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Author SHA1 Message Date
atsunatsu 6beaeb3e1a chore: bump version to 4.4.7-ba7opf.11.4 (versionCode 485) 2026-09-21 16:51:50 +08:00
atsunatsu 91f0cb1c56 fix(map): grid labels match first-call font size and display zoom 2026-09-21 16:51:13 +08:00
atsunatsu 3b72f8d68a fix(res): rename pass-history slider label 先前时间 to 历史过境时间 (values-zh) 2026-09-21 16:51:09 +08:00
atsunatsu 3bc2983d26 fix(passes): expire finished passes beyond history window, refresh keeps lookback 2026-09-21 16:51:06 +08:00
atsunatsu 0ec4c5dc6c chore: bump version to 4.4.7-ba7opf.11.3 (versionCode 484) 2026-09-21 11:35:33 +08:00
atsunatsu 8e8a3849df fix(map): first-call labels now appear exactly when grid lines do
The 11.2 gate only relaxed the pre-return zoom check, but the showLabels
gate below it still required LABEL_ZOOM_SUB (6.5), so first-call labels
stayed hidden in the 6.0..6.5 band where the 4-char grid lines render.
- Gate showLabels on GRID_ZOOM_SUB (6.0) when showFirstCallLabels is on.
- Relax MIN_LABEL_CELL_PX (48) to 0.6x for first-call mode so 1° cells
  (~45 px on the equator at zoom 6.0) are not filtered out.
Normal grid-code labels are unchanged (still LABEL_ZOOM_SUB).
2026-09-21 11:35:10 +08:00
atsunatsu cd65e6c077 fix(res): single-line what's new string, unformatted qso count, si typo
- pass_whatsnew_message rewritten as a single line with escaped \n bullets:
  real newlines in the value are invalid for aapt2 ('not a valid string').
- Escape the apostrophe in "map's"; mark grid_qso_calls_count
  formatted=false (two %d + '·' triggered multiple-substitutions).
- values-si: remove stray comma after map_altitude </string>.
All were latent resource errors surfaced by the forced recompile.
2026-09-21 11:11:52 +08:00
atsunatsu a3d370b1fa chore: bump version to 4.4.7-ba7opf.11.2 (versionCode 483) 2026-09-21 10:52:35 +08:00
atsunatsu bf492e3f8b feat(passes/radar): port pass history + compass calibration, cumulative what's new
- Pass history (Iu-yang1 fork): PassesSettings.hoursBefore look-back window;
  second 'Time before' slider in the pass filter; completed passes stay
  listed (progress clamped to [0,1]) in the history window.
- Compass calibration (Iu-yang1 fork): OtherSettings.compassOffsetDegrees,
  CompassAccuracy from the magnetic sensor, calibration dialog with
  figure-eight accuracy meter, corrected heading and manual offset field;
  RadarViewModel applies the offset.
- What's New dialog now shows the cumulative 4.4.6->4.4.7 changelog and
  follows the system language (values/ + values-zh/).
- pass_filter_history_hours localized in es/ru/si/tr/uk.
2026-09-21 10:42:45 +08:00
atsunatsu 3591960d55 feat(map): show first-call labels as soon as grid lines appear
Move the first-call label gate from LABEL_ZOOM_SUB (6.5) to GRID_ZOOM_SUB
(6.0): worked (green) cells are labelled with their first callsign as soon
as the 4-char grid lines render, not only at the name-label zoom.
2026-09-21 10:42:37 +08:00
atsunatsu 3f7a087938 chore: bump version to 4.4.7-ba7opf.11.1 (versionCode 482) 2026-09-21 09:44:46 +08:00
atsunatsu 4b82332133 feat(map): first-call callsign label toggle in VUCC grid mode
Add a 'first call' pill toggle below the grid-mode switch (map top-right,
visible only in grid mode + VUCC award). When on, worked (green) cells are
labelled with the first callsign worked in that grid (earliest confirmed
QSO by time) instead of the Maidenhead code; non-worked cells get no label
at all. Persisted via OtherSettings.stateOfMapFirstCall (full MVI chain).
The feature is VUCC-only: All and other award overlays never draw it.
2026-09-21 09:44:43 +08:00
atsunatsu dcd16a0196 chore: bump version to 4.4.7-ba7opf.11 (versionCode 481) 2026-09-19 04:27:55 +08:00
atsunatsu 9e88609efc feat(amsat): show consecutive same-status report count in status cells
Day-cell numbers now count the most recent consecutive reports sharing the
newest status (counting back from the newest report, stopping at the first
different status), instead of the total report count of the day. Empty gaps
do not break the streak; statuses compare by exact report text; counting
does not cross day boundaries.

- SatDay gains streakCount (computed in AmSatRepository.buildStatuses)
- DayCell renders day.streakCount instead of slot count sum
- Add real org.json to core:data unit tests (android.jar stub cannot parse)
- Add 2 streak tests: mixed-status slot breaks, all-same-status counts all
2026-09-19 04:27:19 +08:00
atsunatsu 322becdda8 feat(satellites): fuzzy name search ignoring separators
The satellite search only matched exact continuous substrings, so names with
dashes, spaces or brackets (AO-7, ISS (ZARYA), FO-29) could not be found by
queries without those separators. Now the query is normalized (lowercased,
non-alphanumeric separators stripped) and split into space-separated tokens,
and every token must appear in the normalized satellite name. This makes
'ao7' match 'AO-7 (AMSAT-OSCAR 7)' and 'iss zarya' match 'ISS (ZARYA)'.
Numeric queries still match catnum exactly. Covered by 8 new unit tests.
2026-09-18 14:49:41 +08:00
atsunatsu 7f93a10556 chore: bump version to 4.4.7-ba7opf.9 (versionCode 479) 2026-09-18 02:04:09 +08:00
atsunatsu 3cd5b49f98 feat(mutual): keep pass list scroll position across page switches
The mutual pass list LazyColumn reset to the top on every return to the page.
Scroll position is now stored in the Activity-scoped MutualViewModel and
restored on re-entry; a new query (queryGeneration bump) rebuilds the list at
the top so stale positions never leak into fresh results.
2026-09-18 02:04:04 +08:00
atsunatsu 4dbe896124 feat(map): keep grid-mode viewport across page switches
The osmdroid map was recreated on every return to the Map page, resetting
center/zoom to the default and forcing grid mode back onto the station grid.
Now the viewport (center + zoom) is saved in the Activity-scoped
MapFilterViewModel only in grid mode and restored on re-entry, so the user
keeps exactly where they left off. Satellite mode keeps its original
follow-the-satellite behavior; cold-start entries and in-page grid toggles
still center on the station grid as before.
2026-09-18 02:03:57 +08:00
atsunatsu b47bd78ecd feat(map): keep award filter selection across page switches
The award chip (VUCC/DXCC/WAJA/...) now lives in an Activity-scoped
MapFilterViewModel instead of a per-composition remember, so switching
to another page and back keeps the last selection; it resets to VUCC
only once per process (cold start). Removes the effect that forced
VUCC on every grid-mode entry.
2026-09-17 12:57:36 +08:00
atsunatsu c89e79e28f chore: bump version to 4.4.7-ba7opf.8 (versionCode 478) 2026-09-17 11:53:44 +08:00
atsunatsu b40a79e3c6 docs: credit BG5JSU with CW decoding feature 2026-09-17 11:38:19 +08:00
atsunatsu 6c23696e22 docs: add BG5JSU to acknowledgments (after BG7NTA) 2026-09-17 11:25:44 +08:00
atsunatsu f997d95cd4 chore: bump version to 4.4.7-ba7opf.7 (versionCode 477) 2026-09-17 10:41:11 +08:00
atsunatsu e0a1d279ce i18n(zh): localize update time to yyyy年M月d日 HH:mm:ss 2026-09-17 10:20:26 +08:00
atsunatsu 059c816075 feat(lotw): show last sync time on settings, precise incremental cursor
The stored sync cursor was 'yyyyMMdd', which LoTW's qso_qslsince silently
ignores (measured live: it falls back to the system-supplied default).
Write a full UTC 'yyyy-MM-dd HH:mm:ss' cursor instead — the documented
format LoTW honors — so incremental pulls are exact (second precision)
and the settings page can show the last successful sync time on the LoTW
card, formatted like the ephemeris update time (prefs_updated_title).
Legacy yyyyMMdd cursors are normalized for the API, the gate and the
display (lotwCursorApi/lotwCursorDate/lotwCursorEpochMs).
2026-09-17 10:13:52 +08:00
atsunatsu 60dfa5d600 feat(lotw): auto-sync grids on app start with separate toggle
Mirrors the ephemeris auto-update check: on every app start, if LoTW
credentials are configured, the new 'auto-sync LoTW grids' toggle is on,
at least one manual sync was done before, and today has not synced yet
(ARRL rate limit, ~once a day), pull confirmations since the last sync
and merge them. Same callsign -> incremental merge; callsign change ->
full replace. Manual dialog and automatic path share the orchestration
(mode resolution, gate, merge/persist) moved to core:domain
LoTWGridSync.kt; LoTWSyncMode moved to core:domain. 8 unit tests.
2026-09-16 20:18:22 +08:00
41 changed files with 1504 additions and 153 deletions

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@@ -24,6 +24,13 @@ import android.os.Bundle
import com.rtbishop.look4sat.core.data.injection.MainContainer
import com.rtbishop.look4sat.core.domain.repository.IContainerProvider
import com.rtbishop.look4sat.core.domain.repository.IMainContainer
import com.rtbishop.look4sat.core.domain.repository.LoTWSyncMode
import com.rtbishop.look4sat.core.domain.repository.LoTWResult
import com.rtbishop.look4sat.core.domain.repository.applyLoTWGridResult
import com.rtbishop.look4sat.core.domain.repository.lotwCursorApi
import com.rtbishop.look4sat.core.domain.repository.lotwSyncToday
import com.rtbishop.look4sat.core.domain.repository.resolveLoTWSyncMode
import com.rtbishop.look4sat.core.domain.repository.shouldAutoSyncLoTW
import kotlinx.coroutines.launch
import java.text.SimpleDateFormat
import java.util.Date
@@ -41,6 +48,8 @@ class MainApplication : Application(), IContainerProvider {
clearAmSatCacheOnAppBackground()
// trigger automatic update every 48 hours
container.appScope.launch { checkAutoUpdate() }
// automatic LoTW grid sync on every app start (gated, see checkLoTWAutoSync)
container.appScope.launch { checkLoTWAutoSync() }
// load satellite data on every app start
container.appScope.launch { container.satelliteRepo.initRepository() }
}
@@ -79,4 +88,37 @@ class MainApplication : Application(), IContainerProvider {
}
}
}
/**
* Automatic LoTW grid sync, mirroring [checkAutoUpdate]: checked on every
* app start, but only pulls when due — LoTW credentials configured, the
* LoTW auto-sync toggle on, at least one prior (manual) sync, and not
* already synced today (ARRL limits report pulls, ~once a day per account).
* Incremental when the callsign is unchanged; a callsign change falls back
* to a full replace so no stale grids from another account linger.
* Failures are silent and simply retried on the next app start — the manual
* sync button still surfaces the explicit cause to the user.
*/
private suspend fun checkLoTWAutoSync(timeNow: Long = System.currentTimeMillis()) {
val settingsRepo = container.settingsRepo
val lotwSettings = settingsRepo.lotwSettings.value
if (!shouldAutoSyncLoTW(
isConfigured = lotwSettings.isConfigured,
autoLotwSyncEnabled = settingsRepo.otherSettings.value.stateOfAutoLotwSync,
lastSyncDate = settingsRepo.getLastLotwSyncDate(),
today = lotwSyncToday(timeNow)
)
) return
val callsign = lotwSettings.callsign.trim().uppercase()
val mode = resolveLoTWSyncMode(settingsRepo.getLastLotwSyncCallsign(), callsign, requested = null)
val since = if (mode == LoTWSyncMode.Incremental) lotwCursorApi(settingsRepo.getLastLotwSyncDate()) else ""
println("Started periodic LoTW grid sync (${mode.name.lowercase()})")
val result = container.lotwRepo.fetchConfirmedGridQsos(callsign, lotwSettings.password, since)
if (result is LoTWResult.Success) {
val count = applyLoTWGridResult(settingsRepo, result, mode, callsign, timeNow)
println("Periodic LoTW grid sync finished: $count worked grids")
} else {
println("Periodic LoTW grid sync skipped (${result::class.simpleName})")
}
}
}
@@ -81,6 +81,7 @@ import com.rtbishop.look4sat.core.presentation.Screen
import com.rtbishop.look4sat.core.presentation.hasEnoughHeight
import com.rtbishop.look4sat.core.presentation.hasEnoughWidth
import com.rtbishop.look4sat.feature.map.MapDestination
import com.rtbishop.look4sat.feature.map.MapFilterViewModel
import com.rtbishop.look4sat.feature.mutual.MutualScreen
import com.rtbishop.look4sat.feature.mutual.MutualViewModel
import com.rtbishop.look4sat.feature.passes.PassesDestination
@@ -169,6 +170,12 @@ fun MainScreen(
viewModelStoreOwner = context as ViewModelStoreOwner,
factory = MutualViewModel.factory(container)
)
// Activity-scoped so the map's award filter survives page switches;
// resets to VUCC only on cold start (fresh process).
val mapFilterViewModel: MapFilterViewModel = viewModel(
viewModelStoreOwner = context as ViewModelStoreOwner,
factory = MapFilterViewModel.factory()
)
CompositionLocalProvider(
LocalElevationThresholds provides ElevationThresholds(
@@ -237,7 +244,7 @@ fun MainScreen(
)
}
entry<Screen.Map> {
MapDestination()
MapDestination(mapFilterViewModel = mapFilterViewModel)
}
entry<Screen.Mutual> {
MutualScreen(
@@ -35,6 +35,9 @@ internal class CoreDataPlugin : Plugin<Project> {
ksp(libs.androidx.room.compiler)
implementation(libs.kotlin.coroutines)
implementation(libs.other.okhttp)
// android.jar's org.json is a stub ("not mocked") in unit tests;
// provide a real implementation so JSON parsing is testable.
testImplementation(libs.test.json)
}
}
}
@@ -221,7 +221,22 @@ class AmSatRepository(
}
}
val days = (0 until 3).map { d ->
SatDay(dateLabel = labels[d], slots = slots.subList(d * 12, (d + 1) * 12))
// 当天最近连续相同状态报告数:从最新一条往回数,遇状态不同即停。
// 空时段(无报告)不打断;按状态文本严格比较,不跨天。
val dayStart = nowSec - (d + 1) * 86400L
val dayEnd = nowSec - d * 86400L
val dayReports = byName[name].orEmpty()
.filter { it.reportedTimeUtcSec in dayStart until dayEnd }
.sortedByDescending { it.reportedTimeUtcSec }
val streakCount = if (dayReports.isEmpty()) 0 else {
val newestStatus = dayReports.first().report
dayReports.takeWhile { it.report == newestStatus }.size
}
SatDay(
dateLabel = labels[d],
slots = slots.subList(d * 12, (d + 1) * 12),
streakCount = streakCount
)
}
SatStatus(name = name, days = days)
}
@@ -76,9 +76,11 @@ class SatelliteRepo(
.collect { selectedIds ->
_satellites.update { localStorage.getEntriesWithIds(selectedIds) }
val settings = settingsRepo.passesSettings.value
val now = System.currentTimeMillis()
// 历史过境: 回看窗口 hoursBefore 小时, 过境列表从更早时间开始计算.
calculatePasses(
time = System.currentTimeMillis(),
hoursAhead = settings.hoursAhead,
time = now - settings.hoursBefore * 60L * 60L * 1000L,
hoursAhead = settings.hoursBefore + settings.hoursAhead,
minElevation = settings.minElevation,
aosStartMinute = settings.aosStartMinute,
aosEndMinute = settings.aosEndMinute,
@@ -111,12 +111,29 @@ class SelectionRepo(
/**
* Filters items by query. Uses toIntOrNull() instead of exception-based flow,
* and lowercases the query once up front instead of per-item.
*
* Fuzzy search: the query is split into space-separated tokens and every
* token must appear in the satellite name after both sides are normalized
* (lowercased, non-alphanumeric separators such as dashes, spaces, brackets
* and dots stripped). This makes "ao7" match "AO-7 (AMSAT-OSCAR 7)" and
* "iss zarya" match "ISS (ZARYA)" — exact continuous-substring matching
* previously failed whenever the name contained a separator the query lacked.
