mirror of
https://github.com/HarbourMasters/Shipwright.git
synced 2024-12-24 09:08:52 -05:00
824 lines
26 KiB
C
824 lines
26 KiB
C
#include "global.h"
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#include "vt.h"
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#include <string.h>
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#define FILL_ALLOCBLOCK (1 << 0)
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#define FILL_FREEBLOCK (1 << 1)
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#define CHECK_FREE_BLOCK (1 << 2)
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#define NODE_MAGIC (0x7373)
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#define BLOCK_UNINIT_MAGIC (0xAB)
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#define BLOCK_UNINIT_MAGIC_32 (0xABABABAB)
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#define BLOCK_ALLOC_MAGIC (0xCD)
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#define BLOCK_ALLOC_MAGIC_32 (0xCDCDCDCD)
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#define BLOCK_FREE_MAGIC (0xEF)
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#define BLOCK_FREE_MAGIC_32 (0xEFEFEFEF)
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OSMesg sArenaLockMsg;
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u32 __osMalloc_FreeBlockTest_Enable;
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u32 ArenaImpl_GetFillAllocBlock(Arena* arena) {
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return (arena->flag & FILL_ALLOCBLOCK) != 0;
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}
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u32 ArenaImpl_GetFillFreeBlock(Arena* arena) {
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return (arena->flag & FILL_FREEBLOCK) != 0;
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}
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u32 ArenaImpl_GetCheckFreeBlock(Arena* arena) {
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return (arena->flag & CHECK_FREE_BLOCK) != 0;
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}
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void ArenaImpl_SetFillAllocBlock(Arena* arena) {
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arena->flag |= FILL_ALLOCBLOCK;
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}
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void ArenaImpl_SetFillFreeBlock(Arena* arena) {
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arena->flag |= FILL_FREEBLOCK;
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}
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void ArenaImpl_SetCheckFreeBlock(Arena* arena) {
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arena->flag |= CHECK_FREE_BLOCK;
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}
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void ArenaImpl_UnsetFillAllocBlock(Arena* arena) {
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arena->flag &= ~FILL_ALLOCBLOCK;
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}
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void ArenaImpl_UnsetFillFreeBlock(Arena* arena) {
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arena->flag &= ~FILL_FREEBLOCK;
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}
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void ArenaImpl_UnsetCheckFreeBlock(Arena* arena) {
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arena->flag &= ~CHECK_FREE_BLOCK;
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}
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#if 0
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void ArenaImpl_SetDebugInfo(ArenaNode* node, const char* file, s32 line, Arena* arena) {
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node->filename = file;
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node->line = line;
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node->threadId = osGetThreadId(NULL);
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node->arena = arena;
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node->time = osGetTime();
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}
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#endif
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void ArenaImpl_LockInit(Arena* arena) {
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osCreateMesgQueue(&arena->lock, &sArenaLockMsg, 1);
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}
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void ArenaImpl_Lock(Arena* arena) {
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osSendMesgPtr(&arena->lock, NULL, OS_MESG_BLOCK);
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}
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void ArenaImpl_Unlock(Arena* arena) {
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osRecvMesg(&arena->lock, NULL, OS_MESG_BLOCK);
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}
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ArenaNode* ArenaImpl_GetNextBlock(ArenaNode* node) {
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ArenaNode* next = node->next;
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if (next != NULL && (next == NULL || (next->magic != NODE_MAGIC))) {
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osSyncPrintf(VT_COL(RED, WHITE) "緊急事態!メモリリーク発見! (block=%08x)\n" VT_RST, next);
