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Comprehensive database model tests covering relationships, constraints, cascading operations, and ORM queries.
Goal: Achieve 90%+ coverage of database models through comprehensive testing of:
- Relationship types (one-to-one, one-to-many, many-to-many)
- Foreign key constraints
- Cascade delete operations
- ORM queries (filters, joins, aggregations)
- JSON fields and special properties
Tests use:
- pytest fixtures for database sessions (db_session from conftest.py)
- Factory pattern for test data creation (factories in tests/factories/)
- Real database (SQLite for tests, migration to PostgreSQL in CI)
- SQLAlchemy ORM for queries
"""
import uuid
import pytest
from datetime import datetime, timedelta
from sqlalchemy.orm import Session
from sqlalchemy.exc import IntegrityError
from sqlalchemy import and_, or_, func, desc, asc
import time
from tests.factories.agent_factory import AgentFactory, StudentAgentFactory
from tests.factories.user_factory import UserFactory, AdminUserFactory
from tests.factories.execution_factory import AgentExecutionFactory
from tests.factories.episode_factory import EpisodeFactory
from tests.factories.feedback_factory import AgentFeedbackFactory
from tests.factories.workspace_factory import WorkspaceFactory, TeamFactory
from core.models import (
AgentRegistry,
AgentExecution,
AgentFeedback,
User,
Workspace,
Team,
UserRole,
UserStatus,
WorkspaceStatus,
AgentStatus,
FeedbackStatus,
HITLActionStatus,
Episode,
EpisodeSegment,
OAuthToken,
OAuthState,
user_workspaces,
team_members,
)
# ============================================================================
# Task 1: Relationship Tests
# ============================================================================
class TestRelationships:
"""Test all model relationship types."""
def test_user_workspace_many_to_many_relationship(self, db_session: Session):
"""Test User-Workspace many-to-many relationship via user_workspaces table."""
# Create workspace
workspace = WorkspaceFactory(_session=db_session)
db_session.commit()
db_session.refresh(workspace)
# Create users
user1 = UserFactory(email="user1@test.com", _session=db_session)
user2 = UserFactory(email="user2@test.com", _session=db_session)
# Add users to workspace
workspace.users.append(user1)
workspace.users.append(user2)
db_session.commit()
# Verify relationship from workspace to users
retrieved_workspace = db_session.query(Workspace).filter(
Workspace.id == workspace.id
).first()
assert retrieved_workspace is not None
assert len(retrieved_workspace.users) == 2
# Verify relationship from user to workspaces
retrieved_user1 = db_session.query(User).filter(User.id == user1.id).first()
assert len(retrieved_user1.workspaces) == 1
assert retrieved_user1.workspaces[0].id == workspace.id
def test_workspace_user_relationship(self, db_session: Session):
"""Test Workspace can have multiple users."""
workspace = WorkspaceFactory(_session=db_session)
db_session.commit()
# Create multiple users
users = [UserFactory(email=f"user{i}@test.com", _session=db_session) for i in range(3)]
for user in users:
workspace.users.append(user)
db_session.commit()
# Query workspaces from user relationship
retrieved_workspace = db_session.query(Workspace).filter(
Workspace.id == workspace.id
).first()
assert len(retrieved_workspace.users) == 3
def test_team_membership_many_to_many_relationship(self, db_session: Session):
"""Test User-Team many-to-many relationship via team_members table."""
# Create workspace
workspace = WorkspaceFactory(_session=db_session)
db_session.commit()
# Create team
team = TeamFactory(workspace_id=workspace.id, _session=db_session)
db_session.commit()
# Create users
user1 = UserFactory(email="member1@test.com", _session=db_session)
user2 = UserFactory(email="member2@test.com", _session=db_session)
# Add users to team
team.members.append(user1)
team.members.append(user2)
db_session.commit()
# Verify team members
retrieved_team = db_session.query(Team).filter(Team.id == team.id).first()
assert retrieved_team is not None
assert len(retrieved_team.members) == 2
# Verify user teams
retrieved_user1 = db_session.query(User).filter(User.id == user1.id).first()
assert len(retrieved_user1.teams) == 1
assert retrieved_user1.teams[0].id == team.id
def test_agent_execution_one_to_many_relationship(self, db_session: Session):
"""Test Agent has many executions (one-to-many)."""
# Create agent
agent = AgentFactory(name="MultiExecutionAgent", _session=db_session)
# Create multiple executions
execution1 = AgentExecutionFactory(agent_id=agent.id, _session=db_session)
execution2 = AgentExecutionFactory(agent_id=agent.id, _session=db_session)
execution3 = AgentExecutionFactory(agent_id=agent.id, _session=db_session)
db_session.commit()
# Query executions for agent (note: using agent_id filter as relationship may not be defined)
executions = db_session.query(AgentExecution).filter(
AgentExecution.agent_id == agent.id
).all()
assert len(executions) == 3
assert all(e.agent_id == agent.id for e in executions)
def test_execution_belongs_to_one_agent(self, db_session: Session):
"""Test Execution belongs to one agent."""
agent = AgentFactory(name="SingleAgent", _session=db_session)
execution = AgentExecutionFactory(agent_id=agent.id, _session=db_session)
db_session.commit()
# Verify execution belongs to agent
retrieved_execution = db_session.query(AgentExecution).filter(
AgentExecution.id == execution.id
).first()
assert retrieved_execution.agent_id == agent.id
def test_agent_feedback_multiple_relationships(self, db_session: Session):
"""Test Feedback links to agent, execution, user, and episode."""
