]> git.ipfire.org Git - thirdparty/binutils-gdb.git/blob - gdb/procfs.c
From 2000-03-27 Peter Schauer <pes@regent.e-technik.tu-muenchen.de>:
[thirdparty/binutils-gdb.git] / gdb / procfs.c
1 /* Machine independent support for SVR4 /proc (process file system) for GDB.
2 Copyright 1999 Free Software Foundation, Inc.
3 Written by Michael Snyder at Cygnus Solutions.
4 Based on work by Fred Fish, Stu Grossman, Geoff Noer, and others.
5
6 This file is part of GDB.
7
8 This program is free software; you can redistribute it and/or modify
9 it under the terms of the GNU General Public License as published by
10 the Free Software Foundation; either version 2 of the License, or
11 (at your option) any later version.
12
13 This program is distributed in the hope that it will be useful,
14 but WITHOUT ANY WARRANTY; without even the implied warranty of
15 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
16 GNU General Public License for more details.
17
18 You should have received a copy of the GNU General Public License
19 along with this program; if not, write to the Free Software Foundation,
20 Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. */
21
22 #include "defs.h"
23 #include "inferior.h"
24 #include "target.h"
25 #include "gdbcore.h"
26 #include "gdbcmd.h"
27 #include "gdbthread.h"
28
29 #if defined (NEW_PROC_API)
30 #define _STRUCTURED_PROC 1 /* Should be done by configure script. */
31 #endif
32
33 #include <sys/procfs.h>
34 #include <sys/fault.h>
35 #include <sys/syscall.h>
36 #include <sys/errno.h>
37 #include <sys/wait.h>
38 #include <signal.h>
39 #include <ctype.h>
40
41 #include "proc-utils.h"
42
43 /*
44 * PROCFS.C
45 *
46 * This module provides the interface between GDB and the
47 * /proc file system, which is used on many versions of Unix
48 * as a means for debuggers to control other processes.
49 * Examples of the systems that use this interface are:
50 * Irix
51 * Solaris
52 * OSF
53 * Unixware
54 *
55 * /proc works by immitating a file system: you open a simulated file
56 * that represents the process you wish to interact with, and
57 * perform operations on that "file" in order to examine or change
58 * the state of the other process.
59 *
60 * The most important thing to know about /proc and this module
61 * is that there are two very different interfaces to /proc:
62 * One that uses the ioctl system call, and
63 * another that uses read and write system calls.
64 * This module has to support both /proc interfaces. This means
65 * that there are two different ways of doing every basic operation.
66 *
67 * In order to keep most of the code simple and clean, I have
68 * defined an interface "layer" which hides all these system calls.
69 * An ifdef (NEW_PROC_API) determines which interface we are using,
70 * and most or all occurrances of this ifdef should be confined to
71 * this interface layer.
72 */
73
74
75 /* Determine which /proc API we are using:
76 The ioctl API defines PIOCSTATUS, while
77 the read/write (multiple fd) API never does. */
78
79 #ifdef NEW_PROC_API
80 #include <sys/types.h>
81 #include <dirent.h> /* opendir/readdir, for listing the LWP's */
82 #endif
83
84 #include <fcntl.h> /* for O_RDONLY */
85 #include <unistd.h> /* for "X_OK" */
86 #include "gdb_stat.h" /* for struct stat */
87
88 /* =================== TARGET_OPS "MODULE" =================== */
89
90 /*
91 * This module defines the GDB target vector and its methods.
92 */
93
94 static void procfs_open PARAMS((char *, int));
95 static void procfs_attach PARAMS ((char *, int));
96 static void procfs_detach PARAMS ((char *, int));
97 static void procfs_resume PARAMS ((int, int, enum target_signal));
98 static int procfs_can_run PARAMS ((void));
99 static void procfs_stop PARAMS ((void));
100 static void procfs_files_info PARAMS ((struct target_ops *));
101 static void procfs_fetch_registers PARAMS ((int));
102 static void procfs_store_registers PARAMS ((int));
103 static void procfs_notice_signals PARAMS ((int));
104 static void procfs_prepare_to_store PARAMS ((void));
105 static void procfs_kill_inferior PARAMS ((void));
106 static void procfs_mourn_inferior PARAMS ((void));
107 static void procfs_create_inferior PARAMS ((char *, char *, char **));
108 static int procfs_wait PARAMS ((int,
109 struct target_waitstatus *));
110 static int procfs_xfer_memory PARAMS ((CORE_ADDR,
111 char *, int, int,
112 struct target_ops *));
113
114 static int procfs_thread_alive PARAMS ((int));
115
116 void procfs_find_new_threads PARAMS ((void));
117 char *procfs_pid_to_str PARAMS ((int));
118
119 struct target_ops procfs_ops; /* the target vector */
120
121 static void
122 init_procfs_ops ()
123 {
124 procfs_ops.to_shortname = "procfs";
125 procfs_ops.to_longname = "Unix /proc child process";
126 procfs_ops.to_doc =
127 "Unix /proc child process (started by the \"run\" command).";
128 procfs_ops.to_open = procfs_open;
129 procfs_ops.to_can_run = procfs_can_run;
130 procfs_ops.to_create_inferior = procfs_create_inferior;
131 procfs_ops.to_kill = procfs_kill_inferior;
132 procfs_ops.to_mourn_inferior = procfs_mourn_inferior;
133 procfs_ops.to_attach = procfs_attach;
134 procfs_ops.to_detach = procfs_detach;
135 procfs_ops.to_wait = procfs_wait;
136 procfs_ops.to_resume = procfs_resume;
137 procfs_ops.to_prepare_to_store = procfs_prepare_to_store;
138 procfs_ops.to_fetch_registers = procfs_fetch_registers;
139 procfs_ops.to_store_registers = procfs_store_registers;
140 procfs_ops.to_xfer_memory = procfs_xfer_memory;
141 procfs_ops.to_insert_breakpoint = memory_insert_breakpoint;
142 procfs_ops.to_remove_breakpoint = memory_remove_breakpoint;
143 procfs_ops.to_notice_signals = procfs_notice_signals;
144 procfs_ops.to_files_info = procfs_files_info;
145 procfs_ops.to_stop = procfs_stop;
146
147 procfs_ops.to_terminal_init = terminal_init_inferior;
148 procfs_ops.to_terminal_inferior = terminal_inferior;
149 procfs_ops.to_terminal_ours_for_output = terminal_ours_for_output;
150 procfs_ops.to_terminal_ours = terminal_ours;
151 procfs_ops.to_terminal_info = child_terminal_info;
152
153 procfs_ops.to_find_new_threads = procfs_find_new_threads;
154 procfs_ops.to_thread_alive = procfs_thread_alive;
155 procfs_ops.to_pid_to_str = procfs_pid_to_str;
156
157 procfs_ops.to_has_all_memory = 1;
158 procfs_ops.to_has_memory = 1;
159 procfs_ops.to_has_execution = 1;
160 procfs_ops.to_has_stack = 1;
161 procfs_ops.to_has_registers = 1;
162 procfs_ops.to_stratum = process_stratum;
163 procfs_ops.to_has_thread_control = tc_schedlock;
164 procfs_ops.to_magic = OPS_MAGIC;
165 }
166
167 /* =================== END, TARGET_OPS "MODULE" =================== */
168
169 /*
170 * Temporary debugging code:
171 *
172 * These macros allow me to trace the system calls that we make
173 * to control the child process. This is quite handy for comparing
174 * with the older version of procfs.
175 */
176
177 #ifdef TRACE_PROCFS
178 #ifdef NEW_PROC_API
179 extern int write_with_trace PARAMS ((int, void *, size_t, char *, int));
180 extern off_t lseek_with_trace PARAMS ((int, off_t, int, char *, int));
181 #define write(X,Y,Z) write_with_trace (X, Y, Z, __FILE__, __LINE__)
182 #define lseek(X,Y,Z) lseek_with_trace (X, Y, Z, __FILE__, __LINE__)
183 #else
184 extern int ioctl_with_trace PARAMS ((int, long, void *, char *, int));
185 #define ioctl(X,Y,Z) ioctl_with_trace (X, Y, Z, __FILE__, __LINE__)
186 #endif
187 #define open(X,Y) open_with_trace (X, Y, __FILE__, __LINE__)
188 #define close(X) close_with_trace (X, __FILE__, __LINE__)
189 #define wait(X) wait_with_trace (X, __FILE__, __LINE__)
190 #define PROCFS_NOTE(X) procfs_note (X, __FILE__, __LINE__)
191 #define PROC_PRETTYFPRINT_STATUS(X,Y,Z,T) \
192 proc_prettyfprint_status (X, Y, Z, T)
193 #else
194 #define PROCFS_NOTE(X)
195 #define PROC_PRETTYFPRINT_STATUS(X,Y,Z,T)
196 #endif
197
198
199 /*
200 * World Unification:
201 *
202 * Put any typedefs, defines etc. here that are required for
203 * the unification of code that handles different versions of /proc.
204 */
205
206 #ifdef NEW_PROC_API /* Solaris 7 && 8 method for watchpoints */
207 #ifndef UNIXWARE
208 enum { READ_WATCHFLAG = WA_READ,
209 WRITE_WATCHFLAG = WA_WRITE,
210 EXEC_WATCHFLAG = WA_EXEC,
211 AFTER_WATCHFLAG = WA_TRAPAFTER
212 };
213 #endif
214 #else /* Irix method for watchpoints */
215 enum { READ_WATCHFLAG = MA_READ,
216 WRITE_WATCHFLAG = MA_WRITE,
217 EXEC_WATCHFLAG = MA_EXEC,
218 AFTER_WATCHFLAG = 0 /* trapafter not implemented */
219 };
220 #endif
221
222
223
224
225 /* =================== STRUCT PROCINFO "MODULE" =================== */
226
227 /* FIXME: this comment will soon be out of date W.R.T. threads. */
228
229 /* The procinfo struct is a wrapper to hold all the state information
230 concerning a /proc process. There should be exactly one procinfo
231 for each process, and since GDB currently can debug only one
232 process at a time, that means there should be only one procinfo.
233 All of the LWP's of a process can be accessed indirectly thru the
234 single process procinfo.
235
236 However, against the day when GDB may debug more than one process,
237 this data structure is kept in a list (which for now will hold no
238 more than one member), and many functions will have a pointer to a
239 procinfo as an argument.
240
241 There will be a separate procinfo structure for use by the (not yet
242 implemented) "info proc" command, so that we can print useful
243 information about any random process without interfering with the
244 inferior's procinfo information. */
245
246 #ifdef NEW_PROC_API
247 /* format strings for /proc paths */
248 # ifndef CTL_PROC_NAME_FMT
249 # define MAIN_PROC_NAME_FMT "/proc/%d"
250 # define CTL_PROC_NAME_FMT "/proc/%d/ctl"
251 # define AS_PROC_NAME_FMT "/proc/%d/as"
252 # define MAP_PROC_NAME_FMT "/proc/%d/map"
253 # define STATUS_PROC_NAME_FMT "/proc/%d/status"
254 # define MAX_PROC_NAME_SIZE sizeof("/proc/99999/lwp/8096/lstatus")
255 # endif
256 /* the name of the proc status struct depends on the implementation */
257 typedef pstatus_t gdb_prstatus_t;
258 typedef lwpstatus_t gdb_lwpstatus_t;
259 #else /* ! NEW_PROC_API */
260 /* format strings for /proc paths */
261 # ifndef CTL_PROC_NAME_FMT
262 # define MAIN_PROC_NAME_FMT "/proc/%05d"
263 # define CTL_PROC_NAME_FMT "/proc/%05d"
264 # define AS_PROC_NAME_FMT "/proc/%05d"
265 # define MAP_PROC_NAME_FMT "/proc/%05d"
266 # define STATUS_PROC_NAME_FMT "/proc/%05d"
267 # define MAX_PROC_NAME_SIZE sizeof("/proc/ttttppppp")
268 # endif
269 /* the name of the proc status struct depends on the implementation */
270 typedef prstatus_t gdb_prstatus_t;
271 typedef prstatus_t gdb_lwpstatus_t;
272 #endif /* NEW_PROC_API */
273
274
275 /* These #ifdefs are for sol2.x in particular. sol2.x has
276 both a "gregset_t" and a "prgregset_t", which have
277 similar uses but different layouts. sol2.x gdb tries to
278 use prgregset_t (and prfpregset_t) everywhere. */
279
280 #ifdef GDB_GREGSET_TYPE
281 typedef GDB_GREGSET_TYPE gdb_gregset_t;
282 #else
283 typedef gregset_t gdb_gregset_t;
284 #endif
285
286 #ifdef GDB_FPREGSET_TYPE
287 typedef GDB_FPREGSET_TYPE gdb_fpregset_t;
288 #else
289 typedef fpregset_t gdb_fpregset_t;
290 #endif
291
292 /* Provide default composite pid manipulation macros for systems that
293 don't have threads. */
294
295 #ifndef PIDGET
296 #define PIDGET(PID) (PID)
297 #define TIDGET(PID) (PID)
298 #endif
299 #ifndef MERGEPID
300 #define MERGEPID(PID, TID) (PID)
301 #endif
302
303 typedef struct procinfo {
304 struct procinfo *next;
305 int pid; /* Process ID */
306 int tid; /* Thread/LWP id */
307
308 /* process state */
309 int was_stopped;
310 int ignore_next_sigstop;
311
312 /* The following four fd fields may be identical, or may contain
313 several different fd's, depending on the version of /proc
314 (old ioctl or new read/write). */
315
316 int ctl_fd; /* File descriptor for /proc control file */
317 /*
318 * The next three file descriptors are actually only needed in the
319 * read/write, multiple-file-descriptor implemenation (NEW_PROC_API).
320 * However, to avoid a bunch of #ifdefs in the code, we will use
321 * them uniformly by (in the case of the ioctl single-file-descriptor
322 * implementation) filling them with copies of the control fd.
323 */
324 int status_fd; /* File descriptor for /proc status file */
325 int as_fd; /* File descriptor for /proc as file */
326
327 char pathname[MAX_PROC_NAME_SIZE]; /* Pathname to /proc entry */
328
329 fltset_t saved_fltset; /* Saved traced hardware fault set */
330 sigset_t saved_sigset; /* Saved traced signal set */
331 sigset_t saved_sighold; /* Saved held signal set */
332 sysset_t saved_exitset; /* Saved traced system call exit set */
333 sysset_t saved_entryset; /* Saved traced system call entry set */
334
335 gdb_prstatus_t prstatus; /* Current process status info */
336
337 #ifndef NEW_PROC_API
338 gdb_fpregset_t fpregset; /* Current floating point registers */
339 #endif
340
341 struct procinfo *thread_list;
342
343 int status_valid : 1;
344 int gregs_valid : 1;
345 int fpregs_valid : 1;
346 int threads_valid: 1;
347 } procinfo;
348
349 static char errmsg[128]; /* shared error msg buffer */
350
351 /* Function prototypes for procinfo module: */
352
353 static procinfo *find_procinfo_or_die PARAMS ((int pid, int tid));
354 static procinfo *find_procinfo PARAMS ((int pid, int tid));
355 static procinfo *create_procinfo PARAMS ((int pid, int tid));
356 static void destroy_procinfo PARAMS ((procinfo *p));
357 static void dead_procinfo PARAMS ((procinfo *p,
358 char *msg, int killp));
359 static int open_procinfo_files PARAMS ((procinfo *p, int which));
360 static void close_procinfo_files PARAMS ((procinfo *p));
361
362 /* The head of the procinfo list: */
363 static procinfo * procinfo_list;
364
365 /*
366 * Function: find_procinfo
367 *
368 * Search the procinfo list.
369 *
370 * Returns: pointer to procinfo, or NULL if not found.
371 */
372
373 static procinfo *
374 find_procinfo (pid, tid)
375 int pid;
376 int tid;
377 {
378 procinfo *pi;
379
380 for (pi = procinfo_list; pi; pi = pi->next)
381 if (pi->pid == pid)
382 break;
383
384 if (pi)
385 if (tid)
386 {
387 /* Don't check threads_valid. If we're updating the
388 thread_list, we want to find whatever threads are already
389 here. This means that in general it is the caller's
390 responsibility to check threads_valid and update before
391 calling find_procinfo, if the caller wants to find a new
392 thread. */
393
394 for (pi = pi->thread_list; pi; pi = pi->next)
395 if (pi->tid == tid)
396 break;
397 }
398
399 return pi;
400 }
401
402 /*
403 * Function: find_procinfo_or_die
404 *
405 * Calls find_procinfo, but errors on failure.
406 */
407
408 static procinfo *
409 find_procinfo_or_die (pid, tid)
410 int pid;
411 int tid;
412 {
413 procinfo *pi = find_procinfo (pid, tid);
414
415 if (pi == NULL)
416 {
417 if (tid)
418 error ("procfs: couldn't find pid %d (kernel thread %d) in procinfo list.",
419 pid, tid);
420 else
421 error ("procfs: couldn't find pid %d in procinfo list.", pid);
422 }
423 return pi;
424 }
425
426 /*
427 * Function: open_procinfo_files
428 *
429 * Open the file descriptor for the process or LWP.
430 * ifdef NEW_PROC_API, we only open the control file descriptor;
431 * the others are opened lazily as needed.
432 * else (if not NEW_PROC_API), there is only one real
433 * file descriptor, but we keep multiple copies of it so that
434 * the code that uses them does not have to be #ifdef'd.
435 *
436 * Return: file descriptor, or zero for failure.
437 */
438
439 enum { FD_CTL, FD_STATUS, FD_AS };
440
441 static int
442 open_procinfo_files (pi, which)
443 procinfo *pi;
444 int which;
445 {
446 #ifdef NEW_PROC_API
447 char tmp[MAX_PROC_NAME_SIZE];
448 #endif
449 int fd;
450
451 /*
452 * This function is getting ALMOST long enough to break up into several.
453 * Here is some rationale:
454 *
455 * NEW_PROC_API (Solaris 2.6, Solaris 2.7, Unixware):
456 * There are several file descriptors that may need to be open
457 * for any given process or LWP. The ones we're intereted in are:
458 * - control (ctl) write-only change the state
459 * - status (status) read-only query the state
460 * - address space (as) read/write access memory
461 * - map (map) read-only virtual addr map
462 * Most of these are opened lazily as they are needed.
463 * The pathnames for the 'files' for an LWP look slightly
464 * different from those of a first-class process:
465 * Pathnames for a process (<proc-id>):
466 * /proc/<proc-id>/ctl
467 * /proc/<proc-id>/status
468 * /proc/<proc-id>/as
469 * /proc/<proc-id>/map
470 * Pathnames for an LWP (lwp-id):
471 * /proc/<proc-id>/lwp/<lwp-id>/lwpctl
472 * /proc/<proc-id>/lwp/<lwp-id>/lwpstatus
473 * An LWP has no map or address space file descriptor, since
474 * the memory map and address space are shared by all LWPs.
475 *
476 * Everyone else (Solaris 2.5, Irix, OSF)
477 * There is only one file descriptor for each process or LWP.
478 * For convenience, we copy the same file descriptor into all
479 * three fields of the procinfo struct (ctl_fd, status_fd, and
480 * as_fd, see NEW_PROC_API above) so that code that uses them
481 * doesn't need any #ifdef's.
482 * Pathname for all:
483 * /proc/<proc-id>
484 *
485 * Solaris 2.5 LWP's:
486 * Each LWP has an independent file descriptor, but these
487 * are not obtained via the 'open' system call like the rest:
488 * instead, they're obtained thru an ioctl call (PIOCOPENLWP)
489 * to the file descriptor of the parent process.
490 *
491 * OSF threads:
492 * These do not even have their own independent file descriptor.
493 * All operations are carried out on the file descriptor of the
494 * parent process. Therefore we just call open again for each
495 * thread, getting a new handle for the same 'file'.
496 */
497
498 #ifdef NEW_PROC_API
499 /*
500 * In this case, there are several different file descriptors that
501 * we might be asked to open. The control file descriptor will be
502 * opened early, but the others will be opened lazily as they are
503 * needed.
504 */
505
506 strcpy (tmp, pi->pathname);
507 switch (which) { /* which file descriptor to open? */
508 case FD_CTL:
509 if (pi->tid)
510 strcat (tmp, "/lwpctl");
511 else
512 strcat (tmp, "/ctl");
513 fd = open (tmp, O_WRONLY);
514 if (fd <= 0)
515 return 0; /* fail */
516 pi->ctl_fd = fd;
517 break;
518 case FD_AS:
519 if (pi->tid)
520 return 0; /* there is no 'as' file descriptor for an lwp */
521 strcat (tmp, "/as");
522 fd = open (tmp, O_RDWR);
523 if (fd <= 0)
524 return 0; /* fail */
525 pi->as_fd = fd;
526 break;
527 case FD_STATUS:
528 if (pi->tid)
529 strcat (tmp, "/lwpstatus");
530 else
531 strcat (tmp, "/status");
532 fd = open (tmp, O_RDONLY);
533 if (fd <= 0)
534 return 0; /* fail */
535 pi->status_fd = fd;
536 break;
537 default:
538 return 0; /* unknown file descriptor */
539 }
540 #else /* not NEW_PROC_API */
541 /*
542 * In this case, there is only one file descriptor for each procinfo
543 * (ie. each process or LWP). In fact, only the file descriptor for
544 * the process can actually be opened by an 'open' system call.
545 * The ones for the LWPs have to be obtained thru an IOCTL call
546 * on the process's file descriptor.
547 *
548 * For convenience, we copy each procinfo's single file descriptor
549 * into all of the fields occupied by the several file descriptors
550 * of the NEW_PROC_API implementation. That way, the code that uses
551 * them can be written without ifdefs.
552 */
553
554
555 #ifdef PIOCTSTATUS /* OSF */
556 if ((fd = open (pi->pathname, O_RDWR)) == 0) /* Only one FD; just open it. */
557 return 0;
558 #else /* Sol 2.5, Irix, other? */
559 if (pi->tid == 0) /* Master procinfo for the process */
560 {
561 fd = open (pi->pathname, O_RDWR);
562 if (fd <= 0)
563 return 0; /* fail */
564 }
565 else /* LWP thread procinfo */
566 {
567 #ifdef PIOCOPENLWP /* Sol 2.5, thread/LWP */
568 procinfo *process;
569 int lwpid = pi->tid;
570
571 /* Find the procinfo for the entire process. */
572 if ((process = find_procinfo (pi->pid, 0)) == NULL)
573 return 0; /* fail */
574
575 /* Now obtain the file descriptor for the LWP. */
576 if ((fd = ioctl (process->ctl_fd, PIOCOPENLWP, &lwpid)) <= 0)
577 return 0; /* fail */
578 #else /* Irix, other? */
579 return 0; /* Don't know how to open threads */
580 #endif /* Sol 2.5 PIOCOPENLWP */
581 }
582 #endif /* OSF PIOCTSTATUS */
583 pi->ctl_fd = pi->as_fd = pi->status_fd = fd;
584 #endif /* NEW_PROC_API */
585
586 return 1; /* success */
587 }
588
589 /*
590 * Function: create_procinfo
591 *
592 * Allocate a data structure and link it into the procinfo list.
