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Author SHA1 Message Date
sepakeloudest d99f588a5b feat: 修改win的配置
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2025-11-20 07:02:10 -08:00
sepakeloudest 691dd6e1d6 feat: 修改bug
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2025-11-20 06:34:12 -08:00
sepakeloudest b442289b8a feat: 修改bug
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2025-11-20 06:19:05 -08:00
sepakeloudest 89d13e6237 feat: 修改兼容 2025-11-20 00:51:14 -08:00
sepakeloudest 8fd742a688 feat: 修改兼容 2025-11-19 04:06:46 -08:00
sepakeloudest 325a63d35f feat: 完成国家配置
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2025-11-19 01:06:48 -08:00
sepakeloudest 679c303457 feat: 1.新增在 VPN 配置中添加了一条规则,2.修复全局代理无法使用 2025-11-18 05:15:06 -08:00
sepakeloudest 59aa67d456 feat: 提交国家分组功能和debug功能
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2025-11-16 22:51:30 -08:00
sepakeloudest 2a1ee3018d feat: 提交国家分组功能和debug功能 2025-11-16 22:50:09 -08:00
sepakeloudest 76e83e0135 feat: 先改变节点选择方法
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2025-11-14 20:19:10 -08:00
sepakeloudest 89d6ec3c76 feat: 先改变节点选择方法
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2025-11-14 20:18:38 -08:00
sepakeloudest 670eb7ebc9 feat: 保存节点调试进度
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2025-11-13 22:43:27 -08:00
sepakeloudest 46295f4543 feat: 修改windows构建
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2025-11-13 05:24:35 -08:00
sepakeloudest a47174df56 feat: 初始化并发问题处理
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2025-11-13 05:15:18 -08:00
sepakeloudest 748ec6bee9 feat: 提交国家选择
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2025-11-11 01:29:16 -08:00
sepakeloudest a884e6c838 feat: 修改id和sn显示
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2025-11-09 22:55:01 -08:00
sepakeloudest 920b86e56a feat: 修改代码冲突
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2025-11-09 22:46:53 -08:00
sepakeloudest a78b40c339 feat: 修改代码冲突
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2025-11-09 22:43:57 -08:00
40 changed files with 2164 additions and 676 deletions
+3 -2
View File
@@ -1,3 +1,4 @@
[submodule "libcore"]
path = libcore
url = https://github.com/hiddify/hiddify-next-core
path = libcore
url = https://github.com/hiddify/hiddify-next-core
branch = main
+3 -3
View File
@@ -57,7 +57,7 @@ android {
defaultConfig {
applicationId "app.hifastvpn.com"
minSdkVersion flutter.minSdkVersion
targetSdkVersion 36
targetSdkVersion 34
versionCode flutterVersionCode.toInteger()
versionName flutterVersionName
multiDexEnabled true
@@ -105,8 +105,8 @@ android {
debugSymbolLevel 'FULL'
}
// 禁用代码混淆和资源压缩,解决VPN连接问题
minifyEnabled true
shrinkResources true
minifyEnabled false
shrinkResources false
// proguardFiles getDefaultProguardFile('proguard-android.txt'), 'proguard-rules.pro'
}
}
+5
View File
@@ -34,6 +34,11 @@
<uses-permission android:name="android.permission.READ_EXTERNAL_STORAGE"/>
<uses-permission android:name="android.permission.WRITE_EXTERNAL_STORAGE"/>
<uses-permission android:name="android.permission.NEARBY_WIFI_DEVICES" />
<uses-permission android:name="android.permission.ACCESS_FINE_LOCATION" />
<!-- 如果 targetSdkVersion >= 33 -->
<uses-permission android:name="android.permission.POST_NOTIFICATIONS" />
<application
android:name=".Application"
android:banner="@mipmap/ic_banner"
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+2 -2
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@@ -193,7 +193,7 @@
"rewardDetails": "Reward Details >",
"steps": "Invitation Steps",
"inviteFriend": "Invite Friends",
"acceptInvite": "Friends accept invitation\nPlace order and register",
"acceptInvite": "Friends accept invitationPlace order and register",
"getReward": "Get Reward",
"shareLink": "Share Link",
"shareQR": "Share QR Code",
@@ -398,7 +398,7 @@
"content": "Would you like to update now?",
"updateNow": "Update Now",
"updateLater": "Later",
"defaultContent": "1. Optimize app performance\n2. Fix known issues\n3. Improve user experience"
"defaultContent": "1. Optimize app performance2. Fix known issues3. Improve user experience"
},
"country": {
"cn": "China",
+2 -2
View File
@@ -256,7 +256,7 @@
"rewardDetails": "Detalles de recompensa >",
"steps": "Pasos de invitación",
"inviteFriend": "Invitar amigo",
"acceptInvite": "El amigo acepta la invitación\ny se registra",
"acceptInvite": "El amigo acepta la invitacióny se registra",
"getReward": "Obtener recompensa",
"shareLink": "Compartir por enlace",
"shareQR": "Compartir por código QR",
@@ -404,7 +404,7 @@
"content": "¿Actualizar ahora?",
"updateNow": "Actualizar ahora",
"updateLater": "Más tarde",
"defaultContent": "1. Optimización del rendimiento de la aplicación\n2. Corrección de problemas conocidos\n3. Mejora de la experiencia del usuario"
"defaultContent": "1. Optimización del rendimiento de la aplicación2. Corrección de problemas conocidos3. Mejora de la experiencia del usuario"
},
"kr_invite": {
"close": "Cerrar",
+2 -2
View File
@@ -193,7 +193,7 @@
"rewardDetails": "Tasu üksikasjad >",
"steps": "Kutse Sammud",
"inviteFriend": "Kutsu Sõbrad",
"acceptInvite": "Sõbrad aktsepteerivad kutset\nTee tellimus ja registreeru",
"acceptInvite": "Sõbrad aktsepteerivad kutsetTee tellimus ja registreeru",
"getReward": "Saada Tasu",
"shareLink": "Jaga Linki",
"shareQR": "Jaga QR-koodi",
@@ -395,7 +395,7 @@
"content": "Uuendada nüüd?",
"updateNow": "Uuenda nüüd",
"updateLater": "Hiljem",
"defaultContent": "1. Rakenduse jõudluse optimeerimine\n2. Teadaolevate probleemide parandamine\n3. Kasutajamugavuse parandamine"
"defaultContent": "1. Rakenduse jõudluse optimeerimine2. Teadaolevate probleemide parandamine3. Kasutajamugavuse parandamine"
},
"country": {
"cn": "Hiina",
+2 -2
View File
@@ -209,7 +209,7 @@
"rewardDetails": "報酬の詳細 >",
"steps": "招待の手順",
"inviteFriend": "友達を招待",
"acceptInvite": "友達が招待を受け入れ\n注文して登録",
"acceptInvite": "友達が招待を受け入れ注文して登録",
"getReward": "報酬を獲得",
"shareLink": "リンクを共有",
"shareQR": "QRコードを共有",
@@ -412,7 +412,7 @@
"content": "今すぐアップデートしますか?",
"updateNow": "今すぐアップデート",
"updateLater": "後で",
"defaultContent": "1. アプリのパフォーマンス最適化\n2. 既知の問題の修正\n3. ユーザー体験の向上"
"defaultContent": "1. アプリのパフォーマンス最適化2. 既知の問題の修正3. ユーザー体験の向上"
},
"country": {
"cn": "中国",
+1 -1
View File
@@ -387,7 +387,7 @@
"content": "Хотите обновить сейчас?",
"updateNow": "Обновить сейчас",
"later": "Позже",
"defaultContent": "1. Оптимизация производительности приложения\n2. Исправление известных проблем\n3. Улучшение пользовательского опыта"
"defaultContent": "1. Оптимизация производительности приложения2. Исправление известных проблем3. Улучшение пользовательского опыта"
},
"country": {
"cn": "Китай",
+9 -9
View File
@@ -232,13 +232,13 @@
"longestConnection": "最长连接时间",
"days": "{days}天",
"daysOfWeek": {
"monday": "周\n一",
"tuesday": "周\n二",
"wednesday": "周\n三",
"thursday": "周\n四",
"friday": "周\n五",
"saturday": "周\n六",
"sunday": "周\n日"
"monday": "周一",
"tuesday": "周二",
"wednesday": "周三",
"thursday": "周四",
"friday": "周五",
"saturday": "周六",
"sunday": "周日"
},
"processTrafficFailed": "处理流量日志数据失败"
},
@@ -256,7 +256,7 @@
"rewardDetails": "奖励明细 >",
"steps": "邀请步骤",
"inviteFriend": "邀请好友",
"acceptInvite": "好友接受邀请\n下单并注册",
"acceptInvite": "好友接受邀请下单并注册",
"getReward": "获得奖励",
"shareLink": "分享链接",
"shareQR": "分享二维码",
@@ -415,7 +415,7 @@
"content": "是否立即更新?",
"updateNow": "立即更新",
"updateLater": "稍后再说",
"defaultContent": "1. 优化应用性能\n2. 修复已知问题\n3. 提升用户体验"
"defaultContent": "1. 优化应用性能2. 修复已知问题3. 提升用户体验"
},
"country": {
"cn": "中国",
@@ -170,13 +170,13 @@
"longestConnection": "最長連接時間",
"days": "{days}天",
"daysOfWeek": {
"monday": "週\n一",
"tuesday": "週\n二",
"wednesday": "週\n三",
"thursday": "週\n四",
"friday": "週\n五",
"saturday": "週\n六",
"sunday": "週\n日"
"monday": "週一",
"tuesday": "週二",
"wednesday": "週三",
"thursday": "週四",
"friday": "週五",
"saturday": "週六",
"sunday": "週日"
},
"processTrafficFailed": "處理流量日誌資料失敗"
},
@@ -194,7 +194,7 @@
"rewardDetails": "獎勵明細 >",
"steps": "邀請步驟",
"inviteFriend": "邀請好友",
"acceptInvite": "好友接受邀請\n下單並註冊",
"acceptInvite": "好友接受邀請下單並註冊",
"getReward": "獲得獎勵",
"shareLink": "分享連結",
"shareQR": "分享二維碼",
@@ -332,7 +332,7 @@
"content": "是否立即更新?",
"updateNow": "立即更新",
"updateLater": "稍後",
"defaultContent": "1. 優化應用性能\n2. 修復已知問題\n3. 改進用戶體驗"
"defaultContent": "1. 優化應用性能2. 修復已知問題3. 改進用戶體驗"
},
"orderStatus": {
"title": "訂單狀態",
+6 -1
View File
@@ -1,4 +1,5 @@
name: BearVPN
name: HiFastVPN
app_name: HiFastVPN
version: 1.0.0
build_number: 1
targets:
@@ -11,3 +12,7 @@ targets:
enable: true
# 不签名
sign: false
windows:
exe:
enable: true
icon: assets/images/tray_icon.ico
+1 -1
View File
@@ -1447,7 +1447,7 @@ class AppConfig {
kr_official_telegram = config.kr_official_telegram;
kr_official_telephone = config.kr_official_telephone;
kr_invitation_link = config.kr_invitation_link;
kr_website_id = config.kr_website_id;
// kr_website_id = config.kr_website_id;
if (config.kr_domains.isNotEmpty) {
KRDomain.kr_handleDomains(config.kr_domains);
}
+296 -198
View File
@@ -28,14 +28,66 @@ class KROutboundItem {
/// URL
String url = "";
@override
String toString() {
return 'KROutboundItem(tag: $tag, country: $country, delay: ${urlTestDelay.value}ms)';
}
// ✅ 1. 将传入的 nodeListItem 保存为类的 final 成员变量
final KrNodeListItem nodeListItem;
/// 服务器类型
/// 构造函数,接受 KrNodeListItem 对象并初始化 KROutboundItem
KROutboundItem(KrNodeListItem nodeListItem) {
/// 构造函数,接受 KrItem 对象并初始化 KROutboundItem
KROutboundItem(this.nodeListItem) {
_initFromNodeListItem();
}
/// 静态工厂:构造虚拟 urltest 节点(用于 ${country}-auto
factory KROutboundItem.fromVirtual(String tag, String country, Map<String, dynamic> config) {
// 构造一个虚拟 KrNodeListItem,仅填充必要字段
final virtualNode = KrNodeListItem(
id: 0,
name: tag,
protocol: 'urltest',
serverAddr: '',
port: 0,
uuid: '',
config: jsonEncode(config),
city: '',
country: country,
tags: [],
latitude: 0,
longitude: 0,
latitudeCountry: 0,
longitudeCountry: 0,
relayNode: '',
relayMode: 'none',
protocols: '',
method: '',
speedLimit: 0,
traffic: 0,
trafficRatio: 0,
upload: 0,
download: 0,
startTime: '',
expireTime: '',
);
return KROutboundItem._virtual(virtualNode);
}
/// 私有构造:用于虚拟节点,避免重复解析
KROutboundItem._virtual(this.nodeListItem) {
// 直接填充虚拟节点所需字段
id = nodeListItem.id.toString();
protocol = nodeListItem.protocol;
tag = nodeListItem.name;
serverAddr = nodeListItem.serverAddr;
city = nodeListItem.city;
country = nodeListItem.country;
latitude = nodeListItem.latitude;
latitudeCountry = nodeListItem.latitudeCountry;
longitude = nodeListItem.longitude;
longitudeCountry = nodeListItem.longitudeCountry;
config = jsonDecode(nodeListItem.config); // 已知 config 有效
}
/// 初始化逻辑提取,供主构造调用
void _initFromNodeListItem() {
id = nodeListItem.id.toString();
protocol = nodeListItem.protocol;
latitude = nodeListItem.latitude;
@@ -58,160 +110,163 @@ class KROutboundItem {
return;
}
// 兜底:尝试解析 config 字段(旧API格式)
if (nodeListItem.config.isEmpty) {
if (kDebugMode) {
print('❌ 节点 ${nodeListItem.name} 缺少配置信息(无port或config)');
}
config = {};
return;
}
late Map<String, dynamic> json;
try {
json = jsonDecode(nodeListItem.config) as Map<String, dynamic>;
} catch (e) {
if (kDebugMode) {
print('❌ 节点 ${nodeListItem.name} 的 config 解析失败: $e,尝试使用直接字段');
}
if (kDebugMode) {
print('📄 Config 内容: ${nodeListItem.config}');
}
_buildConfigFromFields(nodeListItem);
return;
}
switch (nodeListItem.protocol) {
case "vless":
final securityConfig =
json["security_config"] as Map<String, dynamic>? ?? {};
// 智能设置 server_name
String serverName = securityConfig["sni"] ?? "";
if (serverName.isEmpty) {
serverName = nodeListItem.serverAddr;
// 兜底:尝试 config 字段解析(旧API格式)
if (nodeListItem.config.isNotEmpty) {
try {
final json = jsonDecode(nodeListItem.config) as Map<String, dynamic>;
if (kDebugMode) {
print('📄 解析到 config JSON: $json');
}
config = {
"type": "vless",
"tag": nodeListItem.name,
"server": nodeListItem.serverAddr,
"server_port": json["port"],
"uuid": nodeListItem.uuid,
if (json["flow"] != null && json["flow"] != "none")
"flow": json["flow"],
if (json["transport"] != null && json["transport"] != "tcp")
"transport": _buildTransport(json),
"tls": {
"enabled": json["security"] == "tls",
"server_name": serverName,
"insecure": securityConfig["allow_insecure"] ?? true,
"utls": {
"enabled": true,
"fingerprint": securityConfig["fingerprint"] ?? "chrome"
// 提取 transport 配置
Map<String, dynamic>? transportConfig;
if (json['transport'] != null && json['transport'] != 'tcp') {
transportConfig = _buildTransport(json);
if (kDebugMode) {
print('✅ 找到 transport 配置: $transportConfig');
}
}
// 提取 security_config
Map<String, dynamic>? securityConfig;
if (json['security_config'] != null) {
securityConfig = json['security_config'] as Map<String, dynamic>;
if (kDebugMode) {
print('✅ 找到 security_config: $securityConfig');
}
}
// 根据协议类型构建配置
switch (nodeListItem.protocol) {
case "shadowsocks":
config = {
"type": "shadowsocks",
"tag": nodeListItem.name,
"server": nodeListItem.serverAddr,
"server_port": json["port"],
"method": json["method"],
"password": nodeListItem.uuid
};
break;
case "vless":
final bool isDomain = !RegExp(r'^\d{1,3}\.\d{1,3}\.\d{1,3}\.\d{1,3}$')
.hasMatch(nodeListItem.serverAddr);
config = {
"type": "vless",
"tag": nodeListItem.name,
"server": nodeListItem.serverAddr,
"server_port": json["port"],
"uuid": nodeListItem.uuid,
if (transportConfig != null) "transport": transportConfig,
if (json["security"] == "tls") "tls": {
"enabled": true,
if (isDomain) "server_name": securityConfig?["sni"] ?? nodeListItem.serverAddr,
"insecure": securityConfig?["allow_insecure"] ?? true,
"utls": {
"enabled": true,
"fingerprint": securityConfig?["fingerprint"] ?? "chrome"
}
}
};
break;
case "vmess":
final bool isDomain = !RegExp(r'^\d{1,3}\.\d{1,3}\.\d{1,3}\.\d{1,3}$')
.hasMatch(nodeListItem.serverAddr);
config = {
"type": "vmess",
"tag": nodeListItem.name,
"server": nodeListItem.serverAddr,
"server_port": json["port"],
"uuid": nodeListItem.uuid,
"alter_id": 0,
"security": "auto",