# Create test data
agent = AgentFactory(name="FeedbackAgent", _session=db_session)
user = UserFactory(email="feedbackuser@test.com", _session=db_session)
execution = AgentExecutionFactory(agent_id=agent.id, _session=db_session)
episode = EpisodeFactory(agent_id=agent.id, title="Feedback Episode", _session=db_session)
# Create feedback
feedback = AgentFeedbackFactory(
agent_id=agent.id,
user_id=user.id,
agent_execution_id=execution.id,
episode_id=episode.id,
_session=db_session
)
db_session.commit()
# Verify all foreign keys are correct
retrieved_feedback = db_session.query(AgentFeedback).filter(
AgentFeedback.id == feedback.id
).first()
assert retrieved_feedback.agent_id == agent.id
assert retrieved_feedback.user_id == user.id
assert retrieved_feedback.agent_execution_id == execution.id
assert retrieved_feedback.episode_id == episode.id
def test_feedback_from_agent_relationship(self, db_session: Session):
"""Test Query feedback from agent feedback_history relationship."""
agent = AgentFactory(name="FeedbackHistoryAgent", _session=db_session)
user = UserFactory(email="historyuser@test.com", _session=db_session)
# Create multiple feedback entries
feedback1 = AgentFeedbackFactory(agent_id=agent.id, user_id=user.id, _session=db_session)
feedback2 = AgentFeedbackFactory(agent_id=agent.id, user_id=user.id, _session=db_session)
db_session.commit()
# Query feedback via agent_id (using relationship if available, otherwise filter)
feedback_list = db_session.query(AgentFeedback).filter(
AgentFeedback.agent_id == agent.id
).all()
assert len(feedback_list) == 2
assert all(f.agent_id == agent.id for f in feedback_list)
def test_feedback_from_user_relationship(self, db_session: Session):
"""Test Query feedback from user submitted_feedback relationship."""
user = UserFactory(email="submitter@test.com", _session=db_session)
agent = AgentFactory(name="UserFeedbackAgent", _session=db_session)
# Create feedback entries from user
feedback1 = AgentFeedbackFactory(agent_id=agent.id, user_id=user.id, _session=db_session)
feedback2 = AgentFeedbackFactory(agent_id=agent.id, user_id=user.id, _session=db_session)
db_session.commit()
# Query feedback submitted by user
user_feedback = db_session.query(AgentFeedback).filter(
AgentFeedback.user_id == user.id
).all()
assert len(user_feedback) == 2
def test_episode_segment_one_to_many_relationship(self, db_session: Session):
"""Test Episode has many segments."""
agent = AgentFactory(name="SegmentAgent", _session=db_session)
episode = EpisodeFactory(agent_id=agent.id, title="Segment Test Episode", _session=db_session)
# Create segments manually (factory doesn't exist)
segment1 = EpisodeSegment(
episode_id=episode.id,
segment_type="conversation",
sequence_order=1,
content="First segment content",
source_type="chat_message"
)
segment2 = EpisodeSegment(
episode_id=episode.id,
segment_type="execution",
sequence_order=2,
content="Second segment content",
source_type="agent_execution"
)
segment3 = EpisodeSegment(
episode_id=episode.id,
segment_type="reflection",
sequence_order=3,
content="Third segment content",
source_type="manual"
)
db_session.add_all([segment1, segment2, segment3])
db_session.commit()
# Query segments for episode
segments = db_session.query(EpisodeSegment).filter(
EpisodeSegment.episode_id == episode.id
).all()
assert len(segments) == 3
def test_segment_belongs_to_one_episode(self, db_session: Session):
"""Test Segment belongs to one episode."""
agent = AgentFactory(name="SingleSegmentAgent", _session=db_session)
episode = EpisodeFactory(agent_id=agent.id, title="Single Segment Episode", _session=db_session)
segment = EpisodeSegment(
episode_id=episode.id,
segment_type="conversation",
sequence_order=1,
content="Segment content",
source_type="chat_message"
)
db_session.add(segment)
db_session.commit()
# Verify segment belongs to episode
retrieved_segment = db_session.query(EpisodeSegment).filter(
EpisodeSegment.id == segment.id
).first()
assert retrieved_segment.episode_id == episode.id
def test_segment_ordering_by_timestamp(self, db_session: Session):
"""Test Ordering of segments by sequence_order."""
agent = AgentFactory(name="OrderAgent", _session=db_session)
episode = EpisodeFactory(agent_id=agent.id, title="Order Episode", _session=db_session)
# Create segments out of order
segment3 = EpisodeSegment(
episode_id=episode.id,
segment_type="conversation",
sequence_order=3,
content="Third",
source_type="chat_message"
)
segment1 = EpisodeSegment(
episode_id=episode.id,
segment_type="conversation",
sequence_order=1,
content="First",
source_type="chat_message"
)
segment2 = EpisodeSegment(
episode_id=episode.id,
segment_type="conversation",
sequence_order=2,
content="Second",
source_type="chat_message"
)
db_session.add_all([segment3, segment1, segment2])
db_session.commit()
# Query ordered by sequence_order
segments = db_session.query(EpisodeSegment).filter(
EpisodeSegment.episode_id == episode.id
).order_by(EpisodeSegment.sequence_order).all()
assert segments[0].sequence_order == 1
assert segments[1].sequence_order == 2
assert segments[2].sequence_order == 3
def test_oauth_token_user_relationship(self, db_session: Session):
"""Test OAuthToken belongs to user."""
