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46 Commits
Author SHA1 Message Date
Arty Bishop 782b438a07 v4.4.8 - Fuzzy satellites search, light theme, various fixes 2026-09-27 14:23:02 +01:00
Michael S fac319b215 Fixed IC-705 frequency read in dual-radio mode (#260) 2026-09-27 10:45:21 +01:00
Ondrej KolonicnyandClaude Opus 4.8 b7ac9c913a Added light theme option suitable for e-ink devices (#256)
Co-authored-by: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
2026-09-19 11:35:42 +01:00
atsunatsuandatsunatsu de3d5a6d84 Added fuzzy satellite name search ignoring separators (#255)
Co-authored-by: atsunatsu <atsunatsu@users.noreply.github.com>
2026-09-19 11:13:39 +01:00
atsunatsuandatsunatsu 5e39c945b2 Applied user elevation color thresholds to the radar page (#253)
Co-authored-by: atsunatsu <atsunatsu@users.noreply.github.com>
2026-09-19 11:10:50 +01:00
wty2019wtyanddependabot[bot] 1d07f76ada Fixed the AOS window filter so it follows the UTC setting (#252)
Signed-off-by: dependabot[bot] <support@github.com>
Co-authored-by: dependabot[bot] <49699333+dependabot[bot]@users.noreply.github.com>
2026-09-19 11:03:05 +01:00
Arty Bishop d471f02370 v4.4.7 - Data import overhaul, AMSAT reports, Map tweaks 2026-09-13 20:26:27 +01:00
Arty Bishop 9699d142fa Fixed RadarScreen padding, implemented basic Detekt setup 2026-09-13 17:29:38 +01:00
Arty Bishop 6f3e3351c9 Tweaked data source management, migrated DB and Settings 2026-09-13 15:19:23 +01:00
Arty Bishop d4a2fae0cd Updated dependencies and gradle plugin, minor fixes 2026-09-12 11:40:59 +01:00
dependabot[bot] d0bbb97f29 Bump actions/setup-java from 5 to 6 (#249)
Signed-off-by: dependabot[bot] <support@github.com>
Co-authored-by: dependabot[bot] <49699333+dependabot[bot]@users.noreply.github.com>
2026-09-03 08:40:23 +01:00
atsunatsuandatsunatsu c2fc5688b9 Added AMSAT satellite status reports submission (#248)
Co-authored-by: atsunatsu <atsunatsu@users.noreply.github.com>
2026-09-03 08:39:34 +01:00
TianhengZhuang 796056a582 Extracted hardcoded UI strings to resources (en/zh) (#247) 2026-09-02 09:08:37 +01:00
atsunatsuandatsunatsu 9cac33dae7 Localized AMSAT status screen for Chinese (#245)
Co-authored-by: atsunatsu <atsunatsu@users.noreply.github.com>
2026-09-02 09:05:45 +01:00
wty2019wty 082266e385 Overhauled data source management, added HTTP status (#242) 2026-08-21 14:11:30 +02:00
atsunatsuandatsunatsu a42a5f1f0d Tweaked sunrise/sunset calculations, added unit tests (#241)
Co-authored-by: atsunatsu <atsunatsu@users.noreply.github.com>
2026-08-19 14:46:39 +02:00
Arty Bishop 7cdc2952dc v4.4.6 - AMSAT status page, fully customizable data sources 2026-08-13 09:47:26 +02:00
Arty Bishop bd51044690 Added custom frequency offset setting to network reporting 2026-08-12 20:17:26 +02:00
PingouinFerreux 1982c2d3dc Fixed broken star history chart in README (#240) 2026-08-12 18:22:53 +02:00
Arty Bishop 2f4e3f5802 Added the ability to fully customize data sources via import 2026-08-12 13:01:45 +02:00
Arty Bishop 24eebdef74 Consolidated app dialogs and tweaked bottom sheets 2026-08-11 14:14:14 +02:00
Arty Bishop 3f5b48f270 Integrated the AMSAT status page created by MCKero6423 2026-08-11 14:05:55 +02:00
atsunatsuandatsunatsu 060fa2dfcd Added remembering per-satellite doppler offset (#237)
Co-authored-by: atsunatsu <atsunatsu@users.noreply.github.com>
2026-08-11 14:02:15 +02:00
atsunatsuandatsunatsu 8b5960282f Broaden linear transponder detection, logic fixes (#236)
Co-authored-by: atsunatsu <atsunatsu@users.noreply.github.com>
2026-08-08 21:31:44 +02:00
mckero 10eb84690e Added AMSAT satellite status tracking page (#234) 2026-08-08 14:26:36 +02:00
bf25292bf8 Fixed recalculating Radar track on station position change (#235)
Co-authored-by: atsunatsu <atsunatsu@users.noreply.github.com>
Co-authored-by: wty2019wty <74123961+wty2019wty@users.noreply.github.com>
2026-08-08 14:10:55 +02:00
Arty Bishop 8fbfcb3712 v4.4.5 - Pass progress hotfix, swapped modes/filter dialogs 2026-08-05 13:14:50 +02:00
Arty Bishop 602b1553a2 v4.4.4 - Icom CAT, components, filters and sources tweaks 2026-08-04 20:51:22 +02:00
atsunatsuandatsunatsu bd0881fb4b Added linear transponder Doppler calculator (#232)
Co-authored-by: atsunatsu <atsunatsu@users.noreply.github.com>
2026-08-04 18:45:12 +02:00
atsunatsuandatsunatsu a9dd3e6e55 Localized pass date and time formats for Chinese (#231)
Co-authored-by: atsunatsu <atsunatsu@users.noreply.github.com>
2026-08-04 18:12:10 +02:00
Lukas 905995ab44 Added configurable Radar offset to the sensors output (#230) 2026-08-04 18:08:44 +02:00
Arty Bishop f9806d7f7f Replaced the types selection dialog with modes selection 2026-07-31 16:04:39 +02:00
Arty Bishop 2d3adfc6a6 Added small tweaks to Sources, Components and strings 2026-07-31 12:27:25 +02:00
Arty Bishop f585372594 Added cleartext traffic support for custom TLE URLs #227 2026-07-30 17:15:02 +02:00
Arty Bishop 4585332b1a Fixed manual OMM (.csv) data import, tweaked messaging 2026-07-30 15:56:50 +02:00
Arty Bishop 6d2b0ced49 Implemented AOS window and elevation highlight filters 2026-07-30 13:28:37 +02:00
Arty Bishop e86bc2c700 Added a few tweaks to SSTV sensitivity and reception 2026-07-30 12:01:54 +02:00
Arty Bishop 9a52fdfde5 Added support for Icom IC-705 CAT (#229) 2026-07-30 11:43:03 +02:00
Rui Oliveira 07504a2a95 Add the option to override the frequency from the radio 2026-07-24 20:29:51 +01:00
Rui Oliveira 81525b6dd3 Map AFSK (e.g. ISS APRS) to FM 2026-07-24 20:10:37 +01:00
Rui Oliveira c7089ab314 Fix setting the mode (e.g. FM, USB, LSB) 2026-07-24 20:10:10 +01:00
Rui Oliveira 77dfb7bb05 Remove PTT-aware logic, which is not necessary
I was setting the Tx frequency only when we were
in Tx mode, but the Icom 705 will accept the
command to set the Tx frequency even when in Rx mode, so
there is no need to check the PTT state before sending the command.
2026-07-24 20:09:43 +01:00
Rui Oliveira 58fb688593 Fix bugs in setting the Tx frequency
Uses 0x25 01 command to set the Tx frequency,
which is the correct command when in split mode.
2026-07-24 20:09:01 +01:00
Rui Oliveira dc596b4348 Fix bugs in setting Rx frequency 2026-07-24 20:08:46 +01:00
Rui Oliveira f9b1a97a37 Refactor "Disconnect" and "Track" logic 2026-07-24 20:08:23 +01:00
Rui Oliveira d700432829 Add initial support for Icom IC-705 radio
- Added support for Icom IC-705 radio model with split mode functionality.
- Updated RadioTrackingService to handle single-radio split mode and dual-radio configurations.
- Modified MainContainer to provide appropriate radio controllers based on selected model.
- Enhanced SettingsRepo to include split mode preference in radio control settings.
- Updated UI in SettingsDialog to allow toggling of split mode for IC-705 and adjust device selection accordingly.
- Improved handling of baud rates based on selected radio model.
- Added extended operations in IRadioController for IC-705 specific commands.
2026-07-24 20:07:11 +01:00
108 changed files with 9334 additions and 1459 deletions

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+4
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@@ -4,3 +4,7 @@ updates:
directory: "/" directory: "/"
schedule: schedule:
interval: "weekly" interval: "weekly"
- package-ecosystem: "bundler"
directory: "/"
schedule:
interval: "never"
+1 -1
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@@ -19,7 +19,7 @@ jobs:
uses: actions/checkout@v7 uses: actions/checkout@v7
- name: Setup Java - name: Setup Java
uses: actions/setup-java@v5 uses: actions/setup-java@v6
with: with:
distribution: 'temurin' distribution: 'temurin'
java-version: '21' java-version: '21'
+1
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@@ -64,3 +64,4 @@ fastlane/readme.md
/app/release/output-metadata.json /app/release/output-metadata.json
/app/release/ /app/release/
/.kotlin/sessions/ /.kotlin/sessions/
.hermes/
+48 -49
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@@ -8,16 +8,15 @@ All assistant-specific files (`CLAUDE.md`, `.github/copilot-instructions.md`) po
## Project Overview ## Project Overview
Look4Sat is an open-source, fully offline Android satellite tracker and pass predictor. It tracks 9000+ active Look4Sat is an open-source, fully offline Android satellite tracker and pass predictor. It tracks 9000+ active
satellites using TLE/OMM data from Celestrak/SatNOGS, calculates orbital positions via SGP4/SDP4 models, and displays satellites using Celestrak/SatNOGS orbital data, calculates positions via SGP4/SDP4, and predicts passes relative to
passes relative to the user's location. Features include polar radar visualization, SSTV image decoding, satellite the user's location. Features include polar radar visualization, SSTV image decoding, and ground track mapping. No ads,
ground track mapping, and pass predictions up to 10 days ahead. No ads, no tracking, no network required after initial no tracking, no network required after initial data download.
data download.
## Architecture ## Architecture & Design
**MVI (Model-View-Intent)** with unidirectional data flow: **MVI (Model-View-Intent)** with unidirectional data flow:
- `State` data class → exposed via `StateFlow` from ViewModel - `State` data class (named `<Feature>State`) exposed via `StateFlow` from ViewModel
- `Action` sealed interface → user intents dispatched to ViewModel's `onAction()` - `Action` sealed interface (named `<Feature>Action`) dispatched to ViewModel's `onAction()`
- Jetpack Compose UI observes state and recomposes reactively - Jetpack Compose UI observes state and recomposes reactively
**Clean Architecture layers:** **Clean Architecture layers:**
@@ -34,9 +33,11 @@ data download.
| `feature:satellites` | Satellite list, filtering, selection | | `feature:satellites` | Satellite list, filtering, selection |
| `feature:settings` | User preferences | | `feature:settings` | User preferences |
- `feature:*` modules depend only on `core:domain` + `core:presentation`. Features never depend on each other. **Feature isolation:**
- `feature:*` modules depend only on `core:domain` and `core:presentation`.
- No feature-to-feature dependencies; cross-feature communication goes through core layers.
## Build & Run ## Build & Platform
```shell ```shell
# Debug build # Debug build
@@ -50,54 +51,55 @@ data download.
``` ```
- **Min SDK**: 24 | **Target SDK**: 36 | **JDK**: 17 - **Min SDK**: 24 | **Target SDK**: 36 | **JDK**: 17
- **Gradle**: Uses version catalog (`gradle/libs.versions.toml`) + convention plugins in `build-logic/` - **Gradle**: Version catalog in `gradle/libs.versions.toml` + convention plugins in `build-logic/`
## Key Libraries ## Tech Stack
- **Compose** (BOM 2026.05.01) + Material3 Adaptive - **Compose** (BOM 2026.05.01) + Material3 Adaptive
- **Navigation3** (type-safe, uses `@Serializable` NavKeys) - **Navigation3**: Type-safe navigation with `@Serializable` nav keys
- **Room** (KSP code generation) for local satellite/TLE storage - **Room** (KSP code generation) for local satellite/orbital storage
- **OkHttp** 5.x for TLE downloads - **OkHttp** 5.x for data downloads
- **OSMDroid** for map rendering - **OSMDroid** for map rendering
- **Kotlin Serialization** for navigation args and data parsing - **Kotlin Serialization** for navigation args and parsing
- **Coroutines** + `StateFlow` for async/reactive patterns - **Coroutines** + `StateFlow` for async/reactive patterns
- **Localization**: 7 languages (en, es, ru, si, tr, uk, zh)
## Conventions
- **Minimal dependencies**: Avoid adding libraries when a simple manual solution exists. Fewer deps = less maintenance.
- **DI**: Manual — ViewModels use companion `factory()` methods with `IMainContainer` interface.
- **Navigation**: Type-safe Compose Navigation3 with `@Serializable` data classes as nav keys.
- **State naming**: `<Feature>State` data class + `<Feature>Action` sealed interface per feature.
- **No feature-to-feature deps**: All cross-feature communication goes through core layers.
- **Localization**: 7 languages (en, es, ru, si, tr, uk, zh).
## Data Formats & Migration ## Data Formats & Migration
**TLE vs. OMM/CSV format:** Look4Sat supports both TLE and OMM (Orbit Mean-Elements Message) CSV formats:
Look4Sat supports both TLE and OMM (Orbit Mean-Elements Message) formats for backward compatibility: - **TLE format**: Legacy 3-line element format limited by 5-digit NORAD IDs
- **OMM/CSV format**: Successor format with ISO 8601 timestamps and larger NORAD ID support
- New 5-digit NORAD IDs are exhausted; TLE is officially deprecated and OMM/CSV is the clear default
- `DataParser.kt` supports both via `parseTLEStream()` and `parseCSVStream()`
- Downloads auto-detect format; both produce identical `OrbitalData` objects
- Existing code already supports transparent source transition without feature changes
- Refresh orbital data weekly for accurate pass prediction (orbital decay)
- **TLE format**: Traditional 3-line element format (deprecated). NORAD catalog numbers are 5-digit integers, which ## Engineering Heuristics (Lazy = Efficient)
are running out of space. Celestrak has signaled that TLE format will eventually be phased out.
- **OMM/CSV format**: The future standard. CSV files contain the same orbital parameters as TLE but use ISO 8601
timestamps and support larger NORAD IDs. Celestrak and SatNOGS already provide OMM data in CSV format.
**Current implementation:** - Treat "lazy" as efficient, not careless: the best code is the code never written.
- `DataParser.kt` handles both `parseTLEStream()` and `parseCSVStream()` seamlessly - First understand the task and trace the real flow end-to-end, then climb this ladder:
- TLE data is downloaded from configured sources and stored in Room database 1. Does this need to be built now? (YAGNI)
- When downloading satellite data, the app automatically detects format and parses accordingly 2. Does it already exist in this codebase? Reuse helpers/patterns before rewriting.
- Both formats produce identical `OrbitalData` objects, ensuring transparent format switching 3. Does Kotlin/Java stdlib already solve it?
4. Does the Android/platform API already solve it?
5. Does an already-installed dependency solve it?
6. Can this be simpler (including one-liner simple)?
7. Only then: write the minimum code that works.
- Prefer deletion to addition, boring over clever, and the fewest touched files.
- Avoid new abstractions, dependencies, and boilerplate unless explicitly requested.
- Manual DI only: ViewModels use companion `factory()` methods with `IMainContainer`.
- Release builds use ProGuard: avoid reflection-heavy libraries unless explicitly approved.
- When two options are similar in size, choose the edge-case-correct one.
- If you keep a deliberate simplification (for example O(n^2) scan or global lock), leave a short comment with the ceiling and upgrade path.
- For complex asks, challenge scope when appropriate: "Do you need X, or does Y already cover it?"
**Migration path:** ## Bug-Fix Policy
As NORAD catalog space becomes constrained, OMM/CSV will become the primary format. Look4Sat is already positioned
to handle this transition without code changes — existing users can continue using TLE files while new sources
transition to OMM/CSV automatically.
## Code Style - Fix root cause, not just the reported symptom.
- If touching a shared function, inspect callers and prefer one shared fix over per-caller patches.
- Prefer **short, focused functions** — single responsibility, easy to read. - The smallest correct diff wins only after behavior is understood.
- **Exceptions**: Composable functions and math-heavy algorithms (SGP4/SDP4) may be longer.
- Strict code style — no dead code, no unused imports, consistent formatting.
## Roadmap ## Roadmap
@@ -105,12 +107,9 @@ transition to OMM/CSV automatically.
## Gotchas ## Gotchas
- Orbital math lives in `core:domain/predict/` — it's dense vector math (SGP4/SDP4). Tread carefully. - Orbital math lives in `core:domain/predict/` — dense vector math (SGP4/SDP4). Tread carefully.
- TLE/OMM data must be refreshed weekly for accurate predictions (satellite orbits decay). TLE format is legacy and
will eventually be deprecated in favor of OMM/CSV as NORAD catalog numbers approach the 5-digit limit.
- SSTV decoding in `feature:radar` is experimental; image quality depends on signal strength during satellite pass. - SSTV decoding in `feature:radar` is experimental; image quality depends on signal strength during satellite pass.
- `build-logic/convention/` contains all shared Gradle configuration — edit there, not in individual modules. - `build-logic/convention/` contains shared Gradle configuration — edit there, not in individual modules.
- ProGuard is enabled for release builds — don't add reflection-based libs or any other dependencies without asking.
## Copilot Working Mode: Code-Only ## Copilot Working Mode: Code-Only
+4 -4
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@@ -36,10 +36,10 @@ It is now and always will be completely ad-free and open-source.
## Star History ## Star History
<a href="https://www.star-history.com/?repos=rt-bishop%2FLook4Sat&type=timeline&legend=top-left"> <a href="https://star-history.dera.page/#rt-bishop/Look4Sat&type=timeline&legend=top-left">
<picture> <picture>
<source media="(prefers-color-scheme: dark)" srcset="https://api.star-history.com/chart?repos=rt-bishop/Look4Sat&type=timeline&theme=dark&legend=top-left" /> <source media="(prefers-color-scheme: dark)" srcset="https://star-history.dera.page/svg?repos=rt-bishop/Look4Sat&type=timeline&theme=dark&legend=top-left" />
<source media="(prefers-color-scheme: light)" srcset="https://api.star-history.com/chart?repos=rt-bishop/Look4Sat&type=timeline&legend=top-left" /> <source media="(prefers-color-scheme: light)" srcset="https://star-history.dera.page/svg?repos=rt-bishop/Look4Sat&type=timeline&legend=top-left" />
<img alt="Star History Chart" src="https://api.star-history.com/chart?repos=rt-bishop/Look4Sat&type=timeline&legend=top-left" /> <img alt="Star History Chart" src="https://star-history.dera.page/svg?repos=rt-bishop/Look4Sat&type=timeline&legend=top-left" />
</picture> </picture>
</a> </a>
+1
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@@ -19,6 +19,7 @@
android:allowBackup="false" android:allowBackup="false"
android:icon="@mipmap/ic_launcher" android:icon="@mipmap/ic_launcher"
android:label="@string/app_name" android:label="@string/app_name"
android:networkSecurityConfig="@xml/network_security_config"
android:roundIcon="@mipmap/ic_launcher_round"> android:roundIcon="@mipmap/ic_launcher_round">
<activity <activity
@@ -27,6 +27,8 @@ import android.view.View
import androidx.activity.ComponentActivity import androidx.activity.ComponentActivity
import androidx.activity.compose.setContent import androidx.activity.compose.setContent
import androidx.activity.enableEdgeToEdge import androidx.activity.enableEdgeToEdge
import androidx.compose.runtime.collectAsState
import androidx.compose.runtime.getValue
import androidx.core.splashscreen.SplashScreen.Companion.installSplashScreen import androidx.core.splashscreen.SplashScreen.Companion.installSplashScreen
import androidx.lifecycle.lifecycleScope import androidx.lifecycle.lifecycleScope
import com.rtbishop.look4sat.core.domain.repository.IContainerProvider import com.rtbishop.look4sat.core.domain.repository.IContainerProvider
@@ -48,8 +50,10 @@ class MainActivity : ComponentActivity() {
enableEdgeToEdge() enableEdgeToEdge()
super.onCreate(savedInstanceState) super.onCreate(savedInstanceState)
observeNightFilterState() observeNightFilterState()
val settingsRepo = (applicationContext as IContainerProvider).getMainContainer().settingsRepo
setContent { setContent {
MainTheme(isDarkTheme = true) { MainScreen() } val otherSettings by settingsRepo.otherSettings.collectAsState()
MainTheme(isDarkTheme = !otherSettings.stateOfLightTheme) { NavRoot() }
} }
} }
@@ -25,8 +25,6 @@ import androidx.compose.animation.core.rememberInfiniteTransition
import androidx.compose.animation.core.tween import androidx.compose.animation.core.tween
import androidx.compose.animation.fadeIn import androidx.compose.animation.fadeIn
import androidx.compose.animation.fadeOut import androidx.compose.animation.fadeOut
import androidx.compose.animation.scaleIn
import androidx.compose.animation.scaleOut
import androidx.compose.animation.slideInHorizontally import androidx.compose.animation.slideInHorizontally
import androidx.compose.animation.slideOutHorizontally import androidx.compose.animation.slideOutHorizontally
import androidx.compose.animation.togetherWith import androidx.compose.animation.togetherWith
@@ -44,12 +42,13 @@ import androidx.compose.foundation.layout.width
import androidx.compose.foundation.shape.CircleShape import androidx.compose.foundation.shape.CircleShape
import androidx.compose.material3.Icon import androidx.compose.material3.Icon
import androidx.compose.material3.MaterialTheme import androidx.compose.material3.MaterialTheme
import androidx.compose.material3.Scaffold import androidx.compose.material3.Surface
import androidx.compose.material3.Text import androidx.compose.material3.Text
import androidx.compose.material3.adaptive.navigationsuite.NavigationSuiteDefaults import androidx.compose.material3.adaptive.navigationsuite.NavigationSuiteDefaults
import androidx.compose.material3.adaptive.navigationsuite.NavigationSuiteScaffold import androidx.compose.material3.adaptive.navigationsuite.NavigationSuiteScaffold
import androidx.compose.material3.adaptive.navigationsuite.NavigationSuiteType import androidx.compose.material3.adaptive.navigationsuite.NavigationSuiteType
import androidx.compose.runtime.Composable import androidx.compose.runtime.Composable
import androidx.compose.runtime.CompositionLocalProvider
import androidx.compose.runtime.LaunchedEffect import androidx.compose.runtime.LaunchedEffect
import androidx.compose.runtime.getValue import androidx.compose.runtime.getValue
import androidx.compose.ui.Alignment import androidx.compose.ui.Alignment
@@ -69,7 +68,11 @@ import androidx.navigation3.runtime.rememberNavBackStack
import androidx.navigation3.runtime.rememberSaveableStateHolderNavEntryDecorator import androidx.navigation3.runtime.rememberSaveableStateHolderNavEntryDecorator
import androidx.navigation3.ui.NavDisplay import androidx.navigation3.ui.NavDisplay
import com.rtbishop.look4sat.core.domain.repository.IContainerProvider import com.rtbishop.look4sat.core.domain.repository.IContainerProvider
import com.rtbishop.look4sat.core.presentation.R
import com.rtbishop.look4sat.core.domain.repository.RadioTrackingState
import com.rtbishop.look4sat.core.presentation.DeeplinkResolver import com.rtbishop.look4sat.core.presentation.DeeplinkResolver
import com.rtbishop.look4sat.core.presentation.ElevationThresholds
import com.rtbishop.look4sat.core.presentation.LocalElevationThresholds
import com.rtbishop.look4sat.core.presentation.RadarDestination import com.rtbishop.look4sat.core.presentation.RadarDestination
import com.rtbishop.look4sat.core.presentation.Screen import com.rtbishop.look4sat.core.presentation.Screen
import com.rtbishop.look4sat.core.presentation.hasEnoughHeight import com.rtbishop.look4sat.core.presentation.hasEnoughHeight
@@ -79,68 +82,94 @@ import com.rtbishop.look4sat.feature.passes.PassesDestination
import com.rtbishop.look4sat.feature.radar.RadarDestination import com.rtbishop.look4sat.feature.radar.RadarDestination
import com.rtbishop.look4sat.feature.satellites.SatellitesDestination import com.rtbishop.look4sat.feature.satellites.SatellitesDestination
import com.rtbishop.look4sat.feature.settings.SettingsDestination import com.rtbishop.look4sat.feature.settings.SettingsDestination
import com.rtbishop.look4sat.feature.status.SatStatusDestination
@Composable @Composable
fun NavRoot(deeplink: String? = null) { fun NavRoot(deeplink: String? = null) {
val rootBackStack = rememberNavBackStack(Screen.Passes) val rootBackStack = rememberNavBackStack(Screen.Passes)
val deeplinkResolver = DeeplinkResolver() val deeplinkResolver = DeeplinkResolver()
LaunchedEffect(deeplink) { LaunchedEffect(deeplink) {
deeplink?.let { deeplink?.let { rootBackStack.add(deeplinkResolver.resolve(it)) }
val destination = deeplinkResolver.resolve(it) // rootBackStack.clear()
rootBackStack.add(destination)
}
} }
val navigateBack: () -> Unit = { rootBackStack.removeLastOrNull() } val navigateBack: () -> Unit = { rootBackStack.removeLastOrNull() }
val slideInTransition = slideInHorizontally(initialOffsetX = { it }) togetherWith scaleOut(targetScale = 0.9f) val navigateToRadar: () -> Unit = { rootBackStack.add(RadarDestination) }
val slideOutTransition = scaleIn(initialScale = 0.9f) togetherWith slideOutHorizontally(targetOffsetX = { it }) // Incoming screen slides in from the right, outgoing drifts left at 1/3 speed (API35+ style)
NavDisplay( val pushTransition = slideInHorizontally(tween(300)) { it } togetherWith
modifier = Modifier.fillMaxSize(), slideOutHorizontally(tween(300)) { -it / 3 }
backStack = rootBackStack, // Reverse: outgoing slides out to the right, incoming drifts in from the left
onBack = navigateBack, val popTransition = slideInHorizontally(tween(300)) { -it / 3 } togetherWith
transitionSpec = { slideInTransition }, slideOutHorizontally(tween(300)) { it }
popTransitionSpec = { slideOutTransition }, // Elevation color thresholds must be provided at the root level so that BOTH
predictivePopTransitionSpec = { slideOutTransition }, // the tab content (MainScreen) and the root-level RadarDestination see the
entryDecorators = listOf( // user's custom thresholds. RadarDestination is a sibling entry of MainScreen
rememberSaveableStateHolderNavEntryDecorator(), // Required for saving Compose state per entry // in this NavDisplay, so a provider inside MainScreen never reaches it.
rememberViewModelStoreNavEntryDecorator() // Required for ViewModel scoping per entry val context = LocalContext.current
), val container = (context.applicationContext as IContainerProvider).getMainContainer()
entryProvider = entryProvider { val otherSettings by container.settingsRepo.otherSettings.collectAsStateWithLifecycle()
entry<Screen.Passes> { MainScreen(navigateToRadar = { rootBackStack.add(RadarDestination) }) } CompositionLocalProvider(
entry<RadarDestination> { LocalElevationThresholds provides ElevationThresholds(
Scaffold { innerPadding -> low = otherSettings.lowElevation,
RadarDestination(navigateUp = navigateBack) high = otherSettings.highElevation
innerPadding.calculateTopPadding() )
) {
NavDisplay(
modifier = Modifier.fillMaxSize(),
backStack = rootBackStack,
onBack = navigateBack,
transitionSpec = { pushTransition },
popTransitionSpec = { popTransition },
predictivePopTransitionSpec = { popTransition },
entryDecorators = listOf(
rememberSaveableStateHolderNavEntryDecorator(),
rememberViewModelStoreNavEntryDecorator()
),
entryProvider = entryProvider {
entry<Screen.Passes> { MainScreen(navigateToRadar = navigateToRadar) }
entry<RadarDestination> {
Surface(
modifier = Modifier.fillMaxSize(),
color = MaterialTheme.colorScheme.background
) {
RadarDestination(navigateUp = navigateBack)
}
} }
} }
} )
) }
} }
@Composable @Composable
fun MainScreen(navigateToRadar: () -> Unit = {}) { private fun MainScreen(navigateToRadar: () -> Unit = {}) {
val backStack = rememberNavBackStack(Screen.Passes)
val currentKey = backStack.lastOrNull()
val navigateBack: () -> Unit = { backStack.removeLastOrNull() }
val fadeTransition = fadeIn(animationSpec = tween(350)) togetherWith fadeOut(animationSpec = tween(350))
val navItems = listOf(Screen.Satellites, Screen.Passes, Screen.Radar, Screen.Map, Screen.Settings)
val context = LocalContext.current val context = LocalContext.current
val container = (context.applicationContext as IContainerProvider).getMainContainer() val container = (context.applicationContext as IContainerProvider).getMainContainer()
val trackingState by container.radioTrackingService.state.collectAsStateWithLifecycle() val trackingState by container.radioTrackingService.state.collectAsStateWithLifecycle()
val backStack = rememberNavBackStack(Screen.Passes)
val currentKey = backStack.lastOrNull()
val navigateBack: () -> Unit = { backStack.removeLastOrNull() }
val fadeTransition = fadeIn(animationSpec = tween(300)) togetherWith
fadeOut(animationSpec = tween(300))
val navItems =
listOf(Screen.Satellites, Screen.Passes, Screen.Status, Screen.Map, Screen.Settings)
NavigationSuiteScaffold( NavigationSuiteScaffold(
navigationSuiteItems = { navigationSuiteItems = {
navItems.forEach { screen -> navItems.forEach { screen ->
val isSelected = when (currentKey) { val isSelected = when (currentKey) {
is Screen.Satellites -> screen is Screen.Satellites is Screen.Satellites -> screen is Screen.Satellites
is Screen.Passes -> screen is Screen.Passes is Screen.Passes -> screen is Screen.Passes
is Screen.Radar -> screen is Screen.Radar is Screen.Status -> screen is Screen.Status
is Screen.Map -> screen is Screen.Map is Screen.Map -> screen is Screen.Map
is Screen.Settings -> screen is Screen.Settings is Screen.Settings -> screen is Screen.Settings
else -> false else -> false
} }
item( item(
icon = { Icon(painterResource(screen.iconResId), stringResource(screen.titleResId)) }, icon = {
Icon(
painter = painterResource(screen.iconResId),
contentDescription = stringResource(screen.titleResId)
)
},
label = { Text(stringResource(screen.titleResId)) }, label = { Text(stringResource(screen.titleResId)) },
selected = isSelected, selected = isSelected,
onClick = { onClick = {
@@ -169,9 +198,7 @@ fun MainScreen(navigateToRadar: () -> Unit = {}) {
popTransitionSpec = { fadeTransition }, popTransitionSpec = { fadeTransition },
predictivePopTransitionSpec = { fadeTransition }, predictivePopTransitionSpec = { fadeTransition },
entryDecorators = listOf( entryDecorators = listOf(
// Required for saving Compose state per entry
rememberSaveableStateHolderNavEntryDecorator(), rememberSaveableStateHolderNavEntryDecorator(),
// Required for ViewModel scoping per entry
rememberViewModelStoreNavEntryDecorator() rememberViewModelStoreNavEntryDecorator()
), ),
entryProvider = entryProvider { entryProvider = entryProvider {
@@ -181,68 +208,70 @@ fun MainScreen(navigateToRadar: () -> Unit = {}) {
entry<Screen.Passes> { entry<Screen.Passes> {
PassesDestination { catNum, aosTime -> PassesDestination { catNum, aosTime ->
container.satelliteRepo.selectPass(catNum, aosTime) container.satelliteRepo.selectPass(catNum, aosTime)
backStack.add(Screen.Radar) navigateToRadar()
// navigateToRadar()
} }
} }
entry<Screen.Radar> { entry<Screen.Status> { SatStatusDestination() }
RadarDestination(navigateUp = navigateBack) entry<Screen.Map> { MapDestination() }
} entry<Screen.Settings> { SettingsDestination() }
entry<Screen.Map> {
MapDestination()
}
entry<Screen.Settings> {
SettingsDestination()
}
} }
) )
// Radio tracking status banner
if (trackingState.isActive) { if (trackingState.isActive) {
val infiniteTransition = rememberInfiniteTransition(label = "trackingPulse") TrackingBanner(
val alpha by infiniteTransition.animateFloat( state = trackingState,
initialValue = 1f, targetValue = 0.4f, onClick = {
animationSpec = infiniteRepeatable( val pass = trackingState.currentPass
animation = tween(1000, easing = LinearEasing), if (pass != null) {
repeatMode = RepeatMode.Reverse container.satelliteRepo.selectPass(pass.catNum, pass.aosTime)
), label = "pulseAlpha" navigateToRadar()
)
Row(
verticalAlignment = Alignment.CenterVertically,
modifier = Modifier
.fillMaxWidth()
.background(MaterialTheme.colorScheme.primaryContainer)
.clickable {
val pass = trackingState.currentPass
if (pass != null) {
container.satelliteRepo.selectPass(pass.catNum, pass.aosTime)
backStack.add(Screen.Radar)
}
} }
.padding(horizontal = 12.dp, vertical = 6.dp) }
) { )
Box(
modifier = Modifier
.size(8.dp)
.clip(CircleShape)
.background(Color(0xFF4CAF50).copy(alpha = alpha))
)
Spacer(modifier = Modifier.width(8.dp))
Text(
text = "Tracking: ${trackingState.currentPass?.name ?: ""}",
fontSize = 13.sp,
fontWeight = FontWeight.Medium,
color = MaterialTheme.colorScheme.onPrimaryContainer,
modifier = Modifier.weight(1f)
)
val txOk = if (trackingState.txConnected) "TX" else ""
val rxOk = if (trackingState.rxConnected) "RX" else ""
Text(
text = listOf(txOk, rxOk).filter { it.isNotBlank() }.joinToString("/"),
fontSize = 12.sp,
color = MaterialTheme.colorScheme.onPrimaryContainer
)
}
} }
} }
} }
} }
@Composable
private fun TrackingBanner(state: RadioTrackingState, onClick: () -> Unit) {
val infiniteTransition = rememberInfiniteTransition(label = "trackingPulse")
val alpha by infiniteTransition.animateFloat(
initialValue = 1f,
targetValue = 0.4f,
animationSpec = infiniteRepeatable(
animation = tween(1000, easing = LinearEasing), repeatMode = RepeatMode.Reverse
),
label = "pulseAlpha"
)
Row(
verticalAlignment = Alignment.CenterVertically,
modifier = Modifier
.fillMaxWidth()
.background(MaterialTheme.colorScheme.primaryContainer)
.clickable(onClick = onClick)
.padding(horizontal = 12.dp, vertical = 6.dp)
) {
Box(
modifier = Modifier
.size(8.dp)
.clip(CircleShape)
.background(Color(0xFF4CAF50).copy(alpha = alpha))
)
Spacer(modifier = Modifier.width(8.dp))
Text(
text = stringResource(R.string.tracking_format, state.currentPass?.name ?: ""),
fontSize = 13.sp,
fontWeight = FontWeight.Medium,
color = MaterialTheme.colorScheme.onPrimaryContainer,
modifier = Modifier.weight(1f)
)
val connections = listOfNotNull(
"TX".takeIf { state.txConnected }, "RX".takeIf { state.rxConnected }
)
Text(
text = connections.joinToString("/"),
fontSize = 12.sp,
color = MaterialTheme.colorScheme.onPrimaryContainer
)
}
}
@@ -0,0 +1,4 @@
<?xml version="1.0" encoding="utf-8"?>
<network-security-config>
<base-config cleartextTrafficPermitted="true" />
</network-security-config>
@@ -36,6 +36,7 @@ internal class ApplicationPlugin : Plugin<Project> {
implementation(project(":feature:radar")) implementation(project(":feature:radar"))
implementation(project(":feature:satellites")) implementation(project(":feature:satellites"))
implementation(project(":feature:settings")) implementation(project(":feature:settings"))
implementation(project(":feature:status"))
implementation(libs.androidx.core.splashscreen) implementation(libs.androidx.core.splashscreen)
implementation(libs.compose.material3.adaptive) implementation(libs.compose.material3.adaptive)
implementation(libs.compose.navigation3) implementation(libs.compose.navigation3)
+40
View File
@@ -5,6 +5,46 @@ plugins {
alias(libs.plugins.google.ksp) apply false alias(libs.plugins.google.ksp) apply false
alias(libs.plugins.kotlin.jvm) apply false alias(libs.plugins.kotlin.jvm) apply false
alias(libs.plugins.kotlin.serialization) apply false alias(libs.plugins.kotlin.serialization) apply false
alias(libs.plugins.other.detekt)
}
val detektCheck = tasks.register<io.gitlab.arturbosch.detekt.Detekt>("detektCheck") {
description = "Checks that source code satisfies detekt rules."
autoCorrect = false
}
val detektApply = tasks.register<io.gitlab.arturbosch.detekt.Detekt>("detektApply") {
description = "Applies code formatting rules to source code in-place."
autoCorrect = true
}
configure(listOf(detektCheck, detektApply)) {
configure {
group = "verification"
parallel = true
ignoreFailures = false
setSource(file(rootDir))
// Custom detekt config
config.setFrom("$projectDir/config/detekt/detekt.yml")
// Use default configuration on top of custom config
// (new detect rules will work out of the box after upgrading detekt version)
buildUponDefaultConfig = true
// Runs detekt for all files in the Gradle project and all subprojects without
// a need to configure detekt plugin in every subproject.
include("**/*.kt", "**/*.kts")
exclude("**/resources/**", "**/build/**", "**/generated/**", "**/testing/**")
reports {
html.required.set(true)
xml.required.set(true)
}
}
dependencies {
detektPlugins(libs.other.detekt.formatting)
}
} }
tasks.register("clean", Delete::class.java) { tasks.register("clean", Delete::class.java) {
+808
View File
@@ -0,0 +1,808 @@
build:
maxIssues: 0
excludeCorrectable: false
weights:
# complexity: 2
# LongParameterList: 1
# style: 1
# comments: 1
config:
validation: true
warningsAsErrors: false
checkExhaustiveness: false
# when writing own rules with new properties, exclude the property path e.g.: 'my_rule_set,.*>.*>[my_property]'
excludes: ''
processors:
active: true
exclude:
- 'DetektProgressListener'
# - 'KtFileCountProcessor'
# - 'PackageCountProcessor'
# - 'ClassCountProcessor'
# - 'FunctionCountProcessor'
# - 'PropertyCountProcessor'
# - 'ProjectComplexityProcessor'
# - 'ProjectCognitiveComplexityProcessor'
# - 'ProjectLLOCProcessor'
# - 'ProjectCLOCProcessor'
# - 'ProjectLOCProcessor'
# - 'ProjectSLOCProcessor'
# - 'LicenseHeaderLoaderExtension'
console-reports:
active: true
exclude:
- 'ProjectStatisticsReport'
- 'ComplexityReport'
- 'NotificationReport'
- 'FindingsReport'
- 'FileBasedFindingsReport'
# - 'LiteFindingsReport'
output-reports:
active: true
exclude:
# - 'TxtOutputReport'
# - 'XmlOutputReport'
- 'HtmlOutputReport'
# - 'MdOutputReport'
# - 'SarifOutputReport'
comments:
active: true
AbsentOrWrongFileLicense:
active: false
licenseTemplateFile: 'license.template'
licenseTemplateIsRegex: false
CommentOverPrivateFunction:
active: false
CommentOverPrivateProperty:
active: false
DeprecatedBlockTag:
active: false
EndOfSentenceFormat:
active: false
endOfSentenceFormat: '([.?!][ \t\n\r\f<])|([.?!:]$)'
KDocReferencesNonPublicProperty:
active: false
excludes: [ '**/test/**', '**/androidTest/**', '**/commonTest/**', '**/jvmTest/**', '**/androidUnitTest/**', '**/androidInstrumentedTest/**', '**/jsTest/**', '**/iosTest/**' ]
OutdatedDocumentation:
active: false
matchTypeParameters: true
matchDeclarationsOrder: true
allowParamOnConstructorProperties: false
UndocumentedPublicClass:
active: false
excludes: [ '**/test/**', '**/androidTest/**', '**/commonTest/**', '**/jvmTest/**', '**/androidUnitTest/**', '**/androidInstrumentedTest/**', '**/jsTest/**', '**/iosTest/**' ]
searchInNestedClass: true
searchInInnerClass: true
searchInInnerObject: true
searchInInnerInterface: true
searchInProtectedClass: false
UndocumentedPublicFunction:
active: false
excludes: [ '**/test/**', '**/androidTest/**', '**/commonTest/**', '**/jvmTest/**', '**/androidUnitTest/**', '**/androidInstrumentedTest/**', '**/jsTest/**', '**/iosTest/**' ]
searchProtectedFunction: false
UndocumentedPublicProperty:
active: false
excludes: [ '**/test/**', '**/androidTest/**', '**/commonTest/**', '**/jvmTest/**', '**/androidUnitTest/**', '**/androidInstrumentedTest/**', '**/jsTest/**', '**/iosTest/**' ]
searchProtectedProperty: false
complexity:
active: true
CognitiveComplexMethod:
active: false
threshold: 15
ComplexCondition:
active: true
threshold: 4
ComplexInterface:
active: false
threshold: 10
includeStaticDeclarations: false
includePrivateDeclarations: false
ignoreOverloaded: false
CyclomaticComplexMethod:
active: true
threshold: 15
ignoreSingleWhenExpression: false
ignoreSimpleWhenEntries: false
ignoreNestingFunctions: false
nestingFunctions:
- 'also'
- 'apply'
- 'forEach'
- 'isNotNull'
- 'ifNull'
- 'let'
- 'run'
- 'use'
- 'with'
# Composables describe UI trees declaratively and naturally accumulate more branches than
# regular functions. Exclude them here and rely on code review + decomposition instead.
excludes: [ '**/test/**', '**/androidTest/**', '**/commonTest/**', '**/jvmTest/**', '**/androidUnitTest/**', '**/androidInstrumentedTest/**', '**/jsTest/**', '**/iosTest/**', '**/*Screen.kt', '**/*Slots.kt' ]
LabeledExpression:
active: false
ignoredLabels: [ ]
LargeClass:
active: true
excludes: [ '**/test/**', '**/androidTest/**', '**/commonTest/**', '**/jvmTest/**', '**/androidUnitTest/**', '**/androidInstrumentedTest/**', '**/jsTest/**', '**/iosTest/**', '**/*Screen.kt', '**/*Slots.kt' ]
threshold: 600
LongMethod:
active: true
# Composable UI functions are declarative trees; 60 lines is too strict for them.
# Screen/Slots files are excluded — keep them reasonable via code review.
excludes: [ '**/test/**', '**/androidTest/**', '**/commonTest/**', '**/jvmTest/**', '**/androidUnitTest/**', '**/androidInstrumentedTest/**', '**/jsTest/**', '**/iosTest/**', '**/*Screen.kt', '**/*Slots.kt' ]
threshold: 60
LongParameterList:
active: false
functionThreshold: 6
constructorThreshold: 7
ignoreDefaultParameters: false
ignoreDataClasses: true
ignoreAnnotatedParameter: [ ]
MethodOverloading:
active: false
threshold: 6
NamedArguments:
active: false
threshold: 3
ignoreArgumentsMatchingNames: false
NestedBlockDepth:
active: true
threshold: 4
NestedScopeFunctions:
active: false
threshold: 1
functions:
- 'kotlin.apply'
- 'kotlin.run'
- 'kotlin.with'
- 'kotlin.let'
- 'kotlin.also'
ReplaceSafeCallChainWithRun:
active: false
StringLiteralDuplication:
active: false
excludes: [ '**/test/**', '**/androidTest/**', '**/commonTest/**', '**/jvmTest/**', '**/androidUnitTest/**', '**/androidInstrumentedTest/**', '**/jsTest/**', '**/iosTest/**' ]
threshold: 3
ignoreAnnotation: true
excludeStringsWithLessThan5Characters: true
ignoreStringsRegex: '$^'
TooManyFunctions:
active: false
excludes: [ '**/test/**', '**/androidTest/**', '**/commonTest/**', '**/jvmTest/**', '**/androidUnitTest/**', '**/androidInstrumentedTest/**', '**/jsTest/**', '**/iosTest/**' ]
thresholdInFiles: 11
thresholdInClasses: 11
thresholdInInterfaces: 11
thresholdInObjects: 11
thresholdInEnums: 11
ignoreDeprecated: false
ignorePrivate: false
ignoreOverridden: false
coroutines:
active: true
GlobalCoroutineUsage:
active: false
InjectDispatcher:
active: true
dispatcherNames:
- 'IO'
- 'Default'
- 'Unconfined'
RedundantSuspendModifier:
active: true
SleepInsteadOfDelay:
active: true
SuspendFunSwallowedCancellation:
active: false
SuspendFunWithCoroutineScopeReceiver:
active: false
SuspendFunWithFlowReturnType:
active: true
empty-blocks:
active: true
EmptyCatchBlock:
active: true
allowedExceptionNameRegex: '_|(ignore|expected).*'
EmptyClassBlock:
active: true
EmptyDefaultConstructor:
active: true
EmptyDoWhileBlock:
active: true
EmptyElseBlock:
active: true
EmptyFinallyBlock:
active: true
EmptyForBlock:
active: true
EmptyFunctionBlock:
active: true
ignoreOverridden: true
EmptyIfBlock:
active: true
EmptyInitBlock:
active: true
EmptyKtFile:
active: true
EmptySecondaryConstructor:
active: true
EmptyTryBlock:
active: true
EmptyWhenBlock:
active: true
EmptyWhileBlock:
active: true
exceptions:
active: true
ExceptionRaisedInUnexpectedLocation:
active: true
methodNames:
- 'equals'
- 'finalize'
- 'hashCode'
- 'toString'
InstanceOfCheckForException:
active: true
excludes: [ '**/test/**', '**/androidTest/**', '**/commonTest/**', '**/jvmTest/**', '**/androidUnitTest/**', '**/androidInstrumentedTest/**', '**/jsTest/**', '**/iosTest/**' ]
NotImplementedDeclaration:
active: false
ObjectExtendsThrowable:
active: false
PrintStackTrace:
active: true
RethrowCaughtException:
active: true
ReturnFromFinally:
active: true
ignoreLabeled: false
SwallowedException:
active: true
ignoredExceptionTypes:
- 'InterruptedException'
- 'MalformedURLException'
- 'NumberFormatException'
- 'ParseException'
allowedExceptionNameRegex: '_|(ignore|expected).*'
ThrowingExceptionFromFinally:
active: true
ThrowingExceptionInMain:
active: false
ThrowingExceptionsWithoutMessageOrCause:
active: true
excludes: [ '**/test/**', '**/androidTest/**', '**/commonTest/**', '**/jvmTest/**', '**/androidUnitTest/**', '**/androidInstrumentedTest/**', '**/jsTest/**', '**/iosTest/**' ]
exceptions:
- 'ArrayIndexOutOfBoundsException'
- 'Exception'
- 'IllegalArgumentException'
- 'IllegalMonitorStateException'
- 'IllegalStateException'
- 'IndexOutOfBoundsException'
- 'NullPointerException'
- 'RuntimeException'
- 'Throwable'
ThrowingNewInstanceOfSameException:
active: true
TooGenericExceptionCaught:
active: true
excludes: [ '**/test/**', '**/androidTest/**', '**/commonTest/**', '**/jvmTest/**', '**/androidUnitTest/**', '**/androidInstrumentedTest/**', '**/jsTest/**', '**/iosTest/**' ]
exceptionNames:
- 'ArrayIndexOutOfBoundsException'
- 'Error'
- 'Exception'
- 'IllegalMonitorStateException'
- 'IndexOutOfBoundsException'
- 'NullPointerException'
- 'RuntimeException'
- 'Throwable'
allowedExceptionNameRegex: '_|(ignore|expected).*'
TooGenericExceptionThrown:
active: true
exceptionNames:
- 'Error'
- 'Exception'
- 'RuntimeException'
- 'Throwable'
formatting:
active: true
ArgumentListWrapping:
active: false
ParameterListWrapping:
active: false
NoWildcardImports:
active: false
MaximumLineLength:
active: true
excludes: [ '**/test/**', '**/androidTest/**', '**/commonTest/**', '**/jvmTest/**', '**/androidUnitTest/**', '**/androidInstrumentedTest/**', '**/jsTest/**', '**/iosTest/**' ]
naming:
active: true
BooleanPropertyNaming:
active: false
allowedPattern: '^(is|has|are)'
ClassNaming:
active: true
classPattern: '[A-Z][a-zA-Z0-9_]*'
ConstructorParameterNaming:
active: true
parameterPattern: '[a-z][A-Za-z0-9]*'
privateParameterPattern: '[a-z][A-Za-z0-9]*'
excludeClassPattern: '$^'
EnumNaming:
active: true
enumEntryPattern: '[A-Z][_a-zA-Z0-9]*'
ForbiddenClassName:
active: false
forbiddenName: [ ]
FunctionMaxLength:
active: false
maximumFunctionNameLength: 30
FunctionMinLength:
active: false
minimumFunctionNameLength: 3
FunctionNaming:
active: true
excludes: [ '**/test/**', '**/androidTest/**', '**/commonTest/**', '**/jvmTest/**', '**/androidUnitTest/**', '**/androidInstrumentedTest/**', '**/jsTest/**', '**/iosTest/**' ]
functionPattern: '[a-zA-Z][a-zA-Z0-9]*'
excludeClassPattern: '$^'
FunctionParameterNaming:
active: true
parameterPattern: '[a-zA-Z][A-Za-z0-9]*'
excludeClassPattern: '$^'
InvalidPackageDeclaration:
active: true
rootPackage: ''
requireRootInDeclaration: false
LambdaParameterNaming:
active: false
parameterPattern: '[a-z][A-Za-z0-9]*|_'
MatchingDeclarationName:
active: false
mustBeFirst: false
MemberNameEqualsClassName:
active: true
ignoreOverridden: true
NoNameShadowing:
active: true
NonBooleanPropertyPrefixedWithIs:
active: false
ObjectPropertyNaming:
active: true
constantPattern: '[A-Za-z][_A-Za-z0-9]*'
propertyPattern: '[A-Za-z][_A-Za-z0-9]*'
privatePropertyPattern: '(_)?[A-Za-z][_A-Za-z0-9]*'
PackageNaming:
active: true
packagePattern: '[a-z]+(\.[a-z][A-Za-z0-9]*)*'
TopLevelPropertyNaming:
active: true
constantPattern: '[A-Z][_A-Z0-9]*'
propertyPattern: '[A-Za-z][_A-Za-z0-9]*'
privatePropertyPattern: '_?[A-Za-z][_A-Za-z0-9]*'
VariableMaxLength:
active: false
maximumVariableNameLength: 64
VariableMinLength:
active: false
minimumVariableNameLength: 1
VariableNaming:
active: true
variablePattern: '[a-zA-Z][A-Za-z0-9]*'
privateVariablePattern: '(_)?[a-zA-Z][A-Za-z0-9]*'
excludeClassPattern: '$^'
performance:
active: true
ArrayPrimitive:
active: true
CouldBeSequence:
active: false
threshold: 3
ForEachOnRange:
active: true
excludes: [ '**/test/**', '**/androidTest/**', '**/commonTest/**', '**/jvmTest/**', '**/androidUnitTest/**', '**/androidInstrumentedTest/**', '**/jsTest/**', '**/iosTest/**' ]
SpreadOperator:
active: true
excludes: [ '**/test/**', '**/androidTest/**', '**/commonTest/**', '**/jvmTest/**', '**/androidUnitTest/**', '**/androidInstrumentedTest/**', '**/jsTest/**', '**/iosTest/**' ]
UnnecessaryPartOfBinaryExpression:
active: false
UnnecessaryTemporaryInstantiation:
active: true
potential-bugs:
active: true
AvoidReferentialEquality:
active: true
forbiddenTypePatterns:
- 'kotlin.String'
CastNullableToNonNullableType:
active: false
CastToNullableType:
active: false
Deprecation:
active: false
DontDowncastCollectionTypes:
active: false
DoubleMutabilityForCollection:
active: true
mutableTypes:
- 'kotlin.collections.MutableList'
- 'kotlin.collections.MutableMap'
- 'kotlin.collections.MutableSet'
- 'java.util.ArrayList'
- 'java.util.LinkedHashSet'
- 'java.util.HashSet'
- 'java.util.LinkedHashMap'
- 'java.util.HashMap'
ElseCaseInsteadOfExhaustiveWhen:
active: false
ignoredSubjectTypes: [ ]
EqualsAlwaysReturnsTrueOrFalse:
active: true
EqualsWithHashCodeExist:
active: true
ExitOutsideMain:
active: false
ExplicitGarbageCollectionCall:
active: true
HasPlatformType:
active: true
IgnoredReturnValue:
active: true
restrictToConfig: true
returnValueAnnotations:
- 'CheckResult'
- '*.CheckResult'
- 'CheckReturnValue'
- '*.CheckReturnValue'
ignoreReturnValueAnnotations:
- 'CanIgnoreReturnValue'
- '*.CanIgnoreReturnValue'
returnValueTypes:
- 'kotlin.sequences.Sequence'
- 'kotlinx.coroutines.flow.*Flow'
- 'java.util.stream.*Stream'
ignoreFunctionCall: [ ]
ImplicitDefaultLocale:
active: true
ImplicitUnitReturnType:
active: false
allowExplicitReturnType: true
InvalidRange:
active: true
IteratorHasNextCallsNextMethod:
active: true
IteratorNotThrowingNoSuchElementException:
active: true
LateinitUsage:
active: false
excludes: [ '**/test/**', '**/androidTest/**', '**/commonTest/**', '**/jvmTest/**', '**/androidUnitTest/**', '**/androidInstrumentedTest/**', '**/jsTest/**', '**/iosTest/**' ]
ignoreOnClassesPattern: ''
MapGetWithNotNullAssertionOperator:
active: true
MissingPackageDeclaration:
active: false
excludes: [ '**/*.kts' ]
NullCheckOnMutableProperty:
active: false
NullableToStringCall:
active: false
PropertyUsedBeforeDeclaration:
active: false
UnconditionalJumpStatementInLoop:
active: false
UnnecessaryNotNullCheck:
active: false
UnnecessaryNotNullOperator:
active: true
UnnecessarySafeCall:
active: true
UnreachableCatchBlock:
active: true
UnreachableCode:
active: true
UnsafeCallOnNullableType:
active: true
excludes: [ '**/test/**', '**/androidTest/**', '**/commonTest/**', '**/jvmTest/**', '**/androidUnitTest/**', '**/androidInstrumentedTest/**', '**/jsTest/**', '**/iosTest/**' ]
UnsafeCast:
active: true
UnusedUnaryOperator:
active: true
UselessPostfixExpression:
active: true
WrongEqualsTypeParameter:
active: true
style:
active: true
AlsoCouldBeApply:
active: false
BracesOnIfStatements:
active: false
singleLine: 'never'
multiLine: 'always'
BracesOnWhenStatements:
active: false
singleLine: 'necessary'
multiLine: 'consistent'
CanBeNonNullable:
active: false
CascadingCallWrapping:
active: false
includeElvis: true
ClassOrdering:
active: false
CollapsibleIfStatements:
active: false
DataClassContainsFunctions:
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DestructuringDeclarationWithTooManyEntries:
active: true
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DoubleNegativeLambda:
active: false
negativeFunctions:
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value: 'takeUnless'
- reason: 'Use `all` instead.'
value: 'none'
negativeFunctionNameParts:
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EqualsNullCall:
active: true
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active: false
annotations:
- reason: 'it is a java annotation. Use `Suppress` instead.'
value: 'java.lang.SuppressWarnings'
- reason: 'it is a java annotation. Use `kotlin.Deprecated` instead.'
value: 'java.lang.Deprecated'
- reason: 'it is a java annotation. Use `kotlin.annotation.MustBeDocumented` instead.'
value: 'java.lang.annotation.Documented'
- reason: 'it is a java annotation. Use `kotlin.annotation.Target` instead.'
value: 'java.lang.annotation.Target'
- reason: 'it is a java annotation. Use `kotlin.annotation.Retention` instead.'
value: 'java.lang.annotation.Retention'
- reason: 'it is a java annotation. Use `kotlin.annotation.Repeatable` instead.'
value: 'java.lang.annotation.Repeatable'
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value: 'java.lang.annotation.Inherited'
ForbiddenComment:
active: true
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- reason: 'Forbidden FIXME todo marker in comment, please fix the problem.'
value: 'FIXME:'
- reason: 'Forbidden STOPSHIP todo marker in comment, please address the problem before shipping the code.'
value: 'STOPSHIP:'
- reason: 'Forbidden TODO todo marker in comment, please do the changes.'
value: 'TODO:'
allowedPatterns: ''
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active: false
imports: [ ]
forbiddenPatterns: ''
ForbiddenMethodCall:
active: false
methods:
- reason: 'print does not allow you to configure the output stream. Use a logger instead.'
value: 'kotlin.io.print'
- reason: 'println does not allow you to configure the output stream. Use a logger instead.'
value: 'kotlin.io.println'
ForbiddenSuppress:
active: false
rules: [ ]
ForbiddenVoid:
active: true
ignoreOverridden: false
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active: true
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excludeLabeled: false
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# Guard clauses (early returns for preconditions) are idiomatic Kotlin and should not
# count toward the return limit. E.g. `if (x == null) return null` at function top.
excludeGuardClauses: true
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active: true
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active: true
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@@ -19,6 +19,7 @@ package com.rtbishop.look4sat.core.data.database
import androidx.room.Dao import androidx.room.Dao
import androidx.room.Insert import androidx.room.Insert
import androidx.room.MapColumn
import androidx.room.OnConflictStrategy import androidx.room.OnConflictStrategy
import androidx.room.Query import androidx.room.Query
import androidx.room.Transaction import androidx.room.Transaction
@@ -39,13 +40,30 @@ interface Look4SatDao {
@Query("SELECT * FROM entries WHERE catnum IN (:selectedIds)") @Query("SELECT * FROM entries WHERE catnum IN (:selectedIds)")
suspend fun getEntriesWithIds(selectedIds: List<Int>): List<SatEntry> suspend fun getEntriesWithIds(selectedIds: List<Int>): List<SatEntry>
@Query("SELECT catnum, epoch FROM entries")
suspend fun getEntriesEpochs(): Map<@MapColumn("catnum") Int, @MapColumn("epoch") Double>
@Query("SELECT catnum, name FROM entries")
suspend fun getEntriesNames(): Map<@MapColumn("catnum") Int, @MapColumn("name") String>
@Query("UPDATE entries SET name = :name WHERE catnum = :catnum")
suspend fun renameEntry(catnum: Int, name: String)
@Query("DELETE FROM entries WHERE catnum IN (:ids)")
suspend fun deleteEntriesWithIds(ids: List<Int>)
@Insert(onConflict = OnConflictStrategy.REPLACE) @Insert(onConflict = OnConflictStrategy.REPLACE)
suspend fun insertEntries(entries: List<SatEntry>) suspend fun insertEntries(entries: List<SatEntry>)
@Query("DELETE FROM entries") @Query("DELETE FROM entries")
suspend fun deleteEntries() suspend fun deleteEntries()
@Query("SELECT catnum FROM radios WHERE downlinkMode IN (:modes)") @Query(
"""
SELECT DISTINCT catnum FROM radios WHERE isAlive = 1
AND (downlinkMode IN (:modes) OR uplinkMode IN (:modes))
"""
)
suspend fun getIdsWithModes(modes: List<String>): List<Int> suspend fun getIdsWithModes(modes: List<String>): List<Int>
@Query("SELECT COUNT(*) FROM radios") @Query("SELECT COUNT(*) FROM radios")
@@ -60,4 +78,7 @@ interface Look4SatDao {
@Query("DELETE FROM radios") @Query("DELETE FROM radios")
suspend fun deleteRadios() suspend fun deleteRadios()
@Query("DELETE FROM radios WHERE isCustom = 0")
suspend fun deleteManagedRadios()
} }
@@ -19,19 +19,23 @@ package com.rtbishop.look4sat.core.data.database
import androidx.room.Database import androidx.room.Database
import androidx.room.RoomDatabase import androidx.room.RoomDatabase
import androidx.room.migration.Migration
import androidx.sqlite.db.SupportSQLiteDatabase
import com.rtbishop.look4sat.core.data.database.entity.SatEntry import com.rtbishop.look4sat.core.data.database.entity.SatEntry
import com.rtbishop.look4sat.core.data.database.entity.SatRadio import com.rtbishop.look4sat.core.data.database.entity.SatRadio
@Database(entities = [SatEntry::class, SatRadio::class], version = 1, exportSchema = false) const val DATABASE_NAME = "Look4SatDBv400"
@Database(entities = [SatEntry::class, SatRadio::class], version = 2, exportSchema = false)
abstract class Look4SatDb : RoomDatabase() { abstract class Look4SatDb : RoomDatabase() {
abstract fun look4SatDao(): Look4SatDao abstract fun look4SatDao(): Look4SatDao
} }
//val MIGRATION_1_2 = object : Migration(1, 2) { /** Adds the mean motion derivative, needed to tell decayed satellites apart, and marks the
// override fun migrate(database: SupportSQLiteDatabase) { * transceivers that were imported from a file, so that remote updates leave them alone. */
// database.execSQL("CREATE TABLE entries_backup (name TEXT NOT NULL, epoch REAL NOT NULL, meanmo REAL NOT NULL, eccn REAL NOT NULL, incl REAL NOT NULL, raan REAL NOT NULL, argper REAL NOT NULL, meanan REAL NOT NULL, catnum INTEGER NOT NULL, bstar REAL NOT NULL, xincl REAL NOT NULL, xnodeo REAL NOT NULL, omegao REAL NOT NULL, xmo REAL NOT NULL, xno REAL NOT NULL, orbitalPeriod REAL NOT NULL, isDeepSpace INTEGER NOT NULL, comment TEXT, PRIMARY KEY(catnum))") val MIGRATION_1_2 = object : Migration(1, 2) {
// database.execSQL("INSERT INTO entries_backup (name, epoch, meanmo, eccn, incl, raan, argper, meanan, catnum, bstar, xincl, xnodeo, omegao, xmo, xno, orbitalPeriod, isDeepSpace, comment) SELECT name, epoch, meanmo, eccn, incl, raan, argper, meanan, catnum, bstar, xincl, xnodeo, omegao, xmo, xno, 1440 / meanmo, 1440 / meanmo >= 225.0, comment FROM entries") override fun migrate(db: SupportSQLiteDatabase) {
// database.execSQL("DROP TABLE entries") db.execSQL("ALTER TABLE entries ADD COLUMN ndot REAL NOT NULL DEFAULT 0.0")
// database.execSQL("ALTER TABLE entries_backup RENAME TO entries") db.execSQL("ALTER TABLE radios ADD COLUMN isCustom INTEGER NOT NULL DEFAULT 0")
// } }
//} }
@@ -30,5 +30,6 @@ data class SatEntry(
val argper: Double, val argper: Double,
val meanan: Double, val meanan: Double,
val catnum: Int, val catnum: Int,
val bstar: Double val bstar: Double,
val ndot: Double = 0.0
) )
@@ -32,5 +32,7 @@ data class SatRadio(
val uplinkHigh: Long?, val uplinkHigh: Long?,
val uplinkMode: String?, val uplinkMode: String?,
val isInverted: Boolean, val isInverted: Boolean,
val catnum: Int? val catnum: Int?,
/** Set for manually imported transceivers, which remote updates must not replace. */
val isCustom: Boolean = false
) )
@@ -0,0 +1,364 @@
/*
* 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.data.framework
import android.bluetooth.BluetoothManager
import android.bluetooth.BluetoothSocket
import android.util.Log
import com.rtbishop.look4sat.core.domain.repository.IRadioController
import kotlinx.coroutines.Dispatchers
import kotlinx.coroutines.delay
import kotlinx.coroutines.sync.Mutex
import kotlinx.coroutines.sync.withLock
import kotlinx.coroutines.withContext
import java.io.InputStream
import java.io.OutputStream
import java.util.UUID
/**
* Icom IC-705 CI-V controller over Bluetooth SPP.
*
* The IC-705 emits broadcast frames continuously (band scope, UTC, signal
* level, …). A reply to any command we send may therefore be buried in
* that noise. All response reads drain up to [ACK_TIMEOUT_MS] and scan the
* entire accumulated buffer for the frame we expect rather than assuming
* the very next byte is the response.
*/
class Ic705Controller(
private val bluetoothManager: BluetoothManager,
private val deviceAddress: String
) : IRadioController {
private val tag = "IC705"
private val sppId: UUID = UUID.fromString("00001101-0000-1000-8000-00805f9b34fb")
private val ioMutex = Mutex()
/** Time budget (ms) to wait for a response amid broadcast noise. */
private val ACK_TIMEOUT_MS = 500L
/** Polling interval while draining the input buffer. */
private val POLL_INTERVAL_MS = 20L
/** Small pause after writing a command before reading the response. */
private val WRITE_SETTLE_MS = 50L
private var socket: BluetoothSocket? = null
private var outputStream: OutputStream? = null
private var inputStream: InputStream? = null
override var isConnected: Boolean = false
private set
// ── Connection ──────────────────────────────────────────────────────────
override suspend fun connect(): Boolean = withContext(Dispatchers.IO) {
if (isConnected) return@withContext true
if (deviceAddress.isBlank()) return@withContext false
try {
val device = bluetoothManager.adapter.getRemoteDevice(deviceAddress)
val btSocket = device.createInsecureRfcommSocketToServiceRecord(sppId)
btSocket.connect()
socket = btSocket
outputStream = btSocket.outputStream
inputStream = btSocket.inputStream
isConnected = true
// Enter VFO mode — frequency/mode commands return FA if the radio
// is in memory-channel mode. Safe to send regardless of current state.
Log.i(tag, "Connected to $deviceAddress — entering VFO mode")
val vfoCmd = IcomCivProtocol.buildEnterVfoModeCommand()
Log.d(tag, "CMD enterVfoMode → ${IcomCivProtocol.toHex(vfoCmd)}")
ioMutex.withLock { sendAndWaitAck(vfoCmd) }
true
} catch (e: Exception) {
Log.e(tag, "Connect error: ${e.message}")
isConnected = false
false
}
}
override suspend fun disconnect() {
withContext(Dispatchers.IO) {
try {
inputStream?.close()
outputStream?.close()
socket?.close()
} catch (e: Exception) {
Log.e(tag, "Disconnect error: ${e.message}")
} finally {
inputStream = null
outputStream = null
socket = null
isConnected = false
Log.i(tag, "Disconnected from $deviceAddress")
}
}
}
// ── IRadioController – standard operations ──────────────────────────────
override suspend fun setFrequency(frequencyHz: Long): Boolean = withContext(Dispatchers.IO) {
Log.d(tag, "setFrequency: ${frequencyHz}Hz")
ioMutex.withLock {
val cmd = IcomCivProtocol.buildSetFreqCommand(frequencyHz)
Log.d(tag, "CMD setFreq → ${IcomCivProtocol.toHex(cmd)}")
sendAndWaitAck(cmd)
}
}
override suspend fun setMode(mode: String): Boolean = withContext(Dispatchers.IO) {
val cmd = IcomCivProtocol.buildSetModeCommand(mode) ?: run {
Log.w(tag, "setMode: unknown mode '$mode'")
return@withContext false
}
Log.d(tag, "setMode: $mode")
Log.d(tag, "CMD setMode → ${IcomCivProtocol.toHex(cmd)}")
ioMutex.withLock { sendAndWaitAck(cmd) }
}
override suspend fun setCtcssMode(enabled: Boolean): Boolean = withContext(Dispatchers.IO) {
Log.d(tag, "setCtcssMode: $enabled")
val cmd = IcomCivProtocol.buildCtcssModeCommand(enabled)
Log.d(tag, "CMD ctcssMode → ${IcomCivProtocol.toHex(cmd)}")
ioMutex.withLock { sendAndWaitAck(cmd) }
}
override suspend fun setCtcssTone(toneHz: Double): Boolean = withContext(Dispatchers.IO) {
Log.d(tag, "setCtcssTone: ${toneHz}Hz")
val cmd = IcomCivProtocol.buildSetCtcssToneCommand(toneHz)
Log.d(tag, "CMD ctcssTone → ${IcomCivProtocol.toHex(cmd)}")
ioMutex.withLock { sendAndWaitAck(cmd) }
}
override suspend fun readFrequencyAndMode(): Pair<Long, String>? = withContext(Dispatchers.IO) {
ioMutex.withLock {
val cmd = IcomCivProtocol.buildReadFreqCommand()
Log.d(tag, "CMD readFreq → ${IcomCivProtocol.toHex(cmd)}")
val payload = sendAndReadResponse(cmd, IcomCivProtocol.CMD_READ_FREQ) ?: return@withContext null
// Read-freq reply payload: [cmd byte already stripped by parseResponse] [5 freq bytes] [mode] [filter]
IcomCivProtocol.parseFreqModePayload(payload).also {
if (it != null) Log.d(tag, "readFreqMode: ${it.first}Hz, ${it.second}")
else Log.w(tag, "readFreqMode: parse failed, payload=${IcomCivProtocol.toHex(payload)}")
}
}
}
override suspend fun pttOn(): Boolean = withContext(Dispatchers.IO) {
Log.w(tag, "pttOn: not used for IC-705")
true
}
override suspend fun pttOff(): Boolean = withContext(Dispatchers.IO) {
Log.w(tag, "pttOff: not used for IC-705")
true
}
// ── IRadioController – IC-705 extended operations ───────────────────────
/** Select the band for [frequencyHz] via CMD 0x1A sub 0x00 (band stacking register). */
override suspend fun setBand(frequencyHz: Long): Boolean = withContext(Dispatchers.IO) {
val cmd = IcomCivProtocol.buildBandSelectCommand(frequencyHz) ?: run {
Log.w(tag, "setBand: no band code for ${frequencyHz}Hz — skipping")
return@withContext false
}
Log.d(tag, "CMD setBand (${frequencyHz}Hz) → ${IcomCivProtocol.toHex(cmd)}")
ioMutex.withLock { sendAndWaitAck(cmd) }
}
/** Select VFO-A (main/RX) or VFO-B (sub/TX). */
override suspend fun setVfo(vfoA: Boolean): Boolean = withContext(Dispatchers.IO) {
val cmd = if (vfoA) IcomCivProtocol.buildSelectVfoACommand()
else IcomCivProtocol.buildSelectVfoBCommand()
Log.d(tag, "CMD selectVFO${if (vfoA) "A" else "B"} → ${IcomCivProtocol.toHex(cmd)}")
ioMutex.withLock { sendAndWaitAck(cmd) }
}
/**
* Enable or disable SPLIT mode (TX on sub-VFO while listening on main VFO).
*/
override suspend fun setSplitMode(enabled: Boolean): Boolean = withContext(Dispatchers.IO) {
val cmd = IcomCivProtocol.buildSplitModeCommand(enabled)
Log.d(tag, "CMD split ${if (enabled) "ON" else "OFF"} → ${IcomCivProtocol.toHex(cmd)}")
ioMutex.withLock { sendAndWaitAck(cmd) }
}
/**
* Set the frequency of the **currently active** VFO (CMD 0x25 sub 0x00).
* In split mode the radio automatically switches active VFO on PTT, so
* always writing to the active VFO is the correct strategy.
*/
override suspend fun setWorkingFrequency(frequencyHz: Long): Boolean = withContext(Dispatchers.IO) {
Log.d(tag, "setWorkingFrequency (0x25/00): ${frequencyHz}Hz")
val cmd = IcomCivProtocol.buildSetWorkingFreqCommand(frequencyHz)
Log.d(tag, "CMD setWorkingFreq → ${IcomCivProtocol.toHex(cmd)}")
ioMutex.withLock { sendAndWaitAck(cmd) }
}
/**
* Set TX VFO frequency via CMD 0x25 sub 0x01 (unselected VFO).
* Sent every tracking cycle in split mode alongside [setWorkingFrequency].
*/
override suspend fun setTxVfoFrequency(frequencyHz: Long): Boolean = withContext(Dispatchers.IO) {
Log.d(tag, "setTxVfoFrequency (0x25/01): ${frequencyHz}Hz")
val cmd = IcomCivProtocol.buildSetUnselectedVfoFreqCommand(frequencyHz)
Log.d(tag, "CMD setTxVfoFreq → ${IcomCivProtocol.toHex(cmd)}")
ioMutex.withLock { sendAndWaitAck(cmd) }
}
/**
* Read the frequency of the currently active VFO (CMD 0x25 sub 0x00).
* Used for tuning detection in split mode.
*/
override suspend fun readWorkingFrequency(): Long? = withContext(Dispatchers.IO) {
ioMutex.withLock {
val cmd = IcomCivProtocol.buildReadWorkingFreqCommand()
Log.d(tag, "CMD readWorkingFreq → ${IcomCivProtocol.toHex(cmd)}")
val payload = sendAndReadResponse(cmd, IcomCivProtocol.CMD_SELECTED_VFO_FREQ) ?: return@withContext null
// Response payload: [sub] [5 freq bytes] — CMD byte already stripped by parseResponse
Log.d(tag, "readWorkingFreq: got ${payload.size} bytes: ${IcomCivProtocol.toHex(payload)}")
if (payload.size < 6) {
Log.w(tag, "readWorkingFreq: payload too short (${payload.size} bytes)")
return@withContext null
}
val freqBcd = payload.sliceArray(1..5)
val freq = IcomCivProtocol.decodeFrequencyBcd(freqBcd)
Log.d(tag, "readWorkingFreq: ${freq}Hz")
freq
}
}
/**
* Read the frequency of the inactive/TX VFO (CMD 0x25 sub 0x01).
* Used for tuning detection in split mode.
*/
override suspend fun readTxVfoFrequency(): Long? = withContext(Dispatchers.IO) {
ioMutex.withLock {
val cmd = IcomCivProtocol.buildReadTxVfoFreqCommand()
Log.d(tag, "CMD readTxVfoFreq → ${IcomCivProtocol.toHex(cmd)}")
val payload = sendAndReadResponse(cmd, IcomCivProtocol.CMD_SELECTED_VFO_FREQ) ?: return@withContext null
// Response payload: [sub] [5 freq bytes] — CMD byte already stripped by parseResponse
Log.d(tag, "readTxVfoFreq: got ${payload.size} bytes: ${IcomCivProtocol.toHex(payload)}")
if (payload.size < 6) {
Log.w(tag, "readTxVfoFreq: payload too short (${payload.size} bytes)")
return@withContext null
}
val freqBcd = payload.sliceArray(1..5)
val freq = IcomCivProtocol.decodeFrequencyBcd(freqBcd)
Log.d(tag, "readTxVfoFreq: ${freq}Hz")
freq
}
}
// ── Internal I/O helpers ────────────────────────────────────────────────
/**
* Write [cmd] to the radio and drain the input stream for up to
* [ACK_TIMEOUT_MS], looking for an OK/NG acknowledgement frame.
*/
private suspend fun sendAndWaitAck(cmd: ByteArray): Boolean {
if (!write(cmd)) return false
delay(WRITE_SETTLE_MS)
val buf = drainWithTimeout(ACK_TIMEOUT_MS)
val ok = IcomCivProtocol.containsAck(buf)
if (!ok) Log.w(tag, "ACK not found in ${buf.size} bytes: ${IcomCivProtocol.toHex(buf)}")
return ok
}
/**
* Write [cmd] to the radio and drain the input stream for up to
* [ACK_TIMEOUT_MS], scanning for a response frame carrying [expectCmd].
* Returns the payload bytes of that frame, or null on timeout/error.
*/
private suspend fun sendAndReadResponse(cmd: ByteArray, expectCmd: Byte): ByteArray? {
if (!write(cmd)) return null
delay(WRITE_SETTLE_MS)
val buf = drainWithTimeout(ACK_TIMEOUT_MS)
val response = IcomCivProtocol.parseResponse(buf, expectCmd)
if (response == null) {
Log.w(tag, "No response for cmd 0x${String.format("%02X", expectCmd.toInt() and 0xFF)} " +
"in ${buf.size} bytes: ${IcomCivProtocol.toHex(buf)}")
}
return response?.payload
}
/**
* Drain whatever bytes the radio has buffered within a [timeoutMs] window.
* Exits early as soon as a complete CI-V frame addressed to us is present
* in the buffer (i.e., FE FE E0 A4 … FD), so we don't waste the remaining
* timeout on responses that already arrived.
*/
private suspend fun drainWithTimeout(timeoutMs: Long): ByteArray {
val result = mutableListOf<Byte>()
val deadline = System.currentTimeMillis() + timeoutMs
val stream = inputStream ?: return ByteArray(0)
while (System.currentTimeMillis() < deadline) {
try {
val available = stream.available()
if (available > 0) {
val chunk = ByteArray(available)
val read = stream.read(chunk)
if (read > 0) {
result.addAll(chunk.take(read))
// Exit early once we have a complete frame for us
if (hasCompleteFrameForUs(result)) break
}
} else {
delay(POLL_INTERVAL_MS)
}
} catch (e: Exception) {
Log.e(tag, "Drain error: ${e.message}")
isConnected = false
break
}
}
return result.toByteArray()
}
/**
* Returns true if [buf] contains a complete CI-V frame addressed to the
* controller (FE FE [ADDR_CTRL] [ADDR_IC705] … FD).
* CI-V data bytes cannot be 0xFD, so the first 0xFD after the header is
* always the frame terminator.
*/
private fun hasCompleteFrameForUs(buf: List<Byte>): Boolean {
var i = 0
while (i < buf.size - 4) {
if (buf[i] == IcomCivProtocol.PREAMBLE &&
buf[i + 1] == IcomCivProtocol.PREAMBLE &&
buf[i + 2] == IcomCivProtocol.ADDR_CTRL &&
buf[i + 3] == IcomCivProtocol.ADDR_IC705
) {
for (k in i + 4 until buf.size) {
if (buf[k] == IcomCivProtocol.END_OF_MSG) return true
}
return false // header found but no FD yet
}
i++
}
return false
}
private fun write(bytes: ByteArray): Boolean {
return try {
outputStream?.write(bytes)
outputStream?.flush()
true
} catch (e: Exception) {
Log.e(tag, "Write error: ${e.message}")
isConnected = false
false
}
}
}
@@ -0,0 +1,353 @@
/*
* 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.data.framework
import java.util.Locale
/**
* Icom CI-V protocol encoder/decoder for the IC-705.
*
* Frame structure:
* FE FE <DEST> <SRC> <CMD> [<SUB>] [<DATA...>] FD
*
* IC-705 default CI-V address : 0xA4
* Controller (us) address : 0xE0
*/
object IcomCivProtocol {
// ── Framing constants ──────────────────────────────────────────────────
const val PREAMBLE: Byte = 0xFE.toByte()
const val END_OF_MSG: Byte = 0xFD.toByte()
const val ACK_OK: Byte = 0xFB.toByte()
const val ACK_NG: Byte = 0xFA.toByte()
// ── Address constants ──────────────────────────────────────────────────
/** Default CI-V address of the IC-705. */
const val ADDR_IC705: Byte = 0xA4.toByte()
/** Default CI-V address of the controller (us). */
const val ADDR_CTRL: Byte = 0xE0.toByte()
// ── Command bytes ──────────────────────────────────────────────────────
/** Read operating frequency (main VFO). */
const val CMD_READ_FREQ: Byte = 0x03
/** Set operating frequency (main VFO). */
const val CMD_SET_FREQ: Byte = 0x05
/** Set operating mode. */
const val CMD_SET_MODE: Byte = 0x06
/** Select VFO / memory. */
const val CMD_SELECT_VFO: Byte = 0x07
/**
* Select operating mode (VFO vs memory-channel).
* Sub 0x00 = VFO mode. Must be sent after connect if the radio is in
* memory-channel mode — frequency/mode commands return FA until it is.
*/
const val CMD_SELECT_OP_MODE: Byte = 0x08
/** Set repeater duplex / SPLIT. */
const val CMD_DUPLEX_SPLIT: Byte = 0x0F
/** Band stacking register / band select (sub 0x00 = select, data = BCD band number). */
const val CMD_BAND_SELECT: Byte = 0x1A
/** Read/write CTCSS tone frequency. */
const val CMD_CTCSS_TONE: Byte = 0x1B
/** Read/write misc settings (used for enabling CTCSS encode). */
const val CMD_MISC_SETTING: Byte = 0x16
/** Read/write selected-VFO frequency (cmd 0x25). */
const val CMD_SELECTED_VFO_FREQ: Byte = 0x25
// ── Sub-command bytes ──────────────────────────────────────────────────
/** Sub for CMD_SELECT_VFO: select VFO-A (main). */
const val SUB_VFO_A: Byte = 0x00
/** Sub for CMD_SELECT_VFO: select VFO-B (sub). */
const val SUB_VFO_B: Byte = 0x01
/** Sub for CMD_DUPLEX_SPLIT: simplex / split OFF. */
const val SUB_SPLIT_OFF: Byte = 0x00
/** Sub for CMD_DUPLEX_SPLIT: SPLIT ON. */
const val SUB_SPLIT_ON: Byte = 0x01
/** Sub for CMD_SELECTED_VFO_FREQ: selected (active) VFO frequency. */
const val SUB_SELECTED_VFO: Byte = 0x00
/** Sub for CMD_SELECTED_VFO_FREQ: unselected (inactive / TX in split) VFO frequency. */
const val SUB_UNSELECTED_VFO: Byte = 0x01
/** Sub for CMD_MISC_SETTING: CTCSS/DTCS tone squelch. */
const val SUB_CTCSS_SETTING: Byte = 0x42.toByte()
// ── Mode bytes ────────────────────────────────────────────────────────
/** Maps mode strings (upper-case) → IC-705 mode bytes. */
val MODE_TO_BYTE: Map<String, Byte> = mapOf(
"LSB" to 0x00,
"USB" to 0x01,
"AM" to 0x02,
"CW" to 0x03,
"RTTY" to 0x04,
"FM" to 0x05,
"WFM" to 0x06,
"CW-R" to 0x07,
"RTTY-R" to 0x08,
"DV" to 0x12,
"AFSK" to 0x05 // AFSK uses FM modulation
)
val BYTE_TO_MODE: Map<Byte, String> = MODE_TO_BYTE.entries.associate { it.value to it.key }
// ── Frequency BCD encoding ─────────────────────────────────────────────
/**
* Encode a frequency in Hz to the IC-705's 5-byte BCD format.
