generated from coulomb/repo-seed
Transform Issue Facade from a universal CLI tool into an agent coordination platform with comprehensive documentation and enhanced capabilities for autonomous coding agents. Major Changes: - Complete README rewrite focusing on agent-driven coordination - New comprehensive documentation (AGENT_INTEGRATION.md, CLAUDE.md, ROADMAP.md) - Capability integration setup with CAPABILITY.yaml and integration scripts - Enhanced Makefile with local development targets for easier workflows Bug Fixes: - Fix schema initialization using executescript() for multi-line SQL support - Disable FTS5 triggers due to compatibility issues (documented for future re-enablement) Features: - Enhanced CLI list command with full parameter passthrough - New examples directory with agent integration patterns - New comprehensive test suite (test_core_models.py, test_local_backend.py) Code Quality: - Remove @cached_property decorators for Label properties (simplification) - Clean up test organization (removed old test_gitea_integration.py) This milestone establishes Issue Facade as a production-ready coordination layer for multi-agent software development, with clear integration paths and comprehensive developer documentation. 🤖 Generated with [Claude Code](https://claude.com/claude-code) Co-Authored-By: Claude Sonnet 4.5 <noreply@anthropic.com>
315 lines
11 KiB
Python
Executable File
315 lines
11 KiB
Python
Executable File
#!/usr/bin/env python3
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"""
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Monitoring Agent
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This agent monitors issue health and sends alerts:
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- Detects stale issues (not updated in N days)
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- Finds blocked issues waiting too long
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- Identifies high-priority issues without assignees
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- Reports on project velocity and bottlenecks
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Usage:
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export GITEA_URL=https://gitea.example.com
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export GITEA_TOKEN=your-token
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export GITEA_OWNER=your-org
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export GITEA_REPO=your-repo
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python monitoring_agent.py [--stale-days=7] [--check-interval=3600]
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"""
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import os
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import sys
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import time
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import argparse
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from datetime import datetime, timezone, timedelta
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from pathlib import Path
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from collections import defaultdict
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from typing import List, Dict
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sys.path.insert(0, str(Path(__file__).parent.parent.parent))
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from issue_tracker.backends.gitea import GiteaBackend
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from issue_tracker.core.models import Issue, Label, User, Comment, IssueState
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from issue_tracker.core.interfaces import IssueFilter
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class MonitoringAgent:
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"""Agent that monitors issue tracker health and alerts on problems."""
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def __init__(self, agent_id: str = "agent-monitor", stale_days: int = 7):
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self.agent_id = agent_id
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self.stale_threshold = timedelta(days=stale_days)
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self.backend = None
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def connect(self):
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"""Connect to backend."""
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base_url = os.environ['GITEA_URL']
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token = os.environ['GITEA_TOKEN']
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owner = os.environ['GITEA_OWNER']
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repo = os.environ['GITEA_REPO']
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self.backend = GiteaBackend()
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self.backend.connect({
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'base_url': base_url,
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'token': token,
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'owner': owner,
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'repo': repo
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})
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print(f"✓ Connected to {base_url}/{owner}/{repo}")
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def check_stale_issues(self) -> List[Issue]:
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"""Find issues that haven't been updated recently."""
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print("\n🔍 Checking for stale issues...")
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cutoff = datetime.now(timezone.utc) - self.stale_threshold
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# Get all open issues
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all_issues = self.backend.list_issues(IssueFilter(state='open'))
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# Filter to stale ones
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stale = [issue for issue in all_issues
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if issue.updated_at < cutoff]
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if stale:
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print(f" ⚠️ Found {len(stale)} stale issue(s)")
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for issue in stale:
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days_stale = (datetime.now(timezone.utc) - issue.updated_at).days
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print(f" #{issue.number}: {issue.title} "
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f"(stale for {days_stale} days)")
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else:
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print(f" ✓ No stale issues found")
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return stale
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def check_blocked_issues(self) -> List[Issue]:
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"""Find blocked issues."""
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print("\n🔍 Checking for blocked issues...")
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blocked = self.backend.list_issues(IssueFilter(
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state='blocked'
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))
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if blocked:
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print(f" ⚠️ Found {len(blocked)} blocked issue(s)")
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for issue in blocked:
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days_blocked = (datetime.now(timezone.utc) - issue.updated_at).days
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print(f" #{issue.number}: {issue.title} "
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f"(blocked for {days_blocked} days)")
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else:
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print(f" ✓ No blocked issues")
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return blocked
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def check_unassigned_priority(self) -> List[Issue]:
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"""Find high-priority issues without assignees."""
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print("\n🔍 Checking for unassigned priority issues...")
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# Get high priority issues
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high_priority = self.backend.list_issues(IssueFilter(
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state='open',
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labels=['priority:high']
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))
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critical = self.backend.list_issues(IssueFilter(
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state='open',
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labels=['priority:critical']
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))
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all_priority = high_priority + critical
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unassigned = [issue for issue in all_priority if not issue.assignees]
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if unassigned:
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print(f" ⚠️ Found {len(unassigned)} unassigned priority issue(s)")
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for issue in unassigned:
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priority = next((l.name for l in issue.labels
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if l.name.startswith('priority:')), 'unknown')
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print(f" #{issue.number}: {issue.title} [{priority}]")
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else:
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print(f" ✓ All priority issues are assigned")
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return unassigned
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def analyze_velocity(self) -> Dict[str, int]:
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"""Analyze project velocity (issues opened vs closed)."""
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print("\n📊 Analyzing project velocity...")
