Files
sanderling/internal/android/android.go
T

320 lines
9.3 KiB
Go

package android
import (
"bufio"
"context"
"fmt"
"io"
"os"
"os/exec"
"path/filepath"
"regexp"
"slices"
"strings"
"time"
)
// EnsureDevice makes sure an Android device is ready for adb commands.
// Resolution order:
// - if an adb device is already online, use it;
// - else if avdName is set, validate and boot it;
// - else if exactly one AVD exists locally, boot it;
// - else fail with a helpful message listing the available AVDs.
func EnsureDevice(ctx context.Context, avdName string, stdout io.Writer) error {
devices, err := listAdbDevices(ctx)
if err != nil {
return fmt.Errorf("list adb devices: %w", err)
}
if len(devices) > 0 {
fmt.Fprintf(stdout, "using connected device: %s\n", devices[0])
return nil
}
avds, err := listAVDs(ctx)
if err != nil {
return fmt.Errorf("list AVDs: %w", err)
}
target, err := pickAVD(avdName, avds)
if err != nil {
return err
}
fmt.Fprintf(stdout, "booting AVD %q...\n", target)
if err := bootAVD(ctx, target); err != nil {
return fmt.Errorf("boot AVD %q: %w", target, err)
}
if err := waitForBoot(ctx, 180*time.Second); err != nil {
return fmt.Errorf("wait for AVD boot: %w", err)
}
fmt.Fprintf(stdout, "AVD %q ready\n", target)
return nil
}
// AdbReverse sets up adb reverse forwarding for a local abstract socket.
func AdbReverse(socket string, port int) error {
adb, err := AdbBinary()
if err != nil {
return err
}
command := exec.Command(adb, "reverse", "localabstract:"+socket, fmt.Sprintf("tcp:%d", port))
return command.Run()
}
// AdbReverseRemove removes an adb reverse forwarding rule.
func AdbReverseRemove(socket string) error {
adb, err := AdbBinary()
if err != nil {
return err
}
return exec.Command(adb, "reverse", "--remove", "localabstract:"+socket).Run()
}
// EnvWithAndroidPlatformTools returns env with the directory containing adb
// prepended to PATH, so child processes (the sidecar) can invoke adb even
// when the user hasn't set up their shell PATH.
func EnvWithAndroidPlatformTools(env []string) []string {
adb, err := AdbBinary()
if err != nil {
return env
}
adbDir := filepath.Dir(adb)
result := make([]string, 0, len(env))
found := false
for _, entry := range env {
if current, ok := strings.CutPrefix(entry, "PATH="); ok {
if !pathContains(current, adbDir) {
entry = "PATH=" + adbDir + string(os.PathListSeparator) + current
}
found = true
}
result = append(result, entry)
}
if !found {
result = append(result, "PATH="+adbDir)
}
return result
}
// AdbBinary locates the adb binary via PATH or known Android SDK locations.
func AdbBinary() (string, error) { return findAndroidTool("adb", "platform-tools") }
func emulatorBinary() (string, error) { return findAndroidTool("emulator", "emulator") }
// findAndroidTool locates a binary from the Android SDK. It checks PATH,
// then $ANDROID_HOME/<subdir>/<name> and $ANDROID_SDK_ROOT/<subdir>/<name>,
// then the canonical install locations used by Android Studio and Homebrew.
func findAndroidTool(name, subdir string) (string, error) {
if path, err := exec.LookPath(name); err == nil {
return path, nil
}
var tried []string
for _, root := range androidSDKCandidates() {
candidate := filepath.Join(root, subdir, name)
if info, err := os.Stat(candidate); err == nil && !info.IsDir() {
return candidate, nil
}
tried = append(tried, candidate)
}
return "", fmt.Errorf("could not locate %q: not on PATH and not under any known Android SDK root (set $ANDROID_HOME to point at your SDK; tried %v)", name, tried)
}
func androidSDKCandidates() []string {
var roots []string
seen := map[string]bool{}
addRoot := func(path string) {
if path == "" || seen[path] {
return
}
seen[path] = true
roots = append(roots, path)
}
addRoot(os.Getenv("ANDROID_HOME"))
addRoot(os.Getenv("ANDROID_SDK_ROOT"))
if home, err := os.UserHomeDir(); err == nil {
addRoot(filepath.Join(home, "Library", "Android", "sdk"))
addRoot(filepath.Join(home, "Android", "Sdk"))
}
addRoot("/opt/homebrew/share/android-commandlinetools")
addRoot("/usr/local/share/android-commandlinetools")
return roots
}
func listAdbDevices(ctx context.Context) ([]string, error) {
adb, err := AdbBinary()
if err != nil {
return nil, err
}
output, err := exec.CommandContext(ctx, adb, "devices").Output()
if err != nil {
return nil, err
}
return parseAdbDevices(string(output)), nil
}
func parseAdbDevices(output string) []string {
var serials []string
scanner := bufio.NewScanner(strings.NewReader(output))
for scanner.Scan() {
line := strings.TrimSpace(scanner.Text())
if line == "" || strings.HasPrefix(line, "List of devices") {
continue
}
fields := strings.Fields(line)
if len(fields) >= 2 && fields[1] == "device" {
