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No files matched your search
@@ -6,11 +6,15 @@
|
||||
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||||
## 本仓库特色功能
|
||||
|
||||
- **网格地图模式(Grid Mode)** — 地图页内置 VUCC 网格覆盖图:已通联网格绿色填充、漫游网格蓝色 45° 斜纹(疏朗半透明样式)、当前所在方格淡黄加粗框;点击已通联网格弹出该网格内通联明细弹窗;进入网格模式默认 VUCC 视图
|
||||
- **奖状边界模式(Award Boundaries)** — 在网格地图上叠加 DXCC / WAPC / WAJA / WAZ / WAS 国界·省界·分区边界,已确认区域绿色填充
|
||||
- **LoTW 网格同步** — 直连 ARRL Logbook(账号密码验证)下载确认报告,worked / roamed 网格自动更新(兼容任意字段顺序的 ADIF 解析);同步失败按凭据错误/限流/超时分类提示
|
||||
- **双站过境匹配(Mutual Pass)** — 输入友台经纬度/网格,筛选双方同时可见的卫星过境,在地图上同时显示双方仰角曲线和地面轨迹,支持一键跳转雷达页查看详情
|
||||
- **线性卫星转发器频率计算器** — 在雷达页的 Calculator 标签页中,支持 TX/RX 双向多普勒频率计算,以及下行频率偏移(offset)输入,方便操作带偏移的线性卫星
|
||||
- **CW 解码器** — 集成 Morse Expert 解码引擎,支持瀑布图、实时解码文本
|
||||
- **Passband 模式** — 支持通过位置滑块(Passband)自动计算 TX/RX 频率,避免切换时跳变
|
||||
- **AMSAT 状态页** — 实时查看卫星的业余无线电转发器状态(开启/关闭/待机),支持 72 小时历史记录回放
|
||||
- **CW 解码器** — 集成 Morse Expert 解码引擎,支持瀑布图、实时解码文本(arm64 + armeabi-v7a 双架构)
|
||||
- **AMSAT 状态页** — 实时查看卫星的业余无线电转发器状态(开启/关闭/待机),支持 72 小时历史记录回放,启动时预取缓存
|
||||
- **应用内更新检查** — 设置页一键检查 GitHub 最新 Release,展示版本说明并直接下载安装
|
||||
- **自定义 TLE 数据源** — 可添加自定义 TLE/Celestrak CSV 数据源,长按拖拽排序,数据源启停开关与 HTTP 状态码显示
|
||||
- **中文界面优化** — 翻译修正、UI 布局调整,系统语言自动切换
|
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|
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## 上游仓库
|
||||
|
||||
@@ -18,7 +18,12 @@ android {
|
||||
namespace = libs.versions.packageName.get()
|
||||
defaultConfig {
|
||||
applicationId = "cn.ba7opf.look4sat"
|
||||
ndk { abiFilters.add("armeabi-v7a") }
|
||||
// CW decoder ships for both ABIs (see feature/cw jniLibs); the APK must
|
||||
// not be pinned to 32-bit only or 64-bit devices fall back to ARM32.
|
||||
ndk {
|
||||
abiFilters.add("armeabi-v7a")
|
||||
abiFilters.add("arm64-v8a")
|
||||
}
|
||||
}
|
||||
signingConfigs {
|
||||
create("release") {
|
||||
|
||||
@@ -51,7 +51,6 @@ import androidx.compose.runtime.Composable
|
||||
import androidx.compose.runtime.CompositionLocalProvider
|
||||
import androidx.compose.runtime.LaunchedEffect
|
||||
import androidx.compose.runtime.getValue
|
||||
import androidx.compose.runtime.mutableIntStateOf
|
||||
import androidx.compose.runtime.remember
|
||||
import androidx.compose.runtime.setValue
|
||||
import androidx.compose.ui.Alignment
|
||||
@@ -94,74 +93,72 @@ import com.rtbishop.look4sat.feature.status.SatStatusDestination
|
||||
fun NavRoot(deeplink: String? = null) {
|
||||
val rootBackStack = rememberNavBackStack(Screen.Passes)
|
||||
val deeplinkResolver = DeeplinkResolver()
|
||||
var openMapRequest by remember { mutableIntStateOf(0) }
|
||||
LaunchedEffect(deeplink) {
|
||||
deeplink?.let { rootBackStack.add(deeplinkResolver.resolve(it)) }
|
||||
}
|
||||
val navigateBack: () -> Unit = { rootBackStack.removeLastOrNull() }
|
||||
val navigateToRadar: () -> Unit = { rootBackStack.add(RadarDestination) }
|
||||
val navigateToMap: () -> Unit = {
|
||||
while (rootBackStack.size > 1) rootBackStack.removeAt(rootBackStack.size - 1)
|
||||
openMapRequest += 1
|
||||
}
|
||||
// Incoming screen slides in from the right, outgoing drifts left at 1/3 speed (API35+ style)
|
||||
val pushTransition = slideInHorizontally(tween(300)) { it } togetherWith
|
||||
slideOutHorizontally(tween(300)) { -it / 3 }
|
||||
// Reverse: outgoing slides out to the right, incoming drifts in from the left
|
||||
val popTransition = slideInHorizontally(tween(300)) { -it / 3 } togetherWith
|
||||
slideOutHorizontally(tween(300)) { it }
|
||||
NavDisplay(
|
||||
modifier = Modifier.fillMaxSize(),
|
||||
backStack = rootBackStack,
|
||||
onBack = navigateBack,
|
||||
transitionSpec = { pushTransition },
|
||||
popTransitionSpec = { popTransition },
|
||||
predictivePopTransitionSpec = { popTransition },
|
||||
entryDecorators = listOf(
|
||||
rememberSaveableStateHolderNavEntryDecorator(),
|
||||
rememberViewModelStoreNavEntryDecorator()
|
||||
),
|
||||
entryProvider = entryProvider {
|
||||
entry<Screen.Passes> {
|
||||
MainScreen(
|
||||
navigateToRadar = navigateToRadar,
|
||||
openMapRequest = openMapRequest,
|
||||
onOpenMapRequestHandled = { openMapRequest = 0 }
|
||||
)
|
||||
}
|
||||
entry<RadarDestination> {
|
||||
Surface(
|
||||
modifier = Modifier.fillMaxSize(),
|
||||
color = MaterialTheme.colorScheme.background
|
||||
) {
|
||||
RadarDestination(navigateUp = navigateBack, navigateToMap = navigateToMap)
|
||||
// Elevation color thresholds must be provided at the root level so that BOTH
|
||||
// the tab content (MainScreen) and the root-level RadarDestination see the
|
||||
// user's custom thresholds. RadarDestination is a sibling entry of MainScreen
|
||||
// in this NavDisplay, so a provider inside MainScreen never reaches it.
|
||||
val context = LocalContext.current
|
||||
val container = (context.applicationContext as IContainerProvider).getMainContainer()
|
||||
val otherSettings by container.settingsRepo.otherSettings.collectAsStateWithLifecycle()
|
||||
CompositionLocalProvider(
|
||||
LocalElevationThresholds provides ElevationThresholds(
|
||||
low = otherSettings.lowElevation,
|
||||
high = otherSettings.highElevation
|
||||
)
|
||||
) {
|
||||
NavDisplay(
|
||||
modifier = Modifier.fillMaxSize(),
|
||||
backStack = rootBackStack,
|
||||
onBack = navigateBack,
|
||||
transitionSpec = { pushTransition },
|
||||
popTransitionSpec = { popTransition },
|
||||
predictivePopTransitionSpec = { popTransition },
|
||||
entryDecorators = listOf(
|
||||
rememberSaveableStateHolderNavEntryDecorator(),
|
||||
rememberViewModelStoreNavEntryDecorator()
|
||||
),
|
||||
entryProvider = entryProvider {
|
||||
entry<Screen.Passes> {
|
||||
MainScreen(
|
||||
navigateToRadar = navigateToRadar
|
||||
)
|
||||
}
|
||||
entry<RadarDestination> {
|
||||
Surface(
|
||||
modifier = Modifier.fillMaxSize(),
|
||||
color = MaterialTheme.colorScheme.background
|
||||
) {
|
||||
RadarDestination(navigateUp = navigateBack)
|
||||
}
|
||||
}
|
||||
}
|
||||
}
|
||||
)
|
||||
)
|
||||
}
|
||||
}
|
||||
|
||||
@Composable
|
||||
fun MainScreen(
|
||||
navigateToRadar: () -> Unit = {},
|
||||
openMapRequest: Int = 0,
|
||||
onOpenMapRequestHandled: () -> Unit = {}
|
||||
navigateToRadar: () -> Unit = {}
|
||||
) {
|
||||
val backStack = rememberNavBackStack(Screen.Passes)
|
||||
val currentKey = backStack.lastOrNull()
|
||||
val navigateBack: () -> Unit = { backStack.removeLastOrNull() }
|
||||
val navigateToMap: () -> Unit = {
|
||||
while (backStack.size > 1) backStack.removeAt(backStack.size - 1)
|
||||
backStack.add(Screen.Map)
|
||||
}
|
||||
LaunchedEffect(openMapRequest) {
|
||||
if (openMapRequest > 0) {
|
||||
navigateToMap()
|
||||
onOpenMapRequestHandled()
|
||||
}
|
||||
}
|
||||
val fadeTransition = fadeIn(animationSpec = tween(350)) togetherWith fadeOut(animationSpec = tween(350))
|
||||
val navItems = listOf(Screen.Satellites, Screen.Passes, Screen.AMSAT, Screen.Mutual, Screen.Settings)
|
||||
// Map sits at position 4 from the left, matching the upstream nav order
|
||||
// (Satellites, Passes, AMSAT/Status, Map, ...), with the fork's Mutual tab
|
||||
// appended before Settings.
|
||||
val navItems = listOf(Screen.Satellites, Screen.Passes, Screen.AMSAT, Screen.Map, Screen.Mutual, Screen.Settings)
|
||||
|
||||
val context = LocalContext.current
|
||||
val container = (context.applicationContext as IContainerProvider).getMainContainer()
|
||||
@@ -185,7 +182,7 @@ fun MainScreen(
|
||||
val isSelected = when (currentKey) {
|
||||
is Screen.Satellites -> screen is Screen.Satellites
|
||||
is Screen.Passes -> screen is Screen.Passes
|
||||
is Screen.Map -> screen is Screen.Passes
|
||||
is Screen.Map -> screen is Screen.Map
|
||||
is Screen.AMSAT -> screen is Screen.AMSAT
|
||||
is Screen.Mutual -> screen is Screen.Mutual
|
||||
is Screen.Settings -> screen is Screen.Settings
|
||||
@@ -196,7 +193,7 @@ fun MainScreen(
|
||||
label = { Text(stringResource(screen.titleResId)) },
|
||||
selected = isSelected,
|
||||
onClick = {
|
||||
if (isSelected && !(currentKey is Screen.Map && screen is Screen.Passes)) return@item
|
||||
if (isSelected) return@item
|
||||
while (backStack.size > 1) backStack.removeAt(backStack.size - 1)
|
||||
if (screen !is Screen.Passes) backStack.add(screen)
|
||||
}
|
||||
@@ -236,8 +233,7 @@ fun MainScreen(
|
||||
container.setMutualPassData(MutualPassData())
|
||||
container.satelliteRepo.selectPass(catNum, aosTime)
|
||||
navigateToRadar()
|
||||
},
|
||||
navigateToMap = navigateToMap
|
||||
}
|
||||
)
|
||||
}
|
||||
entry<Screen.Map> {
|
||||
|
||||
@@ -60,4 +60,7 @@ interface Look4SatDao {
|
||||
|
||||
@Query("DELETE FROM radios")
|
||||
suspend fun deleteRadios()
|
||||
|
||||
@Query("DELETE FROM radios WHERE isCustom = 0")
|
||||
suspend fun deleteManagedRadios()
|
||||
}
|
||||
@@ -19,19 +19,21 @@ package com.rtbishop.look4sat.core.data.database
|
||||
|
||||
import androidx.room.Database
|
||||
import androidx.room.RoomDatabase
|
||||
import androidx.room.migration.Migration
|
||||
import androidx.sqlite.db.SupportSQLiteDatabase
|
||||
import com.rtbishop.look4sat.core.data.database.entity.SatEntry
|
||||
import com.rtbishop.look4sat.core.data.database.entity.SatRadio
|
||||
|
||||
@Database(entities = [SatEntry::class, SatRadio::class], version = 1, exportSchema = false)
|
||||
@Database(entities = [SatEntry::class, SatRadio::class], version = 2, exportSchema = false)
|
||||
abstract class Look4SatDb : RoomDatabase() {
|
||||
abstract fun look4SatDao(): Look4SatDao
|
||||
}
|
||||
|
||||
//val MIGRATION_1_2 = object : Migration(1, 2) {
|
||||
// override fun migrate(database: SupportSQLiteDatabase) {
|
||||
// database.execSQL("CREATE TABLE entries_backup (name TEXT NOT NULL, epoch REAL NOT NULL, meanmo REAL NOT NULL, eccn REAL NOT NULL, incl REAL NOT NULL, raan REAL NOT NULL, argper REAL NOT NULL, meanan REAL NOT NULL, catnum INTEGER NOT NULL, bstar REAL NOT NULL, xincl REAL NOT NULL, xnodeo REAL NOT NULL, omegao REAL NOT NULL, xmo REAL NOT NULL, xno REAL NOT NULL, orbitalPeriod REAL NOT NULL, isDeepSpace INTEGER NOT NULL, comment TEXT, PRIMARY KEY(catnum))")
|
||||
// database.execSQL("INSERT INTO entries_backup (name, epoch, meanmo, eccn, incl, raan, argper, meanan, catnum, bstar, xincl, xnodeo, omegao, xmo, xno, orbitalPeriod, isDeepSpace, comment) SELECT name, epoch, meanmo, eccn, incl, raan, argper, meanan, catnum, bstar, xincl, xnodeo, omegao, xmo, xno, 1440 / meanmo, 1440 / meanmo >= 225.0, comment FROM entries")
|
||||
// database.execSQL("DROP TABLE entries")
|
||||
// database.execSQL("ALTER TABLE entries_backup RENAME TO entries")
|
||||
// }
|
||||
//}
|
||||
/** Adds the mean motion derivative, needed to tell decayed satellites apart, and marks the
|
||||
* transceivers that were imported from a file, so that remote updates leave them alone. */
|
||||
val MIGRATION_1_2 = object : Migration(1, 2) {
|
||||
override fun migrate(db: SupportSQLiteDatabase) {
|
||||
db.execSQL("ALTER TABLE entries ADD COLUMN ndot REAL NOT NULL DEFAULT 0.0")
|
||||
db.execSQL("ALTER TABLE radios ADD COLUMN isCustom INTEGER NOT NULL DEFAULT 0")
|
||||
}
|
||||
}
|
||||
@@ -30,5 +30,6 @@ data class SatEntry(
|
||||
val argper: Double,
|
||||
val meanan: Double,
|
||||
val catnum: Int,
|
||||
val bstar: Double
|
||||
val bstar: Double,
|
||||
val ndot: Double = 0.0
|
||||
)
|
||||
@@ -32,5 +32,7 @@ data class SatRadio(
|
||||
val uplinkHigh: Long?,
|
||||
val uplinkMode: String?,
|
||||
val isInverted: Boolean,
|
||||
val catnum: Int?
|
||||
val catnum: Int?,
|
||||
/** Set for manually imported transceivers, which remote updates must not replace. */
|
||||
val isCustom: Boolean = false
|
||||
)
|
||||
@@ -24,6 +24,7 @@ import android.hardware.display.DisplayManager
|
||||
import android.location.LocationManager
|
||||
import androidx.room.Room
|
||||
import com.rtbishop.look4sat.core.data.database.Look4SatDb
|
||||
import com.rtbishop.look4sat.core.data.database.MIGRATION_1_2
|
||||
import com.rtbishop.look4sat.core.data.framework.BluetoothReporter
|
||||
import com.rtbishop.look4sat.core.data.framework.Ft817Controller
|
||||
import com.rtbishop.look4sat.core.data.framework.Ic705Controller
|
||||
@@ -167,7 +168,10 @@ class MainContainer(private val context: Context) : IMainContainer {
|
||||
|
||||
private fun provideLocalSource(): ILocalSource {
|
||||
val builder = Room.databaseBuilder(context, Look4SatDb::class.java, "Look4SatDBv400")
|
||||
val database = builder.fallbackToDestructiveMigration(false).build()
|
||||
val database = builder
|
||||
.addMigrations(MIGRATION_1_2)
|
||||
.fallbackToDestructiveMigration(false)
|
||||
.build()
|
||||
return LocalSource(database.look4SatDao())
|
||||
}
|
||||
|
||||
|
||||
@@ -58,7 +58,7 @@ class DatabaseRepo(
|
||||
var importedCount = 0
|
||||
remoteSource.getFileStream(uri)?.let { stream ->
|
||||
val transceivers = dataParser.parseJSONStream(unwrapIfZipped(uri, stream))
|
||||
localSource.insertRadios(transceivers)
|
||||
localSource.insertRadios(transceivers, isCustom = true)
|
||||
importedCount = transceivers.size
|
||||
}
|
||||
setUpdateSuccessful(System.currentTimeMillis())
|
||||
@@ -105,9 +105,16 @@ class DatabaseRepo(
|
||||
val normUrl = normalizeUrl(rawUrl)
|
||||
result.stream?.let { dataParser.parseJSONStream(unwrapIfZipped(normUrl, it)) }.orEmpty()
|
||||
}.filter { it.uuid.isNotBlank() }.distinctBy { it.uuid }
|
||||
// insert parsed data into the database
|
||||
localSource.insertEntries(importedEntries)
|
||||
localSource.insertRadios(importedRadios)
|
||||
// insert parsed data into the database.
|
||||
// Transceivers are a full snapshot: sources publish active entries only, so a retired
|
||||
// transceiver simply disappears from the feed and has to be dropped locally as well.
|
||||
// Manually imported ones (isCustom) are kept: no source can refresh them, so nothing
|
||||
// would bring them back if they were replaced here.
|
||||
if (importedRadios.isNotEmpty()) {
|
||||
localSource.deleteManagedRadios()
|
||||
localSource.insertRadios(importedRadios)
|
||||
}
|
||||
if (importedEntries.isNotEmpty()) localSource.insertEntries(importedEntries)
|
||||
setUpdateSuccessful(System.currentTimeMillis())
|
||||
}
|
||||
|
||||
|
||||
+400
-42
@@ -18,11 +18,19 @@
|
||||
package com.rtbishop.look4sat.core.data.repository
|
||||
|
||||
import com.rtbishop.look4sat.core.domain.repository.ILoTWRepository
|
||||
import com.rtbishop.look4sat.core.domain.repository.LoTWPhase
|
||||
import com.rtbishop.look4sat.core.domain.repository.LoTWProgress
|
||||
import com.rtbishop.look4sat.core.domain.repository.LoTWResult
|
||||
import kotlinx.coroutines.Dispatchers
|
||||
import kotlinx.coroutines.ensureActive
|
||||
import kotlinx.coroutines.withContext
|
||||
import kotlin.coroutines.coroutineContext
|
||||
import java.net.HttpURLConnection
|
||||
import java.net.SocketTimeoutException
|
||||
import java.net.URL
|
||||
import java.net.URLEncoder
|
||||
import java.io.IOException
|
||||
import javax.net.ssl.SSLException
|
||||
|
||||
/**
|
||||
* Fetches confirmed gridsquares directly from ARRL LoTW via the official report endpoint:
|
||||
@@ -34,69 +42,419 @@ import java.net.URLEncoder
|
||||
* value; VUCC_GRIDS ("EN52en,EN53fa") also yields 4-char fields. All values are
|
||||
* truncated/expanded to the 4-char form used by the map overlay.
|
||||
*
|
||||
* ARRL rate-limits the report endpoint (roughly once per hour per account), which is
|
||||
* fine for a manual sync button.
|
||||
* ARRL rate-limits the report endpoint: one download in progress per user id, and
|
||||
* frequent full-report pulls get refused. Failures are reported with an explicit
|
||||
* cause (see LoTWResult) so the UI can tell the user what to do next.
|
||||
*/
|
||||
class LoTWRepository : ILoTWRepository {
|
||||
|
||||
override suspend fun fetchConfirmedGrids(callsign: String, password: String): Set<String>? =
|
||||
override suspend fun fetchConfirmedGrids(callsign: String, password: String): LoTWResult =
|
||||
withContext(Dispatchers.IO) {
|
||||
val call = callsign.trim().uppercase()
|
||||
val pwd = password.trim()
|
||||
if (call.isBlank() || pwd.isBlank()) return@withContext null
|
||||
// qso_qslsince with an early date forces a FULL confirmed-QSL report.
|
||||
// Without it, LoTW applies a "system supplied default" since-date and
|
||||
// only returns confirmations newer than the account's last query —
|
||||
// subsequent syncs would return an empty/incremental report.
|
||||
val since = "2000-01-01"
|
||||
val query = buildString {
|
||||
append("login=").append(URLEncoder.encode(call, "UTF-8"))
|
||||
append("&password=").append(URLEncoder.encode(pwd, "UTF-8"))
|
||||
append("&qso_query=1&qso_qsl=yes&qso_qsldetail=yes&qso_mydetail=yes")
|
||||
append("&qso_qslsince=").append(URLEncoder.encode(since, "UTF-8"))
|
||||
}
|
||||
try {
|
||||
val connection = URL("$BASE_URL?$query").openConnection() as HttpURLConnection
|
||||
connection.connectTimeout = 15_000
|
||||
connection.readTimeout = 60_000
|
||||
connection.requestMethod = "GET"
|
||||
val code = connection.responseCode
|
||||
if (code !in 200..299) {
|
||||
connection.disconnect()
|
||||
return@withContext null
|
||||
}
|
||||
val body = connection.inputStream.bufferedReader().use { it.readText() }
|
||||
fetchReportBody(callsign, password, since = "", onProgress = {}).fold(
|
||||
onSuccess = { body ->
|
||||
parseBoth(body)?.let { (grids, _, roamed) ->
|
||||
LoTWResult.Success(grids, emptyMap(), roamed)
|
||||
} ?: LoTWResult.RateLimited
|
||||
},
|
||||
onFailure = { toResult(it) }
|
||||
)
|
||||
}
|
||||
|
||||
override suspend fun fetchConfirmedGridQsos(
|
||||
callsign: String,
|
||||
password: String,
|
||||
since: String,
|
||||
onProgress: (LoTWProgress) -> Unit
|
||||
): LoTWResult = withContext(Dispatchers.IO) {
|
||||
fetchReportBody(callsign, password, since, onProgress).fold(
|
||||
onSuccess = { body ->
|
||||
parseBoth(body)?.let { (grids, qsos, roamed) ->
|
||||
LoTWResult.Success(grids, qsos, roamed)
|
||||
} ?: LoTWResult.RateLimited
|
||||
},
|
||||
onFailure = { toResult(it) }
|
||||
)
|
||||
}
|
||||
|
||||
internal fun toResult(e: Throwable): LoTWResult = when (e) {
|
||||
is CredentialsException -> LoTWResult.BadCredentials
|
||||
is RateLimitException -> LoTWResult.RateLimited
|
||||
is TimeoutException -> LoTWResult.Timeout
|
||||
else -> LoTWResult.NetworkError(e.message ?: e.javaClass.simpleName)
|
||||
}
|
||||
|
||||
/** Single report fetch feeding the grid set, the per-QSO detail and the roamed set. */
|
||||
private fun parseBoth(
|
||||
body: String
|
||||
): Triple<Set<String>, Map<String, List<com.rtbishop.look4sat.core.domain.model.GridQso>>, Set<String>>? {
|
||||
val grids = parseConfirmedGrids(body) ?: return null
|
||||
val qsos = parseConfirmedGridQsos(body) ?: return null
|
||||
val roamed = parseRoamedGrids(body) ?: return null
|
||||
return Triple(grids, qsos, roamed)
|
||||
}
|
||||
|
||||
private suspend fun fetchReportBody(
|
||||
callsign: String,
|
||||
password: String,
|
||||
since: String,
|
||||
onProgress: (LoTWProgress) -> Unit
|
||||
): Result<String> {
|
||||
val call = callsign.trim().uppercase()
|
||||
val pwd = password.trim()
|
||||
if (call.isBlank() || pwd.isBlank()) return Result.failure(IOException("empty credentials"))
|
||||
// Empty since -> full report. qso_qslsince with an early date forces a
|
||||
// FULL confirmed-QSL report; without it LoTW applies a "system supplied
|
||||
// default" since-date and only returns confirmations newer than the
|
||||
// account's last query — subsequent syncs would be incremental/empty.
|
||||
val effectiveSince = since.ifBlank { "2000-01-01" }
|
||||
val query = buildString {
|
||||
append("login=").append(URLEncoder.encode(call, "UTF-8"))
|
||||
append("&password=").append(URLEncoder.encode(pwd, "UTF-8"))
|
||||
append("&qso_query=1&qso_qsl=yes&qso_qsldetail=yes&qso_mydetail=yes")
|
||||
append("&qso_qslsince=").append(URLEncoder.encode(effectiveSince, "UTF-8"))
|
||||
}
|
||||
return try {
|
||||
val connection = URL("$BASE_URL?$query").openConnection() as HttpURLConnection
|
||||
// ARRL can be slow to accept connections from mobile networks
|
||||
// (long TLS handshakes across the Pacific, occasional server-side
|
||||
// queueing — a busy server took 36.5 s to accept a connection in
|
||||
// testing, so 30 s connect would have killed it).
|
||||
//
|
||||
// NOTE: readTimeout is NOT a total-download cap. It is the longest
|
||||
// wait for the NEXT chunk of data (a stall timeout). A full report
|
||||
// for a huge account (tens of thousands of QSLs ≈ tens of MB at
|
||||
// ARRL's ~10 KB/s stream rate) legitimately takes 30+ minutes;
|
||||
// as long as chunks keep arriving it must never be cut off.
|
||||
// 600 s tolerates long server-side pauses while it generates the
|
||||
// report; a truly dead link (no data at all) still fails within it.
|
||||
connection.connectTimeout = 60_000
|
||||
connection.readTimeout = 600_000
|
||||
connection.requestMethod = "GET"
|
||||
connection.setRequestProperty("Accept-Encoding", "gzip")
|
||||
connection.instanceFollowRedirects = true
|
||||
onProgress(LoTWProgress(LoTWPhase.Connecting))
|
||||
val code = connection.responseCode
|
||||
if (code !in 200..299) {
|
||||
connection.disconnect()
|
||||
if (body.contains(" password=") && !body.startsWith("ARRL")) return@withContext null
|
||||
parseConfirmedGrids(body)
|
||||
} catch (e: Exception) {
|
||||
println("LoTWRepository fetch failure: $e")
|
||||
null
|
||||
// Observed in the wild (CQRLOG #2422): LoTW answers a throttled
|
||||
// report pull with HTTP 503 "Page request limit".
|
||||
return if (code == 503 || code == 429) Result.failure(RateLimitException())
|
||||
else Result.failure(IOException("HTTP $code"))
|
||||
}
|
||||
val stream = connection.inputStream
|
||||
val isGzip = "gzip".equals(connection.contentEncoding, ignoreCase = true)
|
||||
val body = readBodyWithProgress(stream, isGzip, onProgress)
|
||||
connection.disconnect()
|
||||
when {
|
||||
// Login failure: HTTP 200 + HTML login page with the error text.
|
||||
body.contains("incorrect", ignoreCase = true) &&
|
||||
body.contains("assword", ignoreCase = true) -> Result.failure(CredentialsException())
|
||||
// Any other non-ADIF body: rate-limit refusal / server error page.
|
||||
!body.contains("<eoh>", ignoreCase = true) -> Result.failure(RateLimitException())
|
||||
else -> Result.success(body)
|
||||
}
|
||||
} catch (e: java.util.concurrent.CancellationException) {
|
||||
// Cancellation must propagate — it is not a network failure.
|
||||
throw e
|
||||
} catch (e: SocketTimeoutException) {
|
||||
Result.failure(TimeoutException(e.message ?: "timed out"))
|
||||
} catch (e: SSLException) {
|
||||
Result.failure(IOException("TLS: ${e.message ?: "handshake failed"}"))
|
||||
} catch (e: Exception) {
|
||||
println("LoTWRepository fetch failure: $e")
|
||||
Result.failure(IOException(e.message ?: e.javaClass.simpleName))
|
||||
}
|
||||
}
|
||||
|
||||
/**
|
||||
* Streams the report body into a string while reporting download progress.
|
||||
* Once the header's record count (<APP_LoTW_NUMREC>) is seen, the total
|
||||
* body size is estimated as NUMREC * AVG_RECORD_BYTES so the UI can show a
|
||||
* meaningful progress bar and remaining-time estimate.
|
||||
*/
|
||||
private suspend fun readBodyWithProgress(
|
||||
stream: java.io.InputStream,
|
||||
isGzip: Boolean,
|
||||
onProgress: (LoTWProgress) -> Unit
|
||||
): String {
|
||||
val input = if (isGzip) java.util.zip.GZIPInputStream(stream) else stream
|
||||
val reader = java.io.InputStreamReader(input, Charsets.UTF_8)
|
||||
val sb = StringBuilder()
|
||||
val buf = CharArray(8192)
|
||||
var bytesRead = 0L
|
||||
var expected = 0L
|
||||
var qsoCount = 0L
|
||||
var speed = 0L
|
||||
var headerSeen = false
|
||||
var lastSampleMs = System.currentTimeMillis()
|
||||
var lastSampleBytes = 0L
|
||||
var lastEmitMs = 0L
|
||||
while (true) {
|
||||
// Cooperative cancellation: lets the user abort a full sync that
|
||||
// was started by mistake. Throws CancellationException once the
|
||||
// job is cancelled; the blocking read below is fast while chunks
|
||||
// keep arriving, so the abort lands on the next chunk boundary.
|
||||
coroutineContext.ensureActive()
|
||||
val n = reader.read(buf)
|
||||
if (n <= 0) break
|
||||
sb.append(buf, 0, n)
|
||||
bytesRead += n
|
||||
// The record count sits in the report header, long before the data.
|
||||
if (!headerSeen) {
|
||||
NUMREC_REGEX.find(sb)?.let { m ->
|
||||
qsoCount = m.groupValues[1].toLongOrNull() ?: 0L
|
||||
expected = qsoCount * AVG_RECORD_BYTES
|
||||
headerSeen = true
|
||||
}
|
||||
}
|
||||
// Sample speed every 500ms, EMA-smoothed.
|
||||
val now = System.currentTimeMillis()
|
||||
if (now - lastSampleMs >= 500) {
|
||||
val elapsedS = (now - lastSampleMs) / 1000.0
|
||||
if (elapsedS > 0) {
|
||||
val inst = ((bytesRead - lastSampleBytes) / elapsedS).toLong()
|
||||
speed = if (speed == 0L) inst else (speed * 7 + inst * 3) / 10
|
||||
lastSampleMs = now
|
||||
lastSampleBytes = bytesRead
|
||||
}
|
||||
}
|
||||
// Throttle callbacks to ~4/s so StateFlow updates stay cheap.
|
||||
if (now - lastEmitMs >= 250) {
|
||||
onProgress(LoTWProgress(LoTWPhase.Downloading, bytesRead, expected, speed, qsoCount))
|
||||
lastEmitMs = now
|
||||
}
|
||||
}
|
||||
onProgress(LoTWProgress(LoTWPhase.Downloading, bytesRead, expected, speed, qsoCount))
|
||||
return sb.toString()
|
||||
}
|
||||
|
||||
internal class CredentialsException : Exception("bad callsign/password")
|
||||
internal class RateLimitException : Exception("report refused (rate limit / server error)")
|
||||
internal class TimeoutException(message: String) : Exception(message)
|
||||
|
||||
internal fun parseConfirmedGridQsos(
|
||||
body: String
|
||||
): Map<String, List<com.rtbishop.look4sat.core.domain.model.GridQso>>? {
|
||||
if (!body.contains("<eoh>", ignoreCase = true)) return null
|
||||
// One ADIF record = fields up to <EOR>. We buffer the fields we care
|
||||
// about, then emit a GridQso on <EOR> when the record is a satellite
|
||||
// QSO (PROP_MODE=SAT) carrying a grid.
|
||||
val result = mutableMapOf<String, MutableList<com.rtbishop.look4sat.core.domain.model.GridQso>>()
|
||||
var propMode: String? = null
|
||||
var call = ""
|
||||
var qsoDate = ""
|
||||
var timeOn = ""
|
||||
var satName = ""
|
||||
var mode = ""
|
||||
var bandUp = ""
|
||||
var bandDown = ""
|
||||
var dxcc: Int? = null
|
||||
var country: String? = null
|
||||
var cqz: Int? = null
|
||||
var state: String? = null
|
||||
var myGrid: String? = null
|
||||
val gridsInRecord = mutableListOf<String>()
|
||||
|
||||
fun emitRecord() {
|
||||
if (propMode != "SAT" || gridsInRecord.isEmpty()) return
|
||||
val epochMs = adifTimestampToEpoch(qsoDate, timeOn)
|
||||
val qso = com.rtbishop.look4sat.core.domain.model.GridQso(
|
||||
call = call, epochMs = epochMs, satName = satName,
|
||||
mode = mode, bandUp = bandUp, bandDown = bandDown,
|
||||
dxcc = dxcc, country = country, cqz = cqz, state = state,
|
||||
myGrid = myGrid
|
||||
)
|
||||
for (grid in gridsInRecord) {
|
||||
result.getOrPut(grid) { mutableListOf() }.add(qso)
|
||||
}
|
||||
}
|
||||
|
||||
fun resetRecord() {
|
||||
propMode = null; call = ""; qsoDate = ""; timeOn = ""
|
||||
satName = ""; mode = ""; bandUp = ""; bandDown = ""
|
||||
dxcc = null; country = null; cqz = null; state = null
|
||||
myGrid = null
|
||||
gridsInRecord.clear()
|
||||
}
|
||||
|
||||
for (raw in body.lineSequence()) {
|
||||
val line = raw.trim()
|
||||
when {
|
||||
line.equals("<EOR>", ignoreCase = true) -> {
|
||||
emitRecord()
|
||||
resetRecord()
|
||||
}
|
||||
line.startsWith("<PROP_MODE:") ->
|
||||
propMode = adifValue(line).uppercase()
|
||||
line.startsWith("<CALL:") ->
|
||||
call = adifValue(line).uppercase()
|
||||
line.startsWith("<QSO_DATE:") ->
|
||||
qsoDate = adifValue(line)
|
||||
line.startsWith("<TIME_ON:") ->
|
||||
timeOn = adifValue(line)
|
||||
line.startsWith("<SAT_NAME:") ->
|
||||
satName = adifValue(line)
|
||||
line.startsWith("<MODE:") ->
|
||||
mode = adifValue(line)
|
||||
line.startsWith("<BAND_RX:") ->
|
||||
bandUp = adifValue(line).uppercase()
|
||||
line.startsWith("<BAND:") && !line.startsWith("<BAND_RX:") ->
|
||||
bandDown = adifValue(line).uppercase()
|
||||
line.startsWith("<DXCC:") ->
|
||||
dxcc = adifValue(line).toIntOrNull()
|
||||
line.startsWith("<COUNTRY:") ->
|
||||
country = adifValue(line).ifBlank { null }
|
||||
line.startsWith("<CQZ:") ->
|
||||
cqz = adifValue(line).toIntOrNull()
|
||||
line.startsWith("<STATE:") ->
|
||||
state = adifValue(line).trim().ifBlank { null }?.let { normalizeState(it) }
|
||||
line.startsWith("<MY_GRIDSQUARE:") -> {
|
||||
// Own-station grid (must not be confused with GRIDSQUARE —
|
||||
// the opposite station's grid). Recorded per QSO so awards
|
||||
// can be counted per operated grid.
|
||||
val value = adifValue(line)
|
||||
if (value.length >= 4) myGrid = value.take(4).uppercase()
|
||||
}
|
||||
line.startsWith("<GRIDSQUARE:") || line.startsWith("<VUCC_GRIDS:") -> {
|
||||
// VUCC_GRIDS holds a comma-separated list of grids
|
||||
// ("EN52en,EN53fa"), up to four for contacts spanning
|
||||
// several squares; split and keep every 4-char field.
|
||||
adifValue(line).split(',').forEach { grid ->
|
||||
val field = grid.trim().uppercase()
|
||||
if (field.length >= 4) gridsInRecord.add(field.take(4))
|
||||
}
|
||||
}
|
||||
}
|
||||
}
|
||||
return result
|
||||
}
|
||||
|
||||
/** ADIF field value: "<GRIDSQUARE:4>OL62" -> "OL62". */
|
||||
private fun adifValue(line: String): String =
|
||||
line.substringAfter('>').substringBefore("E<").trim()
|
||||
|
||||
/**
|
||||
* LoTW returns STATE as "CODE // NAME" (e.g. "HB // Hubei" for China,
|
||||
* "34 // Tottori-ken" for Japan, "CA // California" for the US). The award
|
||||
* statistics match on the short CODE only (China 2-letter province pinyin,
|
||||
* Japan 2-digit prefecture, US 2-letter state), so strip the " // NAME"
|
||||
* suffix here once, storing the clean code for every downstream consumer
|
||||
* (persistence, AwardCalculator).
|
||||
*/
|
||||
private fun normalizeState(raw: String): String = raw.substringBefore(" // ").trim()
|
||||
|
||||
/** "20260820" + "1130" (or "113000") -> UTC epoch ms; 0 when unparseable. */
|
||||
private fun adifTimestampToEpoch(date: String, time: String): Long = try {
|
||||
val d = date.trim()
|
||||
val t = time.trim().padEnd(6, '0').take(6)
|
||||
val fmt = java.time.format.DateTimeFormatterBuilder()
|
||||
.appendPattern("yyyyMMddHHmmss")
|
||||
.toFormatter()
|
||||
.withZone(java.time.ZoneOffset.UTC)
|
||||
java.time.Instant.from(fmt.parse(d + t)).toEpochMilli()
|
||||
} catch (_: Exception) {
|
||||
0L
|
||||
}
|
||||
|
||||
internal fun parseConfirmedGrids(body: String): Set<String>? {
|
||||
// LoTW answers with ADIF text; on bad credentials it returns a short error page
|
||||
// containing "password=?" or an <eoh>-less block. Treat anything without a header
|
||||
// marker as failure so the caller can show a sensible message.
