Files
ch934x_serial/lib/ch934x_serial_method_channel.dart
T
Developer 90de9121ff refactor(android): 重构Android端实现使用官方SDK替代反射调用
- 移除反射机制,直接集成CH934XLib.jar官方SDK
- 添加CH934XManager初始化逻辑并处理Application上下文兼容性
- 实现设备枚举、串口打开关闭等核心功能的直接调用
- 集成IDataCallback和IModemStatus回调处理
- 更新异常回调机制,支持原生层主动推送异常事件
- 优化设备连接状态管理和USB权限处理
- 为Dart模型类添加相等性比较和哈希码实现
- 更新示例应用UI以适配新的串口索引选择逻辑
2026-07-06 16:48:14 +08:00

214 lines
5.8 KiB
Dart

import 'dart:async';
import 'package:flutter/foundation.dart';
import 'package:flutter/services.dart';
import 'ch934x_serial_platform_interface.dart';
import 'src/models/models.dart';
/// MethodChannel 实现的 [Ch934xSerialPlatform]。
///
/// 在 Android 端通过同一 MethodChannel 与原生层通信,
/// 命名规则:方法名使用下划线小写,字段名使用驼峰式以便
/// 直接对应 Java 侧 Map 的 key。
class MethodChannelCh934xSerial extends Ch934xSerialPlatform {
/// 测试时可被替换的 MethodChannel。
@visibleForTesting
final MethodChannel methodChannel =
const MethodChannel('ch934x_serial');
/// 通知 Dart 侧的异常事件流,用于支持 `setExceptionCallback`。
final StreamController<Ch934xException> _exceptionController =
StreamController<Ch934xException>.broadcast();
/// 接收来自原生层主动调用的 `onException` 消息。
Future<void> _onNativeMethodCall(MethodCall call) async {
if (call.method == 'onException') {
final args = call.arguments;
if (args is Map) {
_exceptionController.add(
Ch934xException(
type: (args['type'] as int?) ?? Ch934xExceptionType.unknown,
message: args['message'] as String?,
cause: args['cause'] as String?,
),
);
}
}
}
@override
Future<List<Ch934xDeviceInfo>> getDeviceList() async {
final raw = await methodChannel.invokeMethod<List<dynamic>>('getDeviceList');
if (raw == null) {
return const <Ch934xDeviceInfo>[];
}
return raw
.whereType<Map>()
.map((e) => Ch934xDeviceInfo.fromMap(Map<dynamic, dynamic>.from(e)))
.toList(growable: false);
}
@override
Future<String?> getSerialNumber(int deviceId) {
return methodChannel.invokeMethod<String>(
'getSerialNumber',
<String, Object>{'deviceId': deviceId},
);
}
@override
Future<int> getDeviceType(int deviceId) async {
final result = await methodChannel.invokeMethod<int>(
'getDeviceType',
<String, Object>{'deviceId': deviceId},
);
return result ?? Ch934xDeviceType.unknown;
}
@override
Future<List<Ch934xSerialPortInfo>> getSerialPortList(
int deviceId, {
required int interfaceNumber,
}) async {
final raw = await methodChannel.invokeMethod<List<dynamic>>(
'getSerialPortList',
<String, Object>{
'deviceId': deviceId,
'interfaceNumber': interfaceNumber,
},
);
if (raw == null) {
return const <Ch934xSerialPortInfo>[];
}
return raw
.whereType<Map>()
.map((e) => Ch934xSerialPortInfo.fromMap(Map<dynamic, dynamic>.from(e)))
.toList(growable: false);
}
@override
Future<bool> openPort(Ch934xPortTarget target) async {
final result = await methodChannel.invokeMethod<bool>(
'openPort',
target.toMap(),
);
return result ?? false;
}
@override
Future<bool> closePort() async {
final result = await methodChannel.invokeMethod<bool>('closePort');
return result ?? false;
}
@override
Future<bool> setActivePort(int serialPortIndex) async {
if (serialPortIndex < 0) {
return false;
}
final result = await methodChannel.invokeMethod<bool>(
'setActivePort',
<String, Object>{'serialPortIndex': serialPortIndex},
);
return result ?? false;
}
@override
Future<Uint8List> read(int length) async {
if (length <= 0) {
return Uint8List(0);
}
final raw = await methodChannel.invokeMethod<Uint8List>(
'read',
<String, Object>{'length': length},
);
return raw ?? Uint8List(0);
}
@override
Future<int> write(Uint8List data) async {
if (data.isEmpty) {
return 0;
}
final result = await methodChannel.invokeMethod<int>(
'write',
<String, Object>{'data': data},
);
return result ?? 0;
}
@override
Future<bool> setGpioOutput({
required int gpioNumber,
required int level,
}) async {
final result = await methodChannel.invokeMethod<bool>(
'setGpioOutput',
<String, Object>{
'gpioNumber': gpioNumber,
'level': level,
},
);
return result ?? false;
}
@override
Future<int> getGpioInput(int gpioNumber) async {
final result = await methodChannel.invokeMethod<int>(
'getGpioInput',
<String, Object>{'gpioNumber': gpioNumber},
);
return result ?? -1;
}
@override
Future<bool> setModemControl({required int dtr, required int rts}) async {
final result = await methodChannel.invokeMethod<bool>(
'setModemControl',
<String, Object>{
'dtr': dtr,
'rts': rts,
},
);
return result ?? false;
}
@override
Future<int> getModemStatus() async {
final result = await methodChannel.invokeMethod<int>('getModemStatus');
return result ?? 0;
}
@override
Future<void> setExceptionCallback(
void Function(Ch934xException exception) onException,
) async {
// 注册接收原生层主动推送的 `onException` 事件。
methodChannel.setMethodCallHandler(_onNativeMethodCall);
_exceptionController.stream.listen(onException);
await methodChannel.invokeMethod<void>('setExceptionCallback');
}
/// 由原生层主动调用的入口,对应文档 7.3.1 中的 `onException` 回调。
///
/// 必须在原生层将 `MethodChannel` 的 `setMethodCallHandler` 调通后
/// 才会被触发;此方法在测试中也可直接调用,用于模拟异常事件。
@visibleForTesting
void dispatchException({
required int type,
String? message,
String? cause,
}) {
_exceptionController.add(
Ch934xException(type: type, message: message, cause: cause),
);
}
/// 释放内部资源,通常仅在测试或热重载场景下使用。
@visibleForTesting
void dispose() {
_exceptionController.close();
}
}