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Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001/*
2 * Copyright (c) 1991, 1992 Paul Kranenburg <pk@cs.few.eur.nl>
3 * Copyright (c) 1993 Branko Lankester <branko@hacktic.nl>
4 * Copyright (c) 1993, 1994, 1995, 1996 Rick Sladkey <jrs@world.std.com>
Wichert Akkerman4dc8a2a1999-12-23 14:20:14 +00005 * Copyright (c) 1996-1999 Wichert Akkerman <wichert@cistron.nl>
6 * Copyright (c) 1999 IBM Deutschland Entwicklung GmbH, IBM Corporation
7 * Linux for s390 port by D.J. Barrow
8 * <barrow_dj@mail.yahoo.com,djbarrow@de.ibm.com>
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00009 * All rights reserved.
10 *
11 * Redistribution and use in source and binary forms, with or without
12 * modification, are permitted provided that the following conditions
13 * are met:
14 * 1. Redistributions of source code must retain the above copyright
15 * notice, this list of conditions and the following disclaimer.
16 * 2. Redistributions in binary form must reproduce the above copyright
17 * notice, this list of conditions and the following disclaimer in the
18 * documentation and/or other materials provided with the distribution.
19 * 3. The name of the author may not be used to endorse or promote products
20 * derived from this software without specific prior written permission.
21 *
22 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
23 * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
24 * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
25 * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
26 * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
27 * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
28 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
29 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
30 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
31 * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
32 *
33 * $Id$
34 */
35
36#include "defs.h"
37
Roland McGrathd81f1d92003-01-09 06:53:34 +000038#include <signal.h>
39#include <sys/syscall.h>
Wichert Akkerman76baf7c1999-02-19 00:21:36 +000040#include <sys/user.h>
41#include <sys/param.h>
42#include <fcntl.h>
John Hughes1d08dcf2001-07-10 13:48:44 +000043#if HAVE_SYS_UIO_H
44#include <sys/uio.h>
45#endif
Wichert Akkerman76baf7c1999-02-19 00:21:36 +000046#ifdef SUNOS4
47#include <machine/reg.h>
48#include <a.out.h>
49#include <link.h>
50#endif /* SUNOS4 */
Wichert Akkerman36915a11999-07-13 15:45:02 +000051
Wichert Akkerman43a74822000-06-27 17:33:32 +000052#if defined(linux) && (__GLIBC__ < 2 || (__GLIBC__ == 2 && __GLIBC_MINOR__ < 1))
Wichert Akkerman36915a11999-07-13 15:45:02 +000053#include <linux/ptrace.h>
Roland McGrath1e85cf92002-12-16 20:40:54 +000054#endif
Wichert Akkerman36915a11999-07-13 15:45:02 +000055
Wichert Akkerman8b1b40c2000-02-03 21:58:30 +000056#if defined(LINUX) && defined(IA64)
Roland McGrathd81f1d92003-01-09 06:53:34 +000057# include <asm/ptrace_offsets.h>
58# include <asm/rse.h>
Wichert Akkerman8b1b40c2000-02-03 21:58:30 +000059#endif
60
Wichert Akkerman36915a11999-07-13 15:45:02 +000061#ifdef HAVE_SYS_REG_H
62#include <sys/reg.h>
Wichert Akkerman76baf7c1999-02-19 00:21:36 +000063# define PTRACE_PEEKUSR PTRACE_PEEKUSER
Wichert Akkermanfaf72222000-02-19 23:59:03 +000064#elif defined(HAVE_LINUX_PTRACE_H)
65#undef PTRACE_SYSCALL
Roland McGrathce9f0742004-03-01 21:29:22 +000066# ifdef HAVE_STRUCT_IA64_FPREG
67# define ia64_fpreg XXX_ia64_fpreg
68# endif
69# ifdef HAVE_STRUCT_PT_ALL_USER_REGS
70# define pt_all_user_regs XXX_pt_all_user_regs
71# endif
Wichert Akkermanfaf72222000-02-19 23:59:03 +000072#include <linux/ptrace.h>
Roland McGrathce9f0742004-03-01 21:29:22 +000073# undef ia64_fpreg
74# undef pt_all_user_regs
Wichert Akkerman2e2553a1999-05-09 00:29:58 +000075#endif
76
Wichert Akkerman76baf7c1999-02-19 00:21:36 +000077#ifdef SUNOS4_KERNEL_ARCH_KLUDGE
78#include <sys/utsname.h>
79#endif /* SUNOS4_KERNEL_ARCH_KLUDGE */
80
Roland McGrath6d1a65c2004-07-12 07:44:08 +000081#if defined(LINUXSPARC)
Wichert Akkerman9ce1a631999-08-29 23:15:07 +000082
Roland McGrath4db26242003-01-30 20:15:19 +000083# define fpq kernel_fpq
84# define fq kernel_fq
85# define fpu kernel_fpu
86# include <asm/reg.h>
87# undef fpq
88# undef fq
89# undef fpu
Wichert Akkerman9ce1a631999-08-29 23:15:07 +000090
Roland McGrath6d1a65c2004-07-12 07:44:08 +000091#if defined (SPARC64)
92# define r_pc r_tpc
93# undef PTRACE_GETREGS
94# define PTRACE_GETREGS PTRACE_GETREGS64
95# undef PTRACE_SETREGS
96# define PTRACE_SETREGS PTRACE_SETREGS64
97#endif /* SPARC64 */
98
Wichert Akkerman9ce1a631999-08-29 23:15:07 +000099#if !defined(__GLIBC__)
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000100
101#include <linux/unistd.h>
102
103#define _hack_syscall5(type,name,type1,arg1,type2,arg2,type3,arg3,type4,arg4,\
104 type5,arg5,syscall) \
105type name (type1 arg1,type2 arg2,type3 arg3,type4 arg4,type5 arg5) \
106{ \
107 long __res; \
108\
109__asm__ volatile ("or %%g0, %1, %%o0\n\t" \
110 "or %%g0, %2, %%o1\n\t" \
111 "or %%g0, %3, %%o2\n\t" \
112 "or %%g0, %4, %%o3\n\t" \
113 "or %%g0, %5, %%o4\n\t" \
114 "or %%g0, %6, %%g1\n\t" \
Roland McGrath6d1a65c2004-07-12 07:44:08 +0000115#if defined (SPARC64)
116 "t 0x6d\n\t" \
117#else
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000118 "t 0x10\n\t" \
Roland McGrath6d1a65c2004-07-12 07:44:08 +0000119#endif
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000120 "bcc 1f\n\t" \
121 "or %%g0, %%o0, %0\n\t" \
122 "sub %%g0, %%o0, %0\n\t" \
123 "1:\n\t" \
124 : "=r" (__res) \
125 : "0" ((long)(arg1)),"1" ((long)(arg2)), \
126 "2" ((long)(arg3)),"3" ((long)(arg4)),"4" ((long)(arg5)), \
127 "i" (__NR_##syscall) \
128 : "g1", "o0", "o1", "o2", "o3", "o4"); \
129if (__res>=0) \
130 return (type) __res; \
131errno = -__res; \
132return -1; \
133}
134
135static _hack_syscall5(int,_ptrace,int,__request,int,__pid,int,__addr,int,__data,int,__addr2,ptrace)
136
137#define _ptrace
138
139#endif
140
Wichert Akkerman9ce1a631999-08-29 23:15:07 +0000141#endif
142
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000143/* macros */
144#ifndef MAX
145#define MAX(a,b) (((a) > (b)) ? (a) : (b))
146#endif
147#ifndef MIN
148#define MIN(a,b) (((a) < (b)) ? (a) : (b))
149#endif
150
Roland McGratha4d48532005-06-08 20:45:28 +0000151#if 0
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000152void
153tv_tv(tv, a, b)
154struct timeval *tv;
155int a;
156int b;
157{
158 tv->tv_sec = a;
159 tv->tv_usec = b;
160}
Roland McGratha4d48532005-06-08 20:45:28 +0000161#endif
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000162
163int
164tv_nz(a)
165struct timeval *a;
166{
167 return a->tv_sec || a->tv_usec;
168}
169
170int
171tv_cmp(a, b)
172struct timeval *a, *b;
173{
174 if (a->tv_sec < b->tv_sec
175 || (a->tv_sec == b->tv_sec && a->tv_usec < b->tv_usec))
176 return -1;
177 if (a->tv_sec > b->tv_sec
178 || (a->tv_sec == b->tv_sec && a->tv_usec > b->tv_usec))
179 return 1;
180 return 0;
181}
182
183double
184tv_float(tv)
185struct timeval *tv;
186{
187 return tv->tv_sec + tv->tv_usec/1000000.0;
188}
189
190void
191tv_add(tv, a, b)
192struct timeval *tv, *a, *b;
193{
194 tv->tv_sec = a->tv_sec + b->tv_sec;
195 tv->tv_usec = a->tv_usec + b->tv_usec;
Roland McGrath58372f52007-07-24 01:38:22 +0000196 if (tv->tv_usec >= 1000000) {
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000197 tv->tv_sec++;
198 tv->tv_usec -= 1000000;
199 }
200}
201
202void
203tv_sub(tv, a, b)
204struct timeval *tv, *a, *b;
205{
206 tv->tv_sec = a->tv_sec - b->tv_sec;
207 tv->tv_usec = a->tv_usec - b->tv_usec;
208 if (((long) tv->tv_usec) < 0) {
209 tv->tv_sec--;
210 tv->tv_usec += 1000000;
211 }
212}
213
214void
215tv_div(tv, a, n)
216struct timeval *tv, *a;
217int n;
218{
219 tv->tv_usec = (a->tv_sec % n * 1000000 + a->tv_usec + n / 2) / n;
220 tv->tv_sec = a->tv_sec / n + tv->tv_usec / 1000000;
221 tv->tv_usec %= 1000000;
222}
223
224void
225tv_mul(tv, a, n)
226struct timeval *tv, *a;
227int n;
228{
229 tv->tv_usec = a->tv_usec * n;
Dmitry V. Levinfefdd972007-06-29 21:25:56 +0000230 tv->tv_sec = a->tv_sec * n + tv->tv_usec / 1000000;
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000231 tv->tv_usec %= 1000000;
232}
233
Dmitry V. Levinab9008b2007-01-11 22:05:04 +0000234const char *
235xlookup(const struct xlat *xlat, int val)
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000236{
237 for (; xlat->str != NULL; xlat++)
238 if (xlat->val == val)
239 return xlat->str;
240 return NULL;
241}
242
243/*
244 * Print entry in struct xlat table, if there.
245 */
246void
Dmitry V. Levinab9008b2007-01-11 22:05:04 +0000247printxval(const struct xlat *xlat, int val, const char *dflt)
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000248{
Dmitry V. Levinab9008b2007-01-11 22:05:04 +0000249 const char *str = xlookup(xlat, val);
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000250
251 if (str)
252 tprintf("%s", str);
253 else
254 tprintf("%#x /* %s */", val, dflt);
255}
256
257/*
258 * Interpret `xlat' as an array of flags
259 * print the entries whose bits are on in `flags'
260 * return # of flags printed.
261 */
262int
263addflags(xlat, flags)
Roland McGrathd9f816f2004-09-04 03:39:20 +0000264const struct xlat *xlat;
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000265int flags;
266{
267 int n;
268
269 for (n = 0; xlat->str; xlat++) {
270 if (xlat->val && (flags & xlat->val) == xlat->val) {
271 tprintf("|%s", xlat->str);
272 flags &= ~xlat->val;
273 n++;
274 }
275 }
276 if (flags) {
277 tprintf("|%#x", flags);
278 n++;
279 }
280 return n;
281}
282
Roland McGratha6c0d8c2007-11-01 21:46:22 +0000283/*
284 * Interpret `xlat' as an array of flags/
285 * Print to static string the entries whose bits are on in `flags'
286 * Return static string.
