4 * Copyright (c) 2003-2008 Fabrice Bellard
6 * This program is free software; you can redistribute it and/or modify
7 * it under the terms of the GNU General Public License as published by
8 * the Free Software Foundation; either version 2 of the License, or
9 * (at your option) any later version.
11 * This program 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
14 * GNU General Public License for more details.
16 * You should have received a copy of the GNU General Public License
17 * along with this program; if not, see <http://www.gnu.org/licenses/>.
25 #include <machine/trap.h>
26 #include <sys/types.h>
30 #include "qemu-common.h"
34 #define DEBUG_LOGFILE "/tmp/qemu.log"
38 static const char *interp_prefix
= CONFIG_QEMU_PREFIX
;
39 const char *qemu_uname_release
= CONFIG_UNAME_RELEASE
;
40 extern char **environ
;
42 /* XXX: on x86 MAP_GROWSDOWN only works if ESP <= address + 32, so
43 we allocate a bigger stack. Need a better solution, for example
44 by remapping the process stack directly at the right place */
45 unsigned long x86_stack_size
= 512 * 1024;
47 void gemu_log(const char *fmt
, ...)
52 vfprintf(stderr
, fmt
, ap
);
56 #if defined(TARGET_I386)
57 int cpu_get_pic_interrupt(CPUState
*env
)
63 /* These are no-ops because we are not threadsafe. */
64 static inline void cpu_exec_start(CPUState
*env
)
68 static inline void cpu_exec_end(CPUState
*env
)
72 static inline void start_exclusive(void)
76 static inline void end_exclusive(void)
84 void fork_end(int child
)
87 gdbserver_fork(thread_env
);
91 void cpu_list_lock(void)
95 void cpu_list_unlock(void)
100 /***********************************************************/
101 /* CPUX86 core interface */
103 void cpu_smm_update(CPUState
*env
)
107 uint64_t cpu_get_tsc(CPUX86State
*env
)
109 return cpu_get_real_ticks();
112 static void write_dt(void *ptr
, unsigned long addr
, unsigned long limit
,
117 e1
= (addr
<< 16) | (limit
& 0xffff);
118 e2
= ((addr
>> 16) & 0xff) | (addr
& 0xff000000) | (limit
& 0x000f0000);
125 static uint64_t *idt_table
;
127 static void set_gate64(void *ptr
, unsigned int type
, unsigned int dpl
,
128 uint64_t addr
, unsigned int sel
)
131 e1
= (addr
& 0xffff) | (sel
<< 16);
132 e2
= (addr
& 0xffff0000) | 0x8000 | (dpl
<< 13) | (type
<< 8);
136 p
[2] = tswap32(addr
>> 32);
139 /* only dpl matters as we do only user space emulation */
140 static void set_idt(int n
, unsigned int dpl
)
142 set_gate64(idt_table
+ n
* 2, 0, dpl
, 0, 0);
145 static void set_gate(void *ptr
, unsigned int type
, unsigned int dpl
,
146 uint32_t addr
, unsigned int sel
)
149 e1
= (addr
& 0xffff) | (sel
<< 16);
150 e2
= (addr
& 0xffff0000) | 0x8000 | (dpl
<< 13) | (type
<< 8);
156 /* only dpl matters as we do only user space emulation */
157 static void set_idt(int n
, unsigned int dpl
