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@@ -46,3 +46,4 @@ cat.log
|
||||
.env.local
|
||||
*.pem
|
||||
*.key
|
||||
*.syso
|
||||
|
||||
+41
-7
@@ -1,5 +1,9 @@
|
||||
# OpsLog
|
||||
|
||||
<a href="https://discord.gg/FYM8yw5pT" target="_blank">
|
||||
<img src="https://img.shields.io/badge/Discord-Rejoindre%20le%20serveur-5865F2?logo=discord&logoColor=white" alt="Rejoindre notre Discord" />
|
||||
</a>
|
||||
|
||||
Un logiciel de log radioamateur moderne et rapide pour Windows — saisie façon
|
||||
Log4OM, CAT en temps réel pour **OmniRig**, **FlexRadio/SmartSDR** natif,
|
||||
**Icom CI-V** natif (USB **et** à distance par internet, en remplacement de
|
||||
@@ -112,7 +116,10 @@ Affiché uniquement quand le backend CAT est une FlexRadio :
|
||||
parole (NOR/DX/DX+), VOX (+ niveau + délai), moniteur (+ niveau), gain micro.
|
||||
- **Réception (slice active) :** mode/seuil AGC, niveau audio, NB / NR / ANF.
|
||||
- **Coupleur d'antenne (ATU) :** accord / bypass / mémoires.
|
||||
- **Amplificateur :** PowerGenius XL operate/standby + défaut.
|
||||
- **Amplificateur :** la carte de commande suit l'ampli configuré —
|
||||
**PowerGenius XL** (operate/standby, mode ventilateur, défaut) ou
|
||||
**SPE Expert** (operate/standby, Marche/Arrêt, niveau Low/Mid/High, barre de
|
||||
puissance de sortie, bande & température).
|
||||
- **Mesures en direct** via le flux UDP VITA-49 : S-mètre (unités S), puissance
|
||||
directe (W), ROS, ALC, température PA, tension, plus les mesures de l'ampli.
|
||||
|
||||
@@ -159,9 +166,10 @@ avec le panadapter en flux, et Marche/Arrêt manuel. (L'audio est hors périmèt
|
||||
## Keyers & audio
|
||||
|
||||
- **Keyer CW** avec macros et macros sur touches F. Le moteur du keyer est
|
||||
sélectionnable : **WinKeyer** (K1EL WK1/2/3 sur port COM), **Icom** (le keyer
|
||||
intégré de la radio via CI-V — sans matériel supplémentaire, fonctionne aussi à
|
||||
distance) ou **TCI**.
|
||||
sélectionnable : **WinKeyer** (K1EL WK1/2/3 sur port COM), **FlexRadio CWX**
|
||||
(le keyer intégré de la radio via l'API SmartSDR — type-ahead et retour arrière,
|
||||
sans WinKeyer ni SmartCAT), **Icom** (le keyer intégré de la radio via CI-V —
|
||||
sans matériel supplémentaire, fonctionne aussi à distance) ou **TCI**.
|
||||
- **Keyer vocal numérique** (DVK) : enregistrer les messages vocaux F1–F6 et les
|
||||
émettre.
|
||||
- **Enregistrement audio des QSO :** capture continue en tampon glissant ; au
|
||||
@@ -170,10 +178,24 @@ avec le panadapter en flux, et Marche/Arrêt manuel. (L'audio est hors périmèt
|
||||
|
||||
## Amplis & commutateurs
|
||||
|
||||
- Amplificateur **PowerGenius XL** (4O3A) — TCP direct : operate/standby,
|
||||
sélecteur de mode ventilateur et affichage des défauts.
|
||||
- **Amplificateurs** (Réglages → Amplificateur — la carte de commande apparaît
|
||||
sur l'onglet FlexRadio, ou seule quand ni Flex ni Icom n'est actif) :
|
||||
- **PowerGenius XL** (4O3A) en TCP direct — operate/standby, sélecteur de mode
|
||||
ventilateur et affichage des défauts.
|
||||
- **SPE Expert** (1.3K-FA / 1.5K-FA / 2K-FA) via **USB** (COM virtuel) ou le
|
||||
**réseau** (pont RS232-Ethernet) — operate/standby, Marche/Arrêt, niveau de
|
||||
sortie Low / Mid / High, une barre de puissance et le statut en direct (bande,
|
||||
ROS, courant PA, température, avertissements/alarmes).
|
||||
- Commutateur d'antenne **Antenna Genius** (4O3A) via TCP/GSCP — un widget de
|
||||
commutation A/B ancré.
|
||||
- Panneau **Station Control** (ancrable, widgets réordonnables par glisser) : le
|
||||
**rotor**, la commande d'éléments **Ultrabeam** et des **cartes relais** —
|
||||
WebSwitch 1216H, KMTronic, **Denkovi** USB (bit-bang FT245 D2XX, 4 ou 8 relais)
|
||||
et USB-série générique (CH340 / LCUS, protocole A0) — pour l'alimentation, les
|
||||
antennes et accessoires de la station.
|
||||
- **Relais automatiques** (Réglages) : bascule les relais de Station Control
|
||||
automatiquement selon la fréquence / bande de la radio (comme PstRotator) — par
|
||||
relais, une fenêtre de fréquence ou un ensemble de bandes.
|
||||
|
||||
## QSL & diplômes
|
||||
|
||||
@@ -201,6 +223,15 @@ avec le panadapter en flux, et Marche/Arrêt manuel. (L'audio est hors périmèt
|
||||
un début/fin de fenêtre, signale les doublons et tient un tableau de score en
|
||||
direct.
|
||||
|
||||
## Statistiques
|
||||
|
||||
- **Tableau de bord des statistiques :** tuiles de synthèse (QSO, indicatifs
|
||||
uniques, entités DXCC, continents, % confirmés) plus des graphiques — QSO **par
|
||||
mode**, un split **CW / phonie / data** par bande, l'**activité dans le temps**
|
||||
(vues glissantes jour / 7 jours / 30 jours / 12 mois), par opérateur et par
|
||||
continent. Filtres par plage de dates, par opérateur et par concours, et une vue
|
||||
**Table** qui reprend chaque graphique.
|
||||
|
||||
## Statut opérateur en direct (événements spéciaux)
|
||||
|
||||
Pour un indicatif d'événement spécial multi-op sur un journal MySQL partagé (ex.
|
||||
@@ -247,7 +278,10 @@ ce n'est pas un serveur web.
|
||||
- **Démarrage automatique :** lancer des programmes externes (WSJT-X, JTAlert,
|
||||
contrôle de rotor…) au démarrage d'OpsLog, en sautant ceux déjà lancés.
|
||||
- **Sauvegarde :** sauvegarde optionnelle base + ADIF à la fermeture.
|
||||
- **Vérification de mise à jour** au démarrage avec un toast (désactivable).
|
||||
- **Vérification de mise à jour** au démarrage et toutes les 5 minutes (et à
|
||||
l'ouverture d'Aide → À propos), avec un toast (désactivable), plus une fenêtre
|
||||
**Nouveautés** qui affiche le changelog (anglais / français) au premier
|
||||
lancement après une mise à jour — réouvrable à tout moment depuis le menu Aide.
|
||||
- **Télémétrie d'usage anonyme** (un battement de cœur quotidien : ID
|
||||
d'installation aléatoire + version + OS — aucune donnée d'indicatif ou de QSO ;
|
||||
désactivable dans les Préférences).
|
||||
|
||||
@@ -1,5 +1,9 @@
|
||||
# OpsLog
|
||||
|
||||
<a href="https://discord.gg/FYM8yw5pT" target="_blank">
|
||||
<img src="https://img.shields.io/badge/Discord-Join%20the%20server-5865F2?logo=discord&logoColor=white" alt="Join our Discord" />
|
||||
</a>
|
||||
|
||||
A modern, fast ham-radio logger for Windows — Log4OM-style entry, real-time CAT
|
||||
for **OmniRig**, native **FlexRadio/SmartSDR**, native **Icom CI-V** (USB **and**
|
||||
remote-over-internet, replacing RS-BA1) and **TCI** (SunSDR / Expert Electronics),
|
||||
@@ -100,7 +104,10 @@ Shown only when the CAT backend is a FlexRadio:
|
||||
VOX (+ level + delay), monitor (+ level), mic gain.
|
||||
- **Receive (active slice):** AGC mode/threshold, audio level, NB / NR / ANF.
|
||||
- **Antenna tuner (ATU):** tune / bypass / memories.
|
||||
- **Amplifier:** PowerGenius XL operate/standby + fault.
|
||||
- **Amplifier:** the amp card follows whichever amplifier is configured —
|
||||
**PowerGenius XL** (operate/standby, fan mode, fault) or **SPE Expert**
|
||||
(operate/standby, ON/OFF, Low/Mid/High level, output-power bar, band &
|
||||
temperature).
|
||||
- **Live meters** over the UDP VITA-49 stream: S-meter (S-units), forward power
|
||||
(W), SWR, ALC, PA temperature, voltage, plus the amplifier's meters.
|
||||
|
||||
@@ -141,18 +148,33 @@ as Mumble.)
|
||||
## Keyers & audio
|
||||
|
||||
- **CW keyer** with macros and F-key macros. The keyer engine is selectable:
|
||||
**WinKeyer** (K1EL WK1/2/3 over a COM port), **Icom** (the radio's own keyer
|
||||
over CI-V — no extra hardware, works over the remote link too) or **TCI**.
|
||||
**WinKeyer** (K1EL WK1/2/3 over a COM port), **FlexRadio CWX** (the radio's
|
||||
built-in keyer over the SmartSDR API — type-ahead and backspace, no WinKeyer or
|
||||
SmartCAT needed), **Icom** (the radio's own keyer over CI-V — no extra hardware,
|
||||
works over the remote link too) or **TCI**.
|
||||
- **Digital Voice Keyer** (DVK): record F1–F6 voice messages and transmit them.
|
||||
- **QSO audio recording:** continuous rolling capture; on *Log QSO* the contact
|
||||
is saved to a per-QSO WAV (`CALL_YYYYMMDD_HHMMSS.wav`); mixes RX + mic.
|
||||
|
||||
## Amplifiers & switches
|
||||
|
||||
- **PowerGenius XL** (4O3A) amplifier — direct TCP: operate/standby, fan-mode
|
||||
selector and fault display.
|
||||
- **Amplifiers** (Settings → Amplifier — the control card appears on the
|
||||
FlexRadio tab, or on its own when neither Flex nor Icom is active):
|
||||
- **PowerGenius XL** (4O3A) over direct TCP — operate/standby, fan-mode
|
||||
selector and fault display.
|
||||
- **SPE Expert** (1.3K-FA / 1.5K-FA / 2K-FA) over **USB** (virtual COM) or the
|
||||
**network** (RS232-to-Ethernet bridge) — operate/standby, ON/OFF,
|
||||
Low / Mid / High output level, an output-power bar and live status (band,
|
||||
SWR, PA current, temperature, warnings/alarms).
|
||||
- **Antenna Genius** (4O3A) antenna switch over TCP/GSCP — a docked A/B
|
||||
antenna-switch widget.
|
||||
- **Station Control** panel (dockable, drag-to-reorder widgets): the **rotator**,
|
||||
**Ultrabeam** element control and **relay boards** — WebSwitch 1216H, KMTronic,
|
||||
**Denkovi** USB (FT245 D2XX bit-bang, 4 or 8 relays) and generic USB-serial
|
||||
(CH340 / LCUS, A0 protocol) — for station power, antennas and accessories.
|
||||
- **Relay auto-control** (Settings): switch Station-Control relays automatically
|
||||
from the rig frequency / band (like PstRotator) — per relay, a frequency window
|
||||
or a set of bands.
|
||||
|
||||
## QSL & awards
|
||||
|
||||
@@ -176,6 +198,14 @@ as Mumble.)
|
||||
and the sent/received serials (`STX` / `SRX`), enforces a window start/end,
|
||||
flags dupes and keeps a live scoreboard.
|
||||
|
||||
## Statistics
|
||||
|
||||
- **Logbook statistics dashboard:** headline tiles (QSOs, unique callsigns, DXCC
|
||||
entities, continents, % confirmed) plus charts — QSOs **by mode**, a per-band
|
||||
**CW / phone / data** split, **activity over time** (rolling day / 7-day /
|
||||
30-day / 12-month views), by operator and by continent. Date-range, per-operator
|
||||
and per-contest filters, and a **Table** view that mirrors every chart.
|
||||
|
||||
## Multi-operator live status (special events)
|
||||
|
||||
For a multi-op special-event call on a shared MySQL logbook (e.g. **TM74TFR**):
|
||||
@@ -218,7 +248,10 @@ only writes to the DB — it is not a web server.
|
||||
- **Autostart:** launch external programs (WSJT-X, JTAlert, rotator control…) at
|
||||
OpsLog startup, skipping any already running.
|
||||
- **Backup:** optional database + ADIF backup at shutdown.
|
||||
- **Update check** at startup with a toast (toggleable).
|
||||
- **Update check** at startup and every 5 minutes (and on opening Help → About),
|
||||
with a toast (toggleable), plus a **What's new** dialog that shows the changelog
|
||||
(English / French) on the first launch after an update — reopenable any time
|
||||
from the Help menu.
|
||||
- **Anonymous usage telemetry** (a once-a-day heartbeat: random install ID +
|
||||
version + OS — no callsign or QSO data; opt-out in Preferences).
|
||||
|
||||
|
||||
@@ -1,149 +0,0 @@
|
||||
package main
|
||||
|
||||
import (
|
||||
"fmt"
|
||||
"time"
|
||||
|
||||
"hamlog/internal/applog"
|
||||
"hamlog/internal/audio"
|
||||
"hamlog/internal/cwdecode"
|
||||
|
||||
wruntime "github.com/wailsapp/wails/v2/pkg/runtime"
|
||||
)
|
||||
|
||||
// CW decoder: taps the RX audio device (the same "From radio" capture the DVK
|
||||
// and QSO recorder use) and streams decoded Morse text to the UI. It is started
|
||||
// only by the frontend, and only while the entry mode is CW.
|
||||
//
|
||||
// Pitch targeting: the single-channel decoder is far more reliable when it locks
|
||||
// to a KNOWN pitch (a narrow filter at the signal frequency, like a skimmer)
|
||||
// instead of auto-searching for the loudest tone. So we follow the radio's CW
|
||||
// pitch (FlexRadio cw_pitch) when available — or a manual override — and fall
|
||||
// back to auto-search otherwise.
|
||||
|
||||
// cwTargetPitch returns the pitch (Hz) the decoder should lock to: the manual
|
||||
// override if set, else the FlexRadio's CW pitch when it's in CW, else 0 (auto).
|
||||
func (a *App) cwTargetPitch() int {
|
||||
if a.cwPitchHz > 0 {
|
||||
return a.cwPitchHz
|
||||
}
|
||||
if a.cat != nil {
|
||||
if st, ok := a.cat.FlexState(); ok && st.Available {
|
||||
// Only trust the radio's pitch when it's actually in CW.
|
||||
if st.Mode == "CW" || st.Mode == "CWL" || st.Mode == "CWU" {
|
||||
if st.CWPitch > 0 {
|
||||
return st.CWPitch
|
||||
}
|
||||
}
|
||||
}
|
||||
}
|
||||
return 0
|
||||
}
|
||||
|
||||
// StartCWDecoder begins decoding CW from the configured RX audio device. The
|
||||
// frontend calls this when the decoder toggle is on AND the mode is CW. Safe to
|
||||
// call repeatedly; a second call is a no-op while already running.
|
||||
func (a *App) StartCWDecoder() error {
|
||||
a.cwMu.Lock()
|
||||
defer a.cwMu.Unlock()
|
||||
if a.cwStop != nil {
|
||||
return nil // already running
|
||||
}
|
||||
dev := ""
|
||||
if a.settings != nil {
|
||||
dev, _ = a.settings.Get(a.ctx, keyAudioFromRadio)
|
||||
}
|
||||
if dev == "" {
|
||||
return fmt.Errorf("no RX audio device configured (set \"From radio\" in Audio settings)")
|
||||
}
|
||||
|
||||
dec := cwdecode.New(audio.SampleRate,
|
||||
func(text string) {
|
||||
if a.ctx != nil {
|
||||
wruntime.EventsEmit(a.ctx, "cw:text", text)
|
||||
}
|
||||
},
|
||||
func(st cwdecode.Status) {
|
||||
if a.ctx != nil {
|
||||
wruntime.EventsEmit(a.ctx, "cw:status", st)
|
||||
}
|
||||
},
|
||||
)
|
||||
dec.SetTarget(a.cwTargetPitch())
|
||||
a.cwDecoder = dec
|
||||
|
||||
stop := make(chan struct{})
|
||||
a.cwStop = stop
|
||||
go func() {
|
||||
if err := audio.StreamCapture(dev, stop, dec.Process); err != nil {
|
||||
applog.Printf("cw: capture failed: %v", err)
|
||||
if a.ctx != nil {
|
||||
wruntime.EventsEmit(a.ctx, "cw:error", err.Error())
|
||||
}
|
||||
}
|
||||
a.cwMu.Lock()
|
||||
if a.cwStop == stop {
|
||||
a.cwStop = nil
|
||||
a.cwDecoder = nil
|
||||
}
|
||||
a.cwMu.Unlock()
|
||||
}()
|
||||
// Follow the radio's CW pitch live (every second) while this run is active.
|
||||
go a.cwFollowPitch(stop, dec)
|
||||
return nil
|
||||
}
|
||||
|
||||
// cwFollowPitch keeps the decoder locked to the current target pitch until stop.
|
||||
func (a *App) cwFollowPitch(stop <-chan struct{}, dec *cwdecode.Decoder) {
|
||||
t := time.NewTicker(time.Second)
|
||||
defer t.Stop()
|
||||
for {
|
||||
select {
|
||||
case <-stop:
|
||||
return
|
||||
case <-t.C:
|
||||
dec.SetTarget(a.cwTargetPitch())
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
// StopCWDecoder halts the CW decoder if running.
|
||||
func (a *App) StopCWDecoder() {
|
||||
a.cwMu.Lock()
|
||||
stop := a.cwStop
|
||||
a.cwStop = nil
|
||||
a.cwDecoder = nil
|
||||
a.cwMu.Unlock()
|
||||
if stop != nil {
|
||||
close(stop)
|
||||
}
|
||||
}
|
||||
|
||||
// CWDecoderRunning reports whether the decoder is currently capturing.
|
||||
func (a *App) CWDecoderRunning() bool {
|
||||
a.cwMu.Lock()
|
||||
defer a.cwMu.Unlock()
|
||||
return a.cwStop != nil
|
||||
}
|
||||
|
||||
// SetCWDecoderPitch sets a manual decode pitch (Hz); 0 returns to auto (follow
|
||||
// the Flex CW pitch, or search). Applies live to a running decoder.
|
||||
func (a *App) SetCWDecoderPitch(hz int) {
|
||||
if hz < 0 {
|
||||
hz = 0
|
||||
}
|
||||
a.cwMu.Lock()
|
||||
a.cwPitchHz = hz
|
||||
dec := a.cwDecoder
|
||||
a.cwMu.Unlock()
|
||||
if dec != nil {
|
||||
dec.SetTarget(a.cwTargetPitch())
|
||||
}
|
||||
}
|
||||
|
||||
// GetCWDecoderPitch returns the manual override (0 = auto / follow Flex).
|
||||
func (a *App) GetCWDecoderPitch() int {
|
||||
a.cwMu.Lock()
|
||||
defer a.cwMu.Unlock()
|
||||
return a.cwPitchHz
|
||||
}
|
||||
+10
-11
@@ -437,17 +437,16 @@ func (a *App) SendEQSL(qsoID int64, templateID int64, jpegB64 string) error {
|
||||
applog.Printf("qsl: send eQSL to %s (%s) failed: %v", to, q.Callsign, err)
|
||||
return err
|
||||
}
|
||||
// Record WHEN OpsLog e-mailed its own QSL card, in a dedicated app field —
|
||||
// NOT the ADIF eqsl_sent flag, which belongs to eQSL.cc and must stay
|
||||
// independent. q came straight from GetByID, so a full Update rewrites the
|
||||
// row unchanged apart from this field.
|
||||
if q.Extras == nil {
|
||||
q.Extras = map[string]string{}
|
||||
}
|
||||
q.Extras[appQSLCardSentField] = time.Now().UTC().Format(time.RFC3339)
|
||||
if err := a.qso.Update(a.ctx, q); err != nil {
|
||||
applog.Printf("qsl: eQSL sent to %s but marking failed: %v", q.Callsign, err)
|
||||
return fmt.Errorf("eQSL sent but status not saved: %w", err)
|
||||
// Record WHEN OpsLog e-mailed its own QSL card, in a dedicated app field — NOT
|
||||
// the ADIF eqsl_sent flag, which belongs to eQSL.cc and must stay independent.
|
||||
//
|
||||
// Stamp ONLY this extras key (targeted UPDATE), never a full-row write. The `q`
|
||||
// read up top is now stale after the slow e-mail send, and rewriting the whole
|
||||
// row would revert any column an auto-upload changed meanwhile — that's how
|
||||
// sending a QSL card was flipping clublog_qso_upload_status back from Y to R.
|
||||
if err := a.qso.SetExtra(a.ctx, qsoID, appQSLCardSentField, time.Now().UTC().Format(time.RFC3339)); err != nil {
|
||||
applog.Printf("qsl: card sent to %s but marking failed: %v", q.Callsign, err)
|
||||
return fmt.Errorf("QSL card sent but status not saved: %w", err)
|
||||
}
|
||||
applog.Printf("qsl: eQSL sent to %s (%s)", to, q.Callsign)
|
||||
wruntime.EventsEmit(a.ctx, "qsl:sent", qsoID)
|
||||
|
||||
@@ -0,0 +1,81 @@
|
||||
package main
|
||||
|
||||
import (
|
||||
_ "embed"
|
||||
"encoding/json"
|
||||
"strings"
|
||||
|
||||
"hamlog/internal/applog"
|
||||
)
|
||||
|
||||
//go:embed changelog.json
|
||||
var changelogJSON []byte
|
||||
|
||||
// ChangelogEntry is one release's user-facing notes, in English and French. It's
|
||||
// shown once on the first launch after an update (the "What's new" dialog),
|
||||
// derived from the release's commit history.
|
||||
type ChangelogEntry struct {
|
||||
Version string `json:"version"`
|
||||
Date string `json:"date"`
|
||||
EN []string `json:"en"`
|
||||
FR []string `json:"fr"`
|
||||
}
|
||||
|
||||
const keyChangelogSeen = "changelog.last_seen_version"
|
||||
|
||||
func loadChangelog() []ChangelogEntry {
|
||||
var out []ChangelogEntry
|
||||
if err := json.Unmarshal(changelogJSON, &out); err != nil {
|
||||
applog.Printf("changelog: parse failed: %v", err)
|
||||
}
|
||||
return out
|
||||
}
|
||||
|
||||
// GetChangelog returns every changelog entry up to the running version (newest
|
||||
// first), without touching the "seen" marker — for a "What's new" button that
|
||||
// reopens the notes on demand.
|
||||
func (a *App) GetChangelog() []ChangelogEntry {
|
||||
out := []ChangelogEntry{}
|
||||
for _, e := range loadChangelog() {
|
||||
if strings.TrimSpace(e.Version) == "" || versionLess(appVersion, e.Version) {
|
||||
continue
|
||||
}
|
||||
out = append(out, e)
|
||||
}
|
||||
return out
|
||||
}
|
||||
|
||||
// GetWhatsNew returns the changelog entries the operator hasn't seen yet — the
|
||||
// notes for every version newer than the last one they ran, up to the current
|
||||
// build — and records the current version as seen so it pops exactly once per
|
||||
// update. Empty when there's nothing new.
|
||||
func (a *App) GetWhatsNew() []ChangelogEntry {
|
||||
if a.settings == nil {
|
||||
return nil
|
||||
}
|
||||
lastSeen, _ := a.settings.GetGlobal(a.ctx, keyChangelogSeen)
|
||||
cur := appVersion
|
||||
a.setSettingGlobal(keyChangelogSeen, cur) // advance the marker now
|
||||
|
||||
out := []ChangelogEntry{}
|
||||
for _, e := range loadChangelog() {
|
||||
if strings.TrimSpace(e.Version) == "" {
|
||||
continue
|
||||
}
|
||||
if versionLess(cur, e.Version) {
|
||||
continue // don't preview notes for a version newer than we run
|
||||
}
|
||||
if lastSeen == "" {
|
||||
// First run of the feature (fresh install, or upgrade from a build that
|
||||
// predates it): show only the CURRENT version's notes, once.
|
||||
if e.Version == cur {
|
||||
out = append(out, e)
|
||||
}
|
||||
continue
|
||||
}
|
||||
if versionLess(lastSeen, e.Version) {
|
||||
out = append(out, e)
|
||||
}
|
||||
}
|
||||
return out
|
||||
}
|
||||
+128
@@ -0,0 +1,128 @@
|
||||
[
|
||||
{
|
||||
"version": "0.20.9",
|
||||
"date": "2026-07-22",
|
||||
"en": [
|
||||
"The PGXL amplifier chip and Station Control widget now read the OPERATE state from the FlexRadio (like the Flex panel) — the chip no longer shows STANDBY while the amp is operating, and clicking it toggles the amp through the radio.",
|
||||
"Right-click 'Send to LoTW / QRZ / Club Log…' now reports its result as a notification — a failed upload (e.g. TQSL not configured) was completely silent outside the QSL Manager, which looked like nothing was sent.",
|
||||
"The number of selected QSOs is now always visible at the top of the log grid — no need to open the right-click menu to see it.",
|
||||
"NET Control: the worked-before list gets the same right-click menu as Recent QSOs (update from cty/QRZ/Club Log, send to services, recording e-mail, eQSL, delete).",
|
||||
"Leaving compact mode restores the window's previous size AND position (it used to snap to a fixed size wherever the compact strip had been dragged).",
|
||||
"The advanced filter's 'My callsign' field is renamed 'Station callsign' so it is findable under its ADIF name (it filters STATION_CALLSIGN).",
|
||||
"Filtering now shows EVERY match: the on-screen row limit (Max) only applies to the unfiltered log — a filter matching 200 QSOs displays all 200 even with Max at 100 (safety cap 10,000, with a warning to narrow the filter beyond that).",
|
||||
"New 'Select all' button in the log grid toolbar — selects every displayed row (respecting active column filters) in one click, ready for send-to-LoTW, bulk edit or export; once everything is selected it flips to 'Unselect all'.",
|
||||
"NET Control: drag & drop between the two lists — drag a roster station onto the on-air list to start its QSO, and drag an on-air station onto the roster to log it (same as the Log & end button).",
|
||||
"New option (Settings → General): 'Group digital modes as one (DXCC-style)' — when on, the matrix newness badges and the cluster new/new-band/new-mode/new-slot colouring treat FT8/FT4/RTTY/PSK… as a single Digital mode, matching how DXCC counts; when off (default), each digital mode remains its own potential slot.",
|
||||
"Multiple amplifiers: Settings → Amplifier is now a LIST — configure several amps (e.g. two SPEs run in parallel), each with its own name and connection. The amp cards in the Flex panel and Station Control get a dropdown to pick which amp they show, and the bottom status bar shows one clickable chip per amp. Existing single-amp setups migrate automatically.",
|
||||
"FlexRadio panel: the SmartSDR v4 DSP filters are now controllable — NRL and ANFL (legacy LMS), NRS (spectral subtraction), NRF (noise reduction with filter) with their level sliders, plus RNN (AI noise reduction) and ANFT (FFT auto-notch) toggles. The section appears automatically on radios that support them (8000/Aurora series). Layout rebalanced: RIT/XIT moved to the Transmit column and the antenna selection now sits at the top of the Receive column, alongside a new DAX button (SmartSDR's transmit-bar DAX toggle — TX audio from DAX, for WSJT-X & co)."
|
||||
],
|
||||
"fr": [
|
||||
"La pastille ampli PGXL et le widget Station Control lisent maintenant l'état OPERATE depuis le FlexRadio (comme le panneau Flex) — la pastille n'affiche plus STANDBY quand l'ampli est en service, et un clic bascule l'ampli via la radio.",
|
||||
"Le clic droit « Send to LoTW / QRZ / Club Log… » affiche maintenant son résultat en notification — un envoi échoué (p. ex. TQSL non configuré) était totalement silencieux hors du QSL Manager, comme si rien n'était parti.",
|
||||
"Le nombre de QSO sélectionnés est maintenant toujours visible en haut de la grille du log — plus besoin d'ouvrir le menu clic droit pour le voir.",
|
||||
"NET Control : la liste worked-before dispose du même menu clic droit que QSO récents (mise à jour cty/QRZ/Club Log, envoi aux services, e-mail d'enregistrement, eQSL, suppression).",
|
||||
"Quitter le mode compact restaure la taille ET la position précédentes de la fenêtre (avant, elle reprenait une taille fixe là où la barre compacte avait été déplacée).",
|
||||
"Le champ « Mon indicatif » du filtre avancé est renommé « Station callsign » pour être trouvable sous son nom ADIF (il filtre STATION_CALLSIGN).",
|
||||
"Le filtrage affiche maintenant TOUTES les correspondances : la limite d'affichage (Max) ne s'applique qu'au log non filtré — un filtre qui matche 200 QSO les affiche tous les 200 même avec Max à 100 (plafond de sécurité 10 000, avec un avertissement pour affiner au-delà).",
|
||||
"Nouveau bouton « Tout sélectionner » dans la barre d'outils de la grille — sélectionne toutes les lignes affichées (en respectant les filtres de colonnes actifs) en un clic, prêt pour l'envoi LoTW, le bulk edit ou l'export ; une fois tout sélectionné il devient « Tout désélectionner ».",
|
||||
"NET Control : glisser-déposer entre les deux listes — glisser une station du roster vers la liste on air démarre son QSO, et glisser une station on air vers le roster l'enregistre au log (comme le bouton Logger & terminer).",
|
||||
"Nouvelle option (Réglages → Général) : « Regrouper les modes digitaux en un seul (style DXCC) » — activée, les badges de nouveauté de la matrice et le coloriage cluster new/new-band/new-mode/new-slot traitent FT8/FT4/RTTY/PSK… comme un seul mode Digital, comme le DXCC ; désactivée (défaut), chaque mode digital reste un slot potentiel distinct.",
|
||||
"Plusieurs amplificateurs : Réglages → Amplificateur est maintenant une LISTE — configurez plusieurs amplis (p. ex. deux SPE en parallèle), chacun avec son nom et sa connexion. Les cartes ampli du panneau Flex et de Station Control ont une liste déroulante pour choisir lequel afficher, et la barre du bas montre une pastille cliquable par ampli. Les configurations mono-ampli existantes migrent automatiquement.",
|
||||
"Panneau FlexRadio : les filtres DSP SmartSDR v4 sont maintenant pilotables — NRL et ANFL (LMS legacy), NRS (soustraction spectrale), NRF (réduction de bruit avec filtre) avec leurs curseurs de niveau, plus les interrupteurs RNN (réduction de bruit par IA) et ANFT (notch automatique FFT). La section apparaît automatiquement sur les radios qui les supportent (séries 8000/Aurora). Mise en page rééquilibrée : RIT/XIT passent dans la colonne Transmit et la sélection d'antennes s'affiche en haut de la colonne Receive, avec un nouveau bouton DAX (le toggle DAX du bandeau transmit de SmartSDR — audio d'émission via DAX, pour WSJT-X & co)."
|
||||
]
|
||||
},
|
||||
{
|
||||
"version": "0.20.8",
|
||||
"date": "2026-07-21",
|
||||
"en": [
|
||||
"New: microHAM ARCO rotator controlled natively — no PstRotator needed. Over the LAN or over USB: set the ARCO's CONTROL PROTOCOL (LAN or USB) to 'Yaesu GS-232A' and pick 'microHAM ARCO' in Settings → Rotator.",
|
||||
"Amplifier without a FlexRadio: the amplifier controls (OPERATE/STANDBY, ON/OFF, live power/SWR/temperature) now also live in the Station Control tab, and a status chip sits in the bottom bar next to Cluster/CAT/Rotator — green ON AIR = OPERATE, orange = STANDBY, red = offline. Clicking the chip toggles OPERATE/STANDBY on all three amps (PowerGenius XL included, over its direct network link).",
|
||||
"NET Control: after logging a station, the next on-air station is selected automatically (chain log → log → log), and a new 'Log everyone' button logs every on-air station at once when the net ends.",
|
||||
"Switching to a profile whose MySQL database is unreachable now shows a clear warning — before, OpsLog silently stayed on the previous logbook and QSOs could land in the wrong log.",
|
||||
"The ON AIR badge is back for local (SQLite) logbooks — it had disappeared with the removal of the live-status option."
|
||||
],
|
||||
"fr": [
|
||||
"Nouveau : rotator microHAM ARCO contrôlé en natif — sans PstRotator. Par le réseau ou par USB : régler le CONTROL PROTOCOL de l'ARCO (LAN ou USB) sur « Yaesu GS-232A » et choisir « microHAM ARCO » dans Réglages → Rotator.",
|
||||
"Amplificateur sans FlexRadio : les commandes d'ampli (OPERATE/STANDBY, ON/OFF, puissance/ROS/température en direct) sont maintenant aussi dans l'onglet Station Control, et une pastille de statut s'affiche dans la barre du bas à côté de Cluster/CAT/Rotator — vert = OPERATE, orange = STANDBY, rouge = hors ligne. Un clic sur la pastille bascule OPERATE/STANDBY sur les trois amplis (PowerGenius XL compris, via son lien réseau direct).",
|
||||
"NET Control : après avoir loggé une station, la station on air suivante est sélectionnée automatiquement (enchaînement log → log → log), et un nouveau bouton « Logger tout le monde » enregistre toutes les stations on air d'un coup à la fin du net.",
|
||||
"Passer sur un profil dont la base MySQL est injoignable affiche maintenant un avertissement clair — avant, OpsLog restait silencieusement sur l'ancien logbook et les QSO pouvaient partir dans le mauvais log.",
|
||||
"Le badge ON AIR est de retour pour les logbooks locaux (SQLite) — il avait disparu avec la suppression de l'option de statut en direct."
|
||||
]
|
||||
},
|
||||
{
|
||||
"version": "0.20.7",
|
||||
"date": "2026-07-21",
|
||||
"en": [
|
||||
"New: ACOM amplifier support (500S / 600S / 700S / 1200S / 2020S) — OPERATE/STANDBY/OFF, live telemetry (power, SWR, PA temperature, band, fan) in Settings and the radio panel, over USB serial or an RS232-to-Ethernet bridge. Power-ON works over serial when the cable wires the DTR/RTS pins. The Amplifier settings now pick Brand then Model.",
|
||||
"Multi-operator live sync fixed: the shared-MySQL connection pool was too small, so after a while the grid, chat and 'stations on air' silently stopped updating. The pool is now sized for real multi-op use (with 5 operators it stays well within a max_connections=300 server).",
|
||||
"Live operator status is now always published on a shared MySQL logbook — the Settings toggle is gone. You still go off-air automatically 5 minutes after your last QSO, and the 'stations on air' panel refreshes noticeably faster (a redundant table check on every read was removed).",
|
||||
"The By-Continent statistics donut now totals the same as your QSO count — QSOs whose continent couldn't be resolved are shown as an 'Unknown' slice instead of being dropped (the Continents count still lists only real continents)."
|
||||
],
|
||||
"fr": [
|
||||
"Nouveau : prise en charge des amplificateurs ACOM (500S / 600S / 700S / 1200S / 2020S) — OPERATE/STANDBY/OFF, télémétrie en direct (puissance, ROS, température PA, bande, ventilateur) dans les Réglages et le panneau radio, en USB série ou via un pont RS232-vers-Ethernet. La mise en marche fonctionne en série si le câble relie les broches DTR/RTS. Les réglages Amplificateur se font maintenant par Marque puis Modèle.",
|
||||
"Synchronisation multi-opérateurs corrigée : le pool de connexions MySQL partagé était trop petit, et au bout d'un moment la grille, le chat et « stations on air » cessaient silencieusement de se mettre à jour. Le pool est maintenant dimensionné pour un vrai multi-op (à 5 opérateurs, on reste largement sous un serveur à max_connections=300).",
|
||||
"Le statut opérateur en direct est maintenant toujours publié sur un logbook MySQL partagé — l'option des Réglages a disparu. Vous passez toujours hors antenne automatiquement 5 minutes après votre dernier QSO, et le panneau « stations on air » se rafraîchit nettement plus vite (une vérification de table redondante à chaque lecture a été supprimée).",
|
||||
"La donut « Par continent » des statistiques totalise maintenant le même nombre que le total de QSO — les QSO dont le continent n'a pas pu être résolu apparaissent dans un segment « Unknown » au lieu d'être ignorés (le compteur Continents ne liste toujours que les vrais continents)."
|
||||
]
|
||||
},
|
||||
{
|
||||
"version": "0.20.6",
|
||||
"date": "2026-07-21",
|
||||
"en": [
|
||||
"Amplifier controls now live right in the FlexRadio panel: OPERATE/STANDBY, ON/OFF, Low/Mid/High power level, an output-power bar and live band / SWR / temperature — for both PowerGenius XL and SPE Expert. The card is hidden when no amplifier is selected.",
|
||||
"Faster startup: the radio (CAT) connects immediately instead of waiting behind the shared-MySQL connection, and MySQL itself connects much faster.",
|
||||
"No more lost QSOs: an FT8/MSHV QSO that can't reach a laggy shared database is parked and re-logged automatically once it recovers; simultaneous QSOs from a multi-stream are now queued instead of failing with 'too many requests'.",
|
||||
"The 'stations on air' widget now updates within a second of a QSO (it used to lag up to ~45s behind the ON-AIR badge).",
|
||||
"Relay boards (Denkovi / USB-serial) stay connected reliably now, with a Test-connection button and detect feedback in the Station Control setup.",
|
||||
"<LOGQSO> in a CW macro logs the contact at that exact point in the macro, and pressing ESC before it runs cancels the log.",
|
||||
"Auto-call now waits exactly the gap you set between calls (it was waiting far longer).",
|
||||
"Statistics: the redundant per-band chart was merged into the CW / phone / data split.",
|
||||
"Cluster self-spot pop-ups now show the band.",
|
||||
"The bottom status bar is no longer hidden behind a scrollbar in a small window.",
|
||||
"Update check now also runs when you open Help - About, and every 5 minutes."
|
||||
],
|
||||
"fr": [
|
||||
"Les commandes d'amplificateur sont maintenant directement dans le panneau FlexRadio : OPERATE/STANDBY, Marche/Arrêt, niveau Low/Mid/High, une barre de puissance de sortie et l'état en direct bande / ROS / température — pour PowerGenius XL comme pour SPE Expert. La carte est masquée si aucun ampli n'est sélectionné.",
|
||||
"Démarrage plus rapide : la radio (CAT) se connecte immédiatement au lieu d'attendre derrière la connexion MySQL partagée, et MySQL lui-même se connecte bien plus vite.",
|
||||
"Plus de QSO perdus : un QSO FT8/MSHV qui n'atteint pas une base partagée lente est mis de côté et ré-enregistré automatiquement dès qu'elle répond ; les QSO simultanés d'un multi-stream sont maintenant mis en file au lieu d'échouer avec « too many requests ».",
|
||||
"Le widget « stations on air » se met à jour en une seconde après un QSO (il pouvait accuser jusqu'à ~45s de retard sur le badge ON AIR).",
|
||||
"Les cartes relais (Denkovi / USB-série) restent connectées de façon fiable, avec un bouton « Tester la connexion » et un retour de détection dans la configuration Station Control.",
|
||||
"<LOGQSO> dans une macro CW enregistre le contact à cet endroit précis de la macro, et appuyer sur ÉCHAP avant son exécution annule l'enregistrement.",
|
||||
"L'appel automatique respecte maintenant exactement l'intervalle réglé entre les appels (il attendait bien plus longtemps).",
|
||||
"Statistiques : le graphique par bande redondant a été fusionné avec la répartition CW / phone / data.",
|
||||
"Les popups d'auto-spot du cluster affichent maintenant la bande.",
|
||||
"La barre de statut du bas n'est plus masquée par une barre de défilement en fenêtre réduite.",
|
||||
"La vérification de mise à jour se déclenche aussi à l'ouverture d'Aide - À propos, et toutes les 5 minutes."
|
||||
]
|
||||
},
|
||||
{
|
||||
"version": "0.20.5",
|
||||
"date": "2026-07-20",
|
||||
"en": [
|
||||
"New FlexRadio CWX CW keyer: key CW straight over the SmartSDR connection — no WinKeyer or SmartCAT needed. Type-ahead and mid-send backspace supported.",
|
||||
"ESC now stops CW on whichever keyer is active (WinKeyer / Icom / Flex), and typing a callsign aborts a running macro.",
|
||||
"New Amplifier settings section (was 'Power Genius'): control SPE Expert amps (1.3K / 1.5K / 2K) over USB serial or an RS232-to-Ethernet bridge — OPERATE/STANDBY and live status. PowerGenius XL still supported.",
|
||||
"Denkovi USB relay boards supported (4/8 relays, FT245), plus generic CH340/LCUS USB-serial relay boards.",
|
||||
"Rename your database from Settings without losing any configuration.",
|
||||
"Awards: DDFM now finds the French department from the address postal code; refs are stored on each QSO for faster columns; 'Publish to catalog' shares an edited award with your team on the next release; award columns are remembered per profile.",
|
||||
"Statistics: per-band mode split (CW / phone / data), and an activity chart with a Day / Week / Month / Year selector (rolling, real dates).",
|
||||
"'Stations on air' widget updates within seconds and fits more stations.",
|
||||
"The audio CW decoder was removed.",
|
||||
"Fixes: Antenna Genius buttons ignored clicks while a macro was sending; File → Exit; and more.",
|
||||
"This 'What's new' summary now appears on the first launch after each update."
|
||||
],
|
||||
"fr": [
|
||||
"Nouveau keyer CW FlexRadio CWX : manipulation CW directement via la connexion SmartSDR — plus besoin de WinKeyer ni de SmartCAT. Type-ahead et retour arrière en cours d'envoi supportés.",
|
||||
"ESC arrête maintenant le CW sur le moteur actif (WinKeyer / Icom / Flex), et taper un indicatif interrompt une macro en cours.",
|
||||
"Nouvelle section Amplificateur (ex « Power Genius ») : pilotage des SPE Expert (1.3K / 1.5K / 2K) en USB série ou via un pont RS232→Ethernet — OPERATE/STANDBY et état en direct. PowerGenius XL toujours supporté.",
|
||||
"Cartes relais USB Denkovi (4/8 relais, FT245), plus cartes USB-série génériques CH340/LCUS.",
|
||||
"Renommer sa base depuis les réglages sans perdre la configuration.",
|
||||
"Awards : DDFM trouve le département français depuis le code postal de l'adresse ; les réfs sont stockées sur chaque QSO (colonnes plus rapides) ; « Publier au catalogue » partage un award édité avec l'équipe à la prochaine mise à jour ; les colonnes d'award sont mémorisées par profil.",
|
||||
"Statistiques : répartition des modes par bande (CW / phone / data), et un graphe d'activité avec sélecteur Jour / Semaine / Mois / Année (glissant, dates réelles).",
|
||||
"Le widget « Stations on air » se met à jour en quelques secondes et affiche plus de stations.",
|
||||
"Le décodeur CW audio a été retiré.",
|
||||
"Corrections : les boutons Antenna Genius ignoraient les clics pendant l'envoi d'une macro ; Fichier → Quitter ; et d'autres.",
|
||||
"Ce résumé « Nouveautés » s'affiche désormais au premier lancement après chaque mise à jour."
|
||||
]
|
||||
}
|
||||
]
|
||||
+606
-250
File diff suppressed because it is too large
Load Diff
@@ -33,6 +33,37 @@ function pretty(name: string): string {
|
||||
return t.charAt(0).toUpperCase() + t.slice(1).toLowerCase();
|
||||
}
|
||||
|
||||
// PortBtn is defined at MODULE scope on purpose. Defined inside AntGeniusPanel it
|
||||
// would be a new component *type* on every render, so React would unmount and
|
||||
// remount every port button each time the panel re-renders — harmless when that's
|
||||
// rare, but with the CW decoder running the parent re-renders many times a second
|
||||
// and the buttons were being torn down mid-click (mousedown and mouseup landing on
|
||||
// different element instances), so antenna changes silently did nothing.
|
||||
function PortBtn({ port, index, active, tx, onActivate, t }: {
|
||||
port: 1 | 2; index: number; active: boolean; tx: boolean;
|
||||
onActivate: (port: number, antenna: number) => void;
|
||||
t: (key: string, vars?: Record<string, string | number>) => string;
|
||||
}) {
|
||||
const letter = port === 1 ? 'A' : 'B';
|
||||
const cls = tx
|
||||
? 'bg-gradient-to-b from-red-500 to-rose-600 text-white border-red-400/50 shadow-[0_0_10px_rgba(244,63,94,0.5)] animate-pulse'
|
||||
: active
|
||||
? (port === 1
|
||||
? 'bg-gradient-to-b from-emerald-400 to-emerald-600 text-white border-emerald-300/60 shadow-[0_0_9px_rgba(16,185,129,0.45)]'
|
||||
: 'bg-gradient-to-b from-sky-400 to-sky-600 text-white border-sky-300/60 shadow-[0_0_9px_rgba(14,165,233,0.45)]')
|
||||
: 'bg-card text-muted-foreground border-border hover:bg-muted hover:text-foreground';
|
||||
return (
|
||||
<button
|
||||
type="button"
|
||||
onClick={() => onActivate(port, active ? 0 : index)}
|
||||
title={active ? t('agp.portDeselect', { letter }) : t('agp.portSelect', { letter })}
|
||||
className={cn('w-8 shrink-0 rounded-lg text-xs font-bold py-1.5 border transition-all active:scale-95', cls)}
|
||||
>
|
||||
{letter}
|
||||
</button>
|
||||
);
|
||||
}
|
||||
|
||||
// AntGeniusPanel — antenna-switch widget for a 4O3A Antenna Genius, styled to
|
||||
// match the app's light theme with soft gradients + glows. Each antenna row has
|
||||
// a port-A button (left) and port-B button (right). Colours: green = selected on
|
||||
@@ -61,27 +92,6 @@ export function AntGeniusPanel({ status, onActivate, onClose, band }: {
|
||||
if (filtered.length > 0) list = filtered;
|
||||
}
|
||||
|
||||
const PortBtn = ({ port, index, active, tx }: { port: 1 | 2; index: number; active: boolean; tx: boolean }) => {
|
||||
const letter = port === 1 ? 'A' : 'B';
|
||||
const cls = tx
|
||||
? 'bg-gradient-to-b from-red-500 to-rose-600 text-white border-red-400/50 shadow-[0_0_10px_rgba(244,63,94,0.5)] animate-pulse'
|
||||
: active
|
||||
? (port === 1
|
||||
? 'bg-gradient-to-b from-emerald-400 to-emerald-600 text-white border-emerald-300/60 shadow-[0_0_9px_rgba(16,185,129,0.45)]'
|
||||
: 'bg-gradient-to-b from-sky-400 to-sky-600 text-white border-sky-300/60 shadow-[0_0_9px_rgba(14,165,233,0.45)]')
|
||||
: 'bg-card text-muted-foreground border-border hover:bg-muted hover:text-foreground';
|
||||
return (
|
||||
<button
|
||||
type="button"
|
||||
onClick={() => onActivate(port, active ? 0 : index)}
|
||||
title={active ? t('agp.portDeselect', { letter }) : t('agp.portSelect', { letter })}
|
||||
className={cn('w-8 shrink-0 rounded-lg text-xs font-bold py-1.5 border transition-all active:scale-95', cls)}
|
||||
>
|
||||
{letter}
|
||||
</button>
|
||||
);
|
||||
};
|
||||
|
||||
return (
|
||||
<div className="h-full flex flex-col rounded-xl border border-border bg-gradient-to-b from-card to-muted/30 shadow-sm overflow-hidden">
|
||||
<div className="flex items-center gap-2 px-3 py-2 border-b border-border/60 bg-muted/40 shrink-0">
|
||||
@@ -124,11 +134,11 @@ export function AntGeniusPanel({ status, onActivate, onClose, band }: {
|
||||
: 'bg-card/70 text-foreground/80 border-border hover:bg-muted/60';
|
||||
return (
|
||||
<div key={a.index} className="flex items-center gap-1.5">
|
||||
<PortBtn port={1} index={a.index} active={aActive} tx={aTx} />
|
||||
<PortBtn port={1} index={a.index} active={aActive} tx={aTx} onActivate={onActivate} t={t} />
|
||||
<div className={cn('flex-1 min-w-0 truncate text-center text-xs font-semibold tracking-wide rounded-lg px-2 py-1.5 border transition-all', nameCls)}>
|
||||
{pretty(a.name)}
|
||||
</div>
|
||||
<PortBtn port={2} index={a.index} active={bActive} tx={bTx} />
|
||||
<PortBtn port={2} index={a.index} active={bActive} tx={bTx} onActivate={onActivate} t={t} />
|
||||
</div>
|
||||
);
|
||||
})}
|
||||
|
||||
@@ -19,6 +19,7 @@ import {
|
||||
ListCountries, DXCCForCountry, DXCCName,
|
||||
PopulateBuiltinReferences, HasBuiltinReferences,
|
||||
ExportAwards, ImportAwards, InspectAwardImport, ApplyAwardImport, GetCatalogCodes, OpenAwardsFolder,
|
||||
ExportAwardForCatalog,
|
||||
GetAwardUpdates, ApplyAwardUpdate, DismissAwardUpdate, ExplainAward,
|
||||
} from '../../wailsjs/go/main/App';
|
||||
|
||||
@@ -37,7 +38,7 @@ export type AwardDef = {
|
||||
or_rules?: AwardOrRule[];
|
||||
dxcc_filter: number[] | null; valid_bands?: string[]; valid_modes?: string[]; emission?: string[];
|
||||
confirm: string[] | null; validate?: string[] | null; grant_codes?: string; export_credit_granted?: boolean;
|
||||
total: number; builtin?: boolean;
|
||||
total: number; builtin?: boolean; version?: number;
|
||||
};
|
||||
|
||||
type AwardOrRule = {
|
||||
@@ -155,6 +156,9 @@ export function AwardEditor({ open, onClose, onSaved }: Props) {
|
||||
const [search, setSearch] = useState('');
|
||||
const [updating, setUpdating] = useState<string | null>(null);
|
||||
const [err, setErr] = useState('');
|
||||
// Version to stamp into a "publish for catalog" export — defaults to one past
|
||||
// the selected award's current version whenever the selection changes.
|
||||
const [catVer, setCatVer] = useState('1');
|
||||
|
||||
// The err banner doubles as a success/notice area (export path, import counts,
|
||||
// "populated N refs"). Auto-dismiss it after a few seconds so it doesn't stay
|
||||
@@ -212,6 +216,7 @@ export function AwardEditor({ open, onClose, onSaved }: Props) {
|
||||
|
||||
const cur = defs[sel];
|
||||
const selUpdate = updates.find((u) => (u.code ?? '').toUpperCase() === (cur?.code ?? '').toUpperCase()) ?? null;
|
||||
useEffect(() => { setCatVer(String((cur?.version ?? 0) + 1)); }, [cur?.code]);
|
||||
|
||||
// ── Award tester: run the award's rules against a real QSO and show every step.
|
||||
type Rejected = { candidate: string; reason: string };
|
||||
@@ -299,6 +304,19 @@ export function AwardEditor({ open, onClose, onSaved }: Props) {
|
||||
if (p) setErr(t('awed.exportedTo', { path: p }));
|
||||
} catch (e: any) { setErr(String(e?.message ?? e)); }
|
||||
}
|
||||
// Export the SELECTED award as a catalog-ready JSON, stamped with a version, to
|
||||
// paste over internal/award/catalog/<code>.json. A new release then ships it to
|
||||
// the whole team (unedited copies auto-upgrade; edited ones are offered it).
|
||||
async function exportForCatalog() {
|
||||
setErr('');
|
||||
if (!cur) return;
|
||||
const v = Math.trunc(Number(catVer));
|
||||
if (!Number.isFinite(v) || v < 1) { setErr(t('awed.catalogBadVersion')); return; }
|
||||
try {
|
||||
const p = await ExportAwardForCatalog(cur.code.trim().toUpperCase(), v);
|
||||
if (p) setErr(t('awed.catalogExportedTo', { path: p }));
|
||||
} catch (e: any) { setErr(String(e?.message ?? e)); }
|
||||
}
|
||||
// Import: LOOK FIRST, then ask.
|
||||
//
|
||||
// This used to merge by code with "imported wins", silently — import a WAPC
|
||||
@@ -352,7 +370,7 @@ export function AwardEditor({ open, onClose, onSaved }: Props) {
|
||||
|
||||
return (
|
||||
<Dialog open={open} onOpenChange={(o) => { if (!o) onClose(); }}>
|
||||
<DialogContent className="max-w-5xl max-h-[92vh] grid grid-rows-[auto_1fr_auto] gap-0 p-0">
|
||||
<DialogContent className="max-w-6xl w-[95vw] max-h-[92vh] grid grid-rows-[auto_1fr_auto] gap-0 p-0">
|
||||
<DialogHeader className="px-5 py-3 border-b">
|
||||
<DialogTitle>{t('awed.awardManagement')}</DialogTitle>
|
||||
</DialogHeader>
|
||||
@@ -726,6 +744,18 @@ export function AwardEditor({ open, onClose, onSaved }: Props) {
|
||||
title={t('awed.awardsFolderTip')}>
|
||||
<FolderOpen className="size-3.5 mr-1" /> {t('awed.awardsFolder')}
|
||||
</Button>
|
||||
{/* Publish the selected award to the catalog: stamp a version and write a
|
||||
file to paste over internal/award/catalog/<code>.json, so a release
|
||||
ships your change to the whole team. */}
|
||||
{cur && (
|
||||
<div className="flex items-center gap-1" title={t('awed.catalogPublishTip')}>
|
||||
<input type="number" min={1} value={catVer} onChange={(e) => setCatVer(e.target.value)}
|
||||
className="h-8 w-14 rounded border border-input bg-background px-1.5 text-xs font-mono" />
|
||||
<Button variant="outline" onClick={exportForCatalog}>
|
||||
<Download className="size-3.5 mr-1" /> {t('awed.catalogPublish')}
|
||||
</Button>
|
||||
</div>
|
||||
)}
|
||||
<div className="flex-1" />
|
||||
<Button variant="outline" onClick={onClose}>{t('awed.cancel')}</Button>
|
||||
<Button onClick={save}><Save className="size-3.5 mr-1" /> {t('awed.save')}</Button>
|
||||
|
||||
@@ -109,14 +109,21 @@ export function BandSlotGrid({ wb, busy, currentBand, currentMode, bands, hasCal
|
||||
// "Newness" of the current band+mode entry, for the award/DX-chase badges.
|
||||
// Derived straight from the entity's real band_status (all bands it was
|
||||
// worked on — not just the operator's configured column list).
|
||||
// Newness uses the ACTUAL mode (FT8 / FT4 / RTTY…), not the PH/CW/DIG class:
|
||||
// DIG is a group, so FT4 after FT8 is genuinely a new mode. dxcc_band_modes
|
||||
// lists every real (band, mode) the entity was worked on.
|
||||
// By default newness uses the ACTUAL mode (FT8 / FT4 / RTTY…): DIG is a
|
||||
// group, so FT4 after FT8 is genuinely a new mode. The operator can opt into
|
||||
// DXCC-style grouping instead (Settings → General), where all digital modes
|
||||
// count as ONE — then FT4 after FT8 is just "worked".
|
||||
const groupDigital = localStorage.getItem('opslog.groupDigitalSlots') === '1';
|
||||
const normMode = (m: string): string => {
|
||||
const u = (m || '').toUpperCase().trim();
|
||||
if (!groupDigital) return u;
|
||||
return u === '' || u === 'CW' || PHONE_MODES.has(u) ? u : 'DIG';
|
||||
};
|
||||
const bandModes = (wb?.dxcc_band_modes ?? []) as { band: string; mode: string }[];
|
||||
const curMode = (currentMode || '').toUpperCase().trim();
|
||||
const curMode = normMode(currentMode);
|
||||
const bandWorked = bandModes.some((bm) => bm.band === currentBand); // entity worked on this band (any mode)
|
||||
const modeWorked = !!curMode && bandModes.some((bm) => (bm.mode || '').toUpperCase() === curMode); // …in this exact mode (any band)
|
||||
const slotWorked = !!curMode && bandModes.some((bm) => bm.band === currentBand && (bm.mode || '').toUpperCase() === curMode);
|
||||
const modeWorked = !!curMode && bandModes.some((bm) => normMode(bm.mode) === curMode); // …in this (normalised) mode (any band)
|
||||
const slotWorked = !!curMode && bandModes.some((bm) => bm.band === currentBand && normMode(bm.mode) === curMode);
|
||||
// Mutually-exclusive badges, shown only when the entity is worked but this
|
||||
// exact band+mode is NOT yet:
|
||||
// New Band & Mode = both the band AND the mode are new for this entity.
|
||||
|
||||
@@ -5,9 +5,12 @@ import {
|
||||
FlexSetProcessor, FlexSetProcessorLevel, FlexSetMon, FlexSetMonLevel, FlexSetMic,
|
||||
FlexMox, FlexAmpOperate,
|
||||
GetPGXLStatus, PGXLSetFanMode,
|
||||
GetAmpStatuses, AmpOperate, AmpPower, AmpPowerLevel,
|
||||
FlexSetAGCMode, FlexSetAGCThreshold, FlexSetAudioLevel, FlexSetMute, FlexSetRXAntenna, FlexSetTXAntenna, FlexSetSplit, FlexSetActiveSlice, FlexSetTXSlice,
|
||||
FlexSetRIT, FlexSetRITFreq, FlexSetXIT, FlexSetXITFreq,
|
||||
FlexSetNB, FlexSetNBLevel, FlexSetNR, FlexSetNRLevel, FlexSetANF, FlexSetANFLevel,
|
||||
FlexSetLMSNR, FlexSetLMSNRLevel, FlexSetLMSANF, FlexSetLMSANFLevel,
|
||||
FlexSetSpeexNR, FlexSetSpeexNRLevel, FlexSetRNN, FlexSetANFT, FlexSetNRF, FlexSetNRFLevel, FlexSetTXDAX,
|
||||
FlexSetWNB, FlexSetWNBLevel, FlexSetTXFilter, FlexSetMicProfile,
|
||||
FlexSetAPF, FlexSetAPFLevel, FlexSetCWSpeed, FlexSetCWPitch, FlexSetCWBreakInDelay,
|
||||
FlexSetCWSidetone, FlexSetSidetoneLevel, FlexSetCWFilter, FlexSetFilter,
|
||||
@@ -30,6 +33,11 @@ type FlexState = {
|
||||
rit: boolean; rit_freq: number; xit: boolean; xit_freq: number;
|
||||
nb: boolean; nb_level: number; nr: boolean; nr_level: number; anf: boolean; anf_level: number;
|
||||
wnb: boolean; wnb_level: number;
|
||||
// SmartSDR v4 DSP (8000/Aurora) — dsp_v4 is true once the radio reports them.
