mirror of
https://github.com/Zenithsiz/ftmemsim-valgrind.git
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912 lines
37 KiB
C
912 lines
37 KiB
C
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/*--------------------------------------------------------------------*/
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/*--- Platform-specific syscalls stuff. syswrap-amd64-linux.c ---*/
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/*--------------------------------------------------------------------*/
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/*
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This file is part of Valgrind, a dynamic binary instrumentation
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framework.
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Copyright (C) 2000-2017 Nicholas Nethercote
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njn@valgrind.org
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This program is free software; you can redistribute it and/or
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modify it under the terms of the GNU General Public License as
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published by the Free Software Foundation; either version 2 of the
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License, or (at your option) any later version.
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This program is distributed in the hope that it will be useful, but
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WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program; if not, see <http://www.gnu.org/licenses/>.
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The GNU General Public License is contained in the file COPYING.
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*/
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#if defined(VGP_amd64_linux)
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#include "pub_core_basics.h"
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#include "pub_core_vki.h"
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#include "pub_core_vkiscnums.h"
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#include "pub_core_threadstate.h"
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#include "pub_core_aspacemgr.h"
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#include "pub_core_debuglog.h"
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#include "pub_core_options.h"
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#include "pub_core_libcbase.h"
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#include "pub_core_libcassert.h"
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#include "pub_core_libcprint.h"
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#include "pub_core_libcproc.h"
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#include "pub_core_libcsignal.h"
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#include "pub_core_scheduler.h"
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#include "pub_core_sigframe.h"
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#include "pub_core_signals.h"
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#include "pub_core_syscall.h"
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#include "pub_core_syswrap.h"
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#include "pub_core_tooliface.h"
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#include "priv_types_n_macros.h"
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#include "priv_syswrap-generic.h" /* for decls of generic wrappers */
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#include "priv_syswrap-linux.h" /* for decls of linux-ish wrappers */
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#include "priv_syswrap-linux-variants.h" /* decls of linux variant wrappers */
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#include "priv_syswrap-main.h"
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/* ---------------------------------------------------------------------
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clone() handling
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------------------------------------------------------------------ */
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/* Call f(arg1), but first switch stacks, using 'stack' as the new
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stack, and use 'retaddr' as f's return-to address. Also, clear all
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the integer registers before entering f. */
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__attribute__((noreturn))
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void ML_(call_on_new_stack_0_1) ( Addr stack,
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Addr retaddr,
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void (*f)(Word),
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Word arg1 );
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// %rdi == stack
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// %rsi == retaddr
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// %rdx == f
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// %rcx == arg1
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asm(
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".text\n"
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".globl vgModuleLocal_call_on_new_stack_0_1\n"
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"vgModuleLocal_call_on_new_stack_0_1:\n"
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" movq %rdi, %rsp\n" // set stack
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" pushq %rsi\n" // retaddr to stack
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" pushq %rdx\n" // f to stack
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" pushq %rcx\n" // arg1 to stack
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" movq $0, %rax\n" // zero all GP regs
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" movq $0, %rbx\n"
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" movq $0, %rcx\n"
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" movq $0, %rdx\n"
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" movq $0, %rsi\n"
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" movq $0, %rdi\n"
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" movq $0, %rbp\n"
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" movq $0, %r8\n"
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" movq $0, %r9\n"
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" movq $0, %r10\n"
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" movq $0, %r11\n"
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" movq $0, %r12\n"
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" movq $0, %r13\n"
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" movq $0, %r14\n"
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" movq $0, %r15\n"
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" popq %rdi\n" // arg1 to correct arg reg
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" ret\n" // jump to f
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" ud2\n" // should never get here
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".previous\n"
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);
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/*
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Perform a clone system call. clone is strange because it has
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fork()-like return-twice semantics, so it needs special
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handling here.
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Upon entry, we have:
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int (*fn)(void*) in %rdi
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void* child_stack in %rsi
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int flags in %rdx
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void* arg in %rcx
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pid_t* child_tid in %r8
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pid_t* parent_tid in %r9
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void* tls_ptr at 8(%rsp)
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System call requires:
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int $__NR_clone in %rax
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int flags in %rdi
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void* child_stack in %rsi
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pid_t* parent_tid in %rdx
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pid_t* child_tid in %r10
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void* tls_ptr in %r8
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Returns a Long encoded in the linux-amd64 way, not a SysRes.
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*/
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#define __NR_CLONE VG_STRINGIFY(__NR_clone)
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#define __NR_EXIT VG_STRINGIFY(__NR_exit)
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// See priv_syswrap-linux.h for arg profile.
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asm(
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".text\n"
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".globl do_syscall_clone_amd64_linux\n"
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"do_syscall_clone_amd64_linux:\n"
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// set up child stack, temporarily preserving fn and arg
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" subq $16, %rsi\n" // make space on stack
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" movq %rcx, 8(%rsi)\n" // save arg
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" movq %rdi, 0(%rsi)\n" // save fn
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// setup syscall
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" movq $"__NR_CLONE", %rax\n" // syscall number
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" movq %rdx, %rdi\n" // syscall arg1: flags
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// %rsi already setup // syscall arg2: child_stack
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" movq %r9, %rdx\n" // syscall arg3: parent_tid
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" movq %r8, %r10\n" // syscall arg4: child_tid
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" movq 8(%rsp), %r8\n" // syscall arg5: tls_ptr
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" syscall\n" // clone()
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" testq %rax, %rax\n" // child if retval == 0
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" jnz 1f\n"
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// CHILD - call thread function
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" pop %rax\n" // pop fn
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" pop %rdi\n" // pop fn arg1: arg
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" call *%rax\n" // call fn
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// exit with result
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" movq %rax, %rdi\n" // arg1: return value from fn
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" movq $"__NR_EXIT", %rax\n"
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" syscall\n"
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// Exit returned?!