*
* The IC-705 uses 5 bytes, LSB pair first, with 1 Hz resolution.
* Example: 145,500,000 Hz → "0145500000" → pairs LSB→MSB:
* [00, 00, 50, 45, 01]
*/
fun encodeFrequencyBcd(frequencyHz: Long): ByteArray {
val digits = String.format(Locale.US, "%010d", frequencyHz)
val bcd = ByteArray(5)
for (i in 0 until 5) {
// digits are MSB first; we want pair index 0 = LSB pair
val pairIndex = 4 - i
val high = digits[pairIndex * 2] - '0'
val low = digits[pairIndex * 2 + 1] - '0'
bcd[i] = ((high shl 4) or low).toByte()
}
return bcd
}
/**
* Decode 5-byte BCD frequency (LSB pair first) to Hz.
*/
fun decodeFrequencyBcd(bcd: ByteArray): Long {
// Build digit string MSB→LSB by reversing the byte order
var freqHz = 0L
for (i in 4 downTo 0) {
val b = bcd[i].toInt() and 0xFF
val high = b shr 4
val low = b and 0x0F
freqHz = freqHz * 100 + high * 10 + low
}
return freqHz
}
/**
* Encode a CTCSS tone (Hz, e.g. 67.0) to 2-byte BCD (0.1 Hz resolution).
* 67.0 → 670 (tenths of Hz) → BCD bytes [0x06, 0x70].
*/
fun encodeCtcssToneBcd(toneHz: Double): ByteArray {
val tone01 = (toneHz * 10).toLong()
val digits = String.format(Locale.US, "%04d", tone01)
return byteArrayOf(
((digits[0] - '0') shl 4 or (digits[1] - '0')).toByte(),
((digits[2] - '0') shl 4 or (digits[3] - '0')).toByte()
)
}
// ── Message builders ───────────────────────────────────────────────────
/** Wrap payload bytes in a CI-V frame: FE FE DEST SRC ... FD. */
private fun frame(vararg payload: Byte): ByteArray {
return byteArrayOf(PREAMBLE, PREAMBLE, ADDR_IC705, ADDR_CTRL) +
payload +
byteArrayOf(END_OF_MSG)
}
/** Set operating frequency via CMD 0x05 (main VFO). */
fun buildSetFreqCommand(frequencyHz: Long): ByteArray {
return frame(CMD_SET_FREQ, *encodeFrequencyBcd(frequencyHz))
}
/**
* Set selected-VFO frequency via CMD 0x25 sub 0x00.
* This updates whichever VFO is currently active (RX or TX after split).
*/
fun buildSetWorkingFreqCommand(frequencyHz: Long): ByteArray {
return frame(CMD_SELECTED_VFO_FREQ, SUB_SELECTED_VFO, *encodeFrequencyBcd(frequencyHz))
}
/**
* Set unselected-VFO frequency via CMD 0x25 sub 0x01.
* In split mode while PTT is pressed the IC-705 makes VFO-B active, so
* this command targets VFO-A (the RX VFO) — and vice-versa when in RX.
* Use this to update the TX VFO when PTT is on.
*/
fun buildSetUnselectedVfoFreqCommand(frequencyHz: Long): ByteArray {
return frame(CMD_SELECTED_VFO_FREQ, SUB_UNSELECTED_VFO, *encodeFrequencyBcd(frequencyHz))
}
/** Read operating frequency (CMD 0x03). */
fun buildReadFreqCommand(): ByteArray = frame(CMD_READ_FREQ)
/** Read selected (active) VFO frequency (CMD 0x25 sub 0x00). */
fun buildReadWorkingFreqCommand(): ByteArray = frame(CMD_SELECTED_VFO_FREQ, SUB_SELECTED_VFO)
/** Read unselected (inactive/TX in split) VFO frequency (CMD 0x25 sub 0x01). */
fun buildReadTxVfoFreqCommand(): ByteArray = frame(CMD_SELECTED_VFO_FREQ, SUB_UNSELECTED_VFO)
/**
* Select band via CMD 0x1A sub 0x00.
* Band codes are BCD-numbered: 1=160m, 2=80m, …, 9=10m, 0x10=6m, 0x11=2m, 0x12=70cm, 0x13=23cm.
* Returns null if [frequencyHz] doesn't fall in a known amateur band.
*/
fun buildBandSelectCommand(frequencyHz: Long): ByteArray? {
val code = bandCodeForFrequency(frequencyHz) ?: return null
return frame(CMD_BAND_SELECT, 0x00, code)
}
/**
* Map a frequency in Hz to the IC-705 band stacking register code.
* Codes are BCD (band number in decimal expressed as hex nibbles).
*/
fun bandCodeForFrequency(frequencyHz: Long): Byte? = when {
frequencyHz in 1_800_000L ..1_999_999L -> 0x01 // 160 m
frequencyHz in 3_500_000L ..3_999_999L -> 0x02 // 80 m
frequencyHz in 7_000_000L ..7_299_999L -> 0x03 // 40 m
frequencyHz in 10_100_000L ..10_149_999L -> 0x04 // 30 m
frequencyHz in 14_000_000L ..14_349_999L -> 0x05 // 20 m
frequencyHz in 18_068_000L ..18_167_999L -> 0x06 // 17 m
frequencyHz in 21_000_000L ..21_449_999L -> 0x07 // 15 m
frequencyHz in 24_890_000L ..24_989_999L -> 0x08 // 12 m
frequencyHz in 28_000_000L ..29_699_999L -> 0x09 // 10 m
frequencyHz in 50_000_000L ..53_999_999L -> 0x10 // 6 m (BCD 10)
frequencyHz in 144_000_000L ..147_999_999L -> 0x11 // 2 m (BCD 11)
frequencyHz in 420_000_000L ..449_999_999L -> 0x12 // 70 cm (BCD 12)
frequencyHz in 1_240_000_000L ..1_299_999_999L -> 0x13 // 23 cm (BCD 13)
else -> null
}
/** Set operating mode (CMD 0x06). Filter byte is omitted — radio uses its default filter for the mode. */
fun buildSetModeCommand(mode: String): ByteArray? {
val modeByte = MODE_TO_BYTE[mode.uppercase(Locale.US)] ?: return null
return frame(CMD_SET_MODE, modeByte)
}
/** Select VFO-A (CMD 0x07 sub 0x00). */
fun buildSelectVfoACommand(): ByteArray = frame(CMD_SELECT_VFO, SUB_VFO_A)
/** Select VFO-B (CMD 0x07 sub 0x01). */
fun buildSelectVfoBCommand(): ByteArray = frame(CMD_SELECT_VFO, SUB_VFO_B)
/**
* Enter VFO operating mode (CMD 0x08 sub 0x00).
* Sent after connect — if the radio is in memory-channel mode frequency
* and mode commands return FA until this is issued.
*/
fun buildEnterVfoModeCommand(): ByteArray = frame(CMD_SELECT_OP_MODE, 0x00)
/** Enable or disable SPLIT mode (CMD 0x0F). */
fun buildSplitModeCommand(enable: Boolean): ByteArray {
val sub = if (enable) SUB_SPLIT_ON else SUB_SPLIT_OFF
return frame(CMD_DUPLEX_SPLIT, sub)
}
/**
* Enable/disable CTCSS encode (CMD 0x16 sub 0x42).
* 0x01 = CTCSS encoder ON, 0x00 = OFF.
*/
fun buildCtcssModeCommand(enabled: Boolean): ByteArray {
val value: Byte = if (enabled) 0x01 else 0x00
return frame(CMD_MISC_SETTING, SUB_CTCSS_SETTING, value)
}
/**
* Set CTCSS tone frequency (CMD 0x1B sub 0x00).
*/
fun buildSetCtcssToneCommand(toneHz: Double): ByteArray {
val bcd = encodeCtcssToneBcd(toneHz)
return frame(CMD_CTCSS_TONE, 0x00, *bcd)
}
// ── Response parsing ───────────────────────────────────────────────────
/**
* Find and parse a complete CI-V response frame from a buffer.
*
* Returns the bytes between "FE FE E0 A4 <CMD>" and FD, or null if no
* complete frame was found. The search is tolerant of interleaved
* broadcast traffic.
*
* @param buf bytes accumulated from the radio
* @param expectCmd the command byte we are looking for in the reply, or
* null to accept any command response from the radio
*/
fun parseResponse(buf: ByteArray, expectCmd: Byte?): ParsedResponse? {
var i = 0
while (i < buf.size - 5) {
// Look for FE FE preamble
if (buf[i] != PREAMBLE || buf[i + 1] != PREAMBLE) { i++; continue }
val dest = buf[i + 2]
val src = buf[i + 3]
val cmd = buf[i + 4]
// We only care about frames addressed to us from the radio
if (dest != ADDR_CTRL || src != ADDR_IC705) { i++; continue }
// Find the terminating FD
val fdIdx = buf.indexOf(END_OF_MSG, startIndex = i + 5)
if (fdIdx < 0) break // incomplete frame, wait for more data
val payload = buf.copyOfRange(i + 5, fdIdx)
if (expectCmd == null || cmd == expectCmd) {
return ParsedResponse(cmd, payload, fdIdx + 1)
}
i = fdIdx + 1
}
return null
}
private fun ByteArray.indexOf(b: Byte, startIndex: Int): Int {
for (k in startIndex until size) if (this[k] == b) return k
return -1
}
/**
* Check whether a buffer contains an OK acknowledgement (FB FD) from
* the radio. Tolerates broadcast noise before the ACK.
*/
fun containsAck(buf: ByteArray): Boolean {
var i = 0
while (i < buf.size - 5) {
if (buf[i] != PREAMBLE || buf[i + 1] != PREAMBLE) { i++; continue }
val dest = buf[i + 2]
val src = buf[i + 3]
val cmd = buf[i + 4]
if (dest != ADDR_CTRL || src != ADDR_IC705) { i++; continue }
// Skip to FD
val fdIdx = buf.indexOf(END_OF_MSG, startIndex = i + 5)
if (fdIdx < 0) break
if (cmd == ACK_OK) return true
if (cmd == ACK_NG) return false
i = fdIdx + 1
}
return false
}
/**
* Parse frequency + mode from a CMD_READ_FREQ reply payload.
* Payload layout after stripping command byte: [5 freq bytes]
* The IC-705 does not include a mode byte; if one is present it is parsed, otherwise mode is empty.
*/
fun parseFreqModePayload(payload: ByteArray): Pair<Long, String>? {
if (payload.size < 5) return null
val freqHz = decodeFrequencyBcd(payload.copyOfRange(0, 5))
val mode = if (payload.size > 5) BYTE_TO_MODE[payload[5]] ?: return null else ""
return freqHz to mode
}
/** Hex dump of bytes, useful for debug logging. */
fun toHex(bytes: ByteArray): String =
bytes.joinToString(" ") { String.format(Locale.US, "%02X", it.toInt() and 0xFF) }
data class ParsedResponse(
val cmd: Byte,
val payload: ByteArray,
/** Index in the source buffer immediately after the FD terminator. */
val nextOffset: Int
)
}
@@ -17,8 +17,10 @@
*/ */
package com.rtbishop.look4sat.core.data.framework package com.rtbishop.look4sat.core.data.framework
import com.rtbishop.look4sat.core.domain.model.Constants
import com.rtbishop.look4sat.core.domain.repository.IReporter import com.rtbishop.look4sat.core.domain.repository.IReporter
import kotlinx.coroutines.CoroutineScope import kotlinx.coroutines.CoroutineScope
import kotlinx.coroutines.channels.Channel
import kotlinx.coroutines.launch import kotlinx.coroutines.launch
import kotlinx.coroutines.sync.Mutex import kotlinx.coroutines.sync.Mutex
import kotlinx.coroutines.sync.withLock import kotlinx.coroutines.sync.withLock
@@ -31,18 +33,30 @@ class NetworkReporter(
private val rotatorServer: String, private val rotatorServer: String,
private val rotatorPort: Int, private val rotatorPort: Int,
private val frequencyServer: String, private val frequencyServer: String,
private val frequencyPort: Int private val frequencyPort: Int,
private val frequencyOffsetHz: Long = 0L
) : IReporter { ) : IReporter {
private val writeMutex = Mutex() private val writeMutex = Mutex()
private val connectionMutex = Mutex()
private val frequencyCommands = Channel<String>(Channel.CONFLATED)
private var rotatorSocket: SocketChannel? = null private var rotatorSocket: SocketChannel? = null
private var rotatorConnected = false private var rotatorConnected = false
private var rotatorConnecting = false
private var frequencySocket: SocketChannel? = null private var frequencySocket: SocketChannel? = null
private var frequencyConnected = false private var frequencyConnected = false
private var frequencyConnecting = false
init {
// Keep only the latest frequency command to avoid stale backlog and effective lag.
reporterScope.launch {
for (command in frequencyCommands) {
ensureFrequencyConnected()
if (!frequencyConnected) continue
write(frequencySocket, command) { resetFrequencyConnection() }
}
}
}
override fun reportRotation(format: String, azimuth: Double, elevation: Double) { override fun reportRotation(format: String, azimuth: Double, elevation: Double) {
reporterScope.launch { reporterScope.launch {
@@ -58,46 +72,43 @@ class NetworkReporter(
} }
override fun reportFrequency(format: String, frequency: Long) { override fun reportFrequency(format: String, frequency: Long) {
reporterScope.launch { val clampedOffset = frequencyOffsetHz.coerceIn(
ensureFrequencyConnected() Constants.FREQ_OFFSET_MIN_HZ,
if (!frequencyConnected) return@launch Constants.FREQ_OFFSET_MAX_HZ
val command = format )
.replace($$"$FREQ", frequency.toString()) val correctedFreq = frequency.coerceAtLeast(0L).safeAdd(clampedOffset).coerceAtLeast(0L)
.unescapeControlChars() val command = format
write(frequencySocket, command) { frequencyConnected = false } .replace($$"$FREQ", correctedFreq.toString())
} .unescapeControlChars()
frequencyCommands.trySend(command)
} }
private fun ensureRotatorConnected() { private suspend fun ensureRotatorConnected() {
if (rotatorConnected || rotatorConnecting || rotatorServer.isBlank()) return connectionMutex.withLock {
reporterScope.launch { if (rotatorConnected || rotatorServer.isBlank()) return
try { try {
rotatorConnecting = true resetRotatorConnection()
rotatorSocket = SocketChannel.open(InetSocketAddress(rotatorServer, rotatorPort)) rotatorSocket = SocketChannel.open(InetSocketAddress(rotatorServer, rotatorPort))
rotatorConnected = true rotatorConnected = true
println("NetworkReporter: Rotator connected to $rotatorServer:$rotatorPort") println("NetworkReporter: Rotator connected to $rotatorServer:$rotatorPort")
} catch (e: Exception) { } catch (e: Exception) {
println("NetworkReporter rotator connect error: ${e.message}") println("NetworkReporter rotator connect error: ${e.message}")
rotatorConnected = false resetRotatorConnection()
} finally {
rotatorConnecting = false
} }
} }
} }
private fun ensureFrequencyConnected() { private suspend fun ensureFrequencyConnected() {
if (frequencyConnected || frequencyConnecting || frequencyServer.isBlank()) return connectionMutex.withLock {
reporterScope.launch { if (frequencyConnected || frequencyServer.isBlank()) return
try { try {
frequencyConnecting = true resetFrequencyConnection()
frequencySocket = SocketChannel.open(InetSocketAddress(frequencyServer, frequencyPort)) frequencySocket = SocketChannel.open(InetSocketAddress(frequencyServer, frequencyPort))
frequencyConnected = true frequencyConnected = true
println("NetworkReporter: Frequency connected to $frequencyServer:$frequencyPort") println("NetworkReporter: Frequency connected to $frequencyServer:$frequencyPort")
} catch (e: Exception) { } catch (e: Exception) {
println("NetworkReporter frequency connect error: ${e.message}") println("NetworkReporter frequency connect error: ${e.message}")
frequencyConnected = false resetFrequencyConnection()
} finally {
frequencyConnecting = false
} }
} }
} }
@@ -106,7 +117,9 @@ class NetworkReporter(
try { try {
writeMutex.withLock { writeMutex.withLock {
val buffer = ByteBuffer.wrap("$command\n".toByteArray()) val buffer = ByteBuffer.wrap("$command\n".toByteArray())
socket?.write(buffer) while (buffer.hasRemaining()) {
socket?.write(buffer)
}
} }
} catch (e: Exception) { } catch (e: Exception) {
println("NetworkReporter write error: ${e.message}") println("NetworkReporter write error: ${e.message}")
@@ -114,6 +127,32 @@ class NetworkReporter(
} }
} }
private fun resetRotatorConnection() {
rotatorConnected = false
closeQuietly(rotatorSocket)
rotatorSocket = null
}
private fun resetFrequencyConnection() {
frequencyConnected = false
closeQuietly(frequencySocket)
frequencySocket = null
}
private fun closeQuietly(socket: SocketChannel?) {
try {
socket?.close()
} catch (_: Exception) {}
}
private fun Long.safeAdd(delta: Long): Long {
return when {
delta > 0 && this > Long.MAX_VALUE - delta -> Long.MAX_VALUE
delta < 0 && this < Long.MIN_VALUE - delta -> Long.MIN_VALUE
else -> this + delta
}
}
private fun String.unescapeControlChars(): String = private fun String.unescapeControlChars(): String =
replace("\\r", "\r").replace("\\n", "\n").replace("\\t", "\t") replace("\\r", "\r").replace("\\n", "\n").replace("\\t", "\t")
} }
@@ -19,8 +19,10 @@ package com.rtbishop.look4sat.core.data.framework
import android.bluetooth.BluetoothManager import android.bluetooth.BluetoothManager
import android.util.Log import android.util.Log
import com.rtbishop.look4sat.core.domain.model.RadioControlSettings
import com.rtbishop.look4sat.core.domain.model.SatRadio import com.rtbishop.look4sat.core.domain.model.SatRadio
import com.rtbishop.look4sat.core.domain.predict.OrbitalPass import com.rtbishop.look4sat.core.domain.predict.OrbitalPass
import com.rtbishop.look4sat.core.domain.predict.SPEED_OF_LIGHT
import com.rtbishop.look4sat.core.domain.repository.IRadioController import com.rtbishop.look4sat.core.domain.repository.IRadioController
import com.rtbishop.look4sat.core.domain.repository.IRadioTrackingService import com.rtbishop.look4sat.core.domain.repository.IRadioTrackingService
import com.rtbishop.look4sat.core.domain.repository.ISatelliteRepo import com.rtbishop.look4sat.core.domain.repository.ISatelliteRepo
@@ -29,6 +31,7 @@ import com.rtbishop.look4sat.core.domain.repository.RadioTrackingState
import com.rtbishop.look4sat.core.domain.utility.TransponderMapper import com.rtbishop.look4sat.core.domain.utility.TransponderMapper
import kotlinx.coroutines.CoroutineScope import kotlinx.coroutines.CoroutineScope
import kotlinx.coroutines.Job import kotlinx.coroutines.Job
import kotlinx.coroutines.currentCoroutineContext
import kotlinx.coroutines.delay import kotlinx.coroutines.delay
import kotlinx.coroutines.flow.MutableStateFlow import kotlinx.coroutines.flow.MutableStateFlow
import kotlinx.coroutines.flow.StateFlow import kotlinx.coroutines.flow.StateFlow
@@ -44,6 +47,8 @@ class RadioTrackingService(
) : IRadioTrackingService { ) : IRadioTrackingService {
private val tag = "RadioTracking" private val tag = "RadioTracking"
/** Delay between each step of the split-mode init sequence (ms). */
private val INIT_STEP_DELAY_MS = 200L
private val _state = MutableStateFlow(RadioTrackingState()) private val _state = MutableStateFlow(RadioTrackingState())
override val state: StateFlow<RadioTrackingState> = _state override val state: StateFlow<RadioTrackingState> = _state
@@ -51,227 +56,427 @@ class RadioTrackingService(
private var rxController: IRadioController? = null private var rxController: IRadioController? = null
private var trackingJob: Job? = null private var trackingJob: Job? = null
// ── Connection ──────────────────────────────────────────────────────────
override suspend fun connectRadios() { override suspend fun connectRadios() {
// Disconnect old controllers if any
txController?.disconnect() txController?.disconnect()
rxController?.disconnect() rxController?.disconnect()
// Read current addresses from settings
val rcSettings = settingsRepo.radioControlSettings.value val rcSettings = settingsRepo.radioControlSettings.value
val txAddr = rcSettings.txRadioAddress val txAddr = rcSettings.txRadioAddress
val rxAddr = rcSettings.rxRadioAddress val rxAddr = rcSettings.rxRadioAddress
val isIcom = rcSettings.radioModel == RadioControlSettings.MODEL_ICOM_IC705
val isSplit = isIcom && rcSettings.splitMode
Log.i(tag, "Connecting TX=$txAddr RX=$rxAddr") Log.i(tag, "connectRadios model=${rcSettings.radioModel} split=$isSplit TX=$txAddr RX=$rxAddr")
if (txAddr.isBlank() && rxAddr.isBlank()) { if (isSplit) {
_state.update { it.copy(errorMessage = "No radio addresses configured in Settings") } // Single-radio split mode: only TX slot is used
return if (txAddr.isBlank()) {
} _state.update { it.copy(errorMessage = "No radio address configured in Settings") }
return
val tx = Ft817Controller(bluetoothManager, txAddr) }
val rx = Ft817Controller(bluetoothManager, rxAddr) val tx = makeController(isIcom, txAddr)
txController = tx txController = tx
rxController = rx rxController = null
_state.update { it.copy(errorMessage = null) }
_state.update { it.copy(errorMessage = null) } val txOk = tx.connect()
val txOk = if (txAddr.isNotBlank()) tx.connect() else false _state.update {
val rxOk = if (rxAddr.isNotBlank()) rx.connect() else false it.copy(
_state.update { txConnected = txOk,
it.copy( rxConnected = false,
txConnected = txOk, errorMessage = if (!txOk) "Could not connect to radio ($txAddr)" else null
rxConnected = rxOk, )
errorMessage = when { }
!txOk && !rxOk -> "Could not connect to TX and RX radios" Log.i(tag, "IC-705 split mode connected: txOk=$txOk")
!txOk -> "Could not connect to TX radio ($txAddr)" } else {
!rxOk -> "Could not connect to RX radio ($rxAddr)" if (txAddr.isBlank() && rxAddr.isBlank()) {
else -> null _state.update { it.copy(errorMessage = "No radio addresses configured in Settings") }
} return
) }
val tx = makeController(isIcom, txAddr)
val rx = makeController(isIcom, rxAddr)
txController = tx
rxController = rx
_state.update { it.copy(errorMessage = null) }
val txOk = if (txAddr.isNotBlank()) tx.connect() else false
val rxOk = if (rxAddr.isNotBlank()) rx.connect() else false
_state.update {
it.copy(
txConnected = txOk,
rxConnected = rxOk,
errorMessage = when {
!txOk && !rxOk -> "Could not connect to TX and RX radios"
!txOk -> "Could not connect to TX radio ($txAddr)"
!rxOk -> "Could not connect to RX radio ($rxAddr)"
else -> null
}
)
}
Log.i(tag, "Dual-radio connected: txOk=$txOk rxOk=$rxOk")
} }
} }
private fun makeController(isIcom: Boolean, address: String): IRadioController =
if (isIcom) Ic705Controller(bluetoothManager, address)
else Ft817Controller(bluetoothManager, address)
override suspend fun disconnectRadios() { override suspend fun disconnectRadios() {
stopTracking() stopTracking()
txController?.disconnect() txController?.disconnect()
rxController?.disconnect() rxController?.disconnect()
txController = null txController = null
rxController = null rxController = null
_state.update { _state.update { it.copy(txConnected = false, rxConnected = false, isActive = false) }
it.copy(
txConnected = false,
rxConnected = false,
isActive = false
)
}
} }
// ── Tracking ────────────────────────────────────────────────────────────
override fun startTracking(pass: OrbitalPass, transponder: SatRadio, txBaseFreqHz: Long?) { override fun startTracking(pass: OrbitalPass, transponder: SatRadio, txBaseFreqHz: Long?) {
_state.update { _state.update {
it.copy( it.copy(
isActive = true, isActive = true,
currentPass = pass, currentPass = pass,
selectedTransponder = transponder, selectedTransponder = transponder,
txBaseFrequencyHz = txBaseFreqHz txBaseFrequencyHz = txBaseFreqHz
) )
} }
trackingJob?.cancel() trackingJob?.cancel()
trackingJob = appScope.launch {
// Set modes on both radios at tracking start
val tx = txController
val rx = rxController
val txMode = transponder.uplinkMode
val rxMode = transponder.downlinkMode
?: transponder.uplinkMode?.let {
TransponderMapper.mapUplinkModeToDownlinkMode(it, transponder.isInverted)
}
if (tx != null && tx.isConnected && txMode != null) {
tx.setMode(txMode)
Log.i(tag, "TX mode set to $txMode")
}
if (rx != null && rx.isConnected && rxMode != null) {
rx.setMode(rxMode)
Log.i(tag, "RX mode set to $rxMode")
}
// Set CTCSS if FM
if (txMode?.uppercase() == "FM") {
_state.value.ctcssTone?.let { tone ->
tx?.setCtcssTone(tone)
tx?.setCtcssMode(true)
}
}
_state.update { it.copy(txMode = txMode, rxMode = rxMode) }
var lastSetTxFreq = 0.0 val rcSettings = settingsRepo.radioControlSettings.value
var lastSetRxFreq = 0.0 val isIcom = rcSettings.radioModel == RadioControlSettings.MODEL_ICOM_IC705
var tuningRadio = "" // "", "tx", or "rx" - which radio the user is tuning val isSplit = isIcom && rcSettings.splitMode
var lastReadFreq = 0L
var stableCount = 0
while (isActive) { if (isSplit) {
val currentState = _state.value trackingJob = appScope.launch { runSplitTracking(transponder, txBaseFreqHz) }
if (!currentState.isActive) break } else {
trackingJob = appScope.launch { runDualRadioTracking(transponder, txBaseFreqHz) }
val satPass = currentState.currentPass ?: break
val xpdr = currentState.selectedTransponder ?: break
var txBaseFreq = currentState.txBaseFrequencyHz
val stationPos = settingsRepo.stationPosition.value
val timeNow = System.currentTimeMillis()
val pos = satelliteRepo.getPosition(satPass.orbitalObject, stationPos, timeNow)
val tx = txController
val rx = rxController
val hasUplink = txBaseFreq != null
val c = com.rtbishop.look4sat.core.domain.predict.SPEED_OF_LIGHT
val v = pos.distanceRate * 1000.0
if (tuningRadio.isNotEmpty()) {
// --- User is tuning: keep reading, wait for stabilization ---
val radio = if (tuningRadio == "tx") tx else rx
if (radio != null && radio.isConnected) {
val readResult = radio.readFrequencyAndMode()
if (readResult != null) {
val (freq, _) = readResult
if (kotlin.math.abs(freq - lastReadFreq) <= 20) {
stableCount++
} else {
stableCount = 0
lastReadFreq = freq
}
// Stable for 2 reads → user stopped turning
if (stableCount >= 2) {
if (tuningRadio == "tx" && txBaseFreq != null) {
val newBase = (freq.toDouble() * c / (c + v)).toLong()
if (newBase > 0) {
txBaseFreq = newBase
_state.update { it.copy(txBaseFrequencyHz = newBase) }
Log.i(tag, "TX tuning done → base=$newBase")
}
} else if (tuningRadio == "rx") {
val rxNominal = (freq.toDouble() * c / (c - v)).toLong()
val newTxBase = TransponderMapper.mapDownlinkToUplink(rxNominal, xpdr)
if (newTxBase != null && newTxBase > 0) {
txBaseFreq = newTxBase
_state.update { it.copy(txBaseFrequencyHz = newTxBase) }
Log.i(tag, "RX tuning done → txBase=$newTxBase")
}
}
tuningRadio = ""
stableCount = 0
lastSetTxFreq = 0.0
lastSetRxFreq = 0.0
}
}
}
} else {
// --- Normal tracking: read, detect changes, command ---
// TX dial feedback
if (hasUplink && tx != null && tx.isConnected && lastSetTxFreq > 0.0) {
val readResult = tx.readFrequencyAndMode()
if (readResult != null) {
val (actualTxFreq, _) = readResult
if (kotlin.math.abs(actualTxFreq - lastSetTxFreq) >= 20.0) {
tuningRadio = "tx"
lastReadFreq = actualTxFreq
stableCount = 0
Log.i(tag, "TX tuning detected (read=$actualTxFreq, lastSet=$lastSetTxFreq)")
}
}
}
// RX dial feedback (only if TX not tuning)
if (tuningRadio.isEmpty() && rx != null && rx.isConnected && lastSetRxFreq > 0.0) {
val readResult = rx.readFrequencyAndMode()
if (readResult != null) {
val (actualRxFreq, _) = readResult
if (kotlin.math.abs(actualRxFreq - lastSetRxFreq) >= 20.0) {
tuningRadio = "rx"
lastReadFreq = actualRxFreq
stableCount = 0
Log.i(tag, "RX tuning detected (read=$actualRxFreq, lastSet=$lastSetRxFreq)")
}
}
}
}
// Compute Doppler-corrected frequencies
val txRadioFreq = txBaseFreq?.let { pos.getUplinkFreq(it) }
val rxBaseFreq = if (txBaseFreq != null) {
TransponderMapper.mapUplinkToDownlink(txBaseFreq, xpdr)
} else {
xpdr.downlinkLow
}
val rxRadioFreq = rxBaseFreq?.let { pos.getDownlinkFreq(it) }
// Command radios (only when not tuning)
if (tuningRadio.isEmpty()) {
if (tx != null && tx.isConnected && txRadioFreq != null) {
tx.setFrequency(txRadioFreq)
lastSetTxFreq = txRadioFreq.toDouble()
}
if (rx != null && rx.isConnected && rxRadioFreq != null) {
rx.setFrequency(rxRadioFreq)
lastSetRxFreq = rxRadioFreq.toDouble()
}
}
_state.update {
it.copy(
txConnected = tx?.isConnected ?: false,
rxConnected = rx?.isConnected ?: false,
txFrequencyHz = txRadioFreq,
rxFrequencyHz = rxRadioFreq,
azimuth = Math.toDegrees(pos.azimuth),
elevation = Math.toDegrees(pos.elevation),
distance = pos.distance
)
}
delay(1000)
}
} }
} }
// ── Dual-radio tracking (Yaesu or two IC-705s) ──────────────────────────
private suspend fun runDualRadioTracking(transponder: SatRadio, initialTxBaseFreqHz: Long?) {
val tx = txController
val rx = rxController
// Initial setup: set band/mode/CTCSS on both radios
val txMode = transponder.uplinkMode
val rxMode = transponder.downlinkMode
?: transponder.uplinkMode?.let {
TransponderMapper.mapUplinkModeToDownlinkMode(it, transponder.isInverted)
}
Log.i(tag, "DualRadio start: txMode=$txMode rxMode=$rxMode")
if (tx != null && tx.isConnected && txMode != null) {
Log.d(tag, "Setting TX mode: $txMode")
tx.setMode(txMode)
}
if (rx != null && rx.isConnected && rxMode != null) {
Log.d(tag, "Setting RX mode: $rxMode")
rx.setMode(rxMode)
}
if (txMode?.uppercase() == "FM") {
_state.value.ctcssTone?.let { tone ->
Log.d(tag, "Setting CTCSS: ${tone}Hz")
tx?.setCtcssTone(tone)
tx?.setCtcssMode(true)
}
}
_state.update { it.copy(txMode = txMode, rxMode = rxMode) }
var lastSetTxFreq = 0.0
var lastSetRxFreq = 0.0
var tuningRadio = ""
var lastReadFreq = 0L
var stableCount = 0
while (currentCoroutineContext().isActive) {
val currentState = _state.value
if (!currentState.isActive) break
val satPass = currentState.currentPass ?: break
val xpdr = currentState.selectedTransponder ?: break
var txBaseFreq = currentState.txBaseFrequencyHz
val stationPos = settingsRepo.stationPosition.value
val pos = satelliteRepo.getPosition(satPass.orbitalObject, stationPos, System.currentTimeMillis())
val txNow = txController
val rxNow = rxController
val v = pos.distanceRate * 1000.0
if (tuningRadio.isNotEmpty()) {
val radio = if (tuningRadio == "tx") txNow else rxNow
if (radio != null && radio.isConnected) {
val read = radio.readFrequencyAndMode()
if (read != null) {
val (freq, _) = read
if (kotlin.math.abs(freq - lastReadFreq) <= 20) stableCount++
else { stableCount = 0; lastReadFreq = freq }
if (stableCount >= 2) {
if (tuningRadio == "tx" && txBaseFreq != null) {
val newBase = (freq.toDouble() * SPEED_OF_LIGHT / (SPEED_OF_LIGHT + v)).toLong()
if (newBase > 0) {
txBaseFreq = newBase
_state.update { it.copy(txBaseFrequencyHz = newBase) }
Log.i(tag, "TX tuning done → base=$newBase")
}
} else if (tuningRadio == "rx") {
val rxNominal = (freq.toDouble() * SPEED_OF_LIGHT / (SPEED_OF_LIGHT - v)).toLong()
val newTxBase = TransponderMapper.mapDownlinkToUplink(rxNominal, xpdr)
if (newTxBase != null && newTxBase > 0) {
txBaseFreq = newTxBase
_state.update { it.copy(txBaseFrequencyHz = newTxBase) }
Log.i(tag, "RX tuning done → txBase=$newTxBase")
}
}
tuningRadio = ""
stableCount = 0
lastSetTxFreq = 0.0
lastSetRxFreq = 0.0
}
}
}
} else {
// Detect manual dial changes
if (txBaseFreq != null && txNow != null && txNow.isConnected && lastSetTxFreq > 0.0) {
val read = txNow.readFrequencyAndMode()
if (read != null && kotlin.math.abs(read.first - lastSetTxFreq) >= 20.0) {
tuningRadio = "tx"
lastReadFreq = read.first
stableCount = 0
Log.i(tag, "TX tuning detected (read=${read.first}, lastSet=$lastSetTxFreq)")
}
}
if (tuningRadio.isEmpty() && rxNow != null && rxNow.isConnected && lastSetRxFreq > 0.0) {
val read = rxNow.readFrequencyAndMode()
if (read != null && kotlin.math.abs(read.first - lastSetRxFreq) >= 20.0) {
tuningRadio = "rx"
lastReadFreq = read.first
stableCount = 0
Log.i(tag, "RX tuning detected (read=${read.first}, lastSet=$lastSetRxFreq)")
}
}
}
val txRadioFreq = txBaseFreq?.let { pos.getUplinkFreq(it) }
val rxBaseFreq = if (txBaseFreq != null) {
TransponderMapper.mapUplinkToDownlink(txBaseFreq, xpdr)
} else xpdr.downlinkLow
val rxRadioFreq = rxBaseFreq?.let { pos.getDownlinkFreq(it) }
if (tuningRadio.isEmpty()) {
if (txNow != null && txNow.isConnected && txRadioFreq != null) {
txNow.setFrequency(txRadioFreq)
lastSetTxFreq = txRadioFreq.toDouble()
}
if (rxNow != null && rxNow.isConnected && rxRadioFreq != null) {
rxNow.setFrequency(rxRadioFreq)
lastSetRxFreq = rxRadioFreq.toDouble()
}
}
_state.update {
it.copy(
txConnected = txNow?.isConnected ?: false,
rxConnected = rxNow?.isConnected ?: false,
txFrequencyHz = txRadioFreq,
rxFrequencyHz = rxRadioFreq,
azimuth = Math.toDegrees(pos.azimuth),
elevation = Math.toDegrees(pos.elevation),
distance = pos.distance
)
}
delay(1000)
}
}
// ── IC-705 split-radio tracking ─────────────────────────────────────────
private suspend fun runSplitTracking(transponder: SatRadio, initialTxBaseFreqHz: Long?) {
val radio = txController ?: return
if (!radio.isConnected) return
val txMode = transponder.uplinkMode
val rxMode = transponder.downlinkMode
?: transponder.uplinkMode?.let {
TransponderMapper.mapUplinkModeToDownlinkMode(it, transponder.isInverted)
}
// Compute nominal base frequencies
val txCenter = when {
transponder.uplinkLow != null && transponder.uplinkHigh != null ->
(transponder.uplinkLow!! + transponder.uplinkHigh!!) / 2
transponder.uplinkLow != null -> transponder.uplinkLow!!
else -> null
}
val rxNominal = if (txCenter != null) {
TransponderMapper.mapUplinkToDownlink(txCenter, transponder)
} else transponder.downlinkLow
val txBase = initialTxBaseFreqHz ?: txCenter
Log.i(tag, "IC-705 split setup: txBase=${txBase}Hz rxNominal=${rxNominal}Hz txMode=$txMode rxMode=$rxMode")
// ── Initial setup sequence ──────────────────────────────────────────
// Sequence per IC-705: explicitly select VFO, then band → freq → mode.
// ACK from each command gates the next — no fixed delays needed.
// VFO-A = RX (downlink)
Log.d(tag, "Split init: selecting VFO-A for RX (downlink)")
radio.setVfo(vfoA = true)
if (rxNominal != null) {
Log.d(tag, "Split init: VFO-A band for ${rxNominal}Hz")
radio.setBand(rxNominal)
Log.d(tag, "Split init: VFO-A freq=${rxNominal}Hz")
radio.setFrequency(rxNominal)
}
if (rxMode != null) {
Log.d(tag, "Split init: VFO-A mode=$rxMode")
radio.setMode(rxMode)
}
// VFO-B = TX (uplink)
Log.d(tag, "Split init: selecting VFO-B for TX (uplink)")
radio.setVfo(vfoA = false)
if (txBase != null) {
Log.d(tag, "Split init: VFO-B band for ${txBase}Hz")
radio.setBand(txBase)
Log.d(tag, "Split init: VFO-B freq=${txBase}Hz")
radio.setFrequency(txBase)
}
if (txMode != null) {
Log.d(tag, "Split init: VFO-B mode=$txMode")
radio.setMode(txMode)
}
if (txMode?.uppercase() == "FM") {
val tone = _state.value.ctcssTone
if (tone != null) {
Log.d(tag, "Split init: CTCSS=${tone}Hz")
radio.setCtcssTone(tone)
radio.setCtcssMode(true)
} else {
radio.setCtcssMode(false)
}
}
// Enable SPLIT on VFO-A (return display to RX VFO first)
Log.d(tag, "Split init: returning to VFO-A, then enabling SPLIT mode")
radio.setVfo(vfoA = true)
radio.setSplitMode(enabled = true)
_state.update { it.copy(txMode = txMode, rxMode = rxMode, txBaseFrequencyHz = txBase) }
Log.i(tag, "IC-705 split init done — entering tracking loop")
// ── Tracking loop with tuning detection ─────────────────────────────
var lastSetTxFreq = 0.0
var lastSetRxFreq = 0.0
var tuningRadio = "" // "tx" or "rx" when manual tuning detected
var lastReadFreq = 0L
var stableCount = 0
while (currentCoroutineContext().isActive) {
val currentState = _state.value
if (!currentState.isActive) break
val satPass = currentState.currentPass ?: break
val xpdr = currentState.selectedTransponder ?: break
var txBaseFreq = currentState.txBaseFrequencyHz
val stationPos = settingsRepo.stationPosition.value
val pos = satelliteRepo.getPosition(satPass.orbitalObject, stationPos, System.currentTimeMillis())
val v = pos.distanceRate * 1000.0
if (tuningRadio.isNotEmpty()) {
// User is tuning — wait for frequency to stabilize
val readFreq = if (tuningRadio == "tx") radio.readTxVfoFrequency() else radio.readWorkingFrequency()
if (readFreq != null) {
if (kotlin.math.abs(readFreq - lastReadFreq) <= 20) stableCount++
else { stableCount = 0; lastReadFreq = readFreq }
if (stableCount >= 2) {
// Frequency stable — reverse-calculate base frequency
if (tuningRadio == "tx" && txBaseFreq != null) {
val newBase = (readFreq.toDouble() * SPEED_OF_LIGHT / (SPEED_OF_LIGHT + v)).toLong()
if (newBase > 0) {
txBaseFreq = newBase
_state.update { it.copy(txBaseFrequencyHz = newBase) }
Log.i(tag, "Split TX tuning done → base=$newBase")
}
} else if (tuningRadio == "rx") {
val rxNominal = (readFreq.toDouble() * SPEED_OF_LIGHT / (SPEED_OF_LIGHT - v)).toLong()
val newTxBase = TransponderMapper.mapDownlinkToUplink(rxNominal, xpdr)
if (newTxBase != null && newTxBase > 0) {
txBaseFreq = newTxBase
_state.update { it.copy(txBaseFrequencyHz = newTxBase) }
Log.i(tag, "Split RX tuning done → txBase=$newTxBase")
}
}
tuningRadio = ""
stableCount = 0
lastSetTxFreq = 0.0
lastSetRxFreq = 0.0
}
}
} else {
// Detect manual dial changes
if (txBaseFreq != null && lastSetTxFreq > 0.0) {
val readTx = radio.readTxVfoFrequency()
if (readTx != null && kotlin.math.abs(readTx - lastSetTxFreq) >= 20.0) {
tuningRadio = "tx"
lastReadFreq = readTx
stableCount = 0
Log.i(tag, "Split TX tuning detected (read=${readTx}, lastSet=$lastSetTxFreq)")
}
}
if (tuningRadio.isEmpty() && lastSetRxFreq > 0.0) {
val readRx = radio.readWorkingFrequency()
if (readRx != null && kotlin.math.abs(readRx - lastSetRxFreq) >= 20.0) {
tuningRadio = "rx"
lastReadFreq = readRx
stableCount = 0
Log.i(tag, "Split RX tuning detected (read=${readRx}, lastSet=$lastSetRxFreq)")
}
}
}
// Determine Doppler-corrected frequencies
val txRadioFreq = txBaseFreq?.let { pos.getUplinkFreq(it) }
val rxBaseCalc = if (txBaseFreq != null) {
TransponderMapper.mapUplinkToDownlink(txBaseFreq, xpdr)
} else xpdr.downlinkLow
val rxRadioFreq = rxBaseCalc?.let { pos.getDownlinkFreq(it) }
if (radio.isConnected && tuningRadio.isEmpty()) {
// Update both VFOs every cycle — no PTT polling needed.
// 0x25/00 = active (RX) VFO, 0x25/01 = inactive (TX) VFO.
if (rxRadioFreq != null) {
Log.d(tag, "Split loop RX (0x25/00): ${rxRadioFreq}Hz")
radio.setWorkingFrequency(rxRadioFreq)
lastSetRxFreq = rxRadioFreq.toDouble()
}
if (txRadioFreq != null) {
Log.d(tag, "Split loop TX (0x25/01): ${txRadioFreq}Hz")
radio.setTxVfoFrequency(txRadioFreq)
lastSetTxFreq = txRadioFreq.toDouble()
}
}
_state.update {
it.copy(
txConnected = radio.isConnected,
rxConnected = false, // single radio
txFrequencyHz = txRadioFreq,
rxFrequencyHz = rxRadioFreq,
azimuth = Math.toDegrees(pos.azimuth),
elevation = Math.toDegrees(pos.elevation),
distance = pos.distance
)
}
delay(1000)
}
}
// ── Other IRadioTrackingService methods ─────────────────────────────────
override fun stopTracking() { override fun stopTracking() {
trackingJob?.cancel() trackingJob?.cancel()
trackingJob = null trackingJob = null
@@ -288,7 +493,6 @@ class RadioTrackingService(
TransponderMapper.mapUplinkModeToDownlinkMode(it, transponder.isInverted) TransponderMapper.mapUplinkModeToDownlinkMode(it, transponder.isInverted)
} }
rxMode?.let { rx?.setMode(it) } rxMode?.let { rx?.setMode(it) }
if (transponder.uplinkMode?.uppercase() == "FM") { if (transponder.uplinkMode?.uppercase() == "FM") {
_state.value.ctcssTone?.let { tone -> _state.value.ctcssTone?.let { tone ->
tx?.setCtcssTone(tone) tx?.setCtcssTone(tone)
@@ -302,21 +506,17 @@ class RadioTrackingService(
transponder.uplinkLow != null -> transponder.uplinkLow!! transponder.uplinkLow != null -> transponder.uplinkLow!!
else -> null else -> null
} }
// Show nominal frequencies immediately
val rxNominal = if (txCenter != null) { val rxNominal = if (txCenter != null) {
TransponderMapper.mapUplinkToDownlink(txCenter, transponder) TransponderMapper.mapUplinkToDownlink(txCenter, transponder)
} else { } else transponder.downlinkLow
// Downlink-only transponder (beacon etc.) - use downlink directly
transponder.downlinkLow
}
_state.update { _state.update {
it.copy( it.copy(
selectedTransponder = transponder, selectedTransponder = transponder,
txBaseFrequencyHz = txCenter, txBaseFrequencyHz = txCenter,
txFrequencyHz = txCenter, txFrequencyHz = txCenter,
rxFrequencyHz = rxNominal, rxFrequencyHz = rxNominal,
txMode = transponder.uplinkMode, txMode = transponder.uplinkMode,
rxMode = transponder.downlinkMode rxMode = transponder.downlinkMode
?: transponder.uplinkMode?.let { m -> ?: transponder.uplinkMode?.let { m ->
TransponderMapper.mapUplinkModeToDownlinkMode(m, transponder.isInverted) TransponderMapper.mapUplinkModeToDownlinkMode(m, transponder.isInverted)
} }
@@ -353,5 +553,4 @@ class RadioTrackingService(
} }
_state.update { it.copy(txMode = txMode, rxMode = rxMode) } _state.update { it.copy(txMode = txMode, rxMode = rxMode) }
} }
} }
@@ -22,12 +22,17 @@ import android.content.Context
import android.hardware.SensorManager import android.hardware.SensorManager
import android.hardware.display.DisplayManager import android.hardware.display.DisplayManager
import android.location.LocationManager import android.location.LocationManager
import androidx.core.content.pm.PackageInfoCompat
import androidx.room.Room import androidx.room.Room
import com.rtbishop.look4sat.core.data.database.DATABASE_NAME
import com.rtbishop.look4sat.core.data.database.MIGRATION_1_2
import com.rtbishop.look4sat.core.data.database.Look4SatDb import com.rtbishop.look4sat.core.data.database.Look4SatDb
import com.rtbishop.look4sat.core.data.framework.BluetoothReporter import com.rtbishop.look4sat.core.data.framework.BluetoothReporter
import com.rtbishop.look4sat.core.data.framework.Ft817Controller import com.rtbishop.look4sat.core.data.framework.Ft817Controller
import com.rtbishop.look4sat.core.data.framework.Ic705Controller
import com.rtbishop.look4sat.core.data.framework.NetworkReporter import com.rtbishop.look4sat.core.data.framework.NetworkReporter
import com.rtbishop.look4sat.core.data.framework.RadioTrackingService import com.rtbishop.look4sat.core.data.framework.RadioTrackingService
import com.rtbishop.look4sat.core.data.repository.AmSatRepository
import com.rtbishop.look4sat.core.data.repository.DatabaseRepo import com.rtbishop.look4sat.core.data.repository.DatabaseRepo
import com.rtbishop.look4sat.core.data.repository.SatelliteRepo import com.rtbishop.look4sat.core.data.repository.SatelliteRepo
import com.rtbishop.look4sat.core.data.repository.SelectionRepo import com.rtbishop.look4sat.core.data.repository.SelectionRepo
@@ -39,6 +44,7 @@ import com.rtbishop.look4sat.core.data.usecase.AddToCalendar
import com.rtbishop.look4sat.core.data.usecase.AudioCapture import com.rtbishop.look4sat.core.data.usecase.AudioCapture
import com.rtbishop.look4sat.core.data.usecase.SaveImage import com.rtbishop.look4sat.core.data.usecase.SaveImage
import com.rtbishop.look4sat.core.data.usecase.ShowToast import com.rtbishop.look4sat.core.data.usecase.ShowToast
import com.rtbishop.look4sat.core.domain.model.RadioControlSettings
import com.rtbishop.look4sat.core.domain.repository.IDatabaseRepo import com.rtbishop.look4sat.core.domain.repository.IDatabaseRepo
import com.rtbishop.look4sat.core.domain.repository.IMainContainer import com.rtbishop.look4sat.core.domain.repository.IMainContainer
import com.rtbishop.look4sat.core.domain.repository.IRadioController import com.rtbishop.look4sat.core.domain.repository.IRadioController
@@ -64,12 +70,14 @@ import okhttp3.OkHttpClient
class MainContainer(private val context: Context) : IMainContainer { class MainContainer(private val context: Context) : IMainContainer {
private val localSource = provideLocalSource() private val localSource = provideLocalSource()
private val remoteSource = provideRemoteSource()
private val mainHandler = CoroutineExceptionHandler { _, error -> println("MainHandler: $error") } private val mainHandler = CoroutineExceptionHandler { _, error -> println("MainHandler: $error") }
override val appScope = CoroutineScope(SupervisorJob() + Dispatchers.Default + mainHandler) override val appScope = CoroutineScope(SupervisorJob() + Dispatchers.Default + mainHandler)
override val settingsRepo = provideSettingsRepo() override val settingsRepo = provideSettingsRepo()
override val selectionRepo = provideSelectionRepo() override val selectionRepo = provideSelectionRepo()
override val satelliteRepo = provideSatelliteRepo() override val satelliteRepo = provideSatelliteRepo()
override val databaseRepo = provideDatabaseRepo() override val databaseRepo = provideDatabaseRepo()
override val amSatRepo by lazy { AmSatRepository(remoteSource) }
override val radioTrackingService: IRadioTrackingService by lazy { override val radioTrackingService: IRadioTrackingService by lazy {
val manager = context.getSystemService(Context.BLUETOOTH_SERVICE) as BluetoothManager val manager = context.getSystemService(Context.BLUETOOTH_SERVICE) as BluetoothManager
RadioTrackingService(appScope, manager, satelliteRepo, settingsRepo) RadioTrackingService(appScope, manager, satelliteRepo, settingsRepo)
@@ -101,20 +109,31 @@ class MainContainer(private val context: Context) : IMainContainer {
rc.rotatorAddress, rc.rotatorAddress,
rc.rotatorPort.toIntOrNull() ?: 0, rc.rotatorPort.toIntOrNull() ?: 0,
rc.frequencyAddress, rc.frequencyAddress,
rc.frequencyPort.toIntOrNull() ?: 0 rc.frequencyPort.toIntOrNull() ?: 0,
rc.frequencyOffsetHz
) )
} }
override fun provideTxRadioController(): IRadioController { override fun provideTxRadioController(): IRadioController {
val manager = context.getSystemService(Context.BLUETOOTH_SERVICE) as BluetoothManager val manager = context.getSystemService(Context.BLUETOOTH_SERVICE) as BluetoothManager
val address = settingsRepo.radioControlSettings.value.txRadioAddress val settings = settingsRepo.radioControlSettings.value
return Ft817Controller(manager, address) val address = settings.txRadioAddress
return if (settings.radioModel == RadioControlSettings.MODEL_ICOM_IC705) {
Ic705Controller(manager, address)
} else {
Ft817Controller(manager, address)
}
} }
override fun provideRxRadioController(): IRadioController { override fun provideRxRadioController(): IRadioController {
val manager = context.getSystemService(Context.BLUETOOTH_SERVICE) as BluetoothManager val manager = context.getSystemService(Context.BLUETOOTH_SERVICE) as BluetoothManager
val address = settingsRepo.radioControlSettings.value.rxRadioAddress val settings = settingsRepo.radioControlSettings.value
return Ft817Controller(manager, address) val address = settings.rxRadioAddress
return if (settings.radioModel == RadioControlSettings.MODEL_ICOM_IC705) {
Ic705Controller(manager, address)
} else {
Ft817Controller(manager, address)
}
} }
override fun provideSensorsRepo(): ISensorsRepo { override fun provideSensorsRepo(): ISensorsRepo {
@@ -123,21 +142,34 @@ class MainContainer(private val context: Context) : IMainContainer {
return SensorsRepo(manager, displayManager) return SensorsRepo(manager, displayManager)
} }
override fun providePairedBluetoothDevices(): List<Pair<String, String>> = buildList {
try {
val manager = context.getSystemService(Context.BLUETOOTH_SERVICE) as BluetoothManager
manager.adapter?.bondedDevices?.forEach { add(Pair(it.name ?: "Unknown", it.address ?: "")) }
} catch (_: SecurityException) {}
}
private fun provideDatabaseRepo(): IDatabaseRepo { private fun provideDatabaseRepo(): IDatabaseRepo {
val dbDispatcher = Dispatchers.Default val dbDispatcher = Dispatchers.Default
val dataParser = DataParser(dbDispatcher) val dataParser = DataParser(dbDispatcher)
val remoteSource = provideRemoteSource()
return DatabaseRepo(dbDispatcher, dataParser, localSource, remoteSource, settingsRepo) return DatabaseRepo(dbDispatcher, dataParser, localSource, remoteSource, settingsRepo)
} }
private fun provideLocalSource(): ILocalSource { private fun provideLocalSource(): ILocalSource {
val builder = Room.databaseBuilder(context, Look4SatDb::class.java, "Look4SatDBv400") val builder = Room.databaseBuilder(context, Look4SatDb::class.java, DATABASE_NAME)
val database = builder.fallbackToDestructiveMigration(false).build() val database = builder.addMigrations(MIGRATION_1_2).fallbackToDestructiveMigration(false).build()
return LocalSource(database.look4SatDao()) return LocalSource(database.look4SatDao())
} }
private fun provideRemoteSource(): IRemoteSource { private fun provideRemoteSource(): IRemoteSource {
return RemoteSource(Dispatchers.IO, context.contentResolver, OkHttpClient.Builder().build()) val version = context.packageManager.getPackageInfo(context.packageName, 0).versionName ?: "4.0.4"
val userAgent = "Look4Sat/$version (+https://github.com/rt-bishop/Look4Sat)"
// Data providers ask clients to identify themselves, so that they can reach out to the
// developer instead of silently blocking every user of the app behind a misbehaving request
val client = OkHttpClient.Builder().addInterceptor { chain ->
chain.proceed(chain.request().newBuilder().header("User-Agent", userAgent).build())
}.build()
return RemoteSource(Dispatchers.IO, context.contentResolver, client)
} }
private fun provideSatelliteRepo(): ISatelliteRepo { private fun provideSatelliteRepo(): ISatelliteRepo {
@@ -152,7 +184,9 @@ class MainContainer(private val context: Context) : IMainContainer {
val manager = context.getSystemService(Context.LOCATION_SERVICE) as LocationManager val manager = context.getSystemService(Context.LOCATION_SERVICE) as LocationManager
val appPrefsFileName = "${context.packageName}_preferences" val appPrefsFileName = "${context.packageName}_preferences"
val appPreferences = context.getSharedPreferences(appPrefsFileName, Context.MODE_PRIVATE) val appPreferences = context.getSharedPreferences(appPrefsFileName, Context.MODE_PRIVATE)
val appVersionName = context.packageManager.getPackageInfo(context.packageName, 0).versionName ?: "4.0.4" val packageInfo = context.packageManager.getPackageInfo(context.packageName, 0)
return SettingsRepo(manager, appPreferences, appVersionName) val appVersionName = packageInfo.versionName ?: "4.0.4"
val appVersionCode = PackageInfoCompat.getLongVersionCode(packageInfo)
return SettingsRepo(manager, appPreferences, appVersionName, appVersionCode)
} }
} }
@@ -0,0 +1,209 @@
package com.rtbishop.look4sat.core.data.repository
import com.rtbishop.look4sat.core.domain.model.AmSatReportSubmission
import com.rtbishop.look4sat.core.domain.model.AmSatReportSubmitResult
import com.rtbishop.look4sat.core.domain.model.SatDay
import com.rtbishop.look4sat.core.domain.model.SatReport
import com.rtbishop.look4sat.core.domain.model.SatSlot
import com.rtbishop.look4sat.core.domain.model.SatStatus
import com.rtbishop.look4sat.core.domain.model.SatStatusPage
import com.rtbishop.look4sat.core.domain.repository.IAmSatRepository
import com.rtbishop.look4sat.core.domain.source.IRemoteSource
import kotlinx.coroutines.Dispatchers
import kotlinx.coroutines.withContext
import org.json.JSONObject
import java.text.SimpleDateFormat
import java.util.Calendar
import java.util.Date
import java.util.Locale
import java.util.TimeZone
/** One report from the AMSAT API (data layer model). */
private data class ApiReport(
val id: String,
val name: String,
val callsign: String,
val report: String,
val gridSquare: String,
val reportedTimeUtcSec: Long
)
/** AMSAT status repository using RemoteSource (Clean Architecture: data layer handles HTTP). */
class AmSatRepository(private val remoteSource: IRemoteSource) : IAmSatRepository {
private val isoUtcFormat = SimpleDateFormat("yyyy-MM-dd'T'HH:mm:ss'Z'", Locale.US).apply {
timeZone = TimeZone.getTimeZone("UTC")
}
override suspend fun fetchStatus(): SatStatusPage? = withContext(Dispatchers.IO) {
val nowSec = System.currentTimeMillis() / 1000
val catalogJson = remoteSource.getAmSatCatalog() ?: return@withContext null
// 72h = 3 days; API hard cap is limit=500 regardless of what we send.
// 500 records across ~100 catalog satellites ≈ ~1-5 reports/satellite/day — enough for 3 days.
// Upgrade path: paginate or request AMSAT to raise the cap if catalog grows beyond ~200 sats.
val reportsJson = remoteSource.getAmSatReports(hours = 72, limit = 500) ?: return@withContext null
val names = parseCatalog(catalogJson)
val reports = parseReports(reportsJson)
if (names.isEmpty() && reports.isEmpty()) return@withContext null
val statuses = buildStatuses(names, reports, nowSec)
val reportMap = reports.associate { it.id to toSatReport(it) }
SatStatusPage(System.currentTimeMillis(), statuses, reportMap)
}
override suspend fun submitReport(submission: AmSatReportSubmission): AmSatReportSubmitResult = withContext(Dispatchers.IO) {
val payload = JSONObject().apply {
put("name", submission.name)
put("report", submission.report)
put("callsign", submission.callsign)
put("reported_at", isoUtcFormat.format(Date(submission.reportedAtUtcMillis)))
if (submission.gridSquare.isNotBlank()) put("grid_square", submission.gridSquare)
}
val response = remoteSource.submitAmSatReport(payload.toString())
?: return@withContext AmSatReportSubmitResult(success = false, message = "Network request failed")
val (code, body) = response
val errorMessage = parseSubmitError(body)
return@withContext if (code in 200..299 && errorMessage.isBlank()) {
AmSatReportSubmitResult(success = true, reportId = parseSubmitReportId(body))
} else {
AmSatReportSubmitResult(
success = false,
message = errorMessage.ifBlank { "HTTP $code" }
)
}
}
private fun parseSubmitError(json: String): String {
return try {
JSONObject(json).optJSONObject("error")?.optString("message").orEmpty()
} catch (_: Exception) {
""
}
}
private fun parseSubmitReportId(json: String): String? {
return try {
val obj = JSONObject(json)
obj.optJSONObject("data")?.optString("id")?.takeIf { it.isNotBlank() }
?: obj.optString("id").takeIf { it.isNotBlank() }
} catch (_: Exception) {
null
}
}
/** Parse catalog JSON to list of satellite names */
private fun parseCatalog(json: String): List<String> {
return try {
val arr = JSONObject(json).getJSONArray("data")
(0 until arr.length()).map { arr.getJSONObject(it).getString("name") }
} catch (_: Exception) {
emptyList()
}
}
/** Parse reports JSON to list of ApiReport domain objects */
private fun parseReports(json: String): List<ApiReport> {
return try {
val arr = JSONObject(json).getJSONArray("data")
(0 until arr.length()).mapNotNull { i ->
val o = arr.getJSONObject(i)
val iso = o.optString("reported_time", "")
if (iso.isEmpty()) null else ApiReport(
id = o.optString("id", ""),
name = o.optString("name", ""),
callsign = o.optString("callsign", ""),
report = o.optString("report", ""),
gridSquare = o.optString("grid_square", ""),
reportedTimeUtcSec = parseIsoUtcSec(iso)
)
}
} catch (_: Exception) {
emptyList()
}
}
/** Parse ISO 8601 UTC timestamp to epoch seconds (e.g., "2026-08-05T07:30:00Z") */
private fun parseIsoUtcSec(iso: String): Long {
return try {
(isoUtcFormat.parse(iso)?.time ?: 0L) / 1000
} catch (_: Exception) {
0L
}
}
/** Build one SatStatus (5 days x 12 slots) per catalog satellite, slotting reports by age. */
private fun buildStatuses(names: List<String>, reports: List<ApiReport>, nowSec: Long): List<SatStatus> {
val byName = reports.groupBy { it.name }
val utc = Calendar.getInstance(TimeZone.getTimeZone("UTC"))
val labels = (0 until 3).map { d ->
utc.timeInMillis = (nowSec - d * 86400L) * 1000
formatDayLabel(utc)
}
return names.map { name ->
val slots = (0 until 36).map { slotIdx ->
val slotStart = nowSec - (slotIdx + 1) * 7200L
val slotEnd = nowSec - slotIdx * 7200L
val inSlot = byName[name].orEmpty().filter { it.reportedTimeUtcSec in slotStart until slotEnd }
if (inSlot.isEmpty()) {
SatSlot(statusColor = NO_REPORT_GRAY, count = 0)
} else {
val newest = inSlot.maxByOrNull { it.reportedTimeUtcSec }!!
SatSlot(
statusColor = statusColorOf(newest.report),
count = inSlot.size,
reportIds = inSlot.map { it.id }
)
}
}
val days = (0 until 3).map { d ->
SatDay(dateLabel = labels[d], slots = slots.subList(d * 12, (d + 1) * 12))
}
SatStatus(name = name, days = days)
}
}
private fun formatDayLabel(calendar: Calendar): String {
return if (Locale.getDefault().language == Locale.CHINESE.language) {
"${calendar.get(Calendar.MONTH) + 1}月${calendar.get(Calendar.DAY_OF_MONTH)}日"
} else {
val monthAbbr = arrayOf("Jan", "Feb", "Mar", "Apr", "May", "Jun", "Jul", "Aug", "Sep", "Oct", "Nov", "Dec")
"${monthAbbr[calendar.get(Calendar.MONTH)]} ${calendar.get(Calendar.DAY_OF_MONTH)}"
}
}
private fun toSatReport(r: ApiReport): SatReport {
val cal = Calendar.getInstance(TimeZone.getTimeZone("UTC"))
cal.timeInMillis = r.reportedTimeUtcSec * 1000
val hh = cal.get(Calendar.HOUR_OF_DAY).toString().padStart(2, '0')
val mm = cal.get(Calendar.MINUTE).toString().padStart(2, '0')
val y = cal.get(Calendar.YEAR)
val mo = (cal.get(Calendar.MONTH) + 1).toString().padStart(2, '0')
val d = cal.get(Calendar.DAY_OF_MONTH).toString().padStart(2, '0')
return SatReport(
id = r.id,
statusText = r.report,
call = r.callsign,
grid = r.gridSquare,
dateUtc = "$y-$mo-$d",
timeUtc = "$hh:$mm UTC"
)
}
/** Map status text to color value (for UI rendering). */
private fun statusColorOf(report: String): Long = when (report.lowercase()) {
"heard", "crew active" -> ACTIVE_BLUE
"telemetry only" -> TLM_ORANGE
"not heard" -> NOT_HEARD_PINK
else -> CONFLICT_DEEP_ORANGE
}
companion object {
// AMSAT official status colors (from amsat.org/status)
private const val ACTIVE_BLUE = 0xFF648FFF
private const val TLM_ORANGE = 0xFFFFB000
private const val NOT_HEARD_PINK = 0xFFDC267F
private const val CONFLICT_DEEP_ORANGE = 0xFFFE6100
private const val NO_REPORT_GRAY = 0xFFC0C0C0
}
}
@@ -23,7 +23,6 @@ import com.rtbishop.look4sat.core.domain.repository.IDatabaseRepo
import com.rtbishop.look4sat.core.domain.repository.ISettingsRepo import com.rtbishop.look4sat.core.domain.repository.ISettingsRepo
import com.rtbishop.look4sat.core.domain.source.ILocalSource import com.rtbishop.look4sat.core.domain.source.ILocalSource
import com.rtbishop.look4sat.core.domain.source.IRemoteSource import com.rtbishop.look4sat.core.domain.source.IRemoteSource
import com.rtbishop.look4sat.core.domain.source.Sources
import com.rtbishop.look4sat.core.domain.utility.DataParser import com.rtbishop.look4sat.core.domain.utility.DataParser
import kotlinx.coroutines.CoroutineDispatcher import kotlinx.coroutines.CoroutineDispatcher
import kotlinx.coroutines.async import kotlinx.coroutines.async
@@ -40,52 +39,65 @@ class DatabaseRepo(
private val settingsRepo: ISettingsRepo private val settingsRepo: ISettingsRepo
) : IDatabaseRepo { ) : IDatabaseRepo {
private val customSourceType = "Other"
override suspend fun updateTLEFromFile(uri: String) = withContext(dispatcher) { override suspend fun updateTLEFromFile(uri: String): Int = withContext(dispatcher) {
var importedCount = 0
remoteSource.getFileStream(uri)?.let { stream -> remoteSource.getFileStream(uri)?.let { stream ->
val entries = dataParser.parseTLEStream(unwrapIfZipped(uri, stream)) val entries = mergeEntries(listOf(parseSatelliteStream(uri, unwrapIfZipped(uri, stream))))
localSource.insertEntries(entries) insertFresherEntries(entries)
settingsRepo.setSatelliteTypeIds(customSourceType, entries.map { it.catnum }) // report what the file contained: a valid file holding only stale data is not an error
importedCount = entries.size
} }
setUpdateSuccessful(System.currentTimeMillis()) setUpdateSuccessful(System.currentTimeMillis())
importedCount
} }
override suspend fun updateTransceiversFromFile(uri: String) = withContext(dispatcher) { override suspend fun updateTransceiversFromFile(uri: String): Int = withContext(dispatcher) {
var importedCount = 0
remoteSource.getFileStream(uri)?.let { stream -> remoteSource.getFileStream(uri)?.let { stream ->
val transceivers = dataParser.parseJSONStream(unwrapIfZipped(uri, stream)) val transceivers = dataParser.parseJSONStream(unwrapIfZipped(uri, stream))
localSource.insertRadios(transceivers) localSource.insertRadios(transceivers, isCustom = true)
importedCount = transceivers.size
} }
setUpdateSuccessful(System.currentTimeMillis()) setUpdateSuccessful(System.currentTimeMillis())
importedCount
} }
override suspend fun updateFromRemote() = withContext(dispatcher) { override suspend fun updateFromRemote() = withContext(dispatcher) {
val dataSourcesSettings = settingsRepo.dataSourcesSettings.value val settings = settingsRepo.dataSourcesSettings.value
val tleUrls = buildMap { fun normalizeUrl(url: String) = if (url.startsWith("http")) url else "https://$url"
putAll(Sources.satelliteDataUrls) val tleUrls = settings.satelliteUrls.filterIndexed { i, url -> url.isNotBlank() && settings.isSatelliteEnabled(i) }
if (dataSourcesSettings.useCustomTLE) put(customSourceType, dataSourcesSettings.tleUrl) val radioUrls = settings.transceiversUrls.filterIndexed { i, url -> url.isNotBlank() && settings.isTransceiverEnabled(i) }
}.filterValues { it.isNotBlank() } // launch all network requests concurrently, keeping the raw url as key for status reporting
val radioUrls = buildMap { val tleJobs = tleUrls.map { url -> async { url to remoteSource.getNetworkStream(normalizeUrl(url)) } }
putAll(Sources.transceiversDataUrls) val radioJobs = radioUrls.map { url -> async { url to remoteSource.getNetworkStream(normalizeUrl(url)) } }
if (dataSourcesSettings.useCustomTransceivers) put(customSourceType, dataSourcesSettings.transceiversUrl) val tleResults = tleJobs.awaitAll()
}.filterValues { it.isNotBlank() } val radioResults = radioJobs.awaitAll()
// launch all network requests concurrently // report the HTTP status code of every source (200, 404, ...)
val tleJobs = tleUrls.values.map { url -> async { url to remoteSource.getNetworkStream(url) } } settingsRepo.updateDataSourcesStatus(
val radioJobs = radioUrls.values.map { url -> async { url to remoteSource.getNetworkStream(url) } } (tleResults + radioResults).associate { (url, result) -> url to result.code }
// parse fetched data concurrently and associate with types )
val importedEntries = tleJobs.awaitAll().flatMap { (url, stream) -> // parse fetched data concurrently, merging satellites by freshness instead of source order
val type = tleUrls.entries.find { it.value == url }?.key ?: customSourceType val parsedPerSource = tleResults.map { (url, result) ->
stream?.let { parseSatelliteStream(url, unwrapIfZipped(url, it)) }.orEmpty().also { entries -> result.stream?.let { val nUrl = normalizeUrl(url); parseSatelliteStream(nUrl, unwrapIfZipped(nUrl, it)) }.orEmpty()
settingsRepo.setSatelliteTypeIds(type, entries.map { it.catnum })
}
}
val importedRadios = radioJobs.awaitAll().flatMap { (url, stream) ->
stream?.let { dataParser.parseJSONStream(unwrapIfZipped(url, it)) }.orEmpty()
} }
val importedRadios = radioResults.flatMap { (url, result) ->
result.stream?.let { val nUrl = normalizeUrl(url); dataParser.parseJSONStream(unwrapIfZipped(nUrl, it)) }.orEmpty()
}.filter { it.uuid.isNotBlank() }.distinctBy { it.uuid }
// insert parsed data into the database // insert parsed data into the database
localSource.insertEntries(importedEntries) insertFresherEntries(mergeEntries(parsedPerSource))
localSource.insertRadios(importedRadios) // transceivers are a full snapshot: sources publish active entries only, so a retired
setUpdateSuccessful(System.currentTimeMillis()) // transceiver simply disappears from the feed and has to be dropped locally as well.
// Imported ones are kept: no source can refresh them, so nothing would bring them back
if (importedRadios.isNotEmpty()) {
localSource.deleteManagedRadios()
localSource.insertRadios(importedRadios, isCustom = false)
}
// keep the previous timestamp when every source failed, so the next launch retries
val hasFetchedData = parsedPerSource.any { entries -> entries.isNotEmpty() } || importedRadios.isNotEmpty()
val previousTimestamp = settingsRepo.databaseState.value.updateTimestamp
if (hasFetchedData) pruneStaleEntries()
setUpdateSuccessful(if (hasFetchedData) System.currentTimeMillis() else previousTimestamp)
} }
override suspend fun clearAllData() = withContext(dispatcher) { override suspend fun clearAllData() = withContext(dispatcher) {
@@ -94,9 +106,87 @@ class DatabaseRepo(
setUpdateSuccessful(0L) setUpdateSuccessful(0L)
} }
private suspend fun parseSatelliteStream(url: String, stream: InputStream): List<OrbitalData> = when { private suspend fun parseSatelliteStream(url: String, stream: InputStream): List<OrbitalData> {
url.contains("FORMAT=csv", ignoreCase = true) -> dataParser.parseCSVStream(stream) val bufferedStream = stream.buffered()
else -> dataParser.parseTLEStream(stream) return when {
hasCsvHint(url) || looksLikeCsv(bufferedStream) -> dataParser.parseCSVStream(bufferedStream)
else -> dataParser.parseTLEStream(bufferedStream)
}
}
private fun hasCsvHint(url: String): Boolean {
return url.contains("FORMAT=csv", ignoreCase = true) ||
url.endsWith(".csv", ignoreCase = true) ||
url.endsWith(".csv.zip", ignoreCase = true)
}
private fun looksLikeCsv(stream: InputStream): Boolean {
if (!stream.markSupported()) return false
stream.mark(4096)
val preview = ByteArray(4096)
val length = stream.read(preview)
stream.reset()
if (length <= 0) return false
val line = preview.decodeToString(0, length).lineSequence().firstOrNull()?.trim().orEmpty()
return line.contains("OBJECT_NAME", ignoreCase = true) ||
line.contains("NORAD_CAT_ID", ignoreCase = true) ||
line.count { it == ',' } >= 4
}
/**
* Merges the data of every source: orbital elements always come from the set with the newest
* epoch, while the name comes from the first source that provides it. Source order is thus a
* naming preference only, which also keeps names stable when sources leapfrog each other.
*/
private fun mergeEntries(sourceEntries: List<List<OrbitalData>>): List<OrbitalData> {
val preferredNames = mutableMapOf<Int, String>()
val freshestEntries = mutableMapOf<Int, OrbitalData>()
sourceEntries.forEach { entries ->
entries.forEach { entry ->
val name = entry.name.trim()
if (name.isNotBlank()) preferredNames.getOrPut(entry.catnum) { name }
val current = freshestEntries[entry.catnum]
if (current == null || entry.epochDaynum > current.epochDaynum) {
freshestEntries[entry.catnum] = entry
}
}
}
return freshestEntries.values.map { entry ->
val name = preferredNames[entry.catnum]
if (name == null || name == entry.name) entry else entry.copy(name = name)
}
}
/** Stores the entries that are newer than the ones already saved, renaming the rest in place. */
private suspend fun insertFresherEntries(entries: List<OrbitalData>) {
val storedEpochs = localSource.getEntriesEpochs()
val (fresherEntries, staleEntries) = entries.partition { entry ->
val storedEpoch = storedEpochs[entry.catnum]
storedEpoch == null || entry.epochDaynum > OrbitalData.epochToDaynum(storedEpoch)
}
localSource.insertEntries(fresherEntries)
// a reordered source list has to rename satellites right away, even the ones holding
// elements that are newer than the ones just parsed
if (staleEntries.isNotEmpty()) {
val storedNames = localSource.getEntriesNames()
val renamedEntries = staleEntries.filter { entry -> entry.name != storedNames[entry.catnum] }
if (renamedEntries.isNotEmpty()) {
localSource.renameEntries(renamedEntries.associate { it.catnum to it.name })
}
}
}
/**
* Drops satellites that no enabled source has refreshed for a month: they either decayed or
* disappeared from every catalog. Manually imported data ages out the same way, and every
* source republishes active satellites well within that window.
*/
private suspend fun pruneStaleEntries() {
val currentDaynum = OrbitalData.timeToDaynum(System.currentTimeMillis())
val staleIds = localSource.getEntriesEpochs()
.filterValues { epoch -> currentDaynum - OrbitalData.epochToDaynum(epoch) > 30.0 }
.keys.toList()
if (staleIds.isNotEmpty()) localSource.deleteEntriesWithIds(staleIds)
} }
private suspend fun setUpdateSuccessful(timestamp: Long) { private suspend fun setUpdateSuccessful(timestamp: Long) {
@@ -34,8 +34,13 @@ import kotlinx.coroutines.coroutineScope
import kotlinx.coroutines.delay import kotlinx.coroutines.delay
import kotlinx.coroutines.flow.MutableStateFlow import kotlinx.coroutines.flow.MutableStateFlow
import kotlinx.coroutines.flow.StateFlow import kotlinx.coroutines.flow.StateFlow
import kotlinx.coroutines.flow.combine
import kotlinx.coroutines.flow.distinctUntilChanged
import kotlinx.coroutines.flow.map
import kotlinx.coroutines.flow.update import kotlinx.coroutines.flow.update
import kotlinx.coroutines.withContext import kotlinx.coroutines.withContext
import java.util.TimeZone
import kotlin.time.Duration.Companion.milliseconds
class SatelliteRepo( class SatelliteRepo(
private val dispatcher: CoroutineDispatcher, private val dispatcher: CoroutineDispatcher,
@@ -62,11 +67,24 @@ class SatelliteRepo(
override suspend fun getRadiosWithId(id: Int) = localStorage.getRadiosWithId(id) override suspend fun getRadiosWithId(id: Int) = localStorage.getRadiosWithId(id)
override suspend fun initRepository() = withContext(dispatcher) { override suspend fun initRepository() = withContext(dispatcher) {
settingsRepo.selectedIds.collect { selectedIds -> combine(
_satellites.update { localStorage.getEntriesWithIds(selectedIds) } settingsRepo.selectedIds,
val (_, hoursAhead, minElevation, modes) = settingsRepo.passesSettings.value settingsRepo.stationPosition,
calculatePasses(System.currentTimeMillis(), hoursAhead, minElevation, modes) settingsRepo.otherSettings.map { it.stateOfUtc }.distinctUntilChanged()
} ) { selectedIds, _, _ -> selectedIds }
.collect { selectedIds ->
_satellites.update { localStorage.getEntriesWithIds(selectedIds) }
val settings = settingsRepo.passesSettings.value
calculatePasses(
time = System.currentTimeMillis(),
hoursAhead = settings.hoursAhead,
minElevation = settings.minElevation,
aosStartMinute = settings.aosStartMinute,
aosEndMinute = settings.aosEndMinute,
invertAosTimeWindow = settings.invertAosTimeWindow,
modes = settingsRepo.selectedSatModes.value
)
}
} }
override suspend fun getPosition(sat: OrbitalObject, pos: GeoPos, time: Long): OrbitalPos { override suspend fun getPosition(sat: OrbitalObject, pos: GeoPos, time: Long): OrbitalPos {
@@ -105,7 +123,15 @@ class SatelliteRepo(
} }
} }
override suspend fun calculatePasses(time: Long, hoursAhead: Int, minElevation: Double, modes: List<String>) { override suspend fun calculatePasses(
time: Long,
hoursAhead: Int,
minElevation: Double,
aosStartMinute: Int,
aosEndMinute: Int,
invertAosTimeWindow: Boolean,
modes: List<String>
) {
_isCalculating.value = true _isCalculating.value = true
// Normalize to the start of the current minute so that coarse 60-second stepping // Normalize to the start of the current minute so that coarse 60-second stepping
// in getLeoPass always begins from the same phase, producing stable AOS/LOS times // in getLeoPass always begins from the same phase, producing stable AOS/LOS times
@@ -130,18 +156,46 @@ class SatelliteRepo(
val newPasses = ArrayList<OrbitalPass>() val newPasses = ArrayList<OrbitalPass>()
for (list in passLists) { for (list in passLists) {
for (pass in list) { for (pass in list) {
if (pass.losTime > time && pass.aosTime < timeFuture && pass.maxElevation > minElevation) { if (
pass.losTime > time
&& pass.aosTime < timeFuture
&& pass.maxElevation > minElevation
&& (pass.isDeepSpace || isAosInRange(pass.aosTime, aosStartMinute, aosEndMinute, invertAosTimeWindow))
) {
newPasses.add(pass) newPasses.add(pass)
} }
} }
} }
newPasses.sortBy { it.aosTime } newPasses.sortBy { it.aosTime }
delay(1000) // Simulate loading time for better UX delay(1000.milliseconds) // Simulate loading time for better UX
_passes.update { newPasses } _passes.update { newPasses }
} }
_isCalculating.value = false _isCalculating.value = false
} }
private fun isAosInRange(
aosTime: Long,
aosStartMinute: Int,
aosEndMinute: Int,
invertAosTimeWindow: Boolean
): Boolean {
// Must match the timezone used to display pass times (UTC toggle vs device local)
val tz = if (settingsRepo.otherSettings.value.stateOfUtc) {
TimeZone.getTimeZone("UTC")
} else {
TimeZone.getDefault()
}
val offsetMillis = tz.getOffset(aosTime).toLong()
val localMillis = Math.floorMod(aosTime + offsetMillis, 24L * 60L * 60L * 1000L)
val aosMinute = (localMillis / 60_000L).toInt()
val inRange = if (aosStartMinute <= aosEndMinute) {
aosMinute in aosStartMinute..aosEndMinute
} else {
aosMinute !in (aosEndMinute + 1)..<aosStartMinute
}
return if (invertAosTimeWindow) !inRange else inRange
}
private fun OrbitalObject.getPasses(pos: GeoPos, time: Long, hours: Int): List<OrbitalPass> { private fun OrbitalObject.getPasses(pos: GeoPos, time: Long, hours: Int): List<OrbitalPass> {
val passes = mutableListOf<OrbitalPass>() val passes = mutableListOf<OrbitalPass>()
val endDate = time + hours * 60L * 60L * 1000L val endDate = time + hours * 60L * 60L * 1000L
@@ -38,16 +38,16 @@ class SelectionRepo(
) : ISelectionRepo { ) : ISelectionRepo {
private val currentItems = MutableStateFlow<List<SatItem>>(emptyList()) private val currentItems = MutableStateFlow<List<SatItem>>(emptyList())
private val currentTypes = MutableStateFlow(settingsRepo.selectedTypes.value)
private val currentQuery = MutableStateFlow("") private val currentQuery = MutableStateFlow("")
// Resolve type IDs once when types change, then filter items reactively. // Resolve sat IDs once when modes change, then filter items reactively.
