2 * i386 signal handling routines
4 * Copyright 1999 Alexandre Julliard
6 * This library is free software; you can redistribute it and/or
7 * modify it under the terms of the GNU Lesser General Public
8 * License as published by the Free Software Foundation; either
9 * version 2.1 of the License, or (at your option) any later version.
11 * This library is distributed in the hope that it will be useful,
12 * but WITHOUT ANY WARRANTY; without even the implied warranty of
13 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
14 * Lesser General Public License for more details.
16 * You should have received a copy of the GNU Lesser General Public
17 * License along with this library; if not, write to the Free Software
18 * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301, USA
24 #include "wine/port.h"
31 #include <sys/types.h>
36 #ifdef HAVE_SYS_PARAM_H
37 # include <sys/param.h>
42 # ifdef HAVE_SYS_SYSCALL_H
43 # include <sys/syscall.h>
47 #ifdef HAVE_SYS_VM86_H
48 # include <sys/vm86.h>
51 #ifdef HAVE_SYS_SIGNAL_H
52 # include <sys/signal.h>
54 #ifdef HAVE_SYS_SYSCTL_H
55 # include <sys/sysctl.h>
59 #include "wine/library.h"
60 #include "ntdll_misc.h"
61 #include "wine/exception.h"
62 #include "wine/debug.h"
64 #ifdef HAVE_VALGRIND_MEMCHECK_H
65 #include <valgrind/memcheck.h>
68 #undef ERR /* Solaris needs to define this */
70 /* not defined for x86, so copy the x86_64 definition */
71 typedef struct DECLSPEC_ALIGN(16) _M128A
92 M128A FloatRegisters
[8];
93 M128A XmmRegisters
[16];
97 /***********************************************************************
98 * signal context platform-specific definitions
103 typedef ucontext_t SIGCONTEXT
;
105 #define EAX_sig(context) ((context)->uc_mcontext.gregs[REG_EAX])
106 #define EBX_sig(context) ((context)->uc_mcontext.gregs[REG_EBX])
107 #define ECX_sig(context) ((context)->uc_mcontext.gregs[REG_ECX])
108 #define EDX_sig(context) ((context)->uc_mcontext.gregs[REG_EDX])
109 #define ESI_sig(context) ((context)->uc_mcontext.gregs[REG_ESI])
110 #define EDI_sig(context) ((context)->uc_mcontext.gregs[REG_EDI])
111 #define EBP_sig(context) ((context)->uc_mcontext.gregs[REG_EBP])
112 #define ESP_sig(context) ((context)->uc_mcontext.gregs[REG_ESP])
114 #define CS_sig(context) ((context)->uc_mcontext.gregs[REG_CS])
115 #define DS_sig(context) ((context)->uc_mcontext.gregs[REG_DS])
116 #define ES_sig(context) ((context)->uc_mcontext.gregs[REG_ES])
117 #define SS_sig(context) ((context)->uc_mcontext.gregs[REG_SS])
118 #define FS_sig(context) ((context)->uc_mcontext.gregs[REG_FS])
119 #define GS_sig(context) ((context)->uc_mcontext.gregs[REG_GS])
121 #define EFL_sig(context) ((context)->uc_mcontext.gregs[REG_EFL])
122 #define EIP_sig(context) ((context)->uc_mcontext.gregs[REG_EIP])
123 #define TRAP_sig(context) ((context)->uc_mcontext.gregs[REG_TRAPNO])
124 #define ERROR_sig(context) ((context)->uc_mcontext.gregs[REG_ERR])
126 #define FPU_sig(context) ((FLOATING_SAVE_AREA*)((context)->uc_mcontext.fpregs))
127 #define FPUX_sig(context) (FPU_sig(context) && !((context)->uc_mcontext.fpregs->status >> 16) ? (XMM_SAVE_AREA32 *)(FPU_sig(context) + 1) : NULL)
129 #define VM86_EAX 0 /* the %eax value while vm86_enter is executing */
131 int vm86_enter( void **vm86_ptr
);
132 void vm86_return(void);
133 void vm86_return_end(void);
134 __ASM_GLOBAL_FUNC(vm86_enter
,
136 "movl %esp, %ebp\n\t"
137 "movl $166,%eax\n\t" /*SYS_vm86*/
138 "movl 8(%ebp),%ecx\n\t" /* vm86_ptr */
139 "movl (%ecx),%ecx\n\t"
141 "movl $1,%ebx\n\t" /*VM86_ENTER*/
142 "pushl %ecx\n\t" /* put vm86plus_struct ptr somewhere we can find it */
146 ".globl " __ASM_NAME("vm86_return") "\n\t"
147 __ASM_FUNC("vm86_return") "\n"
148 __ASM_NAME("vm86_return") ":\n\t"
154 "testl %eax,%eax\n\t"
156 "cmpb $0,%al\n\t" /* VM86_SIGNAL */
157 "je " __ASM_NAME("vm86_enter") "\n\t"
159 "movl 4(%esp),%ecx\n\t" /* vm86_ptr */
161 ".globl " __ASM_NAME("vm86_return_end") "\n\t"
162 __ASM_FUNC("vm86_return_end") "\n"
163 __ASM_NAME("vm86_return_end") ":\n\t"
166 #ifdef HAVE_SYS_VM86_H
174 #include <machine/frame.h>
175 typedef struct trapframe SIGCONTEXT
;
177 #define EAX_sig(context) ((context)->tf_eax)
178 #define EBX_sig(context) ((context)->tf_ebx)
179 #define ECX_sig(context) ((context)->tf_ecx)
180 #define EDX_sig(context) ((context)->tf_edx)
181 #define ESI_sig(context) ((context)->tf_esi)
182 #define EDI_sig(context) ((context)->tf_edi)
183 #define EBP_sig(context) ((context)->tf_ebp)
185 #define CS_sig(context) ((context)->tf_cs)
186 #define DS_sig(context) ((context)->tf_ds)
187 #define ES_sig(context) ((context)->tf_es)
188 #define SS_sig(context) ((context)->tf_ss)
190 #define EFL_sig(context) ((context)->tf_eflags)
192 #define EIP_sig(context) (*((unsigned long*)&(context)->tf_eip))
193 #define ESP_sig(context) (*((unsigned long*)&(context)->tf_esp))
195 #define FPU_sig(context) NULL /* FIXME */
196 #define FPUX_sig(context) NULL /* FIXME */
200 #if defined(__NetBSD__) || defined(__FreeBSD__) || defined(__FreeBSD_kernel__) || defined(__OpenBSD__)
202 typedef struct sigcontext SIGCONTEXT
;
204 #define EAX_sig(context) ((context)->sc_eax)
205 #define EBX_sig(context) ((context)->sc_ebx)
206 #define ECX_sig(context) ((context)->sc_ecx)
207 #define EDX_sig(context) ((context)->sc_edx)
208 #define ESI_sig(context) ((context)->sc_esi)
209 #define EDI_sig(context) ((context)->sc_edi)
210 #define EBP_sig(context) ((context)->sc_ebp)
212 #define CS_sig(context) ((context)->sc_cs)
213 #define DS_sig(context) ((context)->sc_ds)
214 #define ES_sig(context) ((context)->sc_es)
215 #define FS_sig(context) ((context)->sc_fs)
216 #define GS_sig(context) ((context)->sc_gs)
217 #define SS_sig(context) ((context)->sc_ss)
219 #define TRAP_sig(context) ((context)->sc_trapno)
220 #define ERROR_sig(context) ((context)->sc_err)
221 #define EFL_sig(context) ((context)->sc_eflags)
223 #define EIP_sig(context) ((context)->sc_eip)
224 #define ESP_sig(context) ((context)->sc_esp)
226 #define FPU_sig(context) NULL /* FIXME */
227 #define FPUX_sig(context) NULL /* FIXME */
231 #if defined(__svr4__) || defined(_SCO_DS) || defined(__sun)
234 #include <sys/regset.h>
236 #include <sys/ucontext.h>
237 typedef struct ucontext SIGCONTEXT
;
243 #define EAX_sig(context) ((context)->uc_mcontext.gregs[EAX])
244 #define EBX_sig(context) ((context)->uc_mcontext.gregs[EBX])
245 #define ECX_sig(context) ((context)->uc_mcontext.gregs[ECX])
246 #define EDX_sig(context) ((context)->uc_mcontext.gregs[EDX])
247 #define ESI_sig(context) ((context)->uc_mcontext.gregs[ESI])
248 #define EDI_sig(context) ((context)->uc_mcontext.gregs[EDI])
249 #define EBP_sig(context) ((context)->uc_mcontext.gregs[EBP])
251 #define CS_sig(context) ((context)->uc_mcontext.gregs[CS])
252 #define DS_sig(context) ((context)->uc_mcontext.gregs[DS])
253 #define ES_sig(context) ((context)->uc_mcontext.gregs[ES])