593 * (First tries to find a pre-existing one (FIXME: why???)
594 *
595 * Return: pointer to new procinfo struct.
596 */
597
598 static procinfo *
599 create_procinfo (pid, tid)
600 int pid;
601 int tid;
602 {
603 procinfo *pi, *parent;
604
605 if ((pi = find_procinfo (pid, tid)))
606 return pi; /* Already exists, nothing to do. */
607
608 /* find parent before doing malloc, to save having to cleanup */
609 if (tid != 0)
610 parent = find_procinfo_or_die (pid, 0); /* FIXME: should I
611 create it if it
612 doesn't exist yet? */
613
614 pi = (procinfo *) xmalloc (sizeof (procinfo));
615 memset (pi, 0, sizeof (procinfo));
616 pi->pid = pid;
617 pi->tid = tid;
618
619 /* Chain into list. */
620 if (tid == 0)
621 {
622 sprintf (pi->pathname, MAIN_PROC_NAME_FMT, pid);
623 pi->next = procinfo_list;
624 procinfo_list = pi;
625 }
626 else
627 {
628 #ifdef NEW_PROC_API
629 sprintf (pi->pathname, "/proc/%05d/lwp/%d", pid, tid);
630 #else
631 sprintf (pi->pathname, MAIN_PROC_NAME_FMT, pid);
632 #endif
633 pi->next = parent->thread_list;
634 parent->thread_list = pi;
635 }
636 return pi;
637 }
638
639 /*
640 * Function: close_procinfo_files
641 *
642 * Close all file descriptors associated with the procinfo
643 */
644
645 static void
646 close_procinfo_files (pi)
647 procinfo *pi;
648 {
649 if (pi->ctl_fd > 0)
650 close (pi->ctl_fd);
651 #ifdef NEW_PROC_API
652 if (pi->as_fd > 0)
653 close (pi->as_fd);
654 if (pi->status_fd > 0)
655 close (pi->status_fd);
656 #endif
657 pi->ctl_fd = pi->as_fd = pi->status_fd = 0;
658 }
659
660 /*
661 * Function: destroy_procinfo
662 *
663 * Destructor function. Close, unlink and deallocate the object.
664 */
665
666 static void
667 destroy_one_procinfo (list, pi)
668 procinfo **list;
669 procinfo *pi;
670 {
671 procinfo *ptr;
672
673 /* Step one: unlink the procinfo from its list */
674 if (pi == *list)
675 *list = pi->next;
676 else
677 for (ptr = *list; ptr; ptr = ptr->next)
678 if (ptr->next == pi)
679 {
680 ptr->next = pi->next;
681 break;
682 }
683
684 /* Step two: close any open file descriptors */
685 close_procinfo_files (pi);
686
687 /* Step three: free the memory. */
688 free (pi);
689 }
690
691 static void
692 destroy_procinfo (pi)
693 procinfo *pi;
694 {
695 procinfo *tmp;
696
697 if (pi->tid != 0) /* destroy a thread procinfo */
698 {
699 tmp = find_procinfo (pi->pid, 0); /* find the parent process */
700 destroy_one_procinfo (&tmp->thread_list, pi);
701 }
702 else /* destroy a process procinfo and all its threads */
703 {
704 /* First destroy the children, if any; */
705 while (pi->thread_list != NULL)
706 destroy_one_procinfo (&pi->thread_list, pi->thread_list);
707 /* Then destroy the parent. Genocide!!! */
708 destroy_one_procinfo (&procinfo_list, pi);
709 }
710 }
711
712 enum { NOKILL, KILL };
713
714 /*
715 * Function: dead_procinfo
716 *
717 * To be called on a non_recoverable error for a procinfo.
718 * Prints error messages, optionally sends a SIGKILL to the process,
719 * then destroys the data structure.
720 */
721
722 static void
723 dead_procinfo (pi, msg, kill_p)
724 procinfo *pi;
725 char *msg;
726 int kill_p;
727 {
728 char procfile[80];
729
730 if (pi->pathname)
731 {
732 print_sys_errmsg (pi->pathname, errno);
733 }
734 else
735 {
736 sprintf (procfile, "process %d", pi->pid);
737 print_sys_errmsg (procfile, errno);
738 }
739 if (kill_p == KILL)
740 kill (pi->pid, SIGKILL);
741
742 destroy_procinfo (pi);
743 error (msg);
744 }
745
746 /* =================== END, STRUCT PROCINFO "MODULE" =================== */
747
748 /* =================== /proc "MODULE" =================== */
749
750 /*
751 * This "module" is the interface layer between the /proc system API
752 * and the gdb target vector functions. This layer consists of
753 * access functions that encapsulate each of the basic operations
754 * that we need to use from the /proc API.
755 *
756 * The main motivation for this layer is to hide the fact that
757 * there are two very different implementations of the /proc API.
758 * Rather than have a bunch of #ifdefs all thru the gdb target vector
759 * functions, we do our best to hide them all in here.
760 */
761
762 int proc_get_status PARAMS ((procinfo *pi));
763 long proc_flags PARAMS ((procinfo *pi));
764 int proc_why PARAMS ((procinfo *pi));
765 int proc_what PARAMS ((procinfo *pi));
766 int proc_set_run_on_last_close PARAMS ((procinfo *pi));
767 int proc_unset_run_on_last_close PARAMS ((procinfo *pi));
768 int proc_set_inherit_on_fork PARAMS ((procinfo *pi));
769 int proc_unset_inherit_on_fork PARAMS ((procinfo *pi));
770 int proc_set_async PARAMS ((procinfo *pi));
771 int proc_unset_async PARAMS ((procinfo *pi));
772 int proc_stop_process PARAMS ((procinfo *pi));
773 int proc_trace_signal PARAMS ((procinfo *pi, int signo));
774 int proc_ignore_signal PARAMS ((procinfo *pi, int signo));
775 int proc_clear_current_fault PARAMS ((procinfo *pi));
776 int proc_set_current_signal PARAMS ((procinfo *pi, int signo));
777 int proc_clear_current_signal PARAMS ((procinfo *pi));
778 int proc_set_gregs PARAMS ((procinfo *pi));
779 int proc_set_fpregs PARAMS ((procinfo *pi));
780 int proc_wait_for_stop PARAMS ((procinfo *pi));
781 int proc_run_process PARAMS ((procinfo *pi, int step, int signo));
782 int proc_kill PARAMS ((procinfo *pi, int signo));
783 int proc_parent_pid PARAMS ((procinfo *pi));
784 int proc_get_nthreads PARAMS ((procinfo *pi));
785 int proc_get_current_thread PARAMS ((procinfo *pi));
786 int proc_set_held_signals PARAMS ((procinfo *pi, sigset_t *sighold));
787 int proc_set_traced_sysexit PARAMS ((procinfo *pi, sysset_t *sysset));
788 int proc_set_traced_sysentry PARAMS ((procinfo *pi, sysset_t *sysset));
789 int proc_set_traced_faults PARAMS ((procinfo *pi, fltset_t *fltset));
790 int proc_set_traced_signals PARAMS ((procinfo *pi, sigset_t *sigset));
791
792 int proc_update_threads PARAMS ((procinfo *pi));
793 int proc_iterate_over_threads PARAMS ((procinfo *pi,
794 int (*func) PARAMS ((procinfo *,
795 procinfo *,
796 void *)),
797 void *ptr));
798
799 gdb_gregset_t *proc_get_gregs PARAMS ((procinfo *pi));
800 gdb_fpregset_t *proc_get_fpregs PARAMS ((procinfo *pi));
801 sysset_t *proc_get_traced_sysexit PARAMS ((procinfo *pi, sysset_t *save));
802 sysset_t *proc_get_traced_sysentry PARAMS ((procinfo *pi, sysset_t *save));
803 fltset_t *proc_get_traced_faults PARAMS ((procinfo *pi, fltset_t *save));
804 sigset_t *proc_get_traced_signals PARAMS ((procinfo *pi, sigset_t *save));
805 sigset_t *proc_get_held_signals PARAMS ((procinfo *pi, sigset_t *save));
806 sigset_t *proc_get_pending_signals PARAMS ((procinfo *pi, sigset_t *save));
807 struct sigaction *proc_get_signal_actions PARAMS ((procinfo *pi,
808 struct sigaction *save));
809
810 void proc_warn PARAMS ((procinfo *pi, char *func, int line));
811 void proc_error PARAMS ((procinfo *pi, char *func, int line));
812
813 void
814 proc_warn (pi, func, line)
815 procinfo *pi;
816 char *func;
817 int line;
818 {
819 sprintf (errmsg, "procfs: %s line %d, %s", func, line, pi->pathname);
820 print_sys_errmsg (errmsg, errno);
821 }
822
823 void
824 proc_error (pi, func, line)
825 procinfo *pi;
826 char *func;
827 int line;
828 {
829 sprintf (errmsg, "procfs: %s line %d, %s", func, line, pi->pathname);
830 perror_with_name (errmsg);
831 }
832
833 /*
834 * Function: proc_get_status
835 *
836 * Updates the status struct in the procinfo.
837 * There is a 'valid' flag, to let other functions know when
838 * this function needs to be called (so the status is only
839 * read when it is needed). The status file descriptor is
840 * also only opened when it is needed.
841 *
842 * Return: non-zero for success, zero for failure.
843 */
844
845 int
846 proc_get_status (pi)
847 procinfo *pi;
848 {
849 /* Status file descriptor is opened "lazily" */
850 if (pi->status_fd == 0 &&
851 open_procinfo_files (pi, FD_STATUS) == 0)
852 {
853 pi->status_valid = 0;
854 return 0;
855 }
856
857 #ifdef NEW_PROC_API
858 if (lseek (pi->status_fd, 0, SEEK_SET) < 0)
859 pi->status_valid = 0; /* fail */
860 else
861 {
862 /* Sigh... I have to read a different data structure,
863 depending on whether this is a main process or an LWP. */
864 if (pi->tid)
865 pi->status_valid = (read (pi->status_fd,
866 (char *) &pi->prstatus.pr_lwp,
867 sizeof (lwpstatus_t))
868 == sizeof (lwpstatus_t));
869 else
870 {
871 pi->status_valid = (read (pi->status_fd,
872 (char *) &pi->prstatus,
873 sizeof (gdb_prstatus_t))
874 == sizeof (gdb_prstatus_t));
875 #if 0 /*def UNIXWARE*/
876 if (pi->status_valid &&
877 (pi->prstatus.pr_lwp.pr_flags & PR_ISTOP) &&
878 pi->prstatus.pr_lwp.pr_why == PR_REQUESTED)
879 /* Unixware peculiarity -- read the damn thing again! */
880 pi->status_valid = (read (pi->status_fd,
881 (char *) &pi->prstatus,
882 sizeof (gdb_prstatus_t))
883 == sizeof (gdb_prstatus_t));
884 #endif /* UNIXWARE */
885 }
886 }
887 #else /* ioctl method */
888 #ifdef PIOCTSTATUS /* osf */
889 if (pi->tid == 0) /* main process */
890 {
891 /* Just read the danged status. Now isn't that simple? */
892 pi->status_valid =
893 (ioctl (pi->status_fd, PIOCSTATUS, &pi->prstatus) >= 0);
894 }
895 else
896 {
897 int win;
898 struct {
899 long pr_count;
900 tid_t pr_error_thread;
901 struct prstatus status;
902 } thread_status;
903
904 thread_status.pr_count = 1;
905 thread_status.status.pr_tid = pi->tid;
906 win = (ioctl (pi->status_fd, PIOCTSTATUS, &thread_status) >= 0);
907 if (win)
908 {
909 memcpy (&pi->prstatus, &thread_status.status,
910 sizeof (pi->prstatus));
911 pi->status_valid = 1;
912 }
913 }
914 #else
915 /* Just read the danged status. Now isn't that simple? */
916 pi->status_valid = (ioctl (pi->status_fd, PIOCSTATUS, &pi->prstatus) >= 0);
917 #endif
918 #endif
919
920 if (pi->status_valid)
921 {
922 PROC_PRETTYFPRINT_STATUS (proc_flags (pi),
923 proc_why (pi),
924 proc_what (pi),
925 proc_get_current_thread (pi));
926 }
927
928 /* The status struct includes general regs, so mark them valid too */
929 pi->gregs_valid = pi->status_valid;
930 #ifdef NEW_PROC_API
931 /* In the read/write multiple-fd model,
932 the status struct includes the fp regs too, so mark them valid too */
933 pi->fpregs_valid = pi->status_valid;
934 #endif
935 return pi->status_valid; /* True if success, false if failure. */
936 }
937
938 /*
939 * Function: proc_flags
940 *
941 * returns the process flags (pr_flags field).
942 */
943
944 long
945 proc_flags (pi)
946 procinfo *pi;
947 {
948 if (!pi->status_valid)
949 if (!proc_get_status (pi))
950 return 0; /* FIXME: not a good failure value (but what is?) */
951
952 #ifdef NEW_PROC_API
953 # ifdef UNIXWARE
954 /* UnixWare 7.1 puts process status flags, e.g. PR_ASYNC, in
955 pstatus_t and LWP status flags, e.g. PR_STOPPED, in lwpstatus_t.
956 The two sets of flags don't overlap. */
957 return pi->prstatus.pr_flags | pi->prstatus.pr_lwp.pr_flags;
958 # else
959 return pi->prstatus.pr_lwp.pr_flags;
960 # endif
961 #else
962 return pi->prstatus.pr_flags;
963 #endif
964 }
965
966 /*
967 * Function: proc_why
968 *
969 * returns the pr_why field (why the process stopped).
970 */
971
972 int
973 proc_why (pi)
974 procinfo *pi;
975 {
976 if (!pi->status_valid)
977 if (!proc_get_status (pi))
978 return 0; /* FIXME: not a good failure value (but what is?) */
979
980 #ifdef NEW_PROC_API
981 return pi->prstatus.pr_lwp.pr_why;
982 #else
983 return pi->prstatus.pr_why;
984 #endif
985 }
986
987 /*
988 * Function: proc_what
989 *
990 * returns the pr_what field (details of why the process stopped).
991 */
992
993 int
994 proc_what (pi)
995 procinfo *pi;
996 {
997 if (!pi->status_valid)
998 if (!proc_get_status (pi))
999 return 0; /* FIXME: not a good failure value (but what is?) */
1000
1001 #ifdef NEW_PROC_API
1002 return pi->prstatus.pr_lwp.pr_what;
1003 #else
1004 return pi->prstatus.pr_what;
1005 #endif
1006 }
1007
1008 #ifndef PIOCSSPCACT /* The following is not supported on OSF. */
1009 /*
1010 * Function: proc_nsysarg
1011 *
1012 * returns the pr_nsysarg field (number of args to the current syscall).
1013 */
1014
1015 int
1016 proc_nsysarg (pi)
1017 procinfo *pi;
1018 {
1019 if (!pi->status_valid)
1020 if (!proc_get_status (pi))
1021 return 0;
1022
1023 #ifdef NEW_PROC_API
1024 return pi->prstatus.pr_lwp.pr_nsysarg;
1025 #else
1026 return pi->prstatus.pr_nsysarg;
1027 #endif
1028 }
1029
1030 /*
1031 * Function: proc_sysargs
1032 *
1033 * returns the pr_sysarg field (pointer to the arguments of current syscall).
1034 */
1035
1036 long *
1037 proc_sysargs (pi)
1038 procinfo *pi;
1039 {
1040 if (!pi->status_valid)
1041 if (!proc_get_status (pi))
1042 return NULL;
1043
1044 #ifdef NEW_PROC_API
1045 return (long *) &pi->prstatus.pr_lwp.pr_sysarg;
1046 #else
1047 return (long *) &pi->prstatus.pr_sysarg;
1048 #endif
1049 }
1050
1051 /*
1052 * Function: proc_syscall
1053 *
1054 * returns the pr_syscall field (id of current syscall if we are in one).
1055 */
1056
1057 int
1058 proc_syscall (pi)
1059 procinfo *pi;
1060 {
1061 if (!pi->status_valid)
1062 if (!proc_get_status (pi))
1063 return 0;
1064
1065 #ifdef NEW_PROC_API
1066 return pi->prstatus.pr_lwp.pr_syscall;
1067 #else
1068 return pi->prstatus.pr_syscall;
1069 #endif
1070 }
1071 #endif /* PIOCSSPCACT */
1072
1073 /*
1074 * Function: proc_cursig:
1075 *
1076 * returns the pr_cursig field (current signal).
1077 */
1078
1079 long
1080 proc_cursig (struct procinfo *pi)
1081 {
1082 if (!pi->status_valid)
1083 if (!proc_get_status (pi))
1084 return 0; /* FIXME: not a good failure value (but what is?) */
1085
1086 #ifdef NEW_PROC_API
1087 return pi->prstatus.pr_lwp.pr_cursig;
1088 #else
1089 return pi->prstatus.pr_cursig;
1090 #endif
1091 }
1092
1093 /*
1094 * Function: proc_modify_flag
1095 *
1096 * === I appologize for the messiness of this function.
1097 * === This is an area where the different versions of
1098 * === /proc are more inconsistent than usual. MVS
1099 *
1100 * Set or reset any of the following process flags:
1101 * PR_FORK -- forked child will inherit trace flags
1102 * PR_RLC -- traced process runs when last /proc file closed.
1103 * PR_KLC -- traced process is killed when last /proc file closed.
1104 * PR_ASYNC -- LWP's get to run/stop independently.
1105 *
1106 * There are three methods for doing this function:
1107 * 1) Newest: read/write [PCSET/PCRESET/PCUNSET]
1108 * [Sol6, Sol7, UW]
1109 * 2) Middle: PIOCSET/PIOCRESET
1110 * [Irix, Sol5]
1111 * 3) Oldest: PIOCSFORK/PIOCRFORK/PIOCSRLC/PIOCRRLC
1112 * [OSF, Sol5]
1113 *
1114 * Note: Irix does not define PR_ASYNC.
1115 * Note: OSF does not define PR_KLC.
1116 * Note: OSF is the only one that can ONLY use the oldest method.
1117 *
1118 * Arguments:
1119 * pi -- the procinfo
1120 * flag -- one of PR_FORK, PR_RLC, or PR_ASYNC
1121 * mode -- 1 for set, 0 for reset.
1122 *
1123 * Returns non-zero for success, zero for failure.
1124 */
1125
1126 enum { FLAG_RESET, FLAG_SET };
1127
1128 static int
1129 proc_modify_flag (pi, flag, mode)
1130 procinfo *pi;
1131 long flag;
1132 long mode;
1133 {
1134 long win = 0; /* default to fail */
1135
1136 /*
1137 * These operations affect the process as a whole, and applying
1138 * them to an individual LWP has the same meaning as applying them
1139 * to the main process. Therefore, if we're ever called with a
1140 * pointer to an LWP's procinfo, let's substitute the process's
1141 * procinfo and avoid opening the LWP's file descriptor
1142 * unnecessarily.
1143 */
1144
1145 if (pi->pid != 0)
1146 pi = find_procinfo_or_die (pi->pid, 0);
1147
1148 #ifdef NEW_PROC_API /* Newest method: UnixWare and newer Solarii */
1149 /* First normalize the PCUNSET/PCRESET command opcode
1150 (which for no obvious reason has a different definition
1151 from one operating system to the next...) */
1152 #ifdef PCUNSET
1153 #define GDBRESET PCUNSET
1154 #endif
1155 #ifdef PCRESET
1156 #define GDBRESET PCRESET
1157 #endif
1158 {
1159 long arg[2];
1160
1161 if (mode == FLAG_SET) /* Set the flag (RLC, FORK, or ASYNC) */
1162 arg[0] = PCSET;
1163 else /* Reset the flag */
1164 arg[0] = GDBRESET;
1165
1166 arg[1] = flag;
1167 win = (write (pi->ctl_fd, (void *) &arg, sizeof (arg)) == sizeof (arg));
1168 }
1169 #else
1170 #ifdef PIOCSET /* Irix/Sol5 method */
1171 if (mode == FLAG_SET) /* Set the flag (hopefully RLC, FORK, or ASYNC) */
1172 {
1173 win = (ioctl (pi->ctl_fd, PIOCSET, &flag) >= 0);
1174 }
1175 else /* Reset the flag */
1176 {
1177 win = (ioctl (pi->ctl_fd, PIOCRESET, &flag) >= 0);
1178 }
1179
1180 #else
1181 #ifdef PIOCSRLC /* Oldest method: OSF */
1182 switch (flag) {
1183 case PR_RLC:
1184 if (mode == FLAG_SET) /* Set run-on-last-close */
1185 {
1186 win = (ioctl (pi->ctl_fd, PIOCSRLC, NULL) >= 0);
1187 }
1188 else /* Clear run-on-last-close */
1189 {
1190 win = (ioctl (pi->ctl_fd, PIOCRRLC, NULL) >= 0);
1191 }
1192 break;
1193 case PR_FORK:
1194 if (mode == FLAG_SET) /* Set inherit-on-fork */
1195 {
1196 win = (ioctl (pi->ctl_fd, PIOCSFORK, NULL) >= 0);
1197 }
1198 else /* Clear inherit-on-fork */
1199 {
1200 win = (ioctl (pi->ctl_fd, PIOCRFORK, NULL) >= 0);
1201 }
1202 break;
1203 default:
1204 win = 0; /* fail -- unknown flag (can't do PR_ASYNC) */
1205 break;
1206 }
1207 #endif
1208 #endif
1209 #endif
1210 #undef GDBRESET
1211 /* The above operation renders the procinfo's cached pstatus obsolete. */
1212 pi->status_valid = 0;
1213
1214 if (!win)
1215 warning ("procfs: modify_flag failed to turn %s %s",
1216 flag == PR_FORK ? "PR_FORK" :
1217 flag == PR_RLC ? "PR_RLC" :
1218 #ifdef PR_ASYNC
1219 flag == PR_ASYNC ? "PR_ASYNC" :
1220 #endif
1221 #ifdef PR_KLC
1222 flag == PR_KLC ? "PR_KLC" :
1223 #endif
1224 "<unknown flag>",
1225 mode == FLAG_RESET ? "off" : "on");
1226
1227 return win;
1228 }
1229
1230 /*
1231 * Function: proc_set_run_on_last_close
1232 *
1233 * Set the run_on_last_close flag.
1234 * Process with all threads will become runnable
1235 * when debugger closes all /proc fds.
1236 *
1237 * Returns non-zero for success, zero for failure.
1238 */
1239
1240 int
1241 proc_set_run_on_last_close (pi)
1242 procinfo *pi;
1243 {
1244 return proc_modify_flag (pi, PR_RLC, FLAG_SET);
1245 }
1246
1247 /*
1248 * Function: proc_unset_run_on_last_close
1249 *
1250 * Reset the run_on_last_close flag.
