Phase 9-1: O(1) SuperSlab lookup optimization - Created ss_addr_map_box: Hash table (8192 buckets) for O(1) SuperSlab lookup - Created ss_tls_hint_box: TLS caching layer for SuperSlab hints - Integrated hash table into registry (init, insert, remove, lookup) - Modified hak_super_lookup() to use new hash table - Expected: 50-80 cycles → 10-20 cycles (not verified - SuperSlab disabled by default) Phase 9-2: EMPTY slab recycling implementation - Created slab_recycling_box: SLAB_TRY_RECYCLE() macro following Box pattern - Integrated into remote drain (superslab_slab.c) - Integrated into TLS SLL drain (tls_sll_drain_box.h) with touched slab tracking - Observable: Debug tracing via HAKMEM_SLAB_RECYCLE_TRACE - Updated Makefile: Added new box objects to 3 build targets Known Issues: - SuperSlab registry exhaustion still occurs (unregistration not working) - shared_pool_release_slab() may not be removing from g_super_reg[] - Needs investigation before Phase 9-2 can be completed Expected Impact (when fixed): - Stage 1 hit rate: 0% → 80% - shared_fail events: 4 → 0 - Kernel overhead: 55% → 15% - Throughput: 16.5M → 25-30M ops/s (+50-80%) 🤖 Generated with [Claude Code](https://claude.com/claude-code) Co-Authored-By: Claude <noreply@anthropic.com>
161 lines
5.7 KiB
C
161 lines
5.7 KiB
C
// hakmem_tiny_lazy_init.inc.h - Phase 22: Lazy Per-Class Initialization
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// Goal: Reduce cold-start page faults by initializing only used classes
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//
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// ChatGPT Analysis (2025-11-16):
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// - hak_tiny_init() page faults: 94.94% of all page faults
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// - Cause: Eager init of all 8 classes even if only C2/C3 used
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// - Solution: Lazy init per class on first use
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//
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// Expected Impact:
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// - Page faults: -90% (only touch C2/C3 for 256B workload)
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// - Cold start: +30-40% performance (16.2M → 22-25M ops/s)
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#ifndef HAKMEM_TINY_LAZY_INIT_INC_H
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#define HAKMEM_TINY_LAZY_INIT_INC_H
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#include <pthread.h>
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#include <stdint.h>
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#include <stdio.h> // For fprintf
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#include "superslab/superslab_types.h" // For SuperSlabACEState
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#include "box/ss_addr_map_box.h" // Phase 9-1: SuperSlab address map
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// ============================================================================
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// Phase 22-1: Per-Class Initialization State
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// ============================================================================
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// Track which classes are initialized (per-thread)
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__thread uint8_t g_class_initialized[TINY_NUM_CLASSES] = {0};
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// Global one-time init flag (for shared resources)
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static int g_tiny_global_initialized = 0;
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static pthread_mutex_t g_lazy_init_lock = PTHREAD_MUTEX_INITIALIZER;
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// ============================================================================
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// Phase 22-2: Lazy Init Implementation
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// ============================================================================
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// Initialize one class lazily (called on first use)
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static inline void lazy_init_class(int class_idx) {
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// Fast path: already initialized
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if (__builtin_expect(g_class_initialized[class_idx], 1)) {
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return;
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}
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// Slow path: need to initialize this class
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pthread_mutex_lock(&g_lazy_init_lock);
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// Double-check after acquiring lock
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if (g_class_initialized[class_idx]) {
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pthread_mutex_unlock(&g_lazy_init_lock);
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return;
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}
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// Extract from hak_tiny_init.inc lines 84-103: TLS List Init
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{
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TinyTLSList* tls = &g_tls_lists[class_idx];
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tls->head = NULL;
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tls->count = 0;
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uint32_t base_cap = (uint32_t)tiny_default_cap(class_idx);
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uint32_t class_max = (uint32_t)tiny_cap_max_for_class(class_idx);
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if (base_cap > class_max) base_cap = class_max;
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// Apply global cap limit if set
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extern int g_mag_cap_limit;
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extern int g_mag_cap_override[TINY_NUM_CLASSES];
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if ((uint32_t)g_mag_cap_limit < base_cap) base_cap = (uint32_t)g_mag_cap_limit;
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if (g_mag_cap_override[class_idx] > 0) {
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uint32_t ov = (uint32_t)g_mag_cap_override[class_idx];
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if (ov > class_max) ov = class_max;
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if (ov > (uint32_t)g_mag_cap_limit) ov = (uint32_t)g_mag_cap_limit;
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if (ov != 0u) base_cap = ov;
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}
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if (base_cap == 0u) base_cap = 32u;
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tls->cap = base_cap;
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tls->refill_low = tiny_tls_default_refill(base_cap);
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tls->spill_high = tiny_tls_default_spill(base_cap);
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tiny_tls_publish_targets(class_idx, base_cap);
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}
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// CRITICAL FIX: Clear TLS SLL (Phase 3d-B unified structure) to purge stale blocks
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// This prevents C7 1024B→2048B stride upgrade issues where old misaligned blocks
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// remain in TLS SLL from previous runs or initialization paths.