)
159 set_gate(idt_table
+ n
, 0, dpl
, 0, 0);
163 void cpu_loop(CPUX86State
*env
, enum BSDType bsd_type
)
167 //target_siginfo_t info;
170 trapnr
= cpu_x86_exec(env
);
173 /* syscall from int $0x80 */
174 env
->regs
[R_EAX
] = do_openbsd_syscall(env
,
185 /* linux syscall from syscall intruction */
186 env
->regs
[R_EAX
] = do_openbsd_syscall(env
,
194 env
->eip
= env
->exception_next_eip
;
200 info
.si_signo
= SIGBUS
;
202 info
.si_code
= TARGET_SI_KERNEL
;
203 info
._sifields
._sigfault
._addr
= 0;
204 queue_signal(env
, info
.si_signo
, &info
);
207 /* XXX: potential problem if ABI32 */
208 #ifndef TARGET_X86_64
209 if (env
->eflags
& VM_MASK
) {
210 handle_vm86_fault(env
);
214 info
.si_signo
= SIGSEGV
;
216 info
.si_code
= TARGET_SI_KERNEL
;
217 info
._sifields
._sigfault
._addr
= 0;
218 queue_signal(env
, info
.si_signo
, &info
);
222 info
.si_signo
= SIGSEGV
;
224 if (!(env
->error_code
& 1))
225 info
.si_code
= TARGET_SEGV_MAPERR
;
227 info
.si_code
= TARGET_SEGV_ACCERR
;
228 info
._sifields
._sigfault
._addr
= env
->cr
[2];
229 queue_signal(env
, info
.si_signo
, &info
);
232 #ifndef TARGET_X86_64
233 if (env
->eflags
& VM_MASK
) {
234 handle_vm86_trap(env
, trapnr
);
238 /* division by zero */
239 info
.si_signo
= SIGFPE
;
241 info
.si_code
= TARGET_FPE_INTDIV
;
242 info
._sifields
._sigfault
._addr
= env
->eip
;
243 queue_signal(env
, info
.si_signo
, &info
);
248 #ifndef TARGET_X86_64
249 if (env
->eflags
& VM_MASK
) {
250 handle_vm86_trap(env
, trapnr
);
254 info
.si_signo
= SIGTRAP
;
256 if (trapnr
== EXCP01_DB
) {
257 info
.si_code
= TARGET_TRAP_BRKPT
;
258 info
._sifields
._sigfault
._addr
= env
->eip
;
260 info
.si_code
= TARGET_SI_KERNEL
;
261 info
._sifields
._sigfault
._addr
= 0;
263 queue_signal(env
, info
.si_signo
, &info
);
268 #ifndef TARGET_X86_64
269 if (env
->eflags
& VM_MASK
) {
270 handle_vm86_trap(env
, trapnr
);
274 info
.si_signo
= SIGSEGV
;
276 info
.si_code
= TARGET_SI_KERNEL
;
277 info
._sifields
._sigfault
._addr
= 0;
278 queue_signal(env
, info
.si_signo
, &info
);
282 info
.si_signo
= SIGILL
;
284 info
.si_code
= TARGET_ILL_ILLOPN
;
285 info
._sifields
._sigfault
._addr
= env
->eip
;
286 queue_signal(env
, info
.si_signo
, &info
);
290 /* just indicate that signals should be handled asap */
297 sig
= gdb_handlesig (env
, TARGET_SIGTRAP
);
302 info
.si_code
= TARGET_TRAP_BRKPT
;
303 queue_signal(env
, info
.si_signo
, &info
);
309 pc
= env
->segs
[R_CS
].base
+ env
->eip
;
310 fprintf(stderr
, "qemu: 0x%08lx: unhandled CPU exception 0x%x - aborting\n",
314 process_pending_signals(env
);
320 #define SPARC64_STACK_BIAS 2047
323 /* WARNING: dealing with register windows _is_ complicated. More info
324 can be found at http://www.sics.se/~psm/sparcstack.html */
325 static inline int get_reg_index(CPUSPARCState
