PIPELINE.md §1 (default-to-removal), §4.3 (catalog admission), §10 (every dishonest label is a poisoned training example). Empirical evidence on commits4ab5477→c41763b: samba_usermap_script fired its bind_perl payload but the framework's bind handler never managed to connect to the guest's listening port within session_open_timeout_s=30 (or even with WfsDelay=30 bumped on the framework side). All 67 attempts in the §3 probe ended in session_open_timeout. Yet the schedule clock was still writing `infected_running` labels for the failed exploit — exactly the §10 poisoned-example pattern. Until §5 step 3 builds an in-house target VM and step 4 re-admits modules with `verified_against` recorded (§4.3), the production catalog should consist of zero verified Tier-3 modules. That's the state after this removal: the four remaining modules (vsftpd_234_backdoor, distccd_command_exec, php_cgi_arg_injection, unreal_ircd_3281_backdoor) are all `requires_bridge=true`, which the fleet picker filters out unconditionally (the post-revert behavior from commit0390eb2). Net effect: production runs Tier-2 only, producing honest Tier-2 episodes and zero dishonest Tier-3 infected_running labels. Test fixture updated to inject synthetic in-memory ModuleConfigs instead of loading from disk, so Tier-3 dispatch logic stays tested even though no production module qualifies. test_exploits asserts the new "every shipped module is requires_bridge until §4.3 admits something verified" invariant — flips into a tripwire if anyone reintroduces an unverified non-bridge module. 229 passed. Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>
447 lines
17 KiB
Python
447 lines
17 KiB
Python
"""Tests for fleet capacity calculation + sample manifest selection.
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Capacity is unit-tested via deterministic monkeypatching of /proc and
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os.cpu_count so the math is exercised independently of the host
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running the suite. Sample selection has its own tests covering the
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"different hosts pick different samples" property.
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"""
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from __future__ import annotations
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from pathlib import Path
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import pytest
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from orchestrator import fleet
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from samples.manifest import Sample, SampleManifest
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REPO_ROOT = Path(__file__).resolve().parent.parent
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# ---------------------------------------------------------------------------
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# Capacity
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# ---------------------------------------------------------------------------
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def _patch_capacity_inputs(
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monkeypatch,
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*,
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cores: int,
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ram_total_mib: int,
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ram_available_mib: int,
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load_1m: float = 0.0,
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) -> None:
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monkeypatch.setattr(fleet.os, "cpu_count", lambda: cores)
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monkeypatch.setattr(
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fleet, "_read_meminfo",
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lambda: {
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"MemTotal": ram_total_mib * 1024 * 1024,
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"MemAvailable": ram_available_mib * 1024 * 1024,
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},
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)
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monkeypatch.setattr(fleet, "_read_loadavg", lambda: load_1m)
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def test_capacity_8core_idle_box(monkeypatch) -> None:
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_patch_capacity_inputs(monkeypatch, cores=8, ram_total_mib=16384, ram_available_mib=14000)
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c = fleet.detect_capacity(ram_per_vm_mib=320)
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assert c.cores_total == 8
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assert c.cores_reserved == 1 # 8 // 8 = 1
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assert c.max_by_cores == 7
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# Plenty of RAM, idle → cores binding.
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assert c.max_concurrent == 7
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assert "binding=cores" in c.rationale
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def test_capacity_low_ram_caps_below_cores(monkeypatch) -> None:
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# 8 cores but only ~2 GiB free → ram caps below cores.
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_patch_capacity_inputs(monkeypatch, cores=8, ram_total_mib=4096, ram_available_mib=2048)
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c = fleet.detect_capacity(ram_per_vm_mib=320)
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# headroom = max(1024, 4096//8) = 1024
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# max_by_ram = (2048 - 1024) // 320 = 3
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assert c.max_by_ram == 3
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assert c.max_concurrent == 3
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def test_capacity_high_load_halves_concurrency(monkeypatch) -> None:
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# 8 cores, plenty of RAM, but load_1m / cores > 0.75
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_patch_capacity_inputs(
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monkeypatch, cores=8, ram_total_mib=16384, ram_available_mib=14000,
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load_1m=7.0, # 7/8 = 0.875 > 0.75
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)
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c = fleet.detect_capacity(ram_per_vm_mib=320)
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# max_by_cores = 7; max_by_load = max(1, 7//2) = 3
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assert c.max_by_load == 3
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assert c.max_concurrent == 3
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def test_capacity_pi5_class(monkeypatch) -> None:
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"""4 cores + 8 GiB → reserve 1 core, run 3 concurrent."""
