Swept every Route_*_p<n><kind> in every stage table, resolving each squadron to its unit via that stage's own UnitGroup, with F/S/M routes as the control: A/B routes : 23 of 67 resolved are attacker/bomber = 34.3% F/S/M control: 27 of 928 = 2.9% A ~12x enrichment, so the signal is real and not a one-stage accident. But "A means the marked attackers" remains too strong: of the 67 resolved A/B routes, 35 carry UN_mn040_Asteroid_Big and 9 carry UN_n001_TTRL_Box (TTRL = tutorial). A reading covering all four is "things the mission wants shot" -- attackers in a combat stage, asteroids in an asteroid stage, boxes in a tutorial -- which keeps A as an objective marker rather than a unit-class marker, but that is a reading of four unit types, not a measurement. Records a near-miss: a truncated listing showed the first ~26 rows, dominated by early stages, in which every resolved row was an attacker. I nearly wrote "23/23, unanimous". The full set is 23/67 -- the tail of a sorted listing is not the distribution. The Stage 02 derivation is unaffected: its three A routes are still exactly the three n=4 attacker squadrons.
10 KiB
🟡 What REMAINING OB counts — the marked attackers, four per arriving squadron
Status: 🟡 HYPOTHESIS, assembled from existing measurements, NOT itself measured. It is recorded because it is the first reading that fits every number this corpus has taken, and because it makes sharp predictions that one run can kill.
The reading
REMAINING OB counts the objective-marked UN_e010_ADAN_Attacker_S craft
still alive, and it rises because those craft arrive in squadrons on the
mission's timetable rather than being present from the start.
The arithmetic that suggested it
mission-objectives-text.md gives phase 1's roster
two ways — by unit group and by craft:
| unit | groups | craft |
|---|---|---|
UN_e007_ADAN_Turret |
12 | 108 |
UN_e106_ADAN_Destroyer |
7 | 7 |
UN_f001_TCAF_DeltaSaber_T |
7 | 7 |
UN_e010_ADAN_Attacker_S |
4 | 16 |
16 craft across 4 groups — four per squadron. The counter moves in steps of
exactly four: 004 → 008 → 012. And the phase-1 objective is stated outright
in the mission dialogue: "The attackers with the orange markers" — the e010s,
not the turrets that outnumber them seven to one.
mission-wave-arrivals.md supplies the timing: the
three squadrons the phase-1 clear condition polls (ADN110, ADN111, ADN112) all
have first-keyframe time 170, confirmed live as seconds. Objective craft
therefore arrive minutes into the flight, which is exactly when the counter is
observed to climb.
Every measured fact it accounts for
| measurement | this reading |
|---|---|
reads 004 with ~118 hostiles live |
the 118 are overwhelmingly turrets; only the marked attackers count |
rises 004 → 008 → 012 |
one squadron of four arriving at each step |
held at 012 while hostiles fell 132 → 93 |
the pilot's kill logs are almost entirely e007_Turret — the wrong 42 kills, in that file's own words |
decremented 12 → 11 exactly once when the player really fired |
that run's preference knob produced its only e010 kills |
| no class head-count ever equals the counter | the live e010 population includes squadrons not yet released — 16 live against a counter of 12 in tonight's sample |
The fourth row is the one that turns this from arithmetic into an explanation: every earlier "the counter ignores kills" result came from runs killing turrets, and the single decrement came from the single run that killed attackers.
What would refute it — one run, cheap
- Kill one
e010and nothing else. The counter must fall by exactly 1. If it falls by 4, it counts squadrons; if it does not move, this is dead. - Kill a turret. The counter must not move at all.
- Watch for
016. With four squadrons of four, phase 1 should cap at 16. A counter that climbs past 16 kills the "marked attackers" reading outright. - Compare the counter against the count of
e010in theactivestate, not the raw live count —phase-watchalready reads squadron state 1 (not deployed) → 2 (active), so the prediction iscounter == 4 × (active e010 squadrons) − (marked attackers killed).
✅ The weak point, tested statically — and it holds for phase 1
The caveat below said "four per squadron" was 16 / 4, a mean, and that
5/5/3/3 would make the step-of-four a coincidence. That is now measured, from the
disc, with no emulator: tools/re-capture/unitgroup.py S02 decodes
stage\UnitGroup_S02.tbl (111 squadrons, 116 members, roster self-check
111/111).
Every UN_e010_ADAN_Attacker_S squadron in Stage 02:
| squadron | n | squadron | n | |
|---|---|---|---|---|
ADN204 |
4 | ADN209 |
6 | |
ADN206 |
4 | ADS151 |
4 | |
ADT102 |
4 | ADS251 |
9 | |
ADN208 |
6 | ADT107 |
4 | |
ADT113 |
4 |
9 groups, 45 members — so the sizes are not uniform across the stage.
✅ And phase 1's four are measured, not inferred
Route_S<NN>.tbl names routes Route_<squadron>_p<phase><kind>
(stage-mission-tables.md), so the
squadron → phase link is readable straight off the disc. Stage 02 has 37
phase-1 squadrons, and intersecting them with the e010 roster gives:
phase-1 e010 squadron |
n |
|---|---|
ADS151 |
4 |
ADT102 |
4 |
ADT107 |
4 |
ADT113 |
4 |
| total | 16 |
Exactly four groups, every one of size four, summing to sixteen. The five
remaining e010 groups — ADN204, ADN206, ADN208, ADN209, ADS251, which
include both n = 6 groups and the n = 9 group — are not in phase 1.
