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1
/*
2
 *  MIPS emulation helpers for qemu.
3
 * 
4
 *  Copyright (c) 2004-2005 Jocelyn Mayer
5
 *
6
 * This library is free software; you can redistribute it and/or
7
 * modify it under the terms of the GNU Lesser General Public
8
 * License as published by the Free Software Foundation; either
9
 * version 2 of the License, or (at your option) any later version.
10
 *
11
 * This library is distributed in the hope that it will be useful,
12
 * but WITHOUT ANY WARRANTY; without even the implied warranty of
13
 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
14
 * Lesser General Public License for more details.
15
 *
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 * You should have received a copy of the GNU Lesser General Public
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 * License along with this library; if not, write to the Free Software
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 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA  02111-1307  USA
19
 */
20
#include <stdlib.h>
21
#include "exec.h"
22

    
23
#define GETPC() (__builtin_return_address(0))
24

    
25
/*****************************************************************************/
26
/* Exceptions processing helpers */
27
void cpu_loop_exit(void)
28
{
29
    longjmp(env->jmp_env, 1);
30
}
31

    
32
void do_raise_exception_err (uint32_t exception, int error_code)
33
{
34
#if 1
35
    if (logfile && exception < 0x100)
36
        fprintf(logfile, "%s: %d %d\n", __func__, exception, error_code);
37
#endif
38
    env->exception_index = exception;
39
    env->error_code = error_code;
40
    T0 = 0;
41
    cpu_loop_exit();
42
}
43

    
44
void do_raise_exception (uint32_t exception)
45
{
46
    do_raise_exception_err(exception, 0);
47
}
48

    
49
void do_restore_state (void *pc_ptr)
50
{
51
  TranslationBlock *tb;
52
  unsigned long pc = (unsigned long) pc_ptr;
53

    
54
  tb = tb_find_pc (pc);
55
  cpu_restore_state (tb, env, pc, NULL);
56
}
57

    
58
void do_raise_exception_direct_err (uint32_t exception, int error_code)
59
{
60
    do_restore_state (GETPC ());
61
    do_raise_exception_err (exception, error_code);
62
}
63

    
64
void do_raise_exception_direct (uint32_t exception)
65
{
66
    do_raise_exception_direct_err (exception, 0);
67
}
68

    
69
#define MEMSUFFIX _raw
70
#include "op_helper_mem.c"
71
#undef MEMSUFFIX
72
#if !defined(CONFIG_USER_ONLY)
73
#define MEMSUFFIX _user
74
#include "op_helper_mem.c"
75
#undef MEMSUFFIX
76
#define MEMSUFFIX _kernel
77
#include "op_helper_mem.c"
78
#undef MEMSUFFIX
79
#endif
80

    
81
#ifdef TARGET_MIPS64
82
#if TARGET_LONG_BITS > HOST_LONG_BITS
83
/* Those might call libgcc functions.  */
84
void do_dsll (void)
85
{
86
    T0 = T0 << T1;
87
}
88

    
89
void do_dsll32 (void)
90
{
91
    T0 = T0 << (T1 + 32);
92
}
93

    
94
void do_dsra (void)
95
{
96
    T0 = (int64_t)T0 >> T1;
97
}
98

    
99
void do_dsra32 (void)
100
{
101
    T0 = (int64_t)T0 >> (T1 + 32);
102
}
103

    
104
void do_dsrl (void)
105
{
106
    T0 = T0 >> T1;
107
}
108

    
109
void do_dsrl32 (void)
110
{
111
    T0 = T0 >> (T1 + 32);
112
}
113

    
114
void do_drotr (void)
115
{
116
    target_ulong tmp;
117

    
118
    if (T1) {
119
       tmp = T0 << (0x40 - T1);
120
       T0 = (T0 >> T1) | tmp;
121
    }
122
}
123

    
124
void do_drotr32 (void)
125
{
126
    target_ulong tmp;
127

    
128
    if (T1) {
129
       tmp = T0 << (0x40 - (32 + T1));
130
       T0 = (T0 >> (32 + T1)) | tmp;
131
    }
132
}
133

    
134
void do_dsllv (void)
135
{
136
    T0 = T1 << (T0 & 0x3F);
137
}
138

    
139
void do_dsrav (void)
140
{
141
    T0 = (int64_t)T1 >> (T0 & 0x3F);
142
}
143

    
144
void do_dsrlv (void)
145
{
146
    T0 = T1 >> (T0 & 0x3F);
147
}
148

    
149
void do_drotrv (void)
150
{
151
    target_ulong tmp;
152

    
153
    T0 &= 0x3F;
154
    if (T0) {
155
       tmp = T1 << (0x40 - T0);
156
       T0 = (T1 >> T0) | tmp;
157
    } else
158
       T0 = T1;
159
}
160
#endif /* TARGET_LONG_BITS > HOST_LONG_BITS */
161
#endif /* TARGET_MIPS64 */
162

    
163
/* 64 bits arithmetic for 32 bits hosts */
164
#if TARGET_LONG_BITS > HOST_LONG_BITS
165
static inline uint64_t get_HILO (void)
166
{
167
    return (env->HI << 32) | (uint32_t)env->LO;
168
}
169

    
170
static inline void set_HILO (uint64_t HILO)
171
{
172
    env->LO = (int32_t)HILO;
173
    env->HI = (int32_t)(HILO >> 32);
174
}
175

    
176
void do_mult (void)
177
{
178
    set_HILO((int64_t)(int32_t)T0 * (int64_t)(int32_t)T1);
179
}
180

