Minor refactoring and classes move

This commit is contained in:
Arty Bishop committed 2021-04-24 16:47:42 +01:00
1 parent e9a6471b6d
commit 9ffb793dfd
16 files changed
+141 -156

No files matched your search

@@ -23,6 +23,7 @@ import android.content.SharedPreferences
import android.hardware.SensorManager
import android.location.LocationManager
import androidx.preference.PreferenceManager
import com.rtbishop.look4sat.domain.predict4kotlin.QthConverter
import dagger.Module
import dagger.Provides
import dagger.hilt.InstallIn
@@ -33,6 +34,11 @@ import dagger.hilt.components.SingletonComponent
@InstallIn(SingletonComponent::class)
object ApplicationModule {
@Provides
fun provideQthConverter(): QthConverter {
return QthConverter()
}
@Provides
fun provideContentResolver(@ApplicationContext context: Context): ContentResolver {
return context.contentResolver
@@ -23,6 +23,8 @@ import com.rtbishop.look4sat.data.DefaultSatelliteRepo
import com.rtbishop.look4sat.data.LocalDataSource
import com.rtbishop.look4sat.data.RemoteDataSource
import com.rtbishop.look4sat.domain.SatelliteRepo
import com.rtbishop.look4sat.framework.api.NetworkDataSource
import com.rtbishop.look4sat.framework.api.SatelliteService
import com.rtbishop.look4sat.framework.db.RoomConverters
import com.rtbishop.look4sat.framework.db.RoomDataSource
import com.rtbishop.look4sat.framework.db.SatelliteDao
@@ -34,15 +36,17 @@ import dagger.hilt.InstallIn
import dagger.hilt.android.qualifiers.ApplicationContext
import dagger.hilt.components.SingletonComponent
import kotlinx.coroutines.CoroutineDispatcher
import retrofit2.Retrofit
import retrofit2.converter.moshi.MoshiConverterFactory
import javax.inject.Singleton
@Module
@InstallIn(SingletonComponent::class)
object LocalSourceModule {
object DataSourceModule {
@Provides
fun provideLocalDataSource(satelliteDao: SatelliteDao): LocalDataSource {
return RoomDataSource(satelliteDao)
fun provideMoshi(): Moshi {
return Moshi.Builder().build()
}
@Provides
@@ -56,8 +60,8 @@ object LocalSourceModule {
}
@Provides
fun provideMoshi(): Moshi {
return Moshi.Builder().build()
fun provideLocalDataSource(satelliteDao: SatelliteDao): LocalDataSource {
return RoomDataSource(satelliteDao)
}
@Provides
@@ -70,4 +74,18 @@ object LocalSourceModule {
RoomConverters.initialize(moshi)
return Room.databaseBuilder(context, SatelliteDb::class.java, "SatelliteDb").build()
}
@Provides
fun provideRemoteDataSource(satelliteService: SatelliteService): RemoteDataSource {
return NetworkDataSource(satelliteService)
}
@Provides
fun provideSatDataService(): SatelliteService {
return Retrofit.Builder()
.baseUrl("https://db.satnogs.org/api/")
.addConverterFactory(MoshiConverterFactory.create())
.build()
.create(SatelliteService::class.java)
}
}
@@ -1,3 +1,20 @@
/*
* Look4Sat. Amateur radio satellite tracker and pass predictor.
* Copyright (C) 2019-2021 Arty Bishop (bishop.arty@gmail.com)
*
* 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.di
import com.rtbishop.look4sat.domain.SatelliteRepo
@@ -1,47 +0,0 @@
/*
* Look4Sat. Amateur radio satellite tracker and pass predictor.
