Kernel: Rework kernel-side ELF loading

ELFs are now loaded as MemoryRegions so they don't need special handling
anywhere. This also allows file backed COW optimizations to work. This
was not the case before.

This patch removes now obsolete LoadableELF and unused ELF files from
LibElf.
This commit is contained in:
2024-09-15 23:20:32 +03:00
parent 54732edff4
commit a084f83f4c
9 changed files with 300 additions and 1044 deletions

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@@ -1,89 +0,0 @@
#pragma once
#ifdef __is_kernel
#include <kernel/FS/Inode.h>
#include <kernel/Memory/VirtualRange.h>
#endif
#include <BAN/StringView.h>
#include <BAN/UniqPtr.h>
#include <BAN/Vector.h>
#include <kernel/Arch.h>
#include "Types.h"
namespace LibELF
{
class ELF
{
public:
#ifdef __is_kernel
static BAN::ErrorOr<BAN::UniqPtr<ELF>> load_from_file(BAN::RefPtr<Kernel::Inode>);
#else
static BAN::ErrorOr<BAN::UniqPtr<ELF>> load_from_file(BAN::StringView);
#endif
const Elf64FileHeader& file_header64() const;
const Elf64ProgramHeader& program_header64(size_t) const;
const Elf64SectionHeader& section_header64(size_t) const;
const char* lookup_section_name64(uint32_t) const;
const char* lookup_string64(size_t, uint32_t) const;
#if ARCH(x86_64)
const Elf64FileHeader& file_header_native() const { return file_header64(); }
const Elf64ProgramHeader& program_header_native(size_t index) const { return program_header64(index); }
const Elf64SectionHeader& section_header_native(size_t index) const { return section_header64(index); }
const char* lookup_section_name_native(uint32_t offset) const { return lookup_section_name64(offset); }
const char* lookup_string_native(size_t table_index, uint32_t offset) const { return lookup_string64(table_index, offset); }
bool is_native() const { return is_x86_64(); }
#endif
const Elf32FileHeader& file_header32() const;
const Elf32ProgramHeader& program_header32(size_t) const;
const Elf32SectionHeader& section_header32(size_t) const;
const char* lookup_section_name32(uint32_t) const;
const char* lookup_string32(size_t, uint32_t) const;
#if ARCH(i686)
const Elf32FileHeader& file_header_native() const { return file_header32(); }
const Elf32ProgramHeader& program_header_native(size_t index) const { return program_header32(index); }
const Elf32SectionHeader& section_header_native(size_t index) const { return section_header32(index); }
const char* lookup_section_name_native(uint32_t offset) const { return lookup_section_name32(offset); }
const char* lookup_string_native(size_t table_index, uint32_t offset) const { return lookup_string32(table_index, offset); }
bool is_native() const { return is_x86_32(); }
#endif
const uint8_t* data() const { return m_data.data(); }
bool is_x86_32() const;
bool is_x86_64() const;
private:
//#ifdef __is_kernel
// ELF(BAN::UniqPtr<Kernel::VirtualRange>&& storage, size_t size)
// : m_storage(BAN::move(storage))
// , m_data((const uint8_t*)m_storage->vaddr(), size)
// {}
//#else
ELF(BAN::Vector<uint8_t>&& data)
: m_data(BAN::move(data))
{}
//#endif
BAN::ErrorOr<void> load();
bool parse_elf64_file_header(const Elf64FileHeader&);
bool parse_elf64_program_header(const Elf64ProgramHeader&);
bool parse_elf64_section_header(const Elf64SectionHeader&);
bool parse_elf32_file_header(const Elf32FileHeader&);
bool parse_elf32_program_header(const Elf32ProgramHeader&);
bool parse_elf32_section_header(const Elf32SectionHeader&);
private:
//#ifdef __is_kernel
// BAN::UniqPtr<Kernel::VirtualRange> m_storage;
// BAN::Span<const uint8_t> m_data;
//#else
const BAN::Vector<uint8_t> m_data;
//#endif
};
}

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@@ -1,74 +0,0 @@
#pragma once
#ifndef __is_kernel
#error "This is kernel only header"
#endif
#include <BAN/UniqPtr.h>
#include <BAN/Vector.h>
#include <kernel/Credentials.h>
#include <kernel/FS/Inode.h>
#include <kernel/Memory/PageTable.h>
#include <LibELF/Types.h>
namespace LibELF
{
class LoadableELF
{
BAN_NON_COPYABLE(LoadableELF);
BAN_NON_MOVABLE(LoadableELF);
public:
static BAN::ErrorOr<BAN::UniqPtr<LoadableELF>> load_from_inode(Kernel::PageTable&, const Kernel::Credentials&, BAN::RefPtr<Kernel::Inode>);
~LoadableELF();
Kernel::vaddr_t entry_point() const { return m_file_header.e_entry; }
bool has_interpreter() const { return !!m_interpreter; }
BAN::RefPtr<Kernel::Inode> executable() { return m_executable; }
bool contains(Kernel::vaddr_t address) const;
bool is_address_space_free() const;
void reserve_address_space();
void update_suid_sgid(Kernel::Credentials&);
BAN::ErrorOr<void> load_page_to_memory(Kernel::vaddr_t address);
BAN::ErrorOr<BAN::UniqPtr<LoadableELF>> clone(Kernel::PageTable&);
size_t virtual_page_count() const { return m_virtual_page_count; }
size_t physical_page_count() const { return m_physical_page_count; }
private:
struct LoadResult
{
BAN::RefPtr<Kernel::Inode> inode;
BAN::RefPtr<Kernel::Inode> interp;
ElfNativeFileHeader file_header;
BAN::Vector<ElfNativeProgramHeader> program_headers;
};
private:
LoadableELF(Kernel::PageTable&);
BAN::ErrorOr<void> initialize(const Kernel::Credentials&, BAN::RefPtr<Kernel::Inode>);
BAN::ErrorOr<LoadResult> load_elf_file(const Kernel::Credentials&, BAN::RefPtr<Kernel::Inode>) const;
private:
BAN::RefPtr<Kernel::Inode> m_executable;
BAN::RefPtr<Kernel::Inode> m_interpreter;
ElfNativeFileHeader m_file_header;
BAN::Vector<ElfNativeProgramHeader> m_program_headers;
Kernel::PageTable& m_page_table;
size_t m_virtual_page_count { 0 };
size_t m_physical_page_count { 0 };
bool m_is_loaded { false };
friend class BAN::UniqPtr<LoadableELF>;
};
}