]> granicus.if.org Git - strace/blob - syscall.c
Implement dumping of preadv and pwritev syscalls
[strace] / syscall.c
1 /*
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>
5  * 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>
9  * 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
34 #include "defs.h"
35 #include "native_defs.h"
36 #include <sys/param.h>
37 #include <signal.h>
38
39 /* for struct iovec */
40 #include <sys/uio.h>
41
42 #include "regs.h"
43 #include "ptrace.h"
44
45 #if defined(SPARC64)
46 # undef PTRACE_GETREGS
47 # define PTRACE_GETREGS PTRACE_GETREGS64
48 # undef PTRACE_SETREGS
49 # define PTRACE_SETREGS PTRACE_SETREGS64
50 #endif
51
52 #if defined SPARC64
53 # include <asm/psrcompat.h>
54 #elif defined SPARC
55 # include <asm/psr.h>
56 #endif
57
58 #ifdef IA64
59 # include <asm/rse.h>
60 #endif
61
62 #ifndef NT_PRSTATUS
63 # define NT_PRSTATUS 1
64 #endif
65
66 #ifndef NSIG
67 # warning: NSIG is not defined, using 32
68 # define NSIG 32
69 #endif
70
71 #include "syscall.h"
72
73 /* Define these shorthand notations to simplify the syscallent files. */
74 #define TD TRACE_DESC
75 #define TF TRACE_FILE
76 #define TI TRACE_IPC
77 #define TN TRACE_NETWORK
78 #define TP TRACE_PROCESS
79 #define TS TRACE_SIGNAL
80 #define TM TRACE_MEMORY
81 #define NF SYSCALL_NEVER_FAILS
82 #define MA MAX_ARGS
83 #define SI STACKTRACE_INVALIDATE_CACHE
84 #define SE STACKTRACE_CAPTURE_ON_ENTER
85
86 #define SEN(syscall_name) SEN_ ## syscall_name, SYS_FUNC_NAME(sys_ ## syscall_name)
87
88 const struct_sysent sysent0[] = {
89 #include "syscallent.h"
90 };
91
92 #if SUPPORTED_PERSONALITIES > 1
93 # include PERSONALITY1_INCLUDE_FUNCS
94 static const struct_sysent sysent1[] = {
95 # include "syscallent1.h"
96 };
97 #endif
98
99 #if SUPPORTED_PERSONALITIES > 2
100 # include PERSONALITY2_INCLUDE_FUNCS
101 static const struct_sysent sysent2[] = {
102 # include "syscallent2.h"
103 };
104 #endif
105
106 /* Now undef them since short defines cause wicked namespace pollution. */
107 #undef SEN
108 #undef TD
109 #undef TF
110 #undef TI
111 #undef TN
112 #undef TP
113 #undef TS
114 #undef TM
115 #undef NF
116 #undef MA
117 #undef SI
118 #undef SE
119
120 /*
121  * `ioctlent[012].h' files are automatically generated by the auxiliary
122  * program `ioctlsort', such that the list is sorted by the `code' field.
123  * This has the side-effect of resolving the _IO.. macros into
124  * plain integers, eliminating the need to include here everything
125  * in "/usr/include".
126  */
127
128 const char *const errnoent0[] = {
129 #include "errnoent.h"
130 };
131 const char *const signalent0[] = {
132 #include "signalent.h"
133 };
134 const struct_ioctlent ioctlent0[] = {
135 #include "ioctlent0.h"
136 };
137
138 #if SUPPORTED_PERSONALITIES > 1
139 static const char *const errnoent1[] = {
140 # include "errnoent1.h"
141 };
142 static const char *const signalent1[] = {
143 # include "signalent1.h"
144 };
145 static const struct_ioctlent ioctlent1[] = {
146 # include "ioctlent1.h"
147 };
148 # include PERSONALITY0_INCLUDE_PRINTERS_DECLS
149 static const struct_printers printers0 = {
150 # include PERSONALITY0_INCLUDE_PRINTERS_DEFS
151 };
152 # include PERSONALITY1_INCLUDE_PRINTERS_DECLS
153 static const struct_printers printers1 = {
154 # include PERSONALITY1_INCLUDE_PRINTERS_DEFS
155 };
156 #endif
157
158 #if SUPPORTED_PERSONALITIES > 2
159 static const char *const errnoent2[] = {
160 # include "errnoent2.h"
161 };
162 static const char *const signalent2[] = {
163 # include "signalent2.h"
164 };
165 static const struct_ioctlent ioctlent2[] = {
166 # include "ioctlent2.h"
167 };
168 # include PERSONALITY2_INCLUDE_PRINTERS_DECLS
169 static const struct_printers printers2 = {
170 # include PERSONALITY2_INCLUDE_PRINTERS_DEFS
171 };
172 #endif
173
174 enum {
175         nsyscalls0 = ARRAY_SIZE(sysent0)
176 #if SUPPORTED_PERSONALITIES > 1
177         , nsyscalls1 = ARRAY_SIZE(sysent1)
178 # if SUPPORTED_PERSONALITIES > 2
179         , nsyscalls2 = ARRAY_SIZE(sysent2)
180 # endif
181 #endif
182 };
183
184 enum {
185         nerrnos0 = ARRAY_SIZE(errnoent0)
186 #if SUPPORTED_PERSONALITIES > 1
187         , nerrnos1 = ARRAY_SIZE(errnoent1)
188 # if SUPPORTED_PERSONALITIES > 2
189         , nerrnos2 = ARRAY_SIZE(errnoent2)
190 # endif
191 #endif
192 };
193
194 enum {
195         nsignals0 = ARRAY_SIZE(signalent0)
196 #if SUPPORTED_PERSONALITIES > 1
197         , nsignals1 = ARRAY_SIZE(signalent1)
198 # if SUPPORTED_PERSONALITIES > 2
199         , nsignals2 = ARRAY_SIZE(signalent2)
200 # endif
201 #endif
202 };
203
204 enum {
205         nioctlents0 = ARRAY_SIZE(ioctlent0)
206 #if SUPPORTED_PERSONALITIES > 1
207         , nioctlents1 = ARRAY_SIZE(ioctlent1)
208 # if SUPPORTED_PERSONALITIES > 2
209         , nioctlents2 = ARRAY_SIZE(ioctlent2)
210 # endif
211 #endif
212 };
213
214 #if SUPPORTED_PERSONALITIES > 1
215 const struct_sysent *sysent = sysent0;
216 const char *const *errnoent = errnoent0;
217 const char *const *signalent = signalent0;
218 const struct_ioctlent *ioctlent = ioctlent0;
219 const struct_printers *printers = &printers0;
220 #endif
221
222 unsigned nsyscalls = nsyscalls0;
223 unsigned nerrnos = nerrnos0;
224 unsigned nsignals = nsignals0;
225 unsigned nioctlents = nioctlents0;
226
227 unsigned num_quals;
228 qualbits_t *qual_vec[SUPPORTED_PERSONALITIES];
229
230 static const unsigned nsyscall_vec[SUPPORTED_PERSONALITIES] = {
231         nsyscalls0,
232 #if SUPPORTED_PERSONALITIES > 1
233         nsyscalls1,
234 #endif
235 #if SUPPORTED_PERSONALITIES > 2
236         nsyscalls2,
237 #endif
238 };
239 static const struct_sysent *const sysent_vec[SUPPORTED_PERSONALITIES] = {
