f31522130f
Build system (5 gaps hardened): - COOKBOOK_OFFLINE defaults to true (fork-mode) - normalize_patch handles diff -ruN format - New 'repo validate-patches' command (25/25 relibc patches) - 14 patched Qt/Wayland/display recipes added to protected list - relibc archive regenerated with current patch chain Boot fixes (fixable): - Full ISO EFI partition: 16 MiB → 1 MiB (matches mini, BIOS hardcoded 2 MiB offset) - D-Bus system bus: absolute /usr/bin/dbus-daemon path (was skipped) - redbear-sessiond: absolute /usr/bin/redbear-sessiond path (was skipped) - daemon framework: silenced spurious INIT_NOTIFY warnings for oneshot_async services (P0-daemon-silence-init-notify.patch) - udev-shim: demoted INIT_NOTIFY warning to INFO (expected for oneshot_async) - relibc: comprehensive named semaphores (sem_open/close/unlink) replacing upstream todo!() stubs - greeterd: Wayland socket timeout 15s → 30s (compositor DRM wait) - greeter-ui: built and linked (header guard unification, sem_compat stubs removed) - mc: un-ignored in both configs, fixed glib/libiconv/pcre2 transitive deps - greeter config: removed stale keymapd dependency from display/greeter services - prefix toolchain: relibc headers synced, _RELIBC_STDLIB_H guard unified Unfixable (diagnosed, upstream): - i2c-hidd: abort on no-I2C-hardware (QEMU) — process::exit → relibc abort - kded6/greeter-ui: page fault 0x8 — Qt library null deref - Thread panics fd != -1 — Rust std library on Redox - DHCP timeout / eth0 MAC — QEMU user-mode networking - hwrngd/thermald — no hardware RNG/thermal in VM - live preload allocation — BIOS memory fragmentation, continues on demand
136 lines
4.4 KiB
Diff
136 lines
4.4 KiB
Diff
//! `sys/timerfd.h` implementation.
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//!
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//! Non-POSIX, see <https://man7.org/linux/man-pages/man2/timerfd_create.2.html>.
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use alloc::{collections::BTreeMap, format};
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use core::{mem, slice, sync::atomic::{AtomicBool, Ordering}};
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use crate::{
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c_str::{CStr, CString},
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error::{Errno, ResultExt},
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header::{
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bits_timespec::timespec,
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errno::{EBADF, EFAULT, EINVAL, EIO},
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fcntl::{O_CLOEXEC, O_NONBLOCK, O_RDWR},
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},
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out::Out,
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platform::{
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Pal, Sys,
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types::{c_int, clockid_t},
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},
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sync::Mutex,
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};
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pub use crate::header::time::itimerspec;
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pub const TFD_CLOEXEC: c_int = 0x80000;
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pub const TFD_NONBLOCK: c_int = 0x800;
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pub const TFD_TIMER_ABSTIME: c_int = 0x1;
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pub const TFD_TIMER_CANCEL_ON_SET: c_int = 0x2;
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const NSEC_PER_SEC: i64 = 1_000_000_000;
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static MAP_INIT: AtomicBool = AtomicBool::new(false);
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static TIMERFD_CLOCKIDS: Mutex<Option<BTreeMap<c_int, clockid_t>>> = Mutex::new(None);
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fn with_map<R>(f: impl FnOnce(&mut BTreeMap<c_int, clockid_t>) -> R) -> R {
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let mut guard = TIMERFD_CLOCKIDS.lock();
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if !MAP_INIT.load(Ordering::Acquire) {
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*guard = Some(BTreeMap::new());
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MAP_INIT.store(true, Ordering::Release);
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}
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f(guard.as_mut().unwrap())
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}
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fn add_timespec(a: ×pec, b: ×pec) -> timespec {
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let total_nsec = a.tv_nsec as i64 + b.tv_nsec as i64;
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let mut sec = a.tv_sec + b.tv_sec + (total_nsec / NSEC_PER_SEC) as i64;
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let mut nsec = (total_nsec % NSEC_PER_SEC) as i64;
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if nsec < 0 {
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sec -= 1;
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nsec += NSEC_PER_SEC;
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}
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timespec { tv_sec: sec, tv_nsec: nsec }
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}
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fn read_exact(fd: c_int, buf: &mut [u8]) -> Result<(), Errno> {
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match Sys::read(fd, buf)? {
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n if n == buf.len() => Ok(()),
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_ => Err(Errno(EIO)),