* Copyright (C) 2019-2021 Arty Bishop (bishop.arty@gmail.com)
*
* 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.di
import com.rtbishop.look4sat.data.RemoteDataSource
import com.rtbishop.look4sat.framework.api.NetworkDataSource
import com.rtbishop.look4sat.framework.api.SatelliteService
import dagger.Module
import dagger.Provides
import dagger.hilt.InstallIn
import dagger.hilt.components.SingletonComponent
import retrofit2.Retrofit
import retrofit2.converter.moshi.MoshiConverterFactory
@Module
@InstallIn(SingletonComponent::class)
object RemoteSourceModule {
@Provides
fun provideRemoteDataSource(satelliteService: SatelliteService): RemoteDataSource {
return NetworkDataSource(satelliteService)
}
@Provides
fun provideSatDataService(): SatelliteService {
return Retrofit.Builder()
.baseUrl("https://db.satnogs.org/api/")
.addConverterFactory(MoshiConverterFactory.create())
.build()
.create(SatelliteService::class.java)
}
}
@@ -91,7 +91,7 @@ class MapFragment : Fragment(R.layout.fragment_map) {
setInfoWindow(null)
setAnchor(Marker.ANCHOR_CENTER, Marker.ANCHOR_BOTTOM)
icon = ContextCompat.getDrawable(requireContext(), R.drawable.ic_map_pos)
position = GeoPoint(osmPos.lat, osmPos.lon)
position = GeoPoint(osmPos.latitude, osmPos.longitude)
mapView.overlays[0] = this
mapView.invalidate()
}
@@ -105,8 +105,8 @@ class MapFragment : Fragment(R.layout.fragment_map) {
altitude.text = String.format(getString(R.string.pat_altitude), sat.altitude)
distance.text = String.format(getString(R.string.pat_distance), sat.range)
velocity.text = String.format(getString(R.string.pat_osm_vel), sat.velocity)
mapLat.text = String.format(getString(R.string.pat_osm_lat), sat.osmPos.lat)
mapLon.text = String.format(getString(R.string.pat_osm_lon), sat.osmPos.lon)
mapLat.text = String.format(getString(R.string.pat_osm_lat), sat.osmPos.latitude)
mapLon.text = String.format(getString(R.string.pat_osm_lon), sat.osmPos.longitude)
mapView.overlays[1] = sat.groundTrack
mapView.overlays[2] = sat.footprint
mapView.invalidate()
@@ -127,7 +127,7 @@ class MapFragment : Fragment(R.layout.fragment_map) {
setTextIcon(it.key.tle.name)
setAnchor(Marker.ANCHOR_CENTER, Marker.ANCHOR_CENTER)
try {
position = GeoPoint(it.value.lat, it.value.lon)
position = GeoPoint(it.value.latitude, it.value.longitude)
} catch (e: IllegalArgumentException) {
Timber.d("Position: $position")
}
@@ -143,7 +143,7 @@ class MapFragment : Fragment(R.layout.fragment_map) {
setAnchor(Marker.ANCHOR_CENTER, Marker.ANCHOR_CENTER)
icon = ContextCompat.getDrawable(requireContext(), R.drawable.ic_map_sat)
try {
position = GeoPoint(it.value.lat, it.value.lon)
position = GeoPoint(it.value.latitude, it.value.longitude)
} catch (e: IllegalArgumentException) {
Timber.d("Position: $position")
}
@@ -23,6 +23,7 @@ import androidx.lifecycle.*
import com.rtbishop.look4sat.framework.model.SelectedSat
import com.rtbishop.look4sat.interactors.GetSelectedSatellites
import com.rtbishop.look4sat.domain.predict4kotlin.Position
import com.rtbishop.look4sat.domain.predict4kotlin.QthConverter
import com.rtbishop.look4sat.domain.predict4kotlin.SatPos
import com.rtbishop.look4sat.domain.predict4kotlin.Satellite
import com.rtbishop.look4sat.utility.*
@@ -71,7 +72,7 @@ class MapViewModel @Inject constructor(
fun getSatMarkers(): LiveData<Map<Satellite, Position>> = _satMarkers
