Files
rust-optimizer/tests/sqlite_tests.rs
T

244 lines
6.7 KiB
Rust

//! Integration tests for the SQLite storage backend.
use std::collections::HashMap;
use std::sync::Arc;
use optimizer::parameter::{FloatParam, Parameter};
use optimizer::sampler::CompletedTrial;
use optimizer::sampler::random::RandomSampler;
use optimizer::storage::{SqliteStorage, Storage};
use optimizer::{Direction, Study};
fn temp_path() -> std::path::PathBuf {
let mut path = std::env::temp_dir();
path.push(format!(
"optimizer_sqlite_test_{}.db",
std::time::SystemTime::now()
.duration_since(std::time::UNIX_EPOCH)
.unwrap()
.as_nanos()
));
path
}
fn sample_trial(id: u64, value: f64) -> CompletedTrial<f64> {
CompletedTrial::new(id, HashMap::new(), HashMap::new(), HashMap::new(), value)
}
#[test]
fn roundtrip_single_trial() {
let path = temp_path();
let storage = SqliteStorage::new(&path).unwrap();
storage.push(sample_trial(0, 42.0));
let loaded = storage.trials_arc().read().clone();
assert_eq!(loaded.len(), 1);
assert_eq!(loaded[0].id, 0);
assert_eq!(loaded[0].value, 42.0);
// Verify via a fresh open from disk
let storage2 = SqliteStorage::<f64>::new(&path).unwrap();
let loaded2 = storage2.trials_arc().read().clone();
assert_eq!(loaded2.len(), 1);
assert_eq!(loaded2[0].value, 42.0);
std::fs::remove_file(&path).ok();
}
#[test]
fn append_multiple_trials() {
let path = temp_path();
let storage = SqliteStorage::new(&path).unwrap();
for i in 0..5 {
storage.push(sample_trial(i, i as f64));
}
// Reload from disk
let storage2 = SqliteStorage::<f64>::new(&path).unwrap();
let loaded = storage2.trials_arc().read().clone();
assert_eq!(loaded.len(), 5);
for (i, trial) in loaded.iter().enumerate() {
assert_eq!(trial.id, i as u64);
assert_eq!(trial.value, i as f64);
}
std::fs::remove_file(&path).ok();
}
#[test]
fn concurrent_writes() {
let path = temp_path();
let storage = Arc::new(SqliteStorage::new(&path).unwrap());
let mut handles = Vec::new();
for thread_id in 0..4u64 {
let s = Arc::clone(&storage);
handles.push(std::thread::spawn(move || {
for i in 0..25u64 {
let id = thread_id * 25 + i;
s.push(sample_trial(id, id as f64));
}
}));
}
for h in handles {
h.join().unwrap();
}
// Reload from disk to verify persistence
let storage2 = SqliteStorage::<f64>::new(&path).unwrap();
let loaded = storage2.trials_arc().read().clone();
assert_eq!(loaded.len(), 100);
// Verify all IDs are present (order may vary)
let mut ids: Vec<u64> = loaded.iter().map(|t| t.id).collect();
ids.sort();
assert_eq!(ids, (0..100).collect::<Vec<_>>());
std::fs::remove_file(&path).ok();
}
#[test]
fn refresh_picks_up_external_writes() {
let path = temp_path();
let storage1 = SqliteStorage::new(&path).unwrap();
let storage2 = SqliteStorage::<f64>::new(&path).unwrap();
// Write via storage1
storage1.push(sample_trial(0, 1.0));
storage1.push(sample_trial(1, 2.0));
// storage2 doesn't see them yet in memory
assert_eq!(storage2.trials_arc().read().len(), 0);
// After refresh, storage2 picks them up
assert!(storage2.refresh());
assert_eq!(storage2.trials_arc().read().len(), 2);
// No-op refresh returns false
assert!(!storage2.refresh());
std::fs::remove_file(&path).ok();
}
#[test]
fn study_with_sqlite_integration() {
let path = temp_path();
let x = FloatParam::new(-10.0, 10.0);
// First "process": run some trials
{
let study =
Study::with_sqlite(Direction::Minimize, RandomSampler::with_seed(1), &path).unwrap();
study
.optimize(5, |trial| {
let val = x.suggest(trial)?;
Ok::<_, optimizer::Error>(val * val)
})
.unwrap();
assert_eq!(study.n_trials(), 5);
}
// Second "process": loads the same file, sees existing trials
let study2 =
Study::with_sqlite(Direction::Minimize, RandomSampler::with_seed(2), &path).unwrap();
assert_eq!(study2.n_trials(), 5);
// Continue optimizing
study2
.optimize(5, |trial| {
let val = x.suggest(trial)?;
Ok::<_, optimizer::Error>(val * val)
})
.unwrap();
assert_eq!(study2.n_trials(), 10);
// Verify all 10 written to disk
let storage3 = SqliteStorage::<f64>::new(&path).unwrap();
let loaded = storage3.trials_arc().read().clone();
assert_eq!(loaded.len(), 10);
std::fs::remove_file(&path).ok();
}
#[test]
fn ids_are_unique_after_reload() {
let path = temp_path();
// First batch
{
let study =
Study::with_sqlite(Direction::Minimize, RandomSampler::with_seed(1), &path).unwrap();
study
.optimize(3, |trial| {
let _ = FloatParam::new(0.0, 1.0).suggest(trial)?;
Ok::<_, optimizer::Error>(1.0)
})
.unwrap();
}
// Second batch — IDs should continue from 3
let study =
Study::with_sqlite(Direction::Minimize, RandomSampler::with_seed(2), &path).unwrap();
study
.optimize(3, |trial| {
let _ = FloatParam::new(0.0, 1.0).suggest(trial)?;
Ok::<_, optimizer::Error>(1.0)
})
.unwrap();
let all = study.trials();
let mut ids: Vec<u64> = all.iter().map(|t| t.id).collect();
ids.sort();
ids.dedup();
assert_eq!(ids.len(), 6);
std::fs::remove_file(&path).ok();
}
#[test]
fn pruned_trials_are_stored() {
let path = temp_path();
let study =
Study::with_sqlite(Direction::Minimize, RandomSampler::with_seed(1), &path).unwrap();
let x = FloatParam::new(0.0, 1.0);
study
.optimize(3, |trial| {
let _ = x.suggest(trial)?;
if trial.id() == 1 {
Err(optimizer::TrialPruned)?;
}
Ok::<_, optimizer::Error>(1.0)
})
.unwrap();
let storage2 = SqliteStorage::<f64>::new(&path).unwrap();
let loaded = storage2.trials_arc().read().clone();
assert_eq!(loaded.len(), 3);
assert!(
loaded
.iter()
.any(|t| t.state == optimizer::TrialState::Pruned)
);
std::fs::remove_file(&path).ok();
}
#[test]
fn handles_many_trials() {
let path = temp_path();
let storage = SqliteStorage::new(&path).unwrap();
for i in 0..1000 {
storage.push(sample_trial(i, i as f64));
}
let storage2 = SqliteStorage::<f64>::new(&path).unwrap();
let loaded = storage2.trials_arc().read().clone();
assert_eq!(loaded.len(), 1000);
std::fs::remove_file(&path).ok();
}