Move 17 library crates into crates/, CLI binary into bin/fxt, consolidate 10 test crates into testing/, split config crate from deployment config files. Root directory reduced from 38+ to ~17 directories. All Cargo.toml paths and build.rs proto refs updated. Co-Authored-By: Claude Opus 4.6 <noreply@anthropic.com>
130 lines
3.8 KiB
Rust
130 lines
3.8 KiB
Rust
/// Test to verify TFT attention cache LRU behavior
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///
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/// This test ensures the unbounded HashMap memory leak fix (2025-10-25)
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/// works correctly by validating:
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/// - Cache size never exceeds MAX_CACHE_ENTRIES (2000)
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/// - LRU eviction happens automatically
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/// - Memory is bounded even with many insertions
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use anyhow::Result;
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use ml::tft::{TFTConfig, TFTState};
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#[test]
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fn test_tft_state_lru_cache_bounds() -> Result<()> {
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let config = TFTConfig::default();
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let mut state = TFTState::zeros(&config)?;
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// Verify initial state
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assert_eq!(state.attention_cache.len(), 0, "Cache should start empty");
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// Insert 3000 entries (exceeds MAX_CACHE_ENTRIES of 2000)
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for i in 0..3000 {
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let key = format!("cache_key_{}", i);
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let value = candle_core::Tensor::zeros(
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&[8, 64],
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candle_core::DType::F32,
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&candle_core::Device::Cpu,
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)?;
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state.attention_cache.put(key, value);
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}
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// Cache should be capped at MAX_CACHE_ENTRIES (2000)
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assert_eq!(
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state.attention_cache.len(),
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TFTState::MAX_CACHE_ENTRIES,
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"Cache should never exceed MAX_CACHE_ENTRIES (2000)"
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);
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// Oldest entries (0-999) should be evicted by LRU policy
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assert!(
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state.attention_cache.get("cache_key_0").is_none(),
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"Oldest entry should be evicted"
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);
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assert!(
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state.attention_cache.get("cache_key_999").is_none(),
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"Old entries should be evicted"
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);
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// Newest entries (1000-2999) should still be present
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assert!(
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state.attention_cache.get("cache_key_1000").is_some(),
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"Recent entry should be retained"
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);
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assert!(
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state.attention_cache.get("cache_key_2999").is_some(),
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"Newest entry should be retained"
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);
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Ok(())
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}
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#[test]
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fn test_tft_state_cache_max_entries_constant() {
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// Verify MAX_CACHE_ENTRIES is sensible
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assert_eq!(
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TFTState::MAX_CACHE_ENTRIES,
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2000,
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"MAX_CACHE_ENTRIES should be 2000 (chosen for ~48MB overhead, 60% speedup)"
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);
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}
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#[test]
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fn test_tft_state_creation_with_lru() -> Result<()> {
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let config = TFTConfig::default();
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let state = TFTState::zeros(&config)?;
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// Verify state is created with correct initial values
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assert!(state.hidden_state.is_none(), "Hidden state should be None");
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assert_eq!(state.last_update, 0, "Last update should be 0");
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assert_eq!(state.attention_cache.len(), 0, "Cache should be empty");
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Ok(())
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}
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#[test]
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fn test_lru_eviction_order() -> Result<()> {
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let config = TFTConfig::default();
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let mut state = TFTState::zeros(&config)?;
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// Insert exactly MAX_CACHE_ENTRIES (1000) items
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for i in 0..TFTState::MAX_CACHE_ENTRIES {
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let key = format!("key_{}", i);
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let value = candle_core::Tensor::zeros(
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&[4, 32],
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candle_core::DType::F32,
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&candle_core::Device::Cpu,
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)?;
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state.attention_cache.put(key, value);
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}
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assert_eq!(state.attention_cache.len(), TFTState::MAX_CACHE_ENTRIES);
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// Access key_500 to make it recently used
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let _ = state.attention_cache.get("key_500");
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// Insert one more item (should evict key_0, the least recently used)
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state.attention_cache.put(
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"new_key".to_string(),
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candle_core::Tensor::zeros(&[4, 32], candle_core::DType::F32, &candle_core::Device::Cpu)?,
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);
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// key_0 should be evicted (oldest)
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assert!(
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state.attention_cache.get("key_0").is_none(),
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"key_0 should be evicted as LRU"
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);
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// key_500 should still be present (was accessed recently)
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assert!(
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state.attention_cache.get("key_500").is_some(),
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"key_500 should remain (recently accessed)"
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);
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// new_key should be present
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assert!(
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state.attention_cache.get("new_key").is_some(),
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"new_key should be present"
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);
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Ok(())
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}
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