*env
, int cwp
, int index
)
327 index
= (index
+ cwp
* 16) % (16 * env
->nwindows
);
328 /* wrap handling : if cwp is on the last window, then we use the
329 registers 'after' the end */
330 if (index
< 8 && env
->cwp
== env
->nwindows
- 1)
331 index
+= 16 * env
->nwindows
;
335 /* save the register window 'cwp1' */
336 static inline void save_window_offset(CPUSPARCState
*env
, int cwp1
)
341 sp_ptr
= env
->regbase
[get_reg_index(env
, cwp1
, 6)];
342 #ifdef TARGET_SPARC64
344 sp_ptr
+= SPARC64_STACK_BIAS
;
346 #if defined(DEBUG_WIN)
347 printf("win_overflow: sp_ptr=0x" TARGET_ABI_FMT_lx
" save_cwp=%d\n",
350 for(i
= 0; i
< 16; i
++) {
351 /* FIXME - what to do if put_user() fails? */
352 put_user_ual(env
->regbase
[get_reg_index(env
, cwp1
, 8 + i
)], sp_ptr
);
353 sp_ptr
+= sizeof(abi_ulong
);
357 static void save_window(CPUSPARCState
*env
)
359 #ifndef TARGET_SPARC64
360 unsigned int new_wim
;
361 new_wim
= ((env
->wim
>> 1) | (env
->wim
<< (env
->nwindows
- 1))) &
362 ((1LL << env
->nwindows
) - 1);
363 save_window_offset(env
, cpu_cwp_dec(env
, env
->cwp
- 2));
366 save_window_offset(env
, cpu_cwp_dec(env
, env
->cwp
- 2));
372 static void restore_window(CPUSPARCState
*env
)
374 #ifndef TARGET_SPARC64
375 unsigned int new_wim
;
377 unsigned int i
, cwp1
;
380 #ifndef TARGET_SPARC64
381 new_wim
= ((env
->wim
<< 1) | (env
->wim
>> (env
->nwindows
- 1))) &
382 ((1LL << env
->nwindows
) - 1);
385 /* restore the invalid window */
386 cwp1
= cpu_cwp_inc(env
, env
->cwp
+ 1);
387 sp_ptr
= env
->regbase
[get_reg_index(env
, cwp1
, 6)];
388 #ifdef TARGET_SPARC64
390 sp_ptr
+= SPARC64_STACK_BIAS
;
392 #if defined(DEBUG_WIN)
393 printf("win_underflow: sp_ptr=0x" TARGET_ABI_FMT_lx
" load_cwp=%d\n",
396 for(i
= 0; i
< 16; i
++) {
397 /* FIXME - what to do if get_user() fails? */
398 get_user_ual(env
->regbase
[get_reg_index(env
, cwp1
, 8 + i
)], sp_ptr
);
399 sp_ptr
+= sizeof(abi_ulong
);
401 #ifdef TARGET_SPARC64
403 if (env
->cleanwin
< env
->nwindows
- 1)
411 static void flush_windows(CPUSPARCState
*env
)
417 /* if restore would invoke restore_window(), then we can stop */
418 cwp1
= cpu_cwp_inc(env
, env
->cwp
+ offset
);
419 #ifndef TARGET_SPARC64
420 if (env
->wim
& (1 << cwp1
))
423 if (env
->canrestore
== 0)
428 save_window_offset(env
, cwp1
);
431 cwp1
= cpu_cwp_inc(env
, env
->cwp
+ 1);
432 #ifndef TARGET_SPARC64
433 /* set wim so that restore will reload the registers */
434 env
->wim
= 1 << cwp1
;
436 #if defined(DEBUG_WIN)
437 printf("flush_windows: nb=%d\n", offset
- 1);
441 void cpu_loop(CPUSPARCState
*env
, enum BSDType bsd_type
)
443 int trapnr
, ret
, syscall_nr
;
444 //target_siginfo_t info;
447 trapnr
= cpu_sparc_exec (env
);
450 #ifndef TARGET_SPARC64
455 syscall_nr
= env
->gregs
[1];
456 if (bsd_type
== target_freebsd
)
457 ret
