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Syplheed-Reborn/docs/re/structures/unit-group-table.md
Sylpheed RE agent 0ae295e9eb re: the weapon law does not generalise to units; the whole exception is S14
Applied the declared x deployed partition to units. Three vocabularies had to
be separated first: declared = field names of the 31 EnumUnit records (118);
deployed = slot 0 of each UnitGroup member tuple (122); datasheet = Generic
records carrying HP (114, which re-derives unit-datasheet-static's own number
from a different direction, as a control). Declared and deployed share the UN_*
vocabulary and overlap on 109; the datasheet's IDs are a third naming, disjoint
from both.

                    deployed   not deployed
  declared            109           9
  not declared         13           1

The cell that is empty for weapons (0 mounted-but-undeclared of 131) holds 13
for units, so the general form of that law is refuted: a unit CAN be deployed
with no table declaring it.

But the 13 are one coherent family - every one is UN_S14_p1_Asteroid_cmesh_* or
UN_S14_p2_Asteroid_cmesh_*. Asking the other population settles it: S01 8/8,
S04 10/10, S05 5/5, S08 6/6, S13 4/4 declared - 33 of 33 - while S14 declares
0 of 13, and non-asteroid deployed-but-undeclared is 0. The law survives in a
narrower form: every deployed unit is declared, except S14's asteroid collision
meshes.

Why S14 differs is not settled. It is the stage whose asteroid table S28
borrows, but nothing measured connects the borrow to the missing declarations,
so that is recorded as a coincidence rather than a cause.

All fifteen artefacts byte-identical.
2026-08-28 05:07:35 +00:00

12 KiB
Raw Blame History

stage\UnitGroup_S<NN>.tbl — the per-stage squadron roster

Status: container format and field semantics, validated across all 28 stage tables present on the disc; 🟡 one member field; the record key and the arrival-interval values.

Reached from the per-stage definition record's EnumerateSquadron field — see stage-definition-table.md. Tool: tools/re-capture/unitgroup.py (pure static; runs no emulator).

python3 tools/re-capture/unitgroup.py S02          # full roster
python3 tools/re-capture/unitgroup.py --all --check # self-check every stage

A committed dump of Stage 02 is at ../data/unitgroup-s02.txt.

Container

0x00              "IDXD"
0x04    u32       nrec
0x08    nrec x 16 record: (key, squadron_off, field_lo, field_hi)
        u32       npool
        npool x 12 property entry: (tag, name_off | 0xffffffff, value_off)
        u32       strsize          -- and STR + strsize == filesize, exactly
        strsize   string pool; [0] = "Enumerate_Squadrons", [0x14] = ""

Every offset in the file is relative to STR, the string-pool base. A record's fields are pool entries [field_lo, field_hi). An entry with name_off == 0xffffffff is positional; otherwise the entry carries its own field name inline, so the table is self-describing and the tag hash never has to be inverted.

Exactly one record per file is not a squadron: it is the Enumerate_Squadrons roster, whose entries map key -> squadron id for every other record. It is usually the last record but not always — in S05, S06, S07, S08, S09, S11, S13, S28 and S29 it sits elsewhere, so find it by its missing Count, not by position.

A squadron record

Five named fields, always present and always these five:

field values
Count 1 (×1082), 2 (×50), 3 (×8), 4 (×20)
SideID ADAN (745), TCAF (294), Neutral (121)
AIID 31 distinct, e.g. AI_ADAN_CraftSquadron_Veteran, AI_TCAF_BirdFlight, AI_ADAN_Fleet, AI_Structure, AI_TraceRoute
FormationID e.g. Formation_4_Bird, Formation_ADAN_Turret07_30, Formation_1_only
DisableInterval No (1129), Yes (31)

…preceded by Count member tuples of four positional entries:

(unit model, message set, n, identity)
  • unit model — 122 distinct, and they are our XBG7 mesh names: UN_f001_TCAF_DeltaSaber_T_Player, UN_e010_ADAN_Attacker_S, UN_e007_ADAN_Turret, UN_bf001_TCAF_SchlosBase.
  • message set — the squadron's radio chatter, e.g. MessageSet_Ellen, MessageSet_ADAN_plA.
  • n the number of units this tuple instantiates, filling slots of the squadron's formation. Integer 1…30, dominated by 1 (735) and 9 (197). See "What n counts" below — the old note that it is "not the _NN suffix of FormationID" was right but drew the wrong conclusion.
  • identity — 63 distinct: named pilots (ELLEN, SANDRA, RAYMOND, YOJI), ship nameplates (NP_Charon, NP_Amalthea, NP_Olympus), carrier tags (Carrier_ADAN01), cargo tags (CARGO_1), or empty.

