bf3bcc8a846c4767888d81d8340d5c2a480aedb5
9
Commits
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bf3bcc8a84 |
[fix](trx-frontend-http): show one rig at a time on the digital modes page
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CI / frontend (pull_request) Successful in 4m28s
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A client connected to several rigs decodes all of them at once, and the decode stream carries every rig's traffic to every browser. The decoder panels listed all of it: a station a background rig copied on another band appeared in the APRS list next to the selected rig's, the vessel counts and the "latest seen" lines counted both, the status lines said "Receiving" because some other rig was, and the CW pane interleaved two rigs into one stream of text that read as neither. The page is about the rig the operator selected — the one whose spectrum is on screen and whose audio is playing — so each panel now shows what that rig heard: rows, counts, latest-seen, status, the live picture a WEFAX or SSTV frame is painting, and the CW pane. Nothing is dropped on the way in. The map is the whole station's view, has its own rig filter, and would empty out if the plugins stopped feeding it, so the histories still hold every rig and the map still plots them. That also means a switch loses nothing: the runtime gained a rerender hook, which the rig switch calls, and switching back brings the other rig's traffic up again. The CW pane is the exception — a running stream of text cannot be unpicked after the fact — so it starts empty on the rig switched to. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_01SyX26FCpMQxiBoC7r5K1A7 Signed-off-by: Stan Grams <sjg@haxx.space> |
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15ff686542 |
[fix](trx-frontend-http): keep the mini views to the rig on screen
The decode SSE stream and the history behind it are not rig-scoped: every rig's decodes reach the browser, each carrying the rig that heard it. The panels on the decoder tabs want that — they aggregate the whole station — but the mini views over the waterfall caption the spectrum underneath, and they were reading the same unfiltered histories. A background rig copying APRS on another band put its frames over the active rig's waterfall. The mode gate did not help: it reads the mode of the rig on screen, so those frames appeared whenever that rig happened to be in PKT. Filter each overlay on the rig it belongs to, through one shared predicate that compares a decode's rig_id with the per-tab active rig already driving the spectrum and the audio. A decode that names no rig, and a session that has not learnt its rig list yet, still show everything. The FTx normalizer was dropping rig_id on the floor, so it now keeps it. CW needed more than a filter: its lines accumulate character by character, so two rigs copying at once braided their text into one unreadable line. Lines in progress are now kept per rig. The bar repaints in render() move into refreshDecodeBars(), which the rig switch calls as well — otherwise the outgoing rig's frames stayed on screen until the next state update — and which finally includes the CW bar. Closes #49 Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_01SyX26FCpMQxiBoC7r5K1A7 Signed-off-by: Stan Grams <sjg@haxx.space> |
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026f816ddb |
[fix](trx-frontend-http): replay stored decodes onto the map when it loads
The map module is lazy: it arrives when the Map tab is first opened, which is normally long after startup restored the decode history. Until then aprsMapAddStation, aisMapAddVessel and vdesMapAddPoint are undefined, and the decoders' `if (lat != null && ... && fn)` guards quietly dropped every restored position. Nothing replayed them once the module did arrive, so the map came up empty and filled in only from decodes heard afterwards -- a station heard once was never plotted at all. A second reload appeared to fix it because the cached module then loaded early enough to win the race against the history fetch. Give DecoderPlugin an optional syncMap(), implement it for APRS, AIS and VDES over the history each already retains, and have map-core call trxPluginRuntime.syncMapAll() as it attaches. The add functions are keyed by callsign, MMSI and point, so replaying updates in place and cannot duplicate a marker; the replay runs oldest-first so tracks are rebuilt in the order they happened. Signed-off-by: Stan Grams <sjg@haxx.space> |
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d31b6f545f |
[test](trx-frontend-http): watch the history progress from inside the page
The replay-progress check polled the overlay from the test every 100ms. A replay that starts and finishes between two polls is never sampled, and the test then reports that no progress was shown at all -- the source of the intermittent "no progress was shown while the history loaded" failure. Record the samples from a MutationObserver installed before the page's own scripts run, so a fast replay is observed rather than missed. Signed-off-by: Stan Grams <sjg@haxx.space> |
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39f551c914 |
[fix](trx-frontend-http): hold the APRS symbol column open for frames without one
renderLocalAprsSymbol() returns nothing when a packet carries no symbol table or code, so those rows lost the icon's 24px slot and every column after it -- callsign, type badge, summary -- slid left against the rows around them. Frames that do carry a symbol then read as indented. Render an empty slot of the same size instead, so a list mixing position reports with messages and telemetry still lines up. Signed-off-by: Stan Grams <sjg@haxx.space> |
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6d25ecdc11 |