user = UserFactory(email="oauthuser@test.com", _session=db_session)
# Create OAuth token
token = OAuthToken(
user_id=user.id,
provider="google",
access_token="test_access_token",
token_type="Bearer"
)
db_session.add(token)
db_session.commit()
# Verify token belongs to user
retrieved_token = db_session.query(OAuthToken).filter(
OAuthToken.id == token.id
).first()
assert retrieved_token.user_id == user.id
def test_user_has_multiple_oauth_tokens(self, db_session: Session):
"""Test User has multiple oauth_tokens."""
user = UserFactory(email="multiuser@test.com", _session=db_session)
# Create multiple tokens for different providers
google_token = OAuthToken(
user_id=user.id,
provider="google",
access_token="google_token",
token_type="Bearer"
)
github_token = OAuthToken(
user_id=user.id,
provider="github",
access_token="github_token",
token_type="Bearer"
)
notion_token = OAuthToken(
user_id=user.id,
provider="notion",
access_token="notion_token",
token_type="Bearer"
)
db_session.add_all([google_token, github_token, notion_token])
db_session.commit()
# Query tokens for user
user_tokens = db_session.query(OAuthToken).filter(
OAuthToken.user_id == user.id
).all()
assert len(user_tokens) == 3
def test_oauth_token_provider_filtering(self, db_session: Session):
"""Test Provider filtering works for OAuth tokens."""
user = UserFactory(email="provideruser@test.com", _session=db_session)
# Create tokens for different providers
google_token = OAuthToken(
user_id=user.id,
provider="google",
access_token="google_access",
token_type="Bearer"
)
github_token = OAuthToken(
user_id=user.id,
provider="github",
access_token="github_access",
token_type="Bearer"
)
db_session.add_all([google_token, github_token])
db_session.commit()
# Filter by provider
google_tokens = db_session.query(OAuthToken).filter(
and_(OAuthToken.user_id == user.id, OAuthToken.provider == "google")
).all()
github_tokens = db_session.query(OAuthToken).filter(
and_(OAuthToken.user_id == user.id, OAuthToken.provider == "github")
).all()
assert len(google_tokens) == 1
assert google_tokens[0].provider == "google"
assert len(github_tokens) == 1
assert github_tokens[0].provider == "github"
# ============================================================================
# Task 2: Constraint Tests
# ============================================================================
class TestConstraints:
"""Test database constraints (unique, not null, enum, foreign key, check)."""
def test_unique_constraint_user_email(self, db_session: Session):
"""Test User.email must be unique (IntegrityError on duplicate)."""
# Create first user
user1 = UserFactory(email="unique@test.com", _session=db_session)
db_session.commit()
# Try to create second user with same email - should raise IntegrityError
with pytest.raises(IntegrityError):
user2 = User(email="unique@test.com", first_name="User", last_name="Two")
db_session.add(user2)
db_session.commit()
db_session.rollback()
def test_unique_constraint_oauth_state(self, db_session: Session):
"""Test OAuthState.state must be unique."""
user = UserFactory(email="stateuser@test.com", _session=db_session)
# Create first OAuth state
state1 = OAuthState(
user_id=user.id,
provider="google",
state="unique_state_123",
expires_at=datetime.utcnow() + timedelta(minutes=10)
)
db_session.add(state1)
db_session.commit()
# Try to create second state with same state string
with pytest.raises(IntegrityError):
state2 = OAuthState(
user_id=user.id,
provider="github",
state="unique_state_123", # Duplicate state
expires_at=datetime.utcnow() + timedelta(minutes=10)
)
db_session.add(state2)
db_session.commit()
db_session.rollback()
def test_not_null_constraint_agent_name(self, db_session: Session):
"""Test AgentRegistry.name cannot be NULL."""
# Try to create agent without name
agent = AgentRegistry(
name=None, # Violates NOT NULL
category="test",
module_path="test.module",
class_name="TestAgent"
)
db_session.add(agent)
with pytest.raises((IntegrityError, Exception)):
db_session.commit()
db_session.rollback()
def test_not_null_constraint_user_email(self, db_session: Session):
"""Test User.email cannot be NULL."""
user = User(
email=None, # Violates NOT NULL
first_name="Test",
last_name="User"
)
db_session.add(user)
with pytest.raises((IntegrityError, Exception)):
db_session.commit()
db_session.rollback()
def test_not_null_constraint_agent_category(self, db_session: Session):
"""Test AgentRegistry.category cannot be NULL."""
agent = AgentRegistry(
name="TestAgent",
category=None, # Violates NOT NULL
module_path="test.module",
class_name="TestAgent"
)
db_session.add(agent)
with pytest.raises((IntegrityError, Exception)):
db_session.commit()
db_session.rollback()
def test_enum_constraint_agent_status(self, db_session: Session):
"""Test AgentStatus only allows valid enum values."""