1251 * Process will NOT become runnable
1252 * when debugger closes its file handles.
1253 *
1254 * Returns non-zero for success, zero for failure.
1255 */
1256
1257 int
1258 proc_unset_run_on_last_close (pi)
1259 procinfo *pi;
1260 {
1261 return proc_modify_flag (pi, PR_RLC, FLAG_RESET);
1262 }
1263
1264 #ifdef PR_KLC
1265 /*
1266 * Function: proc_set_kill_on_last_close
1267 *
1268 * Set the kill_on_last_close flag.
1269 * Process with all threads will be killed when debugger
1270 * closes all /proc fds (or debugger exits or dies).
1271 *
1272 * Returns non-zero for success, zero for failure.
1273 */
1274
1275 int
1276 proc_set_kill_on_last_close (pi)
1277 procinfo *pi;
1278 {
1279 return proc_modify_flag (pi, PR_KLC, FLAG_SET);
1280 }
1281
1282 /*
1283 * Function: proc_unset_kill_on_last_close
1284 *
1285 * Reset the kill_on_last_close flag.
1286 * Process will NOT be killed when debugger
1287 * closes its file handles (or exits or dies).
1288 *
1289 * Returns non-zero for success, zero for failure.
1290 */
1291
1292 int
1293 proc_unset_kill_on_last_close (pi)
1294 procinfo *pi;
1295 {
1296 return proc_modify_flag (pi, PR_KLC, FLAG_RESET);
1297 }
1298 #endif /* PR_KLC */
1299
1300 /*
1301 * Function: proc_set_inherit_on_fork
1302 *
1303 * Set inherit_on_fork flag.
1304 * If the process forks a child while we are registered for events
1305 * in the parent, then we will also recieve events from the child.
1306 *
1307 * Returns non-zero for success, zero for failure.
1308 */
1309
1310 int
1311 proc_set_inherit_on_fork (pi)
1312 procinfo *pi;
1313 {
1314 return proc_modify_flag (pi, PR_FORK, FLAG_SET);
1315 }
1316
1317 /*
1318 * Function: proc_unset_inherit_on_fork
1319 *
1320 * Reset inherit_on_fork flag.
1321 * If the process forks a child while we are registered for events
1322 * in the parent, then we will NOT recieve events from the child.
1323 *
1324 * Returns non-zero for success, zero for failure.
1325 */
1326
1327 int
1328 proc_unset_inherit_on_fork (pi)
1329 procinfo *pi;
1330 {
1331 return proc_modify_flag (pi, PR_FORK, FLAG_RESET);
1332 }
1333
1334 #ifdef PR_ASYNC
1335 /*
1336 * Function: proc_set_async
1337 *
1338 * Set PR_ASYNC flag.
1339 * If one LWP stops because of a debug event (signal etc.),
1340 * the remaining LWPs will continue to run.
1341 *
1342 * Returns non-zero for success, zero for failure.
1343 */
1344
1345 int
1346 proc_set_async (pi)
1347 procinfo *pi;
1348 {
1349 return proc_modify_flag (pi, PR_ASYNC, FLAG_SET);
1350 }
1351
1352 /*
1353 * Function: proc_unset_async
1354 *
1355 * Reset PR_ASYNC flag.
1356 * If one LWP stops because of a debug event (signal etc.),
1357 * then all other LWPs will stop as well.
1358 *
1359 * Returns non-zero for success, zero for failure.
1360 */
1361
1362 int
1363 proc_unset_async (pi)
1364 procinfo *pi;
1365 {
1366 return proc_modify_flag (pi, PR_ASYNC, FLAG_RESET);
1367 }
1368 #endif /* PR_ASYNC */
1369
1370 /*
1371 * Function: proc_stop_process
1372 *
1373 * Request the process/LWP to stop. Does not wait.
1374 * Returns non-zero for success, zero for failure.
1375 */
1376
1377 int
1378 proc_stop_process (pi)
1379 procinfo *pi;
1380 {
1381 int win;
1382
1383 /*
1384 * We might conceivably apply this operation to an LWP, and
1385 * the LWP's ctl file descriptor might not be open.
1386 */
1387
1388 if (pi->ctl_fd == 0 &&
1389 open_procinfo_files (pi, FD_CTL) == 0)
1390 return 0;
1391 else
1392 {
1393 #ifdef NEW_PROC_API
1394 int cmd = PCSTOP;
1395 win = (write (pi->ctl_fd, (char *) &cmd, sizeof (cmd)) == sizeof (cmd));
1396 #else /* ioctl method */
1397 win = (ioctl (pi->ctl_fd, PIOCSTOP, &pi->prstatus) >= 0);
1398 /* Note: the call also reads the prstatus. */
1399 if (win)
1400 {
1401 pi->status_valid = 1;
1402 PROC_PRETTYFPRINT_STATUS (proc_flags (pi),
1403 proc_why (pi),
1404 proc_what (pi),
1405 proc_get_current_thread (pi));
1406 }
1407 #endif
1408 }
1409
1410 return win;
1411 }
1412
1413 /*
1414 * Function: proc_wait_for_stop
1415 *
1416 * Wait for the process or LWP to stop (block until it does).
1417 * Returns non-zero for success, zero for failure.
1418 */
1419
1420 int
1421 proc_wait_for_stop (pi)
1422 procinfo *pi;
1423 {
1424 int win;
1425
1426 /*
1427 * We should never have to apply this operation to any procinfo
1428 * except the one for the main process. If that ever changes
1429 * for any reason, then take out the following clause and
1430 * replace it with one that makes sure the ctl_fd is open.
1431 */
1432
1433 if (pi->tid != 0)
1434 pi = find_procinfo_or_die (pi->pid, 0);
1435
1436 #ifdef NEW_PROC_API
1437 {
1438 int cmd = PCWSTOP;
1439 win = (write (pi->ctl_fd, (char *) &cmd, sizeof (cmd)) == sizeof (cmd));
1440 /* We been runnin' and we stopped -- need to update status. */
1441 pi->status_valid = 0;
1442 }
1443 #else /* ioctl method */
1444 win = (ioctl (pi->ctl_fd, PIOCWSTOP, &pi->prstatus) >= 0);
1445 /* Above call also refreshes the prstatus. */
1446 if (win)
1447 {
1448 pi->status_valid = 1;
1449 PROC_PRETTYFPRINT_STATUS (proc_flags (pi),
1450 proc_why (pi),
1451 proc_what (pi),
1452 proc_get_current_thread (pi));
1453 }
1454 #endif
1455
1456 return win;
1457 }
1458
1459 /*
1460 * Function: proc_run_process
1461 *
1462 * Make the process or LWP runnable.
1463 * Options (not all are implemented):
1464 * - single-step
1465 * - clear current fault
1466 * - clear current signal
1467 * - abort the current system call
1468 * - stop as soon as finished with system call
1469 * - (ioctl): set traced signal set
1470 * - (ioctl): set held signal set
1471 * - (ioctl): set traced fault set
1472 * - (ioctl): set start pc (vaddr)
1473 * Always clear the current fault.
1474 * Clear the current signal if 'signo' is zero.
1475 *
1476 * Arguments:
1477 * pi the process or LWP to operate on.
1478 * step if true, set the process or LWP to trap after one instr.
1479 * signo if zero, clear the current signal if any.
1480 * if non-zero, set the current signal to this one.
1481 *
1482 * Returns non-zero for success, zero for failure.
1483 */
1484
1485 int
1486 proc_run_process (pi, step, signo)
1487 procinfo *pi;
1488 int step;
1489 int signo;
1490 {
1491 int win;
1492 int runflags;
1493
1494 /*
1495 * We will probably have to apply this operation to individual threads,
1496 * so make sure the control file descriptor is open.
1497 */
1498
1499 if (pi->ctl_fd == 0 &&
1500 open_procinfo_files (pi, FD_CTL) == 0)
1501 {
1502 return 0;
1503 }
1504
1505 runflags = PRCFAULT; /* always clear current fault */
1506 if (step)
1507 runflags |= PRSTEP;
1508 if (signo == 0)
1509 runflags |= PRCSIG;
1510 else if (signo != -1) /* -1 means do nothing W.R.T. signals */
1511 proc_set_current_signal (pi, signo);
1512
1513 #ifdef NEW_PROC_API
1514 {
1515 int cmd[2];
1516
1517 cmd[0] = PCRUN;
1518 cmd[1] = runflags;
1519 win = (write (pi->ctl_fd, (char *) &cmd, sizeof (cmd)) == sizeof (cmd));
1520 }
1521 #else /* ioctl method */
1522 {
1523 prrun_t prrun;
1524
1525 memset (&prrun, 0, sizeof (prrun));
1526 prrun.pr_flags = runflags;
1527 win = (ioctl (pi->ctl_fd, PIOCRUN, &prrun) >= 0);
1528 }
1529 #endif
1530
1531 return win;
1532 }
1533
1534 /*
1535 * Function: proc_set_traced_signals
1536 *
1537 * Register to trace signals in the process or LWP.
1538 * Returns non-zero for success, zero for failure.
1539 */
1540
1541 int
1542 proc_set_traced_signals (pi, sigset)
1543 procinfo *pi;
1544 sigset_t *sigset;
1545 {
1546 int win;
1547
1548 /*
1549 * We should never have to apply this operation to any procinfo
1550 * except the one for the main process. If that ever changes
1551 * for any reason, then take out the following clause and
1552 * replace it with one that makes sure the ctl_fd is open.
1553 */
1554
1555 if (pi->tid != 0)
1556 pi = find_procinfo_or_die (pi->pid, 0);
1557
1558 #ifdef NEW_PROC_API
1559 {
1560 struct {
1561 int cmd;
1562 /* Use char array to avoid alignment issues. */
1563 char sigset[sizeof (sigset_t)];
1564 } arg;
1565
1566 arg.cmd = PCSTRACE;
1567 memcpy (&arg.sigset, sigset, sizeof (sigset_t));
1568
1569 win = (write (pi->ctl_fd, (char *) &arg, sizeof (arg)) == sizeof (arg));
1570 }
1571 #else /* ioctl method */
1572 win = (ioctl (pi->ctl_fd, PIOCSTRACE, sigset) >= 0);
1573 #endif
1574 /* The above operation renders the procinfo's cached pstatus obsolete. */
1575 pi->status_valid = 0;
1576
1577 if (!win)
1578 warning ("procfs: set_traced_signals failed");
1579 return win;
1580 }
1581
1582 /*
1583 * Function: proc_set_traced_faults
1584 *
1585 * Register to trace hardware faults in the process or LWP.
1586 * Returns non-zero for success, zero for failure.
1587 */
1588
1589 int
1590 proc_set_traced_faults (pi, fltset)
1591 procinfo *pi;
1592 fltset_t *fltset;
1593 {
1594 int win;
1595
1596 /*
1597 * We should never have to apply this operation to any procinfo
1598 * except the one for the main process. If that ever changes
1599 * for any reason, then take out the following clause and
1600 * replace it with one that makes sure the ctl_fd is open.
1601 */
1602
1603 if (pi->tid != 0)
1604 pi = find_procinfo_or_die (pi->pid, 0);
1605
1606 #ifdef NEW_PROC_API
1607 {
1608 struct {
1609 int cmd;
1610 /* Use char array to avoid alignment issues. */
1611 char fltset[sizeof (fltset_t)];
1612 } arg;
1613
1614 arg.cmd = PCSFAULT;
1615 memcpy (&arg.fltset, fltset, sizeof (fltset_t));
1616
1617 win = (write (pi->ctl_fd, (char *) &arg, sizeof (arg)) == sizeof (arg));
1618 }
1619 #else /* ioctl method */
1620 win = (ioctl (pi->ctl_fd, PIOCSFAULT, fltset) >= 0);
1621 #endif
1622 /* The above operation renders the procinfo's cached pstatus obsolete. */
1623 pi->status_valid = 0;
1624
1625 return win;
1626 }
1627
1628 /*
1629 * Function: proc_set_traced_sysentry
1630 *
1631 * Register to trace entry to system calls in the process or LWP.
1632 * Returns non-zero for success, zero for failure.
1633 */
1634
1635 int
1636 proc_set_traced_sysentry (pi, sysset)
1637 procinfo *pi;
1638 sysset_t *sysset;
1639 {
1640 int win;
1641
1642 /*
1643 * We should never have to apply this operation to any procinfo
1644 * except the one for the main process. If that ever changes
1645 * for any reason, then take out the following clause and
1646 * replace it with one that makes sure the ctl_fd is open.
1647 */
1648
1649 if (pi->tid != 0)
1650 pi = find_procinfo_or_die (pi->pid, 0);
1651
1652 #ifdef NEW_PROC_API
1653 {
1654 struct {
1655 int cmd;
1656 /* Use char array to avoid alignment issues. */
1657 char sysset[sizeof (sysset_t)];
1658 } arg;
1659
1660 arg.cmd = PCSENTRY;
1661 memcpy (&arg.sysset, sysset, sizeof (sysset_t));
1662
1663 win = (write (pi->ctl_fd, (char *) &arg, sizeof (arg)) == sizeof (arg));
1664 }
1665 #else /* ioctl method */
1666 win = (ioctl (pi->ctl_fd, PIOCSENTRY, sysset) >= 0);
1667 #endif
1668 /* The above operation renders the procinfo's cached pstatus obsolete. */
1669 pi->status_valid = 0;
1670
1671 return win;
1672 }
1673
1674 /*
1675 * Function: proc_set_traced_sysexit
1676 *
1677 * Register to trace exit from system calls in the process or LWP.
1678 * Returns non-zero for success, zero for failure.
1679 */
1680
1681 int
1682 proc_set_traced_sysexit (pi, sysset)
1683 procinfo *pi;
1684 sysset_t *sysset;
1685 {
1686 int win;
1687
1688 /*
1689 * We should never have to apply this operation to any procinfo
1690 * except the one for the main process. If that ever changes
1691 * for any reason, then take out the following clause and
1692 * replace it with one that makes sure the ctl_fd is open.
1693 */
1694
1695 if (pi->tid != 0)
1696 pi = find_procinfo_or_die (pi->pid, 0);
1697
1698 #ifdef NEW_PROC_API
1699 {
1700 struct {
1701 int cmd;
1702 /* Use char array to avoid alignment issues. */
1703 char sysset[sizeof (sysset_t)];
1704 } arg;
1705
1706 arg.cmd = PCSEXIT;
1707 memcpy (&arg.sysset, sysset, sizeof (sysset_t));
1708
1709 win = (write (pi->ctl_fd, (char *) &arg, sizeof (arg)) == sizeof (arg));
1710 }
1711 #else /* ioctl method */
1712 win = (ioctl (pi->ctl_fd, PIOCSEXIT, sysset) >= 0);
1713 #endif
1714 /* The above operation renders the procinfo's cached pstatus obsolete. */
1715 pi->status_valid = 0;
1716
1717 return win;
1718 }
1719
1720 /*
1721 * Function: proc_set_held_signals
1722 *
1723 * Specify the set of blocked / held signals in the process or LWP.
1724 * Returns non-zero for success, zero for failure.
1725 */
1726
1727 int
1728 proc_set_held_signals (pi, sighold)
1729 procinfo *pi;
1730 sigset_t *sighold;
1731 {
1732 int win;
1733
1734 /*
1735 * We should never have to apply this operation to any procinfo
1736 * except the one for the main process. If that ever changes
1737 * for any reason, then take out the following clause and
1738 * replace it with one that makes sure the ctl_fd is open.
1739 */
1740
1741 if (pi->tid != 0)
1742 pi = find_procinfo_or_die (pi->pid, 0);
1743
1744 #ifdef NEW_PROC_API
1745 {
1746 struct {
1747 int cmd;
1748 /* Use char array to avoid alignment issues. */
1749 char hold[sizeof (sigset_t)];
1750 } arg;
1751
1752 arg.cmd = PCSHOLD;
1753 memcpy (&arg.hold, sighold, sizeof (sigset_t));
1754 win = (write (pi->ctl_fd, (void *) &arg, sizeof (arg)) == sizeof (arg));
1755 }
1756 #else
1757 win = (ioctl (pi->ctl_fd, PIOCSHOLD, sighold) >= 0);
1758 #endif
1759 /* The above operation renders the procinfo's cached pstatus obsolete. */
1760 pi->status_valid = 0;
1761
1762 return win;
1763 }
1764
1765 /*
1766 * Function: proc_get_pending_signals
1767 *
1768 * returns the set of signals that are pending in the process or LWP.
1769 * Will also copy the sigset if 'save' is non-zero.
1770 */
1771
1772 sigset_t *
1773 proc_get_pending_signals (pi, save)
1774 procinfo *pi;
1775 sigset_t *save;
1776 {
1777 sigset_t *ret = NULL;
1778
1779 /*
1780 * We should never have to apply this operation to any procinfo
1781 * except the one for the main process. If that ever changes
1782 * for any reason, then take out the following clause and
1783 * replace it with one that makes sure the ctl_fd is open.
1784 */
1785
1786 if (pi->tid != 0)
1787 pi = find_procinfo_or_die (pi->pid, 0);
1788
1789 if (!pi->status_valid)
1790 if (!proc_get_status (pi))
1791 return NULL;
1792
1793 #ifdef NEW_PROC_API
1794 ret = &pi->prstatus.pr_lwp.pr_lwppend;
1795 #else
1796 ret = &pi->prstatus.pr_sigpend;
1797 #endif
1798 if (save && ret)
1799 memcpy (save, ret, sizeof (sigset_t));
1800
1801 return ret;
1802 }
1803
1804 /*
1805 * Function: proc_get_signal_actions
1806 *
1807 * returns the set of signal actions.
1808 * Will also copy the sigactionset if 'save' is non-zero.
1809 */
1810
1811 struct sigaction *
1812 proc_get_signal_actions (pi, save)
1813 procinfo *pi;
1814 struct sigaction *save;
1815 {
1816 struct sigaction *ret = NULL;
1817
1818 /*
1819 * We should never have to apply this operation to any procinfo
1820 * except the one for the main process. If that ever changes
1821 * for any reason, then take out the following clause and
1822 * replace it with one that makes sure the ctl_fd is open.
1823 */
1824
1825 if (pi->tid != 0)
1826 pi = find_procinfo_or_die (pi->pid, 0);
1827
1828 if (!pi->status_valid)
1829 if (!proc_get_status (pi))
1830 return NULL;
1831
1832 #ifdef NEW_PROC_API
1833 ret = &pi->prstatus.pr_lwp.pr_action;
1834 #else
1835 ret = &pi->prstatus.pr_action;
1836 #endif
1837 if (save && ret)
1838 memcpy (save, ret, sizeof (struct sigaction));
1839
1840 return ret;
1841 }
1842
1843 /*
1844 * Function: proc_get_held_signals
1845 *
1846 * returns the set of signals that are held / blocked.
1847 * Will also copy the sigset if 'save' is non-zero.
1848 */
1849
1850 sigset_t *
1851 proc_get_held_signals (pi, save)
1852 procinfo *pi;
1853 sigset_t *save;
1854 {
1855 sigset_t *ret = NULL;
1856
1857 /*
1858 * We should never have to apply this operation to any procinfo
1859 * except the one for the main process. If that ever changes
1860 * for any reason, then take out the following clause and
1861 * replace it with one that makes sure the ctl_fd is open.
1862 */
1863
1864 if (pi->tid != 0)
1865 pi = find_procinfo_or_die (pi->pid, 0);
1866
1867 #ifdef NEW_PROC_API
1868 if (!pi->status_valid)
1869 if (!proc_get_status (pi))
1870 return NULL;
1871
1872 #ifdef UNIXWARE
1873 ret = &pi->prstatus.pr_lwp.pr_context.uc_sigmask;
1874 #else
1875 ret = &pi->prstatus.pr_lwp.pr_lwphold;
1876 #endif /* UNIXWARE */
1877 #else /* not NEW_PROC_API */
1878 {
1879 static sigset_t sigheld;
1880
1881 if (ioctl (pi->ctl_fd, PIOCGHOLD, &sigheld) >= 0)
1882 ret = &sigheld;
1883 }
1884 #endif /* NEW_PROC_API */
1885 if (save && ret)
1886 memcpy (save, ret, sizeof (sigset_t));
1887
1888 return ret;
1889 }
1890
1891 /*
1892 * Function: proc_get_traced_signals
1893 *
1894 * returns the set of signals that are traced / debugged.
1895 * Will also copy the sigset if 'save' is non-zero.
1896 */
1897
1898 sigset_t *
1899 proc_get_traced_signals (pi, save)
1900 procinfo *pi;
1901 sigset_t *save;
1902 {
1903 sigset_t *ret = NULL;
1904
1905 /*
1906 * We should never have to apply this operation to any procinfo
1907 * except the one for the main process. If that ever changes
1908 * for any reason, then take out the following clause and
1909 * replace it with one that makes sure the ctl_fd is open.
1910 */
1911
1912 if (pi->tid != 0)
1913 pi = find_procinfo_or_die (pi->pid, 0);
1914
1915 #ifdef NEW_PROC_API
1916 if (!pi->status_valid)
1917 if (!proc_get_status (pi))
1918 return NULL;
1919
1920 ret = &pi->prstatus.pr_sigtrace;
1921 #else
1922 {
1923 static sigset_t sigtrace;
1924
1925 if (ioctl (pi->ctl_fd, PIOCGTRACE, &sigtrace) >= 0)
1926 ret = &sigtrace;
1927 }
1928 #endif
1929 if (save && ret)
1930 memcpy (save, ret, sizeof (sigset_t));
1931
1932 return ret;
1933 }
1934
1935 /*
1936 * Function: proc_trace_signal
1937 *
1938 * Add 'signo' to the set of signals that are traced.
1939 * Returns non-zero for success, zero for failure.
1940 */
1941
1942 int
1943 proc_trace_signal (pi, signo)
1944 procinfo *pi;
1945 int signo;
1946 {
1947 sigset_t temp;
1948
1949 /*
1950 * We should never have to apply this operation to any procinfo
1951 * except the one for the main process. If that ever changes
1952 * for any reason, then take out the following clause and
1953 * replace it with one that makes sure the ctl_fd is open.
1954 */
1955
1956 if (pi->tid != 0)
1957 pi = find_procinfo_or_die (pi->pid, 0);
1958
1959 if (pi)
1960 {
1961 if (proc_get_traced_signals (pi, &temp))
1962 {
1963 praddset (&temp, signo);
1964 return proc_set_traced_signals (pi, &temp);
1965 }
1966 }
1967
1968 return 0; /* failure */
1969 }
1970
1971 /*
1972 * Function: proc_ignore_signal
1973 *
1974 * Remove 'signo' from the set of signals that are traced.
1975 * Returns non-zero for success, zero for failure.
