fix: 优化启动引导、坐标处理和日志管理

This commit is contained in:
xweiba
2026-08-06 16:23:09 +08:00
parent 0e8e83fd33
commit e86909cc2f
30 changed files with 2296 additions and 857 deletions
+1 -1
View File
@@ -86,7 +86,7 @@ struct BugReportView: View {
isRunning = true
Task {
//
_ = await setup.runVerificationTest(testLat: 22.543099, testLon: 113.934576)
_ = await setup.runVerificationTest()
let testLog = setup.testLog
//
+63 -17
View File
@@ -2,8 +2,6 @@ import SwiftUI
struct ContentView: View {
@StateObject private var setup = SetupCoordinator()
@ObservedObject private var net = NetworkMonitor.shared
@State private var showSetup = false
@State private var phase: AppPhase = .splash
@AppStorage("setupCompleted") private var setupCompleted = false
@@ -17,33 +15,81 @@ struct ContentView: View {
Image(systemName: "location.fill")
.font(.system(size: 48)).foregroundStyle(.blue)
ProgressView()
Text("正在启动").font(.subheadline).foregroundStyle(.secondary)
Text("正在初始化地图与本地代理").font(.subheadline).foregroundStyle(.secondary)
}
case .map:
NavigationView {
MapHomeView(setup: setup)
}
.fullScreenCover(isPresented: $showSetup) {
.fullScreenCover(isPresented: $setup.needsSetup) {
FirstSetupView(setup: setup, onComplete: {
setupCompleted = true
setup.completeSetup()
showSetup = false
})
}
}
}
.task {
if !setup.proxy.isRunning {
do {
try await setup.proxy.start()
} catch {
RuntimeLogger.error("APP", "Startup", "代理启动失败,将在设置检测中重试", error: error)
}
}
phase = .map
if !setupCompleted { showSetup = true }
// Tile probing is a best-effort display refinement and must never block first render.
await CoordinateConverter.detectTileByFixedGeocode(force: true)
.task { await bootstrap() }
}
@MainActor
private func bootstrap() async {
await setup.prepareLocalServices()
do {
try CoordinateStorageMigration.migrateIfNeeded(favorites: FavoriteLocationStore())
} catch {
RuntimeLogger.error("APP", "Startup", "旧坐标数据迁移失败,将在下次启动重试", error: error)
}
// MapHomeView is intentionally constructed only after this required
// coordinate-system gate resolves, so cached pins are never replayed
// into an unknown Apple Maps coordinate system.
let mapCoordinateSystem = await CoordinateConverter.resolveInitialMapCoordinateSystem()
guard !Task.isCancelled else { return }
RuntimeLogger.info("APP", "Startup", "地图坐标标准初始化完成,开始后续启动流程", details: [
"地图标准": mapCoordinateSystem.rawValue,
"使用兜底": String(CoordinateConverter.initialMapCoordinateSystemUsedFallback)
])
// Resolve the first map center before constructing MapHomeView. This
// prevents a Shenzhen/cache frame followed by a second realtime frame.
if LastCoordinateStore.load() == nil {
RuntimeLogger.info("APP", "Startup", "没有持久化图钉,地图创建前请求实时定位")
if let realtime = await RealtimeLocationManager.shared.requestLocation() {
let mapCoordinateSystemChange = CoordinateConverter.correctMapCoordinateSystemUsingRealtime(realtime)
let pair = CoordinateConverter.coordinatePair(
lat: realtime.latitude,
lon: realtime.longitude,
mapCoordinateSystem: .wgs84
)
LastCoordinateStore.save(coordinatePair: pair, zoomMeters: 1_000)
RuntimeLogger.info("APP", "Startup", "已使用实时定位准备唯一初始地图状态", details: [
"地图标准": CoordinateConverter.currentMapCoordinateSystem.rawValue,
"修正兜底标准": String(mapCoordinateSystemChange != nil),
"缩放米": "1000"
])
RealtimeLocationTrace.coordinate(
"地图创建前取得的初始实时位置(WGS-84)",
coordinate: realtime
)
} else {
RuntimeLogger.warning("APP", "Startup", "地图创建前无法取得实时定位,唯一初始位置使用深圳", details: [
"地图标准": mapCoordinateSystem.rawValue,
"缩放米": "1000"
])
}
} else {
RuntimeLogger.info("APP", "Startup", "已找到持久化图钉,直接准备唯一初始地图状态")
}
guard !Task.isCancelled else { return }
if setupCompleted {
let result = await setup.runVerificationTest()
setup.applyVerificationResult(result)
} else {
setup.requestSetup()
}
RuntimeLogger.info("APP", "Startup", "启动门禁全部完成,现在创建 MapHomeView")
phase = .map
}
}
+7 -1
View File
@@ -51,6 +51,12 @@ struct RuntimeLogsView: View {
}
}
.navigationTitle("运行日志").navigationBarTitleDisplayMode(.inline)
.safeAreaInset(edge: .bottom) {
Text("日志自动清理,仅保留近 3 天")
.font(.caption2)
.foregroundStyle(.secondary)
.padding(.vertical, 6)
}
.toolbar {
ToolbarItem(placement: .navigationBarLeading) { Button("关闭") { dismiss() } }
ToolbarItem(placement: .navigationBarTrailing) {
@@ -91,7 +97,7 @@ struct RuntimeLogsView: View {
Button {
isTesting = true; testResult = ""; testLogCopied = false
Task {
let result = await setup.runVerificationTest(testLat: testFavorite.latitude, testLon: testFavorite.longitude)
let result = await setup.runVerificationTest()
testResult = result.isSuccess ? "环境检测通过" : "环境检测失败: \(result.id)"
if !result.isSuccess { testResult += ",查看下方日志" }
testMessage = setup.testLog
+247 -252
View File
@@ -1,12 +1,13 @@
import SwiftUI
enum SetupStep: Int, CaseIterable {
case cert = 0, proxy = 1, verify = 2
case proxy
case cert
var title: String {
switch self {
case .proxy: return "配置 Wi-Fi 代理"
case .cert: return "初始化 CA 证书"
case .proxy: return "初始化代理"
case .verify: return "环境检测"
}
}
}
@@ -15,283 +16,277 @@ struct FirstSetupView: View {
@ObservedObject var setup: SetupCoordinator
let onComplete: () -> Void
@State private var step: SetupStep = .cert
@State private var step: SetupStep
@State private var downloadedDone = false
@State private var installedDone = false
@State private var trustedDone = false
@State private var proxyDone = false
@State private var testPassed: VerificationResult? = nil
@State private var testMessage = ""
@State private var isLoading = false
@State private var result: VerificationResult?
@State private var isVerifying = false
@State private var manualHint = ""
@State private var showDiagnostics = false
@StateObject private var diagnosticActions = LocationActionCoordinator()
private var certDone: Bool { downloadedDone && installedDone && trustedDone }
init(setup: SetupCoordinator, onComplete: @escaping () -> Void) {
self.setup = setup
self.onComplete = onComplete
_step = State(initialValue: setup.setupStep)
}
private var certificateStepsComplete: Bool { downloadedDone && installedDone && trustedDone }
private var diagnosticFavorite: FavoriteLocation {
FavoriteLocation(name: "诊断位置", latitude: 22.544577, longitude: 113.94114, accuracy: 25)
}
var body: some View {
VStack(spacing: 0) {
//
HStack(spacing: 6) {
ForEach(SetupStep.allCases, id: \.rawValue) { s in
VStack(spacing: 4) {
Circle()
.fill(s.rawValue < step.rawValue ? Color.green
: s.rawValue == step.rawValue ? Color.blue
: Color.gray.opacity(0.3))
.frame(width: 10, height: 10)
Text(s.title).font(.caption2).foregroundStyle(.secondary)
}
if s.rawValue < SetupStep.allCases.count - 1 {
Rectangle().fill(s.rawValue < step.rawValue ? Color.green : Color.gray.opacity(0.3))
.frame(height: 2).frame(maxWidth: 30)
}
}
}
.padding(.top, 18)
ScrollView {
VStack(alignment: .leading, spacing: 20) {
switch step {
case .cert: certStepView
case .proxy: proxyStepView
case .verify: verifyStepView
}
}
.padding(20)
}
//
Divider()
HStack {
if step.rawValue > 0 {
Button("上一步") { step = SetupStep(rawValue: step.rawValue - 1)! }
.buttonStyle(.bordered)
}
Spacer()
if step == .verify && testPassed?.isSuccess == true {
Button("完成,进入主页") { onComplete() }.buttonStyle(.borderedProminent)
} else if step == .cert && certDone {
Button("下一步") { step = .proxy }.buttonStyle(.borderedProminent)
} else if step == .proxy && proxyDone {
Button("下一步") { step = .verify }.buttonStyle(.borderedProminent)
}
}
.padding(.horizontal, 20).padding(.vertical, 10)
}
.alert("无法直接跳转", isPresented: Binding(
get: { !manualHint.isEmpty },
set: { if !$0 { manualHint = "" } }
)) {
Button("知道了", role: .cancel) {}
} message: { Text(manualHint) }
}
// MARK: - 1 CA
private var certStepView: some View {
VStack(alignment: .leading, spacing: 20) {
GroupBox(label: Label("第 1 步:下载证书", systemImage: "arrow.down.circle")) {
VStack(alignment: .leading, spacing: 12) {
Color.clear.frame(height: 0).padding(.top, 2)
Text("虚拟定位需要通过自签 CA 证书来解密和改写定位请求。点击下方按钮,Safari 会打开下载页面。Safari 弹出「此网站正尝试下载一个配置描述文件」时,点「允许」。")
.font(.caption).foregroundStyle(.secondary)
HStack(spacing: 10) {
Button {
Task { await setup.proxy.openCertificateDownload() }
} label: {
Label("去下载", systemImage: "arrow.down.circle.fill").frame(maxWidth: .infinity)
}.buttonStyle(.borderedProminent).tint(.blue)
Button {
downloadedDone = true
} label: {
Label(downloadedDone ? "已完成 ✓" : "已完成", systemImage: downloadedDone ? "checkmark.circle.fill" : "circle").frame(maxWidth: .infinity)
}.buttonStyle(.bordered).tint(downloadedDone ? .green : .secondary)
}
}
}
GroupBox(label: Label("第 2 步:安装证书", systemImage: "square.and.arrow.down")) {
VStack(alignment: .leading, spacing: 12) {
Color.clear.frame(height: 0).padding(.top, 2)
Text("下载完成后打开系统「设置」:\n\n1. 如果顶部显示了「已下载描述文件」,点进去安装\n2. 如果没显示:进入「通用 → VPN与设备管理」,找到 WLOC CA 证书点击安装\n\n安装时系统会要求输入锁屏密码,确认后点右上角「安装」即可。")
.font(.caption).foregroundStyle(.secondary)
HStack(spacing: 10) {
Button { openSettings(.general) } label: {
Label("去安装", systemImage: "gearshape").frame(maxWidth: .infinity)
}.buttonStyle(.borderedProminent).tint(.blue)
Button { installedDone = true } label: {
Label(installedDone ? "已完成 ✓" : "已完成", systemImage: installedDone ? "checkmark.circle.fill" : "circle").frame(maxWidth: .infinity)
}.buttonStyle(.bordered).tint(installedDone ? .green : .secondary)
}
}
}
GroupBox(label: Label("第 3 步:信任证书", systemImage: "shield.checkered")) {
VStack(alignment: .leading, spacing: 12) {
Color.clear.frame(height: 0).padding(.top, 2)
Text("证书安装后还需要开启信任,否则系统会拦截代理的 HTTPS 请求:\n\n1. 打开「设置 → 通用 → 关于本机」\n2. 滑到底部找到「证书信任设置」\n3. 找到 WLOC CA,打开旁边的开关\n4. 弹出的警告中点「继续」\n\n⚠️ 每次重装 App 都需要重新下载安装证书。如果检测时报 TLS 错误,说明证书过期或不匹配,请删除旧证书(设置 → 通用 → VPN与设备管理)后重新安装。")
.font(.caption).foregroundStyle(.secondary)
HStack(spacing: 10) {
Button { openSettings(.general) } label: {
Label("去信任", systemImage: "shield.checkered").frame(maxWidth: .infinity)
}.buttonStyle(.borderedProminent).tint(.blue)
Button { trustedDone = true } label: {
Label(trustedDone ? "已完成 ✓" : "已完成", systemImage: trustedDone ? "checkmark.circle.fill" : "circle").frame(maxWidth: .infinity)
}.buttonStyle(.bordered).tint(trustedDone ? .green : .secondary)
}
}
}
}
}
// MARK: - 2
private var proxyStepView: some View {
VStack(alignment: .leading, spacing: 20) {
GroupBox(label: Label("配置 WiFi 系统代理", systemImage: "wifi")) {
VStack(alignment: .leading, spacing: 12) {
Color.clear.frame(height: 0).padding(.top, 2)
Text("要让系统定位请求经过本地代理,需要在 WiFi 设置中手动配置:\n\n1. 打开「设置 → 无线局域网」\n2. 点击当前连接的 WiFi 右侧 (i) 图标\n3. 滑到底部找到「HTTP 代理」,选择「手动」\n4. 服务器填入 127.0.0.1,端口填入 8888\n5. 点右上角「存储」\n\n⚠️ 只有连接的这个 WiFi 会走代理,蜂窝数据不受影响。换 WiFi 后需要重新配置。")
.font(.caption).foregroundStyle(.secondary)
}
}
HStack(spacing: 12) {
Button {
UIPasteboard.general.string = "127.0.0.1:8888"
} label: {
Label("复制地址", systemImage: "doc.on.doc")
.frame(maxWidth: .infinity)
}.buttonStyle(.bordered).tint(.blue)
Button {
openSettings(.wifi)
} label: {
Label("去设置", systemImage: "wifi")
.frame(maxWidth: .infinity)
}.buttonStyle(.borderedProminent).tint(.blue)
}
Button {
proxyDone = true
} label: {
Label(proxyDone ? "已完成 ✓" : "已完成", systemImage: proxyDone ? "checkmark.circle.fill" : "circle")
.frame(maxWidth: .infinity)
}.buttonStyle(.bordered).tint(proxyDone ? .green : .secondary)
}
}
// MARK: - 3
private var verifyStepView: some View {
VStack(alignment: .leading, spacing: 20) {
GroupBox(label: Label("检测整个流程", systemImage: "checklist")) {
VStack(alignment: .leading, spacing: 12) {
Color.clear.frame(height: 0).padding(.top, 2)
Text("点击「开始检测」后依次检查代理运行、证书信任与 WiFi 代理配置、坐标写入、数据改写。全部通过后「完成,进入主页」按钮才会亮起。")
.font(.caption).foregroundStyle(.secondary)
}
}
if let result = testPassed, result.isSuccess {
HStack(spacing: 10) {
Image(systemName: "checkmark.circle.fill").foregroundStyle(.green).font(.title3)
Text("全部检测通过").font(.subheadline.weight(.semibold)).foregroundStyle(.green)
}.padding(12).background(Color.green.opacity(0.08), in: RoundedRectangle(cornerRadius: 10))
} else if let result = testPassed {
VStack(alignment: .leading, spacing: 10) {
HStack(spacing: 10) {
Image(systemName: "xmark.circle.fill").foregroundStyle(.red).font(.title3)
VStack(alignment: .leading, spacing: 2) {
Text("测试未通过").font(.subheadline.weight(.semibold)).foregroundStyle(.red)
Text(failureSummary(result)).font(.caption).foregroundStyle(.secondary)
}
}
if let step = failureRemedyStep(result) {
Button {
withAnimation(.none) { self.step = step }
testPassed = nil
testMessage = ""
} label: {
Label("去处理", systemImage: "arrow.right.circle.fill")
.font(.subheadline.weight(.medium))
.frame(maxWidth: .infinity)
.padding(.vertical, 10)
}
.buttonStyle(.borderedProminent)
.tint(.red)
}
}
.padding(12)
.background(Color.red.opacity(0.08), in: RoundedRectangle(cornerRadius: 10))
}
if !testMessage.isEmpty {
NavigationView {
VStack(spacing: 0) {
progress
ScrollView {
Text(testMessage)
.font(.caption.monospaced()).textSelection(.enabled)
.padding(10).frame(maxWidth: .infinity, alignment: .leading)
.background(Color(.secondarySystemBackground), in: RoundedRectangle(cornerRadius: 8))
}.frame(maxHeight: 280)
VStack(alignment: .leading, spacing: 20) {
switch step {
case .proxy: proxyStep
case .cert: certificateStep
}
if let result { resultView(result) }
}
.padding(20)
}
Divider()
primaryAction
.padding(.horizontal, 20)
.padding(.vertical, 12)
}
.navigationTitle("开始使用")
.navigationBarTitleDisplayMode(.inline)
.sheet(isPresented: $showDiagnostics) {
NavigationView {
RuntimeLogsView(
setup: setup,
actions: diagnosticActions,
testFavorite: diagnosticFavorite
)
}
}
.alert("无法直接跳转", isPresented: Binding(
get: { !manualHint.isEmpty },
set: { if !$0 { manualHint = "" } }
)) {
Button("知道了", role: .cancel) {}
} message: { Text(manualHint) }
}
}
private var progress: some View {
HStack(spacing: 8) {
ForEach(SetupStep.allCases, id: \.rawValue) { value in
HStack(spacing: 6) {
Circle()
.fill(value.rawValue <= step.rawValue ? Color.blue : Color.gray.opacity(0.3))
.frame(width: 10, height: 10)
Text(value.title).font(.caption).foregroundStyle(.secondary)
}
if value != SetupStep.allCases.last {
Rectangle().fill(Color.gray.opacity(0.3)).frame(width: 28, height: 2)
}
}
}
.padding(.vertical, 16)
}
private var proxyStep: some View {
VStack(alignment: .leading, spacing: 16) {
GroupBox(label: Label("先配置 Wi-Fi 系统代理", systemImage: "wifi")) {
Text("在当前 Wi-Fi 的详情页,将「HTTP 代理」设为「手动」:服务器填 127.0.0.1,端口填 8888。完成后点击下方「我已配置,开始检测」。检测会自动判断是 Wi-Fi 代理还是证书信任有问题。")
.font(.caption).foregroundStyle(.secondary)
.frame(maxWidth: .infinity, alignment: .leading)
.padding(.top, 4)
}
HStack(spacing: 12) {
Button { UIPasteboard.general.string = "127.0.0.1:8888" } label: {
Label("复制地址", systemImage: "doc.on.doc").frame(maxWidth: .infinity)
}
.buttonStyle(.bordered)
Button { openSettings(.wifi) } label: {
Label("打开 Wi-Fi 设置", systemImage: "gearshape").frame(maxWidth: .infinity)
}
.buttonStyle(.borderedProminent)
}
}
}
private var certificateStep: some View {
VStack(alignment: .leading, spacing: 20) {
certificateCard(
title: "第 1 步:下载证书",
icon: "arrow.down.circle",
description: "下载本机随机生成的 CA 根证书。私钥仅保存在此设备的钥匙串中,不会随证书文件导出。Safari 出现配置描述文件下载提示时,选择「允许」。",
actionTitle: "去下载",
actionIcon: "arrow.down.circle.fill",
complete: downloadedDone,
action: { Task { await setup.proxy.openCertificateDownload() } },
markComplete: { downloadedDone = true }
)
certificateCard(
title: "第 2 步:安装证书",
icon: "square.and.arrow.down",
description: "下载完成后打开系统「设置」。如果顶部显示「已下载描述文件」,点进去安装;否则进入「通用 → VPN 与设备管理」,找到 WLOC CA 并完成安装。",
actionTitle: "去安装",
actionIcon: "gearshape",
complete: installedDone,
action: { openSettings(.general) },
markComplete: { installedDone = true }
)
certificateCard(
title: "第 3 步:信任证书",
icon: "shield.checkered",
description: "安装后进入「设置 → 通用 → 关于本机 → 证书信任设置」,找到 WLOC CA 并开启完全信任。iOS 保留钥匙串数据时,重装 App 会继续复用同一证书。",
actionTitle: "去信任",
actionIcon: "shield.checkered",
complete: trustedDone,
action: { openSettings(.general) },
markComplete: { trustedDone = true }
)
}
}
private func certificateCard(
title: String,
icon: String,
description: String,
actionTitle: String,
actionIcon: String,
complete: Bool,
action: @escaping () -> Void,
markComplete: @escaping () -> Void
) -> some View {
GroupBox(label: Label(title, systemImage: icon)) {
VStack(alignment: .leading, spacing: 12) {
Color.clear.frame(height: 0).padding(.top, 2)
Text(description)
.font(.caption)
.foregroundStyle(.secondary)
.frame(maxWidth: .infinity, alignment: .leading)
HStack(spacing: 10) {
Button(action: action) {
Label(actionTitle, systemImage: actionIcon).frame(maxWidth: .infinity)
}
.buttonStyle(.borderedProminent)
.tint(.blue)
Button(action: markComplete) {
Label(
complete ? "已完成 ✓" : "已完成",
systemImage: complete ? "checkmark.circle.fill" : "circle"
)
.frame(maxWidth: .infinity)
}
.buttonStyle(.bordered)
.tint(complete ? .green : .secondary)
}
}
}
}
@ViewBuilder
private func resultView(_ result: VerificationResult) -> some View {
let success = result.isSuccess
VStack(alignment: .leading, spacing: 10) {
Label(success ? "环境检测通过" : failureSummary(result), systemImage: success ? "checkmark.circle.fill" : "xmark.circle.fill")
.foregroundStyle(success ? .green : .red)
.font(.subheadline.weight(.semibold))
if !success {
Text(setup.testLog).font(.caption.monospaced()).textSelection(.enabled)
.frame(maxWidth: .infinity, alignment: .leading)
.lineLimit(8)
Button {
showDiagnostics = true
} label: {
Label("查看诊断日志", systemImage: "doc.text.magnifyingglass")
.frame(maxWidth: .infinity)
}
.buttonStyle(.bordered)
}
}
.padding(12)
.background((success ? Color.green : Color.red).opacity(0.1), in: RoundedRectangle(cornerRadius: 10))
}
@ViewBuilder
private var primaryAction: some View {
if step == .proxy {
Button {
isLoading = true; testMessage = ""
Task {
testPassed = await setup.runVerificationTest()
testMessage = setup.testLog
isLoading = false
}
verifyAfterProxyConfirmation()
} label: {
HStack {
if isLoading { ProgressView().tint(.white).controlSize(.small) }
Text(buttonText).frame(maxWidth: .infinity)
}
actionLabel("我已配置,开始检测")
}
.buttonStyle(.borderedProminent)
.tint(buttonTint)
.disabled(isLoading)
.disabled(isVerifying)
} else {
Button {
UIPasteboard.general.string = testMessage
verifyAfterCertificateConfirmation()
} label: {
Label("复制检测日志", systemImage: "doc.on.doc").frame(maxWidth: .infinity)
}.buttonStyle(.bordered).disabled(testMessage.isEmpty)
actionLabel("确认完成,重新检测")
}
.buttonStyle(.borderedProminent)
.disabled(!certificateStepsComplete || isVerifying)
}
}
private var buttonText: String {
guard let result = testPassed else { return "开始检测" }
return result.isSuccess ? "重新检测" : "⚠️ 重新测试"
private func actionLabel(_ title: String) -> some View {
HStack {
if isVerifying { ProgressView().tint(.white).controlSize(.small) }
Text(title).frame(maxWidth: .infinity)
}
}
private var buttonTint: Color {
guard let result = testPassed else { return .blue }
return result.isSuccess ? .blue : .red
private func verifyAfterProxyConfirmation() {
runVerification { result in
if result.isSuccess {
onComplete()
} else if result == .certNotTrusted {
step = .cert
} else {
step = .proxy
}
}
}
private func verifyAfterCertificateConfirmation() {
runVerification { result in
if result.isSuccess {
onComplete()
} else if result != .certNotTrusted {
step = .proxy
}
}
}
private func runVerification(completion: @escaping (VerificationResult) -> Void) {
guard !isVerifying else { return }
isVerifying = true
result = nil
Task {
let verification = await setup.runVerificationTest()
setup.applyVerificationResult(verification)
guard !Task.isCancelled else { return }
result = verification
isVerifying = false
completion(verification)
}
}
private func failureSummary(_ result: VerificationResult) -> String {
switch result {
case .proxyNotRunning: return "代理未能启动,请检查代理状态"
case .verificationInProgress: return "已有检测正在进行,请稍候"
case .verificationSuperseded: return "检测期间位置已更新,本次结果已取消,请重新检测"
case .certNotTrusted: return "CA 证书未安装或未信任,请重新安装证书并开启信任"
case .wifiProxyNotConfigured: return "WiFi 代理未配置,请在系统设置中配置 127.0.0.1:8888"
case .coordinateWriteFailed: return "坐标写入失败,请重试"
case .patchFailed: return "坐标改写验证失败,可能是证书过期或不匹配"
case .success: return ""
case .certNotTrusted: return "证书尚未安装或信任"
case .wifiProxyNotConfigured: return "Wi-Fi 代理未正确设置"
case .proxyNotRunning: return "本地代理未能启动"
case .verificationInProgress: return "检测仍在进行"
case .verificationSuperseded: return "检测结果已过期"
case .coordinateWriteFailed: return "坐标写入失败"
case .patchFailed: return "定位改写检测失败"
case .success: return "环境检测通过"
}
}
private func failureRemedyStep(_ result: VerificationResult) -> SetupStep? {
switch result {
case .certNotTrusted: return .cert
case .wifiProxyNotConfigured: return .proxy
case .proxyNotRunning, .verificationInProgress, .verificationSuperseded,
.coordinateWriteFailed, .patchFailed: return nil
case .success: return nil
}
}
@MainActor
private func openSettings(_ destination: SystemSettingsDestination) {
SystemSettingsNavigator.open(destination) { fallbackHint in
+46 -13
View File
@@ -1,15 +1,47 @@
import Foundation
@MainActor
protocol LocationActionProxying: AnyObject {
var isRunning: Bool { get }
func start() async throws
func setCoords(lat: Double, lon: Double, enabled: Bool, accuracy: Int) -> UInt64
}
extension ProxyManager: LocationActionProxying {}
@MainActor
protocol LocationActionSettingsStoring: AnyObject {
func load() -> WlocSettings?
