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Second, deeper pass over tools/gateway/hermes_cli plus first pass over the trees wave 1 missed (acp, acp_adapter, skills, computer_use, docker, dashboard, conformance, monitoring, secret_sources, hermes_state, providers). Same rubric as wave 1 (AGENTS.md test policy); security, alternation/caching invariants, issue-number regressions, and E2E kept. Real test-quality fixes found and rooted out along the way: - tests/tools/test_command_guards.py made real auxiliary-LLM HTTPS calls (DEFAULT_CONFIG smart-approval leaked in) — pinned approval mode=manual via autouse fixture: 17.4s → 0.4s. - test_model_switch_custom_providers.py / test_user_providers_model_switch.py silently probed live provider catalogs (~2s/test) — stubbed cached_provider_model_ids/provider_model_ids/fetch_api_models. - test_telegram_noise_filter.py: 15-platform copy-paste matrix over shared gateway.run logic → 3 representative platforms (55s → 3.9s). - test_gateway_shutdown.py: stop()'s 5s interrupt-deadline loop spun on MagicMock agents — interrupt.side_effect now clears _running_agents (22s → 1.0s). - test_gateway_inactivity_timeout.py poll-harness timings shrunk 3-5x (24s → 1.1s); test_mcp_stability.py backoff/SIGTERM-grace sleeps patched (15.4s → 2.5s); test_async_delegation.py negative-drain wait 5s → 0.5s. - test_telegram_init_deadline.py: loop-block margin restored to 1.0s with rationale comment — the watchdog-dump assertion needs the loop blocked well past deadline+grace under parallel load (flaked once in the 40-worker verification run at a 0.2s margin). Verification: full hermetic suite via scripts/run_tests.sh — 2,438 files, 21,718 tests passed, 0 failed, 293.9s wall. Suite totals vs original baseline: 46,820 → 19,757 test functions (−57.8%), wall 583.5s → 293.9s (−50%), subprocess CPU 13,564s → 11,623s.
338 lines
14 KiB
Python
338 lines
14 KiB
Python
"""Tests for watch_patterns background process monitoring feature.
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Covers:
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- ProcessSession.watch_patterns field
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- ProcessRegistry._check_watch_patterns() matching + notification
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- Rate limiting (WATCH_MAX_PER_WINDOW) and overload kill switch
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- watch_queue population
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- Checkpoint persistence of watch_patterns
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- Terminal tool schema includes watch_patterns
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- Terminal tool handler passes watch_patterns through
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"""
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import json
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import time
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import pytest
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from unittest.mock import patch
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from tools.process_registry import (
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ProcessRegistry,
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ProcessSession,
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WATCH_STRIKE_LIMIT,
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WATCH_GLOBAL_MAX_PER_WINDOW,
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)
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@pytest.fixture()
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def registry():
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"""Create a fresh ProcessRegistry."""
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return ProcessRegistry()
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def _make_session(
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sid="proc_test_watch",
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command="tail -f app.log",
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task_id="t1",
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watch_patterns=None,
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) -> ProcessSession:
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s = ProcessSession(
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id=sid,
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command=command,
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task_id=task_id,
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started_at=time.time(),
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watch_patterns=watch_patterns or [],
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)
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return s
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# =========================================================================
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# ProcessSession field defaults
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# =========================================================================
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class TestProcessSessionField:
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def test_default_empty(self):
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s = ProcessSession(id="proc_1", command="echo hi")
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assert s.watch_patterns == []
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assert s._watch_disabled is False
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assert s._watch_hits == 0
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assert s._watch_suppressed == 0
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def test_can_set_patterns(self):
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s = _make_session(watch_patterns=["ERROR", "WARN"])
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assert s.watch_patterns == ["ERROR", "WARN"]
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# =========================================================================
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# Pattern matching + queue population
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# =========================================================================
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class TestCheckWatchPatterns:
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def test_no_patterns_no_notification(self, registry):
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"""No watch_patterns → no notifications."""
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session = _make_session(watch_patterns=[])
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registry._check_watch_patterns(session, "ERROR: something broke\n")
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assert registry.completion_queue.empty()
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def test_basic_match(self, registry):
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"""Single matching line triggers a notification."""
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session = _make_session(watch_patterns=["ERROR"])
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registry._check_watch_patterns(session, "INFO: ok\nERROR: disk full\n")
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assert not registry.completion_queue.empty()
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evt = registry.completion_queue.get_nowait()
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assert evt["type"] == "watch_match"
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assert evt["pattern"] == "ERROR"
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assert "disk full" in evt["output"]
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assert evt["session_id"] == "proc_test_watch"
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def test_output_truncation(self, registry):
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"""Very long matched output is truncated."""
