2018-07-16 20:23:02 +04:00
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use arch::interrupt::{TrapFrame, Context as ArchContext};
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2018-06-03 19:05:43 +04:00
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use memory::{MemoryArea, MemoryAttr, MemorySet};
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2018-07-14 07:56:55 +04:00
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use xmas_elf::{ElfFile, header, program::{Flags, ProgramHeader, Type}};
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2018-07-16 20:23:02 +04:00
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use core::fmt::{Debug, Error, Formatter};
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2018-04-27 19:10:39 +04:00
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2018-07-16 20:23:02 +04:00
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pub struct Context {
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arch: ArchContext,
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memory_set: MemorySet,
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2018-04-27 19:10:39 +04:00
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}
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2018-07-16 21:56:28 +04:00
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impl ::ucore_process::processor::Context for Context {
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unsafe fn switch(&mut self, target: &mut Self) {
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super::PROCESSOR.try().unwrap().force_unlock();
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2018-07-16 20:23:02 +04:00
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self.arch.switch(&mut target.arch);
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2018-07-16 21:56:28 +04:00
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use core::mem::forget;
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forget(super::processor());
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2018-07-16 20:23:02 +04:00
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}
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2018-07-16 21:56:28 +04:00
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}
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impl Context {
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2018-04-27 19:10:39 +04:00
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2018-07-16 20:23:02 +04:00
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pub unsafe fn new_init() -> Self {
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Context {
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arch: ArchContext::null(),
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memory_set: MemorySet::new(),
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2018-04-27 19:10:39 +04:00
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}
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}
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2018-05-13 11:06:44 +04:00
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2018-07-16 20:23:02 +04:00
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pub fn new_kernel(entry: extern fn(usize) -> !, arg: usize) -> Self {
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let ms = MemorySet::new();
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Context {
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arch: unsafe { ArchContext::new_kernel_thread(entry, arg, ms.kstack_top(), ms.token()) },
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memory_set: ms,
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2018-04-27 19:10:39 +04:00
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}
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}
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2018-04-28 06:40:31 +04:00
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2018-07-14 07:56:55 +04:00
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/// Make a new user thread from ELF data
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2018-06-02 21:10:20 +04:00
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pub fn new_user(data: &[u8]) -> Self {
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2018-05-12 21:57:49 +04:00
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// Parse elf
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2018-05-18 07:49:27 +04:00
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let elf = ElfFile::new(data).expect("failed to read elf");
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2018-05-17 17:06:13 +04:00
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let is32 = match elf.header.pt2 {
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2018-07-14 07:56:55 +04:00
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header::HeaderPt2::Header32(_) => true,
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header::HeaderPt2::Header64(_) => false,
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2018-05-17 17:06:13 +04:00
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};
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2018-07-14 07:56:55 +04:00
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assert_eq!(elf.header.pt2.type_().as_type(), header::Type::Executable, "ELF is not executable");
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2018-05-17 17:06:13 +04:00
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// User stack
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2018-07-12 14:56:29 +04:00
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use consts::{USER_STACK_OFFSET, USER_STACK_SIZE, USER32_STACK_OFFSET};
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2018-05-19 12:32:18 +04:00
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let (user_stack_buttom, user_stack_top) = match is32 {
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2018-07-12 14:56:29 +04:00
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true => (USER32_STACK_OFFSET, USER32_STACK_OFFSET + USER_STACK_SIZE),
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2018-05-17 17:06:13 +04:00
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false => (USER_STACK_OFFSET, USER_STACK_OFFSET + USER_STACK_SIZE),
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};
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2018-05-12 21:57:49 +04:00
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// Make page table
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2018-07-10 20:53:40 +04:00
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let mut memory_set = memory_set_from(&elf);
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2018-06-02 21:10:20 +04:00
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memory_set.push(MemoryArea::new(user_stack_buttom, user_stack_top, MemoryAttr::default().user(), "user_stack"));
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2018-05-19 14:42:08 +04:00
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trace!("{:#x?}", memory_set);
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2018-05-12 18:57:30 +04:00
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2018-07-14 07:56:55 +04:00
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let entry_addr = elf.header.pt2.entry_point() as usize;
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2018-05-17 17:06:13 +04:00
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2018-05-12 21:57:49 +04:00
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// Temporary switch to it, in order to copy data
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2018-07-10 20:53:40 +04:00
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unsafe {
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memory_set.with(|| {
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for ph in elf.program_iter() {
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2018-07-14 07:56:55 +04:00
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let virt_addr = ph.virtual_addr() as usize;
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let offset = ph.offset() as usize;
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let file_size = ph.file_size() as usize;