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" ud2\n"
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"1:\n" // PARENT or ERROR
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" ret\n"
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".previous\n"
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);
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#undef __NR_CLONE
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#undef __NR_EXIT
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/* ---------------------------------------------------------------------
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More thread stuff
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------------------------------------------------------------------ */
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void VG_(cleanup_thread) ( ThreadArchState *arch )
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{
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}
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/* ---------------------------------------------------------------------
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PRE/POST wrappers for AMD64/Linux-specific syscalls
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------------------------------------------------------------------ */
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#define PRE(name) DEFN_PRE_TEMPLATE(amd64_linux, name)
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#define POST(name) DEFN_POST_TEMPLATE(amd64_linux, name)
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/* Add prototypes for the wrappers declared here, so that gcc doesn't
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harass us for not having prototypes. Really this is a kludge --
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the right thing to do is to make these wrappers 'static' since they
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aren't visible outside this file, but that requires even more macro
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magic. */
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DECL_TEMPLATE(amd64_linux, sys_rt_sigreturn);
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DECL_TEMPLATE(amd64_linux, sys_arch_prctl);
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DECL_TEMPLATE(amd64_linux, sys_ptrace);
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DECL_TEMPLATE(amd64_linux, sys_fadvise64);
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DECL_TEMPLATE(amd64_linux, sys_mmap);
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DECL_TEMPLATE(amd64_linux, sys_syscall184);
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PRE(sys_rt_sigreturn)
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{
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/* This isn't really a syscall at all - it's a misuse of the
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syscall mechanism by m_sigframe. VG_(sigframe_create) sets the
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return address of the signal frames it creates to be a short
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piece of code which does this "syscall". The only purpose of
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the syscall is to call VG_(sigframe_destroy), which restores the
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thread's registers from the frame and then removes it.
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Consequently we must ask the syswrap driver logic not to write
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back the syscall "result" as that would overwrite the
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just-restored register state. */
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ThreadState* tst;
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PRINT("sys_rt_sigreturn ( )");
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vg_assert(VG_(is_valid_tid)(tid));
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vg_assert(tid >= 1 && tid < VG_N_THREADS);
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vg_assert(VG_(is_running_thread)(tid));
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/* Adjust RSP to point to start of frame; skip back up over handler
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ret addr */
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tst = VG_(get_ThreadState)(tid);
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tst->arch.vex.guest_RSP -= sizeof(Addr);
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/* This is only so that the RIP is (might be) useful to report if
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something goes wrong in the sigreturn. JRS 20070318: no idea
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what this is for */
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ML_(fixup_guest_state_to_restart_syscall)(&tst->arch);
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/* Restore register state from frame and remove it, as
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described above */
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VG_(sigframe_destroy)(tid, True);
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/* Tell the driver not to update the guest state with the "result",
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and set a bogus result to keep it happy. */
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*flags |= SfNoWriteResult;
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SET_STATUS_Success(0);
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/* Check to see if any signals arose as a result of this. */
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*flags |= SfPollAfter;
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}
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PRE(sys_arch_prctl)
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{
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ThreadState* tst;
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Bool known_option = True;
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PRINT( "arch_prctl ( %ld, %lx )", SARG1, ARG2 );
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vg_assert(VG_(is_valid_tid)(tid));
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vg_assert(tid >= 1 && tid < VG_N_THREADS);
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vg_assert(VG_(is_running_thread)(tid));
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// Nb: can't use "ARG2".."ARG5" here because that's our own macro...
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PRE_REG_READ2(long, "arch_prctl",
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int, option, unsigned long, arg2);
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// XXX: totally wrong... we need to look at the 'option' arg, and do
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// PRE_MEM_READs/PRE_MEM_WRITEs as necessary...
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/* "do" the syscall ourselves; the kernel never sees it */
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if (ARG1 == VKI_ARCH_SET_FS) {
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tst = VG_(get_ThreadState)(tid);
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tst->arch.vex.guest_FS_CONST = ARG2;
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}
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else if (ARG1 == VKI_ARCH_GET_FS) {
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PRE_MEM_WRITE("arch_prctl(addr)", ARG2, sizeof(unsigned long));
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tst = VG_(get_ThreadState)(tid);
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*(unsigned long *)ARG2 = tst->arch.vex.guest_FS_CONST;
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POST_MEM_WRITE(ARG2, sizeof(unsigned long));
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}
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else if (ARG1 == VKI_ARCH_SET_GS) {
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tst = VG_(get_ThreadState)(tid);
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tst->arch.vex.guest_GS_CONST = ARG2;
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}
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else if (ARG1 == VKI_ARCH_GET_GS) {
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PRE_MEM_WRITE("arch_prctl(addr)", ARG2, sizeof(unsigned long));
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tst = VG_(get_ThreadState)(tid);
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*(unsigned long *)ARG2 = tst->arch.vex.guest_GS_CONST;
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POST_MEM_WRITE(ARG2, sizeof(unsigned long));
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}
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else {
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known_option = False;
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}
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/* Note; the Status writeback to guest state that happens after
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this wrapper returns does not change guest_FS_CONST or guest_GS_CONST;
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hence that direct assignment to the guest state is safe here. */
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if (known_option)
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SET_STATUS_Success( 0 );
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else
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SET_STATUS_Failure( VKI_EINVAL );
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}
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// Parts of this are amd64-specific, but the *PEEK* cases are generic.
