, action.Text)
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case verifier.ActionKindSwipe:
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duration := time.Duration(action.DurationMillis) * time.Millisecond
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if duration <= 0 {
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duration = 250 * time.Millisecond
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}
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return drv.Swipe(ctx, action.FromX, action.FromY, action.ToX, action.ToY, duration)
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case verifier.ActionKindPressKey:
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if action.Key == "" {
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return nil
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}
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return drv.PressKey(ctx, action.Key)
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case verifier.ActionKindWait:
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duration := time.Duration(action.DurationMillis) * time.Millisecond
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if duration <= 0 {
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return nil
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}
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timer := time.NewTimer(duration)
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defer timer.Stop()
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select {
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case <-ctx.Done():
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return ctx.Err()
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case <-timer.C:
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return nil
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}
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default:
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return fmt.Errorf("unknown action kind %q", action.Kind)
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}
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}
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// collectLogs pulls recent error-level log entries from the driver since the
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// previous fetch. A failure is warned-on but not fatal: log capture is a
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// best-effort observability channel, not a correctness dependency.
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func collectLogs(ctx context.Context, drv driver.Driver, since time.Time) []verifier.LogEntry {
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entries, err := drv.RecentLogs(ctx, since, "E")
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if err != nil {
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return nil
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}
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result := make([]verifier.LogEntry, 0, len(entries))
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for _, entry := range entries {
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result = append(result, verifier.LogEntry{
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UnixMillis: entry.UnixMillis,
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Level: entry.Level,
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Tag: entry.Tag,
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Message: entry.Message,
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})
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}
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return result
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}
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func decodeExceptions(snapshot agent.Message) []verifier.Exception {
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if len(snapshot.Exceptions) == 0 {
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return nil
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}
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result := make([]verifier.Exception, 0, len(snapshot.Exceptions))
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for _, e := range snapshot.Exceptions {
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result = append(result, verifier.Exception{
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Class: e.Class,
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Message: e.Message,
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StackTrace: e.StackTrace,
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UnixMillis: e.UnixMillis,
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})
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}
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return result
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}
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func resolveCoordinates(action verifier.Action, tree *hierarchy.Tree) (int, int, bool) {
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if action.X > 0 && action.Y > 0 {
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return action.X, action.Y, true
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}
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if tree != nil && action.On != "" {
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if element := tree.Find(action.On); element != nil {
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x, y := element.Bounds.Center()
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if x > 0 && y > 0 {
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return x, y, true
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}
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}
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}
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return 0, 0, false
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}
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func fetchHierarchy(ctx context.Context, drv driver.Driver) (*hierarchy.Tree, error) {
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xmlText, err := drv.Hierarchy(ctx)
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if err != nil {
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return nil, err
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}
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return hierarchy.Parse(xmlText)
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}
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func traceActionFor(action verifier.Action, tree *hierarchy.Tree) *trace.Action {
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traceAction := &trace.Action{Kind: string(action.Kind), X: action.X, Y: action.Y}
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switch action.Kind {
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case verifier.ActionKindTap:
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traceAction.Selector = action.On
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stampSelectorTarget(traceAction, action, tree)
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case verifier.ActionKindInputText:
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traceAction.Text = action.Text
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traceAction.Selector = action.On
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stampSelectorTarget(traceAction, action, tree)
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case verifier.ActionKindSwipe:
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traceAction.FromX = action.FromX
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traceAction.FromY = action.FromY
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traceAction.ToX = action.ToX
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traceAction.ToY = action.ToY
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traceAction.DurationMillis = action.DurationMillis
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traceAction.X = 0
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traceAction.Y = 0
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case verifier.ActionKindPressKey:
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traceAction.Key = action.Key
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case verifier.ActionKindWait:
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traceAction.DurationMillis = action.DurationMillis
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}
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return traceAction
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}
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// stampSelectorTarget mirrors applyAction's coordinate-resolution rule so the
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// trace records the same point the runner taps. When the spec passed an ax
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// element directly, action.X/Y are already populated and we use them; when the
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// spec passed a string selector, we resolve it against the captured hierarchy.
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func stampSelectorTarget(traceAction *trace.Action, action verifier.Action, tree *hierarchy.Tree) {
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if action.X > 0 && action.Y > 0 {
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traceAction.TapPoint = &trace.PointRecord{X: action.X, Y: action.Y}
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return
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}
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if tree == nil || action.On == "" {
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return
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}
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element := tree.Find(action.On)
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if element == nil {
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return
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}
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bounds := element.Bounds
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traceAction.ResolvedBounds = &trace.BoundsRecord{
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X: bounds.Left,
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Y: bounds.Top,
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Width: bounds.Width(),
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Height: bounds.Height(),
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}
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x, y := bounds.Center()
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if x > 0 && y > 0 {
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traceAction.TapPoint = &trace.PointRecord{X: x, Y: y}
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}
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}
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func captureMetrics(ctx context.Context, options Options, logger *slog.Logger, stepIndex int) *trace.Metrics {
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if options.BundleID == "" {
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return nil
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}
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sample, err := options.Driver.Metrics(ctx, options.BundleID)
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if err != nil {
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logger.Warn("metrics capture failed", "step", stepIndex, "err", err)
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return nil
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}
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if sample.CPUPercent == 0 && sample.HeapBytes == 0 && sample.TotalMemoryBytes == 0 {
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return nil
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}
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return &trace.Metrics{
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CPUPercent: sample.CPUPercent,
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HeapBytes: sample.HeapBytes,
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TotalMemoryBytes: sample.TotalMemoryBytes,
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}
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}
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func captureScreenshot(ctx context.Context, options Options, logger *slog.Logger, stepIndex int, after bool) {
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image, err := options.Driver.Screenshot(ctx)
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if err != nil {
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logger.Warn("screenshot capture failed", "step", stepIndex, "after", after, "err", err)
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return
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}
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if len(image.PNG) == 0 {
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return
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}
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var writeErr error
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if after {
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writeErr = options.TraceWriter.WriteScreenshotAfter(stepIndex, image.PNG)
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} else {
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writeErr = options.TraceWriter.WriteScreenshot(stepIndex, image.PNG)
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}
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if writeErr != nil {
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logger.Warn("screenshot write failed", "step", stepIndex, "after", after, "err", writeErr)
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}
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}
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func encodeResiduals(residuals map[string]ltl.Formula) (map[string]json.RawMessage, error) {
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if len(residuals) == 0 {
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return nil, nil
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}
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encoded := make(map[string]json.RawMessage, len(residuals))
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var firstErr error
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for name, formula := range residuals {
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body, err := json.Marshal(formula)
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if err != nil {
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if firstErr == nil {
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firstErr = err
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}
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continue
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}
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encoded[name] = body
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}
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return encoded, firstErr
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}
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func traceExceptions(exceptions []verifier.Exception) []trace.Exception {
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if len(exceptions) == 0 {
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return nil
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}
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result := make([]trace.Exception, 0, len(exceptions))
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for _, e := range exceptions {
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result = append(result, trace.Exception{
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Class: e.Class,
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Message: e.Message,
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|
StackTrace: e.StackTrace,
|
|
UnixMillis: e.UnixMillis,
|
|
})
|
|
}
|
|
return result
|
|
}
|