val stationPosition = liveData {
emit(Position(gsp.lat.toOsmLat(), gsp.lon.toOsmLon()))
emit(Position(gsp.latitude.toOsmLat(), gsp.longitude.toOsmLon()))
}
init {
@@ -116,7 +117,7 @@ class MapViewModel @Inject constructor(
Math.toDegrees(satPos.latitude).toOsmLat(),
Math.toDegrees(satPos.longitude).toOsmLon()
)
val qthLoc = qthConverter.locationToQTH(osmPos.lat, osmPos.lon) ?: "-- --"
val qthLoc = qthConverter.positionToQTH(osmPos.latitude, osmPos.longitude) ?: "-- --"
val velocity = satPos.altitude.getOrbitalVelocity()
val footprint = getSatFootprint(satPos)
val track = getSatTrack(satellite)
@@ -149,7 +150,7 @@ class MapViewModel @Inject constructor(
Math.toDegrees(it.latitude).toOsmLat(),
Math.toDegrees(it.longitude).toOsmLon()
)
if (oldLon < -170.0 && osmPos.lon > 170.0 || oldLon > 170.0 && osmPos.lon < -170.0) {
if (oldLon < -170.0 && osmPos.longitude > 170.0 || oldLon > 170.0 && osmPos.longitude < -170.0) {
val currentPoints = mutableListOf<GeoPoint>()
currentPoints.addAll(trackPoints)
Polyline().apply {
@@ -159,8 +160,8 @@ class MapViewModel @Inject constructor(
}
trackPoints.clear()
}
oldLon = osmPos.lon
trackPoints.add(GeoPoint(osmPos.lat, osmPos.lon))
oldLon = osmPos.longitude
trackPoints.add(GeoPoint(osmPos.latitude, osmPos.longitude))
}
Polyline().apply {
outlinePaint.set(trackPaint)
@@ -173,8 +174,8 @@ class MapViewModel @Inject constructor(
private fun getSatFootprint(satPos: SatPos): Overlay {
val points = mutableListOf<GeoPoint>()
satPos.getRangeCircle().forEach {
val osmPos = Position(it.lat.toOsmLat(), it.lon.toOsmLon())
points.add(GeoPoint(osmPos.lat, osmPos.lon))
val osmPos = Position(it.latitude.toOsmLat(), it.longitude.toOsmLon())
points.add(GeoPoint(osmPos.latitude, osmPos.longitude))
}
return Polygon().apply {
fillPaint.set(footprintPaint)
@@ -32,7 +32,7 @@ import androidx.preference.PreferenceFragmentCompat
import com.google.android.material.snackbar.Snackbar
import com.rtbishop.look4sat.R
import com.rtbishop.look4sat.utility.PrefsManager
import com.rtbishop.look4sat.utility.QthConverter
import com.rtbishop.look4sat.domain.predict4kotlin.QthConverter
import com.rtbishop.look4sat.utility.round
import dagger.hilt.android.AndroidEntryPoint
import javax.inject.Inject
@@ -102,8 +102,8 @@ class PrefsFragment : PreferenceFragmentCompat() {
}
private fun setPositionFromQth(qthString: String): Boolean {
qthConverter.qthToLocation(qthString)?.let { gsp ->
prefsManager.setStationPosition(gsp.lat, gsp.lon, gsp.alt)
qthConverter.qthToPosition(qthString)?.let { gsp ->
prefsManager.setStationPosition(gsp.latitude, gsp.longitude, 0.0)
showSnack(getString(R.string.pref_pos_success))
return true
}
@@ -21,7 +21,7 @@ import android.content.SharedPreferences
import android.hardware.GeomagneticField
import androidx.core.content.edit
import com.rtbishop.look4sat.framework.model.TleSource
import com.rtbishop.look4sat.domain.predict4kotlin.GroundPos
import com.rtbishop.look4sat.domain.predict4kotlin.StationPosition
import com.squareup.moshi.Moshi
import com.squareup.moshi.Types
import javax.inject.Inject
@@ -60,12 +60,12 @@ class PrefsManager @Inject constructor(val preferences: SharedPreferences, moshi
return preferences.getInt(keyMinElevation, 16).toDouble()
}
fun getStationPosition(): GroundPos {
fun getStationPosition(): StationPosition {
val defaultGSP = "0.0"
