Statistics
| Branch: | Revision:

root / linux-user / main.c @ ed23fbd9

History | View | Annotate | Download (84.4 kB)

1
/*
2
 *  qemu user main
3
 *
4
 *  Copyright (c) 2003-2008 Fabrice Bellard
5
 *
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.
10
 *
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.
15
 *
16
 *  You should have received a copy of the GNU General Public License
17
 *  along with this program; if not, write to the Free Software
18
 *  Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
19
 */
20
#include <stdlib.h>
21
#include <stdio.h>
22
#include <stdarg.h>
23
#include <string.h>
24
#include <errno.h>
25
#include <unistd.h>
26

    
27
#include "qemu.h"
28
#include "qemu-common.h"
29
/* For tb_lock */
30
#include "exec-all.h"
31

    
32
#define DEBUG_LOGFILE "/tmp/qemu.log"
33

    
34
static const char *interp_prefix = CONFIG_QEMU_PREFIX;
35
const char *qemu_uname_release = CONFIG_UNAME_RELEASE;
36

    
37
#if defined(__i386__) && !defined(CONFIG_STATIC)
38
/* Force usage of an ELF interpreter even if it is an ELF shared
39
   object ! */
40
const char interp[] __attribute__((section(".interp"))) = "/lib/ld-linux.so.2";
41
#endif
42

    
43
/* for recent libc, we add these dummy symbols which are not declared
44
   when generating a linked object (bug in ld ?) */
45
#if (__GLIBC__ > 2 || (__GLIBC__ == 2 && __GLIBC_MINOR__ >= 3)) && !defined(CONFIG_STATIC)
46
asm(".globl __preinit_array_start\n"
47
    ".globl __preinit_array_end\n"
48
    ".globl __init_array_start\n"
49
    ".globl __init_array_end\n"
50
    ".globl __fini_array_start\n"
51
    ".globl __fini_array_end\n"
52
    ".section \".rodata\"\n"
53
    "__preinit_array_start:\n"
54
    "__preinit_array_end:\n"
55
    "__init_array_start:\n"
56
    "__init_array_end:\n"
57
    "__fini_array_start:\n"
58
    "__fini_array_end:\n"
59
    ".long 0\n"
60
    ".previous\n");
61
#endif
62

    
63
/* XXX: on x86 MAP_GROWSDOWN only works if ESP <= address + 32, so
64
   we allocate a bigger stack. Need a better solution, for example
65
   by remapping the process stack directly at the right place */
66
unsigned long x86_stack_size = 512 * 1024;
67

    
68
void gemu_log(const char *fmt, ...)
69
{
70
    va_list ap;
71

    
72
    va_start(ap, fmt);
73
    vfprintf(stderr, fmt, ap);
74
    va_end(ap);
75
}
76

    
77
void cpu_outb(CPUState *env, int addr, int val)
78
{
79
    fprintf(stderr, "outb: port=0x%04x, data=%02x\n", addr, val);
80
}
81

    
82
void cpu_outw(CPUState *env, int addr, int val)
83
{
84
    fprintf(stderr, "outw: port=0x%04x, data=%04x\n", addr, val);
85
}
86

    
87
void cpu_outl(CPUState *env, int addr, int val)
88
{
89
    fprintf(stderr, "outl: port=0x%04x, data=%08x\n", addr, val);
90
}
91

    
92
int cpu_inb(CPUState *env, int addr)
93
{
94
    fprintf(stderr, "inb: port=0x%04x\n", addr);
95
    return 0;
96
}
97

    
98
int cpu_inw(CPUState *env, int addr)
99
{
100
    fprintf(stderr, "inw: port=0x%04x\n", addr);
101
    return 0;
102
}
103

    
104
int cpu_inl(CPUState *env, int addr)
105
{
106
    fprintf(stderr, "inl: port=0x%04x\n", addr);
107
    return 0;
108
}
109

    
110
#if defined(TARGET_I386)
111
int cpu_get_pic_interrupt(CPUState *env)
112
{
113
    return -1;
114
}
115
#endif
116

    
117
/* timers for rdtsc */
118

    
119
#if 0
120

121
static uint64_t emu_time;
122

123
int64_t cpu_get_real_ticks(void)
124
{
125
    return emu_time++;
126
}
127

128
#endif
129

    
130
#if defined(USE_NPTL)
131
/***********************************************************/
132
/* Helper routines for implementing atomic operations.  */
133

    
134
/* To implement exclusive operations we force all cpus to syncronise.
135
   We don't require a full sync, only that no cpus are executing guest code.
136
   The alternative is to map target atomic ops onto host equivalents,
137
   which requires quite a lot of per host/target work.  */
138
static pthread_mutex_t exclusive_lock = PTHREAD_MUTEX_INITIALIZER;
139
static pthread_cond_t exclusive_cond = PTHREAD_COND_INITIALIZER;
140
static pthread_cond_t exclusive_resume = PTHREAD_COND_INITIALIZER;
141
static int pending_cpus;
142

    
143
/* Make sure everything is in a consistent state for calling fork().  */
144
void fork_start(void)
145
{
146
    mmap_fork_start();
147
    pthread_mutex_lock(&tb_lock);
148
    pthread_mutex_lock(&exclusive_lock);
149
}
150

    
151
void fork_end(int child)
152
{
153
    if (child) {
154
        /* Child processes created by fork() only have a single thread.
155
           Discard information about the parent threads.  */
156
        first_cpu = thread_env;
157
        thread_env->next_cpu = NULL;
158
        pending_cpus = 0;
159
        pthread_mutex_init(&exclusive_lock, NULL);
160
        pthread_cond_init(&exclusive_cond, NULL);
161
        pthread_cond_init(&exclusive_resume, NULL);
162
        pthread_mutex_init(&tb_lock, NULL);
163
    } else {
164
        pthread_mutex_unlock(&exclusive_lock);
165
        pthread_mutex_unlock(&tb_lock);
166
    }
167
    mmap_fork_end(child);
168
}
169

    
170
/* Wait for pending exclusive operations to complete.  The exclusive lock
171
   must be held.  */
172
static inline void exclusive_idle(void)
173
{
174
    while (pending_cpus) {
175
        pthread_cond_wait(&exclusive_resume, &exclusive_lock);
176
    }
177
}
178

    
179
/* Start an exclusive operation.
180
   Must only be called from outside cpu_arm_exec.   */
181
static inline void start_exclusive(void)
182
{
183
    CPUState *other;
184
    pthread_mutex_lock(&exclusive_lock);
185
    exclusive_idle();
186

    
187
    pending_cpus = 1;
188
    /* Make all other cpus stop executing.  */
189
    for (other = first_cpu; other; other = other->next_cpu) {
190
        if (other->running) {
191
            pending_cpus++;
192
            cpu_interrupt(other, CPU_INTERRUPT_EXIT);
193
        }
194
    }
195
    if (pending_cpus > 1) {
196
        pthread_cond_wait(&exclusive_cond, &exclusive_lock);
197
    }
198
}
199

    
200
/* Finish an exclusive operation.  */
201
static inline void end_exclusive(void)
202
{
203
    pending_cpus = 0;
204
    pthread_cond_broadcast(&exclusive_resume);
205
    pthread_mutex_unlock(&exclusive_lock);
206
}
207

    
208
/* Wait for exclusive ops to finish, and begin cpu execution.  */
209
static inline void cpu_exec_start(CPUState *env)
210
{
211
    pthread_mutex_lock(&exclusive_lock);
212
    exclusive_idle();
213
    env->running = 1;
214
    pthread_mutex_unlock(&exclusive_lock);
215
}
216

    
217
/* Mark cpu as not executing, and release pending exclusive ops.  */
218
static inline void cpu_exec_end(CPUState *env)
219
{
220
    pthread_mutex_lock(&exclusive_lock);
221
    env->running = 0;
222
    if (pending_cpus > 1) {
223
        pending_cpus--;
224
        if (pending_cpus == 1) {
225
            pthread_cond_signal(&exclusive_cond);
226
        }
227
    }
228
    exclusive_idle();
229
    pthread_mutex_unlock(&exclusive_lock);
230
}
231
#else /* if !USE_NPTL */
232
/* These are no-ops because we are not threadsafe.  */
233
static inline void cpu_exec_start(CPUState *env)
234
{
235
}
236

    
237
static inline void cpu_exec_end(CPUState *env)
238
{
239
}
240

    
241
static inline void start_exclusive(void)
242
{
243
}
244

    
245
static inline void end_exclusive(void)
246
{
247
}
248

    
249
void fork_start(void)
250
{
251
}
252

    
253
void fork_end(int child)
254
{
255
}
256
#endif
257

    
258

    
259
#ifdef TARGET_I386
260
/***********************************************************/
261
/* CPUX86 core interface */
262

    
263
void cpu_smm_update(CPUState *env)
264
{
265
}
266

    
267
uint64_t cpu_get_tsc(CPUX86State *env)
268
{
269
    return cpu_get_real_ticks();
270
}
271

    
272
static void write_dt(void *ptr, unsigned long addr, unsigned long limit,
273
                     int flags)
274
{
275
    unsigned int e1, e2;
276
    uint32_t *p;
277
    e1 = (addr << 16) | (limit & 0xffff);
278
    e2 = ((addr >> 16) & 0xff) | (addr & 0xff000000) | (limit & 0x000f0000);
279
    e2 |= flags;
280
    p = ptr;
281
    p[0] = tswap32(e1);
282
    p[1] = tswap32(e2);
283
}
284

    
285
#if TARGET_X86_64
286
uint64_t idt_table[512];
287

    
288
static void set_gate64(void *ptr, unsigned int type, unsigned int dpl,
289
                       uint64_t addr, unsigned int sel)
290
{
291
    uint32_t *p, e1, e2;
292
    e1 = (addr & 0xffff) | (sel << 16);
293
    e2 = (addr & 0xffff0000) | 0x8000 | (dpl << 13) | (type << 8);
294
    p = ptr;
295
    p[0] = tswap32(e1);
296
    p[1] = tswap32(e2);
297
    p[2] = tswap32(addr >> 32);
298
    p[3] = 0;
299
}
300
/* only dpl matters as we do only user space emulation */
301
static void set_idt(int n, unsigned int dpl)
302
{
303
    set_gate64(idt_table + n * 2, 0, dpl, 0, 0);
304
}
305
#else
306
uint64_t idt_table[256];
307

    
308
static void set_gate(void *ptr, unsigned int type, unsigned int dpl,
309
                     uint32_t addr, unsigned int sel)
310
{
311
    uint32_t *p, e1, e2;
312
    e1 = (addr & 0xffff) | (sel << 16);
313
    e2 = (addr & 0xffff0000) | 0x8000 | (dpl << 13) | (type << 8);
314
    p = ptr;
315
    p[0] = tswap32(e1);
316
    p[1] = tswap32(e2);
317
}
318

    
319
/* only dpl matters as we do only user space emulation */
320
static void set_idt(int n, unsigned int dpl)
321
{
322
    set_gate(idt_table + n, 0, dpl, 0, 0);
323
}
324
#endif
325

    
326
void cpu_loop(CPUX86State *env)
327
{
328
    int trapnr;
329
    abi_ulong pc;
330
    target_siginfo_t info;
331

    
332
    for(;;) {
333
        trapnr = cpu_x86_exec(env);
334
        switch(trapnr) {
335
        case 0x80:
336
            /* linux syscall from int $0x80 */
337
            env->regs[R_EAX] = do_syscall(env,
338
                                          env->regs[R_EAX],
339
                                          env->regs[R_EBX],
340
                                          env->regs[R_ECX],
341
                                          env->regs[R_EDX],
342
                                          env->regs[R_ESI],
343
                                          env->regs[R_EDI],
344
                                          env->regs[R_EBP]);
345
            break;
346
#ifndef TARGET_ABI32
347
        case EXCP_SYSCALL:
348
            /* linux syscall from syscall intruction */
349
            env->regs[R_EAX] = do_syscall(env,
350
                                          env->regs[R_EAX],
351
                                          env->regs[R_EDI],
352
                                          env->regs[R_ESI],
353
                                          env->regs[R_EDX],
354
                                          env->regs[10],
355
                                          env->regs[8],
356
                                          env->regs[9]);
357
            env->eip = env->exception_next_eip;
358
            break;
359
#endif
360
        case EXCP0B_NOSEG:
361
        case EXCP0C_STACK:
362
            info.si_signo = SIGBUS;
363
            info.si_errno = 0;
364
            info.si_code = TARGET_SI_KERNEL;
365
            info._sifields._sigfault._addr = 0;
366
            queue_signal(env, info.si_signo, &info);
367
            break;
368
        case EXCP0D_GPF:
369
            /* XXX: potential problem if ABI32 */
370
#ifndef TARGET_X86_64
371
            if (env->eflags & VM_MASK) {
372
                handle_vm86_fault(env);
373
            } else
374
#endif
375
            {
376
                info.si_signo = SIGSEGV;
377
                info.si_errno = 0;
378
                info.si_code = TARGET_SI_KERNEL;
379
                info._sifields._sigfault._addr = 0;
380
                queue_signal(env, info.si_signo, &info);
381
            }
382
            break;
383
        case EXCP0E_PAGE:
384
            info.si_signo = SIGSEGV;
385
            info.si_errno = 0;
386
            if (!(env->error_code & 1))
387
                info.si_code = TARGET_SEGV_MAPERR;
388
            else
389
                info.si_code = TARGET_SEGV_ACCERR;
390
            info._sifields._sigfault._addr = env->cr[2];
391
            queue_signal(env, info.si_signo, &info);
392
            break;
393
        case EXCP00_DIVZ:
394
#ifndef TARGET_X86_64
395
            if (env->eflags & VM_MASK) {
396
                handle_vm86_trap(env, trapnr);
397
            } else
398
#endif
399
            {
400
                /* division by zero */
401
                info.si_signo = SIGFPE;
402
                info.si_errno = 0;
403
                info.si_code = TARGET_FPE_INTDIV;
404
                info._sifields._sigfault._addr = env->eip;
405
                queue_signal(env, info.si_signo, &info);
406
            }
407
            break;
408
        case EXCP01_SSTP:
409
        case EXCP03_INT3:
410
#ifndef TARGET_X86_64
411
            if (env->eflags & VM_MASK) {
412
                handle_vm86_trap(env, trapnr);
413
            } else
414
#endif
415
            {
416
                info.si_signo = SIGTRAP;
417
                info.si_errno = 0;
418
                if (trapnr == EXCP01_SSTP) {
419
                    info.si_code = TARGET_TRAP_BRKPT;
420
                    info._sifields._sigfault._addr = env->eip;
421
                } else {
422
                    info.si_code = TARGET_SI_KERNEL;
423
                    info._sifields._sigfault._addr = 0;
424
                }
425
                queue_signal(env, info.si_signo, &info);
426
            }
427
            break;
428
        case EXCP04_INTO:
429
        case EXCP05_BOUND:
430
#ifndef TARGET_X86_64
431
            if (env->eflags & VM_MASK) {
432
                handle_vm86_trap(env, trapnr);
433
            } else
434
#endif
435
            {
436
                info.si_signo = SIGSEGV;
437
                info.si_errno = 0;
438
                info.si_code = TARGET_SI_KERNEL;
439
                info._sifields._sigfault._addr = 0;
440
                queue_signal(env, info.si_signo, &info);
441
            }
442
            break;
443
        case EXCP06_ILLOP:
444
            info.si_signo = SIGILL;
445
            info.si_errno = 0;
446
            info.si_code = TARGET_ILL_ILLOPN;
447
            info._sifields._sigfault._addr = env->eip;
448
            queue_signal(env, info.si_signo, &info);
449
            break;
450
        case EXCP_INTERRUPT:
451
            /* just indicate that signals should be handled asap */
452
            break;
453
        case EXCP_DEBUG:
454
            {
455
                int sig;
456