254 #define SS_sig(context) ((context)->uc_mcontext.gregs[SS])
256 #define FS_sig(context) ((context)->uc_mcontext.gregs[FS])
257 #define GS_sig(context) ((context)->uc_mcontext.gregs[GS])
259 #define EFL_sig(context) ((context)->uc_mcontext.gregs[EFL])
261 #define EIP_sig(context) ((context)->uc_mcontext.gregs[EIP])
263 #define ESP_sig(context) ((context)->uc_mcontext.gregs[UESP])
265 #define ESP_sig(context) ((context)->uc_mcontext.gregs[R_ESP])
267 #define ESP_sig(context) ((context)->uc_mcontext.gregs[ESP])
270 #define ERROR_sig(context) ((context)->uc_mcontext.gregs[ERR])
273 #define TRAP_sig(context) ((context)->uc_mcontext.gregs[TRAPNO])
276 #define FPU_sig(context) NULL /* FIXME */
277 #define FPUX_sig(context) NULL /* FIXME */
279 #endif /* svr4 || SCO_DS */
282 # include <sys/ucontext.h>
284 typedef ucontext_t SIGCONTEXT
;
286 /* work around silly renaming of struct members in OS X 10.5 */
287 #if __DARWIN_UNIX03 && defined(_STRUCT_X86_EXCEPTION_STATE32)
288 #define EAX_sig(context) ((context)->uc_mcontext->__ss.__eax)
289 #define EBX_sig(context) ((context)->uc_mcontext->__ss.__ebx)
290 #define ECX_sig(context) ((context)->uc_mcontext->__ss.__ecx)
291 #define EDX_sig(context) ((context)->uc_mcontext->__ss.__edx)
292 #define ESI_sig(context) ((context)->uc_mcontext->__ss.__esi)
293 #define EDI_sig(context) ((context)->uc_mcontext->__ss.__edi)
294 #define EBP_sig(context) ((context)->uc_mcontext->__ss.__ebp)
295 #define CS_sig(context) ((context)->uc_mcontext->__ss.__cs)
296 #define DS_sig(context) ((context)->uc_mcontext->__ss.__ds)
297 #define ES_sig(context) ((context)->uc_mcontext->__ss.__es)
298 #define FS_sig(context) ((context)->uc_mcontext->__ss.__fs)
299 #define GS_sig(context) ((context)->uc_mcontext->__ss.__gs)
300 #define SS_sig(context) ((context)->uc_mcontext->__ss.__ss)
301 #define EFL_sig(context) ((context)->uc_mcontext->__ss.__eflags)
302 #define EIP_sig(context) (*((unsigned long*)&(context)->uc_mcontext->__ss.__eip))
303 #define ESP_sig(context) (*((unsigned long*)&(context)->uc_mcontext->__ss.__esp))
304 #define TRAP_sig(context) ((context)->uc_mcontext->__es.__trapno)
305 #define ERROR_sig(context) ((context)->uc_mcontext->__es.__err)
306 #define FPU_sig(context) NULL
307 #define FPUX_sig(context) ((XMM_SAVE_AREA32 *)&(context)->uc_mcontext->__fs.__fpu_fcw)
309 #define EAX_sig(context) ((context)->uc_mcontext->ss.eax)
310 #define EBX_sig(context) ((context)->uc_mcontext->ss.ebx)
311 #define ECX_sig(context) ((context)->uc_mcontext->ss.ecx)
312 #define EDX_sig(context) ((context)->uc_mcontext->ss.edx)
313 #define ESI_sig(context) ((context)->uc_mcontext->ss.esi)
314 #define EDI_sig(context) ((context)->uc_mcontext->ss.edi)
315 #define EBP_sig(context) ((context)->uc_mcontext->ss.ebp)
316 #define CS_sig(context) ((context)->uc_mcontext->ss.cs)
317 #define DS_sig(context) ((context)->uc_mcontext->ss.ds)
318 #define ES_sig(context) ((context)->uc_mcontext->ss.es)
319 #define FS_sig(context) ((context)->uc_mcontext->ss.fs)
320 #define GS_sig(context) ((context)->uc_mcontext->ss.gs)
321 #define SS_sig(context) ((context)->uc_mcontext->ss.ss)
322 #define EFL_sig(context) ((context)->uc_mcontext->ss.eflags)
323 #define EIP_sig(context) (*((unsigned long*)&(context)->uc_mcontext->ss.eip))
324 #define ESP_sig(context) (*((unsigned long*)&(context)->uc_mcontext->ss.esp))
325 #define TRAP_sig(context) ((context)->uc_mcontext->es.trapno)
326 #define ERROR_sig(context) ((context)->uc_mcontext->es.err)
327 #define FPU_sig(context) NULL
328 #define FPUX_sig(context) ((XMM_SAVE_AREA32 *)&(context)->uc_mcontext->fs.fpu_fcw)
331 #endif /* __APPLE__ */
333 WINE_DEFAULT_DEBUG_CHANNEL(seh
);
335 typedef int (*wine_signal_handler
)(unsigned int sig
);
337 static size_t signal_stack_mask
;
338 static size_t signal_stack_size
;
340 static wine_signal_handler handlers
[256];
342 static int fpux_support
; /* whether the CPU support extended fpu context */
344 extern void DECLSPEC_NORETURN
__wine_call_from_32_restore_regs( const CONTEXT
*context
);
348 TRAP_x86_UNKNOWN
= -1, /* Unknown fault (TRAP_sig not defined) */
349 #if defined(__FreeBSD__) || defined(__NetBSD__) || defined(__OpenBSD__)
350 TRAP_x86_DIVIDE
= T_DIVIDE
, /* Division by zero exception */
351 TRAP_x86_TRCTRAP
= T_TRCTRAP
, /* Single-step exception */
352 TRAP_x86_NMI
= T_NMI
, /* NMI interrupt */
353 TRAP_x86_BPTFLT
= T_BPTFLT
, /* Breakpoint exception */
354 TRAP_x86_OFLOW
= T_OFLOW
, /* Overflow exception */
355 TRAP_x86_BOUND
= T_BOUND
, /* Bound range exception */
356 TRAP_x86_PRIVINFLT
= T_PRIVINFLT
, /* Invalid opcode exception */
357 TRAP_x86_DNA
= T_DNA
, /* Device not available exception */
358 TRAP_x86_DOUBLEFLT
= T_DOUBLEFLT
, /* Double fault exception */
359 TRAP_x86_FPOPFLT
= T_FPOPFLT
, /* Coprocessor segment overrun */
360 TRAP_x86_TSSFLT
= T_TSSFLT
, /* Invalid TSS exception */
361 TRAP_x86_SEGNPFLT
= T_SEGNPFLT
, /* Segment not present exception */
362 TRAP_x86_STKFLT
= T_STKFLT
, /* Stack fault */
363 TRAP_x86_PROTFLT
= T_PROTFLT
, /* General protection fault */
364 TRAP_x86_PAGEFLT
= T_PAGEFLT
, /* Page fault */
365 TRAP_x86_ARITHTRAP
= T_ARITHTRAP
, /* Floating point exception */
366 TRAP_x86_ALIGNFLT
= T_ALIGNFLT
, /* Alignment check exception */
367 TRAP_x86_MCHK
= T_MCHK
, /* Machine check exception */
368 TRAP_x86_CACHEFLT
= T_XMMFLT
/* Cache flush exception */
370 TRAP_x86_DIVIDE
= 0, /* Division by zero exception */
371 TRAP_x86_TRCTRAP
= 1, /* Single-step exception */
372 TRAP_x86_NMI
= 2, /* NMI interrupt */
373 TRAP_x86_BPTFLT
= 3, /* Breakpoint exception */
374 TRAP_x86_OFLOW
= 4, /* Overflow exception */
375 TRAP_x86_BOUND
= 5, /* Bound range exception */
376 TRAP_x86_PRIVINFLT
= 6, /* Invalid opcode exception */
377 TRAP_x86_DNA
= 7, /* Device not available exception */
378 TRAP_x86_DOUBLEFLT
= 8, /* Double fault exception */
379 TRAP_x86_FPOPFLT
= 9, /* Coprocessor segment overrun */
380 TRAP_x86_TSSFLT
= 10, /* Invalid TSS exception */
381 TRAP_x86_SEGNPFLT
= 11, /* Segment not present exception */
382 TRAP_x86_STKFLT
= 12, /* Stack fault */
383 TRAP_x86_PROTFLT
= 13, /* General protection fault */
384 TRAP_x86_PAGEFLT
= 14, /* Page fault */
385 TRAP_x86_ARITHTRAP
= 16, /* Floating point exception */
386 TRAP_x86_ALIGNFLT
= 17, /* Alignment check exception */
387 TRAP_x86_MCHK
= 18, /* Machine check exception */
388 TRAP_x86_CACHEFLT
= 19 /* SIMD exception (via SIGFPE) if CPU is SSE capable
389 otherwise Cache flush exception (via SIGSEV) */
394 /***********************************************************************
397 static inline int dispatch_signal(unsigned int sig
)
399 if (handlers
[sig
] == NULL
) return 0;
400 return handlers
[sig
](sig
);
404 /***********************************************************************
407 * Get the trap code for a signal.
