Bahn: aisupport, Analyse-O2C-C2S, awesome-bahn-mcp-servers, beam-mcp,
Confluence_Bot, db-planet-mcp-server, O2C-Harness, project-audit,
Projekt-KIQ-HP, teamlandkarte-mcp
Dhive: Jury-Voting
Privat: CV, NoteGraph (NOTE: NoteGraph needs complete redo after consolidation)
Shared: AI-Orchestrator, OrgMyLife, power_skills_and_more
Shared/references: symphony (read-only)
Bahn repos remain available as independent remotes - this monorepo
pulls them in via subtree, the originals are untouched.
447 lines
14 KiB
Python
447 lines
14 KiB
Python
"""Property-based tests for the capacity details enrichment feature.
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Uses Hypothesis to verify correctness properties across many random inputs.
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"""
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from __future__ import annotations
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from datetime import date
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from unittest.mock import MagicMock, patch
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import pytest
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from hypothesis import given, settings
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from hypothesis import strategies as st
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from teamlandkarte_mcp.mcp_server import build_server
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from teamlandkarte_mcp.models import Capacity, Task
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# ---------------------------------------------------------------------------
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# Helpers
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# ---------------------------------------------------------------------------
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class _FakeDB:
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"""Minimal fake DB client for property-based tests."""
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def __init__(
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self,
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capacity: Capacity | None,
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*,
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description: str | None = None,
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references: list[dict] | None = None,
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certificates: list[str] | None = None,
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) -> None:
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self._capacity = capacity
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self._description = description
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self._references = references if references is not None else []
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self._certificates = certificates if certificates is not None else []
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# Track calls for Property 1
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self.calls: dict[str, list] = {
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"get_capacity_description": [],
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"get_capacity_references": [],
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"get_capacity_certificates": [],
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}
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def test_connection(self) -> None:
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return
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def get_table_columns(self, table: str) -> list[str]:
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if table == "teamlandkarte_v_capacity_roles_latest":
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return ["name", "active", "staffing_board_relevant"]
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if table == "teamlandkarte_v_capacities_latest":
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return ["creation_date"]
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if table == "teamlandkarte_v_teams_latest":
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return [
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"team_id",
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"ouid",
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"about_us",
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"offerings",
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"interests",
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"focus_name",
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]
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if table == "teamlandkarte_v_teammeter_organizational_units_latest":
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return ["id", "name"]
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if table == "teamlandkarte_v_teammeter_team_competences_latest":
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return ["ouid", "competence_id", "top_competency"]
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if table == "teamlandkarte_v_team_references_latest":
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return ["ouid", "partner_id", "projects"]
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return []
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def get_all_role_names(self) -> list[str]:
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return ["Cloud Engineer"]
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def get_all_competence_names(self) -> list[str]:
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return ["AWS"]
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def get_open_tasks(self, limit: int = 20) -> list[Task]:
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return []
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def get_task_by_id(self, task_id: str):
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return None
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def get_task_by_name(self, name: str):
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return None
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def get_all_capacities_with_competences(self) -> list[Capacity]:
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return [self._capacity] if self._capacity else []
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def get_recent_free_capacities(self, limit: int = 20) -> list[Capacity]:
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return [self._capacity] if self._capacity else []
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def get_capacity_by_id(self, capacity_id: int | str) -> Capacity | None:
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if self._capacity and int(capacity_id) == self._capacity.id:
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return self._capacity
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return None
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def get_capacity_description(self, capacity_id: int | str) -> str | None:
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self.calls["get_capacity_description"].append(capacity_id)
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return self._description
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def get_capacity_references(self, capacity_id: int | str) -> list[dict]:
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self.calls["get_capacity_references"].append(capacity_id)
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return self._references
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def get_capacity_certificates(self, capacity_id: int | str) -> list[str]:
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self.calls["get_capacity_certificates"].append(capacity_id)
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return self._certificates
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def _make_config(tmp_path) -> str:
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"""Write a minimal config.toml and return its path."""
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cfg = tmp_path / "config.toml"
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cfg.write_text(
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"""
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[database]
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host='x'
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port=1
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username='u'
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password='p'
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backend='trino'
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[matching]
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competence_weight=0.8
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role_weight=0.2
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require_confirmation=false
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[cache]
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db_ttl_hours=1
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search_ttl_minutes=10
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max_size=10
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""".strip(),
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encoding="utf-8",
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)
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return str(cfg)
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def _make_capacity(cap_id: int) -> Capacity:
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return Capacity(
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id=cap_id,
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owner_name="Team Alpha",
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role_name="Cloud Engineer",
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role_level=None,
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begin_date=date(2026, 1, 1),
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end_date=date(2026, 6, 30),
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competences=["AWS", "Terraform"],
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)
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# ---------------------------------------------------------------------------
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# Property 1: All enrichment data is fetched for any capacity
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# Feature: capacity-details-enrichment
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# Validates: Requirements 1.1, 2.1, 3.1
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# ---------------------------------------------------------------------------
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@pytest.mark.asyncio
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@settings(max_examples=100)
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@given(capacity_id=st.integers(min_value=1, max_value=100_000))
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async def test_all_enrichment_data_fetched(capacity_id: int, tmp_path_factory):
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"""Property 1: All enrichment data is fetched for any capacity.