    
457
                sig = gdb_handlesig (env, TARGET_SIGTRAP);
458
                if (sig)
459
                  {
460
                    info.si_signo = sig;
461
                    info.si_errno = 0;
462
                    info.si_code = TARGET_TRAP_BRKPT;
463
                    queue_signal(env, info.si_signo, &info);
464
                  }
465
            }
466
            break;
467
        default:
468
            pc = env->segs[R_CS].base + env->eip;
469
            fprintf(stderr, "qemu: 0x%08lx: unhandled CPU exception 0x%x - aborting\n",
470
                    (long)pc, trapnr);
471
            abort();
472
        }
473
        process_pending_signals(env);
474
    }
475
}
476
#endif
477

    
478
#ifdef TARGET_ARM
479

    
480
/* XXX: find a better solution */
481
extern void tb_invalidate_page_range(abi_ulong start, abi_ulong end);
482

    
483
static void arm_cache_flush(abi_ulong start, abi_ulong last)
484
{
485
    abi_ulong addr, last1;
486

    
487
    if (last < start)
488
        return;
489
    addr = start;
490
    for(;;) {
491
        last1 = ((addr + TARGET_PAGE_SIZE) & TARGET_PAGE_MASK) - 1;
492
        if (last1 > last)
493
            last1 = last;
494
        tb_invalidate_page_range(addr, last1 + 1);
495
        if (last1 == last)
496
            break;
497
        addr = last1 + 1;
498
    }
499
}
500

    
501
/* Handle a jump to the kernel code page.  */
502
static int
503
do_kernel_trap(CPUARMState *env)
504
{
505
    uint32_t addr;
506
    uint32_t cpsr;
507
    uint32_t val;
508

    
509
    switch (env->regs[15]) {
510
    case 0xffff0fa0: /* __kernel_memory_barrier */
511
        /* ??? No-op. Will need to do better for SMP.  */
512
        break;
513
    case 0xffff0fc0: /* __kernel_cmpxchg */
514
         /* XXX: This only works between threads, not between processes.
515
            It's probably possible to implement this with native host
516
            operations. However things like ldrex/strex are much harder so
517
            there's not much point trying.  */
518
        start_exclusive();
519
        cpsr = cpsr_read(env);
520
        addr = env->regs[2];
521
        /* FIXME: This should SEGV if the access fails.  */
522
        if (get_user_u32(val, addr))
523
            val = ~env->regs[0];
524
        if (val == env->regs[0]) {
525
            val = env->regs[1];
526
            /* FIXME: Check for segfaults.  */
527
            put_user_u32(val, addr);
528
            env->regs[0] = 0;
529
            cpsr |= CPSR_C;
530
        } else {
531
            env->regs[0] = -1;
532
            cpsr &= ~CPSR_C;
533
        }
534
        cpsr_write(env, cpsr, CPSR_C);
535
        end_exclusive();
536
        break;
537
    case 0xffff0fe0: /* __kernel_get_tls */
538
        env->regs[0] = env->cp15.c13_tls2;
539
        break;
540
    default:
541
        return 1;
542
    }
543
    /* Jump back to the caller.  */
544
    addr = env->regs[14];
545
    if (addr & 1) {
546
        env->thumb = 1;
547
        addr &= ~1;
548
    }
549
    env->regs[15] = addr;
550

    
551
    return 0;
552
}
553

    
554
void cpu_loop(CPUARMState *env)
555
{
556
    int trapnr;
557
    unsigned int n, insn;
558
    target_siginfo_t info;
559
    uint32_t addr;
560

    
561
    for(;;) {
562
        cpu_exec_start(env);
563
        trapnr = cpu_arm_exec(env);
564
        cpu_exec_end(env);
565
        switch(trapnr) {
566
        case EXCP_UDEF:
567
            {
568
                TaskState *ts = env->opaque;
569
                uint32_t opcode;
570
                int rc;
571

    
572
                /* we handle the FPU emulation here, as Linux */
573
                /* we get the opcode */
574
                /* FIXME - what to do if get_user() fails? */
575
                get_user_u32(opcode, env->regs[15]);
576

    
577
                rc = EmulateAll(opcode, &ts->fpa, env);
578
                if (rc == 0) { /* illegal instruction */
579
                    info.si_signo = SIGILL;
580
                    info.si_errno = 0;
581
                    info.si_code = TARGET_ILL_ILLOPN;
582
                    info._sifields._sigfault._addr = env->regs[15];
583
                    queue_signal(env, info.si_signo, &info);
584
                } else if (rc < 0) { /* FP exception */
585
                    int arm_fpe=0;
586

    
587
                    /* translate softfloat flags to FPSR flags */
588
                    if (-rc & float_flag_invalid)
589
                      arm_fpe |= BIT_IOC;
590
                    if (-rc & float_flag_divbyzero)
591
                      arm_fpe |= BIT_DZC;
592
                    if (-rc & float_flag_overflow)
593
                      arm_fpe |= BIT_OFC;
594
                    if (-rc & float_flag_underflow)
595
                      arm_fpe |= BIT_UFC;
596
                    if (-rc & float_flag_inexact)
597
                      arm_fpe |= BIT_IXC;
598

    
599
                    FPSR fpsr = ts->fpa.fpsr;
600
                    //printf("fpsr 0x%x, arm_fpe 0x%x\n",fpsr,arm_fpe);
601

    
602
                    if (fpsr & (arm_fpe << 16)) { /* exception enabled? */
603
                      info.si_signo = SIGFPE;
604
                      info.si_errno = 0;
605

    
606
                      /* ordered by priority, least first */
607
                      if (arm_fpe & BIT_IXC) info.si_code = TARGET_FPE_FLTRES;
608
                      if (arm_fpe & BIT_UFC) info.si_code = TARGET_FPE_FLTUND;
609
                      if (arm_fpe & BIT_OFC) info.si_code = TARGET_FPE_FLTOVF;
610
                      if (arm_fpe & BIT_DZC) info.si_code = TARGET_FPE_FLTDIV;
611
                      if (arm_fpe & BIT_IOC) info.si_code = TARGET_FPE_FLTINV;
612

    
613
                      info._sifields._sigfault._addr = env->regs[15];
614
                      queue_signal(env, info.si_signo, &info);
615
                    } else {
616
                      env->regs[15] += 4;
617
                    }
618

    
619
                    /* accumulate unenabled exceptions */
620
                    if ((!(fpsr & BIT_IXE)) && (arm_fpe & BIT_IXC))
621
                      fpsr |= BIT_IXC;
622
                    if ((!(fpsr & BIT_UFE)) && (arm_fpe & BIT_UFC))
623
                      fpsr |= BIT_UFC;
624
                    if ((!(fpsr & BIT_OFE)) && (arm_fpe & BIT_OFC))
625
                      fpsr |= BIT_OFC;
626
                    if ((!(fpsr & BIT_DZE)) && (arm_fpe & BIT_DZC))
627
                      fpsr |= BIT_DZC;
628
                    if ((!(fpsr & BIT_IOE)) && (arm_fpe & BIT_IOC))
629
                      fpsr |= BIT_IOC;
630
                    ts->fpa.fpsr=fpsr;
631
                } else { /* everything OK */
632
                    /* increment PC */
633
                    env->regs[15] += 4;
634
                }
635
            }
636
            break;
637
        case EXCP_SWI:
638
        case EXCP_BKPT:
639
            {
640
                env->eabi = 1;
641
                /* system call */
642
                if (trapnr == EXCP_BKPT) {
643
                    if (env->thumb) {
644
                        /* FIXME - what to do if get_user() fails? */
645
                        get_user_u16(insn, env->regs[15]);
646
                        n = insn & 0xff;
647
                        env->regs[15] += 2;
648
                    } else {
649
                        /* FIXME - what to do if get_user() fails? */
650
                        get_user_u32(insn, env->regs[15]);
651
                        n = (insn & 0xf) | ((insn >> 4) & 0xff0);
652
                        env->regs[15] += 4;
653
                    }
654
                } else {
655
                    if (env->thumb) {
656
                        /* FIXME - what to do if get_user() fails? */
657
                        get_user_u16(insn, env->regs[15] - 2);
658
                        n = insn & 0xff;
659
                    } else {
660
                        /* FIXME - what to do if get_user() fails? */
661
                        get_user_u32(insn, env->regs[15] - 4);
662
                        n = insn & 0xffffff;
663
                    }
664
                }
665

    
666
                if (n == ARM_NR_cacheflush) {
667
                    arm_cache_flush(env->regs[0], env->regs[1]);
668
                } else if (n == ARM_NR_semihosting
669
                           || n == ARM_NR_thumb_semihosting) {
670
                    env->regs[0] = do_arm_semihosting (env);
671
                } else if (n == 0 || n >= ARM_SYSCALL_BASE
672
                           || (env->thumb && n == ARM_THUMB_SYSCALL)) {
673
                    /* linux syscall */
674
                    if (env->thumb || n == 0) {
675
                        n = env->regs[7];
676
                    } else {
677
                        n -= ARM_SYSCALL_BASE;
678
                        env->eabi = 0;
679
                    }
680
                    if ( n > ARM_NR_BASE) {
681
                        switch (n) {
682
                        case ARM_NR_cacheflush:
683
                            arm_cache_flush(env->regs[0], env->regs[1]);
684
                            break;
685
                        case ARM_NR_set_tls:
686
                            cpu_set_tls(env, env->regs[0]);
687
                            env->regs[0] = 0;
688
                            break;
689
                        default:
690
                            gemu_log("qemu: Unsupported ARM syscall: 0x%x\n",
691
                                     n);
692
                            env->regs[0] = -TARGET_ENOSYS;
693
                            break;
694
                        }
695
                    } else {
696
                        env->regs[0] = do_syscall(env,
697
                                                  n,
698
                                                  env->regs[0],
699
                                                  env->regs[1],
700
                                                  env->regs[2],
701
                                                  env->regs[3],
702
                                                  env->regs[4],
703
                                                  env->regs[5]);
704
                    }
705
                } else {
706
                    goto error;
707
                }
708
            }
709
            break;
710
        case EXCP_INTERRUPT:
711
            /* just indicate that signals should be handled asap */
712
            break;
713
        case EXCP_PREFETCH_ABORT:
714
            addr = env->cp15.c6_insn;
715
            goto do_segv;
716
        case EXCP_DATA_ABORT:
717
            addr = env->cp15.c6_data;
718
            goto do_segv;
719
        do_segv:
720
            {
721
                info.si_signo = SIGSEGV;
722
                info.si_errno = 0;
723
                /* XXX: check env->error_code */
724
                info.si_code = TARGET_SEGV_MAPERR;
725
                info._sifields._sigfault._addr = addr;
726
                queue_signal(env, info.si_signo, &info);
727
            }
728
            break;
729
        case EXCP_DEBUG:
730
            {
731
                int sig;
732

    
733
                sig = gdb_handlesig (env, TARGET_SIGTRAP);
734
                if (sig)
735
                  {
736
                    info.si_signo = sig;
737
                    info.si_errno = 0;
738
                    info.si_code = TARGET_TRAP_BRKPT;
739
                    queue_signal(env, info.si_signo, &info);
740
                  }
741
            }
742
            break;
743
        case EXCP_KERNEL_TRAP:
744
            if (do_kernel_trap(env))
745
              goto error;
746
            break;
747
        default:
748
        error:
749
            fprintf(stderr, "qemu: unhandled CPU exception 0x%x - aborting\n",
750
                    trapnr);
751
            cpu_dump_state(env, stderr, fprintf, 0);
752
            abort();
753
        }
754
        process_pending_signals(env);
755
    }
756
}
757

    
758
#endif
759

    
760
#ifdef TARGET_SPARC
761
#define SPARC64_STACK_BIAS 2047
762

    
763
//#define DEBUG_WIN
764

    
765
/* WARNING: dealing with register windows _is_ complicated. More info
766
   can be found at http://www.sics.se/~psm/sparcstack.html */
767
static inline int get_reg_index(CPUSPARCState *env, int cwp, int index)
768
{
769
    index = (index + cwp * 16) % (16 * env->nwindows);
770
    /* wrap handling : if cwp is on the last window, then we use the
771
       registers 'after' the end */
772
    if (index < 8 && env->cwp == env->nwindows - 1)
773
        index += 16 * env->nwindows;
774
    return index;
775
}
776

    
777
/* save the register window 'cwp1' */
778
static inline void save_window_offset(CPUSPARCState *env, int cwp1)
779
{
780
    unsigned int i;
781
    abi_ulong sp_ptr;
782

    
783
    sp_ptr = env->regbase[get_reg_index(env, cwp1, 6)];
784
#ifdef TARGET_SPARC64
785
    if (sp_ptr & 3)
786
        sp_ptr += SPARC64_STACK_BIAS;
787
#endif
788
#if defined(DEBUG_WIN)
789
    printf("win_overflow: sp_ptr=0x" TARGET_ABI_FMT_lx " save_cwp=%d\n",
790
           sp_ptr, cwp1);
791
#endif
792
    for(i = 0; i < 16; i++) {
793
        /* FIXME - what to do if put_user() fails? */
794
        put_user_ual(env->regbase[get_reg_index(env, cwp1, 8 + i)], sp_ptr);
795
        sp_ptr += sizeof(abi_ulong);
796
    }
797
}
798

