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https://github.com/EnderIce2/Fennix.git
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Merge remote-tracking branch 'Kernel/mb2_32_64_test' into Kernel-mb2_32_64_test
This commit is contained in:
214
Kernel/Architecture/amd64/cpu/GlobalDescriptorTable.cpp
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214
Kernel/Architecture/amd64/cpu/GlobalDescriptorTable.cpp
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/*
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This file is part of Fennix Kernel.
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Fennix Kernel is free software: you can redistribute it and/or
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modify it under the terms of the GNU General Public License as
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published by the Free Software Foundation, either version 3 of
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the License, or (at your option) any later version.
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Fennix Kernel is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with Fennix Kernel. If not, see <https://www.gnu.org/licenses/>.
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*/
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#include "gdt.hpp"
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#include <memory.hpp>
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#include <smp.hpp>
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#include <cpu.hpp>
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#include <debug.h>
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namespace GlobalDescriptorTable
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{
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static GlobalDescriptorTableEntries GDTEntriesTemplate = {
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.Null =
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{
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.Length = 0x0,
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.BaseLow = 0x0,
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.BaseMiddle = 0x0,
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.Access = {.Raw = 0x0},
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.Flags = {.Raw = 0x0},
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.BaseHigh = 0x0,
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},
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.Code =
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{
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.Length = 0x0,
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.BaseLow = 0x0,
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.BaseMiddle = 0x0,
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.Access = {
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.A = 0,
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.RW = 1,
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.DC = 0,
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.E = 1,
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.S = 1,
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.DPL = 0,
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.P = 1,
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},
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.Flags = {
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.Unknown = 0x0,
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.L = 1,
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},
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.BaseHigh = 0x0,
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},
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.Data = {
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.Length = 0x0,
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.BaseLow = 0x0,
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.BaseMiddle = 0x0,
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.Access = {
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.A = 0,
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.RW = 1,
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.DC = 0,
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.E = 0,
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.S = 1,
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.DPL = 0,
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.P = 1,
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},
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.Flags = {.Raw = 0x0},
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.BaseHigh = 0x0,
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},
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.UserData = {
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.Length = 0x0,
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.BaseLow = 0x0,
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.BaseMiddle = 0x0,
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.Access = {
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.A = 0,
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.RW = 1,
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.DC = 0,
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.E = 0,
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.S = 1,
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.DPL = 3,
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.P = 1,
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},
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.Flags = {
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.Raw = 0x0,
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},
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.BaseHigh = 0x0,
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},
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.UserCode = {
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.Length = 0x0,
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.BaseLow = 0x0,
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.BaseMiddle = 0x0,
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.Access = {
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.A = 0,
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.RW = 1,
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.DC = 0,
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.E = 1,
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.S = 1,
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.DPL = 3,
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.P = 1,
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},
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.Flags = {
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.Unknown = 0x0,
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.L = 1,
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},
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.BaseHigh = 0x0,
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},
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.TaskStateSegment = {},
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};
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GlobalDescriptorTableEntries GDTEntries[MAX_CPU] __aligned(16);
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GlobalDescriptorTableDescriptor gdt[MAX_CPU] __aligned(16);
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TaskStateSegment tss[MAX_CPU] = {