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session = _make_session(watch_patterns=["X"])
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# Generate 30 matching lines (more than the 20-line cap)
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text = "\n".join(f"X line {i}" for i in range(30)) + "\n"
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registry._check_watch_patterns(session, text)
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evt = registry.completion_queue.get_nowait()
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# Should only have 20 lines max
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assert evt["output"].count("\n") <= 20
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# =========================================================================
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# Per-session rate limiting: 1 notification per 15s, 3 strikes → disable
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# =========================================================================
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class TestPerSessionRateLimit:
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def test_first_match_delivers(self, registry):
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"""A fresh session with no prior cooldown delivers the first match."""
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session = _make_session(watch_patterns=["E"])
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registry._check_watch_patterns(session, "E first\n")
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assert registry.completion_queue.qsize() == 1
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evt = registry.completion_queue.get_nowait()
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assert evt["type"] == "watch_match"
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assert session._watch_hits == 1
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# Cooldown is now armed.
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assert session._watch_cooldown_until > 0
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def test_suppressed_count_in_next_delivery(self, registry):
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"""Suppressed count from a strike window is reported in the next emit."""
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session = _make_session(watch_patterns=["E"])
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registry._check_watch_patterns(session, "E emit\n")
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for _ in range(4):
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registry._check_watch_patterns(session, "E drop\n")
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assert session._watch_suppressed == 4
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# Fast-forward past cooldown.
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session._watch_cooldown_until = time.time() - 0.01
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# Drain the queue so we can inspect the next emission.
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while not registry.completion_queue.empty():
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registry.completion_queue.get_nowait()
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registry._check_watch_patterns(session, "E back\n")
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evt = registry.completion_queue.get_nowait()
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assert evt["type"] == "watch_match"
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assert evt["suppressed"] == 4
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assert session._watch_suppressed == 0 # reset after delivery
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# =========================================================================
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# Checkpoint persistence
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# =========================================================================
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class TestCheckpointPersistence:
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def test_watch_patterns_in_checkpoint(self, registry):
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"""watch_patterns is included in checkpoint data."""
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session = _make_session(watch_patterns=["ERROR", "FAIL"])
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with registry._lock:
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registry._running[session.id] = session
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with patch("utils.atomic_json_write") as mock_write:
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registry._write_checkpoint()
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args = mock_write.call_args
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entries = args[0][1] # second positional arg
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assert len(entries) == 1
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assert entries[0]["watch_patterns"] == ["ERROR", "FAIL"]
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def test_watch_patterns_recovery(self, registry, tmp_path, monkeypatch):
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"""watch_patterns survives checkpoint recovery."""
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import tools.process_registry as pr_mod
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checkpoint = tmp_path / "processes.json"
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checkpoint.write_text(json.dumps([{
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"session_id": "proc_recovered",
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"command": "tail -f log",
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"pid": 99999999, # non-existent
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"pid_scope": "host",
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"started_at": time.time(),
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"task_id": "",
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"session_key": "",
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"watcher_platform": "",
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"watcher_chat_id": "",
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"watcher_thread_id": "",
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"watcher_interval": 0,
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"notify_on_complete": False,
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"watch_patterns": ["PANIC", "OOM"],
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}]))
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monkeypatch.setattr(pr_mod, "CHECKPOINT_PATH", checkpoint)
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# PID doesn't exist, so nothing will be recovered
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count = registry.recover_from_checkpoint()
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# Won't recover since PID is fake, but verify the code path doesn't crash
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assert count == 0
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# =========================================================================
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# Terminal tool schema + handler
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# =========================================================================
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class TestTerminalToolSchema:
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def test_schema_includes_watch_patterns(self):
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from tools.terminal_tool import TERMINAL_SCHEMA
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props = TERMINAL_SCHEMA["parameters"]["properties"]
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assert "watch_patterns" in props
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assert props["watch_patterns"]["type"] == "array"
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assert props["watch_patterns"]["items"] == {"type": "string"}
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def test_handler_passes_watch_patterns(self):
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"""_handle_terminal passes watch_patterns to terminal_tool."""
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from tools.terminal_tool import _handle_terminal
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with patch("tools.terminal_tool.terminal_tool") as mock_tt:
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mock_tt.return_value = json.dumps({"output": "ok", "exit_code": 0})
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_handle_terminal(
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{"command": "echo hi", "watch_patterns": ["ERR"]},
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task_id="t1",
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)
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_, kwargs = mock_tt.call_args
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assert kwargs.get("watch_patterns") == ["ERR"]
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# =========================================================================
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# Code execution tool blocked params
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# =========================================================================
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class TestCodeExecutionBlocked:
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def test_watch_patterns_blocked(self):
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from tools.code_execution_tool import _TERMINAL_BLOCKED_PARAMS
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assert "watch_patterns" in _TERMINAL_BLOCKED_PARAMS
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# =========================================================================
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# Suppress-after-exit (anti-spam fix)
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# =========================================================================
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class TestSuppressAfterExit:
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def test_match_dropped_once_session_exited(self, registry):
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"""watch_patterns notifications stop the moment session.exited is set."""
