some modify
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@@ -9,20 +9,68 @@
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#include <Pi/PiMultiPhase.h>
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#include <Protocol/MpService.h>
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*/
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#include <Guid/Acpi.h>
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#include <Uefi.h>
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#include <Uefi/UefiSpec.h>
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#include "fb.h"
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#include "gdt.h"
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#include "interrupt.h"
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#include "ramfs.h"
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#include "text.h"
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#pragma pack(1)
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typedef struct {
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EFI_ACPI_DESCRIPTION_HEADER header;
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EFI_ACPI_DESCRIPTION_HEADER *entry[0];
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} XSDT;
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typedef struct {
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EFI_ACPI_DESCRIPTION_HEADER header;
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UINT32 EventTimerBlockID;
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EFI_ACPI_2_0_GENERIC_ADDRESS_STRUCTURE BaseAddress;
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UINT8 HPETNumber;
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UINT16 MinimumTick;
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UINT8 Flags;
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} HPET;
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#pragma pack()
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EFI_ACPI_DESCRIPTION_HEADER *Get_SDT(EFI_SYSTEM_TABLE *SystemTable,
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UINT64 Signature) {
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EFI_ACPI_2_0_ROOT_SYSTEM_DESCRIPTION_POINTER *ACPI_Table;
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EFI_GUID gEfiAcpiTableGuid = EFI_ACPI_TABLE_GUID;
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for (UINTN i = 0; i < SystemTable->NumberOfTableEntries; i++) {
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EFI_CONFIGURATION_TABLE *table = SystemTable->ConfigurationTable + i;
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if (table->VendorGuid.Data1 == gEfiAcpiTableGuid.Data1 &&
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table->VendorGuid.Data2 == gEfiAcpiTableGuid.Data2 &&
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table->VendorGuid.Data3 == gEfiAcpiTableGuid.Data3 &&
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table->VendorGuid.Data4[0] == gEfiAcpiTableGuid.Data4[0] &&
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table->VendorGuid.Data4[1] == gEfiAcpiTableGuid.Data4[1] &&
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table->VendorGuid.Data4[2] == gEfiAcpiTableGuid.Data4[2] &&
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table->VendorGuid.Data4[3] == gEfiAcpiTableGuid.Data4[3] &&
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table->VendorGuid.Data4[4] == gEfiAcpiTableGuid.Data4[4] &&
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table->VendorGuid.Data4[5] == gEfiAcpiTableGuid.Data4[5] &&
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table->VendorGuid.Data4[6] == gEfiAcpiTableGuid.Data4[6] &&
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table->VendorGuid.Data4[7] == gEfiAcpiTableGuid.Data4[7]) {
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ACPI_Table = (EFI_ACPI_2_0_ROOT_SYSTEM_DESCRIPTION_POINTER *)
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table->VendorTable;
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}
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}
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XSDT *xsdt = (XSDT *)ACPI_Table->XsdtAddress;
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for (int i = 0;
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i < (xsdt->header.Length - sizeof(EFI_ACPI_DESCRIPTION_HEADER)) /
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sizeof(EFI_ACPI_DESCRIPTION_HEADER *);
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i++) {
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if (xsdt->entry[i]->Signature == Signature) return xsdt->entry[i];
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}
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return NULL;
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}
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EFI_STATUS EFIAPI UefiMain(IN EFI_HANDLE ImageHandle,
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IN EFI_SYSTEM_TABLE *SystemTable) {
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EFI_STATUS Status;
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EFI_GRAPHICS_OUTPUT_PROTOCOL *gop;
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EFI_SIMPLE_FILE_SYSTEM_PROTOCOL *fsp;
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// EFI_MP_SERVICES_PROTOCOL *mps;
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SystemTable->BootServices->SetWatchdogTimer(
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@@ -37,14 +85,6 @@ EFI_STATUS EFIAPI UefiMain(IN EFI_HANDLE ImageHandle,
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return Status;
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}
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Status = SystemTable->BootServices->LocateProtocol(
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&gEfiSimpleFileSystemProtocolGuid, NULL, (VOID **)&fsp);
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if (EFI_ERROR(Status)) {
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Print(L"Error:Failed to locate EFI Simple FileSystem Protocol - %r",
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Status);
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return Status;
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}
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/*
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Status = SystemTable->BootServices->LocateProtocol(
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&gEfiMpServiceProtocolGuid, NULL,
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@@ -54,22 +94,119 @@ EFI_STATUS EFIAPI UefiMain(IN EFI_HANDLE ImageHandle,
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Status); return Status;
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}
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*/
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// HPET *hpet_table = (HPET *)Get_SDT(
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// SystemTable, EFI_ACPI_3_0_HIGH_PRECISION_EVENT_TIMER_TABLE_SIGNATURE);
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FrameBuffer_init(gop);
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ramfsinit(SystemTable);
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UINTN MemoryMapSize = 1, MapKey, DescriptorSize;
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UINT32 DescriptorVersion;
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EFI_MEMORY_DESCRIPTOR *mem_desc;
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do {
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EFI_MEMORY_DESCRIPTOR *mem_desc =
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(EFI_MEMORY_DESCRIPTOR *)AllocatePool(MemoryMapSize);
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Status = SystemTable->BootServices->AllocatePool(
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EfiLoaderData, MemoryMapSize, (void **)&mem_desc);
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if (EFI_ERROR(Status)) {
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Print(L"Error:Failed to allocate memory map memory - %r\n", Status);
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continue;
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}
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Status = SystemTable->BootServices->GetMemoryMap(
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&MemoryMapSize, mem_desc, &MapKey, &DescriptorSize,
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&DescriptorVersion);
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if (EFI_ERROR(Status)) continue;
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if (EFI_ERROR(Status)) {
