Every scenario that places a container runtime gives each of its machines `egress: true` — a node that runs modules pulls images from the internet, which is what a node does. The underlay-only scenarios (bootstrap-single, behind-nat, segmented-and-unforwardable, the-ordinary-shape, two-on-a-segment) stay sealed on purpose: an extra NIC would change the very reachability they are asserting about. `images:` keeps only the mesh's own — 55 third-party entries leave whole-mesh-full alone, and the machine fetches them itself by the digest its module.json already pins. The whole-mesh beds also say per machine which of ours they get: novox the substrate control plane and its own fifteen runtimes, ace its twenty-four, the two workstations one each. That is not a lab economy. An operator's workstation holds the images its own modules need, and giving these two the union would put some thirty gigabytes onto a thirty-gigabyte disk. bootstrap-with-registry.yml is deleted. It existed only to demonstrate the lab's registry, nothing referenced it, and there is nothing left for it to demonstrate. Claude-Session: https://claude.ai/code/session_01LrgweAeERJYBg88c5cKDzF
46 lines
2.2 KiB
YAML
46 lines
2.2 KiB
YAML
# One machine that becomes a mesh, then plays out the whole model-access refreshable-grant flow for
|
|
# Anthropic (novox/hq ADR 0050) with the vendor's OAuth endpoint STUBBED — no real Anthropic is
|
|
# reached. The bed proves the one property the carve-out rests on: the refresh token is delivered ONLY
|
|
# to the manager node — as an ordinary sealed credential the HOST unseals — the control plane seals and
|
|
# delivers only the ACCESS token, and a consuming node writes an access-token-only credential and is
|
|
# never given a refresh token.
|
|
#
|
|
# The flow the test drives (OAuth stubbed, so it is the FLOW that is proven, not the vendor):
|
|
# the manager module seals the refresh token to the node's PUBLIC key -> the host unseals it and
|
|
# mounts the cleartext at the manager's bound path -> the manager calls the stub token endpoint ->
|
|
# submits back only { access token, re-sealed box } -> mesh-control seals the access token per
|
|
# consumer holder -> the consumer runtime writes ~/.claude/.credentials.json, access-token-only.
|
|
#
|
|
# MESH_LAB_HOST_BINARY=.../mesh-host MESH_LAB_BUNDLE=.../examples/substrate-first-node.lock
|
|
# Build BOTH runtime images into the local daemon first (the scenario stocks and serves them by
|
|
# digest, which is where the host pulls them from):
|
|
# scripts/build-module-runtime.sh anthropic-manager /tmp/anthropic-manager.tar
|
|
# scripts/build-module-runtime.sh anthropic-consumer /tmp/anthropic-consumer.tar
|
|
# (the tar output is incidental — the build also tags the image into the local docker daemon, which
|
|
# is what raise() stocks.) The stub OAuth endpoint is a tiny node server the test runs from the
|
|
# manager runtime image itself, so no extra image is needed.
|
|
scenario: anthropic-bed
|
|
|
|
segments:
|
|
hosting:
|
|
kind: public
|
|
cidr: [192.0.2.0/24]
|
|
|
|
machines:
|
|
anchor:
|
|
at: { segment: hosting, address: [192.0.2.10] }
|
|
egress: true
|
|
inbound: allow
|
|
memory: 3GiB
|
|
cpus: 2
|
|
|
|
images:
|
|
- mesh-control:development
|
|
# The two model-access runtimes, built by scripts/build-module-runtime.sh into the local daemon and
|
|
# loaded onto the machine, which holds them by their own image IDs.
|
|
- mesh-runtime-anthropic-manager:development
|
|
- mesh-runtime-anthropic-consumer:development
|
|
|
|
place:
|
|
all: [host, runtime]
|