mirror of
https://github.com/dtzp555-max/aci-sim.git
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aci-sim is a stateful REST simulator of a 2-site Cisco ACI fabric (per-site APIC + ND/NDO management planes) — for testing ACI automation (Ansible cisco.aci / cisco.mso, aci-py, custom REST clients) and CI gates without real hardware. Highlights: APIC + NDO REST surface served from one in-memory MIT built from a declarative topology.yaml; port mode + sandbox (real per-device IPs on :443) run modes; LLDP/CDP neighbor visibility; NDO->APIC deploy mirror (multi-site templates materialize onto the target sites' APIC stores); real-APIC fvBD default attributes; file-backed state save/restore; an `aci-sim` CLI (validate/show/graph/run/new/init/lldp); and an 888-test suite. History squashed for the public release. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
167 lines
6.0 KiB
Python
167 lines
6.0 KiB
Python
"""Control-plane admin router mounted under /_sim on each APIC app."""
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from __future__ import annotations
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import copy
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from fastapi import APIRouter, Request
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from fastapi.responses import JSONResponse
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from aci_sim.control.persist import (
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deserialize_store,
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load_json,
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save_json,
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serialize_store,
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state_dir,
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)
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from aci_sim.mit.mo import MO
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def _apic_error(text: str, code: str = "103", status_code: int = 400) -> JSONResponse:
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"""Return an APIC error envelope as a JSONResponse.
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Duplicated (rather than imported) from rest_aci.app to avoid a circular
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import: app.py imports make_admin_router from this module.
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"""
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body = {
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"imdata": [{"error": {"attributes": {"text": text, "code": code}}}],
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"totalCount": "1",
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}
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return JSONResponse(status_code=status_code, content=body)
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def make_admin_router(state) -> APIRouter:
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"""Build the /_sim admin router.
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state is an ApicSiteState dataclass; we mutate state.store directly.
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"""
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router = APIRouter(prefix="/_sim")
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_snapshots: dict[str, object] = {} # name → MITStore deepcopy
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@router.post("/reset")
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async def reset():
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state.store = copy.deepcopy(state.baseline)
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return {"status": "ok", "action": "reset"}
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@router.post("/snapshot/{name}")
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async def snapshot(name: str):
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_snapshots[name] = copy.deepcopy(state.store)
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return {"status": "ok", "snapshot": name}
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@router.post("/restore/{name}")
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async def restore(name: str):
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if name not in _snapshots:
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return JSONResponse(
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status_code=404,
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content={"status": "error", "detail": f"snapshot '{name}' not found"},
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)
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state.store = copy.deepcopy(_snapshots[name])
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return {"status": "ok", "restored": name}
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def _find_site(topo):
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"""Look up the site matching state.site in a freshly-loaded topology.
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Matches by the stable Site.id first (the schema's documented stable
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key), falling back to Site.name for topologies that only vary node
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content but keep the same id. Returns None if the site no longer
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exists in the new topology at all.
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"""
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for candidate in topo.sites:
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if candidate.id == state.site.id:
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return candidate
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for candidate in topo.sites:
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if candidate.name == state.site.name:
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return candidate
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return None
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@router.post("/reload")
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async def reload(request: Request):
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from aci_sim.topology.loader import load_topology
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from aci_sim.build.orchestrator import build_site
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from aci_sim.runtime.config import TOPOLOGY_PATH
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topo = load_topology(TOPOLOGY_PATH)
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fresh_site = _find_site(topo)
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if fresh_site is None:
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return _apic_error(
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text=(
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f"Site '{state.site.name}' (id={state.site.id!r}) no longer "
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"exists in the reloaded topology"
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),
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code="103",
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status_code=400,
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)
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# Use the FRESH site object from the just-loaded topology, not the
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# stale pre-reload state.site — otherwise edits to this site's nodes/
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# leaves in topology.yaml are silently ignored (finding #11).
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state.topo = topo
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state.site = fresh_site
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new_store = build_site(topo, fresh_site)
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state.store = new_store
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state.baseline = copy.deepcopy(new_store)
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return {"status": "ok", "action": "reload"}
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@router.post("/save/{name}")
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async def save(name: str):
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"""Persist this site's MITStore to disk under *name*.
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File is keyed by both *name* and ``state.site.id`` so a single
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SIM_STATE_DIR can hold saves for multiple sites without collision
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(mirrors the wrapper script's per-plane file naming).
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"""
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path = state_dir() / f"{name}.{state.site.id}.apic.json"
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data = serialize_store(state.store)
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save_json(path, data)
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return {"status": "ok", "file": str(path), "count": len(data)}
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@router.post("/load/{name}")
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async def load(name: str):
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"""Restore this site's MITStore from a prior :func:`save`."""
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path = state_dir() / f"{name}.{state.site.id}.apic.json"
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if not path.exists():
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return _apic_error(
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f"state '{name}' not found for site {state.site.id}",
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status_code=404,
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)
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data = load_json(path)
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state.store = deserialize_store(data)
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return {"status": "ok", "count": len(data)}
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@router.post("/add-leaf")
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async def add_leaf(request: Request):
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from aci_sim.rest_aci.writes import materialize_node_registration
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body = await request.json()
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node_id = body.get("id")
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if node_id is None:
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existing = [int(mo.attrs.get("id", 0)) for mo in state.store.by_class("fabricNode")]
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node_id = max(existing, default=100) + 1
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name = body.get("name", f"leaf-{node_id}")
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# Shares the fabricNodeIdentP write-reaction's enrichment (finding #19):
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# fabricNode + topSystem + healthInst + fabricLink cabling to the
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# spines + l1PhysIf inventory, not just a bare fabricNode.
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materialize_node_registration(
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state.store,
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topo=state.topo,
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site=state.site,
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node_id=int(node_id),
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name=name,
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role=body.get("role", "leaf"),
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)
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return {"status": "ok", "node_id": node_id, "name": name}
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@router.post("/remove-leaf")
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async def remove_leaf(request: Request):
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body = await request.json()
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node_id = body.get("id")
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if node_id is None:
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return JSONResponse(status_code=400, content={"status": "error", "detail": "id required"})
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pod = state.site.pod
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dn = f"topology/pod-{pod}/node-{node_id}"
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mo = MO("fabricNode", dn=dn, status="deleted")
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state.store.upsert(mo)
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return {"status": "ok", "removed": node_id}
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return router
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