func save(_ settings: WlocSettings)
func clear()
}
@MainActor
final class DeviceWlocSettingsStorage: LocationActionSettingsStoring {
func load() -> WlocSettings? { WlocSettingsStore.load() }
func save(_ settings: WlocSettings) { WlocSettingsStore.save(settings) }
func clear() { WlocSettingsStore.clear() }
}
@MainActor
final class LocationActionCoordinator: ObservableObject {
@Published private(set) var state: LocationActionState = .idle
@Published private(set) var virtualLocationEnabled = false
@Published private(set) var message = ""
private let proxy = ProxyManager.shared
private let proxy: any LocationActionProxying
private let settings: any LocationActionSettingsStoring
init() {
self.virtualLocationEnabled = WlocSettingsStore.load()?.enabled == true
self.proxy = ProxyManager.shared
self.settings = DeviceWlocSettingsStorage()
self.virtualLocationEnabled = settings.load()?.enabled == true
}
init(proxy: any LocationActionProxying, settings: any LocationActionSettingsStoring) {
self.proxy = proxy
self.settings = settings
self.virtualLocationEnabled = settings.load()?.enabled == true
}
func apply(_ favorite: FavoriteLocation) async -> Bool {
@@ -41,8 +73,8 @@ final class LocationActionCoordinator: ObservableObject {
func clear() {
guard !state.isBusy else { return }
proxy.setCoords(lat: 0, lon: 0, enabled: false)
WlocSettingsStore.clear()
_ = proxy.setCoords(lat: 0, lon: 0, enabled: false, accuracy: 25)
settings.clear()
state = .idle
virtualLocationEnabled = false
message = "已恢复真实定位"
@@ -56,17 +88,18 @@ final class LocationActionCoordinator: ObservableObject {
}
private func commit(_ favorite: FavoriteLocation) -> Bool {
// WGS-84
let wgs = CoordinateConverter.toStored(lat: favorite.latitude, lon: favorite.longitude)
WlocSettingsStore.save(WlocSettings(
longitude: wgs.lon,
latitude: wgs.lat,
// WLOC 使 WGS-84
let wgs = favorite.coordinatePair.wgs84
let value = WlocSettings(
longitude: wgs.longitude,
latitude: wgs.latitude,
accuracy: favorite.accuracy,
enabled: true
))
proxy.setCoords(
lat: wgs.lat,
lon: wgs.lon,
)
settings.save(value)
_ = proxy.setCoords(
lat: wgs.latitude,
lon: wgs.longitude,
enabled: true,
accuracy: favorite.accuracy
)
+355 -137
View File
@@ -27,7 +27,7 @@ private struct RealtimeLocationRequestContext {
struct MapHomeView: View {
@ObservedObject var setup: SetupCoordinator
@StateObject private var favorites = FavoriteLocationStore()
@StateObject private var favorites: FavoriteLocationStore
@StateObject private var actions = LocationActionCoordinator()
@ObservedObject private var proxy = ProxyManager.shared
@StateObject private var realtime = RealtimeLocationManager.shared
@@ -39,13 +39,13 @@ struct MapHomeView: View {
@State private var isSearching = false
@State private var searchRequestID: UInt64 = 0
@State private var searchError = ""
@State private var mapDidInitialize = false
@State private var mapRuntimeDidStart = false
@State private var activeSheet: HomeSheet?
@State private var showEnableTip = false
@State private var showDisableTip = false
@State private var activeTip: TipKind?
@State private var manualHint = ""
@AppStorage("activationTipDisabled") private var activationTipDisabled = false
private let tipPreferences = VirtualLocationTipPreferences()
@State private var editingFavorite: FavoriteLocation?
@State private var editName = ""
@State private var reverseGeocodeTask: Task<Void, Never>?
@@ -56,8 +56,6 @@ struct MapHomeView: View {
@State private var wifiChangeObserverToken: UUID?
@State private var wifiVerificationTask: Task<Void, Never>?
@State private var wifiVerificationID: UUID?
@State private var tileProbeTask: Task<Void, Never>?
@State private var tileProbeID: UUID?
@State private var copyConfirmed = false
@State private var spoofState: SpoofState = .idle
@State private var locationOperationTask: Task<Void, Never>?
@@ -68,29 +66,67 @@ struct MapHomeView: View {
init(setup: SetupCoordinator) {
self.setup = setup
let favoriteStore = FavoriteLocationStore()
_favorites = StateObject(wrappedValue: favoriteStore)
let savedCoord = LastCoordinateStore.load()
let initialZoom = ViewportStore.loadOrDefault()
let initialZoom = savedCoord?.zoomMeters ?? ViewportStore.loadOrDefault()
let selectedFavorite = favoriteStore.selectedFavorite
let initialCoord: CLLocationCoordinate2D
let initialSource: MapSelectionSource
let initialName: String?
if let saved = savedCoord {
let display = CoordinateConverter.toDisplay(lat: saved.coordinate.latitude, lon: saved.coordinate.longitude)
initialCoord = CLLocationCoordinate2D(latitude: display.lat, longitude: display.lon)
initialCoord = saved.coordinate(for: CoordinateConverter.currentMapCoordinateSystem)
if let selectedFavorite,
selectedFavorite.coordinatePair.matchesWGS84(
latitude: saved.coordinatePair.wgs84.latitude,
longitude: saved.coordinatePair.wgs84.longitude
) {
initialSource = .favorite(selectedFavorite.id)
initialName = selectedFavorite.name
} else {
initialSource = .initial
initialName = nil
}
} else if let selectedFavorite {
initialCoord = selectedFavorite.coordinatePair.coordinate(for: CoordinateConverter.currentMapCoordinateSystem)
initialSource = .favorite(selectedFavorite.id)
initialName = selectedFavorite.name
} else {
initialCoord = CLLocationCoordinate2D(latitude: 22.544577, longitude: 113.94114)
// The fallback location is defined as WGS-84 and rendered in the
// coordinate system resolved by the startup gate.
initialCoord = CoordinateConverter.coordinatePair(
lat: 22.544577,
lon: 113.94114,
mapCoordinateSystem: .wgs84
).coordinate(for: CoordinateConverter.currentMapCoordinateSystem)
initialSource = .initial
initialName = nil
}
RuntimeLogger.info("APP", "地图", "初始化", details: [
"zoom": String(initialZoom),
"有缓存": String(savedCoord != nil)
"有缓存": String(savedCoord != nil),
"初始来源": String(describing: initialSource),
"地图标准": CoordinateConverter.currentMapCoordinateSystem.rawValue
])
_mapState = StateObject(wrappedValue: MapLocationState(
initialCoordinate: initialCoord,
initialViewportMeters: initialZoom
initialViewportMeters: initialZoom,
initialSource: initialSource,
initialName: initialName
))
if let settings = WlocSettingsStore.load(), settings.enabled {
_spoofState = State(initialValue: .active)
_activeSpoofLat = State(initialValue: settings.latitude)
_activeSpoofLon = State(initialValue: settings.longitude)
}
}
var body: some View {
ZStack {
MapViewRepresentable(
selection: mapState.selection,
initialViewportMeters: mapState.viewportMeters,
cameraCommand: mapState.cameraCommand,
onRealtimeLocationChanged: { location in
handleNativeRealtimeLocation(location)
@@ -100,10 +136,16 @@ struct MapHomeView: View {
let previousRevision = mapState.selection.revision
let revision = mapState.selectUserMapCenter(coordinate)
guard revision != previousRevision else { return }
let wgs = CoordinateConverter.toStored(lat: coordinate.latitude, lon: coordinate.longitude)
LastCoordinateStore.save(lat: wgs.lat, lon: wgs.lon)
let pair = CoordinatePair(
mapCoordinate: coordinate,
mapCoordinateSystem: CoordinateConverter.currentMapCoordinateSystem
)
LastCoordinateStore.save(
coordinatePair: pair,
zoomMeters: mapState.viewportMeters
)
favorites.select(nil)
scheduleGeocode(coordinate: coordinate, revision: revision)
scheduleGeocode(coordinate: pair.wgs84.coordinate, revision: revision)
},
onViewportChanged: { distance in
mapState.updateViewport(distanceMeters: distance)
@@ -111,12 +153,19 @@ struct MapHomeView: View {
onMapTap: { coordinate in
favorites.select(nil)
let revision = mapState.selectMapTap(coordinate)
let wgs = CoordinateConverter.toStored(lat: coordinate.latitude, lon: coordinate.longitude)
LastCoordinateStore.save(lat: wgs.lat, lon: wgs.lon)
scheduleGeocode(coordinate: coordinate, revision: revision)
let pair = CoordinatePair(
mapCoordinate: coordinate,
mapCoordinateSystem: CoordinateConverter.currentMapCoordinateSystem
)
LastCoordinateStore.save(
coordinatePair: pair,
zoomMeters: mapState.viewportMeters
)
scheduleGeocode(coordinate: pair.wgs84.coordinate, revision: revision)
},
onUserZoomChanged: { distance in
ViewportStore.save(distance)
LastCoordinateStore.updateZoom(distance)
},
onZoomIn: { mapState.zoom(by: 0.5) },
onZoomOut: { mapState.zoom(by: 2) }
@@ -188,9 +237,9 @@ struct MapHomeView: View {
Button("知道了", role: .cancel) {}
} message: { Text(manualHint) }
.onAppear {
initializeMap()
Task { await setup.refreshTrust() }
startTileProbe()
startMapRuntimeOnce()
// ContentView performs the startup environment test before this map
// view is constructed. Do not immediately run it again here.
registerWiFiChangeObserver()
}
.onDisappear {
@@ -201,14 +250,6 @@ struct MapHomeView: View {
wifiVerificationTask?.cancel()
wifiVerificationTask = nil
wifiVerificationID = nil
tileProbeTask?.cancel()
tileProbeTask = nil
tileProbeID = nil
}
.onChange(of: net.isAirplaneMode) { airplane in
if !airplane {
Task { await setup.refreshTrust() }
}
}
.onChange(of: proxy.isRunning) { running in
if !running && spoofState == .active {
@@ -350,7 +391,7 @@ struct MapHomeView: View {
if actions.virtualLocationEnabled {
activeTip = .activation
} else {
showDisableTip = true
activeTip = .deactivation
}
} label: {
Text(actions.virtualLocationEnabled ? "无法生效?" : "无法取消?")
@@ -368,16 +409,14 @@ struct MapHomeView: View {
return
}
let snapshot = currentSelectionFavorite
let wgs = CoordinateConverter.toStored(lat: snapshot.latitude, lon: snapshot.longitude)
let favorite = favorites.save(
name: snapshot.name,
latitude: wgs.lat,
longitude: wgs.lon,
mapCoordinate: mapState.selection.coordinate,
mapCoordinateSystem: CoordinateConverter.currentMapCoordinateSystem,
accuracy: snapshot.accuracy
)
let display = CoordinateConverter.toDisplay(lat: favorite.latitude, lon: favorite.longitude)
mapState.selectFavorite(
CLLocationCoordinate2D(latitude: display.lat, longitude: display.lon),
favorite.coordinatePair.coordinate(for: CoordinateConverter.currentMapCoordinateSystem),
id: favorite.id,
name: favorite.name
)
@@ -445,8 +484,10 @@ struct MapHomeView: View {
guard spoofState == .active,
let sLat = activeSpoofLat,
let sLon = activeSpoofLon else { return false }
return abs(sLat - mapState.selection.coordinate.latitude) > 0.0001
|| abs(sLon - mapState.selection.coordinate.longitude) > 0.0001
return !currentSelectionFavorite.coordinatePair.matchesWGS84(
latitude: sLat,
longitude: sLon
)
}
private var buttonTitle: String {
@@ -485,7 +526,7 @@ struct MapHomeView: View {
spoofState = .verifying
locationOperationTask = Task { @MainActor in
let result = await setup.runVerificationTest(testLat: target.latitude, testLon: target.longitude)
let result = await setup.runVerificationTest()
guard !Task.isCancelled,
operationID == locationOperationID,
selectionRevision == mapState.selection.revision else {
@@ -508,8 +549,13 @@ struct MapHomeView: View {
"applied": String(applied),
"spoofState": String(describing: spoofState)
])
if applied && !activationTipDisabled {
showEnableTip = true
if applied {
let count = tipPreferences.recordSuccessfulOperation(.activation)
RuntimeLogger.info("APP", "提醒", "累计开启虚拟定位次数", details: [
"次数": String(count),
"可显示不再提醒": String(tipPreferences.canSuppress(.activation))
])
showEnableTip = tipPreferences.shouldPresentAutomaticTip(.activation)
}
} else {
spoofState = actions.virtualLocationEnabled ? .active : .idle
@@ -517,7 +563,11 @@ struct MapHomeView: View {
"result": result.id,
"spoofState": String(describing: spoofState)
])
if let tip = result.tipKind {
if result == .certNotTrusted {
RuntimeLogger.warning("APP", "定位", "开启前检测发现证书异常,进入证书安装引导")
activeTip = nil
setup.applyVerificationResult(result)
} else if let tip = result.tipKind {
activeTip = tip
}
}
@@ -533,7 +583,12 @@ struct MapHomeView: View {
spoofState = .idle
activeSpoofLat = nil
activeSpoofLon = nil
showDisableTip = true
let count = tipPreferences.recordSuccessfulOperation(.deactivation)
RuntimeLogger.info("APP", "提醒", "累计关闭虚拟定位次数", details: [
"次数": String(count),
"可显示不再提醒": String(tipPreferences.canSuppress(.deactivation))
])
showDisableTip = tipPreferences.shouldPresentAutomaticTip(.deactivation)
}
@@ -574,69 +629,40 @@ struct MapHomeView: View {
mapState.selection.coordinate.latitude,
mapState.selection.coordinate.longitude
),
latitude: mapState.selection.coordinate.latitude,
longitude: mapState.selection.coordinate.longitude,
coordinatePair: .init(
mapCoordinate: mapState.selection.coordinate,
mapCoordinateSystem: CoordinateConverter.currentMapCoordinateSystem
),
accuracy: 25
)
}
private var testFavorite: FavoriteLocation { currentSelectionFavorite }
private func initializeMap() {
guard !mapDidInitialize else { return }
mapDidInitialize = true
if let selected = favorites.selectedFavorite {
let display = CoordinateConverter.toDisplay(lat: selected.latitude, lon: selected.longitude)
mapState.selectFavorite(
CLLocationCoordinate2D(latitude: display.lat, longitude: display.lon),
id: selected.id,
name: selected.name
private func startMapRuntimeOnce() {
guard !mapRuntimeDidStart else { return }
mapRuntimeDidStart = true
let pair = LastCoordinateStore.load()?.coordinatePair
?? CoordinatePair(
mapCoordinate: mapState.selection.coordinate,
mapCoordinateSystem: CoordinateConverter.currentMapCoordinateSystem
)
LastCoordinateStore.save(lat: selected.latitude, lon: selected.longitude)
} else {
mapState.focusSelection(distanceMeters: mapState.viewportMeters)
scheduleGeocode(
coordinate: mapState.selection.coordinate,
revision: mapState.selection.revision
)
}
// > > init
let savedCoord = LastCoordinateStore.load()
if savedCoord == nil {
requestRealtimeLocation()
}
}
private func startTileProbe(force: Bool = false) {
guard tileProbeTask == nil else { return }
let probeID = UUID()
tileProbeID = probeID
tileProbeTask = Task { @MainActor in
defer {
if tileProbeID == probeID {
tileProbeTask = nil
tileProbeID = nil
}
}
guard let change = await CoordinateConverter.detectTileByFixedGeocode(force: force),
!Task.isCancelled else { return }
reprojectMapSelection(for: change)
}
}
private func reprojectMapSelection(for change: CoordinateConverter.TileTypeChange) {
// CLLocationManager samples are WGS-84 already. Other map interactions
// are display coordinates and must be converted through WGS-84 once.
guard mapState.selection.source != .realtime else { return }
let coordinate = CoordinateConverter.reprojectDisplayCoordinate(
mapState.selection.coordinate,
from: change.previous,
to: change.current
scheduleGeocode(
coordinate: pair.wgs84.coordinate,
revision: mapState.selection.revision
)
mapState.reprojectSelectionForTileChange(coordinate)
RuntimeLogger.info("APP", "坐标转换", "瓦片类型切换后已重投影当前选点", details: [
}
private func reprojectMapSelection(for change: CoordinateConverter.MapCoordinateSystemChange) {
// Every current selection is persisted as a complete coordinate pair at
// its input boundary. Replaying the matching stored representation
// avoids a second GCJ/WGS conversion and its accumulated offset.