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//
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// ARG3 is only used for pointers into the traced process's address
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// space and for offsets into the traced process's struct
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// user_regs_struct. It is never a pointer into this process's memory
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// space, and we should therefore not check anything it points to.
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PRE(sys_ptrace)
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{
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PRINT("sys_ptrace ( %ld, %ld, %#lx, %#lx )", SARG1, SARG2, ARG3, ARG4);
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PRE_REG_READ4(int, "ptrace",
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long, request, long, pid, long, addr, long, data);
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switch (ARG1) {
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case VKI_PTRACE_PEEKTEXT:
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case VKI_PTRACE_PEEKDATA:
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case VKI_PTRACE_PEEKUSR:
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PRE_MEM_WRITE( "ptrace(peek)", ARG4,
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sizeof (long));
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break;
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case VKI_PTRACE_GETREGS:
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PRE_MEM_WRITE( "ptrace(getregs)", ARG4,
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sizeof (struct vki_user_regs_struct));
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break;
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case VKI_PTRACE_GETFPREGS:
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PRE_MEM_WRITE( "ptrace(getfpregs)", ARG4,
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sizeof (struct vki_user_i387_struct));
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break;
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case VKI_PTRACE_GET_THREAD_AREA:
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PRE_MEM_WRITE( "ptrace(get_thread_area)", ARG4,
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sizeof(struct vki_user_desc) );
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break;
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case VKI_PTRACE_SETREGS:
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PRE_MEM_READ( "ptrace(setregs)", ARG4,
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sizeof (struct vki_user_regs_struct));
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break;
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case VKI_PTRACE_SETFPREGS:
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PRE_MEM_READ( "ptrace(setfpregs)", ARG4,
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sizeof (struct vki_user_i387_struct));
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break;
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case VKI_PTRACE_SET_THREAD_AREA:
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PRE_MEM_READ( "ptrace(set_thread_area)", ARG4,
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sizeof(struct vki_user_desc) );
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break;
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case VKI_PTRACE_GETEVENTMSG:
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PRE_MEM_WRITE( "ptrace(geteventmsg)", ARG4, sizeof(unsigned long));
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break;
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case VKI_PTRACE_GETSIGINFO:
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PRE_MEM_WRITE( "ptrace(getsiginfo)", ARG4, sizeof(vki_siginfo_t));
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break;
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case VKI_PTRACE_SETSIGINFO:
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PRE_MEM_READ( "ptrace(setsiginfo)", ARG4, sizeof(vki_siginfo_t));
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break;
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case VKI_PTRACE_GETREGSET:
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ML_(linux_PRE_getregset)(tid, ARG3, ARG4);
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break;
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case VKI_PTRACE_SETREGSET:
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ML_(linux_PRE_setregset)(tid, ARG3, ARG4);
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break;
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default:
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break;
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}
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}
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POST(sys_ptrace)
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{
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switch (ARG1) {
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case VKI_PTRACE_TRACEME:
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ML_(linux_POST_traceme)(tid);
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break;
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case VKI_PTRACE_PEEKTEXT:
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case VKI_PTRACE_PEEKDATA:
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case VKI_PTRACE_PEEKUSR:
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POST_MEM_WRITE( ARG4, sizeof (long));
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break;
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case VKI_PTRACE_GETREGS:
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POST_MEM_WRITE( ARG4, sizeof (struct vki_user_regs_struct));
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break;
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case VKI_PTRACE_GETFPREGS:
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POST_MEM_WRITE( ARG4, sizeof (struct vki_user_i387_struct));
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break;
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case VKI_PTRACE_GET_THREAD_AREA:
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POST_MEM_WRITE( ARG4, sizeof(struct vki_user_desc) );
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break;
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case VKI_PTRACE_GETEVENTMSG:
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POST_MEM_WRITE( ARG4, sizeof(unsigned long));
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break;
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case VKI_PTRACE_GETSIGINFO:
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/* XXX: This is a simplification. Different parts of the
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* siginfo_t are valid depending on the type of signal.