|
||||
// LoTW answers with ADIF text; on bad credentials it returns a short error
|
||||
// page without an <eoh> header terminator. Real reports always carry <eoh>
|
||||
// (LoTW writes it lowercase). Match case-insensitively to be safe.
|
||||
if (!body.contains("<eoh>", ignoreCase = true)) return null
|
||||
val grids = mutableSetOf<String>()
|
||||
// ADIF fields of one QSO record span multiple lines and are terminated by
|
||||
// <EOR>. Satellite QSOs carry <PROP_MODE:3>SAT (plus <SAT_NAME>); ground
|
||||
// QSOs omit it. Grid fields (GRIDSQUARE / VUCC_GRIDS) must only be
|
||||
// collected for records whose PROP_MODE is SAT, otherwise the map mixes
|
||||
// in terrestrial contacts.
|
||||
//
|
||||
// Buffered per-record pattern (same as parseConfirmedGridQsos): field order
|
||||
// is NOT reliable — ADIF producers (incl. LoTW) emit fields alphabetically,
|
||||
// so <GRIDSQUARE> (G) arrives BEFORE <PROP_MODE> (P) within a record. A
|
||||
// sequential gate ("only add while propMode == SAT") silently drops every
|
||||
// grid on real reports. Buffer the record and decide at <EOR> instead.
|
||||
var propMode: String? = null
|
||||
var pendingGrids = mutableListOf<String>()
|
||||
for (raw in body.lineSequence()) {
|
||||
val line = raw.trim()
|
||||
val value = when {
|
||||
line.startsWith("<GRIDSQUARE:") -> line.substringAfter('>')
|
||||
line.startsWith("<VUCC_GRIDS:") -> line.substringAfter('>')
|
||||
else -> continue
|
||||
}.substringBefore("E<").trim().uppercase()
|
||||
if (value.length >= 4) grids.add(value.take(4))
|
||||
when {
|
||||
line.equals("<EOR>", ignoreCase = true) -> {
|
||||
if (propMode == "SAT") grids.addAll(pendingGrids)
|
||||
propMode = null
|
||||
pendingGrids = mutableListOf()
|
||||
}
|
||||
line.startsWith("<PROP_MODE:") -> {
|
||||
propMode = adifValue(line).uppercase()
|
||||
}
|
||||
line.startsWith("<GRIDSQUARE:") || line.startsWith("<VUCC_GRIDS:") -> {
|
||||
// VUCC_GRIDS holds a comma-separated PAIR of grids
|
||||
// ("EN52en,EN53fa") for contacts spanning two squares —
|
||||
// split on ',' and take the 4-char field of each, or the
|
||||
// second grid is silently dropped.
|
||||
val value = adifValue(line)
|
||||
value.split(',').forEach { grid ->
|
||||
val field = grid.trim().uppercase()
|
||||
if (field.length >= 4) pendingGrids.add(field.take(4))
|
||||
}
|
||||
}
|
||||
}
|
||||
}
|
||||
return grids
|
||||
}
|
||||
|
||||
/**
|
||||
* Distinct 4-char gridsquares the account itself operated from, taken from
|
||||
* ADIF <MY_GRIDSQUARE> of satellite QSO records only. This is the
|
||||
* "roamed / activated" set shown as blue stripes on the map — the grids
|
||||
* where the operator's own station was located during confirmed QSOs (a
|
||||
* rover may log several distinct grids; the home grid is included too).
|
||||
* Returns null when the body is not an ADIF report (mirrors the other parsers).
|
||||
*/
|
||||
internal fun parseRoamedGrids(body: String): Set<String>? {
|
||||
if (!body.contains("<eoh>", ignoreCase = true)) return null
|
||||
val grids = mutableSetOf<String>()
|
||||
// Buffered per-record pattern (same as parseConfirmedGridQsos): field
|
||||
// order is NOT reliable — ADIF producers (incl. LoTW) emit fields
|
||||
// alphabetically, so <MY_GRIDSQUARE> (M) arrives BEFORE <PROP_MODE> (P)
|
||||
// within a record. A sequential gate ("only add while propMode == SAT")
|
||||
// would silently drop every own grid on real reports; buffer the record
|
||||
// and decide at <EOR> instead.
|
||||
var propMode: String? = null
|
||||
var myGrid: String? = null
|
||||
for (raw in body.lineSequence()) {
|
||||
val line = raw.trim()
|
||||
when {
|
||||
line.equals("<EOR>", ignoreCase = true) -> {
|
||||
if (propMode == "SAT" && myGrid != null) grids.add(myGrid)
|
||||
propMode = null
|
||||
myGrid = null
|
||||
}
|
||||
line.startsWith("<PROP_MODE:") -> {
|
||||
propMode = adifValue(line).uppercase()
|
||||
}
|
||||
line.startsWith("<MY_GRIDSQUARE:") -> {
|
||||
// MY_GRIDSQUARE must not be mistaken for GRIDSQUARE (the
|
||||
// opposite station's grid) — only own-station grids count.
|
||||
val value = adifValue(line)
|
||||
if (value.length >= 4) myGrid = value.take(4)
|
||||
}
|
||||
}
|
||||
}
|
||||
return grids
|
||||
}
|
||||
|
||||
private companion object {
|
||||
const val BASE_URL = "https://lotw.arrl.org/lotwuser/lotwreport.adi"
|
||||
|
||||
/** Record count in the report header: `<APP_LoTW_NUMREC:4>2367`. */
|
||||
val NUMREC_REGEX = Regex("<APP_LoTW_NUMREC:\\d+>(\\d+)")
|
||||
/**
|
||||
* Measured 2026-09-16 (BH6RJD, 2367 QSLs): 1.7 MB body streamed at
|
||||
* ~9.5 KB/s ≈ 180 s, i.e. ≈ 720 bytes per ADIF record. Use a
|
||||
* CONSERVATIVE (larger) estimate so the progress bar never hits 100%
|
||||
* before the download truly ends — an under-estimate made the bar sit
|
||||
* at 100% while data was still flowing, read as "finished but stuck".
|
||||
*/
|
||||
const val AVG_RECORD_BYTES = 900L
|
||||
}
|
||||
}
|
||||
+17
-3
@@ -35,6 +35,8 @@ import kotlinx.coroutines.delay
|
||||
import kotlinx.coroutines.flow.MutableStateFlow
|
||||
import kotlinx.coroutines.flow.StateFlow
|
||||
import kotlinx.coroutines.flow.combine
|
||||
import kotlinx.coroutines.flow.distinctUntilChanged
|
||||
import kotlinx.coroutines.flow.map
|
||||
import kotlinx.coroutines.flow.update
|
||||
import kotlinx.coroutines.withContext
|
||||
import java.util.TimeZone
|
||||
@@ -66,8 +68,11 @@ class SatelliteRepo(
|
||||
override suspend fun initRepository() = withContext(dispatcher) {
|
||||
combine(
|
||||
settingsRepo.selectedIds,
|
||||
settingsRepo.stationPosition
|
||||
) { selectedIds, _ -> selectedIds }
|
||||
settingsRepo.stationPosition,
|
||||
// Recalculate passes when the UTC display toggle changes, so an existing
|
||||
// AOS time window is reapplied in the newly selected timezone.
|
||||
settingsRepo.otherSettings.map { it.stateOfUtc }.distinctUntilChanged()
|
||||
) { selectedIds, _, _ -> selectedIds }
|
||||
.collect { selectedIds ->
|
||||
_satellites.update { localStorage.getEntriesWithIds(selectedIds) }
|
||||
val settings = settingsRepo.passesSettings.value
|
||||
@@ -175,7 +180,16 @@ class SatelliteRepo(
|
||||
aosEndMinute: Int,
|
||||
invertAosTimeWindow: Boolean
|
||||
): Boolean {
|
||||
val offsetMillis = TimeZone.getDefault().getOffset(aosTime).toLong()
|
||||
// Follow the UTC display toggle: with UTC enabled the window is interpreted
|
||||
// in UTC, otherwise in the device's local timezone. Otherwise the pass list
|
||||
// shows UTC times while the filter silently uses local time — the two
|
||||
// disagree by the timezone offset (e.g. 8h for China).
|
||||
val tz = if (settingsRepo.otherSettings.value.stateOfUtc) {
|
||||
TimeZone.getTimeZone("UTC")
|
||||
} else {
|
||||
TimeZone.getDefault()
|
||||
}
|
||||
val offsetMillis = tz.getOffset(aosTime).toLong()
|
||||
val localMillis = Math.floorMod(aosTime + offsetMillis, 24L * 60L * 60L * 1000L)
|
||||
val aosMinute = (localMillis / 60_000L).toInt()
|
||||
val inRange = if (aosStartMinute <= aosEndMinute) {
|
||||
|
||||
@@ -179,6 +179,92 @@ class SettingsRepo(
|
||||
preferences.edit { putString(keyWorkedGrids, array.toString()) }
|
||||
}
|
||||
|
||||
// Confirmed satellite QSOs per worked gridsquare, persisted as a single JSON
|
||||
// object: {"OL62":[{"c":call,"t":epochMs,"s":sat,"m":mode,"bu":up,"bd":down}]}.
|
||||
private val keyWorkedGridQsos = "workedGridQsos"
|
||||
|
||||
override fun getWorkedGridQsos(): Map<String, List<com.rtbishop.look4sat.core.domain.model.GridQso>> {
|
||||
val json = preferences.getString(keyWorkedGridQsos, null).orEmpty()
|
||||
if (json.isBlank()) return emptyMap()
|
||||
return try {
|
||||
val root = org.json.JSONObject(json)
|
||||
val result = mutableMapOf<String, List<com.rtbishop.look4sat.core.domain.model.GridQso>>()
|
||||
for (grid in root.keys()) {
|
||||
val array = root.optJSONArray(grid) ?: continue
|
||||
val list = (0 until array.length()).mapNotNull { i ->
|
||||
val o = array.optJSONObject(i) ?: return@mapNotNull null
|
||||
com.rtbishop.look4sat.core.domain.model.GridQso(
|
||||
call = o.optString("c"),
|
||||
epochMs = o.optLong("t"),
|
||||
satName = o.optString("s"),
|
||||
mode = o.optString("m"),
|
||||
bandUp = o.optString("bu"),
|
||||
bandDown = o.optString("bd"),
|
||||
// New award fields: absent in pre-award data -> null.
|
||||
dxcc = o.optInt("dx", 0).takeIf { it > 0 },
|
||||
country = o.optString("cty").ifBlank { null },
|
||||
cqz = o.optInt("cq", 0).takeIf { it > 0 },
|
||||
state = o.optString("st").ifBlank { null },
|
||||
// Own-grid field: absent in pre-myGrid data -> null.
|
||||
myGrid = o.optString("mg").ifBlank { null }
|
||||
)
|
||||
}
|
||||
if (list.isNotEmpty()) result[grid] = list
|
||||
}
|
||||
result
|
||||
} catch (_: Exception) {
|
||||
emptyMap()
|
||||
}
|
||||
}
|
||||
|
||||
override fun setWorkedGridQsos(qsos: Map<String, List<com.rtbishop.look4sat.core.domain.model.GridQso>>) {
|
||||
val root = org.json.JSONObject()
|
||||
for ((grid, list) in qsos) {
|
||||
val array = org.json.JSONArray()
|
||||
for (q in list) {
|
||||
array.put(
|
||||
org.json.JSONObject()
|
||||
.put("c", q.call)
|
||||
.put("t", q.epochMs)
|
||||
.put("s", q.satName)
|
||||
.put("m", q.mode)
|
||||
.put("bu", q.bandUp)
|
||||
.put("bd", q.bandDown)
|
||||
.put("dx", q.dxcc ?: 0)
|
||||
.put("cty", q.country ?: "")
|
||||
.put("cq", q.cqz ?: 0)
|
||||
.put("st", q.state ?: "")
|
||||
.put("mg", q.myGrid ?: "")
|
||||
)
|
||||
}
|
||||
root.put(grid, array)
|
||||
}
|
||||
preferences.edit { putString(keyWorkedGridQsos, root.toString()) }
|
||||
}
|
||||
|
||||
// Distinct 4-char gridsquares the account operated from (LoTW <MY_GRIDSQUARE>,
|
||||
// satellite QSOs only). Stored as a JSONArray like workedGrids.
|
||||
private val keyRoamedGrids = "roamedGrids"
|
||||
|
||||
override fun getRoamedGrids(): Set<String> {
|
||||
val json = preferences.getString(keyRoamedGrids, null).orEmpty()
|
||||
if (json.isBlank()) return emptySet()
|
||||
return try {
|
||||
val array = org.json.JSONArray(json)
|
||||
(0 until array.length()).mapNotNull { i ->
|
||||
array.optString(i).takeIf { it.isNotBlank() }
|
||||
}.toSet()
|
||||
} catch (_: Exception) {
|
||||
emptySet()
|
||||
}
|
||||
}
|
||||
|
||||
override fun setRoamedGrids(grids: Set<String>) {
|
||||
val array = org.json.JSONArray()
|
||||
grids.sorted().forEach { array.put(it) }
|
||||
preferences.edit { putString(keyRoamedGrids, array.toString()) }
|
||||
}
|
||||
|
||||
// LoTW credentials (stored locally on the device only)
|
||||
private val keyLoTWCall = "lotwCallsign"
|
||||
private val keyLoTWPass = "lotwPassword"
|
||||
@@ -203,6 +289,24 @@ class SettingsRepo(
|
||||
callsign = preferences.getString(keyLoTWCall, null).orEmpty(),
|
||||
password = preferences.getString(keyLoTWPass, null).orEmpty()
|
||||
)
|
||||
|
||||
// Last successful sync bookkeeping: date ("yyyyMMdd") and callsign. Used to
|
||||
// decide incremental (same callsign) vs full (first time / callsign change)
|
||||
// report requests and to merge increments into the stored grid data.
|
||||
private val keyLastLotwSyncDate = "lotwLastSyncDate"
|
||||
private val keyLastLotwSyncCallsign = "lotwLastSyncCallsign"
|
||||
|
||||
override fun getLastLotwSyncDate(): String =
|
||||
preferences.getString(keyLastLotwSyncDate, null).orEmpty()
|
||||
|
||||
override fun setLastLotwSyncDate(date: String) =
|
||||
preferences.edit { putString(keyLastLotwSyncDate, date) }
|
||||
|
||||
override fun getLastLotwSyncCallsign(): String =
|
||||
preferences.getString(keyLastLotwSyncCallsign, null).orEmpty()
|
||||
|
||||
override fun setLastLotwSyncCallsign(callsign: String) =
|
||||
preferences.edit { putString(keyLastLotwSyncCallsign, callsign.trim().uppercase()) }
|
||||
//endregion
|
||||
|
||||
//region # Transceivers settings
|
||||
|
||||
+6
-4
@@ -66,16 +66,18 @@ class UpdateRepository(
|
||||
.replace("<", "<").replace(">", ">").replace("&", "&")
|
||||
.replace(""", "\"").replace("'", "'")
|
||||
.trim()
|
||||
// The release APK asset follows the fixed naming scheme used by the build:
|
||||
// Look4Sat-<tag without leading v>-release.apk. When the page was fetched
|
||||
// The release APK asset naming: Look4Sat-<tag without leading v>.apk
|
||||
// (since v4.4.6-ba7opf.9.9 the releases are uploaded with the bare
|
||||
// versioned filename, no "-release" suffix). When the page was fetched
|
||||
// through an accelerator mirror (https://<mirror>/https://github.com/...),
|
||||
// download through the same mirror — raw github.com is unreachable on the
|
||||
// networks that needed the mirror in the first place.
|
||||
val mirrorPrefix = sourceUrl.substringBefore("https://github.com")
|
||||
val apkName = "Look4Sat-${tag.removePrefix("v")}.apk"
|
||||
val apkUrl = if (mirrorPrefix.isEmpty()) {
|
||||
"$DOWNLOAD_BASE_URL/$tag/Look4Sat-${tag.removePrefix("v")}-release.apk"
|
||||
"$DOWNLOAD_BASE_URL/$tag/$apkName"
|
||||
} else {
|
||||
"${mirrorPrefix}https://github.com/atsunatsu/Look4Sat/releases/download/$tag/Look4Sat-${tag.removePrefix("v")}-release.apk"
|
||||
"${mirrorPrefix}https://github.com/atsunatsu/Look4Sat/releases/download/$tag/$apkName"
|
||||
}
|
||||
return LatestRelease(
|
||||
versionTag = tag,
|
||||
|
||||
@@ -51,12 +51,12 @@ class LocalSource(private val look4SatDao: Look4SatDao) : ILocalSource {
|
||||
|
||||
private fun FrameworkEntry.toDomain() = OrbitalData(
|
||||
this.name, this.epoch, this.meanmo, this.eccn, this.incl,
|
||||
this.raan, this.argper, this.meanan, this.catnum, this.bstar
|
||||
this.raan, this.argper, this.meanan, this.catnum, this.bstar, this.ndot
|
||||
)
|
||||
|
||||
private fun OrbitalData.toEntity() = FrameworkEntry(
|
||||
this.name, this.epoch, this.meanmo, this.eccn, this.incl,
|
||||
this.raan, this.argper, this.meanan, this.catnum, this.bstar
|
||||
this.raan, this.argper, this.meanan, this.catnum, this.bstar, this.ndot
|
||||
)
|
||||
|
||||
private fun List<OrbitalData>.toEntity() = this.map { item -> item.toEntity() }
|
||||
@@ -73,20 +73,22 @@ class LocalSource(private val look4SatDao: Look4SatDao) : ILocalSource {
|
||||
return look4SatDao.getRadiosWithId(id).toDomainRadios()
|
||||
}
|
||||
|
||||
override suspend fun insertRadios(radios: List<SatRadio>) {
|
||||
look4SatDao.insertRadios(radios.toFrameworkRadios())
|
||||
override suspend fun insertRadios(radios: List<SatRadio>, isCustom: Boolean) {
|
||||
look4SatDao.insertRadios(radios.map { it.copy(isCustom = isCustom) }.toFrameworkRadios())
|
||||
}
|
||||
|
||||
override suspend fun deleteManagedRadios() = look4SatDao.deleteManagedRadios()
|
||||
|
||||
override suspend fun deleteRadios() = look4SatDao.deleteRadios()
|
||||
|
||||
private fun DomainRadio.toFramework() = FrameworkRadio(
|
||||
this.uuid, this.info, this.isAlive, this.downlinkLow, this.downlinkHigh, this.downlinkMode,
|
||||
this.uplinkLow, this.uplinkHigh, this.uplinkMode, this.isInverted, this.catnum
|
||||
this.uplinkLow, this.uplinkHigh, this.uplinkMode, this.isInverted, this.catnum, this.isCustom
|
||||
)
|
||||
|
||||
private fun FrameworkRadio.toDomain() = DomainRadio(
|
||||
this.uuid, this.info, this.isAlive, this.downlinkLow, this.downlinkHigh, this.downlinkMode,
|
||||
this.uplinkLow, this.uplinkHigh, this.uplinkMode, this.isInverted, this.catnum
|
||||
this.uplinkLow, this.uplinkHigh, this.uplinkMode, this.isInverted, this.catnum, this.isCustom
|
||||
)
|
||||
|
||||
private fun List<DomainRadio>.toFrameworkRadios() = this.map { radio -> radio.toFramework() }
|
||||
|
||||
+45
-3
@@ -19,6 +19,7 @@ package com.rtbishop.look4sat.core.data.repository
|
||||
|
||||
import com.rtbishop.look4sat.core.domain.model.DataSourcesSettings
|
||||
import com.rtbishop.look4sat.core.domain.model.DatabaseState
|
||||
import com.rtbishop.look4sat.core.domain.model.GridQso
|
||||
import com.rtbishop.look4sat.core.domain.model.OtherSettings
|
||||
import com.rtbishop.look4sat.core.domain.model.PassesSettings
|
||||
import com.rtbishop.look4sat.core.domain.model.RCSettings
|
||||
@@ -184,8 +185,12 @@ private class FakeLocalSource : ILocalSource {
|
||||
|
||||
override suspend fun getRadiosWithId(id: Int): List<SatRadio> = emptyList()
|
||||
|
||||
override suspend fun insertRadios(radios: List<SatRadio>) {
|
||||
insertedRadios += radios
|
||||
override suspend fun insertRadios(radios: List<SatRadio>, isCustom: Boolean) {
|
||||
insertedRadios += radios.map { it.copy(isCustom = isCustom) }
|
||||
}
|
||||
|
||||
override suspend fun deleteManagedRadios() {
|
||||
insertedRadios.removeAll { !it.isCustom }
|
||||
}
|
||||
|
||||
override suspend fun deleteRadios() {
|
||||
@@ -214,7 +219,10 @@ private class FakeSettingsRepo(dataSources: DataSourcesSettings = defaultDataSou
|
||||
)
|
||||
|
||||
override val otherSettings: StateFlow<OtherSettings> = MutableStateFlow(
|
||||
OtherSettings(false, false, false, false, false, false, false, false)
|
||||
OtherSettings(
|
||||
false, false, false, false, false, false, false,
|
||||
shouldSeeWarning = false, shouldSeeWhatsNew = false
|
||||
)
|
||||
)
|
||||
|
||||
override val dataSourcesSettings: MutableStateFlow<DataSourcesSettings> = MutableStateFlow(dataSources)
|
||||
@@ -270,6 +278,40 @@ private class FakeSettingsRepo(dataSources: DataSourcesSettings = defaultDataSou
|
||||
override fun getAmSatCallsign(): String = ""
|
||||
|
||||
override fun setAmSatCallsign(callsign: String) = Unit
|
||||
|
||||
override val wavelogSettings: StateFlow<com.rtbishop.look4sat.core.domain.model.WavelogSettings> =
|
||||
MutableStateFlow(com.rtbishop.look4sat.core.domain.model.WavelogSettings())
|
||||
|
||||
override fun updateWavelogSettings(settings: com.rtbishop.look4sat.core.domain.model.WavelogSettings) = Unit
|
||||
|
||||
override fun getWorkedGrids(): Set<String> = emptySet()
|
||||
|
||||
private val workedGrids = MutableStateFlow(emptySet<String>())
|
||||
|
||||
override fun setWorkedGrids(grids: Set<String>) {
|
||||
workedGrids.value = grids
|
||||
}
|
||||
|
||||
override val lotwSettings: StateFlow<com.rtbishop.look4sat.core.domain.model.LoTWSettings> =
|
||||
MutableStateFlow(com.rtbishop.look4sat.core.domain.model.LoTWSettings())
|
||||
|
||||
override fun updateLoTWSettings(settings: com.rtbishop.look4sat.core.domain.model.LoTWSettings) = Unit
|
||||
override fun getLastLotwSyncDate(): String = ""
|
||||
override fun setLastLotwSyncDate(date: String) = Unit
|
||||
override fun getLastLotwSyncCallsign(): String = ""
|
||||
override fun setLastLotwSyncCallsign(callsign: String) = Unit
|
||||
|
||||
override fun getWorkedGridQsos(): Map<String, List<com.rtbishop.look4sat.core.domain.model.GridQso>> = emptyMap()
|
||||
|
||||
override fun setWorkedGridQsos(qsos: Map<String, List<com.rtbishop.look4sat.core.domain.model.GridQso>>) = Unit
|
||||
|
||||
override fun getRoamedGrids(): Set<String> = emptySet()
|
||||
|
||||
private val roamedGrids = MutableStateFlow(emptySet<String>())
|
||||
|
||||
override fun setRoamedGrids(grids: Set<String>) {
|
||||
roamedGrids.value = grids
|
||||
}
|
||||
}
|
||||
|
||||
private fun defaultDataSourcesSettings(): DataSourcesSettings {
|
||||
|
||||
+312
@@ -0,0 +1,312 @@
|
||||
package com.rtbishop.look4sat.core.data.repository
|
||||
|
||||
import com.rtbishop.look4sat.core.domain.repository.LoTWResult
|
||||
import org.junit.Assert.assertEquals
|
||||
import org.junit.Assert.assertNull
|
||||
import org.junit.Assert.assertTrue
|
||||
import org.junit.Test
|
||||
|
||||
class LoTWRepositoryTest {
|
||||
|
||||
private val repo = LoTWRepository()
|
||||
|
||||
private fun report(vararg records: String): String =
|
||||
buildString {
|
||||
append("<ADIF_VERS:5>3.1.4\n")
|
||||
append("<PROGRAMID:8>look4sat\n")
|
||||
append("<eoh>\n")
|
||||
records.forEach { append(it).append("\n") }
|
||||
}
|
||||
|
||||
@Test
|
||||
fun parseRejectsBodyWithoutEoh() {
|
||||
assertNull(repo.parseConfirmedGrids("<HTML>Username/password incorrect</HTML>"))
|
||||
}
|
||||
|
||||
@Test
|
||||
fun parseCollectsOnlySatelliteGrids() {
|
||||
// Satellite QSO: PROP_MODE SAT, confirmed, opponent grid.
|
||||
val satQso = "<CALL:6>BA7OPF\n" +
|
||||
"<QSO_DATE:8>20260820\n" +
|
||||
"<PROP_MODE:3>SAT\n" +
|
||||
"<SAT_NAME:5>FO-29\n" +
|
||||
"<GRIDSQUARE:4>NL47\n" +
|
||||
"<EOR>\n"
|
||||
// Ground QSO: same grid but no PROP_MODE -> must be excluded.
|
||||
val groundQso = "<CALL:6>BA7OPF\n" +
|
||||
"<QSO_DATE:8>20260821\n" +
|
||||
"<GRIDSQUARE:4>NL47\n" +
|
||||
"<EOR>\n"
|
||||
val result = repo.parseConfirmedGrids(report(satQso, groundQso))
|
||||
assertEquals(setOf("NL47"), result)
|
||||
}
|
||||
|
||||
@Test
|
||||
fun parseSupportsVuccGridPairsAndSixCharGrids() {
|
||||
val satQso = "<PROP_MODE:3>SAT\n" +
|
||||
"<SAT_NAME:5>SO-50\n" +
|
||||
"<GRIDSQUARE:6>OM60IL\n" +
|
||||
"<VUCC_GRIDS:11>EN52en,EN53fa\n" +
|
||||
"<EOR>\n"
|
||||
val result = repo.parseConfirmedGrids(report(satQso))
|
||||
assertEquals(setOf("OM60", "EN52", "EN53"), result)
|
||||
}
|
||||
|
||||
@Test
|
||||
fun parsePropModeDoesNotLeakAcrossRecords() {
|
||||
// PROP_MODE SAT record first, then a ground QSO with a grid — the second
|
||||
// record must not inherit the satellite flag after its own <EOR>.
|
||||
val satQso = "<PROP_MODE:3>SAT\n<GRIDSQUARE:4>OL62\n<EOR>\n"
|
||||
val groundQso = "<GRIDSQUARE:4>PM00\n<EOR>\n"
|
||||
val result = repo.parseConfirmedGrids(report(satQso, groundQso))
|
||||
assertEquals(setOf("OL62"), result)
|
||||
}
|
||||
|
||||
@Test
|
||||
fun parseHandlesAlphabeticalFieldOrder() {
|
||||
// Real lotwreport.adi emits fields in ALPHABETICAL order: GRIDSQUARE (G)
|
||||
// and VUCC_GRIDS come BEFORE PROP_MODE (P) inside each record. The old
|
||||
// sequential gate (add only while propMode == SAT) dropped every grid on
|
||||
// real reports — the buffered parser must collect them regardless of
|
||||
// field order and filter at <EOR>.
|
||||
val satQso = "<CALL:6>BA7OPF\n" +
|
||||
"<GRIDSQUARE:4>NL47\n" +
|
||||
"<MODE:3>FM\n" +
|
||||
"<PROP_MODE:3>SAT\n" +
|
||||
"<SAT_NAME:5>FO-29\n" +
|
||||
"<VUCC_GRIDS:11>EN52en,EN53fa\n" +
|
||||
"<EOR>\n"
|
||||
val groundQso = "<CALL:6>BA7OPF\n" +
|
||||
"<GRIDSQUARE:4>PM95\n" +
|
||||
"<QSO_DATE:8>20260821\n" +
|
||||
"<EOR>\n"
|
||||
val result = repo.parseConfirmedGrids(report(satQso, groundQso))
|
||||
assertEquals(setOf("NL47", "EN52", "EN53"), result)
|
||||
}
|
||||
|
||||
@Test
|
||||
fun parseReturnsEmptySetForReportWithoutGrids() {
|
||||
val satQso = "<PROP_MODE:3>SAT\n<SAT_NAME:5>AO-07\n<EOR>\n"
|
||||
assertEquals(emptySet<String>(), repo.parseConfirmedGrids(report(satQso)))
|
||||
}
|
||||
|
||||
// region parseConfirmedGridQsos
|
||||
|
||||
private val satQsoFull = "<CALL:5>A50QO\n" +
|
||||
"<QSO_DATE:8>20260820\n" +
|
||||
"<TIME_ON:6>113045\n" +
|
||||
"<PROP_MODE:3>SAT\n" +
|
||||
"<SAT_NAME:5>FO-29\n" +
|
||||
"<MODE:2>CW\n" +
|
||||
"<BAND:3>70CM\n" +
|
||||
"<BAND_RX:3>2M\n" +
|
||||
"<GRIDSQUARE:4>NL47\n" +
|
||||
"<EOR>\n"
|
||||
|
||||
@Test
|
||||
fun parseQsosExtractsSatelliteDetail() {
|
||||
val result = repo.parseConfirmedGridQsos(report(satQsoFull))!!
|
||||
val qsos = result["NL47"]!!
|
||||
assertEquals(1, qsos.size)
|
||||
val qso = qsos[0]
|
||||
assertEquals("A50QO", qso.call)
|
||||
assertEquals("FO-29", qso.satName)
|
||||
assertEquals("CW", qso.mode)
|
||||
assertEquals("2M", qso.bandUp)
|
||||
assertEquals("70CM", qso.bandDown)
|
||||
assertEquals("V/U", qso.bandLabel)
|
||||
assertEquals(2026, java.time.Instant.ofEpochMilli(qso.epochMs).atZone(java.time.ZoneOffset.UTC).year)
|
||||
}
|
||||
|
||||
@Test
|
||||
fun parseQsosExcludesGroundQsos() {
|
||||
val groundQso = "<CALL:6>BA7OPF\n<QSO_DATE:8>20260821\n<GRIDSQUARE:4>NL47\n<EOR>\n"
|
||||
val result = repo.parseConfirmedGridQsos(report(satQsoFull, groundQso))!!
|
||||
assertEquals(1, result["NL47"]!!.size)
|
||||
}
|
||||
|
||||
@Test
|
||||
fun parseQsosVuccPairFeedsBothGrids() {
|
||||
val qso = "<PROP_MODE:3>SAT\n<SAT_NAME:5>SO-50\n" +
|
||||
"<QSO_DATE:8>20260819\n<TIME_ON:4>1231\n" +
|
||||
"<VUCC_GRIDS:11>EN52en,EN53fa\n<EOR>\n"
|
||||
val result = repo.parseConfirmedGridQsos(report(qso))!!
|
||||
assertEquals(setOf("EN52", "EN53"), result.keys)
|
||||
assertEquals(result["EN52"]!!.first(), result["EN53"]!!.first())
|
||||
}
|
||||
|
||||
@Test
|
||||
fun parseQsosVuccQuadrupleFeedsAllFourGrids() {
|
||||
// VUCC allows up to four grids in one contact.
|
||||
val qso = "<PROP_MODE:3>SAT\n<SAT_NAME:5>SO-50\n" +
|
||||
"<QSO_DATE:8>20260819\n<TIME_ON:4>1231\n" +
|
||||
"<VUCC_GRIDS:23>EN52en,EN53fa,EN42gj,EN43kh\n<EOR>\n"
|
||||
val result = repo.parseConfirmedGridQsos(report(qso))!!
|
||||
assertEquals(setOf("EN52", "EN53", "EN42", "EN43"), result.keys)
|
||||
result.values.forEach { assertEquals(1, it.size) }
|
||||
}
|
||||
|
||||
@Test
|
||||
fun parseQsosRejectsBodyWithoutEoh() {
|
||||
assertNull(repo.parseConfirmedGridQsos("<HTML>Username/password incorrect</HTML>"))
|
||||
}
|
||||
|
||||
@Test
|
||||
fun parseQsosCapturesOwnGridPerQso() {
|
||||
// MY_GRIDSQUARE arrives BEFORE PROP_MODE (ADIF fields are emitted
|
||||
// alphabetically); the per-record buffer must still attach it to the QSO.
|
||||
val qso1 = "<CALL:5>A50QO\n<QSO_DATE:8>20260820\n<MY_GRIDSQUARE:4>OL62\n" +
|
||||
"<PROP_MODE:3>SAT\n<SAT_NAME:5>FO-29\n<MODE:2>CW\n" +
|
||||
"<BAND:3>70CM\n<BAND_RX:3>2M\n<GRIDSQUARE:4>NL47\n<EOR>\n"
|
||||
val qso2 = "<CALL:6>BG7ZFK\n<QSO_DATE:8>20260819\n<MY_GRIDSQUARE:4>OL72\n" +
|
||||
"<PROP_MODE:3>SAT\n<SAT_NAME:5>SO-50\n<MODE:3>FM\n" +
|
||||
"<BAND:3>70CM\n<BAND_RX:3>2M\n<GRIDSQUARE:4>OK48\n<EOR>\n"
|
||||
val result = repo.parseConfirmedGridQsos(report(qso1, qso2))!!
|
||||
assertEquals("OL62", result["NL47"]!!.first().myGrid)
|
||||
assertEquals("OL72", result["OK48"]!!.first().myGrid)
|
||||
// Ground QSO (no PROP_MODE=SAT) must not leak its MY_GRIDSQUARE.
|
||||
val ground = "<CALL:6>BA7OPF\n<QSO_DATE:8>20260821\n<MY_GRIDSQUARE:4>OL62\n<GRIDSQUARE:4>NL47\n<EOR>\n"
|
||||
assertTrue(repo.parseConfirmedGridQsos(report(qso1, ground))!!.values.all { it.all { q -> q.myGrid == "OL62" } })
|
||||
}
|
||||
|
||||
// endregion
|
||||
|
||||
// region parseRoamedGrids (MY_GRIDSQUARE = grids the account operated from)
|
||||
|
||||
@Test
|
||||
fun parseRoamedGridsCollectsOwnStationGrids() {
|
||||
// Satellite QSOs carry MY_GRIDSQUARE = the grid the account itself
|
||||
// operated from (the "roamed/activated" set shown as blue stripes).
|
||||
val qso1 = "<CALL:6>BA7OPF\n<QSO_DATE:8>20260820\n<PROP_MODE:3>SAT\n<SAT_NAME:5>IO-86\n" +
|
||||
"<MY_GRIDSQUARE:4>OL62\n<GRIDSQUARE:4>PM95\n<EOR>\n"
|
||||
val qso2 = "<CALL:6>BA7OPF\n<QSO_DATE:8>20260901\n<PROP_MODE:3>SAT\n<SAT_NAME:5>IO-86\n" +
|
||||
"<MY_GRIDSQUARE:4>OL72\n<GRIDSQUARE:4>NL47\n<EOR>\n"
|
||||
assertEquals(setOf("OL62", "OL72"), repo.parseRoamedGrids(report(qso1, qso2)))
|
||||
}
|
||||
|
||||
@Test
|
||||
fun parseRoamedGridsIgnoresGroundQsos() {
|
||||
val ground = "<CALL:6>BA7OPF\n<QSO_DATE:8>20260821\n<MY_GRIDSQUARE:4>OL72\n<EOR>\n"
|
||||
assertEquals(emptySet<String>(), repo.parseRoamedGrids(report(ground)))
|
||||
}
|
||||
|
||||
@Test
|
||||
fun parseRoamedGridsDoesNotConfuseGridsquareWithMyGridsquare() {
|
||||
// GRIDSQUARE (opposite station's grid) must never leak into the roamed set.
|
||||
val qso = "<PROP_MODE:3>SAT\n<SAT_NAME:5>SO-50\n<MY_GRIDSQUARE:4>OL62\n" +
|
||||
"<GRIDSQUARE:6>OM60IL\n<EOR>\n"
|
||||
assertEquals(setOf("OL62"), repo.parseRoamedGrids(report(qso)))
|
||||
}
|
||||
|
||||
@Test
|
||||
fun parseRoamedGridsTruncatesSixCharToFour() {
|
||||
val qso = "<PROP_MODE:3>SAT\n<SAT_NAME:5>IO-86\n<MY_GRIDSQUARE:6>OL62AA\n<EOR>\n"
|
||||
assertEquals(setOf("OL62"), repo.parseRoamedGrids(report(qso)))
|
||||
}
|
||||
|
||||
@Test
|
||||
fun parseRoamedGridsHandlesAlphabeticalFieldOrder() {
|
||||
// Real lotwreport.adi emits fields alphabetically, so <MY_GRIDSQUARE>
|
||||
// (M) arrives BEFORE <PROP_MODE> (P). The old sequential gate (add only
|
||||
// while propMode == SAT) silently returned an EMPTY set on real reports —
|
||||
// this is the exact bug that made the blue roamed stripes never appear.
|
||||
val qso = "<CALL:6>BA7OPF\n" +
|
||||
"<GRIDSQUARE:4>PM95\n" +
|
||||
"<MY_GRIDSQUARE:6>OL72XX\n" +
|
||||
"<PROP_MODE:3>SAT\n" +
|
||||
"<SAT_NAME:5>IO-86\n" +
|
||||
"<EOR>\n"
|
||||
assertEquals(setOf("OL72"), repo.parseRoamedGrids(report(qso)))
|
||||
}
|
||||
|
||||
@Test
|
||||
fun parseRoamedGridsRejectsBodyWithoutEoh() {
|
||||
assertNull(repo.parseRoamedGrids("<HTML>Username/password incorrect</HTML>"))
|
||||
}
|
||||
|
||||
// endregion
|
||||
|
||||
// region failure classification (fetchReportBody -> LoTWResult mapping)
|
||||
|
||||
@Test
|
||||
fun failureClassificationMapsEachException() {
|
||||
// LoTWRepository.toResult() must keep each failure cause distinct so
|
||||
// the UI can show a specific message per cause.