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_patch_capacity_inputs(monkeypatch, cores=4, ram_total_mib=7951, ram_available_mib=5223)
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c = fleet.detect_capacity(ram_per_vm_mib=320)
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assert c.cores_total == 4
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assert c.max_concurrent == 3
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def test_capacity_minimal_box(monkeypatch) -> None:
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"""1-core 1 GiB host shouldn't try to run any VMs."""
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_patch_capacity_inputs(monkeypatch, cores=1, ram_total_mib=1024, ram_available_mib=512)
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c = fleet.detect_capacity(ram_per_vm_mib=320)
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assert c.max_concurrent == 0
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def test_capacity_to_dict_round_trips(monkeypatch) -> None:
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_patch_capacity_inputs(monkeypatch, cores=4, ram_total_mib=8000, ram_available_mib=6000)
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c = fleet.detect_capacity(ram_per_vm_mib=320)
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d = c.to_dict()
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assert d["cores_total"] == 4
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assert d["max_concurrent"] == c.max_concurrent
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assert "rationale" in d
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# ---------------------------------------------------------------------------
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# Sample manifest
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# ---------------------------------------------------------------------------
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def test_repo_manifest_loads() -> None:
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m = SampleManifest.load(REPO_ROOT / "samples" / "manifest.toml")
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assert len(m) >= 4
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# Every entry has required fields.
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for s in m.samples:
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assert s.name and s.family and s.category and s.profile
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# All "mimic" today; will switch as real samples are added.
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assert all(s.kind == "mimic" for s in m.samples)
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def test_selection_is_deterministic() -> None:
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m = SampleManifest.load(REPO_ROOT / "samples" / "manifest.toml")
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a = m.select(host_id="lab-1", slot=2, episode_index=5)
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b = m.select(host_id="lab-1", slot=2, episode_index=5)
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assert a is b
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def test_selection_differs_across_hosts() -> None:
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"""Two hosts on the same slot/episode should generally hit
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different samples (probabilistic — assert distribution, not
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individual equality).
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"""
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m = SampleManifest.load(REPO_ROOT / "samples" / "manifest.toml")
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if len(m) < 2:
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pytest.skip("manifest too small for diversity check")
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matches = 0
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for slot in range(20):
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a = m.select(host_id="alice", slot=slot, episode_index=0)
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b = m.select(host_id="bob", slot=slot, episode_index=0)
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if a is b:
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matches += 1
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# If the catalog has N samples, naive collision rate ~1/N. With
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# 20 trials and N≥4 we expect ~5 matches; allow up to half.
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assert matches < 15, "host_id seed isn't producing variety"
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def test_selection_walks_catalog_across_episodes() -> None:
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"""A single host over many episodes should hit every sample at
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least once."""
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m = SampleManifest.load(REPO_ROOT / "samples" / "manifest.toml")
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seen = set()
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for ep in range(200):
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seen.add(m.select(host_id="lab-x", slot=0, episode_index=ep).name)
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assert len(seen) == len(m), f"only saw {len(seen)}/{len(m)} samples"
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def test_manifest_rejects_missing_required_field(tmp_path: Path) -> None:
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p = tmp_path / "bad.toml"
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p.write_text(
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'[[sample]]\n'
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'name = "x"\n'
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'family = "y"\n'
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'# missing category\n'
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'profile = "z"\n'
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)
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with pytest.raises(ValueError, match="category"):
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SampleManifest.load(p)
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def test_manifest_rejects_unknown_category(tmp_path: Path) -> None:
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p = tmp_path / "bad.toml"
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p.write_text(
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'[[sample]]\n'
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'name = "x"\n'
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'family = "y"\n'
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'category = "fish"\n'
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'profile = "z"\n'
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)
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with pytest.raises(ValueError, match="category"):
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SampleManifest.load(p)
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def test_manifest_rejects_duplicate_names(tmp_path: Path) -> None:
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p = tmp_path / "dup.toml"
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p.write_text(
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'[[sample]]\n'
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'name = "x"\nfamily = "y"\ncategory = "rat"\nprofile = "z"\n'
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'\n[[sample]]\n'
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'name = "x"\nfamily = "y"\ncategory = "rat"\nprofile = "z"\n'
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)
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with pytest.raises(ValueError, match="duplicate"):
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SampleManifest.load(p)
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# ---------------------------------------------------------------------------
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# Fleet dispatch — Tier 3 vs Tier 2 selection + per-slot module rotation
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# ---------------------------------------------------------------------------
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class _RecordingPopen:
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"""Replacement for subprocess.run that just records what it would
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have invoked. Returns a returncode-0 result."""
