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521 lines
15 KiB
C
521 lines
15 KiB
C
/* $NetBSD: linux32_machdep.c,v 1.36 2014/02/19 21:45:01 dsl Exp $ */
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/*-
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* Copyright (c) 2006 Emmanuel Dreyfus, all rights reserved.
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*
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* Redistribution and use in source and binary forms, with or without
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* modification, are permitted provided that the following conditions
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* are met:
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* 1. Redistributions of source code must retain the above copyright
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* notice, this list of conditions and the following disclaimer.
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* 2. Redistributions in binary form must reproduce the above copyright
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* notice, this list of conditions and the following disclaimer in the
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* documentation and/or other materials provided with the distribution.
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* 3. All advertising materials mentioning features or use of this software
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* must display the following acknowledgement:
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* This product includes software developed by Emmanuel Dreyfus
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* 4. The name of the author may not be used to endorse or promote
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* products derived from this software without specific prior written
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* permission.
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*
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* THIS SOFTWARE IS PROVIDED BY THE THE AUTHOR AND CONTRIBUTORS ``AS IS''
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* AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO,
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* THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
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* PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS
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* BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
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* CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
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* SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
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* INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
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* CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
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* ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
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* POSSIBILITY OF SUCH DAMAGE.
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*/
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#include <sys/cdefs.h>
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__KERNEL_RCSID(0, "$NetBSD: linux32_machdep.c,v 1.36 2014/02/19 21:45:01 dsl Exp $");
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#include <sys/param.h>
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#include <sys/proc.h>
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#include <sys/exec.h>
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#include <machine/vmparam.h>
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#include <machine/cpufunc.h>
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#include <machine/netbsd32_machdep.h>
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#include <x86/fpu.h>
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#include <compat/netbsd32/netbsd32.h>
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#include <compat/netbsd32/netbsd32_syscallargs.h>
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#include <compat/linux/common/linux_types.h>
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#include <compat/linux/common/linux_emuldata.h>
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#include <compat/linux/common/linux_signal.h>
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#include <compat/linux/common/linux_errno.h>
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#include <compat/linux/common/linux_exec.h>
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#include <compat/linux/common/linux_ipc.h>
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#include <compat/linux/common/linux_sem.h>
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#include <compat/linux/linux_syscallargs.h>
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#include <compat/linux32/common/linux32_types.h>
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#include <compat/linux32/common/linux32_errno.h>
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#include <compat/linux32/common/linux32_machdep.h>
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#include <compat/linux32/common/linux32_signal.h>
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#include <compat/linux32/common/linux32_exec.h>
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#include <compat/linux32/common/linux32_ipc.h>
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#include <compat/linux32/common/linux32_sem.h>
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#include <compat/linux32/linux32_syscallargs.h>
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#ifdef DEBUG_LINUX
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#define DPRINTF(a) uprintf a
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#else
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#define DPRINTF(a)
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#endif
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extern char linux32_sigcode[];
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extern char linux32_rt_sigcode[];
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extern char linux32_esigcode[];
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static void linux32_save_ucontext(struct lwp *, struct trapframe *,
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const sigset_t *, struct sigaltstack *, struct linux32_ucontext *);
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static void linux32_save_sigcontext(struct lwp *, struct trapframe *,
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const sigset_t *, struct linux32_sigcontext *);
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static void linux32_rt_sendsig(const ksiginfo_t *, const sigset_t *);
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static void linux32_old_sendsig(const ksiginfo_t *, const sigset_t *);
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static int linux32_restore_sigcontext(struct lwp *,
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struct linux32_sigcontext *, register_t *);
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void
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linux32_sendsig(const ksiginfo_t *ksi, const sigset_t *mask)
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{
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if (SIGACTION(curproc, ksi->ksi_signo).sa_flags & SA_SIGINFO)
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linux32_rt_sendsig(ksi, mask);
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else
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linux32_old_sendsig(ksi, mask);
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return;
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}
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void
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linux32_old_sendsig(const ksiginfo_t *ksi, const sigset_t *mask)
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{
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struct lwp *l = curlwp;
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struct proc *p = l->l_proc;
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struct trapframe *tf;
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struct linux32_sigframe *fp, frame;
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int onstack, error;
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int sig = ksi->ksi_signo;
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sig_t catcher = SIGACTION(p, sig).sa_handler;
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struct sigaltstack *sas = &l->l_sigstk;
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tf = l->l_md.md_regs;
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/* Do we need to jump onto the signal stack? */
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onstack = (sas->ss_flags & (SS_DISABLE | SS_ONSTACK)) == 0 &&
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(SIGACTION(p, sig).sa_flags & SA_ONSTACK) != 0;
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/* Allocate space for the signal handler context. */
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if (onstack)
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fp = (struct linux32_sigframe *)((char *)sas->ss_sp +
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sas->ss_size);
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else
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fp = (struct linux32_sigframe *)tf->tf_rsp;
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fp--;
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DPRINTF(("old: onstack = %d, fp = %p sig = %d rip = 0x%lx\n",
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onstack, fp, sig, tf->tf_rip));
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/* Build stack frame for signal trampoline. */
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NETBSD32PTR32(frame.sf_handler, catcher);
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frame.sf_sig = native_to_linux32_signo[sig];
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linux32_save_sigcontext(l, tf, mask, &frame.sf_sc);
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sendsig_reset(l, sig);
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mutex_exit(p->p_lock);
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error = copyout(&frame, fp, sizeof(frame));
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mutex_enter(p->p_lock);
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if (error != 0) {
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/*
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* Process has trashed its stack; give it an illegal
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* instruction to halt it in its tracks.