val latitude = preferences.getString(keyLatitude, null) ?: defaultGSP
val longitude = preferences.getString(keyLongitude, null) ?: defaultGSP
val altitude = preferences.getString(keyAltitude, null) ?: defaultGSP
return GroundPos(latitude.toDouble(), longitude.toDouble(), altitude.toDouble())
return StationPosition(latitude.toDouble(), longitude.toDouble(), altitude.toDouble())
}
fun setStationPosition(latitude: Double, longitude: Double, altitude: Double) {
@@ -78,9 +78,9 @@ class PrefsManager @Inject constructor(val preferences: SharedPreferences, moshi
fun getMagDeclination(): Float {
val stationPosition = getStationPosition()
val lat = stationPosition.lat.toFloat()
val lon = stationPosition.lon.toFloat()
val alt = stationPosition.alt.toFloat()
val lat = stationPosition.latitude.toFloat()
val lon = stationPosition.longitude.toFloat()
val alt = stationPosition.altitude.toFloat()
return GeomagneticField(lat, lon, alt, System.currentTimeMillis()).declination
}
@@ -32,14 +32,14 @@ class DefaultSatelliteRepo(
}
override suspend fun importDataFromFile(stream: InputStream) = withContext(ioDispatcher) {
val entries = Satellite.importTLE(stream).map { tle -> SatEntry(tle) }
localSource.updateEntries(entries)
val importedEntries = Satellite.importElements(stream).map { tle -> SatEntry(tle) }
localSource.updateEntries(importedEntries)
}
override suspend fun importDataFromWeb(sources: List<String>) {
coroutineScope {
launch(ioDispatcher) {
val entries = mutableListOf<SatEntry>()
val importedEntries = mutableListOf<SatEntry>()
val streams = mutableListOf<InputStream>()
sources.forEach { source ->
remoteSource.fetchFileStream(source)?.let { stream ->
@@ -52,10 +52,10 @@ class DefaultSatelliteRepo(
}
}
streams.forEach { stream ->
val importedEntries = Satellite.importTLE(stream).map { tle -> SatEntry(tle) }
entries.addAll(importedEntries)
val entries = Satellite.importElements(stream).map { tle -> SatEntry(tle) }
importedEntries.addAll(entries)
}
localSource.updateEntries(entries)
localSource.updateEntries(importedEntries)
}
launch(ioDispatcher) {
val transmitters = remoteSource.fetchTransmitters().filter { it.isAlive }
@@ -19,7 +19,7 @@ package com.rtbishop.look4sat.domain.predict4kotlin
import java.util.*
class PassPredictor(private val satellite: Satellite, private val qth: GroundPos) {
class PassPredictor(private val satellite: Satellite, private val gsp: StationPosition) {
private val oneQuarterOrbitMin = (24.0 * 60.0 / satellite.tle.meanmo / 4.0).toInt()
private val speedOfLight = 2.99792458E8
@@ -35,7 +35,7 @@ class PassPredictor(private val satellite: Satellite, private val qth: GroundPos
}
fun getSatPos(date: Date): SatPos {
return satellite.getPosition(qth, date)
return satellite.getPosition(gsp, date)
}
fun getPositions(refDate: Date, stepSec: Int, minBefore: Int, orbits: Double): List<SatPos> {
@@ -58,7 +58,7 @@ class PassPredictor(private val satellite: Satellite, private val qth: GroundPos
var shouldWindBack = windBack
var lastAosDate: Date
var count = 0
if (satellite.willBeSeen(qth)) {
if (satellite.willBeSeen(gsp)) {
if (satellite.tle.isDeepspace) {
passes.add(nextDeepSpacePass(refDate))
} else {
@@ -17,4 +17,4 @@
*/
package com.rtbishop.look4sat.domain.predict4kotlin
data class Position(val lat: Double, val lon: Double)
data class Position(val latitude: Double, val longitude: Double)
