RTTI at vtable[-1] names the class .?AVSilphScriptPhase@silph@@ and the next class's COL at 0x820A8680 terminates the table at 113 entries. The earlier ">=200 slots" reading used a bad terminator -- scanning for a non-code word runs straight into the next vtable. Cross-check: the 147 built-in stubs use 109 distinct slots, min 0 max 110. The next vtable is .?AVSilphScriptPhaseDemo@silph@@, also 113 slots, overriding 109 of them with mostly one shared stub -- a cut-down phase. That explains why sub_822710D0 has two callers: sub_82263408 and sub_82275800 are the two classes' Update, both slot 111. Both "unread spawner callers" are placed: sub_82264058 is slot 0 of SilphScriptPhase and sub_82273910 is slot 0 of the Demo class -- the two destructors. Also records a negative: the Stage%02d construction site I proposed last iteration does not exist (no stage format string among the 43 short %d strings; no precomputed name hash anywhere), so the stage-index lead cannot be settled that way. Docs only; artefacts byte-identical.
6.8 KiB
✅ How a built-in's result reaches a condition — the operand chain
The previous iteration named the branches and stated plainly that this was still missing: "naming the branch does not by itself give the clear condition — that needs the operand chain feeding each compare." It is read now, and it closes.
⚠️ First: the corpus already had half of it, and I had written the stale file
isl-bytecode.md — which owns the opcode table — already
named ops 21–24 (push.i / push.f / pop.i / pop.f) and ops 13–18 as the
six branches. My own isl-branches.md, written one iteration
earlier, said op23 and op21 were unread. The stale file was mine.
Verified rather than assumed, from the thunks and handlers:
| op | moves | verified by |
|---|---|---|
21 push.i |
[phase+168] → deque at phase+44 |
thunk: addi r4,r30,168 / addi r3,r30,44 |
22 push.f |
[phase+184] → deque at phase+64 |
thunk: addi r4,r30,184 / addi r3,r30,64 |
23 pop.i |
→ [phase+168] |
handler 0x82271C30, only r3-offset touched is 168 |
24 pop.f |
→ [phase+184] |
handler 0x82271CB8, only r3-offset touched is 184 |
With isl-bytecode.md's operand-kind table (special[0] = [phase+164],
special[1] = [phase+168]), pop.i lands in special[1].
✅ The built-in table is a thin dispatch layer over a vtable
Each of the 147 entries is a stub, not an implementation. The stub resolves
the local[] argument base and tail-calls a fixed slot of the ScriptPhase
vtable at [phase+0]:
82272DFC addi r3, r31, 20 ; local[] base
82272E00 bl 0x82454A40 ; resolve
82272E04 lwz r11, 0(r31) ; the vptr
82272E10 lwz r11, 184(r11) ; <- fixed slot, one per built-in
82272E14 b 0x822724F0 ; mtspr CTR / bcctrl, then return 0
Measured over all 147:
| count | |
|---|---|
dispatched through a ScriptPhase vtable slot |
112 |
write [phase+164] (special[0]) inline in the stub |
17 |
write [phase+184] inline |
0 |
Every named predicate is in the vtable group — unit_state 184,
unit_alive 188, hp_pct_test 64, dist_lt 56, unit_hp_pct 256,
is_engaged 252, group_ratio_pct 196, timer_elapsed 372,
player_gauge0/1_test 396/400 — which is the control: the split is not
arbitrary, it separates engine queries from script-local bookkeeping.
✅ The vtable is at 0x820A84BC, derived self-checkingly
Not guessed from a stride — the trap this corpus already paid for. Derived from a known implementation:
isl-bytecode.mddocuments built-in 39MARK_LAST_PHASEas[phase+300] = 2.- The function
0x8226B498is exactlyaddi r11,r0,2 ; stw r11,300(r3) ; blr. - It appears as a data word at exactly one address:
0x820A8570. - Built-in 39's stub uses slot 180 → base =
0x820A8570 − 180=0x820A84BC.
