Bug 170510 - Don't warn about ioctl of size 0 without direction hint
[valgrind.git] / coregrind / m_syswrap / syswrap-freebsd.c
blob0dc76854ef6655b23aa884a45e380cce0a57804c
1 /*--------------------------------------------------------------------*/
2 /*--- FreeBSD-specific syscalls, etc. syswrap-freebsd.c ---*/
3 /*--------------------------------------------------------------------*/
5 /*
6 This file is part of Valgrind, a dynamic binary instrumentation
7 framework.
9 Copyright (C) 2000-2008 Nicholas Nethercote
10 njn@valgrind.org
11 Copyright (C) 2018-2021 Paul Floyd
12 pjfloyd@wanadoo.fr
14 This program is free software; you can redistribute it and/or
15 modify it under the terms of the GNU General Public License as
16 published by the Free Software Foundation; either version 2 of the
17 License, or (at your option) any later version.
19 This program is distributed in the hope that it will be useful, but
20 WITHOUT ANY WARRANTY; without even the implied warranty of
21 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
22 General Public License for more details.
24 You should have received a copy of the GNU General Public License
25 along with this program; if not, see <http://www.gnu.org/licenses/>.
27 The GNU General Public License is contained in the file COPYING.
30 #if defined(VGO_freebsd)
32 #include "pub_core_basics.h"
33 #include "pub_core_vki.h"
34 #include "pub_core_vkiscnums.h"
35 #include "pub_core_threadstate.h"
36 #include "pub_core_aspacemgr.h"
37 #include "pub_core_debuginfo.h" // VG_(di_notify_*)
38 #include "pub_core_transtab.h" // VG_(discard_translations)
39 #include "pub_core_xarray.h"
40 #include "pub_core_clientstate.h"
41 #include "pub_core_debuglog.h"
42 #include "pub_core_libcbase.h"
43 #include "pub_core_libcassert.h"
44 #include "pub_core_libcfile.h"
45 #include "pub_core_libcprint.h"
46 #include "pub_core_libcproc.h"
47 #include "pub_core_libcsignal.h"
48 #include "pub_core_machine.h"
49 #include "pub_core_mallocfree.h"
50 #include "pub_core_tooliface.h"
51 #include "pub_core_options.h"
52 #include "pub_core_scheduler.h"
53 #include "pub_core_signals.h"
54 #include "pub_core_stacks.h"
55 #include "pub_core_syscall.h"
56 #include "pub_core_syswrap.h"
57 #include "pub_core_inner.h"
58 #if defined(ENABLE_INNER_CLIENT_REQUEST)
59 #include "pub_core_clreq.h"
60 #endif
62 #include "priv_types_n_macros.h"
63 #include "priv_syswrap-generic.h"
64 #include "priv_syswrap-main.h"
65 #include "priv_syswrap-freebsd.h"
67 static Bool capabiltyMode = False;
69 Bool VG_(get_capability_mode)(void)
71 return capabiltyMode;
75 // Run a thread from beginning to end and return the thread's
76 // scheduler-return-code.
77 static VgSchedReturnCode thread_wrapper(Word /*ThreadId*/ tidW)
79 VgSchedReturnCode ret;
80 ThreadId tid = (ThreadId)tidW;
81 Int lwpid = VG_(gettid)();
82 ThreadState* tst = VG_(get_ThreadState)(tid);
84 VG_(debugLog)(1, "syswrap-freebsd",
85 "thread_wrapper(tid=%u,lwpid=%d): entry\n",
86 tid, lwpid);
88 vg_assert(tst->status == VgTs_Init);
90 /* make sure we get the CPU lock before doing anything significant */
91 VG_(acquire_BigLock)(tid, "thread_wrapper(starting new thread)");
93 if (0)
94 VG_(printf)("thread tid %u started: stack = %p\n",
95 tid, (void*)&tid);
97 /* Make sure error reporting is enabled in the new thread. */
98 tst->err_disablement_level = 0;
100 VG_TRACK(pre_thread_first_insn, tid);
102 tst->os_state.lwpid = lwpid;
103 /* Set the threadgroup for real. This overwrites the provisional value set
104 in do_clone(). See comments in do_clone for background, also #226116. */
105 tst->os_state.threadgroup = VG_(getpid)();
107 /* Thread created with all signals blocked; scheduler will set the
108 appropriate mask */
110 ret = VG_(scheduler)(tid);
112 vg_assert(VG_(is_exiting)(tid));
114 vg_assert(tst->status == VgTs_Runnable);
115 vg_assert(VG_(is_running_thread)(tid));
117 VG_(debugLog)(1, "syswrap-freebsd",
118 "thread_wrapper(tid=%u,lwpid=%d): exit, schedreturncode %s\n",
119 tid, lwpid, VG_(name_of_VgSchedReturnCode)(ret));
121 /* Return to caller, still holding the lock. */
122 return ret;
126 /* ---------------------------------------------------------------------
127 clone-related stuff
128 ------------------------------------------------------------------ */
130 /* Run a thread all the way to the end, then do appropriate exit actions
131 (this is the last-one-out-turn-off-the-lights bit). */
132 __attribute__((noreturn))
133 static void run_a_thread_NORETURN ( Word tidW )
135 ThreadId tid = (ThreadId)tidW;
136 VgSchedReturnCode src;
137 Int c;
138 ThreadState* tst;
139 #ifdef ENABLE_INNER_CLIENT_REQUEST
140 Int registered_vgstack_id;
141 #endif
143 VG_(debugLog)(1, "syswrap-freebsd",
144 "run_a_thread_NORETURN(tid=%u): pre-thread_wrapper\n",
145 tid);
147 tst = VG_(get_ThreadState)(tid);
148 vg_assert(tst);
150 /* An thread has two stacks:
151 * the simulated stack (used by the synthetic cpu. Guest process
152 is using this stack).
153 * the valgrind stack (used by the real cpu. Valgrind code is running
154 on this stack).
155 When Valgrind runs as an inner, it must signals that its (real) stack
156 is the stack to use by the outer to e.g. do stacktraces.
158 INNER_REQUEST
159 (registered_vgstack_id
160 = VALGRIND_STACK_REGISTER (tst->os_state.valgrind_stack_base,
161 tst->os_state.valgrind_stack_init_SP));
163 /* Run the thread all the way through. */
164 src = thread_wrapper(tid);
166 VG_(debugLog)(1, "syswrap-freebsd",
167 "run_a_thread_NORETURN(tid=%u): post-thread_wrapper\n",
168 tid);
170 c = VG_(count_living_threads)();
171 vg_assert(c >= 1); /* stay sane */
173 /* Deregister thread's stack. */
174 if (tst->os_state.stk_id != NULL_STK_ID)
175 VG_(deregister_stack)(tst->os_state.stk_id);
177 // Tell the tool this thread is exiting
178 VG_TRACK( pre_thread_ll_exit, tid );
180 /* If the thread is exiting with errors disabled, complain loudly;
181 doing so is bad (does the user know this has happened?) Also,
182 in all cases, be paranoid and clear the flag anyway so that the
183 thread slot is safe in this respect if later reallocated. This
184 should be unnecessary since the flag should be cleared when the
185 slot is reallocated, in thread_wrapper(). */
186 if (tst->err_disablement_level > 0) {
187 VG_(umsg)(
188 "WARNING: exiting thread has error reporting disabled.\n"
189 "WARNING: possibly as a result of some mistake in the use\n"
190 "WARNING: of the VALGRIND_DISABLE_ERROR_REPORTING macros.\n"
192 VG_(debugLog)(
193 1, "syswrap-freebsd",
194 "run_a_thread_NORETURN(tid=%u): "
195 "WARNING: exiting thread has err_disablement_level = %u\n",
196 tid, tst->err_disablement_level
199 tst->err_disablement_level = 0;
201 if (c == 1) {
203 VG_(debugLog)(1, "syswrap-freebsd",
204 "run_a_thread_NORETURN(tid=%u): "
205 "last one standing\n",
206 tid);
208 /* We are the last one standing. Keep hold of the lock and
209 carry on to show final tool results, then exit the entire system.
210 Use the continuation pointer set at startup in m_main. */
211 ( * VG_(address_of_m_main_shutdown_actions_NORETURN) ) (tid, src);
212 } else {
214 VG_(debugLog)(1, "syswrap-freebsd",
215 "run_a_thread_NORETURN(tid=%u): "
216 "not last one standing\n",
217 tid);
219 /* OK, thread is dead, but others still exist. Just exit. */
221 /* This releases the run lock */
222 VG_(exit_thread)(tid);
223 vg_assert(tst->status == VgTs_Zombie);
224 vg_assert(sizeof(tst->status) == 4);
225 vg_assert(sizeof(tst->os_state.exitcode) == sizeof(Word));
227 INNER_REQUEST (VALGRIND_STACK_DEREGISTER (registered_vgstack_id));
229 /* We have to use this sequence to terminate the thread to
230 prevent a subtle race. If VG_(exit_thread)() had left the
231 ThreadState as Empty, then it could have been reallocated,
232 reusing the stack while we're doing these last cleanups.
233 Instead, VG_(exit_thread) leaves it as Zombie to prevent
234 reallocation. We need to make sure we don't touch the stack
235 between marking it Empty and exiting. Hence the
236 assembler. */
237 #if defined(VGP_x86_freebsd) /* FreeBSD has args on the stack */
238 asm volatile (
239 "movl %1, %0\n" /* set tst->status = VgTs_Empty */
240 "movl %2, %%eax\n" /* set %eax = __NR_thr_exit */
241 "movl %3, %%ebx\n" /* set %ebx = tst->os_state.exitcode */
242 "pushl %%ebx\n" /* arg on stack */
243 "pushl %%ebx\n" /* fake return address */
244 "int $0x80\n" /* thr_exit(tst->os_state.exitcode) */
245 "popl %%ebx\n" /* fake return address */
246 "popl %%ebx\n" /* arg off stack */
247 : "=m" (tst->status)
248 : "n" (VgTs_Empty), "n" (__NR_thr_exit), "m" (tst->os_state.exitcode)
249 : "eax", "ebx"
251 #elif defined(VGP_amd64_freebsd)
252 asm volatile (
253 "movl %1, %0\n" /* set tst->status = VgTs_Empty */
254 "movq %2, %%rax\n" /* set %rax = __NR_thr_exit */
255 "movq %3, %%rdi\n" /* set %rdi = tst->os_state.exitcode */
256 "pushq %%rdi\n" /* fake return address */
257 "syscall\n" /* thr_exit(tst->os_state.exitcode) */
258 "popq %%rdi\n" /* fake return address */
259 : "=m" (tst->status)
260 : "n" (VgTs_Empty), "n" (__NR_thr_exit), "m" (tst->os_state.exitcode)
261 : "rax", "rdi"
263 #else
264 # error Unknown platform
265 #endif
267 VG_(core_panic)("Thread exit failed?\n");
270 /*NOTREACHED*/
271 vg_assert(0);
274 Word ML_(start_thread_NORETURN) ( void* arg )
276 ThreadState* tst = (ThreadState*)arg;
277 ThreadId tid = tst->tid;
279 run_a_thread_NORETURN ( (Word)tid );
280 /*NOTREACHED*/
281 vg_assert(0);
284 /* Allocate a stack for this thread, if it doesn't already have one.
285 They're allocated lazily, and never freed. Returns the initial stack
286 pointer value to use, or 0 if allocation failed. */
287 Addr ML_(allocstack)(ThreadId tid)
289 ThreadState* tst = VG_(get_ThreadState)(tid);
290 VgStack* stack;
291 Addr initial_SP;
293 /* Either the stack_base and stack_init_SP are both zero (in which
294 case a stack hasn't been allocated) or they are both non-zero,
295 in which case it has. */
297 if (tst->os_state.valgrind_stack_base == 0)
298 vg_assert(tst->os_state.valgrind_stack_init_SP == 0);
300 if (tst->os_state.valgrind_stack_base != 0)
301 vg_assert(tst->os_state.valgrind_stack_init_SP != 0);
303 /* If no stack is present, allocate one. */
305 if (tst->os_state.valgrind_stack_base == 0) {
306 stack = VG_(am_alloc_VgStack)( &initial_SP );
307 if (stack) {
308 tst->os_state.valgrind_stack_base = (Addr)stack;
309 tst->os_state.valgrind_stack_init_SP = initial_SP;
313 if (0)
314 VG_(printf)( "stack for tid %u at %p; init_SP=%p\n",
315 tid,
316 (void*)tst->os_state.valgrind_stack_base,
317 (void*)tst->os_state.valgrind_stack_init_SP );
319 return tst->os_state.valgrind_stack_init_SP;
322 /* Allocate a stack for the main thread, and run it all the way to the
323 end. Although we already have a working VgStack
324 (VG_(interim_stack)) it's better to allocate a new one, so that
325 overflow detection works uniformly for all threads.
327 __attribute__((noreturn))
328 void VG_(main_thread_wrapper_NORETURN)(ThreadId tid)
330 Addr sp;
331 VG_(debugLog)(1, "syswrap-freebsd",
332 "entering VG_(main_thread_wrapper_NORETURN)\n");
334 sp = ML_(allocstack)(tid);
335 #if defined(ENABLE_INNER_CLIENT_REQUEST)
337 // we must register the main thread stack before the call
338 // to ML_(call_on_new_stack_0_1), otherwise the outer valgrind
339 // reports 'write error' on the non registered stack.
340 ThreadState* tst = VG_(get_ThreadState)(tid);
341 INNER_REQUEST
342 ((void)
343 VALGRIND_STACK_REGISTER (tst->os_state.valgrind_stack_base,
344 tst->os_state.valgrind_stack_init_SP));
346 #endif
348 /* If we can't even allocate the first thread's stack, we're hosed.
349 Give up. */
350 vg_assert2(sp != 0, "%s", "Cannot allocate main thread's stack.");
352 /* shouldn't be any other threads around yet */
353 vg_assert( VG_(count_living_threads)() == 1 );
355 ML_(call_on_new_stack_0_1)(
356 (Addr)sp, /* stack */
357 0, /* bogus return address */
358 run_a_thread_NORETURN, /* fn to call */
359 (Word)tid /* arg to give it */
362 /*NOTREACHED*/
363 vg_assert(0);
367 /* Do a fork() */
368 SysRes ML_(do_fork) ( ThreadId tid )
370 vki_sigset_t fork_saved_mask;
371 vki_sigset_t mask;
372 SysRes res;
374 /* Block all signals during fork, so that we can fix things up in
375 the child without being interrupted. */
376 VG_(sigfillset)(&mask);
377 VG_(sigprocmask)(VKI_SIG_SETMASK, &mask, &fork_saved_mask);
379 VG_(do_atfork_pre)(tid);
381 res = VG_(do_syscall0)( __NR_fork );
383 if (!sr_isError(res)) {
384 if (sr_Res(res) == 0) {
385 /* child */
386 VG_(do_atfork_child)(tid);
388 /* restore signal mask */
389 VG_(sigprocmask)(VKI_SIG_SETMASK, &fork_saved_mask, NULL);
391 } else {
392 /* parent */
393 VG_(do_atfork_parent)(tid);
395 if (VG_(clo_trace_syscalls))
396 VG_(printf)(" clone(fork): process %d created child %lu\n",
397 VG_(getpid)(), sr_Res(res));
399 /* restore signal mask */
400 VG_(sigprocmask)(VKI_SIG_SETMASK, &fork_saved_mask, NULL);
404 return res;
407 static Addr ML_(make_safe_mask) ( const HChar* malloc_message, Addr mask_pointer )
409 vki_sigset_t* new_mask;
410 const vki_sigset_t* old_mask = (vki_sigset_t *)mask_pointer;
412 if (!ML_(safe_to_deref)(old_mask, sizeof(vki_sigset_t))) {
413 new_mask = (vki_sigset_t*)1; /* Something recognisable to POST() hook. */
414 } else {
415 new_mask = VG_(malloc)(malloc_message, sizeof(vki_sigset_t));
416 *new_mask = *old_mask;
417 VG_(sanitize_client_sigmask)(new_mask);
420 return (Addr)new_mask;
423 static void ML_(free_safe_mask) ( Addr mask_pointer )
425 if (mask_pointer != 0 && mask_pointer != 1) {
426 VG_(free)((vki_sigset_t *) mask_pointer);
431 /* ---------------------------------------------------------------------
432 PRE/POST wrappers for arch-generic, FreeBSD-specific syscalls
433 ------------------------------------------------------------------ */
435 // Nb: See the comment above the generic PRE/POST wrappers in
436 // m_syswrap/syswrap-generic.c for notes about how they work.
438 #define PRE(name) DEFN_PRE_TEMPLATE(freebsd, name)
439 #define POST(name) DEFN_POST_TEMPLATE(freebsd, name)
441 /* On FreeBSD, if any thread calls exit(2), then they are all shut down, pretty
442 * much like linux's exit_group().
444 // SYS_exit 1
445 // void exit(int status);
446 PRE(sys_exit)
448 ThreadId t;
450 PRINT("exit( %" FMT_REGWORD "u )", ARG1);
451 PRE_REG_READ1(void, "exit", int, status);
453 /* Mark all threads (including this one) to exit. */
454 for (t = 1; t < VG_N_THREADS; t++) {
455 if ( /* not alive */ VG_(threads)[t].status == VgTs_Empty )
456 continue;
458 //VG_(threads)[t].exitreason = VgSrc_ExitThread;
459 VG_(threads)[t].os_state.exitcode = ARG1;
461 // if (t != tid)
462 // VG_(get_thread_out_of_syscall)(t); /* unblock it, if blocked */
465 VG_(nuke_all_threads_except)( tid, VgSrc_ExitProcess );
466 VG_(reap_threads)(tid);
467 VG_(threads)[tid].exitreason = VgSrc_ExitThread;
469 /* We have to claim the syscall already succeeded. */
470 SET_STATUS_Success(0);
473 // SYS_fork 2
474 // pid_t fork(void);
475 PRE(sys_fork)
477 PRINT("%s", "sys_fork ()");
478 PRE_REG_READ0(pid_t, "fork");
480 SET_STATUS_from_SysRes( ML_(do_fork)(tid) );
481 if (SUCCESS) {
482 /* Thread creation was successful; let the child have the chance
483 to run */
484 *flags |= SfYieldAfter;
488 // SYS_read 3
489 // generic
491 // SYS_write 4
492 // generic
494 // SYS_open 5
495 // generic
497 // SYS_close 6
498 // generic
500 // SYS_wait4 7
501 // generic
503 // SYS_link 9
504 // generic
506 // SYS_unlink 10
507 // generic
509 // SYS_chdir 12
511 // SYS_fchdir 13
512 // generic
514 // SYS_freebsd11_mknod 14
515 // generic
517 // SYS_chmod 15
518 // generic
520 // SYS_chown 16
521 // generic
523 // SYS_break 17
524 // generic
526 // SYS_getpid 20
527 // generic
529 // SYS_mount 21
530 // int mount(const char *type, const char *dir, int flags, void *data);
531 PRE(sys_mount)
533 // Nb: depending on 'flags', the 'type' and 'data' args may be ignored.
534 // We are conservative and check everything, except the memory pointed to
535 // by 'data'.
536 *flags |= SfMayBlock;
537 PRINT( "sys_mount( %#" FMT_REGWORD "x, %#" FMT_REGWORD "x, %" FMT_REGWORD "u, %#" FMT_REGWORD "x )",ARG1,ARG2,ARG3,ARG4);
538 PRE_REG_READ4(int, "mount",
539 const char *, type, char *, dir, int, flags,
540 void *, data);
541 PRE_MEM_RASCIIZ( "mount(type)", ARG1);
542 PRE_MEM_RASCIIZ( "mount(path)", ARG2);
545 // SYS_unmount 22
546 // int unmount(const char *dir, int flags);
547 PRE(sys_unmount)
549 PRINT("sys_umount( %#" FMT_REGWORD "x, %" FMT_REGWORD "u )", ARG1, ARG2);
550 PRE_REG_READ2(int, "unmount", const char *, dir, int, flags);
551 PRE_MEM_RASCIIZ( "unmount(path)", ARG1);
554 // SYS_setuid 23
555 // generic
557 // SYS_getuid 24
558 // generic
560 // SYS_geteuid 25
561 // generic
563 // SYS_ptrace 26
564 // int ptrace(int request, pid_t pid, caddr_t addr, int data);
565 PRE(sys_ptrace)
567 struct vki_ptrace_io_desc *io_desc;
568 PRINT("sys_ptrace ( %" FMT_REGWORD "u, %" FMT_REGWORD "u, 0x%" FMT_REGWORD "x, %" FMT_REGWORD "u)", ARG1, ARG2, ARG3, ARG4);
570 PRE_REG_READ4(int, "ptrace", int, request, pid_t, pid, caddr_t, addr, int, data);
572 switch (ARG1) {
573 case VKI_PTRACE_TRACEME:
574 break;
575 case VKI_PTRACE_READ_I:
576 case VKI_PTRACE_READ_D:
577 break;
579 case VKI_PTRACE_WRITE_I:
580 case VKI_PTRACE_WRITE_D:
581 break;
583 case VKI_PTRACE_IO:
584 PRE_MEM_READ("ptrace", ARG3, sizeof(struct vki_ptrace_io_desc));
585 io_desc = (struct vki_ptrace_io_desc *)ARG3;
586 switch (io_desc->piod_op) {
587 case VKI_PIOD_READ_D:
588 case VKI_PIOD_READ_I:
589 PRE_MEM_WRITE( "ptrace", (UWord)io_desc->piod_addr, io_desc->piod_len);
590 break;
591 case VKI_PIOD_WRITE_D:
592 case VKI_PIOD_WRITE_I:
593 PRE_MEM_READ( "ptrace", (UWord)io_desc->piod_addr, io_desc->piod_len);
594 break;
596 break;
598 case VKI_PTRACE_CONTINUE:
599 break;
601 case VKI_PTRACE_STEP:
602 break;
604 case VKI_PTRACE_KILL:
605 break;
607 case VKI_PTRACE_ATTACH:
608 break;
610 case VKI_PTRACE_DETACH:
611 break;
613 case VKI_PTRACE_GETREGS:
614 PRE_MEM_WRITE( "ptrace", ARG3, sizeof(struct vki_user_regs_struct));
615 break;
617 case VKI_PTRACE_SETREGS:
618 PRE_MEM_READ( "ptrace", ARG3, sizeof(struct vki_user_regs_struct));
619 break;
621 case VKI_PTRACE_GETFPREGS:
622 PRE_MEM_WRITE( "ptrace", ARG3, sizeof(struct vki_fpreg));
623 break;
625 case VKI_PTRACE_SETFPREGS:
626 PRE_MEM_READ( "ptrace", ARG3, sizeof(struct vki_fpreg));
627 break;
629 case VKI_PTRACE_GETDBREGS:
630 PRE_MEM_WRITE( "ptrace", ARG3, sizeof(struct vki_dbreg));
631 break;
633 case VKI_PTRACE_SETDBREGS:
634 PRE_MEM_READ( "ptrace", ARG3, sizeof(struct vki_dbreg));
635 break;
637 case VKI_PTRACE_LWPINFO:
638 PRE_MEM_WRITE( "ptrace", ARG3, sizeof(struct vki_ptrace_lwpinfo));
639 break;
641 case VKI_PTRACE_GETNUMLWPS:
642 break;
644 case VKI_PTRACE_GETLWPLIST:
645 PRE_MEM_WRITE( "ptrace", ARG3, sizeof(vki_lwpid_t) * ARG4);
646 break;
648 case VKI_PTRACE_SETSTEP:
649 break;
651 case VKI_PTRACE_CLEARSTEP:
652 break;
654 case VKI_PTRACE_SUSPEND:
655 break;
657 case VKI_PTRACE_RESUME:
658 break;
660 case VKI_PTRACE_TO_SCE:
661 break;
663 case VKI_PTRACE_TO_SCX:
664 break;
666 case VKI_PTRACE_SYSCALL:
667 break;
669 case VKI_PTRACE_VM_TIMESTAMP:
670 break;
672 case VKI_PTRACE_VM_ENTRY:
673 PRE_MEM_WRITE( "ptrace", ARG3, sizeof(struct vki_ptrace_vm_entry));
674 break;
678 POST(sys_ptrace)
680 struct vki_ptrace_io_desc *io_desc;
682 switch (ARG1) {
683 case VKI_PTRACE_TRACEME:
684 break;
685 case VKI_PTRACE_READ_I:
686 case VKI_PTRACE_READ_D:
687 break;
689 case VKI_PTRACE_WRITE_I:
690 case VKI_PTRACE_WRITE_D:
691 break;
693 case VKI_PTRACE_IO:
694 io_desc = (struct vki_ptrace_io_desc *)ARG3;
695 switch (io_desc->piod_op) {
696 case VKI_PIOD_READ_D:
697 case VKI_PIOD_READ_I:
698 if ((Word)RES != -1)
699 POST_MEM_WRITE((UWord)io_desc->piod_addr, io_desc->piod_len);
700 break;
701 case VKI_PIOD_WRITE_D:
702 case VKI_PIOD_WRITE_I:
703 break;
705 break;
707 case VKI_PTRACE_CONTINUE:
708 break;
710 case VKI_PTRACE_STEP:
711 break;
713 case VKI_PTRACE_KILL:
714 break;
716 case VKI_PTRACE_ATTACH:
717 break;
719 case VKI_PTRACE_DETACH:
720 break;
722 case VKI_PTRACE_GETREGS:
723 if ((Word)RES != -1)
724 POST_MEM_WRITE(ARG3, sizeof(struct vki_user_regs_struct));
725 break;
727 case VKI_PTRACE_SETREGS:
728 break;
730 case VKI_PTRACE_GETFPREGS:
731 if ((Word)RES != -1)
732 POST_MEM_WRITE(ARG3, sizeof(struct vki_fpreg));
733 break;
735 case VKI_PTRACE_SETFPREGS:
736 break;
738 case VKI_PTRACE_GETDBREGS:
739 if ((Word)RES != -1)
740 POST_MEM_WRITE(ARG3, sizeof(struct vki_dbreg));
741 break;
743 case VKI_PTRACE_SETDBREGS:
744 break;
746 case VKI_PTRACE_LWPINFO:
747 if ((Word)RES != -1)
748 POST_MEM_WRITE(ARG3, sizeof(struct vki_ptrace_lwpinfo));
749 break;
751 case VKI_PTRACE_GETNUMLWPS:
752 break;
754 case VKI_PTRACE_GETLWPLIST:
755 if ((Word)RES != -1)
756 POST_MEM_WRITE(ARG3, sizeof(vki_lwpid_t) * RES);
757 break;
759 case VKI_PTRACE_SETSTEP:
760 break;
762 case VKI_PTRACE_CLEARSTEP:
763 break;
765 case VKI_PTRACE_SUSPEND:
766 break;
768 case VKI_PTRACE_RESUME:
769 break;
771 case VKI_PTRACE_TO_SCE:
772 break;
774 case VKI_PTRACE_TO_SCX:
775 break;
777 case VKI_PTRACE_SYSCALL:
778 break;
780 case VKI_PTRACE_VM_TIMESTAMP:
781 break;
783 case VKI_PTRACE_VM_ENTRY:
784 if ((Word)RES != -1)
785 POST_MEM_WRITE(ARG3, sizeof(struct vki_ptrace_vm_entry));
786 break;
790 // SYS_recvmsg 27
791 // ssize_t recvmsg(int s, struct msghdr *msg, int flags);
792 PRE(sys_recvmsg)
794 *flags |= SfMayBlock;
795 PRINT("sys_recvmsg ( %" FMT_REGWORD "d, %#" FMT_REGWORD "x, %" FMT_REGWORD "d )",SARG1,ARG2,SARG3);
796 PRE_REG_READ3(vki_ssize_t, "recvmsg", int, s, struct msghdr *, msg, int, flags);
797 ML_(generic_PRE_sys_recvmsg)(tid, "recvmsg", (struct vki_msghdr *)ARG2);
800 POST(sys_recvmsg)
803 ML_(generic_POST_sys_recvmsg)(tid, "recvmsg", (struct vki_msghdr *)ARG2, RES);
806 // SYS_sendmsg 28
807 // ssize_t sendmsg(int s, const struct msghdr *msg, int flags);
808 PRE(sys_sendmsg)
810 *flags |= SfMayBlock;
811 PRINT("sys_sendmsg ( %" FMT_REGWORD "u, %#" FMT_REGWORD "x, %" FMT_REGWORD "u )",ARG1,ARG2,ARG3);
812 PRE_REG_READ3(ssize_t, "sendmsg",
813 int, s, const struct msghdr *, msg, int, flags);
814 ML_(generic_PRE_sys_sendmsg)(tid, "sendmsg", (struct vki_msghdr *)ARG2);
817 // SYS_recvfrom 29
818 // ssize_t recvfrom(int s, void *buf, size_t len, int flags,
819 // struct sockaddr * restrict from, socklen_t * restrict fromlen);
820 PRE(sys_recvfrom)
822 *flags |= SfMayBlock;
823 PRINT("sys_recvfrom ( %" FMT_REGWORD "d, %#" FMT_REGWORD "x, %" FMT_REGWORD "u, %" FMT_REGWORD "d, %#" FMT_REGWORD "x, %#" FMT_REGWORD "x )",SARG1,ARG2,ARG3,SARG4,ARG5,ARG6);
824 PRE_REG_READ6(ssize_t, "recvfrom",
825 int, s, void *, buf, size_t, len, int, flags,
826 struct sockaddr *, from, int *, fromlen);
827 ML_(generic_PRE_sys_recvfrom)(tid, ARG1,ARG2,ARG3,ARG4,ARG5,ARG6);
830 POST(sys_recvfrom)
832 vg_assert(SUCCESS);
833 ML_(generic_POST_sys_recvfrom)(tid, VG_(mk_SysRes_Success)(RES),
834 ARG1,ARG2,ARG3,ARG4,ARG5,ARG6);
837 // SYS_accept 30
838 // int accept(int s, struct sockaddr * restrict addr,
839 // socklen_t * restrict addrlen);
840 PRE(sys_accept)
842 *flags |= SfMayBlock;
843 PRINT("sys_accept ( %" FMT_REGWORD "u, %#" FMT_REGWORD "x, %" FMT_REGWORD "u )",ARG1,ARG2,ARG3);
844 PRE_REG_READ3(int, "accept",
845 int, s, struct sockaddr *, addr, int, *addrlen);
846 ML_(generic_PRE_sys_accept)(tid, ARG1,ARG2,ARG3);
849 POST(sys_accept)
851 SysRes r;
852 vg_assert(SUCCESS);
853 r = ML_(generic_POST_sys_accept)(tid, VG_(mk_SysRes_Success)(RES),
854 ARG1,ARG2,ARG3);
855 SET_STATUS_from_SysRes(r);
858 // SYS_getpeername 31
859 // int getpeername(int s, struct sockaddr * restrict name,
860 // socklen_t * restrict namelen);
861 PRE(sys_getpeername)
863 PRINT("sys_getpeername ( %" FMT_REGWORD "u, %#" FMT_REGWORD "x, %#" FMT_REGWORD "x )",ARG1,ARG2,ARG3);
864 PRE_REG_READ3(int, "getpeername",
865 int, s, struct sockaddr *, name, socklen_t *, namelen);
866 ML_(generic_PRE_sys_getpeername)(tid, ARG1,ARG2,ARG3);
869 POST(sys_getpeername)
871 vg_assert(SUCCESS);
872 ML_(generic_POST_sys_getpeername)(tid, VG_(mk_SysRes_Success)(RES),
873 ARG1,ARG2,ARG3);
876 // SYS_getsockname 32
877 // int getsockname(int s, struct sockaddr * restrict name,
878 // socklen_t * restrict namelen);
879 PRE(sys_getsockname)
881 PRINT("sys_getsockname ( %" FMT_REGWORD "d, %#" FMT_REGWORD "x, %#" FMT_REGWORD "x )",SARG1,ARG2,ARG3);
882 PRE_REG_READ3(long, "getsockname",
883 int, s, struct sockaddr *, name, int *, namelen);
884 ML_(generic_PRE_sys_getsockname)(tid, ARG1,ARG2,ARG3);
887 POST(sys_getsockname)
889 vg_assert(SUCCESS);
890 ML_(generic_POST_sys_getsockname)(tid, VG_(mk_SysRes_Success)(RES),
891 ARG1,ARG2,ARG3);
894 // SYS_access 33
895 // generic
897 // SYS_chflags 34
898 // int chflags(const char *path, unsigned long flags)
899 PRE(sys_chflags)
901 PRINT("sys_chflags ( %#" FMT_REGWORD "x(%s), 0x%" FMT_REGWORD "x )", ARG1,(char *)ARG1,ARG2);
902 PRE_REG_READ2(int, "chflags",
903 const char *, path, unsigned long, flags);
904 PRE_MEM_RASCIIZ( "chflags(path)", ARG1 );
907 // SYS_fchflags 35
908 // int fchflags(int fd, unsigned long flags);
909 PRE(sys_fchflags)
911 PRINT("sys_fchflags ( %" FMT_REGWORD "u, %" FMT_REGWORD "u )", ARG1,ARG2);
912 PRE_REG_READ2(int, "fchflags", int, fd, unsigned long, flags);
915 // SYS_sync 36
916 // generic
918 // SYS_kill 37
919 // generic
921 // SYS_getppid 39
922 // generic
924 // SYS_dup 41
925 // generic
927 // Pipe on freebsd doesn't have args, and uses dual returns!
928 // SYS_freebsd10_pipe 42
929 // int pipe(void);
930 PRE(sys_pipe)
932 PRINT("%s", "sys_pipe ()");
935 POST(sys_pipe)
937 if (!ML_(fd_allowed)(RES, "pipe", tid, True) ||
938 !ML_(fd_allowed)(RESHI, "pipe", tid, True)) {
939 VG_(close)(RES);
940 VG_(close)(RESHI);
941 SET_STATUS_Failure( VKI_EMFILE );
942 } else {
943 if (VG_(clo_track_fds)) {
944 ML_(record_fd_open_nameless)(tid, RES);
945 ML_(record_fd_open_nameless)(tid, RESHI);
950 // SYS_getegid 43
951 // generic
953 // SYS_profil 44
954 // generic
956 // SYS_ktrace 45
957 // generic
959 // SYS_getgid 47
960 // generic
962 // SYS_getlogin 49
963 // syscall.master refers to namelen and namebuf for the argument names
964 // man getlogin has just getlogin(void) but also
965 // int getlogin_r(char *name, int len);
966 // so let's go with those names
967 PRE(sys_getlogin)
969 PRINT("sys_getlogin ( %#" FMT_REGWORD "x, %" FMT_REGWORD "u )",ARG1,ARG2);
970 PRE_REG_READ2(int, "getlogin", char *, buf, u_int, len);
971 PRE_MEM_WRITE( "getlogin(name)", ARG1, ARG2 );
974 POST(sys_getlogin)
976 POST_MEM_WRITE(ARG1, ARG2 );
979 // SYS_setlogin 50
980 // int setlogin(const char *name);
981 PRE(sys_setlogin)
983 PRINT("sys_setlogin ( %#" FMT_REGWORD "x )",ARG1);
984 PRE_REG_READ1(long, "setlogin", char *, buf);
985 PRE_MEM_RASCIIZ( "setlogin(buf)", ARG1 );
988 // SYS_acct 51
989 // generic
991 // SYS_sigaltstack 53
992 // generic
994 // SYS_ioctl 54
995 // int ioctl(int fd, unsigned long request, ...);
996 PRE(sys_ioctl)
998 UInt dir = _VKI_IOC_DIR(ARG2);
999 UInt size = _VKI_IOC_SIZE(ARG2);
1000 *flags |= SfMayBlock;
1001 // @todo PJF presumably the presence of ARG3 depends on ARG2
1002 PRINT("sys_ioctl ( %" FMT_REGWORD "u, 0x%" FMT_REGWORD "x, %#" FMT_REGWORD "x )",ARG1,ARG2,ARG3);
1003 PRE_REG_READ3(int, "ioctl",
1004 int, fd, unsigned long, request, unsigned long, arg);
1006 /* On FreeBSD, ALL ioctl's are IOR/IOW encoded. Just use the default decoder */
1007 if (SimHintiS(SimHint_lax_ioctls, VG_(clo_sim_hints))) {
1009 * Be very lax about ioctl handling; the only
1010 * assumption is that the size is correct. Doesn't
1011 * require the full buffer to be initialized when
1012 * writing. Without this, using some device
1013 * drivers with a large number of strange ioctl
1014 * commands becomes very tiresome.
1016 } else if (dir == _VKI_IOC_NONE && size > 0) {
1017 static UWord unknown_ioctl[10];
1018 static Int moans = sizeof(unknown_ioctl) / sizeof(unknown_ioctl[0]);
1019 if (moans > 0 && !VG_(clo_xml)) {
1020 /* Check if have not already moaned for this request. */
1021 UInt i;
1022 for (i = 0; i < sizeof(unknown_ioctl)/sizeof(unknown_ioctl[0]); i++) {
1023 if (unknown_ioctl[i] == ARG2)
1024 break;
1025 if (unknown_ioctl[i] == 0) {
1026 unknown_ioctl[i] = ARG2;
1027 moans--;
1028 VG_(umsg)("Warning: noted but unhandled ioctl 0x%lx"
1029 " with no direction hints.\n", ARG2);
1030 VG_(umsg)(" This could cause spurious value errors to appear.\n");
1031 VG_(umsg)(" See README_MISSING_SYSCALL_OR_IOCTL for "
1032 "guidance on writing a proper wrapper.\n" );
1033 return;
1037 } else {
1038 if ((dir & _VKI_IOC_WRITE) && size > 0)
1039 PRE_MEM_READ( "ioctl(generic)", ARG3, size);
1040 if ((dir & _VKI_IOC_READ) && size > 0)
1041 PRE_MEM_WRITE( "ioctl(generic)", ARG3, size);
1044 // The block below is from Ryan Stone
1045 // https://bitbucket.org/rysto32/valgrind-freebsd/commits/5323c22be9f6c71a00e842c3ddfa1fa8a7feb279
1046 // however it drags in hundreds of lines of headers into vki-freebsd.h.
1047 // How stable are these structures? -> maintainability is a concern
1048 // Also there are no testcases for this.