guard let stored = LastCoordinateStore.load() else {
RuntimeLogger.warning("APP", "坐标转换", "地图坐标标准切换时未找到当前选点缓存")
return
}
mapState.reprojectSelectionForMapCoordinateSystemChange(stored.coordinate(for: change.current))
RuntimeLogger.info("APP", "坐标转换", "地图坐标标准切换后已使用缓存坐标对回显当前选点", details: [
"from": change.previous.rawValue,
"to": change.current.rawValue
])
@@ -644,16 +670,20 @@ struct MapHomeView: View {
private func registerWiFiChangeObserver() {
guard wifiChangeObserverToken == nil else { return }
wifiChangeObserverToken = net.observeWiFiChanges { [self] in
handleWiFiChange()
wifiChangeObserverToken = net.observeWiFiChanges { [self] reason in
handleWiFiChange(reason: reason)
}
}
private func handleWiFiChange() {
private func handleWiFiChange(reason: WiFiChangeReason) {
RuntimeLogger.info("APP", "WiFi", "检测到 Wi-Fi 网络变化", details: [
"原因": reason.rawValue,
"虚拟定位已开启": String(spoofState == .active)
])
guard spoofState == .active else { return }
if wifiVerificationTask != nil {
RuntimeLogger.info("APP", "WiFi", "网络仍在变化,重新计算环境检测等待时间")
}
wifiVerificationTask?.cancel()
let verificationID = UUID()
wifiVerificationID = verificationID
@@ -664,34 +694,94 @@ struct MapHomeView: View {
wifiVerificationID = nil
}
}
let stabilizationNanoseconds: UInt64 = 5_000_000_000
RuntimeLogger.info("APP", "WiFi", "等待 Wi-Fi 连接稳定后检测", details: [
"等待秒数": "5",
"事件原因": reason.rawValue
])
do {
try await Task.sleep(nanoseconds: 3_000_000_000)
try await Task.sleep(nanoseconds: stabilizationNanoseconds)
} catch {
RuntimeLogger.debug("APP", "WiFi", "延时检测已被更新的网络事件取消")
return
}
guard !Task.isCancelled, spoofState == .active else { return }
RuntimeLogger.info("APP", "WiFi", "开始重新验证")
let target = currentSelectionFavorite
let result = await setup.runVerificationTest(testLat: target.latitude, testLon: target.longitude)
guard !Task.isCancelled, spoofState == .active else { return }
RuntimeLogger.info("APP", "WiFi", "重新验证完成", details: [
"success": String(result.isSuccess),
"tipKind": result.tipKind?.rawValue ?? "nil"
])
if !result.isSuccess, let tip = result.tipKind {
activeTip = tip
guard net.isSatisfied, net.isWiFiEnabled else {
RuntimeLogger.warning("APP", "WiFi", "稳定等待结束后仍未连接 Wi-Fi,提示检查代理", details: [
"网络可用": String(net.isSatisfied),
"Wi-Fi接口": String(net.isWiFiEnabled)
])
activeTip = .proxySetup
return
}
// A manual diagnostics request can occupy the verifier for its full
// eight-second URL timeout. Wait long enough to run this check after
// it finishes instead of silently dropping the Wi-Fi-change check.
let maximumAttempts = 11
for attempt in 1...maximumAttempts {
RuntimeLogger.info("APP", "WiFi", "开始后台环境检测", details: [
"尝试": "\(attempt)/\(maximumAttempts)",
"SSID可读取": String(net.currentSSID != nil)
])
let result = await setup.runVerificationTest()
guard !Task.isCancelled, spoofState == .active else { return }
if result == .verificationInProgress, attempt < maximumAttempts {
RuntimeLogger.info("APP", "WiFi", "已有环境检测运行,1 秒后重试", details: [
"尝试": "\(attempt)/\(maximumAttempts)"
])
do {
try await Task.sleep(nanoseconds: 1_000_000_000)
} catch {
return
}
continue
}
if result == .certNotTrusted {
RuntimeLogger.warning("APP", "WiFi", "后台环境检测发现证书异常,进入证书安装引导")
activeTip = nil
setup.applyVerificationResult(result)
return
}
let tip = result.wifiChangeReminderTipKind
RuntimeLogger.info("APP", "WiFi", "后台环境检测完成", details: [
"结果": result.id,
"success": String(result.isSuccess),
"提示": tip?.rawValue ?? ""
])
if !result.isSuccess, let tip {
activeTip = tip
} else if result == .verificationInProgress {
RuntimeLogger.warning("APP", "WiFi", "环境检测连续被占用,本次不重复弹窗")
}
return
}
}
}
private func requestRealtimeLocation() {
let intent = mapState.beginRealtimeIntent()
startTileProbe()
RuntimeLogger.info("APP", "实时定位", "用户点击实时定位", details: [
"intentID": String(intent.id),
"选点revision": String(intent.selectionRevision),
"当前地图标准": CoordinateConverter.currentMapCoordinateSystem.rawValue,
"蓝点缓存存在": String(mapState.realtimeLocation != nil),
"CLLocationManager请求中": String(realtime.isRequesting)
])
// MKMapView userLocation
if let loc = mapState.realtimeLocation {
RealtimeLocationTrace.log("实时定位按钮直接使用 MapKit 蓝点缓存", location: loc, details: [
"intentID": String(intent.id),
"来源": "MapLocationState.realtimeLocation"
])
acceptRealtimeLocation(loc.coordinate, intent: intent, source: "MapKit蓝点")
return
}
RuntimeLogger.info("APP", "实时定位", "MapKit 蓝点尚不可用,启动 CLLocationManager 兜底", details: [
"intentID": String(intent.id)
])
startRealtimeLocationRequest(
source: "CLLocationManager",
showFailureAlert: true,
@@ -700,14 +790,25 @@ struct MapHomeView: View {
}
private func handleNativeRealtimeLocation(_ location: CLLocation) {
RealtimeLocationTrace.log("主页收到 MapKit 蓝点回调", location: location, details: [
"存在待处理请求": String(realtimeRequestContext != nil),
"当前选点revision": String(mapState.selection.revision)
])
mapState.updateRealtimeLocation(location)
guard let context = realtimeRequestContext else { return }
guard let context = realtimeRequestContext else {
RuntimeLogger.debug("APP", "实时定位", "蓝点已缓存;当前没有待处理的实时定位意图")
return
}
// MKMapView's MKUserLocation is the visible blue point. When it arrives,
// fulfill the pending intent from that exact sample and cancel the slower
// CLLocationManager fallback so the camera and dot cannot disagree.
realtimeRequestContext = nil
realtimeRequestTask?.cancel()
RuntimeLogger.info("APP", "实时定位", "MapKit 蓝点抢先完成请求,取消 CLLocationManager 兜底", details: [
"intentID": String(context.intent.id),
"原兜底来源": context.source
])
acceptRealtimeLocation(location.coordinate, intent: context.intent, source: "蓝点(途中)→\(context.source)")
}
@@ -722,16 +823,34 @@ struct MapHomeView: View {
source: source,
showFailureAlert: showFailureAlert
)
RuntimeLogger.info("APP", "实时定位", "登记实时定位请求上下文", details: [
"intentID": String(intent.id),
"选点revision": String(intent.selectionRevision),
"来源": source,
"失败时提示": String(showFailureAlert),
"任务已存在": String(realtimeRequestTask != nil),
"manager请求中": String(realtime.isRequesting)
])
// A button tap during the startup request retargets that same in-flight
// Core Location request to the newer intent instead of being ignored.
guard realtimeRequestTask == nil, !realtime.isRequesting else { return }
guard realtimeRequestTask == nil, !realtime.isRequesting else {
RuntimeLogger.info("APP", "实时定位", "复用进行中的 CLLocationManager 请求并更新意图上下文", details: [
"intentID": String(intent.id)
])
return
}
realtimeRequestTask = Task { @MainActor in
defer {
realtimeRequestTask = nil
realtimeRequestContext = nil
}
guard let coordinate = await realtime.requestLocation() else {
RuntimeLogger.warning("APP", "实时定位", "CLLocationManager 兜底未返回坐标", details: [
"授权状态rawValue": String(realtime.authorizationStatus.rawValue),
"任务已取消": String(Task.isCancelled),
"上下文存在": String(realtimeRequestContext != nil)
])
guard let context = realtimeRequestContext,
context.showFailureAlert,
!Task.isCancelled,
@@ -740,7 +859,16 @@ struct MapHomeView: View {
showLocationAlert = true
return
}
guard !Task.isCancelled, let context = realtimeRequestContext else { return }
RealtimeLocationTrace.coordinate("主页收到 CLLocationManager 兜底坐标", coordinate: coordinate, details: [
"任务已取消": String(Task.isCancelled)
])
guard !Task.isCancelled, let context = realtimeRequestContext else {
RuntimeLogger.info("APP", "实时定位", "丢弃 CLLocationManager 结果:任务已取消或蓝点已抢先完成", details: [
"任务已取消": String(Task.isCancelled),
"上下文存在": String(realtimeRequestContext != nil)
])
return
}
acceptRealtimeLocation(coordinate, intent: context.intent, source: context.source)
}
}
@@ -751,15 +879,48 @@ struct MapHomeView: View {
source: String
) {
let currentViewport = mapState.viewportMeters
let accepted = mapState.acceptRealtimeLocation(coordinate, intent: intent)
RuntimeLogger.info("APP", "地图", "\(source)返回", details: [
"accepted": String(accepted)
let previousMapCoordinateSystem = CoordinateConverter.currentMapCoordinateSystem
let usesDomesticStandard = CoordinateConverter.usesGCJ02ServiceArea(
lat: coordinate.latitude,
lon: coordinate.longitude
)
let mapCoordinateSystemChange = CoordinateConverter.correctMapCoordinateSystemUsingRealtime(coordinate)
if let change = mapCoordinateSystemChange {
reprojectMapSelection(for: change)
}
let pair = CoordinateConverter.coordinatePair(
lat: coordinate.latitude,
lon: coordinate.longitude,
mapCoordinateSystem: .wgs84
)
let accepted = mapState.acceptRealtimeLocation(
pair.coordinate(for: CoordinateConverter.currentMapCoordinateSystem),
intent: intent
)
RuntimeLogger.info("APP", "实时定位", "实时定位坐标完成标准判断并提交到地图", details: [
"来源": source,
"intentID": String(intent.id),
"intent选点revision": String(intent.selectionRevision),
"当前选点revision": String(mapState.selection.revision),
"服务区域使用GCJ": String(usesDomesticStandard),
"修正前地图标准": previousMapCoordinateSystem.rawValue,
"修正后地图标准": CoordinateConverter.currentMapCoordinateSystem.rawValue,
"地图标准发生修正": String(mapCoordinateSystemChange != nil),
"accepted": String(accepted),
"显示坐标字段": CoordinateConverter.currentMapCoordinateSystem.rawValue,
"持久化字段": "WGS-84+GCJ-02"
])
RealtimeLocationTrace.coordinate("原始实时定位坐标(按 WGS-84", coordinate: coordinate, details: [
"来源": source
])
RealtimeLocationTrace.coordinate("地图实际显示坐标", coordinate: pair.coordinate(for: CoordinateConverter.currentMapCoordinateSystem), details: [
"地图标准": CoordinateConverter.currentMapCoordinateSystem.rawValue
])
guard accepted else { return }
//
mapState.focusSelection(distanceMeters: currentViewport)
// WGS-84 toStored
LastCoordinateStore.save(lat: coordinate.latitude, lon: coordinate.longitude)
// Core Location is WGS-84; persist both forms once and render the active form.
LastCoordinateStore.save(coordinatePair: pair, zoomMeters: currentViewport)
favorites.select(nil)
scheduleGeocode(coordinate: coordinate, revision: mapState.selection.revision)
}
@@ -898,8 +1059,11 @@ struct MapHomeView: View {
reverseGeocodeTask?.cancel()
favorites.select(nil)
mapState.selectSearchResult(result.coordinate, name: result.name)
let wgs = CoordinateConverter.toStored(lat: result.coordinate.latitude, lon: result.coordinate.longitude)
LastCoordinateStore.save(lat: wgs.lat, lon: wgs.lon)
LastCoordinateStore.save(
mapCoordinate: result.coordinate,
mapCoordinateSystem: CoordinateConverter.currentMapCoordinateSystem,
zoomMeters: mapState.viewportMeters
)
searchText = result.name
searchResults = []
searchError = ""
@@ -913,13 +1077,15 @@ struct MapHomeView: View {
geocodeDebounceTask?.cancel()
reverseGeocodeTask?.cancel()
favorites.select(favorite.id)
let display = CoordinateConverter.toDisplay(lat: favorite.latitude, lon: favorite.longitude)
mapState.selectFavorite(
CLLocationCoordinate2D(latitude: display.lat, longitude: display.lon),
favorite.coordinatePair.coordinate(for: CoordinateConverter.currentMapCoordinateSystem),
id: favorite.id,
name: favorite.name
)
LastCoordinateStore.save(lat: favorite.latitude, lon: favorite.longitude)
LastCoordinateStore.save(
coordinatePair: favorite.coordinatePair,
zoomMeters: mapState.viewportMeters
)
}
private var enableTipSheet: some View {
@@ -931,16 +1097,38 @@ struct MapHomeView: View {
}
.navigationTitle("虚拟定位已开启").navigationBarTitleDisplayMode(.inline)
.safeAreaInset(edge: .bottom) {
VStack(spacing: 8) {
Button { showEnableTip = false } label: {
Text("知道了").font(.body.weight(.medium)).frame(maxWidth: .infinity).padding(.vertical, 12)
}.buttonStyle(.borderedProminent).tint(.blue)
Button(role: .destructive) {
activationTipDisabled = true
showEnableTip = false
} label: {
Label("关闭不再弹出", systemImage: "bell.slash").frame(maxWidth: .infinity)
}.buttonStyle(.bordered)
HStack(spacing: 12) {
if tipPreferences.canSuppress(.activation) {
Button {
tipPreferences.suppress(.activation)
showEnableTip = false
} label: {
Label("不再提醒", systemImage: "bell.slash.fill")
.font(.body.weight(.semibold))
.frame(maxWidth: .infinity)
.padding(.vertical, 12)
}
.buttonStyle(.borderedProminent)
.tint(.orange)
Button { showEnableTip = false } label: {
Text("知道了")
.font(.body.weight(.medium))
.frame(maxWidth: .infinity)
.padding(.vertical, 12)
}
.buttonStyle(.bordered)
.tint(.blue)
} else {
Button { showEnableTip = false } label: {
Text("知道了")
.font(.body.weight(.medium))
.frame(maxWidth: .infinity)
.padding(.vertical, 12)
}
.buttonStyle(.borderedProminent)
.tint(.blue)
}
}.padding(.horizontal, 16).padding(.bottom, 8)
}
}
@@ -956,9 +1144,39 @@ struct MapHomeView: View {
}
.navigationTitle("虚拟定位已关闭").navigationBarTitleDisplayMode(.inline)
.safeAreaInset(edge: .bottom) {
Button { showDisableTip = false } label: {
Text("知道了").font(.body.weight(.medium)).frame(maxWidth: .infinity).padding(.vertical, 12)
}.buttonStyle(.borderedProminent).tint(.blue).padding(.horizontal, 16).padding(.bottom, 8)
HStack(spacing: 12) {
if tipPreferences.canSuppress(.deactivation) {
Button {
tipPreferences.suppress(.deactivation)
showDisableTip = false
} label: {
Label("不再提醒", systemImage: "bell.slash.fill")
.font(.body.weight(.semibold))
.frame(maxWidth: .infinity)
.padding(.vertical, 12)
}
.buttonStyle(.borderedProminent)
.tint(.orange)
Button { showDisableTip = false } label: {
Text("知道了")
.font(.body.weight(.medium))
.frame(maxWidth: .infinity)
.padding(.vertical, 12)
}
.buttonStyle(.bordered)
.tint(.blue)
} else {
Button { showDisableTip = false } label: {
Text("知道了")
.font(.body.weight(.medium))
.frame(maxWidth: .infinity)
.padding(.vertical, 12)
}
.buttonStyle(.borderedProminent)
.tint(.blue)
}
}.padding(.horizontal, 16).padding(.bottom, 8)
}
}
}
+125 -37
View File
@@ -131,12 +131,17 @@ final class MapLocationState: ObservableObject {
private var nextRealtimeIntentID: UInt64 = 0
private var latestRealtimeIntentID: UInt64 = 0
init(initialCoordinate: CLLocationCoordinate2D, initialViewportMeters: CLLocationDistance = 1_000) {
init(
initialCoordinate: CLLocationCoordinate2D,
initialViewportMeters: CLLocationDistance = 1_000,
initialSource: MapSelectionSource = .initial,
initialName: String? = nil
) {
viewportMeters = initialViewportMeters
selection = MapSelection(
coordinate: initialCoordinate,
source: .initial,
explicitName: nil,
source: initialSource,
explicitName: initialName?.nonEmpty,
revision: nextSelectionRevision
)
}
@@ -233,7 +238,7 @@ final class MapLocationState: ObservableObject {
/// Updates only the map representation of the current physical selection.
/// This preserves revision/source so an in-flight user action is not invalidated.
func reprojectSelectionForTileChange(_ coordinate: CLLocationCoordinate2D) {
func reprojectSelectionForMapCoordinateSystemChange(_ coordinate: CLLocationCoordinate2D) {
guard CLLocationCoordinate2DIsValid(coordinate),
!selection.coordinate.isApproximatelyEqual(to: coordinate) else { return }
selection = MapSelection(
@@ -302,49 +307,132 @@ extension CLLocationCoordinate2D {
// MARK: -
struct LastCoordinate: Codable, Equatable {
let coordinatePair: CoordinatePair
let zoomMeters: CLLocationDistance
func coordinate(for mapCoordinateSystem: CoordinateConverter.MapCoordinateSystem) -> CLLocationCoordinate2D {
coordinatePair.coordinate(for: mapCoordinateSystem)
}
}
enum LastCoordinateStore {
private struct StoredPosition: Codable {
let coordinatePair: CoordinatePair
let zoomMeters: CLLocationDistance
}
private static let positionKey = "lastMapPositionV1"
private static let legacyLatKey = "lastMapLat"
private static let legacyLonKey = "lastMapLon"
static func save(
mapCoordinate: CLLocationCoordinate2D,
mapCoordinateSystem: CoordinateConverter.MapCoordinateSystem,
zoomMeters: CLLocationDistance,
defaults: UserDefaults = AppGroup.defaults
) {
save(
coordinatePair: .init(mapCoordinate: mapCoordinate, mapCoordinateSystem: mapCoordinateSystem),
zoomMeters: zoomMeters,
defaults: defaults
)
}
static func save(
coordinatePair: CoordinatePair,
zoomMeters: CLLocationDistance,
defaults: UserDefaults = AppGroup.defaults
) {
do {
let value = StoredPosition(coordinatePair: coordinatePair, zoomMeters: max(50, zoomMeters))
defaults.set(try JSONEncoder().encode(value), forKey: positionKey)
ViewportStore.save(value.zoomMeters, defaults: defaults)
} catch {
RuntimeLogger.error("APP", "地图", "保存当前图钉失败", error: error)
}
}
static func load(defaults: UserDefaults = AppGroup.defaults) -> LastCoordinate? {
if let data = defaults.data(forKey: positionKey),
let value = try? JSONDecoder().decode(StoredPosition.self, from: data) {
return LastCoordinate(coordinatePair: value.coordinatePair, zoomMeters: value.zoomMeters)
}
let legacyLatitude = defaults.double(forKey: legacyLatKey)
let legacyLongitude = defaults.double(forKey: legacyLonKey)
let legacy = CLLocationCoordinate2D(latitude: legacyLatitude, longitude: legacyLongitude)
guard CLLocationCoordinate2DIsValid(legacy), legacyLatitude != 0 || legacyLongitude != 0 else {
return nil
}
return LastCoordinate(
coordinatePair: CoordinateConverter.legacyCoordinatePair(lat: legacyLatitude, lon: legacyLongitude),
zoomMeters: ViewportStore.load(defaults: defaults) ?? 1_000
)
}
static func updateZoom(_ meters: CLLocationDistance, defaults: UserDefaults = AppGroup.defaults) {
guard let current = load(defaults: defaults) else { return }
save(coordinatePair: current.coordinatePair, zoomMeters: meters, defaults: defaults)
}
static func migrateLegacyCoordinate(
defaults: UserDefaults = AppGroup.defaults,
legacyDefaults: UserDefaults = .standard
) throws {
guard defaults.data(forKey: positionKey) == nil else { return }
let legacyLatitude = legacyDefaults.double(forKey: legacyLatKey)
let legacyLongitude = legacyDefaults.double(forKey: legacyLonKey)
let legacy = CLLocationCoordinate2D(latitude: legacyLatitude, longitude: legacyLongitude)
guard CLLocationCoordinate2DIsValid(legacy), legacyLatitude != 0 || legacyLongitude != 0 else { return }
let value = StoredPosition(
coordinatePair: CoordinateConverter.legacyCoordinatePair(lat: legacyLatitude, lon: legacyLongitude),
zoomMeters: ViewportStore.load(defaults: legacyDefaults) ?? 1_000
)
defaults.set(try JSONEncoder().encode(value), forKey: positionKey)
}
}
enum ViewportStore {
private static let key = "mapViewportMeters"
static func save(_ meters: CLLocationDistance) {
UserDefaults.standard.set(meters, forKey: key)
RuntimeLogger.info("APP", "缩放", "存储缩放", details: ["zoom": String(meters)])
static func save(_ meters: CLLocationDistance, defaults: UserDefaults = AppGroup.defaults) {
let value = max(50, meters)
defaults.set(value, forKey: key)
RuntimeLogger.info("APP", "缩放", "存储缩放", details: ["zoom": String(value)])
}
/// nil
static func load() -> CLLocationDistance? {
let v = UserDefaults.standard.double(forKey: key)
let result = v > 0 ? v : nil
RuntimeLogger.info("APP", "缩放", "读取缩放", details: ["zoom": result.map { String($0) } ?? "nil"])
return result
static func load(defaults: UserDefaults = AppGroup.defaults) -> CLLocationDistance? {
let value = defaults.double(forKey: key)
return value > 0 ? value : nil
}
/// 1km
static func loadOrDefault() -> CLLocationDistance {
if let v = load() { return v }
static func loadOrDefault(defaults: UserDefaults = AppGroup.defaults) -> CLLocationDistance {
if let value = load(defaults: defaults) { return value }
let fallback: CLLocationDistance = 1_000
save(fallback)
RuntimeLogger.info("APP", "缩放", "使用默认缩放 1km")
save(fallback, defaults: defaults)
return fallback
}
}
struct LastCoordinate {
let latitude: Double
let longitude: Double
var coordinate: CLLocationCoordinate2D { CLLocationCoordinate2D(latitude: latitude, longitude: longitude) }
var isValid: Bool { CLLocationCoordinate2DIsValid(coordinate) && (latitude != 0 || longitude != 0) }
}
enum CoordinateStorageMigration {
private static let versionKey = "coordinateStorageMigrationVersion"
static let currentVersion = 1
enum LastCoordinateStore {
private static let latKey = "lastMapLat"
private static let lonKey = "lastMapLon"
static func save(lat: Double, lon: Double) {
UserDefaults.standard.set(lat, forKey: latKey)
UserDefaults.standard.set(lon, forKey: lonKey)
}
/// nil
static func load() -> LastCoordinate? {
let c = LastCoordinate(
latitude: UserDefaults.standard.double(forKey: latKey),
longitude: UserDefaults.standard.double(forKey: lonKey)
static func migrateIfNeeded(
favorites: FavoriteLocationStore,
defaults: UserDefaults = AppGroup.defaults,
legacyDefaults: UserDefaults = .standard
) throws {
guard defaults.integer(forKey: versionKey) < currentVersion else { return }
// Pre-migration map pin and viewport values lived in UserDefaults.standard;
// favorites already lived in App Group defaults.
