mirror of
https://github.com/priyanshujain/sanderling.git
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* feat(companion): add appState, eraseText, pressKey runner handlers
The Go runner transport already calls these methods; the in-device runner
implemented them only latently. They become load-bearing on the device
path, where the hybrid's legacy-companion fallback is absent. Backward
compatible: the simulator hybrid never calls them.
* feat(ios): resolve physical devices from devicectl
ResolveDevice parses xcrun devicectl list devices into Device{Name,
HardwareUDID, CoreDeviceID}: the hardware UDID feeds xcodebuild/iproxy
and the CoreDevice id feeds devicectl install. Matches by name or either
id; errors list candidates on none/ambiguous. Fixes the stale sidecar
comment on ResolveTarget.
* feat(ioscompanion): runner-only device driver mode
NewDevice reuses Driver with d.companion set to the runner dialed over an
iproxy usbmux tunnel, hybrid=false, runnerClient=nil. The existing accessor
seams then route launch/snapshot/text/gesture to the runner with no new
DeviceDriver methods. Device seams swap clear-state to a devicectl
reinstall, container reset to a warn-once no-op, and paste grant to a no-op.
realSpawnDeviceRunner builds and signs the runner at run time via the App
Store Connect API key (no Xcode UI), caching on a source hash.
* test(ioscompanion): cover device wiring, routing, and shell-out argv
Seam-driven NewDevice wiring + gesture/text routing (asserting no keyboard
HID), devicectl/build/test/iproxy argv builders, xctestrun test-target dict
name parsing, signing-credential env checks, and source-hash cache keying.
* feat(testrun): route physical-device iOS runs to the device driver
Execute resolves a non-simulator iOS target through ios.ResolveDevice into
its hardware UDID and CoreDevice id; buildDriver constructs NewDevice via a
seam instead of rejecting the device. Generalizes the --ios-device and
--ios-app-path help to cover the device path; signing stays env-read, never
a flag.
* feat(doctor): device prereqs replace java/sidecar for ios-device
iosDeviceChecks now verifies devicectl, iproxy on PATH, a connected+paired
device (via ios.ConnectedDevices), and App Store Connect signing creds (via
ioscompanion.VerifyDeviceSigning). The retired JVM sidecar checks stay only
under android.
* feat(conformance): device backend uses iphoneos app and tunnel orphan checks
The device backend now builds via just ios-device, points --ios-app-path at
the Debug-iphoneos bundle, and reinstalls each run for clear-state. The G5
orphan scan replaces the retired sidecar.jar check with lingering iproxy and
device test-without-building sessions (destination platform=iOS,id=).
* feat(folio): device build linking the iosArm64 framework
project.yml selects the Kotlin framework slice by SDK (iosArm64 for
iphoneos, iosSimulatorArm64 for simulator) and links via -framework Shared
on the SDK-conditional search path. New ios-device/test-ios-device recipes
mirror ios/test-ios, signing the Debug-iphoneos build with the .env API key.
* docs(cli): document ios-device doctor checks and the device flags
The --ios-device flag now also selects a connected device; --ios-app-path
covers the device install; the doctor gains an ios-device platform whose
checks are devicectl, iproxy, a paired device, and signing credentials.
Corrects the --clear-data default to true.
* fix(ioscompanion): resolve signing key path to absolute
xcodebuild's -authenticationKeyPath requires an absolute path, but .env
files commonly carry a repo-relative one. Resolve it against the working
directory before the stat so a relative ASC_API_KEY_PATH still signs.
* fix(ioscompanion): re-enable signing for the device runner build
companion/project.yml disables code signing for the simulator build, so
the device build inherited it and produced an unsigned runner that the
device rejected at install (0xe8008018). build-for-testing now forces
CODE_SIGNING_ALLOWED/REQUIRED=YES so automatic provisioning signs it.
* fix(ioscompanion): key the device build cache on signing identity
The cache marker hashed only sources, so switching signing team or key
reused a runner signed with the stale identity, which the device rejects at
install (0xe8008018). Fold team + key id into the cache key so a signing
change forces a rebuild.