|
||||
lms_nr?: boolean; lms_nr_level?: number; lms_anf?: boolean; lms_anf_level?: number;
|
||||
speex_nr?: boolean; speex_nr_level?: number; rnn?: boolean; anft?: boolean;
|
||||
nrf?: boolean; nrf_level?: number; dsp_v4?: boolean;
|
||||
dax_ch?: number; tx_dax?: boolean;
|
||||
tx_filter_low: number; tx_filter_high: number; mic_profile?: string; mic_profiles?: string[];
|
||||
mode?: string;
|
||||
cw_speed: number; cw_pitch: number; cw_break_in_delay: number; cw_sidetone: boolean; cw_mon_level: number;
|
||||
@@ -263,12 +271,43 @@ function Card({ icon: Icon, title, accent, children }: { icon: any; title: strin
|
||||
);
|
||||
}
|
||||
|
||||
// speMaxW is the amp's rated output, used as the power-bar full scale. Derived from
|
||||
// the model string the amp reports (13K→1.3kW, 15K→1.5kW, 2K/20K→2kW).
|
||||
function speMaxW(model?: string): number {
|
||||
const m = (model || '').toUpperCase();
|
||||
if (m.includes('20K') || m.includes('2K')) return 2000;
|
||||
if (m.includes('15K')) return 1500;
|
||||
return 1300; // 1.3K-FA default
|
||||
}
|
||||
|
||||
// powerLevelLabel spells out the SPE power-level code (L/M/H) in full.
|
||||
function powerLevelLabel(pl?: string): string {
|
||||
switch ((pl || '').trim().toUpperCase()) {
|
||||
case 'L': return 'Low';
|
||||
case 'M': return 'Mid';
|
||||
case 'H': return 'High';
|
||||
default: return pl || '';
|
||||
}
|
||||
}
|
||||
|
||||
// onCWSpeed (optional): notified when the operator changes CW speed here, so the
|
||||
// host can keep the WinKeyer (which actually sends the macros) in sync.
|
||||
export function FlexPanel({ onCWSpeed, onReportRST }: { onCWSpeed?: (wpm: number) => void; onReportRST?: (rst: string) => void } = {}) {
|
||||
const { t } = useI18n();
|
||||
const [st, setSt] = useState<FlexState>(ZERO);
|
||||
const hold = useRef<Record<string, number>>({});
|
||||
// Keep the host's keyer speed (used for CW-length estimates and the keyer panel)
|
||||
// in step with the radio's ACTUAL CW speed — including when it's changed on the
|
||||
// radio / in SmartSDR, not just via the slider below. Notify only on a real change.
|
||||
const lastCwSpeed = useRef<number | null>(null);
|
||||
useEffect(() => {
|
||||
const w = st.cw_speed;
|
||||
if (typeof w === 'number' && w > 0 && w !== lastCwSpeed.current) {
|
||||
lastCwSpeed.current = w;
|
||||
onCWSpeed?.(w);
|
||||
}
|
||||
// eslint-disable-next-line react-hooks/exhaustive-deps
|
||||
}, [st.cw_speed]);
|
||||
// Peak-hold: keep the highest reading for ~2 s so the jittery VITA-49 meters
|
||||
// read steadily instead of jumping every poll.
|
||||
const peak = useRef<Record<string, { v: number; t: number }>>({});
|
||||
@@ -310,6 +349,32 @@ export function FlexPanel({ onCWSpeed, onReportRST }: { onCWSpeed?: (wpm: number
|
||||
return () => { alive = false; window.clearInterval(id); };
|
||||
}, []);
|
||||
|
||||
// Configured amplifiers (Settings → Amplifier) — possibly SEVERAL (some ops
|
||||
// run two SPEs in parallel). The card shows ONE at a time; the dropdown picks
|
||||
// which, and the choice is remembered per panel.
|
||||
const [ampList, setAmpList] = useState<any[]>([]);
|
||||
const [ampSel, setAmpSel] = useState<string>(() => localStorage.getItem('opslog.ampSel.flex') || '');
|
||||
useEffect(() => {
|
||||
let alive = true;
|
||||
const tick = () => GetAmpStatuses().then((l: any) => alive && setAmpList((l ?? []) as any[])).catch(() => {});
|
||||
tick();
|
||||
const id = window.setInterval(tick, 1500);
|
||||
return () => { alive = false; window.clearInterval(id); };
|
||||
}, []);
|
||||
const selAmp = ampList.find((a: any) => a.id === ampSel) ?? ampList[0];
|
||||
const isSPE = !!selAmp?.spe;
|
||||
const isACOM = !!selAmp?.acom;
|
||||
const spe = selAmp?.spe ?? { connected: false };
|
||||
const acom = selAmp?.acom ?? { connected: false };
|
||||
const ampPicker = ampList.length > 1 && selAmp ? (
|
||||
<select value={selAmp.id}
|
||||
onChange={(e) => { setAmpSel(e.target.value); localStorage.setItem('opslog.ampSel.flex', e.target.value); }}
|
||||
title={t('flxp.ampPick')}
|
||||
className="h-8 rounded-md border border-border bg-card px-2 text-xs font-semibold outline-none">
|
||||
{ampList.map((a: any) => <option key={a.id} value={a.id}>{a.name}</option>)}
|
||||
</select>
|
||||
) : null;
|
||||
|
||||
const change = (key: keyof FlexState, val: number | boolean | string, send: () => Promise<any>) => {
|
||||
hold.current[key] = Date.now() + 900;
|
||||
setSt((p) => ({ ...p, [key]: val }));
|
||||
@@ -636,12 +701,24 @@ export function FlexPanel({ onCWSpeed, onReportRST }: { onCWSpeed?: (wpm: number
|
||||
onLevel={(v) => change('cw_mon_level', v, () => FlexSetSidetoneLevel(v))} />
|
||||
</div>
|
||||
)}
|
||||
|
||||
{/* RIT/XIT live on the TRANSMIT side to balance the two columns — the
|
||||
RECEIVE card grew tall with the v4 DSP rows. */}
|
||||
<div className="space-y-1.5 border-t border-border/60 pt-3">
|
||||
<OffsetRow label="RIT" on={st.rit} disabled={rxOff} hz={st.rit_freq} title={t('flxp.ritHint')}
|
||||
onToggle={() => change('rit', !st.rit, () => FlexSetRIT(!st.rit))}
|
||||
onHz={(v) => change('rit_freq', v, () => FlexSetRITFreq(v))} />
|
||||
<OffsetRow label="XIT" on={st.xit} disabled={rxOff} hz={st.xit_freq} title={t('flxp.xitHint')}
|
||||
onToggle={() => change('xit', !st.xit, () => FlexSetXIT(!st.xit))}
|
||||
onHz={(v) => change('xit_freq', v, () => FlexSetXITFreq(v))} />
|
||||
</div>
|
||||
</Card>
|
||||
|
||||
{/* RECEIVE */}
|
||||
<Card icon={AudioLines} title={t('flxp.receiveActive')} accent="#0891b2">
|
||||
{/* Antenna selection sits at the very top of the RX column. */}
|
||||
{((st.ant_list?.length ?? 0) > 0 || (st.tx_ant_list?.length ?? 0) > 0) && (
|
||||
<div className="flex items-center gap-2">
|
||||
<div className="flex items-center gap-2 pb-3 border-b border-border/60">
|
||||
<span className="w-14 shrink-0 text-[11px] font-bold text-muted-foreground">Ant</span>
|
||||
<div className="flex items-center gap-1.5 flex-1 min-w-0">
|
||||
<span className="text-[10px] text-muted-foreground">RX</span>
|
||||
@@ -656,21 +733,17 @@ export function FlexPanel({ onCWSpeed, onReportRST }: { onCWSpeed?: (wpm: number
|
||||
className="h-7 flex-1 min-w-0 rounded-md border border-input bg-background px-1.5 text-xs font-mono disabled:opacity-40">
|
||||
{((st.tx_ant_list?.length ? st.tx_ant_list : st.ant_list) ?? []).map((a) => <option key={a} value={a}>{a}</option>)}
|
||||
</select>
|
||||
{/* DAX on/off — SmartSDR's transmit-bar DAX button (TX audio from
|
||||
DAX, e.g. WSJT-X). "transmit set dax=", not the slice channel. */}
|
||||
<button type="button" disabled={off} title={t('flxp.daxHint')}
|
||||
onClick={() => change('tx_dax', !st.tx_dax, () => FlexSetTXDAX(!st.tx_dax))}
|
||||
className={cn('h-7 px-2.5 shrink-0 rounded-md border text-[11px] font-bold transition-colors disabled:opacity-40',
|
||||
st.tx_dax ? 'bg-info text-info-foreground border-info' : 'bg-card text-muted-foreground border-border hover:bg-muted')}>
|
||||
DAX
|
||||
</button>
|
||||
</div>
|
||||
</div>
|
||||
)}
|
||||
{/* RIT / XIT — on the RECEIVE side: RIT is what you reach for while
|
||||
listening (chasing a station that drifts off your transmit frequency),
|
||||
so it belongs with the other things you touch mid-QSO. Both act on the
|
||||
ACTIVE slice and follow slice focus like every control here. */}
|
||||
<div className="space-y-1.5 pb-3 border-b border-border/60">
|
||||
<OffsetRow label="RIT" on={st.rit} disabled={rxOff} hz={st.rit_freq} title={t('flxp.ritHint')}
|
||||
onToggle={() => change('rit', !st.rit, () => FlexSetRIT(!st.rit))}
|
||||
onHz={(v) => change('rit_freq', v, () => FlexSetRITFreq(v))} />
|
||||
<OffsetRow label="XIT" on={st.xit} disabled={rxOff} hz={st.xit_freq} title={t('flxp.xitHint')}
|
||||
onToggle={() => change('xit', !st.xit, () => FlexSetXIT(!st.xit))}
|
||||
onHz={(v) => change('xit_freq', v, () => FlexSetXITFreq(v))} />
|
||||
</div>
|
||||
<div className="flex items-center gap-2">
|
||||
<span className="w-14 shrink-0 text-[11px] font-bold text-muted-foreground">AGC</span>
|
||||
<Segmented value={(st.agc_mode || 'med').toLowerCase()} options={AGC} disabled={rxOff}
|
||||
@@ -711,6 +784,49 @@ export function FlexPanel({ onCWSpeed, onReportRST }: { onCWSpeed?: (wpm: number
|
||||
onLevel={(v) => change('anf_level', v, () => FlexSetANFLevel(v))} />
|
||||
)}
|
||||
</div>
|
||||
{/* SmartSDR v4 DSP (8000/Aurora series) — NRL/ANFL (legacy LMS), NRS
|
||||
(spectral subtraction), NRF (NR w/ filter), RNN (AI NR), ANFT (FFT
|
||||
notch). Only shown when the radio actually reports these slice keys
|
||||
(older 6000s never do). API keys per the FlexLib slice docs. */}
|
||||
{st.dsp_v4 && (
|
||||
<div className="border-t border-border/60 pt-3 space-y-3">
|
||||
<LevelRow label="NRL" on={!!st.lms_nr} disabled={rxOff} value={st.lms_nr_level ?? 0} accent="cyan" sliderAccent="#0e7490"
|
||||
onToggle={() => change('lms_nr', !st.lms_nr, () => FlexSetLMSNR(!st.lms_nr))}
|
||||
onLevel={(v) => change('lms_nr_level', v, () => FlexSetLMSNRLevel(v))} />
|
||||
<LevelRow label="NRS" on={!!st.speex_nr} disabled={rxOff} value={st.speex_nr_level ?? 0} accent="cyan" sliderAccent="#06b6d4"
|
||||
onToggle={() => change('speex_nr', !st.speex_nr, () => FlexSetSpeexNR(!st.speex_nr))}
|
||||
onLevel={(v) => change('speex_nr_level', v, () => FlexSetSpeexNRLevel(v))} />
|
||||
<LevelRow label="NRF" on={!!st.nrf} disabled={rxOff} value={st.nrf_level ?? 0} accent="cyan" sliderAccent="#0369a1"
|
||||
onToggle={() => change('nrf', !st.nrf, () => FlexSetNRF(!st.nrf))}
|
||||
onLevel={(v) => change('nrf_level', v, () => FlexSetNRFLevel(v))} />
|
||||
{/* Notch filters target carriers in voice — hidden in CW like ANF. */}
|
||||
{!isCW && (
|
||||
<LevelRow label="ANFL" on={!!st.lms_anf} disabled={rxOff} value={st.lms_anf_level ?? 0} accent="violet" sliderAccent="#8b5cf6"
|
||||
onToggle={() => change('lms_anf', !st.lms_anf, () => FlexSetLMSANF(!st.lms_anf))}
|
||||
onLevel={(v) => change('lms_anf_level', v, () => FlexSetLMSANFLevel(v))} />
|
||||
)}
|
||||
{/* RNN and ANFT are on/off only — no level in the API. */}
|
||||
<div className="flex items-center gap-2">
|
||||
<span className="w-14 shrink-0 text-[11px] font-bold text-muted-foreground" title={t('flxp.dspV4Hint')}>AI/FFT</span>
|
||||
<button type="button" disabled={rxOff}
|
||||
title={t('flxp.rnnHint')}
|
||||
onClick={() => change('rnn', !st.rnn, () => FlexSetRNN(!st.rnn))}
|
||||
className={cn('px-2.5 py-1 rounded-md border text-[11px] font-bold transition-colors disabled:opacity-30',
|
||||
st.rnn ? 'bg-primary text-primary-foreground border-primary' : 'bg-card text-muted-foreground border-border hover:bg-muted')}>
|
||||
RNN
|
||||
</button>
|
||||
{!isCW && (
|
||||
<button type="button" disabled={rxOff}
|
||||
title={t('flxp.anftHint')}
|
||||
onClick={() => change('anft', !st.anft, () => FlexSetANFT(!st.anft))}
|
||||
className={cn('px-2.5 py-1 rounded-md border text-[11px] font-bold transition-colors disabled:opacity-30',
|
||||
st.anft ? 'bg-primary text-primary-foreground border-primary' : 'bg-card text-muted-foreground border-border hover:bg-muted')}>
|
||||
ANFT
|
||||
</button>
|
||||
)}
|
||||
</div>
|
||||
</div>
|
||||
)}
|
||||
{isCW && (
|
||||
<div className="border-t border-border/60 pt-3 space-y-3">
|
||||
<LevelRow label="APF" on={st.apf} disabled={rxOff} value={st.apf_level} accent="emerald" sliderAccent="#16a34a"
|
||||
@@ -760,10 +876,118 @@ export function FlexPanel({ onCWSpeed, onReportRST }: { onCWSpeed?: (wpm: number
|
||||
</Card>
|
||||
</div>
|
||||
|
||||
{/* External amplifier (PowerGenius XL) — only when detected. */}
|
||||
{st.amp_available && (
|
||||
{/* SPE Expert amplifier (serial/TCP) — shown when it's the configured amp.
|
||||
The Flex doesn't report SPE amps, so this card is driven by OpsLog's own
|
||||
SPE link rather than the Flex amplifier object. */}
|
||||
{isSPE && (
|
||||
<Card icon={Flame} title={`${t('flxp.amplifier')} · ${selAmp?.name || `SPE${spe.model ? ' ' + spe.model : ''}`}`} accent="#ea580c">
|
||||
<div className="flex items-center gap-3 flex-wrap">
|
||||
{ampPicker}
|
||||
<button type="button" disabled={!spe.connected}
|
||||
onClick={() => AmpOperate(selAmp.id, !spe.operate).catch(() => {})}
|
||||
className={cn('px-4 py-2 rounded-lg text-sm font-extrabold tracking-wide border-2 transition-all disabled:opacity-30',
|
||||
spe.operate ? 'bg-warning text-warning-foreground border-warning shadow-[0_0_14px] shadow-warning/50' : 'bg-card text-warning border-warning hover:bg-warning-muted')}>
|
||||
{spe.operate ? 'OPERATE' : 'STANDBY'}
|
||||
</button>
|
||||
{/* Power ON / OFF (best-guess keystrokes from the APG — verify on hw). */}
|
||||
<div className="inline-flex rounded-lg overflow-hidden border-2 border-success/70">
|
||||
<button type="button" disabled={!spe.connected}
|
||||
onClick={() => AmpPower(selAmp.id, true).catch(() => {})}
|
||||
className="px-3 py-2 text-sm font-bold bg-card text-success hover:bg-success/15 disabled:opacity-30">ON</button>
|
||||
<button type="button" disabled={!spe.connected}
|
||||
onClick={() => AmpPower(selAmp.id, false).catch(() => {})}
|
||||
className="px-3 py-2 text-sm font-bold bg-card text-danger border-l-2 border-success/70 hover:bg-danger/15 disabled:opacity-30">OFF</button>
|
||||
</div>
|
||||
{/* Output power level: Low / Mid / High. */}
|
||||
<div className="inline-flex rounded-lg overflow-hidden border border-border">
|
||||
{(['L', 'M', 'H'] as const).map((lvl, i) => {
|
||||
const active = (spe.power_level || '').trim().toUpperCase() === lvl;
|
||||
return (
|
||||
<button key={lvl} type="button" disabled={!spe.connected}
|
||||
onClick={() => AmpPowerLevel(selAmp.id, lvl).catch(() => {})}
|
||||
className={cn('px-3 py-2 text-sm font-bold disabled:opacity-30', i > 0 && 'border-l border-border',
|
||||
active ? 'bg-primary text-primary-foreground' : 'bg-card text-muted-foreground hover:bg-muted')}>
|
||||
{powerLevelLabel(lvl)}
|
||||
</button>
|
||||
);
|
||||
})}
|
||||
</div>
|
||||
<span className={cn('inline-flex items-center gap-1.5 text-sm', spe.connected ? 'text-muted-foreground' : 'text-danger')}>
|
||||
<span className={cn('size-2 rounded-full', spe.connected ? 'bg-success' : 'bg-danger')} />
|
||||
{spe.connected ? (spe.tx ? 'TX' : 'RX') : t('flxp.speOffline')}
|
||||
</span>
|
||||
{spe.connected && (
|
||||
<span className="text-sm font-mono text-muted-foreground tabular-nums">
|
||||
{spe.band ? `${spe.band} · ` : ''}{spe.output_w}W · SWR {Number(spe.swr_ant ?? 0).toFixed(1)} · {spe.temp_c}°C · {powerLevelLabel(spe.power_level)}
|
||||
</span>
|
||||
)}
|
||||
<div className="flex-1" />
|
||||
{(spe.warnings || spe.alarms) && (
|
||||
<span className="px-2 py-1 rounded bg-danger-muted text-danger-muted-foreground text-xs font-bold">⚠ {spe.warnings} {spe.alarms}</span>
|
||||
)}
|
||||
</div>
|
||||
{spe.connected && (
|
||||
<MeterBar label={t('flxp.outputPower')} value={Number(spe.output_w) || 0} unit="W"
|
||||
lo={0} hi={speMaxW(spe.model)}
|
||||
display={`${Number(spe.output_w) || 0} W`}
|
||||
segColor={(f) => (f > 0.9 ? '#dc2626' : f > 0.75 ? '#f59e0b' : '#ea580c')} />
|
||||
)}
|
||||
</Card>
|
||||
)}
|
||||
|
||||
{/* ACOM amplifier (serial/TCP) — shown when it's the configured amp. Driven
|
||||
by OpsLog's own ACOM link (the Flex doesn't report ACOM amps). */}
|
||||
{isACOM && (
|
||||
<Card icon={Flame} title={`${t('flxp.amplifier')} · ${selAmp?.name || `ACOM${acom.model ? ' ' + acom.model : ''}`}`} accent="#ea580c">
|
||||
<div className="flex items-center gap-3 flex-wrap">
|
||||
{ampPicker}
|
||||
<button type="button" disabled={!acom.connected}
|
||||
onClick={() => AmpOperate(selAmp.id, !acom.operate).catch(() => {})}
|
||||
className={cn('px-4 py-2 rounded-lg text-sm font-extrabold tracking-wide border-2 transition-all disabled:opacity-30',
|
||||
acom.operate ? 'bg-warning text-warning-foreground border-warning shadow-[0_0_14px] shadow-warning/50' : 'bg-card text-warning border-warning hover:bg-warning-muted')}>
|
||||
{acom.operate ? 'OPERATE' : 'STANDBY'}
|
||||
</button>
|
||||
{/* Power ON is a DTR/RTS pulse — serial only, and it works while the amp
|
||||
is off (the port stays open), so gate on port_open not connected. */}
|
||||
<div className="inline-flex rounded-lg overflow-hidden border-2 border-success/70">
|
||||
<button type="button" disabled={!(acom.port_open && acom.transport === 'serial')}
|
||||
onClick={() => AmpPower(selAmp.id, true).catch(() => {})}
|
||||
title={acom.transport === 'serial' ? 'Power on (DTR/RTS pulse — needs the power-on pins wired)' : 'Power-on needs the serial DTR/RTS lines — not available over a network bridge'}
|
||||
className="px-3 py-2 text-sm font-bold bg-card text-success hover:bg-success/15 disabled:opacity-30">ON</button>
|
||||
<button type="button" disabled={!acom.connected}
|
||||
onClick={() => AmpPower(selAmp.id, false).catch(() => {})}
|
||||
className="px-3 py-2 text-sm font-bold bg-card text-danger border-l-2 border-success/70 hover:bg-danger/15 disabled:opacity-30">OFF</button>
|
||||
</div>
|
||||
<span className={cn('inline-flex items-center gap-1.5 text-sm', acom.connected ? 'text-muted-foreground' : 'text-danger')}>
|
||||
<span className={cn('size-2 rounded-full', acom.connected ? 'bg-success' : 'bg-danger')} />
|
||||
{acom.connected ? acom.state : t('flxp.acomOffline')}
|
||||
</span>
|
||||
{acom.connected && (
|
||||
<span className="text-sm font-mono text-muted-foreground tabular-nums">
|
||||
{acom.band ? `${acom.band} · ` : ''}{acom.fwd_w}W · SWR {Number(acom.swr ?? 0).toFixed(1)} · {acom.temp_c}°C · Fan {acom.fan}
|
||||
</span>
|
||||
)}
|
||||
<div className="flex-1" />
|
||||
{acom.err_text && (
|
||||
<span className="px-2 py-1 rounded bg-danger-muted text-danger-muted-foreground text-xs font-bold">⚠ {acom.err_text}</span>
|
||||
)}
|
||||
</div>
|
||||
{acom.connected && (
|
||||
<MeterBar label={t('flxp.outputPower')} value={Number(acom.fwd_w) || 0} unit="W"
|
||||
lo={0} hi={Number(acom.max_w) || 800}
|
||||
display={`${Number(acom.fwd_w) || 0} W`}
|
||||
segColor={(f) => (f > 0.9 ? '#dc2626' : f > 0.75 ? '#f59e0b' : '#ea580c')} />
|
||||
)}
|
||||
</Card>
|
||||
)}
|
||||
|
||||
{/* External amplifier (PowerGenius XL) — only when the Flex reports one AND
|
||||
PowerGenius is the selected amp type. Running an SPE Expert or ACOM hides
|
||||
this Flex-reported card so two amps don't both show. */}
|
||||
{st.amp_available && !isSPE && !isACOM && (
|
||||
<Card icon={Flame} title={`${t('flxp.amplifier')}${st.amp_model ? ' · ' + st.amp_model : ''}`} accent="#ea580c">
|
||||
<div className="flex items-center gap-3">
|
||||
{ampPicker}
|
||||
<button type="button" disabled={off}
|
||||
onClick={() => change('amp_operate', !st.amp_operate, () => FlexAmpOperate(!st.amp_operate))}
|
||||
className={cn('px-4 py-2 rounded-lg text-sm font-extrabold tracking-wide border-2 transition-all disabled:opacity-30',
|
||||
@@ -776,7 +1000,7 @@ export function FlexPanel({ onCWSpeed, onReportRST }: { onCWSpeed?: (wpm: number
|
||||
{/* Fan mode — shown when the PowerGenius is configured (Settings →
|
||||
PowerGenius). The dot shows the direct-connection state; the
|
||||
selector is disabled until connected (hover it for the error). */}
|
||||
{(pg.host || pg.connected) && (
|
||||
{selAmp?.type === 'pgxl' && (pg.host || pg.connected) && (
|
||||
<label className="flex items-center gap-1.5 text-xs" title={pg.connected ? t('flxp.pgConnected') : (pg.last_error || t('flxp.pgOffline'))}>
|
||||
<span className={cn('size-1.5 rounded-full', pg.connected ? 'bg-success shadow-[0_0_6px_rgba(16,185,129,0.8)]' : 'bg-danger')} />
|
||||
<span className="text-muted-foreground">{t('flxp.fan')}</span>
|
||||
|
||||
@@ -42,14 +42,28 @@ function fmtTimeOn(s: any): string {
|
||||
|
||||
const emptyStation = (): Station => netctl.Station.createFrom({ callsign: '' });
|
||||
|
||||
// The right-click actions of the main Recent QSOs grid (update from cty/QRZ/
|
||||
// Club Log, send to services, recording e-mail, eQSL, delete) — passed down so
|
||||
// the worked-before grid here offers the SAME context menu on logged QSOs.
|
||||
type QSOMenuHandlers = {
|
||||
onUpdateFromCty?: (ids: number[]) => void;
|
||||
onUpdateFromQRZ?: (ids: number[]) => void;
|
||||
onUpdateFromClublog?: (ids: number[]) => void;
|
||||
onSendTo?: (service: string, ids: number[]) => void;
|
||||
onSendRecording?: (ids: number[]) => void;
|
||||
onSendEQSL?: (ids: number[]) => void;
|
||||
onDelete?: (ids: number[]) => void;
|
||||
};
|
||||
|
||||
type Props = {
|
||||
onLogged?: () => void;
|
||||
countries?: string[];
|
||||
bands?: string[];
|
||||
modes?: string[];
|
||||
qsoMenuHandlers?: QSOMenuHandlers;
|
||||
};
|
||||
|
||||
export function NetControlPanel({ onLogged, countries, bands, modes }: Props) {
|
||||
export function NetControlPanel({ onLogged, countries, bands, modes, qsoMenuHandlers }: Props) {
|
||||
const { t } = useI18n();
|
||||
const [nets, setNets] = useState<Net[]>([]);
|
||||
const [selId, setSelId] = useState<string>('');
|
||||
@@ -61,6 +75,8 @@ export function NetControlPanel({ onLogged, countries, bands, modes }: Props) {
|
||||
// Full-QSO edit modal for an on-air draft (same one Recent QSOs uses).
|
||||
const [editingDraft, setEditingDraft] = useState<QSOForm | null>(null);
|
||||
const [selectedActiveIds, setSelectedActiveIds] = useState<number[]>([]);
|
||||
// Programmatic row selection in the on-air grid (auto-advance after logging).
|
||||
const [selectRow, setSelectRow] = useState<{ id: number; seq: number }>({ id: 0, seq: 0 });
|
||||
|
||||
// Add/edit-contact dialog.
|
||||
const [contactOpen, setContactOpen] = useState(false);
|
||||
@@ -68,6 +84,34 @@ export function NetControlPanel({ onLogged, countries, bands, modes }: Props) {
|
||||
const [looking, setLooking] = useState(false);
|
||||
|
||||
const rosterGrid = useRef<any>(null);
|
||||
// Cross-grid drag & drop: roster row → on-air grid puts the station on air;
|
||||
// on-air row → roster grid logs it (same as the "Log & end" button). AG-Grid
|
||||
// external drop zones need each grid's api + the OTHER grid's container div.
|
||||
const onAirApi = useRef<any>(null);
|
||||
const onAirWrap = useRef<HTMLDivElement | null>(null);
|
||||
const rosterWrap = useRef<HTMLDivElement | null>(null);
|
||||
const dropZonesDone = useRef({ roster: false, onair: false });
|
||||
// Callbacks live in refs so the drop-zone closures (registered once) always
|
||||
// call the CURRENT activate/deactivate, not a stale first-render one.
|
||||
const activateRef = useRef<(call: string) => void>(() => {});
|
||||
const deactivateRef = useRef<(id?: number) => void>(() => {});
|
||||
const wireDropZones = useCallback(() => {
|
||||
const rApi = rosterGrid.current?.api;
|
||||
if (rApi && onAirWrap.current && !dropZonesDone.current.roster) {
|
||||
dropZonesDone.current.roster = true;
|
||||
rApi.addRowDropZone({
|
||||
getContainer: () => onAirWrap.current!,
|
||||
onDragStop: (p: any) => { const call = p.node?.data?.callsign; if (call) activateRef.current(call); },
|
||||
});
|
||||
}
|
||||
if (onAirApi.current && rosterWrap.current && !dropZonesDone.current.onair) {
|
||||
dropZonesDone.current.onair = true;
|
||||
onAirApi.current.addRowDropZone({
|
||||
getContainer: () => rosterWrap.current!,
|
||||
onDragStop: (p: any) => { const id = p.node?.data?.id; if (id != null) deactivateRef.current(id); },
|
||||
});
|
||||
}
|
||||
}, []);
|
||||
|
||||
// Worked-before for the clicked station (see if/when we contacted it before).
|
||||
const [wbCall, setWbCall] = useState('');
|
||||
@@ -177,10 +221,38 @@ export function NetControlPanel({ onLogged, countries, bands, modes }: Props) {
|
||||
catch (e: any) { setError(String(e?.message ?? e)); }
|
||||
}
|
||||
// Active → logged (end QSO, removed from session, written to the logbook).
|
||||
// Then auto-select the FIRST remaining on-air station, so the operator can
|
||||
// chain "log → log → log" without re-clicking a row each time.
|
||||
async function deactivate(id?: number) {
|
||||
if (id == null) return;
|
||||
try { await NetDeactivate(id); await refreshActive(); onLogged?.(); }
|
||||
catch (e: any) { setError(String(e?.message ?? e)); }
|
||||
const next = active.find((a) => a.id !== id); // computed BEFORE the list shrinks
|
||||
try {
|
||||
await NetDeactivate(id);
|
||||
await refreshActive();
|
||||
onLogged?.();
|
||||
if (next?.id != null) {
|
||||
setSelectRow((s) => ({ id: next.id as number, seq: s.seq + 1 }));
|
||||
setSelectedActiveIds([next.id as number]);
|
||||
showWorkedBefore(next.callsign, (next as any).dxcc ?? 0);
|
||||
}
|
||||
} catch (e: any) { setError(String(e?.message ?? e)); }
|
||||
}
|
||||
// Keep the drop-zone closures pointed at the CURRENT handlers.
|
||||
activateRef.current = activate;
|
||||
deactivateRef.current = deactivate;
|
||||
|
||||
// Log EVERYONE still on air (end of net): each draft is written to the logbook
|
||||
// exactly as the single-log button would.
|
||||
async function logAll() {
|
||||
if (active.length === 0) return;
|
||||
if (!window.confirm(t('ncp.logAllConfirm', { n: active.length }))) return;
|
||||
try {
|
||||
for (const a of [...active]) {
|
||||
if (a.id != null) await NetDeactivate(a.id as number);
|
||||
}
|
||||
await refreshActive();
|
||||
onLogged?.();
|
||||
} catch (e: any) { setError(String(e?.message ?? e)); await refreshActive(); }
|
||||
}
|
||||
|
||||
// Edit-modal handlers (operate on the in-memory draft, not the DB).
|
||||
@@ -232,7 +304,8 @@ export function NetControlPanel({ onLogged, countries, bands, modes }: Props) {
|
||||
}
|
||||
|
||||
const rosterCols = useMemo<ColDef<Station>[]>(() => [
|
||||
{ headerName: t('ncp.colCallsign'), field: 'callsign', width: 110, cellClass: 'font-mono font-semibold' },
|
||||
// rowDrag: drag a roster station onto the on-air grid to start its QSO.
|
||||
{ headerName: t('ncp.colCallsign'), field: 'callsign', width: 110, cellClass: 'font-mono font-semibold', rowDrag: true },
|
||||
{ headerName: t('ncp.colName'), field: 'name', flex: 1 },
|
||||
{ headerName: 'QTH', field: 'qth', flex: 1 },
|
||||
{ headerName: t('ncp.colCountry'), field: 'country', width: 130 },
|
||||
@@ -281,11 +354,14 @@ export function NetControlPanel({ onLogged, countries, bands, modes }: Props) {
|
||||
{t('ncp.onAirActive')}
|
||||
<span className="ml-auto font-normal normal-case opacity-90">{t('ncp.activeHint')}</span>
|
||||
</div>
|
||||
<div className="flex flex-col min-h-0 flex-1">
|
||||
<div ref={onAirWrap} className="flex flex-col min-h-0 flex-1">
|
||||
<RecentQSOsGrid
|
||||
rows={active}
|
||||
total={active.length}
|
||||
storageKey="net.onair"
|
||||
selectRowSignal={selectRow}
|
||||
rowDragCall
|
||||
onGridApi={(api) => { onAirApi.current = api; wireDropZones(); }}
|
||||
onRowClicked={(q) => showWorkedBefore(q.callsign, (q as any).dxcc ?? 0)}
|
||||
onRowDoubleClicked={(q) => setEditingDraft(q)}
|
||||
onRowSelected={setSelectedActiveIds}
|
||||
@@ -297,6 +373,9 @@ export function NetControlPanel({ onLogged, countries, bands, modes }: Props) {
|
||||
onClick={() => { if (selectedActiveIds[0] != null) deactivate(selectedActiveIds[0]); }}>
|
||||
<MinusCircle className="size-3.5" /> {t('ncp.logEndSelected')}
|
||||
</Button>
|
||||
<Button variant="ghost" size="sm" className="h-7 text-[11px] ml-auto" onClick={logAll}>
|
||||
<MinusCircle className="size-3.5" /> {t('ncp.logAll', { n: active.length })}
|
||||
</Button>
|
||||
</div>
|
||||
)}
|
||||
|
||||
@@ -330,6 +409,7 @@ export function NetControlPanel({ onLogged, countries, bands, modes }: Props) {
|
||||
rows={(wb.entries ?? []) as any}
|
||||
total={wb.count}
|
||||
storageKey="net.wb"
|
||||
{...qsoMenuHandlers}
|
||||
/>
|
||||
)}
|
||||
</div>
|
||||
@@ -343,7 +423,7 @@ export function NetControlPanel({ onLogged, countries, bands, modes }: Props) {
|
||||
{t('ncp.netUsersRoster')}
|
||||
<span className="ml-auto font-normal normal-case opacity-90">{t('ncp.rosterHint')}</span>
|
||||
</div>
|
||||
<div style={{ flex: 1, minHeight: 0, position: 'relative' }}>
|
||||
<div ref={rosterWrap} style={{ flex: 1, minHeight: 0, position: 'relative' }}>
|
||||
<div style={{ position: 'absolute', inset: 0 }}>
|
||||
<AgGridReact<Station>
|
||||
ref={rosterGrid}
|
||||
@@ -352,6 +432,7 @@ export function NetControlPanel({ onLogged, countries, bands, modes }: Props) {
|
||||
columnDefs={rosterCols}
|
||||
defaultColDef={defaultColDef}
|
||||
rowSelection={{ mode: 'multiRow', checkboxes: false, headerCheckbox: false, enableClickSelection: true }}
|
||||
onGridReady={() => wireDropZones()}
|
||||
onRowClicked={(e) => e.data && showWorkedBefore(e.data.callsign, (e.data as any).dxcc ?? 0)}
|
||||
onRowDoubleClicked={(e) => e.data && activate(e.data.callsign)}
|
||||
animateRows={false}
|
||||
|
||||
@@ -5,7 +5,7 @@ import {
|
||||
} from 'ag-grid-community';
|
||||
import { hamlogGridTheme } from '@/lib/gridTheme';
|
||||
import { AgGridReact } from 'ag-grid-react';
|
||||
import { Columns3, FilterX } from 'lucide-react';
|
||||
import { Columns3, FilterX, ListChecks } from 'lucide-react';
|
||||
import type { QSOForm } from '@/types';
|
||||
import { QSOContextMenu, type QSOMenuState } from './QSOContextMenu';
|
||||
import {
|
||||
@@ -30,6 +30,14 @@ type Props = {
|
||||
// Bump this number to programmatically select every row (e.g. after a search
|
||||
// in the QSL Manager, where the default is "all selected").
|
||||
selectAllSignal?: number;
|
||||
// Bump `seq` to programmatically select the single row with this id (e.g. NET
|
||||
// Control auto-advancing to the next on-air station after logging one).
|
||||
selectRowSignal?: { id: number; seq: number };
|
||||
// Show a row-drag handle on the callsign column (NET Control: drag an on-air
|
||||
// row onto the roster to log it). Pair with onGridApi so the parent can
|
||||
// register external drop zones via api.addRowDropZone.
|
||||
rowDragCall?: boolean;
|
||||
onGridApi?: (api: any) => void;
|
||||
// storageKey scopes the persisted column layout/visibility. Omit for the main
|
||||
// log (keeps the historical keys); pass a distinct value (e.g. "net.onair") to
|
||||
// reuse this grid elsewhere with its OWN independent column config.
|
||||
@@ -49,6 +57,10 @@ type Props = {
|
||||
onExportCabrilloSelected?: (ids: number[]) => void;
|
||||
onExportCabrilloFiltered?: () => void;
|
||||
onDelete?: (ids: number[]) => void;
|
||||
// Reports how many rows the grid shows after its COLUMN filters (the funnel
|
||||
// icons), or null when no column filter is active — so the parent's "Showing X
|
||||
// of Y" can reflect them. Fired on filter change and when the data updates.
|
||||
onFilteredCountChange?: (count: number | null) => void;
|
||||
// One column per defined award; the cell shows the reference this QSO counts
|
||||
// for (from row.award_refs[CODE], attached by the parent). Hidden by default.
|
||||
awardCols?: { code: string; name: string }[];
|
||||
@@ -245,7 +257,7 @@ export const groupLabel = (t: TFn, g: string): string => t(GRP_KEYS[g] ?? g);
|
||||
const stripAwardCols = (st: any[] | null | undefined): any[] =>
|
||||
(st ?? []).filter((s) => !String(s?.colId ?? '').startsWith('award_'));
|
||||
|
||||
export function RecentQSOsGrid({ rows, selectAllSignal, storageKey, onRowDoubleClicked, onRowClicked, onRowSelected, onUpdateFromCty, onUpdateFromQRZ, onUpdateFromClublog, onSendTo, onSendRecording, onSendEQSL, onBulkEdit, onExportSelected, onExportFiltered, onExportCabrilloSelected, onExportCabrilloFiltered, onDelete, awardCols }: Props) {
|
||||
export function RecentQSOsGrid({ rows, selectAllSignal, selectRowSignal, rowDragCall, onGridApi, storageKey, onRowDoubleClicked, onRowClicked, onRowSelected, onUpdateFromCty, onUpdateFromQRZ, onUpdateFromClublog, onSendTo, onSendRecording, onSendEQSL, onBulkEdit, onExportSelected, onExportFiltered, onExportCabrilloSelected, onExportCabrilloFiltered, onDelete, onFilteredCountChange, awardCols }: Props) {
|
||||
const { t } = useI18n();
|
||||
const gridRef = useRef<any>(null);
|
||||
const [pickerOpen, setPickerOpen] = useState(false);
|
||||
@@ -253,6 +265,8 @@ export function RecentQSOsGrid({ rows, selectAllSignal, storageKey, onRowDoubleC
|
||||
// (e.g. the Net panel) keeps its own layout independent of the main log.
|
||||
const colStateKey = storageKey ? `hamlog.qsoColState.${storageKey}` : BASE_COLSTATE_KEY;
|
||||
const [menu, setMenu] = useState<QSOMenuState>(null);
|
||||
const [selCount, setSelCount] = useState(0); // live selection count shown in the toolbar
|
||||
const [dispCount, setDispCount] = useState(0); // rows currently displayed (post column filters) — drives Select all ↔ Unselect all
|
||||
|
||||
// Localized column catalog — rebuilt when the language changes.
|
||||
const COL_CATALOG = useMemo(() => makeColCatalog(t), [t]);
|
||||
@@ -312,7 +326,11 @@ export function RecentQSOsGrid({ rows, selectAllSignal, storageKey, onRowDoubleC
|
||||
restoringRef.current = true;
|
||||
const base = COL_CATALOG.map((c) => {
|
||||
const { group: _g, label: _l, defaultVisible, ...rest } = c;
|
||||
return { ...rest, hide: !defaultVisible };
|
||||
const col: ColDef<QSOForm> = { ...rest, hide: !defaultVisible };
|
||||
if (rowDragCall && ((rest as any).colId === 'callsign' || (rest as any).field === 'callsign')) {
|
||||
col.rowDrag = true;
|
||||
}
|
||||
return col;
|
||||
});
|
||||
const awards: ColDef<QSOForm>[] = (awardCols ?? []).map((a) => ({
|
||||
colId: `award_${a.code}`,
|
||||
@@ -326,7 +344,7 @@ export function RecentQSOsGrid({ rows, selectAllSignal, storageKey, onRowDoubleC
|
||||
valueGetter: (p) => (p.data as any)?.award_refs?.[a.code.toUpperCase()] ?? '',
|
||||
}));
|
||||
return [...base, ...awards];
|
||||
}, [awardCols, COL_CATALOG, t, awardShown]);
|
||||
}, [awardCols, COL_CATALOG, t, awardShown, rowDragCall]);
|
||||
|
||||
// Enforce award-column visibility via the API after the columns (re)appear —
|
||||
// colDef.hide alone isn't honoured by AG Grid for a column that already exists,
|
||||
@@ -349,6 +367,7 @@ export function RecentQSOsGrid({ rows, selectAllSignal, storageKey, onRowDoubleC
|
||||
}), []);
|
||||
|
||||
function onGridReady(e: GridReadyEvent) {
|
||||
onGridApi?.(e.api);
|
||||
const local = loadLocal(colStateKey);
|
||||
if (local) e.api.applyColumnState({ state: stripAwardCols(local) as ColumnState[], applyOrder: true });
|
||||
// Fall back to the portable DB copy when the local cache is empty
|
||||
@@ -360,17 +379,27 @@ export function RecentQSOsGrid({ rows, selectAllSignal, storageKey, onRowDoubleC
|
||||
}
|
||||
});
|
||||
}
|
||||
// Report the post-column-filter row count (funnel filters) to the parent, or
|
||||
// null when no column filter is active, so "Showing X of Y" reflects them.
|
||||
const reportFilteredCount = useCallback((e: { api?: any }) => {
|
||||
const api = e?.api ?? gridRef.current?.api;
|
||||
if (api?.getDisplayedRowCount) setDispCount(api.getDisplayedRowCount());
|
||||
if (!api || !onFilteredCountChange) return;
|
||||
onFilteredCountChange(api.isAnyFilterPresent?.() ? api.getDisplayedRowCount() : null);
|
||||
}, [onFilteredCountChange]);
|
||||
const saveColumnState = useCallback(() => {
|
||||
if (restoringRef.current) return; // ignore the events fired by a column rebuild
|
||||
const state = gridRef.current?.api?.getColumnState();
|
||||
if (state) saveState(colStateKey, stripAwardCols(state));
|
||||
}, []);
|
||||
|
||||
// The award columns load asynchronously; when they arrive (or change) the
|
||||
// columnDefs memo is rebuilt and AG Grid re-applies each colDef's `hide`
|
||||
// default — wiping the user's saved visibility (award columns reappear,
|
||||
// manually-shown ones like LoTW sent vanish). Re-apply the saved state after
|
||||
// every rebuild so the user's choices win. No-op before the grid is ready.
|
||||
// columnDefs is rebuilt whenever the award columns load OR the user toggles an
|
||||
// award column (both change the memo → restoringRef flips true at line 316). Each
|
||||
// rebuild makes AG Grid re-apply every colDef's `hide` default, wiping the user's
|
||||
// saved visibility of the NON-award columns (QTH/Grid reappear, a manually-shown
|
||||
// LoTW-sent vanishes). Re-apply the saved (award-stripped) state after EVERY such
|
||||
// rebuild — hence awardShown in the deps, not just awardCols; without it, toggling
|
||||
// an award reset the other columns AND left restoringRef stuck true (saving off).
|
||||
useEffect(() => {
|
||||
const api = gridRef.current?.api;
|
||||
const local = loadLocal(colStateKey);
|
||||
@@ -378,13 +407,16 @@ export function RecentQSOsGrid({ rows, selectAllSignal, storageKey, onRowDoubleC
|
||||
// Re-enable saving once AG Grid has settled the column events from the rebuild.
|
||||
const t = window.setTimeout(() => { restoringRef.current = false; }, 0);
|
||||
return () => window.clearTimeout(t);
|
||||
}, [awardCols]);
|
||||
}, [awardCols, awardShown]);
|
||||
|
||||
function handleRowDoubleClicked(e: RowDoubleClickedEvent<QSOForm>) {
|
||||
if (e.data && onRowDoubleClicked) onRowDoubleClicked(e.data);
|
||||
}
|
||||
function onSelectionChanged() {
|
||||
const sel = (gridRef.current?.api?.getSelectedRows() as QSOForm[] | undefined) ?? [];
|
||||
const api = gridRef.current?.api;
|
||||
const sel = (api?.getSelectedRows() as QSOForm[] | undefined) ?? [];
|
||||
setSelCount(sel.length);
|
||||
setDispCount(api?.getDisplayedRowCount?.() ?? 0);
|
||||
onRowSelected?.(sel.map((r) => r.id as number).filter((id) => id != null));
|
||||
}
|
||||
// Select every row when the caller bumps selectAllSignal (QSL Manager search).
|
||||
@@ -393,6 +425,21 @@ export function RecentQSOsGrid({ rows, selectAllSignal, storageKey, onRowDoubleC
|
||||
gridRef.current?.api?.selectAll();
|
||||
}, [selectAllSignal]);
|
||||
|
||||
// Select ONE row by id when the caller bumps selectRowSignal.seq. Deferred a
|
||||
// tick so a row-data refresh in the same render settles first.
|
||||
useEffect(() => {
|
||||
if (!selectRowSignal || selectRowSignal.seq === 0) return;
|
||||
const t = window.setTimeout(() => {
|
||||
const api = gridRef.current?.api;
|
||||
if (!api) return;
|
||||
api.deselectAll();
|
||||
api.forEachNode((n: any) => {
|
||||
if (n.data?.id === selectRowSignal.id) n.setSelected(true);
|
||||
});
|
||||
}, 0);
|
||||
return () => window.clearTimeout(t);
|
||||
}, [selectRowSignal?.seq]);
|
||||
|
||||
// ── Column picker (visibility) ──
|
||||
// Drives AG Grid via setColumnsVisible(). We don't keep a parallel React
|
||||
// state for "which columns are visible" — AG Grid's column state is the
|
||||
@@ -449,6 +496,32 @@ export function RecentQSOsGrid({ rows, selectAllSignal, storageKey, onRowDoubleC
|
||||
return (
|
||||
<>
|
||||
<div className="flex items-center justify-end gap-2 px-2.5 py-1 border-b border-border/60 bg-muted/20">
|
||||
{/* Live selection count — visible without opening the context menu. */}
|
||||
{selCount > 0 && (
|
||||
<span className="mr-auto text-[11px] font-semibold text-primary tabular-nums px-1.5">
|
||||
{t('rqg.selectedCount', { n: selCount })}
|
||||
</span>
|
||||
)}
|
||||
{/* Select every loaded row that passes the active column filters — so a
|
||||
filtered view can be selected in one click (then send to LoTW, bulk
|
||||
edit, export…). Once everything is selected the same button flips to
|
||||
"Unselect all". */}
|
||||
{(() => {
|
||||
const allSelected = selCount > 0 && dispCount > 0 && selCount >= dispCount;
|
||||
return (
|
||||
<Button variant="ghost" size="sm" className="h-7 text-[11px]"
|
||||
title={allSelected ? t('rqg.unselectAllTitle') : t('rqg.selectAllTitle')}
|
||||
onClick={() => {
|
||||
const api: any = gridRef.current?.api;
|
||||
if (!api) return;
|
||||
if (allSelected) api.deselectAll();
|
||||
else if (typeof api.selectAllFiltered === 'function') api.selectAllFiltered();
|
||||
else api.selectAll('filtered');
|
||||
}}>
|
||||
<ListChecks className="size-3.5" /> {allSelected ? t('rqg.unselectAll') : t('rqg.selectAll')}
|
||||
</Button>
|
||||
);
|
||||
})()}
|
||||
<Button variant="ghost" size="sm" className="h-7 text-[11px]" onClick={() => gridRef.current?.api?.setFilterModel(null)}
|
||||
title={t('rqg.clearFiltersTitle')}>
|
||||
<FilterX className="size-3.5" /> {t('rqg.clearFilters')}
|
||||
@@ -467,6 +540,8 @@ export function RecentQSOsGrid({ rows, selectAllSignal, storageKey, onRowDoubleC
|
||||
defaultColDef={defaultColDef}
|
||||
rowSelection={{ mode: 'multiRow', checkboxes: false, headerCheckbox: false, enableClickSelection: true }}
|
||||
onGridReady={onGridReady}
|
||||
onFilterChanged={reportFilteredCount}
|
||||
onModelUpdated={reportFilteredCount}
|
||||
onColumnResized={saveColumnState}
|
||||
onColumnMoved={saveColumnState}
|
||||
onColumnPinned={saveColumnState}
|
||||
|
||||
@@ -3,7 +3,7 @@ import {
|
||||
ArrowDown, ArrowUp, ArrowLeft, ArrowRight, Copy, Plus, Star, StarOff, Trash2,
|
||||
ChevronDown, ChevronRight,
|
||||
User, Database, Radio, Cog, Server, Award, Antenna as AntennaIcon,
|
||||
Compass, Wifi, Construction, UploadCloud, Loader2, FolderOpen, Play, Power, Check, Eye, EyeOff,
|
||||
Compass, Wifi, Construction, UploadCloud, Loader2, FolderOpen, Play, Power, Check, Eye, EyeOff, Pencil,
|
||||
} from 'lucide-react';
|
||||
import {
|
||||
GetLookupSettings, SaveLookupSettings, ClearLookupCache, TestLookupProvider,
|
||||
@@ -13,7 +13,7 @@ import {
|
||||
GetRotatorSettings, SaveRotatorSettings, TestRotator, RotatorPark, RotatorStop,
|
||||
GetUltrabeamSettings, SaveUltrabeamSettings, TestUltrabeam,
|
||||
GetAntGeniusSettings, SaveAntGeniusSettings,
|
||||
GetPGXLSettings, SavePGXLSettings,
|
||||
GetAmplifiers, SaveAmplifiers, GetAmpStatuses, AmpOperate,
|
||||
GetWinkeyerSettings, SaveWinkeyerSettings, ListSerialPorts,
|
||||
GetAudioSettings, SaveAudioSettings, ListAudioInputDevices, ListAudioOutputDevices, PickAudioFolder, TestPTT,
|
||||
GetClublogCtyInfo, SetClublogCtyEnabled, DownloadClublogCty,
|
||||
@@ -28,11 +28,10 @@ import {
|
||||
ConnectClusterServer, DisconnectClusterServer,
|
||||
ConnectAllClusters, DisconnectAllClusters, GetClusterStatus,
|
||||
GetBackupSettings, SaveBackupSettings, RunBackupNow, PickBackupFolder,
|
||||
GetDatabaseSettings, PickOpenDatabase, PickSaveDatabase, OpenDatabase, MoveDatabase, ResetDatabaseToDefault, RestartApp, CreateDatabase,
|
||||
GetDatabaseSettings, PickOpenDatabase, PickSaveDatabase, OpenDatabase, MoveDatabase, ResetDatabaseToDefault, RestartApp, CreateDatabase, RenameDatabase,
|
||||
GetMySQLSettings, SaveMySQLSettings, TestMySQLConnection, GetDBBackendStatus,
|
||||
GetAutostartPrograms, SaveAutostartPrograms, BrowseExecutable, LaunchAutostartProgram,
|
||||
GetTelemetryEnabled, SetTelemetryEnabled,
|
||||
GetLiveStatusEnabled, SetLiveStatusEnabled,
|
||||
GetQSLDefaults, SaveQSLDefaults,
|
||||
GetExternalServices, SaveExternalServices, TestQRZUpload, TestClublogUpload, TestHRDLogUpload, TestEQSLUpload,
|
||||
GetPOTAToken, SavePOTAToken,
|
||||
@@ -276,7 +275,7 @@ const SECTION_LABELS: Partial<Record<SectionId, string>> = {
|
||||
winkeyer: 'CW Keyer',
|
||||
antenna: 'Ultrabeam / Steppir',
|
||||
antgenius: 'Antenna Genius',
|
||||
pgxl: 'Power Genius',
|
||||
pgxl: 'Amplifier',
|
||||
flex: 'FlexRadio',
|
||||
relayauto: 'Relay auto-control',
|
||||
audio: 'Audio devices',
|
||||
@@ -566,26 +565,6 @@ function TelemetryToggle() {
|
||||
);
|
||||
}
|
||||
|
||||
// LiveStatusToggle publishes this operator's current activity (call + band +
|
||||
// freq + mode) to the shared MySQL `live_status` table every ~15s, for multi-op
|
||||
// events — a small web script on your server renders it for the QRZ page. Only
|
||||
// useful on a MySQL logbook. Self-contained component (owns its async state).
|
||||
function LiveStatusToggle() {
|
||||
const { t } = useI18n();
|
||||
const [on, setOn] = useState(false);
|
||||
const [loaded, setLoaded] = useState(false);
|
||||
useEffect(() => {
|
||||
GetLiveStatusEnabled().then((v) => setOn(!!v)).catch(() => {}).finally(() => setLoaded(true));
|
||||
}, []);
|
||||
return (
|
||||
<label className="flex items-center gap-2 text-sm cursor-pointer">
|
||||
<Checkbox checked={on} disabled={!loaded}
|
||||
onCheckedChange={(c) => { const v = !!c; setOn(v); SetLiveStatusEnabled(v).catch(() => {}); }} />
|
||||
{t('settings.liveStatus')} <span className="text-xs text-muted-foreground">({t('settings.liveStatusHint')})</span>
|
||||
</label>
|
||||
);
|
||||
}
|
||||
|
||||
// ADIFMonitorPanel watches a list of external ADIF files (fldigi RTTY, N1MM,
|
||||
// VarAC…) and auto-imports newly appended QSOs — deliberately option-free: a
|
||||
// contact that arrives is imported and uploaded automatically like any log entry.
|
||||
@@ -641,13 +620,84 @@ function ADIFMonitorPanel() {
|
||||
);
|
||||
}
|
||||
|
||||
// AmpUI mirrors the backend AmpConfig — one configured amplifier.
|
||||
type AmpUI = { id: string; name: string; enabled: boolean; type: string; transport: string; host: string; port: number; com_port: string; baud: number };
|
||||
|
||||
// RelayAutoPanel configures automatic control of the Station Control relay boards
|
||||
// from the rig's frequency / band (PstRotator-style). Each relay carries one rule:
|
||||
// off, a frequency window (kHz), or a set of bands.
|
||||
type RelayRuleUI = { device_id: string; relay: number; mode: string; freq_lo_khz: number; freq_hi_khz: number; bands: string[] };
|
||||
type StationDevUI = { id: string; type: string; name: string; labels: string[] };
|
||||
const RELAY_BANDS = ['160m', '80m', '60m', '40m', '30m', '20m', '17m', '15m', '12m', '10m', '6m', '4m', '2m', '70cm'];
|
||||
const relayCountUI = (type: string) => (type === 'kmtronic' ? 8 : 5);
|
||||
const relayCountUI = (type: string) => (type === 'kmtronic' || type === 'denkovi' ? 8 : 5);
|
||||
|
||||
// Live status + OPERATE/STANDBY toggle for ONE configured amplifier (by config
|
||||
// id) — SPE / ACOM / PGXL alike. Module-scoped (not a nested component) so it
|
||||
// isn't remounted on every parent render. Polls once a second while shown.
|
||||
function AmpStatusCard({ id }: { id: string }) {
|
||||
const [amp, setAmp] = useState<any>(null);
|
||||
useEffect(() => {
|
||||
let alive = true;
|
||||
const tick = () => GetAmpStatuses().then((all: any[]) => {
|
||||
if (alive) setAmp((all ?? []).find((a) => a.id === id) ?? null);
|
||||
}).catch(() => {});
|
||||
tick();
|
||||
const t = window.setInterval(tick, 1000);
|
||||
return () => { alive = false; window.clearInterval(t); };
|
||||
}, [id]);
|
||||
const st: any = amp?.spe ?? amp?.acom ?? amp?.pgxl ?? { connected: false };
|
||||
const isSPE = !!amp?.spe;
|
||||
const isACOM = !!amp?.acom;
|
||||
const operate = !!st.operate;
|
||||
return (
|
||||
<div className="rounded-md border border-border p-3 space-y-2 text-xs max-w-xl">
|
||||
<div className="flex items-center gap-2">
|
||||
<span className={cn('size-2 rounded-full', st.connected ? 'bg-success animate-pulse' : 'bg-danger')} />
|
||||
<span className="font-semibold">{amp?.name || 'Amplifier'}{st.connected ? '' : ' — not connected'}</span>
|
||||
{!st.connected && st.last_error && <span className="text-danger truncate text-[10px]">{st.last_error}</span>}
|
||||
<span className="flex-1" />
|
||||
<Button size="sm" variant={operate ? 'default' : 'outline'} disabled={!st.connected}
|
||||
onClick={() => AmpOperate(id, !operate).catch(() => {})}
|
||||
title="Toggle OPERATE / STANDBY">
|
||||
{operate ? 'OPERATE' : 'STANDBY'}
|
||||
</Button>
|
||||
</div>
|
||||
{st.connected && isSPE && (
|
||||
<div className="grid grid-cols-4 gap-x-3 gap-y-1 font-mono text-[11px]">
|
||||
<div>{st.tx ? 'TX' : 'RX'}</div>
|
||||
<div>Band {st.band}</div>
|
||||
<div>Pwr {st.power_level}</div>
|
||||
<div>{st.output_w} W</div>
|
||||
<div>SWR {Number(st.swr_ant ?? 0).toFixed(2)}</div>
|
||||
<div>{st.temp_c}°C</div>
|
||||
<div>{st.volt_pa} V</div>
|
||||
<div>{st.curr_pa} A</div>
|
||||
{(st.warnings || st.alarms) && <div className="col-span-4 text-warning">⚠ {st.warnings} {st.alarms}</div>}
|
||||
</div>
|
||||
)}
|
||||
{st.connected && isACOM && (
|
||||
<div className="grid grid-cols-4 gap-x-3 gap-y-1 font-mono text-[11px]">
|
||||
<div>{st.state}</div>
|
||||
<div>Band {st.band || '—'}</div>
|
||||
<div>{st.fwd_w} W</div>
|
||||
<div>SWR {Number(st.swr ?? 0).toFixed(2)}</div>
|
||||
<div>Refl {st.refl_w} W</div>
|
||||
<div>Drive {st.drive_w} W</div>
|
||||
<div>{st.temp_c}°C</div>
|
||||
<div>Fan {st.fan}</div>
|
||||
{st.err_text && <div className="col-span-4 text-warning">⚠ {st.err_text} ({st.err_code})</div>}
|
||||
</div>
|
||||
)}
|
||||
{st.connected && !isSPE && !isACOM && (
|
||||
<div className="grid grid-cols-3 gap-x-3 gap-y-1 font-mono text-[11px]">
|
||||
<div>{st.state || ''}</div>
|
||||
<div>Fan {st.fan_mode || '—'}</div>
|
||||
<div>{st.temperature ? `${Math.round(st.temperature)}°C` : ''}</div>
|
||||
</div>
|
||||
)}
|
||||
</div>
|
||||
);
|
||||
}
|
||||
function RelayAutoPanel() {
|
||||
const { t } = useI18n();
|
||||
const [enabled, setEnabled] = useState(false);
|
||||
@@ -698,7 +748,7 @@ function RelayAutoPanel() {
|
||||
<div key={dev.id} className="rounded-md border border-border">
|
||||
<div className="px-3 py-1.5 border-b border-border bg-muted/40 text-xs font-semibold">{dev.name || dev.id}</div>
|
||||
<div className="divide-y divide-border/60">
|
||||
{Array.from({ length: relayCountUI(dev.type) }, (_, i) => i + 1).map((relay) => {
|
||||
{Array.from({ length: (dev.labels?.length || relayCountUI(dev.type)) }, (_, i) => i + 1).map((relay) => {
|
||||
const r = ruleFor(dev.id, relay);
|
||||
const label = (dev.labels?.[relay - 1] || '').trim() || `${t('relayauto.relay')} ${relay}`;
|
||||
return (
|
||||
@@ -1013,8 +1063,9 @@ export function SettingsModal({ onClose, onSaved, initialSection, onMainPaneChan
|
||||
// Antenna Genius (4O3A) switch settings — TCP port is fixed at 9007.