240         sysent0,
241 #if SUPPORTED_PERSONALITIES > 1
242         sysent1,
243 #endif
244 #if SUPPORTED_PERSONALITIES > 2
245         sysent2,
246 #endif
247 };
248
249 enum {
250         MAX_NSYSCALLS1 = (nsyscalls0
251 #if SUPPORTED_PERSONALITIES > 1
252                         > nsyscalls1 ? nsyscalls0 : nsyscalls1
253 #endif
254                         ),
255         MAX_NSYSCALLS2 = (MAX_NSYSCALLS1
256 #if SUPPORTED_PERSONALITIES > 2
257                         > nsyscalls2 ? MAX_NSYSCALLS1 : nsyscalls2
258 #endif
259                         ),
260         MAX_NSYSCALLS = MAX_NSYSCALLS2,
261         /* We are ready for arches with up to 255 signals,
262          * even though the largest known signo is on MIPS and it is 128.
263          * The number of existing syscalls on all arches is
264          * larger that 255 anyway, so it is just a pedantic matter.
265          */
266         MIN_QUALS = MAX_NSYSCALLS > 255 ? MAX_NSYSCALLS : 255
267 };
268
269 #if SUPPORTED_PERSONALITIES > 1
270 unsigned current_personality;
271
272 # ifndef current_wordsize
273 unsigned current_wordsize;
274 static const int personality_wordsize[SUPPORTED_PERSONALITIES] = {
275         PERSONALITY0_WORDSIZE,
276         PERSONALITY1_WORDSIZE,
277 # if SUPPORTED_PERSONALITIES > 2
278         PERSONALITY2_WORDSIZE,
279 # endif
280 };
281 # endif
282
283 void
284 set_personality(int personality)
285 {
286         nsyscalls = nsyscall_vec[personality];
287         sysent = sysent_vec[personality];
288
289         switch (personality) {
290         case 0:
291                 errnoent = errnoent0;
292                 nerrnos = nerrnos0;
293                 ioctlent = ioctlent0;
294                 nioctlents = nioctlents0;
295                 signalent = signalent0;
296                 nsignals = nsignals0;
297                 printers = &printers0;
298                 break;
299
300         case 1:
301                 errnoent = errnoent1;
302                 nerrnos = nerrnos1;
303                 ioctlent = ioctlent1;
304                 nioctlents = nioctlents1;
305                 signalent = signalent1;
306                 nsignals = nsignals1;
307                 printers = &printers1;
308                 break;
309
310 # if SUPPORTED_PERSONALITIES > 2
311         case 2:
312                 errnoent = errnoent2;
313                 nerrnos = nerrnos2;
314                 ioctlent = ioctlent2;
315                 nioctlents = nioctlents2;
316                 signalent = signalent2;
317                 nsignals = nsignals2;
318                 printers = &printers2;
319                 break;
320 # endif
321         }
322
323         current_personality = personality;
324 # ifndef current_wordsize
325         current_wordsize = personality_wordsize[personality];
326 # endif
327 }
328
329 static void
330 update_personality(struct tcb *tcp, unsigned int personality)
331 {
332         if (personality == current_personality)
333                 return;
334         set_personality(personality);
335
336         if (personality == tcp->currpers)
337                 return;
338         tcp->currpers = personality;
339
340 # undef PERSONALITY_NAMES
341 # if defined POWERPC64
342 #  define PERSONALITY_NAMES {"64 bit", "32 bit"}
343 # elif defined X86_64
344 #  define PERSONALITY_NAMES {"64 bit", "32 bit", "x32"}
345 # elif defined X32
346 #  define PERSONALITY_NAMES {"x32", "32 bit"}
347 # elif defined AARCH64
348 #  define PERSONALITY_NAMES {"64 bit", "32 bit"}
349 # elif defined TILE
350 #  define PERSONALITY_NAMES {"64-bit", "32-bit"}
351 # endif
352 # ifdef PERSONALITY_NAMES
353         if (!qflag) {
354                 static const char *const names[] = PERSONALITY_NAMES;
355                 error_msg("[ Process PID=%d runs in %s mode. ]",
356                           tcp->pid, names[personality]);
357         }
358 # endif
359 }
360 #endif
361
362 static int qual_syscall(), qual_signal(), qual_desc();
363
364 static const struct qual_options {
365         unsigned int bitflag;
366         const char *option_name;
367         int (*qualify)(const char *, int, int);
368         const char *argument_name;
369 } qual_options[] = {
370         { QUAL_TRACE,   "trace",        qual_syscall,   "system call"   },
371         { QUAL_TRACE,   "t",            qual_syscall,   "system call"   },
372         { QUAL_ABBREV,  "abbrev",       qual_syscall,   "system call"   },
373         { QUAL_ABBREV,  "a",            qual_syscall,   "system call"   },
374         { QUAL_VERBOSE, "verbose",      qual_syscall,   "system call"   },
375         { QUAL_VERBOSE, "v",            qual_syscall,   "system call"   },
376         { QUAL_RAW,     "raw",          qual_syscall,   "system call"   },
377         { QUAL_RAW,     "x",            qual_syscall,   "system call"   },
378         { QUAL_SIGNAL,  "signal",       qual_signal,    "signal"        },
379         { QUAL_SIGNAL,  "signals",      qual_signal,    "signal"        },
380         { QUAL_SIGNAL,  "s",            qual_signal,    "signal"        },
381         { QUAL_READ,    "read",         qual_desc,      "descriptor"    },
382         { QUAL_READ,    "reads",        qual_desc,      "descriptor"    },
383         { QUAL_READ,    "r",            qual_desc,      "descriptor"    },
384         { QUAL_WRITE,   "write",        qual_desc,      "descriptor"    },
385         { QUAL_WRITE,   "writes",       qual_desc,      "descriptor"    },
386         { QUAL_WRITE,   "w",            qual_desc,      "descriptor"    },
387         { 0,            NULL,           NULL,           NULL            },
388 };
389
390 static void
391 reallocate_qual(const unsigned int n)
392 {
