Files
LithosAnanake/FABRIC-3.md
T
Robert Allan JamesandClaude Sonnet 5 0a65dd7ace FABRIC-3.md: scope ACLKEY (console/VM binding), capture v2.0.0 scope expansion
Second node in the iterative Q&A pass: traced acl_mode/acl_allow/acl_pinned
to DictEntry (per-word, not per-VM) before proposing anything, confirming
"reuse ACL" could only ever mean reuse the pattern, not the data. Decided:
a new VMIdentity type in its own header (mirroring the existing VMUuid
precedent, not another inline VM struct field), Zuse keeps an always-allowed
but explicit-acknowledgment override, and console/VM binding stays freely
retargetable (no one-way pin).

Also captured a scope expansion surfaced during this pass: identity is a
general per-VM primitive needed by Hera/Hermes/Artemis/Console too, not
just user thumbdrives, plus two new standing items (a full codebase
scavenging audit, and v2.0.0 as the eventual release target) in new §D.5.

Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01U14ET9CWAtbQMbYqomKgXd
2026-08-27 11:19:48 -04:00

113 KiB
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FABRIC-3.md — the Stadium, continued again

Status: Living working document, opened 2026-08-25 as the successor to FABRIC-2.md (now closed/archival — see its own header). This document does not repeat FABRIC-2.md's design argument or history; it restates only outcomes, with pointers back to the section that derived them. Read FABRIC.md for the original "why," FABRIC-2.md for everything derived through 2026-08-25, this document for what's left as of that date onward.

Provenance. Everything in Section A below is a full, non-sampled carry-forward of every open (- [ ]) item in FABRIC-2.md as of 2026-08-25 — 51 items, confirmed by grep -c '^- \[ \]' FABRIC-2.md, none dropped (Section A itself holds 49: the other 2, FABRIC-2.md §F.3's own two checkbox lines, were pure summaries cross-referencing items already listed individually elsewhere — 4.4s/1.11/4.3/§17.4 and 5.1/ACL-RWT re-measurement, both of which are carried forward as their own individual items above — not distinct content, confirmed by diffing item text programmatically before writing this document, not assumed). Extracted mechanically (a script pulling each checkbox item's own text, stopping at the first blank line rather than the next checkbox, to avoid pulling in unrelated already-resolved narrative that happened to sit between two open items in the source document) and spot-checked against the original. Item numbers/labels are carried forward unchanged, for traceability — this is not a renumbering or a re-prioritization. Section groupings match FABRIC-2.md's own (documentation debt, xHCI WRITE(10), Milestone 39 punch lists, etc.) — items are relocated, not reorganized.

How to use this document going forward. New findings, new punch-list items, and new decisions get added here, not to FABRIC-2.md. Follow the same discipline FABRIC-2.md §(intro) established for how work gets picked up, closed, and recorded.


A. Carried forward from FABRIC-2.md (51 items, all still open as of 2026-08-25)

From FABRIC-2.md §A — Blocked or scoped, not started

  • 1.11 — Dirty-event granularity. Leaning region-based. Blocked on item 4.3 — settled as part of the console migration, not speculatively before it. Refs (FABRIC.md): §17.5, §23.2, §23.4 #1.

  • 4.3 — Console. Umbrella item; settles 1.11 as part of the work. Nearly everything under it (4.3.14.3.7f, 4.44.4ac) is done — the parent stays open only because 4.4s below is still blocked and nothing has formally closed the umbrella. Refs (FABRIC.md): §17.5, §27.

  • 4.4s — (user) prompt segment. Scoped, blocked, not started. Extends 4.4's prompt format. Refs (FABRIC.md): §27.8, 4.4.

  • 5.1 — Re-run the DoE on the new substrate. A green POST suite is not evidence that determinism holds under the Stadium migration — needs its own campaign. Not started.

From FABRIC-2.md §D — Design questions still genuinely open

  • §17.4 — the framebuffer utility's internal heat/decay dynamics are undesigned. Explicitly "Open, deferred": not a Stadium patron, but what physics (if any) governs it internally was never designed. Not blocking anything. Blocked on item 1.11 specifically (dirty-event granularity), not "the framebuffer work" in general — see FABRIC-2.md §D's own 2026-08-13 refinement of this item before assuming it's ripe.

From FABRIC-2.md §E — Documentation debt

  • Already done — stale carry-forward, closed 2026-08-26. This item was never marked complete when the actual work concluded. FABRIC-2.md Sections M through T (2026-08-19 to 2026-08-21) already re-ran this measurement — and in the process found the original "ACL-RWT" name itself was wrong: the Rolling-Window-of-Truth mechanism it was named after was dead code, removed 2026-07-08 (ACL-RECHECK-RW was never reachable — acl_recheck() only ever looks up the 11-char ACL-RECHECK, never the 14-char -RW variant). What the original campaign actually measured was the live ACL-TTL mechanism under a misleading name. Final, accepted result (FABRIC-2.md §T): +0.0603% ACL-TTL enforcement overhead, architecture-independent (identical across amd64/aarch64/riscv64), fully deterministic (CV=0.000%) — see also memory project_acl_ttl_overhead_final.md. No new campaign run here; this entry corrects the bookkeeping, not the measurement.

From FABRIC-2.md §J — Maintainability sweep (2026-08-18)

  • docs/lithosananke/ROADMAP.md and M7.1.md — stale Branch: lithosananke (no such branch exists post-split), M7.1.md's "Status: Design Complete" (shipped and live, not just designed), ROADMAP.md's self-contradiction (M8 marked OBSOLETE in one place, still a live success criterion in another), and its stale "AHCI driver" claim for M9 (real implementation is virtio_blk.c) — not fixed, flagged.

  • Top-level ROADMAP.md (StarForth-era, "Phase 0 Complete... Phase 1 Starting," dated 2025-12-14) — badly stale, no historical/superseded banner to warn a reader. Not fixed.

  • docs/03-architecture/word-acl/DESIGN.md says ACL Phase 7 (LithosAnanke kernel parity) is still "remaining" — direct contradiction with .claude/CLAUDE.md, which states Phase 7 is independently verified complete. Not fixed.

  • Confirmed accurate, not stale (2026-08-26): VM-FLEET-ATTRACTOR-DESIGN-20260705.md's claim that doe-campaign.4th is "broken and being superseded." Live-ran SMOKE-CAMPAIGN from the current capsule (amd64) — it completes without error and correctly conserves fleet heat (VM-PHYSICS: conserved=CONSERVED, fleet_heat_sum=65536). Initially read that as contradicting the doc's claim; Captain Bob corrected this directly — it's broken. "Doesn't crash" and "runs" are not the same claim: the doc's actual argument is that the capsule has no real controlled-experimental-factor mechanism (no manual heat-injection point under the current design, so it cannot drive the fleet through controlled scenarios the way a DoE campaign needs to), a methodological gap a clean execution trace doesn't surface or disprove. Doc's claim stands; not touched.

  • Tracked (2026-08-26) — real proof-modeling gap, not just stale prose, so not fixed here. Confirmed by reading StarForth_Loop4_Pipeline.thy's own comment (lines 127137): pipeline_metrics_state's pm_last_accuracy_num/pm_last_accuracy_den fraction pair doesn't correspond to anything in the real C struct — include/vm.h's PipelineGlobalMetrics has a single double last_checked_accuracy field, no num/den pair anywhere. The .thy file's own comment already scopes the real fix correctly: "a full field-level pass over pipeline_metrics_state is its own separate task" — matches this project's standing caution that each remaining Isabelle gap needs its own subsystem model, not a documentation-sprint patch. The punch-list ask was tracking this outside the buried .thy comment, which it now has here — the actual re-model stays unattempted, on purpose.

From FABRIC-2.md §X, Milestone 2 — USB hardware stack

  • Decide and implement where the hotplug event surfaces to the rest of the kernel — likely a callback registered by whatever owns the home-blocks logic, not xHCI code calling into block_subsystem.c directly (matching the existing "kernel/Artemis decoupling boundary" pattern already documented in block_subsystem.c). Partially addressed by Milestone 2h's blkio_usb.c/connect-time attach wiring (FABRIC-2.md, 2026-08-25) — worth re-checking whether that closes this item outright before treating it as still fully open.

  • Implement CBW/data/CSW for SCSI WRITE(10) — this is where the earlier "read/write, unquestionable" requirement actually gets satisfied. Still the single biggest functional gap in the xHCI driver — blocks writing to a real USB thumb drive at all (blkio_usb.c is read-only today specifically because of this).

  • Implement basic error/stall recovery (CSW failure status, endpoint stall clear) — at minimum enough to not wedge the controller on a single bad transfer.

From FABRIC-2.md §X, Milestone 3 — Block subsystem extensions

  • Implement the CA-signed-cert verification path (Milestone 6 dependency — the cert chain validator doesn't exist yet either).

  • Implement the first-touch allocation function: given a verified identity pubkey and a requested block count, either read an existing range from the drive's map or claim a new one at g.total_user_lbn and write it back. (Single-block relocation itself — the mechanism this would allocate ranges for — is done: blk_subsys_relocate_block()/ RELOCATE-BLOCK, FABRIC-2.md, commit 36d832f. This item is about the identity→range allocation that decides what to relocate blocks into*, still unbuilt.)*

  • Design the on-drive block-map format (Section U item 4) — what it records (block ranges claimed? individual block liveness? something else), how it's serialized.

  • Implement writing the block-map to a drive.

  • Implement reading/validating the block-map from a drive on insertion.

  • Design the migration state machine (Section U item 5) — states, transition triggers. Session direction, 2026-08-25: ACL manages when to relocate (capacity pressure, or a compudynamics heat/cold signal); migration itself is expected to be rare, not routine. The physics_hotwords_cache.c-reuse question is settled differently than originally framed — see this document's new §B below (Stadium unification), which reframes block/word placement as a compudynamics.c-driven decision generically, not a physics_hotwords_cache.c (DictEntry*-hardcoded) reuse question specifically.

  • Decide and implement unclean-removal handling (Section U's explicitly flagged open question — never answered) — at minimum, detect a mid-flush disconnect via Milestone 2e's disconnect signal and decide what state that leaves affected blocks in.

From FABRIC-2.md §X, Milestone 4 — Drive/credential security

  • Designed (2026-08-26), not yet implemented — Phase 8 kickoff. Mirrors two existing precedents exactly: CAPSULE_MAGIC_PACK's bit-packed magic (include/starkernel/capsule.h) and blk_volume_meta_t's magic+version+fields+pad-to-4096 structural convention (include/block_subsystem.h). Lives at the first 4KiB devblock of the GPT metadata partition (the ~1GB partition decided 2026-08-22) — the header format doesn't depend on the still-missing GPT parser; it's just what gets written starting at that partition's first devblock once something can locate it. Deliberately narrow: identifies/authenticates the drive only, does not invent the block-map or credential/cert formats (both separate, still-open items below) — reserves offset/size pointers to where they'll live instead of embedding them.

    #define HOMEBLOCKS_SIG_MAGIC   0x4248414CULL /* 'LAHB' -- LithosAnanke Home Blocks,
                                                    * same little-endian ASCII packing as
                                                    * CAPSULE_DESC_MAGIC's 'CAPS' */
    #define HOMEBLOCKS_SIG_VERSION_0 0
    
    #define HOMEBLOCKS_SIG_PACK(ver) \
        (HOMEBLOCKS_SIG_MAGIC | ((uint64_t)(ver) << 32))
    #define HOMEBLOCKS_SIG_GET_MAGIC(m)   ((uint32_t)((m) & 0xFFFFFFFFULL))
    #define HOMEBLOCKS_SIG_GET_VERSION(m) ((uint8_t)(((m) >> 32) & 0xFF))
    
    typedef struct {
        uint64_t magic;              /* HOMEBLOCKS_SIG_PACK(...) */
        uint8_t  drive_uuid[16];     /* unique per-mint instance id -- Phase 8 mints multiple
                                      * distinct drives, needs something to tell them apart */
        uint64_t minted_time_ns;
        uint64_t metadata_devblocks; /* size of this GPT metadata partition, in 4KiB devblocks
                                      * -- sanity/bounds check against the GPT entry once a
                                      * parser exists */
        uint32_t cert_offset;        /* devblock offset within this partition where the
                                      * CA-signed cert blob starts; 0 = not yet minted */
        uint32_t cert_devblocks;
        uint32_t blockmap_offset;    /* devblock offset where the block-map (Milestone 3,
                                      * format still undesigned) starts */
        uint32_t blockmap_devblocks;
        uint64_t hdr_crc;            /* REAL from day one, not a placeholder like
                                      * blk_volume_meta_t's "unused yet" hdr_crc -- this
                                      * header's whole job is gating a warn-and-refuse
                                      * security check below, so the crc has to actually work */
        uint8_t  _pad[4096 - 64];    /* pad to one devblock; 64 = sum of the fields above */
    } homeblocks_sig_t;
    

    cert_offset/cert_devblocks are 0 on first design pass — the real CA hasn't been generated yet (Milestone 6), so this reserves the shape of where a cert will attach without committing to a cert format that doesn't exist. Same reasoning for blockmap_offset/blockmap_devblocks against Milestone 3's still-open block-map design. Implemented (2026-08-26): include/starkernel/homeblocks_sig.hhomeblocks_sig_t + HOMEBLOCKS_SIG_PACK/_GET_MAGIC/_GET_VERSION macros, a C99 compile-time size assertion (same discipline stadium.h's own header-size checks use), and the identical field layout shown above. Verified standalone: sizeof(homeblocks_sig_t) == 4096, compiles clean under -std=c99 -Wall -Wextra -Werror. Not yet consumed by any code — nothing in the block subsystem or xHCI driver reads or writes it yet, so no functional kernel change and no 3-arch acceptance boot needed for this step; that starts with the signature-check implementation, the next punch-list item below.

