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connector: improved unaligned access error fix
In af3e095a1f
, Erik Jacobsen fixed one type of unaligned access
bug for ia64 by converting a 64-bit write to use put_unaligned().
Unfortunately, since gcc will convert a short memset() to a series
of appropriately-aligned stores, the problem is now visible again
on tilegx, where the memset that zeros out proc_event is converted
to three 64-bit stores, causing an unaligned access panic.
A better fix for the original problem is to ensure that proc_event
is aligned to 8 bytes here. We can do that relatively easily by
arranging to start the struct cn_msg aligned to 8 bytes and then
offset by 4 bytes. Doing so means that the immediately following
proc_event structure is then correctly aligned to 8 bytes.
The result is that the memset() stores are now aligned, and as an
added benefit, we can remove the put_unaligned() calls in the code.
Signed-off-by: Chris Metcalf <cmetcalf@tilera.com>
Signed-off-by: David S. Miller <davem@davemloft.net>
This commit is contained in:
parent
2abc2f070e
commit
1ca1a4cf59
@ -32,11 +32,23 @@
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#include <linux/atomic.h>
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#include <linux/pid_namespace.h>
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#include <asm/unaligned.h>
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#include <linux/cn_proc.h>
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#define CN_PROC_MSG_SIZE (sizeof(struct cn_msg) + sizeof(struct proc_event))
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/*
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* Size of a cn_msg followed by a proc_event structure. Since the
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* sizeof struct cn_msg is a multiple of 4 bytes, but not 8 bytes, we
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* add one 4-byte word to the size here, and then start the actual
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* cn_msg structure 4 bytes into the stack buffer. The result is that
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* the immediately following proc_event structure is aligned to 8 bytes.
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*/
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#define CN_PROC_MSG_SIZE (sizeof(struct cn_msg) + sizeof(struct proc_event) + 4)
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/* See comment above; we test our assumption about sizeof struct cn_msg here. */
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static inline struct cn_msg *buffer_to_cn_msg(__u8 *buffer)
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{
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BUILD_BUG_ON(sizeof(struct cn_msg) != 20);
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return (struct cn_msg *)(buffer + 4);
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}
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static atomic_t proc_event_num_listeners = ATOMIC_INIT(0);
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static struct cb_id cn_proc_event_id = { CN_IDX_PROC, CN_VAL_PROC };
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@ -56,19 +68,19 @@ void proc_fork_connector(struct task_struct *task)
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{
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struct cn_msg *msg;
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struct proc_event *ev;
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__u8 buffer[CN_PROC_MSG_SIZE];
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__u8 buffer[CN_PROC_MSG_SIZE] __aligned(8);
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struct timespec ts;
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struct task_struct *parent;
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if (atomic_read(&proc_event_num_listeners) < 1)
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return;
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msg = (struct cn_msg *)buffer;
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msg = buffer_to_cn_msg(buffer);
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ev = (struct proc_event *)msg->data;
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memset(&ev->event_data, 0, sizeof(ev->event_data));
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get_seq(&msg->seq, &ev->cpu);
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ktime_get_ts(&ts); /* get high res monotonic timestamp */
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put_unaligned(timespec_to_ns(&ts), (__u64 *)&ev->timestamp_ns);
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ev->timestamp_ns = timespec_to_ns(&ts);
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ev->what = PROC_EVENT_FORK;
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rcu_read_lock();
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parent = rcu_dereference(task->real_parent);
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@ -91,17 +103,17 @@ void proc_exec_connector(struct task_struct *task)
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struct cn_msg *msg;
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struct proc_event *ev;
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struct timespec ts;
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__u8 buffer[CN_PROC_MSG_SIZE];
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__u8 buffer[CN_PROC_MSG_SIZE] __aligned(8);
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if (atomic_read(&proc_event_num_listeners) < 1)
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return;
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msg = (struct cn_msg *)buffer;
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msg = buffer_to_cn_msg(buffer);
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ev = (struct proc_event *)msg->data;
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memset(&ev->event_data, 0, sizeof(ev->event_data));
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get_seq(&msg->seq, &ev->cpu);
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ktime_get_ts(&ts); /* get high res monotonic timestamp */
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put_unaligned(timespec_to_ns(&ts), (__u64 *)&ev->timestamp_ns);
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ev->timestamp_ns = timespec_to_ns(&ts);