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session = _make_session(watch_patterns=["ERROR"])
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# Mark the process as exited BEFORE the late chunk arrives.
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session.exited = True
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registry._check_watch_patterns(session, "ERROR: late buffer\n")
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assert registry.completion_queue.empty()
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assert session._watch_hits == 0
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def test_match_still_delivered_while_session_running(self, registry):
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"""Sanity: while the process is still running, matches still deliver."""
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session = _make_session(watch_patterns=["ERROR"])
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session.exited = False
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registry._check_watch_patterns(session, "ERROR: oh no\n")
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assert not registry.completion_queue.empty()
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evt = registry.completion_queue.get_nowait()
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assert evt["type"] == "watch_match"
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# =========================================================================
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# Mutual exclusion: notify_on_complete wins over watch_patterns
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# =========================================================================
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class TestMutualExclusion:
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def test_resolver_drops_watch_when_notify_set(self):
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"""Both flags set → watch_patterns dropped with a note."""
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from tools.terminal_tool import _resolve_notification_flag_conflict
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resolved, note = _resolve_notification_flag_conflict(
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notify_on_complete=True,
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watch_patterns=["ERROR", "DONE"],
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background=True,
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)
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assert resolved is None
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assert "notify_on_complete" in note
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assert "duplicate notifications" in note
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def test_resolver_inert_when_not_background(self):
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"""Without background=True, the whole thing is a no-op."""
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from tools.terminal_tool import _resolve_notification_flag_conflict
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resolved, note = _resolve_notification_flag_conflict(
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notify_on_complete=True,
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watch_patterns=["ERROR"],
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background=False,
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)
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assert resolved == ["ERROR"]
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assert note == ""
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# =========================================================================
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# Global circuit breaker (cross-session overflow blocker)
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# =========================================================================
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class TestGlobalCircuitBreaker:
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def test_trips_after_global_threshold(self, registry):
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"""When >N matches fire across sessions in the window, breaker trips."""
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sessions = [
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_make_session(sid=f"proc_s{i}", watch_patterns=["E"])
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for i in range(WATCH_GLOBAL_MAX_PER_WINDOW + 3)
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]
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# Each session fires exactly one match — individually well under the
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# per-session cap. But collectively they should trip the global cap.
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for s in sessions:
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registry._check_watch_patterns(s, "E hit\n")
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# Drain the queue and count event types.
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watch_matches = 0
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overflow_tripped = 0
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while not registry.completion_queue.empty():
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evt = registry.completion_queue.get_nowait()
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if evt.get("type") == "watch_match":
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watch_matches += 1
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elif evt.get("type") == "watch_overflow_tripped":
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overflow_tripped += 1
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assert watch_matches == WATCH_GLOBAL_MAX_PER_WINDOW
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assert overflow_tripped == 1
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assert registry._global_watch_tripped_until > 0
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def test_cooldown_suppresses_and_then_releases(self, registry):
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"""After trip, further events are suppressed; cooldown expiry emits release."""
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# Spawn enough fresh sessions to trip the global breaker.
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sessions = [
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_make_session(sid=f"proc_t{i}", watch_patterns=["E"])
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for i in range(WATCH_GLOBAL_MAX_PER_WINDOW + 1)
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]
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for s in sessions:
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registry._check_watch_patterns(s, "E hit\n")
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assert registry._global_watch_tripped_until > 0
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# Further matches from BRAND-NEW sessions during cooldown are dropped.
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q_size_before = registry.completion_queue.qsize()
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extra1 = _make_session(sid="proc_extra1", watch_patterns=["E"])
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extra2 = _make_session(sid="proc_extra2", watch_patterns=["E"])
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registry._check_watch_patterns(extra1, "E hit\n")
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registry._check_watch_patterns(extra2, "E hit\n")
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assert registry.completion_queue.qsize() == q_size_before # no new events
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assert registry._global_watch_suppressed_during_trip >= 2
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# Simulate cooldown expiry.
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registry._global_watch_tripped_until = time.time() - 1
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# Next call admits AND emits the release summary.
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released_session = _make_session(sid="proc_after", watch_patterns=["E"])
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registry._check_watch_patterns(released_session, "E hit\n")
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released = False
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admitted = False
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while not registry.completion_queue.empty():
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evt = registry.completion_queue.get_nowait()
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if evt.get("type") == "watch_overflow_released":
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released = True
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assert evt["suppressed"] >= 2
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elif evt.get("type") == "watch_match":
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admitted = True
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assert released
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assert admitted
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