datasynth_generators/sourcing/
spend_analysis_generator.rs1use datasynth_config::schema::SpendAnalysisConfig;
6use datasynth_core::models::sourcing::{SpendAnalysis, VendorSpendShare};
7use rand::prelude::*;
8use rand_chacha::ChaCha8Rng;
9use rust_decimal::Decimal;
10
11pub struct SpendAnalysisGenerator {
13 rng: ChaCha8Rng,
14 config: SpendAnalysisConfig,
15}
16
17impl SpendAnalysisGenerator {
18 pub fn new(seed: u64) -> Self {
20 Self {
21 rng: ChaCha8Rng::seed_from_u64(seed),
22 config: SpendAnalysisConfig::default(),
23 }
24 }
25
26 pub fn with_config(seed: u64, config: SpendAnalysisConfig) -> Self {
28 Self {
29 rng: ChaCha8Rng::seed_from_u64(seed),
30 config,
31 }
32 }
33
34 pub fn generate(
42 &mut self,
43 company_code: &str,
44 vendor_ids: &[String],
45 categories: &[(String, String)],
46 fiscal_year: u16,
47 ) -> Vec<SpendAnalysis> {
48 let mut analyses = Vec::new();
49
50 for (cat_id, cat_name) in categories {
51 let vendor_count = self.rng.gen_range(3..=vendor_ids.len().min(15));
53 let mut cat_vendors: Vec<&String> = vendor_ids
54 .choose_multiple(&mut self.rng, vendor_count)
55 .collect();
56 cat_vendors.shuffle(&mut self.rng);
57
58 let mut raw_shares: Vec<f64> = (0..cat_vendors.len())
60 .map(|i| 1.0 / ((i as f64 + 1.0).powf(0.8)))
61 .collect();
62 let total: f64 = raw_shares.iter().sum();
63 for s in &mut raw_shares {
64 *s /= total;
65 }
66
67 let total_spend = Decimal::from(self.rng.gen_range(100_000i64..=5_000_000));
68 let transaction_count = self.rng.gen_range(50..=2000);
69
70 let hhi: f64 = raw_shares.iter().map(|s| (s * 100.0).powi(2)).sum();
72
73 let contract_coverage = self.rng.gen_range(0.3..=0.95);
74 let preferred_coverage = contract_coverage * self.rng.gen_range(0.7..=1.0);
75
76 let vendor_shares: Vec<VendorSpendShare> = cat_vendors
77 .iter()
78 .zip(raw_shares.iter())
79 .map(|(vid, share)| VendorSpendShare {
80 vendor_id: vid.to_string(),
81 vendor_name: format!("Vendor {}", vid),
82 spend_amount: Decimal::from_f64_retain(
83 total_spend.to_string().parse::<f64>().unwrap_or(0.0) * share,
84 )
85 .unwrap_or(Decimal::ZERO),
86 share: *share,
87 is_preferred: *share > 0.15 && self.rng.gen_bool(preferred_coverage),
88 })
89 .collect();
90
91 analyses.push(SpendAnalysis {
92 category_id: cat_id.clone(),
93 category_name: cat_name.clone(),
94 company_code: company_code.to_string(),
95 total_spend,
96 vendor_count: cat_vendors.len() as u32,
97 transaction_count,
98 hhi_index: hhi,
99 vendor_shares,
100 contract_coverage,
101 preferred_vendor_coverage: preferred_coverage,
102 price_trend_pct: self.rng.gen_range(-0.05..=0.10),
103 fiscal_year,
104 });
105 }
106
107 analyses
108 }
109
110 pub fn hhi_threshold(&self) -> f64 {
112 self.config.hhi_threshold
113 }
114}
115
116#[cfg(test)]
117#[allow(clippy::unwrap_used)]
118mod tests {
119 use super::*;
120
121 fn test_vendor_ids() -> Vec<String> {
122 (1..=10).map(|i| format!("V{:04}", i)).collect()
123 }
124
125 fn test_categories() -> Vec<(String, String)> {
126 vec![
127 ("CAT-001".to_string(), "Office Supplies".to_string()),
128 ("CAT-002".to_string(), "IT Equipment".to_string()),
129 ]
130 }
131
132 #[test]
133 fn test_basic_generation() {
134 let mut gen = SpendAnalysisGenerator::new(42);
135 let results = gen.generate("C001", &test_vendor_ids(), &test_categories(), 2024);
136
137 assert_eq!(results.len(), 2);
138 for analysis in &results {
139 assert_eq!(analysis.company_code, "C001");
140 assert_eq!(analysis.fiscal_year, 2024);
141 assert!(!analysis.category_id.is_empty());
142 assert!(!analysis.category_name.is_empty());
143 assert!(analysis.vendor_count > 0);
144 assert!(analysis.transaction_count > 0);
145 assert!(analysis.total_spend > Decimal::ZERO);
146 assert!(analysis.hhi_index > 0.0);
147 assert!(!analysis.vendor_shares.is_empty());
148 }
149 }
150
151 #[test]
152 fn test_deterministic() {
153 let mut gen1 = SpendAnalysisGenerator::new(42);
154 let mut gen2 = SpendAnalysisGenerator::new(42);
155 let vendors = test_vendor_ids();
156 let cats = test_categories();
157
158 let r1 = gen1.generate("C001", &vendors, &cats, 2024);
159 let r2 = gen2.generate("C001", &vendors, &cats, 2024);
160
161 assert_eq!(r1.len(), r2.len());
162 for (a, b) in r1.iter().zip(r2.iter()) {
163 assert_eq!(a.category_id, b.category_id);
164 assert_eq!(a.total_spend, b.total_spend);
165 assert_eq!(a.vendor_count, b.vendor_count);
166 assert_eq!(a.transaction_count, b.transaction_count);
167 }
168 }
169
170 #[test]
171 fn test_field_constraints() {
172 let mut gen = SpendAnalysisGenerator::new(99);
173 let results = gen.generate("C001", &test_vendor_ids(), &test_categories(), 2024);
174
175 for analysis in &results {
176 let share_sum: f64 = analysis.vendor_shares.iter().map(|s| s.share).sum();
178 assert!(
179 (share_sum - 1.0).abs() < 0.01,
180 "shares should sum to ~1.0, got {}",
181 share_sum
182 );
183
184 assert!(analysis.contract_coverage >= 0.0 && analysis.contract_coverage <= 1.0);
186 assert!(
187 analysis.preferred_vendor_coverage >= 0.0
188 && analysis.preferred_vendor_coverage <= 1.0
189 );
190 assert!(analysis.price_trend_pct >= -0.05 && analysis.price_trend_pct <= 0.10);
191
192 for vs in &analysis.vendor_shares {
194 assert!(!vs.vendor_id.is_empty());
195 }
196 }
197 }
198
199 #[test]
200 fn test_hhi_threshold() {
201 let gen = SpendAnalysisGenerator::new(42);
202 assert_eq!(gen.hhi_threshold(), 2500.0);
203 }
204}