393         unsigned p;
394         qualbits_t *qp;
395         for (p = 0; p < SUPPORTED_PERSONALITIES; p++) {
396                 qp = qual_vec[p] = xreallocarray(qual_vec[p], n,
397                                                  sizeof(qualbits_t));
398                 memset(&qp[num_quals], 0, (n - num_quals) * sizeof(qualbits_t));
399         }
400         num_quals = n;
401 }
402
403 static void
404 qualify_one(const unsigned int n, unsigned int bitflag, const int not, const int pers)
405 {
406         int p;
407
408         if (num_quals <= n)
409                 reallocate_qual(n + 1);
410
411         for (p = 0; p < SUPPORTED_PERSONALITIES; p++) {
412                 if (pers == p || pers < 0) {
413                         if (not)
414                                 qual_vec[p][n] &= ~bitflag;
415                         else
416                                 qual_vec[p][n] |= bitflag;
417                 }
418         }
419 }
420
421 static int
422 qual_syscall(const char *s, const unsigned int bitflag, const int not)
423 {
424         int p;
425         unsigned int i;
426         int rc = -1;
427
428         if (*s >= '0' && *s <= '9') {
429                 i = string_to_uint(s);
430                 if (i >= MAX_NSYSCALLS)
431                         return -1;
432                 qualify_one(i, bitflag, not, -1);
433                 return 0;
434         }
435
436         for (p = 0; p < SUPPORTED_PERSONALITIES; p++) {
437                 for (i = 0; i < nsyscall_vec[p]; i++) {
438                         if (sysent_vec[p][i].sys_name
439                          && strcmp(s, sysent_vec[p][i].sys_name) == 0
440                         ) {
441                                 qualify_one(i, bitflag, not, p);
442                                 rc = 0;
443                         }
444                 }
445         }
446
447         return rc;
448 }
449
450 static int
451 qual_signal(const char *s, const unsigned int bitflag, const int not)
452 {
453         unsigned int i;
454
455         if (*s >= '0' && *s <= '9') {
456                 int signo = string_to_uint(s);
457                 if (signo < 0 || signo > 255)
458                         return -1;
459                 qualify_one(signo, bitflag, not, -1);
460                 return 0;
461         }
462         if (strncasecmp(s, "SIG", 3) == 0)
463                 s += 3;
464         for (i = 0; i <= NSIG; i++) {
465                 if (strcasecmp(s, signame(i) + 3) == 0) {
466                         qualify_one(i, bitflag, not, -1);
467                         return 0;
468                 }
469         }
470         return -1;
471 }
472
473 static int
474 qual_desc(const char *s, const unsigned int bitflag, const int not)
475 {
476         if (*s >= '0' && *s <= '9') {
477                 int desc = string_to_uint(s);
478                 if (desc < 0 || desc > 0x7fff) /* paranoia */
479                         return -1;
480                 qualify_one(desc, bitflag, not, -1);
481                 return 0;
482         }
483         return -1;
484 }
485
486 static int
487 lookup_class(const char *s)
488 {
489         if (strcmp(s, "file") == 0)
490                 return TRACE_FILE;
491         if (strcmp(s, "ipc") == 0)
492                 return TRACE_IPC;
493         if (strcmp(s, "network") == 0)
494                 return TRACE_NETWORK;
495         if (strcmp(s, "process") == 0)
496                 return TRACE_PROCESS;
497         if (strcmp(s, "signal") == 0)
498                 return TRACE_SIGNAL;
499         if (strcmp(s, "desc") == 0)
500                 return TRACE_DESC;
501         if (strcmp(s, "memory") == 0)
502                 return TRACE_MEMORY;
503         return -1;
504 }
505
506 void
507 qualify(const char *s)
508 {
509         const struct qual_options *opt;
510         char *copy;
511         const char *p;
512         int not;
513         unsigned int i;
514
515         if (num_quals == 0)
516                 reallocate_qual(MIN_QUALS);
517
518         opt = &qual_options[0];
519         for (i = 0; (p = qual_options[i].option_name); i++) {
520                 unsigned int len = strlen(p);
521                 if (strncmp(s, p, len) == 0 && s[len] == '=') {
522                         opt = &qual_options[i];
523                         s += len + 1;
524                         break;
525                 }
526         }
527         not = 0;
528         if (*s == '!') {
529                 not = 1;
530                 s++;
531         }
532         if (strcmp(s, "none") == 0) {
533                 not = 1 - not;
534                 s = "all";
535         }
536         if (strcmp(s, "all") == 0) {
537                 for (i = 0; i < num_quals; i++) {
538                         qualify_one(i, opt->bitflag, not, -1);
539                 }
540                 return;
541         }
542         for (i = 0; i < num_quals; i++) {
543                 qualify_one(i, opt->bitflag, !not, -1);
544         }
545         copy = xstrdup(s);
546         for (p = strtok(copy, ","); p; p = strtok(NULL, ",")) {
547                 int n;
548                 if (opt->bitflag == QUAL_TRACE && (n = lookup_class(p)) > 0) {
549                         unsigned pers;
550                         for (pers = 0; pers < SUPPORTED_PERSONALITIES; pers++) {
551                                 for (i = 0; i < nsyscall_vec[pers]; i++)
552                                         if (sysent_vec[pers][i].sys_flags & n)
553                                                 qualify_one(i, opt->bitflag, not, pers);
554                         }
555                         continue;
556                 }