* docs(getting-started): document physical iOS device setup
Lists the iproxy requirement and the App Store Connect signing env vars
(SANDERLING_IOS_TEAM, ASC_API_*) a device run needs, plus the
test-ios-device recipe and the doctor check.
* feat(ios): native usbmux client and in-process tunnel forwarder
Talk to macOS usbmuxd directly instead of shelling out to iproxy, so the
device path depends on nothing beyond macOS + Xcode.
* refactor(ios): drive device tunnel via io.Closer seam
Replace the tunnelChild *exec.Cmd and spawnTunnel seam with a tunnel
io.Closer and startTunnel seam backed by the in-process usbmux forwarder.
* refactor(ios): remove iproxy spawn from device runner
* test(ios): cover tunnel close via io.Closer not child process
* feat(doctor): check usbmuxd socket instead of iproxy on PATH
* chore(conformance): drop iproxy orphan check; tunnel is in-process
* docs(ios): device tunnel uses native usbmux, nothing to install
* chore: gitignore the signing keys directory
* feat(folio): add Android launcher icon (black bg, white dot)
* feat(folio): add iOS app icon (black bg, white dot)
* feat(folio): add web favicon (black bg, white dot)
* docs(ioscompanion): fix stale const comments
* refactor(ioscompanion): inline single-use devicectl argv builders
* refactor(ioscompanion): inline xcodegenArgs, drop tautological argv tests
* refactor(ioscompanion): inline firstNonEmpty
* refactor(doctor): dedup usbmuxd socket path via ioscompanion seam
* test(doctor): trim redundant signing-check test
* refactor(ioscompanion): deliver COMPANION_PORT via TEST_RUNNER_ env
* fix(testrun): seam preflight so iOS routing tests pass on CI without xcrun
152 lines
5.2 KiB
Go
152 lines
5.2 KiB
Go
package testrun
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import (
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"context"
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"errors"
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"io"
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"testing"
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"github.com/priyanshujain/sanderling/internal/driver"
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"github.com/priyanshujain/sanderling/internal/driver/ioscompanion"
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"github.com/priyanshujain/sanderling/internal/ios"
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)
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// stubDeviceDriver is a no-op DeviceDriver so routing tests never build or spawn
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// a real runner. Only construction wiring is under test.
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type stubDeviceDriver struct{ driver.DeviceDriver }
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func TestBuildDriverRoutesPhysicalIOSToDeviceDriver(t *testing.T) {
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stubPreflight(t)
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original := newDeviceDriver
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t.Cleanup(func() { newDeviceDriver = original })
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var got ioscompanion.DeviceOptions
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closed := false
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newDeviceDriver = func(_ context.Context, options ioscompanion.DeviceOptions) (driver.DeviceDriver, func(), error) {
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got = options
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return stubDeviceDriver{}, func() { closed = true }, nil
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}
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options := Options{Platform: "ios", BundleID: "app.folio", IosAppPath: "/tmp/iosApp.app"}
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options.iosIsSimulator = false
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options.iosUDID = "00008140-HW"
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options.iosCoreDeviceID = "CORE-1"
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d, cleanup, err := buildDriver(context.Background(), options, io.Discard)
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if err != nil {
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t.Fatalf("buildDriver: %v", err)
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}
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if d == nil {
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t.Fatal("expected a device driver")
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}
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if got.HardwareUDID != "00008140-HW" || got.CoreDeviceID != "CORE-1" {
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t.Fatalf("DeviceOptions ids = %+v, want the resolved hardware/core ids", got)
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}
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if got.BundleID != "app.folio" || got.AppPath != "/tmp/iosApp.app" {
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t.Fatalf("DeviceOptions = %+v, want bundle and app path threaded through", got)
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}
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cleanup()
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if !closed {
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t.Fatal("cleanup must close the device driver")
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}
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}
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func TestBuildDriverSurfacesDeviceConstructionError(t *testing.T) {
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stubPreflight(t)
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original := newDeviceDriver
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t.Cleanup(func() { newDeviceDriver = original })
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newDeviceDriver = func(context.Context, ioscompanion.DeviceOptions) (driver.DeviceDriver, func(), error) {
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return nil, nil, errors.New("no signing creds")
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}
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options := Options{Platform: "ios"}
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options.iosIsSimulator = false
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if _, _, err := buildDriver(context.Background(), options, io.Discard); err == nil {
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t.Fatal("expected the device construction error to surface")
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}
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}
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// stubPreflight bypasses the host-readiness checks so routing tests exercise
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// driver construction on a Linux CI runner that lacks xcrun/java.