    
799
static void save_window(CPUSPARCState *env)
800
{
801
#ifndef TARGET_SPARC64
802
    unsigned int new_wim;
803
    new_wim = ((env->wim >> 1) | (env->wim << (env->nwindows - 1))) &
804
        ((1LL << env->nwindows) - 1);
805
    save_window_offset(env, cpu_cwp_dec(env, env->cwp - 2));
806
    env->wim = new_wim;
807
#else
808
    save_window_offset(env, cpu_cwp_dec(env, env->cwp - 2));
809
    env->cansave++;
810
    env->canrestore--;
811
#endif
812
}
813

    
814
static void restore_window(CPUSPARCState *env)
815
{
816
#ifndef TARGET_SPARC64
817
    unsigned int new_wim;
818
#endif
819
    unsigned int i, cwp1;
820
    abi_ulong sp_ptr;
821

    
822
#ifndef TARGET_SPARC64
823
    new_wim = ((env->wim << 1) | (env->wim >> (env->nwindows - 1))) &
824
        ((1LL << env->nwindows) - 1);
825
#endif
826

    
827
    /* restore the invalid window */
828
    cwp1 = cpu_cwp_inc(env, env->cwp + 1);
829
    sp_ptr = env->regbase[get_reg_index(env, cwp1, 6)];
830
#ifdef TARGET_SPARC64
831
    if (sp_ptr & 3)
832
        sp_ptr += SPARC64_STACK_BIAS;
833
#endif
834
#if defined(DEBUG_WIN)
835
    printf("win_underflow: sp_ptr=0x" TARGET_ABI_FMT_lx " load_cwp=%d\n",
836
           sp_ptr, cwp1);
837
#endif
838
    for(i = 0; i < 16; i++) {
839
        /* FIXME - what to do if get_user() fails? */
840
        get_user_ual(env->regbase[get_reg_index(env, cwp1, 8 + i)], sp_ptr);
841
        sp_ptr += sizeof(abi_ulong);
842
    }
843
#ifdef TARGET_SPARC64
844
    env->canrestore++;
845
    if (env->cleanwin < env->nwindows - 1)
846
        env->cleanwin++;
847
    env->cansave--;
848
#else
849
    env->wim = new_wim;
850
#endif
851
}
852

    
853
static void flush_windows(CPUSPARCState *env)
854
{
855
    int offset, cwp1;
856

    
857
    offset = 1;
858
    for(;;) {
859
        /* if restore would invoke restore_window(), then we can stop */
860
        cwp1 = cpu_cwp_inc(env, env->cwp + offset);
861
#ifndef TARGET_SPARC64
862
        if (env->wim & (1 << cwp1))
863
            break;
864
#else
865
        if (env->canrestore == 0)
866
            break;
867
        env->cansave++;
868
        env->canrestore--;
869
#endif
870
        save_window_offset(env, cwp1);
871
        offset++;
872
    }
873
    cwp1 = cpu_cwp_inc(env, env->cwp + 1);
874
#ifndef TARGET_SPARC64
875
    /* set wim so that restore will reload the registers */
876
    env->wim = 1 << cwp1;
877
#endif
878
#if defined(DEBUG_WIN)
879
    printf("flush_windows: nb=%d\n", offset - 1);
880
#endif
881
}
882

    
883
void cpu_loop (CPUSPARCState *env)
884
{
885
    int trapnr, ret;
886
    target_siginfo_t info;
887

    
888
    while (1) {
889
        trapnr = cpu_sparc_exec (env);
890

    
891
        switch (trapnr) {
892
#ifndef TARGET_SPARC64
893
        case 0x88:
894
        case 0x90:
895
#else
896
        case 0x110:
897
        case 0x16d:
898
#endif
899
            ret = do_syscall (env, env->gregs[1],
900
                              env->regwptr[0], env->regwptr[1],
901
                              env->regwptr[2], env->regwptr[3],
902
                              env->regwptr[4], env->regwptr[5]);
903
            if ((unsigned int)ret >= (unsigned int)(-515)) {
904
#if defined(TARGET_SPARC64) && !defined(TARGET_ABI32)
905
                env->xcc |= PSR_CARRY;
906
#else
907
                env->psr |= PSR_CARRY;
908
#endif
909
                ret = -ret;
910
            } else {
911
#if defined(TARGET_SPARC64) && !defined(TARGET_ABI32)
912
                env->xcc &= ~PSR_CARRY;
913
#else
914
                env->psr &= ~PSR_CARRY;
915
#endif
916
            }
917
            env->regwptr[0] = ret;
918
            /* next instruction */
919
            env->pc = env->npc;
920
            env->npc = env->npc + 4;
921
            break;
922
        case 0x83: /* flush windows */
923
#ifdef TARGET_ABI32
924
        case 0x103:
925
#endif
926
            flush_windows(env);
927
            /* next instruction */
928
            env->pc = env->npc;
929
            env->npc = env->npc + 4;
930
            break;
931
#ifndef TARGET_SPARC64
932
        case TT_WIN_OVF: /* window overflow */
933
            save_window(env);
934
            break;
935
        case TT_WIN_UNF: /* window underflow */
936
            restore_window(env);
937
            break;
938
        case TT_TFAULT:
939
        case TT_DFAULT:
940
            {
941
                info.si_signo = SIGSEGV;
942
                info.si_errno = 0;
943
                /* XXX: check env->error_code */
944
                info.si_code = TARGET_SEGV_MAPERR;
945
                info._sifields._sigfault._addr = env->mmuregs[4];
946
                queue_signal(env, info.si_signo, &info);
947
            }
948
            break;
949
#else
950
        case TT_SPILL: /* window overflow */
951
            save_window(env);
952
            break;
953
        case TT_FILL: /* window underflow */
954
            restore_window(env);
955
            break;
956
        case TT_TFAULT:
957
        case TT_DFAULT:
958
            {
959
                info.si_signo = SIGSEGV;
960
                info.si_errno = 0;
961
                /* XXX: check env->error_code */
962
                info.si_code = TARGET_SEGV_MAPERR;
963
                if (trapnr == TT_DFAULT)
964
                    info._sifields._sigfault._addr = env->dmmuregs[4];
965
                else
966
                    info._sifields._sigfault._addr = env->tsptr->tpc;
967
                queue_signal(env, info.si_signo, &info);
968
            }
969
            break;
970
#ifndef TARGET_ABI32
971
        case 0x16e:
972
            flush_windows(env);
973
            sparc64_get_context(env);
974
            break;
975
        case 0x16f:
976
            flush_windows(env);
977
            sparc64_set_context(env);
978
            break;
979
#endif
980
#endif
981
        case EXCP_INTERRUPT:
982
            /* just indicate that signals should be handled asap */
983
            break;
984
        case EXCP_DEBUG:
985
            {
986
                int sig;
987

    
988
                sig = gdb_handlesig (env, TARGET_SIGTRAP);
989
                if (sig)
990
                  {
991
                    info.si_signo = sig;
992
                    info.si_errno = 0;
993
                    info.si_code = TARGET_TRAP_BRKPT;
994
                    queue_signal(env, info.si_signo, &info);
995
                  }
996
            }
997
            break;
998
        default:
999
            printf ("Unhandled trap: 0x%x\n", trapnr);
1000
            cpu_dump_state(env, stderr, fprintf, 0);
1001
            exit (1);
1002
        }
1003
        process_pending_signals (env);
1004
    }
1005
}
1006

    
1007
#endif
1008

    
1009
#ifdef TARGET_PPC
1010
static inline uint64_t cpu_ppc_get_tb (CPUState *env)
1011
{
1012
    /* TO FIX */
1013
    return 0;
1014
}
1015

    
1016
uint32_t cpu_ppc_load_tbl (CPUState *env)
1017
{
1018
    return cpu_ppc_get_tb(env) & 0xFFFFFFFF;
1019
}
1020

    
1021
uint32_t cpu_ppc_load_tbu (CPUState *env)
1022
{
1023
    return cpu_ppc_get_tb(env) >> 32;
1024
}
1025

    
1026
uint32_t cpu_ppc_load_atbl (CPUState *env)
1027
{
1028
    return cpu_ppc_get_tb(env) & 0xFFFFFFFF;
1029
}
1030

    
1031
uint32_t cpu_ppc_load_atbu (CPUState *env)
1032
{
1033
    return cpu_ppc_get_tb(env) >> 32;
1034
}
1035

    
1036
uint32_t cpu_ppc601_load_rtcu (CPUState *env)
1037
__attribute__ (( alias ("cpu_ppc_load_tbu") ));
1038

    
1039
uint32_t cpu_ppc601_load_rtcl (CPUState *env)
1040
{
1041
    return cpu_ppc_load_tbl(env) & 0x3FFFFF80;
1042
}
1043

    
1044
/* XXX: to be fixed */
1045
int ppc_dcr_read (ppc_dcr_t *dcr_env, int dcrn, target_ulong *valp)
1046
{
1047
    return -1;
1048
}
1049

    
1050
int ppc_dcr_write (ppc_dcr_t *dcr_env, int dcrn, target_ulong val)
1051
{
1052
    return -1;
1053
}
1054

    
1055
#define EXCP_DUMP(env, fmt, args...)                                         \
1056
do {                                                                          \
1057
    fprintf(stderr, fmt , ##args);                                            \
1058
    cpu_dump_state(env, stderr, fprintf, 0);                                  \
1059
    if (loglevel != 0) {                                                      \
1060
        fprintf(logfile, fmt , ##args);                                       \
1061
        cpu_dump_state(env, logfile, fprintf, 0);                             \
1062
    }                                                                         \
1063
} while (0)
1064

    
1065
void cpu_loop(CPUPPCState *env)
1066
{
1067
    target_siginfo_t info;
1068
    int trapnr;
1069
    uint32_t ret;
1070

