🎉 Major v2.0 rebuild kickoff - Week 1 accomplished! ## Highlights ### Cross-Platform Support 🌍 - ✅ Linux primary platform (Ubuntu/Debian tested) - ✅ Windows fully supported - ✅ macOS experimental support - ✅ Platform-agnostic path handling (XDG spec) - ✅ Auto-detection of KiCAD installation ### Infrastructure 🏗️ - ✅ GitHub Actions CI/CD pipeline - ✅ Pytest framework with 20+ tests - ✅ Pre-commit hooks (Black, MyPy, ESLint) - ✅ Automated Linux installation script - ✅ Enhanced npm scripts ### IPC API Migration Prep 🚀 - ✅ Comprehensive migration plan (30 pages) - ✅ Backend abstraction layer (800+ lines) - ✅ Factory pattern with auto-detection - ✅ SWIG backward compatibility wrapper - ✅ IPC backend skeleton ready ### Documentation 📚 - ✅ Updated README (Linux installation) - ✅ CONTRIBUTING.md guide - ✅ Linux compatibility audit - ✅ IPC API migration plan - ✅ Session summaries - ✅ Platform-specific config templates ## Files Changed - 27 files created - ~3,000 lines of code/docs - 8 comprehensive documentation pages - 20+ unit tests - 5 abstraction layer modules ## Next Steps - Week 2: IPC API migration (project.py → component.py → routing.py) - Migrate from deprecated SWIG to official IPC API - JLCPCB/Digikey integration prep 🤖 Generated with Claude Code https://claude.com/claude-code Co-Authored-By: Claude <noreply@anthropic.com>
94 lines
2.7 KiB
Python
94 lines
2.7 KiB
Python
#!/usr/bin/env python3
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"""
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Manual test script for the schematic functionality
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"""
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import sys
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import os
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# Add the parent directory to the module search path
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sys.path.append(os.path.abspath(os.path.join(os.path.dirname(__file__), '..')))
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# Import our schematic modules
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from python.commands.schematic import SchematicManager
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from python.commands.component_schematic import ComponentManager
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from python.commands.connection_schematic import ConnectionManager
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def main():
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"""Run a basic test of schematic functionality"""
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print("=== Starting manual schematic test ===")
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# Set up test output directory
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test_dir = os.path.join(os.path.dirname(__file__), 'schematic_test_output')
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if not os.path.exists(test_dir):
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os.makedirs(test_dir)
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# 1. Create a new schematic
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schematic_name = "TestCircuitManual"
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schematic_path = os.path.join(test_dir, f"{schematic_name}.kicad_sch")
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print(f"Creating schematic: {schematic_name}")
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schematic = SchematicManager.create_schematic(schematic_name)
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# 2. Add components to the schematic
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print("Adding components to schematic...")
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# Add resistor R1
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r1_def = {
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"type": "R",
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"reference": "R1",
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"value": "10k",
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"library": "Device",
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"x": 100,
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"y": 100
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}
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r1 = ComponentManager.add_component(schematic, r1_def)
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# Add resistor R2
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r2_def = {
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"type": "R",
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"reference": "R2",
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"value": "4.7k",
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"library": "Device",
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"x": 100,
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"y": 200
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}
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r2 = ComponentManager.add_component(schematic, r2_def)
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# Add capacitor C1
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c1_def = {
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"type": "C",
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"reference": "C1",
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"value": "0.1uF",
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"library": "Device",
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"x": 200,
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"y": 150
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}
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c1 = ComponentManager.add_component(schematic, c1_def)
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# 3. Add wires to connect components
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print("Adding wires to connect components...")
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# Connect R1 to R2
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wire1 = ConnectionManager.add_wire(schematic, [150, 100], [150, 200])
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# Connect R2 to C1
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wire2 = ConnectionManager.add_wire(schematic, [150, 200], [200, 200])
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# Connect C1 to R1
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wire3 = ConnectionManager.add_wire(schematic, [200, 100], [150, 100])
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# 4. Save the schematic
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print(f"Saving schematic to: {schematic_path}")
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success = SchematicManager.save_schematic(schematic, schematic_path)
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if success:
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print(f"Successfully saved schematic to: {schematic_path}")
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else:
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print("Failed to save schematic")
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print("=== Manual schematic test completed ===")
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if __name__ == "__main__":
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main()
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