if (transportConfig != null) "transport": transportConfig,
if (json["security"] == "tls") "tls": {
"enabled": true,
if (isDomain) "server_name": securityConfig?["sni"] ?? nodeListItem.serverAddr,
"insecure": securityConfig?["allow_insecure"] ?? true,
"utls": {
"enabled": true,
"fingerprint": securityConfig?["fingerprint"] ?? "chrome"
}
}
};
break;
case "trojan":
final bool isDomain = !RegExp(r'^\d{1,3}\.\d{1,3}\.\d{1,3}\.\d{1,3}$')
.hasMatch(nodeListItem.serverAddr);
config = {
"type": "trojan",
"tag": nodeListItem.name,
"server": nodeListItem.serverAddr,
"server_port": json["port"],
"password": nodeListItem.uuid,
if (transportConfig != null) "transport": transportConfig,
"tls": {
"enabled": json["security"] == "tls",
if (isDomain) "server_name": securityConfig?["sni"] ?? nodeListItem.serverAddr,
"insecure": securityConfig?["allow_insecure"] ?? true,
"utls": {
"enabled": true,
"fingerprint": securityConfig?["fingerprint"] ?? "chrome"
}
}
};
break;
case "hysteria":
case "hysteria2":
final securityConfig = json["security_config"] as Map<String, dynamic>? ?? {};
config = {
"type": "hysteria2",
"tag": nodeListItem.name,
"server": nodeListItem.serverAddr,
"server_port": json["port"],
"password": nodeListItem.uuid,
"up_mbps": 100,
"down_mbps": 100,
"obfs": {
"type": "salamander",
"password": json["obfs_password"] ?? nodeListItem.uuid
},
"tls": {
"enabled": true,
"server_name": securityConfig["sni"] ?? "",
"insecure": securityConfig["allow_insecure"] ?? true
}
};
break;
default:
if (kDebugMode) {
print('⚠️ 不支持的协议类型: ${nodeListItem.protocol}');
}
}
};
break;
case "vmess":
final securityConfig =
json["security_config"] as Map<String, dynamic>? ?? {};
// 智能设置 server_name
String serverName = securityConfig["sni"] ?? "";
if (serverName.isEmpty) {
serverName = nodeListItem.serverAddr;
config = {};
}
config = {
"type": "vmess",
"tag": nodeListItem.name,
"server": nodeListItem.serverAddr,
"server_port": json["port"],
"uuid": nodeListItem.uuid,
"alter_id": 0,
"security": "auto",
if (json["transport"] != null && json["transport"] != "tcp")
"transport": _buildTransport(json),
"tls": {
"enabled": json["security"] == "tls",
"server_name": serverName,
"insecure": securityConfig["allow_insecure"] ?? true,
"utls": {"enabled": true, "fingerprint": "chrome"}
// 检查 relayNode 是否为 JSON 字符串并解析
if (nodeListItem.relayNode.isNotEmpty && nodeListItem.relayMode != "none") {
final relayNodeJson = jsonDecode(nodeListItem.relayNode);
if (relayNodeJson is List && nodeListItem.relayMode != "none") {
// 随机选择一个元素
final randomNode = (relayNodeJson..shuffle()).first;
config["server"] = randomNode["host"]; // 提取 host
config["server_port"] = randomNode["port"]; // 提取 port
}
};
break;
case "shadowsocks":
config = {
"type": "shadowsocks",
"tag": nodeListItem.name,
"server": nodeListItem.serverAddr,
"server_port": json["port"],
"method": json["method"],
"password": nodeListItem.uuid
};
break;
case "hysteria":
case "hysteria2":
// 后端的 "hysteria" 实际上是 Hysteria2 协议
final securityConfig =
json["security_config"] as Map<String, dynamic>? ?? {};
config = {
"type": "hysteria2",
"tag": nodeListItem.name,
"server": nodeListItem.serverAddr,
"server_port": json["port"],
"password": nodeListItem.uuid,
"up_mbps": 100,
"down_mbps": 100,
"obfs": {
"type": "salamander",
"password": json["obfs_password"] ?? nodeListItem.uuid
},
"tls": {
"enabled": true,
"server_name": securityConfig["sni"] ?? "",
"insecure": securityConfig["allow_insecure"] ?? true
}
};
break;
case "trojan":
final securityConfig =
json["security_config"] as Map<String, dynamic>? ?? {};
// 智能设置 server_name
String serverName = securityConfig["sni"] ?? "";
if (serverName.isEmpty) {
// 如果没有配置 SNI,使用服务器地址
serverName = nodeListItem.serverAddr;
}
config = {
"type": "trojan",
"tag": nodeListItem.name,
"server": nodeListItem.serverAddr,
"server_port": json["port"],
"password": nodeListItem.uuid,
"tls": {
"enabled": json["security"] == "tls",
"server_name": serverName,
"insecure": securityConfig["allow_insecure"] ?? true,
"utls": {"enabled": true, "fingerprint": "chrome"}
}
};
break;
}
// 检查 relayNode 是否为 JSON 字符串并解析
if (nodeListItem.relayNode.isNotEmpty && nodeListItem.relayMode != "none") {
final relayNodeJson = jsonDecode(nodeListItem.relayNode);
if (relayNodeJson is List && nodeListItem.relayMode != "none") {
// 随机选择一个元素
final randomNode = (relayNodeJson..shuffle()).first;
config["server"] = randomNode["host"]; // 提取 host
config["server_port"] = randomNode["port"]; // 提取 port
} catch (e) {
if (kDebugMode) {
print('⚠️ 解析 config 字段失败: $e');
}
config = {};
}
}
// 解析配置
}
@override
String toString() {
return 'KROutboundItem(name: ${nodeListItem.name}, protocol: ${nodeListItem.protocol}, server: ${nodeListItem.serverAddr}, port: ${nodeListItem.port})';
}
/// 构建传输配置
@@ -249,31 +304,11 @@ class KROutboundItem {
if (kDebugMode) {
print('🔧 开始构建节点配置 - 协议: ${nodeListItem.protocol}, 名称: ${nodeListItem.name}');
}
if (kDebugMode) {
print('📋 节点详细信息:');
}
if (kDebugMode) {
print(' - serverAddr: ${nodeListItem.serverAddr}');
}
if (kDebugMode) {
print(' - port: ${nodeListItem.port}');
}
if (kDebugMode) {
print(' - uuid: ${nodeListItem.uuid}');
}
if (kDebugMode) {
print(' - method: ${nodeListItem.method}');
}
if (kDebugMode) {
print(' - config: ${nodeListItem.config}');
}
if (kDebugMode) {
print(' - protocols: ${nodeListItem.protocols}');
}
// 🔧 尝试从 config 字段解析 transport 配置
Map<String, dynamic>? transportConfig;
Map<String, dynamic>? securityConfig;
int actualPort = nodeListItem.port; // 🔧 使用局部变量存储实际端口
// 🔧 关键修复:优先从 protocols 字段解析配置
if (nodeListItem.protocols.isNotEmpty) {
@@ -307,6 +342,28 @@ class KROutboundItem {
}
if (matchedProtocol != null) {
// 🔧 关键修复:只在顶层端口为0时,才使用 protocols 中的端口
// 这样可以保留顶层的正确端口(如 53441),不被 protocols 数组中的端口(如 287)覆盖
if (actualPort == 0 && matchedProtocol['port'] != null) {
// 安全解析端口号
int protocolPort = 0;
final portValue = matchedProtocol['port'];
if (portValue is int) {
protocolPort = portValue;
} else if (portValue is String) {
protocolPort = int.tryParse(portValue) ?? 0;
}
if (protocolPort > 0) {
actualPort = protocolPort;
if (kDebugMode) {
print(' ✅ 从 protocols 使用端口: $protocolPort (顶层端口为0)');
}
}
} else if (kDebugMode && matchedProtocol['port'] != null) {
print(' ✅ 保留顶层端口: $actualPort (protocols中的端口: ${matchedProtocol['port']})');
}
// 提取 transport 配置
if (matchedProtocol['network'] != null || matchedProtocol['transport'] != null) {
final network = matchedProtocol['network'] ?? matchedProtocol['transport'];
@@ -402,7 +459,7 @@ class KROutboundItem {
switch (nodeListItem.protocol) {
case "shadowsocks":
// 优先使用 protocols 解析出来的 cipher,其次是 method 字段,最后才是默认值
// 优先使用 protocols 解析出来的 cipher,其次是 method 字段,最后才是默认值
String finalMethod = nodeListItem.method.isNotEmpty
? nodeListItem.method
: "2022-blake3-aes-256-gcm";
@@ -411,22 +468,21 @@ class KROutboundItem {
"type": "shadowsocks",
"tag": nodeListItem.name,
"server": nodeListItem.serverAddr,
"server_port": nodeListItem.port,
"server_port": actualPort,
"method": finalMethod,
"password": nodeListItem.uuid
};
if (kDebugMode) {
print('━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━');
print('✅ Shadowsocks 节点配置构建成功: ${nodeListItem.name}');
}
if (kDebugMode) {
print('📄 使用加密方法: $finalMethod');
}
if (kDebugMode) {
print('📄 完整配置: $config');
print('📄 完整配置 JSON:');
print(jsonEncode(config));
print('━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━');
}
break;
case "vless":
// 判断是否为域名(非IP地址)
// 判断是否为域名(非IP地址)
final bool isDomain = !RegExp(r'^\d{1,3}\.\d{1,3}\.\d{1,3}\.\d{1,3}$')
.hasMatch(nodeListItem.serverAddr);
@@ -436,17 +492,25 @@ class KROutboundItem {
serverName = securityConfig['sni'].toString();
}
// 🔧 关键修复:根据 security_config 判断是否启用 TLS
final bool vlessTlsEnabled = securityConfig?['tls_enabled'] ?? false;
// 🔧 关键修复:智能判断是否启用 TLS
// 1. 优先使用 securityConfig['tls_enabled']
// 2. 如果没有明确配置,根据端口和域名智能判断
bool vlessTlsEnabled = securityConfig?['tls_enabled'] ?? true; // 默认启用 TLS
// 如果端口是标准非TLS端口(80, 8080等),则禁用 TLS
if (nodeListItem.port == 80 || nodeListItem.port == 8080) {
vlessTlsEnabled = false;
}
if (kDebugMode) {
print('🔐 VLESS TLS 状态: enabled=$vlessTlsEnabled');
print('🔐 VLESS TLS 状态: enabled=$vlessTlsEnabled (port=${nodeListItem.port}, isDomain=$isDomain)');
}
config = {
"type": "vless",
"tag": nodeListItem.name,
"server": nodeListItem.serverAddr,
"server_port": nodeListItem.port,
"server_port": actualPort,
"uuid": nodeListItem.uuid,
if (transportConfig != null) "transport": transportConfig,
if (vlessTlsEnabled) "tls": {
@@ -460,14 +524,27 @@ class KROutboundItem {
}
};
if (kDebugMode) {
print('━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━');
print('✅ VLESS 节点配置构建成功: ${nodeListItem.name}');
}
if (kDebugMode) {
print('📄 完整配置: $config');
print('📋 原始节点信息:');
print(' - serverAddr: ${nodeListItem.serverAddr}');
print(' - port: ${nodeListItem.port}');
print(' - uuid: ${nodeListItem.uuid}');
print(' - protocols: ${nodeListItem.protocols}');
print('🔐 安全配置:');
print(' - TLS 启用: $vlessTlsEnabled');
print(' - 是域名: $isDomain');
print(' - server_name: $serverName');
print(' - securityConfig: $securityConfig');
print('📡 传输配置:');
print(' - transportConfig: $transportConfig');
print('📄 最终生成的完整配置 JSON:');
print(jsonEncode(config));
print('━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━');
}
break;
case "vmess":
// 判断是否为域名(非IP地址)
// 判断是否为域名(非IP地址)
final bool isDomain = !RegExp(r'^\d{1,3}\.\d{1,3}\.\d{1,3}\.\d{1,3}$')
.hasMatch(nodeListItem.serverAddr);
@@ -477,17 +554,25 @@ class KROutboundItem {
serverName = securityConfig['sni'].toString();
}
// 🔧 关键修复:根据 security_config 判断是否启用 TLS
final bool tlsEnabled = securityConfig?['tls_enabled'] ?? false;
// 🔧 关键修复:智能判断是否启用 TLS
// 1. 优先使用 securityConfig['tls_enabled']
// 2. 如果没有明确配置,根据端口和域名智能判断
bool tlsEnabled = securityConfig?['tls_enabled'] ?? true; // 默认启用 TLS
// 如果端口是标准非TLS端口(80, 8080等),则禁用 TLS
if (nodeListItem.port == 80 || nodeListItem.port == 8080) {
tlsEnabled = false;
}
if (kDebugMode) {
print('🔐 TLS 状态: enabled=$tlsEnabled');
print('🔐 VMess TLS 状态: enabled=$tlsEnabled (port=${nodeListItem.port}, isDomain=$isDomain)');
}
config = {
"type": "vmess",
"tag": nodeListItem.name,
"server": nodeListItem.serverAddr,
"server_port": nodeListItem.port,
"server_port": actualPort,
"uuid": nodeListItem.uuid,
"alter_id": 0,
"security": "auto",
@@ -503,14 +588,27 @@ class KROutboundItem {
}
};
if (kDebugMode) {
print('━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━');
print('✅ VMess 节点配置构建成功: ${nodeListItem.name}');
}
if (kDebugMode) {
print('📄 完整配置: $config');
print('📋 原始节点信息:');
print(' - serverAddr: ${nodeListItem.serverAddr}');
print(' - port: ${nodeListItem.port}');
print(' - uuid: ${nodeListItem.uuid}');
print(' - protocols: ${nodeListItem.protocols}');
print('🔐 安全配置:');
print(' - TLS 启用: $tlsEnabled');
print(' - 是域名: $isDomain');
print(' - server_name: $serverName');
print(' - securityConfig: $securityConfig');
print('📡 传输配置:');
print(' - transportConfig: $transportConfig');
print('📄 最终生成的完整配置 JSON:');
print(jsonEncode(config));
print('━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━');
}
break;
case "trojan":
// 判断是否为域名(非IP地址)
// 判断是否为域名(非IP地址)
final bool isDomain = !RegExp(r'^\d{1,3}\.\d{1,3}\.\d{1,3}\.\d{1,3}$')
.hasMatch(nodeListItem.serverAddr);
@@ -524,7 +622,7 @@ class KROutboundItem {
"type": "trojan",
"tag": nodeListItem.name,
"server": nodeListItem.serverAddr,
"server_port": nodeListItem.port,
"server_port": actualPort,
"password": nodeListItem.uuid,
if (transportConfig != null) "transport": transportConfig,
"tls": {
@@ -546,7 +644,7 @@ class KROutboundItem {
break;
case "hysteria":
case "hysteria2":
// 后端的 "hysteria" 实际上是 Hysteria2 协议
// 后端的 "hysteria" 实际上是 Hysteria2 协议
if (kDebugMode) {
print('🔍 构建 Hysteria2 节点: ${nodeListItem.name}');
}
@@ -88,6 +88,9 @@ class KrOutboundsList {
}
}
// 生成国家自动选择虚拟节点
_generateCountryAutoNodes(countryGroups);
// 将标签分组转换为 KRGroupOutboundList 并添加到 groupOutboundList
for (var tag in tagGroups.keys) {
final item = KRGroupOutboundList(
@@ -108,7 +111,41 @@ class KrOutboundsList {
country: country,
outboundList: countryGroups[country]!)); // 添加国家分组到列表
}
}
/// 生成国家自动选择虚拟节点
void _generateCountryAutoNodes(Map<String, List<KROutboundItem>> countryGroups) {
for (var entry in countryGroups.entries) {
final country = entry.key;
final nodes = entry.value;
final autoTag = '${country}-auto';
if (kDebugMode) {
print('🤖 生成国家自动选择节点: $autoTag, 包含 ${nodes.length} 个节点');
}
// 构建 urltest 配置
final urltestConfig = {
'type': 'urltest',
'tag': autoTag,
'outbounds': nodes.map((node) => node.tag).toList(),
'url': 'https://www.google.com/generate_204',
'interval': '10m',
'tolerance': 50,
"interrupt_exist_connections": true,
};
// 创建虚拟节点
final virtualNode = KROutboundItem.fromVirtual(autoTag, country, urltestConfig);
// 添加到各个列表
allList.add(virtualNode);
keyList[autoTag] = virtualNode;
// configJsonList.add(urltestConfig);
if (kDebugMode) {
print('✅ 生成虚拟节点: $autoTag, 配置: ${urltestConfig.toString()}');
}
}
}
}
+56 -13
View File
@@ -2,7 +2,7 @@ import 'dart:convert';
import 'package:kaer_with_panels/app/utils/kr_log_util.dart';
class KRNodeList {
final List<KrNodeListItem> list;
final List<KrNodeListItem> list;
final String subscribeId;
final String startTime;
final String expireTime;
@@ -35,8 +35,8 @@ class KRNodeList {
// 查找 id 匹配的订阅项
try {
subscribeData = listData.firstWhere(
(item) => (item as Map<String, dynamic>)['id']?.toString() == requestSubscribeId,
orElse: () => listData[0] as Map<String, dynamic>
(item) => (item as Map<String, dynamic>)['id']?.toString() == requestSubscribeId,
orElse: () => listData[0] as Map<String, dynamic>
) as Map<String, dynamic>;
KRLogUtil.kr_i('✅ 找到匹配的订阅项: id=$requestSubscribeId', tag: 'NodeList');
} catch (e) {
@@ -70,7 +70,7 @@ class KRNodeList {
class KrNodeListItem {
final int id;
String name;
String name;
final String uuid;
final String protocol;
final String relayMode;
@@ -136,25 +136,68 @@ class KrNodeListItem {
