mirror of
https://github.com/DragonOS-Community/DragonOS.git
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支持对动态链接文件的加载,支持通过musl工具链编写用户空间程序 (#504)
支持对动态链接文件的加载,支持通过musl工具链编写用户空间程序
This commit is contained in:
10
kernel/src/arch/riscv64/elf.rs
Normal file
10
kernel/src/arch/riscv64/elf.rs
Normal file
@ -0,0 +1,10 @@
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use crate::{arch::MMArch, libs::elf::ElfArch, mm::MemoryManagementArch};
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#[derive(Debug, Clone, Copy, Hash)]
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pub struct RiscV64ElfArch;
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impl ElfArch for RiscV64ElfArch {
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const ELF_ET_DYN_BASE: usize = MMArch::USER_END_VADDR.data() / 3 * 2;
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const ELF_PAGE_SIZE: usize = MMArch::PAGE_SIZE;
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}
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@ -1,6 +1,7 @@
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pub mod asm;
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pub mod cpu;
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pub mod driver;
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pub mod elf;
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pub mod init;
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pub mod interrupt;
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pub mod ipc;
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@ -21,3 +22,5 @@ pub use self::mm::RiscV64MMArch as MMArch;
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pub use self::pci::RiscV64PciArch as PciArch;
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pub use self::pio::RiscV64PortIOArch as CurrentPortIOArch;
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pub use self::time::RiscV64TimeArch as CurrentTimeArch;
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pub use self::elf::RiscV64ElfArch as CurrentElfArch;
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10
kernel/src/arch/x86_64/elf.rs
Normal file
10
kernel/src/arch/x86_64/elf.rs
Normal file
@ -0,0 +1,10 @@
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use crate::{arch::MMArch, libs::elf::ElfArch, mm::MemoryManagementArch};
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#[derive(Debug, Clone, Copy, Hash)]
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pub struct X86_64ElfArch;
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impl ElfArch for X86_64ElfArch {
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const ELF_ET_DYN_BASE: usize = MMArch::USER_END_VADDR.data() / 3 * 2;
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const ELF_PAGE_SIZE: usize = MMArch::PAGE_SIZE;
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}
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@ -4,6 +4,7 @@ mod acpi;
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mod c_adapter;
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pub mod cpu;
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pub mod driver;
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pub mod elf;
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pub mod fpu;
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pub mod init;
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pub mod interrupt;
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@ -33,3 +34,5 @@ pub use kvm::X86_64KVMArch as KVMArch;
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pub use crate::arch::ipc::signal::X86_64SignalArch as CurrentSignalArch;
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pub use crate::arch::time::X86_64TimeArch as CurrentTimeArch;
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pub use crate::arch::elf::X86_64ElfArch as CurrentElfArch;
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@ -63,7 +63,7 @@ impl Syscall {
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drop(old_address_space);
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drop(irq_guard);
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// kdebug!("to load binary file");
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let mut param = ExecParam::new(path.as_str(), address_space.clone(), ExecParamFlags::EXEC);
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let mut param = ExecParam::new(path.as_str(), address_space.clone(), ExecParamFlags::EXEC)?;
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// 加载可执行文件
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let load_result = load_binary_file(&mut param)
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@ -1,16 +1,23 @@
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use core::{
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cmp::min,
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cmp::{max, min},
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fmt::Debug,
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intrinsics::{likely, unlikely},
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ops::Range,
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};
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use alloc::vec::Vec;
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use elf::{endian::AnyEndian, file::FileHeader, segment::ProgramHeader};
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use elf::{
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abi::{PT_GNU_PROPERTY, PT_INTERP},
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endian::AnyEndian,
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file::FileHeader,
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segment::ProgramHeader,
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};
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use system_error::SystemError;
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use crate::{
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arch::MMArch,
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arch::{CurrentElfArch, MMArch},
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driver::base::block::SeekFrom,
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filesystem::vfs::file::File,
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kerror,
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libs::align::page_align_up,
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mm::{
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@ -22,22 +29,25 @@ use crate::{
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process::{
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abi::AtType,