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For any valid capacity ID that resolves to an existing capacity,
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the tool SHALL invoke get_capacity_description, get_capacity_references,
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and get_capacity_certificates with that capacity ID.
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**Validates: Requirements 1.1, 2.1, 3.1**
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"""
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tmp_path = tmp_path_factory.mktemp("cfg")
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cap = _make_capacity(capacity_id)
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fake_db = _FakeDB(
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cap,
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description="Some description",
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references=[{"partner_name": "P", "projects": "Proj"}],
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certificates=["Cert A"],
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)
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import teamlandkarte_mcp.mcp_server as mod
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with patch.object(mod, "create_db_client", return_value=fake_db):
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srv = build_server(_make_config(tmp_path))
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await srv.call_tool("get_capacity_details", {"capacity_id": capacity_id})
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# Each enrichment method must be called exactly once with the correct ID
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assert len(fake_db.calls["get_capacity_description"]) == 1
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assert fake_db.calls["get_capacity_description"][0] == capacity_id
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assert len(fake_db.calls["get_capacity_references"]) == 1
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assert fake_db.calls["get_capacity_references"][0] == capacity_id
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assert len(fake_db.calls["get_capacity_certificates"]) == 1
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assert fake_db.calls["get_capacity_certificates"][0] == capacity_id
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# ---------------------------------------------------------------------------
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# Property 2: Non-empty data appears in output
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# Feature: capacity-details-enrichment
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# Validates: Requirements 1.2, 2.2, 3.2
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# ---------------------------------------------------------------------------
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# Strategies for generating test data
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_description_st = st.text(
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alphabet=st.characters(
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whitelist_categories=("L", "N", "P", "Z"),
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blacklist_characters="\x00",
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),
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min_size=1,
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max_size=200,
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).filter(lambda s: s.strip())
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_reference_st = st.fixed_dictionaries({
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"partner_name": st.text(
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alphabet=st.characters(
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whitelist_categories=("L", "N", "P", "Z"),
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blacklist_characters="\x00",
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),
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min_size=1,
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max_size=50,
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).filter(lambda s: s.strip()),
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"projects": st.text(
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alphabet=st.characters(
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whitelist_categories=("L", "N", "P", "Z"),
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blacklist_characters="\x00",
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),
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min_size=1,
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max_size=100,
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).filter(lambda s: s.strip()),
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})
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_certificate_st = st.text(
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alphabet=st.characters(
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whitelist_categories=("L", "N", "P", "Z"),
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blacklist_characters="\x00",
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),
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min_size=1,
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max_size=100,
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).filter(lambda s: s.strip())
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@pytest.mark.asyncio
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@settings(max_examples=100)
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@given(
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description=_description_st,
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references=st.lists(_reference_st, min_size=1, max_size=5),
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certificates=st.lists(_certificate_st, min_size=1, max_size=5),
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)
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async def test_nonempty_data_appears_in_output(
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description: str,
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references: list[dict],
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certificates: list[str],
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tmp_path_factory,
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):
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"""Property 2: Non-empty data appears in output.
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For any capacity with a non-empty description, a non-empty list of
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references, and a non-empty list of certificates, the formatted output
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SHALL contain the description text, every reference's projects text,
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and every certificate string.
