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https://github.com/atsunatsu/Look4Sat.git
synced 2026-10-02 03:15:37 +00:00
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No files matched your search
@@ -18,7 +18,12 @@ android {
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namespace = libs.versions.packageName.get()
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defaultConfig {
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applicationId = "cn.ba7opf.look4sat"
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ndk { abiFilters.add("armeabi-v7a") }
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// CW decoder ships for both ABIs (see feature/cw jniLibs); the APK must
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// not be pinned to 32-bit only or 64-bit devices fall back to ARM32.
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ndk {
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abiFilters.add("armeabi-v7a")
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abiFilters.add("arm64-v8a")
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}
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}
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signingConfigs {
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create("release") {
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@@ -51,7 +51,6 @@ import androidx.compose.runtime.Composable
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import androidx.compose.runtime.CompositionLocalProvider
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import androidx.compose.runtime.LaunchedEffect
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import androidx.compose.runtime.getValue
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import androidx.compose.runtime.mutableIntStateOf
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import androidx.compose.runtime.remember
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import androidx.compose.runtime.setValue
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import androidx.compose.ui.Alignment
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@@ -94,16 +93,11 @@ import com.rtbishop.look4sat.feature.status.SatStatusDestination
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||||
fun NavRoot(deeplink: String? = null) {
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val rootBackStack = rememberNavBackStack(Screen.Passes)
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val deeplinkResolver = DeeplinkResolver()
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var openMapRequest by remember { mutableIntStateOf(0) }
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LaunchedEffect(deeplink) {
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deeplink?.let { rootBackStack.add(deeplinkResolver.resolve(it)) }
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}
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val navigateBack: () -> Unit = { rootBackStack.removeLastOrNull() }
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val navigateToRadar: () -> Unit = { rootBackStack.add(RadarDestination) }
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val navigateToMap: () -> Unit = {
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while (rootBackStack.size > 1) rootBackStack.removeAt(rootBackStack.size - 1)
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openMapRequest += 1
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}
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// Incoming screen slides in from the right, outgoing drifts left at 1/3 speed (API35+ style)
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val pushTransition = slideInHorizontally(tween(300)) { it } togetherWith
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slideOutHorizontally(tween(300)) { -it / 3 }
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@@ -124,9 +118,7 @@ fun NavRoot(deeplink: String? = null) {
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entryProvider = entryProvider {
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entry<Screen.Passes> {
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MainScreen(
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navigateToRadar = navigateToRadar,
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openMapRequest = openMapRequest,
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onOpenMapRequestHandled = { openMapRequest = 0 }
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navigateToRadar = navigateToRadar
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)
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}
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entry<RadarDestination> {
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@@ -134,7 +126,7 @@ fun NavRoot(deeplink: String? = null) {
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modifier = Modifier.fillMaxSize(),
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color = MaterialTheme.colorScheme.background
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) {
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RadarDestination(navigateUp = navigateBack, navigateToMap = navigateToMap)
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RadarDestination(navigateUp = navigateBack)
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}
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}
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}
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@@ -143,25 +135,16 @@ fun NavRoot(deeplink: String? = null) {
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@Composable
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fun MainScreen(
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navigateToRadar: () -> Unit = {},
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openMapRequest: Int = 0,
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onOpenMapRequestHandled: () -> Unit = {}
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navigateToRadar: () -> Unit = {}
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||||
) {
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val backStack = rememberNavBackStack(Screen.Passes)
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val currentKey = backStack.lastOrNull()
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val navigateBack: () -> Unit = { backStack.removeLastOrNull() }
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val navigateToMap: () -> Unit = {
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while (backStack.size > 1) backStack.removeAt(backStack.size - 1)
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backStack.add(Screen.Map)
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||||
}
|
||||
LaunchedEffect(openMapRequest) {
|
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if (openMapRequest > 0) {
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||||
navigateToMap()
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onOpenMapRequestHandled()
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||||
}
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}
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val fadeTransition = fadeIn(animationSpec = tween(350)) togetherWith fadeOut(animationSpec = tween(350))
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val navItems = listOf(Screen.Satellites, Screen.Passes, Screen.AMSAT, Screen.Mutual, Screen.Settings)
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// Map sits at position 4 from the left, matching the upstream nav order
|
||||
// (Satellites, Passes, AMSAT/Status, Map, ...), with the fork's Mutual tab
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||||
// appended before Settings.
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||||
val navItems = listOf(Screen.Satellites, Screen.Passes, Screen.AMSAT, Screen.Map, Screen.Mutual, Screen.Settings)
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||||
|
||||
val context = LocalContext.current
|
||||
val container = (context.applicationContext as IContainerProvider).getMainContainer()
|
||||
@@ -185,7 +168,7 @@ fun MainScreen(
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||||
val isSelected = when (currentKey) {
|
||||
is Screen.Satellites -> screen is Screen.Satellites
|
||||
is Screen.Passes -> screen is Screen.Passes
|
||||