1049 // Hence #if 0
1050 #if 0
1051 /* Handle specific ioctls which pass structures which may have pointers to other
1052 buffers */
1053 switch (ARG2 /* request */) {
1054 case VKI_SIOCGIFMEDIA:
1055 if (ARG3) {
1056 struct vki_ifmediareq* imr = (struct vki_ifmediareq*)ARG3;
1057 if (imr->ifm_ulist) {
1058 PRE_MEM_WRITE("ioctl(SIOCGIFMEDIA).ifm_ulist",
1059 (Addr)(imr->ifm_ulist), imr->ifm_count * sizeof(int));
1062 break;
1064 case VKI_PCIOCGETCONF:
1065 if (ARG3) {
1066 struct vki_pci_conf_io* pci = (struct vki_pci_conf_io*)ARG3;
1067 PRE_MEM_READ("ioctl(PCIOCGETCONF).patterns",
1068 (Addr)(pci->patterns), pci->pat_buf_len);
1069 PRE_MEM_WRITE("ioctl(PCIOCGETCONF).matches",
1070 (Addr)(pci->matches), pci->match_buf_len);
1072 break;
1074 case VKI_CAMIOCOMMAND:
1075 if (ARG3) {
1076 union vki_ccb* ccb = (union vki_ccb*)ARG3;
1077 if (ccb->ccb_h.func_code == VKI_XPT_DEV_MATCH) {
1078 PRE_MEM_WRITE("ioctl(CAMIOCOMMAND:XPT_DEV_MATCH).matches",
1079 (Addr)(ccb->cdm.matches), ccb->cdm.match_buf_len);
1080 } else if (ccb->ccb_h.func_code == VKI_XPT_SCSI_IO) {
1081 struct vki_ccb_scsiio* scsiio = (struct vki_ccb_scsiio*)ccb;
1082 if (scsiio->dxfer_len) {
1083 if ((scsiio->ccb_h.flags & VKI_CAM_DIR_MASK) == VKI_CAM_DIR_IN) {
1084 PRE_MEM_WRITE("ioctl(CAMIOCOMMAND:XPT_SCSI_IO).data_ptr",
1085 (Addr)(scsiio->data_ptr), scsiio->dxfer_len);
1086 } else if ((scsiio->ccb_h.flags & VKI_CAM_DIR_MASK) == VKI_CAM_DIR_OUT) {
1087 PRE_MEM_READ("ioctl(CAMIOCOMMAND:XPT_SCSI_IO).data_ptr",
1088 (Addr)(scsiio->data_ptr), scsiio->dxfer_len);
1091 } else if (ccb->ccb_h.func_code == VKI_XPT_GDEV_TYPE ||
1092 ccb->ccb_h.func_code == VKI_XPT_PATH_INQ ||
1093 ccb->ccb_h.func_code == VKI_XPT_GET_TRAN_SETTINGS) {
1094 // do nothing
1095 } else {
1096 VG_(message)(Vg_UserMsg,
1097 "Warning: unhandled ioctl CAMIOCOMMAND function 0x%lx\n",
1098 ccb->ccb_h.func_code);
1101 break;
1103 #endif
1106 POST(sys_ioctl)
1108 UInt dir = _VKI_IOC_DIR(ARG2);
1109 UInt size = _VKI_IOC_SIZE(ARG2);
1110 vg_assert(SUCCESS);
1111 if (size > 0 && (dir & _VKI_IOC_READ)
1112 && RES == 0 && ARG3 != (Addr)NULL)
1113 POST_MEM_WRITE(ARG3, size);
1115 #if 0
1116 /* Handle specific ioctls which pass structures which may have pointers to other
1117 buffers */
1118 switch (ARG2 /* request */) {
1119 case VKI_SIOCGIFMEDIA:
1120 if (ARG3) {
1121 struct vki_ifmediareq* imr = (struct vki_ifmediareq*)ARG3;
1122 if (imr->ifm_ulist) {
1123 POST_MEM_WRITE((Addr)(imr->ifm_ulist), imr->ifm_count * sizeof(int));
1126 break;
1128 case VKI_PCIOCGETCONF:
1129 if (ARG3) {
1130 struct vki_pci_conf_io* pci = (struct vki_pci_conf_io*)ARG3;
1131 POST_MEM_WRITE((Addr)(pci->matches), pci->num_matches * sizeof(struct vki_pci_conf));
1133 break;
1135 case VKI_CAMIOCOMMAND:
1136 if (ARG3) {
1137 union vki_ccb* ccb = (union vki_ccb*)ARG3;
1138 if (ccb->ccb_h.func_code == VKI_XPT_DEV_MATCH) {
1139 POST_MEM_WRITE((Addr)(ccb->cdm.matches), ccb->cdm.num_matches*sizeof(struct vki_dev_match_result));
1140 } else if (ccb->ccb_h.func_code == VKI_XPT_SCSI_IO) {
1141 struct vki_ccb_scsiio* scsiio = (struct vki_ccb_scsiio*)ccb;
1142 if (scsiio->dxfer_len) {
1143 if ((scsiio->ccb_h.flags & VKI_CAM_DIR_MASK) == VKI_CAM_DIR_IN) {
1144 POST_MEM_WRITE((Addr)(scsiio->data_ptr), scsiio->dxfer_len);
1149 break;
1151 #endif
1154 // SYS_reboot 55
1155 // int reboot(int howto);
1156 PRE(sys_reboot)
1158 PRINT("sys_reboot ( %" FMT_REGWORD "d )", SARG1);
1159 PRE_REG_READ1(int, "reboot", int, howto);
1162 // SYS_revoke 56
1163 // int revoke(const char *path);
1164 PRE(sys_revoke)
1166 PRINT("sys_revoke ( %#" FMT_REGWORD "x(%s) )", ARG1, (char*)ARG1);
1167 PRE_REG_READ1(long, "revoke", const char *, path);
1168 PRE_MEM_RASCIIZ( "revoke(path)", ARG1);
1171 // SYS_symlink 57
1172 // generic
1174 // SYS_readlink 58
1175 // generic
1177 // SYS_execve 59
1178 // generic
1180 // SYS_umask 60
1181 // generic
1183 // SYS_chroot 61
1184 // generic
1186 // SYS_msync 65
1187 // generic
1189 // SYS_vfork 66
1190 // pid_t vfork(void);
1191 PRE(sys_vfork)
1193 PRINT("%s", "sys_vfork ()");
1194 PRE_REG_READ0(pid_t, "vfork");
1196 /* Pretend vfork == fork. Not true, but will have to do. */
1197 SET_STATUS_from_SysRes( ML_(do_fork)(tid) );
1198 if (SUCCESS) {
1199 /* Thread creation was successful; let the child have the chance
1200 to run */
1201 *flags |= SfYieldAfter;
1205 // SYS_sbrk 69
1206 // void * sbrk(intptr_t incr);
1207 PRE(sys_sbrk)
1209 PRINT("sys_sbrk ( %#" FMT_REGWORD "x )",ARG1);
1210 PRE_REG_READ1(void*, "sbrk", vki_intptr_t, incr);
1213 // SYS_freebsd11_vadvise 72
1214 // @todo maybe
1216 // SYS_munmap 73
1217 // generic
1219 // SYS_mprotect 74
1220 // generic
1222 // SYS_madvise 75
1223 // generic
1225 // SYS_mincore 78
1226 // generic
1228 // SYS_getgroups 79
1229 // generic
1231 // SYS_setgroups 80
1232 // generic
1234 // SYS_getpgrp 81
1235 // generic
1237 // SYS_setpgid 82
1238 // generic
1240 // SYS_setitimer 83
1241 // generic
1243 // SYS_swapon 85
1244 // int swapon(const char *special);
1245 PRE(sys_swapon)
1247 PRINT("sys_swapon ( %#" FMT_REGWORD "x(%s) )", ARG1,(char*)ARG1);
1248 PRE_REG_READ1(int, "swapon", const char*, special );
1249 PRE_MEM_RASCIIZ( "swapon(special)", ARG1 );
1252 // SYS_getitimer 86
1253 // generic
1255 // SYS_getdtablesize 89
1256 // int getdtablesize(void);
1257 PRE(sys_getdtablesize)
1259 PRINT("%s", "sys_getdtablesize ( )");
1260 PRE_REG_READ0(long, "getdtablesize");
1263 // SYS_dup2 90
1264 // generic
1266 // SYS_fcntl 92
1267 // int fcntl(int fd, int cmd, ...);
1268 PRE(sys_fcntl)
1270 switch (ARG2) {
1271 // These ones ignore ARG3.
1272 case VKI_F_GETFD:
1273 case VKI_F_GETFL:
1274 case VKI_F_GETOWN:
1275 case VKI_F_GET_SEALS:
1276 case VKI_F_ISUNIONSTACK:
1277 PRINT("sys_fcntl ( %" FMT_REGWORD "d, %" FMT_REGWORD "d )", SARG1,SARG2);
1278 PRE_REG_READ2(int, "fcntl", int, fd, int, cmd);
1279 break;
1281 // These ones use ARG3 as "arg".
1282 case VKI_F_DUPFD:
1283 case VKI_F_DUPFD_CLOEXEC:
1284 case VKI_F_SETFD:
1285 case VKI_F_SETFL:
1286 case VKI_F_SETOWN:
1287 case VKI_F_READAHEAD:
1288 case VKI_F_RDAHEAD:
1289 case VKI_F_ADD_SEALS:
1290 PRINT("sys_fcntl[ARG3=='arg'] ( %" FMT_REGWORD "d, %" FMT_REGWORD "d, %" FMT_REGWORD "d )", SARG1,SARG2,SARG3);
1291 PRE_REG_READ3(int, "fcntl",
1292 int, fd, int, cmd, int, arg);
1293 break;
1295 // These ones use ARG3 as "lock" - obsolete.
1296 case VKI_F_OSETLKW:
1297 *flags |= SfMayBlock;
1298 /* FALLTHROUGH */
1299 case VKI_F_OGETLK:
1300 case VKI_F_OSETLK:
1301 PRINT("sys_fcntl[ARG3=='lock'] ( %" FMT_REGWORD "u, %" FMT_REGWORD "u, %#" FMT_REGWORD "x )", ARG1,ARG2,ARG3);
1302 PRE_REG_READ3(int, "fcntl",
1303 int, fd, int, cmd,
1304 struct oflock *, lock);
1305 break;
1307 // This one uses ARG3 as "oldd" and ARG4 as "newd".
1308 case VKI_F_DUP2FD:
1309 case VKI_F_DUP2FD_CLOEXEC:
1310 PRINT("sys_fcntl[ARG3=='oldd', ARG4=='newd'] ( %" FMT_REGWORD "u, %" FMT_REGWORD "u, %" FMT_REGWORD "u, %" FMT_REGWORD "u )",
1311 ARG1,ARG2,ARG3,ARG4);
1312 PRE_REG_READ4(int, "fcntl",
1313 int, fd, int, cmd,
1314 unsigned long, oldd, unsigned long, newd);
1315 break;
1317 // These ones use ARG3 as "lock".
1318 case VKI_F_SETLKW:
1319 *flags |= SfMayBlock;
1320 /* FALLTHROUGH */
1321 case VKI_F_GETLK:
1322 case VKI_F_SETLK:
1323 case VKI_F_SETLK_REMOTE:
1324 PRINT("sys_fcntl[ARG3=='lock'] ( %" FMT_REGWORD "u, %" FMT_REGWORD "u, %#" FMT_REGWORD "x )", ARG1,ARG2,ARG3);
1325 PRE_REG_READ3(int, "fcntl",
1326 int, fd, int, cmd,
1327 struct flock *, lock);
1328 break;
1329 case VKI_F_KINFO:
1330 PRINT("sys_fcntl[ARG3=='kinfo_file'] ( %" FMT_REGWORD "u, %" FMT_REGWORD "u, %#" FMT_REGWORD "x )", ARG1,ARG2,ARG3);
1331 PRE_REG_READ3(int, "fcntl",
1332 int, fd, int, cmd,
1333 struct vki_kinfo_file *, kinfo);
1334 if (ARG3) {
1335 struct vki_kinfo_file* p_kinfo_file = (struct vki_kinfo_file*)ARG3;
1336 PRE_MEM_WRITE("fcntl(ARG3=='kinfo_file)", ARG3, p_kinfo_file->vki_kf_structsize);
1338 break;
1340 default:
1341 PRINT("sys_fcntl[UNKNOWN] ( %lu, %lu, %lu )", ARG1,ARG2,ARG3);
1342 I_die_here;
1346 POST(sys_fcntl)
1348 vg_assert(SUCCESS);
1349 if (ARG2 == VKI_F_DUPFD) {
1350 if (!ML_(fd_allowed)(RES, "fcntl(DUPFD)", tid, True)) {
1351 VG_(close)(RES);
1352 SET_STATUS_Failure( VKI_EMFILE );
1353 } else {
1354 if (VG_(clo_track_fds))
1355 ML_(record_fd_open_named)(tid, RES);
1357 } else if (ARG2 == VKI_F_DUPFD_CLOEXEC) {
1358 if (!ML_(fd_allowed)(RES, "fcntl(DUPFD_CLOEXEC)", tid, True)) {
1359 VG_(close)(RES);
1360 SET_STATUS_Failure( VKI_EMFILE );
1361 } else {
1362 if (VG_(clo_track_fds))
1363 ML_(record_fd_open_named)(tid, RES);
1368 // SYS_select 93
1369 // generic
1371 // SYS_fsync 95
1372 // generic
1374 // SYS_setpriority 9
1375 // generic
1377 // SYS_socket 97
1378 // int socket(int domain, int type, int protocol);
1379 PRE(sys_socket)
1381 PRINT("sys_socket ( %" FMT_REGWORD "d, %" FMT_REGWORD "d, %" FMT_REGWORD "d )",SARG1,SARG2,SARG3);
1382 PRE_REG_READ3(int, "socket", int, domain, int, type, int, protocol);
1385 POST(sys_socket)
1387 SysRes r;
1388 vg_assert(SUCCESS);
1389 r = ML_(generic_POST_sys_socket)(tid, VG_(mk_SysRes_Success)(RES));
1390 SET_STATUS_from_SysRes(r);
1393 // SYS_connect 98
1394 // int connect(int s, const struct sockaddr *name, socklen_t namelen);
1395 PRE(sys_connect)
1397 *flags |= SfMayBlock;
1398 PRINT("sys_connect ( %" FMT_REGWORD "u, %#" FMT_REGWORD "x, %" FMT_REGWORD "u )",ARG1,ARG2,ARG3);
1399 PRE_REG_READ3(int, "connect",
1400 int, s, const struct sockaddr *, name, int, namelen);
1401 ML_(generic_PRE_sys_connect)(tid, ARG1,ARG2,ARG3);
1404 // SYS_getpriority 100
1405 // generic
1407 // SYS_bind 104
1408 // int bind(int s, const struct sockaddr *addr, socklen_t addrlen);
1409 PRE(sys_bind)
1411 PRINT("sys_bind ( %" FMT_REGWORD "u, %#" FMT_REGWORD "x, %" FMT_REGWORD "u )",ARG1,ARG2,ARG3);
1412 PRE_REG_READ3(int, "bind",
1413 int, s, struct sockaddr *, addr, int, addrlen);
1414 ML_(generic_PRE_sys_bind)(tid, ARG1,ARG2,ARG3);
1417 // SYS_setsockopt 105
1418 // int setsockopt(int s, int level, int optname, const void *optval,
1419 // socklen_t optlen);
1420 PRE(sys_setsockopt)
1422 PRINT("sys_setsockopt ( %" FMT_REGWORD "d, %" FMT_REGWORD "d, %" FMT_REGWORD "d, %#" FMT_REGWORD "x, %" FMT_REGWORD "u )",SARG1,SARG2,SARG3,ARG4,ARG5);
1423 PRE_REG_READ5(int, "setsockopt",
1424 int, s, int, level, int, optname,
1425 const void *, optval, vki_socklen_t, optlen);
1426 ML_(generic_PRE_sys_setsockopt)(tid, ARG1,ARG2,ARG3,ARG4,ARG5);
1429 // SYS_listen 106
1430 // int listen(int s, int backlog);
1431 PRE(sys_listen)
1433 PRINT("sys_listen ( %" FMT_REGWORD "d, %" FMT_REGWORD "d )",SARG1,SARG2);
1434 PRE_REG_READ2(int, "listen", int, s, int, backlog);
1437 //SYS_gettimeofday 116
1438 // generic
1440 // SYS_getrusage 117
1441 // generic
1443 // SYS_getsockopt 118
1444 // int getsockopt(int s, int level, int optname, void * restrict optval,
1445 // socklen_t * restrict optlen);
1446 PRE(sys_getsockopt)
1448 Addr optval_p = ARG4;
1449 Addr optlen_p = ARG5;
1450 PRINT("sys_getsockopt ( %" FMT_REGWORD "u, %" FMT_REGWORD "u, %" FMT_REGWORD "u, %#" FMT_REGWORD "x, %#" FMT_REGWORD "x )",ARG1,ARG2,ARG3,ARG4,ARG5);
1451 PRE_REG_READ5(int, "getsockopt",
1452 int, s, int, level, int, optname,
1453 void *, optval, int, *optlen);
1454 if (optval_p != (Addr)NULL) {
1455 ML_(buf_and_len_pre_check) ( tid, optval_p, optlen_p,
1456 "getsockopt(optval)",
1457 "getsockopt(optlen)" );
1461 POST(sys_getsockopt)
1463 Addr optval_p = ARG4;
1464 Addr optlen_p = ARG5;
1465 vg_assert(SUCCESS);
1466 if (optval_p != (Addr)NULL) {
1467 ML_(buf_and_len_post_check) ( tid, VG_(mk_SysRes_Success)(RES),
1468 optval_p, optlen_p,
1469 "getsockopt(optlen_out)" );
1473 // SYS_readv 120
1474 // generic
1476 // SYS_writev 121
1477 // generic
1479 // SYS_settimeofday 122
1480 // generic
1482 // SYS_fchown 123
1483 // generic
1485 // SYS_fchmod 124
1486 // generic
1488 // SYS_setreuid 126
1489 // generic
1491 // SYS_setregid 127
1492 // generic
1494 // SYS_rename 128
1495 // generic
1497 // SYS_flock 131
1498 // generic
1500 // SYS_mkfifo 132
1501 // int mkfifo(const char *path, mode_t mode);
1502 PRE(sys_mkfifo)
1504 PRINT("sys_mkfifo ( %#" FMT_REGWORD "x(%s), 0x%" FMT_REGWORD "x, 0x%" FMT_REGWORD "x )", ARG1, (char *)ARG1, ARG2, ARG3 );
1505 PRE_REG_READ2(int, "mkfifo", const char *, path, int, mode);
1506 PRE_MEM_RASCIIZ( "mkfifo(path)", ARG1 );
1509 // SYS_sendto 133
1510 // ssize_t sendto(int s, const void *msg, size_t len, int flags,
1511 // const struct sockaddr *to, socklen_t tolen);
1512 PRE(sys_sendto)
1514 *flags |= SfMayBlock;
1515 PRINT("sys_sendto ( %" FMT_REGWORD "u, %#" FMT_REGWORD "x, %" FMT_REGWORD "u, %" FMT_REGWORD "u, %#" FMT_REGWORD "x, %" FMT_REGWORD "u )",ARG1,ARG2,ARG3,ARG4,ARG5,ARG6);
1516 PRE_REG_READ6(ssize_t, "sendto",
1517 int, s, const void *, msg, int, len,
1518 int, flags,
1519 const struct sockaddr *, to, socklen_t, tolen);
1520 ML_(generic_PRE_sys_sendto)(tid, ARG1,ARG2,ARG3,ARG4,ARG5,ARG6);
1523 // SYS_shutdown 134
1524 // int shutdown(int s, int how);
1525 PRE(sys_shutdown)
1527 *flags |= SfMayBlock;
1528 PRINT("sys_shutdown ( %" FMT_REGWORD "u, %" FMT_REGWORD "u )",ARG1,ARG2);
1529 PRE_REG_READ2(int, "shutdown", int, s, int, how);
1532 // SYS_socketpair 135
1533 // int socketpair(int domain, int type, int protocol, int *sv);
1534 PRE(sys_socketpair)
1536 PRINT("sys_socketpair ( %" FMT_REGWORD "u, %" FMT_REGWORD "u, %" FMT_REGWORD "u, %#" FMT_REGWORD "x )",ARG1,ARG2,ARG3,ARG4);
1537 PRE_REG_READ4(int, "socketpair",
1538 int, domain, int, type, int, protocol, int *, sv);
1539 ML_(generic_PRE_sys_socketpair)(tid, ARG1,ARG2,ARG3,ARG4);
1542 POST(sys_socketpair)
1544 vg_assert(SUCCESS);
1545 ML_(generic_POST_sys_socketpair)(tid, VG_(mk_SysRes_Success)(RES),
1546 ARG1,ARG2,ARG3,ARG4);
1549 // SYS_mkdir 136
1550 // generic
1552 // SYS_rmdir 137
1553 // generic
1555 // SYS_utimes 138
1556 // generic
1558 // SYS_adjtime 140
1559 // int adjtime(const struct timeval *delta, struct timeval *olddelta);
1560 PRE(sys_adjtime)
1562 PRINT("sys_adjtime ( %#" FMT_REGWORD "x, %#" FMT_REGWORD "x )",ARG1,ARG2);
1563 PRE_REG_READ2(int, "adjtime",
1564 const struct vki_timeval *, delta, struct vki_timeval *, olddelta);
1565 PRE_MEM_READ("adjtime(delta)", ARG1, sizeof(struct vki_timeval));
1566 if (ARG2) {
1567 PRE_MEM_WRITE("adjtime(olddelta)", ARG1, sizeof(struct vki_timeval));
1571 POST(sys_adjtime)
1573 if (ARG2) {
1574 POST_MEM_WRITE(ARG1, sizeof(struct vki_timeval));
1578 // SYS_setsid 147
1579 // generic
1581 // SYS_quotactl 148
1582 /* int quotactl(const char *path, int cmd, int id, void *addr); */
1583 PRE(sys_quotactl)
1585 PRINT("sys_quotactl ( %#" FMT_REGWORD "x, %" FMT_REGWORD "u, %" FMT_REGWORD "u, %#" FMT_REGWORD "x )", ARG1,ARG2,ARG3, ARG4);
1586 switch (ARG2) {
1587 case VKI_Q_QUOTAON:
1588 case VKI_Q_SETQUOTA:
1589 case VKI_Q_SETUSE:
1591 case VKI_Q_GETQUOTASIZE:
1592 PRE_REG_READ4(int, "quotactl",
1593 const char *, path, int, cmd, int, id,
1594 void *, addr);
1595 PRE_MEM_RASCIIZ( "quotactl(path)", ARG1 );
1596 break;
1597 case VKI_Q_GETQUOTA:
1598 if (VG_(tdict).track_pre_reg_read) {
1600 PRRSN;
1601 PRA1("quotactl",const char*,path);
1602 PRA2("quotactl",int,cmd);
1603 PRA4("quotactl",void*,addr);
1605 break;
1606 case VKI_Q_QUOTAOFF:
1607 case VKI_Q_SYNC:
1608 PRE_REG_READ2(int, "quotactl",
1609 const char *, path, int, cmd);
1610 break;
1611 default:
1612 break;
1616 // SYS_nlm_syscall 154
1617 // syscall.master says ; 154 is initialised by the NLM code, if present.
1618 // @todo
1620 // SYS_nfssvc 155
1621 // int nfssvc(int flags, void *argstructp);
1622 // lengthy manpage, at least 3 types of struct that argstructp can point to
1623 // @todo
1625 // SYS_lgetfh 160
1626 // int lgetfh(const char *path, fhandle_t *fhp);
1627 PRE(sys_lgetfh)
1629 PRINT("sys_lgetfh ( %#" FMT_REGWORD "x, %" FMT_REGWORD "x ", ARG1, ARG2);
1630 PRE_REG_READ2(int, "lgetfh", const char*, path, vki_fhandle_t*, fhp);
1631 PRE_MEM_RASCIIZ( "lgetfh(path)", ARG1 );
1632 PRE_MEM_WRITE("lgetfh(fhp)", ARG2, sizeof(vki_fhandle_t));
1635 POST(sys_lgetfh)
1637 POST_MEM_WRITE(ARG2, sizeof(vki_fhandle_t));
1640 // SYS_getfh 161
1641 // int getfh(const char *path, fhandle_t *fhp);
1642 PRE(sys_getfh)
1644 PRINT("sys_getfh ( %#" FMT_REGWORD "x, %" FMT_REGWORD "x ", ARG1, ARG2);
1645 PRE_REG_READ2(int, "getfh", const char*, path, vki_fhandle_t*, fhp);
1646 PRE_MEM_RASCIIZ( "getfh(path)", ARG1 );
1647 PRE_MEM_WRITE("getfh(fhp)", ARG2, sizeof(vki_fhandle_t));
1650 POST(sys_getfh)
1652 POST_MEM_WRITE(ARG2, sizeof(vki_fhandle_t));
1655 #if (FREEBSD_VERS <= FREEBSD_10)
1656 // 162
1657 // int getdomainname(char *domainname, int len);
1658 PRE(sys_freebsd4_getdomainname)
1660 PRINT("sys_freebsd4_getdomainname ( %#" FMT_REGWORD "x, %" FMT_REGWORD "u )",ARG1,ARG2);
1661 PRE_REG_READ2(int, "getdomainname",
1662 char *, domainname, int, len);
1663 PRE_MEM_WRITE( "getdomainname(domainname)", ARG1, ARG2 );
1666 POST(sys_freebsd4_getdomainname)
1668 if (ARG1 != 0) {
1669 POST_MEM_WRITE( ARG1, ARG2 );
1673 // 163
1674 // int setdomainname(char *domainname, int len);
1675 PRE(sys_freebsd4_setdomainname)
1677 PRINT("sys_freebsd4_setdomainname ( %#" FMT_REGWORD "x )",ARG1);
1678 PRE_REG_READ2(int, "setdomainname", char *, domainname, int, len);
1679 PRE_MEM_RASCIIZ( "setdomainname(domainname)", ARG1 );
1682 // 164
1683 // int uname(struct utsname *name);
1684 PRE(sys_freebsd4_uname)
1686 PRINT("sys_freebsd4_uname ( %#" FMT_REGWORD "x )", ARG1);
1687 PRE_REG_READ1(int, "uname", struct utsname *, name);
1688 PRE_MEM_WRITE( "uname(name)", ARG1, sizeof(struct vki_utsname) );
1691 POST(sys_freebsd4_uname)
1693 if (ARG1 != 0) {
1694 POST_MEM_WRITE( ARG1, sizeof(struct vki_utsname) );
1697 #endif
1699 // SYS_sysarch 165
1700 // x86/amd64
1702 // SYS_rtprio 166
1703 PRE(sys_rtprio)
1705 PRINT( "sys_rtprio ( %" FMT_REGWORD "u, %" FMT_REGWORD "u, %#" FMT_REGWORD "x )", ARG1, ARG2, ARG3 );
1706 PRE_REG_READ3(int, "rtprio",
1707 int, function, pid_t, pid, struct rtprio *, rtp);
1708 if (ARG1 == VKI_RTP_SET) {
1709 PRE_MEM_READ( "rtprio(rtp#set)", ARG3, sizeof(struct vki_rtprio));
1710 } else if (ARG1 == VKI_RTP_LOOKUP) {
1711 PRE_MEM_WRITE( "rtprio(rtp#lookup)", ARG3, sizeof(struct vki_rtprio));
1712 } else {
1713 /* PHK ?? */
1717 POST(sys_rtprio)
1719 if (ARG1 == VKI_RTP_LOOKUP && RES == 0)
1720 POST_MEM_WRITE( ARG3, sizeof(struct vki_rtprio));
1723 // freebsd6_pread 173 FREEBSD_VERS <= 10
1724 // x86/amd64
1726 // freebsd6_pwrite 174 FREEBSD_VERS <= 10
1727 // x86/amd64
1729 // SYS_setfib 175
1730 // int setfib(int fib);
1731 PRE(sys_setfib)
1733 PRINT("sys_setfib ( %" FMT_REGWORD "d )", SARG1);
1734 PRE_REG_READ1(int, "setfib", int, fib);
1737 // SYS_ntp_adjtime 176
1738 // int ntp_adjtime(struct timex *);
1739 // @todo
1741 // SYS_setgid 181
1742 // generic
1744 // SYS_setegid 182
1745 // int setegid(gid_t egid);
1746 PRE(sys_setegid)
1748 PRINT("sys_setegid ( %" FMT_REGWORD "u )", ARG1);
1749 PRE_REG_READ1(int, "setegid", vki_gid_t, gid);
1752 // SYS_seteuid 183
1753 // int seteuid(uid_t euid);
1754 PRE(sys_seteuid)
1756 PRINT("sys_seteuid ( %" FMT_REGWORD "u )", ARG1);
1757 PRE_REG_READ1(long, "seteuid", vki_uid_t, uid);
1761 #if (FREEBSD_VERS >= FREEBSD_12)
1763 // SYS_freebsd11_stat 188
1764 // int stat(char *path, struct freebsd11_stat *sb);
1765 PRE(sys_freebsd11_stat)
1767 PRINT("sys_freebsd11_stat ( %#" FMT_REGWORD "x(%s), %#" FMT_REGWORD "x )",ARG1,(char *)ARG1,ARG2);
1768 PRE_REG_READ2(int, "stat", char *, path, struct freebsd11_stat *, sb);
1769 PRE_MEM_RASCIIZ( "stat(path)", ARG1 );
1770 PRE_MEM_WRITE( "stat(sb)", ARG2, sizeof(struct vki_freebsd11_stat) );
1773 POST(sys_freebsd11_stat)
1775 POST_MEM_WRITE( ARG2, sizeof(struct vki_freebsd11_stat) );
1778 // SYS_freebsd11_fstat 189
1779 // int fstat(int fd, struct stat *sb);
1780 PRE(sys_freebsd11_fstat)
1782 PRINT("sys_freebsd11_fstat ( %" FMT_REGWORD "d, %#" FMT_REGWORD "x )",SARG1,ARG2);
1783 PRE_REG_READ2(int, "fstat", int, fd, struct stat *, sb);
1784 PRE_MEM_WRITE( "fstat(sb)", ARG2, sizeof(struct vki_freebsd11_stat) );
1787 POST(sys_freebsd11_fstat)
1789 POST_MEM_WRITE( ARG2, sizeof(struct vki_freebsd11_stat) );
1792 // SYS_freebsd11_lstat 190
1793 // int lstat(const char * restrict path, struct stat * restrict sb);
1794 PRE(sys_freebsd11_lstat)
1796 PRINT("sys_freebsd11_lstat ( %#" FMT_REGWORD "x(%s), %#" FMT_REGWORD "x )",ARG1,(char *)ARG1,ARG2);
1797 PRE_REG_READ2(sb, "lstat", const char *, path, struct freebsd11_stat *, sb);
1798 PRE_MEM_RASCIIZ( "lstat(path)", ARG1 );
1799 PRE_MEM_WRITE( "lstat(sb)", ARG2, sizeof(struct vki_freebsd11_stat) );
1802 POST(sys_freebsd11_lstat)
1804 vg_assert(SUCCESS);
1805 if (RES == 0) {
1806 POST_MEM_WRITE( ARG2, sizeof(struct vki_freebsd11_stat) );
1810 #else
1812 PRE(sys_stat)
1814 PRINT("sys_stat ( %#" FMT_REGWORD "x(%s), %#" FMT_REGWORD "x )",ARG1,(char *)ARG1,ARG2);
1815 PRE_REG_READ2(int, "stat", char *, path, struct stat *, sb);
1816 PRE_MEM_RASCIIZ( "stat(path)", ARG1 );
1817 PRE_MEM_WRITE( "stat(sb)", ARG2, sizeof(struct vki_freebsd11_stat) );
1820 POST(sys_stat)
1822 POST_MEM_WRITE( ARG2, sizeof(struct vki_freebsd11_stat) );
1826 PRE(sys_fstat)
1828 PRINT("sys_fstat ( %" FMT_REGWORD "d, %#" FMT_REGWORD "x )",SARG1,ARG2);
1829 PRE_REG_READ2(int, "fstat", int, fd, struct stat *, sb);
1830 PRE_MEM_WRITE( "fstat(sb)", ARG2, sizeof(struct vki_freebsd11_stat) );
1833 POST(sys_fstat)
1835 POST_MEM_WRITE( ARG2, sizeof(struct vki_freebsd11_stat) );
1838 PRE(sys_lstat)
1840 PRINT("sys_lstat ( %#" FMT_REGWORD "x(%s), %#" FMT_REGWORD "x )",ARG1,(char *)ARG1,ARG2);
1841 PRE_REG_READ2(int, "lstat", const char *, path, struct stat *, sb);
1842 PRE_MEM_RASCIIZ( "lstat(path)", ARG1 );
1843 PRE_MEM_WRITE( "lstat(sb)", ARG2, sizeof(struct vki_freebsd11_stat) );
1846 POST(sys_lstat)
1848 vg_assert(SUCCESS);
1849 if (RES == 0) {
1850 POST_MEM_WRITE( ARG2, sizeof(struct vki_freebsd11_stat) );
1854 #endif
1856 // SYS_pathconf 191
1857 // long pathconf(const char *path, int name);
1858 PRE(sys_pathconf)
1860 PRINT("sys_pathconf ( %#" FMT_REGWORD "x(%s), %" FMT_REGWORD "u )",ARG1,(char *)ARG1,ARG2);
1861 PRE_REG_READ2(long, "pathconf", char *, path, int, name);
1862 PRE_MEM_RASCIIZ( "pathconf(path)", ARG1 );
1865 // SYS_fpathconf 192
1866 // long fpathconf(int fd, int name);
1867 PRE(sys_fpathconf)
1869 PRINT("sys_fpathconf ( %" FMT_REGWORD "u, %" FMT_REGWORD "u )",ARG1,ARG2);
1870 PRE_REG_READ2(long, "fpathconf", int, fd, int, name);
1873 // SYS_getrlimit 194
1874 // generic
1876 // SYS_setrlimit 195
1877 // generic
1880 // SYS_freebsd11_getdirentries 196
1881 // int getdirentries(int fd, char *buf, int nbytes, long *basep);
1882 #if (FREEBSD_VERS >= FREEBSD_12)
1883 PRE(sys_freebsd11_getdirentries)
1885 *flags |= SfMayBlock;
1886 PRINT("sys_freebsd11_getdirentries ( %" FMT_REGWORD "u, %#" FMT_REGWORD "x, %" FMT_REGWORD "u )", ARG1,ARG2,ARG3);
1887 PRE_REG_READ4(int, "getdirentries",
1888 int, fd, char *, buf,
1889 int, nbytes,
1890 long *, basep);
1891 PRE_MEM_WRITE( "getdirentries(buf)", ARG2, ARG3 );
1892 if (ARG4)
1893 PRE_MEM_WRITE( "getdirentries(basep)", ARG4, sizeof(long) );
1896 POST(sys_freebsd11_getdirentries)
1898 vg_assert(SUCCESS);
1899 if (RES > 0) {
1900 POST_MEM_WRITE( ARG2, RES );
1901 if ( ARG4 != 0 )
1902 POST_MEM_WRITE( ARG4, sizeof (long));
1905 #else
1906 PRE(sys_getdirentries)
1908 *flags |= SfMayBlock;
1909 PRINT("sys_getdirentries ( %" FMT_REGWORD "u, %#" FMT_REGWORD "x, %" FMT_REGWORD "u )", ARG1,ARG2,ARG3);
1910 PRE_REG_READ4(int, "getdirentries",
1911 int, fd, char *, buf,
1912 int, nbytes,
1913 long *, basep);
1914 PRE_MEM_WRITE( "getdirentries(buf)", ARG2, ARG3 );
1915 if (ARG4)
1916 PRE_MEM_WRITE( "getdirentries(basep)", ARG4, sizeof(long) );
1919 POST(sys_getdirentries)
1921 vg_assert(SUCCESS);
1922 if (RES > 0) {
1923 POST_MEM_WRITE( ARG2, RES );
1924 if ( ARG4 != 0 )
1925 POST_MEM_WRITE( ARG4, sizeof (long));
1928 #endif
1930 // SYS_freebsd6_mmap 197
1931 // amd64 / x86
1934 // SYS___syscall 198
1935 // special handling
1937 // freebsd6_lseek 199 FREEBSD_VERS <= 10
1938 // x86/amd64
1940 // freebsd6_truncate 200 FREEBSD_VERS <= 10
1941 // x86/amd64
1943 // freebsd6_ftruncate 201 FREEBSD_VERS <= 10
1944 // x86/amd64
1946 static Bool sysctl_kern_ps_strings(SizeT* out, SizeT* outlen)
1948 Word tmp = -1;
1949 const struct auxv *cauxv;
1951 for (cauxv = (struct auxv*)VG_(client_auxv); cauxv->a_type != VKI_AT_NULL; cauxv++) {
1952 if (cauxv->a_type == VKI_AT_PS_STRINGS) {
1953 tmp = (Word)cauxv->u.a_ptr;
1955 *out = tmp;
1956 *outlen = sizeof(size_t);
1957 return True;
1960 return False;
1963 static void sysctl_kern_usrstack(SizeT* out, SizeT* outlen)
1965 *out = VG_(get_usrstack)();
1966 *outlen = sizeof(ULong);
1969 // SYS___sysctl 202
1970 /* int __sysctl(int *name, u_int namelen, void *oldp, size_t *oldlenp, void *newp, size_t newlen); */
1971 /* ARG1 ARG2 ARG3 ARG4 ARG5 ARG6 */
1972 PRE(sys___sysctl)
1974 PRINT("sys_sysctl ( %#" FMT_REGWORD "x, %" FMT_REGWORD "d, %#" FMT_REGWORD "x, %#" FMT_REGWORD "x, %#" FMT_REGWORD "x, %" FMT_REGWORD "u )", ARG1,SARG2,ARG3,ARG4,ARG5,ARG6 );
1976 int* name = (int*)ARG1;
1977 if (ML_(safe_to_deref)(name, sizeof(int))) {
1978 PRINT("\nmib[0]: ");
1979 if (SARG2 >= 1) {
1980 switch (name[0]) {
1981 case 0: // CTL_UNSPEC
1982 PRINT("unspec");
1983 break;
1984 case 1: // CTL_KERN
1985 PRINT("kern");
1986 break;
1987 case 2: // CTL_VM
1988 PRINT("vm");
1989 break;
1990 case 3: // CTL_VFS
1991 PRINT("vfs");
1992 break;
1993 case 4: // CTL_NET
1994 PRINT("net");
1995 break;
1996 case 5: // CTL_DEBUG
1997 PRINT("debug");
1998 break;
1999 case 6: // CTL_HW
2000 PRINT("hw");
2001 break;
2002 case 7: // CTL_MACHDEP
2003 PRINT("machdep");
2004 break;
2005 case 8: // CTL _USER
2006 PRINT("user");
2007 break;
2008 case 9: //CTL_P1003_1B
2009 PRINT("p1003_b1b");
2010 break;
2011 default:
2012 PRINT("unrecognized (%d)", ((int*)ARG1)[0]);
2013 break;
2016 if (SARG2 >= 2 && ML_(safe_to_deref)(name, 2*sizeof(int))) {
2017 PRINT(" mib[1]: %d\n", name[1]);
2022 * Special handling cases
2024 * 1. kern.usrstack
2025 * This sysctl returns the address of the bottom of the user stack
2026 * (that is the highest user stack address, since the stack grows
2027 * downwards). Without any special handling this would return the
2028 * address of the host userstack. We have created a stack for the
2029 * guest (in aspacemgr) and that is the one that we want the guest
2030 * to see. Aspacemgr is setup in m_main.c with the adresses and sizes
2031 * saved to file static variables in that file, so we call
2032 * VG_(get_usrstack)() to retrieve them from there.
