The engine probe answered two questions on the air, and they point opposite
ways.
TxBufLen is the number of characters left to transmit. Seventeen characters
pushed, five decoded back, and it read 12, counting down to 0 as the message
went out. So the pump no longer counts character times off the clock: it asks
the engine, feeds while the answer is under Lead, and asks again. The baud rate
is now only the fallback for an engine that will not answer.
A backspace is not an edit. Pushed in as a character it made the count go up by
four and the text went out unchanged, so text the engine has been given cannot
be taken back, only aborted. EngineTypeAhead was built on the opposite belief
and is gone, along with the setting that chose it and the interface that existed
to switch between the two.
A count that stops going down means the engine is holding what it has: MMTTY set
to Word out keeps a word until the space after it. The pump feeds one character
per look while that lasts, so the space arrives and the word goes out rather
than the message sitting there.
The probe kept two bugs of its own that this run showed: it read the count a
millisecond after pushing, saw 0 and called the message finished, and it started
a step while the previous unkey was still in flight, so that step ran with the
engine down. It now needs two empty answers in a row and waits for the engine to
say it has stopped. It also asks what {RX} does to a word the engine is holding,
which decides whether a macro without a trailing space loses its last word.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01RtspmWmS7f8kUvcyaHpRWZ
247 lines
15 KiB
Markdown
247 lines
15 KiB
Markdown
# What is not finished, and what has not been tested
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Two separate lists. A feature can be finished and untested, or half-built and
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exercised every day. Written 2026-08-27, updated 2026-08-31.
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## Never run against the real thing
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Everything below is written from a published protocol or from N1MM's source and
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tested against a fake that speaks the same protocol. A fake agrees with whatever
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the person who wrote it believed, so these are the places where a wrong belief
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is still sitting there undiscovered.
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| What | Tested against | What has never happened |
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| `RigctldRadio` | a stand-in for `rigctld` over a real socket | no real `rigctld`, no real radio. The extended answer format, the `+` prefix and the split commands are from the documented protocol. If the format is wrong, nothing works rather than something being subtly off — check this first. |
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| `OtrspBox` | a `MemoryStream`, checking the bytes | no real SO2R box. Command forms are from N1MM's `N1MMPort.cs`. |
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| `ClusterClient` | a node fake over a real socket, sending the telnet negotiation, the login prompt and spot lines | no live cluster node. Which nodes send bare CR, and which send option negotiation, is guessed from N1MM's code. |
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| `StationNetwork` | the message format, round-tripped | no second station, and no N1MM on the same network. |
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| `CwDaemonSender` | the UDP messages, and a fake daemon that answers the `<ESC>h` reply request | no `cwdaemon`, no radio keyed. |
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| `MmttyEngine` and the Wine bridge | MMTTY 1.70 under Wine 10 on a machine with a sound card: started, keyed, a message transmitted and decoded back off the air, and stopped | no radio. No FSK through EXTFSK, no PTT on a serial port, and 2Tone has never been run. Keying was wrong until 2026-09-01: `SetMmttyPTT` stops a transmission and does not start one, which is why nothing ever went out before then. `docs/digital-bridge.md` |
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| `WinkeyerSender` | the status-byte reader, on its own | no test of the serial side, and no WinKeyer. The host-mode open sequence is from the WinKeyer datasheet; the status bits are from N1MM's `Winkey.cs`. |
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The Cabrillo output has not been put in front of a contest sponsor's robot.
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## Half-built
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**The digital window: what N1MM has and this does not.** The window is here —
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receive pane in both of N1MM's scroll modes, the Letters/Figs and MouseOver
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readouts, the pause bar, coloured callsigns with N1MM's validity routines, grab
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list, call stacking, hover mode, the message buttons, the engine controls, the
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text file in and out — and the function keys, ESM and the QTC window send
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through the engine on a digital mode. Left out: the waterfall, the spectrum and
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the XY scope, which the engine reports and nothing draws; more than one receive
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pane, which is MMVARI's multi-channel decoding rather than MMTTY's; N1MM's
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AutoTRXUpdate, which offsets the frequency the entry window and the log record
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rather than only the one in the title bar; and N1MM's Send All, which keys a
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whole QTC series at once. The other interfaces N1MM offers — fldigi, MMVARI, the
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hardware TNCs — are not here either, though `DigitalEngine` is the place to add
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them.
