Migrates Hermes's message/channel lifecycle onto the Stadium's unified
heat/capacity economy: MSG-ALLOC/FREE-NODE and CH-ALLOC/FREE-NODE now
route entirely through stadium_admit()/stadium_evict(), replacing the
old local free-list + independent heat-field mechanism. Eight
kernel-only STADIUM-* FORTH primitives (ADMIT, EVICT, RES@, RES-PULL,
RES-PUSH, HEAT@, HEAT!, WORD-HEAT), VM.stadium_vm_id threaded through
all three vm_core.c dispatch sites (replacing item 4.1's hardcoded
vm_uuid_hera()), and the stadium_owner[idx] fix so evict-credit lands
in the VM that actually admitted a patron, not whoever owned cell 0.
This session's own contribution, on top of that pre-existing
implementation: found and fixed two bugs blocking the item's own K≡1.0
conservation self-check (HERMES-K was reading 0, not 65536):
- Q.SLOT admission-heat fix (capsules/hermes/init.4th): MSG-SEND/
CH-ACCEPT admitted with Q.1 (the entire fleet-wide "1.0" unit) per
item, a leftover from before the Stadium migration when each
message/channel had its own unconstrained heat field. Instantly
drained the shared, finite reservoir.
- Reservoir floor for word-execution admission (stadium_words.c):
stadium_word_dispatch() (item 4.1) pulls STADIUM_WORD_HEAT_QUANTUM on
every word dispatch, not just first admission -- exhausts a VM's
entire reservoir in ~32 dispatches, starving any application-level
economy sharing that VM's reservoir before it gets a chance to pull
anything. word_dispatch_pull() now clamps word-execution's own pulls
to leave a Q48_ONE/3 floor (same fair-share figure COMMON-CH's own
floor already uses); application-level pulls are unaffected.
- STADIUM-WORD-HEAT primitive + stadium_words_resident_heat(): the
floor deliberately leaves word-execution residents holding real
heat, invisible to HERMES-K's original formula (MSG+CH+reservoir,
no term for word patrons). Adding this term closes K to exactly
65536 on all three architectures.
Also rules on two open scope questions in FABRIC.md: MBR-ALLOC/
MBR-FREE-NODE stay off the Stadium (membership records have no heat
field, never did -- the acceptance bullet's inclusion of them was a
completeness gesture predating a check of the actual layout), and
records the effort number (12 implementation files, +759/-120 lines).
Verified: all three architectures boot clean, full self-test passes,
Stadium conservation closes exactly (resident_sum + reservoir =
Q48_ONE) at both the C/Stadium level and the FORTH-level HERMES-K
check.
Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>
Punch list §25 item 4.1a complete.
New prerequisite item, found while scoping 4.2: no quota-granting mechanism
existed at all. Adds stadium_grant_quota(new_vm_id, from_vm_id) -- a
one-time initial grant at birth, distinct from item 1.3's still-unbuilt
recurring capacity-transfer arbitration. Splits the donor's free list evenly
by cell count, reassigns stadium_owner[] for every moved cell, and grants
the new VM a fresh Q48_ONE reservoir (not a split of the donor's -- per-VM
conservation, same pattern as Hera's own boot grant). Wired into every baby
VM's birth in capsule_birth.c.
Verified via a boot-time self-test in kernel_main.c using a synthetic
identity (not the real UUID pool, not a real capsule birth -- item 0.1's
Hera-alone pruning stays intact). All three architectures booted to ok> with
identical output: grant OK, Hera reservoir=0 (already fully committed to
resident words, correctly unchanged), test-vm reservoir=65536 (fresh
Q48_ONE). dict_hash identical across all three and unchanged from item 4.1's
baseline (0x3d4e1daf289da94f) -- confirms no dictionary word was added.
Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>
Punch list §25 item 4.1 complete.
Replaces the round-robin hotwords cache with Stadium density-ranked
admission/eviction on the kernel side, via the §17.7 reservoir mechanism and a
kernel-side word_id -> cell_index map (no DictEntry change, dict_hash
untouched). Adds stadium_birth_hera() to close the cell-0 panic hazard,
STADIUM_WORD_HEAT_QUANTUM/STADIUM_WORD_COOL_RATE_Q48 Kconfig knobs (flagged
untuned), and a stadium_word_forget() FORGET coherence hook to close a
recycled-word_id aliasing gap.
