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Add intelligent analysis and recommendation tools for KiCad designs: ## New AI Tools (kicad_mcp/tools/ai_tools.py) - suggest_components_for_circuit: Smart component suggestions based on circuit analysis - recommend_design_rules: Automated design rule recommendations for different technologies - optimize_pcb_layout: PCB layout optimization for signal integrity, thermal, and cost - analyze_design_completeness: Comprehensive design completeness analysis ## Enhanced Utilities - component_utils.py: Add ComponentType enum and component classification functions - pattern_recognition.py: Enhanced circuit pattern analysis and recommendations - netlist_parser.py: Implement missing parse_netlist_file function for AI tools ## Key Features - Circuit pattern recognition for power supplies, amplifiers, microcontrollers - Technology-specific design rules (standard, HDI, RF, automotive) - Layout optimization suggestions with implementation steps - Component suggestion system with standard values and examples - Design completeness scoring with actionable recommendations ## Server Integration - Register AI tools in FastMCP server - Integrate with existing KiCad utilities and file parsers - Error handling and graceful fallbacks for missing data Fixes ImportError that prevented server startup and enables advanced AI-powered design assistance for KiCad projects. 🤖 Generated with [Claude Code](https://claude.ai/code) Co-Authored-By: Claude <noreply@anthropic.com>
29 lines
824 B
Python
29 lines
824 B
Python
"""
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Coordinate conversion utilities for KiCad.
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Stub implementation to fix import issues.
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"""
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class CoordinateConverter:
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"""Converts between different coordinate systems in KiCad."""
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def __init__(self):
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self.scale_factor = 1.0
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def to_kicad_units(self, mm: float) -> float:
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"""Convert millimeters to KiCad internal units."""
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return mm * 1e6 # KiCad uses nanometers internally
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def from_kicad_units(self, units: float) -> float:
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"""Convert KiCad internal units to millimeters."""
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return units / 1e6
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def validate_position(x: float | int, y: float | int) -> bool:
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"""Validate if a position is within reasonable bounds."""
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# Basic validation - positions should be reasonable
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max_coord = 1000 # mm
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return abs(x) <= max_coord and abs(y) <= max_coord
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