xref: /linux/drivers/android/binder/freeze.rs (revision a50eba1e778ad4da5b6f9ddbbf57dabbea59bc05)
1 // SPDX-License-Identifier: GPL-2.0
2 
3 // Copyright (C) 2025 Google LLC.
4 
5 use kernel::{
6     alloc::AllocError,
7     list::ListArc,
8     prelude::*,
9     rbtree::{self, RBTreeNodeReservation},
10     seq_file::SeqFile,
11     seq_print,
12     sync::{Arc, UniqueArc},
13     uaccess::UserSliceReader,
14 };
15 
16 use crate::{
17     defs::*, node::Node, process::Process, thread::Thread, BinderReturnWriter, DArc, DLArc,
18     DTRWrap, DeliverToRead,
19 };
20 
21 #[derive(Clone, Copy, Eq, PartialEq, Ord, PartialOrd)]
22 pub(crate) struct FreezeCookie(u64);
23 
24 /// Represents a listener for changes to the frozen state of a process.
25 pub(crate) struct FreezeListener {
26     /// The node we are listening for.
27     pub(crate) node: DArc<Node>,
28     /// The cookie of this freeze listener.
29     cookie: FreezeCookie,
30     /// What value of `is_frozen` did we most recently tell userspace about?
31     last_is_frozen: Option<bool>,
32     /// We sent a `BR_FROZEN_BINDER` and we are waiting for `BC_FREEZE_NOTIFICATION_DONE` before
33     /// sending any other commands.
34     is_pending: bool,
35     /// Userspace sent `BC_CLEAR_FREEZE_NOTIFICATION` and we need to reply with
36     /// `BR_CLEAR_FREEZE_NOTIFICATION_DONE` as soon as possible. If `is_pending` is set, then we
37     /// must wait for it to be unset before we can reply.
38     is_clearing: bool,
39     /// Number of cleared duplicates that can't be deleted until userspace sends
40     /// `BC_FREEZE_NOTIFICATION_DONE`.
41     num_pending_duplicates: u64,
42     /// Number of cleared duplicates that can be deleted.
43     num_cleared_duplicates: u64,
44 }
45 
46 impl FreezeListener {
47     /// Is it okay to create a new listener with the same cookie as this one for the provided node?
48     ///
49     /// Under some scenarios, userspace may delete a freeze listener and immediately recreate it
50     /// with the same cookie. This results in duplicate listeners. To avoid issues with ambiguity,
51     /// we allow this only if the new listener is for the same node, and we also require that the
52     /// old listener has already been cleared.
53     fn allow_duplicate(&self, node: &DArc<Node>) -> bool {
54         Arc::ptr_eq(&self.node, node) && self.is_clearing
55     }
56 }
57 
58 type UninitFM = UniqueArc<core::mem::MaybeUninit<DTRWrap<FreezeMessage>>>;
59 
60 /// Represents a notification that the freeze state has changed.
61 pub(crate) struct FreezeMessage {
62     cookie: FreezeCookie,
63 }
64 
65 kernel::list::impl_list_arc_safe! {
66     impl ListArcSafe<0> for FreezeMessage {
67         untracked;
68     }
69 }
70 
71 impl FreezeMessage {
72     fn new(flags: kernel::alloc::Flags) -> Result<UninitFM, AllocError> {
73         UniqueArc::new_uninit(flags)
74     }
75 
76     fn init(ua: UninitFM, cookie: FreezeCookie) -> DLArc<FreezeMessage> {
77         match ua.pin_init_with(DTRWrap::new(FreezeMessage { cookie })) {
78             Ok(msg) => ListArc::from(msg),
79             Err(err) => match err {},
80         }
81     }
82 }
83 
84 impl DeliverToRead for FreezeMessage {
85     fn do_work(
86         self: DArc<Self>,
87         thread: &Thread,
88         writer: &mut BinderReturnWriter<'_>,
89     ) -> Result<bool> {
90         let _removed_listener;
91         let mut node_refs = thread.process.node_refs.lock();
92         let Some(mut freeze_entry) = node_refs.freeze_listeners.find_mut(&self.cookie) else {
93             return Ok(true);
94         };
95         let freeze = freeze_entry.get_mut();
96 
97         if freeze.num_cleared_duplicates > 0 {
98             freeze.num_cleared_duplicates -= 1;
99             drop(node_refs);
100             writer.write_code(BR_CLEAR_FREEZE_NOTIFICATION_DONE)?;
101             writer.write_payload(&self.cookie.0)?;
102             return Ok(true);
103         }
104 
105         if freeze.is_pending {
106             return Ok(true);
107         }
108         if freeze.is_clearing {
109             kernel::warn_on!(freeze.num_cleared_duplicates != 0);
110             if freeze.num_pending_duplicates > 0 {
111                 // The primary freeze listener was deleted, so convert a pending duplicate back
112                 // into the primary one.