is Screen.Map -> screen is Screen.Passes
|
||||
is Screen.Map -> screen is Screen.Map
|
||||
is Screen.AMSAT -> screen is Screen.AMSAT
|
||||
is Screen.Mutual -> screen is Screen.Mutual
|
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is Screen.Settings -> screen is Screen.Settings
|
||||
@@ -196,7 +179,7 @@ fun MainScreen(
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||||
label = { Text(stringResource(screen.titleResId)) },
|
||||
selected = isSelected,
|
||||
onClick = {
|
||||
if (isSelected && !(currentKey is Screen.Map && screen is Screen.Passes)) return@item
|
||||
if (isSelected) return@item
|
||||
while (backStack.size > 1) backStack.removeAt(backStack.size - 1)
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||||
if (screen !is Screen.Passes) backStack.add(screen)
|
||||
}
|
||||
@@ -236,8 +219,7 @@ fun MainScreen(
|
||||
container.setMutualPassData(MutualPassData())
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||||
container.satelliteRepo.selectPass(catNum, aosTime)
|
||||
navigateToRadar()
|
||||
},
|
||||
navigateToMap = navigateToMap
|
||||
}
|
||||
)
|
||||
}
|
||||
entry<Screen.Map> {
|
||||
|
||||
+78
-22
@@ -47,8 +47,11 @@ class LoTWRepository : ILoTWRepository {
|
||||
override suspend fun fetchConfirmedGrids(callsign: String, password: String): LoTWResult =
|
||||
withContext(Dispatchers.IO) {
|
||||
fetchReportBody(callsign, password).fold(
|
||||
onSuccess = { body -> parseBoth(body)?.let { LoTWResult.Success(it.first, it.second) }
|
||||
?: LoTWResult.RateLimited },
|
||||
onSuccess = { body ->
|
||||
parseBoth(body)?.let { (grids, _, roamed) ->
|
||||
LoTWResult.Success(grids, emptyMap(), roamed)
|
||||
} ?: LoTWResult.RateLimited
|
||||
},
|
||||
onFailure = { toResult(it) }
|
||||
)
|
||||
}
|
||||
@@ -58,8 +61,11 @@ class LoTWRepository : ILoTWRepository {
|
||||
password: String
|
||||
): LoTWResult = withContext(Dispatchers.IO) {
|
||||
fetchReportBody(callsign, password).fold(
|
||||
onSuccess = { body -> parseBoth(body)?.let { LoTWResult.Success(it.first, it.second) }
|
||||
?: LoTWResult.RateLimited },
|
||||
onSuccess = { body ->
|
||||
parseBoth(body)?.let { (grids, qsos, roamed) ->
|
||||
LoTWResult.Success(grids, qsos, roamed)
|
||||
} ?: LoTWResult.RateLimited
|
||||
},
|
||||
onFailure = { toResult(it) }
|
||||
)
|
||||
}
|
||||
@@ -71,11 +77,14 @@ class LoTWRepository : ILoTWRepository {
|
||||
else -> LoTWResult.NetworkError(e.message ?: e.javaClass.simpleName)
|
||||
}
|
||||
|
||||
/** Single report fetch feeding both the grid set and the per-QSO detail. */
|
||||
private fun parseBoth(body: String): Pair<Set<String>, Map<String, List<com.rtbishop.look4sat.core.domain.model.GridQso>>>? {
|
||||
/** Single report fetch feeding the grid set, the per-QSO detail and the roamed set. */
|
||||
private fun parseBoth(
|
||||
body: String
|
||||
): Triple<Set<String>, Map<String, List<com.rtbishop.look4sat.core.domain.model.GridQso>>, Set<String>>? {
|
||||
val grids = parseConfirmedGrids(body) ?: return null
|
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val qsos = parseConfirmedGridQsos(body) ?: return null
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return grids to qsos
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val roamed = parseRoamedGrids(body) ?: return null
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return Triple(grids, qsos, roamed)
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||||
}
|
||||
|
||||
private fun fetchReportBody(callsign: String, password: String): Result<String> {
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||||
@@ -255,9 +264,6 @@ class LoTWRepository : ILoTWRepository {
|
||||
}
|
||||
|
||||
internal fun parseConfirmedGrids(body: String): Set<String>? {
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||||
// LoTW answers with ADIF text; on bad credentials it returns a short error page
|
||||
// containing "password=?" or an <eoh>-less block. Treat anything without a header
|
||||
// marker as failure so the caller can show a sensible message.
|
||||
// LoTW answers with ADIF text; on bad credentials it returns a short error
|
||||
// page without an <eoh> header terminator. Real reports always carry <eoh>
|
||||
// (LoTW writes it lowercase). Match case-insensitively to be safe.
|
||||
@@ -268,25 +274,34 @@ class LoTWRepository : ILoTWRepository {
|
||||
// QSOs omit it. Grid fields (GRIDSQUARE / VUCC_GRIDS) must only be
|
||||
// collected for records whose PROP_MODE is SAT, otherwise the map mixes
|
||||
// in terrestrial contacts.
|
||||
//
|
||||
// Buffered per-record pattern (same as parseConfirmedGridQsos): field order
|
||||
// is NOT reliable — ADIF producers (incl. LoTW) emit fields alphabetically,
|
||||
// so <GRIDSQUARE> (G) arrives BEFORE <PROP_MODE> (P) within a record. A
|
||||
// sequential gate ("only add while propMode == SAT") silently drops every
|
||||
// grid on real reports. Buffer the record and decide at <EOR> instead.
|
||||
var propMode: String? = null
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||||
var pendingGrids = mutableListOf<String>()
|
||||
for (raw in body.lineSequence()) {
|
||||
val line = raw.trim()
|
||||
when {
|
||||
line.equals("<EOR>", ignoreCase = true) -> propMode = null
|
||||
line.equals("<EOR>", ignoreCase = true) -> {
|
||||
if (propMode == "SAT") grids.addAll(pendingGrids)
|
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propMode = null
|
||||
pendingGrids = mutableListOf()
|
||||
}
|
||||
line.startsWith("<PROP_MODE:") -> {
|
||||
propMode = line.substringAfter('>').substringBefore("E<").trim().uppercase()
|
||||
propMode = adifValue(line).uppercase()
|
||||
}
|
||||
line.startsWith("<GRIDSQUARE:") || line.startsWith("<VUCC_GRIDS:") -> {
|
||||
if (propMode == "SAT") {
|
||||
// VUCC_GRIDS holds a comma-separated PAIR of grids
|
||||
// ("EN52en,EN53fa") for contacts spanning two squares —
|
||||
// split on ',' and take the 4-char field of each, or the
|
||||
// second grid is silently dropped.
|
||||
val value = line.substringAfter('>').substringBefore("E<")
|
||||
value.split(',').forEach { grid ->
|
||||
val field = grid.trim().uppercase()
|
||||
if (field.length >= 4) grids.add(field.take(4))
|
||||
}
|
||||
// VUCC_GRIDS holds a comma-separated PAIR of grids
|
||||
// ("EN52en,EN53fa") for contacts spanning two squares —
|
||||
// split on ',' and take the 4-char field of each, or the
|
||||
// second grid is silently dropped.
|
||||
val value = adifValue(line)
|
||||
value.split(',').forEach { grid ->
|
||||
val field = grid.trim().uppercase()
|
||||
if (field.length >= 4) pendingGrids.add(field.take(4))
|
||||
}
|
||||
}
|
||||
}
|
||||
@@ -294,6 +309,47 @@ class LoTWRepository : ILoTWRepository {
|
||||
return grids
|
||||
}
|
||||
|
||||
/**
|
||||
* Distinct 4-char gridsquares the account itself operated from, taken from
|
||||
* ADIF <MY_GRIDSQUARE> of satellite QSO records only. This is the
|
||||
* "roamed / activated" set shown as blue stripes on the map — the grids
|
||||
* where the operator's own station was located during confirmed QSOs (a
|
||||
* rover may log several distinct grids; the home grid is included too).
|
||||
* Returns null when the body is not an ADIF report (mirrors the other parsers).
|
||||
*/
|
||||
internal fun parseRoamedGrids(body: String): Set<String>? {
|
||||
if (!body.contains("<eoh>", ignoreCase = true)) return null
|
||||
val grids = mutableSetOf<String>()
|
||||
// Buffered per-record pattern (same as parseConfirmedGridQsos): field
|
||||
// order is NOT reliable — ADIF producers (incl. LoTW) emit fields
|
||||
// alphabetically, so <MY_GRIDSQUARE> (M) arrives BEFORE <PROP_MODE> (P)
|
||||
// within a record. A sequential gate ("only add while propMode == SAT")
|
||||
// would silently drop every own grid on real reports; buffer the record
|
||||
// and decide at <EOR> instead.
|
||||
var propMode: String? = null
|
||||
var myGrid: String? = null
|
||||
for (raw in body.lineSequence()) {
|
||||
val line = raw.trim()
|
||||
when {
|
||||
line.equals("<EOR>", ignoreCase = true) -> {
|
||||
if (propMode == "SAT" && myGrid != null) grids.add(myGrid)
|
||||
propMode = null
|
||||
myGrid = null
|
||||
}
|
||||
line.startsWith("<PROP_MODE:") -> {
|
||||
propMode = adifValue(line).uppercase()
|
||||
}
|
||||
line.startsWith("<MY_GRIDSQUARE:") -> {
|
||||
// MY_GRIDSQUARE must not be mistaken for GRIDSQUARE (the
|
||||
// opposite station's grid) — only own-station grids count.