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Print(L"Error:Failed to get memory map - %r\n", Status);
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SystemTable->BootServices->FreePool(mem_desc);
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continue;
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}
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Status =
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SystemTable->BootServices->ExitBootServices(ImageHandle, MapKey);
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} while (EFI_ERROR(Status));
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if (EFI_ERROR(Status)) {
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Print(L"Error:Failed to exit boot service - %r\n", Status);
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SystemTable->BootServices->FreePool(mem_desc);
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continue;
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}
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break;
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} while (TRUE);
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for (int y = 0; y < buffer.VerticalRes; y++) {
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for (int x = 0; x < buffer.HorizontalRes; x++) {
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EFI_GRAPHICS_OUTPUT_BLT_PIXEL *pixel =
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(EFI_GRAPHICS_OUTPUT_BLT_PIXEL *)buffer.BaseAddress +
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(buffer.HorizontalRes * y) + x;
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RGBtoPixel(pixel, 0x000000);
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}
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}
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for (UINTN i = (UINTN)mem_desc; i < ((UINTN)mem_desc + MemoryMapSize);
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i += DescriptorSize) {
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((EFI_MEMORY_DESCRIPTOR *)i)->VirtualStart =
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((EFI_MEMORY_DESCRIPTOR *)i)->PhysicalStart;
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}
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SystemTable->RuntimeServices->SetVirtualAddressMap(
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MemoryMapSize, DescriptorSize, DescriptorVersion, mem_desc);
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for (UINTN i = (UINTN)mem_desc; i < ((UINTN)mem_desc + MemoryMapSize);
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i += DescriptorSize) {
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print("Type:");
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switch (((EFI_MEMORY_DESCRIPTOR *)i)->Type) {
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case EfiReservedMemoryType:
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print("EfiReservedMemoryType");
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break;
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case EfiLoaderCode:
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print("EfiLoaderCode");
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break;
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case EfiLoaderData:
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print("EfiLoaderData");
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break;
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case EfiBootServicesCode:
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print("EfiBootServicesCode");
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break;
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case EfiBootServicesData:
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print("EfiBootServicesData");
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break;
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case EfiRuntimeServicesCode:
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print("EfiRuntimeServicesCode");
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break;
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case EfiRuntimeServicesData:
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print("EfiRuntimeServicesData");
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break;
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case EfiConventionalMemory:
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print("EfiConventionalMemory");
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break;
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case EfiUnusableMemory:
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print("EfiUnusableMemory");
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break;
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case EfiACPIReclaimMemory:
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print("EfiACPIReclaimMemory");
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break;
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case EfiACPIMemoryNVS:
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print("EfiACPIMemoryNVS");
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break;
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case EfiMemoryMappedIO:
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print("EfiMemoryMappedIO");
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break;
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case EfiMemoryMappedIOPortSpace:
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print("EfiMemoryMappedIOPortSpace");
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break;
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case EfiPalCode:
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print("EfiPalCode");
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break;
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case EfiPersistentMemory:
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print("EfiPersistentMemory");
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break;
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case EfiMaxMemoryType:
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print("EfiMaxMemoryType");
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break;
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}
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print(" Physical:");
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printhex(((EFI_MEMORY_DESCRIPTOR *)i)->PhysicalStart, 0);
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print(" Virtual:");
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printhex(((EFI_MEMORY_DESCRIPTOR *)i)->VirtualStart, 0);
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print(" Pages:");
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printhex(((EFI_MEMORY_DESCRIPTOR *)i)->NumberOfPages, 0);
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print(" Attribute:");
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printhex(((EFI_MEMORY_DESCRIPTOR *)i)->Attribute, 0);
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print("\n");
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}
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GDT_init();
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interrupt_init();
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/*
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for (int y = 0; y < buffer.VerticalRes; y++) {
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for (int x = 0; x < buffer.HorizontalRes; x++) {
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EFI_GRAPHICS_OUTPUT_BLT_PIXEL *pixel =
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@@ -77,12 +214,7 @@ EFI_STATUS EFIAPI UefiMain(IN EFI_HANDLE ImageHandle,
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(buffer.HorizontalRes * y) + x;
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RGBtoPixel(pixel, 0xFF0000);
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}
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}
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textout('A');
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textout('p');
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textout('p');
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textout('l');
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textout('e');
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}*/
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while (1) asm volatile("hlt");
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return Status;
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}
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