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*/
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POST_MEM_WRITE( ARG4, sizeof(vki_siginfo_t));
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break;
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case VKI_PTRACE_GETREGSET:
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ML_(linux_POST_getregset)(tid, ARG3, ARG4);
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break;
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default:
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break;
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}
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}
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PRE(sys_fadvise64)
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{
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PRINT("sys_fadvise64 ( %ld, %ld, %lu, %ld )", SARG1, SARG2, ARG3, SARG4);
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PRE_REG_READ4(long, "fadvise64",
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int, fd, vki_loff_t, offset, vki_size_t, len, int, advice);
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}
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PRE(sys_mmap)
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{
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SysRes r;
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PRINT("sys_mmap ( %#lx, %lu, %ld, %ld, %ld, %ld )",
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ARG1, ARG2, SARG3, SARG4, SARG5, SARG6 );
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PRE_REG_READ6(long, "mmap",
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unsigned long, start, unsigned long, length,
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int, prot, int, flags, int, fd, vki_off_t, offset);
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r = ML_(generic_PRE_sys_mmap)( tid, ARG1, ARG2, ARG3, ARG4, ARG5, ARG6 );
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SET_STATUS_from_SysRes(r);
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}
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/* ---------------------------------------------------------------
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PRE/POST wrappers for AMD64/Linux-variant specific syscalls
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------------------------------------------------------------ */
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PRE(sys_syscall184)
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{
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Int err;
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/* 184 is used by sys_bproc. If we're not on a declared bproc
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variant, fail in the usual way, since it is otherwise unused. */
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if (!KernelVariantiS(KernelVariant_bproc, VG_(clo_kernel_variant))) {
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PRINT("non-existent syscall! (syscall 184)");
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PRE_REG_READ0(long, "ni_syscall(184)");
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SET_STATUS_Failure( VKI_ENOSYS );
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return;
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}
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err = ML_(linux_variant_PRE_sys_bproc)( ARG1, ARG2, ARG3,
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ARG4, ARG5, ARG6 );
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if (err) {
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SET_STATUS_Failure( err );
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return;
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}
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/* Let it go through. */
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*flags |= SfMayBlock; /* who knows? play safe. */
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}
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POST(sys_syscall184)
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{
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ML_(linux_variant_POST_sys_bproc)( ARG1, ARG2, ARG3,
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ARG4, ARG5, ARG6 );
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}
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#undef PRE
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#undef POST
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/* ---------------------------------------------------------------------
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The AMD64/Linux syscall table
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------------------------------------------------------------------ */
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/* Add an amd64-linux specific wrapper to a syscall table. */
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#define PLAX_(const, name) WRAPPER_ENTRY_X_(amd64_linux, const, name)
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#define PLAXY(const, name) WRAPPER_ENTRY_XY(amd64_linux, const, name)
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// This table maps from __NR_xxx syscall numbers (from
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// linux/include/asm-x86_64/unistd.h) to the appropriate PRE/POST sys_foo()
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// wrappers on AMD64 (as per sys_call_table in
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// linux/arch/x86_64/kernel/entry.S).
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//
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// When implementing these wrappers, you need to work out if the wrapper is
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// generic, Linux-only (but arch-independent), or AMD64/Linux only.
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static SyscallTableEntry syscall_table[] = {
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GENXY(__NR_read, sys_read), // 0
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GENX_(__NR_write, sys_write), // 1
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GENXY(__NR_open, sys_open), // 2
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GENXY(__NR_close, sys_close), // 3
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GENXY(__NR_stat, sys_newstat), // 4
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GENXY(__NR_fstat, sys_newfstat), // 5
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GENXY(__NR_lstat, sys_newlstat), // 6
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GENXY(__NR_poll, sys_poll), // 7
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LINX_(__NR_lseek, sys_lseek), // 8
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PLAX_(__NR_mmap, sys_mmap), // 9
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GENXY(__NR_mprotect, sys_mprotect), // 10
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GENXY(__NR_munmap, sys_munmap), // 11
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GENX_(__NR_brk, sys_brk), // 12
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LINXY(__NR_rt_sigaction, sys_rt_sigaction), // 13
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LINXY(__NR_rt_sigprocmask, sys_rt_sigprocmask), // 14
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PLAX_(__NR_rt_sigreturn, sys_rt_sigreturn), // 15
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LINXY(__NR_ioctl, sys_ioctl), // 16