@@ -15,14 +15,13 @@
* 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.utility
package com.rtbishop.look4sat.domain.predict4kotlin
import com.rtbishop.look4sat.domain.predict4kotlin.GroundPos
import javax.inject.Inject
import kotlin.math.round
class QthConverter @Inject constructor() {
class QthConverter {
fun qthToLocation(qthString: String): GroundPos? {
fun qthToPosition(qthString: String): Position? {
val trimmedQth = qthString.take(6)
if (!isValidQTH(trimmedQth)) return null
val lonFirst = (trimmedQth[0].toUpperCase().toInt() - 65) * 20
@@ -31,13 +30,13 @@ class QthConverter @Inject constructor() {
val latSecond = trimmedQth[3].toString().toInt()
val lonThird = (((trimmedQth[4].toLowerCase().toInt() - 97) / 12.0) + (1.0 / 24.0)) - 180
val latThird = (((trimmedQth[5].toLowerCase().toInt() - 97) / 24.0) + (1.0 / 48.0)) - 90
val longitude = (lonFirst + lonSecond + lonThird).round(4)
val latitude = (latFirst + latSecond + latThird).round(4)
return GroundPos(latitude, longitude, 0.0)
val longitude = (lonFirst + lonSecond + lonThird).roundToDecimals(4)
val latitude = (latFirst + latSecond + latThird).roundToDecimals(4)
return Position(latitude, longitude)
}
fun locationToQTH(lat: Double, lon: Double): String? {
if (!isValidLocation(lat, lon)) return null
fun positionToQTH(lat: Double, lon: Double): String? {
if (!isValidPosition(lat, lon)) return null
val tempLon = if (lon > 180.0) lon - 360 else lon
val upper = "ABCDEFGHIJKLMNOPQRSTUVWX"
val lower = "abcdefghijklmnopqrstuvwx"
@@ -57,7 +56,13 @@ class QthConverter @Inject constructor() {
return qthString.matches(qthPattern)
}
private fun isValidLocation(lat: Double, lon: Double): Boolean {
private fun isValidPosition(lat: Double, lon: Double): Boolean {
return (lat > -90.0 && lat < 90.0) && (lon > -180.0 && lon < 360.0)
}
private fun Double.roundToDecimals(decimals: Int): Double {
var multiplier = 1.0
repeat(decimals) { multiplier *= 10 }
return round(this * multiplier) / multiplier
}
}
@@ -22,39 +22,28 @@ import kotlin.math.*
class SatPos {
private val earthRadiusKm = 6.378137E3
private val r0 = 6378.16
private val earthRadiusKm = 6378.16
// Radians
var azimuth = 0.0
var elevation = 0.0
var latitude = 0.0
var longitude = 0.0
var time = Date()
var altitude = 0.0
var range = 0.0
var rangeRate = 0.0
var phase = 0.0
var altitude = 0.0
var theta = 0.0
var eclipseDepth = 0.0
var eclipsed = false
var aboveHorizon = false
fun getDate(): Date {
return Date(time.time)
}
var time = Date()
fun getRangeCircleRadiusKm(): Double {
return 0.5 * (12756.33 * acos(earthRadiusKm / (earthRadiusKm + altitude)))
return earthRadiusKm * acos(earthRadiusKm / (earthRadiusKm + altitude))
}
fun getRangeCircle(incrementDegrees: Double = 1.0): List<Position> {
val positions = mutableListOf<Position>()
val radiusKm = this.getRangeCircleRadiusKm()
val lat = this.latitude
val lon = this.longitude
val beta = radiusKm / r0
val beta = getRangeCircleRadiusKm() / earthRadiusKm
var tempAzimuth = 0
while (tempAzimuth < 360) {
val azimuth = tempAzimuth / 360.0 * 2.0 * Math.PI
@@ -76,22 +65,8 @@ class SatPos {
}
while (rangelon < 0.0) rangelon += Math.PI * 2.0
while (rangelon > Math.PI * 2.0) rangelon -= Math.PI * 2.0
rangelat = (rangelat / (2.0 * Math.PI)) * 360.0
rangelon = (rangelon / (2.0 * Math.PI)) * 360.0
// if (rangelong < 180.0) {
// rangelong = -rangelong;