String method = json['method']?.toString() ?? ''; // 加密方法(Shadowsocks等)
final protocols = json['protocols']?.toString() ?? ''; // 协议配置JSON
// 🔧 如果有 protocols 字段,从中解析 port 和 cipher
// 🔧 打印原始节点 JSON(用于调试)
KRLogUtil.kr_i('━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━', tag: 'NodeList');
KRLogUtil.kr_i('📥 收到节点 API 原始数据:', tag: 'NodeList');
KRLogUtil.kr_i('节点名称: ${json['name']}', tag: 'NodeList');
KRLogUtil.kr_i('协议类型: ${json['protocol']}', tag: 'NodeList');
KRLogUtil.kr_i('完整 JSON:', tag: 'NodeList');
KRLogUtil.kr_i(jsonEncode(json), tag: 'NodeList');
// 🔧 如果有 protocols 字段,从中解析 cipher(但不覆盖顶层的 port
if (protocols.isNotEmpty) {
try {
final protocolsList = jsonDecode(protocols) as List;
final currentProtocol = json['protocol']?.toString().toLowerCase() ?? '';
KRLogUtil.kr_i('📋 protocols 字段内容 (${protocolsList.length} 个协议):', tag: 'NodeList');
for (var i = 0; i < protocolsList.length; i++) {
KRLogUtil.kr_i(' 协议 $i: ${jsonEncode(protocolsList[i])}', tag: 'NodeList');
}
if (protocolsList.isNotEmpty) {
final firstProtocol = protocolsList[0] as Map<String, dynamic>;
// 优先使用 protocols 中的配置
if (firstProtocol['port'] != null) {
port = _parseIntSafely(firstProtocol['port']);
// 🔧 修复:查找与当前协议类型匹配的配置,而不是直接使用第一个
Map<String, dynamic>? matchedProtocolConfig;
// 尝试找到协议类型匹配的配置
for (var protocolConfig in protocolsList) {
final configMap = protocolConfig as Map<String, dynamic>;
// 🔧 修复:API 使用的字段名是 'type',不是 'protocol'
final protocolType = (configMap['type'] ?? configMap['protocol'])?.toString().toLowerCase() ?? '';
// 检查是否匹配(支持 shadowsocks/ss, vmess, vless, trojan 等)
if (protocolType == currentProtocol ||
(currentProtocol == 'shadowsocks' && protocolType == 'ss') ||
(currentProtocol == 'ss' && protocolType == 'shadowsocks')) {
matchedProtocolConfig = configMap;
KRLogUtil.kr_i('🎯 找到匹配的协议配置: $protocolType', tag: 'NodeList');
break;
}
}
if (firstProtocol['cipher'] != null && firstProtocol['cipher'].toString().isNotEmpty) {
method = firstProtocol['cipher'].toString();
// 如果没找到匹配的,使用第一个配置(兼容旧API)
final targetProtocol = matchedProtocolConfig ?? (protocolsList[0] as Map<String, dynamic>);
// 🔧 关键修复:只在顶层没有 port 字段时,才使用 protocols 中的端口
// 这样可以保留顶层的正确端口(如 53441),不被 protocols 数组中的端口(如 287)覆盖
if (port == 0 && targetProtocol['port'] != null) {
port = _parseIntSafely(targetProtocol['port']);
KRLogUtil.kr_i('✅ 从 protocols 解析端口: $port', tag: 'NodeList');
} else {
KRLogUtil.kr_i('✅ 保留顶层端口: $port (protocols中的端口: ${targetProtocol['port']})', tag: 'NodeList');
}
// 提取 cipher(加密方法)
if (targetProtocol['cipher'] != null && targetProtocol['cipher'].toString().isNotEmpty) {
method = targetProtocol['cipher'].toString();
KRLogUtil.kr_i('✅ 从 protocols 解析 cipher: $method', tag: 'NodeList');
}
KRLogUtil.kr_i('从 protocols 解析: port=$port, cipher=$method', tag: 'NodeList');
}
} catch (e) {
KRLogUtil.kr_w('解析 protocols 字段失败: $e', tag: 'NodeList');
KRLogUtil.kr_w('⚠️ 解析 protocols 字段失败: $e', tag: 'NodeList');
}
}
KRLogUtil.kr_i('━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━', tag: 'NodeList');
return KrNodeListItem(
id: _parseIntSafely(json['id']),
@@ -12,6 +12,15 @@ class HINodeListController extends GetxController {
/// 首页服务
final KRHomeController homeController = Get.find<KRHomeController>();
/// 调试模式状态
final RxBool isDebugMode = false.obs;
/// 模式按钮点击计数器
int modeButtonClickCount = 0;
/// 最后一次点击时间
DateTime? lastModeButtonClickTime;
/// 获取连接类型字符串
String kr_getConnectionTypeString() {
final connectionType = KRSingBoxImp.instance.kr_connectionType.value;
@@ -41,4 +50,48 @@ class HINodeListController extends GetxController {
}
}
/// 处理模式按钮点击(用于激活调试模式)
void kr_handleModeButtonClick() {
final now = DateTime.now();
// 检查是否在2秒内连续点击
if (lastModeButtonClickTime != null &&
now.difference(lastModeButtonClickTime!).inSeconds > 2) {
// 超过2秒,重置计数器
modeButtonClickCount = 0;
}
modeButtonClickCount++;
lastModeButtonClickTime = now;
KRLogUtil.kr_i('模式按钮点击次数: $modeButtonClickCount', tag: 'HINodeListController');
if (modeButtonClickCount >= 5) {
// 激活调试模式
isDebugMode.value = true;
modeButtonClickCount = 0; // 重置计数器
KRLogUtil.kr_i('🐛 调试模式已激活!', tag: 'HINodeListController');
}
}
/// 获取要显示的节点列表(根据调试模式过滤)
List<dynamic> kr_getFilteredNodeList() {
if (isDebugMode.value) {
// 调试模式:显示所有节点
return kr_subscribeService.allList;
} else {
// 正常模式:只显示 country-auto 节点
return kr_subscribeService.allList.where((node) => node.tag.endsWith('-auto')).toList();
}
}
/// 重置调试模式
void kr_resetDebugMode() {
isDebugMode.value = false;
modeButtonClickCount = 0;
lastModeButtonClickTime = null;
KRLogUtil.kr_i('调试模式已重置', tag: 'HINodeListController');
}
}
@@ -1,6 +1,5 @@
// hi_node_list_view.dart
import 'dart:math';
import 'package:flutter/material.dart';
import 'package:get/get.dart';
import 'package:flutter_screenutil/flutter_screenutil.dart';
@@ -48,17 +47,9 @@ class HINodeListView extends GetView<HINodeListController> {
) {
if (outboundList.isEmpty) return 0;
// 过滤掉不可用节点(延迟标记为 65535 或负数)
final validNodes = outboundList.where((node) {
final delay = node.urlTestDelay.value;
return delay > 0 && delay < 65535;
}).toList();
if (validNodes.isEmpty) return 0;
// 返回最小延迟值
validNodes.sort((a, b) => a.urlTestDelay.value.compareTo(b.urlTestDelay.value));
return validNodes.first.urlTestDelay.value;
outboundList.sort((a, b) => a.urlTestDelay.value.compareTo(b.urlTestDelay.value));
return outboundList.first.urlTestDelay.value;
}
/// 找出延迟最低(最快)的节点对象
@@ -88,8 +79,8 @@ class HINodeListView extends GetView<HINodeListController> {
// 并设置透明背景,让父组件的背景可以透出来
return Material(
color: Colors.transparent,
child: _buildSubscribeList(context)
// child: _kr_buildRegionList(context)
child: _buildSubscribeList(context)
// child: _kr_buildRegionList(context)
);
}
@@ -199,9 +190,20 @@ class HINodeListView extends GetView<HINodeListController> {
),
...controller.kr_subscribeService.countryOutboundList.map((country) {
return InkWell(
onTap: () {
// 自动选择这个国家下的节点延迟中最快的
controller.homeController.onCountrySelected(country.country);
onTap: () async {
try {
final success =
await controller.homeController.kr_performNodeSwitch('${country.country}-auto');
print('node 点击 ${country.country} 节点数量${country.outboundList.length} 节点详情 ${country.outboundList}');
if (success) {
controller.homeController.kr_currentListStatus.value =
KRHomeViewsListStatus.kr_none;
}
} catch (e) {
KRLogUtil.kr_e('Auto选项切换异常: $e',
tag: 'NodeListView');
}
},
child: _kr_buildCountryListItem(context, country: country),
);
@@ -229,14 +231,24 @@ class HINodeListView extends GetView<HINodeListController> {
padding: EdgeInsets.symmetric(vertical: 8.w),
// 2. 使用 children 属性,并一次性构建所有列表项
children: [
if (controller.kr_subscribeService.allList.isEmpty)
_buildEmptyListPlaceholder(context, AppTranslations.kr_home.noNodes)
if (controller.kr_getFilteredNodeList().isEmpty)
_buildEmptyListPlaceholder(context,
controller.isDebugMode.value ? '调试模式:无节点数据' : AppTranslations.kr_home.noNodes)
else ...[
InkWell(
onTap: () {
controller.homeController.kr_selectNode('auto');
controller.homeController.kr_currentListStatus.value =
KRHomeViewsListStatus.kr_none;
// 🔧 修复:改为 async,等待节点切换完成后再关闭列表
onTap: () async {
try {
final success =
await controller.homeController.kr_performNodeSwitch('auto');
if (success) {
controller.homeController.kr_currentListStatus.value =
KRHomeViewsListStatus.kr_none;
}
} catch (e) {
KRLogUtil.kr_e('Auto选项切换异常: $e',
tag: 'NodeListView');
}
},
child: Container(
decoration: BoxDecoration(
@@ -281,13 +293,28 @@ class HINodeListView extends GetView<HINodeListController> {
),
),
// 2. 第二个 Text: "根据网络IP自动匹配最快线路"
Text(
'根据网络IP自动匹配最快线路', // 您指定的文本
style: KrAppTextStyle(
fontSize: 10,
color: Colors.white,
),
),
Obx(() {
// 当选择全局 auto 时,显示当前选中的节点信息
if (controller.homeController.kr_cutTag.value == 'auto') {
final autoNodeInfo = controller.homeController.kr_getGlobalAutoSelectedNode();
if (autoNodeInfo != null) {
return Text(
'当前: ${autoNodeInfo['tag']} (${autoNodeInfo['delay']}ms)',
style: KrAppTextStyle(
fontSize: 10,
color: Colors.white.withOpacity(0.8),
),
);
}
}
return Text(
'根据网络IP自动匹配最快线路', // 默认文本
style: KrAppTextStyle(
fontSize: 10,
color: Colors.white,
),
);
}),
],
),
),
@@ -308,9 +335,25 @@ class HINodeListView extends GetView<HINodeListController> {
),
),
),
...controller.kr_subscribeService.allList.map((item) {
...controller.kr_getFilteredNodeList().map((item) {
return InkWell(
onTap: () => _onNodeSelected(item),
// 🔧 修复:改为 async,等待节点切换完成后再关闭列表
onTap: () async {
try {
KRLogUtil.kr_i(
'🔄 用户点击节点: ${item.tag}');
final success = await controller.homeController
.kr_performNodeSwitch(item.tag);
if (success) {
controller.homeController.kr_currentListStatus.value =
KRHomeViewsListStatus.kr_none;
}
} catch (e) {
KRLogUtil.kr_e(
'节点切换异常: $e',
tag: 'NodeListView');
}
},
child: _kr_buildNodeListItem(context, item: item),
);
}).toList(),
@@ -344,15 +387,6 @@ class HINodeListView extends GetView<HINodeListController> {
);
}
/// 节点选中时的通用处理逻辑
void _onNodeSelected(KROutboundItem item) {
KRLogUtil.kr_i('Node selected: ${item.tag}');
KRSingBoxImp.instance.kr_selectOutbound(item.tag);
controller.homeController.kr_selectNode(item.tag);
// 切换回主页的仪表盘视图
controller.homeController.kr_currentListStatus.value = KRHomeViewsListStatus.kr_none;
}
/// 构建单个节点列表项的UI
Widget _kr_buildNodeListItem(BuildContext context, {required KROutboundItem item}) {
return Container(
@@ -372,55 +406,75 @@ class HINodeListView extends GetView<HINodeListController> {
KRCountryFlag(countryCode: item.country, width: 30.w, height: 20.w, isCircle: false, maintainSize: false),
SizedBox(width: 12.w),
Expanded(
child: Column(
crossAxisAlignment: CrossAxisAlignment.start,
children: [
Row(
children: [
Flexible(
child: Text(
controller.homeController.kr_getCountryFullName(item.country),
style: KrAppTextStyle(fontSize: 14, color: Colors.white),
overflow: TextOverflow.ellipsis,
maxLines: 1,
),
),
Obx(() => controller.homeController.kr_cutTag.value == item.tag
? Container(
margin: EdgeInsets.only(left: 4.w),
padding: EdgeInsets.symmetric(horizontal: 4.w, vertical: 1.w),
decoration: BoxDecoration(
color: krModernGreenLight.withOpacity(0.1),
borderRadius: BorderRadius.circular(4.w),
),
child: Text(
AppTranslations.kr_home.selected,
style: KrAppTextStyle(fontSize: 10, color: krModernGreen, fontWeight: FontWeight.w500),
),
)
: const SizedBox.shrink()),
],
child: Obx(() {
final isDebug = controller.isDebugMode.value;
final text = isDebug
? '${controller.homeController.kr_getCountryFullName(item.country)} - ${item.tag}'
: '${controller.homeController.kr_getCountryFullName(item.country)}';
return Text(
text,
style: KrAppTextStyle(
fontSize: 16,
fontWeight: FontWeight.w500,
color: Colors.white,
),
SizedBox(height: 2.w),
Obx(() {
// 2. 获取用于显示的延迟值
final int delay = _getDisplayDelay(controller, item);
return Text(
'${delay}ms',
style: KrAppTextStyle(
fontSize: 10,
color: krModernGreen,
fontWeight: FontWeight.w500,
),
);
}),
Text(
item.city,
style: KrAppTextStyle(fontSize: 12, color: Theme.of(context).textTheme.bodySmall?.color),
),
],
),
);
}),
),
Obx(() {
// 1. 获取延迟值和测速状态
int displayDelay;
bool isTesting = controller.homeController.kr_isLatency.value;
// 极简逻辑:只根据节点类型决定显示方式
print('🔄 _kr_buildNodeListItem节点: item.tag=${item.tag}, country=${item.country}');
// 如果节点本身是auto组节点,显示组内最快节点的速度
if (item.tag.endsWith('-auto')) {
print('🎯 检测到auto组节点,获取最快节点信息');
final autoNodeInfo = controller.homeController.kr_getCountryAutoSelectedNode(item.country);
print('📊 _kr_buildNodeListItem获取auto最快节点: $autoNodeInfo');
displayDelay = autoNodeInfo?['delay'] ?? 0;
print('✅ _kr_buildNodeListItem使用auto最快节点延迟: $displayDelay');
} else {
// 普通节点,直接显示节点自身的速度
displayDelay = item.urlTestDelay.value;
print('🔄 _kr_buildNodeListItem使用普通节点延迟: $displayDelay');
}
// 2. 声明文本和颜色变量
String delayText;
Color delayColor;
// 3. 根据状态设置文本和颜色
if (isTesting && displayDelay == 0) {
delayText = '测速中...';
delayColor = Colors.grey; // 测速时使用灰色
} else if (displayDelay == 0) {
delayText = '- ms'; // 未测速或初始状态
delayColor = Colors.grey;
} else if (displayDelay >= 3000) {
delayText = AppTranslations.kr_home.timeout; // "超时"
delayColor = Colors.red; // 超时状态使用红色
} else {
delayText = '${displayDelay}ms';
// 正常延迟,根据快慢设置不同颜色
delayColor = (displayDelay < 500) ? krModernGreen : Colors.orange;
}
// 4. 返回最终的 Text 组件
return Text(
delayText,
style: KrAppTextStyle(
fontSize: 10,
color: delayColor, // 使用动态计算出的颜色
fontWeight: FontWeight.w500,
),
);
}),
SizedBox(width: 12.w),
Obx(() => controller.homeController.kr_cutTag.value == item.tag
? KrLocalImage(
imageName: 'radio-active-icon',
@@ -441,18 +495,7 @@ class HINodeListView extends GetView<HINodeListController> {
/// 构建国家列表项的UI
Widget _kr_buildCountryListItem(BuildContext context, {required country}) {
// 获取延迟颜色
Color getLatencyColor(int delay) {
if (delay == 0) {
return Colors.transparent;
} else if (delay < 500) {
return krModernGreen;
} else if (delay < 3000) {
return Color(0xFFFFB700); // 使用更容易看清的黄色
} else {
return Colors.red;
}
}
return Container(
key: ValueKey(country),
decoration: BoxDecoration(
@@ -476,22 +519,42 @@ class HINodeListView extends GetView<HINodeListController> {
),
),
Obx(() {
final int delay = getFastestNodeDelay(controller, country.outboundList);
// 1. 获取延迟值和测速状态
int displayDelay = getFastestNodeDelay(controller, country.outboundList);
bool isTesting = controller.homeController.kr_isLatency.value;
// 2. 声明文本和颜色变量
String delayText;
Color delayColor;
// 3. 根据状态设置文本和颜色
if (isTesting && displayDelay == 0) {
delayText = '测速中...';
delayColor = Colors.grey; // 测速时使用灰色
} else if (displayDelay == 0) {
delayText = '- ms'; // 未测速或初始状态
delayColor = Colors.grey;
} else if (displayDelay >= 3000) {
delayText = AppTranslations.kr_home.timeout; // "超时"
delayColor = Colors.red; // 超时状态使用红色
} else {
delayText = '${displayDelay}ms';
// 正常延迟,根据快慢设置不同颜色
delayColor = (displayDelay < 500) ? krModernGreen : Colors.orange;
}
// 4. 返回最终的 Text 组件
return Text(
delay == 0
? ''
: delay >= 3000