2034 if (SARG2 >= 2 && ML_(safe_to_deref)(name, 2*sizeof(int))) {
2035 if (name[0] == 1 && name[1] == 33) {
2036 // kern.usrstack
2037 sysctl_kern_usrstack((SizeT*)ARG3, (SizeT*)ARG4);
2038 SET_STATUS_Success(0);
2043 * 2. kern.ps_strings
2045 if (SARG2 >= 2 && ML_(safe_to_deref)(name, 2*sizeof(int))) {
2046 if (name[0] == 1 && name[1] == 32) {
2047 if (sysctl_kern_ps_strings((SizeT*)ARG3, (SizeT*)ARG4)) {
2048 SET_STATUS_Success(0);
2053 PRE_REG_READ6(int, "__sysctl", int *, name, vki_u_int32_t, namelen, void *, oldp,
2054 vki_size_t *, oldlenp, void *, newp, vki_size_t, newlen);
2056 // read number of ints specified in ARG2 from mem pointed to by ARG1
2057 PRE_MEM_READ("sysctl(name)", (Addr)ARG1, ARG2 * sizeof(int));
2059 // if 'newp' is not NULL can read namelen bytes from that address
2060 if (ARG5 != (UWord)NULL)
2061 PRE_MEM_READ("sysctl(newp)", (Addr)ARG5, ARG6);
2063 // there are two scenarios for oldlenp/oldp
2064 // 1. oldval is NULL and oldlenp is non-NULL
2065 // this is a query of oldlenp so oldlenp will be written
2066 // 2. Both are non-NULL
2067 // this is a query of oldp, oldlenp will be read and oldp will
2068 // be written
2070 // is oldlenp is not NULL, can write
2071 if (ARG4 != (UWord)NULL) {
2072 if (ARG3 != (UWord)NULL) {
2073 // case 2 above
2074 PRE_MEM_READ("sysctl(oldlenp)", (Addr)ARG4, sizeof(vki_size_t));
2075 if (ML_(safe_to_deref)((void*)(Addr)ARG4, sizeof(vki_size_t))) {
2076 PRE_MEM_WRITE("sysctl(oldp)", (Addr)ARG3, *(vki_size_t *)ARG4);
2077 } else {
2078 VG_(dmsg)("Warning: Bad oldlenp address %p in sysctl\n",
2079 (void *)(Addr)ARG4);
2080 SET_STATUS_Failure ( VKI_EFAULT );
2082 } else {
2083 // case 1 above
2084 PRE_MEM_WRITE("sysctl(oldlenp)", (Addr)ARG4, sizeof(vki_size_t));
2089 POST(sys___sysctl)
2091 if (ARG4 != (UWord)NULL) {
2092 if (ARG3 != (UWord)NULL) {
2093 //POST_MEM_WRITE((Addr)ARG4, sizeof(vki_size_t));
2094 POST_MEM_WRITE((Addr)ARG3, *(vki_size_t *)ARG4);
2095 } else
2096 POST_MEM_WRITE((Addr)ARG4, sizeof(vki_size_t));
2100 // SYS_mlock 203
2101 // generic
2103 // SYS_munlock 204
2104 // generic
2106 // SYS_undelete 205
2107 // int undelete(const char *path);
2108 PRE(sys_undelete)
2110 *flags |= SfMayBlock;
2111 PRINT("sys_undelete ( %#" FMT_REGWORD "x(%s) )", ARG1,(char *)ARG1);
2112 PRE_REG_READ1(int, "undelete", const char *, path);
2113 PRE_MEM_RASCIIZ( "undelete(path)", ARG1 );
2116 // SYS_futimes 206
2117 // int futimes(int fd, const struct timeval *times);
2118 PRE(sys_futimes)
2120 PRINT("sys_lutimes ( %" FMT_REGWORD "u, %#" FMT_REGWORD "x )", ARG1,ARG2);
2121 PRE_REG_READ2(long, "futimes", int, fd, struct timeval *, times);
2122 if (ARG2 != 0)
2123 PRE_MEM_READ( "futimes(times)", ARG2, sizeof(struct vki_timeval) );
2126 // SYS_getpgid 207
2127 // generic
2129 // SYS_poll 209
2130 // generic
2132 // SYS_freebsd7___semctl 220
2133 // int semctl(int semid, int semnum, int cmd, ...);
2134 PRE(sys_freebsd7___semctl)
2136 switch (ARG3) {
2137 case VKI_IPC_INFO:
2138 case VKI_SEM_INFO:
2139 PRINT("sys_semctl ( %" FMT_REGWORD "u, %" FMT_REGWORD "u, %" FMT_REGWORD "u, %#" FMT_REGWORD "x )",ARG1,ARG2,ARG3,ARG4);
2140 PRE_REG_READ4(int, "semctl",
2141 int, semid, int, semnum, int, cmd, struct seminfo *, arg);
2142 break;
2143 case VKI_IPC_STAT:
2144 case VKI_SEM_STAT:
2145 case VKI_IPC_SET:
2146 PRINT("sys_semctl ( %" FMT_REGWORD "u, %" FMT_REGWORD "u, %" FMT_REGWORD "u, %#" FMT_REGWORD "x )",ARG1,ARG2,ARG3,ARG4);
2147 PRE_REG_READ4(int, "semctl",
2148 int, semid, int, semnum, int, cmd, struct vki_semid_ds_old *, arg);
2149 break;
2150 case VKI_GETALL:
2151 case VKI_SETALL:
2152 PRINT("sys_semctl ( %" FMT_REGWORD "u, %" FMT_REGWORD "u, %" FMT_REGWORD "u, %#" FMT_REGWORD "x )",ARG1,ARG2,ARG3,ARG4);
2153 PRE_REG_READ4(int, "semctl",
2154 int, semid, int, semnum, int, cmd, unsigned short *, arg);
2155 break;
2156 default:
2157 PRINT("sys_semctl ( %" FMT_REGWORD "u, %" FMT_REGWORD "u, %" FMT_REGWORD "u )",ARG1,ARG2,ARG3);
2158 PRE_REG_READ3(long, "semctl",
2159 int, semid, int, semnum, int, cmd);
2160 break;
2162 ML_(generic_PRE_sys_semctl)(tid, ARG1,ARG2,ARG3,ARG4);
2165 POST(sys_freebsd7___semctl)
2167 ML_(generic_POST_sys_semctl)(tid, RES,ARG1,ARG2,ARG3,ARG4);
2170 // SYS_semget 221
2171 // int semget(key_t key, int nsems, int flag);
2172 PRE(sys_semget)
2174 PRINT("sys_semget ( %" FMT_REGWORD "u, %" FMT_REGWORD "u, %" FMT_REGWORD "u )",ARG1,ARG2,ARG3);
2175 PRE_REG_READ3(int, "semget", vki_key_t, key, int, nsems, int, flag);
2178 // SYS_semop 222
2179 // int semop(int semid, struct sembuf *array, size_t nops);
2180 PRE(sys_semop)
2182 *flags |= SfMayBlock;
2183 PRINT("sys_semop ( %" FMT_REGWORD "u, %#" FMT_REGWORD "x, %" FMT_REGWORD "u )",ARG1,ARG2,ARG3);
2184 PRE_REG_READ3(int, "semop",
2185 int, semid, struct sembuf *, array, unsigned, nops);
2186 ML_(generic_PRE_sys_semop)(tid, ARG1,ARG2,ARG3);
2189 // SYS_freebsd7_msgctl 224
2190 // int msgctl(int msqid, int cmd, struct msqid_ds_old *buf);
2191 PRE(sys_freebsd7_msgctl)
2193 PRINT("sys_freebsd7_msgctl ( %" FMT_REGWORD "d, %" FMT_REGWORD "d, %#" FMT_REGWORD "x )", SARG1,SARG2,ARG3 );
2195 PRE_REG_READ3(int, "msgctl", int, msqid, int, cmd, struct msqid_ds_old *, buf);
2197 switch (ARG2 /* cmd */) {
2198 case VKI_IPC_STAT:
2199 PRE_MEM_WRITE( "msgctl(IPC_STAT, buf)",
2200 ARG3, sizeof(struct vki_msqid_ds_old) );
2201 break;
2202 case VKI_IPC_SET:
2203 PRE_MEM_READ( "msgctl(IPC_SET, buf)",
2204 ARG3, sizeof(struct vki_msqid_ds_old) );
2205 break;
2209 POST(sys_freebsd7_msgctl)
2211 switch (ARG2 /* cmd */) {
2212 case VKI_IPC_STAT:
2213 POST_MEM_WRITE( ARG3, sizeof(struct vki_msqid_ds_old) );
2214 break;
2218 // SYS_msgget 225
2219 // int msgget(key_t key, int msgflg);
2220 PRE(sys_msgget)
2222 PRINT("sys_msgget ( %" FMT_REGWORD"d, %" FMT_REGWORD"d )",SARG1,SARG2);
2223 PRE_REG_READ2(int, "msgget", key_t, key, int, msgflg);
2226 // SYS_msgsnd 226
2227 // int msgsnd(int msqid, struct msgbuf *msgp, size_t msgsz, int msgflg);
2228 PRE(sys_msgsnd)
2230 PRINT("sys_msgsnd ( %" FMT_REGWORD "d, %#" FMT_REGWORD "x, %" FMT_REGWORD "d, %" FMT_REGWORD "d )", SARG1,ARG2,SARG3,SARG4 );
2231 PRE_REG_READ4(int, "msgsnd", int, msqid, struct msgbuf *, msgp, size_t, msgsz, int, msgflg);
2232 struct vki_msgbuf *msgp = (struct vki_msgbuf *)ARG2;
2233 PRE_MEM_READ( "msgsnd(msgp->mtype)", (Addr)&msgp->mtype, sizeof(msgp->mtype) );
2234 PRE_MEM_READ( "msgsnd(msgp->mtext)", (Addr)&msgp->mtext, ARG3 );
2236 // SYS_msgrcv 227
2237 // ssize_t msgrcv(int msqid, struct msgbuf *msgp, size_t msgsz, long msgtyp, int msgflg);
2238 PRE(sys_msgrcv)
2240 *flags |= SfMayBlock;
2242 PRINT("sys_msgrcv ( %" FMT_REGWORD "d, %#" FMT_REGWORD "x, %" FMT_REGWORD "u, %" FMT_REGWORD "d, %" FMT_REGWORD "d )", SARG1,ARG2,ARG3,SARG4,SARG5 );
2243 PRE_REG_READ5(ssize_t, "msgrcv", int, msqid, struct msgbuf *, msgp, size_t, msgsz,
2244 long, msgtyp, int, msgflg);
2245 struct vki_msgbuf *msgp = (struct vki_msgbuf *)ARG2;
2246 PRE_MEM_WRITE( "msgrcv(msgp->mtype)", (Addr)&msgp->mtype, sizeof(msgp->mtype) );
2247 PRE_MEM_WRITE( "msgrcv(msgp->mtext)", (Addr)&msgp->mtext, ARG3 );
2250 POST(sys_msgrcv)
2252 struct vki_msgbuf *msgp = (struct vki_msgbuf *)ARG2;
2253 POST_MEM_WRITE( (Addr)&msgp->mtype, sizeof(msgp->mtype) );
2254 POST_MEM_WRITE( (Addr)&msgp->mtext, RES );
2257 // SYS_shmat 228
2258 // void * shmat(int shmid, const void *addr, int flag);
2259 PRE(sys_shmat)
2261 UWord arg2tmp;
2262 PRINT("sys_shmat ( %" FMT_REGWORD "u, %#" FMT_REGWORD "x, %" FMT_REGWORD "u )",ARG1,ARG2,ARG3);
2263 PRE_REG_READ3(void *, "shmat",
2264 int, shmid, const void *, addr, int, flag);
2265 arg2tmp = ML_(generic_PRE_sys_shmat)(tid, ARG1,ARG2,ARG3);
2266 if (arg2tmp == 0)
2267 SET_STATUS_Failure( VKI_EINVAL );
2268 else
2269 ARG2 = arg2tmp;
2272 POST(sys_shmat)
2274 ML_(generic_POST_sys_shmat)(tid, RES,ARG1,ARG2,ARG3);
2277 // SYS_freebsd7_shmctl 229
2278 // int shmctl(int shmid, int cmd, struct shmid_ds *buf);
2279 PRE(sys_freebsd7_shmctl)
2281 PRINT("sys_freebsd7_shmctl ( %" FMT_REGWORD "d, %" FMT_REGWORD "d, %#" FMT_REGWORD "x )",SARG1,SARG2,ARG3);
2282 PRE_REG_READ3(int, "shmctl",
2283 int, shmid, int, cmd, struct vki_shmid_ds_old *, buf);
2284 switch (ARG2 /* cmd */) {
2285 case VKI_IPC_STAT:
2286 PRE_MEM_WRITE( "shmctl7(IPC_STAT, buf)",
2287 ARG3, sizeof(struct vki_shmid_ds_old) );
2288 break;
2289 case VKI_IPC_SET:
2290 PRE_MEM_READ( "shmctl7(IPC_SET, buf)",
2291 ARG3, sizeof(struct vki_shmid_ds_old) );
2292 break;
2296 POST(sys_freebsd7_shmctl)
2298 if (ARG2 == VKI_IPC_STAT) {
2299 POST_MEM_WRITE( ARG3, sizeof(struct vki_shmid_ds_old) );
2303 // SYS_shmdt 230
2304 // int shmdt(const void *addr);
2305 PRE(sys_shmdt)
2307 PRINT("sys_shmdt ( %#" FMT_REGWORD "x )",ARG1);
2308 PRE_REG_READ1(int, "shmdt", const void *, addr);
2309 if (!ML_(generic_PRE_sys_shmdt)(tid, ARG1))
2310 SET_STATUS_Failure( VKI_EINVAL );
2313 POST(sys_shmdt)
2315 ML_(generic_POST_sys_shmdt)(tid, RES,ARG1);
2318 // SYS_shmget 231
2319 // int shmget(key_t key, size_t size, int flag);
2320 PRE(sys_shmget)
2322 PRINT("sys_shmget ( %" FMT_REGWORD "u, %" FMT_REGWORD "u, %" FMT_REGWORD "u )",ARG1,ARG2,ARG3);
2323 PRE_REG_READ3(int, "shmget", vki_key_t, key, vki_size_t, size, int, flag);
2327 // SYS_clock_gettime 232
2328 // int clock_gettime(clockid_t clock_id, struct timespec *tp);
2329 PRE(sys_clock_gettime)
2331 PRINT("sys_clock_gettime( %" FMT_REGWORD "u, %#" FMT_REGWORD "x )", ARG1,ARG2);
2332 PRE_REG_READ2(int, "clock_gettime",
2333 vki_clockid_t, clk_id, struct timespec *, tp);
2334 PRE_MEM_WRITE( "clock_gettime(tp)", ARG2, sizeof(struct vki_timespec) );
2337 POST(sys_clock_gettime)
2339 POST_MEM_WRITE( ARG2, sizeof(struct vki_timespec) );
2342 // SYS_clock_settime 233
2343 // int clock_settime(clockid_t clock_id, const struct timespec *tp);
2344 PRE(sys_clock_settime)
2346 PRINT("sys_clock_settime( %" FMT_REGWORD "u, %#" FMT_REGWORD "x )", ARG1,ARG2);
2347 PRE_REG_READ2(int, "clock_settime",
2348 vki_clockid_t, clk_id, const struct timespec *, tp);
2349 PRE_MEM_READ( "clock_settime(tp)", ARG2, sizeof(struct vki_timespec) );
2352 // SYS_clock_getres 234
2353 // int clock_getres(clockid_t clock_id, struct timespec *tp);
2354 PRE(sys_clock_getres)
2356 PRINT("sys_clock_getres( %" FMT_REGWORD "u, %#" FMT_REGWORD "x )", ARG1,ARG2);
2357 // Nb: we can't use "RES" as the param name because that's a macro
2358 // defined above!
2359 PRE_REG_READ2(int, "clock_getres",
2360 vki_clockid_t, clock_id, struct timespec *, tp);
2361 if (ARG2 != 0)
2362 PRE_MEM_WRITE( "clock_getres(tp)", ARG2, sizeof(struct vki_timespec) );
2365 POST(sys_clock_getres)
2367 if (ARG2 != 0)
2368 POST_MEM_WRITE( ARG2, sizeof(struct vki_timespec) );
2371 // SYS_ktimer_create 235
2372 // int timer_create(clockid_t clockid, struct sigevent *restrict evp,
2373 // timer_t *restrict timerid);
2374 PRE(sys_timer_create)
2376 PRINT("sys_timer_create( %" FMT_REGWORD "d, %#" FMT_REGWORD "x, %#" FMT_REGWORD "x )", SARG1,ARG2,ARG3);
2377 PRE_REG_READ3(int, "timer_create",
2378 vki_clockid_t, clockid, struct sigevent *, evp,
2379 vki_timer_t *, timerid);
2380 if (ARG2 != 0)
2381 PRE_MEM_READ( "timer_create(evp)", ARG2, sizeof(struct vki_sigevent) );
2382 PRE_MEM_WRITE( "timer_create(timerid)", ARG3, sizeof(vki_timer_t) );
2385 POST(sys_timer_create)
2387 POST_MEM_WRITE( ARG3, sizeof(vki_timer_t) );
2390 // SYS_ktimer_delete 236
2391 // int timer_delete(timer_t timerid);
2392 PRE(sys_timer_delete)
2394 PRINT("sys_timer_delete( %#" FMT_REGWORD "x )", ARG1);
2395 PRE_REG_READ1(long, "timer_delete", vki_timer_t, timerid);
2398 // SYS_ktimer_settime 237
2399 // int timer_settime(timer_t timerid, int flags,
2400 // const struct itimerspec *restrict value,
2401 // struct itimerspec *restrict ovalue);
2402 PRE(sys_timer_settime)
2404 PRINT("sys_timer_settime( %#" FMT_REGWORD "x, %" FMT_REGWORD "d, %#" FMT_REGWORD "x, %#" FMT_REGWORD "x )", ARG1,SARG2,ARG3,ARG4);
2405 PRE_REG_READ4(int, "timer_settime",
2406 vki_timer_t, timerid, int, flags,
2407 const struct itimerspec *, value,
2408 struct itimerspec *, ovalue);
2409 PRE_MEM_READ( "timer_settime(value)", ARG3,
2410 sizeof(struct vki_itimerspec) );
2411 if (ARG4 != 0)
2412 PRE_MEM_WRITE( "timer_settime(ovalue)", ARG4,
2413 sizeof(struct vki_itimerspec) );
2416 POST(sys_timer_settime)
2418 if (ARG4 != 0)
2419 POST_MEM_WRITE( ARG4, sizeof(struct vki_itimerspec) );
2422 // SYS_ktimer_gettime 238
2423 // int timer_gettime(timer_t timerid, struct itimerspec *value);
2424 PRE(sys_timer_gettime)
2426 PRINT("sys_timer_gettime( %#" FMT_REGWORD "x, %#" FMT_REGWORD "x )", ARG1,ARG2);
2427 PRE_REG_READ2(long, "timer_gettime",
2428 vki_timer_t, timerid, struct itimerspec *, value);
2429 PRE_MEM_WRITE( "timer_gettime(value)", ARG2,
2430 sizeof(struct vki_itimerspec));
2433 POST(sys_timer_gettime)
2435 POST_MEM_WRITE( ARG2, sizeof(struct vki_itimerspec) );
2438 // SYS_ktimer_getoverrun 239
2439 // int timer_getoverrun(timer_t timerid);
2440 PRE(sys_timer_getoverrun)
2442 PRINT("sys_timer_getoverrun( %#" FMT_REGWORD "x )", ARG1);
2443 PRE_REG_READ1(int, "timer_getoverrun", vki_timer_t, timerid);
2446 // SYS_nanosleep 240
2447 // generic
2449 // SYS_ffclock_getcounter 241
2450 // int ffclock_getcounter(ffcounter *ffcount);
2451 // @todo
2453 // SYS_ffclock_setestimate 242
2454 // int ffclock_setestimate(struct ffclock_estimate *cest);
2455 // @todo
2457 // SYS_ffclock_getestimate 243
2458 // int ffclock_getestimate(struct ffclock_estimate *cest);
2459 // @todo
2461 // SYS_clock_nanosleep 244
2462 // int clock_nanosleep(clockid_t clock_id, int flags,
2463 // const struct timespec *rqtp, struct timespec *rmtp);
2464 PRE(sys_clock_nanosleep)
2466 *flags |= SfMayBlock|SfPostOnFail;
2467 PRINT("sys_clock_nanosleep ( %" FMT_REGWORD "d, %" FMT_REGWORD "d, %#" FMT_REGWORD "x, %#" FMT_REGWORD "x )",
2468 SARG1, SARG2, ARG3, ARG4);
2469 PRE_REG_READ4(int, "clock_nanosleep", clockid_t, clock_id, int, flags,
2470 const struct timespec *, rqtp, struct timespec *, rmtp);
2471 PRE_MEM_READ("clock_nanosleep(rqtp)", ARG1, sizeof(struct vki_timespec));
2472 if (ARG2 != 0)
2473 PRE_MEM_WRITE( "clock_nanosleep(rmtp)", ARG2, sizeof(struct vki_timespec) );
2477 POST(sys_clock_nanosleep)
2479 if (ARG2 != 0)
2480 POST_MEM_WRITE( ARG2, sizeof(struct vki_timespec) );
2483 // SYS_clock_getcpuclockid2 247
2484 // x86/amd64
2486 POST(sys_clock_getcpuclockid2)
2488 POST_MEM_WRITE(ARG3, sizeof(vki_clockid_t));
2492 // SYS_ntp_gettime 248
2493 // int ntp_gettime(struct ntptimeval *);
2494 // @todo
2496 // SYS_minherit 250
2497 // int minherit(void *addr, size_t len, int inherit);
2498 PRE(sys_minherit)
2500 PRINT("sys_minherit( %#" FMT_REGWORD "x, %" FMT_REGWORD "u, %" FMT_REGWORD "u )", ARG1,ARG2,ARG3);
2501 PRE_REG_READ3(int, "minherit",
2502 void *, addr, vki_size_t, len, int, inherit);
2503 if (ARG2 != 0)
2504 PRE_MEM_WRITE( "minherit(addr)", ARG1,ARG2 );
2507 POST(sys_minherit)
2509 if (ARG2 != 0)
2510 POST_MEM_WRITE( ARG1, ARG2 );
2513 // SYS_rfork 251
2514 // x86/amd64 not functional
2516 // SYS_issetugid 253
2517 // int issetugid(void);
2518 PRE(sys_issetugid)
2520 PRINT("%s", "sys_issetugid ()");
2521 PRE_REG_READ0(long, "issetugid");
2524 // SYS_lchown 254
2525 // generic
2527 // SYS_aio_read 255
2528 // int aio_read(struct aiocb *iocb);
2529 PRE(sys_aio_read)
2531 PRINT("sys_aio_read ( %#" FMT_REGWORD "x )", ARG1);
2532 PRE_REG_READ1(int, "aio_read", struct vki_aiocb *, iocb);
2533 PRE_MEM_READ("aio_read(iocb)", ARG1, sizeof(struct vki_aiocb));
2534 if (ML_(safe_to_deref)((struct vki_aiocb *)ARG1, sizeof(struct vki_aiocb))) {
2535 struct vki_aiocb *iocb = (struct vki_aiocb *)ARG1;
2536 PRE_MEM_WRITE( "aio_read(iocb->aio_offset)", (Addr)iocb, sizeof(struct vki_aiocb));
2540 POST(sys_aio_read)
2542 if (ML_(safe_to_deref)((struct vki_aiocb *)ARG1, sizeof(struct vki_aiocb))) {
2543 struct vki_aiocb *iocb = (struct vki_aiocb *)ARG1;
2544 POST_MEM_WRITE((Addr)iocb, sizeof(struct vki_aiocb));
2548 // SYS_aio_write 256
2549 // int aio_write(struct aiocb *iocb);
2550 PRE(sys_aio_write)
2552 PRINT("sys_aio_write ( %#" FMT_REGWORD "x )", ARG1);
2553 PRE_REG_READ1(int, "aio_write", struct vki_aiocb *, iocb);
2554 PRE_MEM_READ("aio_read(iocb)", ARG1, sizeof(struct vki_aiocb));
2555 if (ML_(safe_to_deref)((struct vki_aiocb *)ARG1, sizeof(struct vki_aiocb))) {
2556 struct vki_aiocb *iocb = (struct vki_aiocb *)ARG1;
2557 PRE_MEM_WRITE( "aio_write(iocb->aio_offset)", (Addr)iocb, sizeof(struct vki_aiocb));
2561 POST(sys_aio_write)
2563 if (ML_(safe_to_deref)((struct vki_aiocb *)ARG1, sizeof(struct vki_aiocb))) {
2564 struct vki_aiocb *iocb = (struct vki_aiocb *)ARG1;
2565 PRE_MEM_WRITE( "aio_write(iocb->aio_offset)", (Addr)iocb, sizeof(struct vki_aiocb));
2569 // SYS_lio_listio 257
2570 // int lio_listio(int mode, struct aiocb * const list[], int nent,
2571 // struct sigevent *sig);
2572 PRE(sys_lio_listio)
2574 PRINT("sys_lio_listio ( %" FMT_REGWORD "d, %#" FMT_REGWORD "x, %" FMT_REGWORD "d, %#" FMT_REGWORD "x )",
2575 SARG1, ARG2, SARG3, ARG4);
2576 PRE_REG_READ4(int, "lio_listio", int, mode, struct aiocb * const *, list, int, nent,
2577 struct sigevent *,sig);
2578 PRE_MEM_READ("lio_listio(list)", ARG2, ARG3*sizeof(struct vki_aiocb *));
2579 // loop check elements
2580 if (ML_(safe_to_deref)((struct vki_aiocb **)ARG2, ARG3*sizeof(struct vki_aiocb *))) {
2581 struct vki_aiocb** list = (struct vki_aiocb **)ARG2;
2582 for (int i = 0; i < (int)ARG3; ++i) {
2583 if (list[i]) {
2584 PRE_MEM_READ("lio_listio(list[?])", (Addr)list[i], ARG3*sizeof(struct vki_aiocb));
2586 // @todo
2587 // figure out what gets read/written
2588 // when list[i]->aio_lio_opcode == VKI_LIO_READ and
2589 // when list[i]->aio_lio_opcode == VKI_LIO_WRITE
2590 //if (ML_(safe_to_deref)(list[i], ARG3*sizeof(struct vki_aiocb))) {
2595 if (ARG1 & VKI_LIO_WAIT) {
2596 *flags |= SfMayBlock;
2599 if (ARG4 && (ARG1 == VKI_LIO_NOWAIT)) {
2600 PRE_MEM_READ("lio_listio(sig)", ARG4, sizeof(struct vki_sigevent));
2604 // SYS_freebsd11_getdents 272
2605 // generic
2607 // SYS_lchmod 274
2608 // int lchmod(const char *path, mode_t mode);
2609 PRE(sys_lchmod)
2611 PRINT("sys_lchmod ( %#" FMT_REGWORD "x(%s), %" FMT_REGWORD "u )", ARG1,(char *)ARG1,ARG2);
2612 PRE_REG_READ2(int, "lchmod", const char *, path, vki_mode_t, mode);
2613 PRE_MEM_RASCIIZ( "lchmod(path)", ARG1 );
2616 // SYS_lutimes 276
2617 // int lutimes(const char *path, const struct timeval *times);
2618 PRE(sys_lutimes)
2620 PRINT("sys_lutimes ( %#" FMT_REGWORD "x(%s), %#" FMT_REGWORD "x )", ARG1,(char *)ARG1,ARG2);
2621 PRE_REG_READ2(int, "lutimes", char *, path, struct timeval *, times);
2622 PRE_MEM_RASCIIZ( "lutimes(path)", ARG1 );
2623 if (ARG2 != 0)
2624 PRE_MEM_READ( "lutimes(times)", ARG2, sizeof(struct vki_timeval) );
2627 // SYS_freebsd11_nstat 278
2628 // @todo, maybe
2630 // SYS_freebsd11_nfstat 279
2631 // @todo, maybe
2633 // SYS_freebsd11_nlstat 280
2634 // @todo, maybe
2636 // SYS_preadv 289
2637 // amd64 / x86
2639 // SYS_pwritev 290
2640 // amd64 / x86
2642 // SYS_fhopen 298
2643 // int fhopen(const fhandle_t *fhp, int flags);
2644 PRE(sys_fhopen)
2646 PRINT("sys_open ( %#" FMT_REGWORD "x, %" FMT_REGWORD "u )",ARG1,ARG2);
2647 PRE_REG_READ2(int, "fhopen",
2648 struct fhandle_t *, fhp, int, flags);
2649 PRE_MEM_READ( "fhopen(fhp)", ARG1, sizeof(struct vki_fhandle) );
2651 /* Otherwise handle normally */
2652 *flags |= SfMayBlock;
2655 POST(sys_fhopen)
2657 vg_assert(SUCCESS);
2658 if (!ML_(fd_allowed)(RES, "fhopen", tid, True)) {
2659 VG_(close)(RES);
2660 SET_STATUS_Failure( VKI_EMFILE );
2661 } else {
2662 if (VG_(clo_track_fds))
2663 ML_(record_fd_open_nameless)(tid, RES);
2667 // SYS_freebsd11_fhstat 299
2668 // int fhstat(const fhandle_t *fhp, struct stat *sb);
2669 #if (FREEBSD_VERS >= FREEBSD_12)
2670 PRE(sys_freebsd11_fhstat)
2672 PRINT("sys_freebsd11_fhstat ( %#" FMT_REGWORD "x, %#" FMT_REGWORD "x )",ARG1,ARG2);
2673 PRE_REG_READ2(int, "fhstat", struct fhandle *, fhp, struct freebd11_stat *, sb);
2674 PRE_MEM_READ( "fhstat(fhp)", ARG1, sizeof(struct vki_fhandle) );
2675 PRE_MEM_WRITE( "fhstat(sb)", ARG2, sizeof(struct vki_freebsd11_stat) );
2678 POST(sys_freebsd11_fhstat)
2680 POST_MEM_WRITE( ARG2, sizeof(struct vki_freebsd11_stat) );
2682 #else
2683 PRE(sys_fhstat)
2685 PRINT("sys_fhstat ( %#" FMT_REGWORD "x, %#" FMT_REGWORD "x )",ARG1,ARG2);
2686 PRE_REG_READ2(int, "fhstat", struct fhandle *, fhp, struct stat *, sb);
2687 PRE_MEM_READ( "fhstat(fhp)", ARG1, sizeof(struct vki_fhandle) );
2688 PRE_MEM_WRITE( "fhstat(sb)", ARG2, sizeof(struct vki_freebsd11_stat) );
2691 POST(sys_fhstat)
2693 POST_MEM_WRITE( ARG2, sizeof(struct vki_freebsd11_stat) );
2696 #endif
2698 // SYS_modnext 300
2699 // int modnext(int modid);
2700 PRE(sys_modnext)
2702 PRINT("sys_modnext ( %" FMT_REGWORD "d )",SARG1);
2703 PRE_REG_READ1(int, "modnext", int, modid);
2706 // SYS_modstat 301
2707 // int modstat(int modid, struct module_stat *stat);
2708 PRE(sys_modstat)
2710 PRINT("sys_modstat ( %" FMT_REGWORD "u, %#" FMT_REGWORD "x )",ARG1,ARG2);
2711 PRE_REG_READ2(int, "modstat", int, modid, struct module_stat *, buf);
2712 PRE_MEM_WRITE( "modstat(stat)", ARG2, sizeof(struct vki_module_stat) );
2715 POST(sys_modstat)
2717 POST_MEM_WRITE( ARG2, sizeof(struct vki_module_stat) );
2720 // SYS_modfnext 302
2721 // int modfnext(int modid);
2722 PRE(sys_modfnext)
2724 PRINT("sys_modfnext ( %" FMT_REGWORD "d )",SARG1);
2725 PRE_REG_READ1(int, "modfnext", int, modid);
2728 // SYS_modfind 303
2729 // int modfind(const char *modname);
2730 PRE(sys_modfind)
2732 PRINT("sys_modfind ( %#" FMT_REGWORD "x )",ARG1);
2733 PRE_REG_READ1(long, "modfind", char *, modname);
2734 PRE_MEM_RASCIIZ( "modfind(modname)", ARG1 );
2737 // SYS_kldload 304
2738 // int kldload(const char *file);
2739 PRE(sys_kldload)
2741 PRINT("sys_kldload ( %#" FMT_REGWORD "x(%s) )", ARG1, (char *)ARG1);
2742 PRE_REG_READ1(int, "kldload", const char *, "file");
2743 PRE_MEM_RASCIIZ( "kldload(file)", ARG1 );
2746 // SYS_kldunload 305
2747 // int kldunload(int fileid);
2748 PRE(sys_kldunload)
2750 PRINT("sys_kldunload ( %" FMT_REGWORD "u )", ARG1);
2751 PRE_REG_READ1(int, "kldunload", int, "fileid");
2754 // SYS_kldfind 306
2755 // int kldfind(const char *file);
2756 PRE(sys_kldfind)
2758 PRINT("sys_kldfind ( %#" FMT_REGWORD "x(%s) )", ARG1, (char *)ARG1);
2759 PRE_REG_READ1(int, "kldfind", const char *, file);
2760 PRE_MEM_RASCIIZ( "kldfind(file)", ARG1 );
2763 // SYS_kldnext 307
2764 // int kldnext(int fileid);
2765 PRE(sys_kldnext)
2767 PRINT("sys_kldnext ( %" FMT_REGWORD "u )", ARG1);
2768 PRE_REG_READ1(int, "kldnext", int, fileid);
2771 // SYS_kldstat 308
2772 // int kldstat(int fileid, struct kld_file_stat *stat);
2773 PRE(sys_kldstat)
2775 PRINT("sys_kldstat ( %" FMT_REGWORD "d, %#" FMT_REGWORD "x )", SARG1, ARG2);
2776 PRE_REG_READ2(int, "kldstat", int, fileid, struct kld_file_stat*, stat);
2777 PRE_MEM_WRITE("kldstat(stat)", ARG2, sizeof(struct vki_kld_file_stat));
2780 POST(sys_kldstat)
2782 POST_MEM_WRITE(ARG2, sizeof(struct vki_kld_file_stat));
2785 // SYS_kldfirstmod 309
2786 // int kldfirstmod(int fileid);
2787 PRE(sys_kldfirstmod)
2789 PRINT("sys_kldfirstmod ( %" FMT_REGWORD "u )", ARG1);
2790 PRE_REG_READ1(int, "kldfirstmod", int, fileid);
2793 // SYS_setresuid 311
2794 // int setresuid(uid_t *ruid, uid_t *euid, uid_t *suid);
2795 PRE(sys_setresuid)
2797 PRINT("sys_setresuid ( %" FMT_REGWORD "u, %" FMT_REGWORD "u, %" FMT_REGWORD "u )", ARG1, ARG2, ARG3);
2798 PRE_REG_READ3(int, "setresuid",
2799 vki_uid_t, ruid, vki_uid_t, euid, vki_uid_t, suid);
2802 // SYS_setresgid 312
2803 // int setresgid(gid_t rgid, gid_t egid, gid_t sgid);
2804 PRE(sys_setresgid)
2806 PRINT("sys_setresgid ( %" FMT_REGWORD "u, %" FMT_REGWORD "u, %" FMT_REGWORD "u )", ARG1, ARG2, ARG3);
2807 PRE_REG_READ3(int, "setresgid",
2808 vki_gid_t, rgid, vki_gid_t, egid, vki_gid_t, sgid);
2811 // SYS_aio_return 314
2812 // ssize_t aio_return(struct aiocb *iocb);
2813 PRE(sys_aio_return)
2815 PRINT("sys_aio_return ( %#" FMT_REGWORD "x )", ARG1);
2816 PRE_REG_READ1(ssize_t, "aio_return", struct aiocb *, iocb);
2817 // not too clear if this is read-only, sounds like it from the man page
2818 // but it isn't const
2819 PRE_MEM_READ("aio_return(iocb)", ARG1, sizeof(struct vki_aiocb));
2822 // SYS_aio_suspend 315
2823 // int aio_suspend(const struct aiocb *const iocbs[], int niocb,
2824 // const struct timespec *timeout);
2825 PRE(sys_aio_suspend)
2827 PRINT("sys_aio_suspend ( %#" FMT_REGWORD "x )", ARG1);
2828 PRE_REG_READ3(int, "aio_suspend", struct aiocb **, iocbs, int, nbiocb, const struct timespec*, timeout);
2829 PRE_MEM_READ("aio_suspend(iocbs)", ARG1, ARG2*sizeof(struct vki_aiocb));
2830 PRE_MEM_READ("aio_suspend(timeout)", ARG3, sizeof(struct vki_timespec));
2833 // SYS_aio_cancel 316
2834 // int aio_cancel(int fildes, struct aiocb *iocb);
2835 PRE(sys_aio_cancel)
2837 PRINT("sys_aio_cancel ( %" FMT_REGWORD "d, %#" FMT_REGWORD "x )", SARG1, ARG2);
2838 PRE_REG_READ2(int, "aio_cancel", int, fildex, struct aiocb *, iocb);
2839 if (ARG2) {
2840 PRE_MEM_READ("aio_cancel(iocb)", ARG2, sizeof(struct vki_aiocb));
2844 // SYS_aio_error 317
2845 // int aio_error(const struct aiocb *iocb);
2846 PRE(sys_aio_error)
2848 PRINT("sys_aio_error ( %#" FMT_REGWORD "x )", ARG1);
2849 PRE_REG_READ1(ssize_t, "aio_error", struct aiocb *, iocb);
2850 PRE_MEM_READ("aio_error(iocb)", ARG1, sizeof(struct vki_aiocb));
2853 // SYS_yield 321
2854 int yield(void);
2855 PRE(sys_yield)
2857 *flags |= SfMayBlock;
2858 PRINT("%s", "yield()");
2859 PRE_REG_READ0(long, "yield");
2862 // SYS_mlockall 324
2863 // generic
2865 // SYS_munlockall 325
2866 // int munlockall(void);
2867 PRE(sys_munlockall)
2869 *flags |= SfMayBlock;
2870 PRINT("%s", "sys_munlockall ( )");
2871 PRE_REG_READ0(int, "munlockall");
2874 // SYS___getcwd 326
2875 // int __getcwd(char *buf, size_t buflen);
2876 PRE(sys___getcwd)
2878 PRINT("sys___getcwd ( %#" FMT_REGWORD "x, %" FMT_REGWORD "u )", ARG1,ARG2);
2879 PRE_REG_READ2(long, "__getcwd", char *, buf, unsigned int, buflen);
2880 PRE_MEM_WRITE( "__getcwd(buf)", ARG1, ARG2 );
2883 POST(sys___getcwd)
2885 vg_assert(SUCCESS);
2886 if (RES == 0) {
2887 // QQQ it is unclear if this is legal or not, but the
2888 // QQQ kernel just wrote it there...
2889 // QQQ Why oh why didn't phk return the length from __getcwd()?
2890 UInt len = VG_(strlen) ( (char *)ARG1 ) + 1;
2891 POST_MEM_WRITE( ARG1, len );
2895 //SYS_sched_setparam 327
2896 // int sched_setparam(pid_t pid, const struct sched_param *param);
2897 PRE(sys_sched_setparam)
2899 PRINT("sched_setparam ( %" FMT_REGWORD "d, %#" FMT_REGWORD "x )", SARG1, ARG2 );
2900 PRE_REG_READ2(int, "sched_setparam",
2901 vki_pid_t, pid, struct sched_param *, param);
2902 PRE_MEM_READ( "sched_setparam(param)", ARG2, sizeof(struct vki_sched_param) );
2905 POST(sys_sched_setparam)
2907 POST_MEM_WRITE( ARG2, sizeof(struct vki_sched_param) );
2910 // SYS_sched_getparam 328
2911 // int sched_getparam(pid_t pid, struct sched_param *param);
2912 PRE(sys_sched_getparam)
2914 PRINT("sched_getparam ( %" FMT_REGWORD "d, %#" FMT_REGWORD "x )", SARG1, ARG2 );
2915 PRE_REG_READ2(int, "sched_getparam",
2916 vki_pid_t, pid, struct sched_param *, param);
2917 PRE_MEM_WRITE( "sched_getparam(param)", ARG2, sizeof(struct vki_sched_param) );
2920 POST(sys_sched_getparam)
2922 POST_MEM_WRITE( ARG2, sizeof(struct vki_sched_param) );
2925 // SYS_sched_setscheduler 329
2926 // int sched_setscheduler(pid_t pid, int policy,
2927 // const struct sched_param *param);
2928 PRE(sys_sched_setscheduler)
2930 PRINT("sys_sched_setscheduler ( %" FMT_REGWORD "d, %" FMT_REGWORD "d, %#" FMT_REGWORD "x )", SARG1,SARG2,ARG3);
2931 PRE_REG_READ3(int, "sched_setscheduler",
2932 vki_pid_t, pid, int, policy, struct sched_param *, param);
2933 if (ARG3 != 0)
2934 PRE_MEM_READ("sched_setscheduler(param)",
2935 ARG3, sizeof(struct vki_sched_param));
2938 // SYS_sched_getscheduler 330
2939 // int sched_getscheduler(pid_t pid);
2940 PRE(sys_sched_getscheduler)
2942 PRINT("sys_sched_getscheduler ( %" FMT_REGWORD "d )", SARG1);
2943 PRE_REG_READ1(int, "sched_getscheduler", vki_pid_t, pid);
2946 // SYS_sched_yield 331
2947 // int sched_yield(void);
2948 PRE(sys_sched_yield)
2950 *flags |= SfMayBlock;
2951 PRINT("sched_yield()");
2952 PRE_REG_READ0(int, "sched_yield");
2955 // SYS_sched_get_priority_max 332
2956 // int sched_get_priority_max(int policy);
2957 PRE(sys_sched_get_priority_max)
2959 PRINT("sched_get_priority_max ( %" FMT_REGWORD "u )", ARG1);
2960 PRE_REG_READ1(long, "sched_get_priority_max", int, policy);
2963 // SYS_sched_get_priority_min 333
2964 // int sched_get_priority_min(int policy);
2965 PRE(sys_sched_get_priority_min)
2967 PRINT("sched_get_priority_min ( %" FMT_REGWORD "u )", ARG1);
2968 PRE_REG_READ1(long, "sched_get_priority_min", int, policy);
2971 // SYS_sched_rr_get_interval 334
2972 // int sched_rr_get_interval(pid_t pid, struct timespec *interval);
2973 PRE(sys_sched_rr_get_interval)
2975 PRINT("sys_sched_rr_get_interval ( %" FMT_REGWORD "d, %#" FMT_REGWORD "x )", SARG1, ARG2);
2976 PRE_REG_READ2(int, "sched_rr_get_interval", vki_pid_t, pid, struct vki_timespec *,interval);
2977 PRE_MEM_WRITE("sys_sched_rr_get_interval(interval)", ARG2, sizeof(struct vki_timespec));
2980 POST(sys_sched_rr_get_interval)
2982 POST_MEM_WRITE(ARG2, sizeof(struct vki_timespec));
2985 // SYS_utrace 335
2986 // int utrace(const void *addr, size_t len);
2987 PRE(sys_utrace)
2989 PRINT("sys_utrace ( %#" FMT_REGWORD "x, %" FMT_REGWORD "u )", ARG1, ARG2);
2990 PRE_REG_READ2(int, "utrace", const void *, addr, vki_size_t, len);
2991 PRE_MEM_READ( "utrace(addr)", ARG2, ARG3 );
2994 // SYS_kldsym 337
2995 // int kldsym(int fileid, int cmd, void *data);
2996 PRE(sys_kldsym)
2998 PRINT("sys_kldsym ( %" FMT_REGWORD "u, %" FMT_REGWORD "u, %#" FMT_REGWORD "x )", ARG1,ARG2,ARG3 );
2999 PRE_REG_READ3(int, "kldsym", int, fileid, int, cmd, void*, data);
3000 PRE_MEM_READ( "kldsym(data)", ARG3, sizeof(struct vki_kld_sym_lookup) );
3001 struct vki_kld_sym_lookup *kslp = (struct vki_kld_sym_lookup *)ARG3;
3002 if (ML_(safe_to_deref)(kslp, sizeof(struct vki_kld_sym_lookup))) {
3003 PRE_MEM_RASCIIZ( "kldsym(data.symname)", (Addr)kslp->symname );
3007 POST(sys_kldsym)
3009 struct vki_kld_sym_lookup *kslp = (struct vki_kld_sym_lookup *)ARG3;
3010 POST_MEM_WRITE( (Addr)&kslp->symvalue, sizeof(kslp->symvalue) );
3011 POST_MEM_WRITE( (Addr)&kslp->symsize, sizeof(kslp->symsize) );
3014 // SYS_jail 338
3015 // int jail(struct jail *jail);
3016 PRE(sys_jail)
3018 PRINT("sys_jail ( %#" FMT_REGWORD "x )", ARG1);
3019 PRE_REG_READ1(int, "jail", struct jail *, jail);
3020 PRE_MEM_READ( "jail(jail)", ARG1, sizeof(struct vki_jail) );
3023 // SYS_nnpfs_syscall 338
3024 // @todo
3026 // SYS_sigprocmask 340
3027 // int sigprocmask(int how, const sigset_t * restrict set,
3028 // sigset_t * restrict oset);
3029 PRE(sys_sigprocmask)
3031 PRINT("sys_sigprocmask ( %" FMT_REGWORD "u, %#" FMT_REGWORD "x, %#" FMT_REGWORD "x )",ARG1,ARG2,ARG3);
3032 PRE_REG_READ3(int, "sigprocmask",
3033 int, how, vki_sigset_t *, set, vki_sigset_t *, oset);
3034 if (ARG2 != 0)
3035 PRE_MEM_READ( "sigprocmask(set)", ARG2, sizeof(vki_sigset_t));
3036 if (ARG3 != 0)
3037 PRE_MEM_WRITE( "sigprocmask(oset)", ARG3, sizeof(vki_sigset_t));
3039 if (ARG2 != 0 &&
3040 !ML_(safe_to_deref)((void *)(Addr)ARG2, sizeof(vki_sigset_t))) {
3041 VG_(dmsg)("Warning: Bad set handler address %p in sigprocmask\n",
3042 (void *)(Addr)ARG2);
3043 SET_STATUS_Failure ( VKI_EFAULT );
3044 } else if (ARG3 != 0 &&
3045 !ML_(safe_to_deref)((void *)(Addr)ARG3, sizeof(vki_sigset_t))) {
3046 VG_(dmsg)("Warning: Bad oldset address %p in sigprocmask\n",
3047 (void *)(Addr)ARG3);
3048 SET_STATUS_Failure ( VKI_EFAULT );
3049 } else {
3050 SET_STATUS_from_SysRes(VG_(do_sys_sigprocmask)(tid, ARG1 /*how*/,
3051 (vki_sigset_t*)(Addr)ARG2,
3052 (vki_sigset_t*)(Addr)ARG3));
3055 if (SUCCESS)
3056 *flags |= SfPollAfter;
3059 POST(sys_sigprocmask)
3061 vg_assert(SUCCESS);
3062 if (RES == 0 && ARG3 != 0)
3063 POST_MEM_WRITE( ARG3, sizeof(vki_sigset_t));
3066 // SYS_sigsuspend 341
3067 // int sigsuspend(const sigset_t *sigmask);
3068 PRE(sys_sigsuspend)
3070 *flags |= SfMayBlock;
3071 PRINT("sys_sigsuspend ( %#" FMT_REGWORD "x )", ARG1 );
3072 PRE_REG_READ1(int, "sigsuspend", const vki_sigset_t *, sigmask);
3073 PRE_MEM_READ( "sigsuspend(sigmask)", ARG1, sizeof(vki_sigset_t) );
3074 if (ARG1) {
3075 ARG1 = ML_(make_safe_mask)("syswrap.sigsuspend.1", (Addr)ARG1);
3079 POST(sys_sigsuspend)
3081 ML_(free_safe_mask) ( (Addr)ARG1 );
3084 // SYS_sigpending 343
3085 // int sigpending(sigset_t *set);
3086 PRE(sys_sigpending)
3088 PRINT( "sys_sigpending ( %#" FMT_REGWORD "x )", ARG1 );
3089 PRE_REG_READ1(int, "sigpending", vki_sigset_t *, set);
3090 PRE_MEM_WRITE( "sigpending(set)", ARG1, sizeof(vki_sigset_t));
3093 POST(sys_sigpending)
3095 POST_MEM_WRITE( ARG1, sizeof(vki_sigset_t) ) ;
3099 // SYS_sigtimedwait 345
3100 // int sigtimedwait(const sigset_t *restrict set, siginfo_t *restrict info,
3101 // const struct timespec *restrict timeout);
3102 PRE(sys_sigtimedwait)
3104 *flags |= SfMayBlock;
3105 PRINT("sys_sigtimedwait ( %#" FMT_REGWORD "x, %#" FMT_REGWORD "x, %#" FMT_REGWORD "x )",
3106 ARG1,ARG2,ARG3);
3107 PRE_REG_READ3(int, "sigtimedwait",
3108 const vki_sigset_t *, set, vki_siginfo_t *, info,
3109 const struct timespec *, timeout);
3110 if (ARG1 != 0)
3111 PRE_MEM_READ( "sigtimedwait(set)", ARG1, sizeof(vki_sigset_t));
3112 if (ARG2 != 0)
3113 PRE_MEM_WRITE( "sigtimedwait(info)", ARG2, sizeof(vki_siginfo_t) );
3114 if (ARG3 != 0)
3115 PRE_MEM_READ( "sigtimedwait(timeout)",
3116 ARG3, sizeof(struct vki_timespec) );
3119 POST(sys_sigtimedwait)
3121 if (ARG2 != 0)
3122 POST_MEM_WRITE( ARG2, sizeof(vki_siginfo_t) );
3125 // SYS_sigwaitinfo 346
3126 // int sigwaitinfo(const sigset_t * restrict set, siginfo_t * restrict info);
3127 PRE(sys_sigwaitinfo)
3129 *flags |= SfMayBlock;
3130 PRINT("sys_sigwaitinfo ( %#" FMT_REGWORD "x, %#" FMT_REGWORD "x )",
3131 ARG1,ARG2);
3132 PRE_REG_READ2(int, "sigwaitinfo",
3133 const vki_sigset_t *, set, vki_siginfo_t *, info);
3134 if (ARG1 != 0)
3135 PRE_MEM_READ( "sigwaitinfo(set)", ARG1, sizeof(vki_sigset_t));
3136 if (ARG2 != 0)
3137 PRE_MEM_WRITE( "sigwaitinfo(info)", ARG2, sizeof(vki_siginfo_t) );
3140 POST(sys_sigwaitinfo)
3142 if (ARG2 != 0)
3143 POST_MEM_WRITE( ARG2, sizeof(vki_siginfo_t) );
3146 // SYS___acl_get_file 347
3147 // int __acl_get_file(const char *path, acl_type_t type, struct acl *aclp);
3148 PRE(sys___acl_get_file)
3150 PRINT("sys___acl_get_file ( %#" FMT_REGWORD "x(%s), %" FMT_REGWORD "u, %#" FMT_REGWORD "x )", ARG1,(char *)ARG1,ARG2,ARG3);
3151 PRE_REG_READ3(int, "acl_get_file",
3152 const char *, path, int, type, struct vki_acl *, aclp);
3153 PRE_MEM_RASCIIZ("acl_get_file(path", ARG1);
3154 PRE_MEM_WRITE( "acl_get_file(aclp)", ARG3, sizeof(struct vki_acl) );
3157 POST(sys___acl_get_file)
3159 vg_assert(SUCCESS);
3160 if (RES == 0) {
3161 POST_MEM_WRITE( ARG3, sizeof(struct vki_acl) );
3165 // SYS___acl_set_file 348
3166 // int __acl_set_file(const char *path, acl_type_t type, struct acl *aclp);
3167 PRE(sys___acl_set_file)
3169 PRINT("sys___acl_set_file ( %#" FMT_REGWORD "x(%s), %" FMT_REGWORD "u, %#" FMT_REGWORD "x )", ARG1,(char *)ARG1,ARG2,ARG3);
3170 PRE_REG_READ3(int, "acl_set_file",
3171 const char *, path, int, type, struct vki_acl *, aclp);
3172 PRE_MEM_RASCIIZ("acl_set_file(path", ARG1);
3173 PRE_MEM_READ("acl_set_file(aclp)", ARG3, sizeof(struct vki_acl) );
3176 // SYS___acl_get_fd 349
3177 // int __acl_get_fd(int filedes, acl_type_t type, struct acl *aclp);
3178 PRE(sys___acl_get_fd)
3180 PRINT("sys___acl_get_fd ( %" FMT_REGWORD "u, %" FMT_REGWORD "u, %#" FMT_REGWORD "x )", ARG1,ARG2,ARG3);
3181 PRE_REG_READ3(int, "acl_get_fd",
3182 int, fd, int, type, struct vki_acl *, aclp);
3183 PRE_MEM_WRITE( "acl_get_file(aclp)", ARG3, sizeof(struct vki_acl) );
3186 POST(sys___acl_get_fd)
3188 vg_assert(SUCCESS);
3189 if (RES == 0) {
3190 POST_MEM_WRITE( ARG3, sizeof(struct vki_acl) );
3194 // SYS___acl_set_fd 350
3195 // int __acl_set_fd(int filedes, acl_type_t type, struct acl *aclp);
3196 PRE(sys___acl_set_fd)
3198 PRINT("sys___acl_set_fd ( %" FMT_REGWORD "u, %" FMT_REGWORD "u, %#" FMT_REGWORD "x )", ARG1,ARG2,ARG3);
3199 PRE_REG_READ3(int, "acl_set_fd",
3200 int, filedes, int, type, struct vki_acl *, aclp);
3201 PRE_MEM_READ( "acl_get_file(aclp)", ARG3, sizeof(struct vki_acl) );
3204 // SYS___acl_delete_file 351
3205 // int __acl_delete_file(const char *path, acl_type_t type);
3206 PRE(sys___acl_delete_file)
3208 PRINT("sys___acl_delete_file ( %#" FMT_REGWORD "x(%s), %" FMT_REGWORD "u )", ARG1,(char *)ARG1,ARG2);
3209 PRE_MEM_RASCIIZ("acl_set_file(path", ARG1);
3210 PRE_REG_READ2(int, "acl_delete_file",
3211 const char *, path, int, type);
3213 // SYS___acl_delete_fd 352
3214 // int __acl_delete_fd(int filedes, acl_type_t type);
3215 PRE(sys___acl_delete_fd)
3217 PRINT("sys___acl_delete_fd ( %" FMT_REGWORD "u, %" FMT_REGWORD "u )", ARG1,ARG2);
3218 PRE_REG_READ2(int, "acl_delete_fd",
3219 int, filedes, int, acltype);
3222 // SYS___acl_aclcheck_file 353
3223 // int __acl_aclcheck_file(const char *path, acl_type_t type, struct acl *aclp);
3224 PRE(sys___acl_aclcheck_file)
3226 PRINT("sys___acl_aclcheck_file ( %#" FMT_REGWORD "x(%s), %" FMT_REGWORD "u, %#" FMT_REGWORD "x )", ARG1,(char *)ARG1,ARG2,ARG3);
3227 PRE_REG_READ3(int, "acl_aclcheck_file",
3228 const char *, path, int, type, struct vki_acl *, aclp);
3229 PRE_MEM_RASCIIZ("acl_set_file(path", ARG1);
3230 PRE_MEM_READ( "acl_aclcheck_file(aclp)", ARG3, sizeof(struct vki_acl) );
3233 // SYS___acl_aclcheck_fd 354
3234 // int __acl_aclcheck_fd(int filedes, acl_type_t type, struct acl *aclp);
3235 PRE(sys___acl_aclcheck_fd)
3237 PRINT("sys___acl_aclcheck_fd ( %" FMT_REGWORD "u, %" FMT_REGWORD "u, %#" FMT_REGWORD "x )", ARG1,ARG2,ARG3);
3238 PRE_REG_READ3(int, "acl_aclcheck_fd",
3239 int, fd, int, type, struct vki_acl *, aclp);
3240 PRE_MEM_READ( "acl_aclcheck_fd(aclp)", ARG3, sizeof(struct vki_acl) );
3243 // SYS_extattrctl 355
3244 // no manpage?