# Valid status should work
agent = AgentFactory(
status=AgentStatus.SUPERVISED.value,
_session=db_session
)
db_session.commit()
retrieved = db_session.query(AgentRegistry).filter(
AgentRegistry.id == agent.id
).first()
assert retrieved.status == AgentStatus.SUPERVISED.value
def test_enum_constraint_user_role(self, db_session: Session):
"""Test UserRole only allows valid roles."""
# Valid role should work
user = UserFactory(
role=UserRole.TEAM_LEAD.value,
_session=db_session
)
db_session.commit()
retrieved = db_session.query(User).filter(User.id == user.id).first()
assert retrieved.role == UserRole.TEAM_LEAD.value
def test_enum_constraint_feedback_status(self, db_session: Session):
"""Test FeedbackStatus only allows pending/accepted/rejected."""
agent = AgentFactory(_session=db_session)
user = UserFactory(_session=db_session)
# Valid status should work
feedback = AgentFeedbackFactory(
agent_id=agent.id,
user_id=user.id,
status=FeedbackStatus.ACCEPTED.value,
_session=db_session
)
db_session.commit()
retrieved = db_session.query(AgentFeedback).filter(
AgentFeedback.id == feedback.id
).first()
assert retrieved.status == FeedbackStatus.ACCEPTED.value
def test_foreign_key_constraint_execution_agent(self, db_session: Session):
"""Test AgentExecution.agent_id must reference valid agent."""
# Try to create execution with invalid agent_id
# Note: SQLite doesn't enforce FK by default, but we test the relationship
execution = AgentExecutionFactory(
agent_id="nonexistent_agent_id",
_session=db_session
)
db_session.commit()
# Verify execution was created (SQLite allows this)
# In production PostgreSQL, this would raise IntegrityError
retrieved = db_session.query(AgentExecution).filter(
AgentExecution.id == execution.id
).first()
assert retrieved is not None
assert retrieved.agent_id == "nonexistent_agent_id"
def test_foreign_key_constraint_feedback_agent(self, db_session: Session):
"""Test AgentFeedback.agent_id must reference valid agent."""
user = UserFactory(_session=db_session)
# Create feedback with invalid agent_id
feedback = AgentFeedbackFactory(
agent_id="invalid_agent_id",
user_id=user.id,
_session=db_session
)
db_session.commit()
# Verify feedback was created (SQLite allows this)
retrieved = db_session.query(AgentFeedback).filter(
AgentFeedback.id == feedback.id
).first()
assert retrieved.agent_id == "invalid_agent_id"
def test_foreign_key_constraint_episode_agent(self, db_session: Session):
"""Test Episode.agent_id must reference valid agent."""
# Create episode with invalid agent_id (Episode requires maturity_at_time)
episode = Episode(
id=str(uuid.uuid4()),
agent_id="invalid_agent_id",
workspace_id=str(uuid.uuid4()),
title="Test Episode",
maturity_at_time="STUDENT", # Required field
human_intervention_count=0, # Required field
started_at=datetime.utcnow()
)
db_session.add(episode)
db_session.commit()
# Verify episode was created (SQLite doesn't enforce FK)
retrieved = db_session.query(Episode).filter(Episode.id == episode.id).first()
assert retrieved.agent_id == "invalid_agent_id"
def test_check_constraint_confidence_score_range(self, db_session: Session):
"""Test Confidence score between 0.0 and 1.0."""
# Valid scores
agent1 = AgentFactory(confidence_score=0.0, _session=db_session)
agent2 = AgentFactory(confidence_score=0.5, _session=db_session)
agent3 = AgentFactory(confidence_score=1.0, _session=db_session)
db_session.commit()
assert agent1.confidence_score == 0.0
assert agent2.confidence_score == 0.5
assert agent3.confidence_score == 1.0
def test_check_constraint_rating_range(self, db_session: Session):
"""Test Rating between 1 and 5 stars."""
agent = AgentFactory(_session=db_session)
user = UserFactory(_session=db_session)
# Valid ratings
feedback1 = AgentFeedbackFactory(
agent_id=agent.id,
user_id=user.id,
rating=1,
_session=db_session
)
feedback2 = AgentFeedbackFactory(
agent_id=agent.id,
user_id=user.id,
rating=3,
_session=db_session
)
feedback3 = AgentFeedbackFactory(
agent_id=agent.id,
user_id=user.id,
rating=5,
_session=db_session
)
db_session.commit()
assert feedback1.rating == 1
assert feedback2.rating == 3
assert feedback3.rating == 5
# ============================================================================
# Task 3: Cascade Delete Tests
# ============================================================================
class TestCascades:
"""Test cascade delete and update operations."""
def test_cascade_delete_agent_to_executions(self, db_session: Session):
"""Test deleting agent requires deleting executions first (no cascade configured)."""
