Booting via BMC virtual CD reads the ~2.8 GB filesystem squashfs sequentially during the live-boot toram copy; a mid-read drop of the redirected medium loses the whole copy and fails the boot (v14). Split the rootfs into self-contained semantic layers so a retry re-reads at most one ~500-700 MiB layer, not everything. This is a resilience / reduced-re-read mechanism, not a fix for the virtual-media instability. NVIDIA variants now ship 7 layers (00-base, 05-firmware, 08-desktop, 10-nvidia-driver, 20-nvidia-platform, 30-nvidia-cuda-libs, 40-nvidia-dcgm-cuda) plus an explicit live/filesystem.module that fixes their OverlayFS order; amd/nogpu keep a single squashfs. - lib/squashfs-layers.sh: deterministic classifier (dpkg file ownership plus explicit rules for build.sh-injected files, never a path substring), per-layer mksquashfs, 800 MiB hard ceiling, unsquashfs -s plus strict extraction of every layer, merged-rootfs bootability check. - build.sh: split the monolith after the full lb build, verify and merge, write the module file, delete the monolith only then; abort before ISO assembly on any failure. Runs the builder test suites up front. - fast-path: force a full build for a multi-layer medium; fast_path_repack_squashfs hard-refuses (it would drop layers). - iso-validation.sh: validate_iso_squashfs_layers (module vs layer set match, size ceiling, no lone giant squashfs) and validate_iso_media_integrity (xorriso -check_media). - bee-install: honour filesystem.module order, abort on any layer failure. - 9013-toram-retry: record the real rsync exit code (it printed a false rc=0) and correct the "resumes the tail" comment (rsync without --partial keeps only fully-copied layers). No unsafe partial resume. - tests: test-squashfs-layers.sh plus a multi-layer guard in test-build-libs.sh; both run at the top of every build. - docs: bible-local architecture and decision, iso/README, iso-build-rules. Verified by a full nvidia build: 7 layers 622/199/256/466/37/567/562 MiB, every validator passes, xorriso -check_media good, merged rootfs bootable. Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>
3.6 KiB
Split the live medium into semantic SquashFS layers
Date: 2026-09-04 Status: active
Context
EASY-BEE shipped one filesystem-v<ver>.squashfs of about 2.8 GB. v13 booted
through the BMC virtual CD; v14 did not. During the live-boot toram copy,
rsync reads that single file sequentially and the read stopped part-way
through (around the middle), after which live-boot moved the partial RAM copy
over the medium and the boot failed.
The squashfs inside the build artifact was verified intact
(unsquashfs -strict-errors). Supported systems have at least 16 GB of RAM
(2026-09-04-supported-systems-minimum-16gb-ram.md), so this is not memory
exhaustion. The failure is in the virtual-media read path.
live-boot v14.03 already supports several /live/*.squashfs merged via
OverlayFS, and bee-install already unpacks multiple squashfs in lexical
order. The old builder fast path assumed exactly one squashfs (it picked the
first and deleted the rest).
Decision
- After a full
lb build, the builder deterministically splits the monolith into semantic layers (seearchitecture/squashfs-layers.md):00-base,05-firmware,08-desktop,10-nvidia-driver,20-nvidia-platform,30-nvidia-cuda-libs,40-nvidia-dcgm-cudafor NVIDIA variants; a single untouched squashfs foramd/nogpu. The base rootfs was ~1 GB compressed, so device firmware (firmware-*) and the local-console GUI stack (X.org, lightdm, mesa, chromium, mupdf, fonts) - neither on the SSH / headless path - were carved out to keep every layer near the 500-700 MiB target. - Layer boundaries come from dpkg file ownership plus an explicit,
code-described rule table for the non-
.debfilesbuild.shinjects. A path is never moved to an NVIDIA layer just because it containsnvidia. - Layer names carry the project version (
filesystem-v<ver>-NN-slug.squashfs), matching the existingfilesystem-v<ver>.squashfsscheme. - An explicit
live/filesystem.modulefixes the order live-boot uses. The same order governsbee-installand any rebuild. A higher-numbered layer always wins a conflict. - Each layer stays a self-contained valid squashfs, kept under an 800 MiB
compressed ceiling (build fails otherwise). merged-usr (
/bin,/sbin,/lib,/lib64as symlinks) is preserved; upper layers never carry a real top-level compat directory and never use opaque/whiteout semantics. - The monolith is deleted only after every layer is built, individually verified, and successfully re-merged into a bootable rootfs. Any failure aborts the build before the ISO is assembled - a partial layer set is never published.
- The builder fast path is disabled for a multi-layer medium: it forces a
full
lb build+ re-split.fast_path_repack_squashfshard-refuses to run. A layer-aware repack may come later. 9013-toram-retrynow records the realrsyncexit code (it printed a falserc=0) and no longer claims it resumes the tail of the current file (rsyncwithout--partialkeeps only fully-copied files). No unsafe partial-file resume is introduced.
Consequences
- A mid-copy virtual-media drop now costs one layer (target 500-700 MiB, hard ceiling 800 MiB), not the whole 2.8 GB rootfs; the retry re-reads only that layer.
- Every NVIDIA ISO build now runs the full path (no fast path) until a layer-aware repack exists. Build time is unchanged for full builds; overlay-only iterations lose the fast path for NVIDIA variants.
- The split does not address the root BMC virtual-media instability; it reduces the blast radius and the repeatedly-read volume.