|
||||
assertEquals(
|
||||
LoTWResult.BadCredentials,
|
||||
repo.toResult(LoTWRepository.CredentialsException())
|
||||
)
|
||||
assertEquals(
|
||||
LoTWResult.RateLimited,
|
||||
repo.toResult(LoTWRepository.RateLimitException())
|
||||
)
|
||||
assertEquals(
|
||||
LoTWResult.Timeout,
|
||||
repo.toResult(LoTWRepository.TimeoutException("read timed out"))
|
||||
)
|
||||
val net = repo.toResult(java.io.IOException("HTTP 500"))
|
||||
assertEquals(LoTWResult.NetworkError("HTTP 500"), net)
|
||||
}
|
||||
|
||||
|
||||
@Test
|
||||
fun parseQsosExtractsAwardFields() {
|
||||
// Award statistics rely on the DXCC/CQZ/STATE fields coming straight
|
||||
// from LoTW's qso_qsldetail report (STATE depends on DXCC). LoTW
|
||||
// writes STATE as "CODE // NAME" (verified with a real report 2026-09);
|
||||
// the parser must strip the name suffix and keep the bare code.
|
||||
val qso = "<CALL:5>BG7XYZ\n" +
|
||||
"<QSO_DATE:8>20260820\n<TIME_ON:4>1130\n" +
|
||||
"<PROP_MODE:3>SAT\n<SAT_NAME:5>FO-29\n<MODE:2>CW\n" +
|
||||
"<DXCC:3>318\n<COUNTRY:5>CHINA\n<CQZ:2>24\n<STATE:13>GD // Guangdong\n" +
|
||||
"<GRIDSQUARE:4>OL62\n<EOR>\n"
|
||||
val result = repo.parseConfirmedGridQsos(report(qso))!!
|
||||
val parsed = result["OL62"]!!.first()
|
||||
assertEquals(318, parsed.dxcc)
|
||||
assertEquals("CHINA", parsed.country)
|
||||
assertEquals(24, parsed.cqz)
|
||||
assertEquals("GD", parsed.state)
|
||||
}
|
||||
|
||||
@Test
|
||||
fun parseQsosStripsStateNameSuffixForAllEntities() {
|
||||
// Japan prefecture: "34 // Tottori-ken" -> "34" (WAJA matching needs
|
||||
// the 2-digit code). US states also arrive as "CODE // Name".
|
||||
val jp = "<CALL:5>JH0ABC\n<QSO_DATE:8>20260820\n<TIME_ON:4>1130\n" +
|
||||
"<PROP_MODE:3>SAT\n<SAT_NAME:5>RS-44\n<DXCC:3>339\n<COUNTRY:7>JAPAN\n" +
|
||||
"<STATE:18>34 // Tottori-ken\n<GRIDSQUARE:4>PM95\n<EOR>\n"
|
||||
val us = "<CALL:5>K1ABC\n<QSO_DATE:8>20260820\n<TIME_ON:4>1130\n" +
|
||||
"<PROP_MODE:3>SAT\n<SAT_NAME:5>AO-07\n<DXCC:3>291\n<COUNTRY:12>UNITED STATES\n" +
|
||||
"<STATE:22>CA // California\n<GRIDSQUARE:4>EM40\n<EOR>\n"
|
||||
val result = repo.parseConfirmedGridQsos(report(jp, us))!!
|
||||
assertEquals("34", result["PM95"]!!.first().state)
|
||||
assertEquals("CA", result["EM40"]!!.first().state)
|
||||
}
|
||||
|
||||
@Test
|
||||
fun parseQsosLeavesAwardFieldsNullWhenAbsent() {
|
||||
val qso = "<CALL:5>JH0ABC\n<QSO_DATE:8>20260820\n<TIME_ON:4>1130\n" +
|
||||
"<PROP_MODE:3>SAT\n<SAT_NAME:5>RS-44\n<GRIDSQUARE:4>PM95\n<EOR>\n"
|
||||
val result = repo.parseConfirmedGridQsos(report(qso))!!
|
||||
val parsed = result["PM95"]!!.first()
|
||||
assertNull(parsed.dxcc)
|
||||
assertNull(parsed.country)
|
||||
assertNull(parsed.cqz)
|
||||
assertNull(parsed.state)
|
||||
}
|
||||
|
||||
@Test
|
||||
fun parseQsosAwardFieldsDoNotLeakAcrossRecords() {
|
||||
val withFields = "<CALL:5>BG7AAA\n<QSO_DATE:8>20260820\n<TIME_ON:4>1130\n" +
|
||||
"<PROP_MODE:3>SAT\n<SAT_NAME:5>FO-29\n<DXCC:3>318\n<CQZ:2>24\n<STATE:2>GD\n" +
|
||||
"<GRIDSQUARE:4>OL62\n<EOR>\n"
|
||||
val withoutFields = "<CALL:5>JH0BBB\n<QSO_DATE:8>20260821\n<TIME_ON:4>1130\n" +
|
||||
"<PROP_MODE:3>SAT\n<SAT_NAME:5>RS-44\n<GRIDSQUARE:4>PM95\n<EOR>\n"
|
||||
val result = repo.parseConfirmedGridQsos(report(withFields, withoutFields))!!
|
||||
assertNull(result["PM95"]!!.first().dxcc)
|
||||
assertNull(result["PM95"]!!.first().cqz)
|
||||
assertNull(result["PM95"]!!.first().state)
|
||||
}
|
||||
|
||||
// endregion
|
||||
}
|
||||
@@ -0,0 +1,194 @@
|
||||
/*
|
||||
* Look4Sat. Amateur radio satellite tracker and pass predictor.
|
||||
* Copyright (C) 2019-2026 Arty Bishop and contributors.
|
||||
*
|
||||
* This program is free software: you can redistribute it and/or modify
|
||||
* it under the terms of the GNU General Public License as published by
|
||||
* the Free Software Foundation, either version 3 of the License, or
|
||||
* (at your option) any later version.
|
||||
*
|
||||
* This program is distributed in the hope that it will be useful,
|
||||
* but WITHOUT ANY WARRANTY; without even the implied warranty of
|
||||
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
|
||||
* GNU General Public License for more details.
|
||||
*
|
||||
* You should have received a copy of the GNU General Public License
|
||||
* along with this program. If not, see <https://www.gnu.org/licenses/>.
|
||||
*/
|
||||
package com.rtbishop.look4sat.core.domain.model
|
||||
|
||||
/**
|
||||
* Award progress computed from the confirmed-QSO store.
|
||||
*
|
||||
* @param type which award
|
||||
* @param workedKeys matching keys for the boundary assets: each is compared
|
||||
* against the region "code" field of the award's GeoJSON
|
||||
* (e.g. WAPC -> "GD", WAJA -> "34", WAZ -> "24",
|
||||
* WAS -> "CA", DXCC -> "318", VUCC -> "OL62").
|
||||
* @param count distinct worked units (grids / entities / provinces / ...)
|
||||
* @param target units required for the award
|
||||
*/
|
||||
data class AwardProgress(
|
||||
val type: AwardType,
|
||||
val workedKeys: Set<String>,
|
||||
val count: Int,
|
||||
val target: Int
|
||||
)
|
||||
|
||||
enum class AwardType { DXCC, VUCC, WAPC, WAJA, WAZ, WAS }
|
||||
|
||||
object AwardTargets {
|
||||
const val DXCC = 100
|
||||
const val VUCC = 100
|
||||
const val WAPC = 34
|
||||
const val WAJA = 47
|
||||
const val WAZ = 40
|
||||
const val WAS = 50
|
||||
}
|
||||
|
||||
/**
|
||||
* Derives six-award progress from the confirmed QSO store.
|
||||
*
|
||||
* Award rules (ADIF / award-program semantics):
|
||||
* - VUCC: distinct 4-char gridsquares.
|
||||
* - DXCC: distinct ARRL DXCC entities (from the QSO's dxcc field; falls back
|
||||
* to a callsign-prefix guess when LoTW omitted it).
|
||||
* - WAPC: distinct Chinese provinces (31 mainland STATE codes) plus the
|
||||
* Hong Kong / Macao / Taiwan entities (counted as their own provinces).
|
||||
* - WAJA: distinct Japanese prefectures (STATE code "01".."47").
|
||||
* - WAZ: distinct CQ zones.
|
||||
* - WAS: distinct US states (STATE abbreviations).
|
||||
*
|
||||
* The ADIF STATE field's meaning depends on the DXCC entity
|
||||
* ("STATE depends on DXCC"), so every QSO is first classified by entity.
|
||||
*/
|
||||
object AwardCalculator {
|
||||
|
||||
fun calculate(qsosByGrid: Map<String, List<GridQso>>): List<AwardProgress> {
|
||||
val all = qsosByGrid.values.flatten()
|
||||
return listOf(
|
||||
AwardProgress(
|
||||
AwardType.VUCC,
|
||||
workedKeys = qsosByGrid.keys,
|
||||
count = qsosByGrid.size,
|
||||
target = AwardTargets.VUCC
|
||||
),
|
||||
calculateDxcc(all),
|
||||
calculateWapc(all),
|
||||
calculateWaja(all),
|
||||
calculateWaz(all),
|
||||
calculateWas(all)
|
||||
)
|
||||
}
|
||||
|
||||
private fun calculateDxcc(all: List<GridQso>): AwardProgress {
|
||||
val keys = mutableSetOf<String>()
|
||||
for (q in all) {
|
||||
val code = q.dxcc ?: prefixEntityCode(q.call)
|
||||
if (code != null) keys.add(code.toString())
|
||||
}
|
||||
return AwardProgress(AwardType.DXCC, keys, keys.size, AwardTargets.DXCC)
|
||||
}
|
||||
|
||||
private fun calculateWapc(all: List<GridQso>): AwardProgress {
|
||||
val keys = mutableSetOf<String>()
|
||||
for (q in all) {
|
||||
when (entityOf(q)) {
|
||||
Entity.CHINA -> q.state?.trim()?.uppercase()?.takeIf { it in CN_STATES }?.let { keys.add(it) }
|
||||
Entity.HONG_KONG -> keys.add(HK_CODE)
|
||||
Entity.MACAO -> keys.add(MO_CODE)
|
||||
Entity.TAIWAN -> keys.add(TW_CODE)
|
||||
else -> {}
|
||||
}
|
||||
}
|
||||
return AwardProgress(AwardType.WAPC, keys, keys.size, AwardTargets.WAPC)
|
||||
}
|
||||
|
||||
private fun calculateWaja(all: List<GridQso>): AwardProgress {
|
||||
val keys = mutableSetOf<String>()
|
||||
for (q in all) {
|
||||
if (entityOf(q) != Entity.JAPAN) continue
|
||||
q.state?.trim()?.takeIf { it.length == 2 && it.all(Char::isDigit) }?.let { keys.add(it) }
|
||||
}
|
||||
return AwardProgress(AwardType.WAJA, keys, keys.size, AwardTargets.WAJA)
|
||||
}
|
||||
|
||||
private fun calculateWaz(all: List<GridQso>): AwardProgress {
|
||||
val keys = mutableSetOf<String>()
|
||||
for (q in all) {
|
||||
q.cqz?.takeIf { it in 1..40 }?.let { keys.add(it.toString()) }
|
||||
}
|
||||
return AwardProgress(AwardType.WAZ, keys, keys.size, AwardTargets.WAZ)
|
||||
}
|
||||
|
||||
private fun calculateWas(all: List<GridQso>): AwardProgress {
|
||||
val keys = mutableSetOf<String>()
|
||||
for (q in all) {
|
||||
if (entityOf(q) != Entity.USA) continue
|
||||
q.state?.trim()?.uppercase()?.takeIf { it in US_STATES }?.let { keys.add(it) }
|
||||
}
|
||||
return AwardProgress(AwardType.WAS, keys, keys.size, AwardTargets.WAS)
|
||||
}
|
||||
|
||||
private enum class Entity { CHINA, HONG_KONG, MACAO, TAIWAN, JAPAN, USA, OTHER }
|
||||
|
||||
private fun entityOf(q: GridQso): Entity = when (q.dxcc) {
|
||||
318 -> Entity.CHINA
|
||||
321 -> Entity.HONG_KONG
|
||||
152 -> Entity.MACAO
|
||||
386 -> Entity.TAIWAN
|
||||
339 -> Entity.JAPAN
|
||||
291 -> Entity.USA
|
||||
else -> prefixEntity(q.call)
|
||||
}
|
||||
|
||||
/** Coarse entity from callsign prefix, used when LoTW omitted the DXCC field. */
|
||||
private fun prefixEntity(call: String): Entity {
|
||||
val c = call.uppercase().substringBefore('/')
|
||||
return when {
|
||||
CN_PREFIXES.any { c.startsWith(it) } -> Entity.CHINA
|
||||
c.startsWith("VR") -> Entity.HONG_KONG
|
||||
c.startsWith("XX9") -> Entity.MACAO
|
||||
TW_PREFIXES.any { c.startsWith(it) } -> Entity.TAIWAN
|
||||
JP_PREFIXES.any { c.startsWith(it) } -> Entity.JAPAN
|
||||
US_PREFIXES.any { c.startsWith(it) } -> Entity.USA
|
||||
else -> Entity.OTHER
|
||||
}
|
||||
}
|
||||
|
||||
/** ARRL DXCC entity code guessed from callsign prefix (very coarse). */
|
||||
private fun prefixEntityCode(call: String): Int? {
|
||||
return when (prefixEntity(call)) {
|
||||
Entity.CHINA -> 318
|
||||
Entity.HONG_KONG -> 321
|
||||
Entity.MACAO -> 152
|
||||
Entity.TAIWAN -> 386
|
||||
Entity.JAPAN -> 339
|
||||
Entity.USA -> 291
|
||||
else -> null
|
||||
}
|
||||
}
|
||||
|
||||
private val CN_PREFIXES = listOf("BA", "BD", "BG", "BH", "BI", "BY", "BJ", "BK", "BL", "BQ", "BR", "BS")
|
||||
private val TW_PREFIXES = listOf("BM", "BV", "BU", "BW", "BX", "BN", "BO", "BT", "BZ")
|
||||
private val JP_PREFIXES =
|
||||
listOf("7J", "7K", "7L", "7M", "7N") + ('A'..'Z').map { "J$it" }
|
||||
private val US_PREFIXES =
|
||||
listOf("AA", "AB", "AC", "AD", "AE", "AF", "AG", "AH", "AI", "AJ", "AK", "AL", "K", "N", "W")
|
||||
|
||||
private val CN_STATES = setOf(
|
||||
"AH", "BJ", "CQ", "FJ", "GD", "GS", "GX", "GZ", "HA", "HB", "HE", "HI", "HL", "HN", "JL",
|
||||
"JS", "JX", "LN", "NM", "NX", "QH", "SC", "SD", "SH", "SN", "SX", "TJ", "XJ", "XZ", "YN", "ZJ"
|
||||
)
|
||||
|
||||
private val US_STATES = setOf(
|
||||
"AL", "AK", "AZ", "AR", "CA", "CO", "CT", "DE", "FL", "GA", "HI", "ID", "IL", "IN", "IA",
|
||||
"KS", "KY", "LA", "ME", "MD", "MA", "MI", "MN", "MS", "MO", "MT", "NE", "NV", "NH", "NJ",
|
||||
"NM", "NY", "NC", "ND", "OH", "OK", "OR", "PA", "RI", "SC", "SD", "TN", "TX", "UT", "VT",
|
||||
"VA", "WA", "WV", "WI", "WY"
|
||||
)
|
||||
|
||||
private const val HK_CODE = "HK"
|
||||
private const val MO_CODE = "MO"
|
||||
private const val TW_CODE = "TW"
|
||||
}
|
||||
@@ -0,0 +1,78 @@
|
||||
/*
|
||||
* Look4Sat. Amateur radio satellite tracker and pass predictor.
|
||||
* Copyright (C) 2019-2026 Arty Bishop and contributors.
|
||||
*
|
||||
* This program is free software: you can redistribute it and/or modify
|
||||
* it under the terms of the GNU General Public License as published by
|
||||
* the Free Software Foundation, either version 3 of the License, or
|
||||
* (at your option) any later version.
|
||||
*
|
||||
* This program is distributed in the hope that it will be useful,
|
||||
* but WITHOUT ANY WARRANTY; without even the implied warranty of
|
||||
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
|
||||
* GNU General Public License for more details.
|
||||
*
|
||||
* You should have received a copy of the GNU General Public License
|
||||
* along with this program. If not, see <https://www.gnu.org/licenses/>.
|
||||
*/
|
||||
package com.rtbishop.look4sat.core.domain.model
|
||||
|
||||
/**
|
||||
* One confirmed satellite QSO as reported by LoTW, kept per worked gridsquare
|
||||
* so the map can show, for any worked grid, which callsigns were worked there
|
||||
* and when.
|
||||
*
|
||||
* @param call opposite station callsign (as logged by the opposite op)
|
||||
* @param epochMs QSO date+time in UTC milliseconds
|
||||
* @param satName satellite name (e.g. "FO-29")
|
||||
* @param mode ADIF mode (FM / CW / SSB ...)
|
||||
* @param bandUp uplink band as reported by LoTW (BAND_RX: "70CM", "2M", "10M"...)
|
||||
* @param bandDown downlink band (BAND: "2M", "70CM"...) — may be empty when
|
||||
* LoTW did not include it
|
||||
* @param dxcc ARRL DXCC entity code of the opposite station (from ADIF
|
||||
* <DXCC>), or null when LoTW omitted it
|
||||
* @param country DXCC entity name (ADIF <COUNTRY>), or null
|
||||
* @param cqz CQ zone of the opposite station (ADIF <CQZ>), or null
|
||||
* @param state Primary administrative subdivision of the opposite station
|
||||
* (ADIF <STATE>). Interpretation depends on the DXCC entity:
|
||||
* China -> province code ("GD"), Japan -> prefecture number
|
||||
* ("34"), USA -> state abbreviation ("CA"). Null when absent.
|
||||
*/
|
||||
data class GridQso(
|
||||
val call: String,
|
||||
val epochMs: Long,
|
||||
val satName: String,
|
||||
val mode: String,
|
||||
val bandUp: String,
|
||||
val bandDown: String,
|
||||
val dxcc: Int? = null,
|
||||
val country: String? = null,
|
||||
val cqz: Int? = null,
|
||||
val state: String? = null,
|
||||
/** 4-char grid the station itself operated from (ADIF MY_GRIDSQUARE). */
|
||||
val myGrid: String? = null
|
||||
) {
|
||||
/** Short uplink/downlink band label ("U/V", "V/A"), or "" when unknown. */
|
||||
val bandLabel: String
|
||||
get() {
|
||||
val up = bandAbbrev(bandUp)
|
||||
val down = bandAbbrev(bandDown)
|
||||
return when {
|
||||
up.isNotEmpty() && down.isNotEmpty() -> "$up/$down"
|
||||
up.isNotEmpty() -> up
|
||||
else -> ""
|
||||
}
|
||||
}
|
||||
|
||||
private fun bandAbbrev(band: String): String = when (band.trim().uppercase()) {
|
||||
"70CM" -> "U"
|
||||
"2M" -> "V"
|
||||
"10M" -> "A"
|
||||
"6M" -> "V"
|
||||
"1.2G" -> "L"
|
||||
"2.4G" -> "S"
|
||||
"23CM" -> "L"
|
||||
"13CM" -> "S"
|
||||
else -> band.trim().uppercase()
|
||||
}
|
||||
}
|
||||
@@ -32,5 +32,7 @@ data class SatRadio(
|
||||
@SerialName("uplink_high") val uplinkHigh: Long?,
|
||||
@SerialName("uplink_mode") val uplinkMode: String?,
|
||||
@SerialName("invert") val isInverted: Boolean,
|
||||
@SerialName("norad_cat_id") val catnum: Int?
|
||||
@SerialName("norad_cat_id") val catnum: Int?,
|
||||
/** Set for manually imported transceivers, which remote updates must not replace. */
|
||||
val isCustom: Boolean = false
|
||||
)
|
||||
+46
-2
@@ -22,7 +22,51 @@ interface ILoTWRepository {
|
||||
|
||||
/**
|
||||
* Fetch all confirmed (QSL_RCVD=Y) gridsquares for the given LoTW account.
|
||||
* Returns the 4-char grid set, or null on any failure (network / bad credentials).
|
||||
* Returns the 4-char grid set with an explicit failure cause on error.
|
||||
*/
|
||||
suspend fun fetchConfirmedGrids(callsign: String, password: String): Set<String>?
|
||||
suspend fun fetchConfirmedGrids(callsign: String, password: String): LoTWResult
|
||||
|
||||
/**
|
||||
* Same report, but keeps the per-QSO detail of every confirmed satellite
|
||||
* QSO (call / time / satellite / mode / bands), grouped by worked 4-char
|
||||
* gridsquare. Failure cause is kept explicit.
|
||||
*
|
||||
* @param since QSL-since date ("yyyyMMdd" or "yyyy-MM-dd"); use an early
|
||||
* date for a full report, or the last sync date for an
|
||||
* incremental pull. Empty falls back to a full report.
|
||||
* @param onProgress streamed download progress (phase + bytes + estimate),
|
||||
* invoked from the IO dispatcher; may be called on every
|
||||
* read chunk.
|
||||
*/
|
||||
suspend fun fetchConfirmedGridQsos(
|
||||
callsign: String,
|
||||
password: String,
|
||||
since: String = "",
|
||||
onProgress: (LoTWProgress) -> Unit = {}
|
||||
): LoTWResult
|
||||
}
|
||||
|
||||
/** Streamed progress of a LoTW report download. */
|
||||
data class LoTWProgress(
|
||||
val phase: LoTWPhase,
|
||||
/** Bytes read so far (uncompressed body). */
|
||||
val bytesRead: Long = 0,
|
||||
/** Estimated total body bytes, derived from <APP_LoTW_NUMREC>; 0 before known. */
|
||||
val expectedBytes: Long = 0,
|
||||
/** Smoothed download speed in bytes/second; 0 while unknown. */
|
||||
val speedBps: Long = 0,
|
||||
/** Total QSL records reported in the header (<APP_LoTW_NUMREC>); 0 before known. */
|
||||
val qsoCount: Long = 0
|
||||
) {
|
||||
/** Fraction 0..1 of the estimated body already read; 0 while unknown. */
|
||||
val fraction: Float
|
||||
get() = if (expectedBytes > 0 && bytesRead > 0)
|
||||
(bytesRead.toFloat() / expectedBytes).coerceIn(0f, 1f) else 0f
|
||||
|
||||
/** Estimated seconds remaining; 0 while size or speed is unknown. */
|
||||
val remainingSeconds: Long
|
||||
get() = if (expectedBytes > 0 && speedBps > 0)
|
||||
((expectedBytes - bytesRead) / speedBps).coerceAtLeast(0) else 0L
|
||||
}
|
||||
|
||||
enum class LoTWPhase { Connecting, Downloading }
|
||||
+12
@@ -99,10 +99,22 @@ interface ISettingsRepo {
|
||||
fun updateWavelogSettings(settings: WavelogSettings)
|
||||
fun getWorkedGrids(): Set<String>
|
||||
fun setWorkedGrids(grids: Set<String>)
|
||||
/** Confirmed satellite QSOs grouped by worked 4-char gridsquare (map tap detail). */
|
||||
fun getWorkedGridQsos(): Map<String, List<com.rtbishop.look4sat.core.domain.model.GridQso>>
|
||||
fun setWorkedGridQsos(qsos: Map<String, List<com.rtbishop.look4sat.core.domain.model.GridQso>>)
|
||||
/** Distinct 4-char gridsquares the account operated from (LoTW <MY_GRIDSQUARE>). */
|
||||
fun getRoamedGrids(): Set<String>
|
||||
fun setRoamedGrids(grids: Set<String>)
|
||||
//endregion
|
||||
|
||||
//region # LoTW confirmed-grids settings
|
||||
val lotwSettings: StateFlow<com.rtbishop.look4sat.core.domain.model.LoTWSettings>
|
||||
fun updateLoTWSettings(settings: com.rtbishop.look4sat.core.domain.model.LoTWSettings)
|
||||
/** Last successful LoTW sync date ("yyyyMMdd", empty when never synced). */
|
||||
fun getLastLotwSyncDate(): String
|
||||
fun setLastLotwSyncDate(date: String)
|
||||
/** Callsign of the last successful LoTW sync (empty when never synced). */
|
||||
fun getLastLotwSyncCallsign(): String
|
||||
fun setLastLotwSyncCallsign(callsign: String)
|
||||
//endregion
|
||||
}
|
||||
@@ -0,0 +1,48 @@
|
||||
/*
|
||||
* Look4Sat. Amateur radio satellite tracker and pass predictor.
|
||||
* Copyright (C) 2019-2026 Arty Bishop and contributors.
|
||||
*
|
||||
* This program is free software: you can redistribute it and/or modify
|
||||
* it under the terms of the GNU General Public License as published by
|
||||
* the Free Software Foundation, either version 3 of the License, or
|
||||
* (at your option) any later version.
|
||||
*
|
||||
* This program is distributed in the hope that it will be useful,
|
||||
* but WITHOUT ANY WARRANTY; without even the implied warranty of
|
||||
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
|
||||
* GNU General Public License for more details.
|
||||
*
|
||||
* You should have received a copy of the GNU General Public License
|
||||
* along with this program. If not, see <https://www.gnu.org/licenses/>.
|
||||
*/
|
||||
package com.rtbishop.look4sat.core.domain.repository
|
||||
|
||||
/** Result of a LoTW report fetch, with the failure cause kept explicit. */
|
||||
sealed class LoTWResult {
|
||||
|
||||
/** Report downloaded and parsed successfully. */
|
||||
data class Success(
|
||||
val grids: Set<String>,
|
||||
val qsos: Map<String, List<com.rtbishop.look4sat.core.domain.model.GridQso>>,
|
||||
/** Distinct 4-char gridsquares the account itself operated from
|
||||
* (ADIF <MY_GRIDSQUARE>, satellite QSOs only) — "roamed/activated" grids. */
|
||||
val roamedGrids: Set<String> = emptySet()
|
||||
) : LoTWResult()
|
||||
|
||||
/** HTTP 200 but LoTW replied with its login-error page (bad callsign/password). */
|
||||
data object BadCredentials : LoTWResult()
|
||||
|
||||
/**
|
||||
* Report endpoint refused the request without a usable error page. LoTW
|
||||
* limits downloads to one in progress per user id and flags accounts that
|
||||
* pull the full report too often; the server answers those with a bare
|
||||
* non-ADIF body (no <eoh>).
|
||||
*/
|
||||
data object RateLimited : LoTWResult()
|
||||
|
||||
/** Connect/read timed out — typically a slow route to the ARRL servers. */
|
||||
data object Timeout : LoTWResult()
|
||||
|
||||
/** Any other network-level failure (DNS, TLS, connection reset, HTTP 5xx). */
|
||||
data class NetworkError(val detail: String) : LoTWResult()
|
||||
}
|
||||
@@ -31,6 +31,9 @@ interface ILocalSource {
|
||||
suspend fun getIdsWithModes(modes: List<String>): List<Int>
|
||||
suspend fun getRadiosTotal(): Int
|
||||
suspend fun getRadiosWithId(id: Int): List<SatRadio>
|
||||
suspend fun insertRadios(radios: List<SatRadio>)
|
||||
suspend fun insertRadios(radios: List<SatRadio>, isCustom: Boolean = false)
|
||||
|
||||
/** Delete all non-custom transceivers, keeping manually imported ones. */
|
||||
suspend fun deleteManagedRadios()
|
||||
suspend fun deleteRadios()
|
||||
}
|
||||
+155
@@ -0,0 +1,155 @@
|
||||
/*
|
||||
* Look4Sat. Amateur radio satellite tracker and pass predictor.
|
||||
* Copyright (C) 2019-2026 Arty Bishop and contributors.
|
||||
*
|
||||
* This program is free software: you can redistribute it and/or modify
|
||||
* it under the terms of the GNU General Public License as published by
|
||||
* the Free Software Foundation, either version 3 of the License, or
|
||||
* (at your option) any later version.
|
||||
*
|
||||
* This program is distributed in the hope that it will be useful,
|
||||
* but WITHOUT ANY WARRANTY; without even the implied warranty of
|
||||
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
|
||||
* GNU General Public License for more details.
|
||||
*
|
||||
* You should have received a copy of the GNU General Public License
|
||||
* along with this program. If not, see <https://www.gnu.org/licenses/>.
|
||||
*/
|
||||
package com.rtbishop.look4sat.core.domain.model
|
||||
|
||||
import org.junit.Assert.assertEquals
|
||||
import org.junit.Assert.assertTrue
|
||||
import org.junit.Test
|
||||
|
||||
class AwardCalculatorTest {
|
||||
|
||||
private fun qso(
|
||||
call: String,
|
||||
dxcc: Int? = null,
|
||||
cqz: Int? = null,
|
||||
state: String? = null,
|
||||
grid: String = "OL62"
|
||||
) = GridQso(
|
||||
call = call, epochMs = 0L, satName = "SO-50", mode = "FM",
|
||||
bandUp = "70CM", bandDown = "2M", dxcc = dxcc, cqz = cqz, state = state
|
||||
)
|
||||
|
||||
private fun byGrid(vararg qsos: GridQso) =
|
||||
qsos.groupBy { "OL62" } // all share one grid for award-math tests
|
||||
|
||||
@Test
|
||||
fun `vucc counts distinct grid keys`() {
|
||||
val qsos = mapOf(
|
||||
"OL62" to listOf(qso("BG7XYZ")),
|
||||
"PM95" to listOf(qso("JH0ABC")),
|
||||
"OL62" to listOf(qso("BA7AAA"))
|
||||
)
|
||||
// map literal dedupes keys: OL62/PM95 -> 2 grids
|
||||
val progress = AwardCalculator.calculate(qsos).first { it.type == AwardType.VUCC }
|
||||
assertEquals(2, progress.count)
|
||||
assertTrue(progress.workedKeys.containsAll(setOf("OL62", "PM95")))
|
||||
}
|
||||
|
||||
@Test
|
||||
fun `dxcc counts distinct entities from dxcc field`() {
|
||||
val all = listOf(
|
||||
qso("BG7XYZ", dxcc = 318),
|
||||
qso("JH0ABC", dxcc = 339),
|
||||
qso("YD1XYZ", dxcc = 327),
|
||||
qso("BG7ABC", dxcc = 318)
|
||||
)
|
||||
val progress = AwardCalculator.calculate(byGrid(*all.toTypedArray())).first { it.type == AwardType.DXCC }
|
||||
assertEquals(3, progress.count)
|
||||
assertTrue(progress.workedKeys.containsAll(setOf("318", "339", "327")))
|
||||
}
|
||||
|
||||
@Test
|
||||
fun `dxcc falls back to prefix when dxcc missing`() {
|
||||
val all = listOf(qso("JH0ABC"), qso("BG7XYZ"), qso("VR2XYZ"), qso("XX9A"))
|
||||
val progress = AwardCalculator.calculate(byGrid(*all.toTypedArray())).first { it.type == AwardType.DXCC }
|
||||
assertEquals(4, progress.count)
|
||||
assertTrue(progress.workedKeys.containsAll(setOf("339", "318", "321", "152")))
|
||||
}
|
||||
|
||||
@Test
|
||||
fun `wapc counts mainland provinces plus hk mo tw`() {
|
||||
val all = listOf(
|
||||
qso("BG7XYZ", dxcc = 318, state = "GD"), // Guangdong
|
||||
qso("BD5ABC", dxcc = 318, state = "ZJ"), // Zhejiang
|
||||
qso("BD5ABC", dxcc = 318, state = "ZJ"), // dup
|
||||
qso("VR2X", dxcc = 321), // Hong Kong
|
||||
qso("XX9A", dxcc = 152), // Macao
|
||||
qso("BM4X", dxcc = 386) // Taiwan
|
||||
)
|
||||
val progress = AwardCalculator.calculate(byGrid(*all.toTypedArray())).first { it.type == AwardType.WAPC }
|
||||
assertEquals(5, progress.count)
|
||||
assertTrue(progress.workedKeys.containsAll(setOf("GD", "ZJ", "HK", "MO", "TW")))
|
||||
}
|
||||
|
||||
@Test
|
||||
fun `wapc ignores non-china states and missing states`() {
|
||||
val all = listOf(
|
||||
qso("JH0ABC", dxcc = 339, state = "34"), // Japan state ignored
|
||||
qso("BG7XYZ", dxcc = 318, state = null), // missing province
|
||||
qso("K1ABC", dxcc = 291, state = "HI") // Hawaii != Hainan
|
||||
)
|
||||
val progress = AwardCalculator.calculate(byGrid(*all.toTypedArray())).first { it.type == AwardType.WAPC }
|
||||
assertEquals(0, progress.count)
|
||||
assertTrue(progress.workedKeys.isEmpty())
|
||||
}
|
||||
|
||||
@Test
|
||||
fun `waja counts japanese prefectures only`() {
|
||||
val all = listOf(
|
||||
qso("JH0ABC", dxcc = 339, state = "10"), // Tokyo
|
||||
qso("JH0ABC", dxcc = 339, state = "47"), // Okinawa
|
||||
qso("JH0ABC", dxcc = 339, state = "10"), // dup
|
||||
qso("BG7XYZ", dxcc = 318, state = "10"), // Chinese call, state=10 must NOT count
|
||||
qso("JE2XYZ", dxcc = 339, state = null) // missing
|
||||
)
|
||||
val progress = AwardCalculator.calculate(byGrid(*all.toTypedArray())).first { it.type == AwardType.WAJA }
|
||||
assertEquals(2, progress.count)
|
||||
assertTrue(progress.workedKeys.containsAll(setOf("10", "47")))
|
||||
}
|
||||
|
||||
@Test
|
||||
fun `waz counts distinct cq zones in range`() {
|
||||
val all = listOf(
|
||||
qso("BG7XYZ", cqz = 24),
|
||||
qso("JH0ABC", cqz = 25),
|
||||
qso("YD1XYZ", cqz = 28),
|
||||
qso("BG7AAA", cqz = 24),
|
||||
qso("BG7BBB", cqz = null),
|
||||
qso("BG7CCC", cqz = 0)
|
||||
)
|
||||
val progress = AwardCalculator.calculate(byGrid(*all.toTypedArray())).first { it.type == AwardType.WAZ }
|
||||
assertEquals(3, progress.count)
|
||||
assertTrue(progress.workedKeys.containsAll(setOf("24", "25", "28")))
|
||||
}
|
||||
|
||||
@Test
|
||||
fun `was counts us states only`() {
|
||||
val all = listOf(
|
||||
qso("K1ABC", dxcc = 291, state = "CA"),
|
||||
qso("W2XYZ", dxcc = 291, state = "NY"),
|
||||
qso("N3QRS", dxcc = 291, state = "ca"), // lowercase normalized
|
||||
qso("BG7XYZ", dxcc = 318, state = "CA"), // not US
|
||||
qso("K1AAA", dxcc = 291, state = "XX") // invalid state
|
||||
)
|
||||
val progress = AwardCalculator.calculate(byGrid(*all.toTypedArray())).first { it.type == AwardType.WAS }
|
||||
assertEquals(2, progress.count)
|
||||
assertTrue(progress.workedKeys.containsAll(setOf("CA", "NY")))
|
||||
}
|
||||
|
||||
@Test
|
||||
fun `all six awards present with correct targets`() {
|
||||
val progress = AwardCalculator.calculate(emptyMap())
|
||||
assertEquals(6, progress.size)
|
||||
assertEquals(100, progress.first { it.type == AwardType.DXCC }.target)
|
||||
assertEquals(100, progress.first { it.type == AwardType.VUCC }.target)
|
||||
assertEquals(34, progress.first { it.type == AwardType.WAPC }.target)
|
||||
assertEquals(47, progress.first { it.type == AwardType.WAJA }.target)
|
||||
assertEquals(40, progress.first { it.type == AwardType.WAZ }.target)
|
||||
assertEquals(50, progress.first { it.type == AwardType.WAS }.target)
|
||||
}
|
||||
}
|
||||
+79
@@ -0,0 +1,79 @@
|
||||
/*
|
||||
* Look4Sat. Amateur radio satellite tracker and pass predictor.
|
||||
* Copyright (C) 2019-2026 Arty Bishop and contributors.
|
||||
*
|
||||
* This program is free software: you can redistribute it and/or modify
|
||||
* it under the terms of the GNU General Public License as published by
|
||||
* the Free Software Foundation, either version 3 of the License, or
|
||||
* (at your option) any later version.
|
||||
*
|
||||
* This program is distributed in the hope that it will be useful,
|
||||
* but WITHOUT ANY WARRANTY; without even the implied warranty of
|
||||
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
|
||||
* GNU General Public License for more details.
|
||||
*
|
||||
* You should have received a copy of the GNU General Public License
|
||||
* along with this program. If not, see <https://www.gnu.org/licenses/>.