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calls: list[dict] = []
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def __init__(self, args, **kwargs) -> None:
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# Mimic CompletedProcess shape.
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type(self).calls.append({"args": args, "env": kwargs.get("env"), "cwd": kwargs.get("cwd")})
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self.returncode = 0
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self.stdout = b""
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self.stderr = b""
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def _fixture_modules() -> dict:
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"""Synthetic in-memory module catalog for test fixtures.
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Production no longer ships any verified Tier-3 modules — the
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samba_usermap_script entry was removed because it never landed a
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session against the configured Metasploitable2 target (PIPELINE.md
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§4.3 admission criteria, default-to-removal). Until §5 step 3
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builds a target VM and step 4 re-admits modules with a recorded
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`verified_against`, the production catalog is empty by design.
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Tests still need to exercise Tier-3 dispatch logic, so this
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fixture provides a SLIRP-friendly module + a bridge-required
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module hand-built in-memory. Keeping the fixture decoupled from
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`exploits/modules/*.toml` means production catalog state can
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change freely without breaking these tests."""
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from exploits.modules import ModuleConfig
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return {
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"fixture_slirp": ModuleConfig(
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name="fixture_slirp",
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module_type="exploit",
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module_path="multi/test/slirp_friendly_fixture",
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options={"RHOSTS": "{{ target_ip }}", "RPORT": 139},
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payload_path="cmd/unix/bind_perl",
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payload_options={"LPORT": 4444},
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requires_bridge=False,
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extra_target_ports=(4444,),
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),
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"fixture_bridge": ModuleConfig(
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name="fixture_bridge",
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module_type="exploit",
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module_path="multi/test/bridge_required_fixture",
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options={"RHOSTS": "{{ target_ip }}", "RPORT": 21},
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payload_path="cmd/unix/interact",
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requires_bridge=True,
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),
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}
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def _fleet_cfg_with_modules(tmp_path: Path, *, force_tier2: bool = False):
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from orchestrator import fleet
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from samples.manifest import SampleManifest
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repo_root = REPO_ROOT
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return fleet.FleetConfig(
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host_id="test-host",
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repo_root=repo_root,
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data_root=tmp_path,
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manifest=SampleManifest.load(repo_root / "samples" / "manifest.toml"),
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modules=_fixture_modules(),
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force_tier2=force_tier2,
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)
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def _patch_subprocess(monkeypatch):
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from orchestrator import fleet
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_RecordingPopen.calls = []
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monkeypatch.setattr(fleet.subprocess, "run", _RecordingPopen)
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def test_fleet_dispatches_to_tier3_when_msfrpcd_listening(monkeypatch, tmp_path) -> None:
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from orchestrator import fleet
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cfg = _fleet_cfg_with_modules(tmp_path)
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monkeypatch.setattr(fleet, "_msfrpcd_available", lambda *a, **kw: True)
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_patch_subprocess(monkeypatch)
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capacity = fleet.detect_capacity()
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sample = cfg.manifest.samples[0]
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res = fleet._run_slot(cfg, slot=0, sample=sample, episode_index=0, capacity=capacity)
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assert res.tier == "tier3", res
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assert res.module_name in cfg.modules
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cmd = _RecordingPopen.calls[-1]["args"]
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# The Tier-3 runner is what gets invoked.
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assert any("run_tier3_demo.py" in str(a) for a in cmd)
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# The module name is plumbed through.