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The receive pane has been driven with a stand-in bridge that prints prepared
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text, which is how the printing, the colouring, the Letters/Figs box and the
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type-ahead transmit pane were checked. Nothing has been decoded from a real
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signal and nothing has gone on the air: this machine has no sound card, and
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MMTTY does not start on it.
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**What paces the type-ahead pump.** The text is held in `TypeAhead` and the
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engine is kept `Lead` characters ahead: one being transmitted and one behind it,
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so it never runs dry and never transmits idle in the middle of a message. Those
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two characters cannot be taken back; everything behind them can still be
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rewritten.
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How far the engine has got comes from the engine. MMTTY answers `TxBufLen` with
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the number of characters it still has to transmit, so the pump asks, feeds while
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the answer is under `Lead`, and asks again, 50 ms at a time. An engine that will
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not answer is paced by the clock at the baud rate in the digital settings
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instead, which drifts; that is what the baud setting is still for.
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What the engine probe established on 2026-09-01, with MMTTY 1.70 under Wine on a
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machine with a sound card:
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| What | Answer |
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| Does the control answer `TxBufLen`? | Yes, and a name it does not know fails with `DISP_E_UNKNOWNNAME`, so the two are distinguishable. |
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| What does it count? | Characters left to transmit. Seventeen were pushed; a second later, with five decoded back off the air, it read 12, and it counted down to 0 as the message went out. |
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| Does a backspace take back a character the engine has not transmitted? | No. Pushed in as a character it made the count go **up** by four, and the text went out unchanged. MMTTY's help describes its backspace key doing this in its own window; through `PostMmttyMessage(4, 8)` it is just another character. So text in the engine cannot be retracted, only aborted. |
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| How long after a push does the count include it? | Not immediately. A count read a millisecond after the push still read 0, so one empty answer is not the end of a message. |
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Two things the probe has still to answer, and it now asks both:
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- **Way to send.** MMTTY set to Word out holds a word until the space after it,
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which the first run appeared to show but could not confirm, because the engine
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was not keyed for that step. The pump handles it either way: a count that
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stops going down means the engine is holding what it has, so the pump feeds
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one character per look until it moves again.
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- **Whether `{RX}` sends a held word.** `SetMmttyPTT(1)` stops once the buffer is
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empty. If a held word does not count as buffer, a macro whose last word has no
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space after it loses that word.
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```sh
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./build.sh run --project tools/Nonemm.EngineProbe -- \
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--engine ~/mmtty/MMTTY.EXE --prefix ~/.wine-nonemm --out engine-probe.log
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```
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It transmits on the sound card for about twenty seconds and keys no serial port
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unless `--ptt` names one. `EngineProbe` states what each answer means.
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The receive side is worth watching in the report as well. With MMTTY's sound
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loopback off, its help says the receive window is fed from the transmit window,
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which would be a per-character report of what has gone out with no polling at
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all. With loopback on it is the demodulator hearing the transmission, which
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arrives about half a second late and can carry decode errors, so the count is
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what the pump uses.
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**Voice keying.** `MessageSender` was written to cover a voice keyer playing a
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recording, and nothing implements it. Each operator's recordings folder is
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stored with the rest of his settings and waits on the same thing. No DVK support either, so the second radio
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of an SO2R station cannot call CQ by voice. Alternating CQ therefore works on CW
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only, though nothing in it is CW-specific: a voice keyer that reports when the
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recording has finished would drive it as it stands.