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0,
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{0, 0, 0},
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0,
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{0, 0, 0, 0, 0, 0, 0},
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0,
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0,
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0,
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};
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void *CPUStackPointer[MAX_CPU];
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SafeFunction void Init(int Core)
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{
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memcpy(&GDTEntries[Core], &GDTEntriesTemplate, sizeof(GlobalDescriptorTableEntries));
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gdt[Core] = {.Length = sizeof(GlobalDescriptorTableEntries) - 1, .Entries = &GDTEntries[Core]};
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debug("Kernel: Code Access: %ld; Data Access: %ld", GDTEntries[Core].Code.Access.Raw, GDTEntries[Core].Data.Access.Raw);
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debug("Kernel: Code Flags: %ld; Data Flags: %ld", GDTEntries[Core].Code.Flags.Raw, GDTEntries[Core].Data.Flags.Raw);
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debug("User: Code Access: %ld; Data Access: %ld", GDTEntries[Core].UserCode.Access.Raw, GDTEntries[Core].UserData.Access.Raw);
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debug("User: Code Flags: %ld; Data Flags: %ld", GDTEntries[Core].UserCode.Flags.Raw, GDTEntries[Core].UserData.Flags.Raw);
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CPU::x64::lgdt(&gdt[Core]);
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asmv("movq %%rsp, %%rax\n"
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"pushq $16\n"
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"pushq %%rax\n"
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"pushfq\n"
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"pushq $8\n"
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"pushq $1f\n"
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"iretq\n"
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"1:\n"
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"movw $16, %%ax\n"
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"movw %%ax, %%ds\n"
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"movw %%ax, %%es\n" ::
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: "memory", "rax");
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CPUStackPointer[Core] = KernelAllocator.RequestPages(TO_PAGES(STACK_SIZE + 1));
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memset(CPUStackPointer[Core], 0, STACK_SIZE);
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debug("CPU %d Stack Pointer: %#lx-%#lx (%d pages)", Core,
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CPUStackPointer[Core], (uintptr_t)CPUStackPointer[Core] + STACK_SIZE,
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TO_PAGES(STACK_SIZE + 1));
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uintptr_t Base = (uintptr_t)&tss[Core];
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size_t Limit = Base + sizeof(TaskStateSegment);
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gdt[Core].Entries->TaskStateSegment.Length = Limit & 0xFFFF;
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gdt[Core].Entries->TaskStateSegment.BaseLow = Base & 0xFFFF;
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gdt[Core].Entries->TaskStateSegment.BaseMiddle = (Base >> 16) & 0xFF;
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gdt[Core].Entries->TaskStateSegment.BaseHigh = (Base >> 24) & 0xFF;
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gdt[Core].Entries->TaskStateSegment.BaseUpper = s_cst(uint32_t, (Base >> 32) & 0xFFFFFFFF);
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gdt[Core].Entries->TaskStateSegment.Flags = {.A = 1, .RW = 0, .DC = 0, .E = 1, .S = 0, .DPL = 0, .P = 1};
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gdt[Core].Entries->TaskStateSegment.Granularity = (0 << 4) | ((Limit >> 16) & 0xF);
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tss[Core].IOMapBaseAddressOffset = sizeof(TaskStateSegment);
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tss[Core].StackPointer[0] = (uint64_t)CPUStackPointer[Core] + STACK_SIZE;
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for (size_t i = 0; i < sizeof(tss[Core].InterruptStackTable) / sizeof(tss[Core].InterruptStackTable[7]); i++)
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{
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void *NewStack = KernelAllocator.RequestPages(TO_PAGES(STACK_SIZE + 1));
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tss[Core].InterruptStackTable[i] = (uint64_t)NewStack + STACK_SIZE;
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memset((void *)(tss[Core].InterruptStackTable[i] - STACK_SIZE), 0, STACK_SIZE);
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debug("IST-%d: %#lx-%#lx", i, NewStack, (uintptr_t)NewStack + STACK_SIZE);
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}
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CPU::x64::ltr(GDT_TSS);
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debug("GDT_KERNEL_CODE: %#lx", GDT_KERNEL_CODE);
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debug("GDT_KERNEL_DATA: %#lx", GDT_KERNEL_DATA);
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debug("GDT_USER_CODE: %#lx", GDT_USER_CODE);
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debug("GDT_USER_DATA: %#lx", GDT_USER_DATA);
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debug("GDT_TSS: %#lx", GDT_TSS);
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debug("Global Descriptor Table initialized");
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}
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SafeFunction void SetKernelStack(void *Stack)
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{
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long CPUID = GetCurrentCPU()->ID;
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if (Stack != nullptr)
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tss[CPUID].StackPointer[0] = (uint64_t)Stack;
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else
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tss[CPUID].StackPointer[0] = (uint64_t)CPUStackPointer[CPUID] + STACK_SIZE;
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/*
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FIXME: There's a bug in kernel which if
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we won't update "tss[CPUID].StackPointer[0]"
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with the current stack pointer, the kernel
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will crash.
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*/
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asmv("mov %%rsp, %0"
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: "=r"(tss[CPUID].StackPointer[0]));
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}
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void *GetKernelStack() { return (void *)tss[GetCurrentCPU()->ID].StackPointer[0]; }
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}
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