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GENXY(__NR_pread64, sys_pread64), // 17
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GENX_(__NR_pwrite64, sys_pwrite64), // 18
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GENXY(__NR_readv, sys_readv), // 19
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GENX_(__NR_writev, sys_writev), // 20
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GENX_(__NR_access, sys_access), // 21
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LINXY(__NR_pipe, sys_pipe), // 22
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GENX_(__NR_select, sys_select), // 23
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LINX_(__NR_sched_yield, sys_sched_yield), // 24
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GENX_(__NR_mremap, sys_mremap), // 25
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GENX_(__NR_msync, sys_msync), // 26
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GENXY(__NR_mincore, sys_mincore), // 27
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GENX_(__NR_madvise, sys_madvise), // 28
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LINX_(__NR_shmget, sys_shmget), // 29
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LINXY(__NR_shmat, sys_shmat), // 30
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LINXY(__NR_shmctl, sys_shmctl), // 31
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GENXY(__NR_dup, sys_dup), // 32
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GENXY(__NR_dup2, sys_dup2), // 33
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GENX_(__NR_pause, sys_pause), // 34
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GENXY(__NR_nanosleep, sys_nanosleep), // 35
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GENXY(__NR_getitimer, sys_getitimer), // 36
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GENX_(__NR_alarm, sys_alarm), // 37
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GENXY(__NR_setitimer, sys_setitimer), // 38
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GENX_(__NR_getpid, sys_getpid), // 39
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LINXY(__NR_sendfile, sys_sendfile), // 40
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LINXY(__NR_socket, sys_socket), // 41
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LINX_(__NR_connect, sys_connect), // 42
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LINXY(__NR_accept, sys_accept), // 43
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LINX_(__NR_sendto, sys_sendto), // 44
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LINXY(__NR_recvfrom, sys_recvfrom), // 45
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LINX_(__NR_sendmsg, sys_sendmsg), // 46
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LINXY(__NR_recvmsg, sys_recvmsg), // 47
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LINX_(__NR_shutdown, sys_shutdown), // 48
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LINX_(__NR_bind, sys_bind), // 49
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LINX_(__NR_listen, sys_listen), // 50
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LINXY(__NR_getsockname, sys_getsockname), // 51
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LINXY(__NR_getpeername, sys_getpeername), // 52
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LINXY(__NR_socketpair, sys_socketpair), // 53
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LINX_(__NR_setsockopt, sys_setsockopt), // 54
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LINXY(__NR_getsockopt, sys_getsockopt), // 55
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LINX_(__NR_clone, sys_clone), // 56
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GENX_(__NR_fork, sys_fork), // 57
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GENX_(__NR_vfork, sys_fork), // 58 treat as fork
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GENX_(__NR_execve, sys_execve), // 59
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GENX_(__NR_exit, sys_exit), // 60
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GENXY(__NR_wait4, sys_wait4), // 61
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GENX_(__NR_kill, sys_kill), // 62
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GENXY(__NR_uname, sys_newuname), // 63
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LINX_(__NR_semget, sys_semget), // 64
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LINX_(__NR_semop, sys_semop), // 65
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LINXY(__NR_semctl, sys_semctl), // 66
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LINXY(__NR_shmdt, sys_shmdt), // 67
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LINX_(__NR_msgget, sys_msgget), // 68
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LINX_(__NR_msgsnd, sys_msgsnd), // 69
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LINXY(__NR_msgrcv, sys_msgrcv), // 70
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LINXY(__NR_msgctl, sys_msgctl), // 71
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LINXY(__NR_fcntl, sys_fcntl), // 72
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GENX_(__NR_flock, sys_flock), // 73
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GENX_(__NR_fsync, sys_fsync), // 74
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GENX_(__NR_fdatasync, sys_fdatasync), // 75
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GENX_(__NR_truncate, sys_truncate), // 76
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GENX_(__NR_ftruncate, sys_ftruncate), // 77
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GENXY(__NR_getdents, sys_getdents), // 78
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GENXY(__NR_getcwd, sys_getcwd), // 79
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GENX_(__NR_chdir, sys_chdir), // 80
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GENX_(__NR_fchdir, sys_fchdir), // 81
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GENX_(__NR_rename, sys_rename), // 82
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GENX_(__NR_mkdir, sys_mkdir), // 83
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GENX_(__NR_rmdir, sys_rmdir), // 84
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GENXY(__NR_creat, sys_creat), // 85
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GENX_(__NR_link, sys_link), // 86
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GENX_(__NR_unlink, sys_unlink), // 87
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GENX_(__NR_symlink, sys_symlink), // 88
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GENX_(__NR_readlink, sys_readlink), // 89
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GENX_(__NR_chmod, sys_chmod), // 90
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GENX_(__NR_fchmod, sys_fchmod), // 91
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GENX_(__NR_chown, sys_chown), // 92
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GENX_(__NR_fchown, sys_fchown), // 93
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GENX_(__NR_lchown, sys_lchown), // 94
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GENX_(__NR_umask, sys_umask), // 95
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GENXY(__NR_gettimeofday, sys_gettimeofday), // 96
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GENXY(__NR_getrlimit, sys_getrlimit), // 97
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GENXY(__NR_getrusage, sys_getrusage), // 98
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LINXY(__NR_sysinfo, sys_sysinfo), // 99
