feat: CW through the Yaesu keyer — fifth CW engine

The radio has a keyer and a command to feed it (KY), so an FTDX10 needs no
WinKeyer and no second cable, exactly as the Icom CI-V and Flex CWX engines
already do. The rig keys with its own timing, which is why the spacing is right
where a PC keying a line through USB latency drifts.

Text is filtered to what the keyer can actually send: an unsupported byte does
not produce an error on a Yaesu, it can abort the whole buffer, so the rest of a
macro would vanish silently. It is then fed in 24-character pieces, waiting for
room between them — the rig DROPS what does not fit, again with no error, so a
contest CQ would lose its tail.

STOP is the honest gap. Yaesu documents no buffer-clear, so it drops the
transmitter (TX0) instead: nothing queued reaches the air, which is what Escape
means to an operator. It deliberately does NOT send "KY0;" — a plausible-looking
clear that the rig would read as the CHARACTER zero and transmit.

A test caught a real one on the way: tabs and newlines were dropped as
"unsupported", gluing the words either side together, so a macro written on two
lines went out as CQCQ. Whitespace now becomes a word gap before filtering.

Settings warn when the Yaesu keyer is selected without the Yaesu CAT backend —
otherwise it simply never keys, with nothing on screen saying why.

Send path follows the CAT reference and how Hamlib drives these rigs; NOT yet
verified on the air.
This commit is contained in:
2026-07-29 12:42:40 +02:00
parent 520d17810c
commit 08f3e54afb
11 changed files with 252 additions and 11 deletions
+21
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@@ -15005,3 +15005,24 @@ func (a *App) SetYaesuBreakIn(on bool) error {
func (a *App) YaesuZeroIn() error { func (a *App) YaesuZeroIn() error {
return a.yaesuDo(func(y cat.YaesuController) error { return y.YaesuZeroIn() }) return a.yaesuDo(func(y cat.YaesuController) error { return y.YaesuZeroIn() })
} }
// YaesuSendCW keys a CW message through the Yaesu's own keyer (CAT "KY"), so an
// FTDX10 needs no WinKeyer and no second cable.
func (a *App) YaesuSendCW(text string) error {
if a.cat == nil {
return fmt.Errorf("cat not initialized")
}
err := a.cat.YaesuDo(func(y cat.YaesuController) error { return y.SendCW(text) })
if err != nil {
applog.Printf("yaesu cw: YaesuSendCW(%q) failed: %v", text, err)
}
return err
}
// YaesuStopCW aborts the message being sent.
func (a *App) YaesuStopCW() error {
if a.cat == nil {
return fmt.Errorf("cat not initialized")
}
return a.cat.YaesuDo(func(y cat.YaesuController) error { return y.StopCW() })
}
+2
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@@ -4,6 +4,7 @@
"date": "2026-07-28", "date": "2026-07-28",
"en": [ "en": [
"Yaesu control panel: with the native Yaesu backend, a console tab and Main-view pane give S/PO/SWR meters, band and mode buttons, AF/RF/squelch, AGC, IPO-AMP1-AMP2, a 6/12/18 dB attenuator, NB, DNR, narrow filter, power, mic gain, VOX, split and ATU tune. CW, RTTY, DIGI and PSK show their sideband — click an active button again to switch it. Pressing SPLIT places the transmit VFO relative to where you are listening — up 1 kHz on CW and data, up 5 kHz on phone — and shows the transmit frequency; +1k and +5k buttons cover the rest.", "Yaesu control panel: with the native Yaesu backend, a console tab and Main-view pane give S/PO/SWR meters, band and mode buttons, AF/RF/squelch, AGC, IPO-AMP1-AMP2, a 6/12/18 dB attenuator, NB, DNR, narrow filter, power, mic gain, VOX, split and ATU tune. CW, RTTY, DIGI and PSK show their sideband — click an active button again to switch it. Pressing SPLIT places the transmit VFO relative to where you are listening — up 1 kHz on CW and data, up 5 kHz on phone — and shows the transmit frequency; +1k and +5k buttons cover the rest.",
"CW through the Yaesu keyer: a fifth CW engine sends your macros with the radio own keyer (CAT \"KY\") — no WinKeyer, no second cable. Pick \"Yaesu (rig keyer)\" in Settings → CW keyer, with the Yaesu CAT backend active.",
"The Yaesu console follows the mode: in CW the microphone gain and VOX disappear and a CW card takes their place with keyer speed, break-in and ZIN (zero-in).", "The Yaesu console follows the mode: in CW the microphone gain and VOX disappear and a CW card takes their place with keyer speed, break-in and ZIN (zero-in).",
"Native Xiegu CAT (G90, X6100, X6200, X5105): a new backend talks CI-V straight to the radio — frequency, mode, split and PTT. Pick \"Xiegu (native CI-V)\" in Settings → CAT. Untested on a radio so far, feedback welcome.", "Native Xiegu CAT (G90, X6100, X6200, X5105): a new backend talks CI-V straight to the radio — frequency, mode, split and PTT. Pick \"Xiegu (native CI-V)\" in Settings → CAT. Untested on a radio so far, feedback welcome.",
"CAT sharing: OpsLog can now serve its rig connection to other programs (Settings → CAT → Share CAT). WSJT-X, JTDX, MSHV or Log4OM connect with rig model \"Hamlib NET rigctl\" at 127.0.0.1:4532 — needed because a native CAT backend holds the radio serial port on its own. Works with every backend, and with both Hamlib command dialects (JTDX names the VFO, MSHV does not).", "CAT sharing: OpsLog can now serve its rig connection to other programs (Settings → CAT → Share CAT). WSJT-X, JTDX, MSHV or Log4OM connect with rig model \"Hamlib NET rigctl\" at 127.0.0.1:4532 — needed because a native CAT backend holds the radio serial port on its own. Works with every backend, and with both Hamlib command dialects (JTDX names the VFO, MSHV does not).",
@@ -18,6 +19,7 @@
], ],
"fr": [ "fr": [