// The HashSet gives O(1) catnum lookups instead of O(n) with a List. // The HashSet gives O(1) catnum lookups instead of O(n) with a List.
private val itemsWithTypes = currentTypes.flatMapLatest { types: List<String> -> // Directly observe settingsRepo.selectedSatModes to ensure real-time sync across screens.
val catnumSet: Set<Int>? = if (types.isEmpty()) { private val itemsWithModes = settingsRepo.selectedSatModes.flatMapLatest { list: List<String> ->
val catnumSet: Set<Int>? = if (list.isEmpty()) {
null // null = no filtering null // null = no filtering
} else { } else {
val ids = settingsRepo.getSatelliteTypesIds(types) val ids = localSource.getIdsWithModes(list)
if (ids.isEmpty()) null else ids.toHashSet() if (ids.isEmpty()) null else ids.toHashSet()
} }
currentItems.map { items -> currentItems.map { items ->
@@ -56,14 +56,18 @@ class SelectionRepo(
} }
private val itemsWithQuery = currentQuery.flatMapLatest { query -> private val itemsWithQuery = currentQuery.flatMapLatest { query ->
itemsWithTypes.map { items -> filterByQuery(items, query) } itemsWithModes.map { items ->
filterByQuery(items, query).sortedWith(
compareByDescending<SatItem> { it.isSelected }
.thenBy { it.name }
.thenBy { it.catnum }
)
}
} }
override fun getCurrentTypes() = currentTypes.value override fun getCurrentModes() = settingsRepo.selectedSatModes.value
override fun getTypesList() = Sources.satelliteDataUrls.keys.sorted().toMutableList().apply { override fun getModesList() = Sources.satelliteModes
removeAt(0)
}
override suspend fun getEntriesFlow() = withContext(dispatcher) { override suspend fun getEntriesFlow() = withContext(dispatcher) {
val selectedIds = settingsRepo.selectedIds.value.toHashSet() val selectedIds = settingsRepo.selectedIds.value.toHashSet()
@@ -73,9 +77,8 @@ class SelectionRepo(
return@withContext itemsWithQuery return@withContext itemsWithQuery
} }
override suspend fun setTypes(types: List<String>) { override suspend fun setModes(modes: List<String>) {
currentTypes.value = types settingsRepo.setSelectedSatModes(modes)
settingsRepo.setSelectedTypes(types)
} }
override suspend fun setQuery(query: String) { override suspend fun setQuery(query: String) {
@@ -111,12 +114,29 @@ class SelectionRepo(
/** /**
* Filters items by query. Uses toIntOrNull() instead of exception-based flow, * Filters items by query. Uses toIntOrNull() instead of exception-based flow,
* and lowercases the query once up front instead of per-item. * 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> { private fun filterByQuery(items: List<SatItem>, query: String): List<SatItem> {
if (query.isBlank()) return items if (query.isBlank()) return items
val catnum = query.toIntOrNull() val catnum = query.toIntOrNull()
if (catnum != null) return items.filter { it.catnum == catnum } if (catnum != null) return items.filter { it.catnum == catnum }
val lowerQuery = query.lowercase() val tokens = query.split(' ')
return items.filter { it.name.lowercase().contains(lowerQuery) } .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() }
} }
@@ -29,19 +29,24 @@ import com.rtbishop.look4sat.core.domain.model.OtherSettings
import com.rtbishop.look4sat.core.domain.model.PassesSettings import com.rtbishop.look4sat.core.domain.model.PassesSettings
import com.rtbishop.look4sat.core.domain.model.RCSettings import com.rtbishop.look4sat.core.domain.model.RCSettings
import com.rtbishop.look4sat.core.domain.model.RadioControlSettings import com.rtbishop.look4sat.core.domain.model.RadioControlSettings
import com.rtbishop.look4sat.core.domain.model.Constants
import com.rtbishop.look4sat.core.domain.predict.GeoPos import com.rtbishop.look4sat.core.domain.predict.GeoPos
import com.rtbishop.look4sat.core.domain.repository.ISettingsRepo import com.rtbishop.look4sat.core.domain.repository.ISettingsRepo
import com.rtbishop.look4sat.core.domain.source.Sources
import com.rtbishop.look4sat.core.domain.utility.positionToQth import com.rtbishop.look4sat.core.domain.utility.positionToQth
import com.rtbishop.look4sat.core.domain.utility.qthToPosition import com.rtbishop.look4sat.core.domain.utility.qthToPosition
import com.rtbishop.look4sat.core.domain.utility.round import com.rtbishop.look4sat.core.domain.utility.round
import kotlinx.coroutines.flow.MutableStateFlow import kotlinx.coroutines.flow.MutableStateFlow
import kotlinx.coroutines.flow.StateFlow import kotlinx.coroutines.flow.StateFlow
import kotlinx.coroutines.flow.update import kotlinx.coroutines.flow.update
import org.json.JSONObject
import java.util.Locale
class SettingsRepo( class SettingsRepo(
private val locationManager: LocationManager, private val locationManager: LocationManager,
private val preferences: SharedPreferences, private val preferences: SharedPreferences,
override val appVersionName: String override val appVersionName: String,
override val appVersionCode: Long,
) : ISettingsRepo, LocationListenerCompat { ) : ISettingsRepo, LocationListenerCompat {
private val keyBluetoothRotatorAddress = "bluetoothAddress" private val keyBluetoothRotatorAddress = "bluetoothAddress"
@@ -54,6 +59,9 @@ class SettingsRepo(
private val keyFilterShowDeepSpace = "filterShowDeepSpace" private val keyFilterShowDeepSpace = "filterShowDeepSpace"
private val keyFilterHoursAhead = "filterHoursAhead" private val keyFilterHoursAhead = "filterHoursAhead"
private val keyFilterMinElevation = "filterMinElevation" private val keyFilterMinElevation = "filterMinElevation"
private val keyFilterAosStartMinute = "filterAosStartMinute"
private val keyFilterAosEndMinute = "filterAosEndMinute"
private val keyFilterAosInvert = "filterAosInvert"
private val keyNumberOfRadios = "numberOfRadios" private val keyNumberOfRadios = "numberOfRadios"
private val keyNumberOfSatellites = "numberOfSatellites" private val keyNumberOfSatellites = "numberOfSatellites"
private val keyRotatorAddress = "rotatorAddress" private val keyRotatorAddress = "rotatorAddress"
@@ -64,9 +72,9 @@ class SettingsRepo(
private val keyFrequencyAddress = "frequencyAddress" private val keyFrequencyAddress = "frequencyAddress"
private val keyFrequencyPort = "frequencyPort" private val keyFrequencyPort = "frequencyPort"
private val keyFrequencyFormat = "frequencyFormat" private val keyFrequencyFormat = "frequencyFormat"
private val keyFrequencyOffsetHz = "frequencyOffsetHz"
private val keySelectedIds = "selectedIds" private val keySelectedIds = "selectedIds"
private val keySelectedTypes = "selectedTypes" private val keySelectedSatModes = "selectedSatModes"
private val keySelectedModes = "selectedModes"
private val keyStateOfAutoUpdate = "stateOfAutoUpdate" private val keyStateOfAutoUpdate = "stateOfAutoUpdate"
private val keyStateOfSensors = "stateOfSensors" private val keyStateOfSensors = "stateOfSensors"
private val keyStateOfSweep = "stateOfSweep" private val keyStateOfSweep = "stateOfSweep"
@@ -80,19 +88,38 @@ class SettingsRepo(
private val keyStationTimestamp = "stationTimestamp" private val keyStationTimestamp = "stationTimestamp"
private val keyUpdateTimestamp = "updateTimestamp" private val keyUpdateTimestamp = "updateTimestamp"
private val keyShouldSeeWarning = "shouldSeeWarning" private val keyShouldSeeWarning = "shouldSeeWarning"
private val keyShouldSeeWhatsNew = "shouldSeeWhatsNew_v$appVersionName" private val keyShouldSeeWhatsNew = "shouldSeeWhatsNew"
private val keySstvMode = "sstvMode" private val keySstvMode = "sstvMode"
private val keyUseCustomTle = "useCustomTle" private val keyLowElevation = "lowElevation"
private val keyUseCustomTransceivers = "useCustomTransceivers" private val keyHighElevation = "highElevation"
private val keyTleUrl = "tleUrl" private val keyRadarCompassOffset = "radarCompassOffset"
private val keyTransceiversUrl = "transceiversUrl" private val keyRadarCompassOffsetElev = "radarCompassOffsetElev"
private val keySatellitesUrls = "satellitesUrls"
private val keyTransceiversUrls = "transceiversUrls"
private val keySatellitesUrlsEnabled = "satellitesUrlsEnabled"
private val keyTransceiversUrlsEnabled = "transceiversUrlsEnabled"
private val keySettingsVersion = "settingsVersion"
private val separatorComma = "," private val separatorComma = ","
private val separatorUrl = "\n"
init {
// The meaning of the data source order changed, so the stored lists are dropped and the defaults
// are applied again. The update timestamp is cleared as well, to refresh the migrated data
// on the first launch instead of waiting up to 48 hours for the automatic update.
if (preferences.getInt(keySettingsVersion, 0) < appVersionCode) {
preferences.edit {
listOf(keyShouldSeeWhatsNew, keySatellitesUrls, keyTransceiversUrls, keyUpdateTimestamp)
.forEach { key -> remove(key) }
putInt(keySettingsVersion, appVersionCode.toInt())
}
}
}
//region # Satellites selection settings //region # Satellites selection settings
private val _satelliteSelection = MutableStateFlow(getSelectedIds()) private val _satelliteSelection = MutableStateFlow(getSelectedIds())
private val _typesSelection = MutableStateFlow(getSelectedTypes()) private val _satelliteModeSelection = MutableStateFlow(getSelectedSatModes())
override val selectedIds: StateFlow<List<Int>> = _satelliteSelection override val selectedIds: StateFlow<List<Int>> = _satelliteSelection
override val selectedTypes: StateFlow<List<String>> = _typesSelection override val selectedSatModes: StateFlow<List<String>> = _satelliteModeSelection
override fun setSelectedIds(ids: List<Int>) { override fun setSelectedIds(ids: List<Int>) {
val selectionString = ids.joinToString(separatorComma) val selectionString = ids.joinToString(separatorComma)
@@ -100,10 +127,10 @@ class SettingsRepo(
_satelliteSelection.value = ids _satelliteSelection.value = ids
} }
override fun setSelectedTypes(types: List<String>) { override fun setSelectedSatModes(modes: List<String>) {
val typesString = types.joinToString(separatorComma) val modesString = modes.joinToString(separatorComma)
preferences.edit { putString(keySelectedTypes, typesString) } preferences.edit { putString(keySelectedSatModes, modesString) }
_typesSelection.value = types _satelliteModeSelection.value = modes
} }
private fun getSelectedIds(): List<Int> { private fun getSelectedIds(): List<Int> {
@@ -112,10 +139,10 @@ class SettingsRepo(
return selectionString.split(separatorComma).map { it.toInt() } return selectionString.split(separatorComma).map { it.toInt() }
} }
private fun getSelectedTypes(): List<String> { private fun getSelectedSatModes(): List<String> {
val typesString = preferences.getString(keySelectedTypes, "Amateur") val modesString = preferences.getString(keySelectedSatModes, null)
if (typesString.isNullOrEmpty()) return emptyList() if (modesString.isNullOrEmpty()) return emptyList()
return typesString.split(separatorComma) return modesString.split(separatorComma).sorted()
} }
//endregion //endregion
@@ -127,7 +154,9 @@ class SettingsRepo(
putBoolean(keyFilterShowDeepSpace, settings.showDeepSpace) putBoolean(keyFilterShowDeepSpace, settings.showDeepSpace)
putInt(keyFilterHoursAhead, settings.hoursAhead) putInt(keyFilterHoursAhead, settings.hoursAhead)
putLong(keyFilterMinElevation, settings.minElevation.toRawBits()) putLong(keyFilterMinElevation, settings.minElevation.toRawBits())
putString(keySelectedModes, settings.selectedModes.joinToString(separatorComma)) putInt(keyFilterAosStartMinute, settings.aosStartMinute)
putInt(keyFilterAosEndMinute, settings.aosEndMinute)
putBoolean(keyFilterAosInvert, settings.invertAosTimeWindow)
_passesSettings.value = settings _passesSettings.value = settings
} }
@@ -135,9 +164,17 @@ class SettingsRepo(
val showDeepSpace = preferences.getBoolean(keyFilterShowDeepSpace, true) val showDeepSpace = preferences.getBoolean(keyFilterShowDeepSpace, true)
val hoursAhead = preferences.getInt(keyFilterHoursAhead, 24) val hoursAhead = preferences.getInt(keyFilterHoursAhead, 24)
val minElevation = Double.fromBits(preferences.getLong(keyFilterMinElevation, 16.0.toRawBits())) val minElevation = Double.fromBits(preferences.getLong(keyFilterMinElevation, 16.0.toRawBits()))
val selectedModesString = preferences.getString(keySelectedModes, null) val aosStartMinute = preferences.getInt(keyFilterAosStartMinute, 0).coerceIn(0, 23 * 60 + 59)
val selectedModes = selectedModesString?.split(separatorComma)?.sorted() ?: emptyList() val aosEndMinute = preferences.getInt(keyFilterAosEndMinute, 23 * 60 + 59).coerceIn(0, 23 * 60 + 59)
return PassesSettings(showDeepSpace, hoursAhead, minElevation, selectedModes) val invertAosTimeWindow = preferences.getBoolean(keyFilterAosInvert, false)
return PassesSettings(
showDeepSpace,
hoursAhead,
minElevation,
aosStartMinute,
aosEndMinute,
invertAosTimeWindow
)
} }
//endregion //endregion
@@ -216,25 +253,6 @@ class SettingsRepo(
private val _databaseState = MutableStateFlow(getDatabaseState()) private val _databaseState = MutableStateFlow(getDatabaseState())
override val databaseState: StateFlow<DatabaseState> = _databaseState override val databaseState: StateFlow<DatabaseState> = _databaseState
override fun getSatelliteTypesIds(types: List<String>): List<Int> {
val idsSet = mutableSetOf<Int>()
types.forEach { type ->
val typeString = preferences.getString("type$type", null)
val typeIds = if (typeString.isNullOrBlank()) {
emptyList()
} else {
typeString.split(separatorComma).map { it.toInt() }
}
idsSet.addAll(typeIds)
}
return idsSet.toList()
}
override fun setSatelliteTypeIds(type: String, ids: List<Int>) {
if (type == "All") return
val typesString = ids.joinToString(separatorComma)
preferences.edit { putString("type$type", typesString) }
}
override fun updateDatabaseState(state: DatabaseState) = preferences.edit { override fun updateDatabaseState(state: DatabaseState) = preferences.edit {
putInt(keyNumberOfSatellites, state.numberOfSatellites) putInt(keyNumberOfSatellites, state.numberOfSatellites)
@@ -279,6 +297,10 @@ class SettingsRepo(
override val rcSettings: StateFlow<RCSettings> = _rcSettings override val rcSettings: StateFlow<RCSettings> = _rcSettings
override fun updateRCSettings(settings: RCSettings) { override fun updateRCSettings(settings: RCSettings) {
val clampedFreqOffsetHz = settings.frequencyOffsetHz.coerceIn(
Constants.FREQ_OFFSET_MIN_HZ,
Constants.FREQ_OFFSET_MAX_HZ
)
preferences.edit { preferences.edit {
putBoolean(keyRotatorState, settings.rotatorState) putBoolean(keyRotatorState, settings.rotatorState)
putString(keyRotatorAddress, settings.rotatorAddress) putString(keyRotatorAddress, settings.rotatorAddress)
@@ -288,6 +310,7 @@ class SettingsRepo(
putString(keyFrequencyAddress, settings.frequencyAddress) putString(keyFrequencyAddress, settings.frequencyAddress)
putString(keyFrequencyPort, settings.frequencyPort) putString(keyFrequencyPort, settings.frequencyPort)
putString(keyFrequencyFormat, settings.frequencyFormat) putString(keyFrequencyFormat, settings.frequencyFormat)
putLong(keyFrequencyOffsetHz, clampedFreqOffsetHz)
putBoolean(keyBluetoothRotatorState, settings.bluetoothRotatorState) putBoolean(keyBluetoothRotatorState, settings.bluetoothRotatorState)
putString(keyBluetoothRotatorFormat, settings.bluetoothRotatorFormat) putString(keyBluetoothRotatorFormat, settings.bluetoothRotatorFormat)
putString(keyBluetoothRotatorName, settings.bluetoothRotatorName) putString(keyBluetoothRotatorName, settings.bluetoothRotatorName)
@@ -296,7 +319,7 @@ class SettingsRepo(
putString(keyBluetoothFrequencyFormat, settings.bluetoothFrequencyFormat) putString(keyBluetoothFrequencyFormat, settings.bluetoothFrequencyFormat)
putString(keyBluetoothFrequencyAddress, settings.bluetoothFrequencyAddress) putString(keyBluetoothFrequencyAddress, settings.bluetoothFrequencyAddress)
} }
_rcSettings.value = settings _rcSettings.value = settings.copy(frequencyOffsetHz = clampedFreqOffsetHz)
} }
private fun getRCSettings(): RCSettings = RCSettings( private fun getRCSettings(): RCSettings = RCSettings(
@@ -308,6 +331,8 @@ class SettingsRepo(
frequencyAddress = preferences.getString(keyFrequencyAddress, null) ?: "127.0.0.1", frequencyAddress = preferences.getString(keyFrequencyAddress, null) ?: "127.0.0.1",
frequencyPort = preferences.getString(keyFrequencyPort, null) ?: "4532", frequencyPort = preferences.getString(keyFrequencyPort, null) ?: "4532",
frequencyFormat = preferences.getString(keyFrequencyFormat, null) ?: $$"F $FREQ", frequencyFormat = preferences.getString(keyFrequencyFormat, null) ?: $$"F $FREQ",
frequencyOffsetHz = preferences.getLong(keyFrequencyOffsetHz, 0L)
.coerceIn(Constants.FREQ_OFFSET_MIN_HZ, Constants.FREQ_OFFSET_MAX_HZ),
bluetoothRotatorState = preferences.getBoolean(keyBluetoothRotatorState, false), bluetoothRotatorState = preferences.getBoolean(keyBluetoothRotatorState, false),
bluetoothRotatorFormat = preferences.getString(keyBluetoothRotatorFormat, null) ?: $$"P $AZ $EL", bluetoothRotatorFormat = preferences.getString(keyBluetoothRotatorFormat, null) ?: $$"P $AZ $EL",
bluetoothRotatorName = preferences.getString(keyBluetoothRotatorName, null) ?: "Default", bluetoothRotatorName = preferences.getString(keyBluetoothRotatorName, null) ?: "Default",
@@ -335,6 +360,10 @@ class SettingsRepo(
putBoolean(keyShouldSeeWarning, new.shouldSeeWarning) putBoolean(keyShouldSeeWarning, new.shouldSeeWarning)
putBoolean(keyShouldSeeWhatsNew, new.shouldSeeWhatsNew) putBoolean(keyShouldSeeWhatsNew, new.shouldSeeWhatsNew)
putString(keySstvMode, new.sstvMode) putString(keySstvMode, new.sstvMode)
putLong(keyLowElevation, new.lowElevation.toRawBits())
putLong(keyHighElevation, new.highElevation.toRawBits())
putFloat(keyRadarCompassOffset, new.radarCompassOffset)
putFloat(keyRadarCompassOffsetElev, new.radarCompassOffsetElev)
} }
new new
} }
@@ -349,7 +378,11 @@ class SettingsRepo(
stateOfNightMode = preferences.getBoolean(keyStateOfNightMode, false), stateOfNightMode = preferences.getBoolean(keyStateOfNightMode, false),
shouldSeeWarning = preferences.getBoolean(keyShouldSeeWarning, true), shouldSeeWarning = preferences.getBoolean(keyShouldSeeWarning, true),
shouldSeeWhatsNew = preferences.getBoolean(keyShouldSeeWhatsNew, true), shouldSeeWhatsNew = preferences.getBoolean(keyShouldSeeWhatsNew, true),
sstvMode = preferences.getString(keySstvMode, null) ?: "Auto" sstvMode = preferences.getString(keySstvMode, null) ?: "Auto",
lowElevation = Double.fromBits(preferences.getLong(keyLowElevation, 15.0.toRawBits())),
highElevation = Double.fromBits(preferences.getLong(keyHighElevation, 45.0.toRawBits())),
radarCompassOffset = preferences.getFloat(keyRadarCompassOffset, 0f),
radarCompassOffsetElev = preferences.getFloat(keyRadarCompassOffsetElev, 0f)
) )
//endregion //endregion
@@ -358,21 +391,73 @@ class SettingsRepo(
override val dataSourcesSettings: StateFlow<DataSourcesSettings> = _dataSourcesSettings override val dataSourcesSettings: StateFlow<DataSourcesSettings> = _dataSourcesSettings
override fun updateDataSourcesSettings(settings: DataSourcesSettings) { override fun updateDataSourcesSettings(settings: DataSourcesSettings) {
// Normalize the enabled lists so they are positionally aligned with the URL lists.
// Missing entries default to enabled (true), keeping the persisted "one flag per URL"
// invariant intact even when a default empty list is used to construct the model.
val normalized = settings.copy(
satelliteEnabled = alignFlags(settings.satelliteUrls, settings.satelliteEnabled),
transceiversEnabled = alignFlags(settings.transceiversUrls, settings.transceiversEnabled)
)
preferences.edit { preferences.edit {
putBoolean(keyUseCustomTle, settings.useCustomTLE) putString(keySatellitesUrls, normalized.satelliteUrls.joinToString(separatorUrl))
putBoolean(keyUseCustomTransceivers, settings.useCustomTransceivers) putString(keyTransceiversUrls, normalized.transceiversUrls.joinToString(separatorUrl))
putString(keyTleUrl, settings.tleUrl) putString(keySatellitesUrlsEnabled, normalized.satelliteEnabled.joinToString(separatorComma))
putString(keyTransceiversUrl, settings.transceiversUrl) putString(keyTransceiversUrlsEnabled, normalized.transceiversEnabled.joinToString(separatorComma))
} }
_dataSourcesSettings.value = settings _dataSourcesSettings.value = normalized
} }
private fun getDataSourcesSettings(): DataSourcesSettings = DataSourcesSettings( private fun getDataSourcesSettings(): DataSourcesSettings {
useCustomTLE = preferences.getBoolean(keyUseCustomTle, false), val (satUrls, satEnabled) = parseSources(
useCustomTransceivers = preferences.getBoolean(keyUseCustomTransceivers, false), preferences.getString(keySatellitesUrls, null),
tleUrl = preferences.getString(keyTleUrl, "https://example.com/tle.txt") ?: "", preferences.getString(keySatellitesUrlsEnabled, null),
transceiversUrl = preferences.getString(keyTransceiversUrl, "https://example.com/radio.json") ?: "" Sources.satelliteDataUrls
) )
val (txUrls, txEnabled) = parseSources(
preferences.getString(keyTransceiversUrls, null),
preferences.getString(keyTransceiversUrlsEnabled, null),
Sources.transceiversDataUrls
)
return DataSourcesSettings(
satelliteUrls = satUrls,
transceiversUrls = txUrls,
satelliteEnabled = satEnabled,
transceiversEnabled = txEnabled
)
}
private fun parseSources(
storedUrls: String?,
storedEnabled: String?,
defaults: List<String>
): Pair<List<String>, List<Boolean>> {
if (storedUrls == null) return defaults to defaults.map { true }
val urls = storedUrls.split(separatorUrl)
val flags = if (storedEnabled.isNullOrEmpty()) emptyList() else storedEnabled.split(separatorComma)
val filteredUrls = mutableListOf<String>()
val filteredFlags = mutableListOf<Boolean>()
urls.forEachIndexed { index, url ->
if (url.isNotBlank()) {
filteredUrls.add(url)
filteredFlags.add(flags.getOrNull(index)?.toBoolean() ?: true)
}
}
return filteredUrls to filteredFlags
}
private fun alignFlags(urls: List<String>, flags: List<Boolean>): List<Boolean> {
if (flags.size >= urls.size) return flags.take(urls.size)
return flags + List(urls.size - flags.size) { true }
}
//endregion
//region # Data sources status
private val _dataSourcesStatus = MutableStateFlow<Map<String, Int>>(emptyMap())
override val dataSourcesStatus: StateFlow<Map<String, Int>> = _dataSourcesStatus
override fun updateDataSourcesStatus(status: Map<String, Int>) {
_dataSourcesStatus.value = status
}
//endregion //endregion
//region # Radio control settings //region # Radio control settings
@@ -383,6 +468,7 @@ class SettingsRepo(
private val keyTxRadioName = "txRadioName" private val keyTxRadioName = "txRadioName"
private val keyRxRadioName = "rxRadioName" private val keyRxRadioName = "rxRadioName"
private val keyRadioBaudRate = "radioBaudRate" private val keyRadioBaudRate = "radioBaudRate"
private val keyRadioSplitMode = "radioSplitMode"
private val _radioControlSettings = MutableStateFlow(getRadioControlSettings()) private val _radioControlSettings = MutableStateFlow(getRadioControlSettings())
override val radioControlSettings: StateFlow<RadioControlSettings> = _radioControlSettings override val radioControlSettings: StateFlow<RadioControlSettings> = _radioControlSettings
@@ -396,18 +482,54 @@ class SettingsRepo(
putString(keyTxRadioName, settings.txRadioName) putString(keyTxRadioName, settings.txRadioName)
putString(keyRxRadioName, settings.rxRadioName) putString(keyRxRadioName, settings.rxRadioName)
putInt(keyRadioBaudRate, settings.baudRate) putInt(keyRadioBaudRate, settings.baudRate)
putBoolean(keyRadioSplitMode, settings.splitMode)
} }
_radioControlSettings.value = settings _radioControlSettings.value = settings
} }
private fun getRadioControlSettings(): RadioControlSettings = RadioControlSettings( private fun getRadioControlSettings(): RadioControlSettings = RadioControlSettings(
enabled = preferences.getBoolean(keyRadioControlEnabled, false), enabled = preferences.getBoolean(keyRadioControlEnabled, false),
radioModel = preferences.getString(keyRadioModel, null) ?: "Yaesu FT-817/818", radioModel = preferences.getString(keyRadioModel, null) ?: RadioControlSettings.MODEL_YAESU_FT817,
txRadioAddress = preferences.getString(keyTxRadioAddress, null) ?: "", txRadioAddress = preferences.getString(keyTxRadioAddress, null) ?: "",
rxRadioAddress = preferences.getString(keyRxRadioAddress, null) ?: "", rxRadioAddress = preferences.getString(keyRxRadioAddress, null) ?: "",
txRadioName = preferences.getString(keyTxRadioName, null) ?: "TX Radio", txRadioName = preferences.getString(keyTxRadioName, null) ?: "TX Radio",
rxRadioName = preferences.getString(keyRxRadioName, null) ?: "RX Radio", rxRadioName = preferences.getString(keyRxRadioName, null) ?: "RX Radio",
baudRate = preferences.getInt(keyRadioBaudRate, 4800) baudRate = preferences.getInt(keyRadioBaudRate, 4800),
splitMode = preferences.getBoolean(keyRadioSplitMode, false)
) )
private val keySatelliteOffsets = "satelliteOffsets"
override fun getSatelliteOffset(catnum: Int): String {
val json = preferences.getString(keySatelliteOffsets, "{}") ?: "{}"
return try {
JSONObject(json).optString(catnum.toString(), "")
} catch (_: Exception) {
""
}
}
override fun setSatelliteOffset(catnum: Int, offset: String) {
val json = preferences.getString(keySatelliteOffsets, "{}") ?: "{}"
val updated = try {
val obj = JSONObject(json)
if (offset.isEmpty()) obj.remove(catnum.toString()) else obj.put(catnum.toString(), offset)
obj.toString()
} catch (_: Exception) {
"""{"$catnum": "$offset"}"""
}
preferences.edit { putString(keySatelliteOffsets, updated) }
}
//region # AMSAT status report settings
private val keyAmSatCallsign = "amSatCallsign"
override fun getAmSatCallsign(): String {
return preferences.getString(keyAmSatCallsign, "").orEmpty()
}
override fun setAmSatCallsign(callsign: String) {
preferences.edit { putString(keyAmSatCallsign, callsign.trim().uppercase(Locale.US)) }
}
//endregion //endregion
} }
@@ -43,6 +43,16 @@ class LocalSource(private val look4SatDao: Look4SatDao) : ILocalSource {
return selectedOrbitalObjects return selectedOrbitalObjects
} }
override suspend fun getEntriesEpochs() = look4SatDao.getEntriesEpochs()
override suspend fun getEntriesNames() = look4SatDao.getEntriesNames()
override suspend fun renameEntries(names: Map<Int, String>) =
names.forEach { (catnum, name) -> look4SatDao.renameEntry(catnum, name) }
override suspend fun deleteEntriesWithIds(ids: List<Int>) =
ids.chunked(999).forEach { idsPart -> look4SatDao.deleteEntriesWithIds(idsPart) }
override suspend fun insertEntries(entries: List<OrbitalData>) = look4SatDao.insertEntries(entries.toEntity()) override suspend fun insertEntries(entries: List<OrbitalData>) = look4SatDao.insertEntries(entries.toEntity())
override suspend fun deleteEntries() = look4SatDao.deleteEntries() override suspend fun deleteEntries() = look4SatDao.deleteEntries()
@@ -51,12 +61,12 @@ class LocalSource(private val look4SatDao: Look4SatDao) : ILocalSource {
private fun FrameworkEntry.toDomain() = OrbitalData( private fun FrameworkEntry.toDomain() = OrbitalData(
this.name, this.epoch, this.meanmo, this.eccn, this.incl, this.name, this.epoch, this.meanmo, this.eccn, this.incl,
this.raan, this.argper, this.meanan, this.catnum, this.bstar this.raan, this.argper, this.meanan, this.catnum, this.bstar, this.ndot
) )
private fun OrbitalData.toEntity() = FrameworkEntry( private fun OrbitalData.toEntity() = FrameworkEntry(
this.name, this.epoch, this.meanmo, this.eccn, this.incl, this.name, this.epoch, this.meanmo, this.eccn, this.incl,
this.raan, this.argper, this.meanan, this.catnum, this.bstar this.raan, this.argper, this.meanan, this.catnum, this.bstar, this.ndot
) )
private fun List<OrbitalData>.toEntity() = this.map { item -> item.toEntity() } private fun List<OrbitalData>.toEntity() = this.map { item -> item.toEntity() }
@@ -73,15 +83,17 @@ class LocalSource(private val look4SatDao: Look4SatDao) : ILocalSource {
return look4SatDao.getRadiosWithId(id).toDomainRadios() return look4SatDao.getRadiosWithId(id).toDomainRadios()
} }
override suspend fun insertRadios(radios: List<SatRadio>) { override suspend fun insertRadios(radios: List<SatRadio>, isCustom: Boolean) {
look4SatDao.insertRadios(radios.toFrameworkRadios()) look4SatDao.insertRadios(radios.map { radio -> radio.toFramework(isCustom) })
} }
override suspend fun deleteRadios() = look4SatDao.deleteRadios() override suspend fun deleteRadios() = look4SatDao.deleteRadios()
private fun DomainRadio.toFramework() = FrameworkRadio( override suspend fun deleteManagedRadios() = look4SatDao.deleteManagedRadios()
private fun DomainRadio.toFramework(isCustom: Boolean = false) = FrameworkRadio(
this.uuid, this.info, this.isAlive, this.downlinkLow, this.downlinkHigh, this.downlinkMode, this.uuid, this.info, this.isAlive, this.downlinkLow, this.downlinkHigh, this.downlinkMode,
this.uplinkLow, this.uplinkHigh, this.uplinkMode, this.isInverted, this.catnum this.uplinkLow, this.uplinkHigh, this.uplinkMode, this.isInverted, this.catnum, isCustom
) )
private fun FrameworkRadio.toDomain() = DomainRadio( private fun FrameworkRadio.toDomain() = DomainRadio(
@@ -89,8 +101,6 @@ class LocalSource(private val look4SatDao: Look4SatDao) : ILocalSource {
this.uplinkLow, this.uplinkHigh, this.uplinkMode, this.isInverted, this.catnum this.uplinkLow, this.uplinkHigh, this.uplinkMode, this.isInverted, this.catnum
) )
private fun List<DomainRadio>.toFrameworkRadios() = this.map { radio -> radio.toFramework() }
private fun List<FrameworkRadio>.toDomainRadios() = this.map { radio -> radio.toDomain() } private fun List<FrameworkRadio>.toDomainRadios() = this.map { radio -> radio.toDomain() }
//endregion //endregion
@@ -20,11 +20,13 @@ package com.rtbishop.look4sat.core.data.source
import android.content.ContentResolver import android.content.ContentResolver
import androidx.core.net.toUri import androidx.core.net.toUri
import com.rtbishop.look4sat.core.domain.source.IRemoteSource import com.rtbishop.look4sat.core.domain.source.IRemoteSource
import com.rtbishop.look4sat.core.domain.source.NetworkResult
import kotlinx.coroutines.CoroutineDispatcher import kotlinx.coroutines.CoroutineDispatcher
import kotlinx.coroutines.withContext import kotlinx.coroutines.withContext
import okhttp3.MediaType.Companion.toMediaType
import okhttp3.OkHttpClient import okhttp3.OkHttpClient
import okhttp3.Request import okhttp3.Request
import java.io.ByteArrayInputStream import okhttp3.RequestBody.Companion.toRequestBody
import java.io.InputStream import java.io.InputStream
class RemoteSource( class RemoteSource(
@@ -43,15 +45,74 @@ class RemoteSource(
} }
} }
override suspend fun getNetworkStream(url: String): InputStream? = withContext(dispatcher) { override suspend fun getNetworkStream(url: String): NetworkResult = withContext(dispatcher) {
try { try {
val networkRequest = Request.Builder().url(url).build() val networkRequest = Request.Builder().url(url).build()
httpClient.newCall(networkRequest).execute().use { response -> val response = httpClient.newCall(networkRequest).execute()
if (!response.isSuccessful) return@withContext null if (!response.isSuccessful) {
ByteArrayInputStream(response.body.bytes()) val code = response.code
response.close()
return@withContext NetworkResult(code, null)
} }
// Return the body stream directly as the caller is responsible for closing it
// That returns the connection to OkHttp's pool
val body = response.body
if (body == null) {
response.close()
return@withContext NetworkResult(response.code, null)
}
NetworkResult(response.code, body.byteStream().buffered())
} catch (exception: Exception) { } catch (exception: Exception) {
println("RemoteSource network stream exception: $exception") println("RemoteSource network stream exception: $exception")
NetworkResult(NetworkResult.CONNECTION_ERROR, null)
}
}
override suspend fun getAmSatCatalog(): String? = withContext(dispatcher) {
try {
val request = Request.Builder()
.url("https://www.amsat.org/status/api/v1/catalog.php")
.header("User-Agent", "Look4Sat")
.build()
httpClient.newCall(request).execute().use { response ->
if (!response.isSuccessful) return@use null
response.body.string()
}
} catch (exception: Exception) {
println("RemoteSource getAmSatCatalog exception: $exception")
null
}
}
override suspend fun getAmSatReports(hours: Int, limit: Int): String? = withContext(dispatcher) {
try {
val request = Request.Builder()
.url("https://www.amsat.org/status/api/v1/reports.php?hours=$hours&limit=$limit")
.header("User-Agent", "Look4Sat")
.build()
httpClient.newCall(request).execute().use { response ->
if (!response.isSuccessful) return@use null
response.body.string()
}
} catch (exception: Exception) {
println("RemoteSource getAmSatReports exception: $exception")
null
}
}
override suspend fun submitAmSatReport(payloadJson: String): Pair<Int, String>? = withContext(dispatcher) {
try {
val body = payloadJson.toRequestBody("application/json; charset=utf-8".toMediaType())
val request = Request.Builder()
.url("https://www.amsat.org/status/api/v1/reports.php")
.header("User-Agent", "Look4Sat")
.post(body)
.build()
httpClient.newCall(request).execute().use { response ->
response.code to response.body.string()
}
} catch (exception: Exception) {
println("RemoteSource submitAmSatReport exception: $exception")
null null
} }
} }
@@ -1,30 +1,29 @@
package com.rtbishop.look4sat.core.data package com.rtbishop.look4sat.core.data.framework
import com.rtbishop.look4sat.core.data.framework.Ft817CatProtocol import org.junit.Assert.assertArrayEquals
import org.junit.Assert.assertEquals
import org.junit.Assert.assertNotNull
import org.junit.Assert.assertNull
import org.junit.Test import org.junit.Test
import kotlin.test.assertContentEquals
import kotlin.test.assertEquals
import kotlin.test.assertNotNull
import kotlin.test.assertNull
class Ft817CatProtocolTest { class Ft817CatProtocolTest {
@Test @Test
fun encodeFrequencyBcd_145500000() { fun encodeFrequencyBcd_145500000() {
val bcd = Ft817CatProtocol.encodeFrequencyBcd(145500000L) val bcd = Ft817CatProtocol.encodeFrequencyBcd(145500000L)
assertContentEquals(byteArrayOf(0x14, 0x55, 0x00, 0x00), bcd) assertArrayEquals(byteArrayOf(0x14, 0x55, 0x00, 0x00), bcd)
} }
@Test @Test
fun encodeFrequencyBcd_435100000() { fun encodeFrequencyBcd_435100000() {
val bcd = Ft817CatProtocol.encodeFrequencyBcd(435100000L) val bcd = Ft817CatProtocol.encodeFrequencyBcd(435100000L)
assertContentEquals(byteArrayOf(0x43, 0x51, 0x00, 0x00), bcd) assertArrayEquals(byteArrayOf(0x43, 0x51, 0x00, 0x00), bcd)
} }
@Test @Test
fun encodeFrequencyBcd_7074000() { fun encodeFrequencyBcd_7074000() {
val bcd = Ft817CatProtocol.encodeFrequencyBcd(7074000L) val bcd = Ft817CatProtocol.encodeFrequencyBcd(7074000L)
assertContentEquals(byteArrayOf(0x00, 0x70, 0x74, 0x00), bcd) assertArrayEquals(byteArrayOf(0x00, 0x70, 0x74, 0x00), bcd)
} }
@Test @Test
@@ -42,21 +41,21 @@ class Ft817CatProtocolTest {
val cmd = Ft817CatProtocol.buildSetFreqCommand(145500000L) val cmd = Ft817CatProtocol.buildSetFreqCommand(145500000L)
assertEquals(5, cmd.size) assertEquals(5, cmd.size)
assertEquals(0x01.toByte(), cmd[4]) assertEquals(0x01.toByte(), cmd[4])
assertContentEquals(byteArrayOf(0x14, 0x55, 0x00, 0x00, 0x01), cmd) assertArrayEquals(byteArrayOf(0x14, 0x55, 0x00, 0x00, 0x01), cmd)
} }
@Test @Test
fun buildSetModeCommand_usb() { fun buildSetModeCommand_usb() {
val cmd = Ft817CatProtocol.buildSetModeCommand("USB") val cmd = Ft817CatProtocol.buildSetModeCommand("USB")
assertNotNull(cmd) assertNotNull(cmd)
assertContentEquals(byteArrayOf(0x01, 0x00, 0x00, 0x00, 0x07), cmd) assertArrayEquals(byteArrayOf(0x01, 0x00, 0x00, 0x00, 0x07), cmd)
} }
@Test @Test
fun buildSetModeCommand_fm() { fun buildSetModeCommand_fm() {
val cmd = Ft817CatProtocol.buildSetModeCommand("FM") val cmd = Ft817CatProtocol.buildSetModeCommand("FM")
assertNotNull(cmd) assertNotNull(cmd)
assertContentEquals(byteArrayOf(0x08, 0x00, 0x00, 0x00, 0x07), cmd) assertArrayEquals(byteArrayOf(0x08, 0x00, 0x00, 0x00, 0x07), cmd)
} }
@Test @Test
@@ -67,19 +66,19 @@ class Ft817CatProtocolTest {
@Test @Test
fun encodeCtcssTone_67_0() { fun encodeCtcssTone_67_0() {
val bcd = Ft817CatProtocol.encodeCtcssToneBcd(67.0) val bcd = Ft817CatProtocol.encodeCtcssToneBcd(67.0)
assertContentEquals(byteArrayOf(0x06, 0x70), bcd) assertArrayEquals(byteArrayOf(0x06, 0x70), bcd)
} }
@Test @Test
fun encodeCtcssTone_74_4() { fun encodeCtcssTone_74_4() {
val bcd = Ft817CatProtocol.encodeCtcssToneBcd(74.4) val bcd = Ft817CatProtocol.encodeCtcssToneBcd(74.4)
assertContentEquals(byteArrayOf(0x07, 0x44), bcd) assertArrayEquals(byteArrayOf(0x07, 0x44), bcd)
} }
@Test @Test
fun encodeCtcssTone_141_3() { fun encodeCtcssTone_141_3() {
val bcd = Ft817CatProtocol.encodeCtcssToneBcd(141.3) val bcd = Ft817CatProtocol.encodeCtcssToneBcd(141.3)
assertContentEquals(byteArrayOf(0x14, 0x13), bcd) assertArrayEquals(byteArrayOf(0x14, 0x13), bcd)
} }
@Test @Test
@@ -87,13 +86,13 @@ class Ft817CatProtocolTest {
val cmd = Ft817CatProtocol.buildSetCtcssToneCommand(67.0) val cmd = Ft817CatProtocol.buildSetCtcssToneCommand(67.0)
assertEquals(5, cmd.size) assertEquals(5, cmd.size)
assertEquals(0x0B.toByte(), cmd[4]) assertEquals(0x0B.toByte(), cmd[4])
assertContentEquals(byteArrayOf(0x06, 0x70, 0x00, 0x00, 0x0B), cmd) assertArrayEquals(byteArrayOf(0x06, 0x70, 0x00, 0x00, 0x0B), cmd)
} }
@Test @Test
fun buildCtcssModeCommand_enable() { fun buildCtcssModeCommand_enable() {
val cmd = Ft817CatProtocol.buildCtcssModeCommand(true) val cmd = Ft817CatProtocol.buildCtcssModeCommand(true)
assertContentEquals(byteArrayOf(0x2A, 0x00, 0x00, 0x00, 0x0A), cmd) assertArrayEquals(byteArrayOf(0x2A, 0x00, 0x00, 0x00, 0x0A), cmd)
} }
@Test @Test
@@ -108,6 +107,7 @@ class Ft817CatProtocolTest {
val response = byteArrayOf(0x14, 0x55, 0x00, 0x00, 0x01) val response = byteArrayOf(0x14, 0x55, 0x00, 0x00, 0x01)
val result = Ft817CatProtocol.parseReadResponse(response) val result = Ft817CatProtocol.parseReadResponse(response)
assertNotNull(result) assertNotNull(result)
result ?: return
assertEquals(145500000L, result.first) assertEquals(145500000L, result.first)
assertEquals("USB", result.second) assertEquals("USB", result.second)
} }
@@ -117,6 +117,7 @@ class Ft817CatProtocolTest {
val response = byteArrayOf(0x14, 0x60, 0x00, 0x00, 0x08) val response = byteArrayOf(0x14, 0x60, 0x00, 0x00, 0x08)
val result = Ft817CatProtocol.parseReadResponse(response) val result = Ft817CatProtocol.parseReadResponse(response)
assertNotNull(result) assertNotNull(result)
result ?: return
assertEquals(146000000L, result.first) assertEquals(146000000L, result.first)
assertEquals("FM", result.second) assertEquals("FM", result.second)
} }
@@ -135,7 +136,7 @@ class Ft817CatProtocolTest {
@Test @Test
fun buildPttCommands() { fun buildPttCommands() {
val on = Ft817CatProtocol.buildPttOnCommand() val on = Ft817CatProtocol.buildPttOnCommand()
assertContentEquals(byteArrayOf(0x00, 0x00, 0x00, 0x00, 0x08), on) assertArrayEquals(byteArrayOf(0x00, 0x00, 0x00, 0x00, 0x08), on)
val off = Ft817CatProtocol.buildPttOffCommand() val off = Ft817CatProtocol.buildPttOffCommand()
assertEquals(0x88.toByte(), off[4]) assertEquals(0x88.toByte(), off[4])
@@ -144,6 +145,6 @@ class Ft817CatProtocolTest {
@Test @Test
fun buildReadCommand() { fun buildReadCommand() {
val cmd = Ft817CatProtocol.buildReadFreqModeCommand() val cmd = Ft817CatProtocol.buildReadFreqModeCommand()
assertContentEquals(byteArrayOf(0x00, 0x00, 0x00, 0x00, 0x03), cmd) assertArrayEquals(byteArrayOf(0x00, 0x00, 0x00, 0x00, 0x03), cmd)
} }
} }
@@ -0,0 +1,33 @@
package com.rtbishop.look4sat.core.data.framework
import org.junit.Assert.assertEquals
import org.junit.Assert.assertNotNull
import org.junit.Assert.assertNull
import org.junit.Test
class IcomCivProtocolTest {
private fun bytes(vararg values: Int) = ByteArray(values.size) { values[it].toByte() }
@Test
fun parseFreqModePayload_ic705ReadFreqReply() {
// Reply captured from an IC-705 to CMD 0x03: frequency only, no mode byte
val reply = bytes(0xFE, 0xFE, 0xE0, 0xA4, 0x03, 0x60, 0x74, 0x95, 0x45, 0x01, 0xFD)
val response = IcomCivProtocol.parseResponse(reply, IcomCivProtocol.CMD_READ_FREQ)
assertNotNull(response)
assertEquals(145957460L to "", IcomCivProtocol.parseFreqModePayload(response!!.payload))
}
@Test
fun parseFreqModePayload_withModeByte() {
assertEquals(
435611000L to "USB",
IcomCivProtocol.parseFreqModePayload(bytes(0x00, 0x10, 0x61, 0x35, 0x04, 0x01, 0x01))
)
}
@Test
fun parseFreqModePayload_tooShort() {
assertNull(IcomCivProtocol.parseFreqModePayload(bytes(0x60, 0x74, 0x95, 0x45)))
}
}
@@ -0,0 +1,433 @@
/*
* 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.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.ISettingsRepo
import com.rtbishop.look4sat.core.domain.source.ILocalSource
import com.rtbishop.look4sat.core.domain.source.IRemoteSource
import com.rtbishop.look4sat.core.domain.source.NetworkResult
import com.rtbishop.look4sat.core.domain.utility.DataParser
import kotlinx.coroutines.ExperimentalCoroutinesApi
import kotlinx.coroutines.flow.MutableStateFlow
import kotlinx.coroutines.flow.StateFlow
import kotlinx.coroutines.test.StandardTestDispatcher
import kotlinx.coroutines.test.runTest
import org.junit.Assert.assertEquals
import org.junit.Assert.assertTrue
import org.junit.Test
import java.io.InputStream
import java.time.LocalDate
@OptIn(ExperimentalCoroutinesApi::class)
class DatabaseRepoTest {
private val dispatcher = StandardTestDispatcher()
private val dataParser = DataParser(dispatcher)
// fixtures carry a current epoch: stale entries are pruned on every remote update
private val todayEpoch = LocalDate.now().let { "%02d%03d".format(it.year % 100, it.dayOfYear) }
private val fresherEpoch = "$todayEpoch.71955234".toDouble()
@Test
fun `manual satellite import parses csv stream from content uri`() = runTest(dispatcher) {
val uri = "content://look4sat/import/satellites"
val localSource = FakeLocalSource()
val remoteSource = FakeRemoteSource().apply {
fileStreams[uri] = { validCsvStream() }
}
val settingsRepo = FakeSettingsRepo()
val repository = DatabaseRepo(dispatcher, dataParser, localSource, remoteSource, settingsRepo)
repository.updateTLEFromFile(uri)
assertEquals(1, localSource.insertedEntries.size)
assertEquals(25544, localSource.insertedEntries.first().catnum)
assertTrue(settingsRepo.databaseState.value.numberOfSatellites > 0)
}
@Test
fun `manual satellite import keeps tle support`() = runTest(dispatcher) {
val uri = "content://look4sat/import/legacy"
val localSource = FakeLocalSource()
val remoteSource = FakeRemoteSource().apply {
fileStreams[uri] = { validTleStream() }
}
val settingsRepo = FakeSettingsRepo()
val repository = DatabaseRepo(dispatcher, dataParser, localSource, remoteSource, settingsRepo)
repository.updateTLEFromFile(uri)
assertEquals(1, localSource.insertedEntries.size)
assertEquals(25544, localSource.insertedEntries.first().catnum)
}
@Test
fun `custom data source imports omm csv from web`() = runTest(dispatcher) {
val customCsvUrl = "https://example.com/custom-omm.csv"
val localSource = FakeLocalSource()
val remoteSource = FakeRemoteSource().apply {
networkStreams[customCsvUrl] = { validCsvStream() }
}
val settingsRepo = FakeSettingsRepo(
dataSources = DataSourcesSettings(
satelliteUrls = listOf(customCsvUrl),
transceiversUrls = emptyList()
)
)
val repository = DatabaseRepo(dispatcher, dataParser, localSource, remoteSource, settingsRepo)
repository.updateFromRemote()
assertTrue(localSource.insertedEntries.any { it.catnum == 25544 })
}
@Test
fun `remote update takes the freshest elements and the preferred name`() = runTest(dispatcher) {
val primaryUrl = "https://example.com/primary.txt"
val secondaryUrl = "https://example.com/secondary.txt"
val localSource = FakeLocalSource()
val remoteSource = FakeRemoteSource().apply {
networkStreams[primaryUrl] = { validTleStream() }
networkStreams[secondaryUrl] = { fresherTleStream() }
}
val settingsRepo = FakeSettingsRepo(
dataSources = DataSourcesSettings(
satelliteUrls = listOf(primaryUrl, secondaryUrl),
transceiversUrls = emptyList()
)
)
val repository = DatabaseRepo(dispatcher, dataParser, localSource, remoteSource, settingsRepo)
repository.updateFromRemote()
val entry = localSource.insertedEntries.single { it.catnum == 25544 }
assertEquals("ISS (ZARYA)", entry.name)
assertEquals(fresherEpoch, entry.epoch, 1e-8)
}
@Test
fun `manual satellite import does not overwrite fresher data`() = runTest(dispatcher) {
val freshUri = "content://look4sat/import/fresh"
val staleUri = "content://look4sat/import/stale"
val localSource = FakeLocalSource()
val remoteSource = FakeRemoteSource().apply {
fileStreams[freshUri] = { fresherTleStream() }
fileStreams[staleUri] = { validTleStream() }
}
val settingsRepo = FakeSettingsRepo()
val repository = DatabaseRepo(dispatcher, dataParser, localSource, remoteSource, settingsRepo)
assertEquals(1, repository.updateTLEFromFile(freshUri))
assertEquals(1, repository.updateTLEFromFile(staleUri))
assertEquals(fresherEpoch, localSource.insertedEntries.single().epoch, 1e-8)
}
@Test
fun `remote update drops transceivers that are no longer published`() = runTest(dispatcher) {
val radioUrl = "https://example.com/transmitters.json"
val localSource = FakeLocalSource()
val remoteSource = FakeRemoteSource()
val settingsRepo = FakeSettingsRepo(
dataSources = DataSourcesSettings(
satelliteUrls = emptyList(),
transceiversUrls = listOf(radioUrl)
)
)
val repository = DatabaseRepo(dispatcher, dataParser, localSource, remoteSource, settingsRepo)
remoteSource.networkStreams[radioUrl] = { twoRadiosStream() }
repository.updateFromRemote()
assertEquals(2, localSource.insertedRadios.size)
remoteSource.networkStreams[radioUrl] = { singleRadioStream() }
repository.updateFromRemote()
assertEquals(listOf("uuid-alive"), localSource.insertedRadios.map { it.uuid })
}
@Test
fun `remote update renames satellites even when their elements are not newer`() = runTest(dispatcher) {
val preferredUrl = "https://example.com/preferred.txt"
val freshUrl = "https://example.com/fresh.txt"
val localSource = FakeLocalSource()
val remoteSource = FakeRemoteSource().apply {
networkStreams[freshUrl] = { fresherTleStream() }
}
val settingsRepo = FakeSettingsRepo(
dataSources = DataSourcesSettings(
satelliteUrls = listOf(freshUrl),
transceiversUrls = emptyList()
)
)
val repository = DatabaseRepo(dispatcher, dataParser, localSource, remoteSource, settingsRepo)
repository.updateFromRemote()
assertEquals("ISS", localSource.insertedEntries.single().name)
// the user moves a source with older elements, but a better name, to the top of the list
remoteSource.networkStreams[preferredUrl] = { validTleStream() }
settingsRepo.dataSourcesSettings.value = DataSourcesSettings(
satelliteUrls = listOf(preferredUrl, freshUrl),
transceiversUrls = emptyList()
)
repository.updateFromRemote()
val entry = localSource.insertedEntries.single()
assertEquals("ISS (ZARYA)", entry.name)
assertEquals(fresherEpoch, entry.epoch, 1e-8)
}
@Test
fun `failed remote update records the attempt without claiming success`() = runTest(dispatcher) {
val failingUrl = "https://example.com/offline.txt"
val localSource = FakeLocalSource()
val remoteSource = FakeRemoteSource()
val settingsRepo = FakeSettingsRepo(
dataSources = DataSourcesSettings(
satelliteUrls = listOf(failingUrl),
transceiversUrls = emptyList()
)
)
settingsRepo.databaseState.value = DatabaseState(0, 0, 1_000L)
val repository = DatabaseRepo(dispatcher, dataParser, localSource, remoteSource, settingsRepo)
repository.updateFromRemote()
// the update timestamp stays put so the data is not presented as fresh, while the recorded
// attempt keeps the next app launch from hammering a source that is already failing
assertEquals(1_000L, settingsRepo.databaseState.value.updateTimestamp)
}
@Test
fun `remote update keeps the transceivers imported from a file`() = runTest(dispatcher) {
val radioUri = "content://imported.json"
val radioUrl = "https://example.com/transmitters.json"
val localSource = FakeLocalSource()
val remoteSource = FakeRemoteSource().apply {
fileStreams[radioUri] = { customRadioStream() }
networkStreams[radioUrl] = { singleRadioStream() }
}
val settingsRepo = FakeSettingsRepo(
dataSources = DataSourcesSettings(
satelliteUrls = emptyList(),
transceiversUrls = listOf(radioUrl)
)
)
val repository = DatabaseRepo(dispatcher, dataParser, localSource, remoteSource, settingsRepo)
repository.updateTransceiversFromFile(radioUri)
repository.updateFromRemote()
// the remote snapshot replaces what the sources publish, the imported entry stays put
assertEquals(setOf("uuid-custom", "uuid-alive"), localSource.insertedRadios.map { it.uuid }.toSet())
}
private fun validCsvStream(): InputStream = """
OBJECT_NAME,OBJECT_ID,EPOCH,MEAN_MOTION,ECCENTRICITY,INCLINATION,RA_OF_ASC_NODE,ARG_OF_PERICENTER,MEAN_ANOMALY,EPHEMERIS_TYPE,CLASSIFICATION_TYPE,NORAD_CAT_ID,ELEMENT_SET_NO,REV_AT_EPOCH,BSTAR,MEAN_MOTION_DOT,MEAN_MOTION_DDOT
ISS (ZARYA),1998-067A,${LocalDate.now()}T12:28:09.322176,15.48582035,.0004694,51.6447,309.4881,203.6966,299.8876,0,U,25544,999,31220,.31985E-4,.1288E-4,0
""".trimIndent().byteInputStream()
private fun validTleStream(): InputStream = """
ISS (ZARYA)
1 25544U 98067A $todayEpoch.51955234 .00001288 00000+0 31985-4 0 9990
2 25544 51.6447 309.4881 0004694 203.6966 299.8876 15.48582035312205
""".trimIndent().byteInputStream()
private fun fresherTleStream(): InputStream = """
ISS
1 25544U 98067A $todayEpoch.71955234 .00001288 00000+0 31985-4 0 9990
2 25544 51.6447 309.4881 0004694 203.6966 299.8876 15.48582035312205
""".trimIndent().byteInputStream()
private fun twoRadiosStream(): InputStream = """
[$radioAlive,{"uuid":"uuid-retired","description":"Retired","alive":true,"downlink_low":437800000,
"mode":"FM","invert":false,"norad_cat_id":25544}]
""".trimIndent().byteInputStream()
private fun singleRadioStream(): InputStream = "[$radioAlive]".byteInputStream()
private fun customRadioStream(): InputStream = """
[{"uuid":"uuid-custom","description":"Local beacon","alive":true,"downlink_low":144800000,
"mode":"FM","invert":false,"norad_cat_id":25544}]
""".trimIndent().byteInputStream()
}
private const val radioAlive = """{"uuid":"uuid-alive","description":"Voice repeater","alive":true,
"downlink_low":145800000,"mode":"FM","invert":false,"norad_cat_id":25544}"""
private class FakeRemoteSource : IRemoteSource {
val fileStreams: MutableMap<String, () -> InputStream> = mutableMapOf()
val networkStreams: MutableMap<String, () -> InputStream> = mutableMapOf()
override suspend fun getFileStream(uri: String): InputStream? = fileStreams[uri]?.invoke()
override suspend fun getNetworkStream(url: String): NetworkResult {
val stream = networkStreams[url]?.invoke()
return if (stream != null) NetworkResult(200, stream) else NetworkResult(404, null)
}
override suspend fun getAmSatCatalog(): String? = null
override suspend fun getAmSatReports(hours: Int, limit: Int): String? = null
override suspend fun submitAmSatReport(payloadJson: String): Pair<Int, String>? = null
}
private class FakeLocalSource : ILocalSource {
val insertedEntries = mutableListOf<OrbitalData>()
val insertedRadios = mutableListOf<SatRadio>()
private val customRadios = mutableListOf<String>()
override suspend fun getEntriesTotal(): Int = insertedEntries.size
override suspend fun getEntriesList(): List<SatItem> = emptyList()
override suspend fun getEntriesWithIds(ids: List<Int>): List<OrbitalObject> = emptyList()
override suspend fun getEntriesEpochs(): Map<Int, Double> =
insertedEntries.associate { entry -> entry.catnum to entry.epoch }
override suspend fun getEntriesNames(): Map<Int, String> =
insertedEntries.associate { entry -> entry.catnum to entry.name }
override suspend fun renameEntries(names: Map<Int, String>) = names.forEach { (catnum, name) ->
val index = insertedEntries.indexOfFirst { entry -> entry.catnum == catnum }
if (index >= 0) insertedEntries[index] = insertedEntries[index].copy(name = name)
}
override suspend fun deleteEntriesWithIds(ids: List<Int>) {
insertedEntries.removeAll { entry -> entry.catnum in ids }
}
override suspend fun insertEntries(entries: List<OrbitalData>) {
insertedEntries += entries
}
override suspend fun deleteEntries() {
insertedEntries.clear()
}
override suspend fun getIdsWithModes(modes: List<String>): List<Int> = emptyList()
override suspend fun getRadiosTotal(): Int = insertedRadios.size
override suspend fun getRadiosWithId(id: Int): List<SatRadio> = emptyList()
override suspend fun insertRadios(radios: List<SatRadio>, isCustom: Boolean) {
insertedRadios.removeAll { stored -> radios.any { radio -> radio.uuid == stored.uuid } }
insertedRadios += radios
if (isCustom) customRadios += radios.map { radio -> radio.uuid }
else customRadios -= radios.map { radio -> radio.uuid }.toSet()
}
override suspend fun deleteRadios() {
insertedRadios.clear()
customRadios.clear()
}
override suspend fun deleteManagedRadios() {
insertedRadios.removeAll { radio -> radio.uuid !in customRadios }
}
}
private class FakeSettingsRepo(dataSources: DataSourcesSettings = defaultDataSourcesSettings()) : ISettingsRepo {
override val appVersionName: String = "test"
override val appVersionCode: Long = 1L
override val selectedIds: StateFlow<List<Int>> = MutableStateFlow(emptyList())
override val selectedSatModes: StateFlow<List<String>> = MutableStateFlow(emptyList())
override val passesSettings: StateFlow<PassesSettings> = MutableStateFlow(
PassesSettings(hoursAhead = 24, minElevation = 0.0)
)
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, false)
)
override val dataSourcesSettings: MutableStateFlow<DataSourcesSettings> = MutableStateFlow(dataSources)
override val dataSourcesStatus: MutableStateFlow<Map<String, Int>> = MutableStateFlow(emptyMap())
override val radioControlSettings: StateFlow<RadioControlSettings> = MutableStateFlow(
RadioControlSettings(false, RadioControlSettings.MODEL_YAESU_FT817, "", "", "", "", 9600)
)
override fun setSelectedIds(ids: List<Int>) = Unit
override fun setSelectedSatModes(modes: 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 updateDatabaseState(state: DatabaseState) {
databaseState.value = state
}
override fun updateRCSettings(settings: RCSettings) = Unit
override fun updateOtherSettings(transform: (OtherSettings) -> OtherSettings) = Unit
override fun updateDataSourcesSettings(settings: DataSourcesSettings) {
dataSourcesSettings.value = settings
}
override fun updateDataSourcesStatus(status: Map<String, Int>) {
dataSourcesStatus.value = status
}
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
}
private fun defaultDataSourcesSettings(): DataSourcesSettings {
return DataSourcesSettings(
satelliteUrls = emptyList(),
transceiversUrls = emptyList()
)
}
@@ -0,0 +1,253 @@
/*
* 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.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.OrbitalObject
import com.rtbishop.look4sat.core.domain.repository.ISettingsRepo
import com.rtbishop.look4sat.core.domain.source.ILocalSource
import kotlinx.coroutines.ExperimentalCoroutinesApi
import kotlinx.coroutines.flow.MutableStateFlow
import kotlinx.coroutines.flow.StateFlow
import kotlinx.coroutines.flow.first
import kotlinx.coroutines.test.StandardTestDispatcher
import kotlinx.coroutines.test.runTest
import org.junit.Assert.assertEquals
import org.junit.Test
@OptIn(ExperimentalCoroutinesApi::class)
class SelectionRepoTest {
private val dispatcher = StandardTestDispatcher()
@Test
fun `unknown mode values do not crash and do not filter out entries`() = runTest(dispatcher) {
val localSource = FakeLocalSource(
entries = listOf(
SatItem(25544, "ISS (ZARYA)", false),
SatItem(40967, "TIANGONG", false)
)
)
val settingsRepo = FakeSettingsRepo(selectedModes = listOf("REMOVED_MODE"))
val repository = SelectionRepo(dispatcher, localSource, settingsRepo)
val flow = repository.getEntriesFlow()
repository.setModes(listOf("REMOVED_MODE"))
val items = flow.first()
assertEquals(listOf(25544, 40967), items.map { it.catnum })
assertEquals(listOf("REMOVED_MODE"), repository.getCurrentModes())
}
@Test
fun `selected satellites are shown first`() = runTest(dispatcher) {
val localSource = FakeLocalSource(
entries = listOf(
SatItem(44444, "Zeta", false),
SatItem(25544, "Alpha", false),
SatItem(40967, "Beta", false)
)
)
val settingsRepo = FakeSettingsRepo(selectedModes = emptyList())
val repository = SelectionRepo(dispatcher, localSource, settingsRepo)
val flow = repository.getEntriesFlow()
repository.setSelection(listOf(40967), true)
val items = flow.first()
assertEquals(listOf(40967, 25544, 44444), items.map { it.catnum })
assertEquals(listOf(true, false, false), items.map { it.isSelected })
}
@Test
fun `query without separators matches name with dashes spaces brackets`() = runTest(dispatcher) {
val repository = repoWithSearchEntries()
val flow = repository.getEntriesFlow()
repository.setQuery("ao7")
val items = flow.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 — unreachable before because of dashes/brackets
// — is now found.
assertEquals(7530, items.first().catnum)
assertEquals(listOf(7530, 39444), items.map { it.catnum })
}
@Test
fun `query without separators matches name with only dashes`() = runTest(dispatcher) {
val repository = repoWithSearchEntries()
val flow = repository.getEntriesFlow()
repository.setQuery("fo29")
assertEquals(listOf(99999), flow.first().map { it.catnum })
}
@Test
fun `space-separated tokens all must match in any order`() = runTest(dispatcher) {
val repository = repoWithSearchEntries()
val flow = repository.getEntriesFlow()
repository.setQuery("zarya iss")
assertEquals(listOf(25544), flow.first().map { it.catnum })
}
@Test
fun `partial token query matches substring`() = runTest(dispatcher) {
val repository = repoWithSearchEntries()
val flow = repository.getEntriesFlow()
repository.setQuery("funcube")
assertEquals(listOf(39444), flow.first().map { it.catnum })
}
@Test
fun `unmatched query returns nothing`() = runTest(dispatcher) {
val repository = repoWithSearchEntries()
val flow = repository.getEntriesFlow()
repository.setQuery("zzzznomatch")
assertEquals(emptyList<Int>(), flow.first().map { it.catnum })
}
private fun repoWithSearchEntries(): SelectionRepo {
val localSource = FakeLocalSource(
entries = listOf(
SatItem(25544, "ISS (ZARYA)", false),
SatItem(7530, "AO-7 (AMSAT-OSCAR 7)", false),
SatItem(39444, "AO-73 (FUNcube-1)", false),
SatItem(43803, "JO-97 (BIRDS-3)", false),
SatItem(99999, "FO-29", false)
)
)
return SelectionRepo(dispatcher, localSource, FakeSettingsRepo(selectedModes = emptyList()))
}
private class FakeLocalSource(
private val entries: List<SatItem>
) : ILocalSource {
override suspend fun getEntriesTotal(): Int = entries.size
override suspend fun getEntriesList(): List<SatItem> = entries
override suspend fun getEntriesWithIds(ids: List<Int>): List<OrbitalObject> = emptyList()
override suspend fun getEntriesEpochs(): Map<Int, Double> = emptyMap()
override suspend fun getEntriesNames(): Map<Int, String> = emptyMap()
override suspend fun renameEntries(names: Map<Int, String>) = Unit
override suspend fun deleteEntriesWithIds(ids: List<Int>) = Unit
override suspend fun insertEntries(entries: List<com.rtbishop.look4sat.core.domain.predict.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 deleteRadios() = Unit
override suspend fun deleteManagedRadios() = Unit
}
private class FakeSettingsRepo(
selectedModes: List<String>
) : ISettingsRepo {
override val appVersionName: String = "test"
override val appVersionCode: Long = 1L
override val selectedIds: StateFlow<List<Int>> = MutableStateFlow(emptyList())
override val selectedSatModes: MutableStateFlow<List<String>> = MutableStateFlow(selectedModes)
override val passesSettings: StateFlow<PassesSettings> = MutableStateFlow(
PassesSettings(hoursAhead = 24, minElevation = 0.0)
)
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, false)
)
override val dataSourcesSettings: StateFlow<DataSourcesSettings> = MutableStateFlow(
DataSourcesSettings(emptyList(), emptyList())
)
override val dataSourcesStatus: StateFlow<Map<String, Int>> = MutableStateFlow(emptyMap())
override val radioControlSettings: StateFlow<RadioControlSettings> = MutableStateFlow(
RadioControlSettings(false, RadioControlSettings.MODEL_YAESU_FT817, "", "", "", "", 9600)
)
override fun setSelectedIds(ids: List<Int>) = Unit
override fun setSelectedSatModes(modes: List<String>) {
selectedSatModes.value = modes
}
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 updateDatabaseState(state: DatabaseState) {
databaseState.value = state
}
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
}
}
@@ -0,0 +1,17 @@
package com.rtbishop.look4sat.core.domain.model
/** One public AMSAT satellite status report submission. */
data class AmSatReportSubmission(
val name: String,
val report: String,
val callsign: String,
val gridSquare: String,
val reportedAtUtcMillis: Long
)
/** Result of submitting an AMSAT satellite status report. */
data class AmSatReportSubmitResult(
val success: Boolean,
val message: String = "",
val reportId: String? = null
)
@@ -0,0 +1,23 @@
/*
* Look4Sat. Amateur radio satellite tracker and pass predictor.
* Copyright (C) 2019-2026 Arty Bishop and contributors.
*
* This program is free software: you can redistribute it and/or modify
* it under the terms of the GNU General Public License as published by
* the Free Software Foundation, either version 3 of the License, or
* (at your option) any later version.
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*
* You should have received a copy of the GNU General Public License
* along with this program. If not, see <https://www.gnu.org/licenses/>.
*/
package com.rtbishop.look4sat.core.domain.model
object Constants {
const val FREQ_OFFSET_MIN_HZ = -50_000L
const val FREQ_OFFSET_MAX_HZ = 50_000L
}
@@ -20,17 +20,19 @@ package com.rtbishop.look4sat.core.domain.model
import kotlinx.serialization.SerialName import kotlinx.serialization.SerialName
import kotlinx.serialization.Serializable import kotlinx.serialization.Serializable
/** Only the uuid is mandatory: third party sources rarely publish the full SatNOGS schema, and a
* missing optional field should not cost the whole transceiver. */
@Serializable @Serializable
data class SatRadio( data class SatRadio(
@SerialName("uuid") val uuid: String, @SerialName("uuid") val uuid: String,
@SerialName("description") val info: String, @SerialName("description") val info: String = "",
@SerialName("alive") val isAlive: Boolean, @SerialName("alive") val isAlive: Boolean = true,
@SerialName("downlink_low") val downlinkLow: Long?, @SerialName("downlink_low") val downlinkLow: Long? = null,
@SerialName("downlink_high") val downlinkHigh: Long?, @SerialName("downlink_high") val downlinkHigh: Long? = null,
@SerialName("mode") val downlinkMode: String?, @SerialName("mode") val downlinkMode: String? = null,
@SerialName("uplink_low") val uplinkLow: Long?, @SerialName("uplink_low") val uplinkLow: Long? = null,
@SerialName("uplink_high") val uplinkHigh: Long?, @SerialName("uplink_high") val uplinkHigh: Long? = null,
@SerialName("uplink_mode") val uplinkMode: String?, @SerialName("uplink_mode") val uplinkMode: String? = null,
@SerialName("invert") val isInverted: Boolean, @SerialName("invert") val isInverted: Boolean = false,
@SerialName("norad_cat_id") val catnum: Int? @SerialName("norad_cat_id") val catnum: Int? = null
) )
@@ -0,0 +1,37 @@
package com.rtbishop.look4sat.core.domain.model
/** One satellite status report (AMSAT site tooltip data) */
data class SatReport(
val id: String, // 报告 ID(a885153)
val statusText: String, // Heard / Telemetry Only / Not Heard ...
val call: String, // 呼号
val grid: String, // 网格坐标(可为空)
val dateUtc: String, // 2026-08-04
val timeUtc: String // 2:46-:59 UTC
)
/** State of one 2-hour slot */
data class SatSlot(
val statusColor: Long, // ARGB 状态色(-1 = 无报告)
val count: Int, // 报告数量(0 = 无)
val reportIds: List<String> = emptyList() // 该槽报告 ID 列表
)
/** 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)
)
/** One satellite, 5 days of state */
data class SatStatus(
val name: String, // "AO-123_[FM]"
val days: List<SatDay> // 5 天(新→旧)
)
/** Overall page parse result */
data class SatStatusPage(
val fetchedAtUtcMs: Long,
val statuses: List<SatStatus>,
val reports: Map<String, SatReport> // id → 报告
)
@@ -27,7 +27,9 @@ data class PassesSettings(
val showDeepSpace: Boolean = true, val showDeepSpace: Boolean = true,
val hoursAhead: Int, val hoursAhead: Int,
val minElevation: Double, val minElevation: Double,
val selectedModes: List<String> val aosStartMinute: Int = 0,
val aosEndMinute: Int = 23 * 60 + 59,
val invertAosTimeWindow: Boolean = false
) )
data class RCSettings( data class RCSettings(
@@ -39,6 +41,7 @@ data class RCSettings(
val frequencyAddress: String, val frequencyAddress: String,
val frequencyPort: String, val frequencyPort: String,
val frequencyFormat: String, val frequencyFormat: String,
val frequencyOffsetHz: Long = 0L,
val bluetoothRotatorState: Boolean, val bluetoothRotatorState: Boolean,
val bluetoothRotatorFormat: String, val bluetoothRotatorFormat: String,
val bluetoothRotatorName: String, val bluetoothRotatorName: String,
@@ -57,15 +60,28 @@ data class OtherSettings(
val stateOfNightMode: Boolean = false, val stateOfNightMode: Boolean = false,
val shouldSeeWarning: Boolean, val shouldSeeWarning: Boolean,
val shouldSeeWhatsNew: Boolean, val shouldSeeWhatsNew: Boolean,
val sstvMode: String = "Auto" val sstvMode: String = "Auto",
val lowElevation: Double = 15.0,
val highElevation: Double = 45.0,
val radarCompassOffset: Float = 0f,
val radarCompassOffsetElev: Float = 0f
) )
/**
* Data source URLs (TLE / transceivers) and their per-source enabled flags.
* [satelliteEnabled] and [transceiversEnabled] must be positionally aligned with the
* corresponding URL list: the flag at index [i] applies to the URL at index [i].
* Missing flags are treated as enabled (see [isSatelliteEnabled]/[isTransceiverEnabled]).
*/
data class DataSourcesSettings( data class DataSourcesSettings(
val useCustomTLE: Boolean, val satelliteUrls: List<String>,
val useCustomTransceivers: Boolean, val transceiversUrls: List<String>,
val tleUrl: String, val satelliteEnabled: List<Boolean> = emptyList(),
val transceiversUrl: String val transceiversEnabled: List<Boolean> = emptyList()
) ) {
fun isSatelliteEnabled(index: Int): Boolean = satelliteEnabled.getOrElse(index) { true }
fun isTransceiverEnabled(index: Int): Boolean = transceiversEnabled.getOrElse(index) { true }
}
data class RadioControlSettings( data class RadioControlSettings(
val enabled: Boolean, val enabled: Boolean,
@@ -74,12 +90,20 @@ data class RadioControlSettings(
val rxRadioAddress: String, val rxRadioAddress: String,
val txRadioName: String, val txRadioName: String,
val rxRadioName: String, val rxRadioName: String,
val baudRate: Int val baudRate: Int,
/** IC-705 only: use single-radio split-VFO mode instead of two radios. */
val splitMode: Boolean = false
) { ) {
companion object { companion object {
val SUPPORTED_RADIOS = listOf( const val MODEL_YAESU_FT817 = "Yaesu FT-817/818"
"Yaesu FT-817/818", const val MODEL_YAESU_FT857 = "Yaesu FT-857/897"
"Yaesu FT-857/897" const val MODEL_ICOM_IC705 = "Icom IC-705"
)
val SUPPORTED_RADIOS = listOf(MODEL_YAESU_FT817, MODEL_YAESU_FT857, MODEL_ICOM_IC705)
/** Baud rates available for Yaesu radios. */
val BAUD_RATES_YAESU = listOf(4800, 9600, 38400)
/** Baud rates available for Icom IC-705 (higher speeds supported via CI-V USB/BT). */
val BAUD_RATES_ICOM = listOf(4800, 9600, 19200, 38400, 57600, 115200)
} }
} }
@@ -424,8 +424,12 @@ object CelestialComputer {
} }
if (sunrise == 0.0) sunrise = daynum if (sunrise == 0.0) sunrise = daynum
// Phase 4: fast-forward through the day until sun drops back below threshold // Phase 4: fast-forward through the day until sun drops back below threshold.
daynum = sunrise // Start from just after sunrise (small offset) so the sun is clearly above
// the threshold. This prevents a bug where Phase 3 converges to a point
// slightly below -threshold, causing Phase 4 to skip and Phase 5 to converge
// to the same time as sunrise, producing identical sunrise/sunset times.
daynum = sunrise + 0.001
sunPos = getSunPosition(observer, daynumToMillis(daynum)) sunPos = getSunPosition(observer, daynumToMillis(daynum))
guard = 0 guard = 0
while (sunPos.elevation > -threshold && guard++ < 500) { while (sunPos.elevation > -threshold && guard++ < 500) {
@@ -37,30 +37,42 @@ data class OrbitalData(
val xno: Double = meanmo * TWO_PI / MIN_PER_DAY val xno: Double = meanmo * TWO_PI / MIN_PER_DAY
val orbitalPeriod: Double = MIN_PER_DAY / meanmo val orbitalPeriod: Double = MIN_PER_DAY / meanmo
val isDeepSpace: Boolean = orbitalPeriod >= 225.0 // NearEarth (period < 225 min) or DeepSpace (period >= 225 min) val isDeepSpace: Boolean = orbitalPeriod >= 225.0 // NearEarth (period < 225 min) or DeepSpace (period >= 225 min)
/** Absolute age of this element set, used to pick the freshest data among several sources. */
val epochDaynum: Double = epochToDaynum(epoch)
fun getObject(): OrbitalObject = if (isDeepSpace) DeepSpaceObject(this) else NearEarthObject(this) fun getObject(): OrbitalObject = if (isDeepSpace) DeepSpaceObject(this) else NearEarthObject(this)
/** Check if satellite has likely decayed by the given time. */ /** Check if satellite has likely decayed by the given time. */
fun hasDecayed(currentTimeMillis: Long): Boolean { fun hasDecayed(currentTimeMillis: Long): Boolean {
if (ndot == 0.0) return false if (ndot == 0.0) return false
val currentDaynum = (currentTimeMillis - 315446400000L) / 86400000.0 return CelestialComputer.hasDecayed(meanmo, ndot, epochDaynum, timeToDaynum(currentTimeMillis))
val epochDaynum = epochToDaynum(epoch)
return CelestialComputer.hasDecayed(meanmo, ndot, epochDaynum, currentDaynum)
} }
private fun epochToDaynum(epoch: Double): Double { companion object {
var year = kotlin.math.floor(epoch * 1E-3) /** Days since 31 Dec 1979, the reference point every daynum in the app is based on. */
val day = (epoch * 1E-3 - year) * 1000.0 fun timeToDaynum(timeMillis: Long): Double = (timeMillis - 315446400000L) / 86400000.0
year = if (year < 57) year + 2000 else year + 1900
// daynum = days since 31 Dec 1979, Julian date of 31Dec79 = 2444238.5
val jan1Jd = julianDateOfYear(year)
return jan1Jd + day - 2444238.5
}
private fun julianDateOfYear(theYear: Double): Double { /**
val aYear = theYear - 1 * Days since 31 Dec 1979 for a TLE style YYDDD.ffffffff epoch. Raw epochs are not
val a = kotlin.math.floor(aYear / 100).toLong() * comparable across decades (a 1999 epoch reads as 99xxx, a 2026 one as 26xxx), so
val b = 2 - a + a / 4 * freshness checks must always go through this conversion.
val i = kotlin.math.floor(365.25 * aYear).toLong() */
return i + (30.6001 * 14).toLong() + 1720994.5 + b fun epochToDaynum(epoch: Double): Double {
var year = kotlin.math.floor(epoch * 1E-3)
val day = (epoch * 1E-3 - year) * 1000.0
year = if (year < 57) year + 2000 else year + 1900
// daynum = days since 31 Dec 1979, Julian date of 31Dec79 = 2444238.5
val jan1Jd = julianDateOfYear(year)
return jan1Jd + day - 2444238.5
}
private fun julianDateOfYear(theYear: Double): Double {
val aYear = theYear - 1
val a = kotlin.math.floor(aYear / 100).toLong()
val b = 2 - a + a / 4
val i = kotlin.math.floor(365.25 * aYear).toLong()
return i + (30.6001 * 14).toLong() + 1720994.5 + b
}
} }
} }
@@ -0,0 +1,14 @@
package com.rtbishop.look4sat.core.domain.repository
import com.rtbishop.look4sat.core.domain.model.AmSatReportSubmission
import com.rtbishop.look4sat.core.domain.model.AmSatReportSubmitResult
import com.rtbishop.look4sat.core.domain.model.SatStatusPage
/** AMSAT satellite status data source */
interface IAmSatRepository {
/** Fetch and parse the AMSAT status page; null on failure */
suspend fun fetchStatus(): SatStatusPage?
/** Submit a public AMSAT satellite status report. */
suspend fun submitReport(submission: AmSatReportSubmission): AmSatReportSubmitResult
}
@@ -18,8 +18,8 @@
package com.rtbishop.look4sat.core.domain.repository package com.rtbishop.look4sat.core.domain.repository
interface IDatabaseRepo { interface IDatabaseRepo {
suspend fun updateTLEFromFile(uri: String) suspend fun updateTLEFromFile(uri: String): Int
suspend fun updateTransceiversFromFile(uri: String) suspend fun updateTransceiversFromFile(uri: String): Int
suspend fun updateFromRemote() suspend fun updateFromRemote()
suspend fun clearAllData() suspend fun clearAllData()
} }
@@ -29,6 +29,7 @@ interface IMainContainer {
val selectionRepo: ISelectionRepo val selectionRepo: ISelectionRepo
val satelliteRepo: ISatelliteRepo val satelliteRepo: ISatelliteRepo
val databaseRepo: IDatabaseRepo val databaseRepo: IDatabaseRepo
val amSatRepo: IAmSatRepository
val radioTrackingService: IRadioTrackingService val radioTrackingService: IRadioTrackingService
fun provideAddToCalendar(): IAddToCalendar fun provideAddToCalendar(): IAddToCalendar
fun provideShowToast(): IShowToast fun provideShowToast(): IShowToast
@@ -39,6 +40,7 @@ interface IMainContainer {
fun provideRxRadioController(): IRadioController fun provideRxRadioController(): IRadioController
fun provideAudioCapture(): IAudioCapture fun provideAudioCapture(): IAudioCapture
fun provideSaveImage(): ISaveImage fun provideSaveImage(): ISaveImage
fun providePairedBluetoothDevices(): List<Pair<String, String>>
} }
interface IContainerProvider { interface IContainerProvider {
@@ -38,4 +38,51 @@ interface IRadioController {
suspend fun pttOn(): Boolean suspend fun pttOn(): Boolean
suspend fun pttOff(): Boolean suspend fun pttOff(): Boolean
// ── Extended operations (IC-705 / CI-V) ──────────────────────────────
/**
* Select the band matching [frequencyHz] via the band stacking register.