try LastCoordinateStore.migrateLegacyCoordinate(
defaults: defaults,
legacyDefaults: legacyDefaults
)
return c.isValid ? c : nil
try favorites.migrateLegacyCoordinates()
defaults.set(currentVersion, forKey: versionKey)
RuntimeLogger.info("APP", "坐标转换", "旧坐标数据迁移完成")
}
}
+40 -8
View File
@@ -32,6 +32,7 @@ enum MapZoomMath {
struct MapViewRepresentable: UIViewRepresentable {
let selection: MapSelection
let initialViewportMeters: CLLocationDistance
let cameraCommand: MapCameraCommand?
let onRealtimeLocationChanged: (CLLocation) -> Void
let onUserCenterChanged: (CLLocationCoordinate2D, CLLocationDistance) -> Void
@@ -47,9 +48,11 @@ struct MapViewRepresentable: UIViewRepresentable {
let map = MKMapView()
map.delegate = context.coordinator
map.showsUserLocation = true
let initialDistance = ViewportStore.loadOrDefault()
let initialDistance = max(50, initialViewportMeters)
RuntimeLogger.info("APP", "地图", "makeUIView", details: [
"zoom": String(initialDistance)
"zoom": String(initialDistance),
"初始坐标来源": String(describing: selection.source),
"地图标准": CoordinateConverter.currentMapCoordinateSystem.rawValue
])
map.setRegion(
MKCoordinateRegion(
@@ -102,7 +105,7 @@ struct MapViewRepresentable: UIViewRepresentable {
zoomLabel.textAlignment = .center
zoomLabel.adjustsFontSizeToFitWidth = true
zoomLabel.minimumScaleFactor = 0.7
zoomLabel.text = MapZoomMath.viewportScaleLabel(distanceMeters: ViewportStore.loadOrDefault())
zoomLabel.text = MapZoomMath.viewportScaleLabel(distanceMeters: initialDistance)
zoomLabel.heightAnchor.constraint(equalToConstant: 28).isActive = true
context.coordinator.zoomLabel = zoomLabel
@@ -160,6 +163,7 @@ struct MapViewRepresentable: UIViewRepresentable {
// MKUserLocationView 20pt
private var userDotDiameter: CGFloat = 20
private var keyboardObserverTokens: [NSObjectProtocol] = []
private var lastForwardedRealtimeTimestamp: Date?
deinit {
keyboardObserverTokens.forEach(NotificationCenter.default.removeObserver)
@@ -235,10 +239,28 @@ struct MapViewRepresentable: UIViewRepresentable {
}
func mapView(_ mapView: MKMapView, didUpdate userLocation: MKUserLocation) {
guard let location = userLocation.location,
CLLocationCoordinate2DIsValid(location.coordinate),
location.horizontalAccuracy >= 0 else { return }
parent.onRealtimeLocationChanged(location)
guard let location = userLocation.location else {
RuntimeLogger.warning("APP", "实时定位", "MapKit 蓝点更新但 location 为空", details: [
"来源": "MKMapView.didUpdate"
])
return
}
guard CLLocationCoordinate2DIsValid(location.coordinate) else {
RealtimeLocationTrace.log("拒绝 MapKit 蓝点样本:坐标无效", location: location, details: [
"来源": "MKMapView.didUpdate"
], level: .warning)
return
}
guard location.horizontalAccuracy >= 0 else {
RealtimeLocationTrace.log("拒绝 MapKit 蓝点样本:水平精度无效", location: location, details: [
"来源": "MKMapView.didUpdate"
], level: .warning)
return
}
RealtimeLocationTrace.log("收到 MapKit 可见蓝点样本", location: location, details: [
"来源": "MKMapView.didUpdate"
])
forwardRealtimeLocation(location)
}
func mapView(_ mapView: MKMapView, regionWillChangeAnimated animated: Bool) {
@@ -271,7 +293,12 @@ struct MapViewRepresentable: UIViewRepresentable {
// delegate mapState.realtimeLocation nil
if let ul = mapView.userLocation.location,
CLLocationCoordinate2DIsValid(ul.coordinate), ul.horizontalAccuracy >= 0 {
parent.onRealtimeLocationChanged(ul)
if lastForwardedRealtimeTimestamp.map({ ul.timestamp > $0 }) ?? true {
RealtimeLocationTrace.log("区域变化后同步到较新的 MapKit 蓝点样本", location: ul, details: [
"来源": "MKMapView.regionDidChange"
])
forwardRealtimeLocation(ul)
}
}
let userZoomed: Bool
@@ -295,6 +322,11 @@ struct MapViewRepresentable: UIViewRepresentable {
regionChangeWasUserDriven = false
}
private func forwardRealtimeLocation(_ location: CLLocation) {
lastForwardedRealtimeTimestamp = location.timestamp
parent.onRealtimeLocationChanged(location)
}
private func visibleVerticalDistance(in map: MKMapView) -> CLLocationDistance {
let centerX = map.bounds.midX
let north = map.convert(CGPoint(x: centerX, y: map.bounds.minY), toCoordinateFrom: map)
+110 -7
View File
@@ -92,24 +92,43 @@ final class RealtimeLocationManager: NSObject, ObservableObject, CLLocationManag
func requestLocation() async -> CLLocationCoordinate2D? {
guard activeRequest == nil else {
RuntimeLogger.warning("APP", "定位", "忽略重复实时定位请求")
RuntimeLogger.warning("APP", "实时定位", "忽略重复 CLLocationManager 请求", details: [
"活动requestID": activeRequest.map { String($0.id) } ?? "nil",
"活动阶段": activeRequest.map { phaseName($0.phase) } ?? "nil"
])
return nil
}
authorizationStatus = driver.authorizationStatus
RuntimeLogger.info("APP", "实时定位", "CLLocationManager 请求入口", details: [
"授权状态": authorizationName(authorizationStatus),
"内存缓存存在": String(location != nil),
"系统缓存存在": String(driver.location != nil)
])
guard authorizationStatus != .denied, authorizationStatus != .restricted else {
RuntimeLogger.warning("APP", "实时定位", "授权状态不允许定位", details: [
"授权状态": authorizationName(authorizationStatus)
])
return nil
}
if let cached = freshestCachedLocation() {
location = cached
RealtimeLocationTrace.log("使用 CLLocationManager 新鲜缓存", location: cached, details: [
"来源": "manager-memory-or-system",
"缓存上限秒": String(Int(cacheMaxAge))
])
return cached.coordinate
}
nextRequestID &+= 1
let requestID = nextRequestID
isRequesting = true
RuntimeLogger.info("APP", "定位", "请求实时定位…", details: ["requestID": String(requestID)])
RuntimeLogger.info("APP", "实时定位", "创建 CLLocationManager 请求", details: [
"requestID": String(requestID),
"授权状态": authorizationName(authorizationStatus),
"初始阶段": "awaitingAuthorization"
])
return await withTaskCancellationHandler {
await withCheckedContinuation { continuation in
@@ -121,6 +140,9 @@ final class RealtimeLocationManager: NSObject, ObservableObject, CLLocationManag
)
if authorizationStatus == .notDetermined {
RuntimeLogger.info("APP", "实时定位", "请求前台定位授权", details: [
"requestID": String(requestID)
])
scheduleTimeout(for: requestID, nanoseconds: fallbackTimeoutNanoseconds)
driver.requestWhenInUseAuthorization()
} else {
@@ -148,6 +170,11 @@ final class RealtimeLocationManager: NSObject, ObservableObject, CLLocationManag
nonisolated func locationManagerDidChangeAuthorization(_ manager: CLLocationManager) {
MainActor.assumeIsolated {
authorizationStatus = driver.authorizationStatus
RuntimeLogger.info("APP", "实时定位", "定位授权状态变化", details: [
"授权状态": authorizationName(authorizationStatus),
"requestID": activeRequest.map { String($0.id) } ?? "nil",
"阶段": activeRequest.map { phaseName($0.phase) } ?? "idle"
])
switch authorizationStatus {
case .authorizedAlways, .authorizedWhenInUse:
if let request = activeRequest, request.phase == .awaitingAuthorization {
@@ -165,6 +192,27 @@ final class RealtimeLocationManager: NSObject, ObservableObject, CLLocationManag
nonisolated func locationManager(_ manager: CLLocationManager, didUpdateLocations locations: [CLLocation]) {
MainActor.assumeIsolated {
RuntimeLogger.info("APP", "实时定位", "CLLocationManager 返回样本批次", details: [
"样本数": String(locations.count),
"requestID": activeRequest.map { String($0.id) } ?? "nil",
"阶段": activeRequest.map { phaseName($0.phase) } ?? "idle"
])
for (index, candidate) in locations.enumerated() {
let valid = Self.isValid(candidate)
let freshEnough = activeRequest?.startedAt.map {
candidate.timestamp >= $0.addingTimeInterval(-1)
} ?? false
RealtimeLocationTrace.log(
valid ? "检查 CLLocationManager 样本" : "拒绝 CLLocationManager 样本:坐标或精度无效",
location: candidate,
details: [
"批次索引": String(index),
"基础校验通过": String(valid),
"满足当前请求时间窗": String(freshEnough)
],
level: valid ? .info : .warning
)
}
let validLocations = locations.filter(Self.isValid)
if let latestValid = validLocations.last {
location = latestValid
@@ -176,8 +224,19 @@ final class RealtimeLocationManager: NSObject, ObservableObject, CLLocationManag
let latest = validLocations.last(where: {
$0.timestamp >= startedAt.addingTimeInterval(-1)
}) else {
if let request = activeRequest, request.phase != .awaitingAuthorization {
RuntimeLogger.warning("APP", "实时定位", "本批次没有可完成当前请求的样本", details: [
"requestID": String(request.id),
"阶段": phaseName(request.phase),
"有效样本数": String(validLocations.count)
])
}
return
}
RealtimeLocationTrace.log("接受 CLLocationManager 样本并完成请求", location: latest, details: [
"requestID": String(request.id),
"阶段": phaseName(request.phase)
])
finishRequest(id: request.id, coordinate: latest.coordinate)
}
}
@@ -206,8 +265,19 @@ final class RealtimeLocationManager: NSObject, ObservableObject, CLLocationManag
}
private func freshestCachedLocation(now: Date = Date()) -> CLLocation? {
[location, driver.location]
.compactMap { $0 }
let candidates = [location, driver.location].compactMap { $0 }
for candidate in candidates {
let valid = Self.isValid(candidate)
let age = abs(candidate.timestamp.timeIntervalSince(now))
if !valid || age > cacheMaxAge {
RealtimeLocationTrace.log("跳过 CLLocationManager 缓存样本", location: candidate, details: [
"基础校验通过": String(valid),
"缓存时效通过": String(age <= cacheMaxAge),
"缓存上限秒": String(Int(cacheMaxAge))
], level: .warning)
}
}
return candidates
.filter(Self.isValid)
.filter { abs($0.timestamp.timeIntervalSince(now)) <= cacheMaxAge }
.max(by: { $0.timestamp < $1.timestamp })
@@ -253,6 +323,10 @@ final class RealtimeLocationManager: NSObject, ObservableObject, CLLocationManag
request.phase = .oneShot
request.startedAt = Date()
activeRequest = request
RuntimeLogger.info("APP", "实时定位", "开始 CLLocationManager 单次定位", details: [
"requestID": String(requestID),
"超时毫秒": String(oneShotTimeoutNanoseconds / 1_000_000)
])
scheduleTimeout(for: requestID, nanoseconds: oneShotTimeoutNanoseconds)
driver.requestLocation()
}
@@ -263,6 +337,10 @@ final class RealtimeLocationManager: NSObject, ObservableObject, CLLocationManag
request.phase == .oneShot else { return }
request.phase = .continuousFallback
activeRequest = request
RuntimeLogger.info("APP", "实时定位", "开始 CLLocationManager 持续定位兜底", details: [
"requestID": String(requestID),
"超时毫秒": String(fallbackTimeoutNanoseconds / 1_000_000)
])
driver.startUpdatingLocation()
scheduleTimeout(for: requestID, nanoseconds: fallbackTimeoutNanoseconds)
}
@@ -281,12 +359,37 @@ final class RealtimeLocationManager: NSObject, ObservableObject, CLLocationManag
isRequesting = false
if coordinate != nil {
RuntimeLogger.info("APP", "定位", "获取到实时定位", details: [
"requestID": String(requestID)
RuntimeLogger.info("APP", "实时定位", "CLLocationManager 请求完成", details: [
"requestID": String(requestID),
"最终阶段": phaseName(request.phase),
"有坐标": "true"
])
} else {
RuntimeLogger.warning("APP", "定位", "实时定位请求结束但没有坐标", details: ["requestID": String(requestID)])
RuntimeLogger.warning("APP", "实时定位", "CLLocationManager 请求结束但没有坐标", details: [
"requestID": String(requestID),
"最终阶段": phaseName(request.phase),
"有坐标": "false"
])
}
request.continuation.resume(returning: coordinate)
}
private func phaseName(_ phase: RequestPhase) -> String {
switch phase {
case .awaitingAuthorization: return "awaitingAuthorization"
case .oneShot: return "oneShot"
case .continuousFallback: return "continuousFallback"
}
}
private func authorizationName(_ status: CLAuthorizationStatus) -> String {
switch status {
case .notDetermined: return "notDetermined"
case .restricted: return "restricted"
case .denied: return "denied"
case .authorizedAlways: return "authorizedAlways"
case .authorizedWhenInUse: return "authorizedWhenInUse"
@unknown default: return "unknown(\(status.rawValue))"
}
}
}
+1 -1
View File
@@ -53,7 +53,7 @@ struct SettingsView: View {
Section("应用") {
Button {
setup.needsSetup = true
setup.requestSetup()
} label: {
Label("进入引导页", systemImage: "arrow.clockwise.circle")
}
+54 -56
View File
@@ -9,6 +9,7 @@ final class SetupCoordinator: ObservableObject {
@Published var testLog = ""
// false
@Published var needsSetup = false
@Published private(set) var setupStep: SetupStep = .proxy
let certificateStore = CertificateAuthorityStore()
let proxy = ProxyManager.shared
@@ -24,68 +25,48 @@ final class SetupCoordinator: ObservableObject {
var canModify: Bool { proxy.isRunning && trustState == .trusted }
func refreshTrust() async {
trustState = .checking
message = "正在检测…"
testLog = ""
defer { needsSetup = !canModify }
/// Local services are prepared before the setup UI so the environment test
/// can distinguish Wi-Fi proxy configuration from CA trust failures.
func prepareLocalServices() async {
do {
_ = try certificateStore.ensure()
if !proxy.isRunning { try await proxy.start() }
// POST Apple TLS = CA
let config = URLSessionConfiguration.ephemeral
config.timeoutIntervalForRequest = 5
config.timeoutIntervalForResource = 8
config.connectionProxyDictionary = [
kCFNetworkProxiesHTTPEnable as String: true,
kCFNetworkProxiesHTTPProxy as String: "127.0.0.1",
kCFNetworkProxiesHTTPPort as String: 8888,
]
// This probe verifies proxy reachability and TLS trust only; it does not validate a selected coordinate.
let req = makeWlocRequest()
let (_, resp) = try await URLSession(configuration: config).data(for: req)
let status = (resp as? HTTPURLResponse)?.statusCode ?? 0
// 400 = Apple TLS =
if status == 0 {
trustState = .unavailable
message = "代理链路异常,未收到响应"
return
}
trustState = .trusted
message = "✓ 定位环境正常(返回 \(status)"
} catch {
message = "本地代理初始化失败:\(error.localizedDescription)"
RuntimeLogger.error("APP", "Startup", "本地服务初始化失败", error: error)
}
}
func applyVerificationResult(_ result: VerificationResult) {
switch result {
case .success:
trustState = .trusted
needsSetup = false
message = "✓ 定位环境正常"
case .certNotTrusted:
trustState = .unavailable
let ns = error as NSError
if ns.domain == NSURLErrorDomain && ns.code == -1202 {
message = "CA 证书未信任,请去「设置→通用→关于→证书信任设置」开启或重新安装"
} else if ns.domain == NSURLErrorDomain && ns.code == -1001 {
message = "检测超时,请检查代理是否正常"
} else if ns.domain == NSURLErrorDomain && ns.code == -1200 {
message = "代理未启动或无法连接"
} else {
message = "检测失败 [\(ns.domain) \(ns.code)]: \(ns.localizedDescription)"
}
setupStep = .cert
needsSetup = true
message = "CA 证书未安装或未信任"
default:
trustState = .unavailable
setupStep = .proxy
needsSetup = true
message = "Wi-Fi 代理未正确设置,请检查 127.0.0.1:8888"
}
}
func sceneDidBecomeActive() {}
func browseMapWithoutSetup() { isBrowsingWithoutTrust = true; needsSetup = false }
func completeSetup() { needsSetup = false }
func requestSetup() { needsSetup = true }
func requestSetup() {
setupStep = .proxy
needsSetup = true
}
// MARK: - Step-by-step verification test
private func makeWlocRequest() -> URLRequest {
var req = URLRequest(url: URL(string: "https://gs-loc.apple.com/clls/wloc")!)
req.httpMethod = "POST"
req.httpBody = CoreBridge.testWlocRequestData()
req.setValue("application/x-protobuf", forHTTPHeaderField: "Content-Type")
req.setValue("wloc/1.0", forHTTPHeaderField: "User-Agent")
req.setValue("application/x-protobuf", forHTTPHeaderField: "Accept")
return req
}
func runVerificationTest(testLat: Double = 22.543099, testLon: Double = 113.934576) async -> VerificationResult {
func runVerificationTest() async -> VerificationResult {
guard !isVerificationRunning else { return .verificationInProgress }
isVerificationRunning = true
defer { isVerificationRunning = false }
@@ -137,20 +118,15 @@ final class SetupCoordinator: ObservableObject {
if body == verifyToken {
log(" ✓ 证书已信任,WiFi 代理已配置")
} else {
log(" ✗ 响应不匹配 (HTTP \(statusCode))WiFi 代理未配置")
log(" 收到: \(body.prefix(100))")
log(" ✗ 响应不匹配: HTTP \(statusCode), \(data.count) bytesWiFi 代理未配置")
return .wifiProxyNotConfigured
}
} catch {
let ns = error as NSError
let msg = error.localizedDescription
log(" ✗ 请求失败 [\(ns.domain) code=\(ns.code)]: \(msg)")
if ns.domain == NSURLErrorDomain && ns.code == -1202 {
log(" TLS 握手被拒CA 证书未信任")
return .certNotTrusted
}
if msg.contains("TLS") {
log(" 包含 TLS → 证书问题")
if isCertificateTrustError(nsError: ns, message: msg) {
log(" TLS/证书校验失败CA 证书未信任")
return .certNotTrusted
}
return .wifiProxyNotConfigured
@@ -162,6 +138,28 @@ final class SetupCoordinator: ObservableObject {
return .success
}
/// Classifies TLS trust failures without relying on localized error text alone.