557                 if (opt->qualify(p, opt->bitflag, not)) {
558                         error_msg_and_die("invalid %s '%s'",
559                                 opt->argument_name, p);
560                 }
561         }
562         free(copy);
563         return;
564 }
565
566 #ifdef SYS_socket_subcall
567 static void
568 decode_socket_subcall(struct tcb *tcp)
569 {
570         unsigned long addr;
571         unsigned int n;
572
573         if (tcp->u_arg[0] < 0 || tcp->u_arg[0] >= SYS_socket_nsubcalls)
574                 return;
575
576         tcp->scno = SYS_socket_subcall + tcp->u_arg[0];
577         tcp->qual_flg = qual_flags[tcp->scno];
578         tcp->s_ent = &sysent[tcp->scno];
579         addr = tcp->u_arg[1];
580         n = tcp->s_ent->nargs;
581         if (sizeof(tcp->u_arg[0]) == current_wordsize) {
582                 memset(tcp->u_arg, 0, n * sizeof(tcp->u_arg[0]));
583                 (void) umoven(tcp, addr, n * sizeof(tcp->u_arg[0]), tcp->u_arg);
584         } else {
585                 unsigned int args[n];
586                 unsigned int i;
587
588                 memset(args, 0, sizeof(args));
589                 (void) umove(tcp, addr, &args);
590                 for (i = 0; i < n; ++i)
591                         tcp->u_arg[i] = args[i];
592         }
593 }
594 #endif
595
596 #ifdef SYS_ipc_subcall
597 static void
598 decode_ipc_subcall(struct tcb *tcp)
599 {
600         unsigned int i, n;
601
602         if (tcp->u_arg[0] < 0 || tcp->u_arg[0] >= SYS_ipc_nsubcalls)
603                 return;
604
605         tcp->scno = SYS_ipc_subcall + tcp->u_arg[0];
606         tcp->qual_flg = qual_flags[tcp->scno];
607         tcp->s_ent = &sysent[tcp->scno];
608         n = tcp->s_ent->nargs;
609         for (i = 0; i < n; i++)
610                 tcp->u_arg[i] = tcp->u_arg[i + 1];
611 }
612 #endif
613
614 #ifdef LINUX_MIPSO32
615 static void
616 decode_mips_subcall(struct tcb *tcp)
617 {
618         if (!SCNO_IS_VALID(tcp->u_arg[0]))
619                 return;
620         tcp->scno = tcp->u_arg[0];
621         tcp->qual_flg = qual_flags[tcp->scno];
622         tcp->s_ent = &sysent[tcp->scno];
623         memmove(&tcp->u_arg[0], &tcp->u_arg[1],
624                 sizeof(tcp->u_arg) - sizeof(tcp->u_arg[0]));
625         /*
626          * Fetching the last arg of 7-arg syscalls (fadvise64_64
627          * and sync_file_range) would require additional code,
628          * see linux/mips/get_syscall_args.c
629          */
630 }
631 #endif
632
633 int
634 printargs(struct tcb *tcp)
635 {
636         if (entering(tcp)) {
637                 int i;
638                 int n = tcp->s_ent->nargs;
639                 for (i = 0; i < n; i++)
640                         tprintf("%s%#lx", i ? ", " : "", tcp->u_arg[i]);
641         }
642         return 0;
643 }
644
645 int
646 printargs_u(struct tcb *tcp)
647 {
648         const int n = tcp->s_ent->nargs;
649         int i;
650         for (i = 0; i < n; ++i)
651                 tprintf("%s%u", i ? ", " : "",
652                         (unsigned int) tcp->u_arg[i]);
653         return RVAL_DECODED;
654 }
655
656 int
657 printargs_d(struct tcb *tcp)
658 {
659         const int n = tcp->s_ent->nargs;
660         int i;
661         for (i = 0; i < n; ++i)
662                 tprintf("%s%d", i ? ", " : "",
663                         (int) tcp->u_arg[i]);
664         return RVAL_DECODED;
665 }
666
667 static void
668 dumpio(struct tcb *tcp)
669 {
670         int sen;
671
672         if (syserror(tcp))
673                 return;
674         if ((unsigned long) tcp->u_arg[0] >= num_quals)
675                 return;
676         sen = tcp->s_ent->sen;
677         if (SEN_printargs == sen)
678                 return;
679         if (qual_flags[tcp->u_arg[0]] & QUAL_READ) {
680                 switch (sen) {
681                 case SEN_read:
682                 case SEN_pread:
683                 case SEN_recv:
684                 case SEN_recvfrom:
685                         dumpstr(tcp, tcp->u_arg[1], tcp->u_rval);
686                         return;
687                 case SEN_readv:
688                 case SEN_preadv:
689                         dumpiov_upto(tcp, tcp->u_arg[2], tcp->u_arg[1],
690                                      tcp->u_rval);
691                         return;
692                 case SEN_recvmsg:
693                         dumpiov_in_msghdr(tcp, tcp->u_arg[1], tcp->u_rval);
694                         return;
695                 case SEN_recvmmsg:
696                         dumpiov_in_mmsghdr(tcp, tcp->u_arg[1]);
697                         return;
698                 }
699         }
700         if (qual_flags[tcp->u_arg[0]] & QUAL_WRITE) {
701                 switch (sen) {
702                 case SEN_write:
703                 case SEN_pwrite:
704                 case SEN_send:
705                 case SEN_sendto:
706                         dumpstr(tcp, tcp->u_arg[1], tcp->u_arg[2]);
707                         break;
708                 case SEN_writev:
709                 case SEN_pwritev:
710                 case SEN_vmsplice:
711                         dumpiov(tcp, tcp->u_arg[2], tcp->u_arg[1]);
712                         break;
713                 case SEN_sendmsg:
714                         dumpiov_in_msghdr(tcp, tcp->u_arg[1],
715                                           (unsigned long) -1L);
716                         break;
717                 case SEN_sendmmsg:
718                         dumpiov_in_mmsghdr(tcp, tcp->u_arg[1]);
719                         break;
720                 }
721         }
722 }
723
724 /*
725  * Shuffle syscall numbers so that we don't have huge gaps in syscall table.