*/
private fun filterByQuery(items: List<SatItem>, query: String): List<SatItem> {
if (query.isBlank()) return items
val catnum = query.toIntOrNull()
if (catnum != null) return items.filter { it.catnum == catnum }
val lowerQuery = query.lowercase()
return items.filter { it.name.lowercase().contains(lowerQuery) }
val tokens = query.split(' ')
.map { normalizeForSearch(it) }
.filter { it.isNotEmpty() }
if (tokens.isEmpty()) return items
return items.filter { item ->
val normalizedName = normalizeForSearch(item.name)
tokens.all { normalizedName.contains(it) }
}
}
/** Lowercases and strips all non-alphanumeric chars for fuzzy matching. */
private fun normalizeForSearch(text: String): String =
text.lowercase().filter { it.isLetterOrDigit() }
}
@@ -27,6 +27,7 @@ import android.view.Display
import android.view.Surface
import com.rtbishop.look4sat.core.domain.predict.GeoPos
import com.rtbishop.look4sat.core.domain.predict.RAD2DEG
import com.rtbishop.look4sat.core.domain.repository.CompassAccuracy
import com.rtbishop.look4sat.core.domain.repository.ISensorsRepo
import kotlinx.coroutines.flow.MutableStateFlow
import kotlinx.coroutines.flow.StateFlow
@@ -41,7 +42,12 @@ class SensorsRepo(
) : ISensorsRepo, SensorEventListener {
private val _sensorData = MutableStateFlow(Pair(0f, 0f))
private val sensor: Sensor? = sensorManager.getDefaultSensor(Sensor.TYPE_ROTATION_VECTOR)
private val rotationSensor: Sensor? = sensorManager.getDefaultSensor(Sensor.TYPE_ROTATION_VECTOR)
private val magneticSensor: Sensor? = sensorManager.getDefaultSensor(Sensor.TYPE_MAGNETIC_FIELD)
private val _compassAccuracy = MutableStateFlow(
if (rotationSensor == null || magneticSensor == null) CompassAccuracy.UNAVAILABLE
else CompassAccuracy.UNRELIABLE
)
private val rotationMatrix = FloatArray(9)
private val tempMatrix = FloatArray(9)
private val orientationValues = FloatArray(3)
@@ -50,6 +56,7 @@ class SensorsRepo(
private var hasInitialReading = false
override val sensorData: StateFlow<Pair<Float, Float>> = _sensorData
override val compassAccuracy: StateFlow<CompassAccuracy> = _compassAccuracy
override fun getMagDeclination(geoPos: GeoPos, time: Long): Float {
return GeomagneticField(
@@ -62,15 +69,41 @@ class SensorsRepo(
override fun enableSensor() {
hasInitialReading = false
sensor?.let { sensorManager.registerListener(this, it, SENSOR_RATE_US) }
if (rotationSensor == null || magneticSensor == null) {
_compassAccuracy.value = CompassAccuracy.UNAVAILABLE
return
}
_compassAccuracy.value = CompassAccuracy.UNRELIABLE
val rotationRegistered = sensorManager.registerListener(this, rotationSensor, SENSOR_RATE_US)
val magneticRegistered = sensorManager.registerListener(this, magneticSensor, SENSOR_RATE_US)
if (!rotationRegistered || !magneticRegistered) {
sensorManager.unregisterListener(this)
_compassAccuracy.value = CompassAccuracy.UNAVAILABLE
}
}
override fun disableSensor() = sensorManager.unregisterListener(this)
override fun onAccuracyChanged(sensor: Sensor, accuracy: Int) = Unit
override fun onAccuracyChanged(sensor: Sensor, accuracy: Int) {
if (sensor.type == Sensor.TYPE_MAGNETIC_FIELD) {
updateAccuracy(accuracy)
}
}
override fun onSensorChanged(event: SensorEvent) {
if (event.sensor.type == Sensor.TYPE_ROTATION_VECTOR) handleSensorEvent(event)
when (event.sensor.type) {
Sensor.TYPE_ROTATION_VECTOR -> handleSensorEvent(event)
Sensor.TYPE_MAGNETIC_FIELD -> updateAccuracy(event.accuracy)
}
}
private fun updateAccuracy(accuracy: Int) {
_compassAccuracy.value = when (accuracy) {
SensorManager.SENSOR_STATUS_ACCURACY_HIGH -> CompassAccuracy.HIGH
SensorManager.SENSOR_STATUS_ACCURACY_MEDIUM -> CompassAccuracy.MEDIUM
SensorManager.SENSOR_STATUS_ACCURACY_LOW -> CompassAccuracy.LOW
else -> CompassAccuracy.UNRELIABLE
}
}
private fun getDisplayRotation(): Int {
@@ -58,6 +58,7 @@ class SettingsRepo(
private val keyBluetoothFrequencyFormat = "bluetoothFrequencyFormat"
private val keyFilterShowDeepSpace = "filterShowDeepSpace"
private val keyFilterHoursAhead = "filterHoursAhead"
private val keyFilterHoursBefore = "filterHoursBefore"
private val keyFilterMinElevation = "filterMinElevation"
private val keyFilterAosStartMinute = "filterAosStartMinute"
private val keyFilterAosEndMinute = "filterAosEndMinute"
@@ -77,12 +78,15 @@ class SettingsRepo(
private val keySelectedTypes = "selectedTypes"
private val keySelectedModes = "selectedModes"
private val keyStateOfAutoUpdate = "stateOfAutoUpdate"
private val keyStateOfAutoLotwSync = "stateOfAutoLotwSync"
private val keyStateOfSensors = "stateOfSensors"
private val keyCompassOffsetDegrees = "compassOffsetDegrees"
private val keyStateOfSweep = "stateOfSweep"
private val keyStateOfUtc = "stateOfUtc"
private val keyStateOfLightTheme = "stateOfLightTheme"
private val keyStateOfNightMode = "stateOfNightMode"
private val keyStateOfMapGrid = "stateOfMapGrid"
private val keyStateOfMapFirstCall = "stateOfMapFirstCall"
private val keyStationAltitude = "stationAltitude"
private val keyStationLatitude = "stationLatitude"
private val keyStationLongitude = "stationLongitude"
@@ -316,6 +320,7 @@ class SettingsRepo(
override fun setPassesSettings(settings: PassesSettings) = preferences.edit {
putBoolean(keyFilterShowDeepSpace, settings.showDeepSpace)
putInt(keyFilterHoursAhead, settings.hoursAhead)
putInt(keyFilterHoursBefore, settings.hoursBefore)
putLong(keyFilterMinElevation, settings.minElevation.toRawBits())
putInt(keyFilterAosStartMinute, settings.aosStartMinute)
putInt(keyFilterAosEndMinute, settings.aosEndMinute)
@@ -327,6 +332,7 @@ class SettingsRepo(
private fun getPassesSettings(): PassesSettings {
val showDeepSpace = preferences.getBoolean(keyFilterShowDeepSpace, true)
val hoursAhead = preferences.getInt(keyFilterHoursAhead, 24)
val hoursBefore = preferences.getInt(keyFilterHoursBefore, 0).coerceIn(0, 240)
val minElevation = Double.fromBits(preferences.getLong(keyFilterMinElevation, 16.0.toRawBits()))
val aosStartMinute = preferences.getInt(keyFilterAosStartMinute, 0).coerceIn(0, 23 * 60 + 59)
val aosEndMinute = preferences.getInt(keyFilterAosEndMinute, 23 * 60 + 59).coerceIn(0, 23 * 60 + 59)
@@ -340,7 +346,8 @@ class SettingsRepo(
aosStartMinute,
aosEndMinute,
invertAosTimeWindow,
selectedModes
selectedModes,
hoursBefore
)
}
//endregion
@@ -538,12 +545,15 @@ class SettingsRepo(
val new = transform(current)
preferences.edit {
putBoolean(keyStateOfAutoUpdate, new.stateOfAutoUpdate)
putBoolean(keyStateOfAutoLotwSync, new.stateOfAutoLotwSync)
putBoolean(keyStateOfSensors, new.stateOfSensors)
putFloat(keyCompassOffsetDegrees, new.compassOffsetDegrees.coerceIn(-180f, 180f))
putBoolean(keyStateOfSweep, new.stateOfSweep)
putBoolean(keyStateOfUtc, new.stateOfUtc)
putBoolean(keyStateOfLightTheme, new.stateOfLightTheme)
putBoolean(keyStateOfNightMode, new.stateOfNightMode)
putBoolean(keyStateOfMapGrid, new.stateOfMapGrid)
putBoolean(keyStateOfMapFirstCall, new.stateOfMapFirstCall)
putBoolean(keyShouldSeeWarning, new.shouldSeeWarning)
putBoolean(keyShouldSeeWhatsNew, new.shouldSeeWhatsNew)
putString(keySstvMode, new.sstvMode)
@@ -556,12 +566,15 @@ class SettingsRepo(
private fun getOtherSettings(): OtherSettings = OtherSettings(
stateOfAutoUpdate = preferences.getBoolean(keyStateOfAutoUpdate, true),
stateOfAutoLotwSync = preferences.getBoolean(keyStateOfAutoLotwSync, true),
stateOfSensors = preferences.getBoolean(keyStateOfSensors, true),
compassOffsetDegrees = preferences.getFloat(keyCompassOffsetDegrees, 0f).coerceIn(-180f, 180f),
stateOfSweep = preferences.getBoolean(keyStateOfSweep, true),
stateOfUtc = preferences.getBoolean(keyStateOfUtc, false),
stateOfLightTheme = preferences.getBoolean(keyStateOfLightTheme, false),
stateOfNightMode = preferences.getBoolean(keyStateOfNightMode, false),
stateOfMapGrid = preferences.getBoolean(keyStateOfMapGrid, false),
stateOfMapFirstCall = preferences.getBoolean(keyStateOfMapFirstCall, false),
shouldSeeWarning = preferences.getBoolean(keyShouldSeeWarning, true),
shouldSeeWhatsNew = preferences.getBoolean(keyShouldSeeWhatsNew, true),
sstvMode = preferences.getString(keySstvMode, null) ?: "Auto",
@@ -12,6 +12,10 @@ import org.junit.Assert.assertNull
import org.junit.Assert.assertSame
import org.junit.Test
import java.io.InputStream
import java.text.SimpleDateFormat
import java.util.Date
import java.util.Locale
import java.util.TimeZone
class AmSatRepositoryTest {
@@ -75,6 +79,52 @@ class AmSatRepositoryTest {
assertEquals(1, remoteSource.catalogRequests)
assertEquals(1, remoteSource.reportRequests)
}
@Test
fun buildStatusesStreakCountsConsecutiveSameStatusReportsPerDay() = runTest {
val nowSec = System.currentTimeMillis() / 1000
val remoteSource = FakeAmSatRemoteSource(
reportsJson = amSatReportsJson(
// 当天(day 0)最新槽(slot 0)混合状态:最新 Heard、次新 Heard、再旧 Not Heard → 连续=2
report("r1", "AO-7", "Heard", nowSec - 3600),
report("r2", "AO-7", "Heard", nowSec - 5400),
report("r3", "AO-7", "Not Heard", nowSec - 7000),
// 空时段(无报告)不打断:slot 8 的 Heard 更旧,不应计入(被 r3 打断)
report("r4", "AO-7", "Heard", nowSec - 63000),
// 前一天(day 1):最新 Heard,更旧的 Not Heard → 连续=1,且不跨天合并
report("r5", "AO-7", "Heard", nowSec - 90000),
report("r6", "AO-7", "Not Heard", nowSec - 100000)
// day 2 无报告 → 0
)
)
val repository = AmSatRepository(remoteSource)
val page = repository.fetchStatus()
val status = page?.statuses?.single()
assertEquals("AO-7", status?.name)
assertEquals(3, status?.days?.size)
assertEquals(2, status?.days?.get(0)?.streakCount)
assertEquals(1, status?.days?.get(1)?.streakCount)
assertEquals(0, status?.days?.get(2)?.streakCount)
}
@Test
fun buildStatusesStreakCountsAllReportsWhenStatusNeverChanges() = runTest {
val nowSec = System.currentTimeMillis() / 1000
val remoteSource = FakeAmSatRemoteSource(
reportsJson = amSatReportsJson(
report("r1", "AO-7", "Heard", nowSec - 1800),
report("r2", "AO-7", "Heard", nowSec - 3600),
report("r3", "AO-7", "Heard", nowSec - 5400),
report("r4", "AO-7", "Heard", nowSec - 30000)
)
)
val repository = AmSatRepository(remoteSource)
val page = repository.fetchStatus()
assertEquals(4, page?.statuses?.single()?.days?.get(0)?.streakCount)
}
}
private fun AmSatRepository.seedStatusCache(page: SatStatusPage) {
@@ -83,7 +133,10 @@ private fun AmSatRepository.seedStatusCache(page: SatStatusPage) {
cacheField.set(this, page)
}
private class FakeAmSatRemoteSource(private val responseDelayMillis: Long = 0L) : IRemoteSource {
private class FakeAmSatRemoteSource(
private val responseDelayMillis: Long = 0L,
private val reportsJson: String = """{"data":[]}"""
) : IRemoteSource {
var catalogRequests = 0
var reportRequests = 0
@@ -100,8 +153,19 @@ private class FakeAmSatRemoteSource(private val responseDelayMillis: Long = 0L)
override suspend fun getAmSatReports(hours: Int, limit: Int): String? {
if (responseDelayMillis > 0L) delay(responseDelayMillis)
reportRequests += 1
return """{"data":[]}"""
return reportsJson
}
override suspend fun submitAmSatReport(payloadJson: String): Pair<Int, String>? = null
}
private fun amSatReportsJson(vararg reports: String): String =
"""{"data":[${reports.joinToString(",")}]}"""
private fun report(id: String, name: String, status: String, epochSec: Long): String =
"""{"id":"$id","name":"$name","callsign":"BA7OPF","report":"$status","grid_square":"OL62","reported_time":"${isoUtc(epochSec)}"}"""
private fun isoUtc(epochSec: Long): String =
SimpleDateFormat("yyyy-MM-dd'T'HH:mm:ss'Z'", Locale.US).apply {
timeZone = TimeZone.getTimeZone("UTC")
}.format(Date(epochSec * 1000))
@@ -0,0 +1,197 @@
/*
* 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.
*/
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.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.SatItem
import com.rtbishop.look4sat.core.domain.model.SatRadio
import com.rtbishop.look4sat.core.domain.predict.GeoPos
import com.rtbishop.look4sat.core.domain.predict.OrbitalData
import com.rtbishop.look4sat.core.domain.predict.OrbitalObject
import com.rtbishop.look4sat.core.domain.repository.ISelectionRepo
import com.rtbishop.look4sat.core.domain.repository.ISettingsRepo
import com.rtbishop.look4sat.core.domain.source.ILocalSource
import kotlinx.coroutines.Dispatchers
import kotlinx.coroutines.ExperimentalCoroutinesApi
import kotlinx.coroutines.flow.MutableStateFlow
import kotlinx.coroutines.flow.StateFlow
import kotlinx.coroutines.flow.first
import kotlinx.coroutines.test.runTest
import org.junit.Assert.assertEquals
import org.junit.Assert.assertTrue
import org.junit.Test
@OptIn(ExperimentalCoroutinesApi::class)
class SelectionRepoSearchTest {
private val sampleItems = listOf(
SatItem(catnum = 25544, name = "ISS (ZARYA)"),
SatItem(catnum = 7530, name = "AO-7 (AMSAT-OSCAR 7)"),
SatItem(catnum = 39444, name = "AO-73 (FUNcube-1)"),
SatItem(catnum = 43803, name = "JO-97 (BIRDS-3)"),
SatItem(catnum = 99999, name = "FO-29"),
)
@Test
fun `query without separators matches name with dashes spaces brackets`() = runTest {
val repo = createRepo(sampleItems)
repo.setQuery("ao7")
val results = repo.getEntriesFlow().first()
// "ao7" is a substring of the normalized "AO-73 (FUNcube-1)" too, so a
// fuzzy search legitimately returns both AO-7 (first) and AO-73. The
// key guarantee is that AO-7 — which was unreachable before because of
// the dashes/brackets — is now found.