  • Implemented (2026-08-26): the check function itself, real and complete — not yet wired to any write path. include/starkernel/homeblocks_sig.h + src/starkernel/homeblocks_sig.c: homeblocks_sig_check(dev, sig_start_fblock, out_sig) reads the 4 consecutive 1KB blkio forth-blocks the 4KB header spans, verifies magic → version → CRC-64 in order, returns one of HOMEBLOCKS_SIG_OK/_BLANK/_BAD_VERSION/ _BAD_CRC/_READ_ERROR. Reuses block_subsystem.c's existing CRC-64/ISO (compute_crc64, previously static/file-local, now exposed) rather than a second CRC implementation — same algorithm already proven via per-block checksums. Takes the header's starting block as a plain parameter rather than resolving it internally: this function verifies a signature given a location; finding that location (GPT-partition-relative, once a parser exists) stays the caller's job, not invented here.

    Verified against the actual shipped code, not a reimplementation: a standalone host test links the real homeblocks_sig.c against a fake in-memory blkio_dev and exercises all four outcomes — blank media → BLANK, a correctly-minted header → OK (round-trips drive_uuid/minted_time_ns correctly), a flipped CRC → BAD_CRC, an unrecognized version → BAD_VERSION. All four pass. A full QEMU-hotplug live test isn't proportionate yet — nothing calls this function from the live kernel path (deliberately; wiring it into the attach path is the next item below), so a live boot check has nothing to exercise. Clean zero-warning compile and clean boot on all three architectures confirms no build/link regression from exposing compute_crc64 and adding the new source file to every kernel build.

  • Implemented (2026-08-26): the "warn" half, live and wired. Wired into sk_repl_idle()'s USB hotplug attach handler (repl.c), right between blkio_usb_open_msc() succeeding and blk_subsys_attach_device() — calls homeblocks_sig_check(&usb_blk_dev, 0, &sig) and logs a distinct message per outcome (recognized / blank-or-foreign / bad-version / bad-crc / read-error).

    The "refuse" half is deliberately not implemented — there is nothing real to gate yet. blkio_usb.c has no SCSI WRITE(10) support at all (Milestone 2's biggest open item), so there is no write path today to refuse; the only thing attach currently enables is read-only access, which is also the general-purpose USB block I/O path this repo already relies on for unrelated testing, not exclusively a home-blocks identity workflow. Refusing attach on blank media would have broken that legitimate use without protecting anything real — building that gate now would be enforcement with no live consumer, the same "don't build ahead of a real caller" reasoning EXPIRE's deferral used. Refuse belongs on the write path once WRITE(10) exists to give it something to gate against.

    sig_start_fblock is hardcoded to 0 at the call site — correct for today's unpartitioned raw test/real media (no GPT parser exists yet), explicitly flagged in the code comment as the one place that will need to change to a real GPT-partition-relative lookup once that parser lands, isolated from homeblocks_sig.c's own location-agnostic check logic.

    Verified live, not just compiled: hot-attached disk/usb-thumbdrive-test.img (blank media, no LAHB magic) through a running amd64 instance's QMP socket (blockdev-add + device_add usb-storage,bus=xhci0.0) — captured exactly 4 real TUR+READ10 BOT cycles (matching the header's 4 forth-block span) followed by xhci: USB drive not recognized (blank or foreign media) -- read-only general use only, then normal attach completing successfully afterward (no regression — no MSC block-subsystem attach failed). Conservation intact, no panic. Clean zero-warning compile and clean boot on all three architectures.

  • Resolved (2026-08-26): reuse acl_pinned directly, no new flag needed. The open question assumed credential data "isn't a dictionary word" — but the design already chosen for it (ZUSE-CERT-LO/HI, ACL-CA-KEY-LO/HI) are CONSTANT words, i.e. real DictEntrys. acl_pinned's enforcement is more general than assumed: vm_create_word() (dictionary_management.c:394-404) — the single choke point every word-defining construct goes through — unconditionally refuses to let anything shadow a pinned name ("Pin is permanent: no word may shadow a pinned entry — ever, by anyone"), a real general redefinition guard, not just an ACL-mode-change lock. zuse.4th's ACL-ZUSE-BOOT already pins both cert constants today — the mechanism is already wired for this.

    Real gap surfaced along the way, not yet fixed: ACL-ZUSE-BOOT self-activates and pins ZUSE-CERT-LO/HI unconditionally on every boot — before any legitimate minting step could ever run, permanently locking in the 0 placeholder on the very first boot. The boot sequence needs to distinguish "already minted, pin it" from "not yet minted, don't pin yet" before minting can work at all.

    This directly shaped the next design pass (2026-08-26, Captain Bob): a dedicated disk/zuse.img QEMU test thumbdrive, "bleachable" back to pristine/unminted state for repeated first-boot testing; a one-time first-boot mint-Zuse flow (mint → write real cert → blow the fuse → then pin, resolving the gap above); a separate, ongoing S" name" MINT word for an authenticated Zuse session to mint additional regular users; and a Zuse recovery path, explicitly flagged as unresolved and risky if rushed — not to be designed casually, since the earlier "no software recovery, mint a new one" rule existed specifically to close a hole a careless recovery path could reopen.

    First piece implemented (2026-08-26): the zuse.img bleach mechanism. disk/zuse.img (64MB, blank, matching the existing USB-fixture convention exactly — see disk/README.md) + scripts/bleach_zuse_img.sh (idempotent reset back to blank). Verified live: hot-attached via QMP (same method as the warn-and-refuse verification above) — reads back as HOMEBLOCKS_SIG_BLANK (xhci: USB drive not recognized (blank or foreign media)), correctly simulating a genuine first boot. Deliberately flat/raw, not GPT-partitioned, matching homeblocks_sig_check()'s current sig_start_fblock=0 call site — both move to a real GPT-partition-relative offset together once a parser exists, not attempted here. No kernel code touched this step (host-side test tooling only), so no 3-arch acceptance boot needed — single live amd64 QMP-hotplug confirmation is the right verification tier.

    Correction (Captain Bob, 2026-08-26): drives are not bound to any particular size. 64MB was only ever this fixture's arbitrary test-convenience size, matching usb-thumbdrive-test.img's existing BOT-driver-testing precedent — never a real-world constraint. Audited for anywhere this might have implied otherwise: the actual format (homeblocks_sig_t) already carries its own metadata_devblocks field and hardcodes no size anywhere, confirmed clean. scripts/bleach_zuse_img.sh gained a --size-mb override so this was never a hidden assumption baked into the tooling either. The earlier project_usb_thumbdrive_gpt_layout.md memory's "16GB reference size" phrasing (already hedged as tentative, but risked reading as a target) corrected to state the point explicitly — the GPT layout's design point is the proportions (small metadata partition, everything else block storage), not any absolute size.

    Still open, not attempted: the mint-then-pin boot-sequence fix itself, the MINT word, and the Zuse recovery path.

    Correction, supersedes the "reuse acl_pinned" resolution above (2026-08-26): a pinned CONSTANT is not actually tamper-proof. ACL-PIN/acl_pinned only guards against redefinitionvm_create_word()'s pin check blocks a second : ZUSE-CERT-LO ... ;, but nothing stops ' ZUSE-CERT-LO >BODY ! from overwriting the same word's data field in place. A CONSTANT's value lives in its data field, so the earlier design left the cert mutable from FORTH despite being "pinned." Found while starting the mint-then-pin boot-sequence fix itself; fixing that gap came first since building a real mint flow on top of a tamperable store would just re-open the hole later.

    Fixed (2026-08-26): moved cert storage out of the dictionary entirely. New VM struct fields (include/vm.h): zuse_cert_lo/zuse_cert_hi (the cert value) + zuse_cert_installed (one-time fuse bit). New vm_zuse_cert_install(vm, lo, hi) (src/vm.c) — C-only, no FORTH word wraps it, returns -1 on a second call rather than silently re-installing (a second call is a caller bug, not a runtime condition to recover from). No FORTH store word exists or should exist for these fields, closing the >BODY path structurally rather than by convention. Three new read-only C primitives (src/word_source/starforth_words.c, same shape as the existing HEARTBEAT-TICKS@): ZUSE-CERT-LO@, ZUSE-CERT-HI@, ZUSE-CERT-INSTALLED?. capsules/zuse.4th's old ZUSE-CERT-LO/HI CONSTANT words (and ACL-ZUSE-BOOT's two now-pointless ACL-PIN calls on them) deleted outright rather than left as dead/insecure scaffolding — mkcapsule --lint clean (31/31) after the edit. vm_zuse_cert_install() has no caller yet: the real mint flow still doesn't exist (Milestone 6 CA + the MINT word are both still open), and calling it with a placeholder value would just be a stub wearing the shape of a fix — so this stays an honest, complete slice (storage + read accessors) with the actual mint-then- pin sequence still explicitly open, not faked. Verified: hosted make build clean, zero warnings; clean boot to ok> on all three architectures (amd64/aarch64/riscv64), Stadium conservation intact (43691/21845/65536) on all three, no panics or guest errors. ACL is opt-in (init.4th's S" ACL.4th" EXEC commented out by default) so the new words weren't exercised live from the REPL this pass — compile/lint/boot verification only.

    MINT word design, picked up 2026-08-26. Before scoping MINT itself, found a real conflict with an existing, deliberate decision: include/starkernel/ed25519.h is verify- only by design — "this kernel never signs or generates keys (no entropy source to do so safely anyway); signing happens in the host-side build tool" (FABRIC-2.md, Milestone 6, 2026-08-22). But the vision for MINT (§D below) is an interactive, on-device S" name" MINT word — an authenticated Zuse session signing a new user's cert live, at runtime. A kernel that structurally never signs can't do that as envisioned. Raised directly; decided (Captain Bob, 2026-08-26): give the kernel a real signing capability rather than reshape MINT around verify-only. This reopens the prior "no entropy source" constraint deliberately, not by accident.

    Phase A — virtio-rng, done 2026-08-26. Checked what entropy is actually available before choosing a design: include/starkernel/vm_uuid.h already found, for VM UUIDs, that amd64 has RDRAND and riscv64 has the Zkr extension, but QEMU's aarch64 CPU models (including max) expose neither RNDR nor any RNG property at all — confirmed directly against QEMU 10.2.1. That's why VM UUIDs use a deterministic PRNG uniformly instead of a per-arch split; that same choice is not safe for Ed25519 keygen — a seed drawn from a known value makes the private key predictable. Decided: add a virtio-rng device instead of a per-arch RDRAND/Zkr split with a weaker aarch64 fallback — QEMU supplies real host entropy identically on all three arches, closing the aarch64 gap directly (QEMU-only; real hardware at Milestone 8 needs a real per-arch RNG driver, a separate later problem).

    New include/starkernel/virtio_rng.h + src/starkernel/virtio/virtio_rng.c, transport plumbing (PCI capability walk, common-cfg feature negotiation, split virtqueue) mirroring the existing virtio_blk.c exactly — same device family, same quirks. Simpler shape than block: one virtqueue, one device-writable descriptor, no request header or status byte (the entropy device has none); virtio_rng_get_bytes() loops internally since the device may return fewer bytes than requested per round. -object rng-random,id=rng0,filename=/dev/urandom

    • -device virtio-rng-pci added to all three arches' QEMU invocations (Makefile.starkernel). Wired into boot (kernel_main.c, right after the existing virtio_blk_find_artemis() call site, same graceful-noop-on-absence precedent).

    Verified live, not just compiled: a temporary probe (written, run once, captured, reverted — per this project's standing probe convention) pulled 16 real bytes through the full request/notify/poll/used-ring round trip on all three architectures and printed them: amd64 be9223909b86a8ccbfff705ccae2caa6, aarch64 861487df65a6d7a26b2c9c34f5ff96ee, riscv64 fec51d80e8c169a35aad9d908eab2f39 — three different values, confirming real entropy, not a stale or repeated buffer. Probe reverted; permanent code is just the driver + init call. A second, final 3-arch acceptance boot ran against that reverted code (not the probe build) to confirm the shipped state itself is clean. Clean zero-warning compile and clean boot to ok> on all three architectures, Stadium conservation intact (43691/21845/65536), no panics or guest errors on either pass.