* Must be called before [setFrequency] and [setMode] when first tracking.
* Default: no-op (Yaesu radios auto-switch band via frequency).
*/
suspend fun setBand(frequencyHz: Long): Boolean = false
/**
* Select the active VFO.
* @param vfoA true → VFO-A (main/RX), false → VFO-B (sub/TX in split).
*/
suspend fun setVfo(vfoA: Boolean): Boolean = false
/**
* Enable or disable SPLIT mode (TX on sub-VFO, RX on main VFO).
* Default: not supported.
*/
suspend fun setSplitMode(enabled: Boolean): Boolean = false
/**
* Set the frequency of the currently active VFO (IC-705: CMD 0x25 sub 0x00).
* Default: delegates to [setFrequency].
*/
suspend fun setWorkingFrequency(frequencyHz: Long): Boolean = setFrequency(frequencyHz)
/**
* Set the frequency of the inactive/TX VFO (IC-705: CMD 0x25 sub 0x01).
* Sent every tracking cycle alongside [setWorkingFrequency] in split mode.
* Default: delegates to [setWorkingFrequency].
*/
suspend fun setTxVfoFrequency(frequencyHz: Long): Boolean = setWorkingFrequency(frequencyHz)
/**
* Read the frequency of the currently active VFO (IC-705: CMD 0x25 sub 0x00).
* Default: delegates to [readFrequencyAndMode].
*/
suspend fun readWorkingFrequency(): Long? = readFrequencyAndMode()?.first
/**
* Read the frequency of the inactive/TX VFO (IC-705: CMD 0x25 sub 0x01).
* Used for tuning detection in split mode.
* Default: delegates to [readWorkingFrequency].
*/
suspend fun readTxVfoFrequency(): Long? = readWorkingFrequency()
} }
@@ -44,7 +44,15 @@ interface ISatelliteRepo {
suspend fun initRepository() suspend fun initRepository()
/** Recalculate passes with the given filter parameters. */ /** Recalculate passes with the given filter parameters. */
suspend fun calculatePasses(time: Long, hoursAhead: Int, minElevation: Double, modes: List<String>) suspend fun calculatePasses(
time: Long,
hoursAhead: Int,
minElevation: Double,
aosStartMinute: Int,
aosEndMinute: Int,
invertAosTimeWindow: Boolean,
modes: List<String>
)
/** Get the current position of a single satellite. */ /** Get the current position of a single satellite. */
suspend fun getPosition(sat: OrbitalObject, pos: GeoPos, time: Long): OrbitalPos suspend fun getPosition(sat: OrbitalObject, pos: GeoPos, time: Long): OrbitalPos
@@ -21,10 +21,10 @@ import com.rtbishop.look4sat.core.domain.model.SatItem
import kotlinx.coroutines.flow.Flow import kotlinx.coroutines.flow.Flow
interface ISelectionRepo { interface ISelectionRepo {
fun getCurrentTypes(): List<String> fun getCurrentModes(): List<String>
fun getTypesList(): List<String> fun getModesList(): List<String>
suspend fun getEntriesFlow(): Flow<List<SatItem>> suspend fun getEntriesFlow(): Flow<List<SatItem>>
suspend fun setTypes(types: List<String>) suspend fun setModes(modes: List<String>)
suspend fun setQuery(query: String) suspend fun setQuery(query: String)
suspend fun setSelection(selectAll: Boolean) suspend fun setSelection(selectAll: Boolean)
suspend fun setSelection(ids: List<Int>, isTicked: Boolean) suspend fun setSelection(ids: List<Int>, isTicked: Boolean)
@@ -29,12 +29,13 @@ import kotlinx.coroutines.flow.StateFlow
interface ISettingsRepo { interface ISettingsRepo {
val appVersionName: String val appVersionName: String
val appVersionCode: Long
//region # Satellites selection settings //region # Satellites selection settings
val selectedIds: StateFlow<List<Int>> val selectedIds: StateFlow<List<Int>>
val selectedTypes: StateFlow<List<String>> val selectedSatModes: StateFlow<List<String>>
fun setSelectedIds(ids: List<Int>) fun setSelectedIds(ids: List<Int>)
fun setSelectedTypes(types: List<String>) fun setSelectedSatModes(modes: List<String>)
//endregion //endregion
//region # Passes filter settings //region # Passes filter settings
@@ -51,8 +52,6 @@ interface ISettingsRepo {
//region # Database update settings //region # Database update settings
val databaseState: StateFlow<DatabaseState> val databaseState: StateFlow<DatabaseState>
fun getSatelliteTypesIds(types: List<String>): List<Int>
fun setSatelliteTypeIds(type: String, ids: List<Int>)
fun updateDatabaseState(state: DatabaseState) fun updateDatabaseState(state: DatabaseState)
//endregion //endregion
@@ -73,8 +72,23 @@ interface ISettingsRepo {
fun updateDataSourcesSettings(settings: DataSourcesSettings) fun updateDataSourcesSettings(settings: DataSourcesSettings)
//endregion //endregion
//region # Data sources status
val dataSourcesStatus: StateFlow<Map<String, Int>>
fun updateDataSourcesStatus(status: Map<String, Int>)
//endregion
//region # Radio control settings //region # Radio control settings
val radioControlSettings: StateFlow<RadioControlSettings> val radioControlSettings: StateFlow<RadioControlSettings>
fun updateRadioControlSettings(settings: RadioControlSettings) fun updateRadioControlSettings(settings: RadioControlSettings)
//endregion //endregion
//region # Per-satellite calculator offset settings
fun getSatelliteOffset(catnum: Int): String
fun setSatelliteOffset(catnum: Int, offset: String)
//endregion
//region # AMSAT status report settings
fun getAmSatCallsign(): String
fun setAmSatCallsign(callsign: String)
//endregion
} }
@@ -26,11 +26,18 @@ interface ILocalSource {
suspend fun getEntriesTotal(): Int suspend fun getEntriesTotal(): Int
suspend fun getEntriesList(): List<SatItem> suspend fun getEntriesList(): List<SatItem>
suspend fun getEntriesWithIds(ids: List<Int>): List<OrbitalObject> suspend fun getEntriesWithIds(ids: List<Int>): List<OrbitalObject>
suspend fun getEntriesEpochs(): Map<Int, Double>
suspend fun getEntriesNames(): Map<Int, String>
suspend fun renameEntries(names: Map<Int, String>)
suspend fun deleteEntriesWithIds(ids: List<Int>)
suspend fun insertEntries(entries: List<OrbitalData>) suspend fun insertEntries(entries: List<OrbitalData>)
suspend fun deleteEntries() suspend fun deleteEntries()
suspend fun getIdsWithModes(modes: List<String>): List<Int> suspend fun getIdsWithModes(modes: List<String>): List<Int>
suspend fun getRadiosTotal(): Int suspend fun getRadiosTotal(): Int
suspend fun getRadiosWithId(id: Int): List<SatRadio> suspend fun getRadiosWithId(id: Int): List<SatRadio>
suspend fun insertRadios(radios: List<SatRadio>) suspend fun insertRadios(radios: List<SatRadio>, isCustom: Boolean)
suspend fun deleteRadios() suspend fun deleteRadios()
/** Drops the transceivers provided by the remote sources, keeping the imported ones. */
suspend fun deleteManagedRadios()
} }
@@ -19,7 +19,18 @@ package com.rtbishop.look4sat.core.domain.source
import java.io.InputStream import java.io.InputStream
/** Result of a network download: the HTTP status code and the response body stream. */
data class NetworkResult(val code: Int, val stream: InputStream?) {
companion object {
/** Code used when a request fails before any HTTP response is received. */
const val CONNECTION_ERROR = -1
}
}
interface IRemoteSource { interface IRemoteSource {
suspend fun getFileStream(uri: String): InputStream? suspend fun getFileStream(uri: String): InputStream?
suspend fun getNetworkStream(url: String): InputStream? suspend fun getNetworkStream(url: String): NetworkResult
suspend fun getAmSatCatalog(): String?
suspend fun getAmSatReports(hours: Int, limit: Int): String?
suspend fun submitAmSatReport(payloadJson: String): Pair<Int, String>?
} }
@@ -18,37 +18,27 @@
package com.rtbishop.look4sat.core.domain.source package com.rtbishop.look4sat.core.domain.source
object Sources { object Sources {
val satelliteDataUrls = mapOf( // Ordered from the most specific to the most generic source: the first source that knows a
"All" to "https://celestrak.org/NORAD/elements/gp.php?GROUP=active&FORMAT=csv", // satellite gets to name it, with the full catalog acting as the fallback.
"Amateur" to "https://celestrak.org/NORAD/elements/gp.php?GROUP=amateur&FORMAT=csv", val satelliteDataUrls = listOf(
"Brightest" to "https://celestrak.org/NORAD/elements/gp.php?GROUP=visual&FORMAT=csv", "live.ariss.org/iss.txt",
"Cubesat" to "https://celestrak.org/NORAD/elements/gp.php?GROUP=cubesat&FORMAT=csv", "r4uab.ru/satonline.txt",
"Education" to "https://celestrak.org/NORAD/elements/gp.php?GROUP=education&FORMAT=csv", "mmccants.org/tles/classfd.zip",
"Engineer" to "https://celestrak.org/NORAD/elements/gp.php?GROUP=engineering&FORMAT=csv", "amsat.org/tle/current/nasabare.txt",
"Geostationary" to "https://celestrak.org/NORAD/elements/gp.php?GROUP=geo&FORMAT=csv", "celestrak.org/NORAD/elements/gp.php?GROUP=active&FORMAT=csv",
"Globalstar" to "https://celestrak.org/NORAD/elements/gp.php?GROUP=globalstar&FORMAT=csv", "db.satnogs.org/api/tle/?format=3le"
"GNSS" to "https://celestrak.org/NORAD/elements/gp.php?GROUP=gnss&FORMAT=csv",
"Intelsat" to "https://celestrak.org/NORAD/elements/gp.php?GROUP=intelsat&FORMAT=csv",
"Iridium" to "https://celestrak.org/NORAD/elements/gp.php?GROUP=iridium-NEXT&FORMAT=csv",
"Military" to "https://celestrak.org/NORAD/elements/gp.php?GROUP=military&FORMAT=csv",
"New" to "https://celestrak.org/NORAD/elements/gp.php?GROUP=last-30-days&FORMAT=csv",
"OneWeb" to "https://celestrak.org/NORAD/elements/gp.php?GROUP=oneweb&FORMAT=csv",
"Orbcomm" to "https://celestrak.org/NORAD/elements/gp.php?GROUP=orbcomm&FORMAT=csv",
"Resource" to "https://celestrak.org/NORAD/elements/gp.php?GROUP=resource&FORMAT=csv",
"SatNOGS" to "https://celestrak.org/NORAD/elements/gp.php?GROUP=satnogs&FORMAT=csv",
"Science" to "https://celestrak.org/NORAD/elements/gp.php?GROUP=science&FORMAT=csv",
"Spire" to "https://celestrak.org/NORAD/elements/gp.php?GROUP=spire&FORMAT=csv",
"Starlink" to "https://celestrak.org/NORAD/elements/gp.php?GROUP=starlink&FORMAT=csv",
"Swarm" to "https://celestrak.org/NORAD/elements/gp.php?GROUP=swarm&FORMAT=csv",
"Weather" to "https://celestrak.org/NORAD/elements/gp.php?GROUP=weather&FORMAT=csv",
"X-Comm" to "https://celestrak.org/NORAD/elements/gp.php?GROUP=x-comm&FORMAT=csv",
"Amsat" to "https://amsat.org/tle/current/nasabare.txt",
"Classified" to "https://www.mmccants.org/tles/classfd.zip",
"McCants" to "https://www.mmccants.org/tles/inttles.zip",
"R4UAB" to "https://r4uab.ru/satonline.txt",
"Other" to "" // key for sats filter
) )
val transceiversDataUrls = mapOf( val transceiversDataUrls = listOf(
"SatNOGS" to "https://db.satnogs.org/api/transmitters/?format=json&status=active" "r4uab.ru/transmitters.json",
"db.satnogs.org/api/transmitters/?format=json&status=active"
)
val satelliteModes = listOf(
"4FSK", "64-QAM", "AFSK", "AFSK TUBiX10", "AHRPT", "AM", "APT", "ASK", "BPSK",
"BPSK PMT-A3", "CERTO", "CW", "DATV", "DBPSK", "DOKA", "DPSK", "DQPSK", "DSB", "DSTAR",
"DUV", "DVB-S2", "FFSK", "FM", "FMN", "FSK", "FSK AX.100 Mode 5", "FSK AX.100 Mode 6",
"FSK AX.25 G3RUH", "FT8", "GENESIS FSK", "GFSK", "GFSK Pkst", "GFSK Rktr", "GFSK/BPSK",
"GMSK", "GMSK USP", "HRPT", "LoRa", "LRPT", "LSB", "MFSK", "MSK", "MSK AX.100 Mode 5",
"MSK AX.100 Mode 6", "OFDM", "OQPSK", "PPM", "PSK", "PSK31", "PSK63", "QPSK", "QPSK31",
"QPSK63", "SIDLOC", "SQPSK", "SSDV", "SSTV", "UNKNOWN", "USB", "WSJT"
) )
} }
@@ -20,39 +20,94 @@ package com.rtbishop.look4sat.core.domain.sstv
import kotlinx.coroutines.Dispatchers import kotlinx.coroutines.Dispatchers
import kotlinx.coroutines.channels.BufferOverflow import kotlinx.coroutines.channels.BufferOverflow
import kotlinx.coroutines.flow.MutableSharedFlow import kotlinx.coroutines.flow.MutableSharedFlow
import kotlinx.coroutines.flow.MutableStateFlow
import kotlinx.coroutines.flow.SharedFlow import kotlinx.coroutines.flow.SharedFlow
import kotlinx.coroutines.flow.StateFlow
import kotlinx.coroutines.withContext import kotlinx.coroutines.withContext
import kotlin.math.PI
import kotlin.math.abs import kotlin.math.abs
import kotlin.math.round import kotlin.math.round
import kotlin.math.sqrt import kotlin.math.sqrt
class SstvFrame( class SstvFrame(
val scopePixels: IntArray?,
val scopeWidth: Int,
val scopeHeight: Int,
val imagePixels: IntArray?, val imagePixels: IntArray?,
val imageWidth: Int, val imageWidth: Int,
val imageHeight: Int, val imageHeight: Int,
val modeName: String val modeName: String,
val imageComplete: Boolean,
val inputRms: Float,
val appliedGain: Float,
val syncHitRate: Float,
val predictedLineBursts: Int,
val maxPredictedStreak: Int,
val timingErrorSamples: Int
)
/**
* Decoder quality metrics for diagnostics and logging. Useful for profiling decode
* performance on noisy recordings.
*/
data class SstvQualityMetrics(
val syncHitRate: Float,
val predictedLineBursts: Int,
val maxPredictedStreak: Int,
val timingErrorSamples: Int
)
enum class LineRecoveryStrategy {
Look4SatLimited,
Robot36Compatible
}
class SstvDiagnosticsHandle internal constructor(
val enabled: Boolean,
val metrics: StateFlow<SstvQualityMetrics?>
) )
class SstvDecoder( class SstvDecoder(
sampleRate: Int = 44100, sampleRate: Int = 44100,
scopeWidth: Int = 320, scopeWidth: Int = 320,
scopeHeight: Int = 256, scopeHeight: Int = 256,
private val channelSelect: Int = 0 private val channelSelect: Int = 0,
targetRmsLevel: Float = 0.25f,
private val includeScopeData: Boolean = false,
private val enableRmsNormalization: Boolean = true,
preFilterCutoffHz: Double = 500.0,
enablePreFilter: Boolean = true,
private val enableDiagnosticsHandle: Boolean = false,
lineRecoveryStrategy: LineRecoveryStrategy = LineRecoveryStrategy.Look4SatLimited
) { ) {
private val scopeBuffer = PixelBuffer(scopeWidth, scopeHeight * 2) private val scopeBuffer = PixelBuffer(scopeWidth, scopeHeight * 2)
private val imageBuffer = PixelBuffer(scopeWidth, scopeHeight) private val imageBuffer = PixelBuffer(scopeWidth, scopeHeight)
private val decoder = DecoderEngine(scopeBuffer, imageBuffer, "Raw", sampleRate) private val decoder = DecoderEngine(scopeBuffer, imageBuffer, "Raw", sampleRate, lineRecoveryStrategy)
private val _frames = MutableSharedFlow<SstvFrame>( private val _frames = MutableSharedFlow<SstvFrame>(
replay = 1, replay = 1,
onBufferOverflow = BufferOverflow.DROP_OLDEST onBufferOverflow = BufferOverflow.DROP_OLDEST
) )
private var lastInputRms = 0f
private var lastAppliedGain = 1f
private val _qualityMetrics = MutableStateFlow<SstvQualityMetrics?>(null)
private val preFilter = if (enablePreFilter) HighPassFilter(preFilterCutoffHz, sampleRate.toDouble()) else null
private val diagnosticsHandle = SstvDiagnosticsHandle(enableDiagnosticsHandle, _qualityMetrics)
val frames: SharedFlow<SstvFrame> = _frames val frames: SharedFlow<SstvFrame> = _frames
val supportedModes: List<String> = decoder.allModes.map { it.name } val supportedModes: List<String> = decoder.allModes.map { it.name }
suspend fun feedSamples(samples: FloatArray) = withContext(Dispatchers.Default) { suspend fun feedSamples(samples: FloatArray) = withContext(Dispatchers.Default) {
// Normalize to a fixed RMS before processing so that both direct audio // Optional pre-filtering: remove DC offset and subsonic noise that can mask
// coupling and air-coupled microphone input decode with equal reliability. // weak signals and corrupt the RMS normalization baseline.
normalise(samples) preFilter?.apply(samples)
// Optional RMS normalization: bring input to a consistent level so the
// FM demodulator operates in a predictable region. However, this amplifies
// noise proportionally. Aggressive RMS targets (e.g., 0.25) can hurt weak
// signals by boosting noise floor. Safer defaults: 0.35-0.50 for noisy inputs.
// Disable entirely for direct line-level inputs (e.g., receiver discriminator).
val gain = if (enableRmsNormalization) normalise(samples) else GainInfo(0f, 1f)
lastInputRms = gain.inputRms
lastAppliedGain = gain.appliedGain
val hasNewLines = decoder.process(samples, channelSelect) val hasNewLines = decoder.process(samples, channelSelect)
if (hasNewLines) emitFrame() if (hasNewLines) emitFrame()
} }
@@ -62,36 +117,134 @@ class SstvDecoder(
fun clearPixels() { fun clearPixels() {
imageBuffer.line = -1 imageBuffer.line = -1
imageBuffer.pixels.fill(0) imageBuffer.pixels.fill(0)
decoder.resetQuality()
if (enableDiagnosticsHandle) _qualityMetrics.value = null
}
fun getDiagnosticsHandle(): SstvDiagnosticsHandle? = diagnosticsHandle.takeIf { it.enabled }
/**
* Export quality metrics for logging/diagnostics. Useful for profiling decode
* performance on noisy recordings. Returns null before first frame is emitted.
*/
@Suppress("unused")
fun getQualityMetrics(): SstvQualityMetrics? {
if (enableDiagnosticsHandle) return _qualityMetrics.value
val q = decoder.quality()
return SstvQualityMetrics(
syncHitRate = q.syncHitRate,
predictedLineBursts = q.predictedLineBursts,
maxPredictedStreak = q.maxPredictedStreak,
timingErrorSamples = q.timingErrorSamples
)
} }
private fun emitFrame() { private fun emitFrame() {
val imageWidth = imageBuffer.width val imageWidth = imageBuffer.width
val imageHeight = imageBuffer.height val imageHeight = imageBuffer.height
val quality = decoder.quality()
if (enableDiagnosticsHandle) {
_qualityMetrics.value = SstvQualityMetrics(
syncHitRate = quality.syncHitRate,
predictedLineBursts = quality.predictedLineBursts,
maxPredictedStreak = quality.maxPredictedStreak,
timingErrorSamples = quality.timingErrorSamples
)
}
val imageComplete = imageBuffer.line >= imageHeight && imageBuffer.line > 0
// Copy only the active image region — imageBuffer.pixels is pre-allocated // Copy only the active image region — imageBuffer.pixels is pre-allocated
// at the maximum possible size (PD-290: 800×616), so we must not copyOf() // at the maximum possible size (PD-290: 800×616), so we must not copyOf()
// the entire array and send padding pixels to the observer. // the entire array and send padding pixels to the observer.
val imagePixels = if (imageBuffer.line > 0) imageBuffer.pixels.copyOf(imageWidth * imageHeight) else null val imagePixels = if (imageBuffer.line > 0) imageBuffer.pixels.copyOf(imageWidth * imageHeight) else null
val modeName = decoder.currentMode.name val modeName = decoder.currentMode.name
_frames.tryEmit(SstvFrame(imagePixels, imageWidth, imageHeight, modeName)) val scopePixels = if (includeScopeData) scopeBuffer.pixels.copyOf() else null
val scopeWidth = if (includeScopeData) scopeBuffer.width else 0
val scopeHeight = if (includeScopeData) scopeBuffer.height else 0
_frames.tryEmit(
SstvFrame(
scopePixels = scopePixels,
scopeWidth = scopeWidth,
scopeHeight = scopeHeight,
imagePixels = imagePixels,
imageWidth = imageWidth,
imageHeight = imageHeight,
modeName = modeName,
imageComplete = imageComplete,
inputRms = lastInputRms,
appliedGain = lastAppliedGain,
syncHitRate = quality.syncHitRate,
predictedLineBursts = quality.predictedLineBursts,
maxPredictedStreak = quality.maxPredictedStreak,
timingErrorSamples = quality.timingErrorSamples
)
)
} }
// Target RMS level for the normalizer. 0.25 leaves headroom while keeping the // Target RMS level for the normalizer. 0.25 leaves headroom while keeping the
// FM demodulator well above its noise floor regardless of input gain. // FM demodulator well above its noise floor regardless of input gain.
private val targetRms = 0.25f // TUNING GUIDE:
// - 0.20-0.25: Aggressive, best for clean direct-coupled inputs, worst for mic noise
// - 0.35-0.40: Moderate, good balance for typical phone/mic inputs (RECOMMENDED)
// - 0.50-0.60: Conservative, best for noisy environments, reduces amplitude resolution
// Disable RMS normalization entirely if using a professional receiver discriminator output.
private val targetRms = targetRmsLevel.coerceIn(0.05f, 0.8f)
private class GainInfo(
val inputRms: Float,
val appliedGain: Float
)
// Bring the buffer to a fixed RMS so that microphone and direct-coupled inputs // Bring the buffer to a fixed RMS so that microphone and direct-coupled inputs
// both decode reliably. The guard prevents amplifying pure silence into noise. // both decode reliably. The guard prevents amplifying pure silence into noise.
private fun normalise(buffer: FloatArray) { private fun normalise(buffer: FloatArray): GainInfo {
var sumSq = 0f var sumSq = 0f
for (s in buffer) sumSq += s * s for (s in buffer) sumSq += s * s
val rms = sqrt(sumSq / buffer.size) val rms = sqrt(sumSq / buffer.size)
if (rms > 1e-6f) { if (rms > 1e-6f) {
val gain = targetRms / rms val gain = targetRms / rms
for (i in buffer.indices) buffer[i] *= gain for (i in buffer.indices) buffer[i] *= gain
return GainInfo(rms, gain)
}
return GainInfo(rms, 1f)
}
}
/**
* Simple high-pass filter to remove DC offset and subsonic interference before RMS
* normalization. Improves noise floor estimation and prevents low-freq noise from
* corrupting the gain calculation.
*
* Design: First-order butterworth (pole at cutoff frequency). Fast, minimal latency,
* suitable for real-time preprocessing.
*/
internal class HighPassFilter(cutoffHz: Double, sampleRateHz: Double) {
private val alpha: Float
private var prevInput = 0f
private var prevOutput = 0f
init {
// First-order pole placement: alpha = wc / (wc + ws) where wc = 2*pi*fc, ws = 2*pi*fs
val omega = 2f * PI.toFloat() * (cutoffHz / sampleRateHz).toFloat()
alpha = omega / (omega + 1f)
}
fun apply(buffer: FloatArray) {
for (i in buffer.indices) {
val input = buffer[i]
prevOutput = alpha * (prevOutput + input - prevInput)
buffer[i] = prevOutput
prevInput = input
} }
} }
} }
internal class DecoderQuality(
val syncHitRate: Float,
val predictedLineBursts: Int,
val maxPredictedStreak: Int,
val timingErrorSamples: Int
)
internal enum class SyncPulseWidth { FiveMs, NineMs, TwentyMs } internal enum class SyncPulseWidth { FiveMs, NineMs, TwentyMs }
internal class SyncPulseDetector(sampleRate: Int) { internal class SyncPulseDetector(sampleRate: Int) {
@@ -197,7 +350,8 @@ internal class DecoderEngine(
private val scopeBuffer: PixelBuffer, private val scopeBuffer: PixelBuffer,
private val imageBuffer: PixelBuffer, private val imageBuffer: PixelBuffer,
rawName: String, rawName: String,
sampleRate: Int sampleRate: Int,
lineRecoveryStrategy: LineRecoveryStrategy
) { ) {
private val pixelBuffer = PixelBuffer(800, 2) private val pixelBuffer = PixelBuffer(800, 2)
private val detector = SyncPulseDetector(sampleRate) private val detector = SyncPulseDetector(sampleRate)
@@ -237,6 +391,19 @@ internal class DecoderEngine(
private var lastSync = 0 private var lastSync = 0
private var curLineSamples: Int private var curLineSamples: Int
private var lastOffset = 0f private var lastOffset = 0f
private var syncChecks = 0
private var syncHits = 0
private var predictedLineBursts = 0
private var predictedStreak = 0
private var maxPredictedStreak = 0
private var timingErrorSamples = 0
// Look4Sat strategy limits synthetic lines to avoid visible vertical collapse.
// Robot36 strategy preserves legacy behavior by allowing unlimited synthesis.
private val maxConsecutivePredictedLines = when (lineRecoveryStrategy) {
LineRecoveryStrategy.Look4SatLimited -> 2
LineRecoveryStrategy.Robot36Compatible -> Int.MAX_VALUE
}
init { init {
imageBuffer.line = -1 imageBuffer.line = -1
@@ -286,6 +453,11 @@ internal class DecoderEngine(
fun process(recordBuffer: FloatArray, channelSelect: Int): Boolean { fun process(recordBuffer: FloatArray, channelSelect: Int): Boolean {
var newLines = false var newLines = false
val detected = detector.process(recordBuffer, channelSelect) val detected = detector.process(recordBuffer, channelSelect)
syncChecks++
if (detected) {
syncHits++
predictedStreak = 0
}
var syncIdx = sample + detector.pulseOffset var syncIdx = sample + detector.pulseOffset
val channels = if (channelSelect > 0) 2 else 1 val channels = if (channelSelect > 0) 2 else 1
for (j in 0 until recordBuffer.size / channels) { for (j in 0 until recordBuffer.size / channels) {
@@ -308,20 +480,10 @@ internal class DecoderEngine(
} }
} }
} else if (handleHeader()) { } else if (handleHeader()) {
predictedStreak = 0
newLines = true newLines = true
} else if (sample > lastSync + (curLineSamples * 5) / 4) { } else if (sample > lastSync + (curLineSamples * 5) / 4) {
copyLines( newLines = decodePredictedLine()
currentMode.decodeScanLine(
pixelBuffer,
scratch,
scanLineBuffer,
scopeBuffer.width,
lastSync,
curLineSamples,
lastOffset
)
)
lastSync += curLineSamples; newLines = true
} }
return newLines return newLines
} }
@@ -337,6 +499,25 @@ internal class DecoderEngine(
lockMode = false lockMode = false
} }
fun quality(): DecoderQuality {
val hitRate = if (syncChecks > 0) syncHits.toFloat() / syncChecks else 0f
return DecoderQuality(
syncHitRate = hitRate,
predictedLineBursts = predictedLineBursts,
maxPredictedStreak = maxPredictedStreak,
timingErrorSamples = timingErrorSamples
)
}
fun resetQuality() {
syncChecks = 0
syncHits = 0
predictedLineBursts = 0
predictedStreak = 0
maxPredictedStreak = 0
timingErrorSamples = 0
}
private fun mean(a: IntArray): Double = a.sumOf { it.toDouble() } / a.size private fun mean(a: IntArray): Double = a.sumOf { it.toDouble() } / a.size
private fun stdDev(a: IntArray, m: Double): Double { private fun stdDev(a: IntArray, m: Double): Double {
var s = 0.0; for (v in a) s += (v - m) * (v - m); return sqrt(s / a.size) var s = 0.0; for (v in a) s += (v - m) * (v - m); return sqrt(s / a.size)
@@ -426,6 +607,29 @@ internal class DecoderEngine(
if (finish) drawLines(0xff000000.toInt(), 10) if (finish) drawLines(0xff000000.toInt(), 10)
} }
private fun decodePredictedLine(): Boolean {
// Avoid long streaks of synthetic lines; once we exceed the cap we wait for
// real sync to reduce visible vertical compression on weak/noisy signals.
if (predictedStreak >= maxConsecutivePredictedLines) return false
val expectedSync = lastSync + curLineSamples
timingErrorSamples = sample - expectedSync
val decoded = currentMode.decodeScanLine(
pixelBuffer,
scratch,
scanLineBuffer,
scopeBuffer.width,
lastSync,
curLineSamples,
lastOffset
)
copyLines(decoded)
lastSync = expectedSync
predictedLineBursts++
predictedStreak++
if (predictedStreak > maxPredictedStreak) maxPredictedStreak = predictedStreak
return decoded
}
private fun drawLines(color: Int, count: Int) { private fun drawLines(color: Int, count: Int) {
repeat(count) { repeat(count) {
scopeBuffer.pixels.fill( scopeBuffer.pixels.fill(
@@ -542,6 +746,7 @@ internal class DecoderEngine(
lineLen: IntArray, lineLen: IntArray,
latest: Int latest: Int
): Boolean { ): Boolean {
predictedStreak = 0
for (i in 1 until syncPulses.size) syncPulses[i - 1] = syncPulses[i] for (i in 1 until syncPulses.size) syncPulses[i - 1] = syncPulses[i]
syncPulses[syncPulses.size - 1] = latest syncPulses[syncPulses.size - 1] = latest
for (i in 1 until lineLen.size) lineLen[i - 1] = lineLen[i] for (i in 1 until lineLen.size) lineLen[i - 1] = lineLen[i]
@@ -33,10 +33,19 @@ class DataParser(private val dispatcher: CoroutineDispatcher) {
ignoreUnknownKeys = true ignoreUnknownKeys = true
coerceInputValues = true coerceInputValues = true
} }
private val alpha5Alphabet = "ABCDEFGHJKLMNPQRSTUVWXYZ"
private val celestrakCSVColumns = mapOf(
"OBJECT_NAME" to 0, "EPOCH" to 2, "MEAN_MOTION" to 3, "ECCENTRICITY" to 4,
"INCLINATION" to 5, "RA_OF_ASC_NODE" to 6, "ARG_OF_PERICENTER" to 7,
"MEAN_ANOMALY" to 8, "NORAD_CAT_ID" to 11, "BSTAR" to 14, "MEAN_MOTION_DOT" to 15
)
suspend fun parseCSVStream(stream: InputStream): List<OrbitalData> = withContext(dispatcher) { suspend fun parseCSVStream(stream: InputStream): List<OrbitalData> = withContext(dispatcher) {
stream.bufferedReader().useLines { lines -> stream.bufferedReader().useLines { lines ->
lines.drop(1).mapNotNull { parseCSV(it.split(",")) }.toList() val iterator = lines.iterator()
if (!iterator.hasNext()) return@useLines emptyList()
val columns = parseCSVColumns(iterator.next())
iterator.asSequence().mapNotNull { line -> parseCSV(line.split(","), columns) }.toList()
} }
} }
@@ -58,40 +67,68 @@ class DataParser(private val dispatcher: CoroutineDispatcher) {
}.getOrDefault(emptyList()) }.getOrDefault(emptyList())
} }
private fun parseCSV(values: List<String>): OrbitalData? = runCatching { private fun parseCSV(values: List<String>, columns: Map<String, Int>): OrbitalData? = runCatching {
val name = values[0] fun value(column: String) = values[columns.getValue(column)].trim()
val timestamp = values[2] fun optionalValue(column: String) =
val year = timestamp.substring(0, 4) columns[column]?.let { index -> values.getOrNull(index) }?.trim()?.toDoubleOrNull() ?: 0.0
val month = timestamp.substring(5, 7).toInt()
val dayOfMonth = timestamp.substring(8, 10).toInt()
val dayInt = getDayOfYear(year.toInt(), month, dayOfMonth)
val day = dayInt.toString().padStart(3, '0')
val hour = timestamp.substring(11, 13).toInt() * 3600000
val min = timestamp.substring(14, 16).toInt() * 60000
val sec = timestamp.substring(17, 19).toInt() * 1000
val ms = timestamp.substring(20, 26).toInt() / 1000.0
val frac = ((hour + min + sec + ms) / 86400000.0).toString().substring(1)
val epoch = "${year.substring(2)}$day$frac".toDouble()
OrbitalData( OrbitalData(
name = name, name = value("OBJECT_NAME"),
epoch = epoch, epoch = parseTimestamp(value("EPOCH")),
meanmo = values[3].toDouble(), meanmo = value("MEAN_MOTION").toDouble(),
eccn = values[4].toDouble(), eccn = value("ECCENTRICITY").toDouble(),
incl = values[5].toDouble(), incl = value("INCLINATION").toDouble(),
raan = values[6].toDouble(), raan = value("RA_OF_ASC_NODE").toDouble(),
argper = values[7].toDouble(), argper = value("ARG_OF_PERICENTER").toDouble(),
meanan = values[8].toDouble(), meanan = value("MEAN_ANOMALY").toDouble(),
catnum = values[11].toInt(), catnum = parseCatnum(value("NORAD_CAT_ID")),
bstar = values[14].toDouble(), bstar = optionalValue("BSTAR"),
ndot = values[15].toDouble() ndot = optionalValue("MEAN_MOTION_DOT")
) )
}.onFailure { println("CSV parsing exception: $it") }.getOrNull() }.onFailure { println("CSV parsing exception: $it") }.getOrNull()
/**
* OMM columns are located by name, as providers agree on the names but not on the order.
* Falls back to the Celestrak layout when the header is missing or unrecognized.
*/
private fun parseCSVColumns(header: String): Map<String, Int> {
val columns = header.split(",").withIndex().associate { (index, name) ->
name.trim().trim('"').uppercase() to index
}
return if (columns.containsKey("NORAD_CAT_ID")) columns else celestrakCSVColumns
}
/**
* ISO 8601 timestamp as a TLE style YYDDD.ffffffff epoch. Fractional seconds are optional and
* a trailing timezone marker is ignored, as not every provider formats the epoch alike.
*/
private fun parseTimestamp(timestamp: String): Double {
val year = timestamp.substring(0, 4).toInt()
val month = timestamp.substring(5, 7).toInt()
val dayOfMonth = timestamp.substring(8, 10).toInt()
val hours = timestamp.substring(11, 13).toInt()
val minutes = timestamp.substring(14, 16).toInt()
val seconds = timestamp.substring(17).takeWhile { it.isDigit() || it == '.' }.toDouble()
val dayFraction = (hours * 3600 + minutes * 60 + seconds) / 86400.0
return (year % 100) * 1000 + getDayOfYear(year, month, dayOfMonth) + dayFraction
}
/**
* Catalog numbers above 99999 do not fit the 5 digit TLE field, so they are encoded as Alpha-5:
* the leading two digits become a letter, with I and O skipped to avoid confusion with 1 and 0.
*/
private fun parseCatnum(value: String): Int {
val catnum = value.trim()
if (catnum.first().isDigit()) return catnum.toInt()
val alphaIndex = alpha5Alphabet.indexOf(catnum.first().uppercaseChar())
require(alphaIndex >= 0) { "Unknown Alpha-5 catalog number: $catnum" }
return (alphaIndex + 10) * 10000 + catnum.drop(1).trim().toInt()
}
private fun parseTLE(tle: List<String>): OrbitalData? = runCatching { private fun parseTLE(tle: List<String>): OrbitalData? = runCatching {
val line1 = tle[1] val line1 = tle[1]
val line2 = tle[2] val line2 = tle[2]
OrbitalData( OrbitalData(
name = tle[0].trim(), name = tle[0].trim().removePrefix("0 "),
epoch = line1.substring(18, 32).toDouble(), epoch = line1.substring(18, 32).toDouble(),
meanmo = line2.substring(52, 63).toDouble(), meanmo = line2.substring(52, 63).toDouble(),
eccn = line2.substring(26, 33).toDouble() / 1e7, eccn = line2.substring(26, 33).toDouble() / 1e7,
@@ -99,7 +136,7 @@ class DataParser(private val dispatcher: CoroutineDispatcher) {
raan = line2.substring(17, 25).toDouble(), raan = line2.substring(17, 25).toDouble(),
argper = line2.substring(34, 42).toDouble(), argper = line2.substring(34, 42).toDouble(),
meanan = line2.substring(43, 51).toDouble(), meanan = line2.substring(43, 51).toDouble(),
catnum = line1.substring(2, 7).trim().toInt(), catnum = parseCatnum(line1.substring(2, 7)),
bstar = 1e-5 * line1.substring(53, 59).toDouble() / 10.0.pow(line1.substring(60, 61).toDouble()), bstar = 1e-5 * line1.substring(53, 59).toDouble() / 10.0.pow(line1.substring(60, 61).toDouble()),
ndot = line1.substring(33, 43).trim().toDouble() ndot = line1.substring(33, 43).trim().toDouble()
) )
@@ -0,0 +1,141 @@
/*
* 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.domain.utility
import com.rtbishop.look4sat.core.domain.model.SatRadio
import com.rtbishop.look4sat.core.domain.predict.OrbitalPos
import java.util.Locale
/**
* Computes Doppler-corrected reciprocal frequencies for linear transponders.
*
* For a linear (passband) transponder, uplink and downlink frequencies are
* related by a fixed passband offset. When the satellite moves, both are
* Doppler-shifted. Given one, this computes the other:
*
* downlink → uplink: mapDownlinkToUplink (passband) → getUplinkFreq (Doppler)
* uplink → downlink: mapUplinkToDownlink (passband) → getDownlinkFreq (Doppler)
*/
object DopplerFrequencyCalculator {
/**
* Given a downlink frequency, compute the Doppler-corrected uplink frequency.
* Returns null if the transponder is not a linear passband type.
*/
fun computeUplinkFromDownlink(
downlinkHz: Long,
transponder: SatRadio,
orbitalPos: OrbitalPos
): Long? {
if (!isLinearTransponder(transponder)) return null
val baseUplink = TransponderMapper.mapDownlinkToUplink(downlinkHz, transponder) ?: return null
return orbitalPos.getUplinkFreq(baseUplink)
}
/**
* Given a downlink frequency, compute the Doppler-corrected uplink frequency
* with an offset applied to the downlink (in Hz).
* Returns null if the transponder is not a linear passband type.
*
* The user-entered downlink frequency already includes the offset, so subtract
* it before mapping the downlink passband position back to the uplink.
*/
fun computeUplinkFromDownlinkWithOffset(
downlinkHz: Long,
transponder: SatRadio,
orbitalPos: OrbitalPos,
offsetHz: Long
): Long? {
if (!isLinearTransponder(transponder)) return null
val baseUplink = TransponderMapper.mapDownlinkToUplink(downlinkHz - offsetHz, transponder) ?: return null
return orbitalPos.getUplinkFreq(baseUplink)
}
/**
* Given an uplink frequency, compute the Doppler-corrected downlink frequency.
* Returns null if the transponder is not a linear passband type.
*/
fun computeDownlinkFromUplink(
uplinkHz: Long,
transponder: SatRadio,
orbitalPos: OrbitalPos
): Long? {
if (!isLinearTransponder(transponder)) return null
val baseDownlink = TransponderMapper.mapUplinkToDownlink(uplinkHz, transponder) ?: return null
return orbitalPos.getDownlinkFreq(baseDownlink)
}
/**
* Given an uplink frequency, compute the Doppler-corrected downlink frequency
* with an offset applied to the downlink (in Hz).
* Returns null if the transponder is not a linear passband type.
*/
fun computeDownlinkFromUplinkWithOffset(
uplinkHz: Long,
transponder: SatRadio,
orbitalPos: OrbitalPos,
offsetHz: Long
): Long? {
if (!isLinearTransponder(transponder)) return null
val baseDownlink = TransponderMapper.mapUplinkToDownlink(uplinkHz, transponder) ?: return null
return orbitalPos.getDownlinkFreq(baseDownlink + offsetHz)
}
/** True if this transponder supports linear passband mapping. */
fun isLinearTransponder(transponder: SatRadio): Boolean {
val upLow = transponder.uplinkLow
val upHigh = transponder.uplinkHigh
val downLow = transponder.downlinkLow
val downHigh = transponder.downlinkHigh
return upLow != null && upHigh != null && downLow != null && downHigh != null
&& upLow != upHigh && downLow != downHigh
}
/**
* True for the radio entry that should drive the standalone Calculator page.
*
* A frequency range alone is not enough: some non-user-facing or drifting data entries
* can also have low/high frequencies. The calculator is meant for named linear
* transponders, e.g. "Linear Transponder", "Linear Transp.", "SSB Transponder".
*/
fun isNamedLinearTransponder(transponder: SatRadio): Boolean {
if (!isLinearTransponder(transponder)) return false
val info = transponder.info.lowercase(Locale.ENGLISH)
val modes = listOfNotNull(transponder.downlinkMode, transponder.uplinkMode)
.joinToString(separator = " ")
.lowercase(Locale.ENGLISH)
val hasLinearName = info.contains("linear") || info.contains(" lin") || info.startsWith("lin")
val hasTransponderName = info.contains("transponder") || info.contains("transp") ||
info.contains("xponder") || info.contains("xpdr")
val hasLinearMode = listOf("ssb", "usb", "lsb", "cw").any { modes.contains(it) }
return (hasLinearName && hasTransponderName) || (hasTransponderName && hasLinearMode) ||
(hasLinearName && hasLinearMode)
}
/**
* Removes duplicate transponder entries that describe the same physical
* transponder with different mode labels (e.g. SatNOGS lists AO-7's Mode A
* as both "Lin SSB" and "Lin CW", and JO-97's U/V transponder as both
* "CW Transponder" and "SSB Transponder").
*
* Entries sharing the same uplink/downlink frequency range are considered
* the same transponder. The non-CW entry is preferred because its invert
* flag is more reliable (e.g. JO-97's CW entry wrongly has invert=false).
*/
fun deduplicateTransponders(radios: List<SatRadio>): List<SatRadio> {
return radios.groupBy { radio ->
listOf(radio.uplinkLow, radio.uplinkHigh, radio.downlinkLow, radio.downlinkHigh)
}.values.map { group ->
group.firstOrNull { it.downlinkMode?.equals("CW", ignoreCase = true) != true } ?: group.first()
}
}
}
@@ -41,6 +41,21 @@ fun Double.round(decimals: Int): Double {
return kotlin.math.round(this * multiplier) / multiplier return kotlin.math.round(this * multiplier) / multiplier
} }
fun String.aprsPasscode(): Int {
val callsign = this.trim().uppercase().substringBefore('-') // commonly strip SSID
var hash = 0x73E2
var i = 0
while (i < callsign.length) {
hash = hash xor (callsign[i].code shl 8)
i++
if (i < callsign.length) {
hash = hash xor callsign[i].code
i++
}
}
return hash and 0x7FFF
}
//fun String.getHash(type: String = "SHA-256"): String { //fun String.getHash(type: String = "SHA-256"): String {
// val hexChars = "0123456789ABCDEF" // val hexChars = "0123456789ABCDEF"
// val bytes = MessageDigest.getInstance(type).digest(this.toByteArray()) // val bytes = MessageDigest.getInstance(type).digest(this.toByteArray())
@@ -18,10 +18,12 @@
package com.rtbishop.look4sat.core.domain package com.rtbishop.look4sat.core.domain
import com.rtbishop.look4sat.core.domain.utility.DataParser import com.rtbishop.look4sat.core.domain.utility.DataParser
import com.rtbishop.look4sat.core.domain.utility.aprsPasscode
import kotlinx.coroutines.ExperimentalCoroutinesApi import kotlinx.coroutines.ExperimentalCoroutinesApi
import kotlinx.coroutines.test.StandardTestDispatcher import kotlinx.coroutines.test.StandardTestDispatcher
import kotlinx.coroutines.test.runTest import kotlinx.coroutines.test.runTest
import org.junit.Test import org.junit.Test
import kotlin.math.abs
@ExperimentalCoroutinesApi @ExperimentalCoroutinesApi
class DataParserTest { class DataParserTest {
@@ -60,8 +62,49 @@ class DataParserTest {
fun `Given valid CSV stream returns valid data`() = runTest(testDispatcher) { fun `Given valid CSV stream returns valid data`() = runTest(testDispatcher) {
val parsedList = dataParser.parseCSVStream(validCSVStream) val parsedList = dataParser.parseCSVStream(validCSVStream)
assert(parsedList.size == 2) assert(parsedList.size == 2)
assert(parsedList[0].epoch == 21320.51955234) assert(abs(parsedList[0].epoch - 21320.51955234) < 1e-8)
assert(parsedList[1].epoch == 24069.23963816) assert(abs(parsedList[1].epoch - 24069.23963816) < 1e-8)
}
@Test
fun `Given CSV stream with reordered columns returns valid data`() = runTest(testDispatcher) {
val csvStream = """
NORAD_CAT_ID,EPOCH,OBJECT_NAME,BSTAR,MEAN_MOTION_DOT,MEAN_MOTION,ECCENTRICITY,INCLINATION,RA_OF_ASC_NODE,ARG_OF_PERICENTER,MEAN_ANOMALY
25544,2021-11-16T12:28:09.322176,ISS (ZARYA),.31985E-4,.1288E-4,15.48582035,.0004694,51.6447,309.4881,203.6966,299.8876
""".trimIndent().byteInputStream()
val sat = dataParser.parseCSVStream(csvStream)[0]
assert(sat.name == "ISS (ZARYA)")
assert(sat.catnum == 25544)
assert(sat.meanmo == 15.48582035)
assert(sat.bstar == 0.31985E-4)
assert(abs(sat.epoch - 21320.51955234) < 1e-8)
}
@Test
fun `Given CSV epoch without fractional seconds returns valid data`() = runTest(testDispatcher) {
val csvStream = """
OBJECT_NAME,OBJECT_ID,EPOCH,MEAN_MOTION,ECCENTRICITY,INCLINATION,RA_OF_ASC_NODE,ARG_OF_PERICENTER,MEAN_ANOMALY,EPHEMERIS_TYPE,CLASSIFICATION_TYPE,NORAD_CAT_ID,ELEMENT_SET_NO,REV_AT_EPOCH,BSTAR,MEAN_MOTION_DOT,MEAN_MOTION_DDOT
ISS (ZARYA),1998-067A,2021-11-16T12:28:09Z,15.48582035,.0004694,51.6447,309.4881,203.6966,299.8876,0,U,25544,999,31220,.31985E-4,.1288E-4,0
ISS (ZARYA),1998-067A,2021-11-16T00:00:30,15.48582035,.0004694,51.6447,309.4881,203.6966,299.8876,0,U,25544,999,31220,.31985E-4,.1288E-4,0
""".trimIndent().byteInputStream()
val parsedList = dataParser.parseCSVStream(csvStream)
assert(parsedList.size == 2)
// the dropped microseconds are worth a few microdays, the rest of the epoch is intact
assert(abs(parsedList[0].epoch - 21320.51955234) < 1e-5)
// just past midnight: the old formatter produced a broken 21320.0E-4 style epoch here
assert(abs(parsedList[1].epoch - 21320.00034722) < 1e-8)
}
@Test
fun `Given TLE stream with alpha-5 catalog number returns valid data`() = runTest(testDispatcher) {
val tleStream = """
NAVSTAR 43
1 T0111U 98067A 21320.51955234 .00001288 00000+0 31985-4 0 9990
2 T0111 51.6447 309.4881 0004694 203.6966 299.8876 15.48582035312205
""".trimIndent().byteInputStream()
val sat = dataParser.parseTLEStream(tleStream)[0]
// A stands for 10 and I and O are skipped, so T is 27 and T0111 stands for 270111
assert(sat.catnum == 270111)
} }
@Test @Test
@@ -239,4 +282,10 @@ class DataParserTest {
// Matches the CSV test data epoch: 2021-11-16 → day 320 // Matches the CSV test data epoch: 2021-11-16 → day 320
assert(dataParser.getDayOfYear(2021, 11, 16) == 320) assert(dataParser.getDayOfYear(2021, 11, 16) == 320)
} }
@Test
fun `check APRS passcode calculation`() {
assert("M7LNB".aprsPasscode() == 12443)
assert("N0CALL".aprsPasscode() == 13023)
}
} }
@@ -0,0 +1,273 @@
package com.rtbishop.look4sat.core.domain
import com.rtbishop.look4sat.core.domain.model.SatRadio
import com.rtbishop.look4sat.core.domain.predict.OrbitalPos
import com.rtbishop.look4sat.core.domain.utility.DopplerFrequencyCalculator
import org.junit.Assert.assertEquals
import org.junit.Assert.assertFalse
import org.junit.Assert.assertNotNull
import org.junit.Assert.assertNull
import org.junit.Assert.assertTrue
import org.junit.Test
class DopplerFrequencyCalculatorTest {
private fun linearTransponder(
uuid: String = "linear",
upLow: Long = 145_000_000L,
upHigh: Long = 145_500_000L,
downLow: Long = 435_000_000L,
downHigh: Long? = 435_500_000L,
inverted: Boolean = false,
info: String = "Linear Transponder",
downlinkMode: String? = "USB",
uplinkMode: String? = "LSB"
) = SatRadio(
uuid = uuid, info = info, isAlive = true,
downlinkLow = downLow, downlinkHigh = downHigh,
downlinkMode = downlinkMode, uplinkLow = upLow, uplinkHigh = upHigh,
uplinkMode = uplinkMode, isInverted = inverted, catnum = 12345
)
private fun fmTransponder() = SatRadio(
uuid = "fm", info = "FM Repeater", isAlive = true,
downlinkLow = 435_600_000L, downlinkHigh = null,
downlinkMode = "FM", uplinkLow = 145_900_000L, uplinkHigh = null,
uplinkMode = "FM", isInverted = false, catnum = 99999
)
private fun pos(distanceRateKmS: Double = 0.0) = OrbitalPos().apply {
this.distanceRate = distanceRateKmS
}
@Test
fun isLinearTransponder_returnsTrueForLinear() {
assertTrue(DopplerFrequencyCalculator.isLinearTransponder(linearTransponder()))
}
@Test
fun isLinearTransponder_returnsFalseForFM() {
assertFalse(DopplerFrequencyCalculator.isLinearTransponder(fmTransponder()))
}
@Test
fun isLinearTransponder_returnsFalseForNullDownlinkHigh() {
val xpdr = linearTransponder(downHigh = null)
assertFalse(DopplerFrequencyCalculator.isLinearTransponder(xpdr))
}
@Test
fun isNamedLinearTransponder_returnsTrueForLinearTransponderName() {
assertTrue(DopplerFrequencyCalculator.isNamedLinearTransponder(linearTransponder()))
}
@Test
fun isNamedLinearTransponder_returnsTrueForSsbTransponderName() {
val xpdr = linearTransponder(info = "Mode V/U SSB Transponder", downlinkMode = "USB", uplinkMode = "LSB")
assertTrue(DopplerFrequencyCalculator.isNamedLinearTransponder(xpdr))
}
@Test
fun isNamedLinearTransponder_returnsFalseForRangeEntryWithoutTransponderName() {
val driftingRangeEntry = linearTransponder(info = "Upper side band (drifting)")
assertFalse(DopplerFrequencyCalculator.isNamedLinearTransponder(driftingRangeEntry))
}
@Test
fun isNamedLinearTransponder_returnsTrueForAbbreviatedLinName() {
// AO-7 style: "Mode V/A (A) Lin SSB" — "Lin" abbreviation, no "transponder" word
val ao7Entry = linearTransponder(info = "Mode V/A (A) Lin SSB", downlinkMode = "USB", uplinkMode = "USB")
assertTrue(DopplerFrequencyCalculator.isNamedLinearTransponder(ao7Entry))
val ao7CwEntry = linearTransponder(info = "Mode V/A (A) Lin CW", downlinkMode = "CW", uplinkMode = "CW")
assertTrue(DopplerFrequencyCalculator.isNamedLinearTransponder(ao7CwEntry))
val ao7ModeBEntry = linearTransponder(info = "Mode U/V (B) Lin", downlinkMode = "USB", uplinkMode = "LSB")
assertTrue(DopplerFrequencyCalculator.isNamedLinearTransponder(ao7ModeBEntry))
}
@Test
fun isNamedLinearTransponder_returnsTrueForLinearWithoutTransponderWord() {
// AO-73 style: "Mode U/V Linear" — has "Linear" but no "transponder"
val ao73Entry = linearTransponder(info = "Mode U/V Linear", downlinkMode = "USB", uplinkMode = "LSB")
assertTrue(DopplerFrequencyCalculator.isNamedLinearTransponder(ao73Entry))
}
@Test
fun isNamedLinearTransponder_returnsFalseForDownlinkContainingLinInsideWord() {
// "Downlink" contains "lin" but is not a linear-transponder name
val downlinkEntry = linearTransponder(info = "Mode U Downlink", downlinkMode = "FM", uplinkMode = "FM")
assertFalse(DopplerFrequencyCalculator.isNamedLinearTransponder(downlinkEntry))
}
@Test
fun isNamedLinearTransponder_returnsFalseForFmRepeater() {
assertFalse(DopplerFrequencyCalculator.isNamedLinearTransponder(fmTransponder()))
}
@Test
fun deduplicateTransponders_mergesSameFrequencyRange() {
// AO-7's Mode A: same range, SSB and CW entries
val ssb = linearTransponder(
uuid = "ssb-uuid", info = "Mode V/A (A) Lin SSB",
downlinkMode = "USB", uplinkMode = "USB"
)
val cw = linearTransponder(
uuid = "cw-uuid", info = "Mode V/A (A) Lin CW",
downlinkMode = "CW", uplinkMode = "CW"
)
val modeB = linearTransponder(
uuid = "modeb-uuid", info = "Mode U/V (B) Lin",
upLow = 432_125_000L, upHigh = 432_175_000L,
downLow = 145_925_000L, downHigh = 145_975_000L,
downlinkMode = "USB", uplinkMode = "LSB"
)
val result = DopplerFrequencyCalculator.deduplicateTransponders(listOf(ssb, cw, modeB))
assertEquals(2, result.size)
// SSB entry should be preferred over CW (same range)
assertEquals("ssb-uuid", result[0].uuid)
assertEquals("modeb-uuid", result[1].uuid)
}
@Test
fun deduplicateTransponders_prefersNonCwEntry() {
// JO-97: CW entry has invert=false (wrong), SSB has invert=true (correct)
val cw = linearTransponder(
uuid = "cw-uuid", info = "U/V CW Transponder",
downlinkMode = "CW", uplinkMode = "CW",
upLow = 435_100_000L, upHigh = 435_120_000L,
downLow = 145_855_000L, downHigh = 145_875_000L
)
val ssb = linearTransponder(
uuid = "ssb-uuid", info = "U/V SSB Transponder",
downlinkMode = "USB", uplinkMode = "LSB",
upLow = 435_100_000L, upHigh = 435_120_000L,
downLow = 145_855_000L, downHigh = 145_875_000L,
inverted = true
)
val result = DopplerFrequencyCalculator.deduplicateTransponders(listOf(cw, ssb))
assertEquals(1, result.size)
assertEquals("ssb-uuid", result[0].uuid)
// Verify the correct invert flag is preserved
assertTrue(result[0].isInverted)
}
@Test
fun deduplicateTransponders_preservesUniqueEntries() {
val t1 = linearTransponder(uuid = "t1", upLow = 145_000_000L, upHigh = 145_500_000L,
downLow = 435_000_000L, downHigh = 435_500_000L)
val t2 = linearTransponder(uuid = "t2", upLow = 435_000_000L, upHigh = 435_500_000L,
downLow = 145_000_000L, downHigh = 145_500_000L)
val result = DopplerFrequencyCalculator.deduplicateTransponders(listOf(t1, t2))
assertEquals(2, result.size)
}
@Test
fun computeUplinkFromDownlink_linear_noDoppler() {
val xpdr = linearTransponder()
val orbitalPos = pos(0.0)
val uplink = DopplerFrequencyCalculator.computeUplinkFromDownlink(435_200_000L, xpdr, orbitalPos)
assertNotNull(uplink)
assertEquals(145_200_000L, uplink)
}
@Test
fun computeDownlinkFromUplink_linear_noDoppler() {
val xpdr = linearTransponder()
val orbitalPos = pos(0.0)
val downlink = DopplerFrequencyCalculator.computeDownlinkFromUplink(145_200_000L, xpdr, orbitalPos)
assertNotNull(downlink)
assertEquals(435_200_000L, downlink)
}
@Test
fun computeUplinkFromDownlink_withDoppler_positiveRangeRate() {
// Satellite receding (positive range rate) → ground must transmit higher freq to compensate.
val xpdr = linearTransponder()
val orbitalPos = pos(7.0)
val uplink = DopplerFrequencyCalculator.computeUplinkFromDownlink(435_200_000L, xpdr, orbitalPos)
assertNotNull(uplink)
assertTrue(uplink!! > 145_200_000L)
}
@Test
fun computeUplinkFromDownlink_fmTransponder_returnsNull() {
val orbitalPos = pos()
val result = DopplerFrequencyCalculator.computeUplinkFromDownlink(435_600_000L, fmTransponder(), orbitalPos)
assertNull(result)
}
@Test
fun computeDownlinkFromUplink_fmTransponder_returnsNull() {
val orbitalPos = pos()
val result = DopplerFrequencyCalculator.computeDownlinkFromUplink(145_900_000L, fmTransponder(), orbitalPos)
assertNull(result)
}
@Test
fun computeDownlinkFromUplink_withPositiveOffset_addsOffsetToDownlink() {
val xpdr = linearTransponder()
val orbitalPos = pos(0.0)
val downlink = DopplerFrequencyCalculator.computeDownlinkFromUplinkWithOffset(
uplinkHz = 145_200_000L,
transponder = xpdr,
orbitalPos = orbitalPos,
offsetHz = 2_500L
)
assertEquals(435_202_500L, downlink)
}
@Test
fun computeUplinkFromDownlink_withPositiveOffset_subtractsOffsetBeforeMapping() {
val xpdr = linearTransponder()
val orbitalPos = pos(0.0)
val uplink = DopplerFrequencyCalculator.computeUplinkFromDownlinkWithOffset(
downlinkHz = 435_202_500L,
transponder = xpdr,
orbitalPos = orbitalPos,
offsetHz = 2_500L
)
assertEquals(145_200_000L, uplink)
}
@Test
fun computeOffsetRoundTrip_handlesNegativeOffset() {
val xpdr = linearTransponder()
val orbitalPos = pos(0.0)
val downlink = DopplerFrequencyCalculator.computeDownlinkFromUplinkWithOffset(
uplinkHz = 145_200_000L,
transponder = xpdr,
orbitalPos = orbitalPos,
offsetHz = -2_500L
)
assertEquals(435_197_500L, downlink)
val uplink = DopplerFrequencyCalculator.computeUplinkFromDownlinkWithOffset(
downlinkHz = downlink!!,
transponder = xpdr,
orbitalPos = orbitalPos,
offsetHz = -2_500L
)
assertEquals(145_200_000L, uplink)
}
@Test
fun computeUplinkFromDownlink_invertedTransponder() {
val xpdr = linearTransponder(inverted = true, downHigh = 435_500_000L)
val orbitalPos = pos(0.0)
val uplink = DopplerFrequencyCalculator.computeUplinkFromDownlink(435_200_000L, xpdr, orbitalPos)
assertNotNull(uplink)
assertEquals(145_300_000L, uplink)
}
@Test
fun computeUplinkFromDownlink_roundTrip() {
val xpdr = linearTransponder()
val orbitalPos = pos(3.5)
val originalDownlink = 435_250_000L
val uplink = DopplerFrequencyCalculator.computeUplinkFromDownlink(originalDownlink, xpdr, orbitalPos)
assertNotNull(uplink)
val roundTripDownlink = DopplerFrequencyCalculator.computeDownlinkFromUplink(uplink!!, xpdr, orbitalPos)
assertNotNull(roundTripDownlink)
val error = kotlin.math.abs(roundTripDownlink!! - originalDownlink)
assertTrue("Round-trip error too large: $error", error < 10000)
}
}
@@ -0,0 +1,79 @@
/*
* Look4Sat. Amateur radio satellite tracker and pass predictor.
* Copyright (C) 2019-2026 Arty Bishop and contributors.
*
* This program is free software: you can redistribute it and/or modify
* it under the terms of the GNU General Public License as published by
* the Free Software Foundation, either version 3 of the License, or
* (at your option) any later version.
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*
* You should have received a copy of the GNU General Public License
* along with this program. If not, see <https://www.gnu.org/licenses/>.
*/
package com.rtbishop.look4sat.core.domain.predict
import org.junit.Assert.assertEquals
import org.junit.Assert.assertTrue
import org.junit.Test
import java.time.Instant
import kotlin.math.abs
class CelestialComputerTest {
private data class RiseSetCase(
val name: String,
val observer: GeoPos,
val startIso: String
)
@Test
fun `findSunRiseSet returns distinct sunrise and sunset for representative locations`() {
val cases = listOf(
RiseSetCase("Equator at March equinox", GeoPos(0.0, 0.0), "2026-03-20T00:00:00Z"),
RiseSetCase("Equator at September equinox", GeoPos(0.0, 0.0), "2026-09-23T00:00:00Z"),
RiseSetCase("Sydney winter", GeoPos(-33.8688, 151.2093), "2026-06-21T00:00:00Z"),
RiseSetCase("Buenos Aires winter", GeoPos(-34.6037, -58.3816), "2026-06-21T00:00:00Z"),
RiseSetCase("Cape Town winter", GeoPos(-33.9249, 18.4241), "2026-06-21T00:00:00Z"),
RiseSetCase("London summer", GeoPos(51.5074, -0.1278), "2026-06-21T00:00:00Z")
)
cases.forEach { testCase ->
val result = CelestialComputer.findSunRiseSet(testCase.observer, testCase.startIso.toMillis())
val daylightDuration = result.setTimeMillis - result.riseTimeMillis
assertTrue("${testCase.name}: sunrise should be non-zero", result.riseTimeMillis > 0L)
assertTrue("${testCase.name}: sunset should be non-zero", result.setTimeMillis > 0L)
assertTrue("${testCase.name}: sunset should be after sunrise", result.setTimeMillis > result.riseTimeMillis)
assertTrue("${testCase.name}: daylight duration should be longer than 1 hour", daylightDuration > HOUR_MILLIS)
assertTrue("${testCase.name}: daylight duration should be shorter than 24 hours", daylightDuration < DAY_MILLIS)
val riseElevation = CelestialComputer.getSunPosition(testCase.observer, result.riseTimeMillis).elevation
val setElevation = CelestialComputer.getSunPosition(testCase.observer, result.setTimeMillis).elevation
assertEquals("${testCase.name}: sunrise should converge near the standard threshold", SUNRISE_SET_THRESHOLD, riseElevation, 0.02)
assertEquals("${testCase.name}: sunset should converge near the standard threshold", SUNRISE_SET_THRESHOLD, setElevation, 0.02)
}
}
@Test
fun `findSunRiseSet does not return the same instant for equinox regression cases`() {
listOf("2026-03-20T00:00:00Z", "2026-09-23T00:00:00Z").forEach { startIso ->
val result = CelestialComputer.findSunRiseSet(GeoPos(0.0, 0.0), startIso.toMillis())
val separationMillis = abs(result.setTimeMillis - result.riseTimeMillis)
assertTrue("$startIso: sunrise and sunset should be separated", separationMillis > HOUR_MILLIS)
}
}
private fun String.toMillis(): Long = Instant.parse(this).toEpochMilli()
private companion object {
private const val SUNRISE_SET_THRESHOLD = -0.8333
private const val HOUR_MILLIS = 60L * 60L * 1000L
private const val DAY_MILLIS = 24L * HOUR_MILLIS
}
}
@@ -27,30 +27,43 @@ import androidx.compose.foundation.layout.PaddingValues
import androidx.compose.foundation.layout.Row import androidx.compose.foundation.layout.Row
import androidx.compose.foundation.layout.RowScope import androidx.compose.foundation.layout.RowScope
import androidx.compose.foundation.layout.Spacer import androidx.compose.foundation.layout.Spacer
import androidx.compose.foundation.layout.WindowInsets
import androidx.compose.foundation.layout.asPaddingValues
import androidx.compose.foundation.layout.fillMaxSize import androidx.compose.foundation.layout.fillMaxSize
import androidx.compose.foundation.layout.fillMaxWidth import androidx.compose.foundation.layout.fillMaxWidth
import androidx.compose.foundation.layout.height import androidx.compose.foundation.layout.height
import androidx.compose.foundation.layout.heightIn
import androidx.compose.foundation.layout.padding import androidx.compose.foundation.layout.padding
import androidx.compose.foundation.layout.size import androidx.compose.foundation.layout.size
import androidx.compose.foundation.layout.statusBars
import androidx.compose.foundation.layout.statusBarsPadding import androidx.compose.foundation.layout.statusBarsPadding
import androidx.compose.foundation.layout.width import androidx.compose.foundation.layout.width
import androidx.compose.foundation.shape.RoundedCornerShape
import androidx.compose.material3.ButtonDefaults import androidx.compose.material3.ButtonDefaults
import androidx.compose.material3.CardDefaults import androidx.compose.material3.CardDefaults
import androidx.compose.material3.CircularProgressIndicator import androidx.compose.material3.CircularProgressIndicator
import androidx.compose.material3.ElevatedButton import androidx.compose.material3.ElevatedButton
import androidx.compose.material3.ElevatedCard import androidx.compose.material3.ElevatedCard
import androidx.compose.material3.ExperimentalMaterial3Api
import androidx.compose.material3.Icon import androidx.compose.material3.Icon
import androidx.compose.material3.LocalTextStyle import androidx.compose.material3.LocalTextStyle
import androidx.compose.material3.MaterialTheme import androidx.compose.material3.MaterialTheme
import androidx.compose.material3.ModalBottomSheet
import androidx.compose.material3.Surface import androidx.compose.material3.Surface
import androidx.compose.material3.Text import androidx.compose.material3.Text
import androidx.compose.material3.adaptive.currentWindowAdaptiveInfo import androidx.compose.material3.rememberModalBottomSheetState
import androidx.compose.material3.adaptive.currentWindowAdaptiveInfoV2
import androidx.compose.runtime.Composable import androidx.compose.runtime.Composable
import androidx.compose.runtime.compositionLocalOf
import androidx.compose.runtime.remember import androidx.compose.runtime.remember
import androidx.compose.ui.Alignment import androidx.compose.ui.Alignment
import androidx.compose.ui.Modifier import androidx.compose.ui.Modifier
import androidx.compose.ui.geometry.Offset
import androidx.compose.ui.graphics.Color import androidx.compose.ui.graphics.Color
import androidx.compose.ui.graphics.drawscope.Stroke import androidx.compose.ui.graphics.drawscope.Stroke
import androidx.compose.ui.input.nestedscroll.NestedScrollConnection
import androidx.compose.ui.input.nestedscroll.NestedScrollSource
import androidx.compose.ui.input.nestedscroll.nestedScroll
import androidx.compose.ui.res.painterResource import androidx.compose.ui.res.painterResource
import androidx.compose.ui.res.stringResource import androidx.compose.ui.res.stringResource
import androidx.compose.ui.semantics.hideFromAccessibility import androidx.compose.ui.semantics.hideFromAccessibility
@@ -63,11 +76,14 @@ import androidx.compose.ui.text.font.FontWeight
import androidx.compose.ui.text.style.TextAlign import androidx.compose.ui.text.style.TextAlign
import androidx.compose.ui.text.style.TextDecoration import androidx.compose.ui.text.style.TextDecoration
import androidx.compose.ui.text.style.TextOverflow import androidx.compose.ui.text.style.TextOverflow
import androidx.compose.ui.platform.LocalDensity
import androidx.compose.ui.platform.LocalWindowInfo
import androidx.compose.ui.tooling.preview.Preview import androidx.compose.ui.tooling.preview.Preview
import androidx.compose.ui.unit.Dp
import androidx.compose.ui.unit.TextUnit import androidx.compose.ui.unit.TextUnit
import androidx.compose.ui.unit.Velocity
import androidx.compose.ui.unit.dp import androidx.compose.ui.unit.dp
import androidx.compose.ui.unit.sp import androidx.compose.ui.unit.sp
import androidx.compose.ui.window.Dialog
import com.rtbishop.look4sat.core.domain.predict.NearEarthObject import com.rtbishop.look4sat.core.domain.predict.NearEarthObject
import com.rtbishop.look4sat.core.domain.predict.OrbitalData import com.rtbishop.look4sat.core.domain.predict.OrbitalData
import com.rtbishop.look4sat.core.domain.predict.OrbitalPass import com.rtbishop.look4sat.core.domain.predict.OrbitalPass
@@ -134,7 +150,7 @@ fun RowScope.NextPassRow(pass: OrbitalPass, modifier: Modifier = Modifier, isUtc
if (isUtc) TimeZone.getTimeZone("UTC") else TimeZone.getDefault() if (isUtc) TimeZone.getTimeZone("UTC") else TimeZone.getDefault()
} }
val sdfTime = remember(isUtc) { val sdfTime = remember(isUtc) {
SimpleDateFormat("HH:mm:ss", Locale.ENGLISH).also { it.timeZone = timeZone } SimpleDateFormat("HH:mm:ss", displayLocale()).also { it.timeZone = timeZone }
} }
ElevatedCard( ElevatedCard(
modifier = modifier modifier = modifier
@@ -203,6 +219,11 @@ fun RowScope.NextPassRow(pass: OrbitalPass, modifier: Modifier = Modifier, isUtc
} }
} }
private fun displayLocale(): Locale {
val locale = Locale.getDefault()
return if (locale.language == Locale.CHINESE.language) locale else Locale.ENGLISH
}
@Composable @Composable
fun CardButton(onClick: () -> Unit, text: String, modifier: Modifier = Modifier) { fun CardButton(onClick: () -> Unit, text: String, modifier: Modifier = Modifier) {
ElevatedButton( ElevatedButton(
@@ -218,8 +239,13 @@ fun CardButton(onClick: () -> Unit, text: String, modifier: Modifier = Modifier)
} }
@Composable @Composable
fun IconCard(action: () -> Unit, resId: Int, modifier: Modifier = Modifier, enabled: Boolean = true) { fun IconCard(
ElevatedCard(modifier = Modifier.size(48.dp), enabled = enabled, onClick = action) { action: () -> Unit, resId: Int, modifier: Modifier = Modifier,
enabled: Boolean = true, containerColor: Color = Color.Unspecified
) {
val colors = if (containerColor == Color.Unspecified) CardDefaults.elevatedCardColors()
else CardDefaults.elevatedCardColors(containerColor = containerColor)
ElevatedCard(modifier = Modifier.size(48.dp), enabled = enabled, onClick = action, colors = colors) {
Box(modifier = Modifier.fillMaxSize(), contentAlignment = Alignment.Center) { Box(modifier = Modifier.fillMaxSize(), contentAlignment = Alignment.Center) {
Icon(painter = painterResource(resId), contentDescription = null, modifier = modifier) Icon(painter = painterResource(resId), contentDescription = null, modifier = modifier)
} }
@@ -275,69 +301,140 @@ fun getDefaultPass(): OrbitalPass = OrbitalPass(
) )
@Composable @Composable
fun SharedDialog( fun InfoDialog(
title: String, onCancel: () -> Unit, onAccept: () -> Unit, content: @Composable () -> Unit title: String,
onDismiss: () -> Unit,
onAccept: () -> Unit,
extraAction: (@Composable () -> Unit)? = null,
content: @Composable () -> Unit
) { ) {
DialogShell(title = title, titleFontSize = 16, onDismissRequest = onCancel) { DialogShell(onDismissRequest = onDismiss) { padding ->
content() Row(
Row(modifier = Modifier.padding(start = it, bottom = it, end = it)) { verticalAlignment = Alignment.CenterVertically,
CardButton(onClick = onCancel, text = stringResource(R.string.btn_cancel)) modifier = Modifier
Spacer(modifier = Modifier.weight(1f)) .fillMaxWidth()
.padding(start = padding, top = padding, end = padding)
) {
Text(
text = title,
fontSize = 16.sp,
fontWeight = FontWeight.Medium,
color = MaterialTheme.colorScheme.primary,
maxLines = 1,
overflow = TextOverflow.Ellipsis,
modifier = Modifier.weight(1f)
)
extraAction?.let {
it()
Spacer(modifier = Modifier.width(8.dp))
}
CardButton(onClick = onAccept, text = stringResource(R.string.btn_accept)) CardButton(onClick = onAccept, text = stringResource(R.string.btn_accept))
} }
content()
} }
} }
@Composable @Composable
fun InfoDialog(title: String, text: String, onDismiss: () -> Unit) { fun ConfirmDialog(
DialogShell(title = title, titleFontSize = 18, onDismissRequest = {}) { title: String,
onCancel: () -> Unit,
onAccept: () -> Unit,
content: @Composable () -> Unit
) {
DialogShell(onDismissRequest = onCancel) { padding ->
Row(
verticalAlignment = Alignment.CenterVertically,
modifier = Modifier
.fillMaxWidth()
.padding(start = padding, top = padding, end = padding)
) {
CardButton(onClick = onCancel, text = stringResource(R.string.btn_cancel))
Text(
text = title,
fontSize = 16.sp,
fontWeight = FontWeight.Medium,
color = MaterialTheme.colorScheme.primary,
textAlign = TextAlign.Center,
maxLines = 1,
overflow = TextOverflow.Ellipsis,
modifier = Modifier
.weight(1f)
.padding(horizontal = padding)
)
CardButton(onClick = onAccept, text = stringResource(R.string.btn_accept))
}
content()
}
}
@Composable
fun WhatsNewDialog(onDismiss: () -> Unit) {
InfoDialog(
title = stringResource(R.string.pass_whatsnew_title),
onDismiss = onDismiss,
onAccept = onDismiss
) {
Text( Text(
text = text, text = stringResource(R.string.pass_whatsnew_message),
fontSize = 16.sp, fontSize = 16.sp,
color = MaterialTheme.colorScheme.onSurface, color = MaterialTheme.colorScheme.onSurface,
modifier = Modifier.padding(horizontal = it) modifier = Modifier.padding(horizontal = LocalSpacing.current.large)
) )
Row(modifier = Modifier.padding(start = it, bottom = it, end = it)) { Spacer(modifier = Modifier.height(0.dp))
Spacer(modifier = Modifier.weight(1f))
CardButton(onClick = onDismiss, text = stringResource(R.string.btn_accept))
}
} }
} }
@OptIn(ExperimentalMaterial3Api::class)
@Composable @Composable
private fun DialogShell( private fun DialogShell(
title: String,
titleFontSize: Int,
onDismissRequest: () -> Unit, onDismissRequest: () -> Unit,
content: @Composable (padding: androidx.compose.ui.unit.Dp) -> Unit content: @Composable (padding: Dp) -> Unit
) { ) {
val padding = LocalSpacing.current.large val padding = LocalSpacing.current.large
Dialog(onDismissRequest = onDismissRequest) { val sheetState = rememberModalBottomSheetState(skipPartiallyExpanded = true)
ElevatedCard { val statusBarHeight = WindowInsets.statusBars.asPaddingValues().calculateTopPadding()
Column( val containerHeight = with(LocalDensity.current) { LocalWindowInfo.current.containerSize.height.toDp() }
horizontalAlignment = Alignment.CenterHorizontally, val maxSheetHeight = containerHeight - statusBarHeight
verticalArrangement = Arrangement.spacedBy(padding) val stopSheetFling = remember {
) { object : NestedScrollConnection {
Text( override suspend fun onPostFling(consumed: Velocity, available: Velocity): Velocity {
text = title, return available
fontSize = titleFontSize.sp,
fontWeight = FontWeight.Medium,
color = MaterialTheme.colorScheme.primary,
modifier = Modifier.padding(start = padding, top = padding, end = padding)
)
content(padding)
} }
override fun onPostScroll(
consumed: Offset,
available: Offset,
source: NestedScrollSource
): Offset = Offset.Zero
}
}
ModalBottomSheet(
onDismissRequest = onDismissRequest,
sheetState = sheetState,
dragHandle = null,
shape = RoundedCornerShape(topStart = 12.dp, topEnd = 12.dp),
scrimColor = Color.Black.copy(alpha = 0.64f)
) {
Column(
horizontalAlignment = Alignment.CenterHorizontally,
verticalArrangement = Arrangement.spacedBy(padding),
modifier = Modifier
.fillMaxWidth()
.heightIn(max = maxSheetHeight)
.nestedScroll(stopSheetFling)
) {
content(padding)
} }
} }
} }
@Composable @Composable
fun hasEnoughHeight(): Boolean = fun hasEnoughHeight(): Boolean =
currentWindowAdaptiveInfo().windowSizeClass.isHeightAtLeastBreakpoint(480) currentWindowAdaptiveInfoV2().windowSizeClass.isHeightAtLeastBreakpoint(480)
@Composable @Composable
fun hasEnoughWidth(): Boolean = fun hasEnoughWidth(): Boolean =
currentWindowAdaptiveInfo().windowSizeClass.isWidthAtLeastBreakpoint(600) currentWindowAdaptiveInfoV2().windowSizeClass.isWidthAtLeastBreakpoint(600)
@Composable @Composable
fun isVerticalLayout(): Boolean = !hasEnoughWidth() fun isVerticalLayout(): Boolean = !hasEnoughWidth()
@@ -391,13 +488,26 @@ fun TopBar(
@Composable @Composable
fun elevationColor(elevation: Double): Color { fun elevationColor(elevation: Double): Color {
val thresholds = LocalElevationThresholds.current
return when { return when {
elevation < 15.0 -> Color(0xFFEF5350) // soft red for low elevation elevation < thresholds.low -> ElevationLowColor // soft red for low elevation
elevation < 45.0 -> MaterialTheme.colorScheme.primary // accent yellow for normal elevation < thresholds.high -> MaterialTheme.colorScheme.primary // accent yellow for normal
else -> Color(0xFF66BB6A) // soft green for high elevation else -> ElevationHighColor // soft green for high elevation
} }
} }
/** User-configurable elevation highlight thresholds (in degrees). */
data class ElevationThresholds(val low: Double = 15.0, val high: Double = 45.0)
/** Provided at the app root from settings; defaults keep the original 15°/45° behavior. */
val LocalElevationThresholds = compositionLocalOf { ElevationThresholds() }
/** Soft red used for elevations below the low threshold. */
val ElevationLowColor = Color(0xFFEF5350)
/** Soft green used for elevations above the high threshold. */
val ElevationHighColor = Color(0xFF66BB6A)
@Composable @Composable
fun OutlinedText( fun OutlinedText(
text: String, text: String,
@@ -0,0 +1,272 @@
/*
* Copyright 2021 The Android Open Source Project
*
* Licensed under the Apache License, Version 2.0 (the "License");
* you may not use this file except in compliance with the License.
* You may obtain a copy of the License at
*
* http://www.apache.org/licenses/LICENSE-2.0
*
* Unless required by applicable law or agreed to in writing, software
* distributed under the License is distributed on an "AS IS" BASIS,
* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
* See the License for the specific language governing permissions and
* limitations under the License.