"Panneau de contrôle Yaesu : avec le backend Yaesu natif, un onglet console et un volet de la vue principale offrent les mesures S/PO/ROS, les boutons de bande et de mode, AF/RF/squelch, AGC, IPO-AMP1-AMP2, un atténuateur 6/12/18 dB, NB, DNR, filtre étroit, puissance, gain micro, VOX, split et accord d'antenne. CW, RTTY, DIGI et PSK affichent leur bande latérale — recliquez sur le bouton actif pour en changer. Appuyer sur SPLIT place le VFO d'émission par rapport à votre écoute — +1 kHz en CW et numérique, +5 kHz en phonie — et affiche la fréquence d'émission ; les boutons +1k et +5k couvrent le reste.", "Panneau de contrôle Yaesu : avec le backend Yaesu natif, un onglet console et un volet de la vue principale offrent les mesures S/PO/ROS, les boutons de bande et de mode, AF/RF/squelch, AGC, IPO-AMP1-AMP2, un atténuateur 6/12/18 dB, NB, DNR, filtre étroit, puissance, gain micro, VOX, split et accord d'antenne. CW, RTTY, DIGI et PSK affichent leur bande latérale — recliquez sur le bouton actif pour en changer. Appuyer sur SPLIT place le VFO d'émission par rapport à votre écoute — +1 kHz en CW et numérique, +5 kHz en phonie — et affiche la fréquence d'émission ; les boutons +1k et +5k couvrent le reste.",
"CW par le keyer Yaesu : un cinquième moteur CW envoie vos macros avec le keyer de la radio (CAT « KY ») — sans WinKeyer ni second câble. À choisir dans Réglages → Keyer CW sous « Yaesu (keyer de la radio) », avec le backend CAT Yaesu actif.",
"La console Yaesu suit le mode : en CW, le gain micro et le VOX disparaissent au profit d'une carte CW avec la vitesse du manipulateur, le break-in et ZIN (zéro-in).", "La console Yaesu suit le mode : en CW, le gain micro et le VOX disparaissent au profit d'une carte CW avec la vitesse du manipulateur, le break-in et ZIN (zéro-in).",
"CAT Xiegu natif (G90, X6100, X6200, X5105) : un nouveau backend dialogue en CI-V directement avec la radio — fréquence, mode, split et PTT. À choisir dans Réglages → CAT sous « Xiegu (CI-V natif) ». Pas encore testé sur une radio, retours bienvenus.", "CAT Xiegu natif (G90, X6100, X6200, X5105) : un nouveau backend dialogue en CI-V directement avec la radio — fréquence, mode, split et PTT. À choisir dans Réglages → CAT sous « Xiegu (CI-V natif) ». Pas encore testé sur une radio, retours bienvenus.",
"Partage du CAT : OpsLog peut désormais servir sa liaison radio aux autres logiciels (Réglages → CAT → Partager le CAT). WSJT-X, JTDX, MSHV ou Log4OM s'y connectent avec le modèle « Hamlib NET rigctl » sur 127.0.0.1:4532 — nécessaire car un backend CAT natif occupe seul le port série. Fonctionne avec tous les backends, et avec les deux dialectes Hamlib (JTDX nomme le VFO, MSHV non).", "Partage du CAT : OpsLog peut désormais servir sa liaison radio aux autres logiciels (Réglages → CAT → Partager le CAT). WSJT-X, JTDX, MSHV ou Log4OM s'y connectent avec le modèle « Hamlib NET rigctl » sur 127.0.0.1:4532 — nécessaire car un backend CAT natif occupe seul le port série. Fonctionne avec tous les backends, et avec les deux dialectes Hamlib (JTDX nomme le VFO, MSHV non).",
+6 -3
View File
@@ -38,7 +38,7 @@ import {
ListCountries, ListCountries,
GetWinkeyerSettings, SaveWinkeyerSettings, ListSerialPorts, GetWinkeyerStatus, GetWinkeyerSettings, SaveWinkeyerSettings, ListSerialPorts, GetWinkeyerStatus,
WinkeyerConnect, WinkeyerDisconnect, WinkeyerSend, WinkeyerStop, WinkeyerSetSpeed, WinkeyerBackspace, WinkeyerConnect, WinkeyerDisconnect, WinkeyerSend, WinkeyerStop, WinkeyerSetSpeed, WinkeyerBackspace,
IcomSendCW, IcomStopCW, IcomSetKeySpeed, IcomSetBreakIn, GetIcomState, IcomSendCW, YaesuSendCW, YaesuStopCW, IcomStopCW, IcomSetKeySpeed, IcomSetBreakIn, GetIcomState,
FlexSendCW, FlexStopCW, FlexSetKeySpeed, FlexBackspaceCW, FlexSendCW, FlexStopCW, FlexSetKeySpeed, FlexBackspaceCW,
GetDVKMessages, GetDVKStatus, DVKPlay, DVKStop, GetDVKMessages, GetDVKStatus, DVKPlay, DVKStop,
StartCWDecoder, StopCWDecoder, SetCWDecoderPitch, StartCWDecoder, StopCWDecoder, SetCWDecoderPitch,
@@ -965,7 +965,7 @@ export default function App() {
// CI-V 0x17 (no extra hardware — sends over the CAT connection). Macros, // CI-V 0x17 (no extra hardware — sends over the CAT connection). Macros,
// auto-call and <LOGQSO> are shared; only the transport differs. // auto-call and <LOGQSO> are shared; only the transport differs.
const [wkEngine, setWkEngine] = useState<string>('winkeyer'); const [wkEngine, setWkEngine] = useState<string>('winkeyer');
const cwSource: 'winkeyer' | 'icom' | 'flex' = wkEngine === 'icom' ? 'icom' : wkEngine === 'flex' ? 'flex' : 'winkeyer'; const cwSource: 'winkeyer' | 'icom' | 'flex' | 'yaesu' = wkEngine === 'icom' ? 'icom' : wkEngine === 'flex' ? 'flex' : wkEngine === 'yaesu' ? 'yaesu' : 'winkeyer';
const cwSourceRef = useRef(cwSource); const cwSourceRef = useRef(cwSource);
useEffect(() => { cwSourceRef.current = cwSource; }, [cwSource]); useEffect(() => { cwSourceRef.current = cwSource; }, [cwSource]);
// CW break-in (0=OFF, 1=SEMI, 2=FULL) — must be on for the rig's 0x17 keyer to // CW break-in (0=OFF, 1=SEMI, 2=FULL) — must be on for the rig's 0x17 keyer to
@@ -1001,6 +1001,7 @@ export default function App() {
useEffect(() => { useEffect(() => {
const connected = cwSource === 'icom' ? (catState.backend === 'icom' && catState.connected) const connected = cwSource === 'icom' ? (catState.backend === 'icom' && catState.connected)
: cwSource === 'flex' ? (catState.backend === 'flex' && catState.connected) : cwSource === 'flex' ? (catState.backend === 'flex' && catState.connected)
: cwSource === 'yaesu' ? (catState.backend === 'yaesu' && catState.connected)
: wkStatus.connected; : wkStatus.connected;
wkActiveRef.current = wkEnabled && connected; wkActiveRef.current = wkEnabled && connected;
}, [wkEnabled, wkStatus.connected, cwSource, catState.backend, catState.connected]); }, [wkEnabled, wkStatus.connected, cwSource, catState.backend, catState.connected]);
@@ -2558,7 +2559,7 @@ export default function App() {
// current WPM, so it scales automatically. // current WPM, so it scales automatically.