assertTrue(results.map { it.catnum }.contains(7530))
assertEquals(7530, results.first().catnum)
}
@Test
fun `query without separators matches name with only dashes`() = runTest {
val repo = createRepo(sampleItems)
repo.setQuery("fo29")
val results = repo.getEntriesFlow().first()
assertEquals(listOf(99999), results.map { it.catnum })
}
@Test
fun `space-separated tokens all must match in any order`() = runTest {
val repo = createRepo(sampleItems)
repo.setQuery("zarya iss")
val results = repo.getEntriesFlow().first()
assertEquals(listOf(25544), results.map { it.catnum })
}
@Test
fun `exact name query still matches`() = runTest {
val repo = createRepo(sampleItems)
repo.setQuery("AO-7 (AMSAT-OSCAR 7)")
val results = repo.getEntriesFlow().first()
assertEquals(listOf(7530), results.map { it.catnum })
}
@Test
fun `partial token query matches substring`() = runTest {
val repo = createRepo(sampleItems)
repo.setQuery("funcube")
val results = repo.getEntriesFlow().first()
assertEquals(listOf(39444), results.map { it.catnum })
}
@Test
fun `numeric query matches catnum exactly`() = runTest {
val repo = createRepo(sampleItems)
repo.setQuery("25544")
val results = repo.getEntriesFlow().first()
assertEquals(listOf(25544), results.map { it.catnum })
}
@Test
fun `no query returns all items`() = runTest {
val repo = createRepo(sampleItems)
repo.setQuery("")
val results = repo.getEntriesFlow().first()
assertEquals(sampleItems.size, results.size)
}
@Test
fun `unmatched query returns nothing`() = runTest {
val repo = createRepo(sampleItems)
repo.setQuery("zzzznomatch")
assertTrue(repo.getEntriesFlow().first().isEmpty())
}
private fun createRepo(items: List<SatItem>): ISelectionRepo {
return SelectionRepo(
dispatcher = Dispatchers.Unconfined,
localSource = FakeLocalSourceForSearch(items),
settingsRepo = FakeSettingsRepoForSearch()
)
}
}
private class FakeLocalSourceForSearch(private val items: List<SatItem>) : ILocalSource {
override suspend fun getEntriesTotal(): Int = items.size
override suspend fun getEntriesList(): List<SatItem> = items
override suspend fun getEntriesWithIds(ids: List<Int>): List<OrbitalObject> = emptyList()
override suspend fun insertEntries(entries: List<OrbitalData>) = Unit
override suspend fun deleteEntries() = Unit
override suspend fun getIdsWithModes(modes: List<String>): List<Int> = emptyList()
override suspend fun getRadiosTotal(): Int = 0
override suspend fun getRadiosWithId(id: Int): List<SatRadio> = emptyList()
override suspend fun insertRadios(radios: List<SatRadio>, isCustom: Boolean) = Unit
override suspend fun deleteManagedRadios() = Unit
override suspend fun deleteRadios() = Unit
}
private class FakeSettingsRepoForSearch : ISettingsRepo {
override val appVersionName: String = "test"
override val selectedIds: StateFlow<List<Int>> = MutableStateFlow(emptyList())
override val selectedTypes: StateFlow<List<String>> = MutableStateFlow(emptyList())
override val passesSettings: StateFlow<PassesSettings> = MutableStateFlow(
PassesSettings(hoursAhead = 24, minElevation = 0.0, selectedModes = emptyList())
)
override val stationPosition: StateFlow<GeoPos> = MutableStateFlow(GeoPos(0.0, 0.0))
override val databaseState: MutableStateFlow<DatabaseState> = MutableStateFlow(DatabaseState(0, 0, 0L))
override val rcSettings: StateFlow<RCSettings> = MutableStateFlow(
RCSettings(false, "", "", "", false, "", "", "", 0L, false, "", "", "", false, "", "")
)
override val otherSettings: StateFlow<OtherSettings> = MutableStateFlow(
OtherSettings(
false, false, false, false, false, false, false,
shouldSeeWarning = false, shouldSeeWhatsNew = false
)
)
override val dataSourcesSettings: MutableStateFlow<DataSourcesSettings> =
MutableStateFlow(DataSourcesSettings(satelliteUrls = emptyList(), transceiversUrls = emptyList()))
override val dataSourcesStatus: StateFlow<Map<String, Int>> = MutableStateFlow(emptyMap())
override val radioControlSettings: StateFlow<RadioControlSettings> = MutableStateFlow(
RadioControlSettings(false, RadioControlSettings.MODEL_YAESU_FT817, "", "", "", "", 9600)
)
override val wavelogSettings: StateFlow<com.rtbishop.look4sat.core.domain.model.WavelogSettings> =
MutableStateFlow(com.rtbishop.look4sat.core.domain.model.WavelogSettings())
override val lotwSettings: StateFlow<com.rtbishop.look4sat.core.domain.model.LoTWSettings> =
MutableStateFlow(com.rtbishop.look4sat.core.domain.model.LoTWSettings())
override fun setSelectedIds(ids: List<Int>) = Unit
override fun setSelectedTypes(types: List<String>) = Unit
override fun setPassesSettings(settings: PassesSettings) = Unit
override fun setStationPosition(latitude: Double, longitude: Double, altitude: Double): Boolean = true
override fun setStationPosition(): Boolean = true
override fun setStationPosition(locator: String): Boolean = true
override fun getSatelliteTypesIds(types: List<String>): List<Int> = emptyList()
override fun setSatelliteTypeIds(type: String, ids: List<Int>) = Unit
override fun updateDatabaseState(state: DatabaseState) = Unit
override fun updateRCSettings(settings: RCSettings) = Unit
override fun updateOtherSettings(transform: (OtherSettings) -> OtherSettings) = Unit
override fun updateDataSourcesSettings(settings: DataSourcesSettings) = Unit
override fun updateDataSourcesStatus(status: Map<String, Int>) = Unit
override fun updateRadioControlSettings(settings: RadioControlSettings) = Unit
override fun getSatelliteOffset(catnum: Int): String = ""
override fun setSatelliteOffset(catnum: Int, offset: String) = Unit
override fun getAmSatCallsign(): String = ""
override fun setAmSatCallsign(callsign: String) = Unit
override fun updateWavelogSettings(settings: com.rtbishop.look4sat.core.domain.model.WavelogSettings) = Unit
override fun getWorkedGrids(): Set<String> = emptySet()
override fun setWorkedGrids(grids: Set<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()
override fun setRoamedGrids(grids: Set<String>) = Unit
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
}
@@ -20,7 +20,8 @@ data class SatSlot(
/** One satellite day (12 two-hour slots) */
data class SatDay(
val dateLabel: String, // "Aug 4"
val slots: List<SatSlot> // 12 槽(00-02 ... 22-24)
val slots: List<SatSlot>, // 12 槽(00-02 ... 22-24)
val streakCount: Int = 0 // 当天最近连续相同状态报告数(0 = 当天无报告)
)
/** One satellite, 3 days of state */
@@ -30,7 +30,9 @@ data class PassesSettings(
val aosStartMinute: Int = 0,
val aosEndMinute: Int = 23 * 60 + 59,
val invertAosTimeWindow: Boolean = false,
val selectedModes: List<String>
val selectedModes: List<String>,
/** 历史过境回看窗口(小时): 过境列表从 now-hoursBefore 开始计算. */
val hoursBefore: Int = 0
)
data class RCSettings(
@@ -60,11 +62,20 @@ data class OtherSettings(
val stateOfLightTheme: Boolean,
val stateOfNightMode: Boolean = false,
val stateOfMapGrid: Boolean = false,
/** Grid mode: label worked (green) cells with the FIRST callsign worked
* in that grid instead of the Maidenhead code; non-worked cells get no
* label at all. */
val stateOfMapFirstCall: Boolean = false,
val shouldSeeWarning: Boolean,
val shouldSeeWhatsNew: Boolean,
val sstvMode: String = "Auto",
val lowElevation: Double = 15.0,
val highElevation: Double = 45.0
val highElevation: Double = 45.0,
/** Independent auto-sync toggle for LoTW confirmed grids (separate from the
* ephemeris auto-update; only effective after at least one manual sync). */
val stateOfAutoLotwSync: Boolean = true,
/** 指南针手动航向偏置(度, -180..180): 雷达方位 = 传感器方位 + 磁偏角 + 该偏置. */
val compassOffsetDegrees: Float = 0f
)
data class DataSourcesSettings(
@@ -20,8 +20,19 @@ package com.rtbishop.look4sat.core.domain.repository
import com.rtbishop.look4sat.core.domain.predict.GeoPos
import kotlinx.coroutines.flow.StateFlow
/** 指南针校准精度等级, 由磁场传感器 accuracy 事件映射而来. */
enum class CompassAccuracy {
UNAVAILABLE,
UNRELIABLE,
LOW,
MEDIUM,
HIGH
}
interface ISensorsRepo {
val sensorData: StateFlow<Pair<Float, Float>>
/** 指南针当前校准精度 (磁场传感器 accuracy), 用于校准对话框进度. */
val compassAccuracy: StateFlow<CompassAccuracy>
fun getMagDeclination(geoPos: GeoPos, time: Long = System.currentTimeMillis()): Float
fun enableSensor()
fun disableSensor()
@@ -0,0 +1,169 @@
/*
* 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
import com.rtbishop.look4sat.core.domain.model.GridQso
import kotlinx.coroutines.Dispatchers
import kotlinx.coroutines.withContext
import java.text.SimpleDateFormat
import java.util.Date
import java.util.Locale
import java.util.TimeZone
/**
* Shared LoTW sync orchestration used by BOTH the manual sync (settings screen)
* and the automatic sync on app start (MainApplication), so the two paths can
* never drift apart:
*
* - [LoTWSyncMode.Incremental] pulls only the confirmations since the last sync
* and MERGES them into the stored grids/QSOs (grids only grow; QSO detail is
* deduped by call + QSO time).
* - [LoTWSyncMode.Full] pulls everything and REPLACES the stored data.
*/
/**
* UTC date ("yyyyMMdd") of the given instant — the "already synced today"
* gate granularity.
*/
fun lotwSyncToday(now: Long = System.currentTimeMillis()): String =
SimpleDateFormat("yyyyMMdd", Locale.US)
.apply { timeZone = TimeZone.getTimeZone("UTC") }
.format(Date(now))
/**
* Full UTC timestamp cursor ("yyyy-MM-dd HH:mm:ss") written after a
* successful sync. This is exactly the format LoTW's qso_qslsince accepts
* (measured live 2026-09-17: the legacy "yyyyMMdd" cursor is silently
* ignored by LoTW, which falls back to its own system-supplied default),
* and it keeps enough precision to display the last-sync time like the
* ephemeris update time.
*/
fun lotwSyncCursor(now: Long = System.currentTimeMillis()): String =
SimpleDateFormat("yyyy-MM-dd HH:mm:ss", Locale.US)
.apply { timeZone = TimeZone.getTimeZone("UTC") }
.format(Date(now))
/** Date part of a stored cursor as "yyyyMMdd", tolerating the legacy
* "yyyyMMdd" format and the current "yyyy-MM-dd HH:mm:ss" format. */
fun lotwCursorDate(cursor: String): String = when {
cursor.length >= 10 && cursor[4] == '-' -> cursor.substring(0, 10).replace("-", "")
else -> cursor.take(8)
}
/** qso_qslsince value for the API: passes the full timestamp through and
* normalizes a legacy "yyyyMMdd" cursor to the documented "yyyy-MM-dd". */
fun lotwCursorApi(cursor: String): String = when {
cursor.isBlank() -> ""
cursor.length >= 10 && cursor[4] == '-' -> cursor
else -> "${cursor.take(4)}-${cursor.substring(4, 6)}-${cursor.substring(6, 8)}"
}
/** Stored cursor parsed to UTC epoch ms for display; 0 when unparseable. */
fun lotwCursorEpochMs(cursor: String): Long = try {
val pattern = if (cursor.length >= 10 && cursor[4] == '-') "yyyy-MM-dd HH:mm:ss" else "yyyyMMdd"
SimpleDateFormat(pattern, Locale.US)
.apply { timeZone = TimeZone.getTimeZone("UTC") }
.parse(cursor)?.time ?: 0L
} catch (_: Exception) {
0L
}
/**
* Resolves the effective sync mode for a given request:
* - an explicit [LoTWSyncMode.Full] request is always honored;
* - an [LoTWSyncMode.Incremental] request is honored only when the callsign
* matches the last sync — a first sync, an unknown/empty record or a
* callsign change falls back to [LoTWSyncMode.Full] so no stale grids from
* another account linger.
* With [requested] == null (automatic sync) it picks incremental whenever
* possible and full otherwise.
*/
fun resolveLoTWSyncMode(
lastSyncCallsign: String,
callsign: String,
requested: LoTWSyncMode?
): LoTWSyncMode {
if (requested == LoTWSyncMode.Full) return LoTWSyncMode.Full
val sameCall = lastSyncCallsign.isNotBlank() && lastSyncCallsign == callsign
return if (sameCall) LoTWSyncMode.Incremental else LoTWSyncMode.Full
}
/**
* Whether the automatic LoTW sync should run now — mirrors the ephemeris
* auto-update check: credentials configured, the LoTW auto-sync toggle on, at
* least one prior manual sync (the first sync stays manual/full), and not
* already synced today (ARRL limits report pulls, ~once a day per account).
*/
fun shouldAutoSyncLoTW(
isConfigured: Boolean,
autoLotwSyncEnabled: Boolean,
lastSyncDate: String,
today: String
): Boolean {
val lastDate = lotwCursorDate(lastSyncDate)
return isConfigured && autoLotwSyncEnabled && lastDate.isNotBlank() && lastDate != today
}
/**
* Applies a successful LoTW report to the stored grid data and advances the
* sync cursor so the next incremental pull asks LoTW for only the
* confirmations since today. Persistence runs on the IO dispatcher — building
* the per-grid QSO JSON and writing SharedPreferences blocks the calling
* thread, and for large accounts (multi-MB JSON) that froze the main thread
* after a manual sync ('bar done but app stuck').
*
* @return the resulting number of worked grids.
*/
suspend fun applyLoTWGridResult(
settingsRepo: ISettingsRepo,
result: LoTWResult.Success,
mode: LoTWSyncMode,
callsign: String,
now: Long = System.currentTimeMillis()
): Int {
val existingGrids = settingsRepo.getWorkedGrids()
val existingQsos = settingsRepo.getWorkedGridQsos()
val existingRoamed = settingsRepo.getRoamedGrids()
val mergedGrids = if (mode == LoTWSyncMode.Incremental) existingGrids + result.grids else result.grids
val mergedQsos = if (mode == LoTWSyncMode.Incremental) mergeGridQsos(existingQsos, result.qsos) else result.qsos
val mergedRoamed = if (mode == LoTWSyncMode.Incremental) existingRoamed + result.roamedGrids else result.roamedGrids
settingsRepo.setLastLotwSyncDate(lotwSyncCursor(now))
settingsRepo.setLastLotwSyncCallsign(callsign)
withContext(Dispatchers.IO) {
settingsRepo.setWorkedGrids(mergedGrids)
settingsRepo.setWorkedGridQsos(mergedQsos)
settingsRepo.setRoamedGrids(mergedRoamed)
}
return mergedGrids.size
}
/** Merge fresh QSO detail into existing per-grid lists, dedup by call + QSO time. */
fun mergeGridQsos(
existing: Map<String, List<GridQso>>,
fresh: Map<String, List<GridQso>>
): Map<String, List<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
}
@@ -46,3 +46,6 @@ sealed class LoTWResult {
/** Any other network-level failure (DNS, TLS, connection reset, HTTP 5xx). */
data class NetworkError(val detail: String) : LoTWResult()
}
/** What a LoTW sync does: pull everything, or only new QSLs since the last sync. */
enum class LoTWSyncMode { Full, Incremental }
@@ -0,0 +1,290 @@
/*
* 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
import com.rtbishop.look4sat.core.domain.model.DatabaseState
import com.rtbishop.look4sat.core.domain.model.DataSourcesSettings
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.WavelogSettings
import com.rtbishop.look4sat.core.domain.predict.GeoPos
import kotlinx.coroutines.flow.MutableStateFlow
import kotlinx.coroutines.flow.StateFlow
import kotlinx.coroutines.runBlocking
import org.junit.Assert.assertEquals
import org.junit.Assert.assertFalse
import org.junit.Assert.assertTrue
import org.junit.Test
class LoTWGridSyncTest {
// 2026-09-16T00:00:00Z — fixed "now" for the cursor assertions.
private val now = 1_789_516_800_000L
// region resolveLoTWSyncMode
@Test
fun resolveModeHonorsExplicitFull() {
assertEquals(LoTWSyncMode.Full, resolveLoTWSyncMode("BA7OPF", "BA7OPF", LoTWSyncMode.Full))
assertEquals(LoTWSyncMode.Full, resolveLoTWSyncMode("", "BA7OPF", LoTWSyncMode.Full))
}
@Test
fun resolveModeAllowsIncrementalOnlyForSameCallsign() {
assertEquals(
LoTWSyncMode.Incremental,
resolveLoTWSyncMode("BA7OPF", "BA7OPF", LoTWSyncMode.Incremental)
)
assertEquals(
LoTWSyncMode.Full,
resolveLoTWSyncMode("BG7ABC", "BA7OPF", LoTWSyncMode.Incremental)
)
assertEquals(
LoTWSyncMode.Full,
resolveLoTWSyncMode("", "BA7OPF", LoTWSyncMode.Incremental)
)
}
@Test
fun resolveModeForAutoSyncPicksIncrementalWhenPossible() {
assertEquals(LoTWSyncMode.Incremental, resolveLoTWSyncMode("BA7OPF", "BA7OPF", null))
assertEquals(LoTWSyncMode.Full, resolveLoTWSyncMode("BG7ABC", "BA7OPF", null))
assertEquals(LoTWSyncMode.Full, resolveLoTWSyncMode("", "BA7OPF", null))
}
// endregion
// region shouldAutoSyncLoTW
@Test
fun autoSyncGateRequiresEverything() {
val today = "20260916"
// Not configured.