Worked example — Stage 02, squadron TCN004, the player's own flight:

TCN004  TCAF  Count=2  DisableInterval=No  Formation_2_Rhino1  AI_TCAF_RhinoFlight
    unit=UN_f001_TCAF_DeltaSaber_T_Player  msg=MessageSet_Katana  n=1  id=Character_Player_Test
    unit=UN_f001_TCAF_DeltaSaber_T         msg=MessageSet_Ellen   n=1  id=ELLEN

Two independent self-checks, both corpus-wide

  1. len(fields) == Count * 4 + 5 — holds for 1160 of 1160 squadrons across all 28 stage tables. This is what pins the member-tuple width at 4 and the named-field count at 5; it was not assumed.
  2. Roster agreement — the Enumerate_Squadrons record's key -> id mapping agrees with the name each record resolves independently through its own squadron_off, for 1160 of 1160.

S17 has no stage\UnitGroup_S17.tbl in GP_MAIN_GAME_E.pak, matching the missing S17 stage record.

Refuted along the way

  • The record key is not the squadron id's name hash. name_hash("TCN001") = 0xd639f1a4, but the keys run 0x659aff47, 0x659b0046, 0x669b0047, … — 0 of 112 match. What the key encodes is still . Its byte structure (b0 ramping, b2 taking small signed values) looks like a packed tuple, untested.
  • Squadron ids do not use a separate string base. An earlier reading here put them at STR + 0x15 and scored "109 of 111", which looked like a near-fit but was an artefact of the uniform 7-byte id stride — it silently shifted every name by three entries (record 0 read as ADN104 instead of ADN101, and 17 TC*-named squadrons came out with SideID = ADAN). The roster record refuted it outright, and with the correct base — plain STR — agreement is 111/111. The lesson is that a 98 %-looking score on a self-consistent stride is not evidence; the roster was an independent oracle and should have been consulted first.
  • The 20-byte "section header" described in an earlier draft of stage-definition-table.md does not exist. What looked like (tag, 0, 0, count, size) was the file's last 16-byte record followed by the npool word. The corrected layout above is uniform across all 28 files, which the earlier reading was not — it failed on 9 of them.

What is still open

  • The meaning of the 4-byte record key.
  • The member tuple's third field n.
  • The interval values. DisableInterval is a per-squadron flag and 31 squadrons set it, but the interval durations, spawn triggers and arrival positions are not in this file. The next places to look are Formation_*.tbl (the formation geometry and possibly its timing) and EnumSquadron_Test.tbl, both named by the stage record.

What n counts — bounded by the formation, 1159 of 1160

n is the number of units the member tuple instantiates. The evidence is a hard, falsifiable inequality against a table UnitGroup never mentions.

FormationSet_S<NN>.tbl is the same IDXD container, and a formation record is a slot list: one named field FrameCount plus 8 positional fields per slot — FrameCount = 4 → 33 fields, 14 → 113, 30 → 241, 32 → 257, i.e. 1 + 8·FrameCount, exactly.

Resolving each squadron's FormationID to its formation (below) and comparing:

sum(n) <= FrameCount:   HOLDS 1159    VIOLATED 1    unresolved 0
   of the holders, sum(n) == FrameCount exactly:  539

Across all 28 stages, every FormationID resolves and every squadron but one fits its formation, with 46 % filling it exactly. A field unrelated to formation size would not do that.

The one violation is a debug leftover, recorded rather than swept up: S20 (a tutorial stage), Formation_1_only (FrameCount = 1) with n = 2AIID = AI_Test, msg = MessageSet_test, no identity, unit UN_e015_ADAN_Puppy_2. It is still a literal violation of the invariant.

The formation name's trailing number IS FrameCount

Formation_ADAN_Turret07_30FrameCount = 30; Formation_TCAF_ArrowHead02_32 → 32; Formation_4_Bird → 4 (leading, this family has no suffix). So the old observation that n = 9 does not match the _30 in Formation_ADAN_Turret07_30 is correct and not evidence against n being a count: 9 units occupy 9 of that formation's 30 slots.