113                 freeze.num_pending_duplicates -= 1;
114                 freeze.is_pending = true;
115                 freeze.is_clearing = true;
116             } else {
117                 _removed_listener = freeze_entry.remove_node();
118             }
119             drop(node_refs);
120             writer.write_code(BR_CLEAR_FREEZE_NOTIFICATION_DONE)?;
121             writer.write_payload(&self.cookie.0)?;
122             Ok(true)
123         } else {
124             let is_frozen = freeze.node.owner.inner.lock().is_frozen.is_fully_frozen();
125             if freeze.last_is_frozen == Some(is_frozen) {
126                 return Ok(true);
127             }
128 
129             let mut state_info = BinderFrozenStateInfo::default();
130             state_info.is_frozen = is_frozen as u32;
131             state_info.cookie = freeze.cookie.0;
132             freeze.is_pending = true;
133             freeze.last_is_frozen = Some(is_frozen);
134             drop(node_refs);
135 
136             writer.write_code(BR_FROZEN_BINDER)?;
137             writer.write_payload(&state_info)?;
138             // BR_FROZEN_BINDER notifications can cause transactions
139             Ok(false)
140         }
141     }
142 
143     fn cancel(self: DArc<Self>) {}
144 
145     fn should_sync_wakeup(&self) -> bool {
146         false
147     }
148 
149     #[inline(never)]
150     fn debug_print(&self, m: &SeqFile, prefix: &str, _tprefix: &str) -> Result<()> {
151         seq_print!(m, "{}has frozen binder\n", prefix);
152         Ok(())
153     }
154 }
155 
156 impl FreezeListener {
157     /// Called when this freeze listener is cleared abnormally.
158     ///
159     /// This occurs either because the process exited or because the process dropped its last
160     /// refcount on the node ref without explicitly removing the freeze listener first.
161     ///
162     /// The returned `KVVec` is just a value that should be dropped outside of the lock.
163     pub(crate) fn on_process_cleanup(&self, proc: &Process) -> KVVec<Arc<Process>> {
164         if !self.is_clearing {
165             return self.node.remove_freeze_listener(proc);
166         }
167         KVVec::new()
168     }
169 }
170 
171 impl Process {
172     pub(crate) fn request_freeze_notif(
173         self: &Arc<Self>,
174         reader: &mut UserSliceReader,
175     ) -> Result<()> {
176         let hc = reader.read::<BinderHandleCookie>()?;
177         let handle = hc.handle;
178         let cookie = FreezeCookie(hc.cookie);
179 
180         let msg = FreezeMessage::new(GFP_KERNEL)?;
181         let alloc = RBTreeNodeReservation::new(GFP_KERNEL)?;
182 
183         let mut node_refs_guard = self.node_refs.lock();
184         let node_refs = &mut *node_refs_guard;
185         let Some(info) = node_refs.by_handle.get_mut(&handle) else {
186             pr_warn!("BC_REQUEST_FREEZE_NOTIFICATION invalid ref {}\n", handle);
187             return Err(EINVAL);
188         };
189         if info.freeze().is_some() {
190             pr_warn!("BC_REQUEST_FREEZE_NOTIFICATION already set\n");
191             return Err(EINVAL);
192         }
193         let node_ref = info.node_ref();
194         let freeze_entry = node_refs.freeze_listeners.entry(cookie);
195 
196         if let rbtree::Entry::Occupied(ref dupe) = freeze_entry {
197             if !dupe.get().allow_duplicate(&node_ref.node) {
198                 pr_warn!("BC_REQUEST_FREEZE_NOTIFICATION duplicate cookie\n");
199                 return Err(EINVAL);
200             }
201         }
202 
203         // All failure paths must come before this call, and all modifications must come after this
204         // call.