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// Note: g_tls_sll is defined in hakmem_tiny_tls_state_box.inc, already visible here
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g_tls_sll[class_idx].head = NULL;
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g_tls_sll[class_idx].count = 0;
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#if !HAKMEM_BUILD_RELEASE
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fprintf(stderr, "[LAZY_INIT] Cleared TLS SLL for class %d (purge stale blocks)\n", class_idx);
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#endif
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// Extract from hak_tiny_init.inc lines 623-625: Per-class lock
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pthread_mutex_init(&g_tiny_class_locks[class_idx].m, NULL);
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// Extract from hak_tiny_init.inc lines 628-637: ACE state
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{
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extern SuperSlabACEState g_ss_ace[TINY_NUM_CLASSES];
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g_ss_ace[class_idx].current_lg = 20; // Start with 1MB SuperSlabs
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g_ss_ace[class_idx].target_lg = 20;
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g_ss_ace[class_idx].hot_score = 0;
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g_ss_ace[class_idx].alloc_count = 0;
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g_ss_ace[class_idx].refill_count = 0;
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g_ss_ace[class_idx].spill_count = 0;
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g_ss_ace[class_idx].live_blocks = 0;
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g_ss_ace[class_idx].last_tick_ns = 0;
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}
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// Mark as initialized
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g_class_initialized[class_idx] = 1;
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pthread_mutex_unlock(&g_lazy_init_lock);
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#if !HAKMEM_BUILD_RELEASE
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fprintf(stderr, "[LAZY_INIT] Class %d initialized\n", class_idx);
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#endif
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}
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// Global initialization (called once, for non-class resources)
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static inline void lazy_init_global(void) {
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if (__builtin_expect(g_tiny_global_initialized, 1)) {
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return;
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}
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pthread_mutex_lock(&g_lazy_init_lock);
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if (g_tiny_global_initialized) {
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pthread_mutex_unlock(&g_lazy_init_lock);
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return;
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}
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// Initialize SuperSlab subsystem (only once)
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extern int g_use_superslab;
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if (g_use_superslab) {
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extern void hak_super_registry_init(void);
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extern void hak_ss_lru_init(void);
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extern void hak_ss_prewarm_init(void);
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hak_super_registry_init();
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hak_ss_lru_init();
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hak_ss_prewarm_init();
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// Phase 9-1: Initialize SuperSlab address map (hash table O(1) lookup)
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ss_map_init(&g_ss_addr_map);
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#if !HAKMEM_BUILD_RELEASE
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if (getenv("HAKMEM_SS_MAP_TRACE")) {
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fprintf(stderr, "[SS_MAP] Initialized hash table with %d buckets\n", SS_MAP_HASH_SIZE);
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}
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#endif
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}
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// Mark global resources as initialized
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g_tiny_global_initialized = 1;
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pthread_mutex_unlock(&g_lazy_init_lock);
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#if !HAKMEM_BUILD_RELEASE
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fprintf(stderr, "[LAZY_INIT] Global resources initialized\n");
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#endif
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}
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#endif // HAKMEM_TINY_LAZY_INIT_INC_H
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