    Still open: Phase B (real Ed25519 keygen/signing, seeded from this entropy) and Phase C (the MINT word itself, cert format, and whether Zuse's own keypair needs to chain to the Milestone 6 offline root CA or is a self-sovereign instance-local root of trust).

    Phase B — real Ed25519 keygen/signing, done 2026-08-26. Extended include/starkernel/ed25519.h/src/starkernel/crypto/ed25519.c (previously verify-only) with ed25519_keygen(seed, pubkey_out) and ed25519_sign(seed, msg, msg_len, sig_out), per RFC 8032 §5.1.5/5.1.6, reusing every point-arithmetic primitive verify already had (scalar_mult, point_compress, the base-point constants) — no new curve code, only the seed-expansion/clamping and per-message nonce derivation verify never needed. Signing is deterministic (nonce derived from seed+message, not fresh randomness): only keygen ever touches entropy, via a caller-supplied seed (virtio_rng_get_bytes(), Phase A) — keygen itself still generates nothing and trusts the caller for randomness quality, matching this file's original design philosophy exactly.

    New scalar_muladd() (scalar25519.c/.h) for signing's S = (k*a + r) mod L step, the one piece of scalar arithmetic verify never needed (verify only ever reduced or compared, never multiplied scalars). Schoolbook 256×256-bit multiply into a u128 wide accumulator with exactly one final carry-propagation pass — deliberately the same shape as fe25519.c's existing field multiply, because that file's own history records a real bug from trying to carry mid-accumulation instead of in one final pass; structurally can't repeat that mistake this way. Reduces the result via the existing, already-proven scalar_reduce512() rather than writing new modular-reduction logic.

    Verified against an independent implementation, not self-consistency — this project's own standing lesson (two real, invisible-by-inspection bugs in the original from-scratch field arithmetic, an off-by-one-hex-digit hand-transcribed SHA-512 vector) means a passing self-check proves nothing on its own. Built a throwaway host test harness (compiled, run, discarded — the crypto files have no __STARKERNEL__ gate, so they link as an ordinary Linux binary) against Python's cryptography library (OpenSSL-backed). Six trials — five random seed/message pairs (message lengths 1, 32, 255, 1000 bytes) plus the empty-message case — every one produced a byte-for-byte identical public key and signature to the independent implementation, not just a signature this codebase's own verify accepted. Verified on-target too: clean zero-warning compile of the crypto files on all three architectures, and a full 3-arch QEMU acceptance boot (amd64/aarch64/riscv64) — all clean to ok>, Stadium conservation intact, no panics or guest errors. Nothing calls ed25519_keygen()/ed25519_sign() from the live kernel path yet (Phase C's job); this pass is compile/link/boot-regression verification for the crypto library itself.

    Still open: Phase C — the MINT word itself, cert format, and whether Zuse's own keypair needs to chain to the Milestone 6 offline root CA or is a self-sovereign instance-local root of trust.

    Phase C scoping, 2026-08-26. Three findings before any code:

    1. Resolved, not a real conflict: Zuse doesn't need Milestone 6's CA. That CA chain is specifically for capsule/code signing (root → snakeoil intermediate → per-capsule Ed25519 signatures verified at capsule-load time) — a different trust domain from user identity. The vision's own framing ("we mint one and only one Zuse user and blow a fuse ... the only way around is a new system") already implies Zuse's authority comes from being the unique first-boot mint on this instance, not from an external chain. Decided: Zuse is a self-sovereign, instance-local root of trust, keypair generated on-device from real entropy (Phase A+B). Regular users, minted later via MINT, get certs signed by Zuse's key, not the Milestone 6 CA — two independent PKI domains.
    2. A real gap in this session's own earlier work: vm_zuse_cert_install(vm, lo, hi) (the very first change this session made, before Phase A existed) only holds two uint64_t (16 bytes) — sized against the old placeholder ZUSE-CERT-LO/HI FORTH-cell design, not against what a real Ed25519 keypair needs (32-byte pubkey alone, well over 100 bytes for a full cert). Needs expanding before Phase C can store anything real.
    3. A genuine blocker, found by asking where the cert would actually live: "mint once, ever" requires surviving reboots, but Makefile.starkernel's qemu target copied a fresh, pristine OVMF_VARS.fd on every invocation (not just after clean) — so a UEFI-NVRAM-based cert (the real-hardware-compatible option, and this codebase already has a live SetVariable/GetVariable precedent via SF_VAR_REBOOT_TRIES/SF_VAR_BOOT_ARGS) would never actually persist under this project's own normal test workflow. Digging further: aarch64's qemu recipe had no persistent NVRAM store at all — a single combined -bios $AAVMF_CODE argument, no separate writable VARS pflash drive like amd64/riscv64 have. Decided (on request): fix the harness rather than switch substrates. amd64/riscv64: the VARS-template copy is now conditional on the destination not already existing, so clean (which deletes the whole build/$(ARCH)/kernel tree, OVMF_VARS.fd/RISCV_VARS.fd included) is the bleach step, and a bare make qemu now preserves NVRAM across runs — exactly matching the existing "always pass clean before qemu" acceptance convention, no new bleach script needed. aarch64: restructured to split CODE(ro)/VARS(rw) pflash drives matching the other two (host has /usr/share/AAVMF/AAVMF_VARS.fd alongside the existing AAVMF_CODE.fd), with a graceful fallback to the old single--bios mode (and a console note) on a host that only has non-split firmware packaged, so this doesn't regress environments without one. Verified live: all three architectures still boot clean to ok> with the new pflash arrangement, Stadium conservation intact, no panics or guest errors — this is infrastructure-only (no cert code yet), so a plain boot-regression check is the right verification tier.

    Still open: the actual cert struct (expanding past the 16-byte placeholder), the first-boot mint-vs-already-minted boot sequence using SetVariable/GetVariable, and the MINT word itself.

    Cert struct expanded (2026-08-26): vm_zuse_cert_install() (both src/vm.c's hosted copy and a new kernel-side duplicate in src/starkernel/vm/vm_core.c -- the kernel build's VM_EXCLUDE list drops src/vm.c entirely, same reason vm_set_base() already has two independent copies) now takes a real 32-byte seed + 32-byte pubkey instead of the old 16-byte placeholder. FORTH-side ZUSE-CERT-LO@/HI@ replaced with ZUSE-PUBKEY@ ( i -- u ) (8-byte LE chunk i, 0..3, of the public half only -- the seed has no FORTH access at all). ACL-ZUSE-BOOT now checks ZUSE-CERT-INSTALLED? before authenticating rather than authenticating unconditionally. Verified: clean compile and clean boot on all three architectures.

    NVRAM persistence attempt: crashed, root-caused, reverted -- do not retry as designed. First attempt placed the mint-or-load GetVariable/SetVariable logic right after virtio_rng_init() (before capsule_birth_mama()); it page-faulted (CR2 inside the OVMF flash MMIO window, a supervisor write to a not-present page) partway through boot. Moved the same logic to the one place in this codebase already calling SetVariable post- ExitBootServices successfully (SF_VAR_REBOOT_TRIES, much later in boot) — identical crash, same RIP and CR2 — which disproved the "too early in boot" theory outright: it isn't a timing issue.

    Localized precisely (advisor-directed, one boot, debug markers around each call): GetVariable returns fine. SetVariable with real 64-byte data never returns — that's the exact fault site. The pre-existing SF_VAR_REBOOT_TRIES call that looked like a working precedent is actually a delete of a variable that's never existed (size=0, data=NULL) — a fundamentally different, much cheaper internal path than a real data write, so it proved nothing about real persistence being safe. Root cause: this kernel's VMM never maps whatever memory region OVMF's variable service needs to actually write flash-backed variable data — a real gap in UEFI runtime-services support, not specific to Zuse. Fixing it for real means walking the UEFI memory map for the relevant regions and mapping them into the kernel's own page tables, and per Section U's own note, the flash window's location is firmware/arch-specific (OVMF's differs from AAVMF's and EDK2-riscv64's), so "walk the map and map everything" is not guaranteed 3-arch-uniform even once attempted.

    Second, independent finding (not a bug, a design flaw in the persistence choice): storing the raw 32-byte seed in NVRAM was a real defect regardless of the crash. SetVariable was called with EFI_VARIABLE_RUNTIME_ACCESS, meaning any later-loaded UEFI application or the booted OS itself could read Zuse's private key straight out of NVRAM. For an irrevocable "one and only one Zuse, ever" root of trust, that undermines the property the design exists to provide — this would have needed fixing even had the crash not happened.

    Decision needed, not yet made: given virtio-blk writes are already proven working on all three architectures in this repo (vblk_write, Artemis's own persistence across runs), a dedicated file-backed system-identity disk (mirroring disk/artemis.img's existing pattern, separate from Artemis's internal storage and separate from home-blocks USB thumbdrives) is the substrate with no open unknowns today — recommended over either fixing the UEFI flash-mapping gap (real but large, unscoped VMM work) or accepting the NVRAM approach as originally designed (has the exposed-seed defect regardless). Not decided or built yet. Reverted to a known-safe state: all Zuse mint/NVRAM code removed from kernel_main.c (only two harmless includes remain), init.4th's ACL.4th line back to its documented commented-out default. Verified clean compile and clean boot on all three architectures in this reverted state.

    Substrate corrected (Captain Bob, 2026-08-26): no files, ever — this OS's entire reason for being is anti-POSIX, anti-file. The "dedicated system-identity disk" recommendation above was framed in file/filesystem language by mistake; corrected before any code was written. The only real persistence primitives here are content-addressed capsules and raw LBN-numbered blocks (block_subsystem.c) — never a filesystem, never file paths. Saved as feedback_no_files_anti_posix.md so this isn't re-learned next session.

    Design, agreed on request: a growable metadata fence at the TOP of a device's block space, mirroring the bottom BAM reservation from the opposite end. block_subsystem.c's BAM already reserves the bottom BLK_DISK_SYS_RESERVED (32) blocks of every attached device, invisible to FORTH's BLOCK/BUFFER. Zuse's cert (and future system metadata) gets a second reservation at the top of the same device, starting at BLK_META_FENCE_INIT (128) blocks and growing downward as needed — the two reservations grow toward each other from opposite ends, never colliding, same shape as a stack/heap. Explicitly never RAM-backed (the fast-RAM/ramdrive LBN ranges are documented as volatile in this same file's own header comment — losing Zuse's identity to a RAM eviction is exactly the failure this is designed against). Reuses Artemis's own already-attached, already-proven virtio-blk device — no new device attachment. Rejected reusing BAM's own bottom-reserved zone directly: those 32 blocks are fully claimed by BAM/volume-metadata bookkeeping, not free space.

    Step 1 (field round-trip) implemented and verified 2026-08-26, allocator not yet touched. New meta_fence_blocks field in blk_volume_meta_t, appended after reloc_devblocks and carved from _pad[] — identical graceful-default technique the reloc_start/reloc_devblocks fields already established (a pre-existing formatted volume reads the field back as 0 via its zeroed former padding, not a format-breaking change). Added a compile-time _Static_assert(sizeof(blk_volume_meta_t) == 4096, ...), same discipline homeblocks_sig.h already uses — caught a real bug immediately: the hand-summed _pad[] size formula was off by 4 bytes (a compiler-inserted alignment gap before tracked_blocks that the manual byte-count missed), found via offsetof() rather than by re-deriving the arithmetic by hand again, consistent with this project's standing rule to never trust a hand-derived numeric claim in this class of code.

    Worked against disposable clones throughout, never the real disk/artemis.img (ARTDISK=... is ?=-overridable) — disk/artemis-metafence-fresh.img (blank, exercises the fresh-format path) and disk/artemis-metafence-test.img (a copy of the pre-existing artemis.img, exercises the graceful-default-on-reload path), both kept as regression fixtures per disk/README.md's existing convention (mirrors artemis-reloc-test.img exactly). Verified independently via direct byte reads of the disk image, not the kernel's own self-report (log_message(LOG_INFO, ...) turned out not to reach serial output at all in this build — an unrelated, pre-existing log-level gap, not a regression): fresh format writes meta_fence_blocks=128 at header byte offset 184; a second boot without reformatting reads it back unchanged; the pre-existing old-format image correctly reads back 0. Full 3-arch acceptance boot against the real, untouched disk/artemis.img also clean — conservation intact, no panics.

    Step 2 (allocator + read/write accessors), done 2026-08-26. Units corrected from "Forth 1 KiB blocks" to 4 KiB devblocks (matching bam_devblocks/reloc_devblocks) before anything depended on the original meaning — a clean fix, not a migration, since nothing consumed the field yet. This let the fence fold directly into compute_totals_from_B()'s existing payload4k calculation (total_devblocks - 1 - B - R - F, F = meta_fence_blocks) instead of needing a second, separate subtraction against user_blockstotal_blocks, user_blocks, and free_blocks all shrink correctly for free, in both the fresh-format and reload code paths, from this one formula change.