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ev->what = PROC_EVENT_EXEC;
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ev->event_data.exec.process_pid = task->pid;
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ev->event_data.exec.process_tgid = task->tgid;
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@ -117,14 +129,14 @@ void proc_id_connector(struct task_struct *task, int which_id)
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{
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struct cn_msg *msg;
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struct proc_event *ev;
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__u8 buffer[CN_PROC_MSG_SIZE];
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__u8 buffer[CN_PROC_MSG_SIZE] __aligned(8);
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struct timespec ts;
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const struct cred *cred;
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if (atomic_read(&proc_event_num_listeners) < 1)
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return;
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msg = (struct cn_msg *)buffer;
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msg = buffer_to_cn_msg(buffer);
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ev = (struct proc_event *)msg->data;
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memset(&ev->event_data, 0, sizeof(ev->event_data));
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ev->what = which_id;
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@ -145,7 +157,7 @@ void proc_id_connector(struct task_struct *task, int which_id)
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rcu_read_unlock();
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get_seq(&msg->seq, &ev->cpu);
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ktime_get_ts(&ts); /* get high res monotonic timestamp */
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put_unaligned(timespec_to_ns(&ts), (__u64 *)&ev->timestamp_ns);
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ev->timestamp_ns = timespec_to_ns(&ts);
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memcpy(&msg->id, &cn_proc_event_id, sizeof(msg->id));
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msg->ack = 0; /* not used */
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@ -159,17 +171,17 @@ void proc_sid_connector(struct task_struct *task)
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struct cn_msg *msg;
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struct proc_event *ev;
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struct timespec ts;
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__u8 buffer[CN_PROC_MSG_SIZE];
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__u8 buffer[CN_PROC_MSG_SIZE] __aligned(8);
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if (atomic_read(&proc_event_num_listeners) < 1)
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return;
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msg = (struct cn_msg *)buffer;
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msg = buffer_to_cn_msg(buffer);
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ev = (struct proc_event *)msg->data;
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memset(&ev->event_data, 0, sizeof(ev->event_data));
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get_seq(&msg->seq, &ev->cpu);
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ktime_get_ts(&ts); /* get high res monotonic timestamp */
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put_unaligned(timespec_to_ns(&ts), (__u64 *)&ev->timestamp_ns);
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ev->timestamp_ns = timespec_to_ns(&ts);
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ev->what = PROC_EVENT_SID;
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ev->event_data.sid.process_pid = task->pid;
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ev->event_data.sid.process_tgid = task->tgid;
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@ -186,17 +198,17 @@ void proc_ptrace_connector(struct task_struct *task, int ptrace_id)
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struct cn_msg *msg;
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struct proc_event *ev;
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struct timespec ts;
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__u8 buffer[CN_PROC_MSG_SIZE];
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__u8 buffer[CN_PROC_MSG_SIZE] __aligned(8);
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if (atomic_read(&proc_event_num_listeners) < 1)
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return;
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msg = (struct cn_msg *)buffer;
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msg = buffer_to_cn_msg(buffer);
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ev = (struct proc_event *)msg->data;
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memset(&ev->event_data, 0, sizeof(ev->event_data));
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get_seq(&msg->seq, &ev->cpu);
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ktime_get_ts(&ts); /* get high res monotonic timestamp */
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put_unaligned(timespec_to_ns(&ts), (__u64 *)&ev->timestamp_ns);
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ev->timestamp_ns = timespec_to_ns(&ts);
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ev->what = PROC_EVENT_PTRACE;
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ev->event_data.ptrace.process_pid = task->pid;
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ev->event_data.ptrace.process_tgid = task->tgid;
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@ -221,17 +233,17 @@ void proc_comm_connector(struct task_struct *task)
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struct cn_msg *msg;
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struct proc_event *ev;
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struct timespec ts;
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__u8 buffer[CN_PROC_MSG_SIZE];
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__u8 buffer[CN_PROC_MSG_SIZE] __aligned(8);
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if (atomic_read(&proc_event_num_listeners) < 1)
