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use alloc::rc::Rc;
use arch::x86_64::kernel::apic;
use arch::x86_64::kernel::idt;
use arch::x86_64::kernel::irq;
use arch::x86_64::kernel::percore::*;
use arch::x86_64::kernel::processor;
use config::*;
use core::cell::RefCell;
use core::{mem, ptr};
use environment;
use scheduler::task::{Task, TaskFrame, TaskTLS};
#[repr(C, packed)]
struct State {
fs: usize,
r15: usize,
r14: usize,
r13: usize,
r12: usize,
r11: usize,
r10: usize,
r9: usize,
r8: usize,
rdi: usize,
rsi: usize,
rbp: usize,
rbx: usize,
rdx: usize,
rcx: usize,
rax: usize,
rflags: usize,
rip: usize,
}
#[derive(Default)]
pub struct TaskStacks {
is_boot_stack: bool,
pub stack: usize,
pub ist0: usize,
}
impl TaskStacks {
pub fn new() -> Self {
let stack = ::mm::allocate(DEFAULT_STACK_SIZE, false);
debug!("Allocating stack {:#X}", stack);
let ist0 = ::mm::allocate(KERNEL_STACK_SIZE, false);
debug!("Allocating ist0 {:#X}", ist0);
Self {
is_boot_stack: false,
stack: stack,
ist0: ist0,
}
}
pub fn from_boot_stacks() -> Self {
let tss = unsafe { &(*PERCORE.tss.get()) };
let stack = tss.rsp[0] as usize + 0x10 - KERNEL_STACK_SIZE;
debug!("Using boot stack {:#X}", stack);
let ist0 = tss.ist[0] as usize + 0x10 - KERNEL_STACK_SIZE;
debug!("IST0 is located at {:#X}", ist0);
Self {
is_boot_stack: true,
stack: stack,
ist0: ist0,
}
}
}
impl Drop for TaskStacks {
fn drop(&mut self) {
if !self.is_boot_stack {
debug!(
"Deallocating stack {:#X} and ist0 {:#X}",
self.stack, self.ist0
);
::mm::deallocate(self.stack, DEFAULT_STACK_SIZE);
::mm::deallocate(self.ist0, KERNEL_STACK_SIZE);
}
}
}
extern "C" fn leave_task() -> ! {
core_scheduler().exit(0);
}
#[cfg(test)]
extern "C" fn task_entry(func: extern "C" fn(usize), arg: usize) {}
#[cfg(not(test))]
extern "C" fn task_entry(func: extern "C" fn(usize), arg: usize) {
let tdata_size: usize = environment::get_tls_filesz();
let tls_size = environment::get_tls_memsz();
if tls_size > 0 {
let tls_allocation_size = align_up!(tls_size, 32) + mem::size_of::<usize>();
let tls = TaskTLS::new(tls_allocation_size);
let tls_pointer = tls.address() + align_up!(tls_size, 32);
processor::writefs(tls_pointer);
debug!(
"Set FS to 0x{:x}, TLS size 0x{:x}, TLS data size 0x{:x}",
tls_pointer, tls_size, tdata_size
);
unsafe {
*(tls_pointer as *mut usize) = tls_pointer;
ptr::copy_nonoverlapping(
environment::get_tls_start() as *const u8,
tls.address() as *mut u8,
tdata_size,
);
ptr::write_bytes(
(tls.address() as *const u8 as usize + tdata_size) as *mut u8,
0,
tls_size - tdata_size,
);
}
let mut current_task_borrowed = core_scheduler().current_task.borrow_mut();
debug!(
"Set up TLS for task {} at address {:#X}",
current_task_borrowed.id,
align_up!(tls.address(), 32)
);
current_task_borrowed.tls = Some(Rc::new(RefCell::new(tls)));
}
func(arg);
}
impl TaskFrame for Task {
fn create_stack_frame(&mut self, func: extern "C" fn(usize), arg: usize) {
unsafe {
ptr::write_bytes(self.stacks.stack as *mut u8, 0xCD, DEFAULT_STACK_SIZE);
let mut stack = (self.stacks.stack + DEFAULT_STACK_SIZE - 0x10) as *mut usize;
*stack = 0xDEAD_BEEFusize;
stack = (stack as usize - mem::size_of::<usize>()) as *mut usize;
*stack = leave_task as usize;
stack = (stack as usize - mem::size_of::<State>()) as *mut usize;
let state = stack as *mut State;
ptr::write_bytes(state as *mut u8, 0, mem::size_of::<State>());
(*state).rip = task_entry as usize;
(*state).rdi = func as usize;
(*state).rsi = arg as usize;
(*state).rflags = 0x1202usize;
self.last_stack_pointer = stack as usize;
}
}
}
extern "x86-interrupt" fn timer_handler(_stack_frame: &mut irq::ExceptionStackFrame) {
core_scheduler().blocked_tasks.lock().handle_waiting_tasks();
apic::eoi();
core_scheduler().scheduler();
}
pub fn install_timer_handler() {
idt::set_gate(apic::TIMER_INTERRUPT_NUMBER, timer_handler as usize, 0);
}