private func isCertificateTrustError(nsError: NSError, message: String) -> Bool {
if nsError.domain == NSURLErrorDomain {
let trustErrorCodes: Set<Int> = [
-1200, // secure connection failed
-1201, // server certificate has bad date
-1202, // server certificate untrusted
-1203, // server certificate has unknown root
-1204, // server certificate not yet valid
-1205, // client certificate rejected
-1206, // client certificate required
]
return trustErrorCodes.contains(nsError.code)
}
let normalized = message.lowercased()
return normalized.contains("tls")
|| normalized.contains("ssl")
|| normalized.contains("certificate")
|| normalized.contains("证书")
}
/// Go CONNECT/// testLog
private func collectProxyLogs(since date: Date, to log: (String) -> Void) {
CoreBridge.flushLogs(category: "Proxy")
-20
View File
@@ -4,7 +4,6 @@ enum TipKind: String, Identifiable {
case activation = "生效说明"
case deactivation = "失效说明"
case removeProxy = "关闭 WiFi 代理"
case certificate = "证书问题"
case proxySetup = "配置代理"
case rewriteFailed = "改写失败"
var id: String { rawValue }
@@ -22,7 +21,6 @@ struct TipSheetView: View {
case .activation: ActivationTipContent(dismiss: { dismiss() })
case .deactivation: DeactivationTipContent(dismiss: { dismiss() })
case .removeProxy: RemoveProxyTipContent(dismiss: { dismiss() })
case .certificate: CertificateTipContent(dismiss: { dismiss() })
case .proxySetup: ProxySetupTipContent(dismiss: { dismiss() })
case .rewriteFailed: RewriteFailedTipContent(dismiss: { dismiss() })
}
@@ -185,24 +183,6 @@ struct RemoveProxyTipContent: View {
}
}
// MARK: -
struct CertificateTipContent: View {
let dismiss: () -> Void
var body: some View {
GroupBox(label: Label("证书未安装或未信任", systemImage: "lock.shield")) {
VStack(alignment: .leading, spacing: 8) {
Text("代理的 HTTPS 请求被系统拦截了,原因是 CA 证书未完成安装或信任。\n\n请依次检查:\n1. 打开「设置 → 通用 → VPN与设备管理」,确认 WLOC CA 证书已安装。如果没有,请删除旧证书后回到 App 重新下载安装\n2. 打开「设置 → 通用 → 关于本机 → 证书信任设置」,找到 WLOC CA 开启开关\n\n⚠️ 每次重装 App 都需要重新下载安装证书。如报 TLS 错误,请删除旧证书后重装。")
.font(.caption).foregroundStyle(.primary)
Button { openSettings(.general) } label: {
Label("去设置", systemImage: "arrow.up.right.square").font(.caption)
}.buttonStyle(.bordered).tint(.blue)
}.padding(.vertical, 4)
}
}
}
// MARK: - WiFi
struct ProxySetupTipContent: View {
+12
View File
@@ -41,6 +41,18 @@ func wloccore_generateca() (r0, r1 *C.char) {
return C.CString(string(cert)), C.CString(string(key))
}
//export wloccore_validateca
func wloccore_validateca(certData, keyData *C.char) C.int {
if certData == nil || keyData == nil {
return 0
}
if _, err := parseCA([]byte(C.GoString(certData)), []byte(C.GoString(keyData))); err != nil {
logEvent("validateca failed: " + err.Error())
return 0
}
return 1
}
//export wloccore_startproxy
func wloccore_startproxy(certData, keyData *C.char, lat, lon C.double, enabled C.int, accuracy C.int) C.uintptr_t {
if certData == nil || keyData == nil {
+3 -1
View File
@@ -145,7 +145,9 @@ func newProxy(cert *tls.Certificate) *goproxy.ProxyHttpServer {
logEvent("CONNECT " + host + " -> MITM (verify)")
return mitmAction, host
}
logEvent("CONNECT " + host + " -> passthrough")
// Global Wi-Fi proxy mode sends all HTTPS CONNECT traffic here. Logging
// unrelated passthrough hosts creates high-volume noise and can disclose
// browsing destinations; diagnostics only retain WLOC and verify traffic.
return goproxy.OkConnect, host
})
}
+73
View File
@@ -43,3 +43,76 @@ enum WlocSettingsStore {
save(WlocSettings(longitude: 0, latitude: 0, accuracy: 25, enabled: false))
}
}
enum VirtualLocationTipKind: Equatable {
case activation
case deactivation
}
/// Owns the persistent counters and suppression flags for automatic operation tips.
/// Manual help sheets do not consult or mutate this store.
struct VirtualLocationTipPreferences {
static let minimumCountForSuppression = 3
private enum Key {
static let activationCount = "virtualLocationTip.activationCount"
static let deactivationCount = "virtualLocationTip.deactivationCount"
static let activationSuppressed = "virtualLocationTip.activationSuppressed"
static let deactivationSuppressed = "virtualLocationTip.deactivationSuppressed"
static let legacyActivationSuppressed = "activationTipDisabled"
}
private let defaults: UserDefaults
private let legacyDefaults: UserDefaults
init(
defaults: UserDefaults = AppGroup.defaults,
legacyDefaults: UserDefaults = .standard
) {
self.defaults = defaults
self.legacyDefaults = legacyDefaults
}
@discardableResult
func recordSuccessfulOperation(_ kind: VirtualLocationTipKind) -> Int {
let key = countKey(for: kind)
let next = defaults.integer(forKey: key) + 1
defaults.set(next, forKey: key)
return next
}
func shouldPresentAutomaticTip(_ kind: VirtualLocationTipKind) -> Bool {
!isSuppressed(kind)
}
func canSuppress(_ kind: VirtualLocationTipKind) -> Bool {
defaults.integer(forKey: countKey(for: kind)) >= Self.minimumCountForSuppression
}
func suppress(_ kind: VirtualLocationTipKind) {
guard canSuppress(kind) else { return }
defaults.set(true, forKey: suppressionKey(for: kind))
}
private func isSuppressed(_ kind: VirtualLocationTipKind) -> Bool {
if kind == .activation,
legacyDefaults.bool(forKey: Key.legacyActivationSuppressed) {
return true
}
return defaults.bool(forKey: suppressionKey(for: kind))
}
private func countKey(for kind: VirtualLocationTipKind) -> String {
switch kind {
case .activation: return Key.activationCount
case .deactivation: return Key.deactivationCount
}
}
private func suppressionKey(for kind: VirtualLocationTipKind) -> String {
switch kind {
case .activation: return Key.activationSuppressed
case .deactivation: return Key.deactivationSuppressed
}
}
}
+153 -21
View File
@@ -1,46 +1,178 @@
import Foundation
import Security
protocol CertificateAuthorityKeychain {
func load() throws -> CertificateAuthority?
func save(_ authority: CertificateAuthority) throws
func remove() throws
}
enum CertificateAuthorityStoreError: LocalizedError {
case invalidAuthority
case keychain(OSStatus)
var errorDescription: String? {
switch self {
case .invalidAuthority: return "本地 CA 证书或私钥无效"
case let .keychain(status): return "无法写入设备钥匙串(\(status)"
}
}
}
final class DeviceCertificateAuthorityKeychain: CertificateAuthorityKeychain {
private enum Item {
static let service = "com.paopaolabs.location-spoofer.certificate-authority"
static let certificateAccount = "root-ca-certificate"
static let keyAccount = "root-ca-private-key"
}
func load() throws -> CertificateAuthority? {
guard let certPEM = try load(account: Item.certificateAccount),
let keyPEM = try load(account: Item.keyAccount) else {
return nil
}
return CertificateAuthority(certPEM: certPEM, keyPEM: keyPEM)
}
func save(_ authority: CertificateAuthority) throws {
try remove()
do {
try save(authority.certPEM, account: Item.certificateAccount)
try save(authority.keyPEM, account: Item.keyAccount)
} catch {
try? remove()
throw error
}
}
func remove() throws {
let query: [String: Any] = [
kSecClass as String: kSecClassGenericPassword,
kSecAttrService as String: Item.service,
kSecAttrSynchronizable as String: kCFBooleanFalse as Any,
]
let status = SecItemDelete(query as CFDictionary)
guard status == errSecSuccess || status == errSecItemNotFound else {
throw CertificateAuthorityStoreError.keychain(status)
}
}
private func load(account: String) throws -> String? {
let query: [String: Any] = [
kSecClass as String: kSecClassGenericPassword,
kSecAttrService as String: Item.service,
kSecAttrAccount as String: account,
kSecAttrSynchronizable as String: kCFBooleanFalse as Any,
kSecReturnData as String: true,
kSecMatchLimit as String: kSecMatchLimitOne,
]
var result: CFTypeRef?
let status = SecItemCopyMatching(query as CFDictionary, &result)
if status == errSecItemNotFound { return nil }
guard status == errSecSuccess, let data = result as? Data,
let value = String(data: data, encoding: .utf8) else {
throw CertificateAuthorityStoreError.keychain(status)
}
return value
}
private func save(_ value: String, account: String) throws {
guard let data = value.data(using: .utf8) else {
throw CocoaError(.fileWriteInapplicableStringEncoding)
}
let query: [String: Any] = [
kSecClass as String: kSecClassGenericPassword,
kSecAttrService as String: Item.service,
kSecAttrAccount as String: account,
kSecAttrAccessible as String: kSecAttrAccessibleAfterFirstUnlockThisDeviceOnly,
kSecAttrSynchronizable as String: kCFBooleanFalse as Any,
kSecValueData as String: data,
]
let status = SecItemAdd(query as CFDictionary, nil)
guard status == errSecSuccess else { throw CertificateAuthorityStoreError.keychain(status) }
}
}
final class CertificateAuthorityStore {
private let directory: URL
private let generator: () throws -> CertificateAuthority
private let validator: (CertificateAuthority) -> Bool
private let keychain: CertificateAuthorityKeychain
private let certificateURL: URL
private let keyURL: URL
init(directory: URL = AppGroup.containerURL.appendingPathComponent("CertificateAuthority", isDirectory: true), generator: @escaping () throws -> CertificateAuthority = CoreBridge.generateCertificateAuthority) {
init(
directory: URL = AppGroup.containerURL.appendingPathComponent("CertificateAuthority", isDirectory: true),
keychain: CertificateAuthorityKeychain = DeviceCertificateAuthorityKeychain(),
generator: @escaping () throws -> CertificateAuthority = CoreBridge.generateCertificateAuthority,
validator: @escaping (CertificateAuthority) -> Bool = CoreBridge.isValidCertificateAuthority
) {
self.directory = directory
self.keychain = keychain
self.generator = generator
self.validator = validator
self.certificateURL = directory.appendingPathComponent("ca-cert.pem")
self.keyURL = directory.appendingPathComponent("ca-key.pem")
}
func ensure() throws -> CertificateAuthority {
if let current = try load() {
RuntimeLogger.debug("SHARED", "Certificate.store", "读取已有 CA 文件", details: ["directory": directory.path])
return current
if let authority = try loadValidKeychainAuthority() {
removeLegacyFilesBestEffort()
RuntimeLogger.debug("SHARED", "Certificate.store", "复用设备钥匙串中的 CA")
return authority
}
RuntimeLogger.info("SHARED", "Certificate.store", "未找到 CA 文件,开始生成", details: ["directory": directory.path])
if let legacy = try loadLegacyAuthority(), validator(legacy) {
try keychain.save(legacy)
removeLegacyFilesBestEffort()
RuntimeLogger.info("SHARED", "Certificate.store", "旧 CA 已迁移到设备钥匙串")
return legacy
}
let authority = try generator()
try FileManager.default.createDirectory(at: directory, withIntermediateDirectories: true)
guard let certificateData = authority.certPEM.data(using: .utf8),
let keyData = authority.keyPEM.data(using: .utf8) else {
throw CocoaError(.fileWriteInapplicableStringEncoding)
}
try certificateData.write(to: certificateURL, options: .atomic)
try keyData.write(to: keyURL, options: .atomic)
applyCompleteProtection(to: certificateURL)
applyCompleteProtection(to: keyURL)
RuntimeLogger.info("SHARED", "Certificate.store", "CA 文件写入完成", details: ["directory": directory.path])
guard validator(authority) else { throw CertificateAuthorityStoreError.invalidAuthority }
try keychain.save(authority)
removeLegacyFilesBestEffort()
RuntimeLogger.info("SHARED", "Certificate.store", "已生成并保存设备专属 CA")
return authority
}
func load() throws -> CertificateAuthority? {
guard FileManager.default.fileExists(atPath: certificateURL.path), FileManager.default.fileExists(atPath: keyURL.path) else { return nil }
return CertificateAuthority(certPEM: try String(contentsOf: certificateURL, encoding: .utf8), keyPEM: try String(contentsOf: keyURL, encoding: .utf8))
try loadValidKeychainAuthority()
}
private func applyCompleteProtection(to url: URL) {
#if os(iOS)
try? FileManager.default.setAttributes([.protectionKey: FileProtectionType.complete], ofItemAtPath: url.path)
#endif
private func loadValidKeychainAuthority() throws -> CertificateAuthority? {
guard let authority = try keychain.load() else { return nil }
guard validator(authority) else {
RuntimeLogger.warning("SHARED", "Certificate.store", "钥匙串中的 CA 无效,准备回退")
try? keychain.remove()
return nil
}
return authority
}
private func loadLegacyAuthority() throws -> CertificateAuthority? {
guard FileManager.default.fileExists(atPath: certificateURL.path),
FileManager.default.fileExists(atPath: keyURL.path) else {
return nil
}
return CertificateAuthority(
certPEM: try String(contentsOf: certificateURL, encoding: .utf8),
keyPEM: try String(contentsOf: keyURL, encoding: .utf8)
)
}
private func removeLegacyFilesBestEffort() {
let fileManager = FileManager.default
// Remove private material first. Each item is retried on later launches
// when a valid Keychain authority is available.
for url in [keyURL, certificateURL] where fileManager.fileExists(atPath: url.path) {
do {
try fileManager.removeItem(at: url)
} catch {
RuntimeLogger.error("SHARED", "Certificate.store", "删除旧 CA 文件失败,将在下次启动重试", error: error)
}
}
try? fileManager.removeItem(at: directory)
}
}
+180 -121
View File
@@ -2,121 +2,199 @@ import Foundation
import CoreLocation
import MapKit
struct CoordinatePair: Codable, Equatable {
static let currentConversionVersion = 1
struct Value: Codable, Equatable {
let latitude: Double
let longitude: Double
var coordinate: CLLocationCoordinate2D {
CLLocationCoordinate2D(latitude: latitude, longitude: longitude)
}
}
let wgs84: Value
let gcj02: Value
let conversionVersion: Int
init(wgs84: Value, gcj02: Value, conversionVersion: Int = CoordinatePair.currentConversionVersion) {
self.wgs84 = wgs84
self.gcj02 = gcj02
self.conversionVersion = conversionVersion
}
init(mapCoordinate: CLLocationCoordinate2D, mapCoordinateSystem: CoordinateConverter.MapCoordinateSystem) {
self = CoordinateConverter.coordinatePair(
lat: mapCoordinate.latitude,
lon: mapCoordinate.longitude,
mapCoordinateSystem: mapCoordinateSystem
)
}
func coordinate(for mapCoordinateSystem: CoordinateConverter.MapCoordinateSystem) -> CLLocationCoordinate2D {
switch mapCoordinateSystem {
case .wgs84: return wgs84.coordinate
case .gcj02: return gcj02.coordinate
}
}
func matchesWGS84(latitude: Double, longitude: Double, tolerance: Double = 0.0001) -> Bool {
abs(wgs84.latitude - latitude) <= tolerance
&& abs(wgs84.longitude - longitude) <= tolerance
}
}
/// GCJ-02 () WGS-84
///
/// MKMapView GCJ-02 Apple WGS-84
/// App WGS-84
/// MapKit does not expose a public API for its active coordinate reference system.
/// The app resolves it with a bounded heuristic, then stores both WGS-84 and
/// GCJ-02 representations at each write boundary so replay does not convert again.
enum CoordinateConverter {
// (Krasovsky 1940)
private static let a = 6378245.0
private static let ee = 0.00669342162296594323
///
enum CoordType: String {
enum MapCoordinateSystem: String {
case gcj02 = "GCJ-02"
case wgs84 = "WGS-84"
}
// MARK: -
// MARK: -
struct TileTypeChange: Equatable {
let previous: CoordType
let current: CoordType
struct MapCoordinateSystemChange: Equatable {
let previous: MapCoordinateSystem
let current: MapCoordinateSystem
}
/// 使 GCJ-02
@MainActor static var currentTileType = CoordType.gcj02
@MainActor private static var lastTileCheck: Date?
@MainActor private static var tileCheckPending = false
/// Apple 使 GCJ-02
@MainActor static var currentMapCoordinateSystem = MapCoordinateSystem.gcj02
@MainActor private static var mapCoordinateSystemCheckPending = false
@MainActor private(set) static var initialMapCoordinateSystemUsedFallback = true
/// Uses one fixed, known reference result as a best-effort tile heuristic.
///
/// MapKit does not expose a supported public API for its active tile CRS. A
/// timeout, empty response, or search error is therefore not evidence for
/// WGS-84: those cases deliberately fall back to the domestic GCJ-02 mode.
/// Startup gate: only request realtime location if the public MapKit probe
/// cannot resolve a coordinate type. This guarantees a finite answer before
/// persisted map positions are replayed.
@MainActor
@discardableResult
static func detectTileByFixedGeocode(force: Bool = false) async -> TileTypeChange? {
guard !tileCheckPending else {
RuntimeLogger.info("APP", "坐标转换", "瓦片检测: 跳过(进行中)")
return nil
static func resolveInitialMapCoordinateSystem() async -> MapCoordinateSystem {
guard !mapCoordinateSystemCheckPending else {
RuntimeLogger.warning("APP", "坐标转换", "地图坐标标准检测已有请求进行中")
return currentMapCoordinateSystem
}
if !force, let last = lastTileCheck, -last.timeIntervalSinceNow < 30 {
RuntimeLogger.info("APP", "坐标转换", "瓦片检测: 跳过(缓存\(Int(-last.timeIntervalSinceNow))s)")
return nil
}
tileCheckPending = true
defer { tileCheckPending = false }
RuntimeLogger.info("APP", "坐标转换", "瓦片检测: 发起查询", details: [
"force": String(force),
"当前瓦片": currentTileType.rawValue
mapCoordinateSystemCheckPending = true
defer { mapCoordinateSystemCheckPending = false }
RuntimeLogger.info("APP", "坐标转换", "地图坐标标准检测开始", details: [
"锚点": "22.283819,114.158439",
"判定规则": "首条名称=林士街→GCJ-02,否则→WGS-84",
"缓存": "false"
])
let probeResult = await fixedGeocodeProbe()
guard !Task.isCancelled else { return nil }
lastTileCheck = Date()
let nextType: CoordType
switch probeResult {
let nextType: MapCoordinateSystem
switch await fixedAnchorCoordinateSystemProbe() {
case let .response(name, count):
nextType = name == "林士街" ? .gcj02 : .wgs84
RuntimeLogger.info("APP", "坐标转换", "瓦片检测完成 → \(nextType.rawValue)", details: [
initialMapCoordinateSystemUsedFallback = false
RuntimeLogger.info("APP", "坐标转换", "地图坐标标准检测获得明确结果", details: [
"首条名称": name,
"结果数": String(count),
"命中锚点": String(nextType == .gcj02)
"命中林士街": String(name == "林士街"),
"最终标准": nextType.rawValue,
"结果来源": "固定锚点"
])
case .unavailable(let reason), .timedOut(let reason):
RuntimeLogger.warning("APP", "坐标转换", "地图坐标标准检测不可用,开始实时定位兜底", details: [
"原因": reason
])
let realtime = await RealtimeLocationManager.shared.requestLocation()
if let realtime,
CLLocationCoordinate2DIsValid(realtime),
!usesGCJ02ServiceArea(lat: realtime.latitude, lon: realtime.longitude) {
nextType = .wgs84
} else {
nextType = .gcj02
}
initialMapCoordinateSystemUsedFallback = true
RuntimeLogger.warning("APP", "坐标转换", "地图坐标标准检测使用兜底结果", details: [
"探测失败原因": reason,
"实时定位存在": String(realtime != nil),
"最终标准": nextType.rawValue,
"结果来源": realtime == nil ? "默认国内标准" : "实时定位服务区域"
])
case .unavailable:
nextType = .gcj02
RuntimeLogger.warning("APP", "坐标转换", "瓦片检测无结果,回退 GCJ-02")
case .timedOut:
nextType = .gcj02
RuntimeLogger.warning("APP", "坐标转换", "瓦片检测超时,回退 GCJ-02")
case .cancelled:
return nil
initialMapCoordinateSystemUsedFallback = true
RuntimeLogger.warning("APP", "坐标转换", "地图坐标标准检测被取消,保留默认国内标准", details: [
"最终标准": currentMapCoordinateSystem.rawValue
])
return currentMapCoordinateSystem
}
guard nextType != currentTileType else { return nil }
let change = TileTypeChange(previous: currentTileType, current: nextType)
currentTileType = nextType
currentMapCoordinateSystem = nextType
RuntimeLogger.info("APP", "坐标转换", "地图坐标标准已确定,允许创建地图", details: [
"最终标准": nextType.rawValue,
"使用兜底": String(initialMapCoordinateSystemUsedFallback),
"缓存": "false"
])
return nextType
}
/// A user-requested realtime sample is WGS-84 and can correct a provisional
/// startup map coordinate system without altering persisted coordinate pairs.