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assert "--module" in cmd
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assert res.module_name in cmd
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def test_fleet_falls_back_to_tier2_when_msfrpcd_down(monkeypatch, tmp_path) -> None:
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from orchestrator import fleet
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cfg = _fleet_cfg_with_modules(tmp_path)
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monkeypatch.setattr(fleet, "_msfrpcd_available", lambda *a, **kw: False)
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_patch_subprocess(monkeypatch)
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capacity = fleet.detect_capacity()
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sample = cfg.manifest.samples[0]
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res = fleet._run_slot(cfg, slot=0, sample=sample, episode_index=0, capacity=capacity)
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assert res.tier == "tier2"
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assert res.module_name is None
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cmd = _RecordingPopen.calls[-1]["args"]
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assert any("run_real_vm_demo.py" in str(a) for a in cmd)
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def test_fleet_falls_back_to_tier2_when_module_catalog_empty(monkeypatch, tmp_path) -> None:
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from orchestrator import fleet
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from samples.manifest import SampleManifest
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cfg = fleet.FleetConfig(
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host_id="test-host",
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repo_root=REPO_ROOT,
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data_root=tmp_path,
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manifest=SampleManifest.load(REPO_ROOT / "samples" / "manifest.toml"),
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modules={}, # explicitly empty
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)
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monkeypatch.setattr(fleet, "_msfrpcd_available", lambda *a, **kw: True)
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_patch_subprocess(monkeypatch)
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capacity = fleet.detect_capacity()
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sample = cfg.manifest.samples[0]
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res = fleet._run_slot(cfg, slot=0, sample=sample, episode_index=0, capacity=capacity)
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assert res.tier == "tier2"
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def test_fleet_force_tier2_overrides_msfrpcd(monkeypatch, tmp_path) -> None:
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from orchestrator import fleet
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cfg = _fleet_cfg_with_modules(tmp_path, force_tier2=True)
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monkeypatch.setattr(fleet, "_msfrpcd_available", lambda *a, **kw: True)
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_patch_subprocess(monkeypatch)
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capacity = fleet.detect_capacity()
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sample = cfg.manifest.samples[0]
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res = fleet._run_slot(cfg, slot=0, sample=sample, episode_index=0, capacity=capacity)
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assert res.tier == "tier2"
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def test_fleet_skips_requires_bridge_modules_when_no_bridge(monkeypatch, tmp_path) -> None:
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"""Fleet must filter out callback-payload modules when BRIDGE is
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unset — otherwise the exploit fires but the session never lands
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and the episode degenerates to a 30 s session_open_timeout."""
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from orchestrator import fleet
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cfg = _fleet_cfg_with_modules(tmp_path)
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monkeypatch.setattr(fleet, "_msfrpcd_available", lambda *a, **kw: True)
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monkeypatch.delenv("BRIDGE", raising=False)
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_patch_subprocess(monkeypatch)
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capacity = fleet.detect_capacity()
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sample = cfg.manifest.samples[0]
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seen_modules = set()
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for ep in range(20):
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res = fleet._run_slot(cfg, slot=0, sample=sample, episode_index=ep, capacity=capacity)
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if res.tier == "tier3" and res.module_name:
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seen_modules.add(res.module_name)
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# Every selected module must be callback-free (same-socket).
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callback_modules = {
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m.name for m in cfg.modules.values() if m.requires_bridge
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}
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assert callback_modules, "test setup error: expected some require_bridge modules"
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assert not (seen_modules & callback_modules), \
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f"selected callback modules without BRIDGE: {seen_modules & callback_modules}"
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def test_tier3_strips_bridge_env_even_when_set(monkeypatch, tmp_path) -> None:
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"""Tier-3 always uses SLIRP+hostfwd because the rest of the pipeline
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passes target_ip=127.0.0.1 regardless of bridge mode (no guest-IP
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discovery wired). If BRIDGE leaks into launch_target.sh's env, the
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target VM goes into tap mode without the matching IP discovery and
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every exploit times out against 127.0.0.1 — producing dishonest
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infected_running labels (PIPELINE.md §10). Strip BRIDGE from the
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Tier-3 subprocess env even when the operator set it for Tier-2.