// }
// else if (rangelong > 180.0) {
// rangelong = 360.0 - rangelong;
// }
//
// if (rangelat < 90.0) {
// rangelat = -rangelat;
// }
// else if (rangelat > 90.0) {
// rangelat = 180.0 - rangelat;
// }
rangelat = Math.toDegrees(rangelat)
rangelon = Math.toDegrees(rangelon)
positions.add(Position(rangelat, rangelon))
tempAzimuth += incrementDegrees.toInt()
}
@@ -42,21 +42,21 @@ abstract class Satellite(val tle: TLE) {
var s4 = 0.0
val xke = 7.43669161E-2
fun willBeSeen(pos: GroundPos): Boolean {
fun willBeSeen(pos: StationPosition): Boolean {
return if (tle.meanmo < 1e-8) false else {
var lin = tle.incl
if (lin >= 90.0) lin = 180.0 - lin
val sma = 331.25 * exp(ln(1440.0 / tle.meanmo) * (2.0 / 3.0))
val apogee = sma * (1.0 + tle.eccn) - earthRadius
acos(earthRadius / (apogee + earthRadius)) + lin * deg2Rad > abs(pos.lat * deg2Rad)
acos(earthRadius / (apogee + earthRadius)) + lin * deg2Rad > abs(pos.latitude * deg2Rad)
}
}
fun getPredictor(pos: GroundPos): PassPredictor {
fun getPredictor(pos: StationPosition): PassPredictor {
return PassPredictor(this, pos)
}
fun getPosition(pos: GroundPos, time: Date): SatPos {
fun getPosition(pos: StationPosition, time: Date): SatPos {
val satPos = SatPos()
// Date/time at which the position and velocity were calculated
val julUTC = calcCurrentDaynum(time) + 2444238.5
@@ -121,7 +121,7 @@ abstract class Satellite(val tle: TLE) {
julianUTC: Double,
positionVector: Vector4,
velocityVector: Vector4,
gsPos: GroundPos,
gsPos: StationPosition,
squintVector: Vector4,
satPos: SatPos
) {
@@ -144,8 +144,8 @@ abstract class Satellite(val tle: TLE) {
velocityVector.z - obsVel.z
)
magnitude(range)
val sinLat = sin(deg2Rad * gsPos.lat)
val cosLat = cos(deg2Rad * gsPos.lat)
val sinLat = sin(deg2Rad * gsPos.latitude)
val cosLat = cos(deg2Rad * gsPos.latitude)
val sinTheta = sin(gsPosTheta.get())
val cosTheta = cos(gsPosTheta.get())
val topS = sinLat * cosTheta * range.x + sinLat * sinTheta * range.y - cosLat * range.z
@@ -163,20 +163,20 @@ abstract class Satellite(val tle: TLE) {
// Returns the ECI position and velocity of the observer
private fun calculateUserPosVel(
time: Double,
gsPos: GroundPos,
gsPos: StationPosition,
gsPosTheta: AtomicReference<Double>,
obsPos: Vector4,
obsVel: Vector4
) {
val mFactor = 7.292115E-5
gsPosTheta.set(mod2PI(thetaGJD(time) + deg2Rad * gsPos.lon))
gsPosTheta.set(mod2PI(thetaGJD(time) + deg2Rad * gsPos.longitude))
val c =
invert(sqrt(1.0 + flatFactor * (flatFactor - 2) * sqr(sin(deg2Rad * gsPos.lat))))
invert(sqrt(1.0 + flatFactor * (flatFactor - 2) * sqr(sin(deg2Rad * gsPos.latitude))))
val sq = sqr(1.0 - flatFactor) * c
val achcp = (earthRadius * c + gsPos.alt / 1000.0) * cos(deg2Rad * gsPos.lat)
val achcp = (earthRadius * c + gsPos.altitude / 1000.0) * cos(deg2Rad * gsPos.latitude)
obsPos.setXYZ(
achcp * cos(gsPosTheta.get()), achcp * sin(gsPosTheta.get()),
(earthRadius * sq + gsPos.alt / 1000.0) * sin(deg2Rad * gsPos.lat)
(earthRadius * sq + gsPos.altitude / 1000.0) * sin(deg2Rad * gsPos.latitude)
)
obsVel.setXYZ(-mFactor * obsPos.y, mFactor * obsPos.x, 0.0)
magnitude(obsPos)
@@ -357,9 +357,9 @@ abstract class Satellite(val tle: TLE) {
}
}
fun importTLE(tleStream: InputStream): List<TLE> {
val importedTles = mutableListOf<TLE>()
fun importElements(tleStream: InputStream): List<TLE> {