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func stubPreflight(t *testing.T) {
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t.Helper()
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original := preflight
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t.Cleanup(func() { preflight = original })
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preflight = func(context.Context, string) error { return nil }
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}
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func swapIOSResolveSeams(t *testing.T) {
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t.Helper()
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origTarget, origDevice, origEnsure := iosResolveTarget, iosResolveDevice, iosEnsureSimulator
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t.Cleanup(func() {
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iosResolveTarget, iosResolveDevice, iosEnsureSimulator = origTarget, origDevice, origEnsure
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})
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}
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func TestResolveIOSTargetPhysicalDeviceFillsIDs(t *testing.T) {
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swapIOSResolveSeams(t)
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iosResolveTarget = func(_ context.Context, query string) (string, bool, error) {
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return query, false, nil
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}
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resolveDeviceCalled := ""
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iosResolveDevice = func(_ context.Context, query string) (ios.Device, error) {
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resolveDeviceCalled = query
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return ios.Device{Name: "iPhone", HardwareUDID: "00008140-HW", CoreDeviceID: "CORE-1"}, nil
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}
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iosEnsureSimulator = func(context.Context, string, io.Writer) error {
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t.Fatal("must not boot a simulator on the device path")
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return nil
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}
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options := Options{Platform: "ios", IosDevice: "iPhone"}
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resolved, err := resolveIOSTarget(context.Background(), options, io.Discard)
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if err != nil {
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t.Fatal(err)
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}
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if resolveDeviceCalled != "iPhone" {
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t.Fatalf("ResolveDevice query = %q, want iPhone", resolveDeviceCalled)
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}
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if resolved.iosIsSimulator {
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t.Fatal("device target must not be marked a simulator")
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}
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if resolved.iosUDID != "00008140-HW" || resolved.iosCoreDeviceID != "CORE-1" {
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t.Fatalf("resolved ids = (%q, %q), want hardware/core ids", resolved.iosUDID, resolved.iosCoreDeviceID)
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}
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}
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func TestResolveIOSTargetSimulatorSkipsDeviceResolution(t *testing.T) {
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swapIOSResolveSeams(t)
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iosResolveTarget = func(context.Context, string) (string, bool, error) {
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return "sim-udid", true, nil
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}
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ensured := false
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iosEnsureSimulator = func(context.Context, string, io.Writer) error { ensured = true; return nil }
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iosResolveDevice = func(context.Context, string) (ios.Device, error) {
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t.Fatal("simulator path must not resolve a physical device")
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return ios.Device{}, nil
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}
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options := Options{Platform: "ios", IosDevice: "iPhone 17 Pro"}
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resolved, err := resolveIOSTarget(context.Background(), options, io.Discard)
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if err != nil {
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t.Fatal(err)
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}
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if !ensured {
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t.Fatal("simulator path must ensure the simulator is booted")
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}
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if !resolved.iosIsSimulator || resolved.iosUDID != "sim-udid" {
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t.Fatalf("resolved = %+v, want the booted simulator", resolved)
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}
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}
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func TestResolveIOSTargetDeviceResolutionErrorSurfaces(t *testing.T) {
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swapIOSResolveSeams(t)
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iosResolveTarget = func(_ context.Context, query string) (string, bool, error) { return query, false, nil }
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iosResolveDevice = func(context.Context, string) (ios.Device, error) {
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return ios.Device{}, errors.New("no device connected")
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}
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options := Options{Platform: "ios", IosDevice: "iPhone"}
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if _, err := resolveIOSTarget(context.Background(), options, io.Discard); err == nil {
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t.Fatal("expected the device-resolution error to surface")
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}
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}
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