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next = NULL;
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node->next = NULL;
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}
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return next;
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}
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ArenaNode* ArenaImpl_GetPrevBlock(ArenaNode* node) {
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ArenaNode* prev = node->prev;
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if (prev != NULL && (prev == NULL || (prev->magic != NODE_MAGIC))) {
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osSyncPrintf(VT_COL(RED, WHITE) "緊急事態!メモリリーク発見! (block=%08x)\n" VT_RST, prev);
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prev = NULL;
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node->prev = NULL;
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}
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return prev;
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}
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ArenaNode* ArenaImpl_GetLastBlock(Arena* arena) {
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ArenaNode* last = NULL;
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ArenaNode* iter;
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if (arena != NULL && arena->head != NULL && arena->head->magic == NODE_MAGIC) {
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iter = arena->head;
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while (iter != NULL) {
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last = iter;
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iter = ArenaImpl_GetNextBlock(iter);
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}
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}
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return last;
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}
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void __osMallocInit(Arena* arena, void* start, size_t size) {
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memset(arena,0, sizeof(Arena));
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ArenaImpl_LockInit(arena);
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__osMallocAddBlock(arena, start, size);
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arena->isInit = true;
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}
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void __osMallocAddBlock(Arena* arena, void* start, ptrdiff_t size) {
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s32 diff;
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ptrdiff_t size2;
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ArenaNode* firstNode;
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ArenaNode* lastNode;
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if (start != NULL) {
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firstNode = (ArenaNode*)ALIGN16((uintptr_t)start);
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diff = (uintptr_t)firstNode - (uintptr_t)start;
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size2 = (size - diff) & ~0xF;
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if (size2 > (ptrdiff_t)sizeof(ArenaNode)) {
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memset(firstNode, BLOCK_UNINIT_MAGIC, size2); // memset
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firstNode->next = NULL;
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firstNode->prev = NULL;
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firstNode->size = size2 - sizeof(ArenaNode);
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firstNode->isFree = true;
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firstNode->magic = NODE_MAGIC;
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ArenaImpl_Lock(arena);
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lastNode = ArenaImpl_GetLastBlock(arena);
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if (lastNode == NULL) {
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arena->head = firstNode;
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arena->start = start;
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} else {
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firstNode->prev = lastNode;
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lastNode->next = firstNode;
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}
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ArenaImpl_Unlock(arena);
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}
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}
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}
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void ArenaImpl_RemoveAllBlocks(Arena* arena) {
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ArenaNode* iter;
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ArenaNode* next;
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ArenaImpl_Lock(arena);
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iter = arena->head;
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while (iter != NULL) {
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next = ArenaImpl_GetNextBlock(iter);
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memset(iter, BLOCK_UNINIT_MAGIC, iter->size + sizeof(ArenaNode)); // memset