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*/
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sigexit(l, SIGILL);
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/* NOTREACHED */
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}
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/*
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* Build context to run handler in.
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*/
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tf->tf_fs = GSEL(GUDATA32_SEL, SEL_UPL) & 0xffffffff;
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tf->tf_es = GSEL(GUDATA32_SEL, SEL_UPL) & 0xffffffff;
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tf->tf_ds = GSEL(GUDATA32_SEL, SEL_UPL) & 0xffffffff;
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tf->tf_rip = ((long)p->p_sigctx.ps_sigcode) & 0xffffffff;
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tf->tf_cs = GSEL(GUCODE32_SEL, SEL_UPL) & 0xffffffff;
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tf->tf_rflags &= ~PSL_CLEARSIG & 0xffffffff;
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tf->tf_rsp = (long)fp & 0xffffffff;
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tf->tf_ss = GSEL(GUDATA32_SEL, SEL_UPL) & 0xffffffff;
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/* Remember that we're now on the signal stack. */
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if (onstack)
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sas->ss_flags |= SS_ONSTACK;
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return;
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}
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void
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linux32_rt_sendsig(const ksiginfo_t *ksi, const sigset_t *mask)
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{
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struct lwp *l = curlwp;
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struct proc *p = l->l_proc;
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struct trapframe *tf;
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struct linux32_rt_sigframe *fp, frame;
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int onstack, error;
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linux32_siginfo_t *lsi;
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int sig = ksi->ksi_signo;
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sig_t catcher = SIGACTION(p, sig).sa_handler;
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struct sigaltstack *sas = &l->l_sigstk;
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tf = l->l_md.md_regs;
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/* Do we need to jump onto the signal stack? */
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onstack = (sas->ss_flags & (SS_DISABLE | SS_ONSTACK)) == 0 &&
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(SIGACTION(p, sig).sa_flags & SA_ONSTACK) != 0;
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/* Allocate space for the signal handler context. */
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if (onstack)
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fp = (struct linux32_rt_sigframe *)((char *)sas->ss_sp +
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sas->ss_size);
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else
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fp = (struct linux32_rt_sigframe *)tf->tf_rsp;
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fp--;
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/* Build stack frame for signal trampoline. */
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NETBSD32PTR32(frame.sf_handler, catcher);
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frame.sf_sig = native_to_linux32_signo[sig];
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NETBSD32PTR32(frame.sf_sip, &fp->sf_si);
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NETBSD32PTR32(frame.sf_ucp, &fp->sf_uc);
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DPRINTF(("rt: onstack = %d, fp = %p sig = %d rip = 0x%lx\n",
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onstack, fp, sig, tf->tf_rip));
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lsi = &frame.sf_si;
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(void)memset(lsi, 0, sizeof(frame.sf_si));
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lsi->lsi_errno = native_to_linux32_errno[ksi->ksi_errno];
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lsi->lsi_code = native_to_linux_si_code(ksi->ksi_code);
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lsi->lsi_signo = frame.sf_sig;
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switch (lsi->lsi_signo) {
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case LINUX32_SIGILL:
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case LINUX32_SIGFPE:
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case LINUX32_SIGSEGV:
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case LINUX32_SIGBUS:
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case LINUX32_SIGTRAP:
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NETBSD32PTR32(lsi->lsi_addr, ksi->ksi_addr);
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break;
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case LINUX32_SIGCHLD:
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lsi->lsi_uid = ksi->ksi_uid;
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lsi->lsi_pid = ksi->ksi_pid;
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lsi->lsi_utime = ksi->ksi_utime;
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lsi->lsi_stime = ksi->ksi_stime;
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lsi->lsi_status = native_to_linux_si_status(ksi->ksi_code,
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ksi->ksi_status);
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break;
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case LINUX32_SIGIO:
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lsi->lsi_band = ksi->ksi_band;
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lsi->lsi_fd = ksi->ksi_fd;
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break;
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default:
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lsi->lsi_uid = ksi->ksi_uid;
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lsi->lsi_pid = ksi->ksi_pid;
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if (lsi->lsi_signo == LINUX32_SIGALRM ||
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lsi->lsi_signo >= LINUX32_SIGRTMIN)
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NETBSD32PTR32(lsi->lsi_value.sival_ptr,
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ksi->ksi_value.sival_ptr);
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break;
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}
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/* Save register context. */
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linux32_save_ucontext(l, tf, mask, sas, &frame.sf_uc);
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sendsig_reset(l, sig);
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mutex_exit(p->p_lock);
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error = copyout(&frame, fp, sizeof(frame));
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mutex_enter(p->p_lock);
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if (error != 0) {
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/*
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* Process has trashed its stack; give it an illegal
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* instruction to halt it in its tracks.