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exec::{BinaryLoader, BinaryLoaderResult, ExecError, ExecLoadMode, ExecParam},
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ProcessManager,
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ProcessFlags, ProcessManager,
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},
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syscall::user_access::{clear_user, copy_to_user},
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};
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use super::rwlock::RwLockWriteGuard;
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// 存放跟架构相关的Elf属性,
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pub trait ElfArch: Clone + Copy + Debug {
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const ELF_ET_DYN_BASE: usize;
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const ELF_PAGE_SIZE: usize;
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}
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#[derive(Debug)]
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pub struct ElfLoader;
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pub const ELF_LOADER: ElfLoader = ElfLoader::new();
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impl ElfLoader {
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#[cfg(any(target_arch = "x86_64", target_arch = "riscv64"))]
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pub const ELF_PAGE_SIZE: usize = MMArch::PAGE_SIZE;
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/// 读取文件的缓冲区大小
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pub const FILE_READ_BUF_SIZE: usize = 512 * 1024;
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@ -58,7 +68,9 @@ impl ElfLoader {
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// 判断是否以可执行文件的形式加载
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if param.load_mode() == ExecLoadMode::Exec {
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// 检查文件类型是否为可执行文件
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if ElfType::from(ehdr.e_type) != ElfType::Executable {
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if ElfType::from(ehdr.e_type) != ElfType::Executable
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&& ElfType::from(ehdr.e_type) != ElfType::DSO
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{
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return Err(ExecError::NotExecutable);
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}
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} else {
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@ -132,15 +144,18 @@ impl ElfLoader {
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/// 计算addr在ELF PAGE内的偏移
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fn elf_page_offset(&self, addr: VirtAddr) -> usize {
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addr.data() & (Self::ELF_PAGE_SIZE - 1)
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addr.data() & (CurrentElfArch::ELF_PAGE_SIZE - 1)
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}
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fn elf_page_start(&self, addr: VirtAddr) -> VirtAddr {
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VirtAddr::new(addr.data() & (!(Self::ELF_PAGE_SIZE - 1)))
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VirtAddr::new(addr.data() & (!(CurrentElfArch::ELF_PAGE_SIZE - 1)))
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}
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fn elf_page_align_up(&self, addr: VirtAddr) -> VirtAddr {
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VirtAddr::new((addr.data() + Self::ELF_PAGE_SIZE - 1) & (!(Self::ELF_PAGE_SIZE - 1)))
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VirtAddr::new(
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(addr.data() + CurrentElfArch::ELF_PAGE_SIZE - 1)
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& (!(CurrentElfArch::ELF_PAGE_SIZE - 1)),
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)
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}
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/// 根据ELF的p_flags生成对应的ProtFlags
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@ -343,7 +358,7 @@ impl ElfLoader {
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fn pad_zero(&self, elf_bss: VirtAddr) -> Result<(), SystemError> {
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let nbyte = self.elf_page_offset(elf_bss);
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if nbyte > 0 {
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let nbyte = Self::ELF_PAGE_SIZE - nbyte;
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let nbyte = CurrentElfArch::ELF_PAGE_SIZE - nbyte;
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unsafe { clear_user(elf_bss, nbyte).map_err(|_| SystemError::EFAULT) }?;
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}
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return Ok(());
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@ -477,6 +492,12 @@ impl ElfLoader {
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buf,
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)));
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}
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// 解析 PT_GNU_PROPERTY 类型的段
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// 参照 https://code.dragonos.org.cn/xref/linux-6.1.9/fs/binfmt_elf.c#767
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fn parse_gnu_property() -> Result<(), ExecError> {
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return Ok(());
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}
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}
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impl BinaryLoader for ElfLoader {
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@ -515,16 +536,49 @@ impl BinaryLoader for ElfLoader {
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// todo: 增加对user stack上的内存是否具有可执行权限的处理(方法:寻找phdr里面的PT_GNU_STACK段)
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// todo: 增加对动态链接的处理
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// kdebug!("to parse segments");
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// 加载ELF文件并映射到用户空间
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let mut phdr_buf = Vec::new();
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let loadable_sections = Self::parse_segments(param, &ehdr, &mut phdr_buf)
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let phdr_table = Self::parse_segments(param, &ehdr, &mut phdr_buf)
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.map_err(|_| ExecError::ParseError)?
