#[path = "platform_linux/autostart.rs"]
pub(crate) mod autostart;
#[path = "platform_linux/resources.rs"]
pub(crate) mod resources;
pub use resources::{
fd_exhaustion_error as resources_fd_exhaustion_error,
inode_capacity as resources_inode_capacity,
signals_fd_exhaustion as resources_signals_fd_exhaustion,
signals_storage_exhaustion as resources_signals_storage_exhaustion,
storage_exhaustion_error as resources_storage_exhaustion_error,
};
pub use autostart::{
register as autostart_register,
render_registration as autostart_render_registration,
unregister as autostart_unregister,
};
#[path = "platform_linux/process_inspect.rs"]
pub(crate) mod process_inspect;
pub use process_inspect::{
process_executable_path, process_force_kill, process_same_executable_path,
process_signal_terminate, ProcessLiveness,
};
#[path = "platform_linux/raw_write.rs"]
pub(crate) mod raw_write;
pub use raw_write::write_all_to_descriptor as fs_write_all_to_descriptor;
#[path = "platform_linux/shutdown_request.rs"]
pub(crate) mod shutdown_request;
pub use shutdown_request::install_shutdown_request_handler as process_install_shutdown_request_handler;
#[path = "platform_linux/process_owner_death.rs"]
pub(crate) mod process_owner_death;
pub use process_owner_death::{
install_owner_death_cleanup as process_install_owner_death_cleanup,
owner_death_cleanup_target as process_owner_death_cleanup_target,
};
#[path = "platform_linux/host.rs"]
pub(crate) mod host;
pub use host::{
boot_id as host_boot_id, current_process_privilege as host_current_process_privilege,
environment_keys_are_case_insensitive as host_environment_keys_are_case_insensitive,
filesystem_device_id as host_filesystem_device_id, hostname as host_hostname,
login_environment as host_login_environment, machine_id as host_machine_id,
namespace_id as host_namespace_id, user_machine_identity as host_user_machine_identity,
PrivilegedIdentity as HostPrivilegedIdentity,
};
pub use host::login_environment_block as host_login_environment_block;
#[cfg(feature = "fs")]
#[path = "platform_linux/fs.rs"]
pub(crate) mod fs;
#[cfg(feature = "fs")]
pub use fs::{
create_private_file as fs_create_private_file,
decode_path_bytes as fs_decode_path_bytes,
replace_file as fs_replace_file, sync_directory as fs_sync_directory,
user_config_dir as fs_user_config_dir,
user_data_dir as fs_user_data_dir, encode_path_bytes as fs_encode_path_bytes,
file_identity as fs_file_identity, is_lock_conflict as fs_is_lock_conflict,
open_lock_file as fs_open_lock_file, path_identity as fs_path_identity,
try_lock_exclusive as fs_try_lock_exclusive, unlock as fs_unlock,
user_run_data_root as fs_user_run_data_root, user_runtime_dir as fs_user_runtime_dir,
user_state_dir as fs_user_state_dir, FileIdentity as FsFileIdentity,
};
#[path = "platform_linux/executable.rs"]
pub(crate) mod executable;
pub use executable::{
file_name as executable_file_name,
sibling_of_current_image as executable_sibling_of_current_image,
EXECUTABLE_EXTENSION,
};
#[cfg(feature = "ipc")]
#[path = "platform_linux/ipc.rs"]
pub(crate) mod ipc;
#[cfg(feature = "ipc")]
#[path = "platform_linux/ipc_private_dir.rs"]
mod ipc_private_dir;
#[cfg(feature = "ipc")]
pub use ipc::{
current_user_id as ipc_current_user_id, Endpoint as IpcEndpoint,
endpoint_is_filesystem_backed as ipc_endpoint_is_filesystem_backed,