726  * The shuffling should be an involution: shuffle_scno(shuffle_scno(n)) == n.
727  */
728 #if defined(ARM) || defined(AARCH64) /* So far only 32-bit ARM needs this */
729 static long
730 shuffle_scno(unsigned long scno)
731 {
732         if (scno < ARM_FIRST_SHUFFLED_SYSCALL)
733                 return scno;
734
735         /* __ARM_NR_cmpxchg? Swap with LAST_ORDINARY+1 */
736         if (scno == ARM_FIRST_SHUFFLED_SYSCALL)
737                 return 0x000ffff0;
738         if (scno == 0x000ffff0)
739                 return ARM_FIRST_SHUFFLED_SYSCALL;
740
741 #define ARM_SECOND_SHUFFLED_SYSCALL (ARM_FIRST_SHUFFLED_SYSCALL + 1)
742         /*
743          * Is it ARM specific syscall?
744          * Swap [0x000f0000, 0x000f0000 + LAST_SPECIAL] range
745          * with [SECOND_SHUFFLED, SECOND_SHUFFLED + LAST_SPECIAL] range.
746          */
747         if (scno >= 0x000f0000 &&
748             scno <= 0x000f0000 + ARM_LAST_SPECIAL_SYSCALL) {
749                 return scno - 0x000f0000 + ARM_SECOND_SHUFFLED_SYSCALL;
750         }
751         if (scno <= ARM_SECOND_SHUFFLED_SYSCALL + ARM_LAST_SPECIAL_SYSCALL) {
752                 return scno + 0x000f0000 - ARM_SECOND_SHUFFLED_SYSCALL;
753         }
754
755         return scno;
756 }
757 #else
758 # define shuffle_scno(scno) ((long)(scno))
759 #endif
760
761 const char *
762 syscall_name(long scno)
763 {
764         static char buf[sizeof("syscall_%lu") + sizeof(long)*3];
765
766         if (SCNO_IS_VALID(scno))
767                 return sysent[scno].sys_name;
768         else {
769                 sprintf(buf, "syscall_%lu", shuffle_scno(scno));
770                 return buf;
771         }
772 }
773
774 static long get_regs_error;
775
776 void
777 clear_regs(void)
778 {
779         get_regs_error = -1;
780 }
781
782 static int get_syscall_args(struct tcb *);
783 static int get_syscall_result(struct tcb *);
784 static int arch_get_scno(struct tcb *tcp);
785 static void get_error(struct tcb *, const bool);
786 #if defined X86_64 || defined POWERPC
787 static int getregs_old(pid_t);
788 #endif
789
790 static int
791 trace_syscall_entering(struct tcb *tcp)
792 {
793         int res, scno_good;
794
795         scno_good = res = get_scno(tcp);
796         if (res == 0)
797                 return res;
798         if (res == 1)
799                 res = get_syscall_args(tcp);
800
801         if (res != 1) {
802                 printleader(tcp);
803                 if (scno_good != 1)
804                         tprints("????" /* anti-trigraph gap */ "(");
805                 else if (tcp->qual_flg & UNDEFINED_SCNO)
806                         tprintf("%s(", syscall_name(tcp->scno));
807                 else
808                         tprintf("%s(", tcp->s_ent->sys_name);
809                 /*
810                  * " <unavailable>" will be added later by the code which
811                  * detects ptrace errors.
812                  */
813                 goto ret;
814         }
815
816 #ifdef LINUX_MIPSO32
817         if (SEN_syscall == tcp->s_ent->sen)
818                 decode_mips_subcall(tcp);
819 #endif
820
821         if (   SEN_execve == tcp->s_ent->sen
822 # if defined(SPARC) || defined(SPARC64)
823             || SEN_execv == tcp->s_ent->sen
824 # endif
825            ) {
826                 hide_log_until_execve = 0;
827         }
828
829 #if defined(SYS_socket_subcall) || defined(SYS_ipc_subcall)
830         switch (tcp->s_ent->sen) {
831 # ifdef SYS_socket_subcall
832                 case SEN_socketcall:
833                         decode_socket_subcall(tcp);
834                         break;
835 # endif
836 # ifdef SYS_ipc_subcall
837                 case SEN_ipc:
838                         decode_ipc_subcall(tcp);
839                         break;
840 # endif
841         }
842 #endif
843
844         if (!(tcp->qual_flg & QUAL_TRACE)
845          || (tracing_paths && !pathtrace_match(tcp))
846         ) {
847                 tcp->flags |= TCB_INSYSCALL | TCB_FILTERED;
848                 tcp->sys_func_rval = 0;
849                 return 0;
850         }
851
852         tcp->flags &= ~TCB_FILTERED;
853
854         if (cflag == CFLAG_ONLY_STATS || hide_log_until_execve) {
855                 res = 0;
856                 goto ret;
857         }
858
859 #ifdef USE_LIBUNWIND
860         if (stack_trace_enabled) {
861                 if (tcp->s_ent->sys_flags & STACKTRACE_CAPTURE_ON_ENTER)
862                         unwind_capture_stacktrace(tcp);
863         }
864 #endif
865
866         printleader(tcp);
867         if (tcp->qual_flg & UNDEFINED_SCNO)
868                 tprintf("%s(", syscall_name(tcp->scno));
869         else
870                 tprintf("%s(", tcp->s_ent->sys_name);
871         if ((tcp->qual_flg & QUAL_RAW) && SEN_exit != tcp->s_ent->sen)
872                 res = printargs(tcp);
873         else
874                 res = tcp->s_ent->sys_func(tcp);
875
876         fflush(tcp->outf);
877  ret:
878         tcp->flags |= TCB_INSYSCALL;
879         tcp->sys_func_rval = res;
880         /* Measure the entrance time as late as possible to avoid errors. */
881         if (Tflag || cflag)
882                 gettimeofday(&tcp->etime, NULL);
883         return res;
884 }
885
886 static int
887 trace_syscall_exiting(struct tcb *tcp)
888 {
889         int sys_res;
890         struct timeval tv;
891         int res;
892         long u_error;
893
894         /* Measure the exit time as early as possible to avoid errors. */
895         if (Tflag || cflag)
896                 gettimeofday(&tv, NULL);
897
898 #ifdef USE_LIBUNWIND
899         if (stack_trace_enabled) {
900                 if (tcp->s_ent->sys_flags & STACKTRACE_INVALIDATE_CACHE)
901                         unwind_cache_invalidate(tcp);
902         }
903 #endif
904
905 #if SUPPORTED_PERSONALITIES > 1
906         update_personality(tcp, tcp->currpers);
907 #endif
908         res = (get_regs_error ? -1 : get_syscall_result(tcp));
909         if (filtered(tcp) || hide_log_until_execve)
910                 goto ret;
911
912         if (cflag) {
913                 count_syscall(tcp, &tv);
914                 if (cflag == CFLAG_ONLY_STATS) {
915                         goto ret;
916                 }
917         }
918
919         /* If not in -ff mode, and printing_tcp != tcp,
920          * then the log currently does not end with output
921          * of _our syscall entry_, but with something else.
