blob: 09053ac7868b4f720054d60018a2366e74b005a5 [file] [log] [blame]
// Copyright 2009 The Go Authors. All rights reserved.
// Use of this source code is governed by a BSD-style
// license that can be found in the LICENSE file.
#include "runtime.h"
#include "defs.h"
#include "signals.h"
#include "os.h"
extern void sigtramp(void);
typedef struct sigaction {
union {
void (*__sa_handler)(int32);
void (*__sa_sigaction)(int32, Siginfo*, void *);
} __sigaction_u; /* signal handler */
int32 sa_flags; /* see signal options below */
int64 sa_mask; /* signal mask to apply */
} Sigaction;
void
dumpregs(Mcontext *r)
{
printf("rax %X\n", r->mc_rax);
printf("rbx %X\n", r->mc_rbx);
printf("rcx %X\n", r->mc_rcx);
printf("rdx %X\n", r->mc_rdx);
printf("rdi %X\n", r->mc_rdi);
printf("rsi %X\n", r->mc_rsi);
printf("rbp %X\n", r->mc_rbp);
printf("rsp %X\n", r->mc_rsp);
printf("r8 %X\n", r->mc_r8 );
printf("r9 %X\n", r->mc_r9 );
printf("r10 %X\n", r->mc_r10);
printf("r11 %X\n", r->mc_r11);
printf("r12 %X\n", r->mc_r12);
printf("r13 %X\n", r->mc_r13);
printf("r14 %X\n", r->mc_r14);
printf("r15 %X\n", r->mc_r15);
printf("rip %X\n", r->mc_rip);
printf("rflags %X\n", r->mc_flags);
printf("cs %X\n", r->mc_cs);
printf("fs %X\n", r->mc_fs);
printf("gs %X\n", r->mc_gs);
}
String
signame(int32 sig)
{
if(sig < 0 || sig >= NSIG)
return emptystring;
return gostringnocopy((byte*)sigtab[sig].name);
}
void
sighandler(int32 sig, Siginfo* info, void* context)
{
Ucontext *uc;
Mcontext *r;
G *gp;
uintptr *sp;
uc = context;
r = &uc->uc_mcontext;
if((gp = m->curg) != nil && (sigtab[sig].flags & SigPanic)) {
// Make it look like a call to the signal func.
// Have to pass arguments out of band since
// augmenting the stack frame would break
// the unwinding code.
gp->sig = sig;
gp->sigcode0 = info->si_code;
gp->sigcode1 = (uintptr)info->si_addr;
// Only push sigpanic if r->mc_rip != 0.
// If r->mc_rip == 0, probably panicked because of a
// call to a nil func. Not pushing that onto sp will
// make the trace look like a call to sigpanic instead.
// (Otherwise the trace will end at sigpanic and we
// won't get to see who faulted.)
if(r->mc_rip != 0) {
sp = (uintptr*)r->mc_rsp;
*--sp = r->mc_rip;
r->mc_rsp = (uintptr)sp;
}
r->mc_rip = (uintptr)sigpanic;
return;
}
if(sigtab[sig].flags & SigQueue) {
if(sigsend(sig) || (sigtab[sig].flags & SigIgnore))
return;
exit(2); // SIGINT, SIGTERM, etc
}
if(panicking) // traceback already printed
exit(2);
panicking = 1;
if(sig < 0 || sig >= NSIG)
printf("Signal %d\n", sig);
else
printf("%s\n", sigtab[sig].name);
printf("PC=%X\n", r->mc_rip);
printf("\n");
if(gotraceback()){
traceback((void*)r->mc_rip, (void*)r->mc_rsp, 0, g);
tracebackothers(g);
dumpregs(r);
}
breakpoint();
exit(2);
}
void
sigignore(void)
{
}
void
signalstack(byte *p, int32 n)
{
Sigaltstack st;
st.ss_sp = (int8*)p;
st.ss_size = n;
st.ss_flags = 0;
sigaltstack(&st, nil);
}
void
initsig(int32 queue)
{
static Sigaction sa;
siginit();
int32 i;
sa.sa_flags |= SA_ONSTACK | SA_SIGINFO;
sa.sa_mask = ~0x0ull;
for(i = 0; i < NSIG; i++) {
if(sigtab[i].flags) {
if((sigtab[i].flags & SigQueue) != queue)
continue;
if(sigtab[i].flags & (SigCatch | SigQueue))
sa.__sigaction_u.__sa_sigaction = (void*) sigtramp;
else
sa.__sigaction_u.__sa_sigaction = (void*) sigignore;
if(sigtab[i].flags & SigRestart)
sa.sa_flags |= SA_RESTART;
else
sa.sa_flags &= ~SA_RESTART;
sigaction(i, &sa, nil);
}
}
}