409 static inline enum i386_trap_code
get_trap_code( const SIGCONTEXT
*sigcontext
)
412 return TRAP_sig(sigcontext
);
414 return TRAP_x86_UNKNOWN
; /* unknown trap code */
418 /***********************************************************************
421 * Get the error code for a signal.
423 static inline WORD
get_error_code( const SIGCONTEXT
*sigcontext
)
426 return ERROR_sig(sigcontext
);
432 /***********************************************************************
435 * Get the base of the signal stack for the current thread.
437 static inline void *get_signal_stack(void)
439 return (char *)NtCurrentTeb() + 4096;
443 /***********************************************************************
446 * Get the current teb based on the stack pointer.
448 static inline TEB
*get_current_teb(void)
451 __asm__("movl %%esp,%0" : "=g" (esp
) );
452 return (TEB
*)(esp
& ~signal_stack_mask
);
457 /***********************************************************************
460 * Set the register values from a vm86 structure.
462 static void save_vm86_context( CONTEXT
*context
, const struct vm86plus_struct
*vm86
)
464 context
->ContextFlags
= CONTEXT_FULL
;
465 context
->Eax
= vm86
->regs
.eax
;
466 context
->Ebx
= vm86
->regs
.ebx
;
467 context
->Ecx
= vm86
->regs
.ecx
;
468 context
->Edx
= vm86
->regs
.edx
;
469 context
->Esi
= vm86
->regs
.esi
;
470 context
->Edi
= vm86
->regs
.edi
;
471 context
->Esp
= vm86
->regs
.esp
;
472 context
->Ebp
= vm86
->regs
.ebp
;
473 context
->Eip
= vm86
->regs
.eip
;
474 context
->SegCs
= vm86
->regs
.cs
;
475 context
->SegDs
= vm86
->regs
.ds
;
476 context
->SegEs
= vm86
->regs
.es
;
477 context
->SegFs
= vm86
->regs
.fs
;
478 context
->SegGs
= vm86
->regs
.gs
;
479 context
->SegSs
= vm86
->regs
.ss
;
480 context
->EFlags
= vm86
->regs
.eflags
;
484 /***********************************************************************
485 * restore_vm86_context
487 * Build a vm86 structure from the register values.
489 static void restore_vm86_context( const CONTEXT
*context
, struct vm86plus_struct
*vm86
)
491 vm86
->regs
.eax
= context
->Eax
;
492 vm86
->regs
.ebx
= context
->Ebx
;
493 vm86
->regs
.ecx
= context
->Ecx
;
494 vm86
->regs
.edx
= context
->Edx
;
495 vm86
->regs
.esi
= context
->Esi
;
496 vm86
->regs
.edi
= context
->Edi
;
497 vm86
->regs
.esp
= context
->Esp
;
498 vm86
->regs
.ebp
= context
->Ebp
;
499 vm86
->regs
.eip
= context
->Eip
;
500 vm86
->regs
.cs
= context
->SegCs
;
501 vm86
->regs
.ds
= context
->SegDs
;
502 vm86
->regs
.es
= context
->SegEs
;
503 vm86
->regs
.fs
= context
->SegFs
;
504 vm86
->regs
.gs
= context
->SegGs
;
505 vm86
->regs
.ss
= context
->SegSs
;
506 vm86
->regs
.eflags
= context
->EFlags
;
510 /**********************************************************************
511 * merge_vm86_pending_flags
513 * Merges TEB.vm86_ptr and TEB.vm86_pending VIP flags and
514 * raises exception if there are pending events and VIF flag
515 * has been turned on.
517 * Called from __wine_enter_vm86 because vm86_enter
518 * doesn't check for pending events.
520 * Called from raise_vm86_sti_exception to check for
521 * pending events in a signal safe way.
523 static void merge_vm86_pending_flags( EXCEPTION_RECORD
*rec
)
525 BOOL check_pending
= TRUE
;
526 struct vm86plus_struct
*vm86
=
527 (struct vm86plus_struct
*)(ntdll_get_thread_data()->vm86_ptr
);
530 * In order to prevent a race when SIGUSR2 occurs while
531 * we are returning from exception handler, pending events
532 * will be rechecked after each raised exception.
534 while (check_pending
&& get_vm86_teb_info()->vm86_pending
)
536 check_pending
= FALSE
;
537 ntdll_get_thread_data()->vm86_ptr
= NULL
;
540 * If VIF is set, throw exception.
541 * Note that SIGUSR2 may turn VIF flag off so
542 * VIF check must occur only when TEB.vm86_ptr is NULL.
544 if (vm86
->regs
.eflags
& VIF_MASK
)
547 save_vm86_context( &vcontext
, vm86
);
549 rec
->ExceptionCode
= EXCEPTION_VM86_STI
;
550 rec
->ExceptionFlags
= EXCEPTION_CONTINUABLE
;
551 rec
->ExceptionRecord
= NULL
;
552 rec
->NumberParameters
= 0;
553 rec
->ExceptionAddress
= (LPVOID
)vcontext
.Eip
;
555 vcontext
.EFlags
&= ~VIP_MASK
;
556 get_vm86_teb_info()->vm86_pending
= 0;
557 __regs_RtlRaiseException( rec
, &vcontext
);
559 restore_vm86_context( &vcontext
, vm86
);
560 check_pending
= TRUE
;
563 ntdll_get_thread_data()->vm86_ptr
= vm86
;
567 * Merge VIP flags in a signal safe way. This requires
568 * that the following operation compiles into atomic
571 vm86
->regs
.eflags
|= get_vm86_teb_info()->vm86_pending
;
573 #endif /* __HAVE_VM86 */
576 typedef void (WINAPI
*raise_func
)( EXCEPTION_RECORD
*rec
, CONTEXT
*context
);
579 /***********************************************************************
582 * Handler initialization when the full context is not needed.
584 static inline void *init_handler( const SIGCONTEXT
*sigcontext
, WORD
*fs
, WORD
*gs
)
586 void *stack
= (void *)(ESP_sig(sigcontext
) & ~3);
587 TEB
*teb
= get_current_teb();
588 struct ntdll_thread_data
*thread_data
= (struct ntdll_thread_data
*)teb
->SystemReserved2
;
590 /* get %fs and %gs at time of the fault */
592 *fs
= LOWORD(FS_sig(sigcontext
));
597 *gs
= LOWORD(GS_sig(sigcontext
));
602 wine_set_fs( thread_data
->fs
);
604 /* now restore a proper %gs for the fault handler */
605 if (!wine_ldt_is_system(CS_sig(sigcontext
)) ||
606 !wine_ldt_is_system(SS_sig(sigcontext
))) /* 16-bit mode */
609 * Win16 or DOS protected mode. Note that during switch
610 * from 16-bit mode to linear mode, CS may be set to system
611 * segment before FS is restored. Fortunately, in this case
612 * SS is still non-system segment. This is why both CS and SS
615 wine_set_gs( thread_data
->gs
);
616 stack
= teb
->WOW32Reserved
;
619 else if ((void *)EIP_sig(sigcontext
) == vm86_return
) /* vm86 mode */
621 unsigned int *int_stack
= stack
;
622 /* fetch the saved %gs from the stack */
623 wine_set_gs( int_stack
[0] );
626 else /* 32-bit mode */
629 wine_set_gs( GS_sig(sigcontext
) );
636 /***********************************************************************
639 * Save the thread FPU context.