|
||||
*/
|
||||
package com.rtbishop.look4sat.core.domain.predict
|
||||
|
||||
import org.junit.Assert.assertEquals
|
||||
import org.junit.Assert.assertTrue
|
||||
import org.junit.Test
|
||||
import java.time.Instant
|
||||
import kotlin.math.abs
|
||||
|
||||
class CelestialComputerTest {
|
||||
|
||||
private data class RiseSetCase(
|
||||
val name: String,
|
||||
val observer: GeoPos,
|
||||
val startIso: String
|
||||
)
|
||||
|
||||
@Test
|
||||
fun `findSunRiseSet returns distinct sunrise and sunset for representative locations`() {
|
||||
val cases = listOf(
|
||||
RiseSetCase("Equator at March equinox", GeoPos(0.0, 0.0), "2026-03-20T00:00:00Z"),
|
||||
RiseSetCase("Equator at September equinox", GeoPos(0.0, 0.0), "2026-09-23T00:00:00Z"),
|
||||
RiseSetCase("Sydney winter", GeoPos(-33.8688, 151.2093), "2026-06-21T00:00:00Z"),
|
||||
RiseSetCase("Buenos Aires winter", GeoPos(-34.6037, -58.3816), "2026-06-21T00:00:00Z"),
|
||||
RiseSetCase("Cape Town winter", GeoPos(-33.9249, 18.4241), "2026-06-21T00:00:00Z"),
|
||||
RiseSetCase("London summer", GeoPos(51.5074, -0.1278), "2026-06-21T00:00:00Z")
|
||||
)
|
||||
|
||||
cases.forEach { testCase ->
|
||||
val result = CelestialComputer.findSunRiseSet(testCase.observer, testCase.startIso.toMillis())
|
||||
val daylightDuration = result.setTimeMillis - result.riseTimeMillis
|
||||
|
||||
assertTrue("${testCase.name}: sunrise should be non-zero", result.riseTimeMillis > 0L)
|
||||
assertTrue("${testCase.name}: sunset should be non-zero", result.setTimeMillis > 0L)
|
||||
assertTrue("${testCase.name}: sunset should be after sunrise", result.setTimeMillis > result.riseTimeMillis)
|
||||
assertTrue("${testCase.name}: daylight duration should be longer than 1 hour", daylightDuration > HOUR_MILLIS)
|
||||
assertTrue("${testCase.name}: daylight duration should be shorter than 24 hours", daylightDuration < DAY_MILLIS)
|
||||
|
||||
val riseElevation = CelestialComputer.getSunPosition(testCase.observer, result.riseTimeMillis).elevation
|
||||
val setElevation = CelestialComputer.getSunPosition(testCase.observer, result.setTimeMillis).elevation
|
||||
assertEquals("${testCase.name}: sunrise should converge near the standard threshold", SUNRISE_SET_THRESHOLD, riseElevation, 0.02)
|
||||
assertEquals("${testCase.name}: sunset should converge near the standard threshold", SUNRISE_SET_THRESHOLD, setElevation, 0.02)
|
||||
}
|
||||
}
|
||||
|
||||
@Test
|
||||
fun `findSunRiseSet does not return the same instant for equinox regression cases`() {
|
||||
listOf("2026-03-20T00:00:00Z", "2026-09-23T00:00:00Z").forEach { startIso ->
|
||||
val result = CelestialComputer.findSunRiseSet(GeoPos(0.0, 0.0), startIso.toMillis())
|
||||
val separationMillis = abs(result.setTimeMillis - result.riseTimeMillis)
|
||||
|
||||
assertTrue("$startIso: sunrise and sunset should be separated", separationMillis > HOUR_MILLIS)
|
||||
}
|
||||
}
|
||||
|
||||
private fun String.toMillis(): Long = Instant.parse(this).toEpochMilli()
|
||||
|
||||
private companion object {
|
||||
private const val SUNRISE_SET_THRESHOLD = -0.8333
|
||||
private const val HOUR_MILLIS = 60L * 60L * 1000L
|
||||
private const val DAY_MILLIS = 24L * HOUR_MILLIS
|
||||
}
|
||||
}
|
||||
+35
-6
@@ -210,12 +210,20 @@ fun RowScope.NextPassRow(pass: OrbitalPass, modifier: Modifier = Modifier, isUtc
|
||||
}
|
||||
|
||||
@Composable
|
||||
fun CardButton(onClick: () -> Unit, text: String, modifier: Modifier = Modifier) {
|
||||
fun CardButton(
|
||||
onClick: () -> Unit,
|
||||
text: String,
|
||||
modifier: Modifier = Modifier,
|
||||
isEnabled: Boolean = true
|
||||
) {
|
||||
ElevatedButton(
|
||||
onClick = onClick,
|
||||
enabled = isEnabled,
|
||||
colors = ButtonDefaults.buttonColors(
|
||||
containerColor = MaterialTheme.colorScheme.surfaceVariant,
|
||||
contentColor = MaterialTheme.colorScheme.onSurfaceVariant
|
||||
contentColor = MaterialTheme.colorScheme.onSurfaceVariant,
|
||||
disabledContainerColor = MaterialTheme.colorScheme.surfaceVariant,
|
||||
disabledContentColor = MaterialTheme.colorScheme.onSurfaceVariant.copy(alpha = 0.4f)
|
||||
),
|
||||
shape = MaterialTheme.shapes.small,
|
||||
modifier = modifier,
|
||||
@@ -316,9 +324,21 @@ fun InfoDialog(
|
||||
|
||||
@Composable
|
||||
fun SharedDialog(
|
||||
title: String, onCancel: () -> Unit, onAccept: () -> Unit, content: @Composable () -> Unit
|
||||
title: String,
|
||||
onCancel: () -> Unit,
|
||||
onAccept: () -> Unit,
|
||||
acceptText: String? = null,
|
||||
acceptEnabled: Boolean = true,
|
||||
content: @Composable () -> Unit
|
||||
) {
|
||||
SharedDialog(title = title, onDismissRequest = onCancel, onCancel = onCancel, onAccept = onAccept) { _ ->
|
||||
SharedDialog(
|
||||
title = title,
|
||||
onDismissRequest = onCancel,
|
||||
onCancel = onCancel,
|
||||
onAccept = onAccept,
|
||||
acceptText = acceptText,
|
||||
acceptEnabled = acceptEnabled
|
||||
) { _ ->
|
||||
content()
|
||||
}
|
||||
}
|
||||
@@ -329,6 +349,8 @@ fun SharedDialog(
|
||||
onDismissRequest: () -> Unit,
|
||||
onCancel: (() -> Unit)? = null,
|
||||
onAccept: (() -> Unit)? = null,
|
||||
acceptText: String? = null,
|
||||
acceptEnabled: Boolean = true,
|
||||
titleFontSize: Int = 16,
|
||||
titleTextAlign: TextAlign = if (onCancel != null && onAccept != null) TextAlign.Center else TextAlign.Start,
|
||||
content: @Composable (padding: Dp) -> Unit
|
||||
@@ -353,10 +375,17 @@ fun SharedDialog(
|
||||
overflow = TextOverflow.Ellipsis,
|
||||
modifier = Modifier
|
||||
.weight(1f)
|
||||
.padding(horizontal = if (onCancel != null && onAccept != null) padding else 0.dp)
|
||||
.padding(
|
||||
start = if (onCancel != null) padding else 0.dp,
|
||||
end = if (onAccept != null) padding else 0.dp
|
||||
)
|
||||
)
|
||||
if (onAccept != null) {
|
||||
CardButton(onClick = onAccept, text = stringResource(R.string.btn_accept))
|
||||
CardButton(
|
||||
onClick = onAccept,
|
||||
text = acceptText ?: stringResource(R.string.btn_accept),
|
||||
isEnabled = acceptEnabled
|
||||
)
|
||||
}
|
||||
}
|
||||
content(padding)
|
||||
|
||||
@@ -107,6 +107,8 @@
|
||||
<!-- Map screen -->
|
||||
<string name="map_prev">上一个</string>
|
||||
<string name="map_next">下一个</string>
|
||||
<string name="map_grid_mode">网格模式</string>
|
||||
<string name="map_satellite_mode">卫星模式</string>
|
||||
<string name="map_azimuth">方位角:%.1f°</string>
|
||||
<string name="map_elevation">仰角:%.1f°</string>
|
||||
<string name="map_altitude">高度:%.0f km</string>
|
||||
@@ -118,6 +120,12 @@
|
||||
<string name="map_period">周期:% .0f min</string>
|
||||
<string name="map_velocity">速度:%.2f km/s</string>
|
||||
<string name="map_visibility">能见度:%s</string>
|
||||
<!-- Worked-grid QSO dialog -->
|
||||
<string name="grid_qso_calls_count">%d 个呼号 · %d 次通联</string>
|
||||
<string name="grid_qso_count_one">%d QSO</string>
|
||||
<string name="grid_qso_count_many">%d QSOs</string>
|
||||
<string name="grid_qso_first">首通</string>
|
||||
<string name="grid_qso_no_sat">卫星未知</string>
|
||||
<string name="map_visible">日照中</string>
|
||||
|
||||
<!-- Settings screen -->
|
||||
@@ -151,11 +159,24 @@
|
||||
<string name="prefs_lotw_title">LoTW 已确认网格</string>
|
||||
<string name="prefs_lotw_callsign">LoTW 呼号</string>
|
||||
<string name="prefs_lotw_password">LoTW 密码</string>
|
||||
<string name="prefs_lotw_hint">直接从 ARRL LoTW 拉取已确认 QSO 的网格并与 Wavelog 网格合并(当前 %1$d 个)。密码仅保存在手机本地。填好直接点同步,会自动保存并拉取。</string>
|
||||
<string name="prefs_lotw_sync">立即同步</string>
|
||||
<string name="prefs_lotw_hint">直接从 ARRL LoTW 拉取该呼号已确认 QSO 的网格并覆盖本地已存集合(当前 %1$d 个)。密码仅保存在手机本地。点"同步"会自动保存凭据并拉取。</string>
|
||||
<string name="prefs_lotw_sync">同步</string>
|
||||
<string name="prefs_lotw_syncing">同步中…</string>
|
||||
<string name="prefs_lotw_configured">已从 LoTW 同步 — 共 %1$d 个网格</string>
|
||||
<string name="prefs_lotw_not_configured">未配置 — 直接登录 ARRL LoTW 拉取已确认 QSO 的网格,无需自建服务器</string>
|
||||
<string name="lotw_sync_error_not_configured">LoTW 呼号/密码未配置</string>
|
||||
<string name="lotw_sync_error_credentials">LoTW 同步失败——呼号或密码错误</string>
|
||||
<string name="lotw_sync_error_rate_limited">LoTW 同步失败——服务器限流,请等几分钟后再试</string>
|
||||
<string name="lotw_sync_error_timeout">LoTW 同步失败——连接超时,请更换网络重试</string>
|
||||
<string name="lotw_sync_error_network">LoTW 同步失败——网络错误(%1$s)</string>
|
||||
<string name="lotw_sync_full">全量同步</string>
|
||||
<string name="lotw_sync_incremental">增量合并</string>
|
||||
<string name="lotw_sync_rate_hint">下载速度约每 100 条 QSO 需 8 秒(另有 5–40 秒服务器生成时间)</string>
|
||||
<string name="lotw_sync_progress_connecting">正在连接 LoTW 服务器…</string>
|
||||
<string name="lotw_sync_progress_downloading">正在下载报告…</string>
|
||||
<string name="lotw_sync_progress_saving">正在处理下载的数据…</string>
|
||||
<string name="lotw_sync_progress_count">本次同步 %1$d 条 QSO…</string>
|
||||
<string name="lotw_sync_progress_qso">本次同步 %1$d 条 QSO,预计还需 %2$d 秒</string>
|
||||
<string name="prefs_locator_text">使用梅登黑德网格设置站点位置</string>
|
||||
|
||||
<string name="prefs_data_title">卫星数据更新</string>
|
||||
|
||||
@@ -131,6 +131,8 @@
|
||||
<string name="map_prev">Prev</string>
|
||||
<string name="map_next">Next</string>
|
||||
<string name="map_copyright" translatable="false">© OpenStreetMap contributors</string>
|
||||
<string name="map_grid_mode">Grid mode</string>
|
||||
<string name="map_satellite_mode">Satellite mode</string>
|
||||
<string name="map_azimuth">Azimuth: %.1f°</string>
|
||||
<string name="map_elevation">Elevation: %.1f°</string>
|
||||
<string name="map_altitude">Altitude: %.0f km</string>
|
||||
@@ -143,6 +145,12 @@
|
||||
<string name="map_period">Period: %.0f min</string>
|
||||
<string name="map_velocity">Velocity: %.2f km/s</string>
|
||||
<string name="map_visibility">Visibility: %s</string>
|
||||
<!-- Worked-grid QSO dialog -->
|
||||
<string name="grid_qso_calls_count">%d callsigns · %d QSOs</string>
|
||||
<string name="grid_qso_count_one">%d QSO</string>
|
||||
<string name="grid_qso_count_many">%d QSOs</string>
|
||||
<string name="grid_qso_first">First</string>
|
||||
<string name="grid_qso_no_sat">satellite unknown</string>
|
||||
<string name="map_visible">Visible</string>
|
||||
|
||||
<!-- Settings screen -->
|
||||
@@ -186,11 +194,24 @@
|
||||
<string name="prefs_lotw_title">LoTW confirmed grids</string>
|
||||
<string name="prefs_lotw_callsign">LoTW callsign</string>
|
||||
<string name="prefs_lotw_password">LoTW password</string>
|
||||
<string name="prefs_lotw_hint">Fetch confirmed-QSO grids directly from ARRL LoTW and merge them with Wavelog grids (currently %1$d). The password is stored on this device only. Just tap Sync — credentials are saved automatically.</string>
|
||||
<string name="prefs_lotw_sync">Sync now</string>
|
||||
<string name="prefs_lotw_hint">Fetch confirmed-QSO grids directly from ARRL LoTW for this callsign and replace the stored set (currently %1$d). The password is stored on this device only. Tapping Sync saves the credentials and fetches in one step.</string>
|
||||
<string name="prefs_lotw_sync">Sync</string>
|
||||
<string name="prefs_lotw_syncing">Syncing…</string>
|
||||
<string name="prefs_lotw_configured">Synced from LoTW — %1$d grids total</string>
|
||||
<string name="prefs_lotw_not_configured">Not configured — pull confirmed grids directly from ARRL LoTW, no self-hosted server needed</string>
|
||||
<string name="lotw_sync_error_not_configured">LoTW callsign/password not configured</string>
|
||||
<string name="lotw_sync_error_credentials">LoTW sync failed — callsign or password incorrect</string>
|
||||
<string name="lotw_sync_error_rate_limited">LoTW sync failed — rate limited by server, wait a few minutes and retry</string>
|
||||
<string name="lotw_sync_error_timeout">LoTW sync failed — connection timed out, try another network</string>
|
||||
<string name="lotw_sync_error_network">LoTW sync failed — network error (%1$s)</string>
|
||||
<string name="lotw_sync_full">Full sync</string>
|
||||
<string name="lotw_sync_incremental">Incremental merge</string>
|
||||
<string name="lotw_sync_rate_hint">Download runs at ~8 s per 100 QSOs (plus 5–40 s server generation time)</string>
|
||||
<string name="lotw_sync_progress_connecting">Connecting to LoTW…</string>
|
||||
<string name="lotw_sync_progress_downloading">Downloading report…</string>
|
||||
<string name="lotw_sync_progress_saving">Processing downloaded data…</string>
|
||||
<string name="lotw_sync_progress_count">Syncing %1$d QSOs…</string>
|
||||
<string name="lotw_sync_progress_qso">Syncing %1$d QSOs, ~%2$d s remaining</string>
|
||||
<string name="prefs_locator_text">Set station\'s position using locator</string>
|
||||
|
||||
<string name="prefs_data_title">Satellite data</string>
|
||||
|
||||
@@ -10,10 +10,11 @@ android {
|
||||
compileOptions {
|
||||
encoding = "UTF-8"
|
||||
}
|
||||
// 照搬 Morse Expert 1.15: native 解码器仅 armeabi-v7a
|
||||
// Morse Expert 1.15 官方 Play 分包提供 ARM32/ARM64 原生解码器
|
||||
// (jniLibs/armeabi-v7a + arm64-v8a), 两个 ABI 都打进 APK
|
||||
defaultConfig {
|
||||
ndk {
|
||||
abiFilters += listOf("armeabi-v7a")
|
||||
abiFilters += listOf("armeabi-v7a", "arm64-v8a")
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
Binary file not shown.
@@ -0,0 +1 @@
|
||||
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|
||||
@@ -0,0 +1 @@
|
||||
{"type":"waja","regions":[{"id":0,"code":"22","name":"京都府","label_lon":135.5014,"label_lat":35.2429,"rings":[[[135.0367,35.5373],[134.9265,35.5125],[134.9143,35.5448],[134.8542,35.5881],[134.8725,35.6197],[134.8671,35.6581],[134.9353,35.6505],[134.9849,35.6923],[135.0222,35.6895],[135.0607,35.7081],[135.0857,35.7398],[135.223,35.7792],[135.308,35.6944],[135.3029,35.6628],[135.2874,35.6756],[135.268,35.6674],[135.2443,35.6205],[135.1926,35.5711],[135.1931,35.5383],[135.2547,35.5989],[135.2507,35.5702],[135.2739,35.5609],[135.2449,35.5613],[135.2442,35.5359],[135.2882,35.5155],[135.3303,35.517],[135.3163,35.4512],[135.3467,35.4753],[135.3468,35.494],[135.3975,35.4788],[135.3963,35.5152],[135.3445,35.5041],[135.3423,35.5518],[135.4263,35.5665],[135.4337,35.5907],[135.4619,35.6035],[135.4521,35.5675],[135.4865,35.558],[135.4599,35.5472],[135.449,35.5235],[135.4748,35.5049],[135.4591,35.4675],[135.4958,35.4251],[135.5253,35.4207],[135.5285,35.3797],[135.6419,35.3668],[135.7007,35.3437],[135.7684,35.3561],[135.7637,35.3445],[135.809,35.3161],[135.8313,35.2761],[135.8581,35.2891],[135.8291,35.2207],[135.8558,35.1595],[135.8355,35.059],[135.815,35.0461],[135.8334,35.0223],[135.8199,35.0129],[135.8351,35.0032],[135.8268,34.9911],[135.8493,34.991],[135.8782,34.9475],[135.8664,34.8923],[135.898,34.8712],[135.9405,34.8932],[135.9457,34.8517],[136.005,34.8427],[136.0047,34.8282],[136.0281,34.8192],[136.0104,34.8007],[136.0335,34.7789],[136.0285,34.7572],[136.0552,34.7384],[136.0285,34.7062],[135.9859,34.7151],[135.9754,34.7409],[135.9254,34.7403],[135.9254,34.7575],[135.89,34.7087],[135.7551,34.7275],[135.7284,34.7779],[135.7447,34.8043],[135.6955,34.8482],[135.6749,34.8987],[135.6307,34.9353],[135.5999,34.928],[135.6129,34.9713],[135.5733,34.9717],[135.5783,34.9557],[135.5568,34.9381],[135.58,34.937],[135.5807,34.9236],[135.5418,34.9153],[135.5132,34.9439],[135.481,34.9495],[135.4874,34.9919],[135.3821,35.0101],[135.3688,35.0536],[135.4031,35.0894],[135.3885,35.0971],[135.3894,35.1288],[135.3435,35.1357],[135.3405,35.1499],[135.2822,35.1449],[135.2898,35.1699],[135.2738,35.1771],[135.2067,35.1609],[135.1869,35.1718],[135.1967,35.2029],[135.1556,35.2262],[135.1583,35.2599],[135.109,35.2663],[135.0675,35.2372],[135.0565,35.264],[135.01,35.2698],[134.9988,35.2911],[134.9256,35.3112],[134.9185,35.3645],[134.9338,35.4074],[134.9586,35.4091],[134.9895,35.3863],[135.0483,35.4074]],[[135.4273,35.6825],[135.4214,35.6797],[135.4243,35.6882]],[[135.4809,35.5943],[135.4749,35.5956],[135.4779,35.6059]],[[135.3472,35.4959],[135.3404,35.4986],[135.3474,35.4971]]],"name_en":"Kyoto"},{"id":1,"code":"41","name":"佐賀県","label_lon":130.0903,"label_lat":33.2574,"rings":[[[129.8671,33.5967],[129.8479,33.5998],[129.8612,33.6183]],[[129.9007,33.594],[129.8967,33.6037],[129.9018,33.6029]],[[129.8447,33.5858],[129.8351,33.5891],[129.8459,33.5915]],[[129.757,33.5634],[129.7394,33.5728],[129.7412,33.5781],[129.7679,33.582]],[[129.8741,33.5438],[129.8729,33.5581],[129.8804,33.5675],[129.892,33.5561]],[[130.0387,33.4697],[130.2766,33.4783],[130.3555,33.4335],[130.3953,33.4273],[130.4144,33.4103],[130.4102,33.395],[130.4962,33.4448],[130.5362,33.4382],[130.5352,33.3428],[130.479,33.3307],[130.4863,33.3123],[130.4554,33.3017],[130.4668,33.2886],[130.4489,33.265],[130.431,33.2925],[130.4146,33.2532],[130.3907,33.2599],[130.3843,33.2403],[130.3713,33.243],[130.3766,33.2204],[130.3386,33.2033],[130.3549,33.1404],[130.2878,33.1469],[130.2454,33.2029],[130.2465,33.1923],[130.2149,33.1993],[130.2306,33.1887],[130.2217,33.1653],[130.149,33.1127],[130.1219,33.1247],[130.1277,33.1085],[130.1123,33.1011],[130.1398,33.0943],[130.2198,32.9595],[130.0857,32.9748],[130.0087,33.019],[129.9935,33.0477],[129.9215,33.0904],[129.9256,33.1075],[129.9545,33.1166],[129.9425,33.1643],[129.8877,33.1563],[129.818,33.1835],[129.8134,33.2421],[129.7588,33.2903],[129.7899,33.3403],[129.836,33.2867],[129.8528,33.2921],[129.8274,33.3124],[129.8339,33.3113],[129.8484,33.3287],[129.8273,33.3373],[129.8474,33.3369],[129.868,33.4075],[129.8227,33.4118],[129.8307,33.4218],[129.7828,33.4541],[129.8062,33.4573],[129.7936,33.4713],[129.8055,33.485],[129.8382,33.4621],[129.8352,33.4436],[129.8579,33.4538],[129.8497,33.4751],[129.8399,33.4698],[129.8314,33.4762],[129.8443,33.4786],[129.8273,33.5176],[129.8563,33.5055],[129.8396,33.5222],[129.8562,33.5191],[129.8451,33.5553],[129.8749,33.5371],[129.8744,33.5161],[129.8958,33.5494],[129.9278,33.5507],[129.9288,33.537],[129.956,33.5295],[129.967,33.5086],[129.9362,33.4786],[129.9546,33.4693],[129.9624,33.4835],[129.9671,33.4552],[130.0194,33.4463],[130.0402,33.4558]],[[129.9674,33.5271],[129.9645,33.5389],[129.9721,33.5432],[129.9772,33.5349]],[[129.9928,33.4777],[129.9846,33.4779],[129.9888,33.4806]],[[129.8563,33.4021],[129.8558,33.4049],[129.858,33.4024]],[[129.8601,33.3995],[129.8614,33.4017],[129.8656,33.4027]],[[129.8386,33.3191],[129.8351,33.3215],[129.8352,33.3227]],[[130.2242,32.9565],[130.2127,32.9546],[130.222,32.9584]]Line truncated
|
||||
@@ -0,0 +1 @@
|
||||
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truncated
|
||||
@@ -0,0 +1 @@
|
||||
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ine truncated
|
||||
@@ -0,0 +1 @@
|
||||
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ine truncated
|
||||
@@ -0,0 +1,416 @@
|
||||
/*
|
||||
* Look4Sat. Amateur radio satellite tracker and pass predictor.
|
||||
* Copyright (C) 2019-2026 Arty Bishop and contributors.
|
||||
*
|
||||
* This program is free software: you can redistribute it and/or modify
|
||||
* it under the terms of the GNU General Public License as published by
|
||||
* the Free Software Foundation, either version 3 of the License, or
|
||||
* (at your option) any later version.
|
||||
*
|
||||
* This program is distributed in the hope that it will be useful,
|
||||
* but WITHOUT ANY WARRANTY; without even the implied warranty of
|
||||
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
|
||||
* GNU General Public License for more details.
|
||||
*
|
||||
* You should have received a copy of the GNU General Public License
|
||||
* along with this program. If not, see <https://www.gnu.org/licenses/>.
|
||||
*/
|
||||
package com.rtbishop.look4sat.feature.map
|
||||
|
||||
import android.content.Context
|
||||
import android.graphics.Canvas
|
||||
import android.graphics.Color
|
||||
import android.graphics.Paint
|
||||
import android.graphics.Path
|
||||
import org.json.JSONObject
|
||||
import org.osmdroid.views.MapView
|
||||
import org.osmdroid.views.Projection
|
||||
import org.osmdroid.views.overlay.Overlay
|
||||
import java.io.InputStream
|
||||
import kotlin.math.abs
|
||||
import kotlin.math.max
|
||||
import kotlin.math.min
|
||||
|
||||
/**
|
||||
* One administrative/boundary region loaded from the award GeoJSON assets.
|
||||
*
|
||||
* @param code match key against award statistics (e.g. "GD", "34", "24", "CA", "318")
|
||||
* @param name display label in the source language (province/prefecture/state/country name)
|
||||
* @param nameEn optional English display label (null when the source already is English)
|
||||
* @param labelLon/labelLat preferred label anchor (usually the region centroid)
|
||||
* @param rings polygon exterior rings as lon/lat pairs; the overlay projects
|
||||
* them per frame with the same projection helpers as the grid overlay
|
||||
*/
|
||||
data class AwardRegion(
|
||||
val code: String,
|
||||
val name: String,
|
||||
val nameEn: String? = null,
|
||||
val labelLon: Double,
|
||||
val labelLat: Double,
|
||||
val rings: List<List<DoubleArray>>,
|
||||
val forceLabel: Boolean = false
|
||||
)
|
||||
|
||||
/**
|
||||
* Loads and caches the award boundary assets (assets/awards/<type>.json).
|
||||
* Format (generated by the awarddata/convert2.py pipeline):
|
||||
* {"type": "wapc", "regions": [{"id":..,"code":"GD","name":"广东省",
|
||||
* "label_lon":..,"label_lat":..,"rings":[[[lon,lat],...],...]}, ...]}
|
||||
*/
|
||||
object AwardBoundaryData {
|
||||
|
||||
private val cache = mutableMapOf<AwardAsset, List<AwardRegion>>()
|
||||
|
||||
enum class AwardAsset(val fileName: String) {
|
||||
WAPC("wapc.json"),
|
||||
WAJA("waja.json"),
|
||||
WAZ("waz.json"),
|
||||
WAS("was.json"),
|
||||
DXCC("dxcc.json")
|
||||
}
|
||||
|
||||
fun load(context: Context, asset: AwardAsset): List<AwardRegion> {
|
||||
cache[asset]?.let { return it }
|
||||
val regions = try {
|
||||
val stream: InputStream = context.assets.open("awards/${asset.fileName}")
|
||||
val text = stream.bufferedReader().use { it.readText() }
|
||||
val root = JSONObject(text)
|
||||
val array = root.optJSONArray("regions") ?: return emptyList()
|
||||
val list = mutableListOf<AwardRegion>()
|
||||
for (i in 0 until array.length()) {
|
||||
val o = array.optJSONObject(i) ?: continue
|
||||
val ringsArray = o.optJSONArray("rings") ?: continue
|
||||
val rings = mutableListOf<List<DoubleArray>>()
|
||||
for (r in 0 until ringsArray.length()) {
|
||||
val ring = ringsArray.optJSONArray(r) ?: continue
|
||||
val points = mutableListOf<DoubleArray>()
|
||||
for (p in 0 until ring.length()) {
|
||||
val pt = ring.optJSONArray(p) ?: continue
|
||||
if (pt.length() >= 2) points.add(doubleArrayOf(pt.getDouble(0), pt.getDouble(1)))
|
||||
}
|
||||
if (points.size >= 3) rings.add(points)
|
||||
}
|
||||
if (rings.isEmpty()) continue
|
||||
list.add(
|
||||
AwardRegion(
|
||||
code = o.optString("code"),
|
||||
name = o.optString("name"),
|
||||
nameEn = o.optString("name_en").takeIf { it.isNotEmpty() },
|
||||
labelLon = o.optDouble("label_lon", 0.0),
|
||||
labelLat = o.optDouble("label_lat", 0.0),
|
||||
rings = rings,
|
||||
forceLabel = o.optBoolean("force_label", false)
|
||||
)
|
||||
)
|
||||
}
|
||||
list
|
||||
} catch (_: Exception) {
|
||||
emptyList()
|
||||
}
|
||||
cache[asset] = regions
|
||||
return regions
|
||||
}
|
||||
}
|
||||
|
||||
/**
|
||||
* Renders award boundary regions (provinces/prefectures/CQ zones/states/
|
||||
* countries) with the same visual language as the VUCC grid overlay:
|
||||
* yellow boundary lines, green fill for worked regions, yellow labels.
|
||||
*
|
||||
* Worked regions are matched by [workedCodes] against each region's [AwardRegion.code]
|
||||
* (e.g. {"GD", "ZJ", "HK", ...} for WAPC). All region boundaries are always drawn
|
||||
* so missing regions stay visible; only worked ones get the green fill.
|
||||
*/
|
||||
class AwardBoundaryOverlay : Overlay() {
|
||||
|
||||
private val linePaint = Paint(Paint.ANTI_ALIAS_FLAG).apply {
|
||||
strokeWidth = 1.5f
|
||||
style = Paint.Style.STROKE
|
||||
color = Color.argb(160, 255, 224, 130)
|
||||
}
|
||||
private val labelPaint = Paint(Paint.ANTI_ALIAS_FLAG).apply {
|
||||
textSize = 22f
|
||||
style = Paint.Style.FILL
|
||||
color = Color.argb(220, 255, 224, 130)
|
||||
setShadowLayer(3f, 2f, 2f, Color.BLACK)
|
||||
}
|
||||
private val workedPaint = Paint(Paint.ANTI_ALIAS_FLAG).apply {
|
||||
style = Paint.Style.FILL
|
||||
color = Color.argb(90, 76, 217, 100)
|
||||
}
|
||||
|
||||
/** Boundary regions to render; assigning recomputes culling bounds. */
|
||||
var regions: List<AwardRegion> = emptyList()
|
||||
set(value) {
|
||||
field = value
|
||||
regionBounds.clear()
|
||||
for (r in value) {
|
||||
var minLon = Double.MAX_VALUE; var minLat = Double.MAX_VALUE
|
||||
var maxLon = -Double.MAX_VALUE; var maxLat = -Double.MAX_VALUE
|
||||
for (ring in r.rings) for (pt in ring) {
|
||||
if (pt[0] < minLon) minLon = pt[0]
|
||||
if (pt[0] > maxLon) maxLon = pt[0]
|
||||
if (pt[1] < minLat) minLat = pt[1]
|
||||
if (pt[1] > maxLat) maxLat = pt[1]
|
||||
}
|
||||
regionBounds.add(doubleArrayOf(minLon, minLat, maxLon, maxLat))
|
||||
}
|
||||
}
|
||||
|
||||
/** Codes of worked regions -> green fill. */
|
||||
var workedCodes: Set<String> = emptySet()
|
||||
|
||||
/** Bounding boxes (computed on region assignment) for cheap culling. */
|
||||
private val regionBounds = mutableListOf<DoubleArray>() // [minLon,minLat,maxLon,maxLat]
|
||||
|
||||
override fun setEnabled(on: Boolean) {
|
||||
super.setEnabled(on)
|
||||
}
|
||||
|
||||
override fun draw(canvas: Canvas, mapView: MapView, shadow: Boolean) {
|
||||
if (shadow || !isEnabled || regions.isEmpty()) return
|
||||
val projection = mapView.projection
|
||||
val zoom = mapView.zoomLevelDouble
|
||||
val worldWidthPx = 256.0 * Math.pow(2.0, zoom)
|
||||
|
||||
// Visible bounding box (same anchor-on-center approach as the grid overlay).
|
||||
val north = projection.fromPixels(0, 0)
|
||||
val south = projection.fromPixels(canvas.width, canvas.height)
|
||||
val topLat = max(north.latitude, south.latitude).coerceIn(-90.0, 90.0)
|
||||
val bottomLat = min(north.latitude, south.latitude).coerceIn(-90.0, 90.0)
|
||||
val viewCenter = projection.fromPixels(canvas.width / 2, canvas.height / 2)
|
||||
val centerLon = viewCenter.longitude
|
||||
val halfSpanDeg = (canvas.width / 2.0) / worldWidthPx * 360.0
|
||||
val leftLon = centerLon - halfSpanDeg
|
||||
val rightLon = centerLon + halfSpanDeg
|
||||
|
||||
labelPaint.textAlign = Paint.Align.CENTER
|
||||
val fontMetrics = labelPaint.fontMetrics
|
||||
val textHalfHeight = (fontMetrics.descent + fontMetrics.ascent) / 2f
|
||||
// Label language follows the system: Chinese UI keeps the source
|
||||
// (Chinese/Japanese) names; any other UI language uses the English
|
||||
// name when the asset provides one (falls back to the source name).
|
||||
val useEnglishLabels = mapView.context.resources.configuration.locales[0].language != "zh"
|
||||
|
||||
for (i in regions.indices) {
|
||||
val region = regions[i]
|
||||
val b = regionBounds.getOrNull(i) ?: continue
|
||||
// Cull: region bbox outside the visible span (with wrap slack).
|
||||
if (b[1] > topLat || b[3] < bottomLat) continue
|
||||
if (b[0] > rightLon || b[2] < leftLon) continue
|
||||
val worked = region.code in workedCodes
|
||||
|
||||
val path = Path()
|
||||
var pathHasPoints = false
|
||||
for (ring in region.rings) {
|
||||
// Split each ring into consecutive segments at the antimeridian
|
||||
// (±180°) and draw each as its own sub-path. Naively normalizing
|
||||
// every vertex to [-180,180) folds vertices that sit on the
|
||||
// "far" side of ±180 onto the opposite screen edge, drawing a
|
||||
// spurious line that sweeps across the whole map (Russia/Fiji/
|
||||
// Antarctica for DXCC, the Pacific CQ zones for WAZ). Splitting
|
||||
// keeps each segment contiguous. Each segment then gets ONE
|
||||
// per-segment longitude offset (in whole 360° turns) chosen to
|
||||
// sit closest to the view center, so vertices far from the
|
||||
// center are not folded to ±180 the wrong way at low zoom.
|
||||
// A ring that was NOT split keeps implicit closure (close());
|
||||
// a SPLIT ring must NOT be closed per segment — each close()
|
||||
// would draw a straight chord across the map between the two
|
||||
// cut ends (visible as a bogus Russia border line), so the
|
||||
// cut edges are left open.
|
||||
val segments = splitRingAtAntimeridian(ring)
|
||||
val closeRing = segments.size == 1
|
||||
for (segment in segments) {
|
||||
if (segment.isEmpty()) continue
|
||||
pathHasPoints = traceSegment(path, segment, projection, centerLon, worldWidthPx, closeRing) || pathHasPoints
|
||||
}
|
||||
}
|
||||
if (!pathHasPoints) continue
|
||||
|
||||
if (worked) canvas.drawPath(path, workedPaint)
|
||||
canvas.drawPath(path, linePaint)
|
||||
|
||||
// Label: draw when its anchor is on screen and the region is big
|
||||
// enough on screen to hold the text (avoid clutter at low zoom).
|
||||
val labelLonNorm = normalizeLon(region.labelLon)
|
||||
if (labelLonNorm < leftLon - 1.0 || labelLonNorm > rightLon + 1.0) continue
|
||||
if (region.labelLat < bottomLat - 1.0 || region.labelLat > topLat + 1.0) continue
|
||||
val lx = projectionToX(projection, labelLonNorm, centerLon, worldWidthPx) ?: continue
|
||||
val ly = projectionToY(projection, region.labelLat) ?: continue
|
||||
// Screen-size gate: the label only when the region spans enough px.
|
||||
// force_label regions (HK / Macau) always draw — their tiny land
|
||||
// bbox would otherwise stay below the gate forever, and their label
|
||||
// anchor sits out on the sea where there is room for the text.
|
||||
val regionH = (projectionToY(projection, b[3]) ?: 0f) - (projectionToY(projection, b[1]) ?: 0f)
|
||||
if (abs(regionH) < MIN_LABEL_REGION_PX && !region.forceLabel) continue
|
||||
val label = if (useEnglishLabels) region.nameEn ?: region.name else region.name
|
||||
canvas.drawText(label, lx, ly - textHalfHeight, labelPaint)
|
||||
}
|
||||
}
|
||||
|
||||
/**
|
||||
* Splits a ring's vertices into consecutive segments that do NOT cross the
|
||||
* antimeridian. Vertices are first normalized to [-180,180); whenever two
|
||||
* consecutive vertices differ by more than 180° in longitude (the ring
|
||||
* wraps over ±180), the segment is closed there and a new segment starts.
|
||||
*
|
||||
* A ring that crosses the antimeridian (e.g. Russia's eastern tip, or the
|
||||
* Pacific CQ zones whose raw lon runs past ±180) becomes two segments, each
|
||||
* kept geometrically contiguous so no spurious long edge is drawn.
|
||||
*/
|
||||
private fun splitRingAtAntimeridian(ring: List<DoubleArray>): List<List<DoubleArray>> {
|
||||
val n = ring.size
|
||||
if (n == 0) return emptyList()
|
||||
val pts = Array(n) { doubleArrayOf(normalizeLon(ring[it][0]), ring[it][1]) }
|
||||
val segments = mutableListOf<MutableList<DoubleArray>>()
|
||||
var cur = mutableListOf<DoubleArray>()
|
||||
cur.add(pts[0])
|
||||
for (i in 1 until n) {
|
||||
val prevLon = pts[i - 1][0]
|
||||
val lon = pts[i][0]
|
||||
if (abs(lon - prevLon) > 180.0) {
|
||||
// Crossed the antimeridian. Do NOT drop this edge — that would
|
||||
// leave a visible gap in the outline (WAZ Pacific zones 1/19/
|
||||
// 31/32, e.g. zone 31's 40°N boundary from 130°W to 160°E).
|
||||
// Split the edge IN TWO at ±180 instead: each half stays in its
|
||||
// own segment, so the outline closes across the map's left and
|
||||
// right edges. The crossing latitude is interpolated along the
|
||||
// edge (constant for latitude-aligned edges).