nonblocking_zero_read_is_pending as ipc_nonblocking_zero_read_is_pending,
select_endpoint_address as ipc_select_endpoint_address,
InheritedListener as IpcInheritedListener, Listener as IpcListener,
ListenerNonblockingMode as IpcListenerNonblockingMode, PeerIdentity as IpcPeerIdentity,
PeerIdentitySource as IpcPeerIdentitySource, Stream as IpcStream,
};
#[cfg(feature = "ipc")]
pub const LEGACY_SCM_RIGHTS_TRANSPORT_SUPPORTED: bool = true;
#[cfg(feature = "ipc")]
pub const LEGACY_DUPLICATE_HANDLE_TRANSPORT_SUPPORTED: bool = false;
#[cfg(feature = "ipc")]
pub use ipc::{legacy_send_fd_over, legacy_send_fd_to};
#[cfg(feature = "ipc")]
pub fn legacy_duplicate_handle(
_source_handle: usize,
_backend_pid: u32,
) -> Result<usize, crate::LegacyHandoffError> {
Err(crate::LegacyHandoffError::new(
crate::platform::ipc::HandoffTransferErrorKind::Unsupported,
None,
))
}
#[cfg(feature = "ipc")]
pub use ipc_private_dir::{
ensure_owner_private_directory as ipc_ensure_owner_private_directory,
owner_private_directory as ipc_owner_private_directory,
};
#[cfg(feature = "ipc")]
pub fn ipc_broker_endpoint_name(bare_name: &str, path_scoped: bool) -> std::io::Result<String> {
use std::fmt::Write as _;
use std::path::PathBuf;
if path_scoped {
let mut hash = blake3::Hasher::new();
hash.update(b"running-process:path-scoped-socket:v1\0");
hash.update(bare_name.as_bytes());
let mut leaf = String::with_capacity(32);
for byte in hash.finalize().as_bytes().iter().take(16) { let _ = write!(leaf, "{byte:02x}"); }
return Ok(PathBuf::from("/tmp").join(format!(".rp-path-{leaf}.sock")).to_string_lossy().into_owned());
}
let directory = match std::env::var_os("XDG_RUNTIME_DIR") {
Some(value) => PathBuf::from(value).join("running-process").join("broker-v2"),
None => PathBuf::from(format!("/tmp/running-process-{}/broker-v2", unsafe { libc::getuid() })),
};
Ok(directory.join(format!("{bare_name}.sock")).to_string_lossy().into_owned())
}
const LINUX_SUN_PATH_MAX: usize = 108;
#[cfg(feature = "ipc")]
pub fn ipc_endpoint_name_limit() -> crate::platform::ipc::EndpointNameLimit {
crate::platform::ipc::EndpointNameLimit {
max_bytes: LINUX_SUN_PATH_MAX,
label: "Linux sun_path",
}
}
#[cfg(feature = "ipc")]
fn broker_v1_socket_dir() -> std::path::PathBuf {
use std::path::PathBuf;
match std::env::var_os("XDG_RUNTIME_DIR") {
Some(dir) => PathBuf::from(dir).join("running-process").join("broker"),
None => PathBuf::from(format!(
"/tmp/running-process-{}/broker",
unsafe { libc::getuid() }
)),
}
}
#[cfg(feature = "ipc")]
pub fn ipc_broker_v1_endpoint_path(
bare_name: &str,
) -> Result<String, crate::platform::ipc::EndpointNameTooLong> {
let candidate = broker_v1_socket_dir().join(format!("{bare_name}.sock"));
let candidate = candidate.to_string_lossy();
if candidate.len() >= LINUX_SUN_PATH_MAX {
return Err(crate::platform::ipc::EndpointNameTooLong {
len: candidate.len(),
max: LINUX_SUN_PATH_MAX - 1,
limit_label: "Linux sun_path",
});
}
Ok(candidate.into_owned())
}
#[cfg(feature = "ipc")]
pub fn ipc_endpoint_scope_bytes(path: &std::path::Path) -> Vec<u8> {
use std::os::unix::ffi::OsStrExt as _;
path.as_os_str().as_bytes().to_vec()
}
#[cfg(feature = "ipc")]
pub fn ipc_broker_v2_runtime_dir() -> std::path::PathBuf {
match std::env::var_os("XDG_RUNTIME_DIR") {
Some(dir) => std::path::PathBuf::from(dir)
.join("running-process")
.join("broker-v2"),