3245 // syscalls.master: int extattrctl(_In_z_ const char *path, int cmd, _In_z_opt_ const char *filename, int attrnamespace, _In_z_ const char *attrname);
3246 PRE(sys_extattrctl)
3248 PRINT("sys_extattrctl ( %#" FMT_REGWORD "x, %" FMT_REGWORD "d, %#" FMT_REGWORD "x, %" FMT_REGWORD "d, %#" FMT_REGWORD "x )", ARG1,SARG2,ARG3,SARG4,ARG5);
3249 PRE_REG_READ5(ssize_t, "extattrctl",
3250 const char *, path, int, cmd, const char *, filename, int, attrnamespace, const char *, attrname);
3251 PRE_MEM_RASCIIZ("extattrctl(path)", ARG1);
3252 PRE_MEM_RASCIIZ("extattrctl(filename)", ARG3);
3253 PRE_MEM_RASCIIZ("extattrctl(attrname)", ARG5);
3256 // SYS_extattr_set_file 356
3257 // ssize_t extattr_set_file(const char *path, int attrnamespace,
3258 // const char *attrname, const void *data, size_t nbytes);
3259 PRE(sys_extattr_set_file)
3261 PRINT("sys_extattr_set_file ( %#" FMT_REGWORD "x, %" FMT_REGWORD "d, %#" FMT_REGWORD "x, %#" FMT_REGWORD "x, %" FMT_REGWORD "u )", ARG1,SARG2,ARG3,ARG4,ARG5);
3262 PRE_REG_READ5(ssize_t, "extattr_set_file",
3263 const char *, path, int, attrnamespace, const char *, attrname, const void *, data, size_t, nbytes);
3264 PRE_MEM_RASCIIZ("extattr_set_file(path)", ARG1);
3265 PRE_MEM_RASCIIZ("extattr_set_file(attrname)", ARG3);
3266 PRE_MEM_READ("extattr_set_file(data)", ARG4, ARG5);
3269 // SYS_extattr_get_file 357
3270 // ssize_t extattr_get_file(const char *path, int attrnamespace,
3271 // const char *attrname, void *data, size_t nbytes);
3272 PRE(sys_extattr_get_file)
3274 PRINT("sys_extattr_get_file ( %#" FMT_REGWORD "x, %" FMT_REGWORD "d, %#" FMT_REGWORD "x, %#" FMT_REGWORD "x, %" FMT_REGWORD "u )", ARG1,SARG2,ARG3,ARG4,ARG5);
3275 PRE_REG_READ5(ssize_t, "extattr_get_file",
3276 const char *, path, int, attrnamespace, const char *, attrname, void *, data, size_t, nbytes);
3277 PRE_MEM_RASCIIZ("extattr_get_file(path)", ARG1);
3278 PRE_MEM_RASCIIZ("extattr_get_file(attrname)", ARG3);
3279 if (ARG4) {
3280 PRE_MEM_WRITE("extattr_get_file(data)", ARG4, ARG5);
3284 POST(sys_extattr_get_file)
3286 if (ARG4) {
3287 POST_MEM_WRITE(ARG4, ARG5);
3291 // SYS_extattr_delete_file 358
3292 // int extattr_delete_file(const char *path, int attrnamespace,
3293 // const char *attrname);
3294 PRE(sys_extattr_delete_file)
3296 PRINT("sys_extattr_delete_file ( %#" FMT_REGWORD "x, %" FMT_REGWORD "d, %#" FMT_REGWORD "x )", ARG1,SARG2,ARG3);
3297 PRE_REG_READ3(ssize_t, "extattr_delete_file",
3298 const char *, path, int, attrnamespace, const char *, attrname);
3299 PRE_MEM_RASCIIZ("extattr_delete_file(path)", ARG1);
3300 PRE_MEM_RASCIIZ("extattr_delete_file(attrname)", ARG3);
3303 // SYS_aio_waitcomplete 359
3304 // ssize_t aio_waitcomplete(struct aiocb **iocbp, struct timespec *timeout);
3305 PRE(sys_aio_waitcomplete)
3307 *flags |= SfMayBlock;
3308 PRINT("sys_aio_waitcomplete ( %#" FMT_REGWORD "x, %#" FMT_REGWORD "x )", ARG1,ARG2);
3309 PRE_REG_READ2(ssize_t, "aio_waitcomplete", struct aiocb **, iocbp, struct timespec *, timeout);
3310 if (ARG2) {
3311 PRE_MEM_READ("aio_waitcomplete(timeout", ARG2, sizeof(struct vki_timespec));
3313 PRE_MEM_WRITE( "aio_waitcomplete(iocbp)", ARG1, sizeof(struct aiocb *));
3316 POST(sys_aio_waitcomplete)
3318 POST_MEM_WRITE(ARG1, sizeof(struct aiocb *));
3321 // SYS_getresuid 360
3322 // int getresuid(uid_t *ruid, uid_t *euid, uid_t *suid);
3323 PRE(sys_getresuid)
3325 PRINT("sys_getresuid ( %#" FMT_REGWORD "x, %#" FMT_REGWORD "x, %#" FMT_REGWORD "x )", ARG1,ARG2,ARG3);
3326 PRE_REG_READ3(long, "getresuid",
3327 vki_uid_t *, ruid, vki_uid_t *, euid, vki_uid_t *, suid);
3328 PRE_MEM_WRITE( "getresuid(ruid)", ARG1, sizeof(vki_uid_t) );
3329 PRE_MEM_WRITE( "getresuid(euid)", ARG2, sizeof(vki_uid_t) );
3330 PRE_MEM_WRITE( "getresuid(suid)", ARG3, sizeof(vki_uid_t) );
3333 POST(sys_getresuid)
3335 vg_assert(SUCCESS);
3336 if (RES == 0) {
3337 POST_MEM_WRITE( ARG1, sizeof(vki_uid_t) );
3338 POST_MEM_WRITE( ARG2, sizeof(vki_uid_t) );
3339 POST_MEM_WRITE( ARG3, sizeof(vki_uid_t) );
3343 // SYS_getresgid 361
3344 // int getresgid(gid_t *rgid, gid_t *egid, gid_t *sgid);
3345 PRE(sys_getresgid)
3347 PRINT("sys_getresgid ( %#" FMT_REGWORD "x, %#" FMT_REGWORD "x, %#" FMT_REGWORD "x )", ARG1,ARG2,ARG3);
3348 PRE_REG_READ3(long, "getresgid",
3349 vki_gid_t *, rgid, vki_gid_t *, egid, vki_gid_t *, sgid);
3350 PRE_MEM_WRITE( "getresgid(rgid)", ARG1, sizeof(vki_gid_t) );
3351 PRE_MEM_WRITE( "getresgid(egid)", ARG2, sizeof(vki_gid_t) );
3352 PRE_MEM_WRITE( "getresgid(sgid)", ARG3, sizeof(vki_gid_t) );
3355 POST(sys_getresgid)
3357 vg_assert(SUCCESS);
3358 if (RES == 0) {
3359 POST_MEM_WRITE( ARG1, sizeof(vki_gid_t) );
3360 POST_MEM_WRITE( ARG2, sizeof(vki_gid_t) );
3361 POST_MEM_WRITE( ARG3, sizeof(vki_gid_t) );
3365 // SYS_kqueue 362
3366 // int kqueue(void);
3367 PRE(sys_kqueue)
3369 PRINT("%s", "sys_kqueue ()");
3370 PRE_REG_READ0(omt, "kqueue");
3373 POST(sys_kqueue)
3375 if (!ML_(fd_allowed)(RES, "kqueue", tid, True)) {
3376 VG_(close)(RES);
3377 SET_STATUS_Failure( VKI_EMFILE );
3378 } else {
3379 if (VG_(clo_track_fds)) {
3380 ML_(record_fd_open_nameless)(tid, RES);
3385 // SYS_freebsd11_kevent 363
3386 // int kevent(int kq, const struct kevent *changelist, int nchanges,
3387 // struct kevent *eventlist, int nevents,
3388 // const struct timespec *timeout);
3389 #if (FREEBSD_VERS >= FREEBSD_12)
3390 PRE(sys_freebsd11_kevent)
3392 PRINT("sys_freebsd11_kevent ( %" FMT_REGWORD "u, %#" FMT_REGWORD "x, %" FMT_REGWORD "u, %#" FMT_REGWORD "x, %" FMT_REGWORD "u, %#" FMT_REGWORD "x )\n", ARG1,ARG2,ARG3,ARG4,ARG5,ARG6);
3393 PRE_REG_READ6(int, "kevent",
3394 int, fd, const struct vki_kevent_freebsd11 *, changelist, int, nchanges,
3395 struct vki_kevent_freebsd11 *, eventlist, int, nevents,
3396 struct timespec *, timeout);
3397 if (ARG2 != 0 && ARG3 != 0)
3398 PRE_MEM_READ( "kevent(changelist)", ARG2, sizeof(struct vki_kevent_freebsd11)*ARG3 );
3399 if (ARG4 != 0 && ARG5 != 0)
3400 PRE_MEM_WRITE( "kevent(eventlist)", ARG4, sizeof(struct vki_kevent_freebsd11)*ARG5);
3401 if (ARG5 != 0)
3402 *flags |= SfMayBlock;
3403 if (ARG6 != 0)
3404 PRE_MEM_READ( "kevent(timeout)",
3405 ARG6, sizeof(struct vki_timespec));
3408 POST(sys_freebsd11_kevent)
3410 vg_assert(SUCCESS);
3411 if ((Word)RES != -1) {
3412 if (ARG4 != 0)
3413 POST_MEM_WRITE( ARG4, sizeof(struct vki_kevent_freebsd11)*RES) ;
3416 #else
3417 PRE(sys_kevent)
3419 *flags |= SfMayBlock;
3420 PRINT("sys_kevent ( %" FMT_REGWORD "u, %#" FMT_REGWORD "x, %" FMT_REGWORD "u, %#" FMT_REGWORD "x, %" FMT_REGWORD "u, %#" FMT_REGWORD "x )\n", ARG1,ARG2,ARG3,ARG4,ARG5,ARG6);
3421 PRE_REG_READ6(int, "kevent",
3422 int, fd, struct vki_kevent_freebsd11 *, changelist, int, nchanges,
3423 struct vki_kevent_freebsd11 *, eventlist, int, nevents,
3424 struct timespec *, timeout);
3425 if (ARG2 != 0 && ARG3 != 0)
3426 PRE_MEM_READ( "kevent(changelist)", ARG2, sizeof(struct vki_kevent_freebsd11)*ARG3 );
3427 if (ARG4 != 0 && ARG5 != 0)
3428 PRE_MEM_WRITE( "kevent(eventlist)", ARG4, sizeof(struct vki_kevent_freebsd11)*ARG5);
3429 if (ARG6 != 0)
3430 PRE_MEM_READ( "kevent(timeout)",
3431 ARG6, sizeof(struct vki_timespec));
3434 POST(sys_kevent)
3436 vg_assert(SUCCESS);
3437 if ((Word)RES != -1) {
3438 if (ARG4 != 0)
3439 POST_MEM_WRITE( ARG4, sizeof(struct vki_kevent_freebsd11)*RES) ;
3442 #endif
3444 // SYS_extattr_set_fd 371
3445 // ssize_t extattr_set_fd(int fd, int attrnamespace, const char *attrname,
3446 // const void *data, size_t nbytes);
3447 PRE(sys_extattr_set_fd)
3449 PRINT("sys_extattr_set_fd ( %" FMT_REGWORD "d, %" FMT_REGWORD "d, %#" FMT_REGWORD "x, %#" FMT_REGWORD "x, %" FMT_REGWORD "u )", SARG1,SARG2,ARG3,ARG4,ARG5);
3450 PRE_REG_READ5(int, "extattr_set_fd", int, fd, int, attrnamespace, const char *,attrname, const void *,data, size_t, nbytes);
3451 PRE_MEM_RASCIIZ( "extattr_set_fd(attrname)", ARG3 );
3452 PRE_MEM_READ("extattr_set_fd(data)", ARG4, ARG5);
3455 // SYS_extattr_get_fd 372
3456 // ssize_t extattr_get_fd(int fd, int attrnamespace, const char *attrname,
3457 // void *data, size_t nbytes);
3458 PRE(sys_extattr_get_fd)
3460 PRINT("sys_extattr_get_fd ( %" FMT_REGWORD "d, %" FMT_REGWORD "d, %#" FMT_REGWORD "x, %#" FMT_REGWORD "x, %" FMT_REGWORD "u )", SARG1,SARG2,ARG3,ARG4,ARG5);
3461 PRE_REG_READ5(int, "extattr_get_fd", int, fd, int, attrnamespace, const char *,attrname, const void *,data, size_t, nbytes);
3462 PRE_MEM_RASCIIZ( "extattr_get_fd(attrname)", ARG3 );
3463 PRE_MEM_WRITE("extattr_get_fd(data)", ARG4, ARG5);
3466 POST(sys_extattr_get_fd)
3468 POST_MEM_WRITE(ARG4, ARG5);
3471 // SYS_extattr_delete_fd 373
3472 // int extattr_delete_fd(int fd, int attrnamespace, const char *attrname);
3473 PRE(sys_extattr_delete_fd)
3475 PRINT("sys_extattr_delete_fd ( %" FMT_REGWORD "d, %" FMT_REGWORD "d, %#" FMT_REGWORD "x )", SARG1,SARG2,ARG3);
3476 PRE_REG_READ3(int, "extattr_delete_fd", int, fd, int, attrnamespace, const char *,attrname);
3477 PRE_MEM_RASCIIZ( "extattr_delete_fd(attrname)", ARG3 );
3480 // SYS___setugid 374
3481 // no manpage?
3482 // syscalls.master: int __setugid(int flag);
3483 PRE(sys___setugid)
3485 PRINT("sys___setugid ( %" FMT_REGWORD "d )", SARG1);
3486 PRE_REG_READ1(int, "__setugid", int, flag);
3489 // SYS_eaccess 376
3490 // int eaccess(const char *path, int mode);
3491 PRE(sys_eaccess)
3493 PRINT("sys_eaccess ( %#" FMT_REGWORD "x(%s), %" FMT_REGWORD "u )", ARG1,(char*)ARG1,ARG2);
3494 PRE_REG_READ2(int, "eaccess", const char *, path, int, mode);
3495 PRE_MEM_RASCIIZ( "eaccess(path)", ARG1 );
3498 // SYS_afs3_syscall 377
3499 // @todo
3501 // SYS_nmount 378
3502 // int nmount(struct iovec *iov, u_int niov, int flags);
3503 PRE(sys_nmount)
3505 PRINT("sys_nmount ( %#" FMT_REGWORD "x, %" FMT_REGWORD "u, %" FMT_REGWORD "d )", ARG1, ARG2, SARG3);
3506 PRE_REG_READ3(int, "nmount", struct iovec *, iov, u_int, niov, int, flags);
3507 PRE_MEM_READ( "nmount(pathname)", ARG1, ARG2*sizeof(struct vki_iovec) );
3510 // SYS___mac_get_proc 384
3511 // @todo
3513 // SYS___mac_set_proc 385
3514 // @todo
3516 // SYS___mac_get_fd 386
3517 // @todo
3519 // SYS___mac_get_file 387
3520 // @todo
3522 // SYS___mac_set_fd 388
3523 // @todo
3525 // SYS___mac_set_file 389
3526 // @todo
3528 // SYS_kenv 390
3529 // int kenv(int action, const char *name, char *value, int len);
3530 PRE(sys_kenv)
3532 PRINT("sys_kenv ( %" FMT_REGWORD "u, %#" FMT_REGWORD "x, %#" FMT_REGWORD "x, %" FMT_REGWORD "u )", ARG1,ARG2,ARG3,ARG4);
3533 PRE_REG_READ4(int, "kenv",
3534 int, action, const char *, name, char *, value, int, len);
3535 switch (ARG1) {
3536 case VKI_KENV_GET:
3537 case VKI_KENV_SET:
3538 case VKI_KENV_UNSET:
3539 PRE_MEM_RASCIIZ("kenv(name)", ARG2);
3540 /* FALLTHROUGH */
3541 case VKI_KENV_DUMP:
3542 break;
3543 default:
3544 VG_(dmsg)("Warning: Bad action %" FMT_REGWORD "u in kenv\n", ARG1);
3548 POST(sys_kenv)
3550 if (SUCCESS) {
3551 switch (ARG1) {
3552 case VKI_KENV_GET:
3553 POST_MEM_WRITE(ARG3, ARG4);
3554 break;
3555 case VKI_KENV_DUMP:
3556 if (ARG3 != (Addr)NULL)
3557 POST_MEM_WRITE(ARG3, ARG4);
3558 break;
3563 // SYS_lchflags 391
3564 // int lchflags(const char *path, unsigned long flags);
3565 PRE(sys_lchflags)
3567 PRINT("sys_lchflags ( %#" FMT_REGWORD "x(%s), 0x%" FMT_REGWORD "x )", ARG1,(char *)ARG1,ARG2);
3568 PRE_REG_READ2(int, "lchflags",
3569 const char *, path, unsigned long, flags);
3570 PRE_MEM_RASCIIZ( "lchflags(path)", ARG1 );
3573 // SYS_uuidgen 392
3574 // int uuidgen(struct uuid *store, int count);
3575 PRE(sys_uuidgen)
3577 PRINT("sys_uuidgen ( %#" FMT_REGWORD "x, %" FMT_REGWORD "u )", ARG1,ARG2);
3578 PRE_REG_READ2(int, "uuidgen",
3579 struct vki_uuid *, store, int, count);
3580 PRE_MEM_WRITE( "uuidgen(store)", ARG1, ARG2 * sizeof(struct vki_uuid));
3583 POST(sys_uuidgen)
3585 if (SUCCESS)
3586 POST_MEM_WRITE( ARG1, ARG2 * sizeof(struct vki_uuid) );
3589 // SYS_sendfile 393
3590 // x86/amd64
3592 // SYS_mac_syscall 394
3593 // @todo
3595 #if (FREEBSD_VERS >= FREEBSD_12)
3597 // SYS_freebsd11_getfsstat 395
3598 // int getfsstat(struct freebsd11_statfs *buf, long bufsize, int mode);
3600 PRE(sys_freebsd11_getfsstat)
3602 PRINT("sys_freebsd11_getfsstat ( %#" FMT_REGWORD "x, %" FMT_REGWORD "u, %" FMT_REGWORD "u )",ARG1,ARG2,ARG3);
3603 PRE_REG_READ3(int, "getfsstat", struct vki_freebsd11_statfs *, buf, long, bufsize, int, mode);
3604 PRE_MEM_WRITE( "getfsstat(buf)", ARG1, ARG2 );
3607 POST(sys_freebsd11_getfsstat)
3609 vg_assert(SUCCESS);
3610 if ((Word)RES != -1) {
3611 POST_MEM_WRITE( ARG1, RES * sizeof(struct vki_freebsd11_statfs) );
3615 // SYS_freebsd11_statfs 396
3616 // int statfs(const char *path, struct statfs *buf);
3617 PRE(sys_freebsd11_statfs)
3619 PRINT("sys_statfs ( %#" FMT_REGWORD "x(%s), %#" FMT_REGWORD "x )",ARG1,(char *)ARG1,ARG2);
3620 PRE_REG_READ2(int, "statfs", const char *, path, struct statfs *, buf);
3621 PRE_MEM_RASCIIZ( "statfs(path)", ARG1 );
3622 PRE_MEM_WRITE( "statfs(buf)", ARG2, sizeof(struct vki_freebsd11_statfs) );
3625 POST(sys_freebsd11_statfs)
3627 POST_MEM_WRITE( ARG2, sizeof(struct vki_freebsd11_statfs) );
3630 // SYS_freebsd11_fstatfs 397
3631 // int fstatfs(int fd, struct statfs *buf);
3632 PRE(sys_freebsd11_fstatfs)
3634 PRINT("sys_fstatfs ( %" FMT_REGWORD "u, %#" FMT_REGWORD "x )",ARG1,ARG2);
3635 PRE_REG_READ2(int, "fstatfs",
3636 unsigned int, fd, struct statfs *, buf);
3637 PRE_MEM_WRITE( "fstatfs(buf)", ARG2, sizeof(struct vki_freebsd11_statfs) );
3640 POST(sys_freebsd11_fstatfs)
3642 POST_MEM_WRITE( ARG2, sizeof(struct vki_freebsd11_statfs) );
3645 // SYS_freebsd11_fhstatfs 398
3646 // int fhstatfs(const fhandle_t *fhp, struct statfs *buf);
3647 PRE(sys_freebsd11_fhstatfs)
3649 PRINT("sys_fhstatfs ( %#" FMT_REGWORD "x, %#" FMT_REGWORD "x )",ARG1,ARG2);
3650 PRE_REG_READ2(int, "fhstatfs",
3651 struct fhandle *, fhp, struct statfs *, buf);
3652 PRE_MEM_READ( "fhstatfs(fhp)", ARG1, sizeof(struct vki_fhandle) );
3653 PRE_MEM_WRITE( "fhstatfs(buf)", ARG2, sizeof(struct vki_freebsd11_statfs) );
3656 POST(sys_freebsd11_fhstatfs)
3658 POST_MEM_WRITE( ARG2, sizeof(struct vki_freebsd11_statfs) );
3662 #else
3664 PRE(sys_getfsstat)
3666 PRINT("sys_getfsstat ( %#" FMT_REGWORD "x, %" FMT_REGWORD "u, %" FMT_REGWORD "u )",ARG1,ARG2,ARG3);
3667 PRE_REG_READ3(int, "getfsstat", struct vki_freebsd11_statfs *, buf, long, bufsize, int, mode);
3668 PRE_MEM_WRITE( "getfsstat(buf)", ARG1, ARG2 );
3671 POST(sys_getfsstat)
3673 vg_assert(SUCCESS);
3674 if ((Word)RES != -1) {
3675 POST_MEM_WRITE( ARG1, RES * sizeof(struct vki_freebsd11_statfs) );
3679 PRE(sys_statfs)
3681 PRINT("sys_statfs ( %#" FMT_REGWORD "x(%s), %#" FMT_REGWORD "x )",ARG1,(char *)ARG1,ARG2);
3682 PRE_REG_READ2(int, "statfs", const char *, path, struct statfs *, buf);
3683 PRE_MEM_RASCIIZ( "statfs(path)", ARG1 );
3684 PRE_MEM_WRITE( "statfs(buf)", ARG2, sizeof(struct vki_freebsd11_statfs) );
3687 POST(sys_statfs)
3689 POST_MEM_WRITE( ARG2, sizeof(struct vki_freebsd11_statfs) );
3692 PRE(sys_fstatfs)
3694 PRINT("sys_fstatfs ( %" FMT_REGWORD "u, %#" FMT_REGWORD "x )",ARG1,ARG2);
3695 PRE_REG_READ2(int, "fstatfs",
3696 unsigned int, fd, struct statfs *, buf);
3697 PRE_MEM_WRITE( "fstatfs(buf)", ARG2, sizeof(struct vki_freebsd11_statfs) );
3700 POST(sys_fstatfs)
3702 POST_MEM_WRITE( ARG2, sizeof(struct vki_freebsd11_statfs) );
3705 PRE(sys_fhstatfs)
3707 PRINT("sys_fhstatfs ( %#" FMT_REGWORD "x, %#" FMT_REGWORD "x )",ARG1,ARG2);
3708 PRE_REG_READ2(int, "fhstatfs",
3709 struct fhandle *, fhp, struct statfs *, buf);
3710 PRE_MEM_READ( "fhstatfs(fhp)", ARG1, sizeof(struct vki_fhandle) );
3711 PRE_MEM_WRITE( "fhstatfs(buf)", ARG2, sizeof(struct vki_freebsd11_statfs) );
3714 POST(sys_fhstatfs)
3716 POST_MEM_WRITE( ARG2, sizeof(struct vki_freebsd11_statfs) );
3720 #endif
3722 // SYS_ksem_close 400
3723 // @todo
3725 // SYS_ksem_post 401
3726 // @todo
3728 // SYS_ksem_wait 402
3729 // @todo
3731 // SYS_ksem_trywait 403
3732 // @todo
3734 // SYS_ksem_init 404
3735 // @todo
3737 // SYS_ksem_open 405
3738 // @todo
3740 // SYS_ksem_unlink 406
3741 // @todo
3743 // SYS_ksem_getvalue 407
3744 // @todo
3746 // SYS_ksem_destroy 408
3747 // @todo
3749 // SYS___mac_get_pid 409
3750 // @todo
3752 // SYS___mac_get_link 410
3753 // @todo
3755 // SYS___mac_set_link 411
3756 // @todo
3758 // SYS_extattr_set_link 412
3759 // ssize_t extattr_set_link(const char *path, int attrnamespace,
3760 // const char *attrname, const void *data, size_t nbytes);
3761 PRE(sys_extattr_set_link)
3763 PRINT("sys_extattr_set_link ( %#" FMT_REGWORD "x, %" FMT_REGWORD "d, %#" FMT_REGWORD "x, %#" FMT_REGWORD "x, %" FMT_REGWORD "u )", ARG1,SARG2,ARG3,ARG4,ARG5);
3764 PRE_REG_READ5(ssize_t, "extattr_set_link",
3765 const char *, path, int, attrnamespace, const char *, attrname, const void *, data, size_t, nbytes);
3766 PRE_MEM_RASCIIZ("extattr_set_link(path)", ARG1);
3767 PRE_MEM_RASCIIZ("extattr_set_link(attrname)", ARG3);
3768 PRE_MEM_READ("extattr_set_link(data)", ARG4, ARG5);
3771 // SYS_extattr_get_link 413
3772 // ssize_t extattr_get_link(const char *path, int attrnamespace,
3773 // const char *attrname, void *data, size_t nbytes);
3774 PRE(sys_extattr_get_link)
3776 PRINT("sys_extattr_get_link ( %#" FMT_REGWORD "x, %" FMT_REGWORD "d, %#" FMT_REGWORD "x, %#" FMT_REGWORD "x, %" FMT_REGWORD "u )", ARG1,SARG2,ARG3,ARG4,ARG5);
3777 PRE_REG_READ5(ssize_t, "extattr_get_link",
3778 const char *, path, int, attrnamespace, const char *, attrname, void *, data, size_t, nbytes);
3779 PRE_MEM_RASCIIZ("extattr_get_link(path)", ARG1);
3780 PRE_MEM_RASCIIZ("extattr_get_link(attrname)", ARG3);
3781 if (ARG4) {
3782 PRE_MEM_WRITE("extattr_get_link(data)", ARG4, ARG5);
3786 POST(sys_extattr_get_link)
3788 if (ARG4) {
3789 POST_MEM_WRITE(ARG4, ARG5);
3793 // SYS_extattr_delete_link 414
3794 // int extattr_delete_link(const char *path, int attrnamespace,
3795 // const char *attrname);
3796 PRE(sys_extattr_delete_link)
3798 PRINT("sys_extattr_delete_link ( %#" FMT_REGWORD "x, %" FMT_REGWORD "d, %#" FMT_REGWORD "x )", ARG1,SARG2,ARG3);
3799 PRE_REG_READ3(ssize_t, "extattr_delete_link",
3800 const char *, path, int, attrnamespace, const char *, attrname);
3801 PRE_MEM_RASCIIZ("extattr_delete_link(path)", ARG1);
3802 PRE_MEM_RASCIIZ("extattr_delete_link(attrname)", ARG3);
3805 // SYS___mac_execve 415
3806 // @todo
3808 // SYS_sigaction 416
3809 //int sigaction(int sig, const struct sigaction * restrict act,
3810 // struct sigaction * restrict oact);
3811 PRE(sys_sigaction)
3813 vki_sigaction_toK_t new, *newp;
3814 vki_sigaction_fromK_t old, *oldp;
3816 PRINT("sys_sigaction ( %" FMT_REGWORD "d, %#" FMT_REGWORD "x, %#" FMT_REGWORD "x )",
3817 SARG1,ARG2,ARG3);
3818 PRE_REG_READ3(long, "sigaction",
3819 int, sign, const struct sigaction *, act,
3820 struct sigaction *, oact);
3822 newp = oldp = NULL;
3824 if (ARG2 != 0) {
3825 struct vki_sigaction *sa = (struct vki_sigaction *)ARG2;
3826 PRE_MEM_READ( "sigaction(act->sa_handler)", (Addr)&sa->ksa_handler, sizeof(sa->ksa_handler));
3827 PRE_MEM_READ( "sigaction(act->sa_mask)", (Addr)&sa->sa_mask, sizeof(sa->sa_mask));
3828 PRE_MEM_READ( "sigaction(act->sa_flags)", (Addr)&sa->sa_flags, sizeof(sa->sa_flags));
3831 if (ARG3 != 0) {
3832 PRE_MEM_WRITE( "sigaction(oact)", ARG3, sizeof(struct vki_sigaction));
3833 oldp = &old;
3836 if (ARG2 != 0
3837 && ! ML_(safe_to_deref)((void *)(Addr)ARG2,
3838 sizeof(struct vki_sigaction))) {
3839 VG_(umsg)("Warning: bad act handler address %p in sigaction()\n",
3840 (void *)(Addr)ARG2);
3841 SET_STATUS_Failure ( VKI_EFAULT );
3842 } else if ((ARG3 != 0
3843 && ! ML_(safe_to_deref)((void *)(Addr)ARG3,
3844 sizeof(struct vki_sigaction)))) {
3845 VG_(umsg)("Warning: bad oact handler address %p in sigaction()\n",
3846 (void *)(Addr)ARG3);
3847 SET_STATUS_Failure ( VKI_EFAULT );
3848 } else {
3849 if (ARG2 != 0) {
3850 struct vki_sigaction *oldnew =
3851 (struct vki_sigaction *)(Addr)ARG2;
3853 new.ksa_handler = oldnew->ksa_handler;
3854 new.sa_flags = oldnew->sa_flags;
3855 new.sa_mask = oldnew->sa_mask;
3856 newp = &new;
3859 SET_STATUS_from_SysRes( VG_(do_sys_sigaction)(ARG1, newp, oldp) );
3861 if (ARG3 != 0 && SUCCESS && RES == 0) {
3862 struct vki_sigaction *oldold =
3863 (struct vki_sigaction *)(Addr)ARG3;
3865 oldold->ksa_handler = oldp->ksa_handler;
3866 oldold->sa_flags = oldp->sa_flags;
3867 oldold->sa_mask = oldp->sa_mask;
3872 POST(sys_sigaction)
3874 vg_assert(SUCCESS);
3875 if (RES == 0 && ARG3 != 0)
3876 POST_MEM_WRITE( ARG3, sizeof(struct vki_sigaction));
3879 // SYS_sigreturn 417
3880 // x86/amd64
3882 // SYS_getcontext 421
3883 // SYS_setcontext 422
3884 // SYS_swapcontext 423
3885 // PRE in x86/amd64
3887 POST(sys_getcontext)
3889 POST_MEM_WRITE( ARG1, sizeof(struct vki_ucontext) );
3892 POST(sys_swapcontext)
3894 if (SUCCESS)
3895 POST_MEM_WRITE( ARG1, sizeof(struct vki_ucontext) );
3898 #if (FREEBSD_VERS >= FREEBSD_13_1)
3899 // SYS_freebsd13_swapoff 424
3900 // int swapoff(const char *special);
3901 PRE(sys_freebsd13_swapoff)
3903 PRINT("sys_freebsd13_swapoff ( %#" FMT_REGWORD "x(%s) )", ARG1,(char *)ARG1);
3904 PRE_REG_READ1(int, "swapoff", const char *, special);
3905 PRE_MEM_RASCIIZ( "swapoff(special)", ARG1 );
3907 #else
3908 // SYS_swapoff 424
3909 // int swapoff(const char *special);
3910 PRE(sys_swapoff)
3912 PRINT("sys_swapoff ( %#" FMT_REGWORD "x(%s) )", ARG1,(char *)ARG1);
3913 PRE_REG_READ1(int, "swapoff", const char *, special);
3914 PRE_MEM_RASCIIZ( "swapoff(special)", ARG1 );
3916 #endif
3918 // SYS___acl_get_link 425
3919 // int __acl_get_link(const char *path, acl_type_t type, struct acl *aclp);
3920 PRE(sys___acl_get_link)
3922 PRINT("sys___acl_get_link ( %#" FMT_REGWORD "x(%s), %" FMT_REGWORD "u, %#" FMT_REGWORD "x )", ARG1,(char *)ARG1,ARG2,ARG3);
3923 PRE_REG_READ3(int, "__acl_get_link",
3924 const char *, path, int, acltype, struct vki_acl *, aclp);
3925 PRE_MEM_RASCIIZ( "__acl_get_link(path)", ARG1 );
3926 PRE_MEM_WRITE( "__acl_get_link(aclp)", ARG3, sizeof(struct vki_acl) );
3929 POST(sys___acl_get_link)
3931 vg_assert(SUCCESS);
3932 if (RES == 0) {
3933 POST_MEM_WRITE( ARG3, sizeof(struct vki_acl) );
3937 // SYS___acl_set_link 426
3938 // int __acl_set_link(const char *path, acl_type_t type, struct acl *aclp);
3939 PRE(sys___acl_set_link)
3941 PRINT("sys___acl_set_link ( %#" FMT_REGWORD "x(%s), %" FMT_REGWORD "u, %#" FMT_REGWORD "x )", ARG1,(char *)ARG1,ARG2,ARG3);
3942 PRE_REG_READ3(int, "__acl_set_link",
3943 const char *, path, int, acltype, struct vki_acl *, aclp);
3944 PRE_MEM_RASCIIZ( "__acl_set_link(path)", ARG1 );
3945 PRE_MEM_READ( "__acl_set_link(aclp)", ARG3, sizeof(struct vki_acl) );
3947 // SYS___acl_delete_link 427
3948 // int __acl_delete_link(const char *path, acl_type_t type);
3949 PRE(sys___acl_delete_link)
3951 PRINT("sys___acl_delete_link ( %#" FMT_REGWORD "x(%s), %" FMT_REGWORD "u )", ARG1,(char *)ARG1,ARG2);
3952 PRE_MEM_RASCIIZ( "__acl_delete_link(path)", ARG1 );
3953 PRE_REG_READ2(int, "__acl_delete_link",
3954 const char *, path, int, acltype);
3957 // SYS___acl_aclcheck_link 428
3958 // int __acl_aclcheck_link(const char *path, acl_type_t type, struct acl *aclp);
3959 PRE(sys___acl_aclcheck_link)
3961 PRINT("sys___acl_aclcheck_link ( %#" FMT_REGWORD "x(%s), %" FMT_REGWORD "u, %#" FMT_REGWORD "x )", ARG1,(char *)ARG1,ARG2,ARG3);
3962 PRE_REG_READ3(long, "__acl_aclcheck_link",
3963 const char *, path, int, acltype, struct vki_acl *, aclp);
3964 PRE_MEM_RASCIIZ( "__acl_check_link(path)", ARG1 );
3965 PRE_MEM_READ( "__acl_aclcheck_link(aclp)", ARG3, sizeof(struct vki_acl) );
3968 // SYS_sigwait 429
3969 // int sigwait(const sigset_t * restrict set, int * restrict sig);
3970 PRE(sys_sigwait)
3972 *flags |= SfMayBlock;
3973 PRINT("sys_sigwait ( %#" FMT_REGWORD "x, %#" FMT_REGWORD "x )",
3974 ARG1,ARG2);
3975 PRE_REG_READ2(int, "sigwait",
3976 const vki_sigset_t *, set, int *, sig);
3977 if (ARG1 != 0)
3978 PRE_MEM_READ( "sigwait(set)", ARG1, sizeof(vki_sigset_t));
3979 if (ARG2 != 0)
3980 PRE_MEM_WRITE( "sigwait(sig)", ARG2, sizeof(int));
3983 POST(sys_sigwait)
3985 if (ARG2 != 0)
3986 POST_MEM_WRITE( ARG2, sizeof(int));
3989 // SYS_thr_create 430
3990 // no manpage?
