blob: 6920f5ae0d0189b983bef5be70667be2d0e275fc [file] [log] [blame]
Petr Machatacec06ec2012-04-10 13:31:55 +02001#include "config.h"
2
3#include <asm/unistd.h>
4#include <sys/types.h>
5#include <sys/wait.h>
6#include <assert.h>
7#include <errno.h>
Petr Machatad3dc17b2012-03-21 03:23:25 +01008#include <error.h>
Juan Cespedes5e01f651998-03-08 22:31:44 +01009#include <stdio.h>
Juan Cespedes504a3852003-02-04 23:24:38 +010010#include <stdlib.h>
Juan Cespedes1fe93d51998-03-13 00:29:21 +010011#include <string.h>
Juan Cespedes8f8282f2002-03-03 18:58:40 +010012#include <unistd.h>
Juan Cespedes5e01f651998-03-08 22:31:44 +010013
Petr Machatacec06ec2012-04-10 13:31:55 +020014#ifdef HAVE_LIBSELINUX
15# include <selinux/selinux.h>
16#endif
17
18#include "ptrace.h"
Juan Cespedesf7281232009-06-25 16:11:21 +020019#include "common.h"
Petr Machata9294d822012-02-07 12:35:58 +010020#include "breakpoint.h"
Petr Machata366c2f42012-02-09 19:34:36 +010021#include "proc.h"
Petr Machata92822542012-03-28 00:31:14 +020022#include "linux-gnu/trace.h"
Petr Machata55ed83b2007-05-17 16:24:15 +020023
24/* If the system headers did not provide the constants, hard-code the normal
25 values. */
26#ifndef PTRACE_EVENT_FORK
27
28#define PTRACE_OLDSETOPTIONS 21
29#define PTRACE_SETOPTIONS 0x4200
30#define PTRACE_GETEVENTMSG 0x4201
31
32/* options set using PTRACE_SETOPTIONS */
33#define PTRACE_O_TRACESYSGOOD 0x00000001
34#define PTRACE_O_TRACEFORK 0x00000002
35#define PTRACE_O_TRACEVFORK 0x00000004
36#define PTRACE_O_TRACECLONE 0x00000008
37#define PTRACE_O_TRACEEXEC 0x00000010
38#define PTRACE_O_TRACEVFORKDONE 0x00000020
39#define PTRACE_O_TRACEEXIT 0x00000040
40
41/* Wait extended result codes for the above trace options. */
42#define PTRACE_EVENT_FORK 1
43#define PTRACE_EVENT_VFORK 2
44#define PTRACE_EVENT_CLONE 3
45#define PTRACE_EVENT_EXEC 4
46#define PTRACE_EVENT_VFORK_DONE 5
47#define PTRACE_EVENT_EXIT 6
48
49#endif /* PTRACE_EVENT_FORK */
Ian Wienand9a2ad352006-02-20 22:44:45 +010050
Luis Machado55c5feb2008-03-12 15:56:01 +010051#ifdef ARCH_HAVE_UMOVELONG
Juan Cespedesa8909f72009-04-28 20:02:41 +020052extern int arch_umovelong (Process *, void *, long *, arg_type_info *);
Juan Cespedesf1350522008-12-16 18:19:58 +010053int
Juan Cespedesa8909f72009-04-28 20:02:41 +020054umovelong (Process *proc, void *addr, long *result, arg_type_info *info) {
Luis Machado55c5feb2008-03-12 15:56:01 +010055 return arch_umovelong (proc, addr, result, info);
56}
57#else
58/* Read a single long from the process's memory address 'addr' */
Juan Cespedesf1350522008-12-16 18:19:58 +010059int
Juan Cespedesa8909f72009-04-28 20:02:41 +020060umovelong (Process *proc, void *addr, long *result, arg_type_info *info) {
Luis Machado55c5feb2008-03-12 15:56:01 +010061 long pointed_to;
62
63 errno = 0;
64 pointed_to = ptrace (PTRACE_PEEKTEXT, proc->pid, addr, 0);
65 if (pointed_to == -1 && errno)
66 return -errno;
67
68 *result = pointed_to;
Arnaud Patardf16fcff2010-01-08 08:40:19 -050069 if (info) {
70 switch(info->type) {
71 case ARGTYPE_INT:
72 *result &= 0x00000000ffffffffUL;
73 default:
74 break;
75 };
76 }
Luis Machado55c5feb2008-03-12 15:56:01 +010077 return 0;
78}
79#endif
80
Juan Cespedesf1350522008-12-16 18:19:58 +010081void
Petr Machatacec06ec2012-04-10 13:31:55 +020082trace_fail_warning(pid_t pid)
83{
84 /* This was adapted from GDB. */
85#ifdef HAVE_LIBSELINUX
86 static int checked = 0;
87 if (checked)
88 return;
89 checked = 1;
90
91 /* -1 is returned for errors, 0 if it has no effect, 1 if
92 * PTRACE_ATTACH is forbidden. */
93 if (security_get_boolean_active("deny_ptrace") == 1)
94 fprintf(stderr,
95"The SELinux boolean 'deny_ptrace' is enabled, which may prevent ltrace from\n"
96"tracing other processes. You can disable this process attach protection by\n"
97"issuing 'setsebool deny_ptrace=0' in the superuser context.\n");
98#endif /* HAVE_LIBSELINUX */
99}
100
101void
102trace_me(void)
103{
Petr Machata26627682011-07-08 18:15:32 +0200104 debug(DEBUG_PROCESS, "trace_me: pid=%d", getpid());
Ian Wienand2d45b1a2006-02-20 22:48:07 +0100105 if (ptrace(PTRACE_TRACEME, 0, 1, 0) < 0) {
Juan Cespedes5e01f651998-03-08 22:31:44 +0100106 perror("PTRACE_TRACEME");
Petr Machatacec06ec2012-04-10 13:31:55 +0200107 trace_fail_warning(getpid());
Juan Cespedes5e01f651998-03-08 22:31:44 +0100108 exit(1);
109 }
110}
111
Petr Machatab4f9e0c2012-02-07 01:57:59 +0100112/* There's a (hopefully) brief period of time after the child process
Petr Machatac805c622012-03-02 00:10:37 +0100113 * forks when we can't trace it yet. Here we wait for kernel to
Petr Machatab4f9e0c2012-02-07 01:57:59 +0100114 * prepare the process. */
Petr Machatac805c622012-03-02 00:10:37 +0100115int
Petr Machatab4f9e0c2012-02-07 01:57:59 +0100116wait_for_proc(pid_t pid)
117{
Petr Machatac805c622012-03-02 00:10:37 +0100118 /* man ptrace: PTRACE_ATTACH attaches to the process specified
119 in pid. The child is sent a SIGSTOP, but will not
120 necessarily have stopped by the completion of this call;
121 use wait() to wait for the child to stop. */
122 if (waitpid(pid, NULL, __WALL) != pid) {
123 perror ("trace_pid: waitpid");
124 return -1;
Petr Machatab4f9e0c2012-02-07 01:57:59 +0100125 }
126
Petr Machatac805c622012-03-02 00:10:37 +0100127 return 0;
Petr Machatab4f9e0c2012-02-07 01:57:59 +0100128}
129
Juan Cespedesf1350522008-12-16 18:19:58 +0100130int
Petr Machatacec06ec2012-04-10 13:31:55 +0200131trace_pid(pid_t pid)
132{
Petr Machata26627682011-07-08 18:15:32 +0200133 debug(DEBUG_PROCESS, "trace_pid: pid=%d", pid);
Petr Machatacec06ec2012-04-10 13:31:55 +0200134 /* This shouldn't emit error messages, as there are legitimate
135 * reasons that the PID can't be attached: like it may have
136 * already ended. */
137 if (ptrace(PTRACE_ATTACH, pid, 1, 0) < 0)
Juan Cespedes273ea6d1998-03-14 23:02:40 +0100138 return -1;
Petr Machata89a53602007-01-25 18:05:44 +0100139
Petr Machatac805c622012-03-02 00:10:37 +0100140 return wait_for_proc(pid);
Juan Cespedes273ea6d1998-03-14 23:02:40 +0100141}
142
Juan Cespedesf1350522008-12-16 18:19:58 +0100143void
Petr Machata3ed2a422012-04-06 17:18:55 +0200144trace_set_options(struct Process *proc)
145{
Ian Wienand9a2ad352006-02-20 22:44:45 +0100146 if (proc->tracesysgood & 0x80)
147 return;
Petr Machata55ed83b2007-05-17 16:24:15 +0200148
