Struct ThreadRng
pub struct ThreadRng { /* private fields */ }Expand description
A reference to the thread-local generator
This type is a reference to a lazily-initialized thread-local generator.
An instance can be obtained via rand::rng() or via
ThreadRng::default().
The handle cannot be passed between threads (is not Send or Sync).
§Security
Security must be considered relative to a threat model and validation
requirements. The Rand project can provide no guarantee of fitness for
purpose. The design criteria for ThreadRng are as follows:
- Automatic seeding via
SysRngand after every 64 kB of output. Limitation: there is no automatic reseeding on process fork (see below). - A rigorously analyzed, unpredictable (cryptographic) pseudo-random generator
(see the book on security).
The currently selected algorithm is ChaCha (12-rounds).
See also
StdRngdocumentation. - Not to leak internal state through
Debugor serialization implementations. - No further protections exist to in-memory state. In particular, the implementation is not required to zero memory on exit (of the process or thread). (This may change in the future.)
- Be fast enough for general-purpose usage. Note in particular that
ThreadRngis designed to be a “fast, reasonably secure generator” (where “reasonably secure” implies the above criteria).
We leave it to the user to determine whether this generator meets their
security requirements. For an alternative, see SysRng.
§Forks and interrupts
ThreadRng is not automatically reseeded on fork. It is recommended to
explicitly call ThreadRng::reseed immediately after a fork, for example:
fn do_fork() {
let pid = unsafe { libc::fork() };
if pid == 0 {
// Reseed ThreadRng in child processes:
rand::rng().reseed();
}
}Methods on ThreadRng are not reentrant-safe and thus should not be called
from an interrupt (e.g. a fork handler) unless it can be guaranteed that no
other method on the same ThreadRng is currently executing.
§Panics
Implementations of TryRng and Rng panic in case of SysRng
failure during reseeding (highly unlikely).
Implementations§
Trait Implementations§
§impl TryRng for ThreadRng
impl TryRng for ThreadRng
§type Error = Infallible
type Error = Infallible
§fn try_next_u32(&mut self) -> Result<u32, Infallible>
fn try_next_u32(&mut self) -> Result<u32, Infallible>
u32.§fn try_next_u64(&mut self) -> Result<u64, Infallible>
fn try_next_u64(&mut self) -> Result<u64, Infallible>
u64.§fn try_fill_bytes(&mut self, dest: &mut [u8]) -> Result<(), Infallible>
fn try_fill_bytes(&mut self, dest: &mut [u8]) -> Result<(), Infallible>
dst entirely with random data.impl TryCryptoRng for ThreadRng
Auto Trait Implementations§
impl Freeze for ThreadRng
impl !RefUnwindSafe for ThreadRng
impl !Send for ThreadRng
impl !Sync for ThreadRng
impl Unpin for ThreadRng
impl UnsafeUnpin for ThreadRng
impl !UnwindSafe for ThreadRng
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