922          * We need to say which syscall's return is this.
923          *
924          * Forced reprinting via TCB_REPRINT is used only by
925          * "strace -ff -oLOG test/threaded_execve" corner case.
926          * It's the only case when -ff mode needs reprinting.
927          */
928         if ((followfork < 2 && printing_tcp != tcp) || (tcp->flags & TCB_REPRINT)) {
929                 tcp->flags &= ~TCB_REPRINT;
930                 printleader(tcp);
931                 if (tcp->qual_flg & UNDEFINED_SCNO)
932                         tprintf("<... %s resumed> ", syscall_name(tcp->scno));
933                 else
934                         tprintf("<... %s resumed> ", tcp->s_ent->sys_name);
935         }
936         printing_tcp = tcp;
937
938         tcp->s_prev_ent = NULL;
939         if (res != 1) {
940                 /* There was error in one of prior ptrace ops */
941                 tprints(") ");
942                 tabto();
943                 tprints("= ? <unavailable>\n");
944                 line_ended();
945                 tcp->flags &= ~TCB_INSYSCALL;
946                 tcp->sys_func_rval = 0;
947                 return res;
948         }
949         tcp->s_prev_ent = tcp->s_ent;
950
951         sys_res = 0;
952         if (tcp->qual_flg & QUAL_RAW) {
953                 /* sys_res = printargs(tcp); - but it's nop on sysexit */
954         } else {
955         /* FIXME: not_failing_only (IOW, option -z) is broken:
956          * failure of syscall is known only after syscall return.
957          * Thus we end up with something like this on, say, ENOENT:
958          *     open("doesnt_exist", O_RDONLY <unfinished ...>
959          *     {next syscall decode}
960          * whereas the intended result is that open(...) line
961          * is not shown at all.
962          */
963                 if (not_failing_only && tcp->u_error)
964                         goto ret;       /* ignore failed syscalls */
965                 if (tcp->sys_func_rval & RVAL_DECODED)
966                         sys_res = tcp->sys_func_rval;
967                 else
968                         sys_res = tcp->s_ent->sys_func(tcp);
969         }
970
971         tprints(") ");
972         tabto();
973         u_error = tcp->u_error;
974         if (tcp->qual_flg & QUAL_RAW) {
975                 if (u_error)
976                         tprintf("= -1 (errno %ld)", u_error);
977                 else
978                         tprintf("= %#lx", tcp->u_rval);
979         }
980         else if (!(sys_res & RVAL_NONE) && u_error) {
981                 switch (u_error) {
982                 /* Blocked signals do not interrupt any syscalls.
983                  * In this case syscalls don't return ERESTARTfoo codes.
984                  *
985                  * Deadly signals set to SIG_DFL interrupt syscalls
986                  * and kill the process regardless of which of the codes below
987                  * is returned by the interrupted syscall.
988                  * In some cases, kernel forces a kernel-generated deadly
989                  * signal to be unblocked and set to SIG_DFL (and thus cause
990                  * death) if it is blocked or SIG_IGNed: for example, SIGSEGV
991                  * or SIGILL. (The alternative is to leave process spinning
992                  * forever on the faulty instruction - not useful).
993                  *
994                  * SIG_IGNed signals and non-deadly signals set to SIG_DFL
995                  * (for example, SIGCHLD, SIGWINCH) interrupt syscalls,
996                  * but kernel will always restart them.
997                  */
998                 case ERESTARTSYS:
999                         /* Most common type of signal-interrupted syscall exit code.
1000                          * The system call will be restarted with the same arguments
1001                          * if SA_RESTART is set; otherwise, it will fail with EINTR.
1002                          */
1003                         tprints("= ? ERESTARTSYS (To be restarted if SA_RESTART is set)");
1004                         break;
1005                 case ERESTARTNOINTR:
1006                         /* Rare. For example, fork() returns this if interrupted.
1007                          * SA_RESTART is ignored (assumed set): the restart is unconditional.
1008                          */
1009                         tprints("= ? ERESTARTNOINTR (To be restarted)");
1010                         break;
1011                 case ERESTARTNOHAND:
1012                         /* pause(), rt_sigsuspend() etc use this code.
1013                          * SA_RESTART is ignored (assumed not set):
1014                          * syscall won't restart (will return EINTR instead)
1015                          * even after signal with SA_RESTART set. However,
1016                          * after SIG_IGN or SIG_DFL signal it will restart
1017                          * (thus the name "restart only if has no handler").
1018                          */
1019                         tprints("= ? ERESTARTNOHAND (To be restarted if no handler)");
1020                         break;
1021                 case ERESTART_RESTARTBLOCK:
1022                         /* Syscalls like nanosleep(), poll() which can't be
1023                          * restarted with their original arguments use this
1024                          * code. Kernel will execute restart_syscall() instead,
1025                          * which changes arguments before restarting syscall.