Petr Machata3ed2a422012-04-06 17:18:55 +0200149 pid_t pid = proc->pid;
Petr Machata26627682011-07-08 18:15:32 +0200150 debug(DEBUG_PROCESS, "trace_set_options: pid=%d", pid);
Juan Cespedescd8976d2009-05-14 13:47:58 +0200151
Juan Cespedes1e583132009-04-07 18:17:11 +0200152 long options = PTRACE_O_TRACESYSGOOD | PTRACE_O_TRACEFORK |
153 PTRACE_O_TRACEVFORK | PTRACE_O_TRACECLONE |
154 PTRACE_O_TRACEEXEC;
Petr Machata55ed83b2007-05-17 16:24:15 +0200155 if (ptrace(PTRACE_SETOPTIONS, pid, 0, options) < 0 &&
156 ptrace(PTRACE_OLDSETOPTIONS, pid, 0, options) < 0) {
Ian Wienand9a2ad352006-02-20 22:44:45 +0100157 perror("PTRACE_SETOPTIONS");
158 return;
159 }
160 proc->tracesysgood |= 0x80;
161}
162
Juan Cespedesf1350522008-12-16 18:19:58 +0100163void
164untrace_pid(pid_t pid) {
Petr Machata26627682011-07-08 18:15:32 +0200165 debug(DEBUG_PROCESS, "untrace_pid: pid=%d", pid);
Juan Cespedes273ea6d1998-03-14 23:02:40 +0100166 ptrace(PTRACE_DETACH, pid, 1, 0);
Juan Cespedes1fe93d51998-03-13 00:29:21 +0100167}
168
Juan Cespedesf1350522008-12-16 18:19:58 +0100169void
170continue_after_signal(pid_t pid, int signum) {
Juan Cespedescd8976d2009-05-14 13:47:58 +0200171 debug(DEBUG_PROCESS, "continue_after_signal: pid=%d, signum=%d", pid, signum);
Petr Machata98f09922011-07-09 10:55:29 +0200172 ptrace(PTRACE_SYSCALL, pid, 0, signum);
173}
174
175static enum ecb_status
176event_for_pid(Event * event, void * data)
177{
178 if (event->proc != NULL && event->proc->pid == (pid_t)(uintptr_t)data)
179 return ecb_yield;
180 return ecb_cont;
181}
182
183static int
184have_events_for(pid_t pid)
185{
186 return each_qd_event(event_for_pid, (void *)(uintptr_t)pid) != NULL;
187}
188
189void
190continue_process(pid_t pid)
191{
192 debug(DEBUG_PROCESS, "continue_process: pid=%d", pid);
Petr Machata98f09922011-07-09 10:55:29 +0200193
194 /* Only really continue the process if there are no events in
Petr Machata36d19822011-10-21 16:03:45 +0200195 the queue for this process. Otherwise just wait for the
196 other events to arrive. */
Petr Machata98f09922011-07-09 10:55:29 +0200197 if (!have_events_for(pid))
198 /* We always trace syscalls to control fork(),
199 * clone(), execve()... */
200 ptrace(PTRACE_SYSCALL, pid, 0, 0);
201 else
202 debug(DEBUG_PROCESS,
203 "putting off the continue, events in que.");
204}
205
Petr Machata98f09922011-07-09 10:55:29 +0200206static struct pid_task *
207get_task_info(struct pid_set * pids, pid_t pid)
208{
Petr Machata750ca8c2011-10-06 14:29:34 +0200209 assert(pid != 0);
Petr Machata98f09922011-07-09 10:55:29 +0200210 size_t i;
211 for (i = 0; i < pids->count; ++i)
212 if (pids->tasks[i].pid == pid)
213 return &pids->tasks[i];
214
215 return NULL;
216}
217
218static struct pid_task *
219add_task_info(struct pid_set * pids, pid_t pid)
220{
221 if (pids->count == pids->alloc) {
222 size_t ns = (2 * pids->alloc) ?: 4;
223 struct pid_task * n = realloc(pids->tasks,
224 sizeof(*pids->tasks) * ns);
225 if (n == NULL)
226 return NULL;
227 pids->tasks = n;
228 pids->alloc = ns;
229 }
230 struct pid_task * task_info = &pids->tasks[pids->count++];
231 memset(task_info, 0, sizeof(*task_info));
232 task_info->pid = pid;
233 return task_info;
234}
235
Petr Machata2b46cfc2012-02-18 11:17:29 +0100236static enum callback_status
237task_stopped(struct Process *task, void *data)
Petr Machatacbe29c62011-09-27 02:27:58 +0200238{
239 enum process_status st = process_status(task->pid);
240 if (data != NULL)
241 *(enum process_status *)data = st;
242
243 /* If the task is already stopped, don't worry about it.
244 * Likewise if it managed to become a zombie or terminate in
245 * the meantime. This can happen when the whole thread group
246 * is terminating. */
247 switch (st) {
248 case ps_invalid:
249 case ps_tracing_stop:
250 case ps_zombie:
Petr Machata2b46cfc2012-02-18 11:17:29 +0100251 return CBS_CONT;
Petr Machataffe4cd22012-04-11 18:01:44 +0200252 case ps_sleeping:
Petr Machata36d19822011-10-21 16:03:45 +0200253 case ps_stop:
254 case ps_other:
Petr Machata2b46cfc2012-02-18 11:17:29 +0100255 return CBS_STOP;
Petr Machatacbe29c62011-09-27 02:27:58 +0200256 }
Petr Machata36d19822011-10-21 16:03:45 +0200257
258 abort ();
Petr Machatacbe29c62011-09-27 02:27:58 +0200259}
260
261/* Task is blocked if it's stopped, or if it's a vfork parent. */
Petr Machata2b46cfc2012-02-18 11:17:29 +0100262static enum callback_status
263task_blocked(struct Process *task, void *data)
Petr Machatacbe29c62011-09-27 02:27:58 +0200264{
265 struct pid_set * pids = data;
266 struct pid_task * task_info = get_task_info(pids, task->pid);
267 if (task_info != NULL
268 && task_info->vforked)
Petr Machata2b46cfc2012-02-18 11:17:29 +0100269 return CBS_CONT;
Petr Machatacbe29c62011-09-27 02:27:58 +0200270
271 return task_stopped(task, NULL);
272}
273
Petr Machata366c2f42012-02-09 19:34:36 +0100274static Event *process_vfork_on_event(struct event_handler *super, Event *event);
Petr Machatacbe29c62011-09-27 02:27:58 +0200275
Petr Machata2b46cfc2012-02-18 11:17:29 +0100276static enum callback_status
277task_vforked(struct Process *task, void *data)
Petr Machatacbe29c62011-09-27 02:27:58 +0200278{
279 if (task->event_handler != NULL
280 && task->event_handler->on_event == &process_vfork_on_event)
Petr Machata2b46cfc2012-02-18 11:17:29 +0100281 return CBS_STOP;
282 return CBS_CONT;
Petr Machatacbe29c62011-09-27 02:27:58 +0200283}
284
285static int
Petr Machata74132a42012-03-16 02:46:18 +0100286is_vfork_parent(struct Process *task)
Petr Machatacbe29c62011-09-27 02:27:58 +0200287{
Petr Machata74132a42012-03-16 02:46:18 +0100288 return each_task(task->leader, NULL, &task_vforked, NULL) != NULL;
Petr Machatacbe29c62011-09-27 02:27:58 +0200289}
290
Petr Machata2b46cfc2012-02-18 11:17:29 +0100291static enum callback_status
292send_sigstop(struct Process *task, void *data)
Petr Machata98f09922011-07-09 10:55:29 +0200293{
294 Process * leader = task->leader;
295 struct pid_set * pids = data;
296
297 /* Look for pre-existing task record, or add new. */
298 struct pid_task * task_info = get_task_info(pids, task->pid);
299 if (task_info == NULL)
300 task_info = add_task_info(pids, task->pid);
301 if (task_info == NULL) {
302 perror("send_sigstop: add_task_info");
303 destroy_event_handler(leader);
304 /* Signal failure upwards. */