|
||||
val value = adifValue(line)
|
||||
if (value.length >= 4) myGrid = value.take(4)
|
||||
}
|
||||
}
|
||||
}
|
||||
return grids
|
||||
}
|
||||
|
||||
private companion object {
|
||||
const val BASE_URL = "https://lotw.arrl.org/lotwuser/lotwreport.adi"
|
||||
}
|
||||
|
||||
@@ -239,6 +239,29 @@ class SettingsRepo(
|
||||
preferences.edit { putString(keyWorkedGridQsos, root.toString()) }
|
||||
}
|
||||
|
||||
// Distinct 4-char gridsquares the account operated from (LoTW <MY_GRIDSQUARE>,
|
||||
// satellite QSOs only). Stored as a JSONArray like workedGrids.
|
||||
private val keyRoamedGrids = "roamedGrids"
|
||||
|
||||
override fun getRoamedGrids(): Set<String> {
|
||||
val json = preferences.getString(keyRoamedGrids, null).orEmpty()
|
||||
if (json.isBlank()) return emptySet()
|
||||
return try {
|
||||
val array = org.json.JSONArray(json)
|
||||
(0 until array.length()).mapNotNull { i ->
|
||||
array.optString(i).takeIf { it.isNotBlank() }
|
||||
}.toSet()
|
||||
} catch (_: Exception) {
|
||||
emptySet()
|
||||
}
|
||||
}
|
||||
|
||||
override fun setRoamedGrids(grids: Set<String>) {
|
||||
val array = org.json.JSONArray()
|
||||
grids.sorted().forEach { array.put(it) }
|
||||
preferences.edit { putString(keyRoamedGrids, array.toString()) }
|
||||
}
|
||||
|
||||
// LoTW credentials (stored locally on the device only)
|
||||
private val keyLoTWCall = "lotwCallsign"
|
||||
private val keyLoTWPass = "lotwPassword"
|
||||
|
||||
@@ -296,6 +296,14 @@ private class FakeSettingsRepo(dataSources: DataSourcesSettings = defaultDataSou
|
||||
override fun getWorkedGridQsos(): Map<String, List<com.rtbishop.look4sat.core.domain.model.GridQso>> = emptyMap()
|
||||
|
||||
override fun setWorkedGridQsos(qsos: Map<String, List<com.rtbishop.look4sat.core.domain.model.GridQso>>) = Unit
|
||||
|
||||
override fun getRoamedGrids(): Set<String> = emptySet()
|
||||
|
||||
private val roamedGrids = MutableStateFlow(emptySet<String>())
|
||||
|
||||
override fun setRoamedGrids(grids: Set<String>) {
|
||||
roamedGrids.value = grids
|
||||
}
|
||||
}
|
||||
|
||||
private fun defaultDataSourcesSettings(): DataSourcesSettings {
|
||||
|
||||
+77
@@ -61,6 +61,28 @@ class LoTWRepositoryTest {
|
||||
assertEquals(setOf("OL62"), result)
|
||||
}
|
||||
|
||||
@Test
|
||||
fun parseHandlesAlphabeticalFieldOrder() {
|
||||
// Real lotwreport.adi emits fields in ALPHABETICAL order: GRIDSQUARE (G)
|
||||
// and VUCC_GRIDS come BEFORE PROP_MODE (P) inside each record. The old
|
||||
// sequential gate (add only while propMode == SAT) dropped every grid on
|
||||
// real reports — the buffered parser must collect them regardless of
|
||||
// field order and filter at <EOR>.
|
||||
val satQso = "<CALL:6>BA7OPF\n" +
|
||||
"<GRIDSQUARE:4>NL47\n" +
|
||||
"<MODE:3>FM\n" +
|
||||
"<PROP_MODE:3>SAT\n" +
|
||||
"<SAT_NAME:5>FO-29\n" +
|
||||
"<VUCC_GRIDS:11>EN52en,EN53fa\n" +
|
||||
"<EOR>\n"
|
||||
val groundQso = "<CALL:6>BA7OPF\n" +
|
||||
"<GRIDSQUARE:4>PM95\n" +
|
||||
"<QSO_DATE:8>20260821\n" +
|
||||
"<EOR>\n"
|
||||
val result = repo.parseConfirmedGrids(report(satQso, groundQso))
|
||||
assertEquals(setOf("NL47", "EN52", "EN53"), result)
|
||||
}
|
||||
|
||||
@Test
|
||||
fun parseReturnsEmptySetForReportWithoutGrids() {
|
||||
val satQso = "<PROP_MODE:3>SAT\n<SAT_NAME:5>AO-07\n<EOR>\n"
|
||||
@@ -130,6 +152,61 @@ class LoTWRepositoryTest {
|
||||
|
||||
// endregion
|
||||
|
||||
// region parseRoamedGrids (MY_GRIDSQUARE = grids the account operated from)
|
||||
|
||||
@Test
|
||||
fun parseRoamedGridsCollectsOwnStationGrids() {
|
||||
// Satellite QSOs carry MY_GRIDSQUARE = the grid the account itself
|
||||
// operated from (the "roamed/activated" set shown as blue stripes).
|
||||
val qso1 = "<CALL:6>BA7OPF\n<QSO_DATE:8>20260820\n<PROP_MODE:3>SAT\n<SAT_NAME:5>IO-86\n" +
|
||||
"<MY_GRIDSQUARE:4>OL62\n<GRIDSQUARE:4>PM95\n<EOR>\n"
|
||||
val qso2 = "<CALL:6>BA7OPF\n<QSO_DATE:8>20260901\n<PROP_MODE:3>SAT\n<SAT_NAME:5>IO-86\n" +
|
||||
"<MY_GRIDSQUARE:4>OL72\n<GRIDSQUARE:4>NL47\n<EOR>\n"
|
||||
assertEquals(setOf("OL62", "OL72"), repo.parseRoamedGrids(report(qso1, qso2)))
|
||||
}
|
||||
|
||||
@Test
|
||||
fun parseRoamedGridsIgnoresGroundQsos() {
|
||||
val ground = "<CALL:6>BA7OPF\n<QSO_DATE:8>20260821\n<MY_GRIDSQUARE:4>OL72\n<EOR>\n"
|
||||
assertEquals(emptySet<String>(), repo.parseRoamedGrids(report(ground)))
|
||||
}
|
||||
|
||||
@Test
|
||||
fun parseRoamedGridsDoesNotConfuseGridsquareWithMyGridsquare() {
|
||||
// GRIDSQUARE (opposite station's grid) must never leak into the roamed set.