3991 // syscalls.master: int thr_create(_In_ ucontext_t *ctx, _Out_ long *id, int flags );
3992 PRE(sys_thr_create)
3994 PRINT( "sys_thr_create ( %#" FMT_REGWORD "x, %#" FMT_REGWORD "x, %" FMT_REGWORD "d )", ARG1, ARG2, SARG3 );
3995 PRE_REG_READ3(int, "thr_create", /*ucontext_t*/void *, ctx, long *, id, int, flags );
3997 VG_(message)(Vg_UserMsg, "thr_create() not implemented");
3998 VG_(unimplemented)("Valgrind does not support thr_create().");
4000 SET_STATUS_Failure(VKI_ENOSYS);
4003 // SYS_thr_exit 431
4004 // void thr_exit(long *state);
4005 PRE(sys_thr_exit)
4007 ThreadState *tst;
4009 PRINT( "sys_thr_exit ( %#" FMT_REGWORD "x )", ARG1 );
4010 PRE_REG_READ1(void, "thr_exit", long *, state);
4012 if (ARG1) {
4013 PRE_MEM_WRITE( "thr_exit(state)", ARG1, sizeof(long) );
4016 tst = VG_(get_ThreadState)(tid);
4017 tst->exitreason = VgSrc_ExitThread;
4018 tst->os_state.exitcode = ARG1;
4019 SET_STATUS_Success(0);
4022 // SYS_thr_self 432
4023 // int thr_self(long *id);
4024 PRE(sys_thr_self)
4026 PRINT( "sys_thr_self ( %#" FMT_REGWORD "x )", ARG1 );
4027 PRE_REG_READ1(int, "thr_self", long *, id);
4028 PRE_MEM_WRITE( "thr_self()", ARG1, sizeof(long));
4031 POST(sys_thr_self)
4033 POST_MEM_WRITE( ARG1, sizeof(long));
4036 // SYS_thr_kill 433
4037 // int thr_kill(long id, int sig);
4038 PRE(sys_thr_kill)
4040 PRINT("sys_thr_kill ( %" FMT_REGWORD "u, %" FMT_REGWORD "u )", ARG1,ARG2);
4041 PRE_REG_READ2(long, "thr_kill", long, id, int, sig);
4042 if (!ML_(client_signal_OK)(ARG2)) {
4043 SET_STATUS_Failure( VKI_EINVAL );
4044 return;
4047 /* Check to see if this kill gave us a pending signal */
4048 *flags |= SfPollAfter;
4050 if (VG_(clo_trace_signals))
4051 VG_(message)(Vg_DebugMsg, "thr_kill: sending signal %lu to tid %lu\n",
4052 ARG2, ARG1);
4054 /* If we're sending SIGKILL, check to see if the target is one of
4055 our threads and handle it specially. */
4056 if (ARG2 == VKI_SIGKILL && ML_(do_sigkill)(ARG1, -1)) {
4057 SET_STATUS_Success(0);
4058 return;
4061 /* Ask to handle this syscall via the slow route, since that's the
4062 only one that sets tst->status to VgTs_WaitSys. If the result
4063 of doing the syscall is an immediate run of
4064 async_signalhandler() in m_signals, then we need the thread to
4065 be properly tidied away. I have the impression the previous
4066 version of this wrapper worked on x86/amd64 only because the
4067 kernel did not immediately deliver the async signal to this
4068 thread (on ppc it did, which broke the assertion re tst->status
4069 at the top of async_signalhandler()). */
4070 *flags |= SfMayBlock;
4073 POST(sys_thr_kill)
4075 if (VG_(clo_trace_signals))
4076 VG_(message)(Vg_DebugMsg, "thr_kill: sent signal %lu to tid %lu\n",
4077 ARG2, ARG1);
4080 #if (FREEBSD_VERS <= FREEBSD_10)
4081 // SYS__umtx_lock 434
4082 PRE(sys__umtx_lock)
4084 PRINT( "sys__umtx_lock ( %#" FMT_REGWORD "x )", ARG1);
4085 PRE_REG_READ1(long, "_umtx_lock", struct vki_umtx *, umtx);
4086 PRE_MEM_READ( "_umtx_lock(mtx)", ARG1, sizeof(struct vki_umtx) );
4087 PRE_MEM_WRITE( "_umtx_lock(mtx)", ARG1, sizeof(struct vki_umtx) );
4090 POST(sys__umtx_lock)
4092 if (SUCCESS)
4093 POST_MEM_WRITE(ARG1, sizeof(struct vki_umtx));
4096 // SYS__umtx_unlock 434
4097 PRE(sys__umtx_unlock)
4099 PRINT( "sys__umtx_unlock ( %#" FMT_REGWORD "x )", ARG1);
4100 PRE_REG_READ1(long, "_umtx_unlock", struct vki_umtx *, umtx);
4101 PRE_MEM_READ( "_umtx_unlock(mtx)", ARG1, sizeof(struct vki_umtx) );
4102 PRE_MEM_WRITE( "_umtx_unlock(mtx)", ARG1, sizeof(struct vki_umtx) );
4105 POST(sys__umtx_unlock)
4107 if (SUCCESS)
4108 POST_MEM_WRITE(ARG1, sizeof(struct vki_umtx));
4110 #endif
4112 // SYS_jail_attach 436
4113 // int jail_attach(int jid);
4114 PRE(sys_jail_attach)
4116 PRINT("sys_jail_attach ( %" FMT_REGWORD "d )", SARG1);
4117 PRE_REG_READ1(int, "jail_attach", int, jid);
4120 // SYS_extattr_list_fd 437
4121 // ssize_t extattr_list_fd(int fd, int attrnamespace, void *data, size_t nbytes);
4122 PRE(sys_extattr_list_fd)
4124 PRINT("extattr_list_fd ( %" FMT_REGWORD "d, %" FMT_REGWORD "d, %#" FMT_REGWORD "x, %" FMT_REGWORD "u )", SARG1, SARG2, ARG3, ARG4);
4125 PRE_REG_READ4(ssize_t, "extattr_list_fd", int, id, int, attrnamespace, void *,data, size_t, nbytes);
4126 PRE_MEM_WRITE("extattr_list_fd(data)", ARG3, ARG4);
4129 POST(sys_extattr_list_fd)
4131 POST_MEM_WRITE(ARG3, ARG4);
4134 // SYS_extattr_list_file 438
4135 // ssize_t extattr_list_file(const char *path, int attrnamespace, void *data,
4136 // size_t nbytes);
4137 PRE(sys_extattr_list_file)
4139 PRINT("extattr_list_file ( %#" FMT_REGWORD "x, %" FMT_REGWORD "d, %#" FMT_REGWORD "x, %" FMT_REGWORD "u )", ARG1, SARG2, ARG3, ARG4);
4140 PRE_REG_READ4(ssize_t, "extattr_list_file", const char *, path, int, attrnamespace, void *,data, size_t, nbytes);
4141 PRE_MEM_RASCIIZ("extattr_list_file(path)", ARG1);
4142 PRE_MEM_WRITE("extattr_list_file(data)", ARG3, ARG4);
4145 POST(sys_extattr_list_file)
4147 POST_MEM_WRITE(ARG3, ARG4);
4150 // SYS_extattr_list_link 439
4151 // ssize_t extattr_get_link(const char *path, int attrnamespace,
4152 // const char *attrname, void *data, size_t nbytes);
4153 PRE(sys_extattr_list_link)
4155 PRINT("extattr_list_link ( %#" FMT_REGWORD "x, %" FMT_REGWORD "d, %#" FMT_REGWORD "x, %" FMT_REGWORD "u )", ARG1, SARG2, ARG3, ARG4);
4156 PRE_REG_READ4(ssize_t, "extattr_list_link", const char *, path, int, attrnamespace, void *,data, size_t, nbytes);
4157 PRE_MEM_RASCIIZ("extattr_list_link(path)", ARG1);
4158 PRE_MEM_WRITE("extattr_list_link(data)", ARG3, ARG4);
4161 POST(sys_extattr_list_link)
4163 POST_MEM_WRITE(ARG3, ARG4);
4166 // SYS_ksem_timedwait 441
4167 // @todo
4169 // SYS_thr_suspend 442
4170 // int thr_suspend(struct timespec *timeout);
4171 PRE(sys_thr_suspend)
4173 PRINT("sys_thr_suspend ( %#" FMT_REGWORD "x )", ARG1);
4174 PRE_REG_READ1(int, "thr_suspend", struct timespec *, timeout);
4175 PRE_MEM_READ("thr_suspend(timeout)", ARG1, sizeof(struct vki_timespec));
4177 VG_(message)(Vg_UserMsg, "thr_supend() not implemented");
4178 VG_(unimplemented)("Valgrind does not support thr_suspend().");
4180 SET_STATUS_Failure(VKI_ENOSYS);
4183 // SYS_thr_wake 443
4184 // int thr_wake(long id);
4185 PRE(sys_thr_wake)
4187 PRINT("sys_thr_wake ( %" FMT_REGWORD "d )", SARG1);
4188 PRE_REG_READ1(long, "thr_wake", long, id);
4190 if (VG_(is_valid_tid)(ARG1)) {
4191 VG_(threads)[ARG1].status = VgTs_Runnable;
4192 } else {
4193 SET_STATUS_Failure( VKI_ESRCH );
4198 // SYS_kldunloadf 444
4199 // int kldunloadf(int fileid, int flags);
4200 PRE(sys_kldunloadf)
4202 PRINT("sys_kldunloadf ( %" FMT_REGWORD "d, %" FMT_REGWORD "d )", SARG1, SARG2);
4203 PRE_REG_READ2(int, "kldunloadf", int, fileid, int, flags);
4206 // SYS_audit 445
4207 // int audit(const char *record, u_int length);
4208 // @todo
4210 // SYS_auditon 446
4211 // int auditon(int cmd, void *data, u_int length);
4212 // @todo
4214 // SYS_getauid 447
4215 // int getauid(au_id_t *auid);
4216 // @todo
4218 // SYS_setauid 448
4219 // int setauid(au_id_t *auid);
4220 // @todo
4222 // SYS_getaudit 449
4223 // int getaudit(auditinfo_t *auditinfo);
4224 // @todo
4226 // SYS_setaudit 450
4227 // int setaudit(auditinfo_t *auditinfo);
4228 // @todo
4230 // SYS_getaudit_addr 451
4231 // int getaudit_addr(auditinfo_addr_t *auditinfo_addr, u_int length);
4232 // @todo
4234 // SYS_setaudit_addr 452
4235 // int setaudit_addr(auditinfo_addr_t *auditinfo_addr, u_int length);
4236 // @todo
4238 // SYS_auditctl 453
4239 // @todo
4241 // SYS__umtx_op 454
4242 // int _umtx_op(void *obj, int op, u_long val, void *uaddr, void *uaddr2);
4243 PRE(sys__umtx_op)
4245 /* 5 args are always passed through. The last two can vary, but
4246 they're always pointers. They may not be used though. */
4247 switch(ARG2) {
4248 case VKI_UMTX_OP_LOCK:
4249 PRINT( "sys__umtx_op ( %#" FMT_REGWORD "x, LOCK, %" FMT_REGWORD "u, %#" FMT_REGWORD "x, %#" FMT_REGWORD "x)", ARG1, ARG3, ARG4, ARG5);
4250 PRE_REG_READ5(long, "_umtx_op_lock",
4251 struct umtx *, obj, int, op, unsigned long, id,
4252 size_t, timeout_size, struct vki_timespec *, timeout);
4253 PRE_MEM_READ( "_umtx_op_lock(mtx)", ARG1, sizeof(struct vki_umtx) );
4254 if (ARG5)
4255 PRE_MEM_READ( "_umtx_op_lock(timespec)", ARG5, ARG4 );
4256 PRE_MEM_WRITE( "_umtx_op_lock(mtx)", ARG1, sizeof(struct vki_umtx) );
4257 *flags |= SfMayBlock;
4258 break;
4259 case VKI_UMTX_OP_UNLOCK:
4260 PRINT( "sys__umtx_op ( %#" FMT_REGWORD "x, UNLOCK, %" FMT_REGWORD "u)", ARG1, ARG3);
4261 PRE_REG_READ3(long, "_umtx_op_unlock",
4262 struct umtx *, obj, int, op, unsigned long, id);
4263 PRE_MEM_READ( "_umtx_op_unlock(mtx)", ARG1, sizeof(struct vki_umtx) );
4264 PRE_MEM_WRITE( "_umtx_op_unlock(mtx)", ARG1, sizeof(struct vki_umtx) );
4265 break;
4266 case VKI_UMTX_OP_WAIT:
4267 PRINT( "sys__umtx_op ( %#" FMT_REGWORD "x, WAIT, %" FMT_REGWORD "u, %#" FMT_REGWORD "x, %#" FMT_REGWORD "x)", ARG1, ARG3, ARG4, ARG5);
4268 PRE_REG_READ5(long, "_umtx_op_wait",
4269 long *, obj, int, op, unsigned long, val,
4270 size_t, timeout_size, struct vki_timespec *, timeout);
4271 if (ARG1) {
4272 PRE_MEM_READ( "_umtx_op_wait(val)", ARG1, sizeof(long) );
4273 if (*(long*)ARG1 == (long)ARG3) {
4274 *flags |= SfMayBlock;
4278 if (ARG5) {
4279 PRE_MEM_READ( "_umtx_op_wait(timeout)", ARG5, ARG4 );
4282 break;
4283 case VKI_UMTX_OP_WAKE:
4284 PRINT( "sys__umtx_op ( %#" FMT_REGWORD "x, WAKE, %" FMT_REGWORD "u)", ARG1, ARG3);
4285 PRE_REG_READ3(long, "_umtx_op_wake",
4286 struct umtx *, obj, int, op, unsigned long, val);
4287 PRE_MEM_READ( "_umtx_op_wake(mtx)", ARG1, sizeof(struct vki_umtx) );
4288 break;
4289 case VKI_UMTX_OP_MUTEX_TRYLOCK:
4290 PRINT( "sys__umtx_op ( %#" FMT_REGWORD "x, MUTEX_TRYLOCK, %" FMT_REGWORD "u, %#" FMT_REGWORD "x, %#" FMT_REGWORD "x)", ARG1, ARG3, ARG4, ARG5);
4291 PRE_REG_READ5(long, "_umtx_op_mutex_trylock",
4292 struct umutex *, obj, int, op, unsigned long, noid,
4293 size_t, timeout_size, struct vki_timespec *, timeout);
4294 PRE_MEM_READ( "_umtx_op_mutex_trylock(mutex)", ARG1, sizeof(struct vki_umutex) );
4295 if (ARG5)
4296 PRE_MEM_READ( "_umtx_op_mutex_trylock(timespec)", ARG5, ARG4 );
4297 PRE_MEM_WRITE( "_umtx_op_mutex_trylock(mutex)", ARG1, sizeof(struct vki_umutex) );
4298 break;
4299 case VKI_UMTX_OP_MUTEX_LOCK:
4300 PRINT( "sys__umtx_op ( %#" FMT_REGWORD "x, MUTEX_LOCK, %" FMT_REGWORD "u, %#" FMT_REGWORD "x, %#" FMT_REGWORD "x)", ARG1, ARG3, ARG4, ARG5);
4301 PRE_REG_READ5(long, "_umtx_op_mutex_lock",
4302 struct umutex *, obj, int, op, unsigned long, noid,
4303 size_t, timeout_size, struct vki_timespec *, timeout);
4304 PRE_MEM_READ( "_umtx_op_mutex_lock(mutex)", ARG1, sizeof(struct vki_umutex) );
4305 if (ARG5)
4306 PRE_MEM_READ( "_umtx_op_mutex_lock(timespec)", ARG5, ARG4 );
4307 PRE_MEM_WRITE( "_umtx_op_mutex_lock(mutex)", ARG1, sizeof(struct vki_umutex) );
4308 *flags |= SfMayBlock;
4309 break;
4310 case VKI_UMTX_OP_MUTEX_UNLOCK:
4311 PRINT( "sys__umtx_op ( %#" FMT_REGWORD "x, MUTEX_UNLOCK)", ARG1);
4312 PRE_REG_READ2(long, "_umtx_op_mutex_unlock",
4313 struct umutex *, obj, int, op);
4314 PRE_MEM_READ( "_umtx_op_mutex_unlock(mutex)", ARG1, sizeof(struct vki_umutex) );
4315 PRE_MEM_WRITE( "_umtx_op_mutex_unlock(mutex)", ARG1, sizeof(struct vki_umutex) );
4316 break;
4317 case VKI_UMTX_OP_SET_CEILING:
4318 PRINT( "sys__umtx_op ( %#" FMT_REGWORD "x, SET_CEILING, %" FMT_REGWORD "u, %#" FMT_REGWORD "x)", ARG1, ARG3, ARG4);
4319 PRE_REG_READ4(long, "_umtx_op_set_ceiling",
4320 struct umutex *, obj, int, op, unsigned int, ceiling,
4321 unsigned int *, old_ceiling);
4322 PRE_MEM_READ( "_umtx_op_set_ceiling(mutex)", ARG1, sizeof(struct vki_umutex) );
4323 PRE_MEM_WRITE( "_umtx_op_set_ceiling(mutex)", ARG1, sizeof(struct vki_umutex) );
4324 if (ARG4)
4325 PRE_MEM_WRITE( "_umtx_op_set_ceiling(old_ceiling)", ARG4, sizeof(vki_uint32_t) );
4326 break;
4327 case VKI_UMTX_OP_CV_WAIT:
4328 PRINT( "sys__umtx_op ( %#" FMT_REGWORD "x, CV_WAIT, %" FMT_REGWORD "u, %#" FMT_REGWORD "x, %#" FMT_REGWORD "x)", ARG1, ARG3, ARG4, ARG5);
4329 PRE_REG_READ5(long, "_umtx_op_cv_wait",
4330 struct ucond *, obj, int, op, unsigned long, wflags,
4331 struct umutex *, umtx, struct vki_timespec *, timeout);
4332 PRE_MEM_READ( "_umtx_op_cv_wait(cond)", ARG1, sizeof(struct vki_ucond) );
4333 PRE_MEM_WRITE( "_umtx_op_cv_wait(cond)", ARG1, sizeof(struct vki_ucond) );
4334 PRE_MEM_READ( "_umtx_op_cv_wait(mutex)", ARG4, sizeof(struct vki_umutex) );
4335 PRE_MEM_WRITE( "_umtx_op_cv_wait(mutex)", ARG4, sizeof(struct vki_umutex) );
4336 if (ARG5)
4337 PRE_MEM_READ( "_umtx_op_cv_wait(timespec)", ARG5, sizeof(struct vki_timespec) );
4338 *flags |= SfMayBlock;
4339 break;
4340 case VKI_UMTX_OP_CV_SIGNAL:
4341 PRINT( "sys__umtx_op ( %#" FMT_REGWORD "x, CV_SIGNAL)", ARG1);
4342 PRE_REG_READ2(long, "_umtx_op_cv_signal",
4343 struct ucond *, obj, int, op);
4344 PRE_MEM_READ( "_umtx_op_cv_signal(cond)", ARG1, sizeof(struct vki_ucond) );
4345 PRE_MEM_WRITE( "_umtx_op_cv_signal(cond)", ARG1, sizeof(struct vki_ucond) );
4346 break;
4347 case VKI_UMTX_OP_CV_BROADCAST:
4348 PRINT( "sys__umtx_op ( %#" FMT_REGWORD "x, CV_BROADCAST, %" FMT_REGWORD "u, %#" FMT_REGWORD "x, %#" FMT_REGWORD "x)", ARG1, ARG3, ARG4, ARG5);
4349 PRE_REG_READ2(long, "_umtx_op_cv_broadcast",
4350 struct ucond *, obj, int, op);
4351 PRE_MEM_READ( "_umtx_op_cv_broadcast(cond)", ARG1, sizeof(struct vki_ucond) );
4352 PRE_MEM_WRITE( "_umtx_op_cv_broadcast(cond)", ARG1, sizeof(struct vki_ucond) );
4353 break;
4354 case VKI_UMTX_OP_WAIT_UINT:
4355 PRINT( "sys__umtx_op ( %#" FMT_REGWORD "x, CV_WAIT_UINT, %" FMT_REGWORD "u, %#" FMT_REGWORD "x, %#" FMT_REGWORD "x)", ARG1, ARG3, ARG4, ARG5);
4356 PRE_REG_READ5(long, "_umtx_op_wait_uint",
4357 int *, obj, int, op, unsigned long, id,
4358 size_t, timeout_wait, struct vki_timespec *, timeout);
4359 PRE_MEM_READ( "_umtx_op_wait(uint)", ARG1, sizeof(int) );
4360 if (ARG5)
4361 PRE_MEM_READ( "_umtx_op_wait(timespec)", ARG5, ARG4 );
4362 *flags |= SfMayBlock;
4363 break;
4364 case VKI_UMTX_OP_RW_RDLOCK:
4365 PRINT( "sys__umtx_op ( %#" FMT_REGWORD "x, RW_RDLOCK, %" FMT_REGWORD "u, %#" FMT_REGWORD "x, %#" FMT_REGWORD "x)", ARG1, ARG3, ARG4, ARG5);
4366 PRE_REG_READ5(long, "_umtx_op_rw_rdlock",
4367 struct urwlock *, obj, int, op, unsigned long, noid,
4368 void *, zero, struct vki_timespec *, timeout);
4369 PRE_MEM_READ( "_umtx_op_rw_rdlock(rw)", ARG1, sizeof(struct vki_urwlock) );
4370 PRE_MEM_WRITE( "_umtx_op_rw_rdlock(rw)", ARG1, sizeof(struct vki_urwlock) );
4371 *flags |= SfMayBlock;
4372 break;
4373 case VKI_UMTX_OP_RW_WRLOCK:
4374 PRINT( "sys__umtx_op ( %#" FMT_REGWORD "x, RW_WRLOCK, %" FMT_REGWORD "u, %#" FMT_REGWORD "x, %#" FMT_REGWORD "x)", ARG1, ARG3, ARG4, ARG5);
4375 PRE_REG_READ5(long, "_umtx_op_rw_wrlock",
4376 struct urwlock *, obj, int, op, unsigned long, noid,
4377 void *, zero, struct vki_timespec *, timeout);
4378 PRE_MEM_READ( "_umtx_op_rw_wrlock(rw)", ARG1, sizeof(struct vki_urwlock) );
4379 PRE_MEM_WRITE( "_umtx_op_rw_wrlock(rw)", ARG1, sizeof(struct vki_urwlock) );
4380 *flags |= SfMayBlock;
4381 break;
4382 case VKI_UMTX_OP_RW_UNLOCK:
4383 PRINT( "sys__umtx_op ( %#" FMT_REGWORD "x, RW_UNLOCK, %" FMT_REGWORD "u, %#" FMT_REGWORD "x, %#" FMT_REGWORD "x)", ARG1, ARG3, ARG4, ARG5);
4384 PRE_REG_READ2(long, "_umtx_op_rw_unlock",
4385 struct urwlock *, obj, int, op);
4386 PRE_MEM_READ( "_umtx_op_rw_unlock(rw)", ARG1, sizeof(struct vki_urwlock) );
4387 PRE_MEM_WRITE( "_umtx_op_rw_unlock(rw)", ARG1, sizeof(struct vki_urwlock) );
4388 break;
4389 case VKI_UMTX_OP_WAIT_UINT_PRIVATE:
4390 PRINT( "sys__umtx_op ( %#" FMT_REGWORD "x, CV_WAIT_UINT_PRIVATE, %" FMT_REGWORD "u, %#" FMT_REGWORD "x, %#" FMT_REGWORD "x)", ARG1, ARG3, ARG4, ARG5);
4391 PRE_REG_READ5(long, "_umtx_op_wait_uint_private",
4392 int *, obj, int, op, unsigned long, id,
4393 size_t, timeout_size, struct vki_timespec *, timeout);
4394 PRE_MEM_READ( "_umtx_op_wait_private(uint)", ARG1, sizeof(int) );
4395 if (ARG5)
4396 PRE_MEM_READ( "_umtx_op_wait_private(umtx_time)", ARG5, ARG4 );
4397 *flags |= SfMayBlock;
4398 break;
4399 case VKI_UMTX_OP_WAKE_PRIVATE:
4400 PRINT( "sys__umtx_op ( %#" FMT_REGWORD "x, CV_WAKE_PRIVATE, %" FMT_REGWORD "u)", ARG1, ARG3);
4401 PRE_REG_READ3(long, "_umtx_op_wake_private",
4402 struct umtx *, obj, int, op, unsigned long, id);
4403 PRE_MEM_READ( "_umtx_op_wake_private(mtx)", ARG1, sizeof(struct vki_umtx) );
4404 break;
4405 case VKI_UMTX_OP_MUTEX_WAIT:
4406 PRINT( "sys__umtx_op ( %#" FMT_REGWORD "x, MUTEX_WAIT, %" FMT_REGWORD "u, %#" FMT_REGWORD "x, %#" FMT_REGWORD "x)", ARG1, ARG3, ARG4, ARG5);
4407 PRE_REG_READ2(long, "_umtx_op_mutex_wait",
4408 struct umutex *, obj, int, op);
4409 PRE_MEM_READ( "_umtx_op_mutex_wait(mutex)", ARG1, sizeof(struct vki_umutex) );
4410 PRE_MEM_WRITE( "_umtx_op_mutex_wait(mutex)", ARG1, sizeof(struct vki_umutex) );
4411 *flags |= SfMayBlock;
4412 break;
4413 case VKI_UMTX_OP_MUTEX_WAKE:
4414 PRINT( "sys__umtx_op ( %#" FMT_REGWORD "x, MUTEX_WAKE, %" FMT_REGWORD "u, %#" FMT_REGWORD "x, %#" FMT_REGWORD "x)", ARG1, ARG3, ARG4, ARG5);
4415 PRE_REG_READ2(long, "_umtx_op_mutex_wake",
4416 struct umutex *, obj, int, op);
4417 PRE_MEM_READ( "_umtx_op_mutex_wake(mutex)", ARG1, sizeof(struct vki_umutex) );
4418 PRE_MEM_WRITE( "_umtx_op_mutex_wake(mutex)", ARG1, sizeof(struct vki_umutex) );
4419 break;
4420 case VKI_UMTX_OP_SEM_WAIT:
4421 PRINT( "sys__umtx_op ( %#" FMT_REGWORD "x, SEM_WAIT, %" FMT_REGWORD "u, %#" FMT_REGWORD "x, %#" FMT_REGWORD "x)", ARG1, ARG3, ARG4, ARG5);
4422 PRE_REG_READ5(long, "_umtx_op_sem_wait",
4423 struct usem *, obj, int, op, unsigned long, id,
4424 size_t, timeout_size, struct vki_timespec *, timeout);
4425 PRE_MEM_READ( "_umtx_op_sem_wait(usem)", ARG1, sizeof(struct vki_usem) );
4426 PRE_MEM_WRITE( "_umtx_op_sem_wait(usem)", ARG1, sizeof(struct vki_usem) );
4427 if (ARG5)
4428 PRE_MEM_READ( "_umtx_op_sem_wait(umtx_time)", ARG5, ARG4 );
4429 *flags |= SfMayBlock;
4430 break;
4431 case VKI_UMTX_OP_SEM_WAKE:
4432 PRINT( "sys__umtx_op ( %#" FMT_REGWORD "x, SEM_WAKE, %" FMT_REGWORD "u, %#" FMT_REGWORD "x, %#" FMT_REGWORD "x)", ARG1, ARG3, ARG4, ARG5);
4433 PRE_REG_READ2(long, "_umtx_op_sem_wake",
4434 struct umutex *, obj, int, op);
4435 PRE_MEM_READ( "_umtx_op_sem_wake(mutex)", ARG1, sizeof(struct vki_usem) );
4436 PRE_MEM_WRITE( "_umtx_op_sem_wake(mutex)", ARG1, sizeof(struct vki_usem) );
4437 break;
4438 case VKI_UMTX_OP_NWAKE_PRIVATE:
4439 PRINT( "sys__umtx_op ( %#" FMT_REGWORD "x, NWAKE_PRIVATE, %" FMT_REGWORD "u, %#" FMT_REGWORD "x, %#" FMT_REGWORD "x)", ARG1, ARG3, ARG4, ARG5);
4440 PRE_REG_READ3(long, "_umtx_op_nwake_private",
4441 struct umutex *, obj, int, op, int, count);
4442 PRE_MEM_READ( "_umtx_op_nwake_private(mtxs)", ARG1, ARG3 * sizeof(void *) );
4443 PRE_MEM_WRITE( "_umtx_op_mutex_wake(mtxs)", ARG1, sizeof(struct vki_umutex) );
4444 break;
4445 case VKI_UMTX_OP_MUTEX_WAKE2:
4446 PRINT( "sys__umtx_op ( %#" FMT_REGWORD "x, MUTEX_WAKE2, %" FMT_REGWORD "u, %#" FMT_REGWORD "x, %#" FMT_REGWORD "x)", ARG1, ARG3, ARG4, ARG5);
4447 PRE_REG_READ3(long, "_umtx_op_mutex_wake2",
4448 struct umutex *, obj, int, op, unsigned long, flags);
4449 PRE_MEM_READ( "_umtx_op_mutex_wake(mutex)", ARG1, sizeof(struct vki_umutex) );
4450 PRE_MEM_WRITE( "_umtx_op_mutex_wake(mutex)", ARG1, sizeof(struct vki_umutex) );
4451 break;
4452 case VKI_UMTX_OP_SEM2_WAIT:
4453 PRINT( "sys__umtx_op ( %#" FMT_REGWORD "x, SEM2_WAIT, %" FMT_REGWORD "u, %#" FMT_REGWORD "x, %#" FMT_REGWORD "x)", ARG1, ARG3, ARG4, ARG5);
4454 PRE_REG_READ3(long, "_umtx_op_sem2_wake",
4455 struct _usem2 *, obj, int, op, unsigned long, flags);
4456 PRE_MEM_READ( "_umtx_op_sem2_wait(mutex)", ARG1, sizeof(struct vki_usem2) );
4457 PRE_MEM_WRITE( "_umtx_op_sem2_wait(mutex)", ARG1, sizeof(struct vki_usem2) );
4458 *flags |= SfMayBlock;
4459 break;
4460 case VKI_UMTX_OP_SEM2_WAKE:
4461 PRINT( "sys__umtx_op ( %#" FMT_REGWORD "x, SEM2_WAKE, %" FMT_REGWORD "u, %#" FMT_REGWORD "x, %#" FMT_REGWORD "x)", ARG1, ARG3, ARG4, ARG5);
4462 PRE_REG_READ3(long, "_umtx_op_sem2_wake",
4463 struct _usem2 *, obj, int, op, unsigned long, flags);
4464 PRE_MEM_READ( "_umtx_op_sem2_wait(mutex)", ARG1, sizeof(struct vki_usem2) );
4465 PRE_MEM_WRITE( "_umtx_op_sem2_wait(mutex)", ARG1, sizeof(struct vki_usem2) );
4466 break;
4467 case VKI_UMTX_OP_SHM:
4468 PRINT( "sys__umtx_op ( %#" FMT_REGWORD "x, SHM, %" FMT_REGWORD "u, %#" FMT_REGWORD "x, %#" FMT_REGWORD "x)", ARG1, ARG3, ARG4, ARG5);
4469 PRE_REG_READ4(long, "_umtx_op_shm",
4470 void *, obj, int, op, unsigned long, val, void*, uaddr);
4471 break;
4472 case VKI_UMTX_OP_ROBUST_LISTS:
4473 // val (ARG2) ought to be the same as sizeof(struct vki_umtx_robust_lists_params)
4474 // then the structure contains a pointer to mutex structures
4475 if (ARG1 != sizeof(struct vki_umtx_robust_lists_params))
4476 SET_STATUS_Failure( VKI_ENOSYS );
4477 PRINT( "sys__umtx_op ( %#" FMT_REGWORD "x, ROBUST_LISTS, %" FMT_REGWORD "u, %#" FMT_REGWORD "x, %#" FMT_REGWORD "x)", ARG1, ARG3, ARG4, ARG5);
4478 PRE_REG_READ3(long, "_umtx_op_robust_lists",
4479 struct umtx_robust_lists_params *, obj, int, op, unsigned long, flags);
4480 PRE_MEM_READ( "_umtx_op_robust_lists(mutex)", ARG3, sizeof(struct vki_umtx_robust_lists_params) );
4481 break;
4482 default:
4483 VG_(umsg)("WARNING: _umtx_op unsupported value.\n");
4484 PRINT( "sys__umtx_op ( %#" FMT_REGWORD "x, %" FMT_REGWORD "u(UNKNOWN), %" FMT_REGWORD "u, %#" FMT_REGWORD "x, %#" FMT_REGWORD "x )", ARG1, ARG2, ARG3, ARG4, ARG5);
4485 break;
4489 POST(sys__umtx_op)
4491 switch(ARG2) {
4492 case VKI_UMTX_OP_LOCK:
4493 if (SUCCESS)
4494 POST_MEM_WRITE( ARG1, sizeof(struct vki_umtx) );
4495 break;
4496 case VKI_UMTX_OP_UNLOCK:
4497 if (SUCCESS)
4498 POST_MEM_WRITE( ARG1, sizeof(struct vki_umtx) );
4499 break;
4500 case VKI_UMTX_OP_WAIT:
4501 case VKI_UMTX_OP_WAKE:
4502 case VKI_UMTX_OP_WAIT_UINT:
4503 case VKI_UMTX_OP_WAIT_UINT_PRIVATE:
4504 case VKI_UMTX_OP_WAKE_PRIVATE:
4505 break;
4506 case VKI_UMTX_OP_MUTEX_TRYLOCK:
4507 case VKI_UMTX_OP_MUTEX_LOCK:
4508 case VKI_UMTX_OP_MUTEX_UNLOCK:
4509 case VKI_UMTX_OP_MUTEX_WAIT: /* Sets/clears contested bits */
4510 case VKI_UMTX_OP_MUTEX_WAKE: /* Sets/clears contested bits */
4511 if (SUCCESS)
4512 POST_MEM_WRITE( ARG1, sizeof(struct vki_umutex) );
4513 break;
4514 case VKI_UMTX_OP_SET_CEILING:
4515 if (SUCCESS) {
4516 POST_MEM_WRITE( ARG1, sizeof(struct vki_umutex) );
4517 if (ARG4)
4518 POST_MEM_WRITE( ARG4, sizeof(vki_uint32_t) );
4520 break;
4521 case VKI_UMTX_OP_CV_WAIT:
4522 if (SUCCESS) {
4523 POST_MEM_WRITE( ARG1, sizeof(struct vki_ucond) );
4524 POST_MEM_WRITE( ARG4, sizeof(struct vki_umutex) );
4526 break;
4527 case VKI_UMTX_OP_CV_SIGNAL:
4528 if (SUCCESS) {
4529 POST_MEM_WRITE( ARG1, sizeof(struct vki_ucond) );
4531 break;
4532 case VKI_UMTX_OP_CV_BROADCAST:
4533 if (SUCCESS) {
4534 POST_MEM_WRITE( ARG1, sizeof(struct vki_ucond) );
4536 break;
4537 case VKI_UMTX_OP_RW_RDLOCK:
4538 case VKI_UMTX_OP_RW_WRLOCK:
4539 case VKI_UMTX_OP_RW_UNLOCK:
4540 if (SUCCESS) {
4541 POST_MEM_WRITE( ARG1, sizeof(struct vki_urwlock) );
4543 break;
4544 case VKI_UMTX_OP_SEM2_WAIT:
4545 case VKI_UMTX_OP_SEM2_WAKE:
4546 if (SUCCESS) {
4547 POST_MEM_WRITE( ARG1, sizeof(struct vki_usem2) );
4549 break;
4550 case VKI_UMTX_OP_SHM:
4551 case VKI_UMTX_OP_ROBUST_LISTS:
4552 default:
4553 break;
4557 // SYS_thr_new 455
4558 // x86/amd64
4560 // SYS_sigqueue 456
4561 // int sigqueue(pid_t pid, int signo, const union sigval value);
4562 PRE(sys_sigqueue)
4564 PRINT("sys_sigqueue ( %" FMT_REGWORD "d, %" FMT_REGWORD "d, %#" FMT_REGWORD "x )",
4565 SARG1,SARG2,ARG3);
4566 PRE_REG_READ3(int, "sigqueue", vki_pid_t, pid, int, signo, const union vki_sigval, value);
4569 // SYS_kmq_open 457
4570 // mqd_t mq_open(const char *name, int oflag, ...);
4571 // int kmq_open(_In_z_ const char *path, int flags, mode_t mode, _In_opt_ const struct mq_attr *attr);
4572 PRE(sys_kmq_open)
4574 if (ARG2 & VKI_O_CREAT) {
4575 PRINT("sys_kmq_open( %#" FMT_REGWORD "x(%s), %" FMT_REGWORD "u, %hu, %#" FMT_REGWORD "x )",
4576 ARG1,(char *)ARG1,ARG2,(vki_mode_t)ARG3,ARG4);
4577 PRE_REG_READ4(long, "mq_open",
4578 const char *, name, int, oflag, vki_mode_t, mode,
4579 struct mq_attr *, attr);
4580 } else {
4581 PRINT("sys_kmq_open( %#" FMT_REGWORD "x(%s), %" FMT_REGWORD "u, %hu)",
4582 ARG1,(char *)ARG1,ARG2,(vki_mode_t)ARG3);
4583 PRE_REG_READ3(long, "mq_open",
4584 const char *, name, int, oflag, vki_mode_t, mode);
4586 PRE_MEM_RASCIIZ( "mq_open(name)", ARG1 );
4587 if (ARG2 & VKI_O_CREAT) {
4588 PRE_MEM_READ("mq_open(attr)", ARG4, sizeof(struct vki_mq_attr));
4589 if (ML_(safe_to_deref)((struct vki_mq_attr *)ARG4, sizeof(struct vki_mq_attr))) {
4590 const struct vki_mq_attr *attr = (struct vki_mq_attr *)ARG4;
4591 PRE_MEM_READ("mq_open(attr->mq_maxmsg)",
4592 (Addr)&attr->mq_maxmsg, sizeof(attr->mq_maxmsg) );
4593 PRE_MEM_READ("mq_open(attr->mq_msgsize)",
4594 (Addr)&attr->mq_msgsize, sizeof(attr->mq_msgsize) );
4599 POST(sys_kmq_open)
4601 vg_assert(SUCCESS);
4602 if (!ML_(fd_allowed)(RES, "mq_open", tid, True)) {
4603 VG_(close)(RES);
4604 SET_STATUS_Failure( VKI_EMFILE );
4605 } else {
4606 if (VG_(clo_track_fds))
4607 ML_(record_fd_open_with_given_name)(tid, RES, (const HChar*)ARG1);
4611 // SYS_kmq_setattr 458
4612 // int mq_setattr(mqd_t mqdes, const struct mq_attr *restrict mqstat,
4613 // struct mq_attr *restrict omqstat);
4614 PRE(sys_kmq_setattr)
4616 PRINT("sys_kmq_getattr( %" FMT_REGWORD "u, %#" FMT_REGWORD "x, %#" FMT_REGWORD "x )", ARG1,ARG2,ARG3 );
4617 PRE_REG_READ3(int, "mq_setattr",
4618 vki_mqd_t, mqdes, const struct mq_attr *, mqstat,
4619 struct mq_attr *, omqstat);
4620 if (!ML_(fd_allowed)(ARG1, "mq_getattr", tid, False)) {
4621 SET_STATUS_Failure( VKI_EBADF );
4622 } else {
4623 if (ML_(safe_to_deref)((struct vki_mq_attr *)ARG2, sizeof(struct vki_mq_attr))) {
4624 const struct vki_mq_attr *attr = (struct vki_mq_attr *)ARG2;
4625 PRE_MEM_READ( "mq_setattr(mqstat->mq_flags)",
4626 (Addr)&attr->mq_flags, sizeof(attr->mq_flags) );
4628 PRE_MEM_WRITE( "mq_setattr(omqstat)", ARG3,
4629 sizeof(struct vki_mq_attr) );
4633 // SYS_kmq_timedreceive 459
4634 // ssize_t mq_timedreceive(mqd_t mqdes, char *msg_ptr, size_t msg_len,
4635 // unsigned *msg_prio, const struct timespec *abs_timeout);
4636 PRE(sys_kmq_timedreceive)
4638 *flags |= SfMayBlock;
4639 PRINT("sys_kmq_timedreceive( %" FMT_REGWORD "u, %#" FMT_REGWORD "x, %llu, %#" FMT_REGWORD "x, %#" FMT_REGWORD "x )",
4640 ARG1,ARG2,(ULong)ARG3,ARG4,ARG5);
4641 PRE_REG_READ5(ssize_t, "mq_timedreceive",
4642 vki_mqd_t, mqdes, char *, msg_ptr, vki_size_t, msg_len,
4643 unsigned int *, msg_prio,
4644 const struct timespec *, abs_timeout);
4645 if (!ML_(fd_allowed)(ARG1, "mq_timedreceive", tid, False)) {
4646 SET_STATUS_Failure( VKI_EBADF );
4647 } else {
4648 PRE_MEM_WRITE( "mq_timedreceive(msg_ptr)", ARG2, ARG3 );
4649 if (ARG4 != 0)
4650 PRE_MEM_WRITE( "mq_timedreceive(msg_prio)",
4651 ARG4, sizeof(unsigned int) );
4652 if (ARG5 != 0)
4653 PRE_MEM_READ( "mq_timedreceive(abs_timeout)",
4654 ARG5, sizeof(struct vki_timespec) );
4658 POST(sys_kmq_timedreceive)
4660 POST_MEM_WRITE( ARG2, ARG3 );
4661 if (ARG4 != 0)
4662 POST_MEM_WRITE( ARG4, sizeof(unsigned int) );
4665 // SYS_kmq_timedsend 460
4666 // int mq_timedsend(mqd_t mqdes, const char *msg_ptr, size_t msg_len,