Petr Machata2b46cfc2012-02-18 11:17:29 +0100305 return CBS_STOP;
Petr Machata98f09922011-07-09 10:55:29 +0200306 }
307
308 /* This task still has not been attached to. It should be
309 stopped by the kernel. */
310 if (task->state == STATE_BEING_CREATED)
Petr Machata2b46cfc2012-02-18 11:17:29 +0100311 return CBS_CONT;
Petr Machata98f09922011-07-09 10:55:29 +0200312
313 /* Don't bother sending SIGSTOP if we are already stopped, or
Petr Machatacbe29c62011-09-27 02:27:58 +0200314 * if we sent the SIGSTOP already, which happens when we are
315 * handling "onexit" and inherited the handler from breakpoint
316 * re-enablement. */
317 enum process_status st;
Petr Machata2b46cfc2012-02-18 11:17:29 +0100318 if (task_stopped(task, &st) == CBS_CONT)
319 return CBS_CONT;
Petr Machata98f09922011-07-09 10:55:29 +0200320 if (task_info->sigstopped) {
321 if (!task_info->delivered)
Petr Machata2b46cfc2012-02-18 11:17:29 +0100322 return CBS_CONT;
Petr Machata98f09922011-07-09 10:55:29 +0200323 task_info->delivered = 0;
324 }
325
Petr Machatacbe29c62011-09-27 02:27:58 +0200326 /* Also don't attempt to stop the process if it's a parent of
327 * vforked process. We set up event handler specially to hint
328 * us. In that case parent is in D state, which we use to
329 * weed out unnecessary looping. */
330 if (st == ps_sleeping
331 && is_vfork_parent (task)) {
332 task_info->vforked = 1;
Petr Machata2b46cfc2012-02-18 11:17:29 +0100333 return CBS_CONT;
Petr Machatacbe29c62011-09-27 02:27:58 +0200334 }
335
Petr Machata98f09922011-07-09 10:55:29 +0200336 if (task_kill(task->pid, SIGSTOP) >= 0) {
337 debug(DEBUG_PROCESS, "send SIGSTOP to %d", task->pid);
338 task_info->sigstopped = 1;
339 } else
340 fprintf(stderr,
341 "Warning: couldn't send SIGSTOP to %d\n", task->pid);
342
Petr Machata2b46cfc2012-02-18 11:17:29 +0100343 return CBS_CONT;
Petr Machata98f09922011-07-09 10:55:29 +0200344}
345
Petr Machata73894bd2011-08-20 23:47:34 +0200346/* On certain kernels, detaching right after a singlestep causes the
347 tracee to be killed with a SIGTRAP (that even though the singlestep
348 was properly caught by waitpid. The ugly workaround is to put a
349 breakpoint where IP points and let the process continue. After
350 this the breakpoint can be retracted and the process detached. */
Petr Machata98f09922011-07-09 10:55:29 +0200351static void
Petr Machata73894bd2011-08-20 23:47:34 +0200352ugly_workaround(Process * proc)
Petr Machata590c8082011-08-20 22:45:26 +0200353{
354 void * ip = get_instruction_pointer(proc);
Petr Machatabc373262012-02-07 23:31:15 +0100355 struct breakpoint *sbp = dict_find_entry(proc->leader->breakpoints, ip);
Petr Machata590c8082011-08-20 22:45:26 +0200356 if (sbp != NULL)
357 enable_breakpoint(proc, sbp);
358 else
Petr Machata9df15012012-02-20 12:49:46 +0100359 insert_breakpoint(proc, ip, NULL);
Petr Machata73894bd2011-08-20 23:47:34 +0200360 ptrace(PTRACE_CONT, proc->pid, 0, 0);
Petr Machata590c8082011-08-20 22:45:26 +0200361}
362
363static void
Petr Machata98f09922011-07-09 10:55:29 +0200364process_stopping_done(struct process_stopping_handler * self, Process * leader)
365{
366 debug(DEBUG_PROCESS, "process stopping done %d",
367 self->task_enabling_breakpoint->pid);
368 size_t i;
Petr Machata590c8082011-08-20 22:45:26 +0200369 if (!self->exiting) {
370 for (i = 0; i < self->pids.count; ++i)
371 if (self->pids.tasks[i].pid != 0
Petr Machata43d2fe52011-11-02 13:25:49 +0100372 && (self->pids.tasks[i].delivered
373 || self->pids.tasks[i].sysret))
Petr Machata590c8082011-08-20 22:45:26 +0200374 continue_process(self->pids.tasks[i].pid);
375 continue_process(self->task_enabling_breakpoint->pid);
376 destroy_event_handler(leader);
Petr Machatacb9a28d2012-03-28 11:11:32 +0200377 }
378
379 if (self->exiting) {
380 ugly_workaround:
Petr Machata590c8082011-08-20 22:45:26 +0200381 self->state = psh_ugly_workaround;
Petr Machata73894bd2011-08-20 23:47:34 +0200382 ugly_workaround(self->task_enabling_breakpoint);
Petr Machatacb9a28d2012-03-28 11:11:32 +0200383 } else {
384 switch ((self->ugly_workaround_p)(self)) {
385 case CBS_FAIL:
386 /* xxx handle me */
387 case CBS_STOP:
388 break;
389 case CBS_CONT:
390 goto ugly_workaround;
391 }
Petr Machata590c8082011-08-20 22:45:26 +0200392 }
393}
394
395/* Before we detach, we need to make sure that task's IP is on the
396 * edge of an instruction. So for tasks that have a breakpoint event
397 * in the queue, we adjust the instruction pointer, just like
398 * continue_after_breakpoint does. */
399static enum ecb_status
400undo_breakpoint(Event * event, void * data)
401{
402 if (event != NULL
403 && event->proc->leader == data
404 && event->type == EVENT_BREAKPOINT)
405 set_instruction_pointer(event->proc, event->e_un.brk_addr);
406 return ecb_cont;
407}
408
Petr Machata2b46cfc2012-02-18 11:17:29 +0100409static enum callback_status
410untrace_task(struct Process *task, void *data)
Petr Machata590c8082011-08-20 22:45:26 +0200411{
412 if (task != data)
413 untrace_pid(task->pid);
Petr Machata2b46cfc2012-02-18 11:17:29 +0100414 return CBS_CONT;
Petr Machata590c8082011-08-20 22:45:26 +0200415}
416
Petr Machata2b46cfc2012-02-18 11:17:29 +0100417static enum callback_status
418remove_task(struct Process *task, void *data)
Petr Machata590c8082011-08-20 22:45:26 +0200419{
420 /* Don't untrace leader just yet. */
421 if (task != data)
422 remove_process(task);
Petr Machata2b46cfc2012-02-18 11:17:29 +0100423 return CBS_CONT;
Petr Machata590c8082011-08-20 22:45:26 +0200424}
425
426static void
427detach_process(Process * leader)
428{
429 each_qd_event(&undo_breakpoint, leader);
430 disable_all_breakpoints(leader);
431
432 /* Now untrace the process, if it was attached to by -p. */
433 struct opt_p_t * it;
434 for (it = opt_p; it != NULL; it = it->next) {
435 Process * proc = pid2proc(it->pid);
436 if (proc == NULL)
437 continue;
438 if (proc->leader == leader) {
Petr Machata74132a42012-03-16 02:46:18 +0100439 each_task(leader, NULL, &untrace_task, NULL);
Petr Machata590c8082011-08-20 22:45:26 +0200440 break;
441 }
442 }
Petr Machata74132a42012-03-16 02:46:18 +0100443 each_task(leader, NULL, &remove_task, leader);
Petr Machata98f09922011-07-09 10:55:29 +0200444 destroy_event_handler(leader);
Petr Machata590c8082011-08-20 22:45:26 +0200445 remove_task(leader, NULL);
