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https://github.com/SamyRai/turash.git
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Repository Structure:
- Move files from cluttered root directory into organized structure
- Create archive/ for archived data and scraper results
- Create bugulma/ for the complete application (frontend + backend)
- Create data/ for sample datasets and reference materials
- Create docs/ for comprehensive documentation structure
- Create scripts/ for utility scripts and API tools
Backend Implementation:
- Implement 3 missing backend endpoints identified in gap analysis:
* GET /api/v1/organizations/{id}/matching/direct - Direct symbiosis matches
* GET /api/v1/users/me/organizations - User organizations
* POST /api/v1/proposals/{id}/status - Update proposal status
- Add complete proposal domain model, repository, and service layers
- Create database migration for proposals table
- Fix CLI server command registration issue
API Documentation:
- Add comprehensive proposals.md API documentation
- Update README.md with Users and Proposals API sections
- Document all request/response formats, error codes, and business rules
Code Quality:
- Follow existing Go backend architecture patterns
- Add proper error handling and validation
- Match frontend expected response schemas
- Maintain clean separation of concerns (handler -> service -> repository)
34 lines
1.0 KiB
Go
34 lines
1.0 KiB
Go
package financial
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import "math"
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// CapexEstimatorImpl implements CapexEstimator interface
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type CapexEstimatorImpl struct {
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config *Config
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}
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// NewCapexEstimator creates a new CAPEX estimator
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func NewCapexEstimator(config *Config) CapexEstimator {
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return &CapexEstimatorImpl{config: config}
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}
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// EstimateCapex estimates capital expenditure based on distance and resource type
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func (ce *CapexEstimatorImpl) EstimateCapex(resourceType string, distanceKm float64, annualVolume float64) float64 {
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// Get base CAPEX per km from config
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baseCapex, exists := ce.config.CapexPerKm[resourceType]
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if !exists {
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baseCapex = 20000 // Default estimate
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}
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// Base infrastructure cost
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infrastructureCost := baseCapex * distanceKm
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// Add connection costs (heat exchangers, meters, etc.)
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connectionCost := 20000.0 // Fixed connection cost
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// Scale factor based on volume (larger volumes need larger equipment)
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scaleFactor := 1.0 + math.Log10(math.Max(1, annualVolume/1000))
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return (infrastructureCost + connectionCost) * scaleFactor
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}
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