    
1071
    for(;;) {
1072
        trapnr = cpu_ppc_exec(env);
1073
        switch(trapnr) {
1074
        case POWERPC_EXCP_NONE:
1075
            /* Just go on */
1076
            break;
1077
        case POWERPC_EXCP_CRITICAL: /* Critical input                        */
1078
            cpu_abort(env, "Critical interrupt while in user mode. "
1079
                      "Aborting\n");
1080
            break;
1081
        case POWERPC_EXCP_MCHECK:   /* Machine check exception               */
1082
            cpu_abort(env, "Machine check exception while in user mode. "
1083
                      "Aborting\n");
1084
            break;
1085
        case POWERPC_EXCP_DSI:      /* Data storage exception                */
1086
            EXCP_DUMP(env, "Invalid data memory access: 0x" ADDRX "\n",
1087
                      env->spr[SPR_DAR]);
1088
            /* XXX: check this. Seems bugged */
1089
            switch (env->error_code & 0xFF000000) {
1090
            case 0x40000000:
1091
                info.si_signo = TARGET_SIGSEGV;
1092
                info.si_errno = 0;
1093
                info.si_code = TARGET_SEGV_MAPERR;
1094
                break;
1095
            case 0x04000000:
1096
                info.si_signo = TARGET_SIGILL;
1097
                info.si_errno = 0;
1098
                info.si_code = TARGET_ILL_ILLADR;
1099
                break;
1100
            case 0x08000000:
1101
                info.si_signo = TARGET_SIGSEGV;
1102
                info.si_errno = 0;
1103
                info.si_code = TARGET_SEGV_ACCERR;
1104
                break;
1105
            default:
1106
                /* Let's send a regular segfault... */
1107
                EXCP_DUMP(env, "Invalid segfault errno (%02x)\n",
1108
                          env->error_code);
1109
                info.si_signo = TARGET_SIGSEGV;
1110
                info.si_errno = 0;
1111
                info.si_code = TARGET_SEGV_MAPERR;
1112
                break;
1113
            }
1114
            info._sifields._sigfault._addr = env->nip;
1115
            queue_signal(env, info.si_signo, &info);
1116
            break;
1117
        case POWERPC_EXCP_ISI:      /* Instruction storage exception         */
1118
            EXCP_DUMP(env, "Invalid instruction fetch: 0x\n" ADDRX "\n",
1119
                      env->spr[SPR_SRR0]);
1120
            /* XXX: check this */
1121
            switch (env->error_code & 0xFF000000) {
1122
            case 0x40000000:
1123
                info.si_signo = TARGET_SIGSEGV;
1124
            info.si_errno = 0;
1125
                info.si_code = TARGET_SEGV_MAPERR;
1126
                break;
1127
            case 0x10000000:
1128
            case 0x08000000:
1129
                info.si_signo = TARGET_SIGSEGV;
1130
                info.si_errno = 0;
1131
                info.si_code = TARGET_SEGV_ACCERR;
1132
                break;
1133
            default:
1134
                /* Let's send a regular segfault... */
1135
                EXCP_DUMP(env, "Invalid segfault errno (%02x)\n",
1136
                          env->error_code);
1137
                info.si_signo = TARGET_SIGSEGV;
1138
                info.si_errno = 0;
1139
                info.si_code = TARGET_SEGV_MAPERR;
1140
                break;
1141
            }
1142
            info._sifields._sigfault._addr = env->nip - 4;
1143
            queue_signal(env, info.si_signo, &info);
1144
            break;
1145
        case POWERPC_EXCP_EXTERNAL: /* External input                        */
1146
            cpu_abort(env, "External interrupt while in user mode. "
1147
                      "Aborting\n");
1148
            break;
1149
        case POWERPC_EXCP_ALIGN:    /* Alignment exception                   */
1150
            EXCP_DUMP(env, "Unaligned memory access\n");
1151
            /* XXX: check this */
1152
            info.si_signo = TARGET_SIGBUS;
1153
            info.si_errno = 0;
1154
            info.si_code = TARGET_BUS_ADRALN;
1155
            info._sifields._sigfault._addr = env->nip - 4;
1156
            queue_signal(env, info.si_signo, &info);
1157
            break;
1158
        case POWERPC_EXCP_PROGRAM:  /* Program exception                     */
1159
            /* XXX: check this */
1160
            switch (env->error_code & ~0xF) {
1161
            case POWERPC_EXCP_FP:
1162
                EXCP_DUMP(env, "Floating point program exception\n");
1163
                info.si_signo = TARGET_SIGFPE;
1164
                info.si_errno = 0;
1165
                switch (env->error_code & 0xF) {
1166
                case POWERPC_EXCP_FP_OX:
1167
                    info.si_code = TARGET_FPE_FLTOVF;
1168
                    break;
1169
                case POWERPC_EXCP_FP_UX:
1170
                    info.si_code = TARGET_FPE_FLTUND;
1171
                    break;
1172
                case POWERPC_EXCP_FP_ZX:
1173
                case POWERPC_EXCP_FP_VXZDZ:
1174
                    info.si_code = TARGET_FPE_FLTDIV;
1175
                    break;
1176
                case POWERPC_EXCP_FP_XX:
1177
                    info.si_code = TARGET_FPE_FLTRES;
1178
                    break;
1179
                case POWERPC_EXCP_FP_VXSOFT:
1180
                    info.si_code = TARGET_FPE_FLTINV;
1181
                    break;
1182
                case POWERPC_EXCP_FP_VXSNAN:
1183
                case POWERPC_EXCP_FP_VXISI:
1184
                case POWERPC_EXCP_FP_VXIDI:
1185
                case POWERPC_EXCP_FP_VXIMZ:
1186
                case POWERPC_EXCP_FP_VXVC:
1187
                case POWERPC_EXCP_FP_VXSQRT:
1188
                case POWERPC_EXCP_FP_VXCVI:
1189
                    info.si_code = TARGET_FPE_FLTSUB;
1190
                    break;
1191
                default:
1192
                    EXCP_DUMP(env, "Unknown floating point exception (%02x)\n",
1193
                              env->error_code);
1194
                    break;
1195
                }
1196
                break;
1197
            case POWERPC_EXCP_INVAL:
1198
                EXCP_DUMP(env, "Invalid instruction\n");
1199
                info.si_signo = TARGET_SIGILL;
1200
                info.si_errno = 0;
1201
                switch (env->error_code & 0xF) {
1202
                case POWERPC_EXCP_INVAL_INVAL:
1203
                    info.si_code = TARGET_ILL_ILLOPC;
1204
                    break;
1205
                case POWERPC_EXCP_INVAL_LSWX:
1206
                    info.si_code = TARGET_ILL_ILLOPN;
1207
                    break;
1208
                case POWERPC_EXCP_INVAL_SPR:
1209
                    info.si_code = TARGET_ILL_PRVREG;
1210
                    break;
1211
                case POWERPC_EXCP_INVAL_FP:
1212
                    info.si_code = TARGET_ILL_COPROC;
1213
                    break;
1214
                default:
1215
                    EXCP_DUMP(env, "Unknown invalid operation (%02x)\n",
1216
                              env->error_code & 0xF);
1217
                    info.si_code = TARGET_ILL_ILLADR;
1218
                    break;
1219
                }
1220
                break;
1221
            case POWERPC_EXCP_PRIV:
1222
                EXCP_DUMP(env, "Privilege violation\n");
1223
                info.si_signo = TARGET_SIGILL;
1224
                info.si_errno = 0;
1225
                switch (env->error_code & 0xF) {
1226
                case POWERPC_EXCP_PRIV_OPC:
1227
                    info.si_code = TARGET_ILL_PRVOPC;
1228
                    break;
1229
                case POWERPC_EXCP_PRIV_REG:
1230
                    info.si_code = TARGET_ILL_PRVREG;
1231
                    break;
1232
                default:
1233
                    EXCP_DUMP(env, "Unknown privilege violation (%02x)\n",
1234
                              env->error_code & 0xF);
1235
                    info.si_code = TARGET_ILL_PRVOPC;
1236
                    break;
1237
                }
1238
                break;
1239
            case POWERPC_EXCP_TRAP:
1240
                cpu_abort(env, "Tried to call a TRAP\n");
1241
                break;
1242
            default:
1243
                /* Should not happen ! */
1244
                cpu_abort(env, "Unknown program exception (%02x)\n",
1245
                          env->error_code);
1246
                break;
1247
            }
1248
            info._sifields._sigfault._addr = env->nip - 4;
1249
            queue_signal(env, info.si_signo, &info);
1250
            break;
1251
        case POWERPC_EXCP_FPU:      /* Floating-point unavailable exception  */
1252
            EXCP_DUMP(env, "No floating point allowed\n");
1253
            info.si_signo = TARGET_SIGILL;
1254
            info.si_errno = 0;
1255
            info.si_code = TARGET_ILL_COPROC;
1256
            info._sifields._sigfault._addr = env->nip - 4;
1257
            queue_signal(env, info.si_signo, &info);
1258
            break;
1259
        case POWERPC_EXCP_SYSCALL:  /* System call exception                 */
1260
            cpu_abort(env, "Syscall exception while in user mode. "
1261
                      "Aborting\n");
1262
            break;
1263
        case POWERPC_EXCP_APU:      /* Auxiliary processor unavailable       */
1264
            EXCP_DUMP(env, "No APU instruction allowed\n");
1265
            info.si_signo = TARGET_SIGILL;
1266
            info.si_errno = 0;
1267
            info.si_code = TARGET_ILL_COPROC;
1268
            info._sifields._sigfault._addr = env->nip - 4;
1269
            queue_signal(env, info.si_signo, &info);
1270
            break;
1271
        case POWERPC_EXCP_DECR:     /* Decrementer exception                 */
1272
            cpu_abort(env, "Decrementer interrupt while in user mode. "
1273
                      "Aborting\n");
1274
            break;
1275
        case POWERPC_EXCP_FIT:      /* Fixed-interval timer interrupt        */
1276
            cpu_abort(env, "Fix interval timer interrupt while in user mode. "
1277
                      "Aborting\n");
1278
            break;
1279
        case POWERPC_EXCP_WDT:      /* Watchdog timer interrupt              */
1280
            cpu_abort(env, "Watchdog timer interrupt while in user mode. "
1281
                      "Aborting\n");
1282
            break;
1283
        case POWERPC_EXCP_DTLB:     /* Data TLB error                        */
1284
            cpu_abort(env, "Data TLB exception while in user mode. "
1285
                      "Aborting\n");
1286
            break;
1287
        case POWERPC_EXCP_ITLB:     /* Instruction TLB error                 */
1288
            cpu_abort(env, "Instruction TLB exception while in user mode. "
1289
                      "Aborting\n");
1290
            break;
1291
        case POWERPC_EXCP_DEBUG:    /* Debug interrupt                       */
1292
            /* XXX: check this */
1293
            {
1294
                int sig;
1295

    
1296
                sig = gdb_handlesig(env, TARGET_SIGTRAP);
1297
                if (sig) {
1298
                    info.si_signo = sig;
1299
                    info.si_errno = 0;
1300
                    info.si_code = TARGET_TRAP_BRKPT;
1301
                    queue_signal(env, info.si_signo, &info);
1302
                  }
1303
            }
1304
            break;
1305
        case POWERPC_EXCP_SPEU:     /* SPE/embedded floating-point unavail.  */
1306
            EXCP_DUMP(env, "No SPE/floating-point instruction allowed\n");
1307
            info.si_signo = TARGET_SIGILL;
1308
            info.si_errno = 0;
1309
            info.si_code = TARGET_ILL_COPROC;
1310
            info._sifields._sigfault._addr = env->nip - 4;
1311
            queue_signal(env, info.si_signo, &info);
1312
            break;
1313
        case POWERPC_EXCP_EFPDI:    /* Embedded floating-point data IRQ      */
1314
            cpu_abort(env, "Embedded floating-point data IRQ not handled\n");
1315
            break;
1316
        case POWERPC_EXCP_EFPRI:    /* Embedded floating-point round IRQ     */
1317
            cpu_abort(env, "Embedded floating-point round IRQ not handled\n");
1318
            break;
1319
        case POWERPC_EXCP_EPERFM:   /* Embedded performance monitor IRQ      */
1320
            cpu_abort(env, "Performance monitor exception not handled\n");
1321
            break;
1322
        case POWERPC_EXCP_DOORI:    /* Embedded doorbell interrupt           */
1323
            cpu_abort(env, "Doorbell interrupt while in user mode. "
1324
                       "Aborting\n");
1325
            break;
1326
        case POWERPC_EXCP_DOORCI:   /* Embedded doorbell critical interrupt  */
1327
            cpu_abort(env, "Doorbell critical interrupt while in user mode. "
1328
                      "Aborting\n");
1329
            break;
1330
        case POWERPC_EXCP_RESET:    /* System reset exception                */
1331
            cpu_abort(env, "Reset interrupt while in user mode. "
1332
                      "Aborting\n");
1333
            break;
1334
        case POWERPC_EXCP_DSEG:     /* Data segment exception                */
1335
            cpu_abort(env, "Data segment exception while in user mode. "
1336
                      "Aborting\n");
1337
            break;
1338
        case POWERPC_EXCP_ISEG:     /* Instruction segment exception         */
1339
            cpu_abort(env, "Instruction segment exception "
1340
                      "while in user mode. Aborting\n");
1341
            break;
1342
        /* PowerPC 64 with hypervisor mode support */
1343
        case POWERPC_EXCP_HDECR:    /* Hypervisor decrementer exception      */
1344
            cpu_abort(env, "Hypervisor decrementer interrupt "
1345
                      "while in user mode. Aborting\n");
1346
            break;
1347
        case POWERPC_EXCP_TRACE:    /* Trace exception                       */
1348
            /* Nothing to do:
1349
             * we use this exception to emulate step-by-step execution mode.
1350
             */
1351
            break;
1352
        /* PowerPC 64 with hypervisor mode support */
1353
        case POWERPC_EXCP_HDSI:     /* Hypervisor data storage exception     */
1354
            cpu_abort(env, "Hypervisor data storage exception "
1355
                      "while in user mode. Aborting\n");
1356
            break;
1357
        case POWERPC_EXCP_HISI:     /* Hypervisor instruction storage excp   */
1358
            cpu_abort(env, "Hypervisor instruction storage exception "
1359
                      "while in user mode. Aborting\n");
1360
            break;
1361
        case POWERPC_EXCP_HDSEG:    /* Hypervisor data segment exception     */
1362
            cpu_abort(env, "Hypervisor data segment exception "
1363
                      "while in user mode. Aborting\n");
1364
            break;
1365
        case POWERPC_EXCP_HISEG:    /* Hypervisor instruction segment excp   */
1366
            cpu_abort(env, "Hypervisor instruction segment exception "
1367
                      "while in user mode. Aborting\n");
1368
            break;
1369
        case POWERPC_EXCP_VPU:      /* Vector unavailable exception          */
1370
            EXCP_DUMP(env, "No Altivec instructions allowed\n");
1371
            info.si_signo = TARGET_SIGILL;
1372
            info.si_errno = 0;
1373
            info.si_code = TARGET_ILL_COPROC;
1374
            info._sifields._sigfault._addr = env->nip - 4;
1375
            queue_signal(env, info.si_signo, &info);
1376
            break;
1377
        case POWERPC_EXCP_PIT:      /* Programmable interval timer IRQ       */
1378
            cpu_abort(env, "Programable interval timer interrupt "
1379
                      "while in user mode. Aborting\n");
1380
            break;
1381
        case POWERPC_EXCP_IO:       /* IO error exception                    */
1382
            cpu_abort(env, "IO error exception while in user mode. "
1383
                      "Aborting\n");
1384
            break;
1385
        case POWERPC_EXCP_RUNM:     /* Run mode exception                    */
1386
            cpu_abort(env, "Run mode exception while in user mode. "
1387
                      "Aborting\n");
1388
            break;
1389
        case POWERPC_EXCP_EMUL:     /* Emulation trap exception              */
1390
            cpu_abort(env, "Emulation trap exception not handled\n");
1391
            break;
1392
        case POWERPC_EXCP_IFTLB:    /* Instruction fetch TLB error           */
1393
            cpu_abort(env, "Instruction fetch TLB exception "
1394
                      "while in user-mode. Aborting");
1395
            break;
1396
        case POWERPC_EXCP_DLTLB:    /* Data load TLB miss                    */
1397
            cpu_abort(env, "Data load TLB exception while in user-mode. "
1398
                      "Aborting");
1399
            break;
1400
        case POWERPC_EXCP_DSTLB:    /* Data store TLB miss                   */
1401
            cpu_abort(env, "Data store TLB exception while in user-mode. "
1402
                      "Aborting");
1403
            break;
1404
        case POWERPC_EXCP_FPA:      /* Floating-point assist exception       */
1405
            cpu_abort(env, "Floating-point assist exception not handled\n");
1406
            break;
1407
        case POWERPC_EXCP_IABR:     /* Instruction address breakpoint        */
1408
            cpu_abort(env, "Instruction address breakpoint exception "
1409
                      "not handled\n");
1410
            break;
1411
        case POWERPC_EXCP_SMI:      /* System management interrupt           */
1412
            cpu_abort(env, "System management interrupt while in user mode. "
1413
                      "Aborting\n");
1414
            break;
1415
        case POWERPC_EXCP_THERM:    /* Thermal interrupt                     */
1416
            cpu_abort(env, "Thermal interrupt interrupt while in user mode. "
1417
                      "Aborting\n");
1418
            break;
1419
        case POWERPC_EXCP_PERFM:   /* Embedded performance monitor IRQ      */
1420
            cpu_abort(env, "Performance monitor exception not handled\n");
1421
            break;
1422
        case POWERPC_EXCP_VPUA:     /* Vector assist exception               */
1423
            cpu_abort(env, "Vector assist exception not handled\n");
1424
            break;
1425
        case POWERPC_EXCP_SOFTP:    /* Soft patch exception                  */
1426
            cpu_abort(env, "Soft patch exception not handled\n");
1427
            break;
1428
        case POWERPC_EXCP_MAINT:    /* Maintenance exception                 */
1429
            cpu_abort(env, "Maintenance exception while in user mode. "
1430
                      "Aborting\n");
1431
            break;
1432
        case POWERPC_EXCP_STOP:     /* stop translation                      */
1433
            /* We did invalidate the instruction cache. Go on */
1434
            break;
1435
        case POWERPC_EXCP_BRANCH:   /* branch instruction:                   */
1436
            /* We just stopped because of a branch. Go on */
1437
            break;
1438
        case POWERPC_EXCP_SYSCALL_USER:
1439
            /* system call in user-mode emulation */
1440
            /* WARNING:
1441
             * PPC ABI uses overflow flag in cr0 to signal an error
1442
             * in syscalls.
1443
             */
1444
#if 0
1445
            printf("syscall %d 0x%08x 0x%08x 0x%08x 0x%08x\n", env->gpr[0],
1446
                   env->gpr[3], env->gpr[4], env->gpr[5], env->gpr[6]);
1447
#endif
1448
            env->crf[0] &= ~0x1;
1449
            ret = do_syscall(env, env->gpr[0], env->gpr[3], env->gpr[4],
1450
                             env->gpr[5], env->gpr[6], env->gpr[7],
1451
                             env->gpr[8]);
1452
            if (ret > (uint32_t)(-515)) {
1453
                env->crf[0] |= 0x1;
1454
                ret = -ret;
1455
            }
1456
            env->gpr[3] = ret;
1457
#if 0
1458
            printf("syscall returned 0x%08x (%d)\n", ret, ret);
1459
#endif
1460
            break;
1461
        case EXCP_INTERRUPT:
1462
            /* just indicate that signals should be handled asap */
1463
            break;
1464
        default:
1465
            cpu_abort(env, "Unknown exception 0x%d. Aborting\n", trapnr);
1466
            break;
1467
        }
1468
        process_pending_signals(env);
1469
    }
1470
}
1471
#endif
1472