= do_freebsd_syscall(env
, syscall_nr
,
458 env
->regwptr
[0], env
->regwptr
[1],
459 env
->regwptr
[2], env
->regwptr
[3],
460 env
->regwptr
[4], env
->regwptr
[5]);
461 else if (bsd_type
== target_netbsd
)
462 ret
= do_netbsd_syscall(env
, syscall_nr
,
463 env
->regwptr
[0], env
->regwptr
[1],
464 env
->regwptr
[2], env
->regwptr
[3],
465 env
->regwptr
[4], env
->regwptr
[5]);
466 else { //if (bsd_type == target_openbsd)
467 #if defined(TARGET_SPARC64)
468 syscall_nr
&= ~(TARGET_OPENBSD_SYSCALL_G7RFLAG
|
469 TARGET_OPENBSD_SYSCALL_G2RFLAG
);
471 ret
= do_openbsd_syscall(env
, syscall_nr
,
472 env
->regwptr
[0], env
->regwptr
[1],
473 env
->regwptr
[2], env
->regwptr
[3],
474 env
->regwptr
[4], env
->regwptr
[5]);
476 if ((unsigned int)ret
>= (unsigned int)(-515)) {
477 #if defined(TARGET_SPARC64) && !defined(TARGET_ABI32)
478 env
->xcc
|= PSR_CARRY
;
480 env
->psr
|= PSR_CARRY
;
483 #if defined(TARGET_SPARC64) && !defined(TARGET_ABI32)
484 env
->xcc
&= ~PSR_CARRY
;
486 env
->psr
&= ~PSR_CARRY
;
489 env
->regwptr
[0] = ret
;
490 /* next instruction */
491 #if defined(TARGET_SPARC64)
492 if (bsd_type
== target_openbsd
&&
493 env
->gregs
[1] & TARGET_OPENBSD_SYSCALL_G2RFLAG
) {
494 env
->pc
= env
->gregs
[2];
495 env
->npc
= env
->pc
+ 4;
496 } else if (bsd_type
== target_openbsd
&&
497 env
->gregs
[1] & TARGET_OPENBSD_SYSCALL_G7RFLAG
) {
498 env
->pc
= env
->gregs
[7];
499 env
->npc
= env
->pc
+ 4;
502 env
->npc
= env
->npc
+ 4;
506 env
->npc
= env
->npc
+ 4;
509 case 0x83: /* flush windows */
514 /* next instruction */
516 env
->npc
= env
->npc
+ 4;
518 #ifndef TARGET_SPARC64
519 case TT_WIN_OVF
: /* window overflow */
522 case TT_WIN_UNF
: /* window underflow */
529 info
.si_signo
= SIGSEGV
;
531 /* XXX: check env->error_code */
532 info
.si_code
= TARGET_SEGV_MAPERR
;
533 info
._sifields
._sigfault
._addr
= env
->mmuregs
[4];
534 queue_signal(env
, info
.si_signo
, &info
);
539 case TT_SPILL
: /* window overflow */
542 case TT_FILL
: /* window underflow */
549 info
.si_signo
= SIGSEGV
;
551 /* XXX: check env->error_code */
552 info
.si_code
= TARGET_SEGV_MAPERR
;
553 if (trapnr
== TT_DFAULT
)
554 info
._sifields
._sigfault
._addr
= env
->dmmuregs
[4];
556 info
._sifields
._sigfault
._addr
= env
->tsptr
->tpc
;
557 //queue_signal(env, info.si_signo, &info);
563 /* just indicate that signals should be handled asap */
569 sig
= gdb_handlesig (env
, TARGET_SIGTRAP
);
575 info
.si_code
= TARGET_TRAP_BRKPT
;
576 //queue_signal(env, info.si_signo, &info);
582 printf ("Unhandled trap: 0x%x\n", trapnr
);
583 cpu_dump_state(env
, stderr
, fprintf
, 0);
586 process_pending_signals (env
);
592 static void usage(void)
594 printf("qemu-" TARGET_ARCH
" version " QEMU_VERSION
", Copyright (c) 2003-2008 Fabrice Bellard\n"
595 "usage: qemu-" TARGET_ARCH