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GENXY(__NR_times, sys_times), // 100
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PLAXY(__NR_ptrace, sys_ptrace), // 101
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GENX_(__NR_getuid, sys_getuid), // 102
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LINXY(__NR_syslog, sys_syslog), // 103
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GENX_(__NR_getgid, sys_getgid), // 104
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GENX_(__NR_setuid, sys_setuid), // 105
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GENX_(__NR_setgid, sys_setgid), // 106
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GENX_(__NR_geteuid, sys_geteuid), // 107
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GENX_(__NR_getegid, sys_getegid), // 108
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GENX_(__NR_setpgid, sys_setpgid), // 109
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GENX_(__NR_getppid, sys_getppid), // 110
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GENX_(__NR_getpgrp, sys_getpgrp), // 111
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GENX_(__NR_setsid, sys_setsid), // 112
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GENX_(__NR_setreuid, sys_setreuid), // 113
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GENX_(__NR_setregid, sys_setregid), // 114
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GENXY(__NR_getgroups, sys_getgroups), // 115
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GENX_(__NR_setgroups, sys_setgroups), // 116
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LINX_(__NR_setresuid, sys_setresuid), // 117
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LINXY(__NR_getresuid, sys_getresuid), // 118
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LINX_(__NR_setresgid, sys_setresgid), // 119
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LINXY(__NR_getresgid, sys_getresgid), // 120
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GENX_(__NR_getpgid, sys_getpgid), // 121
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LINX_(__NR_setfsuid, sys_setfsuid), // 122
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LINX_(__NR_setfsgid, sys_setfsgid), // 123
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GENX_(__NR_getsid, sys_getsid), // 124
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LINXY(__NR_capget, sys_capget), // 125
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LINX_(__NR_capset, sys_capset), // 126
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LINXY(__NR_rt_sigpending, sys_rt_sigpending), // 127
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LINXY(__NR_rt_sigtimedwait, sys_rt_sigtimedwait),// 128
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LINXY(__NR_rt_sigqueueinfo, sys_rt_sigqueueinfo),// 129
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LINX_(__NR_rt_sigsuspend, sys_rt_sigsuspend), // 130
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GENXY(__NR_sigaltstack, sys_sigaltstack), // 131
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LINX_(__NR_utime, sys_utime), // 132
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GENX_(__NR_mknod, sys_mknod), // 133
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// (__NR_uselib, sys_uselib), // 134
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LINX_(__NR_personality, sys_personality), // 135
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// (__NR_ustat, sys_ustat), // 136
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GENXY(__NR_statfs, sys_statfs), // 137
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GENXY(__NR_fstatfs, sys_fstatfs), // 138
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// (__NR_sysfs, sys_sysfs), // 139
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GENX_(__NR_getpriority, sys_getpriority), // 140
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GENX_(__NR_setpriority, sys_setpriority), // 141
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LINXY(__NR_sched_setparam, sys_sched_setparam), // 142
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LINXY(__NR_sched_getparam, sys_sched_getparam), // 143
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LINX_(__NR_sched_setscheduler, sys_sched_setscheduler), // 144
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LINX_(__NR_sched_getscheduler, sys_sched_getscheduler), // 145
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LINX_(__NR_sched_get_priority_max, sys_sched_get_priority_max), // 146
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LINX_(__NR_sched_get_priority_min, sys_sched_get_priority_min), // 147
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LINXY(__NR_sched_rr_get_interval, sys_sched_rr_get_interval), // 148
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GENX_(__NR_mlock, sys_mlock), // 149
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GENX_(__NR_munlock, sys_munlock), // 150
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GENX_(__NR_mlockall, sys_mlockall), // 151
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LINX_(__NR_munlockall, sys_munlockall), // 152
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LINX_(__NR_vhangup, sys_vhangup), // 153
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// (__NR_modify_ldt, sys_modify_ldt), // 154
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LINX_(__NR_pivot_root, sys_pivot_root), // 155
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LINXY(__NR__sysctl, sys_sysctl), // 156
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LINXY(__NR_prctl, sys_prctl), // 157
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PLAX_(__NR_arch_prctl, sys_arch_prctl), // 158
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LINXY(__NR_adjtimex, sys_adjtimex), // 159
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GENX_(__NR_setrlimit, sys_setrlimit), // 160
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GENX_(__NR_chroot, sys_chroot), // 161
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GENX_(__NR_sync, sys_sync), // 162
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GENX_(__NR_acct, sys_acct), // 163
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GENX_(__NR_settimeofday, sys_settimeofday), // 164
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LINX_(__NR_mount, sys_mount), // 165
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LINX_(__NR_umount2, sys_umount), // 166
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// (__NR_swapon, sys_swapon), // 167
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// (__NR_swapoff, sys_swapoff), // 168
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// (__NR_reboot, sys_reboot), // 169
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GENX_(__NR_sethostname, sys_sethostname), // 170
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// (__NR_setdomainname, sys_setdomainname), // 171
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GENX_(__NR_iopl, sys_iopl), // 172
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LINX_(__NR_ioperm, sys_ioperm), // 173
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GENX_(__NR_create_module, sys_ni_syscall), // 174
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LINX_(__NR_init_module, sys_init_module), // 175
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LINX_(__NR_delete_module, sys_delete_module), // 176
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// (__NR_get_kernel_syms, sys_ni_syscall), // 177
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// (__NR_query_module, sys_ni_syscall), // 178