|
||||
val qso = "<PROP_MODE:3>SAT\n<SAT_NAME:5>SO-50\n<MY_GRIDSQUARE:4>OL62\n" +
|
||||
"<GRIDSQUARE:6>OM60IL\n<EOR>\n"
|
||||
assertEquals(setOf("OL62"), repo.parseRoamedGrids(report(qso)))
|
||||
}
|
||||
|
||||
@Test
|
||||
fun parseRoamedGridsTruncatesSixCharToFour() {
|
||||
val qso = "<PROP_MODE:3>SAT\n<SAT_NAME:5>IO-86\n<MY_GRIDSQUARE:6>OL62AA\n<EOR>\n"
|
||||
assertEquals(setOf("OL62"), repo.parseRoamedGrids(report(qso)))
|
||||
}
|
||||
|
||||
@Test
|
||||
fun parseRoamedGridsHandlesAlphabeticalFieldOrder() {
|
||||
// Real lotwreport.adi emits fields alphabetically, so <MY_GRIDSQUARE>
|
||||
// (M) arrives BEFORE <PROP_MODE> (P). The old sequential gate (add only
|
||||
// while propMode == SAT) silently returned an EMPTY set on real reports —
|
||||
// this is the exact bug that made the blue roamed stripes never appear.
|
||||
val qso = "<CALL:6>BA7OPF\n" +
|
||||
"<GRIDSQUARE:4>PM95\n" +
|
||||
"<MY_GRIDSQUARE:6>OL72XX\n" +
|
||||
"<PROP_MODE:3>SAT\n" +
|
||||
"<SAT_NAME:5>IO-86\n" +
|
||||
"<EOR>\n"
|
||||
assertEquals(setOf("OL72"), repo.parseRoamedGrids(report(qso)))
|
||||
}
|
||||
|
||||
@Test
|
||||
fun parseRoamedGridsRejectsBodyWithoutEoh() {
|
||||
assertNull(repo.parseRoamedGrids("<HTML>Username/password incorrect</HTML>"))
|
||||
}
|
||||
|
||||
// endregion
|
||||
|
||||
// region failure classification (fetchReportBody -> LoTWResult mapping)
|
||||
|
||||
@Test
|
||||
|
||||
+3
@@ -102,6 +102,9 @@ interface ISettingsRepo {
|
||||
/** Confirmed satellite QSOs grouped by worked 4-char gridsquare (map tap detail). */
|
||||
fun getWorkedGridQsos(): Map<String, List<com.rtbishop.look4sat.core.domain.model.GridQso>>
|
||||
fun setWorkedGridQsos(qsos: Map<String, List<com.rtbishop.look4sat.core.domain.model.GridQso>>)
|
||||
/** Distinct 4-char gridsquares the account operated from (LoTW <MY_GRIDSQUARE>). */
|
||||
fun getRoamedGrids(): Set<String>
|
||||
fun setRoamedGrids(grids: Set<String>)
|
||||
//endregion
|
||||
|
||||
//region # LoTW confirmed-grids settings
|
||||
|
||||
+4
-1
@@ -23,7 +23,10 @@ sealed class LoTWResult {
|
||||
/** Report downloaded and parsed successfully. */
|
||||
data class Success(
|
||||
val grids: Set<String>,
|
||||
val qsos: Map<String, List<com.rtbishop.look4sat.core.domain.model.GridQso>>
|
||||
val qsos: Map<String, List<com.rtbishop.look4sat.core.domain.model.GridQso>>,
|
||||
/** Distinct 4-char gridsquares the account itself operated from
|
||||
* (ADIF <MY_GRIDSQUARE>, satellite QSOs only) — "roamed/activated" grids. */
|
||||
val roamedGrids: Set<String> = emptySet()
|
||||
) : LoTWResult()
|
||||
|
||||
/** HTTP 200 but LoTW replied with its login-error page (bad callsign/password). */
|
||||
|
||||
@@ -10,10 +10,11 @@ android {
|
||||
compileOptions {
|
||||
encoding = "UTF-8"
|
||||
}
|
||||
// 照搬 Morse Expert 1.15: native 解码器仅 armeabi-v7a
|
||||
// Morse Expert 1.15 官方 Play 分包提供 ARM32/ARM64 原生解码器
|
||||
// (jniLibs/armeabi-v7a + arm64-v8a), 两个 ABI 都打进 APK
|
||||
defaultConfig {
|
||||
ndk {
|
||||
abiFilters += listOf("armeabi-v7a")
|
||||
abiFilters += listOf("armeabi-v7a", "arm64-v8a")
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
Binary file not shown.
+21
-3
@@ -261,9 +261,23 @@ class AwardBoundaryOverlay : Overlay() {
|
||||
val prevLon = pts[i - 1][0]
|
||||
val lon = pts[i][0]
|
||||
if (abs(lon - prevLon) > 180.0) {
|
||||
// Crossed the antimeridian: start a fresh segment.
|
||||
// Crossed the antimeridian. Do NOT drop this edge — that would
|
||||
// leave a visible gap in the outline (WAZ Pacific zones 1/19/
|
||||
// 31/32, e.g. zone 31's 40°N boundary from 130°W to 160°E).
|
||||
// Split the edge IN TWO at ±180 instead: each half stays in its
|
||||
// own segment, so the outline closes across the map's left and
|
||||
// right edges. The crossing latitude is interpolated along the
|
||||
// edge (constant for latitude-aligned edges).
|
||||
val a = pts[i - 1]
|
||||
val b = pts[i]
|
||||
val span = 360.0 - abs(lon - prevLon) // shortest angular distance
|
||||
val edgeLon = if (prevLon < lon) -180.0 else 180.0 // side being crossed
|
||||
val t = abs(edgeLon - prevLon) / span
|
||||
val latAt = a[1] + (b[1] - a[1]) * t
|
||||
cur.add(doubleArrayOf(edgeLon, latAt))
|
||||
if (cur.size >= 2) segments.add(cur)
|
||||
cur = mutableListOf()
|
||||
cur.add(doubleArrayOf(-edgeLon, latAt))
|
||||
}
|
||||
cur.add(pts[i])
|
||||
}
|
||||
@@ -378,8 +392,12 @@ class AwardBoundaryOverlay : Overlay() {
|
||||
|
||||
private fun normalizeLon(lon: Double): Double {
|
||||
var l = lon % 360.0
|
||||
if (l >= 180.0) l -= 360.0
|
||||
if (l < -180.0) l += 360.0
|
||||
// Normalize into (-180, 180] — +180, not -180. An edge whose endpoint
|
||||
// sits ON the antimeridian (e.g. a ring starting at -180°) must not be
|
||||
// seen as a >180° jump away from a nearby 165° vertex; keeping the
|
||||
// antimeridian value as +180 makes such edges short and un-split.
|
||||
if (l <= -180.0) l += 360.0
|
||||
if (l > 180.0) l -= 360.0
|
||||
return l
|
||||
}
|
||||
|
||||
|
||||
+150
-24
@@ -56,10 +56,19 @@ class MaidenheadGridOverlay : Overlay() {
|
||||
style = android.graphics.Paint.Style.FILL
|
||||
color = Color.argb(90, 76, 217, 100)
|
||||
}
|
||||
private val ownLinePaint = Paint(Paint.ANTI_ALIAS_FLAG).apply {
|
||||
strokeWidth = 4.5f
|
||||
private val roamStripePaint = Paint(Paint.ANTI_ALIAS_FLAG).apply {
|
||||
style = Paint.Style.STROKE
|
||||
color = Color.argb(255, 90, 200, 255)
|
||||
strokeWidth = 7f
|
||||
// Fully opaque blue: stripe bands stay pure blue even over a green
|
||||
// worked fill — no alpha blend into a teal/green mix (user requirement:
|
||||
// the two colors must never stack into a single mixed color).