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.ok_or(ExecError::ParseError)?
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.iter()
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.filter(|seg| seg.p_type == elf::abi::PT_LOAD);
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.ok_or(ExecError::ParseError)?;
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let mut _gnu_property_data: Option<ProgramHeader> = None;
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let interpreter: Option<File> = None;
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for seg in phdr_table {
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if seg.p_type == PT_GNU_PROPERTY {
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_gnu_property_data = Some(seg.clone());
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continue;
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}
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if seg.p_type != PT_INTERP {
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continue;
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}
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// 接下来处理这个 .interpreter 段以及动态链接器
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// 参考 https://code.dragonos.org.cn/xref/linux-6.1.9/fs/binfmt_elf.c#881
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if seg.p_filesz > 4096 || seg.p_filesz < 2 {
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return Err(ExecError::NotExecutable);
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}
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let interpreter_ptr = unsafe {
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core::slice::from_raw_parts(
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seg.p_offset as *const u8,
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seg.p_filesz.try_into().unwrap(),
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)
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};
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let _interpreter_path = core::str::from_utf8(interpreter_ptr).map_err(|e| {
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ExecError::Other(format!(
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"Failed to parse the path of dynamic linker with error {}",
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e
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))
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})?;
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//TODO 加入对动态链接器的加载,参照 https://code.dragonos.org.cn/xref/linux-6.1.9/fs/binfmt_elf.c#890
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}
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if interpreter.is_some() {
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/* Some simple consistency checks for the interpreter */
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// 参考 https://code.dragonos.org.cn/xref/linux-6.1.9/fs/binfmt_elf.c#950
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}
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Self::parse_gnu_property()?;
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// kdebug!("loadable_sections = {:?}", loadable_sections);
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@ -535,14 +589,44 @@ impl BinaryLoader for ElfLoader {
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let mut start_data: Option<VirtAddr> = None;
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let mut end_data: Option<VirtAddr> = None;
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// 加载的时候的偏移量(这个偏移量在加载动态链接段的时候产生,由于还没有动态链接,因此暂时不可变。)
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// 请不要删除load_bias! 以免到时候写动态链接的时候忘记了。
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let load_bias = 0usize;
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// 加载的时候的偏移量(这个偏移量在加载动态链接段的时候产生)
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let mut load_bias = 0usize;
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let mut bss_prot_flags = ProtFlags::empty();
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// 是否是第一个加载的段
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let mut first_pt_load = true;
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// program header的虚拟地址
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let mut phdr_vaddr: Option<VirtAddr> = None;
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let mut _reloc_func_desc = 0usize;
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// 参考https://code.dragonos.org.cn/xref/linux-6.1.9/fs/binfmt_elf.c#1158,获取要加载的total_size
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let mut has_load = false;
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let mut min_address = VirtAddr::new(usize::MAX);
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let mut max_address = VirtAddr::new(0usize);
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let loadable_sections = phdr_table
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.into_iter()
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.filter(|seg| seg.p_type == elf::abi::PT_LOAD);
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for seg_to_load in loadable_sections {
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min_address = min(
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min_address,
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self.elf_page_start(VirtAddr::new(seg_to_load.p_vaddr.try_into().unwrap())),
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);
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max_address = max(
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max_address,
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VirtAddr::new(
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(seg_to_load.p_vaddr + seg_to_load.p_memsz)
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.try_into()
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.unwrap(),
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),
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);
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has_load = true;
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}
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let total_size = if has_load {
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max_address - min_address
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} else {
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0
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};
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let loadable_sections = phdr_table
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.into_iter()
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.filter(|seg| seg.p_type == elf::abi::PT_LOAD);
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for seg_to_load in loadable_sections {
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// kdebug!("seg_to_load = {:?}", seg_to_load);
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if unlikely(elf_brk > elf_bss) {
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@ -559,7 +643,7 @@ impl BinaryLoader for ElfLoader {
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)?;
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let nbyte = self.elf_page_offset(elf_bss);
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if nbyte > 0 {
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let nbyte = min(Self::ELF_PAGE_SIZE - nbyte, elf_brk - elf_bss);
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let nbyte = min(CurrentElfArch::ELF_PAGE_SIZE - nbyte, elf_brk - elf_bss);
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unsafe {
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// This bss-zeroing can fail if the ELF file specifies odd protections.