287 */
288const char *
289sprintflags(const char *prefix, const struct xlat *xlat, int flags)
290{
291 static char outstr[1024];
292 int found = 0;
293
294 strcpy(outstr, prefix);
295
296 for (; xlat->str; xlat++) {
297 if ((flags & xlat->val) == xlat->val) {
298 if (found)
299 strcat(outstr, "|");
300 strcat(outstr, xlat->str);
301 flags &= ~xlat->val;
302 found = 1;
303 }
304 }
305 if (flags) {
306 if (found)
307 strcat(outstr, "|");
308 sprintf(outstr + strlen(outstr), "%#x", flags);
309 }
310
311 return outstr;
312}
313
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000314int
Roland McGrathb2dee132005-06-01 19:02:36 +0000315printflags(xlat, flags, dflt)
Roland McGrathd9f816f2004-09-04 03:39:20 +0000316const struct xlat *xlat;
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000317int flags;
Roland McGrathb2dee132005-06-01 19:02:36 +0000318const char *dflt;
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000319{
320 int n;
321 char *sep;
322
323 if (flags == 0 && xlat->val == 0) {
324 tprintf("%s", xlat->str);
325 return 1;
326 }
327
328 sep = "";
329 for (n = 0; xlat->str; xlat++) {
330 if (xlat->val && (flags & xlat->val) == xlat->val) {
331 tprintf("%s%s", sep, xlat->str);
332 flags &= ~xlat->val;
333 sep = "|";
334 n++;
335 }
336 }
Roland McGrathb2dee132005-06-01 19:02:36 +0000337
338 if (n) {
339 if (flags) {
340 tprintf("%s%#x", sep, flags);
341 n++;
342 }
343 } else {
344 if (flags) {
345 tprintf("%#x", flags);
346 if (dflt)
347 tprintf(" /* %s */", dflt);
348 } else {
349 if (dflt)
350 tprintf("0");
351 }
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000352 }
Roland McGrathb2dee132005-06-01 19:02:36 +0000353
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000354 return n;
355}
356
357void
358printnum(tcp, addr, fmt)
359struct tcb *tcp;
360long addr;
361char *fmt;
362{
Roland McGratheb285352003-01-14 09:59:00 +0000363 long num;
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000364
365 if (!addr) {
366 tprintf("NULL");
367 return;
368 }
369 if (umove(tcp, addr, &num) < 0) {
370 tprintf("%#lx", addr);
371 return;
372 }
373 tprintf("[");
374 tprintf(fmt, num);
375 tprintf("]");
376}
377
Roland McGrath6bc12202003-11-13 22:32:27 +0000378void
Roland McGrath9814a942005-07-04 23:28:10 +0000379printnum_int(tcp, addr, fmt)
380struct tcb *tcp;
381long addr;
382char *fmt;
383{
384 int num;
385
386 if (!addr) {
387 tprintf("NULL");
388 return;
389 }
390 if (umove(tcp, addr, &num) < 0) {
391 tprintf("%#lx", addr);
392 return;
393 }
394 tprintf("[");
395 tprintf(fmt, num);
396 tprintf("]");
397}
398
399void
Roland McGrath6bc12202003-11-13 22:32:27 +0000400printuid(text, uid)
401const char *text;
402unsigned long uid;
403{
404 tprintf("%s", text);
405 tprintf((uid == -1) ? "%ld" : "%lu", uid);
406}
407
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000408static char path[MAXPATHLEN + 1];
409
Roland McGrath6d970322007-11-01 23:53:59 +0000410static int
Dmitry V. Levinbea02032007-10-08 21:48:01 +0000411string_quote(const char *instr, char *outstr, int len, int size)
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000412{
Dmitry V. Levinbea02032007-10-08 21:48:01 +0000413 const unsigned char *ustr = (const unsigned char *) instr;
414 char *s = outstr;
415 int usehex = 0, c, i;
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000416
Dmitry V. Levinbea02032007-10-08 21:48:01 +0000417 if (xflag > 1)
418 usehex = 1;
419 else if (xflag) {
420 for (i = 0; i < size; ++i) {
421 c = ustr[i];
Roland McGrath6d970322007-11-01 23:53:59 +0000422 if (len < 0 && i == size - 2 && c != '\0')
423 ++i;
Dmitry V. Levinbea02032007-10-08 21:48:01 +0000424 if (len < 0 && c == '\0')
425 break;
426 if (!isprint(c) && !isspace(c)) {
427 usehex = 1;
428 break;
429 }
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000430 }
431 }
Dmitry V. Levinbea02032007-10-08 21:48:01 +0000432
433 *s++ = '\"';
434
435 if (usehex) {
436 for (i = 0; i < size; ++i) {
437 c = ustr[i];
438 if (len < 0 && c == '\0')
439 break;
440 sprintf(s, "\\x%02x", c);
441 s += 4;
442 }
443 } else {
444 for (i = 0; i < size; ++i) {
445 c = ustr[i];
Roland McGrath6d970322007-11-01 23:53:59 +0000446 if (len < 0 && i == size - 2 && c != '\0')
447 ++i;
Dmitry V. Levinbea02032007-10-08 21:48:01 +0000448 if (len < 0 && c == '\0')
449 break;
450 switch (c) {
451 case '\"': case '\\':
452 *s++ = '\\';
453 *s++ = c;
454 break;
455 case '\f':
456 *s++ = '\\';
457 *s++ = 'f';
458 break;
459 case '\n':
460 *s++ = '\\';
461 *s++ = 'n';
462 break;
463 case '\r':
464 *s++ = '\\';
465 *s++ = 'r';
466 break;
467 case '\t':
468 *s++ = '\\';
469 *s++ = 't';
470 break;
471 case '\v':
472 *s++ = '\\';
473 *s++ = 'v';
474 break;
475 default:
476 if (isprint(c))
477 *s++ = c;
478 else if (i + 1 < size
479 && isdigit(ustr[i + 1])) {
480 sprintf(s, "\\%03o", c);
481 s += 4;
482 } else {
483 sprintf(s, "\\%o", c);
484 s += strlen(s);
485 }
486 break;
487 }
488 }
489 }
490
491 *s++ = '\"';
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000492 *s = '\0';
Roland McGrath6d970322007-11-01 23:53:59 +0000493
494 /* Return nonzero if the string was unterminated. */
495 return i == size;
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000496}
497
498void
Dmitry V. Levinbea02032007-10-08 21:48:01 +0000499printpathn(struct tcb *tcp, long addr, int n)
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000500{
Dmitry V. Levinbea02032007-10-08 21:48:01 +0000501 if (n > sizeof path - 1)
Roland McGrathb15c4e42005-10-21 22:06:46 +0000502 n = sizeof path - 1;
503
Dmitry V. Levinbea02032007-10-08 21:48:01 +0000504 if (addr == 0) {
Roland McGrath371ed8f2005-02-06 01:55:07 +0000505 tprintf("NULL");
Dmitry V. Levinbea02032007-10-08 21:48:01 +0000506 return;
507 }
508
509 path[n] = '\0';
510 if (umovestr(tcp, addr, n + 1, path) < 0)
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000511 tprintf("%#lx", addr);
512 else {
Dmitry V. Levinbea02032007-10-08 21:48:01 +0000513 static char outstr[4*(sizeof path - 1) + sizeof "\"...\""];
514 int trunc = (path[n] != '\0');
515
516 if (trunc)
517 path[n] = '\0';
Roland McGrath6d970322007-11-01 23:53:59 +0000518 if (string_quote(path, outstr, -1, n + 1) || trunc)
Dmitry V. Levinbea02032007-10-08 21:48:01 +0000519 strcat(outstr, "...");
520 tprintf("%s", outstr);
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000521 }
522}
523
524void
Dmitry V. Levinbea02032007-10-08 21:48:01 +0000525printpath(struct tcb *tcp, long addr)
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000526{
Dmitry V. Levinbea02032007-10-08 21:48:01 +0000527 printpathn(tcp, addr, sizeof path - 1);
528}
529
530void
531printstr(struct tcb *tcp, long addr, int len)
532{
533 static char *str = NULL;
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000534 static char *outstr;
Roland McGrath6d970322007-11-01 23:53:59 +0000535 int size;
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000536
537 if (!addr) {
538 tprintf("NULL");
539 return;
540 }
541 if (!str) {
Roland McGratha503dcf2007-08-02 02:06:26 +0000542 if ((str = malloc(max_strlen + 1)) == NULL
Roland McGrath779c4662007-07-11 07:23:40 +0000543 || (outstr = malloc(4*max_strlen
544 + sizeof "\"\"...")) == NULL) {
Roland McGrath46100d02005-06-01 18:55:42 +0000545 fprintf(stderr, "out of memory\n");
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000546 tprintf("%#lx", addr);
547 return;
548 }
549 }
Dmitry V. Levinbea02032007-10-08 21:48:01 +0000550
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000551 if (len < 0) {
Dmitry V. Levinbea02032007-10-08 21:48:01 +0000552 size = max_strlen + 1;
553 if (umovestr(tcp, addr, size, str) < 0) {
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000554 tprintf("%#lx", addr);
555 return;
556 }
557 }
558 else {
Dmitry V. Levinbea02032007-10-08 21:48:01 +0000559 size = MIN(len, max_strlen + 1);
560 if (umoven(tcp, addr, size, str) < 0) {
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000561 tprintf("%#lx", addr);
562 return;
563 }
564 }
565
Roland McGrath6d970322007-11-01 23:53:59 +0000566 if (string_quote(str, outstr, len, size))
Dmitry V. Levinbea02032007-10-08 21:48:01 +0000567 strcat(outstr, "...");
Roland McGratha503dcf2007-08-02 02:06:26 +0000568
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000569 tprintf("%s", outstr);
570}
571
John Hughes1d08dcf2001-07-10 13:48:44 +0000572#if HAVE_SYS_UIO_H
573void
574dumpiov(tcp, len, addr)
575struct tcb * tcp;
576int len;
577long addr;
578{
Dmitry V. Levin4ebb4e32006-12-13 17:08:08 +0000579#if defined(LINUX) && SUPPORTED_PERSONALITIES > 1
580 union {
581 struct { u_int32_t base; u_int32_t len; } *iov32;
582 struct { u_int64_t base; u_int64_t len; } *iov64;
583 } iovu;
584#define iov iovu.iov64
585#define sizeof_iov \
586 (personality_wordsize[current_personality] == 4 \
587 ? sizeof(*iovu.iov32) : sizeof(*iovu.iov64))
588#define iov_iov_base(i) \
589 (personality_wordsize[current_personality] == 4 \
590 ? (u_int64_t) iovu.iov32[i].base : iovu.iov64[i].base)
591#define iov_iov_len(i) \
592 (personality_wordsize[current_personality] == 4 \
593 ? (u_int64_t) iovu.iov32[i].len : iovu.iov64[i].len)
594#else
John Hughes1d08dcf2001-07-10 13:48:44 +0000595 struct iovec *iov;
Dmitry V. Levin4ebb4e32006-12-13 17:08:08 +0000596#define sizeof_iov sizeof(*iov)
597#define iov_iov_base(i) iov[i].iov_base
598#define iov_iov_len(i) iov[i].iov_len
599#endif
John Hughes1d08dcf2001-07-10 13:48:44 +0000600 int i;
Roland McGrathaa524c82005-06-01 19:22:06 +0000601 unsigned long size;
John Hughes1d08dcf2001-07-10 13:48:44 +0000602
Dmitry V. Levin4ebb4e32006-12-13 17:08:08 +0000603 size = sizeof_iov * (unsigned long) len;
604 if (size / sizeof_iov != len
605 || (iov = malloc(size)) == NULL) {
Roland McGrathaa524c82005-06-01 19:22:06 +0000606 fprintf(stderr, "out of memory\n");
John Hughes1d08dcf2001-07-10 13:48:44 +0000607 return;
608 }
Roland McGrathaa524c82005-06-01 19:22:06 +0000609 if (umoven(tcp, addr, size, (char *) iov) >= 0) {
John Hughes1d08dcf2001-07-10 13:48:44 +0000610 for (i = 0; i < len; i++) {
611 /* include the buffer number to make it easy to
612 * match up the trace with the source */
613 tprintf(" * %lu bytes in buffer %d\n",
Dmitry V. Levin4ebb4e32006-12-13 17:08:08 +0000614 (unsigned long)iov_iov_len(i), i);
