Kernel: 64 bit MMU now properly identity maps kernel
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4e859bedbc
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0cb53efa01
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@ -44,30 +44,12 @@ namespace Kernel
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void MMU::initialize_kernel()
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{
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// FIXME: We should just identity map until g_kernel_end
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ASSERT((uintptr_t)g_kernel_end <= 6 * (1 << 20));
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// Identity map from 0 -> 6 MiB
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m_highest_paging_struct = allocate_page_aligned_page();
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uint64_t* pdpt = allocate_page_aligned_page();
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m_highest_paging_struct[0] = (uint64_t)pdpt | Flags::ReadWrite | Flags::Present;
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memset(m_highest_paging_struct, 0, PAGE_SIZE);
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uint64_t* pd = allocate_page_aligned_page();
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pdpt[0] = (uint64_t)pd | Flags::ReadWrite | Flags::Present;
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for (uint32_t i = 0; i < 3; i++)
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{
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uint64_t* pt = allocate_page_aligned_page();
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for (uint64_t j = 0; j < 512; j++)
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pt[j] = (i << 21) | (j << 12) | Flags::ReadWrite | Flags::Present;
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pd[i] = (uint64_t)pt | Flags::ReadWrite | Flags::Present;
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}
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// Unmap 0 -> 4 KiB
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uint64_t* pt1 = (uint64_t*)(pd[0] & PAGE_MASK);
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pt1[0] = 0;
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// Identity map 4 KiB -> kernel end. We don't map the first page since nullptr derefs should
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// page fault. Also there isn't anything useful in that memory.
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identity_map_range(PAGE_SIZE, (uintptr_t)g_kernel_end, Flags::ReadWrite | Flags::Present);
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}
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MMU::MMU()
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@ -150,13 +132,13 @@ namespace Kernel
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asm volatile("movq %0, %%cr3" :: "r"(m_highest_paging_struct));
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}
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void MMU::identity_map_page(paddr_t address, uint8_t flags)
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void MMU::identity_map_page(paddr_t address, flags_t flags)
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{
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address &= PAGE_MASK;
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map_page_at(address, address, flags);
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}
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void MMU::identity_map_range(paddr_t address, ptrdiff_t size, uint8_t flags)
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void MMU::identity_map_range(paddr_t address, size_t size, flags_t flags)
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{
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paddr_t s_page = address & PAGE_MASK;
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paddr_t e_page = (address + size - 1) & PAGE_MASK;
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@ -201,7 +183,7 @@ namespace Kernel
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pml4[pml4e] = 0;
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}
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void MMU::unmap_range(vaddr_t address, ptrdiff_t size)
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void MMU::unmap_range(vaddr_t address, size_t size)
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{
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vaddr_t s_page = address & PAGE_MASK;
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vaddr_t e_page = (address + size - 1) & PAGE_MASK;
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@ -209,7 +191,7 @@ namespace Kernel
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unmap_page(page);
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}
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void MMU::map_page_at(paddr_t paddr, vaddr_t vaddr, uint8_t flags)
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void MMU::map_page_at(paddr_t paddr, vaddr_t vaddr, flags_t flags)
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{
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ASSERT((paddr >> 48) == 0);
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ASSERT((vaddr >> 48) == 0);
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@ -4,11 +4,12 @@
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namespace Kernel
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{
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class MMU
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{
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public:
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enum Flags : uint8_t
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using flags_t = uint8_t;
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enum Flags : flags_t
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{
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Present = 1,
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ReadWrite = 2,
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@ -22,15 +23,18 @@ namespace Kernel
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MMU();
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~MMU();
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void identity_map_page(paddr_t, uint8_t);
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void identity_map_range(paddr_t, ptrdiff_t, uint8_t);
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void identity_map_page(paddr_t, flags_t);
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void identity_map_range(paddr_t, size_t, flags_t);
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void unmap_page(vaddr_t);
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void unmap_range(vaddr_t, ptrdiff_t);
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void unmap_range(vaddr_t, size_t);
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void map_page_at(paddr_t, vaddr_t, uint8_t);
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void map_page_at(paddr_t, vaddr_t, flags_t);
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uint8_t get_page_flags(vaddr_t) const;
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flags_t get_page_flags(vaddr_t) const;
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vaddr_t get_free_page() const;
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vaddr_t get_free_contiguous_pages(uint32_t) const;
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void load();
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