Files
sanderling/internal/testrun/driver.go
pj 921ecb910e feat(cli): add --android-app-path for clear-state reinstall
Wires the APK path from the test command through to the sidecar client so
Android clear-state can reset apps on OEM builds that deny pm clear.
2026-06-10 15:20:41 +05:30

231 lines
7.7 KiB
Go

package testrun
import (
"context"
"fmt"
"io"
"net"
"os"
"os/exec"
"strconv"
"syscall"
"time"
"github.com/priyanshujain/sanderling/internal/android"
"github.com/priyanshujain/sanderling/internal/driver"
"github.com/priyanshujain/sanderling/internal/driver/chrome"
"github.com/priyanshujain/sanderling/internal/driver/ioscompanion"
driverSidecar "github.com/priyanshujain/sanderling/internal/driver/sidecar"
"github.com/priyanshujain/sanderling/internal/ios"
"github.com/priyanshujain/sanderling/internal/sidecarassets"
)
// iOS resolution seams: package-level so routing tests substitute canned
// resolvers instead of shelling out to xcrun.
var (
iosResolveTarget = ios.ResolveTarget
iosResolveDevice = ios.ResolveDevice
iosEnsureSimulator = ios.EnsureSimulator
)
// resolveIOSTarget decides whether a run drives a simulator or a physical
// device and fills the iOS fields on Options. A simulator target is booted if
// needed; a physical-device target is resolved to its hardware UDID and
// CoreDevice id via devicectl.
func resolveIOSTarget(ctx context.Context, options Options, stdout io.Writer) (Options, error) {
udid, isSimulator, err := iosResolveTarget(ctx, options.IosDevice)
if err != nil {
// No query and nothing booted: keep boot-first behavior, then resolve
// the simulator that EnsureSimulator just brought up.
if options.IosDevice == "" {
if bootErr := iosEnsureSimulator(ctx, "", stdout); bootErr != nil {
return options, bootErr
}
udid, isSimulator, err = iosResolveTarget(ctx, "")
}
if err != nil {
return options, err
}
} else if isSimulator {
if err := iosEnsureSimulator(ctx, options.IosDevice, stdout); err != nil {
return options, err
}
udid, isSimulator, err = iosResolveTarget(ctx, options.IosDevice)
if err != nil {
return options, err
}
}
options.iosUDID = udid
options.iosIsSimulator = isSimulator
if !isSimulator {
device, err := iosResolveDevice(ctx, options.IosDevice)
if err != nil {
return options, err
}
options.iosUDID = device.HardwareUDID
options.iosCoreDeviceID = device.CoreDeviceID
fmt.Fprintf(stdout, "using device: %s (udid %s, id %s)\n", device.Name, device.HardwareUDID, device.CoreDeviceID)
}
return options, nil
}
// preflight is a seam so routing tests exercise driver construction without the
// host-readiness checks (xcrun, java) that are absent on a Linux CI runner.
var preflight = Preflight
// newDeviceDriver constructs the physical-device iOS driver and its cleanup. A
// seam so routing tests assert the resolved identifiers reach DeviceOptions
// without building or spawning a real runner.
var newDeviceDriver = func(ctx context.Context, options ioscompanion.DeviceOptions) (driver.DeviceDriver, func(), error) {
d, err := ioscompanion.NewDevice(ctx, options)
if err != nil {
return nil, nil, err
}
return d, d.Close, nil
}
// buildDriver creates the appropriate DeviceDriver for the platform and returns
// a cleanup function. For web, ChromeDriver is used directly. An iOS simulator
// is driven by the native simulator companion (no JVM). A physical iOS device
// is driven runner-only over a usbmux tunnel. Android uses the JVM sidecar,
// which is extracted, spawned, and dialed.
func buildDriver(ctx context.Context, options Options, stdout io.Writer) (driver.DeviceDriver, func(), error) {
if err := preflight(ctx, options.Platform); err != nil {
return nil, nil, err
}
if options.Platform == "web" {
d := chrome.New()
return d, func() { _ = d.Terminate(context.Background()) }, nil
}
if options.Platform == "ios" && options.iosIsSimulator {
d, err := ioscompanion.New(ctx, ioscompanion.Options{
UniqueDeviceIdentifier: options.iosUDID,
BundleID: options.BundleID,
AppPath: options.IosAppPath,
Output: stdout,
})
if err != nil {
return nil, nil, fmt.Errorf("ios simulator driver: %w", err)
}
return d, d.Close, nil
}
if options.Platform == "ios" {
d, cleanup, err := newDeviceDriver(ctx, ioscompanion.DeviceOptions{
HardwareUDID: options.iosUDID,
CoreDeviceID: options.iosCoreDeviceID,
BundleID: options.BundleID,
AppPath: options.IosAppPath,
Output: stdout,
})
if err != nil {
return nil, nil, fmt.Errorf("ios device driver: %w", err)
}
return d, cleanup, nil
}
// Android uses the JVM sidecar, which requires java.