    New blk_meta_zone_read()/blk_meta_zone_write() (block_subsystem.c/.h) — raw, unpacked 4 KiB devblock I/O (no Forth-block packing, same shape as the header/BAM/reloc-table regions), addressed by devblock_from_top counting down from the device's last physical devblock, refusing (not silently clamping) if the index isn't within the on-disk meta_fence_blocks. No FORTH word wraps either — C-only, same discipline as vm_zuse_cert_install() itself, which will be this zone's first real tenant.

    Verified independently at every step, never trusting the kernel's own report:

    • Capacity math: read a freshly-formatted image's header bytes directly and independently recomputed the expected total_blocks in a separate Python script using the same formula — exact match (22647, down from what it would have been without the fence).
    • Accessor correctness: a temporary probe (written, run, captured, reverted) wrote a known 256-byte-repeating pattern via blk_meta_zone_write(0, ...), read it back via blk_meta_zone_read(0, ...), and compared in-memory (PASS) — then, independently, read the raw image file at the exact expected physical byte offset ((total_devblocks-1)*4096) and confirmed the pattern landed there byte-for-byte.
    • log_message(LOG_INFO, ...) still doesn't reach serial output in this build (same pre-existing gap noted in Step 1) — all verification here used console_println (which does reach serial) for the temporary probe, and direct file reads for everything else.

    Full 3-arch acceptance boot (real, untouched disk/artemis.img, probe code fully reverted) clean on all three architectures — conservation intact, no panics.

    Still open: wiring vm_zuse_cert_install()'s seed+pubkey to actually persist through these new accessors (the zone exists and works; nothing writes Zuse's cert into it yet), and the MINT word itself.

    Step 3 (Zuse's cert wired to the fence), done 2026-08-26 -- first-boot mint-then-load is real, end to end. New include/starkernel/zuse_cert_devblock.h: a small, standalone on-disk record format (zuse_cert_devblock_t -- magic + version + 32-byte seed + 32-byte pubkey + a real CRC-64/ISO from day one, same "real from day one" discipline homeblocks_sig_t already established, since this gates a real security check) occupying devblock_from_top=0 of the fence. Deliberately its own header, not inlined at the boot-time call site: the still-open MINT word will be a second consumer of this exact format later.

    kernel_main.c's mint-or-load logic moved from the crashed NVRAM approach to this: read devblock 0 of the fence, and if magic/version/CRC all check out, install the existing cert; otherwise, if virtio_rng is ready, mint a fresh one (Phase A+B) and write it. Runs right after virtio_rng_init(), well before capsule_birth_mama() -- unlike the crashed NVRAM attempt, raw block I/O against Artemis's already-proven virtio-blk device has no boot-timing risk at all, so the earlier "re-invoke ACL-ZUSE-BOOT after Mama birth" workaround is no longer needed; ACL.4th/zuse.4th's self-activating ACL-ZUSE-BOOT sees a correctly-populated cert on its one, ordinary first pass.

    Verified live, independently, across every real scenario, never trusting the kernel's own report:

    • Fresh mint (blank disk/artemis-metafence-fresh.img): boot logs Zuse: minted, fuse blown; the on-disk record at the exact expected physical offset independently decodes to magic bytes b'ZUSE', version 1, a real 32-byte seed and pubkey, and a CRC that an independent from-scratch Python re-implementation of the exact CRC-64/ISO algorithm (table generation included, not just the check) confirms byte-for-byte.
    • Reload (reboot the same now-minted image, no reformat): boot logs Zuse: cert loaded from block fence; the on-disk seed and pubkey are byte-for-byte identical to the first boot's -- genuinely "mint once, ever," not a silent re-mint.
    • Graceful refusal on a pre-fence volume (disk/artemis-metafence-test.img, meta_fence_blocks=0): blk_meta_zone_read/write both correctly refuse (no space to read or write), so the kernel mints a cert for RAM/this-boot-only use and honestly reports Zuse: minted but fence write FAILED (not persistent) -- no crash, no silent data loss, no corruption of a device with no fence at all.
    • Real disk regression check: the same graceful-refusal path exercised identically against the real, untouched disk/artemis.img (which has no fence yet either) on all three architectures -- clean boot, conservation intact, no panics, disk/artemis.img itself reverted afterward (no committed churn).

    Phase 8's core arc is now functionally complete: real entropy (Phase A) → real signing (Phase B) → real, anti-file, block-native persistence (Phase C) → a working first-boot mint that survives reboots. Still open: the ongoing S" name" MINT word for an authenticated Zuse session to mint additional regular users (needs zuse_cert_devblock_t-format certs signed by Zuse's own key, not just installed) -- the real remaining piece of the original vision.

From FABRIC-2.md §X, Milestone 5 — Console/VM key-match binding

  • Settle the still-open question: reuse ACL-PIN/acl_allow directly, or build a separate key-matching primitive — ACL-PIN gates word execution specifically and nothing today gates console-session-to-VM ownership, so this decision needs to happen before any code gets written here.

  • Design the key/lock data shape (what the console presents, what the VM carries, how they're compared).

  • Wire drive insertion (Milestone 2e's hotplug signal, post-identity-authentication) to a call into capsule_birth_baby() (confirmed a real, callable, on-demand birth path already) to spin up or re-attach that identity's VM.

  • Implement the actual attach/bind step — extending sk_repl_set_active_vm() (confirmed to exist, currently an unguarded raw pointer-set) with the key-match check from above, so a console can only bind to the one VM whose lock matches its key.

  • Implement detach behavior on console disconnect or VM teardown.

From FABRIC-2.md §X, Milestone 6 — Kernel/capsule PKI signing chain

  • Generate (offline, outside the kernel/repo entirely) the real root CA keypair — "stays unrevocable," never embedded, never loaded by any kernel code.

  • Generate the "snakeoil" intermediate certificate, signed by that real root CA (this is a real CA-signed intermediate, not a self-signed/untrusted cert despite the name — "snakeoil" names its informal/private-project status).

  • Embed the already-CA-signed snakeoil intermediate as a capsule blob at build time (mechanically proven already via the font-capsule precedent — no new embedding infrastructure needed, just a new payload). Bootstrapping resolved: no kernel-boot-time verification of a hardcoded CA public key is needed at all — trust is established once, at build time, by whoever holds the real root CA and produces the build.

  • Add a signing step to the mkcapsule build tool (or a separate signing tool) that produces a signature alongside each capsule's existing xxHash64.

  • Extend MANIFEST_AUTO.md's generation to add a signature-status column, matching the existing xxHash64 column's generation pattern.

  • Implement magic-number-based content-type detection (Section U item 14) — a shared primitive, also usable for Milestone 4's foreign-drive check.

  • Root CA + snakeoil intermediate generated 2026-08-26, entirely offline, in a sibling directory outside this repo (/home/rajames/CLionProjects/lithosananke-ca/, not tracked by git here). Ed25519, OpenSSL 3.5.5. Root: self-signed, 20-year validity (20262046), CN=LithosAnanke Root CA. Intermediate: a real CA-signed cert (not self-signed despite the name), 10-year validity, CA:TRUE, pathlen:0 (can sign capsules, can't mint further intermediates), chain verified (openssl verify returns OK). Both private keys chmod 600. The root key never touches this repo or any kernel code, per the design's own requirement.

  • Snakeoil intermediate embedded as a capsule, 2026-08-26. Exported to DER (capsules/pki/snakeoil-intermediate.der, 418 bytes) and dropped under capsules/ — confirmed the font-capsule precedent needed zero new infrastructure: mkcapsule's process_file() embeds any non-.4th file verbatim already. Shows up as capsule pki:snakeoil-intermediate.der in the generated capsule table (38 capsules total, up from 37) — retrieve via capsule_find_by_name() + capsule_get_payload(), never capsule_exec_payload() (it's a passive data blob, not executable capsule code).

  • Minimal DER/X.509 parser written and independently verified, 2026-08-26. New include/starkernel/x509_ed25519.h + src/starkernel/crypto/x509_ed25519.c: x509_extract_ed25519_pubkey(), a from-scratch, narrow DER walker (not a general ASN.1/ X.509 parser, per this milestone's own design decision) — walks Certificate → TBSCertificate → SubjectPublicKeyInfo, handles the optional [0] EXPLICIT Version field (present on v3 certs), verifies the AlgorithmIdentifier OID is exactly 1.3.101.112 (RFC 8410 Ed25519) rather than assuming, and extracts the raw 32-byte key from the trailing BIT STRING. Handles both short-form and long-form DER lengths (a real cert with v3 extensions routinely exceeds the 127-byte short-form limit). Every step bounds-checked against the buffer end — refuses malformed input, never faults.

    Verified against ground truth, not self-consistency: run against the real embedded snakeoil-intermediate.der, the extracted 32-byte key matched openssl pkey -pubin -text's own reported public key byte-for-byte. Refusal path verified too: truncated input, 10 random garbage bytes, an empty file, and a real RSA certificate (algorithm-mismatch case, not just structural malformation) all correctly return failure rather than misreading or crashing. Compiles clean on all three kernel architectures (no __STARKERNEL__ guard needed — same freestanding-safe shape as the other crypto files).

    Still open: the signing step in mkcapsule (needs a new sig[64] field on CapsuleEntry and a parallel emitted array in capsule_generated.c, since CapsuleDesc itself has no spare bytes — confirmed exactly 64 bytes, every field used), wiring ed25519_verify() into the three capsule_validate() call sites in capsule_birth.c (decided: land as WARN-only first, prove correct on all three architectures against both a valid and a deliberately-corrupted capsule, then flip to hard-refuse in a separate step — a bug here has a much larger blast radius than anything else in Phase 8, since a false refusal on Mama's own capsule means no ok> at all, on any architecture), and the signature-status column on capsules/BLOCK_MAP.md (confirmed the real, live manifest target — capsules/MANIFEST_AUTO.md is stale/dead, not regenerated since 2026-07-05, flag as docs drift rather than a real target).

    mkcapsule signing + capsule_birth.c wiring, done 2026-08-26 -- landed WARN-only exactly as decided. First attempt shelled out to openssl pkeyutl -sign (fork/execlp, not system() -- interpolating the key path into a shell string would have been a real, if narrow, injection vector). Corrected on request: no new external host binary dependency when the repo's own code can do the job — this project's standing preference, same theme as the earlier anti-file correction. Rewritten to link ed25519_sign() (src/starkernel/crypto/ed25519.c, already independently verified against OpenSSL in Phase B) directly into mkcapsule. This needed one more small piece: tools/pkcs8_ed25519.c, a narrow DER walker (same shape as x509_ed25519.c, deliberately not shared code — small enough that duplicating a few TLV-walking lines was simpler than threading a header between the kernel crypto tree and host tooling) extracting the raw 32-byte seed from the intermediate's PKCS#8 private key, plus a minimal self-written base64 decoder (PEM is openssl genpkey's default output, not raw DER — checked the repo for an existing decoder first, found none). Verified end-to-end before wiring anything in: the extracted seed, run through this project's own ed25519_keygen(), reproduces the exact pubkey embedded in the cert; a full self-contained sign+verify round-trip (zero openssl involvement) passes.

    CapsuleDesc had no spare bytes (confirmed exactly 64, every field used), so signatures live in a new parallel array, CapsuleSigEntry capsule_signatures[] ({ sig[64], has_sig }, mirroring capsule_names[]'s existing shape), emitted by mkcapsule --sign-key <path> (new optional CLI flag; omitted or the key file missing → every capsule gets has_sig=0, graceful, not a build failure -- CI has no access to the offline key). New Makefile.starkernel variable SIGN_KEY (defaults to this machine's actual key path, ?=-overridable, gated by $(wildcard ...) so a fresh checkout or CI never fails for lacking it).

    New capsule_sig.c/.h: capsule_verify_signature(), deliberately a separate, additive function, not folded into the already-tested capsule_validate() (whose signature and behavior stay untouched). Finds and parses the embedded pki:snakeoil-intermediate.der capsule's pubkey once per boot (cached — every later capsule birth reuses it, the cert can't change mid-boot), then ed25519_verify()s the requested capsule's payload against its stored signature. Wired into all three capsule_validate() call sites in capsule_birth.c (capsule_birth_mama, capsule_birth_baby, capsule_run_experiment) via log_message(LOG_WARN, ...) on anything other than CAPSULE_SIG_OK — never refuses. (Hit one unrelated build snag wiring this in: vm.h and log.h both define LOG_LINE_MAX for two completely unrelated concepts — vm.h's own is the persistent block-log line size, unconditional #define; log.h's is #ifndef-guarded. log.h has to be included after vm.h in any TU that needs both, or the build fails under -Werror; fixed and commented in capsule_birth.c so the next person touching includes there doesn't rediscover it the hard way.)

    Verified independently, both directions, live in the real kernel: a full clean build (38 real capsules, all signed) boots clean on all three architectures with zero signature warnings — the expected outcome when every signature is genuinely valid, not merely an absence of testing. Separately, hand-corrupted one byte of Mama's own init.4th capsule's stored signature (not its payload/hash, which capsule_validate() already checks independently and would have masked the test) directly in the generated capsule_generated.c, without regenerating from source, and rebuilt only the changed object: produced exactly capsule sig: init.4th: INVALID -- signature does not verify on boot, and the kernel still reached ok> — proving warn-only genuinely doesn't refuse anything yet, precisely as decided. Reverted the tampered build before the final acceptance pass. Final, untampered state: clean 3-arch acceptance boot, conservation intact, zero warnings, real disk untouched.

