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#include "loader_efi.h"
#include <boot/entry/entry_efi.h>
#include <elf/elf64.h>
#include <stdbool.h>
#include <stddef.h>
#define kernel_path L"\\adasoft\\sophia\\kernel.os"
struct system_buffer
{
EFI_PHYSICAL_ADDRESS base;
UINTN size;
};
struct system_image
{
struct system_buffer buffer;
EFI_FILE_PROTOCOL *file;
Elf64_Ehdr ehdr;
Elf64_Phdr *phdrs;
};
static struct system_buffer get_system_buffer(size_t size);
static struct system_image *open_system_image(CHAR16 *path);
static bool load_system_image(struct system_image *image);
static struct efi_memory_map_data *get_memory_map_data(void);
static struct efi_framebuffer_data *get_framebuffer_data(void);
static void *get_acpi_rsdp(void);
void loader_main(void)
{
struct efi_boot_data data;
struct system_image *kernel_image = open_system_image(kernel_path);
if (load_system_image(kernel_image))
{
Print(L"loaded kernel image at base %16.0x size %d bytes\r\n",
kernel_image->buffer.base,
kernel_image->buffer.size);
}
else
{
Print(L"failed loading kernel image\r\n");
efi_exit(EFI_ABORTED);
}
kernel_entry_func kernel_entry;
kernel_entry = (kernel_entry_func)(kernel_image->buffer.base +
kernel_image->ehdr.e_entry);
data.system_table = e_st;
data.framebuffer = get_framebuffer_data();
data.acpi_rsdp = get_acpi_rsdp();
data.memory_map = get_memory_map_data();
EFI_STATUS status = e_bs->ExitBootServices(e_image_handle,
data.memory_map->key);
if (EFI_ERROR(status))
{
Print(L"failed exiting boot services environment: %r\r\n", status);
efi_exit(status);
}
kernel_entry(&data);
}
static struct system_buffer get_system_buffer(UINTN size)
{
EFI_STATUS status;
struct system_buffer buffer;
status = e_bs->AllocatePages(AllocateAnyPages,
SystemMemoryType,
EFI_SIZE_TO_PAGES(size),
&buffer.base);
if (EFI_ERROR(status))
{
Print(L"error allocating system buffer: %r\r\n", status);
buffer.base = 0;
buffer.size = 0;
}
return buffer;
}
static bool validate_image(Elf64_Ehdr *ehdr)
{
if (ehdr->e_ident[EI_MAG0] != ELFMAG0 ||
ehdr->e_ident[EI_MAG1] != ELFMAG1 ||
ehdr->e_ident[EI_MAG2] != ELFMAG2 ||
ehdr->e_ident[EI_MAG3] != ELFMAG3 ||
ehdr->e_ident[EI_CLASS] != ELFCLASS64 ||
ehdr->e_ident[EI_DATA] != ELFDATA2LSB ||
ehdr->e_ident[EI_VERSION] != EV_CURRENT ||
ehdr->e_machine != EM_X86_64)
{
Print(L"invalid image format\r\n");
return false;
}
Print(L"elf x64 image detected\r\n");
return true;
}
static UINTN get_image_size(struct system_image *image)
{
UINTN size = 0;
Elf64_Phdr *phdrs = image->phdrs;
for (int i = 0; i < image->ehdr.e_phnum; i++)
{
if (phdrs[i].p_type != PT_LOAD)
{
continue;
}
if (phdrs[i].p_paddr + phdrs[i].p_memsz > size)
{
size = phdrs[i].p_paddr + phdrs[i].p_memsz;
if (phdrs[i].p_align > 1)
size = (size + phdrs[i].p_align - 1) & ~(phdrs[i].p_align - 1);
}
}
return size;
}
static struct system_image *open_system_image(CHAR16 *path)
{
EFI_STATUS status;
EFI_FILE_PROTOCOL *root;
EFI_FILE_PROTOCOL *file;
struct system_image *image = NULL;
status = e_system_partition->OpenVolume(e_system_partition, &root);
if (EFI_ERROR(status))
{
Print(L"failed opening system partition root: %r\r\n", status);
return NULL;
}
status = root->Open(root, &file, path, EFI_FILE_MODE_READ, 0);
if (EFI_ERROR(status))
{
Print(L"failed opening image file %s: %r\r\n", path, status);
return NULL;
}
image = efi_allocate(sizeof(*image));
if (!image)
{
Print(L"failed allocating image data: %r\r\n", e_last_error);
goto failure;
}
image->file = file;
UINTN ehdr_size = sizeof(image->ehdr);
status = file->Read(file, &ehdr_size, &image->ehdr);
if (EFI_ERROR(status))
{