1026                          * SA_RESTART is ignored (assumed not set) similarly
1027                          * to ERESTARTNOHAND. (Kernel can't honor SA_RESTART
1028                          * since restart data is saved in "restart block"
1029                          * in task struct, and if signal handler uses a syscall
1030                          * which in turn saves another such restart block,
1031                          * old data is lost and restart becomes impossible)
1032                          */
1033                         tprints("= ? ERESTART_RESTARTBLOCK (Interrupted by signal)");
1034                         break;
1035                 default:
1036                         if ((unsigned long) u_error < nerrnos
1037                             && errnoent[u_error])
1038                                 tprintf("= -1 %s (%s)", errnoent[u_error],
1039                                         strerror(u_error));
1040                         else
1041                                 tprintf("= -1 ERRNO_%lu (%s)", u_error,
1042                                         strerror(u_error));
1043                         break;
1044                 }
1045                 if ((sys_res & RVAL_STR) && tcp->auxstr)
1046                         tprintf(" (%s)", tcp->auxstr);
1047         }
1048         else {
1049                 if (sys_res & RVAL_NONE)
1050                         tprints("= ?");
1051                 else {
1052                         switch (sys_res & RVAL_MASK) {
1053                         case RVAL_HEX:
1054 #if SUPPORTED_PERSONALITIES > 1
1055                                 if (current_wordsize < sizeof(long))
1056                                         tprintf("= %#x",
1057                                                 (unsigned int) tcp->u_rval);
1058                                 else
1059 #endif
1060                                         tprintf("= %#lx", tcp->u_rval);
1061                                 break;
1062                         case RVAL_OCTAL:
1063                                 tprintf("= %#lo", tcp->u_rval);
1064                                 break;
1065                         case RVAL_UDECIMAL:
1066 #if SUPPORTED_PERSONALITIES > 1
1067                                 if (current_wordsize < sizeof(long))
1068                                         tprintf("= %u",
1069                                                 (unsigned int) tcp->u_rval);
1070                                 else
1071 #endif
1072                                         tprintf("= %lu", tcp->u_rval);
1073                                 break;
1074                         case RVAL_DECIMAL:
1075                                 tprintf("= %ld", tcp->u_rval);
1076                                 break;
1077                         case RVAL_FD:
1078                                 if (show_fd_path) {
1079                                         tprints("= ");
1080                                         printfd(tcp, tcp->u_rval);
1081                                 }
1082                                 else
1083                                         tprintf("= %ld", tcp->u_rval);
1084                                 break;
1085 #if defined(LINUX_MIPSN32) || defined(X32)
1086                         /*
1087                         case RVAL_LHEX:
1088                                 tprintf("= %#llx", tcp->u_lrval);
1089                                 break;
1090                         case RVAL_LOCTAL:
1091                                 tprintf("= %#llo", tcp->u_lrval);
1092                                 break;
1093                         */
1094                         case RVAL_LUDECIMAL:
1095                                 tprintf("= %llu", tcp->u_lrval);
1096                                 break;
1097                         /*
1098                         case RVAL_LDECIMAL:
1099                                 tprintf("= %lld", tcp->u_lrval);
1100                                 break;
1101                         */
1102 #endif
1103                         default:
1104                                 error_msg("invalid rval format");
1105                                 break;
1106                         }
1107                 }
1108                 if ((sys_res & RVAL_STR) && tcp->auxstr)
1109                         tprintf(" (%s)", tcp->auxstr);
1110         }
1111         if (Tflag) {
1112                 tv_sub(&tv, &tv, &tcp->etime);
1113                 tprintf(" <%ld.%06ld>",
1114                         (long) tv.tv_sec, (long) tv.tv_usec);
1115         }
1116         tprints("\n");
1117         dumpio(tcp);
1118         line_ended();
1119
1120 #ifdef USE_LIBUNWIND
1121         if (stack_trace_enabled)
1122                 unwind_print_stacktrace(tcp);
1123 #endif
1124
1125  ret:
1126         tcp->flags &= ~TCB_INSYSCALL;
1127         tcp->sys_func_rval = 0;
1128         return 0;
1129 }
1130
1131 int
1132 trace_syscall(struct tcb *tcp)
1133 {
1134         return exiting(tcp) ?
1135                 trace_syscall_exiting(tcp) : trace_syscall_entering(tcp);
1136 }
1137
1138 bool
1139 is_erestart(struct tcb *tcp)
1140 {
1141         switch (tcp->u_error) {
1142                 case ERESTARTSYS:
1143                 case ERESTARTNOINTR:
1144                 case ERESTARTNOHAND:
1145                 case ERESTART_RESTARTBLOCK:
1146                         return true;
1147                 default:
1148                         return false;
1149         }
1150 }
1151
1152 static int saved_u_error;
1153
1154 void
1155 temporarily_clear_syserror(struct tcb *tcp)
1156 {
1157         saved_u_error = tcp->u_error;
1158         tcp->u_error = 0;
1159 }
1160
1161 void
1162 restore_cleared_syserror(struct tcb *tcp)
1163 {
1164         tcp->u_error = saved_u_error;
1165 }
1166
1167 #include "kernel_types.h"
1168
1169 /*
1170  * Check the syscall return value register value for whether it is
1171  * a negated errno code indicating an error, or a success return value.
1172  */
1173 static inline bool
1174 is_negated_errno(kernel_ulong_t val)
1175 {
1176         /* Linux kernel defines MAX_ERRNO to 4095. */
1177         kernel_ulong_t max = -(kernel_long_t) 4095;
1178
1179 #if SUPPORTED_PERSONALITIES > 1 && SIZEOF_LONG > 4
1180         if (current_wordsize < sizeof(val)) {
1181                 val = (uint32_t) val;
1182                 max = (uint32_t) max;
1183         }
1184 #elif defined X32
1185         /*
1186          * current_wordsize is 4 even in personality 0 (native X32)
1187          * but truncation _must not_ be done in it.
1188          * can't check current_wordsize here!