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iter = next;
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}
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ArenaImpl_Unlock(arena);
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}
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void __osMallocCleanup(Arena* arena) {
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ArenaImpl_RemoveAllBlocks(arena);
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memset(arena, 0, sizeof(*arena));
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}
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u8 __osMallocIsInitalized(Arena* arena) {
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return arena->isInit;
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}
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void __osMalloc_FreeBlockTest(Arena* arena, ArenaNode* node) {
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ArenaNode* node2 = node;
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u32* start;
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u32* end;
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u32* iter;
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if (__osMalloc_FreeBlockTest_Enable) {
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start = (u32*)((uintptr_t)node + sizeof(ArenaNode));
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end = (u32*)((uintptr_t)start + node2->size);
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iter = start;
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while (iter < end) {
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if (*iter != BLOCK_UNINIT_MAGIC_32 && *iter != BLOCK_FREE_MAGIC_32) {
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osSyncPrintf(
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VT_COL(RED, WHITE) "緊急事態!メモリリーク検出! (block=%08x s=%08x e=%08x p=%08x)\n" VT_RST, node,
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start, end, iter);
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__osDisplayArena(arena);
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return;
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}
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iter++;
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}
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}
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}
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void* __osMalloc_NoLockDebug(Arena* arena, size_t size, const char* file, s32 line) {
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ArenaNode* iter;
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u32 blockSize;
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ArenaNode* newNode;
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void* alloc = NULL;
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ArenaNode* next;
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iter = arena->head;
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size = ALIGN16(size);
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blockSize = ALIGN16(size) + sizeof(ArenaNode);
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while (iter != NULL) {
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if (iter->isFree && iter->size >= size) {
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if (arena->flag & CHECK_FREE_BLOCK) {
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__osMalloc_FreeBlockTest(arena, iter);
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}
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if (blockSize < iter->size) {
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newNode = (ArenaNode*)((uintptr_t)iter + blockSize);
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newNode->next = ArenaImpl_GetNextBlock(iter);
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newNode->prev = iter;
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newNode->size = iter->size - blockSize;
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newNode->isFree = true;
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newNode->magic = NODE_MAGIC;
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iter->next = newNode;
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iter->size = size;
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next = ArenaImpl_GetNextBlock(newNode);
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if (next) {
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next->prev = newNode;
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}
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}
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iter->isFree = false;
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//ArenaImpl_SetDebugInfo(iter, file, line, arena);
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alloc = (void*)((uintptr_t)iter + sizeof(ArenaNode));
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if (arena->flag & FILL_ALLOCBLOCK) {
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memset(alloc, BLOCK_ALLOC_MAGIC, size);
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}
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break;
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}
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iter = ArenaImpl_GetNextBlock(iter);
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}
