linux-uconsole/kernel/task_work.c
Greg Kroah-Hartman 8596b99884 Merge 5.10.162 into android12-5.10-lts
Changes in 5.10.162
	kernel: provide create_io_thread() helper
	iov_iter: add helper to save iov_iter state
	saner calling conventions for unlazy_child()
	fs: add support for LOOKUP_CACHED
	fix handling of nd->depth on LOOKUP_CACHED failures in try_to_unlazy*
	Make sure nd->path.mnt and nd->path.dentry are always valid pointers
	fs: expose LOOKUP_CACHED through openat2() RESOLVE_CACHED
	tools headers UAPI: Sync openat2.h with the kernel sources
	net: provide __sys_shutdown_sock() that takes a socket
	net: add accept helper not installing fd
	signal: Add task_sigpending() helper
	fs: make do_renameat2() take struct filename
	file: Rename __close_fd_get_file close_fd_get_file
	fs: provide locked helper variant of close_fd_get_file()
	entry: Add support for TIF_NOTIFY_SIGNAL
	task_work: Use TIF_NOTIFY_SIGNAL if available
	x86: Wire up TIF_NOTIFY_SIGNAL
	arc: add support for TIF_NOTIFY_SIGNAL
	arm64: add support for TIF_NOTIFY_SIGNAL
	m68k: add support for TIF_NOTIFY_SIGNAL
	nios32: add support for TIF_NOTIFY_SIGNAL
	parisc: add support for TIF_NOTIFY_SIGNAL
	powerpc: add support for TIF_NOTIFY_SIGNAL
	mips: add support for TIF_NOTIFY_SIGNAL
	s390: add support for TIF_NOTIFY_SIGNAL
	um: add support for TIF_NOTIFY_SIGNAL
	sh: add support for TIF_NOTIFY_SIGNAL
	openrisc: add support for TIF_NOTIFY_SIGNAL
	csky: add support for TIF_NOTIFY_SIGNAL
	hexagon: add support for TIF_NOTIFY_SIGNAL
	microblaze: add support for TIF_NOTIFY_SIGNAL
	arm: add support for TIF_NOTIFY_SIGNAL
	xtensa: add support for TIF_NOTIFY_SIGNAL
	alpha: add support for TIF_NOTIFY_SIGNAL
	c6x: add support for TIF_NOTIFY_SIGNAL
	h8300: add support for TIF_NOTIFY_SIGNAL
	ia64: add support for TIF_NOTIFY_SIGNAL
	nds32: add support for TIF_NOTIFY_SIGNAL
	riscv: add support for TIF_NOTIFY_SIGNAL
	sparc: add support for TIF_NOTIFY_SIGNAL
	ia64: don't call handle_signal() unless there's actually a signal queued
	ARC: unbork 5.11 bootup: fix snafu in _TIF_NOTIFY_SIGNAL handling
	alpha: fix TIF_NOTIFY_SIGNAL handling
	task_work: remove legacy TWA_SIGNAL path
	kernel: remove checking for TIF_NOTIFY_SIGNAL
	coredump: Limit what can interrupt coredumps
	kernel: allow fork with TIF_NOTIFY_SIGNAL pending
	entry/kvm: Exit to user mode when TIF_NOTIFY_SIGNAL is set
	arch: setup PF_IO_WORKER threads like PF_KTHREAD
	arch: ensure parisc/powerpc handle PF_IO_WORKER in copy_thread()
	x86/process: setup io_threads more like normal user space threads
	kernel: stop masking signals in create_io_thread()
	kernel: don't call do_exit() for PF_IO_WORKER threads
	task_work: add helper for more targeted task_work canceling
	io_uring: import 5.15-stable io_uring
	signal: kill JOBCTL_TASK_WORK
	task_work: unconditionally run task_work from get_signal()
	net: remove cmsg restriction from io_uring based send/recvmsg calls
	Revert "proc: don't allow async path resolution of /proc/thread-self components"
	Revert "proc: don't allow async path resolution of /proc/self components"
	eventpoll: add EPOLL_URING_WAKE poll wakeup flag
	eventfd: provide a eventfd_signal_mask() helper
	io_uring: pass in EPOLL_URING_WAKE for eventfd signaling and wakeups
	Linux 5.10.162

Change-Id: I50a7b8bc8d38fac612113281b218cf5323b0af5e
Signed-off-by: Greg Kroah-Hartman <gregkh@google.com>
2023-02-01 16:13:18 +00:00