641 static inline void save_fpu( CONTEXT
*context
)
644 context
->ContextFlags
|= CONTEXT_FLOATING_POINT
;
645 __asm__
__volatile__( "fnsave %0; fwait" : "=m" (context
->FloatSave
) );
650 /***********************************************************************
653 * Save the thread FPU extended context.
655 static inline void save_fpux( CONTEXT
*context
)
658 /* we have to enforce alignment by hand */
659 char buffer
[sizeof(XMM_SAVE_AREA32
) + 16];
660 XMM_SAVE_AREA32
*state
= (XMM_SAVE_AREA32
*)(((ULONG_PTR
)buffer
+ 15) & ~15);
662 __asm__
__volatile__( "fxsave %0" : "=m" (*state
) );
663 context
->ContextFlags
|= CONTEXT_EXTENDED_REGISTERS
;
664 memcpy( context
->ExtendedRegisters
, state
, sizeof(*state
) );
669 /***********************************************************************
672 * Restore the FPU context to a sigcontext.
674 static inline void restore_fpu( const CONTEXT
*context
)
676 FLOATING_SAVE_AREA float_status
= context
->FloatSave
;
677 /* reset the current interrupt status */
678 float_status
.StatusWord
&= float_status
.ControlWord
| 0xffffff80;
680 __asm__
__volatile__( "frstor %0; fwait" : : "m" (float_status
) );
681 #endif /* __GNUC__ */
685 /***********************************************************************
688 * Restore the FPU extended context to a sigcontext.
690 static inline void restore_fpux( const CONTEXT
*context
)
693 /* we have to enforce alignment by hand */
694 char buffer
[sizeof(XMM_SAVE_AREA32
) + 16];
695 XMM_SAVE_AREA32
*state
= (XMM_SAVE_AREA32
*)(((ULONG_PTR
)buffer
+ 15) & ~15);
697 memcpy( state
, context
->ExtendedRegisters
, sizeof(*state
) );
698 /* reset the current interrupt status */
699 state
->StatusWord
&= state
->ControlWord
| 0xff80;
700 __asm__
__volatile__( "fxrstor %0" : : "m" (*state
) );
705 /***********************************************************************
708 * Build a standard FPU context from an extended one.
710 static void fpux_to_fpu( FLOATING_SAVE_AREA
*fpu
, const XMM_SAVE_AREA32
*fpux
)
712 unsigned int i
, tag
, stack_top
;
714 fpu
->ControlWord
= fpux
->ControlWord
| 0xffff0000;
715 fpu
->StatusWord
= fpux
->StatusWord
| 0xffff0000;
716 fpu
->ErrorOffset
= fpux
->ErrorOffset
;
717 fpu
->ErrorSelector
= fpux
->ErrorSelector
| (fpux
->ErrorOpcode
<< 16);
718 fpu
->DataOffset
= fpux
->DataOffset
;
719 fpu
->DataSelector
= fpux
->DataSelector
;
720 fpu
->Cr0NpxState
= fpux
->StatusWord
| 0xffff0000;
722 stack_top
= (fpux
->StatusWord
>> 11) & 7;
723 fpu
->TagWord
= 0xffff0000;
724 for (i
= 0; i
< 8; i
++)
726 memcpy( &fpu
->RegisterArea
[10 * i
], &fpux
->FloatRegisters
[i
], 10 );
727 if (!(fpux
->TagWord
& (1 << i
))) tag
= 3; /* empty */
730 const M128A
*reg
= &fpux
->FloatRegisters
[(i
- stack_top
) & 7];
731 if ((reg
->High
& 0x7fff) == 0x7fff) /* exponent all ones */
733 tag
= 2; /* special */
735 else if (!(reg
->High
& 0x7fff)) /* exponent all zeroes */
737 if (reg
->Low
) tag
= 2; /* special */
738 else tag
= 1; /* zero */
742 if (reg
->Low
>> 63) tag
= 0; /* valid */
743 else tag
= 2; /* special */
746 fpu
->TagWord
|= tag
<< (2 * i
);
751 /***********************************************************************
754 * Build a context structure from the signal info.
756 static inline void save_context( CONTEXT
*context
, const SIGCONTEXT
*sigcontext
, WORD fs
, WORD gs
)
758 struct ntdll_thread_regs
* const regs
= ntdll_get_thread_regs();
759 FLOATING_SAVE_AREA
*fpu
= FPU_sig(sigcontext
);
760 XMM_SAVE_AREA32
*fpux
= FPUX_sig(sigcontext
);
762 memset(context
, 0, sizeof(*context
));
763 context
->ContextFlags
= CONTEXT_FULL
| CONTEXT_DEBUG_REGISTERS
;
764 context
->Eax
= EAX_sig(sigcontext
);
765 context
->Ebx
= EBX_sig(sigcontext
);
766 context
->Ecx
= ECX_sig(sigcontext
);
767 context
->Edx
= EDX_sig(sigcontext
);
768 context
->Esi
= ESI_sig(sigcontext
);
769 context
->Edi
= EDI_sig(sigcontext
);
770 context
->Ebp
= EBP_sig(sigcontext
);
771 context
->EFlags
= EFL_sig(sigcontext
);
772 context
->Eip
= EIP_sig(sigcontext
);
773 context
->Esp
= ESP_sig(sigcontext
);
774 context
->SegCs
= LOWORD(CS_sig(sigcontext
));
775 context
->SegDs
= LOWORD(DS_sig(sigcontext
));
776 context
->SegEs
= LOWORD(ES_sig(sigcontext
));
779 context
->SegSs
= LOWORD(SS_sig(sigcontext
));
780 context
->Dr0
= regs
->dr0
;
781 context
->Dr1
= regs
->dr1
;
782 context
->Dr2
= regs
->dr2
;
783 context
->Dr3
= regs
->dr3
;
784 context
->Dr6
= regs
->dr6
;
785 context
->Dr7
= regs
->dr7
;
789 context
->ContextFlags
|= CONTEXT_FLOATING_POINT
;
790 context
->FloatSave
= *fpu
;
794 context
->ContextFlags
|= CONTEXT_FLOATING_POINT
| CONTEXT_EXTENDED_REGISTERS
;
795 memcpy( context
->ExtendedRegisters
, fpux
, sizeof(*fpux
) );
797 if (!fpu
) fpux_to_fpu( &context
->FloatSave
, fpux
);
799 if (!fpu
&& !fpux
) save_fpu( context
);
803 /***********************************************************************
806 * Restore the signal info from the context.
808 static inline void restore_context( const CONTEXT
*context
, SIGCONTEXT
*sigcontext
)
810 struct ntdll_thread_regs
* const regs
= ntdll_get_thread_regs();
811 FLOATING_SAVE_AREA
*fpu
= FPU_sig(sigcontext
);
812 XMM_SAVE_AREA32
*fpux
= FPUX_sig(sigcontext
);
814 regs
->dr0
= context
->Dr0
;
815 regs
->dr1
= context
->Dr1
;
816 regs
->dr2
= context
->Dr2
;
817 regs
->dr3
= context
->Dr3
;
818 regs
->dr6
= context
->Dr6
;
819 regs
->dr7
= context
->Dr7
;
820 EAX_sig(sigcontext
) = context
->Eax
;
821 EBX_sig(sigcontext
) = context
->Ebx
;
822 ECX_sig(sigcontext
) = context
->Ecx
;
823 EDX_sig(sigcontext
) = context
->Edx
;
824 ESI_sig(sigcontext
) = context
->Esi
;
825 EDI_sig(sigcontext
) = context
->Edi
;
826 EBP_sig(sigcontext
) = context
->Ebp
;
827 EFL_sig(sigcontext
) = context
->EFlags
;
828 EIP_sig(sigcontext
) = context
->Eip
;
829 ESP_sig(sigcontext
) = context
->Esp
;
830 CS_sig(sigcontext
) = context
->SegCs
;
831 DS_sig(sigcontext
) = context
->SegDs
;
832 ES_sig(sigcontext
) = context
->SegEs
;
833 SS_sig(sigcontext
) = context
->SegSs
;
835 GS_sig(sigcontext
) = context
->SegGs
;
837 wine_set_gs( context
->SegGs
);
840 FS_sig(sigcontext
) = context
->SegFs
;
842 wine_set_fs( context
->SegFs
);
845 if (fpu
) *fpu
= context
->FloatSave
;
846 if (fpux
) memcpy( fpux
, context
->ExtendedRegisters
, sizeof(*fpux
) );
847 if (!fpu
&& !fpux
) restore_fpu( context
);
851 /***********************************************************************
854 * Register function to get the context of the current thread.