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*/
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sigexit(l, SIGILL);
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/* NOTREACHED */
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}
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/*
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* Build context to run handler in.
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*/
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tf->tf_fs = GSEL(GUDATA32_SEL, SEL_UPL) & 0xffffffff;
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tf->tf_es = GSEL(GUDATA32_SEL, SEL_UPL) & 0xffffffff;
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tf->tf_ds = GSEL(GUDATA32_SEL, SEL_UPL) & 0xffffffff;
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tf->tf_rip = (((long)p->p_sigctx.ps_sigcode) +
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(linux32_rt_sigcode - linux32_sigcode)) & 0xffffffff;
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tf->tf_cs = GSEL(GUCODE32_SEL, SEL_UPL) & 0xffffffff;
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tf->tf_rflags &= ~PSL_CLEARSIG & 0xffffffff;
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tf->tf_rsp = (long)fp & 0xffffffff;
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tf->tf_ss = GSEL(GUDATA32_SEL, SEL_UPL) & 0xffffffff;
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/* Remember that we're now on the signal stack. */
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if (onstack)
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sas->ss_flags |= SS_ONSTACK;
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return;
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}
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void
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linux32_setregs(struct lwp *l, struct exec_package *pack, u_long stack)
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{
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struct pcb *pcb = lwp_getpcb(l);
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struct trapframe *tf;
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struct proc *p = l->l_proc;
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#if defined(USER_LDT) && 0
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pmap_ldt_cleanup(p);
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#endif
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netbsd32_adjust_limits(p);
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fpu_save_area_clear(l, __Linux_NPXCW__);
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l->l_md.md_flags |= MDL_COMPAT32; /* Forces iret not sysret */
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pcb->pcb_flags = PCB_COMPAT32;
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p->p_flag |= PK_32;
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tf = l->l_md.md_regs;
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tf->tf_rax = 0;
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tf->tf_rbx = (u_int32_t)p->p_psstrp;
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tf->tf_rcx = pack->ep_entry & 0xffffffff;
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tf->tf_rdx = 0;
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tf->tf_rsi = 0;
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tf->tf_rdi = 0;
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tf->tf_rbp = 0;
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tf->tf_rsp = stack & 0xffffffff;
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tf->tf_r8 = 0;
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tf->tf_r9 = 0;
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tf->tf_r10 = 0;
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tf->tf_r11 = 0;
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tf->tf_r12 = 0;
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tf->tf_r13 = 0;
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tf->tf_r14 = 0;
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tf->tf_r15 = 0;
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tf->tf_rip = pack->ep_entry & 0xffffffff;
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tf->tf_rflags = PSL_USERSET;
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tf->tf_cs = GSEL(GUCODE32_SEL, SEL_UPL);
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tf->tf_ss = GSEL(GUDATA32_SEL, SEL_UPL);
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tf->tf_ds = GSEL(GUDATA32_SEL, SEL_UPL);
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tf->tf_es = GSEL(GUDATA32_SEL, SEL_UPL);
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cpu_fsgs_zero(l);
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cpu_fsgs_reload(l, GSEL(GUDATA32_SEL, SEL_UPL), GSEL(GUDATA32_SEL, SEL_UPL));
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}
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static void
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linux32_save_ucontext(struct lwp *l, struct trapframe *tf,
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const sigset_t *mask, struct sigaltstack *sas, struct linux32_ucontext *uc)
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{
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uc->uc_flags = 0;
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NETBSD32PTR32(uc->uc_link, NULL);
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native_to_linux32_sigaltstack(&uc->uc_stack, sas);
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linux32_save_sigcontext(l, tf, mask, &uc->uc_mcontext);
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native_to_linux32_sigset(&uc->uc_sigmask, mask);
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(void)memset(&uc->uc_fpregs_mem, 0, sizeof(uc->uc_fpregs_mem));
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}
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static void