" [options] program [arguments...]\n"
596 "BSD CPU emulator (compiled for %s emulation)\n"
598 "Standard options:\n"
599 "-h print this help\n"
600 "-g port wait gdb connection to port\n"
601 "-L path set the elf interpreter prefix (default=%s)\n"
602 "-s size set the stack size in bytes (default=%ld)\n"
603 "-cpu model select CPU (-cpu ? for list)\n"
604 "-drop-ld-preload drop LD_PRELOAD for target process\n"
605 "-bsd type select emulated BSD type FreeBSD/NetBSD/OpenBSD (default)\n"
608 "-d options activate log (logfile=%s)\n"
609 "-p pagesize set the host page size to 'pagesize'\n"
610 "-singlestep always run in singlestep mode\n"
611 "-strace log system calls\n"
613 "Environment variables:\n"
614 "QEMU_STRACE Print system calls and arguments similar to the\n"
615 " 'strace' program. Enable by setting to any value.\n"
624 THREAD CPUState
*thread_env
;
626 /* Assumes contents are already zeroed. */
627 void init_task_state(TaskState
*ts
)
632 ts
->first_free
= ts
->sigqueue_table
;
633 for (i
= 0; i
< MAX_SIGQUEUE_SIZE
- 1; i
++) {
634 ts
->sigqueue_table
[i
].next
= &ts
->sigqueue_table
[i
+ 1];
636 ts
->sigqueue_table
[i
].next
= NULL
;
639 int main(int argc
, char **argv
)
641 const char *filename
;
642 const char *cpu_model
;
643 struct target_pt_regs regs1
, *regs
= ®s1
;
644 struct image_info info1
, *info
= &info1
;
645 TaskState ts1
, *ts
= &ts1
;
649 int gdbstub_port
= 0;
650 int drop_ld_preload
= 0, environ_count
= 0;
651 char **target_environ
, **wrk
, **dst
;
652 enum BSDType bsd_type
= target_openbsd
;
658 cpu_set_log_filename(DEBUG_LOGFILE
);
670 if (!strcmp(r
, "-")) {
672 } else if (!strcmp(r
, "d")) {
674 const CPULogItem
*item
;
680 mask
= cpu_str_to_log_mask(r
);
682 printf("Log items (comma separated):\n");
683 for(item
= cpu_log_items
; item
->mask
!= 0; item
++) {
684 printf("%-10s %s\n", item
->name
, item
->help
);
689 } else if (!strcmp(r
, "s")) {
691 x86_stack_size
= strtol(r
, (char **)&r
, 0);
692 if (x86_stack_size
<= 0)
695 x86_stack_size
*= 1024 * 1024;
696 else if (*r
== 'k' || *r
== 'K')
697 x86_stack_size
*= 1024;
698 } else if (!strcmp(r
, "L")) {
699 interp_prefix
= argv
[optind
++];
700 } else if (!strcmp(r
, "p")) {
701 qemu_host_page_size
= atoi(argv
[optind
++]);
702 if (qemu_host_page_size
== 0 ||
703 (qemu_host_page_size
& (qemu_host_page_size
- 1)) != 0) {
704 fprintf(stderr
, "page size must be a power of two\n");
707 } else if (!strcmp(r
, "g")) {
708 gdbstub_port
= atoi(argv
[optind
++]);
709 } else if (!strcmp(r
, "r")) {
710 qemu_uname_release
= argv
[optind
++];
711 } else if (!strcmp(r
, "cpu")) {
712 cpu_model
= argv
[optind
++];
713 if (strcmp(cpu_model
, "?") == 0) {
714 /* XXX: implement xxx_cpu_list for targets that still miss it */
715 #if defined(cpu_list)
716 cpu_list(stdout
, &fprintf
);