|
||||
color = Color.argb(255, 66, 133, 244)
|
||||
}
|
||||
private val ownLinePaint = Paint(Paint.ANTI_ALIAS_FLAG).apply {
|
||||
strokeWidth = 6f
|
||||
style = Paint.Style.STROKE
|
||||
// 与普通网格线同色(淡黄), 仅加粗 — 用户要求当前网格框线不换色
|
||||
color = Color.argb(160, 255, 224, 130)
|
||||
}
|
||||
private val selectedLinePaint = Paint(Paint.ANTI_ALIAS_FLAG).apply {
|
||||
strokeWidth = 4.5f
|
||||
@@ -70,6 +79,12 @@ class MaidenheadGridOverlay : Overlay() {
|
||||
/** Worked gridsquares (4-char, uppercase) to highlight, e.g. {"OL62", "PM95"}. */
|
||||
var workedGrids: Set<String> = emptySet()
|
||||
|
||||
/**
|
||||
* Gridsquares the station operated from (4-char, uppercase) — drawn with
|
||||
* blue 45° stripes (GridMaster-style zebra), e.g. {"OL62", "PM95"}.
|
||||
*/
|
||||
var roamedGrids: Set<String> = emptySet()
|
||||
|
||||
/** The station's own 4-char gridsquare, drawn with a distinct outline. */
|
||||
var ownGrid: String? = null
|
||||
|
||||
@@ -120,9 +135,13 @@ class MaidenheadGridOverlay : Overlay() {
|
||||
val worldTurns = ceil(((rightLon - leftLon) / 360.0) - 1e-9).toInt().coerceAtLeast(0)
|
||||
val colRepeats = if (worldTurns > 0) worldTurns else 0
|
||||
|
||||
// The station's own grid square (4-char, only meaningful at sub-square zoom)
|
||||
val ownCell = ownGrid?.takeIf { zoom >= GRID_ZOOM_SUB }
|
||||
// The tapped worked grid gets a distinct outline (same zoom gate).
|
||||
// The station's own grid: always keep a bold outline of the 4-char
|
||||
// square. At sub-square zoom it matches the visible cell grid; at field
|
||||
// zoom (2-char labels) the own 2°x1° square is drawn on top of the
|
||||
// field grid so the operator still sees exactly where they are (user
|
||||
// req: "field zoom must also draw the own 4-char grid, bolded").
|
||||
val ownCell = ownGrid
|
||||
// The tapped worked grid gets a distinct outline (sub-square zoom only).
|
||||
val selectedCell = selectedGrid?.takeIf { zoom >= GRID_ZOOM_SUB }
|
||||
|
||||
// Worked-grid highlight fills.
|
||||
@@ -182,6 +201,57 @@ class MaidenheadGridOverlay : Overlay() {
|
||||
}
|
||||
}
|
||||
|
||||
// Roamed/activated grid stripes: blue 45° zebra (GridMaster style) over
|
||||
// every cell the station operated from. Drawn AFTER the worked fills so
|
||||
// a worked+roamed cell shows blue stripes with green between them — the
|
||||
// stripe paint is fully opaque, so the two colors never alpha-blend
|
||||
// into a teal/green mix. Same geometry as the worked fills (per-4-char
|
||||
// cell at both zoom levels). The station's OWN grid is excluded: it
|
||||
// already carries the bold outline and must not be striped (user req).
|
||||
if (roamedGrids.isNotEmpty()) {
|
||||
if (zoom >= GRID_ZOOM_SUB) {
|
||||
for (row in firstRow..lastRow) {
|
||||
val lat = row * cellLat
|
||||
if (lat < -90.0 || lat >= 90.0) continue
|
||||
val topLatCell = lat + cellLat
|
||||
if (topLatCell > 90.0) continue
|
||||
val yTop = projectionToY(projection, topLatCell) ?: continue
|
||||
val yBottom = projectionToY(projection, lat) ?: continue
|
||||
for (turn in -colRepeats..colRepeats) for (col in firstCol..lastCol) {
|
||||
val lon = col * cellLon
|
||||
val xLeftBase = projectionToX(projection, lon, centerLon, worldWidthPx) ?: continue
|
||||
val xRightBase = projectionToX(projection, lon + cellLon, centerLon, worldWidthPx) ?: continue
|
||||
val xLeft = xLeftBase + turn * worldWidthPx.toFloat()
|
||||
val xRight = xRightBase + turn * worldWidthPx.toFloat()
|
||||
if (xRight < 0f || xLeft > canvas.width) continue
|
||||
val label = cellLabel(lat, lon, zoom)
|
||||
if (label in roamedGrids && label != ownGrid) {
|
||||
drawStripes(canvas, xLeft, yTop, xRight, yBottom)
|
||||
}
|
||||
}
|
||||
}
|
||||
} else {
|
||||
for (grid in roamedGrids) {
|
||||
// The own grid keeps only its bold outline — no stripes.
|
||||
if (grid == ownGrid) continue
|
||||
val cell = gridCellBounds(grid) ?: continue
|
||||
for (turn in -colRepeats..colRepeats) {
|
||||
val dLon = turn * 360.0
|
||||
if (cell.lonRight + dLon <= leftLon || cell.lonLeft + dLon >= rightLon) continue
|
||||
val yTop = projectionToY(projection, cell.latTop) ?: continue
|
||||
val yBottom = projectionToY(projection, cell.latBottom) ?: continue
|
||||
val xLeftBase = projectionToX(projection, cell.lonLeft, centerLon, worldWidthPx) ?: continue
|
||||
val xRightBase = projectionToX(projection, cell.lonRight, centerLon, worldWidthPx) ?: continue
|
||||
val xLeft = xLeftBase + turn * worldWidthPx.toFloat()
|
||||
val xRight = xRightBase + turn * worldWidthPx.toFloat()
|
||||
if (xRight < 0f || xLeft > canvas.width) continue
|
||||
if (yBottom < 0f || yTop > canvas.height) continue
|
||||
drawStripes(canvas, xLeft, yTop, xRight, yBottom)
|
||||
}
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
// Vertical lines (meridians). Worked-grid cells are NOT excluded:
|
||||
// the boundary lines between adjacent worked squares must stay visible
|
||||
// so the grid structure remains readable (reverted 2026-09-09 — the
|
||||
@@ -225,22 +295,50 @@ class MaidenheadGridOverlay : Overlay() {
|
||||
// The station's own grid square: redraw its four borders thicker on top.
|
||||
// The tapped worked grid gets the same treatment in a different color.