615 dumpstr(tcp, (long) iov_iov_base(i),
616 iov_iov_len(i));
John Hughes1d08dcf2001-07-10 13:48:44 +0000617 }
618 }
619 free((char *) iov);
Dmitry V. Levin4ebb4e32006-12-13 17:08:08 +0000620#undef sizeof_iov
621#undef iov_iov_base
622#undef iov_iov_len
623#undef iov
John Hughes1d08dcf2001-07-10 13:48:44 +0000624}
625#endif
626
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000627void
628dumpstr(tcp, addr, len)
629struct tcb *tcp;
630long addr;
631int len;
632{
633 static int strsize = -1;
634 static unsigned char *str;
635 static char outstr[80];
636 char *s;
637 int i, j;
638
639 if (strsize < len) {
640 if (str)
641 free(str);
642 if ((str = malloc(len)) == NULL) {
Roland McGrath46100d02005-06-01 18:55:42 +0000643 fprintf(stderr, "out of memory\n");
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000644 return;
645 }
646 strsize = len;
647 }
648
649 if (umoven(tcp, addr, len, (char *) str) < 0)
650 return;
651
652 for (i = 0; i < len; i += 16) {
653 s = outstr;
654 sprintf(s, " | %05x ", i);
655 s += 9;
656 for (j = 0; j < 16; j++) {
657 if (j == 8)
658 *s++ = ' ';
659 if (i + j < len) {
660 sprintf(s, " %02x", str[i + j]);
661 s += 3;
662 }
663 else {
664 *s++ = ' '; *s++ = ' '; *s++ = ' ';
665 }
666 }
667 *s++ = ' '; *s++ = ' ';
668 for (j = 0; j < 16; j++) {
669 if (j == 8)
670 *s++ = ' ';
671 if (i + j < len) {
672 if (isprint(str[i + j]))
673 *s++ = str[i + j];
674 else
675 *s++ = '.';
676 }
677 else
678 *s++ = ' ';
679 }
680 tprintf("%s |\n", outstr);
681 }
682}
683
684#define PAGMASK (~(PAGSIZ - 1))
685/*
686 * move `len' bytes of data from process `pid'
687 * at address `addr' to our space at `laddr'
688 */
689int
690umoven(tcp, addr, len, laddr)
691struct tcb *tcp;
692long addr;
693int len;
694char *laddr;
695{
696
697#ifdef LINUX
698 int pid = tcp->pid;
699 int n, m;
Wichert Akkerman5daa0281999-03-15 19:49:42 +0000700 int started = 0;
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000701 union {
702 long val;
703 char x[sizeof(long)];
704 } u;
705
706 if (addr & (sizeof(long) - 1)) {
707 /* addr not a multiple of sizeof(long) */
708 n = addr - (addr & -sizeof(long)); /* residue */
709 addr &= -sizeof(long); /* residue */
710 errno = 0;
711 u.val = ptrace(PTRACE_PEEKDATA, pid, (char *) addr, 0);
712 if (errno) {
Wichert Akkerman5daa0281999-03-15 19:49:42 +0000713 if (started && (errno==EPERM || errno==EIO)) {
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000714 /* Ran into 'end of memory' - stupid "printpath" */
715 return 0;
716 }
Wichert Akkerman5daa0281999-03-15 19:49:42 +0000717 /* But if not started, we had a bogus address. */
Roland McGrath1c459762007-08-02 02:22:06 +0000718 if (addr != 0 && errno != EIO)
719 perror("ptrace: umoven");
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000720 return -1;
721 }
Wichert Akkerman5daa0281999-03-15 19:49:42 +0000722 started = 1;
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000723 memcpy(laddr, &u.x[n], m = MIN(sizeof(long) - n, len));
724 addr += sizeof(long), laddr += m, len -= m;
725 }
726 while (len) {
727 errno = 0;
728 u.val = ptrace(PTRACE_PEEKDATA, pid, (char *) addr, 0);
729 if (errno) {
Wichert Akkerman5daa0281999-03-15 19:49:42 +0000730 if (started && (errno==EPERM || errno==EIO)) {
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000731 /* Ran into 'end of memory' - stupid "printpath" */
732 return 0;
733 }
Roland McGrath1c459762007-08-02 02:22:06 +0000734 if (addr != 0 && errno != EIO)
Roland McGrath4db26242003-01-30 20:15:19 +0000735 perror("ptrace: umoven");
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000736 return -1;
737 }
Wichert Akkerman5daa0281999-03-15 19:49:42 +0000738 started = 1;
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000739 memcpy(laddr, u.x, m = MIN(sizeof(long), len));
740 addr += sizeof(long), laddr += m, len -= m;
741 }
742#endif /* LINUX */
743
744#ifdef SUNOS4
745 int pid = tcp->pid;
746#if 0
747 int n, m;
748 union {
749 long val;
750 char x[sizeof(long)];
751 } u;
752
753 if (addr & (sizeof(long) - 1)) {
754 /* addr not a multiple of sizeof(long) */
755 n = addr - (addr & -sizeof(long)); /* residue */
756 addr &= -sizeof(long); /* residue */
757 errno = 0;
758 u.val = ptrace(PTRACE_PEEKDATA, pid, (char *) addr, 0);
759 if (errno) {
760 perror("umoven");
761 return -1;
762 }
763 memcpy(laddr, &u.x[n], m = MIN(sizeof(long) - n, len));
764 addr += sizeof(long), laddr += m, len -= m;
765 }
766 while (len) {
767 errno = 0;
768 u.val = ptrace(PTRACE_PEEKDATA, pid, (char *) addr, 0);
769 if (errno) {
770 perror("umoven");
771 return -1;
772 }
773 memcpy(laddr, u.x, m = MIN(sizeof(long), len));
774 addr += sizeof(long), laddr += m, len -= m;
775 }
776#else /* !oldway */
777 int n;
778
779 while (len) {
780 n = MIN(len, PAGSIZ);
781 n = MIN(n, ((addr + PAGSIZ) & PAGMASK) - addr);
782 if (ptrace(PTRACE_READDATA, pid,
783 (char *) addr, len, laddr) < 0) {
784 perror("umoven: ptrace(PTRACE_READDATA, ...)");
785 abort();
786 return -1;
787 }
788 len -= n;
789 addr += n;
790 laddr += n;
791 }
792#endif /* !oldway */
793#endif /* SUNOS4 */
794
Wichert Akkermanbf79f2e2000-09-01 21:03:06 +0000795#ifdef USE_PROCFS
Wichert Akkermanea78f0f1999-11-29 15:34:02 +0000796#ifdef HAVE_MP_PROCFS
John Hughesaa09c6b2001-05-15 14:53:43 +0000797 int fd = tcp->pfd_as;
Wichert Akkerman9ce1a631999-08-29 23:15:07 +0000798#else
John Hughesaa09c6b2001-05-15 14:53:43 +0000799 int fd = tcp->pfd;
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000800#endif
John Hughesaa09c6b2001-05-15 14:53:43 +0000801 lseek(fd, addr, SEEK_SET);
802 if (read(fd, laddr, len) == -1)
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000803 return -1;
Wichert Akkermanbf79f2e2000-09-01 21:03:06 +0000804#endif /* USE_PROCFS */
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000805
806 return 0;
807}
808
809/*
810 * like `umove' but make the additional effort of looking
811 * for a terminating zero byte.
812 */
813int
814umovestr(tcp, addr, len, laddr)
815struct tcb *tcp;
816long addr;
817int len;
818char *laddr;
819{
Wichert Akkermanbf79f2e2000-09-01 21:03:06 +0000820#ifdef USE_PROCFS
John Hughesaa09c6b2001-05-15 14:53:43 +0000821#ifdef HAVE_MP_PROCFS
822 int fd = tcp->pfd_as;
823#else
824 int fd = tcp->pfd;
825#endif
826 /* Some systems (e.g. FreeBSD) can be upset if we read off the
827 end of valid memory, avoid this by trying to read up
828 to page boundaries. But we don't know what a page is (and
829 getpagesize(2) (if it exists) doesn't necessarily return
830 hardware page size). Assume all pages >= 1024 (a-historical
831 I know) */
832
833 int page = 1024; /* How to find this? */
834 int move = page - (addr & (page - 1));
835 int left = len;
836
837 lseek(fd, addr, SEEK_SET);
838
839 while (left) {
840 if (move > left) move = left;
John Hughes9cecf7f2001-10-16 10:20:22 +0000841 if ((move = read(fd, laddr, move)) <= 0)
John Hughesaa09c6b2001-05-15 14:53:43 +0000842 return left != len ? 0 : -1;
843 if (memchr (laddr, 0, move)) break;
844 left -= move;
845 laddr += move;
846 addr += move;
847 move = page;
848 }
Wichert Akkermanbf79f2e2000-09-01 21:03:06 +0000849#else /* !USE_PROCFS */
Wichert Akkerman5daa0281999-03-15 19:49:42 +0000850 int started = 0;
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000851 int pid = tcp->pid;
852 int i, n, m;
853 union {
854 long val;
855 char x[sizeof(long)];
856 } u;
857
858 if (addr & (sizeof(long) - 1)) {
859 /* addr not a multiple of sizeof(long) */
860 n = addr - (addr & -sizeof(long)); /* residue */
861 addr &= -sizeof(long); /* residue */
862 errno = 0;
863 u.val = ptrace(PTRACE_PEEKDATA, pid, (char *)addr, 0);
864 if (errno) {
Wichert Akkerman5daa0281999-03-15 19:49:42 +0000865 if (started && (errno==EPERM || errno==EIO)) {
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000866 /* Ran into 'end of memory' - stupid "printpath" */
867 return 0;
868 }
Roland McGrath1c459762007-08-02 02:22:06 +0000869 if (addr != 0 && errno != EIO)
870 perror("umovestr");
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000871 return -1;
872 }
Wichert Akkerman5daa0281999-03-15 19:49:42 +0000873 started = 1;
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000874 memcpy(laddr, &u.x[n], m = MIN(sizeof(long)-n,len));
875 while (n & (sizeof(long) - 1))
876 if (u.x[n++] == '\0')
877 return 0;
878 addr += sizeof(long), laddr += m, len -= m;
879 }
880 while (len) {
881 errno = 0;
882 u.val = ptrace(PTRACE_PEEKDATA, pid, (char *)addr, 0);
883 if (errno) {
Wichert Akkerman5daa0281999-03-15 19:49:42 +0000884 if (started && (errno==EPERM || errno==EIO)) {
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000885 /* Ran into 'end of memory' - stupid "printpath" */
886 return 0;
887 }
Roland McGrath1c459762007-08-02 02:22:06 +0000888 if (addr != 0 && errno != EIO)
889 perror("umovestr");
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000890 return -1;
891 }
Wichert Akkerman5daa0281999-03-15 19:49:42 +0000892 started = 1;
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000893 memcpy(laddr, u.x, m = MIN(sizeof(long), len));
894 for (i = 0; i < sizeof(long); i++)
895 if (u.x[i] == '\0')
896 return 0;
897
898 addr += sizeof(long), laddr += m, len -= m;
899 }
Wichert Akkermanbf79f2e2000-09-01 21:03:06 +0000900#endif /* !USE_PROCFS */
John Hughesaa09c6b2001-05-15 14:53:43 +0000901 return 0;
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000902}
903
904#ifdef LINUX
Roland McGrath6d1a65c2004-07-12 07:44:08 +0000905#if !defined (SPARC) && !defined(SPARC64)
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000906#define PTRACE_WRITETEXT 101
907#define PTRACE_WRITEDATA 102
Roland McGrath6d1a65c2004-07-12 07:44:08 +0000908#endif /* !SPARC && !SPARC64 */
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000909#endif /* LINUX */
910
911#ifdef SUNOS4
912
913static int
914uload(cmd, pid, addr, len, laddr)
915int cmd;
916int pid;
917long addr;
918int len;
919char *laddr;
920{
921#if 0
922 int n;
923
924 while (len) {
925 n = MIN(len, PAGSIZ);
926 n = MIN(n, ((addr + PAGSIZ) & PAGMASK) - addr);
927 if (ptrace(cmd, pid, (char *)addr, n, laddr) < 0) {
928 perror("uload: ptrace(PTRACE_WRITE, ...)");
929 return -1;
930 }
931 len -= n;
932 addr += n;
933 laddr += n;
934 }