1976 */
1977
1978 int
1979 proc_ignore_signal (pi, signo)
1980 procinfo *pi;
1981 int signo;
1982 {
1983 sigset_t temp;
1984
1985 /*
1986 * We should never have to apply this operation to any procinfo
1987 * except the one for the main process. If that ever changes
1988 * for any reason, then take out the following clause and
1989 * replace it with one that makes sure the ctl_fd is open.
1990 */
1991
1992 if (pi->tid != 0)
1993 pi = find_procinfo_or_die (pi->pid, 0);
1994
1995 if (pi)
1996 {
1997 if (proc_get_traced_signals (pi, &temp))
1998 {
1999 prdelset (&temp, signo);
2000 return proc_set_traced_signals (pi, &temp);
2001 }
2002 }
2003
2004 return 0; /* failure */
2005 }
2006
2007 /*
2008 * Function: proc_get_traced_faults
2009 *
2010 * returns the set of hardware faults that are traced /debugged.
2011 * Will also copy the faultset if 'save' is non-zero.
2012 */
2013
2014 fltset_t *
2015 proc_get_traced_faults (pi, save)
2016 procinfo *pi;
2017 fltset_t *save;
2018 {
2019 fltset_t *ret = NULL;
2020
2021 /*
2022 * We should never have to apply this operation to any procinfo
2023 * except the one for the main process. If that ever changes
2024 * for any reason, then take out the following clause and
2025 * replace it with one that makes sure the ctl_fd is open.
2026 */
2027
2028 if (pi->tid != 0)
2029 pi = find_procinfo_or_die (pi->pid, 0);
2030
2031 #ifdef NEW_PROC_API
2032 if (!pi->status_valid)
2033 if (!proc_get_status (pi))
2034 return NULL;
2035
2036 ret = &pi->prstatus.pr_flttrace;
2037 #else
2038 {
2039 static fltset_t flttrace;
2040
2041 if (ioctl (pi->ctl_fd, PIOCGFAULT, &flttrace) >= 0)
2042 ret = &flttrace;
2043 }
2044 #endif
2045 if (save && ret)
2046 memcpy (save, ret, sizeof (fltset_t));
2047
2048 return ret;
2049 }
2050
2051 /*
2052 * Function: proc_get_traced_sysentry
2053 *
2054 * returns the set of syscalls that are traced /debugged on entry.
2055 * Will also copy the syscall set if 'save' is non-zero.
2056 */
2057
2058 sysset_t *
2059 proc_get_traced_sysentry (pi, save)
2060 procinfo *pi;
2061 sysset_t *save;
2062 {
2063 sysset_t *ret = NULL;
2064
2065 /*
2066 * We should never have to apply this operation to any procinfo
2067 * except the one for the main process. If that ever changes
2068 * for any reason, then take out the following clause and
2069 * replace it with one that makes sure the ctl_fd is open.
2070 */
2071
2072 if (pi->tid != 0)
2073 pi = find_procinfo_or_die (pi->pid, 0);
2074
2075 #ifdef NEW_PROC_API
2076 if (!pi->status_valid)
2077 if (!proc_get_status (pi))
2078 return NULL;
2079
2080 ret = &pi->prstatus.pr_sysentry;
2081 #else
2082 {
2083 static sysset_t sysentry;
2084
2085 if (ioctl (pi->ctl_fd, PIOCGENTRY, &sysentry) >= 0)
2086 ret = &sysentry;
2087 }
2088 #endif
2089 if (save && ret)
2090 memcpy (save, ret, sizeof (sysset_t));
2091
2092 return ret;
2093 }
2094
2095 /*
2096 * Function: proc_get_traced_sysexit
2097 *
2098 * returns the set of syscalls that are traced /debugged on exit.
2099 * Will also copy the syscall set if 'save' is non-zero.
2100 */
2101
2102 sysset_t *
2103 proc_get_traced_sysexit (pi, save)
2104 procinfo *pi;
2105 sysset_t *save;
2106 {
2107 sysset_t * ret = NULL;
2108
2109 /*
2110 * We should never have to apply this operation to any procinfo
2111 * except the one for the main process. If that ever changes
2112 * for any reason, then take out the following clause and
2113 * replace it with one that makes sure the ctl_fd is open.
2114 */
2115
2116 if (pi->tid != 0)
2117 pi = find_procinfo_or_die (pi->pid, 0);
2118
2119 #ifdef NEW_PROC_API
2120 if (!pi->status_valid)
2121 if (!proc_get_status (pi))
2122 return NULL;
2123
2124 ret = &pi->prstatus.pr_sysexit;
2125 #else
2126 {
2127 static sysset_t sysexit;
2128
2129 if (ioctl (pi->ctl_fd, PIOCGEXIT, &sysexit) >= 0)
2130 ret = &sysexit;
2131 }
2132 #endif
2133 if (save && ret)
2134 memcpy (save, ret, sizeof (sysset_t));
2135
2136 return ret;
2137 }
2138
2139 /*
2140 * Function: proc_clear_current_fault
2141 *
2142 * The current fault (if any) is cleared; the associated signal
2143 * will not be sent to the process or LWP when it resumes.
2144 * Returns non-zero for success, zero for failure.
2145 */
2146
2147 int
2148 proc_clear_current_fault (pi)
2149 procinfo *pi;
2150 {
2151 int win;
2152
2153 /*
2154 * We should never have to apply this operation to any procinfo
2155 * except the one for the main process. If that ever changes
2156 * for any reason, then take out the following clause and
2157 * replace it with one that makes sure the ctl_fd is open.
2158 */
2159
2160 if (pi->tid != 0)
2161 pi = find_procinfo_or_die (pi->pid, 0);
2162
2163 #ifdef NEW_PROC_API
2164 {
2165 int cmd = PCCFAULT;
2166 win = (write (pi->ctl_fd, (void *) &cmd, sizeof (cmd)) == sizeof (cmd));
2167 }
2168 #else
2169 win = (ioctl (pi->ctl_fd, PIOCCFAULT, 0) >= 0);
2170 #endif
2171
2172 return win;
2173 }
2174
2175 /*
2176 * Function: proc_set_current_signal
2177 *
2178 * Set the "current signal" that will be delivered next to the process.
2179 * NOTE: semantics are different from those of KILL.
2180 * This signal will be delivered to the process or LWP
2181 * immediately when it is resumed (even if the signal is held/blocked);
2182 * it will NOT immediately cause another event of interest, and will NOT
2183 * first trap back to the debugger.
2184 *
2185 * Returns non-zero for success, zero for failure.
2186 */
2187
2188 int
2189 proc_set_current_signal (pi, signo)
2190 procinfo *pi;
2191 int signo;
2192 {
2193 int win;
2194 struct {
2195 int cmd;
2196 /* Use char array to avoid alignment issues. */
2197 char sinfo[sizeof (struct siginfo)];
2198 } arg;
2199 struct siginfo *mysinfo;
2200
2201 /*
2202 * We should never have to apply this operation to any procinfo
2203 * except the one for the main process. If that ever changes
2204 * for any reason, then take out the following clause and
2205 * replace it with one that makes sure the ctl_fd is open.
2206 */
2207
2208 if (pi->tid != 0)
2209 pi = find_procinfo_or_die (pi->pid, 0);
2210
2211 #ifdef PROCFS_DONT_PIOCSSIG_CURSIG
2212 /* With Alpha OSF/1 procfs, the kernel gets really confused if it
2213 * receives a PIOCSSIG with a signal identical to the current signal,
2214 * it messes up the current signal. Work around the kernel bug.
2215 */
2216 if (signo > 0 &&
2217 signo == proc_cursig (pi))
2218 return 1; /* I assume this is a success? */
2219 #endif
2220
2221 /* The pointer is just a type alias. */
2222 mysinfo = (struct siginfo *) &arg.sinfo;
2223 mysinfo->si_signo = signo;
2224 mysinfo->si_code = 0;
2225 mysinfo->si_pid = getpid (); /* ?why? */
2226 mysinfo->si_uid = getuid (); /* ?why? */
2227
2228 #ifdef NEW_PROC_API
2229 arg.cmd = PCSSIG;
2230 win = (write (pi->ctl_fd, (void *) &arg, sizeof (arg)) == sizeof (arg));
2231 #else
2232 win = (ioctl (pi->ctl_fd, PIOCSSIG, (void *) &arg.sinfo) >= 0);
2233 #endif
2234
2235 return win;
2236 }
2237
2238 /*
2239 * Function: proc_clear_current_signal
2240 *
2241 * The current signal (if any) is cleared, and
2242 * is not sent to the process or LWP when it resumes.
2243 * Returns non-zero for success, zero for failure.
2244 */
2245
2246 int
2247 proc_clear_current_signal (pi)
2248 procinfo *pi;
2249 {
2250 int win;
2251
2252 /*
2253 * We should never have to apply this operation to any procinfo
2254 * except the one for the main process. If that ever changes
2255 * for any reason, then take out the following clause and
2256 * replace it with one that makes sure the ctl_fd is open.
2257 */
2258
2259 if (pi->tid != 0)
2260 pi = find_procinfo_or_die (pi->pid, 0);
2261
2262 #ifdef NEW_PROC_API
2263 {
2264 struct {
2265 int cmd;
2266 /* Use char array to avoid alignment issues. */
2267 char sinfo[sizeof (struct siginfo)];
2268 } arg;
2269 struct siginfo *mysinfo;
2270
2271 arg.cmd = PCSSIG;
2272 /* The pointer is just a type alias. */
2273 mysinfo = (struct siginfo *) &arg.sinfo;
2274 mysinfo->si_signo = 0;
2275 mysinfo->si_code = 0;
2276 mysinfo->si_errno = 0;
2277 mysinfo->si_pid = getpid (); /* ?why? */
2278 mysinfo->si_uid = getuid (); /* ?why? */
2279
2280 win = (write (pi->ctl_fd, (void *) &arg, sizeof (arg)) == sizeof (arg));
2281 }
2282 #else
2283 win = (ioctl (pi->ctl_fd, PIOCSSIG, 0) >= 0);
2284 #endif
2285
2286 return win;
2287 }
2288
2289 /*
2290 * Function: proc_get_gregs
2291 *
2292 * Get the general registers for the process or LWP.
2293 * Returns non-zero for success, zero for failure.
2294 */
2295
2296 gdb_gregset_t *
2297 proc_get_gregs (pi)
2298 procinfo *pi;
2299 {
2300 if (!pi->status_valid || !pi->gregs_valid)
2301 if (!proc_get_status (pi))
2302 return NULL;
2303
2304 /*
2305 * OK, sorry about the ifdef's.
2306 * There's three cases instead of two, because
2307 * in this instance Unixware and Solaris/RW differ.
2308 */
2309
2310 #ifdef NEW_PROC_API
2311 #ifdef UNIXWARE /* ugh, a true architecture dependency */
2312 return &pi->prstatus.pr_lwp.pr_context.uc_mcontext.gregs;
2313 #else /* not Unixware */
2314 return &pi->prstatus.pr_lwp.pr_reg;
2315 #endif /* Unixware */
2316 #else /* not NEW_PROC_API */
2317 return &pi->prstatus.pr_reg;
2318 #endif /* NEW_PROC_API */
2319 }
2320
2321 /*
2322 * Function: proc_get_fpregs
2323 *
2324 * Get the floating point registers for the process or LWP.
2325 * Returns non-zero for success, zero for failure.
2326 */
2327
2328 gdb_fpregset_t *
2329 proc_get_fpregs (pi)
2330 procinfo *pi;
2331 {
2332 #ifdef NEW_PROC_API
2333 if (!pi->status_valid || !pi->fpregs_valid)
2334 if (!proc_get_status (pi))
2335 return NULL;
2336
2337 #ifdef UNIXWARE /* a true architecture dependency */
2338 return &pi->prstatus.pr_lwp.pr_context.uc_mcontext.fpregs;
2339 #else
2340 return &pi->prstatus.pr_lwp.pr_fpreg;
2341 #endif /* Unixware */
2342
2343 #else /* not NEW_PROC_API */
2344 if (pi->fpregs_valid)
2345 return &pi->fpregset; /* already got 'em */
2346 else
2347 {
2348 if (pi->ctl_fd == 0 &&
2349 open_procinfo_files (pi, FD_CTL) == 0)
2350 {
2351 return NULL;
2352 }
2353 else
2354 {
2355 #ifdef PIOCTGFPREG
2356 struct {
2357 long pr_count;
2358 tid_t pr_error_thread;
2359 tfpregset_t thread_1;
2360 } thread_fpregs;
2361
2362 thread_fpregs.pr_count = 1;
2363 thread_fpregs.thread_1.tid = pi->tid;
2364
2365 if (pi->tid == 0 &&
2366 ioctl (pi->ctl_fd, PIOCGFPREG, &pi->fpregset) >= 0)
2367 {
2368 pi->fpregs_valid = 1;
2369 return &pi->fpregset; /* got 'em now! */
2370 }
2371 else if (pi->tid != 0 &&
2372 ioctl (pi->ctl_fd, PIOCTGFPREG, &thread_fpregs) >= 0)
2373 {
2374 memcpy (&pi->fpregset, &thread_fpregs.thread_1.pr_fpregs,
2375 sizeof (pi->fpregset));
2376 pi->fpregs_valid = 1;
2377 return &pi->fpregset; /* got 'em now! */
2378 }
2379 else
2380 {
2381 return NULL;
2382 }
2383 #else
2384 if (ioctl (pi->ctl_fd, PIOCGFPREG, &pi->fpregset) >= 0)
2385 {
2386 pi->fpregs_valid = 1;
2387 return &pi->fpregset; /* got 'em now! */
2388 }
2389 else
2390 {
2391 return NULL;
2392 }
2393 #endif
2394 }
2395 }
2396 #endif
2397 }
2398
2399 /*
2400 * Function: proc_set_gregs
2401 *
2402 * Write the general registers back to the process or LWP.
2403 * Returns non-zero for success, zero for failure.
2404 */
2405
2406 int
2407 proc_set_gregs (pi)
2408 procinfo *pi;
2409 {
2410 gdb_gregset_t *gregs;
2411 int win;
2412
2413 if ((gregs = proc_get_gregs (pi)) == NULL)
2414 return 0; /* get_regs has already warned */
2415
2416 if (pi->ctl_fd == 0 &&
2417 open_procinfo_files (pi, FD_CTL) == 0)
2418 {
2419 return 0;
2420 }
2421 else
2422 {
2423 #ifdef NEW_PROC_API
2424 struct {
2425 int cmd;
2426 /* Use char array to avoid alignment issues. */
2427 char gregs[sizeof (gdb_gregset_t)];
2428 } arg;
2429
2430 arg.cmd = PCSREG;
2431 memcpy (&arg.gregs, gregs, sizeof (arg.gregs));
2432 win = (write (pi->ctl_fd, (void *) &arg, sizeof (arg)) == sizeof (arg));
2433 #else
2434 win = (ioctl (pi->ctl_fd, PIOCSREG, gregs) >= 0);
2435 #endif
2436 }
2437
2438 /* Policy: writing the regs invalidates our cache. */
2439 pi->gregs_valid = 0;
2440 return win;
2441 }
2442
2443 /*
2444 * Function: proc_set_fpregs
2445 *
2446 * Modify the floating point register set of the process or LWP.
2447 * Returns non-zero for success, zero for failure.
2448 */
2449
2450 int
2451 proc_set_fpregs (pi)
2452 procinfo *pi;
2453 {
2454 gdb_fpregset_t *fpregs;
2455 int win;
2456
2457 if ((fpregs = proc_get_fpregs (pi)) == NULL)
2458 return 0; /* get_fpregs has already warned */
2459
2460 if (pi->ctl_fd == 0 &&
2461 open_procinfo_files (pi, FD_CTL) == 0)
2462 {
2463 return 0;
2464 }
2465 else
2466 {
2467 #ifdef NEW_PROC_API
2468 struct {
2469 int cmd;
2470 /* Use char array to avoid alignment issues. */
2471 char fpregs[sizeof (gdb_fpregset_t)];
2472 } arg;
2473
2474 arg.cmd = PCSFPREG;
2475 memcpy (&arg.fpregs, fpregs, sizeof (arg.fpregs));
2476 win = (write (pi->ctl_fd, (void *) &arg, sizeof (arg)) == sizeof (arg));
2477 #else
2478 #ifdef PIOCTSFPREG
2479 if (pi->tid == 0)
2480 win = (ioctl (pi->ctl_fd, PIOCSFPREG, fpregs) >= 0);
2481 else
2482 {
2483 struct {
2484 long pr_count;
2485 tid_t pr_error_thread;
2486 tfpregset_t thread_1;
2487 } thread_fpregs;
2488
2489 thread_fpregs.pr_count = 1;
2490 thread_fpregs.thread_1.tid = pi->tid;
2491 memcpy (&thread_fpregs.thread_1.pr_fpregs, fpregs,
2492 sizeof (*fpregs));
2493 win = (ioctl (pi->ctl_fd, PIOCTSFPREG, &thread_fpregs) >= 0);
2494 }
2495 #else
2496 win = (ioctl (pi->ctl_fd, PIOCSFPREG, fpregs) >= 0);
2497 #endif /* osf PIOCTSFPREG */
2498 #endif /* NEW_PROC_API */
2499 }
2500
2501 /* Policy: writing the regs invalidates our cache. */
2502 pi->fpregs_valid = 0;
2503 return win;
2504 }
2505
2506 /*
2507 * Function: proc_kill
2508 *
2509 * Send a signal to the proc or lwp with the semantics of "kill()".
2510 * Returns non-zero for success, zero for failure.
2511 */
2512
2513 int
2514 proc_kill (pi, signo)
2515 procinfo *pi;
2516 int signo;
2517 {
2518 int win;
2519
2520 /*
2521 * We might conceivably apply this operation to an LWP, and
2522 * the LWP's ctl file descriptor might not be open.
2523 */
2524
2525 if (pi->ctl_fd == 0 &&
2526 open_procinfo_files (pi, FD_CTL) == 0)
2527 {
2528 return 0;
2529 }
2530 else
2531 {
2532 #ifdef NEW_PROC_API
2533 int cmd[2];
2534
2535 cmd[0] = PCKILL;
2536 cmd[1] = signo;
2537 win = (write (pi->ctl_fd, (char *) &cmd, sizeof (cmd)) == sizeof (cmd));
2538 #else /* ioctl method */
2539 /* FIXME: do I need the Alpha OSF fixups present in
2540 procfs.c/unconditionally_kill_inferior? Perhaps only for SIGKILL? */
2541 win = (ioctl (pi->ctl_fd, PIOCKILL, &signo) >= 0);
2542 #endif
2543 }
2544
2545 return win;
2546 }
2547
2548 /*
2549 * Function: proc_parent_pid
2550 *
2551 * Find the pid of the process that started this one.
2552 * Returns the parent process pid, or zero.
2553 */
2554
2555 int
2556 proc_parent_pid (pi)
2557 procinfo *pi;
2558 {
2559 /*
2560 * We should never have to apply this operation to any procinfo
2561 * except the one for the main process. If that ever changes
2562 * for any reason, then take out the following clause and
2563 * replace it with one that makes sure the ctl_fd is open.
2564 */
2565
2566 if (pi->tid != 0)
2567 pi = find_procinfo_or_die (pi->pid, 0);
2568
2569 if (!pi->status_valid)
2570 if (!proc_get_status (pi))
2571 return 0;
2572
2573 return pi->prstatus.pr_ppid;
2574 }
2575
2576
2577 /*
2578 * Function: proc_set_watchpoint
2579 *
2580 */
2581
2582 int
2583 proc_set_watchpoint (pi, addr, len, wflags)
2584 procinfo *pi;
2585 CORE_ADDR addr;
2586 int len;
2587 int wflags;
2588 {
2589 #if !defined (TARGET_HAS_HARDWARE_WATCHPOINTS)
2590 return 0;
2591 #else
2592 /* Horrible hack! Detect Solaris 2.5, because this doesn't work on 2.5 */
2593 #if defined (PIOCOPENLWP) || defined (UNIXWARE) /* Solaris 2.5: bail out */
2594 return 0;
2595 #else
2596 struct {
2597 int cmd;
2598 char watch[sizeof (prwatch_t)];
2599 } arg;
2600 prwatch_t *pwatch;
2601
2602 pwatch = (prwatch_t *) &arg.watch;
2603 pwatch->pr_vaddr = addr;
2604 pwatch->pr_size = len;
2605 pwatch->pr_wflags = wflags;
2606 #if defined(NEW_PROC_API) && defined (PCWATCH)
2607 arg.cmd = PCWATCH;
2608 return (write (pi->ctl_fd, &arg, sizeof (arg)) == sizeof (arg));
2609 #else
2610 #if defined (PIOCSWATCH)
2611 return (ioctl (pi->ctl_fd, PIOCSWATCH, pwatch) >= 0);
2612 #else
2613 return 0; /* Fail */
2614 #endif
2615 #endif
2616 #endif
2617 #endif
2618 }
2619
2620 /*
2621 * Function: proc_iterate_over_mappings
2622 *
2623 * Given a pointer to a function, call that function once for every
2624 * mapped address space in the process. The callback function
2625 * receives an open file descriptor for the file corresponding to
2626 * that mapped address space (if there is one), and the base address
2627 * of the mapped space. Quit when the callback function returns a
2628 * nonzero value, or at teh end of the mappings.
2629 *
2630 * Returns: the first non-zero return value of the callback function,
2631 * or zero.
2632 */
2633
2634 /* FIXME: it's probably a waste to cache this FD.