const keyed = resolved + ' '; const keyed = resolved + ' ';
setWkSent(resolved); setWkSent(resolved);
const sendFn = cwSourceRef.current === 'flex' ? FlexSendCW : cwSourceRef.current === 'icom' ? IcomSendCW : null; const sendFn = cwSourceRef.current === 'flex' ? FlexSendCW : cwSourceRef.current === 'icom' ? IcomSendCW : cwSourceRef.current === 'yaesu' ? YaesuSendCW : null;
if (sendFn) await sendFn(keyed).catch((e) => setError(String(e?.message ?? e))); if (sendFn) await sendFn(keyed).catch((e) => setError(String(e?.message ?? e)));
else await WinkeyerSend(keyed).catch((e) => setError(String(e?.message ?? e))); else await WinkeyerSend(keyed).catch((e) => setError(String(e?.message ?? e)));
// Only WAIT for the CW to finish on the FINAL segment — auto-call needs the // Only WAIT for the CW to finish on the FINAL segment — auto-call needs the
@@ -2591,6 +2592,7 @@ export default function App() {
wkSendGenRef.current++; // cancel any in-flight macro send (and its pending <LOGQSO> log) wkSendGenRef.current++; // cancel any in-flight macro send (and its pending <LOGQSO> log)
if (cwSourceRef.current === 'icom') IcomStopCW().catch(() => {}); if (cwSourceRef.current === 'icom') IcomStopCW().catch(() => {});
else if (cwSourceRef.current === 'flex') FlexStopCW().catch(() => {}); else if (cwSourceRef.current === 'flex') FlexStopCW().catch(() => {});
else if (cwSourceRef.current === 'yaesu') YaesuStopCW().catch(() => {});
else WinkeyerStop().catch(() => {}); else WinkeyerStop().catch(() => {});
} }
// runAutoCall sends macro i, waits for the keyer to finish, waits the chosen // runAutoCall sends macro i, waits for the keyer to finish, waits the chosen
@@ -3495,6 +3497,7 @@ export default function App() {
stopAutoCall(); stopAutoCall();
wkSendGenRef.current++; // abort an in-flight macro send so a pending <LOGQSO> won't fire wkSendGenRef.current++; // abort an in-flight macro send so a pending <LOGQSO> won't fire
if (cwSourceRef.current === 'icom') IcomStopCW().catch(() => {}); if (cwSourceRef.current === 'icom') IcomStopCW().catch(() => {});
else if (cwSourceRef.current === 'yaesu') YaesuStopCW().catch(() => {});
else if (cwSourceRef.current === 'flex') FlexStopCW().catch(() => {}); else if (cwSourceRef.current === 'flex') FlexStopCW().catch(() => {});
else WinkeyerStop().catch(() => {}); else WinkeyerStop().catch(() => {});
} }
@@ -3309,6 +3309,7 @@ export function SettingsModal({ onClose, onSaved, initialSection, onMainPaneChan
<SelectItem value="winkeyer">{t('wk.engWinkeyer')}</SelectItem> <SelectItem value="winkeyer">{t('wk.engWinkeyer')}</SelectItem>
<SelectItem value="serial">{t('wk.engSerial')}</SelectItem> <SelectItem value="serial">{t('wk.engSerial')}</SelectItem>
<SelectItem value="icom">{t('wk.engIcom')}</SelectItem> <SelectItem value="icom">{t('wk.engIcom')}</SelectItem>
<SelectItem value="yaesu">{t('wk.engYaesu')}</SelectItem>
<SelectItem value="flex">{t('wk.engFlex')}</SelectItem> <SelectItem value="flex">{t('wk.engFlex')}</SelectItem>
<SelectItem value="tci" disabled>{t('wk.engTci')}</SelectItem> <SelectItem value="tci" disabled>{t('wk.engTci')}</SelectItem>
</SelectContent> </SelectContent>
@@ -3324,6 +3325,12 @@ export function SettingsModal({ onClose, onSaved, initialSection, onMainPaneChan
</label> </label>
</div> </div>
{wk.engine === 'yaesu' && (!catCfg.enabled || catCfg.backend !== 'yaesu') && (
<p className="text-xs font-medium text-warning -mt-1 flex items-start gap-1.5">
<span aria-hidden></span>
<span>{t('wk.catWarnYaesu', { backend: catCfg.enabled ? (catCfg.backend || 'none') : 'disabled' })}</span>
</p>
)}
{wk.engine === 'icom' ? ( {wk.engine === 'icom' ? (
<> <>
{(!catCfg.enabled || catCfg.backend !== 'icom') && ( {(!catCfg.enabled || catCfg.backend !== 'icom') && (
+5 -3
View File
@@ -26,7 +26,7 @@ interface Props {
wpm: number; wpm: number;
macros: WKMacro[]; macros: WKMacro[];
sent: string; // text echoed back by the keyer as it transmits sent: string; // text echoed back by the keyer as it transmits
source: 'winkeyer' | 'icom' | 'flex'; // CW output engine (chosen in Settings → CW Keyer) source: 'winkeyer' | 'icom' | 'flex' | 'yaesu'; // CW output engine (chosen in Settings → CW Keyer)
breakIn?: number; // Icom CW break-in: 0=OFF, 1=SEMI, 2=FULL breakIn?: number; // Icom CW break-in: 0=OFF, 1=SEMI, 2=FULL
onSetBreakIn?: (mode: number) => void; onSetBreakIn?: (mode: number) => void;
onSelectPort: (p: string) => void; onSelectPort: (p: string) => void;
@@ -101,15 +101,17 @@ export function WinkeyerPanel({
<Radio className="size-4 text-primary shrink-0" /> <Radio className="size-4 text-primary shrink-0" />
{/* CW output engine (chosen in Settings → CW Keyer). */} {/* CW output engine (chosen in Settings → CW Keyer). */}
<span className="text-xs font-semibold uppercase tracking-wider text-muted-foreground shrink-0"> <span className="text-xs font-semibold uppercase tracking-wider text-muted-foreground shrink-0">