None => crate::platform::ipc::per_user_runtime_fallback(),
}
}
#[cfg(feature = "ipc")]
pub fn into_legacy_ipc_stream(stream: IpcStream) -> interprocess::local_socket::Stream {
stream.0
}
#[cfg(feature = "ipc")]
pub fn from_legacy_ipc_stream(stream: interprocess::local_socket::Stream) -> IpcStream {
ipc::Stream(stream)
}
#[cfg(feature = "ipc")]
pub fn legacy_ipc_name(path: &str) -> Result<interprocess::local_socket::Name<'_>, String> {
ipc::legacy_name(path)
}
#[cfg(feature = "ipc-async")]
pub use ipc::{
AsyncListener as IpcAsyncListener, AsyncStream as IpcAsyncStream,
IntoAsyncListener as IpcIntoAsyncListener, IntoAsyncStream as IpcIntoAsyncStream,
};
#[cfg(feature = "session-relay")]
#[path = "platform_linux_session_relay.rs"]
mod session_relay;
#[cfg(feature = "session-relay")]
pub use session_relay::relay_local_socket_session;
#[path = "platform_linux/terminal.rs"]
pub mod terminal;
pub use terminal::active_graphics_probe;
pub use crate::platform::terminal_input;
#[path = "platform_linux/window_icon.rs"]
mod window_icon;
pub use window_icon::{icon_support as window_icon_support_impl, set_icon as set_window_icon_impl};
pub fn shell_command(command: &str) -> std::process::Command {
let mut shell = std::process::Command::new("/bin/sh");
shell.arg("-lc").arg(command);
shell
}
pub fn compat_shell_command(command: &str) -> std::process::Command {
let mut shell = std::process::Command::new("/bin/sh");
shell.arg("-lc").arg(command);
shell
}
pub fn canonical_environment_pairs(pairs: Vec<(String, String)>) -> Vec<(String, String)> {
pairs
}
pub fn monitor_console_windows(
_duration: std::time::Duration,
) -> Vec<crate::platform::process::ConsoleWindowInfo> {
Vec::new()
}
#[cfg(feature = "async-process")]
use std::ffi::OsStr;
use std::io;
use std::io::Read;
use std::os::fd::{AsRawFd, RawFd};
use std::os::unix::net::UnixStream;
use std::sync::Mutex;
#[cfg(feature = "async-process")]
use tokio::process::{Child, Command};
#[cfg(feature = "async-process")]
use crate::SpawnSpec;
#[path = "platform_linux_descendants.rs"]
mod descendants;
pub use descendants::start_descendant_monitor;
#[path = "platform_linux_trace.rs"]
mod exact_trace;
pub use exact_trace::{configure_exact_trace, start_exact_trace, TracedChild};
pub fn exact_trace_capability() -> crate::platform::process::ExactTraceCapability {
crate::platform::process::ExactTraceCapability {
available: true,
backend: "linux-ptrace",
reason: "launch-time PTRACE_TRACEME with follow-fork/clone/exec/exit supervision",
non_invasive_backend: "proc-descendant-snapshot",
non_invasive_grade:
crate::platform::process::NonInvasiveObservationGrade::SnapshotInferred,
}
}
pub struct WindowsJobHandle;
pub fn assign_child_to_windows_job(
_child: &std::process::Child,
_direct_pid: u32,
_address_space_limit_bytes: Option<u64>,
_emit: Option<Box<dyn Fn(crate::platform::process::DescendantEvent) + Send>>,
) -> io::Result<WindowsJobHandle> {
Err(io::Error::new(
io::ErrorKind::Unsupported,
"Windows Job Objects are unavailable on Linux",
))
}
#[derive(Default)]
pub struct CaptureCancellation {
wakers: Mutex<CaptureWakers>,
}
#[derive(Default)]
struct CaptureWakers {
stdout: Option<UnixStream>,
stderr: Option<UnixStream>,
}
struct CancelableCaptureReader<R> {
reader: R,
wake_reader: UnixStream,
}
impl<R: Read + AsRawFd> Read for CancelableCaptureReader<R> {