856 void WINAPI
__regs_get_cpu_context( CONTEXT
*context
, CONTEXT
*regs
)
859 if (fpux_support
) save_fpux( context
);
860 else save_fpu( context
);
862 DEFINE_REGS_ENTRYPOINT( get_cpu_context
, 4, 4 )
865 /***********************************************************************
868 * Set the new CPU context. Used by NtSetContextThread.
870 void set_cpu_context( const CONTEXT
*context
)
872 DWORD flags
= context
->ContextFlags
& ~CONTEXT_i386
;
874 if ((flags
& CONTEXT_EXTENDED_REGISTERS
) && fpux_support
) restore_fpux( context
);
875 else if (flags
& CONTEXT_FLOATING_POINT
) restore_fpu( context
);
877 if (flags
& CONTEXT_DEBUG_REGISTERS
)
879 struct ntdll_thread_regs
* const regs
= ntdll_get_thread_regs();
880 regs
->dr0
= context
->Dr0
;
881 regs
->dr1
= context
->Dr1
;
882 regs
->dr2
= context
->Dr2
;
883 regs
->dr3
= context
->Dr3
;
884 regs
->dr6
= context
->Dr6
;
885 regs
->dr7
= context
->Dr7
;
887 if (flags
& CONTEXT_FULL
)
889 if (!(flags
& CONTEXT_CONTROL
))
890 FIXME( "setting partial context (%x) not supported\n", flags
);
891 else if (flags
& CONTEXT_SEGMENTS
)
892 __wine_call_from_32_restore_regs( context
);
895 CONTEXT newcontext
= *context
;
896 newcontext
.SegDs
= wine_get_ds();
897 newcontext
.SegEs
= wine_get_es();
898 newcontext
.SegFs
= wine_get_fs();
899 newcontext
.SegGs
= wine_get_gs();
900 __wine_call_from_32_restore_regs( &newcontext
);
906 /***********************************************************************
907 * is_privileged_instr
909 * Check if the fault location is a privileged instruction.
910 * Based on the instruction emulation code in dlls/kernel/instr.c.
912 static inline DWORD
is_privileged_instr( CONTEXT86
*context
)
915 unsigned int prefix_count
= 0;
917 if (!wine_ldt_is_system( context
->SegCs
)) return 0;
918 instr
= (BYTE
*)context
->Eip
;
920 for (;;) switch(*instr
)
922 /* instruction prefixes */
923 case 0x2e: /* %cs: */
924 case 0x36: /* %ss: */
925 case 0x3e: /* %ds: */
926 case 0x26: /* %es: */
927 case 0x64: /* %fs: */
928 case 0x65: /* %gs: */
929 case 0x66: /* opcode size */
930 case 0x67: /* addr size */
931 case 0xf0: /* lock */
932 case 0xf2: /* repne */
933 case 0xf3: /* repe */
934 if (++prefix_count
>= 15) return EXCEPTION_ILLEGAL_INSTRUCTION
;
938 case 0x0f: /* extended instruction */
941 case 0x20: /* mov crX, reg */
942 case 0x21: /* mov drX, reg */
943 case 0x22: /* mov reg, crX */
944 case 0x23: /* mov reg drX */
945 return EXCEPTION_PRIV_INSTRUCTION
;
948 case 0x6c: /* insb (%dx) */
949 case 0x6d: /* insl (%dx) */
950 case 0x6e: /* outsb (%dx) */
951 case 0x6f: /* outsl (%dx) */
952 case 0xcd: /* int $xx */
953 case 0xe4: /* inb al,XX */
954 case 0xe5: /* in (e)ax,XX */
955 case 0xe6: /* outb XX,al */
956 case 0xe7: /* out XX,(e)ax */
957 case 0xec: /* inb (%dx),%al */
958 case 0xed: /* inl (%dx),%eax */
959 case 0xee: /* outb %al,(%dx) */
960 case 0xef: /* outl %eax,(%dx) */
964 return EXCEPTION_PRIV_INSTRUCTION
;
971 #include "pshpack1.h"
974 DWORD movl
; /* movl this,4(%esp) */
976 BYTE jmp
; /* jmp func */
981 /**********************************************************************
984 * Check if code destination is an ATL thunk, and emulate it if so.
986 static BOOL
check_atl_thunk( EXCEPTION_RECORD
*rec
, CONTEXT
*context
)
988 const struct atl_thunk
*thunk
= (const struct atl_thunk
*)rec
->ExceptionInformation
[1];
993 if (thunk
->movl
== 0x042444c7 && thunk
->jmp
== 0xe9)
995 *((DWORD
*)context
->Esp
+ 1) = thunk
->this;
996 context
->Eip
= (DWORD_PTR
)(&thunk
->func
+ 1) + thunk
->func
;
997 TRACE( "emulating ATL thunk at %p, func=%08x arg=%08x\n",
998 thunk
, context
->Eip
, *((DWORD
*)context
->Esp
+ 1) );
1011 /***********************************************************************
1012 * setup_exception_record
1014 * Setup the exception record and context on the thread stack.
1016 static EXCEPTION_RECORD
*setup_exception_record( SIGCONTEXT
*sigcontext
, void *stack_ptr
,
1017 WORD fs
, WORD gs
, raise_func func
)
1021 void *ret_addr
; /* return address from raise_func */
1022 EXCEPTION_RECORD
*rec_ptr
; /* first arg for raise_func */
1023 CONTEXT
*context_ptr
; /* second arg for raise_func */
1025 EXCEPTION_RECORD rec
;
1028 } *stack
= stack_ptr
;
1029 DWORD exception_code
= 0;
1031 /* stack sanity checks */
1033 if ((char *)stack
>= (char *)get_signal_stack() &&
1034 (char *)stack
< (char *)get_signal_stack() + signal_stack_size
)
1036 WINE_ERR( "nested exception on signal stack in thread %04x eip %08x esp %08x stack %p-%p\n",
1037 GetCurrentThreadId(), (unsigned int) EIP_sig(sigcontext
),
1038 (unsigned int) ESP_sig(sigcontext
), NtCurrentTeb()->Tib
.StackLimit
,
1039 NtCurrentTeb()->Tib
.StackBase
);
1040 server_abort_thread(1);
1043 if (stack
- 1 > stack
|| /* check for overflow in subtraction */
1044 (char *)stack
<= (char *)NtCurrentTeb()->DeallocationStack
||
1045 (char *)stack
> (char *)NtCurrentTeb()->Tib
.StackBase
)
1047 WARN( "exception outside of stack limits in thread %04x eip %08x esp %08x stack %p-%p\n",
1048 GetCurrentThreadId(), (unsigned int) EIP_sig(sigcontext
),
1049 (unsigned int) ESP_sig(sigcontext
), NtCurrentTeb()->Tib
.StackLimit
,
1050 NtCurrentTeb()->Tib
.StackBase
);
1052 else if ((char *)(stack
- 1) < (char *)NtCurrentTeb()->DeallocationStack
+ 4096)
1054 /* stack overflow on last page, unrecoverable */
1055 UINT diff
= (char *)NtCurrentTeb()->DeallocationStack
+ 4096 - (char *)(stack
- 1);
1056 WINE_ERR( "stack overflow %u bytes in thread %04x eip %08x esp %08x stack %p-%p-%p\n",
1057 diff
, GetCurrentThreadId(), (unsigned int) EIP_sig(sigcontext
),
1058 (unsigned int) ESP_sig(sigcontext
), NtCurrentTeb()->DeallocationStack
,
1059 NtCurrentTeb()->Tib
.StackLimit
, NtCurrentTeb()->Tib
.StackBase
);
1060 server_abort_thread(1);
1062 else if ((char *)(stack
- 1) < (char *)NtCurrentTeb()->Tib
.StackLimit
)
1064 /* stack access below stack limit, may be recoverable */
1065 if (virtual_handle_stack_fault( stack
- 1 )) exception_code
= EXCEPTION_STACK_OVERFLOW
;
1068 UINT diff
= (char *)NtCurrentTeb()->Tib
.StackLimit
- (char *)(stack
- 1);
1069 WINE_ERR( "stack overflow %u bytes in thread %04x eip %08x esp %08x stack %p-%p-%p\n",
1070 diff
, GetCurrentThreadId(), (unsigned int) EIP_sig(sigcontext
),
1071 (unsigned int) ESP_sig(sigcontext
), NtCurrentTeb()->DeallocationStack
,
1072 NtCurrentTeb()->Tib
.StackLimit
, NtCurrentTeb()->Tib
.StackBase
);
1073 server_abort_thread(1);
1077 stack
--; /* push the stack_layout structure */
1078 #if defined(VALGRIND_MAKE_MEM_UNDEFINED)
1079 VALGRIND_MAKE_MEM_UNDEFINED(stack
, sizeof(*stack
));
1080 #elif defined(VALGRIND_MAKE_WRITABLE)
1081 VALGRIND_MAKE_WRITABLE(stack
, sizeof(*stack
));
1083 stack
->ret_addr
= (void *)0xdeadbabe; /* raise_func must not return */
1084 stack
->rec_ptr
= &stack
->rec
;
1085 stack
->context_ptr
= &stack
->context
;
1087 stack
->rec
.ExceptionRecord
= NULL
;
1088 stack
->rec
.ExceptionCode
= exception_code
;
1089 stack
->rec
.ExceptionFlags
= EXCEPTION_CONTINUABLE
;
1090 stack
->rec
.ExceptionAddress
= (LPVOID
)EIP_sig(sigcontext
);
1091 stack
->rec
.NumberParameters
= 0;
1093 save_context( &stack
->context
, sigcontext
, fs
, gs
);
1095 /* now modify the sigcontext to return to the raise function */
1096 ESP_sig(sigcontext
) = (DWORD
)stack
;
1097 EIP_sig(sigcontext
) = (DWORD
)func
;
1098 /* clear single-step, direction, and align check flag */
1099 EFL_sig(sigcontext
) &= ~(0x100|0x400|0x40000);
1100 CS_sig(sigcontext
) = wine_get_cs();
1101 DS_sig(sigcontext
) = wine_get_ds();
1102 ES_sig(sigcontext
) = wine_get_es();
1103 FS_sig(sigcontext
) = wine_get_fs();
1104 GS_sig(sigcontext
) = wine_get_gs();
1105 SS_sig(sigcontext
) = wine_get_ss();
1107 return stack
->rec_ptr
;
1111 /***********************************************************************
1114 * Setup a proper stack frame for the raise function, and modify the
1115 * sigcontext so that the return from the signal handler will call
1116 * the raise function.