{source === 'icom' ? 'Icom CW' : source === 'flex' ? 'Flex CWX' : 'WinKeyer'} {source === 'icom' ? 'Icom CW' : source === 'flex' ? 'Flex CWX' : source === 'yaesu' ? 'Yaesu CW' : 'WinKeyer'}
</span> </span>
<span className={cn('size-2 rounded-full', connected ? (status.busy ? 'bg-warning animate-pulse' : 'bg-success') : 'bg-muted-foreground/40')} <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')} /> title={connected ? (status.busy ? t('wkp.sending') : t('wkp.connectedV', { version: status.version })) : t('wkp.disconnected')} />
<div className="flex-1" /> <div className="flex-1" />
{source === 'icom' || source === 'flex' ? ( {source === 'icom' || source === 'flex' || source === 'yaesu' ? (
<span className="text-[11px] font-medium text-muted-foreground"> <span className="text-[11px] font-medium text-muted-foreground">
{source === 'flex' {source === 'flex'
? (connected ? t('wkp.cwxReady') : t('wkp.cwxOffline')) ? (connected ? t('wkp.cwxReady') : t('wkp.cwxOffline'))
: source === 'yaesu'
? (connected ? t('wkp.rigReady') : t('wkp.rigOffline'))
: (connected ? t('wkp.civReady') : t('wkp.civOffline'))} : (connected ? t('wkp.civReady') : t('wkp.civOffline'))}
</span> </span>
) : !connected ? ( ) : !connected ? (
+4 -4
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@@ -163,7 +163,7 @@ const en: Dict = {
'wk.escClears': 'ESC clears the callsign too (otherwise ESC only stops transmission)', 'wk.escClears': 'ESC clears the callsign too (otherwise ESC only stops transmission)',
'wk.esm': 'ESM — Enter Sends Message (CW)', 'wk.esm': 'ESM — Enter Sends Message (CW)',
'wk.esmHint': 'In CW with the keyer on, Enter fires a macro by QSO stage instead of logging: empty callsign → F1 (CQ); callsign entered → F2 (report) and focus jumps to RST; Enter in RST → F3 (TU), which logs if the macro contains <LOGQSO>.', 'wk.esmHint': 'In CW with the keyer on, Enter fires a macro by QSO stage instead of logging: empty callsign → F1 (CQ); callsign entered → F2 (report) and focus jumps to RST; Enter in RST → F3 (TU), which logs if the macro contains <LOGQSO>.',
'wk.engWinkeyer': 'WinKeyer (K1EL, serial)', 'wk.engSerial': 'Serial port (DTR=CW / RTS=PTT)', 'wk.engIcom': 'Icom CI-V (rig keyer)', 'wk.engFlex': 'FlexRadio (CWX)', 'wk.engTci': 'TCI (coming soon)', 'wk.engWinkeyer': 'WinKeyer (K1EL, serial)', 'wk.engSerial': 'Serial port (DTR=CW / RTS=PTT)', 'wk.engIcom': 'Icom CI-V (rig keyer)', 'wk.engYaesu': 'Yaesu (rig keyer)', 'wk.catWarnYaesu': 'The Yaesu keyer needs the Yaesu CAT backend — CAT is currently {backend}.', 'wk.engFlex': 'FlexRadio (CWX)', 'wk.engTci': 'TCI (coming soon)',
'wk.icomNote': "Icom CI-V keys CW through the rig's own keyer over the existing CAT connection (command 0x17) — it reuses the CAT COM port set in Settings → CAT, so there's nothing else to wire up here. Put the rig in CW mode. Weight, ratio, sidetone, paddle mode… are configured on the radio; only the speed is set from here (the rig's KEY SPEED).", 'wk.icomNote': "Icom CI-V keys CW through the rig's own keyer over the existing CAT connection (command 0x17) — it reuses the CAT COM port set in Settings → CAT, so there's nothing else to wire up here. Put the rig in CW mode. Weight, ratio, sidetone, paddle mode… are configured on the radio; only the speed is set from here (the rig's KEY SPEED).",
'wk.flexNote': "FlexRadio keys CW through the radio's CWX 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).", 'wk.flexNote': "FlexRadio keys CW through the radio's CWX 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).",
'wk.catWarnIcom': 'Your CAT backend is set to {backend}. Icom CI-V CW needs the CAT backend set to Icom and connected — change it under Settings → CAT interface, otherwise sending CW will fail.', 'wk.catWarnIcom': 'Your CAT backend is set to {backend}. Icom CI-V CW needs the CAT backend set to Icom and connected — change it under Settings → CAT interface, otherwise sending CW will fail.',
@@ -346,7 +346,7 @@ const en: Dict = {
'adx.introPart1': 'Every ADIF 3.1.7 field not shown in the other tabs. Pick a field to add it, or type a custom/vendor tag (e.g. ', 'adx.introPart2': '). Stored losslessly and exported in the ', 'adx.fullMode': 'full', 'adx.introPart3': ' ADIF mode.', 'adx.addFieldPh': 'Add ADIF field…', 'adx.showDeprecated': 'Show deprecated', 'adx.noExtra': 'No extra ADIF fields. Use the picker above to add one.', 'adx.deprecated': 'deprecated', 'adx.intl': 'intl', 'adx.nonStandard': 'non-standard', 'adx.removeField': 'Remove field', 'adx.introPart1': 'Every ADIF 3.1.7 field not shown in the other tabs. Pick a field to add it, or type a custom/vendor tag (e.g. ', 'adx.introPart2': '). Stored losslessly and exported in the ', 'adx.fullMode': 'full', 'adx.introPart3': ' ADIF mode.', 'adx.addFieldPh': 'Add ADIF field…', 'adx.showDeprecated': 'Show deprecated', 'adx.noExtra': 'No extra ADIF fields. Use the picker above to add one.', 'adx.deprecated': 'deprecated', 'adx.intl': 'intl', 'adx.nonStandard': 'non-standard', 'adx.removeField': 'Remove field',