So the stage-wide mean was misleading precisely because the odd-sized squadrons
belong to later phases. Restricted to phase 1 the size is uniform, and the
counter's step of four is a real per-squadron member count. ✅ on that point: the
16 / 4 mean is replaced by a measured per-group fact, and the coincidence the
caveat feared (5/5/3/3) is ruled out.
✅✅ The A route kind names the objective squadrons — and it predicts the whole trajectory
Route names carry a kind suffix (Route_<sq>_p<phase><kind>) whose meaning
stage-mission-tables.md lists as ❔. In
Stage 02 the distribution is lopsided:
| phase | A | B | F | M | S |
|---|---|---|---|---|---|
| 1 | 3 | — | 16 | — | 18 |
| 2 | — | — | 15 | — | 22 |
| 3 | — | — | 13 | 11 | 22 |
Only three routes in the whole stage are kind A, all in phase 1 —
ADT102, ADT107, ADT113. Every one is a UN_e010_ADAN_Attacker_S squadron
of n = 4. (The fourth phase-1 e010 squadron, ADS151, is kind F.)
Their first-keyframe times, read from the same table:
| squadron | kind | n | arrival |
|---|---|---|---|
ADT102 |
A | 4 | t = 0 |
ADT107 |
A | 4 | t = 120 |
ADT113 |
A | 4 | t = 210 |
ADS151 |
F | 4 | t = 0 |
Counting only the A squadrons gives a complete predicted trajectory:
| mission time | arrived A craft |
predicted counter |
|---|---|---|
| 0 | 4 | 004 |
| 120 | 8 | 008 |
| 210 | 12 | 012 |
| — | — | never exceeds 012 in phase 1 |
That is exactly what every run has shown: the counter is 004 at flight
entry, steps to 008 and then 012 within the first three to four minutes, and
has never been observed above 012. All three features — the starting value, the
step size, and the ceiling — fall out of the disc with nothing fitted.
It also explains the two results that looked like problems:
- The fifteen-minute hold at
012— after t = 210 everyAsquadron has arrived, so the counter can only fall, and that run's kills were turrets. 016never appeared. An earlier version of this note predicted a cap of 16 from four squadrons; that prediction is withdrawn.ADS151is anFroute and is not counted, so the ceiling is 12.
🟡 What A means, tested across all 28 stages — enriched, but not "attackers"
The three-route sample in one stage was too small to read a meaning off, so the
sweep was run corpus-wide: every Route_*_p<n><kind> in every stage table,
resolving each squadron to its unit through that stage's own UnitGroup.
| route kind | resolved | attacker/bomber |
|---|---|---|
A/B |
67 | 23 = 34.3 % |
F/S/M (control) |
928 | 27 = 2.9 % |
A ~12× enrichment for attacker/bomber units on A/B routes — the signal is
real and it is not a one-stage accident.
❌ But "A means the marked attackers" is still too strong, and the full distribution says why:
unit on a resolved A/B route |
n |
|---|---|
UN_mn040_Asteroid_Big |
35 |
UN_e010_ADAN_Attacker_S |
12 |
UN_e011_ADAN_Attacker_B |
11 |
UN_n001_TTRL_Box |
9 |
Most A routes carry asteroids, and nine carry TTRL_Box — TTRL being the
tutorial prefix. 🟡 A reading that covers all four is "things the mission wants
shot": attackers in a combat stage, asteroids in an asteroid stage, boxes in a
tutorial. That is consistent, and it keeps A as an objective marker rather than
a unit-class marker — but it is a reading of four unit types, not a measurement.
⚠️ Correction to my own first look at this data. A truncated listing showed the first ~26 rows, which are dominated by early stages, and every resolved row in it was an attacker — I nearly recorded "23/23, unanimous". The full set is 23/67. The tail of a sorted listing is not the distribution.
None of this disturbs the Stage 02 derivation above: S02's three A routes are
still exactly the three n = 4 attacker squadrons, and the predicted trajectory
is unchanged.
❌ A premise of this note was WRONG — ADN110/111/112 are TURRETS
This note said the polled squadrons ADN110, ADN111 and ADN112 arrive at t=170 and implied they are the marked attackers. The roster says otherwise:
ADN110 unit=UN_e007_ADAN_Turret n=9
ADN111 unit=UN_e007_ADAN_Turret n=9
ADN112 unit=UN_e007_ADAN_Turret n=9
All three are turret squadrons of nine. So the arrival-time evidence I quoted is about turrets, not about the objective craft, and it does not support this reading. It has to be withdrawn from the argument.
❔ And it leaves a genuine tension in the corpus, worth stating rather than
smoothing: mission-wave-arrivals.md calls
ADN110/111/112 "the three squadrons the phase-1 clear condition polls", while
mission-objectives-text.md has the phase-1
objective as the marked attackers. Those cannot both be the clear condition
unless the poll covers more than the objective. Unresolved here.
❌ What this is NOT
- Not measured. No run was made for this note; every number in it is quoted from an existing capture in this corpus.
- ⚠️ "Four craft per squadron" is
16 / 4— a mean, not a per-squadron count. If the squadrons are 5/5/3/3 the step-of-four pattern is a coincidence and the reading is wrong.Route_ADN11x_p1FFrameCountvalues (3, 3, 2) are route keyframes, not member counts, and must not be confused for them. - It does not explain the mechanism, only the arithmetic. The counter itself is
the HUD widget's value (
structures/mission-objective-counter.md); where the mission keeps its own tally is still ❔.