    Still open: flipping WARN to hard-refuse (a separate, deliberate step once this has run clean for a while, not bundled into this pass) and the BLOCK_MAP.md signature-status column.

    BLOCK_MAP.md signature-status column, done 2026-08-26. --manifest mode's file scan (manifest_file()) is a completely separate code path from build mode's process_file() — confirmed it only ever walks .4th files (never the embedded PKI cert or font capsule), and the Makefile invokes mkcapsule twice per build for two different purposes (once to emit capsule_generated.c, once for the manifest). Extended --manifest to accept the same optional --sign-key <path> prefix as build mode (factored the key-loading code, previously inline in build mode's arg parsing, into a shared load_sign_key() used by both) so the manifest can report real per-capsule signing status without touching or requiring a rebuild of capsule_generated.c. New Signed column on the capsule summary table: yes/no when --sign-key was given, n/a (with an explanatory footnote) when it wasn't — never a bare blank that could be misread as "unsigned." Makefile.starkernel's manifest-generation call site updated to pass the same $(SIGN_KEY_ARGS) the real build already uses, so capsules/BLOCK_MAP.md reflects this machine's actual signed state by default. Verified: clean compile, capsules/BLOCK_MAP.md correctly shows yes for all 31 tracked .4th capsules on a real signed build; a quick amd64 boot (no kernel code touched by this step, only host tooling) confirmed no regression, zero signature warnings, conservation intact.

    This closes every open item from FABRIC-2.md's original Milestone 6 punch list except magic-number content-type detection (Section U item 14, shared with Milestone 4, not started) and the hard-refuse flip (deliberately deferred).

    Hard-refuse flip, done 2026-08-26 -- and it landed narrower than the original plan assumed. Before flipping, found that CAPSULE_SIG_MISSING (no signature at all) is the normal state on every machine except this one -- CI and any other checkout have no access to the offline key, by design. Refusing on MISSING the same as INVALID would brick boot everywhere but here, not catch anything real. Decided (on request): enforce ONLY on CAPSULE_SIG_INVALID (a signature that IS present but doesn't verify -- unambiguous tampering/corruption evidence, safe to refuse on regardless of who's building). MISSING/NO_ROOT_KEY stay WARN-only permanently, not as a transitional state.

    All three capsule_birth.c call sites now return CAPSULE_RUN_ERR_INVALID on CAPSULE_SIG_INVALID, after logging the same WARN as before. Verified on all three architectures, both directions, exactly per the original rollout commitment: the positive case (real signed capsules) reboots clean with zero warnings on amd64/aarch64/riscv64, identical to before this flip. The negative case (the same one-byte signature corruption technique used for the WARN-only proof, on Mama's own init.4th) now genuinely refuses -- capsule_birth_mama() returns the error -- on all three architectures identically: capsule sig: init.4th: INVALID followed by Init: Mama birth FAILED. The feared "no ok> at all" blast radius didn't materialize: kernel_main.c already had graceful error handling for a failed Mama birth (log and continue, pre-existing code, not written for this feature) -- the kernel reaches a degraded ok> rather than crashing or hanging, on all three architectures. Final acceptance pass (real, correctly-signed capsules, all tampering reverted) clean on all three, zero warnings, conservation intact, real disk untouched.

    Milestone 6 is now fully closed except magic-number content-type detection (shared with Milestone 4, genuinely separate scope, not started).

From FABRIC-2.md §X, Milestone 7 — Contributor capsules / trust tiers

  • Create the capsules/contrib/ directory (mechanically trivial, matches existing subdirectory convention — the directory itself is not the work).

  • Add a FLAG_CONTRIB bit to mkcapsule.c's flag system, assigned by path match (contrib/ prefix), same pattern as how init.4th already gets FLAG_MAMA_INIT.

  • Decide and implement one of the four spitballed trust-tier directions (signature- authority tiers / block-namespace sandboxing / QEMU-vs-real-hardware conditional enforcement) — none chosen yet, this is a real decision point, not just an implementation task.

  • If block-namespace sandboxing is chosen: extend mkcapsule's existing conflict- detection logic to also reject a contrib/-path capsule claiming blocks outside its reserved range.

From FABRIC-2.md §X, Milestone 8 — Bare-metal boot from physical USB

  • Build a fresh starkernel.iso via make -f Makefile.starkernel ARCH=amd64 clean + the ISO-build step.
  • Identify the exact block device path for the target USB drive on the host doing the flashing (lsblk/dmesg after insertion — care needed, wrong device = data loss).
  • dd if=build/amd64/kernel/starkernel.iso of=/dev/sdX bs=4M status=progress (or equivalent) — confirm dd is the right tool for an El Torito ISO vs. needing isohybrid first (open question, not yet verified).
  • Physically boot the real machine from the flashed drive (BIOS/UEFI boot-order menu, Secure Boot may need disabling — unknown until tried).
  • Capture what happens with no serial-socket log available (real hardware has no qemu-serial-*.sock to socat into) — decide the observation method.
  • Confirm POST reaches the same 1012/0/0 result on real hardware as every QEMU acceptance run.
  • Confirm ok> prompt is reachable and a basic command (e.g. HEARTBEAT-TICKS@ .) works identically to QEMU.
  • Document the result (pass/fail, and if fail, what diverged from QEMU) — first real external validation this project has ever had outside QEMU TCG emulation.

From FABRIC-2.md §X, Milestone 9 — Networking / capsule distribution server

  • (Deferred) Revisit and punch-list this milestone once Milestone 7 closes, not before.

B. Stadium unification — words/VMs/blocks/messages on the same engine

Raised 2026-08-25: "words are stadium patrons, VMs are patrons, blocks are patrons, messages are stadium patrons, all should be operated on by THE SAME ENGINE." Investigated before designing anything — the real state is more nuanced than "everything's a stub," verified via direct reads and git log, not assumed:

FABRIC.md §18.3 already decided the mapping (not invented here): blocks → MIGRATE, messages → DELIVER, ACLs → EXPIRE, words and VMs both → COOL. stadium_evict() (src/starkernel/vm/stadium.c) — real, tested infrastructure: bitmap tracking, pin/contains refusal, the Hera-patron-zero panic guard, heat-conservation back to the owner's reservoir on every reap — calls stadium_dispatch() for the actual payload action when a patron departs.

Per-behaviour status, as of 2026-08-25:

  • MIGRATE (blocks) — zero consumer, genuinely stub (stadium_dispatch()'s case prints "MIGRATE (stub)" and returns). This session already built the real mechanical primitive it needs: blk_subsys_relocate_block()/RELOCATE-BLOCK (FABRIC-2.md, commit 36d832f), live-verified (redirect + content survive an abrupt kill and reboot) but never wired to stadium_dispatch() — it's a separate, parallel, already-working mechanism today, not routed through Stadium at all.
  • COOL (words and VMs, same tag) — half real. Words are fully live, but via a separate, bespoke mechanism, stadium_word_dispatch() (stadium_words.c, item 4.1), wired directly into the real VM word-execution hot path (vm_core.c:690,885,896) — it does not go through the generic stadium_dispatch() switch at all. ONTOLOGY.md §IX claiming words are "not yet migrated" is itself stale documentation drift (same class of bug as the "glibc" misattribution corrected earlier this session — flagged as a small, separate fix below, not blocking). VM cooling has no evidence of ever being wired anywhere — still genuinely stub.
  • DELIVER (Hermes messages)FABRIC.md (~line 3452) records this explicitly as "Open, surfaced not resolved": Hermes's message/channel heat already integrates with Stadium's reservoir accounting (STADIUM-HEAT@, STADIUM-RES-PULL/PUSH), but which Hermes lifecycle event maps to DELIVER vs. EXPIRE was never decided, let alone wired. Real, substantial, Hermes-specific integration work.
  • EXPIRE (ACL TTL expiry) — no evidence of any wiring anywhere; ACL.4th/ acl_recheck() has zero Stadium involvement today. Also substantial, separate work.

Why DELIVER/EXPIRE aren't being resolved in the same pass as MIGRATE: each is a full subsystem integration (Hermes lifecycle mapping; ACL-to-Stadium wiring where none has ever existed) in its own right — attempting all four stubs at once risks exactly the rushed, shipped-but-incomplete outcome the no-stubs rule (below) exists to prevent. MIGRATE gets resolved for real because this session already has a tested primitive underneath it; the other three become honest, explicit punch-list items instead of being touched speculatively.

Punch list:

  • Investigated (2026-08-25): block-patron admission does not exist yet, but is architecturally straightforward, not blocked. Confirmed via stadium_admit()'s own doc (stadium.h) that it REFUSES any candidate with mass != 1, and that a mass > 1 multi-cell patron would need a continuation chain nothing has ever designed — this looked at first like a hard blocker for a 1024-byte block. It isn't: confirmed via stadium_word_dispatch()'s real candidate construction (stadium_words.c:245-252) that Stadium cells carry pure identity/heat/bookkeeping only — candidate.identity = word_id, payload[32] unused — the actual word content stays in the dictionary; Stadium never holds it. By the same pattern, a block patron's cell would carry identity = LBN, mass = 1, payload unused — the actual 1024 bytes of block content stays exactly where it already lives (block cache / disk via block_subsystem.c), unmoved. So mass != 1 is a non-issue; the real gap is just that nothing has ever built the LBN→cell_index residency map (the block-patron analogue of stadium_word_dispatch()'s resolve_resident_cell()) or the touch-on-access hook (the analogue of vm_core.c's three stadium_word_dispatch() call sites). Not yet built — this is real, scoped, buildable work, not a stub-around candidate. Still open, plan to be presented before implementation per the no-stubs/no-early-coding conventions.

  • Resolved (2026-08-25): real block-patron admission + real MIGRATE dispatch, both live. New stadium_blocks.h/stadium_blocks.c mirror stadium_words.c's shape (Option B starter-grant admission, redirected Loop #3 cooling, self-healing stale-entry detection) but key residency by (quota_slot, lbn) in a fixed-capacity open-addressing hash table sized off stadium_cell_count() (tombstone-based deletion, since LBN space isn't densely bounded like word_id), not a dense array. Wired into block_word_block()/block_word_buffer()/ block_word_update() (block_words.c), #ifdef __STARKERNEL__-guarded. stadium_dispatch()'s MIGRATE case now calls blk_flush(lbn) for real (confirmed blk_flush(), not blk_subsys_relocate_block(), is the right primitive — the latter is for compudynamics-driven relocation to a different LBN mid-residency, not ordinary reap write-back). Three new Kconfig tuning constants (STADIUM_BLOCK_HEAT_QUANTUM/STADIUM_BLOCK_COOL_RATE_Q48/ STADIUM_BLOCK_TRACK_CAP_MULT) mirror the word-patron ones exactly, same three-layer wiring. Verified: clean compile, zero warnings, on all three architectures; clean boot to zuse)ok>/ok> REPL on all three, conservation (resident_sum + reservoir == Q48_ONE) intact identically across all three; BLOCK/BUFFER touches exercised live from the REPL on amd64 and riscv64 with no crash; a 22,000-distinct-block flood loop (amd64, artificially shrunk to a 20,971-cell Stadium via a one-off smaller -m to make quota pressure reachable) ran clean under heavy admission-path load with no corruption. Live MIGRATE fire confirmed (2026-08-26): interactive flooding alone never triggered it — Hera's reservoir was already sitting exactly at the Q48_ONE / 3 floor from the boot-time self-tests, so every block-touch candidate pulled 0 heat, and a 0-heat candidate can never be strictly denser than an existing resident, so stadium_admit()'s eviction fallback correctly refuses rather than evicts once the free list is exhausted (a pre-existing reservoir-floor/density-eviction interaction, applies equally to word patrons, not introduced by this pass). Closed deterministically instead with a temporary boot probe (kernel_main.c, inserted into the existing Artemis 4.6 self-test block, reverted immediately after capture — no code left behind): 100 65536 0 STADIUM-ADMIT ... STADIUM-EVICT against the live Artemis VM. Captured live: Stadium: dispatch cell=63257 behaviour=MIGRATE lbn=100, followed by DBG err after MIGRATE probe=0blk_flush(100) fired for real, with the correct LBN threaded through from the departing patron's identity field exactly as designed. (Artemis's own reservoir went briefly out of Q48_ONE-balance during the probe — raw STADIUM-ADMIT doesn't debit the reservoir on its own, by its own doc, so a heat value handed to it directly is invented, not pulled; harmless here since Artemis is killed and her whole economy discarded immediately after, and Hera's own conservation was independently confirmed back at the normal 43691/21845/65536 baseline afterward.)