// Hardware panels (winkeyer / dvk / antgenius / flex / icom) // Hardware panels (winkeyer / dvk / antgenius / flex / icom)
'wkp.sending': 'Sending…', 'wkp.connectedV': 'Connected (v{version})', 'wkp.disconnected': 'Disconnected', 'wkp.comPort': 'COM port', 'wkp.noPorts': 'No ports', 'wkp.refreshPorts': 'Refresh ports', 'wkp.connect': 'Connect', 'wkp.disconnect': 'Disconnect', 'wkp.hide': 'Hide / disable WinKeyer', 'wkp.sending': 'Sending…', 'wkp.connectedV': 'Connected (v{version})', 'wkp.disconnected': 'Disconnected', 'wkp.comPort': 'COM port', 'wkp.noPorts': 'No ports', 'wkp.refreshPorts': 'Refresh ports', 'wkp.connect': 'Connect', 'wkp.disconnect': 'Disconnect', 'wkp.hide': 'Hide / disable WinKeyer',
'wkp.sourceHint': 'CW output: WK = WinKeyer hardware · CI-V = the Icom rigs own keyer (over CAT, no extra hardware)', 'wkp.civReady': 'Icom CI-V ready', 'wkp.civOffline': 'Icom not connected (Settings → CAT)', 'wkp.cwxReady': 'Flex CWX ready', 'wkp.cwxOffline': 'Flex not connected (Settings → CAT)', 'wkp.sourceHint': 'CW output: WK = WinKeyer hardware · CI-V = the Icom rigs own keyer (over CAT, no extra hardware)', 'wkp.rigReady': 'Rig keyer ready', 'wkp.rigOffline': 'Rig CAT offline', 'wkp.civReady': 'Icom CI-V ready', 'wkp.civOffline': 'Icom not connected (Settings → CAT)', 'wkp.cwxReady': 'Flex CWX ready', 'wkp.cwxOffline': 'Flex not connected (Settings → CAT)',
'wkp.cwSpeed': 'CW speed (WPM)', 'wkp.faster': 'Faster', 'wkp.slower': 'Slower', 'wkp.cwText': 'CW text', 'wkp.sendOnTypeHint': 'Key each character live as you type (backspace removes un-sent chars)', 'wkp.sendOnType': 'send on type', 'wkp.phLive': 'Type — sent live…', 'wkp.phEnter': 'Type and press Enter to send…', 'wkp.clear': 'Clear', 'wkp.send': 'Send', 'wkp.abort': 'Abort (clear keyer buffer)', 'wkp.stop': 'Stop', 'wkp.cwSpeed': 'CW speed (WPM)', 'wkp.faster': 'Faster', 'wkp.slower': 'Slower', 'wkp.cwText': 'CW text', 'wkp.sendOnTypeHint': 'Key each character live as you type (backspace removes un-sent chars)', 'wkp.sendOnType': 'send on type', 'wkp.phLive': 'Type — sent live…', 'wkp.phEnter': 'Type and press Enter to send…', 'wkp.clear': 'Clear', 'wkp.send': 'Send', 'wkp.abort': 'Abort (clear keyer buffer)', 'wkp.stop': 'Stop',
'wkp.breakIn': 'Break-in', 'wkp.breakInHint': "The rig's CW keyer only transmits when break-in is SEMI or FULL. OFF keys the sidetone but stays in receive.", 'wkp.bkOff': 'OFF', 'wkp.bkOffWarn': "won't transmit — set SEMI or FULL", 'wkp.breakIn': 'Break-in', 'wkp.breakInHint': "The rig's CW keyer only transmits when break-in is SEMI or FULL. OFF keys the sidetone but stays in receive.", 'wkp.bkOff': 'OFF', 'wkp.bkOffWarn': "won't transmit — set SEMI or FULL",
'wkp.autoCallHint': 'Click a CQ macro (one whose text contains CQ) to resend it on a loop — message, gap, repeat — until you send another macro (e.g. a report), press Stop, or hit ESC. Non-CQ macros send once.', 'wkp.autoCall': 'Auto-call', 'wkp.gap': 'gap', 'wkp.gapHint': 'Seconds to wait after the message before resending', 'wkp.loopHint': 'click a CQ macro to loop it', 'wkp.macroN': 'Macro {n}', 'wkp.autoCallHint': 'Click a CQ macro (one whose text contains CQ) to resend it on a loop — message, gap, repeat — until you send another macro (e.g. a report), press Stop, or hit ESC. Non-CQ macros send once.', 'wkp.autoCall': 'Auto-call', 'wkp.gap': 'gap', 'wkp.gapHint': 'Seconds to wait after the message before resending', 'wkp.loopHint': 'click a CQ macro to loop it', 'wkp.macroN': 'Macro {n}',
@@ -574,7 +574,7 @@ const fr: Dict = {
'wk.escClears': "ÉCHAP efface aussi l'indicatif (sinon ÉCHAP arrête seulement la transmission)", 'wk.escClears': "ÉCHAP efface aussi l'indicatif (sinon ÉCHAP arrête seulement la transmission)",
'wk.esm': 'ESM — Entrée envoie le message (CW)', 'wk.esm': 'ESM — Entrée envoie le message (CW)',
'wk.esmHint': "En CW avec le keyer actif, Entrée envoie un macro selon l'étape du QSO au lieu de loguer : indicatif vide → F1 (CQ) ; indicatif saisi → F2 (report) et le focus passe au RST ; Entrée dans le RST → F3 (TU), qui logue si le macro contient <LOGQSO>.", 'wk.esmHint': "En CW avec le keyer actif, Entrée envoie un macro selon l'étape du QSO au lieu de loguer : indicatif vide → F1 (CQ) ; indicatif saisi → F2 (report) et le focus passe au RST ; Entrée dans le RST → F3 (TU), qui logue si le macro contient <LOGQSO>.",
'wk.engWinkeyer': 'WinKeyer (K1EL, série)', 'wk.engSerial': 'Port série (DTR=CW / RTS=PTT)', 'wk.engIcom': 'Icom CI-V (keyer de la radio)', 'wk.engFlex': 'FlexRadio (CWX)', 'wk.engTci': 'TCI (bientôt)', 'wk.engWinkeyer': 'WinKeyer (K1EL, série)', 'wk.engSerial': 'Port série (DTR=CW / RTS=PTT)', 'wk.engIcom': 'Icom CI-V (keyer de la radio)', 'wk.engYaesu': 'Yaesu (keyer de la radio)', 'wk.catWarnYaesu': 'Le keyer Yaesu nécessite le backend CAT Yaesu — le CAT est actuellement : {backend}.', 'wk.engFlex': 'FlexRadio (CWX)', 'wk.engTci': 'TCI (bientôt)',