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LINX_(__NR_quotactl, sys_quotactl), // 179
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// (__NR_nfsservctl, sys_nfsservctl), // 180
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// (__NR_getpmsg, sys_ni_syscall), // 181
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// (__NR_putpmsg, sys_ni_syscall), // 182
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// (__NR_afs_syscall, sys_ni_syscall), // 183
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PLAXY(184, sys_syscall184), // 184 // sys_bproc?
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// (__NR_security, sys_ni_syscall), // 185
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LINX_(__NR_gettid, sys_gettid), // 186
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LINX_(__NR_readahead, sys_readahead), // 187
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LINX_(__NR_setxattr, sys_setxattr), // 188
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LINX_(__NR_lsetxattr, sys_lsetxattr), // 189
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LINX_(__NR_fsetxattr, sys_fsetxattr), // 190
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LINXY(__NR_getxattr, sys_getxattr), // 191
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LINXY(__NR_lgetxattr, sys_lgetxattr), // 192
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LINXY(__NR_fgetxattr, sys_fgetxattr), // 193
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LINXY(__NR_listxattr, sys_listxattr), // 194
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LINXY(__NR_llistxattr, sys_llistxattr), // 195
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LINXY(__NR_flistxattr, sys_flistxattr), // 196
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LINX_(__NR_removexattr, sys_removexattr), // 197
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LINX_(__NR_lremovexattr, sys_lremovexattr), // 198
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LINX_(__NR_fremovexattr, sys_fremovexattr), // 199
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LINXY(__NR_tkill, sys_tkill), // 200
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GENXY(__NR_time, sys_time), /*was sys_time64*/ // 201
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LINXY(__NR_futex, sys_futex), // 202
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LINX_(__NR_sched_setaffinity, sys_sched_setaffinity), // 203
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LINXY(__NR_sched_getaffinity, sys_sched_getaffinity), // 204
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// (__NR_set_thread_area, sys_ni_syscall), // 205
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LINXY(__NR_io_setup, sys_io_setup), // 206
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LINX_(__NR_io_destroy, sys_io_destroy), // 207
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LINXY(__NR_io_getevents, sys_io_getevents), // 208
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LINX_(__NR_io_submit, sys_io_submit), // 209
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LINXY(__NR_io_cancel, sys_io_cancel), // 210
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// (__NR_get_thread_area, sys_ni_syscall), // 211
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LINXY(__NR_lookup_dcookie, sys_lookup_dcookie), // 212
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LINXY(__NR_epoll_create, sys_epoll_create), // 213
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// (__NR_epoll_ctl_old, sys_ni_syscall), // 214
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// (__NR_epoll_wait_old, sys_ni_syscall), // 215
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// (__NR_remap_file_pages, sys_remap_file_pages)// 216
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GENXY(__NR_getdents64, sys_getdents64), // 217
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LINX_(__NR_set_tid_address, sys_set_tid_address),// 218
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// (__NR_restart_syscall, sys_restart_syscall),// 219
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LINX_(__NR_semtimedop, sys_semtimedop), // 220
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PLAX_(__NR_fadvise64, sys_fadvise64), // 221
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LINXY(__NR_timer_create, sys_timer_create), // 222
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LINXY(__NR_timer_settime, sys_timer_settime), // 223
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LINXY(__NR_timer_gettime, sys_timer_gettime), // 224
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LINX_(__NR_timer_getoverrun, sys_timer_getoverrun), // 225
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LINX_(__NR_timer_delete, sys_timer_delete), // 226
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LINX_(__NR_clock_settime, sys_clock_settime), // 227
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LINXY(__NR_clock_gettime, sys_clock_gettime), // 228
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LINXY(__NR_clock_getres, sys_clock_getres), // 229
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LINXY(__NR_clock_nanosleep, sys_clock_nanosleep),// 230
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LINX_(__NR_exit_group, sys_exit_group), // 231
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LINXY(__NR_epoll_wait, sys_epoll_wait), // 232
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LINX_(__NR_epoll_ctl, sys_epoll_ctl), // 233
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LINXY(__NR_tgkill, sys_tgkill), // 234
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GENX_(__NR_utimes, sys_utimes), // 235
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// (__NR_vserver, sys_ni_syscall), // 236
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LINX_(__NR_mbind, sys_mbind), // 237
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LINX_(__NR_set_mempolicy, sys_set_mempolicy), // 238
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LINXY(__NR_get_mempolicy, sys_get_mempolicy), // 239
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LINXY(__NR_mq_open, sys_mq_open), // 240
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LINX_(__NR_mq_unlink, sys_mq_unlink), // 241
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LINX_(__NR_mq_timedsend, sys_mq_timedsend), // 242
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LINXY(__NR_mq_timedreceive, sys_mq_timedreceive),// 243
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LINX_(__NR_mq_notify, sys_mq_notify), // 244
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LINXY(__NR_mq_getsetattr, sys_mq_getsetattr), // 245
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// (__NR_kexec_load, sys_ni_syscall), // 246
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LINXY(__NR_waitid, sys_waitid), // 247
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LINX_(__NR_add_key, sys_add_key), // 248
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LINX_(__NR_request_key, sys_request_key), // 249
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LINXY(__NR_keyctl, sys_keyctl), // 250
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LINX_(__NR_ioprio_set, sys_ioprio_set), // 251
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LINX_(__NR_ioprio_get, sys_ioprio_get), // 252
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LINX_(__NR_inotify_init, sys_inotify_init), // 253
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LINX_(__NR_inotify_add_watch, sys_inotify_add_watch), // 254