serials = append(serials, fields[0])
}
}
return serials
}
func listAVDs(ctx context.Context) ([]string, error) {
emulator, err := emulatorBinary()
if err != nil {
return nil, err
}
output, err := exec.CommandContext(ctx, emulator, "-list-avds").Output()
if err != nil {
return nil, err
}
return parseAVDList(string(output)), nil
}
func parseAVDList(output string) []string {
var avds []string
scanner := bufio.NewScanner(strings.NewReader(output))
for scanner.Scan() {
line := strings.TrimSpace(scanner.Text())
if line == "" || strings.HasPrefix(line, "INFO") {
continue
}
avds = append(avds, line)
}
return avds
}
func pickAVD(requested string, available []string) (string, error) {
if requested != "" {
if !slices.Contains(available, requested) {
return "", fmt.Errorf("AVD %q does not exist (available: %s)", requested, strings.Join(available, ", "))
}
return requested, nil
}
switch len(available) {
case 0:
return "", fmt.Errorf("no android device connected and no AVD found; create one in Android Studio or `avdmanager create avd`")
case 1:
return available[0], nil
default:
return "", fmt.Errorf("no android device connected and multiple AVDs available (%s); pick one with --avd", strings.Join(available, ", "))
}
}
func bootAVD(_ context.Context, name string) error {
emulator, err := emulatorBinary()
if err != nil {
return err
}
command := exec.Command(emulator, "-avd", name, "-no-snapshot-save", "-no-audio", "-no-boot-anim")
if err := command.Start(); err != nil {
return err
}
go func() { _ = command.Wait() }()
return nil
}
func waitForBoot(ctx context.Context, timeout time.Duration) error {
deadline, cancel := context.WithTimeout(ctx, timeout)
defer cancel()
ticker := time.NewTicker(2 * time.Second)
defer ticker.Stop()
for {
if completed, _ := bootCompleted(deadline); completed {
return nil
}
select {
case <-deadline.Done():
return deadline.Err()
case <-ticker.C:
}
}
}
// ForegroundPackage returns the package of the currently resumed activity on
// the connected device, or "" when it cannot be determined.
func ForegroundPackage(ctx context.Context) (string, error) {
adb, err := AdbBinary()
if err != nil {
return "", err
}
output, err := exec.CommandContext(ctx, adb, "shell", "dumpsys", "activity", "activities").Output()
if err != nil {
return "", err
}
return parseForegroundPackage(string(output)), nil
}
// FocusedWindowPackage returns the package owning the currently focused window,
// or "" when no window is focused (e.g. mid-launch, before the app has drawn).
// Unlike ForegroundPackage, this reflects what is actually on screen:
// ResumedActivity flips to a newly launched app before its first frame renders,
// while mCurrentFocus only names the app once its window is up.
func FocusedWindowPackage(ctx context.Context) (string, error) {
adb, err := AdbBinary()
if err != nil {
return "", err
}
output, err := exec.CommandContext(ctx, adb, "shell", "dumpsys", "window").Output()
if err != nil {
return "", err
}
return parseFocusedWindowPackage(string(output)), nil
}
// resumedActivityPackage matches the "<package>/<activity>" component name that
// dumpsys prints on ResumedActivity and mCurrentFocus lines, capturing the
// package.
var resumedActivityPackage = regexp.MustCompile(`([a-zA-Z][a-zA-Z0-9_.]*)/[a-zA-Z0-9_.$]+`)
// parseForegroundPackage extracts the foreground package from `dumpsys activity
// activities` output by reading the first ResumedActivity component name.
func parseForegroundPackage(dumpsys string) string {
for line := range strings.SplitSeq(dumpsys, "\n") {
if !strings.Contains(line, "ResumedActivity") {
continue
}
if match := resumedActivityPackage.FindStringSubmatch(line); match != nil {
return match[1]
}
}
return ""
}
// parseFocusedWindowPackage extracts the focused-window package from
// `dumpsys window` output by reading the mCurrentFocus component name. A
// "mCurrentFocus=null" line (no focused window) yields "".
func parseFocusedWindowPackage(dumpsys string) string {
for line := range strings.SplitSeq(dumpsys, "\n") {
if !strings.Contains(line, "mCurrentFocus") {
continue
}
if match := resumedActivityPackage.FindStringSubmatch(line); match != nil {
return match[1]
}
}
return ""
}
func bootCompleted(ctx context.Context) (bool, error) {
adb, err := AdbBinary()
if err != nil {
return false, err
}
output, err := exec.CommandContext(ctx, adb, "shell", "getprop", "sys.boot_completed").Output()
if err != nil {
return false, err
}
return strings.TrimSpace(string(output)) == "1", nil
}
func pathContains(path, directory string) bool {
return slices.Contains(strings.Split(path, string(os.PathListSeparator)), directory)
}