Files
sanderling/internal/ios/device.go
T

130 lines
4.0 KiB
Go

package ios
import (
"context"
"encoding/json"
"fmt"
"os"
"os/exec"
"strings"
)
// Device is a physical iOS device resolved from devicectl. A device carries two
// identifiers: HardwareUDID feeds xcodebuild -destination and the usbmux device
// match, while CoreDeviceID feeds devicectl install/uninstall.
type Device struct {
Name string
HardwareUDID string
CoreDeviceID string
}
// coreDevice mirrors the fields of one entry in devicectl's JSON device list.
type coreDevice struct {
Identifier string `json:"identifier"`
HardwareProperties struct {
UDID string `json:"udid"`
} `json:"hardwareProperties"`
DeviceProperties struct {
Name string `json:"name"`
} `json:"deviceProperties"`
}
type coreDeviceList struct {
Result struct {
Devices []coreDevice `json:"devices"`
} `json:"result"`
}
// listDevices is a seam: overridable in tests so ResolveDevice runs against
// canned devicectl output without invoking xcrun.
var listDevices = coreDevices
// ConnectedDevices lists the physical iOS devices devicectl reports. The doctor
// uses it to confirm at least one device is connected and paired.
func ConnectedDevices(ctx context.Context) ([]Device, error) {
return listDevices(ctx)
}
// ResolveDevice picks the physical iOS device a run drives. An empty query
// resolves the single connected device (an error names them all when several
// are connected). A non-empty query matches a device by name, hardware UDID, or
// CoreDevice id. No match and an ambiguous match are both errors that list the
// connected devices so the caller can refine --ios-device.
func ResolveDevice(ctx context.Context, query string) (Device, error) {
devices, err := listDevices(ctx)
if err != nil {
return Device{}, fmt.Errorf("list devices: %w", err)
}
if len(devices) == 0 {
return Device{}, fmt.Errorf("no connected iOS device found; connect and pair an iPhone, then check `xcrun devicectl list devices`")
}
if query == "" {
if len(devices) == 1 {
return devices[0], nil
}
return Device{}, fmt.Errorf("multiple connected iOS devices; pass --ios-device to select one:%s", deviceLines(devices))
}
var matches []Device
for _, device := range devices {
if device.Name == query || device.HardwareUDID == query || device.CoreDeviceID == query {
matches = append(matches, device)
}
}
switch len(matches) {
case 1:
return matches[0], nil
case 0:
return Device{}, fmt.Errorf("no connected iOS device matches %q; connected devices:%s", query, deviceLines(devices))
default:
return Device{}, fmt.Errorf("--ios-device %q matches multiple devices; select by hardware UDID or CoreDevice id:%s", query, deviceLines(matches))
}
}
func deviceLines(devices []Device) string {
var lines strings.Builder
for _, device := range devices {
fmt.Fprintf(&lines, "\n %s (udid %s, id %s)", device.Name, device.HardwareUDID, device.CoreDeviceID)
}
return lines.String()
}
// coreDevices invokes devicectl and parses its JSON device list. devicectl
// writes the JSON to a file path rather than stdout, so a temp file backs the
// --json-output flag and is read back after the command runs.
func coreDevices(ctx context.Context) ([]Device, error) {
outputFile, err := os.CreateTemp("", "sanderling-devices-*.json")
if err != nil {
return nil, err
}
outputPath := outputFile.Name()
outputFile.Close()
defer os.Remove(outputPath)
if err := exec.CommandContext(ctx, "xcrun", "devicectl", "list", "devices", "--json-output", outputPath).Run(); err != nil {
return nil, fmt.Errorf("xcrun devicectl list devices: %w", err)
}
data, err := os.ReadFile(outputPath)
if err != nil {
return nil, err
}
return parseDevices(data)
}
func parseDevices(data []byte) ([]Device, error) {
var list coreDeviceList
if err := json.Unmarshal(data, &list); err != nil {
return nil, err
}
var devices []Device
for _, entry := range list.Result.Devices {
devices = append(devices, Device{
Name: entry.DeviceProperties.Name,
HardwareUDID: entry.HardwareProperties.UDID,
CoreDeviceID: entry.Identifier,
})
}
return devices, nil
}