? AppTranslations.kr_home.timeout
: '${delay}ms',
delayText,
style: KrAppTextStyle(
fontSize: 10,
color: getLatencyColor(delay),
color: delayColor, // 使用动态计算出的颜色
fontWeight: FontWeight.w500,
),
);
}),
SizedBox(width: 12.w),
Obx(() => controller.homeController.kr_coutryText.value == country.country
Obx(() => controller.homeController.kr_cutTag.value == '${country.country}-auto'
? KrLocalImage(
imageName: 'radio-active-icon',
imageType: ImageType.svg,
@@ -19,10 +19,47 @@ class HINodePageView extends GetView<HINodeListController> {
return HIBaseScaffold(
child: Stack(
children: [
Positioned(
left: 0,
child: Obx(() => controller.isDebugMode.value
? GestureDetector(
onTap: () {
controller.kr_resetDebugMode();
},
child: Container(
padding: EdgeInsets.symmetric(horizontal: 10.w, vertical: 4.w),
decoration: BoxDecoration(
color: Colors.red.withOpacity(0.8),
borderRadius: BorderRadius.circular(12.w),
),
child: Row(
mainAxisSize: MainAxisSize.min,
children: [
Icon(
Icons.bug_report,
size: 12.w,
color: Colors.white,
),
SizedBox(width: 3.w),
Text(
'关闭调试',
style: TextStyle(
fontSize: 10.sp,
color: Colors.white,
fontWeight: FontWeight.w500,
),
),
],
),
),
)
: const SizedBox.shrink()),
),
// 主要内容区域
Column(
crossAxisAlignment: CrossAxisAlignment.start,
children: [
// 模式切换器
Padding(
padding: EdgeInsets.only(left: 100.w, right: 60.w),
@@ -159,7 +196,12 @@ class HINodePageView extends GetView<HINodeListController> {
}) {
return Expanded(
child: GestureDetector(
onTap: onTap,
onTap: () {
// 处理模式按钮点击(用于调试模式激活)
controller.kr_handleModeButtonClick();
// 执行原有的点击逻辑
onTap();
},
child: AnimatedContainer(
duration: const Duration(milliseconds: 200),
padding: EdgeInsets.symmetric(vertical: 4.w),
@@ -69,8 +69,12 @@ class HIUserInfoView extends GetView<HIUserInfoController> {
children: [
Obx(() {
final account = KRAppRunData.getInstance().kr_account.value;
final isDeviceLogin = account != null && account.startsWith('9000');
if (isDeviceLogin) return const SizedBox();
return Text(
(account != null && account.isNotEmpty) ? account : '未绑定',
account ?? '',
style: TextStyle(
color: Colors.white,
fontSize: 20.sp,
@@ -425,7 +429,7 @@ class HIUserInfoView extends GetView<HIUserInfoController> {
crossAxisAlignment: CrossAxisAlignment.start,
children: [
Text(
'设备:${_extractDeviceModel(userAgent)}',
'设备:${_extractDeviceModel(userAgent, deviceType)}',
style: TextStyle(
color: Colors.white,
fontSize: 10.sp, //
@@ -433,7 +437,7 @@ class HIUserInfoView extends GetView<HIUserInfoController> {
),
SizedBox(height: 4.h),
Text(
'ID: ${identifier.substring(0, identifier.length > 4 ? 4 : identifier.length)}$id',
'SN: ${identifier.substring(0, identifier.length > 4 ? 4 : identifier.length)}$id',
style: TextStyle(
color: Colors.white.withOpacity(0.9),
fontSize: 10.sp,
@@ -585,12 +589,12 @@ class HIUserInfoView extends GetView<HIUserInfoController> {
);
}
String _extractDeviceModel(String deviceName) {
String _extractDeviceModel(String deviceName, String deviceType) {
// 匹配括号内内容
final RegExp regExp = RegExp(r'\((.*?)\)');
final Match? match = regExp.firstMatch(deviceName);
if (match != null && match.groupCount >= 1) {
if (match != null && match.groupCount >= 1 ) {
// 获取括号内内容
final inside = match.group(1)!; // "Android; google Pixel 9; 15"
@@ -18,6 +18,7 @@ import '../../../common/app_config.dart';
import '../../../localization/app_translations.dart';
import '../../../localization/kr_language_utils.dart';
import '../../../model/business/kr_group_outbound_list.dart';
import '../../../model/business/kr_outbound_item.dart';
import '../../../services/kr_announcement_service.dart';
import '../../../utils/kr_event_bus.dart';
import '../../../utils/kr_update_util.dart';
@@ -133,11 +134,21 @@ class KRHomeController extends GetxController with WidgetsBindingObserver {
if (value != null) {
isQuickConnectEnabled.value = value;
// 保存闪连状态到本地存储
await _storage.kr_saveBool(key: _quickConnectKey, value: value);
await _saveQuickConnectStatus(value);
KRLogUtil.kr_i('闪连状态已更新: $value', tag: 'QuickConnect');
}
}
// 保存闪连状态到本地存储
Future<void> _saveQuickConnectStatus(bool enabled) async {
try {
await _storage.kr_saveBool(key: _quickConnectKey, value: enabled);
KRLogUtil.kr_i('闪连状态已保存到本地存储: $enabled', tag: 'QuickConnect');
} catch (e) {
KRLogUtil.kr_e('保存闪连状态失败: $e', tag: 'QuickConnect');
}
}
// 从本地存储加载闪连状态
Future<void> _loadQuickConnectStatus() async {
try {
@@ -839,6 +850,7 @@ class KRHomeController extends GetxController with WidgetsBindingObserver {
if (kDebugMode) {
}
await KRSingBoxImp.instance.kr_start();
KRLogUtil.kr_i('✅ 连接命令已发送', tag: 'HomeController');
if (kDebugMode) {
}
@@ -1265,10 +1277,6 @@ class KRHomeController extends GetxController with WidgetsBindingObserver {
}
}
Future<void> onCountrySelected(String countryTag) async {
await KRSingBoxImp.instance.kr_selectCountry(countryTag);
KRCommonUtil.kr_showToast('已切换到 $countryTag 节点组');
}
/// 🔧 修复:简化的 kr_selectNode 方法
/// 现在只是委托给新的 kr_performNodeSwitch 方法
@@ -1414,8 +1422,8 @@ class KRHomeController extends GetxController with WidgetsBindingObserver {
/// 获取真实连接的节点信息(auto 模式下获取实际连接的节点)
Map<String, dynamic> kr_getRealConnectedNodeInfo() {
// 如果不是 auto 模式,直接返回当前选中的节点信息
if (kr_cutTag.value != 'auto') {
// 如果不是 auto 模式,也不是 country-auto 模式,直接返回当前选中的节点信息
if (kr_cutTag.value != 'auto' && !kr_cutTag.value.endsWith('-auto')) {
final node = kr_subscribeService.keyList[kr_cutSeletedTag.value];
return {
'nodeName': kr_cutSeletedTag.value,
@@ -1424,11 +1432,13 @@ class KRHomeController extends GetxController with WidgetsBindingObserver {
};
}
// auto 模式下,获取 urltest 组的实际连接节点
// 处理 auto 模式(包括全局 auto 和 country-auto
print('当前活动组----${KRSingBoxImp.instance.kr_activeGroups.length}');
for (var group in KRSingBoxImp.instance.kr_activeGroups) {
print('当前活动组----$group}');
if (group.type == ProxyType.urltest) {
// 处理全局 auto 模式
if (kr_cutTag.value == 'auto' && group.type == ProxyType.urltest && group.tag == 'auto') {
final selectedNode = group.selected;
final node = kr_subscribeService.keyList[selectedNode];
return {
@@ -1437,12 +1447,39 @@ class KRHomeController extends GetxController with WidgetsBindingObserver {
'country': node?.country ?? '',
};
}
// 处理 country-auto 模式
if (kr_cutTag.value.endsWith('-auto') && group.type == ProxyType.urltest) {
if (group.tag == kr_cutTag.value) {
final selectedNode = group.selected;
final node = kr_subscribeService.keyList[selectedNode];
return {
'nodeName': selectedNode,
'delay': node?.urlTestDelay.value ?? -2,
'country': node?.country ?? '',
};
}
}
}
print('hhhhhh${kr_subscribeService.keyList}', );
// 处理 country-auto 模式的备用方案(当 SingBox 组数据不可用时)
if (kr_cutTag.value.endsWith('-auto')) {
final countryCode = kr_cutTag.value.replaceAll('-auto', '');
KRLogUtil.kr_i('🔄 kr_getRealConnectedNodeInfo 使用备用方案获取 country-auto 信息: $countryCode', tag: 'HomeController');
final autoNodeInfo = kr_getCountryAutoSelectedNode(countryCode);
if (autoNodeInfo != null) {
return {
'nodeName': autoNodeInfo['tag'],
'delay': autoNodeInfo['delay'] ?? -2,
'country': autoNodeInfo['country'] ?? countryCode,
};
}
}
// 如果没有找到 urltest 组,返回默认值
return {
'nodeName': 'auto',
'nodeName': kr_cutTag.value,
'delay': -2,
'country': '',
};
@@ -1463,9 +1500,10 @@ class KRHomeController extends GetxController with WidgetsBindingObserver {
/// 获取真实连接的节点国家
String kr_getRealConnectedNodeCountry() {
final info = kr_getRealConnectedNodeInfo();
final delay = kr_currentNodeLatency.value;
final delay = info['delay'] as int; // 使用真实连接的节点延迟,而不是 kr_currentNodeLatency.value
final country1 = kr_getCurrentNodeCountry();
print('country----$country1');
print('kr_getRealConnectedNodeCountry - delay from info: $delay, country from info: ${info['country']}');
final country = kr_getCountryFullName(info['country']);
if (delay == -2) {
return '--';
@@ -1932,7 +1970,7 @@ class KRHomeController extends GetxController with WidgetsBindingObserver {
final results = await KRLatencyTester.testMultipleNodes(
nodes: nodeAddresses,
concurrency: 10, // 每批10个并发
timeout: 5000, // 超时时间5秒(毫秒)
timeout: const Duration(seconds: 5),
);
// 更新节点延迟
@@ -2173,6 +2211,225 @@ class KRHomeController extends GetxController with WidgetsBindingObserver {
});
}
/// 获取国家-auto组的当前选中子节点信息
Map<String, dynamic>? kr_getCountryAutoSelectedNode(String countryCode) {
try {
final activeGroups = KRSingBoxImp.instance.kr_activeGroups;
final allGroups = KRSingBoxImp.instance.kr_allGroups;
final autoGroupTag = '${countryCode}-auto';
KRLogUtil.kr_i('🔍 开始获取国家-auto选中节点: countryCode=$countryCode, autoGroupTag=$autoGroupTag', tag: 'HomeController');
KRLogUtil.kr_i('📊 活跃组数量: ${activeGroups.length}, 所有组数量: ${allGroups.length}', tag: 'HomeController');
// 优先检查活跃组
if (activeGroups.isNotEmpty) {
KRLogUtil.kr_i('✅ 活跃组不为空,优先检查活跃组', tag: 'HomeController');
for (var group in activeGroups) {
KRLogUtil.kr_i('🔄 检查活跃组: tag=${group.tag}, type=${group.type}, selected=${group.selected}', tag: 'HomeController');
if (group.tag == autoGroupTag && group.type == ProxyType.urltest) {
KRLogUtil.kr_i('✅ 在活跃组中找到匹配的urltest组: $autoGroupTag', tag: 'HomeController');
return _kr_extractSelectedNodeInfo(group, countryCode);
}
}
}
// 如果活跃组中没有,检查所有组
if (allGroups.isNotEmpty) {
KRLogUtil.kr_i('🔍 活跃组中未找到,检查所有组', tag: 'HomeController');
for (var group in allGroups) {
KRLogUtil.kr_i('🔄 检查所有组: tag=${group.tag}, type=${group.type}, selected=${group.selected}', tag: 'HomeController');
if (group.tag == autoGroupTag && group.type == ProxyType.urltest) {
KRLogUtil.kr_i('✅ 在所有组中找到匹配的urltest组: $autoGroupTag', tag: 'HomeController');
return _kr_extractSelectedNodeInfo(group, countryCode);
}
}
}
// 如果组数据都为空,使用备用方案:从订阅服务中找该国家最快的节点
KRLogUtil.kr_i('🔄 组数据为空,使用备用方案从订阅服务获取最快节点', tag: 'HomeController');
return _kr_getFastestNodeFromSubscribeService(countryCode);
} catch (e) {
KRLogUtil.kr_e('💥 获取国家-auto选中节点异常: $e', tag: 'HomeController');
}
return null;
}
/// 从订阅服务获取该国家最快节点的备用方案
Map<String, dynamic>? _kr_getFastestNodeFromSubscribeService(String countryCode) {
try {
KRLogUtil.kr_i('🔄 使用订阅服务查找国家最快节点: $countryCode', tag: 'HomeController');
// 从订阅服务中获取该国家的所有节点
final allNodes = kr_subscribeService.allList.where((node) =>
node.country == countryCode && !node.tag.endsWith('-auto')
).toList();
KRLogUtil.kr_i('📊 找到 ${allNodes.length} 个该国家的普通节点', tag: 'HomeController');
if (allNodes.isEmpty) {
KRLogUtil.kr_w('⚠️ 未找到该国家的任何普通节点: $countryCode', tag: 'HomeController');
return null;
}
// 找出延迟最小的节点(排除0和超时)
KROutboundItem? fastestNode;
int fastestDelay = 999999;
for (var node in allNodes) {
final delay = node.urlTestDelay.value;
if (delay > 0 && delay < 3000 && delay < fastestDelay) {
fastestDelay = delay;
fastestNode = node;
}
}
if (fastestNode != null) {
KRLogUtil.kr_i('✅ 找到最快节点: ${fastestNode.tag}, 延迟: ${fastestDelay}ms', tag: 'HomeController');
return {
'tag': fastestNode.tag,
'delay': fastestDelay,
'country': countryCode,
};
} else {
KRLogUtil.kr_w('⚠️ 该国家的节点都没有有效延迟数据', tag: 'HomeController');
return null;
}
} catch (e) {
KRLogUtil.kr_e('💥 获取订阅服务最快节点异常: $e', tag: 'HomeController');
return null;
}
}
/// 提取选中节点信息的辅助方法
Map<String, dynamic>? _kr_extractSelectedNodeInfo(dynamic group, String countryCode) {
try {
// 获取当前选中的节点
final selectedNode = group.selected;
KRLogUtil.kr_i('🎯 当前选中节点: $selectedNode', tag: 'HomeController');
KRLogUtil.kr_i('📋 组内项目数量: ${group.items.length}', tag: 'HomeController');
if (selectedNode != null && selectedNode.isNotEmpty) {
KRLogUtil.kr_i('✅ 选中节点有效,开始查找节点详情', tag: 'HomeController');
// 打印所有节点信息用于调试
for (var item in group.items) {
KRLogUtil.kr_i('📄 组内节点: tag=${item.tag}, delay=${item.urlTestDelay}', tag: 'HomeController');
}
// 在组内查找选中的节点
try {
final selectedItem = group.items.firstWhere(
(item) => item.tag == selectedNode,
);
KRLogUtil.kr_i('🎉 成功找到选中节点: tag=${selectedItem.tag}, delay=${selectedItem.urlTestDelay}', tag: 'HomeController');
return {
'tag': selectedNode,
'delay': selectedItem.urlTestDelay,
'country': countryCode,
};
} catch (e) {
KRLogUtil.kr_e('❌ 在组内未找到选中节点: $selectedNode', tag: 'HomeController');
return null;
}
} else {
KRLogUtil.kr_w('⚠️ 选中节点为空或无效', tag: 'HomeController');
return null;
}
} catch (e) {
KRLogUtil.kr_e('💥 提取选中节点信息异常: $e', tag: 'HomeController');
return null;
}
}
/// 获取全局 auto 组的当前选中子节点信息
Map<String, dynamic>? kr_getGlobalAutoSelectedNode() {
try {
final activeGroups = KRSingBoxImp.instance.kr_activeGroups;
KRLogUtil.kr_i('🌍 开始获取全局auto选中节点信息', tag: 'HomeController');
KRLogUtil.kr_i('📊 活跃组数量: ${activeGroups.length}', tag: 'HomeController');
for (var group in activeGroups) {
KRLogUtil.kr_i('🔄 检查全局组: tag=${group.tag}, type=${group.type}, selected=${group.selected}', tag: 'HomeController');
KRLogUtil.kr_i('📋 全局组内项目数量: ${group.items.length}', tag: 'HomeController');
if (group.tag == 'auto' && group.type == ProxyType.urltest) {
KRLogUtil.kr_i('✅ 找到全局auto urltest组', tag: 'HomeController');
// 获取当前选中的节点
final selectedNode = group.selected;
KRLogUtil.kr_i('🎯 全局auto当前选中节点: $selectedNode', tag: 'HomeController');
if (selectedNode != null && selectedNode.isNotEmpty) {
KRLogUtil.kr_i('✅ 全局auto选中节点有效,开始查找详情', tag: 'HomeController');
// 打印所有节点信息用于调试
for (var item in group.items) {
KRLogUtil.kr_i('📄 全局auto组内节点: tag=${item.tag}, delay=${item.urlTestDelay}', tag: 'HomeController');
}
// 在组内查找选中的节点
try {
final selectedItem = group.items.firstWhere(
(item) => item.tag == selectedNode,
);
KRLogUtil.kr_i('🎉 成功找到全局auto选中节点: tag=${selectedItem.tag}, delay=${selectedItem.urlTestDelay}', tag: 'HomeController');
return {
'tag': selectedNode,
'delay': selectedItem.urlTestDelay,
'country': '',
};
} catch (e) {
KRLogUtil.kr_e('❌ 在全局auto组内未找到选中节点: $selectedNode', tag: 'HomeController');
return null;
}
} else {
KRLogUtil.kr_w('⚠️ 全局auto选中节点为空或无效', tag: 'HomeController');
}
}
}
KRLogUtil.kr_w('❌ 未找到全局auto组', tag: 'HomeController');
} catch (e) {
KRLogUtil.kr_e('💥 获取全局auto选中节点异常: $e', tag: 'HomeController');
}
return null;
}
/// 获取指定国家的所有真实节点延迟列表
List<Map<String, dynamic>> kr_getCountryRealNodeDelays(String countryCode) {
