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Let's drop the leading IETF or Infix prefixes from tests. Initially the idea was to mimnic the YANG models, but it's difficult to navigate and does not provide any real benefit to developers or end-users. Signed-off-by: Joachim Wiberg <troglobit@gmail.com>
183 lines
5.9 KiB
Python
Executable File
183 lines
5.9 KiB
Python
Executable File
#!/usr/bin/env python3
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r"""Bridge STP Basic
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First, verify that a fully connected mesh of 4 DUTs is pruned to a
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spanning tree.
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Since the mesh contains 3 redundant paths, can infer that a spanning
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tree has been created if all host interfaces can reach each other
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while exactly three links are in the blocking state.
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Then, assign explicit priorities to all bridges and ports, and verify
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that a spanning tree rooted at A is formed, with B, C, and D all
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directly connected to A.
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"""
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import infamy
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from infamy.util import parallel, until
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def stp_compatible(physical, logical):
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# Multi-chip mv88e6xxx systems do not flush their ATU's correctly
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# (tracked by kernelkit/linux#2)
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return "broken-stp" not in physical["provides"]
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def addbr(dut):
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ip = {
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"A": "10.0.0.101",
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"B": "10.0.0.102",
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"C": "10.0.0.103",
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"D": "10.0.0.104"
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}[dut.name]
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brports = [
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{
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"name": dut[n],
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"infix-interfaces:bridge-port": {
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"bridge": "br0",
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}
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} for n in ("a", "b", "c", "d", "h") if n != dut.name.lower()
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]
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dut.put_config_dicts({
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"ietf-interfaces": {
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"interfaces": {
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"interface": [
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{
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"name": "br0",
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"type": "infix-if-type:bridge",
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"enabled": True,
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"bridge": {
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"stp": {},
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},
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"ipv4": {
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"address": [
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{
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"ip": ip,
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"prefix-length": 24,
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}
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]
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},
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}
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] + brports,
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}
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}
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})
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def explicit_prios(dut):
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def prio(n):
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match n:
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case "a"|"A":
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return 1
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case "b"|"B":
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return 2
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case "c"|"C":
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return 3
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case "d"|"D":
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return 4
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brports = [
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{
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"name": dut[n],
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"infix-interfaces:bridge-port": {
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"stp": {
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"cist": {
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"priority": prio(n),
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},
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},
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}
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} for n in ("a", "b", "c", "d") if n != dut.name.lower()
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]
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dut.put_config_dicts({
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"ietf-interfaces": {
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"interfaces": {
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"interface": [
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{
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"name": "br0",
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"bridge": {
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"stp": {
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"cist": {
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"priority": prio(dut.name),
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},
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},
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},
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}
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] + brports,
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}
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}
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})
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def num_blocking(dut):
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num = 0
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for iface in dut.get_data("/ietf-interfaces:interfaces")["interfaces"]["interface"]:
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state = iface.get("bridge-port", {}).get("stp", {}).get("cist", {}).get("state")
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if state == "blocking":
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num += 1
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return num
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def bridge_id(dut, id):
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br0 = dut.get_data("/ietf-interfaces:interfaces/interface[name='br0']")\
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["interfaces"]["interface"]["br0"]
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cist = br0.get("bridge", {}).get("stp", {}).get("cist", {})
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if not (cid := cist.get(id)):
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return None
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return f"{cid['priority']:1x}.{cid['system-id']:03x}.{cid['address']}"
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def port_role(dut, port):
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iface = dut.get_data(f"/ietf-interfaces:interfaces/interface[name='{port}']")\
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["interfaces"]["interface"][port]
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return iface.get("bridge-port", {}).get("stp", {}).get("cist", {}).get("role")
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with infamy.Test() as test:
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with test.step("Set up topology and attach to target DUT"):
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env = infamy.Env(nodes_compatible=stp_compatible)
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a, b, c, d = parallel(lambda: env.attach("A"), lambda: env.attach("B"),
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lambda: env.attach("C"), lambda: env.attach("D"))
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host = { p: env.ltop.xlate("host", p)[1] for p in ("a", "b", "c", "d") }
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with test.step("Configure a bridge with spanning tree eneabled on dut a, b, c, and d"):
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parallel(lambda: addbr(a), lambda: addbr(b), lambda: addbr(c), lambda: addbr(d))
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with test.step("Add an IP address to each host interface in the 10.0.0.0/24 subnet"):
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ns = { p: infamy.IsolatedMacVlan(host[p]).start() for p in ("a", "b", "c", "d") }
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parallel(lambda: ns["a"].addip("10.0.0.1"), lambda: ns["b"].addip("10.0.0.2"),
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lambda: ns["c"].addip("10.0.0.3"), lambda: ns["d"].addip("10.0.0.4"))
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with test.step("Verify that exactly three links are blocking"):
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until(lambda: sum(map(num_blocking, (a, b, c, d))) == 3, 60)
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with test.step("Verify that host:a can reach host:{b,c,d}"):
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parallel(lambda: ns["a"].must_reach("10.0.0.2"),
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lambda: ns["a"].must_reach("10.0.0.3"),
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lambda: ns["a"].must_reach("10.0.0.4"))
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with test.step("Add explicit port and bridge priorities: a,b,c,d=>1,2,3,4"):
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parallel(lambda: explicit_prios(a), lambda: explicit_prios(b),
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lambda: explicit_prios(c), lambda: explicit_prios(d))
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with test.step("Verify that A, B, C and D agrees on A being the root bridge"):
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a_id = bridge_id(a, "bridge-id")
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print(f"A's bridge-id: {a_id}")
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until(lambda: all(map(lambda n: bridge_id(n, "root-id") == a_id, (a, b, c, d))), 60)
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with test.step("Verify that B, C and D all use their direct connection to on A"):
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until(lambda: all(map(lambda n: port_role(n, n["a"]) == "root", (b, c, d))), 60)
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with test.step("Verify that host:a can reach host:{b,c,d}"):
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parallel(lambda: ns["a"].must_reach("10.0.0.2"),
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lambda: ns["a"].must_reach("10.0.0.3"),
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lambda: ns["a"].must_reach("10.0.0.4"))
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test.succeed()
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