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/* Copyright 2022-2023 Danny McClanahan */
/* SPDX-License-Identifier: BSD-3-Clause */
//! Routines for overriding the allocators used in several components of
//! hyperscan.
//!
//! These methods mutate global process state when setting function pointers for
//! alloc and free, so this module requires the `"alloc"` feature, which itself
//! requires the `"static"` feature which statically links the hyperscan native
//! library to ensure exclusive access to this global state.
use crate::{error::HyperscanRuntimeError, hs};
use indexmap::IndexMap;
use libc;
use parking_lot::{Mutex, RwLock};
use std::{
alloc::{GlobalAlloc, Layout},
mem, ops,
os::raw::c_void,
ptr::{self, NonNull},
sync::Arc,
};
pub trait MallocLikeAllocator {
fn allocate(&self, size: usize) -> Option<NonNull<u8>>;
fn deallocate(&self, ptr: NonNull<u8>);
}
pub struct LayoutTracker {
allocator: Arc<dyn GlobalAlloc>,
layouts: Mutex<IndexMap<NonNull<u8>, Layout>>,
}
unsafe impl Send for LayoutTracker {}
unsafe impl Sync for LayoutTracker {}
impl ops::Drop for LayoutTracker {
fn drop(&mut self) {
if !self.layouts.get_mut().is_empty() {
unreachable!("can't drop LayoutTracker with pending allocations as this would leak memory");
}
}
}
impl LayoutTracker {
pub fn new(allocator: Arc<impl GlobalAlloc+'static>) -> Self {
Self {
allocator,
layouts: Mutex::new(IndexMap::new()),
}
}
pub fn allocator(&self) -> Arc<dyn GlobalAlloc> { Arc::clone(&self.allocator) }
pub fn current_allocations(&mut self) -> Vec<(NonNull<u8>, Layout)> {
self
.layouts
.get_mut()
.iter()
.map(|(x, y)| (*x, *y))
.collect()
}
}
impl MallocLikeAllocator for LayoutTracker {
fn allocate(&self, size: usize) -> Option<NonNull<u8>> {
/* NB: Allocate everything with 8-byte alignment. Only the database allocator
* is documented to require 8-byte alignment; nothing else seems to break
* if we use it for everything! */
let layout = Layout::from_size_align(size, 8).unwrap();
let ret = NonNull::new(unsafe { self.allocator.alloc(layout) })?;
assert!(self.layouts.lock().insert(ret, layout).is_none());
Some(ret)
}
fn deallocate(&self, ptr: NonNull<u8>) {
let layout = self.layouts.lock().remove(&ptr).unwrap();
unsafe {
self.allocator.dealloc(ptr.as_ptr(), layout);
}
}
}
unsafe fn alloc_or_libc_fallback(
allocator: &RwLock<Option<LayoutTracker>>,
size: usize,
) -> *mut c_void {
match allocator.read().as_ref() {
Some(allocator) => allocator
.allocate(size)
.map(|p| mem::transmute(p.as_ptr()))
.unwrap_or(ptr::null_mut()),
None => libc::malloc(size),
}
}
unsafe fn dealloc_or_libc_fallback(allocator: &RwLock<Option<LayoutTracker>>, p: *mut c_void) {
match allocator.read().as_ref() {
Some(allocator) => {
if let Some(p) = NonNull::new(p as *mut u8) {
allocator.deallocate(p);
}
},
None => libc::free(p),
}
}
macro_rules! allocator {
($lock_name:ident, $alloc_name:ident, $free_name:ident) => {
static $lock_name: RwLock<Option<LayoutTracker>> = RwLock::new(None);
pub(crate) unsafe extern "C" fn $alloc_name(size: usize) -> *mut c_void {
alloc_or_libc_fallback(&$lock_name, size)
}
pub(crate) unsafe extern "C" fn $free_name(p: *mut c_void) {
dealloc_or_libc_fallback(&$lock_name, p)
}
};
}
allocator![DB_ALLOCATOR, db_alloc_func, db_free_func];
///```
/// #[cfg(feature = "compiler")]
/// fn main() -> Result<(), hyperscan::error::HyperscanError> {
/// use hyperscan::{expression::*, flags::*, database::*, matchers::*, alloc::*};
/// use std::{alloc::System, mem::ManuallyDrop};
///
/// // Set the process-global allocator to use for Database instances:
/// let tracker = LayoutTracker::new(System.into());
/// // There was no custom allocator registered yet.