935#else
936 int peek, poke;
937 int n, m;
938 union {
939 long val;
940 char x[sizeof(long)];
941 } u;
942
943 if (cmd == PTRACE_WRITETEXT) {
944 peek = PTRACE_PEEKTEXT;
945 poke = PTRACE_POKETEXT;
946 }
947 else {
948 peek = PTRACE_PEEKDATA;
949 poke = PTRACE_POKEDATA;
950 }
951 if (addr & (sizeof(long) - 1)) {
952 /* addr not a multiple of sizeof(long) */
953 n = addr - (addr & -sizeof(long)); /* residue */
954 addr &= -sizeof(long);
955 errno = 0;
956 u.val = ptrace(peek, pid, (char *) addr, 0);
957 if (errno) {
958 perror("uload: POKE");
959 return -1;
960 }
961 memcpy(&u.x[n], laddr, m = MIN(sizeof(long) - n, len));
962 if (ptrace(poke, pid, (char *)addr, u.val) < 0) {
963 perror("uload: POKE");
964 return -1;
965 }
966 addr += sizeof(long), laddr += m, len -= m;
967 }
968 while (len) {
969 if (len < sizeof(long))
970 u.val = ptrace(peek, pid, (char *) addr, 0);
971 memcpy(u.x, laddr, m = MIN(sizeof(long), len));
972 if (ptrace(poke, pid, (char *) addr, u.val) < 0) {
973 perror("uload: POKE");
974 return -1;
975 }
976 addr += sizeof(long), laddr += m, len -= m;
977 }
978#endif
979 return 0;
980}
981
982int
983tload(pid, addr, len, laddr)
984int pid;
985int addr, len;
986char *laddr;
987{
988 return uload(PTRACE_WRITETEXT, pid, addr, len, laddr);
989}
990
991int
992dload(pid, addr, len, laddr)
993int pid;
994int addr;
995int len;
996char *laddr;
997{
998 return uload(PTRACE_WRITEDATA, pid, addr, len, laddr);
999}
1000
1001#endif /* SUNOS4 */
1002
Wichert Akkermanbf79f2e2000-09-01 21:03:06 +00001003#ifndef USE_PROCFS
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001004
1005int
1006upeek(pid, off, res)
1007int pid;
1008long off;
1009long *res;
1010{
1011 long val;
1012
1013#ifdef SUNOS4_KERNEL_ARCH_KLUDGE
1014 {
1015 static int is_sun4m = -1;
1016 struct utsname name;
1017
1018 /* Round up the usual suspects. */
1019 if (is_sun4m == -1) {
1020 if (uname(&name) < 0) {
1021 perror("upeek: uname?");
1022 exit(1);
1023 }
1024 is_sun4m = strcmp(name.machine, "sun4m") == 0;
1025 if (is_sun4m) {
Roland McGrathd9f816f2004-09-04 03:39:20 +00001026 extern const struct xlat struct_user_offsets[];
1027 const struct xlat *x;
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001028
1029 for (x = struct_user_offsets; x->str; x++)
1030 x->val += 1024;
1031 }
1032 }
1033 if (is_sun4m)
1034 off += 1024;
1035 }
1036#endif /* SUNOS4_KERNEL_ARCH_KLUDGE */
1037 errno = 0;
1038 val = ptrace(PTRACE_PEEKUSER, pid, (char *) off, 0);
1039 if (val == -1 && errno) {
Roland McGrath1e85cf92002-12-16 20:40:54 +00001040 char buf[60];
Michal Ludvig0e035502002-09-23 15:41:01 +00001041 sprintf(buf,"upeek: ptrace(PTRACE_PEEKUSER,%d,%lu,0)",pid,off);
Roland McGrath1e85cf92002-12-16 20:40:54 +00001042 perror(buf);
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001043 return -1;
1044 }
1045 *res = val;
1046 return 0;
1047}
1048
Wichert Akkermanbf79f2e2000-09-01 21:03:06 +00001049#endif /* !USE_PROCFS */
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001050
Roland McGratha4d48532005-06-08 20:45:28 +00001051#if 0
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001052long
1053getpc(tcp)
1054struct tcb *tcp;
1055{
1056
1057#ifdef LINUX
1058 long pc;
Wichert Akkermanf90da011999-10-31 21:15:38 +00001059#if defined(I386)
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001060 if (upeek(tcp->pid, 4*EIP, &pc) < 0)
1061 return -1;
Michal Ludvig0e035502002-09-23 15:41:01 +00001062#elif defined(X86_64)
1063 if (upeek(tcp->pid, 8*RIP, &pc) < 0)
1064 return -1;
Wichert Akkerman8b1b40c2000-02-03 21:58:30 +00001065#elif defined(IA64)
1066 if (upeek(tcp->pid, PT_B0, &pc) < 0)
1067 return -1;
Wichert Akkermanf90da011999-10-31 21:15:38 +00001068#elif defined(ARM)
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001069 if (upeek(tcp->pid, 4*15, &pc) < 0)
1070 return -1;
Wichert Akkermanf90da011999-10-31 21:15:38 +00001071#elif defined(POWERPC)
Roland McGratheb285352003-01-14 09:59:00 +00001072 if (upeek(tcp->pid, sizeof(unsigned long)*PT_NIP, &pc) < 0)
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001073 return -1;
Roland McGrath84fa9232005-06-08 18:06:22 +00001074#elif defined(M68K)
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001075 if (upeek(tcp->pid, 4*PT_PC, &pc) < 0)
1076 return -1;
Wichert Akkermanf90da011999-10-31 21:15:38 +00001077#elif defined(ALPHA)
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001078 if (upeek(tcp->pid, REG_PC, &pc) < 0)
1079 return -1;
Wichert Akkermanf90da011999-10-31 21:15:38 +00001080#elif defined(MIPS)
1081 if (upeek(tcp->pid, REG_EPC, &pc) < 0)
1082 return -1;
Roland McGrath6d1a65c2004-07-12 07:44:08 +00001083#elif defined(SPARC) || defined(SPARC64)
Wichert Akkerman9ce1a631999-08-29 23:15:07 +00001084 struct regs regs;
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001085 if (ptrace(PTRACE_GETREGS,tcp->pid,(char *)&regs,0) < 0)
1086 return -1;
Wichert Akkerman9ce1a631999-08-29 23:15:07 +00001087 pc = regs.r_pc;
Michal Ludvig10a88d02002-10-07 14:31:00 +00001088#elif defined(S390) || defined(S390X)
Wichert Akkerman4dc8a2a1999-12-23 14:20:14 +00001089 if(upeek(tcp->pid,PT_PSWADDR,&pc) < 0)
Michal Ludvig10a88d02002-10-07 14:31:00 +00001090 return -1;
Wichert Akkermanc1652e22001-03-27 12:17:16 +00001091#elif defined(HPPA)
1092 if(upeek(tcp->pid,PT_IAOQ0,&pc) < 0)
1093 return -1;
Wichert Akkermanccef6372002-05-01 16:39:22 +00001094#elif defined(SH)
1095 if (upeek(tcp->pid, 4*REG_PC ,&pc) < 0)
1096 return -1;
Roland McGrathf5a47772003-06-26 22:40:42 +00001097#elif defined(SH64)
Roland McGrathe1e584b2003-06-02 19:18:58 +00001098 if (upeek(tcp->pid, REG_PC ,&pc) < 0)
1099 return -1;
Wichert Akkerman7a0b6491999-12-23 15:08:17 +00001100#endif
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001101 return pc;
1102#endif /* LINUX */
1103
1104#ifdef SUNOS4
1105 /*
1106 * Return current program counter for `pid'
1107 * Assumes PC is never 0xffffffff
1108 */
1109 struct regs regs;
1110
1111 if (ptrace(PTRACE_GETREGS, tcp->pid, (char *) &regs, 0) < 0) {
1112 perror("getpc: ptrace(PTRACE_GETREGS, ...)");
1113 return -1;
1114 }
1115 return regs.r_pc;
1116#endif /* SUNOS4 */
1117
1118#ifdef SVR4
1119 /* XXX */
1120 return 0;
1121#endif /* SVR4 */
1122
Wichert Akkermanbf79f2e2000-09-01 21:03:06 +00001123#ifdef FREEBSD
1124 struct reg regs;
1125 pread(tcp->pfd_reg, &regs, sizeof(regs), 0);
1126 return regs.r_eip;
1127#endif /* FREEBSD */
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001128}
Roland McGratha4d48532005-06-08 20:45:28 +00001129#endif
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001130
1131void
1132printcall(tcp)
1133struct tcb *tcp;
1134{
Roland McGrath7a918832005-02-02 20:55:23 +00001135#define PRINTBADPC tprintf(sizeof(long) == 4 ? "[????????] " : \
1136 sizeof(long) == 8 ? "[????????????????] " : \
1137 NULL /* crash */)
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001138
1139#ifdef LINUX
1140#ifdef I386
1141 long eip;
1142
1143 if (upeek(tcp->pid, 4*EIP, &eip) < 0) {
Roland McGrath7a918832005-02-02 20:55:23 +00001144 PRINTBADPC;
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001145 return;
1146 }
1147 tprintf("[%08lx] ", eip);
Roland McGratheac26fc2005-02-02 02:48:53 +00001148
1149#elif defined(S390) || defined(S390X)
1150 long psw;
1151 if(upeek(tcp->pid,PT_PSWADDR,&psw) < 0) {
Roland McGrath7a918832005-02-02 20:55:23 +00001152 PRINTBADPC;
Roland McGratheac26fc2005-02-02 02:48:53 +00001153 return;
1154 }
1155#ifdef S390
1156 tprintf("[%08lx] ", psw);
1157#elif S390X
1158 tprintf("[%16lx] ", psw);
1159#endif
1160
Michal Ludvig0e035502002-09-23 15:41:01 +00001161#elif defined(X86_64)
1162 long rip;
1163
1164 if (upeek(tcp->pid, 8*RIP, &rip) < 0) {
Roland McGrath7a918832005-02-02 20:55:23 +00001165 PRINTBADPC;
Michal Ludvig0e035502002-09-23 15:41:01 +00001166 return;
1167 }
1168 tprintf("[%16lx] ", rip);
Roland McGrathef388682003-06-03 23:28:59 +00001169#elif defined(IA64)
Wichert Akkerman8b1b40c2000-02-03 21:58:30 +00001170 long ip;
1171
1172 if (upeek(tcp->pid, PT_B0, &ip) < 0) {
Roland McGrath7a918832005-02-02 20:55:23 +00001173 PRINTBADPC;
Wichert Akkerman8b1b40c2000-02-03 21:58:30 +00001174 return;
1175 }
1176 tprintf("[%08lx] ", ip);
Wichert Akkermanfaf72222000-02-19 23:59:03 +00001177#elif defined(POWERPC)
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001178 long pc;
1179
Roland McGratheb285352003-01-14 09:59:00 +00001180 if (upeek(tcp->pid, sizeof(unsigned long)*PT_NIP, &pc) < 0) {
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001181 tprintf ("[????????] ");
1182 return;
1183 }
1184 tprintf("[%08lx] ", pc);
Roland McGrath84fa9232005-06-08 18:06:22 +00001185#elif defined(M68K)
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001186 long pc;
1187
1188 if (upeek(tcp->pid, 4*PT_PC, &pc) < 0) {
1189 tprintf ("[????????] ");
1190 return;
1191 }
1192 tprintf("[%08lx] ", pc);
Wichert Akkermanfaf72222000-02-19 23:59:03 +00001193#elif defined(ALPHA)
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001194 long pc;
1195
1196 if (upeek(tcp->pid, REG_PC, &pc) < 0) {
Roland McGrath7a918832005-02-02 20:55:23 +00001197 tprintf ("[????????????????] ");
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001198 return;
1199 }
1200 tprintf("[%08lx] ", pc);
Roland McGrath6d1a65c2004-07-12 07:44:08 +00001201#elif defined(SPARC) || defined(SPARC64)
Wichert Akkerman9ce1a631999-08-29 23:15:07 +00001202 struct regs regs;
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001203 if (ptrace(PTRACE_GETREGS,tcp->pid,(char *)&regs,0) < 0) {
Roland McGrath7a918832005-02-02 20:55:23 +00001204 PRINTBADPC;
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001205 return;
1206 }
Wichert Akkerman9ce1a631999-08-29 23:15:07 +00001207 tprintf("[%08lx] ", regs.r_pc);
Wichert Akkermanc1652e22001-03-27 12:17:16 +00001208#elif defined(HPPA)
1209 long pc;
1210
1211 if(upeek(tcp->pid,PT_IAOQ0,&pc) < 0) {
1212 tprintf ("[????????] ");
1213 return;
1214 }
1215 tprintf("[%08lx] ", pc);
Wichert Akkerman75c422b2001-04-10 10:22:50 +00001216#elif defined(MIPS)
1217 long pc;
1218
1219 if (upeek(tcp->pid, REG_EPC, &pc) < 0) {
1220 tprintf ("[????????] ");
1221 return;
1222 }
1223 tprintf("[%08lx] ", pc);
Wichert Akkermanccef6372002-05-01 16:39:22 +00001224#elif defined(SH)
