#include "JSystem/JSystem.h" // IWYU pragma: keep #include "JSystem/JKernel/JKRSolidHeap.h" #include "JSystem/JUtility/JUTAssert.h" #include "JSystem/JUtility/JUTConsole.h" #include "global.h" #include JKRSolidHeap* JKRSolidHeap::create(u32 size, JKRHeap* heap, bool useErrorHandler) { if (!heap) { heap = getRootHeap(); } if (size == -1) { size = heap->getMaxAllocatableSize(0x10); } u32 alignedSize = ALIGN_PREV(size, 0x10); u32 solidHeapSize = ALIGN_NEXT(sizeof(JKRSolidHeap), 0x10); if (alignedSize < solidHeapSize) return NULL; JKRSolidHeap* solidHeap = (JKRSolidHeap*)JKRAllocFromHeap(heap, alignedSize, 0x10); void* dataPtr = (u8*)solidHeap + solidHeapSize; if (!solidHeap) return NULL; solidHeap = new (solidHeap) JKRSolidHeap(dataPtr, alignedSize - solidHeapSize, heap, useErrorHandler); return solidHeap; } void JKRSolidHeap::do_destroy(void) { JKRHeap* parent = getParent(); if (parent) { this->~JKRSolidHeap(); JKRFreeToHeap(parent, this); } } JKRSolidHeap::JKRSolidHeap(void* start, u32 size, JKRHeap* parent, bool useErrorHandler) : JKRHeap(start, size, parent, useErrorHandler) { mFreeSize = mSize; mSolidHead = (u8*)mStart; mSolidTail = (u8*)mEnd; field_0x78 = NULL; } JKRSolidHeap::~JKRSolidHeap(void) { dispose(); } s32 JKRSolidHeap::adjustSize(void) { JKRHeap* parent = getParent(); if (parent) { lock(); u32 thisSize = (uintptr_t)mStart - (uintptr_t)this; u32 newSize = ALIGN_NEXT(mSolidHead - mStart, 0x20); if (parent->resize(this, thisSize + newSize) != -1) { mFreeSize = 0; mSize = newSize; mEnd = mStart + mSize; mSolidHead = mEnd; mSolidTail = mEnd; } unlock(); return thisSize + newSize; } return -1; } void* JKRSolidHeap::do_alloc(u32 size, int alignment) { #if DEBUG // TODO(Julgodis): JUTAssertion::setConfirmMessage /* if (alignment != 0) { int u = abs(alignment); JUT_ASSERT(219, u < 0x80); JUT_ASSERT(220, JGadget::binary::isPower2(u)); } */ #endif lock(); if (size < 4) { size = 4; } void* ptr; if (alignment >= 0) { ptr = allocFromHead(size, alignment < 4 ? 4 : alignment); } else { if (-alignment < 4) { alignment = 4; } else { alignment = -alignment; } ptr = allocFromTail(size, alignment); } unlock(); return ptr; } void* JKRSolidHeap::allocFromHead(u32 size, int alignment) { size = ALIGN_NEXT(size, 0x4); void* ptr = NULL; u32 alignedStart = (alignment - 1 + (uintptr_t)mSolidHead) & ~(alignment - 1); u32 offset = alignedStart - (uintptr_t)mSolidHead; u32 totalSize = size + offset; if (totalSize <= mFreeSize) { ptr = (void*)alignedStart; mSolidHead += totalSize; mFreeSize -= totalSize; } else { JUTWarningConsole_f("allocFromHead: cannot alloc memory (0x%x byte).\n", totalSize); if (getErrorFlag() == true) { callErrorHandler(this, size, alignment); } } return ptr; } void* JKRSolidHeap::allocFromTail(u32 size, int alignment) { size = ALIGN_NEXT(size, 4); void* ptr = NULL; u32 alignedStart = ALIGN_PREV((uintptr_t)mSolidTail - size, alignment); u32 totalSize = (uintptr_t)mSolidTail - (uintptr_t)alignedStart; if (totalSize <= mFreeSize) { ptr = (void*)alignedStart; mSolidTail -= totalSize; mFreeSize -= totalSize; } else { JUTWarningConsole_f("allocFromTail: cannot alloc memory (0x%x byte).