|
||||
val a = pts[i - 1]
|
||||
val b = pts[i]
|
||||
val span = 360.0 - abs(lon - prevLon) // shortest angular distance
|
||||
val edgeLon = if (prevLon < lon) -180.0 else 180.0 // side being crossed
|
||||
val t = abs(edgeLon - prevLon) / span
|
||||
val latAt = a[1] + (b[1] - a[1]) * t
|
||||
cur.add(doubleArrayOf(edgeLon, latAt))
|
||||
if (cur.size >= 2) segments.add(cur)
|
||||
cur = mutableListOf()
|
||||
cur.add(doubleArrayOf(-edgeLon, latAt))
|
||||
}
|
||||
cur.add(pts[i])
|
||||
}
|
||||
if (cur.size >= 2) segments.add(cur)
|
||||
// A fully-winding ring may have collapsed into a single segment after
|
||||
// normalization (no actual crossing between consecutive vertices); in
|
||||
// that case fall back to the whole ring as one segment.
|
||||
if (segments.isEmpty()) segments.add(mutableListOf<DoubleArray>().also { it.addAll(pts) })
|
||||
return segments
|
||||
}
|
||||
|
||||
/**
|
||||
* Projects [segment] into [path], keeping the segment's geometry
|
||||
* contiguous on screen.
|
||||
*
|
||||
* Longitudes are normalized once when the ring is split, and every vertex
|
||||
* of a segment lies within 180° of its neighbours (a segment never crosses
|
||||
* the antimeridian). We anchor on the segment's FIRST vertex: its screen x
|
||||
* comes from [projectionToX] (correctly placed relative to the view
|
||||
* center), and every other vertex is offset by the *continuous* longitude
|
||||
* difference from that anchor, scaled by worldWidthPx. Because the whole
|
||||
* segment stays on the "near" side of ±180 relative to its anchor, no
|
||||
* vertex is folded to the opposite screen edge — that fold is what drew
|
||||
* the spurious long lines across the map (Russia/Fiji/Antarctica for
|
||||
* DXCC, the Pacific CQ zones for WAZ).
|
||||
*
|
||||
* @return true if at least one point was placed in the path
|
||||
*/
|
||||
private fun traceSegment(
|
||||
path: Path,
|
||||
segment: List<DoubleArray>,
|
||||
projection: Projection,
|
||||
centerLon: Double,
|
||||
worldWidthPx: Double,
|
||||
closeRing: Boolean
|
||||
): Boolean {
|
||||
if (segment.isEmpty()) return false
|
||||
val anchorLon = segment[0][0]
|
||||
val anchorX = projectionToX(projection, anchorLon, centerLon, worldWidthPx) ?: return false
|
||||
var penDown = false
|
||||
var any = false
|
||||
var firstX = 0f
|
||||
var firstY = 0f
|
||||
var lastX = 0f
|
||||
var lastY = 0f
|
||||
var prevDelta = 0.0
|
||||
for (i in segment.indices) {
|
||||
val pt = segment[i]
|
||||
// Continuous longitude difference from the anchor — no per-vertex
|
||||
// fold. For ordinary segments (span < 180° after the antimeridian
|
||||
// split) the raw delta is already correct. For full-circle rings
|
||||
// (e.g. Antarctica, which runs from -180° eastward to +178° and
|
||||
// relies on close() to seal a ~1.7° gap at the antimeridian) the
|
||||
// raw delta approaches ±360°. Unwrapping keeps each vertex within
|
||||
// 180° of its neighbours (a spurious fold would throw the path a
|
||||
// full world turn and draw a line across the map).
|
||||
val delta = if (i == 0) 0.0 else {
|
||||
var d = pt[0] - anchorLon
|
||||
while (d - prevDelta > 180.0) d -= 360.0
|
||||
while (prevDelta - d > 180.0) d += 360.0
|
||||
d
|
||||
}
|
||||
val x = anchorX + (delta / 360.0 * worldWidthPx).toFloat()
|
||||
val y = projectionToY(projection, pt[1]) ?: continue
|
||||
if (!penDown) {
|
||||
path.moveTo(x, y)
|
||||
firstX = x
|
||||
firstY = y
|
||||
penDown = true
|
||||
} else {
|
||||
path.lineTo(x, y)
|
||||
}
|
||||
lastX = x
|
||||
lastY = y
|
||||
prevDelta = delta
|
||||
any = true
|
||||
}
|
||||
if (penDown && closeRing) {
|
||||
// Closing chord: take the SHORT way around. A full-circle ring
|
||||
// (Antarctica) unwraps to ~360° so a plain close() would draw a
|
||||
// chord across the whole map; folding the first point onto the
|
||||
// adjacent world copy keeps the seal at the antimeridian tiny.
|
||||
var fx = firstX
|
||||
while (fx - lastX > worldWidthPx / 2f) fx -= worldWidthPx.toFloat()
|
||||
while (lastX - fx > worldWidthPx / 2f) fx += worldWidthPx.toFloat()
|
||||
path.lineTo(fx, firstY)
|
||||
}
|
||||
return any
|
||||
}
|
||||
|
||||
/** X pixel for a longitude (Mercator X is linear in longitude). */
|
||||
private fun projectionToX(projection: Projection, lon: Double, centerLon: Double, worldWidthPx: Double): Float? {
|
||||
var delta = lon - centerLon
|
||||
while (delta > 180.0) delta -= 360.0
|
||||
while (delta < -180.0) delta += 360.0
|
||||
val geo = org.osmdroid.util.GeoPoint(0.0, centerLon)
|
||||
val p = projection.toPixels(geo, null)
|
||||
return (p.x + delta / 360.0 * worldWidthPx).toFloat()
|
||||
}
|
||||
|
||||
/** Y pixel for a latitude. Mercator blows up at the poles (lat ±90 → ±∞),
|
||||
* so clamp to the Web-Mercator maximum (~±85.05113°) — the rendered map
|
||||
* edge. Raw data points AT the poles (e.g. WAZ zones and Antarctica rings
|
||||
* with [-90, ...] vertices) otherwise project far outside the canvas and
|
||||
* draw long spurious lines from the pole to the map edge. */
|
||||
private fun projectionToY(projection: Projection, lat: Double): Float? {
|
||||
val clamped = lat.coerceIn(-MAX_MERCATOR_LAT, MAX_MERCATOR_LAT)
|
||||
val geo = org.osmdroid.util.GeoPoint(clamped, 0.0)
|
||||
val p = projection.toPixels(geo, null)
|
||||
return p.y.toFloat()
|
||||
}
|
||||
|
||||
private fun normalizeLon(lon: Double): Double {
|
||||
var l = lon % 360.0
|
||||
// Normalize into (-180, 180] — +180, not -180. An edge whose endpoint
|
||||
// sits ON the antimeridian (e.g. a ring starting at -180°) must not be
|
||||
// seen as a >180° jump away from a nearby 165° vertex; keeping the
|
||||
// antimeridian value as +180 makes such edges short and un-split.
|
||||
if (l <= -180.0) l += 360.0
|
||||
if (l > 180.0) l -= 360.0
|
||||
return l
|
||||
}
|
||||
|
||||
private companion object {
|
||||
const val MIN_LABEL_REGION_PX = 42f
|
||||
const val MAX_MERCATOR_LAT = 85.05113 // Web Mercator latitude limit
|
||||
}
|
||||
}
|
||||
+335
-68
@@ -56,18 +56,41 @@ class MaidenheadGridOverlay : Overlay() {
|
||||
style = android.graphics.Paint.Style.FILL
|
||||
color = Color.argb(90, 76, 217, 100)
|
||||
}
|
||||
private val roamStripePaint = Paint(Paint.ANTI_ALIAS_FLAG).apply {
|
||||
style = Paint.Style.STROKE
|
||||
strokeWidth = 14f
|
||||
// Same alpha as the green worked fill (90) — user req: stripe opacity
|
||||
// must match the green grid. Wide 14f stripes at 44f spacing read as a
|
||||
// sparse GridMaster-style zebra (user picked spacing 44 / width 14).
|
||||
color = Color.argb(90, 66, 133, 244)
|
||||
}
|
||||
private val ownLinePaint = Paint(Paint.ANTI_ALIAS_FLAG).apply {
|
||||
strokeWidth = 6f
|
||||
style = Paint.Style.STROKE
|
||||
// 与普通网格线同色(淡黄), 仅加粗 — 用户要求当前网格框线不换色
|
||||
color = Color.argb(160, 255, 224, 130)
|
||||
}
|
||||
private val selectedLinePaint = Paint(Paint.ANTI_ALIAS_FLAG).apply {
|
||||
strokeWidth = 4.5f
|
||||
style = Paint.Style.STROKE
|
||||
color = Color.argb(255, 90, 200, 255)
|
||||
color = Color.argb(255, 76, 217, 100)
|
||||
}
|
||||
|
||||
/** Worked gridsquares (4-char, uppercase) to highlight, e.g. {"OL62", "PM95"}. */
|
||||
var workedGrids: Set<String> = emptySet()
|
||||
|
||||
/**
|
||||
* Gridsquares the station operated from (4-char, uppercase) — drawn with
|
||||
* blue 45° stripes (GridMaster-style zebra), e.g. {"OL62", "PM95"}.
|
||||
*/
|
||||
var roamedGrids: Set<String> = emptySet()
|
||||
|
||||
/** The station's own 4-char gridsquare, drawn with a distinct outline. */
|
||||
var ownGrid: String? = null
|
||||
|
||||
/** The currently tapped worked grid (4-char) highlighted with a distinct outline, or null. */
|
||||
var selectedGrid: String? = null
|
||||
|
||||
/** Viewport width, refreshed each draw; used by projectionToX bounds. */
|
||||
private var canvasWidthPx = 1080f
|
||||
|
||||
@@ -79,95 +102,253 @@ class MaidenheadGridOverlay : Overlay() {
|
||||
val cellLat = if (zoom >= GRID_ZOOM_SUB) SUB_SQUARE_LAT else FIELD_LAT
|
||||
val cellLon = if (zoom >= GRID_ZOOM_SUB) SUB_SQUARE_LON else FIELD_LON
|
||||
|
||||
// Visible bounding box in geographic coordinates
|
||||
// Visible bounding box. Do NOT derive longitude bounds from the left/
|
||||
// right edge pixels: osmdroid normalizes them to [-180,180), which both
|
||||
// garbles antimeridian-crossing views AND makes any global view (span
|
||||
// > 180°) look like an antimeridian crossing — unwrapping then produced
|
||||
// an inverted range and ALL meridians vanished at low zoom. Instead
|
||||
// anchor on the view-center longitude and expand by the half-width in
|
||||
// degrees; the range is continuous (may exceed ±180) and cell indices
|
||||
// beyond 18 wrap correctly via normalizeLon().
|
||||
val north = projection.fromPixels(0, 0)
|
||||
val south = projection.fromPixels(canvas.width, canvas.height)
|
||||
val topLat = max(north.latitude, south.latitude).coerceIn(-90.0, 90.0)
|
||||
val bottomLat = min(north.latitude, south.latitude).coerceIn(-90.0, 90.0)
|
||||
val leftLon = min(north.longitude, south.longitude)
|
||||
val rightLon = max(north.longitude, south.longitude)
|
||||
val worldWidthPx = 256.0 * Math.pow(2.0, zoom)
|
||||
val viewCenter = projection.fromPixels(canvas.width / 2, canvas.height / 2)
|
||||
val centerLon = viewCenter.longitude
|
||||
val halfSpanDeg = (canvas.width / 2.0) / worldWidthPx * 360.0
|
||||
val leftLon = centerLon - halfSpanDeg
|
||||
val rightLon = centerLon + halfSpanDeg
|
||||
|
||||
val firstRow = floor(bottomLat / cellLat).toInt()
|
||||
val lastRow = ceil(topLat / cellLat).toInt()
|
||||
// Longitude cell indices may exceed the [-180, 180) range when the view
|
||||
// crosses the antimeridian; index arithmetic still works (PMxx at 360° == same grid)
|
||||
// Longitude cell indices are in the continuous unwrapped space and may
|
||||
// exceed the [-180, 180) range when the view crosses the antimeridian
|
||||
// or spans world repeats; labels normalize each cell back.
|
||||
val firstCol = floor(leftLon / cellLon).toInt()
|
||||
val lastCol = ceil(rightLon / cellLon).toInt()
|
||||
val centerLon = (leftLon + rightLon) / 2.0
|
||||
// World width in screen pixels for the current zoom (256 px per tile,
|
||||
// 2^zoom tiles across the whole 360° world). Used by the custom
|
||||
// Mercator-X computation in projectionToX.
|
||||
val worldWidthPx = 256.0 * Math.pow(2.0, zoom)
|
||||
// At low zoom the world is narrower than the viewport and osmdroid shows
|
||||
// repeating copies on both sides. The visible bounding box spans more
|
||||
// than 360° of longitude there; extend the column range by whole world
|
||||
// turns so meridians, fills and labels tile across the repeats too.
|
||||
val worldTurns = ceil(((rightLon - leftLon) / 360.0) - 1e-9).toInt().coerceAtLeast(0)
|
||||
val colRepeats = if (worldTurns > 0) worldTurns else 0
|
||||
|
||||
// The station's own grid square (4-char, only meaningful at sub-square zoom)
|
||||
val ownCell = ownGrid?.takeIf { zoom >= GRID_ZOOM_SUB }
|
||||
// The station's own grid: always keep a bold outline of the 4-char
|
||||
// square. At sub-square zoom it matches the visible cell grid; at field
|
||||
// zoom (2-char labels) the own 2°x1° square is drawn on top of the
|
||||
// field grid so the operator still sees exactly where they are (user
|
||||
// req: "field zoom must also draw the own 4-char grid, bolded").
|
||||
val ownCell = ownGrid
|
||||
// The tapped worked grid gets a distinct outline (sub-square zoom only).
|
||||
val selectedCell = selectedGrid?.takeIf { zoom >= GRID_ZOOM_SUB }
|
||||
|
||||
// Worked-grid highlight fills (only meaningful at sub-square zoom)
|
||||
if (workedGrids.isNotEmpty() && zoom >= GRID_ZOOM_SUB) {
|
||||
for (row in firstRow..lastRow) {
|
||||
val lat = row * cellLat
|
||||
if (lat < -90.0 || lat >= 90.0) continue
|
||||
val topLatCell = lat + cellLat
|
||||
if (topLatCell > 90.0) continue
|
||||
val yTop = projectionToY(projection, topLatCell)
|
||||
val yBottom = projectionToY(projection, lat)
|
||||
if (yTop == null || yBottom == null) continue
|
||||
for (col in firstCol..lastCol) {
|
||||
val lon = col * cellLon
|
||||
val xLeft = projectionToX(projection, lon, centerLon, worldWidthPx) ?: continue
|
||||
val xRight = projectionToX(projection, lon + cellLon, centerLon, worldWidthPx) ?: continue
|
||||
if (xRight < 0f || xLeft > canvas.width) continue
|
||||
if (cellLabel(lat, lon, zoom) in workedGrids) {
|
||||
// Worked-grid highlight fills.
|
||||
// - Sub-square zoom: fill each worked 4-char cell directly.
|
||||
// - Field zoom (two-char labels): do NOT fill whole fields; instead fill
|
||||
// the individual 2°x1° squares that were worked, without drawing the
|
||||
// square grid lines — so you see green patches inside the field.
|
||||
if (workedGrids.isNotEmpty()) {
|
||||
if (zoom >= GRID_ZOOM_SUB) {
|
||||
for (row in firstRow..lastRow) {
|
||||
val lat = row * cellLat
|
||||
if (lat < -90.0 || lat >= 90.0) continue
|
||||
val topLatCell = lat + cellLat
|
||||
if (topLatCell > 90.0) continue
|
||||
val yTop = projectionToY(projection, topLatCell)
|
||||
val yBottom = projectionToY(projection, lat)
|
||||
if (yTop == null || yBottom == null) continue
|
||||
for (turn in -colRepeats..colRepeats) for (col in firstCol..lastCol) {
|
||||
val lon = col * cellLon
|
||||
// World-repeat copies: keep the turn offset in pixels
|
||||
// (colRepeats is 0 at this zoom today, but the same
|
||||
// alpha-stacking fix applies if it ever becomes > 0).
|
||||
val xLeftBase = projectionToX(projection, lon, centerLon, worldWidthPx) ?: continue
|
||||
val xRightBase = projectionToX(projection, lon + cellLon, centerLon, worldWidthPx) ?: continue
|
||||
val xLeft = xLeftBase + turn * worldWidthPx.toFloat()
|
||||
val xRight = xRightBase + turn * worldWidthPx.toFloat()
|
||||
if (xRight < 0f || xLeft > canvas.width) continue
|
||||
if (cellLabel(lat, lon, zoom) in workedGrids) {
|
||||
canvas.drawRect(xLeft, yTop, xRight, yBottom, workedPaint)
|
||||
}
|
||||
}
|
||||
}
|
||||
} else {
|
||||
for (grid in workedGrids) {
|
||||
val cell = gridCellBounds(grid) ?: continue
|
||||
// World-repeat copies: a 360° turn shifts the cell by a
|
||||
// full world width in pixels. projectionToX() normalizes
|
||||
// longitude back into [-180,180), so WITHOUT adding the
|
||||
// turn*worldWidthPx offset every copy lands on the SAME
|
||||
// screen x and the cell gets painted 2*colRepeats+1 times
|
||||
// in place — alpha stacks and the green turns brighter and
|
||||
// more opaque. Keep the world-width offset on the x.
|
||||
for (turn in -colRepeats..colRepeats) {
|
||||
val dLon = turn * 360.0
|
||||
if (cell.lonRight + dLon <= leftLon || cell.lonLeft + dLon >= rightLon) continue
|
||||
val yTop = projectionToY(projection, cell.latTop) ?: continue
|
||||
val yBottom = projectionToY(projection, cell.latBottom) ?: continue
|
||||
val xLeftBase = projectionToX(projection, cell.lonLeft, centerLon, worldWidthPx) ?: continue
|
||||
val xRightBase = projectionToX(projection, cell.lonRight, centerLon, worldWidthPx) ?: continue
|
||||
val xLeft = xLeftBase + turn * worldWidthPx.toFloat()
|
||||
val xRight = xRightBase + turn * worldWidthPx.toFloat()
|
||||
if (xRight < 0f || xLeft > canvas.width) continue
|
||||
if (yBottom < 0f || yTop > canvas.height) continue
|
||||
canvas.drawRect(xLeft, yTop, xRight, yBottom, workedPaint)
|
||||
}
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
// Vertical lines (meridians)
|
||||
for (col in firstCol..lastCol) {
|
||||
val lon = col * cellLon
|
||||
val x = projectionToX(projection, lon, centerLon, worldWidthPx)
|
||||
if (x == null) continue
|
||||
canvas.drawLine(x, 0f, x, canvas.height.toFloat(), linePaint)
|
||||
// Roamed/activated grid stripes: blue 45° zebra (GridMaster style) over
|
||||
// every cell the station operated from. Drawn AFTER the worked fills so
|
||||
// a worked+roamed cell shows blue stripes with green between them — the
|
||||
// stripe paint is fully opaque, so the two colors never alpha-blend
|
||||
// into a teal/green mix. Same geometry as the worked fills (per-4-char
|
||||
// cell at both zoom levels). The station's OWN grid is excluded: it
|
||||
// already carries the bold outline and must not be striped (user req).
|
||||
if (roamedGrids.isNotEmpty()) {
|
||||
if (zoom >= GRID_ZOOM_SUB) {
|
||||
for (row in firstRow..lastRow) {
|
||||
val lat = row * cellLat
|
||||
if (lat < -90.0 || lat >= 90.0) continue
|
||||
val topLatCell = lat + cellLat
|
||||
if (topLatCell > 90.0) continue
|
||||
val yTop = projectionToY(projection, topLatCell) ?: continue
|
||||
val yBottom = projectionToY(projection, lat) ?: continue
|
||||
for (turn in -colRepeats..colRepeats) for (col in firstCol..lastCol) {
|
||||
val lon = col * cellLon
|
||||
val xLeftBase = projectionToX(projection, lon, centerLon, worldWidthPx) ?: continue
|
||||
val xRightBase = projectionToX(projection, lon + cellLon, centerLon, worldWidthPx) ?: continue
|
||||
val xLeft = xLeftBase + turn * worldWidthPx.toFloat()
|
||||
val xRight = xRightBase + turn * worldWidthPx.toFloat()
|
||||
if (xRight < 0f || xLeft > canvas.width) continue
|
||||
val label = cellLabel(lat, lon, zoom)
|
||||
if (label in roamedGrids && label != ownGrid) {
|
||||
drawStripes(canvas, xLeft, yTop, xRight, yBottom, zoom)
|
||||
}
|
||||
}
|
||||
}
|
||||
} else {
|
||||
for (grid in roamedGrids) {
|
||||
// The own grid keeps only its bold outline — no stripes.
|
||||
if (grid == ownGrid) continue
|
||||
val cell = gridCellBounds(grid) ?: continue
|
||||
for (turn in -colRepeats..colRepeats) {
|
||||
val dLon = turn * 360.0
|
||||
if (cell.lonRight + dLon <= leftLon || cell.lonLeft + dLon >= rightLon) continue
|
||||
val yTop = projectionToY(projection, cell.latTop) ?: continue
|
||||
val yBottom = projectionToY(projection, cell.latBottom) ?: continue
|
||||
val xLeftBase = projectionToX(projection, cell.lonLeft, centerLon, worldWidthPx) ?: continue
|
||||
val xRightBase = projectionToX(projection, cell.lonRight, centerLon, worldWidthPx) ?: continue
|
||||
val xLeft = xLeftBase + turn * worldWidthPx.toFloat()
|
||||
val xRight = xRightBase + turn * worldWidthPx.toFloat()
|
||||
if (xRight < 0f || xLeft > canvas.width) continue
|
||||
if (yBottom < 0f || yTop > canvas.height) continue
|
||||
drawStripes(canvas, xLeft, yTop, xRight, yBottom, zoom)
|
||||
}
|
||||
}
|
||||
}
|
||||
}
|
||||
// Horizontal lines (parallels)
|
||||
|
||||
// Vertical lines (meridians). Worked-grid cells are NOT excluded:
|
||||
// the boundary lines between adjacent worked squares must stay visible
|
||||
// so the grid structure remains readable (reverted 2026-09-09 — the
|
||||
// earlier skip logic removed those shared edges entirely).
|
||||
for (turn in -colRepeats..colRepeats) for (col in firstCol..lastCol) {
|
||||
val lon = col * cellLon
|
||||
// World-repeat copies: keep the turn offset in pixels, otherwise
|
||||
// every turn normalizes to the same x and the line paints over
|
||||
// itself 2*colRepeats+1 times (alpha stacking).
|
||||
val xBase = projectionToX(projection, lon, centerLon, worldWidthPx) ?: continue
|
||||
val x = xBase + turn * worldWidthPx.toFloat()
|
||||
for (row in firstRow..lastRow) {
|
||||
val lat = row * cellLat
|
||||
if (lat < -90.0 || lat >= 90.0) continue
|
||||
val topLatCell = lat + cellLat
|
||||
if (topLatCell > 90.0) continue
|
||||
val yTop = projectionToY(projection, topLatCell) ?: continue
|
||||
val yBottom = projectionToY(projection, lat) ?: continue
|
||||
canvas.drawLine(x, yTop, x, yBottom, linePaint)
|
||||
}
|
||||
}
|
||||
// Horizontal lines (parallels).
|
||||
for (row in firstRow..lastRow) {
|
||||
val lat = row * cellLat
|
||||
if (lat <= -90.0 || lat >= 90.0) continue
|
||||
val y = projectionToY(projection, lat)
|
||||
if (y == null) continue
|
||||
canvas.drawLine(0f, y, canvas.width.toFloat(), y, linePaint)
|
||||
for (turn in -colRepeats..colRepeats) for (col in firstCol..lastCol) {
|
||||
val lon = col * cellLon
|
||||
// World-repeat copies: keep the turn offset in pixels (same
|
||||
// alpha-stacking fix as the vertical lines above).
|
||||
val xLeftBase = projectionToX(projection, lon, centerLon, worldWidthPx) ?: continue
|
||||
val xRightBase = projectionToX(projection, lon + cellLon, centerLon, worldWidthPx) ?: continue
|
||||
val xLeft = xLeftBase + turn * worldWidthPx.toFloat()
|
||||
val xRight = xRightBase + turn * worldWidthPx.toFloat()
|
||||
if (xRight < 0f || xLeft > canvas.width) continue
|
||||
canvas.drawLine(xLeft, y, xRight, y, linePaint)
|
||||
}
|
||||
}
|
||||
|
||||
// The station's own grid square: redraw its four borders thicker on top.
|
||||
if (ownCell != null) {
|
||||
val ownColIdx = firstCol..lastCol
|
||||
for (row in firstRow..lastRow) {
|
||||
val lat = row * cellLat
|
||||
if (lat < -90.0 || lat >= 90.0) continue
|
||||
for (col in ownColIdx) {
|
||||
val lon = col * cellLon
|
||||
if (cellLabel(lat, lon, zoom) != ownCell) continue
|
||||
val yTop = projectionToY(projection, lat + cellLat) ?: continue
|
||||
val yBottom = projectionToY(projection, lat) ?: continue
|
||||
val xLeft = projectionToX(projection, lon, centerLon, worldWidthPx) ?: continue
|
||||
val xRight = projectionToX(projection, lon + cellLon, centerLon, worldWidthPx) ?: continue
|
||||
canvas.drawLine(xLeft, yTop, xRight, yTop, ownLinePaint)
|
||||
canvas.drawLine(xLeft, yBottom, xRight, yBottom, ownLinePaint)
|
||||
canvas.drawLine(xLeft, yTop, xLeft, yBottom, ownLinePaint)
|
||||
canvas.drawLine(xRight, yTop, xRight, yBottom, ownLinePaint)
|
||||
// The tapped worked grid gets the same treatment in a different color.
|
||||
if (ownCell != null || selectedCell != null) {
|
||||
if (zoom >= GRID_ZOOM_SUB) {
|
||||
for (row in firstRow..lastRow) {
|
||||
val lat = row * cellLat
|
||||
if (lat < -90.0 || lat >= 90.0) continue
|
||||
for (col in firstCol..lastCol) {
|
||||
val lon = col * cellLon
|
||||
val label = cellLabel(lat, lon, zoom)
|
||||
if (label != ownCell && label != selectedCell) continue
|
||||
val yTop = projectionToY(projection, lat + cellLat) ?: continue
|
||||
val yBottom = projectionToY(projection, lat) ?: continue
|
||||
val xLeft = projectionToX(projection, lon, centerLon, worldWidthPx) ?: continue
|
||||
val xRight = projectionToX(projection, lon + cellLon, centerLon, worldWidthPx) ?: continue
|
||||
val paint = if (label == selectedCell) selectedLinePaint else ownLinePaint
|
||||
canvas.drawLine(xLeft, yTop, xRight, yTop, paint)
|
||||
canvas.drawLine(xLeft, yBottom, xRight, yBottom, paint)
|
||||
canvas.drawLine(xLeft, yTop, xLeft, yBottom, paint)
|
||||
canvas.drawLine(xRight, yTop, xRight, yBottom, paint)
|
||||
}
|
||||
}
|
||||
} else {
|
||||
// Field zoom: the visible grid shows 2-char fields only, but the
|
||||
// station's own 2°x1° square still gets its bold outline drawn
|
||||
// on top of the field grid (user req). selectedCell is null here.
|
||||
val grid = ownCell
|
||||
if (grid != null) {
|
||||
val cell = gridCellBounds(grid)
|
||||
if (cell != null) {
|
||||
for (turn in -colRepeats..colRepeats) {
|
||||
val dLon = turn * 360.0
|
||||
if (cell.lonRight + dLon <= leftLon || cell.lonLeft + dLon >= rightLon) continue
|
||||
val yTop = projectionToY(projection, cell.latTop) ?: continue
|
||||
val yBottom = projectionToY(projection, cell.latBottom) ?: continue
|
||||
val xLeftBase = projectionToX(projection, cell.lonLeft, centerLon, worldWidthPx) ?: continue
|
||||
val xRightBase = projectionToX(projection, cell.lonRight, centerLon, worldWidthPx) ?: continue
|
||||
val xLeft = xLeftBase + turn * worldWidthPx.toFloat()
|
||||
val xRight = xRightBase + turn * worldWidthPx.toFloat()
|
||||
if (xRight < 0f || xLeft > canvas.width) continue
|
||||
if (yBottom < 0f || yTop > canvas.height) continue
|
||||
canvas.drawLine(xLeft, yTop, xRight, yTop, ownLinePaint)
|
||||
canvas.drawLine(xLeft, yBottom, xRight, yBottom, ownLinePaint)
|
||||
canvas.drawLine(xLeft, yTop, xLeft, yBottom, ownLinePaint)
|
||||
canvas.drawLine(xRight, yTop, xRight, yBottom, ownLinePaint)
|
||||
}
|
||||
}
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
// Labels: centered in each cell, only when the cell is large enough on
|
||||
// screen to hold a label (avoid clutter at low zoom)
|
||||
val showLabels = when {
|
||||
zoom >= GRID_ZOOM_SUB -> true
|
||||
zoom >= FIELD_ZOOM_LABELS -> true
|
||||
else -> false
|
||||
}
|
||||
// screen to hold a label (avoid clutter at low zoom).
|
||||
// Field (2-char) labels show at every zoom, subject only to the pixel-
|
||||
// size check below; sub-square (4-char) labels only from LABEL_ZOOM_SUB
|
||||
// (one level above the grid lines, so zoom 6 shows lines but no names).
|
||||
val showLabels = zoom >= LABEL_ZOOM_SUB || cellLat == FIELD_LAT
|
||||
if (!showLabels) return
|
||||
// Estimate on-screen cell height to avoid clutter at low zoom:
|
||||
// project two points 1° apart in latitude and measure the pixel distance.
|
||||
@@ -187,12 +368,22 @@ class MaidenheadGridOverlay : Overlay() {
|
||||
if (topLatCell > 90.0) continue
|
||||
val yTop = projectionToY(projection, topLatCell) ?: continue
|
||||
val yBottom = projectionToY(projection, lat) ?: continue
|
||||
val yCenter = (yTop + yBottom) / 2f - textHalfHeight
|
||||
if (yBottom < 0f || yTop > canvas.height) continue
|
||||
for (col in firstCol..lastCol) {
|
||||
// Polar bands (80..90 / -90..-80) extend beyond the map's latitude
|
||||
// limit, so their geometric center falls off-screen and the label
|
||||
// would never be visible. Center the label in the VISIBLE part of
|
||||
// the cell instead; fully off-screen cells are still skipped.
|
||||
val visTop = maxOf(yTop, 0f)
|
||||
val visBottom = minOf(yBottom, canvas.height.toFloat())
|
||||
if (visBottom < 0f || visTop > canvas.height) continue
|
||||
val yCenter = (visTop + visBottom) / 2f - textHalfHeight
|
||||
for (turn in -colRepeats..colRepeats) for (col in firstCol..lastCol) {
|
||||
val lon = col * cellLon
|
||||
val xLeft = projectionToX(projection, lon, centerLon, worldWidthPx) ?: continue
|
||||
val xRight = projectionToX(projection, lon + cellLon, centerLon, worldWidthPx) ?: continue
|
||||
// World-repeat copies: keep the turn offset in pixels (same
|
||||
// alpha-stacking fix as the lines above).
|
||||
val xLeftBase = projectionToX(projection, lon, centerLon, worldWidthPx) ?: continue
|
||||
val xRightBase = projectionToX(projection, lon + cellLon, centerLon, worldWidthPx) ?: continue
|
||||
val xLeft = xLeftBase + turn * worldWidthPx.toFloat()
|
||||
val xRight = xRightBase + turn * worldWidthPx.toFloat()
|
||||
if (xRight < 0f || xLeft > canvas.width) continue
|
||||
val label = cellLabel(lat, lon, zoom)
|
||||
canvas.drawText(label, (xLeft + xRight) / 2f, yCenter, labelPaint)
|
||||
@@ -200,6 +391,30 @@ class MaidenheadGridOverlay : Overlay() {
|
||||
}
|
||||
}
|
||||
|
||||
/**
|
||||
* Draws 45° diagonal stripes (GridMaster-style zebra) clipped to the cell
|
||||
* rectangle, from top-left to bottom-right. The paint is nearly opaque so
|
||||
* stripes stay blue even over a green worked fill underneath.
|
||||
*/
|
||||
private fun drawStripes(canvas: Canvas, xLeft: Float, yTop: Float, xRight: Float, yBottom: Float, zoom: Double) {
|
||||
if (xRight <= xLeft || yBottom <= yTop) return
|
||||
canvas.save()
|
||||
canvas.clipRect(xLeft, yTop, xRight, yBottom)
|
||||
val height = yBottom - yTop
|
||||
// Geographic density is kept constant: spacing is the reference pixel
|
||||
// spacing (STRIPE_SPACING_PX at the map's max zoom) scaled by 2^(zoom-max),
|
||||
// so stripes shrink/grow with the map instead of staying fixed on screen.
|
||||
val spacing = STRIPE_SPACING_PX * Math.pow(2.0, zoom - MAX_GRID_ZOOM).toFloat()
|
||||
// Start one stripe-width left of the cell so the top-left corner is
|
||||
// always covered; each stripe runs from (x, top) to (x+height, bottom).
|
||||
var x = xLeft - height
|
||||
while (x < xRight) {
|
||||
canvas.drawLine(x, yTop, x + height, yBottom, roamStripePaint)
|
||||
x += spacing
|
||||
}
|
||||
canvas.restore()
|
||||
}
|
||||
|
||||
/** X pixel for a longitude (meridians are vertical in Web Mercator). */
|
||||
private fun projectionToX(projection: Projection, lon: Double, centerLon: Double, worldWidthPx: Double): Float? {
|
||||
// Do NOT use osmdroid's toPixels() here: at low zoom its wrap-around
|
||||
@@ -217,7 +432,15 @@ class MaidenheadGridOverlay : Overlay() {
|
||||
|
||||
/** Y pixel for a latitude, or null when outside the viewport. */
|
||||
private fun projectionToY(projection: Projection, lat: Double): Float? {
|
||||
val geo = org.osmdroid.util.GeoPoint(lat, 0.0)
|
||||
// Web Mercator is undefined beyond ±85.0511° (osmdroid clamps the world
|
||||
// to TileSystemWebMercator limits). Projecting the polar field rows
|
||||
// (lat=±90: Maidenhead row R = 80..90°N, row A = -90..-80°S) yields
|
||||
// ±9.2e18 pixel coordinates that the canvas cannot rasterize, so the
|
||||
// polar grid lines silently vanish. Clamp to the Mercator limit: the
|
||||
// polar rows then project onto the screen edge and their lines are
|
||||
// drawn (the off-limit sliver beyond 85.05° is invisible anyway).
|
||||
val clamped = lat.coerceIn(-MAX_MERCATOR_LAT, MAX_MERCATOR_LAT)
|
||||
val geo = org.osmdroid.util.GeoPoint(clamped, 0.0)
|
||||
val p = projection.toPixels(geo, null)
|
||||
return p.y.toFloat()
|
||||
}
|
||||
@@ -237,6 +460,30 @@ class MaidenheadGridOverlay : Overlay() {
|
||||
return "$field$squareLon$squareLat"
|
||||
}
|
||||
|
||||
/**
|
||||
* Geographic bounds of a 4-char Maidenhead square (e.g. "OL62"):
|
||||
* 2° wide in longitude, 1° tall in latitude.
|
||||
*/
|
||||
private fun gridCellBounds(grid: String): CellBounds? {
|
||||
val g = grid.trim().uppercase()
|
||||
if (g.length < 4) return null
|
||||
val fieldLon = g[0] - 'A'
|
||||
val fieldLat = g[1] - 'A'
|
||||
val sqLon = g[2] - '0'
|
||||
val sqLat = g[3] - '0'
|
||||
if (fieldLon !in 0..17 || fieldLat !in 0..17 || sqLon !in 0..9 || sqLat !in 0..9) return null
|
||||
val lonLeft = -180.0 + fieldLon * FIELD_LON + sqLon * SUB_SQUARE_LON
|
||||
val latBottom = -90.0 + fieldLat * FIELD_LAT + sqLat * SUB_SQUARE_LAT
|
||||
return CellBounds(lonLeft, lonLeft + SUB_SQUARE_LON, latBottom, latBottom + SUB_SQUARE_LAT)
|
||||
}
|
||||
|
||||
private data class CellBounds(
|
||||
val lonLeft: Double,
|
||||
val lonRight: Double,
|
||||
val latBottom: Double,
|
||||
val latTop: Double
|
||||
)
|
||||
|
||||
private fun normalizeLon(lon: Double): Double {
|
||||
var l = lon % 360.0
|
||||
if (l >= 180.0) l -= 360.0
|
||||
@@ -244,14 +491,34 @@ class MaidenheadGridOverlay : Overlay() {
|
||||
return l
|
||||
}
|
||||
|
||||
private companion object {
|
||||
internal companion object {
|
||||
const val FIELD_LAT = 10.0
|
||||
const val FIELD_LON = 20.0
|
||||
const val SUB_SQUARE_LAT = 1.0
|
||||
const val SUB_SQUARE_LON = 2.0
|
||||
const val GRID_ZOOM_SUB = 5.0
|
||||
const val FIELD_ZOOM_LABELS = 3.0
|
||||
// Web Mercator latitude limit (osmdroid TileSystemWebMercator): projecting
|
||||
// beyond it produces ±9.2e18 pixel coordinates the canvas cannot draw.
|
||||
const val MAX_MERCATOR_LAT = 85.05112877980658
|
||||
// Zoom at which the 2°x1° sub-square grid lines/fills appear.
|
||||
// 5.0 → 6.0: at zoom 5 a full field spans too little screen width and
|
||||
// the sub-square grid is too dense to read; 6 roughly doubles the
|
||||
// on-screen size of each square.
|
||||
const val GRID_ZOOM_SUB = 6.0
|
||||
// Zoom at which the 4-char sub-square names appear (one level above the
|
||||
// grid lines: zoom 6 = lines only, zoom 6.5+ = lines + names).