1118 static EXCEPTION_RECORD
*setup_exception( SIGCONTEXT
*sigcontext
, raise_func func
)
1121 void *stack
= init_handler( sigcontext
, &fs
, &gs
);
1123 return setup_exception_record( sigcontext
, stack
, fs
, gs
, func
);
1127 /***********************************************************************
1128 * get_exception_context
1130 * Get a pointer to the context built by setup_exception.
1132 static inline CONTEXT
*get_exception_context( EXCEPTION_RECORD
*rec
)
1134 return (CONTEXT
*)rec
- 1; /* cf. stack_layout structure */
1138 /**********************************************************************
1141 * Get the FPU exception code from the FPU status.
1143 static inline DWORD
get_fpu_code( const CONTEXT
*context
)
1145 DWORD status
= context
->FloatSave
.StatusWord
;
1147 if (status
& 0x01) /* IE */
1149 if (status
& 0x40) /* SF */
1150 return EXCEPTION_FLT_STACK_CHECK
;
1152 return EXCEPTION_FLT_INVALID_OPERATION
;
1154 if (status
& 0x02) return EXCEPTION_FLT_DENORMAL_OPERAND
; /* DE flag */
1155 if (status
& 0x04) return EXCEPTION_FLT_DIVIDE_BY_ZERO
; /* ZE flag */
1156 if (status
& 0x08) return EXCEPTION_FLT_OVERFLOW
; /* OE flag */
1157 if (status
& 0x10) return EXCEPTION_FLT_UNDERFLOW
; /* UE flag */
1158 if (status
& 0x20) return EXCEPTION_FLT_INEXACT_RESULT
; /* PE flag */
1159 return EXCEPTION_FLT_INVALID_OPERATION
; /* generic error */
1163 /**********************************************************************
1164 * raise_segv_exception
1166 static void WINAPI
raise_segv_exception( EXCEPTION_RECORD
*rec
, CONTEXT
*context
)
1168 switch(rec
->ExceptionCode
)
1170 case EXCEPTION_ACCESS_VIOLATION
:
1171 if (rec
->NumberParameters
== 2)
1173 if (rec
->ExceptionInformation
[0] == EXCEPTION_EXECUTE_FAULT
&& check_atl_thunk( rec
, context
))
1175 rec
->ExceptionCode
= VIRTUAL_HandleFault( (void *)rec
->ExceptionInformation
[1] );
1178 case EXCEPTION_DATATYPE_MISALIGNMENT
:
1179 /* FIXME: pass through exception handler first? */
1180 if (context
->EFlags
& 0x00040000)
1182 /* Disable AC flag, return */
1183 context
->EFlags
&= ~0x00040000;
1188 __regs_RtlRaiseException( rec
, context
);
1190 NtSetContextThread( GetCurrentThread(), context
);
1194 /**********************************************************************
1195 * raise_trap_exception
1197 static void WINAPI
raise_trap_exception( EXCEPTION_RECORD
*rec
, CONTEXT
*context
)
1199 if (rec
->ExceptionCode
== EXCEPTION_SINGLE_STEP
)
1201 struct ntdll_thread_regs
* const regs
= ntdll_get_thread_regs();
1203 /* when single stepping can't tell whether this is a hw bp or a
1204 * single step interrupt. try to avoid as much overhead as possible
1205 * and only do a server call if there is any hw bp enabled. */
1207 if( !(context
->EFlags
& 0x100) || (regs
->dr7
& 0xff) )
1209 /* (possible) hardware breakpoint, fetch the debug registers */
1210 context
->ContextFlags
= CONTEXT_DEBUG_REGISTERS
;
1211 NtGetContextThread(GetCurrentThread(), context
);
1212 context
->ContextFlags
|= CONTEXT_FULL
; /* restore flags */
1215 context
->EFlags
&= ~0x100; /* clear single-step flag */
1218 __regs_RtlRaiseException( rec
, context
);
1219 NtSetContextThread( GetCurrentThread(), context
);
1223 /**********************************************************************
1226 * Generic raise function for exceptions that don't need special treatment.
1228 static void WINAPI
raise_exception( EXCEPTION_RECORD
*rec
, CONTEXT
*context
)
1230 __regs_RtlRaiseException( rec
, context
);
1231 NtSetContextThread( GetCurrentThread(), context
);
1236 /**********************************************************************
1237 * raise_vm86_sti_exception
1239 static void WINAPI
raise_vm86_sti_exception( EXCEPTION_RECORD
*rec
, CONTEXT
*context
)
1241 /* merge_vm86_pending_flags merges the vm86_pending flag in safely */
1242 get_vm86_teb_info()->vm86_pending
|= VIP_MASK
;
1244 if (ntdll_get_thread_data()->vm86_ptr
)
1246 if (((char*)context
->Eip
>= (char*)vm86_return
) &&
1247 ((char*)context
->Eip
<= (char*)vm86_return_end
) &&
1248 (VM86_TYPE(context
->Eax
) != VM86_SIGNAL
)) {
1249 /* exiting from VM86, can't throw */
1252 merge_vm86_pending_flags( rec
);
1254 else if (get_vm86_teb_info()->dpmi_vif
&&
1255 !wine_ldt_is_system(context
->SegCs
) &&
1256 !wine_ldt_is_system(context
->SegSs
))
1258 /* Executing DPMI code and virtual interrupts are enabled. */
1259 get_vm86_teb_info()->vm86_pending
= 0;
1260 __regs_RtlRaiseException( rec
, context
);
1263 NtSetContextThread( GetCurrentThread(), context
);
1267 /**********************************************************************
1270 * Handler for SIGUSR2.
1271 * We use it to signal that the running __wine_enter_vm86() should
1272 * immediately set VIP_MASK, causing pending events to be handled
1273 * as early as possible.
1275 static void usr2_handler( int signal
, siginfo_t
*siginfo
, void *sigcontext
)
1277 EXCEPTION_RECORD
*rec
= setup_exception( sigcontext
, raise_vm86_sti_exception
);
1278 rec
->ExceptionCode
= EXCEPTION_VM86_STI
;
1280 #endif /* __HAVE_VM86 */
1283 /**********************************************************************
1286 * Handler for SIGSEGV and related errors.