fn read(&mut self, buf: &mut [u8]) -> io::Result<usize> {
if buf.is_empty() { return Ok(0); }
loop {
let mut poll_fds = [
libc::pollfd { fd: self.reader.as_raw_fd(), events: libc::POLLIN | libc::POLLHUP | libc::POLLERR, revents: 0 },
libc::pollfd { fd: self.wake_reader.as_raw_fd(), events: libc::POLLIN | libc::POLLHUP | libc::POLLERR, revents: 0 },
];
let polled = unsafe { libc::poll(poll_fds.as_mut_ptr(), poll_fds.len() as _, -1) };
if polled < 0 {
let error = io::Error::last_os_error();
if error.kind() == io::ErrorKind::Interrupted { continue; }
return Err(error);
}
if poll_fds[1].revents != 0 {
return Err(io::Error::new(io::ErrorKind::Interrupted, "capture reader cancelled"));
}
if poll_fds[0].revents != 0 {
match self.reader.read(buf) {
Err(error) if error.kind() == io::ErrorKind::WouldBlock => continue,
result => return result,
}
}
}
}
}
pub fn prepare_capture_reader<R>(
reader: R,
cancellation: &CaptureCancellation,
stream: crate::platform::process::CaptureStream,
) -> io::Result<Box<dyn Read + Send>>
where R: Read + AsRawFd + Send + 'static {
set_nonblocking(reader.as_raw_fd())?;
let (wake_reader, wake_writer) = UnixStream::pair()?;
wake_writer.set_nonblocking(true)?;
let mut wakers = cancellation.wakers.lock().expect("capture wakers mutex poisoned");
match stream {
crate::platform::process::CaptureStream::Stdout => wakers.stdout = Some(wake_writer),
crate::platform::process::CaptureStream::Stderr => wakers.stderr = Some(wake_writer),
}
Ok(Box::new(CancelableCaptureReader { reader, wake_reader }))
}
pub fn capture_reader_done(cancellation: &CaptureCancellation, stream: crate::platform::process::CaptureStream) {
let mut wakers = cancellation.wakers.lock().expect("capture wakers mutex poisoned");
match stream {
crate::platform::process::CaptureStream::Stdout => wakers.stdout = None,
crate::platform::process::CaptureStream::Stderr => wakers.stderr = None,
}
}
pub fn cancel_capture_reader(cancellation: &CaptureCancellation) {
let wakers = cancellation.wakers.lock().expect("capture wakers mutex poisoned");
let byte = [1_u8; 1];
for writer in [&wakers.stdout, &wakers.stderr].into_iter().flatten() {
let _ = unsafe { libc::write(writer.as_raw_fd(), byte.as_ptr().cast(), byte.len()) };
}
}
fn set_nonblocking(fd: RawFd) -> io::Result<()> {
let flags = unsafe { libc::fcntl(fd, libc::F_GETFL) };
if flags < 0 { return Err(io::Error::last_os_error()); }
if unsafe { libc::fcntl(fd, libc::F_SETFL, flags | libc::O_NONBLOCK) } < 0 {
return Err(io::Error::last_os_error());
}
Ok(())
}
#[path = "platform_linux_file_handles.rs"]
mod file_handles;
pub use file_handles::read_process_file_handles;
#[path = "platform_linux_cmdline.rs"]
mod cmdline;
pub use cmdline::read_process_cmdline;
#[cfg(feature = "process-inspection")]
#[path = "platform/process_tree.rs"]
mod process_tree;
#[cfg(feature = "process-inspection")]
pub fn kill_tree(pid: u32, timeout: std::time::Duration) -> io::Result<u32> {
process_tree::kill_tree(pid, timeout, |_pid, process| Ok(process.start_time()))
}
pub fn exit_code(status: std::process::ExitStatus) -> i32 {
use std::os::unix::process::ExitStatusExt;
status.code().unwrap_or_else(|| -status.signal().unwrap_or(1))
}
pub fn set_process_name(name: &str) {
let truncated: String = name.chars().take(15).collect();
let c_name = std::ffi::CString::new(truncated).unwrap_or_default();