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return alloc;
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}
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void* __osMallocDebug(Arena* arena, size_t size, const char* file, s32 line) {
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void* alloc;
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ArenaImpl_Lock(arena);
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alloc = __osMalloc_NoLockDebug(arena, size, file, line);
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ArenaImpl_Unlock(arena);
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return alloc;
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}
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void* __osMallocRDebug(Arena* arena, size_t size, const char* file, s32 line) {
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ArenaNode* iter;
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ArenaNode* newNode;
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u32 blockSize;
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ArenaNode* next;
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void* allocR = NULL;
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size = ALIGN16(size);
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ArenaImpl_Lock(arena);
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iter = ArenaImpl_GetLastBlock(arena);
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while (iter != NULL) {
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if (iter->isFree && iter->size >= size) {
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if (arena->flag & CHECK_FREE_BLOCK) {
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__osMalloc_FreeBlockTest(arena, iter);
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}
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blockSize = ALIGN16(size) + sizeof(ArenaNode);
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if (blockSize < iter->size) {
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newNode = (ArenaNode*)((uintptr_t)iter + (iter->size - size));
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newNode->next = ArenaImpl_GetNextBlock(iter);
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newNode->prev = iter;
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newNode->size = size;
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newNode->magic = NODE_MAGIC;
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iter->next = newNode;
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iter->size -= blockSize;
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next = ArenaImpl_GetNextBlock(newNode);
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if (next) {
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next->prev = newNode;
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}
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iter = newNode;
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}
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iter->isFree = false;
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//ArenaImpl_SetDebugInfo(iter, file, line, arena);
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allocR = (void*)((uintptr_t)iter + sizeof(ArenaNode));
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if (arena->flag & FILL_ALLOCBLOCK) {
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memset(allocR, BLOCK_ALLOC_MAGIC, size);
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}
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break;
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}
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iter = ArenaImpl_GetPrevBlock(iter);
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}
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ArenaImpl_Unlock(arena);
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return allocR;
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}
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void* __osMalloc_NoLock(Arena* arena, size_t size) {
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ArenaNode* iter;
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u32 blockSize;
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ArenaNode* newNode;
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void* alloc = NULL;
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ArenaNode* next;
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iter = arena->head;
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size = ALIGN16(size);
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blockSize = ALIGN16(size) + sizeof(ArenaNode);
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while (iter != NULL) {
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if (iter->isFree && iter->size >= size) {
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if (arena->flag & CHECK_FREE_BLOCK) {
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__osMalloc_FreeBlockTest(arena, iter);
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}
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if (blockSize < iter->size) {
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newNode = (ArenaNode*)((uintptr_t)iter + blockSize);
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newNode->next = ArenaImpl_GetNextBlock(iter);
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newNode->prev = iter;