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// So we don't check the return value.
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@ -569,12 +653,11 @@ impl BinaryLoader for ElfLoader {
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}
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// 生成ProtFlags.
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// TODO: 当有了动态链接之后,需要根据情况设置这里的has_interpreter
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let elf_prot_flags = self.make_prot(seg_to_load.p_flags, false, false);
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let elf_prot_flags = self.make_prot(seg_to_load.p_flags, interpreter.is_some(), false);
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let mut elf_map_flags = MapFlags::MAP_PRIVATE;
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let vaddr = VirtAddr::new(seg_to_load.p_vaddr as usize);
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let vaddr = VirtAddr::new(seg_to_load.p_vaddr.try_into().unwrap());
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if !first_pt_load {
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elf_map_flags.insert(MapFlags::MAP_FIXED_NOREPLACE);
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@ -587,11 +670,28 @@ impl BinaryLoader for ElfLoader {
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elf_map_flags.insert(MapFlags::MAP_FIXED_NOREPLACE);
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} else if elf_type == ElfType::DSO {
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// TODO: 支持动态链接
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unimplemented!("DragonOS currently does not support dynamic linking!");
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if interpreter.is_some() {
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load_bias = CurrentElfArch::ELF_ET_DYN_BASE;
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if ProcessManager::current_pcb()
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.flags()
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.contains(ProcessFlags::RANDOMIZE)
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{
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//这里x86下需要一个随机加载的方法,但是很多架构,比如Risc-V都是0,就暂时不写了
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} else {
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load_bias = 0;
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}
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}
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load_bias = self
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.elf_page_start(VirtAddr::new(
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load_bias - TryInto::<usize>::try_into(seg_to_load.p_vaddr).unwrap(),
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))
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.data();
|
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if total_size == 0 {
|
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return Err(ExecError::InvalidParemeter);
|
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}
|
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}
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|
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// 加载这个段到用户空间
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// todo: 引入动态链接后,这里的total_size要按照实际的填写,而不一定是0
|
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let e = self
|
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.load_elf_segment(
|
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@ -601,7 +701,7 @@ impl BinaryLoader for ElfLoader {
|
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vaddr + load_bias,
|
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&elf_prot_flags,
|
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&elf_map_flags,
|
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0,
|
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total_size,
|
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)
|
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.map_err(|e| match e {
|
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SystemError::EFAULT => ExecError::BadAddress(None),
|
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@ -618,7 +718,14 @@ impl BinaryLoader for ElfLoader {
|
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first_pt_load = false;
|
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if elf_type == ElfType::DSO {
|
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// todo: 在这里增加对load_bias和reloc_func_desc的更新代码
|
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todo!()
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load_bias += e.0.data()