Petr Machata98f09922011-07-09 10:55:29 +0200446}
447
448static void
449handle_stopping_event(struct pid_task * task_info, Event ** eventp)
450{
451 /* Mark all events, so that we know whom to SIGCONT later. */
Petr Machata3c9b6292011-08-20 15:05:41 +0200452 if (task_info != NULL)
Petr Machata98f09922011-07-09 10:55:29 +0200453 task_info->got_event = 1;
454
455 Event * event = *eventp;
456
457 /* In every state, sink SIGSTOP events for tasks that it was
458 * sent to. */
459 if (task_info != NULL
460 && event->type == EVENT_SIGNAL
461 && event->e_un.signum == SIGSTOP) {
462 debug(DEBUG_PROCESS, "SIGSTOP delivered to %d", task_info->pid);
463 if (task_info->sigstopped
464 && !task_info->delivered) {
465 task_info->delivered = 1;
466 *eventp = NULL; // sink the event
467 } else
468 fprintf(stderr, "suspicious: %d got SIGSTOP, but "
469 "sigstopped=%d and delivered=%d\n",
470 task_info->pid, task_info->sigstopped,
471 task_info->delivered);
Juan Cespedese74c80d2009-02-11 11:32:31 +0100472 }
Juan Cespedes5e01f651998-03-08 22:31:44 +0100473}
474
Petr Machata98f09922011-07-09 10:55:29 +0200475/* Some SIGSTOPs may have not been delivered to their respective tasks
476 * yet. They are still in the queue. If we have seen an event for
477 * that process, continue it, so that the SIGSTOP can be delivered and
Petr Machata36d19822011-10-21 16:03:45 +0200478 * caught by ltrace. We don't mind that the process is after
479 * breakpoint (and therefore potentially doesn't have aligned IP),
480 * because the signal will be delivered without the process actually
481 * starting. */
Petr Machata98f09922011-07-09 10:55:29 +0200482static void
483continue_for_sigstop_delivery(struct pid_set * pids)
484{
485 size_t i;
486 for (i = 0; i < pids->count; ++i) {
Petr Machata750ca8c2011-10-06 14:29:34 +0200487 if (pids->tasks[i].pid != 0
488 && pids->tasks[i].sigstopped
Petr Machata98f09922011-07-09 10:55:29 +0200489 && !pids->tasks[i].delivered
490 && pids->tasks[i].got_event) {
491 debug(DEBUG_PROCESS, "continue %d for SIGSTOP delivery",
492 pids->tasks[i].pid);
493 ptrace(PTRACE_SYSCALL, pids->tasks[i].pid, 0, 0);
494 }
495 }
Juan Cespedes5e01f651998-03-08 22:31:44 +0100496}
497
Petr Machata98f09922011-07-09 10:55:29 +0200498static int
Petr Machata750ca8c2011-10-06 14:29:34 +0200499event_exit_p(Event * event)
500{
501 return event != NULL && (event->type == EVENT_EXIT
502 || event->type == EVENT_EXIT_SIGNAL);
503}
504
505static int
Petr Machata98f09922011-07-09 10:55:29 +0200506event_exit_or_none_p(Event * event)
Petr Machataf789c9c2011-07-09 10:54:27 +0200507{
Petr Machata750ca8c2011-10-06 14:29:34 +0200508 return event == NULL || event_exit_p(event)
Petr Machata98f09922011-07-09 10:55:29 +0200509 || event->type == EVENT_NONE;
510}
511
512static int
513await_sigstop_delivery(struct pid_set * pids, struct pid_task * task_info,
514 Event * event)
515{
516 /* If we still didn't get our SIGSTOP, continue the process
517 * and carry on. */
518 if (event != NULL && !event_exit_or_none_p(event)
519 && task_info != NULL && task_info->sigstopped) {
520 debug(DEBUG_PROCESS, "continue %d for SIGSTOP delivery",
521 task_info->pid);
522 /* We should get the signal the first thing
523 * after this, so it should be OK to continue
524 * even if we are over a breakpoint. */
525 ptrace(PTRACE_SYSCALL, task_info->pid, 0, 0);
526
527 } else {
528 /* If all SIGSTOPs were delivered, uninstall the
529 * handler and continue everyone. */
530 /* XXX I suspect that we should check tasks that are
531 * still around. Is things are now, there should be a
532 * race between waiting for everyone to stop and one
533 * of the tasks exiting. */
534 int all_clear = 1;
535 size_t i;
536 for (i = 0; i < pids->count; ++i)
Petr Machata750ca8c2011-10-06 14:29:34 +0200537 if (pids->tasks[i].pid != 0
538 && pids->tasks[i].sigstopped
Petr Machata98f09922011-07-09 10:55:29 +0200539 && !pids->tasks[i].delivered) {
540 all_clear = 0;
541 break;
542 }
543 return all_clear;
544 }
545
546 return 0;
547}
548
Petr Machata590c8082011-08-20 22:45:26 +0200549static int
550all_stops_accountable(struct pid_set * pids)
551{
552 size_t i;
553 for (i = 0; i < pids->count; ++i)
554 if (pids->tasks[i].pid != 0
555 && !pids->tasks[i].got_event
556 && !have_events_for(pids->tasks[i].pid))
557 return 0;
558 return 1;
559}
560
Petr Machataa266acb2012-04-12 23:50:23 +0200561/* The protocol is: 0 for success, negative for failure, positive if
562 * default singlestep is to be used. */
563int arch_atomic_singlestep(struct Process *proc, Breakpoint *sbp,
564 int (*add_cb)(void *addr, void *data),
565 void *add_cb_data);
566
567#ifndef ARCH_HAVE_ATOMIC_SINGLESTEP
568int
569arch_atomic_singlestep(struct Process *proc, Breakpoint *sbp,
570 int (*add_cb)(void *addr, void *data),
571 void *add_cb_data)
Petr Machata06986d52011-11-02 13:22:46 +0100572{
Petr Machataa266acb2012-04-12 23:50:23 +0200573 return 1;
574}
575#endif
576
577static int
578atomic_singlestep_add_bp(void *addr, void *data)
579{
580 struct process_stopping_handler *self = data;
581 struct Process *proc = self->task_enabling_breakpoint;
582
583 /* Only support single address as of now. */
584 assert(self->atomic_skip_bp_addr == NULL);
585
586 self->atomic_skip_bp_addr = addr + 4;
587 insert_breakpoint(proc->leader, self->atomic_skip_bp_addr, NULL, 1);
588
589 return 0;
590}
591
592static int
593singlestep(struct process_stopping_handler *self)
594{
595 struct Process *proc = self->task_enabling_breakpoint;
596
597 int status = arch_atomic_singlestep(self->task_enabling_breakpoint,
598 self->breakpoint_being_enabled,
599 &atomic_singlestep_add_bp, self);
600
601 /* Propagate failure and success. */
602 if (status <= 0)
603 return status;
604
605 /* Otherwise do the default action: singlestep. */
Petr Machata06986d52011-11-02 13:22:46 +0100606 debug(1, "PTRACE_SINGLESTEP");
Petr Machataa266acb2012-04-12 23:50:23 +0200607 if (ptrace(PTRACE_SINGLESTEP, proc->pid, 0, 0)) {
Petr Machata06986d52011-11-02 13:22:46 +0100608 perror("PTRACE_SINGLESTEP");
Petr Machataa266acb2012-04-12 23:50:23 +0200609 return -1;
610 }
611 return 0;
612}
613
614static void
615post_singlestep(struct process_stopping_handler *self, Event **eventp)
616{
617 continue_for_sigstop_delivery(&self->pids);
618