1225 long pc;
1226
1227 if (upeek(tcp->pid, 4*REG_PC, &pc) < 0) {
1228 tprintf ("[????????] ");
1229 return;
1230 }
1231 tprintf("[%08lx] ", pc);
Roland McGrathf5a47772003-06-26 22:40:42 +00001232#elif defined(SH64)
Roland McGrathe1e584b2003-06-02 19:18:58 +00001233 long pc;
1234
1235 if (upeek(tcp->pid, REG_PC, &pc) < 0) {
Roland McGrath7a918832005-02-02 20:55:23 +00001236 tprintf ("[????????????????] ");
Roland McGrathe1e584b2003-06-02 19:18:58 +00001237 return;
1238 }
1239 tprintf("[%08lx] ", pc);
Roland McGrathef388682003-06-03 23:28:59 +00001240#elif defined(ARM)
1241 long pc;
Roland McGrathe1e584b2003-06-02 19:18:58 +00001242
Roland McGrathef388682003-06-03 23:28:59 +00001243 if (upeek(tcp->pid, 4*15, &pc) < 0) {
Roland McGrath7a918832005-02-02 20:55:23 +00001244 PRINTBADPC;
Roland McGrathef388682003-06-03 23:28:59 +00001245 return;
1246 }
1247 tprintf("[%08lx] ", pc);
Wichert Akkermanfaf72222000-02-19 23:59:03 +00001248#endif /* !architecture */
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001249#endif /* LINUX */
1250
1251#ifdef SUNOS4
1252 struct regs regs;
1253
1254 if (ptrace(PTRACE_GETREGS, tcp->pid, (char *) &regs, 0) < 0) {
1255 perror("printcall: ptrace(PTRACE_GETREGS, ...)");
Roland McGrath7a918832005-02-02 20:55:23 +00001256 PRINTBADPC;
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001257 return;
1258 }
1259 tprintf("[%08x] ", regs.r_o7);
1260#endif /* SUNOS4 */
1261
1262#ifdef SVR4
1263 /* XXX */
Roland McGrath7a918832005-02-02 20:55:23 +00001264 PRINTBADPC;
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001265#endif
1266
Wichert Akkermanbf79f2e2000-09-01 21:03:06 +00001267#ifdef FREEBSD
1268 struct reg regs;
1269 pread(tcp->pfd_reg, &regs, sizeof(regs), 0);
1270 tprintf("[%08x] ", regs.r_eip);
1271#endif /* FREEBSD */
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001272}
1273
Wichert Akkermanbf79f2e2000-09-01 21:03:06 +00001274#ifndef USE_PROCFS
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001275
Roland McGrathd81f1d92003-01-09 06:53:34 +00001276#if defined LINUX
1277
Roland McGrath3291ef22008-05-20 00:34:34 +00001278#include "syscall.h"
1279
Roland McGrathd81f1d92003-01-09 06:53:34 +00001280#include <sys/syscall.h>
1281#ifndef CLONE_PTRACE
1282# define CLONE_PTRACE 0x00002000
1283#endif
Roland McGrath76989d72005-06-07 23:21:31 +00001284#ifndef CLONE_STOPPED
1285# define CLONE_STOPPED 0x02000000
1286#endif
Roland McGrathd81f1d92003-01-09 06:53:34 +00001287
1288#ifdef IA64
1289
Roland McGrath08267b82004-02-20 22:56:43 +00001290/* We don't have fork()/vfork() syscalls on ia64 itself, but the ia32
1291 subsystem has them for x86... */
1292#define SYS_fork 2
1293#define SYS_vfork 190
1294
Roland McGrathd81f1d92003-01-09 06:53:34 +00001295typedef unsigned long *arg_setup_state;
1296
1297static int
1298arg_setup(struct tcb *tcp, arg_setup_state *state)
1299{
1300 unsigned long *bsp, cfm, sof, sol;
1301
Roland McGrath08267b82004-02-20 22:56:43 +00001302 if (ia32)
1303 return 0;
1304
Roland McGrathd81f1d92003-01-09 06:53:34 +00001305 if (upeek(tcp->pid, PT_AR_BSP, (long *) &bsp) < 0)
1306 return -1;
1307 if (upeek(tcp->pid, PT_CFM, (long *) &cfm) < 0)
1308 return -1;
1309
1310 sof = (cfm >> 0) & 0x7f;
1311 sol = (cfm >> 7) & 0x7f;
1312 bsp = ia64_rse_skip_regs(bsp, -sof + sol);
1313
1314 *state = bsp;
1315 return 0;
1316}
1317
1318# define arg_finish_change(tcp, state) 0
1319
1320#ifdef SYS_fork
1321static int
1322get_arg0 (struct tcb *tcp, arg_setup_state *state, long *valp)
1323{
Roland McGrath08267b82004-02-20 22:56:43 +00001324 int ret;
1325
1326 if (ia32)
1327 ret = upeek (tcp->pid, PT_R11, valp);
1328 else
1329 ret = umoven (tcp,
1330 (unsigned long) ia64_rse_skip_regs(*state, 0),
1331 sizeof(long), (void *) valp);
1332 return ret;
Roland McGrathd81f1d92003-01-09 06:53:34 +00001333}
1334
1335static int
1336get_arg1 (struct tcb *tcp, arg_setup_state *state, long *valp)
1337{
Roland McGrath08267b82004-02-20 22:56:43 +00001338 int ret;
1339
1340 if (ia32)
1341 ret = upeek (tcp->pid, PT_R9, valp);
1342 else
1343 ret = umoven (tcp,
1344 (unsigned long) ia64_rse_skip_regs(*state, 1),
1345 sizeof(long), (void *) valp);
1346 return ret;
Roland McGrathd81f1d92003-01-09 06:53:34 +00001347}
1348#endif
1349
1350static int
1351set_arg0 (struct tcb *tcp, arg_setup_state *state, long val)
1352{
Roland McGrath08267b82004-02-20 22:56:43 +00001353 int req = PTRACE_POKEDATA;
1354 void *ap;
1355
1356 if (ia32) {
1357 ap = (void *) (intptr_t) PT_R11; /* r11 == EBX */
1358 req = PTRACE_POKEUSER;
1359 } else
1360 ap = ia64_rse_skip_regs(*state, 0);
Roland McGrathd81f1d92003-01-09 06:53:34 +00001361 errno = 0;
Roland McGrath08267b82004-02-20 22:56:43 +00001362 ptrace(req, tcp->pid, ap, val);
Roland McGrathd81f1d92003-01-09 06:53:34 +00001363 return errno ? -1 : 0;
1364}
1365
1366static int
1367set_arg1 (struct tcb *tcp, arg_setup_state *state, long val)
1368{
Roland McGrath08267b82004-02-20 22:56:43 +00001369 int req = PTRACE_POKEDATA;
1370 void *ap;
1371
1372 if (ia32) {
1373 ap = (void *) (intptr_t) PT_R9; /* r9 == ECX */
1374 req = PTRACE_POKEUSER;
1375 } else
1376 ap = ia64_rse_skip_regs(*state, 1);
Roland McGrathd81f1d92003-01-09 06:53:34 +00001377 errno = 0;
Roland McGrath08267b82004-02-20 22:56:43 +00001378 ptrace(req, tcp->pid, ap, val);
Roland McGrathd81f1d92003-01-09 06:53:34 +00001379 return errno ? -1 : 0;
1380}
1381
Roland McGrath6d1a65c2004-07-12 07:44:08 +00001382#elif defined (SPARC) || defined (SPARC64)
Roland McGrathd81f1d92003-01-09 06:53:34 +00001383
1384typedef struct regs arg_setup_state;
1385
1386# define arg_setup(tcp, state) \
1387 (ptrace (PTRACE_GETREGS, tcp->pid, (char *) (state), 0))
1388# define arg_finish_change(tcp, state) \
1389 (ptrace (PTRACE_SETREGS, tcp->pid, (char *) (state), 0))
1390
1391# define get_arg0(tcp, state, valp) (*(valp) = (state)->r_o0, 0)
1392# define get_arg1(tcp, state, valp) (*(valp) = (state)->r_o1, 0)
1393# define set_arg0(tcp, state, val) ((state)->r_o0 = (val), 0)
1394# define set_arg1(tcp, state, val) ((state)->r_o1 = (val), 0)
Roland McGrathe1df47f2003-01-14 09:46:15 +00001395# define restore_arg0(tcp, state, val) 0
Roland McGrathd81f1d92003-01-09 06:53:34 +00001396
1397#else
1398
1399# if defined S390 || defined S390X
Roland McGrath7b308222003-01-20 09:04:36 +00001400/* Note: this is only true for the `clone' system call, which handles
1401 arguments specially. We could as well say that its first two arguments
1402 are swapped relative to other architectures, but that would just be
1403 another #ifdef in the calls. */
1404# define arg0_offset PT_GPR3
1405# define arg1_offset PT_ORIGGPR2
1406# define restore_arg0(tcp, state, val) ((void) (state), 0)
1407# define restore_arg1(tcp, state, val) ((void) (state), 0)
Roland McGrathc9dc3c12004-03-01 20:57:09 +00001408# define arg0_index 1
1409# define arg1_index 0
Roland McGrathd81f1d92003-01-09 06:53:34 +00001410# elif defined (ALPHA) || defined (MIPS)
1411# define arg0_offset REG_A0
1412# define arg1_offset (REG_A0+1)
1413# elif defined (POWERPC)
Roland McGratheb285352003-01-14 09:59:00 +00001414# define arg0_offset (sizeof(unsigned long)*PT_R3)
1415# define arg1_offset (sizeof(unsigned long)*PT_R4)
Roland McGrath7b308222003-01-20 09:04:36 +00001416# define restore_arg0(tcp, state, val) ((void) (state), 0)
Roland McGrathd81f1d92003-01-09 06:53:34 +00001417# elif defined (HPPA)
1418# define arg0_offset PT_GR26
1419# define arg1_offset (PT_GR26-4)
Roland McGrath7f33cc32003-01-10 20:51:00 +00001420# elif defined (X86_64)
1421# define arg0_offset ((long)(8*(current_personality ? RBX : RDI)))
1422# define arg1_offset ((long)(8*(current_personality ? RCX : RSI)))
Roland McGrathac971c22003-03-31 01:03:33 +00001423# elif defined (SH)
1424# define arg0_offset (4*(REG_REG0+4))
1425# define arg1_offset (4*(REG_REG0+5))
Roland McGrathf5a47772003-06-26 22:40:42 +00001426# elif defined (SH64)
Roland McGrathe1e584b2003-06-02 19:18:58 +00001427 /* ABI defines arg0 & 1 in r2 & r3 */
1428# define arg0_offset (REG_OFFSET+16)
1429# define arg1_offset (REG_OFFSET+24)
1430# define restore_arg0(tcp, state, val) 0
Roland McGrathd81f1d92003-01-09 06:53:34 +00001431# else
1432# define arg0_offset 0
1433# define arg1_offset 4
Roland McGrathac971c22003-03-31 01:03:33 +00001434# if defined ARM
Roland McGrathe1df47f2003-01-14 09:46:15 +00001435# define restore_arg0(tcp, state, val) 0
1436# endif
Roland McGrathd81f1d92003-01-09 06:53:34 +00001437# endif
1438
1439typedef int arg_setup_state;
1440
1441# define arg_setup(tcp, state) (0)
1442# define arg_finish_change(tcp, state) 0
1443# define get_arg0(tcp, cookie, valp) \
1444 (upeek ((tcp)->pid, arg0_offset, (valp)))
1445# define get_arg1(tcp, cookie, valp) \
1446 (upeek ((tcp)->pid, arg1_offset, (valp)))
1447
1448static int
1449set_arg0 (struct tcb *tcp, void *cookie, long val)
1450{
Roland McGrathca85b972005-06-07 23:22:08 +00001451 return ptrace (PTRACE_POKEUSER, tcp->pid, (char*)arg0_offset, val);
Roland McGrathd81f1d92003-01-09 06:53:34 +00001452}
1453
1454static int
1455set_arg1 (struct tcb *tcp, void *cookie, long val)
1456{
1457 return ptrace (PTRACE_POKEUSER, tcp->pid, (char*)arg1_offset, val);
1458}
1459
1460#endif
1461
Roland McGrathe1df47f2003-01-14 09:46:15 +00001462#ifndef restore_arg0
1463# define restore_arg0(tcp, state, val) set_arg0((tcp), (state), (val))
1464#endif
1465#ifndef restore_arg1
1466# define restore_arg1(tcp, state, val) set_arg1((tcp), (state), (val))
1467#endif
Roland McGrathd81f1d92003-01-09 06:53:34 +00001468
Roland McGrath90d0afd2004-03-01 21:05:16 +00001469#ifndef arg0_index
1470# define arg0_index 0
1471# define arg1_index 1
1472#endif
1473
Roland McGrathd81f1d92003-01-09 06:53:34 +00001474int
1475setbpt(tcp)
1476struct tcb *tcp;
1477{
Roland McGrath3291ef22008-05-20 00:34:34 +00001478 static int clone_scno[SUPPORTED_PERSONALITIES] = { SYS_clone };
Roland McGrathd81f1d92003-01-09 06:53:34 +00001479 extern int change_syscall(struct tcb *, int);
1480 arg_setup_state state;
1481
1482 if (tcp->flags & TCB_BPTSET) {
1483 fprintf(stderr, "PANIC: TCB already set in pid %u\n", tcp->pid);
1484 return -1;
1485 }
1486
Roland McGrath3291ef22008-05-20 00:34:34 +00001487 /*
1488 * It's a silly kludge to initialize this with a search at runtime.