205         node_ref.node.add_freeze_listener(self, GFP_KERNEL)?;
206 
207         match freeze_entry {
208             rbtree::Entry::Vacant(entry) => {
209                 entry.insert(
210                     FreezeListener {
211                         cookie,
212                         node: node_ref.node.clone(),
213                         last_is_frozen: None,
214                         is_pending: false,
215                         is_clearing: false,
216                         num_pending_duplicates: 0,
217                         num_cleared_duplicates: 0,
218                     },
219                     alloc,
220                 );
221             }
222             rbtree::Entry::Occupied(mut dupe) => {
223                 let dupe = dupe.get_mut();
224                 if dupe.is_pending {
225                     dupe.num_pending_duplicates += 1;
226                 } else {
227                     dupe.num_cleared_duplicates += 1;
228                 }
229                 dupe.last_is_frozen = None;
230                 dupe.is_pending = false;
231                 dupe.is_clearing = false;
232             }
233         }
234 
235         *info.freeze() = Some(cookie);
236         let msg = FreezeMessage::init(msg, cookie);
237         drop(node_refs_guard);
238         let _ = self.push_work(msg);
239         Ok(())
240     }
241 
242     pub(crate) fn freeze_notif_done(self: &Arc<Self>, reader: &mut UserSliceReader) -> Result<()> {
243         let cookie = FreezeCookie(reader.read()?);
244         let alloc = FreezeMessage::new(GFP_KERNEL)?;
245         let mut node_refs_guard = self.node_refs.lock();
246         let node_refs = &mut *node_refs_guard;
247         let Some(freeze) = node_refs.freeze_listeners.get_mut(&cookie) else {
248             pr_warn!("BC_FREEZE_NOTIFICATION_DONE {:016x} not found\n", cookie.0);
249             return Err(EINVAL);
250         };
251         let mut clear_msg = None;
252         if freeze.num_pending_duplicates > 0 {
253             clear_msg = Some(FreezeMessage::init(alloc, cookie));
254             freeze.num_pending_duplicates -= 1;
255             freeze.num_cleared_duplicates += 1;
256         } else {
257             if !freeze.is_pending {
258                 pr_warn!(
259                     "BC_FREEZE_NOTIFICATION_DONE {:016x} not pending\n",
260                     cookie.0
261                 );
262                 return Err(EINVAL);
263             }
264             let is_frozen = freeze.node.owner.inner.lock().is_frozen.is_fully_frozen();
265             if freeze.is_clearing || freeze.last_is_frozen != Some(is_frozen) {
266                 // Immediately send another FreezeMessage.
267                 clear_msg = Some(FreezeMessage::init(alloc, cookie));
268             }
269             freeze.is_pending = false;
270         }
271         drop(node_refs_guard);
272         if let Some(clear_msg) = clear_msg {
273             let _ = self.push_work(clear_msg);
274         }
275         Ok(())
276     }
277 
278     pub(crate) fn clear_freeze_notif(self: &Arc<Self>, reader: &mut UserSliceReader) -> Result<()> {
279         let hc = reader.read::<BinderHandleCookie>()?;
280         let handle = hc.handle;
281         let cookie = FreezeCookie(hc.cookie);
282 
283         let alloc = FreezeMessage::new(GFP_KERNEL)?;
284         let mut node_refs_guard = self.node_refs.lock();
285         let node_refs = &mut *node_refs_guard;
286         let Some(info) = node_refs.by_handle.get_mut(&handle) else {
287             pr_warn!("BC_CLEAR_FREEZE_NOTIFICATION invalid ref {}\n", handle);
288             return Err(EINVAL);
289         };
290         let Some(info_cookie) = info.freeze() else {
291             pr_warn!("BC_CLEAR_FREEZE_NOTIFICATION freeze notification not active\n");
292             return Err(EINVAL);
293         };
294         if *info_cookie != cookie {
295             pr_warn!("BC_CLEAR_FREEZE_NOTIFICATION freeze notification cookie mismatch\n");
296             return Err(EINVAL);
297         }
298         let Some(listener) = node_refs.freeze_listeners.get_mut(&cookie) else {
299             pr_warn!("BC_CLEAR_FREEZE_NOTIFICATION invalid cookie {}\n", handle);
300             return Err(EINVAL);
301         };
302         listener.is_clearing = true;
303         listener.node.remove_freeze_listener(self);
304         *info.freeze() = None;
305         let mut msg = None;
306         if !listener.is_pending {
307             msg = Some(FreezeMessage::init(alloc, cookie));
308         }
309         drop(node_refs_guard);
310 
311         if let Some(msg) = msg {
312             let _ = self.push_work(msg);
313         }
314         Ok(())
315     }
316 
317     fn get_freeze_cookie(&self, node: &DArc<Node>) -> Option<FreezeCookie> {
318         let node_refs = &mut *self.node_refs.lock();
319         let handle = node_refs.by_node.get(&node.global_id())?;
320         let node_ref = node_refs.by_handle.get_mut(handle)?;
321         *node_ref.freeze()
322     }
323 
324     /// Creates a vector of every freeze listener on this process.