169 lines
4.6 KiB
C

// SPDX-License-Identifier: GPL-2.0
#include <linux/spinlock.h>
#include <linux/task_work.h>
#include <linux/tracehook.h>
static struct callback_head work_exited; /* all we need is ->next == NULL */
/**
* task_work_add - ask the @task to execute @work->func()
* @task: the task which should run the callback
* @work: the callback to run
* @notify: how to notify the targeted task
*
* Queue @work for task_work_run() below and notify the @task if @notify
* is @TWA_RESUME or @TWA_SIGNAL. @TWA_SIGNAL works like signals, in that the
* it will interrupt the targeted task and run the task_work. @TWA_RESUME
* work is run only when the task exits the kernel and returns to user mode,
* or before entering guest mode. Fails if the @task is exiting/exited and thus
* it can't process this @work. Otherwise @work->func() will be called when the
* @task goes through one of the aforementioned transitions, or exits.
*
* If the targeted task is exiting, then an error is returned and the work item
* is not queued. It's up to the caller to arrange for an alternative mechanism
* in that case.
*
* Note: there is no ordering guarantee on works queued here. The task_work
* list is LIFO.
*
* RETURNS:
* 0 if succeeds or -ESRCH.
*/
int task_work_add(struct task_struct *task, struct callback_head *work,
enum task_work_notify_mode notify)
{
struct callback_head *head;
/* record the work call stack in order to print it in KASAN reports */
kasan_record_aux_stack(work);
do {
head = READ_ONCE(task->task_works);
if (unlikely(head == &work_exited))
return -ESRCH;
work->next = head;
} while (cmpxchg(&task->task_works, head, work) != head);
switch (notify) {
case TWA_NONE:
break;
case TWA_RESUME:
set_notify_resume(task);
break;
case TWA_SIGNAL:
set_notify_signal(task);
break;
default:
WARN_ON_ONCE(1);
break;
}
return 0;
}
/**
* task_work_cancel_match - cancel a pending work added by task_work_add()
* @task: the task which should execute the work
* @match: match function to call
*
* RETURNS:
* The found work or NULL if not found.
*/
struct callback_head *
task_work_cancel_match(struct task_struct *task,
bool (*match)(struct callback_head *, void *data),
void *data)
{
struct callback_head **pprev = &task->task_works;
struct callback_head *work;
unsigned long flags;
if (likely(!task->task_works))
return NULL;
/*
* If cmpxchg() fails we continue without updating pprev.
* Either we raced with task_work_add() which added the
* new entry before this work, we will find it again. Or
* we raced with task_work_run(), *pprev == NULL/exited.
*/
raw_spin_lock_irqsave(&task->pi_lock, flags);
while ((work = READ_ONCE(*pprev))) {
if (!match(work, data))
pprev = &work->next;
else if (cmpxchg(pprev, work, work->next) == work)
break;
}
raw_spin_unlock_irqrestore(&task->pi_lock, flags);
return work;
}
static bool task_work_func_match(struct callback_head *cb, void *data)
{
return cb->func == data;
}
/**
* task_work_cancel - cancel a pending work added by task_work_add()
* @task: the task which should execute the work
* @func: identifies the work to remove
*
* Find the last queued pending work with ->func == @func and remove
* it from queue.
*
* RETURNS:
* The found work or NULL if not found.
*/
struct callback_head *
task_work_cancel(struct task_struct *task, task_work_func_t func)
{
return task_work_cancel_match(task, task_work_func_match, func);
}
/**
* task_work_run - execute the works added by task_work_add()
*
* Flush the pending works. Should be used by the core kernel code.
* Called before the task returns to the user-mode or stops, or when
* it exits. In the latter case task_work_add() can no longer add the
* new work after task_work_run() returns.
*/
void task_work_run(void)
{
struct task_struct *task = current;
struct callback_head *work, *head, *next;
for (;;) {
/*
* work->func() can do task_work_add(), do not set
* work_exited unless the list is empty.
*/
do {
head = NULL;
work = READ_ONCE(task->task_works);
if (!work) {
if (task->flags & PF_EXITING)
head = &work_exited;
else
break;
}
} while (cmpxchg(&task->task_works, work, head) != work);
if (!work)
break;
/*
* Synchronize with task_work_cancel(). It can not remove
* the first entry == work, cmpxchg(task_works) must fail.
* But it can remove another entry from the ->next list.
*/
raw_spin_lock_irq(&task->pi_lock);
raw_spin_unlock_irq(&task->pi_lock);
do {
next = work->next;
work->func(work);
work = next;
cond_resched();
} while (work);
}
}