assertFalse(shouldAutoSyncLoTW(false, true, "2026-09-15 10:00:00", today))
// LoTW auto-sync toggle off.
assertFalse(shouldAutoSyncLoTW(true, false, "2026-09-15 10:00:00", today))
// Never synced manually — first sync stays manual/full.
assertFalse(shouldAutoSyncLoTW(true, true, "", today))
// Already synced today (both legacy and current cursor formats) — ARRL rate-limit guard.
assertFalse(shouldAutoSyncLoTW(true, true, "20260916", today))
assertFalse(shouldAutoSyncLoTW(true, true, "2026-09-16 08:00:00", today))
// All gates open — yesterday in either format.
assertTrue(shouldAutoSyncLoTW(true, true, "20260915", today))
assertTrue(shouldAutoSyncLoTW(true, true, "2026-09-15 10:00:00", today))
}
// endregion
// region cursor helpers
@Test
fun cursorApiNormalizesLegacyAndPassesFullThrough() {
assertEquals("2026-09-16", lotwCursorApi("20260916"))
assertEquals("2026-09-16 08:16:02", lotwCursorApi("2026-09-16 08:16:02"))
assertEquals("", lotwCursorApi(""))
}
@Test
fun cursorDateToleratesBothFormats() {
assertEquals("20260916", lotwCursorDate("20260916"))
assertEquals("20260916", lotwCursorDate("2026-09-16 08:16:02"))
assertEquals("", lotwCursorDate(""))
}
@Test
fun cursorEpochMsParsesBothFormatsUtc() {
// 2026-09-16T00:00:00Z in both spellings.
assertEquals(now, lotwCursorEpochMs("20260916"))
assertEquals(now, lotwCursorEpochMs("2026-09-16 00:00:00"))
assertEquals(0L, lotwCursorEpochMs(""))
assertEquals(0L, lotwCursorEpochMs("garbage"))
}
// endregion
// region mergeGridQsos
@Test
fun mergeGridQsosDedupsByCallAndTime() {
val existing = mapOf(
"OL62" to listOf(qso("BA7ABC", 1000L)),
"OL63" to listOf(qso("BA7DEF", 2000L))
)
val fresh = mapOf(
// Same grid, same QSO re-delivered by an overlapping since-date.
"OL62" to listOf(qso("BA7ABC", 1000L)),
// Same grid, brand-new QSO.
"OL62" to listOf(qso("BA7GHI", 3000L)),
// New grid entirely.
"PM95" to listOf(qso("BA7JKL", 4000L))
)
val merged = mergeGridQsos(existing, fresh)
assertEquals(setOf("OL62", "OL63", "PM95"), merged.keys)
assertEquals(2, merged["OL62"]?.size) // BA7ABC once, BA7GHI added
assertEquals(1, merged["OL63"]?.size)
assertEquals(1, merged["PM95"]?.size)
}
@Test
fun mergeGridQsosHandlesEmptySides() {
val fresh = mapOf("OL62" to listOf(qso("BA7ABC", 1000L)))
assertEquals(fresh, mergeGridQsos(emptyMap(), fresh))
// An empty incremental pull must leave the stored side untouched.
assertEquals(fresh, mergeGridQsos(fresh, emptyMap()))
assertEquals(emptyMap<String, List<GridQso>>(), mergeGridQsos(emptyMap(), emptyMap()))
}
// endregion
// region applyLoTWGridResult
@Test
fun applyIncrementalMergesAndAdvancesCursor() = runBlocking {
val repo = FakeSettingsRepo().apply {
setWorkedGrids(setOf("OL62"))
setWorkedGridQsos(mapOf("OL62" to listOf(qso("BA7ABC", 1000L))))
setRoamedGrids(setOf("OL62"))
setLastLotwSyncDate("20260915")
setLastLotwSyncCallsign("BA7OPF")
}
val result = LoTWResult.Success(
grids = setOf("OL62", "PM95"),
qsos = mapOf("OL62" to listOf(qso("BA7ABC", 1000L)), "PM95" to listOf(qso("BA7GHI", 2000L))),
roamedGrids = setOf("PM95")
)
val count = applyLoTWGridResult(repo, result, LoTWSyncMode.Incremental, "BA7OPF", now)
assertEquals(2, count)
assertEquals(setOf("OL62", "PM95"), repo.getWorkedGrids())
assertEquals(1, repo.getWorkedGridQsos()["OL62"]?.size) // deduped
assertEquals(setOf("OL62", "PM95"), repo.getRoamedGrids())
assertEquals("2026-09-16 00:00:00", repo.getLastLotwSyncDate())
assertEquals("BA7OPF", repo.getLastLotwSyncCallsign())
}
@Test
fun applyFullReplacesEverythingAndAdvancesCursor() = runBlocking {
val repo = FakeSettingsRepo().apply {
setWorkedGrids(setOf("OL62", "STALE"))
setWorkedGridQsos(mapOf("STALE" to listOf(qso("BG7OLD", 1L))))
setRoamedGrids(setOf("STALE"))
setLastLotwSyncDate("20260910")
setLastLotwSyncCallsign("BG7OLD")
}
val result = LoTWResult.Success(
grids = setOf("PM95"),
qsos = mapOf("PM95" to listOf(qso("BA7GHI", 2000L))),
roamedGrids = setOf("PM95")
)
val count = applyLoTWGridResult(repo, result, LoTWSyncMode.Full, "BA7OPF", now)
assertEquals(1, count)
assertEquals(setOf("PM95"), repo.getWorkedGrids())
assertEquals(setOf("PM95"), repo.getWorkedGridQsos().keys)
assertEquals(setOf("PM95"), repo.getRoamedGrids())
assertEquals("2026-09-16 00:00:00", repo.getLastLotwSyncDate())
assertEquals("BA7OPF", repo.getLastLotwSyncCallsign())
}
// endregion
private fun qso(call: String, epochMs: Long): GridQso =
GridQso(call, epochMs, "FO-29", "FM", "70CM", "2M")
/**
* Minimal ISettingsRepo fake backing only the LoTW sync surface; the rest
* throws (mirrors the FakeSettingsRepo pattern used in feature tests).
*/
private class FakeSettingsRepo : ISettingsRepo {
override val stationPosition: StateFlow<GeoPos> = MutableStateFlow(GeoPos(23.13, 113.26))
override val appVersionName: String = "test"
override val selectedIds: StateFlow<List<Int>> = MutableStateFlow(emptyList())
override val selectedTypes: StateFlow<List<String>> = MutableStateFlow(emptyList())
override val passesSettings: StateFlow<PassesSettings> = MutableStateFlow(
PassesSettings(hoursAhead = 24, minElevation = 10.0, selectedModes = emptyList())
)
override val databaseState: StateFlow<DatabaseState> = MutableStateFlow(DatabaseState(0, 0, 0L))
override val rcSettings: StateFlow<RCSettings> = MutableStateFlow(
RCSettings(false, "", "", "", false, "", "", "", 0L, false, "", "", "", false, "", "")
)
override val otherSettings: StateFlow<OtherSettings> = MutableStateFlow(
OtherSettings(
stateOfAutoUpdate = true,
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())
)
override val dataSourcesStatus: StateFlow<Map<String, Int>> = MutableStateFlow(emptyMap())
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())
private var workedGrids: Set<String> = emptySet()
private var workedGridQsos: Map<String, List<GridQso>> = emptyMap()
private var roamedGrids: Set<String> = emptySet()
private var lastSyncDate: String = ""
private var lastSyncCallsign: String = ""
override fun getWorkedGrids(): Set<String> = workedGrids
override fun setWorkedGrids(grids: Set<String>) { workedGrids = grids }
override fun getWorkedGridQsos(): Map<String, List<GridQso>> = workedGridQsos
override fun setWorkedGridQsos(qsos: Map<String, List<GridQso>>) { workedGridQsos = qsos }
override fun getRoamedGrids(): Set<String> = roamedGrids
override fun setRoamedGrids(grids: Set<String>) { roamedGrids = grids }
override fun getLastLotwSyncDate(): String = lastSyncDate
override fun setLastLotwSyncDate(date: String) { lastSyncDate = date }
override fun getLastLotwSyncCallsign(): String = lastSyncCallsign
override fun setLastLotwSyncCallsign(callsign: String) { lastSyncCallsign = callsign }
override fun setSelectedIds(ids: List<Int>) = TODO()
override fun setSelectedTypes(types: List<String>) = TODO()
override fun setPassesSettings(settings: PassesSettings) = TODO()
override fun setStationPosition(latitude: Double, longitude: Double, altitude: Double): Boolean = TODO()
override fun setStationPosition(): Boolean = TODO()
override fun setStationPosition(locator: String): Boolean = TODO()
override fun getSatelliteTypesIds(types: List<String>): List<Int> = TODO()
override fun setSatelliteTypeIds(type: String, ids: List<Int>) = TODO()
override fun updateDatabaseState(state: DatabaseState) = TODO()
override fun updateRCSettings(settings: RCSettings) = TODO()
override fun updateOtherSettings(transform: (OtherSettings) -> OtherSettings) = TODO()
override fun updateDataSourcesSettings(settings: DataSourcesSettings) = TODO()
override fun updateDataSourcesStatus(status: Map<String, Int>) = TODO()
override fun updateRadioControlSettings(settings: RadioControlSettings) = TODO()
override fun getSatelliteOffset(catnum: Int): String = ""
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 updateLoTWSettings(settings: LoTWSettings) = TODO()
}
}
@@ -32,6 +32,7 @@
<string name="pass_filter_title">Filtrar pases</string>
<string name="pass_filter_elev">Elevación mínima</string>
<string name="pass_filter_hours">Tiempo por delante</string>
<string name="pass_filter_history_hours">Tiempo anterior</string>
<string name="pass_filter_aos_time">Ventana AOS</string>
<string name="pass_filter_invert_time">Invertir ventana AOS</string>
<string name="pass_filter_deep_space">DeepSpace (período &gt;225min)</string>
@@ -147,6 +148,7 @@
<string name="prefs_other_title">Otros ajustes</string>
<string name="prefs_other_switch_utc">Mostrar tiempos de pase en UTC</string>
<string name="prefs_other_switch_update">Habilitar auto actualización de datos</string>
<string name="prefs_other_switch_lotw_sync">Sincronizar automáticamente las cuadrículas LoTW confirmadas</string>
<string name="prefs_other_switch_sweep">Habilitar animaciones radar</string>
<string name="prefs_other_switch_sensors">Usar sensores para rotar vista de radar</string>
<string name="prefs_other_switch_night_mode">Activar filtro nocturno rojo</string>
@@ -31,6 +31,7 @@
<string name="pass_filter_title">Фильтровать пролеты</string>
<string name="pass_filter_elev">Минимальная элевация</string>
<string name="pass_filter_hours">Период расчёта</string>
<string name="pass_filter_history_hours">Прошедший период</string>
<string name="pass_filter_aos_time">Окно AOS</string>
<string name="pass_filter_invert_time">Инвертировать окно AOS</string>
<string name="pass_filter_deep_space">DeepSpace (период &gt;225мин)</string>
@@ -146,6 +147,7 @@
<string name="prefs_other_title">Другие настройки</string>
<string name="prefs_other_switch_utc">Показывать время по UTC</string>
<string name="prefs_other_switch_update">Обновлять данные автоматически</string>
<string name="prefs_other_switch_lotw_sync">Автосинхронизация подтверждённых сеток LoTW</string>
<string name="prefs_other_switch_sweep">Показывать анимацию радара</string>
<string name="prefs_other_switch_sensors">Использовать сенсоры устройства</string>
<string name="prefs_other_switch_night_mode">Включить красный ночной фильтр</string>
@@ -32,6 +32,7 @@
<string name="pass_filter_title">පසුකිරිම් පිරිපහදුව</string>
<string name="pass_filter_elev">අවම උත්තෝලනය</string>
<string name="pass_filter_hours">ඉදිරි කාලය</string>
<string name="pass_filter_history_hours">පෙර කාලය</string>
<string name="pass_filter_aos_time">AOS කවුළුව</string>
<string name="pass_filter_invert_time">AOS කවුළුව ප්‍රතිවිරුද්ධ කරන්න</string>
<string name="pass_filter_deep_space">DeepSpace (කාලය &gt;225min)</string>
@@ -70,7 +71,7 @@
<string name="map_next">ඊළග</string>
<string name="map_azimuth">දිගංශය: %.1f°</string>
<string name="map_elevation">උත්තෝලනය: %.1f°</string>
<string name="map_altitude">උන්නතාශය: %.0f km</string>,
<string name="map_altitude">උන්නතාශය: %.0f km</string>
<string name="map_distance">පරතරය: %.0f km</string>
<string name="map_latitude">අක්‍ෂාංශ: %.1f°</string>
<string name="map_longitude">දේශාංශ: %.1f°</string>
@@ -147,6 +148,7 @@
<string name="prefs_other_title">වෙනත් සැකසුම්</string>
<string name="prefs_other_switch_utc">පසුකර වේලාවන් UTC මගින්</string>
<string name="prefs_other_switch_update">ස්වයං දත්ත යාවත්කාලීනය</string>
<string name="prefs_other_switch_lotw_sync">LoTW තහවුරු කළ ජාල ස්වයං සමමුහුර්තකරණය</string>
<string name="prefs_other_switch_sweep">radar sweep සජීවිකරණය සබල කරන්න</string>
<string name="prefs_other_switch_sensors">Radar දර්ශනය කරකැවීමට සංවේදක භාවිතා කරන්න </string>
<string name="prefs_other_switch_night_mode">රතු රාත්‍රී පෙරහන සබල කරන්න</string>
@@ -32,6 +32,7 @@
<string name="pass_filter_title">Geçişleri filtrele</string>
<string name="pass_filter_elev">Minimum yükseklik açısı</string>
<string name="pass_filter_hours">Gösterilecek zaman</string>
<string name="pass_filter_history_hours">Geçmiş süre</string>
<string name="pass_filter_aos_time">AOS aralığı</string>
<string name="pass_filter_invert_time">AOS aralığını tersine çevir</string>
<string name="pass_filter_deep_space">DeepSpace (periyot &gt;225dk)</string>
@@ -189,6 +190,7 @@
<string name="prefs_other_title">Diğer ayarlar</string>
<string name="prefs_other_switch_utc">Geçiş saatini UTC olarak göster</string>
<string name="prefs_other_switch_update">Otomatik veri güncellemeyi etkinleştir</string>
<string name="prefs_other_switch_lotw_sync">LoTW onaylı kareleri otomatik senkronize et</string>
<string name="prefs_other_switch_sweep">Radar taramasını etkinleştir</string>
<string name="prefs_other_switch_sensors">Radar görünümünü döndürmek için sensörleri kullan</string>
<string name="prefs_other_switch_night_mode">Kırmızı gece filtresini etkinleştir</string>
@@ -207,7 +209,7 @@
\n• Alexandru Csete (Gpredict)
\n• Dr T.S. Kelso (Celestrak)
\n• Libre Space Foundation (SatNOGS)
\n• BG7NTA (CW decoding feature)</string>
\n• BG7NTA BG5JSU (CW decoding feature)</string>
<string name="prefs_outro_license">Bu uygulama herhangi bir garanti sunmaz</string>
</resources>
@@ -32,6 +32,7 @@
<string name="pass_filter_title">Фільтр прольотів</string>
<string name="pass_filter_elev">Мінімальне піднесень</string>
<string name="pass_filter_hours">Час вперед</string>
<string name="pass_filter_history_hours">Час назад</string>
<string name="pass_filter_aos_time">Вікно AOS</string>
<string name="pass_filter_invert_time">Інвертувати вікно AOS</string>
<string name="pass_filter_deep_space">DeepSpace (період &gt;225хв)</string>
@@ -147,6 +148,7 @@
<string name="prefs_other_title">Інші налаштування</string>
<string name="prefs_other_switch_utc">Показувати час в UTC</string>
<string name="prefs_other_switch_update">Автоматичне оновлення даних</string>
<string name="prefs_other_switch_lotw_sync">Автосинхронізація підтверджених сіток LoTW</string>
<string name="prefs_other_switch_sweep">Показувати анімацію радара</string>
<string name="prefs_other_switch_sensors">Використовувати сенсори пристрою</string>
<string name="prefs_other_switch_night_mode">Увімкнути червоний нічний фільтр</string>
@@ -28,6 +28,7 @@
<string name="pass_filter_title">筛选过境</string>
<string name="pass_filter_elev">仰角值</string>
<string name="pass_filter_hours">提前时间</string>
<string name="pass_filter_history_hours">历史过境时间</string>
<string name="pass_filter_aos_time">AOS 时间段</string>
<string name="pass_filter_invert_time">反选 AOS 时间段</string>