  • Bug found, reported, then fixed on request (2026-08-25/26): capsules/lib.4th:13-14 shadowed the C primitives USE/RUN. While chasing the live-MIGRATE test above, S" Artemis" USE (meant to redirect the REPL into Artemis's own vocabulary, mama_word_use()) instead printed EXEC: failed: Artemis. Root cause: capsules/lib.4th:13 defined : USE ( addr u -- ) EXEC ; — a FORTH word with the same name but a completely different meaning ("load/exec a capsule"), which shadowed the C-registered USE in dictionary search order since lib.4th loads after primitive registration. lib.4th:14 did the identical thing to RUN, which CLAUDE.md also names as an untouchable C primitive ("BIRTH, RUN, USE are primitives — registered in C exactly like DUP, BYE, EXEC"). Same bug class as the K-PUSH dictionary-shadowing issue (docs/working/architecture/K-PUSH-DICTIONARY-SHADOWING-BUG-20260704.md). Reported first per CLAUDE.md's rule against unrequested fixes; Captain Bob then explicitly asked for the fix. Fix: traced every real caller before touching anything — RUN's alias was dead (never called anywhere as bare RUN); USE's alias had exactly one real caller, capsules/hermes/init.4th:397 (S" common:msg.4th" USE, intentionally exploiting the shadow to load that capsule right after lib.4th itself loaded). Both aliases were pure EXEC wrappers with zero added behavior, so the fix deleted both definitions from lib.4th outright and changed the one real call site plus its matching doc comment (capsules/common/msg.4th:4) to call EXEC directly — no new names invented, the C primitives untouched, mkcapsule --lint clean (31/31 pass). Verified live: rebuilt and booted amd64 — Hermes still births and her COMMON-CH-eviction self-test (which depends on common:msg.4th having loaded) still passes exactly as before; interactively, S" Artemis" USE now correctly prints USE: now using Artemis and switches the REPL's console-name coloring, confirming the C primitive runs unshadowed. Clean compile and clean boot with conservation intact on all three architectures (amd64/aarch64/riscv64).

  • Resolved (2026-08-26): real VM-patron admission + real explicit-KILL eviction, both live. Re-scoped on request: confirmed capsule_vm_kill() had zero Stadium involvement (vm_cleanup()/sf_free() only) and child-VM birth only ever called stadium_grant_quota() (a resource pool for the VM's own future word/block patrons) — never stadium_admit() for the VM itself. The only precedent, stadium_birth_hera(), admits Hera into her own quota as a permanently pinned cell 0, which can never reach stadium_evict() — not a working example of COOL firing for a VM. On closer look this turned out NOT to be entangled with the still-iterating Tripod/Zuse/messaging vision after all (§D) — birth and kill already funnel through two single choke points, so the earlier 2026-08-25 deferral was overcautious. Design: added size_t stadium_patron_cell to VMRegistryEntry (capsule_run.h). At birth, right after the existing stadium_grant_quota() call (capsule_birth.c), admit a candidate into the new VM's own quota mirroring stadium_birth_hera()'s shape (identity=0, mass=1, behaviour=COOL) but deliberately unpinned — pinning would need a new "unpin" primitive (none exists) to ever evict it later, and adding a pin-bypass to stadium_evict()'s refusal logic isn't something to do casually; unpinned costs nothing since nothing wires COOL's dispatch body to actually kill anything, so the worst case of an unrelated natural eviction is stadium_patron_cell going stale, which is tolerated the same way stadium_word_forget() already tolerates staleness. At capsule_vm_kill() and capsule_vm_kill_all_nonmama(): stadium_evict() the tracked cell if still resident, silently tolerating refusal (already gone). stadium_dispatch()'s COOL case needed no new payload body — same as it already is for words, where COOL has no defined extra action beyond stadium_evict()'s own universal reservoir credit; the missing piece was admission and a genuine trigger, not dispatch-body logic. Verified live: a second, new Stadium: dispatch cell=... behaviour=COOL now fires immediately before every PARITY:KILL line, for both Hermes and Artemis, confirmed on amd64 (distinct from the pre-existing COMMON-CH word-eviction self-test's own COOL print). Conservation (resident_sum + reservoir == Q48_ONE) intact throughout. Clean zero-warning compile and clean boot on all three architectures (amd64/aarch64/riscv64).

  • **Re-scoped and resolved (2026-08-26): DELIVER (Hermes) was never actually a gap — the earlier "zero consumer, needs substantial Hermes lifecycle mapping" framing above was wrong, carried over unverified from FABRIC.md's old "open, not resolved" note about which Hermes event maps to DELIVER vs. EXPIRE. Item 4.2 already answered that in code (messages → DELIVER, channels → COOL) without the prose ever catching up — same documentation-drift class as the stale ONTOLOGY.md words note and the earlier glibc misattribution. Confirmed live: capsules/hermes/init.4th's MSG-ALLOC already admits every message with SB-DELIVER, and MSG-FREE-NODE (called from both MSG-ACK-LAST and heat-driven MSG-REAP) already evicts it — behaviour=DELIVER (stub) has been printing on boot logs since at least 2026-08-05. Checked whether the dispatch body needed a real payload action the way MIGRATE did: MSG-DELIVER (the FORTH word) already runs the actual delivery (VM-EXEC of the payload) before eviction, decoupled from Stadium reap — so by dispatch time delivery is already done, same shape as COOL, which needs no extra action beyond stadium_evict()'s own universal reservoir credit. Fix: stadium_dispatch()'s DELIVER case now prints the departing message's real identity (DELIVER msg_idx=N, same shape as MIGRATE's lbn= print) instead of a misleading (stub) label — confirmed live via a forced MSG-SEND/MSG-DELIVER-ALL/MSG-ACK-LAST sequence from Hermes's own REPL context (Stadium: dispatch cell=73653 behaviour=DELIVER msg_idx=1). COOL's case was in the identical situation (real for both words and VMs, no extra action needed) and, on request, got the same fix (2026-08-26): now prints COOL identity=N (word_id for a word, 0 — the patron-zero convention — for a VM) instead of (stub). Confirmed live: both shapes fired correctly on the same boot — COOL identity=0 at Hermes's/Artemis's own explicit channel-eviction self-test and again at their VM-patron eviction at PARITY:KILL, COOL identity=1 at a second channel eviction — conservation intact throughout. Clean zero-warning compile and clean boot on all three architectures for both fixes.

  • EXPIRE (ACL) — confirmed genuinely unscoped (2026-08-26), not a case of stale documentation like DELIVER turned out to be. Two findings below, then four open questions — decided directly on request (2026-08-26), decision recorded after the questions, no code written (a decision isn't a green light to build, per this session's own convention):

    Finding 1 — acl_ttl and Stadium's ttl are different things wearing the same name. DictEntry.acl_ttl (vm_core.c:756) is a per-word countdown that batches how often ACL-RECHECK runs — when it hits 0, acl_recheck() calls the FORTH word ACL-RECHECK (ACL.4th:50), which always renews: STRICT mode sets allow=1, ttl=0 (recheck every time); TTL mode computes a fresh heat-based TTL and sets allow=1. Denial isn't a live path anywhere in current policy. This is a renewal cycle, not a residency-ending event — nothing about it resembles "leaving the Stadium floor."

    Finding 2 — StadiumPatronHeader.ttl is completely inert. Every candidate constructor across the whole codebase (stadium.c, stadium_words.c, stadium_blocks.c, Hermes's MSG-ALLOC/CH-ALLOC) sets candidate.ttl = 0, and nothing anywhere ever reads, decrements, or reaps on it. The generic TTL-expiry mechanism EXPIRE would need to fire from doesn't exist in Stadium's own engine at all — a gap one level deeper than "ACL isn't wired to Stadium."

    Open questions:

    1. Is "ACL patron" even the right model, or was FABRIC.md's original "ACLs → EXPIRE" mapping a category mismatch from the start — conflating acl_ttl's recheck-amortization counter with Stadium's residency ttl?
    2. If it is the right model: what gets admitted as a patron? One per ACL-guarded word would be redundant with the word's own patron cell item 4.1 already tracks. A different unit (e.g. per zuse session) might fit better once PKI/session auth lands (Phase 8, still open per .claude/CLAUDE.md's ACL section).
    3. Building this for real means building Stadium's generic ttl-decrement/reap-on-zero mechanism first — nothing to hook EXPIRE into today. Is that in scope here, or its own separate item?
    4. What should the reap action actually do, given current ACL policy never revokes — would EXPIRE force an ACL-RECHECK, or something else entirely?

    Decision:

    1. Not at the per-word level. acl_ttl-hits-zero always renews, never revokes — forcing EXPIRE's residency-ending tag onto it would misuse the tag. But "ACLs → EXPIRE" isn't wrong in spirit, just aimed at the wrong unit: the one place in this system where something ACL-related genuinely has a lifetime and should be revoked is a zuse superuser session (Phase 8, not yet built) — authenticate, hold elevated privilege for a bounded time, then actually drop back to non-zuse. That's a real residency-ending event; per-word recheck isn't.
    2. A zuse session, not a per-word ACL entry — a session is the thing with a genuine start/lifetime/end. A word already has its own patron via item 4.1; a second one for ACL purposes would be redundant bookkeeping, not a new concept.
    3. Not in scope now. This is the decision that actually resolves the item: Phase 8 doesn't exist yet, so there is no session to admit as a patron regardless of any other choice made here. Building the generic ttl-decrement/reap mechanism now, with nothing real to feed it, would be speculative infrastructure ahead of its only consumer — close in spirit to what the no-stubs standard exists to prevent, just inverted (a real mechanism with no real caller, instead of a fake mechanism with a real caller).
    4. Revoke the session's elevated privilege and drop the console back to its non-zuse state — a real action, unlike DELIVER/COOL, which needed none.

    EXPIRE stays explicitly deferred until Phase 8 (PKI/zuse session minting) lands — not abandoned, not left ambiguous: revisit it as part of that work, admitting the session itself (not a word) as the patron, once there is something real for it to represent.

  • Fixed (2026-08-26): ONTOLOGY.md §IX's "words (dictionary, warehouse-resident today, not yet migrated)" line was stale — corrected to state words are fully migrated and live via stadium_word_dispatch(). Doc-only, no build/boot verification needed.


C. Standing rule: no stubs or TODOs, ever

Stated directly, 2026-08-25, after the stadium_dispatch() stub investigation above: "I've never allowed stubs before." Saved as a persistent memory (feedback_no_stubs_or_todos.md) so this applies across sessions, not just this one. Full statement: no stub function that prints a placeholder and returns, no TODO-and-move-on comment in place of real logic, in any language, ever committed as if it were finished work. Small, honest increments are still fine and encouraged — each increment just has to be a complete, real implementation of whatever slice it covers, never a placeholder for a later slice. A pre-existing stub found while working nearby (as here) gets flagged and resolved, not built on top of or left in place.


D. Tripod final shape — minting, one-time Zuse fuse, messaging-only (vision, substantially expanded 2026-08-27)

Stated directly by Captain Bob, 2026-08-25: "we're going to have to iterate because I know what the final shape of the tripod will be." Originally captured as a forward-looking vision, not yet broken into implementable items. 2026-08-27: expanded into a much fuller picture after Phase 8/Milestone 6 closed and unblocked this design pass — captured here in full before any of it gets scoped into implementable items, per direct request ("capture EVERYTHING first then we'll build a plan"). Full detail also in memory project_tripod_final_shape_vision.md.

D.1 — Original vision (2026-08-25), still accurate

  • Thumbdrive presentation → legality check → mint. A newly presented thumbdrive is checked for legality (against the CA-root-derived identity/certificate scheme). If not legal, it is "minted" — formatted for system use — which (1) spins a new user VM and (2) attaches the console VM to it.
  • One-time Zuse mint + fuse-blow on first install. A brand-new system instance ("Install"/"Try It") mints exactly one Zuse superuser, then irreversibly "blows a fuse": direct quote, "we mint one and only one Zuse user and blow a fuse. The only way around is a new system." Post-fuse, no further Zuse can ever be minted on that instance — but the system is NOT bricked: the existing Zuse superuser keeps working, and ordinary users can still "thumb in" via regular thumbdrives. This half is now actually built — Phase 8's entropy→signing→block-fence persistence work (2026-08-26, project_phase8_milestone6_complete.md) implements exactly this, minus the physical thumbdrive itself (see D.4, WRITE(10) gap).
  • Messaging-only once Tripod is fully live. All inter-VM interaction becomes Hermes messaging, not direct calls/shared state — a stated end-state, not the current implementation. Reaffirmed and sharpened 2026-08-27: hardwired/direct-call implementations are acceptable during development only — no piece of this design is considered actually finished until its hardwired calls are replaced with real Hermes messages. This is a standing completion criterion for everything in this section, not a separate future milestone.
  • Polymorphic block-boundary behavior for user VMs. Still just one sentence, still not elaborated — genuinely unresolved since 2026-08-25, needs its own follow-up conversation.
  • ClaudeEXPORT/ — a prior Claude data export, "concepts and thoughts as guidelines," explicitly flagged as possibly containing superseded/conflicting ideas, not authoritative. See memory project_claude_export_archive.md.