    
1473
#ifdef TARGET_MIPS
1474

    
1475
#define MIPS_SYS(name, args) args,
1476

    
1477
static const uint8_t mips_syscall_args[] = {
1478
        MIPS_SYS(sys_syscall        , 0)        /* 4000 */
1479
        MIPS_SYS(sys_exit        , 1)
1480
        MIPS_SYS(sys_fork        , 0)
1481
        MIPS_SYS(sys_read        , 3)
1482
        MIPS_SYS(sys_write        , 3)
1483
        MIPS_SYS(sys_open        , 3)        /* 4005 */
1484
        MIPS_SYS(sys_close        , 1)
1485
        MIPS_SYS(sys_waitpid        , 3)
1486
        MIPS_SYS(sys_creat        , 2)
1487
        MIPS_SYS(sys_link        , 2)
1488
        MIPS_SYS(sys_unlink        , 1)        /* 4010 */
1489
        MIPS_SYS(sys_execve        , 0)
1490
        MIPS_SYS(sys_chdir        , 1)
1491
        MIPS_SYS(sys_time        , 1)
1492
        MIPS_SYS(sys_mknod        , 3)
1493
        MIPS_SYS(sys_chmod        , 2)        /* 4015 */
1494
        MIPS_SYS(sys_lchown        , 3)
1495
        MIPS_SYS(sys_ni_syscall        , 0)
1496
        MIPS_SYS(sys_ni_syscall        , 0)        /* was sys_stat */
1497
        MIPS_SYS(sys_lseek        , 3)
1498
        MIPS_SYS(sys_getpid        , 0)        /* 4020 */
1499
        MIPS_SYS(sys_mount        , 5)
1500
        MIPS_SYS(sys_oldumount        , 1)
1501
        MIPS_SYS(sys_setuid        , 1)
1502
        MIPS_SYS(sys_getuid        , 0)
1503
        MIPS_SYS(sys_stime        , 1)        /* 4025 */
1504
        MIPS_SYS(sys_ptrace        , 4)
1505
        MIPS_SYS(sys_alarm        , 1)
1506
        MIPS_SYS(sys_ni_syscall        , 0)        /* was sys_fstat */
1507
        MIPS_SYS(sys_pause        , 0)
1508
        MIPS_SYS(sys_utime        , 2)        /* 4030 */
1509
        MIPS_SYS(sys_ni_syscall        , 0)
1510
        MIPS_SYS(sys_ni_syscall        , 0)
1511
        MIPS_SYS(sys_access        , 2)
1512
        MIPS_SYS(sys_nice        , 1)
1513
        MIPS_SYS(sys_ni_syscall        , 0)        /* 4035 */
1514
        MIPS_SYS(sys_sync        , 0)
1515
        MIPS_SYS(sys_kill        , 2)
1516
        MIPS_SYS(sys_rename        , 2)
1517
        MIPS_SYS(sys_mkdir        , 2)
1518
        MIPS_SYS(sys_rmdir        , 1)        /* 4040 */
1519
        MIPS_SYS(sys_dup                , 1)
1520
        MIPS_SYS(sys_pipe        , 0)
1521
        MIPS_SYS(sys_times        , 1)
1522
        MIPS_SYS(sys_ni_syscall        , 0)
1523
        MIPS_SYS(sys_brk                , 1)        /* 4045 */
1524
        MIPS_SYS(sys_setgid        , 1)
1525
        MIPS_SYS(sys_getgid        , 0)
1526
        MIPS_SYS(sys_ni_syscall        , 0)        /* was signal(2) */
1527
        MIPS_SYS(sys_geteuid        , 0)
1528
        MIPS_SYS(sys_getegid        , 0)        /* 4050 */
1529
        MIPS_SYS(sys_acct        , 0)
1530
        MIPS_SYS(sys_umount        , 2)
1531
        MIPS_SYS(sys_ni_syscall        , 0)
1532
        MIPS_SYS(sys_ioctl        , 3)
1533
        MIPS_SYS(sys_fcntl        , 3)        /* 4055 */
1534
        MIPS_SYS(sys_ni_syscall        , 2)
1535
        MIPS_SYS(sys_setpgid        , 2)
1536
        MIPS_SYS(sys_ni_syscall        , 0)
1537
        MIPS_SYS(sys_olduname        , 1)
1538
        MIPS_SYS(sys_umask        , 1)        /* 4060 */
1539
        MIPS_SYS(sys_chroot        , 1)
1540
        MIPS_SYS(sys_ustat        , 2)
1541
        MIPS_SYS(sys_dup2        , 2)
1542
        MIPS_SYS(sys_getppid        , 0)
1543
        MIPS_SYS(sys_getpgrp        , 0)        /* 4065 */
1544
        MIPS_SYS(sys_setsid        , 0)
1545
        MIPS_SYS(sys_sigaction        , 3)
1546
        MIPS_SYS(sys_sgetmask        , 0)
1547
        MIPS_SYS(sys_ssetmask        , 1)
1548
        MIPS_SYS(sys_setreuid        , 2)        /* 4070 */
1549
        MIPS_SYS(sys_setregid        , 2)
1550
        MIPS_SYS(sys_sigsuspend        , 0)
1551
        MIPS_SYS(sys_sigpending        , 1)
1552
        MIPS_SYS(sys_sethostname        , 2)
1553
        MIPS_SYS(sys_setrlimit        , 2)        /* 4075 */
1554
        MIPS_SYS(sys_getrlimit        , 2)
1555
        MIPS_SYS(sys_getrusage        , 2)
1556
        MIPS_SYS(sys_gettimeofday, 2)
1557
        MIPS_SYS(sys_settimeofday, 2)
1558
        MIPS_SYS(sys_getgroups        , 2)        /* 4080 */
1559
        MIPS_SYS(sys_setgroups        , 2)
1560
        MIPS_SYS(sys_ni_syscall        , 0)        /* old_select */
1561
        MIPS_SYS(sys_symlink        , 2)
1562
        MIPS_SYS(sys_ni_syscall        , 0)        /* was sys_lstat */
1563
        MIPS_SYS(sys_readlink        , 3)        /* 4085 */
1564
        MIPS_SYS(sys_uselib        , 1)
1565
        MIPS_SYS(sys_swapon        , 2)
1566
        MIPS_SYS(sys_reboot        , 3)
1567
        MIPS_SYS(old_readdir        , 3)
1568
        MIPS_SYS(old_mmap        , 6)        /* 4090 */
1569
        MIPS_SYS(sys_munmap        , 2)
1570
        MIPS_SYS(sys_truncate        , 2)
1571
        MIPS_SYS(sys_ftruncate        , 2)
1572
        MIPS_SYS(sys_fchmod        , 2)
1573
        MIPS_SYS(sys_fchown        , 3)        /* 4095 */
1574
        MIPS_SYS(sys_getpriority        , 2)
1575
        MIPS_SYS(sys_setpriority        , 3)
1576
        MIPS_SYS(sys_ni_syscall        , 0)
1577
        MIPS_SYS(sys_statfs        , 2)
1578
        MIPS_SYS(sys_fstatfs        , 2)        /* 4100 */
1579
        MIPS_SYS(sys_ni_syscall        , 0)        /* was ioperm(2) */
1580
        MIPS_SYS(sys_socketcall        , 2)
1581
        MIPS_SYS(sys_syslog        , 3)
1582
        MIPS_SYS(sys_setitimer        , 3)
1583
        MIPS_SYS(sys_getitimer        , 2)        /* 4105 */
1584
        MIPS_SYS(sys_newstat        , 2)
1585
        MIPS_SYS(sys_newlstat        , 2)
1586
        MIPS_SYS(sys_newfstat        , 2)
1587
        MIPS_SYS(sys_uname        , 1)
1588
        MIPS_SYS(sys_ni_syscall        , 0)        /* 4110 was iopl(2) */
1589
        MIPS_SYS(sys_vhangup        , 0)
1590
        MIPS_SYS(sys_ni_syscall        , 0)        /* was sys_idle() */
1591
        MIPS_SYS(sys_ni_syscall        , 0)        /* was sys_vm86 */
1592
        MIPS_SYS(sys_wait4        , 4)
1593
        MIPS_SYS(sys_swapoff        , 1)        /* 4115 */
1594
        MIPS_SYS(sys_sysinfo        , 1)
1595
        MIPS_SYS(sys_ipc                , 6)
1596
        MIPS_SYS(sys_fsync        , 1)
1597
        MIPS_SYS(sys_sigreturn        , 0)
1598
        MIPS_SYS(sys_clone        , 0)        /* 4120 */
1599
        MIPS_SYS(sys_setdomainname, 2)
1600
        MIPS_SYS(sys_newuname        , 1)
1601
        MIPS_SYS(sys_ni_syscall        , 0)        /* sys_modify_ldt */
1602
        MIPS_SYS(sys_adjtimex        , 1)
1603
        MIPS_SYS(sys_mprotect        , 3)        /* 4125 */
1604
        MIPS_SYS(sys_sigprocmask        , 3)
1605
        MIPS_SYS(sys_ni_syscall        , 0)        /* was create_module */
1606
        MIPS_SYS(sys_init_module        , 5)
1607
        MIPS_SYS(sys_delete_module, 1)
1608
        MIPS_SYS(sys_ni_syscall        , 0)        /* 4130        was get_kernel_syms */
1609
        MIPS_SYS(sys_quotactl        , 0)
1610
        MIPS_SYS(sys_getpgid        , 1)
1611
        MIPS_SYS(sys_fchdir        , 1)
1612
        MIPS_SYS(sys_bdflush        , 2)
1613
        MIPS_SYS(sys_sysfs        , 3)        /* 4135 */
1614
        MIPS_SYS(sys_personality        , 1)
1615
        MIPS_SYS(sys_ni_syscall        , 0)        /* for afs_syscall */
1616
        MIPS_SYS(sys_setfsuid        , 1)
1617
        MIPS_SYS(sys_setfsgid        , 1)
1618
        MIPS_SYS(sys_llseek        , 5)        /* 4140 */
1619
        MIPS_SYS(sys_getdents        , 3)
1620
        MIPS_SYS(sys_select        , 5)
1621
        MIPS_SYS(sys_flock        , 2)
1622
        MIPS_SYS(sys_msync        , 3)
1623
        MIPS_SYS(sys_readv        , 3)        /* 4145 */
1624
        MIPS_SYS(sys_writev        , 3)
1625
        MIPS_SYS(sys_cacheflush        , 3)
1626
        MIPS_SYS(sys_cachectl        , 3)
1627
        MIPS_SYS(sys_sysmips        , 4)
1628
        MIPS_SYS(sys_ni_syscall        , 0)        /* 4150 */
1629
        MIPS_SYS(sys_getsid        , 1)
1630
        MIPS_SYS(sys_fdatasync        , 0)
1631
        MIPS_SYS(sys_sysctl        , 1)
1632
        MIPS_SYS(sys_mlock        , 2)
1633
        MIPS_SYS(sys_munlock        , 2)        /* 4155 */
1634
        MIPS_SYS(sys_mlockall        , 1)
1635
        MIPS_SYS(sys_munlockall        , 0)
1636
        MIPS_SYS(sys_sched_setparam, 2)
1637
        MIPS_SYS(sys_sched_getparam, 2)
1638
        MIPS_SYS(sys_sched_setscheduler, 3)        /* 4160 */
1639
        MIPS_SYS(sys_sched_getscheduler, 1)
1640
        MIPS_SYS(sys_sched_yield        , 0)
1641
        MIPS_SYS(sys_sched_get_priority_max, 1)
1642
        MIPS_SYS(sys_sched_get_priority_min, 1)
1643
        MIPS_SYS(sys_sched_rr_get_interval, 2)        /* 4165 */
1644
        MIPS_SYS(sys_nanosleep,        2)
1645
        MIPS_SYS(sys_mremap        , 4)
1646
        MIPS_SYS(sys_accept        , 3)
1647
        MIPS_SYS(sys_bind        , 3)
1648
        MIPS_SYS(sys_connect        , 3)        /* 4170 */
1649
        MIPS_SYS(sys_getpeername        , 3)
1650
        MIPS_SYS(sys_getsockname        , 3)
1651
        MIPS_SYS(sys_getsockopt        , 5)
1652
        MIPS_SYS(sys_listen        , 2)
1653
        MIPS_SYS(sys_recv        , 4)        /* 4175 */
1654
        MIPS_SYS(sys_recvfrom        , 6)
1655
        MIPS_SYS(sys_recvmsg        , 3)
1656
        MIPS_SYS(sys_send        , 4)
1657
        MIPS_SYS(sys_sendmsg        , 3)
1658
        MIPS_SYS(sys_sendto        , 6)        /* 4180 */
1659
        MIPS_SYS(sys_setsockopt        , 5)
1660
        MIPS_SYS(sys_shutdown        , 2)
1661
        MIPS_SYS(sys_socket        , 3)
1662
        MIPS_SYS(sys_socketpair        , 4)
1663
        MIPS_SYS(sys_setresuid        , 3)        /* 4185 */
1664
        MIPS_SYS(sys_getresuid        , 3)
1665
        MIPS_SYS(sys_ni_syscall        , 0)        /* was sys_query_module */
1666
        MIPS_SYS(sys_poll        , 3)
1667
        MIPS_SYS(sys_nfsservctl        , 3)
1668
        MIPS_SYS(sys_setresgid        , 3)        /* 4190 */
1669
        MIPS_SYS(sys_getresgid        , 3)
1670
        MIPS_SYS(sys_prctl        , 5)
1671
        MIPS_SYS(sys_rt_sigreturn, 0)
1672
        MIPS_SYS(sys_rt_sigaction, 4)
1673
        MIPS_SYS(sys_rt_sigprocmask, 4)        /* 4195 */
1674
        MIPS_SYS(sys_rt_sigpending, 2)
1675
        MIPS_SYS(sys_rt_sigtimedwait, 4)
1676
        MIPS_SYS(sys_rt_sigqueueinfo, 3)
1677
        MIPS_SYS(sys_rt_sigsuspend, 0)
1678
        MIPS_SYS(sys_pread64        , 6)        /* 4200 */
1679
        MIPS_SYS(sys_pwrite64        , 6)
1680
        MIPS_SYS(sys_chown        , 3)
1681
        MIPS_SYS(sys_getcwd        , 2)
1682
        MIPS_SYS(sys_capget        , 2)
1683
        MIPS_SYS(sys_capset        , 2)        /* 4205 */
1684
        MIPS_SYS(sys_sigaltstack        , 0)
1685
        MIPS_SYS(sys_sendfile        , 4)
1686
        MIPS_SYS(sys_ni_syscall        , 0)
1687
        MIPS_SYS(sys_ni_syscall        , 0)
1688
        MIPS_SYS(sys_mmap2        , 6)        /* 4210 */
1689
        MIPS_SYS(sys_truncate64        , 4)
1690
        MIPS_SYS(sys_ftruncate64        , 4)
1691
        MIPS_SYS(sys_stat64        , 2)
1692
        MIPS_SYS(sys_lstat64        , 2)
1693
        MIPS_SYS(sys_fstat64        , 2)        /* 4215 */
1694
        MIPS_SYS(sys_pivot_root        , 2)
1695
        MIPS_SYS(sys_mincore        , 3)
1696
        MIPS_SYS(sys_madvise        , 3)
1697
        MIPS_SYS(sys_getdents64        , 3)
1698
        MIPS_SYS(sys_fcntl64        , 3)        /* 4220 */
1699
        MIPS_SYS(sys_ni_syscall        , 0)
1700
        MIPS_SYS(sys_gettid        , 0)
1701
        MIPS_SYS(sys_readahead        , 5)
1702
        MIPS_SYS(sys_setxattr        , 5)
1703
        MIPS_SYS(sys_lsetxattr        , 5)        /* 4225 */
1704
        MIPS_SYS(sys_fsetxattr        , 5)
1705
        MIPS_SYS(sys_getxattr        , 4)
1706
        MIPS_SYS(sys_lgetxattr        , 4)
1707
        MIPS_SYS(sys_fgetxattr        , 4)
1708
        MIPS_SYS(sys_listxattr        , 3)        /* 4230 */
1709
        MIPS_SYS(sys_llistxattr        , 3)
1710
        MIPS_SYS(sys_flistxattr        , 3)
1711
        MIPS_SYS(sys_removexattr        , 2)
1712
        MIPS_SYS(sys_lremovexattr, 2)
1713
        MIPS_SYS(sys_fremovexattr, 2)        /* 4235 */
1714
        MIPS_SYS(sys_tkill        , 2)
1715
        MIPS_SYS(sys_sendfile64        , 5)
1716
        MIPS_SYS(sys_futex        , 2)
1717
        MIPS_SYS(sys_sched_setaffinity, 3)
1718
        MIPS_SYS(sys_sched_getaffinity, 3)        /* 4240 */
1719
        MIPS_SYS(sys_io_setup        , 2)
1720
        MIPS_SYS(sys_io_destroy        , 1)
1721
        MIPS_SYS(sys_io_getevents, 5)
1722
        MIPS_SYS(sys_io_submit        , 3)
1723
        MIPS_SYS(sys_io_cancel        , 3)        /* 4245 */
1724
        MIPS_SYS(sys_exit_group        , 1)
1725
        MIPS_SYS(sys_lookup_dcookie, 3)
1726
        MIPS_SYS(sys_epoll_create, 1)
1727
        MIPS_SYS(sys_epoll_ctl        , 4)
1728
        MIPS_SYS(sys_epoll_wait        , 3)        /* 4250 */
1729
        MIPS_SYS(sys_remap_file_pages, 5)
1730
        MIPS_SYS(sys_set_tid_address, 1)
1731
        MIPS_SYS(sys_restart_syscall, 0)
1732
        MIPS_SYS(sys_fadvise64_64, 7)
1733
        MIPS_SYS(sys_statfs64        , 3)        /* 4255 */
1734
        MIPS_SYS(sys_fstatfs64        , 2)
1735
        MIPS_SYS(sys_timer_create, 3)
1736
        MIPS_SYS(sys_timer_settime, 4)
1737
        MIPS_SYS(sys_timer_gettime, 2)
1738
        MIPS_SYS(sys_timer_getoverrun, 1)        /* 4260 */
1739
        MIPS_SYS(sys_timer_delete, 1)
1740
        MIPS_SYS(sys_clock_settime, 2)
1741
        MIPS_SYS(sys_clock_gettime, 2)
1742
        MIPS_SYS(sys_clock_getres, 2)
1743
        MIPS_SYS(sys_clock_nanosleep, 4)        /* 4265 */
1744
        MIPS_SYS(sys_tgkill        , 3)
1745
        MIPS_SYS(sys_utimes        , 2)
1746
        MIPS_SYS(sys_mbind        , 4)
1747
        MIPS_SYS(sys_ni_syscall        , 0)        /* sys_get_mempolicy */
1748
        MIPS_SYS(sys_ni_syscall        , 0)        /* 4270 sys_set_mempolicy */
1749
        MIPS_SYS(sys_mq_open        , 4)
1750
        MIPS_SYS(sys_mq_unlink        , 1)
1751
        MIPS_SYS(sys_mq_timedsend, 5)
1752
        MIPS_SYS(sys_mq_timedreceive, 5)
1753
        MIPS_SYS(sys_mq_notify        , 2)        /* 4275 */
1754
        MIPS_SYS(sys_mq_getsetattr, 3)
1755
        MIPS_SYS(sys_ni_syscall        , 0)        /* sys_vserver */
1756
        MIPS_SYS(sys_waitid        , 4)
1757
        MIPS_SYS(sys_ni_syscall        , 0)        /* available, was setaltroot */
1758
        MIPS_SYS(sys_add_key        , 5)
1759
        MIPS_SYS(sys_request_key, 4)
1760
        MIPS_SYS(sys_keyctl        , 5)
1761
        MIPS_SYS(sys_set_thread_area, 1)
1762
        MIPS_SYS(sys_inotify_init, 0)
1763
        MIPS_SYS(sys_inotify_add_watch, 3) /* 4285 */
1764
        MIPS_SYS(sys_inotify_rm_watch, 2)
1765
        MIPS_SYS(sys_migrate_pages, 4)
1766
        MIPS_SYS(sys_openat, 4)
1767
        MIPS_SYS(sys_mkdirat, 3)
1768
        MIPS_SYS(sys_mknodat, 4)        /* 4290 */
1769
        MIPS_SYS(sys_fchownat, 5)
1770
        MIPS_SYS(sys_futimesat, 3)
1771
        MIPS_SYS(sys_fstatat64, 4)
1772
        MIPS_SYS(sys_unlinkat, 3)
1773
        MIPS_SYS(sys_renameat, 4)        /* 4295 */
1774
        MIPS_SYS(sys_linkat, 5)
1775
        MIPS_SYS(sys_symlinkat, 3)
1776
        MIPS_SYS(sys_readlinkat, 4)
1777
        MIPS_SYS(sys_fchmodat, 3)
1778
        MIPS_SYS(sys_faccessat, 3)        /* 4300 */
1779
        MIPS_SYS(sys_pselect6, 6)
1780
        MIPS_SYS(sys_ppoll, 5)
1781
        MIPS_SYS(sys_unshare, 1)
1782
        MIPS_SYS(sys_splice, 4)
1783
        MIPS_SYS(sys_sync_file_range, 7) /* 4305 */
1784
        MIPS_SYS(sys_tee, 4)
1785
        MIPS_SYS(sys_vmsplice, 4)
1786
        MIPS_SYS(sys_move_pages, 6)
1787
        MIPS_SYS(sys_set_robust_list, 2)
1788
        MIPS_SYS(sys_get_robust_list, 3) /* 4310 */
1789
        MIPS_SYS(sys_kexec_load, 4)
1790
        MIPS_SYS(sys_getcpu, 3)
1791
        MIPS_SYS(sys_epoll_pwait, 6)
1792
        MIPS_SYS(sys_ioprio_set, 3)
1793
        MIPS_SYS(sys_ioprio_get, 2)
1794
};
1795