720 } else if (!strcmp(r
, "drop-ld-preload")) {
722 } else if (!strcmp(r
, "bsd")) {
723 if (!strcasecmp(argv
[optind
], "freebsd")) {
724 bsd_type
= target_freebsd
;
725 } else if (!strcasecmp(argv
[optind
], "netbsd")) {
726 bsd_type
= target_netbsd
;
727 } else if (!strcasecmp(argv
[optind
], "openbsd")) {
728 bsd_type
= target_openbsd
;
733 } else if (!strcmp(r
, "singlestep")) {
735 } else if (!strcmp(r
, "strace")) {
744 filename
= argv
[optind
];
747 memset(regs
, 0, sizeof(struct target_pt_regs
));
749 /* Zero out image_info */
750 memset(info
, 0, sizeof(struct image_info
));
752 /* Scan interp_prefix dir for replacement files. */
753 init_paths(interp_prefix
);
755 if (cpu_model
== NULL
) {
756 #if defined(TARGET_I386)
758 cpu_model
= "qemu64";
760 cpu_model
= "qemu32";
762 #elif defined(TARGET_SPARC)
763 #ifdef TARGET_SPARC64
764 cpu_model
= "TI UltraSparc II";
766 cpu_model
= "Fujitsu MB86904";
772 cpu_exec_init_all(0);
773 /* NOTE: we need to init the CPU at this stage to get
774 qemu_host_page_size */
775 env
= cpu_init(cpu_model
);
777 fprintf(stderr
, "Unable to find CPU definition\n");
782 if (getenv("QEMU_STRACE")) {
790 target_environ
= malloc((environ_count
+ 1) * sizeof(char *));
793 for (wrk
= environ
, dst
= target_environ
; *wrk
; wrk
++) {
794 if (drop_ld_preload
&& !strncmp(*wrk
, "LD_PRELOAD=", 11))
796 *(dst
++) = strdup(*wrk
);
798 *dst
= NULL
; /* NULL terminate target_environ */
800 if (loader_exec(filename
, argv
+optind
, target_environ
, regs
, info
) != 0) {
801 printf("Error loading %s\n", filename
);
805 for (wrk
= target_environ
; *wrk
; wrk
++) {
809 free(target_environ
);
811 if (qemu_log_enabled()) {
814 qemu_log("start_brk 0x" TARGET_ABI_FMT_lx
"\n", info
->start_brk
);
815 qemu_log("end_code 0x" TARGET_ABI_FMT_lx
"\n", info
->end_code
);
816 qemu_log("start_code 0x" TARGET_ABI_FMT_lx
"\n",
818 qemu_log("start_data 0x" TARGET_ABI_FMT_lx
"\n",
820 qemu_log("end_data 0x" TARGET_ABI_FMT_lx
"\n", info
->end_data
);
821 qemu_log("start_stack 0x" TARGET_ABI_FMT_lx
"\n",
823 qemu_log("brk 0x" TARGET_ABI_FMT_lx
"\n", info
->brk
);
824 qemu_log("entry 0x" TARGET_ABI_FMT_lx
"\n", info
->entry
);
827 target_set_brk(info
->brk
);
831 /* build Task State */
832 memset(ts
, 0, sizeof(TaskState
));
837 #if defined(TARGET_I386)
838 cpu_x86_set_cpl(env
, 3);
840 env
->cr
[0] = CR0_PG_MASK
| CR0_WP_MASK
| CR0_PE_MASK
;
841 env
->hflags
|= HF_PE_MASK
;
842 if (env
->cpuid_features
& CPUID_SSE
) {
843 env
->cr
[4] |= CR4_OSFXSR_MASK
;
844 env
->hflags
|= HF_OSFXSR_MASK
;
847 /* enable 64 bit mode if possible */
848 if (!(env
->cpuid_ext2_features
& CPUID_EXT2_LM
)) {
849 fprintf(stderr
, "The selected x86 CPU does not support 64 bit mode\n");
852 env
->cr
[4] |= CR4_PAE_MASK
;
853 env
->efer
|= MSR_EFER_LMA
| MSR_EFER_LME
;