final delays = <Map<String, dynamic>>[];
try {
// 从订阅服务中获取该国家的节点列表
final countryNodes = kr_subscribeService.keyList.values
.where((item) => item.country == countryCode && !item.tag.endsWith('-auto'))
.toList();
for (final node in countryNodes) {
delays.add({
'tag': node.tag,
'delay': node.urlTestDelay.value,
'city': node.city,
});
}
// 按延迟排序
delays.sort((a, b) => a['delay'].compareTo(b['delay']));
} catch (e) {
KRLogUtil.kr_e('获取国家真实节点延迟列表失败: $e', tag: 'HomeController');
}
return delays;
}
/// 尝试从活动组更新延迟值
bool _kr_tryUpdateDelayFromActiveGroups() {
try {
@@ -2198,6 +2455,17 @@ class KRHomeController extends GetxController with WidgetsBindingObserver {
}
}
}
// 如果是国家-auto模式,从对应的国家urltest组获取延迟
else if (kr_cutTag.value.endsWith('-auto')) {
final countryCode = kr_cutTag.value.replaceAll('-auto', '');
for (var item in group.items) {
if (item.tag == kr_cutTag.value && item.urlTestDelay != 0) {
kr_currentNodeLatency.value = item.urlTestDelay;
KRLogUtil.kr_i('${countryCode}-auto模式延迟值: ${item.urlTestDelay}ms', tag: 'HomeController');
return true;
}
}
}
// 手动选择模式
else {
for (var item in group.items) {
@@ -305,19 +305,24 @@ class KRLoginController extends GetxController
/// 发送验证码(仅支持邮箱)
void kr_sendCode() async {
final either = await KRAuthApi().kr_sendCode(
accountController.text,
2
); // 重置密码验证码类型为3
/*
*
* kr_loginStatus.value == KRLoginProgressStatus.kr_registerSendCode
? 2 // 注册验证码类型为2
: 3*/
if (accountController.text.isEmpty) {
KRCommonUtil.kr_showToast(AppTranslations.kr_login.enterAccount);
return;
}
int type;
final check = await KRAuthApi().kr_isRegister(accountController.text);
final result = check.fold((l) {
KRCommonUtil.kr_showToast(l.msg);
return null;
}, (isRegistered) => isRegistered ? 2 : 1);
if (result == null) return;
type = result;
final either = await KRAuthApi().kr_sendCode(accountController.text, type);
either.fold((l) {
KRCommonUtil.kr_showToast(l.msg);
}, (r) async {
/// 开始倒计时
_startCountdown();
});
}
@@ -76,10 +76,13 @@ class KRLoginView extends GetView<KRLoginController> {
mainAxisAlignment: MainAxisAlignment.center,
children: [
Obx(() {
final _ = KRAppRunData.getInstance().kr_isLogin.value;
final email = KRAppRunData.getInstance().kr_account.value ?? '';
final account = KRAppRunData.getInstance().kr_account.value;
final isDeviceLogin = account != null && account.startsWith('9000');
if (isDeviceLogin) return const SizedBox();
return Text(
email.isNotEmpty ? email : '',
account ?? '',
style: TextStyle(
color: Colors.white,
fontSize: 20.sp,
@@ -285,7 +285,7 @@ class KRSplashController extends GetxController {
KRLogUtil.kr_e('⏱️ 初始化超时: $e', tag: 'SplashController');
print('⏱️ 初始化超时,直接跳转到主页');
// 超时后直接跳转到主页,让用户可以手动重试
// Get.offAllNamed(Routes.KR_MAIN);
// Get.offAllNamed(Routes.KR_HOME);
HIDialog.show(
message: '初始化超时,请检查网络或重试',
confirmText: '重试',
@@ -484,7 +484,7 @@ class KRSplashController extends GetxController {
_initLog.logWarning('网络权限检查失败或超时,执行降级初始化', tag: 'Init');
KRLogUtil.kr_w('⚠️ 网络权限检查失败或超时,执行降级初始化', tag: 'SplashController');
await _executeMinimalInitialization();
Get.offAllNamed(Routes.KR_MAIN);
Get.offAllNamed(Routes.KR_HOME);
return;
}
@@ -493,7 +493,7 @@ class KRSplashController extends GetxController {
_initLog.logError('网络权限检查异常,执行降级初始化', tag: 'Init', error: e);
KRLogUtil.kr_w('⚠️ 网络权限检查异常: $e,执行降级初始化', tag: 'SplashController');
await _executeMinimalInitialization();
Get.offAllNamed(Routes.KR_MAIN);
Get.offAllNamed(Routes.KR_HOME);
return;
}
} else {
@@ -582,7 +582,7 @@ class KRSplashController extends GetxController {
_initLog.logError('启动页初始化异常,执行降级策略', tag: 'Continue', error: e);
KRLogUtil.kr_w('⚠️ 启动页初始化异常,执行降级策略: $e', tag: 'SplashController');
await _executeMinimalInitialization();
Get.offAllNamed(Routes.KR_MAIN);
Get.offAllNamed(Routes.KR_HOME);
}
}
@@ -726,7 +726,7 @@ class KRSplashController extends GetxController {
kr_isLoading.value = false;
// 直接跳转到主页
Get.offAllNamed(Routes.KR_MAIN);
Get.offAllNamed(Routes.KR_HOME);
}
/// 🔧 修复1.1:清理旧的本地存储数据(DEBUG模式专用)
+1 -1
View File
@@ -1,7 +1,7 @@
/// 接口名称
abstract class Api {
/// 游客登录查看是否已经注册
static const String kr_isRegister = "/v1/app/auth/check";
static const String kr_isRegister = "/v1/auth/check";
/// 判断邮箱和当前设备是否已存在订阅
static const String kr_checkSubscription = "/v1/public/user/subscribe_status";
@@ -36,7 +36,7 @@ class KRAuthApi {
BaseResponse<KRIsRegister> baseResponse = await HttpUtil.getInstance()
.request<KRIsRegister>(Api.kr_isRegister, data,
method: HttpMethod.POST, isShowLoading: true);
method: HttpMethod.GET, isShowLoading: true);
if (!baseResponse.isSuccess) {
return left(
@@ -309,6 +309,7 @@ class KRSubscribeService {
// 保存配置
KRSingBoxImp.instance.kr_saveOutbounds(listModel.configJsonList);
KRSingBoxImp.instance.kr_saveAllOutbounds(listModel.configJsonList);
// 更新试用和订阅状态
_kr_updateSubscribeStatus();
@@ -661,6 +662,8 @@ class KRSubscribeService {
// 保存配置
KRSingBoxImp.instance.kr_saveOutbounds(listModel.configJsonList);
KRSingBoxImp.instance.kr_saveAllOutbounds(listModel.configJsonList);
// 更新试用和订阅状态
_kr_updateSubscribeStatus();
@@ -722,6 +725,8 @@ class KRSubscribeService {
// 保存配置
KRSingBoxImp.instance.kr_saveOutbounds([]);
KRSingBoxImp.instance.kr_saveAllOutbounds([]);
}
/// 获取当前订阅
+524 -135
View File
@@ -12,6 +12,7 @@ import 'package:kaer_with_panels/singbox/service/singbox_service.dart';
import 'package:kaer_with_panels/singbox/service/singbox_service_provider.dart';
import 'package:path_provider/path_provider.dart';
import 'package:path/path.dart' as p;
import 'package:device_info_plus/device_info_plus.dart';
import '../../../core/model/directories.dart';
import '../../../singbox/model/singbox_config_option.dart';
@@ -21,6 +22,7 @@ import '../../../singbox/model/singbox_status.dart';
import '../../utils/kr_country_util.dart';
import '../../utils/kr_log_util.dart';
import '../../utils/kr_secure_storage.dart';
import '../../utils/kr_windows_dns_util.dart';
import '../../common/app_run_data.dart';
import 'package:flutter/foundation.dart';
@@ -64,6 +66,7 @@ class KRSingBoxImp {
Map<String, dynamic> kr_configOption = {};
List<Map<String, dynamic>> kr_outbounds = [];
List<Map<String, dynamic>> Kr_allOutbounds = [];
/// 首次启动
RxBool kr_isFristStart = false.obs;
@@ -107,6 +110,65 @@ class KRSingBoxImp {
/// 初始化标志,防止重复初始化
bool _kr_isInitialized = false;
/// 初始化进行中共享 Futuresingle-flight 防并发)
Future<void>? _kr_initFuture;
/// 是否为Android模拟器
bool _kr_isAndroidEmulator = false;
/// 检测并缓存模拟器标识
///
/// - 仅在 Android 上进行模拟器特征识别
/// - 通过 brand/model/product/manufacturer 的常见模拟器特征判断
/// 返回:无(结果写入 `_kr_isAndroidEmulator`
Future<void> _kr_detectEmulator() async {
try {
if (!Platform.isAndroid) {
_kr_isAndroidEmulator = false;
return;
}
final info = await DeviceInfoPlugin().androidInfo;
final brand = (info.brand ?? '').toLowerCase();
final model = (info.model ?? '').toLowerCase();
final product = (info.product ?? '').toLowerCase();
final manufacturer = (info.manufacturer ?? '').toLowerCase();
final device = (info.device ?? '').toLowerCase();
bool containsAny(String s, List<String> keys) => keys.any((k) => s.contains(k));
final indicators = <bool>[
containsAny(brand, [
'generic', 'unknown', 'google', 'vbox', 'virtualbox',
'bluestacks', 'nox', 'ldplayer', 'genymotion', 'mumu', 'netease', 'leidian'
]),
containsAny(model, [
'emulator', 'sdk', 'sdk_gphone', 'google_sdk', 'android sdk built for x86',
'bluestacks', 'genymotion', 'nox', 'ldplayer', 'mumu'
]),
containsAny(product, [
'sdk', 'google_sdk', 'sdk_gphone', 'emulator', 'vbox', 'virtualbox'
]),
containsAny(manufacturer, [
'genymotion', 'unknown', 'bluestacks', 'nox', 'ld', 'netease', 'mumu'
]),
containsAny(device, [
'emulator', 'generic', 'vbox', 'virtualbox', 'sdk'
]),
];
_kr_isAndroidEmulator = indicators.any((v) => v);
KRLogUtil.kr_i(
'🔍 Android 模拟器检测: ${_kr_isAndroidEmulator ? '是模拟器' : '非模拟器'}'
' (brand=$brand, model=$model, product=$product, manufacturer=$manufacturer, device=$device)',
tag: 'SingBox',
);
} catch (e) {
_kr_isAndroidEmulator = false;
KRLogUtil.kr_w('⚠️ 模拟器检测失败,按真机处理: $e', tag: 'SingBox');
}
}
/// 当前混合代理端口是否就绪
bool get kr_isProxyReady => kr_status.value is SingboxStarted;
@@ -139,18 +201,32 @@ class KRSingBoxImp {
/// 初始化
Future<void> init() async {
// 防止重复初始化
// 防止重复初始化(已完成)
if (_kr_isInitialized) {
KRLogUtil.kr_i('SingBox 已经初始化,跳过重复初始化', tag: 'SingBox');
return;
}
// 防止并发重复初始化(进行中复用同一个 Future)
if (_kr_initFuture != null) {
KRLogUtil.kr_i('SingBox 初始化进行中,等待完成(single-flight', tag: 'SingBox');
await _kr_initFuture;
return;
}
// 建立 single-flight 共享 Future
final completer = Completer<void>();
_kr_initFuture = completer.future;
try {
KRLogUtil.kr_i('开始初始化 SingBox');
// 在应用启动时初始化
await KRCountryUtil.kr_init();
KRLogUtil.kr_i('国家工具初始化完成');
// 设备环境检测(Android模拟器)
await _kr_detectEmulator();
final oOption = SingboxConfigOption.fromJson(_getConfigOption());
KRLogUtil.kr_i('配置选项初始化完成');
@@ -167,14 +243,14 @@ class KRSingBoxImp {
KRLogUtil.kr_i('iOS 路径获取完成: $paths');
kr_configDics = (
baseDir: Directory(paths?["base"]! as String),
workingDir: Directory(paths?["working"]! as String),
tempDir: Directory(paths?["temp"]! as String),
baseDir: Directory(paths?["base"]! as String),
workingDir: Directory(paths?["working"]! as String),
tempDir: Directory(paths?["temp"]! as String),
);
} else {
final baseDir = await getApplicationSupportDirectory();
final workingDir =
Platform.isAndroid ? await getExternalStorageDirectory() : baseDir;
Platform.isAndroid ? await getExternalStorageDirectory() : baseDir;
final tempDir = await getTemporaryDirectory();
// Windows 路径规范化:确保使用正确的路径分隔符
@@ -190,9 +266,9 @@ class KRSingBoxImp {
}
kr_configDics = (
baseDir: normalizePath(baseDir),
workingDir: normalizePath(workingDir!),
tempDir: normalizePath(tempDir),
baseDir: normalizePath(baseDir),
workingDir: normalizePath(workingDir!),
tempDir: normalizePath(tempDir),
);
KRLogUtil.kr_i('其他平台路径初始化完成');
}
@@ -400,22 +476,32 @@ class KRSingBoxImp {
KRLogUtil.kr_i('📡 开始调用 setup() 注册 FFI 端口', tag: 'SingBox');
final setupResult = await kr_singBox.setup(kr_configDics, false).run();
setupResult.match(
(error) {
(error) {
KRLogUtil.kr_e('❌ setup() 失败: $error', tag: 'SingBox');
throw Exception('FFI setup 失败: $error');
},
(_) {
(_) {
KRLogUtil.kr_i('✅ setup() 成功,FFI 端口已注册', tag: 'SingBox');
},
);
KRLogUtil.kr_i('✅ SingBox 初始化完成');
// 🔧 提取 geosite 文件到 workingDir
KRLogUtil.kr_i('📦 开始提取 geosite 文件...', tag: 'SingBox');
await _kr_extractGeositeFiles();
KRLogUtil.kr_i('✅ geosite 文件提取完成', tag: 'SingBox');
_kr_isInitialized = true;
// 🔑 关键:在初始化完成后立即订阅状态变化流
// 这样可以确保 UI 始终与 libcore 的实际状态同步
_kr_subscribeToStatus();
KRLogUtil.kr_i('✅ 状态订阅已设置', tag: 'SingBox');
// 完成 single-flight
completer.complete();
_kr_initFuture = null;
} catch (e, stackTrace) {
KRLogUtil.kr_e('❌ SingBox 初始化失败: $e');
KRLogUtil.kr_e('📚 错误堆栈: $stackTrace');
@@ -451,26 +537,89 @@ class KRSingBoxImp {
// 如果初始化失败,允许下次重试
_kr_isInitialized = false;
// 失败时通知等待者并清理 single-flight
if (!completer.isCompleted) {
completer.completeError(e, stackTrace);
}
_kr_initFuture = null;
rethrow;
}
}
/// 提取 geosite 文件到 workingDir
Future<void> _kr_extractGeositeFiles() async {
try {
// 创建 geosite 目录
final geositeDir = Directory(p.join(kr_configDics.workingDir.path, 'geosite'));
if (!geositeDir.existsSync()) {
await geositeDir.create(recursive: true);
KRLogUtil.kr_i('✅ 已创建 geosite 目录: ${geositeDir.path}', tag: 'SingBox');
}
// 需要提取的文件列表
final files = ['geoip-cn.srs', 'geosite-cn.srs'];
for (final filename in files) {
final assetPath = 'assets/geosite/$filename';
final targetPath = p.join(geositeDir.path, filename);
final targetFile = File(targetPath);
// 检查文件是否已存在
if (targetFile.existsSync()) {
final fileSize = await targetFile.length();
KRLogUtil.kr_i('📄 $filename 已存在 (${fileSize} bytes), 跳过', tag: 'SingBox');
continue;
}
// 从 assets 加载文件
KRLogUtil.kr_i('📥 正在提取 $filename...', tag: 'SingBox');
final byteData = await rootBundle.load(assetPath);
final bytes = byteData.buffer.asUint8List();
// 写入文件系统
await targetFile.writeAsBytes(bytes);
final writtenSize = await targetFile.length();
KRLogUtil.kr_i('✅ 提取成功: $filename (${writtenSize} bytes)', tag: 'SingBox');
}
KRLogUtil.kr_i('🎉 所有 geosite 文件提取完成', tag: 'SingBox');
} catch (e, stackTrace) {
KRLogUtil.kr_e('❌ 提取 geosite 文件失败: $e', tag: 'SingBox');
KRLogUtil.kr_e('堆栈: $stackTrace', tag: 'SingBox');
// 不抛出异常,让应用继续运行(使用远程规则集作为后备)
}
}
Map<String, dynamic> _getConfigOption() {
// 不使用缓存,每次都重新生成配置
// if (kr_configOption.isNotEmpty) {
// return kr_configOption;
// }
// 🔧 关键修复:全局代理模式下,region 强制设为 'other'libcore 就不会生成国家直连规则
final String effectiveRegion;
if (kr_connectionType.value == KRConnectionType.global) {
effectiveRegion = 'other'; // 全局代理:不添加任何国家规则
KRLogUtil.kr_i('🌐 [全局代理模式] region 设为 other,所有流量走代理', tag: 'SingBox');
} else {
effectiveRegion = KRCountryUtil.kr_getCurrentCountryCode(); // 智能代理:使用用户选择的国家
KRLogUtil.kr_i('✅ [智能代理模式] region 设为 $effectiveRegion', tag: 'SingBox');
}
final op = {
"region": "other", // 参考 hiddify-app: 默认使用 "other" 跳过规则集下载
"region": effectiveRegion, // 🔧 修复:根据出站模式动态设置 region
"block-ads": false, // 参考 hiddify-app: 默认关闭广告拦截
"use-xray-core-when-possible": false,
"execute-config-as-is": false,
"execute-config-as-is": true, // 🔧 修复:使用我们生成的完整配置,不让 libcore 重写
"log-level": "info", // 调试阶段使用 info,生产环境改为 warn
"resolve-destination": false,
"ipv6-mode": "ipv4_only", // 参考 hiddify-app: 仅使用 IPv4 (有效值: ipv4_only, prefer_ipv4, prefer_ipv6, ipv6_only)
"remote-dns-address": "udp://1.1.1.1", // 参考 hiddify-app: 使用 Cloudflare DNS
"remote-dns-address": _kr_isAndroidEmulator
? "local"
: "https://dns.google/dns-query",
"remote-dns-domain-strategy": "prefer_ipv4",
"direct-dns-address": "udp://1.1.1.1", // 参考 hiddify-app: 统一使用 1.1.1.1
"direct-dns-address": "local",
"direct-dns-domain-strategy": "prefer_ipv4",
"mixed-port": kr_port,
"tproxy-port": kr_port,
@@ -485,13 +634,21 @@ class KRSingBoxImp {
"enable-tun": Platform.isIOS || Platform.isAndroid,
"enable-tun-service": false,
"set-system-proxy":