'wk.icomNote': "L'Icom CI-V manipule la CW via le keyer interne de la radio sur la connexion CAT existante (commande 0x17) — il réutilise le port COM CAT défini dans Réglages → CAT, rien d'autre à câbler ici. Mets la radio en mode CW. Poids, ratio, sidetone, mode paddle… se règlent sur la radio ; seule la vitesse est définie ici (KEY SPEED de la radio).", 'wk.icomNote': "L'Icom CI-V manipule la CW via le keyer interne de la radio sur la connexion CAT existante (commande 0x17) — il réutilise le port COM CAT défini dans Réglages → CAT, rien d'autre à câbler ici. Mets la radio en mode CW. Poids, ratio, sidetone, mode paddle… se règlent sur la radio ; seule la vitesse est définie ici (KEY SPEED de la radio).",
'wk.flexNote': "FlexRadio manipule la CW via le keyer CWX de la radio sur la connexion SmartSDR CAT existante — pas besoin de WinKeyer ni de SmartCAT. Il réutilise la connexion définie dans Réglages → CAT, rien d'autre à câbler ici. Mets une slice en mode CW. Seule la vitesse est définie ici ; poids, sidetone et break-in se règlent sur la radio (le break-in doit être activé pour que la CW parte vraiment).", 'wk.flexNote': "FlexRadio manipule la CW via le keyer CWX de la radio sur la connexion SmartSDR CAT existante — pas besoin de WinKeyer ni de SmartCAT. Il réutilise la connexion définie dans Réglages → CAT, rien d'autre à câbler ici. Mets une slice en mode CW. Seule la vitesse est définie ici ; poids, sidetone et break-in se règlent sur la radio (le break-in doit être activé pour que la CW parte vraiment).",
'wk.catWarnIcom': "Ton backend CAT est réglé sur {backend}. La CW Icom CI-V nécessite le backend CAT réglé sur Icom et connecté — change-le dans Réglages → Interface CAT, sinon l'envoi CW échouera.", 'wk.catWarnIcom': "Ton backend CAT est réglé sur {backend}. La CW Icom CI-V nécessite le backend CAT réglé sur Icom et connecté — change-le dans Réglages → Interface CAT, sinon l'envoi CW échouera.",
@@ -741,7 +741,7 @@ const fr: Dict = {
'ctp.stopContest': 'Arrêter le contest', 'ctp.startContest': 'Démarrer le contest', 'ctp.activeHint': 'Le formulaire de saisie affiche Env/Reç et un badge DUPE ; les QSO sont marqués avec ce contest.', 'ctp.inactiveHint': 'Choisis un contest, règle la fenêtre, puis Démarrer.', 'ctp.scoreboard': 'Tableau des scores', 'ctp.estimate': 'estimation', 'ctp.qsos': 'QSO', 'ctp.mult': 'Mult', 'ctp.scoreEst': 'Score (est.)', 'ctp.last60': 'Dernières 60 min', 'ctp.band': 'Bande', 'ctp.stopContest': 'Arrêter le contest', 'ctp.startContest': 'Démarrer le contest', 'ctp.activeHint': 'Le formulaire de saisie affiche Env/Reç et un badge DUPE ; les QSO sont marqués avec ce contest.', 'ctp.inactiveHint': 'Choisis un contest, règle la fenêtre, puis Démarrer.', 'ctp.scoreboard': 'Tableau des scores', 'ctp.estimate': 'estimation', 'ctp.qsos': 'QSO', 'ctp.mult': 'Mult', 'ctp.scoreEst': 'Score (est.)', 'ctp.last60': 'Dernières 60 min', 'ctp.band': 'Bande',
'adx.introPart1': 'Tous les champs ADIF 3.1.7 non affichés dans les autres onglets. Choisis un champ à ajouter, ou saisis un tag personnalisé/constructeur (ex. ', 'adx.introPart2': '). Stocké sans perte et exporté en mode ADIF ', 'adx.fullMode': 'complet', 'adx.introPart3': '.', 'adx.addFieldPh': 'Ajouter un champ ADIF…', 'adx.showDeprecated': 'Afficher les obsolètes', 'adx.noExtra': 'Aucun champ ADIF supplémentaire. Utilise le sélecteur ci-dessus pour en ajouter un.', 'adx.deprecated': 'obsolète', 'adx.intl': 'intl', 'adx.nonStandard': 'non standard', 'adx.removeField': 'Supprimer le champ', 'adx.introPart1': 'Tous les champs ADIF 3.1.7 non affichés dans les autres onglets. Choisis un champ à ajouter, ou saisis un tag personnalisé/constructeur (ex. ', 'adx.introPart2': '). Stocké sans perte et exporté en mode ADIF ', 'adx.fullMode': 'complet', 'adx.introPart3': '.', 'adx.addFieldPh': 'Ajouter un champ ADIF…', 'adx.showDeprecated': 'Afficher les obsolètes', 'adx.noExtra': 'Aucun champ ADIF supplémentaire. Utilise le sélecteur ci-dessus pour en ajouter un.', 'adx.deprecated': 'obsolète', 'adx.intl': 'intl', 'adx.nonStandard': 'non standard', 'adx.removeField': 'Supprimer le champ',
'wkp.sending': 'Émission…', 'wkp.connectedV': 'Connecté (v{version})', 'wkp.disconnected': 'Déconnecté', 'wkp.comPort': 'Port COM', 'wkp.noPorts': 'Aucun port', 'wkp.refreshPorts': 'Rafraîchir les ports', 'wkp.connect': 'Connecter', 'wkp.disconnect': 'Déconnecter', 'wkp.hide': 'Masquer / désactiver le WinKeyer', 'wkp.sending': 'Émission…', 'wkp.connectedV': 'Connecté (v{version})', 'wkp.disconnected': 'Déconnecté', 'wkp.comPort': 'Port COM', 'wkp.noPorts': 'Aucun port', 'wkp.refreshPorts': 'Rafraîchir les ports', 'wkp.connect': 'Connecter', 'wkp.disconnect': 'Déconnecter', 'wkp.hide': 'Masquer / désactiver le WinKeyer',
