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find_recent_rf_data has four strategies, and the fourth returns the most recent packet in the cache when the first three fail to correlate. That fallback exists for SNR/RSSI timing issues, but callers were also taking its route. So when correlation missed, a message was recorded with some other transmission's path and hop count — the reporter's four-hop message stored as a single direct hop via 79, which is the last hop of an unrelated packet. Rare, because it only fires when correlation fails. Results are now tagged with how they were matched (exact, pubkey, partial or fallback) and rf_data_is_correlated() gates the route. The tag rides on a shallow copy so the cache entry is never marked, and it fails closed: an untagged dict is treated as uncorrelated. Guarded in both handlers. The DM path was worse than the channel one — it falls back to find_recent_rf_data() with no correlation key at all, which can only ever return a fallback, and then overwrote message.path and message.routing_info from it. routing_info is what the path command reads, so a wrong route reached the user directly. The route is now left unresolved rather than fabricated, which also stops a bogus edge being written to the mesh graph from path_nodes that belong to a different packet. SNR and RSSI still use the fallback as before; mis-correlated signal figures are approximate rather than structurally wrong, and changing them is a separate call. Existing tests asserted the returned dict was the cache entry itself. Identity was incidental, so they now compare contents and additionally assert the provenance tag.
MeshCore Bot Test Suite
This directory contains the test suite for the MeshCore Bot, focusing on graph-based path guessing functionality.
Structure
tests/
├── README.md # This file
├── conftest.py # Pytest fixtures and configuration
├── helpers.py # Test data factories and helper functions
├── unit/ # Unit tests (isolated, with mocks)
│ ├── test_mesh_graph_edges.py
│ ├── test_mesh_graph_validation.py
│ ├── test_mesh_graph_scoring.py
│ ├── test_mesh_graph_multihop.py
│ └── test_path_command_graph_selection.py
└── integration/ # Integration tests (with real database)
└── test_path_resolution.py
Running Tests
Run all tests
pytest
Run only unit tests
pytest tests/unit/
Run only integration tests
pytest tests/integration/
Run specific test file
pytest tests/unit/test_mesh_graph_edges.py
Run specific test
pytest tests/unit/test_mesh_graph_edges.py::TestMeshGraphEdges::test_add_new_edge
Run with coverage
pytest --cov=modules --cov-report=html --cov-report=term-missing
Run with verbose output
pytest -v
Run with markers
pytest -m unit # Run only unit tests
pytest -m integration # Run only integration tests
pytest -m slow # Run slow tests
Test Coverage
Unit Tests
test_mesh_graph_edges.py (15 tests)
Tests for MeshGraph edge management:
- Adding new edges
- Updating existing edges
- Public key handling
- Hop position tracking
- Geographic distance
- Edge queries (get, has, outgoing, incoming)
- Prefix normalization
test_mesh_graph_validation.py (12 tests)
Tests for path validation:
- Path segment validation
- Confidence calculation
- Recency checks
- Bidirectional edge validation
- Full path validation
- Minimum observations filtering
test_mesh_graph_scoring.py (11 tests)
Tests for candidate scoring:
- Score calculation with various edge combinations
- Bidirectional bonuses
- Hop position matching
- Geographic distance bonuses
- Minimum observations filtering
test_mesh_graph_multihop.py (12 tests)
Tests for multi-hop path inference:
- 2-hop and 3-hop path finding
- Intermediate node discovery
- Minimum observations filtering
- Bidirectional path bonuses
- Score reduction for longer paths
test_path_command_graph_selection.py (8 tests)
Tests for PathCommand._select_repeater_by_graph:
- Direct edge selection
- Stored public key bonus
- Star bias multiplier
- Multi-hop inference
- Confidence conversion
Integration Tests
test_path_resolution.py (5 tests)
End-to-end tests for full path resolution:
- Path resolution with graph edges from database
- Prefix collision resolution using graph data
- Edge persistence across graph restarts
- Graph vs geographic selection
- Real-world multi-hop scenarios
Test Fixtures
Fixtures are defined in conftest.py:
mock_logger: Mock logger for testingtest_config: Test configuration with Path_Command settingstest_db: In-memory SQLite database for testingmock_bot: Mock bot instance with all necessary attributesmesh_graph: CleanMeshGraphinstance for testingpopulated_mesh_graph:MeshGraphinstance with sample edges
Test Helpers
Helper functions in helpers.py:
create_test_repeater(): Factory for creating test repeater datacreate_test_edge(): Factory for creating test edge datacreate_test_path(): Factory for creating test path datapopulate_test_graph(): Helper to populate a graph with test edges
Writing New Tests
Unit Test Example
import pytest
from tests.helpers import create_test_edge
@pytest.mark.unit
class TestMyFeature:
def test_my_feature(self, mesh_graph):
"""Test description."""
mesh_graph.add_edge('01', '7e')
assert mesh_graph.has_edge('01', '7e')
Integration Test Example
import pytest
@pytest.mark.integration
class TestMyIntegration:
def test_my_integration(self, mock_bot, test_db):
"""Test description."""
# Use real database and bot components
pass
Test Markers
Tests are marked with:
@pytest.mark.unit: Unit tests (isolated, with mocks)@pytest.mark.integration: Integration tests (with real database)@pytest.mark.slow: Slow-running tests
Dependencies
Test dependencies are in requirements.txt:
pytest>=7.0.0pytest-asyncio>=0.21.0pytest-mock>=3.10.0pytest-cov>=4.0.0
Configuration
Pytest configuration is in pytest.ini:
- Test discovery patterns
- Async test support
- Output options
- Test markers
Notes
- Unit tests use in-memory SQLite databases for speed
- Integration tests may use real database connections
- All tests should be deterministic and not depend on external services
- Tests should clean up after themselves (fixtures handle this automatically)