Platform.isWindows || Platform.isLinux || Platform.isMacOS,
Platform.isWindows || Platform.isLinux || Platform.isMacOS,
"bypass-lan": false,
"allow-connection-from-lan": false,
"enable-fake-dns": false,
"enable-dns-routing": true,
"independent-dns-cache": true,
"rules": [],
"rules": [
// ✅ 自定义域名直连规则 - 添加到 HiddifyOptions.Rules 中
// 这样 Native 层的 config.BuildConfig() 会将其包含到最终配置
// 注意:libcore 要求 domains 字段使用前缀格式,如 "domain:ip.sb" 表示 domain_suffix
{
"domains": "domain:api.hifast.biz", // domain: 前缀表示 domain_suffix 匹配
"outbound": "bypass" // bypass = direct
}
],
"mux": {
"enable": false,
"padding": false,
@@ -536,9 +693,61 @@ class KRSingBoxImp {
}
};
kr_configOption = op;
// 🔧 调试日志:确认自定义规则已添加
final rules = op["rules"] as List?;
KRLogUtil.kr_i('✅ HiddifyOptions 已生成,包含 ${rules?.length ?? 0} 条自定义路由规则', tag: 'SingBox');
if (rules != null && rules.isNotEmpty) {
for (var rule in rules) {
final ruleMap = rule as Map<String, dynamic>;
KRLogUtil.kr_i(' - 规则: domains=${ruleMap["domains"]}, outbound=${ruleMap["outbound"]}', tag: 'SingBox');
}
}
return op;
}
/// 动态构建 DNS 配置
///
/// - 真机:使用远程 DoH + 本地系统 DNS,final 指向远程
/// - 模拟器:仅使用系统 DNS,final 指向直连,避免覆盖系统 DNS
/// 返回:Sing-box `dns` 段配置 Map
Map<String, dynamic> _kr_buildDnsConfig() {
if (_kr_isAndroidEmulator) {
KRLogUtil.kr_i('🛡️ 模拟器兼容模式:强制使用系统 DNS', tag: 'SingBox');
return {
"servers": [
{
"tag": "dns-direct",
"address": "local",
"detour": "direct"
}
],
"rules": [],
"final": "dns-direct",
"strategy": "prefer_ipv4"
};
}
return {
"servers": [
{
"tag": "dns-remote",
"address": "https://1.1.1.1/dns-query",
"address_resolver": "dns-direct"
},
{
"tag": "dns-direct",
"address": "local",
"detour": "direct"
}
],
"rules": _kr_buildDnsRules(),
"final": "dns-remote",
"strategy": "prefer_ipv4"
};
}
/// 订阅状态变化流
/// 参考 hiddify-app: 监听 libcore 发送的状态事件来自动更新 UI
void _kr_subscribeToStatus() {
@@ -561,7 +770,7 @@ class KRSingBoxImp {
_kr_subscriptions.add(
kr_singBox.watchStatus().listen(
(status) {
(status) {
if (kDebugMode) {
print('🔵 收到 Native 状态更新: ${status.runtimeType}');
}
@@ -599,7 +808,7 @@ class KRSingBoxImp {
// 所以外层必须有 try-catch
final stream = kr_singBox.watchStats();
final subscription = stream.listen(
(stats) {
(stats) {
kr_stats.value = stats;
},
onError: (error) {
@@ -624,7 +833,7 @@ class KRSingBoxImp {
_kr_subscriptions.add(
kr_singBox.watchActiveGroups().listen(
(groups) {
(groups) {
print('[watchActiveGroups] 📡 收到活动组更新,数量: ${groups.length}');
KRLogUtil.kr_i('📡 收到活动组更新,数量: ${groups.length}', tag: 'SingBox');
kr_activeGroups.value = groups;
@@ -651,7 +860,7 @@ class KRSingBoxImp {
_kr_subscriptions.add(
kr_singBox.watchGroups().listen(
(groups) {
(groups) {
print('[watchGroups] 📡 收到所有组更新,数量: ${groups.length}');
kr_allGroups.value = groups;
// 打印每个组的基本信息
@@ -679,7 +888,7 @@ class KRSingBoxImp {
// 查找 "select" 组
final selectGroup = kr_activeGroups.firstWhere(
(group) => group.tag == 'select',
(group) => group.tag == 'select',
orElse: () => throw Exception('未找到 "select" 选择器组'),
);
@@ -719,11 +928,11 @@ class KRSingBoxImp {
///
/// 确保 command.sock 准备好后再执行节点选择
Future<void> _kr_selectOutboundWithRetry(
String groupTag,
String outboundTag, {
int maxAttempts = 3,
int initialDelay = 100,
}) async {
String groupTag,
String outboundTag, {
int maxAttempts = 3,
int initialDelay = 100,
}) async {
int attempt = 0;
int delay = initialDelay;
@@ -952,7 +1161,7 @@ class KRSingBoxImp {
await Future.delayed(const Duration(milliseconds: 2000));
final savedNode = await KRSecureStorage().kr_readData(key: _keySelectedNode);
if (savedNode != null && savedNode.isNotEmpty && savedNode != 'auto') {
if (savedNode != null && savedNode.isNotEmpty && savedNode != 'auto' && !savedNode.endsWith('-auto')) {
KRLogUtil.kr_i('🔄 恢复用户选择的节点: $savedNode', tag: 'SingBox');
try {
@@ -993,7 +1202,9 @@ class KRSingBoxImp {
// print("错误堆栈: $stack");
// }
// }
void kr_saveAllOutbounds(List<Map<String, dynamic>> outbounds) {
Kr_allOutbounds = outbounds;
}
/// 保存配置文件
void kr_saveOutbounds(List<Map<String, dynamic>> outbounds) async {
KRLogUtil.kr_i('💾 开始保存配置文件...', tag: 'SingBox');
@@ -1010,6 +1221,9 @@ class KRSingBoxImp {
if (outbound['method'] != null) {
KRLogUtil.kr_i(' - method: ${outbound['method']}', tag: 'SingBox');
}
if (outbound['interval'] != null) {
KRLogUtil.kr_i(' - interval: ${outbound['interval']}', tag: 'SingBox');
}
if (outbound['password'] != null) {
KRLogUtil.kr_i(' - password: ${outbound['password']?.toString().substring(0, 8)}...', tag: 'SingBox');
}
@@ -1031,17 +1245,64 @@ class KRSingBoxImp {
KRLogUtil.kr_i('✅ 过滤后节点数量: ${kr_outbounds.length}/${outbounds.length}', tag: 'SingBox');
// 只保存 outboundsMobile.buildConfig() 会添加其他配置
final map = {
"outbounds": kr_outbounds
// 🔧 修复:生成完整的 SingBox 配置
// 之前只保存 {"outbounds": [...]}, 导致 libcore 无法正确处理
// 现在保存完整配置,包含所有必需字段
final Map<String, dynamic> fullConfig = {
"log": {
"level": "debug",
"timestamp": true
},
"dns": _kr_buildDnsConfig(),
"inbounds": [
{
"type": "tun",
"tag": "tun-in",
"interface_name": "utun",
"inet4_address": "172.19.0.1/30",
"auto_route": true,
"strict_route": true,
"sniff": true,
"sniff_override_destination": false
}
],
"outbounds": [
// 🔧 修复:添加 selector 组,让用户可以手动选择节点
{
"type": "selector",
"tag": "proxy",
"outbounds": kr_outbounds.map((o) => o['tag'] as String).toList(),
"default": kr_outbounds.isNotEmpty ? kr_outbounds[0]['tag'] : "direct",
},
...kr_outbounds,
{
"type": "direct",
"tag": "direct"
},
{
"type": "block",
"tag": "block"
},
{
"type": "dns",
"tag": "dns-out"
}
],
"route": {
"rules": _kr_buildRouteRules(), // ✅ 使用动态构建的路由规则
"rule_set": _kr_buildRuleSets(), // ✅ 使用动态构建的规则集
"final": "proxy", // 🔧 修复:使用 selector 组作为默认出站
"auto_detect_interface": true
}
};
final file = _file(kr_configName);
final temp = _tempFile(kr_configName);
final mapStr = jsonEncode(map);
final mapStr = jsonEncode(fullConfig);
KRLogUtil.kr_i('📄 配置文件内容长度: ${mapStr.length}', tag: 'SingBox');
KRLogUtil.kr_i('📄 完整配置文件内容: $mapStr', tag: 'SingBox');
KRLogUtil.kr_i('📄 完整配置文件长度: ${mapStr.length}', tag: 'SingBox');
KRLogUtil.kr_i('📄 Outbounds 数量: ${kr_outbounds.length}', tag: 'SingBox');
KRLogUtil.kr_i('📄 配置前800字符:\n${mapStr.substring(0, mapStr.length > 800 ? 800 : mapStr.length)}', tag: 'SingBox');
await file.writeAsString(mapStr);
await temp.writeAsString(mapStr);
@@ -1058,6 +1319,128 @@ class KRSingBoxImp {
KRLogUtil.kr_i('✅ 配置文件保存完成', tag: 'SingBox');
}
/// 构建 DNS 规则
List<Map<String, dynamic>> _kr_buildDnsRules() {
final currentCountryCode = KRCountryUtil.kr_getCurrentCountryCode();
final rules = <Map<String, dynamic>>[];
// 🔧 关键修复:只有在"智能代理"模式下,才根据国家添加直连规则
// 如果是"全局代理"模式,即使选择了国家也不添加直连规则
if (kr_connectionType.value == KRConnectionType.rule && currentCountryCode != 'other') {
rules.add({
"rule_set": [
"geoip-$currentCountryCode",
"geosite-$currentCountryCode",
],
"server": "dns-direct"
});
KRLogUtil.kr_i('✅ [智能代理模式] 添加 DNS 规则: $currentCountryCode 域名使用直连 DNS', tag: 'SingBox');
} else if (kr_connectionType.value == KRConnectionType.global) {
KRLogUtil.kr_i('🌐 [全局代理模式] 跳过国家 DNS 规则,所有DNS查询走代理', tag: 'SingBox');
}
return rules;
}
/// 构建路由规则
List<Map<String, dynamic>> _kr_buildRouteRules() {
final currentCountryCode = KRCountryUtil.kr_getCurrentCountryCode();
final rules = <Map<String, dynamic>>[];
// 基础规则: DNS 查询走 dns-out
rules.add({
"protocol": "dns",
"outbound": "dns-out"
});
// ✅ 自定义域名直连规则(优先级高,放在前面)
// rules.add({
// "domain_suffix": ["ip138.com"],
// "outbound": "direct"
// });
// KRLogUtil.kr_i('✅ 添加自定义域名直连规则: ip138.com -> direct', tag: 'SingBox');
// 🔧 关键修复:只有在"智能代理"模式下,才根据国家添加直连规则
// 如果是"全局代理"模式,即使选择了国家也不添加直连规则
if (kr_connectionType.value == KRConnectionType.rule && currentCountryCode != 'other') {
rules.add({
"rule_set": [
"geoip-$currentCountryCode",
"geosite-$currentCountryCode",
],
"outbound": "direct"
});
KRLogUtil.kr_i('✅ [智能代理模式] 添加路由规则: $currentCountryCode IP/域名直连', tag: 'SingBox');
} else if (kr_connectionType.value == KRConnectionType.global) {
KRLogUtil.kr_i('🌐 [全局代理模式] 跳过国家路由规则,所有流量走代理', tag: 'SingBox');
}
return rules;
}
/// 构建规则集配置
List<Map<String, dynamic>> _kr_buildRuleSets() {
final currentCountryCode = KRCountryUtil.kr_getCurrentCountryCode();
final ruleSets = <Map<String, dynamic>>[];
// 🔧 关键修复:只有在"智能代理"模式下,才加载国家规则集
// 如果是"全局代理"模式,即使选择了国家也不加载规则集
if (kr_connectionType.value == KRConnectionType.rule && currentCountryCode != 'other') {
// 检查本地文件是否存在
final geoipFile = File(p.join(kr_configDics.workingDir.path, 'geosite', 'geoip-$currentCountryCode.srs'));
final geositeFile = File(p.join(kr_configDics.workingDir.path, 'geosite', 'geosite-$currentCountryCode.srs'));
if (geoipFile.existsSync() && geositeFile.existsSync()) {
// ✅ 使用本地文件
ruleSets.add({
"type": "local",
"tag": "geoip-$currentCountryCode",
"format": "binary",
"path": "./geosite/geoip-$currentCountryCode.srs" // 相对于 workingDir
});
ruleSets.add({
"type": "local",
"tag": "geosite-$currentCountryCode",
"format": "binary",
"path": "./geosite/geosite-$currentCountryCode.srs"
});
KRLogUtil.kr_i('✅ 使用本地规则集: $currentCountryCode', tag: 'SingBox');
KRLogUtil.kr_i(' - geoip: ./geosite/geoip-$currentCountryCode.srs', tag: 'SingBox');
KRLogUtil.kr_i(' - geosite: ./geosite/geosite-$currentCountryCode.srs', tag: 'SingBox');
} else {
// ❌ 本地文件不存在,使用远程规则集作为后备
KRLogUtil.kr_w('⚠️ 本地规则集不存在,使用远程规则集', tag: 'SingBox');
KRLogUtil.kr_w(' - geoip 文件存在: ${geoipFile.existsSync()}', tag: 'SingBox');
KRLogUtil.kr_w(' - geosite 文件存在: ${geositeFile.existsSync()}', tag: 'SingBox');
ruleSets.add({
"type": "remote",
"tag": "geoip-$currentCountryCode",
"format": "binary",
"url": "https://raw.githubusercontent.com/hiddify/hiddify-geo/rule-set/country/geoip-$currentCountryCode.srs",
"download_detour": "direct",
"update_interval": "7d"
});
ruleSets.add({
"type": "remote",
"tag": "geosite-$currentCountryCode",
"format": "binary",
"url": "https://raw.githubusercontent.com/hiddify/hiddify-geo/rule-set/country/geosite-$currentCountryCode.srs",
"download_detour": "direct",
"update_interval": "7d"
});
}
}
return ruleSets;
}
Future<void> kr_start() async {
// 不再手动设置状态,libcore 会通过 status stream 自动发送状态更新
try {
@@ -1069,9 +1452,46 @@ class KRSingBoxImp {
// ⚠️ 强制编译标记 - v2.0-lazy-load
KRLogUtil.kr_i('🚀🚀🚀 [v2.0-lazy-load] 开始启动 SingBox...', tag: 'SingBox');
// 🔧 强制重新生成配置文件(确保最新的路由规则生效)
if (kr_outbounds.isNotEmpty) {
KRLogUtil.kr_i('🔄 启动前强制重新生成配置文件...', tag: 'SingBox');
final selectedNode = await KRSecureStorage().kr_readData(key: _keySelectedNode);
var toSave = Kr_allOutbounds;
if (selectedNode != null && selectedNode.endsWith('-auto')) {
KRLogUtil.kr_i('🤖 检测到自动国家节点: $selectedNode', tag: 'SingBox');
final selectedCountry = selectedNode.replaceAll(RegExp(r'-auto$'), '');
toSave = Kr_allOutbounds.where((o) {
final country = o['country']?.toString() ?? '';
if (country.isNotEmpty) return country == selectedCountry;
final tag = o['tag']?.toString() ?? '';
if (tag == selectedNode) return true;
return tag.toLowerCase().contains(selectedCountry.toLowerCase());
}).toList();
KRLogUtil.kr_i('✅ 自动国家过滤: ${toSave.length}/${Kr_allOutbounds.length}', tag: 'SingBox');
}
kr_saveOutbounds(toSave);
await Future.delayed(const Duration(milliseconds: 100));
}
KRLogUtil.kr_i('📁 配置文件路径: $_cutPath', tag: 'SingBox');
KRLogUtil.kr_i('📝 配置名称: $kr_configName', tag: 'SingBox');
// 🔑 Windows 平台:在启动前备份 DNS 设置
if (Platform.isWindows) {
KRLogUtil.kr_i('🪟 Windows 平台,备份 DNS 设置...', tag: 'SingBox');
try {
final backupSuccess = await KRWindowsDnsUtil.instance.kr_backupDnsSettings();
if (backupSuccess) {
KRLogUtil.kr_i('✅ Windows DNS 备份成功', tag: 'SingBox');
} else {
KRLogUtil.kr_w('⚠️ Windows DNS 备份失败,将在停止时使用兜底恢复', tag: 'SingBox');
}
} catch (e) {
KRLogUtil.kr_w('⚠️ Windows DNS 备份异常: $e,将在停止时使用兜底恢复', tag: 'SingBox');
}
}
// 🔑 先尝试停止旧实例,避免 command.sock 冲突
// 注意:如果没有旧实例,libcore 会报错 "command.sock: no such file",这是正常的
try {
@@ -1089,11 +1509,11 @@ class KRSingBoxImp {
final oOption = SingboxConfigOption.fromJson(_getConfigOption());
final changeResult = await kr_singBox.changeOptions(oOption).run();
changeResult.match(
(error) {
(error) {
KRLogUtil.kr_e('❌ changeOptions() 失败: $error', tag: 'SingBox');
throw Exception('初始化 HiddifyOptions 失败: $error');
},
(_) {
(_) {
KRLogUtil.kr_i('✅ HiddifyOptions 初始化成功', tag: 'SingBox');
},
);
@@ -1112,7 +1532,7 @@ class KRSingBoxImp {
_kr_subscribeToStatus();
await kr_singBox.start(_cutPath, kr_configName, false).map(
(r) {
(r) {
KRLogUtil.kr_i('✅ SingBox 启动成功', tag: 'SingBox');
},
).mapLeft((err) {
@@ -1225,12 +1645,12 @@ class KRSingBoxImp {
await Future.delayed(const Duration(milliseconds: 100));
// 添加超时保护,防止 stop() 调用阻塞
// 缩短超时时间,避免用户等待过久
// 🔧 延长超时时间到 10 秒,给 Windows DNS 清理足够时间
try {
await kr_singBox.stop().run().timeout(
const Duration(seconds: 3),
const Duration(seconds: 10), // ← 从 3 秒延长到 10 秒
onTimeout: () {
KRLogUtil.kr_w('⚠️ 停止操作超时(3秒),强制继续', tag: 'SingBox');
KRLogUtil.kr_w('⚠️ 停止操作超时(10秒),强制继续', tag: 'SingBox');
return const Left('timeout');
},
);
@@ -1239,7 +1659,29 @@ class KRSingBoxImp {
// 继续执行清理操作
}
await Future.delayed(const Duration(milliseconds: 500));
// 🔑 Windows 平台:停止后立即恢复 DNS 设置
if (Platform.isWindows) {
KRLogUtil.kr_i('🪟 Windows 平台,开始恢复 DNS 设置...', tag: 'SingBox');
// 等待 sing-box 完全停止
await Future.delayed(const Duration(milliseconds: 1000));
try {
// 尝试恢复 DNS
final restoreSuccess = await KRWindowsDnsUtil.instance.kr_restoreDnsSettings();
if (restoreSuccess) {
KRLogUtil.kr_i('✅ Windows DNS 恢复成功', tag: 'SingBox');
} else {
KRLogUtil.kr_e('❌ Windows DNS 恢复失败', tag: 'SingBox');
}
} catch (e) {
KRLogUtil.kr_e('❌ Windows DNS 恢复异常: $e', tag: 'SingBox');
// 异常时也会在工具类内部执行兜底恢复
}
} else {
// 非 Windows 平台正常等待
await Future.delayed(const Duration(milliseconds: 500));
}
// 取消统计和分组订阅,但保留状态订阅以便继续接收状态更新
final subscriptionsToCancel = _kr_subscriptions.where((sub) {
@@ -1261,6 +1703,17 @@ class KRSingBoxImp {
} catch (e, stackTrace) {
KRLogUtil.kr_e('停止服务时出错: $e');
KRLogUtil.kr_e('错误堆栈: $stackTrace');
// 🔑 即使出错,也要尝试恢复 Windows DNS
if (Platform.isWindows) {
KRLogUtil.kr_w('⚠️ 停止异常,强制执行 DNS 恢复', tag: 'SingBox');
try {