[feat](trx-frontend-http): give the AIS list the same log shape
A message was three stacked lines — time and name, then MMSI and route, then motion, distance, position and age — so a screen held eight of them. It is one line now: time, vessel, message type, and what the message says, opening in place for the MMSI, the channel frequency, the route, the age, the fix and a jump to the map. Twenty-two fit where eight did. What a message says depends on what it is. Position reports give the fix and the motion; the static and voyage reports that carry no fix give the callsign and where the vessel is bound. Both fall back to whatever fields are present rather than showing nothing. The row vocabulary the APRS list introduced is no longer APRS-specific — the classes are decode-line and decode-expanded now, shared by both, and identity sits in fixed columns so the summaries line up down the list instead of starting wherever the callsign happens to end. The three summary cards above the list go the way of the APRS ones. Signed-off-by: Stan Grams <sjg@haxx.space> |
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37987b2779 |
[feat](trx-frontend-http): make the APRS list a log, and read the payloads
A frame was a card five lines tall — timestamp, a meta line, the information field as it arrived on the air, three buttons, and a Details panel repeating the four things already on the row — so five frames filled the panel and the payload was left to be decoded by eye. A frame is one line now: time, station, type, and what the frame says. It opens in place for the path, the CRC, the raw field, its bytes and the actions. Twenty-one frames fit where five did. And the information field is read rather than echoed. Weather reports give temperature, wind, humidity and pressure; telemetry gives its sequence and channels; a message gives its addressee and text; a position gives the fix, course and speed, and the comment the station wrote. Anything that cannot be summarised falls back to the raw field, which is in the expanded view either way. HF APRS had a copy of the same forty lines of markup, differing by one badge, so both now build their rows from one function in the shared module — the CSS is shared between them and this would have broken it otherwise. Both headers lose their three summary cards for a line of counts beside the filters, which frees another fifth of the panel. Signed-off-by: Stan Grams <sjg@haxx.space> |
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c1899229a0 |
[fix](trx-frontend-http): stop the decode history replay giving up at 20s
Reloading a second time sometimes showed history the first load did not, and the safety valve is why: it called one function that both released the buffered live decodes and tore the history worker down, so any load where the replay had not finished inside twenty seconds — a large backlog, a cold cache, a slow link — dropped whatever had not arrived, without a word. A reload got another go at it, and the second one is faster because everything is cached by then. Those are two separate things now. At the timeout the live decodes are released so the panels are not held back, the replay carries on, and the progress says so. The fallback's error path retries once and then says "Decode history unavailable" rather than leaving the operator to guess whether there was anything to see. The progress is no longer a scrim. It was fixed to the whole viewport with a wash over the page — the waterfall, the decode panels, all of it — for the length of the replay, which is exactly when there is something worth watching. It is a corner card with a bar: indeterminate while the payload is on the wire, then filling as N of M messages replay. None of this was reachable from a test. /decode/history answers in CBOR and the worker reads the body as CBOR unconditionally, but the fixture served JSON, so every browser run had been exercising the client's retry path and never its history path. It encodes CBOR now, including the 64-bit form the millisecond timestamps need, and decode-flow serves 1200 records and holds the client to restoring all of them on the first load, showing progress while it does, and never covering the page with it. Signed-off-by: Stan Grams <sjg@haxx.space> |
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84a99a3636 |
[fix](trx-frontend-http): load the decoders that own the digital modes panels
AIS, VDES and both APRS decoders were listed under the map plugin group alone, so opening Digital modes and clicking AIS or APRS gave an empty panel reading "Connected, listening for packets" while the decodes piled up unprocessed in the plugin runtime. They appeared only if something had opened the Map tab first, which flushed the queue. There is also a map-data group naming exactly those four that nothing loads: the loader is called with tab names and no tab is called map-data. They load with the tab whose panels they fill now. map-core stays lazy, since their calls into it are optional and the Map tab can go on paying for Leaflet by itself. tests/decode-flow.mjs follows a decode from the wire to the map: an AIS vessel and an APRS beacon arrive on /decode, and it asserts both panels fill with the map module confirmed absent, the mini view names the vessel and offers a pin, following that pin lands on /map centred on the vessel, and both decoders leave a marker. Nothing exercised any of this before — the fixture served an empty decode stream, which is how the map links came to be broken for every decoder at once. The fixture stamps decodes as it sends them, since the client prunes anything outside the retention window, and repeats them, since the views collapse by vessel and need more than one frame to behave. Signed-off-by: Stan Grams <sjg@haxx.space> |