|
||||
const [antgenius, setAntgenius] = useState<{ enabled: boolean; host: string; password: string }>({ enabled: false, host: '', password: '' });
|
||||
|
||||
// PowerGenius XL (4O3A) amp fan-control settings.
|
||||
const [pgxl, setPgxl] = useState<{ enabled: boolean; host: string; port: number }>({ enabled: false, host: '', port: 9008 });
|
||||
// Amplifier list — operators can run SEVERAL amps (even two SPEs combined),
|
||||
// each with its own connection. Saved as a whole via SaveAmplifiers.
|
||||
const [amps, setAmps] = useState<AmpUI[]>([]);
|
||||
|
||||
// WinKeyer CW keyer settings + macro editor.
|
||||
type WKMac = { label: string; text: string };
|
||||
@@ -1085,6 +1136,7 @@ export function SettingsModal({ onClose, onSaved, initialSection, onMainPaneChan
|
||||
const [showBeamMap, setShowBeamMap] = useState(() => localStorage.getItem('opslog.showBeamOnMap') !== '0');
|
||||
const [startEqEnd, setStartEqEnd] = useState(() => localStorage.getItem('opslog.startEqualsEnd') === '1');
|
||||
const [lookupOnBlur, setLookupOnBlur] = useState(() => localStorage.getItem('opslog.lookupOnBlur') === '1');
|
||||
const [groupDigital, setGroupDigital] = useState(() => localStorage.getItem('opslog.groupDigitalSlots') === '1');
|
||||
const [showQsoRate, setShowQsoRate] = useState(() => localStorage.getItem('opslog.showQsoRate') === '1');
|
||||
const [catModeBeforeFreq, setCatModeBeforeFreq] = useState(() => localStorage.getItem('opslog.catModeBeforeFreq') === '1');
|
||||
// Password-encryption (secret vault) state.
|
||||
@@ -1331,7 +1383,7 @@ export function SettingsModal({ onClose, onSaved, initialSection, onMainPaneChan
|
||||
setRotator(r);
|
||||
try { setUltrabeam(await GetUltrabeamSettings() as any); } catch {}
|
||||
try { setAntgenius(await GetAntGeniusSettings() as any); } catch {}
|
||||
try { setPgxl(await GetPGXLSettings() as any); } catch {}
|
||||
try { setAmps(((await GetAmplifiers()) ?? []) as AmpUI[]); } catch {}
|
||||
setBackupCfg(b as any);
|
||||
setQslDefaults(qd as any);
|
||||
setExtSvc(es as any);
|
||||
@@ -1371,7 +1423,7 @@ export function SettingsModal({ onClose, onSaved, initialSection, onMainPaneChan
|
||||
try { setRotator(await GetRotatorSettings() as any); } catch {}
|
||||
try { setUltrabeam(await GetUltrabeamSettings() as any); } catch {}
|
||||
try { setAntgenius(await GetAntGeniusSettings() as any); } catch {}
|
||||
try { setPgxl(await GetPGXLSettings() as any); } catch {}
|
||||
try { setAmps(((await GetAmplifiers()) ?? []) as AmpUI[]); } catch {}
|
||||
try { setBackupCfg(await GetBackupSettings() as any); } catch {}
|
||||
try { setQslDefaults(await GetQSLDefaults() as any); } catch {}
|
||||
try { setExtSvc(await GetExternalServices() as any); } catch {}
|
||||
@@ -1540,7 +1592,7 @@ export function SettingsModal({ onClose, onSaved, initialSection, onMainPaneChan
|
||||
await SaveRotatorSettings(rotator as any);
|
||||
await SaveUltrabeamSettings(ultrabeam as any);
|
||||
await SaveAntGeniusSettings(antgenius as any);
|
||||
await SavePGXLSettings(pgxl as any);
|
||||
await SaveAmplifiers(amps as any);
|
||||
await SaveWinkeyerSettings(wk as any);
|
||||
await SaveAudioSettings(audioCfg as any);
|
||||
await SaveEmailSettings(emailCfg as any);
|
||||
@@ -2645,36 +2697,166 @@ export function SettingsModal({ onClose, onSaved, initialSection, onMainPaneChan
|
||||
}
|
||||
|
||||
function PGXLPanelSettings() {
|
||||
// The stored `type` stays a flat value ("spe13", "acom700", "pgxl"); the UI
|
||||
// presents it as brand + model.
|
||||
const brandModels: Record<string, { value: string; label: string }[]> = {
|
||||
spe: [
|
||||
{ value: 'spe13', label: 'Expert 1.3K-FA' },
|
||||
{ value: 'spe15', label: 'Expert 1.5K-FA' },
|
||||
{ value: 'spe2k', label: 'Expert 2K-FA' },
|
||||
],
|
||||
acom: [
|
||||
{ value: 'acom500', label: '500S' },
|
||||
{ value: 'acom600', label: '600S' },
|
||||
{ value: 'acom700', label: '700S' },
|
||||
{ value: 'acom1200', label: '1200S' },
|
||||
{ value: 'acom2020', label: '2020S' },
|
||||
],
|
||||
};
|
||||
const brandOf = (ty: string) => (!ty || ty === 'pgxl') ? 'pgxl' : ty.startsWith('acom') ? 'acom' : 'spe';
|
||||
const patchAmp = (i: number, patch: Partial<AmpUI>) => setAmps((l) => l.map((a, j) => (j === i ? { ...a, ...patch } : a)));
|
||||
// Each family has a fixed serial speed: SPE talks 115200, the ACOM S-series is
|
||||
// 9600 8N1 — preset it so switching brand just works. PGXL is TCP-only.
|
||||
const applyType = (i: number, v: string) => patchAmp(i, {
|
||||
type: v,
|
||||
transport: v === 'pgxl' ? 'tcp' : amps[i].transport,
|
||||
baud: v.startsWith('acom') ? 9600 : v.startsWith('spe') ? 115200 : amps[i].baud,
|
||||
});
|
||||
const addAmp = () => setAmps((l) => [...l, {
|
||||
id: '', name: '', enabled: true, type: 'spe13', transport: 'tcp', host: '', port: 9008, com_port: '', baud: 115200,
|
||||
}]);
|
||||
return (
|
||||
<>
|
||||
<SectionHeader
|
||||
title="Power Genius XL"
|
||||
/>
|
||||
<SectionHeader title="Amplifier" hint={t('amp.hint')} />
|
||||
<div className="space-y-4 max-w-xl">
|
||||
<label className="flex items-center gap-2 text-sm cursor-pointer">
|
||||
<Checkbox checked={pgxl.enabled} onCheckedChange={(c) => setPgxl((s) => ({ ...s, enabled: !!c }))} />
|
||||
Enable PowerGenius fan control
|
||||
</label>
|
||||
<div className="grid grid-cols-3 gap-3">
|
||||
<div className="space-y-1 col-span-2">
|
||||
<Label>Host / IP</Label>
|
||||
<Input
|
||||
value={pgxl.host ?? ''}
|
||||
onChange={(e) => setPgxl((s) => ({ ...s, host: e.target.value }))}
|
||||
placeholder="192.168.1.70"
|
||||
className="font-mono"
|
||||
/>
|
||||
</div>
|
||||
<div className="space-y-1">
|
||||
<Label>TCP port</Label>
|
||||
<Input
|
||||
type="number" min={1} max={65535}
|
||||
value={pgxl.port}
|
||||
onChange={(e) => setPgxl((s) => ({ ...s, port: parseInt(e.target.value) || 9008 }))}
|
||||
className="font-mono"
|
||||
/>
|
||||
</div>
|
||||
</div>
|
||||
{amps.length === 0 && (
|
||||
<p className="text-sm text-muted-foreground">{t('amp.none')}</p>
|
||||
)}
|
||||
{amps.map((amp, i) => {
|
||||
const brand = brandOf(amp.type);
|
||||
const isPGXL = brand === 'pgxl';
|
||||
const isACOM = brand === 'acom';
|
||||
const isSerial = !isPGXL && amp.transport === 'serial';
|
||||
return (
|
||||
<div key={amp.id || `new-${i}`} className="rounded-lg border border-border p-3 space-y-3">
|
||||
<div className="flex items-center gap-2">
|
||||
<Checkbox checked={amp.enabled} onCheckedChange={(c) => patchAmp(i, { enabled: !!c })} />
|
||||
<Input className="h-8 flex-1" value={amp.name}
|
||||
placeholder={t('amp.namePh')}
|
||||
onChange={(e) => patchAmp(i, { name: e.target.value })} />
|
||||
<Button variant="ghost" size="sm" className="h-8 text-danger" title={t('amp.remove')}
|
||||
onClick={() => setAmps((l) => l.filter((_, j) => j !== i))}>
|
||||
<Trash2 className="size-3.5" />
|
||||
</Button>
|
||||
</div>
|
||||
|
||||
{/* Connection gets the widest column — "Network (RS232-to-Ethernet)"
|
||||
was truncated with 3 equal columns. */}
|
||||
<div className="grid grid-cols-[1fr_1fr_1.7fr] gap-3">
|
||||
<div className="space-y-1">
|
||||
<Label>Brand</Label>
|
||||
<Select value={brand} onValueChange={(b) => {
|
||||
if (b === brand) return;
|
||||
applyType(i, b === 'pgxl' ? 'pgxl' : brandModels[b][0].value);
|
||||
}}>
|
||||
<SelectTrigger className="h-9"><SelectValue /></SelectTrigger>
|
||||
<SelectContent>
|
||||
<SelectItem value="pgxl">4O3A</SelectItem>
|
||||
<SelectItem value="spe">SPE</SelectItem>
|
||||
<SelectItem value="acom">ACOM</SelectItem>
|
||||
</SelectContent>
|
||||
</Select>
|
||||
</div>
|
||||
<div className="space-y-1">
|
||||
<Label>Model</Label>
|
||||
{isPGXL ? (
|
||||
// The PowerGenius is the brand's single model — fixed, no choice.
|
||||
<Select value="pgxl" disabled>
|
||||
<SelectTrigger className="h-9"><SelectValue /></SelectTrigger>
|
||||
<SelectContent>
|
||||
<SelectItem value="pgxl">PowerGenius XL</SelectItem>
|
||||
</SelectContent>
|
||||
</Select>
|
||||
) : (
|
||||
<Select value={amp.type} onValueChange={(v) => applyType(i, v)}>
|
||||
<SelectTrigger className="h-9"><SelectValue /></SelectTrigger>
|
||||
<SelectContent>
|
||||
{brandModels[brand].map((m) => <SelectItem key={m.value} value={m.value}>{m.label}</SelectItem>)}
|
||||
</SelectContent>
|
||||
</Select>
|
||||
)}
|
||||
</div>
|
||||
{/* PowerGenius is TCP-only; SPE and ACOM amps connect over USB serial
|
||||
or an RS232-to-Ethernet bridge, so they offer both. */}
|
||||
{!isPGXL && (
|
||||
<div className="space-y-1">
|
||||
<Label>Connection</Label>
|
||||
<Select value={amp.transport} onValueChange={(v) => patchAmp(i, { transport: v })}>
|
||||
<SelectTrigger className="h-9"><SelectValue /></SelectTrigger>
|
||||
<SelectContent>
|
||||
<SelectItem value="serial">USB (serial COM)</SelectItem>
|
||||
<SelectItem value="tcp">Network (RS232-to-Ethernet)</SelectItem>
|
||||
</SelectContent>
|
||||
</Select>
|
||||
</div>
|
||||
)}
|
||||
</div>
|
||||
|
||||
{isSerial ? (
|
||||
<div className="grid grid-cols-3 gap-3">
|
||||
<div className="space-y-1 col-span-2">
|
||||
<Label>COM port</Label>
|
||||
<div className="flex items-center gap-2">
|
||||
<Select value={amp.com_port || '_'} onValueChange={(v) => patchAmp(i, { com_port: v === '_' ? '' : v })}>
|
||||
<SelectTrigger className="h-9 flex-1"><SelectValue placeholder="— COM —" /></SelectTrigger>
|
||||
<SelectContent>
|
||||
{wkPorts.length === 0 && <SelectItem value="_" disabled>No ports found</SelectItem>}
|
||||
{wkPorts.map((p) => <SelectItem key={p} value={p}>{p}</SelectItem>)}
|
||||
</SelectContent>
|
||||
</Select>
|
||||
<Button size="sm" variant="outline" className="h-9" onClick={() => ListSerialPorts().then((p) => setWkPorts((p ?? []) as string[])).catch(() => {})}>
|
||||
<ArrowDown className="size-3.5 rotate-90" />
|
||||
</Button>
|
||||
</div>
|
||||
</div>
|
||||
<div className="space-y-1">
|
||||
<Label>Baud</Label>
|
||||
<Input type="number" min={1200} value={amp.baud}
|
||||
onChange={(e) => patchAmp(i, { baud: parseInt(e.target.value) || 115200 })} className="font-mono" />
|
||||
</div>
|
||||
</div>
|
||||
) : (
|
||||
<div className="grid grid-cols-3 gap-3">
|
||||
<div className="space-y-1 col-span-2">
|
||||
<Label>Host / IP</Label>
|
||||
<Input value={amp.host ?? ''} onChange={(e) => patchAmp(i, { host: e.target.value })}
|
||||
placeholder="192.168.1.70" className="font-mono" />
|
||||
</div>
|
||||
<div className="space-y-1">
|
||||
<Label>TCP port</Label>
|
||||
<Input type="number" min={1} max={65535} value={amp.port}
|
||||
onChange={(e) => patchAmp(i, { port: parseInt(e.target.value) || 9008 })} className="font-mono" />
|
||||
</div>
|
||||
</div>
|
||||
)}
|
||||
|
||||
{amp.enabled && amp.id && <AmpStatusCard id={amp.id} />}
|
||||
{!isPGXL && !isACOM && (
|
||||
<p className="text-[10px] text-muted-foreground">
|
||||
SPE control uses the amplifier's proprietary serial protocol (OPERATE toggle + live status). Save to (re)connect. Band / power-level / antenna are still managed on the amp from the transceiver CAT.
|
||||
</p>
|
||||
)}
|
||||
{isACOM && (
|
||||
<p className="text-[10px] text-muted-foreground">
|
||||
ACOM control uses the amplifier's serial protocol (9600 8N1): OPERATE / STANDBY / OFF + live telemetry. Save to (re)connect. Power-ON needs the serial DTR/RTS pins wired in the cable (not available over a network bridge). Band tracking stays on the amp itself.
|
||||
</p>
|
||||
)}
|
||||
</div>
|
||||
);
|
||||
})}
|
||||
<Button variant="outline" size="sm" onClick={addAmp}>
|
||||
<Plus className="size-3.5 mr-1" /> {t('amp.add')}
|
||||
</Button>
|
||||
</div>
|
||||
</>
|
||||
);
|
||||
@@ -2682,11 +2864,12 @@ export function SettingsModal({ onClose, onSaved, initialSection, onMainPaneChan
|
||||
|
||||
function RotatorPanel() {
|
||||
const isRG = (rotator as any).type === 'rotgenius';
|
||||
const isARCO = (rotator as any).type === 'arco';
|
||||
return (
|
||||
<>
|
||||
<SectionHeader
|
||||
title="Rotator"
|
||||
hint={isRG ? undefined : t('rot.hint')}
|
||||
hint={isRG || isARCO ? undefined : t('rot.hint')}
|
||||
/>
|
||||
<div className="space-y-4 max-w-xl">
|
||||
<label className="flex items-center gap-2 text-sm cursor-pointer">
|
||||
@@ -2696,14 +2879,15 @@ export function SettingsModal({ onClose, onSaved, initialSection, onMainPaneChan
|
||||
<div className="grid grid-cols-2 gap-3">
|
||||
<div className="space-y-1">
|
||||
<Label>{t('rot.type')}</Label>
|
||||
{/* Switching to Rotator Genius moves the default port to its native
|
||||
9006; back to PstRotator restores 12000. */}
|
||||
{/* Each backend gets its default port: Rotator Genius 9006, ARCO 4001
|
||||
(placeholder — must match the ARCO's LAN menu), PstRotator 12000. */}
|
||||
<Select value={(rotator as any).type ?? 'pst'}
|
||||
onValueChange={(v) => setRotator((s) => ({ ...s, type: v, port: v === 'rotgenius' ? 9006 : 12000 } as any))}>
|
||||
onValueChange={(v) => setRotator((s) => ({ ...s, type: v, port: v === 'rotgenius' ? 9006 : v === 'arco' ? 4001 : 12000 } as any))}>
|
||||
<SelectTrigger className="h-9"><SelectValue /></SelectTrigger>
|
||||
<SelectContent>
|
||||
<SelectItem value="pst">PstRotator (UDP)</SelectItem>
|
||||
<SelectItem value="rotgenius">Rotator Genius (4O3A, native)</SelectItem>
|
||||
<SelectItem value="arco">microHAM ARCO (LAN, GS-232A)</SelectItem>
|
||||
</SelectContent>
|
||||
</Select>
|
||||
</div>
|
||||
@@ -2720,34 +2904,68 @@ export function SettingsModal({ onClose, onSaved, initialSection, onMainPaneChan
|
||||
</Select>
|
||||
</div>
|
||||
)}
|
||||
{/* The ARCO is reachable over the LAN (TCP) or its USB virtual COM. */}
|
||||
{isARCO && (
|
||||
<div className="space-y-1">
|
||||
<Label>Connection</Label>
|
||||
<Select value={(rotator as any).transport ?? 'tcp'}
|
||||
onValueChange={(v) => setRotator((s) => ({ ...s, transport: v } as any))}>
|
||||
<SelectTrigger className="h-9"><SelectValue /></SelectTrigger>
|
||||
<SelectContent>
|
||||
<SelectItem value="tcp">Network (LAN)</SelectItem>
|
||||
<SelectItem value="serial">USB (serial COM)</SelectItem>
|
||||
</SelectContent>
|
||||
</Select>
|
||||
</div>
|
||||
)}
|
||||
</div>
|
||||
<div className="grid grid-cols-3 gap-3">
|
||||
<div className="space-y-1 col-span-2">
|
||||
<Label>Host / IP</Label>
|
||||
<Input
|
||||
value={rotator.host ?? ''}
|
||||
onChange={(e) => setRotator((s) => ({ ...s, host: e.target.value }))}
|
||||
placeholder={isRG ? '192.168.1.60' : '127.0.0.1'}
|
||||
className="font-mono"
|
||||
/>
|
||||
{isARCO && (rotator as any).transport === 'serial' ? (
|
||||
<div className="space-y-1 max-w-xs">
|
||||
<Label>COM port</Label>
|
||||
<div className="flex items-center gap-2">
|
||||
<Select value={(rotator as any).com_port || '_'}
|
||||
onValueChange={(v) => setRotator((s) => ({ ...s, com_port: v === '_' ? '' : v } as any))}>
|
||||
<SelectTrigger className="h-9 flex-1"><SelectValue placeholder="— COM —" /></SelectTrigger>
|
||||
<SelectContent>
|
||||
{wkPorts.length === 0 && <SelectItem value="_" disabled>No ports found</SelectItem>}
|
||||
{wkPorts.map((p) => <SelectItem key={p} value={p}>{p}</SelectItem>)}
|
||||
</SelectContent>
|
||||
</Select>
|
||||
<Button size="sm" variant="outline" className="h-9" onClick={() => ListSerialPorts().then((p) => setWkPorts((p ?? []) as string[])).catch(() => {})}>
|
||||
<ArrowDown className="size-3.5 rotate-90" />
|
||||
</Button>
|
||||
</div>
|
||||
</div>
|
||||
<div className="space-y-1">
|
||||
<Label>{isRG ? 'TCP port' : 'UDP port'}</Label>
|
||||
<Input
|
||||
type="number" min={1} max={65535}
|
||||
value={rotator.port}
|
||||
onChange={(e) => setRotator((s) => ({ ...s, port: parseInt(e.target.value) || (isRG ? 9006 : 12000) }))}
|
||||
className="font-mono"
|
||||
/>
|
||||
) : (
|
||||
<div className="grid grid-cols-3 gap-3">
|
||||
<div className="space-y-1 col-span-2">
|
||||
<Label>Host / IP</Label>
|
||||
<Input
|
||||
value={rotator.host ?? ''}
|
||||
onChange={(e) => setRotator((s) => ({ ...s, host: e.target.value }))}
|
||||
placeholder={isRG || isARCO ? '192.168.1.60' : '127.0.0.1'}
|
||||
className="font-mono"
|
||||
/>
|
||||
</div>
|
||||
<div className="space-y-1">
|
||||
<Label>{isRG || isARCO ? 'TCP port' : 'UDP port'}</Label>
|
||||
<Input
|
||||
type="number" min={1} max={65535}
|
||||
value={rotator.port}
|
||||
onChange={(e) => setRotator((s) => ({ ...s, port: parseInt(e.target.value) || (isRG ? 9006 : isARCO ? 4001 : 12000) }))}
|
||||
className="font-mono"
|
||||
/>
|
||||
</div>
|
||||
</div>
|
||||
</div>
|
||||
{!isRG && (
|
||||
)}
|
||||
{!isRG && !isARCO && (
|
||||
<label className="flex items-center gap-2 text-sm cursor-pointer">
|
||||
<Checkbox checked={rotator.has_elevation} onCheckedChange={(c) => setRotator((s) => ({ ...s, has_elevation: !!c }))} />
|
||||
This rotator supports elevation (VHF / satellite)
|
||||
</label>
|
||||
)}
|
||||
{isRG && <p className="text-xs text-muted-foreground">{t('rot.rgHint')}</p>}
|
||||
{isARCO && <p className="text-xs text-muted-foreground">{t('rot.arcoHint')}</p>}
|
||||
<div className="flex items-center gap-2 pt-2">
|
||||
<Button variant="outline" size="sm" onClick={testRotator} disabled={rotatorTesting}>
|
||||
{rotatorTesting ? t('hw.sending') : t('hw.testRotator')}
|
||||
@@ -2807,6 +3025,7 @@ export function SettingsModal({ onClose, onSaved, initialSection, onMainPaneChan
|
||||
<SelectContent>
|
||||
<SelectItem value="winkeyer">WinKeyer (serial)</SelectItem>
|
||||
<SelectItem value="icom">Icom CI-V (rig keyer)</SelectItem>
|
||||
<SelectItem value="flex">FlexRadio (CWX)</SelectItem>
|
||||
<SelectItem value="tci" disabled>TCI (coming soon)</SelectItem>
|
||||
</SelectContent>
|
||||
</Select>
|
||||
@@ -2837,6 +3056,26 @@ export function SettingsModal({ onClose, onSaved, initialSection, onMainPaneChan
|
||||
</div>
|
||||
</div>
|
||||
</>
|
||||
) : wk.engine === 'flex' ? (
|
||||
<>
|
||||
<p className="text-xs text-muted-foreground -mt-2">
|
||||
FlexRadio keys CW through the radio's <strong>CWX</strong> keyer over the existing SmartSDR CAT connection — no WinKeyer or SmartCAT needed. It reuses the connection set in Settings → CAT, so there's nothing else to wire up here. Put a slice in CW mode. Only the speed is set from here; weight, sidetone and break-in are configured on the radio (break-in must be on for CW to actually transmit).
|
||||
</p>
|
||||
{(!catCfg.enabled || catCfg.backend !== 'flex') && (
|
||||
<p className="text-xs font-medium text-warning -mt-1 flex items-start gap-1.5">
|
||||
<span aria-hidden>⚠</span>
|
||||
<span>
|
||||
Your CAT backend is set to <strong>{catCfg.enabled ? (catCfg.backend || 'none') : 'disabled'}</strong>. Flex CWX needs the CAT backend set to <strong>FlexRadio</strong> and connected — change it under Settings → CAT interface, otherwise sending CW will fail.
|
||||
</span>
|
||||
</p>
|
||||
)}
|
||||
<div className="grid grid-cols-4 gap-3">
|
||||
<div className="space-y-1">
|
||||
<Label>Speed (WPM)</Label>
|
||||
<Input type="number" min={6} max={48} value={wk.wpm} onChange={(e) => setWkField({ wpm: num(e.target.value, 25) })} className="font-mono" />
|
||||
</div>
|
||||
</div>
|
||||
</>
|
||||
) : (
|
||||
<>
|
||||
<div className="grid grid-cols-4 gap-3">
|
||||
@@ -3978,6 +4217,17 @@ export function SettingsModal({ onClose, onSaved, initialSection, onMainPaneChan
|
||||
setDbMsg(p);
|
||||
} catch (e: any) { setErr(String(e?.message ?? e)); }
|
||||
}
|
||||
// Rename the CURRENT database (keeps all config), unlike New database which
|
||||
// starts empty. The old file is removed on the next launch.
|
||||
async function renameDb() {
|
||||
try {
|
||||
const p = await PickSaveDatabase();
|
||||
if (!p) return;
|
||||
await RenameDatabase(p);
|
||||
await refreshDb();
|
||||
setDbMsg(p);
|
||||
} catch (e: any) { setErr(String(e?.message ?? e)); }
|
||||
}
|
||||
async function resetDefault() {
|
||||
try {
|
||||
await ResetDatabaseToDefault();
|
||||
@@ -4056,6 +4306,7 @@ export function SettingsModal({ onClose, onSaved, initialSection, onMainPaneChan
|
||||
<div className="flex flex-wrap gap-2">
|
||||
<Button size="sm" onClick={createNew}><Plus className="size-3.5" /> {t('db.newDb')}</Button>
|
||||
<Button variant="outline" size="sm" onClick={openExisting}><FolderOpen className="size-3.5" /> {t('db.openExisting')}</Button>
|
||||
<Button variant="outline" size="sm" onClick={renameDb} title={t('db.renameTip')}><Pencil className="size-3.5" /> {t('db.rename')}</Button>
|
||||
<Button variant="outline" size="sm" onClick={saveCopy}><Copy className="size-3.5" /> {t('db.saveCopy')}</Button>
|
||||
{dbSettings.is_custom && <Button variant="ghost" size="sm" onClick={resetDefault}>{t('db.resetDefault')}</Button>}
|
||||
</div>
|
||||
@@ -4379,12 +4630,15 @@ export function SettingsModal({ onClose, onSaved, initialSection, onMainPaneChan
|
||||
<Checkbox checked={lookupOnBlur} onCheckedChange={(c) => { const v = !!c; setLookupOnBlur(v); writeUiPref('opslog.lookupOnBlur', v ? '1' : '0'); }} />
|
||||
{t('gen.lookupOnBlur')} <span className="text-xs text-muted-foreground">{t('gen.lookupOnBlurHint')}</span>
|
||||
</label>
|
||||
<label className="flex items-center gap-2 text-sm cursor-pointer">
|
||||
<Checkbox checked={groupDigital} onCheckedChange={(c) => { const v = !!c; setGroupDigital(v); writeUiPref('opslog.groupDigitalSlots', v ? '1' : '0'); }} />
|
||||
{t('gen.groupDigital')} <span className="text-xs text-muted-foreground">{t('gen.groupDigitalHint')}</span>
|
||||
</label>
|
||||
<label className="flex items-center gap-2 text-sm cursor-pointer">
|
||||
<Checkbox checked={checkUpdates} onCheckedChange={(c) => { const v = !!c; setCheckUpdates(v); writeUiPref('opslog.checkUpdates', v ? '1' : '0'); }} />
|
||||
{t('gen.checkUpdates')} <span className="text-xs text-muted-foreground">{t('gen.checkUpdatesHint')}</span>
|
||||
</label>
|
||||
<TelemetryToggle />
|
||||
<LiveStatusToggle />
|
||||
|
||||
<MainViewPanes onChanged={onMainPaneChanged} flexAvailable={flexAvailable} icomAvailable={icomAvailable} />
|
||||
|
||||
|
||||
@@ -1,5 +1,5 @@
|
||||
import { useCallback, useEffect, useRef, useState } from 'react';
|
||||
import { Plus, Pencil, Trash2, Power, PlugZap, Loader2, Check, X, Compass, Square, Antenna as AntennaIcon, ArrowDownToLine, Minus, RefreshCw } from 'lucide-react';
|
||||
import { Plus, Pencil, Trash2, Power, PlugZap, Loader2, Check, X, Compass, Square, Antenna as AntennaIcon, ArrowDownToLine, Minus, RefreshCw, Flame } from 'lucide-react';
|
||||
import { Button } from '@/components/ui/button';
|
||||
import { Input } from '@/components/ui/input';
|
||||
import { Label } from '@/components/ui/label';
|
||||
@@ -12,16 +12,23 @@ import {
|
||||
GetStationDevices, SaveStationDevices, GetStationStatus, StationSetRelay,
|
||||
GetRotatorHeading, RotatorGoTo, RotatorStop,
|
||||
GetUltrabeamStatus, SetUltrabeamDirection, UltrabeamRetract, MotorSetElement, MotorReadElements,
|
||||
ListDenkoviDevices, ListSerialPorts, TestStationDevice,
|
||||
GetAmpStatuses, AmpOperate, AmpPower, AmpPowerLevel, AmpFanMode, GetFlexState, FlexAmpOperate,
|
||||
} from '../../wailsjs/go/main/App';
|
||||
|
||||
type RotatorProps = { centerLat?: number | null; centerLon?: number | null; bearing?: number | null };
|
||||
|
||||
type Device = { id: string; type: string; name: string; host: string; user?: string; pass?: string; labels: string[] };
|
||||
type Device = { id: string; type: string; name: string; host: string; user?: string; pass?: string; channels?: number; labels: string[] };
|
||||
type Relay = { number: number; label: string; on: boolean };
|
||||
type DevStatus = { id: string; name: string; type: string; connected: boolean; error?: string; relays: Relay[] };
|
||||
|
||||
const RELAY_COUNT: Record<string, number> = { webswitch: 5, kmtronic: 8 };
|
||||
const TYPE_LABEL: Record<string, string> = { webswitch: 'WebSwitch 1216H', kmtronic: 'KMTronic 8-relay' };
|
||||
const RELAY_COUNT: Record<string, number> = { webswitch: 5, kmtronic: 8, denkovi: 8, usbrelay: 8 };
|
||||
const TYPE_LABEL: Record<string, string> = { webswitch: 'WebSwitch 1216H', kmtronic: 'KMTronic 8-relay', denkovi: 'Denkovi USB (FT245)', usbrelay: 'Denkovi USB (serial)' };
|
||||
|
||||
// Relay count for a configured device: fixed by type, except Denkovi (4/8) and
|
||||
// the generic USB-serial board, whose channel count the user picks.
|
||||
const chanCount = (d: Device): number =>
|
||||
(d.type === 'denkovi' || d.type === 'usbrelay') ? (d.channels && d.channels >= 1 ? d.channels : 8) : (RELAY_COUNT[d.type] ?? 5);
|
||||
|
||||
function blankDevice(): Device {
|
||||
return { id: '', type: 'webswitch', name: '', host: '', user: '', pass: '', labels: Array(5).fill('') };
|
||||
@@ -240,6 +247,139 @@ function MotorAntennaWidget({ ant, refetch, t }: { ant: AntStatus; refetch: () =
|
||||
);
|
||||
}
|
||||
|
||||
// AmplifierWidget brings the amplifier controls (Settings → Amplifier) into the
|
||||
// Station Control tab, so an operator WITHOUT a FlexRadio/Icom panel still has
|
||||
// them. Several amps can be configured (some ops run two SPEs in parallel) —
|
||||
// the header dropdown picks which one this card shows; the choice is remembered.
|
||||
function AmplifierWidget({ t }: { t: (k: string, v?: any) => string }) {
|
||||
const [list, setList] = useState<any[]>([]);
|
||||
const [sel, setSel] = useState<string>(() => localStorage.getItem('opslog.ampSel.station') || '');
|
||||
const [flex, setFlex] = useState<any>(null);
|
||||
useEffect(() => {
|
||||
let alive = true;
|
||||
// The Flex state rides along because a PGXL's OPERATE state comes from the
|
||||
// radio (the direct GSCP status doesn't carry it).
|
||||
const tick = () => Promise.all([
|
||||
GetAmpStatuses().catch(() => []),
|
||||
GetFlexState().catch(() => null),
|
||||
]).then(([l, fx]: any[]) => { if (alive) { setList((l ?? []) as any[]); setFlex(fx); } });
|
||||
tick();
|
||||
const id = window.setInterval(tick, 1500);
|
||||
return () => { alive = false; window.clearInterval(id); };
|
||||
}, []);
|
||||
const amp = list.find((a) => a.id === sel) ?? list[0];
|
||||
if (!amp) return null;
|
||||
const isACOM = !!amp.acom;
|
||||
const isSPE = !!amp.spe;
|
||||
const isPGXL = !isACOM && !isSPE;
|
||||
const viaFlex = isPGXL && !!flex?.amp_available;
|
||||
const raw = amp.spe ?? amp.acom ?? amp.pgxl ?? { connected: false };
|
||||
const st: any = isPGXL
|
||||
? { ...raw, connected: !!raw.connected || viaFlex, operate: viaFlex ? !!flex.amp_operate : !!raw.operate }
|
||||
: raw;
|
||||
const doOperate = () => {
|
||||
const want = !st.operate;
|
||||
(isPGXL && viaFlex ? FlexAmpOperate(want) : AmpOperate(amp.id, want)).catch(() => {});
|
||||
};
|
||||
const maxW = isACOM ? (Number(st.max_w) || 800) : ({ '13K': 1300, '15K': 1500, '2K': 2000 } as Record<string, number>)[st.model] || 1500;
|
||||
const outW = Number(isACOM ? st.fwd_w : st.output_w) || 0;
|
||||
const frac = Math.min(1, outW / maxW);
|
||||
return (
|
||||
<div className="rounded-xl border border-border bg-card shadow-sm overflow-hidden h-full">
|
||||
<div className="flex items-center gap-2 px-3 py-2 border-b border-border/60 bg-muted/30">
|
||||
<Flame className="size-4 text-primary" />
|
||||
<div className="min-w-0">
|
||||
<div className="text-sm font-semibold truncate">{t('flxp.amplifier')}</div>
|
||||
{list.length <= 1 && <div className="text-[10px] text-muted-foreground font-mono truncate">{amp.name}</div>}
|
||||
</div>
|
||||
{list.length > 1 && (
|
||||
<select value={amp.id} title={t('flxp.ampPick')}
|
||||
onChange={(e) => { setSel(e.target.value); localStorage.setItem('opslog.ampSel.station', e.target.value); }}
|
||||
className="h-7 rounded-md border border-border bg-card px-1.5 text-xs font-semibold outline-none min-w-0">
|
||||
{list.map((a: any) => <option key={a.id} value={a.id}>{a.name}</option>)}
|
||||
</select>
|
||||
)}
|
||||
<span className={cn('ml-auto size-2 rounded-full shrink-0', st.connected ? 'bg-success' : 'bg-muted-foreground/40')}
|
||||
title={st.connected ? t('station.online') : (st.last_error || t('station.offline'))} />
|
||||
</div>
|
||||
<div className="p-3 space-y-2">
|
||||
{isPGXL ? (
|
||||
<div className="flex items-center gap-2 flex-wrap">
|
||||
<button type="button" disabled={!st.connected}
|
||||
onClick={doOperate}
|
||||
className={cn('px-3 py-1.5 rounded-lg text-xs font-extrabold tracking-wide border-2 transition-all disabled:opacity-40',
|
||||
st.operate ? 'bg-warning text-warning-foreground border-warning' : 'bg-card text-warning border-warning hover:bg-warning-muted')}>
|
||||
{st.operate ? 'OPERATE' : 'STANDBY'}
|
||||
</button>
|
||||
{(['STANDARD', 'CONTEST', 'BROADCAST'] as const).map((m) => (
|
||||
<button key={m} type="button" disabled={!st.connected}
|
||||
onClick={() => AmpFanMode(amp.id, m).catch(() => {})}
|
||||
className={cn('px-2.5 py-1.5 rounded-md border text-xs font-semibold disabled:opacity-40',
|
||||
st.fan_mode === m ? 'bg-primary text-primary-foreground border-primary' : 'bg-muted/30 border-border hover:bg-muted')}>
|
||||
{m === 'STANDARD' ? t('flxp.fanStandard') : m === 'CONTEST' ? t('flxp.fanContest') : t('flxp.fanBroadcast')}
|
||||
</button>
|
||||
))}
|
||||
<span className="text-xs text-muted-foreground font-mono">{st.state || ''}{st.temperature ? ` · ${Math.round(st.temperature)}°C` : ''}</span>
|
||||
</div>
|
||||
) : (
|
||||
<>
|
||||
<div className="flex items-center gap-2 flex-wrap">
|
||||
<button type="button" disabled={!st.connected}
|
||||
onClick={doOperate}
|
||||
className={cn('px-3 py-1.5 rounded-lg text-xs font-extrabold tracking-wide border-2 transition-all disabled:opacity-40',
|
||||
st.operate ? 'bg-warning text-warning-foreground border-warning' : 'bg-card text-warning border-warning hover:bg-warning-muted')}>
|
||||
{st.operate ? 'OPERATE' : 'STANDBY'}
|
||||
</button>
|
||||
<div className="inline-flex rounded-lg overflow-hidden border border-success/70">
|
||||
<button type="button"
|
||||
disabled={isACOM ? !(st.port_open && st.transport === 'serial') : !st.connected}
|
||||
onClick={() => AmpPower(amp.id, true).catch(() => {})}
|
||||
className="px-2.5 py-1.5 text-xs font-bold bg-card text-success hover:bg-success/15 disabled:opacity-40">ON</button>
|
||||
<button type="button" disabled={!st.connected}
|
||||
onClick={() => AmpPower(amp.id, false).catch(() => {})}
|
||||
className="px-2.5 py-1.5 text-xs font-bold bg-card text-danger border-l border-success/70 hover:bg-danger/15 disabled:opacity-40">OFF</button>
|
||||
</div>
|
||||
{!isACOM && (
|
||||
<div className="inline-flex rounded-lg overflow-hidden border border-border">
|
||||
{(['L', 'M', 'H'] as const).map((lvl, i) => (
|
||||
<button key={lvl} type="button" disabled={!st.connected}
|
||||
onClick={() => AmpPowerLevel(amp.id, lvl).catch(() => {})}
|
||||
className={cn('px-2.5 py-1.5 text-xs font-bold disabled:opacity-40', i > 0 && 'border-l border-border',
|
||||
(st.power_level || '').trim().toUpperCase() === lvl ? 'bg-primary text-primary-foreground' : 'bg-card text-muted-foreground hover:bg-muted')}>
|
||||
{lvl}
|
||||
</button>
|
||||
))}
|
||||
</div>
|
||||
)}
|
||||
</div>
|
||||
<div className="text-xs font-mono text-muted-foreground tabular-nums">
|
||||
{st.connected
|
||||
? <>
|
||||
{isACOM ? (st.state || '') : (st.tx ? 'TX' : 'RX')}
|
||||
{st.band ? ` · ${st.band}` : ''} · {outW}W · SWR {Number((isACOM ? st.swr : st.swr_ant) ?? 0).toFixed(1)} · {st.temp_c}°C
|
||||
{isACOM && st.fan ? ` · Fan ${st.fan}` : ''}
|
||||
</>
|
||||
: (isACOM ? t('flxp.acomOffline') : t('flxp.speOffline'))}
|
||||
</div>
|
||||
{st.connected && (
|
||||
<div>
|
||||
<div className="h-2 rounded bg-muted overflow-hidden">
|
||||
<div className={cn('h-full transition-all', frac > 0.9 ? 'bg-danger' : frac > 0.75 ? 'bg-warning' : 'bg-primary')}
|
||||
style={{ width: `${Math.round(frac * 100)}%` }} />
|
||||
</div>
|
||||
<div className="text-[10px] text-muted-foreground mt-0.5">{t('flxp.outputPower')} — {outW} W / {maxW} W</div>
|
||||
</div>
|
||||
)}
|
||||
{(st.err_text || st.warnings || st.alarms) && (
|
||||
<div className="text-[11px] font-bold text-danger">⚠ {st.err_text || `${st.warnings || ''} ${st.alarms || ''}`}</div>
|
||||
)}
|
||||
</>
|
||||
)}
|
||||
</div>
|
||||
</div>
|
||||
);
|
||||
}
|
||||
|
||||
export function StationControlPanel({ centerLat, centerLon, bearing }: RotatorProps) {
|
||||
const { t } = useI18n();
|
||||
const [devices, setDevices] = useState<Device[]>([]);
|
||||
@@ -254,6 +394,17 @@ export function StationControlPanel({ centerLat, centerLon, bearing }: RotatorPr
|
||||
});
|
||||
const dragId = useRef<string | null>(null);
|
||||
const [cols, setCols] = useState<string>(() => localStorage.getItem('opslog.stationCols') || 'auto');
|
||||
// Amplifiers (Settings → Amplifier): shown here so operators without a
|
||||
// FlexRadio panel still get the controls. Re-read every 5s so enabling an
|
||||
// amp in Settings makes the widget appear without reopening the tab.
|
||||
const [ampCount, setAmpCount] = useState(0);
|
||||
useEffect(() => {
|
||||
let alive = true;
|
||||
const load = () => GetAmpStatuses().then((l: any) => { if (alive) setAmpCount((l ?? []).length); }).catch(() => {});
|
||||
load();
|
||||
const id = window.setInterval(load, 5000);
|
||||
return () => { alive = false; window.clearInterval(id); };
|
||||
}, []);
|
||||
|
||||
const loadDevices = useCallback(async () => {
|
||||
try { setDevices(((await GetStationDevices()) ?? []) as Device[]); } catch { /* db not ready */ }
|
||||
@@ -374,13 +525,16 @@ export function StationControlPanel({ centerLat, centerLon, bearing }: RotatorPr
|
||||
if (ant.enabled) {
|
||||
widgets.push({ id: 'antenna', node: <MotorAntennaWidget ant={ant} refetch={pollAnt} t={t} /> });
|
||||
}
|
||||
if (ampCount > 0) {
|
||||
widgets.push({ id: 'amplifier', node: <AmplifierWidget t={t} /> });
|
||||
}
|
||||
for (const dev of devices) widgets.push({ id: dev.id, node: deviceCard(dev) });
|
||||
|
||||
const rank = (id: string) => { const i = order.indexOf(id); return i < 0 ? 1e6 : i; };
|
||||
const ordered = widgets.map((w, i) => ({ ...w, i })).sort((a, b) => (rank(a.id) - rank(b.id)) || (a.i - b.i));
|
||||
const widgetIds = ordered.map((w) => w.id);
|
||||
|
||||
const noDevices = devices.length === 0 && !rot.enabled && !ant.enabled;
|
||||
const noDevices = devices.length === 0 && !rot.enabled && !ant.enabled && ampCount === 0;
|
||||
|
||||
// Column count controls the layout: with 4 widgets, choosing "2" lays them out
|
||||
// 2×2 — which linear drag-reorder alone can't do, since the grid auto-flows to
|
||||
@@ -445,11 +599,56 @@ function DeviceEditor({ device, onChange, onSave, onCancel, t }: {
|
||||
const ref = useRef<HTMLDivElement>(null);
|
||||
useEffect(() => { ref.current?.scrollIntoView({ behavior: 'smooth', block: 'nearest' }); }, []);
|
||||
const setType = (type: string) => {
|
||||
const n = RELAY_COUNT[type] ?? 5;
|
||||
const channels = (type === 'denkovi' || type === 'usbrelay') ? (device.channels || 8) : undefined;
|
||||
const n = chanCount({ ...device, type, channels });
|
||||
const labels = Array.from({ length: n }, (_, i) => device.labels[i] ?? '');
|
||||
onChange({ ...device, type, labels });
|
||||
onChange({ ...device, type, channels, labels });
|
||||
};
|
||||
const setChannels = (channels: number) => {
|
||||
const n = chanCount({ ...device, channels });
|
||||
const labels = Array.from({ length: n }, (_, i) => device.labels[i] ?? '');
|
||||
onChange({ ...device, channels, labels });
|
||||
};
|
||||
const isKM = device.type === 'kmtronic';
|
||||
const isDenkovi = device.type === 'denkovi';
|
||||
const isUsbRelay = device.type === 'usbrelay';
|
||||
// COM ports for the generic USB-serial relay picker.
|
||||
const [serialPorts, setSerialPorts] = useState<string[]>([]);
|
||||
useEffect(() => {
|
||||
if (!isUsbRelay) return;
|
||||
ListSerialPorts().then((p) => setSerialPorts((p ?? []) as string[])).catch(() => setSerialPorts([]));
|
||||
}, [isUsbRelay]);
|
||||
// Detected FTDI serials for the Denkovi picker.
|
||||
const [denkoviSerials, setDenkoviSerials] = useState<string[]>([]);
|
||||
const [detecting, setDetecting] = useState(false);
|
||||
const [detectMsg, setDetectMsg] = useState('');
|
||||
const detectDenkovi = async () => {
|
||||
setDetecting(true);
|
||||
setDetectMsg('');
|
||||
try {
|
||||
const list = ((await ListDenkoviDevices()) ?? []) as string[];
|
||||
setDenkoviSerials(list);
|
||||
// Auto-fill when there's exactly one and nothing chosen yet.
|
||||
if (list.length >= 1 && !device.host.trim()) onChange({ ...device, host: list[0] });
|
||||
setDetectMsg(list.length === 0 ? t('station.detectNone') : t('station.detectFound', { n: list.length }));
|
||||
} catch (e: any) { setDenkoviSerials([]); setDetectMsg(String(e?.message || e || t('station.detectNone'))); }
|
||||
finally { setDetecting(false); }
|
||||
};
|
||||
// Connection test result for the current device config.
|
||||
const [testing, setTesting] = useState(false);
|
||||
const [testMsg, setTestMsg] = useState<{ ok: boolean; text: string } | null>(null);
|
||||
const testDevice = async () => {
|
||||
setTesting(true);
|
||||
setTestMsg(null);
|
||||
try {
|
||||
const r: any = await TestStationDevice(device as any);
|
||||
setTestMsg(r?.ok
|
||||
? { ok: true, text: t('station.testOk', { n: r.relays }) }
|
||||
: { ok: false, text: r?.error || t('station.testFail') });
|
||||
} catch (e: any) { setTestMsg({ ok: false, text: String(e?.message || e || t('station.testFail')) }); }
|
||||
finally { setTesting(false); }
|
||||
};
|
||||
useEffect(() => { if (isDenkovi) void detectDenkovi(); /* eslint-disable-next-line */ }, [isDenkovi]);
|
||||
return (
|
||||
<div ref={ref} className="mt-4 max-w-4xl rounded-xl border border-primary/40 bg-card p-4 space-y-3">
|
||||
<div className="text-sm font-semibold">{device.id ? t('station.editDevice') : t('station.addDevice')}</div>
|
||||
@@ -461,6 +660,8 @@ function DeviceEditor({ device, onChange, onSave, onCancel, t }: {
|
||||
<SelectContent>
|
||||
<SelectItem value="webswitch">WebSwitch 1216H (5 relays)</SelectItem>
|
||||
<SelectItem value="kmtronic">KMTronic 8-relay (LAN)</SelectItem>
|
||||
<SelectItem value="denkovi">Denkovi USB (FT245 / D2XX)</SelectItem>
|
||||
<SelectItem value="usbrelay">Denkovi USB (serial / COM)</SelectItem>
|
||||
</SelectContent>
|
||||
</Select>
|
||||
</div>
|
||||
@@ -469,6 +670,55 @@ function DeviceEditor({ device, onChange, onSave, onCancel, t }: {
|
||||
<Input value={device.name} placeholder={TYPE_LABEL[device.type]} onChange={(e) => onChange({ ...device, name: e.target.value })} />
|
||||
</div>
|
||||
</div>
|
||||
{(isDenkovi || isUsbRelay) && (
|
||||
<div className="space-y-1 max-w-[10rem]">
|
||||
<Label>{t('station.channels')}</Label>
|
||||
<Select value={String(chanCount(device))} onValueChange={(v) => setChannels(parseInt(v, 10))}>
|
||||
<SelectTrigger className="h-9"><SelectValue /></SelectTrigger>
|
||||
<SelectContent>
|
||||
{(isDenkovi ? [4, 8] : [1, 2, 4, 8, 16]).map((n) => (
|
||||
<SelectItem key={n} value={String(n)}>{n}</SelectItem>
|
||||
))}
|
||||
</SelectContent>
|
||||
</Select>
|
||||
</div>
|
||||
)}
|
||||
{isDenkovi ? (
|
||||
<div className="space-y-1 max-w-md">
|
||||
<Label>{t('station.ftdiSerial')}</Label>
|
||||
<div className="flex items-center gap-2">
|
||||
<Input className="font-mono flex-1" value={device.host} placeholder="DAE0006K"
|
||||
list="denkovi-serials"
|
||||
onChange={(e) => onChange({ ...device, host: e.target.value })} />
|
||||
<datalist id="denkovi-serials">
|
||||
{denkoviSerials.map((s) => <option key={s} value={s} />)}
|
||||
</datalist>
|
||||
<Button size="sm" variant="outline" onClick={detectDenkovi} disabled={detecting}>
|
||||
{detecting ? <Loader2 className="size-3.5 mr-1 animate-spin" /> : <RefreshCw className="size-3.5 mr-1" />}
|
||||
{t('station.detect')}
|
||||
</Button>
|
||||
</div>
|
||||
<p className="text-[10px] text-muted-foreground">{t('station.ftdiHint')}</p>
|
||||
{detectMsg && <p className="text-[11px] font-medium text-muted-foreground">{detectMsg}</p>}
|
||||
</div>
|
||||
) : isUsbRelay ? (
|
||||
<div className="space-y-1 max-w-md">
|
||||
<Label>{t('station.comPort')}</Label>
|
||||
<div className="flex items-center gap-2">
|
||||
<Select value={device.host || '_'} onValueChange={(v) => onChange({ ...device, host: v === '_' ? '' : v })}>
|
||||
<SelectTrigger className="h-9 flex-1"><SelectValue placeholder="— COM —" /></SelectTrigger>
|
||||
<SelectContent>
|
||||
{serialPorts.length === 0 && <SelectItem value="_" disabled>{t('station.noPorts')}</SelectItem>}
|
||||
{serialPorts.map((p) => <SelectItem key={p} value={p}>{p}</SelectItem>)}
|
||||
</SelectContent>
|
||||
</Select>
|
||||
<Button size="sm" variant="outline" onClick={() => ListSerialPorts().then((p) => setSerialPorts((p ?? []) as string[])).catch(() => {})}>
|
||||
<RefreshCw className="size-3.5" />
|
||||
</Button>
|
||||
</div>
|
||||
<p className="text-[10px] text-muted-foreground">{t('station.usbRelayHint')}</p>
|
||||
</div>
|
||||
) : (
|
||||
<div className={cn('grid gap-3', isKM ? 'grid-cols-3' : 'grid-cols-1')}>
|
||||
<div className={cn('space-y-1', isKM ? '' : 'max-w-xs')}>
|
||||
<Label>{t('station.host')}</Label>
|
||||
@@ -487,6 +737,7 @@ function DeviceEditor({ device, onChange, onSave, onCancel, t }: {
|
||||
</>
|
||||
)}
|
||||
</div>
|
||||
)}
|
||||
<div className="space-y-1">
|
||||
<Label>{t('station.labels')}</Label>
|
||||
<div className="grid grid-cols-4 gap-2">
|
||||
@@ -496,9 +747,21 @@ function DeviceEditor({ device, onChange, onSave, onCancel, t }: {
|
||||
))}
|
||||
</div>
|
||||
</div>
|
||||
<div className="flex justify-end gap-2">
|
||||
<Button size="sm" variant="ghost" onClick={onCancel}><X className="size-3.5 mr-1" />{t('station.cancel')}</Button>
|
||||
<Button size="sm" onClick={onSave} disabled={!device.host.trim()}><Check className="size-3.5 mr-1" />{t('station.save')}</Button>
|
||||
<div className="flex items-center gap-2">
|
||||
{testMsg && (
|
||||
<span className={cn('inline-flex items-center gap-1.5 text-xs font-medium', testMsg.ok ? 'text-success' : 'text-danger')}>
|
||||
<span className={cn('size-2 rounded-full', testMsg.ok ? 'bg-success' : 'bg-danger')} />
|
||||
{testMsg.text}
|
||||
</span>
|
||||
)}
|
||||
<div className="ml-auto flex gap-2">
|
||||
<Button size="sm" variant="outline" onClick={testDevice} disabled={testing || !device.host.trim()}>
|
||||
{testing ? <Loader2 className="size-3.5 mr-1 animate-spin" /> : <PlugZap className="size-3.5 mr-1" />}
|
||||
{t('station.test')}
|
||||
</Button>
|
||||
<Button size="sm" variant="ghost" onClick={onCancel}><X className="size-3.5 mr-1" />{t('station.cancel')}</Button>
|
||||
<Button size="sm" onClick={onSave} disabled={!device.host.trim()}><Check className="size-3.5 mr-1" />{t('station.save')}</Button>
|
||||
</div>
|
||||
</div>
|
||||
</div>
|
||||
);
|
||||
|
||||
@@ -23,14 +23,16 @@ import { cn } from '@/lib/utils';
|
||||
// ─────────────────────────────────────────────────────────────────────────────
|
||||
|
||||
type Bucket = { key: string; count: number };
|
||||
type BandCat = { band: string; cw: number; phone: number; data: number; total: number };
|
||||
type Gap = { start: string; end: string; minutes: number };
|
||||
type ContestRun = { id: string; year: number; count: number; start: string; end: string };
|
||||
type Stats = {
|
||||
total: number; unique_calls: number; entities: number; continents: number;
|
||||
first_qso: string; last_qso: string;
|
||||
confirmed_lotw: number; confirmed_eqsl: number; confirmed_qsl: number; confirmed_any: number;
|
||||
by_mode: Bucket[]; by_band: Bucket[]; by_operator: Bucket[]; by_station: Bucket[];
|
||||
by_mode: Bucket[]; by_band: Bucket[]; by_band_category: BandCat[]; by_operator: Bucket[]; by_station: Bucket[];
|
||||
by_continent: Bucket[]; top_entities: Bucket[]; by_year: Bucket[]; by_month: Bucket[];
|
||||
by_hour: Bucket[]; by_day7: Bucket[]; by_day30: Bucket[]; by_month12: Bucket[];
|
||||
// Period / contest metrics.
|
||||
window_start: string; window_end: string; window_hours: number;
|
||||
avg_per_hour: number; avg_per_active: number;
|
||||
@@ -157,6 +159,47 @@ function VBars({ data, empty, height = 150, showValues, colorful }: { data: Buck
|
||||
);
|
||||
}
|
||||
|
||||
// Per-band mode split (CW / phone / data) as stacked vertical bars. The three
|
||||
// categories are the subject → categorical colour in a fixed order, matching the
|
||||
// mode colours used elsewhere (CW gold, phone green, data blue).
|
||||
const BAND_SPLIT = [
|
||||
{ key: 'cw', label: 'CW', color: 'var(--chart-3)' },
|
||||
{ key: 'phone', label: 'Phone', color: 'var(--chart-2)' },
|
||||
{ key: 'data', label: 'Data', color: 'var(--chart-1)' },
|
||||
] as const;
|
||||
function StackedBandBars({ data, empty, height = 150 }: { data: BandCat[]; empty: string; height?: number }) {
|
||||
if (!data || data.length === 0) return <p className="text-[11px] text-muted-foreground italic py-4 text-center">{empty}</p>;
|
||||
const peak = Math.max(1, ...data.map((d) => d.total));
|
||||
return (
|
||||
<div>
|
||||
<div className="flex items-end gap-[3px] min-w-0" style={{ height }}>
|
||||
{data.map((d) => (
|
||||
<div key={d.band} className="flex-1 min-w-0 flex flex-col items-center justify-end h-full group"
|
||||
title={`${d.band} — CW ${nf(d.cw)} · Phone ${nf(d.phone)} · Data ${nf(d.data)} (${nf(d.total)})`}>
|
||||
<span className="text-[9px] font-semibold mb-0.5 tabular-nums text-foreground">{nf(d.total)}</span>
|
||||
<div className="w-full flex flex-col justify-end rounded-t-[4px] overflow-hidden"
|
||||
style={{ height: `${Math.max(2, (d.total / peak) * 100)}%` }}>
|
||||
{BAND_SPLIT.map((s) => {
|
||||
const v = d[s.key];
|
||||
if (!v) return null;
|
||||
return <div key={s.key} style={{ flexGrow: v, flexBasis: 0, minHeight: 1, background: s.color }} />;
|
||||
})}
|
||||
</div>
|
||||
<span className="mt-1 h-3 text-[9px] text-muted-foreground w-full text-center whitespace-nowrap">{d.band}</span>
|
||||
</div>
|
||||
))}
|
||||
</div>
|
||||
<div className="mt-2 flex items-center justify-center gap-3 text-[10px] text-muted-foreground">
|
||||
{BAND_SPLIT.map((s) => (
|
||||
<span key={s.key} className="inline-flex items-center gap-1">
|
||||
<span className="size-2.5 rounded-[3px]" style={{ background: s.color }} /> {s.label}
|
||||
</span>
|
||||
))}
|
||||
</div>
|
||||
</div>
|
||||
);
|
||||
}
|
||||
|
||||
// ── Contest rate, stacked by operator ────────────────────────────────────────
|
||||
// The categories (the operators) ARE the subject, so this is categorical colour,
|
||||
// in the FIXED order the backend sends (busiest first). An operator therefore
|
||||
@@ -462,6 +505,38 @@ function periodRange(p: Period, from: string, to: string): [string, string] {
|
||||
}
|
||||
}
|
||||
|
||||
// ActivityCard — the "activity over time" chart with a granularity selector. Its
|
||||
// own state, module-scoped so a parent re-render doesn't reset the choice. The
|
||||
// timeline is the chronological month series; day/week/month/year are the cyclical
|
||||
// distributions (hour-of-day, day-of-week, day-of-month, month-of-year).