1288 static void segv_handler( int signal
, siginfo_t
*siginfo
, void *sigcontext
)
1291 EXCEPTION_RECORD
*rec
;
1292 SIGCONTEXT
*context
= sigcontext
;
1293 void *stack
= init_handler( sigcontext
, &fs
, &gs
);
1295 /* check for page fault inside the thread stack */
1296 if (get_trap_code(context
) == TRAP_x86_PAGEFLT
&&
1297 (char *)siginfo
->si_addr
>= (char *)NtCurrentTeb()->DeallocationStack
&&
1298 (char *)siginfo
->si_addr
< (char *)NtCurrentTeb()->Tib
.StackBase
&&
1299 virtual_handle_stack_fault( siginfo
->si_addr
))
1301 /* check if this was the last guard page */
1302 if ((char *)siginfo
->si_addr
< (char *)NtCurrentTeb()->DeallocationStack
+ 2*4096)
1304 rec
= setup_exception_record( context
, stack
, fs
, gs
, raise_segv_exception
);
1305 rec
->ExceptionCode
= EXCEPTION_STACK_OVERFLOW
;
1310 rec
= setup_exception_record( context
, stack
, fs
, gs
, raise_segv_exception
);
1311 if (rec
->ExceptionCode
== EXCEPTION_STACK_OVERFLOW
) return;
1313 switch(get_trap_code(context
))
1315 case TRAP_x86_OFLOW
: /* Overflow exception */
1316 rec
->ExceptionCode
= EXCEPTION_INT_OVERFLOW
;
1318 case TRAP_x86_BOUND
: /* Bound range exception */
1319 rec
->ExceptionCode
= EXCEPTION_ARRAY_BOUNDS_EXCEEDED
;
1321 case TRAP_x86_PRIVINFLT
: /* Invalid opcode exception */
1322 rec
->ExceptionCode
= EXCEPTION_ILLEGAL_INSTRUCTION
;
1324 case TRAP_x86_STKFLT
: /* Stack fault */
1325 rec
->ExceptionCode
= EXCEPTION_STACK_OVERFLOW
;
1327 case TRAP_x86_SEGNPFLT
: /* Segment not present exception */
1328 case TRAP_x86_PROTFLT
: /* General protection fault */
1329 case TRAP_x86_UNKNOWN
: /* Unknown fault code */
1331 WORD err
= get_error_code(context
);
1332 if (!err
&& (rec
->ExceptionCode
= is_privileged_instr( get_exception_context(rec
) ))) break;
1333 rec
->ExceptionCode
= EXCEPTION_ACCESS_VIOLATION
;
1334 rec
->NumberParameters
= 2;
1335 rec
->ExceptionInformation
[0] = 0;
1336 /* if error contains a LDT selector, use that as fault address */
1337 if ((err
& 7) == 4 && !wine_ldt_is_system( err
| 7 ))
1338 rec
->ExceptionInformation
[1] = err
& ~7;
1340 rec
->ExceptionInformation
[1] = 0xffffffff;
1343 case TRAP_x86_PAGEFLT
: /* Page fault */
1344 rec
->ExceptionCode
= EXCEPTION_ACCESS_VIOLATION
;
1345 rec
->NumberParameters
= 2;
1346 rec
->ExceptionInformation
[0] = (get_error_code(context
) >> 1) & 0x09;
1347 rec
->ExceptionInformation
[1] = (ULONG_PTR
)siginfo
->si_addr
;
1349 case TRAP_x86_ALIGNFLT
: /* Alignment check exception */
1350 rec
->ExceptionCode
= EXCEPTION_DATATYPE_MISALIGNMENT
;
1353 WINE_ERR( "Got unexpected trap %d\n", get_trap_code(context
) );
1355 case TRAP_x86_NMI
: /* NMI interrupt */
1356 case TRAP_x86_DNA
: /* Device not available exception */
1357 case TRAP_x86_DOUBLEFLT
: /* Double fault exception */
1358 case TRAP_x86_TSSFLT
: /* Invalid TSS exception */
1359 case TRAP_x86_MCHK
: /* Machine check exception */
1360 case TRAP_x86_CACHEFLT
: /* Cache flush exception */
1361 rec
->ExceptionCode
= EXCEPTION_ILLEGAL_INSTRUCTION
;
1367 /**********************************************************************
1370 * Handler for SIGTRAP.
1372 static void trap_handler( int signal
, siginfo_t
*siginfo
, void *sigcontext
)
1374 SIGCONTEXT
*context
= sigcontext
;
1375 EXCEPTION_RECORD
*rec
= setup_exception( context
, raise_trap_exception
);
1377 switch(get_trap_code(context
))
1379 case TRAP_x86_TRCTRAP
: /* Single-step exception */
1380 rec
->ExceptionCode
= EXCEPTION_SINGLE_STEP
;
1382 case TRAP_x86_BPTFLT
: /* Breakpoint exception */
1383 rec
->ExceptionAddress
= (char *)rec
->ExceptionAddress
- 1; /* back up over the int3 instruction */
1386 rec
->ExceptionCode
= EXCEPTION_BREAKPOINT
;
1392 /**********************************************************************
1395 * Handler for SIGFPE.
1397 static void fpe_handler( int signal
, siginfo_t
*siginfo
, void *sigcontext
)
1399 CONTEXT
*win_context
;
1400 SIGCONTEXT
*context
= sigcontext
;
1401 EXCEPTION_RECORD
*rec
= setup_exception( context
, raise_exception
);
1403 win_context
= get_exception_context( rec
);
1405 switch(get_trap_code(context
))
1407 case TRAP_x86_DIVIDE
: /* Division by zero exception */
1408 rec
->ExceptionCode
= EXCEPTION_INT_DIVIDE_BY_ZERO
;
1410 case TRAP_x86_FPOPFLT
: /* Coprocessor segment overrun */
1411 rec
->ExceptionCode
= EXCEPTION_FLT_INVALID_OPERATION
;
1413 case TRAP_x86_ARITHTRAP
: /* Floating point exception */
1414 case TRAP_x86_UNKNOWN
: /* Unknown fault code */
1415 rec
->ExceptionCode
= get_fpu_code( win_context
);
1417 case TRAP_x86_CACHEFLT
: /* SIMD exception */
1419 * Behaviour only tested for divide-by-zero exceptions
1420 * Check for other SIMD exceptions as well */
1421 if(siginfo
->si_code
!= FPE_FLTDIV
)
1422 FIXME("untested SIMD exception: %#x. Might not work correctly\n",
1425 rec
->ExceptionCode
= STATUS_FLOAT_MULTIPLE_TRAPS
;
1426 rec
->NumberParameters
= 1;
1427 /* no idea what meaning is actually behind this but that's what native does */
1428 rec
->ExceptionInformation
[0] = 0;
1431 WINE_ERR( "Got unexpected trap %d\n", get_trap_code(context
) );
1432 rec
->ExceptionCode
= EXCEPTION_FLT_INVALID_OPERATION
;
1438 /**********************************************************************
1441 * Handler for SIGINT.
1443 * FIXME: should not be calling external functions on the signal stack.
1445 static void int_handler( int signal
, siginfo_t
*siginfo
, void *sigcontext
)
1448 init_handler( sigcontext
, &fs
, &gs
);
1449 if (!dispatch_signal(SIGINT
))
1451 EXCEPTION_RECORD
*rec
= setup_exception( sigcontext
, raise_exception
);
1452 rec
->ExceptionCode
= CONTROL_C_EXIT
;
1456 /**********************************************************************
1459 * Handler for SIGABRT.
1461 static void abrt_handler( int signal
, siginfo_t
*siginfo
, void *sigcontext
)
1463 EXCEPTION_RECORD
*rec
= setup_exception( sigcontext
, raise_exception
);
1464 rec
->ExceptionCode
= EXCEPTION_WINE_ASSERTION
;
1465 rec
->ExceptionFlags
= EH_NONCONTINUABLE
;
1469 /**********************************************************************
1472 * Handler for SIGQUIT.
1474 static void quit_handler( int signal
, siginfo_t
*siginfo
, void *sigcontext
)
1477 init_handler( sigcontext
, &fs
, &gs
);
1478 server_abort_thread(0);
1482 /**********************************************************************
1485 * Handler for SIGUSR1, used to signal a thread that it got suspended.
1487 static void usr1_handler( int signal
, siginfo_t
*siginfo
, void *sigcontext
)
1492 init_handler( sigcontext
, &fs
, &gs
);
1493 save_context( &context
, sigcontext
, fs
, gs
);
1494 wait_suspend( &context
);
1495 restore_context( &context
, sigcontext
);
1499 /**********************************************************************
1500 * get_signal_stack_total_size
1502 * Retrieve the size to allocate for the signal stack, including the TEB at the bottom.
1503 * Must be a power of two.