1489 * But it's better than maintaining another magic thing in the
1490 * godforsaken tables.
1491 */
1492 if (clone_scno[current_personality] == 0) {
1493 int i;
1494 for (i = 0; i < nsyscalls; ++i)
1495 if (sysent[i].sys_func == sys_clone) {
1496 clone_scno[current_personality] = i;
1497 break;
1498 }
1499 }
1500
Roland McGrath76989d72005-06-07 23:21:31 +00001501 switch (known_scno(tcp)) {
Roland McGrath9383c6c2003-01-18 00:19:31 +00001502#ifdef SYS_vfork
1503 case SYS_vfork:
1504#endif
Roland McGrathd81f1d92003-01-09 06:53:34 +00001505#ifdef SYS_fork
1506 case SYS_fork:
Roland McGrath9b0982b2003-01-18 00:21:51 +00001507#endif
1508#if defined SYS_fork || defined SYS_vfork
Roland McGrathd81f1d92003-01-09 06:53:34 +00001509 if (arg_setup (tcp, &state) < 0
1510 || get_arg0 (tcp, &state, &tcp->inst[0]) < 0
1511 || get_arg1 (tcp, &state, &tcp->inst[1]) < 0
Roland McGrath3291ef22008-05-20 00:34:34 +00001512 || change_syscall(tcp, clone_scno[current_personality]) < 0
Roland McGrathd81f1d92003-01-09 06:53:34 +00001513 || set_arg0 (tcp, &state, CLONE_PTRACE|SIGCHLD) < 0
1514 || set_arg1 (tcp, &state, 0) < 0
1515 || arg_finish_change (tcp, &state) < 0)
1516 return -1;
Roland McGrathc9dc3c12004-03-01 20:57:09 +00001517 tcp->u_arg[arg0_index] = CLONE_PTRACE|SIGCHLD;
1518 tcp->u_arg[arg1_index] = 0;
Roland McGrathd81f1d92003-01-09 06:53:34 +00001519 tcp->flags |= TCB_BPTSET;
1520 return 0;
1521#endif
1522
1523 case SYS_clone:
1524#ifdef SYS_clone2
1525 case SYS_clone2:
1526#endif
Roland McGrath02cee8d2004-03-02 08:50:42 +00001527 if ((tcp->u_arg[arg0_index] & CLONE_PTRACE) == 0
Roland McGrathd81f1d92003-01-09 06:53:34 +00001528 && (arg_setup (tcp, &state) < 0
Roland McGrathc9dc3c12004-03-01 20:57:09 +00001529 || set_arg0 (tcp, &state,
1530 tcp->u_arg[arg0_index] | CLONE_PTRACE) < 0
Roland McGrathd81f1d92003-01-09 06:53:34 +00001531 || arg_finish_change (tcp, &state) < 0))
1532 return -1;
1533 tcp->flags |= TCB_BPTSET;
Roland McGrathc9dc3c12004-03-01 20:57:09 +00001534 tcp->inst[0] = tcp->u_arg[arg0_index];
1535 tcp->inst[1] = tcp->u_arg[arg1_index];
Roland McGrathd81f1d92003-01-09 06:53:34 +00001536 return 0;
1537
1538 default:
1539 fprintf(stderr, "PANIC: setbpt for syscall %ld on %u???\n",
1540 tcp->scno, tcp->pid);
1541 break;
1542 }
1543
1544 return -1;
1545}
1546
1547int
1548clearbpt(tcp)
1549struct tcb *tcp;
1550{
1551 arg_setup_state state;
1552 if (arg_setup (tcp, &state) < 0
Roland McGrathe1df47f2003-01-14 09:46:15 +00001553 || restore_arg0 (tcp, &state, tcp->inst[0]) < 0
1554 || restore_arg1 (tcp, &state, tcp->inst[1]) < 0
Roland McGrathd81f1d92003-01-09 06:53:34 +00001555 || arg_finish_change (tcp, &state))
1556 return -1;
1557 tcp->flags &= ~TCB_BPTSET;
1558 return 0;
1559}
1560
1561#else
1562
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001563int
1564setbpt(tcp)
1565struct tcb *tcp;
1566{
1567
1568#ifdef LINUX
Roland McGrath6d1a65c2004-07-12 07:44:08 +00001569#if defined (SPARC) || defined (SPARC64)
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001570 /* We simply use the SunOS breakpoint code. */
1571
Wichert Akkerman9ce1a631999-08-29 23:15:07 +00001572 struct regs regs;
Roland McGrath6d1a65c2004-07-12 07:44:08 +00001573 unsigned long inst;
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001574#define LOOPA 0x30800000 /* ba,a 0 */
1575
1576 if (tcp->flags & TCB_BPTSET) {
1577 fprintf(stderr, "PANIC: TCB already set in pid %u\n", tcp->pid);
1578 return -1;
1579 }
1580 if (ptrace(PTRACE_GETREGS, tcp->pid, (char *)&regs, 0) < 0) {
1581 perror("setbpt: ptrace(PTRACE_GETREGS, ...)");
1582 return -1;
1583 }
Wichert Akkerman9ce1a631999-08-29 23:15:07 +00001584 tcp->baddr = regs.r_o7 + 8;
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001585 errno = 0;
1586 tcp->inst[0] = ptrace(PTRACE_PEEKTEXT, tcp->pid, (char *)tcp->baddr, 0);
1587 if(errno) {
1588 perror("setbpt: ptrace(PTRACE_PEEKTEXT, ...)");
1589 return -1;
1590 }
1591
1592 /*
1593 * XXX - BRUTAL MODE ON
1594 * We cannot set a real BPT in the child, since it will not be
1595 * traced at the moment it will reach the trap and would probably
1596 * die with a core dump.
1597 * Thus, we are force our way in by taking out two instructions
1598 * and insert an eternal loop instead, in expectance of the SIGSTOP
1599 * generated by out PTRACE_ATTACH.
1600 * Of cause, if we evaporate ourselves in the middle of all this...
1601 */
1602 errno = 0;
Roland McGrath6d1a65c2004-07-12 07:44:08 +00001603 inst = LOOPA;
1604#if defined (SPARC64)
1605 inst <<= 32;
1606 inst |= (tcp->inst[0] & 0xffffffffUL);
1607#endif
1608 ptrace(PTRACE_POKETEXT, tcp->pid, (char *) tcp->baddr, inst);
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001609 if(errno) {
1610 perror("setbpt: ptrace(PTRACE_POKETEXT, ...)");
1611 return -1;
1612 }
1613 tcp->flags |= TCB_BPTSET;
1614
Roland McGrath6d1a65c2004-07-12 07:44:08 +00001615#else /* !SPARC && !SPARC64 */
Wichert Akkerman8b1b40c2000-02-03 21:58:30 +00001616#ifdef IA64
Wichert Akkerman7b3346b2001-10-09 23:47:38 +00001617 if (ia32) {
1618# define LOOP 0x0000feeb
1619 if (tcp->flags & TCB_BPTSET) {
1620 fprintf(stderr, "PANIC: bpt already set in pid %u\n",
1621 tcp->pid);
1622 return -1;
1623 }
1624 if (upeek(tcp->pid, PT_CR_IIP, &tcp->baddr) < 0)
1625 return -1;
1626 if (debug)
1627 fprintf(stderr, "[%d] setting bpt at %lx\n",
1628 tcp->pid, tcp->baddr);
1629 tcp->inst[0] = ptrace(PTRACE_PEEKTEXT, tcp->pid,
1630 (char *) tcp->baddr, 0);
1631 if (errno) {
1632 perror("setbpt: ptrace(PTRACE_PEEKTEXT, ...)");
1633 return -1;
1634 }
1635 ptrace(PTRACE_POKETEXT, tcp->pid, (char *) tcp->baddr, LOOP);
1636 if (errno) {
1637 perror("setbpt: ptrace(PTRACE_POKETEXT, ...)");
1638 return -1;
1639 }
1640 tcp->flags |= TCB_BPTSET;
1641 } else {
1642 /*
Wichert Akkerman7b3346b2001-10-09 23:47:38 +00001643 * Our strategy here is to replace the bundle that
1644 * contained the clone() syscall with a bundle of the
1645 * form:
1646 *
1647 * { 1: br 1b; br 1b; br 1b }
1648 *
1649 * This ensures that the newly forked child will loop
1650 * endlessly until we've got a chance to attach to it.