val currentTLE = arrayOf(String(), String(), String())
val importedTles = mutableListOf<TLE>()
var line = 0
tleStream.bufferedReader().forEachLine {
if (line != 2) {
@@ -367,14 +367,16 @@ abstract class Satellite(val tle: TLE) {
line++
} else {
currentTLE[line] = it
importedTles.add(parseTLE(currentTLE))
parseElement(currentTLE)?.let { tle -> importedTles.add(tle) }
line = 0
}
}
return importedTles
}
private fun parseTLE(tle: Array<String>): TLE {
private fun parseElement(tle: Array<String>): TLE? {
if (tle.size != 3) return null
try {
val name: String = tle[0].trim()
val epoch: Double = tle[1].substring(18, 32).toDouble()
val meanmo: Double = tle[2].substring(52, 63).toDouble()
@@ -387,6 +389,9 @@ abstract class Satellite(val tle: TLE) {
val bstar: Double = 1.0e-5 * tle[1].substring(53, 59).toDouble() /
10.0.pow(tle[1].substring(60, 61).toDouble())
return TLE(name, epoch, meanmo, eccn, incl, raan, argper, meanan, catnum, bstar)
} catch (exception: Exception) {
return null
}
}
}
}
@@ -17,4 +17,9 @@
*/
package com.rtbishop.look4sat.domain.predict4kotlin
data class GroundPos(val lat: Double, val lon: Double, val alt: Double, val name: String = "base")
data class StationPosition(
val latitude: Double,
val longitude: Double,
val altitude: Double,
val name: String = "base"
)
@@ -17,7 +17,7 @@
*/
package com.rtbishop.look4sat
import com.rtbishop.look4sat.utility.QthConverter
import com.rtbishop.look4sat.domain.predict4kotlin.QthConverter
import org.junit.Test
class QthConverterTest {
@@ -26,35 +26,35 @@ class QthConverterTest {
@Test
fun `Given valid QTH returns correct location`() {
var result = converter.qthToLocation("io91VL39FX")
var result = converter.qthToPosition("io91VL39FX")
assert(result?.latitude == 51.4792 && result.longitude == -0.2083)
result = converter.qthToLocation("JN58TD")
result = converter.qthToPosition("JN58TD")
assert(result?.latitude == 48.1458 && result.longitude == 11.6250)
result = converter.qthToLocation("gf15vc")
result = converter.qthToPosition("gf15vc")
assert(result?.latitude == -34.8958 && result.longitude == -56.2083)
result = converter.qthToLocation("fm18LW")
result = converter.qthToPosition("fm18LW")
assert(result?.latitude == 38.9375 && result.longitude == -77.0417)
}
@Test
fun `Given invalid QTH returns null`() {
var result = converter.qthToLocation("ZZ00zz")
var result = converter.qthToPosition("ZZ00zz")
assert(result == null)
result = converter.qthToLocation("JN58tz")
result = converter.qthToPosition("JN58tz")
assert(result == null)
}
@Test
fun `Given valid location returns correct QTH`() {
assert(converter.locationToQTH(51.4878, -0.2146) == "IO91vl")
assert(converter.locationToQTH(48.1466, 11.6083) == "JN58td")
assert(converter.locationToQTH(-34.91, -56.2116) == "GF15vc")
assert(converter.locationToQTH(38.92, -77.065) == "FM18lw")
assert(converter.positionToQTH(51.4878, -0.2146) == "IO91vl")
assert(converter.positionToQTH(48.1466, 11.6083) == "JN58td")
assert(converter.positionToQTH(-34.91, -56.2116) == "GF15vc")
assert(converter.positionToQTH(38.92, -77.065) == "FM18lw")
}
@Test
fun `Given invalid location returns null`() {
assert(converter.locationToQTH(91.0542, -170.1142) == null)
assert(converter.locationToQTH(89.0542, -240.1142) == null)
assert(converter.positionToQTH(91.0542, -170.1142) == null)
assert(converter.positionToQTH(89.0542, -240.1142) == null)
}
}