    
1796
#undef MIPS_SYS
1797

    
1798
void cpu_loop(CPUMIPSState *env)
1799
{
1800
    target_siginfo_t info;
1801
    int trapnr, ret;
1802
    unsigned int syscall_num;
1803

    
1804
    for(;;) {
1805
        trapnr = cpu_mips_exec(env);
1806
        switch(trapnr) {
1807
        case EXCP_SYSCALL:
1808
            syscall_num = env->active_tc.gpr[2] - 4000;
1809
            env->active_tc.PC += 4;
1810
            if (syscall_num >= sizeof(mips_syscall_args)) {
1811
                ret = -ENOSYS;
1812
            } else {
1813
                int nb_args;
1814
                abi_ulong sp_reg;
1815
                abi_ulong arg5 = 0, arg6 = 0, arg7 = 0, arg8 = 0;
1816

    
1817
                nb_args = mips_syscall_args[syscall_num];
1818
                sp_reg = env->active_tc.gpr[29];
1819
                switch (nb_args) {
1820
                /* these arguments are taken from the stack */
1821
                /* FIXME - what to do if get_user() fails? */
1822
                case 8: get_user_ual(arg8, sp_reg + 28);
1823
                case 7: get_user_ual(arg7, sp_reg + 24);
1824
                case 6: get_user_ual(arg6, sp_reg + 20);
1825
                case 5: get_user_ual(arg5, sp_reg + 16);
1826
                default:
1827
                    break;
1828
                }
1829
                ret = do_syscall(env, env->active_tc.gpr[2],
1830
                                 env->active_tc.gpr[4],
1831
                                 env->active_tc.gpr[5],
1832
                                 env->active_tc.gpr[6],
1833
                                 env->active_tc.gpr[7],
1834
                                 arg5, arg6/*, arg7, arg8*/);
1835
            }
1836
            if ((unsigned int)ret >= (unsigned int)(-1133)) {
1837
                env->active_tc.gpr[7] = 1; /* error flag */
1838
                ret = -ret;
1839
            } else {
1840
                env->active_tc.gpr[7] = 0; /* error flag */
1841
            }
1842
            env->active_tc.gpr[2] = ret;
1843
            break;
1844
        case EXCP_TLBL:
1845
        case EXCP_TLBS:
1846
        case EXCP_CpU:
1847
        case EXCP_RI:
1848
            info.si_signo = TARGET_SIGILL;
1849
            info.si_errno = 0;
1850
            info.si_code = 0;
1851
            queue_signal(env, info.si_signo, &info);
1852
            break;
1853
        case EXCP_INTERRUPT:
1854
            /* just indicate that signals should be handled asap */
1855
            break;
1856
        case EXCP_DEBUG:
1857
            {
1858
                int sig;
1859

    
1860
                sig = gdb_handlesig (env, TARGET_SIGTRAP);
1861
                if (sig)
1862
                  {
1863
                    info.si_signo = sig;
1864
                    info.si_errno = 0;
1865
                    info.si_code = TARGET_TRAP_BRKPT;
1866
                    queue_signal(env, info.si_signo, &info);
1867
                  }
1868
            }
1869
            break;
1870
        default:
1871
            //        error:
1872
            fprintf(stderr, "qemu: unhandled CPU exception 0x%x - aborting\n",
1873
                    trapnr);
1874
            cpu_dump_state(env, stderr, fprintf, 0);
1875
            abort();
1876
        }
1877
        process_pending_signals(env);
1878
    }
1879
}
1880
#endif
1881

    
1882
#ifdef TARGET_SH4
1883
void cpu_loop (CPUState *env)
1884
{
1885
    int trapnr, ret;
1886
    target_siginfo_t info;
1887

    
1888
    while (1) {
1889
        trapnr = cpu_sh4_exec (env);
1890

    
1891
        switch (trapnr) {
1892
        case 0x160:
1893
            ret = do_syscall(env,
1894
                             env->gregs[3],
1895
                             env->gregs[4],
1896
                             env->gregs[5],
1897
                             env->gregs[6],
1898
                             env->gregs[7],
1899
                             env->gregs[0],
1900
                             env->gregs[1]);
1901
            env->gregs[0] = ret;
1902
            env->pc += 2;
1903
            break;
1904
        case EXCP_INTERRUPT:
1905
            /* just indicate that signals should be handled asap */
1906
            break;
1907
        case EXCP_DEBUG:
1908
            {
1909
                int sig;
1910

    
1911
                sig = gdb_handlesig (env, TARGET_SIGTRAP);
1912
                if (sig)
1913
                  {
1914
                    info.si_signo = sig;
1915
                    info.si_errno = 0;
1916
                    info.si_code = TARGET_TRAP_BRKPT;
1917
                    queue_signal(env, info.si_signo, &info);
1918
                  }
1919
            }
1920
            break;
1921
        case 0xa0:
1922
        case 0xc0:
1923
            info.si_signo = SIGSEGV;
1924
            info.si_errno = 0;
1925
            info.si_code = TARGET_SEGV_MAPERR;
1926
            info._sifields._sigfault._addr = env->tea;
1927
            queue_signal(env, info.si_signo, &info);
1928
            break;
1929

    
1930
        default:
1931
            printf ("Unhandled trap: 0x%x\n", trapnr);
1932
            cpu_dump_state(env, stderr, fprintf, 0);
1933
            exit (1);
1934
        }
1935
        process_pending_signals (env);
1936
    }
1937
}
1938
#endif
1939

    
1940
#ifdef TARGET_CRIS
1941
void cpu_loop (CPUState *env)
1942
{
1943
    int trapnr, ret;
1944
    target_siginfo_t info;
1945
    