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linux32_save_sigcontext(struct lwp *l, struct trapframe *tf,
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const sigset_t *mask, struct linux32_sigcontext *sc)
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{
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struct pcb *pcb = lwp_getpcb(l);
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/* Save register context. */
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sc->sc_gs = tf->tf_gs;
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sc->sc_fs = tf->tf_fs;
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sc->sc_es = tf->tf_es;
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sc->sc_ds = tf->tf_ds;
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sc->sc_eflags = tf->tf_rflags;
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sc->sc_edi = tf->tf_rdi;
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sc->sc_esi = tf->tf_rsi;
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sc->sc_esp = tf->tf_rsp;
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sc->sc_ebp = tf->tf_rbp;
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sc->sc_ebx = tf->tf_rbx;
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sc->sc_edx = tf->tf_rdx;
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sc->sc_ecx = tf->tf_rcx;
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sc->sc_eax = tf->tf_rax;
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sc->sc_eip = tf->tf_rip;
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sc->sc_cs = tf->tf_cs;
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sc->sc_esp_at_signal = tf->tf_rsp;
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sc->sc_ss = tf->tf_ss;
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sc->sc_err = tf->tf_err;
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sc->sc_trapno = tf->tf_trapno;
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sc->sc_cr2 = pcb->pcb_cr2;
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NETBSD32PTR32(sc->sc_387, NULL);
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/* Save signal stack. */
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/* Linux doesn't save the onstack flag in sigframe */
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/* Save signal mask. */
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native_to_linux32_old_sigset(&sc->sc_mask, mask);
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}
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int
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linux32_sys_sigreturn(struct lwp *l,
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const struct linux32_sys_sigreturn_args *uap, register_t *retval)
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{
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/* {
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syscallarg(linux32_sigcontextp_t) scp;
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} */
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struct linux32_sigcontext ctx;
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int error;
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if ((error = copyin(SCARG_P32(uap, scp), &ctx, sizeof(ctx))) != 0)
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return error;
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return linux32_restore_sigcontext(l, &ctx, retval);
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}
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int
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linux32_sys_rt_sigreturn(struct lwp *l,
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const struct linux32_sys_rt_sigreturn_args *uap, register_t *retval)
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{
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/* {
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syscallarg(linux32_ucontextp_t) ucp;
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} */
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struct linux32_ucontext ctx;
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int error;
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if ((error = copyin(SCARG_P32(uap, ucp), &ctx, sizeof(ctx))) != 0)
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return error;
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return linux32_restore_sigcontext(l, &ctx.uc_mcontext, retval);
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}
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static int
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linux32_restore_sigcontext(struct lwp *l, struct linux32_sigcontext *scp,
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register_t *retval)
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{
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struct trapframe *tf;
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struct proc *p = l->l_proc;
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struct sigaltstack *sas = &l->l_sigstk;
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struct pcb *pcb;
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sigset_t mask;
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ssize_t ss_gap;
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register_t fssel, gssel;
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/* Restore register context. */
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tf = l->l_md.md_regs;
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pcb = lwp_getpcb(l);
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DPRINTF(("sigreturn enter rsp=0x%lx rip=0x%lx\n", tf->tf_rsp,
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tf->tf_rip));
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/*
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* Check for security violations.
