198 lines
6.4 KiB
C
198 lines
6.4 KiB
C
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// smallobject_core_v6.c - SmallObject Core v6 実装(Phase v6-3)
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#include <stdlib.h>
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#include <string.h>
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#include "box/smallobject_core_v6_box.h"
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#include "box/smallobject_cold_iface_v6.h"
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#include "box/smallsegment_v6_box.h"
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#include "box/tiny_route_env_box.h"
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#ifndef likely
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#define likely(x) __builtin_expect(!!(x), 1)
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#define unlikely(x) __builtin_expect(!!(x), 0)
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#endif
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// TLS context
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static __thread struct SmallHeapCtxV6 g_small_heap_ctx_v6;
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static __thread int g_small_heap_ctx_v6_init = 0;
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// TLS policy snapshot
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static __thread struct SmallPolicySnapshotV6 g_snap_v6;
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static __thread int g_snap_v6_init = 0;
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/// Get TLS heap context for v6 (lazy initialization)
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/// @return: TLS context pointer (never NULL)
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SmallHeapCtxV6* small_heap_ctx_v6(void) {
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if (!g_small_heap_ctx_v6_init) {
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memset(&g_small_heap_ctx_v6, 0, sizeof(g_small_heap_ctx_v6));
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// Initialize TLS segment ownership range
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SmallSegmentV6* seg = small_segment_v6_acquire_for_thread();
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if (seg && small_segment_v6_valid(seg)) {
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g_small_heap_ctx_v6.tls_seg_base = seg->base;
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g_small_heap_ctx_v6.tls_seg_end = seg->base + SMALL_SEGMENT_V6_SIZE;
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}
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g_small_heap_ctx_v6_init = 1;
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}
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return &g_small_heap_ctx_v6;
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}
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/// Get TLS policy snapshot for v6 (lazy initialization)
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/// @return: Policy snapshot pointer (never NULL)
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const SmallPolicySnapshotV6* tiny_policy_snapshot_v6(void) {
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if (!g_snap_v6_init) {
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memset(&g_snap_v6, 0, sizeof(g_snap_v6));
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// Initialize route_kind from tiny_route API (this ensures init is done)
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for (int i = 0; i < 8; i++) {
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g_snap_v6.route_kind[i] = (uint8_t)tiny_route_for_class((uint8_t)i);
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}
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g_snap_v6_init = 1;
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}
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return &g_snap_v6;
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}
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// Forward declarations for pool v1 fallback
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extern void* hak_pool_try_alloc(size_t size, uintptr_t site_id);
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extern void hak_pool_free(void* ptr, size_t size, uintptr_t site_id);
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// ============================================================================
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// Allocation Implementation
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// ============================================================================
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/// Allocate block from C6 v6 TLS freelist or refill
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/// @param size: requested size (unused, class_idx determines size)
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/// @param class_idx: size class index (must be C6 for v6 route)
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/// @param ctx: TLS context
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/// @param snap: policy snapshot
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/// @return: USER pointer (BASE+1) or NULL on fallback
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void* small_alloc_fast_v6(size_t size,
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uint32_t class_idx,
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SmallHeapCtxV6* ctx,
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const SmallPolicySnapshotV6* snap) {
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(void)size;
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// Bounds check
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if (unlikely(class_idx >= 8)) {
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return hak_pool_try_alloc(size, 0);
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}
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uint8_t route = snap->route_kind[class_idx];
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// Check if this is CORE_V6 route and C6 class
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if (route != TINY_ROUTE_SMALL_HEAP_V6 || class_idx != SMALL_V6_C6_CLASS_IDX) {
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return hak_pool_try_alloc(size, 0);
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}
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// Fast path: TLS freelist hit
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if (likely(ctx->tls_count_c6 > 0)) {
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void* blk = ctx->tls_freelist_c6[--ctx->tls_count_c6];
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// v6-3: Header already written during refill, just return USER pointer
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return SMALL_V6_USER_FROM_BASE(blk);
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}
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// Slow path: refill TLS with multiple blocks (batching)
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SmallPageMetaV6* page = small_cold_v6_refill_page(class_idx);
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if (!page || !page->free_list) {
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return hak_pool_try_alloc(size, 0); // Safety fallback
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}
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// v6-3: Batch refill - fill TLS with as many blocks as possible
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// AND write headers in batch (not per-alloc)
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uint8_t header_byte = SMALL_V6_HEADER_FROM_CLASS(class_idx);
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int max_fill = SMALL_V6_TLS_CAP - ctx->tls_count_c6; // Currently 0, so max_fill = 32
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int filled = 0;
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// Fill TLS (leave room for 1 to return)
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while (page->free_list && filled < max_fill - 1) {
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void* blk = page->free_list;
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page->free_list = *(void**)blk;
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// v6-3: Write header NOW (after pop, before storing in TLS)
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((uint8_t*)blk)[0] = header_byte;
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ctx->tls_freelist_c6[ctx->tls_count_c6++] = blk; // Store BASE
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filled++;
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}
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page->used += filled;
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// Pop one more to return to caller
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if (page->free_list) {
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void* blk = page->free_list;
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page->free_list = *(void**)blk;
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page->used++;
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// v6-3: Write header and return USER pointer
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((uint8_t*)blk)[0] = header_byte;
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return SMALL_V6_USER_FROM_BASE(blk);
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}
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// If we filled TLS but no more blocks, pop from TLS
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if (ctx->tls_count_c6 > 0) {
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void* blk = ctx->tls_freelist_c6[--ctx->tls_count_c6];
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// Header already written in the loop above
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return SMALL_V6_USER_FROM_BASE(blk);
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}
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// Should not reach here
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return hak_pool_try_alloc(size, 0);
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}
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// ============================================================================
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// Free Implementation
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// ============================================================================
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/// Free block to C6 v6 TLS freelist or page freelist
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/// @param ptr: USER pointer to free
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/// @param class_idx: size class index
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/// @param ctx: TLS context
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/// @param snap: policy snapshot
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void small_free_fast_v6(void* ptr,
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uint32_t class_idx,
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SmallHeapCtxV6* ctx,
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const SmallPolicySnapshotV6* snap) {
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// Bounds check
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if (unlikely(class_idx >= 8)) {
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hak_pool_free(ptr, 0, 0);
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return;
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}
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uint8_t route = snap->route_kind[class_idx];
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// Check if this is CORE_V6 route and C6 class
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if (route != TINY_ROUTE_SMALL_HEAP_V6 || class_idx != SMALL_V6_C6_CLASS_IDX) {
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hak_pool_free(ptr, 0, 0);
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return;
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}
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// Convert USER pointer to BASE pointer
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void* base = SMALL_V6_BASE_FROM_USER(ptr);
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// Fast path: TLS segment ownership + TLS push
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if (likely(small_tls_owns_ptr_v6(ctx, ptr))) {
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if (ctx->tls_count_c6 < SMALL_V6_TLS_CAP) {
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ctx->tls_freelist_c6[ctx->tls_count_c6++] = base; // Store BASE
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return;
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}
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}
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// Slow path: page_meta lookup and push to page freelist
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SmallPageMetaV6* page = small_page_meta_v6_of(ptr);
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if (!page) {
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hak_pool_free(ptr, 0, 0);
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return;
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}
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// Push to page freelist (using BASE pointer)
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*(void**)base = page->free_list;
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page->free_list = base;
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if (page->used > 0) page->used--;
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// Retire empty page
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if (page->used == 0) {
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small_cold_v6_retire_page(page);
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}
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}
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