<string name="pass_filter_deep_space">DeepSpace(周期 &gt;225分钟)</string>
@@ -40,7 +41,9 @@
<string name="pass_welcome_message">请务必在设置中通过GPS、经纬度或QTH定位您的位置\n建议至少每周更新一次数据库,以确保预测结果的准确性</string>
<!-- AMSAT Status screen -->
<string name="nav_amsat">AMSAT</string>
<string name="pass_whatsnew_message">4.4.6 以来的全部更新(4.4.7 系列):\n\n• 网格模式地图:LoTW 已确认网格绿色填充、漫游网格蓝色条纹、当前网格加粗框;右上角网格/卫星模式开关。\n\n• 首通呼号(VUCC 视图):绿格显示该格最早通联的呼号,非绿格空白。\n\n• worked 网格可按操作网格筛选(含“全部”);点击网格弹出 QSO 明细;每格 QSO 计数。\n\n• 各操作网格独立 VUCC 计数;极区网格标签;反经线修复;漫游条纹密度一致。\n\n• WAPC/WAJA 地图标签随系统语言。\n\n• 网格模式视口与筛选跨页保持。\n\n• LoTW 同步:账号直连、全量/增量模式、实时进度、可取消、启动自动同步(独立开关)、设置页显示上次同步时间。\n\n• 历史过境:过境筛选可回看过去数小时(历史过境时间)。\n\n• 指南针校准:8 字动作精度指示 + 手动航向偏置。\n\n• AMSAT 状态页:连续相同状态报告计数。\n\n• 过境/雷达:UTC 切换重算过境;日出日落与仰角颜色修复;卫星模糊搜索;相互过境页滚动保持、跟随 UTC、雷达快捷入口。\n\n• CW 解码器支持 32/64 位设备;Android 17 (API 37) 适配。</string>
<string name="nav_amsat">AMSAT</string>
<string name="amsat_title">AMSAT 卫星状态</string>
<string name="amsat_refresh">刷新</string>
<string name="amsat_retry">重试</string>
@@ -109,6 +112,7 @@
<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_first_call_mode">首通呼号</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>
@@ -121,7 +125,7 @@
<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_calls_count" formatted="false">%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>
@@ -133,7 +137,7 @@
<string name="prefs_privacy_title">隐私政策</string>
<string name="prefs_updated_title">更新:%s</string>
<string name="prefs_updated_time">yyyy MMM d - HH:mm:ss</string>
<string name="prefs_updated_time">yyyy年M月d日 HH:mm:ss</string>
<string name="prefs_loc_title">站点位置</string>
<string name="prefs_loc_gps_title">GPS 定位</string>
@@ -237,8 +241,22 @@
<string name="prefs_other_title">其他设置</string>
<string name="prefs_other_switch_utc">以 UTC 时间显示</string>
<string name="prefs_other_switch_update">启用卫星数据自动更新</string>
<string name="prefs_other_switch_lotw_sync">自动同步 LoTW 已确认网格</string>
<string name="prefs_other_switch_sweep">启用雷达扫描动画</string>
<string name="prefs_other_switch_sensors">使用传感器旋转雷达视图</string>
<string name="prefs_compass_calibration_button">校准指南针</string>
<string name="prefs_compass_calibration_title">指南针校准</string>
<string name="prefs_compass_calibration_instruction">缓慢移动手机画“8”字,直到精度提高。请远离磁铁和金属物体。</string>
<string name="prefs_compass_accuracy">精度:%s</string>
<string name="prefs_compass_accuracy_high">高——校准完成</string>
<string name="prefs_compass_accuracy_medium">中——请继续移动</string>
<string name="prefs_compass_accuracy_low">低——请继续移动</string>
<string name="prefs_compass_accuracy_unreliable">不可靠——请开始“8”字动作</string>
<string name="prefs_compass_accuracy_unavailable">设备没有可用的磁场传感器</string>
<string name="prefs_compass_heading">校正后航向:%.1f°</string>
<string name="prefs_compass_offset">手动航向偏置(°)</string>
<string name="prefs_compass_offset_support">范围 −180° 至 +180°;正值为顺时针偏移。</string>
<string name="prefs_compass_offset_reset">偏置归零</string>
<string name="prefs_other_switch_night_mode">启用红色夜间模式</string>
<string name="prefs_other_switch_map_grid">地图显示 Maidenhead 网格</string>
@@ -256,7 +274,7 @@
\n• Dr T.S. Kelso (Celestrak)
\n• Libre Space Foundation (SatNOGS)
\n• xdsopl 和 Robot36 贡献者!
\n• BG7NTA(CW解码功能)</string>
\n• BG7NTA BG5JSU(CW解码功能)</string>
<string name="prefs_outro_license">该应用程序不提供任何保修.</string>
<!-- 匹配页 Mutual match page -->
@@ -33,6 +33,7 @@
<string name="pass_filter_title">Filter passes</string>
<string name="pass_filter_elev">Minimal elevation</string>
<string name="pass_filter_hours">Time ahead</string>
<string name="pass_filter_history_hours">Time before</string>
<string name="pass_filter_aos_time">AOS window</string>
<string name="pass_filter_invert_time">Invert AOS window</string>
<string name="pass_filter_deep_space">DeepSpace (period >225min)</string>
@@ -51,10 +52,7 @@
Make sure to set your position via GPS, Lat/Lon or QTH in Settings.
\n\nPlease update the database at least weekly to get accurate predictions.</string>
<string name="pass_whatsnew_title" translatable="false">What\'s new in Look4Sat</string>
<string name="pass_whatsnew_message" translatable="false">
* Added required tweaks to support Android 17 (API 37)
\n\n* Added ACCESS_LOCAL_NETWORK permission check to support network data output
</string>
<string name="pass_whatsnew_message">All changes since 4.4.6 (the 4.4.7 series):\n\n• Grid-mode map: LoTW confirmed grids in green, roamed grids with blue stripes, current grid highlighted; mode switch pill at the map\'s top-right.\n\n• First-call labels (VUCC view): show the first callsign worked in each green grid instead of the grid code; non-worked cells stay empty.\n\n• Worked grids filtered by operated grid (with an All option); tap a grid to see its QSO detail dialog; per-grid QSO counts.\n\n• Per-operated-grid VUCC counting; polar grid labels; antimeridian fixes; consistent roamed-stripe density.\n\n• WAPC/WAJA map labels follow the system language.\n\n• Grid-mode viewport and award filter survive page switches.\n\n• LoTW sync: direct login, full/incremental modes, live progress, cancel button, auto-sync on app start with its own toggle, last-sync time shown.\n\n• Pass history: filter can look back over past passes (Time before).\n\n• Compass calibration: figure-eight accuracy meter plus manual heading offset.\n\n• AMSAT status page: consecutive same-status report counts.\n\n• Passes/radar: UTC toggle recalculates passes; sunrise/sunset and elevation color fixes; satellite fuzzy search; mutual page keeps scroll, follows UTC, radar shortcut.\n\n• CW decoder for 32/64-bit devices; Android 17 (API 37) support.</string>
<!-- AMSAT Status screen -->
<string name="nav_amsat">AMSAT</string>
@@ -133,6 +131,7 @@
<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_first_call_mode">First call</string>
<string name="map_azimuth">Azimuth: %.1f°</string>
<string name="map_elevation">Elevation: %.1f°</string>
<string name="map_altitude">Altitude: %.0f km</string>
@@ -146,7 +145,7 @@
<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_calls_count" formatted="false">%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>
@@ -271,8 +270,22 @@
<string name="prefs_other_title">Other settings</string>
<string name="prefs_other_switch_utc">Show pass time in UTC</string>
<string name="prefs_other_switch_update">Enable automatic data update</string>
<string name="prefs_other_switch_lotw_sync">Auto-sync LoTW confirmed grids</string>
<string name="prefs_other_switch_sweep">Enable radar sweep animation</string>
<string name="prefs_other_switch_sensors">Use sensors to rotate radar view</string>
<string name="prefs_compass_calibration_button">Calibrate compass</string>
<string name="prefs_compass_calibration_title">Compass calibration</string>
<string name="prefs_compass_calibration_instruction">Move the phone slowly in a figure-eight until accuracy improves. Keep it away from magnets and metal.</string>
<string name="prefs_compass_accuracy">Accuracy: %s</string>
<string name="prefs_compass_accuracy_high">High — calibration complete</string>
<string name="prefs_compass_accuracy_medium">Medium — keep moving</string>
<string name="prefs_compass_accuracy_low">Low — keep moving</string>
<string name="prefs_compass_accuracy_unreliable">Unreliable — start the figure-eight motion</string>
<string name="prefs_compass_accuracy_unavailable">Magnetic sensor unavailable</string>
<string name="prefs_compass_heading">Corrected heading: %.1f°</string>
<string name="prefs_compass_offset">Manual heading offset (°)</string>
<string name="prefs_compass_offset_support">Range −180° to +180°. Positive values rotate clockwise.</string>
<string name="prefs_compass_offset_reset">Reset offset</string>
<string name="prefs_other_switch_night_mode">Enable red night mode filter</string>
<string name="prefs_other_switch_map_grid">Show Maidenhead grid on map</string>
@@ -290,7 +303,7 @@
\n* Dr T.S. Kelso (Celestrak)
\n* Libre Space Foundation (SatNOGS)
\n* xdsopl and Robot36 contributors!
\n* BG7NTA (CW decoding feature)
\n* BG7NTA BG5JSU (CW decoding feature)
</string>
<string name="prefs_outro_license">The app comes with no warranty</string>
@@ -46,12 +46,20 @@ class MaidenheadGridOverlay : Overlay() {
style = Paint.Style.STROKE
color = Color.argb(160, 255, 224, 130)
}
// 网格标签与首通呼号标签同字号 (用户要求 2026-09-21: 字体一样大)
private val labelPaint = Paint(Paint.ANTI_ALIAS_FLAG).apply {
textSize = 26f
textSize = LABEL_TEXT_SIZE
style = android.graphics.Paint.Style.FILL
color = Color.argb(220, 255, 224, 130)
setShadowLayer(3f, 2f, 2f, Color.BLACK)
}
// 首通呼号标签: 与网格标签同字号.
private val firstCallPaint = Paint(Paint.ANTI_ALIAS_FLAG).apply {
textSize = LABEL_TEXT_SIZE
style = android.graphics.Paint.Style.FILL
color = Color.argb(230, 255, 224, 130)
setShadowLayer(3f, 2f, 2f, Color.BLACK)
}
private val workedPaint = Paint(Paint.ANTI_ALIAS_FLAG).apply {
style = android.graphics.Paint.Style.FILL
color = Color.argb(90, 76, 217, 100)
@@ -79,6 +87,15 @@ class MaidenheadGridOverlay : Overlay() {
/** Worked gridsquares (4-char, uppercase) to highlight, e.g. {"OL62", "PM95"}. */
var workedGrids: Set<String> = emptySet()
/** Grid-mode first-call labels: label worked (green) cells with the first
* callsign worked in that grid instead of the Maidenhead code; non-worked
* cells get no label at all. Only meaningful at sub-square zoom. */
var showFirstCallLabels: Boolean = false
/** Worked grid -> first callsign worked in it (earliest QSO by time).
* Only read when [showFirstCallLabels] is on. */
var firstCallsByGrid: Map<String, String> = emptyMap()
/**
* Gridsquares the station operated from (4-char, uppercase) — drawn with
* blue 45° stripes (GridMaster-style zebra), e.g. {"OL62", "PM95"}.
@@ -346,9 +363,15 @@ class MaidenheadGridOverlay : Overlay() {
// Labels: centered in each cell, only when the cell is large enough on
// 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
// size check below; sub-square (4-char) labels appear together with the
// grid LINES at GRID_ZOOM_SUB (user req 2026-09-21: 与首通呼号同一显示缩放).
// First-call labels replace the 4-char grid codes and only exist at
// sub-square zoom; at field zoom NO labels are drawn at all (the user
// requirement is that non-worked cells carry no grid characters).
if (showFirstCallLabels && zoom < GRID_ZOOM_SUB) return
// 网格标签与首通呼号同一显示缩放 (用户要求 2026-09-21): 子方块(4字符)
// 标签与首通呼号都在网格线出现的 GRID_ZOOM_SUB 同时显示, 不再晚一档.
val showLabels = zoom >= GRID_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.
@@ -356,10 +379,14 @@ class MaidenheadGridOverlay : Overlay() {
val y2 = projectionToY(projection, 1.0)
if (y1 == null || y2 == null) return
val pixelsPerDegree = Math.abs(y2 - y1)
if (pixelsPerDegree * cellLat < MIN_LABEL_CELL_PX) return
// 两种模式同一像素门限: GRID_ZOOM_SUB 处 1° 格约 45px, 低于 48px
// 常规阈值, 统一用放宽的 0.6x 门限, 保证网格标签与首通呼号同时出现.
val minCellPx = MIN_LABEL_CELL_PX * 0.6f
if (pixelsPerDegree * cellLat < minCellPx) return
labelPaint.textAlign = Paint.Align.CENTER
val fontMetrics = labelPaint.fontMetrics
val activePaint = if (showFirstCallLabels) firstCallPaint else labelPaint
activePaint.textAlign = Paint.Align.CENTER
val fontMetrics = activePaint.fontMetrics
val textHalfHeight = (fontMetrics.descent + fontMetrics.ascent) / 2f
for (row in firstRow..lastRow) {
val lat = row * cellLat
@@ -386,7 +413,17 @@ class MaidenheadGridOverlay : Overlay() {
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)
if (showFirstCallLabels) {
// 首通呼号模式: 只有绿格(worked)标注该格第一个通联的呼号,
// 非绿格空着不写网格字符.
if (label in workedGrids) {
firstCallsByGrid[label]?.let { call ->
canvas.drawText(call, (xLeft + xRight) / 2f, yCenter, firstCallPaint)
}
}
} else {
canvas.drawText(label, (xLeft + xRight) / 2f, yCenter, labelPaint)
}
}
}
}
@@ -504,9 +541,8 @@ class MaidenheadGridOverlay : Overlay() {
// 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
// 网格标签与首通呼号标签统一字号 (用户要求 2026-09-21: 字体一样大).
const val LABEL_TEXT_SIZE = 20f
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. */
@@ -0,0 +1,39 @@
package com.rtbishop.look4sat.feature.map
import androidx.compose.runtime.MutableState
import androidx.compose.runtime.mutableStateOf
import androidx.lifecycle.ViewModel
import androidx.lifecycle.viewmodel.initializer
import androidx.lifecycle.viewmodel.viewModelFactory
import com.rtbishop.look4sat.core.domain.model.AwardType
/**
* Session-scoped holder for the map's award filter selection.
*
* Scoped to the Activity (not the navigation entry) so the selection survives
* switching to another page and back; it resets to VUCC only when the process
* starts fresh (cold start), which is what the user expects as the default.
*/
class MapFilterViewModel : ViewModel() {
/** Last chosen award chip; null means "All". Initialized to VUCC once per process. */
val selectedAward: MutableState<AwardType?> = mutableStateOf(AwardType.VUCC)
/** Last map viewport (center + zoom), saved when leaving the page. Null until first visit. */
var mapCenterLat: Double? = null
var mapCenterLon: Double? = null
var mapZoom: Double? = null
/** Persists the current viewport so a later re-entry restores exactly where the user left off. */
fun saveMapViewState(centerLat: Double, centerLon: Double, zoom: Double) {
mapCenterLat = centerLat
mapCenterLon = centerLon
mapZoom = zoom
}
companion object {
fun factory() = viewModelFactory {
initializer { MapFilterViewModel() }
}
}
}
@@ -144,13 +144,30 @@ private val moonIconPaint = Paint(Paint.ANTI_ALIAS_FLAG).apply {
}
@Composable
fun MapDestination() {
fun MapDestination(
mapFilterViewModel: MapFilterViewModel
) {
val context = LocalContext.current
val container = (context.applicationContext as IContainerProvider).getMainContainer()
val viewModel: MapViewModel = viewModel(factory = MapViewModel.factory(container))
val uiState by viewModel.uiState.collectAsStateWithLifecycle()
val mapView = rememberMapViewWithLifecycle()
val mapView = rememberMapViewWithLifecycle(mapFilterViewModel, restoreViewport = uiState.isGridMode)
val lifecycle = LocalLifecycleOwner.current.lifecycle
// Save the viewport when leaving the page, but only in grid mode: the
// satellite mode intentionally keeps its original behavior (default center,
// follow the selected satellite), so a satellite-mode exit must not
// overwrite the last grid-mode viewport.