\n", totalSize); if (getErrorFlag() == true) { callErrorHandler(this, size, alignment); } } return ptr; } void JKRSolidHeap::do_free(void* ptr) { JUTWarningConsole_f("free: cannot free memory block (%08x)\n", ptr); } void JKRSolidHeap::do_freeAll(void) { lock(); this->JKRHeap::callAllDisposer(); mFreeSize = mSize; mSolidHead = (u8*)mStart; mSolidTail = (u8*)mEnd; field_0x78 = NULL; unlock(); } void JKRSolidHeap::do_freeTail(void) { lock(); if (mSolidTail != mEnd) { dispose(mSolidTail, mEnd); } this->mFreeSize = ((uintptr_t)mEnd - (uintptr_t)mSolidTail + mFreeSize); this->mSolidTail = mEnd; JKRSolidHeap::Unknown* unknown = field_0x78; while (unknown) { unknown->field_0xc = mEnd; unknown = unknown->mNext; } unlock(); } void JKRSolidHeap::do_fillFreeArea() { #if DEBUG // fillMemory(mSolidHead, mEnd - mSolidHead, (uint)DAT_8074a8ba); #endif } s32 JKRSolidHeap::do_resize(void* ptr, u32 newSize) { JUTWarningConsole_f("resize: cannot resize memory block (%08x: %d)\n", ptr, newSize); return -1; } s32 JKRSolidHeap::do_getSize(void* ptr) { JUTWarningConsole_f("getSize: cannot get memory block size (%08x)\n", ptr); return -1; } bool JKRSolidHeap::check(void) { lock(); bool result = true; u32 calculatedSize = ((uintptr_t)mSolidHead - (uintptr_t)mStart) + mFreeSize + ((uintptr_t)mEnd - (uintptr_t)mSolidTail); u32 availableSize = mSize; if (calculatedSize != availableSize) { result = false; JUTWarningConsole_f("check: bad total memory block size (%08X, %08X)\n", availableSize, calculatedSize); } unlock(); return result; } bool JKRSolidHeap::dump(void) { bool result = check(); lock(); u32 headSize = ((uintptr_t)mSolidHead - (uintptr_t)mStart); u32 tailSize = ((uintptr_t)mEnd - (uintptr_t)mSolidTail); s32 htSize = headSize + tailSize; JUTReportConsole_f("head %08x: %08x\n", mStart, headSize); JUTReportConsole_f("tail %08x: %08x\n", mSolidTail, ((uintptr_t)mEnd - (uintptr_t)mSolidTail)); u32 totalSize = mSize; float percentage = (float)htSize / (float)totalSize * 100.0f; JUTReportConsole_f("%d / %d bytes (%6.2f%%) used\n", htSize, totalSize, percentage); unlock(); return result; } void JKRSolidHeap::state_register(JKRHeap::TState* p, u32 id) const { JUT_ASSERT(604, p != NULL); JUT_ASSERT(605, p->getHeap() == this); getState_(p); setState_u32ID_(p, id); setState_uUsedSize_(p, getUsedSize((JKRSolidHeap*)this)); u32 r29 = (uintptr_t)mSolidHead; r29 += (uintptr_t)mSolidTail * 3; setState_u32CheckCode_(p, r29); } bool JKRSolidHeap::state_compare(JKRHeap::TState const& r1, JKRHeap::TState const& r2) const { JUT_ASSERT(632, r1.getHeap() == r2.getHeap()); bool result = true; if (r1.getCheckCode() != r2.getCheckCode()) { result = false; } if (r1.getUsedSize() != r2.getUsedSize()) { result = false; } return result; } u32 JKRSolidHeap::getHeapType(void) { return 'SLID'; } s32 JKRSolidHeap::do_getFreeSize(void) { return mFreeSize; } void* JKRSolidHeap::do_getMaxFreeBlock(void) { return mSolidHead; } s32 JKRSolidHeap::do_getTotalFreeSize(void) { return getFreeSize(); }