|
||||
const ACT_GRAN = [
|
||||
{ key: 'timeline', tkey: 'stats.granTimeline' },
|
||||
{ key: 'day', tkey: 'stats.granDay' },
|
||||
{ key: 'week', tkey: 'stats.granWeek' },
|
||||
{ key: 'month', tkey: 'stats.granMonth' },
|
||||
{ key: 'year', tkey: 'stats.granYear' },
|
||||
] as const;
|
||||
function ActivityCard({ stats, t, empty }: { stats: Stats; t: (k: string, v?: any) => string; empty: string }) {
|
||||
const [g, setG] = useState<string>('timeline');
|
||||
const series = g === 'day' ? stats.by_hour : g === 'week' ? stats.by_day7 : g === 'month' ? stats.by_day30 : g === 'year' ? stats.by_month12 : [];
|
||||
return (
|
||||
<Card title={t('stats.overTime')} sub={t('stats.overTimeSub')} className="lg:col-span-2" accent="var(--chart-1)">
|
||||
<div className="mb-2 flex flex-wrap gap-1">
|
||||
{ACT_GRAN.map((o) => (
|
||||
<button key={o.key} type="button" onClick={() => setG(o.key)}
|
||||
className={cn('px-2 py-0.5 rounded-md text-[11px] border transition-colors',
|
||||
g === o.key ? 'bg-primary text-primary-foreground border-primary' : 'border-border text-muted-foreground hover:bg-muted')}>
|
||||
{t(o.tkey)}
|
||||
</button>
|
||||
))}
|
||||
</div>
|
||||
{g === 'timeline'
|
||||
? <AreaTrend data={stats.by_month} empty={empty} />
|
||||
: <VBars data={series} empty={empty} showValues height={160} />}
|
||||
</Card>
|
||||
);
|
||||
}
|
||||
|
||||
// ── Table view (the WCAG-clean twin) ─────────────────────────────────────────
|
||||
|
||||
function BucketTable({ title, data }: { title: string; data: Bucket[] }) {
|
||||
@@ -524,9 +599,10 @@ export function StatsPanel() {
|
||||
const arr = (v: any) => (Array.isArray(v) ? v : []);
|
||||
setStats({
|
||||
...raw,
|
||||
by_mode: arr(raw.by_mode), by_band: arr(raw.by_band), by_operator: arr(raw.by_operator),
|
||||
by_mode: arr(raw.by_mode), by_band: arr(raw.by_band), by_band_category: arr(raw.by_band_category), by_operator: arr(raw.by_operator),
|
||||
by_station: arr(raw.by_station), by_continent: arr(raw.by_continent),
|
||||
top_entities: arr(raw.top_entities), by_year: arr(raw.by_year), by_month: arr(raw.by_month),
|
||||
by_hour: arr(raw.by_hour), by_day7: arr(raw.by_day7), by_day30: arr(raw.by_day30), by_month12: arr(raw.by_month12),
|
||||
rate: arr(raw.rate), gaps: arr(raw.gaps),
|
||||
rate_ops: arr(raw.rate_ops), rate_by_op: arr(raw.rate_by_op),
|
||||
} as Stats);
|
||||
@@ -734,16 +810,14 @@ export function StatsPanel() {
|
||||
</div>
|
||||
) : (
|
||||
<div className="grid grid-cols-1 lg:grid-cols-2 gap-2.5">
|
||||
<Card title={t('stats.byBand')} sub={t('stats.byBandSub')} accent="var(--chart-3)">
|
||||
<VBars data={stats.by_band} empty={empty} showValues colorful />
|
||||
<Card title={t('stats.bandSplit')} sub={t('stats.bandSplitSub')} accent="var(--chart-3)">
|
||||
<StackedBandBars data={stats.by_band_category} empty={empty} />
|
||||
</Card>
|
||||
<Card title={t('stats.byMode')} accent="var(--chart-2)">
|
||||
<HBars data={stats.by_mode} max={8} empty={empty} colorful />
|
||||
</Card>
|
||||
|
||||
<Card title={t('stats.overTime')} sub={t('stats.overTimeSub')} className="lg:col-span-2" accent="var(--chart-1)">
|
||||
<AreaTrend data={stats.by_month} empty={empty} />
|
||||
</Card>
|
||||
<ActivityCard stats={stats} t={t} empty={empty} />
|
||||
|
||||
{/* EVERY operator, never a top-N: on a multi-op contest the point is who
|
||||
worked what, and a cap would quietly delete the 9th operator. Scrolls
|
||||
|
||||
@@ -26,7 +26,7 @@ interface Props {
|
||||
wpm: number;
|
||||
macros: WKMacro[];
|
||||
sent: string; // text echoed back by the keyer as it transmits
|
||||
source: 'winkeyer' | 'icom'; // CW output engine (chosen in Settings → CW Keyer)
|
||||
source: 'winkeyer' | 'icom' | 'flex'; // CW output engine (chosen in Settings → CW Keyer)
|
||||
breakIn?: number; // Icom CW break-in: 0=OFF, 1=SEMI, 2=FULL
|
||||
onSetBreakIn?: (mode: number) => void;
|
||||
onSelectPort: (p: string) => void;
|
||||
@@ -101,14 +101,16 @@ export function WinkeyerPanel({
|
||||
<Radio className="size-4 text-primary shrink-0" />
|
||||
{/* CW output engine (chosen in Settings → CW Keyer). */}
|
||||
<span className="text-xs font-semibold uppercase tracking-wider text-muted-foreground shrink-0">
|
||||
{source === 'icom' ? 'Icom CW' : 'WinKeyer'}
|
||||
{source === 'icom' ? 'Icom CW' : source === 'flex' ? 'Flex CWX' : 'WinKeyer'}
|
||||
</span>
|
||||
<span className={cn('size-2 rounded-full', connected ? (status.busy ? 'bg-warning animate-pulse' : 'bg-success') : 'bg-muted-foreground/40')}
|
||||
title={connected ? (status.busy ? t('wkp.sending') : t('wkp.connectedV', { version: status.version })) : t('wkp.disconnected')} />
|
||||
<div className="flex-1" />
|
||||
{source === 'icom' ? (
|
||||
{source === 'icom' || source === 'flex' ? (
|
||||
<span className="text-[11px] font-medium text-muted-foreground">
|
||||
{connected ? t('wkp.civReady') : t('wkp.civOffline')}
|
||||
{source === 'flex'
|
||||
? (connected ? t('wkp.cwxReady') : t('wkp.cwxOffline'))
|
||||
: (connected ? t('wkp.civReady') : t('wkp.civOffline'))}
|
||||
</span>
|
||||
) : !connected ? (
|
||||
<>
|
||||
@@ -183,7 +185,7 @@ export function WinkeyerPanel({
|
||||
<div className="flex flex-col flex-1 min-w-0">
|
||||
<Label className="mb-1 h-3.5 text-xs flex items-center gap-2">
|
||||
{t('wkp.cwText')}
|
||||
{source === 'winkeyer' && (
|
||||
{(source === 'winkeyer' || source === 'flex') && (
|
||||
<label className="flex items-center gap-1 text-[10px] font-normal cursor-pointer text-muted-foreground"
|
||||
title={t('wkp.sendOnTypeHint')}>
|
||||
<input type="checkbox" className="accent-primary" checked={sendOnType}
|
||||
|
||||
@@ -6,11 +6,32 @@
|
||||
// back to the DB copy and re-seed the cache.
|
||||
import { GetUIPref, SetUIPref } from '../../wailsjs/go/main/App';
|
||||
|
||||
// The DB copy is ALREADY per-profile (the backend prefixes every ui.* key with
|
||||
// the active profile id). The localStorage cache, however, is one namespace for
|
||||
// the whole WebView, so without scoping it too a profile switch would keep
|
||||
// serving the previous profile's cached layout and the correct per-profile DB
|
||||
// value would never win. lsScope makes the cache per-profile as well; it's set
|
||||
// once the active profile is known and updated on every profile switch.
|
||||
let lsScope = '';
|
||||
|
||||
// setGridPrefsProfile scopes the localStorage cache to a profile. Call it before
|
||||
// the grids read their state (at startup) and again whenever the active profile
|
||||
// changes so each profile keeps its own column layout / widths.
|
||||
export function setGridPrefsProfile(id: number | string | null | undefined): void {
|
||||
lsScope = id == null || id === '' ? '' : `p${id}.`;
|
||||
}
|
||||
|
||||
// lsKey scopes ONLY the localStorage cache key. The DB key passed to
|
||||
// GetUIPref/SetUIPref is left untouched — the backend already scopes it.
|
||||
function lsKey(key: string): string {
|
||||
return lsScope + key;
|
||||
}
|
||||
|
||||
// loadLocal reads the cached column state synchronously (used in onGridReady
|
||||
// to apply instantly, before the async DB round-trip).
|
||||
export function loadLocal(key: string): any[] | null {
|
||||
try {
|
||||
const raw = localStorage.getItem(key);
|
||||
const raw = localStorage.getItem(lsKey(key));
|
||||
const v = raw ? JSON.parse(raw) : null;
|
||||
return Array.isArray(v) ? v : null;
|
||||
} catch {
|
||||
@@ -29,15 +50,16 @@ export async function loadRemote(key: string): Promise<any[] | null> {
|
||||
}
|
||||
}
|
||||
|
||||
// saveState write-throughs to both the cache and the DB (fire-and-forget).
|
||||
// saveState write-throughs to both the cache and the DB (fire-and-forget). Only
|
||||
// the cache key is profile-scoped; the DB key is scoped by the backend.
|
||||
export function saveState(key: string, state: any[]) {
|
||||
const json = JSON.stringify(state);
|
||||
try { localStorage.setItem(key, json); } catch { /* quota / private mode */ }
|
||||
try { localStorage.setItem(lsKey(key), json); } catch { /* quota / private mode */ }
|
||||
SetUIPref(key, json).catch(() => { /* DB unavailable — cache still holds it */ });
|
||||
}
|
||||
|
||||
// seedLocal writes a value into the cache without touching the DB (used after
|
||||
// hydrating the cache from the DB on a fresh machine).
|
||||
export function seedLocal(key: string, state: any[]) {
|
||||
try { localStorage.setItem(key, JSON.stringify(state)); } catch { /* ignore */ }
|
||||
try { localStorage.setItem(lsKey(key), JSON.stringify(state)); } catch { /* ignore */ }
|
||||
}
|
||||
|
||||
+50
-30
File diff suppressed because one or more lines are too long
@@ -25,6 +25,7 @@ const PORTABLE_KEYS = [
|
||||
'opslog.mapAutoZoomDX', // Main map: auto-zoom to the DX (vs free pan/zoom)
|
||||
'opslog.mapView', // Main map: remembered free-pan view (lat/lon/zoom)
|
||||
'opslog.lookupOnBlur', // run the callsign lookup on blur instead of while typing
|
||||
'opslog.groupDigitalSlots', // matrix + cluster: all digital modes count as ONE (DXCC-style) instead of per-mode slots
|
||||
'opslog.clusterShowFilters', // cluster filter sidebar shown (tab + Main pane)
|
||||
'opslog.mapBasemap', // world map basemap (light / street / satellite)
|
||||
// Cluster filter selections — restored on reopen.
|
||||
@@ -32,7 +33,10 @@ const PORTABLE_KEYS = [
|
||||
'opslog.clusterLockBand', 'opslog.clusterLockMode', 'opslog.clusterStatusFilter',
|
||||
'opslog.clusterModeFilter', 'opslog.clusterSearch', 'opslog.clusterHideWorked',
|
||||
'opslog.activeTab', // last selected tab
|
||||
'hamlog.awardColsShown', // which award columns are shown in the QSO grid
|
||||
// NOTE: 'hamlog.awardColsShown' and the grid column layouts are NOT listed here.
|
||||
// They are handled by lib/gridPrefs, which scopes the localStorage cache PER
|
||||
// PROFILE and mirrors to the DB (already per-profile) itself — mirroring them
|
||||
// through this global path would fight that per-profile scoping.
|
||||
];
|
||||
|
||||
// syncPortablePrefs reconciles the DB with the local cache at startup:
|
||||
|
||||
@@ -1,6 +1,6 @@
|
||||
// Single source of truth for the app version shown in the UI (header + About).
|
||||
// Bump this on a release (the release script updates it alongside telemetry.go).
|
||||
export const APP_VERSION = '0.20.1';
|
||||
export const APP_VERSION = '0.20.9';
|
||||
|
||||
// Author / credits, shown in Help -> About.
|
||||
export const APP_AUTHOR = 'F4BPO';
|
||||
|
||||
Vendored
+83
-13
@@ -5,12 +5,14 @@ import {qso} from '../models';
|
||||
import {main} from '../models';
|
||||
import {cat} from '../models';
|
||||
import {profile} from '../models';
|
||||
import {acom} from '../models';
|
||||
import {antgenius} from '../models';
|
||||
import {award} from '../models';
|
||||
import {awardref} from '../models';
|
||||
import {cluster} from '../models';
|
||||
import {extsvc} from '../models';
|
||||
import {powergenius} from '../models';
|
||||
import {spe} from '../models';
|
||||
import {solar} from '../models';
|
||||
import {winkeyer} from '../models';
|
||||
import {alerts} from '../models';
|
||||
@@ -22,6 +24,10 @@ import {lotwusers} from '../models';
|
||||
import {lookup} from '../models';
|
||||
import {netctl} from '../models';
|
||||
|
||||
export function ACOMSetOperate(arg1:boolean):Promise<void>;
|
||||
|
||||
export function ACOMSetPower(arg1:boolean):Promise<void>;
|
||||
|
||||
export function ADIFFields():Promise<Array<adif.FieldDef>>;
|
||||
|
||||
export function ADIFVersion():Promise<string>;
|
||||
@@ -30,6 +36,14 @@ export function ActivateProfile(arg1:number):Promise<void>;
|
||||
|
||||
export function AddQSO(arg1:qso.QSO):Promise<number>;
|
||||
|
||||
export function AmpFanMode(arg1:string,arg2:string):Promise<void>;
|
||||
|
||||
export function AmpOperate(arg1:string,arg2:boolean):Promise<void>;
|
||||
|
||||
export function AmpPower(arg1:string,arg2:boolean):Promise<void>;
|
||||
|
||||
export function AmpPowerLevel(arg1:string,arg2:string):Promise<void>;
|
||||
|
||||
export function AntGeniusActivate(arg1:number,arg2:number):Promise<void>;
|
||||
|
||||
export function AntGeniusDeselect(arg1:number):Promise<void>;
|
||||
@@ -72,8 +86,6 @@ export function BulkUpdateField(arg1:Array<number>,arg2:string,arg3:string):Prom
|
||||
|
||||
export function BulkUpdateQSL(arg1:Array<number>,arg2:main.QSLBulkUpdate):Promise<number>;
|
||||
|
||||
export function CWDecoderRunning():Promise<boolean>;
|
||||
|
||||
export function ChatAvailable():Promise<boolean>;
|
||||
|
||||
export function CheckForUpdate():Promise<main.UpdateInfo>;
|
||||
@@ -146,6 +158,8 @@ export function DismissAwardUpdate(arg1:string):Promise<void>;
|
||||
|
||||
export function DownloadAllReferenceLists():Promise<string>;
|
||||
|
||||
export function DownloadAndApplyUpdate(arg1:string):Promise<void>;
|
||||
|
||||
export function DownloadClublogCty():Promise<main.ClublogCtyInfo>;
|
||||
|
||||
export function DownloadConfirmations(arg1:string,arg2:boolean,arg3:string):Promise<void>;
|
||||
@@ -166,6 +180,8 @@ export function ExportADIFSelected(arg1:string,arg2:boolean,arg3:Array<number>):
|
||||
|
||||
export function ExportAward(arg1:string):Promise<string>;
|
||||
|
||||
export function ExportAwardForCatalog(arg1:string,arg2:number):Promise<string>;
|
||||
|
||||
export function ExportAwards():Promise<string>;
|
||||
|
||||
export function ExportCabrillo(arg1:string):Promise<main.CabrilloResult>;
|
||||
@@ -188,8 +204,12 @@ export function FlexAmpOperate(arg1:boolean):Promise<void>;
|
||||
|
||||
export function FlexApplyBandAntenna(arg1:string):Promise<void>;
|
||||
|
||||
export function FlexBackspaceCW(arg1:number):Promise<void>;
|
||||
|
||||
export function FlexMox(arg1:boolean):Promise<void>;
|
||||
|
||||
export function FlexSendCW(arg1:string):Promise<void>;
|
||||
|
||||
export function FlexSetAGCMode(arg1:string):Promise<void>;
|
||||
|
||||
export function FlexSetAGCThreshold(arg1:number):Promise<void>;
|
||||
@@ -198,6 +218,8 @@ export function FlexSetANF(arg1:boolean):Promise<void>;
|
||||
|
||||
export function FlexSetANFLevel(arg1:number):Promise<void>;
|
||||
|
||||
export function FlexSetANFT(arg1:boolean):Promise<void>;
|
||||
|
||||
export function FlexSetAPF(arg1:boolean):Promise<void>;
|
||||
|
||||
export function FlexSetAPFLevel(arg1:number):Promise<void>;
|
||||
@@ -218,8 +240,20 @@ export function FlexSetCWSidetone(arg1:boolean):Promise<void>;
|
||||
|
||||
export function FlexSetCWSpeed(arg1:number):Promise<void>;
|
||||
|
||||
export function FlexSetDAX(arg1:number):Promise<void>;
|
||||
|
||||
export function FlexSetFilter(arg1:number,arg2:number):Promise<void>;
|
||||
|
||||
export function FlexSetKeySpeed(arg1:number):Promise<void>;
|
||||
|
||||
export function FlexSetLMSANF(arg1:boolean):Promise<void>;
|
||||
|
||||
export function FlexSetLMSANFLevel(arg1:number):Promise<void>;
|
||||
|
||||
export function FlexSetLMSNR(arg1:boolean):Promise<void>;
|
||||
|
||||
export function FlexSetLMSNRLevel(arg1:number):Promise<void>;
|
||||
|
||||
export function FlexSetMic(arg1:number):Promise<void>;
|
||||
|
||||
export function FlexSetMicProfile(arg1:string):Promise<void>;
|
||||
@@ -236,6 +270,10 @@ export function FlexSetNBLevel(arg1:number):Promise<void>;
|
||||
|
||||
export function FlexSetNR(arg1:boolean):Promise<void>;
|
||||
|
||||
export function FlexSetNRF(arg1:boolean):Promise<void>;
|
||||
|
||||
export function FlexSetNRFLevel(arg1:number):Promise<void>;
|
||||
|
||||
export function FlexSetNRLevel(arg1:number):Promise<void>;
|
||||
|
||||
export function FlexSetPower(arg1:number):Promise<void>;
|
||||
@@ -248,14 +286,22 @@ export function FlexSetRIT(arg1:boolean):Promise<void>;
|
||||
|
||||
export function FlexSetRITFreq(arg1:number):Promise<void>;
|
||||
|
||||
export function FlexSetRNN(arg1:boolean):Promise<void>;
|
||||
|
||||
export function FlexSetRXAntenna(arg1:string):Promise<void>;
|
||||
|
||||
export function FlexSetSidetoneLevel(arg1:number):Promise<void>;
|
||||
|
||||
export function FlexSetSpeexNR(arg1:boolean):Promise<void>;
|
||||
|
||||
export function FlexSetSpeexNRLevel(arg1:number):Promise<void>;
|
||||
|
||||
export function FlexSetSplit(arg1:boolean):Promise<void>;
|
||||
|
||||
export function FlexSetTXAntenna(arg1:string):Promise<void>;
|
||||
|
||||
export function FlexSetTXDAX(arg1:boolean):Promise<void>;
|
||||
|
||||
export function FlexSetTXFilter(arg1:number,arg2:number):Promise<void>;
|
||||
|
||||
export function FlexSetTXSlice(arg1:number):Promise<void>;
|
||||
@@ -276,14 +322,22 @@ export function FlexSetXIT(arg1:boolean):Promise<void>;
|
||||
|
||||
export function FlexSetXITFreq(arg1:number):Promise<void>;
|
||||
|
||||
export function FlexStopCW():Promise<void>;
|
||||
|
||||
export function FlexTune(arg1:boolean):Promise<void>;
|
||||
|
||||
export function GetACOMStatus():Promise<acom.Status>;
|
||||
|
||||
export function GetADIFMonitor():Promise<main.ADIFMonitorConfig>;
|
||||
|
||||
export function GetActiveProfile():Promise<profile.Profile>;
|
||||
|
||||
export function GetAlertEmailTo():Promise<string>;
|
||||
|
||||
export function GetAmpStatuses():Promise<Array<main.AmpStatus>>;
|
||||
|
||||
export function GetAmplifiers():Promise<Array<main.AmpConfig>>;
|
||||
|
||||
export function GetAntGeniusSettings():Promise<main.AntGeniusSettings>;
|
||||
|
||||
export function GetAntGeniusStatus():Promise<antgenius.Status>;
|
||||
@@ -312,10 +366,10 @@ export function GetCATSettings():Promise<main.CATSettings>;
|
||||
|
||||
export function GetCATState():Promise<cat.RigState>;
|
||||
|
||||
export function GetCWDecoderPitch():Promise<number>;
|
||||
|
||||
export function GetCatalogCodes():Promise<Array<string>>;
|
||||
|
||||
export function GetChangelog():Promise<Array<main.ChangelogEntry>>;
|
||||
|
||||
export function GetChatHistory(arg1:number):Promise<Array<main.ChatMessage>>;
|
||||
|
||||
export function GetClublogCtyInfo():Promise<main.ClublogCtyInfo>;
|
||||
@@ -352,7 +406,7 @@ export function GetIcomState():Promise<cat.IcomTXState>;
|
||||
|
||||
export function GetListsSettings():Promise<main.ListsSettings>;
|
||||
|
||||
export function GetLiveStatusEnabled():Promise<boolean>;
|
||||
export function GetLiveStations():Promise<Array<main.LiveStation>>;
|
||||
|
||||
export function GetLoTWUsersStatus():Promise<main.LoTWUsersStatus>;
|
||||
|
||||
@@ -392,6 +446,8 @@ export function GetRotatorHeading():Promise<main.RotatorHeading>;
|
||||
|
||||
export function GetRotatorSettings():Promise<main.RotatorSettings>;
|
||||
|
||||
export function GetSPEStatus():Promise<spe.Status>;
|
||||
|
||||
export function GetSecretStatus():Promise<main.SecretStatus>;
|
||||
|
||||
export function GetSlotStats():Promise<qso.SlotStats>;
|
||||
@@ -414,6 +470,8 @@ export function GetUltrabeamSettings():Promise<main.UltrabeamSettings>;
|
||||
|
||||
export function GetUltrabeamStatus():Promise<main.UltrabeamStatusInfo>;
|
||||
|
||||
export function GetWhatsNew():Promise<Array<main.ChangelogEntry>>;
|
||||
|
||||
export function GetWinkeyerSettings():Promise<main.WinkeyerSettings>;
|
||||
|
||||
export function GetWinkeyerStatus():Promise<winkeyer.Status>;
|
||||
@@ -532,6 +590,8 @@ export function ListContests():Promise<Array<contest.Def>>;
|
||||
|
||||
export function ListCountries():Promise<Array<string>>;
|
||||
|
||||
export function ListDenkoviDevices():Promise<Array<string>>;
|
||||
|
||||
export function ListOperatingTree():Promise<Array<operating.Station>>;
|
||||
|
||||
export function ListProfiles():Promise<Array<profile.Profile>>;
|
||||
@@ -546,6 +606,8 @@ export function ListTQSLStationLocations():Promise<Array<extsvc.StationLocation>
|
||||
|
||||
export function ListUDPIntegrations():Promise<Array<udp.Config>>;
|
||||
|
||||
export function LiveLastQSOAgeSec():Promise<number>;
|
||||
|
||||
export function LoTWUserInfo(arg1:string):Promise<lotwusers.Info>;
|
||||
|
||||
export function LogUDPLoggedADIF(arg1:string):Promise<number>;
|
||||
@@ -604,6 +666,8 @@ export function OperatingDefaultForBand(arg1:string):Promise<operating.BandDefau
|
||||
|
||||
export function PGXLSetFanMode(arg1:string):Promise<void>;
|
||||
|
||||
export function PGXLSetOperate(arg1:boolean):Promise<void>;
|
||||
|
||||
export function PickADIFMonitorFile():Promise<string>;
|
||||
|
||||
export function PickAudioFolder():Promise<string>;
|
||||
@@ -660,6 +724,8 @@ export function QSOAudioRestart():Promise<boolean>;
|
||||
|
||||
export function QuitApp():Promise<void>;
|
||||
|
||||
export function RecomputeAllAwardRefs():Promise<number>;
|
||||
|
||||
export function RefreshCtyDat():Promise<main.CtyDatInfo>;
|
||||
|
||||
export function RefreshSolar():Promise<void>;
|
||||
@@ -668,6 +734,8 @@ export function ReloadUDPIntegrations():Promise<Array<string>>;
|
||||
|
||||
export function RemovePassphrase(arg1:string):Promise<void>;
|
||||
|
||||
export function RenameDatabase(arg1:string):Promise<void>;
|
||||
|
||||
export function RenderEQSL(arg1:number,arg2:number):Promise<string>;
|
||||
|
||||
export function ReplaceAwardReferences(arg1:string,arg2:Array<awardref.Ref>):Promise<number>;
|
||||
@@ -694,12 +762,20 @@ export function RotatorStop():Promise<void>;
|
||||
|
||||
export function RunBackupNow():Promise<string>;
|
||||
|
||||
export function SPESetOperate(arg1:boolean):Promise<void>;
|
||||
|
||||
export function SPESetPower(arg1:boolean):Promise<void>;
|
||||
|
||||
export function SPESetPowerLevel(arg1:string):Promise<void>;
|
||||
|
||||
export function SaveADIFFile():Promise<string>;
|
||||
|
||||
export function SaveADIFMonitor(arg1:main.ADIFMonitorConfig):Promise<void>;
|
||||
|
||||
export function SaveAlertRule(arg1:alerts.Rule):Promise<alerts.Rule>;
|
||||
|
||||
export function SaveAmplifiers(arg1:Array<main.AmpConfig>):Promise<void>;
|
||||
|
||||
export function SaveAntGeniusSettings(arg1:main.AntGeniusSettings):Promise<void>;
|
||||
|
||||
export function SaveAudioSettings(arg1:main.AudioSettings):Promise<void>;
|
||||
@@ -774,8 +850,6 @@ export function SetCATFrequency(arg1:number):Promise<void>;
|
||||
|
||||
export function SetCATMode(arg1:string):Promise<void>;
|
||||
|
||||
export function SetCWDecoderPitch(arg1:number):Promise<void>;
|
||||
|
||||
export function SetClublogCtyEnabled(arg1:boolean):Promise<void>;
|
||||
|
||||
export function SetClusterAutoConnect(arg1:boolean):Promise<void>;
|
||||
@@ -784,8 +858,6 @@ export function SetCompactMode(arg1:boolean):Promise<void>;
|
||||
|
||||
export function SetDVKLabel(arg1:number,arg2:string):Promise<void>;
|
||||
|
||||
export function SetLiveStatusEnabled(arg1:boolean):Promise<void>;
|
||||
|
||||
export function SetPassphrase(arg1:string):Promise<void>;
|
||||
|
||||
export function SetTelemetryEnabled(arg1:boolean):Promise<void>;
|
||||
@@ -794,12 +866,8 @@ export function SetUIPref(arg1:string,arg2:string):Promise<void>;
|
||||
|
||||
export function SetUltrabeamDirection(arg1:number):Promise<void>;
|
||||
|
||||
export function StartCWDecoder():Promise<void>;
|
||||
|
||||
export function StationSetRelay(arg1:string,arg2:number,arg3:boolean):Promise<void>;
|
||||
|
||||
export function StopCWDecoder():Promise<void>;
|
||||
|
||||
export function SwitchCATRig(arg1:number):Promise<void>;
|
||||
|
||||
export function SyncPOTAHunterLog(arg1:boolean,arg2:boolean):Promise<main.POTASyncResult>;
|
||||
@@ -824,6 +892,8 @@ export function TestQRZUpload():Promise<string>;
|
||||
|
||||
export function TestRotator(arg1:main.RotatorSettings):Promise<void>;
|
||||
|
||||
export function TestStationDevice(arg1:main.StationDevice):Promise<main.StationTestResult>;
|
||||
|
||||
export function TestUltrabeam(arg1:main.UltrabeamSettings):Promise<void>;
|
||||
|
||||
export function ULSStatus():Promise<main.ULSStatusResult>;
|
||||
|
||||
+162
-26
@@ -2,6 +2,14 @@
|
||||
// Cynhyrchwyd y ffeil hon yn awtomatig. PEIDIWCH Â MODIWL
|
||||
// This file is automatically generated. DO NOT EDIT
|
||||
|
||||
export function ACOMSetOperate(arg1) {
|
||||
return window['go']['main']['App']['ACOMSetOperate'](arg1);
|
||||
}
|
||||
|
||||
export function ACOMSetPower(arg1) {
|
||||
return window['go']['main']['App']['ACOMSetPower'](arg1);
|
||||
}
|
||||
|
||||
export function ADIFFields() {
|
||||
return window['go']['main']['App']['ADIFFields']();
|
||||
}
|
||||
@@ -18,6 +26,22 @@ export function AddQSO(arg1) {
|
||||
return window['go']['main']['App']['AddQSO'](arg1);
|
||||
}
|
||||
|
||||
export function AmpFanMode(arg1, arg2) {
|
||||
return window['go']['main']['App']['AmpFanMode'](arg1, arg2);
|
||||
}
|
||||
|
||||
export function AmpOperate(arg1, arg2) {
|
||||
return window['go']['main']['App']['AmpOperate'](arg1, arg2);
|
||||
}
|
||||
|
||||
export function AmpPower(arg1, arg2) {
|
||||
return window['go']['main']['App']['AmpPower'](arg1, arg2);
|
||||
}
|
||||
|
||||
export function AmpPowerLevel(arg1, arg2) {
|
||||
return window['go']['main']['App']['AmpPowerLevel'](arg1, arg2);
|
||||
}
|
||||
|
||||
export function AntGeniusActivate(arg1, arg2) {
|
||||
return window['go']['main']['App']['AntGeniusActivate'](arg1, arg2);
|
||||
}
|
||||
@@ -102,10 +126,6 @@ export function BulkUpdateQSL(arg1, arg2) {
|
||||
return window['go']['main']['App']['BulkUpdateQSL'](arg1, arg2);
|
||||
}
|
||||
|
||||
export function CWDecoderRunning() {
|
||||
return window['go']['main']['App']['CWDecoderRunning']();
|
||||
}
|
||||
|
||||
export function ChatAvailable() {
|
||||
return window['go']['main']['App']['ChatAvailable']();
|
||||
}
|
||||
@@ -250,6 +270,10 @@ export function DownloadAllReferenceLists() {
|
||||
return window['go']['main']['App']['DownloadAllReferenceLists']();
|
||||
}
|
||||
|
||||
export function DownloadAndApplyUpdate(arg1) {
|
||||
return window['go']['main']['App']['DownloadAndApplyUpdate'](arg1);
|
||||
}
|
||||
|
||||
export function DownloadClublogCty() {
|
||||
return window['go']['main']['App']['DownloadClublogCty']();
|
||||
}
|
||||
@@ -290,6 +314,10 @@ export function ExportAward(arg1) {
|
||||
return window['go']['main']['App']['ExportAward'](arg1);
|
||||
}
|
||||
|
||||
export function ExportAwardForCatalog(arg1, arg2) {
|
||||
return window['go']['main']['App']['ExportAwardForCatalog'](arg1, arg2);
|
||||
}
|
||||
|
||||
export function ExportAwards() {
|
||||
return window['go']['main']['App']['ExportAwards']();
|
||||
}
|
||||
@@ -334,10 +362,18 @@ export function FlexApplyBandAntenna(arg1) {
|
||||
return window['go']['main']['App']['FlexApplyBandAntenna'](arg1);
|
||||
}
|
||||
|
||||
export function FlexBackspaceCW(arg1) {
|
||||
return window['go']['main']['App']['FlexBackspaceCW'](arg1);
|
||||
}
|
||||
|
||||
export function FlexMox(arg1) {
|
||||
return window['go']['main']['App']['FlexMox'](arg1);
|
||||
}
|
||||
|
||||
export function FlexSendCW(arg1) {
|
||||
return window['go']['main']['App']['FlexSendCW'](arg1);
|
||||
}
|
||||
|
||||
export function FlexSetAGCMode(arg1) {
|
||||
return window['go']['main']['App']['FlexSetAGCMode'](arg1);
|
||||
}
|
||||
@@ -354,6 +390,10 @@ export function FlexSetANFLevel(arg1) {
|
||||
return window['go']['main']['App']['FlexSetANFLevel'](arg1);
|
||||
}
|
||||
|
||||
export function FlexSetANFT(arg1) {
|
||||
return window['go']['main']['App']['FlexSetANFT'](arg1);
|
||||
}
|
||||
|
||||
export function FlexSetAPF(arg1) {
|
||||
return window['go']['main']['App']['FlexSetAPF'](arg1);
|
||||
}
|
||||
@@ -394,10 +434,34 @@ export function FlexSetCWSpeed(arg1) {
|
||||
return window['go']['main']['App']['FlexSetCWSpeed'](arg1);
|
||||
}
|
||||
|
||||
export function FlexSetDAX(arg1) {
|
||||
return window['go']['main']['App']['FlexSetDAX'](arg1);
|
||||
}
|
||||
|
||||
export function FlexSetFilter(arg1, arg2) {
|
||||
return window['go']['main']['App']['FlexSetFilter'](arg1, arg2);
|
||||
}
|
||||
|
||||
export function FlexSetKeySpeed(arg1) {
|
||||
return window['go']['main']['App']['FlexSetKeySpeed'](arg1);
|
||||
}
|
||||
|
||||
export function FlexSetLMSANF(arg1) {
|
||||
return window['go']['main']['App']['FlexSetLMSANF'](arg1);
|
||||
}
|
||||
|
||||
export function FlexSetLMSANFLevel(arg1) {
|
||||
return window['go']['main']['App']['FlexSetLMSANFLevel'](arg1);
|
||||
}
|
||||
|
||||
export function FlexSetLMSNR(arg1) {
|
||||
return window['go']['main']['App']['FlexSetLMSNR'](arg1);
|
||||
}
|
||||
|
||||
export function FlexSetLMSNRLevel(arg1) {
|
||||
return window['go']['main']['App']['FlexSetLMSNRLevel'](arg1);
|
||||
}
|
||||
|
||||
export function FlexSetMic(arg1) {
|
||||
return window['go']['main']['App']['FlexSetMic'](arg1);
|
||||
}
|
||||
@@ -430,6 +494,14 @@ export function FlexSetNR(arg1) {
|
||||
return window['go']['main']['App']['FlexSetNR'](arg1);
|
||||
}
|
||||
|
||||
export function FlexSetNRF(arg1) {
|
||||
return window['go']['main']['App']['FlexSetNRF'](arg1);
|
||||
}
|
||||
|
||||
export function FlexSetNRFLevel(arg1) {
|
||||
return window['go']['main']['App']['FlexSetNRFLevel'](arg1);
|
||||
}
|
||||
|
||||
export function FlexSetNRLevel(arg1) {
|
||||
return window['go']['main']['App']['FlexSetNRLevel'](arg1);
|
||||
}
|
||||
@@ -454,6 +526,10 @@ export function FlexSetRITFreq(arg1) {
|
||||
return window['go']['main']['App']['FlexSetRITFreq'](arg1);
|
||||
}
|
||||
|
||||
export function FlexSetRNN(arg1) {
|
||||
return window['go']['main']['App']['FlexSetRNN'](arg1);
|
||||
}
|
||||
|
||||
export function FlexSetRXAntenna(arg1) {
|
||||
return window['go']['main']['App']['FlexSetRXAntenna'](arg1);
|
||||
}
|
||||
@@ -462,6 +538,14 @@ export function FlexSetSidetoneLevel(arg1) {
|
||||
return window['go']['main']['App']['FlexSetSidetoneLevel'](arg1);
|
||||
}
|
||||
|
||||
export function FlexSetSpeexNR(arg1) {
|
||||
return window['go']['main']['App']['FlexSetSpeexNR'](arg1);
|
||||
}
|
||||
|
||||
export function FlexSetSpeexNRLevel(arg1) {
|
||||
return window['go']['main']['App']['FlexSetSpeexNRLevel'](arg1);
|
||||
}
|
||||
|
||||
export function FlexSetSplit(arg1) {
|
||||
return window['go']['main']['App']['FlexSetSplit'](arg1);
|
||||
}
|
||||
@@ -470,6 +554,10 @@ export function FlexSetTXAntenna(arg1) {
|
||||
return window['go']['main']['App']['FlexSetTXAntenna'](arg1);
|
||||
}
|
||||
|
||||
export function FlexSetTXDAX(arg1) {
|
||||
return window['go']['main']['App']['FlexSetTXDAX'](arg1);
|
||||
}
|
||||
|
||||
export function FlexSetTXFilter(arg1, arg2) {
|
||||
return window['go']['main']['App']['FlexSetTXFilter'](arg1, arg2);
|
||||
}
|
||||
@@ -510,10 +598,18 @@ export function FlexSetXITFreq(arg1) {
|
||||
return window['go']['main']['App']['FlexSetXITFreq'](arg1);
|
||||
}
|
||||
|
||||
export function FlexStopCW() {
|
||||
return window['go']['main']['App']['FlexStopCW']();
|
||||
}
|
||||
|
||||
export function FlexTune(arg1) {
|
||||
return window['go']['main']['App']['FlexTune'](arg1);
|
||||
}
|
||||
|
||||
export function GetACOMStatus() {
|
||||
return window['go']['main']['App']['GetACOMStatus']();
|
||||
}
|
||||
|
||||
export function GetADIFMonitor() {
|
||||
return window['go']['main']['App']['GetADIFMonitor']();
|
||||
}
|
||||
@@ -526,6 +622,14 @@ export function GetAlertEmailTo() {
|
||||
return window['go']['main']['App']['GetAlertEmailTo']();
|
||||
}
|
||||
|
||||
export function GetAmpStatuses() {
|
||||
return window['go']['main']['App']['GetAmpStatuses']();
|
||||
}
|
||||
|
||||
export function GetAmplifiers() {
|
||||
return window['go']['main']['App']['GetAmplifiers']();
|
||||
}
|
||||
|
||||
export function GetAntGeniusSettings() {
|
||||
return window['go']['main']['App']['GetAntGeniusSettings']();
|
||||
}
|
||||
@@ -582,14 +686,14 @@ export function GetCATState() {
|
||||
return window['go']['main']['App']['GetCATState']();
|
||||
}
|
||||
|
||||
export function GetCWDecoderPitch() {
|
||||
return window['go']['main']['App']['GetCWDecoderPitch']();
|
||||
}
|
||||
|
||||
export function GetCatalogCodes() {
|
||||
return window['go']['main']['App']['GetCatalogCodes']();
|
||||
}
|
||||
|
||||
export function GetChangelog() {
|
||||
return window['go']['main']['App']['GetChangelog']();
|
||||
}
|
||||
|
||||
export function GetChatHistory(arg1) {
|
||||
return window['go']['main']['App']['GetChatHistory'](arg1);
|
||||
}
|
||||
@@ -662,8 +766,8 @@ export function GetListsSettings() {
|
||||
return window['go']['main']['App']['GetListsSettings']();
|
||||
}
|
||||
|
||||
export function GetLiveStatusEnabled() {
|
||||
return window['go']['main']['App']['GetLiveStatusEnabled']();
|
||||
export function GetLiveStations() {
|
||||
return window['go']['main']['App']['GetLiveStations']();
|
||||
}
|
||||
|
||||
export function GetLoTWUsersStatus() {
|
||||
@@ -742,6 +846,10 @@ export function GetRotatorSettings() {
|
||||
return window['go']['main']['App']['GetRotatorSettings']();
|
||||
}
|
||||
|
||||
export function GetSPEStatus() {
|
||||
return window['go']['main']['App']['GetSPEStatus']();
|
||||
}
|
||||
|
||||
export function GetSecretStatus() {
|
||||
return window['go']['main']['App']['GetSecretStatus']();
|
||||
}
|
||||
@@ -786,6 +894,10 @@ export function GetUltrabeamStatus() {
|
||||
return window['go']['main']['App']['GetUltrabeamStatus']();
|
||||
}
|
||||
|
||||
export function GetWhatsNew() {
|
||||
return window['go']['main']['App']['GetWhatsNew']();
|
||||
}
|
||||
|
||||
export function GetWinkeyerSettings() {
|
||||
return window['go']['main']['App']['GetWinkeyerSettings']();
|
||||
}
|
||||
@@ -1022,6 +1134,10 @@ export function ListCountries() {
|
||||
return window['go']['main']['App']['ListCountries']();
|
||||
}
|
||||
|
||||
export function ListDenkoviDevices() {
|
||||
return window['go']['main']['App']['ListDenkoviDevices']();
|
||||
}
|
||||
|
||||
export function ListOperatingTree() {
|
||||
return window['go']['main']['App']['ListOperatingTree']();
|
||||
}
|
||||
@@ -1050,6 +1166,10 @@ export function ListUDPIntegrations() {
|
||||
return window['go']['main']['App']['ListUDPIntegrations']();
|
||||
}
|
||||
|
||||
export function LiveLastQSOAgeSec() {
|
||||
return window['go']['main']['App']['LiveLastQSOAgeSec']();
|
||||
}
|
||||
|
||||
export function LoTWUserInfo(arg1) {
|
||||
return window['go']['main']['App']['LoTWUserInfo'](arg1);
|
||||
}
|
||||
@@ -1166,6 +1286,10 @@ export function PGXLSetFanMode(arg1) {
|
||||
return window['go']['main']['App']['PGXLSetFanMode'](arg1);
|
||||
}
|
||||
|
||||
export function PGXLSetOperate(arg1) {
|
||||
return window['go']['main']['App']['PGXLSetOperate'](arg1);
|
||||
}
|
||||
|
||||
export function PickADIFMonitorFile() {
|
||||
return window['go']['main']['App']['PickADIFMonitorFile']();
|
||||
}
|
||||
@@ -1278,6 +1402,10 @@ export function QuitApp() {
|
||||
return window['go']['main']['App']['QuitApp']();
|
||||
}
|
||||
|
||||
export function RecomputeAllAwardRefs() {
|
||||
return window['go']['main']['App']['RecomputeAllAwardRefs']();
|
||||
}
|
||||
|
||||
export function RefreshCtyDat() {
|
||||
return window['go']['main']['App']['RefreshCtyDat']();
|
||||
}
|
||||
@@ -1294,6 +1422,10 @@ export function RemovePassphrase(arg1) {
|
||||
return window['go']['main']['App']['RemovePassphrase'](arg1);
|
||||
}
|
||||
|
||||
export function RenameDatabase(arg1) {
|
||||
return window['go']['main']['App']['RenameDatabase'](arg1);
|
||||
}
|
||||
|
||||
export function RenderEQSL(arg1, arg2) {
|
||||
return window['go']['main']['App']['RenderEQSL'](arg1, arg2);
|
||||
}
|
||||
@@ -1346,6 +1478,18 @@ export function RunBackupNow() {
|
||||
return window['go']['main']['App']['RunBackupNow']();
|
||||
}
|
||||
|
||||
export function SPESetOperate(arg1) {
|
||||
return window['go']['main']['App']['SPESetOperate'](arg1);
|
||||
}
|
||||
|
||||
export function SPESetPower(arg1) {
|
||||
return window['go']['main']['App']['SPESetPower'](arg1);
|
||||
}
|
||||
|
||||
export function SPESetPowerLevel(arg1) {
|
||||
return window['go']['main']['App']['SPESetPowerLevel'](arg1);
|
||||
}
|
||||
|
||||
export function SaveADIFFile() {
|
||||
return window['go']['main']['App']['SaveADIFFile']();
|
||||
}
|
||||
@@ -1358,6 +1502,10 @@ export function SaveAlertRule(arg1) {
|
||||
return window['go']['main']['App']['SaveAlertRule'](arg1);
|
||||
}
|
||||
|
||||
export function SaveAmplifiers(arg1) {
|
||||
return window['go']['main']['App']['SaveAmplifiers'](arg1);
|
||||
}
|
||||
|
||||
export function SaveAntGeniusSettings(arg1) {
|
||||
return window['go']['main']['App']['SaveAntGeniusSettings'](arg1);
|
||||
}
|
||||
@@ -1506,10 +1654,6 @@ export function SetCATMode(arg1) {
|
||||
return window['go']['main']['App']['SetCATMode'](arg1);
|
||||
}
|
||||
|
||||
export function SetCWDecoderPitch(arg1) {
|
||||
return window['go']['main']['App']['SetCWDecoderPitch'](arg1);
|
||||
}
|
||||
|
||||
export function SetClublogCtyEnabled(arg1) {
|
||||
return window['go']['main']['App']['SetClublogCtyEnabled'](arg1);
|
||||
}
|
||||
@@ -1526,10 +1670,6 @@ export function SetDVKLabel(arg1, arg2) {
|
||||
return window['go']['main']['App']['SetDVKLabel'](arg1, arg2);
|
||||
}
|
||||
|
||||
export function SetLiveStatusEnabled(arg1) {
|
||||
return window['go']['main']['App']['SetLiveStatusEnabled'](arg1);
|
||||
}
|
||||
|
||||
export function SetPassphrase(arg1) {
|
||||
return window['go']['main']['App']['SetPassphrase'](arg1);
|
||||
}
|
||||
@@ -1546,18 +1686,10 @@ export function SetUltrabeamDirection(arg1) {
|
||||
return window['go']['main']['App']['SetUltrabeamDirection'](arg1);
|
||||
}
|
||||
|
||||
export function StartCWDecoder() {
|
||||
return window['go']['main']['App']['StartCWDecoder']();
|
||||
}
|
||||
|
||||
export function StationSetRelay(arg1, arg2, arg3) {
|
||||
return window['go']['main']['App']['StationSetRelay'](arg1, arg2, arg3);
|
||||
}
|
||||
|
||||
export function StopCWDecoder() {
|
||||
return window['go']['main']['App']['StopCWDecoder']();
|
||||
}
|
||||
|
||||
export function SwitchCATRig(arg1) {
|
||||
return window['go']['main']['App']['SwitchCATRig'](arg1);
|
||||
}
|
||||
@@ -1606,6 +1738,10 @@ export function TestRotator(arg1) {
|
||||
return window['go']['main']['App']['TestRotator'](arg1);
|
||||
}
|
||||
|
||||
export function TestStationDevice(arg1) {
|
||||
return window['go']['main']['App']['TestStationDevice'](arg1);
|
||||
}
|
||||
|
||||
export function TestUltrabeam(arg1) {
|
||||
return window['go']['main']['App']['TestUltrabeam'](arg1);
|
||||
}
|
||||
|
||||
@@ -1,3 +1,58 @@
|
||||
export namespace acom {
|
||||
|
||||
export class Status {
|
||||
connected: boolean;
|
||||
port_open: boolean;
|
||||
transport: string;
|
||||
last_error?: string;
|
||||
model?: string;
|
||||
state?: string;
|
||||
operate: boolean;
|
||||
tx: boolean;
|
||||
fwd_w: number;
|
||||
refl_w: number;
|
||||
swr: number;
|
||||
drive_w: number;
|
||||
dc_w: number;
|
||||
temp_c: number;
|
||||
band?: string;
|
||||
fan: number;
|
||||
err_code: number;
|
||||
err_text?: string;
|
||||
nominal_w: number;
|
||||
max_w: number;
|
||||
|
||||
static createFrom(source: any = {}) {
|
||||
return new Status(source);
|
||||
}
|
||||
|
||||
constructor(source: any = {}) {
|
||||
if ('string' === typeof source) source = JSON.parse(source);
|
||||
this.connected = source["connected"];
|
||||
this.port_open = source["port_open"];
|
||||
this.transport = source["transport"];
|
||||
this.last_error = source["last_error"];
|
||||
this.model = source["model"];
|
||||
this.state = source["state"];
|
||||
this.operate = source["operate"];
|
||||
this.tx = source["tx"];
|
||||
this.fwd_w = source["fwd_w"];
|
||||
this.refl_w = source["refl_w"];
|
||||
this.swr = source["swr"];
|
||||
this.drive_w = source["drive_w"];
|
||||
this.dc_w = source["dc_w"];
|
||||
this.temp_c = source["temp_c"];
|
||||
this.band = source["band"];
|
||||
this.fan = source["fan"];
|
||||
this.err_code = source["err_code"];
|
||||
this.err_text = source["err_text"];
|
||||
this.nominal_w = source["nominal_w"];
|
||||
this.max_w = source["max_w"];
|
||||
}
|
||||
}
|
||||
|
||||
}
|
||||
|
||||
export namespace adif {
|
||||
|
||||
export class ExportResult {
|
||||
@@ -722,6 +777,19 @@ export namespace cat {
|
||||
anf_level: number;
|
||||
wnb: boolean;
|
||||
wnb_level: number;
|
||||
lms_nr: boolean;
|
||||
lms_nr_level: number;
|
||||
lms_anf: boolean;
|
||||
lms_anf_level: number;
|
||||
speex_nr: boolean;
|
||||
speex_nr_level: number;
|
||||
rnn: boolean;
|
||||
anft: boolean;
|
||||
nrf: boolean;
|
||||
nrf_level: number;
|
||||
dsp_v4: boolean;
|
||||
dax_ch: number;
|
||||
tx_dax: boolean;
|
||||
rit: boolean;
|
||||
rit_freq: number;
|
||||
xit: boolean;
|
||||
@@ -789,6 +857,19 @@ export namespace cat {
|
||||
this.anf_level = source["anf_level"];
|
||||
this.wnb = source["wnb"];
|
||||
this.wnb_level = source["wnb_level"];
|
||||
this.lms_nr = source["lms_nr"];
|
||||
this.lms_nr_level = source["lms_nr_level"];
|
||||
this.lms_anf = source["lms_anf"];
|
||||
this.lms_anf_level = source["lms_anf_level"];
|
||||
this.speex_nr = source["speex_nr"];
|
||||
this.speex_nr_level = source["speex_nr_level"];
|
||||
this.rnn = source["rnn"];
|
||||
this.anft = source["anft"];
|
||||
this.nrf = source["nrf"];
|
||||
this.nrf_level = source["nrf_level"];
|
||||
this.dsp_v4 = source["dsp_v4"];
|
||||
this.dax_ch = source["dax_ch"];
|
||||
this.tx_dax = source["tx_dax"];
|
||||
this.rit = source["rit"];
|
||||
this.rit_freq = source["rit_freq"];
|
||||
this.xit = source["xit"];
|
||||
@@ -1345,6 +1426,74 @@ export namespace main {
|
||||
}
|
||||
}
|
||||
|
||||
export class AmpConfig {
|
||||
id: string;
|
||||
name: string;
|
||||
enabled: boolean;
|
||||
type: string;
|
||||
transport: string;
|
||||
host: string;
|
||||
port: number;
|
||||
com_port: string;
|
||||
baud: number;
|
||||
|
||||
static createFrom(source: any = {}) {
|
||||
return new AmpConfig(source);
|
||||
}
|
||||
|
||||
constructor(source: any = {}) {
|
||||
if ('string' === typeof source) source = JSON.parse(source);
|
||||
this.id = source["id"];
|
||||
this.name = source["name"];
|
||||
this.enabled = source["enabled"];
|
||||
this.type = source["type"];
|
||||
this.transport = source["transport"];
|
||||
this.host = source["host"];
|
||||
this.port = source["port"];
|
||||
this.com_port = source["com_port"];
|
||||
this.baud = source["baud"];
|
||||
}
|
||||
}
|
||||
export class AmpStatus {
|
||||
id: string;
|
||||
name: string;
|
||||
type: string;
|
||||
pgxl?: powergenius.Status;
|
||||
spe?: spe.Status;
|
||||
acom?: acom.Status;
|
||||
|
||||
static createFrom(source: any = {}) {
|
||||
return new AmpStatus(source);
|
||||
}
|
||||
|
||||
constructor(source: any = {}) {
|
||||
if ('string' === typeof source) source = JSON.parse(source);
|
||||
this.id = source["id"];
|
||||
this.name = source["name"];
|
||||
this.type = source["type"];
|
||||
this.pgxl = this.convertValues(source["pgxl"], powergenius.Status);
|
||||
this.spe = this.convertValues(source["spe"], spe.Status);
|
||||
this.acom = this.convertValues(source["acom"], acom.Status);
|
||||
}
|
||||
|
||||
convertValues(a: any, classs: any, asMap: boolean = false): any {
|
||||
if (!a) {
|
||||
return a;
|
||||
}
|
||||
if (a.slice && a.map) {
|
||||
return (a as any[]).map(elem => this.convertValues(elem, classs));
|
||||
} else if ("object" === typeof a) {
|
||||
if (asMap) {
|
||||
for (const key of Object.keys(a)) {
|
||||
a[key] = new classs(a[key]);
|
||||
}
|
||||
return a;
|
||||
}
|
||||
return new classs(a);
|
||||
}
|
||||
return a;
|
||||
}
|
||||
}
|
||||
export class AntGeniusSettings {
|
||||
enabled: boolean;
|
||||
host: string;
|
||||
@@ -1728,6 +1877,24 @@ export namespace main {
|
||||
this.path = source["path"];
|
||||
}
|
||||
}
|
||||
export class ChangelogEntry {
|
||||
version: string;
|
||||
date: string;
|
||||
en: string[];
|
||||
fr: string[];
|
||||
|
||||
static createFrom(source: any = {}) {
|
||||
return new ChangelogEntry(source);
|
||||
}
|
||||
|
||||
constructor(source: any = {}) {
|
||||
if ('string' === typeof source) source = JSON.parse(source);
|
||||
this.version = source["version"];
|
||||
this.date = source["date"];
|
||||
this.en = source["en"];
|
||||
this.fr = source["fr"];
|
||||
}
|
||||
}
|
||||
export class ChatMessage {
|
||||
id: number;
|
||||
operator: string;
|
||||
@@ -2054,6 +2221,32 @@ export namespace main {
|
||||
return a;
|
||||
}
|
||||
}
|
||||
export class LiveStation {
|
||||
operator: string;
|
||||
station: string;
|
||||
freq_hz: number;
|
||||
band: string;
|
||||
mode: string;
|
||||
online: boolean;
|
||||
version: string;
|
||||
age_sec: number;
|
||||
|
||||
static createFrom(source: any = {}) {
|
||||
return new LiveStation(source);
|
||||
}
|
||||
|
||||
constructor(source: any = {}) {
|
||||
if ('string' === typeof source) source = JSON.parse(source);
|
||||
this.operator = source["operator"];
|
||||
this.station = source["station"];
|
||||
this.freq_hz = source["freq_hz"];
|
||||
this.band = source["band"];
|
||||
this.mode = source["mode"];
|
||||
this.online = source["online"];
|
||||
this.version = source["version"];
|
||||
this.age_sec = source["age_sec"];
|
||||
}
|
||||
}
|
||||
export class LoTWUsersStatus {
|
||||
count: number;
|
||||
updated?: string;
|
||||
@@ -2135,8 +2328,12 @@ export namespace main {
|
||||
}
|
||||
export class PGXLSettings {
|
||||
enabled: boolean;
|
||||
type: string;
|
||||
transport: string;
|
||||
host: string;
|
||||
port: number;
|
||||
com_port: string;
|
||||
baud: number;
|
||||
|
||||
static createFrom(source: any = {}) {
|
||||
return new PGXLSettings(source);
|
||||
@@ -2145,8 +2342,12 @@ export namespace main {
|
||||
constructor(source: any = {}) {
|
||||
if ('string' === typeof source) source = JSON.parse(source);
|
||||
this.enabled = source["enabled"];
|
||||
this.type = source["type"];
|
||||
this.transport = source["transport"];
|
||||
this.host = source["host"];
|
||||
this.port = source["port"];
|
||||
this.com_port = source["com_port"];
|
||||
this.baud = source["baud"];
|
||||
}
|
||||
}
|
||||
export class POTAUnmatched {
|
||||
@@ -2381,6 +2582,8 @@ export namespace main {
|
||||
export class QSORate {
|
||||
last10: number;
|
||||
last60: number;
|
||||
team_last10: number;
|
||||
team_last60: number;
|
||||
|
||||
static createFrom(source: any = {}) {
|
||||
return new QSORate(source);
|
||||
@@ -2390,6 +2593,8 @@ export namespace main {
|
||||
if ('string' === typeof source) source = JSON.parse(source);
|
||||
this.last10 = source["last10"];
|
||||
this.last60 = source["last60"];
|
||||
this.team_last10 = source["team_last10"];
|
||||
this.team_last60 = source["team_last60"];
|
||||
}
|
||||
}
|
||||
export class RelayAutoRule {
|
||||
@@ -2472,6 +2677,8 @@ export namespace main {
|
||||
port: number;
|
||||
has_elevation: boolean;
|
||||
rotator_num: number;
|
||||
transport: string;
|
||||
com_port: string;
|
||||
|
||||
static createFrom(source: any = {}) {
|
||||
return new RotatorSettings(source);
|
||||
@@ -2485,6 +2692,8 @@ export namespace main {
|
||||
this.port = source["port"];
|
||||
this.has_elevation = source["has_elevation"];
|
||||
this.rotator_num = source["rotator_num"];
|
||||
this.transport = source["transport"];
|
||||
this.com_port = source["com_port"];
|
||||
}
|
||||
}
|
||||
export class SecretStatus {
|
||||
@@ -2570,6 +2779,7 @@ export namespace main {
|
||||
host: string;
|
||||
user?: string;
|
||||
pass?: string;
|
||||
channels?: number;
|
||||
labels: string[];
|
||||
|
||||
static createFrom(source: any = {}) {
|
||||
@@ -2584,6 +2794,7 @@ export namespace main {
|
||||
this.host = source["host"];
|
||||
this.user = source["user"];
|
||||
this.pass = source["pass"];
|
||||
this.channels = source["channels"];
|
||||
this.labels = source["labels"];
|
||||
}
|
||||
}
|
||||
@@ -2688,6 +2899,22 @@ export namespace main {
|
||||
this.my_pota_ref = source["my_pota_ref"];
|
||||
}
|
||||
}
|
||||
export class StationTestResult {
|
||||
ok: boolean;
|
||||
relays: number;
|
||||
error?: string;
|
||||
|
||||
static createFrom(source: any = {}) {
|
||||
return new StationTestResult(source);
|
||||
}
|
||||
|
||||
constructor(source: any = {}) {
|
||||
if ('string' === typeof source) source = JSON.parse(source);
|
||||
this.ok = source["ok"];
|
||||
this.relays = source["relays"];
|
||||
this.error = source["error"];
|
||||
}
|
||||
}
|
||||
export class ULSStatusResult {
|
||||
count: number;
|
||||
updated_at: string;
|
||||
@@ -2763,6 +2990,7 @@ export namespace main {
|
||||
latest: string;
|
||||
available: boolean;
|
||||
url: string;
|
||||
download_url: string;
|
||||
|
||||
static createFrom(source: any = {}) {
|
||||
return new UpdateInfo(source);
|
||||
@@ -2774,6 +3002,7 @@ export namespace main {
|
||||
this.latest = source["latest"];
|
||||
this.available = source["available"];
|
||||
this.url = source["url"];
|
||||
this.download_url = source["download_url"];
|
||||
}
|
||||
}
|
||||
export class WKMacro {
|
||||
@@ -3077,6 +3306,7 @@ export namespace powergenius {
|
||||
state?: string;
|
||||
fan_mode?: string;
|
||||
temperature: number;
|
||||
operate: boolean;
|
||||
|
||||
static createFrom(source: any = {}) {
|
||||
return new Status(source);
|
||||
@@ -3090,6 +3320,7 @@ export namespace powergenius {
|
||||
this.state = source["state"];
|
||||
this.fan_mode = source["fan_mode"];
|
||||
this.temperature = source["temperature"];
|
||||
this.operate = source["operate"];
|
||||
}
|
||||
}
|
||||
|
||||
@@ -3369,6 +3600,26 @@ export namespace qslcard {
|
||||
|
||||
export namespace qso {
|
||||
|
||||
export class BandCategory {
|
||||
band: string;
|
||||
cw: number;
|
||||
phone: number;
|
||||
data: number;
|
||||
total: number;
|
||||
|
||||
static createFrom(source: any = {}) {
|
||||
return new BandCategory(source);
|
||||
}
|
||||
|
||||
constructor(source: any = {}) {
|
||||
if ('string' === typeof source) source = JSON.parse(source);
|
||||
this.band = source["band"];
|
||||
this.cw = source["cw"];
|
||||
this.phone = source["phone"];
|
||||
this.data = source["data"];
|
||||
this.total = source["total"];
|
||||
}
|
||||
}
|
||||
export class BandMode {
|
||||
band: string;
|
||||
mode: string;
|
||||
@@ -3616,6 +3867,7 @@ export namespace qso {
|
||||
my_arrl_sect?: string;
|
||||
my_vucc_grids?: string;
|
||||
extras?: Record<string, string>;
|
||||
award_refs?: string;
|
||||
// Go type: time
|
||||
created_at: any;
|
||||
// Go type: time
|
||||
@@ -3753,6 +4005,7 @@ export namespace qso {
|
||||
this.my_arrl_sect = source["my_arrl_sect"];
|
||||
this.my_vucc_grids = source["my_vucc_grids"];
|
||||
this.extras = source["extras"];
|
||||
this.award_refs = source["award_refs"];
|
||||
this.created_at = this.convertValues(source["created_at"], null);
|
||||
this.updated_at = this.convertValues(source["updated_at"], null);
|
||||
}
|
||||
@@ -3856,12 +4109,17 @@ export namespace qso {
|
||||
confirmed_any: number;
|
||||
by_mode: Bucket[];
|
||||
by_band: Bucket[];
|
||||
by_band_category: BandCategory[];
|
||||
by_operator: Bucket[];
|
||||
by_station: Bucket[];
|
||||
by_continent: Bucket[];
|
||||
top_entities: Bucket[];
|
||||
by_year: Bucket[];
|
||||
by_month: Bucket[];
|
||||
by_hour: Bucket[];
|
||||
by_day7: Bucket[];
|
||||
by_day30: Bucket[];
|
||||
by_month12: Bucket[];
|
||||
window_start: string;
|
||||
window_end: string;
|
||||
window_hours: number;
|
||||
@@ -3895,12 +4153,17 @@ export namespace qso {
|
||||
this.confirmed_any = source["confirmed_any"];
|
||||
this.by_mode = this.convertValues(source["by_mode"], Bucket);
|
||||
this.by_band = this.convertValues(source["by_band"], Bucket);
|
||||
this.by_band_category = this.convertValues(source["by_band_category"], BandCategory);
|
||||
this.by_operator = this.convertValues(source["by_operator"], Bucket);
|
||||
this.by_station = this.convertValues(source["by_station"], Bucket);
|
||||
this.by_continent = this.convertValues(source["by_continent"], Bucket);
|
||||
this.top_entities = this.convertValues(source["top_entities"], Bucket);
|
||||
this.by_year = this.convertValues(source["by_year"], Bucket);
|
||||
this.by_month = this.convertValues(source["by_month"], Bucket);
|
||||
this.by_hour = this.convertValues(source["by_hour"], Bucket);
|
||||
this.by_day7 = this.convertValues(source["by_day7"], Bucket);
|
||||
this.by_day30 = this.convertValues(source["by_day30"], Bucket);
|
||||
this.by_month12 = this.convertValues(source["by_month12"], Bucket);
|
||||
this.window_start = source["window_start"];
|
||||
this.window_end = source["window_end"];
|
||||
this.window_hours = source["window_hours"];
|
||||
@@ -4064,6 +4327,53 @@ export namespace solar {
|
||||
|
||||
}
|
||||
|
||||
export namespace spe {
|
||||
|
||||
export class Status {
|
||||
connected: boolean;
|
||||
last_error?: string;
|
||||
model?: string;
|
||||
operate: boolean;
|
||||
tx: boolean;
|
||||
input?: string;
|
||||
band?: string;
|
||||
power_level?: string;
|
||||
output_w: number;
|
||||
swr_atu: number;
|
||||
swr_ant: number;
|
||||
volt_pa: number;
|
||||
curr_pa: number;
|
||||
temp_c: number;
|
||||
warnings?: string;
|
||||
alarms?: string;
|
||||
|
||||
static createFrom(source: any = {}) {
|
||||
return new Status(source);
|
||||
}
|
||||
|
||||
constructor(source: any = {}) {
|
||||
if ('string' === typeof source) source = JSON.parse(source);
|
||||
this.connected = source["connected"];
|
||||
this.last_error = source["last_error"];
|
||||
this.model = source["model"];
|
||||
this.operate = source["operate"];
|
||||
this.tx = source["tx"];
|
||||
this.input = source["input"];
|
||||
this.band = source["band"];
|
||||
this.power_level = source["power_level"];
|
||||
this.output_w = source["output_w"];
|
||||
this.swr_atu = source["swr_atu"];
|
||||
this.swr_ant = source["swr_ant"];
|
||||
this.volt_pa = source["volt_pa"];
|
||||
this.curr_pa = source["curr_pa"];
|
||||
this.temp_c = source["temp_c"];
|
||||
this.warnings = source["warnings"];
|
||||
this.alarms = source["alarms"];
|
||||
}
|
||||
}
|
||||
|
||||
}
|
||||
|
||||
export namespace udp {
|
||||
|
||||
export class Config {
|
||||
|
||||
@@ -0,0 +1,504 @@
|
||||
// Package acom drives the ACOM solid-state amplifiers (500S / 600S / 700S /
|
||||
// 1200S / 2020S) over their (unpublished) RS-232 protocol, reverse-engineered by
|
||||
// the ACOM-Controller project (bjornekelund, C#). The amp is reached either
|
||||
// directly over a serial COM port (9600 8N1) or over TCP via an RS232-to-Ethernet
|
||||
// bridge — both are just an io.ReadWriteCloser to this code, same as the SPE
|
||||
// backend.