*/
package com.rtbishop.look4sat.core.presentation
import androidx.compose.animation.AnimatedVisibility
import androidx.compose.animation.core.Animatable
import androidx.compose.animation.core.Spring
import androidx.compose.animation.core.animateDpAsState
import androidx.compose.animation.core.animateFloatAsState
import androidx.compose.animation.core.spring
import androidx.compose.animation.fadeOut
import androidx.compose.foundation.border
import androidx.compose.foundation.gestures.detectDragGesturesAfterLongPress
import androidx.compose.foundation.gestures.scrollBy
import androidx.compose.foundation.layout.Box
import androidx.compose.foundation.layout.Column
import androidx.compose.foundation.layout.ColumnScope
import androidx.compose.foundation.layout.fillMaxHeight
import androidx.compose.foundation.layout.fillMaxSize
import androidx.compose.foundation.layout.size
import androidx.compose.foundation.lazy.LazyItemScope
import androidx.compose.foundation.lazy.LazyListItemInfo
import androidx.compose.foundation.lazy.LazyListState
import androidx.compose.material3.Icon
import androidx.compose.material3.MaterialTheme
import androidx.compose.material3.SwipeToDismissBox
import androidx.compose.material3.SwipeToDismissBoxValue
import androidx.compose.material3.rememberSwipeToDismissBoxState
import androidx.compose.runtime.Composable
import androidx.compose.runtime.LaunchedEffect
import androidx.compose.runtime.derivedStateOf
import androidx.compose.runtime.getValue
import androidx.compose.runtime.mutableFloatStateOf
import androidx.compose.runtime.mutableIntStateOf
import androidx.compose.runtime.mutableStateOf
import androidx.compose.runtime.remember
import androidx.compose.runtime.rememberCoroutineScope
import androidx.compose.runtime.setValue
import androidx.compose.ui.Alignment
import androidx.compose.ui.Modifier
import androidx.compose.ui.draw.dropShadow
import androidx.compose.ui.draw.innerShadow
import androidx.compose.ui.geometry.Offset
import androidx.compose.ui.graphics.Color
import androidx.compose.ui.graphics.graphicsLayer
import androidx.compose.ui.hapticfeedback.HapticFeedbackType
import androidx.compose.ui.input.pointer.pointerInput
import androidx.compose.ui.platform.LocalDensity
import androidx.compose.ui.platform.LocalHapticFeedback
import androidx.compose.ui.res.painterResource
import androidx.compose.ui.unit.dp
import androidx.compose.ui.zIndex
import kotlinx.coroutines.CoroutineScope
import kotlinx.coroutines.channels.Channel
import kotlinx.coroutines.delay
import kotlinx.coroutines.launch
import kotlin.time.Duration.Companion.milliseconds
//region DragDrop Region
@Composable
fun rememberDragDropState(lazyListState: LazyListState, onMove: (Int, Int) -> Unit): DragDropState {
val scope = rememberCoroutineScope()
val state = remember(lazyListState) {
DragDropState(state = lazyListState, onMove = onMove, scope = scope)
}
LaunchedEffect(state) {
while (true) {
val diff = state.scrollChannel.receive()
lazyListState.scrollBy(diff)
}
}
return state
}
class DragDropState internal constructor(
private val state: LazyListState,
private val scope: CoroutineScope,
private val onMove: (Int, Int) -> Unit
) {
var draggingItemIndex by mutableStateOf<Int?>(null)
private set
internal val scrollChannel = Channel<Float>()
private var draggingItemDraggedDelta by mutableFloatStateOf(0f)
private var draggingItemInitialOffset by mutableIntStateOf(0)
internal val draggingItemOffset: Float
get() = draggingItemLayoutInfo?.let { item ->
draggingItemInitialOffset + draggingItemDraggedDelta - item.offset
} ?: 0f
private val draggingItemLayoutInfo: LazyListItemInfo?
get() = state.layoutInfo.visibleItemsInfo.firstOrNull { it.index == draggingItemIndex }
internal var previousIndexOfDraggedItem by mutableStateOf<Int?>(null)
private set
internal var previousItemOffset = Animatable(0f)
private set
internal fun onDragStart(offset: Offset) {
state.layoutInfo.visibleItemsInfo.firstOrNull { item ->
offset.y.toInt() in item.offset..(item.offset + item.size)
}?.also {
draggingItemIndex = it.index
draggingItemInitialOffset = it.offset
}
}
internal fun onDragInterrupted() {
if (draggingItemIndex != null) {
previousIndexOfDraggedItem = draggingItemIndex
val startOffset = draggingItemOffset
scope.launch {
previousItemOffset.snapTo(startOffset)
previousItemOffset.animateTo(
0f, spring(stiffness = Spring.StiffnessMediumLow, visibilityThreshold = 1f)
)
previousIndexOfDraggedItem = null
}
}
draggingItemDraggedDelta = 0f
draggingItemIndex = null
draggingItemInitialOffset = 0
}
internal fun onDrag(offset: Offset) {
draggingItemDraggedDelta += offset.y
val draggingItem = draggingItemLayoutInfo ?: return
val startOffset = draggingItem.offset + draggingItemOffset
val endOffset = startOffset + draggingItem.size
val middleOffset = startOffset + (endOffset - startOffset) / 2f
val targetItem = state.layoutInfo.visibleItemsInfo.find { item ->
middleOffset.toInt() in item.offset..item.offsetEnd && draggingItem.index != item.index
}
if (targetItem != null) {
if (draggingItem.index == state.firstVisibleItemIndex || targetItem.index == state.firstVisibleItemIndex) {
state.requestScrollToItem(state.firstVisibleItemIndex, state.firstVisibleItemScrollOffset)
}
onMove.invoke(draggingItem.index, targetItem.index)
draggingItemIndex = targetItem.index
} else {
val overscroll = when {
draggingItemDraggedDelta > 0 -> (endOffset - state.layoutInfo.viewportEndOffset).coerceAtLeast(0f)
draggingItemDraggedDelta < 0 -> (startOffset - state.layoutInfo.viewportStartOffset).coerceAtMost(0f)
else -> 0f
}
if (overscroll != 0f) {
scrollChannel.trySend(overscroll)
}
}
}
private val LazyListItemInfo.offsetEnd: Int
get() = this.offset + this.size
}
fun Modifier.dragContainer(dragDropState: DragDropState): Modifier {
return pointerInput(dragDropState) {
detectDragGesturesAfterLongPress(
onDrag = { change, offset ->
change.consume()
dragDropState.onDrag(offset = offset)
},
onDragStart = { offset -> dragDropState.onDragStart(offset) },
onDragEnd = { dragDropState.onDragInterrupted() },
onDragCancel = { dragDropState.onDragInterrupted() }
)
}
}
@Composable
fun LazyItemScope.DraggableItem(
dragDropState: DragDropState,
index: Int,
modifier: Modifier = Modifier,
content: @Composable ColumnScope.(isDragging: Boolean) -> Unit
) {
val zIndexMod = Modifier.zIndex(1f)
val dragging = index == dragDropState.draggingItemIndex
val draggingModifier = when {
dragging -> zIndexMod.graphicsLayer { translationY = dragDropState.draggingItemOffset }
index == dragDropState.previousIndexOfDraggedItem -> {
zIndexMod.graphicsLayer { translationY = dragDropState.previousItemOffset.value }
}
else -> Modifier.animateItem(fadeInSpec = null, fadeOutSpec = null)
}
Column(modifier = modifier.then(draggingModifier)) { content(dragging) }
}
//endregion
//region Swipe Region
@Composable
fun SwipeableItem(onRemove: () -> Unit, content: @Composable () -> Unit) {
val coroutineScope = rememberCoroutineScope()
val dismissThresholdPx = with(LocalDensity.current) { 120.dp.toPx() }
val dismissState = rememberSwipeToDismissBoxState { dismissThresholdPx }
val isVisible = remember { mutableStateOf(true) }
val willTrigger by remember { derivedStateOf { dismissState.targetValue != SwipeToDismissBoxValue.Settled } }
val hapticFeedback = LocalHapticFeedback.current
LaunchedEffect(willTrigger) {
val feedbackType = if (willTrigger) HapticFeedbackType.LongPress else HapticFeedbackType.SegmentTick
hapticFeedback.performHapticFeedback(feedbackType)
}
AnimatedVisibility(visible = isVisible.value, exit = fadeOut(spring())) {
SwipeToDismissBox(
state = dismissState,
enableDismissFromStartToEnd = true,
enableDismissFromEndToStart = false,
backgroundContent = { DismissBackground(willTrigger) },
content = { content() },
onDismiss = {
isVisible.value = false
coroutineScope.launch { dismissState.reset() }
}
)
}
LaunchedEffect(isVisible.value) {
if (!isVisible.value) { delay(250.milliseconds).also { onRemove() } }
}
}
@Composable
fun DismissBackground(willTrigger: Boolean, bgColor: Color = Color(0xFFFF3C3A)) {
val iconScale by animateFloatAsState(targetValue = if (willTrigger) 1f else .8f)
val slide by animateDpAsState(targetValue = if (willTrigger) 32.dp else (12).dp)
Box(
contentAlignment = Alignment.CenterStart,
modifier = Modifier
.fillMaxSize()
.border(width = 2.dp, shape = MaterialTheme.shapes.extraLarge, color = bgColor)
.dropShadow(shape = MaterialTheme.shapes.extraLarge) {
color = bgColor
radius = 40f
alpha = if (willTrigger) .2f else 0f
}
.innerShadow(shape = MaterialTheme.shapes.extraLarge) {
color = bgColor
radius = 40f
alpha = if (willTrigger) 1f else .2f
}
) {
Icon(
painter = painterResource(R.drawable.ic_delete),
contentDescription = null,
modifier = Modifier
.size(32.dp)
.fillMaxHeight()
.graphicsLayer {
scaleX = iconScale
scaleY = iconScale
translationX = slide.toPx()
}
)
}
}
//endregion
@@ -0,0 +1,311 @@
/*
* 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.presentation
import androidx.compose.animation.core.Animatable
import androidx.compose.animation.core.FastOutSlowInEasing
import androidx.compose.animation.core.Spring
import androidx.compose.animation.core.animateFloatAsState
import androidx.compose.animation.core.spring
import androidx.compose.animation.core.tween
import androidx.compose.foundation.background
import androidx.compose.foundation.gestures.detectDragGesturesAfterLongPress
import androidx.compose.foundation.gestures.scrollBy
import androidx.compose.foundation.lazy.LazyListState
import androidx.compose.material3.MaterialTheme
import androidx.compose.runtime.Composable
import androidx.compose.runtime.LaunchedEffect
import androidx.compose.runtime.MutableFloatState
import androidx.compose.runtime.Stable
import androidx.compose.runtime.State
import androidx.compose.runtime.getValue
import androidx.compose.runtime.mutableFloatStateOf
import androidx.compose.runtime.mutableStateOf
import androidx.compose.runtime.remember
import androidx.compose.runtime.rememberCoroutineScope
import androidx.compose.runtime.rememberUpdatedState
import androidx.compose.runtime.setValue
import androidx.compose.ui.Modifier
import androidx.compose.ui.draw.shadow
import androidx.compose.ui.graphics.graphicsLayer
import androidx.compose.ui.input.pointer.pointerInput
import androidx.compose.ui.unit.dp
import androidx.compose.ui.zIndex
import kotlinx.coroutines.CoroutineScope
import kotlinx.coroutines.delay
import kotlinx.coroutines.launch
import kotlin.time.Duration.Companion.milliseconds
/**
* Long-press drag-to-reorder for rows inside a `LazyColumn`, with built-in edge auto-scroll and
* a settle-back animation when the finger is released.
*
* Reordering only ever swaps an item with its neighbor *inside the `items` list* passed to
* [rememberDragRowState] — so multiple independent groups of rows (e.g. two sections separated
* by header items) can share one [DragReorderState]/`LazyColumn` simply by giving each section
* its own backing list and calling [rememberDragRowState] with that section's list. Keys must be
* globally unique across the whole `LazyColumn` and match exactly what is passed as the
* `key = { ... }` lambda of `items`/`itemsIndexed`.
*
* Usage:
* ```
* val dragState = rememberDragReorderState(listState)
* itemsIndexed(entries, key = { _, e -> e.id }) { index, entry ->
* val row = rememberDragRowState(dragState, entries, entry, key = { it.id }) { from, to ->
* entries.add(to, entries.removeAt(from))
* }
* Row(
* modifier = Modifier
* .dragLift(row.isLifted, row.translationY)
* .animateItem(placementSpec = if (row.isDragging) tween(0) else spring())
* ) {
* Icon(modifier = Modifier.dragHandle(row), painter = ..., contentDescription = null)
* Text(entry.label)
* }
* }
* ```
*/
@Stable
class DragReorderState internal constructor(internal val listState: LazyListState) {
internal var draggedKey by mutableStateOf<Any?>(null)
}
@Composable
fun rememberDragReorderState(listState: LazyListState): DragReorderState =
remember(listState) { DragReorderState(listState) }
/** Used for the settle-back animation once the finger is released: quick and snappy. */
private val reorderSettleSpec = tween<Float>(durationMillis = 150, easing = FastOutSlowInEasing)
/**
* Per-row drag bookkeeping, obtained via [rememberDragRowState].
*
* [dragStartOffset] is this row's viewport offset captured once at drag start, [fingerOffset] is
* the raw accumulated finger travel (used for edge auto-scroll and swap detection). [translationY]
* is derived every frame from those two plus the row's *current* live layout offset, so it
* automatically stays correct across neighbor swaps and list auto-scroll without any manual
* offset-compensation math.
*/
@Stable
class DragRowState<T> internal constructor(
private val dragState: DragReorderState,
private val itemsState: State<List<T>>,
private val itemKey: Any,
private val key: (T) -> Any,
private val onMoveState: State<(Int, Int) -> Unit>,
private val scope: CoroutineScope
) {
internal val fingerOffset: MutableFloatState = mutableFloatStateOf(0f)
internal val dragStartOffset: MutableFloatState = mutableFloatStateOf(0f)
internal val startCenterY: MutableFloatState = mutableFloatStateOf(0f)
internal val settleAnim = Animatable(0f)
var isSettling: Boolean by mutableStateOf(false)
private set
val isDragging: Boolean get() = dragState.draggedKey == itemKey
val isLifted: Boolean get() = isDragging || isSettling
val translationY: Float
get() = when {
isSettling -> settleAnim.value
isDragging -> currentTranslation()
else -> 0f
}
/**
* How far this row must be pushed away from its *current* layout slot so it stays glued to
* the finger. Because [dragStartOffset] is fixed at drag start while the row's live layout
* offset moves as neighbors swap places or the list auto-scrolls, this difference naturally
* absorbs both effects with no extra bookkeeping.
*/
private fun currentTranslation(): Float {
val liveOffset = dragState.listState.layoutInfo.visibleItemsInfo
.firstOrNull { it.key == itemKey }?.offset?.toFloat()
?: dragStartOffset.floatValue
return dragStartOffset.floatValue + fingerOffset.floatValue - liveOffset
}
internal fun onDragStart() {
isSettling = false
val layout = dragState.listState.layoutInfo.visibleItemsInfo.firstOrNull { it.key == itemKey }
dragStartOffset.floatValue = (layout?.offset ?: 0).toFloat()
startCenterY.floatValue = (layout?.offset ?: 0) + (layout?.size ?: 0) / 2f
fingerOffset.floatValue = 0f
dragState.draggedKey = itemKey
}
internal fun onDrag(deltaY: Float) {
if (dragState.draggedKey != itemKey) return
fingerOffset.floatValue += deltaY
reorderLive()
}
private fun reorderLive() {
val items = itemsState.value
val myIndex = items.indexOfFirst { key(it) == itemKey }
if (myIndex !in items.indices) return
val myCenter = startCenterY.floatValue + fingerOffset.floatValue
val visible = dragState.listState.layoutInfo.visibleItemsInfo
val onMove = onMoveState.value
// Dragging down: swap when the dragged center passes the next row's midpoint.
if (myIndex < items.lastIndex) {
val nextKey = key(items[myIndex + 1])
val next = visible.firstOrNull { it.key == nextKey }
if (next != null && myCenter > next.offset + next.size / 2f) {
onMove(myIndex, myIndex + 1)
return
}
}
// Dragging up: swap when the dragged center passes the previous row's midpoint.
if (myIndex > 0) {
val prevKey = key(items[myIndex - 1])
val prev = visible.firstOrNull { it.key == prevKey }
if (prev != null && myCenter < prev.offset + prev.size / 2f) {
onMove(myIndex, myIndex - 1)
}
}
}
// Reset the drag bookkeeping and fly the lifted row back into its slot.
// All state resets happen inside the launched block so the settle animation takes over from
// the current visual position without a one-frame jump: isSettling is flipped to true
// (switching rendering to settleAnim, already snapped to the last offset) before the drag
// flags are cleared.
internal fun onDragEnd() {
val lastOffset = currentTranslation()
if (kotlin.math.abs(lastOffset) < 1f) {
fingerOffset.floatValue = 0f
dragState.draggedKey = null
return
}
scope.launch {
settleAnim.snapTo(lastOffset)
isSettling = true
fingerOffset.floatValue = 0f
dragState.draggedKey = null
settleAnim.animateTo(0f, reorderSettleSpec)
isSettling = false
}
}
}
/**
* Remembers a [DragRowState] for one row of a drag-reorderable list.
*
* [items] must be the exact (optionally section-scoped) list backing the enclosing
* `items`/`itemsIndexed` call, and [key] must return the same value used as that call's
* `key = { ... }` lambda. Reordering only ever swaps neighbors within [items], so passing a
* section-local list is what confines dragging to one section of a multi-section `LazyColumn`.
*/
@Composable
fun <T> rememberDragRowState(
dragState: DragReorderState,
items: List<T>,
item: T,
key: (T) -> Any,
onMove: (from: Int, to: Int) -> Unit
): DragRowState<T> {
val scope = rememberCoroutineScope()
val itemsState = rememberUpdatedState(items)
val onMoveState = rememberUpdatedState(onMove)
val itemKey = key(item)
val rowState = remember(dragState, itemKey) {
DragRowState(dragState, itemsState, itemKey, key, onMoveState, scope)
}
LaunchedEffect(rowState.isDragging) {
if (!rowState.isDragging) return@LaunchedEffect
autoScrollWhileDragging(dragState.listState, rowState.startCenterY, rowState.fingerOffset)
}
return rowState
}
/** Drag-handle gesture: attach to a small handle icon to start/drive/end reordering of [rowState]'s row. */
fun Modifier.dragHandle(rowState: DragRowState<*>): Modifier = pointerInput(rowState) {
detectDragGesturesAfterLongPress(
onDragStart = { rowState.onDragStart() },
onDragEnd = { rowState.onDragEnd() },
onDragCancel = { rowState.onDragEnd() }
) { change, dragAmount ->
change.consume()
rowState.onDrag(dragAmount.y)
}
}
/**
* Visual treatment for a draggable row: while [isLifted], translates the row by [translationY],
* scales it up slightly and raises it above its neighbors with a shadow and a solid background so
* it fully covers the row beneath instead of showing a translucent overlap of both rows.
*/
@Composable
fun Modifier.dragLift(isLifted: Boolean, translationY: Float): Modifier {
val shape = MaterialTheme.shapes.small
val scale by animateFloatAsState(
targetValue = if (isLifted) 1.02f else 1f,
animationSpec = spring(stiffness = Spring.StiffnessMediumLow),
label = "dragScale"
)
return this
.graphicsLayer {
if (isLifted) {
this.translationY = translationY
scaleX = scale
scaleY = scale
}
}
.then(
if (isLifted) {
Modifier
.zIndex(1f)
.shadow(8.dp, shape, clip = false)
.background(MaterialTheme.colorScheme.surface, shape)
} else {
Modifier
}
)
}
/**
* Scrolls the list while dragging so the entry follows the finger past the viewport edges.
* The visual center is tracked independently of the entry's layout slot (which can scroll out of
* `LazyListState.layoutInfo.visibleItemsInfo` during a long drag); [startCenterY] is the entry's
* viewport center captured at drag start and [fingerOffset] is the raw finger delta. The
* resulting scroll is picked up automatically by [DragRowState.translationY] on the next frame,
* so no separate scroll-compensation bookkeeping is required here.
*/
private suspend fun autoScrollWhileDragging(
listState: LazyListState,
startCenterY: MutableFloatState,
fingerOffset: MutableFloatState
) {
val threshold = 48f
val maxSpeed = 24f
while (true) {
val info = listState.layoutInfo
val center = startCenterY.floatValue + fingerOffset.floatValue
val top = info.viewportStartOffset + threshold
val bottom = info.viewportEndOffset - threshold
val delta = when {
center < top -> -(top - center).coerceAtMost(maxSpeed)
center > bottom -> (center - bottom).coerceAtMost(maxSpeed)
else -> 0f
}
if (delta != 0f) listState.scrollBy(delta)
delay(16L.milliseconds)
}
}
@@ -46,7 +46,7 @@ data object Spacing {
val extraSmall = 6.dp val extraSmall = 6.dp
val small = 8.dp val small = 8.dp
val medium = 12.dp val medium = 12.dp
val large = 16.dp val large = 12.dp
val extraLarge = 24.dp val extraLarge = 24.dp
} }
@@ -61,8 +61,8 @@ fun MainTheme(isDarkTheme: Boolean = isSystemInDarkTheme(), content: @Composable
SideEffect { SideEffect {
val window = (view.context as ComponentActivity).window val window = (view.context as ComponentActivity).window
val insetsController = WindowCompat.getInsetsController(window, view) val insetsController = WindowCompat.getInsetsController(window, view)
insetsController.isAppearanceLightStatusBars = false insetsController.isAppearanceLightStatusBars = !isDarkTheme
insetsController.isAppearanceLightNavigationBars = false insetsController.isAppearanceLightNavigationBars = !isDarkTheme
if (Build.VERSION.SDK_INT >= Build.VERSION_CODES.Q) { if (Build.VERSION.SDK_INT >= Build.VERSION_CODES.Q) {
window.isNavigationBarContrastEnforced = false window.isNavigationBarContrastEnforced = false
} }
@@ -79,6 +79,10 @@ private val lightScheme = lightColorScheme(
onSecondary = Color(0xFFFFFFFF), onSecondary = Color(0xFFFFFFFF),
secondaryContainer = Color(0xFFF1E1BB), secondaryContainer = Color(0xFFF1E1BB),
onSecondaryContainer = Color(0xFF221B04), onSecondaryContainer = Color(0xFF221B04),
tertiary = Color(0xFF3C6FE0), // AMSAT Active (darker for light theme)
onTertiary = Color(0xFFFFFFFF),
tertiaryContainer = Color(0xFFE09800), // AMSAT Telemetry (darker)
onTertiaryContainer = Color(0xFF000000),
background = Color(0xFFFFF8F0), background = Color(0xFFFFF8F0),
onBackground = Color(0xFF1E1B13), onBackground = Color(0xFF1E1B13),
surface = Color(0xFFFFF8F0), surface = Color(0xFFFFF8F0),
@@ -101,10 +105,10 @@ private val darkScheme = darkColorScheme(
onSecondary = Color(0xFF000000), onSecondary = Color(0xFF000000),
secondaryContainer = Color(0xFF404040), // navBar indicator, secondaryContainer = Color(0xFF404040), // navBar indicator,
onSecondaryContainer = Color(0xFFE0E0E0), // navBar active icon onSecondaryContainer = Color(0xFFE0E0E0), // navBar active icon
// tertiary = Color(0xFF121212), tertiary = Color(0xFF648FFF), // AMSAT Active (from amsat.org/status)
// onTertiary = Color(0xFF121212), onTertiary = Color(0xFF000000),
// tertiaryContainer = Color(0xFF121212), tertiaryContainer = Color(0xFFFFB000), // AMSAT Telemetry
// onTertiaryContainer = Color(0xFF121212), onTertiaryContainer = Color(0xFF000000),
background = Color(0xFF121212), background = Color(0xFF121212),
onBackground = Color(0xFFE0E0E0), onBackground = Color(0xFFE0E0E0),
surface = Color(0xFF202020), // card background surface = Color(0xFF202020), // card background
@@ -24,13 +24,13 @@ import kotlinx.serialization.Serializable
sealed class Screen(val iconResId: Int, val titleResId: Int) : NavKey { sealed class Screen(val iconResId: Int, val titleResId: Int) : NavKey {
@Serializable @Serializable
data object Satellites : Screen(R.drawable.ic_satellites, R.string.nav_sat) data object Satellites : Screen(R.drawable.ic_sputnik, R.string.nav_sat)
@Serializable @Serializable
data object Passes : Screen(R.drawable.ic_passes, R.string.nav_pass) data object Passes : Screen(R.drawable.ic_passes, R.string.nav_pass)
@Serializable @Serializable
data object Radar : Screen(R.drawable.ic_radar, R.string.nav_radar) data object Status : Screen(R.drawable.ic_satellite, R.string.nav_status)
@Serializable @Serializable
data object Map : Screen(R.drawable.ic_map, R.string.nav_map) data object Map : Screen(R.drawable.ic_map, R.string.nav_map)
@@ -0,0 +1,9 @@
<vector xmlns:android="http://schemas.android.com/apk/res/android"
android:width="24dp"
android:height="24dp"
android:viewportWidth="960"
android:viewportHeight="960">
<path
android:fillColor="@android:color/white"
android:pathData="M440,520L200,520L200,440L440,440L440,200L520,200L520,440L760,440L760,520L520,520L520,760L440,760L440,520Z" />
</vector>
@@ -0,0 +1,9 @@
<vector xmlns:android="http://schemas.android.com/apk/res/android"
android:width="24dp"
android:height="24dp"
android:viewportWidth="24"
android:viewportHeight="24">
<path
android:fillColor="@android:color/white"
android:pathData="M20,9H4v2h16V9zM4,15h16v-2H4V15z" />
</vector>
@@ -0,0 +1,9 @@
<vector xmlns:android="http://schemas.android.com/apk/res/android"
android:width="24dp"
android:height="24dp"
android:viewportWidth="15"
android:viewportHeight="15">
<path
android:fillColor="@android:color/white"
android:pathData="M13.91,6.75c-1.17,2.25 -4.3,5.31 -6.07,6.94c-0.19,0.172 -0.48,0.172 -0.67,0C5.39,12.06 2.26,9 1.09,6.75C-1.48,1.8 5,-1.5 7.5,3.45C10,-1.5 16.48,1.8 13.91,6.75z" />
</vector>
@@ -1,9 +1,9 @@
<vector xmlns:android="http://schemas.android.com/apk/res/android" <vector xmlns:android="http://schemas.android.com/apk/res/android"
android:width="24dp" android:width="24dp"
android:height="24dp" android:height="24dp"
android:viewportWidth="24" android:viewportWidth="960"
android:viewportHeight="24"> android:viewportHeight="960">
<path <path
android:fillColor="@android:color/white" android:fillColor="@android:color/white"
android:pathData="M14,21c1.93,0 3.62,-1.17 4,-3l-1.75,-0.88C16,18.21 15.33,19 14,19l-4.9,0c0.83,-1 1.5,-2.34 1.5,-4c0,-0.35 -0.03,-0.69 -0.08,-1L14,14v-2l-4.18,0C9,10.42 8,9.6 8,8c0,-1.93 1.57,-3.5 3.5,-3.5c1.5,0 2.79,0.95 3.28,2.28L16.63,6c-0.8,-2.05 -2.79,-3.5 -5.13,-3.5C8.46,2.5 6,4.96 6,8c0,1.78 0.79,2.9 1.49,4L6,12v2l2.47,0c0.08,0.31 0.13,0.64 0.13,1c0,2.7 -2.6,4 -2.6,4v2H14z" /> android:pathData="M240,840L240,760Q240,760 256.5,750Q273,740 292.5,720.5Q312,701 328,670.5Q344,640 344,600Q344,589 342.5,579Q341,569 339,560L240,560L240,480L300,480Q279,447 259.5,410.5Q240,374 240,320Q240,228 304,164Q368,100 460,100Q531,100 586,139Q641,178 665,240L591,271Q576,231 540.5,205.5Q505,180 460,180Q402,180 361,221Q320,262 320,320Q320,368 344,400Q368,432 393,480L560,480L560,560L421,560Q423,569 423.5,579Q424,589 424,600Q424,650 406.5,690Q389,730 364,760L560,760Q600,760 621,739Q642,718 650,685L720,720Q709,775 663.5,807.5Q618,840 560,840L240,840Z" />
</vector> </vector>
@@ -1,9 +0,0 @@
<vector xmlns:android="http://schemas.android.com/apk/res/android"
android:width="24dp"
android:height="24dp"
android:viewportWidth="960"
android:viewportHeight="960">
<path
android:fillColor="@android:color/white"
android:pathData="M480,880Q397,880 324,848.5Q251,817 197,763Q143,709 111.5,636Q80,563 80,480Q80,397 111.5,324Q143,251 197,197Q251,143 324,111.5Q397,80 480,80L520,80L520,411Q538,422 549,439.5Q560,457 560,480Q560,513 536.5,536.5Q513,560 480,560Q447,560 423.5,536.5Q400,513 400,480Q400,457 411,439Q422,421 440,411L440,325Q388,339 354,381.5Q320,424 320,480Q320,546 367,593Q414,640 480,640Q546,640 593,593Q640,546 640,480Q640,444 625.5,413.5Q611,383 586,360L643,303Q678,336 699,381.5Q720,427 720,480Q720,580 650,650Q580,720 480,720Q380,720 310,650Q240,580 240,480Q240,390 297,323.5Q354,257 440,243L440,162Q321,177 240.5,267Q160,357 160,480Q160,614 253,707Q346,800 480,800Q614,800 707,707Q800,614 800,480Q800,411 773,351Q746,291 699,247L756,190Q813,245 846.5,319.5Q880,394 880,480Q880,563 848.5,636Q817,709 763,763Q709,817 636,848.5Q563,880 480,880Z" />
</vector>
@@ -0,0 +1,10 @@
<?xml version="1.0" encoding="utf-8"?>
<vector xmlns:android="http://schemas.android.com/apk/res/android"
android:width="24dp"
android:height="24dp"
android:viewportWidth="24"
android:viewportHeight="24">
<path
android:fillColor="@android:color/white"
android:pathData="M17.65,6.35C16.2,4.9 14.21,4 12,4c-4.42,0 -7.99,3.58 -7.99,8s3.57,8 7.99,8c3.73,0 6.84,-2.55 7.73,-6h-2.08c-0.82,2.33 -3.04,4 -5.65,4 -3.31,0 -6,-2.69 -6,-6s2.69,-6 6,-6c1.66,0 3.14,0.69 4.22,1.78L13,11h7V4l-2.35,2.35z" />
</vector>
@@ -0,0 +1,9 @@
<vector xmlns:android="http://schemas.android.com/apk/res/android"
android:width="24dp"
android:height="24dp"
android:viewportWidth="24"
android:viewportHeight="24">
<path
android:fillColor="@android:color/white"
android:pathData="M13,3c-4.97,0 -9,4.03 -9,9L1,12l3.89,3.89 0.07,0.14L9,12L6,12c0,-3.87 3.13,-7 7,-7s7,3.13 7,7 -3.13,7 -7,7c-1.93,0 -3.68,-0.79 -4.94,-2.06l-1.42,1.42C8.27,19.99 10.51,21 13,21c4.97,0 9,-4.03 9,-9s-4.03,-9 -9,-9zM12,8v5l4.28,2.54 0.72,-1.21 -3.5,-2.08L13.5,8L12,8z" />
</vector>
@@ -0,0 +1,31 @@
<vector xmlns:android="http://schemas.android.com/apk/res/android"
android:width="24dp"
android:height="24dp"
android:viewportWidth="128"
android:viewportHeight="128">
<path
android:pathData="m105.14,114.12a2.86,2.86 90,0 0,1.7 -0.85l19.33,-19.33a2.86,2.86 90,0 0,-0 -4.03l-26.58,-26.62a2.86,2.86 90,0 0,-1.84 -0.81l-7.92,-0.63 5.77,-5.77a2.86,2.86 90,0 0,-0 -4.03l-19.6,-19.64a2.86,2.86 90,0 0,-4.07 -0l-5.77,5.77 -0.63,-7.92a2.86,2.86 90,0 0,-0.81 -1.83l-26.63,-26.58a2.86,2.86 90,0 0,-4.07 -0l-19.29,19.29a2.86,2.86 90,0 0,-0 4.07l26.58,26.62a2.86,2.86 90,0 0,1.83 0.81l7.92,0.63 -5.77,5.77a2.86,2.86 90,0 0,-0 4.07l19.6,19.6a2.86,2.86 90,0 0,4.07 -0l5.77,-5.77 0.63,7.92a2.86,2.86 90,0 0,0.81 1.83l26.63,26.58a2.86,2.86 90,0 0,2.06 0.85,2.86 2.86,90 0,0 0.27,-0zM104.82,107.23 L80.97,83.38 80.16,72.69 85.58,67.27 96.28,68.12 120.13,91.93zM55.33,47.85 L44.63,47 20.78,23.19 36.08,7.89 59.89,31.74 60.74,42.44z"
android:fillColor="#ffffff"
android:strokeColor="#00000000"
android:fillType="evenOdd"/>
<path
android:pathData="m62.65,115.81a2.86,2.86 90,1 0,-0 -5.73c-11.46,-0 -22.88,-4.35 -31.63,-13.11 -8.74,-8.74 -13.1,-20.17 -13.1,-31.61a2.86,2.86 90,1 0,-5.73 -0c-0,12.9 4.94,25.83 14.77,35.66 9.85,9.85 22.77,14.78 35.68,14.78z"
android:fillColor="#ffffff"
android:strokeColor="#00000000"
android:fillType="evenOdd"/>
<path
android:pathData="m62.65,127a2.86,2.86 90,1 0,-0 -5.73c-14.32,-0 -28.61,-5.44 -39.55,-16.37 -10.93,-10.93 -16.38,-25.23 -16.38,-39.54a2.86,2.86 90,1 0,-5.73 -0c-0,15.76 6.03,31.56 18.06,43.59 12.03,12.03 27.82,18.05 43.6,18.05z"
android:fillColor="#ffffff"
android:strokeColor="#00000000"
android:fillType="evenOdd"/>
<path
android:pathData="m62.65,104.7a2.86,2.86 90,1 0,-0 -5.73c-8.62,-0 -17.2,-3.26 -23.78,-9.84 -6.58,-6.58 -9.86,-15.17 -9.86,-23.77a2.86,2.86 90,1 0,-5.73 -0c-0,10.06 3.86,20.15 11.53,27.82 7.67,7.67 17.76,11.52 27.83,11.52z"
android:fillColor="#ffffff"
android:strokeColor="#00000000"
android:fillType="evenOdd"/>
<path
android:pathData="m62.65,93.48a2.86,2.86 90,1 0,-0 -5.73c-5.74,-0 -11.45,-2.17 -15.84,-6.56 -4.38,-4.38 -6.56,-10.1 -6.56,-15.83a2.86,2.86 90,1 0,-5.73 -0c-0,7.19 2.76,14.41 8.24,19.88 5.48,5.48 12.69,8.23 19.89,8.23z"
android:fillColor="#ffffff"
android:strokeColor="#00000000"
android:fillType="evenOdd"/>
</vector>
@@ -1,9 +0,0 @@
<vector xmlns:android="http://schemas.android.com/apk/res/android"
android:width="24dp"
android:height="24dp"
android:viewportWidth="960"
android:viewportHeight="960">
<path
android:fillColor="@android:color/white"
android:pathData="M240,800L280,640L120,640L140,560L300,560L340,400L180,400L200,320L360,320L400,160L480,160L440,320L600,320L640,160L720,160L680,320L840,320L820,400L660,400L620,560L780,560L760,640L600,640L560,800L480,800L520,640L360,640L320,800L240,800ZM380,560L540,560L580,400L420,400L380,560Z" />
</vector>
@@ -13,12 +13,16 @@
<string name="nav_prefs">Ajustes</string> <string name="nav_prefs">Ajustes</string>
<!-- Satellites screen --> <!-- Satellites screen -->
<string name="sat_type_hint">Tipo: %s</string> <string name="sat_type_hint">Modos: %s</string>
<string name="sat_type_title">Seleccionar tipo de satélite</string> <string name="sat_type_title">Seleccionar modos</string>
<string name="sat_search_hint">Id - Nombre</string> <string name="sat_search_hint">Id - Nombre</string>
<string name="sat_search_clear">Vaciar</string> <string name="sat_search_clear">Vaciar</string>
<string name="sat_clear_all">Vaciar todo</string> <string name="sat_clear_all">Vaciar todo</string>
<string name="sat_select_all">Seleccionar todo</string> <string name="sat_select_all">Seleccionar todo</string>
<string name="sat_group_selected">Seleccionados</string>
<string name="sat_group_available">Disponibles</string>
<string name="sat_group_selected_count">Seleccionados (%1$d)</string>
<string name="sat_group_available_count">Disponibles (%1$d)</string>
<string name="sat_empty_list_message"> <string name="sat_empty_list_message">
Asegúrese de que su consulta de búsqueda sea correcta y que la base de datos esté actualizada</string> Asegúrese de que su consulta de búsqueda sea correcta y que la base de datos esté actualizada</string>
<string name="sat_warning_title">Alarma\!</string> <string name="sat_warning_title">Alarma\!</string>
@@ -26,13 +30,16 @@
Esta aplicación incluye más de 9000 satélites. Esta aplicación incluye más de 9000 satélites.
No tiene sentido rastrearlos todos a la vez. No tiene sentido rastrearlos todos a la vez.
\n\nIntenta siempre limitar la lista a los que te \n\nIntenta siempre limitar la lista a los que te
interesen mediante la búsqueda y el selector de tipos.</string> interesen mediante la búsqueda y el selector de modos.</string>
<!-- Passes screen --> <!-- Passes screen -->
<string name="pass_filter_title">Filtrar pases</string> <string name="pass_filter_title">Filtrar pases</string>
<string name="pass_filter_elev">Elevación mínima</string> <string name="pass_filter_elev">Elevación mínima</string>
<string name="pass_filter_hours">Horas por delante</string> <string name="pass_filter_hours">Tiempo por delante</string>
<string name="pass_modes_title">Tipo de modulación</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>
<string name="pass_modes_title">Seleccionar modos</string>
<string name="pass_elevation">Elevación: %.1f°</string> <string name="pass_elevation">Elevación: %.1f°</string>
<string name="pass_altitude">Altitud: %.0f km</string> <string name="pass_altitude">Altitud: %.0f km</string>
<string name="pass_empty_list_message"> <string name="pass_empty_list_message">
@@ -93,11 +100,11 @@
<string name="prefs_loc_qth_title">QTH</string> <string name="prefs_loc_qth_title">QTH</string>
<string name="prefs_loc_qth_error">Ubicación QTH no válida</string> <string name="prefs_loc_qth_error">Ubicación QTH no válida</string>
<string name="prefs_loc_success">Ubicación actualizada con éxito</string> <string name="prefs_loc_success">Ubicación actualizada con éxito</string>
<string name="prefs_station_title">Ajustar ubicaicón de la estación</string> <string name="prefs_station_title">Ubicación de la estación</string>
<string name="prefs_station_lat_text">Latitud de tu estación terrestre</string> <string name="prefs_station_lat_text">Latitud de estación</string>
<string name="prefs_station_lon_text">Longitud de tu estación terrestre</string> <string name="prefs_station_lon_text">Longitud de estación</string>
<string name="prefs_locator_title">Ajustes ubicación QTH</string> <string name="prefs_locator_title">Localizador QTH</string>
<string name="prefs_locator_text">Ajustar posición de la estación con tu ubicación</string> <string name="prefs_locator_text">Posición por localizador</string>
<string name="prefs_data_title">Datos satelitales</string> <string name="prefs_data_title">Datos satelitales</string>
<string name="prefs_data_entries">Satélites: %s</string> <string name="prefs_data_entries">Satélites: %s</string>
@@ -107,38 +114,65 @@
<string name="prefs_data_clear">Vaciar</string> <string name="prefs_data_clear">Vaciar</string>
<string name="prefs_data_clear_success">Datos eliminados con éxito</string> <string name="prefs_data_clear_success">Datos eliminados con éxito</string>
<string name="prefs_data_update_success">Actualización completada con éxito</string> <string name="prefs_data_update_success">Actualización completada con éxito</string>
<string name="prefs_data_import_satellites_error">No se importaron satélites. Usa un TLE/3LE (.txt) u OMM (.csv) válido.</string>
<string name="prefs_data_import_transceivers_error">No se importaron transceptores. Usa un SatNOGS (.json) válido.</string>
<string name="prefs_data_sources_title">Custom data sources</string> <string name="prefs_data_sources_title">Fuentes personalizadas</string>
<string name="prefs_data_sources_tle_switch">Custom TLE URL</string> <string name="prefs_data_sources_restore">Restaurar fuentes predeterminadas</string>
<string name="prefs_data_sources_transceivers_switch">Custom transceivers URL</string> <string name="prefs_data_sources_sat_title">Datos de satélites</string>
<string name="prefs_data_sources_transceivers_title">Datos de transceptores</string>
<string name="prefs_data_sources_sat_hint">Prioridad arriba: nombres de satélites</string>
<string name="prefs_data_sources_transceivers_hint">Prioridad arriba: datos de transceptores</string>
<string name="prefs_data_sources_tle_switch">URL TLE</string>
<string name="prefs_data_sources_transceivers_switch">URL transceptores</string>
<string name="prefs_data_sources_url_title" translatable="false">URL (HTTPS)</string>
<string name="prefs_data_output_title">Data output</string> <string name="prefs_data_output_title">Salida de datos</string>
<string name="prefs_net_output">Network</string> <string name="prefs_net_output">Red</string>
<string name="prefs_bt_output">Bluetooth</string> <string name="prefs_bt_output">Bluetooth</string>
<string name="prefs_cat_output">CAT</string>
<string name="prefs_net_title">Salida de datos de red</string> <string name="nav_radiocontrol">Control de radio</string>
<string name="prefs_net_rotator_switch">Enable rotation output</string> <string name="rc_settings_title">Control CAT</string>
<string name="rc_radio_model">Modelo de radio</string>
<string name="rc_tx_device_hint">Dirección BT TX</string>
<string name="rc_rx_device_hint">Dirección BT RX</string>
<string name="rc_tx_name_hint">Nombre radio TX</string>
<string name="rc_rx_name_hint">Nombre radio RX</string>
<string name="rc_enable_switch">Activar CAT</string>
<string name="prefs_net_title">Salida de red</string>
<string name="prefs_net_rotator_switch">Activar salida de rotación</string>
<string name="prefs_net_rotator_address_hint">IP:Puerto</string> <string name="prefs_net_rotator_address_hint">IP:Puerto</string>
<string name="prefs_net_rotator_format_hint">Formato de datos</string> <string name="prefs_net_rotator_format_hint">Formato de datos</string>
<string name="prefs_net_frequency_switch">Enable frequency output</string> <string name="prefs_net_frequency_switch">Activar salida de frecuencia</string>
<string name="prefs_net_frequency_address_hint">IP:Puerto</string> <string name="prefs_net_frequency_address_hint">IP:Puerto</string>
<string name="prefs_net_frequency_format_hint">Formato de datos</string> <string name="prefs_net_frequency_format_hint">Formato de datos</string>
<string name="prefs_bt_title">Salida por Bluetooth</string> <string name="prefs_bt_title">Salida Bluetooth</string>
<string name="prefs_bt_rotator_switch">Enable rotation output</string> <string name="prefs_bt_rotator_switch">Activar salida de rotación</string>
<string name="prefs_bt_rotator_device_hint">Id dispositivo</string> <string name="prefs_bt_rotator_device_hint">ID dispositivo</string>
<string name="prefs_bt_rotator_output_hint">Formato de datos</string> <string name="prefs_bt_rotator_output_hint">Formato</string>
<string name="prefs_bt_frequency_switch">Enable frequency output</string> <string name="prefs_bt_frequency_switch">Activar salida de frecuencia</string>
<string name="prefs_bt_frequency_device_hint">Id dispositivo</string> <string name="prefs_bt_frequency_device_hint">ID dispositivo</string>
<string name="prefs_bt_frequency_output_hint">Formato de datos</string> <string name="prefs_bt_frequency_output_hint">Formato</string>
<string name="prefs_bt_perm_error">Revisa los permisos de Bluetooth</string> <string name="prefs_bt_perm_error">Revisa los permisos de Bluetooth</string>
<string name="prefs_net_perm_error">Revisa los permisos de red</string> <string name="prefs_net_perm_error">Revisa los permisos de red</string>
<string name="prefs_other_title">Otros ajustes</string> <string name="prefs_other_title">Otros</string>
<string name="prefs_other_switch_utc">Mostrar tiempos de pase en UTC</string> <string name="prefs_other_switch_utc">Hora UTC</string>
<string name="prefs_other_switch_update">Habilitar auto actualización de datos</string> <string name="prefs_other_switch_update">Auto-actualizar</string>
<string name="prefs_other_switch_sweep">Habilitar animaciones radar</string> <string name="prefs_other_switch_sweep">Animación radar</string>
<string name="prefs_other_switch_sensors">Usar sensores para rotar vista de radar</string> <string name="prefs_other_switch_sensors">Sensores</string>
<string name="prefs_other_switch_night_mode">Filtro nocturno</string>
<string name="prefs_other_switch_light_theme">Tema claro</string>
<string name="prefs_other_compass_offset_az">Desfase de brújula (ácimut)</string>
<string name="prefs_other_compass_offset_elev">Desfase de brújula (elevación)</string>
<string name="prefs_highlight_title">Resaltado de elevación</string>
<string name="prefs_highlight_low">Baja &lt; %1$d°</string>
<string name="prefs_highlight_mid">Media %1$d-%2$d°</string>
<string name="prefs_highlight_high">Alta &gt; %1$d°</string>
<string name="prefs_outro_title">Me gustaría dar las gracias a:</string> <string name="prefs_outro_title">Me gustaría dar las gracias a:</string>
<string name="prefs_outro_license">La app viene sin garantías de ningún tipo.</string> <string name="prefs_outro_license">La app viene sin garantías de ningún tipo.</string>
@@ -13,25 +13,32 @@
<string name="nav_prefs">Настройки</string> <string name="nav_prefs">Настройки</string>
<!-- Satellites screen --> <!-- Satellites screen -->
<string name="sat_type_hint">Тип: %s</string> <string name="sat_type_hint">Режимы: %s</string>
<string name="sat_type_title">Выберите тип спутника</string> <string name="sat_type_title">Выберите режимы</string>
<string name="sat_search_hint">Id - Название</string> <string name="sat_search_hint">Id - Название</string>
<string name="sat_search_clear">Очистить</string> <string name="sat_search_clear">Очистить</string>
<string name="sat_clear_all">Очистить</string> <string name="sat_clear_all">Очистить</string>
<string name="sat_select_all">Выбрать</string> <string name="sat_select_all">Выбрать</string>
<string name="sat_group_selected">Выбранные</string>
<string name="sat_group_available">Доступные</string>
<string name="sat_group_selected_count">Выбранные (%1$d)</string>
<string name="sat_group_available_count">Доступные (%1$d)</string>
<string name="sat_empty_list_message">Убедитесь, что ваш поисковый запрос верен и база данных обновлена</string> <string name="sat_empty_list_message">Убедитесь, что ваш поисковый запрос верен и база данных обновлена</string>
<string name="sat_warning_title">Внимание\!</string> <string name="sat_warning_title">Внимание\!</string>
<string name="sat_warning_message"> <string name="sat_warning_message">
В этом приложении перечислено более 9000 спутников. В этом приложении перечислено более 9000 спутников.
Отслеживать их все одновременно бессмысленно. Отслеживать их все одновременно бессмысленно.
\n\nВсегда старайтесь сузить список до тех, \n\nВсегда старайтесь сузить список до тех,
которые вас интересуют, используя поиск и селектор типов.</string> которые вас интересуют, используя поиск и выбор режимов.</string>
<!-- Passes screen --> <!-- Passes screen -->
<string name="pass_filter_title">Фильтровать пролеты</string> <string name="pass_filter_title">Фильтровать пролеты</string>
<string name="pass_filter_elev">Минимальная элевация</string> <string name="pass_filter_elev">Минимальная элевация</string>
<string name="pass_filter_hours">Количество часов</string> <string name="pass_filter_hours">Период расчёта</string>
<string name="pass_modes_title">Выберите тип модуляции</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>
<string name="pass_modes_title">Выберите режимы</string>
<string name="pass_elevation">Элевация: %.1f°</string> <string name="pass_elevation">Элевация: %.1f°</string>
<string name="pass_altitude">Высота: %d км</string> <string name="pass_altitude">Высота: %d км</string>
<string name="pass_empty_list_message"> <string name="pass_empty_list_message">
@@ -92,11 +99,11 @@
<string name="prefs_loc_qth_title">QTH</string> <string name="prefs_loc_qth_title">QTH</string>
<string name="prefs_loc_qth_error">Неправильный локатор QTH</string> <string name="prefs_loc_qth_error">Неправильный локатор QTH</string>
<string name="prefs_loc_success">Позиция успешно обновлена</string> <string name="prefs_loc_success">Позиция успешно обновлена</string>
<string name="prefs_station_title">Настройки местоположения</string> <string name="prefs_station_title">Положение станции</string>
<string name="prefs_station_lat_text">Введите широту наземной станции</string> <string name="prefs_station_lat_text">Широта станции</string>
<string name="prefs_station_lon_text">Введите долготу наземной станции</string> <string name="prefs_station_lon_text">Долгота станции</string>
<string name="prefs_locator_title">Настройки локатора QTH</string> <string name="prefs_locator_title">Локатор QTH</string>
<string name="prefs_locator_text">Введите позицию через локатор</string> <string name="prefs_locator_text">Позиция по локатору</string>
<string name="prefs_data_title">Данные спутников</string> <string name="prefs_data_title">Данные спутников</string>
<string name="prefs_data_entries">Спутников: %s</string> <string name="prefs_data_entries">Спутников: %s</string>
@@ -106,16 +113,35 @@
<string name="prefs_data_clear">Очистить</string> <string name="prefs_data_clear">Очистить</string>
<string name="prefs_data_clear_success">Очистка прошла успешно</string> <string name="prefs_data_clear_success">Очистка прошла успешно</string>
<string name="prefs_data_update_success">Обновление прошло успешно</string> <string name="prefs_data_update_success">Обновление прошло успешно</string>
<string name="prefs_data_import_satellites_error">Спутники не импортированы. Нужен TLE/3LE (.txt) или OMM (.csv).</string>
<string name="prefs_data_import_transceivers_error">Трансиверы не импортированы. Нужен SatNOGS (.json).</string>
<string name="prefs_data_sources_title">Свои источники данных</string> <string name="prefs_data_sources_title">Свои источники</string>
<string name="prefs_data_sources_tle_switch">Custom TLE URL</string> <string name="prefs_data_sources_restore">Восстановить источники по умолчанию</string>
<string name="prefs_data_sources_transceivers_switch">Custom Transceivers URL</string> <string name="prefs_data_sources_sat_title">Данные спутников</string>
<string name="prefs_data_sources_transceivers_title">Данные трансиверов</string>
<string name="prefs_data_sources_sat_hint">Приоритет сверху: названия спутников</string>
<string name="prefs_data_sources_transceivers_hint">Приоритет сверху: данные трансиверов</string>
<string name="prefs_data_sources_tle_switch">URL TLE</string>
<string name="prefs_data_sources_transceivers_switch">URL трансиверов</string>
<string name="prefs_data_sources_url_title" translatable="false">URL (HTTPS)</string>
<string name="prefs_data_output_title">Вывод данных</string> <string name="prefs_data_output_title">Вывод</string>
<string name="prefs_net_output">Сеть</string> <string name="prefs_net_output">Сеть</string>
<string name="prefs_bt_output">Bluetooth</string> <string name="prefs_bt_output">Bluetooth</string>
<string name="prefs_cat_output">CAT</string>
<string name="prefs_net_title">Вывод сетевых данных</string> <string name="nav_radiocontrol">Управление радио</string>
<string name="rc_settings_title">CAT управление</string>
<string name="rc_radio_model">Модель радио</string>
<string name="rc_tx_device_hint">BT адрес TX</string>
<string name="rc_rx_device_hint">BT адрес RX</string>
<string name="rc_tx_name_hint">Имя радио TX</string>
<string name="rc_rx_name_hint">Имя радио RX</string>
<string name="rc_enable_switch">Включить CAT</string>
<string name="prefs_net_title">Сетевой вывод</string>
<string name="prefs_net_rotator_switch">Включить вывод ротатора</string> <string name="prefs_net_rotator_switch">Включить вывод ротатора</string>
<string name="prefs_net_rotator_address_hint">IP:Порт</string> <string name="prefs_net_rotator_address_hint">IP:Порт</string>
<string name="prefs_net_rotator_format_hint">Формат</string> <string name="prefs_net_rotator_format_hint">Формат</string>
@@ -123,21 +149,30 @@
<string name="prefs_net_frequency_address_hint">IP:Порт</string> <string name="prefs_net_frequency_address_hint">IP:Порт</string>
<string name="prefs_net_frequency_format_hint">Формат</string> <string name="prefs_net_frequency_format_hint">Формат</string>
<string name="prefs_bt_title">Вывод данных Bluetooth</string> <string name="prefs_bt_title">Вывод Bluetooth</string>
<string name="prefs_bt_rotator_switch">Включить вывод ротатора</string> <string name="prefs_bt_rotator_switch">Включить вывод ротатора</string>
<string name="prefs_bt_rotator_device_hint">Id устройства</string> <string name="prefs_bt_rotator_device_hint">ID устройства</string>
<string name="prefs_bt_rotator_output_hint">Формат</string> <string name="prefs_bt_rotator_output_hint">Формат</string>
<string name="prefs_bt_frequency_switch">Включить вывод частоты</string> <string name="prefs_bt_frequency_switch">Включить вывод частоты</string>
<string name="prefs_bt_frequency_device_hint">Id устройства</string> <string name="prefs_bt_frequency_device_hint">ID устройства</string>
<string name="prefs_bt_frequency_output_hint">Формат</string> <string name="prefs_bt_frequency_output_hint">Формат</string>
<string name="prefs_bt_perm_error">Нет разрешения использовать bluetooth</string> <string name="prefs_bt_perm_error">Нет разрешения использовать bluetooth</string>
<string name="prefs_net_perm_error">Нет разрешения использовать сеть</string> <string name="prefs_net_perm_error">Нет разрешения использовать сеть</string>
<string name="prefs_other_title">Другие настройки</string> <string name="prefs_other_title">Прочее</string>
<string name="prefs_other_switch_utc">Показывать время по UTC</string> <string name="prefs_other_switch_utc">Время в UTC</string>
<string name="prefs_other_switch_update">Обновлять данные автоматически</string> <string name="prefs_other_switch_update">Автообновление</string>
<string name="prefs_other_switch_sweep">Показывать анимацию радара</string> <string name="prefs_other_switch_sweep">Анимация радара</string>
<string name="prefs_other_switch_sensors">Использовать сенсоры устройства</string> <string name="prefs_other_switch_sensors">Сенсоры</string>
<string name="prefs_other_switch_night_mode">Ночной фильтр</string>
<string name="prefs_other_switch_light_theme">Светлая тема</string>
<string name="prefs_other_compass_offset_az">Смещение компаса (азимут)</string>
<string name="prefs_other_compass_offset_elev">Смещение компаса (элевация)</string>
<string name="prefs_highlight_title">Подсветка высоты</string>
<string name="prefs_highlight_low">Низко &lt; %1$d°</string>
<string name="prefs_highlight_mid">Средне %1$d-%2$d°</string>
<string name="prefs_highlight_high">Высоко &gt; %1$d°</string>
<string name="prefs_outro_title">Я хотел бы сказать спасибо:</string> <string name="prefs_outro_title">Я хотел бы сказать спасибо:</string>
<string name="prefs_outro_license">Это ПО поставляется без гарантий.</string> <string name="prefs_outro_license">Это ПО поставляется без гарантий.</string>
@@ -13,26 +13,33 @@
<string name="nav_prefs">පසුතල</string> <string name="nav_prefs">පසුතල</string>
<!-- Satellites screen --> <!-- Satellites screen -->
<string name="sat_type_hint">වර්ගය: %s</string> <string name="sat_type_hint">මාදිලි: %s</string>
<string name="sat_type_title">චන්ද්‍රිකා ආකාරය තෝරන්න</string> <string name="sat_type_title">මාදිලි තෝරන්න</string>
<string name="sat_search_hint">Id - නම</string> <string name="sat_search_hint">Id - නම</string>
<string name="sat_search_clear">පිරිසිදු ක°</string> <string name="sat_search_clear">පිරිසිදු ක°</string>
<string name="sat_clear_all">සියල්ල පිරිසිදු ක°</string> <string name="sat_clear_all">සියල්ල පිරිසිදු ක°</string>
<string name="sat_select_all">සියල්ල තෝරන්න</string> <string name="sat_select_all">සියල්ල තෝරන්න</string>
<string name="sat_group_selected">තෝරාගත්</string>
<string name="sat_group_available">තිබෙන</string>
<string name="sat_group_selected_count">තෝරාගත් (%1$d)</string>
<string name="sat_group_available_count">තිබෙන (%1$d)</string>
<string name="sat_empty_list_message"> <string name="sat_empty_list_message">
ඔබගේ සෙවුම් විමසුම නිවැරදි බවත් දත්ත සමුදාය යාවත්කාලීන කර ඇති බවත් සහතික කර ගන්න</string> ඔබගේ සෙවුම් විමසුම නිවැරදි බවත් දත්ත සමුදාය යාවත්කාලීන කර ඇති බවත් සහතික කර ගන්න</string>
<string name="sat_warning_title">අවවාදයයි\!</string> <string name="sat_warning_title">අවවාදයයි\!</string>
<string name="sat_warning_message"> <string name="sat_warning_message">
මෙම යෙදුමේ ලැයිස්තුගත කර ඇති චන්ද්‍රිකා 9000 කට වඩා තිබේ. මෙම යෙදුමේ ලැයිස්තුගත කර ඇති චන්ද්‍රිකා 9000 කට වඩා තිබේ.
ඒවා සියල්ලම එකවර නිරීක්ෂණය කිරීම තේරුමක් නැති දෙයක්. ඒවා සියල්ලම එකවර නිරීක්ෂණය කිරීම තේරුමක් නැති දෙයක්.
\n\nසෙවීම සහ වර්ග තේරීම හරහා ඔබ උනන්දුවක් දක්වන \n\nසෙවීම සහ මාදිලි තේරීම හරහා ඔබ උනන්දුවක් දක්වන
ඒවාට පමණක් ලැයිස්තුව පටු කිරීමට සැමවිටම උත්සාහ කරන්න.</string> ඒවාට පමණක් ලැයිස්තුව පටු කිරීමට සැමවිටම උත්සාහ කරන්න.</string>
<!-- Passes screen --> <!-- Passes screen -->
<string name="pass_filter_title">පසුකිරිම් පිරිපහදුව</string> <string name="pass_filter_title">පසුකිරිම් පිරිපහදුව</string>
<string name="pass_filter_elev">අවම උත්තෝලනය</string> <string name="pass_filter_elev">අවම උත්තෝලනය</string>
<string name="pass_filter_hours">ඉදිරි පැය</string> <string name="pass_filter_hours">ඉදිරි කාලය</string>
<string name="pass_modes_title">මූර්ජන ආකාරය තෝරන්න</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>
<string name="pass_modes_title">මූර්ජන තෝරන්න</string>
<string name="pass_elevation">උත්තෝලනය: %.1f°</string> <string name="pass_elevation">උත්තෝලනය: %.1f°</string>
<string name="pass_altitude">උන්නතාශය: %d km</string> <string name="pass_altitude">උන්නතාශය: %d km</string>
<string name="pass_empty_list_message"> <string name="pass_empty_list_message">
@@ -93,11 +100,11 @@
<string name="prefs_loc_qth_title">QTH</string> <string name="prefs_loc_qth_title">QTH</string>
<string name="prefs_loc_qth_error">QTH locator වලංගු නොවේ</string> <string name="prefs_loc_qth_error">QTH locator වලංගු නොවේ</string>
<string name="prefs_loc_success">පිහිටීම යාවත්කාලීනය සාර්ථකයි</string> <string name="prefs_loc_success">පිහිටීම යාවත්කාලීනය සාර්ථකයි</string>
<string name="prefs_station_title">පොළෙහි පිහිටීම් පසුතල</string> <string name="prefs_station_title">පොළ පිහිටීම</string>
<string name="prefs_station_lat_text">ඔබගේ පොළෙහි අක්‍ෂාංශය සකසන්න</string> <string name="prefs_station_lat_text">පොළ අක්‍ෂාංශය</string>
<string name="prefs_station_lon_text">ඔබගේ පොළෙහි දේශාංශය සකසන්න</string> <string name="prefs_station_lon_text">පොළ දේශාංශය</string>
<string name="prefs_locator_title">QTH locator පසුතල</string> <string name="prefs_locator_title">QTH locator</string>
<string name="prefs_locator_text"> ඔබගේ locator භාවිතා කර පොළහි පිහිටීම සකසන්න</string> <string name="prefs_locator_text">locator මඟින් පොළ පිහිටීම සකසන්න</string>
<string name="prefs_data_title">චන්ද්‍රිකා දත්ත</string> <string name="prefs_data_title">චන්ද්‍රිකා දත්ත</string>
<string name="prefs_data_entries">චන්ද්‍රිකා: %s</string> <string name="prefs_data_entries">චන්ද්‍රිකා: %s</string>
@@ -107,38 +114,65 @@
<string name="prefs_data_clear">පිරිසිදු ක°</string> <string name="prefs_data_clear">පිරිසිදු ක°</string>
<string name="prefs_data_clear_success">දත්ත ඉවත් කිරීම සාර්ථකයි</string> <string name="prefs_data_clear_success">දත්ත ඉවත් කිරීම සාර්ථකයි</string>
<string name="prefs_data_update_success">යාවත්කාලීනය සම්පූර්ණ කිරීම සාර්ථකයි</string> <string name="prefs_data_update_success">යාවත්කාලීනය සම්පූර්ණ කිරීම සාර්ථකයි</string>
<string name="prefs_data_import_satellites_error">චන්ද්‍රිකා ආයාත නොවීය. වලංගු TLE/3LE (.txt) හෝ OMM (.csv) ගොනුවක් තෝරන්න.</string>
<string name="prefs_data_import_transceivers_error">සම්ප්‍රේෂක ආයාත නොවීය. වලංගු SatNOGS (.json) ගොනුවක් තෝරන්න.</string>
<string name="prefs_data_sources_title">Custom data sources</string> <string name="prefs_data_sources_title">අභිරුචි මූලාශ්‍ර</string>
<string name="prefs_data_sources_tle_switch">Custom TLE URL</string> <string name="prefs_data_sources_restore">පෙරනිමි මූලාශ්‍ර ප්‍රතිස්ථාපනය කරන්න</string>
<string name="prefs_data_sources_transceivers_switch">Custom transceivers URL</string> <string name="prefs_data_sources_sat_title">චන්ද්‍රිකා දත්ත</string>
<string name="prefs_data_sources_transceivers_title">සම්ප්‍රේෂක දත්ත</string>
<string name="prefs_data_sources_sat_hint">ඉහළ ප්‍රමුඛතාව: චන්ද්‍රිකා නම්</string>
<string name="prefs_data_sources_transceivers_hint">ඉහළ ප්‍රමුඛතාව: සම්ප්‍රේෂක දත්ත</string>
<string name="prefs_data_sources_tle_switch">TLE URL</string>
<string name="prefs_data_sources_transceivers_switch">Transceivers URL</string>
<string name="prefs_data_sources_url_title" translatable="false">URL (HTTPS)</string>
<string name="prefs_data_output_title">Data output</string> <string name="prefs_data_output_title">දත්ත ප්‍රතිදානය</string>
<string name="prefs_net_output">Network</string> <string name="prefs_net_output">ජාලය</string>
<string name="prefs_bt_output">Bluetooth</string> <string name="prefs_bt_output">Bluetooth</string>
<string name="prefs_cat_output">CAT</string>
<string name="nav_radiocontrol">රේඩියෝ පාලනය</string>
<string name="rc_settings_title">CAT පාලනය</string>
<string name="rc_radio_model">රේඩියෝ මාදිලිය</string>
<string name="rc_tx_device_hint">TX BT ලිපිනය</string>
<string name="rc_rx_device_hint">RX BT ලිපිනය</string>
<string name="rc_tx_name_hint">TX රේඩියෝ නම</string>
<string name="rc_rx_name_hint">RX රේඩියෝ නම</string>
<string name="rc_enable_switch">CAT සබල කරන්න</string>
<string name="prefs_net_title">ජාල ප්‍රතිදානය</string> <string name="prefs_net_title">ජාල ප්‍රතිදානය</string>
<string name="prefs_net_rotator_switch">Enable rotation output</string> <string name="prefs_net_rotator_switch">Rotation ප්‍රතිදානය සබල කරන්න</string>
<string name="prefs_net_rotator_address_hint">IP:Port</string> <string name="prefs_net_rotator_address_hint">IP:Port</string>
<string name="prefs_net_rotator_format_hint">දත්ත අකාරය</string> <string name="prefs_net_rotator_format_hint">දත්ත ආකෘතිය</string>
<string name="prefs_net_frequency_switch">Enable frequency output</string> <string name="prefs_net_frequency_switch">Frequency ප්‍රතිදානය සබල කරන්න</string>
<string name="prefs_net_frequency_address_hint">IP:Port</string> <string name="prefs_net_frequency_address_hint">IP:Port</string>
<string name="prefs_net_frequency_format_hint">දත්ත අකාරය</string> <string name="prefs_net_frequency_format_hint">දත්ත ආකෘතිය</string>
<string name="prefs_bt_title">Bluetooth දත්ත ප්‍රතිදානය</string> <string name="prefs_bt_title">Bluetooth ප්‍රතිදානය</string>
<string name="prefs_bt_rotator_switch">Enable rotation output</string> <string name="prefs_bt_rotator_switch">Rotation ප්‍රතිදානය සබල කරන්න</string>
<string name="prefs_bt_rotator_device_hint">උපාංග id</string> <string name="prefs_bt_rotator_device_hint">උපාංග ID</string>
<string name="prefs_bt_rotator_output_hint">දත්ත අකාරය</string> <string name="prefs_bt_rotator_output_hint">දත්ත ආකෘතිය</string>
<string name="prefs_bt_frequency_switch">Enable frequency output</string> <string name="prefs_bt_frequency_switch">Frequency ප්‍රතිදානය සබල කරන්න</string>
<string name="prefs_bt_frequency_device_hint">උපාංග id</string> <string name="prefs_bt_frequency_device_hint">උපාංග ID</string>
<string name="prefs_bt_frequency_output_hint">දත්ත අකාරය</string> <string name="prefs_bt_frequency_output_hint">දත්ත ආකෘතිය</string>
<string name="prefs_bt_perm_error">Bluetooth අවසර පරික්‍ෂා ක°</string> <string name="prefs_bt_perm_error">Bluetooth අවසර පරික්‍ෂා ක°</string>
<string name="prefs_net_perm_error">Network අවසර පරික්‍ෂා කරන්න</string> <string name="prefs_net_perm_error">Network අවසර පරික්‍ෂා කරන්න</string>
<string name="prefs_other_title">වෙනත් සැකසුම්</string> <string name="prefs_other_title">වෙනත්</string>
<string name="prefs_other_switch_utc">පසුකර වේලාවන් UTC මගින්</string> <string name="prefs_other_switch_utc">UTC වේලාව</string>
<string name="prefs_other_switch_update">ස්වයං දත්ත යාවත්කාලීනය</string> <string name="prefs_other_switch_update">ස්වයං යාවත්කාලීන</string>
<string name="prefs_other_switch_sweep">radar sweep සජීවිකරණය සබල කරන්න</string> <string name="prefs_other_switch_sweep">රේඩාර් පරිලෝකනය</string>
<string name="prefs_other_switch_sensors">Radar දර්ශනය කරකැවීමට සංවේදක භාවිතා කරන්න </string> <string name="prefs_other_switch_sensors">සංවේදක</string>
<string name="prefs_other_switch_night_mode">රාත්‍රී පෙරහන</string>
<string name="prefs_other_switch_light_theme">ආලෝක තේමාව</string>
<string name="prefs_other_compass_offset_az">මාලිමා අපගමනය (දිගංශය)</string>
<string name="prefs_other_compass_offset_elev">මාලිමා අපගමනය (උත්තෝලනය)</string>
<string name="prefs_highlight_title">උස් උද්දීපනය</string>
<string name="prefs_highlight_low">අඩු &lt; %1$d°</string>
<string name="prefs_highlight_mid">මධ්‍ය %1$d-%2$d°</string>
<string name="prefs_highlight_high">ඉහළ &gt; %1$d°</string>
<string name="prefs_outro_title">මම ස්තුති කිරීමට කැමති:</string> <string name="prefs_outro_title">මම ස්තුති කිරීමට කැමති:</string>
<string name="prefs_outro_license">මෘදුකාංගය වගකීමක් සමග නොලැබේ</string> <string name="prefs_outro_license">මෘදුකාංගය වගකීමක් සමග නොලැබේ</string>
@@ -14,26 +14,33 @@
<string name="nav_prefs">Ayarlar</string> <string name="nav_prefs">Ayarlar</string>
<!-- Satellites screen --> <!-- Satellites screen -->
<string name="sat_type_hint">Uydu türü: %s</string> <string name="sat_type_hint">Modlar: %s</string>
<string name="sat_type_title">Uydu türü seçin</string> <string name="sat_type_title">Modları seçin</string>
<string name="sat_search_hint">Id - Ad</string> <string name="sat_search_hint">Id - Ad</string>
<string name="sat_search_clear">Temizle</string> <string name="sat_search_clear">Temizle</string>
<string name="sat_clear_all">Tümünü temizle</string> <string name="sat_clear_all">Tümünü temizle</string>
<string name="sat_select_all">Tümünü seç</string> <string name="sat_select_all">Tümünü seç</string>
<string name="sat_group_selected">Seçilenler</string>
<string name="sat_group_available">Kullanılabilir</string>
<string name="sat_group_selected_count">Seçilenler (%1$d)</string>
<string name="sat_group_available_count">Kullanılabilir (%1$d)</string>
<string name="sat_empty_list_message">"Arama sorgunuzun doğru olduğundan ve veritabanının güncellendiğinden emin olun"</string> <string name="sat_empty_list_message">"Arama sorgunuzun doğru olduğundan ve veritabanının güncellendiğinden emin olun"</string>
<string name="sat_warning_title">Uyarı\!</string> <string name="sat_warning_title">Uyarı\!</string>
<string name="sat_warning_message"> <string name="sat_warning_message">
Bu uygulamada 9000\'den fazla uydu listelenmiştir. Bu uygulamada 9000\'den fazla uydu listelenmiştir.
Hepsini aynı anda takip etmek anlamsızdır. Hepsini aynı anda takip etmek anlamsızdır.
\n\nListeyi yalnızca ilgilendiğiniz uydularla \n\nListeyi yalnızca ilgilendiğiniz uydularla
daraltmak için arama ve tür seçiciyi kullanın.</string> daraltmak için arama ve mod seçiciyi kullanın.</string>
<!-- Passes screen --> <!-- Passes screen -->
<string name="pass_filter_title">Geçişleri filtrele</string> <string name="pass_filter_title">Geçişleri filtrele</string>
<string name="pass_filter_elev">Minimum yükseklik açısı</string> <string name="pass_filter_elev">Minimum yükseklik açısı</string>
<string name="pass_filter_hours">Gösterilecek saat aralığı</string> <string name="pass_filter_hours">Gösterilecek zaman</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>
<string name="pass_time_placeholder" translatable="false"> -- : -- : -- </string> <string name="pass_time_placeholder" translatable="false"> -- : -- : -- </string>
<string name="pass_modes_title">Modulasyon türü seçin</string> <string name="pass_modes_title">Modları seçin</string>
<string name="pass_satId" translatable="false">%05d</string> <string name="pass_satId" translatable="false">%05d</string>
<string name="pass_elevation">Yükseklik açısı: %.1f°</string> <string name="pass_elevation">Yükseklik açısı: %.1f°</string>
<string name="pass_deep_space" translatable="false">DeepSpace</string> <string name="pass_deep_space" translatable="false">DeepSpace</string>
@@ -124,11 +131,11 @@
<string name="prefs_loc_qth_title">QTH</string> <string name="prefs_loc_qth_title">QTH</string>
<string name="prefs_loc_qth_error">Geçersiz QTH konumlandırıcısı</string> <string name="prefs_loc_qth_error">Geçersiz QTH konumlandırıcısı</string>
<string name="prefs_loc_success">Konum başarıyla güncellendi</string> <string name="prefs_loc_success">Konum başarıyla güncellendi</string>
<string name="prefs_station_title">İstasyon konumu ayarları</string> <string name="prefs_station_title">İstasyon konumu</string>
<string name="prefs_station_lat_text">Yer istasyonunuzun enlemini girin</string> <string name="prefs_station_lat_text">İstasyon enlemi</string>
<string name="prefs_station_lon_text">Yer istasyonunuzun boylamını girin</string> <string name="prefs_station_lon_text">İstasyon boylamı</string>
<string name="prefs_locator_title">QTH konumlandırıcı ayarları</string> <string name="prefs_locator_title">QTH konumlandırıcı</string>
<string name="prefs_locator_text">İstasyon konumunu konumlandırıcı ile ayarlayın</string> <string name="prefs_locator_text">Konumu lokatörle ayarla</string>
<string name="prefs_data_title">Uydu verisi</string> <string name="prefs_data_title">Uydu verisi</string>
<string name="prefs_data_entries">Uydular: %s</string> <string name="prefs_data_entries">Uydular: %s</string>
@@ -138,28 +145,35 @@
<string name="prefs_data_clear">Temizle</string> <string name="prefs_data_clear">Temizle</string>
<string name="prefs_data_clear_success">Veriler başarıyla temizlendi</string> <string name="prefs_data_clear_success">Veriler başarıyla temizlendi</string>
<string name="prefs_data_update_success">Güncelleme başarıyla tamamlandı</string> <string name="prefs_data_update_success">Güncelleme başarıyla tamamlandı</string>
<string name="prefs_data_import_satellites_error">Uydu içe aktarılmadı. Geçerli bir TLE/3LE (.txt) veya OMM (.csv) dosyası seçin.</string>
<string name="prefs_data_import_transceivers_error">Transceiver içe aktarılmadı. Geçerli bir SatNOGS (.json) dosyası seçin.</string>
<string name="prefs_data_sources_title">Özel veri kaynakları</string> <string name="prefs_data_sources_title">Özel kaynaklar</string>
<string name="prefs_data_sources_tle_switch">Özel TLE URL</string> <string name="prefs_data_sources_restore">Varsayılan kaynakları geri yükle</string>
<string name="prefs_data_sources_transceivers_switch">Özel transceiver URL</string> <string name="prefs_data_sources_sat_title">Uydu verileri</string>
<string name="prefs_data_sources_transceivers_title">Transceiver verileri</string>
<string name="prefs_data_sources_sat_hint">Öncelik üstte: uydu adları</string>
<string name="prefs_data_sources_transceivers_hint">Öncelik üstte: transceiver verileri</string>
<string name="prefs_data_sources_tle_switch">TLE URL</string>
<string name="prefs_data_sources_transceivers_switch">Transceiver URL</string>
<string name="prefs_data_sources_url_title" translatable="false">URL (HTTPS)</string> <string name="prefs_data_sources_url_title" translatable="false">URL (HTTPS)</string>
<string name="prefs_data_output_title">Veri aktarımı</string> <string name="prefs_data_output_title">Veri çıkışı</string>
<string name="prefs_net_output">Ağ</string> <string name="prefs_net_output">Ağ</string>
<string name="prefs_bt_output">Bluetooth</string> <string name="prefs_bt_output">Bluetooth</string>
<string name="prefs_cat_output">CAT</string> <string name="prefs_cat_output">CAT</string>
<!-- Radio Control --> <!-- Radio Control -->
<string name="nav_radiocontrol">Radyo Kontrolü</string> <string name="nav_radiocontrol">Radyo Kontrolü</string>
<string name="rc_settings_title">CAT Radyo Kontrolü</string> <string name="rc_settings_title">CAT kontrolü</string>
<string name="rc_radio_model">Radyo Modeli</string> <string name="rc_radio_model">Radyo Modeli</string>
<string name="rc_tx_device_hint">TX Radyo BT Adresi</string> <string name="rc_tx_device_hint">TX BT adresi</string>
<string name="rc_rx_device_hint">RX Radyo BT Adresi</string> <string name="rc_rx_device_hint">RX BT adresi</string>
<string name="rc_tx_name_hint">TX Radyo Adı</string> <string name="rc_tx_name_hint">TX Radyo Adı</string>
<string name="rc_rx_name_hint">RX Radyo Adı</string> <string name="rc_rx_name_hint">RX Radyo Adı</string>
<string name="rc_enable_switch">CAT Kontrolünü Etkinleştir</string> <string name="rc_enable_switch">CAT\'i etkinleştir</string>
<string name="prefs_net_title">Ağ veri çıkışı</string> <string name="prefs_net_title">Ağ çıkışı</string>
<string name="prefs_net_rotator_switch">Döndürme çıkışını etkinleştir</string> <string name="prefs_net_rotator_switch">Döndürme çıkışını etkinleştir</string>
<string name="prefs_net_rotator_address_hint">IP:Port</string> <string name="prefs_net_rotator_address_hint">IP:Port</string>
<string name="prefs_net_rotator_format_hint">Biçim</string> <string name="prefs_net_rotator_format_hint">Biçim</string>
@@ -167,21 +181,30 @@
<string name="prefs_net_frequency_address_hint">IP:Port</string> <string name="prefs_net_frequency_address_hint">IP:Port</string>
<string name="prefs_net_frequency_format_hint">Biçim</string> <string name="prefs_net_frequency_format_hint">Biçim</string>
<string name="prefs_bt_title">Bluetooth veri çıkışı</string> <string name="prefs_bt_title">Bluetooth çıkışı</string>
<string name="prefs_bt_rotator_switch">Döndürme çıkışını etkinleştir</string> <string name="prefs_bt_rotator_switch">Döndürme çıkışını etkinleştir</string>
<string name="prefs_bt_rotator_device_hint">Cihaz kimliği</string> <string name="prefs_bt_rotator_device_hint">Cihaz kimliği</string>
<string name="prefs_bt_rotator_output_hint">Veri biçimi</string> <string name="prefs_bt_rotator_output_hint">Biçim</string>
<string name="prefs_bt_frequency_switch">Frekans çıkışını etkinleştir</string> <string name="prefs_bt_frequency_switch">Frekans çıkışını etkinleştir</string>
<string name="prefs_bt_frequency_device_hint">Cihaz kimliği</string> <string name="prefs_bt_frequency_device_hint">Cihaz kimliği</string>
<string name="prefs_bt_frequency_output_hint">Veri biçimi</string> <string name="prefs_bt_frequency_output_hint">Biçim</string>
<string name="prefs_bt_perm_error">Bluetooth izninizi kontrol edin</string> <string name="prefs_bt_perm_error">Bluetooth izninizi kontrol edin</string>
<string name="prefs_net_perm_error">Ağ izninizi kontrol edin</string> <string name="prefs_net_perm_error">Ağ izninizi kontrol edin</string>
<string name="prefs_other_title">Diğer ayarlar</string> <string name="prefs_other_title">Diğer</string>
<string name="prefs_other_switch_utc">Geçiş saatini UTC olarak göster</string> <string name="prefs_other_switch_utc">UTC saati</string>
<string name="prefs_other_switch_update">Otomatik veri güncellemeyi etkinleştir</string> <string name="prefs_other_switch_update">Otomatik güncelle</string>
<string name="prefs_other_switch_sweep">Radar taramasını etkinleştir</string> <string name="prefs_other_switch_sweep">Radar taraması</string>
<string name="prefs_other_switch_sensors">Radar görünümünü döndürmek için sensörleri kullan</string> <string name="prefs_other_switch_sensors">Sensör</string>
<string name="prefs_other_switch_night_mode">Gece filtresi</string>
<string name="prefs_other_switch_light_theme">Açık tema</string>
<string name="prefs_other_compass_offset_az">Pusula sapması (azimut)</string>
<string name="prefs_other_compass_offset_elev">Pusula sapması (yükseklik açısı)</string>
<string name="prefs_highlight_title">Elevasyon vurgusu</string>
<string name="prefs_highlight_low">Düşük &lt; %1$d°</string>
<string name="prefs_highlight_mid">Orta %1$d-%2$d°</string>
<string name="prefs_highlight_high">Yüksek &gt; %1$d°</string>
<string name="prefs_outro_title">Teşekkürler</string> <string name="prefs_outro_title">Teşekkürler</string>
<string name="prefs_outro_thanks" translatable="false"> <string name="prefs_outro_thanks" translatable="false">
@@ -13,12 +13,16 @@
<string name="nav_prefs">Налаштування</string> <string name="nav_prefs">Налаштування</string>
<!-- Satellites screen --> <!-- Satellites screen -->
<string name="sat_type_hint">Тип: %s</string> <string name="sat_type_hint">Режими: %s</string>
<string name="sat_type_title">Виберіть тип супутника</string> <string name="sat_type_title">Виберіть режими</string>
<string name="sat_search_hint">Id - Назва</string> <string name="sat_search_hint">Id - Назва</string>
<string name="sat_search_clear">Очистити</string> <string name="sat_search_clear">Очистити</string>
<string name="sat_clear_all">Очистити всі</string> <string name="sat_clear_all">Очистити всі</string>
<string name="sat_select_all">Вибрати всі</string> <string name="sat_select_all">Вибрати всі</string>
<string name="sat_group_selected">Обрані</string>
<string name="sat_group_available">Доступні</string>
<string name="sat_group_selected_count">Обрані (%1$d)</string>
<string name="sat_group_available_count">Доступні (%1$d)</string>
<string name="sat_empty_list_message"> <string name="sat_empty_list_message">
Переконайтеся, що ваш пошуковий запит правильний, а база даних оновлена</string> Переконайтеся, що ваш пошуковий запит правильний, а база даних оновлена</string>
<string name="sat_warning_title">Увага\!</string> <string name="sat_warning_title">Увага\!</string>
@@ -26,13 +30,16 @@
У цьому додатку перелічено понад 9000 супутників. У цьому додатку перелічено понад 9000 супутників.
Немає сенсу відстежувати їх усі одночасно. Немає сенсу відстежувати їх усі одночасно.