@MainActor
static func correctMapCoordinateSystemUsingRealtime(_ coordinate: CLLocationCoordinate2D) -> MapCoordinateSystemChange? {
guard CLLocationCoordinate2DIsValid(coordinate) else { return nil }
guard initialMapCoordinateSystemUsedFallback else {
RuntimeLogger.info("APP", "坐标转换", "实时定位不覆盖固定锚点的明确检测结果", details: [
"当前标准": currentMapCoordinateSystem.rawValue
])
return nil
}
let next: MapCoordinateSystem = usesGCJ02ServiceArea(lat: coordinate.latitude, lon: coordinate.longitude) ? .gcj02 : .wgs84
guard next != currentMapCoordinateSystem else {
RuntimeLogger.info("APP", "坐标转换", "实时定位确认兜底地图坐标标准无需修正", details: [
"当前标准": currentMapCoordinateSystem.rawValue
])
return nil
}
let change = MapCoordinateSystemChange(previous: currentMapCoordinateSystem, current: next)
currentMapCoordinateSystem = next
RuntimeLogger.warning("APP", "坐标转换", "实时定位修正启动兜底地图坐标标准", details: [
"from": change.previous.rawValue,
"to": change.current.rawValue
])
return change
}
/// Reprojects a map-display coordinate after the tile heuristic changes.
/// The physical coordinate remains WGS-84 in between the two display modes.
static func reprojectDisplayCoordinate(
_ coordinate: CLLocationCoordinate2D,
from previous: CoordType,
to current: CoordType
) -> CLLocationCoordinate2D {
guard previous != current else { return coordinate }
let stored = storedCoordinate(lat: coordinate.latitude, lon: coordinate.longitude, tileType: previous)
let display = displayCoordinate(lat: stored.lat, lon: stored.lon, tileType: current)
return CLLocationCoordinate2D(latitude: display.lat, longitude: display.lon)
}
private static func fixedGeocodeProbe() async -> TileProbeResult {
private static func fixedAnchorCoordinateSystemProbe() async -> MapCoordinateSystemProbeResult {
let request = MKLocalSearch.Request()
request.naturalLanguageQuery = "22.283819, 114.158439"
let search = MKLocalSearch(request: request)
let resolver = TileProbeResolver()
let resolver = MapCoordinateSystemProbeResolver()
return await withTaskCancellationHandler(operation: {
await withCheckedContinuation { continuation in
let timeout = DispatchWorkItem {
search.cancel()
resolver.resolve(.timedOut)
resolver.resolve(.timedOut(reason: "固定锚点查询超过5秒"))
}
resolver.install(continuation, timeout: timeout)
guard !resolver.isResolved else { return }
search.start { response, error in
guard error == nil else {
resolver.resolve(.unavailable)
if let error {
let nsError = error as NSError
resolver.resolve(.unavailable(
reason: "\(nsError.domain)(\(nsError.code)): \(nsError.localizedDescription)"
))
return
}
resolver.resolve(.response(
name: response?.mapItems.first?.name ?? "",
count: response?.mapItems.count ?? 0
))
let items = response?.mapItems ?? []
guard let first = items.first,
let name = first.name?.trimmingCharacters(in: .whitespacesAndNewlines),
!name.isEmpty else {
resolver.resolve(.unavailable(reason: "固定锚点查询返回空结果"))
return
}
resolver.resolve(.response(name: name, count: items.count))
}
DispatchQueue.main.asyncAfter(deadline: .now() + 5, execute: timeout)
}
@@ -126,48 +204,30 @@ enum CoordinateConverter {
})
}
// MARK: -
/// WGS-84
@MainActor
static func toStored(lat: Double, lon: Double) -> (lat: Double, lon: Double) {
let stored = storedCoordinate(lat: lat, lon: lon, tileType: currentTileType)
RuntimeLogger.info("APP", "坐标转换", "地图坐标已规范为 WGS-84", details: [
"转换": String(currentTileType == .gcj02 && usesGCJ02ServiceArea(lat: lat, lon: lon))
])
return stored
}
/// WGS-84
@MainActor
static func toDisplay(lat: Double, lon: Double) -> (lat: Double, lon: Double) {
let display = displayCoordinate(lat: lat, lon: lon, tileType: currentTileType)
RuntimeLogger.info("APP", "坐标转换", "WGS-84 坐标已适配地图显示", details: [
"转换": String(currentTileType == .gcj02 && usesGCJ02ServiceArea(lat: lat, lon: lon))
])
return display
}
private static func storedCoordinate(
lat: Double,
lon: Double,
tileType: CoordType
) -> (lat: Double, lon: Double) {
guard tileType == .gcj02, usesGCJ02ServiceArea(lat: lat, lon: lon) else {
return (lat, lon)
/// Creates the complete persisted pair once at the map input boundary.
static func coordinatePair(lat: Double, lon: Double, mapCoordinateSystem: MapCoordinateSystem) -> CoordinatePair {
let raw = CoordinatePair.Value(latitude: lat, longitude: lon)
switch mapCoordinateSystem {
case .wgs84:
let gcj = wgs84ToGcj02(lat: lat, lon: lon)
return CoordinatePair(
wgs84: raw,
gcj02: .init(latitude: gcj.lat, longitude: gcj.lon)
)
case .gcj02:
let wgs = gcj02ToWgs84(lat: lat, lon: lon)
return CoordinatePair(
wgs84: .init(latitude: wgs.lat, longitude: wgs.lon),
gcj02: raw
)
}
return gcj02ToWgs84(lat: lat, lon: lon)
}
private static func displayCoordinate(
lat: Double,
lon: Double,
tileType: CoordType
) -> (lat: Double, lon: Double) {
guard tileType == .gcj02, usesGCJ02ServiceArea(lat: lat, lon: lon) else {
return (lat, lon)
}
return wgs84ToGcj02(lat: lat, lon: lon)
/// Legacy raw domestic map values were historically displayed as GCJ-02;
/// overseas values were WGS-84 and stay identity coordinates.
static func legacyCoordinatePair(lat: Double, lon: Double) -> CoordinatePair {
let type: MapCoordinateSystem = usesGCJ02ServiceArea(lat: lat, lon: lon) ? .gcj02 : .wgs84
return coordinatePair(lat: lat, lon: lon, mapCoordinateSystem: type)
}
// MARK: -
@@ -205,9 +265,8 @@ enum CoordinateConverter {
return (lat + d.lat, lon + d.lon)
}
/// AMap documents GCJ-02 for mainland China, Hong Kong, Macao and Taiwan;
/// its overseas world map uses WGS-84. Keep the bounds explicit so the
/// domestic fallback tile type never shifts an overseas coordinate.
/// Keep the GCJ-02 service region explicit. Outside this region, conversion
/// is identity so the domestic fallback can never shift an overseas value.
static func usesGCJ02ServiceArea(lat: Double, lon: Double) -> Bool {
let mainland = lat >= 0.8293 && lat <= 55.8271 && lon >= 72.004 && lon <= 137.8347
let hongKong = lat >= 22.13 && lat <= 22.57 && lon >= 113.82 && lon <= 114.45
@@ -249,17 +308,17 @@ enum CoordinateConverter {
}
}
private enum TileProbeResult {
private enum MapCoordinateSystemProbeResult {
case response(name: String, count: Int)
case unavailable
case timedOut
case unavailable(reason: String)
case timedOut(reason: String)
case cancelled
}
private final class TileProbeResolver: @unchecked Sendable {
private final class MapCoordinateSystemProbeResolver: @unchecked Sendable {
private let lock = NSLock()
private var result: TileProbeResult?
private var continuation: CheckedContinuation<TileProbeResult, Never>?
private var result: MapCoordinateSystemProbeResult?
private var continuation: CheckedContinuation<MapCoordinateSystemProbeResult, Never>?
private var timeout: DispatchWorkItem?
var isResolved: Bool {
@@ -269,7 +328,7 @@ private final class TileProbeResolver: @unchecked Sendable {
}
func install(
_ continuation: CheckedContinuation<TileProbeResult, Never>,
_ continuation: CheckedContinuation<MapCoordinateSystemProbeResult, Never>,
timeout: DispatchWorkItem
) {
lock.lock()
@@ -284,7 +343,7 @@ private final class TileProbeResolver: @unchecked Sendable {
lock.unlock()
}
func resolve(_ nextResult: TileProbeResult) {
func resolve(_ nextResult: MapCoordinateSystemProbeResult) {
lock.lock()
guard result == nil else {
lock.unlock()
+8 -15
View File
@@ -19,6 +19,14 @@ enum CoreBridgeError: LocalizedError {
}
enum CoreBridge {
static func isValidCertificateAuthority(_ authority: CertificateAuthority) -> Bool {
authority.certPEM.withCString { certificate in
authority.keyPEM.withCString { key in
wloccore_validateca(UnsafeMutablePointer(mutating: certificate), UnsafeMutablePointer(mutating: key)) != 0
}
}
}
static func generateCertificateAuthority() throws -> CertificateAuthority {
RuntimeLogger.info("APP", "Core.CA", "调用 Go Core 生成 CA")
let result = wloccore_generateca()
@@ -41,21 +49,6 @@ enum CoreBridge {
return String(cString: ptr)
}
/// wloc WiFi AP +
static func testWlocRequestData() -> Data {
guard let ptr = wloccore_testrequesthex() else { return Data([0x0a, 0x02, 0x08, 0x01]) }
defer { free(ptr) }
let hex = String(cString: ptr)
var data = Data()
var idx = hex.startIndex
while idx < hex.endIndex {
let end = hex.index(idx, offsetBy: 2, limitedBy: hex.endIndex) ?? hex.endIndex
if let b = UInt8(hex[idx..<end], radix: 16) { data.append(b) }
idx = end
}
return data
}
static func flushLogs(category: String) {
guard let pointer = wloccore_drainlogs() else { return }
defer { free(pointer) }
+105 -15
View File
@@ -1,21 +1,79 @@
import CoreLocation
import Foundation
struct FavoriteLocation: Codable, Identifiable, Equatable {
let id: UUID
var name: String
var latitude: Double
var longitude: Double
var coordinatePair: CoordinatePair
var accuracy: Int
var createdAt: Date
private var wasDecodedFromLegacyCoordinates = false
init(id: UUID = UUID(), name: String, latitude: Double, longitude: Double, accuracy: Int, createdAt: Date = Date()) {
/// WGS-84 compatibility accessor. WLOC consumers must use this value.
var latitude: Double { coordinatePair.wgs84.latitude }
var longitude: Double { coordinatePair.wgs84.longitude }
var isLegacyCoordinateRecord: Bool { wasDecodedFromLegacyCoordinates }
init(
id: UUID = UUID(),
name: String,
coordinatePair: CoordinatePair,
accuracy: Int,
createdAt: Date = Date()
) {
self.id = id
self.name = name
self.latitude = latitude
self.longitude = longitude
self.coordinatePair = coordinatePair
self.accuracy = accuracy
self.createdAt = createdAt
}
init(
id: UUID = UUID(),
name: String,
latitude: Double,
longitude: Double,
accuracy: Int,
createdAt: Date = Date(),
mapCoordinateSystem: CoordinateConverter.MapCoordinateSystem = .gcj02
) {
self.init(
id: id,
name: name,
coordinatePair: CoordinateConverter.coordinatePair(lat: latitude, lon: longitude, mapCoordinateSystem: mapCoordinateSystem),
accuracy: accuracy,
createdAt: createdAt
)
}
private enum CodingKeys: String, CodingKey {
case id, name, coordinatePair, accuracy, createdAt, latitude, longitude
}
init(from decoder: Decoder) throws {
let container = try decoder.container(keyedBy: CodingKeys.self)
id = try container.decode(UUID.self, forKey: .id)
name = try container.decode(String.self, forKey: .name)
accuracy = try container.decode(Int.self, forKey: .accuracy)
createdAt = try container.decode(Date.self, forKey: .createdAt)
if let pair = try container.decodeIfPresent(CoordinatePair.self, forKey: .coordinatePair) {
coordinatePair = pair
} else {
let latitude = try container.decode(Double.self, forKey: .latitude)
let longitude = try container.decode(Double.self, forKey: .longitude)
coordinatePair = CoordinateConverter.legacyCoordinatePair(lat: latitude, lon: longitude)
wasDecodedFromLegacyCoordinates = true
}
}
func encode(to encoder: Encoder) throws {
var container = encoder.container(keyedBy: CodingKeys.self)
try container.encode(id, forKey: .id)
try container.encode(name, forKey: .name)
try container.encode(coordinatePair, forKey: .coordinatePair)
try container.encode(accuracy, forKey: .accuracy)
try container.encode(createdAt, forKey: .createdAt)
}
}
struct MapConfiguration: Equatable {
@@ -52,18 +110,38 @@ final class FavoriteLocationStore: ObservableObject {
}
@discardableResult
func save(name: String, latitude: Double, longitude: Double, accuracy: Int) -> FavoriteLocation {
let favorite = FavoriteLocation(name: name, latitude: latitude, longitude: longitude, accuracy: accuracy)
//
func save(
name: String,
mapCoordinate: CLLocationCoordinate2D,
mapCoordinateSystem: CoordinateConverter.MapCoordinateSystem,
accuracy: Int
) -> FavoriteLocation {
let favorite = FavoriteLocation(
name: name,
coordinatePair: .init(mapCoordinate: mapCoordinate, mapCoordinateSystem: mapCoordinateSystem),
accuracy: accuracy
)
favorites.removeAll {
abs($0.latitude - favorite.latitude) < 0.000001 && abs($0.longitude - favorite.longitude) < 0.000001
abs($0.coordinatePair.wgs84.latitude - favorite.coordinatePair.wgs84.latitude) < 0.000001
&& abs($0.coordinatePair.wgs84.longitude - favorite.coordinatePair.wgs84.longitude) < 0.000001
}
favorites.insert(favorite, at: 0)
select(favorite.id)
persist()
persistIgnoringFailure()
return favorite
}
/// Compatibility entry point for callers that already own raw map values.
@discardableResult
func save(name: String, latitude: Double, longitude: Double, accuracy: Int, mapCoordinateSystem: CoordinateConverter.MapCoordinateSystem = .gcj02) -> FavoriteLocation {
save(
name: name,
mapCoordinate: .init(latitude: latitude, longitude: longitude),
mapCoordinateSystem: mapCoordinateSystem,
accuracy: accuracy
)
}
func select(_ id: UUID?) {
selectedFavoriteID = id
defaults.set(id?.uuidString, forKey: Keys.selectedID)
@@ -72,7 +150,7 @@ final class FavoriteLocationStore: ObservableObject {
func rename(_ id: UUID, to name: String) {
guard let idx = favorites.firstIndex(where: { $0.id == id }) else { return }
favorites[idx].name = name
persist()
persistIgnoringFailure()
}
func delete(_ favorite: FavoriteLocation) {
@@ -80,11 +158,23 @@ final class FavoriteLocationStore: ObservableObject {
if selectedFavoriteID == favorite.id {
select(favorites.first?.id)
}
persist()
persistIgnoringFailure()
}
private func persist() {
guard let data = try? JSONEncoder().encode(favorites) else { return }
defaults.set(data, forKey: Keys.favorites)
func migrateLegacyCoordinates() throws {
guard favorites.contains(where: \.isLegacyCoordinateRecord) else { return }
try persist()
}
private func persistIgnoringFailure() {
do {
try persist()
} catch {
RuntimeLogger.error("APP", "收藏", "保存收藏失败", error: error)
}
}
private func persist() throws {
defaults.set(try JSONEncoder().encode(favorites), forKey: Keys.favorites)
}
}
+43 -14
View File
@@ -2,6 +2,12 @@ import Network
import Foundation
import SystemConfiguration.CaptiveNetwork
enum WiFiChangeReason: String {
case reconnected = "Wi-Fi 恢复连接"
case interfaceChanged = "网络接口切换到 Wi-Fi"
case ssidChanged = "SSID 发生变化"
}
@MainActor
final class NetworkMonitor: ObservableObject {
static let shared = NetworkMonitor()
@@ -10,26 +16,44 @@ final class NetworkMonitor: ObservableObject {
@Published private(set) var isWiFiEnabled = true
@Published private(set) var currentSSID: String?
/// WiFi SSID
private var wifiChangeHandlers: [UUID: @MainActor () -> Void] = [:]
/// Wi-Fi SSID
private var wifiChangeHandlers: [UUID: @MainActor (WiFiChangeReason) -> Void] = [:]
private let monitor = NWPathMonitor()
private var ssidTimer: Timer?
private var wasSatisfied = true
private var wasWiFiEnabled = true
private var hasReceivedInitialPath = false
private var lastKnownSSID: String?
private init() {
let initialSSID = Self.fetchSSID()
currentSSID = initialSSID
lastKnownSSID = initialSSID
monitor.pathUpdateHandler = { [weak self] path in
let satisfied = path.status == .satisfied
let wifi = path.usesInterfaceType(.wifi)
Task { @MainActor in
guard let self else { return }
//
let reconnected = satisfied && !self.wasSatisfied && wifi
let reason: WiFiChangeReason?
if !self.hasReceivedInitialPath {
// NWPathMonitor 线
self.hasReceivedInitialPath = true
reason = nil
} else if satisfied && wifi && !self.wasSatisfied {
reason = .reconnected
} else if satisfied && wifi && !self.wasWiFiEnabled {
// Wi-Fi satisfied status
reason = .interfaceChanged
} else {
reason = nil
}
self.wasSatisfied = satisfied
self.wasWiFiEnabled = wifi
self.isSatisfied = satisfied
self.isWiFiEnabled = wifi
if reconnected {
self.notifyWiFiChanged()
if let reason {
self.notifyWiFiChanged(reason: reason)
}
}
}
@@ -37,11 +61,9 @@ final class NetworkMonitor: ObservableObject {
startSSIDPolling()
}
var isAirplaneMode: Bool { !isSatisfied }
/// Registers a Wi-Fi-change observer and returns a token that must be removed.
