2 * cn_proc.c - process events connector
4 * Copyright (C) Matt Helsley, IBM Corp. 2005
5 * Based on cn_fork.c by Guillaume Thouvenin <guillaume.thouvenin@bull.net>
6 * Original copyright notice follows:
7 * Copyright (C) 2005 BULL SA.
10 * This program is free software; you can redistribute it and/or modify
11 * it under the terms of the GNU General Public License as published by
12 * the Free Software Foundation; either version 2 of the License, or
13 * (at your option) any later version.
15 * This program is distributed in the hope that it will be useful,
16 * but WITHOUT ANY WARRANTY; without even the implied warranty of
17 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
18 * GNU General Public License for more details.
20 * You should have received a copy of the GNU General Public License
21 * along with this program; if not, write to the Free Software
22 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
25 #include <linux/module.h>
26 #include <linux/kernel.h>
27 #include <linux/ktime.h>
28 #include <linux/init.h>
29 #include <linux/connector.h>
30 #include <linux/gfp.h>
31 #include <linux/ptrace.h>
32 #include <linux/atomic.h>
33 #include <linux/pid_namespace.h>
35 #include <asm/unaligned.h>
37 #include <linux/cn_proc.h>
39 #define CN_PROC_MSG_SIZE (sizeof(struct cn_msg) + sizeof(struct proc_event))
41 static atomic_t proc_event_num_listeners = ATOMIC_INIT(0);
42 static struct cb_id cn_proc_event_id = { CN_IDX_PROC, CN_VAL_PROC };
44 /* proc_event_counts is used as the sequence number of the netlink message */
45 static DEFINE_PER_CPU(__u32, proc_event_counts) = { 0 };
47 static inline void get_seq(__u32 *ts, int *cpu)
50 *ts = __this_cpu_inc_return(proc_event_counts) - 1;
51 *cpu = smp_processor_id();
55 void proc_fork_connector(struct task_struct *task)
58 struct proc_event *ev;
59 __u8 buffer[CN_PROC_MSG_SIZE];
61 struct task_struct *parent;
63 if (atomic_read(&proc_event_num_listeners) < 1)
66 msg = (struct cn_msg *)buffer;
67 ev = (struct proc_event *)msg->data;
68 memset(&ev->event_data, 0, sizeof(ev->event_data));
69 get_seq(&msg->seq, &ev->cpu);
70 ktime_get_ts(&ts); /* get high res monotonic timestamp */
71 put_unaligned(timespec_to_ns(&ts), (__u64 *)&ev->timestamp_ns);
72 ev->what = PROC_EVENT_FORK;
74 parent = rcu_dereference(task->real_parent);
75 ev->event_data.fork.parent_pid = parent->pid;
76 ev->event_data.fork.parent_tgid = parent->tgid;
78 ev->event_data.fork.child_pid = task->pid;
79 ev->event_data.fork.child_tgid = task->tgid;
81 memcpy(&msg->id, &cn_proc_event_id, sizeof(msg->id));
82 msg->ack = 0; /* not used */
83 msg->len = sizeof(*ev);
84 msg->flags = 0; /* not used */
85 /* If cn_netlink_send() failed, the data is not sent */
86 cn_netlink_send(msg, CN_IDX_PROC, GFP_KERNEL);
89 void proc_exec_connector(struct task_struct *task)
92 struct proc_event *ev;
94 __u8 buffer[CN_PROC_MSG_SIZE];
96 if (atomic_read(&proc_event_num_listeners) < 1)
99 msg = (struct cn_msg *)buffer;
100 ev = (struct proc_event *)msg->data;
101 memset(&ev->event_data, 0, sizeof(ev->event_data));
102 get_seq(&msg->seq, &ev->cpu);
103 ktime_get_ts(&ts); /* get high res monotonic timestamp */
104 put_unaligned(timespec_to_ns(&ts), (__u64 *)&ev->timestamp_ns);
105 ev->what = PROC_EVENT_EXEC;
106 ev->event_data.exec.process_pid = task->pid;
107 ev->event_data.exec.process_tgid = task->tgid;
109 memcpy(&msg->id, &cn_proc_event_id, sizeof(msg->id));
110 msg->ack = 0; /* not used */
111 msg->len = sizeof(*ev);
112 msg->flags = 0; /* not used */
113 cn_netlink_send(msg, CN_IDX_PROC, GFP_KERNEL);
116 void proc_id_connector(struct task_struct *task, int which_id)
119 struct proc_event *ev;
120 __u8 buffer[CN_PROC_MSG_SIZE];
122 const struct cred *cred;