619 if ((*eventp)->type == EVENT_BREAKPOINT)
620 *eventp = NULL; // handled
621
622 if (self->atomic_skip_bp_addr != 0)
623 delete_breakpoint(self->task_enabling_breakpoint->leader,
624 self->atomic_skip_bp_addr);
625
626 self->breakpoint_being_enabled = NULL;
627}
628
629static void
630singlestep_error(struct process_stopping_handler *self, Event **eventp)
631{
632 struct Process *teb = self->task_enabling_breakpoint;
633 Breakpoint *sbp = self->breakpoint_being_enabled;
Petr Machata1e2a4dd2012-04-15 04:35:48 +0200634 fprintf(stderr, "%d couldn't continue when handling %s (%p) at %p\n",
Petr Machataa266acb2012-04-12 23:50:23 +0200635 teb->pid, sbp->libsym != NULL ? sbp->libsym->name : NULL,
Petr Machata1e2a4dd2012-04-15 04:35:48 +0200636 sbp->addr, get_instruction_pointer(teb));
Petr Machataa266acb2012-04-12 23:50:23 +0200637 delete_breakpoint(teb->leader, sbp->addr);
638 post_singlestep(self, eventp);
Petr Machata06986d52011-11-02 13:22:46 +0100639}
640
Petr Machata1e2a4dd2012-04-15 04:35:48 +0200641static int
642pt_continue(struct process_stopping_handler *self)
Petr Machatac1aa9582012-03-27 23:54:01 +0200643{
644 struct Process *teb = self->task_enabling_breakpoint;
Petr Machata1e2a4dd2012-04-15 04:35:48 +0200645 debug(1, "PTRACE_CONT");
646 return ptrace(PTRACE_CONT, teb->pid, 0, 0) != 0 ? -1 : 0;
647}
648
649static void
650disable_and(struct process_stopping_handler *self,
651 int (*do_this)(struct process_stopping_handler *self))
652{
653 struct Process *teb = self->task_enabling_breakpoint;
654 debug(DEBUG_PROCESS, "all stopped, now singlestep/cont %d", teb->pid);
Petr Machatac1aa9582012-03-27 23:54:01 +0200655 if (self->breakpoint_being_enabled->enabled)
656 disable_breakpoint(teb, self->breakpoint_being_enabled);
Petr Machata1e2a4dd2012-04-15 04:35:48 +0200657 if ((do_this)(self) < 0) {
Petr Machatac1aa9582012-03-27 23:54:01 +0200658 singlestep_error(self, &event);
659 //goto psh_sinking; /* XXX FIME */
660 abort();
661 }
662 self->state = psh_singlestep;
663}
664
Petr Machata1e2a4dd2012-04-15 04:35:48 +0200665void
666linux_ptrace_disable_and_singlestep(struct process_stopping_handler *self)
667{
668 disable_and(self, &singlestep);
669}
670
671void
672linux_ptrace_disable_and_continue(struct process_stopping_handler *self)
673{
674 disable_and(self, &pt_continue);
675}
676
Petr Machata98f09922011-07-09 10:55:29 +0200677/* This event handler is installed when we are in the process of
678 * stopping the whole thread group to do the pointer re-enablement for
679 * one of the threads. We pump all events to the queue for later
680 * processing while we wait for all the threads to stop. When this
681 * happens, we let the re-enablement thread to PTRACE_SINGLESTEP,
682 * re-enable, and continue everyone. */
683static Event *
Petr Machata366c2f42012-02-09 19:34:36 +0100684process_stopping_on_event(struct event_handler *super, Event *event)
Petr Machata98f09922011-07-09 10:55:29 +0200685{
686 struct process_stopping_handler * self = (void *)super;
687 Process * task = event->proc;
688 Process * leader = task->leader;
Petr Machatae21264e2011-10-06 14:30:33 +0200689 Process * teb = self->task_enabling_breakpoint;
Petr Machata98f09922011-07-09 10:55:29 +0200690
691 debug(DEBUG_PROCESS,
Petr Machata9ace5742012-04-14 02:29:57 +0200692 "process_stopping_on_event: pid %d; event type %d; state %d",
Petr Machata98f09922011-07-09 10:55:29 +0200693 task->pid, event->type, self->state);
694
695 struct pid_task * task_info = get_task_info(&self->pids, task->pid);
696 if (task_info == NULL)
697 fprintf(stderr, "new task??? %d\n", task->pid);
698 handle_stopping_event(task_info, &event);
699
700 int state = self->state;
701 int event_to_queue = !event_exit_or_none_p(event);
702
Petr Machata18c97072011-10-06 14:30:11 +0200703 /* Deactivate the entry if the task exits. */
704 if (event_exit_p(event) && task_info != NULL)
705 task_info->pid = 0;
706
Petr Machata43d2fe52011-11-02 13:25:49 +0100707 /* Always handle sysrets. Whether sysret occurred and what
708 * sys it rets from may need to be determined based on process
709 * stack, so we need to keep that in sync with reality. Note
710 * that we don't continue the process after the sysret is
711 * handled. See continue_after_syscall. */
712 if (event != NULL && event->type == EVENT_SYSRET) {
713 debug(1, "%d LT_EV_SYSRET", event->proc->pid);
714 event_to_queue = 0;
715 task_info->sysret = 1;
716 }
717
Petr Machata98f09922011-07-09 10:55:29 +0200718 switch (state) {
719 case psh_stopping:
720 /* If everyone is stopped, singlestep. */
Petr Machata74132a42012-03-16 02:46:18 +0100721 if (each_task(leader, NULL, &task_blocked,
722 &self->pids) == NULL) {
Petr Machatac1aa9582012-03-27 23:54:01 +0200723 (self->on_all_stopped)(self);
724 state = self->state;
Petr Machata98f09922011-07-09 10:55:29 +0200725 }
726 break;
727
Petr Machata06986d52011-11-02 13:22:46 +0100728 case psh_singlestep:
Petr Machata98f09922011-07-09 10:55:29 +0200729 /* In singlestep state, breakpoint signifies that we
730 * have now stepped, and can re-enable the breakpoint. */
Petr Machatae21264e2011-10-06 14:30:33 +0200731 if (event != NULL && task == teb) {
Petr Machatad5d93c42011-10-21 16:41:10 +0200732
Petr Machata36f40e72012-03-28 02:07:19 +0200733 /* If we got SIGNAL instead of BREAKPOINT,
734 * then this is not singlestep at all. */
Petr Machatacb9a28d2012-03-28 11:11:32 +0200735 if (event->type == EVENT_SIGNAL) {
736 do_singlestep:
Petr Machataa266acb2012-04-12 23:50:23 +0200737 if (singlestep(self) < 0) {
738 singlestep_error(self, &event);
739 goto psh_sinking;
740 }
Petr Machatad5d93c42011-10-21 16:41:10 +0200741 break;
Petr Machatacb9a28d2012-03-28 11:11:32 +0200742 } else {
743 switch ((self->keep_stepping_p)(self)) {
744 case CBS_FAIL:
745 /* XXX handle me */
746 case CBS_STOP:
747 break;
748 case CBS_CONT:
Petr Machata949a56a2012-04-03 00:32:03 +0200749 /* Sink singlestep event. */
750 if (event->type == EVENT_BREAKPOINT)
751 event = NULL;
Petr Machatacb9a28d2012-03-28 11:11:32 +0200752 goto do_singlestep;
753 }
Petr Machatad5d93c42011-10-21 16:41:10 +0200754 }
755
Petr Machata1e2a4dd2012-04-15 04:35:48 +0200756 /* Re-enable the breakpoint that we are
757 * stepping over. */
Petr Machatac1aa9582012-03-27 23:54:01 +0200758 struct breakpoint *sbp = self->breakpoint_being_enabled;