|
||||
//
|
||||
// Wire format (host → amp): fixed raw byte strings, validated by the same rule as
|
||||
// telemetry (sum of ALL frame bytes ≡ 0 mod 256):
|
||||
//
|
||||
// enable telemetry: 55 92 04 15
|
||||
// disable telemetry: 55 91 04 16
|
||||
// OPERATE: 55 81 08 02 00 06 00 1A
|
||||
// STANDBY: 55 81 08 02 00 05 00 1B
|
||||
// OFF (power down): 55 81 08 02 00 0A 00 16
|
||||
//
|
||||
// Power ON is NOT a data command: it is a hardware pulse on the serial DTR/RTS
|
||||
// lines (the amp's remote power-on pins) — serial transport only, and only if the
|
||||
// cable wires those pins (a telemetry-only cable uses just RX/TX/GND).
|
||||
//
|
||||
// IMPORTANT: DTR and RTS must be held LOW at all times otherwise — asserting them
|
||||
// permanently blocks the amplifier's front-panel power button.
|
||||
//
|
||||
// Telemetry (amp → host): once enabled, the amp streams 72-byte frames starting
|
||||
// 0x55 0x2F, valid when the sum of all 72 bytes ≡ 0 (mod 256). Field offsets are
|
||||
// decoded in decodeFrame below.
|
||||
package acom
|
||||
|
||||
import (
|
||||
"fmt"
|
||||
"io"
|
||||
"net"
|
||||
"strconv"
|
||||
"strings"
|
||||
"sync"
|
||||
"time"
|
||||
|
||||
"go.bug.st/serial"
|
||||
|
||||
"hamlog/internal/applog"
|
||||
)
|
||||
|
||||
var (
|
||||
cmdEnableTelemetry = []byte{0x55, 0x92, 0x04, 0x15}
|
||||
cmdDisableTelemetry = []byte{0x55, 0x91, 0x04, 0x16}
|
||||
cmdOperate = []byte{0x55, 0x81, 0x08, 0x02, 0x00, 0x06, 0x00, 0x1A}
|
||||
cmdStandby = []byte{0x55, 0x81, 0x08, 0x02, 0x00, 0x05, 0x00, 0x1B}
|
||||
cmdOff = []byte{0x55, 0x81, 0x08, 0x02, 0x00, 0x0A, 0x00, 0x16}
|
||||
)
|
||||
|
||||
const (
|
||||
frameLen = 72
|
||||
sync0 = 0x55
|
||||
sync1 = 0x2F
|
||||
dialTimeout = 5 * time.Second
|
||||
ioTimeout = 3 * time.Second
|
||||
// The amp streams roughly 4-5 frames/s once telemetry is on; if nothing valid
|
||||
// arrives for this long the link (or the amp) is considered down.
|
||||
staleAfter = 5 * time.Second
|
||||
)
|
||||
|
||||
// model carries the per-model constants: the temperature word offset and the
|
||||
// nominal/max forward power (for UI bar scaling).
|
||||
type model struct {
|
||||
Name string
|
||||
TempOffset int
|
||||
NominalW int
|
||||
MaxW int
|
||||
}
|
||||
|
||||
var models = map[string]model{
|
||||
"500S": {"500S", 282, 500, 600},
|
||||
"600S": {"600S", 273, 600, 700},
|
||||
"700S": {"700S", 282, 700, 800},
|
||||
"1200S": {"1200S", 281, 1200, 1400},
|
||||
"2020S": {"2020S", 282, 1800, 2000},
|
||||
}
|
||||
|
||||
// paStatusNames maps the PAstatus nibble to a display string.
|
||||
var paStatusNames = map[int]string{
|
||||
1: "RESET", 2: "INIT", 3: "DEBUG", 4: "SERVICE",
|
||||
5: "STANDBY", 6: "RECEIVE", 7: "TRANSMIT", 9: "SYSTEM", 10: "OFF",
|
||||
}
|
||||
|
||||
// acomBands maps the band nibble to a band label.
|
||||
var acomBands = []string{"?", "160m", "80m", "40/60m", "30m", "20m", "17m", "15m", "12m", "10m", "6m", "4m"}
|
||||
|
||||
// errText translates the error code (frame byte 66) shown on the amp's display.
|
||||
// 0xFF means NO error — everything else, including 0x00, is a fault/warning.
|
||||
func errText(code int) string {
|
||||
switch code {
|
||||
case 0xFF:
|
||||
return ""
|
||||
case 0x00, 0x08:
|
||||
return "Hot switching"
|
||||
case 0x03:
|
||||
return "Drive power at wrong time"
|
||||
case 0x04, 0x05:
|
||||
return "Reflected power warning"
|
||||
case 0x06, 0x07:
|
||||
return "Drive power too high"
|
||||
case 0x0C:
|
||||
return "RF power at wrong time"
|
||||
case 0x0E:
|
||||
return "Stop transmission first"
|
||||
case 0x0F:
|
||||
return "Remove drive power"
|
||||
case 0x24, 0x25, 0x39, 0x44, 0x45, 0x59:
|
||||
return "Excessive PAM current"
|
||||
case 0x70:
|
||||
return "CAT error"
|
||||
default:
|
||||
return "ERROR — see display"
|
||||
}
|
||||
}
|
||||
|
||||
// Status is the decoded amplifier state for the UI.
|
||||
type Status struct {
|
||||
Connected bool `json:"connected"` // valid telemetry is flowing
|
||||
PortOpen bool `json:"port_open"` // transport is open (serial port / TCP socket) — power-on possible even when the amp itself is off
|
||||
Transport string `json:"transport"` // "serial" | "tcp" — the UI disables power-ON over tcp (no DTR line)
|
||||
LastError string `json:"last_error,omitempty"`
|
||||
Model string `json:"model,omitempty"`
|
||||
State string `json:"state,omitempty"` // STANDBY / RECEIVE / TRANSMIT / OFF / …
|
||||
Operate bool `json:"operate"` // RECEIVE or TRANSMIT (vs STANDBY)
|
||||
TX bool `json:"tx"`
|
||||
FwdW int `json:"fwd_w"` // forward/output power
|
||||
ReflW int `json:"refl_w"` // reflected power
|
||||
SWR float64 `json:"swr"`
|
||||
DriveW int `json:"drive_w"`
|
||||
DCPowerW int `json:"dc_w"`
|
||||
TempC int `json:"temp_c"` // PA temperature
|
||||
Band string `json:"band,omitempty"`
|
||||
FanLevel int `json:"fan"` // 1..4
|
||||
ErrCode int `json:"err_code"` // raw code from the frame; 0xFF = none
|
||||
ErrText string `json:"err_text,omitempty"` // human message; empty = no error
|
||||
NominalW int `json:"nominal_w"`
|
||||
MaxW int `json:"max_w"`
|
||||
}
|
||||
|
||||
// Config selects the transport and amplifier model.
|
||||
type Config struct {
|
||||
Model string // "500S" | "600S" | "700S" | "1200S" | "2020S"
|
||||
Transport string // "serial" | "tcp"
|
||||
ComPort string // serial
|
||||
Baud int // serial (the amp is fixed 9600 8N1)
|
||||
Host string // tcp (RS232-to-Ethernet bridge)
|
||||
Port int // tcp
|
||||
}
|
||||
|
||||
type Client struct {
|
||||
cfg Config
|
||||
mdl model
|
||||
|
||||
mu sync.Mutex // serialises access to the connection
|
||||
conn io.ReadWriteCloser
|
||||
|
||||
statusMu sync.RWMutex
|
||||
status Status
|
||||
|
||||
// Diagnostics: raw byte count + first-bytes capture, so a hardware session log
|
||||
// tells apart "nothing on the wire" (cable/COM/amp) from "bytes but no valid
|
||||
// frame" (framing/checksum) without a serial sniffer.
|
||||
rawSeen int64
|
||||
dbgBytes []byte
|
||||
dbgLogged bool
|
||||
ckFails int
|
||||
frameLogged bool
|
||||
|
||||
stop chan struct{}
|
||||
running bool
|
||||
}
|
||||
|
||||
func New(cfg Config) *Client {
|
||||
if cfg.Baud <= 0 {
|
||||
cfg.Baud = 9600
|
||||
}
|
||||
mdl, ok := models[strings.ToUpper(strings.TrimSpace(cfg.Model))]
|
||||
if !ok {
|
||||
mdl = models["700S"]
|
||||
}
|
||||
c := &Client{cfg: cfg, mdl: mdl, stop: make(chan struct{})}
|
||||
c.status.Model = mdl.Name
|
||||
c.status.Transport = cfg.Transport
|
||||
c.status.NominalW = mdl.NominalW
|
||||
c.status.MaxW = mdl.MaxW
|
||||
return c
|
||||
}
|
||||
|
||||
func (c *Client) Start() error {
|
||||
if c.running {
|
||||
return nil
|
||||
}
|
||||
c.running = true
|
||||
go c.readLoop()
|
||||
return nil
|
||||
}
|
||||
|
||||
func (c *Client) Stop() {
|
||||
if !c.running {
|
||||
return
|
||||
}
|
||||
c.running = false
|
||||
close(c.stop)
|
||||
c.mu.Lock()
|
||||
if c.conn != nil {
|
||||
_, _ = c.conn.Write(cmdDisableTelemetry) // best effort: stop the stream
|
||||
}
|
||||
c.dropLocked()
|
||||
c.mu.Unlock()
|
||||
}
|
||||
|
||||
func (c *Client) GetStatus() Status {
|
||||
c.statusMu.RLock()
|
||||
defer c.statusMu.RUnlock()
|
||||
return c.status
|
||||
}
|
||||
|
||||
func (c *Client) setErr(msg string) {
|
||||
c.statusMu.Lock()
|
||||
c.status.Connected = false
|
||||
c.status.LastError = msg
|
||||
c.statusMu.Unlock()
|
||||
}
|
||||
|
||||
// Operate puts the amp in OPERATE (true) or STANDBY (false). Unlike the SPE's
|
||||
// single toggle key, the ACOM protocol has explicit commands for each state.
|
||||
func (c *Client) Operate(on bool) error {
|
||||
if on {
|
||||
return c.send(cmdOperate)
|
||||
}
|
||||
return c.send(cmdStandby)
|
||||
}
|
||||
|
||||
// PowerOff sends the power-down command (same as pressing OFF on the amp).
|
||||
func (c *Client) PowerOff() error { return c.send(cmdOff) }
|
||||
|
||||
// PowerOn pulses the serial DTR/RTS lines — the amp's remote power-on pins, wired
|
||||
// like a press of the front-panel power button. Hardware line ⇒ serial transport
|
||||
// only (an RS232-to-Ethernet bridge doesn't forward DTR), and the cable must have
|
||||
// those pins connected. Pulse length to be confirmed on real hardware.
|
||||
func (c *Client) PowerOn() error {
|
||||
c.mu.Lock()
|
||||
defer c.mu.Unlock()
|
||||
sp, ok := c.conn.(serial.Port)
|
||||
if !ok {
|
||||
return fmt.Errorf("power-on needs the serial DTR/RTS lines — not available over a network bridge")
|
||||
}
|
||||
if err := sp.SetDTR(true); err != nil {
|
||||
return err
|
||||
}
|
||||
if err := sp.SetRTS(true); err != nil {
|
||||
_ = sp.SetDTR(false)
|
||||
return err
|
||||
}
|
||||
time.Sleep(2500 * time.Millisecond)
|
||||
err1 := sp.SetDTR(false)
|
||||
err2 := sp.SetRTS(false)
|
||||
if err1 != nil {
|
||||
return err1
|
||||
}
|
||||
return err2
|
||||
}
|
||||
|
||||
func (c *Client) send(cmd []byte) error {
|
||||
c.mu.Lock()
|
||||
defer c.mu.Unlock()
|
||||
if c.conn == nil {
|
||||
return fmt.Errorf("not connected")
|
||||
}
|
||||
if nc, ok := c.conn.(net.Conn); ok {
|
||||
_ = nc.SetWriteDeadline(time.Now().Add(ioTimeout))
|
||||
}
|
||||
_, err := c.conn.Write(cmd)
|
||||
return err
|
||||
}
|
||||
|
||||
// readLoop keeps the link up and consumes the telemetry stream. When no valid
|
||||
// frame arrives for a while it re-arms telemetry (the amp forgets the enable
|
||||
// across a power cycle) and, on TCP, reconnects. A serial port is kept open even
|
||||
// with the amp off, so the DTR power-on pulse stays available.
|
||||
func (c *Client) readLoop() {
|
||||
var lastFrame time.Time
|
||||
var lastEnable time.Time
|
||||
for {
|
||||
select {
|
||||
case <-c.stop:
|
||||
return
|
||||
default:
|
||||
}
|
||||
if err := c.ensureConn(); err != nil {
|
||||
c.setErr("connect: " + err.Error())
|
||||
select {
|
||||
case <-c.stop:
|
||||
return
|
||||
case <-time.After(2 * time.Second):
|
||||
}
|
||||
continue
|
||||
}
|
||||
frame, err := c.readFrame()
|
||||
now := time.Now()
|
||||
if err == nil {
|
||||
lastFrame = now
|
||||
if !c.frameLogged {
|
||||
c.frameLogged = true
|
||||
applog.Printf("acom: telemetry up — first valid frame received")
|
||||
}
|
||||
c.decodeFrame(frame)
|
||||
continue
|
||||
}
|
||||
// No valid frame. Re-send the telemetry enable briskly — there is no way to
|
||||
// know whether the amp has it on (the reference controller re-sends every
|
||||
// 200ms until frames flow), and it revives the stream after a power cycle.
|
||||
if now.Sub(lastEnable) >= 500*time.Millisecond {
|
||||
lastEnable = now
|
||||
_ = c.send(cmdEnableTelemetry)
|
||||
}
|
||||
if lastFrame.IsZero() || now.Sub(lastFrame) > staleAfter {
|
||||
if c.cfg.Transport == "tcp" {
|
||||
// The bridge socket may be dead — force a reconnect.
|
||||
c.mu.Lock()
|
||||
c.dropLocked()
|
||||
c.mu.Unlock()
|
||||
}
|
||||
if prev := c.GetStatus(); prev.Connected || prev.LastError == "" {
|
||||
applog.Printf("acom: no telemetry (raw bytes seen so far: %d, checksum fails: %d)", c.rawSeen, c.ckFails)
|
||||
}
|
||||
c.setErr("no telemetry — amplifier off or cable/bridge issue")
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
func (c *Client) ensureConn() error {
|
||||
c.mu.Lock()
|
||||
defer c.mu.Unlock()
|
||||
if c.conn != nil {
|
||||
return nil
|
||||
}
|
||||
if c.cfg.Transport == "tcp" {
|
||||
nc, err := net.DialTimeout("tcp", net.JoinHostPort(c.cfg.Host, strconv.Itoa(c.cfg.Port)), dialTimeout)
|
||||
if err != nil {
|
||||
return err
|
||||
}
|
||||
c.conn = nc
|
||||
} else {
|
||||
sp, err := serial.Open(c.cfg.ComPort, &serial.Mode{BaudRate: c.cfg.Baud})
|
||||
if err != nil {
|
||||
return err
|
||||
}
|
||||
// CRITICAL: hold DTR/RTS LOW. Windows may assert them on open, and while
|
||||
// asserted the amp's front-panel power button is blocked (they are its
|
||||
// remote power-on lines).
|
||||
_ = sp.SetDTR(false)
|
||||
_ = sp.SetRTS(false)
|
||||
// Short read timeout so the frame reader can poll the stop channel and
|
||||
// detect staleness rather than blocking forever.
|
||||
_ = sp.SetReadTimeout(200 * time.Millisecond)
|
||||
c.conn = sp
|
||||
}
|
||||
c.statusMu.Lock()
|
||||
c.status.PortOpen = true
|
||||
c.statusMu.Unlock()
|
||||
applog.Printf("acom: %s link open (%s)", c.mdl.Name, c.cfg.Transport)
|
||||
_, _ = c.conn.Write(cmdEnableTelemetry)
|
||||
return nil
|
||||
}
|
||||
|
||||
func (c *Client) dropLocked() {
|
||||
if c.conn != nil {
|
||||
c.conn.Close()
|
||||
c.conn = nil
|
||||
}
|
||||
c.statusMu.Lock()
|
||||
c.status.PortOpen = false
|
||||
c.statusMu.Unlock()
|
||||
}
|
||||
|
||||
// readByte reads a single byte, honouring the transport's short timeout. A serial
|
||||
// read that times out returns (0, nil) with go.bug.st/serial — mapped to an error
|
||||
// here so callers can distinguish "no data yet".
|
||||
var errNoData = fmt.Errorf("no data")
|
||||
|
||||
func (c *Client) readByte(deadline time.Time) (byte, error) {
|
||||
c.mu.Lock()
|
||||
conn := c.conn
|
||||
c.mu.Unlock()
|
||||
if conn == nil {
|
||||
return 0, fmt.Errorf("not connected")
|
||||
}
|
||||
buf := make([]byte, 1)
|
||||
for {
|
||||
if nc, ok := conn.(net.Conn); ok {
|
||||
_ = nc.SetReadDeadline(time.Now().Add(300 * time.Millisecond))
|
||||
}
|
||||
n, err := conn.Read(buf)
|
||||
if n == 1 {
|
||||
c.rawSeen++
|
||||
// Capture the first 144 raw bytes (~2 frames) once, so a session log shows
|
||||
// what the wire actually carries when frames won't validate.
|
||||
if !c.dbgLogged {
|
||||
c.dbgBytes = append(c.dbgBytes, buf[0])
|
||||
if len(c.dbgBytes) >= 144 {
|
||||
c.dbgLogged = true
|
||||
applog.Printf("acom: first raw bytes: % X", c.dbgBytes)
|
||||
c.dbgBytes = nil
|
||||
}
|
||||
}
|
||||
return buf[0], nil
|
||||
}
|
||||
if err != nil {
|
||||
if ne, ok := err.(net.Error); ok && ne.Timeout() {
|
||||
err = nil // treat like the serial short-timeout: just no data yet
|
||||
} else {
|
||||
return 0, err
|
||||
}
|
||||
}
|
||||
select {
|
||||
case <-c.stop:
|
||||
return 0, fmt.Errorf("stopped")
|
||||
default:
|
||||
}
|
||||
if time.Now().After(deadline) {
|
||||
return 0, errNoData
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
// readFrame syncs on 0x55 0x2F, reads the rest of the 72-byte frame and verifies
|
||||
// the mod-256 checksum (sum of ALL 72 bytes ≡ 0).
|
||||
func (c *Client) readFrame() ([]byte, error) {
|
||||
deadline := time.Now().Add(ioTimeout)
|
||||
// Sync: hunt for 0x55 followed by 0x2F.
|
||||
for {
|
||||
b, err := c.readByte(deadline)
|
||||
if err != nil {
|
||||
return nil, err
|
||||
}
|
||||
if b != sync0 {
|
||||
continue
|
||||
}
|
||||
b2, err := c.readByte(deadline)
|
||||
if err != nil {
|
||||
return nil, err
|
||||
}
|
||||
if b2 == sync1 {
|
||||
break
|
||||
}
|
||||
}
|
||||
frame := make([]byte, frameLen)
|
||||
frame[0], frame[1] = sync0, sync1
|
||||
for i := 2; i < frameLen; i++ {
|
||||
b, err := c.readByte(deadline)
|
||||
if err != nil {
|
||||
return nil, err
|
||||
}
|
||||
frame[i] = b
|
||||
}
|
||||
var sum int
|
||||
for _, b := range frame {
|
||||
sum += int(b)
|
||||
}
|
||||
if sum%256 != 0 {
|
||||
c.ckFails++
|
||||
if c.ckFails <= 3 {
|
||||
applog.Printf("acom: bad checksum (fail #%d): % X", c.ckFails, frame)
|
||||
}
|
||||
return nil, fmt.Errorf("bad checksum")
|
||||
}
|
||||
return frame, nil
|
||||
}
|
||||
|
||||
// decodeFrame extracts the telemetry fields (see the package comment for the
|
||||
// reverse-engineered layout; 16-bit values are little-endian lo + hi*256).
|
||||
func (c *Client) decodeFrame(f []byte) {
|
||||
u16 := func(i int) int { return int(f[i]) + int(f[i+1])*256 }
|
||||
paStatus := int(f[3]&0xF0) >> 4
|
||||
state := paStatusNames[paStatus]
|
||||
if state == "" {
|
||||
state = fmt.Sprintf("?%d", paStatus)
|
||||
}
|
||||
bandIdx := int(f[69] & 0x0F)
|
||||
band := ""
|
||||
if bandIdx > 0 && bandIdx < len(acomBands) {
|
||||
band = acomBands[bandIdx]
|
||||
}
|
||||
|
||||
c.statusMu.Lock()
|
||||
defer c.statusMu.Unlock()
|
||||
c.status.Connected = true
|
||||
c.status.LastError = ""
|
||||
c.status.State = state
|
||||
c.status.Operate = paStatus == 6 || paStatus == 7
|
||||
c.status.TX = paStatus == 7
|
||||
c.status.DCPowerW = u16(8) / 10
|
||||
c.status.TempC = u16(16) - c.mdl.TempOffset
|
||||
c.status.DriveW = u16(20)
|
||||
c.status.FwdW = u16(22)
|
||||
c.status.ReflW = u16(24)
|
||||
c.status.SWR = float64(u16(26)) / 100
|
||||
c.status.ErrCode = int(f[66])
|
||||
c.status.ErrText = errText(int(f[66]))
|
||||
c.status.Band = band
|
||||
c.status.FanLevel = int(f[69]&0xF0) >> 4
|
||||
}
|
||||
@@ -47,10 +47,15 @@ func Init(dataDir string) (string, error) {
|
||||
_ = os.Rename(oldLog, logPath)
|
||||
}
|
||||
}
|
||||
// Truncate if the file grew past ~5MB so we don't accumulate logs
|
||||
// forever. We keep one file — simple and adequate for diagnostics.
|
||||
if fi, err := os.Stat(logPath); err == nil && fi.Size() > 5*1024*1024 {
|
||||
_ = os.Remove(logPath)
|
||||
// Rotate (don't delete) once the file grows past ~10MB: rename it to
|
||||
// opslog.log.1 so the PREVIOUS session's log survives. Deleting it outright used
|
||||
// to erase exactly the diagnostics we needed when a user reported an issue from
|
||||
// the session that just ended. One generation kept — enough, without unbounded growth.
|
||||
if fi, err := os.Stat(logPath); err == nil && fi.Size() > 10*1024*1024 {
|
||||
_ = os.Remove(logPath + ".1") // drop the older generation
|
||||
if err := os.Rename(logPath, logPath+".1"); err != nil {
|
||||
_ = os.Remove(logPath) // rename failed (locked?) → fall back to the old behaviour
|
||||
}
|
||||
}
|
||||
f, err := os.OpenFile(logPath, os.O_CREATE|os.O_WRONLY|os.O_APPEND, 0o644)
|
||||
if err != nil {
|
||||
|
||||
@@ -4,11 +4,27 @@
|
||||
"name": "Départements Français Métropolitains",
|
||||
"valid": true,
|
||||
"protected": true,
|
||||
"ref_display": "name",
|
||||
"type": "QSOFIELDS",
|
||||
"field": "note",
|
||||
"pattern": "(?i)\\b(D\\d{1,2}[AB]?)\\b",
|
||||
"or_rules": [
|
||||
{
|
||||
"field": "address",
|
||||
"match_by": "code",
|
||||
"pattern": "\\b(\\d{2})\\d{3}\\b",
|
||||
"prefix": "D"
|
||||
},
|
||||
{
|
||||
"field": "qth",
|
||||
"match_by": "code",
|
||||
"pattern": "\\b(\\d{2})\\d{3}\\b",
|
||||
"prefix": "D"
|
||||
}
|
||||
],
|
||||
"dxcc_filter": [
|
||||
227
|
||||
227,
|
||||
214
|
||||
],
|
||||
"confirm": [
|
||||
"lotw",
|
||||
@@ -18,6 +34,777 @@
|
||||
"lotw"
|
||||
],
|
||||
"total": 96,
|
||||
"builtin": true
|
||||
}
|
||||
}
|
||||
"builtin": true,
|
||||
"version": 2
|
||||
},
|
||||
"references": [
|
||||
{
|
||||
"code": "D01",
|
||||
"name": "Ain",
|
||||
"dxcc": 227,
|
||||
"group": "",
|
||||
"subgrp": "",
|
||||
"valid": true
|
||||
},
|
||||
{
|
||||
"code": "D02",
|
||||
"name": "Aisne",
|
||||
"dxcc": 227,
|
||||
"group": "",
|
||||
"subgrp": "",
|
||||
"valid": true
|
||||
},
|
||||
{
|
||||
"code": "D03",
|
||||
"name": "Allier",
|
||||
"dxcc": 227,
|
||||
"group": "",
|
||||
"subgrp": "",
|
||||
"valid": true
|
||||
},
|
||||
{
|
||||
"code": "D04",
|
||||
"name": "Alpes-de-Haute-Provence",
|
||||
"dxcc": 227,
|
||||
"group": "",
|
||||
"subgrp": "",
|
||||
"valid": true
|
||||
},
|
||||
{
|
||||
"code": "D05",
|
||||
"name": "Hautes-Alpes",
|
||||
"dxcc": 227,
|
||||
"group": "",
|
||||
"subgrp": "",
|
||||
"valid": true
|
||||
},
|
||||
{
|
||||
"code": "D06",
|
||||
"name": "Alpes-Maritimes",
|
||||
"dxcc": 227,
|
||||
"group": "",
|
||||
"subgrp": "",
|
||||
"valid": true
|
||||
},
|
||||
{
|
||||
"code": "D07",
|
||||
"name": "Ardèche",
|
||||
"dxcc": 227,
|
||||
"group": "",
|
||||
"subgrp": "",
|
||||
"valid": true
|
||||
},
|
||||
{
|
||||
"code": "D08",
|
||||
"name": "Ardennes",
|
||||
"dxcc": 227,
|
||||
"group": "",
|
||||
"subgrp": "",
|
||||
"valid": true
|
||||
},
|
||||
{
|
||||
"code": "D09",
|
||||
"name": "Ariège",
|
||||
"dxcc": 227,
|
||||
"group": "",
|
||||
"subgrp": "",
|
||||
"valid": true
|
||||
},
|
||||
{
|
||||
"code": "D10",
|
||||
"name": "Aube",
|
||||
"dxcc": 227,
|
||||
"group": "",
|
||||
"subgrp": "",
|
||||
"valid": true
|
||||
},
|
||||
{
|
||||
"code": "D11",
|
||||
"name": "Aude",
|
||||
"dxcc": 227,
|
||||
"group": "",
|
||||
"subgrp": "",
|
||||
"valid": true
|
||||
},
|
||||
{
|
||||
"code": "D12",
|
||||
"name": "Aveyron",
|
||||
"dxcc": 227,
|
||||
"group": "",
|
||||
"subgrp": "",
|
||||
"valid": true
|
||||
},
|
||||
{
|
||||
"code": "D13",
|
||||
"name": "Bouches-du-Rhône",
|
||||
"dxcc": 227,
|
||||
"group": "",
|
||||
"subgrp": "",
|
||||
"valid": true
|
||||
},
|
||||
{
|
||||
"code": "D14",
|
||||
"name": "Calvados",
|
||||
"dxcc": 227,
|
||||
"group": "",
|
||||
"subgrp": "",
|
||||
"valid": true
|
||||
},
|
||||
{
|
||||
"code": "D15",
|
||||
"name": "Cantal",
|
||||
"dxcc": 227,
|
||||
"group": "",
|
||||
"subgrp": "",
|
||||
"valid": true
|
||||
},
|
||||
{
|
||||
"code": "D16",
|
||||
"name": "Charente",
|
||||
"dxcc": 227,
|
||||
"group": "",
|
||||
"subgrp": "",
|
||||
"valid": true
|
||||
},
|
||||
{
|
||||
"code": "D17",
|
||||
"name": "Charente-Maritime",
|
||||
"dxcc": 227,
|
||||
"group": "",
|
||||
"subgrp": "",
|
||||
"valid": true
|
||||
},
|
||||
{
|
||||
"code": "D18",
|
||||
"name": "Cher",
|
||||
"dxcc": 227,
|
||||
"group": "",
|
||||
"subgrp": "",
|
||||
"valid": true
|
||||
},
|
||||
{
|
||||
"code": "D19",
|
||||
"name": "Corrèze",
|
||||
"dxcc": 227,
|
||||
"group": "",
|
||||
"subgrp": "",
|
||||
"valid": true
|
||||
},
|
||||
{
|
||||
"code": "D21",
|
||||
"name": "Côte-d'Or",
|
||||
"dxcc": 227,
|
||||
"group": "",
|
||||
"subgrp": "",
|
||||
"valid": true
|
||||
},
|
||||
{
|
||||
"code": "D22",
|
||||
"name": "Côtes-d'Armor",
|
||||
"dxcc": 227,
|
||||
"group": "",
|
||||
"subgrp": "",
|
||||
"valid": true
|
||||
},
|
||||
{
|
||||
"code": "D23",
|
||||
"name": "Creuse",
|
||||
"dxcc": 227,
|
||||
"group": "",
|
||||
"subgrp": "",
|
||||
"valid": true
|
||||
},
|
||||
{
|
||||
"code": "D24",
|
||||
"name": "Dordogne",
|
||||
"dxcc": 227,
|
||||
"group": "",
|
||||
"subgrp": "",
|
||||
"valid": true
|
||||
},
|
||||
{
|
||||
"code": "D25",
|
||||
"name": "Doubs",
|
||||
"dxcc": 227,
|
||||
"group": "",
|
||||
"subgrp": "",
|
||||
"valid": true
|
||||
},
|
||||
{
|
||||
"code": "D26",
|
||||
"name": "Drôme",
|
||||
"dxcc": 227,
|
||||
"group": "",
|
||||
"subgrp": "",
|
||||
"valid": true
|
||||
},
|
||||
{
|
||||
"code": "D27",
|
||||
"name": "Eure",
|
||||
"dxcc": 227,
|
||||
"group": "",
|
||||
"subgrp": "",
|
||||
"valid": true
|
||||
},
|
||||
{
|
||||
"code": "D28",
|
||||
"name": "Eure-et-Loir",
|
||||
"dxcc": 227,
|
||||
"group": "",
|
||||
"subgrp": "",
|
||||
"valid": true
|
||||
},
|
||||
{
|
||||
"code": "D29",
|
||||
"name": "Finistère",
|
||||
"dxcc": 227,
|
||||
"group": "",
|
||||
"subgrp": "",
|
||||
"valid": true
|
||||
},
|
||||
{
|
||||
"code": "D2A",
|
||||
"name": "Corse-du-Sud",
|
||||
"dxcc": 227,
|
||||
"group": "",
|
||||
"subgrp": "",
|
||||
"valid": true
|
||||
},
|
||||
{
|
||||
"code": "D2B",
|
||||
"name": "Haute-Corse",
|
||||
"dxcc": 227,
|
||||
"group": "",
|
||||
"subgrp": "",
|
||||
"valid": true
|
||||
},
|
||||
{
|
||||
"code": "D30",
|
||||
"name": "Gard",
|
||||
"dxcc": 227,
|
||||
"group": "",
|
||||
"subgrp": "",
|
||||
"valid": true
|
||||
},
|
||||
{
|
||||
"code": "D31",
|
||||
"name": "Haute-Garonne",
|
||||
"dxcc": 227,
|
||||
"group": "",
|
||||
"subgrp": "",
|
||||
"valid": true
|
||||
},
|
||||
{
|
||||
"code": "D32",
|
||||
"name": "Gers",
|
||||
"dxcc": 227,
|
||||
"group": "",
|
||||
"subgrp": "",
|
||||
"valid": true
|
||||
},
|
||||
{
|
||||
"code": "D33",
|
||||
"name": "Gironde",
|
||||
"dxcc": 227,
|
||||
"group": "",
|
||||
"subgrp": "",
|
||||
"valid": true
|
||||
},
|
||||
{
|
||||
"code": "D34",
|
||||
"name": "Hérault",
|
||||
"dxcc": 227,
|
||||
"group": "",
|
||||
"subgrp": "",
|
||||
"valid": true
|
||||
},
|
||||
{
|
||||
"code": "D35",
|
||||
"name": "Ille-et-Vilaine",
|
||||
"dxcc": 227,
|
||||
"group": "",
|
||||
"subgrp": "",
|
||||
"valid": true
|
||||
},
|
||||
{
|
||||
"code": "D36",
|
||||
"name": "Indre",
|
||||
"dxcc": 227,
|
||||
"group": "",
|
||||
"subgrp": "",
|
||||
"valid": true
|
||||
},
|
||||
{
|
||||
"code": "D37",
|
||||
"name": "Indre-et-Loire",
|
||||
"dxcc": 227,
|
||||
"group": "",
|
||||
"subgrp": "",
|
||||
"valid": true
|
||||
},
|
||||
{
|
||||
"code": "D38",
|
||||
"name": "Isère",
|
||||
"dxcc": 227,
|
||||
"group": "",
|
||||
"subgrp": "",
|
||||
"valid": true
|
||||
},
|
||||
{
|
||||
"code": "D39",
|
||||
"name": "Jura",
|
||||
"dxcc": 227,
|
||||
"group": "",
|
||||
"subgrp": "",
|
||||
"valid": true
|
||||
},
|
||||
{
|
||||
"code": "D40",
|
||||
"name": "Landes",
|
||||
"dxcc": 227,
|
||||
"group": "",
|
||||
"subgrp": "",
|
||||
"valid": true
|
||||
},
|
||||
{
|
||||
"code": "D41",
|
||||
"name": "Loir-et-Cher",
|
||||
"dxcc": 227,
|
||||
"group": "",
|
||||
"subgrp": "",
|
||||
"valid": true
|
||||
},
|
||||
{
|
||||
"code": "D42",
|
||||
"name": "Loire",
|
||||
"dxcc": 227,
|
||||
"group": "",
|
||||
"subgrp": "",
|
||||
"valid": true
|
||||
},
|
||||
{
|
||||
"code": "D43",
|
||||
"name": "Haute-Loire",
|
||||
"dxcc": 227,
|
||||
"group": "",
|
||||
"subgrp": "",
|
||||
"valid": true
|
||||
},
|
||||
{
|
||||
"code": "D44",
|
||||
"name": "Loire-Atlantique",
|
||||
"dxcc": 227,
|
||||
"group": "",
|
||||
"subgrp": "",
|
||||
"valid": true
|
||||
},
|
||||
{
|
||||
"code": "D45",
|
||||
"name": "Loiret",
|
||||
"dxcc": 227,
|
||||
"group": "",
|
||||
"subgrp": "",
|
||||
"valid": true
|
||||
},
|
||||
{
|
||||
"code": "D46",
|
||||
"name": "Lot",
|
||||
"dxcc": 227,
|
||||
"group": "",
|
||||
"subgrp": "",
|
||||
"valid": true
|
||||
},
|
||||
{
|
||||
"code": "D47",
|
||||
"name": "Lot-et-Garonne",
|
||||
"dxcc": 227,
|
||||
"group": "",
|
||||
"subgrp": "",
|
||||
"valid": true
|
||||
},
|
||||
{
|
||||
"code": "D48",
|
||||
"name": "Lozère",
|
||||
"dxcc": 227,
|
||||
"group": "",
|
||||
"subgrp": "",
|
||||
"valid": true
|
||||
},
|
||||
{
|
||||
"code": "D49",
|
||||
"name": "Maine-et-Loire",
|
||||
"dxcc": 227,
|
||||
"group": "",
|
||||
"subgrp": "",
|
||||
"valid": true
|
||||
},
|
||||
{
|
||||
"code": "D50",
|
||||
"name": "Manche",
|
||||
"dxcc": 227,
|
||||
"group": "",
|
||||
"subgrp": "",
|
||||
"valid": true
|
||||
},
|
||||
{
|
||||
"code": "D51",
|
||||
"name": "Marne",
|
||||
"dxcc": 227,
|
||||
"group": "",
|
||||
"subgrp": "",
|
||||
"valid": true
|
||||
},
|
||||
{
|
||||
"code": "D52",
|
||||
"name": "Haute-Marne",
|
||||
"dxcc": 227,
|
||||
"group": "",
|
||||
"subgrp": "",
|
||||
"valid": true
|
||||
},
|
||||
{
|
||||
"code": "D53",
|
||||
"name": "Mayenne",
|
||||
"dxcc": 227,
|
||||
"group": "",
|
||||
"subgrp": "",
|
||||
"valid": true
|
||||
},
|
||||
{
|
||||
"code": "D54",
|
||||
"name": "Meurthe-et-Moselle",
|
||||
"dxcc": 227,
|
||||
"group": "",
|
||||
"subgrp": "",
|
||||
"valid": true
|
||||
},
|
||||
{
|
||||
"code": "D55",
|
||||
"name": "Meuse",
|
||||
"dxcc": 227,
|
||||
"group": "",
|
||||
"subgrp": "",
|
||||
"valid": true
|
||||
},
|
||||
{
|
||||
"code": "D56",
|
||||
"name": "Morbihan",
|
||||
"dxcc": 227,
|
||||
"group": "",
|
||||
"subgrp": "",
|
||||
"valid": true
|
||||
},
|
||||
{
|
||||
"code": "D57",
|
||||
"name": "Moselle",
|
||||
"dxcc": 227,
|
||||
"group": "",
|
||||
"subgrp": "",
|
||||
"valid": true
|
||||
},
|
||||
{
|
||||
"code": "D58",
|
||||
"name": "Nièvre",
|
||||
"dxcc": 227,
|
||||
"group": "",
|
||||
"subgrp": "",
|
||||
"valid": true
|
||||
},
|
||||
{
|
||||
"code": "D59",
|
||||
"name": "Nord",
|
||||
"dxcc": 227,
|
||||
"group": "",
|
||||
"subgrp": "",
|
||||
"valid": true
|
||||
},
|
||||
{
|
||||
"code": "D60",
|
||||
"name": "Oise",
|
||||
"dxcc": 227,
|
||||
"group": "",
|
||||
"subgrp": "",
|
||||
"valid": true
|
||||
},
|
||||
{
|
||||
"code": "D61",
|
||||
"name": "Orne",
|
||||
"dxcc": 227,
|
||||
"group": "",
|
||||
"subgrp": "",
|
||||
"valid": true
|
||||
},
|
||||
{
|
||||
"code": "D62",
|
||||
"name": "Pas-de-Calais",
|
||||
"dxcc": 227,
|
||||
"group": "",
|
||||
"subgrp": "",
|
||||
"valid": true
|
||||
},
|
||||
{
|
||||
"code": "D63",
|
||||
"name": "Puy-de-Dôme",
|
||||
"dxcc": 227,
|
||||
"group": "",
|
||||
"subgrp": "",
|
||||
"valid": true
|
||||
},
|
||||
{
|
||||
"code": "D64",
|
||||
"name": "Pyrénées-Atlantiques",
|
||||
"dxcc": 227,
|
||||
"group": "",
|
||||
"subgrp": "",
|
||||
"valid": true
|
||||
},
|
||||
{
|
||||
"code": "D65",
|
||||
"name": "Hautes-Pyrénées",
|
||||
"dxcc": 227,
|
||||
"group": "",
|
||||
"subgrp": "",
|
||||
"valid": true
|
||||
},
|
||||
{
|
||||
"code": "D66",
|
||||
"name": "Pyrénées-Orientales",
|
||||
"dxcc": 227,
|
||||
"group": "",
|
||||
"subgrp": "",
|
||||
"valid": true
|
||||
},
|
||||
{
|
||||
"code": "D67",
|
||||
"name": "Bas-Rhin",
|
||||
"dxcc": 227,
|
||||
"group": "",
|
||||
"subgrp": "",
|
||||
"valid": true
|
||||
},
|
||||
{
|
||||
"code": "D68",
|
||||
"name": "Haut-Rhin",
|
||||
"dxcc": 227,
|
||||
"group": "",
|
||||
"subgrp": "",
|
||||
"valid": true
|
||||
},
|
||||
{
|
||||
"code": "D69",
|
||||
"name": "Rhône",
|
||||
"dxcc": 227,
|
||||
"group": "",
|
||||
"subgrp": "",
|
||||
"valid": true
|
||||
},
|
||||
{
|
||||
"code": "D70",
|
||||
"name": "Haute-Saône",
|
||||
"dxcc": 227,
|
||||
"group": "",
|
||||
"subgrp": "",
|
||||
"valid": true
|
||||
},
|
||||
{
|
||||
"code": "D71",
|
||||
"name": "Saône-et-Loire",
|
||||
"dxcc": 227,
|
||||
"group": "",
|
||||
"subgrp": "",
|
||||
"valid": true
|
||||
},
|
||||
{
|
||||
"code": "D72",
|
||||
"name": "Sarthe",
|
||||
"dxcc": 227,
|
||||
"group": "",
|
||||
"subgrp": "",
|
||||
"valid": true
|
||||
},
|
||||
{
|
||||
"code": "D73",
|
||||
"name": "Savoie",
|
||||
"dxcc": 227,
|
||||
"group": "",
|
||||
"subgrp": "",
|
||||
"valid": true
|
||||
},
|
||||
{
|
||||
"code": "D74",
|
||||
"name": "Haute-Savoie",
|
||||
"dxcc": 227,
|
||||
"group": "",
|
||||
"subgrp": "",
|
||||
"valid": true
|
||||
},
|
||||
{
|
||||
"code": "D75",
|
||||
"name": "Paris",
|
||||
"dxcc": 227,
|
||||
"group": "",
|
||||
"subgrp": "",
|
||||
"valid": true
|
||||
},
|
||||
{
|
||||
"code": "D76",
|
||||
"name": "Seine-Maritime",
|
||||
"dxcc": 227,
|
||||
"group": "",
|
||||
"subgrp": "",
|
||||
"valid": true
|
||||
},
|
||||
{
|
||||
"code": "D77",
|
||||
"name": "Seine-et-Marne",
|
||||
"dxcc": 227,
|
||||
"group": "",
|
||||
"subgrp": "",
|
||||
"valid": true
|
||||
},
|
||||
{
|
||||
"code": "D78",
|
||||
"name": "Yvelines",
|
||||
"dxcc": 227,
|
||||
"group": "",
|
||||
"subgrp": "",
|
||||
"valid": true
|
||||
},
|
||||
{
|
||||
"code": "D79",
|
||||
"name": "Deux-Sèvres",
|
||||
"dxcc": 227,
|
||||
"group": "",
|
||||
"subgrp": "",
|
||||
"valid": true
|
||||
},
|
||||
{
|
||||
"code": "D80",
|
||||
"name": "Somme",
|
||||
"dxcc": 227,
|
||||
"group": "",
|
||||
"subgrp": "",
|
||||
"valid": true
|
||||
},
|
||||
{
|
||||
"code": "D81",
|
||||
"name": "Tarn",
|
||||
"dxcc": 227,
|
||||
"group": "",
|
||||
"subgrp": "",
|
||||
"valid": true
|
||||
},
|
||||
{
|
||||
"code": "D82",
|
||||
"name": "Tarn-et-Garonne",
|
||||
"dxcc": 227,
|
||||
"group": "",
|
||||
"subgrp": "",
|
||||
"valid": true
|
||||
},
|
||||
{
|
||||
"code": "D83",
|
||||
"name": "Var",
|
||||
"dxcc": 227,
|
||||
"group": "",
|
||||
"subgrp": "",
|
||||
"valid": true
|
||||
},
|
||||
{
|
||||
"code": "D84",
|
||||
"name": "Vaucluse",
|
||||
"dxcc": 227,
|
||||
"group": "",
|
||||
"subgrp": "",
|
||||
"valid": true
|
||||
},
|
||||
{
|
||||
"code": "D85",
|
||||
"name": "Vendée",
|
||||
"dxcc": 227,
|
||||
"group": "",
|
||||
"subgrp": "",
|
||||
"valid": true
|
||||
},
|
||||
{
|
||||
"code": "D86",
|
||||
"name": "Vienne",
|
||||
"dxcc": 227,
|
||||
"group": "",
|
||||
"subgrp": "",
|
||||
"valid": true
|
||||
},
|
||||
{
|
||||
"code": "D87",
|
||||
"name": "Haute-Vienne",
|
||||
"dxcc": 227,
|
||||
"group": "",
|
||||
"subgrp": "",
|
||||
"valid": true
|
||||
},
|
||||
{
|
||||
"code": "D88",
|
||||
"name": "Vosges",
|
||||
"dxcc": 227,
|
||||
"group": "",
|
||||
"subgrp": "",
|
||||
"valid": true
|
||||
},
|
||||
{
|
||||
"code": "D89",
|
||||
"name": "Yonne",
|
||||
"dxcc": 227,
|
||||
"group": "",
|
||||
"subgrp": "",
|
||||
"valid": true
|
||||
},
|
||||
{
|
||||
"code": "D90",
|
||||
"name": "Territoire de Belfort",
|
||||
"dxcc": 227,
|
||||
"group": "",
|
||||
"subgrp": "",
|
||||
"valid": true
|
||||
},
|
||||
{
|
||||
"code": "D91",
|
||||
"name": "Essonne",
|
||||
"dxcc": 227,
|
||||
"group": "",
|
||||
"subgrp": "",
|
||||
"valid": true
|
||||
},
|
||||
{
|
||||
"code": "D92",
|
||||
"name": "Hauts-de-Seine",
|
||||
"dxcc": 227,
|
||||
"group": "",
|
||||
"subgrp": "",
|
||||
"valid": true
|
||||
},
|
||||
{
|
||||
"code": "D93",
|
||||
"name": "Seine-Saint-Denis",
|
||||
"dxcc": 227,
|
||||
"group": "",
|
||||
"subgrp": "",
|
||||
"valid": true
|
||||
},
|
||||
{
|
||||
"code": "D94",
|
||||
"name": "Val-de-Marne",
|
||||
"dxcc": 227,
|
||||
"group": "",
|
||||
"subgrp": "",
|
||||
"valid": true
|
||||
},
|
||||
{
|
||||
"code": "D95",
|
||||
"name": "Val-d'Oise",
|
||||
"dxcc": 227,
|
||||
"group": "",
|
||||
"subgrp": "",
|
||||
"valid": true
|
||||
}
|
||||
]
|
||||
}
|
||||
+87
-50
@@ -259,30 +259,30 @@ type FlexSliceInfo struct {
|
||||
}
|
||||
|
||||
type FlexTXState struct {
|
||||
Available bool `json:"available"` // backend is Flex and handshaked
|
||||
Model string `json:"model,omitempty"`
|
||||
Available bool `json:"available"` // backend is Flex and handshaked
|
||||
Model string `json:"model,omitempty"`
|
||||
// Slices lists every in-use receiver slice (A/B/C/D…) so the panel can show
|
||||
// them all and highlight the active one. The active slice drives everything.
|
||||
Slices []FlexSliceInfo `json:"slices,omitempty"`
|
||||
RFPower int `json:"rf_power"`
|
||||
TunePower int `json:"tune_power"`
|
||||
Tune bool `json:"tune"` // tune carrier active
|
||||
Transmitting bool `json:"transmitting"` // interlock state = TRANSMITTING
|
||||
VoxEnable bool `json:"vox_enable"`
|
||||
VoxLevel int `json:"vox_level"`
|
||||
VoxDelay int `json:"vox_delay"`
|
||||
ProcEnable bool `json:"proc_enable"`
|
||||
ProcLevel int `json:"proc_level"`
|
||||
Mon bool `json:"mon"`
|
||||
MonLevel int `json:"mon_level"`
|
||||
MicLevel int `json:"mic_level"`
|
||||
TXFilterLow int `json:"tx_filter_low"` // TX filter low cut (Hz)
|
||||
TXFilterHigh int `json:"tx_filter_high"` // TX filter high cut (Hz)
|
||||
Slices []FlexSliceInfo `json:"slices,omitempty"`
|
||||
RFPower int `json:"rf_power"`
|
||||
TunePower int `json:"tune_power"`
|
||||
Tune bool `json:"tune"` // tune carrier active
|
||||
Transmitting bool `json:"transmitting"` // interlock state = TRANSMITTING
|
||||
VoxEnable bool `json:"vox_enable"`
|
||||
VoxLevel int `json:"vox_level"`
|
||||
VoxDelay int `json:"vox_delay"`
|
||||
ProcEnable bool `json:"proc_enable"`
|
||||
ProcLevel int `json:"proc_level"`
|
||||
Mon bool `json:"mon"`
|
||||
MonLevel int `json:"mon_level"`
|
||||
MicLevel int `json:"mic_level"`
|
||||
TXFilterLow int `json:"tx_filter_low"` // TX filter low cut (Hz)
|
||||
TXFilterHigh int `json:"tx_filter_high"` // TX filter high cut (Hz)
|
||||
// Mic profiles (SmartSDR): the list of available profiles + the loaded one.
|
||||
MicProfile string `json:"mic_profile,omitempty"`
|
||||
MicProfiles []string `json:"mic_profiles,omitempty"`
|
||||
ATUStatus string `json:"atu_status,omitempty"`
|
||||
ATUMemories bool `json:"atu_memories"`
|
||||
MicProfile string `json:"mic_profile,omitempty"`
|
||||
MicProfiles []string `json:"mic_profiles,omitempty"`
|
||||
ATUStatus string `json:"atu_status,omitempty"`
|
||||
ATUMemories bool `json:"atu_memories"`
|
||||
// Active RX slice DSP controls.
|
||||
RXAvail bool `json:"rx_avail"` // an RX slice exists
|
||||
Split bool `json:"split"` // RX/TX on separate slices
|
||||
@@ -304,6 +304,22 @@ type FlexTXState struct {
|
||||
ANFLevel int `json:"anf_level"`
|
||||
WNB bool `json:"wnb"`
|
||||
WNBLevel int `json:"wnb_level"`
|
||||
// SmartSDR v4 DSP (8000/Aurora series): NRL/ANFL (legacy LMS), NRS
|
||||
// (spectral subtraction), RNN (AI NR), ANFT (FFT notch), NRF (NR w/filter).
|
||||
// DSPV4 is true once the radio reported any of these keys — gates the UI.
|
||||
LMSNR bool `json:"lms_nr"`
|
||||
LMSNRLevel int `json:"lms_nr_level"`
|
||||
LMSANF bool `json:"lms_anf"`
|
||||
LMSANFLevel int `json:"lms_anf_level"`
|
||||
SpeexNR bool `json:"speex_nr"`
|
||||
SpeexNRLevel int `json:"speex_nr_level"`
|
||||
RNN bool `json:"rnn"`
|
||||
ANFT bool `json:"anft"`
|
||||
NRF bool `json:"nrf"`
|
||||
NRFLevel int `json:"nrf_level"`
|
||||
DSPV4 bool `json:"dsp_v4"`
|
||||
DAXCh int `json:"dax_ch"` // DAX audio channel of the active slice (0 = off, 1-8)
|
||||
TXDAX bool `json:"tx_dax"` // DAX is the TX audio source (SmartSDR transmit-bar DAX button)
|
||||
// RIT/XIT — offsets applied to the active slice's RX / TX frequency without
|
||||
// moving the slice. The offset survives the switch being turned off, so
|
||||
// re-enabling restores it, exactly like the radio's own knob.