unsafe { libc::prctl(libc::PR_SET_NAME, c_name.as_ptr() as libc::c_ulong, 0, 0, 0); }
}
pub fn configure_trampoline_command(_command: &mut std::process::Command) {}
pub fn configure_process_command(
command: &mut std::process::Command,
config: crate::platform::process::ProcessCommandConfig,
) -> io::Result<()> {
let create_process_group = config.create_process_group;
let nice = config.nice;
let address_space_limit_bytes = config.address_space_limit_bytes;
if !(create_process_group || nice.is_some() || address_space_limit_bytes.is_some()) {
return Ok(());
}
use std::os::unix::process::CommandExt;
unsafe {
command.pre_exec(move || {
if create_process_group && libc::setpgid(0, 0) == -1 {
return Err(io::Error::last_os_error());
}
if let Some(nice) = nice {
if libc::setpriority(libc::PRIO_PROCESS, 0, nice) == -1 {
return Err(io::Error::last_os_error());
}
}
if let Some(limit) = address_space_limit_bytes {
let rlim = libc::rlimit { rlim_cur: limit, rlim_max: limit };
if libc::setrlimit(libc::RLIMIT_AS, &rlim) == -1 {
return Err(io::Error::last_os_error());
}
}
Ok(())
});
}
Ok(())
}
pub fn trampoline_exit_code(status: std::process::ExitStatus) -> i32 {
use std::os::unix::process::ExitStatusExt;
status.signal().map_or_else(|| status.code().unwrap_or(1), |signal| 128 + signal)
}
pub fn current_executable_build_id() -> Option<Vec<u8>> {
unsafe extern "C" fn visit(
info: *mut libc::dl_phdr_info,
_size: libc::size_t,
output: *mut libc::c_void,
) -> libc::c_int {
const MAX_NOTE_BYTES: usize = 1024 * 1024;
let info = unsafe { &*info };
let is_main_executable = info.dlpi_name.is_null()
|| unsafe { std::ffi::CStr::from_ptr(info.dlpi_name) }
.to_bytes()
.is_empty();
if !is_main_executable || info.dlpi_phdr.is_null() || info.dlpi_phnum == 0 {
return 0;
}
let headers = unsafe {
std::slice::from_raw_parts(info.dlpi_phdr, usize::from(info.dlpi_phnum))
};
#[allow(clippy::unnecessary_cast)]
let load_bias = info.dlpi_addr as u64;
for header in headers {
if header.p_type != libc::PT_NOTE {
continue;
}
let Ok(length) = usize::try_from(header.p_memsz) else {
continue;
};
if length == 0 || length > MAX_NOTE_BYTES {
continue;
}
let Some(address) = load_bias.checked_add(header.p_vaddr) else {
continue;
};
let Some(note_end) = address.checked_add(length as u64) else {
continue;
};
let mapped_read_only = headers.iter().any(|load| {
if load.p_type != libc::PT_LOAD || load.p_flags & libc::PF_R == 0 {
return false;
}
let Some(start) = load_bias.checked_add(load.p_vaddr) else {
return false;
};
let Some(end) = start.checked_add(load.p_memsz) else {
return false;
};
address >= start && note_end <= end
});
if address == 0 || !mapped_read_only {
continue;
}
let notes = unsafe { std::slice::from_raw_parts(address as *const u8, length) };
if let Some(build_id) = gnu_build_id_from_notes(notes) {
let output = unsafe { &mut *output.cast::<Option<Vec<u8>>>() };
*output = Some(build_id.to_vec());
return 1;
}
}
0
}
let mut output = None;
unsafe {
libc::dl_iterate_phdr(
Some(visit),
(&mut output as *mut Option<Vec<u8>>).cast::<libc::c_void>(),
);
}
output
}
fn gnu_build_id_from_notes(mut notes: &[u8]) -> Option<&[u8]> {
fn aligned(value: usize) -> Option<usize> {
value.checked_add(3).map(|value| value & !3)
}
while notes.len() >= 12 {
let name_len = usize::try_from(u32::from_ne_bytes(notes[0..4].try_into().ok()?)).ok()?;