Petr Machata590c8082011-08-20 22:45:26 +0200759 if (sbp->enabled)
760 enable_breakpoint(teb, sbp);
Petr Machata98f09922011-07-09 10:55:29 +0200761
Petr Machata5d1c5fc2012-04-15 04:36:24 +0200762 /* If this was caused by a real breakpoint, as
763 * opposed to a singlestep, assume that it's
764 * an artificial breakpoint installed for some
765 * reason for the re-enablement. In that case
766 * handle it. */
767 target_address_t ip = get_instruction_pointer(task);
768 struct breakpoint *other = address2bpstruct(leader, ip);
769 if (other != NULL)
770 breakpoint_on_hit(other, task);
771
Petr Machataa266acb2012-04-12 23:50:23 +0200772 post_singlestep(self, &event);
773 goto psh_sinking;
774 }
775 break;
Petr Machata98f09922011-07-09 10:55:29 +0200776
Petr Machataa266acb2012-04-12 23:50:23 +0200777 psh_sinking:
778 state = self->state = psh_sinking;
Petr Machata98f09922011-07-09 10:55:29 +0200779 case psh_sinking:
780 if (await_sigstop_delivery(&self->pids, task_info, event))
781 process_stopping_done(self, leader);
Petr Machata590c8082011-08-20 22:45:26 +0200782 break;
783
784 case psh_ugly_workaround:
785 if (event == NULL)
786 break;
787 if (event->type == EVENT_BREAKPOINT) {
788 undo_breakpoint(event, leader);
789 if (task == teb)
790 self->task_enabling_breakpoint = NULL;
791 }
792 if (self->task_enabling_breakpoint == NULL
793 && all_stops_accountable(&self->pids)) {
794 undo_breakpoint(event, leader);
795 detach_process(leader);
796 event = NULL; // handled
797 }
Petr Machata98f09922011-07-09 10:55:29 +0200798 }
799
800 if (event != NULL && event_to_queue) {
801 enque_event(event);
802 event = NULL; // sink the event
803 }
804
805 return event;
806}
807
808static void
Petr Machata366c2f42012-02-09 19:34:36 +0100809process_stopping_destroy(struct event_handler *super)
Petr Machata98f09922011-07-09 10:55:29 +0200810{
811 struct process_stopping_handler * self = (void *)super;
Petr Machata98f09922011-07-09 10:55:29 +0200812 free(self->pids.tasks);
Juan Cespedes5e01f651998-03-08 22:31:44 +0100813}
Juan Cespedes8cc1b9d2002-03-01 19:54:23 +0100814
Petr Machata36f40e72012-03-28 02:07:19 +0200815static enum callback_status
816no(struct process_stopping_handler *self)
817{
Petr Machatacb9a28d2012-03-28 11:11:32 +0200818 return CBS_STOP;
Petr Machata36f40e72012-03-28 02:07:19 +0200819}
820
Petr Machatac1aa9582012-03-27 23:54:01 +0200821int
822process_install_stopping_handler(struct Process *proc, struct breakpoint *sbp,
Petr Machata36f40e72012-03-28 02:07:19 +0200823 void (*as)(struct process_stopping_handler *),
824 enum callback_status (*ks)
Petr Machatacb9a28d2012-03-28 11:11:32 +0200825 (struct process_stopping_handler *),
826 enum callback_status (*uw)
Petr Machata36f40e72012-03-28 02:07:19 +0200827 (struct process_stopping_handler *))
Petr Machatac1aa9582012-03-27 23:54:01 +0200828{
Petr Machata9ace5742012-04-14 02:29:57 +0200829 debug(DEBUG_FUNCTION,
830 "process_install_stopping_handler: pid=%d", proc->pid);
831
Petr Machatac1aa9582012-03-27 23:54:01 +0200832 struct process_stopping_handler *handler = calloc(sizeof(*handler), 1);
833 if (handler == NULL)
834 return -1;
835
Petr Machata36f40e72012-03-28 02:07:19 +0200836 if (as == NULL)
Petr Machata1e2a4dd2012-04-15 04:35:48 +0200837 as = &linux_ptrace_disable_and_singlestep;
Petr Machata36f40e72012-03-28 02:07:19 +0200838 if (ks == NULL)
839 ks = &no;
Petr Machatacb9a28d2012-03-28 11:11:32 +0200840 if (uw == NULL)
841 uw = &no;
Petr Machata36f40e72012-03-28 02:07:19 +0200842
Petr Machatac1aa9582012-03-27 23:54:01 +0200843 handler->super.on_event = process_stopping_on_event;
844 handler->super.destroy = process_stopping_destroy;
845 handler->task_enabling_breakpoint = proc;
846 handler->breakpoint_being_enabled = sbp;
Petr Machata36f40e72012-03-28 02:07:19 +0200847 handler->on_all_stopped = as;
848 handler->keep_stepping_p = ks;
Petr Machatacb9a28d2012-03-28 11:11:32 +0200849 handler->ugly_workaround_p = uw;
Petr Machatac1aa9582012-03-27 23:54:01 +0200850
851 install_event_handler(proc->leader, &handler->super);
852
853 if (each_task(proc->leader, NULL, &send_sigstop,
854 &handler->pids) != NULL) {
855 destroy_event_handler(proc);
856 return -1;
857 }
858
859 /* And deliver the first fake event, in case all the
860 * conditions are already fulfilled. */
861 Event ev = {
862 .type = EVENT_NONE,
863 .proc = proc,
864 };
865 process_stopping_on_event(&handler->super, &ev);
866
867 return 0;
868}
869
Juan Cespedesf1350522008-12-16 18:19:58 +0100870void
Petr Machatabc373262012-02-07 23:31:15 +0100871continue_after_breakpoint(Process *proc, struct breakpoint *sbp)
Petr Machata26627682011-07-08 18:15:32 +0200872{
Petr Machata9ace5742012-04-14 02:29:57 +0200873 debug(DEBUG_PROCESS,
874 "continue_after_breakpoint: pid=%d, addr=%p",
875 proc->pid, sbp->addr);
876
Juan Cespedes5c3fe062004-06-14 18:08:37 +0200877 set_instruction_pointer(proc, sbp->addr);
Petr Machatac1aa9582012-03-27 23:54:01 +0200878
Juan Cespedes8f8282f2002-03-03 18:58:40 +0100879 if (sbp->enabled == 0) {
880 continue_process(proc->pid);
881 } else {
Arnaud Patardf3d1c532010-01-08 08:40:04 -0500882#if defined __sparc__ || defined __ia64___ || defined __mips__
Ian Wienand9a2ad352006-02-20 22:44:45 +0100883 /* we don't want to singlestep here */
Juan Cespedes5c3fe062004-06-14 18:08:37 +0200884 continue_process(proc->pid);
885#else
Petr Machatacb9a28d2012-03-28 11:11:32 +0200886 if (process_install_stopping_handler
887 (proc, sbp, NULL, NULL, NULL) < 0) {
Petr Machatac1aa9582012-03-27 23:54:01 +0200888 perror("process_stopping_handler_create");
Petr Machata98f09922011-07-09 10:55:29 +0200889 /* Carry on not bothering to re-enable. */
890 continue_process(proc->pid);
Petr Machata98f09922011-07-09 10:55:29 +0200891 }
Juan Cespedes5c3fe062004-06-14 18:08:37 +0200892#endif
Juan Cespedes8f8282f2002-03-03 18:58:40 +0100893 }
894}
895
Petr Machata602330f2011-07-09 11:15:34 +0200896/**
897 * Ltrace exit. When we are about to exit, we have to go through all
898 * the processes, stop them all, remove all the breakpoints, and then
899 * detach the processes that we attached to using -p. If we left the
900 * other tasks running, they might hit stray return breakpoints and
901 * produce artifacts, so we better stop everyone, even if it's a bit
902 * of extra work.