WITHDRAWN — "FormationID does not hash into the table"

It does. The refutation below used the wrong hash function. A record key is tag_hash of the record's own name — not the pak-TOC name_hash, which lowercases and uses a different modulus. Checked directly:

tag_hash("Formation_4_Bird") = 0x22a5eeed   <- exactly the record key
name_hash("Formation_4_Bird") = 0x6286edad  <- the wrong hash, hence "0 of 16"

Formation_4_Bird is a record name in FormationSet_S02.tbl, and every record in that table keys by tag_hash of its name. Across all 28 UnitGroup_S<NN>.tbl the same holds for field keys: 6960 / 6960 are tag_hash(field name) and 0 are name_hash. So FormationID resolves by a direct hash lookup and the roster indirection is not required for it.

This is the exact trap idxd-container.md warns about, and it cost this file a spurious .

🟡 The squadron half of the original claim still stands: a squadron record's key is not tag_hash of the squadron id either (tag_hash("TCN001") = 0x760cdeaa, against keys running 0x659aff47…), because the record's name is not the squadron id. The roster maps id → record, and that indirection is real.

The original text, kept

FormationID does not hash into the table: name_hash("Formation_4_Bird") = 0x6286edad, and the record key is 0x22a5eeed — 0 of 16 resolve that way. FormationSet_S02.tbl has 17 records for 16 formations, and the extra one is a name roster, exactly like Enumerate_Squadrons here: it carries no FrameCount and its fields are (tag, name, "") triples whose tags are the record keys. Find it by its missing FrameCount, map name → key, done.

That is the same convention twice in two different tables, which is worth remembering for the next one: a table's record keys are resolved by a roster record inside the table, not by hashing the name.

🟡 What this does not settle

  • It shows sum(n) fits the formation, not that each unit is separately instantiated. "Slots consumed" and "units spawned" are indistinguishable here.
  • It does not close the 387-vs-~300 gap in roster-to-craft-link. Σn over all of Stage 02 is 387 against 296300 live craft. That count was measured mid-mission after kills, and squadrons deploy across phases, so the two are not comparable as they stand — but the earlier note rejected n = 387 as the craft count on the assumption that everything deploys at once, and that assumption is still untested.
  • The key derivation is no longer : the "second hash function" is tag_hash, recovered since this was written. Record keys and field keys are both tag_hash of their own name — 6960 / 6960 field keys across all 28 UnitGroup tables, 0 matching name_hash.

Declared × deployed — the weapon law does not generalise, and the whole exception is S14

weapon-struct-runtime established that nothing is mounted without being declared — 0 of 131, an empty cell. Running the same partition over units refutes the general form of that law.

Three vocabularies had to be separated first, because they are not the same set:

set source size
declared field names of the 31 EnumUnit records 118
deployed slot 0 of each UnitGroup member tuple 122
datasheet Generic records carrying HP 114

The datasheet count re-derives unit-datasheet-static's own 114 from a different direction, as a control. declared and deployed share one vocabulary (UN_*), overlapping on 109; the datasheet's IDs are a third naming, disjoint from both.

deployed not deployed
declared 109 9
not declared 13 1

The cell that was empty for weapons holds 13 for units. Units can be deployed without any table declaring them.

But the 13 are one coherent family, not strays — every one is UN_S14_p1_Asteroid_cmesh_* or UN_S14_p2_Asteroid_cmesh_*. Asking the other population settles it:

stage asteroid meshes deployed of those, declared
S01 8 8
S04 10 10
S05 5 5
S08 6 6
S13 4 4
S14 p1 9 0
S14 p2 4 0

33 of 33 declared everywhere else; 0 of 13 in S14. And non-asteroid deployed-but-undeclared = 0 — the entire violation is this one stage's asteroid field. So the law survives in a narrower form: every unit that is deployed is declared, except S14's asteroid collision meshes.

🟡 Why S14 differs is not settled here. It is suggestive that S14 is the stage whose asteroid table S28 borrows (see asteroid-fields), but nothing measured connects the borrow to the missing declarations — a coincidence worth recording, not a cause.

The remaining cells are small and benign: 9 declared-but-never-deployed units, and one datasheet id, Ship_, that is neither.