forked from AbleOS/ableos
355 lines
9.6 KiB
Rust
355 lines
9.6 KiB
Rust
/*
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* Copyright (c) 2022, Able <able@ablecorp.us>
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*
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* SPDX-License-Identifier: MPL-2.0
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*/
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use crate::arch::drivers::sysinfo::master;
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use crate::arch::interrupts::{reset_pit_for_cpu, set_pit_2};
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use crate::devices::pci::ide::{Channel, Drive};
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use crate::devices::pci::{PciDevice, PCI_DEVICES};
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use crate::filesystem;
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use crate::filesystem::vfs::VFS;
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use crate::systeminfo::{KERNEL_VERSION, RELEASE_TYPE};
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use crate::time::fetch_time;
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use crate::{
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arch::shutdown, rhai_shell::KEYBUFF, vterm::VTerm, wasm_jumploader::run_program, KERNEL_STATE,
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};
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use acpi::{AcpiTables, PlatformInfo};
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use cpuio::{inb, outb};
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use kernel::allocator::ALLOCATOR;
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use spin::Lazy;
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use x86_64::instructions::interrupts::{disable, enable};
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pub const BANNER_WIDTH: &str =
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"================================================================================";
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// TODO: move to a better place
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#[derive(Clone, Copy, Debug, PartialEq, Eq)]
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pub struct AcpiStruct {}
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impl acpi::AcpiHandler for AcpiStruct {
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unsafe fn map_physical_region<T>(
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&self,
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physical_address: usize,
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size: usize,
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) -> acpi::PhysicalMapping<Self, T> {
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info!("PHYS ADDR: {:?}", physical_address);
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info!("Size: {:?}", size);
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todo!("map_physical_region");
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}
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fn unmap_physical_region<T>(_region: &acpi::PhysicalMapping<Self, T>) {
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todo!("unmap_physical_region");
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}
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}
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// pub static TERM: Lazy<spin::Mutex<VTerm>> = Lazy::new(|| {
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// trace!("mutex");
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// loop {}
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// let mutex = spin::Mutex::new({
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// trace!("vterm");
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// let vterm = VTerm::new();
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// trace!("vterm-done");
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// vterm
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// });
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// trace!("mutex-done");
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// mutex
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// });
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#[derive(Debug)]
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pub struct Path {
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pub path: Vec<String>,
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}
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impl Path {
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pub fn new(path: String) -> Self {
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let mut path_vec_string = vec![];
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for part in path.split(&['\\', '/'][..]) {
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path_vec_string.push(part.to_string());
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}
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Path {
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path: path_vec_string,
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}
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}
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}
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/// Experimental scratchpad for testing.
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pub fn scratchpad() {
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// bruh();
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// panic!(":>");
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// for c in 0..144_697 {
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// trace!("{:?}", char::from_u32(c));
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// }
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// bruh();
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disable();
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let tick_time = fetch_time();
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let hostname = KERNEL_STATE.lock().hostname.clone();
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let allocator = ALLOCATOR.lock();
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let size = allocator.size();
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let used = allocator.used();
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drop(allocator);
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enable();
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println!(
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"{}
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,-------. OS: \0BLUE\0AbleOS\0RESET\0
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,'\\ _ _`. Host: \0PINK\0{}\0RESET\0
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/ \\)_)-)_)-\\ Kernel: \0RED\0AKern-{}-v{}\0RESET\0
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: : Uptime: \0GREEN\0{}\0RESET\0
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\\ / Packages: None
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\\ / Shell: BuiltinShell
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`. ,' Resolution: 640x480
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`. ,' Terminal: VGABuffer
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`.,' CPU: {}
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/\\`. ,-._ GPU: VGA Compatible
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`-' Memory: {}/{}
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{}",
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// include_str!("../assets/balloon.txt"),
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// kstate.hostname,
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BANNER_WIDTH,
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hostname,
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RELEASE_TYPE,
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KERNEL_VERSION,
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tick_time,
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master().unwrap().brand_string().unwrap(),
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// "",
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// mem
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used,
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size,
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BANNER_WIDTH
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);
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let pci_ide_device = {
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let pci_devices = PCI_DEVICES.lock();
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pci_devices
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.iter()
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.find_map(|device_ref| {
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let device = device_ref.lock();
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if let PciDevice::Ide(_) = &*device {
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Some(device_ref.clone())
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} else {
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None
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}
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})
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.unwrap()
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};
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{
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let mut pci_ide_device = pci_ide_device.lock();
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if let PciDevice::Ide(device) = &mut *pci_ide_device {
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let mut first_sector = Vec::with_capacity(512);
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device
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.read(Channel::Primary, Drive::Master, 0, 1, &mut first_sector)
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.unwrap();
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trace!("IDE Primary/Master sector 0: {first_sector:?}");
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}
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}
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real_shell();
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}
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pub fn acpi() {
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let acpi_handler = AcpiStruct {};
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let _table;
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unsafe {
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_table = AcpiTables::search_for_rsdp_bios(acpi_handler);
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}
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match _table.unwrap().platform_info().unwrap() {
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PlatformInfo {
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power_profile,
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interrupt_model,
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..