agent = AgentFactory(name="CascadeAgent", _session=db_session)
# Create 3 executions
execution1 = AgentExecutionFactory(agent_id=agent.id, _session=db_session)
execution2 = AgentExecutionFactory(agent_id=agent.id, _session=db_session)
execution3 = AgentExecutionFactory(agent_id=agent.id, _session=db_session)
db_session.commit()
agent_id = agent.id
execution_ids = [execution1.id, execution2.id, execution3.id]
# Verify relationship exists
executions = db_session.query(AgentExecution).filter(
AgentExecution.agent_id == agent_id
).all()
assert len(executions) == 3
# Delete executions first (FK constraint prevents direct agent deletion)
for execution in executions:
db_session.delete(execution)
db_session.commit()
# Now delete agent
db_session.delete(agent)
db_session.commit()
# Verify agent is deleted
assert db_session.query(AgentRegistry).filter(
AgentRegistry.id == agent_id
).first() is None
# Verify executions are deleted
remaining_executions = db_session.query(AgentExecution).filter(
AgentExecution.id.in_(execution_ids)
).all()
assert len(remaining_executions) == 0
def test_cascade_delete_agent_to_feedback(self, db_session: Session):
"""Test deleting agent requires deleting feedback first (no cascade configured)."""
agent = AgentFactory(name="FeedbackCascadeAgent", _session=db_session)
user = UserFactory(_session=db_session)
# Create 5 feedback entries
feedback_list = []
for i in range(5):
feedback = AgentFeedbackFactory(
agent_id=agent.id,
user_id=user.id,
_session=db_session
)
feedback_list.append(feedback)
db_session.commit()
agent_id = agent.id
feedback_ids = [f.id for f in feedback_list]
# Verify feedback exists
feedback_count = db_session.query(AgentFeedback).filter(
AgentFeedback.agent_id == agent_id
).count()
assert feedback_count == 5
# Delete feedback first (FK constraint)
for feedback in feedback_list:
db_session.delete(feedback)
db_session.commit()
# Now delete agent
db_session.delete(agent)
db_session.commit()
# Verify agent deleted
assert db_session.query(AgentRegistry).filter(
AgentRegistry.id == agent_id
).first() is None
# Verify feedback deleted
remaining_feedback = db_session.query(AgentFeedback).filter(
AgentFeedback.id.in_(feedback_ids)
).all()
assert len(remaining_feedback) == 0
def test_cascade_delete_episode_to_segments(self, db_session: Session):
"""Test deleting episode removes segments (cascade configured)."""
agent = AgentFactory(name="SegmentCascadeAgent", _session=db_session)
episode = EpisodeFactory(agent_id=agent.id, title="Cascade Episode", _session=db_session)
# Create 10 segments
segments = []
for i in range(10):
segment = EpisodeSegment(
episode_id=episode.id,
segment_type="conversation",
sequence_order=i + 1,
content=f"Segment {i}",
source_type="chat_message"
)
segments.append(segment)
db_session.add_all(segments)
db_session.commit()
episode_id = episode.id
segment_ids = [s.id for s in segments]
# Delete episode
db_session.delete(episode)
db_session.commit()
# Verify episode deleted
assert db_session.query(Episode).filter(Episode.id == episode_id).first() is None
# Verify segments are deleted (cascade delete configured in EpisodeSegment)
remaining_segments = db_session.query(EpisodeSegment).filter(
EpisodeSegment.episode_id == episode_id
).all()
assert len(remaining_segments) == 0, "Segments should be cascade deleted"
def test_no_cascade_on_nullify_relationships(self, db_session: Session):
"""Test feedback deletion when agent is deleted (manual cascade)."""
agent = AgentFactory(name="NullifyAgent", _session=db_session)
user = UserFactory(email="nullify@test.com", _session=db_session)
# Create feedback
feedback = AgentFeedbackFactory(
agent_id=agent.id,
user_id=user.id,
_session=db_session
)
db_session.commit()
feedback_id = feedback.id
# Delete feedback first (FK constraint), then agent
db_session.delete(feedback)
db_session.delete(agent)
db_session.commit()
# Verify both are deleted
assert db_session.query(AgentFeedback).filter(
AgentFeedback.id == feedback_id
).first() is None
assert db_session.query(AgentRegistry).filter(
AgentRegistry.id == agent.id
).first() is None
# ============================================================================
# Task 4: ORM Query Tests
# ============================================================================
class TestORMQueries:
"""Test ORM queries: filters, joins, aggregations, sorting, pagination."""
def test_filter_agents_by_status(self, db_session: Session):
"""Test Filter agents by status."""
# Create agents with different statuses
student = AgentFactory(status=AgentStatus.STUDENT.value, _session=db_session)
intern = AgentFactory(status=AgentStatus.INTERN.value, _session=db_session)
supervised = AgentFactory(status=AgentStatus.SUPERVISED.value, _session=db_session)
autonomous = AgentFactory(status=AgentStatus.AUTONOMOUS.value, _session=db_session)
db_session.commit()
# Filter by STUDENT status
student_agents = db_session.query(AgentRegistry).filter(
AgentRegistry.status == AgentStatus.STUDENT.value
).all()
assert len(student_agents) == 1
assert student_agents[0].id == student.id
# Filter by SUPERVISED status
supervised_agents = db_session.query(AgentRegistry).filter(
AgentRegistry.status == AgentStatus.SUPERVISED.value
).all()
assert len(supervised_agents) == 1
def test_filter_users_by_role(self, db_session: Session):
"""Test Filter users by role."""
admin = UserFactory(role=UserRole.SUPER_ADMIN.value, email="admin@test.com", _session=db_session)
member = UserFactory(role=UserRole.MEMBER.value, email="member@test.com", _session=db_session)
lead = UserFactory(role=UserRole.TEAM_LEAD.value, email="lead@test.com", _session=db_session)
db_session.commit()
# Filter by TEAM_LEAD role
leads = db_session.query(User).filter(
User.role == UserRole.TEAM_LEAD.value
).all()
assert len(leads) == 1
def test_chained_filters(self, db_session: Session):
"""Test Chained filters (status AND category)."""
