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https://github.com/rcore-os/rCore-Tutorial-v3.git
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Using sbi-rt instead of asm && update rustsbi-qemu to latest
rustsbi-qemu version: a4f0bbe44d9f2f1069a9e5becd09f291e542852c
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@ -14,6 +14,8 @@ bitflags = "1.2.1"
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xmas-elf = "0.7.0"
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virtio-drivers = { git = "https://github.com/rcore-os/virtio-drivers", rev = "4ee80e5" }
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easy-fs = { path = "../easy-fs" }
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log = "0.4"
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sbi-rt = { version = "0.0.2", features = ["legacy"] }
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[profile.release]
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debug = true
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@ -7,83 +7,3 @@ pub const MMIO: &[(usize, usize)] = &[
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];
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pub type BlockDeviceImpl = crate::drivers::block::VirtIOBlock;
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//ref:: https://github.com/andre-richter/qemu-exit
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use core::arch::asm;
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const EXIT_SUCCESS: u32 = 0x5555; // Equals `exit(0)`. qemu successful exit
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const EXIT_FAILURE_FLAG: u32 = 0x3333;
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const EXIT_FAILURE: u32 = exit_code_encode(1); // Equals `exit(1)`. qemu failed exit
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const EXIT_RESET: u32 = 0x7777; // qemu reset
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pub trait QEMUExit {
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/// Exit with specified return code.
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///
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/// Note: For `X86`, code is binary-OR'ed with `0x1` inside QEMU.
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fn exit(&self, code: u32) -> !;
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/// Exit QEMU using `EXIT_SUCCESS`, aka `0`, if possible.
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///
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/// Note: Not possible for `X86`.
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fn exit_success(&self) -> !;
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/// Exit QEMU using `EXIT_FAILURE`, aka `1`.
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fn exit_failure(&self) -> !;
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}
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/// RISCV64 configuration
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pub struct RISCV64 {
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/// Address of the sifive_test mapped device.
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addr: u64,
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}
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/// Encode the exit code using EXIT_FAILURE_FLAG.
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const fn exit_code_encode(code: u32) -> u32 {
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(code << 16) | EXIT_FAILURE_FLAG
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}
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impl RISCV64 {
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/// Create an instance.
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pub const fn new(addr: u64) -> Self {
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RISCV64 { addr }
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}
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}
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impl QEMUExit for RISCV64 {
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/// Exit qemu with specified exit code.
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fn exit(&self, code: u32) -> ! {
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// If code is not a special value, we need to encode it with EXIT_FAILURE_FLAG.
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let code_new = match code {
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EXIT_SUCCESS | EXIT_FAILURE | EXIT_RESET => code,
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_ => exit_code_encode(code),
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};
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unsafe {
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asm!(
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"sw {0}, 0({1})",
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in(reg)code_new, in(reg)self.addr
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);
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// For the case that the QEMU exit attempt did not work, transition into an infinite
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// loop. Calling `panic!()` here is unfeasible, since there is a good chance
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// this function here is the last expression in the `panic!()` handler
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// itself. This prevents a possible infinite loop.
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loop {
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asm!("wfi", options(nomem, nostack));
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}
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}
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}
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fn exit_success(&self) -> ! {
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self.exit(EXIT_SUCCESS);
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}
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fn exit_failure(&self) -> ! {
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self.exit(EXIT_FAILURE);
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}
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}
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const VIRT_TEST: u64 = 0x100000;
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pub const QEMU_EXIT_HANDLE: RISCV64 = RISCV64::new(VIRT_TEST);
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@ -14,5 +14,5 @@ fn panic(info: &PanicInfo) -> ! {
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} else {
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println!("[kernel] Panicked: {}", info.message().unwrap());
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}
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shutdown()
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shutdown(true)
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}
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@ -1,48 +1,30 @@
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//! SBI call wrappers
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#![allow(unused)]
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use core::arch::asm;
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const SBI_SET_TIMER: usize = 0;
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const SBI_CONSOLE_PUTCHAR: usize = 1;
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const SBI_CONSOLE_GETCHAR: usize = 2;
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const SBI_CLEAR_IPI: usize = 3;
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const SBI_SEND_IPI: usize = 4;
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const SBI_REMOTE_FENCE_I: usize = 5;
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const SBI_REMOTE_SFENCE_VMA: usize = 6;
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const SBI_REMOTE_SFENCE_VMA_ASID: usize = 7;
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const SBI_SHUTDOWN: usize = 8;
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/// general sbi call
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#[inline(always)]
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fn sbi_call(which: usize, arg0: usize, arg1: usize, arg2: usize) -> usize {
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let mut ret;
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unsafe {
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asm!(
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"li x16, 0",
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"ecall",
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inlateout("x10") arg0 => ret,
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in("x11") arg1,
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in("x12") arg2,
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in("x17") which,
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);
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}
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ret
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}
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/// use sbi call to set timer
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pub fn set_timer(timer: usize) {
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sbi_call(SBI_SET_TIMER, timer, 0, 0);
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}
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/// use sbi call to putchar in console (qemu uart handler)
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pub fn console_putchar(c: usize) {
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sbi_call(SBI_CONSOLE_PUTCHAR, c, 0, 0);
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#[allow(deprecated)]
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sbi_rt::legacy::console_putchar(c);
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}
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/// use sbi call to getchar from console (qemu uart handler)
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pub fn console_getchar() -> usize {
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sbi_call(SBI_CONSOLE_GETCHAR, 0, 0, 0)
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#[allow(deprecated)]
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sbi_rt::legacy::console_getchar()
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}
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/// use sbi call to set timer
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pub fn set_timer(timer: usize) {
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sbi_rt::set_timer(timer as _);
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}
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/// use sbi call to shutdown the kernel
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pub fn shutdown() -> ! {
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sbi_call(SBI_SHUTDOWN, 0, 0, 0);
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panic!("It should shutdown!");
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pub fn shutdown(failure: bool) -> ! {
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use sbi_rt::{system_reset, NoReason, Shutdown, SystemFailure};
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if !failure {
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system_reset(Shutdown, NoReason);
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} else {
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system_reset(Shutdown, SystemFailure);
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}
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unreachable!()
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}
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