903 */
904struct ltrace_exiting_handler
905{
Petr Machata366c2f42012-02-09 19:34:36 +0100906 struct event_handler super;
Petr Machata602330f2011-07-09 11:15:34 +0200907 struct pid_set pids;
908};
909
Petr Machata602330f2011-07-09 11:15:34 +0200910static Event *
Petr Machata366c2f42012-02-09 19:34:36 +0100911ltrace_exiting_on_event(struct event_handler *super, Event *event)
Petr Machata602330f2011-07-09 11:15:34 +0200912{
913 struct ltrace_exiting_handler * self = (void *)super;
914 Process * task = event->proc;
915 Process * leader = task->leader;
916
Petr Machata9ace5742012-04-14 02:29:57 +0200917 debug(DEBUG_PROCESS,
918 "ltrace_exiting_on_event: pid %d; event type %d",
919 task->pid, event->type);
Petr Machata602330f2011-07-09 11:15:34 +0200920
921 struct pid_task * task_info = get_task_info(&self->pids, task->pid);
922 handle_stopping_event(task_info, &event);
923
Petr Machata590c8082011-08-20 22:45:26 +0200924 if (event != NULL && event->type == EVENT_BREAKPOINT)
925 undo_breakpoint(event, leader);
Petr Machata4b9f4d92011-08-20 04:07:05 +0200926
927 if (await_sigstop_delivery(&self->pids, task_info, event)
Petr Machata590c8082011-08-20 22:45:26 +0200928 && all_stops_accountable(&self->pids))
929 detach_process(leader);
Petr Machata602330f2011-07-09 11:15:34 +0200930
931 /* Sink all non-exit events. We are about to exit, so we
932 * don't bother with queuing them. */
933 if (event_exit_or_none_p(event))
934 return event;
Petr Machata13d5df72011-08-19 23:15:15 +0200935
Petr Machata13d5df72011-08-19 23:15:15 +0200936 return NULL;
Petr Machata602330f2011-07-09 11:15:34 +0200937}
938
939static void
Petr Machata366c2f42012-02-09 19:34:36 +0100940ltrace_exiting_destroy(struct event_handler *super)
Petr Machata602330f2011-07-09 11:15:34 +0200941{
942 struct ltrace_exiting_handler * self = (void *)super;
943 free(self->pids.tasks);
944}
945
946static int
947ltrace_exiting_install_handler(Process * proc)
948{
949 /* Only install to leader. */
950 if (proc->leader != proc)
951 return 0;
952
953 /* Perhaps we are already installed, if the user passed
954 * several -p options that are tasks of one process. */
955 if (proc->event_handler != NULL
956 && proc->event_handler->on_event == &ltrace_exiting_on_event)
957 return 0;
958
Petr Machata590c8082011-08-20 22:45:26 +0200959 /* If stopping handler is already present, let it do the
960 * work. */
961 if (proc->event_handler != NULL) {
962 assert(proc->event_handler->on_event
963 == &process_stopping_on_event);
964 struct process_stopping_handler * other
965 = (void *)proc->event_handler;
966 other->exiting = 1;
967 return 0;
968 }
969
Petr Machata602330f2011-07-09 11:15:34 +0200970 struct ltrace_exiting_handler * handler
971 = calloc(sizeof(*handler), 1);
972 if (handler == NULL) {
973 perror("malloc exiting handler");
974 fatal:
975 /* XXXXXXXXXXXXXXXXXXX fixme */
976 return -1;
977 }
978
Petr Machata602330f2011-07-09 11:15:34 +0200979 handler->super.on_event = ltrace_exiting_on_event;
980 handler->super.destroy = ltrace_exiting_destroy;
981 install_event_handler(proc->leader, &handler->super);
982
Petr Machata74132a42012-03-16 02:46:18 +0100983 if (each_task(proc->leader, NULL, &send_sigstop,
Petr Machata602330f2011-07-09 11:15:34 +0200984 &handler->pids) != NULL)
985 goto fatal;
986
987 return 0;
988}
989
Petr Machatacbe29c62011-09-27 02:27:58 +0200990/*
991 * When the traced process vforks, it's suspended until the child
992 * process calls _exit or exec*. In the meantime, the two share the
993 * address space.
994 *
995 * The child process should only ever call _exit or exec*, but we
996 * can't count on that (it's not the role of ltrace to policy, but to
997 * observe). In any case, we will _at least_ have to deal with
998 * removal of vfork return breakpoint (which we have to smuggle back
999 * in, so that the parent can see it, too), and introduction of exec*
1000 * return breakpoint. Since we already have both breakpoint actions
1001 * to deal with, we might as well support it all.
1002 *
1003 * The gist is that we pretend that the child is in a thread group
1004 * with its parent, and handle it as a multi-threaded case, with the
1005 * exception that we know that the parent is blocked, and don't
1006 * attempt to stop it. When the child execs, we undo the setup.
Petr Machatacbe29c62011-09-27 02:27:58 +02001007 */
1008
Petr Machata134a1082011-09-27 20:25:58 +02001009struct process_vfork_handler
1010{
Petr Machata366c2f42012-02-09 19:34:36 +01001011 struct event_handler super;
Petr Machata134a1082011-09-27 20:25:58 +02001012 void * bp_addr;
1013};
1014
Petr Machatacbe29c62011-09-27 02:27:58 +02001015static Event *
Petr Machata366c2f42012-02-09 19:34:36 +01001016process_vfork_on_event(struct event_handler *super, Event *event)
Petr Machatacbe29c62011-09-27 02:27:58 +02001017{
Petr Machata9ace5742012-04-14 02:29:57 +02001018 debug(DEBUG_PROCESS,
1019 "process_vfork_on_event: pid %d; event type %d",
1020 event->proc->pid, event->type);
1021
Petr Machatacbe29c62011-09-27 02:27:58 +02001022 struct process_vfork_handler * self = (void *)super;
Petr Machatabc373262012-02-07 23:31:15 +01001023 struct breakpoint *sbp;
Petr Machatacbe29c62011-09-27 02:27:58 +02001024 assert(self != NULL);
1025
1026 switch (event->type) {
Petr Machata134a1082011-09-27 20:25:58 +02001027 case EVENT_BREAKPOINT:
1028 /* Remember the vfork return breakpoint. */
1029 if (self->bp_addr == NULL)
1030 self->bp_addr = event->e_un.brk_addr;
1031 break;
1032
Petr Machatacbe29c62011-09-27 02:27:58 +02001033 case EVENT_EXIT:
1034 case EVENT_EXIT_SIGNAL:
1035 case EVENT_EXEC:
Petr Machata134a1082011-09-27 20:25:58 +02001036 /* Smuggle back in the vfork return breakpoint, so
1037 * that our parent can trip over it once again. */
1038 if (self->bp_addr != NULL) {
1039 sbp = dict_find_entry(event->proc->leader->breakpoints,
1040 self->bp_addr);
1041 if (sbp != NULL)
Petr Machata3797cd62011-10-03 19:23:37 +02001042 insert_breakpoint(event->proc->parent,
Petr Machata9df15012012-02-20 12:49:46 +01001043 self->bp_addr, sbp->libsym);
Petr Machata134a1082011-09-27 20:25:58 +02001044 }
1045