1651 */
Wichert Akkerman8b1b40c2000-02-03 21:58:30 +00001652# define LOOP0 0x0000100000000017
1653# define LOOP1 0x4000000000200000
1654 unsigned long addr, ipsr;
1655 pid_t pid;
1656
1657 pid = tcp->pid;
1658 if (upeek(pid, PT_CR_IPSR, &ipsr) < 0)
1659 return -1;
1660 if (upeek(pid, PT_CR_IIP, &addr) < 0)
1661 return -1;
Wichert Akkerman7b3346b2001-10-09 23:47:38 +00001662 /* store "ri" in low two bits */
1663 tcp->baddr = addr | ((ipsr >> 41) & 0x3);
Wichert Akkerman8b1b40c2000-02-03 21:58:30 +00001664
1665 errno = 0;
Wichert Akkerman7b3346b2001-10-09 23:47:38 +00001666 tcp->inst[0] = ptrace(PTRACE_PEEKTEXT, pid, (char *) addr + 0,
1667 0);
1668 tcp->inst[1] = ptrace(PTRACE_PEEKTEXT, pid, (char *) addr + 8,
1669 0);
Wichert Akkerman8b1b40c2000-02-03 21:58:30 +00001670 if (errno) {
1671 perror("setbpt: ptrace(PTRACE_PEEKTEXT, ...)");
1672 return -1;
1673 }
1674
1675 errno = 0;
1676 ptrace(PTRACE_POKETEXT, pid, (char *) addr + 0, LOOP0);
1677 ptrace(PTRACE_POKETEXT, pid, (char *) addr + 8, LOOP1);
1678 if (errno) {
1679 perror("setbpt: ptrace(PTRACE_POKETEXT, ...)");
1680 return -1;
1681 }
1682 tcp->flags |= TCB_BPTSET;
1683 }
1684#else /* !IA64 */
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001685
Michal Ludvig0e035502002-09-23 15:41:01 +00001686#if defined (I386) || defined(X86_64)
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001687#define LOOP 0x0000feeb
1688#elif defined (M68K)
1689#define LOOP 0x60fe0000
1690#elif defined (ALPHA)
Wichert Akkerman4dc8a2a1999-12-23 14:20:14 +00001691#define LOOP 0xc3ffffff
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001692#elif defined (POWERPC)
Roland McGrath1e85cf92002-12-16 20:40:54 +00001693#define LOOP 0x48000000
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001694#elif defined(ARM)
Wichert Akkerman9a8a37f1999-12-24 23:19:31 +00001695#define LOOP 0xEAFFFFFE
Wichert Akkermanf90da011999-10-31 21:15:38 +00001696#elif defined(MIPS)
Wichert Akkerman4dc8a2a1999-12-23 14:20:14 +00001697#define LOOP 0x1000ffff
1698#elif defined(S390)
1699#define LOOP 0xa7f40000 /* BRC 15,0 */
Michal Ludvig10a88d02002-10-07 14:31:00 +00001700#elif defined(S390X)
1701#define LOOP 0xa7f4000000000000UL /* BRC 15,0 */
Wichert Akkermanc1652e22001-03-27 12:17:16 +00001702#elif defined(HPPA)
1703#define LOOP 0xe81f1ff7 /* b,l,n <loc>,r0 */
Wichert Akkermanccef6372002-05-01 16:39:22 +00001704#elif defined(SH)
1705#ifdef __LITTLE_ENDIAN__
1706#define LOOP 0x0000affe
1707#else
1708#define LOOP 0xfeaf0000
1709#endif
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001710#else
1711#error unknown architecture
1712#endif
1713
1714 if (tcp->flags & TCB_BPTSET) {
1715 fprintf(stderr, "PANIC: bpt already set in pid %u\n", tcp->pid);
1716 return -1;
1717 }
1718#if defined (I386)
1719 if (upeek(tcp->pid, 4*EIP, &tcp->baddr) < 0)
1720 return -1;
Michal Ludvig0e035502002-09-23 15:41:01 +00001721#elif defined (X86_64)
1722 if (upeek(tcp->pid, 8*RIP, &tcp->baddr) < 0)
1723 return -1;
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001724#elif defined (M68K)
1725 if (upeek(tcp->pid, 4*PT_PC, &tcp->baddr) < 0)
1726 return -1;
1727#elif defined (ALPHA)
1728 return -1;
1729#elif defined (ARM)
1730 return -1;
Wichert Akkermanf90da011999-10-31 21:15:38 +00001731#elif defined (MIPS)
1732 return -1; /* FIXME: I do not know what i do - Flo */
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001733#elif defined (POWERPC)
Roland McGratheb285352003-01-14 09:59:00 +00001734 if (upeek(tcp->pid, sizeof(unsigned long)*PT_NIP, &tcp->baddr) < 0)
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001735 return -1;
Michal Ludvig10a88d02002-10-07 14:31:00 +00001736#elif defined(S390) || defined(S390X)
Wichert Akkerman4dc8a2a1999-12-23 14:20:14 +00001737 if (upeek(tcp->pid,PT_PSWADDR, &tcp->baddr) < 0)
1738 return -1;
Wichert Akkermanc1652e22001-03-27 12:17:16 +00001739#elif defined(HPPA)
1740 if (upeek(tcp->pid, PT_IAOQ0, &tcp->baddr) < 0)
1741 return -1;
1742 tcp->baddr &= ~0x03;
Wichert Akkermanccef6372002-05-01 16:39:22 +00001743#elif defined(SH)
1744 if (upeek(tcp->pid, 4*REG_PC, &tcp->baddr) < 0)
1745 return -1;
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001746#else
1747#error unknown architecture
1748#endif
1749 if (debug)
1750 fprintf(stderr, "[%d] setting bpt at %lx\n", tcp->pid, tcp->baddr);
1751 tcp->inst[0] = ptrace(PTRACE_PEEKTEXT, tcp->pid, (char *) tcp->baddr, 0);
1752 if (errno) {
1753 perror("setbpt: ptrace(PTRACE_PEEKTEXT, ...)");
1754 return -1;
1755 }
1756 ptrace(PTRACE_POKETEXT, tcp->pid, (char *) tcp->baddr, LOOP);
1757 if (errno) {
1758 perror("setbpt: ptrace(PTRACE_POKETEXT, ...)");
1759 return -1;
1760 }
1761 tcp->flags |= TCB_BPTSET;
1762
Wichert Akkerman8b1b40c2000-02-03 21:58:30 +00001763#endif /* !IA64 */
Roland McGrath6d1a65c2004-07-12 07:44:08 +00001764#endif /* SPARC || SPARC64 */
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001765#endif /* LINUX */
1766
1767#ifdef SUNOS4
1768#ifdef SPARC /* This code is slightly sparc specific */
1769
Wichert Akkermane6f876c1999-06-22 15:28:30 +00001770 struct regs regs;
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001771#define BPT 0x91d02001 /* ta 1 */
1772#define LOOP 0x10800000 /* ba 0 */
1773#define LOOPA 0x30800000 /* ba,a 0 */
1774#define NOP 0x01000000
1775#if LOOPA
1776 static int loopdeloop[1] = {LOOPA};
1777#else
1778 static int loopdeloop[2] = {LOOP, NOP};
1779#endif
1780
1781 if (tcp->flags & TCB_BPTSET) {
1782 fprintf(stderr, "PANIC: TCB already set in pid %u\n", tcp->pid);
1783 return -1;
1784 }
1785 if (ptrace(PTRACE_GETREGS, tcp->pid, (char *)&regs, 0) < 0) {
1786 perror("setbpt: ptrace(PTRACE_GETREGS, ...)");
1787 return -1;
1788 }
1789 tcp->baddr = regs.r_o7 + 8;
1790 if (ptrace(PTRACE_READTEXT, tcp->pid, (char *)tcp->baddr,
1791 sizeof tcp->inst, (char *)tcp->inst) < 0) {
1792 perror("setbpt: ptrace(PTRACE_READTEXT, ...)");
1793 return -1;
1794 }
1795
1796 /*
1797 * XXX - BRUTAL MODE ON
1798 * We cannot set a real BPT in the child, since it will not be
1799 * traced at the moment it will reach the trap and would probably
1800 * die with a core dump.
1801 * Thus, we are force our way in by taking out two instructions
1802 * and insert an eternal loop in stead, in expectance of the SIGSTOP
1803 * generated by out PTRACE_ATTACH.
1804 * Of cause, if we evaporate ourselves in the middle of all this...
1805 */
1806 if (ptrace(PTRACE_WRITETEXT, tcp->pid, (char *) tcp->baddr,
1807 sizeof loopdeloop, (char *) loopdeloop) < 0) {
1808 perror("setbpt: ptrace(PTRACE_WRITETEXT, ...)");
1809 return -1;
1810 }
1811 tcp->flags |= TCB_BPTSET;
1812
1813#endif /* SPARC */
1814#endif /* SUNOS4 */
1815
1816 return 0;
1817}
1818
1819int
1820clearbpt(tcp)
1821struct tcb *tcp;
1822{
1823
1824#ifdef LINUX
Michal Ludvig0e035502002-09-23 15:41:01 +00001825#if defined(I386) || defined(X86_64)
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001826 long eip;
Wichert Akkermanfaf72222000-02-19 23:59:03 +00001827#elif defined(POWERPC)
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001828 long pc;
Wichert Akkermanfaf72222000-02-19 23:59:03 +00001829#elif defined(M68K)
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001830 long pc;
Wichert Akkermanfaf72222000-02-19 23:59:03 +00001831#elif defined(ALPHA)
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001832 long pc;
Wichert Akkermanc1652e22001-03-27 12:17:16 +00001833#elif defined(HPPA)
1834 long iaoq;
Wichert Akkermanccef6372002-05-01 16:39:22 +00001835#elif defined(SH)
1836 long pc;
Wichert Akkermanfaf72222000-02-19 23:59:03 +00001837#endif /* architecture */
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001838
Roland McGrath6d1a65c2004-07-12 07:44:08 +00001839#if defined (SPARC) || defined (SPARC64)
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001840 /* Again, we borrow the SunOS breakpoint code. */
1841 if (!(tcp->flags & TCB_BPTSET)) {
1842 fprintf(stderr, "PANIC: TCB not set in pid %u\n", tcp->pid);
1843 return -1;
1844 }
1845 errno = 0;
1846 ptrace(PTRACE_POKETEXT, tcp->pid, (char *) tcp->baddr, tcp->inst[0]);
1847 if(errno) {
1848 perror("clearbtp: ptrace(PTRACE_POKETEXT, ...)");
1849 return -1;
1850 }
1851 tcp->flags &= ~TCB_BPTSET;
Wichert Akkermanfaf72222000-02-19 23:59:03 +00001852#elif defined(IA64)
Wichert Akkerman7b3346b2001-10-09 23:47:38 +00001853 if (ia32) {
1854 unsigned long addr;
1855
1856 if (debug)
1857 fprintf(stderr, "[%d] clearing bpt\n", tcp->pid);
1858 if (!(tcp->flags & TCB_BPTSET)) {
1859 fprintf(stderr, "PANIC: TCB not set in pid %u\n", tcp->pid);
1860 return -1;
1861 }
1862 errno = 0;
1863 ptrace(PTRACE_POKETEXT, tcp->pid, (char *) tcp->baddr, tcp->inst[0]);
1864 if (errno) {
1865 perror("clearbtp: ptrace(PTRACE_POKETEXT, ...)");
1866 return -1;
1867 }
1868 tcp->flags &= ~TCB_BPTSET;
1869
1870 if (upeek(tcp->pid, PT_CR_IIP, &addr) < 0)
1871 return -1;
1872 if (addr != tcp->baddr) {
1873 /* The breakpoint has not been reached yet. */
1874 if (debug)
1875 fprintf(stderr,
1876 "NOTE: PC not at bpt (pc %#lx baddr %#lx)\n",
1877 addr, tcp->baddr);
1878 return 0;
1879 }
1880 } else {