2635 It doesn't get called that often... and if I open it
2636 every time, I don't need to lseek it. */
2637 int
2638 proc_iterate_over_mappings (func)
2639 int (*func) PARAMS ((int, CORE_ADDR));
2640 {
2641 struct prmap *map;
2642 procinfo *pi;
2643 #ifndef NEW_PROC_API /* avoid compiler warning */
2644 int nmaps = 0;
2645 int i;
2646 #else
2647 int map_fd;
2648 char pathname[MAX_PROC_NAME_SIZE];
2649 #endif
2650 int funcstat = 0;
2651 int fd;
2652
2653 pi = find_procinfo_or_die (PIDGET (inferior_pid), 0);
2654
2655 #ifdef NEW_PROC_API
2656 /* Open map fd. */
2657 sprintf (pathname, "/proc/%d/map", pi->pid);
2658 if ((map_fd = open (pathname, O_RDONLY)) < 0)
2659 proc_error (pi, "proc_iterate_over_mappings (open)", __LINE__);
2660
2661 /* Make sure it gets closed again. */
2662 make_cleanup ((make_cleanup_func) close, (void *) map_fd);
2663
2664 /* Allocate space for mapping (lifetime only for this function). */
2665 map = alloca (sizeof (struct prmap));
2666
2667 /* Now read the mappings from the file,
2668 open a file descriptor for those that have a name,
2669 and call the callback function. */
2670 while (read (map_fd,
2671 (void *) map,
2672 sizeof (struct prmap)) == sizeof (struct prmap))
2673 {
2674 char name[MAX_PROC_NAME_SIZE + sizeof (map->pr_mapname)];
2675
2676 if (map->pr_vaddr == 0 && map->pr_size == 0)
2677 break; /* sanity */
2678
2679 if (map->pr_mapname[0] == 0)
2680 {
2681 fd = -1; /* no map file */
2682 }
2683 else
2684 {
2685 sprintf (name, "/proc/%d/object/%s", pi->pid, map->pr_mapname);
2686 /* Note: caller's responsibility to close this fd! */
2687 fd = open (name, O_RDONLY);
2688 /* Note: we don't test the above call for failure;
2689 we just pass the FD on as given. Sometimes there is
2690 no file, so the ioctl may return failure, but that's
2691 not a problem. */
2692 }
2693
2694 /* Stop looping if the callback returns non-zero. */
2695 if ((funcstat = (*func) (fd, (CORE_ADDR) map->pr_vaddr)) != 0)
2696 break;
2697 }
2698 #else
2699 /* Get the number of mapping entries. */
2700 if (ioctl (pi->ctl_fd, PIOCNMAP, &nmaps) < 0)
2701 proc_error (pi, "proc_iterate_over_mappings (PIOCNMAP)", __LINE__);
2702
2703 /* Allocate space for mappings (lifetime only this function). */
2704 map = (struct prmap *) alloca ((nmaps + 1) * sizeof (struct prmap));
2705
2706 /* Read in all the mappings. */
2707 if (ioctl (pi->ctl_fd, PIOCMAP, map) < 0)
2708 proc_error (pi, "proc_iterate_over_mappings (PIOCMAP)", __LINE__);
2709
2710 /* Now loop through the mappings, open an fd for each, and
2711 call the callback function. */
2712 for (i = 0;
2713 i < nmaps && map[i].pr_size != 0;
2714 i++)
2715 {
2716 /* Note: caller's responsibility to close this fd! */
2717 fd = ioctl (pi->ctl_fd, PIOCOPENM, &map[i].pr_vaddr);
2718 /* Note: we don't test the above call for failure;
2719 we just pass the FD on as given. Sometimes there is
2720 no file, so the ioctl may return failure, but that's
2721 not a problem. */
2722
2723 /* Stop looping if the callback returns non-zero. */
2724 if ((funcstat = (*func) (fd, (CORE_ADDR) map[i].pr_vaddr)) != 0)
2725 break;
2726 }
2727 #endif
2728
2729 return funcstat;
2730 }
2731
2732 #ifdef TM_I386SOL2_H /* Is it hokey to use this? */
2733
2734 #include <sys/sysi86.h>
2735
2736 /*
2737 * Function: proc_get_LDT_entry
2738 *
2739 * Inputs:
2740 * procinfo *pi;
2741 * int key;
2742 *
2743 * The 'key' is actually the value of the lower 16 bits of
2744 * the GS register for the LWP that we're interested in.
2745 *
2746 * Return: matching ssh struct (LDT entry).
2747 */
2748
2749 struct ssd *
2750 proc_get_LDT_entry (pi, key)
2751 procinfo *pi;
2752 int key;
2753 {
2754 static struct ssd *ldt_entry = NULL;
2755 #ifdef NEW_PROC_API
2756 char pathname[MAX_PROC_NAME_SIZE];
2757 struct cleanup *old_chain = NULL;
2758 int fd;
2759
2760 /* Allocate space for one LDT entry.
2761 This alloc must persist, because we return a pointer to it. */
2762 if (ldt_entry == NULL)
2763 ldt_entry = (struct ssd *) xmalloc (sizeof (struct ssd));
2764
2765 /* Open the file descriptor for the LDT table. */
2766 sprintf (pathname, "/proc/%d/ldt", pi->pid);
2767 if ((fd = open (pathname, O_RDONLY)) < 0)
2768 {
2769 proc_warn (pi, "proc_get_LDT_entry (open)", __LINE__);
2770 return NULL;
2771 }
2772 /* Make sure it gets closed again! */
2773 old_chain = make_cleanup ((make_cleanup_func) close, (void *) fd);
2774
2775 /* Now 'read' thru the table, find a match and return it. */
2776 while (read (fd, ldt_entry, sizeof (struct ssd)) == sizeof (struct ssd))
2777 {
2778 if (ldt_entry->sel == 0 &&
2779 ldt_entry->bo == 0 &&
2780 ldt_entry->acc1 == 0 &&
2781 ldt_entry->acc2 == 0)
2782 break; /* end of table */
2783 /* If key matches, return this entry. */
2784 if (ldt_entry->sel == key)
2785 return ldt_entry;
2786 }
2787 /* Loop ended, match not found. */
2788 return NULL;
2789 #else
2790 int nldt, i;
2791 static int nalloc = 0;
2792
2793 /* Get the number of LDT entries. */
2794 if (ioctl (pi->ctl_fd, PIOCNLDT, &nldt) < 0)
2795 {
2796 proc_warn (pi, "proc_get_LDT_entry (PIOCNLDT)", __LINE__);
2797 return NULL;
2798 }
2799
2800 /* Allocate space for the number of LDT entries. */
2801 /* This alloc has to persist, 'cause we return a pointer to it. */
2802 if (nldt > nalloc)
2803 {
2804 ldt_entry = (struct ssd *)
2805 xrealloc (ldt_entry, (nldt + 1) * sizeof (struct ssd));
2806 nalloc = nldt;
2807 }
2808
2809 /* Read the whole table in one gulp. */
2810 if (ioctl (pi->ctl_fd, PIOCLDT, ldt_entry) < 0)
2811 {
2812 proc_warn (pi, "proc_get_LDT_entry (PIOCLDT)", __LINE__);
2813 return NULL;
2814 }
2815
2816 /* Search the table and return the (first) entry matching 'key'. */
2817 for (i = 0; i < nldt; i++)
2818 if (ldt_entry[i].sel == key)
2819 return &ldt_entry[i];
2820
2821 /* Loop ended, match not found. */
2822 return NULL;
2823 #endif
2824 }
2825
2826 #endif /* TM_I386SOL2_H */
2827
2828 /* =============== END, non-thread part of /proc "MODULE" =============== */
2829
2830 /* =================== Thread "MODULE" =================== */
2831
2832 /* NOTE: you'll see more ifdefs and duplication of functions here,
2833 since there is a different way to do threads on every OS. */
2834
2835 /*
2836 * Function: proc_get_nthreads
2837 *
2838 * Return the number of threads for the process
2839 */
2840
2841 #if defined (PIOCNTHR) && defined (PIOCTLIST)
2842 /*
2843 * OSF version
2844 */
2845 int
2846 proc_get_nthreads (pi)
2847 procinfo *pi;
2848 {
2849 int nthreads = 0;
2850
2851 if (ioctl (pi->ctl_fd, PIOCNTHR, &nthreads) < 0)
2852 proc_warn (pi, "procfs: PIOCNTHR failed", __LINE__);
2853
2854 return nthreads;
2855 }
2856
2857 #else
2858 #if defined (SYS_lwpcreate) || defined (SYS_lwp_create) /* FIXME: multiple */
2859 /*
2860 * Solaris and Unixware version
2861 */
2862 int
2863 proc_get_nthreads (pi)
2864 procinfo *pi;
2865 {
2866 if (!pi->status_valid)
2867 if (!proc_get_status (pi))
2868 return 0;
2869
2870 /*
2871 * NEW_PROC_API: only works for the process procinfo,
2872 * because the LWP procinfos do not get prstatus filled in.
2873 */
2874 #ifdef NEW_PROC_API
2875 if (pi->tid != 0) /* find the parent process procinfo */
2876 pi = find_procinfo_or_die (pi->pid, 0);
2877 #endif
2878 return pi->prstatus.pr_nlwp;
2879 }
2880
2881 #else
2882 /*
2883 * Default version
2884 */
2885 int
2886 proc_get_nthreads (pi)
2887 procinfo *pi;
2888 {
2889 return 0;
2890 }
2891 #endif
2892 #endif
2893
2894 /*
2895 * Function: proc_get_current_thread (LWP version)
2896 *
2897 * Return the ID of the thread that had an event of interest.
2898 * (ie. the one that hit a breakpoint or other traced event).
2899 * All other things being equal, this should be the ID of a
2900 * thread that is currently executing.
2901 */
2902
2903 #if defined (SYS_lwpcreate) || defined (SYS_lwp_create) /* FIXME: multiple */
2904 /*
2905 * Solaris and Unixware version
2906 */
2907 int
2908 proc_get_current_thread (pi)
2909 procinfo *pi;
2910 {
2911 /*
2912 * Note: this should be applied to the root procinfo for the process,
2913 * not to the procinfo for an LWP. If applied to the procinfo for
2914 * an LWP, it will simply return that LWP's ID. In that case,
2915 * find the parent process procinfo.
2916 */
2917
2918 if (pi->tid != 0)
2919 pi = find_procinfo_or_die (pi->pid, 0);
2920
2921 if (!pi->status_valid)
2922 if (!proc_get_status (pi))
2923 return 0;
2924
2925 #ifdef NEW_PROC_API
2926 return pi->prstatus.pr_lwp.pr_lwpid;
2927 #else
2928 return pi->prstatus.pr_who;
2929 #endif
2930 }
2931
2932 #else
2933 #if defined (PIOCNTHR) && defined (PIOCTLIST)
2934 /*
2935 * OSF version
2936 */
2937 int
2938 proc_get_current_thread (pi)
2939 procinfo *pi;
2940 {
2941 #if 0 /* FIXME: not ready for prime time? */
2942 return pi->prstatus.pr_tid;
2943 #else
2944 return 0;
2945 #endif
2946 }
2947
2948 #else
2949 /*
2950 * Default version
2951 */
2952 int
2953 proc_get_current_thread (pi)
2954 procinfo *pi;
2955 {
2956 return 0;
2957 }
2958
2959 #endif
2960 #endif
2961
2962 /*
2963 * Function: proc_update_threads
2964 *
2965 * Discover the IDs of all the threads within the process, and
2966 * create a procinfo for each of them (chained to the parent).
2967 *
2968 * This unfortunately requires a different method on every OS.
2969 *
2970 * Return: non-zero for success, zero for failure.
2971 */
2972
2973 int
2974 proc_delete_dead_threads (parent, thread, ignore)
2975 procinfo *parent;
2976 procinfo *thread;
2977 void *ignore;
2978 {
2979 if (thread && parent) /* sanity */
2980 {
2981 thread->status_valid = 0;
2982 if (!proc_get_status (thread))
2983 destroy_one_procinfo (&parent->thread_list, thread);
2984 }
2985 return 0; /* keep iterating */
2986 }
2987
2988 #if defined (PIOCLSTATUS)
2989 /*
2990 * Solaris 2.5 (ioctl) version
2991 */
2992 int
2993 proc_update_threads (pi)
2994 procinfo *pi;
2995 {
2996 gdb_prstatus_t *prstatus;
2997 struct cleanup *old_chain = NULL;
2998 procinfo *thread;
2999 int nlwp, i;
3000
3001 /*
3002 * We should never have to apply this operation to any procinfo
3003 * except the one for the main process. If that ever changes
3004 * for any reason, then take out the following clause and
3005 * replace it with one that makes sure the ctl_fd is open.
3006 */
3007
3008 if (pi->tid != 0)
3009 pi = find_procinfo_or_die (pi->pid, 0);
3010
3011 proc_iterate_over_threads (pi, proc_delete_dead_threads, NULL);
3012
3013 if ((nlwp = proc_get_nthreads (pi)) <= 1)
3014 return 1; /* Process is not multi-threaded; nothing to do. */
3015
3016 if ((prstatus = (gdb_prstatus_t *)
3017 malloc (sizeof (gdb_prstatus_t) * (nlwp + 1))) == 0)
3018 perror_with_name ("procfs: malloc failed in update_threads");
3019
3020 old_chain = make_cleanup (free, prstatus);
3021 if (ioctl (pi->ctl_fd, PIOCLSTATUS, prstatus) < 0)
3022 proc_error (pi, "update_threads (PIOCLSTATUS)", __LINE__);
3023
3024 /* Skip element zero, which represents the process as a whole. */
3025 for (i = 1; i < nlwp + 1; i++)
3026 {
3027 if ((thread = create_procinfo (pi->pid, prstatus[i].pr_who)) == NULL)
3028 proc_error (pi, "update_threads, create_procinfo", __LINE__);
3029
3030 memcpy (&thread->prstatus, &prstatus[i], sizeof (*prstatus));
3031 thread->status_valid = 1;
3032 }
3033 pi->threads_valid = 1;
3034 do_cleanups (old_chain);
3035 return 1;
3036 }
3037 #else
3038 #ifdef NEW_PROC_API
3039 /*
3040 * Unixware and Solaris 6 (and later) version
3041 */
3042 int
3043 proc_update_threads (pi)
3044 procinfo *pi;
3045 {
3046 char pathname[MAX_PROC_NAME_SIZE + 16];
3047 struct dirent *direntry;
3048 struct cleanup *old_chain = NULL;
3049 procinfo *thread;
3050 DIR *dirp;
3051 int lwpid;
3052
3053 /*
3054 * We should never have to apply this operation to any procinfo
3055 * except the one for the main process. If that ever changes
3056 * for any reason, then take out the following clause and
3057 * replace it with one that makes sure the ctl_fd is open.
3058 */
3059
3060 if (pi->tid != 0)
3061 pi = find_procinfo_or_die (pi->pid, 0);
3062
3063 proc_iterate_over_threads (pi, proc_delete_dead_threads, NULL);
3064
3065 /*
3066 * Unixware
3067 *
3068 * Note: this brute-force method is the only way I know of
3069 * to accomplish this task on Unixware. This method will
3070 * also work on Solaris 2.6 and 2.7. There is a much simpler
3071 * and more elegant way to do this on Solaris, but the margins
3072 * of this manuscript are too small to write it here... ;-)
3073 */
3074
3075 strcpy (pathname, pi->pathname);
3076 strcat (pathname, "/lwp");
3077 if ((dirp = opendir (pathname)) == NULL)
3078 proc_error (pi, "update_threads, opendir", __LINE__);
3079
3080 old_chain = make_cleanup ((make_cleanup_func) closedir, dirp);
3081 while ((direntry = readdir (dirp)) != NULL)
3082 if (direntry->d_name[0] != '.') /* skip '.' and '..' */
3083 {
3084 lwpid = atoi (&direntry->d_name[0]);
3085 if ((thread = create_procinfo (pi->pid, lwpid)) == NULL)
3086 proc_error (pi, "update_threads, create_procinfo", __LINE__);
3087 }
3088 pi->threads_valid = 1;
3089 do_cleanups (old_chain);
3090 return 1;
3091 }
3092 #else
3093 #ifdef PIOCTLIST
3094 /*
3095 * OSF version
3096 */
3097 int
3098 proc_update_threads (pi)
3099 procinfo *pi;
3100 {
3101 int nthreads, i;
3102 tid_t *threads;
3103
3104 /*
3105 * We should never have to apply this operation to any procinfo
3106 * except the one for the main process. If that ever changes
3107 * for any reason, then take out the following clause and
3108 * replace it with one that makes sure the ctl_fd is open.
3109 */
3110
3111 if (pi->tid != 0)
3112 pi = find_procinfo_or_die (pi->pid, 0);
3113
3114 proc_iterate_over_threads (pi, proc_delete_dead_threads, NULL);
3115
3116 nthreads = proc_get_nthreads (pi);
3117 if (nthreads < 2)
3118 return 0; /* nothing to do for 1 or fewer threads */
3119
3120 if ((threads = malloc (nthreads * sizeof (tid_t))) == NULL)
3121 proc_error (pi, "update_threads, malloc", __LINE__);
3122
3123 if (ioctl (pi->ctl_fd, PIOCTLIST, threads) < 0)
3124 proc_error (pi, "procfs: update_threads (PIOCTLIST)", __LINE__);
3125
3126 for (i = 0; i < nthreads; i++)
3127 {
3128 if (!find_procinfo (pi->pid, threads[i]))
3129 if (!create_procinfo (pi->pid, threads[i]))
3130 proc_error (pi, "update_threads, create_procinfo", __LINE__);
3131 }
3132 pi->threads_valid = 1;
3133 return 1;
3134 }
3135 #else
3136 /*
3137 * Default version
3138 */
3139 int
3140 proc_update_threads (pi)
3141 procinfo *pi;
3142 {
3143 return 0;
3144 }
3145 #endif /* OSF PIOCTLIST */
3146 #endif /* NEW_PROC_API */
3147 #endif /* SOL 2.5 PIOCLSTATUS */
3148
3149 /*
3150 * Function: proc_iterate_over_threads
3151 *
3152 * Description:
3153 * Given a pointer to a function, call that function once
3154 * for each lwp in the procinfo list, until the function
3155 * returns non-zero, in which event return the value
3156 * returned by the function.
3157 *
3158 * Note: this function does NOT call update_threads.
3159 * If you want to discover new threads first, you must
3160 * call that function explicitly. This function just makes
3161 * a quick pass over the currently-known procinfos.
3162 *
3163 * Arguments:
3164 * pi - parent process procinfo
3165 * func - per-thread function
3166 * ptr - opaque parameter for function.
3167 *
3168 * Return:
3169 * First non-zero return value from the callee, or zero.
3170 */
3171
3172 int
3173 proc_iterate_over_threads (pi, func, ptr)
3174 procinfo *pi;
3175 int (*func) PARAMS ((procinfo *, procinfo *, void *));
3176 void *ptr;
3177 {
3178 procinfo *thread, *next;
3179 int retval = 0;
3180
3181 /*
3182 * We should never have to apply this operation to any procinfo
3183 * except the one for the main process. If that ever changes
3184 * for any reason, then take out the following clause and
3185 * replace it with one that makes sure the ctl_fd is open.
3186 */
3187
3188 if (pi->tid != 0)
3189 pi = find_procinfo_or_die (pi->pid, 0);
3190
3191 for (thread = pi->thread_list; thread != NULL; thread = next)
3192 {
3193 next = thread->next; /* in case thread is destroyed */
3194 if ((retval = (*func) (pi, thread, ptr)) != 0)
3195 break;
3196 }
3197
3198 return retval;
3199 }
3200
3201 /* =================== END, Thread "MODULE" =================== */
3202
3203 /* =================== END, /proc "MODULE" =================== */
3204
3205 /* =================== GDB "MODULE" =================== */
3206
3207 /*
3208 * Here are all of the gdb target vector functions and their friends.
3209 */
3210
3211 static int do_attach PARAMS ((int pid));
3212 static void do_detach PARAMS ((int signo));
3213 static int register_gdb_signals PARAMS ((procinfo *, sigset_t *));
3214
3215 /*
3216 * Function: procfs_debug_inferior
3217 *
3218 * Sets up the inferior to be debugged.
3219 * Registers to trace signals, hardware faults, and syscalls.
3220 * Note: does not set RLC flag: caller may want to customize that.
3221 *
3222 * Returns: zero for success (note! unlike most functions in this module)
3223 * On failure, returns the LINE NUMBER where it failed!
3224 */
3225
3226 static int
3227 procfs_debug_inferior (pi)
3228 procinfo *pi;
3229 {
3230 fltset_t traced_faults;
3231 sigset_t traced_signals;
3232 sysset_t traced_syscall_entries;
3233 sysset_t traced_syscall_exits;
3234
3235 #ifdef PROCFS_DONT_TRACE_FAULTS
3236 /* On some systems (OSF), we don't trace hardware faults.
3237 Apparently it's enough that we catch them as signals.
3238 Wonder why we don't just do that in general? */
3239 premptyset (&traced_faults); /* don't trace faults. */
3240 #else
3241 /* Register to trace hardware faults in the child. */
3242 prfillset (&traced_faults); /* trace all faults... */
3243 prdelset (&traced_faults, FLTPAGE); /* except page fault. */
3244 #endif
3245 if (!proc_set_traced_faults (pi, &traced_faults))
3246 return __LINE__;
3247
3248 /* Register to trace selected signals in the child. */
3249 premptyset (&traced_signals);
3250 if (!register_gdb_signals (pi, &traced_signals))
3251 return __LINE__;
3252
3253 /* Register to trace the 'exit' system call (on entry). */
3254 premptyset (&traced_syscall_entries);
3255 praddset (&traced_syscall_entries, SYS_exit);
3256 #ifdef SYS_lwpexit
3257 praddset (&traced_syscall_entries, SYS_lwpexit); /* And _lwp_exit... */
3258 #endif
3259 #ifdef SYS_lwp_exit
3260 praddset (&traced_syscall_entries, SYS_lwp_exit);
3261 #endif
3262
3263 if (!proc_set_traced_sysentry (pi, &traced_syscall_entries))
3264 return __LINE__;
3265
3266 #ifdef PRFS_STOPEXEC /* defined on OSF */
3267 /* OSF method for tracing exec syscalls. Quoting:
3268 Under Alpha OSF/1 we have to use a PIOCSSPCACT ioctl to trace
3269 exits from exec system calls because of the user level loader. */
3270 /* FIXME: make nice and maybe move into an access function. */
3271 {
3272 int prfs_flags;
3273
3274 if (ioctl (pi->ctl_fd, PIOCGSPCACT, &prfs_flags) < 0)
3275 return __LINE__;
3276
3277 prfs_flags |= PRFS_STOPEXEC;
3278
3279 if (ioctl (pi->ctl_fd, PIOCSSPCACT, &prfs_flags) < 0)
3280 return __LINE__;
3281 }
3282 #else /* not PRFS_STOPEXEC */
3283 /* Everyone else's (except OSF) method for tracing exec syscalls */
3284 /* GW: Rationale...