124 if (atomic_read(&proc_event_num_listeners) < 1)
127 msg = (struct cn_msg *)buffer;
128 ev = (struct proc_event *)msg->data;
129 memset(&ev->event_data, 0, sizeof(ev->event_data));
131 ev->event_data.id.process_pid = task->pid;
132 ev->event_data.id.process_tgid = task->tgid;
134 cred = __task_cred(task);
135 if (which_id == PROC_EVENT_UID) {
136 ev->event_data.id.r.ruid = from_kuid_munged(&init_user_ns, cred->uid);
137 ev->event_data.id.e.euid = from_kuid_munged(&init_user_ns, cred->euid);
138 } else if (which_id == PROC_EVENT_GID) {
139 ev->event_data.id.r.rgid = from_kgid_munged(&init_user_ns, cred->gid);
140 ev->event_data.id.e.egid = from_kgid_munged(&init_user_ns, cred->egid);
146 get_seq(&msg->seq, &ev->cpu);
147 ktime_get_ts(&ts); /* get high res monotonic timestamp */
148 put_unaligned(timespec_to_ns(&ts), (__u64 *)&ev->timestamp_ns);
150 memcpy(&msg->id, &cn_proc_event_id, sizeof(msg->id));
151 msg->ack = 0; /* not used */
152 msg->len = sizeof(*ev);
153 msg->flags = 0; /* not used */
154 cn_netlink_send(msg, CN_IDX_PROC, GFP_KERNEL);
157 void proc_sid_connector(struct task_struct *task)
160 struct proc_event *ev;
162 __u8 buffer[CN_PROC_MSG_SIZE];
164 if (atomic_read(&proc_event_num_listeners) < 1)
167 msg = (struct cn_msg *)buffer;
168 ev = (struct proc_event *)msg->data;
169 memset(&ev->event_data, 0, sizeof(ev->event_data));
170 get_seq(&msg->seq, &ev->cpu);
171 ktime_get_ts(&ts); /* get high res monotonic timestamp */
172 put_unaligned(timespec_to_ns(&ts), (__u64 *)&ev->timestamp_ns);
173 ev->what = PROC_EVENT_SID;
174 ev->event_data.sid.process_pid = task->pid;
175 ev->event_data.sid.process_tgid = task->tgid;
177 memcpy(&msg->id, &cn_proc_event_id, sizeof(msg->id));
178 msg->ack = 0; /* not used */
179 msg->len = sizeof(*ev);
180 msg->flags = 0; /* not used */
181 cn_netlink_send(msg, CN_IDX_PROC, GFP_KERNEL);
184 void proc_ptrace_connector(struct task_struct *task, int ptrace_id)
187 struct proc_event *ev;
189 __u8 buffer[CN_PROC_MSG_SIZE];
191 if (atomic_read(&proc_event_num_listeners) < 1)
194 msg = (struct cn_msg *)buffer;
195 ev = (struct proc_event *)msg->data;
196 memset(&ev->event_data, 0, sizeof(ev->event_data));
197 get_seq(&msg->seq, &ev->cpu);
198 ktime_get_ts(&ts); /* get high res monotonic timestamp */
199 put_unaligned(timespec_to_ns(&ts), (__u64 *)&ev->timestamp_ns);
200 ev->what = PROC_EVENT_PTRACE;
201 ev->event_data.ptrace.process_pid = task->pid;
202 ev->event_data.ptrace.process_tgid = task->tgid;
203 if (ptrace_id == PTRACE_ATTACH) {
204 ev->event_data.ptrace.tracer_pid = current->pid;
205 ev->event_data.ptrace.tracer_tgid = current->tgid;
206 } else if (ptrace_id == PTRACE_DETACH) {
207 ev->event_data.ptrace.tracer_pid = 0;
208 ev->event_data.ptrace.tracer_tgid = 0;
212 memcpy(&msg->id, &cn_proc_event_id, sizeof(msg->id));
213 msg->ack = 0; /* not used */
214 msg->len = sizeof(*ev);
215 msg->flags = 0; /* not used */
216 cn_netlink_send(msg, CN_IDX_PROC, GFP_KERNEL);
219 void proc_comm_connector(struct task_struct *task)
222 struct proc_event *ev;
224 __u8 buffer[CN_PROC_MSG_SIZE];
226 if (atomic_read(&proc_event_num_listeners) < 1)
229 msg = (struct cn_msg *)buffer;
230 ev = (struct proc_event *)msg->data;
231 memset(&ev->event_data, 0, sizeof(ev->event_data));
232 get_seq(&msg->seq, &ev->cpu);
233 ktime_get_ts(&ts); /* get high res monotonic timestamp */
234 put_unaligned(timespec_to_ns(&ts), (__u64 *)&ev->timestamp_ns);
235 ev->what = PROC_EVENT_COMM;
236 ev->event_data.comm.process_pid = task->pid;
237 ev->event_data.comm.process_tgid = task->tgid;
238 get_task_comm(ev->event_data.comm.comm, task);
240 memcpy(&msg->id, &cn_proc_event_id, sizeof(msg->id));
241 msg->ack = 0; /* not used */
242 msg->len = sizeof(*ev);
243 msg->flags = 0; /* not used */