1946
    while (1) {
1947
        trapnr = cpu_cris_exec (env);
1948
        switch (trapnr) {
1949
        case 0xaa:
1950
            {
1951
                info.si_signo = SIGSEGV;
1952
                info.si_errno = 0;
1953
                /* XXX: check env->error_code */
1954
                info.si_code = TARGET_SEGV_MAPERR;
1955
                info._sifields._sigfault._addr = env->pregs[PR_EDA];
1956
                queue_signal(env, info.si_signo, &info);
1957
            }
1958
            break;
1959
        case EXCP_INTERRUPT:
1960
          /* just indicate that signals should be handled asap */
1961
          break;
1962
        case EXCP_BREAK:
1963
            ret = do_syscall(env, 
1964
                             env->regs[9], 
1965
                             env->regs[10], 
1966
                             env->regs[11], 
1967
                             env->regs[12], 
1968
                             env->regs[13], 
1969
                             env->pregs[7], 
1970
                             env->pregs[11]);
1971
            env->regs[10] = ret;
1972
            env->pc += 2;
1973
            break;
1974
        case EXCP_DEBUG:
1975
            {
1976
                int sig;
1977

    
1978
                sig = gdb_handlesig (env, TARGET_SIGTRAP);
1979
                if (sig)
1980
                  {
1981
                    info.si_signo = sig;
1982
                    info.si_errno = 0;
1983
                    info.si_code = TARGET_TRAP_BRKPT;
1984
                    queue_signal(env, info.si_signo, &info);
1985
                  }
1986
            }
1987
            break;
1988
        default:
1989
            printf ("Unhandled trap: 0x%x\n", trapnr);
1990
            cpu_dump_state(env, stderr, fprintf, 0);
1991
            exit (1);
1992
        }
1993
        process_pending_signals (env);
1994
    }
1995
}
1996
#endif
1997

    
1998
#ifdef TARGET_M68K
1999

    
2000
void cpu_loop(CPUM68KState *env)
2001
{
2002
    int trapnr;
2003
    unsigned int n;
2004
    target_siginfo_t info;
2005
    TaskState *ts = env->opaque;
2006

    
2007
    for(;;) {
2008
        trapnr = cpu_m68k_exec(env);
2009
        switch(trapnr) {
2010
        case EXCP_ILLEGAL:
2011
            {
2012
                if (ts->sim_syscalls) {
2013
                    uint16_t nr;
2014
                    nr = lduw(env->pc + 2);
2015
                    env->pc += 4;
2016
                    do_m68k_simcall(env, nr);
2017
                } else {
2018
                    goto do_sigill;
2019
                }
2020
            }
2021
            break;
2022
        case EXCP_HALT_INSN:
2023
            /* Semihosing syscall.  */
2024
            env->pc += 4;
2025
            do_m68k_semihosting(env, env->dregs[0]);
2026
            break;
2027
        case EXCP_LINEA:
2028
        case EXCP_LINEF:
2029
        case EXCP_UNSUPPORTED:
2030
        do_sigill:
2031
            info.si_signo = SIGILL;
2032
            info.si_errno = 0;
2033
            info.si_code = TARGET_ILL_ILLOPN;
2034
            info._sifields._sigfault._addr = env->pc;
2035
            queue_signal(env, info.si_signo, &info);
2036
            break;
2037
        case EXCP_TRAP0:
2038
            {
2039
                ts->sim_syscalls = 0;
2040
                n = env->dregs[0];
2041
                env->pc += 2;
2042
                env->dregs[0] = do_syscall(env,
2043
                                          n,
2044
                                          env->dregs[1],
2045
                                          env->dregs[2],
2046
                                          env->dregs[3],
2047
                                          env->dregs[4],
2048
                                          env->dregs[5],
2049
                                          env->aregs[0]);
2050
            }
2051
            break;
2052
        case EXCP_INTERRUPT:
2053
            /* just indicate that signals should be handled asap */
2054
            break;
2055
        case EXCP_ACCESS:
2056
            {
2057
                info.si_signo = SIGSEGV;
2058
                info.si_errno = 0;
2059
                /* XXX: check env->error_code */
2060
                info.si_code = TARGET_SEGV_MAPERR;
2061
                info._sifields._sigfault._addr = env->mmu.ar;
2062
                queue_signal(env, info.si_signo, &info);
2063
            }
2064
            break;
2065
        case EXCP_DEBUG:
2066
            {
2067
                int sig;
2068

    
2069
                sig = gdb_handlesig (env, TARGET_SIGTRAP);
2070
                if (sig)
2071
                  {
2072
                    info.si_signo = sig;
2073
                    info.si_errno = 0;
2074
                    info.si_code = TARGET_TRAP_BRKPT;
2075
                    queue_signal(env, info.si_signo, &info);
2076
                  }
2077
            }
2078
            break;
2079
        default:
2080
            fprintf(stderr, "qemu: unhandled CPU exception 0x%x - aborting\n",
2081
                    trapnr);
2082
            cpu_dump_state(env, stderr, fprintf, 0);
2083
            abort();
2084
        }
2085
        process_pending_signals(env);
2086
    }
2087
}
2088
#endif /* TARGET_M68K */
2089

    
2090
#ifdef TARGET_ALPHA
2091
void cpu_loop (CPUState *env)
2092
{
2093
    int trapnr;
2094
    target_siginfo_t info;
2095

    
2096
    while (1) {
2097
        trapnr = cpu_alpha_exec (env);
2098

    
2099
        switch (trapnr) {
2100
        case EXCP_RESET:
2101
            fprintf(stderr, "Reset requested. Exit\n");
2102
            exit(1);
2103
            break;
2104
        case EXCP_MCHK:
2105
            fprintf(stderr, "Machine check exception. Exit\n");
2106
            exit(1);
2107
            break;
2108
        case EXCP_ARITH:
2109
            fprintf(stderr, "Arithmetic trap.\n");
2110
            exit(1);
2111
            break;
2112
        case EXCP_HW_INTERRUPT:
2113
            fprintf(stderr, "External interrupt. Exit\n");
2114
            exit(1);
2115
            break;
2116
        case EXCP_DFAULT:
2117
            fprintf(stderr, "MMU data fault\n");
2118
            exit(1);
2119
            break;
2120
        case EXCP_DTB_MISS_PAL:
2121
            fprintf(stderr, "MMU data TLB miss in PALcode\n");
2122
            exit(1);
2123
            break;
2124
        case EXCP_ITB_MISS:
2125
            fprintf(stderr, "MMU instruction TLB miss\n");
2126
            exit(1);
2127
            break;
2128
        case EXCP_ITB_ACV:
2129
            fprintf(stderr, "MMU instruction access violation\n");
2130
            exit(1);
2131
            break;
2132
        case EXCP_DTB_MISS_NATIVE:
2133
            fprintf(stderr, "MMU data TLB miss\n");
2134
            exit(1);
2135
            break;
2136
        case EXCP_UNALIGN:
2137
            fprintf(stderr, "Unaligned access\n");
2138
            exit(1);
2139
            break;
2140
        case EXCP_OPCDEC:
2141
            fprintf(stderr, "Invalid instruction\n");
2142
            exit(1);
2143
            break;
2144
        case EXCP_FEN:
2145
            fprintf(stderr, "Floating-point not allowed\n");
2146
            exit(1);
2147
            break;
2148
        case EXCP_CALL_PAL ... (EXCP_CALL_PALP - 1):
2149
            fprintf(stderr, "Call to PALcode\n");
2150
            call_pal(env, (trapnr >> 6) | 0x80);
2151
            break;
2152
        case EXCP_CALL_PALP ... (EXCP_CALL_PALE - 1):
2153
            fprintf(stderr, "Privileged call to PALcode\n");
2154
            exit(1);
2155
            break;
2156
        case EXCP_DEBUG:
2157
            {
2158
                int sig;
2159

    
2160
                sig = gdb_handlesig (env, TARGET_SIGTRAP);
2161
                if (sig)
2162
                  {
2163
                    info.si_signo = sig;
2164
                    info.si_errno = 0;
2165
                    info.si_code = TARGET_TRAP_BRKPT;
2166
                    queue_signal(env, info.si_signo, &info);
2167
                  }
2168
            }
2169
            break;
2170
        default:
2171
            printf ("Unhandled trap: 0x%x\n", trapnr);
2172
            cpu_dump_state(env, stderr, fprintf, 0);
2173
            exit (1);
2174
        }
2175
        process_pending_signals (env);
2176
    }
2177
}
2178
#endif /* TARGET_ALPHA */
2179

    
2180
static void usage(void)
2181
{
2182
    printf("qemu-" TARGET_ARCH " version " QEMU_VERSION ", Copyright (c) 2003-2008 Fabrice Bellard\n"
2183
           "usage: qemu-" TARGET_ARCH " [options] program [arguments...]\n"
2184
           "Linux CPU emulator (compiled for %s emulation)\n"
2185
           "\n"
2186
           "Standard options:\n"
2187
           "-h                print this help\n"
2188
           "-g port           wait gdb connection to port\n"
2189
           "-L path           set the elf interpreter prefix (default=%s)\n"
2190
           "-s size           set the stack size in bytes (default=%ld)\n"
2191
           "-cpu model        select CPU (-cpu ? for list)\n"
2192
           "-drop-ld-preload  drop LD_PRELOAD for target process\n"
2193
           "\n"
2194
           "Debug options:\n"
2195
           "-d options   activate log (logfile=%s)\n"
2196
           "-p pagesize  set the host page size to 'pagesize'\n"
2197
           "-strace      log system calls\n"
2198
           "\n"
2199
           "Environment variables:\n"
2200
           "QEMU_STRACE       Print system calls and arguments similar to the\n"
2201
           "                  'strace' program.  Enable by setting to any value.\n"
2202
           ,
2203
           TARGET_ARCH,
2204
           interp_prefix,
2205
           x86_stack_size,
2206
           DEBUG_LOGFILE);
2207
    _exit(1);
2208
}
2209

    
2210
THREAD CPUState *thread_env;
2211

    
2212
/* Assumes contents are already zeroed.  */
2213
void init_task_state(TaskState *ts)
2214
{
2215
    int i;
2216
 
2217
    ts->used = 1;
2218
    ts->first_free = ts->sigqueue_table;
2219
    for (i = 0; i < MAX_SIGQUEUE_SIZE - 1; i++) {
2220
        ts->sigqueue_table[i].next = &ts->sigqueue_table[i + 1];
2221
    }
2222
    ts->sigqueue_table[i].next = NULL;
2223
}
2224
 
2225
int main(int argc, char **argv)
2226
{
2227
    const char *filename;
2228
    const char *cpu_model;
2229
    struct target_pt_regs regs1, *regs = &regs1;
2230
    struct image_info info1, *info = &info1;
2231
    TaskState ts1, *ts = &ts1;
2232
    CPUState *env;
2233
    int optind;
2234
    const char *r;
2235
    int gdbstub_port = 0;
2236
    int drop_ld_preload = 0, environ_count = 0;
2237
    char **target_environ, **wrk, **dst;
2238

    
2239
    if (argc <= 1)
2240
        usage();
2241

    
2242
    /* init debug */
2243
    cpu_set_log_filename(DEBUG_LOGFILE);
2244

    
2245
    cpu_model = NULL;
2246
    optind = 1;
2247
    for(;;) {
2248
        if (optind >= argc)
2249
            break;
2250
        r = argv[optind];
2251
        if (r[0] != '-')
2252
            break;
2253
        optind++;
2254
        r++;
2255
        if (!strcmp(r, "-")) {
2256
            break;
2257
        } else if (!strcmp(r, "d")) {
2258
            int mask;
2259
            CPULogItem *item;
2260

    
2261
            if (optind >= argc)
2262
                break;
2263

    
2264
            r = argv[optind++];
2265
            mask = cpu_str_to_log_mask(r);
2266
            if (!mask) {
2267
                printf("Log items (comma separated):\n");
2268
                for(item = cpu_log_items; item->mask != 0; item++) {
2269
                    printf("%-10s %s\n", item->name, item->help);
2270
                }
2271
                exit(1);
2272
            }
2273
            cpu_set_log(mask);
2274
        } else if (!strcmp(r, "s")) {
2275
            r = argv[optind++];
2276
            x86_stack_size = strtol(r, (char **)&r, 0);
2277
            if (x86_stack_size <= 0)
2278
                usage();
2279
            if (*r == 'M')
2280
                x86_stack_size *= 1024 * 1024;
2281
            else if (*r == 'k' || *r == 'K')
2282
                x86_stack_size *= 1024;
2283
        } else if (!strcmp(r, "L")) {
2284
            interp_prefix = argv[optind++];
2285
        } else if (!strcmp(r, "p")) {
2286
            qemu_host_page_size = atoi(argv[optind++]);
2287
            if (qemu_host_page_size == 0 ||
2288
                (qemu_host_page_size & (qemu_host_page_size - 1)) != 0) {
2289
                fprintf(stderr, "page size must be a power of two\n");
2290
                exit(1);
2291
            }
2292
        } else if (!strcmp(r, "g")) {
2293
            gdbstub_port = atoi(argv[optind++]);
2294
        } else if (!strcmp(r, "r")) {
2295
            qemu_uname_release = argv[optind++];
2296
        } else if (!strcmp(r, "cpu")) {
2297
            cpu_model = argv[optind++];
2298
            if (strcmp(cpu_model, "?") == 0) {
2299
/* XXX: implement xxx_cpu_list for targets that still miss it */
2300
#if defined(cpu_list)
2301
                    cpu_list(stdout, &fprintf);
2302
#endif
2303
                _exit(1);
2304
            }
2305
        } else if (!strcmp(r, "drop-ld-preload")) {
2306
            drop_ld_preload = 1;
2307
        } else if (!strcmp(r, "strace")) {
2308
            do_strace = 1;
2309
        } else
2310
        {
2311
            usage();
2312
        }
2313
    }
2314
    if (optind >= argc)
2315
        usage();
2316
    filename = argv[optind];
2317

    
2318
    /* Zero out regs */
2319
    memset(regs, 0, sizeof(struct target_pt_regs));
2320

    
2321
    /* Zero out image_info */
2322
    memset(info, 0, sizeof(struct image_info));
2323

    
2324
    /* Scan interp_prefix dir for replacement files. */
2325
    init_paths(interp_prefix);
2326