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2018-07-10 20:53:40 +04:00
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use core::slice;
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let target = unsafe { slice::from_raw_parts_mut(virt_addr as *mut u8, file_size) };
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target.copy_from_slice(&data[offset..offset + file_size]);
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2018-05-17 17:06:13 +04:00
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}
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2018-07-10 20:53:40 +04:00
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if is32 {
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unsafe {
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// TODO: full argc & argv
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*(user_stack_top as *mut u32).offset(-1) = 0; // argv
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*(user_stack_top as *mut u32).offset(-2) = 0; // argc
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}
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}
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});
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}
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2018-05-12 21:57:49 +04:00
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2018-07-16 20:23:02 +04:00
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Context {
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arch: unsafe {
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ArchContext::new_user_thread(
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entry_addr, user_stack_top - 8, memory_set.kstack_top(), is32, memory_set.token())
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},
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2018-06-02 21:10:20 +04:00
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memory_set,
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2018-05-12 18:57:30 +04:00
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}
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2018-04-28 06:40:31 +04:00
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}
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2018-05-13 11:06:44 +04:00
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/// Fork
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2018-06-02 21:10:20 +04:00
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pub fn fork(&self, tf: &TrapFrame) -> Self {
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2018-05-13 17:13:57 +04:00
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// Clone memory set, make a new page table
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2018-07-10 20:53:40 +04:00
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let memory_set = self.memory_set.clone();
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2018-05-13 17:13:57 +04:00
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// Copy data to temp space
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2018-07-16 20:23:02 +04:00
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use alloc::vec::Vec;
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2018-05-13 17:13:57 +04:00
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let datas: Vec<Vec<u8>> = memory_set.iter().map(|area| {
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Vec::from(unsafe { area.as_slice() })
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}).collect();
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// Temporary switch to it, in order to copy data
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2018-07-10 20:53:40 +04:00
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unsafe {
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memory_set.with(|| {
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for (area, data) in memory_set.iter().zip(datas.iter()) {
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unsafe { area.as_slice_mut() }.copy_from_slice(data.as_slice())
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}
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});
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}
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2018-05-13 17:13:57 +04:00
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2018-07-16 20:23:02 +04:00
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Context {
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arch: unsafe { ArchContext::new_fork(tf, memory_set.kstack_top(), memory_set.token()) },
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2018-06-02 21:10:20 +04:00
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memory_set,
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2018-05-13 17:13:57 +04:00
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}
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2018-05-13 11:06:44 +04:00
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}
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2018-07-16 20:23:02 +04:00
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}
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2018-05-19 12:32:18 +04:00
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2018-07-16 20:23:02 +04:00
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impl Debug for Context {
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fn fmt(&self, f: &mut Formatter) -> Result<(), Error> {
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write!(f, "{:?}", self.arch)
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2018-05-19 12:32:18 +04:00
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}
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2018-05-11 20:22:00 +04:00
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}
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2018-07-10 20:53:40 +04:00
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fn memory_set_from<'a>(elf: &'a ElfFile<'a>) -> MemorySet {
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let mut set = MemorySet::new();
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for ph in elf.program_iter() {
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2018-07-14 07:56:55 +04:00
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if ph.get_type() != Ok(Type::Load) {
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continue;
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}
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2018-07-10 20:53:40 +04:00
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let (virt_addr, mem_size, flags) = match ph {
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ProgramHeader::Ph32(ph) => (ph.virtual_addr as usize, ph.mem_size as usize, ph.flags),
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ProgramHeader::Ph64(ph) => (ph.virtual_addr as usize, ph.mem_size as usize, ph.flags),
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};
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set.push(MemoryArea::new(virt_addr, virt_addr + mem_size, memory_attr_from(flags), ""));
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2018-05-11 20:22:00 +04:00
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}
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2018-07-10 20:53:40 +04:00
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set
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2018-05-12 18:57:30 +04:00
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}
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2018-07-10 20:53:40 +04:00
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fn memory_attr_from(elf_flags: Flags) -> MemoryAttr {
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let mut flags = MemoryAttr::default().user();
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// TODO: handle readonly
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if elf_flags.is_execute() { flags = flags.execute(); }
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flags
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2018-04-27 19:10:39 +04:00
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}
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