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Architecture
Core
Crash
Driver
Interrupts
Memory
HeapAllocators
Xalloc.cpp
Xalloc.hpp
Memory.cpp
MemoryManager.cpp
PageMapIndexer.cpp
PhysicalMemoryManager.cpp
StackGuard.cpp
VirtualMemoryManager.cpp
Video
CPU.cpp
Debugger.cpp
Disk.cpp
Lock.cpp
PeripheralComponentInterconnect.cpp
Power.cpp
README.md
Random.cpp
StackGuard.cpp
Symbols.cpp
SystemManagementBIOS.cpp
Time.cpp
Timer.cpp
UndefinedBehaviorSanitization.c
UniversalAsynchronousReceiverTransmitter.cpp
crashhandler.hpp
smbios.hpp
ubsan.h
Execute
FileSystem
Files
GUI
Library
Network
Profiling
Recovery
SystemCalls
Tasking
Tests
include
.gitignore
DAPI.hpp
Doxyfile
Fex.hpp
KConfig.cpp
KThread.cpp
Kernel.cpp
LICENSE
Makefile
README.md
dump.sh
kernel.h
syscalls.h
181 lines
5.8 KiB
C++
181 lines
5.8 KiB
C++
#pragma once
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#include <memory.hpp>
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#include <debug.h>
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// Functions defines
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// Page allocation functions
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#define Xalloc_REQUEST_PAGE() KernelAllocator.RequestPage()
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#define Xalloc_REQUEST_PAGES(Pages) KernelAllocator.RequestPages(Pages)
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#define Xalloc_FREE_PAGE(Address) KernelAllocator.FreePage(Address)
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#define Xalloc_FREE_PAGES(Address, Pages) KernelAllocator.FreePages(Address, Pages)
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#define Xalloc_MAP_MEMORY(VirtualAddress, PhysicalAddress, Flags) Memory::Virtual(KernelPageTable).Map(VirtualAddress, PhysicalAddress, Flags)
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#define Xalloc_UNMAP_MEMORY(VirtualAddress) Memory::Virtual(KernelPageTable).Unmap(VirtualAddress)
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#define Xalloc_MAP_MEMORY_READ_WRITE Memory::PTFlag::RW
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#define Xalloc_MAP_MEMORY_USER Memory::PTFlag::US
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#define Xalloc_PAGE_SIZE PAGE_SIZE
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#define Xalloc_trace(m, ...) trace(m, ##__VA_ARGS__)
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#define Xalloc_warn(m, ...) warn(m, ##__VA_ARGS__)
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#define Xalloc_err(m, ...) error(m, ##__VA_ARGS__)
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#define XALLOC_CONCAT(x, y) x##y
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typedef long unsigned Xuint64_t;
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namespace Xalloc
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{
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class AllocatorV1
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{
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private:
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struct HeapSegment
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{
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Xuint64_t Length;
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HeapSegment *Next;
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HeapSegment *Last;
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bool IsFree;
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HeapSegment *Split(Xuint64_t SplitLength, HeapSegment *LastSegment)
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{
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if (SplitLength < 0x10)
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return nullptr;
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int64_t SplitSegmentLength = Length - SplitLength - (sizeof(HeapSegment));
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if (SplitSegmentLength < 0x10)
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return nullptr;
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HeapSegment *NewSplitHdr = (HeapSegment *)((Xuint64_t)this + SplitLength + sizeof(HeapSegment));
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Next->Last = NewSplitHdr;
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NewSplitHdr->Next = Next;
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Next = NewSplitHdr;
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NewSplitHdr->Last = this;
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NewSplitHdr->Length = SplitSegmentLength;
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NewSplitHdr->IsFree = IsFree;
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Length = SplitLength;
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if (LastSegment == this)
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LastSegment = NewSplitHdr;
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return NewSplitHdr;
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}
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void CombineForward(HeapSegment *LastSegment)
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{
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if (Next == nullptr)
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return;
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if (Next->IsFree == false)
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return;
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if (Next == LastSegment)
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LastSegment = this;
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if (Next->Next != nullptr)
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Next->Next->Last = this;
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Length = Length + Next->Length + sizeof(HeapSegment);
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Next = Next->Next;
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}
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void CombineBackward(HeapSegment *LastSegment)
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{
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if (Last != nullptr && Last->IsFree)
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Last->CombineForward(LastSegment);
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}
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} __attribute__((aligned(16)));
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void *HeapStart = nullptr;
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void *HeapEnd = nullptr;
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HeapSegment *LastSegment = nullptr;
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bool UserMapping = false;
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bool SMAPUsed = false;
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void ExpandHeap(Xuint64_t Length);
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// TODO: Change memcpy with an optimized version
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static inline void *Xmemcpy(void *__restrict__ Destination, const void *__restrict__ Source, Xuint64_t Length)
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{
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unsigned char *dst = (unsigned char *)Destination;
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const unsigned char *src = (const unsigned char *)Source;
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for (Xuint64_t i = 0; i < Length; i++)
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dst[i] = src[i];
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return Destination;
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}
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// TODO: Change memset with an optimized version
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static inline void *Xmemset(void *__restrict__ Destination, int Data, Xuint64_t Length)
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{
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unsigned char *Buffer = (unsigned char *)Destination;
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for (Xuint64_t i = 0; i < Length; i++)
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Buffer[i] = (unsigned char)Data;
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return Destination;
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}
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public:
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inline void Xstac()
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{
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if (this->SMAPUsed)
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{
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#if defined(__amd64__) || defined(__i386__)
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asm volatile("stac" ::
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: "cc");
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#endif
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}
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}
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inline void Xclac()
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{
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if (this->SMAPUsed)
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{
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#if defined(__amd64__) || defined(__i386__)
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asm volatile("clac" ::
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: "cc");
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#endif
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}
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}
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/**
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* @brief Construct a new Allocator V1 object
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*
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* @param Address Virtual address to allocate.
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* @param UserMode Map the new pages with USER flag?
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* @param SMAPEnabled Does the kernel has Supervisor Mode Access Prevention enabled?
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*/
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AllocatorV1(void *Address, bool UserMode, bool SMAPEnabled);
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/**
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* @brief Destroy the Allocator V 1 object
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*
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*/
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~AllocatorV1();
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/**
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* @brief Allocate a new memory block
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*
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* @param Size Size of the block to allocate.
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* @return void* Pointer to the allocated block.
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*/
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void *Malloc(Xuint64_t Size);
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/**
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* @brief Free a previously allocated block
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*
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* @param Address Address of the block to free.
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*/
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void Free(void *Address);
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/**
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* @brief Allocate a new memory block
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*
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* @param NumberOfBlocks Number of blocks to allocate.
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* @param Size Size of the block to allocate.
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* @return void* Pointer to the allocated block.
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*/
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void *Calloc(Xuint64_t NumberOfBlocks, Xuint64_t Size);
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/**
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* @brief Reallocate a previously allocated block
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*
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* @param Address Address of the block to reallocate.
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* @param Size New size of the block.
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* @return void* Pointer to the reallocated block.
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*/
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void *Realloc(void *Address, Xuint64_t Size);
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};
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}
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