'wkp.sourceHint': 'Sortie CW : WK = WinKeyer matériel · CI-V = le keyer interne de lIcom (via CAT, sans matériel en plus)', 'wkp.civReady': 'Icom CI-V prêt', 'wkp.civOffline': 'Icom non connecté (Réglages → CAT)', 'wkp.cwxReady': 'Flex CWX prêt', 'wkp.cwxOffline': 'Flex non connecté (Réglages → CAT)', 'wkp.sourceHint': 'Sortie CW : WK = WinKeyer matériel · CI-V = le keyer interne de lIcom (via CAT, sans matériel en plus)', 'wkp.rigReady': 'Keyer radio prêt', 'wkp.rigOffline': 'CAT radio hors ligne', 'wkp.civReady': 'Icom CI-V prêt', 'wkp.civOffline': 'Icom non connecté (Réglages → CAT)', 'wkp.cwxReady': 'Flex CWX prêt', 'wkp.cwxOffline': 'Flex non connecté (Réglages → CAT)',
'wkp.cwSpeed': 'Vitesse CW (WPM)', 'wkp.faster': 'Plus rapide', 'wkp.slower': 'Plus lent', 'wkp.cwText': 'Texte CW', 'wkp.sendOnTypeHint': 'Manipule chaque caractère en direct à la frappe (retour arrière supprime les caractères non émis)', 'wkp.sendOnType': 'émission à la frappe', 'wkp.phLive': 'Tape — émis en direct…', 'wkp.phEnter': 'Tape et appuie sur Entrée pour émettre…', 'wkp.clear': 'Effacer', 'wkp.send': 'Émettre', 'wkp.abort': 'Interrompre (vider le tampon du manipulateur)', 'wkp.stop': 'Stop', 'wkp.cwSpeed': 'Vitesse CW (WPM)', 'wkp.faster': 'Plus rapide', 'wkp.slower': 'Plus lent', 'wkp.cwText': 'Texte CW', 'wkp.sendOnTypeHint': 'Manipule chaque caractère en direct à la frappe (retour arrière supprime les caractères non émis)', 'wkp.sendOnType': 'émission à la frappe', 'wkp.phLive': 'Tape — émis en direct…', 'wkp.phEnter': 'Tape et appuie sur Entrée pour émettre…', 'wkp.clear': 'Effacer', 'wkp.send': 'Émettre', 'wkp.abort': 'Interrompre (vider le tampon du manipulateur)', 'wkp.stop': 'Stop',
'wkp.breakIn': 'Break-in', 'wkp.breakInHint': "Le manipulateur interne de la radio n'émet que si le break-in est SEMI ou FULL. OFF génère la tonalité mais reste en réception.", 'wkp.bkOff': 'OFF', 'wkp.bkOffWarn': "n'émettra pas — mettre SEMI ou FULL", 'wkp.breakIn': 'Break-in', 'wkp.breakInHint': "Le manipulateur interne de la radio n'émet que si le break-in est SEMI ou FULL. OFF génère la tonalité mais reste en réception.", 'wkp.bkOff': 'OFF', 'wkp.bkOffWarn': "n'émettra pas — mettre SEMI ou FULL",
'wkp.autoCallHint': "Clique une macro CQ (dont le texte contient CQ) pour la réémettre en boucle — message, pause, répétition — jusqu'à envoyer une autre macro (ex. un report), appuyer sur Stop ou ESC. Les macros non-CQ ne sont émises qu'une fois.", 'wkp.autoCall': 'Appel auto', 'wkp.gap': 'pause', 'wkp.gapHint': 'Secondes à attendre après le message avant de réémettre', 'wkp.loopHint': 'clique une macro CQ pour la boucler', 'wkp.macroN': 'Macro {n}', 'wkp.autoCallHint': "Clique une macro CQ (dont le texte contient CQ) pour la réémettre en boucle — message, pause, répétition — jusqu'à envoyer une autre macro (ex. un report), appuyer sur Stop ou ESC. Les macros non-CQ ne sont émises qu'une fois.", 'wkp.autoCall': 'Appel auto', 'wkp.gap': 'pause', 'wkp.gapHint': 'Secondes à attendre après le message avant de réémettre', 'wkp.loopHint': 'clique une macro CQ pour la boucler', 'wkp.macroN': 'Macro {n}',
+4
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@@ -1035,4 +1035,8 @@ export function WinkeyerStop():Promise<void>;
export function WorkedBefore(arg1:string,arg2:number):Promise<qso.WorkedBefore>; export function WorkedBefore(arg1:string,arg2:number):Promise<qso.WorkedBefore>;
export function YaesuSendCW(arg1:string):Promise<void>;
export function YaesuStopCW():Promise<void>;
export function YaesuZeroIn():Promise<void>; export function YaesuZeroIn():Promise<void>;
+8
View File
@@ -2018,6 +2018,14 @@ export function WorkedBefore(arg1, arg2) {
return window['go']['main']['App']['WorkedBefore'](arg1, arg2); return window['go']['main']['App']['WorkedBefore'](arg1, arg2);
} }
export function YaesuSendCW(arg1) {
return window['go']['main']['App']['YaesuSendCW'](arg1);
}
export function YaesuStopCW() {
return window['go']['main']['App']['YaesuStopCW']();
}
export function YaesuZeroIn() { export function YaesuZeroIn() {
return window['go']['main']['App']['YaesuZeroIn'](); return window['go']['main']['App']['YaesuZeroIn']();
} }
+128
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@@ -0,0 +1,128 @@
package cat
// CW keying through the Yaesu's own keyer — the KY command.
//
// This is the fifth CW engine, alongside WinKeyer, the DTR/RTS line keyer, the
// Icom CI-V keyer and FlexRadio's CWX. The point is the same in each: no extra
// hardware, no second cable. The radio holds the text and keys it with its own
// timing, which is why the character spacing is perfect where a PC keying a line
// through USB latency is not.
//
// KY; → KY0; buffer has room / KY1; buffer full
// KY <text>; queue up to 24 characters
//
// The leading SPACE after KY is part of the command, not padding.