Print(L"failed reading image file %s: %r\r\n", path, status);
goto failure;
}
if (!validate_image(&image->ehdr))
{
Print(L"failed validating image file %s: %r\r\n", path, status);
goto failure;
}
UINTN phdrs_size = image->ehdr.e_phentsize * image->ehdr.e_phnum;
image->phdrs = efi_allocate(phdrs_size);
if (!image->phdrs)
{
Print(L"failed allocating segment data: %r", e_last_error);
goto failure;
}
status = file->Read(file, &phdrs_size, image->phdrs);
if (EFI_ERROR(status))
{
Print(L"failed reading segment data: %r", status);
goto failure;
}
return image;
failure:
file->Close(file);
return NULL;
}
static bool load_system_image(struct system_image *image)
{
image->buffer = get_system_buffer(get_image_size(image));
if (!image->buffer.base)
{
return false;
}
e_bs->SetMem((VOID *)image->buffer.base, image->buffer.size, 0);
Elf64_Ehdr *ehdr = &image->ehdr;
Elf64_Phdr *phdrs = image->phdrs;
Print(L"found %d segments in image\r\n", ehdr->e_phnum);
EFI_STATUS status = EFI_SUCCESS;
for (UINTN i = 0; i < ehdr->e_phnum && !EFI_ERROR(status); i++)
{
switch (phdrs[i].p_type)
{
case PT_LOAD:
Print(L"loadable segment at offset %x of %d bytes\r\n",
phdrs[i].p_offset,
phdrs[i].p_memsz);
void *segment = (void *)(image->buffer.base + phdrs[i].p_paddr);
UINTN segment_size = phdrs[i].p_filesz;
image->file->SetPosition(image->file, phdrs[i].p_offset);
status = image->file->Read(image->file, &segment_size, segment);
break;
default:
continue;
}
}
if (EFI_ERROR(status))
{
Print(L"failure reading segment from file: %r\r\n", status);
return false;
}
return true;
}
static struct efi_memory_map_data *get_memory_map_data(void)
{
EFI_STATUS status;
UINTN mapsize = 0;
struct efi_memory_map_data *map = NULL;
status = e_bs->GetMemoryMap(&mapsize, NULL, NULL, NULL, NULL);
if (status == EFI_BUFFER_TOO_SMALL)
{
map = efi_allocate(sizeof(*map));
}
if (map)
{
status = e_bs->GetMemoryMap(&map->size,
map->data,
&map->key,
&map->descsize,
&map->descver);
}
else
{
status = e_last_error;
}
if (EFI_ERROR(status))
{
Print(L"failed getting memory map: %r\r\n", status);
return NULL;
}
return map;
}
static struct efi_framebuffer_data *get_framebuffer_data(void)
{
struct efi_framebuffer_data *framebuffer;
if (!e_graphics_output)
{
return NULL;
}
framebuffer = efi_allocate(sizeof(*framebuffer));
if (framebuffer)
{
EFI_GRAPHICS_OUTPUT_PROTOCOL_MODE *mode = e_graphics_output->Mode;
framebuffer->bitmask = mode->Info->PixelInformation;
framebuffer->width = mode->Info->HorizontalResolution;
framebuffer->height = mode->Info->VerticalResolution;
framebuffer->base = mode->FrameBufferBase;
framebuffer->size = mode->FrameBufferSize;
framebuffer->pixel_format = mode->Info->PixelFormat;
switch (framebuffer->pixel_format)
{
//falthrough
case PixelBlueGreenRedReserved8BitPerColor:
case PixelRedGreenBlueReserved8BitPerColor:
framebuffer->pixel_size = sizeof(EFI_GRAPHICS_OUTPUT_BLT_PIXEL);
break;
default:
// TODO: calculate pixel size for bitmask format
framebuffer->pixel_size = 0;
}
framebuffer->pitch = framebuffer->width * framebuffer->pixel_size;
}
else
{
Print(L"failed getting framebuffer data: %r\r\n", e_last_error);
return NULL;
}
return framebuffer;
}
static void *get_acpi_rsdp(void)
{
EFI_GUID acpi_20_guid = ACPI_20_TABLE_GUID;
for (UINTN i = 0; i < e_st->NumberOfTableEntries; i++)
{
if (!CompareGuid(&acpi_20_guid, &e_st->ConfigurationTable[i].VendorGuid))
{
Print(L"acpi rsdp: 0x%16.0x\r\n",
e_st->ConfigurationTable[i].VendorTable);
return e_st->ConfigurationTable[i].VendorTable;
}
}
Print(L"failed getting acpi rsdp\r\n");
return NULL;
}
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