\n\nЗавжди намагайтеся звузити список лише до тих, \n\nЗавжди намагайтеся звузити список лише до тих,
які вас цікавлять, за допомогою пошуку та селектора типів.</string> які вас цікавлять, за допомогою пошуку та вибору режимів.</string>
<!-- Passes screen --> <!-- Passes screen -->
<string name="pass_filter_title">Фільтр прольотів</string> <string name="pass_filter_title">Фільтр прольотів</string>
<string name="pass_filter_elev">Мінімальне піднесення</string> <string name="pass_filter_elev">Мінімальне піднесень</string>
<string name="pass_filter_hours">Кількість годин</string> <string name="pass_filter_hours">Час вперед</string>
<string name="pass_modes_title">Виберіть тип модуляції</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>
<string name="pass_modes_title">Виберіть режими</string>
<string name="pass_elevation">Піднес.: %.1f°</string> <string name="pass_elevation">Піднес.: %.1f°</string>
<string name="pass_altitude">Висота: %.0f км</string> <string name="pass_altitude">Висота: %.0f км</string>
<string name="pass_empty_list_message"> <string name="pass_empty_list_message">
@@ -66,7 +73,7 @@
<string name="map_prev">Попередній</string> <string name="map_prev">Попередній</string>
<string name="map_next">Наступний</string> <string name="map_next">Наступний</string>
<string name="map_azimuth">Азимут: %.1f°</string> <string name="map_azimuth">Азимут: %.1f°</string>
<string name="map_elevation">Піднесення: %.1f°</string> <string name="map_elevation">Піднесень: %.1f°</string>
<string name="map_altitude">Висота: %.0f км</string> <string name="map_altitude">Висота: %.0f км</string>
<string name="map_distance">Дистанція: %.0f км</string> <string name="map_distance">Дистанція: %.0f км</string>
<string name="map_latitude">Широта: %.1f°</string> <string name="map_latitude">Широта: %.1f°</string>
@@ -93,11 +100,11 @@
<string name="prefs_loc_qth_title">QTH</string> <string name="prefs_loc_qth_title">QTH</string>
<string name="prefs_loc_qth_error">Некоректний локатор QTH</string> <string name="prefs_loc_qth_error">Некоректний локатор QTH</string>
<string name="prefs_loc_success">Позицію успішно оновлено</string> <string name="prefs_loc_success">Позицію успішно оновлено</string>
<string name="prefs_station_title">Налаштування місцезнаходження станції</string> <string name="prefs_station_title">Позиція станції</string>
<string name="prefs_station_lat_text">Широта місцезнаходження станції</string> <string name="prefs_station_lat_text">Широта станції</string>
<string name="prefs_station_lon_text">Довгота місцезнаходження станції</string> <string name="prefs_station_lon_text">Довгота станції</string>
<string name="prefs_locator_title">Налаштування QTH локатора</string> <string name="prefs_locator_title">Локатор QTH</string>
<string name="prefs_locator_text">Задати позицію за QTH локатором</string> <string name="prefs_locator_text">Позиція за локатором</string>
<string name="prefs_data_title">Супутникові дані</string> <string name="prefs_data_title">Супутникові дані</string>
<string name="prefs_data_entries">Супутників: %s</string> <string name="prefs_data_entries">Супутників: %s</string>
@@ -107,38 +114,65 @@
<string name="prefs_data_clear">Очистити</string> <string name="prefs_data_clear">Очистити</string>
<string name="prefs_data_clear_success">Дані успішно очищено</string> <string name="prefs_data_clear_success">Дані успішно очищено</string>
<string name="prefs_data_update_success">Оновлення успішне</string> <string name="prefs_data_update_success">Оновлення успішне</string>
<string name="prefs_data_import_satellites_error">Супутники не імпортовано. Потрібен TLE/3LE (.txt) або OMM (.csv).</string>
<string name="prefs_data_import_transceivers_error">Трансивери не імпортовано. Потрібен SatNOGS (.json).</string>
<string name="prefs_data_sources_title">Custom data sources</string> <string name="prefs_data_sources_title">Власні джерела</string>
<string name="prefs_data_sources_tle_switch">Custom TLE URL</string> <string name="prefs_data_sources_restore">Відновити джерела за замовчуванням</string>
<string name="prefs_data_sources_transceivers_switch">Custom transceivers URL</string> <string name="prefs_data_sources_sat_title">Дані супутників</string>
<string name="prefs_data_sources_transceivers_title">Дані трансиверів</string>
<string name="prefs_data_sources_sat_hint">Пріоритет зверху: назви супутників</string>
<string name="prefs_data_sources_transceivers_hint">Пріоритет зверху: дані трансиверів</string>
<string name="prefs_data_sources_tle_switch">URL TLE</string>
<string name="prefs_data_sources_transceivers_switch">URL трансиверів</string>
<string name="prefs_data_sources_url_title" translatable="false">URL (HTTPS)</string>
<string name="prefs_data_output_title">Data output</string> <string name="prefs_data_output_title">Вивід даних</string>
<string name="prefs_net_output">Network</string> <string name="prefs_net_output">Мережа</string>
<string name="prefs_bt_output">Bluetooth</string> <string name="prefs_bt_output">Bluetooth</string>
<string name="prefs_cat_output">CAT</string>
<string name="prefs_net_title">Вивід мережевих даних</string> <string name="nav_radiocontrol">Керування радіо</string>
<string name="prefs_net_rotator_switch">Enable rotation output</string> <string name="rc_settings_title">CAT керування</string>
<string name="rc_radio_model">Модель радіо</string>
<string name="rc_tx_device_hint">BT адреса TX</string>
<string name="rc_rx_device_hint">BT адреса RX</string>
<string name="rc_tx_name_hint">Назва радіо TX</string>
<string name="rc_rx_name_hint">Назва радіо RX</string>
<string name="rc_enable_switch">Увімкнути CAT</string>
<string name="prefs_net_title">Мережевий вивід</string>
<string name="prefs_net_rotator_switch">Увімкнути вивід повороту</string>
<string name="prefs_net_rotator_address_hint">IP:Порт</string> <string name="prefs_net_rotator_address_hint">IP:Порт</string>
<string name="prefs_net_rotator_format_hint">Формат даних</string> <string name="prefs_net_rotator_format_hint">Формат даних</string>
<string name="prefs_net_frequency_switch">Enable frequency output</string> <string name="prefs_net_frequency_switch">Увімкнути вивід частоти</string>
<string name="prefs_net_frequency_address_hint">IP:Порт</string> <string name="prefs_net_frequency_address_hint">IP:Порт</string>
<string name="prefs_net_frequency_format_hint">Формат даних</string> <string name="prefs_net_frequency_format_hint">Формат даних</string>
<string name="prefs_bt_title">Вивід даних Bluetooth</string> <string name="prefs_bt_title">Вивід Bluetooth</string>
<string name="prefs_bt_rotator_switch">Enable rotation output</string> <string name="prefs_bt_rotator_switch">Увімкнути вивід повороту</string>
<string name="prefs_bt_rotator_device_hint">Id пристрою</string> <string name="prefs_bt_rotator_device_hint">ID пристрою</string>
<string name="prefs_bt_rotator_output_hint">Формат даних</string> <string name="prefs_bt_rotator_output_hint">Формат даних</string>
<string name="prefs_bt_frequency_switch">Enable frequency output</string> <string name="prefs_bt_frequency_switch">Увімкнути вивід частоти</string>
<string name="prefs_bt_frequency_device_hint">Id пристрою</string> <string name="prefs_bt_frequency_device_hint">ID пристрою</string>
<string name="prefs_bt_frequency_output_hint">Формат даних</string> <string name="prefs_bt_frequency_output_hint">Формат даних</string>
<string name="prefs_bt_perm_error">Перевірте дозвіл Bluetooth</string> <string name="prefs_bt_perm_error">Перевірте дозвіл Bluetooth</string>
<string name="prefs_net_perm_error">Перевірте дозвіл мережі</string> <string name="prefs_net_perm_error">Перевірте дозвіл мережі</string>
<string name="prefs_other_title">Інші налаштування</string> <string name="prefs_other_title">Інше</string>
<string name="prefs_other_switch_utc">Показувати час в UTC</string> <string name="prefs_other_switch_utc">Час в UTC</string>
<string name="prefs_other_switch_update">Автоматичне оновлення даних</string> <string name="prefs_other_switch_update">Автооновлення</string>
<string name="prefs_other_switch_sweep">Показувати анімацію радара</string> <string name="prefs_other_switch_sweep">Анімація радара</string>
<string name="prefs_other_switch_sensors">Використовувати сенсори пристрою</string> <string name="prefs_other_switch_sensors">Сенсори</string>
<string name="prefs_other_switch_night_mode">Нічний фільтр</string>
<string name="prefs_other_switch_light_theme">Світла тема</string>
<string name="prefs_other_compass_offset_az">Зміщення компаса (азимут)</string>
<string name="prefs_other_compass_offset_elev">Зміщення компаса (піднесення)</string>
<string name="prefs_highlight_title">Підсвічування висоти</string>
<string name="prefs_highlight_low">Низько &lt; %1$d°</string>
<string name="prefs_highlight_mid">Середньо %1$d-%2$d°</string>
<string name="prefs_highlight_high">Високо &gt; %1$d°</string>
<string name="prefs_outro_title">Я хотів би подякувати:</string> <string name="prefs_outro_title">Я хотів би подякувати:</string>
<string name="prefs_outro_license">Ця програма поставляється без жодних гарантій</string> <string name="prefs_outro_license">Ця програма поставляється без жодних гарантій</string>
@@ -12,22 +12,68 @@
<string name="nav_map">地图</string> <string name="nav_map">地图</string>
<string name="nav_prefs">设置</string> <string name="nav_prefs">设置</string>
<!-- AMSAT Status screen -->
<string name="nav_amsat">AMSAT</string>
<string name="amsat_title">AMSAT 卫星状态</string>
<string name="amsat_refresh">刷新</string>
<string name="amsat_retry">重试</string>
<string name="amsat_updated">更新于:</string>
<string name="amsat_active">活跃</string>
<string name="amsat_tlm">遥测/信标</string>
<string name="amsat_not_heard">未听到</string>
<string name="amsat_conflict">冲突</string>
<string name="amsat_name">名称</string>
<string name="amsat_load_failed">加载失败 - 检查网络后重试</string>
<string name="amsat_no_reports">此时间段无报告</string>
<string name="amsat_close">关闭</string>
<string name="amsat_status_heard">已听到</string>
<string name="amsat_status_tlm_only">仅遥测</string>
<string name="amsat_status_not_heard">未听到</string>
<string name="amsat_status_crew_active">乘组活跃</string>
<string name="amsat_upload">上传</string>
<string name="amsat_upload_back">返回</string>
<string name="amsat_upload_report">上传报告到 AMSAT</string>
<string name="amsat_upload_status">状态</string>
<string name="amsat_upload_callsign">呼号</string>
<string name="amsat_upload_grid">网格</string>
<string name="amsat_upload_time_now">时间:当前 UTC %s</string>
<string name="amsat_upload_submit">提交到 AMSAT</string>
<string name="amsat_upload_confirm">确认上传</string>
<string name="amsat_upload_confirm_title">确认上传到 AMSAT</string>
<string name="amsat_upload_confirm_message">这条公开报告将上传到 AMSAT。\n卫星:%1$s\n状态:%2$s\n呼号:%3$s\n网格:%4$s</string>
<string name="amsat_upload_grid_none">未填写</string>
<string name="amsat_upload_success">报告已上传</string>
<string name="amsat_upload_failed">上传失败:%s</string>
<string name="amsat_upload_callsign_required">请填写呼号</string>
<string name="amsat_upload_grid_invalid">网格应为 4 或 6 位 Maidenhead 定位符</string>
<string name="amsat_upload_active">活跃</string>
<string name="amsat_upload_tlm">遥测/信标</string>
<string name="amsat_upload_not_heard">未听到</string>
<string name="amsat_upload_crew_active">ISS 语音</string>
<!-- Satellites screen --> <!-- Satellites screen -->
<string name="sat_type_hint">类型:%s</string> <string name="sat_type_hint">模式:%s</string>
<string name="sat_type_title">选择卫星类型</string> <string name="sat_type_title">选择模式</string>
<string name="sat_search_hint">Id - 名称</string> <string name="sat_search_hint">Id - 名称</string>
<string name="sat_search_clear">清空</string> <string name="sat_search_clear">清空</string>
<string name="sat_clear_all">全部清空</string> <string name="sat_clear_all">全部清空</string>
<string name="sat_select_all">全选</string> <string name="sat_select_all">全选</string>
<string name="sat_group_selected">已选择</string>
<string name="sat_group_available">可用</string>
<string name="sat_group_selected_count">已选择(%1$d)</string>
<string name="sat_group_available_count">可用(%1$d)</string>
<string name="sat_empty_list_message">请确保您的搜索查询正确且数据库已更新</string> <string name="sat_empty_list_message">请确保您的搜索查询正确且数据库已更新</string>
<string name="sat_warning_title">警告\!</string> <string name="sat_warning_title">警告\!</string>
<string name="sat_warning_message">此应用收录了超过9000颗卫星信息\n同时追踪所有卫星并不现实\n建议始终通过搜索和分类筛选功能仅勾选您感兴趣的卫星</string> <string name="sat_warning_message">此应用收录了超过9000颗卫星信息\n同时追踪所有卫星并不现实\n建议始终通过搜索和模式筛选功能仅勾选您感兴趣的卫星</string>
<!-- Passes screen --> <!-- Passes screen -->
<string name="pass_filter_title">筛选过境</string> <string name="pass_filter_title">筛选过境</string>
<string name="pass_filter_elev">仰角值</string> <string name="pass_filter_elev">仰角值</string>
<string name="pass_filter_hours">小时数</string> <string name="pass_filter_hours">提前时间</string>
<string name="pass_modes_title">选择调制类型</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>
<string name="pass_modes_title">选择模式</string>
<string name="pass_elevation">仰角:%.1f°</string> <string name="pass_elevation">仰角:%.1f°</string>
<string name="pass_altitude">高度:%d km</string> <string name="pass_altitude">高度:%d km</string>
<string name="pass_empty_list_message">请确保您的过滤器设置正确,并且已选择卫星</string> <string name="pass_empty_list_message">请确保您的过滤器设置正确,并且已选择卫星</string>
@@ -53,6 +99,27 @@
<string name="radar_string_no">否</string> <string name="radar_string_no">否</string>
<string name="radar_string_yes">是</string> <string name="radar_string_yes">是</string>
<string name="radar_visible">日照中</string> <string name="radar_visible">日照中</string>
<string name="radar_doppler_tx_hint">输入上行频率 (MHz)</string>
<string name="radar_doppler_rx_hint">输入下行频率 (MHz)</string>
<string name="radar_doppler_offset_hint">偏移 (kHz)</string>
<!-- Radar screen (CAT control / SSTV) -->
<string name="radar_connect">连接</string>
<string name="radar_disconnect">断开连接</string>
<string name="radar_off">关</string>
<string name="radar_stop">停止</string>
<string name="radar_track">跟踪</string>
<string name="radar_tx_base">TX 基频:</string>
<!-- SSTV screen -->
<string name="sstv_grant_permission">授予权限</string>
<string name="sstv_listening">正在监听…</string>
<string name="sstv_mic_permission">需要麦克风权限</string>
<string name="sstv_mode_format">模式:%s</string>
<string name="sstv_mode_title">SSTV 模式</string>
<string name="sstv_no_signal">无信号</string>
<string name="sstv_no_transceiver">未选择收发器</string>
<string name="sstv_rx_format">RX:%s Hz</string>
<!-- Map screen --> <!-- Map screen -->
<string name="map_prev">上一个</string> <string name="map_prev">上一个</string>
@@ -74,10 +141,16 @@
<string name="prefs_donate_title">支持</string> <string name="prefs_donate_title">支持</string>
<string name="prefs_privacy_title">隐私政策</string> <string name="prefs_privacy_title">隐私政策</string>
<string name="settings_paired_devices">已配对的蓝牙设备:</string>
<string name="settings_split_mode">分频模式(仅 IC-705)</string>
<string name="prefs_lat_prefix">纬度:%s°</string>
<string name="prefs_lon_prefix">经度:%s°</string>
<string name="prefs_qth_prefix">QTH:%s</string>
<string name="prefs_updated_title">更新:%s</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 MMM d - HH:mm:ss</string>
<string name="prefs_loc_title">站位</string> <string name="prefs_loc_title">站点位置</string>
<string name="prefs_loc_gps_title">GPS 定位</string> <string name="prefs_loc_gps_title">GPS 定位</string>
<string name="prefs_loc_gps_error">检查您的位置权限</string> <string name="prefs_loc_gps_error">检查您的位置权限</string>
<string name="prefs_loc_input_title">输入位置</string> <string name="prefs_loc_input_title">输入位置</string>
@@ -85,11 +158,11 @@
<string name="prefs_loc_qth_title">QTH 网格</string> <string name="prefs_loc_qth_title">QTH 网格</string>
<string name="prefs_loc_qth_error">无效的 QTH 网格</string> <string name="prefs_loc_qth_error">无效的 QTH 网格</string>
<string name="prefs_loc_success">位置更新成功</string> <string name="prefs_loc_success">位置更新成功</string>
<string name="prefs_station_title">站位设置</string> <string name="prefs_station_title">站点位置</string>
<string name="prefs_station_lat_text">输入站位的纬度</string> <string name="prefs_station_lat_text">站点纬度</string>
<string name="prefs_station_lon_text">输入站位的经度</string> <string name="prefs_station_lon_text">站点经度</string>
<string name="prefs_locator_title">QTH 网格</string> <string name="prefs_locator_title">QTH 定位</string>
<string name="prefs_locator_text">使用梅登黑德网格设置站位</string> <string name="prefs_locator_text">通过 QTH 设置站点位置</string>
<string name="prefs_data_title">卫星数据更新</string> <string name="prefs_data_title">卫星数据更新</string>
<string name="prefs_data_entries">卫星:%s</string> <string name="prefs_data_entries">卫星:%s</string>
@@ -99,16 +172,34 @@
<string name="prefs_data_clear">清空</string> <string name="prefs_data_clear">清空</string>
<string name="prefs_data_clear_success">数据清空成功</string> <string name="prefs_data_clear_success">数据清空成功</string>
<string name="prefs_data_update_success">更新成功</string> <string name="prefs_data_update_success">更新成功</string>
<string name="prefs_data_import_satellites_error">未导入卫星。请选择有效的 TLE/3LE (.txt) 或 OMM (.csv) 文件。</string>
<string name="prefs_data_import_transceivers_error">未导入收发器。请选择有效的 SatNOGS (.json) 文件。</string>
<string name="prefs_data_sources_title">自定义数据源</string> <string name="prefs_data_sources_title">自定义源</string>
<string name="prefs_data_sources_tle_switch">自定义TLE URL</string> <string name="prefs_data_sources_restore">恢复默认源</string>
<string name="prefs_data_sources_transceivers_switch">自定义收发器URL</string> <string name="prefs_data_sources_sat_title">卫星数据</string>
<string name="prefs_data_sources_transceivers_title">收发器数据</string>
<string name="prefs_data_sources_sat_hint">靠前优先:卫星名称</string>
<string name="prefs_data_sources_transceivers_hint">靠前优先:收发器数据</string>
<string name="prefs_data_sources_tle_switch">TLE URL</string>
<string name="prefs_data_sources_transceivers_switch">收发器 URL</string>
<string name="prefs_data_sources_url_title" translatable="false">URL (HTTPS)</string>
<string name="prefs_data_output_title">数据输出</string> <string name="prefs_data_output_title">数据输出</string>
<string name="prefs_net_output">网络</string> <string name="prefs_net_output">网络</string>
<string name="prefs_bt_output">蓝牙</string> <string name="prefs_bt_output">蓝牙</string>
<string name="prefs_cat_output">CAT</string>
<string name="prefs_net_title">网络数据输出</string> <string name="nav_radiocontrol">电台控制</string>
<string name="rc_settings_title">CAT 控制</string>
<string name="rc_radio_model">电台型号</string>
<string name="rc_tx_device_hint">TX 电台蓝牙地址</string>
<string name="rc_rx_device_hint">RX 电台蓝牙地址</string>
<string name="rc_tx_name_hint">TX 电台名称</string>
<string name="rc_rx_name_hint">RX 电台名称</string>
<string name="rc_enable_switch">启用 CAT</string>
<string name="prefs_net_title">网络输出</string>
<string name="prefs_net_rotator_switch">启用方位俯仰角输出</string> <string name="prefs_net_rotator_switch">启用方位俯仰角输出</string>
<string name="prefs_net_rotator_address_hint">IP:端口</string> <string name="prefs_net_rotator_address_hint">IP:端口</string>
<string name="prefs_net_rotator_format_hint">数据格式</string> <string name="prefs_net_rotator_format_hint">数据格式</string>
@@ -116,7 +207,7 @@
<string name="prefs_net_frequency_address_hint">IP:端口</string> <string name="prefs_net_frequency_address_hint">IP:端口</string>
<string name="prefs_net_frequency_format_hint">数据格式</string> <string name="prefs_net_frequency_format_hint">数据格式</string>
<string name="prefs_bt_title">蓝牙数据输出</string> <string name="prefs_bt_title">蓝牙输出</string>
<string name="prefs_bt_rotator_switch">启用方位俯仰角输出</string> <string name="prefs_bt_rotator_switch">启用方位俯仰角输出</string>
<string name="prefs_bt_rotator_device_hint">蓝牙设备 ID</string> <string name="prefs_bt_rotator_device_hint">蓝牙设备 ID</string>
<string name="prefs_bt_rotator_output_hint">数据格式</string> <string name="prefs_bt_rotator_output_hint">数据格式</string>
@@ -126,12 +217,20 @@
<string name="prefs_bt_perm_error">请检查蓝牙权限</string> <string name="prefs_bt_perm_error">请检查蓝牙权限</string>
<string name="prefs_net_perm_error">请检查网络权限</string> <string name="prefs_net_perm_error">请检查网络权限</string>
<string name="prefs_other_title">其他设置</string> <string name="prefs_other_title">其他</string>
<string name="prefs_other_switch_utc">以 UTC 时间显示</string> <string name="prefs_other_switch_utc">UTC 时间</string>
<string name="prefs_other_switch_update">启用卫星数据自动更新</string> <string name="prefs_other_switch_update">自动更新</string>
<string name="prefs_other_switch_sweep">启用雷达扫描动画</string> <string name="prefs_other_switch_sweep">雷达扫描</string>
<string name="prefs_other_switch_sensors">使用传感器旋转雷达视图</string> <string name="prefs_other_switch_sensors">传感器</string>
<string name="prefs_other_switch_night_mode">启用红色夜间模式</string> <string name="prefs_other_switch_night_mode">红色夜间模式</string>
<string name="prefs_other_switch_light_theme">浅色主题</string>
<string name="prefs_other_compass_offset_az">罗盘偏移量(方位角)</string>
<string name="prefs_other_compass_offset_elev">罗盘偏移量(仰角)</string>
<string name="prefs_highlight_title">仰角高亮</string>
<string name="prefs_highlight_low">低 &lt; %1$d°</string>
<string name="prefs_highlight_mid">中 %1$d-%2$d°</string>
<string name="prefs_highlight_high">高 &gt; %1$d°</string>
<string name="prefs_outro_title">我要感谢:</string> <string name="prefs_outro_title">我要感谢:</string>
<string name="prefs_outro_thanks" translatable="false"> <string name="prefs_outro_thanks" translatable="false">
@@ -143,4 +242,7 @@
\n• Libre Space Foundation (SatNOGS)</string> \n• Libre Space Foundation (SatNOGS)</string>
<string name="prefs_outro_license">该应用程序不提供任何保修.</string> <string name="prefs_outro_license">该应用程序不提供任何保修.</string>
<!-- Main screen -->
<string name="tracking_format">跟踪:%s</string>
</resources> </resources>
+126 -32
View File
@@ -12,29 +12,36 @@
<string name="nav_radar">Radar</string> <string name="nav_radar">Radar</string>
<string name="nav_map">Map</string> <string name="nav_map">Map</string>
<string name="nav_prefs">Settings</string> <string name="nav_prefs">Settings</string>
<string name="nav_status" translatable="false">AMSAT</string>
<!-- Satellites screen --> <!-- Satellites screen -->
<string name="sat_type_hint">Type: %s</string> <string name="sat_type_hint">Modes: %s</string>
<string name="sat_type_title">Select satellite type</string> <string name="sat_type_title">Select modes</string>
<string name="sat_search_hint">Id - Name</string> <string name="sat_search_hint">Id - Name</string>
<string name="sat_search_clear">Clear</string> <string name="sat_search_clear">Clear</string>
<string name="sat_clear_all">Clear all</string> <string name="sat_clear_all">Clear all</string>
<string name="sat_select_all">Select all</string> <string name="sat_select_all">Select all</string>
<string name="sat_group_selected">Selected</string>
<string name="sat_group_available">Available</string>
<string name="sat_group_selected_count">Selected (%1$d)</string>
<string name="sat_group_available_count">Available (%1$d)</string>
<string name="sat_empty_list_message">"Make sure your search query is correct and the DB is updated"</string> <string name="sat_empty_list_message">"Make sure your search query is correct and the DB is updated"</string>
<string name="sat_warning_title">Warning\!</string> <string name="sat_warning_title">Warning\!</string>
<string name="sat_warning_message"> <string name="sat_warning_message">
There are over 9000 satellites listed in this app. There are over 9000 satellites listed in this app.
It makes no sense to track them all at the same time. It makes no sense to track them all at the same time.
\n\nAlways try to narrow down the list to only the ones \n\nAlways try to narrow down the list to only the ones
you\'re interested in via search and types selector.</string> you\'re interested in via search and the modes selector.</string>
<!-- Passes screen --> <!-- Passes screen -->
<string name="pass_filter_title">Filter passes</string> <string name="pass_filter_title">Filter passes</string>
<string name="pass_filter_elev">Minimal elevation</string> <string name="pass_filter_elev">Minimal elevation</string>
<string name="pass_filter_hours">Hours ahead</string> <string name="pass_filter_hours">Time ahead</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> <string name="pass_filter_deep_space">DeepSpace (period >225min)</string>
<string name="pass_time_placeholder" translatable="false"> -- : -- : -- </string> <string name="pass_time_placeholder" translatable="false"> -- : -- : -- </string>
<string name="pass_modes_title">Select modulation type</string> <string name="pass_modes_title">Select modes</string>
<string name="pass_satId" translatable="false">%05d</string> <string name="pass_satId" translatable="false">%05d</string>
<string name="pass_elevation">Elevation: %.1f°</string> <string name="pass_elevation">Elevation: %.1f°</string>
<string name="pass_deep_space" translatable="false">DeepSpace</string> <string name="pass_deep_space" translatable="false">DeepSpace</string>
@@ -49,10 +56,53 @@
\n\nPlease update the database at least weekly to get accurate predictions.</string> \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_title" translatable="false">What\'s new in Look4Sat</string>
<string name="pass_whatsnew_message" translatable="false"> <string name="pass_whatsnew_message" translatable="false">
* Added required tweaks to support Android 17 (API 37) * Fixed AOS window filter to follow the UTC setting by wty2019wty (#252)
\n\n* Added ACCESS_LOCAL_NETWORK permission check to support network data output \n\n* Applied elevation color thresholds to the Radar by atsunatsu (#253)
\n\n* Added fuzzy satellite search ignoring separators by atsunatsu (#255)
\n\n* Added light theme suitable for e-ink devices by Ondrej Kolonicny (#256)
\n\n* Fixed IC-705 frequency read in dual-radio mode by Michael S (#260)
\n\n* Fixed day/night map overlay calculation and display issue by rt-bishop
</string> </string>
<!-- AMSAT Status screen -->
<string name="nav_amsat">AMSAT</string>
<string name="amsat_title">AMSAT Satellite Status</string>
<string name="amsat_refresh">Refresh</string>
<string name="amsat_retry">Retry</string>
<string name="amsat_updated">Updated:</string>
<string name="amsat_active">Active</string>
<string name="amsat_tlm">TLM/Beacon</string>
<string name="amsat_not_heard">Not Heard</string>
<string name="amsat_conflict">Conflicting</string>
<string name="amsat_name">Name</string>
<string name="amsat_load_failed">Load failed - check network and retry</string>
<string name="amsat_no_reports">No reports for this period</string>
<string name="amsat_close">Close</string>
<string name="amsat_status_heard">Heard</string>
<string name="amsat_status_tlm_only">Telemetry Only</string>
<string name="amsat_status_not_heard">Not Heard</string>
<string name="amsat_status_crew_active">Crew Active</string>
<string name="amsat_upload">Upload</string>
<string name="amsat_upload_back">Back</string>
<string name="amsat_upload_report">Upload report to AMSAT</string>
<string name="amsat_upload_status">Status</string>
<string name="amsat_upload_callsign">Callsign</string>
<string name="amsat_upload_grid">Grid</string>
<string name="amsat_upload_time_now">Time: current UTC %s</string>
<string name="amsat_upload_submit">Submit to AMSAT</string>
<string name="amsat_upload_confirm">Upload</string>
<string name="amsat_upload_confirm_title">Confirm AMSAT upload</string>
<string name="amsat_upload_confirm_message">This public report will be uploaded to AMSAT.\nSatellite: %1$s\nStatus: %2$s\nCallsign: %3$s\nGrid: %4$s</string>
<string name="amsat_upload_grid_none">Not provided</string>
<string name="amsat_upload_success">Report uploaded</string>
<string name="amsat_upload_failed">Upload failed: %s</string>
<string name="amsat_upload_callsign_required">Callsign is required</string>
<string name="amsat_upload_grid_invalid">Grid must be a 4 or 6 character Maidenhead locator</string>
<string name="amsat_upload_active">Active</string>
<string name="amsat_upload_tlm">TLM/Beacon</string>
<string name="amsat_upload_not_heard">Not Heard</string>
<string name="amsat_upload_crew_active">Crew Active</string>
<!-- Radar screen --> <!-- Radar screen -->
<string name="radar_back">Back</string> <string name="radar_back">Back</string>
<string name="radar_notify">Notify</string> <string name="radar_notify">Notify</string>
@@ -78,6 +128,27 @@
<string name="radar_string_no">No</string> <string name="radar_string_no">No</string>
<string name="radar_string_yes">Yes</string> <string name="radar_string_yes">Yes</string>
<string name="radar_visible">Visible</string> <string name="radar_visible">Visible</string>
<string name="radar_doppler_tx_hint">Enter TX freq (MHz)</string>
<string name="radar_doppler_rx_hint">Enter RX freq (MHz)</string>
<string name="radar_doppler_offset_hint">Offset (kHz)</string>
<!-- Radar screen (CAT control / SSTV) -->
<string name="radar_connect">Connect</string>
<string name="radar_disconnect">Disconnect</string>
<string name="radar_off">Off</string>
<string name="radar_stop">Stop</string>
<string name="radar_track">Track</string>
<string name="radar_tx_base">TX Base: </string>
<!-- SSTV screen -->
<string name="sstv_grant_permission">Grant permission</string>
<string name="sstv_listening">Listening…</string>
<string name="sstv_mic_permission">Microphone access needed</string>
<string name="sstv_mode_format">Mode: %s</string>
<string name="sstv_mode_title">SSTV Mode</string>
<string name="sstv_no_signal">No signal</string>
<string name="sstv_no_transceiver">No transceiver selected</string>
<string name="sstv_rx_format">RX: %s Hz</string>
<!-- Map screen --> <!-- Map screen -->
<string name="map_prev">Prev</string> <string name="map_prev">Prev</string>
@@ -111,6 +182,12 @@
<string name="prefs_privacy_title">Privacy Policy</string> <string name="prefs_privacy_title">Privacy Policy</string>
<string name="prefs_privacy_url" translatable="false">https://sites.google.com/view/look4sat-privacy-policy/home</string> <string name="prefs_privacy_url" translatable="false">https://sites.google.com/view/look4sat-privacy-policy/home</string>
<string name="settings_paired_devices">Paired Bluetooth Devices:</string>
<string name="settings_split_mode">Split mode (IC-705 only)</string>
<string name="prefs_lat_prefix">Lat: %s°</string>
<string name="prefs_lon_prefix">Lon: %s°</string>
<string name="prefs_qth_prefix">Qth: %s</string>
<string name="prefs_updated_title">Updated: %s</string> <string name="prefs_updated_title">Updated: %s</string>
<string name="prefs_updated_time">d MMM yyyy - HH:mm:ss</string> <string name="prefs_updated_time">d MMM yyyy - HH:mm:ss</string>
@@ -122,11 +199,11 @@
<string name="prefs_loc_qth_title">QTH</string> <string name="prefs_loc_qth_title">QTH</string>
<string name="prefs_loc_qth_error">Invalid QTH locator</string> <string name="prefs_loc_qth_error">Invalid QTH locator</string>
<string name="prefs_loc_success">Position updated successfully</string> <string name="prefs_loc_success">Position updated successfully</string>
<string name="prefs_station_title">Station position settings</string> <string name="prefs_station_title">Station position</string>
<string name="prefs_station_lat_text">Set your ground station\'s latitude</string> <string name="prefs_station_lat_text">Station latitude</string>
<string name="prefs_station_lon_text">Set your ground station\'s longitude</string> <string name="prefs_station_lon_text">Station longitude</string>
<string name="prefs_locator_title">QTH locator settings</string> <string name="prefs_locator_title">QTH locator</string>
<string name="prefs_locator_text">Set station\'s position using locator</string> <string name="prefs_locator_text">Set position via locator</string>
<string name="prefs_data_title">Satellite data</string> <string name="prefs_data_title">Satellite data</string>
<string name="prefs_data_entries">Satellites: %s</string> <string name="prefs_data_entries">Satellites: %s</string>
@@ -136,11 +213,15 @@
<string name="prefs_data_clear">Clear</string> <string name="prefs_data_clear">Clear</string>
<string name="prefs_data_clear_success">Data was cleared successfully</string> <string name="prefs_data_clear_success">Data was cleared successfully</string>
<string name="prefs_data_update_success">Update completed successfully</string> <string name="prefs_data_update_success">Update completed successfully</string>
<string name="prefs_data_import_satellites_error">No satellites imported. Select a valid TLE/3LE (.txt) or OMM (.csv) file.</string>
<string name="prefs_data_import_transceivers_error">No transceivers imported. Select a valid SatNOGS (.json) file.</string>
<string name="prefs_data_sources_title">Custom data sources</string> <string name="prefs_data_sources_title">Data sources</string>
<string name="prefs_data_sources_tle_switch">Custom TLE URL</string> <string name="prefs_data_sources_restore">Restore default sources</string>
<string name="prefs_data_sources_transceivers_switch">Custom transceivers URL</string> <string name="prefs_data_sources_sat_title">Satellites data</string>
<string name="prefs_data_sources_url_title" translatable="false">URL (HTTPS)</string> <string name="prefs_data_sources_transceivers_title">Transceivers data</string>
<string name="prefs_data_sources_sat_hint">Top priority affects satellite names</string>
<string name="prefs_data_sources_transceivers_hint">Top priority affects transceivers data</string>
<string name="prefs_data_output_title">Data output</string> <string name="prefs_data_output_title">Data output</string>
<string name="prefs_net_output">Network</string> <string name="prefs_net_output">Network</string>
@@ -149,38 +230,48 @@
<!-- Radio Control --> <!-- Radio Control -->
<string name="nav_radiocontrol">Radio Control</string> <string name="nav_radiocontrol">Radio Control</string>
<string name="rc_settings_title">CAT Radio Control</string> <string name="rc_settings_title">CAT control</string>
<string name="rc_radio_model">Radio Model</string> <string name="rc_radio_model">Radio Model</string>
<string name="rc_tx_device_hint">TX Radio BT Address</string> <string name="rc_tx_device_hint">TX BT address</string>
<string name="rc_rx_device_hint">RX Radio BT Address</string> <string name="rc_rx_device_hint">RX BT address</string>
<string name="rc_tx_name_hint">TX Radio Name</string> <string name="rc_tx_name_hint">TX Radio Name</string>
<string name="rc_rx_name_hint">RX Radio Name</string> <string name="rc_rx_name_hint">RX Radio Name</string>
<string name="rc_enable_switch">Enable CAT Control</string> <string name="rc_enable_switch">Enable CAT</string>
<string name="prefs_net_title">Network data output</string> <string name="prefs_net_title">Network output</string>
<string name="prefs_net_rotator_switch">Enable rotation output</string> <string name="prefs_net_rotator_switch">Enable rotation output</string>
<string name="prefs_net_rotator_address_hint">IP:Port</string> <string name="prefs_net_rotator_address_hint">IP:Port</string>
<string name="prefs_net_rotator_format_hint">Format</string> <string name="prefs_net_rotator_format_hint">Format</string>
<string name="prefs_net_frequency_switch">Enable frequency output</string> <string name="prefs_net_frequency_switch">Enable frequency output</string>
<string name="prefs_net_frequency_address_hint">IP:Port</string> <string name="prefs_net_frequency_address_hint">IP:Port</string>
<string name="prefs_net_frequency_format_hint">Format</string> <string name="prefs_net_frequency_format_hint">Format</string>
<string name="prefs_net_frequency_offset_hint" translatable="false">Frequency offset (Hz)</string>
<string name="prefs_net_frequency_offset_help" translatable="false">Range: -50000 to 50000 Hz. Positive values increase reported frequency; negative values decrease it.</string>
<string name="prefs_bt_title">Bluetooth data output</string> <string name="prefs_bt_title">Bluetooth output</string>
<string name="prefs_bt_rotator_switch">Enable rotation output</string> <string name="prefs_bt_rotator_switch">Enable rotation output</string>
<string name="prefs_bt_rotator_device_hint">Device id</string> <string name="prefs_bt_rotator_device_hint">Device ID</string>
<string name="prefs_bt_rotator_output_hint">Data format</string> <string name="prefs_bt_rotator_output_hint">Format</string>
<string name="prefs_bt_frequency_switch">Enable frequency output</string> <string name="prefs_bt_frequency_switch">Enable frequency output</string>
<string name="prefs_bt_frequency_device_hint">Device id</string> <string name="prefs_bt_frequency_device_hint">Device ID</string>
<string name="prefs_bt_frequency_output_hint">Data format</string> <string name="prefs_bt_frequency_output_hint">Format</string>
<string name="prefs_bt_perm_error">Check your bluetooth permission</string> <string name="prefs_bt_perm_error">Check your bluetooth permission</string>
<string name="prefs_net_perm_error">Check your network permission</string> <string name="prefs_net_perm_error">Check your network permission</string>
<string name="prefs_other_title">Other settings</string> <string name="prefs_other_title">Other</string>
<string name="prefs_other_switch_utc">Show pass time in UTC</string> <string name="prefs_other_switch_utc">UTC time</string>
<string name="prefs_other_switch_update">Enable automatic data update</string> <string name="prefs_other_switch_update">Auto-update</string>
<string name="prefs_other_switch_sweep">Enable radar sweep animation</string> <string name="prefs_other_switch_sweep">Radar sweep</string>
<string name="prefs_other_switch_sensors">Use sensors to rotate radar view</string> <string name="prefs_other_switch_sensors">Sensors</string>
<string name="prefs_other_switch_night_mode">Enable red night mode filter</string> <string name="prefs_other_switch_night_mode">Night filter</string>
<string name="prefs_other_switch_light_theme">Light theme</string>
<string name="prefs_other_compass_offset_az">Compass offset (azimuth)</string>
<string name="prefs_other_compass_offset_elev">Compass offset (elevation)</string>
<string name="prefs_highlight_title">Elevation highlight</string>
<string name="prefs_highlight_low">Low &lt; %1$d°</string>
<string name="prefs_highlight_mid">Mid %1$d–%2$d°</string>
<string name="prefs_highlight_high">High &gt; %1$d°</string>
<string name="prefs_outro_title">I would like to say thanks to</string> <string name="prefs_outro_title">I would like to say thanks to</string>
<string name="prefs_outro_thanks" translatable="false"> <string name="prefs_outro_thanks" translatable="false">
@@ -194,4 +285,7 @@
</string> </string>
<string name="prefs_outro_license">The app comes with no warranty</string> <string name="prefs_outro_license">The app comes with no warranty</string>
<!-- Main screen -->
<string name="tracking_format">Tracking: %s</string>
</resources> </resources>
@@ -1,2 +1,6 @@
* Added required tweaks to support Android 17 (API 37) * Fixed AOS window filter to follow the UTC setting by wty2019wty (#252)
* Added ACCESS_LOCAL_NETWORK permission check to support network data output * Applied elevation color thresholds to the Radar by atsunatsu (#253)
* Added fuzzy satellite search ignoring separators by atsunatsu (#255)
* Added light theme suitable for e-ink devices by Ondrej Kolonicny (#256)
* Fixed IC-705 frequency read in dual-radio mode by Michael S (#260)
* Fixed day/night map overlay calculation and display issue by rt-bishop
@@ -21,6 +21,7 @@ import android.graphics.Canvas
import android.graphics.Color import android.graphics.Color
import android.graphics.Paint import android.graphics.Paint
import android.graphics.RectF import android.graphics.RectF
import org.osmdroid.util.GeoPoint
import org.osmdroid.views.MapView import org.osmdroid.views.MapView
import org.osmdroid.views.overlay.Overlay import org.osmdroid.views.overlay.Overlay
import kotlin.math.cos import kotlin.math.cos
@@ -39,9 +40,11 @@ import kotlin.math.sin
* exceeds 90°, i.e. the dot product of the two unit vectors is negative: * exceeds 90°, i.e. the dot product of the two unit vectors is negative:
* dot = sin(lat)*sin(sunLat) + cos(lat)*cos(sunLat)*cos(lon - sunLon) < 0 * dot = sin(lat)*sin(sunLat) + cos(lat)*cos(sunLat)*cos(lon - sunLon) < 0
* *
* Performance: we sample one column per [stepPx] pixels (default 4) and draw * Performance: we sample one column per stepPx pixels (default 4) and draw
* filled vertical rectangles. On a 1080-wide screen this means ~270 trig * filled vertical rectangles. On a 1080-wide screen this means ~270 trig
* evaluations per row, which is imperceptible. * evaluations per row, which is imperceptible. draw() is called on every
* frame, so it must stay allocation-free — all fromPixels() calls reuse a
* single GeoPoint instance.
*/ */
class MapNightOverlay : Overlay() { class MapNightOverlay : Overlay() {
@@ -58,6 +61,9 @@ class MapNightOverlay : Overlay() {
private val rect = RectF() private val rect = RectF()
/** Reused across every fromPixels() call — draw() runs on every frame, so it must not allocate */
private val reusableGeoPoint = GeoPoint(0.0, 0.0)
override fun draw(canvas: Canvas, mapView: MapView, shadow: Boolean) { override fun draw(canvas: Canvas, mapView: MapView, shadow: Boolean) {
if (shadow) return if (shadow) return
@@ -71,6 +77,15 @@ class MapNightOverlay : Overlay() {
val h = mapView.height val h = mapView.height
val stepPx = 4 // sample every N pixels — balance quality vs CPU val stepPx = 4 // sample every N pixels — balance quality vs CPU
// The map is never rotated, so latitude depends only on y and longitude only on x.
// Resolve the top/bottom latitudes once instead of once per column.
val latTopRad = Math.toRadians((proj.fromPixels(0, 0, reusableGeoPoint) ?: return).latitude)
val latBotRad = Math.toRadians((proj.fromPixels(0, h - 1, reusableGeoPoint) ?: return).latitude)
val sinLatTop = sin(latTopRad)
val cosLatTop = cos(latTopRad)
val sinLatBot = sin(latBotRad)
val cosLatBot = cos(latBotRad)
// We scan column by column. For each column we determine the longitude, // We scan column by column. For each column we determine the longitude,
// then find the latitude range that is in night and shade it. // then find the latitude range that is in night and shade it.
// Since longitude is constant along a vertical strip and the day/night // Since longitude is constant along a vertical strip and the day/night
@@ -79,22 +94,14 @@ class MapNightOverlay : Overlay() {
var x = 0 var x = 0
while (x < w) { while (x < w) {
// Get the geographic coordinate at the top and bottom of this column. val geoTop = proj.fromPixels(x, 0, reusableGeoPoint) ?: run { x += stepPx; continue }
val geoTop = proj.fromPixels(x, 0) ?: run { x += stepPx; continue }
val geoBot = proj.fromPixels(x, h - 1) ?: run { x += stepPx; continue }
val lonRad = Math.toRadians(geoTop.longitude) val lonRad = Math.toRadians(geoTop.longitude)
val cosLonDiff = cos(lonRad - sunLonRad) val cosLonDiff = cos(lonRad - sunLonRad)
// Top pixel geographic lat
val latTopRad = Math.toRadians(geoTop.latitude)
// Bottom pixel geographic lat (osmdroid: y=0 is top of screen, higher y = lower lat)
val latBotRad = Math.toRadians(geoBot.latitude)
// dot(sunVec, pointVec) < 0 → night // dot(sunVec, pointVec) < 0 → night
// dot = sin(lat)*sinSunLat + cos(lat)*cosSunLat*cosLonDiff // dot = sin(lat)*sinSunLat + cos(lat)*cosSunLat*cosLonDiff
val dotTop = sin(latTopRad) * sinSunLat + cos(latTopRad) * cosSunLat * cosLonDiff val dotTop = sinLatTop * sinSunLat + cosLatTop * cosSunLat * cosLonDiff
val dotBot = sin(latBotRad) * sinSunLat + cos(latBotRad) * cosSunLat * cosLonDiff val dotBot = sinLatBot * sinSunLat + cosLatBot * cosSunLat * cosLonDiff
when { when {
dotTop < 0 && dotBot < 0 -> { dotTop < 0 && dotBot < 0 -> {
@@ -109,8 +116,9 @@ class MapNightOverlay : Overlay() {
else -> { else -> {
// Terminator crosses this column — find the crossing pixel by binary search // Terminator crosses this column — find the crossing pixel by binary search
val crossY = findCrossingY(proj, x, 0, h - 1, sinSunLat, cosSunLat, cosLonDiff) val isNightAtTop = dotTop < 0
if (dotTop < 0) { val crossY = findCrossingY(proj, x, 0, h - 1, sinSunLat, cosSunLat, cosLonDiff, isNightAtTop)
if (isNightAtTop) {
// Night at top, day at bottom // Night at top, day at bottom
rect.set(x.toFloat(), 0f, (x + stepPx).toFloat(), crossY.toFloat()) rect.set(x.toFloat(), 0f, (x + stepPx).toFloat(), crossY.toFloat())
canvas.drawRect(rect, nightPaint) canvas.drawRect(rect, nightPaint)
@@ -127,7 +135,11 @@ class MapNightOverlay : Overlay() {
/** /**
* Binary-search for the pixel row where the day/night boundary crosses column [x]. * Binary-search for the pixel row where the day/night boundary crosses column [x].
* [yTop] is in day, [yBot] is in night (or vice versa). *
* [isNightAtTop] states which side [yTop] is on. Both polarities occur: the pole nearest
* the sub-solar point is lit, so the terminator runs day-over-night while the sub-solar
* latitude is positive and night-over-day once it turns negative after the September
* equinox. Anchoring lo to the top pixel's side keeps the search valid either way.
*/ */
private fun findCrossingY( private fun findCrossingY(
proj: org.osmdroid.views.Projection, proj: org.osmdroid.views.Projection,
@@ -136,16 +148,18 @@ class MapNightOverlay : Overlay() {
yBot: Int, yBot: Int,
sinSunLat: Double, sinSunLat: Double,
cosSunLat: Double, cosSunLat: Double,
cosLonDiff: Double cosLonDiff: Double,
isNightAtTop: Boolean
): Int { ): Int {
var lo = yTop var lo = yTop
var hi = yBot var hi = yBot
while (hi - lo > 1) { while (hi - lo > 1) {
val mid = (lo + hi) / 2 val mid = (lo + hi) / 2
val geo = proj.fromPixels(x, mid) ?: return mid val geo = proj.fromPixels(x, mid, reusableGeoPoint) ?: return mid
val latRad = Math.toRadians(geo.latitude) val latRad = Math.toRadians(geo.latitude)
val dot = sin(latRad) * sinSunLat + cos(latRad) * cosSunLat * cosLonDiff val dot = sin(latRad) * sinSunLat + cos(latRad) * cosSunLat * cosLonDiff
if (dot < 0) hi = mid else lo = mid // Keep lo on the top pixel's side of the terminator and hi on the opposite side
if ((dot < 0) == isNightAtTop) lo = mid else hi = mid
} }
return (lo + hi) / 2 return (lo + hi) / 2
} }
@@ -62,7 +62,6 @@ import androidx.lifecycle.compose.collectAsStateWithLifecycle
import androidx.lifecycle.viewmodel.compose.viewModel import androidx.lifecycle.viewmodel.compose.viewModel
import com.rtbishop.look4sat.core.domain.predict.GeoPos import com.rtbishop.look4sat.core.domain.predict.GeoPos
import com.rtbishop.look4sat.core.domain.predict.OrbitalObject import com.rtbishop.look4sat.core.domain.predict.OrbitalObject
import com.rtbishop.look4sat.core.domain.predict.OrbitalPos
import com.rtbishop.look4sat.core.domain.repository.IContainerProvider import com.rtbishop.look4sat.core.domain.repository.IContainerProvider
import com.rtbishop.look4sat.core.presentation.IconCard import com.rtbishop.look4sat.core.presentation.IconCard
import com.rtbishop.look4sat.core.presentation.NextPassRow import com.rtbishop.look4sat.core.presentation.NextPassRow
@@ -71,6 +70,10 @@ import com.rtbishop.look4sat.core.presentation.TimerRow
import com.rtbishop.look4sat.core.presentation.TopBar import com.rtbishop.look4sat.core.presentation.TopBar
import com.rtbishop.look4sat.core.presentation.isVerticalLayout import com.rtbishop.look4sat.core.presentation.isVerticalLayout
import com.rtbishop.look4sat.core.presentation.layoutPadding import com.rtbishop.look4sat.core.presentation.layoutPadding
import org.osmdroid.events.DelayedMapListener
import org.osmdroid.events.MapListener
import org.osmdroid.events.ScrollEvent
import org.osmdroid.events.ZoomEvent
import org.osmdroid.tileprovider.tilesource.XYTileSource import org.osmdroid.tileprovider.tilesource.XYTileSource
import org.osmdroid.util.GeoPoint import org.osmdroid.util.GeoPoint
import org.osmdroid.views.CustomZoomButtonsController import org.osmdroid.views.CustomZoomButtonsController
@@ -119,6 +122,39 @@ private val moonIconPaint = Paint(Paint.ANTI_ALIAS_FLAG).apply {
android.graphics.PorterDuffColorFilter("#E0E0E0".toColorInt(), android.graphics.PorterDuff.Mode.SRC_IN) android.graphics.PorterDuffColorFilter("#E0E0E0".toColorInt(), android.graphics.PorterDuff.Mode.SRC_IN)
} }
/** Accent used for the station marker; recolored per theme so it stays visible on a light map. */
private var mapAccentColor = "#FFE082".toColorInt()
/** The dark-map filter (grayscale + invert) is only applied when NOT in light theme; cached to avoid rebuilds. */
private val darkTileFilter by lazy { createColorFilter() }
/**
* Recolor the shared overlay paints for the current theme. The light OSM tiles are white, so the
* dark-theme amber/grey overlays would vanish; light theme swaps them for dark, high-contrast colors.
* Must run before the set*() overlay builders on each frame, as several icons cache the paint color.
*/
private fun applyMapColors(isLightUi: Boolean) {
if (isLightUi) {
mapAccentColor = "#715C0C".toColorInt() // dark amber (matches app lightScheme primary)
footprintPaint.color = mapAccentColor
textPaint.color = "#1E1B13".toColorInt()
textPaint.setShadowLayer(3f, 3f, 3f, Color.WHITE)
sunIconPaint.colorFilter =
android.graphics.PorterDuffColorFilter(mapAccentColor, android.graphics.PorterDuff.Mode.SRC_IN)
moonIconPaint.colorFilter =
android.graphics.PorterDuffColorFilter("#4C4639".toColorInt(), android.graphics.PorterDuff.Mode.SRC_IN)
} else {
mapAccentColor = "#FFE082".toColorInt()
footprintPaint.color = mapAccentColor
textPaint.color = mapAccentColor
textPaint.setShadowLayer(3f, 3f, 3f, Color.BLACK)
sunIconPaint.colorFilter =
android.graphics.PorterDuffColorFilter(mapAccentColor, android.graphics.PorterDuff.Mode.SRC_IN)
moonIconPaint.colorFilter =
android.graphics.PorterDuffColorFilter("#E0E0E0".toColorInt(), android.graphics.PorterDuff.Mode.SRC_IN)
}
}
@Composable @Composable
fun MapDestination() { fun MapDestination() {
val context = LocalContext.current val context = LocalContext.current
@@ -126,6 +162,21 @@ fun MapDestination() {
val viewModel: MapViewModel = viewModel(factory = MapViewModel.factory(container)) val viewModel: MapViewModel = viewModel(factory = MapViewModel.factory(container))
val uiState by viewModel.uiState.collectAsStateWithLifecycle() val uiState by viewModel.uiState.collectAsStateWithLifecycle()
val mapView = rememberMapViewWithLifecycle() val mapView = rememberMapViewWithLifecycle()
val lifecycle = LocalLifecycleOwner.current.lifecycle
DisposableEffect(lifecycle) {
val observer = LifecycleEventObserver { _, event ->
when (event) {
Lifecycle.Event.ON_START -> viewModel.onAction(MapAction.SetVisible(true))
Lifecycle.Event.ON_STOP -> viewModel.onAction(MapAction.SetVisible(false))
else -> {}
}
}
lifecycle.addObserver(observer)
onDispose {
lifecycle.removeObserver(observer)
viewModel.onAction(MapAction.SetVisible(false))
}
}
MapScreen(uiState, viewModel::onAction, mapView) MapScreen(uiState, viewModel::onAction, mapView)
} }
@@ -159,6 +210,8 @@ private fun MapScreen(uiState: MapState, onAction: (MapAction) -> Unit, mapView:
ElevatedCard(modifier = Modifier.weight(1f)) { ElevatedCard(modifier = Modifier.weight(1f)) {
Box(contentAlignment = Alignment.BottomCenter) { Box(contentAlignment = Alignment.BottomCenter) {
AndroidView({ mapView }) { view -> AndroidView({ mapView }) { view ->
applyMapColors(uiState.isLightUi)
view.overlayManager.tilesOverlay.setColorFilter(if (uiState.isLightUi) null else darkTileFilter)
uiState.stationPosition?.let { setStationPosition(it, view) } uiState.stationPosition?.let { setStationPosition(it, view) }
uiState.track?.let { setSatelliteTrack(it, view) } uiState.track?.let { setSatelliteTrack(it, view) }
uiState.footprint?.let { setFootprint(it, view) } uiState.footprint?.let { setFootprint(it, view) }
@@ -270,7 +323,9 @@ private fun setStationPosition(stationPos: GeoPos, mapView: MapView) {
mapView.overlays[OVERLAY_STATION] = Marker(mapView).apply { mapView.overlays[OVERLAY_STATION] = Marker(mapView).apply {
setInfoWindow(null) setInfoWindow(null)
setAnchor(Marker.ANCHOR_CENTER, Marker.ANCHOR_BOTTOM) setAnchor(Marker.ANCHOR_CENTER, Marker.ANCHOR_BOTTOM)
icon = ContextCompat.getDrawable(mapView.context, R.drawable.ic_position) icon = ContextCompat.getDrawable(mapView.context, R.drawable.ic_position)?.apply {
setTint(mapAccentColor)
}
position = GeoPoint(stationPos.latitude, stationPos.longitude) position = GeoPoint(stationPos.latitude, stationPos.longitude)
} }
} }
@@ -283,19 +338,49 @@ private fun setStationPosition(stationPos: GeoPos, mapView: MapView) {
private val markerPool = HashMap<String, Marker>() private val markerPool = HashMap<String, Marker>()
private var lastMapView: MapView? = null private var lastMapView: MapView? = null
/**
* Above this many satellites inside the viewport labels are dropped in favor of a single
* shared dot icon. Per-satellite label bitmaps cost ~90KB each, so drawing thousands of them
* exhausts memory and stalls the UI thread — and overlapping labels are unreadable anyway.
*/
private const val LABEL_LIMIT = 128
/** Degrees of space around the viewport so markers don't pop in at the edges */
private const val VIEWPORT_MARGIN = 8.0
/** Debounce for viewport-driven marker refreshes, in milliseconds */
private const val MAP_LISTENER_DELAY = 128L
/** Shared dot icon used when too many satellites are visible to label them */
private var dotIcon: Drawable? = null
/** Scratch list reused every frame to avoid per-tick allocation */
private val visibleSats = ArrayList<Pair<OrbitalObject, GeoPos>>()
/** Last emitted positions, replayed on scroll/zoom so culled markers appear without waiting for a tick */
private var lastPositions: Map<OrbitalObject, GeoPos>? = null
private var lastAction: ((OrbitalObject) -> Unit)? = null
private fun setPositions( private fun setPositions(
posMap: Map<OrbitalObject, GeoPos>, posMap: Map<OrbitalObject, GeoPos>,
mapView: MapView, mapView: MapView,
action: (OrbitalObject) -> Unit action: (OrbitalObject) -> Unit
) { ) {
try { try {
lastPositions = posMap
lastAction = action
// Clear caches when the MapView instance changes (e.g. config change) // Clear caches when the MapView instance changes (e.g. config change)
if (lastMapView !== mapView) { if (lastMapView !== mapView) {
lastMapView = mapView lastMapView = mapView
markerPool.clear() markerPool.clear()
iconCache.evictAll() iconCache.evictAll()
dotIcon = null
footprintPolyline = null footprintPolyline = null
footprintPoints = null footprintPoints = null
mapView.addMapListener(DelayedMapListener(object : MapListener {
override fun onScroll(event: ScrollEvent?) = refreshPositions(mapView)
override fun onZoom(event: ZoomEvent?) = refreshPositions(mapView)
}, MAP_LISTENER_DELAY))
} }
// Reuse the existing FolderOverlay — creating a new one and replacing it // Reuse the existing FolderOverlay — creating a new one and replacing it
// causes osmdroid to detach shared Marker objects, making them invisible. // causes osmdroid to detach shared Marker objects, making them invisible.
@@ -304,17 +389,48 @@ private fun setPositions(
} }
folder.items.clear() folder.items.clear()
val activeNames = HashSet<String>(posMap.size) // Cull satellites outside the viewport: only meaningful once zoomed in, but that is
posMap.forEach { (satellite, geoPos) -> // exactly when marker labels are shown and drawing is most expensive.
visibleSats.clear()
if (mapView.width > 0 && mapView.height > 0) {
val box = mapView.boundingBox
val latNorth = box.latNorth + VIEWPORT_MARGIN
val latSouth = box.latSouth - VIEWPORT_MARGIN
val lonWest = box.lonWest - VIEWPORT_MARGIN
val lonEast = box.lonEast + VIEWPORT_MARGIN
val wrapsDateLine = box.lonWest > box.lonEast
for ((satellite, geoPos) in posMap) {
val lat = geoPos.latitude
if (lat !in latSouth..latNorth) continue
val lon = geoPos.longitude
val isLonVisible = if (wrapsDateLine) lon >= lonWest || lon <= lonEast
else lon in lonWest..lonEast
if (isLonVisible) visibleSats.add(satellite to geoPos)
}
} else {
for (entry in posMap) visibleSats.add(entry.key to entry.value)
}
val showLabels = visibleSats.size <= LABEL_LIMIT
val activeNames = HashSet<String>(visibleSats.size)
for ((satellite, geoPos) in visibleSats) {
val name = satellite.data.name val name = satellite.data.name
activeNames.add(name) activeNames.add(name)
val marker = markerPool.getOrPut(name) { val marker = markerPool.getOrPut(name) {
Marker(mapView).apply { Marker(mapView).apply {
setInfoWindow(null) setInfoWindow(null)
setAnchor(Marker.ANCHOR_CENTER, Marker.ANCHOR_CENTER) setAnchor(Marker.ANCHOR_CENTER, Marker.ANCHOR_CENTER)
icon = getCachedTextIcon(name, mapView) // Resolve the satellite via relatedObject so the listener is allocated
// once per marker instead of once per satellite per tick
setOnMarkerClickListener { clicked, _ ->
(clicked.relatedObject as? OrbitalObject)?.let(action)
true
}
} }
} }
marker.relatedObject = satellite
val icon = if (showLabels) getCachedTextIcon(name, mapView) else getDotIcon(mapView)
if (marker.icon !== icon) marker.icon = icon
// Update position in-place — reuse existing GeoPoint if available // Update position in-place — reuse existing GeoPoint if available
val pos = marker.position val pos = marker.position
if (pos != null) { if (pos != null) {
@@ -323,22 +439,32 @@ private fun setPositions(
} else { } else {
marker.position = GeoPoint(geoPos.latitude, geoPos.longitude) marker.position = GeoPoint(geoPos.latitude, geoPos.longitude)
} }
marker.setOnMarkerClickListener { _, _ ->
action(satellite)
true
}
folder.add(marker) folder.add(marker)
} }
// Evict markers for satellites no longer tracked // Evict markers that are no longer tracked or no longer visible
val iter = markerPool.keys.iterator() markerPool.keys.retainAll(activeNames)
while (iter.hasNext()) { visibleSats.clear()
if (iter.next() !in activeNames) iter.remove()
}
} catch (e: Exception) { } catch (e: Exception) {
println(e) println(e)
} }
} }
/** Re-applies the last known positions against the new viewport after a pan or zoom */
private fun refreshPositions(mapView: MapView): Boolean {
val posMap = lastPositions ?: return false
val action = lastAction ?: return false
setPositions(posMap, mapView, action)
mapView.invalidate()
return true
}
private fun getDotIcon(mapView: MapView): Drawable = dotIcon ?: run {
val size = 20
val bitmap = createBitmap(size, size)
Canvas(bitmap).drawCircle(size / 2f, size / 2f, size / 2f - 2f, textPaint)
bitmap.toDrawable(mapView.context.resources).also { dotIcon = it }
}
private fun getCachedTextIcon(name: String, mapView: MapView): Drawable { private fun getCachedTextIcon(name: String, mapView: MapView): Drawable {
iconCache[name]?.let { return it } iconCache[name]?.let { return it }
val labelRect = Rect() val labelRect = Rect()
@@ -376,9 +502,8 @@ private fun setSatelliteTrack(satTrack: List<List<GeoPos>>, mapView: MapView) {
private var footprintPolyline: Polyline? = null private var footprintPolyline: Polyline? = null
private var footprintPoints: ArrayList<GeoPoint>? = null private var footprintPoints: ArrayList<GeoPoint>? = null
private fun setFootprint(orbitalPos: OrbitalPos, mapView: MapView) { private fun setFootprint(rangeCircle: List<GeoPos>, mapView: MapView) {
try { try {
val rangeCircle = orbitalPos.getRangeCircle()
var pts = footprintPoints var pts = footprintPoints
if (pts == null || pts.size != rangeCircle.size) { if (pts == null || pts.size != rangeCircle.size) {
pts = ArrayList(rangeCircle.size) pts = ArrayList(rangeCircle.size)
@@ -497,7 +622,7 @@ private fun rememberMapViewWithLifecycle(): MapView {
zoomController.setVisibility(CustomZoomButtonsController.Visibility.NEVER) zoomController.setVisibility(CustomZoomButtonsController.Visibility.NEVER)
overlayManager.tilesOverlay.loadingBackgroundColor = Color.TRANSPARENT overlayManager.tilesOverlay.loadingBackgroundColor = Color.TRANSPARENT
overlayManager.tilesOverlay.loadingLineColor = Color.TRANSPARENT overlayManager.tilesOverlay.loadingLineColor = Color.TRANSPARENT
overlayManager.tilesOverlay.setColorFilter(createColorFilter()) // Tile color filter (dark inversion vs light) is applied per-theme in the AndroidView update block.
setScrollableAreaLimitLatitude(maxLat, minLat, 0) setScrollableAreaLimitLatitude(maxLat, minLat, 0)
overlays.addAll(Array(OVERLAY_COUNT) { FolderOverlay() }) overlays.addAll(Array(OVERLAY_COUNT) { FolderOverlay() })
} }
@@ -508,9 +633,28 @@ private fun rememberMapViewWithLifecycle(): MapView {
lifecycle.addObserver(lifecycleObserver) lifecycle.addObserver(lifecycleObserver)
onDispose { lifecycle.removeObserver(lifecycleObserver) } onDispose { lifecycle.removeObserver(lifecycleObserver) }
} }
// The overlay caches below are file-level (shared across MapView instances), so they must be
// released with the MapView or they keep the Activity and its bitmaps alive after disposal.
DisposableEffect(mapView) {
onDispose {
clearMapCaches()
mapView.onDetach()
}
}
return mapView return mapView
} }
private fun clearMapCaches() {
markerPool.clear()
iconCache.evictAll()
dotIcon = null
footprintPolyline = null
footprintPoints = null
lastPositions = null
lastAction = null
lastMapView = null
}
@Composable @Composable
private fun rememberMapViewLifecycleObserver(mapView: MapView) = remember(mapView) { private fun rememberMapViewLifecycleObserver(mapView: MapView) = remember(mapView) {
LifecycleEventObserver { _, event -> LifecycleEventObserver { _, event ->
@@ -20,7 +20,6 @@ package com.rtbishop.look4sat.feature.map
import com.rtbishop.look4sat.core.domain.predict.GeoPos import com.rtbishop.look4sat.core.domain.predict.GeoPos
import com.rtbishop.look4sat.core.domain.predict.OrbitalObject import com.rtbishop.look4sat.core.domain.predict.OrbitalObject
import com.rtbishop.look4sat.core.domain.predict.OrbitalPass import com.rtbishop.look4sat.core.domain.predict.OrbitalPass
import com.rtbishop.look4sat.core.domain.predict.OrbitalPos
data class MapState( data class MapState(
val mapData: MapData? = null, val mapData: MapData? = null,
@@ -29,7 +28,7 @@ data class MapState(
val stationPosition: GeoPos? = null, val stationPosition: GeoPos? = null,
val orbitalPass: OrbitalPass, val orbitalPass: OrbitalPass,
val track: List<List<GeoPos>>? = null, val track: List<List<GeoPos>>? = null,
val footprint: OrbitalPos? = null, val footprint: List<GeoPos>? = null,
val positions: Map<OrbitalObject, GeoPos>? = null, val positions: Map<OrbitalObject, GeoPos>? = null,
val sunLatDeg: Double = 0.0, val sunLatDeg: Double = 0.0,
val sunLonDeg: Double = 0.0, val sunLonDeg: Double = 0.0,
@@ -42,6 +41,7 @@ sealed interface MapAction {
data object SelectNext : MapAction data object SelectNext : MapAction
data class SelectItem(val item: OrbitalObject) : MapAction data class SelectItem(val item: OrbitalObject) : MapAction
data class SelectDefaultItem(val catnum: Int) : MapAction data class SelectDefaultItem(val catnum: Int) : MapAction
data class SetVisible(val isVisible: Boolean) : MapAction
} }
data class MapData( data class MapData(
@@ -36,6 +36,7 @@ import com.rtbishop.look4sat.core.domain.utility.toMapGeoPos
import com.rtbishop.look4sat.core.domain.utility.toDegrees import com.rtbishop.look4sat.core.domain.utility.toDegrees
import com.rtbishop.look4sat.core.domain.utility.toTimerString import com.rtbishop.look4sat.core.domain.utility.toTimerString
import com.rtbishop.look4sat.core.presentation.getDefaultPass import com.rtbishop.look4sat.core.presentation.getDefaultPass
import kotlinx.coroutines.Dispatchers
import kotlinx.coroutines.Job import kotlinx.coroutines.Job
import kotlinx.coroutines.async import kotlinx.coroutines.async
import kotlinx.coroutines.awaitAll import kotlinx.coroutines.awaitAll
@@ -45,10 +46,12 @@ import kotlinx.coroutines.delay
import kotlinx.coroutines.flow.MutableStateFlow import kotlinx.coroutines.flow.MutableStateFlow
import kotlinx.coroutines.flow.StateFlow import kotlinx.coroutines.flow.StateFlow
import kotlinx.coroutines.flow.collectLatest import kotlinx.coroutines.flow.collectLatest
import kotlinx.coroutines.flow.first
import kotlinx.coroutines.flow.update import kotlinx.coroutines.flow.update
import kotlinx.coroutines.isActive import kotlinx.coroutines.isActive
import kotlinx.coroutines.launch import kotlinx.coroutines.launch
import java.util.Date import java.util.Date
import kotlin.time.Duration.Companion.milliseconds
class MapViewModel( class MapViewModel(
private val satelliteRepo: ISatelliteRepo, private val satelliteRepo: ISatelliteRepo,
@@ -69,12 +72,15 @@ class MapViewModel(
private var dataUpdateJob: Job? = null private var dataUpdateJob: Job? = null
private var dataUpdateRate = 1000L private var dataUpdateRate = 1000L
private var selectedOrbitalObject: OrbitalObject? = null private var selectedOrbitalObject: OrbitalObject? = null
/** Gates the prediction loop so it doesn't burn CPU while the map isn't on screen */
private val isScreenVisible = MutableStateFlow(true)
val uiState: StateFlow<MapState> = _uiState val uiState: StateFlow<MapState> = _uiState
init { init {
viewModelScope.launch { viewModelScope.launch {
settingsRepo.otherSettings.collectLatest { settings -> settingsRepo.otherSettings.collectLatest { settings ->
_uiState.update { it.copy(isUtc = settings.stateOfUtc) } _uiState.update { it.copy(isUtc = settings.stateOfUtc, isLightUi = settings.stateOfLightTheme) }
} }
} }
val (selectedCatNum, _) = satelliteRepo.selectedPass.value val (selectedCatNum, _) = satelliteRepo.selectedPass.value
@@ -87,6 +93,7 @@ class MapViewModel(
MapAction.SelectNext -> scrollSelection(false) MapAction.SelectNext -> scrollSelection(false)
is MapAction.SelectItem -> selectSatellite(action.item) is MapAction.SelectItem -> selectSatellite(action.item)
is MapAction.SelectDefaultItem -> selectDefaultSatellite(action.catnum) is MapAction.SelectDefaultItem -> selectDefaultSatellite(action.catnum)
is MapAction.SetVisible -> isScreenVisible.value = action.isVisible
} }
} }
@@ -124,7 +131,11 @@ class MapViewModel(
selectedOrbitalObject = orbitalObject selectedOrbitalObject = orbitalObject
viewModelScope.launch { viewModelScope.launch {
dataUpdateJob?.cancelAndJoin() dataUpdateJob?.cancelAndJoin()
dataUpdateJob = launch { // Default dispatcher is mandatory: viewModelScope is Main.immediate, and every
// satelliteRepo call internally hops to Default and resumes back on the caller's
// dispatcher. On Main that posts one continuation per satellite per tick, which
// floods the looper and ANRs for users tracking thousands of objects.