# Create agents with same status but different categories
ops1 = AgentFactory(
status=AgentStatus.STUDENT.value,
category="Operations",
_session=db_session
)
ops2 = AgentFactory(
status=AgentStatus.STUDENT.value,
category="Operations",
_session=db_session
)
finance = AgentFactory(
status=AgentStatus.STUDENT.value,
category="Finance",
_session=db_session
)
db_session.commit()
# Filter by status AND category
ops_students = db_session.query(AgentRegistry).filter(
and_(
AgentRegistry.status == AgentStatus.STUDENT.value,
AgentRegistry.category == "Operations"
)
).all()
assert len(ops_students) == 2
def test_join_agents_with_executions(self, db_session: Session):
"""Test Join agents with executions."""
agent = AgentFactory(name="JoinAgent", _session=db_session)
execution1 = AgentExecutionFactory(agent_id=agent.id, _session=db_session)
execution2 = AgentExecutionFactory(agent_id=agent.id, _session=db_session)
db_session.commit()
# Join query
results = db_session.query(AgentRegistry, AgentExecution).join(
AgentExecution, AgentRegistry.id == AgentExecution.agent_id
).all()
assert len(results) == 2
def test_join_users_with_workspaces(self, db_session: Session):
"""Test Join users with workspaces."""
workspace = WorkspaceFactory(name="JoinWorkspace", _session=db_session)
db_session.commit()
user1 = UserFactory(email="joinuser1@test.com", _session=db_session)
user2 = UserFactory(email="joinuser2@test.com", _session=db_session)
workspace.users.append(user1)
workspace.users.append(user2)
db_session.commit()
# Query with join
results = db_session.query(Workspace, User).join(
User, Workspace.users
).all()
assert len(results) == 2
def test_join_episodes_with_segments(self, db_session: Session):
"""Test Join episodes with segments."""
agent = AgentFactory(name="JoinEpisodeAgent", _session=db_session)
episode = EpisodeFactory(agent_id=agent.id, title="Join Episode", _session=db_session)
segment1 = EpisodeSegment(
episode_id=episode.id,
segment_type="conversation",
sequence_order=1,
content="First",
source_type="chat_message"
)
segment2 = EpisodeSegment(
episode_id=episode.id,
segment_type="execution",
sequence_order=2,
content="Second",
source_type="agent_execution"
)
db_session.add_all([segment1, segment2])
db_session.commit()
# Join episodes with segments
results = db_session.query(Episode, EpisodeSegment).join(
EpisodeSegment, Episode.id == EpisodeSegment.episode_id
).all()
assert len(results) == 2
def test_count_agents_by_status(self, db_session: Session):
"""Test Count agents by status."""
# Create agents
for _ in range(3):
AgentFactory(status=AgentStatus.STUDENT.value, _session=db_session)
for _ in range(2):
AgentFactory(status=AgentStatus.INTERN.value, _session=db_session)
AgentFactory(status=AgentStatus.AUTONOMOUS.value, _session=db_session)
db_session.commit()
# Count by status
student_count = db_session.query(AgentRegistry).filter(
AgentRegistry.status == AgentStatus.STUDENT.value
).count()
intern_count = db_session.query(AgentRegistry).filter(
AgentRegistry.status == AgentStatus.INTERN.value
).count()
assert student_count == 3
assert intern_count == 2
def test_aggregate_average_confidence_by_category(self, db_session: Session):
"""Test Average confidence score by category."""
AgentFactory(category="Operations", confidence_score=0.6, _session=db_session)
AgentFactory(category="Operations", confidence_score=0.8, _session=db_session)
AgentFactory(category="Finance", confidence_score=0.7, _session=db_session)
db_session.commit()
# Calculate average confidence by category
ops_avg = db_session.query(func.avg(AgentRegistry.confidence_score)).filter(
AgentRegistry.category == "Operations"
).scalar()
assert ops_avg == 0.7
def test_max_min_created_at(self, db_session: Session):
"""Test Max/min created_at timestamps."""
agent1 = AgentFactory(_session=db_session)
db_session.commit() # Commit to set created_at
# Wait a bit to ensure different timestamps
import time
time.sleep(0.01)
agent2 = AgentFactory(_session=db_session)
db_session.commit()
# Get max created_at
max_created = db_session.query(func.max(AgentRegistry.created_at)).scalar()
assert max_created is not None
def test_order_agents_by_confidence_desc(self, db_session: Session):
"""Test Order agents by confidence_score DESC."""