if err := preflightDevice(options.Platform); err != nil {
return nil, nil, err
}
sidecarDirectory := os.TempDir() + "/sanderling-sidecar"
jarPath, err := sidecarassets.Extract(sidecarDirectory)
if err != nil {
return nil, nil, fmt.Errorf("extract sidecar: %w", err)
}
fmt.Fprintf(stdout, "sidecar JAR: %s (size=%d)\n", jarPath, sidecarassets.EmbeddedSize())
sidecarPort, err := pickFreePort()
if err != nil {
return nil, nil, err
}
sidecarArgs := []string{"-jar", jarPath,
"--port", strconv.Itoa(sidecarPort),
"--platform", options.Platform,
}
if options.Device != "" {
sidecarArgs = append(sidecarArgs, "--serial", options.Device)
}
sidecarCommand := exec.CommandContext(ctx, "java", sidecarArgs...)
sidecarCommand.Stdout = stdout
sidecarCommand.Stderr = stdout
sidecarCommand.Env = android.EnvWithAndroidPlatformTools(os.Environ())
// SIGTERM lets the sidecar's shutdown hook stop the iOS XCTest runner.
// SIGKILL skips the hook and orphans an xcodebuild session that later
// restarts its runner and hijacks the simulator mid-run.
sidecarCommand.Cancel = func() error {
return sidecarCommand.Process.Signal(syscall.SIGTERM)
}
sidecarCommand.WaitDelay = sidecarShutdownGrace
if err := sidecarCommand.Start(); err != nil {
return nil, nil, fmt.Errorf("spawn sidecar: %w", err)
}
fmt.Fprintf(stdout, "sidecar pid=%d listening on 127.0.0.1:%d\n", sidecarCommand.Process.Pid, sidecarPort)
driverClient, err := driverSidecar.Dial(fmt.Sprintf("127.0.0.1:%d", sidecarPort))
if err != nil {
stopSidecar(sidecarCommand)
return nil, nil, fmt.Errorf("dial sidecar: %w", err)
}
driverClient.SetPlatform(options.Platform)
driverClient.SetClearStateReinstall(options.Device, options.AndroidAppPath, stdout)
// WaitForHealth confirms the gRPC sidecar is up. For iOS, the WDA warmup
// (absorbing the XCUITest startup race) runs inside IosDriverBackend.init
// in the sidecar - no additional sleep needed here.
healthCtx, healthCancel := context.WithTimeout(ctx, sidecarStartupTimeout)
if err := driverClient.WaitForHealth(healthCtx, 250e6); err != nil {
healthCancel()
stopSidecar(sidecarCommand)
_ = driverClient.Close()
return nil, nil, fmt.Errorf("sidecar health check: %w", err)
}
healthCancel()
fmt.Fprintln(stdout, "sidecar is healthy")
cleanup := func() {
_ = driverClient.Close()
stopSidecar(sidecarCommand)
}
return driverClient, cleanup, nil
}
// sidecarShutdownGrace bounds how long the sidecar gets to run its shutdown
// hook (terminate the app, stop the XCTest runner) before being killed.
const sidecarShutdownGrace = 15 * time.Second
// stopSidecar terminates the sidecar gracefully so its shutdown hook can stop
// the device-side runner processes, escalating to SIGKILL when it does not
// exit within the grace window.
func stopSidecar(sidecarCommand *exec.Cmd) {
if sidecarCommand.Process == nil {
return
}
if err := sidecarCommand.Process.Signal(syscall.SIGTERM); err != nil {
_ = sidecarCommand.Process.Kill()
_ = sidecarCommand.Wait()
return
}
done := make(chan struct{})
go func() {
_ = sidecarCommand.Wait()
close(done)
}()
select {
case <-done:
case <-time.After(sidecarShutdownGrace):
_ = sidecarCommand.Process.Kill()
<-done
}
}
func pickFreePort() (int, error) {
listener, err := net.Listen("tcp", "127.0.0.1:0")
if err != nil {
return 0, err
}
defer listener.Close()
return listener.Addr().(*net.TCPAddr).Port, nil
}