//
// Verified on: nothing yet — the send path follows the FTDX10/FTDX101 CAT
// reference and the way Hamlib drives these rigs. STOP is the uncertain half:
// Yaesu documents no way to clear the buffer, so see StopCW.
import (
"fmt"
"strings"
"time"
)
// yaesuCWChunk is the most characters one KY command accepts. Longer text is
// split and fed as the rig drains its buffer.
const yaesuCWChunk = 24
// yaesuCWAllowed is what the rig's keyer can actually send. Anything else is
// dropped rather than passed through: an unsupported byte can abort the whole
// buffer, losing the rest of the message with no error anywhere.
const yaesuCWAllowed = "ABCDEFGHIJKLMNOPQRSTUVWXYZ0123456789 /?.,-=+:;()"
// SendCW queues a message on the rig's keyer.
//
// Text is filtered, upper-cased and fed in 24-character pieces, waiting for room
// between pieces. Without that wait a long macro would silently lose its tail:
// the rig drops what does not fit rather than reporting an error.
func (y *Yaesu) SendCW(text string) error {
msg := filterYaesuCW(text)
if msg == "" {
return nil
}
for len(msg) > 0 {
n := yaesuCWChunk
if len(msg) < n {
n = len(msg)
}
chunk := msg[:n]
msg = msg[n:]
if err := y.waitCWBuffer(4 * time.Second); err != nil {
return err
}
y.mu.Lock()
err := y.write("KY " + chunk + ";")
y.mu.Unlock()
if err != nil {
return err
}
}
return nil
}
// StopCW aborts the message being sent.
//
// Yaesu documents no buffer-clear, so this drops the transmitter instead: TX0
// takes the rig out of transmit, which is what an operator pressing Escape
// actually wants. Anything still queued is not keyed on the air.
//
// It deliberately does NOT send "KY0;" — a plausible-looking clear that the rig
// would read as the CHARACTER zero and dutifully send. A wrong guess here
// transmits, which is worse than an imperfect abort.
func (y *Yaesu) StopCW() error {
y.mu.Lock()
defer y.mu.Unlock()
if y.port == nil {
return fmt.Errorf("yaesu: not connected")
}
return y.write("TX0;")
}
// waitCWBuffer blocks until the keyer reports room, or the deadline passes.
// A rig that never answers the status query is not a reason to refuse to send —
// we go ahead once, and the worst case is the truncation we were avoiding.
func (y *Yaesu) waitCWBuffer(within time.Duration) error {
deadline := time.Now().Add(within)
for {
y.mu.Lock()
if y.port == nil {
y.mu.Unlock()
return fmt.Errorf("yaesu: not connected")
}
r, err := y.ask("KY;")
y.mu.Unlock()
if err != nil {
debugLog.Printf("yaesu cw: KY status query failed (%v) — sending anyway", err)
return nil
}
if len(r) >= 3 && r[2] == '0' {
return nil // room in the buffer
}
if time.Now().After(deadline) {
return fmt.Errorf("yaesu: the keyer buffer stayed full for %s", within)
}
time.Sleep(50 * time.Millisecond)
}
}
// filterYaesuCW upper-cases and strips what the keyer cannot send.
func filterYaesuCW(text string) string {
var b strings.Builder
for _, r := range strings.ToUpper(text) {
// Any whitespace becomes a word gap FIRST. Dropping tabs and newlines as
// "not in the allowed set" glued the words either side together: a macro
// written on two lines went out as CQCQ.
if r == '\t' || r == '\n' || r == '\r' {
b.WriteByte(' ')
continue
}
if strings.ContainsRune(yaesuCWAllowed, r) {
b.WriteRune(r)
}
}
// Runs of spaces become one: the rig sends each as a word gap, so three in a
// row is three gaps and the message crawls.
return strings.Join(strings.Fields(b.String()), " ")
}
+63
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@@ -0,0 +1,63 @@
package cat
import (
"strings"
"testing"
)
// What reaches the rig's keyer.
//
// An unsupported byte does not produce an error on a Yaesu — it can abort the
// whole buffer, so the rest of the message is lost silently. Filtering is
// therefore part of correctness, not tidiness.
func TestFilterYaesuCW(t *testing.T) {
cases := []struct{ in, want string }{
{"cq cq de f4bpo", "CQ CQ DE F4BPO"},
{"F4BPO/P", "F4BPO/P"},
{"599 tu 73", "599 TU 73"},
// Accents and symbols the keyer has no code for.
{"héllo", "HLLO"},
{"a*b#c", "ABC"},
// Runs of whitespace collapse: the rig sends each space as a word gap, so
// three in a row is three gaps and the message crawls.
{"cq cq", "CQ CQ"},
{" padded ", "PADDED"},
{"\tcq\ncq\t", "CQ CQ"},
{"", ""},
{" ", ""},
}
for _, c := range cases {
if got := filterYaesuCW(c.in); got != c.want {
t.Errorf("filterYaesuCW(%q) = %q, want %q", c.in, got, c.want)
}
}
}
// Long macros have to be split: one KY command carries 24 characters and the rig
// DROPS what does not fit rather than reporting an error, so a contest CQ would
// lose its tail with no sign anywhere.
func TestYaesuCWChunking(t *testing.T) {
msg := filterYaesuCW("cq cq cq de f4bpo f4bpo f4bpo pse k")
if len(msg) <= yaesuCWChunk {
t.Fatalf("test message is %d chars — too short to exercise chunking", len(msg))
}
var chunks []string
for rest := msg; len(rest) > 0; {
n := yaesuCWChunk
if len(rest) < n {
n = len(rest)
}
chunks = append(chunks, rest[:n])
rest = rest[n:]
}
for i, c := range chunks {
if len(c) > yaesuCWChunk {
t.Errorf("chunk %d is %d chars, over the %d limit", i, len(c), yaesuCWChunk)
}
}
// Nothing added, nothing lost: the message the operator typed is what the
// keyer receives.
if joined := strings.Join(chunks, ""); joined != msg {
t.Errorf("chunks rejoin to %q, want %q", joined, msg)
}
}
+3
View File
@@ -82,6 +82,9 @@ type YaesuController interface {
SetYaesuKeySpeed(int) error SetYaesuKeySpeed(int) error
SetYaesuBreakIn(bool) error SetYaesuBreakIn(bool) error
YaesuZeroIn() error YaesuZeroIn() error
// CW keying through the rig's own keyer (KY) — the fifth CW engine.
SendCW(string) error
StopCW() error
SetYaesuSplit(bool) error SetYaesuSplit(bool) error
SetYaesuSplitOffset(int64) error SetYaesuSplitOffset(int64) error
SetYaesuBand(string) error SetYaesuBand(string) error