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newNode->size = iter->size - blockSize;
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newNode->isFree = true;
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newNode->magic = NODE_MAGIC;
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iter->next = newNode;
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iter->size = size;
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next = ArenaImpl_GetNextBlock(newNode);
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if (next) {
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next->prev = newNode;
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}
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}
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iter->isFree = false;
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//ArenaImpl_SetDebugInfo(iter, NULL, 0, arena);
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alloc = (void*)((uintptr_t)iter + sizeof(ArenaNode));
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if (arena->flag & FILL_ALLOCBLOCK) {
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memset(alloc, BLOCK_ALLOC_MAGIC, size);
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}
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break;
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}
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iter = ArenaImpl_GetNextBlock(iter);
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}
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return alloc;
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}
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void* __osMalloc(Arena* arena, size_t size) {
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void* alloc;
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ArenaImpl_Lock(arena);
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alloc = __osMalloc_NoLock(arena, size);
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ArenaImpl_Unlock(arena);
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return alloc;
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}
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void* __osMallocR(Arena* arena, size_t size) {
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ArenaNode* iter;
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ArenaNode* newNode;
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u32 blockSize;
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ArenaNode* next;
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void* alloc = NULL;
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size = ALIGN16(size);
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ArenaImpl_Lock(arena);
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iter = ArenaImpl_GetLastBlock(arena);
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while (iter != NULL) {
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if (iter->isFree && iter->size >= size) {
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if (arena->flag & CHECK_FREE_BLOCK) {
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__osMalloc_FreeBlockTest(arena, iter);
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}
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blockSize = ALIGN16(size) + sizeof(ArenaNode);
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if (blockSize < iter->size) {
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newNode = (ArenaNode*)((uintptr_t)iter + (iter->size - size));
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newNode->next = ArenaImpl_GetNextBlock(iter);
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newNode->prev = iter;
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newNode->size = size;
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newNode->magic = NODE_MAGIC;
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iter->next = newNode;
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iter->size -= blockSize;
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next = ArenaImpl_GetNextBlock(newNode);
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if (next) {
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next->prev = newNode;
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}
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iter = newNode;
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}
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iter->isFree = false;
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//ArenaImpl_SetDebugInfo(iter, NULL, 0, arena);
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alloc = (void*)((uintptr_t)iter + sizeof(ArenaNode));
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if (arena->flag & FILL_ALLOCBLOCK) {
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memset(alloc, BLOCK_ALLOC_MAGIC, size);
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}
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break;
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}
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iter = ArenaImpl_GetPrevBlock(iter);
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}
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ArenaImpl_Unlock(arena);
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return alloc;
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}