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**The QTC window transmits on CW only.** The header, the lines, the QRV, the TU
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and the again messages go out through the keyer, with N1MM's messages and
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N1MM's defaults. Nothing goes out on SSB or RTTY: N1MM plays four recordings on
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SSB — QRV, Agn, Cfm and TU — and sends RTTY from its digital window, and this
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program has neither a voice keyer nor a digital window. N1MM's Send All, which
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keys a whole series at once, belongs to that RTTY window and is not here
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either.
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**Cut numbers are not sent.** N1MM can key a serial number as letters — `N` for
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9, `T` for 0 — and offers several styles. Nothing here does, in a QTC line or in
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any other message.
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**Two WAE numbers do not agree with N1MM, both from 2020 and 2021 logs.** The
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disagreements are the country file of the day, not the rules: 4U1A counted as
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`4U1V` then and as `OE` in today's `wl_cty.dat`, `KP2BH` counted as `KP2` then
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and is listed as a US call now, and China was not split by call area yet. The
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2022 to 2025 logs agree to the contact.
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**Telnet window: what N1MM has and this does not.** Left out: the special-calls
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list, and saving received spots to a database — N1MM keeps those spots in its
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admin database, which is not the log file the two programs share, so there is
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nothing to be compatible with and nothing asks to read them back. The band plan
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tab is not repeated either, because Config ▸ Sub bands already edits the same
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numbers.
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The node list is downloaded from the public NG3K page rather than from N1MM's
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own web service, which asks the operator to opt in to data collection and is
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N1MM's to run. A page that changes shape would stop the download working; the
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reading only needs `telnet://` links in a table, and the old list stays in place
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when a download brings back something unreadable.
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**Not every action macro is acted on.** The text macros and the action macros
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that this program can carry out are listed in the README. What is read and
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passed over: the `{CAT…}` and radio-hex families, the audio and rotator macros,
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`{STEREOON}` and `{STEREOOFF}`, `{CONDJUMP}`,
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`{QSYCQ}`, `{FORCELOG}`, `{SwapContests}`, the digital TNC macros (`{ENTER}`,
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`{ESC}`, `{CTRL-A}`…), and the wav-directory macros, which wait on voice keying.
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A message holding any of them still sends the right characters.
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The CW keyer macros are not read either: `<` and `>` for speed, `~` for a half
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space, and the prosign characters `]`, `[`, `+` and `=`. They belong to the
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keyer rather than to the expander — cwdaemon and a WinKeyer each have their own
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way of saying them — and they go out as the characters they are.
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**The busted-spot check is one character wide.** N1MM offers two. Every call one
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character away from the spotted one is looked up in the callsign database, which
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is a few hundred lookups per spot; two characters away is a few hundred thousand,
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which is too much work per spot for the little it would add.
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**Two BARTG contests share one set of rules.** N1MM has a class each for the
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March HF RTTY contest, `BARTGSRTTY`, and the September sprint, `BARTGRTTYS`.
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This program has one contest, named `BARTGRTTYS`, holding the March rules — the
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ones the station's log needs — and both of N1MM's names open a log with it. A
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sprint log would be scored by the wrong rules, and a log started here writes
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`BARTGRTTYS` into the contest name, which N1MM would read as the sprint.
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**Digital modes.** A contact can be logged as RTTY or another digital mode, and
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the contest rules score it, but there is no digital window: no decoding, no
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transmitting, no interface to fldigi, MMTTY or similar.
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**Contest coverage.** Twenty-five families are built in, plus whatever `.udc` files
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are in the user-defined folder. N1MM ships well over a hundred. Opening a log
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from a contest that is in neither place fails with the contest name, which is
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the right answer but it is still a wall.
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Most of what is missing does not need code. A contest whose exchange is a
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report and one value, scored by band, mode, continent or country, and counted
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by country, zone, section or prefix, is a `.udc` file, and the file published
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for N1MM is read as it is. Code is for the ones `.udc` has no words for: WAE
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needs QTC traffic, IOTA needs island references as multipliers, and CQ WW RTTY
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needed a third multiplier and its own points table because it shares a name
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with the CW and SSB running of the contest.