|
||||
const val LABEL_ZOOM_SUB = 6.5
|
||||
const val MIN_LABEL_CELL_PX = 48f
|
||||
const val MAX_OVERSHOOT_PX = 64
|
||||
/** Center-to-center spacing of the roamed-grid zebra stripes, in px. */
|
||||
// 44f spacing (was 16f — too dense per user) with 14f-wide stripes;
|
||||
// sparse GridMaster-style zebra.
|
||||
const val STRIPE_SPACING_PX = 44f
|
||||
/**
|
||||
* Reference zoom for stripe spacing: the map's max zoom (MapScreen sets
|
||||
* maxZoomLevel = 7.0). At this zoom stripes are STRIPE_SPACING_PX apart;
|
||||
* at lower zooms spacing scales by 2^(zoom-max) so the geographic
|
||||
* density matches the max-zoom look at every level.
|
||||
*/
|
||||
const val MAX_GRID_ZOOM = 7.0
|
||||
}
|
||||
}
|
||||
@@ -21,6 +21,7 @@ import android.graphics.Canvas
|
||||
import android.graphics.Color
|
||||
import android.graphics.Paint
|
||||
import android.graphics.RectF
|
||||
import org.osmdroid.util.GeoPoint
|
||||
import org.osmdroid.views.MapView
|
||||
import org.osmdroid.views.overlay.Overlay
|
||||
import kotlin.math.cos
|
||||
@@ -39,9 +40,11 @@ import kotlin.math.sin
|
||||
* exceeds 90°, i.e. the dot product of the two unit vectors is negative:
|
||||
* dot = sin(lat)*sin(sunLat) + cos(lat)*cos(sunLat)*cos(lon - sunLon) < 0
|
||||
*
|
||||
* Performance: we sample one column per [stepPx] pixels (default 4) and draw
|
||||
* Performance: we sample one column per stepPx pixels (default 4) and draw
|
||||
* filled vertical rectangles. On a 1080-wide screen this means ~270 trig
|
||||
* evaluations per row, which is imperceptible.
|
||||
* evaluations per row, which is imperceptible. draw() is called on every
|
||||
* frame, so it must stay allocation-free — all fromPixels() calls reuse a
|
||||
* single GeoPoint instance.
|
||||
*/
|
||||
class MapNightOverlay : Overlay() {
|
||||
|
||||
@@ -58,6 +61,9 @@ class MapNightOverlay : Overlay() {
|
||||
|
||||
private val rect = RectF()
|
||||
|
||||
/** Reused across every fromPixels() call — draw() runs on every frame, so it must not allocate */
|
||||
private val reusableGeoPoint = GeoPoint(0.0, 0.0)
|
||||
|
||||
override fun draw(canvas: Canvas, mapView: MapView, shadow: Boolean) {
|
||||
if (shadow) return
|
||||
|
||||
@@ -71,6 +77,15 @@ class MapNightOverlay : Overlay() {
|
||||
val h = mapView.height
|
||||
val stepPx = 4 // sample every N pixels — balance quality vs CPU
|
||||
|
||||
// The map is never rotated, so latitude depends only on y and longitude only on x.
|
||||
// Resolve the top/bottom latitudes once instead of once per column.
|
||||
val latTopRad = Math.toRadians((proj.fromPixels(0, 0, reusableGeoPoint) ?: return).latitude)
|
||||
val latBotRad = Math.toRadians((proj.fromPixels(0, h - 1, reusableGeoPoint) ?: return).latitude)
|
||||
val sinLatTop = sin(latTopRad)
|
||||
val cosLatTop = cos(latTopRad)
|
||||
val sinLatBot = sin(latBotRad)
|
||||
val cosLatBot = cos(latBotRad)
|
||||
|
||||
// We scan column by column. For each column we determine the longitude,
|
||||
// then find the latitude range that is in night and shade it.
|
||||
// Since longitude is constant along a vertical strip and the day/night
|
||||
@@ -79,22 +94,14 @@ class MapNightOverlay : Overlay() {
|
||||
|
||||
var x = 0
|
||||
while (x < w) {
|
||||
// Get the geographic coordinate at the top and bottom of this column.
|
||||
val geoTop = proj.fromPixels(x, 0) ?: run { x += stepPx; continue }
|
||||
val geoBot = proj.fromPixels(x, h - 1) ?: run { x += stepPx; continue }
|
||||
|
||||
val geoTop = proj.fromPixels(x, 0, reusableGeoPoint) ?: run { x += stepPx; continue }
|
||||
val lonRad = Math.toRadians(geoTop.longitude)
|
||||
val cosLonDiff = cos(lonRad - sunLonRad)
|
||||
|
||||
// Top pixel geographic lat
|
||||
val latTopRad = Math.toRadians(geoTop.latitude)
|
||||
// Bottom pixel geographic lat (osmdroid: y=0 is top of screen, higher y = lower lat)
|
||||
val latBotRad = Math.toRadians(geoBot.latitude)
|
||||
|
||||
// dot(sunVec, pointVec) < 0 → night
|
||||
// dot = sin(lat)*sinSunLat + cos(lat)*cosSunLat*cosLonDiff
|
||||
val dotTop = sin(latTopRad) * sinSunLat + cos(latTopRad) * cosSunLat * cosLonDiff
|
||||
val dotBot = sin(latBotRad) * sinSunLat + cos(latBotRad) * cosSunLat * cosLonDiff
|
||||
val dotTop = sinLatTop * sinSunLat + cosLatTop * cosSunLat * cosLonDiff
|
||||
val dotBot = sinLatBot * sinSunLat + cosLatBot * cosSunLat * cosLonDiff
|
||||
|
||||
when {
|
||||
dotTop < 0 && dotBot < 0 -> {
|
||||
@@ -142,7 +149,7 @@ class MapNightOverlay : Overlay() {
|
||||
var hi = yBot
|
||||
while (hi - lo > 1) {
|
||||
val mid = (lo + hi) / 2
|
||||
val geo = proj.fromPixels(x, mid) ?: return mid
|
||||
val geo = proj.fromPixels(x, mid, reusableGeoPoint) ?: return mid
|
||||
val latRad = Math.toRadians(geo.latitude)
|
||||
val dot = sin(latRad) * sinSunLat + cos(latRad) * cosSunLat * cosLonDiff
|
||||
if (dot < 0) hi = mid else lo = mid
|
||||
|
||||
@@ -25,18 +25,30 @@ import android.graphics.Paint
|
||||
import android.graphics.Rect
|
||||
import android.graphics.drawable.Drawable
|
||||
import androidx.collection.LruCache
|
||||
import androidx.compose.foundation.clickable
|
||||
import androidx.compose.foundation.layout.Arrangement
|
||||
import androidx.compose.foundation.layout.Box
|
||||
import androidx.compose.foundation.layout.Column
|
||||
import androidx.compose.foundation.layout.IntrinsicSize
|
||||
import androidx.compose.foundation.layout.Row
|
||||
import androidx.compose.foundation.layout.fillMaxSize
|
||||
import androidx.compose.foundation.layout.fillMaxWidth
|
||||
import androidx.compose.foundation.layout.heightIn
|
||||
import androidx.compose.foundation.layout.padding
|
||||
import androidx.compose.foundation.layout.width
|
||||
import androidx.compose.foundation.lazy.LazyRow
|
||||
import androidx.compose.foundation.lazy.items
|
||||
import androidx.compose.foundation.rememberScrollState
|
||||
import androidx.compose.foundation.shape.RoundedCornerShape
|
||||
import androidx.compose.foundation.verticalScroll
|
||||
import androidx.compose.material3.Card
|
||||
import androidx.compose.material3.CardDefaults
|
||||
import androidx.compose.material3.ElevatedCard
|
||||
import androidx.compose.material3.FilterChip
|
||||
import androidx.compose.material3.FilterChipDefaults
|
||||
import androidx.compose.material3.MaterialTheme
|
||||
import androidx.compose.material3.Surface
|
||||
import androidx.compose.material3.Switch
|
||||
import androidx.compose.material3.Text
|
||||
import androidx.compose.runtime.Composable
|
||||
import androidx.compose.runtime.DisposableEffect
|
||||
@@ -48,6 +60,8 @@ import androidx.compose.runtime.setValue
|
||||
import androidx.compose.ui.Alignment
|
||||
import androidx.compose.ui.Modifier
|
||||
import androidx.compose.ui.draw.rotate
|
||||
import androidx.compose.ui.draw.scale
|
||||
import androidx.compose.ui.graphics.Color as ComposeColor
|
||||
import androidx.compose.ui.platform.LocalContext
|
||||
import androidx.compose.ui.res.stringResource
|
||||
import androidx.compose.ui.unit.dp
|
||||
@@ -62,6 +76,9 @@ import androidx.lifecycle.LifecycleEventObserver
|
||||
import androidx.lifecycle.compose.LocalLifecycleOwner
|
||||
import androidx.lifecycle.compose.collectAsStateWithLifecycle
|
||||
import androidx.lifecycle.viewmodel.compose.viewModel
|
||||
import com.rtbishop.look4sat.core.domain.model.AwardCalculator
|
||||
import com.rtbishop.look4sat.core.domain.model.AwardProgress
|
||||
import com.rtbishop.look4sat.core.domain.model.AwardType
|
||||
import com.rtbishop.look4sat.core.domain.predict.GeoPos
|
||||
import com.rtbishop.look4sat.core.domain.predict.OrbitalObject
|
||||
import com.rtbishop.look4sat.core.domain.predict.OrbitalPos
|
||||
@@ -74,6 +91,10 @@ import com.rtbishop.look4sat.core.presentation.TopBar
|
||||
import com.rtbishop.look4sat.core.presentation.isVerticalLayout
|
||||
import com.rtbishop.look4sat.core.presentation.layoutPadding
|
||||
import org.osmdroid.tileprovider.tilesource.XYTileSource
|
||||
import org.osmdroid.events.DelayedMapListener
|
||||
import org.osmdroid.events.MapListener
|
||||
import org.osmdroid.events.ScrollEvent
|
||||
import org.osmdroid.events.ZoomEvent
|
||||
import org.osmdroid.util.GeoPoint
|
||||
import org.osmdroid.views.CustomZoomButtonsController
|
||||
import org.osmdroid.views.MapView
|
||||
@@ -129,6 +150,21 @@ fun MapDestination() {
|
||||
val viewModel: MapViewModel = viewModel(factory = MapViewModel.factory(container))
|
||||
val uiState by viewModel.uiState.collectAsStateWithLifecycle()
|
||||
val mapView = rememberMapViewWithLifecycle()
|
||||
val lifecycle = LocalLifecycleOwner.current.lifecycle
|
||||
DisposableEffect(lifecycle) {
|
||||
val observer = LifecycleEventObserver { _, event ->
|
||||
when (event) {
|
||||
Lifecycle.Event.ON_START -> viewModel.onAction(MapAction.SetVisible(true))
|
||||
Lifecycle.Event.ON_STOP -> viewModel.onAction(MapAction.SetVisible(false))
|
||||
else -> {}
|
||||
}
|
||||
}
|
||||
lifecycle.addObserver(observer)
|
||||
onDispose {
|
||||
lifecycle.removeObserver(observer)
|
||||
viewModel.onAction(MapAction.SetVisible(false))
|
||||
}
|
||||
}
|
||||
MapScreen(uiState, viewModel::onAction, mapView)
|
||||
}
|
||||
|
||||
@@ -138,13 +174,97 @@ private fun MapScreen(uiState: MapState, onAction: (MapAction) -> Unit, mapView:
|
||||
val timeString = uiState.mapData?.aosTime ?: "00:00:00"
|
||||
val isTimeAos = uiState.mapData?.isTimeAos ?: true
|
||||
|
||||
// Tapped worked grid -> centered QSO dialog. Local UI state: the map is the
|
||||
// only consumer and it resets when leaving the page.
|
||||
var selectedGrid by remember { mutableStateOf<String?>(null) }
|
||||
// Selected award filter. Entering grid mode defaults to VUCC (the plain
|
||||
// worked-grid view); the reset effect below re-asserts that on every entry.
|
||||
var selectedAward by remember { mutableStateOf<AwardType?>(AwardType.VUCC) }
|
||||
// Six-award progress derived from the confirmed QSO store; recomputed when
|
||||
// the store changes (LoTW/Wavelog sync).
|
||||
// Per operated-grid VUCC breakdown: myGrid -> set of worked grids worked from it.
|
||||
val vuccByMyGrid: Map<String, Set<String>> = remember(uiState.workedGridQsos) {
|
||||
val m = mutableMapOf<String, MutableSet<String>>()
|
||||
for ((grid, qsos) in uiState.workedGridQsos) {
|
||||
for (q in qsos) {
|
||||
val mg = q.myGrid ?: continue
|
||||
m.getOrPut(mg) { mutableSetOf() }.add(grid)
|
||||
}
|
||||
}
|
||||
m
|
||||
}
|
||||
// Selected operated grid for VUCC counting; defaults to the grid with the
|
||||
// most worked grids. Null when the store carries no per-QSO myGrid data
|
||||
// (requires a LoTW resync) — then VUCC falls back to the global count.
|
||||
var selectedMyGrid by remember(vuccByMyGrid) {
|
||||
mutableStateOf(vuccByMyGrid.maxByOrNull { it.value.size }?.key)
|
||||
}
|
||||
val awardProgress: List<AwardProgress> = remember(uiState.workedGridQsos, vuccByMyGrid, selectedMyGrid) {
|
||||
val vuccGrids = selectedMyGrid?.let { vuccByMyGrid[it].orEmpty() }
|
||||
val base = AwardCalculator.calculate(uiState.workedGridQsos)
|
||||
if (vuccGrids == null) base
|
||||
else base.map { p ->
|
||||
if (p.type == AwardType.VUCC) p.copy(workedKeys = vuccGrids, count = vuccGrids.size) else p
|
||||
}
|
||||
}
|
||||
// Worked grids drawn on the map: filtered by the selected operated grid
|
||||
// (null = all operated grids). Drives both the green fills and the tap
|
||||
// listener below, so switching the selector changes which cells are green.
|
||||
val workedGrids = remember(uiState.workedGrids, vuccByMyGrid, selectedMyGrid) {
|
||||
if (selectedMyGrid == null) uiState.workedGrids
|
||||
else vuccByMyGrid[selectedMyGrid] ?: emptySet()
|
||||
}
|
||||
val isGridMode = uiState.isGridMode
|
||||
DisposableEffect(isGridMode, workedGrids) {
|
||||
val receiver = object : org.osmdroid.events.MapEventsReceiver {
|
||||
override fun singleTapConfirmedHelper(p: GeoPoint?): Boolean {
|
||||
if (!isGridMode || p == null) return false
|
||||
val zoom = mapView.zoomLevelDouble
|
||||
// Allow tapping worked cells as soon as the 4-char grid LINES
|
||||
// appear (GRID_ZOOM_SUB), not only when labels show (LABEL_ZOOM_SUB).
|
||||
if (zoom < MaidenheadGridOverlay.GRID_ZOOM_SUB) return false
|
||||
val grid = gridOfPoint(p.latitude, p.longitude) ?: return false
|
||||
if (grid !in workedGrids) return false
|
||||
selectedGrid = grid
|
||||
return true
|
||||
}
|
||||
|
||||
override fun longPressHelper(p: GeoPoint?): Boolean = false
|
||||
}
|
||||
val eventsOverlay = org.osmdroid.views.overlay.MapEventsOverlay(receiver)
|
||||
mapView.overlays.add(eventsOverlay)
|
||||
onDispose { mapView.overlays.remove(eventsOverlay) }
|
||||
}
|
||||
// Keep the overlay's selected highlight in sync with the dialog.
|
||||
LaunchedEffect(selectedGrid) {
|
||||
(mapView.overlays.getOrNull(OVERLAY_GRID) as? MaidenheadGridOverlay)?.selectedGrid = selectedGrid
|
||||
mapView.invalidate()
|
||||
}
|
||||
// Re-assert the VUCC default each time grid mode is entered; while already
|
||||
// in grid mode the user's chip choice is preserved.
|
||||
LaunchedEffect(uiState.isGridMode) {
|
||||
if (uiState.isGridMode) selectedAward = AwardType.VUCC
|
||||
}
|
||||
|
||||
LaunchedEffect(uiState.track) {
|
||||
// In grid mode the map is centered on the local grid square; following
|
||||
// the satellite subpoint here would override that centering on every
|
||||
// track update, so skip the tracking animation entirely.
|
||||
if (uiState.isGridMode) return@LaunchedEffect
|
||||
val firstPos = uiState.track?.firstOrNull()?.firstOrNull() ?: return@LaunchedEffect
|
||||
mapView.controller.animateTo(GeoPoint(firstPos.latitude, firstPos.longitude))
|
||||
}
|
||||
Column(modifier = Modifier.layoutPadding(), verticalArrangement = Arrangement.spacedBy(6.dp)) {
|
||||
val isVertical = isVerticalLayout()
|
||||
if (isVertical) {
|
||||
if (isGridMode) {
|
||||
// Grid mode: replace the satellite-selection top bar with the
|
||||
// award filter chips (All / DXCC / VUCC / WAPC / WAJA / WAZ / WAS).
|
||||
AwardChipsRow(
|
||||
progress = awardProgress,
|
||||
selected = selectedAward,
|
||||
onSelect = { selectedAward = it }
|
||||
)
|
||||
} else if (isVertical) {
|
||||
TopBar {
|
||||
IconCard(action = { onAction(MapAction.SelectPrev) }, resId = R.drawable.ic_arrow, modifier = rotateMod)
|
||||
TimerRow(timeString = timeString, isTimeAos = isTimeAos)
|
||||
@@ -165,17 +285,30 @@ private fun MapScreen(uiState: MapState, onAction: (MapAction) -> Unit, mapView:
|
||||
// the map page with grid mode already ON also centers the map.
|
||||
var prevGridMode by remember { mutableStateOf(false) }
|
||||
AndroidView({ mapView }) { view ->
|
||||
// Center on the station grid whenever entering grid mode.
|
||||
// Only mark the transition as consumed once a real position
|
||||
// was available; otherwise a first frame with a null
|
||||
// stationPosition would swallow the centering forever.
|
||||
val shouldCenter = uiState.isGridMode && !prevGridMode
|
||||
setGridMode(
|
||||
uiState.isGridMode, uiState.workedGrids, view,
|
||||
if (shouldCenter) uiState.stationPosition else null
|
||||
)
|
||||
if (!shouldCenter || uiState.stationPosition != null) {
|
||||
// Award filter mode: show the selected award's regions with
|
||||
// worked ones filled green; hide satellite layers like grid mode.
|
||||
val awardMode = selectedAward?.takeIf { it != AwardType.VUCC }
|
||||
if (uiState.isGridMode && awardMode != null) {
|
||||
setAwardMode(
|
||||
awardMode,
|
||||
awardProgress.firstOrNull { it.type == awardMode }?.workedKeys.orEmpty(),
|
||||
view
|
||||
)
|
||||
prevGridMode = uiState.isGridMode
|
||||
} else {
|
||||
// Center on the station grid whenever entering grid mode.
|
||||
// Only mark the transition as consumed once a real position
|
||||
// was available; otherwise a first frame with a null
|
||||
// stationPosition would swallow the centering forever.
|
||||
val shouldCenter = uiState.isGridMode && !prevGridMode
|
||||
setGridMode(
|
||||
uiState.isGridMode, workedGrids, uiState.roamedGrids, view,
|
||||
uiState.stationPosition,
|
||||
centerOnStation = shouldCenter
|
||||
)
|
||||
if (!shouldCenter || uiState.stationPosition != null) {
|
||||
prevGridMode = uiState.isGridMode
|
||||
}
|
||||
}
|
||||
if (!uiState.isGridMode) {
|
||||
uiState.stationPosition?.let { setStationPosition(it, view) }
|
||||
@@ -193,11 +326,197 @@ private fun MapScreen(uiState: MapState, onAction: (MapAction) -> Unit, mapView:
|
||||
if (isVertical) MapDataCard(mapData) else MapDataCards(mapData)
|
||||
}
|
||||
}
|
||||
// Top-left: operated-grid selector for VUCC counting (grid mode only).
|
||||
// Shown whenever per-grid QSO data exists; "All" (null) is available.
|
||||
if (uiState.isGridMode && selectedAward == AwardType.VUCC && vuccByMyGrid.isNotEmpty()) {
|
||||
VuccGridSelector(
|
||||
options = vuccByMyGrid,
|
||||
allCount = uiState.workedGrids.size,
|
||||
selected = selectedMyGrid,
|
||||
onSelect = { selectedMyGrid = it },
|
||||
modifier = Modifier
|
||||
.align(Alignment.TopStart)
|
||||
.padding(8.dp)
|
||||
)
|
||||
}
|
||||
GridModeToggle(
|
||||
isGridMode = uiState.isGridMode,
|
||||
onToggle = { onAction(MapAction.ToggleGridMode(it)) },
|
||||
modifier = Modifier
|
||||
.align(Alignment.TopEnd)
|
||||
.padding(8.dp)
|
||||
)
|
||||
}
|
||||
}
|
||||
}
|
||||
// Centered dialog listing the tapped worked grid's confirmed satellite QSOs.
|
||||
// Dismissed by tapping outside (no explicit close button).
|
||||
selectedGrid?.let { grid ->
|
||||
WorkedGridQsoDialog(
|
||||
grid = grid,
|
||||
qsos = uiState.workedGridQsos[grid].orEmpty().sortedBy { it.epochMs },
|
||||
isUtc = uiState.isUtc,
|
||||
onDismiss = { selectedGrid = null }
|
||||
)
|
||||
}
|
||||
}
|
||||
|
||||
// region Worked-grid QSO dialog
|
||||
|
||||
@Composable
|
||||
private fun WorkedGridQsoDialog(
|
||||
grid: String,
|
||||
qsos: List<com.rtbishop.look4sat.core.domain.model.GridQso>,
|
||||
isUtc: Boolean,
|
||||
onDismiss: () -> Unit
|
||||
) {
|
||||
androidx.compose.ui.window.Dialog(onDismissRequest = onDismiss) {
|
||||
// Centered card, ~85% width, internal scroll for long lists.
|
||||
Card(
|
||||
colors = CardDefaults.cardColors(containerColor = MaterialTheme.colorScheme.surfaceContainerLow),
|
||||
modifier = Modifier.fillMaxWidth(0.88f)
|
||||
) {
|
||||
Column {
|
||||
// Header: grid + counts
|
||||
Column(Modifier.padding(horizontal = 16.dp, vertical = 10.dp)) {
|
||||
Text(
|
||||
text = grid,
|
||||
style = MaterialTheme.typography.titleLarge,
|
||||
color = MaterialTheme.colorScheme.primary,
|
||||
fontFamily = androidx.compose.ui.text.font.FontFamily.Monospace
|
||||
)
|
||||
val distinctCalls = qsos.map { it.call }.distinct().size
|
||||
Text(
|
||||
text = stringResource(R.string.grid_qso_calls_count, distinctCalls, qsos.size),
|
||||
style = MaterialTheme.typography.bodySmall,
|
||||
color = MaterialTheme.colorScheme.onSurfaceVariant
|
||||
)
|
||||
}
|
||||
androidx.compose.material3.HorizontalDivider()
|
||||
if (qsos.isEmpty()) {
|
||||
Text(
|
||||
text = stringResource(R.string.grid_qso_no_sat),
|
||||
style = MaterialTheme.typography.bodySmall,
|
||||
modifier = Modifier.padding(16.dp)
|
||||
)
|
||||
} else {
|
||||
// Group by callsign preserving first-contact order (list is
|
||||
// already sorted oldest-first); expandable rows.
|
||||
val grouped = remember(qsos) {
|
||||
qsos.groupBy { it.call }.entries.sortedBy { it.value.first().epochMs }
|
||||
}
|
||||
Column(
|
||||
Modifier
|
||||
.heightIn(max = 380.dp)
|
||||
.verticalScroll(rememberScrollState())
|
||||
) {
|
||||
grouped.forEach { (call, callQsos) ->
|
||||
WorkedGridCallRow(call, callQsos = callQsos, isUtc = isUtc)
|
||||
androidx.compose.material3.HorizontalDivider(color = MaterialTheme.colorScheme.outlineVariant.copy(alpha = 0.3f))
|
||||
}
|
||||
}
|
||||
}
|
||||
}
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
@Composable
|
||||
private fun WorkedGridCallRow(
|
||||
call: String,
|
||||
callQsos: List<com.rtbishop.look4sat.core.domain.model.GridQso>,
|
||||
isUtc: Boolean,
|
||||
) {
|
||||
var expanded by remember { mutableStateOf(false) }
|
||||
val first = callQsos.first()
|
||||
Column(Modifier.fillMaxWidth().padding(horizontal = 16.dp, vertical = 8.dp)) {
|
||||
Row(
|
||||
verticalAlignment = Alignment.CenterVertically,
|
||||
modifier = Modifier
|
||||
.fillMaxWidth()
|
||||
.clickable { expanded = !expanded }
|
||||
) {
|
||||
Text(
|
||||
text = call,
|
||||
style = MaterialTheme.typography.titleMedium,
|
||||
fontFamily = androidx.compose.ui.text.font.FontFamily.Monospace,
|
||||
color = MaterialTheme.colorScheme.tertiary,
|
||||
maxLines = 1,
|
||||
overflow = androidx.compose.ui.text.style.TextOverflow.Ellipsis,
|
||||
modifier = Modifier.weight(1f)
|
||||
)
|
||||
Text(
|
||||
// Plurals resources don't work for zh (only 'other' matches), so
|
||||
// pick the singular/plural string explicitly.
|
||||
text = if (callQsos.size == 1) stringResource(R.string.grid_qso_count_one, 1)
|
||||
else stringResource(R.string.grid_qso_count_many, callQsos.size),
|
||||
style = MaterialTheme.typography.bodySmall,
|
||||
color = MaterialTheme.colorScheme.onSurfaceVariant,
|
||||
textAlign = androidx.compose.ui.text.style.TextAlign.Center,
|
||||
modifier = Modifier.weight(1f)
|
||||
)
|
||||
Row(
|
||||
verticalAlignment = Alignment.CenterVertically,
|
||||
horizontalArrangement = Arrangement.End,
|
||||
modifier = Modifier.weight(1f)
|
||||
) {
|
||||
Text(
|
||||
text = formatDate(first.epochMs, isUtc),
|
||||
style = MaterialTheme.typography.bodySmall,
|
||||
color = MaterialTheme.colorScheme.onSurfaceVariant
|
||||
)
|
||||
Text(
|
||||
text = if (expanded) " ▴" else " ▾",
|
||||
fontSize = 18.sp,
|
||||
color = MaterialTheme.colorScheme.primary
|
||||
)
|
||||
}
|
||||
}
|
||||
// First-QSO summary line, always visible.
|
||||
Text(
|
||||
text = stringResource(R.string.grid_qso_first) + " · " + qsoSummary(first, isUtc),
|
||||
style = MaterialTheme.typography.bodySmall,
|
||||
modifier = Modifier.padding(top = 3.dp)
|
||||
)
|
||||
// Subsequent QSOs in this grid, revealed on expand. No ordinal prefix;
|
||||
// each line carries its own date (the first QSO's date already sits in
|
||||
// the header row).
|
||||
if (expanded && callQsos.size > 1) {
|
||||
callQsos.drop(1).forEach { qso ->
|
||||
Text(
|
||||
text = formatDate(qso.epochMs, isUtc) + " · " + qsoSummary(qso, isUtc),
|
||||
style = MaterialTheme.typography.bodySmall,
|
||||
color = MaterialTheme.colorScheme.onSurfaceVariant,
|
||||
modifier = Modifier.padding(top = 3.dp)
|
||||
)
|
||||
}
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
private fun qsoSummary(qso: com.rtbishop.look4sat.core.domain.model.GridQso, isUtc: Boolean): String {
|
||||
val sat = qso.satName.ifBlank { "?" }
|
||||
val mode = qso.mode.ifBlank { "?" }
|
||||
val band = qso.bandLabel
|
||||
val time = formatTime(qso.epochMs, isUtc)
|
||||
return listOf(sat, mode, band, time).filter { it.isNotBlank() }.joinToString(" · ")
|
||||
}
|
||||
|
||||
private fun formatDate(epochMs: Long, isUtc: Boolean): String {
|
||||
if (epochMs <= 0L) return "--"
|
||||
val zone = if (isUtc) java.time.ZoneOffset.UTC else java.time.ZoneId.systemDefault()
|
||||
return java.time.Instant.ofEpochMilli(epochMs).atZone(zone)
|
||||
.format(java.time.format.DateTimeFormatter.ofPattern("yyyy-MM-dd"))
|
||||
}
|
||||
|
||||
private fun formatTime(epochMs: Long, isUtc: Boolean): String {
|
||||
if (epochMs <= 0L) return "--:--"
|
||||
val zone = if (isUtc) java.time.ZoneOffset.UTC else java.time.ZoneId.systemDefault()
|
||||
return java.time.Instant.ofEpochMilli(epochMs).atZone(zone)
|
||||
.format(java.time.format.DateTimeFormatter.ofPattern(if (isUtc) "HH:mm'Z'" else "HH:mm"))
|
||||
}
|
||||
// endregion
|
||||
|
||||
// region Map data composables
|
||||
@Composable
|
||||
private fun MapDataCard(data: MapData) {
|
||||
@@ -255,7 +574,8 @@ private fun MapDataCards(data: MapData) {
|
||||
Text(text = stringResource(R.string.map_elevation, data.elevation))
|
||||
}
|
||||
}
|
||||
Card(colors = cardColors, modifier = Modifier.align(Alignment.TopEnd)) {
|
||||
// Top-end card is offset down to make room for the grid-mode toggle pill.
|
||||
Card(colors = cardColors, modifier = Modifier.align(Alignment.TopEnd).padding(top = 60.dp)) {
|
||||
Column(horizontalAlignment = Alignment.End, modifier = paddingMod) {
|
||||
Text(text = stringResource(R.string.map_altitude, data.altitude), color = textColor)
|
||||
Text(text = stringResource(R.string.map_distance, data.range))
|
||||
@@ -282,25 +602,231 @@ private fun MapDataCards(data: MapData) {
|
||||
}
|
||||
// endregion
|
||||
|
||||
// region Grid mode toggle pill
|
||||
|
||||
/**
|
||||
* Award filter chips row shown in grid mode (replaces the satellite-selection
|
||||
* top bar). "All" = plain worked-grid view; each award chip carries its live
|
||||
* progress (count/target) and selecting it switches the map to the award's
|
||||
* boundary view.
|
||||
*/
|
||||
@Composable
|
||||
private fun AwardChipsRow(
|
||||
progress: List<AwardProgress>,
|
||||
selected: AwardType?,
|
||||
onSelect: (AwardType?) -> Unit
|
||||
) {
|
||||
LazyRow(
|
||||
horizontalArrangement = Arrangement.spacedBy(6.dp),
|
||||
modifier = Modifier.fillMaxWidth()
|
||||
) {
|
||||
// No "All" chip: it was redundant with VUCC — both show the plain
|
||||
// worked-grid map (VUCC never enters the boundary-overlay mode).
|
||||
items(progress) { p ->
|
||||
FilterChip(
|
||||
selected = selected == p.type,
|
||||
onClick = { onSelect(p.type) },
|
||||
label = {
|
||||
Text(
|
||||
text = "${p.type.name} ${p.count}/${p.target}",
|
||||
fontSize = 12.sp
|
||||
)
|
||||
},
|
||||
colors = FilterChipDefaults.filterChipColors()
|
||||
)
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
/**
|
||||
* Compact pill toggle for switching between satellite view and grid mode,
|
||||
* floated over the map's top-right corner. The label reflects the active
|
||||
* mode ("Grid mode" when ON, "Satellite mode" when OFF). Semi-transparent
|
||||
* background keeps the map readable underneath.
|
||||
*/
|
||||
@Composable
|
||||
private fun VuccGridSelector(
|
||||
options: Map<String, Set<String>>,
|
||||
allCount: Int,
|
||||
selected: String?,
|
||||
onSelect: (String?) -> Unit,
|
||||
modifier: Modifier = Modifier
|
||||
) {
|
||||
var expanded by remember { mutableStateOf(false) }
|
||||
// Most-worked grid first; selection is made on tap. "All" sits last.
|
||||
val sorted = remember(options) { options.entries.sortedByDescending { it.value.size } }
|
||||
Surface(
|
||||
color = ComposeColor.Black.copy(alpha = 0.45f),
|
||||
shape = RoundedCornerShape(8.dp),
|
||||
modifier = modifier
|
||||
) {
|
||||
// Width = widest child (header or list item), never the full screen:
|
||||
// the expanded rows use fillMaxWidth, which would otherwise stretch
|
||||
// this box to the whole map width.
|
||||
Column(modifier = Modifier.width(IntrinsicSize.Max)) {
|
||||
Row(
|
||||
verticalAlignment = Alignment.CenterVertically,
|
||||
modifier = Modifier
|
||||
.fillMaxWidth()
|
||||
.clickable { expanded = !expanded }
|
||||
.padding(start = 10.dp, end = 6.dp, top = 4.dp, bottom = 4.dp)
|
||||
) {
|
||||
Text(
|
||||
text = if (selected == null) "All ($allCount)"
|
||||
else "$selected (${options[selected]?.size ?: 0})",
|
||||
color = ComposeColor.White,
|
||||
fontSize = 12.sp,
|
||||
fontFamily = androidx.compose.ui.text.font.FontFamily.Monospace
|
||||
)
|
||||
Text(
|
||||
text = if (expanded) " ▴" else " ▾",
|
||||
fontSize = 18.sp,
|
||||
color = MaterialTheme.colorScheme.primary,
|
||||
modifier = Modifier.padding(start = 4.dp)
|
||||
)
|
||||
}
|
||||
if (expanded) {
|
||||
androidx.compose.material3.HorizontalDivider(color = ComposeColor.White.copy(alpha = 0.2f))
|
||||
sorted.forEach { (grid, grids) ->
|
||||
Row(
|
||||
verticalAlignment = Alignment.CenterVertically,
|
||||
modifier = Modifier
|
||||
.fillMaxWidth()
|
||||
.clickable {
|
||||
onSelect(grid)
|
||||
expanded = false
|
||||
}
|
||||
.padding(horizontal = 10.dp, vertical = 3.dp)
|
||||
) {
|
||||
Text(
|
||||
text = "$grid (${grids.size})",
|
||||
color = if (grid == selected) MaterialTheme.colorScheme.primary else ComposeColor.White,
|
||||
fontSize = 12.sp,
|
||||
fontFamily = androidx.compose.ui.text.font.FontFamily.Monospace
|
||||
)
|
||||
}
|
||||
}
|
||||
// "All" always listed last: shows every worked grid combined.
|
||||
Row(
|
||||
verticalAlignment = Alignment.CenterVertically,
|
||||
modifier = Modifier
|
||||
.fillMaxWidth()
|
||||
.clickable {
|
||||
onSelect(null)
|
||||
expanded = false
|
||||
}
|
||||
.padding(horizontal = 10.dp, vertical = 3.dp)
|
||||
) {
|
||||
Text(
|
||||
text = "All ($allCount)",
|
||||
color = if (selected == null) MaterialTheme.colorScheme.primary else ComposeColor.White,
|
||||
fontSize = 12.sp,
|
||||
fontFamily = androidx.compose.ui.text.font.FontFamily.Monospace
|
||||
)
|
||||
}
|
||||
}
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
/**
|
||||
* Compact pill toggle for switching between satellite view and grid mode,
|
||||
* floated over the map's top-right corner. The label reflects the active
|
||||
* mode ("Grid mode" when ON, "Satellite mode" when OFF). Semi-transparent
|
||||
* background keeps the map readable underneath.
|
||||
*/
|
||||
@Composable
|
||||
private fun GridModeToggle(
|
||||
isGridMode: Boolean,
|
||||
onToggle: (Boolean) -> Unit,
|
||||
modifier: Modifier = Modifier
|
||||
) {
|
||||
Surface(
|
||||
color = ComposeColor.Black.copy(alpha = 0.45f),
|
||||
shape = RoundedCornerShape(percent = 50),
|
||||
modifier = modifier
|
||||
) {
|
||||
Row(
|
||||
verticalAlignment = Alignment.CenterVertically,
|
||||
modifier = Modifier.padding(start = 12.dp, end = 6.dp, top = 2.dp, bottom = 2.dp)
|
||||
) {
|
||||
Text(
|
||||
text = stringResource(
|
||||
if (isGridMode) R.string.map_grid_mode else R.string.map_satellite_mode
|
||||
),
|
||||
color = ComposeColor.White,
|
||||
fontSize = 12.sp,
|
||||
modifier = Modifier.padding(end = 2.dp)
|
||||
)
|
||||
Switch(
|
||||
checked = isGridMode,
|
||||
onCheckedChange = onToggle,
|
||||
modifier = Modifier.scale(0.75f)
|
||||
)
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
// endregion
|
||||
|
||||
// region Map overlay helpers
|
||||
|
||||
/**
|
||||
* Switches the grid-slot overlay to the award boundary view for the given
|
||||
* award: loads the boundary asset once (cached), paints worked regions green.
|
||||
* Satellite-related layers are hidden exactly like grid mode. VUCC keeps the
|
||||
* plain Maidenhead grid overlay (the grid view IS the VUCC view).
|
||||
*/
|
||||
private fun setAwardMode(award: AwardType, workedCodes: Set<String>, mapView: MapView) {
|
||||
val asset = when (award) {
|
||||
AwardType.WAPC -> AwardBoundaryData.AwardAsset.WAPC
|
||||
AwardType.WAJA -> AwardBoundaryData.AwardAsset.WAJA
|
||||
AwardType.WAZ -> AwardBoundaryData.AwardAsset.WAZ
|
||||
AwardType.WAS -> AwardBoundaryData.AwardAsset.WAS
|
||||
AwardType.DXCC -> AwardBoundaryData.AwardAsset.DXCC
|
||||
AwardType.VUCC -> return
|
||||
}
|
||||
val overlay = mapView.overlays.getOrNull(OVERLAY_GRID)
|
||||
if (overlay is AwardBoundaryOverlay) {
|
||||
overlay.isEnabled = true
|
||||
overlay.regions = AwardBoundaryData.load(mapView.context, asset)
|
||||
overlay.workedCodes = workedCodes
|
||||
} else {
|
||||
mapView.overlays[OVERLAY_GRID] = AwardBoundaryOverlay().apply {
|
||||
isEnabled = true
|
||||
regions = AwardBoundaryData.load(mapView.context, asset)
|
||||
this.workedCodes = workedCodes
|
||||
}
|
||||
}
|
||||
for (index in OVERLAY_STATION..OVERLAY_MOON) {
|
||||
mapView.overlays.getOrNull(index)?.isEnabled = false
|
||||
}
|
||||
}
|
||||
|
||||
/** Toggle the grid-mode layer visibility on/off without recreating any overlay. */
|
||||
private fun setGridMode(
|
||||
gridMode: Boolean,
|
||||
workedGrids: Set<String>,
|
||||
roamedGrids: Set<String>,
|
||||
mapView: MapView,
|
||||
stationPosition: GeoPos?