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void __osFree_NoLock(Arena* arena, void* ptr) {
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ArenaNode* node;
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ArenaNode* next;
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ArenaNode* prev;
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ArenaNode* newNext;
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if (ptr == NULL) {
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return;
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}
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node = (ArenaNode*)((uintptr_t)ptr - sizeof(ArenaNode));
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if (node == NULL || node->magic != NODE_MAGIC) {
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// "__osFree: Unauthorized release (%08x)"
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osSyncPrintf(VT_COL(RED, WHITE) "__osFree:不正解放(%08x)\n" VT_RST, ptr);
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return;
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}
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if (node->isFree) {
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osSyncPrintf(VT_COL(RED, WHITE) "__osFree:二重解放(%08x)\n" VT_RST, ptr); // "__osFree: Double release (%08x)"
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return;
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}
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#if 0
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if (arena != node->arena && arena != NULL) {
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// "__osFree:Tried to release in a different way than when it was secured (%08x:%08x)"
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osSyncPrintf(VT_COL(RED, WHITE) "__osFree:確保時と違う方法で解放しようとした (%08x:%08x)\n" VT_RST, arena,
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node->arena);
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return;
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}
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#endif
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next = ArenaImpl_GetNextBlock(node);
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prev = ArenaImpl_GetPrevBlock(node);
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node->isFree = true;
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//ArenaImpl_SetDebugInfo(node, NULL, 0, arena);
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if (arena->flag & FILL_FREEBLOCK) {
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memset((uintptr_t)node + sizeof(ArenaNode), BLOCK_FREE_MAGIC, node->size);
|
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}
|
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newNext = next;
|
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if ((uintptr_t)next == (uintptr_t)node + sizeof(ArenaNode) + node->size && next->isFree) {
|
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newNext = ArenaImpl_GetNextBlock(next);
|
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if (newNext != NULL) {
|
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newNext->prev = node;
|
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}
|
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|
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node->size += next->size + sizeof(ArenaNode);
|
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if (arena->flag & FILL_FREEBLOCK) {
|
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memset(next, BLOCK_FREE_MAGIC, sizeof(ArenaNode));
|
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}
|
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node->next = newNext;
|
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next = newNext;
|
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}
|
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|
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if (prev != NULL && prev->isFree && (uintptr_t)node == (uintptr_t)prev + sizeof(ArenaNode) + prev->size) {
|
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if (next) {
|
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next->prev = prev;
|
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}
|
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prev->next = next;
|
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prev->size += node->size + sizeof(ArenaNode);
|
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if (arena->flag & FILL_FREEBLOCK) {
|
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memset(node, BLOCK_FREE_MAGIC, sizeof(ArenaNode));
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}
|
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}
|
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}
|
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void __osFree(Arena* arena, void* ptr) {
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ArenaImpl_Lock(arena);
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__osFree_NoLock(arena, ptr);
|
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ArenaImpl_Unlock(arena);
|
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}
|
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void __osFree_NoLockDebug(Arena* arena, void* ptr, const char* file, s32 line) {
|
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ArenaNode* node;