let desc_len = usize::try_from(u32::from_ne_bytes(notes[4..8].try_into().ok()?)).ok()?;
let kind = u32::from_ne_bytes(notes[8..12].try_into().ok()?);
let name_end = 12usize.checked_add(name_len)?;
let desc_start = 12usize.checked_add(aligned(name_len)?)?;
let desc_end = desc_start.checked_add(desc_len)?;
let next = desc_start.checked_add(aligned(desc_len)?)?;
if next > notes.len() || name_end > notes.len() || desc_end > notes.len() {
return None;
}
if kind == 3 && notes.get(12..name_end)?.starts_with(b"GNU") && desc_len > 0 {
return notes.get(desc_start..desc_end);
}
notes = ¬es[next..];
}
None
}
pub fn soft_terminate_process_group(pid: u32) -> io::Result<()> {
let result = unsafe { libc::kill(-(pid as i32), libc::SIGTERM) };
if result != 0 {
let error = io::Error::last_os_error();
if error.raw_os_error() != Some(libc::ESRCH) {
return Err(error);
}
}
Ok(())
}
pub fn process_snapshot() -> Vec<crate::platform::process::ProcessSnapshot> {
Vec::new()
}
pub fn process_snapshot_for_pid(_pid: u32) -> Option<crate::platform::process::ProcessSnapshot> {
None
}
pub unsafe fn unix_mark_extra_fds_close_on_exec() {
#[cfg(any(target_arch = "x86_64", target_arch = "aarch64", target_arch = "x86", target_arch = "arm", target_arch = "riscv64", target_arch = "powerpc64"))]
{
const SYS_CLOSE_RANGE: libc::c_long = 436;
const CLOSE_RANGE_CLOEXEC: libc::c_uint = 4;
if libc::syscall(SYS_CLOSE_RANGE, 3u32, libc::c_uint::MAX, CLOSE_RANGE_CLOEXEC) == 0 {
return;
}
}
mark_fds_from_directory_or_range();
}
pub fn configure_sync_daemon_command(command: &mut std::process::Command) -> io::Result<()> {
use std::os::unix::process::CommandExt;
unsafe {
command.pre_exec(|| {
let _ = libc::setsid();
unix_mark_extra_fds_close_on_exec();
Ok(())
});
}
Ok(())
}
pub fn configure_sync_contained_command(command: &mut std::process::Command) -> io::Result<()> {
use std::os::unix::process::CommandExt;
unsafe {
command.pre_exec(|| {
if libc::setpgid(0, 0) == -1 { return Err(io::Error::last_os_error()); }
if libc::prctl(libc::PR_SET_PDEATHSIG, libc::SIGKILL) == -1 {
return Err(io::Error::last_os_error());
}
if libc::getppid() == 1 { libc::_exit(1); }
unix_mark_extra_fds_close_on_exec();
Ok(())
});
}
Ok(())
}
pub fn parent_has_console() -> bool { false }
pub fn sync_child_native_handle(_child: &std::process::Child) -> usize { 0 }
unsafe fn mark_fds_from_directory_or_range() {
let dir = libc::opendir(c"/dev/fd".as_ptr());
if !dir.is_null() {
let dir_fd = libc::dirfd(dir);
loop {
let entry = libc::readdir(dir);
if entry.is_null() { break; }
let mut fd: libc::c_int = 0;
let mut cursor = (*entry).d_name.as_ptr();
let mut numeric = false;
while *cursor != 0 {
let byte = *cursor as u8;
if !byte.is_ascii_digit() { numeric = false; break; }
fd = fd * 10 + (byte - b'0') as libc::c_int;
cursor = cursor.add(1);
numeric = true;
}
if numeric && fd > 2 && fd != dir_fd { set_cloexec(fd); }
}
libc::closedir(dir);
return;
}
let maximum = libc::sysconf(libc::_SC_OPEN_MAX);
for fd in 3..if maximum < 0 { 4096 } else { maximum as libc::c_int } { set_cloexec(fd); }
}
unsafe fn set_cloexec(fd: libc::c_int) {
let flags = libc::fcntl(fd, libc::F_GETFD);
if flags != -1 { libc::fcntl(fd, libc::F_SETFD, flags | libc::FD_CLOEXEC); }
}
pub fn observer_backend(scope: crate::platform::process::ObserverScope, category: crate::platform::process::ObserverCategory) -> crate::platform::process::ObserverBackend {