agent1 = AgentFactory(confidence_score=0.5, _session=db_session)
agent2 = AgentFactory(confidence_score=0.9, _session=db_session)
agent3 = AgentFactory(confidence_score=0.7, _session=db_session)
db_session.commit()
# Order by confidence DESC
agents = db_session.query(AgentRegistry).order_by(
desc(AgentRegistry.confidence_score)
).all()
assert agents[0].confidence_score == 0.9
assert agents[1].confidence_score == 0.7
assert agents[2].confidence_score == 0.5
def test_order_executions_by_created_at_desc(self, db_session: Session):
"""Test Order executions by started_at DESC."""
agent = AgentFactory(_session=db_session)
# Create executions with explicit timestamps to ensure ordering
base_time = datetime.utcnow()
execution1 = AgentExecutionFactory(
agent_id=agent.id,
started_at=base_time,
_session=db_session
)
execution2 = AgentExecutionFactory(
agent_id=agent.id,
started_at=base_time + timedelta(seconds=1),
_session=db_session
)
execution3 = AgentExecutionFactory(
agent_id=agent.id,
started_at=base_time + timedelta(seconds=2),
_session=db_session
)
db_session.commit()
# Order by started_at DESC (most recent first)
executions = db_session.query(AgentExecution).order_by(
desc(AgentExecution.started_at)
).all()
# execution3 should be first (latest timestamp)
assert executions[0].id == execution3.id
assert executions[1].id == execution2.id
assert executions[2].id == execution1.id
def test_pagination_limit_offset(self, db_session: Session):
"""Test Limit and offset for pagination."""
# Create 20 agents
for i in range(20):
AgentFactory(name=f"PageAgent{i}", _session=db_session)
db_session.commit()
# First page: limit=10, offset=0
page1 = db_session.query(AgentRegistry).order_by(
AgentRegistry.name
).limit(10).offset(0).all()
assert len(page1) == 10
# Second page: limit=10, offset=10
page2 = db_session.query(AgentRegistry).order_by(
AgentRegistry.name
).limit(10).offset(10).all()
assert len(page2) == 10
# Ensure different results
page1_names = [a.name for a in page1]
page2_names = [a.name for a in page2]
assert set(page1_names).isdisjoint(set(page2_names))
def test_like_search_pattern(self, db_session: Session):
"""Test Search agents by name pattern (LIKE)."""
AgentFactory(name="AlphaAgent", _session=db_session)
AgentFactory(name="BetaAgent", _session=db_session)
AgentFactory(name="GammaAgent", _session=db_session)
AgentFactory(name="NotMatching", _session=db_session)
db_session.commit()
# Search for names ending with "Agent"
results = db_session.query(AgentRegistry).filter(
AgentRegistry.name.like("%Agent")
).all()
assert len(results) == 3
# Search for names starting with "A"
results = db_session.query(AgentRegistry).filter(
AgentRegistry.name.like("A%")
).all()
assert len(results) == 1
assert results[0].name == "AlphaAgent"
def test_date_range_filter(self, db_session: Session):
"""Test Filter by created_at date range."""
# Create agents with explicit timestamps
base_time = datetime.utcnow()
agent1 = AgentFactory(
name="DateAgent1",
created_at=base_time,
_session=db_session
)
agent2 = AgentFactory(
name="DateAgent2",
created_at=base_time + timedelta(hours=1),
_session=db_session
)
agent3 = AgentFactory(
name="DateAgent3",
created_at=base_time + timedelta(hours=2),
_session=db_session
)
db_session.commit()
# Filter agents created in the last hour (should find agent2 and agent3)
cutoff = base_time + timedelta(minutes=30)
results = db_session.query(AgentRegistry).filter(
AgentRegistry.created_at > cutoff
).all()
# Should find agent2 and agent3
assert len(results) == 2
result_ids = [r.id for r in results]
assert agent2.id in result_ids
assert agent3.id in result_ids
def test_filter_by_last_login(self, db_session: Session):
"""Test Filter by last_login > timedelta."""
# Create user with recent login
user1 = UserFactory(
email="recent@test.com",
last_login=datetime.utcnow() - timedelta(hours=1),
_session=db_session
)
# Create user with old login
user2 = UserFactory(
email="old@test.com",
last_login=datetime.utcnow() - timedelta(days=30),
_session=db_session
)
db_session.commit()
# Filter users logged in within last 24 hours
cutoff = datetime.utcnow() - timedelta(hours=24)
recent_users = db_session.query(User).filter(
User.last_login > cutoff
).all()
assert len(recent_users) == 1
assert recent_users[0].id == user1.id
# ============================================================================
# Task 5: JSON Field and Special Property Tests
# ============================================================================
class TestSpecialFields:
"""Test JSON columns and special model properties."""
def test_json_field_agent_configuration(self, db_session: Session):
"""Test AgentRegistry.configuration JSON field."""
config_data = {
"system_prompt": "You are a helpful assistant",
"tools": ["search", "calculator"],
"max_tokens": 2000
}
agent = AgentFactory(
name="ConfigAgent",
configuration=config_data,
_session=db_session
)
db_session.commit()
# Retrieve and verify JSON data
retrieved = db_session.query(AgentRegistry).filter(
AgentRegistry.id == agent.id
).first()
assert retrieved.configuration == config_data
assert retrieved.configuration["system_prompt"] == "You are a helpful assistant"
assert "search" in retrieved.configuration["tools"]
def test_json_field_user_preferences(self, db_session: Session):
"""Test User.preferences JSON field."""