|
||||
@@ -337,7 +353,7 @@ type FlexMeter struct {
|
||||
Src string `json:"src,omitempty"` // SLC / TX- / RAD / AMP…
|
||||
Name string `json:"name,omitempty"` // FWDPWR, SWR, LEVEL, PATEMP…
|
||||
Unit string `json:"unit,omitempty"`
|
||||
Slice int `json:"slice"` // for SLC meters, the slice index it belongs to; -1 otherwise
|
||||
Slice int `json:"slice"` // for SLC meters, the slice index it belongs to; -1 otherwise
|
||||
Value float64 `json:"value"`
|
||||
Lo float64 `json:"lo"`
|
||||
Hi float64 `json:"hi"`
|
||||
@@ -386,6 +402,19 @@ type FlexController interface {
|
||||
SetAPFLevel(int) error
|
||||
SetWNB(bool) error
|
||||
SetWNBLevel(int) error
|
||||
// SmartSDR v4 DSP (8000/Aurora): NRL / ANFL / NRS / RNN / ANFT / NRF.
|
||||
SetLMSNR(bool) error
|
||||
SetLMSNRLevel(int) error
|
||||
SetLMSANF(bool) error
|
||||
SetLMSANFLevel(int) error
|
||||
SetSpeexNR(bool) error
|
||||
SetSpeexNRLevel(int) error
|
||||
SetRNN(bool) error
|
||||
SetANFT(bool) error
|
||||
SetNRF(bool) error
|
||||
SetNRFLevel(int) error
|
||||
SetDAX(int) error // slice RX DAX channel 0 (off) - 8
|
||||
SetTXDAX(bool) error // TX audio from DAX (transmit set dax=)
|
||||
SetRIT(bool) error
|
||||
SetRITFreq(int) error
|
||||
SetXIT(bool) error
|
||||
@@ -394,6 +423,14 @@ type FlexController interface {
|
||||
SetCWSpeed(int) error
|
||||
SetCWPitch(int) error
|
||||
SetCWBreakInDelay(int) error
|
||||
// CWX keyer — buffered CW keying via SmartSDR's CWX subsystem, so a Flex needs
|
||||
// no WinKeyer / SmartCAT. SendCW queues text (the radio buffers and keys it);
|
||||
// StopCW clears the buffer, aborting the send. BackspaceCW removes the last n
|
||||
// not-yet-keyed characters from the buffer (un-send while sending — for
|
||||
// type-ahead corrections).
|
||||
SendCW(string) error
|
||||
StopCW() error
|
||||
BackspaceCW(int) error
|
||||
SetCWSidetone(bool) error
|
||||
SetSidetoneLevel(int) error
|
||||
SetCWFilter(int) error
|
||||
@@ -437,7 +474,7 @@ type IcomTXState struct {
|
||||
// Transmit + live status (polled).
|
||||
Transmitting bool `json:"transmitting"`
|
||||
Split bool `json:"split"`
|
||||
SMeter int `json:"s_meter"` // 0-100 (raw 0-255; S9≈120)
|
||||
SMeter int `json:"s_meter"` // 0-100 (raw 0-255; S9≈120)
|
||||
PowerMeter int `json:"power_meter"` // 0-100 (TX Po)
|
||||
SWRMeter int `json:"swr_meter"` // 0-100 (TX SWR)
|
||||
// RIT / ΔTX (XIT).
|
||||
@@ -448,20 +485,20 @@ type IcomTXState struct {
|
||||
KeySpeedWPM int `json:"key_speed_wpm"` // current KEY SPEED in WPM
|
||||
BreakIn int `json:"break_in"` // CW break-in: 0=OFF, 1=SEMI, 2=FULL
|
||||
// Set controls.
|
||||
RFPower int `json:"rf_power"` // 0-100 (TX output)
|
||||
MicGain int `json:"mic_gain"` // 0-100
|
||||
AFGain int `json:"af_gain"`
|
||||
RFGain int `json:"rf_gain"`
|
||||
NB bool `json:"nb"`
|
||||
NBLevel int `json:"nb_level"`
|
||||
NR bool `json:"nr"`
|
||||
NRLevel int `json:"nr_level"`
|
||||
ANF bool `json:"anf"`
|
||||
APF bool `json:"apf"` // audio peak filter (CW only)
|
||||
AGC string `json:"agc,omitempty"` // FAST | MID | SLOW
|
||||
Preamp int `json:"preamp"` // 0=off, 1=P.AMP1, 2=P.AMP2
|
||||
Att int `json:"att"` // dB attenuation, 0=off
|
||||
Filter int `json:"filter"` // 1 | 2 | 3 (FIL1/2/3)
|
||||
RFPower int `json:"rf_power"` // 0-100 (TX output)
|
||||
MicGain int `json:"mic_gain"` // 0-100
|
||||
AFGain int `json:"af_gain"`
|
||||
RFGain int `json:"rf_gain"`
|
||||
NB bool `json:"nb"`
|
||||
NBLevel int `json:"nb_level"`
|
||||
NR bool `json:"nr"`
|
||||
NRLevel int `json:"nr_level"`
|
||||
ANF bool `json:"anf"`
|
||||
APF bool `json:"apf"` // audio peak filter (CW only)
|
||||
AGC string `json:"agc,omitempty"` // FAST | MID | SLOW
|
||||
Preamp int `json:"preamp"` // 0=off, 1=P.AMP1, 2=P.AMP2
|
||||
Att int `json:"att"` // dB attenuation, 0=off
|
||||
Filter int `json:"filter"` // 1 | 2 | 3 (FIL1/2/3)
|
||||
// Antenna (IC-7610 = ANT1/ANT2).
|
||||
Antenna int `json:"antenna"` // 1 | 2 (0 = unknown)
|
||||
// Filter fine controls: Twin PBT + manual notch (0-100, 50 = centre).
|
||||
@@ -502,20 +539,20 @@ type IcomController interface {
|
||||
SetMicGain(int) error
|
||||
SetIcomSplit(bool) error
|
||||
TuneATU() error
|
||||
SetScope(bool) error // enable/disable the spectrum-scope waveform stream
|
||||
SetScopeMode(bool) error // true = fixed span, false = center-on-VFO
|
||||
SetScope(bool) error // enable/disable the spectrum-scope waveform stream
|
||||
SetScopeMode(bool) error // true = fixed span, false = center-on-VFO
|
||||
SetScopeEdges(int64, int64) error // point the fixed scope at low..high Hz (centre/pan)
|
||||
ScopeData() ScopeSweep // latest assembled sweep (empty until enabled)
|
||||
SetRIT(int) error // RIT/ΔTX offset in signed Hz
|
||||
SetRITOn(bool) error // RIT on/off
|
||||
SetXITOn(bool) error // ΔTX (XIT) on/off
|
||||
SendCW(string) error // key a CW message via the rig's keyer (CI-V 0x17)
|
||||
StopCW() error // abort the CW message being sent
|
||||
SetKeySpeed(int) error // CW keyer speed in WPM
|
||||
SetBreakIn(int) error // CW break-in: 0=OFF, 1=SEMI, 2=FULL
|
||||
SetAntenna(int) error // 1 = ANT1, 2 = ANT2
|
||||
SetPBTInner(int) error // Twin PBT inside (0-100, 50 = centre)
|
||||
SetPBTOuter(int) error // Twin PBT outside (0-100, 50 = centre)
|
||||
ScopeData() ScopeSweep // latest assembled sweep (empty until enabled)
|
||||
SetRIT(int) error // RIT/ΔTX offset in signed Hz
|
||||
SetRITOn(bool) error // RIT on/off
|
||||
SetXITOn(bool) error // ΔTX (XIT) on/off
|
||||
SendCW(string) error // key a CW message via the rig's keyer (CI-V 0x17)
|
||||
StopCW() error // abort the CW message being sent
|
||||
SetKeySpeed(int) error // CW keyer speed in WPM
|
||||
SetBreakIn(int) error // CW break-in: 0=OFF, 1=SEMI, 2=FULL
|
||||
SetAntenna(int) error // 1 = ANT1, 2 = ANT2
|
||||
SetPBTInner(int) error // Twin PBT inside (0-100, 50 = centre)
|
||||
SetPBTOuter(int) error // Twin PBT outside (0-100, 50 = centre)
|
||||
SetManualNotch(bool) error
|
||||
SetNotchPos(int) error // manual-notch position (0-100, 50 = centre)
|
||||
SetSquelch(int) error
|
||||
|
||||
+155
-16
@@ -30,10 +30,10 @@ type Flex struct {
|
||||
conn net.Conn
|
||||
dialCancel context.CancelFunc // cancels an in-flight Connect dial (Interrupt/Stop); nil when not dialing
|
||||
wmu sync.Mutex // serialises writes to conn
|
||||
seq int
|
||||
handle string
|
||||
model string
|
||||
gotHandle bool
|
||||
seq int
|
||||
handle string
|
||||
model string
|
||||
gotHandle bool
|
||||
|
||||
slices map[int]*flexSlice
|
||||
tx flexTX // transmit/ATU state pushed by the radio (FlexRadio tab)
|
||||
@@ -90,12 +90,28 @@ type flexSlice struct {
|
||||
apfLevel int
|
||||
wnb bool // wideband noise blanker
|
||||
wnbLevel int
|
||||
rit bool // receive incremental tuning enabled
|
||||
ritFreq int // RIT offset in Hz (negative = down)
|
||||
xit bool // transmit incremental tuning enabled
|
||||
xitFreq int // XIT offset in Hz
|
||||
filterLo int // slice filter low cut (Hz)
|
||||
filterHi int // slice filter high cut (Hz)
|
||||
// SmartSDR v4 DSP (8000/Aurora series). Key names per the FlexLib slice
|
||||
// docs: lms_nr(NRL) / lms_anf(ANFL) / speex_nr(NRS) / rnnoise(RNN) /
|
||||
// anft(ANFT) / nrf(NRF). Older radios never report them — dspV4 flips true
|
||||
// the first time any of these keys appears, and gates the extra UI rows.
|
||||
lmsNR bool // NRL — legacy LMS noise reduction
|
||||
lmsNRLevel int
|
||||
lmsANF bool // ANFL — legacy LMS auto-notch
|
||||
lmsANFLevel int
|
||||
speexNR bool // NRS — spectral subtraction NR
|
||||
speexNRLevel int
|
||||
rnnoise bool // RNN — AI noise reduction (on/off only)
|
||||
anft bool // ANFT — FFT-based auto-notch (on/off only)
|
||||
nrf bool // NRF — noise reduction w/ filter
|
||||
nrfLevel int
|
||||
dspV4 bool
|
||||
daxCh int // DAX audio channel for this slice (0 = off, 1-8)
|
||||
rit bool // receive incremental tuning enabled
|
||||
ritFreq int // RIT offset in Hz (negative = down)
|
||||
xit bool // transmit incremental tuning enabled
|
||||
xitFreq int // XIT offset in Hz
|
||||
filterLo int // slice filter low cut (Hz)
|
||||
filterHi int // slice filter high cut (Hz)
|
||||
rxAnt string // selected RX antenna (e.g. ANT1, ANT2, RX_A)
|
||||
txAnt string // selected TX antenna
|
||||
antList []string // antennas valid for this slice (RX side)
|
||||
@@ -118,8 +134,9 @@ type flexTX struct {
|
||||
mon bool
|
||||
monLevel int
|
||||
micLevel int
|
||||
filterLow int // TX filter low cut (Hz)
|
||||
filterHigh int // TX filter high cut (Hz)
|
||||
filterLow int // TX filter low cut (Hz)
|
||||
filterHigh int // TX filter high cut (Hz)
|
||||
dax bool // TX audio comes from DAX (SmartSDR's transmit-bar DAX button)
|
||||
atuStatus string
|
||||
atuMemories bool
|
||||
// CW keyer params (set via the top-level "cw" commands).
|
||||
@@ -431,6 +448,8 @@ func (f *Flex) handleStatus(payload string) {
|
||||
f.tx.tunePower = atoiDefault(val, f.tx.tunePower)
|
||||
case "tune":
|
||||
f.tx.tune = val == "1"
|
||||
case "dax":
|
||||
f.tx.dax = val == "1"
|
||||
case "vox_enable":
|
||||
f.tx.voxEnable = val == "1"
|
||||
case "vox_level":
|
||||
@@ -809,6 +828,28 @@ func (f *Flex) handleStatus(payload string) {
|
||||
s.wnb = val == "1"
|
||||
case "wnb_level":
|
||||
s.wnbLevel = atoiDefault(val, s.wnbLevel)
|
||||
case "lms_nr":
|
||||
s.lmsNR, s.dspV4 = val == "1", true
|
||||
case "lms_nr_level":
|
||||
s.lmsNRLevel, s.dspV4 = atoiDefault(val, s.lmsNRLevel), true
|
||||
case "lms_anf":
|
||||
s.lmsANF, s.dspV4 = val == "1", true
|
||||
case "lms_anf_level":
|
||||
s.lmsANFLevel, s.dspV4 = atoiDefault(val, s.lmsANFLevel), true
|
||||
case "speex_nr":
|
||||
s.speexNR, s.dspV4 = val == "1", true
|
||||
case "speex_nr_level":
|
||||
s.speexNRLevel, s.dspV4 = atoiDefault(val, s.speexNRLevel), true
|
||||
case "rnnoise":
|
||||
s.rnnoise, s.dspV4 = val == "1", true
|
||||
case "anft":
|
||||
s.anft, s.dspV4 = val == "1", true
|
||||
case "nrf":
|
||||
s.nrf, s.dspV4 = val == "1", true
|
||||
case "nrf_level":
|
||||
s.nrfLevel, s.dspV4 = atoiDefault(val, s.nrfLevel), true
|
||||
case "dax":
|
||||
s.daxCh = atoiDefault(val, s.daxCh)
|
||||
case "rit_on":
|
||||
s.rit = val == "1"
|
||||
case "rit_freq":
|
||||
@@ -1274,6 +1315,7 @@ func (f *Flex) FlexState() FlexTXState {
|
||||
MicLevel: f.tx.micLevel,
|
||||
TXFilterLow: f.tx.filterLow,
|
||||
TXFilterHigh: f.tx.filterHigh,
|
||||
TXDAX: f.tx.dax,
|
||||
MicProfile: f.micProfile,
|
||||
MicProfiles: f.micProfiles,
|
||||
ATUStatus: f.tx.atuStatus,
|
||||
@@ -1328,6 +1370,18 @@ func (f *Flex) FlexState() FlexTXState {
|
||||
st.APFLevel = rx.apfLevel
|
||||
st.WNB = rx.wnb
|
||||
st.WNBLevel = rx.wnbLevel
|
||||
st.LMSNR = rx.lmsNR
|
||||
st.LMSNRLevel = rx.lmsNRLevel
|
||||
st.LMSANF = rx.lmsANF
|
||||
st.LMSANFLevel = rx.lmsANFLevel
|
||||
st.SpeexNR = rx.speexNR
|
||||
st.SpeexNRLevel = rx.speexNRLevel
|
||||
st.RNN = rx.rnnoise
|
||||
st.ANFT = rx.anft
|
||||
st.NRF = rx.nrf
|
||||
st.NRFLevel = rx.nrfLevel
|
||||
st.DSPV4 = rx.dspV4
|
||||
st.DAXCh = rx.daxCh
|
||||
st.RIT = rx.rit
|
||||
st.RITFreq = rx.ritFreq
|
||||
st.XIT = rx.xit
|
||||
@@ -1396,6 +1450,28 @@ func (f *Flex) sendSlice(param string, val any) error {
|
||||
rx.apf = val == "1"
|
||||
case "apf_level":
|
||||
rx.apfLevel = toInt(val)
|
||||
case "lms_nr":
|
||||
rx.lmsNR = val == "1"
|
||||
case "lms_nr_level":
|
||||
rx.lmsNRLevel = toInt(val)
|
||||
case "lms_anf":
|
||||
rx.lmsANF = val == "1"
|
||||
case "lms_anf_level":
|
||||
rx.lmsANFLevel = toInt(val)
|
||||
case "speex_nr":
|
||||
rx.speexNR = val == "1"
|
||||
case "speex_nr_level":
|
||||
rx.speexNRLevel = toInt(val)
|
||||
case "rnnoise":
|
||||
rx.rnnoise = val == "1"
|
||||
case "anft":
|
||||
rx.anft = val == "1"
|
||||
case "nrf":
|
||||
rx.nrf = val == "1"
|
||||
case "nrf_level":
|
||||
rx.nrfLevel = toInt(val)
|
||||
case "dax":
|
||||
rx.daxCh = toInt(val)
|
||||
case "rxant":
|
||||
rx.rxAnt = fmt.Sprint(val)
|
||||
case "txant":
|
||||
@@ -1515,14 +1591,15 @@ func (f *Flex) SetNR(on bool) error { return f.sendSlice("nr", boolFlex(on))
|
||||
func (f *Flex) SetNRLevel(l int) error { return f.sendSlice("nr_level", clampLevel(l)) }
|
||||
func (f *Flex) SetANF(on bool) error { return f.sendSlice("anf", boolFlex(on)) }
|
||||
func (f *Flex) SetANFLevel(l int) error { return f.sendSlice("anf_level", clampLevel(l)) }
|
||||
|
||||
// RIT/XIT — an offset applied to the RX (RIT) or TX (XIT) frequency of the active
|
||||
// slice, without moving the slice itself. SmartSDR keeps the offset even while the
|
||||
// switch is off, so turning RIT back on restores the last offset — same as the
|
||||
// radio's own knob.
|
||||
func (f *Flex) SetRIT(on bool) error { return f.sendSlice("rit_on", boolFlex(on)) }
|
||||
func (f *Flex) SetRITFreq(hz int) error { return f.sendSlice("rit_freq", clampOffset(hz)) }
|
||||
func (f *Flex) SetXIT(on bool) error { return f.sendSlice("xit_on", boolFlex(on)) }
|
||||
func (f *Flex) SetXITFreq(hz int) error { return f.sendSlice("xit_freq", clampOffset(hz)) }
|
||||
func (f *Flex) SetRIT(on bool) error { return f.sendSlice("rit_on", boolFlex(on)) }
|
||||
func (f *Flex) SetRITFreq(hz int) error { return f.sendSlice("rit_freq", clampOffset(hz)) }
|
||||
func (f *Flex) SetXIT(on bool) error { return f.sendSlice("xit_on", boolFlex(on)) }
|
||||
func (f *Flex) SetXITFreq(hz int) error { return f.sendSlice("xit_freq", clampOffset(hz)) }
|
||||
|
||||
// clampOffset keeps a RIT/XIT offset inside what SmartSDR accepts (±99 999 Hz).
|
||||
func clampOffset(hz int) int {
|
||||
@@ -1537,6 +1614,37 @@ func clampOffset(hz int) int {
|
||||
|
||||
func (f *Flex) SetAPF(on bool) error { return f.sendSlice("apf", boolFlex(on)) }
|
||||
func (f *Flex) SetAPFLevel(l int) error { return f.sendSlice("apf_level", clampLevel(l)) }
|
||||
|
||||
// SmartSDR v4 DSP (8000/Aurora series) — the extra noise tools SmartSDR ships
|
||||
// beyond nb/nr/anf/wnb. Key names per the FlexLib slice command docs.
|
||||
func (f *Flex) SetLMSNR(on bool) error { return f.sendSlice("lms_nr", boolFlex(on)) }
|
||||
func (f *Flex) SetLMSNRLevel(l int) error { return f.sendSlice("lms_nr_level", clampLevel(l)) }
|
||||
func (f *Flex) SetLMSANF(on bool) error { return f.sendSlice("lms_anf", boolFlex(on)) }
|
||||
func (f *Flex) SetLMSANFLevel(l int) error { return f.sendSlice("lms_anf_level", clampLevel(l)) }
|
||||
func (f *Flex) SetSpeexNR(on bool) error { return f.sendSlice("speex_nr", boolFlex(on)) }
|
||||
func (f *Flex) SetSpeexNRLevel(l int) error { return f.sendSlice("speex_nr_level", clampLevel(l)) }
|
||||
func (f *Flex) SetRNN(on bool) error { return f.sendSlice("rnnoise", boolFlex(on)) }
|
||||
func (f *Flex) SetANFT(on bool) error { return f.sendSlice("anft", boolFlex(on)) }
|
||||
func (f *Flex) SetNRF(on bool) error { return f.sendSlice("nrf", boolFlex(on)) }
|
||||
func (f *Flex) SetNRFLevel(l int) error { return f.sendSlice("nrf_level", clampLevel(l)) }
|
||||
|
||||
// SetDAX routes the active slice's RX audio to a DAX channel (0 = off, 1-8) —
|
||||
// the SmartSDR slice "DAX" selector, e.g. to feed WSJT-X via DAX audio.
|
||||
func (f *Flex) SetDAX(ch int) error {
|
||||
if ch < 0 {
|
||||
ch = 0
|
||||
}
|
||||
if ch > 8 {
|
||||
ch = 8
|
||||
}
|
||||
return f.sendSlice("dax", ch)
|
||||
}
|
||||
|
||||
// SetTXDAX toggles DAX as the TRANSMIT audio source — SmartSDR's transmit-bar
|
||||
// DAX button ("transmit set dax="), the one used to send WSJT-X audio.
|
||||
func (f *Flex) SetTXDAX(on bool) error {
|
||||
return f.txSet("transmit set dax="+boolFlex(on), "dax", func(t *flexTX) { t.dax = on })
|
||||
}
|
||||
func (f *Flex) SetWNB(on bool) error { return f.sendSlice("wnb", boolFlex(on)) }
|
||||
func (f *Flex) SetWNBLevel(l int) error { return f.sendSlice("wnb_level", clampLevel(l)) }
|
||||
|
||||
@@ -1581,6 +1689,37 @@ func (f *Flex) SetCWBreakInDelay(ms int) error {
|
||||
return nil
|
||||
}
|
||||
|
||||
// SendCW queues text on the radio's CWX keyer. SmartSDR buffers and keys it, so
|
||||
// no WinKeyer / SmartCAT is needed — and because the radio owns the buffer,
|
||||
// characters fed while it's already sending append and key in order (the basis
|
||||
// for type-ahead). Quotes/backslashes are escaped for the "cwx send \"…\"" form.
|
||||
func (f *Flex) SendCW(text string) error {
|
||||
text = strings.TrimRight(text, "\r\n")
|
||||
if strings.TrimSpace(text) == "" {
|
||||
return nil
|
||||
}
|
||||
esc := strings.NewReplacer(`\`, `\\`, `"`, `\"`).Replace(text)
|
||||
f.send(`cwx send "` + esc + `"`)
|
||||
return nil
|
||||
}
|
||||
|
||||
// StopCW clears the CWX buffer, aborting whatever is currently being keyed.
|
||||
func (f *Flex) StopCW() error {
|
||||
f.send("cwx clear")
|
||||
return nil
|
||||
}
|
||||
|
||||
// BackspaceCW removes the last n not-yet-keyed characters from the CWX buffer —
|
||||
// the "un-send while sending" a serial WinKeyer can't do. Used for type-ahead
|
||||
// corrections (backspacing a mistyped call before the radio has keyed it).
|
||||
func (f *Flex) BackspaceCW(n int) error {
|
||||
if n < 1 {
|
||||
n = 1
|
||||
}
|
||||
f.send(fmt.Sprintf("cwx erase %d", n))
|
||||
return nil
|
||||
}
|
||||
|
||||
func (f *Flex) SetCWSidetone(on bool) error {
|
||||
f.mu.Lock()
|
||||
f.tx.cwSidetone = on
|
||||
|
||||
@@ -136,6 +136,11 @@ type icomNet struct {
|
||||
// but link fine" (stay connected) from "link dead" (reconnect). See Alive().
|
||||
lastRx atomic.Int64
|
||||
|
||||
// dead is set when the rig explicitly tears the session down (control 0x05):
|
||||
// Alive() then returns false immediately so ReadState fails on the next poll and
|
||||
// the manager reconnects cleanly, instead of waiting out the 6 s lastRx timeout.
|
||||
dead atomic.Bool
|
||||
|
||||
// audio is the optional RX audio stream (UDP 50003). nil when audio is off.
|
||||
// Torn down alongside the CI-V/control streams in Close.
|
||||
audio *icomAudio
|
||||
@@ -178,6 +183,9 @@ func (n *icomNet) markRx() { n.lastRx.Store(time.Now().UnixNano()) }
|
||||
// the radio — is gone. Independent of CI-V replies, so a powered-off rig still
|
||||
// reads as Alive and the session isn't torn down. Satisfies aliveTransport.
|
||||
func (n *icomNet) Alive() bool {
|
||||
if n.dead.Load() {
|
||||
return false // rig sent an explicit disconnect — reconnect now, don't wait
|
||||
}
|
||||
last := n.lastRx.Load()
|
||||
if last == 0 {
|
||||
return true // just connected, nothing received yet — give it a chance
|
||||
@@ -292,6 +300,7 @@ func (n *icomNet) ctrlPump() {
|
||||
n.ctrlResend(icnLE.Uint16(buf[6:]))
|
||||
}
|
||||
case 0x05: // rig-initiated disconnect — it dropped US
|
||||
n.dead.Store(true) // make Alive() fail now → prompt clean reconnect
|
||||
debugLog.Printf("icom net: rig sent DISCONNECT on control stream — session dropped by the rig")
|
||||
default:
|
||||
// Anything else on the control stream is (almost always) the rig's
|
||||
@@ -367,6 +376,7 @@ func (n *icomNet) civPump() {
|
||||
n.resend(icnLE.Uint16(buf[6:]))
|
||||
}
|
||||
case typ == 0x05: // rig-initiated disconnect — it dropped US
|
||||
n.dead.Store(true) // make Alive() fail now → prompt clean reconnect
|
||||
debugLog.Printf("icom net: rig sent DISCONNECT on CI-V stream — session dropped by the rig")
|
||||
case typ == 0x00 && k > 0x15 && buf[0x10] == 0xc1: // CI-V data
|
||||
n.trackRxSeq(icnLE.Uint16(buf[6:])) // note gaps for retransmit
|
||||
|
||||
+15
-10
@@ -32,6 +32,7 @@ type OmniRig struct {
|
||||
omnirig *ole.IDispatch
|
||||
rig *ole.IDispatch
|
||||
lastSig string // last logged Split/VFO signature — only log on change
|
||||
rigType string // OmniRig's RigType string (the .ini title), e.g. "IC-7610"
|
||||
|
||||
// lastSetFreq is the frequency most recently COMMANDED via SetFrequency.
|
||||
// SetMode uses it to pick USB vs LSB for "SSB" instead of reading OmniRig's
|
||||
@@ -80,7 +81,8 @@ func (o *OmniRig) Connect() error {
|
||||
o.rig = rigVar.ToIDispatch()
|
||||
|
||||
if rt, err := oleutil.GetProperty(o.rig, "RigType"); err == nil {
|
||||
debugLog.Printf("OmniRig connected to Rig%d type=%q", o.RigNum, rt.ToString())
|
||||
o.rigType = rt.ToString()
|
||||
debugLog.Printf("OmniRig connected to Rig%d type=%q", o.RigNum, o.rigType)
|
||||
}
|
||||
return nil
|
||||
}
|
||||
@@ -194,17 +196,20 @@ func (o *OmniRig) ReadState() (RigState, error) {
|
||||
s.FreqHz, s.RxFreqHz = freqB, freqA
|
||||
}
|
||||
} else {
|
||||
// Simplex: the operating frequency is OmniRig's generic Freq (the active
|
||||
// VFO), like Log4OM. Fall back to the per-VFO value only if Freq is 0.
|
||||
// Simplex: read VFO A first, fall back to the generic Freq — exactly like
|
||||
// DXHunter/WSJT-X. PM_FREQA rigs (Yaesu, Kenwood) populate FreqA; some
|
||||
// Icoms (IC-9100 etc.) only populate the generic Freq. On the IC-7610
|
||||
// OmniRig's generic Freq reports VFO B (its Main/Sub model confuses the
|
||||
// stock ini), so keying off FreqA gives the operator the VFO they expect.
|
||||
s.Split = false
|
||||
s.RxFreqHz = 0
|
||||
s.FreqHz = freqMain
|
||||
if s.FreqHz == 0 {
|
||||
if s.Vfo == "B" || s.Vfo == "BB" {
|
||||
s.FreqHz = freqB
|
||||
} else {
|
||||
s.FreqHz = freqA
|
||||
}
|
||||
switch {
|
||||
case freqA != 0:
|
||||
s.FreqHz = freqA
|
||||
case freqMain != 0:
|
||||
s.FreqHz = freqMain
|
||||
default:
|
||||
s.FreqHz = freqB
|
||||
}
|
||||
}
|
||||
return s, nil
|
||||
|
||||
@@ -1,389 +0,0 @@
|
||||
// Package cwdecode is a real-time CW (Morse) decoder: it turns a stream of
|
||||
// mono PCM samples into decoded text. The pipeline is the classic one — a bank
|
||||
// of Goertzel tone detectors, a pitch LOCK that follows a single tone (so QRM
|
||||
// at other pitches is ignored), an adaptive envelope/threshold on the LOCKED
|
||||
// tone (level-independent, so weak or strong signals both key cleanly), an
|
||||
// adaptive dot-length (WPM) estimate, and a timing state machine that maps
|
||||
// marks/spaces to Morse and then to characters.
|
||||
//
|
||||
// It is deliberately self-contained and dependency-free so it can be unit
|
||||
// tested with synthetic signals. As with every audio CW decoder, weak signals
|
||||
// and very heavy QRM still degrade it; the pitch lock keeps QRM on other tones
|
||||
// out of the decode.
|
||||
package cwdecode
|
||||
|
||||
import (
|
||||
"math"
|
||||
"sort"
|
||||
"sync/atomic"
|
||||
)
|
||||
|
||||
// Status is a periodic snapshot for the UI (pitch lock, speed, signal).
|
||||
type Status struct {
|
||||
WPM int `json:"wpm"`
|
||||
Pitch int `json:"pitch"` // Hz of the locked tone (0 = not locked)
|
||||
Level float64 `json:"level"` // 0..1 input audio level (RMS) for the meter
|
||||
Active bool `json:"active"` // a tone is currently keyed down
|
||||
}
|
||||
|
||||
// Decoder consumes PCM and emits decoded characters via onChar (one or more
|
||||
// characters at a time, including " " for word gaps) and periodic onStatus.
|
||||
type Decoder struct {
|
||||
fs int
|
||||
hop int // samples between updates
|
||||
win int // Goertzel window length
|
||||
freqs []float64
|
||||
coeffs []float64 // precomputed 2*cos(w) per freq
|
||||
|
||||
ring []float64 // last win samples
|
||||
acc int // samples since last hop
|
||||
mags []float64 // per-bin magnitude this hop
|
||||
nbuf []float64 // scratch for the noise percentile
|
||||
|
||||
// Fixed-pitch target (Hz). 0 = auto-search; >0 = lock to the nearest bin and
|
||||
// ignore everything else (e.g. follow the radio's CW pitch). Set live from
|
||||
// another goroutine, so it's atomic.
|
||||
targetHz atomic.Int32
|
||||
|
||||
// Pitch lock.
|
||||
lockIdx int // index of the locked tone bin, -1 = unlocked
|
||||
candIdx int // current argmax candidate while unlocked
|
||||
candHops int // consecutive hops the candidate has been dominant
|
||||
quietHops int // consecutive key-up hops while locked
|
||||
noise float64 // broadband noise estimate (percentile of bins)
|
||||
relockHops int // quiet hops before the lock is released
|
||||
acqSNR float64 // tone/noise ratio to acquire after a few stable hops
|
||||
strongSNR float64 // tone/noise ratio to lock immediately (1 hop)
|
||||
|
||||
// Adaptive keying envelope, on the LOCKED bin's magnitude.
|
||||
peak, floor float64
|
||||
state bool // true = mark (key down)
|
||||
stateHops int
|
||||
dotHops float64 // adaptive dot length, in hops
|
||||
markCount int // marks seen since lock (fast WPM adaptation while small)
|
||||
elem []byte // current "." / "-" run for the in-progress character
|
||||
charEmitted bool
|
||||
wordEmitted bool
|
||||
|
||||
lastPitch float64
|
||||
lastRMS float64
|
||||
|
||||
statusEvery int
|
||||
sinceStatus int
|
||||
|
||||
onChar func(string)
|
||||
onStatus func(Status)
|
||||
}
|
||||
|
||||
var morse = map[string]byte{
|
||||
".-": 'A', "-...": 'B', "-.-.": 'C', "-..": 'D', ".": 'E', "..-.": 'F',
|
||||
"--.": 'G', "....": 'H', "..": 'I', ".---": 'J', "-.-": 'K', ".-..": 'L',
|
||||
"--": 'M', "-.": 'N', "---": 'O', ".--.": 'P', "--.-": 'Q', ".-.": 'R',
|
||||
"...": 'S', "-": 'T', "..-": 'U', "...-": 'V', ".--": 'W', "-..-": 'X',
|
||||
"-.--": 'Y', "--..": 'Z',
|
||||
"-----": '0', ".----": '1', "..---": '2', "...--": '3', "....-": '4',
|
||||
".....": '5', "-....": '6', "--...": '7', "---..": '8', "----.": '9',
|
||||
".-.-.-": '.', "--..--": ',', "..--..": '?', "-..-.": '/', "-...-": '=',
|
||||
".-.-.": '+', "-.-.--": '!', "---...": ':', "-....-": '-', ".--.-.": '@',
|
||||
}
|
||||
|
||||
// New builds a decoder for the given sample rate. onChar receives decoded text
|
||||
// incrementally; onStatus receives ~10 snapshots/second. Either may be nil.
|
||||
func New(sampleRate int, onChar func(string), onStatus func(Status)) *Decoder {
|
||||
if sampleRate <= 0 {
|
||||
sampleRate = 16000
|
||||
}
|
||||
d := &Decoder{
|
||||
fs: sampleRate,
|
||||
hop: sampleRate / 250, // ~4 ms resolution
|
||||
win: sampleRate / 72, // ~14 ms Goertzel window (selective, fairly snappy)
|
||||
dotHops: 15, // ~20 WPM seed
|
||||
acqSNR: 1.9, // ignore noise spikes (looser locked onto noise = garbage)
|
||||
strongSNR: 3.2, // only a genuinely strong tone locks in 1 hop
|
||||
lockIdx: -1,
|
||||
candIdx: -1,
|
||||
statusEvery: 25, // ~10 Hz
|
||||
onChar: onChar,
|
||||
onStatus: onStatus,
|
||||
}
|
||||
if d.hop < 1 {
|
||||
d.hop = 1
|
||||
}
|
||||
d.relockHops = int(0.8 * float64(d.fs) / float64(d.hop)) // release lock after ~0.8 s quiet
|
||||
// Candidate CW tones: 400–1000 Hz every 25 Hz. Deliberately NOT lower: strong
|
||||
// low-frequency noise/hum (pink/red noise rises toward DC) would otherwise win
|
||||
// the argmax and lock the decoder onto ~250 Hz junk instead of the signal.
|
||||
for f := 400.0; f <= 1000.0; f += 25 {
|
||||
d.freqs = append(d.freqs, f)
|
||||
d.coeffs = append(d.coeffs, 2*math.Cos(2*math.Pi*f/float64(d.fs)))
|
||||
}
|
||||
d.mags = make([]float64, len(d.freqs))
|
||||
d.nbuf = make([]float64, len(d.freqs))
|
||||
return d
|
||||
}
|
||||
|
||||
// SetTarget fixes the decode pitch to hz (lock to the nearest bin, ignore other
|
||||
// tones), or returns to auto-search when hz <= 0. Safe to call concurrently.
|
||||
func (d *Decoder) SetTarget(hz int) { d.targetHz.Store(int32(hz)) }
|
||||
|
||||
// nearestBin returns the bin index closest to hz.
|
||||
func (d *Decoder) nearestBin(hz float64) int {
|
||||
best, bestD := 0, math.Inf(1)
|
||||
for i, f := range d.freqs {
|
||||
if dd := math.Abs(f - hz); dd < bestD {
|
||||
bestD, best = dd, i
|
||||
}
|
||||
}
|
||||
return best
|
||||
}
|
||||
|
||||
// Reset clears decode state (e.g. when the user re-arms the decoder).
|
||||
func (d *Decoder) Reset() {
|
||||
d.ring = d.ring[:0]
|
||||
d.acc = 0
|
||||
d.lockIdx, d.candIdx, d.candHops, d.quietHops = -1, -1, 0, 0
|
||||
d.peak, d.floor = 0, 0
|
||||
d.state = false
|
||||
d.stateHops = 0
|
||||
d.dotHops = 15
|
||||
d.markCount = 0
|
||||
d.elem = d.elem[:0]
|
||||
d.charEmitted, d.wordEmitted = false, false
|
||||
}
|
||||
|
||||
// Process feeds a block of mono samples through the decoder.
|
||||
func (d *Decoder) Process(samples []int16) {
|
||||
for _, s := range samples {
|
||||
d.ring = append(d.ring, float64(s))
|
||||
if len(d.ring) > d.win {
|
||||
d.ring = d.ring[len(d.ring)-d.win:]
|
||||
}
|
||||
d.acc++
|
||||
if d.acc >= d.hop && len(d.ring) >= d.win {
|
||||
d.acc = 0
|
||||
d.analyze()
|
||||
d.step()
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
// analyze runs the Goertzel bank, estimates the noise floor, and maintains the
|
||||
// pitch lock (which tone the envelope detector then follows).
|
||||
func (d *Decoder) analyze() {
|
||||
n := float64(len(d.ring))
|
||||
var sumSq float64
|
||||
maxIdx, maxMag := 0, -1.0
|
||||
for i, coeff := range d.coeffs {
|
||||
var s1, s2 float64
|
||||
for _, x := range d.ring {
|
||||
s0 := x + coeff*s1 - s2
|
||||
s2 = s1
|
||||
s1 = s0
|
||||
}
|
||||
m := math.Sqrt(math.Max(s1*s1+s2*s2-coeff*s1*s2, 0)) / n
|
||||
d.mags[i] = m
|
||||
if m > maxMag {
|
||||
maxMag = m
|
||||
maxIdx = i
|
||||
}
|
||||
}
|
||||
for _, x := range d.ring {
|
||||
sumSq += x * x
|
||||
}
|
||||
d.lastRMS = math.Min(1, math.Sqrt(sumSq/n)/32768*4)
|
||||
|
||||
// Fixed-pitch mode: lock straight to the target bin, skip the auto search.
|
||||
// A narrow filter at the known pitch is exactly how a skimmer avoids QRM.
|
||||
if th := int(d.targetHz.Load()); th > 0 {
|
||||
d.lockIdx = d.nearestBin(float64(th))
|
||||
d.lastPitch = d.freqs[d.lockIdx]
|
||||
return
|
||||
}
|
||||
|
||||
// Noise floor = 40th percentile of the bins (robust to a few strong tones).
|
||||
copy(d.nbuf, d.mags)
|
||||
sort.Float64s(d.nbuf)
|
||||
d.noise = d.nbuf[int(0.4*float64(len(d.nbuf)-1)+0.5)]
|
||||
|
||||
if d.lockIdx < 0 {
|
||||
if maxIdx == d.candIdx {
|
||||
d.candHops++
|
||||
} else {
|
||||
d.candIdx, d.candHops = maxIdx, 1
|
||||
}
|
||||
snr := maxMag / (d.noise + 1e-9)
|
||||
// Tiered acquisition: a clearly strong tone locks on the FIRST hop (so we
|
||||
// don't eat the first element of a strong signal), a marginal/weak tone
|
||||
// locks after a couple of stable hops (so we don't lock onto pure noise).
|
||||
if snr > d.strongSNR || (d.candHops >= 2 && snr > d.acqSNR) {
|
||||
d.lockIdx = maxIdx
|
||||
d.peak, d.floor = maxMag, d.noise // seed the envelope to this bin
|
||||
d.quietHops = 0
|
||||
d.markCount = 0 // relearn WPM fast for this new signal
|
||||
}
|
||||
}
|
||||
if d.lockIdx >= 0 {
|
||||
d.lastPitch = d.freqs[d.lockIdx]
|
||||
} else {
|
||||
d.lastPitch = 0
|
||||
}
|
||||
}
|
||||
|
||||
// step runs the adaptive envelope on the locked bin and the timing state
|
||||
// machine, one hop. The envelope adapts to the signal level (not an absolute
|
||||
// threshold), so weak and strong signals both key correctly.
|
||||
func (d *Decoder) step() {
|
||||
on := false
|
||||
if d.lockIdx >= 0 {
|
||||
m := d.mags[d.lockIdx]
|
||||
// Peak: fast attack, slow release.
|
||||
if m > d.peak {
|
||||
d.peak += (m - d.peak) * 0.4
|
||||
} else {
|
||||
d.peak += (m - d.peak) * 0.02
|
||||
}
|
||||
// Floor: drops fast toward the signal, but only RISES between marks (when
|
||||
// keyed up). Letting the floor rise during a long dash would shrink the
|
||||
// span until the dash drops below the threshold and fragments into dots —
|
||||
// the cause of the "all dots" garbage on a strong clean signal.
|
||||
if m < d.floor {
|
||||
d.floor += (m - d.floor) * 0.4
|
||||
} else if !d.state {
|
||||
d.floor += (m - d.floor) * 0.02
|
||||
}
|
||||
span := d.peak - d.floor
|
||||
// The frozen floor already stops dashes fragmenting, so keep balanced
|
||||
// thresholds: low enough that short inter-element GAPS are still seen
|
||||
// (otherwise elements merge into >7-symbol runs that decode to nothing).
|
||||
if span > d.floor*0.3+1e-9 {
|
||||
onTh := d.floor + 0.55*span
|
||||
offTh := d.floor + 0.35*span
|
||||
if d.state {
|
||||
on = m > offTh
|
||||
} else {
|
||||
on = m > onTh
|
||||
}
|
||||
}
|
||||
// Release the lock after a long quiet so we can retune to a new signal.
|
||||
if on {
|
||||
d.quietHops = 0
|
||||
} else {
|
||||
d.quietHops++
|
||||
if d.quietHops > d.relockHops {
|
||||
// End of the over: flush any pending character and drop a word
|
||||
// space so the next transmission starts a fresh word (the word-gap
|
||||
// timer above can't fire once the lock is gone).
|
||||
if len(d.elem) > 0 && !d.charEmitted {
|
||||
d.flushChar()
|
||||
d.charEmitted = true
|
||||
}
|
||||
if !d.wordEmitted && d.onChar != nil {
|
||||
d.onChar(" ")
|
||||
d.wordEmitted = true
|
||||
}
|
||||
d.lockIdx, d.candIdx, d.candHops = -1, -1, 0
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
if on == d.state {
|
||||
d.stateHops++
|
||||
if !d.state {
|
||||
d.spaceProgress()
|
||||
}
|
||||
} else {
|
||||
if d.state {
|
||||
d.endMark(d.stateHops)
|
||||
}
|
||||
d.state = on
|
||||
d.stateHops = 1
|
||||
if on {
|
||||
d.charEmitted, d.wordEmitted = false, false
|
||||
}
|
||||
}
|
||||
d.emitStatus(on)
|
||||
}
|
||||
|
||||
// endMark classifies a finished key-down run as a dot or dash and adapts the
|
||||
// dot-length estimate. Runs shorter than a third of a dot are rejected as
|
||||
// clicks/noise.
|
||||
func (d *Decoder) endMark(hops int) {
|
||||
h := float64(hops)
|
||||
// Reject clicks/noise: shorter than a third of a dot AND an absolute floor
|
||||
// of ~4 hops (~16 ms, i.e. faster than ~75 WPM) so noise can't drag the
|
||||
// dot-length estimate down to the clamp (which produced 100 WPM garbage).
|
||||
if h < d.dotHops*0.35 || h < 4 {
|
||||
return
|
||||
}
|
||||
if h > d.dotHops*2 {
|
||||
d.elem = append(d.elem, '-')
|
||||
d.adaptDot(h / 3)
|
||||
} else {
|
||||
d.elem = append(d.elem, '.')
|
||||
d.adaptDot(h)
|
||||
}
|
||||
}
|
||||
|
||||
// adaptDot nudges the dot-length estimate toward an observation (EMA, clamped
|
||||
// to ~5–60 WPM). The EMA is deliberately GENTLE (0.2) and NOT accelerated on the
|
||||
// opening marks: a fast alpha let short noise blips (misclassified as dots) drag
|
||||
// the dot-length down to the clamp within a few marks — the "60 WPM, all dits"
|
||||
// garbage. The slow EMA is self-correcting because genuine marks pull it back up.
|
||||
func (d *Decoder) adaptDot(obs float64) {
|
||||
const alpha = 0.2
|
||||
d.markCount++
|
||||
d.dotHops = d.dotHops*(1-alpha) + obs*alpha
|
||||
if d.dotHops < 5 { // 5 hops ≈ 60 WPM ceiling — never 100
|
||||
d.dotHops = 5
|
||||
}
|
||||
if d.dotHops > 55 {
|
||||
d.dotHops = 55
|
||||
}
|
||||
}
|
||||
|
||||
// spaceProgress flushes the current character once the gap exceeds a character
|
||||
// gap, and a word space once it exceeds a word gap.
|
||||
func (d *Decoder) spaceProgress() {
|
||||
g := float64(d.stateHops)
|
||||
if !d.charEmitted && g > d.dotHops*2 {
|
||||
d.flushChar()
|
||||
d.charEmitted = true
|
||||
}
|
||||
if !d.wordEmitted && g > d.dotHops*5 {
|
||||
if d.onChar != nil {
|
||||
d.onChar(" ")
|
||||
}
|
||||
d.wordEmitted = true
|
||||
}
|
||||
}
|
||||
|
||||
// flushChar looks up the accumulated element string and emits the character.
|
||||
func (d *Decoder) flushChar() {
|
||||
if len(d.elem) == 0 {
|
||||
return
|
||||
}
|
||||
if c, ok := morse[string(d.elem)]; ok {
|
||||
if d.onChar != nil {
|
||||
d.onChar(string(c))
|
||||
}
|
||||
} else if d.onChar != nil && len(d.elem) <= 7 {
|
||||
// Only flag a genuinely Morse-shaped but unknown char with "?". An
|
||||
// over-long element run is noise — drop it silently rather than spam "?".
|
||||
d.onChar("?")
|
||||
}
|
||||
d.elem = d.elem[:0]
|
||||
}
|
||||
|
||||
func (d *Decoder) emitStatus(on bool) {
|
||||
d.sinceStatus++
|
||||
if d.sinceStatus < d.statusEvery || d.onStatus == nil {
|
||||
return
|
||||
}
|
||||
d.sinceStatus = 0
|
||||
hopMs := float64(d.hop) / float64(d.fs) * 1000
|
||||
wpm := 0
|
||||
if d.dotHops > 0 {
|
||||
wpm = int(math.Round(1200 / (d.dotHops * hopMs)))
|
||||
}
|
||||
d.onStatus(Status{WPM: wpm, Pitch: int(math.Round(d.lastPitch)), Level: d.lastRMS, Active: on})
|
||||
}
|
||||
@@ -1,201 +0,0 @@
|
||||
package cwdecode
|
||||
|
||||
import (
|
||||
"math"
|
||||
"strings"
|
||||
"testing"
|
||||
)
|
||||
|
||||
// reverse Morse map for the synthesizer.
|
||||
func charToMorse() map[byte]string {
|
||||
m := map[byte]string{}
|
||||
for code, ch := range morse {
|
||||
m[ch] = code
|
||||
}
|
||||
return m
|
||||
}
|
||||
|
||||
// keyMessage synthesizes a clean keyed tone for msg at the given WPM/pitch.
|
||||
func keyMessage(msg string, fs, wpm int, pitch float64) []int16 {
|
||||
return keyMessageAmp(msg, fs, wpm, pitch, 9000)
|
||||
}
|
||||
|
||||
func keyMessageAmp(msg string, fs, wpm int, pitch, amp float64) []int16 {
|
||||
dot := fs * 1200 / (wpm * 1000) // samples per dot
|
||||
c2m := charToMorse()
|
||||
var out []int16
|
||||
phase := 0.0
|
||||
dphi := 2 * math.Pi * pitch / float64(fs)
|
||||
|
||||
tone := func(n int) {
|
||||
for i := 0; i < n; i++ {
|
||||
out = append(out, int16(amp*math.Sin(phase)))
|
||||
phase += dphi
|
||||
}
|
||||
}
|
||||
silence := func(n int) {
|
||||
for i := 0; i < n; i++ {
|
||||
out = append(out, 0)
|
||||
}
|
||||
}
|
||||
|
||||
silence(fs / 4) // 250 ms lead-in for AGC warmup
|
||||
for i := 0; i < len(msg); i++ {
|
||||
ch := msg[i]
|
||||
if ch == ' ' {
|
||||
silence(7 * dot)
|
||||
continue
|
||||
}
|
||||
code := c2m[ch]
|
||||
for j := 0; j < len(code); j++ {
|
||||
if code[j] == '.' {
|
||||
tone(dot)
|
||||
} else {
|
||||
tone(3 * dot)
|
||||
}
|
||||
silence(dot) // inter-element gap
|
||||
}
|
||||
silence(3 * dot) // inter-character gap (on top of the trailing element gap)
|
||||
}
|
||||
silence(fs / 4)
|
||||
return out
|
||||
}
|
||||
|
||||
func TestDecodeCleanSignal(t *testing.T) {
|
||||
const fs = 16000
|
||||
var sb strings.Builder
|
||||
d := New(fs, func(s string) { sb.WriteString(s) }, nil)
|
||||
|
||||
// Repeat so AGC warm-up only costs the first word.
|
||||
samples := keyMessage("PARIS PARIS PARIS", fs, 22, 700)
|
||||
// Feed in small chunks like the live capture would.
|
||||
for i := 0; i < len(samples); i += 256 {
|
||||
end := i + 256
|
||||
if end > len(samples) {
|
||||
end = len(samples)
|
||||
}
|
||||
d.Process(samples[i:end])
|
||||
}
|
||||
|
||||
got := strings.ToUpper(sb.String())
|
||||
if !strings.Contains(got, "PARIS") {
|
||||
t.Fatalf("decoded %q, want it to contain PARIS", got)
|
||||
}
|
||||
}
|
||||
|
||||
func TestDecodeWithQRM(t *testing.T) {
|
||||
const fs = 16000
|
||||
// Target at 700 Hz; a strong interfering keyed signal at 950 Hz, slightly
|
||||
// quieter, sending different text. The pitch lock should hold on the target.
|
||||
target := keyMessageAmp("PARIS PARIS PARIS", fs, 20, 700, 9000)
|
||||
qrm := keyMessageAmp("BK DE QRZ QRZ TEST", fs, 26, 950, 6500)
|
||||
mix := make([]int16, len(target))
|
||||
for i := range target {
|
||||
v := int(target[i])
|
||||
if i < len(qrm) {
|
||||
v += int(qrm[i])
|
||||
}
|
||||
if v > 32767 {
|
||||
v = 32767
|
||||
} else if v < -32768 {
|
||||
v = -32768
|
||||
}
|
||||
mix[i] = int16(v)
|
||||
}
|
||||
|
||||
var sb strings.Builder
|
||||
d := New(fs, func(s string) { sb.WriteString(s) }, nil)
|
||||
for i := 0; i < len(mix); i += 256 {
|
||||
end := i + 256
|
||||
if end > len(mix) {
|
||||
end = len(mix)
|
||||
}
|
||||
d.Process(mix[i:end])
|
||||
}
|
||||
got := strings.ToUpper(sb.String())
|
||||
if !strings.Contains(got, "PARIS") {
|
||||
t.Fatalf("with QRM, decoded %q, want it to contain PARIS", got)
|
||||
}
|
||||
}
|
||||
|
||||
func TestDecodeFirstCharStrong(t *testing.T) {
|
||||
const fs = 16000
|
||||
var sb strings.Builder
|
||||
d := New(fs, func(s string) { sb.WriteString(s) }, nil)
|
||||
// Strong signal: the very first element (T = a dash) must not be eaten by
|
||||
// lock acquisition. Output should begin with the first character.
|
||||
samples := keyMessageAmp("TEST DE", fs, 20, 700, 16000)
|
||||
for i := 0; i < len(samples); i += 200 {
|
||||
end := i + 200
|
||||
if end > len(samples) {
|
||||
end = len(samples)
|
||||
}
|
||||
d.Process(samples[i:end])
|
||||
}
|
||||
got := strings.ToUpper(strings.TrimSpace(sb.String()))
|
||||
if !strings.HasPrefix(got, "TEST") {
|
||||
t.Fatalf("first chars lost on a strong signal: decoded %q, want it to start with TEST", got)
|
||||
}
|
||||
}
|
||||
|
||||
func TestDecodeWithAmplitudeRipple(t *testing.T) {
|
||||
const fs = 16000
|
||||
// A real signal's tone amplitude wobbles within a mark; if the floor chases
|
||||
// it, dashes fragment into dots ("all dots" garbage). Apply ±30% ripple.
|
||||
samples := keyMessageAmp("CQ TEST DE OM", fs, 24, 800, 10000)
|
||||
rp := 0.0
|
||||
for i := range samples {
|
||||
rp += 2 * math.Pi * 35 / float64(fs) // 35 Hz amplitude wobble
|
||||
samples[i] = int16(float64(samples[i]) * (1 + 0.3*math.Sin(rp)))
|
||||
}
|
||||
var sb strings.Builder
|
||||
d := New(fs, func(s string) { sb.WriteString(s) }, nil)
|
||||
for i := 0; i < len(samples); i += 256 {
|
||||
end := i + 256
|
||||
if end > len(samples) {
|
||||
end = len(samples)
|
||||
}
|
||||
d.Process(samples[i:end])
|
||||
}
|
||||
got := strings.ToUpper(sb.String())
|
||||
if !strings.Contains(got, "TEST DE OM") {
|
||||
t.Fatalf("dashes fragmented under amplitude ripple: decoded %q", got)
|
||||
}
|
||||
}
|
||||
|
||||
func TestDecodeCQFixedPitch(t *testing.T) {
|
||||
const fs = 16000
|
||||
var sb strings.Builder
|
||||
d := New(fs, func(s string) { sb.WriteString(s) }, nil)
|
||||
d.SetTarget(700) // fixed pitch like the user's manual override
|
||||
samples := keyMessageAmp("CQ CQ CQ DE OM", fs, 26, 700, 9000)
|
||||
for i := 0; i < len(samples); i += 200 {
|
||||
end := i + 200
|
||||
if end > len(samples) {
|
||||
end = len(samples)
|
||||
}
|
||||
d.Process(samples[i:end])
|
||||
}
|
||||
got := strings.ToUpper(sb.String())
|
||||
if n := strings.Count(got, "CQ"); n < 2 {
|
||||
t.Fatalf("first element of CQ dropped: decoded %q (only %d CQ)", got, n)
|
||||
}
|
||||
}
|
||||
|
||||
func TestDecodeNumbersAndProsign(t *testing.T) {
|
||||
const fs = 16000
|
||||
var sb strings.Builder
|
||||
d := New(fs, func(s string) { sb.WriteString(s) }, nil)
|
||||
samples := keyMessage("TEST 599 TEST", fs, 18, 650)
|
||||
for i := 0; i < len(samples); i += 200 {
|
||||
end := i + 200
|
||||
if end > len(samples) {
|
||||
end = len(samples)
|
||||
}
|
||||
d.Process(samples[i:end])
|
||||
}
|
||||
got := strings.ToUpper(sb.String())
|
||||
if !strings.Contains(got, "599") {
|
||||
t.Fatalf("decoded %q, want it to contain 599", got)
|
||||
}
|
||||
}
|
||||
+19
-7
@@ -198,14 +198,26 @@ func migrate(conn *sql.DB, translate func(string) string) error {
|
||||
}
|
||||
sort.Strings(names)
|
||||
|
||||
for _, name := range names {
|
||||
var dummy string
|
||||
err := conn.QueryRow(`SELECT name FROM schema_migrations WHERE name = ?`, name).Scan(&dummy)
|
||||
if err == nil {
|
||||
continue // already applied
|
||||
// Fetch every applied migration name in ONE query rather than one round-trip
|
||||
// per migration. On a high-latency remote MySQL those 20+ SELECTs dominated the
|
||||
// connect time (each RTT × migration count) — the whole logbook connect could
|
||||
// take tens of seconds. One SELECT + an in-memory set is effectively instant.
|
||||
applied := map[string]bool{}
|
||||
if rows, err := conn.Query(`SELECT name FROM schema_migrations`); err == nil {
|
||||
for rows.Next() {
|
||||
var n string
|
||||
if rows.Scan(&n) == nil {
|
||||
applied[n] = true
|
||||
}
|
||||
}
|
||||
if err != sql.ErrNoRows {
|
||||
return fmt.Errorf("check migration %s: %w", name, err)
|
||||
rows.Close()
|
||||
} else {
|
||||
return fmt.Errorf("read applied migrations: %w", err)
|
||||
}
|
||||
|
||||
for _, name := range names {
|
||||
if applied[name] {
|
||||
continue // already applied
|
||||
}
|
||||
content, err := migrationsFS.ReadFile("migrations/" + name)
|
||||
if err != nil {
|
||||
|
||||
@@ -0,0 +1,10 @@
|
||||
-- Materialised award references per QSO. As soon as a QSO matches an award
|
||||
-- (via the operator's award definitions) or a reference is set by hand, the
|
||||
-- resolved reference(s) are stored here as a compact JSON object keyed by award
|
||||
-- code, e.g. {"DDFM":"74","WAJA":"12"}. The grid's per-award columns then read
|
||||
-- straight from the row like any other column instead of recomputing the whole
|
||||
-- award engine on every page load — much faster, and easy to display anywhere
|
||||
-- (including the shared MySQL logbook). Kept in step by the app: written on log
|
||||
-- / edit / UDP-import and bulk-recomputed when an award definition or reference
|
||||
-- list changes. SQLite ADD COLUMN is metadata-only, fast even on large logbooks.
|
||||
ALTER TABLE qso ADD COLUMN award_refs TEXT;
|
||||
+40
-17
@@ -129,6 +129,28 @@ func translateTextColumns(s string) string {
|
||||
// OpenMySQL opens the shared MySQL logbook, creating the database if needed,
|
||||
// then applies the (translated) embedded migrations. multiStatements is enabled
|
||||
// so multi-statement migration files run in a single Exec.
|
||||
// tuneMySQLPool sizes the connection pool for a SHARED server. Two opposing needs:
|
||||
// - A big per-instance pool (we shipped 50) let a handful of ops exhaust the
|
||||
// server's global max_connections — "Error 1040: Too many connections".
|
||||
// - Too SMALL a pool starves this instance's OWN concurrent UI queries — the live
|
||||
// multi-op sync (revision poll every 2s + a 3-query grid refresh), live_status,
|
||||
// chat, stats, cluster. Under real multi-op load, 8 and even 16 stalled: hot
|
||||
// paths (WorkedBefore fires ~10 sequential round-trips; every poll uses the
|
||||
// app-lifetime ctx with no per-query timeout) hold a connection for the whole
|
||||
// chain of remote-MySQL latency, so a handful of concurrent UI bursts drained
|
||||
// the pool and "after a while nothing updated" — grid, chat, live_status froze.