|
||||
if (ownCell != null || selectedCell != null) {
|
||||
for (row in firstRow..lastRow) {
|
||||
val lat = row * cellLat
|
||||
if (lat < -90.0 || lat >= 90.0) continue
|
||||
for (col in firstCol..lastCol) {
|
||||
val lon = col * cellLon
|
||||
val label = cellLabel(lat, lon, zoom)
|
||||
if (label != ownCell && label != selectedCell) continue
|
||||
val yTop = projectionToY(projection, lat + cellLat) ?: continue
|
||||
val yBottom = projectionToY(projection, lat) ?: continue
|
||||
val xLeft = projectionToX(projection, lon, centerLon, worldWidthPx) ?: continue
|
||||
val xRight = projectionToX(projection, lon + cellLon, centerLon, worldWidthPx) ?: continue
|
||||
val paint = if (label == selectedCell) selectedLinePaint else ownLinePaint
|
||||
canvas.drawLine(xLeft, yTop, xRight, yTop, paint)
|
||||
canvas.drawLine(xLeft, yBottom, xRight, yBottom, paint)
|
||||
canvas.drawLine(xLeft, yTop, xLeft, yBottom, paint)
|
||||
canvas.drawLine(xRight, yTop, xRight, yBottom, paint)
|
||||
if (zoom >= GRID_ZOOM_SUB) {
|
||||
for (row in firstRow..lastRow) {
|
||||
val lat = row * cellLat
|
||||
if (lat < -90.0 || lat >= 90.0) continue
|
||||
for (col in firstCol..lastCol) {
|
||||
val lon = col * cellLon
|
||||
val label = cellLabel(lat, lon, zoom)
|
||||
if (label != ownCell && label != selectedCell) continue
|
||||
val yTop = projectionToY(projection, lat + cellLat) ?: continue
|
||||
val yBottom = projectionToY(projection, lat) ?: continue
|
||||
val xLeft = projectionToX(projection, lon, centerLon, worldWidthPx) ?: continue
|
||||
val xRight = projectionToX(projection, lon + cellLon, centerLon, worldWidthPx) ?: continue
|
||||
val paint = if (label == selectedCell) selectedLinePaint else ownLinePaint
|
||||
canvas.drawLine(xLeft, yTop, xRight, yTop, paint)
|
||||
canvas.drawLine(xLeft, yBottom, xRight, yBottom, paint)
|
||||
canvas.drawLine(xLeft, yTop, xLeft, yBottom, paint)
|
||||
canvas.drawLine(xRight, yTop, xRight, yBottom, paint)
|
||||
}
|
||||
}
|
||||
} else {
|
||||
// Field zoom: the visible grid shows 2-char fields only, but the
|
||||
// station's own 2°x1° square still gets its bold outline drawn
|
||||
// on top of the field grid (user req). selectedCell is null here.
|
||||
val grid = ownCell
|
||||
if (grid != null) {
|
||||
val cell = gridCellBounds(grid)
|
||||
if (cell != null) {
|
||||
for (turn in -colRepeats..colRepeats) {
|
||||
val dLon = turn * 360.0
|
||||
if (cell.lonRight + dLon <= leftLon || cell.lonLeft + dLon >= rightLon) continue
|
||||
val yTop = projectionToY(projection, cell.latTop) ?: continue
|
||||
val yBottom = projectionToY(projection, cell.latBottom) ?: continue
|
||||
val xLeftBase = projectionToX(projection, cell.lonLeft, centerLon, worldWidthPx) ?: continue
|
||||
val xRightBase = projectionToX(projection, cell.lonRight, centerLon, worldWidthPx) ?: continue
|
||||
val xLeft = xLeftBase + turn * worldWidthPx.toFloat()
|
||||
val xRight = xRightBase + turn * worldWidthPx.toFloat()
|
||||
if (xRight < 0f || xLeft > canvas.width) continue
|
||||
if (yBottom < 0f || yTop > canvas.height) continue
|
||||
canvas.drawLine(xLeft, yTop, xRight, yTop, ownLinePaint)
|
||||
canvas.drawLine(xLeft, yBottom, xRight, yBottom, ownLinePaint)
|
||||
canvas.drawLine(xLeft, yTop, xLeft, yBottom, ownLinePaint)
|
||||
canvas.drawLine(xRight, yTop, xRight, yBottom, ownLinePaint)
|
||||
}
|
||||
}
|
||||
}
|
||||
}
|
||||
}
|
||||
@@ -270,8 +368,14 @@ class MaidenheadGridOverlay : Overlay() {
|
||||
if (topLatCell > 90.0) continue
|
||||
val yTop = projectionToY(projection, topLatCell) ?: continue
|
||||
val yBottom = projectionToY(projection, lat) ?: continue
|
||||
val yCenter = (yTop + yBottom) / 2f - textHalfHeight
|
||||
if (yBottom < 0f || yTop > canvas.height) continue
|
||||
// Polar bands (80..90 / -90..-80) extend beyond the map's latitude
|
||||
// limit, so their geometric center falls off-screen and the label
|
||||
// would never be visible. Center the label in the VISIBLE part of
|
||||
// the cell instead; fully off-screen cells are still skipped.
|
||||
val visTop = maxOf(yTop, 0f)
|
||||
val visBottom = minOf(yBottom, canvas.height.toFloat())
|
||||
if (visBottom < 0f || visTop > canvas.height) continue
|
||||
val yCenter = (visTop + visBottom) / 2f - textHalfHeight
|
||||
for (turn in -colRepeats..colRepeats) for (col in firstCol..lastCol) {
|
||||
val lon = col * cellLon
|
||||
// World-repeat copies: keep the turn offset in pixels (same
|
||||
@@ -287,6 +391,26 @@ class MaidenheadGridOverlay : Overlay() {
|
||||
}
|
||||
}
|
||||
|
||||
/**
|
||||
* Draws 45° diagonal stripes (GridMaster-style zebra) clipped to the cell
|
||||
* rectangle, from top-left to bottom-right. The paint is nearly opaque so
|
||||
* stripes stay blue even over a green worked fill underneath.
|
||||
*/
|
||||
private fun drawStripes(canvas: Canvas, xLeft: Float, yTop: Float, xRight: Float, yBottom: Float) {
|
||||
if (xRight <= xLeft || yBottom <= yTop) return
|
||||
canvas.save()
|
||||
canvas.clipRect(xLeft, yTop, xRight, yBottom)
|
||||
val height = yBottom - yTop
|
||||
// Start one stripe-width left of the cell so the top-left corner is
|
||||
// always covered; each stripe runs from (x, top) to (x+height, bottom).
|
||||
var x = xLeft - height
|
||||
while (x < xRight) {
|
||||
canvas.drawLine(x, yTop, x + height, yBottom, roamStripePaint)
|
||||
x += STRIPE_SPACING_PX
|
||||
}
|
||||
canvas.restore()
|
||||
}
|
||||
|
||||
/** X pixel for a longitude (meridians are vertical in Web Mercator). */
|
||||
private fun projectionToX(projection: Projection, lon: Double, centerLon: Double, worldWidthPx: Double): Float? {
|
||||
// Do NOT use osmdroid's toPixels() here: at low zoom its wrap-around
|
||||
@@ -370,5 +494,7 @@ class MaidenheadGridOverlay : Overlay() {
|
||||
const val LABEL_ZOOM_SUB = 6.5
|
||||
const val MIN_LABEL_CELL_PX = 48f
|
||||
const val MAX_OVERSHOOT_PX = 64
|
||||
/** Center-to-center spacing of the roamed-grid zebra stripes, in px. */
|
||||
const val STRIPE_SPACING_PX = 16f
|
||||
}
|
||||
}
|
||||
@@ -157,8 +157,9 @@ 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 (null = "All" = plain worked-grid view).