|
||||
stationPosition: GeoPos?,
|
||||
centerOnStation: Boolean = false
|
||||
) {
|
||||
try {
|
||||
val gridOverlay = mapView.overlays[OVERLAY_GRID]
|
||||
if (gridOverlay is MaidenheadGridOverlay) {
|
||||
gridOverlay.isEnabled = gridMode
|
||||
gridOverlay.workedGrids = workedGrids
|
||||
gridOverlay.roamedGrids = roamedGrids
|
||||
// ownGrid must be set on EVERY update — the position is available
|
||||
// regardless of whether this frame centers (centering happens only
|
||||
// on entry, but passing null here would wipe the bold outline).
|
||||
gridOverlay.ownGrid = ownGridOf(stationPosition)
|
||||
} else {
|
||||
mapView.overlays[OVERLAY_GRID] = MaidenheadGridOverlay().apply {
|
||||
isEnabled = gridMode
|
||||
this.workedGrids = workedGrids
|
||||
this.roamedGrids = roamedGrids
|
||||
this.ownGrid = ownGridOf(stationPosition)
|
||||
}
|
||||
}
|
||||
@@ -310,16 +836,23 @@ private fun setGridMode(
|
||||
mapView.overlays.getOrNull(index)?.isEnabled = !gridMode
|
||||
}
|
||||
// Entering grid mode: center on the station's current grid square,
|
||||
// keeping the current zoom level unchanged.
|
||||
if (gridMode) {
|
||||
// keeping the current zoom level unchanged. post{} is essential: on the
|
||||
// first composition this runs before MapView's first layout, and a
|
||||
// setCenter issued pre-layout is discarded when the view lays out —
|
||||
// the map then keeps its default center forever.
|
||||
if (gridMode && centerOnStation) {
|
||||
val pos = stationPosition ?: return
|
||||
val lat = pos.latitude
|
||||
val lon = pos.longitude
|
||||
// Maidenhead field indices: field 0 spans -90..-80° lat and
|
||||
// -180..-160° lon, so the field-center must be offset by those
|
||||
// bases — omitting them maps e.g. OL62's field center to
|
||||
// 115°N/290°E (an ocean a hemisphere away) instead of 25°N/110°E.
|
||||
val fieldLat = ((lat + 90.0) / 10.0).toInt().coerceIn(0, 17)
|
||||
val fieldLon = ((lon + 180.0) / 20.0).toInt().coerceIn(0, 17)
|
||||
val centerLat = fieldLat * 10.0 + 5.0
|
||||
val centerLon = fieldLon * 20.0 + 10.0
|
||||
mapView.controller.setCenter(GeoPoint(centerLat, centerLon))
|
||||
val centerLat = fieldLat * 10.0 + 5.0 - 90.0
|
||||
val centerLon = fieldLon * 20.0 + 10.0 - 180.0
|
||||
mapView.post { mapView.controller.setCenter(GeoPoint(centerLat, centerLon)) }
|
||||
}
|
||||
} catch (e: Exception) {
|
||||
println(e)
|
||||
@@ -338,6 +871,17 @@ private fun ownGridOf(stationPosition: GeoPos?): String? {
|
||||
return "${'A' + fieldLon}${'A' + fieldLat}$subLon$subLat"
|
||||
}
|
||||
|
||||
/** The 4-char Maidenhead gridsquare containing the given point, or null outside the grid. */
|
||||
private fun gridOfPoint(latitude: Double, longitude: Double): String? {
|
||||
if (latitude < -90.0 || latitude >= 90.0) return null
|
||||
val lon = ((longitude + 180.0) % 360.0 + 360.0) % 360.0 - 180.0
|
||||
val fieldLat = ((latitude + 90.0) / 10.0).toInt().coerceIn(0, 17)
|
||||
val fieldLon = ((lon + 180.0) / 20.0).toInt().coerceIn(0, 17)
|
||||
val subLat = ((latitude + 90.0) % 10.0).toInt()
|
||||
val subLon = ((lon + 180.0) % 20.0 / 2.0).toInt()
|
||||
return "${'A' + fieldLon}${'A' + fieldLat}$subLon$subLat"
|
||||
}
|
||||
|
||||
private fun setStationPosition(stationPos: GeoPos, mapView: MapView) {
|
||||
try {
|
||||
val overlay = mapView.overlays[OVERLAY_STATION]
|
||||
@@ -356,6 +900,27 @@ private fun setStationPosition(stationPos: GeoPos, mapView: MapView) {
|
||||
}
|
||||
}
|
||||
|
||||
/** Above this many satellites inside the viewport labels are dropped in favor of a single
|
||||
* shared dot icon. Per-satellite label bitmaps cost ~90KB each, so drawing thousands of them
|
||||
* exhausts memory and stalls the UI thread — and overlapping labels are unreadable anyway. */
|
||||
private const val LABEL_LIMIT = 128
|
||||
|
||||
/** Degrees of space around the viewport so markers don't pop in at the edges */
|
||||
private const val VIEWPORT_MARGIN = 8.0
|
||||
|
||||
/** Debounce for viewport-driven marker refreshes, in milliseconds */
|
||||
private const val MAP_LISTENER_DELAY = 128L
|
||||
|
||||
/** Shared dot icon used when too many satellites are visible to label them */
|
||||
private var dotIcon: Drawable? = null
|
||||
|
||||
/** Scratch list reused every frame to avoid per-tick allocation */
|
||||
private val visibleSats = ArrayList<Pair<OrbitalObject, GeoPos>>()
|
||||
|
||||
/** Last emitted positions, replayed on scroll/zoom so culled markers appear without waiting for a tick */
|
||||
private var lastPositions: Map<OrbitalObject, GeoPos>? = null
|
||||
private var lastAction: ((OrbitalObject) -> Unit)? = null
|
||||
|
||||
/** Pool of reusable Marker objects keyed by satellite name, to avoid re-creation every frame */
|
||||
private val markerPool = HashMap<String, Marker>()
|
||||
private var lastMapView: MapView? = null
|
||||
@@ -366,13 +931,20 @@ private fun setPositions(
|
||||
action: (OrbitalObject) -> Unit
|
||||
) {
|
||||
try {
|
||||
lastPositions = posMap
|
||||
lastAction = action
|
||||
// Clear caches when the MapView instance changes (e.g. config change)
|
||||
if (lastMapView !== mapView) {
|
||||
lastMapView = mapView
|
||||
markerPool.clear()
|
||||
iconCache.evictAll()
|
||||
dotIcon = null
|
||||
footprintPolyline = null
|
||||
footprintPoints = null
|
||||
mapView.addMapListener(DelayedMapListener(object : MapListener {
|
||||
override fun onScroll(event: ScrollEvent?) = refreshPositions(mapView)
|
||||
override fun onZoom(event: ZoomEvent?) = refreshPositions(mapView)
|
||||
}, MAP_LISTENER_DELAY))
|
||||
}
|
||||
// Reuse the existing FolderOverlay — creating a new one and replacing it
|
||||
// causes osmdroid to detach shared Marker objects, making them invisible.
|
||||
@@ -381,17 +953,48 @@ private fun setPositions(
|
||||
}
|
||||
folder.items.clear()
|
||||
|
||||
val activeNames = HashSet<String>(posMap.size)
|
||||
posMap.forEach { (satellite, geoPos) ->
|
||||
// Cull satellites outside the viewport: only meaningful once zoomed in, but that is
|
||||
// exactly when marker labels are shown and drawing is most expensive.
|
||||
visibleSats.clear()
|
||||
if (mapView.width > 0 && mapView.height > 0) {
|
||||
val box = mapView.boundingBox
|
||||
val latNorth = box.latNorth + VIEWPORT_MARGIN
|
||||
val latSouth = box.latSouth - VIEWPORT_MARGIN
|
||||
val lonWest = box.lonWest - VIEWPORT_MARGIN
|
||||
val lonEast = box.lonEast + VIEWPORT_MARGIN
|
||||
val wrapsDateLine = box.lonWest > box.lonEast
|
||||
for ((satellite, geoPos) in posMap) {
|
||||
val lat = geoPos.latitude
|
||||
if (lat !in latSouth..latNorth) continue
|
||||
val lon = geoPos.longitude
|
||||
val isLonVisible = if (wrapsDateLine) lon >= lonWest || lon <= lonEast
|
||||
else lon in lonWest..lonEast
|
||||
if (isLonVisible) visibleSats.add(satellite to geoPos)
|
||||
}
|
||||
} else {
|
||||
for (entry in posMap) visibleSats.add(entry.key to entry.value)
|
||||
}
|
||||
|
||||
val showLabels = visibleSats.size <= LABEL_LIMIT
|
||||
val activeNames = HashSet<String>(visibleSats.size)
|
||||
for ((satellite, geoPos) in visibleSats) {
|
||||
val name = satellite.data.name
|
||||
activeNames.add(name)
|
||||
val marker = markerPool.getOrPut(name) {
|
||||
Marker(mapView).apply {
|
||||
setInfoWindow(null)
|
||||
setAnchor(Marker.ANCHOR_CENTER, Marker.ANCHOR_CENTER)
|
||||
icon = getCachedTextIcon(name, mapView)
|
||||
// Resolve the satellite via relatedObject so the listener is allocated
|
||||
// once per marker instead of once per satellite per tick
|
||||
setOnMarkerClickListener { clicked, _ ->
|
||||
(clicked.relatedObject as? OrbitalObject)?.let(action)
|
||||
true
|
||||
}
|
||||
}
|
||||
}
|
||||
marker.relatedObject = satellite
|
||||
val icon = if (showLabels) getCachedTextIcon(name, mapView) else getDotIcon(mapView)
|
||||
if (marker.icon !== icon) marker.icon = icon
|
||||
// Update position in-place — reuse existing GeoPoint if available
|
||||
val pos = marker.position
|
||||
if (pos != null) {
|
||||
@@ -400,22 +1003,34 @@ private fun setPositions(
|
||||
} else {
|
||||
marker.position = GeoPoint(geoPos.latitude, geoPos.longitude)
|
||||
}
|
||||
marker.setOnMarkerClickListener { _, _ ->
|
||||
action(satellite)
|
||||
true
|
||||
}
|
||||
folder.add(marker)
|
||||
}
|
||||
// Evict markers for satellites no longer tracked
|
||||
val iter = markerPool.keys.iterator()
|
||||
while (iter.hasNext()) {
|
||||
if (iter.next() !in activeNames) iter.remove()
|
||||
}
|
||||
// Evict markers that are no longer tracked or no longer visible
|
||||
markerPool.keys.retainAll(activeNames)
|
||||
visibleSats.clear()
|
||||
} catch (e: Exception) {
|
||||
println(e)
|
||||
}
|
||||
}
|
||||
|
||||
/** Re-applies the last known positions against the new viewport after a pan or zoom */
|
||||
private fun refreshPositions(mapView: MapView): Boolean {
|
||||
// Grid mode disables the satellite layer — don't re-populate markers off-screen
|
||||
if (mapView.overlays.getOrNull(OVERLAY_POSITIONS)?.isEnabled == false) return true
|
||||
val posMap = lastPositions ?: return false
|
||||
val action = lastAction ?: return false
|
||||
setPositions(posMap, mapView, action)
|
||||
mapView.invalidate()
|
||||
return true
|
||||
}
|
||||
|
||||
private fun getDotIcon(mapView: MapView): Drawable = dotIcon ?: run {
|
||||
val size = 20
|
||||
val bitmap = createBitmap(size, size)
|
||||
Canvas(bitmap).drawCircle(size / 2f, size / 2f, size / 2f - 2f, textPaint)
|
||||
bitmap.toDrawable(mapView.context.resources).also { dotIcon = it }
|
||||
}
|
||||
|
||||
private fun getCachedTextIcon(name: String, mapView: MapView): Drawable {
|
||||
iconCache[name]?.let { return it }
|
||||
val labelRect = Rect()
|
||||
@@ -566,6 +1181,11 @@ private fun rememberMapViewWithLifecycle(): MapView {
|
||||
MapView(context).apply {
|
||||
setMultiTouchControls(true)
|
||||
setUseDataConnection(false)
|
||||
// Vertical map repetition wraps points below the viewport up to the
|
||||
// top edge (osmdroid Y-wrap). Antarctica's full-circle ring then
|
||||
// draws a full-height artifact line whenever its X range crosses
|
||||
// the screen at low zoom. The map must never repeat vertically.
|
||||
setVerticalMapRepetitionEnabled(false)
|
||||
setTileSource(tileSource)
|
||||
minZoomLevel = getMinZoom(resources.displayMetrics.heightPixels, isVertical)
|
||||
maxZoomLevel = 7.0
|
||||
@@ -586,9 +1206,23 @@ private fun rememberMapViewWithLifecycle(): MapView {
|
||||
lifecycle.addObserver(lifecycleObserver)
|
||||
onDispose { lifecycle.removeObserver(lifecycleObserver) }
|
||||
}
|
||||
// The overlay caches below are file-level (shared across MapView instances), so they must be
|
||||
// released with the MapView or they keep the Activity and its bitmaps alive after disposal.
|
||||
DisposableEffect(mapView) {
|
||||
onDispose { clearMapCaches() }
|
||||
}
|
||||
return mapView
|
||||
}
|
||||
|
||||
private fun clearMapCaches() {
|
||||
markerPool.clear()
|
||||
iconCache.evictAll()
|
||||
dotIcon = null
|
||||
lastPositions = null
|
||||
lastAction = null
|
||||
lastMapView = null
|
||||
}
|
||||
|
||||
@Composable
|
||||
private fun rememberMapViewLifecycleObserver(mapView: MapView) = remember(mapView) {
|
||||
LifecycleEventObserver { _, event ->
|
||||
|
||||
@@ -28,6 +28,9 @@ data class MapState(
|
||||
val isUtc: Boolean = false,
|
||||
val isGridMode: Boolean = false,
|
||||
val workedGrids: Set<String> = emptySet(),
|
||||
val workedGridQsos: Map<String, List<com.rtbishop.look4sat.core.domain.model.GridQso>> = emptyMap(),
|
||||
/** 4-char gridsquares the station operated from (LoTW MY_GRIDSQUARE) — blue stripes. */
|
||||
val roamedGrids: Set<String> = emptySet(),
|
||||
val stationPosition: GeoPos? = null,
|
||||
val orbitalPass: OrbitalPass,
|
||||
val track: List<List<GeoPos>>? = null,
|
||||
@@ -44,6 +47,8 @@ sealed interface MapAction {
|
||||
data object SelectNext : MapAction
|
||||
data class SelectItem(val item: OrbitalObject) : MapAction
|
||||
data class SelectDefaultItem(val catnum: Int) : MapAction
|
||||
data class ToggleGridMode(val value: Boolean) : MapAction
|
||||
data class SetVisible(val isVisible: Boolean) : MapAction
|
||||
}
|
||||
|
||||
data class MapData(
|
||||
|
||||
@@ -37,6 +37,7 @@ import com.rtbishop.look4sat.core.domain.utility.toDegrees
|
||||
import com.rtbishop.look4sat.core.domain.utility.toTimerString
|
||||
import com.rtbishop.look4sat.core.presentation.getDefaultPass
|
||||
import kotlinx.coroutines.Job
|
||||
import kotlinx.coroutines.Dispatchers
|
||||
import kotlinx.coroutines.async
|
||||
import kotlinx.coroutines.awaitAll
|
||||
import kotlinx.coroutines.cancelAndJoin
|
||||
@@ -45,6 +46,7 @@ import kotlinx.coroutines.delay
|
||||
import kotlinx.coroutines.flow.MutableStateFlow
|
||||
import kotlinx.coroutines.flow.StateFlow
|
||||
import kotlinx.coroutines.flow.collectLatest
|
||||
import kotlinx.coroutines.flow.first
|
||||
import kotlinx.coroutines.flow.update
|
||||
import kotlinx.coroutines.isActive
|
||||
import kotlinx.coroutines.launch
|
||||
@@ -69,6 +71,9 @@ class MapViewModel(
|
||||
private var dataUpdateJob: Job? = null
|
||||
private var dataUpdateRate = 1000L
|
||||
private var selectedOrbitalObject: OrbitalObject? = null
|
||||
|
||||
/** Gates the prediction loop so it doesn't burn CPU while the map isn't on screen */
|
||||
private val isScreenVisible = MutableStateFlow(true)
|
||||
val uiState: StateFlow<MapState> = _uiState
|
||||
|
||||
init {
|
||||
@@ -79,7 +84,13 @@ class MapViewModel(
|
||||
}
|
||||
viewModelScope.launch {
|
||||
settingsRepo.wavelogSettings.collectLatest { _ ->
|
||||
_uiState.update { it.copy(workedGrids = settingsRepo.getWorkedGrids()) }
|
||||
_uiState.update {
|
||||
it.copy(
|
||||
workedGrids = settingsRepo.getWorkedGrids(),
|
||||
workedGridQsos = settingsRepo.getWorkedGridQsos(),
|
||||
roamedGrids = settingsRepo.getRoamedGrids()
|
||||
)
|
||||
}
|
||||
}
|
||||
}
|
||||
val (selectedCatNum, _) = satelliteRepo.selectedPass.value
|
||||
@@ -93,6 +104,8 @@ class MapViewModel(
|
||||
MapAction.SelectNext -> scrollSelection(false)
|
||||
is MapAction.SelectItem -> selectSatellite(action.item)
|
||||
is MapAction.SelectDefaultItem -> selectDefaultSatellite(action.catnum)
|
||||
is MapAction.ToggleGridMode -> settingsRepo.updateOtherSettings { it.copy(stateOfMapGrid = action.value) }
|
||||
is MapAction.SetVisible -> isScreenVisible.value = action.isVisible
|
||||
}
|
||||
}
|
||||
|
||||
@@ -130,7 +143,11 @@ class MapViewModel(
|
||||
selectedOrbitalObject = orbitalObject
|
||||
viewModelScope.launch {
|
||||
dataUpdateJob?.cancelAndJoin()
|
||||
dataUpdateJob = launch {
|
||||
// Default dispatcher is mandatory: viewModelScope is Main.immediate, and every
|
||||
// satelliteRepo call internally hops to Default and resumes back on the caller's
|
||||
// dispatcher. On Main that posts one continuation per satellite per tick, which
|
||||
// floods the looper and ANRs for users tracking thousands of objects.
|
||||
dataUpdateJob = launch(Dispatchers.Default) {
|
||||
val dateNow = Date()
|
||||
getStationPosition()
|
||||
getSatTrack(orbitalObject, stationPos, dateNow)
|
||||
@@ -141,6 +158,8 @@ class MapViewModel(
|
||||
else -> updateFreq
|
||||
}
|
||||
while (isActive) {
|
||||
// Suspends while the map is off-screen instead of predicting into the void
|
||||
isScreenVisible.first { it }
|
||||
dateNow.time = System.currentTimeMillis()
|
||||
updateMapState(orbitalObject, allSatellites, stationPos, dateNow)
|
||||
delay(effectiveRate)
|
||||
|
||||
+7
-1
@@ -45,6 +45,7 @@ import com.rtbishop.look4sat.core.presentation.R
|
||||
import java.text.SimpleDateFormat
|
||||
import java.util.Date
|
||||
import java.util.Locale
|
||||
import java.util.TimeZone
|
||||
import kotlin.math.roundToInt
|
||||
|
||||
/**
|
||||
@@ -58,6 +59,7 @@ fun ElevationCurveChart(
|
||||
startTime: Long,
|
||||
endTime: Long,
|
||||
maxElev: Double,
|
||||
isUtc: Boolean = false,
|
||||
progress: Float = 0.5f,
|
||||
onProgressChange: (Float) -> Unit = {},
|
||||
modifier: Modifier = Modifier
|
||||
@@ -74,7 +76,11 @@ fun ElevationCurveChart(
|
||||
val textColorArgb = textColor.toArgb()
|
||||
val onSurfaceArgb = onSurfaceColor.toArgb()
|
||||
val gridColorArgb = gridColor.toArgb()
|
||||
val timeFormat = remember { SimpleDateFormat("HH:mm", Locale.getDefault()) }
|
||||
val timeFormat = remember(isUtc) {
|
||||
SimpleDateFormat("HH:mm", Locale.getDefault()).apply {
|
||||
if (isUtc) timeZone = TimeZone.getTimeZone("UTC")
|
||||
}
|
||||
}
|
||||
|
||||
Column(modifier = modifier.fillMaxWidth()) {
|
||||
Canvas(
|
||||
|
||||
@@ -29,6 +29,7 @@ import androidx.compose.foundation.layout.fillMaxSize
|
||||
import androidx.compose.foundation.layout.fillMaxWidth
|
||||
import androidx.compose.foundation.layout.height
|
||||
import androidx.compose.foundation.layout.padding
|
||||
import androidx.compose.foundation.layout.size
|
||||
import androidx.compose.foundation.layout.width
|
||||
import androidx.compose.foundation.lazy.LazyColumn
|
||||
import androidx.compose.foundation.lazy.itemsIndexed
|
||||
@@ -40,6 +41,7 @@ import androidx.compose.material3.ElevatedCard
|
||||
import androidx.compose.material3.FilterChip
|
||||
import androidx.compose.material3.HorizontalDivider
|
||||
import androidx.compose.material3.Icon
|
||||
import androidx.compose.material3.IconButton
|
||||
import androidx.compose.material3.MaterialTheme
|
||||
import androidx.compose.material3.OutlinedButton
|
||||
import androidx.compose.material3.OutlinedTextField
|
||||
@@ -71,6 +73,7 @@ import com.rtbishop.look4sat.core.presentation.isVerticalLayout
|
||||
import java.text.SimpleDateFormat
|
||||
import java.util.Date
|
||||
import java.util.Locale
|
||||
import java.util.TimeZone
|
||||
|
||||
@Composable
|
||||
fun MutualScreen(
|
||||
@@ -186,7 +189,11 @@ private fun MutualContent(
|
||||
onHoursAhead: (Int) -> Unit,
|
||||
onClearError: () -> Unit
|
||||
) {
|
||||
val timeFormat = remember { SimpleDateFormat("MM/dd HH:mm", Locale.getDefault()) }
|
||||
val timeFormat = remember(state.isUtc) {
|
||||
SimpleDateFormat("MM/dd HH:mm", Locale.getDefault()).apply {
|
||||
if (state.isUtc) timeZone = TimeZone.getTimeZone("UTC")
|
||||
}
|
||||
}
|
||||
|
||||
LazyColumn(
|
||||
modifier = Modifier.fillMaxSize(),
|
||||
@@ -323,6 +330,7 @@ private fun MutualContent(
|
||||
pass = pass,
|
||||
isExpanded = state.selectedPassIndex == index,
|
||||
timeFormat = timeFormat,
|
||||
isUtc = state.isUtc,
|
||||
minElevA = state.stationAMinElev,
|
||||
minElevB = state.stationBMinElev,
|
||||
onClick = { onSelectPass(if (state.selectedPassIndex == index) -1 else index) },
|
||||
@@ -527,6 +535,7 @@ private fun MutualPassCard(
|
||||
pass: MutualPass,
|
||||
isExpanded: Boolean,
|
||||
timeFormat: SimpleDateFormat,
|
||||
isUtc: Boolean,
|
||||
minElevA: Double,
|
||||
minElevB: Double,
|
||||
onClick: () -> Unit,
|
||||
@@ -558,39 +567,62 @@ private fun MutualPassCard(
|
||||
.clickable(onClick = onClick)
|
||||
) {
|
||||
Column(modifier = Modifier.padding(12.dp)) {
|
||||
Row(
|
||||
modifier = Modifier.fillMaxWidth(),
|
||||
horizontalArrangement = Arrangement.SpaceBetween,
|
||||
verticalAlignment = Alignment.CenterVertically
|
||||
) {
|
||||
Text(
|
||||
text = pass.name,
|
||||
style = MaterialTheme.typography.bodyLarge,
|
||||
fontWeight = FontWeight.Medium,
|
||||
color = MaterialTheme.colorScheme.primary,
|
||||
modifier = Modifier.weight(1f)
|
||||
)
|
||||
Text(
|
||||
text = "${timeFormat.format(Date(pass.startTime))} - ${timeFormat.format(Date(pass.endTime))}",
|
||||
style = MaterialTheme.typography.bodySmall,
|
||||
color = MaterialTheme.colorScheme.onSurfaceVariant
|
||||
)
|
||||
}
|
||||
Spacer(Modifier.height(4.dp))
|
||||
Row(
|
||||
modifier = Modifier.fillMaxWidth(),
|
||||
horizontalArrangement = Arrangement.SpaceBetween
|
||||
) {
|
||||
Text(
|
||||
text = stringResource(R.string.mutual_elevation_you, pass.maxElevationA.toInt()),
|
||||
style = MaterialTheme.typography.bodySmall,
|
||||
color = MaterialTheme.colorScheme.primary
|
||||
)
|
||||
Text(
|
||||
text = stringResource(R.string.mutual_elevation_opposite, pass.maxElevationB.toInt()),
|
||||
style = MaterialTheme.typography.bodySmall,
|
||||
color = MaterialTheme.colorScheme.tertiary
|
||||
)
|
||||
// Header: pass info (name/time + elevations) on the left, and a
|
||||
// larger radar shortcut on the right that spans both rows vertically.
|
||||
// The pass info column narrows, so the "Opposite" elevation shifts
|
||||
// left to make room for the taller button.
|
||||
Row(verticalAlignment = Alignment.CenterVertically) {
|
||||
Column(modifier = Modifier.weight(1f)) {
|
||||
Row(
|
||||
modifier = Modifier.fillMaxWidth(),
|
||||
horizontalArrangement = Arrangement.SpaceBetween,
|
||||
verticalAlignment = Alignment.CenterVertically
|
||||
) {
|
||||
Text(
|
||||
text = pass.name,
|
||||
style = MaterialTheme.typography.bodyLarge,
|
||||
fontWeight = FontWeight.Medium,
|
||||
color = MaterialTheme.colorScheme.primary,
|
||||
maxLines = 1,
|
||||
overflow = TextOverflow.Ellipsis,
|
||||
modifier = Modifier.weight(1f)
|
||||
)
|
||||
Text(
|
||||
text = "${timeFormat.format(Date(pass.startTime))} - ${timeFormat.format(Date(pass.endTime))}",
|
||||
style = MaterialTheme.typography.bodySmall,
|
||||
color = MaterialTheme.colorScheme.onSurfaceVariant
|
||||
)
|
||||
}
|
||||
Spacer(Modifier.height(4.dp))
|
||||
Row(
|
||||
modifier = Modifier.fillMaxWidth(),
|
||||
horizontalArrangement = Arrangement.SpaceBetween
|
||||
) {
|
||||
Text(
|
||||
text = stringResource(R.string.mutual_elevation_you, pass.maxElevationA.toInt()),
|
||||
style = MaterialTheme.typography.bodySmall,
|
||||
color = MaterialTheme.colorScheme.primary
|
||||
)
|
||||
Text(
|
||||
text = stringResource(R.string.mutual_elevation_opposite, pass.maxElevationB.toInt()),
|
||||
style = MaterialTheme.typography.bodySmall,
|
||||
color = MaterialTheme.colorScheme.tertiary
|
||||
)
|
||||
}
|
||||
}
|
||||
// Radar shortcut, visible even on the collapsed card: a taller
|
||||
// button spanning both header rows. The card's own click
|
||||
// (expand) is not triggered by the IconButton's tap.
|
||||
IconButton(
|
||||
onClick = onNavigateToRadar,
|
||||
modifier = Modifier.size(48.dp)
|
||||
) {
|
||||
Icon(
|
||||
painter = painterResource(id = R.drawable.ic_radar),
|
||||
contentDescription = stringResource(R.string.mutual_open_radar),
|
||||
modifier = Modifier.size(24.dp)
|
||||
)
|
||||
}
|
||||
}
|
||||
|
||||
AnimatedVisibility(
|
||||
@@ -622,6 +654,7 @@ private fun MutualPassCard(
|
||||
startTime = visibleStart,
|
||||
endTime = visibleEnd,
|
||||
maxElev = adjustedMaxElev,
|
||||
isUtc = isUtc,
|
||||
progress = dragProgress,
|
||||
onProgressChange = { dragProgress = it }
|
||||
)
|
||||
|
||||
+10
-1
@@ -33,6 +33,7 @@ import kotlinx.coroutines.Dispatchers
|
||||
import kotlinx.coroutines.flow.MutableStateFlow
|
||||
import kotlinx.coroutines.flow.StateFlow
|
||||
import kotlinx.coroutines.flow.asStateFlow
|
||||
import kotlinx.coroutines.flow.collectLatest
|
||||
import kotlinx.coroutines.flow.update
|
||||
import kotlinx.coroutines.launch
|
||||
import kotlinx.coroutines.withContext
|
||||
@@ -53,6 +54,7 @@ data class MutualUiState(
|
||||
val isCalculating: Boolean = false,
|
||||
val hasSearched: Boolean = false,
|
||||
val selectedPassIndex: Int = -1,
|
||||
val isUtc: Boolean = false,
|
||||
val errorMessage: String? = null
|
||||
)
|
||||
|
||||
@@ -77,8 +79,15 @@ class MutualViewModel(
|
||||
stationALat = "%.4f".format(pos.latitude),
|
||||
stationALon = "%.4f".format(pos.longitude),
|
||||
stationAMinElev = 0.0,
|
||||
stationBMinElev = 0.0
|
||||
stationBMinElev = 0.0,
|
||||
isUtc = settingsRepo.otherSettings.value.stateOfUtc
|
||||
) }
|
||||
// Keep the time display in sync with the UTC toggle in Settings
|
||||
viewModelScope.launch {
|
||||
settingsRepo.otherSettings.collectLatest { settings ->
|
||||
_uiState.update { it.copy(isUtc = settings.stateOfUtc) }
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
fun onStationALat(value: String) {
|
||||
|
||||
@@ -2,11 +2,14 @@ package com.rtbishop.look4sat.feature.mutual
|
||||
|
||||
import com.rtbishop.look4sat.core.domain.model.DataSourcesSettings
|
||||
import com.rtbishop.look4sat.core.domain.model.DatabaseState
|
||||
import com.rtbishop.look4sat.core.domain.model.GridQso
|
||||
import com.rtbishop.look4sat.core.domain.model.LoTWSettings
|
||||
import com.rtbishop.look4sat.core.domain.model.OtherSettings
|
||||
import com.rtbishop.look4sat.core.domain.model.PassesSettings
|
||||
import com.rtbishop.look4sat.core.domain.model.RCSettings
|
||||
import com.rtbishop.look4sat.core.domain.model.RadioControlSettings
|
||||
import com.rtbishop.look4sat.core.domain.model.SatRadio
|
||||
import com.rtbishop.look4sat.core.domain.model.WavelogSettings
|
||||
import com.rtbishop.look4sat.core.domain.predict.GeoPos
|
||||
import com.rtbishop.look4sat.core.domain.predict.OrbitalObject
|
||||
import com.rtbishop.look4sat.core.domain.predict.OrbitalPass
|
||||
@@ -62,7 +65,17 @@ class FakeSettingsRepo(initialPosition: GeoPos = GeoPos(23.13, 113.26)) : ISetti
|
||||
RCSettings(false, "", "", "", false, "", "", "", 0L, false, "", "", "", false, "", "")
|
||||
)
|
||||
override val otherSettings: StateFlow<OtherSettings> = MutableStateFlow(
|
||||
OtherSettings(false, false, false, false, false, false, false, false)
|
||||
OtherSettings(
|
||||
stateOfAutoUpdate = false,
|
||||
stateOfSensors = false,
|
||||
stateOfSweep = false,
|
||||
stateOfUtc = false,
|
||||
stateOfLightTheme = false,
|
||||
stateOfNightMode = false,
|
||||
stateOfMapGrid = false,
|
||||
shouldSeeWarning = false,
|
||||
shouldSeeWhatsNew = false
|
||||
)
|
||||
)
|
||||
override val dataSourcesSettings: StateFlow<DataSourcesSettings> = MutableStateFlow(
|
||||
DataSourcesSettings(satelliteUrls = emptyList(), transceiversUrls = emptyList())
|
||||
@@ -70,6 +83,8 @@ class FakeSettingsRepo(initialPosition: GeoPos = GeoPos(23.13, 113.26)) : ISetti
|
||||
override val radioControlSettings: StateFlow<RadioControlSettings> = MutableStateFlow(
|
||||
RadioControlSettings(false, RadioControlSettings.MODEL_YAESU_FT817, "", "", "", "", 9600)
|
||||
)
|
||||
override val wavelogSettings: StateFlow<WavelogSettings> = MutableStateFlow(WavelogSettings())
|
||||
override val lotwSettings: StateFlow<LoTWSettings> = MutableStateFlow(LoTWSettings())
|
||||
|
||||
override fun setSelectedIds(ids: List<Int>) = TODO()
|
||||
override fun setSelectedTypes(types: List<String>) = TODO()
|
||||
@@ -93,4 +108,16 @@ class FakeSettingsRepo(initialPosition: GeoPos = GeoPos(23.13, 113.26)) : ISetti
|
||||
override fun setSatelliteOffset(catnum: Int, offset: String) = TODO()
|
||||
override fun getAmSatCallsign(): String = ""
|
||||
override fun setAmSatCallsign(callsign: String) = TODO()
|
||||
override fun updateWavelogSettings(settings: WavelogSettings) = TODO()
|
||||
override fun getWorkedGrids(): Set<String> = TODO()
|
||||
override fun setWorkedGrids(grids: Set<String>) = TODO()
|
||||
override fun getWorkedGridQsos(): Map<String, List<GridQso>> = TODO()
|
||||
override fun setWorkedGridQsos(qsos: Map<String, List<GridQso>>) = TODO()
|
||||
override fun getRoamedGrids(): Set<String> = TODO()
|
||||
override fun setRoamedGrids(grids: Set<String>) = TODO()
|
||||
override fun updateLoTWSettings(settings: LoTWSettings) = TODO()
|
||||
override fun getLastLotwSyncDate(): String = ""
|
||||
override fun setLastLotwSyncDate(date: String) = Unit
|
||||
override fun getLastLotwSyncCallsign(): String = ""
|
||||
override fun setLastLotwSyncCallsign(callsign: String) = Unit
|
||||
}
|
||||
@@ -85,22 +85,20 @@ import java.util.TimeZone
|
||||
|
||||
@Composable
|
||||
fun PassesDestination(
|
||||
navigateToRadar: (Int, Long) -> Unit,
|
||||
navigateToMap: () -> Unit
|
||||
navigateToRadar: (Int, Long) -> Unit
|
||||
) {
|
||||
val context = LocalContext.current
|
||||
val container = (context.applicationContext as IContainerProvider).getMainContainer()
|
||||
val viewModel: PassesViewModel = viewModel(factory = PassesViewModel.factory(container))
|
||||
val uiState = viewModel.uiState.collectAsStateWithLifecycle().value
|
||||
PassesScreen(uiState, viewModel::onAction, navigateToRadar, navigateToMap)
|
||||
PassesScreen(uiState, viewModel::onAction, navigateToRadar)
|
||||
}
|
||||
|
||||
@Composable
|
||||
private fun PassesScreen(
|
||||
uiState: PassesState,
|
||||
onAction: (PassesAction) -> Unit,
|
||||
navigateToRadar: (Int, Long) -> Unit,
|
||||
navigateToMap: () -> Unit
|
||||
navigateToRadar: (Int, Long) -> Unit
|
||||
) {
|
||||
if (uiState.isPassesDialogShown) {
|
||||
PassesFilterDialog(
|
||||
@@ -158,7 +156,7 @@ private fun PassesScreen(
|
||||
TopBar(
|
||||
isVerticalLayout = isVerticalLayout,
|
||||
startAction = {
|
||||
IconCard(action = { onAction(PassesAction.TogglePassesDialog) }, resId = R.drawable.ic_filter)
|
||||
IconCard(action = { onAction(PassesAction.ToggleRadiosDialog) }, resId = R.drawable.ic_radios)
|
||||
},
|
||||
topInfo = {
|
||||
TimerRow(timeString = uiState.nextTime, isTimeAos = uiState.isNextTimeAos)
|
||||
@@ -167,7 +165,7 @@ private fun PassesScreen(
|
||||
NextPassRow(pass = uiState.nextPass, isUtc = uiState.isUtc)
|
||||
},
|
||||
endAction = {
|
||||
IconCard(action = navigateToMap, resId = R.drawable.ic_map)
|
||||
IconCard(action = { onAction(PassesAction.TogglePassesDialog) }, resId = R.drawable.ic_filter)
|
||||
}
|
||||
)
|
||||
}
|
||||
|
||||
+6
-3
@@ -175,9 +175,12 @@ class PassesViewModel(
|
||||
val sdfDate = dateFormat(tz)
|
||||
val sdfTime = SimpleDateFormat("HH:mm", Locale.getDefault()).also { it.timeZone = tz }
|
||||
val result = LinkedHashMap<String, Pair<String, String>>()
|
||||
// DeepSpace group always shows today's sun times
|
||||
// DeepSpace group always shows today's sun times.
|
||||
// The natural-day anchor is the DEVICE timezone, not the display timezone:
|
||||
// UTC midnight is 08:00 local for UTC+8 stations, when the sun is already
|
||||
// up — that would trip the white-night guard and render "--:--".