/// assert!(set_db_allocator(tracker).unwrap().is_none());
///
/// let expr: Expression = "asdf".parse()?;
/// // Use ManuallyDrop to avoid calling the hyperscan db free method,
/// // since we will be invalidating the pointer by changing the allocator,
/// // and the .try_drop() method and Drop impl both call into
/// // whatever allocator is currently active to free the pointer, which will error.
/// let mut db = ManuallyDrop::new(expr.compile(Flags::SOM_LEFTMOST, Mode::BLOCK)?);
///
/// // Change the allocator to a fresh LayoutTracker:
/// let mut tracker = set_db_allocator(LayoutTracker::new(System.into())).unwrap().unwrap();
/// // Get the extant allocations from the old LayoutTracker:
/// let allocs = tracker.current_allocations();
/// // Verify that only the single known db was allocated:
/// assert_eq!(1, allocs.len());
/// let (p, layout) = allocs[0];
/// let db_ptr: *mut NativeDb = db.as_mut_native();
/// assert_eq!(p.as_ptr() as *mut NativeDb, db_ptr);
///
/// // Despite having reset the allocator, our previous db is still valid
/// // and can be used for matching:
/// let mut scratch = db.allocate_scratch()?;
/// let mut matches: Vec<&str> = Vec::new();
/// scratch.scan_sync(&db, "asdf asdf".into(), |m| {
/// matches.push(unsafe { m.source.as_str() });
/// MatchResult::Continue
/// })?;
/// assert_eq!(&matches, &["asdf", "asdf"]);
///
/// // We can deserialize something from somewhere else into the db handle:
/// let expr: Literal = "hello".parse()?;
/// let serialized_db = expr.compile(Flags::SOM_LEFTMOST, Mode::BLOCK)?.serialize()?;
/// // Ensure the allocated database is large enough to contain the deserialized one:
/// assert!(layout.size() >= serialized_db.deserialized_size()?);
/// // NB: overwrite the old database!
/// unsafe { serialized_db.deserialize_db_at(db.as_mut_native())?; }
///
/// // Reuse the same database object now:
/// scratch.setup_for_db(&db)?;
/// matches.clear();
/// scratch.scan_sync(&db, "hello hello".into(), |m| {
/// matches.push(unsafe { m.source.as_str() });
/// MatchResult::Continue
/// })?;
/// assert_eq!(&matches, &["hello", "hello"]);
///
/// // Need to deallocate the db by hand in order to drop the original LayoutTracker
/// // without panicking:
/// tracker.deallocate(p);
/// // NB: `db` is now INVALID and points to FREED MEMORY!!!
/// Ok(())
/// }
/// # #[cfg(not(feature = "compiler"))]
/// # fn main() {}
/// ```
pub fn set_db_allocator(
tracker: LayoutTracker,
) -> Result<Option<LayoutTracker>, HyperscanRuntimeError> {
let ret = DB_ALLOCATOR.write().replace(tracker);
HyperscanRuntimeError::from_native(unsafe {
hs::hs_set_database_allocator(Some(db_alloc_func), Some(db_free_func))
})?;
Ok(ret)
}
allocator![MISC_ALLOCATOR, misc_alloc_func, misc_free_func];
pub fn set_misc_allocator(
tracker: LayoutTracker,
) -> Result<Option<LayoutTracker>, HyperscanRuntimeError> {
let ret = MISC_ALLOCATOR.write().replace(tracker);
HyperscanRuntimeError::from_native(unsafe {
hs::hs_set_misc_allocator(Some(misc_alloc_func), Some(misc_free_func))
})?;
Ok(ret)
}
allocator![SCRATCH_ALLOCATOR, scratch_alloc_func, scratch_free_func];
pub fn set_scratch_allocator(
tracker: LayoutTracker,
) -> Result<Option<LayoutTracker>, HyperscanRuntimeError> {
let ret = SCRATCH_ALLOCATOR.write().replace(tracker);
HyperscanRuntimeError::from_native(unsafe {
hs::hs_set_scratch_allocator(Some(scratch_alloc_func), Some(scratch_free_func))
})?;
Ok(ret)
}
allocator![STREAM_ALLOCATOR, stream_alloc_func, stream_free_func];
pub fn set_stream_allocator(
tracker: LayoutTracker,
) -> Result<Option<LayoutTracker>, HyperscanRuntimeError> {