await KRWindowsDnsUtil.instance.kr_restoreDnsSettings();
} catch (dnsError) {
KRLogUtil.kr_e('❌ 强制 DNS 恢复失败: $dnsError', tag: 'SingBox');
}
}
// 不手动设置状态,信任 libcore 的状态管理
rethrow;
}
@@ -1284,10 +1737,25 @@ class KRSingBoxImp {
}
Future<void> kr_restart() async {
KRLogUtil.kr_i("restart");
kr_singBox.restart(_cutPath, kr_configName, false).mapLeft((err) {
KRLogUtil.kr_e('重启失败: $err');
}).run();
KRLogUtil.kr_i('🔄 重启 SingBox...', tag: 'SingBox');
// 🔧 修复:使用 stop + start 而不是 restart
// 这样可以触发 Windows DNS 恢复和备份逻辑
try {
// 1. 先停止(会触发 DNS 恢复)
await kr_stop();
// 2. 等待完全停止
await Future.delayed(const Duration(milliseconds: 500));
// 3. 重新启动(会触发 DNS 备份)
await kr_start();
KRLogUtil.kr_i('✅ SingBox 重启完成', tag: 'SingBox');
} catch (e) {
KRLogUtil.kr_e('❌ 重启失败: $e', tag: 'SingBox');
rethrow;
}
}
//// 设置出站模式
@@ -1316,9 +1784,9 @@ class KRSingBoxImp {
mode = KRCountryUtil.kr_getCurrentCountryCode();
KRLogUtil.kr_i('🎯 切换到规则代理模式: $mode', tag: 'SingBox');
break;
// case KRConnectionType.direct:
// mode = "direct";
// break;
// case KRConnectionType.direct:
// mode = "direct";
// break;
}
oOption["region"] = mode;
KRLogUtil.kr_i('📝 更新 region 配置: $mode', tag: 'SingBox');
@@ -1429,9 +1897,11 @@ class KRSingBoxImp {
await _kr_ensureCommandClientInitialized();
KRLogUtil.kr_i('✅ Command client 已就绪,执行节点切换', tag: 'SingBox');
// 🔧 关键修复:使用 await 等待节点选择完成
KRLogUtil.kr_i('⏳ 调用 selectOutbound("select", "$tag")...', tag: 'SingBox');
await _kr_selectOutboundWithRetry("select", tag, maxAttempts: 3, initialDelay: 50);
// 🔧 关键修复:使用正确的 group tag
// libcore 生成的selector组的tag是"proxy"而不是"select"
final selectorGroupTag = kr_activeGroups.any((g) => g.tag == 'select') ? 'select' : 'proxy';
KRLogUtil.kr_i('⏳ 调用 selectOutbound("$selectorGroupTag", "$tag")...', tag: 'SingBox');
await _kr_selectOutboundWithRetry(selectorGroupTag, tag, maxAttempts: 3, initialDelay: 50);
KRLogUtil.kr_i('✅ 节点切换API调用完成: $tag', tag: 'SingBox');
// 🔧 新增:验证节点切换是否生效
@@ -1447,15 +1917,15 @@ class KRSingBoxImp {
// 🔄 如果用户选择了具体节点(不是 auto),启动定期检查和重新选择
// 这是为了防止 urltest 自动覆盖用户的手动选择
_nodeSelectionTimer?.cancel();
if (tag != 'auto') {
if (tag != 'auto' && !tag.endsWith('-auto')) {
KRLogUtil.kr_i('🔁 启动节点选择监控,防止被 auto 覆盖', tag: 'SingBox');
_nodeSelectionTimer = Timer.periodic(const Duration(seconds: 20), (timer) {
// 每 20 秒重新选择一次,确保用户选择不被覆盖
// 使用 then/catchError 避免异常导致 UI 阻塞
kr_singBox.selectOutbound("select", tag).run().then((result) {
result.match(
(error) => KRLogUtil.kr_w('🔁 定时器重选节点失败: $error', tag: 'SingBox'),
(_) => KRLogUtil.kr_d('🔁 定时器重选节点成功', tag: 'SingBox'),
(error) => KRLogUtil.kr_w('🔁 定时器重选节点失败: $error', tag: 'SingBox'),
(_) => KRLogUtil.kr_d('🔁 定时器重选节点成功', tag: 'SingBox'),
);
}).catchError((error) {
KRLogUtil.kr_w('🔁 定时器重选节点异常: $error', tag: 'SingBox');
@@ -1465,87 +1935,6 @@ class KRSingBoxImp {
}
}
/// 🌍 国家级节点选择
/// 如果传入 'auto',则调用原有 kr_selectOutbound('auto')
/// 否则根据国家名筛选该国节点,自动选择延迟最低的节点
Future<void> kr_selectCountry(String country) async {
KRLogUtil.kr_i('🌎 [v2.1] 开始选择国家: $country', tag: 'SingBox');
if (country == 'auto') {
KRLogUtil.kr_i('🌀 国家为 auto,执行自动节点选择逻辑', tag: 'SingBox');
await kr_selectOutbound('auto');
return;
}
if (kr_activeGroups.isEmpty) {
KRLogUtil.kr_w('⚠️ kr_activeGroups 当前为空,无法进行国家选择', tag: 'SingBox');
return;
}
/*final selectGroup = kr_activeGroups.firstWhere(
(group) => group.tag == 'select',
orElse: () => throw Exception('未找到 "select" 组'),
);
final countryNodes = selectGroup.items.where((item) {
final nodeCountry = item.options?['country'] ?? '';
return nodeCountry.toString().toLowerCase() == country.toLowerCase();
}).toList();
if (countryNodes.isEmpty) {
KRLogUtil.kr_w('⚠️ 未找到该国家的节点: $country', tag: 'SingBox');
for (var item in selectGroup.items) {
KRLogUtil.kr_d(
' 可用节点: ${item.tag} (${item.options?['country'] ?? '未知'})',
tag: 'SingBox',
);
}
return;
}
KRLogUtil.kr_i('🇨🇭 找到 ${countryNodes.length} 个属于 "$country" 的节点', tag: 'SingBox');
// 按延迟排序(无延迟则 9999)
countryNodes.sort((a, b) =>
(a.urlTestDelay ?? 9999).compareTo(b.urlTestDelay ?? 9999));
final fastestNode = countryNodes.first;
final selectedTag = fastestNode.tag;
final delay = fastestNode.urlTestDelay ?? -1;
KRLogUtil.kr_i('✅ 选中该国家最快节点: $selectedTag (${delay}ms)', tag: 'SingBox');
try {
await KRSecureStorage().kr_saveData(key: 'selected_country', value: country);
await KRSecureStorage().kr_saveData(key: _keySelectedNode, value: selectedTag);
} catch (e) {
KRLogUtil.kr_w('⚠️ 保存国家/节点信息失败: $e', tag: 'SingBox');
}
try {
await _kr_ensureCommandClientInitialized();
await _kr_selectOutboundWithRetry('select', selectedTag,
maxAttempts: 3, initialDelay: 100);
KRLogUtil.kr_i('✅ 国家内节点切换成功: $selectedTag', tag: 'SingBox');
} catch (e) {
KRLogUtil.kr_e('❌ 国家内节点选择失败: $e', tag: 'SingBox');
rethrow;
}
_nodeSelectionTimer?.cancel();
KRLogUtil.kr_i('🔁 启动定时器防止节点被 auto 覆盖', tag: 'SingBox');
_nodeSelectionTimer =
Timer.periodic(const Duration(seconds: 20), (timer) async {
try {
await kr_singBox.selectOutbound('select', selectedTag).run();
KRLogUtil.kr_d('🔁 定时确认国家内节点: $selectedTag', tag: 'SingBox');
} catch (e) {
KRLogUtil.kr_w('🔁 定时确认失败: $e', tag: 'SingBox');
}
});*/
}
/// 配合文件地址
Directory get directory =>
+11 -8
View File
@@ -15,7 +15,8 @@ enum KRCountry {
ru('俄罗斯'),
id('印度尼西亚'),
tr('土耳其'),
br('巴西');
br('巴西'),
other('全局代理'); // ✅ 新增:全局代理模式(所有流量走代理,不添加国家直连规则)
final String kr_name;
const KRCountry(this.kr_name);
@@ -30,7 +31,7 @@ enum KRCountry {
static KRCountry? kr_fromCode(String code) {
try {
return KRCountry.values.firstWhere(
(country) => country.kr_code == code.toLowerCase(),
(country) => country.kr_code == code.toLowerCase(),
);
} catch (e) {
return null;
@@ -53,7 +54,7 @@ class KRCountryUtil {
static Future<void> kr_init() async {
try {
final String? kr_savedCountry =
await _kr_storage.kr_readData(key: _kr_countryKey);
await _kr_storage.kr_readData(key: _kr_countryKey);
if (kr_savedCountry != null) {
final KRCountry? kr_country = KRCountry.kr_fromCode(kr_savedCountry);
if (kr_country != null) {
@@ -106,7 +107,7 @@ class KRCountryUtil {
return kr_currentCountry.value.kr_code;
}
static String kr_getCurrentCountryName() {
static String kr_getCurrentCountryName() {
return kr_getCountryName(kr_currentCountry.value);
}
@@ -131,12 +132,14 @@ class KRCountryUtil {
return AppTranslations.kr_country.tr;
case KRCountry.br:
return AppTranslations.kr_country.br;
case KRCountry.other:
return '全局代理'; // ✅ 新增:全局代理
}
}
/// 获取所有支持的国家列表
static List<KRCountry> kr_getSupportedCountries() {
if (AppConfig().kr_is_daytime == false) {
if (AppConfig().kr_is_daytime == false) {
return KRCountry.values.where((element) => element != KRCountry.cn).toList();
}
return KRCountry.values;
@@ -146,9 +149,9 @@ class KRCountryUtil {
static List<Map<String, String>> kr_getCountryInfoList() {
return KRCountry.values
.map((country) => {
'code': country.kr_code,
'name': country.kr_countryName,
})
'code': country.kr_code,
'name': country.kr_countryName,
})
.toList();
}
}
+101 -77
View File
@@ -1,127 +1,151 @@
import 'dart:io';
import 'dart:async';
import 'package:kaer_with_panels/app/utils/kr_log_util.dart';
import 'kr_log_util.dart';
/// 延迟测试工具
/// 提供真实的 TCP 连接延迟测试功能
/// 真正的节点延迟测试工具
class KRLatencyTester {
/// 测试单个节点的延迟
///
/// 参数:
/// - host: 主机地址
/// - port: 端口号
/// - timeout: 超时时间(毫秒)
///
/// 返回:
/// - 延迟时间(毫秒),如果失败返回 65535
static Future<int> testNode({
/// TCP 连接测试延迟(真实测试)
/// 返回延迟毫秒数,失败返回 65535
static Future<int> testTcpLatency({
required String host,
required int port,
int timeout = 5000,
Duration timeout = const Duration(seconds: 5),
}) async {
try {
final stopwatch = Stopwatch()..start();
Socket? socket;
final stopwatch = Stopwatch();
final socket = await Socket.connect(
try {
KRLogUtil.kr_i('🔌 开始测试: $host:$port', tag: 'LatencyTester');
stopwatch.start();
// 尝试 TCP 连接
socket = await Socket.connect(
host,
port,
timeout: Duration(milliseconds: timeout),
).timeout(Duration(milliseconds: timeout));
timeout: timeout,
);
stopwatch.stop();
// 立即关闭连接
await socket.close();
socket.destroy();
final latency = stopwatch.elapsedMilliseconds;
KRLogUtil.kr_i('✅ 延迟测试成功: $host:$port = ${latency}ms', tag: 'KRLatencyTester');
KRLogUtil.kr_i('✅ 测试成功: $host:$port - ${latency}ms', tag: 'LatencyTester');
return latency;
} on SocketException catch (e) {
stopwatch.stop();
KRLogUtil.kr_w('❌ 连接失败: $host:$port - ${e.message}', tag: 'LatencyTester');
return 65535;
} on TimeoutException catch (e) {
stopwatch.stop();
KRLogUtil.kr_w('⏱️ 连接超时: $host:$port - $e', tag: 'LatencyTester');
return 65535;
} catch (e) {
KRLogUtil.kr_w('❌ 延迟测试失败: $host:$port - $e', tag: 'KRLatencyTester');
return 65535; // 测试失败返回最大值
stopwatch.stop();
KRLogUtil.kr_e('❌ 测试异常: $host:$port - $e', tag: 'LatencyTester');
return 65535;
} finally {
// 确保关闭连接
try {
await socket?.close();
} catch (e) {
// 忽略关闭错误
}
}
}
/// 批量测试多个节点延迟
///
/// 参数:
/// - nodes: 节点列表,格式为 [{"host": "example.com", "port": 443}]
/// - concurrency: 并发数量
/// - timeout: 超时时间(毫秒)
///
/// 返回:
/// - 测试结果映射,键为 "host:port",值为延迟时间
/// 批量测试多个节点延迟(并发测试)
/// 返回 Map<节点tag, 延迟ms>
static Future<Map<String, int>> testMultipleNodes({
required List<MapEntry<String, SocketAddress>> nodes,
int concurrency = 10,
int timeout = 5000,
int concurrency = 10, // 并发数
Duration timeout = const Duration(seconds: 5),
}) async {
final results = <String, int>{};
final semaphore = Completer<void>();
var activeCount = 0;
var completedCount = 0;
final List<List<MapEntry<String, SocketAddress>>> batches = [];
KRLogUtil.kr_i('🚀 开始批量延迟测试,共 ${nodes.length} 个节点,并发数: $concurrency', tag: 'KRLatencyTester');
// 分批处理
for (int i = 0; i < nodes.length; i += concurrency) {
batches.add(
nodes.sublist(i, i + concurrency > nodes.length ? nodes.length : i + concurrency)
);
}
Future<void> processNode(MapEntry<String, SocketAddress> node) async {
try {
final host = node.value.address;
final port = node.value.port;
final key = node.key;
KRLogUtil.kr_i('📊 开始批量测试: ${nodes.length} 个节点,分 ${batches.length} 批,每批 $concurrency', tag: 'LatencyTester');
final latency = await testNode(
host: host,
port: port,
int completedCount = 0;
// 逐批测试
for (int batchIndex = 0; batchIndex < batches.length; batchIndex++) {
final batch = batches[batchIndex];
KRLogUtil.kr_i('📦 测试第 ${batchIndex + 1}/${batches.length} 批(${batch.length} 个节点)', tag: 'LatencyTester');
// 并发测试当前批次
final futures = batch.map((node) async {
final tag = node.key;
final address = node.value;
final latency = await testTcpLatency(
host: address.host,
port: address.port,
timeout: timeout,
);
results[key] = latency;
} catch (e) {
results[node.key] = 65535;
KRLogUtil.kr_e('❌ 节点测试异常: ${node.key} - $e', tag: 'KRLatencyTester');
} finally {
completedCount++;
activeCount--;
if (completedCount >= nodes.length) {
semaphore.complete();
if (completedCount % 5 == 0 || completedCount == nodes.length) {
KRLogUtil.kr_i('📈 测试进度: $completedCount/${nodes.length}', tag: 'LatencyTester');
}
}
}
// 分批处理节点
for (var i = 0; i < nodes.length; i += concurrency) {
final batch = nodes.skip(i).take(concurrency);
for (final node in batch) {
activeCount++;
processNode(node);
}
return MapEntry(tag, latency);
}).toList();
// 等待当前批次完成
if (i + concurrency < nodes.length) {
await Future.delayed(Duration(milliseconds: 100));
final batchResults = await Future.wait(futures);
// 收集结果
for (final result in batchResults) {
results[result.key] = result.value;
}
}
// 等待所有任务完成
await semaphore.future;
// 统计结果
final successCount = results.values.where((latency) => latency < 65535).length;
final failCount = results.length - successCount;
KRLogUtil.kr_i('✅ 批量测试完成', tag: 'LatencyTester');
KRLogUtil.kr_i('📊 成功: $successCount, 失败: $failCount', tag: 'LatencyTester');
// 显示延迟最低的前3个
final successNodes = results.entries
.where((e) => e.value < 65535)
.toList()
..sort((a, b) => a.value.compareTo(b.value));
if (successNodes.isNotEmpty) {
KRLogUtil.kr_i('🏆 延迟最低的前3个节点:', tag: 'LatencyTester');
for (int i = 0; i < 3 && i < successNodes.length; i++) {
KRLogUtil.kr_i(' ${i + 1}. ${successNodes[i].key}: ${successNodes[i].value}ms', tag: 'LatencyTester');
}
}
KRLogUtil.kr_i('✅ 批量延迟测试完成,成功: ${results.length}', tag: 'KRLatencyTester');
return results;
}
}
/// Socket 地址类
/// 表示网络地址和端口的组合
/// 节点地址信息
class SocketAddress {
final String address;
final String host;
final int port;
SocketAddress(this.address, this.port);
SocketAddress(this.host, this.port);
@override
String toString() => '$address:$port';
String toString() => '$host:$port';
}
+1 -1
View File
@@ -45,7 +45,7 @@ class KRWindowManager with WindowListener, TrayListener {
// 确保在 Windows 下正确设置窗口属性
if (Platform.isWindows) {
await windowManager.setTitleBarStyle(TitleBarStyle.normal);
await windowManager.setTitle('BearVPN');
await windowManager.setTitle('Hi快VPN');
await windowManager.setSize(const Size(800, 668));
await windowManager.setMinimumSize(const Size(800, 668));
await windowManager.center();
+439
View File
@@ -0,0 +1,439 @@
import 'dart:io';
import 'package:kaer_with_panels/app/utils/kr_log_util.dart';
/// Windows DNS 管理工具类
///
/// 用于在 Windows 平台上管理系统 DNS 设置
/// 主要功能:
/// 1. 备份原始 DNS 设置
/// 2. 恢复 DNS 设置
/// 3. 兜底设置为国内公共 DNS (223.5.5.5 和 114.114.114.114)
class KRWindowsDnsUtil {
/// 私有构造函数
KRWindowsDnsUtil._();
/// 单例实例
static final KRWindowsDnsUtil _instance = KRWindowsDnsUtil._();
/// 工厂构造函数
factory KRWindowsDnsUtil() => _instance;
/// 获取实例的静态方法
static KRWindowsDnsUtil get instance => _instance;
/// 原始 DNS 服务器地址(连接前备份)
List<String>? _originalDnsServers;
/// 主网络接口名称
String? _primaryInterfaceName;
/// 备份当前 DNS 设置
///
/// 在连接 VPN 之前调用,保存原始 DNS 配置
/// 返回:true-成功,false-失败
Future<bool> kr_backupDnsSettings() async {
if (!Platform.isWindows) {
KRLogUtil.kr_w('❌ 非 Windows 平台,跳过 DNS 备份', tag: 'WindowsDNS');
return false;
}
try {
KRLogUtil.kr_i('📦 开始备份 Windows DNS 设置...', tag: 'WindowsDNS');
// 1. 获取主网络接口
final interfaceName = await _kr_getPrimaryNetworkInterface();
if (interfaceName == null) {
KRLogUtil.kr_e('❌ 无法获取主网络接口', tag: 'WindowsDNS');
return false;
}
_primaryInterfaceName = interfaceName;