1189          */
1190         if (current_personality != 0) {
1191                 val = (uint32_t) val;
1192                 max = (uint32_t) max;
1193         }
1194 #endif
1195
1196         return val >= max;
1197 }
1198
1199 #include "arch_regs.c"
1200
1201 #ifdef HAVE_GETRVAL2
1202 # include "arch_getrval2.c"
1203 #endif
1204
1205 void
1206 print_pc(struct tcb *tcp)
1207 {
1208 #if defined ARCH_PC_REG
1209 # define ARCH_GET_PC 0
1210 #elif defined ARCH_PC_PEEK_ADDR
1211         long pc;
1212 # define ARCH_PC_REG pc
1213 # define ARCH_GET_PC upeek(tcp->pid, ARCH_PC_PEEK_ADDR, &pc)
1214 #else
1215 # error Neither ARCH_PC_REG nor ARCH_PC_PEEK_ADDR is defined
1216 #endif
1217         if (get_regs_error || ARCH_GET_PC)
1218                 tprints(current_wordsize == 4 ? "[????????] "
1219                                               : "[????????????????] ");
1220         else
1221                 tprintf(current_wordsize == 4 ? "[%08lx] " : "[%016lx] ",
1222                         (unsigned long) ARCH_PC_REG);
1223 }
1224
1225 #if defined ARCH_REGS_FOR_GETREGSET
1226 static long
1227 get_regset(pid_t pid)
1228 {
1229 # ifdef ARCH_IOVEC_FOR_GETREGSET
1230         /* variable iovec */
1231         ARCH_IOVEC_FOR_GETREGSET.iov_len = sizeof(ARCH_REGS_FOR_GETREGSET);
1232         return ptrace(PTRACE_GETREGSET, pid, NT_PRSTATUS,
1233                       &ARCH_IOVEC_FOR_GETREGSET);
1234 # else
1235         /* constant iovec */
1236         static struct iovec io = {
1237                 .iov_base = &ARCH_REGS_FOR_GETREGSET,
1238                 .iov_len = sizeof(ARCH_REGS_FOR_GETREGSET)
1239         };
1240         return ptrace(PTRACE_GETREGSET, pid, NT_PRSTATUS, &io);
1241
1242 # endif
1243 }
1244 #endif /* ARCH_REGS_FOR_GETREGSET */
1245
1246 void
1247 get_regs(pid_t pid)
1248 {
1249 #undef USE_GET_SYSCALL_RESULT_REGS
1250 #ifdef ARCH_REGS_FOR_GETREGSET
1251 # ifdef X86_64
1252         /* Try PTRACE_GETREGSET first, fallback to PTRACE_GETREGS. */
1253         static int getregset_support;
1254
1255         if (getregset_support >= 0) {
1256                 get_regs_error = get_regset(pid);
1257                 if (getregset_support > 0)
1258                         return;
1259                 if (get_regs_error >= 0) {
1260                         getregset_support = 1;
1261                         return;
1262                 }
1263                 if (errno == EPERM || errno == ESRCH)
1264                         return;
1265                 getregset_support = -1;
1266         }
1267         get_regs_error = getregs_old(pid);
1268 # else /* !X86_64 */
1269         /* Assume that PTRACE_GETREGSET works. */
1270         get_regs_error = get_regset(pid);
1271 # endif
1272 #elif defined ARCH_REGS_FOR_GETREGS
1273 # if defined SPARC || defined SPARC64
1274         /* SPARC systems have the meaning of data and addr reversed */
1275         get_regs_error = ptrace(PTRACE_GETREGS, pid, (char *)&ARCH_REGS_FOR_GETREGS, 0);
1276 # elif defined POWERPC
1277         static bool old_kernel = 0;
1278         if (old_kernel)
1279                 goto old;
1280         get_regs_error = ptrace(PTRACE_GETREGS, pid, NULL, &ARCH_REGS_FOR_GETREGS);
1281         if (get_regs_error && errno == EIO) {
1282                 old_kernel = 1;
1283  old:
1284                 get_regs_error = getregs_old(pid);
1285         }
1286 # else
1287         /* Assume that PTRACE_GETREGS works. */
1288         get_regs_error = ptrace(PTRACE_GETREGS, pid, NULL, &ARCH_REGS_FOR_GETREGS);
1289 # endif
1290
1291 #else /* !ARCH_REGS_FOR_GETREGSET && !ARCH_REGS_FOR_GETREGS */
1292 # define USE_GET_SYSCALL_RESULT_REGS 1
1293 # warning get_regs is not implemented for this architecture yet
1294         get_regs_error = 0;
1295 #endif
1296 }
1297
1298 /*
1299  * Returns:
1300  * 0: "ignore this ptrace stop", bail out of trace_syscall_entering() silently.
1301  * 1: ok, continue in trace_syscall_entering().
1302  * other: error, trace_syscall_entering() should print error indicator
1303  *    ("????" etc) and bail out.
1304  */
1305 int
1306 get_scno(struct tcb *tcp)
1307 {
1308         if (get_regs_error)
1309                 return -1;
1310
1311         int rc = arch_get_scno(tcp);
1312         if (rc != 1)
1313                 return rc;
1314
1315         if (SCNO_IS_VALID(tcp->scno)) {
1316                 tcp->s_ent = &sysent[tcp->scno];
1317                 tcp->qual_flg = qual_flags[tcp->scno];
1318         } else {
1319                 static const struct_sysent unknown = {
1320                         .nargs = MAX_ARGS,
1321                         .sys_flags = 0,
1322                         .sys_func = printargs,
1323                         .sys_name = "system call",
1324                 };
1325                 tcp->s_ent = &unknown;
1326                 tcp->qual_flg = UNDEFINED_SCNO | QUAL_RAW | DEFAULT_QUAL_FLAGS;
1327                 if (debug_flag)
1328                         error_msg("pid %d invalid syscall %ld", tcp->pid, tcp->scno);
1329         }
1330         return 1;
1331 }
1332
1333 #ifdef USE_GET_SYSCALL_RESULT_REGS
1334 static int get_syscall_result_regs(struct tcb *);
1335 #endif
1336
1337 /* Returns:
1338  * 1: ok, continue in trace_syscall_exiting().
1339  * -1: error, trace_syscall_exiting() should print error indicator
1340  *    ("????" etc) and bail out.
1341  */
1342 static int
1343 get_syscall_result(struct tcb *tcp)
1344 {
1345 #ifdef USE_GET_SYSCALL_RESULT_REGS
1346         if (get_syscall_result_regs(tcp))
1347                 return -1;
1348 #endif
1349         tcp->u_error = 0;
1350         get_error(tcp, !(tcp->s_ent->sys_flags & SYSCALL_NEVER_FAILS));
1351
1352         return 1;
1353 }
1354
1355 #include "get_scno.c"
1356 #include "get_syscall_args.c"
1357 #ifdef USE_GET_SYSCALL_RESULT_REGS
1358 # include "get_syscall_result.c"
1359 #endif
1360 #include "get_error.c"
1361 #if defined X86_64 || defined POWERPC
1362 # include "getregs_old.c"
1363 #endif