use crate::platform::process::{ObserverBackend as B, ObserverCategory as C, ObserverScope as S, ObserverSupport as P};
match (scope, category) {
(S::SystemWide, C::File) => B { support:P::Unavailable, backend:"seccomp-user-notify", reason:"Phase 3: Linux seccomp user-notify file backend not yet implemented" },
(S::SystemWide, C::Network) => B { support:P::Unavailable, backend:"ebpf", reason:"Phase 3: Linux eBPF network backend not yet implemented" },
(S::SystemWide, C::Process) => B { support:P::Unavailable, backend:"seccomp-user-notify", reason:"Phase 3: Linux seccomp user-notify process backend not yet implemented" },
(S::LaunchedProcessTree, C::File) => B { support:P::Partial, backend:"proc-fd-snapshot", reason:"Linux /proc/<pid>/fd/* snapshot via read_process_file_handles (#539 slice 6 follow-up; no streaming file events)" },
(S::LaunchedProcessTree, C::Network) => B { support:P::Unavailable, backend:"none", reason:"#539: no-admin per-child network backend deferred to a follow-up issue" },
(S::LaunchedProcessTree, C::Process) => B { support:P::Supported, backend:"subreaper-proc-poll", reason:"Linux PR_SET_CHILD_SUBREAPER + /proc descendant polling (#539 slice 5)" },
}
}
pub fn unix_set_priority(pid: u32, nice: i32) -> io::Result<()> {
if unsafe { libc::setpriority(libc::PRIO_PROCESS, pid, nice) } == -1 { Err(io::Error::last_os_error()) } else { Ok(()) }
}
pub fn unix_signal_process(pid: u32, signal: crate::platform::process::UnixSignalKind) -> io::Result<()> {
if unsafe { libc::kill(pid as i32, unix_signal_raw(signal)) } == -1 { Err(io::Error::last_os_error()) } else { Ok(()) }
}
pub fn unix_signal_process_group(pid: i32, signal: crate::platform::process::UnixSignalKind) -> io::Result<()> {
if unsafe { libc::killpg(pid, unix_signal_raw(signal)) } == -1 { Err(io::Error::last_os_error()) } else { Ok(()) }
}
pub fn unix_signal_raw(signal: crate::platform::process::UnixSignalKind) -> i32 {
match signal { crate::platform::process::UnixSignalKind::Interrupt => libc::SIGINT, crate::platform::process::UnixSignalKind::Terminate => libc::SIGTERM, crate::platform::process::UnixSignalKind::Kill => libc::SIGKILL }
}
#[cfg(feature = "async-process")]
pub fn configure_compat_tokio_command(
command: &mut Command,
_show_console: bool,
kill_when_owner_dies: bool,
) -> io::Result<()> {
configure_command(command, false, kill_when_owner_dies)
}
#[cfg(feature = "async-process")]
pub fn after_compat_tokio_spawn(
_child: &Child,
_kill_when_owner_dies: bool,
) -> io::Result<()> {
Ok(())
}
#[cfg(feature = "async-process")]
pub(crate) fn configure_command(
command: &mut Command,
create_process_group: bool,
kill_when_owner_dies: bool,
) -> io::Result<()> {
if create_process_group {
command.process_group(0);
}
if kill_when_owner_dies {
let owner_pid = unsafe { libc::getpid() };
unsafe {
command.pre_exec(move || {
if libc::prctl(
libc::PR_SET_PDEATHSIG,
libc::SIGTERM as libc::c_ulong,
0,
0,
0,
) == -1
{
return Err(io::Error::last_os_error());
}
if libc::getppid() != owner_pid {
libc::kill(libc::getpid(), libc::SIGTERM);
}
Ok(())
});
}
}
Ok(())
}
#[cfg(feature = "async-process")]
pub(crate) fn after_spawn(_child: &Child, _kill_when_owner_dies: bool) -> io::Result<()> {
Ok(())
}
pub(crate) fn signal_process(pid: u32) -> io::Result<()> {