Petr Machataba9911f2011-09-27 21:09:47 +02001046 continue_process(event->proc->parent->pid);
Petr Machata134a1082011-09-27 20:25:58 +02001047
1048 /* Remove the leader that we artificially set up
1049 * earlier. */
Petr Machatacbe29c62011-09-27 02:27:58 +02001050 change_process_leader(event->proc, event->proc);
1051 destroy_event_handler(event->proc);
1052
Petr Machatacbe29c62011-09-27 02:27:58 +02001053 default:
1054 ;
1055 }
1056
1057 return event;
1058}
1059
1060void
1061continue_after_vfork(Process * proc)
1062{
1063 debug(DEBUG_PROCESS, "continue_after_vfork: pid=%d", proc->pid);
Petr Machata134a1082011-09-27 20:25:58 +02001064 struct process_vfork_handler * handler = calloc(sizeof(*handler), 1);
Petr Machatacbe29c62011-09-27 02:27:58 +02001065 if (handler == NULL) {
1066 perror("malloc vfork handler");
1067 /* Carry on not bothering to treat the process as
1068 * necessary. */
1069 continue_process(proc->parent->pid);
1070 return;
1071 }
1072
1073 /* We must set up custom event handler, so that we see
1074 * exec/exit events for the task itself. */
Petr Machata134a1082011-09-27 20:25:58 +02001075 handler->super.on_event = process_vfork_on_event;
1076 install_event_handler(proc, &handler->super);
Petr Machatacbe29c62011-09-27 02:27:58 +02001077
1078 /* Make sure that the child is sole thread. */
1079 assert(proc->leader == proc);
1080 assert(proc->next == NULL || proc->next->leader != proc);
1081
1082 /* Make sure that the child's parent is properly set up. */
1083 assert(proc->parent != NULL);
1084 assert(proc->parent->leader != NULL);
1085
1086 change_process_leader(proc, proc->parent->leader);
Petr Machatacbe29c62011-09-27 02:27:58 +02001087}
1088
Petr Machata9d29b3e2011-11-09 16:46:56 +01001089static int
1090is_mid_stopping(Process *proc)
1091{
1092 return proc != NULL
1093 && proc->event_handler != NULL
1094 && proc->event_handler->on_event == &process_stopping_on_event;
1095}
1096
Petr Machata43d2fe52011-11-02 13:25:49 +01001097void
1098continue_after_syscall(Process * proc, int sysnum, int ret_p)
1099{
1100 /* Don't continue if we are mid-stopping. */
Petr Machata9d29b3e2011-11-09 16:46:56 +01001101 if (ret_p && (is_mid_stopping(proc) || is_mid_stopping(proc->leader))) {
1102 debug(DEBUG_PROCESS,
1103 "continue_after_syscall: don't continue %d",
1104 proc->pid);
Petr Machata43d2fe52011-11-02 13:25:49 +01001105 return;
Petr Machata9d29b3e2011-11-09 16:46:56 +01001106 }
Petr Machata43d2fe52011-11-02 13:25:49 +01001107 continue_process(proc->pid);
1108}
1109
Petr Machata602330f2011-07-09 11:15:34 +02001110/* If ltrace gets SIGINT, the processes directly or indirectly run by
1111 * ltrace get it too. We just have to wait long enough for the signal
1112 * to be delivered and the process terminated, which we notice and
1113 * exit ltrace, too. So there's not much we need to do there. We
1114 * want to keep tracing those processes as usual, in case they just
1115 * SIG_IGN the SIGINT to do their shutdown etc.
1116 *
1117 * For processes ran on the background, we want to install an exit
1118 * handler that stops all the threads, removes all breakpoints, and
1119 * detaches.
1120 */
1121void
Petr Machataffe4cd22012-04-11 18:01:44 +02001122os_ltrace_exiting(void)
Petr Machata602330f2011-07-09 11:15:34 +02001123{
1124 struct opt_p_t * it;
1125 for (it = opt_p; it != NULL; it = it->next) {
1126 Process * proc = pid2proc(it->pid);
1127 if (proc == NULL || proc->leader == NULL)
1128 continue;
1129 if (ltrace_exiting_install_handler(proc->leader) < 0)
1130 fprintf(stderr,
1131 "Couldn't install exiting handler for %d.\n",
1132 proc->pid);
1133 }
1134}
1135
Petr Machataffe4cd22012-04-11 18:01:44 +02001136int
1137os_ltrace_exiting_sighandler(void)
1138{
1139 extern int linux_in_waitpid;
1140 if (linux_in_waitpid) {
1141 os_ltrace_exiting();
1142 return 1;
1143 }
1144 return 0;
1145}
1146
Joe Damatodfa3fa32010-11-08 15:47:35 -08001147size_t
1148umovebytes(Process *proc, void *addr, void *laddr, size_t len) {
1149
1150 union {
1151 long a;
1152 char c[sizeof(long)];
1153 } a;
Zachary T Welchba6aca22010-12-08 18:55:09 -08001154 int started = 0;
1155 size_t offset = 0, bytes_read = 0;
Joe Damatodfa3fa32010-11-08 15:47:35 -08001156
1157 while (offset < len) {
1158 a.a = ptrace(PTRACE_PEEKTEXT, proc->pid, addr + offset, 0);
1159 if (a.a == -1 && errno) {
1160 if (started && errno == EIO)
1161 return bytes_read;
1162 else
1163 return -1;
1164 }
1165 started = 1;
1166
1167 if (len - offset >= sizeof(long)) {
1168 memcpy(laddr + offset, &a.c[0], sizeof(long));
1169 bytes_read += sizeof(long);
1170 }
1171 else {
1172 memcpy(laddr + offset, &a.c[0], len - offset);
1173 bytes_read += (len - offset);
1174 }
1175 offset += sizeof(long);
1176 }
1177
1178 return bytes_read;
1179}
1180
Steve Fink7bafff02006-08-07 04:50:42 +02001181/* Read a series of bytes starting at the process's memory address
1182 'addr' and continuing until a NUL ('\0') is seen or 'len' bytes
1183 have been read.
1184*/
Juan Cespedesf1350522008-12-16 18:19:58 +01001185int
Juan Cespedesa8909f72009-04-28 20:02:41 +02001186umovestr(Process *proc, void *addr, int len, void *laddr) {
Ian Wienand2d45b1a2006-02-20 22:48:07 +01001187 union {
1188 long a;
1189 char c[sizeof(long)];
1190 } a;
Zachary T Welchba6aca22010-12-08 18:55:09 -08001191 unsigned i;
Ian Wienand2d45b1a2006-02-20 22:48:07 +01001192 int offset = 0;
Juan Cespedes8cc1b9d2002-03-01 19:54:23 +01001193
Ian Wienand2d45b1a2006-02-20 22:48:07 +01001194 while (offset < len) {
1195 a.a = ptrace(PTRACE_PEEKTEXT, proc->pid, addr + offset, 0);
1196 for (i = 0; i < sizeof(long); i++) {
Paul Gilliam3f1219f2006-04-24 18:25:38 +02001197 if (a.c[i] && offset + (signed)i < len) {
Ian Wienand2d45b1a2006-02-20 22:48:07 +01001198 *(char *)(laddr + offset + i) = a.c[i];
Juan Cespedes8cc1b9d2002-03-01 19:54:23 +01001199 } else {
Ian Wienand2d45b1a2006-02-20 22:48:07 +01001200 *(char *)(laddr + offset + i) = '\0';
Juan Cespedes8cc1b9d2002-03-01 19:54:23 +01001201 return 0;
1202 }
1203 }
1204 offset += sizeof(long);
1205 }
Ian Wienand2d45b1a2006-02-20 22:48:07 +01001206 *(char *)(laddr + offset) = '\0';
Juan Cespedes8cc1b9d2002-03-01 19:54:23 +01001207 return 0;
1208}