Files
sanderling/internal/testrun/testrun.go
T
pj d987526e47 Merge origin/master into llm-recording-and-analysis
Brings in #73, which landed web fact-parity work overlapping this branch:
selector-tagged ax handles, aria-disabled in `enabled`, shadow-DOM traversal
and a `scrollable`/`editable` dump, plus a third folio property and two new
testTags on HomeScreen.

Six files conflicted. The option-carrying ones took the union of both sides'
fields, so `--label-source` and `--exit-on-violation` both reach the pipeline.
In web-runtime.ts both sides changed how an element is described: master gave
`elementHandle` a selector to tag handles with, this branch gave it raw
attribute names and a field hint. Both survive, and `enabled` now answers
through master's isEnabled while `editable` stays.

Claude-Session: https://claude.ai/code/session_01A5KmftdEJ49A9z5mF5ESrX
2026-08-15 13:28:11 +05:30

385 lines
13 KiB
Go

// Package testrun wires together the device, bundler, runner, and verifier into a single test pipeline.
package testrun
import (
"context"
"fmt"
"io"
"os"
"path/filepath"
"strconv"
"time"
"github.com/priyanshujain/sanderling/internal/android"
"github.com/priyanshujain/sanderling/internal/bundler"
"github.com/priyanshujain/sanderling/internal/driver"
"github.com/priyanshujain/sanderling/internal/runner"
"github.com/priyanshujain/sanderling/internal/trace"
"github.com/priyanshujain/sanderling/internal/verifier"
)
const sidecarStartupTimeout = 30 * time.Second
// launchTimeout bounds the pre-run app launch. It happens before the runner
// starts, so --duration does not cover it, and Execute's context is the bare
// signal-aware root with no deadline of its own: a driver wedged here would
// hang the run forever having printed nothing and written no trace. Generous
// enough to sit above every driver's own launch bound (the iOS clear-state path
// reinstalls the app first) so a driver-level error is what a user usually
// sees, and this stays the backstop. A variable so the timeout test can shrink
// it.
var launchTimeout = 3 * time.Minute
// launchApp starts the app under test under a bounded context.
func launchApp(ctx context.Context, activeDriver driver.DeviceDriver, options Options) error {
launchCtx, cancel := context.WithTimeout(ctx, launchTimeout)
defer cancel()
if err := activeDriver.Launch(launchCtx, options.BundleID, options.ClearData, nil); err != nil {
return fmt.Errorf("launch app: %w", err)
}
return nil
}
// Options are the parameters for a single test pipeline run.
type Options struct {
Spec string
BundleID string
Platform string
AVD string
Device string
IosDevice string
IosAppPath string
AndroidAppPath string
Duration time.Duration
MaxSteps int
Seed int64
Output string
ClearData bool
// Arm labels the experiment cell this run belongs to and is recorded in
// meta.json so a directory of runs can be attributed to a cell.
Arm string
// ExitOnViolation stops the run at the first violation and reports the
// recorded violations as a ViolationsError, so a caller (CI) can tell
// "the run found the bug" from "the run finished clean".
ExitOnViolation bool
// Generator selects the action picker: "llm" or the default seeded picker.
Generator string
// LabelSource selects how candidates are named to the model picker, and is
// recorded in meta.json as part of the run's cell.
LabelSource string
// iosUDID, iosIsSimulator, and iosCoreDeviceID are filled by Execute after
// resolving the iOS target, then read by buildDriver to choose the simulator
// companion or the physical-device driver. On the device path iosUDID is the
// hardware UDID and iosCoreDeviceID is the CoreDevice id.
iosUDID string
iosIsSimulator bool
iosCoreDeviceID string
}
// Execute runs the full test pipeline: bundle, launch app, verify properties.
// buildRunMeta assembles the run's meta.json. Model and Instructions are
// recorded only when the LLM picker is the one that will actually run, so a
// spec that declares generator = llm() but is run under the seeded picker does
// not label its trace with a model it never called.
func buildRunMeta(options Options, bundleSHA256 string, seed int64, host string, llmConfig verifier.LLMConfig, hasLLMConfig bool) trace.Meta {
meta := trace.Meta{
Seed: seed,
SpecPath: options.Spec,
BundleSHA256: bundleSHA256,
Platform: options.Platform,
BundleID: options.BundleID,
StartedAt: time.Now().UTC(),
SanderlingVersion: "0.0.1",
Arm: options.Arm,
Generator: options.Generator,
LabelSource: options.LabelSource,
MaxSteps: options.MaxSteps,
DurationMillis: options.Duration.Milliseconds(),
Host: host,
}
if options.Generator == "llm" && hasLLMConfig {
meta.Model = llmConfig.Model
meta.Instructions = llmConfig.Instructions
}
return meta
}
func Execute(ctx context.Context, options Options, stdout io.Writer) error {
switch options.Platform {
case "android":
if err := android.EnsureDevice(ctx, options.Device, options.AVD, stdout); err != nil {
return err
}
if err := android.PrepareDevice(ctx, options.Device, stdout); err != nil {
return err
}
// Switch to 3-button navigation for the run so fuzzer swipes cannot
// trigger the gesture-nav home/back and fling the app off screen;
// restore the original mode when the run ends.