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LINX_(__NR_inotify_rm_watch, sys_inotify_rm_watch), // 255
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// LINX_(__NR_migrate_pages, sys_migrate_pages), // 256
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LINXY(__NR_openat, sys_openat), // 257
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LINX_(__NR_mkdirat, sys_mkdirat), // 258
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LINX_(__NR_mknodat, sys_mknodat), // 259
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LINX_(__NR_fchownat, sys_fchownat), // 260
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LINX_(__NR_futimesat, sys_futimesat), // 261
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LINXY(__NR_newfstatat, sys_newfstatat), // 262
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LINX_(__NR_unlinkat, sys_unlinkat), // 263
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LINX_(__NR_renameat, sys_renameat), // 264
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LINX_(__NR_linkat, sys_linkat), // 265
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LINX_(__NR_symlinkat, sys_symlinkat), // 266
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LINX_(__NR_readlinkat, sys_readlinkat), // 267
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LINX_(__NR_fchmodat, sys_fchmodat), // 268
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LINX_(__NR_faccessat, sys_faccessat), // 269
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LINXY(__NR_pselect6, sys_pselect6), // 270
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LINXY(__NR_ppoll, sys_ppoll), // 271
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LINX_(__NR_unshare, sys_unshare), // 272
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LINX_(__NR_set_robust_list, sys_set_robust_list), // 273
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LINXY(__NR_get_robust_list, sys_get_robust_list), // 274
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LINX_(__NR_splice, sys_splice), // 275
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LINX_(__NR_tee, sys_tee), // 276
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LINX_(__NR_sync_file_range, sys_sync_file_range), // 277
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LINXY(__NR_vmsplice, sys_vmsplice), // 278
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LINXY(__NR_move_pages, sys_move_pages), // 279
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LINX_(__NR_utimensat, sys_utimensat), // 280
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LINXY(__NR_epoll_pwait, sys_epoll_pwait), // 281
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LINXY(__NR_signalfd, sys_signalfd), // 282
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LINXY(__NR_timerfd_create, sys_timerfd_create), // 283
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LINXY(__NR_eventfd, sys_eventfd), // 284
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LINX_(__NR_fallocate, sys_fallocate), // 285
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LINXY(__NR_timerfd_settime, sys_timerfd_settime), // 286
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LINXY(__NR_timerfd_gettime, sys_timerfd_gettime), // 287
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LINXY(__NR_accept4, sys_accept4), // 288
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LINXY(__NR_signalfd4, sys_signalfd4), // 289
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LINXY(__NR_eventfd2, sys_eventfd2), // 290
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LINXY(__NR_epoll_create1, sys_epoll_create1), // 291
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LINXY(__NR_dup3, sys_dup3), // 292
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LINXY(__NR_pipe2, sys_pipe2), // 293
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LINXY(__NR_inotify_init1, sys_inotify_init1), // 294
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LINXY(__NR_preadv, sys_preadv), // 295
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LINX_(__NR_pwritev, sys_pwritev), // 296
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LINXY(__NR_rt_tgsigqueueinfo, sys_rt_tgsigqueueinfo),// 297
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LINXY(__NR_perf_event_open, sys_perf_event_open), // 298
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LINXY(__NR_recvmmsg, sys_recvmmsg), // 299
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LINXY(__NR_fanotify_init, sys_fanotify_init), // 300
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LINX_(__NR_fanotify_mark, sys_fanotify_mark), // 301
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LINXY(__NR_prlimit64, sys_prlimit64), // 302
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LINXY(__NR_name_to_handle_at, sys_name_to_handle_at),// 303
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LINXY(__NR_open_by_handle_at, sys_open_by_handle_at),// 304
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|
|
LINXY(__NR_clock_adjtime, sys_clock_adjtime), // 305
|
|
LINX_(__NR_syncfs, sys_syncfs), // 306
|
|
LINXY(__NR_sendmmsg, sys_sendmmsg), // 307
|
|
LINX_(__NR_setns, sys_setns), // 308
|
|
LINXY(__NR_getcpu, sys_getcpu), // 309
|
|
|
|
LINXY(__NR_process_vm_readv, sys_process_vm_readv), // 310
|
|
LINX_(__NR_process_vm_writev, sys_process_vm_writev),// 311
|
|
LINX_(__NR_kcmp, sys_kcmp), // 312
|
|
LINX_(__NR_finit_module, sys_finit_module), // 313
|
|
LINX_(__NR_sched_setattr, sys_sched_setattr), // 314
|
|
LINXY(__NR_sched_getattr, sys_sched_getattr), // 315
|
|
LINX_(__NR_renameat2, sys_renameat2), // 316
|
|
// LIN__(__NR_seccomp, sys_ni_syscall), // 317
|
|
LINXY(__NR_getrandom, sys_getrandom), // 318
|
|
LINXY(__NR_memfd_create, sys_memfd_create), // 319
|
|
|
|
// LIN__(__NR_kexec_file_load, sys_ni_syscall), // 320
|
|
LINXY(__NR_bpf, sys_bpf), // 321
|
|
LINX_(__NR_execveat, sys_execveat), // 322
|
|
|
|
LINXY(__NR_preadv2, sys_preadv2), // 327
|
|
LINX_(__NR_pwritev2, sys_pwritev2), // 328
|
|
|
|
LINXY(__NR_statx, sys_statx), // 332
|
|
|
|
GENX_(__NR_rseq, sys_ni_syscall), // 334
|
|
|
|
LINX_(__NR_membarrier, sys_membarrier), // 324
|
|
|
|
LINX_(__NR_copy_file_range, sys_copy_file_range), // 326
|
|
|
|
LINXY(__NR_pkey_mprotect, sys_pkey_mprotect), // 329
|
|
LINX_(__NR_pkey_alloc, sys_pkey_alloc), // 330
|
|
LINX_(__NR_pkey_free, sys_pkey_free), // 331
|
|
|
|
LINXY(__NR_io_uring_setup, sys_io_uring_setup), // 425
|
|
LINXY(__NR_io_uring_enter, sys_io_uring_enter), // 426
|
|
LINXY(__NR_io_uring_register, sys_io_uring_register), // 427
|
|
|
|
LINXY(__NR_pidfd_open, sys_pidfd_open), // 434
|
|
GENX_(__NR_clone3, sys_ni_syscall), // 435
|
|
LINXY(__NR_close_range, sys_close_range), // 436
|
|
LINXY(__NR_openat2, sys_openat2), // 437
|
|
|
|
LINX_(__NR_faccessat2, sys_faccessat2), // 439
|
|
|
|
LINXY(__NR_memfd_secret, sys_memfd_secret), // 447
|
|
};
|
|
|
|
SyscallTableEntry* ML_(get_linux_syscall_entry) ( UInt sysno )
|
|
{
|
|
const UInt syscall_table_size
|
|
= sizeof(syscall_table) / sizeof(syscall_table[0]);
|
|
|
|
/* Is it in the contiguous initial section of the table? */
|
|
if (sysno < syscall_table_size) {
|
|
SyscallTableEntry* sys = &syscall_table[sysno];
|
|
if (sys->before == NULL)
|
|
return NULL; /* no entry */
|
|
else
|
|
return sys;
|
|
}
|
|
|
|
/* Can't find a wrapper */
|
|
return NULL;
|
|
}
|
|
|
|
#endif // defined(VGP_amd64_linux)
|
|
|
|
/*--------------------------------------------------------------------*/
|
|
/*--- end ---*/
|
|
/*--------------------------------------------------------------------*/
|