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# Get recent activity
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week_ago = datetime.now(timezone.utc) - timedelta(days=7)
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# Count recently created
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all_issues = self.backend.list_issues(IssueFilter(limit=1000))
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recent_created = len([i for i in all_issues if i.created_at >= week_ago])
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# Count recently closed
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closed_issues = self.backend.list_issues(IssueFilter(state='closed'))
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recent_closed = len([i for i in closed_issues
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if i.closed_at and i.closed_at >= week_ago])
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# Count open
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open_issues = len(self.backend.list_issues(IssueFilter(state='open')))
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print(f" Last 7 days:")
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print(f" Created: {recent_created} issues")
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print(f" Closed: {recent_closed} issues")
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print(f" Net change: {recent_created - recent_closed:+d}")
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print(f" Currently open: {open_issues}")
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if recent_created > recent_closed * 1.5:
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print(f" ⚠️ Issues are piling up faster than being resolved!")
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elif recent_closed > recent_created:
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print(f" ✓ Good progress - closing more than opening")
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return {
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'created': recent_created,
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'closed': recent_closed,
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'open': open_issues
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}
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def analyze_bottlenecks(self) -> Dict[str, int]:
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"""Identify bottlenecks in the workflow."""
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print("\n🔍 Analyzing workflow bottlenecks...")
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# Count issues by state
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states = defaultdict(int)
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all_open = self.backend.list_issues(IssueFilter(state='open'))
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for issue in all_open:
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states[issue.state.value] += 1
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# Count issues by label
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labels = defaultdict(int)
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for issue in all_open:
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for label in issue.labels:
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if label.name.startswith('needs-'):
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labels[label.name] += 1
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print(f" Issues by state:")
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for state, count in sorted(states.items(), key=lambda x: -x[1]):
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print(f" {state}: {count}")
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if labels:
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print(f" Issues by stage:")
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for label, count in sorted(labels.items(), key=lambda x: -x[1]):
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print(f" {label}: {count}")
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if count > 10:
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print(f" ⚠️ Potential bottleneck!")
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return dict(labels)
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def send_alert(self, title: str, details: List[str]):
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"""Send an alert by creating an issue."""
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print(f"\n🚨 Sending alert: {title}")
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body = f"**Monitoring Alert**\n\n"
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body += f"The monitoring agent detected potential issues:\n\n"
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for detail in details:
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body += f"- {detail}\n"
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body += f"\n*Generated by {self.agent_id} at {datetime.now(timezone.utc).isoformat()}*"
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alert_issue = Issue(
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id=None,
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number=0,
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title=f"🚨 Monitor Alert: {title}",
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description=body,
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state=IssueState.OPEN,
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created_at=datetime.now(timezone.utc),
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updated_at=datetime.now(timezone.utc),
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labels=[
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Label(name='monitoring'),
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Label(name='alert'),
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Label(name='agent-generated')
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]
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)
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created = self.backend.create_issue(alert_issue)
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print(f" ✓ Alert created as issue #{created.number}")
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def run_health_check(self, send_alerts: bool = True):
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"""Run complete health check."""
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print(f"\n🤖 Running issue tracker health check...")
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print(f" Timestamp: {datetime.now(timezone.utc).isoformat()}\n")
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alerts = []
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# Check for problems
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stale = self.check_stale_issues()
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if stale:
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alerts.append(f"{len(stale)} stale issues (>= {self.stale_threshold.days} days)")
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blocked = self.check_blocked_issues()
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if blocked:
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alerts.append(f"{len(blocked)} blocked issues")
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unassigned = self.check_unassigned_priority()
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if unassigned:
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alerts.append(f"{len(unassigned)} unassigned priority issues")
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# Analyze metrics
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velocity = self.analyze_velocity()
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if velocity['created'] > velocity['closed'] * 2:
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alerts.append(f"Issue backlog growing rapidly "
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f"({velocity['created']} created vs {velocity['closed']} closed)")
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bottlenecks = self.analyze_bottlenecks()
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for stage, count in bottlenecks.items():
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if count > 10:
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alerts.append(f"{count} issues stuck in stage: {stage}")
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# Send alert if needed
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if alerts and send_alerts:
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self.send_alert("Issue Tracker Health Check", alerts)
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elif not alerts:
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print(f"\n✅ All checks passed - no issues found!")
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return len(alerts) == 0
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def main():
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"""Main entry point."""
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parser = argparse.ArgumentParser(description='Monitoring agent for issue tracker')
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parser.add_argument('--stale-days', type=int, default=7,
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help='Days before an issue is considered stale')
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parser.add_argument('--check-interval', type=int, default=3600,
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help='Interval between checks in seconds (default: 1 hour)')
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parser.add_argument('--once', action='store_true',
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help='Run once and exit')
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parser.add_argument('--no-alerts', action='store_true',
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help='Do not create alert issues')
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args = parser.parse_args()
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try:
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agent = MonitoringAgent(
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agent_id="agent-monitor",
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stale_days=args.stale_days
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)
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agent.connect()
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if args.once:
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agent.run_health_check(send_alerts=not args.no_alerts)
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else:
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print(f"\n🤖 Monitoring agent starting...")
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print(f" Check interval: {args.check_interval}s")
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print(f" Stale threshold: {args.stale_days} days")
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print(f" Press Ctrl+C to stop\n")
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while True:
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agent.run_health_check(send_alerts=not args.no_alerts)
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print(f"\n⏸️ Waiting {args.check_interval}s until next check...")
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time.sleep(args.check_interval)
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except KeyboardInterrupt:
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print("\n\n⚠️ Interrupted by user")
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sys.exit(0)
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except Exception as e:
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print(f"\n❌ Error: {e}")
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import traceback
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traceback.print_exc()
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sys.exit(1)
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if __name__ == '__main__':
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main()
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