DisposableEffect(mapView, uiState.isGridMode) {
onDispose {
if (uiState.isGridMode) {
mapFilterViewModel.saveMapViewState(
mapView.mapCenter.latitude,
mapView.mapCenter.longitude,
mapView.zoomLevelDouble
)
}
}
}
DisposableEffect(lifecycle) {
val observer = LifecycleEventObserver { _, event ->
when (event) {
@@ -165,11 +182,16 @@ fun MapDestination() {
viewModel.onAction(MapAction.SetVisible(false))
}
}
MapScreen(uiState, viewModel::onAction, mapView)
MapScreen(uiState, viewModel::onAction, mapView, mapFilterViewModel)
}
@Composable
private fun MapScreen(uiState: MapState, onAction: (MapAction) -> Unit, mapView: MapView) {
private fun MapScreen(
uiState: MapState,
onAction: (MapAction) -> Unit,
mapView: MapView,
mapFilterViewModel: MapFilterViewModel
) {
val rotateMod = Modifier.rotate(180f)
val timeString = uiState.mapData?.aosTime ?: "00:00:00"
val isTimeAos = uiState.mapData?.isTimeAos ?: true
@@ -177,9 +199,9 @@ private fun MapScreen(uiState: MapState, onAction: (MapAction) -> Unit, mapView:
// 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) }
// Selected award filter. Lives in an Activity-scoped ViewModel so it
// survives page switches; defaults to VUCC only once per process (cold start).
var selectedAward by mapFilterViewModel.selectedAward
// 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.
@@ -193,6 +215,13 @@ private fun MapScreen(uiState: MapState, onAction: (MapAction) -> Unit, mapView:
}
m
}
// First callsign worked in each grid (earliest QSO by time), used by the
// "首通呼号" label mode — derived from the same QSO store as the worked fills.
val firstCallsByGrid: Map<String, String> = remember(uiState.workedGridQsos) {
uiState.workedGridQsos.mapNotNull { (grid, qsos) ->
qsos.minByOrNull { it.epochMs }?.let { grid to it.call }
}.toMap()
}
// 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.
@@ -215,13 +244,21 @@ private fun MapScreen(uiState: MapState, onAction: (MapAction) -> Unit, mapView:
else vuccByMyGrid[selectedMyGrid] ?: emptySet()
}
val isGridMode = uiState.isGridMode
// True when this composition restored a saved viewport. Only grid mode
// restores the viewport the user left (satellite mode keeps its original
// follow-the-satellite behavior); this implies grid mode was already on
// when re-entering, which is why the grid-mode auto-centering below can
// treat the entry as already centered.
val restoredViewport = remember {
isGridMode && mapFilterViewModel.mapCenterLat != null && mapFilterViewModel.mapZoom != null
}
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).
// appear (GRID_ZOOM_SUB); grid labels now appear at that zoom too.
if (zoom < MaidenheadGridOverlay.GRID_ZOOM_SUB) return false
val grid = gridOfPoint(p.latitude, p.longitude) ?: return false
if (grid !in workedGrids) return false
@@ -240,12 +277,6 @@ private fun MapScreen(uiState: MapState, onAction: (MapAction) -> Unit, mapView:
(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
@@ -281,9 +312,14 @@ private fun MapScreen(uiState: MapState, onAction: (MapAction) -> Unit, mapView:
}
ElevatedCard(modifier = Modifier.weight(1f)) {
Box(contentAlignment = Alignment.BottomCenter) {
// Track grid-mode transitions; initial value false so that entering
// the map page with grid mode already ON also centers the map.
var prevGridMode by remember { mutableStateOf(false) }
// Track grid-mode transitions. When the map was just restored to
// the viewport the user left (re-entry after a page switch) and
// grid mode is already on, treat the entry as already centered so
// the restored position survives. Cold-start entries and in-page
// toggles still center on the station grid as before.
var prevGridMode by remember {
mutableStateOf(restoredViewport && uiState.isGridMode)
}
AndroidView({ mapView }) { view ->
// Award filter mode: show the selected award's regions with
// worked ones filled green; hide satellite layers like grid mode.
@@ -297,6 +333,10 @@ private fun MapScreen(uiState: MapState, onAction: (MapAction) -> Unit, mapView:
prevGridMode = uiState.isGridMode
} else {
// Center on the station grid whenever entering grid mode.
// (prevGridMode is initialized to "already centered" when
// the map was just restored to the viewport the user left,
// so a re-entry keeps the restored position; in-page
// toggles still center normally.)
// 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.
@@ -304,7 +344,10 @@ private fun MapScreen(uiState: MapState, onAction: (MapAction) -> Unit, mapView:
setGridMode(
uiState.isGridMode, workedGrids, uiState.roamedGrids, view,
uiState.stationPosition,
centerOnStation = shouldCenter
centerOnStation = shouldCenter,
// 首通呼号标签只作用于 VUCC 视图(用户要求); "All"/其他奖状不过滤.
showFirstCallLabels = uiState.showFirstCallLabels && selectedAward == AwardType.VUCC,
firstCallsByGrid = firstCallsByGrid
)
if (!shouldCenter || uiState.stationPosition != null) {
prevGridMode = uiState.isGridMode
@@ -339,13 +382,27 @@ private fun MapScreen(uiState: MapState, onAction: (MapAction) -> Unit, mapView:
.padding(8.dp)
)
}
GridModeToggle(
isGridMode = uiState.isGridMode,
onToggle = { onAction(MapAction.ToggleGridMode(it)) },
// Top-right: grid-mode pill + (grid mode only) the first-call
// label pill, stacked vertically.
Column(
modifier = Modifier
.align(Alignment.TopEnd)
.padding(8.dp)
)
.padding(8.dp),
verticalArrangement = Arrangement.spacedBy(6.dp),
horizontalAlignment = Alignment.End
) {
GridModeToggle(
isGridMode = uiState.isGridMode,
onToggle = { onAction(MapAction.ToggleGridMode(it)) }
)
// 首通呼号开关仅 VUCC 视图显示(与 VuccGridSelector 同条件).
if (uiState.isGridMode && selectedAward == AwardType.VUCC) {
FirstCallToggle(
checked = uiState.showFirstCallLabels,
onToggle = { onAction(MapAction.ToggleFirstCallLabels(it)) }
)
}
}
}
}
}
@@ -767,6 +824,40 @@ private fun GridModeToggle(
}
}
/**
* 网格模式下的"首通呼号"开关: 打开后绿格(worked)的标签显示该格第一个通联的
* 呼号, 非绿格不显示任何文字. 仅在网格模式下显示(与网格模式开关叠放).
*/
@Composable
private fun FirstCallToggle(
checked: 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(R.string.map_first_call_mode),
color = ComposeColor.White,
fontSize = 12.sp,
modifier = Modifier.padding(end = 2.dp)
)
Switch(
checked = checked,
onCheckedChange = onToggle,
modifier = Modifier.scale(0.75f)
)
}
}
}
// endregion
// region Map overlay helpers
@@ -810,7 +901,9 @@ private fun setGridMode(
roamedGrids: Set<String>,
mapView: MapView,
stationPosition: GeoPos?,
centerOnStation: Boolean = false
centerOnStation: Boolean = false,
showFirstCallLabels: Boolean = false,
firstCallsByGrid: Map<String, String> = emptyMap()
) {
try {
val gridOverlay = mapView.overlays[OVERLAY_GRID]
@@ -818,6 +911,9 @@ private fun setGridMode(
gridOverlay.isEnabled = gridMode
gridOverlay.workedGrids = workedGrids
gridOverlay.roamedGrids = roamedGrids
// 首通呼号模式: 绿格标注第一个通联的呼号, 非绿格不显示标签.
gridOverlay.showFirstCallLabels = showFirstCallLabels
gridOverlay.firstCallsByGrid = firstCallsByGrid
// 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).
@@ -827,6 +923,8 @@ private fun setGridMode(
isEnabled = gridMode
this.workedGrids = workedGrids
this.roamedGrids = roamedGrids
this.showFirstCallLabels = showFirstCallLabels
this.firstCallsByGrid = firstCallsByGrid
this.ownGrid = ownGridOf(stationPosition)
}
}
@@ -1173,7 +1271,10 @@ private fun setMoonPosition(moonLatDeg: Double, moonLonDeg: Double, mapView: Map
// region MapView lifecycle
@Composable
private fun rememberMapViewWithLifecycle(): MapView {
private fun rememberMapViewWithLifecycle(
mapFilterViewModel: MapFilterViewModel,
restoreViewport: Boolean
): MapView {
val tileSource = XYTileSource("tiles", 0, 6, 256, ".webp", emptyArray<String>())
val context = LocalContext.current
val isVertical = isVerticalLayout()
@@ -1189,8 +1290,19 @@ private fun rememberMapViewWithLifecycle(): MapView {
setTileSource(tileSource)
minZoomLevel = getMinZoom(resources.displayMetrics.heightPixels, isVertical)
maxZoomLevel = 7.0
controller.setCenter(GeoPoint(48.8575, 6.3514))
controller.setZoom(minZoomLevel + 2)
// Restore the viewport the user left on the previous visit, but only
// in grid mode: satellite mode intentionally keeps its original
// behavior (default center, then follows the selected satellite).
val savedLat = mapFilterViewModel.mapCenterLat
val savedLon = mapFilterViewModel.mapCenterLon
val savedZoom = mapFilterViewModel.mapZoom
if (restoreViewport && savedLat != null && savedLon != null && savedZoom != null) {
controller.setCenter(GeoPoint(savedLat, savedLon))
controller.setZoom(savedZoom)
} else {
controller.setCenter(GeoPoint(48.8575, 6.3514))
controller.setZoom(minZoomLevel + 2)
}
zoomController.setVisibility(CustomZoomButtonsController.Visibility.NEVER)
overlayManager.tilesOverlay.loadingBackgroundColor = Color.TRANSPARENT
overlayManager.tilesOverlay.loadingLineColor = Color.TRANSPARENT
@@ -1208,6 +1320,7 @@ private fun rememberMapViewWithLifecycle(): MapView {
}
// 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.
// (The viewport save lives in MapDestination, where the grid/satellite mode is known.)
DisposableEffect(mapView) {
onDispose { clearMapCaches() }
}
@@ -27,6 +27,9 @@ data class MapState(
val isLightUi: Boolean = false,
val isUtc: Boolean = false,
val isGridMode: Boolean = false,
/** Grid mode: label worked (green) cells with the first callsign worked in
* that grid instead of the grid code; non-worked cells get no label. */
val showFirstCallLabels: 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. */
@@ -48,6 +51,7 @@ sealed interface MapAction {
data class SelectItem(val item: OrbitalObject) : MapAction
data class SelectDefaultItem(val catnum: Int) : MapAction
data class ToggleGridMode(val value: Boolean) : MapAction
data class ToggleFirstCallLabels(val value: Boolean) : MapAction
data class SetVisible(val isVisible: Boolean) : MapAction
}
@@ -79,7 +79,13 @@ class MapViewModel(
init {
viewModelScope.launch {
settingsRepo.otherSettings.collectLatest { settings ->
_uiState.update { it.copy(isUtc = settings.stateOfUtc, isGridMode = settings.stateOfMapGrid) }
_uiState.update {
it.copy(
isUtc = settings.stateOfUtc,
isGridMode = settings.stateOfMapGrid,
showFirstCallLabels = settings.stateOfMapFirstCall
)
}
}
}
viewModelScope.launch {
@@ -105,6 +111,7 @@ class MapViewModel(
is MapAction.SelectItem -> selectSatellite(action.item)
is MapAction.SelectDefaultItem -> selectDefaultSatellite(action.catnum)
is MapAction.ToggleGridMode -> settingsRepo.updateOtherSettings { it.copy(stateOfMapGrid = action.value) }
is MapAction.ToggleFirstCallLabels -> settingsRepo.updateOtherSettings { it.copy(stateOfMapFirstCall = action.value) }
is MapAction.SetVisible -> isScreenVisible.value = action.isVisible
}
}
@@ -32,6 +32,7 @@ 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.LazyListState
import androidx.compose.foundation.lazy.itemsIndexed
import androidx.compose.foundation.text.KeyboardOptions
import androidx.compose.material3.Button
@@ -49,11 +50,13 @@ import androidx.compose.material3.Slider
import androidx.compose.material3.Surface
import androidx.compose.material3.Text
import androidx.compose.runtime.Composable
import androidx.compose.runtime.LaunchedEffect
import androidx.compose.runtime.collectAsState
import androidx.compose.runtime.getValue
import androidx.compose.runtime.mutableFloatStateOf
import androidx.compose.runtime.remember
import androidx.compose.runtime.setValue
import androidx.compose.runtime.snapshotFlow
import androidx.compose.ui.Alignment
import androidx.compose.ui.Modifier
import androidx.compose.ui.res.painterResource
@@ -74,6 +77,7 @@ import java.text.SimpleDateFormat
import java.util.Date
import java.util.Locale
import java.util.TimeZone
import kotlinx.coroutines.flow.distinctUntilChanged
@Composable
fun MutualScreen(
@@ -150,6 +154,7 @@ fun MutualScreen(
}
) { isVertical ->
MutualContent(
viewModel = viewModel,
state = state,
isVertical = isVertical,
onQuery = viewModel::queryMutualPasses,
@@ -172,6 +177,7 @@ fun MutualScreen(
@Composable
private fun MutualContent(
viewModel: MutualViewModel,
state: MutualUiState,
isVertical: Boolean,
onQuery: () -> Unit,
@@ -195,8 +201,28 @@ private fun MutualContent(
}
}
// List state survives page switches via the Activity-scoped ViewModel: the
// initial position is restored from the VM, and scrolling writes back to it,
// so returning to this page keeps exactly where the user left off. A new
// query (queryGeneration bump) rebuilds the state at the top.
val listState = remember(viewModel.queryGeneration) {
LazyListState(
firstVisibleItemIndex = viewModel.listScrollIndex,
firstVisibleItemScrollOffset = viewModel.listScrollOffset
)
}
LaunchedEffect(listState) {
snapshotFlow { listState.firstVisibleItemIndex to listState.firstVisibleItemScrollOffset }
.distinctUntilChanged()
.collect { (index, offset) ->
viewModel.listScrollIndex = index
viewModel.listScrollOffset = offset
}
}
LazyColumn(
modifier = Modifier.fillMaxSize(),
state = listState,
verticalArrangement = Arrangement.spacedBy(6.dp)
) {
// Error message
@@ -69,6 +69,15 @@ class MutualViewModel(
private val _uiState = MutableStateFlow(MutualUiState())
val uiState: StateFlow<MutualUiState> = _uiState.asStateFlow()
// Session-scoped scroll position of the pass list (Activity-scoped VM, so it
// survives switching to another page and back). Reset to the top whenever a
// new query replaces the results.
var listScrollIndex: Int = 0
var listScrollOffset: Int = 0
/** Bumped on every new query so the list scrolls back to the top. */
var queryGeneration: Int = 0
init {
// Pre-fill station A with the user's current station position (as grid),
// and default min elevation to the same value used by the main radar passes
@@ -201,6 +210,11 @@ class MutualViewModel(
selectedPassIndex = -1
)
}
// The results list is about to be replaced, so the scroll position must
// not leak from the previous query's list.