dataUpdateJob = launch(Dispatchers.Default) {
val dateNow = Date() val dateNow = Date()
getStationPosition() getStationPosition()
getSatTrack(orbitalObject, stationPos, dateNow) getSatTrack(orbitalObject, stationPos, dateNow)
@@ -135,9 +146,11 @@ class MapViewModel(
else -> updateFreq else -> updateFreq
} }
while (isActive) { while (isActive) {
// Suspends while the map is off-screen instead of predicting into the void
isScreenVisible.first { it }
dateNow.time = System.currentTimeMillis() dateNow.time = System.currentTimeMillis()
updateMapState(orbitalObject, allSatellites, stationPos, dateNow) updateMapState(orbitalObject, allSatellites, stationPos, dateNow)
delay(effectiveRate) delay(effectiveRate.milliseconds)
} }
} }
} }
@@ -187,7 +200,8 @@ class MapViewModel(
// 2. Derive footprint, info data, sun and moon position from already-computed state // 2. Derive footprint, info data, sun and moon position from already-computed state
val satPos = selectedSatPos ?: satelliteRepo.getPosition(selected, pos, date.time) val satPos = selectedSatPos ?: satelliteRepo.getPosition(selected, pos, date.time)
val footprint = satPos // Range circle is 721 trig-heavy points — keep it on this background dispatcher
val footprint = satPos.getRangeCircle()
val mapData = buildMapData(selected, satPos, date) val mapData = buildMapData(selected, satPos, date)
val sunPos = CelestialComputer.getSunPosition(stationPos, date.time) val sunPos = CelestialComputer.getSunPosition(stationPos, date.time)
val moonPos = CelestialComputer.getMoonPosition(stationPos, date.time) val moonPos = CelestialComputer.getMoonPosition(stationPos, date.time)
@@ -294,7 +308,7 @@ class MapViewModel(
companion object { companion object {
/** Number of parallel chunks for satellite position computation */ /** Number of parallel chunks for satellite position computation */
private const val PARALLEL_CHUNKS = 4 private val PARALLEL_CHUNKS = Runtime.getRuntime().availableProcessors().coerceIn(2, 8)
fun factory(container: IMainContainer) = viewModelFactory { fun factory(container: IMainContainer) = viewModelFactory {
initializer { initializer {
@@ -21,8 +21,11 @@ import androidx.compose.foundation.background
import androidx.compose.foundation.clickable import androidx.compose.foundation.clickable
import androidx.compose.foundation.layout.Arrangement import androidx.compose.foundation.layout.Arrangement
import androidx.compose.foundation.layout.Column import androidx.compose.foundation.layout.Column
import androidx.compose.foundation.layout.fillMaxWidth
import androidx.compose.foundation.layout.Row import androidx.compose.foundation.layout.Row
import androidx.compose.foundation.layout.Spacer
import androidx.compose.foundation.layout.fillMaxHeight import androidx.compose.foundation.layout.fillMaxHeight
import androidx.compose.foundation.layout.height
import androidx.compose.foundation.layout.padding import androidx.compose.foundation.layout.padding
import androidx.compose.foundation.layout.size import androidx.compose.foundation.layout.size
import androidx.compose.foundation.lazy.grid.GridCells import androidx.compose.foundation.lazy.grid.GridCells
@@ -31,6 +34,7 @@ import androidx.compose.foundation.lazy.grid.itemsIndexed
import androidx.compose.material3.Checkbox import androidx.compose.material3.Checkbox
import androidx.compose.material3.Icon import androidx.compose.material3.Icon
import androidx.compose.material3.MaterialTheme import androidx.compose.material3.MaterialTheme
import androidx.compose.material3.RangeSlider
import androidx.compose.material3.Slider import androidx.compose.material3.Slider
import androidx.compose.material3.Switch import androidx.compose.material3.Switch
import androidx.compose.material3.Text import androidx.compose.material3.Text
@@ -54,45 +58,89 @@ import androidx.compose.ui.unit.sp
import com.rtbishop.look4sat.core.presentation.LocalSpacing import com.rtbishop.look4sat.core.presentation.LocalSpacing
import com.rtbishop.look4sat.core.presentation.MainTheme import com.rtbishop.look4sat.core.presentation.MainTheme
import com.rtbishop.look4sat.core.presentation.R import com.rtbishop.look4sat.core.presentation.R
import com.rtbishop.look4sat.core.presentation.SharedDialog import com.rtbishop.look4sat.core.presentation.ConfirmDialog
import com.rtbishop.look4sat.core.presentation.ElevationHighColor
import com.rtbishop.look4sat.core.presentation.ElevationLowColor
import com.rtbishop.look4sat.core.presentation.elevationColor import com.rtbishop.look4sat.core.presentation.elevationColor
import com.rtbishop.look4sat.core.domain.source.Sources
private val allModes = listOf( import kotlin.math.roundToInt
"AFSK", "AFSK S-Net", "AFSK SALSAT", "AHRPT", "AM", "APT", "BPSK", "BPSK PMT-A3",
"CERTO", "CW", "DQPSK", "DSTAR", "DUV", "FFSK", "FM", "FMN", "FSK", "FSK AX.100 Mode 5",
"FSK AX.100 Mode 6", "FSK AX.25 G3RUH", "GFSK", "GFSK Rktr", "GMSK", "HRPT", "LoRa",
"LRPT", "LSB", "MFSK", "MSK", "MSK AX.100 Mode 5", "MSK AX.100 Mode 6", "OFDM", "OQPSK",
"PSK", "PSK31", "PSK63", "QPSK", "QPSK31", "QPSK63", "SSTV", "USB", "WSJT"
)
private val hourSteps = listOf(1, 2, 4, 8, 12, 24, 48, 72, 96, 120, 144, 168, 192, 216, 240) private val hourSteps = listOf(1, 2, 4, 8, 12, 24, 48, 72, 96, 120, 144, 168, 192, 216, 240)
private const val dayMinutes = 24 * 60
private const val minuteStep = 15
private const val endOfDayMinute = dayMinutes - 1
private const val quarterHourSlots = dayMinutes / minuteStep
data class PassFilterParams(
val hours: Int,
val elevation: Double,
val lowElevation: Double,
val highElevation: Double,
val aosStartMinute: Int,
val aosEndMinute: Int,
val invertAosTimeWindow: Boolean,
val showDeepSpace: Boolean
)
@Preview @Preview
@Composable @Composable
private fun PassesDialogPreview() { private fun PassesDialogPreview() {
MainTheme { PassesDialog(24, 16.0, true, {}) { _, _, _ -> } } MainTheme {
PassesFilterDialog(
hours = 24,
elevation = 16.0,
lowElevation = 16.0,
highElevation = 65.0,
aosStartMinute = 0,
aosEndMinute = 23 * 60 + 59,
invertAosTimeWindow = false,
showDeepSpace = true,
cancel = {},
accept = {}
)
}
} }
@Composable @Composable
internal fun PassesDialog( internal fun PassesFilterDialog(
hours: Int, hours: Int,
elevation: Double, elevation: Double,
lowElevation: Double,
highElevation: Double,
aosStartMinute: Int,
aosEndMinute: Int,
invertAosTimeWindow: Boolean,
showDeepSpace: Boolean, showDeepSpace: Boolean,
cancel: () -> Unit, cancel: () -> Unit,
accept: (Int, Double, Boolean) -> Unit accept: (PassFilterParams) -> Unit
) { ) {
val hoursIndex = remember { mutableIntStateOf(hourSteps.indexOfFirst { it >= hours }.coerceAtLeast(0)) } val hoursIndex = remember { mutableIntStateOf(hourSteps.indexOfFirst { it >= hours }.coerceAtLeast(0)) }
val elevationValueNew = remember { mutableDoubleStateOf(elevation) } val elevationValueNew = remember { mutableDoubleStateOf(elevation) }
val highlightBounds = 0f..90f
var highlightRange by remember(lowElevation, highElevation) {
mutableStateOf(lowElevation.toFloat()..highElevation.toFloat())
}
var aosRangeValue by remember {
mutableStateOf(minuteToSlot(aosStartMinute).toFloat()..minuteToSlot(aosEndMinute).toFloat())
}
var invertedAosRange by remember { mutableStateOf(invertAosTimeWindow) }
var deepSpaceEnabled by remember { mutableStateOf(showDeepSpace) } var deepSpaceEnabled by remember { mutableStateOf(showDeepSpace) }
val onAccept = { val onAccept = {
accept(hourSteps[hoursIndex.intValue], elevationValueNew.doubleValue, deepSpaceEnabled).also { cancel() } accept(
} PassFilterParams(
SharedDialog(title = stringResource(R.string.pass_filter_title), onCancel = cancel, onAccept = onAccept) { hours = hourSteps[hoursIndex.intValue],
ToggleRow( elevation = elevationValueNew.doubleValue,
title = stringResource(R.string.pass_filter_deep_space), lowElevation = highlightRange.start.roundToInt().toDouble(),
checked = deepSpaceEnabled, highElevation = highlightRange.endInclusive.roundToInt().toDouble(),
onCheckedChange = { deepSpaceEnabled = it } aosStartMinute = slotToMinute(aosRangeValue.start),
aosEndMinute = slotToMinute(aosRangeValue.endInclusive),
invertAosTimeWindow = invertedAosRange,
showDeepSpace = deepSpaceEnabled
)
) )
cancel()
}
ConfirmDialog(title = stringResource(R.string.pass_filter_title), onCancel = cancel, onAccept = onAccept) {
SliderRow( SliderRow(
title = stringResource(R.string.pass_filter_elev), title = stringResource(R.string.pass_filter_elev),
value = elevationValueNew.doubleValue, value = elevationValueNew.doubleValue,
@@ -104,24 +152,74 @@ internal fun PassesDialog(
SliderRow( SliderRow(
title = stringResource(R.string.pass_filter_hours), title = stringResource(R.string.pass_filter_hours),
value = hoursIndex.intValue.toDouble(), value = hoursIndex.intValue.toDouble(),
displayValue = "${hourSteps[hoursIndex.intValue]}h", displayValue = formatHoursLabel(hourSteps[hoursIndex.intValue]),
valueResId = R.drawable.ic_clock, valueResId = R.drawable.ic_clock,
valueRange = 0f..(hourSteps.size - 1).toFloat(), valueRange = 0f..(hourSteps.size - 1).toFloat(),
steps = hourSteps.size - 2 steps = hourSteps.size - 2
) { hoursIndex.intValue = it.toInt().coerceIn(0, hourSteps.size - 1) } ) { hoursIndex.intValue = it.toInt().coerceIn(0, hourSteps.size - 1) }
ToggleRow(
title = stringResource(R.string.pass_filter_deep_space),
checked = deepSpaceEnabled,
onCheckedChange = { deepSpaceEnabled = it }
)
ElevationColorsRangeSliderRow(
title = stringResource(R.string.prefs_highlight_title),
range = highlightRange,
valueRange = highlightBounds
) { highlightRange = it }
TimeRangeSliderRow(
title = stringResource(R.string.pass_filter_aos_time),
range = aosRangeValue,
displayValue = formatTimeRange(aosRangeValue, invertedAosRange),
valueResId = R.drawable.ic_clock,
valueRange = 0f..quarterHourSlots.toFloat(),
) { aosRangeValue = it }
ToggleRow(
title = stringResource(R.string.pass_filter_invert_time),
checked = invertedAosRange,
onCheckedChange = { invertedAosRange = it }
)
Spacer(modifier = Modifier.height(0.dp))
} }
} }
private fun slotToMinute(value: Float): Int {
val slot = value.roundToInt().coerceIn(0, quarterHourSlots)
return if (slot == quarterHourSlots) endOfDayMinute else slot * minuteStep
}
private fun minuteToSlot(minute: Int): Int {
if (minute >= endOfDayMinute) return quarterHourSlots
return ((minute + minuteStep / 2) / minuteStep).coerceIn(0, quarterHourSlots)
}
private fun formatMinuteOfDay(minute: Int): String {
val hourPart = minute / 60
val minutePart = minute % 60
return "%02d:%02d".format(hourPart, minutePart)
}
private fun formatHoursLabel(hours: Int): String {
if (hours < 24) return "${hours}h"
val days = hours / 24
val remainder = hours % 24
return if (remainder == 0) "${days}d" else "${days}d ${remainder}h"
}
private fun formatTimeRange(
range: ClosedFloatingPointRange<Float>,
inverted: Boolean
): String {
val start = formatMinuteOfDay(slotToMinute(range.start))
val end = formatMinuteOfDay(slotToMinute(range.endInclusive))
return if (inverted) "$end - $start" else "$start - $end"
}
@Composable @Composable
private fun SliderRow( private fun SliderSection(
title: String, title: String,
value: Double, trailingContent: @Composable () -> Unit,
displayValue: String, sliderContent: @Composable () -> Unit
valueResId: Int,
valueRange: ClosedFloatingPointRange<Float>,
steps: Int = 0,
accentColor: Color = MaterialTheme.colorScheme.primary,
onChange: (Float) -> Unit
) { ) {
Column( Column(
horizontalAlignment = Alignment.CenterHorizontally, horizontalAlignment = Alignment.CenterHorizontally,
@@ -138,6 +236,26 @@ private fun SliderRow(
modifier = Modifier.weight(1f), modifier = Modifier.weight(1f),
color = MaterialTheme.colorScheme.onSurface color = MaterialTheme.colorScheme.onSurface
) )
trailingContent()
}
sliderContent()
}
}
@Composable
private fun SliderRow(
title: String,
value: Double,
displayValue: String,
valueResId: Int,
valueRange: ClosedFloatingPointRange<Float>,
steps: Int = 0,
accentColor: Color = MaterialTheme.colorScheme.primary,
onChange: (Float) -> Unit
) {
SliderSection(
title = title,
trailingContent = {
Icon( Icon(
painter = painterResource(id = valueResId), painter = painterResource(id = valueResId),
contentDescription = null, contentDescription = null,
@@ -151,10 +269,89 @@ private fun SliderRow(
color = accentColor color = accentColor
) )
} }
) {
Slider(value = value.toFloat(), onValueChange = onChange, valueRange = valueRange, steps = steps) Slider(value = value.toFloat(), onValueChange = onChange, valueRange = valueRange, steps = steps)
} }
} }
@Composable
private fun TimeRangeSliderRow(
title: String,
range: ClosedFloatingPointRange<Float>,
displayValue: String,
valueResId: Int,
valueRange: ClosedFloatingPointRange<Float>,
onChange: (ClosedFloatingPointRange<Float>) -> Unit
) {
SliderSection(
title = title,
trailingContent = {
Icon(
painter = painterResource(id = valueResId),
contentDescription = null,
tint = MaterialTheme.colorScheme.primary,
modifier = Modifier.size(20.dp)
)
Text(
text = displayValue,
fontSize = 18.sp,
fontWeight = FontWeight.Medium,
color = MaterialTheme.colorScheme.primary
)
}
) {
RangeSlider(
value = range,
onValueChange = { onChange(it.start..it.endInclusive) },
valueRange = valueRange,
steps = 0,
modifier = Modifier.fillMaxWidth()
)
}
}
@Composable
private fun ElevationColorsRangeSliderRow(
title: String,
range: ClosedFloatingPointRange<Float>,
valueRange: ClosedFloatingPointRange<Float>,
onChange: (ClosedFloatingPointRange<Float>) -> Unit
) {
val low = range.start.roundToInt()
val high = range.endInclusive.roundToInt()
SliderSection(
title = title,
trailingContent = {
Text(
text = "$low°",
fontSize = 18.sp,
fontWeight = FontWeight.Medium,
color = ElevationLowColor
)
Text(
text = "..",
fontSize = 18.sp,
fontWeight = FontWeight.Medium,
color = MaterialTheme.colorScheme.primary
)
Text(
text = "$high°",
fontSize = 18.sp,
fontWeight = FontWeight.Medium,
color = ElevationHighColor
)
}
) {
RangeSlider(
value = range,
onValueChange = { onChange(it.start..it.endInclusive) },
valueRange = valueRange,
steps = 0,
modifier = Modifier.fillMaxWidth()
)
}
}
@Preview(showBackground = true) @Preview(showBackground = true)
@Composable @Composable
private fun RadiosDialogPreview() { private fun RadiosDialogPreview() {
@@ -168,7 +365,7 @@ internal fun RadiosDialog(modes: List<String>, cancel: () -> Unit, accept: (List
selected.value = if (mode in selected.value) selected.value - mode else selected.value + mode selected.value = if (mode in selected.value) selected.value - mode else selected.value + mode
} }
val onAccept = { accept(selected.value.toList()).also { cancel() } } val onAccept = { accept(selected.value.toList()).also { cancel() } }
SharedDialog(title = stringResource(R.string.pass_modes_title), onCancel = cancel, onAccept = onAccept) { ConfirmDialog(title = stringResource(R.string.pass_modes_title), onCancel = cancel, onAccept = onAccept) {
LazyVerticalGrid( LazyVerticalGrid(
columns = GridCells.Adaptive(240.dp), columns = GridCells.Adaptive(240.dp),
modifier = Modifier modifier = Modifier
@@ -177,7 +374,7 @@ internal fun RadiosDialog(modes: List<String>, cancel: () -> Unit, accept: (List
horizontalArrangement = Arrangement.spacedBy(1.dp), horizontalArrangement = Arrangement.spacedBy(1.dp),
verticalArrangement = Arrangement.spacedBy(1.dp) verticalArrangement = Arrangement.spacedBy(1.dp)
) { ) {
itemsIndexed(allModes) { index, item -> itemsIndexed(Sources.satelliteModes) { index, item ->
Row( Row(
verticalAlignment = Alignment.CenterVertically, verticalAlignment = Alignment.CenterVertically,
modifier = Modifier modifier = Modifier
@@ -67,7 +67,6 @@ import com.rtbishop.look4sat.core.domain.predict.OrbitalPass
import com.rtbishop.look4sat.core.domain.repository.IContainerProvider import com.rtbishop.look4sat.core.domain.repository.IContainerProvider
import com.rtbishop.look4sat.core.presentation.EmptyListCard import com.rtbishop.look4sat.core.presentation.EmptyListCard
import com.rtbishop.look4sat.core.presentation.IconCard import com.rtbishop.look4sat.core.presentation.IconCard
import com.rtbishop.look4sat.core.presentation.InfoDialog
import com.rtbishop.look4sat.core.presentation.MainTheme import com.rtbishop.look4sat.core.presentation.MainTheme
import com.rtbishop.look4sat.core.presentation.NextPassRow import com.rtbishop.look4sat.core.presentation.NextPassRow
import com.rtbishop.look4sat.core.presentation.R import com.rtbishop.look4sat.core.presentation.R
@@ -75,6 +74,7 @@ import com.rtbishop.look4sat.core.presentation.ScreenColumn
import com.rtbishop.look4sat.core.presentation.SwipeableItem import com.rtbishop.look4sat.core.presentation.SwipeableItem
import com.rtbishop.look4sat.core.presentation.TimerRow import com.rtbishop.look4sat.core.presentation.TimerRow
import com.rtbishop.look4sat.core.presentation.TopBar import com.rtbishop.look4sat.core.presentation.TopBar
import com.rtbishop.look4sat.core.presentation.WhatsNewDialog
import com.rtbishop.look4sat.core.presentation.elevationColor import com.rtbishop.look4sat.core.presentation.elevationColor
import com.rtbishop.look4sat.core.presentation.infiniteMarquee import com.rtbishop.look4sat.core.presentation.infiniteMarquee
import com.rtbishop.look4sat.core.presentation.isVerticalLayout import com.rtbishop.look4sat.core.presentation.isVerticalLayout
@@ -99,14 +99,31 @@ private fun PassesScreen(
navigateToRadar: (Int, Long) -> Unit navigateToRadar: (Int, Long) -> Unit
) { ) {
if (uiState.isPassesDialogShown) { if (uiState.isPassesDialogShown) {
PassesDialog( PassesFilterDialog(
hours = uiState.hours, hours = uiState.hours,
elevation = uiState.elevation, elevation = uiState.elevation,
lowElevation = uiState.lowElevation,
highElevation = uiState.highElevation,
aosStartMinute = uiState.aosStartMinute,
aosEndMinute = uiState.aosEndMinute,
invertAosTimeWindow = uiState.invertAosTimeWindow,
showDeepSpace = uiState.showDeepSpace, showDeepSpace = uiState.showDeepSpace,
cancel = { onAction(PassesAction.TogglePassesDialog) } cancel = { onAction(PassesAction.TogglePassesDialog) },
) { hours, elevation, showDeepSpace -> accept = { params ->
onAction(PassesAction.FilterPasses(hours, elevation, showDeepSpace)) onAction(
} PassesAction.FilterPasses(
hoursAhead = params.hours,
minElevation = params.elevation,
lowElevation = params.lowElevation,
highElevation = params.highElevation,
aosStartMinute = params.aosStartMinute,
aosEndMinute = params.aosEndMinute,
invertAosTimeWindow = params.invertAosTimeWindow,
showDeepSpace = params.showDeepSpace
)
)
}
)
} }
if (uiState.isRadiosDialogShown) { if (uiState.isRadiosDialogShown) {
RadiosDialog( RadiosDialog(
@@ -117,19 +134,15 @@ private fun PassesScreen(
} }
} }
if (uiState.shouldSeeWhatsNew) { if (uiState.shouldSeeWhatsNew) {
InfoDialog( val dismiss = { onAction(PassesAction.DismissWhatsNew) }
title = stringResource(R.string.pass_whatsnew_title), WhatsNewDialog(onDismiss = dismiss)
text = stringResource(R.string.pass_whatsnew_message)
) {
onAction(PassesAction.DismissWhatsNew)
}
} }
ScreenColumn( ScreenColumn(
topBar = { isVerticalLayout -> topBar = { isVerticalLayout ->
TopBar( TopBar(
isVerticalLayout = isVerticalLayout, isVerticalLayout = isVerticalLayout,
startAction = { startAction = {
IconCard(action = { onAction(PassesAction.TogglePassesDialog) }, resId = R.drawable.ic_filter) IconCard(action = { onAction(PassesAction.ToggleRadiosDialog) }, resId = R.drawable.ic_radios)
}, },
topInfo = { topInfo = {
TimerRow(timeString = uiState.nextTime, isTimeAos = uiState.isNextTimeAos) TimerRow(timeString = uiState.nextTime, isTimeAos = uiState.isNextTimeAos)
@@ -138,7 +151,7 @@ private fun PassesScreen(
NextPassRow(pass = uiState.nextPass, isUtc = uiState.isUtc) NextPassRow(pass = uiState.nextPass, isUtc = uiState.isUtc)
}, },
endAction = { endAction = {
IconCard(action = { onAction(PassesAction.ToggleRadiosDialog) }, resId = R.drawable.ic_radios) IconCard(action = { onAction(PassesAction.TogglePassesDialog) }, resId = R.drawable.ic_filter)
} }
) )
} }
@@ -265,6 +278,11 @@ private fun StickyDateHeader(label: String, sunriseTime: String, sunsetTime: Str
} }
} }
private fun displayLocale(): Locale {
val locale = Locale.getDefault()
return if (locale.language == Locale.CHINESE.language) locale else Locale.ENGLISH
}
@Preview(showBackground = true) @Preview(showBackground = true)
@Composable @Composable
private fun DeepSpacePassPreview() { private fun DeepSpacePassPreview() {
@@ -297,7 +315,7 @@ private fun PassItem(
if (isUtc) TimeZone.getTimeZone("UTC") else TimeZone.getDefault() if (isUtc) TimeZone.getTimeZone("UTC") else TimeZone.getDefault()
} }
val sdfTime = remember(isUtc) { val sdfTime = remember(isUtc) {
SimpleDateFormat("HH:mm:ss", Locale.ENGLISH).also { it.timeZone = timeZone } SimpleDateFormat("HH:mm:ss", displayLocale()).also { it.timeZone = timeZone }
} }
val aosTimeStr = remember(pass.aosTime, isUtc) { sdfTime.format(Date(pass.aosTime)) } val aosTimeStr = remember(pass.aosTime, isUtc) { sdfTime.format(Date(pass.aosTime)) }
val losTimeStr = remember(pass.losTime, isUtc) { sdfTime.format(Date(pass.losTime)) } val losTimeStr = remember(pass.losTime, isUtc) { sdfTime.format(Date(pass.losTime)) }
@@ -29,6 +29,11 @@ data class PassesState(
val isNextTimeAos: Boolean = true, val isNextTimeAos: Boolean = true,
val hours: Int = 24, val hours: Int = 24,
val elevation: Double = 16.0, val elevation: Double = 16.0,
val lowElevation: Double = 16.0,
val highElevation: Double = 65.0,
val aosStartMinute: Int = 0,
val aosEndMinute: Int = 23 * 60 + 59,
val invertAosTimeWindow: Boolean = false,
val showDeepSpace: Boolean = true, val showDeepSpace: Boolean = true,
val modes: List<String> = emptyList(), val modes: List<String> = emptyList(),
val itemsList: List<OrbitalPass> = emptyList(), val itemsList: List<OrbitalPass> = emptyList(),
@@ -40,7 +45,16 @@ data class PassesState(
sealed interface PassesAction { sealed interface PassesAction {
data object DismissWhatsNew : PassesAction data object DismissWhatsNew : PassesAction
data class FilterPasses(val hoursAhead: Int, val minElevation: Double, val showDeepSpace: Boolean) : PassesAction data class FilterPasses(
val hoursAhead: Int,
val minElevation: Double,
val lowElevation: Double,
val highElevation: Double,
val aosStartMinute: Int,
val aosEndMinute: Int,
val invertAosTimeWindow: Boolean,
val showDeepSpace: Boolean
) : PassesAction
data class FilterRadios(val modes: List<String>) : PassesAction data class FilterRadios(val modes: List<String>) : PassesAction
data object RefreshPasses : PassesAction data object RefreshPasses : PassesAction
data object TogglePassesDialog : PassesAction data object TogglePassesDialog : PassesAction
@@ -34,6 +34,9 @@ import kotlinx.coroutines.delay
import kotlinx.coroutines.flow.MutableStateFlow import kotlinx.coroutines.flow.MutableStateFlow
import kotlinx.coroutines.flow.StateFlow import kotlinx.coroutines.flow.StateFlow
import kotlinx.coroutines.flow.collectLatest import kotlinx.coroutines.flow.collectLatest
import kotlinx.coroutines.flow.combine
import kotlinx.coroutines.flow.distinctUntilChanged
import kotlinx.coroutines.flow.map
import kotlinx.coroutines.flow.update import kotlinx.coroutines.flow.update
import kotlinx.coroutines.isActive import kotlinx.coroutines.isActive
import kotlinx.coroutines.launch import kotlinx.coroutines.launch
@@ -41,6 +44,7 @@ import java.text.SimpleDateFormat
import java.util.Date import java.util.Date
import java.util.Locale import java.util.Locale
import java.util.TimeZone import java.util.TimeZone
import kotlin.time.Duration.Companion.milliseconds
class PassesViewModel( class PassesViewModel(
private val satelliteRepo: ISatelliteRepo, private val satelliteRepo: ISatelliteRepo,
@@ -54,8 +58,13 @@ class PassesViewModel(
nextPass = defaultPass, nextPass = defaultPass,
hours = settingsRepo.passesSettings.value.hoursAhead, hours = settingsRepo.passesSettings.value.hoursAhead,
elevation = settingsRepo.passesSettings.value.minElevation, elevation = settingsRepo.passesSettings.value.minElevation,
lowElevation = settingsRepo.otherSettings.value.lowElevation,
highElevation = settingsRepo.otherSettings.value.highElevation,
aosStartMinute = settingsRepo.passesSettings.value.aosStartMinute,
aosEndMinute = settingsRepo.passesSettings.value.aosEndMinute,
invertAosTimeWindow = settingsRepo.passesSettings.value.invertAosTimeWindow,
showDeepSpace = settingsRepo.passesSettings.value.showDeepSpace, showDeepSpace = settingsRepo.passesSettings.value.showDeepSpace,
modes = settingsRepo.passesSettings.value.selectedModes, modes = settingsRepo.selectedSatModes.value,
shouldSeeWhatsNew = settingsRepo.otherSettings.value.shouldSeeWhatsNew shouldSeeWhatsNew = settingsRepo.otherSettings.value.shouldSeeWhatsNew
) )
) )
@@ -71,45 +80,70 @@ class PassesViewModel(
// React to settings changes: update UTC flag and whatsNew // React to settings changes: update UTC flag and whatsNew
viewModelScope.launch { viewModelScope.launch {
settingsRepo.otherSettings.collectLatest { settings -> settingsRepo.otherSettings.collectLatest { settings ->
_uiState.update { it.copy(isUtc = settings.stateOfUtc, shouldSeeWhatsNew = settings.shouldSeeWhatsNew) } _uiState.update {
} it.copy(
} isUtc = settings.stateOfUtc,
// Main tick loop: reacts to new passes, then ticks every second shouldSeeWhatsNew = settings.shouldSeeWhatsNew,
viewModelScope.launch { lowElevation = settings.lowElevation,
satelliteRepo.passes.collectLatest { allPasses -> highElevation = settings.highElevation
while (isActive) { )
val timeNow = System.currentTimeMillis()
val isUtc = _uiState.value.isUtc
val showDeepSpace = _uiState.value.showDeepSpace
val filtered = allPasses
.let { if (showDeepSpace) it else it.filter { pass -> !pass.isDeepSpace } }
val processed = computePassProgress(filtered, timeNow)
val (nextPass, nextTime, isAos) = resolveNextPass(processed, timeNow)
val sunTimes = computeSunTimes(processed, isUtc)
val grouped = groupPasses(processed, isUtc)
_uiState.update {
it.copy(
itemsList = processed,
groupedPasses = grouped,
sunTimes = sunTimes,
nextPass = nextPass,
nextTime = nextTime,
isNextTimeAos = isAos
)
}
delay(1000)
} }
} }
} }
viewModelScope.launch {
settingsRepo.selectedSatModes.collectLatest { modes ->
_uiState.update { it.copy(modes = modes) }
}
}
// Tick loop: restarts on passes change, UTC/DeepSpace changes. Grouping/sun-time
// computations run once per restart, progress/countdown are calculated every second.
viewModelScope.launch {
combine(
satelliteRepo.passes,
settingsRepo.otherSettings.map { it.stateOfUtc }.distinctUntilChanged(),
settingsRepo.passesSettings.map { it.showDeepSpace }.distinctUntilChanged()
) { passes, isUtc, showDeepSpace -> Triple(passes, isUtc, showDeepSpace) }
.collectLatest { (allPasses, isUtc, showDeepSpace) ->
val filtered = if (showDeepSpace) allPasses
else allPasses.filter { !it.isDeepSpace }
// Expensive: recompute sun times once per items/UTC change, not every second
val sunTimes = computeSunTimes(filtered, isUtc)
_uiState.update { it.copy(sunTimes = sunTimes) }
while (isActive) {
val timeNow = System.currentTimeMillis()
val processed = computePassProgress(filtered, timeNow)
val grouped = groupPasses(processed, isUtc)
val (nextPass, nextTime, isAos) = resolveNextPass(processed, timeNow)
_uiState.update {
it.copy(
itemsList = processed,
groupedPasses = grouped,
nextPass = nextPass,
nextTime = nextTime,
isNextTimeAos = isAos
)
}
delay(1000.milliseconds)
}
}
}
} }
fun onAction(action: PassesAction) { fun onAction(action: PassesAction) {
when (action) { when (action) {
PassesAction.DismissWhatsNew -> settingsRepo.setWhatsNewDismissed() PassesAction.DismissWhatsNew -> settingsRepo.setWhatsNewDismissed()
is PassesAction.FilterPasses -> is PassesAction.FilterPasses ->
applyFilter(action.hoursAhead, action.minElevation, action.showDeepSpace, _uiState.value.modes) applyFilter(
is PassesAction.FilterRadios -> hoursAhead = action.hoursAhead,
applyFilter(_uiState.value.hours, _uiState.value.elevation, _uiState.value.showDeepSpace, action.modes) minElevation = action.minElevation,
lowElevation = action.lowElevation,
highElevation = action.highElevation,
aosStartMinute = action.aosStartMinute,
aosEndMinute = action.aosEndMinute,
invertAosTimeWindow = action.invertAosTimeWindow,
showDeepSpace = action.showDeepSpace
)
is PassesAction.FilterRadios -> setModesFilter(action.modes)
PassesAction.RefreshPasses -> refreshPasses() PassesAction.RefreshPasses -> refreshPasses()
PassesAction.TogglePassesDialog -> PassesAction.TogglePassesDialog ->
_uiState.update { it.copy(isPassesDialogShown = !it.isPassesDialogShown) } _uiState.update { it.copy(isPassesDialogShown = !it.isPassesDialogShown) }
@@ -120,12 +154,28 @@ class PassesViewModel(
} }
} }
private fun displayLocale(): Locale {
val locale = Locale.getDefault()
return if (locale.language == Locale.CHINESE.language) locale else Locale.ENGLISH
}
/** Returns the visible pass-date format. Keep non-Chinese locales identical to upstream. */
private fun dateFormat(tz: TimeZone): SimpleDateFormat {
val locale = displayLocale()
val pattern = if (locale.language == Locale.CHINESE.language) {
"yyyy'年'M'月'd'日' EEEE"
} else {
"EEE, dd MMM yyyy"
}
return SimpleDateFormat(pattern, locale).also { it.timeZone = tz }
}
// Computes sunrise/sunset strings for each unique calendar day in the pass list, plus today for DeepSpace // Computes sunrise/sunset strings for each unique calendar day in the pass list, plus today for DeepSpace
private fun computeSunTimes(passes: List<OrbitalPass>, isUtc: Boolean): Map<String, Pair<String, String>> { private fun computeSunTimes(passes: List<OrbitalPass>, isUtc: Boolean): Map<String, Pair<String, String>> {
val stationPos = settingsRepo.stationPosition.value val stationPos = settingsRepo.stationPosition.value
val tz = if (isUtc) TimeZone.getTimeZone("UTC") else TimeZone.getDefault() val tz = if (isUtc) TimeZone.getTimeZone("UTC") else TimeZone.getDefault()
val sdfDate = SimpleDateFormat("EEE, dd MMM yyyy", Locale.ENGLISH).also { it.timeZone = tz } val sdfDate = dateFormat(tz)
val sdfTime = SimpleDateFormat("HH:mm", Locale.ENGLISH).also { it.timeZone = tz } val sdfTime = SimpleDateFormat("HH:mm", displayLocale()).also { it.timeZone = tz }
val result = LinkedHashMap<String, Pair<String, String>>() val result = LinkedHashMap<String, Pair<String, String>>()
// DeepSpace group always shows today's sun times // DeepSpace group always shows today's sun times
if (passes.any { it.isDeepSpace }) { if (passes.any { it.isDeepSpace }) {
@@ -148,7 +198,7 @@ class PassesViewModel(
private fun groupPasses(passes: List<OrbitalPass>, isUtc: Boolean): Map<String, List<OrbitalPass>> { private fun groupPasses(passes: List<OrbitalPass>, isUtc: Boolean): Map<String, List<OrbitalPass>> {
val tz = if (isUtc) TimeZone.getTimeZone("UTC") else TimeZone.getDefault() val tz = if (isUtc) TimeZone.getTimeZone("UTC") else TimeZone.getDefault()
val sdfDate = SimpleDateFormat("EEE, dd MMM yyyy", Locale.ENGLISH).also { it.timeZone = tz } val sdfDate = dateFormat(tz)
val ordered = LinkedHashMap<String, List<OrbitalPass>>() val ordered = LinkedHashMap<String, List<OrbitalPass>>()
val deepSpace = passes.filter { it.isDeepSpace } val deepSpace = passes.filter { it.isDeepSpace }
if (deepSpace.isNotEmpty()) ordered["DeepSpace (period >225min)"] = deepSpace if (deepSpace.isNotEmpty()) ordered["DeepSpace (period >225min)"] = deepSpace
@@ -198,19 +248,73 @@ class PassesViewModel(
private fun applyFilter( private fun applyFilter(
hoursAhead: Int, hoursAhead: Int,
minElevation: Double, minElevation: Double,
showDeepSpace: Boolean, lowElevation: Double,
modes: List<String> highElevation: Double,
aosStartMinute: Int,
aosEndMinute: Int,
invertAosTimeWindow: Boolean,
showDeepSpace: Boolean
) = viewModelScope.launch { ) = viewModelScope.launch {
settingsRepo.setPassesSettings(PassesSettings(showDeepSpace, hoursAhead, minElevation, modes)) settingsRepo.setPassesSettings(
PassesSettings(
showDeepSpace,
hoursAhead,
minElevation,
aosStartMinute,
aosEndMinute,
invertAosTimeWindow
)
)
settingsRepo.updateOtherSettings { it.copy(lowElevation = lowElevation, highElevation = highElevation) }
_uiState.update { _uiState.update {
it.copy(hours = hoursAhead, elevation = minElevation, showDeepSpace = showDeepSpace, modes = modes) it.copy(
hours = hoursAhead,
elevation = minElevation,
lowElevation = lowElevation,
highElevation = highElevation,
aosStartMinute = aosStartMinute,
aosEndMinute = aosEndMinute,
invertAosTimeWindow = invertAosTimeWindow,
showDeepSpace = showDeepSpace
)
} }
satelliteRepo.calculatePasses(System.currentTimeMillis(), hoursAhead, minElevation, modes) val modes = settingsRepo.selectedSatModes.value
satelliteRepo.calculatePasses(
time = System.currentTimeMillis(),
hoursAhead = hoursAhead,
minElevation = minElevation,
aosStartMinute = aosStartMinute,
aosEndMinute = aosEndMinute,
invertAosTimeWindow = invertAosTimeWindow,
modes = modes
)
}
private fun setModesFilter(modes: List<String>) = viewModelScope.launch {
settingsRepo.setSelectedSatModes(modes)
_uiState.update { it.copy(modes = modes) }
satelliteRepo.calculatePasses(
time = System.currentTimeMillis(),
hoursAhead = _uiState.value.hours,
minElevation = _uiState.value.elevation,
aosStartMinute = _uiState.value.aosStartMinute,
aosEndMinute = _uiState.value.aosEndMinute,
invertAosTimeWindow = _uiState.value.invertAosTimeWindow,
modes = modes
)
} }
private fun refreshPasses() = viewModelScope.launch { private fun refreshPasses() = viewModelScope.launch {
val (_, hoursAhead, minElevation, modes) = settingsRepo.passesSettings.value val settings = settingsRepo.passesSettings.value
satelliteRepo.calculatePasses(System.currentTimeMillis(), hoursAhead, minElevation, modes) satelliteRepo.calculatePasses(
time = System.currentTimeMillis(),
hoursAhead = settings.hoursAhead,
minElevation = settings.minElevation,
aosStartMinute = settings.aosStartMinute,
aosEndMinute = settings.aosEndMinute,
invertAosTimeWindow = settings.invertAosTimeWindow,
modes = settingsRepo.selectedSatModes.value
)
} }
companion object { companion object {
@@ -31,9 +31,12 @@ import androidx.compose.foundation.border
import androidx.compose.foundation.layout.Arrangement import androidx.compose.foundation.layout.Arrangement
import androidx.compose.foundation.layout.Box import androidx.compose.foundation.layout.Box
import androidx.compose.foundation.layout.Column import androidx.compose.foundation.layout.Column
import androidx.compose.foundation.layout.WindowInsets
import androidx.compose.foundation.layout.Row import androidx.compose.foundation.layout.Row
import androidx.compose.foundation.layout.asPaddingValues
import androidx.compose.foundation.layout.fillMaxSize import androidx.compose.foundation.layout.fillMaxSize
import androidx.compose.foundation.layout.fillMaxWidth import androidx.compose.foundation.layout.fillMaxWidth
import androidx.compose.foundation.layout.navigationBars
import androidx.compose.foundation.layout.padding import androidx.compose.foundation.layout.padding
import androidx.compose.foundation.pager.HorizontalPager import androidx.compose.foundation.pager.HorizontalPager
import androidx.compose.foundation.pager.rememberPagerState import androidx.compose.foundation.pager.rememberPagerState
@@ -45,6 +48,7 @@ import androidx.compose.material3.Text
import androidx.compose.runtime.Composable import androidx.compose.runtime.Composable
import androidx.compose.runtime.LaunchedEffect import androidx.compose.runtime.LaunchedEffect
import androidx.compose.runtime.getValue import androidx.compose.runtime.getValue
import androidx.compose.runtime.remember
import androidx.compose.runtime.rememberCoroutineScope import androidx.compose.runtime.rememberCoroutineScope
import androidx.compose.ui.Alignment import androidx.compose.ui.Alignment
import androidx.compose.ui.Modifier import androidx.compose.ui.Modifier
@@ -59,6 +63,7 @@ import androidx.lifecycle.compose.collectAsStateWithLifecycle
import androidx.lifecycle.viewmodel.compose.viewModel import androidx.lifecycle.viewmodel.compose.viewModel
import com.rtbishop.look4sat.core.domain.predict.OrbitalPos import com.rtbishop.look4sat.core.domain.predict.OrbitalPos
import com.rtbishop.look4sat.core.domain.repository.IContainerProvider import com.rtbishop.look4sat.core.domain.repository.IContainerProvider
import com.rtbishop.look4sat.core.domain.utility.DopplerFrequencyCalculator
import com.rtbishop.look4sat.core.domain.utility.toDegrees import com.rtbishop.look4sat.core.domain.utility.toDegrees
import com.rtbishop.look4sat.core.presentation.EmptyListCard import com.rtbishop.look4sat.core.presentation.EmptyListCard
import com.rtbishop.look4sat.core.presentation.IconCard import com.rtbishop.look4sat.core.presentation.IconCard
@@ -74,6 +79,7 @@ import kotlinx.coroutines.launch
private enum class RadarPage(val title: String) { private enum class RadarPage(val title: String) {
Transceivers("Transceivers"), Transceivers("Transceivers"),
Calculator("Calculator"),
Sstv("SSTV") Sstv("SSTV")
} }
@@ -112,6 +118,7 @@ private fun RadarScreen(
Column( Column(
modifier = Modifier modifier = Modifier
.layoutPadding() .layoutPadding()
.padding(bottom = WindowInsets.navigationBars.asPaddingValues().calculateBottomPadding())
.keepScreenOn(), .keepScreenOn(),
verticalArrangement = Arrangement.spacedBy(6.dp) verticalArrangement = Arrangement.spacedBy(6.dp)
) { ) {
@@ -150,16 +157,31 @@ private fun PagerCard(
requestMicPermission: () -> Unit, requestMicPermission: () -> Unit,
modifier: Modifier = Modifier modifier: Modifier = Modifier
) { ) {
val pages = RadarPage.entries val hasCalculatorPage = remember(uiState.transceivers.transmitters) {
uiState.transceivers.transmitters.any(DopplerFrequencyCalculator::isNamedLinearTransponder)
}
val pages = remember(hasCalculatorPage) {
buildList {
add(RadarPage.Transceivers)
if (hasCalculatorPage) add(RadarPage.Calculator)
add(RadarPage.Sstv)
}
}
val pagerState = rememberPagerState(pageCount = { pages.size }) val pagerState = rememberPagerState(pageCount = { pages.size })
val coroutineScope = rememberCoroutineScope() val coroutineScope = rememberCoroutineScope()
LaunchedEffect(pages.size) {
val lastPage = pages.lastIndex
if (pagerState.currentPage > lastPage) pagerState.scrollToPage(lastPage)
}
ElevatedCard(modifier = modifier) { ElevatedCard(modifier = modifier) {
Column(modifier = Modifier.fillMaxSize()) { Column(modifier = Modifier.fillMaxSize()) {
PrimaryTabRow(selectedTabIndex = pagerState.currentPage) { val selectedTabIndex = pagerState.currentPage.coerceIn(0, pages.lastIndex)
PrimaryTabRow(selectedTabIndex = selectedTabIndex) {
pages.forEachIndexed { index, page -> pages.forEachIndexed { index, page ->
Tab( Tab(
selected = pagerState.currentPage == index, selected = selectedTabIndex == index,
onClick = { coroutineScope.launch { pagerState.animateScrollToPage(index) } }, onClick = { coroutineScope.launch { pagerState.animateScrollToPage(index) } },
text = { Text(text = page.title, maxLines = 1, overflow = TextOverflow.Ellipsis) } text = { Text(text = page.title, maxLines = 1, overflow = TextOverflow.Ellipsis) }
) )
@@ -176,6 +198,13 @@ private fun PagerCard(
radioControl = uiState.radioControl, radioControl = uiState.radioControl,
onAction = onAction onAction = onAction
) )
RadarPage.Calculator -> CalculatorPage(
transceivers = uiState.transceivers.transmitters,
selectedUuid = uiState.transceivers.selectedUuid,
orbitalPos = uiState.orbitalPos,
onAction = onAction,
calculatorOffsetKHz = uiState.calculatorOffsetKHz
)
RadarPage.Sstv -> SstvPage( RadarPage.Sstv -> SstvPage(
sstv = uiState.sstv, sstv = uiState.sstv,
dopplerFrequency = uiState.transceivers.selectedFrequency?.let { formatFrequency(it) }, dopplerFrequency = uiState.transceivers.selectedFrequency?.let { formatFrequency(it) },
@@ -225,6 +254,7 @@ private fun RadarCard(uiState: RadarState, modifier: Modifier = Modifier) {
azimElev = uiState.orientationValues, azimElev = uiState.orientationValues,
shouldShowSweep = uiState.shouldShowSweep, shouldShowSweep = uiState.shouldShowSweep,
shouldUseCompass = uiState.shouldUseCompass, shouldUseCompass = uiState.shouldUseCompass,
shouldFlipRadar = uiState.shouldFlipRadar,
modifier = Modifier.align(Alignment.Center), modifier = Modifier.align(Alignment.Center),
sunPosition = uiState.sunPosition, sunPosition = uiState.sunPosition,
moonPosition = uiState.moonPosition, moonPosition = uiState.moonPosition,
@@ -22,6 +22,7 @@ import com.rtbishop.look4sat.core.domain.predict.CelestialComputer
import com.rtbishop.look4sat.core.domain.predict.OrbitalPass import com.rtbishop.look4sat.core.domain.predict.OrbitalPass
import com.rtbishop.look4sat.core.domain.predict.OrbitalPos import com.rtbishop.look4sat.core.domain.predict.OrbitalPos
import com.rtbishop.look4sat.core.domain.sstv.SstvFrame import com.rtbishop.look4sat.core.domain.sstv.SstvFrame
import com.rtbishop.look4sat.core.domain.sstv.SstvQualityMetrics
data class RadioPanelState( data class RadioPanelState(
val label: String = "", val label: String = "",
@@ -57,11 +58,13 @@ data class RadarState(
val satTrack: List<OrbitalPos> = emptyList(), val satTrack: List<OrbitalPos> = emptyList(),
val shouldShowSweep: Boolean = false, val shouldShowSweep: Boolean = false,
val shouldUseCompass: Boolean = false, val shouldUseCompass: Boolean = false,
val shouldFlipRadar: Boolean = false,
val sunPosition: CelestialComputer.SunPosition? = null, val sunPosition: CelestialComputer.SunPosition? = null,
val moonPosition: CelestialComputer.MoonPosition? = null, val moonPosition: CelestialComputer.MoonPosition? = null,
val transceivers: TransceiverSubState = TransceiverSubState(), val transceivers: TransceiverSubState = TransceiverSubState(),
val radioControl: RadioControlSubState = RadioControlSubState(), val radioControl: RadioControlSubState = RadioControlSubState(),
val sstv: SstvSubState = SstvSubState() val sstv: SstvSubState = SstvSubState(),
val calculatorOffsetKHz: String = ""
) )
enum class SstvStatus { Idle, Recording } enum class SstvStatus { Idle, Recording }
@@ -72,7 +75,8 @@ data class SstvSubState(
val hasPermission: Boolean = false, val hasPermission: Boolean = false,
val selectedMode: String = "Auto", val selectedMode: String = "Auto",
val supportedModes: List<String> = emptyList(), val supportedModes: List<String> = emptyList(),
val currentFrame: SstvFrame? = null val currentFrame: SstvFrame? = null,
val diagnosticsMetrics: SstvQualityMetrics? = null
) )
sealed interface RadarAction { sealed interface RadarAction {
@@ -94,4 +98,7 @@ sealed interface RadarAction {
data object SstvReset : RadarAction data object SstvReset : RadarAction
data class SstvSelectMode(val modeName: String) : RadarAction data class SstvSelectMode(val modeName: String) : RadarAction
data class SstvPermissionResult(val granted: Boolean) : RadarAction data class SstvPermissionResult(val granted: Boolean) : RadarAction
// Calculator actions
data class ChangeCalculatorOffset(val offsetKHz: String) : RadarAction
} }
@@ -74,6 +74,7 @@ fun RadarViewCompose(
azimElev: Pair<Float, Float>, azimElev: Pair<Float, Float>,
shouldShowSweep: Boolean, shouldShowSweep: Boolean,
shouldUseCompass: Boolean, shouldUseCompass: Boolean,
shouldFlipRadar: Boolean,
modifier: Modifier = Modifier, modifier: Modifier = Modifier,
sunPosition: CelestialComputer.SunPosition? = null, sunPosition: CelestialComputer.SunPosition? = null,
moonPosition: CelestialComputer.MoonPosition? = null, moonPosition: CelestialComputer.MoonPosition? = null,
@@ -125,7 +126,9 @@ fun RadarViewCompose(
cachedSweepBrush = makeSweepBrush(center, primaryColor) cachedSweepBrush = makeSweepBrush(center, primaryColor)
cachedSweepColor = primaryColor cachedSweepColor = primaryColor
} }
rotate(if (shouldUseCompass) -azimElev.first else 0f) { val baseRotation = if (shouldUseCompass) -azimElev.first else 0f
val rotation = if (shouldFlipRadar) baseRotation + 180f else baseRotation
rotate(rotation) {
if (shouldShowSweep) cachedSweepBrush?.let { drawSweep(center, sweepDegrees, radius, it) } if (shouldShowSweep) cachedSweepBrush?.let { drawSweep(center, sweepDegrees, radius, it) }
drawRadar(radius, radarColor) drawRadar(radius, radarColor)
drawElevationLabels(radius, primaryColor, measurer) drawElevationLabels(radius, primaryColor, measurer)
@@ -32,6 +32,7 @@ import com.rtbishop.look4sat.core.domain.repository.IReporter
import com.rtbishop.look4sat.core.domain.repository.ISatelliteRepo import com.rtbishop.look4sat.core.domain.repository.ISatelliteRepo
import com.rtbishop.look4sat.core.domain.repository.ISensorsRepo import com.rtbishop.look4sat.core.domain.repository.ISensorsRepo
import com.rtbishop.look4sat.core.domain.repository.ISettingsRepo import com.rtbishop.look4sat.core.domain.repository.ISettingsRepo
import com.rtbishop.look4sat.core.domain.sstv.LineRecoveryStrategy
import com.rtbishop.look4sat.core.domain.sstv.SstvDecoder import com.rtbishop.look4sat.core.domain.sstv.SstvDecoder
import com.rtbishop.look4sat.core.domain.usecase.IAudioCapture import com.rtbishop.look4sat.core.domain.usecase.IAudioCapture
import com.rtbishop.look4sat.core.domain.usecase.IAddToCalendar import com.rtbishop.look4sat.core.domain.usecase.IAddToCalendar
@@ -64,11 +65,14 @@ class RadarViewModel(
private val showToast: IShowToast private val showToast: IShowToast
) : ViewModel() { ) : ViewModel() {
private val stationPos = settingsRepo.stationPosition.value private var stationPos = settingsRepo.stationPosition.value
private val magDeclination = sensorsRepo.getMagDeclination(stationPos) private var magDeclination = sensorsRepo.getMagDeclination(stationPos)
private var compassOffset = settingsRepo.otherSettings.value.radarCompassOffset
private var compassOffsetElev = settingsRepo.otherSettings.value.radarCompassOffsetElev
private var transponders: List<SatRadio> = emptyList() private var transponders: List<SatRadio> = emptyList()
private var sstvDecoder: SstvDecoder? = null private var sstvDecoder: SstvDecoder? = null
private var sstvRecordingJob: Job? = null private var sstvRecordingJob: Job? = null
private var sensorCollectionJob: Job? = null
// Celestial positions change slowly, recompute at most once per minute // Celestial positions change slowly, recompute at most once per minute
private var lastCelestialUpdateMs = 0L private var lastCelestialUpdateMs = 0L
@@ -87,33 +91,67 @@ class RadarViewModel(
val uiState: StateFlow<RadarState> = _uiState val uiState: StateFlow<RadarState> = _uiState
init { init {
collectCompassSensor() collectSettingsChanges() // also handles initial sensor subscription
collectSettingsChanges() collectStationPositionChanges()
collectPassAndStartTickLoop() collectPassAndStartTickLoop()
collectRadioTrackingState() collectRadioTrackingState()
} }
private fun collectCompassSensor() { // Starts sensor collection if not already running.
if (!settingsRepo.otherSettings.value.stateOfSensors) return private fun startSensorCollection() {
viewModelScope.launch { if (sensorCollectionJob?.isActive == true) return
sensorCollectionJob = viewModelScope.launch {
sensorsRepo.enableSensor() sensorsRepo.enableSensor()
sensorsRepo.sensorData.collect { data -> sensorsRepo.sensorData.collect { data ->
val orientationValues = (data.first + magDeclination) to data.second val orientationValues =
(data.first + magDeclination + compassOffset) to (data.second + compassOffsetElev)
_uiState.update { it.copy(orientationValues = orientationValues) } _uiState.update { it.copy(orientationValues = orientationValues) }
} }
} }
} }
// Stops sensor collection and disables the hardware sensor.
private fun stopSensorCollection() {
sensorCollectionJob?.cancel()
sensorCollectionJob = null
sensorsRepo.disableSensor()
}
private fun collectSettingsChanges() { private fun collectSettingsChanges() {
viewModelScope.launch { viewModelScope.launch {
settingsRepo.otherSettings.collectLatest { settings -> settingsRepo.otherSettings.collect { settings ->
compassOffset = settings.radarCompassOffset
compassOffsetElev = settings.radarCompassOffsetElev
_uiState.update { _uiState.update {
it.copy( it.copy(
isUtc = settings.stateOfUtc, isUtc = settings.stateOfUtc,
shouldShowSweep = settings.stateOfSweep, shouldShowSweep = settings.stateOfSweep,
shouldUseCompass = settings.stateOfSensors shouldUseCompass = settings.stateOfSensors,
shouldFlipRadar = settings.radarCompassOffsetElev < 0f
) )
} }
// Reactively wire sensor hardware to the compass setting
when {
settings.stateOfSensors -> startSensorCollection()
else -> stopSensorCollection()
}
}
}
}
private fun collectStationPositionChanges() {
viewModelScope.launch {
settingsRepo.stationPosition.collect { newPos ->
if (stationPos != newPos) {
stationPos = newPos
magDeclination = sensorsRepo.getMagDeclination(stationPos)
lastCelestialUpdateMs = 0L // force celestial recompute on next tick
val pass = _uiState.value.currentPass ?: return@collect
if (!pass.isDeepSpace) {
val track = satelliteRepo.getTrack(pass.orbitalObject, stationPos, pass.aosTime, pass.losTime)
_uiState.update { it.copy(satTrack = track) }
}
}
} }
} }
} }
@@ -212,8 +250,7 @@ class RadarViewModel(
} }
override fun onCleared() { override fun onCleared() {
sensorsRepo.disableSensor() stopSensorCollection()
super.onCleared()
} }
fun onAction(action: RadarAction) { fun onAction(action: RadarAction) {
@@ -223,7 +260,17 @@ class RadarViewModel(
// Compute toggle state before the update so we don't read post-update value // Compute toggle state before the update so we don't read post-update value
val isTogglingOff = _uiState.value.transceivers.selectedUuid == action.uuid val isTogglingOff = _uiState.value.transceivers.selectedUuid == action.uuid
val newUuid = if (isTogglingOff) null else action.uuid val newUuid = if (isTogglingOff) null else action.uuid
_uiState.update { it.copy(transceivers = it.transceivers.copy(selectedUuid = newUuid)) } // Load the saved offset for the newly selected satellite
val offsetKHz = if (!isTogglingOff) {
transponders.find { it.uuid == action.uuid }
?.catnum?.let { settingsRepo.getSatelliteOffset(it) } ?: ""
} else ""
_uiState.update {
it.copy(
transceivers = it.transceivers.copy(selectedUuid = newUuid),
calculatorOffsetKHz = offsetKHz
)
}
// Only update the tracking service when selecting a different transponder to // Only update the tracking service when selecting a different transponder to
// avoid resetting a user-adjusted TX base on re-expand // avoid resetting a user-adjusted TX base on re-expand
if (!isTogglingOff) { if (!isTogglingOff) {
@@ -272,6 +319,15 @@ class RadarViewModel(
sstvDecoder?.clearPixels() sstvDecoder?.clearPixels()
_uiState.update { it.copy(sstv = it.sstv.copy(currentFrame = null)) } _uiState.update { it.copy(sstv = it.sstv.copy(currentFrame = null)) }
} }
is RadarAction.ChangeCalculatorOffset -> {
val catnum = _uiState.value.transceivers.selectedUuid?.let { uuid ->
transponders.find { it.uuid == uuid }?.catnum
}
if (catnum != null) {
settingsRepo.setSatelliteOffset(catnum, action.offsetKHz)
}
_uiState.update { it.copy(calculatorOffsetKHz = action.offsetKHz) }
}
} }
} }
@@ -344,13 +400,32 @@ class RadarViewModel(
private fun initSstvDecoder() { private fun initSstvDecoder() {
if (sstvDecoder == null) { if (sstvDecoder == null) {
val decoder = SstvDecoder(sampleRate = audioCapture.sampleRate) val decoder = SstvDecoder(
sampleRate = audioCapture.sampleRate,
targetRmsLevel = SSTV_TARGET_RMS,
includeScopeData = SSTV_INCLUDE_SCOPE,
enableRmsNormalization = SSTV_ENABLE_RMS_NORMALIZATION,
preFilterCutoffHz = SSTV_PREFILTER_CUTOFF_HZ,
enablePreFilter = SSTV_ENABLE_PREFILTER,
enableDiagnosticsHandle = SSTV_ENABLE_DIAGNOSTICS_HANDLE,
lineRecoveryStrategy = SSTV_LINE_RECOVERY_STRATEGY
)
sstvDecoder = decoder sstvDecoder = decoder
decoder.lockMode(_uiState.value.sstv.selectedMode) decoder.lockMode(_uiState.value.sstv.selectedMode)
_uiState.update { it.copy(sstv = it.sstv.copy(supportedModes = decoder.supportedModes)) } _uiState.update { it.copy(sstv = it.sstv.copy(supportedModes = decoder.supportedModes)) }
viewModelScope.launch { viewModelScope.launch {
decoder.frames.collect { frame -> decoder.frames.collect { frame ->
_uiState.update { it.copy(sstv = it.sstv.copy(currentFrame = frame)) } val metrics = decoder.getQualityMetrics()
_uiState.update {
it.copy(sstv = it.sstv.copy(currentFrame = frame, diagnosticsMetrics = metrics))
}
}
}
decoder.getDiagnosticsHandle()?.let { handle ->
viewModelScope.launch {
handle.metrics.collectLatest { metrics ->
_uiState.update { it.copy(sstv = it.sstv.copy(diagnosticsMetrics = metrics)) }
}
} }
} }
} }
@@ -374,6 +449,39 @@ class RadarViewModel(
} }
companion object { companion object {
// SSTV Decoder Tuning Parameters
// ==============================
// SSTV_TARGET_RMS: Normalized signal level before FM demodulation.
// - 0.25: Aggressive (original default), amplifies noise; use only for clean inputs
// - 0.35-0.40: RECOMMENDED for typical phone/mic inputs
// - 0.50-0.60: Conservative, best for noisy environments
private const val SSTV_TARGET_RMS = 0.45f // Changed from 0.25 to safer default
// Enable/disable RMS normalization entirely. Set false for direct receiver outputs.
private const val SSTV_ENABLE_RMS_NORMALIZATION = true
// High-pass pre-filter to remove DC offset and subsonic noise before RMS normalization.
// Improves weak signal robustness by cleaning the noise floor estimate.
private const val SSTV_PREFILTER_CUTOFF_HZ = 500.0 // Removes everything below 500 Hz
// Enable pre-filtering. Set false to skip (minimal CPU cost if disabled).
private const val SSTV_ENABLE_PREFILTER = true
// Diagnostics handle can be enabled temporarily to capture field reports.
// Interpretation notes for noisy recordings:
// - syncHitRate < 0.30: weak/noisy signal path or mistuned gain
// - predictedLineBursts rising quickly: frequent sync loss and likely vertical collapse
// - maxPredictedStreak > 3 in Robot36 mode: noisy path and synthetic line flooding
private const val SSTV_ENABLE_DIAGNOSTICS_HANDLE = false
// Line recovery policy:
// - Look4SatLimited: caps predicted lines to reduce visible vertical collapse.
// - Robot36Compatible: unlimited predicted lines (legacy Robot36 behavior).
// Ask users to compare both if they report line-skipping/compression artifacts.
private val SSTV_LINE_RECOVERY_STRATEGY = LineRecoveryStrategy.Robot36Compatible
// Debug: Return scope visualization in frames (increases per-frame memory usage).
private const val SSTV_INCLUDE_SCOPE = false
val CTCSS_TONES = listOf( val CTCSS_TONES = listOf(
67.0, 69.3, 71.9, 74.4, 77.0, 79.7, 82.5, 85.4, 88.5, 91.5, 67.0, 69.3, 71.9, 74.4, 77.0, 79.7, 82.5, 85.4, 88.5, 91.5,
@@ -382,7 +490,6 @@ class RadarViewModel(
218.1, 225.7, 233.6, 241.8, 250.3 218.1, 225.7, 233.6, 241.8, 250.3
) )
fun factory(container: IMainContainer) = viewModelFactory { fun factory(container: IMainContainer) = viewModelFactory {
initializer { initializer {
RadarViewModel( RadarViewModel(
@@ -49,15 +49,17 @@ import androidx.compose.ui.graphics.Color
import androidx.compose.ui.graphics.asImageBitmap import androidx.compose.ui.graphics.asImageBitmap
import androidx.compose.ui.layout.ContentScale import androidx.compose.ui.layout.ContentScale
import androidx.compose.ui.res.painterResource import androidx.compose.ui.res.painterResource
import androidx.compose.ui.res.stringResource
import androidx.compose.ui.text.font.FontWeight import androidx.compose.ui.text.font.FontWeight
import androidx.compose.ui.text.style.TextOverflow import androidx.compose.ui.text.style.TextOverflow
import androidx.compose.ui.unit.dp import androidx.compose.ui.unit.dp
import androidx.compose.ui.unit.sp import androidx.compose.ui.unit.sp
import androidx.compose.ui.window.Dialog import com.rtbishop.look4sat.core.presentation.ConfirmDialog
import com.rtbishop.look4sat.core.presentation.IconCard import com.rtbishop.look4sat.core.presentation.IconCard
import com.rtbishop.look4sat.core.presentation.OutlinedText import com.rtbishop.look4sat.core.presentation.OutlinedText
import com.rtbishop.look4sat.core.presentation.R import com.rtbishop.look4sat.core.presentation.R
import com.rtbishop.look4sat.core.presentation.infiniteMarquee import com.rtbishop.look4sat.core.presentation.infiniteMarquee
import kotlin.math.roundToInt
@Composable @Composable
internal fun SstvPage( internal fun SstvPage(
@@ -77,12 +79,12 @@ internal fun SstvPage(
) { ) {
Text(text = "🎙️", fontSize = 48.sp) Text(text = "🎙️", fontSize = 48.sp)
Text( Text(
text = "Microphone access needed", text = stringResource(R.string.sstv_mic_permission),
fontSize = 16.sp, fontSize = 16.sp,
color = MaterialTheme.colorScheme.onSurface color = MaterialTheme.colorScheme.onSurface
) )
Button(onClick = requestMicPermission) { Button(onClick = requestMicPermission) {
Text("Grant permission") Text(stringResource(R.string.sstv_grant_permission))
} }
} }
} }
@@ -94,53 +96,44 @@ internal fun SstvPage(
if (showModeDialog.value) { if (showModeDialog.value) {
val allModes = remember(sstv.supportedModes) { listOf("Auto") + sstv.supportedModes } val allModes = remember(sstv.supportedModes) { listOf("Auto") + sstv.supportedModes }
Dialog(onDismissRequest = { showModeDialog.value = false }) { val dismiss = { showModeDialog.value = false }
ElevatedCard { ConfirmDialog(
Column( title = stringResource(R.string.sstv_mode_title),
horizontalAlignment = Alignment.CenterHorizontally, onAccept = dismiss,
modifier = Modifier.padding(vertical = 16.dp) onCancel = dismiss
) { ) {
Text( LazyColumn(
text = "SSTV Mode", modifier = Modifier
fontSize = 16.sp, .fillMaxHeight(0.69f)
fontWeight = FontWeight.Medium, .background(MaterialTheme.colorScheme.background),
color = MaterialTheme.colorScheme.primary, verticalArrangement = Arrangement.spacedBy(1.dp)
modifier = Modifier.padding(bottom = 12.dp) ) {
) items(allModes) { mode ->
LazyColumn( Row(
verticalAlignment = Alignment.CenterVertically,
modifier = Modifier modifier = Modifier
.fillMaxHeight(0.5f) .fillMaxWidth()
.background(MaterialTheme.colorScheme.background), .background(MaterialTheme.colorScheme.surface)
verticalArrangement = Arrangement.spacedBy(1.dp) .clickable {
) { onAction(RadarAction.SstvSelectMode(mode))
items(allModes) { mode -> showModeDialog.value = false
Row(
verticalAlignment = Alignment.CenterVertically,
modifier = Modifier
.fillMaxWidth()
.background(MaterialTheme.colorScheme.surface)
.clickable {
onAction(RadarAction.SstvSelectMode(mode))
showModeDialog.value = false
}
) {
Text(
text = mode,
fontSize = 16.sp,
fontWeight = FontWeight.Medium,
maxLines = 1,
overflow = TextOverflow.Ellipsis,
modifier = Modifier
.weight(1f)
.padding(start = 16.dp)
)
RadioButton(
selected = mode == sstv.selectedMode,
onClick = null,
modifier = Modifier.padding(horizontal = 16.dp, vertical = 12.dp)
)
} }
} ) {
Text(
text = mode,
fontSize = 16.sp,
fontWeight = FontWeight.Medium,
maxLines = 1,
overflow = TextOverflow.Ellipsis,
modifier = Modifier
.weight(1f)
.padding(start = 16.dp)
)
RadioButton(
selected = mode == sstv.selectedMode,
onClick = null,
modifier = Modifier.padding(horizontal = 16.dp, vertical = 12.dp)
)
} }
} }
} }
@@ -175,12 +168,25 @@ internal fun SstvPage(
) )
} else { } else {
Text( Text(
text = if (sstv.status == SstvStatus.Recording) "Listening…" else "No signal", text = if (sstv.status == SstvStatus.Recording) stringResource(R.string.sstv_listening) else stringResource(R.string.sstv_no_signal),
color = MaterialTheme.colorScheme.onSurface, color = MaterialTheme.colorScheme.onSurface,
fontSize = 16.sp, fontSize = 16.sp,
modifier = Modifier.align(Alignment.Center) modifier = Modifier.align(Alignment.Center)
) )
} }
val qualityText = frame?.let {
val syncPct = (it.syncHitRate * 100f).roundToInt()
val gainX10 = (it.appliedGain * 10f).roundToInt() / 10f
val inputRmsX1000 = (it.inputRms * 1000f).roundToInt() / 1000f
val scope = if (it.scopePixels != null) " | Scope ${it.scopeWidth}x${it.scopeHeight}" else ""
val complete = if (it.imageComplete) " | Complete" else ""
"RMS $inputRmsX1000 | Gain x$gainX10 | Sync $syncPct% | Pred ${it.predictedLineBursts}/${it.maxPredictedStreak} | Err ${it.timingErrorSamples}$scope$complete"
} ?: sstv.diagnosticsMetrics?.let {
val syncPct = (it.syncHitRate * 100f).roundToInt()
"Sync $syncPct% | Pred ${it.predictedLineBursts}/${it.maxPredictedStreak} | Err ${it.timingErrorSamples}"
}
// Bottom control bar — dark, blends with the black canvas // Bottom control bar — dark, blends with the black canvas
Column( Column(
modifier = Modifier modifier = Modifier
@@ -191,13 +197,22 @@ internal fun SstvPage(
) { ) {
// Doppler-corrected downlink frequency hint // Doppler-corrected downlink frequency hint
OutlinedText( OutlinedText(
text = dopplerFrequency?.let { "RX: $it Hz" } ?: "No transceiver selected", text = dopplerFrequency?.let { stringResource(R.string.sstv_rx_format, it) } ?: stringResource(R.string.sstv_no_transceiver),
fontSize = 18.sp, fontSize = 18.sp,
fontWeight = FontWeight.Bold, fontWeight = FontWeight.Bold,
fillColor = MaterialTheme.colorScheme.primary, fillColor = MaterialTheme.colorScheme.primary,
outlineColor = MaterialTheme.colorScheme.background, outlineColor = MaterialTheme.colorScheme.background,
modifier = Modifier.align(Alignment.CenterHorizontally) modifier = Modifier.align(Alignment.CenterHorizontally)
) )
if (qualityText != null) {
OutlinedText(
text = qualityText,
fontSize = 12.sp,
fillColor = MaterialTheme.colorScheme.onSurface,
outlineColor = MaterialTheme.colorScheme.background,
modifier = Modifier.align(Alignment.CenterHorizontally)
)
}
Row( Row(
verticalAlignment = Alignment.CenterVertically, verticalAlignment = Alignment.CenterVertically,
horizontalArrangement = Arrangement.spacedBy(8.dp), horizontalArrangement = Arrangement.spacedBy(8.dp),
@@ -213,7 +228,7 @@ internal fun SstvPage(
) { ) {
Box(modifier = Modifier.fillMaxSize(), contentAlignment = Alignment.Center) { Box(modifier = Modifier.fillMaxSize(), contentAlignment = Alignment.Center) {
Text( Text(
text = "Mode: ${sstv.selectedMode}", text = stringResource(R.string.sstv_mode_format, sstv.selectedMode),
fontSize = 14.sp, fontSize = 14.sp,
maxLines = 1, maxLines = 1,
color = MaterialTheme.colorScheme.onSurface, color = MaterialTheme.colorScheme.onSurface,
@@ -21,14 +21,18 @@ import androidx.compose.animation.AnimatedVisibility
import androidx.compose.animation.expandVertically import androidx.compose.animation.expandVertically
import androidx.compose.animation.shrinkVertically import androidx.compose.animation.shrinkVertically
import androidx.compose.foundation.background import androidx.compose.foundation.background
import androidx.compose.foundation.border
import androidx.compose.foundation.clickable import androidx.compose.foundation.clickable
import androidx.compose.foundation.interaction.MutableInteractionSource import androidx.compose.foundation.interaction.MutableInteractionSource
import androidx.compose.foundation.layout.Arrangement import androidx.compose.foundation.layout.Arrangement
import androidx.compose.foundation.layout.Box import androidx.compose.foundation.layout.Box
import androidx.compose.foundation.layout.Column import androidx.compose.foundation.layout.Column
import androidx.compose.foundation.layout.FlowRow import androidx.compose.foundation.layout.FlowRow
import androidx.compose.foundation.layout.IntrinsicSize
import androidx.compose.foundation.layout.PaddingValues
import androidx.compose.foundation.layout.Row import androidx.compose.foundation.layout.Row
import androidx.compose.foundation.layout.Spacer import androidx.compose.foundation.layout.Spacer
import androidx.compose.foundation.layout.fillMaxHeight
import androidx.compose.foundation.layout.fillMaxSize import androidx.compose.foundation.layout.fillMaxSize
import androidx.compose.foundation.layout.fillMaxWidth import androidx.compose.foundation.layout.fillMaxWidth
import androidx.compose.foundation.layout.height import androidx.compose.foundation.layout.height
@@ -39,14 +43,23 @@ import androidx.compose.foundation.lazy.LazyColumn
import androidx.compose.foundation.lazy.itemsIndexed import androidx.compose.foundation.lazy.itemsIndexed
import androidx.compose.foundation.lazy.rememberLazyListState import androidx.compose.foundation.lazy.rememberLazyListState
import androidx.compose.foundation.shape.CircleShape import androidx.compose.foundation.shape.CircleShape
import androidx.compose.foundation.text.BasicTextField
import androidx.compose.foundation.text.KeyboardOptions
import androidx.compose.material3.FilterChip import androidx.compose.material3.FilterChip
import androidx.compose.material3.HorizontalDivider import androidx.compose.material3.HorizontalDivider
import androidx.compose.material3.Icon import androidx.compose.material3.Icon
import androidx.compose.material3.MaterialTheme import androidx.compose.material3.MaterialTheme
import androidx.compose.material3.OutlinedButton
import androidx.compose.material3.OutlinedTextField
import androidx.compose.material3.Slider
import androidx.compose.material3.Text import androidx.compose.material3.Text
import androidx.compose.runtime.Composable import androidx.compose.runtime.Composable
import androidx.compose.runtime.LaunchedEffect import androidx.compose.runtime.LaunchedEffect
import androidx.compose.runtime.getValue
import androidx.compose.runtime.mutableIntStateOf
import androidx.compose.runtime.mutableStateOf
import androidx.compose.runtime.remember import androidx.compose.runtime.remember
import androidx.compose.runtime.setValue
import androidx.compose.ui.Alignment import androidx.compose.ui.Alignment
import androidx.compose.ui.Modifier import androidx.compose.ui.Modifier
import androidx.compose.ui.draw.clip import androidx.compose.ui.draw.clip
@@ -54,12 +67,17 @@ import androidx.compose.ui.draw.rotate
import androidx.compose.ui.graphics.Color import androidx.compose.ui.graphics.Color
import androidx.compose.ui.res.painterResource import androidx.compose.ui.res.painterResource
import androidx.compose.ui.res.stringResource import androidx.compose.ui.res.stringResource
import androidx.compose.ui.text.TextStyle
import androidx.compose.ui.text.font.FontWeight import androidx.compose.ui.text.font.FontWeight
import androidx.compose.ui.text.input.KeyboardType
import androidx.compose.ui.text.style.TextAlign import androidx.compose.ui.text.style.TextAlign
import androidx.compose.ui.text.style.TextOverflow import androidx.compose.ui.text.style.TextOverflow
import androidx.compose.ui.unit.dp import androidx.compose.ui.unit.dp
import androidx.compose.ui.unit.sp import androidx.compose.ui.unit.sp
import com.rtbishop.look4sat.core.domain.model.SatRadio import com.rtbishop.look4sat.core.domain.model.SatRadio
import com.rtbishop.look4sat.core.domain.predict.OrbitalPos
import com.rtbishop.look4sat.core.domain.utility.DopplerFrequencyCalculator
import com.rtbishop.look4sat.core.domain.utility.TransponderMapper
import com.rtbishop.look4sat.core.presentation.CardButton import com.rtbishop.look4sat.core.presentation.CardButton
import com.rtbishop.look4sat.core.presentation.R import com.rtbishop.look4sat.core.presentation.R
import com.rtbishop.look4sat.core.presentation.formatFrequency import com.rtbishop.look4sat.core.presentation.formatFrequency
@@ -104,6 +122,73 @@ fun TransceiversPage(
} }
} }
@Composable
fun CalculatorPage(
transceivers: List<SatRadio>,
selectedUuid: String?,
orbitalPos: OrbitalPos?,
onAction: (RadarAction) -> Unit,
calculatorOffsetKHz: String = "",
modifier: Modifier = Modifier
) {
val calculatorTransceivers = remember(transceivers) {
transceivers.filter(DopplerFrequencyCalculator::isNamedLinearTransponder)
.let(DopplerFrequencyCalculator::deduplicateTransponders)
}
val selectedTransceiver = remember(calculatorTransceivers, selectedUuid) {
calculatorTransceivers.firstOrNull { it.uuid == selectedUuid }
?: calculatorTransceivers.firstOrNull()
}
if (selectedTransceiver == null) {
EmptyTransceiversContent(modifier)
return
}
LazyColumn(
modifier = modifier
.fillMaxSize()
.padding(8.dp),
verticalArrangement = Arrangement.spacedBy(10.dp)
) {
if (calculatorTransceivers.size > 1) {
item {
FlowRow(
horizontalArrangement = Arrangement.spacedBy(6.dp),
verticalArrangement = Arrangement.spacedBy(4.dp),
modifier = Modifier.fillMaxWidth()
) {
calculatorTransceivers.forEach { radio ->
FilterChip(
selected = radio.uuid == selectedTransceiver.uuid,
onClick = {
if (radio.uuid != selectedUuid) onAction(RadarAction.SelectTransmitter(radio.uuid))
},
label = {
Text(
text = transceiverTitle(radio),
maxLines = 1,
overflow = TextOverflow.Ellipsis
)
}
)
}
}
}
}
item {
DopplerFrequencyCalculator(
transponder = selectedTransceiver,
orbitalPos = orbitalPos,
offsetKHz = calculatorOffsetKHz,
onOffsetChange = { onAction(RadarAction.ChangeCalculatorOffset(it)) },
modifier = Modifier.fillMaxWidth()
)
}
}
}
@Composable @Composable
private fun EmptyTransceiversContent(modifier: Modifier = Modifier) { private fun EmptyTransceiversContent(modifier: Modifier = Modifier) {
Box(contentAlignment = Alignment.Center, modifier = modifier.fillMaxSize()) { Box(contentAlignment = Alignment.Center, modifier = modifier.fillMaxSize()) {
@@ -172,12 +257,8 @@ private fun TransceiverItem(
.rotate(if (isExpanded) 270f else 90f) .rotate(if (isExpanded) 270f else 90f)
) )
} }
// Title with mode
val title = if (radio.isInverted) "INV: ${radio.info}" else radio.info
val mode = "${radio.downlinkMode ?: "--"}/${radio.uplinkMode ?: "--"}"
val fullTitle = "$title ($mode)"
Text( Text(
text = fullTitle, text = transceiverTitle(radio),
textAlign = TextAlign.Center, textAlign = TextAlign.Center,
color = MaterialTheme.colorScheme.onSurface, color = MaterialTheme.colorScheme.onSurface,
maxLines = 1, maxLines = 1,
@@ -322,7 +403,7 @@ private fun ExpandedRadioControl(
modifier = Modifier.fillMaxWidth() modifier = Modifier.fillMaxWidth()
) { ) {
Text( Text(
text = "TX Base: ", text = stringResource(R.string.radar_tx_base),
fontSize = 14.sp, fontSize = 14.sp,
color = MaterialTheme.colorScheme.onSurfaceVariant color = MaterialTheme.colorScheme.onSurfaceVariant
) )
@@ -369,16 +450,17 @@ private fun ExpandedRadioControl(
) )
Spacer(modifier = Modifier.height(4.dp)) Spacer(modifier = Modifier.height(4.dp))
FlowRow( FlowRow(
horizontalArrangement = Arrangement.spacedBy(4.dp), horizontalArrangement = Arrangement.spacedBy(2.dp),
maxItemsInEachRow = 5,
modifier = Modifier.fillMaxWidth() modifier = Modifier.fillMaxWidth()
) { ) {
val chipModifier = Modifier.width(64.dp) val chipModifier = Modifier.weight(1f)
FilterChip( FilterChip(
selected = radioControl.ctcssTone == null, selected = radioControl.ctcssTone == null,
onClick = { onAction(RadarAction.SetCtcssTone(null)) }, onClick = { onAction(RadarAction.SetCtcssTone(null)) },
label = { label = {
Text( Text(
text = "Off", text = stringResource(R.string.radar_off),
fontSize = 12.sp, fontSize = 12.sp,
textAlign = TextAlign.Center, textAlign = TextAlign.Center,
modifier = Modifier.fillMaxWidth() modifier = Modifier.fillMaxWidth()
@@ -410,19 +492,19 @@ private fun ExpandedRadioControl(
if (!radioControl.txPanel.isConnected && !radioControl.rxPanel.isConnected) { if (!radioControl.txPanel.isConnected && !radioControl.rxPanel.isConnected) {
CardButton( CardButton(
onClick = { onAction(RadarAction.ConnectRadios) }, onClick = { onAction(RadarAction.ConnectRadios) },
text = "Connect", text = stringResource(R.string.radar_connect),
modifier = Modifier.weight(1f) modifier = Modifier.weight(1f)
) )
} else { } else {
CardButton( CardButton(
onClick = { onAction(RadarAction.DisconnectRadios) }, onClick = { onAction(RadarAction.DisconnectRadios) },
text = "Disconnect", text = stringResource(R.string.radar_disconnect),
modifier = Modifier.weight(1f) modifier = Modifier.weight(1f)
) )
} }
CardButton( CardButton(
onClick = { onAction(RadarAction.ToggleTracking) }, onClick = { onAction(RadarAction.ToggleTracking) },
text = if (radioControl.isTracking) "Stop" else "Track", text = if (radioControl.isTracking) stringResource(R.string.radar_stop) else stringResource(R.string.radar_track),
modifier = Modifier.weight(1f) modifier = Modifier.weight(1f)
) )
} }
@@ -436,6 +518,362 @@ private fun ExpandedRadioControl(
} }
} }
private enum class EditedField { TX, PASSBAND, RX }
@Composable
private fun DopplerFrequencyCalculator(
transponder: SatRadio,
orbitalPos: OrbitalPos?,
offsetKHz: String = "",
onOffsetChange: (String) -> Unit = {},
modifier: Modifier = Modifier
) {
if (orbitalPos == null || !DopplerFrequencyCalculator.isLinearTransponder(transponder)) return
var lastEditedField by remember { mutableStateOf(EditedField.TX) }
var txFrequencyHz by remember { mutableStateOf(0L) }
var rxFrequencyHz by remember { mutableStateOf(0L) }
var passbandPosition by remember { mutableStateOf(0.5f) }
var stepSizeKHz by remember { mutableIntStateOf(1) }
val offsetHz = offsetKHz.toDoubleOrNull()?.let { it * 1000 }?.toLong() ?: 0L
val txLow = transponder.uplinkLow ?: return
val txHigh = transponder.uplinkHigh ?: return
val rxLow = transponder.downlinkLow ?: return
val rxHigh = transponder.downlinkHigh ?: return
val txRange = txHigh - txLow
val rxRange = rxHigh - rxLow
if (txRange <= 0L || rxRange <= 0L) return
// 原始转发器值(逆转多普勒),用于 passband 映射计算
val rawTxLow = orbitalPos.getDownlinkFreq(txLow)
val rawTxHigh = orbitalPos.getDownlinkFreq(txHigh)
val rawRxLow = orbitalPos.getUplinkFreq(rxLow)
val rawRxHigh = orbitalPos.getUplinkFreq(rxHigh)
val rawTxRange = rawTxHigh - rawTxLow
val rawRxRange = rawRxHigh - rawRxLow
val rawTransponder = transponder.copy(
uplinkLow = rawTxLow, uplinkHigh = rawTxHigh,
downlinkLow = rawRxLow, downlinkHigh = rawRxHigh
)
// 初始化
LaunchedEffect(Unit) {
if (txFrequencyHz == 0L) {
txFrequencyHz = txLow + txRange / 2
rxFrequencyHz = DopplerFrequencyCalculator.computeDownlinkFromUplinkWithOffset(
txFrequencyHz, rawTransponder, orbitalPos, offsetHz
) ?: (rxLow + rxRange / 2)
}
}
// 实时重算:卫星移动时,锚点侧不变,重算另一侧
LaunchedEffect(orbitalPos) {
if (lastEditedField == EditedField.TX) {
// TX 是锚点,不变;重算 RX
rxFrequencyHz = DopplerFrequencyCalculator.computeDownlinkFromUplinkWithOffset(
txFrequencyHz, rawTransponder, orbitalPos, offsetHz
) ?: rxFrequencyHz
} else if (lastEditedField == EditedField.RX) {
// RX 是锚点,不变;重算 TX
txFrequencyHz = DopplerFrequencyCalculator.computeUplinkFromDownlinkWithOffset(
rxFrequencyHz, rawTransponder, orbitalPos, offsetHz
) ?: txFrequencyHz
} else if (lastEditedField == EditedField.PASSBAND) {
// 相对位置不变(passbandPosition),TX 用地面频率,RX 经 Transceiver 完整路径计算
txFrequencyHz = txLow + (passbandPosition * txRange).toLong()
rxFrequencyHz = DopplerFrequencyCalculator.computeDownlinkFromUplinkWithOffset(
txFrequencyHz, rawTransponder, orbitalPos, offsetHz
) ?: rxFrequencyHz
}
}
val txSliderValue = if (lastEditedField == EditedField.PASSBAND) {
passbandPosition
} else {
((txFrequencyHz - txLow).toFloat() / txRange).coerceIn(0f, 1f)
}
val rxSliderValue = if (lastEditedField == EditedField.PASSBAND) {
((rxFrequencyHz - rxLow).toFloat() / rxRange).coerceIn(0f, 1f)
} else {
((rxFrequencyHz - rxLow).toFloat() / rxRange).coerceIn(0f, 1f)
}
fun updateTx(newTxHz: Long) {
when (lastEditedField) {
EditedField.PASSBAND -> {
// Passband 模式:滑块位置 → passbandPosition → 地面频率,RX 经 Transceiver 计算
val pos = ((newTxHz - txLow).toFloat() / txRange).coerceIn(0f, 1f)
passbandPosition = pos
txFrequencyHz = txLow + (pos * txRange).toLong()
rxFrequencyHz = DopplerFrequencyCalculator.computeDownlinkFromUplinkWithOffset(
txFrequencyHz, rawTransponder, orbitalPos, offsetHz
) ?: rxFrequencyHz
}
else -> {
txFrequencyHz = newTxHz.coerceIn(txLow, txHigh)
rxFrequencyHz = DopplerFrequencyCalculator.computeDownlinkFromUplinkWithOffset(
txFrequencyHz, rawTransponder, orbitalPos, offsetHz
) ?: rxFrequencyHz
}
}
}
fun updateRx(newRxHz: Long) {
when (lastEditedField) {
EditedField.PASSBAND -> {
// Passband 模式:从 RX 反推 TX 位置,TX 用地面频率
val pos = ((newRxHz - rxLow).toFloat() / rxRange).coerceIn(0f, 1f)
val txFromRx = TransponderMapper.mapDownlinkToUplink(newRxHz, rawTransponder)
passbandPosition = if (txFromRx != null) {
((txFromRx - rawTxLow).toFloat() / rawTxRange).coerceIn(0f, 1f)
} else pos
txFrequencyHz = txLow + (passbandPosition * txRange).toLong()
rxFrequencyHz = DopplerFrequencyCalculator.computeDownlinkFromUplinkWithOffset(
txFrequencyHz, rawTransponder, orbitalPos, offsetHz
) ?: rxFrequencyHz
}
else -> {
rxFrequencyHz = newRxHz.coerceIn(rxLow, rxHigh)
txFrequencyHz = DopplerFrequencyCalculator.computeUplinkFromDownlinkWithOffset(
rxFrequencyHz, rawTransponder, orbitalPos, offsetHz
) ?: txFrequencyHz
}
}
}
Column(
modifier = modifier.fillMaxWidth().padding(top = 16.dp),
verticalArrangement = Arrangement.spacedBy(12.dp)
) {
Row(
modifier = Modifier.fillMaxWidth().height(IntrinsicSize.Min),
verticalAlignment = Alignment.CenterVertically,
horizontalArrangement = Arrangement.spacedBy(6.dp)
) {
// 左半边: TX + RX 按钮
Row(