The check, which was not used in the derivation: built-in 40
mark_not_last ([phase+300] = 1) uses slot 176, so the base predicts
0x820A84A8… and slot 176 holds 0x8226B4A8, which is
addi r11,r0,1 ; stw r11,300(r3) ; blr — the = 1 stub sitting immediately
after the = 2 one. Predicted and confirmed.
Third, independent: the database's own vptr_writes lists
0x820A84BC as a vtable, written at 0x82261B80.
✅ And the result lands in special[0]
unit_state is slot 184 → 0x8226ADF0. It indexes [phase+324] — the unit
array isl-builtins.md already documents — by local[4], reads the record, and
writes its answer to [phase+164] = special[0] at both its normal exit
(0x8226AEC4) and its early exit (0x8226AF48).
That completes the chain, and the phase-3 poll loop now reads end to end:
call unit_state(ADT308) ; result -> special[0]
pop.i ; special[1] <- the pushed comparand
cmp.i special[0], special[1]
beq -> 0xFEB4 ; loop back while they are equal
A built-in's return value is special[0]; the comparand is popped into
special[1]; the compare and branch do the rest. That is the shape of every
clear condition in the corpus.
🟡 Not settled
- The other 111 vtable slots are not read. The base is now known, so each is
a lookup rather than a search — but knowing where
hp_pct_testlives is not the same as having read it. - Which comparand each site pushes. The loop above compares against whatever
push.iput on the deque; recovering that per site needs the push tracked through the decode, whichisl.pydoes not do. - The 35 non-vtable built-ins, and
op21/op22's generic deque helpers (0x82175C20,0x82274BA0), were not read — only their arguments. The vtable's length.✅ SETTLED (2026-08-27): 113 slots (0…112).
✅ (2026-08-27) The class is silph::SilphScriptPhase, the vtable is 113 slots, and there is a SECOND one
The MSVC RTTI locator sits at vtable[-1]. At 0x820A84B8 it is 0x8210DDC0,
whose type descriptor 0x8289CD18 spells .?AVSilphScriptPhase@silph@@ — so
the class is named, not inferred.
The vtable ends at 0x820A867C, 113 entries. The terminator is not "a
non-code word" — a scan on that rule runs straight past the end, which is why an
earlier pass reported "≥200 slots, no non-code word in the first 200". The real
terminator is the next class's COL: 0x820A8680 holds 0x8210DD74, and a
second vtable begins at 0x820A8684.
Cross-check, independent of the RTTI: the 147 built-in stubs between them reference 109 distinct slots, minimum 0, maximum 110 — every one inside 0…112. A wrong length would have stubs pointing past the end.
The second class: silph::SilphScriptPhaseDemo
0x8210DD74 → type descriptor 0x8289CCC0 = .?AVSilphScriptPhaseDemo@silph@@,
vtable at 0x820A8684, also 113 slots. It overrides 109 of the 113, and
the overwhelming majority point at a single shared stub, 0x8226C160. So the Demo
phase implements almost none of the script surface — it keeps a handful of real
methods (slot 15 → sub_82391BA8, slot 111 Update → sub_82275800,
slot 112 → sub_8237EF08) and stubs the rest.
🔑 That explains a loose end from isl-timers: the stopwatch
advance sub_822710D0 has two callers, sub_82263408 and sub_82275800.
They are the two classes' Update methods — same slot 111, base and derived.
And both "unread spawner callers" are placed
isl-coroutine-spawner.md lists sub_82273910 and sub_82264058 as unread
callers of the spawner. They are a matched pair:
| slot | class | |
|---|---|---|
sub_82264058 |
0 | SilphScriptPhase |
sub_82273910 |
0 | SilphScriptPhaseDemo |
Slot 0 in this ABI is the scalar deleting destructor, so these are the two classes' teardown paths — not two separate mysteries. 🟡 Why a destructor reaches the spawner is not read here.