    
2327
    if (cpu_model == NULL) {
2328
#if defined(TARGET_I386)
2329
#ifdef TARGET_X86_64
2330
        cpu_model = "qemu64";
2331
#else
2332
        cpu_model = "qemu32";
2333
#endif
2334
#elif defined(TARGET_ARM)
2335
        cpu_model = "arm926";
2336
#elif defined(TARGET_M68K)
2337
        cpu_model = "any";
2338
#elif defined(TARGET_SPARC)
2339
#ifdef TARGET_SPARC64
2340
        cpu_model = "TI UltraSparc II";
2341
#else
2342
        cpu_model = "Fujitsu MB86904";
2343
#endif
2344
#elif defined(TARGET_MIPS)
2345
#if defined(TARGET_ABI_MIPSN32) || defined(TARGET_ABI_MIPSN64)
2346
        cpu_model = "20Kc";
2347
#else
2348
        cpu_model = "24Kf";
2349
#endif
2350
#elif defined(TARGET_PPC)
2351
#ifdef TARGET_PPC64
2352
        cpu_model = "970";
2353
#else
2354
        cpu_model = "750";
2355
#endif
2356
#else
2357
        cpu_model = "any";
2358
#endif
2359
    }
2360
    cpu_exec_init_all(0);
2361
    /* NOTE: we need to init the CPU at this stage to get
2362
       qemu_host_page_size */
2363
    env = cpu_init(cpu_model);
2364
    if (!env) {
2365
        fprintf(stderr, "Unable to find CPU definition\n");
2366
        exit(1);
2367
    }
2368
    thread_env = env;
2369

    
2370
    if (getenv("QEMU_STRACE")) {
2371
        do_strace = 1;
2372
    }
2373

    
2374
    wrk = environ;
2375
    while (*(wrk++))
2376
        environ_count++;
2377

    
2378
    target_environ = malloc((environ_count + 1) * sizeof(char *));
2379
    if (!target_environ)
2380
        abort();
2381
    for (wrk = environ, dst = target_environ; *wrk; wrk++) {
2382
        if (drop_ld_preload && !strncmp(*wrk, "LD_PRELOAD=", 11))
2383
            continue;
2384
        *(dst++) = strdup(*wrk);
2385
    }
2386
    *dst = NULL; /* NULL terminate target_environ */
2387

    
2388
    if (loader_exec(filename, argv+optind, target_environ, regs, info) != 0) {
2389
        printf("Error loading %s\n", filename);
2390
        _exit(1);
2391
    }
2392

    
2393
    for (wrk = target_environ; *wrk; wrk++) {
2394
        free(*wrk);
2395
    }
2396

    
2397
    free(target_environ);
2398

    
2399
    if (loglevel) {
2400
        page_dump(logfile);
2401

    
2402
        fprintf(logfile, "start_brk   0x" TARGET_ABI_FMT_lx "\n", info->start_brk);
2403
        fprintf(logfile, "end_code    0x" TARGET_ABI_FMT_lx "\n", info->end_code);
2404
        fprintf(logfile, "start_code  0x" TARGET_ABI_FMT_lx "\n",
2405
                info->start_code);
2406
        fprintf(logfile, "start_data  0x" TARGET_ABI_FMT_lx "\n",
2407
                info->start_data);
2408
        fprintf(logfile, "end_data    0x" TARGET_ABI_FMT_lx "\n", info->end_data);
2409
        fprintf(logfile, "start_stack 0x" TARGET_ABI_FMT_lx "\n",
2410
                info->start_stack);
2411
        fprintf(logfile, "brk         0x" TARGET_ABI_FMT_lx "\n", info->brk);
2412
        fprintf(logfile, "entry       0x" TARGET_ABI_FMT_lx "\n", info->entry);
2413
    }
2414

    
2415
    target_set_brk(info->brk);
2416
    syscall_init();
2417
    signal_init();
2418

    
2419
    /* build Task State */
2420
    memset(ts, 0, sizeof(TaskState));
2421
    init_task_state(ts);
2422
    ts->info = info;
2423
    env->opaque = ts;
2424
    env->user_mode_only = 1;
2425

    
2426
#if defined(TARGET_I386)
2427
    cpu_x86_set_cpl(env, 3);
2428

    
2429
    env->cr[0] = CR0_PG_MASK | CR0_WP_MASK | CR0_PE_MASK;
2430
    env->hflags |= HF_PE_MASK;
2431
    if (env->cpuid_features & CPUID_SSE) {
2432
        env->cr[4] |= CR4_OSFXSR_MASK;
2433
        env->hflags |= HF_OSFXSR_MASK;
2434
    }
2435
#ifndef TARGET_ABI32
2436
    /* enable 64 bit mode if possible */
2437
    if (!(env->cpuid_ext2_features & CPUID_EXT2_LM)) {
2438
        fprintf(stderr, "The selected x86 CPU does not support 64 bit mode\n");
2439
        exit(1);
2440
    }
2441
    env->cr[4] |= CR4_PAE_MASK;
2442
    env->efer |= MSR_EFER_LMA | MSR_EFER_LME;
2443
    env->hflags |= HF_LMA_MASK;
2444
#endif
2445

    
2446
    /* flags setup : we activate the IRQs by default as in user mode */
2447
    env->eflags |= IF_MASK;
2448

    
2449
    /* linux register setup */
2450
#ifndef TARGET_ABI32
2451
    env->regs[R_EAX] = regs->rax;
2452
    env->regs[R_EBX] = regs->rbx;
2453
    env->regs[R_ECX] = regs->rcx;
2454
    env->regs[R_EDX] = regs->rdx;
2455
    env->regs[R_ESI] = regs->rsi;
2456
    env->regs[R_EDI] = regs->rdi;
2457
    env->regs[R_EBP] = regs->rbp;
2458
    env->regs[R_ESP] = regs->rsp;
2459
    env->eip = regs->rip;
2460
#else
2461
    env->regs[R_EAX] = regs->eax;
2462
    env->regs[R_EBX] = regs->ebx;
2463
    env->regs[R_ECX] = regs->ecx;
2464
    env->regs[R_EDX] = regs->edx;
2465
    env->regs[R_ESI] = regs->esi;
2466
    env->regs[R_EDI] = regs->edi;
2467
    env->regs[R_EBP] = regs->ebp;
2468
    env->regs[R_ESP] = regs->esp;
2469
    env->eip = regs->eip;
2470
#endif
2471

    
2472
    /* linux interrupt setup */
2473
    env->idt.base = h2g(idt_table);
2474
    env->idt.limit = sizeof(idt_table) - 1;
2475
    set_idt(0, 0);
2476
    set_idt(1, 0);
2477
    set_idt(2, 0);
2478
    set_idt(3, 3);
2479
    set_idt(4, 3);
2480
    set_idt(5, 0);
2481
    set_idt(6, 0);
2482
    set_idt(7, 0);
2483
    set_idt(8, 0);
2484
    set_idt(9, 0);
2485
    set_idt(10, 0);
2486
    set_idt(11, 0);
2487
    set_idt(12, 0);
2488
    set_idt(13, 0);
2489
    set_idt(14, 0);
2490
    set_idt(15, 0);
2491
    set_idt(16, 0);
2492
    set_idt(17, 0);
2493
    set_idt(18, 0);
2494
    set_idt(19, 0);
2495
    set_idt(0x80, 3);
2496

    
2497
    /* linux segment setup */
2498
    {
2499
        uint64_t *gdt_table;
2500
        gdt_table = qemu_mallocz(sizeof(uint64_t) * TARGET_GDT_ENTRIES);
2501
        env->gdt.base = h2g((unsigned long)gdt_table);
2502
        env->gdt.limit = sizeof(uint64_t) * TARGET_GDT_ENTRIES - 1;
2503
#ifdef TARGET_ABI32
2504
        write_dt(&gdt_table[__USER_CS >> 3], 0, 0xfffff,
2505
                 DESC_G_MASK | DESC_B_MASK | DESC_P_MASK | DESC_S_MASK |
2506
                 (3 << DESC_DPL_SHIFT) | (0xa << DESC_TYPE_SHIFT));
2507
#else
2508
        /* 64 bit code segment */
2509
        write_dt(&gdt_table[__USER_CS >> 3], 0, 0xfffff,
2510
                 DESC_G_MASK | DESC_B_MASK | DESC_P_MASK | DESC_S_MASK |
2511
                 DESC_L_MASK |
2512
                 (3 << DESC_DPL_SHIFT) | (0xa << DESC_TYPE_SHIFT));
2513
#endif
2514
        write_dt(&gdt_table[__USER_DS >> 3], 0, 0xfffff,
2515
                 DESC_G_MASK | DESC_B_MASK | DESC_P_MASK | DESC_S_MASK |
2516
                 (3 << DESC_DPL_SHIFT) | (0x2 << DESC_TYPE_SHIFT));
2517
    }
2518
    cpu_x86_load_seg(env, R_CS, __USER_CS);
2519
    cpu_x86_load_seg(env, R_SS, __USER_DS);
2520
#ifdef TARGET_ABI32
2521
    cpu_x86_load_seg(env, R_DS, __USER_DS);
2522
    cpu_x86_load_seg(env, R_ES, __USER_DS);
2523
    cpu_x86_load_seg(env, R_FS, __USER_DS);
2524
    cpu_x86_load_seg(env, R_GS, __USER_DS);
2525
    /* This hack makes Wine work... */
2526
    env->segs[R_FS].selector = 0;
2527
#else
2528
    cpu_x86_load_seg(env, R_DS, 0);
2529
    cpu_x86_load_seg(env, R_ES, 0);
2530
    cpu_x86_load_seg(env, R_FS, 0);
2531
    cpu_x86_load_seg(env, R_GS, 0);
2532
#endif
2533
#elif defined(TARGET_ARM)
2534
    {
2535
        int i;
2536
        cpsr_write(env, regs->uregs[16], 0xffffffff);
2537
        for(i = 0; i < 16; i++) {
2538
            env->regs[i] = regs->uregs[i];
2539
        }
2540
    }
2541
#elif defined(TARGET_SPARC)
2542
    {
2543
        int i;
2544
        env->pc = regs->pc;
2545
        env->npc = regs->npc;
2546
        env->y = regs->y;
2547
        for(i = 0; i < 8; i++)
2548
            env->gregs[i] = regs->u_regs[i];
2549
        for(i = 0; i < 8; i++)
2550
            env->regwptr[i] = regs->u_regs[i + 8];
2551
    }
2552
#elif defined(TARGET_PPC)
2553
    {
2554
        int i;
2555

    
2556
#if defined(TARGET_PPC64)
2557
#if defined(TARGET_ABI32)
2558
        env->msr &= ~((target_ulong)1 << MSR_SF);
2559
#else
2560
        env->msr |= (target_ulong)1 << MSR_SF;
2561
#endif
2562
#endif
2563
        env->nip = regs->nip;
2564
        for(i = 0; i < 32; i++) {
2565
            env->gpr[i] = regs->gpr[i];
2566
        }
2567
    }
2568
#elif defined(TARGET_M68K)
2569
    {
2570
        env->pc = regs->pc;
2571
        env->dregs[0] = regs->d0;
2572
        env->dregs[1] = regs->d1;
2573
        env->dregs[2] = regs->d2;
2574
        env->dregs[3] = regs->d3;
2575
        env->dregs[4] = regs->d4;
2576
        env->dregs[5] = regs->d5;
2577
        env->dregs[6] = regs->d6;
2578
        env->dregs[7] = regs->d7;
2579
        env->aregs[0] = regs->a0;
2580
        env->aregs[1] = regs->a1;
2581
        env->aregs[2] = regs->a2;
2582
        env->aregs[3] = regs->a3;
2583
        env->aregs[4] = regs->a4;
2584
        env->aregs[5] = regs->a5;
2585
        env->aregs[6] = regs->a6;
2586
        env->aregs[7] = regs->usp;
2587
        env->sr = regs->sr;
2588
        ts->sim_syscalls = 1;
2589
    }
2590
#elif defined(TARGET_MIPS)
2591
    {
2592
        int i;
2593

    
2594
        for(i = 0; i < 32; i++) {
2595
            env->active_tc.gpr[i] = regs->regs[i];
2596
        }
2597
        env->active_tc.PC = regs->cp0_epc;
2598
    }
2599
#elif defined(TARGET_SH4)
2600
    {
2601
        int i;
2602

    
2603
        for(i = 0; i < 16; i++) {
2604
            env->gregs[i] = regs->regs[i];
2605
        }
2606
        env->pc = regs->pc;
2607
    }
2608
#elif defined(TARGET_ALPHA)
2609
    {
2610
        int i;
2611

    
2612
        for(i = 0; i < 28; i++) {
2613
            env->ir[i] = ((abi_ulong *)regs)[i];
2614
        }
2615
        env->ipr[IPR_USP] = regs->usp;
2616
        env->ir[30] = regs->usp;
2617
        env->pc = regs->pc;
2618
        env->unique = regs->unique;
2619
    }
2620
#elif defined(TARGET_CRIS)
2621
    {
2622
            env->regs[0] = regs->r0;
2623
            env->regs[1] = regs->r1;
2624
            env->regs[2] = regs->r2;
2625
            env->regs[3] = regs->r3;
2626
            env->regs[4] = regs->r4;
2627
            env->regs[5] = regs->r5;
2628
            env->regs[6] = regs->r6;
2629
            env->regs[7] = regs->r7;
2630
            env->regs[8] = regs->r8;
2631
            env->regs[9] = regs->r9;
2632
            env->regs[10] = regs->r10;
2633
            env->regs[11] = regs->r11;
2634
            env->regs[12] = regs->r12;
2635
            env->regs[13] = regs->r13;
2636
            env->regs[14] = info->start_stack;
2637
            env->regs[15] = regs->acr;            
2638
            env->pc = regs->erp;
2639
    }
2640
#else
2641
#error unsupported target CPU
2642
#endif
2643

    
2644
#if defined(TARGET_ARM) || defined(TARGET_M68K)
2645
    ts->stack_base = info->start_stack;
2646
    ts->heap_base = info->brk;
2647
    /* This will be filled in on the first SYS_HEAPINFO call.  */
2648
    ts->heap_limit = 0;
2649
#endif
2650

    
2651
    if (gdbstub_port) {
2652
        gdbserver_start (gdbstub_port);
2653
        gdb_handlesig(env, 0);
2654
    }
2655
    cpu_loop(env);
2656
    /* never exits */
2657
    return 0;
2658
}