modifier = Modifier.weight(1f),
horizontalArrangement = Arrangement.spacedBy(4.dp),
verticalAlignment = Alignment.CenterVertically
) {
FilterChip(
selected = lastEditedField == EditedField.TX,
onClick = {
when (lastEditedField) {
EditedField.TX -> {
passbandPosition = ((txFrequencyHz - txLow).toFloat() / txRange).coerceIn(0f, 1f)
lastEditedField = EditedField.PASSBAND
rxFrequencyHz = DopplerFrequencyCalculator.computeDownlinkFromUplinkWithOffset(
txFrequencyHz, rawTransponder, orbitalPos, offsetHz
) ?: rxFrequencyHz
}
EditedField.PASSBAND -> { lastEditedField = EditedField.TX }
else -> { lastEditedField = EditedField.TX }
}
},
label = {
Text("TX", fontSize = 13.sp, textAlign = TextAlign.Center,
modifier = Modifier.fillMaxWidth())
},
modifier = Modifier.weight(1f).fillMaxHeight()
)
FilterChip(
selected = lastEditedField == EditedField.RX,
onClick = {
when (lastEditedField) {
EditedField.RX -> {
txFrequencyHz = DopplerFrequencyCalculator.computeUplinkFromDownlinkWithOffset(
rxFrequencyHz, rawTransponder, orbitalPos, offsetHz
) ?: txFrequencyHz
passbandPosition = ((txFrequencyHz - txLow).toFloat() / txRange).coerceIn(0f, 1f)
lastEditedField = EditedField.PASSBAND
}
EditedField.PASSBAND -> {
lastEditedField = EditedField.RX
txFrequencyHz = DopplerFrequencyCalculator.computeUplinkFromDownlinkWithOffset(
rxFrequencyHz, rawTransponder, orbitalPos, offsetHz
) ?: txFrequencyHz
}
else -> { lastEditedField = EditedField.RX }
}
},
label = {
Text("RX", fontSize = 13.sp, textAlign = TextAlign.Center,
modifier = Modifier.fillMaxWidth())
},
modifier = Modifier.weight(1f).fillMaxHeight()
)
}
// 右半边: Offset 输入框(带细线边框)
Box(
modifier = Modifier
.weight(1f)
.height(48.dp)
.border(1.dp, MaterialTheme.colorScheme.outline, MaterialTheme.shapes.small),
contentAlignment = Alignment.Center
) {
BasicTextField(
value = offsetKHz,
onValueChange = onOffsetChange,
singleLine = true,
textStyle = TextStyle(
fontSize = 16.sp,
textAlign = TextAlign.Center,
color = MaterialTheme.colorScheme.onSurface
),
decorationBox = { innerTextField ->
if (offsetKHz.isEmpty()) {
Text(
text = stringResource(R.string.radar_doppler_offset_hint),
fontSize = 16.sp,
color = MaterialTheme.colorScheme.onSurfaceVariant
)
}
innerTextField()
}
)
}
}
// TX 行
Column(modifier = Modifier.fillMaxWidth()) {
Row(verticalAlignment = Alignment.CenterVertically) {
OutlinedButton(
onClick = { updateTx(txFrequencyHz - stepSizeKHz * 1000L) },
modifier = Modifier.width(32.dp).height(28.dp),
contentPadding = PaddingValues(0.dp),
shape = MaterialTheme.shapes.extraSmall
) { Text("−", fontSize = 14.sp) }
Slider(
value = txSliderValue,
onValueChange = { norm ->
val rawFreq = txLow + (txRange * norm).toLong()
val snapped = ((rawFreq + 500) / 1000L) * 1000L
updateTx(snapped.coerceIn(txLow, txHigh))
},
valueRange = 0f..1f,
modifier = Modifier.weight(1f).height(20.dp).padding(horizontal = 4.dp)
)
OutlinedButton(
onClick = { updateTx(txFrequencyHz + stepSizeKHz * 1000L) },
modifier = Modifier.width(32.dp).height(28.dp),
contentPadding = PaddingValues(0.dp),
shape = MaterialTheme.shapes.extraSmall
) { Text("+", fontSize = 14.sp) }
}
Row(
modifier = Modifier.fillMaxWidth().padding(horizontal = 4.dp),
verticalAlignment = Alignment.CenterVertically
) {
Text(
text = String.format(Locale.ENGLISH, "%.4f", txLow / 1_000_000.0),
fontSize = 12.sp,
color = MaterialTheme.colorScheme.onSurfaceVariant,
modifier = Modifier.weight(1f)
)
Row(
verticalAlignment = Alignment.CenterVertically,
horizontalArrangement = Arrangement.Center
) {
Text(
text = String.format(Locale.ENGLISH, "%.6f", txFrequencyHz / 1_000_000.0),
fontSize = 20.sp,
fontWeight = FontWeight.Bold,
color = MaterialTheme.colorScheme.primary
)
Text(
text = " MHz",
fontSize = 20.sp,
fontWeight = FontWeight.Bold,
color = MaterialTheme.colorScheme.primary
)
}
Text(
text = String.format(Locale.ENGLISH, "%.4f", txHigh / 1_000_000.0),
fontSize = 12.sp,
color = MaterialTheme.colorScheme.onSurfaceVariant,
modifier = Modifier.weight(1f),
textAlign = TextAlign.End
)
}
}
HorizontalDivider(
thickness = 0.5.dp,
color = MaterialTheme.colorScheme.outline.copy(alpha = 0.3f)
)
// RX 行
Column(modifier = Modifier.fillMaxWidth()) {
Row(verticalAlignment = Alignment.CenterVertically) {
OutlinedButton(
onClick = { updateRx(rxFrequencyHz - stepSizeKHz * 1000L) },
modifier = Modifier.width(32.dp).height(28.dp),
contentPadding = PaddingValues(0.dp),
shape = MaterialTheme.shapes.extraSmall
) { Text("−", fontSize = 14.sp) }
Slider(
value = rxSliderValue,
onValueChange = { norm ->
val rawFreq = rxLow + (rxRange * norm).toLong()
val snapped = ((rawFreq + 500) / 1000L) * 1000L
updateRx(snapped.coerceIn(rxLow, rxHigh))
},
valueRange = 0f..1f,
modifier = Modifier.weight(1f).height(20.dp).padding(horizontal = 4.dp)
)
OutlinedButton(
onClick = { updateRx(rxFrequencyHz + stepSizeKHz * 1000L) },
modifier = Modifier.width(32.dp).height(28.dp),
contentPadding = PaddingValues(0.dp),
shape = MaterialTheme.shapes.extraSmall
) { Text("+", fontSize = 14.sp) }
}
Row(
modifier = Modifier.fillMaxWidth().padding(horizontal = 4.dp),
verticalAlignment = Alignment.CenterVertically
) {
Text(
text = String.format(Locale.ENGLISH, "%.4f", rxLow / 1_000_000.0),
fontSize = 12.sp,
color = MaterialTheme.colorScheme.onSurfaceVariant,
modifier = Modifier.weight(1f)
)
Row(
verticalAlignment = Alignment.CenterVertically,
horizontalArrangement = Arrangement.Center
) {
Text(
text = String.format(Locale.ENGLISH, "%.6f", rxFrequencyHz / 1_000_000.0),
fontSize = 20.sp,
fontWeight = FontWeight.Bold,
color = MaterialTheme.colorScheme.primary
)
Text(
text = " MHz",
fontSize = 20.sp,
fontWeight = FontWeight.Bold,
color = MaterialTheme.colorScheme.primary
)
}
Text(
text = String.format(Locale.ENGLISH, "%.4f", rxHigh / 1_000_000.0),
fontSize = 12.sp,
color = MaterialTheme.colorScheme.onSurfaceVariant,
modifier = Modifier.weight(1f),
textAlign = TextAlign.End
)
}
}
}
}
@Composable @Composable
private fun FrequencyText(frequency: Long?, modifier: Modifier = Modifier) { private fun FrequencyText(frequency: Long?, modifier: Modifier = Modifier) {
val text = frequency?.let { val text = frequency?.let {
@@ -451,5 +889,12 @@ private fun FrequencyText(frequency: Long?, modifier: Modifier = Modifier) {
) )
} }
private fun transceiverTitle(radio: SatRadio): String {
val title = if (radio.isInverted) "INV: ${radio.info}" else radio.info
val mode = "${radio.downlinkMode ?: "--"}/${radio.uplinkMode ?: "--"}"
return "$title ($mode)"
}
private val FREQ_ADJUSTMENTS = private val FREQ_ADJUSTMENTS =
listOf(-10_000L to "-10k", -1_000L to "-1k", -100L to "-100", 100L to "+100", 1_000L to "+1k", 10_000L to "+10k") listOf(-10_000L to "-10k", -1_000L to "-1k", -100L to "-100", 100L to "+100", 1_000L to "+1k", 10_000L to "+10k")
@@ -39,27 +39,27 @@ import androidx.compose.ui.text.font.FontWeight
import androidx.compose.ui.text.style.TextOverflow import androidx.compose.ui.text.style.TextOverflow
import androidx.compose.ui.tooling.preview.Preview import androidx.compose.ui.tooling.preview.Preview
import androidx.compose.ui.unit.dp import androidx.compose.ui.unit.dp
import com.rtbishop.look4sat.core.presentation.ConfirmDialog
import com.rtbishop.look4sat.core.presentation.MainTheme import com.rtbishop.look4sat.core.presentation.MainTheme
import com.rtbishop.look4sat.core.presentation.R import com.rtbishop.look4sat.core.presentation.R
import com.rtbishop.look4sat.core.presentation.SharedDialog
@Preview(showBackground = true) @Preview(showBackground = true)
@Composable @Composable
private fun MultiTypesDialogPreview() { private fun MultiModesDialogPreview() {
val types = listOf("Amateur", "Geostationary", "Military", "Weather") val modes = listOf("FM", "APT", "SSTV", "BPSK")
MainTheme { MultiTypesDialog(types, emptyList(), {}) {} } MainTheme { MultiModesDialog(modes, emptyList(), {}) {} }
} }
@Composable @Composable
internal fun MultiTypesDialog( internal fun MultiModesDialog(
allTypes: List<String>, types: List<String>, cancel: () -> Unit, accept: (List<String>) -> Unit allModes: List<String>, modes: List<String>, cancel: () -> Unit, accept: (List<String>) -> Unit
) { ) {
val selected = remember { mutableStateOf(types.toSet()) } val selected = remember { mutableStateOf(modes.toSet()) }
val toggle = { type: String -> val toggle = { mode: String ->
selected.value = if (type in selected.value) selected.value - type else selected.value + type selected.value = if (mode in selected.value) selected.value - mode else selected.value + mode
} }
val onAccept = { accept(selected.value.toList()) } val onAccept = { accept(selected.value.toList()) }
SharedDialog(title = stringResource(R.string.sat_type_title), onCancel = cancel, onAccept = onAccept) { ConfirmDialog(title = stringResource(R.string.sat_type_title), onCancel = cancel, onAccept = onAccept) {
LazyVerticalGrid( LazyVerticalGrid(
columns = GridCells.Adaptive(240.dp), columns = GridCells.Adaptive(240.dp),
modifier = Modifier modifier = Modifier
@@ -68,7 +68,7 @@ internal fun MultiTypesDialog(
horizontalArrangement = Arrangement.spacedBy(1.dp), horizontalArrangement = Arrangement.spacedBy(1.dp),
verticalArrangement = Arrangement.spacedBy(1.dp) verticalArrangement = Arrangement.spacedBy(1.dp)
) { ) {
itemsIndexed(allTypes) { index, item -> itemsIndexed(allModes) { index, item ->
Row( Row(
verticalAlignment = Alignment.CenterVertically, verticalAlignment = Alignment.CenterVertically,
modifier = Modifier modifier = Modifier
@@ -63,6 +63,7 @@ import com.rtbishop.look4sat.core.presentation.CardLoadingIndicator
import com.rtbishop.look4sat.core.presentation.EmptyListCard import com.rtbishop.look4sat.core.presentation.EmptyListCard
import com.rtbishop.look4sat.core.presentation.IconCard import com.rtbishop.look4sat.core.presentation.IconCard
import com.rtbishop.look4sat.core.presentation.InfoDialog import com.rtbishop.look4sat.core.presentation.InfoDialog
import com.rtbishop.look4sat.core.presentation.LocalSpacing
import com.rtbishop.look4sat.core.presentation.MainTheme import com.rtbishop.look4sat.core.presentation.MainTheme
import com.rtbishop.look4sat.core.presentation.PrimaryIconCard import com.rtbishop.look4sat.core.presentation.PrimaryIconCard
import com.rtbishop.look4sat.core.presentation.R import com.rtbishop.look4sat.core.presentation.R
@@ -87,19 +88,27 @@ private fun SatellitesScreen(
navigateUp: () -> Unit navigateUp: () -> Unit
) { ) {
if (uiState.isDialogShown) { if (uiState.isDialogShown) {
MultiTypesDialog( MultiModesDialog(
allTypes = uiState.typesList, allModes = uiState.modesList,
types = uiState.currentTypes, modes = uiState.currentModes,
cancel = { onAction(SatellitesAction.ToggleTypesDialog) }, cancel = { onAction(SatellitesAction.ToggleModesDialog) },
accept = { onAction(SatellitesAction.SelectTypes(it)) } accept = { onAction(SatellitesAction.SelectModes(it)) }
) )
} }
if (uiState.shouldSeeWarning) { if (uiState.shouldSeeWarning) {
val dismiss = { onAction(SatellitesAction.DismissWarning) }
InfoDialog( InfoDialog(
stringResource(R.string.sat_warning_title), title = stringResource(R.string.sat_warning_title),
stringResource(R.string.sat_warning_message) onDismiss = dismiss,
onAccept = dismiss
) { ) {
onAction(SatellitesAction.DismissWarning) Text(
text = stringResource(R.string.sat_warning_message),
fontSize = 16.sp,
color = MaterialTheme.colorScheme.onSurface,
modifier = Modifier.padding(horizontal = LocalSpacing.current.large)
)
Spacer(modifier = Modifier.height(0.dp))
} }
} }
@@ -114,9 +123,9 @@ private fun SatellitesScreen(
Column(modifier = Modifier.layoutPadding(), verticalArrangement = Arrangement.spacedBy(6.dp)) { Column(modifier = Modifier.layoutPadding(), verticalArrangement = Arrangement.spacedBy(6.dp)) {
if (isVerticalLayout()) { if (isVerticalLayout()) {
TopBar { TopBar {
TypeCard( ModeCard(
types = uiState.currentTypes, modes = uiState.currentModes,
onClick = { onAction(SatellitesAction.ToggleTypesDialog) }, onClick = { onAction(SatellitesAction.ToggleModesDialog) },
modifier = Modifier.weight(1f) modifier = Modifier.weight(1f)
) )
PrimaryIconCard( PrimaryIconCard(
@@ -148,9 +157,9 @@ private fun SatellitesScreen(
resId = R.drawable.ic_done, resId = R.drawable.ic_done,
modifier = Modifier.semantics { contentDescription = primCardCd } modifier = Modifier.semantics { contentDescription = primCardCd }
) )
TypeCard( ModeCard(
types = uiState.currentTypes, modes = uiState.currentModes,
onClick = { onAction(SatellitesAction.ToggleTypesDialog) }, onClick = { onAction(SatellitesAction.ToggleModesDialog) },
modifier = Modifier.weight(1f) modifier = Modifier.weight(1f)
) )
SearchBar( SearchBar(
@@ -232,8 +241,8 @@ private fun SearchBar(onQueryChange: (String) -> Unit, modifier: Modifier = Modi
} }
@Composable @Composable
private fun TypeCard(types: List<String>, onClick: () -> Unit, modifier: Modifier = Modifier) { private fun ModeCard(modes: List<String>, onClick: () -> Unit, modifier: Modifier = Modifier) {
val typesText = if (types.isEmpty()) "All" else types.joinToString(", ") val modesText = if (modes.isEmpty()) "All" else modes.joinToString(", ")
ElevatedCard(modifier = modifier) { ElevatedCard(modifier = modifier) {
Row( Row(
horizontalArrangement = Arrangement.spacedBy(12.dp), horizontalArrangement = Arrangement.spacedBy(12.dp),
@@ -243,12 +252,12 @@ private fun TypeCard(types: List<String>, onClick: () -> Unit, modifier: Modifie
.clickable { onClick() }) { .clickable { onClick() }) {
Spacer(Modifier) Spacer(Modifier)
Icon( Icon(
painter = painterResource(id = R.drawable.ic_tags), painter = painterResource(id = R.drawable.ic_radios),
contentDescription = null, contentDescription = null,
tint = MaterialTheme.colorScheme.primary tint = MaterialTheme.colorScheme.primary
) )
Text( Text(
text = stringResource(R.string.sat_type_hint, typesText), text = stringResource(R.string.sat_type_hint, modesText),
fontSize = 16.sp, fontSize = 16.sp,
fontWeight = FontWeight.Medium, fontWeight = FontWeight.Medium,
modifier = Modifier modifier = Modifier
@@ -314,9 +323,54 @@ private fun SatellitesPreview() {
@Composable @Composable
private fun SatellitesCard(items: List<SatItem>, onSelected: (Int, Boolean) -> Unit) { private fun SatellitesCard(items: List<SatItem>, onSelected: (Int, Boolean) -> Unit) {
val selectedItems = items.filter { it.isSelected }
val availableItems = items.filterNot { it.isSelected }
LazyVerticalGrid(columns = GridCells.Adaptive(320.dp)) { LazyVerticalGrid(columns = GridCells.Adaptive(320.dp)) {
items(items = items, key = { item -> item.catnum }) { entry -> stickyHeader(key = "sat_summary_header") {
Satellite(entry, onSelected, Modifier.animateItem()) SummaryHeader(
selectedText = stringResource(R.string.sat_group_selected_count, selectedItems.size),
availableText = stringResource(R.string.sat_group_available_count, availableItems.size)
)
}
if (selectedItems.isNotEmpty()) {
items(items = selectedItems, key = { item -> item.catnum }) { entry ->
Satellite(entry, onSelected, Modifier.animateItem())
}
}
if (availableItems.isNotEmpty()) {
items(items = availableItems, key = { item -> item.catnum }) { entry ->
Satellite(entry, onSelected, Modifier.animateItem())
}
} }
} }
} }
@Composable
private fun SummaryHeader(selectedText: String, availableText: String) {
Row(
verticalAlignment = Alignment.CenterVertically,
horizontalArrangement = Arrangement.SpaceBetween,
modifier = Modifier
.fillMaxWidth()
.background(MaterialTheme.colorScheme.surfaceContainerHighest)
.padding(horizontal = 12.dp, vertical = 4.dp)
) {
Text(
text = selectedText,
style = MaterialTheme.typography.titleSmall,
fontWeight = FontWeight.SemiBold,
color = MaterialTheme.colorScheme.onSurfaceVariant
)
Text(
text = availableText,
style = MaterialTheme.typography.titleSmall,
fontWeight = FontWeight.SemiBold,
color = MaterialTheme.colorScheme.onSurfaceVariant
)
}
}
@@ -24,8 +24,8 @@ data class SatellitesState(
val isLoading: Boolean = true, val isLoading: Boolean = true,
val shouldSeeWarning: Boolean = false, val shouldSeeWarning: Boolean = false,
val itemsList: List<SatItem> = emptyList(), val itemsList: List<SatItem> = emptyList(),
val currentTypes: List<String> = emptyList(), val currentModes: List<String> = emptyList(),
val typesList: List<String> = emptyList() val modesList: List<String> = emptyList()
) )
sealed interface SatellitesAction { sealed interface SatellitesAction {
@@ -34,7 +34,7 @@ sealed interface SatellitesAction {
data class SearchFor(val query: String) : SatellitesAction data class SearchFor(val query: String) : SatellitesAction
data object SelectAll : SatellitesAction data object SelectAll : SatellitesAction
data class SelectSingle(val id: Int, val isTicked: Boolean) : SatellitesAction data class SelectSingle(val id: Int, val isTicked: Boolean) : SatellitesAction
data class SelectTypes(val types: List<String>) : SatellitesAction data class SelectModes(val modes: List<String>) : SatellitesAction
data object ToggleTypesDialog : SatellitesAction data object ToggleModesDialog : SatellitesAction
data object UnselectAll : SatellitesAction data object UnselectAll : SatellitesAction
} }
@@ -35,13 +35,13 @@ class SatellitesViewModel(
private val settingsRepo: ISettingsRepo private val settingsRepo: ISettingsRepo
) : ViewModel() { ) : ViewModel() {
private val defaultTypes = selectionRepo.getCurrentTypes() private val defaultModes = selectionRepo.getCurrentModes()
private val _uiState = MutableStateFlow( private val _uiState = MutableStateFlow(
SatellitesState( SatellitesState(
isLoading = true, isLoading = true,
shouldSeeWarning = settingsRepo.otherSettings.value.shouldSeeWarning, shouldSeeWarning = settingsRepo.otherSettings.value.shouldSeeWarning,
currentTypes = defaultTypes, currentModes = defaultModes,
typesList = selectionRepo.getTypesList() modesList = selectionRepo.getModesList()
) )
) )
val uiState: StateFlow<SatellitesState> = _uiState val uiState: StateFlow<SatellitesState> = _uiState
@@ -49,7 +49,7 @@ class SatellitesViewModel(
init { init {
viewModelScope.launch { viewModelScope.launch {
selectionRepo.setQuery(String()) selectionRepo.setQuery(String())
selectionRepo.setTypes(defaultTypes) selectionRepo.setModes(defaultModes)
selectionRepo.getEntriesFlow().collectLatest { items -> selectionRepo.getEntriesFlow().collectLatest { items ->
_uiState.update { it.copy(isLoading = false, itemsList = items) } _uiState.update { it.copy(isLoading = false, itemsList = items) }
} }
@@ -59,6 +59,11 @@ class SatellitesViewModel(
_uiState.update { it.copy(shouldSeeWarning = settings.shouldSeeWarning) } _uiState.update { it.copy(shouldSeeWarning = settings.shouldSeeWarning) }
} }
} }
viewModelScope.launch {
settingsRepo.selectedSatModes.collectLatest { modes ->
_uiState.update { it.copy(currentModes = modes) }
}
}
} }
fun onAction(action: SatellitesAction) { fun onAction(action: SatellitesAction) {
@@ -68,8 +73,8 @@ class SatellitesViewModel(
is SatellitesAction.SearchFor -> searchFor(action.query) is SatellitesAction.SearchFor -> searchFor(action.query)
SatellitesAction.SelectAll -> selectAll(true) SatellitesAction.SelectAll -> selectAll(true)
is SatellitesAction.SelectSingle -> selectSingle(action.id, action.isTicked) is SatellitesAction.SelectSingle -> selectSingle(action.id, action.isTicked)
is SatellitesAction.SelectTypes -> selectTypes(action.types) is SatellitesAction.SelectModes -> selectModes(action.modes)
SatellitesAction.ToggleTypesDialog -> toggleTypesDialog() SatellitesAction.ToggleModesDialog -> toggleModesDialog()
SatellitesAction.UnselectAll -> selectAll(false) SatellitesAction.UnselectAll -> selectAll(false)
} }
} }
@@ -86,12 +91,12 @@ class SatellitesViewModel(
selectionRepo.setSelection(listOf(id), isTicked.not()) selectionRepo.setSelection(listOf(id), isTicked.not())
} }
private fun selectTypes(types: List<String>) = viewModelScope.launch { private fun selectModes(modes: List<String>) = viewModelScope.launch {
selectionRepo.setTypes(types) selectionRepo.setModes(modes)
_uiState.update { it.copy(currentTypes = types, isDialogShown = false) } _uiState.update { it.copy(currentModes = modes, isDialogShown = false) }
} }
private fun toggleTypesDialog() { private fun toggleModesDialog() {
_uiState.update { it.copy(isDialogShown = !it.isDialogShown) } _uiState.update { it.copy(isDialogShown = !it.isDialogShown) }
} }
@@ -17,37 +17,66 @@
*/ */
package com.rtbishop.look4sat.feature.settings package com.rtbishop.look4sat.feature.settings
import android.bluetooth.BluetoothManager import androidx.compose.animation.core.FastOutSlowInEasing
import android.content.Context import androidx.compose.animation.core.tween
import androidx.compose.foundation.clickable import androidx.compose.foundation.clickable
import androidx.compose.foundation.layout.Arrangement import androidx.compose.foundation.layout.Arrangement
import androidx.compose.foundation.layout.Column import androidx.compose.foundation.layout.Column
import androidx.compose.foundation.layout.FlowRow
import androidx.compose.foundation.layout.Row import androidx.compose.foundation.layout.Row
import androidx.compose.foundation.layout.PaddingValues
import androidx.compose.foundation.layout.Spacer import androidx.compose.foundation.layout.Spacer
import androidx.compose.foundation.layout.fillMaxHeight
import androidx.compose.foundation.layout.fillMaxWidth import androidx.compose.foundation.layout.fillMaxWidth
import androidx.compose.foundation.layout.height import androidx.compose.foundation.layout.height
import androidx.compose.foundation.layout.padding import androidx.compose.foundation.layout.padding
import androidx.compose.foundation.layout.width
import androidx.compose.foundation.lazy.LazyColumn
import androidx.compose.foundation.lazy.LazyListScope
import androidx.compose.foundation.lazy.itemsIndexed
import androidx.compose.foundation.lazy.rememberLazyListState
import androidx.compose.material3.Checkbox
import androidx.compose.material3.FilterChip
import androidx.compose.material3.Icon
import androidx.compose.material3.IconButton
import androidx.compose.material3.MaterialTheme
import androidx.compose.material3.OutlinedTextField import androidx.compose.material3.OutlinedTextField
import androidx.compose.material3.Switch import androidx.compose.material3.Switch
import androidx.compose.material3.Text import androidx.compose.material3.Text
import androidx.compose.runtime.Composable import androidx.compose.runtime.Composable
import androidx.compose.runtime.mutableIntStateOf import androidx.compose.runtime.mutableIntStateOf
import androidx.compose.runtime.mutableLongStateOf
import androidx.compose.runtime.mutableStateOf import androidx.compose.runtime.mutableStateOf
import androidx.compose.runtime.remember import androidx.compose.runtime.remember
import androidx.compose.runtime.saveable.rememberSaveable import androidx.compose.runtime.saveable.rememberSaveable
import androidx.compose.runtime.snapshots.SnapshotStateList
import androidx.compose.runtime.toMutableStateList
import androidx.compose.ui.Alignment import androidx.compose.ui.Alignment
import androidx.compose.ui.Modifier import androidx.compose.ui.Modifier
import androidx.compose.ui.graphics.Color
import androidx.compose.ui.res.painterResource
import androidx.compose.ui.res.stringResource import androidx.compose.ui.res.stringResource
import androidx.compose.ui.text.font.FontWeight
import androidx.compose.ui.text.style.TextAlign
import androidx.compose.ui.tooling.preview.Preview import androidx.compose.ui.tooling.preview.Preview
import androidx.compose.ui.unit.dp import androidx.compose.ui.unit.dp
import androidx.compose.ui.unit.sp import androidx.compose.ui.unit.sp
import com.rtbishop.look4sat.core.domain.model.RCSettings import com.rtbishop.look4sat.core.domain.model.RCSettings
import com.rtbishop.look4sat.core.domain.model.RadioControlSettings import com.rtbishop.look4sat.core.domain.model.RadioControlSettings
import com.rtbishop.look4sat.core.domain.model.Constants
import com.rtbishop.look4sat.core.domain.source.NetworkResult
import com.rtbishop.look4sat.core.domain.source.Sources
import com.rtbishop.look4sat.core.presentation.CardButton import com.rtbishop.look4sat.core.presentation.CardButton
import com.rtbishop.look4sat.core.presentation.DragReorderState
import com.rtbishop.look4sat.core.presentation.IconCard
import com.rtbishop.look4sat.core.presentation.LocalSpacing import com.rtbishop.look4sat.core.presentation.LocalSpacing
import com.rtbishop.look4sat.core.presentation.MainTheme import com.rtbishop.look4sat.core.presentation.MainTheme
import com.rtbishop.look4sat.core.presentation.R import com.rtbishop.look4sat.core.presentation.R
import com.rtbishop.look4sat.core.presentation.SharedDialog import com.rtbishop.look4sat.core.presentation.ConfirmDialog
import com.rtbishop.look4sat.core.presentation.dragHandle
import com.rtbishop.look4sat.core.presentation.dragLift
import com.rtbishop.look4sat.core.presentation.rememberDragReorderState
import com.rtbishop.look4sat.core.presentation.rememberDragRowState
@Preview(showBackground = true) @Preview(showBackground = true)
@Composable @Composable
@@ -61,17 +90,29 @@ fun PositionDialog(lat: Double, lon: Double, dismiss: () -> Unit, save: (Double,
val lonValue = rememberSaveable { mutableStateOf(lon.toString()) } val lonValue = rememberSaveable { mutableStateOf(lon.toString()) }
val titleText = stringResource(id = R.string.prefs_station_title) val titleText = stringResource(id = R.string.prefs_station_title)
val onAccept = { saveValues(latValue.value, lonValue.value, save).also { dismiss() } } val onAccept = { saveValues(latValue.value, lonValue.value, save).also { dismiss() } }
SharedDialog(title = titleText, onCancel = dismiss, onAccept = onAccept) { ConfirmDialog(title = titleText, onCancel = dismiss, onAccept = onAccept) {
OutlinedTextField( Row(
value = latValue.value, horizontalArrangement = Arrangement.spacedBy(6.dp),
onValueChange = { latValue.value = it }, modifier = Modifier
label = { Text(text = stringResource(id = R.string.prefs_station_lat_text)) } .fillMaxWidth()
) .padding(horizontal = LocalSpacing.current.large)
OutlinedTextField( ) {
value = lonValue.value, OutlinedTextField(
onValueChange = { lonValue.value = it }, value = latValue.value,
label = { Text(text = stringResource(id = R.string.prefs_station_lon_text)) } onValueChange = { latValue.value = it },
) label = { Text(text = stringResource(id = R.string.prefs_station_lat_text)) },
singleLine = true,
modifier = Modifier.weight(1f),
)
OutlinedTextField(
value = lonValue.value,
onValueChange = { lonValue.value = it },
label = { Text(text = stringResource(id = R.string.prefs_station_lon_text)) },
singleLine = true,
modifier = Modifier.weight(1f),
)
}
Spacer(modifier = Modifier.height(0.dp))
} }
} }
@@ -93,12 +134,20 @@ private fun LocatorDialogPreview() {
fun LocatorDialog(qthLocator: String, dismiss: () -> Unit, save: (String) -> Unit) { fun LocatorDialog(qthLocator: String, dismiss: () -> Unit, save: (String) -> Unit) {
val locator = rememberSaveable { mutableStateOf(qthLocator) } val locator = rememberSaveable { mutableStateOf(qthLocator) }
val onAccept = { save(locator.value).also { dismiss() } } val onAccept = { save(locator.value).also { dismiss() } }
SharedDialog(title = stringResource(R.string.prefs_locator_title), onCancel = dismiss, onAccept = onAccept) { ConfirmDialog(
title = stringResource(R.string.prefs_locator_title),
onCancel = dismiss,
onAccept = onAccept
) {
OutlinedTextField( OutlinedTextField(
value = locator.value, value = locator.value,
onValueChange = { locator.value = it }, onValueChange = { locator.value = it },
label = { Text(text = stringResource(id = R.string.prefs_locator_text)) } label = { Text(text = stringResource(id = R.string.prefs_locator_text)) },
modifier = Modifier
.fillMaxWidth()
.padding(horizontal = LocalSpacing.current.large),
) )
Spacer(modifier = Modifier.height(0.dp))
} }
} }
@@ -107,10 +156,19 @@ fun LocatorDialog(qthLocator: String, dismiss: () -> Unit, save: (String) -> Uni
private fun TransceiversDialogPreview() { private fun TransceiversDialogPreview() {
MainTheme { MainTheme {
DataSourcesDialog( DataSourcesDialog(
useCustomTle = true, satelliteUrls = listOf(
useCustomTransceivers = true, "celestrak.org/NORAD/elements/gp.php?GROUP=active&FORMAT=csv",
tleUrl = "https://example.com/tle.txt", "amsat.org/tle/current/nasabare.txt"
transceiversUrl = "https://example.com/tx.json", ),
transceiversUrls = listOf(
"db.satnogs.org/api/transmitters/?format=json&status=active"
),
satelliteEnabled = listOf(true, false),
transceiversEnabled = listOf(true),
statusCodes = mapOf(
"celestrak.org/NORAD/elements/gp.php?GROUP=active&FORMAT=csv" to 200,
"amsat.org/tle/current/nasabare.txt" to 404
),
onImportTle = {}, onImportTle = {},
onImportTransceivers = {}, onImportTransceivers = {},
onDismiss = {}, onDismiss = {},
@@ -119,95 +177,256 @@ private fun TransceiversDialogPreview() {
} }
} }
/**
* Single source of truth for one data-source row: url, enabled flag and stable id all live
* together so a reorder, a toggle or an edit is a single list mutation instead of several parallel
* lists/maps having to stay in sync (which used to fan out into extra recompositions).
*/
private data class SourceEntry(val id: Long, val url: String, val enabled: Boolean = true)
@Composable @Composable
fun DataSourcesDialog( fun DataSourcesDialog(
useCustomTle: Boolean, satelliteUrls: List<String>,
useCustomTransceivers: Boolean, transceiversUrls: List<String>,
tleUrl: String, satelliteEnabled: List<Boolean>,
transceiversUrl: String, transceiversEnabled: List<Boolean>,
statusCodes: Map<String, Int>,
onImportTle: () -> Unit, onImportTle: () -> Unit,
onImportTransceivers: () -> Unit, onImportTransceivers: () -> Unit,
onDismiss: () -> Unit, onDismiss: () -> Unit,
onSave: (Boolean, Boolean, String, String) -> Unit onSave: (List<String>, List<String>, List<Boolean>, List<Boolean>) -> Unit
) { ) {
val padding = LocalSpacing.current.large val padding = LocalSpacing.current.large
val isEnabledCustomTle = rememberSaveable { mutableStateOf(useCustomTle) } // Use stable Long IDs to avoid key collisions (e.g. multiple empty "" entries).
val isEnabledCustomTransceivers = rememberSaveable { mutableStateOf(useCustomTransceivers) } val nextId = remember { mutableLongStateOf((satelliteUrls.size + transceiversUrls.size).toLong()) }
val urlTle = rememberSaveable { mutableStateOf(tleUrl) } val satEntries = remember {
val urlTransceivers = rememberSaveable { mutableStateOf(transceiversUrl) } satelliteUrls.mapIndexed { i, url ->
val onAccept = { SourceEntry(i.toLong(), url, satelliteEnabled.getOrElse(i) { true })
onSave(isEnabledCustomTle.value, isEnabledCustomTransceivers.value, urlTle.value, urlTransceivers.value) }.toMutableStateList()
onDismiss()
} }
val onCancel = { onDismiss() } val txEntries = remember {
SharedDialog( transceiversUrls.mapIndexed { i, url ->
SourceEntry((satelliteUrls.size + i).toLong(), url, transceiversEnabled.getOrElse(i) { true })
}.toMutableStateList()
}
val listState = rememberLazyListState()
val dragState = rememberDragReorderState(listState)
val onRestoreSatDefaults = {
satEntries.clear()
satEntries.addAll(Sources.satelliteDataUrls.map { url -> SourceEntry(nextId.longValue++, url) })
Unit
}
val onRestoreTxDefaults = {
txEntries.clear()
txEntries.addAll(Sources.transceiversDataUrls.map { url -> SourceEntry(nextId.longValue++, url) })
Unit
}
val onAccept = {
val satFiltered = satEntries.filter { it.url.isNotBlank() }
val txFiltered = txEntries.filter { it.url.isNotBlank() }
try {
onSave(
satFiltered.map { it.url },
txFiltered.map { it.url },
satFiltered.map { it.enabled },
txFiltered.map { it.enabled }
)
} finally {
onDismiss()
}
}
val satTitle = stringResource(R.string.prefs_data_sources_sat_title)
val satHint = stringResource(R.string.prefs_data_sources_sat_hint)
val transceiversTitle = stringResource(R.string.prefs_data_sources_transceivers_title)
val transceiversHint = stringResource(R.string.prefs_data_sources_transceivers_hint)
ConfirmDialog(
title = stringResource(id = R.string.prefs_data_sources_title), title = stringResource(id = R.string.prefs_data_sources_title),
onCancel = onCancel, onCancel = onDismiss,
onAccept = onAccept, onAccept = onAccept,
) { ) {
Column(modifier = Modifier.padding(horizontal = padding)) { LazyColumn(
Row(horizontalArrangement = Arrangement.spacedBy(6.dp)) { state = listState,
CardButton( modifier = Modifier
onClick = { .fillMaxHeight(0.84f)
onImportTle() .padding(horizontal = padding),
onDismiss() verticalArrangement = Arrangement.spacedBy(4.dp),
}, contentPadding = PaddingValues(vertical = 0.dp)
text = "TLE (3LE)\nR4UAB (.txt)", ) {
modifier = Modifier.weight(1f) item {
) Row(
CardButton( horizontalArrangement = Arrangement.spacedBy(6.dp),
onClick = { modifier = Modifier.fillMaxWidth()
onImportTransceivers() ) {
onDismiss() CardButton(
}, onClick = { onImportTle(); onDismiss() },
text = "Transceivers\nSatNOGS (.json)", text = "TLE/3LE (.txt)\nOMM (.csv)",
modifier = Modifier.weight(1f) modifier = Modifier.weight(1f)
) )
CardButton(
onClick = { onImportTransceivers(); onDismiss() },
text = "Transceivers\nSatNOGS (.json)",
modifier = Modifier.weight(1f)
)
}
} }
Spacer(modifier = Modifier.height(6.dp)) sourceSection(
Row( sectionKey = "sat",
horizontalArrangement = Arrangement.SpaceBetween, label = satTitle,
verticalAlignment = Alignment.CenterVertically, hint = satHint,
modifier = Modifier.fillMaxWidth() entries = satEntries,
) { dragState = dragState,
Text(text = stringResource(id = R.string.prefs_data_sources_tle_switch)) statusCodes = statusCodes,
Switch( onAdd = { satEntries.add(SourceEntry(nextId.longValue++, "")) },
checked = isEnabledCustomTle.value, onRestore = onRestoreSatDefaults,
onCheckedChange = { isEnabledCustomTle.value = it } onMove = { from, to -> satEntries.add(to, satEntries.removeAt(from)) },
) onRemove = { i -> satEntries.removeAt(i) },
} onToggle = { i -> satEntries[i] = satEntries[i].copy(enabled = !satEntries[i].enabled) },
OutlinedTextField( onUrlChange = { i, v -> satEntries[i] = satEntries[i].copy(url = v) }
value = urlTle.value,
onValueChange = { urlTle.value = it },
label = { Text(text = stringResource(id = R.string.prefs_data_sources_url_title)) },
singleLine = true,
modifier = Modifier.fillMaxWidth(),
enabled = isEnabledCustomTle.value,
) )
Spacer(modifier = Modifier.height(6.dp)) sourceSection(
Row( sectionKey = "tx",
horizontalArrangement = Arrangement.SpaceBetween, label = transceiversTitle,
verticalAlignment = Alignment.CenterVertically, hint = transceiversHint,
modifier = Modifier.fillMaxWidth() entries = txEntries,
) { dragState = dragState,
Text(text = stringResource(id = R.string.prefs_data_sources_transceivers_switch)) statusCodes = statusCodes,
Switch( onAdd = { txEntries.add(SourceEntry(nextId.longValue++, "")) },
checked = isEnabledCustomTransceivers.value, onRestore = onRestoreTxDefaults,
onCheckedChange = { isEnabledCustomTransceivers.value = it } onMove = { from, to -> txEntries.add(to, txEntries.removeAt(from)) },
) onRemove = { i -> txEntries.removeAt(i) },
} onToggle = { i -> txEntries[i] = txEntries[i].copy(enabled = !txEntries[i].enabled) },
OutlinedTextField( onUrlChange = { i, v -> txEntries[i] = txEntries[i].copy(url = v) }
value = urlTransceivers.value,
onValueChange = { urlTransceivers.value = it },
label = { Text(text = stringResource(id = R.string.prefs_data_sources_url_title)) },
singleLine = true,
modifier = Modifier.fillMaxWidth(),
enabled = isEnabledCustomTransceivers.value,
) )
} }
} }
} }
private fun LazyListScope.sourceSection(
sectionKey: String,
label: String,
hint: String,
entries: SnapshotStateList<SourceEntry>,
dragState: DragReorderState,
statusCodes: Map<String, Int>,
onAdd: () -> Unit,
onRestore: () -> Unit,
onMove: (Int, Int) -> Unit,
onRemove: (Int) -> Unit,
onToggle: (Int) -> Unit,
onUrlChange: (Int, String) -> Unit
) {
item {
Spacer(modifier = Modifier.height(6.dp))
Row(verticalAlignment = Alignment.CenterVertically, modifier = Modifier.fillMaxWidth()) {
Text(
text = label,
fontWeight = FontWeight.Medium,
color = MaterialTheme.colorScheme.primary,
modifier = Modifier.weight(1f)
)
IconCard(
action = onRestore,
resId = R.drawable.ic_restore,
containerColor = MaterialTheme.colorScheme.surfaceVariant
)
Spacer(modifier = Modifier.width(6.dp))
IconCard(
action = onAdd,
resId = R.drawable.ic_add,
containerColor = MaterialTheme.colorScheme.surfaceVariant
)
}
Text(
text = hint,
color = MaterialTheme.colorScheme.onSurfaceVariant,
modifier = Modifier
.fillMaxWidth()
.padding(top = 2.dp, bottom = 8.dp)
)
}
itemsIndexed(entries, key = { _, entry -> "$sectionKey-${entry.id}" }) { index, entry ->
val enabledTint = MaterialTheme.colorScheme.onSurfaceVariant
val rowState = rememberDragRowState(
dragState = dragState,
items = entries,
item = entry,
key = { "$sectionKey-${it.id}" },
onMove = onMove
)
Row(
verticalAlignment = Alignment.CenterVertically,
modifier = Modifier
.fillMaxWidth()
.dragLift(isLifted = rowState.isLifted, translationY = rowState.translationY)
.animateItem(
fadeInSpec = tween(durationMillis = 200),
// The dragged row repositions instantly, while its neighbors smoothly
// slide out of the way (the "squeeze" effect).
placementSpec = if (rowState.isDragging) {
tween(durationMillis = 0)
} else {
tween(durationMillis = 250, easing = FastOutSlowInEasing)
},
fadeOutSpec = tween(durationMillis = 200)
)
) {
Icon(
painter = painterResource(R.drawable.ic_drag_handle),
contentDescription = null,
tint = enabledTint,
modifier = Modifier
.padding(top = textFieldLabelOffset)
.dragHandle(rowState)
)
Spacer(modifier = Modifier.width(12.dp))
OutlinedTextField(
value = entry.url,
onValueChange = { onUrlChange(index, it) },
label = {
Row {
Text("Source URL")
statusCodes[entry.url]?.let { code ->
Text(" - ${statusLabel(code)}", color = statusColor(code), fontSize = 12.sp)
}
}
},
trailingIcon = {
IconButton(onClick = { onRemove(index) }) {
Icon(
painter = painterResource(R.drawable.ic_delete),
contentDescription = null
)
}
},
singleLine = true,
enabled = entry.enabled,
modifier = Modifier.weight(1f)
)
Checkbox(
checked = entry.enabled,
onCheckedChange = { onToggle(index) },
modifier = Modifier.padding(top = textFieldLabelOffset)
)
}
}
}
/**
* Compensates for the visual weight of the [OutlinedTextField]'s floating label: the label
* pushes the perceived center of the field's content down a bit, so the drag handle and
* checkbox are nudged down by the same amount to stay visually centered on the input line.
*/
private val textFieldLabelOffset = 8.dp
private fun statusLabel(code: Int): String = if (code == NetworkResult.CONNECTION_ERROR) "ERR" else code.toString()
@Composable
private fun statusColor(code: Int): Color = when (code) {
NetworkResult.CONNECTION_ERROR -> MaterialTheme.colorScheme.error
in 200..299 -> Color(0xFF66BB6A)
else -> MaterialTheme.colorScheme.error
}
@Preview(showBackground = true) @Preview(showBackground = true)
@Composable @Composable
fun PreviewNetworkOutputDialog() { fun PreviewNetworkOutputDialog() {
@@ -222,6 +441,7 @@ fun PreviewNetworkOutputDialog() {
frequencyAddress = "127.0.0.1", frequencyAddress = "127.0.0.1",
frequencyPort = "4532", frequencyPort = "4532",
frequencyFormat = $$"F $FREQ", frequencyFormat = $$"F $FREQ",
frequencyOffsetHz = 0L,
bluetoothRotatorState = false, bluetoothRotatorState = false,
bluetoothRotatorFormat = $$"P $AZ $EL", bluetoothRotatorFormat = $$"P $AZ $EL",
bluetoothRotatorName = "Default", bluetoothRotatorName = "Default",
@@ -231,7 +451,7 @@ fun PreviewNetworkOutputDialog() {
bluetoothFrequencyFormat = $$"F $FREQ" bluetoothFrequencyFormat = $$"F $FREQ"
), ),
onDismiss = {}, onDismiss = {},
onSave = { _, _, _, _, _, _, _, _ -> } onSave = { _, _, _, _, _, _, _, _, _ -> }
) )
} }
} }
@@ -242,7 +462,7 @@ fun NetworkOutputDialog(
onDismiss: () -> Unit, onDismiss: () -> Unit,
onSave: ( onSave: (
Boolean, String, String, String, Boolean, String, String, String,
Boolean, String, String, String Boolean, String, String, String, Long
) -> Unit ) -> Unit
) { ) {
val padding = LocalSpacing.current.large val padding = LocalSpacing.current.large
@@ -256,16 +476,19 @@ fun NetworkOutputDialog(
mutableStateOf("${initialSettings.frequencyAddress}:${initialSettings.frequencyPort}") mutableStateOf("${initialSettings.frequencyAddress}:${initialSettings.frequencyPort}")
} }
val frequencyFormat = rememberSaveable { mutableStateOf(initialSettings.frequencyFormat) } val frequencyFormat = rememberSaveable { mutableStateOf(initialSettings.frequencyFormat) }
val frequencyOffsetHz = rememberSaveable { mutableStateOf(initialSettings.frequencyOffsetHz.toString()) }
val onAccept = { val onAccept = {
val (rotIp, rotPort) = splitAddress(rotatorAddress.value) val (rotIp, rotPort) = splitAddress(rotatorAddress.value)
val (freqIp, freqPort) = splitAddress(frequencyAddress.value) val (freqIp, freqPort) = splitAddress(frequencyAddress.value)
val offsetHz = (frequencyOffsetHz.value.trim().toLongOrNull() ?: 0L)
.coerceIn(Constants.FREQ_OFFSET_MIN_HZ, Constants.FREQ_OFFSET_MAX_HZ)
onSave( onSave(
rotatorState.value, rotIp, rotPort, rotatorFormat.value, rotatorState.value, rotIp, rotPort, rotatorFormat.value,
frequencyState.value, freqIp, freqPort, frequencyFormat.value frequencyState.value, freqIp, freqPort, frequencyFormat.value, offsetHz
) )
onDismiss() onDismiss()
} }
SharedDialog( ConfirmDialog(
title = stringResource(R.string.prefs_net_title), title = stringResource(R.string.prefs_net_title),
onCancel = onDismiss, onCancel = onDismiss,
onAccept = onAccept onAccept = onAccept
@@ -294,6 +517,28 @@ fun NetworkOutputDialog(
onFormatChange = { frequencyFormat.value = it }, onFormatChange = { frequencyFormat.value = it },
formatLabel = stringResource(R.string.prefs_net_frequency_format_hint) formatLabel = stringResource(R.string.prefs_net_frequency_format_hint)
) )
Spacer(modifier = Modifier.height(6.dp))
OutlinedTextField(
value = frequencyOffsetHz.value,
onValueChange = { frequencyOffsetHz.value = it },
singleLine = true,
label = { Text(stringResource(R.string.prefs_net_frequency_offset_hint)) },
supportingText = { Text(stringResource(R.string.prefs_net_frequency_offset_help)) },
trailingIcon = {
IconButton(
onClick = { frequencyOffsetHz.value = "0" },
enabled = frequencyState.value && frequencyOffsetHz.value != "0"
) {
Icon(
painter = painterResource(R.drawable.ic_close),
contentDescription = null
)
}
},
modifier = Modifier.fillMaxWidth(),
enabled = frequencyState.value
)
Spacer(modifier = Modifier.height(12.dp))
} }
} }
} }
@@ -321,6 +566,7 @@ fun PreviewBluetoothOutputDialog() {
frequencyAddress = "127.0.0.1", frequencyAddress = "127.0.0.1",
frequencyPort = "4532", frequencyPort = "4532",
frequencyFormat = $$"F $FREQ", frequencyFormat = $$"F $FREQ",
frequencyOffsetHz = 0L,
bluetoothRotatorState = false, bluetoothRotatorState = false,
bluetoothRotatorFormat = $$"P $AZ $EL", bluetoothRotatorFormat = $$"P $AZ $EL",
bluetoothRotatorName = "Default", bluetoothRotatorName = "Default",
@@ -346,11 +592,15 @@ fun BluetoothOutputDialog(
) { ) {
val padding = LocalSpacing.current.large val padding = LocalSpacing.current.large
val rotatorState = rememberSaveable { mutableStateOf(initialSettings.bluetoothRotatorState) } val rotatorState = rememberSaveable { mutableStateOf(initialSettings.bluetoothRotatorState) }
val rotatorAddress = rememberSaveable { mutableStateOf(initialSettings.bluetoothRotatorAddress) } val rotatorAddress =
rememberSaveable { mutableStateOf(initialSettings.bluetoothRotatorAddress) }
val rotatorFormat = rememberSaveable { mutableStateOf(initialSettings.bluetoothRotatorFormat) } val rotatorFormat = rememberSaveable { mutableStateOf(initialSettings.bluetoothRotatorFormat) }
val frequencyState = rememberSaveable { mutableStateOf(initialSettings.bluetoothFrequencyState) } val frequencyState =
val frequencyAddress = rememberSaveable { mutableStateOf(initialSettings.bluetoothFrequencyAddress) } rememberSaveable { mutableStateOf(initialSettings.bluetoothFrequencyState) }
val frequencyFormat = rememberSaveable { mutableStateOf(initialSettings.bluetoothFrequencyFormat) } val frequencyAddress =
rememberSaveable { mutableStateOf(initialSettings.bluetoothFrequencyAddress) }
val frequencyFormat =
rememberSaveable { mutableStateOf(initialSettings.bluetoothFrequencyFormat) }
val onAccept = { val onAccept = {
onSave( onSave(
rotatorState.value, rotatorAddress.value, rotatorFormat.value, rotatorState.value, rotatorAddress.value, rotatorFormat.value,
@@ -358,7 +608,7 @@ fun BluetoothOutputDialog(
) )
onDismiss() onDismiss()
} }
SharedDialog( ConfirmDialog(
title = stringResource(R.string.prefs_bt_title), title = stringResource(R.string.prefs_bt_title),
onCancel = onDismiss, onCancel = onDismiss,
onAccept = onAccept onAccept = onAccept
@@ -387,6 +637,7 @@ fun BluetoothOutputDialog(
onFormatChange = { frequencyFormat.value = it }, onFormatChange = { frequencyFormat.value = it },
formatLabel = stringResource(R.string.prefs_bt_frequency_output_hint) formatLabel = stringResource(R.string.prefs_bt_frequency_output_hint)
) )
Spacer(modifier = Modifier.height(12.dp))
} }
} }
} }
@@ -441,14 +692,14 @@ private fun OutputChannelSection(
@Composable @Composable
fun RadioControlDialog( fun RadioControlDialog(
initialSettings: RadioControlSettings, initialSettings: RadioControlSettings,
pairedBluetoothDevices: List<Pair<String, String>>,
onDismiss: () -> Unit, onDismiss: () -> Unit,
onSave: (RadioControlSettings) -> Unit onSave: (RadioControlSettings) -> Unit
) { ) {
val context = androidx.compose.ui.platform.LocalContext.current
val padding = LocalSpacing.current.large val padding = LocalSpacing.current.large
val baudRates = listOf(4800, 9600, 38400)
val enabled = rememberSaveable { mutableStateOf(initialSettings.enabled) } val enabled = rememberSaveable { mutableStateOf(initialSettings.enabled) }
val radioModel = rememberSaveable { mutableStateOf(initialSettings.radioModel) } val radioModel = rememberSaveable { mutableStateOf(initialSettings.radioModel) }
val splitMode = rememberSaveable { mutableStateOf(initialSettings.splitMode) }
val txAddress = rememberSaveable { mutableStateOf(initialSettings.txRadioAddress) } val txAddress = rememberSaveable { mutableStateOf(initialSettings.txRadioAddress) }
val rxAddress = rememberSaveable { mutableStateOf(initialSettings.rxRadioAddress) } val rxAddress = rememberSaveable { mutableStateOf(initialSettings.rxRadioAddress) }
val txName = rememberSaveable { mutableStateOf(initialSettings.txRadioName) } val txName = rememberSaveable { mutableStateOf(initialSettings.txRadioName) }
@@ -456,14 +707,17 @@ fun RadioControlDialog(
val baudRate = rememberSaveable { mutableIntStateOf(initialSettings.baudRate) } val baudRate = rememberSaveable { mutableIntStateOf(initialSettings.baudRate) }
val selectingFor = rememberSaveable { mutableStateOf("") } // "tx", "rx", or "" val selectingFor = rememberSaveable { mutableStateOf("") } // "tx", "rx", or ""
val pairedDevices = remember { val isIcom = radioModel.value == RadioControlSettings.MODEL_ICOM_IC705
try { val isSingleRadio = isIcom && splitMode.value
val manager = context.getSystemService(Context.BLUETOOTH_SERVICE) as BluetoothManager
manager.adapter?.bondedDevices?.map { Pair(it.name ?: "Unknown", it.address) } ?: emptyList() // Reset split mode when switching away from IC-705
} catch (_: SecurityException) { if (!isIcom && splitMode.value) splitMode.value = false
emptyList()
} val baudRates = if (isIcom) RadioControlSettings.BAUD_RATES_ICOM
} else RadioControlSettings.BAUD_RATES_YAESU
// If current baud rate is not in the new list, default to the first available
if (baudRate.intValue !in baudRates) baudRate.intValue = baudRates.first()
val onAccept = { val onAccept = {
onSave( onSave(
@@ -471,20 +725,23 @@ fun RadioControlDialog(
enabled = enabled.value, enabled = enabled.value,
radioModel = radioModel.value, radioModel = radioModel.value,
txRadioAddress = txAddress.value, txRadioAddress = txAddress.value,
rxRadioAddress = rxAddress.value, rxRadioAddress = if (isSingleRadio) "" else rxAddress.value,
txRadioName = txName.value, txRadioName = txName.value,
rxRadioName = rxName.value, rxRadioName = if (isSingleRadio) "" else rxName.value,
baudRate = baudRate.intValue baudRate = baudRate.intValue,
splitMode = splitMode.value
) )
) )
onDismiss() onDismiss()
} }
SharedDialog(
ConfirmDialog(
title = stringResource(R.string.rc_settings_title), title = stringResource(R.string.rc_settings_title),
onCancel = onDismiss, onCancel = onDismiss,
onAccept = onAccept onAccept = onAccept
) { ) {
Column(modifier = Modifier.padding(horizontal = padding)) { Column(modifier = Modifier.padding(horizontal = padding)) {
Row( Row(
horizontalArrangement = Arrangement.SpaceBetween, horizontalArrangement = Arrangement.SpaceBetween,
verticalAlignment = Alignment.CenterVertically, verticalAlignment = Alignment.CenterVertically,
@@ -495,59 +752,98 @@ fun RadioControlDialog(
} }
Spacer(modifier = Modifier.height(6.dp)) Spacer(modifier = Modifier.height(6.dp))
// Radio model selection
Text( Text(
stringResource(R.string.rc_radio_model), text = stringResource(R.string.rc_radio_model),
fontWeight = androidx.compose.ui.text.font.FontWeight.Medium, fontWeight = FontWeight.Medium,
color = androidx.compose.material3.MaterialTheme.colorScheme.primary color = MaterialTheme.colorScheme.primary
) )
Row(horizontalArrangement = Arrangement.spacedBy(4.dp)) { Row(
horizontalArrangement = Arrangement.spacedBy(2.dp),
modifier = Modifier.fillMaxWidth()
) {
RadioControlSettings.SUPPORTED_RADIOS.forEach { model -> RadioControlSettings.SUPPORTED_RADIOS.forEach { model ->
androidx.compose.material3.FilterChip( FilterChip(
selected = radioModel.value == model, selected = radioModel.value == model,
onClick = { radioModel.value = model }, onClick = { radioModel.value = model },
label = { Text(model, fontSize = 12.sp) }, label = {
enabled = enabled.value Text(
text = compactRadioModelLabel(model),
fontSize = 12.sp,
textAlign = TextAlign.Center,
modifier = Modifier.fillMaxWidth()
)
},
enabled = enabled.value,
modifier = Modifier.weight(1f)
) )
} }
} }
Spacer(modifier = Modifier.height(6.dp)) Spacer(modifier = Modifier.height(6.dp))
// TX Radio selection val isSplitModeAvailable = enabled.value && isIcom
Text("TX Radio (Uplink)", fontWeight = androidx.compose.ui.text.font.FontWeight.Medium) val splitModeLabelColor = if (isSplitModeAvailable) {
if (txAddress.value.isNotBlank()) { MaterialTheme.colorScheme.onSurface
Text("${txName.value} - ${txAddress.value}", fontSize = 13.sp) } else {
MaterialTheme.colorScheme.onSurface.copy(alpha = 0.56f)
} }
CardButton( Row(
onClick = { selectingFor.value = "tx" }, horizontalArrangement = Arrangement.SpaceBetween,
text = "Select TX Device", verticalAlignment = Alignment.CenterVertically,
modifier = Modifier.fillMaxWidth() modifier = Modifier.fillMaxWidth()
) ) {
Text(
text = stringResource(R.string.settings_split_mode),
fontWeight = FontWeight.Medium,
color = splitModeLabelColor
)
Switch(
checked = splitMode.value,
onCheckedChange = { splitMode.value = it },
enabled = isSplitModeAvailable
)
}
Spacer(modifier = Modifier.height(6.dp)) Spacer(modifier = Modifier.height(6.dp))
// RX Radio selection Text("Radio devices", fontWeight = FontWeight.Medium)
Text("RX Radio (Downlink)", fontWeight = androidx.compose.ui.text.font.FontWeight.Medium) Row(
if (rxAddress.value.isNotBlank()) { horizontalArrangement = Arrangement.spacedBy(6.dp),
Text("${rxName.value} - ${rxAddress.value}", fontSize = 13.sp)
}
CardButton(
onClick = { selectingFor.value = "rx" },
text = "Select RX Device",
modifier = Modifier.fillMaxWidth() modifier = Modifier.fillMaxWidth()
) ) {
CardButton(
// Paired devices list (shown when selecting) onClick = { selectingFor.value = "tx" },
if (selectingFor.value.isNotBlank()) { text = if (isSingleRadio) "Select Radio" else "Select TX",
Spacer(modifier = Modifier.height(6.dp)) modifier = Modifier.weight(1f)
Text(
text = "Paired Bluetooth Devices:",
fontWeight = androidx.compose.ui.text.font.FontWeight.Medium,
color = androidx.compose.material3.MaterialTheme.colorScheme.primary
) )
if (pairedDevices.isEmpty()) { CardButton(
Text("No paired devices found. Pair your BT adapter in Android Bluetooth settings first.") onClick = { if (!isSingleRadio) selectingFor.value = "rx" },
text = if (isSingleRadio) "RX = TX" else "Select RX",
modifier = Modifier.weight(1f)
)
}
if (txAddress.value.isNotBlank()) {
Text("TX: ${txName.value} — ${txAddress.value}", fontSize = 13.sp)
}
if (isSingleRadio && txAddress.value.isNotBlank()) {
Text("RX: same as TX", fontSize = 13.sp)
} else if (rxAddress.value.isNotBlank()) {
Text("RX: ${rxName.value} — ${rxAddress.value}", fontSize = 13.sp)
}
Spacer(modifier = Modifier.height(6.dp))
if (selectingFor.value.isNotBlank()) {
Text(
text = stringResource(R.string.settings_paired_devices),
fontWeight = FontWeight.Medium,
color = MaterialTheme.colorScheme.primary
)
Spacer(modifier = Modifier.height(2.dp))
if (pairedBluetoothDevices.isEmpty()) {
Text(
"No paired devices found. Pair your BT adapter in Android Bluetooth settings first.",
fontSize = 13.sp
)
} else { } else {
pairedDevices.forEach { (name, address) -> pairedBluetoothDevices.forEach { (name, address) ->
androidx.compose.material3.Surface( androidx.compose.material3.Surface(
modifier = Modifier modifier = Modifier
.fillMaxWidth() .fillMaxWidth()
@@ -555,6 +851,10 @@ fun RadioControlDialog(
if (selectingFor.value == "tx") { if (selectingFor.value == "tx") {
txAddress.value = address txAddress.value = address
txName.value = name txName.value = name
if (isSingleRadio) {
rxAddress.value = address
rxName.value = name
}
} else { } else {
rxAddress.value = address rxAddress.value = address
rxName.value = name rxName.value = name
@@ -573,25 +873,50 @@ fun RadioControlDialog(
} }
} }
} }
Spacer(modifier = Modifier.height(6.dp))
} }
Spacer(modifier = Modifier.height(6.dp)) Text("Baud Rate:", fontWeight = FontWeight.Medium)
Row( FlowRow(
horizontalArrangement = Arrangement.SpaceBetween, horizontalArrangement = Arrangement.spacedBy(2.dp),
verticalAlignment = Alignment.CenterVertically, maxItemsInEachRow = 6,
modifier = Modifier.fillMaxWidth() modifier = Modifier.fillMaxWidth()
) { ) {
Text("Baud Rate:") baudRates.forEach { rate ->
Row(horizontalArrangement = Arrangement.spacedBy(4.dp)) { FilterChip(
baudRates.forEach { rate -> selected = rate == baudRate.intValue,
CardButton( onClick = { baudRate.intValue = rate },
onClick = { baudRate.intValue = rate }, label = {
text = if (rate == baudRate.intValue) "[$rate]" else rate.toString(), Text(
modifier = Modifier text = baudLabel(rate),
) fontSize = 12.sp,
} textAlign = TextAlign.Center,
modifier = Modifier.fillMaxWidth()
)
},
enabled = enabled.value,
modifier = Modifier.weight(1f)
)
} }
} }
Spacer(modifier = Modifier.height(6.dp))
} }
} }
} }
private fun compactRadioModelLabel(model: String): String = when (model) {
RadioControlSettings.MODEL_YAESU_FT817 -> "FT-817/818"
RadioControlSettings.MODEL_YAESU_FT857 -> "FT-857/897"
RadioControlSettings.MODEL_ICOM_IC705 -> "IC-705"
else -> model
}
private fun baudLabel(rate: Int): String = when (rate) {
4800 -> "4k"
9600 -> "9k"
19200 -> "19k"
38400 -> "38k"
57600 -> "57k"
115200 -> "115k"
else -> rate.toString()
}
@@ -25,10 +25,12 @@ import androidx.compose.foundation.clickable
import androidx.compose.foundation.layout.Arrangement import androidx.compose.foundation.layout.Arrangement
import androidx.compose.foundation.layout.Column import androidx.compose.foundation.layout.Column
import androidx.compose.foundation.layout.Row import androidx.compose.foundation.layout.Row
import androidx.compose.foundation.layout.RowScope
import androidx.compose.foundation.layout.Spacer import androidx.compose.foundation.layout.Spacer
import androidx.compose.foundation.layout.fillMaxHeight import androidx.compose.foundation.layout.fillMaxHeight
import androidx.compose.foundation.layout.fillMaxWidth import androidx.compose.foundation.layout.fillMaxWidth
import androidx.compose.foundation.layout.height import androidx.compose.foundation.layout.height
import androidx.compose.foundation.layout.IntrinsicSize
import androidx.compose.foundation.layout.padding import androidx.compose.foundation.layout.padding
import androidx.compose.foundation.layout.width import androidx.compose.foundation.layout.width
import androidx.compose.foundation.lazy.grid.GridCells import androidx.compose.foundation.lazy.grid.GridCells
@@ -38,6 +40,7 @@ import androidx.compose.material3.ElevatedCard
import androidx.compose.material3.Icon import androidx.compose.material3.Icon
import androidx.compose.material3.LinearProgressIndicator import androidx.compose.material3.LinearProgressIndicator
import androidx.compose.material3.MaterialTheme import androidx.compose.material3.MaterialTheme
import androidx.compose.material3.Slider
import androidx.compose.material3.Switch import androidx.compose.material3.Switch
import androidx.compose.material3.Text import androidx.compose.material3.Text
import androidx.compose.runtime.Composable import androidx.compose.runtime.Composable
@@ -61,6 +64,7 @@ import androidx.compose.ui.unit.dp
import androidx.compose.ui.unit.sp import androidx.compose.ui.unit.sp
import androidx.lifecycle.compose.collectAsStateWithLifecycle import androidx.lifecycle.compose.collectAsStateWithLifecycle
import androidx.lifecycle.viewmodel.compose.viewModel import androidx.lifecycle.viewmodel.compose.viewModel
import com.rtbishop.look4sat.core.domain.model.DataSourcesSettings
import com.rtbishop.look4sat.core.domain.model.OtherSettings import com.rtbishop.look4sat.core.domain.model.OtherSettings
import com.rtbishop.look4sat.core.domain.predict.GeoPos import com.rtbishop.look4sat.core.domain.predict.GeoPos
import com.rtbishop.look4sat.core.domain.repository.IContainerProvider import com.rtbishop.look4sat.core.domain.repository.IContainerProvider
@@ -71,6 +75,7 @@ import com.rtbishop.look4sat.core.presentation.PrimaryIconCard
import com.rtbishop.look4sat.core.presentation.R import com.rtbishop.look4sat.core.presentation.R
import com.rtbishop.look4sat.core.presentation.ScreenColumn import com.rtbishop.look4sat.core.presentation.ScreenColumn
import com.rtbishop.look4sat.core.presentation.TopBar import com.rtbishop.look4sat.core.presentation.TopBar
import com.rtbishop.look4sat.core.presentation.WhatsNewDialog
import com.rtbishop.look4sat.core.presentation.infiniteMarquee import com.rtbishop.look4sat.core.presentation.infiniteMarquee
import com.rtbishop.look4sat.core.presentation.isVerticalLayout import com.rtbishop.look4sat.core.presentation.isVerticalLayout
import java.text.SimpleDateFormat import java.text.SimpleDateFormat
@@ -113,23 +118,23 @@ private fun SettingsScreen(uiState: SettingsState, onAction: (SettingsAction) ->
} }
if (dialogs.dataSources) { if (dialogs.dataSources) {
DataSourcesDialog( DataSourcesDialog(
useCustomTle = uiState.dataSourcesSettings.useCustomTLE, satelliteUrls = uiState.dataSourcesSettings.satelliteUrls,
useCustomTransceivers = uiState.dataSourcesSettings.useCustomTransceivers, transceiversUrls = uiState.dataSourcesSettings.transceiversUrls,
tleUrl = uiState.dataSourcesSettings.tleUrl, satelliteEnabled = uiState.dataSourcesSettings.satelliteEnabled,
transceiversUrl = uiState.dataSourcesSettings.transceiversUrl, transceiversEnabled = uiState.dataSourcesSettings.transceiversEnabled,
statusCodes = uiState.dataSourcesStatus,
onImportTle = { permissions.launchTleImport(); dialogs.dataSources = false }, onImportTle = { permissions.launchTleImport(); dialogs.dataSources = false },
onImportTransceivers = { permissions.launchTransceiverImport(); dialogs.dataSources = false }, onImportTransceivers = { permissions.launchTransceiverImport(); dialogs.dataSources = false },
onDismiss = { dialogs.dataSources = false }, onDismiss = { dialogs.dataSources = false },
onSave = { useCustomTle, useCustomTransceivers, tleUrl, transceiversUrl -> onSave = { satUrls, txUrls, satEnabled, txEnabled ->
val current = uiState.dataSourcesSettings val newSettings = DataSourcesSettings(
val newSettings = current.copy( satelliteUrls = satUrls,
useCustomTLE = if (!useCustomTle || tleUrl.isNotBlank()) useCustomTle else current.useCustomTLE, transceiversUrls = txUrls,
tleUrl = if (!useCustomTle || tleUrl.isNotBlank()) tleUrl else current.tleUrl, satelliteEnabled = satEnabled,
useCustomTransceivers = if (!useCustomTransceivers || transceiversUrl.isNotBlank()) useCustomTransceivers else current.useCustomTransceivers, transceiversEnabled = txEnabled
transceiversUrl = if (!useCustomTransceivers || transceiversUrl.isNotBlank()) transceiversUrl else current.transceiversUrl
) )
if (newSettings != current) onAction(SettingsAction.UpdateDataSources(newSettings)) if (newSettings != uiState.dataSourcesSettings) onAction(SettingsAction.UpdateDataSources(newSettings))
if (useCustomTle || useCustomTransceivers) onAction(SettingsAction.UpdateFromWeb) onAction(SettingsAction.UpdateFromWeb)
} }
) )
} }
@@ -137,14 +142,15 @@ private fun SettingsScreen(uiState: SettingsState, onAction: (SettingsAction) ->
NetworkOutputDialog( NetworkOutputDialog(
initialSettings = uiState.rcSettings, initialSettings = uiState.rcSettings,
onDismiss = { dialogs.network = false }, onDismiss = { dialogs.network = false },
onSave = { rotState, rotAddr, rotPort, rotFmt, freqState, freqAddr, freqPort, freqFmt -> onSave = { rotState, rotAddr, rotPort, rotFmt, freqState, freqAddr, freqPort, freqFmt, freqOffsetHz ->
onAction( onAction(
SettingsAction.UpdateRC( SettingsAction.UpdateRC(
uiState.rcSettings.copy( uiState.rcSettings.copy(
rotatorState = rotState, rotatorAddress = rotAddr, rotatorState = rotState, rotatorAddress = rotAddr,
rotatorPort = rotPort, rotatorFormat = rotFmt, rotatorPort = rotPort, rotatorFormat = rotFmt,
frequencyState = freqState, frequencyAddress = freqAddr, frequencyState = freqState, frequencyAddress = freqAddr,
frequencyPort = freqPort, frequencyFormat = freqFmt frequencyPort = freqPort, frequencyFormat = freqFmt,
frequencyOffsetHz = freqOffsetHz
) )
) )
) )
@@ -171,14 +177,18 @@ private fun SettingsScreen(uiState: SettingsState, onAction: (SettingsAction) ->
if (dialogs.radioControl) { if (dialogs.radioControl) {
RadioControlDialog( RadioControlDialog(
initialSettings = uiState.radioControlSettings, initialSettings = uiState.radioControlSettings,
pairedBluetoothDevices = uiState.pairedBluetoothDevices,
onDismiss = { dialogs.radioControl = false }, onDismiss = { dialogs.radioControl = false },
onSave = { onAction(SettingsAction.UpdateRadioControl(it)) } onSave = { onAction(SettingsAction.UpdateRadioControl(it)) }
) )
} }
if (dialogs.whatsNew) {
WhatsNewDialog(onDismiss = { dialogs.whatsNew = false })
}
// URLs for top bar // URLs for top bar
val uriHandler = LocalUriHandler.current val uriHandler = LocalUriHandler.current
val appUrl = stringResource(R.string.prefs_app_url) // val appUrl = stringResource(R.string.prefs_app_url)
val donateUrl = stringResource(R.string.prefs_donate_url) val donateUrl = stringResource(R.string.prefs_donate_url)
val fdroidTitle = stringResource(R.string.prefs_fdroid_title) val fdroidTitle = stringResource(R.string.prefs_fdroid_title)
val fdroidUrl = stringResource(R.string.prefs_fdroid_url) val fdroidUrl = stringResource(R.string.prefs_fdroid_url)
@@ -195,7 +205,7 @@ private fun SettingsScreen(uiState: SettingsState, onAction: (SettingsAction) ->
if (isVerticalLayout) { if (isVerticalLayout) {
TopBar { TopBar {
TopCard( TopCard(
onClick = { safeOpenUri(appUrl) }, onClick = { dialogs.whatsNew = true },
version = uiState.appVersionName, version = uiState.appVersionName,
modifier = Modifier.weight(1f) modifier = Modifier.weight(1f)
) )
@@ -223,7 +233,7 @@ private fun SettingsScreen(uiState: SettingsState, onAction: (SettingsAction) ->
TopBar { TopBar {
PrimaryIconCard(onClick = { safeOpenUri(donateUrl) }, resId = R.drawable.ic_pound) PrimaryIconCard(onClick = { safeOpenUri(donateUrl) }, resId = R.drawable.ic_pound)
TopCard( TopCard(
onClick = { safeOpenUri(appUrl) }, onClick = { dialogs.whatsNew = true },
version = uiState.appVersionName, version = uiState.appVersionName,
modifier = Modifier.weight(1f) modifier = Modifier.weight(1f)
) )
@@ -279,8 +289,22 @@ private fun SettingsScreen(uiState: SettingsState, onAction: (SettingsAction) ->
onRadioControlClick = { dialogs.radioControl = true } onRadioControlClick = { dialogs.radioControl = true }
) )
} }
item { OtherCard(uiState.otherSettings, onAction) } item(span = { GridItemSpan(maxLineSpan) }) {
item { CardCredits() } if (isVerticalLayout) {
Column(verticalArrangement = Arrangement.spacedBy(6.dp)) {
OtherCard(uiState.otherSettings, onAction)
CardCredits()
}
} else {
Row(
horizontalArrangement = Arrangement.spacedBy(6.dp),
modifier = Modifier.fillMaxWidth().height(IntrinsicSize.Min)
) {
OtherCard(uiState.otherSettings, onAction, modifier = Modifier.weight(1f).fillMaxHeight())
CardCredits(modifier = Modifier.weight(1f).fillMaxHeight())
}
}
}
} }
} }
} }
@@ -318,9 +342,9 @@ private fun LocationCard(
Text(text = formatUpdateTime(updateTime = settings.stationPos.timestamp)) Text(text = formatUpdateTime(updateTime = settings.stationPos.timestamp))
Spacer(modifier = Modifier.height(2.dp)) Spacer(modifier = Modifier.height(2.dp))
Row(horizontalArrangement = Arrangement.SpaceBetween, modifier = Modifier.fillMaxWidth()) { Row(horizontalArrangement = Arrangement.SpaceBetween, modifier = Modifier.fillMaxWidth()) {
Text(text = "Lat: ${settings.stationPos.latitude}°") Text(text = stringResource(R.string.prefs_lat_prefix, settings.stationPos.latitude))
Text(text = "Lon: ${settings.stationPos.longitude}°") Text(text = stringResource(R.string.prefs_lon_prefix, settings.stationPos.longitude))
Text(text = "Qth: ${settings.stationPos.qthLocator}") Text(text = stringResource(R.string.prefs_qth_prefix, settings.stationPos.qthLocator))
} }
Spacer(modifier = Modifier.height(1.dp)) Spacer(modifier = Modifier.height(1.dp))
Row(horizontalArrangement = Arrangement.SpaceEvenly) { Row(horizontalArrangement = Arrangement.SpaceEvenly) {
@@ -357,7 +381,7 @@ private fun LocationCard(
@Composable @Composable
private fun DataCardPreview() = MainTheme { private fun DataCardPreview() = MainTheme {
val settings = DataSettings(true, 5000, 2500, 0L) val settings = DataSettings(true, 5000, 2500, 0L)
DataCard(settings = settings, {}, {}, {}) DataCard(settings = settings, updateFromWeb = {}, clearAllData = {}, showDataSourcesDialog = {})
} }
@Composable @Composable
@@ -459,49 +483,120 @@ private fun OtherCardPreview() = MainTheme {
shouldSeeWarning = false, shouldSeeWarning = false,
shouldSeeWhatsNew = false shouldSeeWhatsNew = false
) )
OtherCard(settings = values) {} OtherCard(settings = values, onAction = {})
} }
@Composable @Composable
private fun OtherCard(settings: OtherSettings, onAction: (SettingsAction) -> Unit) { private fun OtherCard(settings: OtherSettings, onAction: (SettingsAction) -> Unit, modifier: Modifier = Modifier) {
ElevatedCard( ElevatedCard(modifier = modifier.fillMaxWidth()) {
modifier = Modifier
.fillMaxWidth()
.height(268.dp)
) {
Column(modifier = Modifier.padding(horizontal = 8.dp, vertical = 4.dp)) { Column(modifier = Modifier.padding(horizontal = 8.dp, vertical = 4.dp)) {
Text( Text(
text = stringResource(id = R.string.prefs_other_title), text = stringResource(id = R.string.prefs_other_title),
color = MaterialTheme.colorScheme.primary color = MaterialTheme.colorScheme.primary
) )
SwitchRow(R.string.prefs_other_switch_utc, settings.stateOfUtc) { Spacer(modifier = Modifier.height(4.dp))
onAction(SettingsAction.ToggleUtc(it)) // Data preferences: auto-update + UTC clock
Row(modifier = Modifier.fillMaxWidth(), horizontalArrangement = Arrangement.spacedBy(8.dp)) {
SwitchTile(R.string.prefs_other_switch_update, settings.stateOfAutoUpdate) {
onAction(SettingsAction.ToggleUpdate(it))
}
SwitchTile(R.string.prefs_other_switch_utc, settings.stateOfUtc) {
onAction(SettingsAction.ToggleUtc(it))
}
} }
SwitchRow(R.string.prefs_other_switch_update, settings.stateOfAutoUpdate) { Spacer(modifier = Modifier.height(4.dp))
onAction(SettingsAction.ToggleUpdate(it)) // Appearance: light theme + night filter
Row(modifier = Modifier.fillMaxWidth(), horizontalArrangement = Arrangement.spacedBy(8.dp)) {
SwitchTile(R.string.prefs_other_switch_light_theme, settings.stateOfLightTheme) {
onAction(SettingsAction.ToggleLightTheme(it))
}
SwitchTile(
R.string.prefs_other_switch_night_mode,
settings.stateOfNightMode,
enabled = !settings.stateOfLightTheme
) {
onAction(SettingsAction.ToggleNightMode(it))
}
} }
SwitchRow(R.string.prefs_other_switch_sweep, settings.stateOfSweep) { Spacer(modifier = Modifier.height(4.dp))
onAction(SettingsAction.ToggleSweep(it)) // Radar behavior: sweep animation + sensors, followed by the compass offset sliders
} Row(modifier = Modifier.fillMaxWidth(), horizontalArrangement = Arrangement.spacedBy(8.dp)) {
SwitchRow(R.string.prefs_other_switch_sensors, settings.stateOfSensors) { SwitchTile(R.string.prefs_other_switch_sweep, settings.stateOfSweep) {
onAction(SettingsAction.ToggleSensor(it)) onAction(SettingsAction.ToggleSweep(it))
} }
SwitchRow(R.string.prefs_other_switch_night_mode, settings.stateOfNightMode) { SwitchTile(R.string.prefs_other_switch_sensors, settings.stateOfSensors) {
onAction(SettingsAction.ToggleNightMode(it)) onAction(SettingsAction.ToggleSensor(it))
}
} }
Spacer(modifier = Modifier.height(4.dp))
// Compass calibration sliders at the bottom
CompassOffsetRow(
labelResId = R.string.prefs_other_compass_offset_az,
value = settings.radarCompassOffset,
range = -180f..180f
) { onAction(SettingsAction.SetRadarCompassOffset(it)) }
Spacer(modifier = Modifier.height(4.dp))
CompassOffsetRow(
labelResId = R.string.prefs_other_compass_offset_elev,
value = settings.radarCompassOffsetElev,
range = -90f..90f
) { onAction(SettingsAction.SetRadarCompassOffsetElev(it)) }
Spacer(modifier = Modifier.height(4.dp))
} }
} }
} }
@Composable @Composable
private fun SwitchRow(labelResId: Int, checked: Boolean, onCheckedChange: (Boolean) -> Unit) { private fun CompassOffsetRow(
labelResId: Int,
value: Float,
range: ClosedFloatingPointRange<Float>,
onValueChange: (Float) -> Unit
) {
Row( Row(
horizontalArrangement = Arrangement.SpaceBetween, horizontalArrangement = Arrangement.SpaceBetween,
verticalAlignment = Alignment.CenterVertically, verticalAlignment = Alignment.CenterVertically,
modifier = Modifier.fillMaxWidth() modifier = Modifier.fillMaxWidth()
) { ) {
Text(text = stringResource(id = labelResId)) Text(
Switch(checked = checked, onCheckedChange = onCheckedChange) text = stringResource(id = labelResId),
modifier = Modifier
.weight(1f)
.padding(end = 4.dp)
.infiniteMarquee(),
maxLines = 1
)
Text(text = "${value.toInt()}°")
}
Spacer(modifier = Modifier.height(4.dp))
Slider(
value = value,
onValueChange = onValueChange,
valueRange = range
)
}
@Composable
private fun RowScope.SwitchTile(
labelResId: Int,
checked: Boolean,
enabled: Boolean = true,
onCheckedChange: (Boolean) -> Unit
) {
Row(
horizontalArrangement = Arrangement.SpaceBetween,
verticalAlignment = Alignment.CenterVertically,
modifier = Modifier.weight(1f)
) {
Text(
text = stringResource(id = labelResId),
modifier = Modifier
.weight(1f)
.padding(end = 4.dp)
.infiniteMarquee(),
maxLines = 1
)
Switch(checked = checked, enabled = enabled, onCheckedChange = onCheckedChange)
} }
} }
@@ -539,7 +634,6 @@ private fun CardCredits(modifier: Modifier = Modifier) {
ElevatedCard( ElevatedCard(
modifier = modifier modifier = modifier
.fillMaxWidth() .fillMaxWidth()
.height(268.dp)
) { ) {
Column( Column(
verticalArrangement = Arrangement.SpaceBetween, verticalArrangement = Arrangement.SpaceBetween,
@@ -573,7 +667,7 @@ private fun TopCard(onClick: () -> Unit, modifier: Modifier = Modifier, version:
.clickable { onClick() }) { .clickable { onClick() }) {
Spacer(Modifier) Spacer(Modifier)
Icon( Icon(
painter = painterResource(id = R.drawable.ic_satellites), painter = painterResource(id = R.drawable.ic_sputnik),
contentDescription = null, contentDescription = null,
tint = MaterialTheme.colorScheme.primary tint = MaterialTheme.colorScheme.primary
) )
@@ -624,6 +718,7 @@ private class DialogVisibility {
var network by mutableStateOf(false) var network by mutableStateOf(false)
var bluetooth by mutableStateOf(false) var bluetooth by mutableStateOf(false)
var radioControl by mutableStateOf(false) var radioControl by mutableStateOf(false)
var whatsNew by mutableStateOf(false)
} }
@Composable @Composable
@@ -631,12 +726,12 @@ private fun rememberDialogVisibility(): DialogVisibility {
return rememberSaveable(saver = run { return rememberSaveable(saver = run {
androidx.compose.runtime.saveable.Saver( androidx.compose.runtime.saveable.Saver(
save = { save = {
listOf(it.position, it.locator, it.dataSources, it.network, it.bluetooth, it.radioControl) listOf(it.position, it.locator, it.dataSources, it.network, it.bluetooth, it.radioControl, it.whatsNew)
}, },
restore = { restore = {
DialogVisibility().apply { DialogVisibility().apply {
position = it[0]; locator = it[1]; dataSources = it[2] position = it[0]; locator = it[1]; dataSources = it[2]
network = it[3]; bluetooth = it[4]; radioControl = it[5] network = it[3]; bluetooth = it[4]; radioControl = it[5]; whatsNew = it[6]
} }
} }
) )
@@ -672,12 +767,15 @@ private fun rememberSettingsPermissions(
else sendAction(SettingsAction.ShowToast(locationError)) else sendAction(SettingsAction.ShowToast(locationError))
} }
val satellitesImportError = stringResource(R.string.prefs_data_import_satellites_error)
val transceiversImportError = stringResource(R.string.prefs_data_import_transceivers_error)
val tleRequest = rememberLauncherForActivityResult(ActivityResultContracts.GetContent()) { uri -> val tleRequest = rememberLauncherForActivityResult(ActivityResultContracts.GetContent()) { uri ->
uri?.let { sendAction(SettingsAction.UpdateTLEFromFile(it.toString())) } uri?.let { sendAction(SettingsAction.UpdateTLEFromFile(it.toString(), satellitesImportError)) }
} }
val transceiversRequest = rememberLauncherForActivityResult(ActivityResultContracts.GetContent()) { uri -> val transceiversRequest = rememberLauncherForActivityResult(ActivityResultContracts.GetContent()) { uri ->
uri?.let { sendAction(SettingsAction.UpdateTransceiversFromFile(it.toString())) } uri?.let { sendAction(SettingsAction.UpdateTransceiversFromFile(it.toString(), transceiversImportError)) }
} }
val bluetoothError = stringResource(R.string.prefs_bt_perm_error) val bluetoothError = stringResource(R.string.prefs_bt_perm_error)
@@ -28,7 +28,10 @@ data class PositionSettings(
) )
data class DataSettings( data class DataSettings(
val isUpdating: Boolean, val entriesTotal: Int, val radiosTotal: Int, val timestamp: Long val isUpdating: Boolean,
val entriesTotal: Int,
val radiosTotal: Int,
val timestamp: Long
) )
data class SettingsState( data class SettingsState(
@@ -38,7 +41,9 @@ data class SettingsState(
val otherSettings: OtherSettings, val otherSettings: OtherSettings,
val rcSettings: RCSettings, val rcSettings: RCSettings,
val radioControlSettings: RadioControlSettings, val radioControlSettings: RadioControlSettings,
val dataSourcesSettings: DataSourcesSettings val dataSourcesSettings: DataSourcesSettings,
val dataSourcesStatus: Map<String, Int> = emptyMap(),
val pairedBluetoothDevices: List<Pair<String, String>> = emptyList()
) )
sealed interface SettingsAction { sealed interface SettingsAction {
@@ -50,8 +55,8 @@ sealed interface SettingsAction {
// Data // Data
data object UpdateFromWeb : SettingsAction data object UpdateFromWeb : SettingsAction
data class UpdateTLEFromFile(val uri: String) : SettingsAction data class UpdateTLEFromFile(val uri: String, val invalidFileMessage: String) : SettingsAction
data class UpdateTransceiversFromFile(val uri: String) : SettingsAction data class UpdateTransceiversFromFile(val uri: String, val invalidFileMessage: String) : SettingsAction
data object ClearAllData : SettingsAction data object ClearAllData : SettingsAction
// Toggles // Toggles
@@ -61,6 +66,8 @@ sealed interface SettingsAction {
data class ToggleSensor(val value: Boolean) : SettingsAction data class ToggleSensor(val value: Boolean) : SettingsAction
data class ToggleLightTheme(val value: Boolean) : SettingsAction data class ToggleLightTheme(val value: Boolean) : SettingsAction
data class ToggleNightMode(val value: Boolean) : SettingsAction data class ToggleNightMode(val value: Boolean) : SettingsAction
data class SetRadarCompassOffset(val value: Float) : SettingsAction
data class SetRadarCompassOffsetElev(val value: Float) : SettingsAction
// Remote control // Remote control
data class UpdateRC(val settings: RCSettings) : SettingsAction data class UpdateRC(val settings: RCSettings) : SettingsAction
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