prefs = {
"theme": "dark",
"notifications": True,
"language": "en"
}
user = UserFactory(
email="prefs@test.com",
preferences=prefs,
_session=db_session
)
db_session.commit()
# Verify preferences stored correctly
retrieved = db_session.query(User).filter(User.id == user.id).first()
assert retrieved.preferences["theme"] == "dark"
assert retrieved.preferences["notifications"] is True
def test_json_field_workspace_metadata(self, db_session: Session):
"""Test Workspace.metadata_json JSON field."""
metadata = {
"settings": {"feature_x": True},
"limits": {"agents": 10},
"tags": ["production", "premium"]
}
workspace = WorkspaceFactory(
name="MetadataWorkspace",
metadata_json=metadata,
_session=db_session
)
db_session.commit()
# Verify metadata stored
retrieved = db_session.query(Workspace).filter(
Workspace.id == workspace.id
).first()
assert retrieved.metadata_json["limits"]["agents"] == 10
assert "premium" in retrieved.metadata_json["tags"]
def test_token_encryption_decryption(self, db_session: Session):
"""Test OAuthToken access_token is encrypted on write and decrypted on read."""
import uuid
user = UserFactory(email="tokenuser@test.com", _session=db_session)
# Set access token (should be encrypted)
original_token = "original_access_token_12345"
oauth_token = OAuthToken(
id=str(uuid.uuid4()),
user_id=user.id,
provider="test",
access_token=original_token,
token_type="Bearer"
)
db_session.add(oauth_token)
db_session.commit()
# Retrieve and verify decrypted value
retrieved = db_session.query(OAuthToken).filter(
OAuthToken.id == oauth_token.id
).first()
assert retrieved.access_token == original_token
def test_token_refresh_encryption(self, db_session: Session):
"""Test OAuthToken.refresh_token encryption/decryption."""
import uuid
user = UserFactory(email="refreshuser@test.com", _session=db_session)
refresh_token = "refresh_token_secret_67890"
oauth_token = OAuthToken(
id=str(uuid.uuid4()),
user_id=user.id,
provider="test",
access_token="access",
refresh_token=refresh_token,
token_type="Bearer"
)
db_session.add(oauth_token)
db_session.commit()
# Verify refresh token decrypted correctly
retrieved = db_session.query(OAuthToken).filter(
OAuthToken.id == oauth_token.id
).first()
assert retrieved.refresh_token == refresh_token
def test_boolean_default_email_verified(self, db_session: Session):
"""Test User.email_verified defaults to False."""
import uuid
user = User(
id=str(uuid.uuid4()),
email="verify@test.com",
first_name="Test",
last_name="User"
)
db_session.add(user)
db_session.commit()
# Verify default is False
assert user.email_verified is False
def test_boolean_default_workspace_is_startup(self, db_session: Session):
"""Test Workspace.is_startup defaults to False."""
workspace = Workspace(name="StartupWorkspace")
db_session.add(workspace)
db_session.commit()
# Verify default is False
assert workspace.is_startup is False
def test_boolean_default_oauth_state_used(self, db_session: Session):
"""Test OAuthState.used defaults to False."""
user = UserFactory(email="oauthstate@test.com", _session=db_session)
state = OAuthState(
user_id=user.id,
provider="google",
state="test_state",
expires_at=datetime.utcnow() + timedelta(minutes=10)
)
db_session.add(state)
db_session.commit()
# Verify default is False
assert state.used is False
def test_datetime_default_created_at(self, db_session: Session):
"""Test created_at defaults to current timestamp."""
import uuid
# Create agent directly without factory to test default
agent = AgentRegistry(
id=str(uuid.uuid4()),
name="TimestampAgent",
category="test",
module_path="test.module",
class_name="TestAgent"
)
db_session.add(agent)
db_session.commit()
# Verify created_at is set
assert agent.created_at is not None
assert isinstance(agent.created_at, datetime)
# Should be within last minute
assert datetime.utcnow() - agent.created_at < timedelta(minutes=1)
def test_string_default_agent_status(self, db_session: Session):
"""Test AgentRegistry.status defaults to 'student'."""
import uuid
agent = AgentRegistry(
id=str(uuid.uuid4()),
name="DefaultStatusAgent",
category="test",
module_path="test.module",
class_name="TestAgent"
)
db_session.add(agent)
db_session.commit()
# Verify default status
assert agent.status == AgentStatus.STUDENT.value
def test_string_default_user_role(self, db_session: Session):
"""Test User.role defaults to 'member'."""
import uuid
# Create user directly without factory to test default
user = User(
id=str(uuid.uuid4()),
email="roleuser@test.com",
first_name="Test",
last_name="User"
)
db_session.add(user)
db_session.commit()
# Verify default role
assert user.role == UserRole.MEMBER.value
def test_string_default_workspace_status(self, db_session: Session):
"""Test Workspace.status defaults to 'active'."""
workspace = WorkspaceFactory(name="DefaultStatusWorkspace", _session=db_session)
db_session.commit()
# Verify default status
assert workspace.status == WorkspaceStatus.ACTIVE.value
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