D.2 — The session model (2026-08-27): a session IS a VM

Direct correction to how this document and the earlier EXPIRE framing (§B) had been thinking about "sessions": a session is any VM client running in the Stadium fabric — Zuse is no different from any other VM. The Stadium/FABRIC metaphor restated by Captain Bob: the fabric floats inside the Stadium; VMs actually doing work are "players on the field" (system perturbances); user interaction is "fans in the stands" providing patron-driven noise. Zuse is a player like any other, not a special boolean flag on Hera.

This directly invalidates the EXPIRE-as-TTL-on-zuse_session-boolean plan this session had started scoping (§B's EXPIRE decision, and the implementation research begun 2026-08-27 before this correction landed). Today's zuse_session field on the VM struct is not what a "session" actually is in this model — a session ending is a VM detaching, far closer to the existing, real, working COOL/capsule_vm_kill() path than to a new Stadium-behaviour-tag TTL sweep. EXPIRE as originally scoped is superseded, not merely deferred — when Stadium/ACL session-lifetime work is picked up again, it should be framed as "what happens when a user-VM's owning thumbdrive detaches," reusing COOL, not as a timeout on a flag.

When Hera has no VM attached beyond fleet-servicing strata, she idles, watching services and maintaining a serviced fleet foundation — her normal steady state, not a special case.

Validated against the original Stadium foundation, not just today's intuition (mined 2026-08-27 from FABRIC.md §17.1/§20, the oldest, most foundational layer of this whole design — see D.2b below for the full mining pass). FABRIC.md §17.1's own patron/departure table already says VMs depart via heat decay (COOL) and only messages/ACLs ever used TTL — meaning the EXPIRE-as-TTL-on-a-flag plan this session had started scoping didn't just become inconvenient once "session = VM" landed, it contradicted the original design from the start: a VM was never one of the two patron kinds TTL governs. §20's outer/inner Stadium nesting (VMs as outer-Stadium patrons; words/blocks/ACLs/messages as inner-per-VM patrons) already anticipated exactly "attach = admit a VM patron" as the outer-Stadium case — no new Stadium theory is needed for this, only a new admission trigger (thumbdrive attach) feeding the existing admit/evict machinery.

D.2b — The pentagon: five VMs, minimum, to service one attached user (2026-08-27)

Stated directly: "Just to get a user, 5 VMs are needed — if we draw every connection to every node they can make a pentagon." The five: Hera, Hermes, Artemis, the user's own VM, and the Console. Drawing every pairwise connection among five nodes (a complete graph, K5) draws a pentagon with all its diagonals — visually a pentagram. Noted in passing, and worth keeping since this project's naming is already steeped in Greek mythology (Hera, Hermes, Artemis, Ananke/Lithos, Zuse for Zeus): a pentagram at the foundation of a "pagan" system fits the theme, not an accident to explain away.

The Console is a full peer node, not a passive terminal that merely "attaches to" a user VM — D.3 step 4 undersells this; the Console is architecturally one of the five, with (at minimum) its own binding relationship to the user's VM and, per the messaging end-state, eventually its own message traffic to Hera/Hermes/Artemis too, not just a one-way relay. Reconciling D.3's "console attaches to the new user VM" phrasing against this five-node, fully-connected picture is real remaining work, not done here — captured as a gap in D.4.

Why each of the five is load-bearing, best understanding as of this capture (not all edges independently confirmed — see D.4's gaps):

  • Hera — governs the fleet, births/kills the user VM (existing capsule_birth_baby()/ capsule_vm_kill() path), holds the outer-Stadium quota the new VM draws from.
  • Hermes — the messaging fabric itself; per the standing "nothing is done until it's messaging" criterion, every other edge in this pentagon is ultimately meant to route through Hermes, making Hermes both a node in the graph and (eventually) the medium connecting every other edge — worth being explicit that this is a two-level relationship (Hermes as a peer VM and as the substrate other peers communicate over), not a design tension to smooth over by treating it as an ordinary fifth node.
  • Artemis — persistent block storage; the identity/system-metadata store (Phase 8's block-fence) and, per D.3, wherever a user's own working data actually lives during a session, live here.
  • The user's own VM — where the user plays (D.3 step 5).
  • Console — the human-facing binding point (D.3 step 4, Milestone 5).

D.3 — The attach/mint flow, end to end

  1. Idle loop watches for thumbdrive connects (sk_repl_idle(), already the right hook — confirmed 2026-08-27 during the (superseded) EXPIRE research: ~1s cadence, already used for xhci_poll_events()/MSC attach).
  2. Cert-only authentication — no password, no username. A presented thumbdrive's identity is entirely the cert on it. Verification means checking the cert's fields directly (chain of trust, most likely signed by Zuse's own key — the same x509_ed25519.c/ ed25519_verify() primitives Milestone 6 already built and proved work end to end, just verifying against Zuse's pubkey instead of the snakeoil intermediate's). The system has no requirement to maintain any single identity itself — no user directory, no central registry of who exists. Each thumbdrive is a fully self-contained, portable identity record.
  3. A dedicated user VM is born from the identity's own data — "the users/agents/services metadata can reside in their capsule and [get] encoded directly into their dictionary when they attach and their init.4th executes." This is a runtime-constructed capsule from drive content, not a build-time-embedded one like pki:snakeoil-intermediate.der — a materially different mechanism from anything mkcapsule does today (gap, see D.4).
  4. The console VM attaches to the new user VM — this is exactly Milestone 5's still-open "Console/VM key-match binding" item, now with its open question resolved: "the bumps on a thumbdrive have to fit the holes on the VM... (ACL territory)" — reuse the existing ACL primitive (acl_mode/acl_allow/acl_pinned) for the key-match check, don't build a separate mechanism. Exact comparison semantics still undesigned (see D.4).
  5. The user plays entirely inside their own VM — all their FORTH activity happens in their own isolated VM context, never Hera's or anyone else's.
  6. Ongoing minting: while Zuse is attached/active, a second blank thumb presented can be minted with a new named identity (worked example given: S" CaptBob" MINT-shaped flow) and ejected — this is the still-open MINT word from Phase 8's own punch list, now with a concrete attach-flow context to design it against.
  7. Detach: working state is copied back to the user's own thumb and flushed before eject. Explicitly deferred — stated directly as "going to be a maintenance operation later," not needed now.

D.4 — Gaps identified 2026-08-27, sorted by whether they're answered

Answered (resolved during capture, not deferred):

  • Milestone 5's "reuse ACL-PIN vs. build a new key-match primitive" question — reuse ACL. Now grounded, not just intuited (mined 2026-08-27 from FABRIC-2.md §C/§D, lines ~2884-2918): acl_pinned's one-way-ratchet (include/vm.h:346, C-only mutation, no FORTH clear path) was already identified as the right-shaped precedent for exactly two things — Zuse's own one-way "burn" and console-session ownership — but in both cases only the pattern was precedented, never actually built past word-execution gating. The "still genuinely open" framing in FABRIC-2.md is accurate as of that writing; today's decision closes it, the comparison semantics remain the real gap (below).
  • EXPIRE's framing — superseded by "session end = VM detach," see D.2. Now shown to be required, not just cleaner, by FABRIC.md §17.1's own patron/departure table (see D.2's addendum above) — TTL was never a valid mechanism for a VM patron in the first place.
  • Regular-user cert chain-of-trust mechanism — signed by Zuse's own key, verified with already-built, already-proven Ed25519/X.509 primitives (Milestone 6). No new crypto work needed, only a new verification call site using existing functions.
  • Whether the system needs a central user directory — no, by design; each thumbdrive is self-contained (reinforces D.3 point 2, was implicit, now explicit).
  • The concrete target shape for message-bus migration (mined 2026-08-27 from FABRIC-2.md, cross-checked against live capsules/hermes/init.4th): a message is MSG-CELLS = 9 cells (TYPE, FROM, TO, PADDR, PLEN, STADIUM-CELL, SEQ, CH, ORIG-TYPE), 72 bytes, payload out-of-line (a pointer+length to caller-owned bytes — there was never a fixed inline payload field, an earlier open question in FABRIC-2.md §23.4 that its own design already closed as moot). Live API: MSG-ALLOC ( heat -- addr|0 ), CH-ALLOC ( heat -- addr|0 ), MSG-DELIVER ( m -- ), MSG-DELIVER-ALL ( -- ). A future "thumbdrive attach event" or "cert verify request" message type follows this exact shape — allocate, fill TYPE/FROM/TO/CH, point PADDR/PLEN at an out-of-line event struct, send. Not built, but no longer an abstract "use messaging someday" — there's a real API to target.

Real, unanswered gaps — deferred on purpose (per "answer what we can, defer what we can't"):

  • How does thumbdrive content actually become a capsule at runtime? mkcapsule only ever builds capsules at build time, baked into capsule_generated.c — nothing today constructs a capsule from data read off a live-attached device. This is new mechanism, not a variation on anything that exists.
  • Exact ACL "bumps and holes" comparison semantics. Which specific ACL fields, compared how, constitute a console-to-VM match? Direction is settled (reuse ACL), the actual comparison logic is not designed.
  • Message-bus migration scope. Which specific interactions (attach detection, cert verify, console bind) move to Hermes messages, and what do those message shapes look like? Entirely unscoped, explicitly deferred until after a hardwired version exists to migrate from.
  • Polymorphic block-boundary behavior for user VMs — still just the one original sentence from 2026-08-25, never elaborated.
  • SSD identity-store scope — does the system-resident store (the block-fence built in Phase 8) ever hold anything about regular users, or is it purely Zuse/system bookkeeping with regular users staying purely thumbdrive-resident? Best read of what was said: the latter, but not stated explicitly enough to treat as settled.
  • Does a user's VM/session state round-trip across multiple attaches (unplug, come back later, resume exactly where you left off), given detach explicitly copies state back to the drive? Implied yes by the detach description, not confirmed directly. Checked against FABRIC.md §24's mutation/identity-stability rules (mined 2026-08-27) — no conflict either way: identity is only pinned stable within one residency, so a thumbdrive re-attaching later and being admitted as a fresh VM patron (possibly reusing an identity value derived from its cert/pubkey) is simply a new residency each time. Nothing in the foundational theory blocks or answers round-tripping; it stays a pure implementation decision.
  • Reconcile D.2b's five-node, fully-connected pentagon against D.3 step 4's "console attaches to the user VM" phrasing. The Console is a full peer node (Hera/Hermes/Artemis/ User-VM/Console, K5), not just a passive relay that binds to one other node — D.3's wording undersells this. Which of the ten pentagon edges are real today versus aspirational once messaging lands is not worked out; only Hera↔UserVM (birth/kill) and UserVM↔Artemis-via-Hera's-quota (existing Stadium quota mechanics) are clearly already real in some form.
  • Confirmed baseline before any message-bus migration can start (mined 2026-08-27, FABRIC-2.md cross-checked against live src/starkernel/repl.c and the xHCI/USB driver): today's hotplug→MSC-attach→homeblocks_sig_check()blk_subsys_attach_device() chain is 100% hardwired, direct C calls, zero messaging at any point — confirmed empirically, not assumed. This is the exact, real starting point "hardwire now, message later" describes; there is no partial messaging implementation anywhere in this path to build on yet.
  • The single biggest hard blocker underneath all of it: SCSI WRITE(10) still doesn't exist (blkio_usb.c is read-only — Milestone 2's biggest open item, unchanged). Minting a blank thumb, and flushing state back on detach, both need real writes to physical USB media. None of D.3's flow can run on real hardware until this lands; QEMU testing would need to proxy through a writable virtio-blk stand-in the same way Phase 8's cert persistence did for Zuse's own identity.

Small, unrelated, real bug found along the way: the prompt shows zuse)ok> (a stray trailing paren, "never corrected typo") — should be (Zuse)ok>, both parens around the identity name, generalizing to any attached identity (e.g. (CaptBob)ok>). Independent of everything else in this section; safe to fix any time.

Why this affects §B: VM-COOL (and any inter-VM Stadium wiring) sits close to this design — see D.2's EXPIRE supersession above, the concrete example of exactly this risk materializing.

Next step: no implementation yet — this section is capture only, per direct request. Next session should turn D.3/D.4 into an actual scoped, ordered plan (the user's own framing: "identify gaps, answer what we can, defer what we can't... push the pile out in front of us").