|
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- self
|
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.elf_page_start(VirtAddr::new(
|
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load_bias
|
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+ TryInto::<usize>::try_into(seg_to_load.p_vaddr).unwrap(),
|
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))
|
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.data();
|
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_reloc_func_desc = load_bias;
|
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}
|
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}
|
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|
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@ -714,7 +821,10 @@ impl BinaryLoader for ElfLoader {
|
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// kdebug!("elf_bss = {elf_bss:?}, elf_brk = {elf_brk:?}");
|
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return Err(ExecError::BadAddress(Some(elf_bss)));
|
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}
|
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// todo: 动态链接:增加加载interpreter的代码
|
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if interpreter.is_some() {
|
||||
// TODO 添加对动态加载器的处理
|
||||
// 参考 https://code.dragonos.org.cn/xref/linux-6.1.9/fs/binfmt_elf.c#1249
|
||||
}
|
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// kdebug!("to create auxv");
|
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|
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self.create_auxv(param, program_entrypoint, phdr_vaddr, &ehdr)?;
|
||||
|
@ -93,9 +93,8 @@ bitflags! {
|
||||
}
|
||||
|
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#[derive(Debug)]
|
||||
pub struct ExecParam<'a> {
|
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file_path: &'a str,
|
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file: Option<File>,
|
||||
pub struct ExecParam {
|
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file: File,
|
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vm: Arc<AddressSpace>,
|
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/// 一些标志位
|
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flags: ExecParamFlags,
|
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@ -112,19 +111,23 @@ pub enum ExecLoadMode {
|
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}
|
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|
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#[allow(dead_code)]
|
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impl<'a> ExecParam<'a> {
|
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pub fn new(file_path: &'a str, vm: Arc<AddressSpace>, flags: ExecParamFlags) -> Self {
|
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Self {
|
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file_path,
|
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file: None,
|
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impl ExecParam {
|
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pub fn new(
|
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file_path: &str,
|
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vm: Arc<AddressSpace>,
|
||||
flags: ExecParamFlags,
|
||||
) -> Result<Self, SystemError> {
|
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let inode = ROOT_INODE().lookup(file_path)?;
|
||||
|
||||
// 读取文件头部,用于判断文件类型
|
||||
let file = File::new(inode, FileMode::O_RDONLY)?;
|
||||
|
||||
Ok(Self {
|
||||
file,
|
||||
vm,
|
||||
flags,
|
||||
init_info: ProcInitInfo::new(),
|
||||
}
|
||||
}
|
||||
|
||||
pub fn file_path(&self) -> &'a str {
|
||||
self.file_path
|
||||
})
|
||||
}
|
||||
|
||||
pub fn vm(&self) -> &Arc<AddressSpace> {
|
||||
@ -153,17 +156,13 @@ impl<'a> ExecParam<'a> {
|
||||
}
|
||||
|
||||
pub fn file_mut(&mut self) -> &mut File {
|
||||
self.file.as_mut().unwrap()
|
||||
&mut self.file
|
||||
}
|
||||
}
|
||||
|
||||
/// ## 加载二进制文件
|
||||
pub fn load_binary_file(param: &mut ExecParam) -> Result<BinaryLoaderResult, SystemError> {
|
||||
let inode = ROOT_INODE().lookup(param.file_path)?;
|
||||
|
||||
// 读取文件头部,用于判断文件类型
|
||||
let file = File::new(inode, FileMode::O_RDONLY)?;
|
||||
param.file = Some(file);
|
||||
let mut head_buf = [0u8; 512];
|
||||
param.file_mut().lseek(SeekFrom::SeekSet(0))?;
|
||||
let _bytes = param.file_mut().read(512, &mut head_buf)?;
|
||||
|
@ -520,6 +520,8 @@ bitflags! {
|
||||
const SIGNALED = 1 << 6;
|
||||
/// 进程需要迁移到其他cpu上
|
||||
const NEED_MIGRATE = 1 << 7;
|
||||
/// 随机化的虚拟地址空间,主要用于动态链接器的加载
|
||||
const RANDOMIZE = 1 << 8;
|
||||
}
|
||||
}
|
||||
|
||||
|
Reference in New Issue
Block a user