restoreNav := android.ForceThreeButtonNav(ctx, options.Device, stdout)
defer restoreNav()
case "ios":
resolved, err := resolveIOSTarget(ctx, options, stdout)
if err != nil {
return err
}
options = resolved
}
prep, err := prepareBundleInputs(options)
if err != nil {
return err
}
aliases := prep.aliases
seed := prep.seed
defines := prep.defines
specAPIPath := prep.specAPIPath
bundle, err := bundler.Bundle(bundler.Options{
EntryFile: options.Spec,
RuntimeFile: prep.gojaRuntimePath,
Defines: defines,
Aliases: aliases,
})
if err != nil {
return fmt.Errorf("bundle spec: %w", err)
}
fmt.Fprintf(stdout, "bundled spec: %d bytes (sha256=%s)\n", len(bundle.JavaScript), bundle.SHA256[:12])
var webBundle bundler.Result
if options.Platform == "web" {
runtimePath := resolveWebRuntimePath(specAPIPath, options.Spec)
if runtimePath == "" {
return fmt.Errorf("web-runtime.ts not found near %s; checkout pkg/spec or set @sanderling/spec alias", options.Spec)
}
webBundle, err = bundler.BundleWeb(bundler.WebOptions{
EntryFile: options.Spec,
WebRuntimeFile: runtimePath,
Defines: defines,
Aliases: aliases,
})
if err != nil {
return fmt.Errorf("bundle web spec: %w", err)
}
fmt.Fprintf(stdout, "bundled web spec: %d bytes (sha256=%s)\n", len(webBundle.JavaScript), webBundle.SHA256[:12])
}
activeDriver, cleanup, err := buildDriver(ctx, options, stdout)
if err != nil {
return err
}
defer cleanup()
if err := launchApp(ctx, activeDriver, options); err != nil {
return err
}
if web, ok := activeDriver.(driver.WebDriver); ok && len(webBundle.JavaScript) > 0 {
if err := web.InstallBundle(ctx, webBundle.JavaScript); err != nil {
return fmt.Errorf("install web bundle: %w", err)
}
}
verifierInstance, err := verifier.New(
verifier.WithSeed(uint64(seed)),
verifier.WithPlatform(options.Platform),
verifier.WithAppPackage(options.BundleID),
)
if err != nil {
return fmt.Errorf("verifier: %w", err)
}
if err := verifierInstance.Load(string(bundle.JavaScript)); err != nil {
return fmt.Errorf("load spec: %w", err)
}
fmt.Fprintln(stdout, "spec loaded into verifier")
runDirectory := filepath.Join(options.Output, time.Now().UTC().Format("20060102-150405"))
traceWriter, err := trace.NewWriter(runDirectory)
if err != nil {
return fmt.Errorf("trace writer: %w", err)
}
defer traceWriter.Close()
hostname, _ := os.Hostname()
llmConfig, hasLLMConfig := verifierInstance.LLMConfig()
meta := buildRunMeta(options, bundle.SHA256, seed, hostname, llmConfig, hasLLMConfig)
if err := traceWriter.WriteMeta(meta); err != nil {
return fmt.Errorf("trace meta: %w", err)
}
defer func() {
endedAt := time.Now().UTC()
meta.EndedAt = &endedAt
_ = traceWriter.WriteMeta(meta)
}()
fmt.Fprintf(stdout, "trace dir: %s\n", runDirectory)
if options.MaxSteps > 0 {
fmt.Fprintf(stdout, "running for %s or %d steps, whichever comes first (seed=%d)\n", options.Duration, options.MaxSteps, seed)
} else {
fmt.Fprintf(stdout, "running for %s (seed=%d)\n", options.Duration, seed)
}
summary, err := runner.Run(ctx, runner.Options{
Duration: options.Duration,
MaxSteps: options.MaxSteps,
IdleTimeout: 1 * time.Second,
BundleID: options.BundleID,
Driver: activeDriver,
Verifier: verifierInstance,
TraceWriter: traceWriter,
Logger: newProgressLogger(stdout),
Generator: options.Generator,
LabelSource: options.LabelSource,
StopOnViolation: options.ExitOnViolation,
})
terminateCtx, terminateCancel := context.WithTimeout(context.Background(), 5*time.Second)
_ = activeDriver.Terminate(terminateCtx)
terminateCancel()
if err != nil {
return fmt.Errorf("runner: %w", err)
}
fmt.Fprintf(stdout, "\nelapsed: %s\n", summary.EndTime.Sub(summary.StartTime).Round(time.Millisecond))
runner.RenderSummary(stdout, summary, options.Platform)
return runOutcome(options, summary)
}
// runOutcome turns a finished run into the pipeline's result. Without
// --exit-on-violation a run that found violations is still a successful run
// (the summary reports them), which is the behaviour every existing caller
// depends on.
