forked from AbleOS/ableos
250 lines
7 KiB
Rust
250 lines
7 KiB
Rust
use std::fs;
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use {
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error_stack::{bail, report, Context, IntoReport, Result, ResultExt},
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fatfs::{FileSystem, FormatVolumeOptions, FsOptions, ReadWriteSeek},
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std::{fmt::Display, fs::File, io, path::Path, process::Command},
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};
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fn main() -> Result<(), Error> {
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env_logger::init();
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let mut args = std::env::args();
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args.next();
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// let disk_meta = fs::metadata("target/disk.img").unwrap();
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// let config_meta = fs::metadata("system.toml").unwrap();
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// if disk_meta.modified().unwrap() < config_meta.modified().unwrap() {
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// // TODO: work on adding in system.toml support
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// // TODO: rebuild the disk
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// }
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match args.next().as_deref() {
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Some("build" | "b") => {
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let mut release = false;
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let mut target = Target::X86_64;
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for arg in args {
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if arg == "-r" || arg == "--release" {
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release = true;
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}
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if arg == "rv64" || arg == "riscv64" || arg == "riscv64-virt" {
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target = Target::Riscv64Virt;
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}
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}
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build(release, target).change_context(Error::Build)
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}
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Some("run" | "r") => {
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let mut release = false;
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let mut target = Target::X86_64;
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for arg in args {
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if arg == "-r" || arg == "--release" {
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release = true;
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}
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if arg == "rv64" || arg == "riscv64" || arg == "riscv64-virt" {
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target = Target::Riscv64Virt;
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}
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}
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build(release, target)?;
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run(release, target)
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}
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Some("help" | "h") => {
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println!(concat!(
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"AbleOS RepBuild\n",
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"Subcommands:\n",
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" build (b): Build a bootable disk image\n",
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" help (h): Print this message\n",
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" run (r): Build and run AbleOS in QEMU\n\n",
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"Options for build and run:\n",
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" -r: build in release mode",
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" [target]: sets target"
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),);
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Ok(())
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}
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_ => Err(report!(Error::InvalidSubCom)),
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}
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}
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fn get_fs() -> Result<FileSystem<impl ReadWriteSeek>, io::Error> {
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let path = Path::new("target/disk.img");
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match std::fs::metadata(path) {
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Err(e) if e.kind() == io::ErrorKind::NotFound => (),
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Err(e) => bail!(e),
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Ok(_) => {
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return FileSystem::new(
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File::options().read(true).write(true).open(path)?,
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FsOptions::new(),
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)
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.into_report()
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}
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}
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let mut img = File::options()
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.read(true)
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.write(true)
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.create(true)
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.open(path)?;
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img.set_len(1024 * 1024 * 64)?;
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fatfs::format_volume(&mut img, FormatVolumeOptions::new())?;
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let fs = FileSystem::new(img, FsOptions::new())?;
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let bootdir = fs.root_dir().create_dir("efi")?.create_dir("boot")?;
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io::copy(
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&mut File::open("limine/BOOTX64.EFI")
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.into_report()
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.attach_printable("copying Limine bootloader (have you pulled the submodule?)")?,
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&mut bootdir.create_file("bootx64.efi")?,
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)?;
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io::copy(
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&mut File::open("repbuild/limine.cfg")?,
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&mut fs.root_dir().create_file("limine.cfg")?,
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)?;
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io::copy(
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&mut File::open("repbuild/background.bmp")?,
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&mut fs.root_dir().create_file("background.bmp")?,
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)?;
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drop(bootdir);
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Ok(fs)
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}
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fn build(release: bool, target: Target) -> Result<(), Error> {
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let fs = get_fs().change_context(Error::Io)?;
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let mut com = Command::new("cargo");
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com.current_dir("kernel");
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com.args(["b"]);
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if release {
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com.arg("-r");
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}
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match target {
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Target::Riscv64Virt => {
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com.args(["--target", "targets/riscv64-virt-ableos.json"]);
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}
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_ => {}
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}
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match com.status() {
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Ok(s) if s.code() != Some(0) => bail!(Error::Build),
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Err(e) => bail!(report!(e).change_context(Error::Build)),
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_ => (),
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}
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if target != Target::X86_64 {
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return Ok(());
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}
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(|| -> std::io::Result<_> {
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io::copy(
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&mut File::open(
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Path::new("target/x86_64-ableos")
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.join(if release { "release" } else { "debug" })
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.join("kernel"),
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)?,
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&mut fs.root_dir().create_file("kernel")?,
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)
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.map(|_| ())
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})()
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.into_report()
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.change_context(Error::Io)
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}
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fn run(release: bool, target: Target) -> Result<(), Error> {
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let mut com = match target {
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Target::X86_64 => Command::new("qemu-system-x86_64"),
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Target::Riscv64Virt => Command::new("qemu-system-riscv64"),
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};
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if target == Target::X86_64 {
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#[rustfmt::skip]
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com.args([
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"-bios",
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std::env::var("REPBUILD_QEMU_FIRMWARE_PATH")
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.as_deref()
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.unwrap_or("/usr/share/ovmf/x64/OVMF_CODE.fd"),
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"-drive", "file=target/disk.img,format=raw",
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"-m", "4G",
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// "-serial", "stdio",
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"-smp", "cores=4",
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// "-vga", "cirrus",
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// "-device", "ati-vga",
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// "-device", "virtio-gpu-pci",
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// "-device", "virtio-serial,id=virtio-serial0",
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// "-chardev", "stdio,id=char0,mux=on",
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// "-device", "virtconsole,chardev=char0",
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// "-device", "virtio-mouse-pci",
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// "-device", "ati-vga", "model=rage128p"
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]);
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#[cfg(target_os = "linux")]
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{
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// com.args(["-enable-kvm", "-cpu", "host"]);
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}
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}
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if target == Target::Riscv64Virt {
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#[rustfmt::skip]
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com.args([
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"-M", "virt",
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"-m", "128M",
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"-serial", "stdio",
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"-kernel",
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if release {
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"target/riscv64-virt-ableos/release/kernel"
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} else {
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"target/riscv64-virt-ableos/debug/kernel"
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}
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]);
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}
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match com
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.status()
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.into_report()
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.change_context(Error::ProcessSpawn)?
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{
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s if s.success() => Ok(()),
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s => Err(report!(Error::Qemu(s.code()))),
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}
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}
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#[derive(Clone, Copy, PartialEq, Eq)]
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enum Target {
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X86_64,
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Riscv64Virt,
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}
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#[derive(Debug)]
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enum Error {
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Build,
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InvalidSubCom,
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Io,
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ProcessSpawn,
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Qemu(Option<i32>),
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}
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impl Context for Error {}
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impl Display for Error {
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fn fmt(&self, f: &mut std::fmt::Formatter<'_>) -> std::fmt::Result {
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match self {
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Self::Build => f.write_str("failed to build the kernel"),
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Self::InvalidSubCom => {
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f.write_str("missing or invalid subcommand (available: build, run)")
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}
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Self::Io => f.write_str("IO error"),
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Self::ProcessSpawn => f.write_str("failed to spawn a process"),
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Self::Qemu(Some(c)) => write!(f, "QEMU Error: {c}"),
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Self::Qemu(None) => write!(f, "QEMU Error: interrupted by signal"),
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}
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}
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}
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