Verified: all five hotwords_cache_* call sites in dictionary_management.c
bypassed under __STARKERNEL__; word dispatch feeds the Stadium at all three
vm_core.c physics_execution_heat_increment() sites; hosted make unaffected;
all three architectures booted to ok> with matching dict_hash
(0x3d4e1daf289da94f) and matching conservation stats (promotions=354
evictions=0, resident_sum=65536 reservoir=0 sum=65536).
Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>
Punch list §25 item 3.2 complete.
stadium_boot_init() (src/starkernel/vm/stadium.c) sizes the global
cell array at boot from a real memory-budget query rather than a
hardcoded count: pmm_get_stats().free_bytes at the point of
allocation, times the new STADIUM_MEMORY_PERCENT Kconfig symbol
(default 1%), rounded down to whole 64-byte cells. Matches §17.6's
position (b) literally. Also allocates the header/continuation
discriminator bitmap item 3.1 declared but did not allocate. Both are
kmalloc'd and explicitly zero-filled (kmalloc does not zero).
Called from kernel_main.c immediately before sk_vm_bootstrap_parity(),
i.e. before any VM exists (§6). Failure is soft -- logs and continues,
does not halt boot -- matching the existing precedent one line below
it (VM bootstrap parity failure does the same).
Added a "Stadium: N cells (M KB)" boot console line at the allocation
site so the acceptance logs are evidence the array was actually
allocated, not just that the kernel still boots -- the same blind spot
item 3.1's uncompiled-header gap exposed.
Verified: three-architecture boot (amd64, aarch64, riscv64), all
reaching ok> with identical dict_hash=0x3d4e1daf289da94f matching the
item-3.1 baseline, and the Stadium boot line confirmed present in all
three serial logs (amd64: 74234 cells/4639 KB, aarch64: 161329
cells/10083 KB, riscv64: 76122 cells/4757 KB).
Not built here, reported per §25.0 rule 3: per-VM free lists (§22.3)
-- granted when Hera assigns quota, not this item's scope.
Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>
Adds a one-time boot diagnostic in kernel_main.c, right before sk_repl()
is entered: bounded wait for 3 real heartbeat ticks, then prints tick
count, TIME-TRUST, and variance. Needed because printing immediately
after apic_timer_start() (as first tried) measured 1 tick on amd64 and
0 on riscv64 -- not evidence the heartbeat doesn't work, just that
almost no wall time elapses between arming the timer and that point in
boot; report it honestly rather than let it stand as a false negative.
Verified this session (logs/20260804-001727, -001805, -001850,
-001948, -002021):
- All three architectures boot to ok>.
- Tick count non-zero: amd64 4, riscv64 3, aarch64 3.
- riscv64: trust=Q48_ONE exactly, variance=0 -- architecturally
invariant counter, as designed.
- amd64: dict_hash=0x3d4e1daf289da94f, identical to the pre-item-0.8
baseline (logs/20260803-231322) -- unchanged output, satisfying the
GAP-A1 control.
- Two consecutive amd64 boots produced the identical dict hash --
reproducible, no wall-clock leakage into patron state.
Phase 0 (Substrate) is complete.
Punch list §25 item 0.10 complete.
Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>
kernel_main on riscv64 ran directly on EDK2's UEFI boot-time stack, with
no dedicated stack switch — amd64 has always had a kernel_entry.S
trampoline for exactly this reason (its own comment: "the FORTH
interpreter + DOE experiment loop can easily exceed that depth").
aarch64 happens to get away without one because its firmware's default
stack is apparently larger, but that was never a guarantee.
On riscv64 the VM bootstrap's call depth (27 word-registration modules
-> physics/SSM init -> Tripod capsule birth) overflowed that small
stack, corrupting a return address and producing a wild jump / page
fault right after vm_init_with_host() returned — reproduced consistently
across the 2026-08-01 DoE campaign logs.
- src/starkernel/arch/riscv64/kernel_entry.S (new): RISC-V stack-switch
trampoline mirroring amd64's, giving the kernel a dedicated 2 MiB BSS
stack before anything deep runs.
- kernel_main.c: riscv64 now builds kernel_main_impl (invoked via the
trampoline) instead of kernel_main directly, same pattern as amd64.
- Makefile.starkernel: wires the new file into the riscv64 build.
- uefi_loader.c: RAW_LOG() was silently a no-op on every non-amd64 arch;
added a real raw-UART writer for riscv64 (QEMU virt's uart8250 at MMIO
0x10000000) so existing loader diagnostics actually produce output.
Verified: all three architectures boot clean to [Hera] ok> in the
required order (amd64, aarch64, riscv64); logs and DoE CSVs from these
runs included.
Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>