func runOutcome(options Options, summary runner.Summary) error {
if options.ExitOnViolation && len(summary.Violations) > 0 {
return ViolationsError{Count: len(summary.Violations)}
}
return nil
}
// ViolationsError reports a run that recorded violations under
// --exit-on-violation. It is deliberately distinct from every other error the
// pipeline returns: those mean the harness broke, this one means the run did
// its job and found something.
type ViolationsError struct {
Count int
}
func (e ViolationsError) Error() string {
return fmt.Sprintf("%d violation record(s)", e.Count)
}
// bundleInputs holds the pre-driver assembly: alias map, seed, esbuild defines,
// and the resolved spec-API/goja-runtime paths the bundler consumes.
type bundleInputs struct {
aliases map[string]string
seed int64
defines map[string]string
specAPIPath string
gojaRuntimePath string
}
// prepareBundleInputs builds the alias map, defines, seed, and resolves the
// goja runtime path. It is the pure (no driver/JVM) front half of Execute,
// returning the documented error when the runtime entry cannot be located.
func prepareBundleInputs(options Options) (bundleInputs, error) {
aliases := map[string]string{}
specAPIPath := resolveSpecAPIPath(options.Spec)
if specAPIPath != "" {
aliases["@sanderling/spec"] = specAPIPath
base := filepath.Dir(specAPIPath)
aliases["@sanderling/spec/defaults"] = filepath.Join(base, "defaults/index.ts")
aliases["@sanderling/spec/defaults/properties"] = filepath.Join(base, "defaults/properties.ts")
}
seed := resolveSeed(options.Seed)
defines := map[string]string{
"SANDERLING_TEST_PHONE": os.Getenv("SANDERLING_TEST_PHONE"),
"SANDERLING_TEST_OTP": os.Getenv("SANDERLING_TEST_OTP"),
"SANDERLING_SEED": strconv.FormatInt(seed, 10),
}
gojaRuntimePath := resolveGojaRuntimePath(specAPIPath, options.Spec)
if gojaRuntimePath == "" {
return bundleInputs{}, fmt.Errorf("goja-runtime.ts not found near %s; checkout pkg/spec or set @sanderling/spec alias", options.Spec)
}
return bundleInputs{
aliases: aliases,
seed: seed,
defines: defines,
specAPIPath: specAPIPath,
gojaRuntimePath: gojaRuntimePath,
}, nil
}
// resolveSeed returns the configured seed, or a time-derived one when unset.
// The same value seeds both the goja PRNG and the web bundle's SANDERLING_SEED
// define, so a single run is reproducible across both runtimes.
func resolveSeed(configured int64) int64 {
if configured != 0 {
return configured
}
return time.Now().UnixNano()
}
// resolveWebRuntimePath returns the path to pkg/spec/src/web-runtime.ts.
func resolveWebRuntimePath(specAPIPath, userSpecPath string) string {
return resolveRuntimeSibling(specAPIPath, userSpecPath, "web-runtime.ts")
}
// resolveGojaRuntimePath returns the path to pkg/spec/src/goja-runtime.ts, the
// native verifier's runtime entry that installs __sanderlingNextAction__.
func resolveGojaRuntimePath(specAPIPath, userSpecPath string) string {
return resolveRuntimeSibling(specAPIPath, userSpecPath, "goja-runtime.ts")
}
// resolveRuntimeSibling finds a runtime-entry file that sits beside the spec-API
// index.ts. Tries the spec-API checkout first (so monorepo development works
// without publishing the package), then falls back to a node_modules path.
func resolveRuntimeSibling(specAPIPath, userSpecPath, filename string) string {
if specAPIPath != "" {
candidate := filepath.Join(filepath.Dir(specAPIPath), filename)
if _, err := os.Stat(candidate); err == nil {
return candidate
}
}
if absoluteSpec, err := filepath.Abs(userSpecPath); err == nil {
directory := filepath.Dir(absoluteSpec)
for {
candidate := filepath.Join(directory, "node_modules", "@sanderling", "spec", "src", filename)
if _, err := os.Stat(candidate); err == nil {
return candidate
}
parent := filepath.Dir(directory)
if parent == directory {
break
}
directory = parent
}
}
return ""
}
// resolveSpecAPIPath returns the path to pkg/spec/src/index.ts inside
// a sanderling source checkout, searched upward from the spec file and the cwd.
// Returns "" when not found, in which case esbuild resolves @sanderling/spec via
// node_modules the way a downstream user's project would.
func resolveSpecAPIPath(specPath string) string {
var candidates []string
if absoluteSpec, err := filepath.Abs(specPath); err == nil {
directory := filepath.Dir(absoluteSpec)
for {
candidates = append(candidates, filepath.Join(directory, "pkg/spec/src/index.ts"))
parent := filepath.Dir(directory)
if parent == directory {
break
}
directory = parent
}
}
if cwd, err := os.Getwd(); err == nil {
candidates = append(candidates, filepath.Join(cwd, "pkg/spec/src/index.ts"))
}
for _, candidate := range candidates {
if _, err := os.Stat(candidate); err == nil {
return candidate
}
}
return ""
}