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`.udc` settings that are still passed over. `MultiplierBands` and
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`QsoErrorString`, which are about the windows rather than the score.
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`GenericPrintString`, which is the layout of a printed log rather than a
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Cabrillo one.
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`MultWindowType` is read as far as the score goes: it names the list a section
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multiplier is checked against. Four of N1MM's lists are held here — the ARRL
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sections, the US states, the Canadian provinces and the OK/OM districts — and a
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file naming any of the hundred-odd others falls back to counting any exchange
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that is not all digits.
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`CabrilloString` and `CabrilloVersion` are read: a contest whose sponsor asks
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for its own columns gets them, in N1MM's shape — the operator's callsign in the
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first 13 columns, then every column padded to the width the file gives with one
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space after it, and a value longer than its column cut rather than pushed. The
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numbered `CabrilloFormat` layouts 2, 3, 4 and 5 — the NAQP, NA Sprint,
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Sweepstakes and section-and-serial lines — are read as well, in N1MM's columns.
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The exchange those layouts split into columns is built from the boxes the file
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defines, in the order it defines them; N1MM builds it from the section box
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alone, which writes only half of a two-box exchange. Layout 6, the ARRL RTTY
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Roundup line, is not read, and a file asking for it gets the default line; no
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published `.udc` file asks for it, because the Roundup has a contest class of
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its own. `CabrilloFormat = 0` means the sponsor takes no Cabrillo log at all,
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and nothing here stops the operator writing one.
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N1MM's `.udc` format has no way to say that the exchange itself differs by the
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other station's country. OK/OM DX is written in code for that reason — it asks
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a county from OK and OM stations and a serial number from everyone else — and
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`Contest.SkipsField` steps over the box that does not apply. REF, ARRL 10M, the
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Ukrainian DX contest and the Russian DX RTTY contest ask their exchange the same
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way, and are written in code for the same reason.
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Every contest in the station's own logs can now be opened, and its 78 contest
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instances score contact for contact as N1MM did apart from the cases below.
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What still differs, and why:
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- **The EU DX Contest** is written from N1MM's own class. The station's logs
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were made with the `EU_DXC.udc` file instead, which scores a contact inside
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your own country 1 point where the class scores 2, and counts a district code
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once in the contest where the class counts it once per band.
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- **Field Day Region 1**: every contact in that log holds 1 point and no
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multiplier, which is not what N1MM's own class works out, so the log looks
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like it was never scored. The rules here follow the class: 5 points for a
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portable station, 2 for one in Region 1 at home and 3 from outside it.
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- **SA 10 and OK/OM DX on SSB** are not written in code at all: both are
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published as `.udc` files, and with those files in the user-defined contests
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folder the station's logs score to the contact. N1MM's OK/OM DX class is the CW running only and says so; the SSB
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running has different rules and its own pair of files, one for each side of
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the contest.
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- **Two OK/OM DX contacts** whose district code was stored with a trailing
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space. N1MM checks the code against its list without trimming it, finds
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nothing and counts no multiplier; the code is trimmed here and counts. Both
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contacts are the same station in the 2026 log.
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## Known rough edges
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**The band plan covers 160M to 2M only.** 60M and everything above 2M get no
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CW, digital or phone shading on the bandmap, because N1MM's own numbers for
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those bands contradict themselves — its CW top for 1.25M is below its phone
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start, and its 70CM CW top is above the band. Config ▸ Sub bands cannot add a
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band that has no default.
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**Available mults and Qs is only as good as the bandmap.** It lists what is
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spotted, so a multiplier nobody has spotted is not there. N1MM's window also
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shows the mults a contest has and nobody has worked, which needs a list of every
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multiplier the contest counts. Only the section and state lists are held here,
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so the zone and country lists would have to come from the country file first.
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**Two entry windows and one keyer.** The SO2R box is told which radio to key
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before each message, but nothing stops both radios sending at once if the
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operator asks them to.
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