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*/
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if (((scp->sc_eflags ^ tf->tf_rflags) & PSL_USERSTATIC) != 0 ||
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!USERMODE(scp->sc_cs, scp->sc_eflags))
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return EINVAL;
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if (scp->sc_fs != 0 && !VALID_USER_DSEL32(scp->sc_fs) &&
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!(VALID_USER_FSEL32(scp->sc_fs) && pcb->pcb_fs != 0))
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return EINVAL;
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if (scp->sc_gs != 0 && !VALID_USER_DSEL32(scp->sc_gs) &&
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!(VALID_USER_GSEL32(scp->sc_gs) && pcb->pcb_gs != 0))
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return EINVAL;
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if (scp->sc_es != 0 && !VALID_USER_DSEL32(scp->sc_es))
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return EINVAL;
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if (!VALID_USER_DSEL32(scp->sc_ds) ||
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!VALID_USER_DSEL32(scp->sc_ss))
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return EINVAL;
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if (scp->sc_eip >= VM_MAXUSER_ADDRESS32)
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return EINVAL;
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gssel = (register_t)scp->sc_gs & 0xffff;
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fssel = (register_t)scp->sc_fs & 0xffff;
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cpu_fsgs_reload(l, fssel, gssel);
|
|
tf->tf_es = (register_t)scp->sc_es & 0xffff;
|
|
tf->tf_ds = (register_t)scp->sc_ds & 0xffff;
|
|
tf->tf_rflags &= ~PSL_USER;
|
|
tf->tf_rflags |= ((register_t)scp->sc_eflags & PSL_USER);
|
|
tf->tf_rdi = (register_t)scp->sc_edi & 0xffffffff;
|
|
tf->tf_rsi = (register_t)scp->sc_esi & 0xffffffff;
|
|
tf->tf_rbp = (register_t)scp->sc_ebp & 0xffffffff;
|
|
tf->tf_rbx = (register_t)scp->sc_ebx & 0xffffffff;
|
|
tf->tf_rdx = (register_t)scp->sc_edx & 0xffffffff;
|
|
tf->tf_rcx = (register_t)scp->sc_ecx & 0xffffffff;
|
|
tf->tf_rax = (register_t)scp->sc_eax & 0xffffffff;
|
|
tf->tf_rip = (register_t)scp->sc_eip & 0xffffffff;
|
|
tf->tf_cs = (register_t)scp->sc_cs & 0xffff;
|
|
tf->tf_rsp = (register_t)scp->sc_esp_at_signal & 0xffffffff;
|
|
tf->tf_ss = (register_t)scp->sc_ss & 0xffff;
|
|
|
|
mutex_enter(p->p_lock);
|
|
|
|
/* Restore signal stack. */
|
|
ss_gap = (ssize_t)
|
|
((char *)NETBSD32IPTR64(scp->sc_esp_at_signal)
|
|
- (char *)sas->ss_sp);
|
|
if (ss_gap >= 0 && ss_gap < sas->ss_size)
|
|
sas->ss_flags |= SS_ONSTACK;
|
|
else
|
|
sas->ss_flags &= ~SS_ONSTACK;
|
|
|
|
/* Restore signal mask. */
|
|
linux32_old_to_native_sigset(&mask, &scp->sc_mask);
|
|
(void) sigprocmask1(l, SIG_SETMASK, &mask, 0);
|
|
|
|
mutex_exit(p->p_lock);
|
|
|
|
DPRINTF(("linux32_sigreturn: rip = 0x%lx, rsp = 0x%lx, flags = 0x%lx\n",
|
|
tf->tf_rip, tf->tf_rsp, tf->tf_rflags));
|
|
return EJUSTRETURN;
|
|
}
|
|
|
|
int
|
|
linux32_sys_set_thread_area(struct lwp *l,
|
|
const struct linux32_sys_set_thread_area_args *uap, register_t *retval)
|
|
{
|
|
/* {
|
|
syscallarg(linux32_user_descp_t) desc;
|
|
} */
|
|
|
|
return linux_lwp_setprivate(l, SCARG_P32(uap, desc));
|
|
}
|
|
|
|
int
|
|
linux32_sys_get_thread_area(struct lwp *l,
|
|
const struct linux32_sys_get_thread_area_args *uap, register_t *retval)
|
|
{
|
|
/* {
|
|
syscallarg(linux32_user_descp_t) desc;
|
|
} */
|
|
|
|
/* glibc doesn't actually call this. */
|
|
return ENOSYS;
|
|
}
|
|
|
|
int
|
|
linux32_sys_modify_ldt(struct lwp *l, const struct linux32_sys_modify_ldt_args *uap, register_t *retval)
|
|
{
|
|
/* {
|
|
syscallarg(int) func;
|
|
syscallarg(netbsd32_charp) ptr;
|
|
syscallarg(netbsd32_size_t) bytecount;
|
|
} */
|
|
struct linux_sys_modify_ldt_args ua;
|
|
|
|
NETBSD32TO64_UAP(func);
|
|
NETBSD32TOP_UAP(ptr, void *);
|
|
NETBSD32TOX_UAP(bytecount, size_t);
|
|
return linux_sys_modify_ldt(l, &ua, retval);
|
|
}
|