listScrollIndex = 0
listScrollOffset = 0
queryGeneration += 1
viewModelScope.launch {
val time = System.currentTimeMillis()
@@ -73,6 +73,7 @@ private val allModes = listOf(
)
private val hourSteps = listOf(1, 2, 4, 8, 12, 24, 48, 72, 96, 120, 144, 168, 192, 216, 240)
private val historyHourSteps = listOf(0) + hourSteps
private const val dayMinutes = 24 * 60
private const val minuteStep = 15
private const val endOfDayMinute = dayMinutes - 1
@@ -80,6 +81,7 @@ private const val quarterHourSlots = dayMinutes / minuteStep
data class PassFilterParams(
val hours: Int,
val hoursBefore: Int,
val elevation: Double,
val lowElevation: Double,
val highElevation: Double,
@@ -95,6 +97,7 @@ private fun PassesDialogPreview() {
MainTheme {
PassesFilterDialog(
hours = 24,
hoursBefore = 0,
elevation = 16.0,
lowElevation = 16.0,
highElevation = 65.0,
@@ -111,6 +114,7 @@ private fun PassesDialogPreview() {
@Composable
internal fun PassesFilterDialog(
hours: Int,
hoursBefore: Int,
elevation: Double,
lowElevation: Double,
highElevation: Double,
@@ -122,6 +126,9 @@ internal fun PassesFilterDialog(
accept: (PassFilterParams) -> Unit
) {
val hoursIndex = remember { mutableIntStateOf(hourSteps.indexOfFirst { it >= hours }.coerceAtLeast(0)) }
val hoursBeforeIndex = remember {
mutableIntStateOf(historyHourSteps.indexOfFirst { it >= hoursBefore }.coerceAtLeast(0))
}
val elevationValueNew = remember { mutableDoubleStateOf(elevation) }
val highlightBounds = 0f..90f
var highlightRange by remember(lowElevation, highElevation) {
@@ -136,6 +143,7 @@ internal fun PassesFilterDialog(
accept(
PassFilterParams(
hours = hourSteps[hoursIndex.intValue],
hoursBefore = historyHourSteps[hoursBeforeIndex.intValue],
elevation = elevationValueNew.doubleValue,
lowElevation = highlightRange.start.roundToInt().toDouble(),
highElevation = highlightRange.endInclusive.roundToInt().toDouble(),
@@ -164,6 +172,14 @@ internal fun PassesFilterDialog(
valueRange = 0f..(hourSteps.size - 1).toFloat(),
steps = hourSteps.size - 2
) { hoursIndex.intValue = it.toInt().coerceIn(0, hourSteps.size - 1) }
SliderRow(
title = stringResource(R.string.pass_filter_history_hours),
value = hoursBeforeIndex.intValue.toDouble(),
displayValue = formatHoursLabel(historyHourSteps[hoursBeforeIndex.intValue]),
valueResId = R.drawable.ic_clock,
valueRange = 0f..(historyHourSteps.size - 1).toFloat(),
steps = historyHourSteps.size - 2
) { hoursBeforeIndex.intValue = it.toInt().coerceIn(0, historyHourSteps.size - 1) }
ToggleRow(
title = stringResource(R.string.pass_filter_deep_space),
checked = deepSpaceEnabled,
@@ -103,6 +103,7 @@ private fun PassesScreen(
if (uiState.isPassesDialogShown) {
PassesFilterDialog(
hours = uiState.hours,
hoursBefore = uiState.hoursBefore,
elevation = uiState.elevation,
lowElevation = uiState.lowElevation,
highElevation = uiState.highElevation,
@@ -115,6 +116,7 @@ private fun PassesScreen(
onAction(
PassesAction.FilterPasses(
hoursAhead = params.hours,
hoursBefore = params.hoursBefore,
minElevation = params.elevation,
lowElevation = params.lowElevation,
highElevation = params.highElevation,
@@ -28,6 +28,8 @@ data class PassesState(
val nextTime: String = "00:00:00",
val isNextTimeAos: Boolean = true,
val hours: Int = 24,
/** 历史过境回看窗口(小时), 0 = 只看未来. */
val hoursBefore: Int = 0,
val elevation: Double = 16.0,
val lowElevation: Double = 16.0,
val highElevation: Double = 65.0,
@@ -47,6 +49,7 @@ sealed interface PassesAction {
data object DismissWhatsNew : PassesAction
data class FilterPasses(
val hoursAhead: Int,
val hoursBefore: Int,
val minElevation: Double,
val lowElevation: Double,
val highElevation: Double,
@@ -55,6 +55,7 @@ class PassesViewModel(
isUtc = settingsRepo.otherSettings.value.stateOfUtc,
nextPass = defaultPass,
hours = settingsRepo.passesSettings.value.hoursAhead,
hoursBefore = settingsRepo.passesSettings.value.hoursBefore,
elevation = settingsRepo.passesSettings.value.minElevation,
lowElevation = settingsRepo.otherSettings.value.lowElevation,
highElevation = settingsRepo.otherSettings.value.highElevation,
@@ -95,8 +96,12 @@ class PassesViewModel(
val timeNow = System.currentTimeMillis()
val isUtc = _uiState.value.isUtc
val showDeepSpace = _uiState.value.showDeepSpace
// 历史过境窗口: 已结束的过境保留到超过 hoursBefore 小时后消失;
// DeepSpace 保持原行为(始终显示). hoursBefore=0 时过境一结束即消失.
val historyCutoff = timeNow - _uiState.value.hoursBefore * 3600_000L
val filtered = allPasses
.let { if (showDeepSpace) it else it.filter { pass -> !pass.isDeepSpace } }
.filter { pass -> pass.isDeepSpace || pass.losTime >= historyCutoff }
val processed = computePassProgress(filtered, timeNow)
val (nextPass, nextTime, isAos) = resolveNextPass(processed, timeNow)
val sunTimes = computeSunTimes(processed, isUtc)
@@ -123,6 +128,7 @@ class PassesViewModel(
is PassesAction.FilterPasses ->
applyFilter(
hoursAhead = action.hoursAhead,
hoursBefore = action.hoursBefore,
minElevation = action.minElevation,
lowElevation = action.lowElevation,
highElevation = action.highElevation,
@@ -135,6 +141,7 @@ class PassesViewModel(
is PassesAction.FilterRadios ->
applyFilter(
hoursAhead = _uiState.value.hours,
hoursBefore = _uiState.value.hoursBefore,
minElevation = _uiState.value.elevation,
lowElevation = _uiState.value.lowElevation,
highElevation = _uiState.value.highElevation,
@@ -246,7 +253,7 @@ class PassesViewModel(
return ordered
}
/** Computes live progress for each pass, filtering out expired ones. */
/** Computes live progress while retaining completed passes in the requested history window. */
private fun computePassProgress(passList: List<OrbitalPass>, time: Long): List<OrbitalPass> {
val result = ArrayList<OrbitalPass>(passList.size)
for (pass in passList) {
@@ -254,9 +261,9 @@ class PassesViewModel(
val deltaNow = time.minus(pass.aosTime).toFloat()
val deltaTotal = pass.losTime.minus(pass.aosTime).toFloat()
val newProgress = (deltaNow / deltaTotal).round(2)
if (newProgress >= 1.0f) continue
if (newProgress != pass.progress) {
result.add(pass.copy(progress = newProgress))
val boundedProgress = newProgress.coerceIn(0f, 1f)
if (boundedProgress != pass.progress) {
result.add(pass.copy(progress = boundedProgress))
} else {
result.add(pass)
}
@@ -285,6 +292,7 @@ class PassesViewModel(
private fun applyFilter(
hoursAhead: Int,
hoursBefore: Int,
minElevation: Double,
lowElevation: Double,
highElevation: Double,
@@ -302,13 +310,15 @@ class PassesViewModel(
aosStartMinute,
aosEndMinute,
invertAosTimeWindow,
modes
modes,
hoursBefore
)
)
settingsRepo.updateOtherSettings { it.copy(lowElevation = lowElevation, highElevation = highElevation) }
_uiState.update {
it.copy(
hours = hoursAhead,
hoursBefore = hoursBefore,
elevation = minElevation,
lowElevation = lowElevation,
highElevation = highElevation,
@@ -319,9 +329,10 @@ class PassesViewModel(
modes = modes
)
}
val now = System.currentTimeMillis()
satelliteRepo.calculatePasses(
time = System.currentTimeMillis(),
hoursAhead = hoursAhead,
time = now - hoursBefore * 60L * 60L * 1000L,
hoursAhead = hoursBefore + hoursAhead,
minElevation = minElevation,
aosStartMinute = aosStartMinute,
aosEndMinute = aosEndMinute,
@@ -332,9 +343,10 @@ class PassesViewModel(
private fun refreshPasses() = viewModelScope.launch {
val settings = settingsRepo.passesSettings.value
// 下拉刷新也保留历史过境窗口, 否则刷新即丢 history (与筛选/启动计算口径一致)
satelliteRepo.calculatePasses(
time = System.currentTimeMillis(),
hoursAhead = settings.hoursAhead,
time = System.currentTimeMillis() - settings.hoursBefore * 60L * 60L * 1000L,
hoursAhead = settings.hoursBefore + settings.hoursAhead,
minElevation = settings.minElevation,
aosStartMinute = settings.aosStartMinute,
aosEndMinute = settings.aosEndMinute,
@@ -82,7 +82,7 @@ class RadarViewModel(
private val _uiState = MutableStateFlow(
RadarState(
isUtc = settingsRepo.otherSettings.value.stateOfUtc,
orientationValues = sensorsRepo.sensorData.value,
orientationValues = correctedOrientation(sensorsRepo.sensorData.value),
shouldShowSweep = settingsRepo.otherSettings.value.stateOfSweep,
shouldUseCompass = settingsRepo.otherSettings.value.stateOfSensors,
sstv = SstvSubState(selectedMode = settingsRepo.otherSettings.value.sstvMode)
@@ -102,12 +102,19 @@ class RadarViewModel(
viewModelScope.launch {
sensorsRepo.enableSensor()
sensorsRepo.sensorData.collect { data ->
val orientationValues = (data.first + magDeclination) to data.second
val orientationValues = correctedOrientation(data)
_uiState.update { it.copy(orientationValues = orientationValues) }
}
}
}
/** 指南针方位 = 传感器方位 + 磁偏角 + 手动偏置(compassOffsetDegrees, 校准用). */
private fun correctedOrientation(data: Pair<Float, Float>): Pair<Float, Float> {
val offset = settingsRepo.otherSettings.value.compassOffsetDegrees
val azimuth = ((data.first + magDeclination + offset) % 360f + 360f) % 360f
return azimuth to data.second
}
private fun collectSettingsChanges() {
viewModelScope.launch {
settingsRepo.otherSettings.collectLatest { settings ->
@@ -87,6 +87,7 @@ import androidx.compose.ui.zIndex
import com.rtbishop.look4sat.core.domain.model.Constants
import com.rtbishop.look4sat.core.domain.model.RCSettings
import com.rtbishop.look4sat.core.domain.model.RadioControlSettings
import com.rtbishop.look4sat.core.domain.repository.LoTWSyncMode
import com.rtbishop.look4sat.core.domain.source.NetworkResult
import com.rtbishop.look4sat.core.domain.source.Sources
import com.rtbishop.look4sat.core.presentation.CardButton
@@ -38,8 +38,10 @@ import androidx.compose.material3.ElevatedCard
import androidx.compose.material3.Icon
import androidx.compose.material3.LinearProgressIndicator
import androidx.compose.material3.MaterialTheme
import androidx.compose.material3.OutlinedTextField
import androidx.compose.material3.Switch
import androidx.compose.material3.Text
import androidx.compose.foundation.text.KeyboardOptions
import androidx.compose.runtime.Composable
import androidx.compose.runtime.LaunchedEffect
import androidx.compose.runtime.Stable
@@ -56,6 +58,8 @@ import androidx.compose.ui.platform.LocalUriHandler
import androidx.compose.ui.res.painterResource
import androidx.compose.ui.res.stringResource
import androidx.compose.ui.text.font.FontWeight
import androidx.compose.ui.text.input.ImeAction
import androidx.compose.ui.text.input.KeyboardType
import androidx.compose.ui.tooling.preview.Preview
import androidx.compose.ui.unit.dp
import androidx.compose.ui.unit.sp
@@ -66,8 +70,11 @@ import com.rtbishop.look4sat.core.domain.model.OtherSettings
import com.rtbishop.look4sat.core.domain.model.RadioControlSettings
import com.rtbishop.look4sat.core.domain.model.WavelogSettings
import com.rtbishop.look4sat.core.domain.predict.GeoPos
import com.rtbishop.look4sat.core.domain.repository.CompassAccuracy
import com.rtbishop.look4sat.core.domain.repository.IContainerProvider
import com.rtbishop.look4sat.core.domain.repository.LoTWSyncMode
import com.rtbishop.look4sat.core.presentation.CardButton
import com.rtbishop.look4sat.core.presentation.SharedDialog
import com.rtbishop.look4sat.core.presentation.IconCard
import com.rtbishop.look4sat.core.presentation.MainTheme
import com.rtbishop.look4sat.core.presentation.PrimaryIconCard
@@ -203,6 +210,19 @@ private fun SettingsScreen(uiState: SettingsState, onAction: (SettingsAction) ->
onSave = { onAction(SettingsAction.UpdateRadioControl(it)) }
)
}
if (dialogs.compassCalibration) {
LaunchedEffect(Unit) { onAction(SettingsAction.StartCompassCalibration) }
CompassCalibrationDialog(
accuracy = uiState.compassAccuracy,
headingDegrees = uiState.compassHeadingDegrees,
initialOffsetDegrees = uiState.otherSettings.compassOffsetDegrees,
onDismiss = {
onAction(SettingsAction.StopCompassCalibration)
dialogs.compassCalibration = false
},
onSave = { onAction(SettingsAction.SetCompassOffset(it)) }
)
}
if (dialogs.lotw) {
// LoTW sync failures are typed codes from the ViewModel; render them
// through string resources so the dialog follows the system language.
@@ -337,10 +357,17 @@ private fun SettingsScreen(uiState: SettingsState, onAction: (SettingsAction) ->
LoTWCard(
settings = uiState.lotwSettings,
workedGridsCount = uiState.workedGridsCount,
lastSyncEpochMs = uiState.lotwLastSyncEpochMs,
showLoTWDialog = { dialogs.lotw = true }
)
}
item { OtherCard(uiState.otherSettings, onAction) }
item {
OtherCard(
settings = uiState.otherSettings,
onCompassCalibration = { dialogs.compassCalibration = true },
onAction = onAction
)
}
item { CardCredits() }
item(span = { GridItemSpan(maxLineSpan) }) {
CardButton(
@@ -528,15 +555,19 @@ private fun OtherCardPreview() = MainTheme {
shouldSeeWarning = false,
shouldSeeWhatsNew = false
)
OtherCard(settings = values) {}
OtherCard(settings = values, onCompassCalibration = {}, onAction = {})
}
@Composable
private fun OtherCard(settings: OtherSettings, onAction: (SettingsAction) -> Unit) {
private fun OtherCard(
settings: OtherSettings,
onCompassCalibration: () -> Unit,
onAction: (SettingsAction) -> Unit
) {
ElevatedCard(
modifier = Modifier
.fillMaxWidth()
.height(272.dp)
.height(370.dp)
) {
Column(modifier = Modifier.padding(horizontal = 8.dp, vertical = 4.dp)) {
Text(
@@ -549,12 +580,20 @@ private fun OtherCard(settings: OtherSettings, onAction: (SettingsAction) -> Uni
SwitchRow(R.string.prefs_other_switch_update, settings.stateOfAutoUpdate) {
onAction(SettingsAction.ToggleUpdate(it))
}
SwitchRow(R.string.prefs_other_switch_lotw_sync, settings.stateOfAutoLotwSync) {
onAction(SettingsAction.ToggleAutoLotwSync(it))
}
SwitchRow(R.string.prefs_other_switch_sweep, settings.stateOfSweep) {
onAction(SettingsAction.ToggleSweep(it))
}
SwitchRow(R.string.prefs_other_switch_sensors, settings.stateOfSensors) {
onAction(SettingsAction.ToggleSensor(it))
}
CardButton(
onClick = onCompassCalibration,
text = stringResource(R.string.prefs_compass_calibration_button),
modifier = Modifier.fillMaxWidth()
)
SwitchRow(R.string.prefs_other_switch_night_mode, settings.stateOfNightMode) {
onAction(SettingsAction.ToggleNightMode(it))
}
@@ -562,6 +601,94 @@ private fun OtherCard(settings: OtherSettings, onAction: (SettingsAction) -> Uni
}
}
/**
* 指南针校准对话框: 8 字动作提升精度, 实时显示校正后航向, 可手动输入偏置(±180°).