|
||||
var selectedAward by remember { mutableStateOf<AwardType?>(null) }
|
||||
// Selected award filter. Entering grid mode defaults to VUCC (the plain
|
||||
// worked-grid view); the reset effect below re-asserts that on every entry.
|
||||
var selectedAward by remember { mutableStateOf<AwardType?>(AwardType.VUCC) }
|
||||
// Six-award progress derived from the confirmed QSO store; recomputed when
|
||||
// the store changes (LoTW/Wavelog sync).
|
||||
val awardProgress: List<AwardProgress> = remember(uiState.workedGridQsos) {
|
||||
@@ -192,6 +193,11 @@ 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
|
||||
@@ -249,8 +255,9 @@ private fun MapScreen(uiState: MapState, onAction: (MapAction) -> Unit, mapView:
|
||||
// stationPosition would swallow the centering forever.
|
||||
val shouldCenter = uiState.isGridMode && !prevGridMode
|
||||
setGridMode(
|
||||
uiState.isGridMode, uiState.workedGrids, view,
|
||||
if (shouldCenter) uiState.stationPosition else null
|
||||
uiState.isGridMode, uiState.workedGrids, uiState.roamedGrids, view,
|
||||
uiState.stationPosition,
|
||||
centerOnStation = shouldCenter
|
||||
)
|
||||
if (!shouldCenter || uiState.stationPosition != null) {
|
||||
prevGridMode = uiState.isGridMode
|
||||
@@ -383,7 +390,7 @@ private fun WorkedGridCallRow(
|
||||
)
|
||||
Text(
|
||||
text = if (expanded) " ▴" else " ▾",
|
||||
style = MaterialTheme.typography.bodySmall,
|
||||
fontSize = 18.sp,
|
||||
color = MaterialTheme.colorScheme.primary
|
||||
)
|
||||
}
|
||||
@@ -631,19 +638,26 @@ private fun setAwardMode(award: AwardType, workedCodes: Set<String>, mapView: Ma
|
||||
private fun setGridMode(
|
||||
gridMode: Boolean,
|
||||
workedGrids: Set<String>,
|
||||
roamedGrids: Set<String>,
|
||||
mapView: MapView,
|
||||
stationPosition: GeoPos?
|
||||
stationPosition: GeoPos?,
|
||||
centerOnStation: Boolean = false
|
||||
) {
|
||||
try {
|
||||
val gridOverlay = mapView.overlays[OVERLAY_GRID]
|
||||
if (gridOverlay is MaidenheadGridOverlay) {
|
||||
gridOverlay.isEnabled = gridMode
|
||||
gridOverlay.workedGrids = workedGrids
|
||||
gridOverlay.roamedGrids = roamedGrids
|
||||
// ownGrid must be set on EVERY update — the position is available
|
||||
// regardless of whether this frame centers (centering happens only
|
||||
// on entry, but passing null here would wipe the bold outline).
|
||||
gridOverlay.ownGrid = ownGridOf(stationPosition)
|
||||
} else {
|
||||
mapView.overlays[OVERLAY_GRID] = MaidenheadGridOverlay().apply {
|
||||
isEnabled = gridMode
|
||||
this.workedGrids = workedGrids
|
||||
this.roamedGrids = roamedGrids
|
||||
this.ownGrid = ownGridOf(stationPosition)
|
||||
}
|
||||
}
|
||||
@@ -657,7 +671,7 @@ private fun setGridMode(
|
||||
// first composition this runs before MapView's first layout, and a
|
||||
// setCenter issued pre-layout is discarded when the view lays out —
|
||||
// the map then keeps its default center forever.
|
||||
if (gridMode) {
|
||||
if (gridMode && centerOnStation) {
|
||||
val pos = stationPosition ?: return
|
||||
val lat = pos.latitude
|
||||
val lon = pos.longitude
|
||||
@@ -927,6 +941,11 @@ private fun rememberMapViewWithLifecycle(): MapView {
|
||||
MapView(context).apply {
|
||||
setMultiTouchControls(true)
|
||||
setUseDataConnection(false)
|
||||
// Vertical map repetition wraps points below the viewport up to the
|
||||
// top edge (osmdroid Y-wrap). Antarctica's full-circle ring then
|
||||
// draws a full-height artifact line whenever its X range crosses
|
||||
// the screen at low zoom. The map must never repeat vertically.
|
||||
setVerticalMapRepetitionEnabled(false)
|
||||
setTileSource(tileSource)
|
||||
minZoomLevel = getMinZoom(resources.displayMetrics.heightPixels, isVertical)
|
||||
maxZoomLevel = 7.0
|
||||
|
||||
@@ -29,6 +29,8 @@ data class MapState(
|
||||
val isGridMode: Boolean = false,
|
||||
val workedGrids: Set<String> = emptySet(),
|
||||
val workedGridQsos: Map<String, List<com.rtbishop.look4sat.core.domain.model.GridQso>> = emptyMap(),
|
||||
/** 4-char gridsquares the station operated from (LoTW MY_GRIDSQUARE) — blue stripes. */
|
||||
val roamedGrids: Set<String> = emptySet(),
|
||||
val stationPosition: GeoPos? = null,
|
||||
val orbitalPass: OrbitalPass,
|
||||
val track: List<List<GeoPos>>? = null,
|
||||
|
||||
@@ -82,7 +82,8 @@ class MapViewModel(
|
||||
_uiState.update {
|
||||
it.copy(
|
||||
workedGrids = settingsRepo.getWorkedGrids(),
|
||||
workedGridQsos = settingsRepo.getWorkedGridQsos()
|
||||
workedGridQsos = settingsRepo.getWorkedGridQsos(),
|
||||
roamedGrids = settingsRepo.getRoamedGrids()
|
||||
)
|
||||
}
|
||||
}
|
||||
|
||||
@@ -85,22 +85,20 @@ import java.util.TimeZone
|
||||
|
||||
@Composable
|
||||
fun PassesDestination(
|
||||
navigateToRadar: (Int, Long) -> Unit,
|
||||
navigateToMap: () -> Unit
|
||||
navigateToRadar: (Int, Long) -> Unit
|
||||
) {
|
||||
val context = LocalContext.current
|
||||
val container = (context.applicationContext as IContainerProvider).getMainContainer()
|
||||
val viewModel: PassesViewModel = viewModel(factory = PassesViewModel.factory(container))
|
||||
val uiState = viewModel.uiState.collectAsStateWithLifecycle().value
|
||||
PassesScreen(uiState, viewModel::onAction, navigateToRadar, navigateToMap)
|
||||