@discardableResult
func observeWiFiChanges(_ handler: @escaping @MainActor () -> Void) -> UUID {
func observeWiFiChanges(_ handler: @escaping @MainActor (WiFiChangeReason) -> Void) -> UUID {
let token = UUID()
wifiChangeHandlers[token] = handler
return token
@@ -51,9 +73,9 @@ final class NetworkMonitor: ObservableObject {
wifiChangeHandlers.removeValue(forKey: token)
}
private func notifyWiFiChanged() {
private func notifyWiFiChanged(reason: WiFiChangeReason) {
for handler in wifiChangeHandlers.values {
handler()
handler(reason)
}
}
@@ -62,9 +84,16 @@ final class NetworkMonitor: ObservableObject {
Task { @MainActor in
guard let self else { return }
let ssid = Self.fetchSSID()
if ssid != self.currentSSID, ssid != nil {
self.currentSSID = ssid
self.notifyWiFiChanged()
self.currentSSID = ssid
guard let ssid else { return }
guard let previousSSID = self.lastKnownSSID else {
// SSID 线 Wi-Fi
self.lastKnownSSID = ssid
return
}
if ssid != previousSSID {
self.lastKnownSSID = ssid
self.notifyWiFiChanged(reason: .ssidChanged)
}
}
}
+126 -4
View File
@@ -1,3 +1,4 @@
import CoreLocation
import Foundation
struct RuntimeLogEntry: Codable, Identifiable, Equatable {
@@ -49,11 +50,17 @@ enum RuntimeLogStore {
private static let decoder = JSONDecoder()
private static let encoder = JSONEncoder()
private static let maximumBytes: UInt64 = 1_500_000
static let retentionInterval: TimeInterval = 3 * 24 * 60 * 60
private static let pruningInterval: TimeInterval = 60 * 60
private static var lastPrunedAt: Date?
static func append(_ entry: RuntimeLogEntry) {
lock.lock()
defer { lock.unlock() }
do {
let now = Date()
try pruneExpiredLogsIfNeeded(now: now)
guard entry.timestamp >= retentionCutoff(now: now) else { return }
let url = try logURL(for: entry.source)
try rotateIfNeeded(url)
var data = try encoder.encode(entry)
@@ -75,7 +82,8 @@ enum RuntimeLogStore {
static func loadAll(limit: Int = 800) -> [RuntimeLogEntry] {
lock.lock()
defer { lock.unlock() }
let directory = AppGroup.containerURL.appendingPathComponent("RuntimeLogs", isDirectory: true)
let directory = logDirectory
try? pruneExpiredLogs(in: directory, now: Date())
guard let urls = try? FileManager.default.contentsOfDirectory(
at: directory,
includingPropertiesForKeys: nil
@@ -90,12 +98,12 @@ enum RuntimeLogStore {
static func clearAll() {
lock.lock()
defer { lock.unlock() }
let directory = AppGroup.containerURL.appendingPathComponent("RuntimeLogs", isDirectory: true)
try? FileManager.default.removeItem(at: directory)
try? FileManager.default.removeItem(at: logDirectory)
lastPrunedAt = nil
}
private static func logURL(for source: String) throws -> URL {
let directory = AppGroup.containerURL.appendingPathComponent("RuntimeLogs", isDirectory: true)
let directory = logDirectory
try FileManager.default.createDirectory(at: directory, withIntermediateDirectories: true)
let process = (Bundle.main.bundleIdentifier ?? "unknown-process")
.replacingOccurrences(of: "/", with: "-")
@@ -103,6 +111,56 @@ enum RuntimeLogStore {
return directory.appendingPathComponent("\(process)-\(safeSource).jsonl")
}
private static var logDirectory: URL {
AppGroup.containerURL.appendingPathComponent("RuntimeLogs", isDirectory: true)
}
static func retentionCutoff(now: Date) -> Date {
now.addingTimeInterval(-retentionInterval)
}
private static func pruneExpiredLogsIfNeeded(now: Date) throws {
if let lastPrunedAt,
now >= lastPrunedAt,
now.timeIntervalSince(lastPrunedAt) < pruningInterval {
return
}
try pruneExpiredLogs(in: logDirectory, now: now)
}
private static func pruneExpiredLogs(in directory: URL, now: Date) throws {
guard FileManager.default.fileExists(atPath: directory.path) else {
lastPrunedAt = now
return
}
let urls = try FileManager.default.contentsOfDirectory(
at: directory,
includingPropertiesForKeys: nil
).filter { $0.pathExtension == "jsonl" }
for url in urls {
let entries = readEntries(url)
let retained = retainedEntries(entries, now: now)
guard retained.count != entries.count else { continue }
guard !retained.isEmpty else {
try FileManager.default.removeItem(at: url)
continue
}
var data = Data()
for entry in retained {
data.append(try encoder.encode(entry))
data.append(0x0A)
}
try data.write(to: url, options: .atomic)
}
lastPrunedAt = now
}
static func retainedEntries(_ entries: [RuntimeLogEntry], now: Date) -> [RuntimeLogEntry] {
let cutoff = retentionCutoff(now: now)
return entries.filter { $0.timestamp >= cutoff }
}
private static func rotateIfNeeded(_ url: URL) throws {
guard let attributes = try? FileManager.default.attributesOfItem(atPath: url.path),
let size = attributes[.size] as? NSNumber,
@@ -162,3 +220,67 @@ enum RuntimeLogger {
))
}
}
/// Realtime-location diagnostics keep precise coordinates out of the persisted,
/// exportable log. Exact values are printed only by DEBUG builds for local Xcode
/// debugging.
enum RealtimeLocationTrace {
static func log(
_ message: String,
location: CLLocation,
details: [String: String] = [:],
level: RuntimeLogEntry.Level = .info
) {
var metadata = details
metadata["样本时间"] = ISO8601DateFormatter().string(from: location.timestamp)
metadata["样本年龄秒"] = format(Date().timeIntervalSince(location.timestamp))
metadata["水平精度米"] = format(location.horizontalAccuracy)
metadata["垂直精度米"] = format(location.verticalAccuracy)
metadata["海拔米"] = format(location.altitude)
metadata["坐标有效"] = String(CLLocationCoordinate2DIsValid(location.coordinate))
persist(level, message: message, details: metadata)
debugCoordinate(message, location: location, details: metadata)
}
static func coordinate(
_ message: String,
coordinate: CLLocationCoordinate2D,
details: [String: String] = [:]
) {
#if DEBUG
let suffix = details.sorted { $0.key < $1.key }
.map { "\($0.key)=\($0.value)" }
.joined(separator: " ")
let latitude = String(format: "%.8f", coordinate.latitude)
let longitude = String(format: "%.8f", coordinate.longitude)
let metadata = suffix.isEmpty ? "" : " \(suffix)"
print("[RealtimeLocation] \(message) latitude=\(latitude) longitude=\(longitude)\(metadata)")
#endif
}
private static func persist(
_ level: RuntimeLogEntry.Level,
message: String,
details: [String: String]
) {
switch level {
case .debug: RuntimeLogger.debug("APP", "实时定位", message, details: details)
case .info: RuntimeLogger.info("APP", "实时定位", message, details: details)
case .warning: RuntimeLogger.warning("APP", "实时定位", message, details: details)
case .error: RuntimeLogger.error("APP", "实时定位", message, details: details)
}
}
private static func debugCoordinate(
_ message: String,
location: CLLocation,
details: [String: String]
) {
coordinate(message, coordinate: location.coordinate, details: details)
}
private static func format(_ value: Double) -> String {
guard value.isFinite else { return String(value) }
return String(format: "%.3f", value)
}
}
+14 -1
View File
@@ -31,9 +31,22 @@ enum VerificationResult: Equatable, Identifiable {
switch self {
case .success: return nil
case .proxyNotRunning, .verificationInProgress, .verificationSuperseded: return nil
case .certNotTrusted: return .certificate
case .certNotTrusted: return nil
case .wifiProxyNotConfigured: return .proxySetup
case .coordinateWriteFailed, .patchFailed: return .rewriteFailed
}
}
/// Wi-Fi
///
var wifiChangeReminderTipKind: TipKind? {
switch self {
case .proxyNotRunning:
return .proxySetup
case .certNotTrusted, .verificationInProgress, .verificationSuperseded:
return nil
default:
return tipKind
}
}
}
@@ -2,16 +2,139 @@ import XCTest
@testable import PaopaoLocationSpoofer
final class CertificateAuthorityStoreTests: XCTestCase {
func testEnsureCreatesOnceAndThenReusesExistingPair() throws {
let directory = FileManager.default.temporaryDirectory.appendingPathComponent(UUID().uuidString)
defer { try? FileManager.default.removeItem(at: directory) }
private let validAuthority = CertificateAuthority(certPEM: "valid-cert", keyPEM: "valid-key")
func testEnsureCreatesOnceThenReusesValidKeychainPair() throws {
let keychain = InMemoryCertificateAuthorityKeychain()
var generations = 0
let store = CertificateAuthorityStore(directory: directory) {
let store = makeStore(keychain: keychain) {
generations += 1
return CertificateAuthority(certPEM: "cert", keyPEM: "key")
return self.validAuthority
}
XCTAssertEqual(try store.ensure(), CertificateAuthority(certPEM: "cert", keyPEM: "key"))
XCTAssertEqual(try store.ensure(), CertificateAuthority(certPEM: "cert", keyPEM: "key"))
XCTAssertEqual(try store.ensure(), validAuthority)
XCTAssertEqual(try store.ensure(), validAuthority)
XCTAssertEqual(keychain.stored, validAuthority)
XCTAssertEqual(generations, 1)
}
func testEnsureMigratesValidLegacyPairThenDeletesLegacyFiles() throws {
let directory = try makeLegacyDirectory(authority: validAuthority)
defer { try? FileManager.default.removeItem(at: directory) }
let keychain = InMemoryCertificateAuthorityKeychain()
let store = makeStore(directory: directory, keychain: keychain) {
XCTFail("A valid legacy pair must be migrated instead of regenerated")
return self.validAuthority
}
XCTAssertEqual(try store.ensure(), validAuthority)
XCTAssertEqual(keychain.stored, validAuthority)
XCTAssertFalse(FileManager.default.fileExists(atPath: directory.appendingPathComponent("ca-cert.pem").path))
XCTAssertFalse(FileManager.default.fileExists(atPath: directory.appendingPathComponent("ca-key.pem").path))
}
func testFailedKeychainMigrationPreservesLegacyFiles() throws {
let directory = try makeLegacyDirectory(authority: validAuthority)
defer { try? FileManager.default.removeItem(at: directory) }
let keychain = InMemoryCertificateAuthorityKeychain()
keychain.shouldFailSave = true
let store = makeStore(directory: directory, keychain: keychain) { self.validAuthority }
XCTAssertThrowsError(try store.ensure())
XCTAssertTrue(FileManager.default.fileExists(atPath: directory.appendingPathComponent("ca-cert.pem").path))
XCTAssertTrue(FileManager.default.fileExists(atPath: directory.appendingPathComponent("ca-key.pem").path))
}
func testInvalidKeychainPairFallsBackToLegacyPair() throws {
let directory = try makeLegacyDirectory(authority: validAuthority)
defer { try? FileManager.default.removeItem(at: directory) }
let keychain = InMemoryCertificateAuthorityKeychain()
keychain.stored = CertificateAuthority(certPEM: "invalid-cert", keyPEM: "invalid-key")
let store = makeStore(directory: directory, keychain: keychain) { self.validAuthority }
XCTAssertEqual(try store.ensure(), validAuthority)
XCTAssertEqual(keychain.stored, validAuthority)
}
func testValidKeychainPairRetriesCleanupOfLegacyFiles() throws {
let directory = try makeLegacyDirectory(authority: validAuthority)
defer { try? FileManager.default.removeItem(at: directory) }
let keychain = InMemoryCertificateAuthorityKeychain()
keychain.stored = validAuthority
let store = makeStore(directory: directory, keychain: keychain) {
XCTFail("A valid Keychain pair must not be regenerated")
return self.validAuthority
}
XCTAssertEqual(try store.ensure(), validAuthority)
XCTAssertFalse(FileManager.default.fileExists(atPath: directory.appendingPathComponent("ca-cert.pem").path))
XCTAssertFalse(FileManager.default.fileExists(atPath: directory.appendingPathComponent("ca-key.pem").path))
}
func testInvalidLegacyFilesAreRemovedOnlyAfterReplacementIsPersisted() throws {
let invalidAuthority = CertificateAuthority(certPEM: "invalid-cert", keyPEM: "invalid-key")
let directory = try makeLegacyDirectory(authority: invalidAuthority)
defer { try? FileManager.default.removeItem(at: directory) }
let keychain = InMemoryCertificateAuthorityKeychain()
let store = makeStore(directory: directory, keychain: keychain) { self.validAuthority }
XCTAssertEqual(try store.ensure(), validAuthority)
XCTAssertEqual(keychain.stored, validAuthority)
XCTAssertFalse(FileManager.default.fileExists(atPath: directory.appendingPathComponent("ca-cert.pem").path))
XCTAssertFalse(FileManager.default.fileExists(atPath: directory.appendingPathComponent("ca-key.pem").path))
}
func testFailedReplacementPersistencePreservesInvalidLegacyFiles() throws {
let invalidAuthority = CertificateAuthority(certPEM: "invalid-cert", keyPEM: "invalid-key")
let directory = try makeLegacyDirectory(authority: invalidAuthority)
defer { try? FileManager.default.removeItem(at: directory) }
let keychain = InMemoryCertificateAuthorityKeychain()
keychain.shouldFailSave = true
let store = makeStore(directory: directory, keychain: keychain) { self.validAuthority }
XCTAssertThrowsError(try store.ensure())
XCTAssertTrue(FileManager.default.fileExists(atPath: directory.appendingPathComponent("ca-cert.pem").path))
XCTAssertTrue(FileManager.default.fileExists(atPath: directory.appendingPathComponent("ca-key.pem").path))
}
private func makeStore(
directory: URL = FileManager.default.temporaryDirectory.appendingPathComponent(UUID().uuidString),
keychain: InMemoryCertificateAuthorityKeychain,
generator: @escaping () throws -> CertificateAuthority
) -> CertificateAuthorityStore {
CertificateAuthorityStore(
directory: directory,
keychain: keychain,
generator: generator,
validator: { $0 == self.validAuthority }
)
}
private func makeLegacyDirectory(authority: CertificateAuthority) throws -> URL {
let directory = FileManager.default.temporaryDirectory.appendingPathComponent(UUID().uuidString)
try FileManager.default.createDirectory(at: directory, withIntermediateDirectories: true)
try authority.certPEM.write(to: directory.appendingPathComponent("ca-cert.pem"), atomically: true, encoding: .utf8)
try authority.keyPEM.write(to: directory.appendingPathComponent("ca-key.pem"), atomically: true, encoding: .utf8)
return directory
}
}
private enum CertificateAuthorityStoreTestError: Error {
case saveFailed
}
private final class InMemoryCertificateAuthorityKeychain: CertificateAuthorityKeychain {
var stored: CertificateAuthority?
var shouldFailSave = false
func load() throws -> CertificateAuthority? { stored }
func save(_ authority: CertificateAuthority) throws {
guard !shouldFailSave else { throw CertificateAuthorityStoreTestError.saveFailed }
stored = authority
}
func remove() throws {
stored = nil
}
}
@@ -1,4 +1,5 @@
import XCTest
import CoreLocation
@testable import PaopaoLocationSpoofer
final class FavoriteLocationStoreTests: XCTestCase {
@@ -7,14 +8,92 @@ final class FavoriteLocationStoreTests: XCTestCase {
let defaults = UserDefaults(suiteName: suite)!
defer { defaults.removePersistentDomain(forName: suite) }
let store = FavoriteLocationStore(defaults: defaults)
let favorite = store.save(name: "深圳湾", latitude: 22.494, longitude: 113.951, accuracy: 20)
let favorite = store.save(
name: "深圳湾",
mapCoordinate: .init(latitude: 22.494, longitude: 113.951),
mapCoordinateSystem: .gcj02,
accuracy: 20
)
XCTAssertEqual(store.selectedFavoriteID, favorite.id)
XCTAssertEqual(FavoriteLocationStore(defaults: defaults).selectedFavorite?.name, "深圳湾")
}
func testFavoriteStoresBothFormsAndSelectsMatchingPairWithoutReadConversion() {
let suite = "FavoriteLocationStoreTests.\(UUID().uuidString)"
let defaults = UserDefaults(suiteName: suite)!
defer { defaults.removePersistentDomain(forName: suite) }
let wgs = CLLocationCoordinate2D(latitude: 22.491_438, longitude: 113.945_702)
let favorite = FavoriteLocation(
name: "深圳湾",
coordinatePair: .init(mapCoordinate: wgs, mapCoordinateSystem: .wgs84),
accuracy: 20
)
XCTAssertEqual(favorite.coordinatePair.coordinate(for: .wgs84).latitude, wgs.latitude, accuracy: 0.000_000_1)
XCTAssertEqual(favorite.coordinatePair.coordinate(for: .wgs84).longitude, wgs.longitude, accuracy: 0.000_000_1)
XCTAssertNotEqual(favorite.coordinatePair.gcj02.latitude, wgs.latitude)
XCTAssertNotEqual(favorite.coordinatePair.gcj02.longitude, wgs.longitude)
}
func testLegacyFavoriteIsUpgradedAsDomesticGCJAndRewritten() throws {
let suite = "FavoriteLocationStoreTests.\(UUID().uuidString)"
let defaults = UserDefaults(suiteName: suite)!
defer { defaults.removePersistentDomain(forName: suite) }
let id = UUID()
let createdAt = Date(timeIntervalSince1970: 1_700_000_000)
let payload = LegacyFavoritePayload(
id: id,
name: "旧收藏",
latitude: 22.544_577,
longitude: 113.941_14,
accuracy: 25,
createdAt: createdAt
)
defaults.set(try JSONEncoder().encode([payload]), forKey: "favorite_locations")
let store = FavoriteLocationStore(defaults: defaults)
XCTAssertTrue(store.favorites[0].isLegacyCoordinateRecord)
XCTAssertEqual(store.favorites[0].coordinatePair.gcj02.latitude, payload.latitude, accuracy: 0.000_000_1)
XCTAssertNotEqual(store.favorites[0].coordinatePair.wgs84.longitude, payload.longitude)
try store.migrateLegacyCoordinates()
let reloaded = FavoriteLocationStore(defaults: defaults)
XCTAssertEqual(reloaded.favorites[0].id, id)
XCTAssertEqual(reloaded.favorites[0].name, "旧收藏")
XCTAssertFalse(reloaded.favorites[0].isLegacyCoordinateRecord)
}
func testOverseasPairUsesIdentityConversion() {
let eiffelTower = CoordinateConverter.coordinatePair(lat: 48.858_37, lon: 2.294_481, mapCoordinateSystem: .wgs84)
XCTAssertEqual(eiffelTower.wgs84.latitude, eiffelTower.gcj02.latitude, accuracy: 0.000_000_1)
XCTAssertEqual(eiffelTower.wgs84.longitude, eiffelTower.gcj02.longitude, accuracy: 0.000_000_1)
}
func testDomesticMapCoordinateMatchesPreviouslyActivatedWGS84Value() {
let gcj = CLLocationCoordinate2D(latitude: 22.544_577, longitude: 113.941_14)
let pair = CoordinatePair(mapCoordinate: gcj, mapCoordinateSystem: .gcj02)
XCTAssertTrue(pair.matchesWGS84(
latitude: pair.wgs84.latitude,
longitude: pair.wgs84.longitude
))
XCTAssertFalse(pair.matchesWGS84(latitude: gcj.latitude, longitude: gcj.longitude))
}
func testMapConfigurationNeverRequestsRealUserLocation() {
XCTAssertFalse(MapConfiguration.default.showsUserLocation)
XCTAssertFalse(MapConfiguration.default.allowsCurrentLocationRequest)
}
}
private struct LegacyFavoritePayload: Encodable {
let id: UUID
let name: String
let latitude: Double
let longitude: Double
let accuracy: Int
let createdAt: Date
}
@@ -3,130 +3,85 @@ import XCTest
@MainActor
final class LocationActionCoordinatorTests: XCTestCase {
func testApplyChecksTrustThenConnectsAndSendsCoordinates() async {
let favorite = FavoriteLocation(name: "深圳湾", latitude: 22.494, longitude: 113.951, accuracy: 20)
let coordinator = LocationActionCoordinator()
func testApplyStartsProxyAndWritesTheFavoriteWGS84Pair() async {
let proxy = FakeLocationActionProxy()
let settings = FakeLocationActionSettingsStore()
let coordinator = LocationActionCoordinator(proxy: proxy, settings: settings)
let favorite = FavoriteLocation(
name: "深圳湾",
latitude: 22.494,
longitude: 113.951,
accuracy: 20,
mapCoordinateSystem: .gcj02
)
let applied = await coordinator.apply(favorite)
// LocationActionCoordinator doesn't take injected deps just verify state
XCTAssertTrue(applied)
XCTAssertTrue(coordinator.virtualLocationEnabled)
XCTAssertTrue(proxy.isRunning)
XCTAssertEqual(proxy.lastCoordinates?.latitude, favorite.coordinatePair.wgs84.latitude)
XCTAssertEqual(proxy.lastCoordinates?.longitude, favorite.coordinatePair.wgs84.longitude)
XCTAssertEqual(settings.saved?.latitude, favorite.coordinatePair.wgs84.latitude)
XCTAssertEqual(settings.saved?.longitude, favorite.coordinatePair.wgs84.longitude)
XCTAssertTrue(settings.saved?.enabled == true)
}
func testClearDoesNotConnectAnInactiveProxy() async {
let coordinator = LocationActionCoordinator()
func testClearWritesDisabledCoordinatesAndClearsSettings() {
let proxy = FakeLocationActionProxy(isRunning: true)
let settings = FakeLocationActionSettingsStore()
let coordinator = LocationActionCoordinator(proxy: proxy, settings: settings)
coordinator.clear()
XCTAssertEqual(proxy.lastCoordinates?.latitude, 0)
XCTAssertEqual(proxy.lastCoordinates?.longitude, 0)
XCTAssertFalse(proxy.lastCoordinates?.enabled ?? true)
XCTAssertFalse(settings.saved?.enabled ?? true)
XCTAssertFalse(coordinator.virtualLocationEnabled)
}
func testBusyApplyRejectsASecondRequest() async {
let coordinator = LocationActionCoordinator()
func testApplyVerifiedRejectsInactiveProxyWithoutWritingCoordinates() {
let proxy = FakeLocationActionProxy()
let settings = FakeLocationActionSettingsStore()
let coordinator = LocationActionCoordinator(proxy: proxy, settings: settings)
let favorite = FavoriteLocation(name: "深圳湾", latitude: 22.494, longitude: 113.951, accuracy: 20)
// The coordinator serializes on MainActor. A completed first request may
// legitimately make the next request a no-op rather than a concurrent rejection.
let firstApplied = await coordinator.apply(favorite)
let secondApplied = await coordinator.apply(favorite)
XCTAssertTrue(firstApplied)
XCTAssertTrue(secondApplied)
XCTAssertFalse(coordinator.applyVerified(favorite))
XCTAssertNil(proxy.lastCoordinates)
XCTAssertNil(settings.saved)
}
}
@MainActor
private final class FakeTrust {
var canModify: Bool
let events: EventLog
init(canModify: Bool, events: EventLog) {
self.canModify = canModify
self.events = events
private final class FakeLocationActionProxy: LocationActionProxying {
struct Coordinates: Equatable {
let latitude: Double
let longitude: Double
let enabled: Bool
let accuracy: Int
}
func refreshTrust() async {
events.append("trust.refresh")
var isRunning: Bool
private(set) var lastCoordinates: Coordinates?