|
||||
// 40 fits the actual deployment (max 5 ops on a server with max_connections=300 →
|
||||
// 40*5 = 200, leaving ~100 for phpMyAdmin/server overhead). This is the per-INSTANCE
|
||||
// pool, so keep max_connections >= pool*ops + headroom.
|
||||
// Brisk idle reaping returns slots to the server; no max lifetime so a slow first
|
||||
// migration on one connection isn't reaped mid-run (drops the selected database).
|
||||
func tuneMySQLPool(conn *sql.DB) {
|
||||
conn.SetMaxOpenConns(40)
|
||||
conn.SetMaxIdleConns(8)
|
||||
conn.SetConnMaxIdleTime(30 * time.Second)
|
||||
conn.SetConnMaxLifetime(0)
|
||||
}
|
||||
|
||||
func OpenMySQL(c MySQLConfig) (*sql.DB, error) {
|
||||
if strings.TrimSpace(c.Host) == "" {
|
||||
return nil, fmt.Errorf("host is required")
|
||||
@@ -137,29 +159,30 @@ func OpenMySQL(c MySQLConfig) (*sql.DB, error) {
|
||||
if !validDBIdent(name) {
|
||||
return nil, fmt.Errorf("invalid database name %q (letters, digits, underscore only)", name)
|
||||
}
|
||||
// Ensure the database exists (connect server-level first).
|
||||
if err := PingMySQL(c); err != nil {
|
||||
return nil, err
|
||||
}
|
||||
conn, err := sql.Open("mysql", c.dsn())
|
||||
if err != nil {
|
||||
return nil, fmt.Errorf("open mysql: %w", err)
|
||||
}
|
||||
// The UI fires bursts of concurrent queries (the Preferences dialog alone
|
||||
// loads ~8 settings in parallel, plus the grid and live cluster status). A
|
||||
// low cap turns such a burst into a deadlock-like stall against a remote
|
||||
// server, so keep a generous pool with idle reaping. SQLite ran uncapped.
|
||||
conn.SetMaxOpenConns(50)
|
||||
conn.SetMaxIdleConns(10)
|
||||
conn.SetConnMaxIdleTime(90 * time.Second)
|
||||
// No max lifetime: a slow server's first migration can run for minutes on a
|
||||
// single connection, and reaping it mid-migration drops the selected database
|
||||
// (surfacing as "Unknown database"). Idle connections are still recycled
|
||||
// after 90s, and the driver retries stale pooled connections.
|
||||
conn.SetConnMaxLifetime(0)
|
||||
tuneMySQLPool(conn)
|
||||
// Connect DIRECTLY to the database first. Only if that fails — the DB doesn't
|
||||
// exist yet (first-time setup) or the server is unreachable — do we pay for the
|
||||
// server-level connect + CREATE DATABASE (two more handshakes). On a normal
|
||||
// startup against an existing DB this halves the connection round-trips, which
|
||||
// matters a lot on a high-latency remote MySQL (each handshake is several RTTs).
|
||||
if err := conn.Ping(); err != nil {
|
||||
_ = conn.Close()
|
||||
return nil, fmt.Errorf("connect to %s: %w", name, err)
|
||||
if perr := PingMySQL(c); perr != nil {
|
||||
return nil, perr // creates the DB (or returns a clear "cannot create" error)
|
||||
}
|
||||
conn, err = sql.Open("mysql", c.dsn())
|
||||
if err != nil {
|
||||
return nil, fmt.Errorf("open mysql: %w", err)
|
||||
}
|
||||
tuneMySQLPool(conn)
|
||||
if err := conn.Ping(); err != nil {
|
||||
_ = conn.Close()
|
||||
return nil, fmt.Errorf("connect to %s: %w", name, err)
|
||||
}
|
||||
}
|
||||
// Set the dialect before migrating so the runner takes the MySQL path
|
||||
// (per-statement, idempotent) rather than the SQLite transaction path.
|
||||
|
||||
+24
-62
@@ -87,77 +87,39 @@ type Manager struct {
|
||||
mu sync.Mutex
|
||||
cfg ExternalServices
|
||||
rnd *rand.Rand
|
||||
|
||||
// uploadCh serialises immediate auto-uploads through a single worker. Firing a
|
||||
// goroutine per QSO meant a pileup / ADIF-import burst hit a service with dozens
|
||||
// of concurrent requests at once — Club Log's nginx answers that with 403, the
|
||||
// upload is counted as failed and the QSO stays at "R" despite the others going
|
||||
// through. One-at-a-time with a small gap keeps every upload under the limit.
|
||||
uploadCh chan uploadJob
|
||||
}
|
||||
|
||||
// uploadJob is one queued auto-upload.
|
||||
type uploadJob struct {
|
||||
svc Service
|
||||
id int64
|
||||
cfg ServiceConfig
|
||||
attempt int // 0 on first try; incremented on each retry
|
||||
}
|
||||
|
||||
// uploadGap spaces serialized uploads so a burst never trips a service's per-IP
|
||||
// rate limiter. maxUploadAttempts bounds retries of a transient failure.
|
||||
const (
|
||||
uploadGap = 250 * time.Millisecond
|
||||
maxUploadAttempts = 4
|
||||
)
|
||||
// maxUploadAttempts bounds retries of a transient upload failure.
|
||||
const maxUploadAttempts = 4
|
||||
|
||||
func NewManager(deps Deps) *Manager {
|
||||
if deps.Client == nil {
|
||||
deps.Client = &http.Client{Timeout: 20 * time.Second}
|
||||
}
|
||||
m := &Manager{
|
||||
return &Manager{
|
||||
deps: deps,
|
||||
// Seeded from the clock; the delay only needs to be unpredictable
|
||||
// enough to spread bursts, not cryptographically random.
|
||||
rnd: rand.New(rand.NewSource(time.Now().UnixNano())),
|
||||
uploadCh: make(chan uploadJob, 4096),
|
||||
rnd: rand.New(rand.NewSource(time.Now().UnixNano())),
|
||||
}
|
||||
go m.uploadWorker()
|
||||
return m
|
||||
}
|
||||
|
||||
// uploadWorker drains the queue one upload at a time, spacing them so a burst of
|
||||
// freshly-logged QSOs can't hammer (and get 403'd by) a service. A transient
|
||||
// failure is re-queued with an exponential back-off, so a QSO that hit a
|
||||
// momentary rate-limit still ends up marked instead of stuck at "R".
|
||||
func (m *Manager) uploadWorker() {
|
||||
for job := range m.uploadCh {
|
||||
ok, retryable := m.upload(job.svc, job.id, job.cfg)
|
||||
if !ok && retryable && job.attempt+1 < maxUploadAttempts {
|
||||
next := job
|
||||
next.attempt++
|
||||
backoff := time.Duration(1<<uint(job.attempt)) * time.Second // 1s, 2s, 4s…
|
||||
m.logf("extsvc: %s upload of QSO %d will retry (attempt %d) in %s", job.svc, job.id, next.attempt+1, backoff)
|
||||
time.AfterFunc(backoff, func() { m.enqueueJob(next) })
|
||||
// attemptUpload uploads a QSO in its OWN goroutine and, on a TRANSIENT failure
|
||||
// (rate-limit / network), re-arms itself with exponential back-off. Each upload is
|
||||
// independent — never serialised through a shared worker, because a single slow
|
||||
// upload (LoTW signs via TQSL; a service on a 30 s timeout) would otherwise block
|
||||
// every following QSO's upload and strand them all at "R" (the regression that hit
|
||||
// the operator on the newest build while everyone on the old concurrent path was
|
||||
// fine).
|
||||
func (m *Manager) attemptUpload(svc Service, id int64, cfg ServiceConfig, attempt int) {
|
||||
go func() {
|
||||
ok, retryable := m.upload(svc, id, cfg)
|
||||
if !ok && retryable && attempt+1 < maxUploadAttempts {
|
||||
backoff := time.Duration(1<<uint(attempt)) * time.Second // 1s, 2s, 4s…
|
||||
m.logf("extsvc: %s upload of QSO %d will retry (attempt %d) in %s", svc, id, attempt+2, backoff)
|
||||
time.AfterFunc(backoff, func() { m.attemptUpload(svc, id, cfg, attempt+1) })
|
||||
}
|
||||
time.Sleep(uploadGap)
|
||||
}
|
||||
}
|
||||
|
||||
// enqueueUpload queues a first-attempt upload without blocking the logging path.
|
||||
func (m *Manager) enqueueUpload(svc Service, id int64, cfg ServiceConfig) {
|
||||
m.enqueueJob(uploadJob{svc: svc, id: id, cfg: cfg})
|
||||
}
|
||||
|
||||
// enqueueJob queues a job (possibly a retry). If the queue is somehow full (an
|
||||
// enormous burst), it falls back to a goroutine rather than dropping the upload —
|
||||
// a dropped upload would leave the QSO stuck at "R".
|
||||
func (m *Manager) enqueueJob(job uploadJob) {
|
||||
select {
|
||||
case m.uploadCh <- job:
|
||||
default:
|
||||
go m.upload(job.svc, job.id, job.cfg)
|
||||
}
|
||||
}()
|
||||
}
|
||||
|
||||
func (m *Manager) logf(format string, args ...any) {
|
||||
@@ -234,17 +196,17 @@ func (m *Manager) route(svc Service, id int64, cfg ServiceConfig) {
|
||||
m.scheduleUpload(svc, id, cfg)
|
||||
}
|
||||
|
||||
// scheduleUpload either queues the upload now (immediate) or arms a timer that
|
||||
// queues it later (delayed). Both go through the serialised worker so uploads are
|
||||
// never fired concurrently in a burst.
|
||||
// scheduleUpload uploads now (immediate) or after a random fuse (delayed). Each
|
||||
// upload runs in its own goroutine (attemptUpload) — never serialised — so a slow
|
||||
// one never holds up the rest.
|
||||
func (m *Manager) scheduleUpload(svc Service, id int64, cfg ServiceConfig) {
|
||||
if cfg.UploadMode == ModeDelayed {
|
||||
d := m.delaySeconds()
|
||||
m.logf("extsvc: %s upload of QSO %d scheduled in %s", svc, id, d)
|
||||
time.AfterFunc(d, func() { m.enqueueUpload(svc, id, cfg) })
|
||||
time.AfterFunc(d, func() { m.attemptUpload(svc, id, cfg, 0) })
|
||||
return
|
||||
}
|
||||
m.enqueueUpload(svc, id, cfg)
|
||||
m.attemptUpload(svc, id, cfg, 0)
|
||||
}
|
||||
|
||||
// onCloseServices returns the services configured for on-close auto-upload,
|
||||
|
||||
@@ -15,6 +15,8 @@ import (
|
||||
"sync"
|
||||
"sync/atomic"
|
||||
"time"
|
||||
|
||||
"hamlog/internal/applog"
|
||||
)
|
||||
|
||||
const (
|
||||
@@ -33,6 +35,7 @@ type Status struct {
|
||||
State string `json:"state,omitempty"` // IDLE / TRANSMIT_A …
|
||||
FanMode string `json:"fan_mode,omitempty"` // STANDARD / CONTEST / BROADCAST
|
||||
Temperature float64 `json:"temperature"`
|
||||
Operate bool `json:"operate"` // OPERATE vs STANDBY (optimistic until the amp reports it)
|
||||
}
|
||||
|
||||
type Client struct {
|
||||
@@ -45,6 +48,7 @@ type Client struct {
|
||||
|
||||
statusMu sync.RWMutex
|
||||
status Status
|
||||
lastRaw string // last raw status payload — logged on change so unknown fields (operate?) can be mapped from a real amp
|
||||
// Optimistic fan mode kept until the amp's status poll confirms it (or it
|
||||
// ages out) — otherwise a stale poll right after a change reverts the UI.
|
||||
fanPending string
|
||||
@@ -119,8 +123,15 @@ func (c *Client) SetOperate(on bool) error {
|
||||
if on {
|
||||
v = "1"
|
||||
}
|
||||
_, err := c.command("operate=" + v)
|
||||
return err
|
||||
if _, err := c.command("operate=" + v); err != nil {
|
||||
return err
|
||||
}
|
||||
// Optimistic: the status poll's "operate" field (when the firmware reports
|
||||
// one) confirms or corrects this.
|
||||
c.statusMu.Lock()
|
||||
c.status.Operate = on
|
||||
c.statusMu.Unlock()
|
||||
return nil
|
||||
}
|
||||
|
||||
func (c *Client) pollLoop() {
|
||||
@@ -215,6 +226,12 @@ func (c *Client) parse(resp string) {
|
||||
c.statusMu.Lock()
|
||||
c.status.Connected = true
|
||||
c.status.LastError = ""
|
||||
// Log each DISTINCT status payload once: the PGXL's field set isn't fully
|
||||
// documented, so this is how we learn the real key for e.g. operate/standby.
|
||||
if data != c.lastRaw {
|
||||
c.lastRaw = data
|
||||
applog.Printf("pgxl: status raw=%q", data)
|
||||
}
|
||||
for _, pair := range strings.Fields(data) {
|
||||
kv := strings.SplitN(pair, "=", 2)
|
||||
if len(kv) != 2 {
|
||||
@@ -223,6 +240,8 @@ func (c *Client) parse(resp string) {
|
||||
switch kv[0] {
|
||||
case "state":
|
||||
c.status.State = kv[1]
|
||||
case "operate":
|
||||
c.status.Operate = kv[1] == "1"
|
||||
case "fanmode":
|
||||
dev := strings.ToUpper(kv[1])
|
||||
// Honour a recent optimistic change until the amp confirms it.
|
||||
|
||||
+156
-19
@@ -197,6 +197,14 @@ type QSO struct {
|
||||
// ADIF field names (e.g. "MS_SHOWER"); values are the raw string content.
|
||||
Extras map[string]string `json:"extras,omitempty"`
|
||||
|
||||
// AwardRefs is the materialised award-reference JSON for this QSO — a compact
|
||||
// object keyed by award code, e.g. {"DDFM":"74","WAJA":"12"}. Derived (the app
|
||||
// computes it on log/edit and bulk-recomputes it when awards change) and stored
|
||||
// so the grid's award columns read straight from the row. Written ONLY via
|
||||
// SetAwardRefs, never through the normal insert/update column list, so an edit
|
||||
// that doesn't know about it can't clobber it.
|
||||
AwardRefs string `json:"award_refs,omitempty"`
|
||||
|
||||
CreatedAt time.Time `json:"created_at"`
|
||||
UpdatedAt time.Time `json:"updated_at"`
|
||||
}
|
||||
@@ -250,7 +258,10 @@ const columnList = `callsign, qso_date, qso_date_off, band, band_rx, mode, submo
|
||||
credit_granted, credit_submitted, my_arrl_sect, my_vucc_grids,
|
||||
extras_json`
|
||||
|
||||
const selectCols = `id, ` + columnList + `, created_at, updated_at`
|
||||
// award_refs is read here but is NOT part of columnList (the insert/update
|
||||
// write path) — it is a derived cache written only via SetAwardRefs, so a
|
||||
// normal QSO write can never clobber it.
|
||||
const selectCols = `id, ` + columnList + `, award_refs, created_at, updated_at`
|
||||
|
||||
// columnCount is derived from columnList at init so they can never drift.
|
||||
var columnCount = countColumns(columnList)
|
||||
@@ -781,6 +792,81 @@ func (r *Repo) BulkSetField(ctx context.Context, ids []int64, column, value stri
|
||||
return n, nil
|
||||
}
|
||||
|
||||
// SetExtra merges ONE key into a QSO's extras JSON without rewriting the rest of
|
||||
// the row. A slow caller that only wants to stamp its own app field (e-mailing a
|
||||
// QSL card, saving a recording) must not do a full-row Update: the row it read may
|
||||
// be seconds stale, and writing it all back silently reverts any column another
|
||||
// action changed meanwhile — e.g. an auto-upload flipping clublog_qso_upload_status
|
||||
// from R to Y. Touching only `extras` makes that impossible. Empty value deletes
|
||||
// the key.
|
||||
func (r *Repo) SetExtra(ctx context.Context, id int64, key, value string) error {
|
||||
if id == 0 || strings.TrimSpace(key) == "" {
|
||||
return fmt.Errorf("missing id or key")
|
||||
}
|
||||
var extrasJSON sql.NullString
|
||||
if err := r.db.QueryRowContext(ctx, `SELECT extras_json FROM qso WHERE id = ?`, id).Scan(&extrasJSON); err != nil {
|
||||
return fmt.Errorf("load extras: %w", err)
|
||||
}
|
||||
m := decodeExtras(extrasJSON.String)
|
||||
if m == nil {
|
||||
m = map[string]string{}
|
||||
}
|
||||
if value == "" {
|
||||
delete(m, key)
|
||||
} else {
|
||||
m[key] = value
|
||||
}
|
||||
if _, err := r.db.ExecContext(ctx,
|
||||
`UPDATE qso SET extras_json = ?, updated_at = ? WHERE id = ?`,
|
||||
encodeExtras(m), db.NowISO(), id); err != nil {
|
||||
return fmt.Errorf("set extra %s: %w", key, err)
|
||||
}
|
||||
return nil
|
||||
}
|
||||
|
||||
// SetAwardRefs stores the materialised award-reference JSON for one QSO. Like
|
||||
// SetExtra it is a targeted single-column UPDATE — never a full-row write — so it
|
||||
// cannot clobber a field another action changed meanwhile. updated_at is left
|
||||
// UNTOUCHED on purpose: award_refs is a derived cache, and bumping updated_at
|
||||
// would masquerade as a real edit (re-triggering uploads / sync that watch it).
|
||||
func (r *Repo) SetAwardRefs(ctx context.Context, id int64, jsonStr string) error {
|
||||
if id == 0 {
|
||||
return fmt.Errorf("missing id")
|
||||
}
|
||||
if _, err := r.db.ExecContext(ctx,
|
||||
`UPDATE qso SET award_refs = ? WHERE id = ?`, jsonStr, id); err != nil {
|
||||
return fmt.Errorf("set award_refs: %w", err)
|
||||
}
|
||||
return nil
|
||||
}
|
||||
|
||||
// SetAwardRefsBatch stores materialised award refs for many QSOs in a single
|
||||
// transaction — used by the bulk recompute so a large logbook on a remote MySQL
|
||||
// is one round-trip's worth of work, not N. Like SetAwardRefs it touches only the
|
||||
// award_refs column and leaves updated_at alone (derived cache). A nil/empty map
|
||||
// is a no-op.
|
||||
func (r *Repo) SetAwardRefsBatch(ctx context.Context, byID map[int64]string) error {
|
||||
if len(byID) == 0 {
|
||||
return nil
|
||||
}
|
||||
tx, err := r.db.BeginTx(ctx, nil)
|
||||
if err != nil {
|
||||
return fmt.Errorf("begin tx: %w", err)
|
||||
}
|
||||
defer tx.Rollback()
|
||||
stmt, err := tx.PrepareContext(ctx, `UPDATE qso SET award_refs = ? WHERE id = ?`)
|
||||
if err != nil {
|
||||
return fmt.Errorf("prepare: %w", err)
|
||||
}
|
||||
defer stmt.Close()
|
||||
for id, js := range byID {
|
||||
if _, err := stmt.ExecContext(ctx, js, id); err != nil {
|
||||
return fmt.Errorf("set award_refs %d: %w", id, err)
|
||||
}
|
||||
}
|
||||
return tx.Commit()
|
||||
}
|
||||
|
||||
// Update overwrites all editable fields of an existing QSO. updated_at is bumped.
|
||||
func (r *Repo) Update(ctx context.Context, q QSO) error {
|
||||
if q.ID == 0 {
|
||||
@@ -1285,6 +1371,17 @@ func modeClass(mode string) string {
|
||||
}
|
||||
}
|
||||
|
||||
// GroupDigitalMode collapses every digital mode into the single "DIG" bucket
|
||||
// (FT8, FT4, RTTY, PSK… all become one mode) while leaving phone modes and CW
|
||||
// untouched. Used as the optional slot normaliser when the operator prefers
|
||||
// DXCC-style mode classes over per-mode slots (Settings → General).
|
||||
func GroupDigitalMode(mode string) string {
|
||||
if modeClass(mode) == "DIG" {
|
||||
return "DIG"
|
||||
}
|
||||
return strings.ToUpper(mode)
|
||||
}
|
||||
|
||||
// BandMode is a (band, mode) pair used for the NEW SLOT check.
|
||||
type BandMode struct {
|
||||
Band string `json:"band"`
|
||||
@@ -1716,7 +1813,11 @@ type EntitySlot struct {
|
||||
// 0 (unresolvable) skips the QSO.
|
||||
//
|
||||
// One DB scan regardless of input size. Cheap to call per cluster batch.
|
||||
func (r *Repo) EntitySlotMap(ctx context.Context, keyFor func(call string, storedDXCC int, country string) int) (map[int]*EntitySlot, error) {
|
||||
//
|
||||
// normMode (nil = identity) maps each QSO's mode before it is stored as a
|
||||
// Modes/Slots key — pass GroupDigitalMode to collapse all digital modes into
|
||||
// one bucket. Callers must normalise their lookup mode the same way.
|
||||
func (r *Repo) EntitySlotMap(ctx context.Context, keyFor func(call string, storedDXCC int, country string) int, normMode func(string) string) (map[int]*EntitySlot, error) {
|
||||
rows, err := r.db.QueryContext(ctx,
|
||||
`SELECT callsign, coalesce(dxcc,0), lower(coalesce(country,'')), lower(band), upper(mode) FROM qso
|
||||
WHERE band IS NOT NULL AND band != ''
|
||||
@@ -1741,6 +1842,9 @@ func (r *Repo) EntitySlotMap(ctx context.Context, keyFor func(call string, store
|
||||
if key == 0 {
|
||||
continue
|
||||
}
|
||||
if normMode != nil {
|
||||
mode = normMode(mode)
|
||||
}
|
||||
e, ok := out[key]
|
||||
if !ok {
|
||||
e = &EntitySlot{
|
||||
@@ -1863,38 +1967,69 @@ func (r *Repo) Count(ctx context.Context) (int64, error) {
|
||||
return n, err
|
||||
}
|
||||
|
||||
// RecentRate counts QSOs whose start time falls within each trailing window from
|
||||
// `now` — the live "QSO rate" meter shown in the header. It scans only the most
|
||||
// recently inserted rows (ORDER BY id DESC LIMIT), since any QSO in the last hour
|
||||
// was inserted recently; that keeps it cheap even on a large log. qso_date is the
|
||||
// repo's text column, parsed with parseTimeLoose (backend-format agnostic).
|
||||
func (r *Repo) RecentRate(ctx context.Context, now time.Time, windows ...time.Duration) ([]int, error) {
|
||||
counts := make([]int, len(windows))
|
||||
// 400 rows covers a full hour even at a blistering contest rate (>300/h); any
|
||||
// QSO inside the trailing windows is among the most recently inserted.
|
||||
rows, err := r.db.QueryContext(ctx, `SELECT qso_date FROM qso ORDER BY id DESC LIMIT 400`)
|
||||
// LastQSOTime returns the start time of the most recently LOGGED QSO for an
|
||||
// operator (highest id wins) — used to seed the live "on air" state at launch so an
|
||||
// operator who just worked someone before (re)starting OpsLog shows online right
|
||||
// away instead of waiting for their next QSO. Empty operator matches every QSO.
|
||||
func (r *Repo) LastQSOTime(ctx context.Context, operator string) (time.Time, bool) {
|
||||
// ONE indexed row, not 400 filtered in Go: this runs every ~5 s (the ON-AIR
|
||||
// badge) and ~15 s (live-status publish), so pulling 400 rows each time over a
|
||||
// remote MySQL hammered the connection pool and, on a busy multi-op event, was a
|
||||
// big part of "after a while nothing updates". Match the operator the same
|
||||
// (case/space-insensitive) way, newest first.
|
||||
opFilter := strings.ToUpper(strings.TrimSpace(operator))
|
||||
var dateStr sql.NullString
|
||||
err := r.db.QueryRowContext(ctx,
|
||||
`SELECT qso_date FROM qso WHERE UPPER(TRIM(operator)) = ? AND qso_date IS NOT NULL AND qso_date <> '' ORDER BY id DESC LIMIT 1`,
|
||||
opFilter).Scan(&dateStr)
|
||||
if err != nil {
|
||||
return counts, err
|
||||
return time.Time{}, false // ErrNoRows or a real error — no known last QSO
|
||||
}
|
||||
if t := parseTimeLoose(dateStr.String).UTC(); !t.IsZero() {
|
||||
return t, true
|
||||
}
|
||||
return time.Time{}, false
|
||||
}
|
||||
|
||||
// RecentRateBreakdown counts, in ONE pass over the most recent rows, QSOs whose
|
||||
// start time falls within each trailing window from `now` — for a specific operator
|
||||
// (their own rate, `op`) AND for ALL operators combined (the team/station rate,
|
||||
// `all`). The header rate meter shows both. It scans only recently inserted rows
|
||||
// (ORDER BY id DESC LIMIT), since any QSO in the last hour was inserted recently, so
|
||||
// it stays cheap on a large log. qso_date is parsed with parseTimeLoose (backend-
|
||||
// format agnostic).
|
||||
func (r *Repo) RecentRateBreakdown(ctx context.Context, now time.Time, operator string, windows ...time.Duration) (op []int, all []int, err error) {
|
||||
op = make([]int, len(windows))
|
||||
all = make([]int, len(windows))
|
||||
// 2000 rows covers a full hour even in a busy multi-op run.
|
||||
rows, err := r.db.QueryContext(ctx, `SELECT operator, qso_date FROM qso ORDER BY id DESC LIMIT 2000`)
|
||||
if err != nil {
|
||||
return op, all, err
|
||||
}
|
||||
defer rows.Close()
|
||||
now = now.UTC()
|
||||
opFilter := strings.ToUpper(strings.TrimSpace(operator))
|
||||
for rows.Next() {
|
||||
var dateStr sql.NullString
|
||||
if err := rows.Scan(&dateStr); err != nil {
|
||||
return counts, err
|
||||
var oper, dateStr sql.NullString
|
||||
if err := rows.Scan(&oper, &dateStr); err != nil {
|
||||
return op, all, err
|
||||
}
|
||||
t := parseTimeLoose(dateStr.String).UTC()
|
||||
if t.IsZero() || t.After(now) {
|
||||
continue
|
||||
}
|
||||
mine := strings.ToUpper(strings.TrimSpace(oper.String)) == opFilter
|
||||
age := now.Sub(t)
|
||||
for i, w := range windows {
|
||||
if age <= w {
|
||||
counts[i]++
|
||||
all[i]++
|
||||
if mine {
|
||||
op[i]++
|
||||
}
|
||||
}
|
||||
}
|
||||
}
|
||||
return counts, rows.Err()
|
||||
return op, all, rows.Err()
|
||||
}
|
||||
|
||||
// ExistingDedupeKeys returns a set of every QSO key currently in the DB,
|
||||
@@ -2309,6 +2444,7 @@ func scanQSO(s scanner) (QSO, error) {
|
||||
creditGranted, creditSubmitted sql.NullString
|
||||
myARRLSect, myVUCCGrids sql.NullString
|
||||
extrasJSON sql.NullString
|
||||
awardRefs sql.NullString
|
||||
createdStr, updatedStr string
|
||||
)
|
||||
if err := s.Scan(
|
||||
@@ -2336,7 +2472,7 @@ func scanQSO(s scanner) (QSO, error) {
|
||||
&skcc, &fists, &tenTen, &contactedOp, &eqCall, &pfx, &myName, &class,
|
||||
&darcDOK, &myDarcDOK, ®ion, &silentKey, &swl, &qsoComplete, &qsoRandom,
|
||||
&creditGranted, &creditSubmitted, &myARRLSect, &myVUCCGrids,
|
||||
&extrasJSON, &createdStr, &updatedStr,
|
||||
&extrasJSON, &awardRefs, &createdStr, &updatedStr,
|
||||
); err != nil {
|
||||
return QSO{}, fmt.Errorf("scan qso: %w", err)
|
||||
}
|
||||
@@ -2533,6 +2669,7 @@ func scanQSO(s scanner) (QSO, error) {
|
||||
q.MyARRLSect = myARRLSect.String
|
||||
q.MyVUCCGrids = myVUCCGrids.String
|
||||
q.Extras = decodeExtras(extrasJSON.String)
|
||||
q.AwardRefs = awardRefs.String
|
||||
return q, nil
|
||||
}
|
||||
|
||||
|
||||
+112
-2
@@ -24,6 +24,30 @@ type Bucket struct {
|
||||
Count int `json:"count"`
|
||||
}
|
||||
|
||||
// BandCategory is one band's QSO count split by mode category (CW / phone /
|
||||
// digital), for the per-band mode-split chart.
|
||||
type BandCategory struct {
|
||||
Band string `json:"band"`
|
||||
CW int `json:"cw"`
|
||||
Phone int `json:"phone"`
|
||||
Data int `json:"data"`
|
||||
Total int `json:"total"`
|
||||
}
|
||||
|
||||
// modeCategory buckets a mode into "cw", "phone" or "data" (digital). Voice modes
|
||||
// (SSB and the digital-voice family) count as phone; CW is CW; everything else is
|
||||
// data. Mirrors the frontend's mode colouring.
|
||||
func modeCategory(mode string) string {
|
||||
switch strings.ToUpper(strings.TrimSpace(mode)) {
|
||||
case "CW":
|
||||
return "cw"
|
||||
case "SSB", "USB", "LSB", "AM", "FM", "DV", "DIGITALVOICE", "FREEDV", "C4FM", "DSTAR", "FUSION":
|
||||
return "phone"
|
||||
default:
|
||||
return "data"
|
||||
}
|
||||
}
|
||||
|
||||
// Gap is a stretch with no QSO at all — the off-air periods. In a contest these
|
||||
// are the expensive minutes: they are where the score went.
|
||||
type Gap struct {
|
||||
@@ -129,8 +153,9 @@ type Stats struct {
|
||||
ConfirmedAny int `json:"confirmed_any"`
|
||||
|
||||
// Breakdowns, each sorted most → least (bands keep frequency order).
|
||||
ByMode []Bucket `json:"by_mode"`
|
||||
ByBand []Bucket `json:"by_band"`
|
||||
ByMode []Bucket `json:"by_mode"`
|
||||
ByBand []Bucket `json:"by_band"`
|
||||
ByBandCategory []BandCategory `json:"by_band_category"` // per band: CW / phone / data split
|
||||
ByOperator []Bucket `json:"by_operator"`
|
||||
ByStation []Bucket `json:"by_station"` // station_callsign (the call put on the air)
|
||||
ByContinent []Bucket `json:"by_continent"`
|
||||
@@ -138,6 +163,14 @@ type Stats struct {
|
||||
ByYear []Bucket `json:"by_year"` // chronological
|
||||
ByMonth []Bucket `json:"by_month"` // "YYYY-MM", chronological
|
||||
|
||||
// Rolling chronological activity windows (UTC), anchored to the newest QSO, for
|
||||
// the "activity over time" chart's day/week/month/year granularity selector.
|
||||
// Real dates in order (empty buckets are real, just zero) — no cyclical wrap.
|
||||
ByHour []Bucket `json:"by_hour"` // the newest QSO's day, hour by hour (00..23)
|
||||
ByDay7 []Bucket `json:"by_day7"` // the last 7 days ending at the newest QSO
|
||||
ByDay30 []Bucket `json:"by_day30"` // the last 30 days
|
||||
ByMonth12 []Bucket `json:"by_month12"` // the last 12 months
|
||||
|
||||
// ── Period / contest metrics ──
|
||||
// Meaningful only over a WINDOW: "12 QSO/h" across seventeen years says
|
||||
// nothing, but across a contest weekend it is the score. The window is the
|
||||
@@ -268,6 +301,7 @@ func (r *Repo) Stats(ctx context.Context, from, to time.Time, contestID string,
|
||||
entities = map[int]struct{}{}
|
||||
modeC = map[string]int{}
|
||||
bandC = map[string]int{}
|
||||
bandCat = map[string]*BandCategory{} // per band: cw/phone/data
|
||||
opC = map[string]int{}
|
||||
stationC = map[string]int{}
|
||||
contC = map[string]int{}
|
||||
@@ -338,14 +372,33 @@ func (r *Repo) Stats(ctx context.Context, from, to time.Time, contestID string,
|
||||
}
|
||||
if b := strings.ToLower(strings.TrimSpace(band.String)); b != "" {
|
||||
bandC[b]++
|
||||
bc := bandCat[b]
|
||||
if bc == nil {
|
||||
bc = &BandCategory{Band: b}
|
||||
bandCat[b] = bc
|
||||
}
|
||||
switch modeCategory(mode.String) {
|
||||
case "cw":
|
||||
bc.CW++
|
||||
case "phone":
|
||||
bc.Phone++
|
||||
default:
|
||||
bc.Data++
|
||||
}
|
||||
bc.Total++
|
||||
}
|
||||
// op was resolved above (with the operator filter applied).
|
||||
opC[op]++
|
||||
if st := strings.ToUpper(strings.TrimSpace(station.String)); st != "" {
|
||||
stationC[st]++
|
||||
}
|
||||
// Bucket a blank/unknown continent under "Unknown" rather than dropping it,
|
||||
// so the continent breakdown totals the same as the QSO count (a handful of
|
||||
// QSOs with no resolved continent made the donut read a few short).
|
||||
if c := strings.ToUpper(strings.TrimSpace(cont.String)); c != "" {
|
||||
contC[c]++
|
||||
} else {
|
||||
contC["Unknown"]++
|
||||
}
|
||||
if c := strings.TrimSpace(country.String); c != "" {
|
||||
entityC[c]++
|
||||
@@ -388,6 +441,9 @@ func (r *Repo) Stats(ctx context.Context, from, to time.Time, contestID string,
|
||||
s.UniqueCalls = len(calls)
|
||||
s.Entities = len(entities)
|
||||
s.Continents = len(contC)
|
||||
if _, ok := contC["Unknown"]; ok {
|
||||
s.Continents-- // "Unknown" is a catch-all bucket, not a real continent
|
||||
}
|
||||
if !first.IsZero() {
|
||||
s.FirstQSO = first.UTC().Format(time.RFC3339)
|
||||
s.LastQSO = last.UTC().Format(time.RFC3339)
|
||||
@@ -414,6 +470,13 @@ func (r *Repo) Stats(ctx context.Context, from, to time.Time, contestID string,
|
||||
}
|
||||
return a < b
|
||||
})
|
||||
// Per-band CW/phone/data split, in the SAME band-plan order as ByBand.
|
||||
s.ByBandCategory = []BandCategory{}
|
||||
for _, b := range s.ByBand {
|
||||
if bc := bandCat[b.Key]; bc != nil {
|
||||
s.ByBandCategory = append(s.ByBandCategory, *bc)
|
||||
}
|
||||
}
|
||||
// The time axis must be CONTINUOUS. Emitting only the months that have QSOs
|
||||
// would place, say, 2012-08 next to 2022-01 as if they were consecutive — the
|
||||
// chart would invent activity that never happened. A gap in the log is real
|
||||
@@ -422,11 +485,58 @@ func (r *Repo) Stats(ctx context.Context, from, to time.Time, contestID string,
|
||||
s.ByMonth = fillMonths(monthC, first, last)
|
||||
|
||||
s.periodMetrics(times, from, to, first, last)
|
||||
// Anchor the rolling activity windows to the period end when filtered, else to
|
||||
// now (so "week" is the last 7 days ending today, like the operator expects).
|
||||
ref := to
|
||||
if ref.IsZero() {
|
||||
ref = time.Now()
|
||||
}
|
||||
s.recentSeries(times, ref)
|
||||
s.ensureNonNil()
|
||||
|
||||
return s, nil
|
||||
}
|
||||
|
||||
// recentSeries builds the rolling chronological activity windows for the chart's
|
||||
// day/week/month/year selector, in UTC and anchored to `ref` (the period end when
|
||||
// filtered, else now). Real dates in order — today and the days before it — so the
|
||||
// axis reads chronologically and empty days are just zero, not misordered/wrapped.
|
||||
func (s *Stats) recentSeries(times []entry, ref time.Time) {
|
||||
ref = ref.UTC()
|
||||
day0 := time.Date(ref.Year(), ref.Month(), ref.Day(), 0, 0, 0, 0, time.UTC) // midnight of the anchor day
|
||||
hour := make([]int, 24)
|
||||
daily := map[string]int{}
|
||||
monthly := map[string]int{}
|
||||
for _, e := range times {
|
||||
t := e.t.UTC()
|
||||
if t.Year() == ref.Year() && t.YearDay() == ref.YearDay() {
|
||||
hour[t.Hour()]++
|
||||
}
|
||||
daily[t.Format("2006-01-02")]++
|
||||
monthly[t.Format("2006-01")]++
|
||||
}
|
||||
// Day: the anchor day, hour by hour.
|
||||
for h := 0; h < 24; h++ {
|
||||
s.ByHour = append(s.ByHour, Bucket{Key: fmt.Sprintf("%02dh", h), Count: hour[h]})
|
||||
}
|
||||
// Week: the last 7 days ending today (today is last). Label = weekday + day.
|
||||
for i := 6; i >= 0; i-- {
|
||||
d := day0.AddDate(0, 0, -i)
|
||||
s.ByDay7 = append(s.ByDay7, Bucket{Key: d.Format("Mon 2"), Count: daily[d.Format("2006-01-02")]})
|
||||
}
|
||||
// Month: the last 30 days.
|
||||
for i := 29; i >= 0; i-- {
|
||||
d := day0.AddDate(0, 0, -i)
|
||||
s.ByDay30 = append(s.ByDay30, Bucket{Key: d.Format("2/1"), Count: daily[d.Format("2006-01-02")]})
|
||||
}
|
||||
// Year: the last 12 months.
|
||||
m0 := time.Date(ref.Year(), ref.Month(), 1, 0, 0, 0, 0, time.UTC)
|
||||
for i := 11; i >= 0; i-- {
|
||||
m := m0.AddDate(0, -i, 0)
|
||||
s.ByMonth12 = append(s.ByMonth12, Bucket{Key: m.Format("Jan 06"), Count: monthly[m.Format("2006-01")]})
|
||||
}
|
||||
}
|
||||
|
||||
// ensureNonNil replaces every nil slice with an empty one.
|
||||
//
|
||||
// This is NOT cosmetic. A nil Go slice marshals to JSON `null`, not `[]`, and the
|
||||
|
||||
@@ -0,0 +1,35 @@
|
||||
//go:build !windows
|
||||
|
||||
// The Denkovi USB board is driven through FTDI's D2XX bit-bang API (ftd2xx.dll),
|
||||
// which OpsLog only wires up on Windows. This stub keeps the package building on
|
||||
// other platforms; every call reports the board is unavailable.
|
||||
package relaydev
|
||||
|
||||
import (
|
||||
"context"
|
||||
"fmt"
|
||||
)
|
||||
|
||||
type denkoviStub struct{ count int }
|
||||
|
||||
// NewDenkovi returns a stub on non-Windows builds.
|
||||
func NewDenkovi(serial string, count int) Device {
|
||||
if count != 4 {
|
||||
count = 8
|
||||
}
|
||||
return denkoviStub{count: count}
|
||||
}
|
||||
|
||||
func (s denkoviStub) Count() int { return s.count }
|
||||
func (denkoviStub) Close() error { return nil }
|
||||
func (denkoviStub) Status(context.Context) ([]bool, error) {
|
||||
return nil, fmt.Errorf("Denkovi USB relay board is only supported on Windows")
|
||||
}
|
||||
func (denkoviStub) Set(context.Context, int, bool) error {
|
||||
return fmt.Errorf("Denkovi USB relay board is only supported on Windows")
|
||||
}
|
||||
|
||||
// ListDenkovi has no devices to report off Windows.
|
||||
func ListDenkovi() ([]string, error) {
|
||||
return nil, fmt.Errorf("Denkovi USB relay board is only supported on Windows")
|
||||
}
|
||||
@@ -0,0 +1,198 @@
|
||||
//go:build windows
|
||||
|
||||
// Denkovi USB 8-channel relay board (FT245RL). Despite enumerating as a virtual
|
||||
// COM port, this board is NOT driven by serial/ASCII: the FT245's 8 data lines
|
||||
// each drive a relay, controlled through FTDI's D2XX "bit-bang" mode. One byte
|
||||
// written = the 8 relays at once (bit 0 = relay 1). We load ftd2xx.dll at runtime
|
||||
// (no CGO) and call the D2XX API directly, exactly as the vendor's tool does
|
||||
// (which addresses the board by its FTDI serial, e.g. "DAE0006K").
|
||||
package relaydev
|
||||
|
||||
import (
|
||||
"context"
|
||||
"fmt"
|
||||
"strings"
|
||||
"sync"
|
||||
"syscall"
|
||||
"unsafe"
|
||||
)
|
||||
|
||||
var (
|
||||
ftdll = syscall.NewLazyDLL("ftd2xx.dll")
|
||||
procOpenEx = ftdll.NewProc("FT_OpenEx")
|
||||
procClose = ftdll.NewProc("FT_Close")
|
||||
procSetBitMode = ftdll.NewProc("FT_SetBitMode")
|
||||
procSetBaudRate = ftdll.NewProc("FT_SetBaudRate")
|
||||
procWrite = ftdll.NewProc("FT_Write")
|
||||
procPurge = ftdll.NewProc("FT_Purge")
|
||||
procCreateInfo = ftdll.NewProc("FT_CreateDeviceInfoList")
|
||||
procGetInfoDetail = ftdll.NewProc("FT_GetDeviceInfoDetail")
|
||||
)
|
||||
|
||||
const (
|
||||
ftOpenBySerial = 1 // FT_OPEN_BY_SERIAL_NUMBER
|
||||
ftBitModeSyncBB = 0x04 // FT_BITMODE_SYNC_BITBANG (the mode Denkovi documents)
|
||||
ftPurgeRX = 1 // FT_PURGE_RX
|
||||
)
|
||||
|
||||
func ftOK(r uintptr) bool { return r == 0 } // FT_OK == 0
|
||||
|
||||
type denkovi struct {
|
||||
serial string
|
||||
count int
|
||||
mu sync.Mutex
|
||||
shadow byte // last output byte (bit n = relay n+1); authoritative state
|
||||
h uintptr // FT handle
|
||||
opened bool
|
||||
}
|
||||
|
||||
// NewDenkovi builds a driver for a Denkovi USB relay board (4 or 8 relays)
|
||||
// identified by its FTDI serial number (shown by the vendor tool / FT_PROG,
|
||||
// e.g. "DAE0006K"). count defaults to 8; a 4-relay board just uses the low 4 bits.
|
||||
func NewDenkovi(serial string, count int) Device {
|
||||
if count != 4 && count != 8 {
|
||||
count = 8
|
||||
}
|
||||
return &denkovi{serial: strings.TrimSpace(serial), count: count}
|
||||
}
|
||||
|
||||
func (d *denkovi) Count() int { return d.count }
|
||||
|
||||
// ensureOpen opens the board and puts it in synchronous bit-bang mode with all 8
|
||||
// lines as outputs. Idempotent.
|
||||
func (d *denkovi) ensureOpen() error {
|
||||
if d.opened {
|
||||
return nil
|
||||
}
|
||||
if err := ftdll.Load(); err != nil {
|
||||
return fmt.Errorf("FTDI D2XX driver (ftd2xx.dll) not found — install the FTDI D2XX driver / Denkovi software: %w", err)
|
||||
}
|
||||
if d.serial == "" {
|
||||
return fmt.Errorf("no FTDI serial number set for the Denkovi board")
|
||||
}
|
||||
ser, err := syscall.BytePtrFromString(d.serial)
|
||||
if err != nil {
|
||||
return err
|
||||
}
|
||||
var h uintptr
|
||||
if r, _, _ := procOpenEx.Call(uintptr(unsafe.Pointer(ser)), ftOpenBySerial, uintptr(unsafe.Pointer(&h))); !ftOK(r) {
|
||||
return fmt.Errorf("cannot open Denkovi board %q (FT_OpenEx status %d) — is it connected and not in use by another app?", d.serial, r)
|
||||
}
|
||||
// All 8 lines output, synchronous bit-bang.
|
||||
if r, _, _ := procSetBitMode.Call(h, 0xFF, ftBitModeSyncBB); !ftOK(r) {
|
||||
procClose.Call(h)
|
||||
return fmt.Errorf("FT_SetBitMode failed (status %d)", r)
|
||||
}
|
||||
procSetBaudRate.Call(h, 9600) // bit-bang pin-update clock; relays don't need speed
|
||||
d.h = h
|
||||
d.opened = true
|
||||
// Make the hardware match our shadow (starts all-off on first open).
|
||||
return d.writeLocked()
|
||||
}
|
||||
|
||||
// writeLocked pushes the shadow byte to the relays. Caller holds d.mu.
|
||||
func (d *denkovi) writeLocked() error {
|
||||
var written uint32
|
||||
b := d.shadow
|
||||
if r, _, _ := procWrite.Call(d.h, uintptr(unsafe.Pointer(&b)), 1, uintptr(unsafe.Pointer(&written))); !ftOK(r) {
|
||||
return fmt.Errorf("FT_Write failed (status %d)", r)
|
||||
}
|
||||
// Synchronous bit-bang echoes each written byte into the RX buffer; drop it so
|
||||
// it doesn't fill over the life of the connection.
|
||||
procPurge.Call(d.h, ftPurgeRX)
|
||||
return nil
|
||||
}
|
||||
|
||||
func (d *denkovi) Set(ctx context.Context, relay int, on bool) error {
|
||||
if relay < 1 || relay > d.count {
|
||||
return fmt.Errorf("relay %d out of range 1..%d", relay, d.count)
|
||||
}
|
||||
d.mu.Lock()
|
||||
defer d.mu.Unlock()
|
||||
if err := d.ensureOpen(); err != nil {
|
||||
return err
|
||||
}
|
||||
bit := byte(1) << uint(relay-1) // relay 1 → bit 0
|
||||
if on {
|
||||
d.shadow |= bit
|
||||
} else {
|
||||
d.shadow &^= bit
|
||||
}
|
||||
return d.writeLocked()
|
||||
}
|
||||
|
||||
// Close releases the FTDI handle so the board can be reopened later (only one
|
||||
// handle may hold a D2XX device at a time).
|
||||
func (d *denkovi) Close() error {
|
||||
d.mu.Lock()
|
||||
defer d.mu.Unlock()
|
||||
if d.opened {
|
||||
procClose.Call(d.h)
|
||||
d.opened = false
|
||||
d.h = 0
|
||||
}
|
||||
return nil
|
||||
}
|
||||
|
||||
func (d *denkovi) Status(ctx context.Context) ([]bool, error) {
|
||||
d.mu.Lock()
|
||||
defer d.mu.Unlock()
|
||||
if err := d.ensureOpen(); err != nil {
|
||||
return nil, err
|
||||
}
|
||||
out := make([]bool, d.count)
|
||||
for i := 0; i < d.count; i++ {
|
||||
out[i] = d.shadow&(byte(1)<<uint(i)) != 0
|
||||
}
|
||||
return out, nil
|
||||
}
|
||||
|
||||
// ListDenkovi returns the FTDI serial numbers of connected devices, for the
|
||||
// settings UI to pick from. Requires ftd2xx.dll.
|
||||
func ListDenkovi() ([]string, error) {
|
||||
if err := ftdll.Load(); err != nil {
|
||||
return nil, fmt.Errorf("FTDI D2XX driver (ftd2xx.dll) not found — install the FTDI D2XX driver / Denkovi software")
|
||||
}
|
||||
var n uint32
|
||||
if r, _, _ := procCreateInfo.Call(uintptr(unsafe.Pointer(&n))); !ftOK(r) {
|
||||
return nil, fmt.Errorf("FT_CreateDeviceInfoList failed (status %d)", r)
|
||||
}
|
||||
var out []string
|
||||
for i := uint32(0); i < n; i++ {
|
||||
var flags, typ, id, loc uint32
|
||||
serial := make([]byte, 16)
|
||||
desc := make([]byte, 64)
|
||||
var h uintptr
|
||||
r, _, _ := procGetInfoDetail.Call(
|
||||
uintptr(i),
|
||||
uintptr(unsafe.Pointer(&flags)), uintptr(unsafe.Pointer(&typ)),
|
||||
uintptr(unsafe.Pointer(&id)), uintptr(unsafe.Pointer(&loc)),
|
||||
uintptr(unsafe.Pointer(&serial[0])), uintptr(unsafe.Pointer(&desc[0])),
|
||||
uintptr(unsafe.Pointer(&h)),
|
||||
)
|
||||
if !ftOK(r) {
|
||||
continue
|
||||
}
|
||||
if s := cstr(serial); s != "" {
|
||||
out = append(out, s)
|
||||
}
|
||||
}
|
||||
return out, nil
|
||||
}
|
||||
|
||||
// cstr trims a C string (up to the first NUL) from a fixed buffer.
|
||||
func cstr(b []byte) string {
|
||||
if i := indexByte(b, 0); i >= 0 {
|
||||
b = b[:i]
|
||||
}
|
||||
return strings.TrimSpace(string(b))
|
||||
}
|
||||
|
||||
func indexByte(b []byte, c byte) int {
|
||||
for i := range b {
|
||||
if b[i] == c {
|
||||
return i
|
||||
}
|
||||
}
|
||||
return -1
|
||||
}
|
||||
@@ -27,6 +27,11 @@ type Device interface {
|
||||
Count() int // number of user-controllable relays
|
||||
Status(ctx context.Context) ([]bool, error) // state of each relay (index 0 = relay 1)
|
||||
Set(ctx context.Context, relay int, on bool) error // relay is 1-based
|
||||
// Close releases any OS handle the driver holds (serial port, FTDI handle).
|
||||
// Network boards hold nothing and no-op. MUST be called when a cached driver is
|
||||
// discarded so the port/handle is freed for the next open — stateful boards
|
||||
// (Denkovi, USB-serial) can only be opened by one handle at a time.
|
||||
Close() error
|
||||
}
|
||||
|
||||
func httpClient() *http.Client { return &http.Client{Timeout: 5 * time.Second} }
|
||||
@@ -62,7 +67,8 @@ type webswitch struct {
|
||||
// NewWebswitch builds a WebSwitch 1216H client (5 relays).
|
||||
func NewWebswitch(host string) Device { return &webswitch{host: host, count: 5} }
|
||||
|
||||
func (w *webswitch) Count() int { return w.count }
|
||||
func (w *webswitch) Count() int { return w.count }
|
||||
func (w *webswitch) Close() error { return nil } // stateless HTTP, nothing to release
|
||||
|
||||
func (w *webswitch) Set(ctx context.Context, relay int, on bool) error {
|
||||
if relay < 1 || relay > w.count {
|
||||
@@ -118,7 +124,8 @@ func NewKMTronic(host, user, pass string) Device {
|
||||
return &kmtronic{host: host, user: user, pass: pass, count: 8}
|
||||
}
|
||||
|
||||
func (k *kmtronic) Count() int { return k.count }
|
||||
func (k *kmtronic) Count() int { return k.count }
|
||||
func (k *kmtronic) Close() error { return nil } // stateless HTTP, nothing to release
|
||||
|
||||
func (k *kmtronic) Set(ctx context.Context, relay int, on bool) error {
|
||||
if relay < 1 || relay > k.count {
|
||||
|
||||
@@ -0,0 +1,102 @@
|
||||
package relaydev
|
||||
|
||||
import (
|
||||
"context"
|
||||
"fmt"
|
||||
"strings"
|
||||
"sync"
|
||||
|
||||
"go.bug.st/serial"
|
||||
)
|
||||
|
||||
// serialRelay drives the common cheap USB-serial relay boards (CH340 / LCUS-1
|
||||
// style) that use the "A0" command protocol over a virtual COM port:
|
||||
//
|
||||
// [0xA0] [relay 1-based] [state 0|1] [checksum] checksum = (0xA0+relay+state) & 0xFF
|
||||
//
|
||||
// e.g. relay 1 ON = A0 01 01 A2, relay 1 OFF = A0 01 00 A1. These boards are
|
||||
// write-only (no state readback), so Status reflects a shadow of what we sent.
|
||||
// Channel count varies by board (1/2/4/8/16), so it is configurable.
|
||||
type serialRelay struct {
|
||||
portName string
|
||||
count int
|
||||
baud int
|
||||
mu sync.Mutex
|
||||
port serial.Port
|
||||
shadow []bool
|
||||
}
|
||||
|
||||
// NewSerialRelay builds a driver for a CH340/LCUS-style USB-serial relay board on
|
||||
// the given COM port with `count` channels (defaults to 8).
|
||||
func NewSerialRelay(port string, count int) Device {
|
||||
if count < 1 {
|
||||
count = 8
|
||||
}
|
||||
return &serialRelay{portName: strings.TrimSpace(port), count: count, baud: 9600, shadow: make([]bool, count)}
|
||||
}
|
||||
|
||||
func (s *serialRelay) Count() int { return s.count }
|
||||
|
||||
// Close releases the COM port so it can be reopened later (only one handle may
|
||||
// hold a serial port at a time).
|
||||
func (s *serialRelay) Close() error {
|
||||
s.mu.Lock()
|
||||
defer s.mu.Unlock()
|
||||
if s.port != nil {
|
||||
err := s.port.Close()
|
||||
s.port = nil
|
||||
return err
|
||||
}
|
||||
return nil
|
||||
}
|
||||
|
||||
func (s *serialRelay) ensureOpen() error {
|
||||
if s.port != nil {
|
||||
return nil
|
||||
}
|
||||
if s.portName == "" {
|
||||
return fmt.Errorf("no COM port set for the USB relay board")
|
||||
}
|
||||
p, err := serial.Open(s.portName, &serial.Mode{BaudRate: s.baud})
|
||||
if err != nil {
|
||||
return fmt.Errorf("open %s: %w", s.portName, err)
|
||||
}
|
||||
s.port = p
|
||||
return nil
|
||||
}
|
||||
|
||||
func (s *serialRelay) Set(ctx context.Context, relay int, on bool) error {
|
||||
if relay < 1 || relay > s.count {
|
||||
return fmt.Errorf("relay %d out of range 1..%d", relay, s.count)
|
||||
}
|
||||
s.mu.Lock()
|
||||
defer s.mu.Unlock()
|
||||
if err := s.ensureOpen(); err != nil {
|
||||
return err
|
||||
}
|
||||
st := byte(0)
|
||||
if on {
|
||||
st = 1
|
||||
}
|
||||
r := byte(relay)
|
||||
frame := []byte{0xA0, r, st, byte(0xA0) + r + st} // last byte = checksum
|
||||
if _, err := s.port.Write(frame); err != nil {
|
||||
// Drop the handle so the next call reopens (USB unplugged / port reset).
|
||||
s.port.Close()
|
||||
s.port = nil
|
||||
return fmt.Errorf("write to %s: %w", s.portName, err)
|
||||
}
|
||||
s.shadow[relay-1] = on
|
||||
return nil
|
||||
}
|
||||
|
||||
func (s *serialRelay) Status(ctx context.Context) ([]bool, error) {
|
||||
s.mu.Lock()
|
||||
defer s.mu.Unlock()
|
||||
if err := s.ensureOpen(); err != nil {
|
||||
return nil, err
|
||||
}
|
||||
out := make([]bool, s.count)
|
||||
copy(out, s.shadow)
|
||||
return out, nil
|
||||
}
|
||||
@@ -0,0 +1,143 @@
|
||||
// Package gs232 drives rotator controllers that speak the Yaesu GS-232A
|
||||
// protocol, over a raw TCP socket or a serial COM port. The target device is
|
||||
// the microHAM ARCO: both its LAN "CONTROL PROTOCOL" setting (a TCP port) and
|
||||
// its USB port ("USB CONTROL PROTOCOL", a virtual COM where the baud rate is
|
||||
// irrelevant) can be set to speak Yaesu GS-232A — so OpsLog controls it
|
||||
// directly, no PstRotator in between. ARCO accepts up to four parallel LAN
|
||||
// connections, and commands are single CR-terminated lines, so short
|
||||
// per-call connections (same idiom as the other rotator backends) work fine.
|
||||
//
|
||||
// GS-232A subset used:
|
||||
//
|
||||
// Maaa<CR> move to azimuth aaa (000-450)
|
||||
// S<CR> stop rotation
|
||||
// C<CR> query azimuth — replies "+0aaa" (GS-232A) or "AZ=aaa" (GS-232B
|
||||
// flavour); both are parsed.
|
||||
package gs232
|
||||
|
||||
import (
|
||||
"fmt"
|
||||
"io"
|
||||
"net"
|
||||
"regexp"
|
||||
"strconv"
|
||||
"strings"
|
||||
"time"
|
||||
|
||||
"go.bug.st/serial"
|
||||
)
|
||||
|
||||
const (
|
||||
dialTimeout = 3 * time.Second
|
||||
ioTimeout = 2 * time.Second
|
||||
)
|
||||
|
||||
// Client is a stateless per-call sender, mirroring the pst/rotgenius idiom.
|
||||
// Exactly one of (Host, Port) or ComPort is used, per Transport.
|
||||
type Client struct {
|
||||
Host string
|
||||
Port int
|
||||
ComPort string // serial transport: "COM5" etc. (ARCO USB virtual COM — any baud)
|
||||
}
|
||||
|
||||
// New returns a TCP Client with sane defaults applied for empty fields. There
|
||||
// is no standard port: the number is whatever the user typed into the ARCO's
|
||||
// LAN CONTROL PROTOCOL setting — 4001 is only a placeholder.
|
||||
func New(host string, port int) *Client {
|
||||
if host == "" {
|
||||
host = "127.0.0.1"
|
||||
}
|
||||
if port <= 0 || port > 65535 {
|
||||
port = 4001
|
||||
}
|
||||
return &Client{Host: host, Port: port}
|
||||
}
|
||||
|
||||
// NewSerial returns a Client talking over the ARCO's USB virtual COM port. The
|
||||
// baud rate is irrelevant on USB per the ARCO manual (8N1 framing matters); we
|
||||
// open at 9600 which also suits a real RS-232 hookup left at its default.
|
||||
func NewSerial(comPort string) *Client {
|
||||
return &Client{ComPort: comPort}
|
||||
}
|
||||
|
||||
// roundTrip opens a connection (TCP or serial per the client's config), sends
|
||||
// one CR-terminated command and (when wantReply) reads one CR/LF-terminated
|
||||
// reply line.
