Files
sanderling/internal/driver/sidecar/client.go
T
pj 4f579d2a0b feat(driver): native DoubleTap RPC for a tight inter-tap gap
Composing two Tap round trips from the Go client spread the taps by
hundreds of milliseconds on iOS, wide enough for the app to navigate
between them, so double-submission races could never reproduce. The
sidecar now lands both taps back-to-back next to the device transport.
2026-06-05 19:05:27 +05:30

255 lines
7.8 KiB
Go

// Package sidecar implements the device driver by talking to the native sidecar over gRPC.
package sidecar
import (
"context"
"fmt"
"time"
"google.golang.org/grpc"
"google.golang.org/grpc/credentials/insecure"
"github.com/priyanshujain/sanderling/internal/android"
"github.com/priyanshujain/sanderling/internal/driver"
driverpb "github.com/priyanshujain/sanderling/proto/driverpb"
)
type Client struct {
connection *grpc.ClientConn
stub driverpb.DriverClient
platform string
}
// SetPlatform records the target platform so capability methods (e.g.
// ForegroundApp) can pick the right backend. The caller sets this right after
// Dial.
func (c *Client) SetPlatform(platform string) { c.platform = platform }
// ForegroundApp reports the foreground package. Only Android is supported (via
// adb); other platforms return "" so the runner skips app-scope enforcement.
func (c *Client) ForegroundApp(ctx context.Context) (string, error) {
if c.platform != "android" {
return "", nil
}
return android.ForegroundPackage(ctx)
}
// FocusedWindowApp reports the package owning the focused window. Only Android
// is supported (via adb); other platforms return "" so the startup gate falls
// back to the foreground-app signal.
func (c *Client) FocusedWindowApp(ctx context.Context) (string, error) {
if c.platform != "android" {
return "", nil
}
return android.FocusedWindowPackage(ctx)
}
// Dial connects to the sidecar gRPC server at the given address.
// Address must be a host:port pair, typically "127.0.0.1:<sidecar-port>".
func Dial(address string) (*Client, error) {
connection, err := grpc.NewClient(address, grpc.WithTransportCredentials(insecure.NewCredentials()))
if err != nil {
return nil, fmt.Errorf("dial sidecar: %w", err)
}
return &Client{connection: connection, stub: driverpb.NewDriverClient(connection)}, nil
}
func (c *Client) Close() error { return c.connection.Close() }
// WaitForHealth polls the sidecar's Health RPC until it returns Ready=true
// or the context is canceled.
func (c *Client) WaitForHealth(ctx context.Context, pollInterval time.Duration) error {
if pollInterval <= 0 {
pollInterval = 100 * time.Millisecond
}
for {
response, err := c.stub.Health(ctx, &driverpb.Empty{})
if err == nil && response.GetReady() {
return nil
}
select {
case <-ctx.Done():
return ctx.Err()
case <-time.After(pollInterval):
}
}
}
func (c *Client) Launch(ctx context.Context, bundleID string, clearState bool, env map[string]string) error {
_, err := c.stub.Launch(ctx, &driverpb.LaunchRequest{
BundleId: bundleID,
ClearState: clearState,
Env: env,
})
return err
}
func (c *Client) Terminate(ctx context.Context) error {
_, err := c.stub.Terminate(ctx, &driverpb.Empty{})
return err
}
func (c *Client) Tap(ctx context.Context, x, y int) error {
_, err := c.stub.Tap(ctx, &driverpb.Point{X: int32(x), Y: int32(y)})
return err
}
func (c *Client) LongPress(ctx context.Context, x, y int) error {
_, err := c.stub.LongPress(ctx, &driverpb.Point{X: int32(x), Y: int32(y)})
return err
}
func (c *Client) TapSelector(ctx context.Context, selector string) error {
_, err := c.stub.TapSelector(ctx, &driverpb.Selector{Value: selector})
return err
}
// doubleTapGap is the inter-tap delay for the selector fallback: short enough
// to land both events inside a sub-100 ms race window, long enough for the
// sidecar to serialize two MotionEvent streams.
const doubleTapGap = 50 * time.Millisecond
// DoubleTap dispatches the native RPC so the backend can land both taps as
// close together as the platform allows. Composing two Tap round trips from
// here spreads them by hundreds of milliseconds on iOS, wide enough for
// navigation to interleave between the taps.