Wichert Akkerman8b1b40c2000-02-03 21:58:30 +00001881 unsigned long addr, ipsr;
1882 pid_t pid;
1883
1884 pid = tcp->pid;
1885
1886 if (upeek(pid, PT_CR_IPSR, &ipsr) < 0)
1887 return -1;
1888 if (upeek(pid, PT_CR_IIP, &addr) < 0)
1889 return -1;
1890
1891 /* restore original bundle: */
1892 errno = 0;
1893 ptrace(PTRACE_POKETEXT, pid, (char *) addr + 0, tcp->inst[0]);
1894 ptrace(PTRACE_POKETEXT, pid, (char *) addr + 8, tcp->inst[1]);
1895 if (errno) {
1896 perror("clearbpt: ptrace(PTRACE_POKETEXT, ...)");
1897 return -1;
1898 }
1899
1900 /* restore original "ri" in ipsr: */
1901 ipsr = (ipsr & ~(0x3ul << 41)) | ((tcp->baddr & 0x3) << 41);
1902 errno = 0;
1903 ptrace(PTRACE_POKEUSER, pid, (char *) PT_CR_IPSR, ipsr);
1904 if (errno) {
1905 perror("clrbpt: ptrace(PTRACE_POKEUSER, ...)");
1906 return -1;
1907 }
1908
1909 tcp->flags &= ~TCB_BPTSET;
1910
1911 if (addr != (tcp->baddr & ~0x3)) {
1912 /* the breakpoint has not been reached yet. */
1913 if (debug)
1914 fprintf(stderr, "NOTE: PC not at bpt (pc %#lx baddr %#lx)\n",
1915 addr, tcp->baddr);
1916 return 0;
1917 }
1918 }
Roland McGrath6d1a65c2004-07-12 07:44:08 +00001919#else /* !IA64 && !SPARC && !SPARC64 */
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001920
1921 if (debug)
1922 fprintf(stderr, "[%d] clearing bpt\n", tcp->pid);
1923 if (!(tcp->flags & TCB_BPTSET)) {
1924 fprintf(stderr, "PANIC: TCB not set in pid %u\n", tcp->pid);
1925 return -1;
1926 }
1927 errno = 0;
1928 ptrace(PTRACE_POKETEXT, tcp->pid, (char *) tcp->baddr, tcp->inst[0]);
1929 if (errno) {
1930 perror("clearbtp: ptrace(PTRACE_POKETEXT, ...)");
1931 return -1;
1932 }
1933 tcp->flags &= ~TCB_BPTSET;
1934
1935#ifdef I386
1936 if (upeek(tcp->pid, 4*EIP, &eip) < 0)
1937 return -1;
1938 if (eip != tcp->baddr) {
1939 /* The breakpoint has not been reached yet. */
1940 if (debug)
1941 fprintf(stderr,
1942 "NOTE: PC not at bpt (pc %#lx baddr %#lx)\n",
1943 eip, tcp->baddr);
1944 return 0;
1945 }
Michal Ludvig0e035502002-09-23 15:41:01 +00001946#elif defined(X86_64)
1947 if (upeek(tcp->pid, 8*RIP, &eip) < 0)
1948 return -1;
1949 if (eip != tcp->baddr) {
1950 /* The breakpoint has not been reached yet. */
1951 if (debug)
1952 fprintf(stderr,
1953 "NOTE: PC not at bpt (pc %#lx baddr %#lx)\n",
1954 eip, tcp->baddr);
1955 return 0;
1956 }
Wichert Akkermanc7926982000-04-10 22:22:31 +00001957#elif defined(POWERPC)
Roland McGratheb285352003-01-14 09:59:00 +00001958 if (upeek(tcp->pid, sizeof(unsigned long)*PT_NIP, &pc) < 0)
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001959 return -1;
1960 if (pc != tcp->baddr) {
1961 /* The breakpoint has not been reached yet. */
1962 if (debug)
1963 fprintf(stderr, "NOTE: PC not at bpt (pc %#lx baddr %#lx)\n",
1964 pc, tcp->baddr);
1965 return 0;
1966 }
Wichert Akkermanfaf72222000-02-19 23:59:03 +00001967#elif defined(M68K)
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001968 if (upeek(tcp->pid, 4*PT_PC, &pc) < 0)
1969 return -1;
1970 if (pc != tcp->baddr) {
1971 /* The breakpoint has not been reached yet. */
1972 if (debug)
1973 fprintf(stderr, "NOTE: PC not at bpt (pc %#lx baddr %#lx)\n",
1974 pc, tcp->baddr);
1975 return 0;
1976 }
Wichert Akkermanfaf72222000-02-19 23:59:03 +00001977#elif defined(ALPHA)
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001978 if (upeek(tcp->pid, REG_PC, &pc) < 0)
1979 return -1;
1980 if (pc != tcp->baddr) {
1981 /* The breakpoint has not been reached yet. */
1982 if (debug)
1983 fprintf(stderr, "NOTE: PC not at bpt (pc %#lx baddr %#lx)\n",
1984 pc, tcp->baddr);
1985 return 0;
1986 }
Wichert Akkermanc1652e22001-03-27 12:17:16 +00001987#elif defined(HPPA)
1988 if (upeek(tcp->pid, PT_IAOQ0, &iaoq) < 0)
1989 return -1;
1990 iaoq &= ~0x03;
1991 if (iaoq != tcp->baddr && iaoq != tcp->baddr + 4) {
1992 /* The breakpoint has not been reached yet. */
1993 if (debug)
1994 fprintf(stderr, "NOTE: PC not at bpt (iaoq %#lx baddr %#lx)\n",
1995 iaoq, tcp->baddr);
1996 return 0;
1997 }
1998 iaoq = tcp->baddr | 3;
1999 /* We should be pointing at a 'ldi -1000,r1' in glibc, so it is
2000 * safe to set both IAOQ0 and IAOQ1 to that so the PSW N bit
2001 * has no significant effect.
2002 */
2003 ptrace(PTRACE_POKEUSER, tcp->pid, (void *)PT_IAOQ0, iaoq);
2004 ptrace(PTRACE_POKEUSER, tcp->pid, (void *)PT_IAOQ1, iaoq);
Wichert Akkermanccef6372002-05-01 16:39:22 +00002005#elif defined(SH)
2006 if (upeek(tcp->pid, 4*REG_PC, &pc) < 0)
2007 return -1;
2008 if (pc != tcp->baddr) {
2009 /* The breakpoint has not been reached yet. */
2010 if (debug)
2011 fprintf(stderr, "NOTE: PC not at bpt (pc %#lx baddr %#lx)\n",
2012 pc, tcp->baddr);
2013 return 0;
2014 }
2015
Wichert Akkermanfaf72222000-02-19 23:59:03 +00002016#endif /* arch */
Roland McGrath6d1a65c2004-07-12 07:44:08 +00002017#endif /* !SPARC && !SPARC64 && !IA64 */
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00002018#endif /* LINUX */
2019
2020#ifdef SUNOS4
2021#ifdef SPARC
2022
2023#if !LOOPA
Wichert Akkermane6f876c1999-06-22 15:28:30 +00002024 struct regs regs;
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00002025#endif
2026
2027 if (!(tcp->flags & TCB_BPTSET)) {
2028 fprintf(stderr, "PANIC: TCB not set in pid %u\n", tcp->pid);
2029 return -1;
2030 }
2031 if (ptrace(PTRACE_WRITETEXT, tcp->pid, (char *) tcp->baddr,
2032 sizeof tcp->inst, (char *) tcp->inst) < 0) {
2033 perror("clearbtp: ptrace(PTRACE_WRITETEXT, ...)");
2034 return -1;
2035 }
2036 tcp->flags &= ~TCB_BPTSET;
2037
2038#if !LOOPA
2039 /*
2040 * Since we don't have a single instruction breakpoint, we may have
2041 * to adjust the program counter after removing the our `breakpoint'.
2042 */
2043 if (ptrace(PTRACE_GETREGS, tcp->pid, (char *)&regs, 0) < 0) {
2044 perror("clearbpt: ptrace(PTRACE_GETREGS, ...)");
2045 return -1;
2046 }
2047 if ((regs.r_pc < tcp->baddr) ||
2048 (regs.r_pc > tcp->baddr + 4)) {
2049 /* The breakpoint has not been reached yet */
2050 if (debug)
2051 fprintf(stderr,
2052 "NOTE: PC not at bpt (pc %#x baddr %#x)\n",
2053 regs.r_pc, tcp->parent->baddr);
2054 return 0;
2055 }
2056 if (regs.r_pc != tcp->baddr)
2057 if (debug)
2058 fprintf(stderr, "NOTE: PC adjusted (%#x -> %#x\n",
2059 regs.r_pc, tcp->baddr);
2060
2061 regs.r_pc = tcp->baddr;
2062 if (ptrace(PTRACE_SETREGS, tcp->pid, (char *)&regs, 0) < 0) {
2063 perror("clearbpt: ptrace(PTRACE_SETREGS, ...)");
2064 return -1;
2065 }
2066#endif /* LOOPA */
2067#endif /* SPARC */
2068#endif /* SUNOS4 */
2069
2070 return 0;
2071}
2072
Roland McGrathd81f1d92003-01-09 06:53:34 +00002073#endif
2074
Wichert Akkermanbf79f2e2000-09-01 21:03:06 +00002075#endif /* !USE_PROCFS */
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00002076
2077#ifdef SUNOS4
2078
2079static int
2080getex(pid, hdr)
2081int pid;
2082struct exec *hdr;
2083{
2084 int n;
2085
2086 for (n = 0; n < sizeof *hdr; n += 4) {
2087 long res;
2088 if (upeek(pid, uoff(u_exdata) + n, &res) < 0)
2089 return -1;
2090 memcpy(((char *) hdr) + n, &res, 4);
2091 }
2092 if (debug) {
2093 fprintf(stderr, "[struct exec: magic: %o version %u Mach %o\n",
2094 hdr->a_magic, hdr->a_toolversion, hdr->a_machtype);
2095 fprintf(stderr, "Text %lu Data %lu Bss %lu Syms %lu Entry %#lx]\n",
2096 hdr->a_text, hdr->a_data, hdr->a_bss, hdr->a_syms, hdr->a_entry);
2097 }
2098 return 0;
2099}
2100
2101int
2102fixvfork(tcp)
2103struct tcb *tcp;
2104{
2105 int pid = tcp->pid;
2106 /*
2107 * Change `vfork' in a freshly exec'ed dynamically linked
2108 * executable's (internal) symbol table to plain old `fork'
2109 */
2110
2111 struct exec hdr;
2112 struct link_dynamic dyn;
2113 struct link_dynamic_2 ld;
2114 char *strtab, *cp;
2115
2116 if (getex(pid, &hdr) < 0)
2117 return -1;
2118 if (!hdr.a_dynamic)
2119 return -1;
2120
2121 if (umove(tcp, (int) N_DATADDR(hdr), &dyn) < 0) {
2122 fprintf(stderr, "Cannot read DYNAMIC\n");
2123 return -1;
2124 }
2125 if (umove(tcp, (int) dyn.ld_un.ld_2, &ld) < 0) {
2126 fprintf(stderr, "Cannot read link_dynamic_2\n");
2127 return -1;
2128 }
2129 if ((strtab = malloc((unsigned)ld.ld_symb_size)) == NULL) {
Roland McGrath46100d02005-06-01 18:55:42 +00002130 fprintf(stderr, "out of memory\n");
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00002131 return -1;
2132 }
2133 if (umoven(tcp, (int)ld.ld_symbols+(int)N_TXTADDR(hdr),
2134 (int)ld.ld_symb_size, strtab) < 0)
2135 goto err;
2136
2137#if 0
2138 for (cp = strtab; cp < strtab + ld.ld_symb_size; ) {
2139 fprintf(stderr, "[symbol: %s]\n", cp);
2140 cp += strlen(cp)+1;
2141 }
2142 return 0;
2143#endif
2144 for (cp = strtab; cp < strtab + ld.ld_symb_size; ) {
2145 if (strcmp(cp, "_vfork") == 0) {
2146 if (debug)
2147 fprintf(stderr, "fixvfork: FOUND _vfork\n");
2148 strcpy(cp, "_fork");
2149 break;
2150 }
2151 cp += strlen(cp)+1;
2152 }
2153 if (cp < strtab + ld.ld_symb_size)
2154 /*
2155 * Write entire symbol table back to avoid
2156 * memory alignment bugs in ptrace
2157 */
2158 if (tload(pid, (int)ld.ld_symbols+(int)N_TXTADDR(hdr),
2159 (int)ld.ld_symb_size, strtab) < 0)
2160 goto err;
2161
2162 free(strtab);
2163 return 0;
2164
2165err:
2166 free(strtab);
2167 return -1;
2168}
2169
2170#endif /* SUNOS4 */