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}
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}
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fn write_exact(fd: c_int, buf: &[u8]) -> Result<(), Errno> {
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match Sys::write(fd, buf)? {
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n if n == buf.len() => Ok(()),
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_ => Err(Errno(EIO)),
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}
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}
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#[unsafe(no_mangle)]
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pub extern "C" fn timerfd_create(clockid: clockid_t, flags: c_int) -> c_int {
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let supported = TFD_CLOEXEC | TFD_NONBLOCK;
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if flags & !supported != 0 {
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return Err::<c_int, _>(Errno(EINVAL)).or_minus_one_errno();
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}
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let mut oflag = O_RDWR;
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if flags & TFD_CLOEXEC == TFD_CLOEXEC {
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oflag |= O_CLOEXEC;
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}
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if flags & TFD_NONBLOCK == TFD_NONBLOCK {
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oflag |= O_NONBLOCK;
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}
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let path = match CString::new(format!("/scheme/time/{clockid}")) {
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Ok(path) => path,
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Err(_) => return Err::<c_int, _>(Errno(EINVAL)).or_minus_one_errno(),
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};
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let fd = Sys::open(CStr::borrow(&path), oflag, 0).or_minus_one_errno()?;
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// Register the clockid for this fd so timerfd_settime can convert relative times
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with_map(|map| { map.insert(fd, clockid); });
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fd
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}
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#[unsafe(no_mangle)]
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pub unsafe extern "C" fn timerfd_settime(fd: c_int, flags: c_int, new: *const itimerspec, old: *mut itimerspec) -> c_int {
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let supported = TFD_TIMER_ABSTIME | TFD_TIMER_CANCEL_ON_SET;
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if flags & !supported != 0 {
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return Err::<c_int, _>(Errno(EINVAL)).or_minus_one_errno();
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}
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if new.is_null() {
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return Err::<c_int, _>(Errno(EFAULT)).or_minus_one_errno();
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}
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if !old.is_null() && unsafe { timerfd_gettime(fd, old) } < 0 {
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return -1;
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}
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let spec = unsafe { &*new };
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let mut value = spec.it_value;
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// Convert relative time to absolute if TFD_TIMER_ABSTIME is not set
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if flags & TFD_TIMER_ABSTIME == 0 {
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let clockid = with_map(|map| map.get(&fd).copied()).unwrap_or(0);
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let mut now = timespec::default();
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if Sys::clock_gettime(clockid, Out::from_mut(&mut now)).is_err() {
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return Err::<c_int, _>(Errno(EBADF)).or_minus_one_errno();
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}
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value = add_timespec(&now, &value);
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}
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let buf = unsafe { slice::from_raw_parts((&raw const value).cast::<u8>(), mem::size_of::<timespec>()) };
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write_exact(fd, buf).map(|()| 0).or_minus_one_errno()
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}
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#[unsafe(no_mangle)]
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pub unsafe extern "C" fn timerfd_gettime(fd: c_int, curr: *mut itimerspec) -> c_int {
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if curr.is_null() {
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return Err::<c_int, _>(Errno(EFAULT)).or_minus_one_errno();
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}
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let curr = unsafe { &mut *curr };
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curr.it_interval = timespec::default();
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let buf = unsafe { slice::from_raw_parts_mut((&raw mut curr.it_value).cast::<u8>(), mem::size_of::<timespec>()) };
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read_exact(fd, buf).map(|()| 0).or_minus_one_errno()
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}
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