244 cn_netlink_send(msg, CN_IDX_PROC, GFP_KERNEL);
247 void proc_coredump_connector(struct task_struct *task)
250 struct proc_event *ev;
251 __u8 buffer[CN_PROC_MSG_SIZE];
254 if (atomic_read(&proc_event_num_listeners) < 1)
257 msg = (struct cn_msg *)buffer;
258 ev = (struct proc_event *)msg->data;
259 memset(&ev->event_data, 0, sizeof(ev->event_data));
260 get_seq(&msg->seq, &ev->cpu);
261 ktime_get_ts(&ts); /* get high res monotonic timestamp */
262 put_unaligned(timespec_to_ns(&ts), (__u64 *)&ev->timestamp_ns);
263 ev->what = PROC_EVENT_COREDUMP;
264 ev->event_data.coredump.process_pid = task->pid;
265 ev->event_data.coredump.process_tgid = task->tgid;
267 memcpy(&msg->id, &cn_proc_event_id, sizeof(msg->id));
268 msg->ack = 0; /* not used */
269 msg->len = sizeof(*ev);
270 msg->flags = 0; /* not used */
271 cn_netlink_send(msg, CN_IDX_PROC, GFP_KERNEL);
274 void proc_exit_connector(struct task_struct *task)
277 struct proc_event *ev;
278 __u8 buffer[CN_PROC_MSG_SIZE];
281 if (atomic_read(&proc_event_num_listeners) < 1)
284 msg = (struct cn_msg *)buffer;
285 ev = (struct proc_event *)msg->data;
286 memset(&ev->event_data, 0, sizeof(ev->event_data));
287 get_seq(&msg->seq, &ev->cpu);
288 ktime_get_ts(&ts); /* get high res monotonic timestamp */
289 put_unaligned(timespec_to_ns(&ts), (__u64 *)&ev->timestamp_ns);
290 ev->what = PROC_EVENT_EXIT;
291 ev->event_data.exit.process_pid = task->pid;
292 ev->event_data.exit.process_tgid = task->tgid;
293 ev->event_data.exit.exit_code = task->exit_code;
294 ev->event_data.exit.exit_signal = task->exit_signal;
296 memcpy(&msg->id, &cn_proc_event_id, sizeof(msg->id));
297 msg->ack = 0; /* not used */
298 msg->len = sizeof(*ev);
299 msg->flags = 0; /* not used */
300 cn_netlink_send(msg, CN_IDX_PROC, GFP_KERNEL);
304 * Send an acknowledgement message to userspace
306 * Use 0 for success, EFOO otherwise.
307 * Note: this is the negative of conventional kernel error
308 * values because it's not being returned via syscall return
311 static void cn_proc_ack(int err, int rcvd_seq, int rcvd_ack)
314 struct proc_event *ev;
315 __u8 buffer[CN_PROC_MSG_SIZE];
318 if (atomic_read(&proc_event_num_listeners) < 1)
321 msg = (struct cn_msg *)buffer;
322 ev = (struct proc_event *)msg->data;
323 memset(&ev->event_data, 0, sizeof(ev->event_data));
325 ktime_get_ts(&ts); /* get high res monotonic timestamp */
326 put_unaligned(timespec_to_ns(&ts), (__u64 *)&ev->timestamp_ns);
328 ev->what = PROC_EVENT_NONE;
329 ev->event_data.ack.err = err;
330 memcpy(&msg->id, &cn_proc_event_id, sizeof(msg->id));
331 msg->ack = rcvd_ack + 1;
332 msg->len = sizeof(*ev);
333 msg->flags = 0; /* not used */
334 cn_netlink_send(msg, CN_IDX_PROC, GFP_KERNEL);
339 * @data: message sent from userspace via the connector
341 static void cn_proc_mcast_ctl(struct cn_msg *msg,
342 struct netlink_skb_parms *nsp)
344 enum proc_cn_mcast_op *mc_op = NULL;
347 if (msg->len != sizeof(*mc_op))
351 * Events are reported with respect to the initial pid
352 * and user namespaces so ignore requestors from
355 if ((current_user_ns() != &init_user_ns) ||
356 (task_active_pid_ns(current) != &init_pid_ns))
359 /* Can only change if privileged. */
360 if (!capable(CAP_NET_ADMIN)) {
365 mc_op = (enum proc_cn_mcast_op *)msg->data;
367 case PROC_CN_MCAST_LISTEN:
368 atomic_inc(&proc_event_num_listeners);
370 case PROC_CN_MCAST_IGNORE:
371 atomic_dec(&proc_event_num_listeners);
379 cn_proc_ack(err, msg->seq, msg->ack);
383 * cn_proc_init - initialization entry point
385 * Adds the connector callback to the connector driver.
387 static int __init cn_proc_init(void)
389 int err = cn_add_callback(&cn_proc_event_id,
393 pr_warn("cn_proc failed to register\n");
399 module_init(cn_proc_init);