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return;
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msg = (struct cn_msg *)buffer;
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msg = buffer_to_cn_msg(buffer);
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ev = (struct proc_event *)msg->data;
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memset(&ev->event_data, 0, sizeof(ev->event_data));
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get_seq(&msg->seq, &ev->cpu);
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ktime_get_ts(&ts); /* get high res monotonic timestamp */
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put_unaligned(timespec_to_ns(&ts), (__u64 *)&ev->timestamp_ns);
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ev->timestamp_ns = timespec_to_ns(&ts);
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ev->what = PROC_EVENT_COMM;
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ev->event_data.comm.process_pid = task->pid;
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ev->event_data.comm.process_tgid = task->tgid;
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@ -248,18 +260,18 @@ void proc_coredump_connector(struct task_struct *task)
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{
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struct cn_msg *msg;
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struct proc_event *ev;
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__u8 buffer[CN_PROC_MSG_SIZE];
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__u8 buffer[CN_PROC_MSG_SIZE] __aligned(8);
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struct timespec ts;
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if (atomic_read(&proc_event_num_listeners) < 1)
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return;
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msg = (struct cn_msg *)buffer;
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msg = buffer_to_cn_msg(buffer);
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ev = (struct proc_event *)msg->data;
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memset(&ev->event_data, 0, sizeof(ev->event_data));
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get_seq(&msg->seq, &ev->cpu);
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ktime_get_ts(&ts); /* get high res monotonic timestamp */
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put_unaligned(timespec_to_ns(&ts), (__u64 *)&ev->timestamp_ns);
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ev->timestamp_ns = timespec_to_ns(&ts);
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ev->what = PROC_EVENT_COREDUMP;
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ev->event_data.coredump.process_pid = task->pid;
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ev->event_data.coredump.process_tgid = task->tgid;
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@ -275,18 +287,18 @@ void proc_exit_connector(struct task_struct *task)
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{
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struct cn_msg *msg;
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struct proc_event *ev;
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__u8 buffer[CN_PROC_MSG_SIZE];
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__u8 buffer[CN_PROC_MSG_SIZE] __aligned(8);
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struct timespec ts;
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if (atomic_read(&proc_event_num_listeners) < 1)
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return;
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msg = (struct cn_msg *)buffer;
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msg = buffer_to_cn_msg(buffer);
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ev = (struct proc_event *)msg->data;
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memset(&ev->event_data, 0, sizeof(ev->event_data));
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get_seq(&msg->seq, &ev->cpu);
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ktime_get_ts(&ts); /* get high res monotonic timestamp */
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put_unaligned(timespec_to_ns(&ts), (__u64 *)&ev->timestamp_ns);
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ev->timestamp_ns = timespec_to_ns(&ts);
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ev->what = PROC_EVENT_EXIT;
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ev->event_data.exit.process_pid = task->pid;
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ev->event_data.exit.process_tgid = task->tgid;
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@ -312,18 +324,18 @@ static void cn_proc_ack(int err, int rcvd_seq, int rcvd_ack)
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{
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struct cn_msg *msg;
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struct proc_event *ev;
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__u8 buffer[CN_PROC_MSG_SIZE];
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__u8 buffer[CN_PROC_MSG_SIZE] __aligned(8);
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struct timespec ts;
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if (atomic_read(&proc_event_num_listeners) < 1)
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return;
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msg = (struct cn_msg *)buffer;
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msg = buffer_to_cn_msg(buffer);
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ev = (struct proc_event *)msg->data;
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memset(&ev->event_data, 0, sizeof(ev->event_data));
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msg->seq = rcvd_seq;
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ktime_get_ts(&ts); /* get high res monotonic timestamp */
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put_unaligned(timespec_to_ns(&ts), (__u64 *)&ev->timestamp_ns);
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ev->timestamp_ns = timespec_to_ns(&ts);
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ev->cpu = -1;
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ev->what = PROC_EVENT_NONE;
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ev->event_data.ack.err = err;
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