854 env
->hflags
|= HF_LMA_MASK
;
857 /* flags setup : we activate the IRQs by default as in user mode */
858 env
->eflags
|= IF_MASK
;
860 /* linux register setup */
862 env
->regs
[R_EAX
] = regs
->rax
;
863 env
->regs
[R_EBX
] = regs
->rbx
;
864 env
->regs
[R_ECX
] = regs
->rcx
;
865 env
->regs
[R_EDX
] = regs
->rdx
;
866 env
->regs
[R_ESI
] = regs
->rsi
;
867 env
->regs
[R_EDI
] = regs
->rdi
;
868 env
->regs
[R_EBP
] = regs
->rbp
;
869 env
->regs
[R_ESP
] = regs
->rsp
;
870 env
->eip
= regs
->rip
;
872 env
->regs
[R_EAX
] = regs
->eax
;
873 env
->regs
[R_EBX
] = regs
->ebx
;
874 env
->regs
[R_ECX
] = regs
->ecx
;
875 env
->regs
[R_EDX
] = regs
->edx
;
876 env
->regs
[R_ESI
] = regs
->esi
;
877 env
->regs
[R_EDI
] = regs
->edi
;
878 env
->regs
[R_EBP
] = regs
->ebp
;
879 env
->regs
[R_ESP
] = regs
->esp
;
880 env
->eip
= regs
->eip
;
883 /* linux interrupt setup */
885 env
->idt
.limit
= 511;
887 env
->idt
.limit
= 255;
889 env
->idt
.base
= target_mmap(0, sizeof(uint64_t) * (env
->idt
.limit
+ 1),
890 PROT_READ
|PROT_WRITE
,
891 MAP_ANONYMOUS
|MAP_PRIVATE
, -1, 0);
892 idt_table
= g2h(env
->idt
.base
);
915 /* linux segment setup */
918 env
->gdt
.base
= target_mmap(0, sizeof(uint64_t) * TARGET_GDT_ENTRIES
,
919 PROT_READ
|PROT_WRITE
,
920 MAP_ANONYMOUS
|MAP_PRIVATE
, -1, 0);
921 env
->gdt
.limit
= sizeof(uint64_t) * TARGET_GDT_ENTRIES
- 1;
922 gdt_table
= g2h(env
->gdt
.base
);
924 write_dt(&gdt_table
[__USER_CS
>> 3], 0, 0xfffff,
925 DESC_G_MASK
| DESC_B_MASK
| DESC_P_MASK
| DESC_S_MASK
|
926 (3 << DESC_DPL_SHIFT
) | (0xa << DESC_TYPE_SHIFT
));
928 /* 64 bit code segment */
929 write_dt(&gdt_table
[__USER_CS
>> 3], 0, 0xfffff,
930 DESC_G_MASK
| DESC_B_MASK
| DESC_P_MASK
| DESC_S_MASK
|
932 (3 << DESC_DPL_SHIFT
) | (0xa << DESC_TYPE_SHIFT
));
934 write_dt(&gdt_table
[__USER_DS
>> 3], 0, 0xfffff,
935 DESC_G_MASK
| DESC_B_MASK
| DESC_P_MASK
| DESC_S_MASK
|
936 (3 << DESC_DPL_SHIFT
) | (0x2 << DESC_TYPE_SHIFT
));
939 cpu_x86_load_seg(env
, R_CS
, __USER_CS
);
940 cpu_x86_load_seg(env
, R_SS
, __USER_DS
);
942 cpu_x86_load_seg(env
, R_DS
, __USER_DS
);
943 cpu_x86_load_seg(env
, R_ES
, __USER_DS
);
944 cpu_x86_load_seg(env
, R_FS
, __USER_DS
);
945 cpu_x86_load_seg(env
, R_GS
, __USER_DS
);
946 /* This hack makes Wine work... */
947 env
->segs
[R_FS
].selector
= 0;
949 cpu_x86_load_seg(env
, R_DS
, 0);
950 cpu_x86_load_seg(env
, R_ES
, 0);
951 cpu_x86_load_seg(env
, R_FS
, 0);
952 cpu_x86_load_seg(env
, R_GS
, 0);
954 #elif defined(TARGET_SPARC)
958 env
->npc
= regs
->npc
;
960 for(i
= 0; i
< 8; i
++)
961 env
->gregs
[i
] = regs
->u_regs
[i
];
962 for(i
= 0; i
< 8; i
++)
963 env
->regwptr
[i
] = regs
->u_regs
[i
+ 8];
966 #error unsupported target CPU
970 gdbserver_start (gdbstub_port
);
971 gdb_handlesig(env
, 0);
973 cpu_loop(env
, bsd_type
);