forked from koniifer/ableos
169 lines
4.3 KiB
Rust
169 lines
4.3 KiB
Rust
#![allow(clippy::empty_loop)]
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use acpi::AcpiTables;
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use x86_64::instructions::interrupts::{disable, enable};
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use crate::scratchpad;
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use {
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crate::{
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arch::{init, sloop},
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boot_conf,
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boot_conf::BootConfig,
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capabilities::FileAccess,
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experiments::{
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info::master,
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systeminfo::{KERNEL_VERSION, RELEASE_TYPE},
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},
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file::PathRep,
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relib::network::socket::{SimpleSock, Socket},
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scheduler::SCHEDULER,
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VgaBuffer, SCREEN_BUFFER,
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},
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alloc::{
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format,
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string::{String, ToString},
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vec,
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},
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core::sync::atomic::{AtomicU64, Ordering::*},
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facepalm::start_facepalm,
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lazy_static::lazy_static,
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log::*,
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shadeable::pixel_format::from_vga_16,
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vga::colors::Color16,
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};
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lazy_static! {
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// TODO: Change this structure to allow for multiple cores loaded
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pub static ref TICK: AtomicU64 = AtomicU64::new(0);
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pub static ref BOOT_CONF: BootConfig = boot_conf::BootConfig::new();
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}
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/// The main entry point of the kernel
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#[no_mangle]
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pub fn kernel_main() -> ! {
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init::init();
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log::set_max_level(BOOT_CONF.log_level());
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let mut scheduler = SCHEDULER.lock();
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use crate::scheduler::Priority::*;
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let mut process_1 = scheduler.new_process(High);
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process_1.capabilities.files = FileAccess::Some(vec![PathRep {
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location: FileLocations::Home,
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file_name: "test".to_string(),
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}]);
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scheduler.add_process(process_1);
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for ref_process in &scheduler.list {
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trace!("{:?}", ref_process);
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}
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drop(scheduler);
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use crate::proto_filetable::file::FileLocations;
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if false {
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let mut sock_print_id = SimpleSock::new();
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sock_print_id.register_protocol("Screen Printer".to_string());
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sock_print_id.write(format!("🐑").into());
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let mut mode = SCREEN_BUFFER.lock();
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mode.force_redraw();
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for current in (*String::from_utf8_lossy(&sock_print_id.peek().unwrap())).chars() {
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mode.draw_char(0, 0, current, from_vga_16(Color16::Red));
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}
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mode.copy_to_buffer();
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}
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// TODO: create a scratchpad module
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if false {
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// Currently not implemented
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let acpi_handler = AcpiStruct {};
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let mut 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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}
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start_facepalm();
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scratchpad();
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if false {
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disable();
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let mut mode = SCREEN_BUFFER.lock();
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mode.force_redraw();
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mode.copy_to_buffer();
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mode.clear();
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mode.draw_char(0, 0, 'v', 0xff00ffff);
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mode.copy_to_buffer();
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drop(mode);
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enable()
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// sloop::halt();
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}
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sloop()
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}
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/// called by arch specific timers to tick up all kernel related functions
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pub fn tick() {
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let mut data = TICK.load(Relaxed);
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data += 1;
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crate::kernel_state::KERNEL_STATE.lock().update_state();
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// let mut scheduler = SCHEDULER.lock();
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// scheduler.bump_exec();
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// drop(scheduler);
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TICK.store(data, Relaxed)
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}
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pub fn cpu_socket_startup() {
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let mut cpu_info_socket = SimpleSock::new();
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cpu_info_socket.register_protocol("CPU_INFO".to_string());
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let x = master().unwrap();
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let _xyz = x.brand_string().unwrap();
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}
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pub fn log_version_data() {
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info!("{} v{}", RELEASE_TYPE, KERNEL_VERSION);
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info!(
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"Brand String: {}",
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master().unwrap().brand_string().unwrap()
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);
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}
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// TODO: Split up into the randomness and the password generation
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pub fn generate_process_pass() -> u128 {
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// TODO: Move this into entropy_pool module
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use rdrand::RdRand;
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let gen = RdRand::new().unwrap();
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// TODO: Split off into process module
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let ret = (gen.try_next_u64().unwrap() as u128) << 64 | (gen.try_next_u64().unwrap() as u128);
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ret
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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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