|
||||
func (c *Client) roundTrip(cmd string, wantReply bool) (string, error) {
|
||||
var conn io.ReadWriteCloser
|
||||
if c.ComPort != "" {
|
||||
sp, err := serial.Open(c.ComPort, &serial.Mode{BaudRate: 9600})
|
||||
if err != nil {
|
||||
return "", fmt.Errorf("open ARCO %s: %w", c.ComPort, err)
|
||||
}
|
||||
_ = sp.SetReadTimeout(200 * time.Millisecond)
|
||||
conn = sp
|
||||
} else {
|
||||
nc, err := net.DialTimeout("tcp", net.JoinHostPort(c.Host, strconv.Itoa(c.Port)), dialTimeout)
|
||||
if err != nil {
|
||||
return "", fmt.Errorf("connect ARCO %s:%d: %w", c.Host, c.Port, err)
|
||||
}
|
||||
_ = nc.SetDeadline(time.Now().Add(ioTimeout))
|
||||
conn = nc
|
||||
}
|
||||
defer conn.Close()
|
||||
if _, err := conn.Write([]byte(cmd + "\r")); err != nil {
|
||||
return "", fmt.Errorf("send %q: %w", cmd, err)
|
||||
}
|
||||
if !wantReply {
|
||||
return "", nil
|
||||
}
|
||||
buf := make([]byte, 64)
|
||||
var sb strings.Builder
|
||||
deadline := time.Now().Add(ioTimeout)
|
||||
for time.Now().Before(deadline) {
|
||||
n, err := conn.Read(buf)
|
||||
if n > 0 {
|
||||
sb.Write(buf[:n])
|
||||
if strings.ContainsAny(sb.String(), "\r\n") {
|
||||
break
|
||||
}
|
||||
}
|
||||
// A serial read that times out returns (0, nil) — keep polling until the
|
||||
// overall deadline; a real error ends the read.
|
||||
if err != nil {
|
||||
break
|
||||
}
|
||||
}
|
||||
line := strings.TrimSpace(sb.String())
|
||||
if line == "" {
|
||||
return "", fmt.Errorf("no reply to %q", cmd)
|
||||
}
|
||||
return line, nil
|
||||
}
|
||||
|
||||
// GoTo points the antenna at the given azimuth (0-359). GS-232A takes M000-M450
|
||||
// (overlap rotators accept >360); we normalise to [0,360).
|
||||
func (c *Client) GoTo(az int) error {
|
||||
az = ((az % 360) + 360) % 360
|
||||
_, err := c.roundTrip(fmt.Sprintf("M%03d", az), false)
|
||||
return err
|
||||
}
|
||||
|
||||
// Stop interrupts any in-progress rotation.
|
||||
func (c *Client) Stop() error {
|
||||
_, err := c.roundTrip("S", false)
|
||||
return err
|
||||
}
|
||||
|
||||
// azRe matches both reply flavours: "+0aaa" (GS-232A) and "AZ=aaa" (GS-232B).
|
||||
var azRe = regexp.MustCompile(`(?:\+0|AZ=)(\d{3})`)
|
||||
|
||||
// Heading queries the current azimuth. Returns the raw reply for diagnostics.
|
||||
func (c *Client) Heading() (az int, raw string, err error) {
|
||||
raw, err = c.roundTrip("C", true)
|
||||
if err != nil {
|
||||
return 0, raw, err
|
||||
}
|
||||
m := azRe.FindStringSubmatch(raw)
|
||||
if m == nil {
|
||||
return 0, raw, fmt.Errorf("unrecognised azimuth reply %q", raw)
|
||||
}
|
||||
az, _ = strconv.Atoi(m[1])
|
||||
return az % 360, raw, nil
|
||||
}
|
||||
@@ -0,0 +1,435 @@
|
||||
// Package spe drives the SPE Expert 1.3K-FA / 1.5K-FA / 2K-FA amplifiers over
|
||||
// their proprietary serial protocol (SPE "Application Programmer's Guide" rev 1.1).
|
||||
// The amp is reached either directly over USB (a virtual COM port) or over TCP via
|
||||
// an RS232-to-Ethernet bridge — both are just an io.ReadWriteCloser to this code.
|
||||
//
|
||||
// Wire format (host → amp): 0x55 0x55 0x55 | CNT | DATA… | CHK
|
||||
// CNT = number of DATA bytes, CHK = sum(DATA) mod 256.
|
||||
// Status reply (amp → host): 0xAA 0xAA 0xAA | LEN | <LEN CSV bytes> | chk0 chk1 | CR LF
|
||||
// LEN is 0x43 (67); the payload is 19 comma-separated fixed fields.
|
||||
//
|
||||
// This MVP implements the two commands anchored by worked examples in the guide:
|
||||
// OPERATE (0x0D, toggles STANDBY↔OPERATE) and STATUS (0x90). Other keystroke codes
|
||||
// exist but the guide's command table did not extract unambiguously, so they are
|
||||
// left out rather than risk sending the wrong key to the amplifier.
|
||||
package spe
|
||||
|
||||
import (
|
||||
"bufio"
|
||||
"fmt"
|
||||
"io"
|
||||
"net"
|
||||
"strconv"
|
||||
"strings"
|
||||
"sync"
|
||||
"time"
|
||||
|
||||
"go.bug.st/serial"
|
||||
|
||||
"hamlog/internal/applog"
|
||||
)
|
||||
|
||||
const (
|
||||
cmdOperate byte = 0x0D // toggles STANDBY ↔ OPERATE (confirmed on hw)
|
||||
cmdStatus byte = 0x90 // request the status string
|
||||
|
||||
// Best-guess keystroke codes reconstructed from the APG command table after
|
||||
// correcting the PDF's note-wrap misalignment (anchored to the confirmed
|
||||
// OPERATE=0x0D): OFF=0x0A, POWER=0x0B. The POWER key doubles as power-on (when
|
||||
// the amp is off) and the output-level cycle L→M→H (when it's on) — same as the
|
||||
// single physical POWER button. To be verified on hardware.
|
||||
cmdOff byte = 0x0A // OFF key — switch the amplifier off
|
||||
cmdPower byte = 0x0B // POWER key — turn on / cycle output power level
|
||||
|
||||
syncHost = 0x55
|
||||
syncAmp = 0xAA
|
||||
|
||||
dialTimeout = 5 * time.Second
|
||||
ioTimeout = 3 * time.Second
|
||||
pollEvery = 800 * time.Millisecond
|
||||
)
|
||||
|
||||
// Status is the decoded amplifier state for the UI.
|
||||
type Status struct {
|
||||
Connected bool `json:"connected"`
|
||||
LastError string `json:"last_error,omitempty"`
|
||||
Model string `json:"model,omitempty"` // "20K" / "13K"
|
||||
Operate bool `json:"operate"` // true = OPERATE, false = STANDBY
|
||||
TX bool `json:"tx"` // true = transmitting
|
||||
Input string `json:"input,omitempty"` // "1" / "2"
|
||||
Band string `json:"band,omitempty"` // raw 2-char band code
|
||||
PowerLevel string `json:"power_level,omitempty"` // L / M / H
|
||||
OutputW int `json:"output_w"`
|
||||
SWRATU float64 `json:"swr_atu"`
|
||||
SWRAnt float64 `json:"swr_ant"`
|
||||
VoltPA float64 `json:"volt_pa"`
|
||||
CurrPA float64 `json:"curr_pa"`
|
||||
TempC int `json:"temp_c"` // heatsink (upper) temperature
|
||||
Warnings string `json:"warnings,omitempty"`
|
||||
Alarms string `json:"alarms,omitempty"`
|
||||
}
|
||||
|
||||
// Config selects the transport.
|
||||
type Config struct {
|
||||
Transport string // "serial" | "tcp"
|
||||
ComPort string // serial
|
||||
Baud int // serial
|
||||
Host string // tcp
|
||||
Port int // tcp
|
||||
}
|
||||
|
||||
type Client struct {
|
||||
cfg Config
|
||||
|
||||
mu sync.Mutex // serialises access to the connection
|
||||
conn io.ReadWriteCloser
|
||||
r *bufio.Reader
|
||||
|
||||
statusMu sync.RWMutex
|
||||
status Status
|
||||
lastRaw string // last raw status payload logged (log only on change)
|
||||
|
||||
stop chan struct{}
|
||||
running bool
|
||||
}
|
||||
|
||||
func New(cfg Config) *Client {
|
||||
if cfg.Baud <= 0 {
|
||||
cfg.Baud = 115200
|
||||
}
|
||||
return &Client{cfg: cfg, stop: make(chan struct{})}
|
||||
}
|
||||
|
||||
func (c *Client) Start() error {
|
||||
if c.running {
|
||||
return nil
|
||||
}
|
||||
c.running = true
|
||||
go c.pollLoop()
|
||||
return nil
|
||||
}
|
||||
|
||||
func (c *Client) Stop() {
|
||||
if !c.running {
|
||||
return
|
||||
}
|
||||
c.running = false
|
||||
close(c.stop)
|
||||
c.mu.Lock()
|
||||
c.dropLocked()
|
||||
c.mu.Unlock()
|
||||
}
|
||||
|
||||
func (c *Client) GetStatus() Status {
|
||||
c.statusMu.RLock()
|
||||
defer c.statusMu.RUnlock()
|
||||
return c.status
|
||||
}
|
||||
|
||||
func (c *Client) setErr(err error) {
|
||||
c.statusMu.Lock()
|
||||
c.status.Connected = false
|
||||
c.status.LastError = err.Error()
|
||||
c.statusMu.Unlock()
|
||||
}
|
||||
|
||||
// Operate toggles the amplifier between STANDBY and OPERATE (the amp has a single
|
||||
// OPERATE key that flips the state, so we send it only when the desired state
|
||||
// differs from the last-read one).
|
||||
func (c *Client) Operate(on bool) error {
|
||||
if c.GetStatus().Operate == on {
|
||||
return nil
|
||||
}
|
||||
return c.sendCmd(cmdOperate)
|
||||
}
|
||||
|
||||
// ToggleOperate flips STANDBY/OPERATE unconditionally.
|
||||
func (c *Client) ToggleOperate() error { return c.sendCmd(cmdOperate) }
|
||||
|
||||
// PowerOn turns the amplifier on. Per the SPE manual this is NOT a data command
|
||||
// but a hardware DTR pulse on the serial line (the "Remote_ON" pin), which needs
|
||||
// the special SPE cable — so it only applies to the serial transport. Over TCP
|
||||
// there is no DTR line and power-on isn't possible remotely.
|
||||
func (c *Client) PowerOn() error {
|
||||
c.mu.Lock()
|
||||
defer c.mu.Unlock()
|
||||
sp, ok := c.conn.(serial.Port)
|
||||
if !ok {
|
||||
return fmt.Errorf("power-on needs the serial DTR line (special SPE cable); not available over network")
|
||||
}
|
||||
// A single positive pulse (~1.2s) on DTR, as the manual describes.
|
||||
if err := sp.SetDTR(true); err != nil {
|
||||
return err
|
||||
}
|
||||
time.Sleep(1200 * time.Millisecond)
|
||||
return sp.SetDTR(false)
|
||||
}
|
||||
|
||||
// PowerOff presses the OFF key (switches the amp off).
|
||||
func (c *Client) PowerOff() error { return c.sendCmd(cmdOff) }
|
||||
|
||||
// SetPowerLevel cycles the output power level (L/M/H) to the requested one by
|
||||
// tapping the POWER key (0x0B) and WAITING for the amp to actually report the new
|
||||
// level before the next tap — the status is streamed, so we poll GetStatus rather
|
||||
// than sleeping a fixed time. `level` is "L", "M" or "H" (case-insensitive).
|
||||
func (c *Client) SetPowerLevel(level string) error {
|
||||
want := strings.ToUpper(strings.TrimSpace(level))
|
||||
if want == "" {
|
||||
return nil
|
||||
}
|
||||
// At most 3 taps to walk the 3-way L→M→H cycle around to the target.
|
||||
for i := 0; i < 3; i++ {
|
||||
if strings.ToUpper(strings.TrimSpace(c.GetStatus().PowerLevel)) == want {
|
||||
return nil
|
||||
}
|
||||
prev := strings.ToUpper(strings.TrimSpace(c.GetStatus().PowerLevel))
|
||||
if err := c.sendCmd(cmdPower); err != nil {
|
||||
return err
|
||||
}
|
||||
// Wait (up to ~2s) for the streamed status to reflect the change.
|
||||
for w := 0; w < 20; w++ {
|
||||
time.Sleep(100 * time.Millisecond)
|
||||
if strings.ToUpper(strings.TrimSpace(c.GetStatus().PowerLevel)) != prev {
|
||||
break
|
||||
}
|
||||
}
|
||||
}
|
||||
return nil
|
||||
}
|
||||
|
||||
func (c *Client) pollLoop() {
|
||||
t := time.NewTicker(pollEvery)
|
||||
defer t.Stop()
|
||||
for {
|
||||
select {
|
||||
case <-c.stop:
|
||||
return
|
||||
case <-t.C:
|
||||
if err := c.ensureConn(); err != nil {
|
||||
c.setErr(fmt.Errorf("connect: %w", err))
|
||||
continue
|
||||
}
|
||||
// The amp streams status frames faster than one per poll, so a backlog
|
||||
// builds up and we'd read stale frames (the display lagged ~15s behind
|
||||
// the real amp). Flush anything pending, THEN request + read exactly one
|
||||
// fresh frame — the status we show is always current.
|
||||
c.drainInput()
|
||||
if err := c.sendCmd(cmdStatus); err != nil {
|
||||
c.mu.Lock()
|
||||
c.dropLocked()
|
||||
c.mu.Unlock()
|
||||
c.setErr(err)
|
||||
continue
|
||||
}
|
||||
c.readStatus()
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
func (c *Client) ensureConn() error {
|
||||
c.mu.Lock()
|
||||
defer c.mu.Unlock()
|
||||
if c.conn != nil {
|
||||
return nil
|
||||
}
|
||||
var rwc io.ReadWriteCloser
|
||||
var err error
|
||||
if c.cfg.Transport == "tcp" {
|
||||
var nc net.Conn
|
||||
nc, err = net.DialTimeout("tcp", net.JoinHostPort(c.cfg.Host, strconv.Itoa(c.cfg.Port)), dialTimeout)
|
||||
rwc = nc
|
||||
} else {
|
||||
rwc, err = serial.Open(c.cfg.ComPort, &serial.Mode{BaudRate: c.cfg.Baud})
|
||||
}
|
||||
if err != nil {
|
||||
return err
|
||||
}
|
||||
c.conn = rwc
|
||||
c.r = bufio.NewReader(rwc)
|
||||
return nil
|
||||
}
|
||||
|
||||
func (c *Client) dropLocked() {
|
||||
if c.conn != nil {
|
||||
c.conn.Close()
|
||||
c.conn = nil
|
||||
c.r = nil
|
||||
}
|
||||
}
|
||||
|
||||
// drainInput discards everything currently pending on the link (OS buffer + the
|
||||
// bufio reader) so the next read returns a fresh frame rather than a queued stale
|
||||
// one. Called before each status request.
|
||||
func (c *Client) drainInput() {
|
||||
c.mu.Lock()
|
||||
defer c.mu.Unlock()
|
||||
if c.conn == nil {
|
||||
return
|
||||
}
|
||||
if sp, ok := c.conn.(serial.Port); ok {
|
||||
_ = sp.ResetInputBuffer()
|
||||
} else if nc, ok := c.conn.(net.Conn); ok {
|
||||
_ = nc.SetReadDeadline(time.Now().Add(15 * time.Millisecond))
|
||||
buf := make([]byte, 4096)
|
||||
for {
|
||||
n, err := nc.Read(buf)
|
||||
if n == 0 || err != nil {
|
||||
break
|
||||
}
|
||||
}
|
||||
}
|
||||
if c.r != nil {
|
||||
c.r.Reset(c.conn)
|
||||
}
|
||||
}
|
||||
|
||||
// sendCmd frames one keystroke code and writes it. Single-byte payload → CHK is
|
||||
// the code itself.
|
||||
func (c *Client) sendCmd(code byte) error {
|
||||
c.mu.Lock()
|
||||
defer c.mu.Unlock()
|
||||
if c.conn == nil {
|
||||
return fmt.Errorf("not connected")
|
||||
}
|
||||
if nc, ok := c.conn.(net.Conn); ok {
|
||||
_ = nc.SetWriteDeadline(time.Now().Add(ioTimeout))
|
||||
}
|
||||
pkt := []byte{syncHost, syncHost, syncHost, 0x01, code, code}
|
||||
_, err := c.conn.Write(pkt)
|
||||
return err
|
||||
}
|
||||
|
||||
// readStatus reads one amp packet and, when it's a status string, decodes it. ACK
|
||||
// packets (short) are consumed and ignored.
|
||||
func (c *Client) readStatus() {
|
||||
c.mu.Lock()
|
||||
r := c.r
|
||||
if nc, ok := c.conn.(net.Conn); ok && nc != nil {
|
||||
_ = nc.SetReadDeadline(time.Now().Add(ioTimeout))
|
||||
}
|
||||
c.mu.Unlock()
|
||||
if r == nil {
|
||||
return
|
||||
}
|
||||
// Sync on three 0xAA bytes.
|
||||
run := 0
|
||||
for run < 3 {
|
||||
b, err := r.ReadByte()
|
||||
if err != nil {
|
||||
c.mu.Lock()
|
||||
c.dropLocked()
|
||||
c.mu.Unlock()
|
||||
c.setErr(err)
|
||||
return
|
||||
}
|
||||
if b == syncAmp {
|
||||
run++
|
||||
} else {
|
||||
run = 0
|
||||
}
|
||||
}
|
||||
length, err := r.ReadByte()
|
||||
if err != nil {
|
||||
return
|
||||
}
|
||||
data := make([]byte, int(length))
|
||||
if _, err := io.ReadFull(r, data); err != nil {
|
||||
return
|
||||
}
|
||||
// Status strings are the long ones (LEN 0x43 = 67). Short packets are ACKs
|
||||
// (1 checksum byte, no CRLF) — nothing else to consume for those.
|
||||
if length >= 40 {
|
||||
// consume the 2 checksum bytes + CR LF
|
||||
_, _ = r.Discard(4)
|
||||
c.decodeCSV(string(data))
|
||||
} else {
|
||||
_, _ = r.Discard(1) // ACK checksum
|
||||
}
|
||||
}
|
||||
|
||||
// decodeCSV parses the 19-field comma-separated status payload.
|
||||
func (c *Client) decodeCSV(payload string) {
|
||||
f := strings.Split(payload, ",")
|
||||
get := func(i int) string {
|
||||
if i < len(f) {
|
||||
return strings.TrimSpace(f[i])
|
||||
}
|
||||
return ""
|
||||
}
|
||||
pf := func(s string) float64 { v, _ := strconv.ParseFloat(strings.TrimSpace(s), 64); return v }
|
||||
pi := func(s string) int { v, _ := strconv.Atoi(strings.TrimSpace(s)); return v }
|
||||
|
||||
c.statusMu.Lock()
|
||||
defer c.statusMu.Unlock()
|
||||
// Log the raw status frame ONCE per change, so field alignment can be verified
|
||||
// against real hardware (the doc's 19-field layout may differ per firmware).
|
||||
if payload != c.lastRaw {
|
||||
c.lastRaw = payload
|
||||
applog.Printf("spe: status raw=%q fields=%d", payload, len(f))
|
||||
}
|
||||
c.status.Connected = true
|
||||
c.status.LastError = ""
|
||||
// The real frame carries a leading empty field (it starts with a comma), so the
|
||||
// 19 documented fields live at indices 1..19, not 0..18. Verified against a live
|
||||
// 1.3K-FA: ",13K,S,R,A,1,05,1b,0r,M,0000, 0.00, 0.00, 1.3, 0.0, 26,000,000,N,N,".
|
||||
c.status.Model = get(1)
|
||||
c.status.Operate = get(2) == "O" // "O" = OPERATE, "S" = STANDBY
|
||||
c.status.TX = get(3) == "T" // "T" = transmit, "R" = receive
|
||||
c.status.Input = get(5)
|
||||
c.status.Band = bandName(get(6))
|
||||
c.status.PowerLevel = get(9)
|
||||
c.status.OutputW = pi(get(10))
|
||||
c.status.SWRATU = pf(get(11))
|
||||
c.status.SWRAnt = pf(get(12))
|
||||
c.status.VoltPA = pf(get(13))
|
||||
c.status.CurrPA = pf(get(14))
|
||||
c.status.TempC = pi(get(15))
|
||||
if w := get(18); w != "" && w != "N" {
|
||||
c.status.Warnings = w
|
||||
} else {
|
||||
c.status.Warnings = ""
|
||||
}
|
||||
if a := get(19); a != "" && a != "N" {
|
||||
c.status.Alarms = a
|
||||
} else {
|
||||
c.status.Alarms = ""
|
||||
}
|
||||
}
|
||||
|
||||
// bandName maps the SPE 2-digit band index to a human band label, falling back to
|
||||
// the raw code for anything unrecognised.
|
||||
func bandName(code string) string {
|
||||
// SPE band index, verified against a live 1.3K-FA: the status frame reports the
|
||||
// band as a 2-digit decimal string ordered by descending wavelength — 80m→"01"
|
||||
// and 20m→"05" were both confirmed on hardware (the printed manual's table was
|
||||
// off by one). 00=160m, 01=80m, 02=60m, 03=40m, 04=30m, 05=20m, 06=17m, 07=15m,
|
||||
// 08=12m, 09=10m, 10=6m.
|
||||
switch strings.TrimSpace(code) {
|
||||
case "00":
|
||||
return "160m"
|
||||
case "01":
|
||||
return "80m"
|
||||
case "02":
|
||||
return "60m"
|
||||
case "03":
|
||||
return "40m"
|
||||
case "04":
|
||||
return "30m"
|
||||
case "05":
|
||||
return "20m"
|
||||
case "06":
|
||||
return "17m"
|
||||
case "07":
|
||||
return "15m"
|
||||
case "08":
|
||||
return "12m"
|
||||
case "09":
|
||||
return "10m"
|
||||
case "10":
|
||||
return "6m"
|
||||
case "":
|
||||
return ""
|
||||
default:
|
||||
return code
|
||||
}
|
||||
}
|
||||
+209
-39
@@ -1,13 +1,25 @@
|
||||
package main
|
||||
|
||||
import (
|
||||
"fmt"
|
||||
"database/sql"
|
||||
"strings"
|
||||
"time"
|
||||
|
||||
wruntime "github.com/wailsapp/wails/v2/pkg/runtime"
|
||||
|
||||
"hamlog/internal/applog"
|
||||
)
|
||||
|
||||
// emitLiveStatusChanged nudges the frontend to re-read GetLiveStations right when
|
||||
// the shared table actually changes (a row appeared or was removed) — so the
|
||||
// "stations on air" widget updates the instant a QSO is published, matching the
|
||||
// bottom ON-AIR badge instead of waiting for its poll.
|
||||
func (a *App) emitLiveStatusChanged() {
|
||||
if a.ctx != nil {
|
||||
wruntime.EventsEmit(a.ctx, "livestatus:updated", nil)
|
||||
}
|
||||
}
|
||||
|
||||
// Live operator status — for multi-operator events on a SHARED MySQL logbook
|
||||
// (e.g. a special-event call like TM74FR with several ops on different bands).
|
||||
// Each OpsLog instance heartbeats its current activity (operator call + station
|
||||
@@ -17,37 +29,70 @@ import (
|
||||
// to the DB — it is not a web server. Rows older than a couple of minutes are
|
||||
// "stale" (operator went offline); the web side ignores them.
|
||||
|
||||
const keyLiveStatusEnabled = "livestatus.enabled"
|
||||
// liveOnlineWindow is how long after the last logged contact an operator still
|
||||
// counts as "on air". Leaving the log open without working anyone flips them
|
||||
// offline once this elapses; logging a new QSO flips them back online.
|
||||
const liveOnlineWindow = 5 * time.Minute
|
||||
|
||||
// GetLiveStatusEnabled reports whether this operator publishes live status.
|
||||
func (a *App) GetLiveStatusEnabled() bool {
|
||||
if a.settings == nil {
|
||||
return false
|
||||
// noteLiveQSO records that this operator just logged a new contact and pushes the
|
||||
// live status right away, so they flip back to online the instant they work
|
||||
// someone. Called from the logging paths (manual entry, UDP auto-log).
|
||||
func (a *App) noteLiveQSO() {
|
||||
a.liveActMu.Lock()
|
||||
a.liveLastQSOAt = time.Now()
|
||||
a.liveActMu.Unlock()
|
||||
if a.liveStatusActive() {
|
||||
go a.publishLiveStatus()
|
||||
}
|
||||
v, _ := a.settings.Get(a.ctx, keyLiveStatusEnabled)
|
||||
return strings.TrimSpace(v) == "1"
|
||||
}
|
||||
|
||||
// SetLiveStatusEnabled turns live-status publishing on or off (off also removes
|
||||
// this operator's row immediately).
|
||||
func (a *App) SetLiveStatusEnabled(on bool) error {
|
||||
if a.settings == nil {
|
||||
return fmt.Errorf("db not initialized")
|
||||
// seedLiveLastQSO primes liveLastQSOAt from the DB at launch, so an operator who
|
||||
// worked someone shortly before (re)starting OpsLog is shown "on air" right away
|
||||
// instead of offline until their next QSO.
|
||||
func (a *App) seedLiveLastQSO() {
|
||||
if a.qso == nil {
|
||||
return
|
||||
}
|
||||
val := "0"
|
||||
if on {
|
||||
val = "1"
|
||||
op, _ := a.liveStatusOperator()
|
||||
if op == "" {
|
||||
return
|
||||
}
|
||||
if err := a.settings.Set(a.ctx, keyLiveStatusEnabled, val); err != nil {
|
||||
return err
|
||||
if t, ok := a.qso.LastQSOTime(a.ctx, op); ok {
|
||||
a.liveActMu.Lock()
|
||||
if a.liveLastQSOAt.IsZero() {
|
||||
a.liveLastQSOAt = t
|
||||
}
|
||||
a.liveActMu.Unlock()
|
||||
}
|
||||
if on {
|
||||
applog.Printf("livestatus: enabled (logbook backend=%q, mysql conn=%v)", a.dbBackend, a.logDb != nil)
|
||||
go a.publishLiveStatus() // show up right away
|
||||
} else {
|
||||
a.clearLiveStatus()
|
||||
}
|
||||
|
||||
// liveLastQSOTime is the authoritative "last contact" instant for this operator:
|
||||
// the most recent of the in-memory stamp (this session's local logs, updated
|
||||
// instantly) AND the DB (a contact that arrived via the SHARED logbook from another
|
||||
// station, or one logged before launch). Used by both the published status and the
|
||||
// UI badge so on-air/offline is right in every multi-op case.
|
||||
func (a *App) liveLastQSOTime() time.Time {
|
||||
a.liveActMu.Lock()
|
||||
last := a.liveLastQSOAt
|
||||
a.liveActMu.Unlock()
|
||||
if a.qso != nil {
|
||||
if op, _ := a.liveStatusOperator(); op != "" {
|
||||
if t, ok := a.qso.LastQSOTime(a.ctx, op); ok && t.After(last) {
|
||||
last = t
|
||||
}
|
||||
}
|
||||
}
|
||||
return nil
|
||||
return last
|
||||
}
|
||||
|
||||
// LiveLastQSOAgeSec returns seconds since this operator's last logged QSO, or -1 if
|
||||
// none is known — the UI polls it for the "on air" badge.
|
||||
func (a *App) LiveLastQSOAgeSec() int {
|
||||
last := a.liveLastQSOTime()
|
||||
if last.IsZero() {
|
||||
return -1
|
||||
}
|
||||
return int(time.Since(last).Seconds())
|
||||
}
|
||||
|
||||
// liveStatusLoop heartbeats the current activity while enabled. Started once at
|
||||
@@ -55,6 +100,7 @@ func (a *App) SetLiveStatusEnabled(on bool) error {
|
||||
func (a *App) liveStatusLoop() {
|
||||
defer func() { _ = recover() }() // never crash the app from here
|
||||
applog.Printf("livestatus: loop started")
|
||||
a.seedLiveLastQSO() // so online/offline is right at launch, not only after the next QSO
|
||||
a.publishLiveStatus() // attempt immediately, don't wait the first tick
|
||||
t := time.NewTicker(15 * time.Second)
|
||||
defer t.Stop()
|
||||
@@ -63,9 +109,11 @@ func (a *App) liveStatusLoop() {
|
||||
}
|
||||
}
|
||||
|
||||
// liveStatusActive reports whether publishing should run (MySQL logbook + on).
|
||||
// liveStatusActive reports whether publishing should run. Always on for a shared
|
||||
// MySQL logbook (no user toggle: going offline is automatic — no QSO for 5 min
|
||||
// removes the row — so there is nothing to opt out of).
|
||||
func (a *App) liveStatusActive() bool {
|
||||
return a.logDb != nil && a.dbBackend == "mysql" && a.GetLiveStatusEnabled()
|
||||
return a.logDb != nil && a.dbBackend == "mysql"
|
||||
}
|
||||
|
||||
// liveStatusOperator returns this instance's operator id (the operator callsign,
|
||||
@@ -91,10 +139,23 @@ func (a *App) liveStatusOperator() (op, station string) {
|
||||
// ReportLiveActivity is called by the UI with the current entry-strip freq/band/
|
||||
// mode, used as a fallback for live status when the CAT isn't connected.
|
||||
func (a *App) ReportLiveActivity(freqHz int64, band, mode string) {
|
||||
nb := strings.ToUpper(strings.TrimSpace(band))
|
||||
nm := strings.ToUpper(strings.TrimSpace(mode))
|
||||
a.liveActMu.Lock()
|
||||
changed := a.liveFreqHz != freqHz || a.liveBand != nb || a.liveMode != nm
|
||||
a.liveFreqHz = freqHz
|
||||
a.liveBand = strings.ToUpper(strings.TrimSpace(band))
|
||||
a.liveMode = strings.ToUpper(strings.TrimSpace(mode))
|
||||
a.liveBand = nb
|
||||
a.liveMode = nm
|
||||
// Push a fresh row PROMPTLY when the operator's freq/band/mode changes, instead
|
||||
// of waiting for the next 15 s heartbeat — otherwise "who's on air" showed a
|
||||
// stale band and took up to a minute to catch up. Debounced so spinning the VFO
|
||||
// doesn't hammer the shared MySQL.
|
||||
if changed {
|
||||
if a.livePublishTimer != nil {
|
||||
a.livePublishTimer.Stop()
|
||||
}
|
||||
a.livePublishTimer = time.AfterFunc(1500*time.Millisecond, func() { a.publishLiveStatus() })
|
||||
}
|
||||
a.liveActMu.Unlock()
|
||||
}
|
||||
|
||||
@@ -104,9 +165,6 @@ func (a *App) publishLiveStatus() {
|
||||
if a.logDb == nil || a.dbBackend != "mysql" {
|
||||
return // not a MySQL logbook — nothing to do (silent, runs every 15s)
|
||||
}
|
||||
if !a.GetLiveStatusEnabled() {
|
||||
return // disabled (silent)
|
||||
}
|
||||
op, station := a.liveStatusOperator()
|
||||
if op == "" {
|
||||
applog.Printf("livestatus: nothing published — no operator/callsign set (Settings → Station)")
|
||||
@@ -133,33 +191,145 @@ func (a *App) publishLiveStatus() {
|
||||
mode = a.liveMode
|
||||
}
|
||||
a.liveActMu.Unlock()
|
||||
lastQSO := a.liveLastQSOTime() // authoritative (in-memory OR shared DB)
|
||||
// On air = a new contact was logged within the window. An operator who leaves
|
||||
// the log open but stops working goes offline after `liveOnlineWindow`; the next
|
||||
// QSO puts them back on. never-logged (zero time) → offline.
|
||||
online := !lastQSO.IsZero() && time.Since(lastQSO) < liveOnlineWindow
|
||||
if err := a.ensureLiveStatusTable(); err != nil {
|
||||
applog.Printf("livestatus: CREATE TABLE failed: %v", err)
|
||||
return
|
||||
}
|
||||
// Offline → REMOVE the row entirely, not just flip a flag: a status page that
|
||||
// lists the present rows (the common case, keyed on updated_at) then shows the
|
||||
// operator as gone without having to read the online column. The row reappears
|
||||
// on the next QSO. This is the whole point — no one shows on air when they're not.
|
||||
if !online {
|
||||
if _, err := a.logDb.ExecContext(a.ctx, "DELETE FROM live_status WHERE operator=?", op); err != nil {
|
||||
applog.Printf("livestatus: offline DELETE failed: %v", err)
|
||||
}
|
||||
a.emitLiveStatusChanged()
|
||||
return
|
||||
}
|
||||
lastQSOArg := lastQSO.UTC()
|
||||
_, err := a.logDb.ExecContext(a.ctx,
|
||||
"INSERT INTO live_status (operator, station, freq_hz, band, mode, updated_at) "+
|
||||
"VALUES (?, ?, ?, ?, ?, UTC_TIMESTAMP()) "+
|
||||
"INSERT INTO live_status (operator, station, freq_hz, band, mode, online, version, last_qso_at, updated_at) "+
|
||||
"VALUES (?, ?, ?, ?, ?, ?, ?, ?, UTC_TIMESTAMP()) "+
|
||||
"ON DUPLICATE KEY UPDATE station=VALUES(station), freq_hz=VALUES(freq_hz), "+
|
||||
"band=VALUES(band), mode=VALUES(mode), updated_at=UTC_TIMESTAMP()",
|
||||
op, station, freqHz, band, mode)
|
||||
"band=VALUES(band), mode=VALUES(mode), online=VALUES(online), version=VALUES(version), "+
|
||||
"last_qso_at=VALUES(last_qso_at), updated_at=UTC_TIMESTAMP()",
|
||||
op, station, freqHz, band, mode, 1, appVersion, lastQSOArg)
|
||||
if err != nil {
|
||||
applog.Printf("livestatus: INSERT failed: %v", err)
|
||||
return
|
||||
}
|
||||
applog.Printf("livestatus: published op=%s station=%s %dHz %s %s", op, station, freqHz, band, mode)
|
||||
applog.Printf("livestatus: published op=%s station=%s %dHz %s %s ON AIR", op, station, freqHz, band, mode)
|
||||
a.emitLiveStatusChanged()
|
||||
}
|
||||
|
||||
// LiveStation is one operator's live status for the multi-op "who's on air" widget.
|
||||
type LiveStation struct {
|
||||
Operator string `json:"operator"`
|
||||
Station string `json:"station"`
|
||||
FreqHz int64 `json:"freq_hz"`
|
||||
Band string `json:"band"`
|
||||
Mode string `json:"mode"`
|
||||
Online bool `json:"online"` // logged a QSO in the last 5 min
|
||||
Version string `json:"version"` // that operator's OpsLog version
|
||||
AgeSec int `json:"age_sec"` // seconds since their last heartbeat (stale = OpsLog closed)
|
||||
}
|
||||
|
||||
// GetLiveStations returns every operator's live status from the shared MySQL
|
||||
// logbook (empty on a local SQLite logbook). Rows whose heartbeat is very stale
|
||||
// (OpsLog closed without clearing its row) are dropped. Online stations first.
|
||||
func (a *App) GetLiveStations() []LiveStation {
|
||||
if a.logDb == nil || a.dbBackend != "mysql" {
|
||||
return nil
|
||||
}
|
||||
if err := a.ensureLiveStatusTable(); err != nil {
|
||||
return nil
|
||||
}
|
||||
rows, err := a.logDb.QueryContext(a.ctx,
|
||||
"SELECT operator, COALESCE(station,''), COALESCE(freq_hz,0), COALESCE(band,''), "+
|
||||
"COALESCE(mode,''), COALESCE(online,0), COALESCE(version,''), "+
|
||||
"TIMESTAMPDIFF(SECOND, updated_at, UTC_TIMESTAMP()) "+
|
||||
"FROM live_status ORDER BY online DESC, operator")
|
||||
if err != nil {
|
||||
applog.Printf("livestatus: list failed: %v", err)
|
||||
return nil
|
||||
}
|
||||
defer rows.Close()
|
||||
out := []LiveStation{}
|
||||
for rows.Next() {
|
||||
var s LiveStation
|
||||
var online int
|
||||
var age sql.NullInt64
|
||||
if err := rows.Scan(&s.Operator, &s.Station, &s.FreqHz, &s.Band, &s.Mode, &online, &s.Version, &age); err != nil {
|
||||
continue
|
||||
}
|
||||
// Drop rows from an OpsLog that hasn't heartbeated in a while (closed): the
|
||||
// heartbeat is every 15 s, so > 3 min means it's gone.
|
||||
if age.Valid && age.Int64 > 180 {
|
||||
continue
|
||||
}
|
||||
s.Online = online == 1
|
||||
if age.Valid {
|
||||
s.AgeSec = int(age.Int64)
|
||||
}
|
||||
out = append(out, s)
|
||||
}
|
||||
return out
|
||||
}
|
||||
|
||||
// ensureLiveStatusTable creates/upgrades the live_status table ONCE per logbook
|
||||
// connection. It used to run the CREATE + 3 ALTERs on every call — and it is
|
||||
// called from every publish (15s heartbeat) AND every GetLiveStations poll (5s),
|
||||
// so that was 4 wasted round-trips per call on a remote MySQL, adding latency to
|
||||
// the "who's on air" widget and holding pool connections for nothing.
|
||||
func (a *App) ensureLiveStatusTable() error {
|
||||
_, err := a.logDb.ExecContext(a.ctx,
|
||||
db := a.logDb
|
||||
a.liveTableMu.Lock()
|
||||
done := a.liveTableFor == db // re-ensure after a profile switch swaps the logbook
|
||||
a.liveTableMu.Unlock()
|
||||
if done {
|
||||
return nil
|
||||
}
|
||||
if err := a.ensureLiveStatusTableDDL(); err != nil {
|
||||
return err
|
||||
}
|
||||
a.liveTableMu.Lock()
|
||||
a.liveTableFor = db
|
||||
a.liveTableMu.Unlock()
|
||||
return nil
|
||||
}
|
||||
|
||||
func (a *App) ensureLiveStatusTableDDL() error {
|
||||
if _, err := a.logDb.ExecContext(a.ctx,
|
||||
"CREATE TABLE IF NOT EXISTS live_status ("+
|
||||
"operator VARCHAR(32) PRIMARY KEY, "+
|
||||
"station VARCHAR(32), "+
|
||||
"freq_hz BIGINT, "+
|
||||
"band VARCHAR(16), "+
|
||||
"mode VARCHAR(16), "+
|
||||
"updated_at DATETIME)")
|
||||
return err
|
||||
"online TINYINT DEFAULT 0, "+
|
||||
"version VARCHAR(32), "+
|
||||
"last_qso_at DATETIME NULL, "+
|
||||
"updated_at DATETIME)"); err != nil {
|
||||
return err
|
||||
}
|
||||
// Add newer columns to a table created by an older build. MySQL has no portable
|
||||
// "ADD COLUMN IF NOT EXISTS", so just run the ALTERs and ignore the duplicate-
|
||||
// column error when they already exist.
|
||||
for _, ddl := range []string{
|
||||
"ALTER TABLE live_status ADD COLUMN online TINYINT DEFAULT 0",
|
||||
"ALTER TABLE live_status ADD COLUMN version VARCHAR(32)",
|
||||
"ALTER TABLE live_status ADD COLUMN last_qso_at DATETIME NULL",
|
||||
} {
|
||||
if _, err := a.logDb.ExecContext(a.ctx, ddl); err != nil && !strings.Contains(strings.ToLower(err.Error()), "duplicate column") {
|
||||
applog.Printf("livestatus: %q: %v", ddl, err)
|
||||
}
|
||||
}
|
||||
return nil
|
||||
}
|
||||
|
||||
// clearLiveStatus removes this operator's row (on disable / shutdown).
|
||||
|
||||
@@ -4,6 +4,7 @@ import (
|
||||
"embed"
|
||||
"os"
|
||||
"strings"
|
||||
"time"
|
||||
|
||||
"github.com/wailsapp/wails/v2"
|
||||
"github.com/wailsapp/wails/v2/pkg/options"
|
||||
@@ -35,15 +36,53 @@ func profileArg(args []string) string {
|
||||
return ""
|
||||
}
|
||||
|
||||
// hasFlag reports whether flag is present in args.
|
||||
func hasFlag(args []string, flag string) bool {
|
||||
for _, a := range args {
|
||||
if a == flag {
|
||||
return true
|
||||
}
|
||||
}
|
||||
return false
|
||||
}
|
||||
|
||||
// acquireInstance grabs the single-instance mutex. On a normal launch it's a plain
|
||||
// try (fail → another OpsLog is running, so exit). On a --post-update relaunch the
|
||||
// previous instance may still be shutting down and holding the mutex, so retry for
|
||||
// a few seconds until it frees.
|
||||
func acquireInstance(postUpdate bool) bool {
|
||||
if acquireSingleInstance() {
|
||||
return true
|
||||
}
|
||||
if !postUpdate {
|
||||
return false
|
||||
}
|
||||
deadline := time.Now().Add(20 * time.Second)
|
||||
for time.Now().Before(deadline) {
|
||||
time.Sleep(300 * time.Millisecond)
|
||||
if acquireSingleInstance() {
|
||||
return true
|
||||
}
|
||||
}
|
||||
return false
|
||||
}
|
||||
|
||||
func main() {
|
||||
// Single-instance guard: if OpsLog is already running, focus that window and
|
||||
// exit instead of spawning a duplicate. A second process would open its own
|
||||
// CAT (FlexRadio) connection and Ultrabeam follow loop, and the two would
|
||||
// fight over the rig/antenna frequency — the cause of "the antenna re-tunes on
|
||||
// its own" when a windowless zombie instance was left running.
|
||||
if !acquireSingleInstance() {
|
||||
// A --post-update relaunch (from the auto-updater) may start while the previous
|
||||
// instance is still exiting and holding the single-instance mutex — wait for it
|
||||
// to free instead of bailing out. Then clear the old exe it left behind.
|
||||
postUpdate := hasFlag(os.Args[1:], "--post-update")
|
||||
if !acquireInstance(postUpdate) {
|
||||
return
|
||||
}
|
||||
if postUpdate {
|
||||
cleanupOldUpdateBinary()
|
||||
}
|
||||
|
||||
// Create an instance of the app structure
|
||||
app := NewApp()
|
||||
|
||||
+61
-10
@@ -96,8 +96,23 @@ func bandInList(bands []string, band string) bool {
|
||||
return false
|
||||
}
|
||||
|
||||
// relayAction is one relay's computed desired state for this evaluation.
|
||||
type relayAction struct {
|
||||
dev string
|
||||
relay int
|
||||
want bool
|
||||
}
|
||||
|
||||
// applyRelayAuto evaluates every rule against the current frequency/band and
|
||||
// switches only the relays whose desired state changed since the last apply.
|
||||
// switches only the relays that are NOT already in the wanted position. Two things
|
||||
// it deliberately does NOT do, which used to make the relay clunk on every
|
||||
// launch/close:
|
||||
// - Never acts on an UNKNOWN frequency/band. When the CAT disconnects (app close)
|
||||
// the frequency drops to 0; reading that as "out of range" and switching the
|
||||
// relay off — then back on at the next launch — was the whole bug.
|
||||
// - Never commands a relay already in the right position: on the first evaluation
|
||||
// after launch/save it reads the boards' LIVE state, so a relay that's already
|
||||
// correct is left untouched instead of being re-sent.
|
||||
func (a *App) applyRelayAuto(freqHz int64, band string) {
|
||||
a.relayAutoMu.Lock()
|
||||
defer a.relayAutoMu.Unlock()
|
||||
@@ -110,8 +125,11 @@ func (a *App) applyRelayAuto(freqHz int64, band string) {
|
||||
a.relayAutoLast = map[string]bool{}
|
||||
}
|
||||
khz := float64(freqHz) / 1000.0
|
||||
band = strings.TrimSpace(band)
|
||||
|
||||
changed := false
|
||||
// Compute desired states, skipping rules whose input is unknown right now.
|
||||
var acts []relayAction
|
||||
needLive := false
|
||||
for _, r := range cfg.Rules {
|
||||
if r.Relay < 1 {
|
||||
continue
|
||||
@@ -119,8 +137,11 @@ func (a *App) applyRelayAuto(freqHz int64, band string) {
|
||||
var want bool
|
||||
switch r.Mode {
|
||||
case "freq":
|
||||
if freqHz <= 0 {
|
||||
continue // no known frequency (CAT off/closing) → leave the relay as-is
|
||||
}
|
||||
if r.FreqLoKHz <= 0 && r.FreqHiKHz <= 0 {
|
||||
continue // unconfigured range → leave the relay alone
|
||||
continue // unconfigured range
|
||||
}
|
||||
lo, hi := r.FreqLoKHz, r.FreqHiKHz
|
||||
if hi < lo {
|
||||
@@ -128,6 +149,9 @@ func (a *App) applyRelayAuto(freqHz int64, band string) {
|
||||
}
|
||||
want = khz >= lo && khz <= hi
|
||||
case "band":
|
||||
if band == "" {
|
||||
continue // no known band → leave the relay as-is
|
||||
}
|
||||
if len(r.Bands) == 0 {
|
||||
continue
|
||||
}
|
||||
@@ -135,16 +159,43 @@ func (a *App) applyRelayAuto(freqHz int64, band string) {
|
||||
default:
|
||||
continue // "off"/empty → not managed
|
||||
}
|
||||
|
||||
key := relayAutoKey(r.DeviceID, r.Relay)
|
||||
if last, ok := a.relayAutoLast[key]; ok && last == want {
|
||||
continue // no change → don't hammer the board
|
||||
acts = append(acts, relayAction{r.DeviceID, r.Relay, want})
|
||||
if _, ok := a.relayAutoLast[relayAutoKey(r.DeviceID, r.Relay)]; !ok {
|
||||
needLive = true
|
||||
}
|
||||
if err := a.StationSetRelay(r.DeviceID, r.Relay, want); err != nil {
|
||||
applog.Printf("relay auto: set %s relay %d = %v failed: %v", r.DeviceID, r.Relay, want, err)
|
||||
}
|
||||
if len(acts) == 0 {
|
||||
return
|
||||
}
|
||||
|
||||
// First evaluation after launch/save: read the boards' LIVE relay states once
|
||||
// so we don't re-command a relay that's already in the wanted position.
|
||||
var live map[string]bool
|
||||
if needLive {
|
||||
live = map[string]bool{}
|
||||
for _, ds := range a.GetStationStatus() {
|
||||
for _, rl := range ds.Relays {
|
||||
live[relayAutoKey(ds.ID, rl.Number)] = rl.On
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
changed := false
|
||||
for _, ac := range acts {
|
||||
key := relayAutoKey(ac.dev, ac.relay)
|
||||
cur, known := a.relayAutoLast[key]
|
||||
if !known && live != nil {
|
||||
cur, known = live[key]
|
||||
}
|
||||
if known && cur == ac.want {
|
||||
a.relayAutoLast[key] = ac.want // already in position — record it, don't switch
|
||||
continue
|
||||
}
|
||||
if err := a.StationSetRelay(ac.dev, ac.relay, ac.want); err != nil {
|
||||
applog.Printf("relay auto: set %s relay %d = %v failed: %v", ac.dev, ac.relay, ac.want, err)
|
||||
continue // don't cache a failed write — retry next change
|
||||
}
|
||||
a.relayAutoLast[key] = want
|
||||
a.relayAutoLast[key] = ac.want
|
||||
changed = true
|
||||
}
|
||||
|
||||
|
||||
+1
-1
@@ -21,7 +21,7 @@ import (
|
||||
|
||||
const (
|
||||
// appVersion is stamped on every heartbeat (and could feed the About box).
|
||||
appVersion = "0.20.1"
|
||||
appVersion = "0.20.9"
|
||||
|
||||
// posthogHost is the PostHog ingestion endpoint. EU cloud by default; change
|
||||
// to https://us.i.posthog.com for a US project.
|
||||
|
||||
@@ -1,12 +1,21 @@
|
||||
package main
|
||||
|
||||
import (
|
||||
"archive/zip"
|
||||
"encoding/json"
|
||||
"fmt"
|
||||
"io"
|
||||
"net/http"
|
||||
"os"
|
||||
"os/exec"
|
||||
"path/filepath"
|
||||
"strconv"
|
||||
"strings"
|
||||
"syscall"
|
||||
"time"
|
||||
|
||||
wruntime "github.com/wailsapp/wails/v2/pkg/runtime"
|
||||
|
||||
"hamlog/internal/applog"
|
||||
)
|
||||
|
||||
@@ -14,12 +23,13 @@ import (
|
||||
// build (the exe lives there; source stays on Gitea). Adjust the repo if needed.
|
||||
const updateCheckURL = "https://api.github.com/repos/GregTroar/OpsLog/releases/latest"
|
||||
|
||||
// UpdateInfo is the result of the startup version check.
|
||||
// UpdateInfo is the result of the version check.
|
||||
type UpdateInfo struct {
|
||||
Current string `json:"current"` // this build's version (appVersion)
|
||||
Latest string `json:"latest"` // newest published release, "" if unknown
|
||||
Available bool `json:"available"` // Latest > Current
|
||||
URL string `json:"url"` // release page to open
|
||||
Current string `json:"current"` // this build's version (appVersion)
|
||||
Latest string `json:"latest"` // newest published release, "" if unknown
|
||||
Available bool `json:"available"` // Latest > Current
|
||||
URL string `json:"url"` // release page to open (manual fallback)
|
||||
DownloadURL string `json:"download_url"` // the .exe/.zip asset to auto-download, "" if none
|
||||
}
|
||||
|
||||
// CheckForUpdate asks GitHub for the latest release and compares it to this
|
||||
@@ -45,6 +55,10 @@ func (a *App) CheckForUpdate() UpdateInfo {
|
||||
var r struct {
|
||||
TagName string `json:"tag_name"`
|
||||
HTMLURL string `json:"html_url"`
|
||||
Assets []struct {
|
||||
Name string `json:"name"`
|
||||
URL string `json:"browser_download_url"`
|
||||
} `json:"assets"`
|
||||
}
|
||||
if err := json.NewDecoder(resp.Body).Decode(&r); err != nil {
|
||||
return out
|
||||
@@ -52,8 +66,25 @@ func (a *App) CheckForUpdate() UpdateInfo {
|
||||
out.Latest = strings.TrimPrefix(strings.TrimSpace(r.TagName), "v")
|
||||
out.URL = r.HTMLURL
|
||||
out.Available = versionLess(appVersion, out.Latest)
|
||||
// Pick the auto-download asset: a bare Windows .exe (portable build) first,
|
||||
// else a .zip we can unpack. The frontend hands this straight to
|
||||
// DownloadAndApplyUpdate for a one-click in-app update.
|
||||
for _, as := range r.Assets {
|
||||
if strings.HasSuffix(strings.ToLower(as.Name), ".exe") {
|
||||
out.DownloadURL = as.URL
|
||||
break
|
||||
}
|
||||
}
|
||||
if out.DownloadURL == "" {
|
||||
for _, as := range r.Assets {
|
||||
if strings.HasSuffix(strings.ToLower(as.Name), ".zip") {
|
||||
out.DownloadURL = as.URL
|
||||
break
|
||||
}
|
||||
}
|
||||
}
|
||||
if out.Available {
|
||||
applog.Printf("update: newer version available — current=%s latest=%s", appVersion, out.Latest)
|
||||
applog.Printf("update: newer version available — current=%s latest=%s asset=%q", appVersion, out.Latest, out.DownloadURL)
|
||||
}
|
||||
return out
|
||||
}
|
||||
@@ -82,6 +113,176 @@ func versionLess(a, b string) bool {
|
||||
return false
|
||||
}
|
||||
|
||||
// DownloadAndApplyUpdate downloads the new build, swaps it in for the running exe
|
||||
// and relaunches — the fully in-app update. Progress is emitted on "update:progress"
|
||||
// (0-100) so the UI can show a bar. On success it never returns normally: it starts
|
||||
// the new process and quits this one.
|
||||
func (a *App) DownloadAndApplyUpdate(url string) error {
|
||||
if strings.TrimSpace(url) == "" {
|
||||
return fmt.Errorf("no download URL")
|
||||
}
|
||||
exe, err := os.Executable()
|
||||
if err != nil {
|
||||
return fmt.Errorf("locate executable: %w", err)
|
||||
}
|
||||
dir := filepath.Dir(exe)
|
||||
|
||||
// Download to a temp file next to the exe (same volume, so the rename-swap is
|
||||
// atomic and can't fail across drives).
|
||||
tmp := filepath.Join(dir, ".opslog-update.download")
|
||||
_ = os.Remove(tmp)
|
||||
if err := a.downloadWithProgress(url, tmp); err != nil {
|
||||
_ = os.Remove(tmp)
|
||||
return fmt.Errorf("download: %w", err)
|
||||
}
|
||||
|
||||
// The asset is either the bare exe or a zip holding it. Resolve to the new exe.
|
||||
newExe := tmp
|
||||
if strings.HasSuffix(strings.ToLower(url), ".zip") {
|
||||
extracted, xerr := extractExeFromZip(tmp, dir)
|
||||
_ = os.Remove(tmp)
|
||||
if xerr != nil {
|
||||
return fmt.Errorf("unpack: %w", xerr)
|
||||
}
|
||||
newExe = extracted
|
||||
}
|
||||
|
||||
// Swap: rename the running exe out of the way (Windows allows renaming a
|
||||
// running image), move the new one into its place, then relaunch. Roll back if
|
||||
// the second rename fails so we never end up with no exe.
|
||||
oldExe := exe + ".old"
|
||||
_ = os.Remove(oldExe)
|
||||
if err := os.Rename(exe, oldExe); err != nil {
|
||||
_ = os.Remove(newExe)
|
||||
return fmt.Errorf("stage current exe: %w", err)
|
||||
}
|
||||
if err := os.Rename(newExe, exe); err != nil {
|
||||
_ = os.Rename(oldExe, exe) // roll back
|
||||
return fmt.Errorf("install new exe: %w", err)
|
||||
}
|
||||
// Clear the "downloaded from the internet" mark (NTFS Zone.Identifier stream).
|
||||
// Otherwise Windows SmartScreen wants to prompt "are you sure you want to open
|
||||
// this?" — but since we launch the exe programmatically that prompt never shows,
|
||||
// and the launch is silently blocked. This is exactly why the relaunch failed.
|
||||
_ = os.Remove(exe + ":Zone.Identifier")
|
||||
applog.Printf("update: installed new exe, scheduling relaunch")
|
||||
|
||||
// Relaunch via a detached, hidden PowerShell that WAITS for this process to exit
|
||||
// (so the single-instance mutex is free) and THEN starts the new exe. Launching
|
||||
// the new exe directly while we're still alive raced the mutex and often left
|
||||
// nothing running; waiting for our own exit first makes the restart reliable,
|
||||
// and the launcher outlives us.
|
||||
quoted := strings.ReplaceAll(exe, "'", "''")
|
||||
ps := fmt.Sprintf(
|
||||
"Wait-Process -Id %d -ErrorAction SilentlyContinue; Start-Sleep -Milliseconds 400; Start-Process -FilePath '%s' -ArgumentList '--post-update'",
|
||||
os.Getpid(), quoted)
|
||||
cmd := exec.Command("powershell", "-NoProfile", "-WindowStyle", "Hidden", "-Command", ps)
|
||||
cmd.SysProcAttr = &syscall.SysProcAttr{HideWindow: true, CreationFlags: 0x08000000} // CREATE_NO_WINDOW
|
||||
if err := cmd.Start(); err != nil {
|
||||
return fmt.Errorf("schedule relaunch: %w", err)
|
||||
}
|
||||
if a.ctx != nil {
|
||||
wruntime.Quit(a.ctx)
|
||||
} else {
|
||||
os.Exit(0)
|
||||
}
|
||||
return nil
|
||||
}
|
||||
|
||||
// downloadWithProgress streams url into dest, emitting "update:progress" (0-100).
|
||||
func (a *App) downloadWithProgress(url, dest string) error {
|
||||
client := &http.Client{Timeout: 10 * time.Minute}
|
||||
resp, err := client.Get(url)
|
||||
if err != nil {
|
||||
return err
|
||||
}
|
||||
defer resp.Body.Close()
|
||||
if resp.StatusCode != http.StatusOK {
|
||||
return fmt.Errorf("HTTP %d", resp.StatusCode)
|
||||
}
|
||||
f, err := os.Create(dest)
|
||||
if err != nil {
|
||||
return err
|
||||
}
|
||||
defer f.Close()
|
||||
|
||||
total := resp.ContentLength
|
||||
var read int64
|
||||
last := -1
|
||||
buf := make([]byte, 64*1024)
|
||||
emit := func(pct int) {
|
||||
if a.ctx != nil {
|
||||
wruntime.EventsEmit(a.ctx, "update:progress", pct)
|
||||
}
|
||||
}
|
||||
emit(0)
|
||||
for {
|
||||
n, rerr := resp.Body.Read(buf)
|
||||
if n > 0 {
|
||||
if _, werr := f.Write(buf[:n]); werr != nil {
|
||||
return werr
|
||||
}
|
||||
read += int64(n)
|
||||
if total > 0 {
|
||||
if pct := int(read * 100 / total); pct != last {
|
||||
last = pct
|
||||
emit(pct)
|
||||
}
|
||||
}
|
||||
}
|
||||
if rerr == io.EOF {
|
||||
break
|
||||
}
|
||||
if rerr != nil {
|
||||
return rerr
|
||||
}
|
||||
}
|
||||
emit(100)
|
||||
return nil
|
||||
}
|
||||
|
||||
// extractExeFromZip unpacks the first *.exe found in the zip into dir and returns
|
||||
// its path.
|
||||
func extractExeFromZip(zipPath, dir string) (string, error) {
|
||||
zr, err := zip.OpenReader(zipPath)
|
||||
if err != nil {
|
||||
return "", err
|
||||
}
|
||||
defer zr.Close()
|
||||
for _, zf := range zr.File {
|
||||
if !strings.HasSuffix(strings.ToLower(zf.Name), ".exe") {
|
||||
continue
|
||||
}
|
||||
rc, err := zf.Open()
|
||||
if err != nil {
|
||||
return "", err
|
||||
}
|
||||
out := filepath.Join(dir, ".opslog-update.exe")
|
||||
f, err := os.Create(out)
|
||||
if err != nil {
|
||||
rc.Close()
|
||||
return "", err
|
||||
}
|
||||
_, cerr := io.Copy(f, rc)
|
||||
rc.Close()
|
||||
f.Close()
|
||||
if cerr != nil {
|
||||
return "", cerr
|
||||
}
|
||||
return out, nil
|
||||
}
|
||||
return "", fmt.Errorf("no .exe inside the archive")
|
||||
}
|
||||
|
||||
// cleanupOldUpdateBinary removes the previous exe left behind by a self-update
|
||||
// (exe + ".old"). Called at startup after a --post-update relaunch. Best-effort:
|
||||
// the file may still be briefly locked, in which case the next launch gets it.
|
||||
func cleanupOldUpdateBinary() {
|
||||
if exe, err := os.Executable(); err == nil {
|
||||
_ = os.Remove(exe + ".old")
|
||||
}
|
||||
}
|
||||
|
||||
// leadingInt parses the leading digits of s (e.g. "2beta" → 2), 0 if none.
|
||||
func leadingInt(s string) int {
|
||||
s = strings.TrimSpace(s)
|
||||
|
||||
Reference in New Issue
Block a user