let ret = STREAM_ALLOCATOR.write().replace(tracker);
HyperscanRuntimeError::from_native(unsafe {
hs::hs_set_stream_allocator(Some(stream_alloc_func), Some(stream_free_func))
})?;
Ok(ret)
}
///```
/// #[cfg(feature = "compiler")]
/// fn main() -> Result<(), hyperscan::error::HyperscanError> {
/// use hyperscan::{expression::*, flags::*, matchers::*};
/// use std::alloc::System;
///
/// hyperscan::alloc::set_allocator(System.into())?;
///
/// let expr: Expression = "(he)ll".parse()?;
/// let db = expr.compile(Flags::UTF8, Mode::BLOCK)?;
///
/// let mut scratch = db.allocate_scratch()?;
///
/// let mut matches: Vec<&str> = Vec::new();
/// scratch
/// .scan_sync(&db, "hello".into(), |m| {
/// matches.push(unsafe { m.source.as_str() });
/// MatchResult::Continue
/// })?;
/// assert_eq!(&matches, &["hell"]);
/// Ok(())
/// }
/// # #[cfg(not(feature = "compiler"))]
/// # fn main() {}
/// ```
pub fn set_allocator(
allocator: Arc<impl GlobalAlloc+'static>,
) -> Result<(), HyperscanRuntimeError> {
for f in [
set_db_allocator,
set_misc_allocator,
set_scratch_allocator,
set_stream_allocator,
]
.into_iter()
{
f(LayoutTracker::new(allocator.clone()))?;
}
Ok(())
}
#[cfg(feature = "chimera")]
#[cfg_attr(docsrs, doc(cfg(feature = "chimera")))]
pub mod chimera {
use super::*;
use crate::error::chimera::*;
allocator![
CHIMERA_DB_ALLOCATOR,
chimera_db_alloc_func,
chimera_db_free_func
];
pub fn set_chimera_db_allocator(
tracker: LayoutTracker,
) -> Result<Option<LayoutTracker>, ChimeraRuntimeError> {
let ret = CHIMERA_DB_ALLOCATOR.write().replace(tracker);
ChimeraRuntimeError::from_native(unsafe {
hs::ch_set_database_allocator(Some(chimera_db_alloc_func), Some(chimera_db_free_func))
})?;
Ok(ret)
}
allocator![
CHIMERA_MISC_ALLOCATOR,
chimera_misc_alloc_func,
chimera_misc_free_func
];
pub fn set_chimera_misc_allocator(
tracker: LayoutTracker,
) -> Result<Option<LayoutTracker>, ChimeraRuntimeError> {
let ret = CHIMERA_MISC_ALLOCATOR.write().replace(tracker);
ChimeraRuntimeError::from_native(unsafe {
hs::ch_set_misc_allocator(Some(chimera_misc_alloc_func), Some(chimera_misc_free_func))
})?;
Ok(ret)
}
allocator![
CHIMERA_SCRATCH_ALLOCATOR,
chimera_scratch_alloc_func,
chimera_scratch_free_func
];
pub fn set_chimera_scratch_allocator(
tracker: LayoutTracker,
) -> Result<Option<LayoutTracker>, ChimeraRuntimeError> {
let ret = CHIMERA_SCRATCH_ALLOCATOR.write().replace(tracker);
ChimeraRuntimeError::from_native(unsafe {
hs::ch_set_scratch_allocator(
Some(chimera_scratch_alloc_func),
Some(chimera_scratch_free_func),
)
})?;
Ok(ret)
}
///```
/// # fn main() -> Result<(), hyperscan::error::chimera::ChimeraError> {
/// use hyperscan::{expression::chimera::*, flags::chimera::*, matchers::chimera::*};
/// use std::{alloc::System, sync::Arc};
///
/// hyperscan::alloc::chimera::set_chimera_allocator(Arc::new(System))?;
///
/// let expr: ChimeraExpression = "(he)ll".parse()?;
/// let db = expr.compile(ChimeraFlags::UTF8, ChimeraMode::NOGROUPS)?;
///
/// let mut scratch = db.allocate_scratch()?;
///
/// let mut matches: Vec<&str> = Vec::new();
/// let e = |_| ChimeraMatchResult::Continue;
/// scratch.scan_sync(&db, "hello".into(), |m| {
/// matches.push(unsafe { m.source.as_str() });
/// ChimeraMatchResult::Continue
/// }, e)?;
/// assert_eq!(&matches, &["hell"]);
/// # Ok(())
/// # }
/// ```
pub fn set_chimera_allocator(
allocator: Arc<impl GlobalAlloc+'static>,
) -> Result<(), ChimeraRuntimeError> {
for f in [
set_chimera_db_allocator,
set_chimera_misc_allocator,
set_chimera_scratch_allocator,
]
.into_iter()
{
f(LayoutTracker::new(allocator.clone()))?;
}
Ok(())
}
}