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Regression for: 2026-05-03 vsftpd_234_backdoor episode on
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k-gamingcom (commit 4ab5477) — picker selected vsftpd because
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BRIDGE was set, episode timed out, schedule-clock wrote
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`infected_running` for an exploit that never landed."""
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from orchestrator import fleet
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cfg = _fleet_cfg_with_modules(tmp_path)
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monkeypatch.setattr(fleet, "_msfrpcd_available", lambda *a, **kw: True)
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monkeypatch.setenv("BRIDGE", "br-malware")
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_patch_subprocess(monkeypatch)
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capacity = fleet.detect_capacity()
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sample = cfg.manifest.samples[0]
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fleet._run_slot(cfg, slot=0, sample=sample, episode_index=0, capacity=capacity)
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assert "BRIDGE" not in _RecordingPopen.calls[-1]["env"]
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def test_tier3_drops_requires_bridge_modules_unconditionally(monkeypatch, tmp_path) -> None:
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"""Picker MUST drop requires_bridge modules even when BRIDGE is set,
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because the rest of the pipeline can't actually use them yet (no
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guest-IP discovery for bridge mode). Until that's wired, including
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them produces session_open_timeout + dishonest labels.
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Asserts the picker only ever returns the SLIRP-friendly subset
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across many episodes regardless of BRIDGE state."""
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from orchestrator import fleet
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cfg = _fleet_cfg_with_modules(tmp_path)
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monkeypatch.setattr(fleet, "_msfrpcd_available", lambda *a, **kw: True)
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monkeypatch.setenv("BRIDGE", "br-malware")
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_patch_subprocess(monkeypatch)
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capacity = fleet.detect_capacity()
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slirp_friendly = {k for k, v in cfg.modules.items() if not v.requires_bridge}
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sample = cfg.manifest.samples[0]
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seen = set()
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for ep in range(40):
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res = fleet._run_slot(cfg, slot=0, sample=sample,
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episode_index=ep, capacity=capacity)
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if res.tier == "tier3" and res.module_name:
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seen.add(res.module_name)
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assert seen <= slirp_friendly, (
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f"picker returned bridge-only modules {seen - slirp_friendly}; "
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f"these can't reach the guest with target_ip=127.0.0.1"
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)
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def test_fleet_assigns_unique_port_base_per_slot(monkeypatch, tmp_path) -> None:
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"""Concurrent Tier-3 slots can't share the host-side hostfwd port
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or all targets stomp on each other's vsftpd:21 → 21 mapping. The
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fleet must shift PORT_BASE per slot."""
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from orchestrator import fleet
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cfg = _fleet_cfg_with_modules(tmp_path)
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monkeypatch.setattr(fleet, "_msfrpcd_available", lambda *a, **kw: True)
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_patch_subprocess(monkeypatch)
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capacity = fleet.detect_capacity()
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|
sample = cfg.manifest.samples[0]
|
|
fleet._run_slot(cfg, slot=0, sample=sample, episode_index=0, capacity=capacity)
|
|
fleet._run_slot(cfg, slot=1, sample=sample, episode_index=0, capacity=capacity)
|
|
fleet._run_slot(cfg, slot=2, sample=sample, episode_index=0, capacity=capacity)
|
|
|
|
port_bases = [c["env"]["PORT_BASE"] for c in _RecordingPopen.calls]
|
|
assert len(set(port_bases)) == len(port_bases), \
|
|
f"PORT_BASE collision across slots: {port_bases}"
|
|
|
|
|
|
def test_manifest_marks_real_when_sha256_present(tmp_path: Path) -> None:
|
|
p = tmp_path / "real.toml"
|
|
p.write_text(
|
|
'[[sample]]\n'
|
|
'name = "real-one"\nfamily = "y"\ncategory = "rat"\nprofile = "z"\n'
|
|
'sha256 = "abc123"\n'
|
|
'\n[[sample]]\n'
|
|
'name = "mimic-one"\nfamily = "y"\ncategory = "rat"\nprofile = "z"\n'
|
|
)
|
|
m = SampleManifest.load(p)
|
|
by_name = {s.name: s for s in m.samples}
|
|
assert by_name["real-one"].kind == "real"
|
|
assert by_name["mimic-one"].kind == "mimic"
|