4667 // unsigned msg_prio, const struct timespec *abs_timeout);
4668 PRE(sys_kmq_timedsend)
4670 *flags |= SfMayBlock;
4671 PRINT("sys_kmq_timedsend ( %" FMT_REGWORD "u, %#" FMT_REGWORD "x, %llu, %" FMT_REGWORD "u, %#" FMT_REGWORD "x )",
4672 ARG1,ARG2,(ULong)ARG3,ARG4,ARG5);
4673 PRE_REG_READ5(int, "mq_timedsend",
4674 vki_mqd_t, mqdes, const char *, msg_ptr, vki_size_t, msg_len,
4675 unsigned int, msg_prio, const struct timespec *, abs_timeout);
4676 if (!ML_(fd_allowed)(ARG1, "mq_timedsend", tid, False)) {
4677 SET_STATUS_Failure( VKI_EBADF );
4678 } else {
4679 PRE_MEM_READ( "mq_timedsend(msg_ptr)", ARG2, ARG3 );
4680 if (ARG5 != 0)
4681 PRE_MEM_READ( "mq_timedsend(abs_timeout)", ARG5,
4682 sizeof(struct vki_timespec) );
4686 // SYS_kmq_notify 461
4687 // int mq_notify(mqd_t mqdes, const struct sigevent *notification);
4688 PRE(sys_kmq_notify)
4690 PRINT("sys_kmq_notify( %" FMT_REGWORD "u, %#" FMT_REGWORD "x )", ARG1,ARG2 );
4691 PRE_REG_READ2(int, "mq_notify",
4692 vki_mqd_t, mqdes, const struct sigevent *, notification);
4693 if (!ML_(fd_allowed)(ARG1, "mq_notify", tid, False))
4694 SET_STATUS_Failure( VKI_EBADF );
4695 else if (ARG2 != 0)
4696 PRE_MEM_READ( "mq_notify(notification)",
4697 ARG2, sizeof(struct vki_sigevent) );
4700 // SYS_kmq_unlink 462
4701 // int kmq_unlink(const char *path);
4702 PRE(sys_kmq_unlink)
4704 PRINT("sys_kmq_unlink ( %#" FMT_REGWORD "x(%s) )", ARG1,(char *)ARG1);
4705 PRE_REG_READ1(int, "mq_unlink", const char *, name);
4706 PRE_MEM_RASCIIZ( "mq_unlink(name)", ARG1 );
4709 // SYS_abort2 463
4710 // void abort2(const char *why, int nargs, void **args);
4711 PRE(sys_abort2)
4713 PRINT( "sys_abort2 ( %#" FMT_REGWORD "x, %" FMT_REGWORD "d, %#" FMT_REGWORD "x )", ARG1, SARG2, ARG3 );
4714 PRE_REG_READ3(void, "abort2", const char *, why, int, nargs, void **, args);
4715 // max length of 'why' is 128
4716 PRE_MEM_RASCIIZ( "abort2(why)", ARG2);
4717 // max val for nargs is 16
4718 PRE_MEM_READ("abort2(args", ARG3, ARG2*sizeof(void*));
4721 // SYS_thr_set_name 464
4722 // int thr_set_name(long id, const char *name);
4723 PRE(sys_thr_set_name)
4725 PRINT( "sys_thr_set_name ( %" FMT_REGWORD "u, %#" FMT_REGWORD "x )", ARG1, ARG2 );
4726 PRE_REG_READ2(int, "thr_set_name", long, id, const char *, name);
4727 PRE_MEM_RASCIIZ( "thr_set_name(name)", ARG2);
4729 if (ML_(safe_to_deref)((void*)ARG2, 1)) {
4730 const HChar* new_name = (const HChar*) (Addr)ARG2;
4731 ThreadState* tst = VG_(get_ThreadState)(tid);
4732 SizeT new_len = VG_(strnlen)(new_name, VKI_MAXCOMLEN+1);
4733 tst->thread_name = VG_(realloc)("syswrap.thr_set_name", tst->thread_name, new_len + 1);
4734 VG_(strlcpy)(tst->thread_name, new_name, new_len + 1);
4738 // SYS_aio_fsync 465
4739 // int aio_fsync(int op, struct aiocb *iocb);
4740 PRE(sys_aio_fsync)
4742 PRINT("aio_fsync ( %" FMT_REGWORD "d, %#" FMT_REGWORD "x )", SARG1,ARG2);
4743 PRE_REG_READ2(int, "aio_fsync", int, op, struct vki_aiocb *, iocb);
4744 PRE_MEM_READ( "aio_fsync(iocb)", ARG2, sizeof(struct vki_aiocb) );
4747 // SYS_rtprio_thread 466
4748 // int rtprio_thread(int function, lwpid_t lwpid, struct rtprio *rtp);
4749 PRE(sys_rtprio_thread)
4751 PRINT( "sys_rtprio_thread ( %" FMT_REGWORD "u, %" FMT_REGWORD "u, %#" FMT_REGWORD "x )", ARG1, ARG2, ARG3 );
4752 PRE_REG_READ3(int, "rtprio_thread",
4753 int, function, __vki_lwpid_t, lwpid, struct vki_rtprio *, rtp);
4754 if (ARG1 == VKI_RTP_SET) {
4755 PRE_MEM_READ( "rtprio_thread(rtp#set)", ARG3, sizeof(struct vki_rtprio));
4756 } else if (ARG1 == VKI_RTP_LOOKUP) {
4757 PRE_MEM_WRITE( "rtprio_thread(rtp#lookup)", ARG3, sizeof(struct vki_rtprio));
4758 } else {
4759 /* PHK ?? */
4763 POST(sys_rtprio_thread)
4765 if (ARG1 == VKI_RTP_LOOKUP && RES == 0)
4766 POST_MEM_WRITE( ARG3, sizeof(struct vki_rtprio));
4769 // SYS_sctp_peeloff 471
4770 // int sctp_peeloff(int s, sctp_assoc_t id);
4771 // @todo
4773 // SYS_sctp_generic_sendmsg 472
4774 // int sctp_generic_sendmsg(int s, void *msg, int msglen, struct sockaddr *to,
4775 // socklen_t len, struct sctp_sndrcvinfo *sinfo, int flags);
4776 // @tdo
4779 // SYS_sctp_generic_sendmsg_iov 473
4780 // int sctp_generic_sendmsg_iov(int s, struct iovec *iov, int iovlen,
4781 // struct sockaddr *to, struct sctp_sndrcvinfo *sinfo, int flags);
4782 // @todo
4784 // SYS_sctp_generic_recvmsg 474
4785 // int sctp_generic_recvmsg(int s, struct iovec *iov, int iovlen,
4786 // struct sockaddr *from, socklen_t *fromlen,
4787 // struct sctp_sndrcvinfo *sinfo, int *msgflags);
4788 // @todo
4790 // SYS_pread 475
4791 // x86/amd64
4793 // SYS_pwrite 476
4794 // x86/amd64
4796 // SYS_mmap 477
4797 // x86/amd64
4799 // SYS_lseek 478
4800 // x86/amd64
4802 //SYS_truncate 479
4803 // x86/amd64
4805 // SYS_ftruncate 480
4806 // x86/amd64
4808 // SYS_thr_kill2 481
4809 // int thr_kill2(pid_t pid, long id, int sig);
4810 PRE(sys_thr_kill2)
4812 PRINT("sys_thr_kill2 ( %" FMT_REGWORD "u, %" FMT_REGWORD "u, %" FMT_REGWORD "u )", ARG1,ARG2,ARG3);
4813 PRE_REG_READ3(int, "thr_kill2", pid_t, pid, long, tid, int, sig);
4814 if (!ML_(client_signal_OK)(ARG3)) {
4815 SET_STATUS_Failure( VKI_EINVAL );
4816 return;
4819 /* Check to see if this kill gave us a pending signal */
4820 *flags |= SfPollAfter;
4822 if (VG_(clo_trace_signals))
4823 VG_(message)(Vg_DebugMsg, "thr_kill2: sending signal %lu to pid %lu/%lu\n",
4824 ARG3, ARG1, ARG2);
4826 /* If we're sending SIGKILL, check to see if the target is one of
4827 our threads and handle it specially. */
4828 if (ARG3 == VKI_SIGKILL && ML_(do_sigkill)(ARG2, ARG1)) {
4829 SET_STATUS_Success(0);
4830 return;
4833 /* Ask to handle this syscall via the slow route, since that's the
4834 only one that sets tst->status to VgTs_WaitSys. If the result
4835 of doing the syscall is an immediate run of
4836 async_signalhandler() in m_signals, then we need the thread to
4837 be properly tidied away. I have the impression the previous
4838 version of this wrapper worked on x86/amd64 only because the
4839 kernel did not immediately deliver the async signal to this
4840 thread (on ppc it did, which broke the assertion re tst->status
4841 at the top of async_signalhandler()). */
4842 *flags |= SfMayBlock;
4845 POST(sys_thr_kill2)
4847 if (VG_(clo_trace_signals))
4848 VG_(message)(Vg_DebugMsg, "thr_kill2: sent signal %lu to pid %lu/%lu\n",
4849 ARG3, ARG1, ARG2);
4852 // SYS_shm_open 482
4853 // int shm_open(const char *path, int flags, mode_t mode);
4854 PRE(sys_shm_open)
4856 PRE_REG_READ3(int, "shm_open",
4857 const char *, path, int, flags, vki_mode_t, mode);
4858 if (ARG1 == VKI_SHM_ANON) {
4859 PRINT("sys_shm_open(%#" FMT_REGWORD "x(SHM_ANON), %" FMT_REGWORD "u, %hu)", ARG1, ARG2, (vki_mode_t)ARG3);
4860 } else {
4861 PRINT("sys_shm_open(%#" FMT_REGWORD "x(%s), %" FMT_REGWORD "u, %hu)", ARG1, (HChar *)ARG1, ARG2, (vki_mode_t)ARG3);
4862 PRE_MEM_RASCIIZ( "shm_open(path)", ARG1 );
4864 *flags |= SfMayBlock;
4867 POST(sys_shm_open)
4869 vg_assert(SUCCESS);
4870 if (!ML_(fd_allowed)(RES, "shm_open", tid, True)) {
4871 VG_(close)(RES);
4872 SET_STATUS_Failure( VKI_EMFILE );
4873 } else {
4874 if (VG_(clo_track_fds))
4875 ML_(record_fd_open_with_given_name)(tid, RES, (HChar*)ARG1);
4879 // SYS_shm_unlink 483
4880 // int shm_unlink(const char *path);
4881 PRE(sys_shm_unlink)
4883 PRINT("sys_shm_unlink(%#" FMT_REGWORD "x(%s))", ARG1, (char *)ARG1);
4884 PRE_REG_READ1(int, "shm_unlink",
4885 const char *, path);
4887 PRE_MEM_RASCIIZ( "shm_unlink(path)", ARG1 );
4889 *flags |= SfMayBlock;
4892 // SYS_cpuset 484
4893 // int cpuset(cpusetid_t *setid);
4894 PRE(sys_cpuset)
4896 PRINT("sys_cpuset ( %#" FMT_REGWORD "x )", ARG1);
4897 PRE_REG_READ1(int, "cpuset", vki_cpusetid_t *, setid);
4898 PRE_MEM_WRITE("cpuset(setid)", ARG1, sizeof(vki_cpusetid_t));
4901 POST(sys_cpuset)
4903 POST_MEM_WRITE(ARG1, sizeof(vki_cpusetid_t));
4906 // SYS_cpuset_setid 485
4907 // amd64 / x86
4909 // SYS_cpuset_getid 486
4910 // amd64 / x86
4912 // SYS_cpuset_getaffinity 487
4913 // amd64 / x86
4915 // SYS_cpuset_setaffinity 488
4916 // amd64 / x86
4918 // SYS_faccessat 489
4919 // int faccessat(int fd, const char *path, int mode, int flag);
4920 PRE(sys_faccessat)
4922 PRINT("sys_faccessat ( %" FMT_REGWORD "u, %#" FMT_REGWORD "x(%s), %" FMT_REGWORD "u )", ARG1,ARG2,(char*)ARG2,ARG3);
4923 PRE_REG_READ3(int, "faccessat",
4924 int, fd, const char *, path, int, flag);
4925 PRE_MEM_RASCIIZ( "faccessat(path)", ARG2 );
4928 // SYS_fchmodat 490
4929 // int fchmodat(int fd, const char *path, mode_t mode, int flag);
4930 PRE(sys_fchmodat)
4932 PRINT("sys_fchmodat ( %" FMT_REGWORD "u, %#" FMT_REGWORD "x(%s), %" FMT_REGWORD "u )", ARG1,ARG2,(char*)ARG2,ARG3);
4933 PRE_REG_READ4(int, "fchmodat",
4934 int, fd, const char *, path, vki_mode_t, mode, int, flag);
4935 PRE_MEM_RASCIIZ( "fchmodat(path)", ARG2 );
4938 // SYS_fchownat 491
4939 // int fchownat(int fd, const char *path, uid_t owner, gid_t group, int flag);
4940 PRE(sys_fchownat)
4942 PRINT("sys_fchownat ( %" FMT_REGWORD "u, %#" FMT_REGWORD "x(%s), 0x%" FMT_REGWORD "x, 0x%" FMT_REGWORD "x, %" FMT_REGWORD "d )",
4943 ARG1,ARG2,(char*)ARG2,ARG3,ARG4, SARG5);
4944 PRE_REG_READ5(int, "fchownat",
4945 int, fd, const char *, path,
4946 vki_uid_t, owner, vki_gid_t, group, int, flag);
4947 PRE_MEM_RASCIIZ( "fchownat(path)", ARG2 );
4950 // SYS_fexecve 492
4951 // int fexecve(int fd, char *const argv[], char *const envp[]);
4952 PRE(sys_fexecve)
4954 PRINT("sys_fexecve ( %" FMT_REGWORD "d, %#" FMT_REGWORD "x, %#" FMT_REGWORD "x )",
4955 SARG1,ARG2,ARG3);
4956 PRE_REG_READ3(int, "fexecve",
4957 int, fd, char * const *, argv,
4958 char * const *, envp);
4960 if (!ML_(fd_allowed)(ARG1, "fexecve", tid, False)) {
4961 SET_STATUS_Failure(VKI_EBADF);
4962 return;
4965 const HChar *fname;
4967 if (VG_(resolve_filename)(ARG1, &fname) == False) {
4968 SET_STATUS_Failure(VKI_ENOENT);
4969 return;
4972 struct vg_stat stats;
4973 if (VG_(fstat)(ARG1, &stats) != 0) {
4974 SET_STATUS_Failure(VKI_EACCES);
4975 return;
4978 Int openFlags;
4980 if (VG_(resolve_filemode)(ARG1, &openFlags) == False) {
4981 SET_STATUS_Failure(VKI_ENOENT);
4982 return;
4986 * openFlags is in kernel FFLAGS format
4987 * (see /usr/include/sys/fcntl.h)
4988 * which alllows us to tell if RDONLY is set
4992 Bool isScript = False;
4994 SysRes res;
4995 res = VG_(open)(fname, VKI_O_RDONLY,
4996 VKI_S_IRUSR|VKI_S_IRGRP|VKI_S_IROTH);
4997 if (sr_isError(res)) {
4998 SET_STATUS_Failure(VKI_ENOENT);
4999 return;
5000 } else {
5001 char buf[2];
5002 VG_(read)((Int)sr_Res(res), buf, 2);
5003 VG_(close)((Int)sr_Res(res));
5004 if (buf[0] == '#' && buf[1] == '!')
5006 isScript = True;
5010 if (isScript) {
5011 if (!(openFlags & VKI_FREAD)) {
5012 SET_STATUS_Failure(VKI_EACCES);
5013 return;
5015 } else {
5016 if (!((openFlags & VKI_O_EXEC) ||
5017 (stats.mode & (VKI_S_IXUSR|VKI_S_IXGRP|VKI_S_IXOTH)))) {
5018 SET_STATUS_Failure(VKI_EACCES);
5019 return;
5023 Addr arg_2 = (Addr)ARG2;
5024 Addr arg_3 = (Addr)ARG3;
5026 handle_pre_sys_execve(tid, status, (Addr)fname, arg_2, arg_3, FEXECVE, False);
5029 // SYS_freebsd11_fstatat 493
5030 // int fstatat(int fd, const char *path, struct stat *sb, int flag);
5031 #if (FREEBSD_VERS >= FREEBSD_12)
5032 PRE(sys_freebsd11_fstatat)
5034 PRINT("sys_freebsd11_fstatat ( %" FMT_REGWORD "u, %#" FMT_REGWORD "x(%s), %#" FMT_REGWORD "x )", ARG1,ARG2,(char*)ARG2,ARG3);
5035 PRE_REG_READ4(int, "fstatat",
5036 int, fd, const char *, path, struct freebsd11_stat *, buf, int, flag);
5037 PRE_MEM_RASCIIZ( "fstatat(path)", ARG2 );
5038 PRE_MEM_WRITE( "fstatat(sb)", ARG3, sizeof(struct vki_freebsd11_stat) );
5041 POST(sys_freebsd11_fstatat)
5043 POST_MEM_WRITE( ARG3, sizeof(struct vki_freebsd11_stat) );
5045 #else
5046 PRE(sys_fstatat)
5048 PRINT("sys_fstatat ( %" FMT_REGWORD "u, %#" FMT_REGWORD "x(%s), %#" FMT_REGWORD "x )", ARG1,ARG2,(char*)ARG2,ARG3);
5049 PRE_REG_READ4(int, "fstatat",
5050 int, fd, const char *, path, struct stat *, buf, int, flag);
5051 PRE_MEM_RASCIIZ( "fstatat(path)", ARG2 );
5052 PRE_MEM_WRITE( "fstatat(sb)", ARG3, sizeof(struct vki_freebsd11_stat) );
5055 POST(sys_fstatat)
5057 POST_MEM_WRITE( ARG3, sizeof(struct vki_freebsd11_stat) );
5059 #endif
5061 // SYS_futimesat 494
5062 // int futimesat(int fd, const char *path, const struct timeval times[2]);
5063 PRE(sys_futimesat)
5065 PRINT("sys_futimesat ( %" FMT_REGWORD "u, %#" FMT_REGWORD "x(%s), %#" FMT_REGWORD "x )", ARG1,ARG2,(char*)ARG2,ARG3);
5066 PRE_REG_READ3(int, "futimesat",
5067 int, fd, const char *, path, struct timeval *, times);
5068 if (ARG2 != 0)
5069 PRE_MEM_RASCIIZ( "futimesat(path)", ARG2 );
5070 if (ARG3 != 0)
5071 PRE_MEM_READ( "futimesat(times)", ARG3, 2 * sizeof(struct vki_timeval) );
5074 // SYS_linkat 495
5075 // int linkat(int fd1, const char *name1, int fd2, const char *name2, int flag);
5076 PRE(sys_linkat)
5078 *flags |= SfMayBlock;
5079 PRINT("sys_linkat ( %" FMT_REGWORD "u, %#" FMT_REGWORD "x(%s), %" FMT_REGWORD "u, %#" FMT_REGWORD "x(%s), %" FMT_REGWORD "u )",ARG1,ARG2,(char*)ARG2,ARG3,ARG4,(char*)ARG4,ARG5);
5080 PRE_REG_READ5(int, "linkat",
5081 int, fd1, const char *, name1,
5082 int, fd2, const char *, name2,
5083 int, flag);
5084 PRE_MEM_RASCIIZ( "linkat(name1)", ARG2);
5085 PRE_MEM_RASCIIZ( "linkat(name2)", ARG4);
5088 // SYS_mkdirat 496
5089 // int mkdirat(int fd, const char *path, mode_t mode);
5090 PRE(sys_mkdirat)
5092 *flags |= SfMayBlock;
5093 PRINT("sys_mkdirat ( %" FMT_REGWORD "u, %#" FMT_REGWORD "x(%s), %" FMT_REGWORD "u )", ARG1,ARG2,(char*)ARG2,ARG3);
5094 PRE_REG_READ3(int, "mkdirat",
5095 int, fd, const char *, path, int, mode);
5096 PRE_MEM_RASCIIZ( "mkdirat(path)", ARG2 );
5099 // SYS_mkfifoat 497
5100 // int mkfifoat(int fd, const char *path, mode_t mode);
5101 PRE(sys_mkfifoat)
5103 PRINT("sys_mkfifoat ( %" FMT_REGWORD "d, %#" FMT_REGWORD "x(%s), 0x%" FMT_REGWORD "x )",
5104 SARG1,ARG2,(HChar*)ARG2,ARG3 );
5105 PRE_REG_READ3(int, "mkfifoat",
5106 int, fd, const char *, path, vki_mode_t, mode);
5107 PRE_MEM_RASCIIZ( "mkfifoat(path)", ARG2 );
5110 // SYS_freebsd11_mknodat 498
5111 // int mknodat(int fd, const char *path, mode_t mode, dev_t dev);
5112 #if (FREEBSD_VERS >= FREEBSD_12)
5113 PRE(sys_freebsd11_mknodat)
5115 PRINT("sys_freebsd11_mknodat ( %" FMT_REGWORD "u, %#" FMT_REGWORD "x(%s), 0x%" FMT_REGWORD "x, 0x%" FMT_REGWORD "x )", ARG1,ARG2,(char*)ARG2,ARG3,ARG4 );
5116 PRE_REG_READ4(long, "mknodat",
5117 int, dfd, const char *, pathname, int, mode, unsigned, dev);
5118 PRE_MEM_RASCIIZ( "mknodat(pathname)", ARG2 );
5120 #else
5121 PRE(sys_mknodat)
5123 PRINT("sys_mknodat ( %" FMT_REGWORD "u, %#" FMT_REGWORD "x(%s), 0x%" FMT_REGWORD "x, 0x%" FMT_REGWORD "x )", ARG1,ARG2,(char*)ARG2,ARG3,ARG4 );
5124 PRE_REG_READ4(long, "mknodat",
5125 int, dfd, const char *, pathname, int, mode, unsigned, dev);
5126 PRE_MEM_RASCIIZ( "mknodat(pathname)", ARG2 );
5128 #endif
5130 // SYS_openat 499
5131 // int openat(int fd, const char *path, int flags, ...);
5132 PRE(sys_openat)
5135 if (ARG3 & VKI_O_CREAT) {
5136 // 4-arg version
5137 PRINT("sys_openat ( %" FMT_REGWORD "u, %#" FMT_REGWORD "x(%s), %" FMT_REGWORD "u, %" FMT_REGWORD "u )",ARG1,ARG2,(char*)ARG2,ARG3,ARG4);
5138 PRE_REG_READ4(int, "openat",
5139 int, fd, const char *, path, int, flags, vki_mode_t, mode);
5140 } else {
5141 // 3-arg version
5142 PRINT("sys_openat ( %" FMT_REGWORD "u, %#" FMT_REGWORD "x(%s), %" FMT_REGWORD "u )",ARG1,ARG2,(char*)ARG2,ARG3);
5143 PRE_REG_READ3(int, "openat",
5144 int, fd, const char *, path, int, flags);
5147 if (ARG1 != (unsigned)VKI_AT_FDCWD && !ML_(fd_allowed)(ARG1, "openat", tid, False))
5148 SET_STATUS_Failure( VKI_EBADF );
5149 else
5150 PRE_MEM_RASCIIZ( "openat(path)", ARG2 );
5152 /* Otherwise handle normally */
5153 *flags |= SfMayBlock;
5156 POST(sys_openat)
5158 vg_assert(SUCCESS);
5159 if (!ML_(fd_allowed)(RES, "openat", tid, True)) {
5160 VG_(close)(RES);
5161 SET_STATUS_Failure( VKI_EMFILE );
5162 } else {
5163 if (VG_(clo_track_fds))
5164 ML_(record_fd_open_with_given_name)(tid, RES, (HChar*)ARG2);
5168 // SYS_readlinkat 500
5169 // ssize_t readlinkat(int fd, const char *restrict path, char *restrict buf,
5170 // size_t bufsize);
5171 PRE(sys_readlinkat)
5173 HChar name[25];
5174 Word saved = SYSNO;
5176 PRINT("sys_readlinkat ( %" FMT_REGWORD "u, %#" FMT_REGWORD "x(%s), %#" FMT_REGWORD "x, %llu )", ARG1,ARG2,(char*)ARG2,ARG3,(ULong)ARG4);
5177 PRE_REG_READ4(ssize_t, "readlinkat",
5178 int, fd, const char *, path, char *, buf, int, bufsize);
5179 PRE_MEM_RASCIIZ( "readlinkat(path)", ARG2 );
5180 PRE_MEM_WRITE( "readlinkat(buf)", ARG3,ARG4 );
5183 * Handle the case where readlinkat is looking at /proc/curproc/file or
5184 * /proc/<pid>/file.
5186 VG_(sprintf)(name, "/proc/%d/file", VG_(getpid)());
5187 if (ML_(safe_to_deref)((void*)ARG2, 1)
5188 && (VG_(strcmp)((HChar *)ARG2, name) == 0
5189 || VG_(strcmp)((HChar *)ARG2, "/proc/curproc/file") == 0)) {
5190 VG_(sprintf)(name, "/proc/self/fd/%d", VG_(cl_exec_fd));
5191 SET_STATUS_from_SysRes( VG_(do_syscall4)(saved, ARG1, (UWord)name,
5192 ARG3, ARG4));
5193 } else {
5194 /* Normal case */
5195 SET_STATUS_from_SysRes( VG_(do_syscall4)(saved, ARG1, ARG2, ARG3, ARG4));
5199 POST(sys_readlinkat)
5201 POST_MEM_WRITE( ARG3, RES );
5204 // SYS_renameat 501
5205 // int renameat(int fromfd, const char *from, int tofd, const char *to);
5206 PRE(sys_renameat)
5208 PRINT("sys_renameat ( %" FMT_REGWORD "u, %#" FMT_REGWORD "x(%s), %" FMT_REGWORD "u, %#" FMT_REGWORD "x(%s) )", ARG1,ARG2,(char*)ARG2,ARG3,ARG4,(char*)ARG4);
5209 PRE_REG_READ4(int, "renameat",
5210 int, fromfd, const char *, from,
5211 int, tofd, const char *, to);
5212 PRE_MEM_RASCIIZ( "renameat(oldpath)", ARG2 );
5213 PRE_MEM_RASCIIZ( "renameat(newpath)", ARG4 );
5216 // SYS_symlinkat 502
5217 // int symlinkat(const char *name1, int fd, const char *name2);
5218 PRE(sys_symlinkat)
5220 *flags |= SfMayBlock;
5221 PRINT("sys_symlinkat ( %#" FMT_REGWORD "x(%s), %" FMT_REGWORD "u, %#" FMT_REGWORD "x(%s) )",ARG1,(char*)ARG1,ARG2,ARG3,(char*)ARG3);
5222 PRE_REG_READ3(int, "symlinkat",
5223 const char *, name1, int, fd, const char *, name2);
5224 PRE_MEM_RASCIIZ( "symlinkat(name1)", ARG1 );
5225 PRE_MEM_RASCIIZ( "symlinkat(name2)", ARG3 );
5228 // SYS_unlinkat 503
5229 // int unlinkat(int fd, const char *path, int flag);
5230 PRE(sys_unlinkat)
5232 *flags |= SfMayBlock;
5233 PRINT("sys_unlinkat ( %" FMT_REGWORD "u, %#" FMT_REGWORD "x(%s), %" FMT_REGWORD "u ",
5234 ARG1, ARG2, (char*)ARG2, ARG3);
5235 PRE_REG_READ3(int, "unlinkat", int, fd, const char *, path, int, flag);
5236 PRE_MEM_RASCIIZ( "unlinkat(path)", ARG2 );
5239 // SYS_posix_openpt 504
5240 // int posix_openpt(int oflag);
5241 PRE(sys_posix_openpt)
5243 PRINT("sys_posix_openpt ( %" FMT_REGWORD "d )", SARG1);
5244 PRE_REG_READ1(int, "posix_openpt", int, oflag);
5247 // SYS_gssd_syscall 505
5248 // @todo
5249 // see https://www.freebsd.org/cgi/man.cgi?format=html&query=gssapi(3)
5250 // syscalls.master says ; 505 is initialised by the kgssapi code, if present.
5252 // SYS_jail_get 506
5253 // int jail_get(struct iovec *iov, u_int niov, int flags);
5254 PRE(sys_jail_get)
5256 PRINT("sys_jail_get ( %#" FMT_REGWORD "x, %" FMT_REGWORD "u, %" FMT_REGWORD "u )", ARG1, ARG2, ARG3);
5257 PRE_REG_READ3(int, "jail_get", struct vki_iovec *, iov, unsigned int,
5258 niov, int, flags);
5259 PRE_MEM_READ("jail_get(iov)", ARG1, ARG2 * sizeof(struct vki_iovec));
5262 // SYS_jail_set 507
5263 // int jail_set(struct iovec *iov, u_int niov, int flags);
5264 PRE(sys_jail_set)
5266 PRINT("sys_jail_set ( %#" FMT_REGWORD "x, %" FMT_REGWORD "u, %" FMT_REGWORD "u )", ARG1, ARG2, ARG3);
5267 PRE_REG_READ3(int, "jail_set", struct vki_iovec *, iov, unsigned int,
5268 niov, int, flags);
5269 PRE_MEM_READ("jail_set(iovs)", ARG1, ARG2 * sizeof(struct vki_iovec));
5272 // SYS_jail_remove 508
5273 // int jail_remove(int jid);
5274 PRE(sys_jail_remove)
5276 PRINT("sys_jail_remove ( %" FMT_REGWORD "d )", SARG1);
5277 PRE_REG_READ1(int, "jail_remove", int, jid);
5280 // SYS_closefrom 509
5281 // void closefrom(int lowfd);
5282 PRE(sys_closefrom)
5284 PRINT("sys_closefrom ( %" FMT_REGWORD "dx )", SARG1);
5285 PRE_REG_READ1(int, "closefrom", int, lowfd);
5288 * Can't pass this on to the kernel otherwise it will close
5289 * all of the host files like the log
5292 for (int i = ARG1; i < VG_(fd_soft_limit); ++i) {
5293 VG_(close)(i);
5296 SET_STATUS_Success(0);
5299 // SYS___semctl 510
5300 // int semctl(int semid, int semnum, int cmd, ...);
5301 // int __semctl(int semid, int semnum, int cmd, _Inout_ union semun *arg);
5302 PRE(sys___semctl)
5304 switch (ARG3) {
5305 case VKI_IPC_INFO:
5306 case VKI_SEM_INFO:
5307 PRINT("sys_semctl ( %" FMT_REGWORD "u, %" FMT_REGWORD "u, %" FMT_REGWORD "u, %#" FMT_REGWORD "x )",ARG1,ARG2,ARG3,ARG4);
5308 PRE_REG_READ4(int, "semctl",
5309 int, semid, int, semnum, int, cmd, struct seminfo *, arg);
5310 break;
5311 case VKI_IPC_STAT:
5312 case VKI_SEM_STAT:
5313 case VKI_IPC_SET:
5314 PRINT("sys_semctl ( %" FMT_REGWORD "u, %" FMT_REGWORD "u, %" FMT_REGWORD "u, %#" FMT_REGWORD "x )",ARG1,ARG2,ARG3,ARG4);
5315 PRE_REG_READ4(long, "semctl",
5316 int, semid, int, semnum, int, cmd, struct semid_ds *, arg);
5317 break;
5318 case VKI_GETALL:
5319 case VKI_SETALL:
5320 PRINT("sys_semctl ( %" FMT_REGWORD "u, %" FMT_REGWORD "u, %" FMT_REGWORD "u, %#" FMT_REGWORD "x )",ARG1,ARG2,ARG3,ARG4);
5321 PRE_REG_READ4(long, "semctl",
5322 int, semid, int, semnum, int, cmd, unsigned short *, arg);
5323 break;
5324 default:
5325 PRINT("sys_semctl ( %" FMT_REGWORD "u, %" FMT_REGWORD "u, %" FMT_REGWORD "u )",ARG1,ARG2,ARG3);
5326 PRE_REG_READ3(long, "semctl",
5327 int, semid, int, semnum, int, cmd);
5328 break;
5330 ML_(generic_PRE_sys_semctl)(tid, ARG1,ARG2,ARG3,ARG4);
5333 POST(sys___semctl)
5335 ML_(generic_POST_sys_semctl)(tid, RES,ARG1,ARG2,ARG3,ARG4);
5338 // SYS_msgctl 511
5339 // int msgctl(int msqid, int cmd, struct msqid_ds *buf);
5340 PRE(sys_msgctl)
5342 PRINT("sys_msgctl ( %" FMT_REGWORD "d, %" FMT_REGWORD "d, %#" FMT_REGWORD "x )", SARG1,SARG2,ARG3 );
5344 PRE_REG_READ3(int, "msgctl", int, msqid, int, cmd, struct msqid_ds *, buf);
5346 switch (ARG2 /* cmd */) {
5347 case VKI_IPC_STAT:
5348 PRE_MEM_WRITE( "msgctl(IPC_STAT, buf)",
5349 ARG3, sizeof(struct vki_msqid_ds) );
5350 break;
5351 case VKI_IPC_SET:
5352 PRE_MEM_READ( "msgctl(IPC_SET, buf)",
5353 ARG3, sizeof(struct vki_msqid_ds) );
5354 break;
5358 POST(sys_msgctl)
5360 switch (ARG2 /* cmd */) {
5361 case VKI_IPC_STAT:
5362 POST_MEM_WRITE( ARG3, sizeof(struct vki_msqid_ds) );
5363 break;
5368 // SYS_shmctl 512
5369 // int shmctl(int shmid, int cmd, struct shmid_ds *buf);
5370 PRE(sys_shmctl)
5372 PRINT("sys_shmctl ( %" FMT_REGWORD "d, %" FMT_REGWORD "d, %#" FMT_REGWORD "x )",SARG1,SARG2,ARG3);
5373 PRE_REG_READ3(int, "shmctl",
5374 int, shmid, int, cmd, struct vki_shmid_ds *, buf);
5375 switch (ARG2 /* cmd */) {
5376 case VKI_IPC_STAT:
5377 PRE_MEM_WRITE( "shmctl(IPC_STAT, buf)",
5378 ARG3, sizeof(struct vki_shmid_ds) );
5379 break;
5380 case VKI_IPC_SET:
5381 PRE_MEM_READ( "shmctl(IPC_SET, buf)",
5382 ARG3, sizeof(struct vki_shmid_ds) );
5383 break;
5387 POST(sys_shmctl)
5389 if (ARG2 == VKI_IPC_STAT) {
5390 POST_MEM_WRITE( ARG3, sizeof(struct vki_shmid_ds) );
5394 // SYS_lpathconf 513
5395 // long lpathconf(const char *path, int name);
5396 PRE(sys_lpathconf)
5398 PRINT("sys_lpathconf ( %#" FMT_REGWORD "x, %" FMT_REGWORD "d)", ARG1, SARG2);
5399 PRE_REG_READ2(long, "lpathconf", const char *, path, int, name);
5400 PRE_MEM_RASCIIZ("lpathconf(path)", ARG1);
5403 // SYS___cap_rights_get 515
5404 // note extra 1st argument for the internal function which is not present
5405 // in the public interface
5406 // int __cap_rights_get(int version, int fd, cap_rights_t *rights);
5407 PRE(sys_cap_rights_get)
5409 PRINT("sys_cap_rights_get ( %" FMT_REGWORD "d, %" FMT_REGWORD "d, %#" FMT_REGWORD "x )", SARG1, SARG2, ARG3);
5410 PRE_REG_READ3(long, "cap_rights_get", int, version, int, fd, vki_cap_rights_t*, rights);
5411 PRE_MEM_WRITE("cap_rights_get(rights)", ARG3, sizeof(vki_cap_rights_t));
5414 POST(sys_cap_rights_get)
5416 POST_MEM_WRITE(ARG2, sizeof(vki_cap_rights_t));
5419 // SYS_cap_enter 516
5420 // int cap_enter(void);
5421 PRE(sys_cap_enter)
5423 PRINT("%s", "sys_cap_enter ( )");
5424 PRE_REG_READ0(int, "cap_enter");
5425 static Bool warning_given = False;
5426 if (!warning_given) {
5427 warning_given = True;
5428 capabiltyMode = True;
5429 VG_(umsg)(
5430 "WARNING: Valgrind may not operate correctly in capability mode.\n"
5431 " Please consider disabling capability by using the RUNNING_ON_VALGRIND mechanism.\n"
5432 " See http://valgrind.org/docs/manual/manual-core-adv.html#manual-core-adv.clientreq\n");
5436 // SYS_cap_getmode 517
5437 // int cap_getmode(u_int *modep);
5438 PRE(sys_cap_getmode)
5440 PRINT("sys_cap_getmode ( %#" FMT_REGWORD "x )", ARG1);
5441 PRE_REG_READ1(int, "cap_getmode", u_int*, modep);
5442 PRE_MEM_WRITE("cap_getmode(modep)", ARG1, sizeof(u_int));
5445 POST(sys_cap_getmode)
5447 POST_MEM_WRITE(ARG1, sizeof(u_int));
5450 static vki_sigset_t pdfork_saved_mask;
5452 // SYS_pdfork 518
5453 // pid_t pdfork(int *fdp, int flags);
5454 PRE(sys_pdfork)
5456 Bool is_child;
5457 Int child_pid;
5458 vki_sigset_t mask;
5460 PRINT("sys_pdfork ( %#" FMT_REGWORD "x, %#" FMT_REGWORD "x )", ARG1, ARG2);
5461 PRE_REG_READ2(pid_t, "pdfork", int*, fdp, int, flags);
5463 /* Block all signals during fork, so that we can fix things up in
5464 the child without being interrupted. */
5465 VG_(sigfillset)(&mask);
5466 VG_(sigprocmask)(VKI_SIG_SETMASK, &mask, &pdfork_saved_mask);
5468 VG_(do_atfork_pre)(tid);
5470 SET_STATUS_from_SysRes( VG_(do_syscall2)(__NR_pdfork, ARG1, ARG2) );
5472 if (!SUCCESS) return;
5474 // RES is 0 for child, non-0 (the child's PID) for parent.
5475 is_child = ( RES == 0 ? True : False );
5476 child_pid = ( is_child ? -1 : RES );
5478 if (is_child) {
5479 VG_(do_atfork_child)(tid);
5481 /* restore signal mask */
5482 VG_(sigprocmask)(VKI_SIG_SETMASK, &pdfork_saved_mask, NULL);
5483 } else {
5484 VG_(do_atfork_parent)(tid);
5486 PRINT(" fork: process %d created child %d\n", VG_(getpid)(), child_pid);
5488 /* restore signal mask */
5489 VG_(sigprocmask)(VKI_SIG_SETMASK, &pdfork_saved_mask, NULL);
5492 if (ARG1) {
5493 PRE_MEM_WRITE( "pdfork(fdp)", ARG1, sizeof(int) );
5497 POST(sys_pdfork)
5499 if (ARG1) {
5500 POST_MEM_WRITE( ARG1, sizeof(int) );
5504 // pdkill 519
5505 //int pdkill(int fd, int signum)
5506 PRE(sys_pdkill)
5508 PRINT("sys_pdkill ( %" FMT_REGWORD "u, %" FMT_REGWORD "d )", ARG1, SARG2);
5509 PRE_REG_READ2(int, "pdkill", int, fd, int, signum);
5511 if (!ML_(client_signal_OK)(ARG2)) {
5512 SET_STATUS_Failure( VKI_EINVAL );
5513 return;
5516 /* Ther was some code here to check if the kill is to this process
5518 * But it was totally wrong
5520 * It was calling ML_(do_sigkill)(Int pid, Int tgid)
5522 * With a file descriptor
5524 * Fortunately this will never match a real process otherwise
5525 * it might have accidentally killed us.
5527 * For a start we need the pid, obtained with pdgetpid
5528 * Next ML_(do_sigkill) doesn't map to FreeBSD. It takes a
5529 * pid (lwpid) and a tgid (threadgroup)
5531 * On FreeBSD lwpid is the tid and threadgroup is the pid
5532 * The kill functions operate on pids, not tids.