325     ///
326     /// Returns pairs of the remote process listening for notifications and the local node it is
327     /// listening on.
328     #[expect(clippy::type_complexity)]
329     fn find_freeze_recipients(&self) -> Result<KVVec<(DArc<Node>, Arc<Process>)>, AllocError> {
330         // Defined before `inner` to drop after releasing spinlock if `push_within_capacity` fails.
331         let mut node_proc_pair;
332 
333         // We pre-allocate space for up to 8 recipients before we take the spinlock. However, if
334         // the allocation fails, use a vector with a capacity of zero instead of failing. After
335         // all, there might not be any freeze listeners, in which case this operation could still
336         // succeed.
337         let mut recipients =
338             KVVec::with_capacity(8, GFP_KERNEL).unwrap_or_else(|_err| KVVec::new());
339 
340         let mut inner = self.lock_with_nodes();
341         let mut curr = inner.nodes.cursor_front_mut();
342         while let Some(cursor) = curr {
343             let (key, node) = cursor.current();
344             let key = *key;
345             let list = node.freeze_list(&inner.inner);
346             let len = list.len();
347 
348             if recipients.spare_capacity_mut().len() < len {
349                 drop(inner);
350                 recipients.reserve(len, GFP_KERNEL)?;
351                 inner = self.lock_with_nodes();
352                 // Find the node we were looking at and try again. If the set of nodes was changed,
353                 // then just proceed to the next node. This is ok because we don't guarantee the
354                 // inclusion of nodes that are added or removed in parallel with this operation.
355                 curr = inner.nodes.cursor_lower_bound_mut(&key);
356                 continue;
357             }
358 
359             for proc in list {
360                 node_proc_pair = (node.clone(), proc.clone());
361                 recipients
362                     .push_within_capacity(node_proc_pair)
363                     .map_err(|_| {
364                         pr_err!(
365                             "push_within_capacity failed even though we checked the capacity\n"
366                         );
367                         AllocError
368                     })?;
369             }
370 
371             curr = cursor.move_next();
372         }
373         Ok(recipients)
374     }
375 
376     /// Prepare allocations for sending freeze messages.
377     pub(crate) fn prepare_freeze_messages(&self) -> Result<FreezeMessages, AllocError> {
378         let recipients = self.find_freeze_recipients()?;
379         let mut batch = KVVec::with_capacity(recipients.len(), GFP_KERNEL)?;
380         for (node, proc) in recipients {
381             let Some(cookie) = proc.get_freeze_cookie(&node) else {
382                 // If the freeze listener was removed in the meantime, just discard the
383                 // notification.
384                 continue;
385             };
386             let msg_alloc = FreezeMessage::new(GFP_KERNEL)?;
387             let msg = FreezeMessage::init(msg_alloc, cookie);
388             batch.push((proc, msg), GFP_KERNEL)?;
389         }
390 
391         Ok(FreezeMessages { batch })
392     }
393 }
394 
395 pub(crate) struct FreezeMessages {
396     batch: KVVec<(Arc<Process>, DLArc<FreezeMessage>)>,
397 }
398 
399 impl FreezeMessages {
400     pub(crate) fn send_messages(self) {
401         for (proc, msg) in self.batch {
402             let _ = proc.push_work(msg);
403         }
404     }
405 }
406