func (c *Client) DoubleTap(ctx context.Context, x, y int) error {
_, err := c.stub.DoubleTap(ctx, &driverpb.Point{X: int32(x), Y: int32(y)})
return err
}
func (c *Client) DoubleTapSelector(ctx context.Context, selector string) error {
return doubleTap(ctx, func() error { return c.TapSelector(ctx, selector) })
}
func doubleTap(ctx context.Context, tap func() error) error {
if err := tap(); err != nil {
return err
}
timer := time.NewTimer(doubleTapGap)
defer timer.Stop()
select {
case <-ctx.Done():
return ctx.Err()
case <-timer.C:
}
return tap()
}
func (c *Client) InputText(ctx context.Context, text string) error {
_, err := c.stub.InputText(ctx, &driverpb.Text{Value: text})
return err
}
func (c *Client) EraseText(ctx context.Context, characterCount int) error {
_, err := c.stub.EraseText(ctx, &driverpb.EraseTextRequest{CharacterCount: int32(characterCount)})
return err
}
func (c *Client) Swipe(ctx context.Context, fromX, fromY, toX, toY int, duration time.Duration) error {
_, err := c.stub.Swipe(ctx, &driverpb.SwipeRequest{
From: &driverpb.Point{X: int32(fromX), Y: int32(fromY)},
To: &driverpb.Point{X: int32(toX), Y: int32(toY)},
DurationMillis: duration.Milliseconds(),
})
return err
}
func (c *Client) PressKey(ctx context.Context, key string) error {
_, err := c.stub.PressKey(ctx, &driverpb.PressKeyRequest{Key: key})
return err
}
func (c *Client) RecentLogs(ctx context.Context, since time.Time, minLevel string) ([]driver.LogEntry, error) {
sinceMillis := int64(0)
if !since.IsZero() {
sinceMillis = since.UnixMilli()
}
response, err := c.stub.RecentLogs(ctx, &driverpb.RecentLogsRequest{
SinceUnixMillis: sinceMillis,
LevelAtLeast: minLevel,
})
if err != nil {
return nil, err
}
entries := response.GetEntries()
result := make([]driver.LogEntry, 0, len(entries))
for _, entry := range entries {
result = append(result, driver.LogEntry{
UnixMillis: entry.GetUnixMillis(),
Level: entry.GetLevel(),
Tag: entry.GetTag(),
Message: entry.GetMessage(),
})
}
return result, nil
}
func (c *Client) Hierarchy(ctx context.Context) (string, error) {
response, err := c.stub.Hierarchy(ctx, &driverpb.Empty{})
if err != nil {
return "", err
}
return response.GetJson(), nil
}
func (c *Client) Screenshot(ctx context.Context) (driver.Image, error) {
response, err := c.stub.Screenshot(ctx, &driverpb.Empty{})
if err != nil {
return driver.Image{}, err
}
return driver.Image{
PNG: response.GetPng(),
Width: int(response.GetWidth()),
Height: int(response.GetHeight()),
}, nil
}
// Snapshot fetches hierarchy and screenshot in a single sidecar round-trip.
// The sidecar serializes the two reads behind a mutex so the returned pair
// describes the same on-device frame, removing the cross-fade race the
// runner used to see when fetching them as independent goroutines.
func (c *Client) Snapshot(ctx context.Context) (string, driver.Image, error) {
response, err := c.stub.Snapshot(ctx, &driverpb.Empty{})
if err != nil {
return "", driver.Image{}, err
}
image := response.GetScreenshot()
return response.GetHierarchy().GetJson(), driver.Image{
PNG: image.GetPng(),
Width: int(image.GetWidth()),
Height: int(image.GetHeight()),
}, nil
}
func (c *Client) WaitForIdle(ctx context.Context, duration time.Duration) error {
_, err := c.stub.WaitForIdle(ctx, &driverpb.Duration{Millis: duration.Milliseconds()})
return err
}
func (c *Client) Health(ctx context.Context) (driver.Health, error) {
response, err := c.stub.Health(ctx, &driverpb.Empty{})
if err != nil {
return driver.Health{}, err
}
return driver.Health{
Ready: response.GetReady(),
Version: response.GetVersion(),
Platform: response.GetPlatform(),
}, nil
}
func (c *Client) Metrics(ctx context.Context, bundleID string) (driver.Metrics, error) {
response, err := c.stub.Metrics(ctx, &driverpb.MetricsRequest{BundleId: bundleID})
if err != nil {
return driver.Metrics{}, err
}
return driver.Metrics{
CPUPercent: response.GetCpuPercent(),
HeapBytes: response.GetHeapBytes(),
TotalMemoryBytes: response.GetTotalMemoryBytes(),
}, nil
}
var _ driver.DeviceDriver = (*Client)(nil)