5534 * One last thing, I don't see how pdkill could do a self
5535 * kill 9. It neads an fd which implied pdfork whichimplies
5536 * that the fd/pid are for a child process
5539 SET_STATUS_from_SysRes(VG_(do_syscall2)(SYSNO, ARG1, ARG2));
5541 if (VG_(clo_trace_signals))
5542 VG_(message)(Vg_DebugMsg, "pdkill: sent signal %ld to fd %ld\n",
5543 SARG2, SARG1);
5545 /* This kill might have given us a pending signal. Ask for a check once
5546 the syscall is done. */
5547 *flags |= SfPollAfter;
5551 // SYS_pdgetpid 520
5552 // int pdgetpid(int fd, pid_t *pidp);
5553 PRE(sys_pdgetpid)
5555 PRINT("pdgetpid ( %" FMT_REGWORD "d, %#lx )", SARG1, ARG2);
5556 PRE_REG_READ2(int, "pdgetpid",
5557 int, fd, pid_t*, pidp);
5558 PRE_MEM_WRITE( "pdgetpid(pidp))", ARG2, sizeof(vki_pid_t) );
5561 POST(sys_pdgetpid)
5563 POST_MEM_WRITE( ARG2, sizeof(vki_pid_t) );
5566 // SYS_pselect 522
5568 // int pselect(int nfds, fd_set * restrict readfds, fd_set * restrict writefds,
5569 // fd_set * restrict exceptfds,
5570 // const struct timespec * restrict timeout,
5571 // const sigset_t * restrict newsigmask);
5572 PRE(sys_pselect)
5574 *flags |= SfMayBlock | SfPostOnFail;
5575 PRINT("sys_pselect ( %ld, %#" FMT_REGWORD "x, %#" FMT_REGWORD "x, %#"
5576 FMT_REGWORD "x, %#" FMT_REGWORD "x, %#" FMT_REGWORD "x )",
5577 SARG1, ARG2, ARG3, ARG4, ARG5, ARG6);
5578 PRE_REG_READ6(int, "pselect",
5579 int, nfds, vki_fd_set *, readfds, vki_fd_set *, writefds,
5580 vki_fd_set *, exceptfds, struct vki_timespec *, timeout,
5581 const sigset_t *, newsigmask);
5582 // XXX: this possibly understates how much memory is read.
5583 if (ARG2 != 0)
5584 PRE_MEM_READ( "pselect(readfds)",
5585 ARG2, ARG1/8 /* __FD_SETSIZE/8 */ );
5586 if (ARG3 != 0)
5587 PRE_MEM_READ( "pselect(writefds)",
5588 ARG3, ARG1/8 /* __FD_SETSIZE/8 */ );
5589 if (ARG4 != 0)
5590 PRE_MEM_READ( "pselect(exceptfds)",
5591 ARG4, ARG1/8 /* __FD_SETSIZE/8 */ );
5592 if (ARG5 != 0)
5593 PRE_MEM_READ( "pselect(timeout)", ARG5, sizeof(struct vki_timeval) );
5595 if (ARG6 != 0) {
5596 PRE_MEM_READ( "pselect(sig)", ARG6, sizeof(vki_sigset_t) );
5597 ARG6 = ML_(make_safe_mask)("syswrap.pselect.1", (Addr)ARG6);
5601 POST(sys_pselect)
5603 ML_(free_safe_mask) ( (Addr)ARG6 );
5606 // SYS_getloginclass 523
5607 // int getloginclass(char *name, size_t len);
5608 PRE(sys_getloginclass)
5610 PRINT("sys_getloginclass ( %#" FMT_REGWORD "x, %" FMT_REGWORD "u )", ARG1, ARG2);
5611 PRE_REG_READ2(int, "getloginclass", char *, name, size_t, len);
5612 // The buffer should be at least MAXLOGNAME bytes in length.
5613 PRE_MEM_WRITE("getloginclass(name)", ARG1, ARG2);
5616 POST(sys_getloginclass)
5618 POST_MEM_WRITE(ARG1, ARG2);
5621 // SYS_setloginclass 524
5622 // int setloginclass(const char *name);
5623 PRE(sys_setloginclass)
5625 PRINT("sys_setloginclass ( %#" FMT_REGWORD "x(%s) )", ARG1, (HChar*)ARG1);
5626 PRE_REG_READ1(int, "setloginclass", const char *, name);
5627 PRE_MEM_RASCIIZ("rctl_setloginclass(name)", ARG1);
5630 // SYS_rctl_get_racct 525
5631 // int rctl_get_racct(const char *inbufp, size_t inbuflen, char *outbufp,
5632 // size_t outbuflen);
5633 PRE(sys_rctl_get_racct)
5635 PRINT("sys_rctl_get_racct ( %#" FMT_REGWORD "x, %" FMT_REGWORD "u, %#" FMT_REGWORD "xd, %" FMT_REGWORD "u )", ARG1, ARG2, ARG3, ARG4);
5636 PRE_REG_READ4(int, "rctl_get_racct", const char *, inbufp, size_t, inbuflen, char *, outbufp,
5637 size_t, outbuflen);
5638 PRE_MEM_READ("rctl_get_racct(inbufp)", ARG1, ARG2);
5639 PRE_MEM_WRITE("rctl_get_racct(outbufp)", ARG3, ARG4);
5642 POST(sys_rctl_get_racct)
5644 POST_MEM_WRITE(ARG3, ARG4);
5647 // SYS_rctl_get_rules 526
5648 // int rctl_get_rules(const char *inbufp, size_t inbuflen, char *outbufp,
5649 // size_t outbuflen);
5650 PRE(sys_rctl_get_rules)
5652 PRINT("sys_rctl_get_rules ( %#" FMT_REGWORD "xd, %" FMT_REGWORD "u, %#" FMT_REGWORD "xd, %" FMT_REGWORD "u )", ARG1, ARG2, ARG3, ARG4);
5653 PRE_REG_READ4(int, "rctl_get_rules", const char *, inbufp, size_t, inbuflen, char *, outbufp,
5654 size_t, outbuflen);
5655 PRE_MEM_READ("rctl_get_rules(inbufp)", ARG1, ARG2);
5656 PRE_MEM_WRITE("rctl_get_rules(outbufp)", ARG3, ARG4);
5659 POST(sys_rctl_get_rules)
5661 POST_MEM_WRITE(ARG3, ARG4);
5664 // SYS_rctl_get_limits 527
5665 // int rctl_get_limits(const char *inbufp, size_t inbuflen, char *outbufp,
5666 // size_t outbuflen);
5667 PRE(sys_rctl_get_limits)
5669 PRINT("sys_rctl_get_limits ( %#" FMT_REGWORD "xd, %" FMT_REGWORD "u, %#" FMT_REGWORD "xd, %" FMT_REGWORD "u )", ARG1, ARG2, ARG3, ARG4);
5670 PRE_REG_READ4(int, "rctl_get_limits", const char *, inbufp, size_t, inbuflen, char *, outbufp,
5671 size_t, outbuflen);
5672 PRE_MEM_READ("rctl_get_limits(inbufp)", ARG1, ARG2);
5673 PRE_MEM_WRITE("rctl_get_limits(outbufp)", ARG3, ARG4);
5676 POST(sys_rctl_get_limits)
5678 POST_MEM_WRITE(ARG3, ARG4);
5681 // SYS_rctl_add_rule 528
5682 // int rctl_add_rule(const char *inbufp, size_t inbuflen, char *outbufp,
5683 // size_t outbuflen);
5684 PRE(sys_rctl_add_rule)
5686 PRINT("sys_rctl_add_rule ( %#" FMT_REGWORD "xd, %" FMT_REGWORD "u, %#" FMT_REGWORD "xd, %" FMT_REGWORD "u )", ARG1, ARG2, ARG3, ARG4);
5687 PRE_REG_READ2(int, "rctl_add_rule", const char *, inbufp, size_t, inbuflen);
5688 PRE_MEM_READ("rctl_add_rule(inbufp)", ARG1, ARG2);
5689 // man page says
5690 // The outbufp and outbuflen arguments are unused
5691 //PRE_MEM_WRITE("rctl_add_rule(outbufp)", ARG3, ARG4);
5694 POST(sys_rctl_add_rule)
5696 //POST_MEM_WRITE(ARG3, ARG4);
5699 // SYS_rctl_remove_rule 529
5700 // int rctl_remove_rule(const char *inbufp, size_t inbuflen, char *outbufp,
5701 // size_t outbuflen);
5702 PRE(sys_rctl_remove_rule)
5704 PRINT("sys_rctl_remove_rule ( %#" FMT_REGWORD "xd, %" FMT_REGWORD "u, %#" FMT_REGWORD "xd, %" FMT_REGWORD "u )", ARG1, ARG2, ARG3, ARG4);
5705 PRE_REG_READ2(int, "rctl_remove_rule", const char *, inbufp, size_t, inbuflen);
5706 PRE_MEM_READ("rctl_remove_rule(inbufp)", ARG1, ARG2);
5707 // man page says
5708 // The outbufp and outbuflen arguments are unused
5709 //PRE_MEM_WRITE("rctl_remove_rule(outbufp)", ARG3, ARG4);
5712 POST(sys_rctl_remove_rule)
5714 //POST_MEM_WRITE(ARG3, ARG4);
5717 // SYS_posix_fallocate 530
5718 // x86/amd64
5720 // SYS_posix_fadvise 531
5721 // x86/amd64
5723 // SYS_wait6 532
5724 // amd64 / x86
5726 // SYS_cap_rights_limit 533
5727 //int cap_rights_limit(int fd, const cap_rights_t *rights);
5728 PRE(sys_cap_rights_limit)
5730 PRINT("sys_cap_rights_limit ( %" FMT_REGWORD "d, %#" FMT_REGWORD "x )", SARG1, ARG2);
5731 PRE_REG_READ2(int, "cap_rights_limit",
5732 int, fd, const cap_rights_t *, rights);
5733 PRE_MEM_READ( "cap_rights_limit(rights)", ARG2, sizeof(struct vki_cap_rights) );
5736 // SYS_cap_ioctls_limit 534
5737 // int cap_ioctls_limit(int fd, const unsigned long *cmds, size_t ncmds);
5738 PRE(sys_cap_ioctls_limit)
5740 PRINT("cap_ioctls_limit ( %" FMT_REGWORD "u, %#" FMT_REGWORD "x, %" FMT_REGWORD "u )", ARG1, ARG2, ARG3);
5741 PRE_REG_READ3(int, "cap_ioctls_limit",
5742 int, fd, unsigned long*, rights, vki_size_t, ncmds);
5743 // "can be up to 256" taking that to not be inclusive
5744 if (ARG3 < 256 ) {
5745 PRE_MEM_READ( "cap_ioctls_limit(cmds))", ARG2, ARG3*sizeof(unsigned long) );
5747 // else fail?
5750 // SYS_cap_ioctls_get 535
5751 // int cap_ioctls_get(int fd, unsigned long *cmds, size_t maxcmds);
5752 PRE(sys_cap_ioctls_get)
5754 PRINT("sys_cap_ioctls_get ( %" FMT_REGWORD "d, %#" FMT_REGWORD "x, %" FMT_REGWORD "u )", SARG1, ARG2, ARG3);
5755 PRE_REG_READ3(int, "cap_ioctls_get", int, fd, unsigned long *, cmds, size_t, maxcmds);
5756 if (ARG3 < 256) {
5757 PRE_MEM_WRITE("cap_ioctls_get(cmds)", ARG2, ARG3*sizeof(unsigned long));
5761 POST(sys_cap_ioctls_get)
5763 if (ARG3 < 256) {
5764 POST_MEM_WRITE(ARG2, ARG3*sizeof(unsigned long));
5769 // SYS_cap_fcntls_limit 536
5770 //int cap_fcntls_limit(int fd, uint32_t fcntlrights);
5771 PRE(sys_cap_fcntls_limit)
5773 PRINT("cap_fcntls_limit ( %" FMT_REGWORD "d, %" FMT_REGWORD "u )", SARG1, ARG2);
5774 PRE_REG_READ2(long, "cap_fcntls_limit",
5775 int, fd, vki_uint32_t, fcntlrights);
5778 // SYS_cap_fcntls_get 537
5779 // int cap_fcntls_get(int fd, uint32_t *fcntlrightsp);
5780 PRE(sys_cap_fcntls_get)
5782 PRINT("sys_cap_fcntls_get ( %" FMT_REGWORD "d, %#" FMT_REGWORD "x )", SARG1, ARG2);
5783 PRE_REG_READ2(int, "cap_fcntls_get", int, fd, uint32_t *, fcntlrightsp);
5784 PRE_MEM_WRITE("cap_fcntls_get(fcntlrightsp)", ARG2, sizeof(uint32_t));
5787 POST(sys_cap_fcntls_get)
5789 POST_MEM_WRITE(ARG2, sizeof(uint32_t));
5792 // SYS_bindat 538
5793 // int bindat(int fd, int s, const struct sockaddr *addr, socklen_t addrlen);
5794 PRE(sys_bindat)
5796 PRINT("sys_bindat ( %" FMT_REGWORD "d, %" FMT_REGWORD "dx, %#" FMT_REGWORD "x, %" FMT_REGWORD "u )",
5797 SARG1, SARG2, ARG3, ARG4);
5798 PRE_REG_READ4(int, "bindat", int, fd, int, s, const struct vki_sockaddr *, name, vki_socklen_t, namelen);
5799 PRE_MEM_READ("bindat(name)", ARG3, ARG4);
5802 // SYS_connectat 539
5803 // int connectat(int fd, int s, const struct sockaddr *name, socklen_t namelen);
5804 PRE(sys_connectat)
5806 PRINT("sys_connectat ( %" FMT_REGWORD "d, %" FMT_REGWORD "dx, %#" FMT_REGWORD "x, %" FMT_REGWORD "u )",
5807 SARG1, SARG2, ARG3, ARG4);
5808 PRE_REG_READ4(int, "connectat", int, fd, int, s, const struct vki_sockaddr *, name, vki_socklen_t, namelen);
5809 PRE_MEM_READ("connectat(name)", ARG3, ARG4);
5812 // SYS_chflagsat 540
5813 // int chflagsat(int fd, const char *path, unsigned long flags, int atflag);
5814 PRE(sys_chflagsat)
5816 PRINT("sys_chglagsat ( %" FMT_REGWORD "d, %#" FMT_REGWORD "x, %" FMT_REGWORD "u, %" FMT_REGWORD "d )",
5817 SARG1, ARG2, ARG3, SARG4);
5818 PRE_REG_READ4(int, "chflagsat", int, fd, const char *, path, unsigned long, flags, int, atflag);
5819 PRE_MEM_RASCIIZ("chflagsat(path)", ARG2);
5822 // SYS_accept4 541
5823 // int accept4(int s, struct sockaddr * restrict addr,
5824 // socklen_t * restrict addrlen, int flags);
5825 PRE(sys_accept4)
5827 *flags |= SfMayBlock;
5828 PRINT("sys_accept4 ( %" FMT_REGWORD "u, %#" FMT_REGWORD "x, %" FMT_REGWORD "u, %" FMT_REGWORD "u)",ARG1,ARG2,ARG3,ARG4);
5829 PRE_REG_READ4(int, "accept4",
5830 int, s, struct sockaddr *, addr, int, *addrlen, int, flags);
5831 ML_(generic_PRE_sys_accept)(tid, ARG1,ARG2,ARG3);
5834 POST(sys_accept4)
5836 SysRes r;
5837 vg_assert(SUCCESS);
5838 r = ML_(generic_POST_sys_accept)(tid, VG_(mk_SysRes_Success)(RES),
5839 ARG1,ARG2,ARG3);
5840 SET_STATUS_from_SysRes(r);
5843 // SYS_pipe2 542
5844 // int pipe2(int fildes[2], int flags);
5845 PRE(sys_pipe2)
5847 PRINT("sys_pipe2 ( %#" FMT_REGWORD "x, %" FMT_REGWORD "u )", ARG1, ARG2);
5848 PRE_REG_READ2(int, "pipe2",
5849 int *, fildes, int, flags);
5850 PRE_MEM_WRITE("pipe2(fildes)", ARG1, 2 * sizeof(int));
5854 POST(sys_pipe2)
5856 int *fildes;
5858 if (RES != 0)
5859 return;
5861 POST_MEM_WRITE(ARG1, 2 * sizeof(int));
5862 fildes = (int *)ARG1;
5864 if (!ML_(fd_allowed)(fildes[0], "pipe2", tid, True) ||
5865 !ML_(fd_allowed)(fildes[1], "pipe2", tid, True)) {
5866 VG_(close)(fildes[0]);
5867 VG_(close)(fildes[1]);
5868 SET_STATUS_Failure( VKI_EMFILE );
5869 } else if (VG_(clo_track_fds)) {
5870 ML_(record_fd_open_nameless)(tid, fildes[0]);
5871 ML_(record_fd_open_nameless)(tid, fildes[1]);
5875 // SYS_aio_mlock 543
5876 // int aio_mlock(struct aiocb *iocb);
5877 PRE(sys_aio_mlock)
5879 PRINT("sys_aio_mlock ( %#" FMT_REGWORD "x )", ARG1);
5880 PRE_REG_READ1(int, "aio_mlock", struct vki_aiocb *, iocb);
5881 PRE_MEM_READ("aio_mlock(iocb", ARG1, sizeof(struct vki_aiocb));
5882 // this locks memory into RAM, don't think that we need to do
5883 // anything extra
5886 // SYS_procctl 544
5887 // amd64 / x86
5889 // SYS_ppoll 545
5890 // int ppoll(struct pollfd fds[], nfds_t nfds,
5891 // const struct timespec * restrict timeout,
5892 // const sigset_t * restrict newsigmask);
5893 PRE(sys_ppoll)
5895 PRINT("sys_ppoll ( %#" FMT_REGWORD "x, %" FMT_REGWORD "u, %#" FMT_REGWORD
5896 "x, %#" FMT_REGWORD "x )",
5897 ARG1, ARG2, ARG3, ARG4);
5898 UInt i;
5899 struct vki_pollfd* fds = (struct vki_pollfd *)(Addr)ARG1;
5900 *flags |= SfMayBlock | SfPostOnFail;
5901 PRE_REG_READ4(long, "ppoll",
5902 struct vki_pollfd *, fds, unsigned int, nfds,
5903 struct vki_timespec *, timeout, vki_sigset_t *, newsigmask);
5905 if (ML_(safe_to_deref)(fds, ARG2*sizeof(struct vki_pollfd))) {
5906 for (i = 0; i < ARG2; i++) {
5907 PRE_MEM_READ( "ppoll(fds.fd)",
5908 (Addr)(&fds[i].fd), sizeof(fds[i].fd) );
5909 PRE_MEM_READ( "ppoll(fds.events)",
5910 (Addr)(&fds[i].events), sizeof(fds[i].events) );
5911 PRE_MEM_WRITE( "ppoll(fds.revents)",
5912 (Addr)(&fds[i].revents), sizeof(fds[i].revents) );
5916 if (ARG3) {
5917 PRE_MEM_READ( "ppoll(timeout)", ARG3,
5918 sizeof(struct vki_timespec) );
5920 if (ARG4) {
5921 PRE_MEM_READ( "ppoll(newsigmask)", ARG4, sizeof(vki_sigset_t));
5922 ARG4 = ML_(make_safe_mask)("syswrap.ppoll.1", (Addr)ARG4);
5926 POST(sys_ppoll)
5928 if (SUCCESS && ((Word)RES != -1)) {
5929 UInt i;
5930 struct vki_pollfd* ufds = (struct vki_pollfd *)(Addr)ARG1;
5931 for (i = 0; i < ARG2; i++)
5932 POST_MEM_WRITE( (Addr)(&ufds[i].revents), sizeof(ufds[i].revents) );
5934 ML_(free_safe_mask) ( (Addr)ARG4 );
5937 // SYS_futimens 546
5938 // int futimens(int fd, const struct timespec times[2]);
5939 PRE(sys_futimens)
5941 PRINT("sys_futimens ( %" FMT_REGWORD "d, %#" FMT_REGWORD "x )", SARG1, ARG2);
5942 PRE_REG_READ2(int, "futimens", int, fd, const struct timespec *, times);
5943 PRE_MEM_READ("futimens(times)", ARG2, 2*sizeof(struct vki_timespec));
5946 // SYS_utimensat 547
5947 // int utimensat(int fd, const char *path, const struct timespec times[2],
5948 // int flag);
5949 PRE(sys_utimensat)
5951 PRINT("sys_utimensat ( %" FMT_REGWORD "d, %#" FMT_REGWORD "x, %#" FMT_REGWORD "x, %" FMT_REGWORD "d )",
5952 SARG1, ARG2, ARG3, SARG4);
5953 PRE_REG_READ4(int, "utimensat", int, fd, const char *,path, const struct timespec *, times,
5954 int, flag);
5955 PRE_MEM_RASCIIZ("utimensat(path)", ARG2);
5956 PRE_MEM_READ("utimensat(times)", ARG3, 2*sizeof(struct vki_timespec));
5959 // SYS_fdatasync 550
5960 // int fdatasync(int fd);
5961 PRE(sys_fdatasync)
5963 PRINT("sys_fdatasync ( %" FMT_REGWORD "d )",SARG1);
5964 PRE_REG_READ1(int, "fdatasync", int, fd);
5967 #if (FREEBSD_VERS >= FREEBSD_12)
5968 // SYS_fstat 551
5969 // int fstat(int fd, struct stat *sb);
5970 PRE(sys_fstat)
5972 PRINT("sys_fstat ( %" FMT_REGWORD "d, %#" FMT_REGWORD "x )",SARG1,ARG2);
5973 PRE_REG_READ2(int, "fstat", int, fd, struct stat *, sb);
5974 PRE_MEM_WRITE( "fstat(sb)", ARG2, sizeof(struct vki_stat) );
5977 POST(sys_fstat)
5979 POST_MEM_WRITE( ARG2, sizeof(struct vki_stat) );
5982 // SYS_fstatat 552
5983 // int fstatat(int fd, const char *path, struct stat *sb, int flag);
5984 PRE(sys_fstatat)
5986 PRINT("sys_fstatat ( %" FMT_REGWORD "d, %#" FMT_REGWORD "x(%s), %#" FMT_REGWORD "x, %" FMT_REGWORD "d )", SARG1,ARG2,(char*)ARG2,ARG3,SARG4);
5987 PRE_REG_READ4(int, "fstatat",
5988 int, fd, const char *, path, struct stat *, sb, int, flag);
5989 PRE_MEM_RASCIIZ( "fstatat(path)", ARG2 );
5990 PRE_MEM_WRITE( "fstatat(sb)", ARG3, sizeof(struct vki_stat) );
5993 POST(sys_fstatat)
5995 POST_MEM_WRITE( ARG3, sizeof(struct vki_stat) );
5997 // SYS_fhstat 553
5998 // int fhstat(const fhandle_t *fhp, struct stat *sb);
5999 PRE(sys_fhstat)
6001 PRINT("sys_fhstat ( %#" FMT_REGWORD "x, %#" FMT_REGWORD "x )",ARG1,ARG2);
6002 PRE_REG_READ2(long, "fhstat", const vki_fhandle_t *, fhp, struct stat *, sb);
6003 PRE_MEM_READ( "fhstat(fhp)", ARG1, sizeof(struct vki_fhandle) );
6004 PRE_MEM_WRITE( "fhstat(sb)", ARG2, sizeof(struct vki_stat) );
6007 POST(sys_fhstat)
6009 POST_MEM_WRITE( ARG2, sizeof(struct vki_stat) );
6012 // SYS_getdirentries 554
6013 // ssize_t getdirentries(int fd, char *buf, size_t nbytes, off_t *basep);
6014 PRE(sys_getdirentries)
6016 *flags |= SfMayBlock;
6017 PRINT("sys_getdirentries ( %" FMT_REGWORD "d, %#" FMT_REGWORD "x, %" FMT_REGWORD "u, %#" FMT_REGWORD "x )", SARG1,ARG2,ARG3,ARG4);
6018 PRE_REG_READ4(ssize_t, "getdirentries",
6019 int, fd, char *, buf,
6020 size_t, nbytes,
6021 off_t *, basep);
6022 PRE_MEM_WRITE( "getdirentries(buf)", ARG2, ARG3 );
6023 if (ARG4)
6024 PRE_MEM_WRITE("getdirentries(basep)", ARG4, sizeof (vki_off_t));
6027 POST(sys_getdirentries)
6029 vg_assert(SUCCESS);
6030 if (RES > 0) {
6031 POST_MEM_WRITE( ARG2, RES );
6032 if ( ARG4 != 0 )
6033 POST_MEM_WRITE( ARG4, sizeof (vki_off_t));
6037 // SYS_statfs 555
6038 // int statfs(const char *path, struct statfs *buf);
6039 PRE(sys_statfs)
6041 PRINT("sys_statfs ( %#" FMT_REGWORD "x(%s), %#" FMT_REGWORD "x )",ARG1,(char *)ARG1,ARG2);
6042 PRE_REG_READ2(int, "statfs", const char *, path, struct statfs *, buf);
6043 PRE_MEM_RASCIIZ( "statfs(path)", ARG1 );
6044 PRE_MEM_WRITE( "statfs(buf)", ARG2, sizeof(struct vki_statfs) );
6047 POST(sys_statfs)
6049 POST_MEM_WRITE( ARG2, sizeof(struct vki_statfs) );
6052 // SYS_fstatfs 556
6053 // int fstatfs(int fd, struct statfs *buf);
6054 PRE(sys_fstatfs)
6056 PRINT("sys_fstatfs ( %" FMT_REGWORD "d, %#" FMT_REGWORD "x )",SARG1,ARG2);
6057 PRE_REG_READ2(int, "fstatfs",
6058 int, fd, struct vki_statfs *, buf);
6059 PRE_MEM_WRITE( "fstatfs(buf)", ARG2, sizeof(struct vki_statfs) );
6062 POST(sys_fstatfs)
6064 POST_MEM_WRITE( ARG2, sizeof(struct vki_statfs) );
6067 // SYS_getfsstat 557
6068 // int getfsstat(struct statfs *buf, long bufsize, int mode);
6069 PRE(sys_getfsstat)
6071 PRINT("sys_getfsstat ( %#" FMT_REGWORD "x, %" FMT_REGWORD "u, %" FMT_REGWORD "u )",ARG1,ARG2,ARG3);
6072 PRE_REG_READ3(long, "getfsstat", struct vki_statfs *, buf, long, len, int, flags);
6073 PRE_MEM_WRITE( "getfsstat(buf)", ARG1, ARG2 );
6076 POST(sys_getfsstat)
6078 vg_assert(SUCCESS);
6079 if ((Word)RES != -1) {
6080 POST_MEM_WRITE( ARG1, RES * sizeof(struct vki_statfs) );
6084 // SYS_fhstatfs 558
6085 // int fhstatfs(const fhandle_t *fhp, struct statfs *buf);
6086 PRE(sys_fhstatfs)
6088 PRINT("sys_fhstatfs ( %#" FMT_REGWORD "x, %#" FMT_REGWORD "x )",ARG1,ARG2);
6089 PRE_REG_READ2(long, "fhstatfs",
6090 struct fhandle *, fhp, struct statfs *, buf);
6091 PRE_MEM_READ( "fhstatfs(fhp)", ARG1, sizeof(struct vki_fhandle) );
6092 PRE_MEM_WRITE( "fhstatfs(buf)", ARG2, sizeof(struct vki_statfs) );
6095 POST(sys_fhstatfs)
6097 POST_MEM_WRITE( ARG2, sizeof(struct vki_statfs) );
6100 // SYS_mknodat 559
6101 // int mknodat(int fd, const char *path, mode_t mode, dev_t dev);
6102 PRE(sys_mknodat)
6104 PRINT("sys_mknodat ( %" FMT_REGWORD "u, %#" FMT_REGWORD "x(%s), 0x%" FMT_REGWORD "x, 0x%" FMT_REGWORD "x )", ARG1,ARG2,(char*)ARG2,ARG3,ARG4 );
6105 PRE_REG_READ4(long, "mknodat",
6106 int, fd, const char *, path, vki_mode_t, mode, vki_dev_t, dev);
6107 PRE_MEM_RASCIIZ( "mknodat(pathname)", ARG2 );
6110 // SYS_kevent 560
6111 // int kevent(int kq, const struct kevent *changelist, int nchanges,
6112 // struct kevent *eventlist, int nevents,
6113 // const struct timespec *timeout);
6114 PRE(sys_kevent)
6116 PRINT("sys_kevent ( %" FMT_REGWORD "u, %#" FMT_REGWORD "x, %" FMT_REGWORD "u, %#" FMT_REGWORD "x, %" FMT_REGWORD "u, %#" FMT_REGWORD "x )\n", ARG1,ARG2,ARG3,ARG4,ARG5,ARG6);
6117 PRE_REG_READ6(int, "kevent",
6118 int, kq, struct vki_kevent *, changelist, int, nchanges,
6119 struct vki_kevent *, eventlist, int, nevents,
6120 struct timespec *, timeout);
6121 if (ARG2 != 0 && ARG3 != 0)
6122 PRE_MEM_READ( "kevent(changelist)", ARG2, sizeof(struct vki_kevent)*ARG3 );
6123 if (ARG4 != 0 && ARG5 != 0)
6124 PRE_MEM_WRITE( "kevent(eventlist)", ARG4, sizeof(struct vki_kevent)*ARG5);
6125 if (ARG5 != 0)
6126 *flags |= SfMayBlock;
6127 if (ARG6 != 0)
6128 PRE_MEM_READ( "kevent(timeout)",
6129 ARG6, sizeof(struct vki_timespec));
6132 POST(sys_kevent)
6134 vg_assert(SUCCESS);
6135 if ((Word)RES != -1) {
6136 if (ARG4 != 0)
6137 POST_MEM_WRITE( ARG4, sizeof(struct vki_kevent)*RES) ;
6141 // SYS_cpuset_getdomain 561
6142 // x86 / amd64
6144 // SYS_cpuset_setdomain 562
6145 // x86 / amd64
6147 // SYS_getrandom 563
6148 // ssize_t getrandom(void *buf, size_t buflen, unsigned int flags);
6149 PRE(sys_getrandom)
6151 PRINT("sys_getrandom ( %#" FMT_REGWORD "x, %" FMT_REGWORD "u, %" FMT_REGWORD "u )", ARG1, ARG2, ARG3);
6152 PRE_REG_READ3(ssize_t, "getrandom",
6153 void *, buf, vki_size_t, buflen, unsigned int, flags);
6154 PRE_MEM_WRITE( "getrandom(buf)", ARG1, ARG2 );
6155 if ((ARG3 & VKI_GRND_NONBLOCK) == 0) {
6156 *flags |= SfMayBlock;
6160 POST(sys_getrandom)
6162 POST_MEM_WRITE( ARG1, ARG2 );
6165 // SYS_getfhat 564
6166 // int getfhat(int fd, const char *path, fhandle_t *fhp, int flag);
6167 PRE(sys_getfhat)
6169 PRINT("sys_getfhat ( %" FMT_REGWORD "d, %#" FMT_REGWORD "x, %" FMT_REGWORD "x, %" FMT_REGWORD "d ", SARG1, ARG2, ARG3, SARG4);
6170 PRE_REG_READ4(int, "getfhat", int, fd, const char*, path, vki_fhandle_t*, fhp, int, flag);
6171 PRE_MEM_RASCIIZ( "getfhat(path)", ARG2 );
6172 PRE_MEM_WRITE("getfhat(fhp)", ARG3, sizeof(vki_fhandle_t));
6175 POST(sys_getfhat)
6177 POST_MEM_WRITE(ARG3, sizeof(vki_fhandle_t));
6180 // SYS_fhlink 565
6181 // int fhlink(fhandle_t *fhp, const char *to);
6182 PRE(sys_fhlink)
6184 PRINT("sys_fhlink ( %#" FMT_REGWORD "x, %#" FMT_REGWORD "x )", ARG1, ARG2);
6185 PRE_REG_READ2(int, "fhlink", vki_fhandle_t *, fhp, const char *, to);
6186 PRE_MEM_READ( "fhlink(fhp)", ARG1, sizeof(vki_fhandle_t));
6187 PRE_MEM_RASCIIZ("fhlink(buf)", ARG2);
6190 // SYS_fhlinkat 566
6191 // int fhlinkat(fhandle_t *fhp, int tofd, const char *to);
6192 PRE(sys_fhlinkat)
6194 PRINT("sys_fhlinkat ( %#" FMT_REGWORD "x, %" FMT_REGWORD "d, %#" FMT_REGWORD "xu ", ARG1, SARG2, ARG3);
6195 PRE_REG_READ3(int, "fhlinkat", vki_fhandle_t *, fhp, int, tofd, const char *, to);
6196 PRE_MEM_READ( "fhlinkat(fhp)", ARG1, sizeof(vki_fhandle_t));
6197 PRE_MEM_RASCIIZ("fhreadlink(to)", ARG3);
6200 // SYS_fhreadlink 567
6201 // int fhreadlink(fhandle_t *fhp, char *buf, size_t bufsize);
6202 PRE(sys_fhreadlink)
6204 PRINT("sys_fhreadlink ( %#" FMT_REGWORD "x, %" FMT_REGWORD "x, %" FMT_REGWORD "u ", ARG1, ARG2, ARG3);
6205 PRE_REG_READ3(int, "fhreadlink", vki_fhandle_t *, fhp, char *, buf, size_t, bufsize);
6206 PRE_MEM_READ( "fhreadlink(fhp)", ARG1, sizeof(vki_fhandle_t));
6207 PRE_MEM_WRITE("fhreadlink(buf)", ARG2, ARG3);
6210 POST(sys_fhreadlink)
6212 POST_MEM_WRITE(ARG2, ARG3);
6215 #endif
6217 #if (FREEBSD_VERS >= FREEBSD_12_2)
6219 // SYS_unlinkat 568
6220 // int funlinkat(int dfd, const char *path, int fd, int flag);
6221 PRE(sys_funlinkat)
6223 *flags |= SfMayBlock;
6224 PRINT("sys_funlinkat ( %" FMT_REGWORD "d, %#" FMT_REGWORD "x(%s), %" FMT_REGWORD "u, %" FMT_REGWORD"u )",
6225 SARG1, ARG2, (char*)ARG2, ARG4, ARG5);
6226 PRE_REG_READ4(int, "funlinkat", int, dfd, const char *, path, int, fd, int, flag);
6227 PRE_MEM_RASCIIZ( "funlinkat(path)", ARG2 );
6230 // SYS_copy_file_range 569
6231 // ssize_t copy_file_range(int infd, off_t *inoffp, int outfd, off_t *outoffp,
6232 // size_t len, unsigned int flags);
6233 PRE(sys_copy_file_range)
6235 PRINT("sys_copy_file_range (%" FMT_REGWORD"d, %#" FMT_REGWORD "x, %" FMT_REGWORD "d, %#" FMT_REGWORD "x(%s), %" FMT_REGWORD "d, %" FMT_REGWORD "d)",
6236 SARG1, ARG2, SARG3, ARG4, (char*)ARG4, SARG5, SARG6);
6238 PRE_REG_READ6(vki_ssize_t, "copy_file_range",
6239 int, "infd",
6240 vki_off_t *, "inoffp",
6241 int, "outfd",
6242 vki_off_t *, "outoffp",
6243 vki_size_t, "len",
6244 unsigned int, "flags");
6246 /* File descriptors are "specially" tracked by valgrind.