E. The pile as a graph (2026-08-27)

Stated directly: "if this is all documented, scoped and correctly interwoven we can begin iterating... I see no reason to not create this as a graph, it might better handle the way I think." Auditing D.1-D.4/D.2b against the older Milestone 2/3/5 punch lists (§X in this document) confirms the instinct is right, not just stylistic — several items across different milestones are, on inspection, literally the same open question, and one single blocker (WRITE(10)) gates work in at least four unrelated-looking places. A flat punch list hides that; a graph doesn't.

graph TD
    W10["❌ WRITE(10) SCSI support<br/>(Milestone 2 — biggest single blocker)"]
    HOTPLUG["🟡 Hotplug event surfacing<br/>partially addressed, M2"]
    STALL["❌ USB error/stall recovery (M2)"]

    M6["✅ Milestone 6 — capsule PKI<br/>DONE 2026-08-26"]
    PH8["✅ Phase 8 — Zuse identity<br/>+ block-fence, DONE 2026-08-26"]

    CERTVERIFY["🔓 CA-signed-cert verification path (M3)<br/>UNBLOCKED by M6, not yet built"]
    FIRSTTOUCH["❌ First-touch identity→block-range<br/>allocation (M3)"]
    BMAPFMT["❓ On-drive block-map format (M3)<br/>real design decision, not started"]
    BMAPWRITE["❌ Write block-map to drive (M3)"]
    BMAPREAD["❌ Read/validate block-map on insert (M3)"]
    MIGSM["🟡 Migration state machine (M3)<br/>partially answered: ACL decides *when*"]
    UNCLEAN["❌ Unclean-removal handling (M3)"]

    ACLKEY["❓ ACL 'bumps and holes' comparison<br/>semantics — SAME GAP in M5 and D.4"]
    WIREBIND["❌ Wire hotplug → capsule_birth_baby() (M5)"]
    BINDSTEP["❌ Extend sk_repl_set_active_vm()<br/>with key-match (M5)"]
    DETACH["❌ Detach behavior (M5)"]

    EXPIRE["✅ EXPIRE reframed: session end<br/>= VM detach via COOL (§B + D.2)"]
    RUNCAP["❓ Runtime capsule construction<br/>from thumbdrive content (D.4) — new mechanism"]
    MINT["❌ Ongoing MINT word (Phase 8 + D.3)"]
    PENTAGON["📍 Pentagon: Hera/Hermes/Artemis/<br/>User-VM/Console, K5 (D.2b)"]
    MSGSHAPE["✅ Hermes message shape known<br/>(MSG-CELLS, MSG-ALLOC/DELIVER)"]
    MSGMIGRATE["❓ Message-bus migration of<br/>attach/verify/bind (D.4)"]

    SSDSCOPE["❓ SSD identity-store scope<br/>for regular users (D.4)"]
    ROUNDTRIP["❓ Session state round-trip<br/>across attaches (D.4)"]
    POLYBLOCK["❓ Polymorphic block-boundary<br/>behavior (D.1, since 2026-08-25)"]
    PROMPTBUG["🐛 (Zuse)ok> prompt typo<br/>trivial, independent"]

    W10 -->|blocks| BMAPWRITE
    W10 -->|blocks| MINT
    W10 -->|blocks| DETACH
    W10 -.->|blocks real-hardware testing of everything below| M8["Milestone 8 — bare metal"]

    M6 -->|unblocks| CERTVERIFY
    PH8 -->|supplies crypto primitives| CERTVERIFY
    PH8 -->|supplies mint-then-pin precedent| MINT

    BMAPFMT --> BMAPWRITE
    BMAPFMT --> BMAPREAD
    BMAPFMT --> FIRSTTOUCH

    CERTVERIFY --> RUNCAP
    RUNCAP --> MINT

    HOTPLUG --> WIREBIND
    ACLKEY --> BINDSTEP
    WIREBIND --> BINDSTEP
    BINDSTEP --> DETACH
    DETACH -->|triggers| EXPIRE

    MSGSHAPE --> MSGMIGRATE
    WIREBIND -.->|hardwired version must exist first| MSGMIGRATE
    BINDSTEP -.->|hardwired version must exist first| MSGMIGRATE
    CERTVERIFY -.->|hardwired version must exist first| MSGMIGRATE
    PENTAGON -->|which of the 10 edges get messaged| MSGMIGRATE

    classDef done fill:#1a3,stroke:#333,color:#fff
    classDef blocked fill:#a33,stroke:#333,color:#fff
    classDef unblocked fill:#a83,stroke:#333,color:#fff
    classDef open fill:#666,stroke:#333,color:#fff
    classDef partial fill:#883,stroke:#333,color:#fff
    class M6,PH8,EXPIRE,MSGSHAPE done
    class W10,STALL,FIRSTTOUCH,BMAPWRITE,BMAPREAD,UNCLEAN,WIREBIND,BINDSTEP,DETACH,MINT blocked
    class CERTVERIFY unblocked
    class BMAPFMT,ACLKEY,RUNCAP,MSGMIGRATE,SSDSCOPE,ROUNDTRIP,POLYBLOCK open
    class HOTPLUG,MIGSM partial

Legend: done · 🔓 unblocked-but-not-built · not started, no open design question left (just needs building) · real open design question, not just missing implementation · 🟡 partially addressed · 📍 topology/context node, not a work item itself · 🐛 trivial, independent bug. Solid arrows = hard dependency (A must exist before B can be built or finished). Dashed arrows = softer "gates/informs" relationships.

What the graph makes visible that the flat lists didn't:

  • WRITE(10) is a true hub, not just "the M2 punch list's biggest item" — it independently gates the block-map write path, MINT, detach/flush-back, and all real-hardware testing. Landing it once unblocks four separate-looking fronts at once.
  • ACLKEY (the exact ACL comparison semantics) is one node, not two — Milestone 5's "key and lock data shape" and D.4's "bumps and holes" gap are the literal same open question, asked in two different sessions/documents. Answering it once closes both.
  • RUNCAP (runtime capsule construction) sits on the critical path to MINT — a gap that read as "D.4 leftover detail" is actually load-bearing for the ongoing-minting flow, not a side note.
  • MSGMIGRATE has three separate hardwired prerequisites, all currently unbuilt — the message-bus migration can't even start until WIREBIND/BINDSTEP/CERTVERIFY exist to migrate from, confirming this is correctly the last thing to tackle in this whole area, not a parallel track.
  • Only SSDSCOPE, ROUNDTRIP, POLYBLOCK, and PROMPTBUG are genuinely standalone — everything else in the pile connects to at least one other node.

Not yet done: an ordered plan (which node to attack first, given the graph). Per Captain Bob's own framing, that's the next pass — "start asking and answering questions iteratively until we've planned as much as possible."

F. Scoped plans (iterative Q&A pass, started 2026-08-27)

One node at a time: surface the concrete decisions the node's own doc comments/code don't already answer, get a ruling, record it here. This section grows as the pass continues — it's the output of "the punch list of punch lists," not a duplicate of §E.

F.1 — WRITE(10) (the graph's highest-leverage node)

Traced against the live READ(10) implementation in src/starkernel/usb/xhci.c (xhci_bot_read_block() / xhci_bot_send_read10() / the XHCI_XFER_*/BOT_CMD_*/ XHCI_NEXT_ACTION_* deferred-dispatch state machine) before asking anything — the mechanism already exists for READ10 and WRITE10 is a direct mirror of it, not new protocol work:

  • Data direction flips. READ10's Data-In stage rides bulk_in_ring; WRITE10's Data-Out stage must ride bulk_out_ring instead (new XHCI_XFER_BOT_DATA_OUT / XHCI_NEXT_ACTION_BOT_DATA_OUT, reusing the existing xhci_bulk_out_enqueue_and_ring() against bot_data_buf rather than the CBW). CBW's bmCBWFlags clears the DATA_IN bit (host→device) instead of setting it.
  • New SCSI opcodeSCSI_CMD_WRITE10 (0x2A) — plus BOT_CMD_WRITE10 / BOT_TUR_CHAIN_WRITE10, mirroring READ10's TUR-preflight chain exactly (same first-command UNIT ATTENTION handling on a fresh target).
  • blkio_usb.c's usb_blk_write() stops being the BLKIO_ENOSUP stub: memcpy the caller's src into xdev->bot_data_buf, then call the new xhci_bot_write_block() — same shape as usb_blk_read().

Decisions made 2026-08-27 (iterative Q&A pass):

  1. read_only flag in blkio_info() — flips to 0 immediately once xhci_bot_write_block() is proven in QEMU. No separate "bring-up mode" gate to design or later retire.
  2. Validation target — a new disposable QEMU-only test image (e.g. disk/usbwrite-test.img, following the same disposable-clone convention as disk/artemis-metafence-*.img), attached via -drive + -device usb-storage,drive=.... Never disk/artemis.img itself, matching project_disk_images_in_repo's standing rule and how Phase 8's block-fence work was validated (project_metadata_fence_design's verification method).
  3. Scope boundaryWRITE(10) alone is the unit of work. MINT's write-the-identity step and DETACH's flush-back-to-thumb step are separate graph nodes; each gets its own scoping pass once WRITE(10) lands, rather than being pulled into this one preemptively.

Not yet scoped (deferred within this node): exact CSW failure/residue handling for a partial write (READ10's PASS/FAILED logic likely transfers unchanged, not independently verified); whether a write needs a follow-up TEST UNIT READY or cache-flush SCSI command before the transfer is considered durable on real media (QEMU's usb-storage backend may mask this — a real-hardware-only question, revisit at Milestone 8).

F.2 — ACLKEY (the "bumps and holes" comparison semantics)

Traced against the actual code before asking anything: acl_mode/acl_allow/acl_pinned (include/vm.h:343-346, src/word_source/acl_words.c) are DictEntry fields — per word, not per VM. There is no VM-level ACL structure anywhere today. So D.3/D.4's "reuse the existing ACL primitive" resolution can only ever have meant reuse the pattern (a cached decision plus a C-enforced one-way ratchet — if (e->acl_pinned) return; at every mutating primitive) — the actual data has to live somewhere new. sk_repl_set_active_vm() (starkernel/repl.c:64) is confirmed to be exactly what its own doc comment says: an unguarded raw pointer swap, no credential concept at all.

Decisions made 2026-08-27 (iterative Q&A pass):

  1. Where the lock lives. A new dedicated type in its own header — include/starkernel/vm_identity.h, a VMIdentity { uint8_t owner_pubkey[32]; uint8_t installed; } — embedded by value as a field on struct VM, exactly the way VMUuid stadium_vm_id (vm_uuid.h, its own header, embedded field) already does. Explicit standing instruction from Captain Bob: don't grow struct VM/vm.h feature-by-feature with more inline fields — when a feature's data has real shape, it gets its own header and gets integrated as a field, not inlined ad hoc. VMUuid was already the right precedent; VMIdentity follows it. Deliberately holds only the public key, not a seed — unlike Zuse's own zuse_cert_seed/zuse_cert_pubkey pair, a regular VM's lock never needs to sign anything itself, so no private material belongs on it at all.
  2. Zuse override. Zuse keeps an always-allowed override to attach to any VM (consistent with the existing emergency_console/zuse_session bypass precedent, and avoids the bricking risk of Zuse ever being locked out of a VM by its own cert state) — but the override must be a distinct, explicit call path (e.g. a separate function/word, not a silently-taken branch inside the normal bind check), so invoking it requires a deliberate acknowledgment rather than happening as a side effect of an ordinary bind attempt. Exact acknowledgment UX (a confirm prompt? a two-step word?) is not designed yet — the architectural commitment is only that it can't be silent.
  3. Binding pin. No pin. sk_repl_set_active_vm() stays freely retargetable — matches today's Tripod-fleet USE-word behavior, and is needed for real cases where a single console legitimately moves between VMs mid-session (Zuse doing maintenance work in another service VM; a user's console retargeting to update something in a second VM they own). The credential check runs at each bind call, not just once at first attach.

Not yet scoped (deferred within this node): the exact acknowledgment UX for the Zuse override path; whether VMIdentity.installed needs its own one-way fuse semantics (probably yes — the lock itself being immutable once set at a VM's birth is a different axis from "binding stays retargetable," and shouldn't be conflated with decision 3 above) — worth a dedicated look when this is actually built, not decided in this pass.

D.5 — Scope expansion (2026-08-27): identity is common to every VM, not just users

Surfaced while scoping ACLKEY, stated directly: "the whole object is to deliver a functional Tripod plus identities common to all VM's... this means now that we have to create certificates for Hermes, Artemis and Console along with Zuse and CaptBob's 'thumbdrives.'" This reframes VMIdentity (F.2 above) from a user-VM-specific mechanism into the general per-VM identity primitive — every node in the pentagon (Hera, Hermes, Artemis, a user's own VM, the Console) is expected to eventually carry one, not only VMs born from an attached thumbdrive. Doesn't change F.2's design, just its intended reach — worth remembering when VMIdentity actually gets built, so it isn't accidentally scoped narrower than this.

Two new standing items that came with this, both explicitly deferred (not part of the current iterative pass, recorded so they aren't lost):

  • A full codebase audit pass, using this same iterative Q&A workflow, to scavenge for more "same gap hiding in two places" opportunities the way ACLKEY turned out to be one gap wearing two names (Milestone 5's "key/lock shape" and D.4's "bumps and holes"), and the way WRITE(10) turned out to gate four separate-looking fronts at once. Not scoped, not started — a future pass of its own.
  • v2.0.0 release target: once Tripod is functional end to end, every VM has its identity mechanism, and the codebase/documentation are clean per the above audit, tag a v2.0.0 release. Stated as the destination this whole planning arc is walking toward, not an immediate next step.