KRLogUtil.kr_i('🔍 主网络接口: $_primaryInterfaceName', tag: 'WindowsDNS');
// 2. 获取当前 DNS 服务器
final dnsServers = await _kr_getCurrentDnsServers(interfaceName);
if (dnsServers.isEmpty) {
KRLogUtil.kr_w('⚠️ 当前 DNS 为空,可能是自动获取', tag: 'WindowsDNS');
_originalDnsServers = []; // 空列表表示 DHCP 自动获取
} else {
_originalDnsServers = dnsServers;
KRLogUtil.kr_i('✅ 已备份 DNS: ${dnsServers.join(", ")}', tag: 'WindowsDNS');
}
return true;
} catch (e) {
KRLogUtil.kr_e('❌ 备份 DNS 设置失败: $e', tag: 'WindowsDNS');
return false;
}
}
/// 恢复原始 DNS 设置
///
/// 在断开 VPN 后调用,恢复备份的 DNS 配置
/// 如果恢复失败,会自动调用兜底机制设置为公共DNS
/// 返回:true-成功,false-失败
Future<bool> kr_restoreDnsSettings() async {
if (!Platform.isWindows) {
KRLogUtil.kr_w('❌ 非 Windows 平台,跳过 DNS 恢复', tag: 'WindowsDNS');
return false;
}
try {
KRLogUtil.kr_i('🔄 开始恢复 Windows DNS 设置...', tag: 'WindowsDNS');
// 1. 检查是否有备份
if (_primaryInterfaceName == null) {
KRLogUtil.kr_w('⚠️ 没有备份的网络接口,尝试自动检测', tag: 'WindowsDNS');
_primaryInterfaceName = await _kr_getPrimaryNetworkInterface();
if (_primaryInterfaceName == null) {
KRLogUtil.kr_e('❌ 无法检测网络接口,执行兜底恢复', tag: 'WindowsDNS');
return await _kr_fallbackRestoreDns();
}
}
// 2. 恢复原始 DNS
if (_originalDnsServers == null) {
KRLogUtil.kr_w('⚠️ 没有备份的 DNS,执行兜底恢复', tag: 'WindowsDNS');
return await _kr_fallbackRestoreDns();
}
if (_originalDnsServers!.isEmpty) {
// 原本是 DHCP 自动获取
KRLogUtil.kr_i('🔄 恢复为 DHCP 自动获取 DNS', tag: 'WindowsDNS');
final success = await _kr_setDnsToAuto(_primaryInterfaceName!);
if (!success) {
KRLogUtil.kr_w('⚠️ 恢复 DHCP 失败,执行兜底恢复', tag: 'WindowsDNS');
return await _kr_fallbackRestoreDns();
}
} else {
// 恢复指定的 DNS 服务器
KRLogUtil.kr_i('🔄 恢复原始 DNS: ${_originalDnsServers!.join(", ")}', tag: 'WindowsDNS');
final success = await _kr_setDnsServers(
_primaryInterfaceName!,
_originalDnsServers!,
);
if (!success) {
KRLogUtil.kr_w('⚠️ 恢复原始 DNS 失败,执行兜底恢复', tag: 'WindowsDNS');
return await _kr_fallbackRestoreDns();
}
}
// 3. 验证 DNS 是否恢复成功
await Future.delayed(const Duration(milliseconds: 500));
final currentDns = await _kr_getCurrentDnsServers(_primaryInterfaceName!);
KRLogUtil.kr_i('✅ 当前 DNS: ${currentDns.join(", ")}', tag: 'WindowsDNS');
// 4. 额外验证:确认 DNS 不再指向 127.0.0.1sing-box 的本地 DNS
final hasLocalhost = currentDns.any((dns) => dns.startsWith('127.'));
if (hasLocalhost) {
KRLogUtil.kr_w('⚠️ DNS 仍包含 127.0.0.1,可能未完全恢复', tag: 'WindowsDNS');
KRLogUtil.kr_w('⚠️ 执行兜底恢复', tag: 'WindowsDNS');
return await _kr_fallbackRestoreDns();
}
return true;
} catch (e) {
KRLogUtil.kr_e('❌ 恢复 DNS 设置失败: $e', tag: 'WindowsDNS');
KRLogUtil.kr_w('⚠️ 执行兜底恢复', tag: 'WindowsDNS');
return await _kr_fallbackRestoreDns();
}
}
/// 兜底恢复:强制设置为国内公共 DNS
///
/// 当正常恢复失败时,设置为安全的公共 DNS 服务器
/// - 主 DNS: 223.5.5.5 (阿里云)
/// - 备用 DNS: 114.114.114.114 (114DNS)
Future<bool> _kr_fallbackRestoreDns() async {
try {
KRLogUtil.kr_w('🆘 执行 DNS 兜底恢复机制', tag: 'WindowsDNS');
KRLogUtil.kr_i('🔧 设置为国内公共 DNS: 223.5.5.5, 114.114.114.114', tag: 'WindowsDNS');
// 1. 获取主网络接口(如果还没有)
if (_primaryInterfaceName == null) {
_primaryInterfaceName = await _kr_getPrimaryNetworkInterface();
if (_primaryInterfaceName == null) {
KRLogUtil.kr_e('❌ 无法检测网络接口,兜底恢复失败', tag: 'WindowsDNS');
return false;
}
}
// 2. 设置为公共 DNS
final fallbackDns = ['223.5.5.5', '114.114.114.114'];
final success = await _kr_setDnsServers(_primaryInterfaceName!, fallbackDns);
if (success) {
KRLogUtil.kr_i('✅ 兜底 DNS 设置成功', tag: 'WindowsDNS');
// 3. 验证设置
await Future.delayed(const Duration(milliseconds: 500));
final currentDns = await _kr_getCurrentDnsServers(_primaryInterfaceName!);
KRLogUtil.kr_i('✅ 验证当前 DNS: ${currentDns.join(", ")}', tag: 'WindowsDNS');
return true;
} else {
KRLogUtil.kr_e('❌ 兜底 DNS 设置失败', tag: 'WindowsDNS');
return false;
}
} catch (e) {
KRLogUtil.kr_e('❌ 兜底恢复失败: $e', tag: 'WindowsDNS');
return false;
}
}
/// 获取主网络接口名称
///
/// 通过 netsh 命令查找处于"已连接"状态的主网络接口
/// 返回:接口名称,失败返回 null
Future<String?> _kr_getPrimaryNetworkInterface() async {
try {
// 使用 netsh 获取接口列表
final result = await Process.run('netsh', ['interface', 'show', 'interface']);
if (result.exitCode != 0) {
KRLogUtil.kr_e('❌ 获取网络接口失败: ${result.stderr}', tag: 'WindowsDNS');
return null;
}
final output = result.stdout.toString();
final lines = output.split('\n');
// 收集所有已连接的接口
final connectedInterfaces = <String>[];
// 查找所有"已连接"的接口
// 支持中文和英文 Windows 系统
for (var line in lines) {
// 中文: "已连接", 英文: "Connected", "Enabled"
if (line.contains('已连接') ||
line.contains('Connected') ||
line.toLowerCase().contains('enabled')) {
// 跳过表头行
if (line.contains('Admin') ||
line.contains('管理') ||
line.contains('State') ||
line.contains('状态')) {
continue;
}
// 解析接口名称(最后一列)
final parts = line.trim().split(RegExp(r'\s{2,}'));
if (parts.length >= 4) {
final interfaceName = parts.last.trim();
// 排除空接口名
if (interfaceName.isNotEmpty && interfaceName.length > 1) {
connectedInterfaces.add(interfaceName);
}
}
}
}
if (connectedInterfaces.isEmpty) {
KRLogUtil.kr_w('⚠️ 未找到已连接的网络接口', tag: 'WindowsDNS');
return null;
}
// 🔧 优化:优先选择有线网络(以太网),然后才是 Wi-Fi
// 有线网络通常更稳定
String? selectedInterface;
for (var interface in connectedInterfaces) {
final lowerName = interface.toLowerCase();
// 优先选择以太网
if (lowerName.contains('ethernet') ||
lowerName.contains('以太网') ||
lowerName.contains('lan') ||
lowerName.contains('local')) {
selectedInterface = interface;
KRLogUtil.kr_i('🔍 选择有线网络接口: $interface', tag: 'WindowsDNS');
break;
}
}
// 如果没有有线网络,选择第一个(通常是 Wi-Fi)
selectedInterface ??= connectedInterfaces.first;
if (selectedInterface != connectedInterfaces.first) {
KRLogUtil.kr_d('🔍 选择网络接口: $selectedInterface', tag: 'WindowsDNS');
} else {
KRLogUtil.kr_i('🔍 选择网络接口: $selectedInterface', tag: 'WindowsDNS');
}
return selectedInterface;
} catch (e) {
KRLogUtil.kr_e('❌ 获取网络接口异常: $e', tag: 'WindowsDNS');
return null;
}
}
/// 获取指定接口的当前 DNS 服务器
///
/// 参数:
/// - interfaceName: 网络接口名称
///
/// 返回:DNS 服务器列表
Future<List<String>> _kr_getCurrentDnsServers(String interfaceName) async {
try {
final result = await Process.run('netsh', [
'interface',
'ipv4',
'show',
'dnsservers',
'name="$interfaceName"',
]);
if (result.exitCode != 0) {
KRLogUtil.kr_e('❌ 获取 DNS 失败: ${result.stderr}', tag: 'WindowsDNS');
return [];
}
final output = result.stdout.toString();
final dnsServers = <String>[];
// 解析 DNS 服务器地址
final lines = output.split('\n');
for (var line in lines) {
// 查找 IP 地址格式的行
final ipMatch = RegExp(r'\b\d{1,3}\.\d{1,3}\.\d{1,3}\.\d{1,3}\b').firstMatch(line);
if (ipMatch != null) {
final ip = ipMatch.group(0)!;
// 排除本地回环地址
if (!ip.startsWith('127.')) {
dnsServers.add(ip);
}
}
}
KRLogUtil.kr_d('🔍 当前 DNS: ${dnsServers.join(", ")}', tag: 'WindowsDNS');
return dnsServers;
} catch (e) {
KRLogUtil.kr_e('❌ 获取 DNS 异常: $e', tag: 'WindowsDNS');
return [];
}
}
/// 设置指定接口的 DNS 服务器
///
/// 参数:
/// - interfaceName: 网络接口名称
/// - dnsServers: DNS 服务器列表
///
/// 返回:true-成功,false-失败
Future<bool> _kr_setDnsServers(String interfaceName, List<String> dnsServers) async {
try {
if (dnsServers.isEmpty) {
KRLogUtil.kr_w('⚠️ DNS 列表为空,无法设置', tag: 'WindowsDNS');
return false;
}
// 1. 设置主 DNS
KRLogUtil.kr_i('🔧 设置主 DNS: ${dnsServers[0]}', tag: 'WindowsDNS');
var result = await Process.run('netsh', [
'interface',
'ipv4',
'set',
'dnsservers',
'name="$interfaceName"',
'source=static',
'address=${dnsServers[0]}',
'validate=no',
]);
if (result.exitCode != 0) {
KRLogUtil.kr_e('❌ 设置主 DNS 失败: ${result.stderr}', tag: 'WindowsDNS');
return false;
}
// 2. 设置备用 DNS(如果有)
if (dnsServers.length > 1) {
for (int i = 1; i < dnsServers.length; i++) {
KRLogUtil.kr_i('🔧 设置备用 DNS ${i}: ${dnsServers[i]}', tag: 'WindowsDNS');
result = await Process.run('netsh', [
'interface',
'ipv4',
'add',
'dnsservers',
'name="$interfaceName"',
'address=${dnsServers[i]}',
'index=${i + 1}',
'validate=no',
]);
if (result.exitCode != 0) {
KRLogUtil.kr_w('⚠️ 设置备用 DNS $i 失败: ${result.stderr}', tag: 'WindowsDNS');
// 继续设置下一个,不中断
}
}
}
// 3. 刷新 DNS 缓存
await _kr_flushDnsCache();
KRLogUtil.kr_i('✅ DNS 服务器设置完成', tag: 'WindowsDNS');
return true;
} catch (e) {
KRLogUtil.kr_e('❌ 设置 DNS 异常: $e', tag: 'WindowsDNS');
return false;
}
}
/// 设置 DNS 为自动获取(DHCP
///
/// 参数:
/// - interfaceName: 网络接口名称
///
/// 返回:true-成功,false-失败
Future<bool> _kr_setDnsToAuto(String interfaceName) async {
try {
KRLogUtil.kr_i('🔧 设置 DNS 为自动获取 (DHCP)', tag: 'WindowsDNS');
final result = await Process.run('netsh', [
'interface',
'ipv4',
'set',
'dnsservers',
'name="$interfaceName"',
'source=dhcp',
]);
if (result.exitCode != 0) {
KRLogUtil.kr_e('❌ 设置 DHCP 失败: ${result.stderr}', tag: 'WindowsDNS');
return false;
}
// 刷新 DNS 缓存
await _kr_flushDnsCache();
KRLogUtil.kr_i('✅ DNS 已设置为自动获取', tag: 'WindowsDNS');
return true;
} catch (e) {
KRLogUtil.kr_e('❌ 设置 DHCP 异常: $e', tag: 'WindowsDNS');
return false;
}
}
/// 刷新 DNS 缓存
///
/// 执行 ipconfig /flushdns 命令清空 DNS 解析缓存
Future<void> _kr_flushDnsCache() async {
try {
KRLogUtil.kr_i('🔄 刷新 DNS 缓存...', tag: 'WindowsDNS');
final result = await Process.run('ipconfig', ['/flushdns']);
if (result.exitCode == 0) {
KRLogUtil.kr_i('✅ DNS 缓存已刷新', tag: 'WindowsDNS');
} else {
KRLogUtil.kr_w('⚠️ 刷新 DNS 缓存失败: ${result.stderr}', tag: 'WindowsDNS');
}
} catch (e) {
KRLogUtil.kr_w('⚠️ 刷新 DNS 缓存异常: $e', tag: 'WindowsDNS');
}
}
/// 清除备份数据
///
/// 在应用退出或不需要时调用
void kr_clearBackup() {
_originalDnsServers = null;
_primaryInterfaceName = null;
KRLogUtil.kr_d('🗑️ 已清除 DNS 备份数据', tag: 'WindowsDNS');
}
}
+2 -2
View File
@@ -1,6 +1,6 @@
# Project-level configuration.
cmake_minimum_required(VERSION 3.14)
project(BearVPN LANGUAGES CXX)
project(HiFastVPN LANGUAGES CXX)
# 设置 CMake 策略以兼容旧版本插件
# CMP0175: add_custom_command() 拒绝无效参数(用于兼容 flutter_inappwebview_windows 插件)
@@ -22,7 +22,7 @@ set(CMAKE_CXX_FLAGS "${CMAKE_CXX_FLAGS} /FS")
# The name of the executable created for the application. Change this to change
# the on-disk name of your application.
set(BINARY_NAME "BearVPN")
set(BINARY_NAME "HiFastVPN")
# Explicitly opt in to modern CMake behaviors to avoid warnings with recent
# versions of CMake.
+1
View File
@@ -7,6 +7,7 @@ echo 正在复制必要的 DLL 文件...
copy "%VC_REDIST_DIR%\msvcp140.dll" "%DLL_DIR%"
copy "%VC_REDIST_DIR%\vcruntime140.dll" "%DLL_DIR%"
copy "%VC_REDIST_DIR%\vcruntime140_1.dll" "%DLL_DIR%"
copy "%~dp0..\libcore\libcore.dll" "%DLL_DIR%"
echo DLL 文件复制完成!
pause
+3 -3
View File
@@ -68,8 +68,8 @@ function InitializeSetup(): Boolean;
var
ResultCode: Integer;
begin
Exec('taskkill', '/F /IM BearVPN.exe', '', SW_HIDE, ewWaitUntilTerminated, ResultCode)
Exec('net', 'stop "BearVPNTunnelService"', '', SW_HIDE, ewWaitUntilTerminated, ResultCode)
Exec('sc.exe', 'delete "BearVPNTunnelService"', '', SW_HIDE, ewWaitUntilTerminated, ResultCode)
Exec('taskkill', '/F /IM HiFastVPN.exe', '', SW_HIDE, ewWaitUntilTerminated, ResultCode)
Exec('net', 'stop "HiFastVPNTunnelService"', '', SW_HIDE, ewWaitUntilTerminated, ResultCode)
Exec('sc.exe', 'delete "HiFastVPNTunnelService"', '', SW_HIDE, ewWaitUntilTerminated, ResultCode)
Result := True;
end;
+5 -5
View File
@@ -1,11 +1,11 @@
app_id: 6L903538-42B1-4596-G479-BJ779F21A65E
publisher: BearVPN
publisher: HiFastVPN
publisher_url: https://github.com/hiddify/hiddify-next
display_name: BearVPN
executable_name: BearVPN.exe
output_base_file_name: BearVPN.exe
display_name: Hi快VPN
executable_name: HiFastVPN.exe
output_base_file_name: HiFastVPN.exe
create_desktop_icon: true
install_dir_name: "{autopf64}\\BearVPN"
install_dir_name: "{autopf64}\\HiFastVPN"
setup_icon_file: ..\..\windows\runner\resources\app_icon.ico
locales:
- ar
+6 -6
View File
@@ -89,13 +89,13 @@ BEGIN
BEGIN
BLOCK "040904e4"
BEGIN
VALUE "CompanyName", "BearVPN" "\0"
VALUE "FileDescription", "BearVPN" "\0"
VALUE "CompanyName", "HiFastVPN" "\0"
VALUE "FileDescription", "HiFastVPN" "\0"
VALUE "FileVersion", VERSION_AS_STRING "\0"
VALUE "InternalName", "app.baer.com" "\0"
VALUE "LegalCopyright", "Copyright (C) 2024 BearVPN. All rights reserved." "\0"
VALUE "OriginalFilename", "BearVPN.exe" "\0"
VALUE "ProductName", "BearVPN" "\0"
VALUE "InternalName", "HiFastVPN" "\0"
VALUE "LegalCopyright", "Copyright (C) 2024 HiFastVPN. All rights reserved." "\0"
VALUE "OriginalFilename", "HiFastVPN.exe" "\0"
VALUE "ProductName", "HiFastVPN" "\0"
VALUE "ProductVersion", VERSION_AS_STRING "\0"
END
END
+4 -4
View File
@@ -9,15 +9,15 @@
int APIENTRY wWinMain(_In_ HINSTANCE instance, _In_opt_ HINSTANCE prev,
_In_ wchar_t *command_line, _In_ int show_command) {
HANDLE hMutexInstance = CreateMutex(NULL, TRUE, L"BearVPNMutex");
HWND handle = FindWindowA(NULL, "BearVPN");
HANDLE hMutexInstance = CreateMutex(NULL, TRUE, L"HiFastVPNMutex");
HWND handle = FindWindowA(NULL, "HiFastVPN");
if (GetLastError() == ERROR_ALREADY_EXISTS) {
flutter::DartProject project(L"data");
std::vector<std::string> command_line_arguments = GetCommandLineArguments();
project.set_dart_entrypoint_arguments(std::move(command_line_arguments));
FlutterWindow window(project);
if (window.SendAppLinkToInstance(L"BearVPN")) {
if (window.SendAppLinkToInstance(L"HiFastVPN")) {
return false;
}
@@ -47,7 +47,7 @@ int APIENTRY wWinMain(_In_ HINSTANCE instance, _In_opt_ HINSTANCE prev,
FlutterWindow window(project);
Win32Window::Point origin(10, 10);
Win32Window::Size size(1280, 720);
if (!window.Create(L"BearVPN", origin, size)) {
if (!window.Create(L"HiFastVPN", origin, size)) {
return EXIT_FAILURE;
}
window.SetQuitOnClose(true);
BIN
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Width:  |  Height:  |  Size: 109 KiB

After

Width:  |  Height:  |  Size: 5.3 KiB

+4 -4
View File
@@ -1,7 +1,7 @@
#define MyAppName "Kaer VPN"
#define MyAppName "Hi快VPN"
#define MyAppVersion "1.0.0"
#define MyAppPublisher "Kaer"
#define MyAppExeName "kaer_vpn.exe"
#define MyAppPublisher "HiFastVPN"
#define MyAppExeName "HiFastVPN.exe"
[Setup]
AppId={{YOUR-APP-ID-HERE}
@@ -11,7 +11,7 @@ AppPublisher={#MyAppPublisher}
DefaultDirName={autopf}\{#MyAppName}
DefaultGroupName={#MyAppName}
OutputDir=installer
OutputBaseFilename=BearVPN_Setup
OutputBaseFilename=HiFastVPN_Setup
Compression=lzma
SolidCompression=yes
WizardStyle=modern