|
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ArenaNode* next;
|
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ArenaNode* prev;
|
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ArenaNode* newNext;
|
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|
||
if (ptr == NULL) {
|
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return;
|
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}
|
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|
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node = (ArenaNode*)((uintptr_t)ptr - sizeof(ArenaNode));
|
||
if (node == NULL || node->magic != NODE_MAGIC) {
|
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// "__osFree: Unauthorized release (%08x)"
|
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osSyncPrintf(VT_COL(RED, WHITE) "__osFree:不正解放(%08x) [%s:%d ]\n" VT_RST, ptr, file, line);
|
||
return;
|
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}
|
||
if (node->isFree) {
|
||
// "__osFree: Double release (%08x)"
|
||
osSyncPrintf(VT_COL(RED, WHITE) "__osFree:二重解放(%08x) [%s:%d ]\n" VT_RST, ptr, file, line);
|
||
return;
|
||
}
|
||
#if 0
|
||
if (arena != node->arena && arena != NULL) {
|
||
// "__osFree:Tried to release in a different way than when it was secured (%08x:%08x)"
|
||
osSyncPrintf(VT_COL(RED, WHITE) "__osFree:確保時と違う方法で解放しようとした (%08x:%08x)\n" VT_RST, arena,
|
||
node->arena);
|
||
return;
|
||
}
|
||
#endif
|
||
next = ArenaImpl_GetNextBlock(node);
|
||
prev = ArenaImpl_GetPrevBlock(node);
|
||
node->isFree = true;
|
||
//ArenaImpl_SetDebugInfo(node, file, line, arena);
|
||
|
||
if (arena->flag & FILL_FREEBLOCK) {
|
||
memset((uintptr_t)node + sizeof(ArenaNode), BLOCK_FREE_MAGIC, node->size);
|
||
}
|
||
|
||
newNext = node->next;
|
||
if ((uintptr_t)next == (uintptr_t)node + sizeof(ArenaNode) + node->size && next->isFree) {
|
||
newNext = ArenaImpl_GetNextBlock(next);
|
||
if (newNext != NULL) {
|
||
newNext->prev = node;
|
||
}
|
||
|
||
node->size += next->size + sizeof(ArenaNode);
|
||
if (arena->flag & FILL_FREEBLOCK) {
|
||
memset(next, BLOCK_FREE_MAGIC, sizeof(ArenaNode));
|
||
}
|
||
node->next = newNext;
|
||
next = newNext;
|
||
}
|
||
|
||
if (prev != NULL && prev->isFree && (uintptr_t)node == (uintptr_t)prev + sizeof(ArenaNode) + prev->size) {
|
||
if (next != NULL) {
|
||
next->prev = prev;
|
||
}
|
||
prev->next = next;
|
||
prev->size += node->size + sizeof(ArenaNode);
|
||
if (arena->flag & FILL_FREEBLOCK) {
|
||
memset(node, BLOCK_FREE_MAGIC, sizeof(ArenaNode));
|
||
}
|
||
}
|
||
}
|
||
|
||
void __osFreeDebug(Arena* arena, void* ptr, const char* file, s32 line) {
|
||
ArenaImpl_Lock(arena);
|
||
__osFree_NoLockDebug(arena, ptr, file, line);
|
||
ArenaImpl_Unlock(arena);
|
||
}
|
||
|
||
void* __osRealloc(Arena* arena, void* ptr, size_t newSize) {
|
||
void* newAlloc;
|
||
ArenaNode* node;
|
||
ArenaNode* next;
|
||
ArenaNode* newNext;
|
||
ArenaNode* overNext;
|
||
ArenaNode* newNext2;
|
||
ArenaNode* next2;
|
||
size_t sizeDiff;
|
||
ArenaNode* overNext2;
|
||
ArenaNode localCopy;
|
||
u32 blockSize;
|
||
s32 pad;
|
||
|
||
newSize = ALIGN16(newSize);
|
||
osSyncPrintf("__osRealloc(%08x, %d)\n", ptr, newSize);
|
||
ArenaImpl_Lock(arena);
|
||
|
||
if (ptr == NULL) {
|
||
ptr = __osMalloc_NoLock(arena, newSize);
|
||
} else if (newSize == 0) {
|
||
__osFree_NoLock(arena, ptr);
|
||
ptr = NULL;
|
||
} else {
|
||
node = (ArenaNode*)((uintptr_t)ptr - sizeof(ArenaNode));
|
||
if (newSize == node->size) {
|
||
// "Does nothing because the memory block size does not change"
|
||
osSyncPrintf("メモリブロックサイズが変わらないためなにもしません\n");
|
||
} else if (node->size < newSize) {
|
||
next = ArenaImpl_GetNextBlock(node);
|
||
sizeDiff = newSize - node->size;
|
||
if ((uintptr_t)next == ((uintptr_t)node + node->size + sizeof(ArenaNode)) && next->isFree && next->size >= sizeDiff) {
|
||
// "Merge because there is a free block after the current memory block"
|
||
osSyncPrintf("現メモリブロックの後ろにフリーブロックがあるので結合します\n");
|
||
next->size -= sizeDiff;
|
||
overNext = ArenaImpl_GetNextBlock(next);
|
||
newNext = (ArenaNode*)((uintptr_t)next + sizeDiff);
|
||
if (overNext != NULL) {
|
||
overNext->prev = newNext;
|
||
}
|
||
node->next = newNext;
|
||
node->size = newSize;
|
||
func_801068B0(newNext, next, sizeof(ArenaNode)); // memcpy
|
||
} else {
|
||
// "Allocate a new memory block and move the contents"
|
||
osSyncPrintf("新たにメモリブロックを確保して内容を移動します\n");
|
||
newAlloc = __osMalloc_NoLock(arena, newSize);
|
||
if (newAlloc != NULL) {
|
||
memcpy(newAlloc, ptr, node->size);
|
||
__osFree_NoLock(arena, ptr);
|
||
}
|
||
ptr = newAlloc;
|
||
}
|
||
} else if (newSize < node->size) {
|
||
next2 = ArenaImpl_GetNextBlock(node);
|
||
if (next2 != NULL && next2->isFree) {
|
||
blockSize = ALIGN16(newSize) + sizeof(ArenaNode);
|
||
// "Increased free block behind current memory block"
|
||
osSyncPrintf("現メモリブロックの後ろのフリーブロックを大きくしました\n");
|
||
newNext2 = (ArenaNode*)((uintptr_t)node + blockSize);
|
||
localCopy = *next2;
|
||
*newNext2 = localCopy;
|
||
newNext2->size += node->size - newSize;
|
||
node->next = newNext2;
|
||
node->size = newSize;
|
||
overNext2 = ArenaImpl_GetNextBlock(newNext2);
|
||
if (overNext2 != NULL) {
|
||
overNext2->prev = newNext2;
|
||
}
|
||
} else if (newSize + sizeof(ArenaNode) < node->size) {
|
||
blockSize = ALIGN16(newSize) + sizeof(ArenaNode);
|
||
// "Generated because there is no free block after the current memory block"
|
||
osSyncPrintf("現メモリブロックの後ろにフリーブロックがないので生成します\n");