3285 Not all systems with /proc have all the exec* syscalls with the same
3286 names. On the SGI, for example, there is no SYS_exec, but there
3287 *is* a SYS_execv. So, we try to account for that. */
3288
3289 premptyset (&traced_syscall_exits);
3290 #ifdef SYS_exec
3291 praddset (&traced_syscall_exits, SYS_exec);
3292 #endif
3293 #ifdef SYS_execve
3294 praddset (&traced_syscall_exits, SYS_execve);
3295 #endif
3296 #ifdef SYS_execv
3297 praddset (&traced_syscall_exits, SYS_execv);
3298 #endif
3299
3300 #ifdef SYS_lwpcreate
3301 praddset (&traced_syscall_exits, SYS_lwpcreate);
3302 praddset (&traced_syscall_exits, SYS_lwpexit);
3303 #endif
3304
3305 #ifdef SYS_lwp_create /* FIXME: once only, please */
3306 praddset (&traced_syscall_exits, SYS_lwp_create);
3307 praddset (&traced_syscall_exits, SYS_lwp_exit);
3308 #endif
3309
3310
3311 if (!proc_set_traced_sysexit (pi, &traced_syscall_exits))
3312 return __LINE__;
3313
3314 #endif /* PRFS_STOPEXEC */
3315 return 0;
3316 }
3317
3318 static void
3319 procfs_attach (args, from_tty)
3320 char *args;
3321 int from_tty;
3322 {
3323 char *exec_file;
3324 int pid;
3325
3326 if (!args)
3327 error_no_arg ("process-id to attach");
3328
3329 pid = atoi (args);
3330 if (pid == getpid ())
3331 error ("Attaching GDB to itself is not a good idea...");
3332
3333 if (from_tty)
3334 {
3335 exec_file = get_exec_file (0);
3336
3337 if (exec_file)
3338 printf_filtered ("Attaching to program `%s', %s\n",
3339 exec_file, target_pid_to_str (pid));
3340 else
3341 printf_filtered ("Attaching to %s\n", target_pid_to_str (pid));
3342
3343 fflush (stdout);
3344 }
3345 inferior_pid = do_attach (pid);
3346 push_target (&procfs_ops);
3347 }
3348
3349 static void
3350 procfs_detach (args, from_tty)
3351 char *args;
3352 int from_tty;
3353 {
3354 char *exec_file;
3355 int signo = 0;
3356
3357 if (from_tty)
3358 {
3359 exec_file = get_exec_file (0);
3360 if (exec_file == 0)
3361 exec_file = "";
3362 printf_filtered ("Detaching from program: %s %s\n",
3363 exec_file, target_pid_to_str (inferior_pid));
3364 fflush (stdout);
3365 }
3366 if (args)
3367 signo = atoi (args);
3368
3369 do_detach (signo);
3370 inferior_pid = 0;
3371 unpush_target (&procfs_ops); /* Pop out of handling an inferior */
3372 }
3373
3374 static int
3375 do_attach (pid)
3376 int pid;
3377 {
3378 procinfo *pi;
3379 int fail;
3380
3381 if ((pi = create_procinfo (pid, 0)) == NULL)
3382 perror ("procfs: out of memory in 'attach'");
3383
3384 if (!open_procinfo_files (pi, FD_CTL))
3385 {
3386 fprintf_filtered (gdb_stderr, "procfs:%d -- ", __LINE__);
3387 sprintf (errmsg, "do_attach: couldn't open /proc file for process %d",
3388 pid);
3389 dead_procinfo (pi, errmsg, NOKILL);
3390 }
3391
3392 /* Stop the process (if it isn't already stopped). */
3393 if (proc_flags (pi) & (PR_STOPPED | PR_ISTOP))
3394 {
3395 pi->was_stopped = 1;
3396 proc_prettyprint_why (proc_why (pi), proc_what (pi), 1);
3397 }
3398 else
3399 {
3400 pi->was_stopped = 0;
3401 /* Set the process to run again when we close it. */
3402 if (!proc_set_run_on_last_close (pi))
3403 dead_procinfo (pi, "do_attach: couldn't set RLC.", NOKILL);
3404
3405 /* Now stop the process. */
3406 if (!proc_stop_process (pi))
3407 dead_procinfo (pi, "do_attach: couldn't stop the process.", NOKILL);
3408 pi->ignore_next_sigstop = 1;
3409 }
3410 /* Save some of the /proc state to be restored if we detach. */
3411 if (!proc_get_traced_faults (pi, &pi->saved_fltset))
3412 dead_procinfo (pi, "do_attach: couldn't save traced faults.", NOKILL);
3413 if (!proc_get_traced_signals (pi, &pi->saved_sigset))
3414 dead_procinfo (pi, "do_attach: couldn't save traced signals.", NOKILL);
3415 if (!proc_get_traced_sysentry (pi, &pi->saved_entryset))
3416 dead_procinfo (pi, "do_attach: couldn't save traced syscall entries.",
3417 NOKILL);
3418 if (!proc_get_traced_sysexit (pi, &pi->saved_exitset))
3419 dead_procinfo (pi, "do_attach: couldn't save traced syscall exits.",
3420 NOKILL);
3421 if (!proc_get_held_signals (pi, &pi->saved_sighold))
3422 dead_procinfo (pi, "do_attach: couldn't save held signals.", NOKILL);
3423
3424 if ((fail = procfs_debug_inferior (pi)) != 0)
3425 dead_procinfo (pi, "do_attach: failed in procfs_debug_inferior", NOKILL);
3426
3427 /* Let GDB know that the inferior was attached. */
3428 attach_flag = 1;
3429 return MERGEPID (pi->pid, proc_get_current_thread (pi));
3430 }
3431
3432 static void
3433 do_detach (signo)
3434 int signo;
3435 {
3436 procinfo *pi;
3437
3438 /* Find procinfo for the main process */
3439 pi = find_procinfo_or_die (PIDGET (inferior_pid), 0); /* FIXME: threads */
3440 if (signo)
3441 if (!proc_set_current_signal (pi, signo))
3442 proc_warn (pi, "do_detach, set_current_signal", __LINE__);
3443
3444 if (!proc_set_traced_signals (pi, &pi->saved_sigset))
3445 proc_warn (pi, "do_detach, set_traced_signal", __LINE__);
3446
3447 if (!proc_set_traced_faults (pi, &pi->saved_fltset))
3448 proc_warn (pi, "do_detach, set_traced_faults", __LINE__);
3449
3450 if (!proc_set_traced_sysentry (pi, &pi->saved_entryset))
3451 proc_warn (pi, "do_detach, set_traced_sysentry", __LINE__);
3452
3453 if (!proc_set_traced_sysexit (pi, &pi->saved_exitset))
3454 proc_warn (pi, "do_detach, set_traced_sysexit", __LINE__);
3455
3456 if (!proc_set_held_signals (pi, &pi->saved_sighold))
3457 proc_warn (pi, "do_detach, set_held_signals", __LINE__);
3458
3459 if (signo || (proc_flags (pi) & (PR_STOPPED | PR_ISTOP)))
3460 if (signo || !(pi->was_stopped) ||
3461 query ("Was stopped when attached, make it runnable again? "))
3462 {
3463 /* Clear any pending signal. */
3464 if (!proc_clear_current_fault (pi))
3465 proc_warn (pi, "do_detach, clear_current_fault", __LINE__);
3466
3467 if (!proc_set_run_on_last_close (pi))
3468 proc_warn (pi, "do_detach, set_rlc", __LINE__);
3469 }
3470
3471 attach_flag = 0;
3472 destroy_procinfo (pi);
3473 }
3474
3475 /*
3476 * fetch_registers
3477 *
3478 * Since the /proc interface cannot give us individual registers,
3479 * we pay no attention to the (regno) argument, and just fetch them all.
3480 * This results in the possibility that we will do unnecessarily many
3481 * fetches, since we may be called repeatedly for individual registers.
3482 * So we cache the results, and mark the cache invalid when the process
3483 * is resumed.
3484 */
3485
3486 static void
3487 procfs_fetch_registers (regno)
3488 int regno;
3489 {
3490 gdb_fpregset_t *fpregs;
3491 gdb_gregset_t *gregs;
3492 procinfo *pi;
3493 int pid;
3494 int tid;
3495
3496 pid = PIDGET (inferior_pid);
3497 tid = TIDGET (inferior_pid);
3498
3499 /* First look up procinfo for the main process. */
3500 pi = find_procinfo_or_die (pid, 0);
3501
3502 /* If the event thread is not the same as GDB's requested thread
3503 (ie. inferior_pid), then look up procinfo for the requested
3504 thread. */
3505 if ((tid != 0) &&
3506 (tid != proc_get_current_thread (pi)))
3507 pi = find_procinfo_or_die (pid, tid);
3508
3509 if (pi == NULL)
3510 error ("procfs: fetch_registers failed to find procinfo for %s",
3511 target_pid_to_str (inferior_pid));
3512
3513 if ((gregs = proc_get_gregs (pi)) == NULL)
3514 proc_error (pi, "fetch_registers, get_gregs", __LINE__);
3515
3516 supply_gregset (gregs);
3517
3518 #if defined (FP0_REGNUM) /* need floating point? */
3519 if ((regno >= 0 && regno < FP0_REGNUM) ||
3520 regno == PC_REGNUM ||
3521 #ifdef NPC_REGNUM
3522 regno == NPC_REGNUM ||
3523 #endif
3524 regno == FP_REGNUM ||
3525 regno == SP_REGNUM)
3526 return; /* not a floating point register */
3527
3528 if ((fpregs = proc_get_fpregs (pi)) == NULL)
3529 proc_error (pi, "fetch_registers, get_fpregs", __LINE__);
3530
3531 supply_fpregset (fpregs);
3532 #endif
3533 }
3534
3535 /* Get ready to modify the registers array. On machines which store
3536 individual registers, this doesn't need to do anything. On
3537 machines which store all the registers in one fell swoop, such as
3538 /proc, this makes sure that registers contains all the registers
3539 from the program being debugged. */
3540
3541 static void
3542 procfs_prepare_to_store ()
3543 {
3544 #ifdef CHILD_PREPARE_TO_STORE
3545 CHILD_PREPARE_TO_STORE ();
3546 #endif
3547 }
3548
3549 /*
3550 * store_registers
3551 *
3552 * Since the /proc interface will not read individual registers,
3553 * we will cache these requests until the process is resumed, and
3554 * only then write them back to the inferior process.
3555 *
3556 * FIXME: is that a really bad idea? Have to think about cases
3557 * where writing one register might affect the value of others, etc.
3558 */
3559
3560 static void
3561 procfs_store_registers (regno)
3562 int regno;
3563 {
3564 gdb_fpregset_t *fpregs;
3565 gdb_gregset_t *gregs;
3566 procinfo *pi;
3567 int pid;
3568 int tid;
3569
3570 pid = PIDGET (inferior_pid);
3571 tid = TIDGET (inferior_pid);
3572
3573 /* First find procinfo for main process */
3574 pi = find_procinfo_or_die (pid, 0);
3575
3576 /* If current lwp for process is not the same as requested thread
3577 (ie. inferior_pid), then find procinfo for the requested thread. */
3578
3579 if ((tid != 0) &&
3580 (tid != proc_get_current_thread (pi)))
3581 pi = find_procinfo_or_die (pid, tid);
3582
3583 if (pi == NULL)
3584 error ("procfs: store_registers: failed to find procinfo for %s",
3585 target_pid_to_str (inferior_pid));
3586
3587 if ((gregs = proc_get_gregs (pi)) == NULL)
3588 proc_error (pi, "store_registers, get_gregs", __LINE__);
3589
3590 fill_gregset (gregs, regno);
3591 if (!proc_set_gregs (pi))
3592 proc_error (pi, "store_registers, set_gregs", __LINE__);
3593
3594 #if defined (FP0_REGNUM) /* need floating point? */
3595 if ((regno >= 0 && regno < FP0_REGNUM) ||
3596 regno == PC_REGNUM ||
3597 #ifdef NPC_REGNUM
3598 regno == NPC_REGNUM ||
3599 #endif
3600 regno == FP_REGNUM ||
3601 regno == SP_REGNUM)
3602 return; /* not a floating point register */
3603
3604 if ((fpregs = proc_get_fpregs (pi)) == NULL)
3605 proc_error (pi, "store_registers, get_fpregs", __LINE__);
3606
3607 fill_fpregset (fpregs, regno);
3608 if (!proc_set_fpregs (pi))
3609 proc_error (pi, "store_registers, set_fpregs", __LINE__);
3610 #endif
3611 }
3612
3613 /*
3614 * Function: target_wait
3615 *
3616 * Retrieve the next stop event from the child process.
3617 * If child has not stopped yet, wait for it to stop.
3618 * Translate /proc eventcodes (or possibly wait eventcodes)
3619 * into gdb internal event codes.
3620 *
3621 * Return: id of process (and possibly thread) that incurred the event.
3622 * event codes are returned thru a pointer parameter.
3623 */
3624
3625 static int
3626 procfs_wait (pid, status)
3627 int pid;
3628 struct target_waitstatus *status;
3629 {
3630 /* First cut: loosely based on original version 2.1 */
3631 procinfo *pi;
3632 int temp, wstat;
3633 int retval;
3634 int why, what, flags;
3635 int retry = 0;
3636
3637 wait_again:
3638
3639 retry++;
3640 wstat = 0;
3641 retval = -1;
3642
3643 /* Find procinfo for main process */
3644 pi = find_procinfo_or_die (PIDGET (inferior_pid), 0);
3645 if (pi)
3646 {
3647 /* We must assume that the status is stale now... */
3648 pi->status_valid = 0;
3649 pi->gregs_valid = 0;
3650 pi->fpregs_valid = 0;
3651
3652 #if 0 /* just try this out... */
3653 flags = proc_flags (pi);
3654 why = proc_why (pi);
3655 if ((flags & PR_STOPPED) && (why == PR_REQUESTED))
3656 pi->status_valid = 0; /* re-read again, IMMEDIATELY... */
3657 #endif
3658 /* If child is not stopped, wait for it to stop. */
3659 if (!(proc_flags (pi) & (PR_STOPPED | PR_ISTOP)) &&
3660 !proc_wait_for_stop (pi))
3661 {
3662 /* wait_for_stop failed: has the child terminated? */
3663 if (errno == ENOENT)
3664 {
3665 /* /proc file not found; presumably child has terminated. */
3666 retval = wait (&wstat); /* "wait" for the child's exit */
3667
3668 if (retval != PIDGET (inferior_pid)) /* wrong child? */
3669 error ("procfs: couldn't stop process %d: wait returned %d\n",
3670 inferior_pid, retval);
3671 /* FIXME: might I not just use waitpid?
3672 Or try find_procinfo to see if I know about this child? */
3673 }
3674 else
3675 {
3676 /* Unknown error from wait_for_stop. */
3677 proc_error (pi, "target_wait (wait_for_stop)", __LINE__);
3678 }
3679 }
3680 else
3681 {
3682 /* This long block is reached if either:
3683 a) the child was already stopped, or
3684 b) we successfully waited for the child with wait_for_stop.
3685 This block will analyze the /proc status, and translate it
3686 into a waitstatus for GDB.
3687
3688 If we actually had to call wait because the /proc file
3689 is gone (child terminated), then we skip this block,
3690 because we already have a waitstatus. */
3691
3692 flags = proc_flags (pi);
3693 why = proc_why (pi);
3694 what = proc_what (pi);
3695
3696 if (flags & (PR_STOPPED | PR_ISTOP))
3697 {
3698 #ifdef PR_ASYNC
3699 /* If it's running async (for single_thread control),
3700 set it back to normal again. */
3701 if (flags & PR_ASYNC)
3702 if (!proc_unset_async (pi))
3703 proc_error (pi, "target_wait, unset_async", __LINE__);
3704 #endif
3705
3706 if (info_verbose)
3707 proc_prettyprint_why (why, what, 1);
3708
3709 /* The 'pid' we will return to GDB is composed of
3710 the process ID plus the lwp ID. */
3711 retval = MERGEPID (pi->pid, proc_get_current_thread (pi));
3712
3713 switch (why) {
3714 case PR_SIGNALLED:
3715 wstat = (what << 8) | 0177;
3716 break;
3717 case PR_SYSENTRY:
3718 switch (what) {
3719 #ifdef SYS_lwp_exit
3720 case SYS_lwp_exit:
3721 #endif
3722 #ifdef SYS_lwpexit
3723 case SYS_lwpexit:
3724 #endif
3725 #if defined (SYS_lwp_exit) || defined (SYS_lwpexit)
3726 printf_filtered ("[%s exited]\n",
3727 target_pid_to_str (retval));
3728 delete_thread (retval);
3729 status->kind = TARGET_WAITKIND_SPURIOUS;
3730 return retval;
3731 #endif /* _lwp_exit */
3732
3733 case SYS_exit:
3734 /* Handle SYS_exit call only */
3735 /* Stopped at entry to SYS_exit.
3736 Make it runnable, resume it, then use
3737 the wait system call to get its exit code.
3738 Proc_run_process always clears the current
3739 fault and signal.
3740 Then return its exit status. */
3741 pi->status_valid = 0;
3742 wstat = 0;
3743 /* FIXME: what we should do is return
3744 TARGET_WAITKIND_SPURIOUS. */
3745 if (!proc_run_process (pi, 0, 0))
3746 proc_error (pi, "target_wait, run_process", __LINE__);
3747 if (attach_flag)
3748 {
3749 /* Don't call wait: simulate waiting for exit,
3750 return a "success" exit code. Bogus: what if
3751 it returns something else? */
3752 wstat = 0;
3753 retval = inferior_pid; /* ??? */
3754 }
3755 else
3756 {
3757 int temp = wait (&wstat);
3758
3759 /* FIXME: shouldn't I make sure I get the right
3760 event from the right process? If (for
3761 instance) I have killed an earlier inferior
3762 process but failed to clean up after it
3763 somehow, I could get its termination event
3764 here. */
3765
3766 /* If wait returns -1, that's what we return to GDB. */
3767 if (temp < 0)
3768 retval = temp;
3769 }
3770 break;
3771 default:
3772 printf_filtered ("procfs: trapped on entry to ");
3773 proc_prettyprint_syscall (proc_what (pi), 0);
3774 printf_filtered ("\n");
3775 #ifndef PIOCSSPCACT
3776 {
3777 long i, nsysargs, *sysargs;
3778
3779 if ((nsysargs = proc_nsysarg (pi)) > 0 &&
3780 (sysargs = proc_sysargs (pi)) != NULL)
3781 {
3782 printf_filtered ("%ld syscall arguments:\n", nsysargs);
3783 for (i = 0; i < nsysargs; i++)
3784 printf_filtered ("#%ld: 0x%08x\n",
3785 i, sysargs[i]);
3786 }
3787
3788 }
3789 #endif
3790 if (status)
3791 {
3792 /* How to exit gracefully, returning "unknown event" */
3793 status->kind = TARGET_WAITKIND_SPURIOUS;
3794 return inferior_pid;
3795 }
3796 else
3797 {
3798 /* How to keep going without returning to wfi: */
3799 target_resume (pid, 0, TARGET_SIGNAL_0);
3800 goto wait_again;
3801 }
3802 break;
3803 }
3804 break;
3805 case PR_SYSEXIT:
3806 switch (what) {
3807 #ifdef SYS_exec
3808 case SYS_exec:
3809 #endif
3810 #ifdef SYS_execv
3811 case SYS_execv:
3812 #endif
3813 #ifdef SYS_execve
3814 case SYS_execve:
3815 #endif
3816 /* Hopefully this is our own "fork-child" execing
3817 the real child. Hoax this event into a trap, and
3818 GDB will see the child about to execute its start
3819 address. */
3820 wstat = (SIGTRAP << 8) | 0177;
3821 break;
3822 #ifdef SYS_lwp_create
3823 case SYS_lwp_create:
3824 #endif
3825 #ifdef SYS_lwpcreate
3826 case SYS_lwpcreate:
3827 #endif
3828 #if defined(SYS_lwp_create) || defined(SYS_lwpcreate)
3829 /*
3830 * This syscall is somewhat like fork/exec.
3831 * We will get the event twice: once for the parent LWP,
3832 * and once for the child. We should already know about
3833 * the parent LWP, but the child will be new to us. So,
3834 * whenever we get this event, if it represents a new
3835 * thread, simply add the thread to the list.
3836 */
3837
3838 /* If not in procinfo list, add it. */
3839 temp = proc_get_current_thread (pi);
3840 if (!find_procinfo (pi->pid, temp))
3841 create_procinfo (pi->pid, temp);
3842
3843 temp = MERGEPID (pi->pid, temp);
3844 /* If not in GDB's thread list, add it. */
3845 if (!in_thread_list (temp))
3846 {
3847 printf_filtered ("[New %s]\n", target_pid_to_str (temp));
3848 add_thread (temp);
3849 }
3850 /* Return to WFI, but tell it to immediately resume. */
3851 status->kind = TARGET_WAITKIND_SPURIOUS;
3852 return inferior_pid;
3853 #endif /* _lwp_create */
3854
3855 #ifdef SYS_lwp_exit
3856 case SYS_lwp_exit:
3857 #endif
3858 #ifdef SYS_lwpexit
3859 case SYS_lwpexit:
3860 #endif
3861 #if defined (SYS_lwp_exit) || defined (SYS_lwpexit)
3862 printf_filtered ("[%s exited]\n",
3863 target_pid_to_str (retval));
3864 delete_thread (retval);
3865 status->kind = TARGET_WAITKIND_SPURIOUS;
3866 return retval;
3867 #endif /* _lwp_exit */
3868
3869 #ifdef SYS_sproc
3870 case SYS_sproc:
3871 /* Nothing to do here for now. The old procfs
3872 seemed to use this event to handle threads on
3873 older (non-LWP) systems, where I'm assuming that
3874 threads were actually separate processes. Irix,
3875 maybe? Anyway, low priority for now. */
3876 #endif
3877 #ifdef SYS_fork
3878 case SYS_fork:
3879 /* FIXME: do we need to handle this? Investigate. */
3880 #endif
3881 #ifdef SYS_vfork
3882 case SYS_vfork:
3883 /* FIXME: see above. */
3884 #endif
3885 default:
3886 printf_filtered ("procfs: trapped on exit from ");
3887 proc_prettyprint_syscall (proc_what (pi), 0);
3888 printf_filtered ("\n");
3889 #ifndef PIOCSSPCACT
3890 {
3891 long i, nsysargs, *sysargs;
3892
3893 if ((nsysargs = proc_nsysarg (pi)) > 0 &&
3894 (sysargs = proc_sysargs (pi)) != NULL)
3895 {
3896 printf_filtered ("%ld syscall arguments:\n", nsysargs);
3897 for (i = 0; i < nsysargs; i++)
3898 printf_filtered ("#%ld: 0x%08x\n",
3899 i, sysargs[i]);
3900 }
3901 }
3902 #endif
3903 status->kind = TARGET_WAITKIND_SPURIOUS;
3904 return inferior_pid;
3905 }
3906 break;
3907 case PR_REQUESTED:
3908 #if 0 /* FIXME */
3909 wstat = (SIGSTOP << 8) | 0177;
3910 break;
3911 #else
3912 if (retry < 5)
3913 {
3914 printf_filtered ("Retry #%d:\n", retry);
3915 pi->status_valid = 0;
3916 goto wait_again;
3917 }
3918 else
3919 {
3920 /* If not in procinfo list, add it. */
3921 temp = proc_get_current_thread (pi);
3922 if (!find_procinfo (pi->pid, temp))
3923 create_procinfo (pi->pid, temp);
3924
3925 /* If not in GDB's thread list, add it. */
3926 temp = MERGEPID (pi->pid, temp);
3927 if (!in_thread_list (temp))
3928 {
3929 printf_filtered ("[New %s]\n",
3930 target_pid_to_str (temp));
3931 add_thread (temp);
3932 }
3933
3934 status->kind = TARGET_WAITKIND_STOPPED;
3935 status->value.sig = 0;
3936 return retval;
3937 }
3938 #endif
3939 case PR_JOBCONTROL:
3940 wstat = (what << 8) | 0177;
3941 break;
3942 case PR_FAULTED:
3943 switch (what) { /* FIXME: FAULTED_USE_SIGINFO */
3944 #ifdef FLTWATCH
3945 case FLTWATCH:
3946 wstat = (SIGTRAP << 8) | 0177;
3947 break;
3948 #endif
3949 #ifdef FLTKWATCH
3950 case FLTKWATCH:
3951 wstat = (SIGTRAP << 8) | 0177;
3952 break;
3953 #endif
3954 /* FIXME: use si_signo where possible. */
3955 case FLTPRIV:
3956 #if (FLTILL != FLTPRIV) /* avoid "duplicate case" error */
3957 case FLTILL:
3958 #endif
3959 wstat = (SIGILL << 8) | 0177;
3960 break;
3961 case FLTBPT:
3962 #if (FLTTRACE != FLTBPT) /* avoid "duplicate case" error */
3963 case FLTTRACE:
3964 #endif
3965 wstat = (SIGTRAP << 8) | 0177;
3966 break;
3967 case FLTSTACK:
3968 case FLTACCESS:
3969 #if (FLTBOUNDS != FLTSTACK) /* avoid "duplicate case" error */
3970 case FLTBOUNDS:
3971 #endif
3972 wstat = (SIGSEGV << 8) | 0177;
3973 break;
3974 case FLTIOVF:
3975 case FLTIZDIV:
3976 #if (FLTFPE != FLTIOVF) /* avoid "duplicate case" error */
3977 case FLTFPE:
3978 #endif
3979 wstat = (SIGFPE << 8) | 0177;
3980 break;
3981 case FLTPAGE: /* Recoverable page fault */
3982 default: /* FIXME: use si_signo if possible for fault */
3983 retval = -1;
3984 printf_filtered ("procfs:%d -- ", __LINE__);
3985 printf_filtered ("child stopped for unknown reason:\n");
3986 proc_prettyprint_why (why, what, 1);
3987 error ("... giving up...");
3988 break;
3989 }
3990 break; /* case PR_FAULTED: */
3991 default: /* switch (why) unmatched */
3992 printf_filtered ("procfs:%d -- ", __LINE__);
3993 printf_filtered ("child stopped for unknown reason:\n");
3994 proc_prettyprint_why (why, what, 1);
3995 error ("... giving up...");
3996 break;
3997 }
3998 /*
3999 * Got this far without error:
4000 * If retval isn't in the threads database, add it.