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} => {
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info!("{:?}", power_profile);
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info!("{:?}", interrupt_model);
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// info!("{:?}", processor_info.unwrap());
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// info!("{:?}", pm_timer.unwrap());
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}
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}
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}
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pub fn real_shell() {
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let prompt = "-> ";
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let _current_dir = "/".to_string();
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let current_user = "able".to_string();
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let mut buf = String::new();
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print!("{}", prompt);
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// panic!(":<");
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loop {
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match x86_64::instructions::interrupts::without_interrupts(|| KEYBUFF.lock().pop()) {
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Some('\n') => {
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// panic!();
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println!();
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// match engine.eval_with_scope::<rhai::Dynamic>(&mut scope, &buf) {
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// Ok(o) => println!("{o}"),
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// Err(e) => println!("Eval error: {e}"),
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// };
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if !buf.is_empty() {
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command_parser(current_user.clone(), buf.clone());
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}
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buf.clear();
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print!("{}", prompt);
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}
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Some('\u{8}') => {
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print!("\u{8}");
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buf.pop();
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}
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Some('\u{0009}') => {
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buf.push(' ');
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buf.push(' ');
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buf.push(' ');
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buf.push(' ');
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}
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Some(chr) => {
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buf.push(chr);
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print!("{}", chr);
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}
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None => {
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// trace!("{}", buf);
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}
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}
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}
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}
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pub fn command_parser(user: String, command: String) {
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let mut iter = command.split_whitespace();
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let current_path = Path::new("/home/able".to_string());
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trace!("Current path: {:?}", current_path);
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let current_path = "/home/able/";
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let bin_name = iter.next().unwrap();
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let mut strin = String::new();
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for stri in iter.clone() {
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trace!("{}", stri);
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strin.push_str(stri);
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}
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let conf_args;
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match clparse::Arguments::parse_from_string(strin) {
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Ok(ok) => conf_args = ok,
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Err(err) => {
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println!("ERROR: {}", err);
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error!("{}", err);
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return;
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}
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};
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match bin_name {
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// note: able asked for rhaish to stay in the repo but will be removed
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// in the future so just comment it out for now
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// "rhai" => {
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// shell();
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// }
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"list" | "ls" => {
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let mut vfs = VFS.lock();
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let handle = vfs.resolve(current_path).unwrap();
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let dir = vfs.fs_node(handle).unwrap();
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drop(vfs);
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for dir_entry in dir.directory().unwrap() {
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println!("{}", dir_entry.name());
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}
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}
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"echo" => match conf_args.1.arguments.get("p") {
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Some(path) => echo_file(path.to_string()),
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None => println!("No path provided"),
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},
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"test" => {}
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"quit" => shutdown(),
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"tree" => filesystem::tree("/").unwrap(),
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_ => {
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let file = {
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let mut vfs = VFS.lock();
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let path = format!("/home/{user}/bins/{bin_name}.wasm");
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let handle = if let Ok(file) = vfs.resolve(path) {
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file
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} else {
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let path = format!("/shared/bins/{bin_name}.wasm");
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if let Ok(file) = vfs.resolve(path) {
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file
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} else {
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let path = format!("/system/bins/{bin_name}.wasm");
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match vfs.resolve(path) {
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Ok(file) => file,
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Err(error) => {
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trace!("{:?}", error);
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println!("No such binary: {}", bin_name);
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error!("No such binary: {}", bin_name);
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return;
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}
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}
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}
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};
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vfs.fs_node(handle).unwrap()
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};
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let mut binary = vec![];
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file.read(0, file.size(), &mut binary).unwrap();
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let args = iter.collect::<Vec<&str>>();
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println!("{:?}", args);
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run_program(&binary);
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}
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}
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}
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pub fn sound(n_frequency: u32) {
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let div: u32;
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let tmp: u8;
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div = 1193180 / n_frequency;
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unsafe {
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outb(0xb6, 0x43);
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set_pit_2(div);
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// And play the sound using the PC speaker
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tmp = inb(0x61);
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if tmp != (tmp | 3) {
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outb(tmp | 3, 0x61);
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}
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}
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}
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pub fn sound_off() {
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unsafe {
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let tmp = inb(0x61) & 0xFC;
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outb(tmp, 0x61)
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};
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reset_pit_for_cpu();
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}
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pub fn echo_file(path: String) {
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let mut current_path = String::from("/");
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current_path.push_str(&path);
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let mut vfs = VFS.lock();
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let handle = vfs.resolve(¤t_path).unwrap();
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let file = vfs.fs_node(handle).unwrap();
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if file.is_dir() {
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// println!("{} is a directory", path);
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} else {
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let mut file_contents = Vec::new();
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file.read(0, file.size(), &mut file_contents).unwrap();
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let file_contents_str = String::from_utf8_lossy(&file_contents);
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println!("{}", file_contents_str);
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}
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}
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