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95 lines
2.7 KiB
Rust
95 lines
2.7 KiB
Rust
// test.rs
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use crate::{kmem::{kfree, kmalloc},
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process::{Process,
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NEXT_PID,
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PROCESS_LIST,
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PROCESS_STARTING_ADDR,
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STACK_ADDR,
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STACK_PAGES, ProcessState, ProcessData},
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syscall::syscall_fs_read};
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use crate::page::{zalloc, Table, map, EntryBits};
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use crate::cpu::{memcpy, TrapFrame, CpuMode, satp_fence_asid, SatpMode, build_satp};
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pub fn test_block() {
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// Let's test the block driver!
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let bytes_to_read = 1024 * 50;
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let buffer = kmalloc(bytes_to_read);
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let bytes_read = syscall_fs_read(8, 8, buffer, bytes_to_read as u32, 0);
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if bytes_read != 12288 {
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println!(
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"Unable to load program at inode 8, which should be \
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12,288 bytes, got {}",
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bytes_read
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);
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}
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else {
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// Let's get this program running!
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let program_pages = (bytes_read / 4096) + 1;
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let my_pid = unsafe { NEXT_PID + 1 };
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unsafe {
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NEXT_PID += 1;
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}
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let mut my_proc=
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Process { frame: zalloc(1) as *mut TrapFrame,
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stack: zalloc(STACK_PAGES),
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pid: my_pid,
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root: zalloc(1) as *mut Table,
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state: ProcessState::Running,
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data: ProcessData::zero(),
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sleep_until: 0,
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program: zalloc(program_pages)
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};
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// Map the program in the MMU.
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let ptr = my_proc.program;
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unsafe {
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memcpy(ptr, buffer, bytes_read);
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}
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let table = unsafe { my_proc.root.as_mut().unwrap() };
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for i in 0..program_pages {
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let vaddr = PROCESS_STARTING_ADDR + (i << 12);
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let paddr = ptr as usize + (i << 12);
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map(table, vaddr, paddr, EntryBits::UserReadWriteExecute.val(), 0);
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}
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// Map the stack
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let ptr = my_proc.stack as *mut u8;
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for i in 0..STACK_PAGES {
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let vaddr = STACK_ADDR + (i << 12);
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let paddr = ptr as usize + (i << 12);
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map(table, vaddr, paddr, EntryBits::UserReadWrite.val(), 0);
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}
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// Set everything up in the trap frame
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unsafe {
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(*my_proc.frame).pc = PROCESS_STARTING_ADDR;
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// Stack pointer
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(*my_proc.frame).regs[2] =
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STACK_ADDR as usize + STACK_PAGES * 4096;
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(*my_proc.frame).mode = CpuMode::User as usize;
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(*my_proc.frame).pid = my_proc.pid as usize;
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}
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unsafe {
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(*my_proc.frame).satp =
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build_satp(
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SatpMode::Sv39,
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my_proc.pid as usize,
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my_proc.root as usize,
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);
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}
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if let Some(mut pl) = unsafe { PROCESS_LIST.take() } {
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pl.push_back(my_proc);
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unsafe {
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PROCESS_LIST.replace(pl);
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}
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}
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else {
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println!("Unable to spawn process.");
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// Since my_proc couldn't enter the process list, it will
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// be dropped and all of the associated allocations will
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// be deallocated.
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}
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}
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println!();
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kfree(buffer);
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}
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