*/
@Composable
private fun CompassCalibrationDialog(
accuracy: CompassAccuracy,
headingDegrees: Float,
initialOffsetDegrees: Float,
onDismiss: () -> Unit,
onSave: (Float) -> Unit
) {
var offsetText by rememberSaveable(initialOffsetDegrees) {
mutableStateOf(initialOffsetDegrees.toString())
}
val parsedOffset = offsetText.replace(',', '.').toFloatOrNull()?.takeIf { it in -180f..180f }
val statusRes = when (accuracy) {
CompassAccuracy.HIGH -> R.string.prefs_compass_accuracy_high
CompassAccuracy.MEDIUM -> R.string.prefs_compass_accuracy_medium
CompassAccuracy.LOW -> R.string.prefs_compass_accuracy_low
CompassAccuracy.UNRELIABLE -> R.string.prefs_compass_accuracy_unreliable
CompassAccuracy.UNAVAILABLE -> R.string.prefs_compass_accuracy_unavailable
}
val progress = when (accuracy) {
CompassAccuracy.HIGH -> 1f
CompassAccuracy.MEDIUM -> 0.66f
CompassAccuracy.LOW -> 0.33f
CompassAccuracy.UNRELIABLE, CompassAccuracy.UNAVAILABLE -> 0f
}
SharedDialog(
title = stringResource(R.string.prefs_compass_calibration_title),
onDismissRequest = onDismiss,
onCancel = onDismiss,
onAccept = {
parsedOffset?.let {
onSave(it)
onDismiss()
}
}
) { padding ->
Column(
horizontalAlignment = Alignment.CenterHorizontally,
verticalArrangement = Arrangement.spacedBy(8.dp),
modifier = Modifier.padding(horizontal = padding)
) {
Text(
text = "∞",
fontSize = 92.sp,
color = MaterialTheme.colorScheme.primary,
lineHeight = 92.sp
)
Text(
text = stringResource(R.string.prefs_compass_calibration_instruction),
color = MaterialTheme.colorScheme.onSurface
)
Text(
text = stringResource(R.string.prefs_compass_accuracy, stringResource(statusRes)),
fontWeight = FontWeight.Medium,
color = if (accuracy == CompassAccuracy.HIGH) {
MaterialTheme.colorScheme.primary
} else {
MaterialTheme.colorScheme.onSurface
}
)
LinearProgressIndicator(progress = { progress }, modifier = Modifier.fillMaxWidth())
Text(
text = stringResource(R.string.prefs_compass_heading, headingDegrees),
fontSize = 20.sp,
fontWeight = FontWeight.Medium
)
OutlinedTextField(
value = offsetText,
onValueChange = { offsetText = it },
label = { Text(stringResource(R.string.prefs_compass_offset)) },
supportingText = { Text(stringResource(R.string.prefs_compass_offset_support)) },
isError = parsedOffset == null,
singleLine = true,
keyboardOptions = KeyboardOptions(keyboardType = KeyboardType.Decimal, imeAction = ImeAction.Done),
modifier = Modifier.fillMaxWidth()
)
CardButton(
onClick = { offsetText = "0" },
text = stringResource(R.string.prefs_compass_offset_reset),
modifier = Modifier.fillMaxWidth()
)
}
}
}
@Composable
private fun SwitchRow(labelResId: Int, checked: Boolean, onCheckedChange: (Boolean) -> Unit) {
Row(
@@ -578,6 +705,7 @@ private fun SwitchRow(labelResId: Int, checked: Boolean, onCheckedChange: (Boole
private fun LoTWCard(
settings: com.rtbishop.look4sat.core.domain.model.LoTWSettings,
workedGridsCount: Int,
lastSyncEpochMs: Long,
showLoTWDialog: () -> Unit
) {
ElevatedCard(modifier = Modifier.fillMaxWidth()) {
@@ -596,6 +724,14 @@ private fun LoTWCard(
style = MaterialTheme.typography.bodySmall,
maxLines = 2
)
// Last successful sync, shown exactly like the ephemeris update time.
if (lastSyncEpochMs != 0L) {
Spacer(modifier = Modifier.height(2.dp))
Text(
text = formatUpdateTime(updateTime = lastSyncEpochMs),
style = MaterialTheme.typography.bodySmall
)
}
Spacer(modifier = Modifier.height(4.dp))
CardButton(
onClick = showLoTWDialog,
@@ -727,6 +863,7 @@ private class DialogVisibility {
var radioControl by mutableStateOf(false)
var wavelog by mutableStateOf(false)
var lotw by mutableStateOf(false)
var compassCalibration by mutableStateOf(false)
}
@Composable
@@ -734,13 +871,14 @@ private fun rememberDialogVisibility(): DialogVisibility {
return rememberSaveable(saver = run {
androidx.compose.runtime.saveable.Saver(
save = {
listOf(it.position, it.locator, it.dataSources, it.network, it.bluetooth, it.radioControl, it.wavelog, it.lotw)
listOf(it.position, it.locator, it.dataSources, it.network, it.bluetooth, it.radioControl, it.wavelog, it.lotw, it.compassCalibration)
},
restore = {
DialogVisibility().apply {
position = it[0]; locator = it[1]; dataSources = it[2]
network = it[3]; bluetooth = it[4]; radioControl = it[5]; wavelog = it[6]
lotw = it.getOrElse(7) { false }
compassCalibration = it.getOrElse(8) { false }
}
}
)
@@ -24,6 +24,8 @@ import com.rtbishop.look4sat.core.domain.model.RCSettings
import com.rtbishop.look4sat.core.domain.model.RadioControlSettings
import com.rtbishop.look4sat.core.domain.model.WavelogSettings
import com.rtbishop.look4sat.core.domain.predict.GeoPos
import com.rtbishop.look4sat.core.domain.repository.CompassAccuracy
import com.rtbishop.look4sat.core.domain.repository.LoTWSyncMode
import java.io.File
data class PositionSettings(
@@ -64,12 +66,15 @@ data class SettingsState(
val lotwSyncMode: LoTWSyncMode? = null,
val lotwProgress: com.rtbishop.look4sat.core.domain.repository.LoTWProgress? = null,
val lotwError: LoTWError? = null,
/** Epoch ms of the last successful LoTW sync (0 = never) — shown like the ephemeris update time. */
val lotwLastSyncEpochMs: Long = 0L,
/** 指南针校准精度等级 (校准对话框进度条). */
val compassAccuracy: CompassAccuracy = CompassAccuracy.UNRELIABLE,
/** 校正后航向(度, 含磁偏角+手动偏置), 校准对话框实时显示. */
val compassHeadingDegrees: Float = 0f,
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
@@ -95,8 +100,12 @@ sealed interface SettingsAction {
// Toggles
data class ToggleUtc(val value: Boolean) : SettingsAction
data class ToggleUpdate(val value: Boolean) : SettingsAction
data class ToggleAutoLotwSync(val value: Boolean) : SettingsAction
data class ToggleSweep(val value: Boolean) : SettingsAction
data class ToggleSensor(val value: Boolean) : SettingsAction
data object StartCompassCalibration : SettingsAction
data object StopCompassCalibration : SettingsAction
data class SetCompassOffset(val degrees: Float) : SettingsAction
data class ToggleLightTheme(val value: Boolean) : SettingsAction
data class ToggleNightMode(val value: Boolean) : SettingsAction
@@ -25,8 +25,15 @@ import androidx.lifecycle.viewmodel.viewModelFactory
import com.rtbishop.look4sat.core.domain.repository.IDatabaseRepo
import com.rtbishop.look4sat.core.domain.model.WavelogSettings
import com.rtbishop.look4sat.core.domain.repository.IMainContainer
import com.rtbishop.look4sat.core.domain.repository.ISensorsRepo
import com.rtbishop.look4sat.core.domain.repository.ISettingsRepo
import com.rtbishop.look4sat.core.domain.repository.IUpdateRepository
import com.rtbishop.look4sat.core.domain.repository.LoTWResult
import com.rtbishop.look4sat.core.domain.repository.LoTWSyncMode
import com.rtbishop.look4sat.core.domain.repository.applyLoTWGridResult
import com.rtbishop.look4sat.core.domain.repository.lotwCursorApi
import com.rtbishop.look4sat.core.domain.repository.lotwCursorEpochMs
import com.rtbishop.look4sat.core.domain.repository.resolveLoTWSyncMode
import com.rtbishop.look4sat.core.domain.repository.IWavelogRepository
import com.rtbishop.look4sat.core.domain.usecase.IShowToast
import com.rtbishop.look4sat.core.domain.utility.VersionComparator
@@ -35,7 +42,6 @@ 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(
@@ -44,6 +50,7 @@ class SettingsViewModel(
private val updateRepo: IUpdateRepository,
private val wavelogRepo: IWavelogRepository,
private val lotwRepo: com.rtbishop.look4sat.core.domain.repository.ILoTWRepository,
private val sensorsRepo: ISensorsRepo,
private val apkFile: File,
private val showToast: IShowToast
) : ViewModel() {
@@ -52,6 +59,8 @@ class SettingsViewModel(
private val defaultDataSettings = DataSettings(false, 0, 0, 0L)
/** In-flight LoTW sync job, cancelled by CancelLoTWSync. */
private var lotwSyncJob: kotlinx.coroutines.Job? = null
/** 指南针校准: 传感器原始方位(未加磁偏角/偏置), 校准对话框实时显示校正后航向. */
private var rawCompassHeading = sensorsRepo.sensorData.value.first
private val _uiState = MutableStateFlow(
SettingsState(
appVersionName = settingsRepo.appVersionName,
@@ -63,7 +72,10 @@ class SettingsViewModel(
dataSourcesSettings = settingsRepo.dataSourcesSettings.value,
dataSourcesStatus = settingsRepo.dataSourcesStatus.value,
wavelogSettings = settingsRepo.wavelogSettings.value,
workedGridsCount = settingsRepo.getWorkedGrids().size
workedGridsCount = settingsRepo.getWorkedGrids().size,
compassAccuracy = sensorsRepo.compassAccuracy.value,
compassHeadingDegrees = correctedCompassHeading(),
lotwLastSyncEpochMs = lotwCursorEpochMs(settingsRepo.getLastLotwSyncDate())
)
)
@@ -73,7 +85,10 @@ class SettingsViewModel(
viewModelScope.launch {
settingsRepo.stationPosition.collect { geoPos ->
_uiState.update {
it.copy(positionSettings = it.positionSettings.copy(isUpdating = false, stationPos = geoPos))
it.copy(
positionSettings = it.positionSettings.copy(isUpdating = false, stationPos = geoPos),
compassHeadingDegrees = correctedCompassHeading()
)
}
}
}
@@ -98,7 +113,20 @@ class SettingsViewModel(
}
viewModelScope.launch {
settingsRepo.otherSettings.collect { settings ->
_uiState.update { it.copy(otherSettings = settings) }
_uiState.update {
it.copy(otherSettings = settings, compassHeadingDegrees = correctedCompassHeading())
}
}
}
viewModelScope.launch {
sensorsRepo.compassAccuracy.collect { accuracy ->
_uiState.update { it.copy(compassAccuracy = accuracy) }
}
}
viewModelScope.launch {
sensorsRepo.sensorData.collect { orientation ->
rawCompassHeading = orientation.first
_uiState.update { it.copy(compassHeadingDegrees = correctedCompassHeading()) }
}
}
viewModelScope.launch {
@@ -148,8 +176,14 @@ class SettingsViewModel(
// Toggles
is SettingsAction.ToggleUtc -> settingsRepo.updateOtherSettings { it.copy(stateOfUtc = action.value) }
is SettingsAction.ToggleUpdate -> settingsRepo.updateOtherSettings { it.copy(stateOfAutoUpdate = action.value) }
is SettingsAction.ToggleAutoLotwSync -> settingsRepo.updateOtherSettings { it.copy(stateOfAutoLotwSync = action.value) }
is SettingsAction.ToggleSweep -> settingsRepo.updateOtherSettings { it.copy(stateOfSweep = action.value) }
is SettingsAction.ToggleSensor -> settingsRepo.updateOtherSettings { it.copy(stateOfSensors = action.value) }
SettingsAction.StartCompassCalibration -> sensorsRepo.enableSensor()
SettingsAction.StopCompassCalibration -> sensorsRepo.disableSensor()
is SettingsAction.SetCompassOffset -> settingsRepo.updateOtherSettings {
it.copy(compassOffsetDegrees = action.degrees.coerceIn(-180f, 180f))
}
is SettingsAction.ToggleLightTheme -> settingsRepo.updateOtherSettings { it.copy(stateOfLightTheme = action.value) }
is SettingsAction.ToggleNightMode -> settingsRepo.updateOtherSettings { it.copy(stateOfNightMode = action.value) }
// Remote control & data sources
@@ -209,12 +243,9 @@ class SettingsViewModel(
// 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 effectiveMode = resolveLoTWSyncMode(settingsRepo.getLastLotwSyncCallsign(), callsign, mode)
val since = if (effectiveMode == LoTWSyncMode.Incremental) {
settingsRepo.getLastLotwSyncDate()
lotwCursorApi(settingsRepo.getLastLotwSyncDate())
} else ""
_uiState.update {
it.copy(lotwSyncing = true, lotwSyncMode = effectiveMode, lotwProgress = null, lotwError = null)
@@ -224,67 +255,41 @@ class SettingsViewModel(
_uiState.update { it.copy(lotwProgress = progress) }
}
when (result) {
is com.rtbishop.look4sat.core.domain.repository.LoTWResult.Success -> {
is 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)
}
// Shared with the automatic sync on app start (MainApplication).
val mergedGridsCount = applyLoTWGridResult(settingsRepo, result, effectiveMode, callsign)
_uiState.update { state ->
state.copy(
lotwSyncing = false, lotwSyncMode = null, lotwProgress = null,
workedGridsCount = mergedGrids.size, lotwError = null
workedGridsCount = mergedGridsCount, lotwError = null,
lotwLastSyncEpochMs = lotwCursorEpochMs(settingsRepo.getLastLotwSyncDate())
)
}
}
is com.rtbishop.look4sat.core.domain.repository.LoTWResult.BadCredentials ->
is 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 ->
is 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 ->
is 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 ->
is LoTWResult.NetworkError ->
_uiState.update { state ->
state.copy(
lotwSyncing = false, lotwSyncMode = null, lotwProgress = null,
@@ -302,22 +307,6 @@ class SettingsViewModel(
_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
@@ -396,6 +385,18 @@ class SettingsViewModel(
}
}
/** 校正后航向 = 传感器原始方位 + 磁偏角 + 手动偏置. */
private fun correctedCompassHeading(): Float {
val declination = sensorsRepo.getMagDeclination(settingsRepo.stationPosition.value)
val offset = settingsRepo.otherSettings.value.compassOffsetDegrees
return ((rawCompassHeading + declination + offset) % 360f + 360f) % 360f
}
override fun onCleared() {
sensorsRepo.disableSensor()
super.onCleared()
}
// endregion
// region Data update helpers — consolidated from 3 near-identical functions
@@ -443,6 +444,7 @@ class SettingsViewModel(
updateRepo = container.updateRepo,
wavelogRepo = container.wavelogRepo,
lotwRepo = container.lotwRepo,
sensorsRepo = container.provideSensorsRepo(),
apkFile = File(context.cacheDir, "look4sat-update.apk"),
showToast = container.provideShowToast()
)
@@ -338,15 +338,16 @@ private fun StatusRow(status: SatStatus, onClickDay: (SatDay) -> Unit) {
/**
* 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.
* (gray when none); the number is the count of the most recent consecutive
* reports sharing that same status (day.streakCount), not the total report
* count of the whole day.
*/
@Composable
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 }
val streakCount = day.streakCount
Box(
modifier = modifier
.height(28.dp)
@@ -355,8 +356,8 @@ private fun DayCell(day: SatDay, modifier: Modifier, onClick: () -> Unit) {
.clickable(onClick = onClick),
contentAlignment = Alignment.Center
) {
if (totalCount > 0) {
Text(text = totalCount.toString(), fontSize = 13.sp, fontWeight = FontWeight.Bold, color = Color.White)
if (streakCount > 0) {
Text(text = streakCount.toString(), fontSize = 13.sp, fontWeight = FontWeight.Bold, color = Color.White)
}
}
}
+4 -2
View File
@@ -1,8 +1,8 @@
[versions]
#noinspection UnusedVersionCatalogEntry
appVersionCode = "476"
appVersionCode = "485"
#noinspection UnusedVersionCatalogEntry
appVersionName = "4.4.7-ba7opf.6"
appVersionName = "4.4.7-ba7opf.11.4"
#noinspection UnusedVersionCatalogEntry
compileSdk = "37"
#noinspection UnusedVersionCatalogEntry
@@ -79,6 +79,8 @@ other-osmdroid = { module = "org.osmdroid:osmdroid-android", version.ref = "othe
test-coroutines = { module = "org.jetbrains.kotlinx:kotlinx-coroutines-test", version.ref = "kotlin-coroutines" }
test-junit4 = { module = "junit:junit", version.ref = "test-junit4" }
# Real org.json for unit tests (android.jar stub throws "not mocked")
test-json = { module = "org.json:json", version = "20240303" }
androidTest-junit = { module = "androidx.test.ext:junit", version.ref = "androidTest-junit" }
androidTest-espresso = { module = "androidx.test.espresso:espresso-core", version.ref = "androidTest-espresso" }