|
||
newNext2 = (ArenaNode*)((uintptr_t)node + blockSize);
|
||
newNext2->next = ArenaImpl_GetNextBlock(node);
|
||
newNext2->prev = node;
|
||
newNext2->size = node->size - blockSize;
|
||
newNext2->isFree = true;
|
||
newNext2->magic = NODE_MAGIC;
|
||
node->next = newNext2;
|
||
node->size = newSize;
|
||
overNext2 = ArenaImpl_GetNextBlock(newNext2);
|
||
if (overNext2 != NULL) {
|
||
overNext2->prev = newNext2;
|
||
}
|
||
} else {
|
||
// "There is no room to generate free blocks"
|
||
osSyncPrintf("フリーブロック生成するだけの空きがありません\n");
|
||
ptr = NULL;
|
||
}
|
||
}
|
||
}
|
||
ArenaImpl_Unlock(arena);
|
||
|
||
return ptr;
|
||
}
|
||
|
||
void* __osReallocDebug(Arena* arena, void* ptr, size_t newSize, const char* file, s32 line) {
|
||
return __osRealloc(arena, ptr, newSize);
|
||
}
|
||
|
||
void ArenaImpl_GetSizes(Arena* arena, u32* outMaxFree, u32* outFree, u32* outAlloc) {
|
||
ArenaNode* iter;
|
||
|
||
ArenaImpl_Lock(arena);
|
||
|
||
*outMaxFree = 0;
|
||
*outFree = 0;
|
||
*outAlloc = 0;
|
||
|
||
iter = arena->head;
|
||
while (iter != NULL) {
|
||
if (iter->isFree) {
|
||
*outFree += iter->size;
|
||
if (*outMaxFree < iter->size) {
|
||
*outMaxFree = iter->size;
|
||
}
|
||
} else {
|
||
*outAlloc += iter->size;
|
||
}
|
||
|
||
iter = ArenaImpl_GetNextBlock(iter);
|
||
}
|
||
|
||
ArenaImpl_Unlock(arena);
|
||
}
|
||
|
||
void __osDisplayArena(Arena* arena) {
|
||
size_t freeSize;
|
||
size_t allocatedSize;
|
||
size_t maxFree;
|
||
ArenaNode* iter;
|
||
ArenaNode* next;
|
||
|
||
if (!__osMallocIsInitalized(arena)) {
|
||
osSyncPrintf("アリーナは初期化されていません\n"); // "Arena is not initalized"
|
||
return;
|
||
}
|
||
|
||
ArenaImpl_Lock(arena);
|
||
|
||
maxFree = 0;
|
||
freeSize = 0;
|
||
allocatedSize = 0;
|
||
|
||
osSyncPrintf("アリーナの内容 (0x%08x)\n", arena); // "Arena contents (0x%08x)"
|
||
// "Memory node range status size [time s ms us ns: TID: src: line]"
|
||
osSyncPrintf("メモリブロック範囲 status サイズ [時刻 s ms us ns: TID:src:行]\n");
|
||
|
||
iter = arena->head;
|
||
while (iter != NULL) {
|
||
if (iter != NULL && iter->magic == NODE_MAGIC) {
|
||
next = iter->next;
|
||
osSyncPrintf("%08x-%08x%c %s %08x", iter, ((uintptr_t)iter + sizeof(ArenaNode) + iter->size),
|
||
(next == NULL) ? '$' : (iter != next->prev ? '!' : ' '),
|
||
iter->isFree ? "空き" : "確保", //? "Free" : "Secure"
|
||
iter->size);
|
||
#if 0
|
||
if (!iter->isFree) {
|
||
osSyncPrintf(" [%016llu:%2d:%s:%d]", OS_CYCLES_TO_NSEC(iter->time), iter->threadId,
|
||
iter->filename != NULL ? iter->filename : "**NULL**", iter->line);
|
||
}
|
||
#endif
|
||
osSyncPrintf("\n");
|
||
|
||
if (iter->isFree) {
|
||
freeSize += iter->size;
|
||
if (maxFree < iter->size) {
|
||
maxFree = iter->size;
|
||
}
|
||
} else {
|
||
allocatedSize += iter->size;
|
||
}
|
||
} else {
|
||
osSyncPrintf("%08x Block Invalid\n", iter);
|
||
next = NULL;
|
||
}
|
||
iter = next;
|
||
}
|
||
|
||
// "Total reserved node size 0x%08x bytes"
|
||
osSyncPrintf("確保ブロックサイズの合計 0x%08x バイト\n", allocatedSize);
|
||
// "Total free node size 0x%08x bytes"
|
||
osSyncPrintf("空きブロックサイズの合計 0x%08x バイト\n", freeSize);
|
||
// "Maximum free node size 0x%08x bytes"
|
||
osSyncPrintf("最大空きブロックサイズ 0x%08x バイト\n", maxFree);
|
||
|
||
ArenaImpl_Unlock(arena);
|
||
}
|
||
|
||
void ArenaImpl_FaultClient(Arena* arena) {
|
||
size_t freeSize;
|
||
size_t allocatedSize;
|
||
size_t maxFree;
|
||
ArenaNode* iter;
|
||
ArenaNode* next;
|
||
|
||
FaultDrawer_Printf("ARENA INFO (0x%08x)\n", arena);
|
||
if (!__osMallocIsInitalized(arena)) {
|
||
FaultDrawer_Printf("Arena is uninitalized\n", arena);
|
||
return;
|
||
}
|
||
|
||
maxFree = 0;
|
||
freeSize = 0;
|
||
allocatedSize = 0;
|
||
|
||
FaultDrawer_Printf("Memory Block Region status size\n");
|
||
|
||
iter = arena->head;
|
||
while (iter != NULL) {
|
||
if (iter != NULL && iter->magic == NODE_MAGIC) {
|
||
next = iter->next;
|
||
FaultDrawer_Printf("%08x-%08x%c %s %08x", iter, ((uintptr_t)iter + sizeof(ArenaNode) + iter->size),
|
||
(!next) ? '$' : (iter != next->prev ? '!' : ' '), iter->isFree ? "F" : "A", iter->size);
|
||
|
||
FaultDrawer_Printf("\n");
|
||
|
||
if (iter->isFree) {
|
||
freeSize += iter->size;
|
||
if (maxFree < iter->size) {
|
||
maxFree = iter->size;
|
||
}
|
||
} else {
|
||
allocatedSize += iter->size;
|
||
}
|
||
} else {
|
||
FaultDrawer_SetFontColor(0xF801);
|
||
FaultDrawer_Printf("%08x Block Invalid\n", iter);
|
||
next = NULL;
|
||
}
|
||
iter = next;
|
||
}
|
||
|
||
FaultDrawer_SetFontColor(0x7F1);
|
||
FaultDrawer_Printf("Total Alloc Block Size %08x\n", allocatedSize);
|
||
FaultDrawer_Printf("Total Free Block Size %08x\n", freeSize);
|
||
FaultDrawer_Printf("Largest Free Block Size %08x\n", maxFree);
|
||
}
|
||
|
||
u32 __osCheckArena(Arena* arena) {
|
||
ArenaNode* iter;
|
||
u32 error = 0;
|
||
|
||
ArenaImpl_Lock(arena);
|
||
// "Checking the contents of the arena. . . (%08x)"
|
||
osSyncPrintf("アリーナの内容をチェックしています... (%08x)\n", arena);
|
||
iter = arena->head;
|
||
while (iter != NULL) {
|
||
if (iter && iter->magic == NODE_MAGIC) {
|
||
// "Oops!! (%08x %08x)"
|
||
osSyncPrintf(VT_COL(RED, WHITE) "おおっと!! (%08x %08x)\n" VT_RST, iter, iter->magic);
|
||
error = 1;
|
||
break;
|
||
}
|
||
iter = ArenaImpl_GetNextBlock(iter);
|
||
}
|
||
if (error == 0) {
|
||
osSyncPrintf("アリーナはまだ、いけそうです\n"); // "The arena is still going well"
|
||
}
|
||
ArenaImpl_Unlock(arena);
|
||
|
||
return error;
|
||
}
|
||
|
||
u8 func_800FF334(Arena* arena) {
|
||
return arena->unk_20;
|
||
}
|