PassesScreen(uiState, viewModel::onAction, navigateToRadar)
|
||||
}
|
||||
|
||||
@Composable
|
||||
private fun PassesScreen(
|
||||
uiState: PassesState,
|
||||
onAction: (PassesAction) -> Unit,
|
||||
navigateToRadar: (Int, Long) -> Unit,
|
||||
navigateToMap: () -> Unit
|
||||
navigateToRadar: (Int, Long) -> Unit
|
||||
) {
|
||||
if (uiState.isPassesDialogShown) {
|
||||
PassesFilterDialog(
|
||||
@@ -158,7 +156,7 @@ private fun PassesScreen(
|
||||
TopBar(
|
||||
isVerticalLayout = isVerticalLayout,
|
||||
startAction = {
|
||||
IconCard(action = { onAction(PassesAction.TogglePassesDialog) }, resId = R.drawable.ic_filter)
|
||||
IconCard(action = { onAction(PassesAction.ToggleRadiosDialog) }, resId = R.drawable.ic_radios)
|
||||
},
|
||||
topInfo = {
|
||||
TimerRow(timeString = uiState.nextTime, isTimeAos = uiState.isNextTimeAos)
|
||||
@@ -167,7 +165,7 @@ private fun PassesScreen(
|
||||
NextPassRow(pass = uiState.nextPass, isUtc = uiState.isUtc)
|
||||
},
|
||||
endAction = {
|
||||
IconCard(action = navigateToMap, resId = R.drawable.ic_map)
|
||||
IconCard(action = { onAction(PassesAction.TogglePassesDialog) }, resId = R.drawable.ic_filter)
|
||||
}
|
||||
)
|
||||
}
|
||||
|
||||
@@ -84,7 +84,7 @@ private enum class RadarPage(val title: String) {
|
||||
}
|
||||
|
||||
@Composable
|
||||
fun RadarDestination(navigateUp: () -> Unit, navigateToMap: () -> Unit) {
|
||||
fun RadarDestination(navigateUp: () -> Unit) {
|
||||
val context = LocalContext.current
|
||||
val container = (context.applicationContext as IContainerProvider).getMainContainer()
|
||||
val viewModel: RadarViewModel = viewModel(factory = RadarViewModel.factory(container))
|
||||
@@ -96,12 +96,6 @@ fun RadarDestination(navigateUp: () -> Unit, navigateToMap: () -> Unit) {
|
||||
}
|
||||
navigateUp()
|
||||
}
|
||||
val navigateToMapAndClearMutual = {
|
||||
if (container.mutualPassData.value.endTime > 0L) {
|
||||
container.setMutualPassData(MutualPassData())
|
||||
}
|
||||
navigateToMap()
|
||||
}
|
||||
LaunchedEffect(mutualData.endTime) {
|
||||
if (mutualData.endTime <= 0L) return@LaunchedEffect
|
||||
while (true) {
|
||||
@@ -127,7 +121,7 @@ fun RadarDestination(navigateUp: () -> Unit, navigateToMap: () -> Unit) {
|
||||
viewModel.onAction(RadarAction.SstvPermissionResult(granted))
|
||||
viewModel.onAction(RadarAction.CwPermissionResult(granted))
|
||||
}
|
||||
RadarScreen(uiState, viewModel::onAction, navigateUpAndClearMutual, navigateToMapAndClearMutual, mutualData, requestMicPermission = {
|
||||
RadarScreen(uiState, viewModel::onAction, navigateUpAndClearMutual, mutualData, requestMicPermission = {
|
||||
permissionLauncher.launch(Manifest.permission.RECORD_AUDIO)
|
||||
})
|
||||
}
|
||||
@@ -137,11 +131,14 @@ private fun RadarScreen(
|
||||
uiState: RadarState,
|
||||
onAction: (RadarAction) -> Unit,
|
||||
navigateUp: () -> Unit,
|
||||
navigateToMap: () -> Unit,
|
||||
mutualData: MutualPassData,
|
||||
requestMicPermission: () -> Unit
|
||||
) {
|
||||
val upcomingPass = uiState.currentPass ?: getDefaultPass()
|
||||
// 日程功能: 把当前过境写入系统日历(原仓库的 addToCalendar, ic_calendar 按钮)
|
||||
val addToCalendar: () -> Unit = {
|
||||
uiState.currentPass?.let { onAction(RadarAction.AddToCalendar(it.name, it.aosTime, it.losTime)) }
|
||||
}
|
||||
// Station-B overlay: full track line (only where B's elevation > 0) + live position dot
|
||||
// at the current moment, same display mode as the local station.
|
||||
val trackB = remember(mutualData.trackSamples) {
|
||||
@@ -177,7 +174,7 @@ private fun RadarScreen(
|
||||
TopBar {
|
||||
IconCard(action = navigateUp, resId = R.drawable.ic_back)
|
||||
TimerRow(timeString = uiState.currentTime, isTimeAos = uiState.isTimeAos)
|
||||
IconCard(action = navigateToMap, resId = R.drawable.ic_map)
|
||||
IconCard(action = addToCalendar, resId = R.drawable.ic_calendar)
|
||||
}
|
||||
TopBar { NextPassRow(pass = upcomingPass, isUtc = uiState.isUtc) }
|
||||
} else {
|
||||
@@ -185,7 +182,7 @@ private fun RadarScreen(
|
||||
IconCard(action = navigateUp, resId = R.drawable.ic_back)
|
||||
TimerRow(timeString = uiState.currentTime, isTimeAos = uiState.isTimeAos)
|
||||
NextPassRow(pass = upcomingPass, modifier = Modifier.weight(1f), isUtc = uiState.isUtc)
|
||||
IconCard(action = navigateToMap, resId = R.drawable.ic_map)
|
||||
IconCard(action = addToCalendar, resId = R.drawable.ic_calendar)
|
||||
}
|
||||
}
|
||||
if (isVertical) {
|
||||
|
||||
+1
@@ -207,6 +207,7 @@ class SettingsViewModel(
|
||||
// synced set fully replaces the stored worked grids.
|
||||
settingsRepo.setWorkedGrids(result.grids)
|
||||
settingsRepo.setWorkedGridQsos(result.qsos)
|
||||
settingsRepo.setRoamedGrids(result.roamedGrids)
|
||||
_uiState.update { state ->
|
||||
state.copy(
|
||||
lotwSyncing = false, workedGridsCount = result.grids.size,
|
||||
|
||||
@@ -1,8 +1,8 @@
|
||||
[versions]
|
||||
#noinspection UnusedVersionCatalogEntry
|
||||
appVersionCode = "467"
|
||||
appVersionCode = "468"
|
||||
#noinspection UnusedVersionCatalogEntry
|
||||
appVersionName = "4.4.6-ba7opf.9.17"
|
||||
appVersionName = "4.4.6-ba7opf.10.2"
|
||||
#noinspection UnusedVersionCatalogEntry
|
||||
compileSdk = "37"
|
||||
#noinspection UnusedVersionCatalogEntry
|
||||
|
||||
Reference in new issue
Block a user