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**Validates: Requirements 1.2, 2.2, 3.2**
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"""
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tmp_path = tmp_path_factory.mktemp("cfg")
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cap = _make_capacity(1)
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fake_db = _FakeDB(
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cap,
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description=description,
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references=references,
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certificates=certificates,
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)
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import teamlandkarte_mcp.mcp_server as mod
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with patch.object(mod, "create_db_client", return_value=fake_db):
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srv = build_server(_make_config(tmp_path))
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content, structured = await srv.call_tool(
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"get_capacity_details", {"capacity_id": 1}
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)
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out = (structured or {}).get("result") or getattr(
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content[0], "text", ""
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)
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# Description must appear in output
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assert description in out, (
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f"Description not found in output: {description!r}"
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)
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# Every reference's projects text must appear
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for ref in references:
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assert ref["projects"] in out, (
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f"Reference projects not found: {ref['projects']!r}"
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)
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# Every certificate must appear
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for cert in certificates:
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assert cert in out, f"Certificate not found: {cert!r}"
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# ---------------------------------------------------------------------------
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# Property 3: Section ordering is fixed
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# Feature: capacity-details-enrichment
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# Validates: Requirements 4.1, 4.2
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# ---------------------------------------------------------------------------
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_optional_description_st = st.one_of(
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st.none(),
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st.text(
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alphabet=st.characters(
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whitelist_categories=("L", "N", "P", "Z"),
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blacklist_characters="\x00",
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),
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min_size=1,
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max_size=100,
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).filter(lambda s: s.strip()),
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)
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_optional_references_st = st.lists(
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st.fixed_dictionaries({
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"partner_name": st.text(
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alphabet=st.characters(
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whitelist_categories=("L", "N"),
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blacklist_characters="\x00",
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),
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min_size=0,
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max_size=30,
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),
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"projects": st.text(
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alphabet=st.characters(
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whitelist_categories=("L", "N", "P", "Z"),
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blacklist_characters="\x00",
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),
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min_size=1,
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max_size=50,
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).filter(lambda s: s.strip()),
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}),
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min_size=0,
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max_size=5,
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)
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_optional_certificates_st = st.lists(
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st.text(
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alphabet=st.characters(
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whitelist_categories=("L", "N", "P", "Z"),
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blacklist_characters="\x00",
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),
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min_size=1,
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max_size=50,
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).filter(lambda s: s.strip()),
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min_size=0,
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max_size=5,
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)
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@pytest.mark.asyncio
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@settings(max_examples=100, deadline=None)
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@given(
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description=_optional_description_st,
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references=_optional_references_st,
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certificates=_optional_certificates_st,
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)
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async def test_section_ordering_is_fixed(
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description: str | None,
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references: list[dict],
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certificates: list[str],
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tmp_path_factory,
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):
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"""Property 3: Section ordering is fixed.
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For any capacity (regardless of which fields are empty or populated),
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the output string SHALL contain the section markers in the order:
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capacity table first, then "Beschreibung", then "Referenzen", then
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"Zertifizierungen", then "Next steps" — and each section SHALL be
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separated by at least one blank line.
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**Validates: Requirements 4.1, 4.2**
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"""
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tmp_path = tmp_path_factory.mktemp("cfg")
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cap = _make_capacity(1)
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fake_db = _FakeDB(
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cap,
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description=description,
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references=references,
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certificates=certificates,
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)
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import teamlandkarte_mcp.mcp_server as mod
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with patch.object(mod, "create_db_client", return_value=fake_db):
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srv = build_server(_make_config(tmp_path))
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content, structured = await srv.call_tool(
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"get_capacity_details", {"capacity_id": 1}
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)
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out = (structured or {}).get("result") or getattr(
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content[0], "text", ""
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)
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# All section headers must be present
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assert "## Beschreibung" in out
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assert "## Referenzen" in out
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assert "## Zertifizierungen" in out
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assert "## Next steps" in out
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# Section ordering must be fixed
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idx_beschreibung = out.index("## Beschreibung")
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idx_referenzen = out.index("## Referenzen")
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idx_zertifizierungen = out.index("## Zertifizierungen")
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idx_next_steps = out.index("## Next steps")
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assert idx_beschreibung < idx_referenzen, (
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"Beschreibung must come before Referenzen"
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)
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assert idx_referenzen < idx_zertifizierungen, (
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"Referenzen must come before Zertifizierungen"
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)
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assert idx_zertifizierungen < idx_next_steps, (
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"Zertifizierungen must come before Next steps"
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)
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# Capacity table must come before all enrichment sections
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assert "| capacity_id |" in out
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idx_table = out.index("| capacity_id |")
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assert idx_table < idx_beschreibung, (
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"Capacity table must come before Beschreibung"
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)
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# Each section must be separated by at least one blank line
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# A blank line means two consecutive newlines (\n\n)
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between_table_and_beschreibung = out[idx_table:idx_beschreibung]
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assert "\n\n" in between_table_and_beschreibung, (
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"Blank line required between table and Beschreibung"
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)
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between_beschreibung_and_referenzen = out[idx_beschreibung:idx_referenzen]
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assert "\n\n" in between_beschreibung_and_referenzen, (
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"Blank line required between Beschreibung and Referenzen"
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)
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between_referenzen_and_zertifizierungen = out[
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idx_referenzen:idx_zertifizierungen
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]
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assert "\n\n" in between_referenzen_and_zertifizierungen, (
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"Blank line required between Referenzen and Zertifizierungen"
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)
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between_zertifizierungen_and_next = out[idx_zertifizierungen:idx_next_steps]
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assert "\n\n" in between_zertifizierungen_and_next, (
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"Blank line required between Zertifizierungen and Next steps"
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)
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