4001 */
4002 if (retval > 0 &&
4003 retval != inferior_pid &&
4004 !in_thread_list (retval))
4005 {
4006 /*
4007 * We have a new thread.
4008 * We need to add it both to GDB's list and to our own.
4009 * If we don't create a procinfo, resume may be unhappy
4010 * later.
4011 */
4012 printf_filtered ("[New %s]\n", target_pid_to_str (retval));
4013 add_thread (retval);
4014 if (find_procinfo (PIDGET (retval), TIDGET (retval)) == NULL)
4015 create_procinfo (PIDGET (retval), TIDGET (retval));
4016
4017 /* In addition, it's possible that this is the first
4018 * new thread we've seen, in which case we may not
4019 * have created entries for inferior_pid yet.
4020 */
4021 if (TIDGET (inferior_pid) != 0)
4022 {
4023 if (!in_thread_list (inferior_pid))
4024 add_thread (inferior_pid);
4025 if (find_procinfo (PIDGET (inferior_pid),
4026 TIDGET (inferior_pid)) == NULL)
4027 create_procinfo (PIDGET (inferior_pid),
4028 TIDGET (inferior_pid));
4029 }
4030 }
4031 }
4032 else /* flags do not indicate STOPPED */
4033 {
4034 /* surely this can't happen... */
4035 printf_filtered ("procfs:%d -- process not stopped.\n",
4036 __LINE__);
4037 proc_prettyprint_flags (flags, 1);
4038 error ("procfs: ...giving up...");
4039 }
4040 }
4041
4042 if (status)
4043 store_waitstatus (status, wstat);
4044 }
4045
4046 return retval;
4047 }
4048
4049 static int
4050 procfs_xfer_memory (memaddr, myaddr, len, dowrite, target)
4051 CORE_ADDR memaddr;
4052 char *myaddr;
4053 int len;
4054 int dowrite;
4055 struct target_ops *target; /* ignored */
4056 {
4057 procinfo *pi;
4058 int nbytes = 0;
4059
4060 /* Find procinfo for main process */
4061 pi = find_procinfo_or_die (PIDGET (inferior_pid), 0);
4062 if (pi->as_fd == 0 &&
4063 open_procinfo_files (pi, FD_AS) == 0)
4064 {
4065 proc_warn (pi, "xfer_memory, open_proc_files", __LINE__);
4066 return 0;
4067 }
4068
4069 if (lseek (pi->as_fd, (off_t) memaddr, SEEK_SET) == (off_t) memaddr)
4070 {
4071 if (dowrite)
4072 {
4073 #ifdef NEW_PROC_API
4074 PROCFS_NOTE ("write memory: ");
4075 #else
4076 PROCFS_NOTE ("write memory: \n");
4077 #endif
4078 nbytes = write (pi->as_fd, myaddr, len);
4079 }
4080 else
4081 {
4082 PROCFS_NOTE ("read memory: \n");
4083 nbytes = read (pi->as_fd, myaddr, len);
4084 }
4085 if (nbytes < 0)
4086 {
4087 nbytes = 0;
4088 }
4089 }
4090 return nbytes;
4091 }
4092
4093 /*
4094 * Function: invalidate_cache
4095 *
4096 * Called by target_resume before making child runnable.
4097 * Mark cached registers and status's invalid.
4098 * If there are "dirty" caches that need to be written back
4099 * to the child process, do that.
4100 *
4101 * File descriptors are also cached.
4102 * As they are a limited resource, we cannot hold onto them indefinitely.
4103 * However, as they are expensive to open, we don't want to throw them
4104 * away indescriminately either. As a compromise, we will keep the
4105 * file descriptors for the parent process, but discard any file
4106 * descriptors we may have accumulated for the threads.
4107 *
4108 * Return value:
4109 * As this function is called by iterate_over_threads, it always
4110 * returns zero (so that iterate_over_threads will keep iterating).
4111 */
4112
4113
4114 static int
4115 invalidate_cache (parent, pi, ptr)
4116 procinfo *parent;
4117 procinfo *pi;
4118 void *ptr;
4119 {
4120 /*
4121 * About to run the child; invalidate caches and do any other cleanup.
4122 */
4123
4124 #if 0
4125 if (pi->gregs_dirty)
4126 if (parent == NULL ||
4127 proc_get_current_thread (parent) != pi->tid)
4128 if (!proc_set_gregs (pi)) /* flush gregs cache */
4129 proc_warn (pi, "target_resume, set_gregs",
4130 __LINE__);
4131 #ifdef FP0_REGNUM
4132 if (pi->fpregs_dirty)
4133 if (parent == NULL ||
4134 proc_get_current_thread (parent) != pi->tid)
4135 if (!proc_set_fpregs (pi)) /* flush fpregs cache */
4136 proc_warn (pi, "target_resume, set_fpregs",
4137 __LINE__);
4138 #endif
4139 #endif
4140
4141 if (parent != NULL)
4142 {
4143 /* The presence of a parent indicates that this is an LWP.
4144 Close any file descriptors that it might have open.
4145 We don't do this to the master (parent) procinfo. */
4146
4147 close_procinfo_files (pi);
4148 }
4149 pi->gregs_valid = 0;
4150 pi->fpregs_valid = 0;
4151 #if 0
4152 pi->gregs_dirty = 0;
4153 pi->fpregs_dirty = 0;
4154 #endif
4155 pi->status_valid = 0;
4156 pi->threads_valid = 0;
4157
4158 return 0;
4159 }
4160
4161 #if 0
4162 /*
4163 * Function: make_signal_thread_runnable
4164 *
4165 * A callback function for iterate_over_threads.
4166 * Find the asynchronous signal thread, and make it runnable.
4167 * See if that helps matters any.
4168 */
4169
4170 static int
4171 make_signal_thread_runnable (process, pi, ptr)
4172 procinfo *process;
4173 procinfo *pi;
4174 void *ptr;
4175 {
4176 #ifdef PR_ASLWP
4177 if (proc_flags (pi) & PR_ASLWP)
4178 {
4179 if (!proc_run_process (pi, 0, -1))
4180 proc_error (pi, "make_signal_thread_runnable", __LINE__);
4181 return 1;
4182 }
4183 #endif
4184 return 0;
4185 }
4186 #endif
4187
4188 /*
4189 * Function: target_resume
4190 *
4191 * Make the child process runnable. Normally we will then call
4192 * procfs_wait and wait for it to stop again (unles gdb is async).
4193 *
4194 * Arguments:
4195 * step: if true, then arrange for the child to stop again
4196 * after executing a single instruction.
4197 * signo: if zero, then cancel any pending signal.
4198 * If non-zero, then arrange for the indicated signal
4199 * to be delivered to the child when it runs.
4200 * pid: if -1, then allow any child thread to run.
4201 * if non-zero, then allow only the indicated thread to run.
4202 ******* (not implemented yet)
4203 */
4204
4205 static void
4206 procfs_resume (pid, step, signo)
4207 int pid;
4208 int step;
4209 enum target_signal signo;
4210 {
4211 procinfo *pi, *thread;
4212 int native_signo;
4213
4214 /* 2.1:
4215 prrun.prflags |= PRSVADDR;
4216 prrun.pr_vaddr = $PC; set resume address
4217 prrun.prflags |= PRSTRACE; trace signals in pr_trace (all)
4218 prrun.prflags |= PRSFAULT; trace faults in pr_fault (all but PAGE)
4219 prrun.prflags |= PRCFAULT; clear current fault.
4220
4221 PRSTRACE and PRSFAULT can be done by other means
4222 (proc_trace_signals, proc_trace_faults)
4223 PRSVADDR is unnecessary.
4224 PRCFAULT may be replaced by a PIOCCFAULT call (proc_clear_current_fault)
4225 This basically leaves PRSTEP and PRCSIG.
4226 PRCSIG is like PIOCSSIG (proc_clear_current_signal).
4227 So basically PR_STEP is the sole argument that must be passed
4228 to proc_run_process (for use in the prrun struct by ioctl). */
4229
4230 /* Find procinfo for main process */
4231 pi = find_procinfo_or_die (PIDGET (inferior_pid), 0);
4232
4233 /* First cut: ignore pid argument */
4234 errno = 0;
4235
4236 /* Convert signal to host numbering. */
4237 if (signo == 0 ||
4238 (signo == TARGET_SIGNAL_STOP && pi->ignore_next_sigstop))
4239 native_signo = 0;
4240 else
4241 native_signo = target_signal_to_host (signo);
4242
4243 pi->ignore_next_sigstop = 0;
4244
4245 /* Running the process voids all cached registers and status. */
4246 /* Void the threads' caches first */
4247 proc_iterate_over_threads (pi, invalidate_cache, NULL);
4248 /* Void the process procinfo's caches. */
4249 invalidate_cache (NULL, pi, NULL);
4250
4251 if (pid != -1)
4252 {
4253 /* Resume a specific thread, presumably suppressing the others. */
4254 thread = find_procinfo (PIDGET (pid), TIDGET (pid));
4255 if (thread == NULL)
4256 warning ("procfs: resume can't find thread %d -- resuming all.",
4257 TIDGET (pid));
4258 else
4259 {
4260 if (thread->tid != 0)
4261 {
4262 /* We're to resume a specific thread, and not the others.
4263 * Set the child process's PR_ASYNC flag.
4264 */
4265 #ifdef PR_ASYNC
4266 if (!proc_set_async (pi))
4267 proc_error (pi, "target_resume, set_async", __LINE__);
4268 #endif
4269 #if 0
4270 proc_iterate_over_threads (pi,
4271 make_signal_thread_runnable,
4272 NULL);
4273 #endif
4274 pi = thread; /* substitute the thread's procinfo for run */
4275 }
4276 }
4277 }
4278
4279 if (!proc_run_process (pi, step, native_signo))
4280 {
4281 if (errno == EBUSY)
4282 warning ("resume: target already running. Pretend to resume, and hope for the best!\n");
4283 else
4284 proc_error (pi, "target_resume", __LINE__);
4285 }
4286 }
4287
4288 /*
4289 * Function: register_gdb_signals
4290 *
4291 * Traverse the list of signals that GDB knows about
4292 * (see "handle" command), and arrange for the target
4293 * to be stopped or not, according to these settings.
4294 *
4295 * Returns non-zero for success, zero for failure.
4296 */
4297
4298 static int
4299 register_gdb_signals (pi, signals)
4300 procinfo *pi;
4301 sigset_t *signals;
4302 {
4303 int signo;
4304
4305 for (signo = 0; signo < NSIG; signo ++)
4306 if (signal_stop_state (target_signal_from_host (signo)) == 0 &&
4307 signal_print_state (target_signal_from_host (signo)) == 0 &&
4308 signal_pass_state (target_signal_from_host (signo)) == 1)
4309 prdelset (signals, signo);
4310 else
4311 praddset (signals, signo);
4312
4313 return proc_set_traced_signals (pi, signals);
4314 }
4315
4316 /*
4317 * Function: target_notice_signals
4318 *
4319 * Set up to trace signals in the child process.
4320 */
4321
4322 static void
4323 procfs_notice_signals (pid)
4324 int pid;
4325 {
4326 sigset_t signals;
4327 procinfo *pi = find_procinfo_or_die (PIDGET (pid), 0);
4328
4329 if (proc_get_traced_signals (pi, &signals) &&
4330 register_gdb_signals (pi, &signals))
4331 return;
4332 else
4333 proc_error (pi, "notice_signals", __LINE__);
4334 }
4335
4336 /*
4337 * Function: target_files_info
4338 *
4339 * Print status information about the child process.
4340 */
4341
4342 static void
4343 procfs_files_info (ignore)
4344 struct target_ops *ignore;
4345 {
4346 printf_filtered ("\tUsing the running image of %s %s via /proc.\n",
4347 attach_flag? "attached": "child",
4348 target_pid_to_str (inferior_pid));
4349 }
4350
4351 /*
4352 * Function: target_open
4353 *
4354 * A dummy: you don't open procfs.
4355 */
4356
4357 static void
4358 procfs_open (args, from_tty)
4359 char *args;
4360 int from_tty;
4361 {
4362 error ("Use the \"run\" command to start a Unix child process.");
4363 }
4364
4365 /*
4366 * Function: target_can_run
4367 *
4368 * This tells GDB that this target vector can be invoked
4369 * for "run" or "attach".
4370 */
4371
4372 int procfs_suppress_run = 0; /* Non-zero if procfs should pretend not to
4373 be a runnable target. Used by targets
4374 that can sit atop procfs, such as solaris
4375 thread support. */
4376
4377
4378 static int
4379 procfs_can_run ()
4380 {
4381 /* This variable is controlled by modules that sit atop procfs that
4382 may layer their own process structure atop that provided here.
4383 sol-thread.c does this because of the Solaris two-level thread
4384 model. */
4385
4386 /* NOTE: possibly obsolete -- use the thread_stratum approach instead. */
4387
4388 return !procfs_suppress_run;
4389 }
4390
4391 /*
4392 * Function: target_stop
4393 *
4394 * Stop the child process asynchronously, as when the
4395 * gdb user types control-c or presses a "stop" button.
4396 *
4397 * Works by sending kill(SIGINT) to the child's process group.
4398 */
4399
4400 static void
4401 procfs_stop ()
4402 {
4403 extern pid_t inferior_process_group;
4404
4405 kill (-inferior_process_group, SIGINT);
4406 }
4407
4408 /*
4409 * Function: unconditionally_kill_inferior
4410 *
4411 * Make it die. Wait for it to die. Clean up after it.
4412 * Note: this should only be applied to the real process,
4413 * not to an LWP, because of the check for parent-process.
4414 * If we need this to work for an LWP, it needs some more logic.
4415 */
4416
4417 static void
4418 unconditionally_kill_inferior (pi)
4419 procinfo *pi;
4420 {
4421 int parent_pid;
4422
4423 parent_pid = proc_parent_pid (pi);
4424 #ifdef PROCFS_NEED_CLEAR_CURSIG_FOR_KILL
4425 /* FIXME: use access functions */
4426 /* Alpha OSF/1-3.x procfs needs a clear of the current signal
4427 before the PIOCKILL, otherwise it might generate a corrupted core
4428 file for the inferior. */
4429 if (ioctl (pi->ctl_fd, PIOCSSIG, NULL) < 0)
4430 {
4431 printf_filtered ("unconditionally_kill: SSIG failed!\n");
4432 }
4433 #endif
4434 #ifdef PROCFS_NEED_PIOCSSIG_FOR_KILL
4435 /* Alpha OSF/1-2.x procfs needs a PIOCSSIG call with a SIGKILL signal
4436 to kill the inferior, otherwise it might remain stopped with a
4437 pending SIGKILL.
4438 We do not check the result of the PIOCSSIG, the inferior might have
4439 died already. */
4440 {
4441 struct siginfo newsiginfo;
4442
4443 memset ((char *) &newsiginfo, 0, sizeof (newsiginfo));
4444 newsiginfo.si_signo = SIGKILL;
4445 newsiginfo.si_code = 0;
4446 newsiginfo.si_errno = 0;
4447 newsiginfo.si_pid = getpid ();
4448 newsiginfo.si_uid = getuid ();
4449 /* FIXME: use proc_set_current_signal */
4450 ioctl (pi->ctl_fd, PIOCSSIG, &newsiginfo);
4451 }
4452 #else /* PROCFS_NEED_PIOCSSIG_FOR_KILL */
4453 if (!proc_kill (pi, SIGKILL))
4454 proc_warn (pi, "unconditionally_kill, proc_kill", __LINE__);
4455 #endif /* PROCFS_NEED_PIOCSSIG_FOR_KILL */
4456 destroy_procinfo (pi);
4457
4458 /* If pi is GDB's child, wait for it to die. */
4459 if (parent_pid == getpid ())
4460 /* FIXME: should we use waitpid to make sure we get the right event?
4461 Should we check the returned event? */
4462 {
4463 #if 0
4464 int status, ret;
4465
4466 ret = waitpid (pi->pid, &status, 0);
4467 #else
4468 wait (NULL);
4469 #endif
4470 }
4471 }
4472
4473 /*
4474 * Function: target_kill_inferior
4475 *
4476 * We're done debugging it, and we want it to go away.
4477 * Then we want GDB to forget all about it.
4478 */
4479
4480 static void
4481 procfs_kill_inferior ()
4482 {
4483 if (inferior_pid != 0) /* ? */
4484 {
4485 /* Find procinfo for main process */
4486 procinfo *pi = find_procinfo (PIDGET (inferior_pid), 0);
4487
4488 if (pi)
4489 unconditionally_kill_inferior (pi);
4490 target_mourn_inferior ();
4491 }
4492 }
4493
4494 /*
4495 * Function: target_mourn_inferior
4496 *
4497 * Forget we ever debugged this thing!
4498 */
4499
4500 static void
4501 procfs_mourn_inferior ()
4502 {
4503 procinfo *pi;
4504
4505 if (inferior_pid != 0)
4506 {
4507 /* Find procinfo for main process */
4508 pi = find_procinfo (PIDGET (inferior_pid), 0);
4509 if (pi)
4510 destroy_procinfo (pi);
4511 }
4512 unpush_target (&procfs_ops);
4513 generic_mourn_inferior ();
4514 }
4515
4516 /*
4517 * Function: init_inferior
4518 *
4519 * When GDB forks to create a runnable inferior process,
4520 * this function is called on the parent side of the fork.
4521 * It's job is to do whatever is necessary to make the child
4522 * ready to be debugged, and then wait for the child to synchronize.
4523 */
4524
4525 static void
4526 procfs_init_inferior (pid)
4527 int pid;
4528 {
4529 procinfo *pi;
4530 sigset_t signals;
4531 int fail;
4532
4533 /* This routine called on the parent side (GDB side)
4534 after GDB forks the inferior. */
4535
4536 push_target (&procfs_ops);
4537
4538 if ((pi = create_procinfo (pid, 0)) == NULL)
4539 perror ("procfs: out of memory in 'init_inferior'");
4540
4541 if (!open_procinfo_files (pi, FD_CTL))
4542 proc_error (pi, "init_inferior, open_proc_files", __LINE__);
4543
4544 /*
4545 xmalloc // done
4546 open_procinfo_files // done
4547 link list // done
4548 prfillset (trace)
4549 procfs_notice_signals
4550 prfillset (fault)
4551 prdelset (FLTPAGE)
4552 PIOCWSTOP
4553 PIOCSFAULT
4554 */
4555
4556 /* If not stopped yet, wait for it to stop. */
4557 if (!(proc_flags (pi) & PR_STOPPED) &&
4558 !(proc_wait_for_stop (pi)))
4559 dead_procinfo (pi, "init_inferior: wait_for_stop failed", KILL);
4560
4561 /* Save some of the /proc state to be restored if we detach. */
4562 /* FIXME: Why? In case another debugger was debugging it?
4563 We're it's parent, for Ghu's sake! */
4564 if (!proc_get_traced_signals (pi, &pi->saved_sigset))
4565 proc_error (pi, "init_inferior, get_traced_signals", __LINE__);
4566 if (!proc_get_held_signals (pi, &pi->saved_sighold))
4567 proc_error (pi, "init_inferior, get_held_signals", __LINE__);
4568 if (!proc_get_traced_faults (pi, &pi->saved_fltset))
4569 proc_error (pi, "init_inferior, get_traced_faults", __LINE__);
4570 if (!proc_get_traced_sysentry (pi, &pi->saved_entryset))
4571 proc_error (pi, "init_inferior, get_traced_sysentry", __LINE__);
4572 if (!proc_get_traced_sysexit (pi, &pi->saved_exitset))
4573 proc_error (pi, "init_inferior, get_traced_sysexit", __LINE__);
4574
4575 /* Register to trace selected signals in the child. */
4576 prfillset (&signals);
4577 if (!register_gdb_signals (pi, &signals))
4578 proc_error (pi, "init_inferior, register_signals", __LINE__);
4579
4580 if ((fail = procfs_debug_inferior (pi)) != 0)
4581 proc_error (pi, "init_inferior (procfs_debug_inferior)", fail);
4582
4583 /* FIXME: logically, we should really be turning OFF run-on-last-close,
4584 and possibly even turning ON kill-on-last-close at this point. But
4585 I can't make that change without careful testing which I don't have
4586 time to do right now... */
4587 /* Turn on run-on-last-close flag so that the child
4588 will die if GDB goes away for some reason. */
4589 if (!proc_set_run_on_last_close (pi))
4590 proc_error (pi, "init_inferior, set_RLC", __LINE__);
4591
4592 /* The 'process ID' we return to GDB is composed of
4593 the actual process ID plus the lwp ID. */
4594 inferior_pid = MERGEPID (pi->pid, proc_get_current_thread (pi));
4595
4596 #ifdef START_INFERIOR_TRAPS_EXPECTED
4597 startup_inferior (START_INFERIOR_TRAPS_EXPECTED);
4598 #else
4599 /* One trap to exec the shell, one to exec the program being debugged. */
4600 startup_inferior (2);
4601 #endif /* START_INFERIOR_TRAPS_EXPECTED */
4602 }
4603
4604 /*
4605 * Function: set_exec_trap
4606 *
4607 * When GDB forks to create a new process, this function is called
4608 * on the child side of the fork before GDB exec's the user program.