6247 valgrind itself uses some, so make sure someone didn't
6248 put in one of our own... */
6249 if (!ML_(fd_allowed)(ARG1, "copy_file_range(infd)", tid, False) ||
6250 !ML_(fd_allowed)(ARG3, "copy_file_range(infd)", tid, False)) {
6251 SET_STATUS_Failure( VKI_EBADF );
6252 } else {
6253 /* Now see if the offsets are defined. PRE_MEM_READ will
6254 double check it can dereference them. */
6255 if (ARG2 != 0)
6256 PRE_MEM_READ( "copy_file_range(inoffp)", ARG2, sizeof(vki_off_t));
6257 if (ARG4 != 0)
6258 PRE_MEM_READ( "copy_file_range(outoffp)", ARG4, sizeof(vki_off_t));
6263 // SYS___sysctlbyname 570
6264 // int sysctlbyname(const char *name, void *oldp, size_t *oldlenp,
6265 // const void *newp, size_t newlen);
6266 // syscalls.master:
6267 // int __sysctlbyname(_In_reads_(namelen) const char *name, size_t namelen,
6268 // _Out_writes_bytes_opt_(*oldlenp) void *old,
6269 // _Inout_opt_ size_t *oldlenp, _In_reads_bytes_opt_(newlen) void *new,
6270 // size_t newlen );
6271 PRE(sys___sysctlbyname)
6273 // this is very much like SYS___sysctl, instead of having an OID with length
6274 // here threre is an ascii string with length
6275 // @todo PJF factor out the common functionality of the two
6276 PRINT("sys___sysctlbyname ( %#" FMT_REGWORD "x(%s), %#" FMT_REGWORD "x, %#" FMT_REGWORD "x, %#" FMT_REGWORD "x, %" FMT_REGWORD "u )", ARG1,(const char*)ARG1,ARG2,ARG3,ARG4,ARG5 );
6277 PRE_REG_READ6(int, "__sysctlbyname", const char *, name, vki_size_t, namelen,
6278 void *, oldp, vki_size_t *, oldlenp,
6279 void *, newp, vki_size_t, newlen);
6282 const char* name = (const char*)ARG1;
6283 if (ML_(safe_to_deref)(name, sizeof("kern.ps_strings")) &&
6284 VG_(strcmp)(name, "kern.ps_strings") == 0) {
6285 if (sysctl_kern_ps_strings((SizeT*)ARG3, (SizeT*)ARG4)) {
6286 SET_STATUS_Success(0);
6290 if (ML_(safe_to_deref)(name, sizeof("kern.usrstack")) &&
6291 VG_(strcmp)(name, "kern.usrstack") == 0) {
6292 sysctl_kern_usrstack((SizeT*)ARG3, (SizeT*)ARG4);
6293 SET_STATUS_Success(0);
6296 // read number of ints specified in ARG2 from mem pointed to by ARG1
6297 PRE_MEM_READ("__sysctlbyname(name)", (Addr)ARG1, ARG2 * sizeof(int));
6299 // if 'newp' is not NULL can read namelen bytes from that addess
6300 if (ARG5 != (UWord)NULL)
6301 PRE_MEM_READ("__sysctlbyname(newp)", (Addr)ARG5, ARG6);
6303 // there are two scenarios for oldlenp/oldp
6304 // 1. oldval is NULL and oldlenp is non-NULL
6305 // this is a query of oldlenp so oldlenp will be written
6306 // 2. Both are non-NULL
6307 // this is a query of oldp, oldlenp will be read and oldp will
6308 // be written
6310 // is oldlenp is not NULL, can write
6311 if (ARG4 != (UWord)NULL) {
6312 if (ARG3 != (UWord)NULL) {
6313 // case 2 above
6314 PRE_MEM_READ("__sysctlbyname(oldlenp)", (Addr)ARG4, sizeof(vki_size_t));
6315 if (ML_(safe_to_deref)((void*)(Addr)ARG4, sizeof(vki_size_t))) {
6316 PRE_MEM_WRITE("__sysctlbyname(oldp)", (Addr)ARG3, *(vki_size_t *)ARG4);
6317 } else {
6318 VG_(dmsg)("Warning: Bad oldlenp address %p in sysctlbyname\n",
6319 (void *)(Addr)ARG4);
6320 SET_STATUS_Failure ( VKI_EFAULT );
6322 } else {
6323 // case 1 above
6324 PRE_MEM_WRITE("__sysctlbyname(oldlenp)", (Addr)ARG4, sizeof(vki_size_t));
6329 POST(sys___sysctlbyname)
6331 if (ARG4 != (UWord)NULL) {
6332 if (ARG3 != (UWord)NULL) {
6333 //POST_MEM_WRITE((Addr)ARG4, sizeof(vki_size_t));
6334 POST_MEM_WRITE((Addr)ARG3, *(vki_size_t *)ARG4);
6335 } else
6336 POST_MEM_WRITE((Addr)ARG4, sizeof(vki_size_t));
6340 #endif // (FREEBSD_VERS >= FREEBSD_12_2)
6342 #if (FREEBSD_VERS >= FREEBSD_13_0)
6344 // SYS_shm_open2 571
6345 // from syscalls.master
6346 // int shm_open2(_In_z_ const char *path,
6347 // int flags,
6348 // mode_t mode,
6349 // int shmflags,
6350 // _In_z_ const char *name);
6351 PRE(sys_shm_open2)
6353 PRE_REG_READ5(int, "shm_open2",
6354 const char *, path, int, flags, vki_mode_t, mode, int, shmflags, const char*, name);
6355 if (ARG1 == VKI_SHM_ANON) {
6356 PRINT("sys_shm_open2(%#" FMT_REGWORD "x(SHM_ANON), %" FMT_REGWORD "u, %hu, %d, %#" FMT_REGWORD "x(%s))",
6357 ARG1, ARG2, (vki_mode_t)ARG3, (Int)ARG4, ARG5, (HChar*)ARG5);
6358 } else {
6359 PRINT("sys_shm_open2(%#" FMT_REGWORD "x(%s), %" FMT_REGWORD "u, %hu, %d, %#" FMT_REGWORD "x(%s))",
6360 ARG1, (HChar *)ARG1, ARG2, (vki_mode_t)ARG3, (Int)ARG4, ARG5, (HChar*)ARG5);
6361 PRE_MEM_RASCIIZ( "shm_open2(path)", ARG1 );
6364 if (ARG5) {
6365 PRE_MEM_RASCIIZ( "shm_open2(name)", ARG5 );
6367 *flags |= SfMayBlock;
6370 POST(sys_shm_open2)
6372 vg_assert(SUCCESS);
6373 if (!ML_(fd_allowed)(RES, "shm_open2", tid, True)) {
6374 VG_(close)(RES);
6375 SET_STATUS_Failure( VKI_EMFILE );
6376 } else {
6377 if (VG_(clo_track_fds))
6378 ML_(record_fd_open_with_given_name)(tid, RES, (HChar*)ARG1);
6382 // SYS_sigfastblock
6383 // int sigfastblock(int cmd, void *ptr);
6384 PRE(sys_sigfastblock)
6386 PRINT("sys_sigfastblock ( %" FMT_REGWORD "d, %#" FMT_REGWORD "x )", SARG1, ARG2);
6387 PRE_REG_READ2(int, "sigfasblock", int, cmd, void*, ptr);
6390 // SYS___realpathat 574
6391 // from syscalls.master
6392 // int __realpathat(int fd,
6393 // _In_z_ const char *path,
6394 // _Out_writes_z_(size) char *buf,
6395 // size_t size,
6396 // int flags)
6397 PRE(sys___realpathat)
6399 PRINT("sys___realpathat ( %" FMT_REGWORD "d, %#" FMT_REGWORD "x(%s), %#" FMT_REGWORD "x, %" FMT_REGWORD "u %" FMT_REGWORD "d )",
6400 SARG1,ARG2,(const char*)ARG2,ARG3,ARG4,SARG5 );
6401 PRE_REG_READ5(int, "__realpathat", int, fd, const char *, path,
6402 char *, buf, vki_size_t, size, int, flags);
6403 PRE_MEM_RASCIIZ("__realpathat(path)", (Addr)ARG2);
6404 PRE_MEM_WRITE("__realpathat(buf)", (Addr)ARG3, ARG4);
6407 POST(sys___realpathat)
6409 POST_MEM_WRITE((Addr)ARG3, ARG4);
6412 // SYS___specialfd 577
6413 // syscalls.master
6414 // int __specialfd(int type,
6415 // _In_reads_bytes_(len) const void *req,
6416 // size_t len);
6417 PRE(sys___specialfd)
6419 PRINT("sys___specialfd ( %" FMT_REGWORD "d, %#" FMT_REGWORD "x(%s), %" FMT_REGWORD "u )",
6420 SARG1,ARG2,(const char*)ARG2,ARG3 );
6421 PRE_REG_READ3(int, "__specialfd", int, type, const void *, req, vki_size_t, len);
6422 PRE_MEM_READ("__specialfd(req)", (Addr)ARG2, ARG3);
6425 #endif // (FREEBSD_VERS >= FREEBSD_13_0)
6427 #if (FREEBSD_VERS >= FREEBSD_13_1)
6429 // SYS_swapoff 582
6430 // int swapoff(const char *special, u_int flags);
6431 PRE(sys_swapoff)
6433 PRINT("sys_swapoff ( %#" FMT_REGWORD "x(%s), %" FMT_REGWORD "u )", ARG1,(char *)ARG1, ARG2);
6434 PRE_REG_READ2(int, "swapoff", const char *, special, u_int, flags);
6435 PRE_MEM_RASCIIZ( "swapoff(special)", ARG1 );
6438 #endif
6440 #undef PRE
6441 #undef POST
6443 const SyscallTableEntry ML_(syscall_table)[] = {
6444 // syscall (handled specially) // 0
6445 BSDX_(__NR_exit, sys_exit), // 1
6446 BSDX_(__NR_fork, sys_fork), // 2
6447 GENXY(__NR_read, sys_read), // 3
6449 GENX_(__NR_write, sys_write), // 4
6450 GENXY(__NR_open, sys_open), // 5
6451 GENXY(__NR_close, sys_close), // 6
6452 GENXY(__NR_wait4, sys_wait4), // 7
6454 // 4.3 creat 8
6455 GENX_(__NR_link, sys_link), // 9
6456 GENX_(__NR_unlink, sys_unlink), // 10
6457 // obsol execv 11
6459 GENX_(__NR_chdir, sys_chdir), // 12
6460 GENX_(__NR_fchdir, sys_fchdir), // 13
6461 GENX_(__NR_freebsd11_mknod, sys_mknod), // 14
6462 GENX_(__NR_chmod, sys_chmod), // 15
6464 GENX_(__NR_chown, sys_chown), // 16
6465 GENX_(__NR_break, sys_brk), // 17
6466 // freebsd 4 getfsstat 18
6467 // 4.3 lseek 19
6469 GENX_(__NR_getpid, sys_getpid), // 20
6470 BSDX_(__NR_mount, sys_mount), // 21
6471 BSDX_(__NR_unmount, sys_unmount), // 22
6472 GENX_(__NR_setuid, sys_setuid), // 23
6474 GENX_(__NR_getuid, sys_getuid), // 24
6475 GENX_(__NR_geteuid, sys_geteuid), // 25
6476 BSDXY(__NR_ptrace, sys_ptrace), // 26
6477 BSDXY(__NR_recvmsg, sys_recvmsg), // 27
6479 BSDX_(__NR_sendmsg, sys_sendmsg), // 28
6480 BSDXY(__NR_recvfrom, sys_recvfrom), // 29
6481 BSDXY(__NR_accept, sys_accept), // 30
6482 BSDXY(__NR_getpeername, sys_getpeername), // 31
6484 BSDXY(__NR_getsockname, sys_getsockname), // 32
6485 GENX_(__NR_access, sys_access), // 33
6486 BSDX_(__NR_chflags, sys_chflags), // 34
6487 BSDX_(__NR_fchflags, sys_fchflags), // 35
6489 GENX_(__NR_sync, sys_sync), // 36
6490 GENX_(__NR_kill, sys_kill), // 37
6491 // 4.3 stat 38
6492 GENX_(__NR_getppid, sys_getppid), // 39
6494 // 4.3 lstat 40
6495 GENXY(__NR_dup, sys_dup), // 41
6497 BSDXY(__NR_freebsd10_pipe, sys_pipe), // 42
6498 GENX_(__NR_getegid, sys_getegid), // 43
6500 GENX_(__NR_profil, sys_ni_syscall), // 44
6501 GENX_(__NR_ktrace, sys_ni_syscall), // 45
6502 // 4.3 sigaction 46
6503 GENX_(__NR_getgid, sys_getgid), // 47
6505 // 4.3 sigaction (int sigset) 48
6506 BSDXY(__NR_getlogin, sys_getlogin), // 49
6507 BSDX_(__NR_setlogin, sys_setlogin), // 50
6508 GENX_(__NR_acct, sys_acct), // 51
6510 // 4.3 sigpending 52
6511 GENXY(__NR_sigaltstack, sys_sigaltstack), // 53
6512 BSDXY(__NR_ioctl, sys_ioctl), // 54
6513 BSDX_(__NR_reboot, sys_reboot), // 55
6515 BSDX_(__NR_revoke, sys_revoke), // 56
6516 GENX_(__NR_symlink, sys_symlink), // 57
6517 GENX_(__NR_readlink, sys_readlink), // 58
6518 GENX_(__NR_execve, sys_execve), // 59
6520 GENX_(__NR_umask, sys_umask), // 60
6521 GENX_(__NR_chroot, sys_chroot), // 61
6522 // 4.3 fstat 62
6523 // 4.3 getgerninfo 63
6525 // 4.3 getpagesize 64
6526 GENX_(__NR_msync, sys_msync), // 65
6527 BSDX_(__NR_vfork, sys_vfork), // 66
6528 // obsol vread 67
6530 // obsol vwrite 68
6531 BSDX_(__NR_sbrk, sys_sbrk), // 69
6532 // not implemented in OS sstk 70
6533 // 4.3 mmap 71
6535 // freebsd11 vadvise 72
6536 GENXY(__NR_munmap, sys_munmap), // 73
6537 GENXY(__NR_mprotect, sys_mprotect), // 74
6538 GENX_(__NR_madvise, sys_madvise), // 75
6540 // obsol vhangup 76
6541 // obsol vlimit 77
6542 GENXY(__NR_mincore, sys_mincore), // 78
6543 GENXY(__NR_getgroups, sys_getgroups), // 79
6545 GENX_(__NR_setgroups, sys_setgroups), // 80
6546 GENX_(__NR_getpgrp, sys_getpgrp), // 81
6547 GENX_(__NR_setpgid, sys_setpgid), // 82
6548 GENXY(__NR_setitimer, sys_setitimer), // 83
6550 // 4.3 wait 84
6551 BSDX_(__NR_swapon, sys_swapon), // 85
6552 GENXY(__NR_getitimer, sys_getitimer), // 86
6553 // 4.3 gethostname 87
6555 // 4.3 sethostname 88
6556 BSDX_(__NR_getdtablesize, sys_getdtablesize), // 89
6557 GENXY(__NR_dup2, sys_dup2), // 90
6559 BSDXY(__NR_fcntl, sys_fcntl), // 92
6560 GENX_(__NR_select, sys_select), // 93
6561 GENX_(__NR_fsync, sys_fsync), // 95
6563 GENX_(__NR_setpriority, sys_setpriority), // 96
6564 BSDXY(__NR_socket, sys_socket), // 97
6565 BSDX_(__NR_connect, sys_connect), // 98
6566 // 4.3 accept 99
6568 GENX_(__NR_getpriority, sys_getpriority), // 100
6569 // 4.3 send 101
6570 // 4.3 recv 102
6571 // 4.3 sigreturn 103
6573 BSDX_(__NR_bind, sys_bind), // 104
6574 BSDX_(__NR_setsockopt, sys_setsockopt), // 105
6575 BSDX_(__NR_listen, sys_listen), // 106
6576 // obsol vtimes 107
6578 // 4.3 sigvec 108
6579 // 4.3 sigblock 109
6580 // 4.3 sigsetmask 110
6581 // 4.3 sigsuspend 111
6583 // 4.3 sigstack 112
6584 // 4.3 recvmsg 113
6585 // 4.3 sendmsg 114
6586 // 4.3 vtrace 115
6588 GENXY(__NR_gettimeofday, sys_gettimeofday), // 116
6589 GENXY(__NR_getrusage, sys_getrusage), // 117
6590 BSDXY(__NR_getsockopt, sys_getsockopt), // 118
6592 GENXY(__NR_readv, sys_readv), // 120
6593 GENX_(__NR_writev, sys_writev), // 121
6594 GENX_(__NR_settimeofday, sys_settimeofday), // 122
6595 GENX_(__NR_fchown, sys_fchown), // 123
6597 GENX_(__NR_fchmod, sys_fchmod), // 124
6598 // 4.3 recvfrom 125
6599 GENX_(__NR_setreuid, sys_setreuid), // 126
6600 GENX_(__NR_setregid, sys_setregid), // 127
6602 GENX_(__NR_rename, sys_rename), // 128
6603 // 4.3 truncate 129
6604 // 4.3 ftruncate 130
6605 GENX_(__NR_flock, sys_flock), // 131
6607 BSDX_(__NR_mkfifo, sys_mkfifo), // 132
6608 BSDX_(__NR_sendto, sys_sendto), // 133
6609 BSDX_(__NR_shutdown, sys_shutdown), // 134
6610 BSDXY(__NR_socketpair, sys_socketpair), // 135
6612 GENX_(__NR_mkdir, sys_mkdir), // 136
6613 GENX_(__NR_rmdir, sys_rmdir), // 137
6614 GENX_(__NR_utimes, sys_utimes), // 138
6615 // 4.2 sigreturn 139
6617 BSDXY(__NR_adjtime, sys_adjtime), // 140
6618 // 4.3 getpeername 141
6619 // 4.3 gethostid 142
6620 // 4.3 sethostid 143
6622 // 4.3 getrlimit` 144
6623 // 4.3 setrlimit 145
6624 // 4.3 killpg 146
6625 GENX_(__NR_setsid, sys_setsid), // 147
6627 BSDX_(__NR_quotactl, sys_quotactl), // 148
6628 // 4.3 quota 149
6629 // 4.3 getsockname 150
6630 // bsd/os sem_lock 151
6632 // bsd/os sem_wakeup 152
6633 // bsd/os asyncdaemon 153
6635 // no idea what the following syscall does
6636 // unimp SYS_nlm_syscall 154
6638 // a somewhat complicated NFS API
6639 // takes a flag and a void* that can point to one of
6640 // three different types of struct depending on the flag
6641 // unimp SYS_nfssvc 155
6643 // 4.3 getdirentries 156
6644 // freebsd 4 statfs 157
6645 // freebsd 4 fstatfs 158
6647 BSDXY(__NR_lgetfh, sys_lgetfh), // 160
6648 BSDXY(__NR_getfh, sys_getfh), // 161
6649 #if (FREEBSD_VERS <= FREEBSD_10)
6650 BSDXY(__NR_freebsd4_getdomainname, sys_freebsd4_getdomainname), // 162
6651 BSDX_(__NR_freebsd4_setdomainname, sys_freebsd4_setdomainname), // 163
6652 BSDXY(__NR_freebsd4_uname, sys_freebsd4_uname), // 164
6653 #endif
6654 BSDXY(__NR_sysarch, sys_sysarch), // 165
6655 BSDXY(__NR_rtprio, sys_rtprio), // 166
6657 // the following 3 seem only to be defines in a header
6658 // semsys 169
6659 // msgsys 170
6660 // shmsys 171
6662 #if (FREEBSD_VERS <= FREEBSD_10)
6663 BSDXY(__NR_freebsd6_pread, sys_freebsd6_pread), // 173
6664 BSDX_(__NR_freebsd6_pwrite, sys_freebsd6_pwrite), // 174
6665 #endif
6666 BSDX_(__NR_setfib, sys_setfib), // 175
6668 // @todo PJF this exists on Darwin and Solaris as well
6669 // and it isn't implememented on either
6670 // looking at the manpage there is a rather fearsome
6671 // timex struct with a mixture of ro and rw fields
6672 // BSDXY(__NR_ntp_adjtime, sys_ntp_adjtime), // 176
6674 // bsd/os sfork 177
6675 // bsd/os getdescriptor 178
6676 // bsd/os setdescriptor 179
6678 GENX_(__NR_setgid, sys_setgid), // 181
6679 BSDX_(__NR_setegid, sys_setegid), // 182
6680 BSDX_(__NR_seteuid, sys_seteuid), // 183
6682 // obs lfs_bmapv 184
6683 // obs lfs_markv 185
6684 // obs lfs_segclean 186
6685 // obs lfs_segwait 187
6687 #if (FREEBSD_VERS >= FREEBSD_12)
6688 BSDXY(__NR_freebsd11_stat, sys_freebsd11_stat), // 188
6689 BSDXY(__NR_freebsd11_fstat, sys_freebsd11_fstat), // 189
6690 BSDXY(__NR_freebsd11_lstat, sys_freebsd11_lstat), // 190
6691 #else
6692 BSDXY(__NR_stat, sys_stat), // 188
6693 BSDXY(__NR_fstat, sys_fstat), // 189
6694 BSDXY(__NR_lstat, sys_lstat), // 190
6695 #endif
6696 BSDX_(__NR_pathconf, sys_pathconf), // 191
6697 BSDX_(__NR_fpathconf, sys_fpathconf), // 192
6698 GENXY(__NR_getrlimit, sys_getrlimit), // 194
6699 GENX_(__NR_setrlimit, sys_setrlimit), // 195
6700 #if (FREEBSD_VERS >= FREEBSD_12)
6701 BSDXY(__NR_freebsd11_getdirentries, sys_freebsd11_getdirentries), // 196
6702 #else
6703 BSDXY(__NR_getdirentries, sys_getdirentries), // 196
6704 #endif
6705 #if (FREEBSD_VERS <= FREEBSD_10)
6706 BSDX_(__NR_freebsd6_mmap, sys_freebsd6_mmap), // 197
6707 #endif
6708 // __syscall (handled specially) // 198
6709 #if (FREEBSD_VERS <= FREEBSD_10)
6710 BSDX_(__NR_freebsd6_lseek, sys_freebsd6_lseek), // 199
6711 BSDX_(__NR_freebsd6_truncate, sys_freebsd6_truncate), // 200
6712 BSDX_(__NR_freebsd6_ftruncate, sys_freebsd6_ftruncate), // 201
6713 #endif
6714 BSDXY(__NR___sysctl, sys___sysctl), // 202
6715 GENX_(__NR_mlock, sys_mlock), // 203
6717 GENX_(__NR_munlock, sys_munlock), // 204
6718 BSDX_(__NR_undelete, sys_undelete), // 205
6719 BSDX_(__NR_futimes, sys_futimes), // 206
6720 GENX_(__NR_getpgid, sys_getpgid), // 207
6722 // netbsd newreboot 208
6723 GENXY(__NR_poll, sys_poll), // 209
6725 BSDXY(__NR_freebsd7___semctl, sys_freebsd7___semctl), // 220
6726 BSDX_(__NR_semget, sys_semget), // 221
6727 BSDX_(__NR_semop, sys_semop), // 222
6728 // obs semconfig 223
6730 BSDXY(__NR_freebsd7_msgctl, sys_freebsd7_msgctl), // 224
6731 BSDX_(__NR_msgget, sys_msgget), // 225
6732 BSDX_(__NR_msgsnd, sys_msgsnd), // 226
6733 BSDXY(__NR_msgrcv, sys_msgrcv), // 227
6735 BSDXY(__NR_shmat, sys_shmat), // 228
6736 BSDXY(__NR_freebsd7_shmctl, sys_freebsd7_shmctl), // 229
6737 BSDXY(__NR_shmdt, sys_shmdt), // 230
6738 BSDX_(__NR_shmget, sys_shmget), // 231
6740 BSDXY(__NR_clock_gettime, sys_clock_gettime), // 232
6741 BSDX_(__NR_clock_settime, sys_clock_settime), // 233
6742 BSDXY(__NR_clock_getres, sys_clock_getres), // 234
6743 BSDXY(__NR_ktimer_create, sys_timer_create), // 235
6744 BSDX_(__NR_ktimer_delete, sys_timer_delete), // 236
6745 BSDXY(__NR_ktimer_settime, sys_timer_settime), // 237
6746 BSDXY(__NR_ktimer_gettime, sys_timer_gettime), // 238
6747 BSDX_(__NR_ktimer_getoverrun, sys_timer_getoverrun), // 239
6749 GENXY(__NR_nanosleep, sys_nanosleep), // 240
6750 // unimpl SYS_ffclock_getcounter 241
6751 // unimpl SYS_ffclock_setestimate 242
6752 // unimpl SYS_ffclock_getestimate 243
6754 BSDXY(__NR_clock_nanosleep, sys_clock_nanosleep), // 244
6755 BSDXY(__NR_clock_getcpuclockid2, sys_clock_getcpuclockid2), // 247
6757 // unimpl SYS_ntp_gettime 248
6758 BSDXY(__NR_minherit, sys_minherit), // 250
6759 BSDX_(__NR_rfork, sys_rfork), // 251
6761 // openbsd_poll // 252
6762 BSDX_(__NR_issetugid, sys_issetugid), // 253
6763 GENX_(__NR_lchown, sys_lchown), // 254
6764 BSDXY(__NR_aio_read, sys_aio_read), // 255
6765 BSDXY(__NR_aio_write, sys_aio_write), // 256
6766 BSDX_(__NR_lio_listio, sys_lio_listio), // 257
6768 GENXY(__NR_freebsd11_getdents, sys_getdents), // 272
6769 BSDX_(__NR_lchmod, sys_lchmod), // 274
6770 // netbsd_lchown // 275
6772 BSDX_(__NR_lutimes, sys_lutimes), // 276
6773 // netbsd msync 277
6774 // unimpl SYS_freebsd11_nstat 278
6775 // unimpl SYS_freebsd11_nfstat 279
6777 // unimpl SYS_freebsd11_nlstat 280
6779 BSDXY(__NR_preadv, sys_preadv), // 289
6780 BSDX_(__NR_pwritev, sys_pwritev), // 290
6782 // freebsd 4 fhstatfs 297
6783 BSDXY(__NR_fhopen, sys_fhopen), // 298
6784 #if (FREEBSD_VERS >= FREEBSD_12)
6785 BSDXY(__NR_freebsd11_fhstat, sys_freebsd11_fhstat), // 299
6786 #else
6787 BSDXY(__NR_fhstat, sys_fhstat), // 299
6788 #endif
6790 BSDX_(__NR_modnext, sys_modnext), // 300
6791 BSDXY(__NR_modstat, sys_modstat), // 301
6792 BSDX_(__NR_modfnext, sys_modfnext), // 302
6793 BSDX_(__NR_modfind, sys_modfind), // 303
6795 BSDX_(__NR_kldload, sys_kldload), // 304
6796 BSDX_(__NR_kldunload, sys_kldunload), // 305
6797 BSDX_(__NR_kldfind, sys_kldfind), // 306
6798 BSDX_(__NR_kldnext, sys_kldnext), // 307
6800 BSDXY(__NR_kldstat, sys_kldstat), // 308
6801 BSDX_(__NR_kldfirstmod, sys_kldfirstmod), // 309
6802 GENX_(__NR_getsid, sys_getsid), // 310
6803 BSDX_(__NR_setresuid, sys_setresuid), // 311
6805 BSDX_(__NR_setresgid, sys_setresgid), // 312
6806 // obsol signanosleep 313
6807 BSDX_(__NR_aio_return, sys_aio_return), // 314
6808 BSDX_(__NR_aio_suspend, sys_aio_suspend), // 315
6810 BSDX_(__NR_aio_cancel, sys_aio_cancel), // 316
6811 BSDX_(__NR_aio_error, sys_aio_error), // 317
6812 // freebsd 6 aio_read 318
6813 // freebsd 6 aio_write 319
6814 // freebsd 6 lio_listio 320
6815 BSDX_(__NR_yield, sys_yield), // 321
6816 // obs thr_sleep 322
6817 // obs thr_wakeup 323
6819 GENX_(__NR_mlockall, sys_mlockall), // 324
6820 BSDX_(__NR_munlockall, sys_munlockall), // 325
6821 BSDXY(__NR___getcwd, sys___getcwd), // 326
6822 BSDX_(__NR_sched_setparam, sys_sched_setparam), // 327
6823 BSDXY(__NR_sched_getparam, sys_sched_getparam), // 328
6824 BSDX_(__NR_sched_setscheduler, sys_sched_setscheduler), // 329
6825 BSDX_(__NR_sched_getscheduler, sys_sched_getscheduler), // 330
6826 BSDX_(__NR_sched_yield, sys_sched_yield), // 331
6828 BSDX_(__NR_sched_get_priority_max, sys_sched_get_priority_max), // 332
6829 BSDX_(__NR_sched_get_priority_min, sys_sched_get_priority_min), // 333
6830 BSDXY(__NR_sched_rr_get_interval, sys_sched_rr_get_interval), // 334
6831 BSDX_(__NR_utrace, sys_utrace), // 335
6833 // freebsd 4 sendfile 336
6834 BSDXY(__NR_kldsym, sys_kldsym), // 337
6835 BSDX_(__NR_jail, sys_jail), // 338
6836 // unimpl SYS_nnpfs_syscall 339
6838 BSDXY(__NR_sigprocmask, sys_sigprocmask), // 340
6839 BSDXY(__NR_sigsuspend, sys_sigsuspend), // 341
6840 // freebsd 4 sigaction 342
6841 BSDXY(__NR_sigpending, sys_sigpending), // 343
6843 // freebsd 4 sigreturn 344
6844 BSDXY(__NR_sigtimedwait, sys_sigtimedwait), // 345
6845 BSDXY(__NR_sigwaitinfo, sys_sigwaitinfo), // 346
6846 BSDXY(__NR___acl_get_file, sys___acl_get_file), // 347
6848 BSDX_(__NR___acl_set_file, sys___acl_set_file), // 348
6849 BSDXY(__NR___acl_get_fd, sys___acl_get_fd), // 349
6850 BSDX_(__NR___acl_set_fd, sys___acl_set_fd), // 350
6851 BSDX_(__NR___acl_delete_file, sys___acl_delete_file), // 351
6853 BSDX_(__NR___acl_delete_fd, sys___acl_delete_fd), // 352
6854 BSDX_(__NR___acl_aclcheck_file, sys___acl_aclcheck_file), // 353
6855 BSDX_(__NR___acl_aclcheck_fd, sys___acl_aclcheck_fd), // 354
6856 BSDX_(__NR_extattrctl, sys_extattrctl), // 355
6857 BSDX_(__NR_extattr_set_file, sys_extattr_set_file), // 356
6858 BSDXY(__NR_extattr_get_file, sys_extattr_get_file), // 357
6859 BSDX_(__NR_extattr_delete_file, sys_extattr_delete_file), // 358
6860 BSDXY(__NR_aio_waitcomplete, sys_aio_waitcomplete), // 359
6862 BSDXY(__NR_getresuid, sys_getresuid), // 360
6863 BSDXY(__NR_getresgid, sys_getresgid), // 361
6864 BSDXY(__NR_kqueue, sys_kqueue), // 362
6865 #if (FREEBSD_VERS >= FREEBSD_12)
6866 BSDXY(__NR_freebsd11_kevent, sys_freebsd11_kevent), // 363
6867 #else
6868 BSDXY(__NR_kevent, sys_kevent), // 363
6869 #endif
6870 // obs __cap_get_proc 364
6871 // obs __cap_set_proc 365
6872 // obs __cap_get_fd 366
6873 // obs __cap_get_file 367
6874 // obs __cap_set_fd 368
6875 // obs __cap_set_file 369
6877 BSDX_(__NR_extattr_set_fd, sys_extattr_set_fd), // 371
6878 BSDXY(__NR_extattr_get_fd, sys_extattr_get_fd), // 372
6879 BSDX_(__NR_extattr_delete_fd, sys_extattr_delete_fd), // 373
6880 BSDX_(__NR___setugid, sys___setugid), // 374
6881 // obs nfsclnt 375
6883 BSDX_(__NR_eaccess, sys_eaccess), // 376
6884 // unimpl afs3_syscall 377
6885 BSDX_(__NR_nmount, sys_nmount), // 378
6886 // obs kse_exit 379
6887 // obs kse_wakeup 380
6888 // obs kse_create 381
6889 // obs kse_thr_interrupt 382
6890 // obs kse_release 383
6892 // unimpl __mac_get_proc 384
6893 // unimpl __mac_set_proc 385
6894 // unimpl __mac_get_fd 386
6895 // unimpl __mac_get_file 387
6896 // unimpl __mac_set_fd 388
6897 // unimpl __mac_set_file 389
6898 BSDXY(__NR_kenv, sys_kenv), // 390
6899 BSDX_(__NR_lchflags, sys_lchflags), // 391
6901 BSDXY(__NR_uuidgen, sys_uuidgen), // 392
6902 BSDXY(__NR_sendfile, sys_sendfile), // 393
6903 // unimpl mac_syscall 394
6905 #if (FREEBSD_VERS >= FREEBSD_12)
6906 BSDXY(__NR_freebsd11_getfsstat, sys_freebsd11_getfsstat), // 395
6907 BSDXY(__NR_freebsd11_statfs, sys_statfs), // 396
6908 BSDXY(__NR_freebsd11_fstatfs, sys_fstatfs), // 397
6909 BSDXY(__NR_freebsd11_fhstatfs, sys_fhstatfs), // 398
6910 #else
6911 BSDXY(__NR_getfsstat, sys_getfsstat), // 395
6912 BSDXY(__NR_statfs, sys_statfs), // 396
6913 BSDXY(__NR_fstatfs, sys_fstatfs), // 397
6914 BSDXY(__NR_fhstatfs, sys_fhstatfs), // 398
6915 #endif
6917 // unimpl ksem_close 400
6918 // unimpl ksem_post 401
6919 // unimpl ksem_wait 402
6920 // unimpl ksem_trywait 403
6922 // unimpl ksem_init 404
6923 // unimpl ksem_open 405
6924 // unimpl ksem_unlink 406
6925 // unimpl ksem_getvalue 407
6927 // unimpl ksem_destroy 408
6928 // unimpl __mac_get_pid 409
6929 // unimpl __mac_get_link 410
6930 // unimpl __mac_set_link 411
6932 BSDX_(__NR_extattr_set_link, sys_extattr_set_link), // 412
6933 BSDXY(__NR_extattr_get_link, sys_extattr_get_link), // 413
6934 BSDX_(__NR_extattr_delete_link, sys_extattr_delete_link), // 414
6935 // unimpl __mac_execve 415
6937 BSDXY(__NR_sigaction, sys_sigaction), // 416
6938 BSDX_(__NR_sigreturn, sys_sigreturn), // 417
6940 BSDXY(__NR_getcontext, sys_getcontext), // 421
6941 BSDX_(__NR_setcontext, sys_setcontext), // 422
6942 BSDXY(__NR_swapcontext, sys_swapcontext), // 423
6944 #if (FREEBSD_VERS >= FREEBSD_13_1)
6945 BSDX_(__NR_freebsd13_swapoff, sys_freebsd13_swapoff), // 424
6946 #else
6947 BSDX_(__NR_swapoff, sys_swapoff), // 424
6948 #endif
6949 BSDXY(__NR___acl_get_link, sys___acl_get_link), // 425
6950 BSDX_(__NR___acl_set_link, sys___acl_set_link), // 426
6951 BSDX_(__NR___acl_delete_link, sys___acl_delete_link), // 427
6953 BSDX_(__NR___acl_aclcheck_link, sys___acl_aclcheck_link), // 428
6954 BSDXY(__NR_sigwait, sys_sigwait), // 429
6955 BSDX_(__NR_thr_create, sys_thr_create), // 430
6956 BSDX_(__NR_thr_exit, sys_thr_exit), // 431
6958 BSDXY(__NR_thr_self, sys_thr_self), // 432
6959 BSDXY(__NR_thr_kill, sys_thr_kill), // 433
6960 #if (FREEBSD_VERS <= FREEBSD_10)
6961 BSDXY(__NR__umtx_lock, sys__umtx_lock), // 434
6962 BSDXY(__NR__umtx_unlock, sys__umtx_unlock), // 435
6963 #endif
6965 BSDX_(__NR_jail_attach, sys_jail_attach), // 436
6966 BSDXY(__NR_extattr_list_fd, sys_extattr_list_fd), // 437
6967 BSDXY(__NR_extattr_list_file, sys_extattr_list_file), // 438
6968 BSDXY(__NR_extattr_list_link, sys_extattr_list_link), // 439
6970 // obs kse_switchin 440
6971 // unimpl ksem_timedwait 441
6972 BSDX_(__NR_thr_suspend, sys_thr_suspend), // 442
6973 BSDX_(__NR_thr_wake, sys_thr_wake), // 443
6974 BSDX_(__NR_kldunloadf, sys_kldunloadf), // 444
6975 // unimpl audit 445
6976 // unimpl auditon 446
6977 // unimpl getauid 447
6979 // unimpl setauid 448
6980 // unimpl getaudit 449
6981 // unimpl setaudit 450
6982 // unimpl getaudit_addr 451
6983 // unimpl setaudit_addr 452
6984 // unimpl auditctl 453
6985 BSDXY(__NR__umtx_op, sys__umtx_op), // 454
6986 BSDX_(__NR_thr_new, sys_thr_new), // 455
6988 BSDX_(__NR_sigqueue, sys_sigqueue), // 456
6989 BSDXY(__NR_kmq_open, sys_kmq_open), // 457
6990 BSDX_(__NR_kmq_setattr, sys_kmq_setattr), // 458
6991 BSDXY(__NR_kmq_timedreceive, sys_kmq_timedreceive), // 459
6993 BSDX_(__NR_kmq_timedsend, sys_kmq_timedsend), // 460
6994 BSDX_(__NR_kmq_notify, sys_kmq_notify), // 461
6995 BSDX_(__NR_kmq_unlink, sys_kmq_unlink), // 462
6996 BSDX_(__NR_abort2, sys_abort2), // 463
6998 BSDX_(__NR_thr_set_name, sys_thr_set_name), // 464
6999 BSDX_(__NR_aio_fsync, sys_aio_fsync), // 465
7000 BSDXY(__NR_rtprio_thread, sys_rtprio_thread), // 466
7002 // unimpl sctp_peeloff 471
7004 // unimpl sctp_generic_sendmsg 472
7005 // unimpl sctp_generic_sendmsg_iov 473
7006 // unimpl sctp_generic_recvmsg 474
7007 BSDXY(__NR_pread, sys_pread), // 475
7009 BSDX_(__NR_pwrite, sys_pwrite), // 476
7010 BSDX_(__NR_mmap, sys_mmap), // 477
7011 BSDX_(__NR_lseek, sys_lseek), // 478
7012 BSDX_(__NR_truncate, sys_truncate), // 479
7013 BSDX_(__NR_ftruncate, sys_ftruncate), // 480
7014 BSDXY(__NR_thr_kill2, sys_thr_kill2), // 481
7015 BSDXY(__NR_shm_open, sys_shm_open), // 482
7016 BSDX_(__NR_shm_unlink, sys_shm_unlink), // 483
7018 BSDXY(__NR_cpuset, sys_cpuset), // 484
7019 BSDX_(__NR_cpuset_setid, sys_cpuset_setid), // 485
7020 BSDXY(__NR_cpuset_getid, sys_cpuset_getid), // 486
7022 BSDXY(__NR_cpuset_getaffinity, sys_cpuset_getaffinity), // 487
7023 BSDX_(__NR_cpuset_setaffinity, sys_cpuset_setaffinity), // 488
7024 BSDX_(__NR_faccessat, sys_faccessat), // 489
7025 BSDX_(__NR_fchmodat, sys_fchmodat), // 490
7026 BSDX_(__NR_fchownat, sys_fchownat), // 491
7028 BSDX_(__NR_fexecve, sys_fexecve), // 492
7029 #if (FREEBSD_VERS >= FREEBSD_12)
7030 BSDXY(__NR_freebsd11_fstatat, sys_freebsd11_fstatat), // 493
7031 #else
7032 BSDXY(__NR_fstatat, sys_fstatat), // 493
7033 #endif
7034 BSDX_(__NR_futimesat, sys_futimesat), // 494
7035 BSDX_(__NR_linkat, sys_linkat), // 495
7037 BSDX_(__NR_mkdirat, sys_mkdirat), // 496
7038 BSDX_(__NR_mkfifoat, sys_mkfifoat), // 497
7040 #if (FREEBSD_VERS >= FREEBSD_12)
7041 BSDX_(__NR_freebsd11_mknodat, sys_freebsd11_mknodat), // 498
7042 #else
7043 BSDX_(__NR_mknodat, sys_mknodat), // 498
7044 #endif
7046 BSDXY(__NR_openat, sys_openat), // 499
7048 BSDXY(__NR_readlinkat, sys_readlinkat), // 500
7049 BSDX_(__NR_renameat, sys_renameat), // 501
7050 BSDX_(__NR_symlinkat, sys_symlinkat), // 502
7051 BSDX_(__NR_unlinkat, sys_unlinkat), // 503
7053 BSDX_(__NR_posix_openpt, sys_posix_openpt), // 504
7054 // unimp gssd_syscall 505
7055 BSDX_(__NR_jail_get, sys_jail_get), // 506
7056 BSDX_(__NR_jail_set, sys_jail_set), // 507
7057 BSDX_(__NR_jail_remove, sys_jail_remove), // 508
7058 BSDX_(__NR_closefrom, sys_closefrom), // 509
7059 BSDXY(__NR___semctl, sys___semctl), // 510
7060 BSDXY(__NR_msgctl, sys_msgctl), // 511
7061 BSDXY(__NR_shmctl, sys_shmctl), // 512
7062 BSDX_(__NR_lpathconf, sys_lpathconf), // 513
7063 /* 514 is obsolete cap_new */
7064 BSDXY(__NR___cap_rights_get, sys_cap_rights_get), // 515
7065 BSDX_(__NR_cap_enter, sys_cap_enter), // 516
7066 BSDXY(__NR_cap_getmode, sys_cap_getmode), // 517
7067 BSDXY(__NR_pdfork, sys_pdfork), // 518
7068 BSDX_(__NR_pdkill, sys_pdkill), // 519
7069 BSDXY(__NR_pdgetpid, sys_pdgetpid), // 520
7070 BSDXY(__NR_pselect, sys_pselect), // 522
7071 BSDXY(__NR_getloginclass, sys_getloginclass), // 523
7072 BSDX_(__NR_setloginclass, sys_setloginclass), // 524
7073 BSDXY(__NR_rctl_get_racct, sys_rctl_get_racct), // 525
7074 BSDXY(__NR_rctl_get_rules, sys_rctl_get_rules), // 526
7075 BSDXY(__NR_rctl_get_limits, sys_rctl_get_limits), // 527
7076 BSDXY(__NR_rctl_add_rule, sys_rctl_add_rule), // 528
7077 BSDXY(__NR_rctl_remove_rule, sys_rctl_remove_rule), // 529
7078 BSDX_(__NR_posix_fallocate, sys_posix_fallocate), // 530
7079 BSDX_(__NR_posix_fadvise, sys_posix_fadvise), // 531
7080 BSDXY(__NR_wait6, sys_wait6), // 532
7081 BSDX_(__NR_cap_rights_limit, sys_cap_rights_limit), // 533
7082 BSDX_(__NR_cap_ioctls_limit, sys_cap_ioctls_limit), // 534
7083 BSDXY(__NR_cap_ioctls_get, sys_cap_ioctls_get), // 535
7084 BSDX_(__NR_cap_fcntls_limit, sys_cap_fcntls_limit), // 536
7085 BSDXY(__NR_cap_fcntls_get, sys_cap_fcntls_get), // 537
7086 BSDX_(__NR_bindat, sys_bindat), // 538
7087 BSDX_(__NR_connectat, sys_connectat), // 539
7088 BSDX_(__NR_chflagsat, sys_chflagsat), // 540
7089 BSDXY(__NR_accept4, sys_accept4), // 541
7090 BSDXY(__NR_pipe2, sys_pipe2), // 542
7091 BSDX_(__NR_aio_mlock, sys_aio_mlock), // 543
7092 BSDXY(__NR_procctl, sys_procctl), // 544
7094 // 544 is the highest syscall on FreeBSD 9
7096 #if (FREEBSD_VERS >= FREEBSD_10)
7098 BSDXY(__NR_ppoll, sys_ppoll), // 545
7099 BSDX_(__NR_futimens, sys_futimens), // 546
7100 BSDX_(__NR_utimensat, sys_utimensat), // 547
7102 #endif // FREEBSD_VERS >= FREEBSD_10
7104 #if (FREEBSD_VERS >= FREEBSD_11)
7106 /* 548 is obsolete numa_getaffinity */
7107 /* 549 is obsolete numa_setaffinity */
7108 BSDX_(__NR_fdatasync, sys_fdatasync), // 550
7110 #endif // FREEBSD_VERS >= FREEBSD_11
7112 #if (FREEBSD_VERS >= FREEBSD_12)
7113 BSDXY(__NR_fstat, sys_fstat), // 551
7114 BSDXY(__NR_fstatat, sys_fstatat), // 552
7115 BSDXY(__NR_fhstat, sys_fhstat), // 553
7116 BSDXY(__NR_getdirentries, sys_getdirentries), // 554
7117 BSDXY(__NR_statfs, sys_statfs), // 555
7118 BSDXY(__NR_fstatfs, sys_fstatfs), // 556
7119 BSDXY(__NR_getfsstat, sys_getfsstat), // 557
7120 BSDXY(__NR_fhstatfs, sys_fhstatfs), // 558
7121 BSDX_(__NR_mknodat, sys_mknodat), // 559
7122 BSDXY(__NR_kevent, sys_kevent), // 560
7123 BSDXY(__NR_cpuset_getdomain, sys_cpuset_getdomain), // 561
7124 BSDX_(__NR_cpuset_setdomain, sys_cpuset_setdomain), // 562
7125 BSDXY(__NR_getrandom, sys_getrandom), // 563
7126 BSDXY(__NR_getfhat, sys_getfhat), // 564
7127 BSDX_(__NR_fhlink, sys_fhlink), // 565
7128 BSDX_(__NR_fhlinkat, sys_fhlinkat), // 566
7129 BSDXY(__NR_fhreadlink, sys_fhreadlink), // 567
7130 #endif // FREEBSD_VERS >= FREEBSD_12
7132 #if (FREEBSD_VERS >= FREEBSD_12_2)
7133 BSDX_(__NR_funlinkat, sys_funlinkat), // 568
7134 BSDX_(__NR_copy_file_range, sys_copy_file_range), // 569
7135 BSDXY(__NR___sysctlbyname, sys___sysctlbyname), // 570
7137 #if (FREEBSD_VERS >= FREEBSD_13_0)
7138 BSDXY(__NR_shm_open2, sys_shm_open2), // 571
7139 // unimpl __NR_shm_rename 572
7140 BSDX_(__NR_sigfastblock, sys_sigfastblock), // 573
7141 BSDXY( __NR___realpathat, sys___realpathat), // 574
7142 #endif
7143 // unimpl __NR_close_range 575
7144 #endif
7146 #if (FREEBSD_VERS >= FREEBSD_13_0)
7147 // unimpl __NR_rpctls_syscall 576
7148 BSDX_(__NR___specialfd, sys___specialfd), // 577
7149 // unimpl __NR_aio_writev 578
7150 // unimpl __NR_aio_readv 579
7151 #endif
7153 #if (FREEBSD_VERS >= FREEBSD_13_1)
7154 // unimpl __NR_fspacectl 580
7155 // unimpl __NR_sched_getcpu 581
7156 BSDX_(__NR_swapoff, sys_swapoff), // 582
7157 #endif
7159 BSDX_(__NR_fake_sigreturn, sys_fake_sigreturn), // 1000, fake sigreturn
7163 const SyscallTableEntry* ML_(get_freebsd_syscall_entry) ( UInt sysno )
7165 const UInt syscall_table_size
7166 = sizeof(ML_(syscall_table)) / sizeof(ML_(syscall_table)[0]);
7168 /* Is it in the contiguous initial section of the table? */
7169 if (sysno < syscall_table_size) {
7170 const SyscallTableEntry* sys = &ML_(syscall_table)[sysno];
7171 if (sys->before == NULL)
7172 return NULL; /* no entry */
7173 else
7174 return sys;
7177 /* Can't find a wrapper */
7178 return NULL;
7181 /*--------------------------------------------------------------------*/
7182 /*--- end ---*/
7183 /*--------------------------------------------------------------------*/
7185 #endif // defined(VGO_freebsd)