1505 size_t get_signal_stack_total_size(void)
1507 static const size_t teb_size
= 4096; /* we reserve one page for the TEB */
1509 if (!signal_stack_size
)
1511 size_t size
= 8192, min_size
= teb_size
+ max( MINSIGSTKSZ
, 8192 );
1512 /* find the first power of two not smaller than min_size */
1513 while (size
< min_size
) size
*= 2;
1514 signal_stack_mask
= size
- 1;
1515 signal_stack_size
= size
- teb_size
;
1517 return signal_stack_size
+ teb_size
;
1521 /***********************************************************************
1522 * __wine_set_signal_handler (NTDLL.@)
1524 int __wine_set_signal_handler(unsigned int sig
, wine_signal_handler wsh
)
1526 if (sig
>= sizeof(handlers
) / sizeof(handlers
[0])) return -1;
1527 if (handlers
[sig
] != NULL
) return -2;
1528 handlers
[sig
] = wsh
;
1533 /**********************************************************************
1536 BOOL
SIGNAL_Init(void)
1538 struct sigaction sig_act
;
1540 #ifdef HAVE_SIGALTSTACK
1544 int mib
[2], val
= 1;
1547 mib
[1] = KERN_THALTSTACK
;
1548 sysctl( mib
, 2, NULL
, NULL
, &val
, sizeof(val
) );
1551 ss
.ss_sp
= get_signal_stack();
1552 ss
.ss_size
= signal_stack_size
;
1554 if (sigaltstack(&ss
, NULL
) == -1)
1556 perror( "sigaltstack" );
1559 #endif /* HAVE_SIGALTSTACK */
1561 sig_act
.sa_mask
= server_block_set
;
1562 sig_act
.sa_flags
= SA_SIGINFO
| SA_RESTART
;
1564 sig_act
.sa_flags
|= SA_ONSTACK
;
1567 sig_act
.sa_sigaction
= int_handler
;
1568 if (sigaction( SIGINT
, &sig_act
, NULL
) == -1) goto error
;
1569 sig_act
.sa_sigaction
= fpe_handler
;
1570 if (sigaction( SIGFPE
, &sig_act
, NULL
) == -1) goto error
;
1571 sig_act
.sa_sigaction
= abrt_handler
;
1572 if (sigaction( SIGABRT
, &sig_act
, NULL
) == -1) goto error
;
1573 sig_act
.sa_sigaction
= quit_handler
;
1574 if (sigaction( SIGQUIT
, &sig_act
, NULL
) == -1) goto error
;
1575 sig_act
.sa_sigaction
= usr1_handler
;
1576 if (sigaction( SIGUSR1
, &sig_act
, NULL
) == -1) goto error
;
1578 sig_act
.sa_sigaction
= segv_handler
;
1579 if (sigaction( SIGSEGV
, &sig_act
, NULL
) == -1) goto error
;
1580 if (sigaction( SIGILL
, &sig_act
, NULL
) == -1) goto error
;
1582 if (sigaction( SIGBUS
, &sig_act
, NULL
) == -1) goto error
;
1586 sig_act
.sa_sigaction
= trap_handler
;
1587 if (sigaction( SIGTRAP
, &sig_act
, NULL
) == -1) goto error
;
1591 sig_act
.sa_sigaction
= usr2_handler
;
1592 if (sigaction( SIGUSR2
, &sig_act
, NULL
) == -1) goto error
;
1598 perror("sigaction");
1604 /**********************************************************************
1605 * __wine_enter_vm86 (NTDLL.@)
1607 * Enter vm86 mode with the specified register context.
1609 void __wine_enter_vm86( CONTEXT
*context
)
1611 EXCEPTION_RECORD rec
;
1613 struct vm86plus_struct vm86
;
1615 memset( &vm86
, 0, sizeof(vm86
) );
1618 restore_vm86_context( context
, &vm86
);
1620 ntdll_get_thread_data()->vm86_ptr
= &vm86
;
1621 merge_vm86_pending_flags( &rec
);
1623 res
= vm86_enter( &ntdll_get_thread_data()->vm86_ptr
); /* uses and clears teb->vm86_ptr */
1630 save_vm86_context( context
, &vm86
);
1632 rec
.ExceptionFlags
= EXCEPTION_CONTINUABLE
;
1633 rec
.ExceptionRecord
= NULL
;
1634 rec
.ExceptionAddress
= (LPVOID
)context
->Eip
;
1635 rec
.NumberParameters
= 0;
1637 switch(VM86_TYPE(res
))
1639 case VM86_UNKNOWN
: /* unhandled GP fault - IO-instruction or similar */
1640 rec
.ExceptionCode
= EXCEPTION_PRIV_INSTRUCTION
;
1642 case VM86_TRAP
: /* return due to DOS-debugger request */
1643 switch(VM86_ARG(res
))
1645 case TRAP_x86_TRCTRAP
: /* Single-step exception */
1646 rec
.ExceptionCode
= EXCEPTION_SINGLE_STEP
;
1648 case TRAP_x86_BPTFLT
: /* Breakpoint exception */
1649 rec
.ExceptionAddress
= (char *)rec
.ExceptionAddress
- 1; /* back up over the int3 instruction */
1652 rec
.ExceptionCode
= EXCEPTION_BREAKPOINT
;
1656 case VM86_INTx
: /* int3/int x instruction (ARG = x) */
1657 rec
.ExceptionCode
= EXCEPTION_VM86_INTx
;
1658 rec
.NumberParameters
= 1;
1659 rec
.ExceptionInformation
[0] = VM86_ARG(res
);
1661 case VM86_STI
: /* sti/popf/iret instruction enabled virtual interrupts */
1662 context
->EFlags
|= VIF_MASK
;
1663 context
->EFlags
&= ~VIP_MASK
;
1664 get_vm86_teb_info()->vm86_pending
= 0;
1665 rec
.ExceptionCode
= EXCEPTION_VM86_STI
;
1667 case VM86_PICRETURN
: /* return due to pending PIC request */
1668 rec
.ExceptionCode
= EXCEPTION_VM86_PICRETURN
;
1670 case VM86_SIGNAL
: /* cannot happen because vm86_enter handles this case */
1672 WINE_ERR( "unhandled result from vm86 mode %x\n", res
);
1675 __regs_RtlRaiseException( &rec
, context
);
1679 #else /* __HAVE_VM86 */
1680 /**********************************************************************
1681 * __wine_enter_vm86 (NTDLL.@)
1683 void __wine_enter_vm86( CONTEXT
*context
)
1685 MESSAGE("vm86 mode not supported on this platform\n");
1687 #endif /* __HAVE_VM86 */
1689 /**********************************************************************
1690 * DbgBreakPoint (NTDLL.@)
1692 __ASM_GLOBAL_FUNC( DbgBreakPoint
, "int $3; ret")
1694 /**********************************************************************
1695 * DbgUserBreakPoint (NTDLL.@)
1697 __ASM_GLOBAL_FUNC( DbgUserBreakPoint
, "int $3; ret")
1700 /**********************************************************************
1701 * EXC_CallHandler (internal)
1703 * Some exception handlers depend on EBP to have a fixed position relative to
1704 * the exception frame.
1705 * Shrinker depends on (*1) doing what it does,
1706 * (*2) being the exact instruction it is and (*3) beginning with 0x64
1707 * (i.e. the %fs prefix to the movl instruction). It also depends on the
1708 * function calling the handler having only 5 parameters (*4).
1710 __ASM_GLOBAL_FUNC( EXC_CallHandler
,
1712 " movl %esp, %ebp\n"
1714 " movl 28(%ebp), %edx\n" /* ugly hack to pass the 6th param needed because of Shrinker */
1720 " call " __ASM_NAME("call_exception_handler") "\n"
1725 __ASM_GLOBAL_FUNC(call_exception_handler
,
1727 " movl %esp, %ebp\n"
1729 " pushl 12(%ebp)\n" /* make any exceptions in this... */
1730 " pushl %edx\n" /* handler be handled by... */
1732 " pushl (0)\n" /* nested_handler (passed in edx). */
1734 " movl %esp,(0)\n" /* push the new exception frame onto the exception stack. */
1739 " movl 24(%ebp), %ecx\n" /* (*1) */
1740 " call *%ecx\n" /* call handler. (*2) */
1742 " movl (0), %esp\n" /* restore previous... (*3) */
1744 " popl (0)\n" /* exception frame. */
1745 " movl %ebp, %esp\n" /* restore saved stack, in case it was corrupted */
1747 " ret $20\n" /* (*4) */
1749 #endif /* __i386__ */