4609 * Its job is to make the child minimally debuggable, so that the
4610 * parent GDB process can connect to the child and take over.
4611 * This function should do only the minimum to make that possible,
4612 * and to synchronize with the parent process. The parent process
4613 * should take care of the details.
4614 */
4615
4616 static void
4617 procfs_set_exec_trap ()
4618 {
4619 /* This routine called on the child side (inferior side)
4620 after GDB forks the inferior. It must use only local variables,
4621 because it may be sharing data space with its parent. */
4622
4623 procinfo *pi;
4624 sysset_t exitset;
4625
4626 if ((pi = create_procinfo (getpid (), 0)) == NULL)
4627 perror_with_name ("procfs: create_procinfo failed in child.");
4628
4629 if (open_procinfo_files (pi, FD_CTL) == 0)
4630 {
4631 proc_warn (pi, "set_exec_trap, open_proc_files", __LINE__);
4632 gdb_flush (gdb_stderr);
4633 /* no need to call "dead_procinfo", because we're going to exit. */
4634 _exit (127);
4635 }
4636
4637 #ifdef PRFS_STOPEXEC /* defined on OSF */
4638 /* OSF method for tracing exec syscalls. Quoting:
4639 Under Alpha OSF/1 we have to use a PIOCSSPCACT ioctl to trace
4640 exits from exec system calls because of the user level loader. */
4641 /* FIXME: make nice and maybe move into an access function. */
4642 {
4643 int prfs_flags;
4644
4645 if (ioctl (pi->ctl_fd, PIOCGSPCACT, &prfs_flags) < 0)
4646 {
4647 proc_warn (pi, "set_exec_trap (PIOCGSPCACT)", __LINE__);
4648 gdb_flush (gdb_stderr);
4649 _exit (127);
4650 }
4651 prfs_flags |= PRFS_STOPEXEC;
4652
4653 if (ioctl (pi->ctl_fd, PIOCSSPCACT, &prfs_flags) < 0)
4654 {
4655 proc_warn (pi, "set_exec_trap (PIOCSSPCACT)", __LINE__);
4656 gdb_flush (gdb_stderr);
4657 _exit (127);
4658 }
4659 }
4660 #else /* not PRFS_STOPEXEC */
4661 /* Everyone else's (except OSF) method for tracing exec syscalls */
4662 /* GW: Rationale...
4663 Not all systems with /proc have all the exec* syscalls with the same
4664 names. On the SGI, for example, there is no SYS_exec, but there
4665 *is* a SYS_execv. So, we try to account for that. */
4666
4667 premptyset (&exitset);
4668 #ifdef SYS_exec
4669 praddset (&exitset, SYS_exec);
4670 #endif
4671 #ifdef SYS_execve
4672 praddset (&exitset, SYS_execve);
4673 #endif
4674 #ifdef SYS_execv
4675 praddset (&exitset, SYS_execv);
4676 #endif
4677
4678 if (!proc_set_traced_sysexit (pi, &exitset))
4679 {
4680 proc_warn (pi, "set_exec_trap, set_traced_sysexit", __LINE__);
4681 gdb_flush (gdb_stderr);
4682 _exit (127);
4683 }
4684 #endif /* PRFS_STOPEXEC */
4685
4686 /* FIXME: should this be done in the parent instead? */
4687 /* Turn off inherit on fork flag so that all grand-children
4688 of gdb start with tracing flags cleared. */
4689 if (!proc_unset_inherit_on_fork (pi))
4690 proc_warn (pi, "set_exec_trap, unset_inherit", __LINE__);
4691
4692 /* Turn off run on last close flag, so that the child process
4693 cannot run away just because we close our handle on it.
4694 We want it to wait for the parent to attach. */
4695 if (!proc_unset_run_on_last_close (pi))
4696 proc_warn (pi, "set_exec_trap, unset_RLC", __LINE__);
4697
4698 /* FIXME: No need to destroy the procinfo --
4699 we have our own address space, and we're about to do an exec! */
4700 /*destroy_procinfo (pi);*/
4701 }
4702
4703 /*
4704 * Function: create_inferior
4705 *
4706 * This function is called BEFORE gdb forks the inferior process.
4707 * Its only real responsibility is to set things up for the fork,
4708 * and tell GDB which two functions to call after the fork (one
4709 * for the parent, and one for the child).
4710 *
4711 * This function does a complicated search for a unix shell program,
4712 * which it then uses to parse arguments and environment variables
4713 * to be sent to the child. I wonder whether this code could not
4714 * be abstracted out and shared with other unix targets such as
4715 * infptrace?
4716 */
4717
4718 static void
4719 procfs_create_inferior (exec_file, allargs, env)
4720 char *exec_file;
4721 char *allargs;
4722 char **env;
4723 {
4724 char *shell_file = getenv ("SHELL");
4725 char *tryname;
4726 if (shell_file != NULL && strchr (shell_file, '/') == NULL)
4727 {
4728
4729 /* We will be looking down the PATH to find shell_file. If we
4730 just do this the normal way (via execlp, which operates by
4731 attempting an exec for each element of the PATH until it
4732 finds one which succeeds), then there will be an exec for
4733 each failed attempt, each of which will cause a PR_SYSEXIT
4734 stop, and we won't know how to distinguish the PR_SYSEXIT's
4735 for these failed execs with the ones for successful execs
4736 (whether the exec has succeeded is stored at that time in the
4737 carry bit or some such architecture-specific and
4738 non-ABI-specified place).
4739
4740 So I can't think of anything better than to search the PATH
4741 now. This has several disadvantages: (1) There is a race
4742 condition; if we find a file now and it is deleted before we
4743 exec it, we lose, even if the deletion leaves a valid file
4744 further down in the PATH, (2) there is no way to know exactly
4745 what an executable (in the sense of "capable of being
4746 exec'd") file is. Using access() loses because it may lose
4747 if the caller is the superuser; failing to use it loses if
4748 there are ACLs or some such. */
4749
4750 char *p;
4751 char *p1;
4752 /* FIXME-maybe: might want "set path" command so user can change what
4753 path is used from within GDB. */
4754 char *path = getenv ("PATH");
4755 int len;
4756 struct stat statbuf;
4757
4758 if (path == NULL)
4759 path = "/bin:/usr/bin";
4760
4761 tryname = alloca (strlen (path) + strlen (shell_file) + 2);
4762 for (p = path; p != NULL; p = p1 ? p1 + 1: NULL)
4763 {
4764 p1 = strchr (p, ':');
4765 if (p1 != NULL)
4766 len = p1 - p;
4767 else
4768 len = strlen (p);
4769 strncpy (tryname, p, len);
4770 tryname[len] = '\0';
4771 strcat (tryname, "/");
4772 strcat (tryname, shell_file);
4773 if (access (tryname, X_OK) < 0)
4774 continue;
4775 if (stat (tryname, &statbuf) < 0)
4776 continue;
4777 if (!S_ISREG (statbuf.st_mode))
4778 /* We certainly need to reject directories. I'm not quite
4779 as sure about FIFOs, sockets, etc., but I kind of doubt
4780 that people want to exec() these things. */
4781 continue;
4782 break;
4783 }
4784 if (p == NULL)
4785 /* Not found. This must be an error rather than merely passing
4786 the file to execlp(), because execlp() would try all the
4787 exec()s, causing GDB to get confused. */
4788 error ("procfs:%d -- Can't find shell %s in PATH",
4789 __LINE__, shell_file);
4790
4791 shell_file = tryname;
4792 }
4793
4794 fork_inferior (exec_file, allargs, env, procfs_set_exec_trap,
4795 procfs_init_inferior, NULL, shell_file);
4796
4797 /* We are at the first instruction we care about. */
4798 /* Pedal to the metal... */
4799
4800 proceed ((CORE_ADDR) -1, TARGET_SIGNAL_0, 0);
4801 }
4802
4803 /*
4804 * Function: notice_thread
4805 *
4806 * Callback for find_new_threads.
4807 * Calls "add_thread".
4808 */
4809
4810 static int
4811 procfs_notice_thread (pi, thread, ptr)
4812 procinfo *pi;
4813 procinfo *thread;
4814 void *ptr;
4815 {
4816 int gdb_threadid = MERGEPID (pi->pid, thread->tid);
4817
4818 if (!in_thread_list (gdb_threadid))
4819 add_thread (gdb_threadid);
4820
4821 return 0;
4822 }
4823
4824 /*
4825 * Function: target_find_new_threads
4826 *
4827 * Query all the threads that the target knows about,
4828 * and give them back to GDB to add to its list.
4829 */
4830
4831 void
4832 procfs_find_new_threads ()
4833 {
4834 procinfo *pi;
4835
4836 /* Find procinfo for main process */
4837 pi = find_procinfo_or_die (PIDGET (inferior_pid), 0);
4838 proc_update_threads (pi);
4839 proc_iterate_over_threads (pi, procfs_notice_thread, NULL);
4840 }
4841
4842 /*
4843 * Function: target_thread_alive
4844 *
4845 * Return true if the thread is still 'alive'.
4846 *
4847 * This guy doesn't really seem to be doing his job.
4848 * Got to investigate how to tell when a thread is really gone.
4849 */
4850
4851 static int
4852 procfs_thread_alive (pid)
4853 int pid;
4854 {
4855 int proc, thread;
4856 procinfo *pi;
4857
4858 proc = PIDGET (pid);
4859 thread = TIDGET (pid);
4860 /* If I don't know it, it ain't alive! */
4861 if ((pi = find_procinfo (proc, thread)) == NULL)
4862 return 0;
4863
4864 /* If I can't get its status, it ain't alive!
4865 What's more, I need to forget about it! */
4866 if (!proc_get_status (pi))
4867 {
4868 destroy_procinfo (pi);
4869 return 0;
4870 }
4871 /* I couldn't have got its status if it weren't alive, so it's alive. */
4872 return 1;
4873 }
4874
4875 /*
4876 * Function: target_pid_to_str
4877 *
4878 * Return a string to be used to identify the thread in
4879 * the "info threads" display.
4880 */
4881
4882 char *
4883 procfs_pid_to_str (pid)
4884 int pid;
4885 {
4886 static char buf[80];
4887 int proc, thread;
4888 procinfo *pi;
4889
4890 proc = PIDGET (pid);
4891 thread = TIDGET (pid);
4892 pi = find_procinfo (proc, thread);
4893
4894 if (thread == 0)
4895 sprintf (buf, "Process %d", proc);
4896 else
4897 sprintf (buf, "LWP %d", thread);
4898 return &buf[0];
4899 }
4900
4901 /*
4902 * Function: procfs_set_watchpoint
4903 * Insert a watchpoint
4904 */
4905
4906 int
4907 procfs_set_watchpoint (pid, addr, len, rwflag, after)
4908 int pid;
4909 CORE_ADDR addr;
4910 int len;
4911 int rwflag;
4912 int after;
4913 {
4914 #ifndef UNIXWARE
4915 int pflags = 0;
4916 procinfo *pi;
4917
4918 pi = find_procinfo_or_die (pid == -1 ?
4919 PIDGET (inferior_pid) : PIDGET (pid), 0);
4920
4921 /* Translate from GDB's flags to /proc's */
4922 if (len > 0) /* len == 0 means delete watchpoint */
4923 {
4924 switch (rwflag) { /* FIXME: need an enum! */
4925 case hw_write: /* default watchpoint (write) */
4926 pflags = WRITE_WATCHFLAG;
4927 break;
4928 case hw_read: /* read watchpoint */
4929 pflags = READ_WATCHFLAG;
4930 break;
4931 case hw_access: /* access watchpoint */
4932 pflags = READ_WATCHFLAG | WRITE_WATCHFLAG;
4933 break;
4934 case hw_execute: /* execution HW breakpoint */
4935 pflags = EXEC_WATCHFLAG;
4936 break;
4937 default: /* Something weird. Return error. */
4938 return -1;
4939 }
4940 if (after) /* Stop after r/w access is completed. */
4941 pflags |= AFTER_WATCHFLAG;
4942 }
4943
4944 if (!proc_set_watchpoint (pi, addr, len, pflags))
4945 {
4946 if (errno == E2BIG) /* Typical error for no resources */
4947 return -1; /* fail */
4948 /* GDB may try to remove the same watchpoint twice.
4949 If a remove request returns no match, don't error. */
4950 if (errno == ESRCH && len == 0)
4951 return 0; /* ignore */
4952 proc_error (pi, "set_watchpoint", __LINE__);
4953 }
4954 #endif
4955 return 0;
4956 }
4957
4958 /*
4959 * Function: stopped_by_watchpoint
4960 *
4961 * Returns non-zero if process is stopped on a hardware watchpoint fault,
4962 * else returns zero.
4963 */
4964
4965 int
4966 procfs_stopped_by_watchpoint (pid)
4967 int pid;
4968 {
4969 procinfo *pi;
4970
4971 pi = find_procinfo_or_die (pid == -1 ?
4972 PIDGET (inferior_pid) : PIDGET (pid), 0);
4973 if (proc_flags (pi) & (PR_STOPPED | PR_ISTOP))
4974 {
4975 if (proc_why (pi) == PR_FAULTED)
4976 {
4977 #ifdef FLTWATCH
4978 if (proc_what (pi) == FLTWATCH)
4979 return 1;
4980 #endif
4981 #ifdef FLTKWATCH
4982 if (proc_what (pi) == FLTKWATCH)
4983 return 1;
4984 #endif
4985 }
4986 }
4987 return 0;
4988 }
4989
4990 #ifdef TM_I386SOL2_H
4991 /*
4992 * Function: procfs_find_LDT_entry
4993 *
4994 * Input:
4995 * int pid; // The GDB-style pid-plus-LWP.
4996 *
4997 * Return:
4998 * pointer to the corresponding LDT entry.
4999 */
5000
5001 struct ssd *
5002 procfs_find_LDT_entry (pid)
5003 int pid;
5004 {
5005 gdb_gregset_t *gregs;
5006 int key;
5007 procinfo *pi;
5008
5009 /* Find procinfo for the lwp. */
5010 if ((pi = find_procinfo (PIDGET (pid), TIDGET (pid))) == NULL)
5011 {
5012 warning ("procfs_find_LDT_entry: could not find procinfi for %d.",
5013 pid);
5014 return NULL;
5015 }
5016 /* get its general registers. */
5017 if ((gregs = proc_get_gregs (pi)) == NULL)
5018 {
5019 warning ("procfs_find_LDT_entry: could not read gregs for %d.",
5020 pid);
5021 return NULL;
5022 }
5023 /* Now extract the GS register's lower 16 bits. */
5024 key = (*gregs)[GS] & 0xffff;
5025
5026 /* Find the matching entry and return it. */
5027 return proc_get_LDT_entry (pi, key);
5028 }
5029 #endif /* TM_I386SOL2_H */
5030
5031
5032
5033 static void
5034 info_proc_cmd (args, from_tty)
5035 char *args;
5036 int from_tty;
5037 {
5038 struct cleanup *old_chain;
5039 procinfo *process = NULL;
5040 procinfo *thread = NULL;
5041 char **argv = NULL;
5042 char *tmp = NULL;
5043 int pid = 0;
5044 int tid = 0;
5045
5046 old_chain = make_cleanup (null_cleanup, 0);
5047 if (args)
5048 {
5049 if ((argv = buildargv (args)) == NULL)
5050 nomem (0);
5051 else
5052 make_cleanup ((make_cleanup_func) freeargv, argv);
5053 }
5054 while (argv != NULL && *argv != NULL)
5055 {
5056 if (isdigit (argv[0][0]))
5057 {
5058 pid = strtoul (argv[0], &tmp, 10);
5059 if (*tmp == '/')
5060 tid = strtoul (++tmp, NULL, 10);
5061 }
5062 else if (argv[0][0] == '/')
5063 {
5064 tid = strtoul (argv[0] + 1, NULL, 10);
5065 }
5066 else
5067 {
5068 /* [...] */
5069 }
5070 argv++;
5071 }
5072 if (pid == 0)
5073 pid = PIDGET (inferior_pid);
5074 if (pid == 0)
5075 error ("No current process: you must name one.");
5076 else
5077 {
5078 /* Have pid, will travel.
5079 First see if it's a process we're already debugging. */
5080 process = find_procinfo (pid, 0);
5081 if (process == NULL)
5082 {
5083 /* No. So open a procinfo for it, but
5084 remember to close it again when finished. */
5085 process = create_procinfo (pid, 0);
5086 make_cleanup ((make_cleanup_func) destroy_procinfo, process);
5087 if (!open_procinfo_files (process, FD_CTL))
5088 proc_error (process, "info proc, open_procinfo_files", __LINE__);
5089 }
5090 }
5091 if (tid != 0)
5092 thread = create_procinfo (pid, tid);
5093
5094 if (process)
5095 {
5096 printf_filtered ("process %d flags:\n", process->pid);
5097 proc_prettyprint_flags (proc_flags (process), 1);
5098 if (proc_flags (process) & (PR_STOPPED | PR_ISTOP))
5099 proc_prettyprint_why (proc_why (process), proc_what (process), 1);
5100 if (proc_get_nthreads (process) > 1)
5101 printf_filtered ("Process has %d threads.\n",
5102 proc_get_nthreads (process));
5103 }
5104 if (thread)
5105 {
5106 printf_filtered ("thread %d flags:\n", thread->tid);
5107 proc_prettyprint_flags (proc_flags (thread), 1);
5108 if (proc_flags (thread) & (PR_STOPPED | PR_ISTOP))
5109 proc_prettyprint_why (proc_why (thread), proc_what (thread), 1);
5110 }
5111
5112 do_cleanups (old_chain);
5113 }
5114
5115 static void
5116 proc_trace_syscalls (args, from_tty, entry_or_exit, mode)
5117 char *args;
5118 int from_tty;
5119 int entry_or_exit;
5120 int mode;
5121 {
5122 procinfo *pi;
5123 sysset_t *sysset;
5124 int syscallnum = 0;
5125
5126 if (inferior_pid <= 0)
5127 error ("you must be debugging a process to use this command.");
5128
5129 if (args == NULL || args[0] == 0)
5130 error_no_arg ("system call to trace");
5131
5132 pi = find_procinfo_or_die (PIDGET (inferior_pid), 0);
5133 if (isdigit (args[0]))
5134 {
5135 syscallnum = atoi (args);
5136 if (entry_or_exit == PR_SYSENTRY)
5137 sysset = proc_get_traced_sysentry (pi, NULL);
5138 else
5139 sysset = proc_get_traced_sysexit (pi, NULL);
5140
5141 if (sysset == NULL)
5142 proc_error (pi, "proc-trace, get_traced_sysset", __LINE__);
5143
5144 if (mode == FLAG_SET)
5145 praddset (sysset, syscallnum);
5146 else
5147 prdelset (sysset, syscallnum);
5148
5149 if (entry_or_exit == PR_SYSENTRY)
5150 {
5151 if (!proc_set_traced_sysentry (pi, sysset))
5152 proc_error (pi, "proc-trace, set_traced_sysentry", __LINE__);
5153 }
5154 else
5155 {
5156 if (!proc_set_traced_sysexit (pi, sysset))
5157 proc_error (pi, "proc-trace, set_traced_sysexit", __LINE__);
5158 }
5159 }
5160 }
5161
5162 static void
5163 proc_trace_sysentry_cmd (args, from_tty)
5164 char *args;
5165 int from_tty;
5166 {
5167 proc_trace_syscalls (args, from_tty, PR_SYSENTRY, FLAG_SET);
5168 }
5169
5170 static void
5171 proc_trace_sysexit_cmd (args, from_tty)
5172 char *args;
5173 int from_tty;
5174 {
5175 proc_trace_syscalls (args, from_tty, PR_SYSEXIT, FLAG_SET);
5176 }
5177
5178 static void
5179 proc_untrace_sysentry_cmd (args, from_tty)
5180 char *args;
5181 int from_tty;
5182 {
5183 proc_trace_syscalls (args, from_tty, PR_SYSENTRY, FLAG_RESET);
5184 }
5185
5186 static void
5187 proc_untrace_sysexit_cmd (args, from_tty)
5188 char *args;
5189 int from_tty;
5190 {
5191 proc_trace_syscalls (args, from_tty, PR_SYSEXIT, FLAG_RESET);
5192 }
5193
5194
5195 int
5196 mapping_test (fd, core_addr)
5197 int fd;
5198 CORE_ADDR core_addr;
5199 {
5200 printf ("File descriptor %d, base address 0x%08x\n", fd, core_addr);
5201 if (fd > 0)
5202 close (fd);
5203 return 0;
5204 }
5205
5206 void
5207 test_mapping_cmd (args, from_tty)
5208 char *args;
5209 int from_tty;
5210 {
5211 int ret;
5212 ret = proc_iterate_over_mappings (mapping_test);
5213 printf ("iterate_over_mappings returned %d.\n", ret);
5214 }
5215
5216 void
5217 _initialize_procfs ()
5218 {
5219 init_procfs_ops ();
5220 add_target (&procfs_ops);
5221 add_info ("proc", info_proc_cmd,
5222 "Show /proc process information about any running process.\
5223 Default is the process being debugged.");
5224 add_com ("proc-trace-entry", no_class, proc_trace_sysentry_cmd,
5225 "Give a trace of entries into the syscall.");
5226 add_com ("proc-trace-exit", no_class, proc_trace_sysexit_cmd,
5227 "Give a trace of exits from the syscall.");
5228 add_com ("proc-untrace-entry", no_class, proc_untrace_sysentry_cmd,
5229 "Cancel a trace of entries into the syscall.");
5230 add_com ("proc-untrace-exit", no_class, proc_untrace_sysexit_cmd,
5231 "Cancel a trace of exits from the syscall.");
5232
5233 add_com ("test-mapping", no_class, test_mapping_cmd,
5234 "test iterate-over-mappings");
5235 }
5236
5237 /* =================== END, GDB "MODULE" =================== */
5238
5239
5240
5241 /* miscelaneous stubs: */
5242 /* The following satisfy a few random symbols mostly created by */
5243 /* the solaris threads implementation, which I will chase down */
5244 /* later. */
5245
5246 /*
5247 * Return a pid for which we guarantee
5248 * we will be able to find a 'live' procinfo.
5249 */
5250
5251 int
5252 procfs_first_available ()
5253 {
5254 if (procinfo_list)
5255 return procinfo_list->pid;
5256 else
5257 return -1;
5258 }