|
||||
if (passes.any { it.isDeepSpace }) {
|
||||
val riseSet = findTodaySunRiseSet(stationPos, startOfDayMillis(System.currentTimeMillis(), tz))
|
||||
val riseSet = findTodaySunRiseSet(stationPos, startOfDayMillis(System.currentTimeMillis(), TimeZone.getDefault()))
|
||||
val rise = if (riseSet.riseTimeMillis > 0) sdfTime.format(Date(riseSet.riseTimeMillis)) else "--:--"
|
||||
val set = if (riseSet.setTimeMillis > 0) sdfTime.format(Date(riseSet.setTimeMillis)) else "--:--"
|
||||
result["DeepSpace (period >225min)"] = rise to set
|
||||
@@ -186,7 +189,7 @@ class PassesViewModel(
|
||||
if (pass.isDeepSpace) continue
|
||||
val label = sdfDate.format(Date(pass.aosTime))
|
||||
if (label in result) continue
|
||||
val riseSet = findTodaySunRiseSet(stationPos, startOfDayMillis(pass.aosTime, tz))
|
||||
val riseSet = findTodaySunRiseSet(stationPos, startOfDayMillis(pass.aosTime, TimeZone.getDefault()))
|
||||
val rise = if (riseSet.riseTimeMillis > 0) sdfTime.format(Date(riseSet.riseTimeMillis)) else "--:--"
|
||||
val set = if (riseSet.setTimeMillis > 0) sdfTime.format(Date(riseSet.setTimeMillis)) else "--:--"
|
||||
result[label] = rise to set
|
||||
|
||||
@@ -32,8 +32,11 @@ import androidx.compose.foundation.layout.Arrangement
|
||||
import androidx.compose.foundation.layout.Box
|
||||
import androidx.compose.foundation.layout.Column
|
||||
import androidx.compose.foundation.layout.Row
|
||||
import androidx.compose.foundation.layout.WindowInsets
|
||||
import androidx.compose.foundation.layout.asPaddingValues
|
||||
import androidx.compose.foundation.layout.fillMaxSize
|
||||
import androidx.compose.foundation.layout.fillMaxWidth
|
||||
import androidx.compose.foundation.layout.navigationBars
|
||||
import androidx.compose.foundation.layout.padding
|
||||
import androidx.compose.foundation.pager.HorizontalPager
|
||||
import androidx.compose.foundation.pager.rememberPagerState
|
||||
@@ -84,7 +87,7 @@ private enum class RadarPage(val title: String) {
|
||||
}
|
||||
|
||||
@Composable
|
||||
fun RadarDestination(navigateUp: () -> Unit, navigateToMap: () -> Unit) {
|
||||
fun RadarDestination(navigateUp: () -> Unit) {
|
||||
val context = LocalContext.current
|
||||
val container = (context.applicationContext as IContainerProvider).getMainContainer()
|
||||
val viewModel: RadarViewModel = viewModel(factory = RadarViewModel.factory(container))
|
||||
@@ -96,22 +99,19 @@ fun RadarDestination(navigateUp: () -> Unit, navigateToMap: () -> Unit) {
|
||||
}
|
||||
navigateUp()
|
||||
}
|
||||
val navigateToMapAndClearMutual = {
|
||||
if (container.mutualPassData.value.endTime > 0L) {
|
||||
container.setMutualPassData(MutualPassData())
|
||||
}
|
||||
navigateToMap()
|
||||
}
|
||||
LaunchedEffect(mutualData.endTime) {
|
||||
if (mutualData.endTime <= 0L) return@LaunchedEffect
|
||||
while (true) {
|
||||
val remainingMs = mutualData.endTime - System.currentTimeMillis()
|
||||
if (remainingMs <= 0L) {
|
||||
navigateUpAndClearMutual()
|
||||
return@LaunchedEffect
|
||||
}
|
||||
// Auto-return only while the mutual pass is actually in progress. An
|
||||
// already-finished pass must NOT bounce the radar page back instantly
|
||||
// (that made the pass-card radar shortcut look broken: tapping it while
|
||||
// the computed pass had ended returned to Mutual immediately).
|
||||
var remainingMs = mutualData.endTime - System.currentTimeMillis()
|
||||
if (remainingMs <= 0L) return@LaunchedEffect
|
||||
while (remainingMs > 0L) {
|
||||
delay(remainingMs.coerceAtMost(1000L))
|
||||
remainingMs = mutualData.endTime - System.currentTimeMillis()
|
||||
}
|
||||
navigateUpAndClearMutual()
|
||||
}
|
||||
// Sync actual permission state on every recomposition so it survives screen re-entry
|
||||
val hasPermission = ContextCompat.checkSelfPermission(
|
||||
@@ -127,7 +127,7 @@ fun RadarDestination(navigateUp: () -> Unit, navigateToMap: () -> Unit) {
|
||||
viewModel.onAction(RadarAction.SstvPermissionResult(granted))
|
||||
viewModel.onAction(RadarAction.CwPermissionResult(granted))
|
||||
}
|
||||
RadarScreen(uiState, viewModel::onAction, navigateUpAndClearMutual, navigateToMapAndClearMutual, mutualData, requestMicPermission = {
|
||||
RadarScreen(uiState, viewModel::onAction, navigateUpAndClearMutual, mutualData, requestMicPermission = {
|
||||
permissionLauncher.launch(Manifest.permission.RECORD_AUDIO)
|
||||
})
|
||||
}
|
||||
@@ -137,11 +137,14 @@ private fun RadarScreen(
|
||||
uiState: RadarState,
|
||||
onAction: (RadarAction) -> Unit,
|
||||
navigateUp: () -> Unit,
|
||||
navigateToMap: () -> Unit,
|
||||
mutualData: MutualPassData,
|
||||
requestMicPermission: () -> Unit
|
||||
) {
|
||||
val upcomingPass = uiState.currentPass ?: getDefaultPass()
|
||||
// 日程功能: 把当前过境写入系统日历(原仓库的 addToCalendar, ic_calendar 按钮)
|
||||
val addToCalendar: () -> Unit = {
|
||||
uiState.currentPass?.let { onAction(RadarAction.AddToCalendar(it.name, it.aosTime, it.losTime)) }
|
||||
}
|
||||
// Station-B overlay: full track line (only where B's elevation > 0) + live position dot
|
||||
// at the current moment, same display mode as the local station.
|
||||
val trackB = remember(mutualData.trackSamples) {
|
||||
@@ -169,6 +172,7 @@ private fun RadarScreen(
|
||||
Column(
|
||||
modifier = Modifier
|
||||
.layoutPadding()
|
||||
.padding(bottom = WindowInsets.navigationBars.asPaddingValues().calculateBottomPadding())
|
||||
.keepScreenOn(),
|
||||
verticalArrangement = Arrangement.spacedBy(6.dp)
|
||||
) {
|
||||
@@ -177,7 +181,7 @@ private fun RadarScreen(
|
||||
TopBar {
|
||||
IconCard(action = navigateUp, resId = R.drawable.ic_back)
|
||||
TimerRow(timeString = uiState.currentTime, isTimeAos = uiState.isTimeAos)
|
||||
IconCard(action = navigateToMap, resId = R.drawable.ic_map)
|
||||
IconCard(action = addToCalendar, resId = R.drawable.ic_calendar)
|
||||
}
|
||||
TopBar { NextPassRow(pass = upcomingPass, isUtc = uiState.isUtc) }
|
||||
} else {
|
||||
@@ -185,7 +189,7 @@ private fun RadarScreen(
|
||||
IconCard(action = navigateUp, resId = R.drawable.ic_back)
|
||||
TimerRow(timeString = uiState.currentTime, isTimeAos = uiState.isTimeAos)
|
||||
NextPassRow(pass = upcomingPass, modifier = Modifier.weight(1f), isUtc = uiState.isUtc)
|
||||
IconCard(action = navigateToMap, resId = R.drawable.ic_map)
|
||||
IconCard(action = addToCalendar, resId = R.drawable.ic_calendar)
|
||||
}
|
||||
}
|
||||
if (isVertical) {
|
||||
|
||||
+18
-1
@@ -48,6 +48,8 @@ import androidx.compose.foundation.lazy.itemsIndexed
|
||||
import androidx.compose.foundation.lazy.rememberLazyListState
|
||||
import androidx.compose.foundation.shape.CircleShape
|
||||
import androidx.compose.foundation.layout.PaddingValues
|
||||
import androidx.compose.foundation.layout.WindowInsets
|
||||
import androidx.compose.foundation.layout.navigationBars
|
||||
import androidx.compose.foundation.text.KeyboardOptions
|
||||
import androidx.compose.material3.Button
|
||||
import androidx.compose.material3.FilterChip
|
||||
@@ -78,6 +80,7 @@ import androidx.compose.ui.draw.rotate
|
||||
import androidx.compose.ui.geometry.Offset
|
||||
import androidx.compose.ui.graphics.Color
|
||||
import androidx.compose.ui.platform.LocalContext
|
||||
import androidx.compose.ui.platform.LocalDensity
|
||||
import androidx.compose.ui.res.painterResource
|
||||
import androidx.compose.ui.res.stringResource
|
||||
import androidx.compose.ui.text.TextStyle
|
||||
@@ -123,7 +126,21 @@ fun TransceiversPage(
|
||||
}
|
||||
}
|
||||
}
|
||||
LazyColumn(modifier = modifier.fillMaxSize(), state = listState) {
|
||||
// contentPadding for the system navigation bar: the radar page is a
|
||||
// full-screen destination, so on gesture-nav devices the translucent
|
||||
// nav bar floats over the list bottom and covers the CW decoder's
|
||||
// decoded-text output when the panel is scrolled to the end. Padding
|
||||
// the last item above the bar fixes it (three-button nav already
|
||||
// resizes the window, where this padding is a harmless no-op).
|
||||
LazyColumn(
|
||||
modifier = modifier.fillMaxSize(),
|
||||
state = listState,
|
||||
contentPadding = PaddingValues(
|
||||
bottom = with(LocalDensity.current) {
|
||||
(WindowInsets.navigationBars.getBottom(this) / density).dp
|
||||
}
|
||||
)
|
||||
) {
|
||||
itemsIndexed(items = transceivers, key = { _, radio -> radio.uuid }) { _, radio ->
|
||||
val isExpanded = radio.uuid == selectedUuid
|
||||
TransceiverItem(
|
||||
|
||||
+70
-16
@@ -50,6 +50,7 @@ import androidx.compose.material3.Checkbox
|
||||
import androidx.compose.material3.FilterChip
|
||||
import androidx.compose.material3.Icon
|
||||
import androidx.compose.material3.IconButton
|
||||
import androidx.compose.material3.LinearProgressIndicator
|
||||
import androidx.compose.material3.MaterialTheme
|
||||
import androidx.compose.material3.TextButton
|
||||
import androidx.compose.material3.OutlinedTextField
|
||||
@@ -228,20 +229,27 @@ fun LoTWDialog(
|
||||
initialSettings: com.rtbishop.look4sat.core.domain.model.LoTWSettings,
|
||||
workedGridsCount: Int,
|
||||
isSyncing: Boolean,
|
||||
syncMode: LoTWSyncMode?,
|
||||
progress: com.rtbishop.look4sat.core.domain.repository.LoTWProgress?,
|
||||
message: String?,
|
||||
dismiss: () -> Unit,
|
||||
/** Called on cancel/back while a sync is running: aborts the job. */
|
||||
onCancelSync: () -> Unit,
|
||||
onSave: (com.rtbishop.look4sat.core.domain.model.LoTWSettings) -> Unit,
|
||||
onSync: (com.rtbishop.look4sat.core.domain.model.LoTWSettings) -> Unit
|
||||
onSyncFull: (com.rtbishop.look4sat.core.domain.model.LoTWSettings) -> Unit,
|
||||
onSyncIncremental: (com.rtbishop.look4sat.core.domain.model.LoTWSettings) -> Unit
|
||||
) {
|
||||
val call = rememberSaveable { mutableStateOf(initialSettings.callsign) }
|
||||
val pass = rememberSaveable { mutableStateOf(initialSettings.password) }
|
||||
SharedDialog(
|
||||
title = stringResource(R.string.prefs_lotw_title),
|
||||
onCancel = dismiss,
|
||||
onAccept = {
|
||||
onSave(com.rtbishop.look4sat.core.domain.model.LoTWSettings(call.value, pass.value))
|
||||
dismiss()
|
||||
}
|
||||
// While syncing, cancel/back aborts the download instead of merely
|
||||
// hiding the dialog — a full sync started by mistake must be stoppable.
|
||||
onDismissRequest = { if (isSyncing) onCancelSync() else dismiss() },
|
||||
onCancel = { if (isSyncing) onCancelSync() else dismiss() },
|
||||
// The two sync buttons below are the primary actions: saving
|
||||
// credentials and fetching confirmed grids happen in one step.
|
||||
onAccept = null
|
||||
) {
|
||||
OutlinedTextField(
|
||||
value = call.value,
|
||||
@@ -265,6 +273,50 @@ fun LoTWDialog(
|
||||
style = MaterialTheme.typography.bodySmall,
|
||||
modifier = Modifier.padding(horizontal = LocalSpacing.current.large)
|
||||
)
|
||||
if (isSyncing) {
|
||||
// Live progress: once the report header reveals the record count,
|
||||
// switch to "N QSOs, ~X s remaining" with a determinate bar.
|
||||
val progressText = when {
|
||||
progress == null ||
|
||||
progress.phase == com.rtbishop.look4sat.core.domain.repository.LoTWPhase.Connecting ->
|
||||
stringResource(R.string.lotw_sync_progress_connecting)
|
||||
// Download finished (or the size estimate reached its cap):
|
||||
// parsing and saving may still run — say so instead of the bar
|
||||
// sitting at 100% with no feedback, which reads as "stuck".
|
||||
progress.fraction >= 1f ->
|
||||
stringResource(R.string.lotw_sync_progress_saving)
|
||||
progress.qsoCount > 0 && progress.remainingSeconds > 0 ->
|
||||
stringResource(R.string.lotw_sync_progress_qso, progress.qsoCount, progress.remainingSeconds)
|
||||
progress.qsoCount > 0 ->
|
||||
stringResource(R.string.lotw_sync_progress_count, progress.qsoCount)
|
||||
else -> stringResource(R.string.lotw_sync_progress_downloading)
|
||||
}
|
||||
Text(
|
||||
text = progressText,
|
||||
style = MaterialTheme.typography.bodySmall,
|
||||
color = MaterialTheme.colorScheme.onSurfaceVariant,
|
||||
modifier = Modifier.padding(horizontal = LocalSpacing.current.large)
|
||||
)
|
||||
if (progress != null && progress.expectedBytes > 0) {
|
||||
LinearProgressIndicator(
|
||||
progress = { progress.fraction },
|
||||
modifier = Modifier.fillMaxWidth().padding(horizontal = LocalSpacing.current.large)
|
||||
)
|
||||
} else {
|
||||
LinearProgressIndicator(
|
||||
modifier = Modifier.fillMaxWidth().padding(horizontal = LocalSpacing.current.large)
|
||||
)
|
||||
}
|
||||
} else {
|
||||
// Pre-sync estimate: rate per 100 QSOs (measured ~8 s at ARRL's
|
||||
// ~10 KB/s stream rate), plus the fixed server-side generation time.
|
||||
Text(
|
||||
text = stringResource(R.string.lotw_sync_rate_hint),
|
||||
style = MaterialTheme.typography.bodySmall,
|
||||
color = MaterialTheme.colorScheme.onSurfaceVariant,
|
||||
modifier = Modifier.padding(horizontal = LocalSpacing.current.large)
|
||||
)
|
||||
}
|
||||
if (message != null) {
|
||||
Text(
|
||||
text = message,
|
||||
@@ -273,19 +325,21 @@ fun LoTWDialog(
|
||||
modifier = Modifier.padding(horizontal = LocalSpacing.current.large)
|
||||
)
|
||||
}
|
||||
// Sync uses the values typed in the fields directly — saving and syncing
|
||||
// happen in one step, no need to close and reopen the dialog.
|
||||
Row(
|
||||
horizontalArrangement = Arrangement.End,
|
||||
horizontalArrangement = Arrangement.SpaceBetween,
|
||||
modifier = Modifier.fillMaxWidth().padding(horizontal = LocalSpacing.current.large)
|
||||
) {
|
||||
TextButton(
|
||||
onClick = { onSync(com.rtbishop.look4sat.core.domain.model.LoTWSettings(call.value, pass.value)) },
|
||||
enabled = !isSyncing
|
||||
) {
|
||||
Text(text = if (isSyncing) stringResource(R.string.prefs_lotw_syncing)
|
||||
else stringResource(R.string.prefs_lotw_sync))
|
||||
}
|
||||
// Full sync bottom-left, incremental merge bottom-right.
|
||||
CardButton(
|
||||
onClick = { onSyncFull(com.rtbishop.look4sat.core.domain.model.LoTWSettings(call.value, pass.value)) },
|
||||
text = stringResource(R.string.lotw_sync_full),
|
||||
isEnabled = !isSyncing
|
||||
)
|
||||
CardButton(
|
||||
onClick = { onSyncIncremental(com.rtbishop.look4sat.core.domain.model.LoTWSettings(call.value, pass.value)) },
|
||||
text = stringResource(R.string.lotw_sync_incremental),
|
||||
isEnabled = !isSyncing
|
||||
)
|
||||
}
|
||||
Spacer(modifier = Modifier.height(0.dp))
|
||||
}
|
||||
|
||||
+18
-6
@@ -204,14 +204,29 @@ private fun SettingsScreen(uiState: SettingsState, onAction: (SettingsAction) ->
|
||||
)
|
||||
}
|
||||
if (dialogs.lotw) {
|
||||
// LoTW sync failures are typed codes from the ViewModel; render them
|
||||
// through string resources so the dialog follows the system language.
|
||||
val lotwErrorMessage = uiState.lotwError?.let { error ->
|
||||
when (error) {
|
||||
LoTWError.NotConfigured -> stringResource(R.string.lotw_sync_error_not_configured)
|
||||
LoTWError.BadCredentials -> stringResource(R.string.lotw_sync_error_credentials)
|
||||
LoTWError.RateLimited -> stringResource(R.string.lotw_sync_error_rate_limited)
|
||||
LoTWError.Timeout -> stringResource(R.string.lotw_sync_error_timeout)
|
||||
is LoTWError.Network -> stringResource(R.string.lotw_sync_error_network, error.detail)
|
||||
}
|
||||
}
|
||||
LoTWDialog(
|
||||
initialSettings = uiState.lotwSettings,
|
||||
workedGridsCount = uiState.workedGridsCount,
|
||||
isSyncing = uiState.lotwSyncing,
|
||||
message = uiState.lotwMessage,
|
||||
syncMode = uiState.lotwSyncMode,
|
||||
progress = uiState.lotwProgress,
|
||||
message = lotwErrorMessage,
|
||||
dismiss = { dialogs.lotw = false },
|
||||
onCancelSync = { onAction(SettingsAction.CancelLoTWSync); dialogs.lotw = false },
|
||||
onSave = { onAction(SettingsAction.UpdateLoTW(it)) },
|
||||
onSync = { onAction(SettingsAction.SyncLoTWGrids(it)) }
|
||||
onSyncFull = { onAction(SettingsAction.SyncLoTWGrids(it, LoTWSyncMode.Full)) },
|
||||
onSyncIncremental = { onAction(SettingsAction.SyncLoTWGrids(it, LoTWSyncMode.Incremental)) }
|
||||
)
|
||||
}
|
||||
|
||||
@@ -521,7 +536,7 @@ private fun OtherCard(settings: OtherSettings, onAction: (SettingsAction) -> Uni
|
||||
ElevatedCard(
|
||||
modifier = Modifier
|
||||
.fillMaxWidth()
|
||||
.height(312.dp)
|
||||
.height(272.dp)
|
||||
) {
|
||||
Column(modifier = Modifier.padding(horizontal = 8.dp, vertical = 4.dp)) {
|
||||
Text(
|
||||
@@ -543,9 +558,6 @@ private fun OtherCard(settings: OtherSettings, onAction: (SettingsAction) -> Uni
|
||||
SwitchRow(R.string.prefs_other_switch_night_mode, settings.stateOfNightMode) {
|
||||
onAction(SettingsAction.ToggleNightMode(it))
|
||||
}
|
||||
SwitchRow(R.string.prefs_other_switch_map_grid, settings.stateOfMapGrid) {
|
||||
onAction(SettingsAction.ToggleMapGrid(it))
|
||||
}
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
+21
-3
@@ -61,10 +61,24 @@ data class SettingsState(
|
||||
val wavelogMessage: String? = null,
|
||||
val lotwSettings: com.rtbishop.look4sat.core.domain.model.LoTWSettings = com.rtbishop.look4sat.core.domain.model.LoTWSettings(),
|
||||
val lotwSyncing: Boolean = false,
|
||||
val lotwMessage: String? = null,
|
||||
val lotwSyncMode: LoTWSyncMode? = null,
|
||||
val lotwProgress: com.rtbishop.look4sat.core.domain.repository.LoTWProgress? = null,
|
||||
val lotwError: LoTWError? = null,
|
||||
val updateChecker: UpdateCheckerState = UpdateCheckerState()
|
||||
)
|
||||
|
||||
/** What a LoTW sync button does: pull everything, or only new QSLs since the last sync. */
|
||||
enum class LoTWSyncMode { Full, Incremental }
|
||||
|
||||
/** LoTW sync failure, kept as a translatable code until the UI renders it. */
|
||||
sealed interface LoTWError {
|
||||
data object NotConfigured : LoTWError
|
||||
data object BadCredentials : LoTWError
|
||||
data object RateLimited : LoTWError
|
||||
data object Timeout : LoTWError
|
||||
data class Network(val detail: String) : LoTWError
|
||||
}
|
||||
|
||||
sealed interface SettingsAction {
|
||||
// Position
|
||||
data object SetGpsPosition : SettingsAction
|
||||
@@ -85,7 +99,6 @@ sealed interface SettingsAction {
|
||||
data class ToggleSensor(val value: Boolean) : SettingsAction
|
||||
data class ToggleLightTheme(val value: Boolean) : SettingsAction
|
||||
data class ToggleNightMode(val value: Boolean) : SettingsAction
|
||||
data class ToggleMapGrid(val value: Boolean) : SettingsAction
|
||||
|
||||
// Remote control
|
||||
data class UpdateRC(val settings: RCSettings) : SettingsAction
|
||||
@@ -100,7 +113,12 @@ sealed interface SettingsAction {
|
||||
|
||||
// LoTW confirmed grids
|
||||
data class UpdateLoTW(val settings: com.rtbishop.look4sat.core.domain.model.LoTWSettings) : SettingsAction
|
||||
data class SyncLoTWGrids(val settings: com.rtbishop.look4sat.core.domain.model.LoTWSettings) : SettingsAction
|
||||
data class SyncLoTWGrids(
|
||||
val settings: com.rtbishop.look4sat.core.domain.model.LoTWSettings,
|
||||
val mode: LoTWSyncMode
|
||||
) : SettingsAction
|
||||
/** Abort an in-flight LoTW sync (wrong button / changed mind). */
|
||||
data object CancelLoTWSync : SettingsAction
|
||||
|
||||
// Update checker
|
||||
data object CheckForUpdate : SettingsAction
|
||||
|
||||
+118
-15
@@ -35,6 +35,7 @@ import kotlinx.coroutines.flow.MutableStateFlow
|
||||
import kotlinx.coroutines.flow.StateFlow
|
||||
import kotlinx.coroutines.flow.update
|
||||
import kotlinx.coroutines.launch
|
||||
import kotlinx.coroutines.withContext
|
||||
import java.io.File
|
||||
|
||||
class SettingsViewModel(
|
||||
@@ -49,6 +50,8 @@ class SettingsViewModel(
|
||||
|
||||
private val defaultPosSettings = PositionSettings(false, settingsRepo.stationPosition.value, 0)
|
||||
private val defaultDataSettings = DataSettings(false, 0, 0, 0L)
|
||||
/** In-flight LoTW sync job, cancelled by CancelLoTWSync. */
|
||||
private var lotwSyncJob: kotlinx.coroutines.Job? = null
|
||||
private val _uiState = MutableStateFlow(
|
||||
SettingsState(
|
||||
appVersionName = settingsRepo.appVersionName,
|
||||
@@ -149,7 +152,6 @@ class SettingsViewModel(
|
||||
is SettingsAction.ToggleSensor -> settingsRepo.updateOtherSettings { it.copy(stateOfSensors = action.value) }
|
||||
is SettingsAction.ToggleLightTheme -> settingsRepo.updateOtherSettings { it.copy(stateOfLightTheme = action.value) }
|
||||
is SettingsAction.ToggleNightMode -> settingsRepo.updateOtherSettings { it.copy(stateOfNightMode = action.value) }
|
||||
is SettingsAction.ToggleMapGrid -> settingsRepo.updateOtherSettings { it.copy(stateOfMapGrid = action.value) }
|
||||
// Remote control & data sources
|
||||
is SettingsAction.UpdateRC -> settingsRepo.updateRCSettings(action.settings)
|
||||
is SettingsAction.UpdateRadioControl -> settingsRepo.updateRadioControlSettings(action.settings)
|
||||
@@ -159,7 +161,8 @@ class SettingsViewModel(
|
||||
is SettingsAction.SyncWorkedGrids -> syncWorkedGrids(action.settings)
|
||||
// LoTW confirmed grids
|
||||
is SettingsAction.UpdateLoTW -> settingsRepo.updateLoTWSettings(action.settings)
|
||||
is SettingsAction.SyncLoTWGrids -> syncLoTWGrids(action.settings)
|
||||
is SettingsAction.SyncLoTWGrids -> syncLoTWGrids(action.settings, action.mode)
|
||||
SettingsAction.CancelLoTWSync -> cancelLoTWSync()
|
||||
// Update checker
|
||||
SettingsAction.CheckForUpdate -> checkForUpdate()
|
||||
SettingsAction.DownloadUpdate -> downloadUpdate()
|
||||
@@ -192,29 +195,129 @@ class SettingsViewModel(
|
||||
}
|
||||
}
|
||||
|
||||
private fun syncLoTWGrids(settings: com.rtbishop.look4sat.core.domain.model.LoTWSettings) {
|
||||
private fun syncLoTWGrids(
|
||||
settings: com.rtbishop.look4sat.core.domain.model.LoTWSettings,
|
||||
mode: LoTWSyncMode
|
||||
) {
|
||||
if (!settings.isConfigured) {
|
||||
_uiState.update { it.copy(lotwMessage = "LoTW callsign/password not configured") }
|
||||
_uiState.update { it.copy(lotwError = LoTWError.NotConfigured) }
|
||||
return
|
||||
}
|
||||
// Persist the credentials first, then sync with the freshly-typed values.
|
||||
settingsRepo.updateLoTWSettings(settings)
|
||||
_uiState.update { it.copy(lotwSyncing = true, lotwMessage = null) }
|
||||
viewModelScope.launch {
|
||||
val lotwGrids = lotwRepo.fetchConfirmedGrids(settings.callsign, settings.password)
|
||||
_uiState.update { state ->
|
||||
if (lotwGrids == null) {
|
||||
state.copy(lotwSyncing = false, lotwMessage = "LoTW sync failed — check callsign/password/network")
|
||||
} else {
|
||||
// Wavelog entry removed: LoTW is now the only source, so the
|
||||
// synced set fully replaces the stored worked grids.
|
||||
settingsRepo.setWorkedGrids(lotwGrids)
|
||||
state.copy(lotwSyncing = false, workedGridsCount = lotwGrids.size, lotwMessage = null)
|
||||
// Incremental only makes sense for the same callsign as the last sync;
|
||||
// a first sync, an unknown/empty record or a callsign change must fall
|
||||
// back to a full report so no stale grids from another account linger.
|
||||
val callsign = settings.callsign.trim().uppercase()
|
||||
val lastCallsign = settingsRepo.getLastLotwSyncCallsign()
|
||||
val effectiveMode = if (mode == LoTWSyncMode.Incremental &&
|
||||
lastCallsign.isNotBlank() && lastCallsign == callsign
|
||||
) LoTWSyncMode.Incremental else LoTWSyncMode.Full
|
||||
val since = if (effectiveMode == LoTWSyncMode.Incremental) {
|
||||
settingsRepo.getLastLotwSyncDate()
|
||||
} else ""
|
||||
_uiState.update {
|
||||
it.copy(lotwSyncing = true, lotwSyncMode = effectiveMode, lotwProgress = null, lotwError = null)
|
||||
}
|
||||
lotwSyncJob = viewModelScope.launch {
|
||||
val result = lotwRepo.fetchConfirmedGridQsos(callsign, settings.password, since) { progress ->
|
||||
_uiState.update { it.copy(lotwProgress = progress) }
|
||||
}
|
||||
when (result) {
|
||||
is com.rtbishop.look4sat.core.domain.repository.LoTWResult.Success -> {
|
||||
// Incremental: merge new grids/QSOs into the stored set (dedup
|
||||
// by call + QSO time); full: the fresh report replaces it all.
|
||||
val existingGrids = settingsRepo.getWorkedGrids()
|
||||
val existingQsos = settingsRepo.getWorkedGridQsos()
|
||||
val existingRoamed = settingsRepo.getRoamedGrids()
|
||||
val mergedGrids = if (effectiveMode == LoTWSyncMode.Incremental) {
|
||||
existingGrids + result.grids
|
||||
} else result.grids
|
||||
val mergedQsos = if (effectiveMode == LoTWSyncMode.Incremental) {
|
||||
mergeGridQsos(existingQsos, result.qsos)
|
||||
} else result.qsos
|
||||
val mergedRoamed = if (effectiveMode == LoTWSyncMode.Incremental) {
|
||||
existingRoamed + result.roamedGrids
|
||||
} else result.roamedGrids
|
||||
// Remember when/what we synced, so the next incremental pull
|
||||
// asks LoTW for only the confirmations since today.
|
||||
val today = java.text.SimpleDateFormat("yyyyMMdd", java.util.Locale.US)
|
||||
.apply { timeZone = java.util.TimeZone.getTimeZone("UTC") }
|
||||
.format(java.util.Date())
|
||||
settingsRepo.setLastLotwSyncDate(today)
|
||||
settingsRepo.setLastLotwSyncCallsign(callsign)
|
||||
// Persist on the IO dispatcher: building the per-grid QSO JSON
|
||||
// and writing SharedPreferences synchronously blocks the
|
||||
// calling thread, and for large accounts (tens of thousands
|
||||
// of QSOs → multi-MB JSON) that froze the main thread after
|
||||
// the download finished — 'bar done but app stuck'.
|
||||
withContext(kotlinx.coroutines.Dispatchers.IO) {
|
||||
settingsRepo.setWorkedGrids(mergedGrids)
|
||||
settingsRepo.setWorkedGridQsos(mergedQsos)
|
||||
settingsRepo.setRoamedGrids(mergedRoamed)
|
||||
}
|
||||
_uiState.update { state ->
|
||||
state.copy(
|
||||
lotwSyncing = false, lotwSyncMode = null, lotwProgress = null,
|
||||
workedGridsCount = mergedGrids.size, lotwError = null
|
||||
)
|
||||
}
|
||||
}
|
||||
is com.rtbishop.look4sat.core.domain.repository.LoTWResult.BadCredentials ->
|
||||
_uiState.update { state ->
|
||||
state.copy(
|
||||
lotwSyncing = false, lotwSyncMode = null, lotwProgress = null,
|
||||
lotwError = LoTWError.BadCredentials
|
||||
)
|
||||
}
|
||||
is com.rtbishop.look4sat.core.domain.repository.LoTWResult.RateLimited ->
|
||||
_uiState.update { state ->
|
||||
state.copy(
|
||||
lotwSyncing = false, lotwSyncMode = null, lotwProgress = null,
|
||||
lotwError = LoTWError.RateLimited
|
||||
)
|
||||
}
|
||||
is com.rtbishop.look4sat.core.domain.repository.LoTWResult.Timeout ->
|
||||
_uiState.update { state ->
|
||||
state.copy(
|
||||
lotwSyncing = false, lotwSyncMode = null, lotwProgress = null,
|
||||
lotwError = LoTWError.Timeout
|
||||
)
|
||||
}
|
||||
is com.rtbishop.look4sat.core.domain.repository.LoTWResult.NetworkError ->
|
||||
_uiState.update { state ->
|
||||
state.copy(
|
||||
lotwSyncing = false, lotwSyncMode = null, lotwProgress = null,
|
||||
lotwError = LoTWError.Network(result.detail)
|
||||
)
|
||||
}
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
/** Abort the in-flight LoTW sync job and reset its progress state. */
|
||||
private fun cancelLoTWSync() {
|
||||
lotwSyncJob?.cancel()
|
||||
lotwSyncJob = null
|
||||
_uiState.update { it.copy(lotwSyncing = false, lotwSyncMode = null, lotwProgress = null) }
|
||||
}
|
||||
|
||||
/** Merge fresh QSO detail into existing per-grid lists, dedup by call + QSO time. */
|
||||
private fun mergeGridQsos(
|
||||
existing: Map<String, List<com.rtbishop.look4sat.core.domain.model.GridQso>>,
|
||||
fresh: Map<String, List<com.rtbishop.look4sat.core.domain.model.GridQso>>
|
||||
): Map<String, List<com.rtbishop.look4sat.core.domain.model.GridQso>> {
|
||||
val merged = existing.mapValues { (_, list) -> list.toMutableList() }.toMutableMap()
|
||||
fresh.forEach { (grid, list) ->
|
||||
val target = merged.getOrPut(grid) { mutableListOf() }
|
||||
val known = target.mapTo(mutableSetOf()) { it.call to it.epochMs }
|
||||
list.forEach { qso ->
|
||||
if (known.add(qso.call to qso.epochMs)) target.add(qso)
|
||||
}
|
||||
}
|
||||
return merged
|
||||
}
|
||||
|
||||
// endregion
|
||||
|
||||
// region Update checker
|
||||
|
||||
+12
-8
@@ -58,7 +58,6 @@ import androidx.lifecycle.compose.collectAsStateWithLifecycle
|
||||
import androidx.lifecycle.viewmodel.compose.viewModel
|
||||
import com.rtbishop.look4sat.core.domain.model.SatDay
|
||||
import com.rtbishop.look4sat.core.domain.model.SatReport
|
||||
import com.rtbishop.look4sat.core.domain.model.SatSlot
|
||||
import com.rtbishop.look4sat.core.domain.model.SatStatus
|
||||
import com.rtbishop.look4sat.core.domain.repository.IContainerProvider
|
||||
import com.rtbishop.look4sat.core.presentation.CardButton
|
||||
@@ -316,7 +315,6 @@ private fun HeaderRow(statuses: List<SatStatus>) {
|
||||
/** Satellite row: name takes remaining width; day tiles are fixed-width (tablet-safe). */
|
||||
@Composable
|
||||
private fun StatusRow(status: SatStatus, onClickDay: (SatDay) -> Unit) {
|
||||
val noReportGray = 0xFFC0C0C0L
|
||||
Row(
|
||||
modifier = Modifier.fillMaxWidth().padding(vertical = 2.dp),
|
||||
verticalAlignment = Alignment.CenterVertically
|
||||
@@ -329,9 +327,8 @@ private fun StatusRow(status: SatStatus, onClickDay: (SatDay) -> Unit) {
|
||||
modifier = Modifier.weight(1f).padding(end = 4.dp)
|
||||
)
|
||||
status.days.forEach { day ->
|
||||
val slot = day.slots.firstOrNull { it.statusColor != noReportGray } ?: day.slots.first()
|
||||
DayCell(
|
||||
slot = slot,
|
||||
day = day,
|
||||
modifier = Modifier.width(TILE_WIDTH).padding(horizontal = 2.dp),
|
||||
onClick = { onClickDay(day) }
|
||||
)
|
||||
@@ -339,10 +336,17 @@ private fun StatusRow(status: SatStatus, onClickDay: (SatDay) -> Unit) {
|
||||
}
|
||||
}
|
||||
|
||||
/** Day block: newest reported status among the day's 12 slots; gray when none. */
|
||||
/**
|
||||
* Day block: colored by the newest reported status among the day's 12 slots
|
||||
* (gray when none); the number is the TOTAL report count of the whole day
|
||||
* (sum over all slots), not the count of the newest slot alone.
|
||||
*/
|
||||
@Composable
|
||||
private fun DayCell(slot: SatSlot, modifier: Modifier, onClick: () -> Unit) {
|
||||
private fun DayCell(day: SatDay, modifier: Modifier, onClick: () -> Unit) {
|
||||
val noReportGray = 0xFFC0C0C0L
|
||||
val slot = day.slots.firstOrNull { it.statusColor != noReportGray } ?: day.slots.first()
|
||||
val color = Color(slot.statusColor)
|
||||
val totalCount = day.slots.sumOf { it.count }
|
||||
Box(
|
||||
modifier = modifier
|
||||
.height(28.dp)
|
||||
@@ -351,8 +355,8 @@ private fun DayCell(slot: SatSlot, modifier: Modifier, onClick: () -> Unit) {
|
||||
.clickable(onClick = onClick),
|
||||
contentAlignment = Alignment.Center
|
||||
) {
|
||||
if (slot.count > 0) {
|
||||
Text(text = slot.count.toString(), fontSize = 13.sp, fontWeight = FontWeight.Bold, color = Color.White)
|
||||
if (totalCount > 0) {
|
||||
Text(text = totalCount.toString(), fontSize = 13.sp, fontWeight = FontWeight.Bold, color = Color.White)
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
@@ -1,8 +1,8 @@
|
||||
[versions]
|
||||
#noinspection UnusedVersionCatalogEntry
|
||||
appVersionCode = "458"
|
||||
appVersionCode = "476"
|
||||
#noinspection UnusedVersionCatalogEntry
|
||||
appVersionName = "4.4.6-ba7opf.9.6"
|
||||
appVersionName = "4.4.7-ba7opf.6"
|
||||
#noinspection UnusedVersionCatalogEntry
|
||||
compileSdk = "37"
|
||||
#noinspection UnusedVersionCatalogEntry
|
||||
|
||||
Reference in new issue
Block a user