init(isRunning: Bool = false) {
self.isRunning = isRunning
}
func start() async throws {
isRunning = true
}
func setCoords(lat: Double, lon: Double, enabled: Bool, accuracy: Int) -> UInt64 {
lastCoordinates = Coordinates(latitude: lat, longitude: lon, enabled: enabled, accuracy: accuracy)
return 1
}
}
@MainActor
private final class FakeProxy {
let activeForClear: Bool
let events: EventLog
let connectGate: AsyncGate?
init(activeForClear: Bool, events: EventLog, connectGate: AsyncGate? = nil) {
self.activeForClear = activeForClear
self.events = events
self.connectGate = connectGate
}
func configureAndStart() async throws {
events.append("proxy.connect")
await connectGate?.blockUntilOpened()
}
func stopAndWait() async throws {
events.append("proxy.stop")
}
func send(_ message: String) async throws -> String {
events.append("proxy.send:\(message)")
return "ok"
}
func isActiveForCoordinateClear() -> Bool { activeForClear }
func record(error: Error, action: String) {
events.append("proxy.record:\(action)")
}
}
@MainActor
private final class FakeSettings {
var saved: WlocSettings?
let events: EventLog
init(events: EventLog) { self.events = events }
private final class FakeLocationActionSettingsStore: LocationActionSettingsStoring {
private(set) var saved: WlocSettings?
func load() -> WlocSettings? { saved }
func save(_ settings: WlocSettings) {
saved = settings
events.append("settings.save.\(settings.enabled ? "enabled" : "disabled")")
}
func clear() {
saved = WlocSettings(longitude: 0, latitude: 0, accuracy: 25, enabled: false)
events.append("settings.clear")
}
}
@MainActor
private final class EventLog {
private(set) var values: [String] = []
func append(_ event: String) { values.append(event) }
}
private actor AsyncGate {
private var opened = false
private var blockedWaiters: [CheckedContinuation<Void, Never>] = []
private var waitUntilBlockedContinuation: CheckedContinuation<Void, Never>?
func blockUntilOpened() async {
guard !opened else { return }
waitUntilBlockedContinuation?.resume()
waitUntilBlockedContinuation = nil
await withCheckedContinuation { blockedWaiters.append($0) }
}
func waitUntilBlocked() async {
guard !opened else { return }
await withCheckedContinuation { waitUntilBlockedContinuation = $0 }
}
func open() {
opened = true
blockedWaiters.forEach { $0.resume() }
blockedWaiters.removeAll()
}
func save(_ settings: WlocSettings) { saved = settings }
func clear() { saved = WlocSettings(longitude: 0, latitude: 0, accuracy: 25, enabled: false) }
}
@@ -185,20 +185,20 @@ final class MapLocationStateTests: XCTestCase {
XCTAssertNil(state.cameraCommand, "realtime updates preserve the current camera unless the caller explicitly focuses it")
}
func testTileReprojectionPreservesSelectionIdentityAndIssuesFocus() {
func testMapCoordinateSystemReprojectionPreservesSelectionIdentityAndIssuesFocus() {
let state = MapLocationState(initialCoordinate: initial)
let favoriteID = UUID()
state.selectFavorite(.init(latitude: 22.55, longitude: 113.95), id: favoriteID, name: "测试收藏")
let revision = state.selection.revision
state.reprojectSelectionForTileChange(.init(latitude: 22.54, longitude: 113.94))
state.reprojectSelectionForMapCoordinateSystemChange(.init(latitude: 22.54, longitude: 113.94))
XCTAssertEqual(state.selection.source, .favorite(favoriteID))
XCTAssertEqual(state.selection.explicitName, "测试收藏")
XCTAssertEqual(state.selection.revision, revision)
XCTAssertEqual(state.selection.coordinate.latitude, 22.54, accuracy: 0.000001)
guard case let .focus(coordinate, distanceMeters) = state.cameraCommand?.kind else {
return XCTFail("Expected a focus command after tile reprojection")
return XCTFail("Expected a focus command after map coordinate-system reprojection")
}
XCTAssertEqual(coordinate.latitude, 22.54, accuracy: 0.000001)
XCTAssertEqual(distanceMeters, state.viewportMeters)
@@ -221,4 +221,71 @@ final class MapLocationStateTests: XCTestCase {
XCTAssertEqual(MapZoomMath.viewportScaleLabel(distanceMeters: 2_500), "2.5 km")
XCTAssertEqual(MapZoomMath.viewportScaleLabel(distanceMeters: 126_000), "126 km")
}
func testLastCoordinateStoreKeepsBothFormsAndZoom() {
let suite = "MapLocationStateTests.\(UUID().uuidString)"
let defaults = UserDefaults(suiteName: suite)!
defer { defaults.removePersistentDomain(forName: suite) }
let gcj = CLLocationCoordinate2D(latitude: 22.544_577, longitude: 113.941_14)
LastCoordinateStore.save(mapCoordinate: gcj, mapCoordinateSystem: .gcj02, zoomMeters: 1_250, defaults: defaults)
guard let restored = LastCoordinateStore.load(defaults: defaults) else {
return XCTFail("Expected a persisted current map pin")
}
XCTAssertEqual(restored.coordinate(for: .gcj02).latitude, gcj.latitude, accuracy: 0.000_000_1)
XCTAssertEqual(restored.coordinate(for: .gcj02).longitude, gcj.longitude, accuracy: 0.000_000_1)
XCTAssertNotEqual(restored.coordinate(for: .wgs84).longitude, gcj.longitude)
XCTAssertEqual(restored.zoomMeters, 1_250)
}
func testCoordinateMigrationUpgradesLegacyCurrentPinAndFavoritesBeforeSettingVersion() throws {
let suite = "MapLocationStateTests.\(UUID().uuidString)"
let legacySuite = "MapLocationStateTests.Legacy.\(UUID().uuidString)"
let defaults = UserDefaults(suiteName: suite)!
let legacyDefaults = UserDefaults(suiteName: legacySuite)!
defer { defaults.removePersistentDomain(forName: suite) }
defer { legacyDefaults.removePersistentDomain(forName: legacySuite) }
let firstID = UUID()
let secondID = UUID()
let records = [
CoordinateMigrationLegacyFavorite(id: firstID, name: "第一个", latitude: 22.544_577, longitude: 113.941_14, accuracy: 15, createdAt: .distantPast),
CoordinateMigrationLegacyFavorite(id: secondID, name: "海外", latitude: 48.858_37, longitude: 2.294_481, accuracy: 30, createdAt: .distantFuture),
]
legacyDefaults.set(22.544_577, forKey: "lastMapLat")
legacyDefaults.set(113.941_14, forKey: "lastMapLon")
legacyDefaults.set(2_000.0, forKey: "mapViewportMeters")
defaults.set(try JSONEncoder().encode(records), forKey: "favorite_locations")
defaults.set(secondID.uuidString, forKey: "favorite_locations_selected_id")
let favorites = FavoriteLocationStore(defaults: defaults)
try CoordinateStorageMigration.migrateIfNeeded(
favorites: favorites,
defaults: defaults,
legacyDefaults: legacyDefaults
)
XCTAssertEqual(defaults.integer(forKey: "coordinateStorageMigrationVersion"), CoordinateStorageMigration.currentVersion)
guard let current = LastCoordinateStore.load(defaults: defaults) else {
return XCTFail("Expected migrated current map pin")
}
XCTAssertEqual(current.coordinate(for: .gcj02).latitude, 22.544_577, accuracy: 0.000_000_1)
XCTAssertEqual(current.zoomMeters, 2_000)
let reloaded = FavoriteLocationStore(defaults: defaults)
XCTAssertEqual(reloaded.favorites.map(\.id), [firstID, secondID])
XCTAssertEqual(reloaded.favorites.map(\.name), ["第一个", "海外"])
XCTAssertEqual(reloaded.selectedFavoriteID, secondID)
XCTAssertFalse(reloaded.favorites.contains(where: \.isLegacyCoordinateRecord))
XCTAssertEqual(reloaded.favorites[1].coordinatePair.wgs84.latitude, reloaded.favorites[1].coordinatePair.gcj02.latitude, accuracy: 0.000_000_1)
}
}
private struct CoordinateMigrationLegacyFavorite: Encodable {
let id: UUID
let name: String
let latitude: Double
let longitude: Double
let accuracy: Int
let createdAt: Date
}
@@ -0,0 +1,26 @@
import XCTest
@testable import PaopaoLocationSpoofer
final class RuntimeLogStoreTests: XCTestCase {
func testRetentionCutoffIsExactlyThreeDays() {
let now = Date(timeIntervalSince1970: 1_800_000_000)
XCTAssertEqual(
RuntimeLogStore.retentionCutoff(now: now),
now.addingTimeInterval(-3 * 24 * 60 * 60)
)
}
func testRetentionKeepsCutoffAndNewerEntriesOnly() {
let now = Date(timeIntervalSince1970: 1_800_000_000)
let cutoff = RuntimeLogStore.retentionCutoff(now: now)
let expired = RuntimeLogEntry(timestamp: cutoff.addingTimeInterval(-0.001), source: "APP", level: .info, category: "Test", message: "expired")
let boundary = RuntimeLogEntry(timestamp: cutoff, source: "APP", level: .info, category: "Test", message: "boundary")
let recent = RuntimeLogEntry(timestamp: now, source: "CORE", level: .warning, category: "Proxy", message: "recent")
XCTAssertEqual(
RuntimeLogStore.retainedEntries([expired, boundary, recent], now: now),
[boundary, recent]
)
}
}
@@ -0,0 +1,48 @@
import XCTest
@testable import PaopaoLocationSpoofer
@MainActor
final class SetupCoordinatorTests: XCTestCase {
func testSuccessfulVerificationDismissesSetup() {
let coordinator = SetupCoordinator()
coordinator.requestSetup()
coordinator.applyVerificationResult(.success)
XCTAssertEqual(coordinator.trustState, .trusted)
XCTAssertFalse(coordinator.needsSetup)
}
func testCertificateFailureRoutesDirectlyToCertificateStep() {
let coordinator = SetupCoordinator()
coordinator.applyVerificationResult(.certNotTrusted)
XCTAssertEqual(coordinator.trustState, .unavailable)
XCTAssertTrue(coordinator.needsSetup)
XCTAssertEqual(coordinator.setupStep, .cert)
}
func testProxyFailureRoutesBackToProxyStep() {
let coordinator = SetupCoordinator()
coordinator.applyVerificationResult(.certNotTrusted)
coordinator.applyVerificationResult(.wifiProxyNotConfigured)
XCTAssertTrue(coordinator.needsSetup)
XCTAssertEqual(coordinator.setupStep, .proxy)
}
func testWiFiChangeMapsLocalProxyStartFailureToProxyReminder() {
XCTAssertEqual(VerificationResult.proxyNotRunning.wifiChangeReminderTipKind, .proxySetup)
}
func testWiFiChangeDoesNotPresentFailureForConcurrentVerification() {
XCTAssertNil(VerificationResult.verificationInProgress.wifiChangeReminderTipKind)
}
func testWiFiChangeCertificateFailureDoesNotUseGenericReminder() {
XCTAssertNil(VerificationResult.certNotTrusted.wifiChangeReminderTipKind)
XCTAssertNil(VerificationResult.certNotTrusted.tipKind)
}
}
@@ -0,0 +1,85 @@
import XCTest
@testable import PaopaoLocationSpoofer
final class VirtualLocationTipPreferencesTests: XCTestCase {
private var suites: [String] = []
override func tearDown() {
for suite in suites {
UserDefaults.standard.removePersistentDomain(forName: suite)
}
suites.removeAll()
super.tearDown()
}
func testSuppressionAppearsOnlyAfterThirdSuccessfulOperation() {
let defaults = makeDefaults()
let legacyDefaults = makeDefaults()
let preferences = VirtualLocationTipPreferences(
defaults: defaults,
legacyDefaults: legacyDefaults
)
XCTAssertEqual(preferences.recordSuccessfulOperation(.activation), 1)
XCTAssertFalse(preferences.canSuppress(.activation))
XCTAssertEqual(preferences.recordSuccessfulOperation(.activation), 2)
XCTAssertFalse(preferences.canSuppress(.activation))
XCTAssertEqual(preferences.recordSuccessfulOperation(.activation), 3)
XCTAssertTrue(preferences.canSuppress(.activation))
}
func testActivationAndDeactivationCountersAndSuppressionAreIndependent() {
let defaults = makeDefaults()
let preferences = VirtualLocationTipPreferences(
defaults: defaults,
legacyDefaults: makeDefaults()
)
for _ in 0..<3 {
preferences.recordSuccessfulOperation(.activation)
}
preferences.suppress(.activation)
XCTAssertFalse(preferences.shouldPresentAutomaticTip(.activation))
XCTAssertTrue(preferences.shouldPresentAutomaticTip(.deactivation))
XCTAssertFalse(preferences.canSuppress(.deactivation))
for _ in 0..<3 {
preferences.recordSuccessfulOperation(.deactivation)
}
preferences.suppress(.deactivation)
XCTAssertFalse(preferences.shouldPresentAutomaticTip(.deactivation))
}
func testSuppressionBeforeThirdOperationIsIgnored() {
let preferences = VirtualLocationTipPreferences(
defaults: makeDefaults(),
legacyDefaults: makeDefaults()
)
preferences.recordSuccessfulOperation(.deactivation)
preferences.suppress(.deactivation)
XCTAssertTrue(preferences.shouldPresentAutomaticTip(.deactivation))
}
func testLegacyActivationSuppressionRemainsEffective() {
let legacyDefaults = makeDefaults()
legacyDefaults.set(true, forKey: "activationTipDisabled")
let preferences = VirtualLocationTipPreferences(
defaults: makeDefaults(),
legacyDefaults: legacyDefaults
)
XCTAssertFalse(preferences.shouldPresentAutomaticTip(.activation))
XCTAssertTrue(preferences.shouldPresentAutomaticTip(.deactivation))
}
private func makeDefaults() -> UserDefaults {
let suite = "VirtualLocationTipPreferencesTests.\(UUID().uuidString)"
suites.append(suite)
let defaults = UserDefaults(suiteName: suite)!
defaults.removePersistentDomain(forName: suite)
return defaults
}
}
+34 -2
View File
@@ -12,8 +12,11 @@ SETUP="$ROOT/App/SetupCoordinator.swift"
PROXY="$ROOT/App/ProxyManager.swift"
SETTINGS_NAVIGATOR="$ROOT/App/SystemSettingsNavigator.swift"
DIAGNOSTICS="$ROOT/App/DiagnosticsView.swift"
CONTENT="$ROOT/App/ContentView.swift"
CONVERTER="$ROOT/Shared/CoordinateConverter.swift"
NETWORK_MONITOR="$ROOT/Shared/NetworkMonitor.swift"
for file in "$MAP_HOME" "$MAP_STATE" "$MAP_BRIDGE" "$REALTIME" "$SETUP" "$PROXY" "$SETTINGS_NAVIGATOR" "$DIAGNOSTICS"; do
for file in "$MAP_HOME" "$MAP_STATE" "$MAP_BRIDGE" "$REALTIME" "$SETUP" "$PROXY" "$SETTINGS_NAVIGATOR" "$DIAGNOSTICS" "$CONTENT" "$CONVERTER" "$NETWORK_MONITOR"; do
test -f "$file" || fail "missing required refactor file: $file"
done
@@ -23,6 +26,8 @@ done
grep -q 'showsUserLocation = true' "$MAP_BRIDGE" || fail "MapKit native user location must be visible"
grep -q 'didUpdate userLocation' "$MAP_BRIDGE" || fail "MapKit native user location must feed realtime state"
grep -q 'MapCameraCommand' "$MAP_BRIDGE" || fail "map bridge must consume MapCameraCommand"
grep -q 'let initialViewportMeters:' "$MAP_BRIDGE" || fail "map bridge must receive initial viewport from MapLocationState"
! grep -q 'ViewportStore.loadOrDefault()' "$MAP_BRIDGE" || fail "map bridge must not bypass MapLocationState for initial viewport"
grep -q 'activeCameraCommandID' "$MAP_BRIDGE" || fail "programmatic map callbacks must be associated with the active camera command"
grep -q 'UIPanGestureRecognizer' "$MAP_BRIDGE" || fail "map panning must be recognized explicitly"
grep -q 'UIPinchGestureRecognizer' "$MAP_BRIDGE" || fail "pinch zoom must not be treated as a selected-center pan"
@@ -41,13 +46,40 @@ grep -q 'var location: CLLocation?' "$REALTIME" || fail "Core Location driver mu
grep -q 'oneShotTimeoutNanoseconds' "$REALTIME" || fail "one-shot and fallback timeouts must be independent"
! grep -q 'pendingContinuation' "$REALTIME" || fail "unversioned pendingContinuation must be removed"
grep -q 'applyVerified' "$MAP_HOME" || fail "verified location commits must be synchronous after revision validation"
grep -q 'defer { needsSetup = !canModify }' "$SETUP" || fail "trust verification must always converge setup state"
grep -q 'func applyVerificationResult' "$SETUP" || fail "verification results must have one setup-state reducer"
grep -q 'case .success:' "$SETUP" || fail "successful verification must converge setup state"
grep -q 'case .certNotTrusted:' "$SETUP" || fail "certificate failure must converge setup state"
grep -q 'setupStep = .proxy' "$SETUP" || fail "proxy failure must converge setup state"
grep -q 'realtimeRequestTask' "$MAP_HOME" || fail "realtime button requests must be synchronously serialized"
grep -q 'RealtimeLocationRequestContext' "$MAP_HOME" || fail "a realtime button tap must retarget an in-flight startup request instead of being ignored"
grep -q 'CLError.network' "$MAP_HOME" || fail "reverse geocoding network failures must use bounded retry"
grep -q 'SystemSettingsNavigator' "$MAP_HOME" || fail "settings actions must use the shared navigator"
grep -q '复制全部日志' "$DIAGNOSTICS" || fail "diagnostics must show a standalone copy button"
grep -q '清空日志' "$DIAGNOSTICS" || fail "diagnostics must show a standalone clear button"
grep -q '日志自动清理,仅保留近 3 天' "$DIAGNOSTICS" || fail "diagnostics must disclose the three-day retention policy"
grep -q 'retentionInterval: TimeInterval = 3 \* 24 \* 60 \* 60' "$ROOT/Shared/RuntimeLog.swift" || fail "runtime logs must retain only three days"
if grep -q 'logEvent("CONNECT " + host + " -> passthrough")' "$ROOT/Core/proxy.go"; then
fail "proxy diagnostics must not log unrelated passthrough CONNECT hosts"
fi
grep -q 'enum SystemSettingsNavigator' "$SETTINGS_NAVIGATOR" || fail "shared settings navigator is missing"
grep -q 'await CoordinateConverter.resolveInitialMapCoordinateSystem()' "$CONTENT" || fail "map type must resolve before MapHomeView construction"
grep -q 'phase = .map' "$CONTENT" || fail "ContentView must explicitly gate MapHomeView construction"
! grep -q 'startTileProbe' "$MAP_HOME" || fail "MapHomeView must not start a second fixed-anchor coordinate-system probe"
! grep -q 'initializeMap()' "$MAP_HOME" || fail "MapHomeView must not replay a second map initialization from onAppear"
grep -q '地图创建前请求实时定位' "$CONTENT" || fail "fresh realtime position must resolve before map construction"
! grep -q 'lastTileCheck' "$CONVERTER" || fail "map coordinate-system detection must not use a time cache"
! grep -q '跳过(缓存' "$CONVERTER" || fail "map coordinate-system detection must not skip using a cached result"
! grep -q '瓦片检测' "$CONVERTER" || fail "coordinate-system probe logs must not claim to inspect map tiles"
grep -q 'minimumCountForSuppression = 3' Shared/AppGroup.swift || fail "automatic tip suppression must require three successful operations"
grep -q 'activeTip = .deactivation' "$MAP_HOME" || fail "manual deactivation help must use the non-suppressible generic tip sheet"
grep -q 'stabilizationNanoseconds: UInt64 = 5_000_000_000' "$MAP_HOME" || fail "Wi-Fi changes must wait five seconds before environment verification"
grep -q 'result.wifiChangeReminderTipKind' "$MAP_HOME" || fail "Wi-Fi proxy failures must use the background reminder mapping"
grep -q 'if result == .certNotTrusted' "$MAP_HOME" || fail "Wi-Fi certificate failures must enter certificate setup"
grep -q 'setup.applyVerificationResult(result)' "$MAP_HOME" || fail "Wi-Fi certificate failures must use the setup routing reducer"
! grep -q 'case certificate' "$ROOT/App/TipViews.swift" || fail "generic certificate tip must not coexist with certificate setup"
! grep -q 'CertificateTipContent' "$ROOT/App/TipViews.swift" || fail "certificate failures must use the complete setup flow"
! grep -q 'onChange(of: net.isAirplaneMode)' "$MAP_HOME" || fail "airplane recovery must not race the Wi-Fi change verifier"
grep -q 'hasReceivedInitialPath' "$NETWORK_MONITOR" || fail "initial network path must not be reported as a Wi-Fi switch"
grep -q 'lastKnownSSID' "$NETWORK_MONITOR" || fail "SSID polling must preserve a baseline across temporary nil readings"
echo "PASS: map location state refactor contract"