unix_kill(pid as i32, libc::SIGKILL)
}
pub(crate) fn signal_process_group(pid: u32) -> io::Result<()> {
unix_kill(-(pid as i32), libc::SIGTERM)
}
fn unix_kill(target: i32, signal: i32) -> io::Result<()> {
let result = unsafe { libc::kill(target, signal) };
if result == 0 {
return Ok(());
}
let error = io::Error::last_os_error();
if error.raw_os_error() == Some(libc::ESRCH) {
Ok(())
} else {
Err(error)
}
}
#[cfg(feature = "async-process")]
pub(crate) fn shell_spec(command: &OsStr) -> SpawnSpec {
SpawnSpec::new("/bin/sh").arg("-c").arg(command)
}
#[cfg(test)]
mod tests {
#[test]
fn shell_command_preserves_login_shell_contract_and_ignores_child_path() {
use std::ffi::OsStr;
let command_text = "printf '%s' 'alpha beta;\"gamma\"'";
let mut command = super::shell_command(command_text);
assert_eq!(command.get_program(), OsStr::new("/bin/sh"));
assert_eq!(
command.get_args().collect::<Vec<_>>(),
[OsStr::new("-lc"), OsStr::new(command_text)]
);
command
.env_clear()
.env("PATH", "/caller-supplied-path-override");
let output = command
.output()
.expect("absolute shell command should execute independently of child PATH");
assert!(output.status.success());
assert_eq!(output.stdout, b"alpha beta;\"gamma\"");
}
#[test]
#[cfg(not(target_env = "musl"))]
fn current_executable_exposes_a_gnu_build_id() {
let build_id = super::current_executable_build_id()
.expect("Linux test executable should carry a GNU build ID");
assert!(!build_id.is_empty());
}
}
#[cfg(test)]
#[path = "tests/platform_linux_coverage.rs"]
mod coverage_tests;
#[path = "sync_spawn_group.rs"]
mod sync_spawn;
pub use sync_spawn::{spawn_sync, spawn_sync_daemon};
#[cfg(all(test, feature = "ipc"))]
mod endpoint_naming_tests {
use super::{ipc_broker_v1_endpoint_path, ipc_endpoint_name_limit, LINUX_SUN_PATH_MAX};
#[test]
fn the_v1_address_keeps_the_full_name_for_debuggability() {
let address = ipc_broker_v1_endpoint_path("rpb-v1-abc-shared").expect("derive address");
assert!(address.contains("rpb-v1-abc-shared"));
assert!(address.ends_with("-shared.sock"));
assert!(address.contains("/broker/"));
}
#[test]
fn an_over_long_name_is_refused_against_sun_path() {
let err = ipc_broker_v1_endpoint_path(&"a".repeat(LINUX_SUN_PATH_MAX))
.expect_err("must exceed sun_path");
assert_eq!(err.max, LINUX_SUN_PATH_MAX - 1);
assert_eq!(err.limit_label, "Linux sun_path");
}
#[test]
fn an_accepted_address_is_strictly_shorter_than_the_field() {
let address = ipc_broker_v1_endpoint_path("rpb-v1-abc-shared").expect("derive address");
assert!(address.len() < LINUX_SUN_PATH_MAX);
}
#[test]
fn the_reported_budget_is_sun_path() {
let limit = ipc_endpoint_name_limit();
assert_eq!(limit.max_bytes, LINUX_SUN_PATH_MAX);
assert_eq!(limit.label, "Linux sun_path");
}
#[test]
fn the_scope_spelling_is_the_verbatim_path_bytes() {
use super::ipc_endpoint_scope_bytes;
let bytes = ipc_endpoint_scope_bytes(std::path::Path::new("/usr/local/bin/Broker"));
assert_eq!(bytes, b"/usr/local/bin/Broker".to_vec());
let lowered = ipc_endpoint_scope_bytes(std::path::Path::new("/usr/local/bin/broker"));
assert_ne!(bytes, lowered, "case must remain significant");
}
}
pub fn process_replace_current_image(command: &mut std::process::Command) -> std::io::Error {
use std::os::unix::process::CommandExt as _;
command.exec()
}
pub const fn process_can_replace_current_image() -> bool {
true
}