    
181
void do_multu (void)
182
{
183
    set_HILO((uint64_t)(uint32_t)T0 * (uint64_t)(uint32_t)T1);
184
}
185

    
186
void do_madd (void)
187
{
188
    int64_t tmp;
189

    
190
    tmp = ((int64_t)(int32_t)T0 * (int64_t)(int32_t)T1);
191
    set_HILO((int64_t)get_HILO() + tmp);
192
}
193

    
194
void do_maddu (void)
195
{
196
    uint64_t tmp;
197

    
198
    tmp = ((uint64_t)(uint32_t)T0 * (uint64_t)(uint32_t)T1);
199
    set_HILO(get_HILO() + tmp);
200
}
201

    
202
void do_msub (void)
203
{
204
    int64_t tmp;
205

    
206
    tmp = ((int64_t)(int32_t)T0 * (int64_t)(int32_t)T1);
207
    set_HILO((int64_t)get_HILO() - tmp);
208
}
209

    
210
void do_msubu (void)
211
{
212
    uint64_t tmp;
213

    
214
    tmp = ((uint64_t)(uint32_t)T0 * (uint64_t)(uint32_t)T1);
215
    set_HILO(get_HILO() - tmp);
216
}
217
#endif
218

    
219
#if HOST_LONG_BITS < 64
220
void do_div (void)
221
{
222
    /* 64bit datatypes because we may see overflow/underflow. */
223
    if (T1 != 0) {
224
        env->LO = (int32_t)((int64_t)(int32_t)T0 / (int32_t)T1);
225
        env->HI = (int32_t)((int64_t)(int32_t)T0 % (int32_t)T1);
226
    }
227
}
228
#endif
229

    
230
#ifdef TARGET_MIPS64
231
void do_dmult (void)
232
{
233
    env->LO = (int64_t)T0 * (int64_t)T1;
234
    /* XXX */
235
    env->HI = (env->LO | (1ULL << 63)) ? ~0ULL : 0ULL;
236
}
237

    
238
void do_dmultu (void)
239
{
240
    env->LO = T0 * T1;
241
    /* XXX */
242
    env->HI = 0;
243
}
244

    
245
void do_ddiv (void)
246
{
247
    if (T1 != 0) {
248
        lldiv_t res = lldiv((int64_t)T0, (int64_t)T1);
249
        env->LO = res.quot;
250
        env->HI = res.rem;
251
    }
252
}
253

    
254
void do_ddivu (void)
255
{
256
    if (T1 != 0) {
257
        /* XXX: lldivu? */
258
        lldiv_t res = lldiv(T0, T1);
259
        env->LO = (uint64_t)res.quot;
260
        env->HI = (uint64_t)res.rem;
261
    }
262
}
263
#endif
264

    
265
#if defined(CONFIG_USER_ONLY) 
266
void do_mfc0_random (void)
267
{
268
    cpu_abort(env, "mfc0 random\n");
269
}
270

    
271
void do_mfc0_count (void)
272
{
273
    cpu_abort(env, "mfc0 count\n");
274
}
275

    
276
void cpu_mips_store_count(CPUState *env, uint32_t value)
277
{
278
    cpu_abort(env, "mtc0 count\n");
279
}
280

    
281
void cpu_mips_store_compare(CPUState *env, uint32_t value)
282
{
283
    cpu_abort(env, "mtc0 compare\n");
284
}
285

    
286
void cpu_mips_update_irq(CPUState *env)
287
{
288
    cpu_abort(env, "mtc0 status / mtc0 cause\n");
289
}
290

    
291
void do_mtc0_status_debug(uint32_t old, uint32_t val)
292
{
293
    cpu_abort(env, "mtc0 status debug\n");
294
}
295

    
296
void do_mtc0_status_irqraise_debug (void)
297
{
298
    cpu_abort(env, "mtc0 status irqraise debug\n");
299
}
300

    
301
void cpu_mips_tlb_flush (CPUState *env, int flush_global)
302
{
303
    cpu_abort(env, "mips_tlb_flush\n");
304
}
305

    
306
#else
307

    
308
/* CP0 helpers */
309
void do_mfc0_random (void)
310
{
311
    T0 = (int32_t)cpu_mips_get_random(env);
312
}
313

    
314
void do_mfc0_count (void)
315
{
316
    T0 = (int32_t)cpu_mips_get_count(env);
317
}
318

    
319
void do_mtc0_status_debug(uint32_t old, uint32_t val)
320
{
321
    fprintf(logfile, "Status %08x (%08x) => %08x (%08x) Cause %08x",
322
            old, old & env->CP0_Cause & CP0Ca_IP_mask,
323
            val, val & env->CP0_Cause & CP0Ca_IP_mask,
324
            env->CP0_Cause);
325
    (env->hflags & MIPS_HFLAG_UM) ? fputs(", UM\n", logfile)
326
                                  : fputs("\n", logfile);
327
}
328

    
329
void do_mtc0_status_irqraise_debug(void)
330
{
331
    fprintf(logfile, "Raise pending IRQs\n");
332
}
333

    
334
void fpu_handle_exception(void)
335
{
336
#ifdef CONFIG_SOFTFLOAT
337
    int flags = get_float_exception_flags(&env->fp_status);
338
    unsigned int cpuflags = 0, enable, cause = 0;
339

    
340
    enable = GET_FP_ENABLE(env->fcr31);
341

    
342
    /* determine current flags */   
343
    if (flags & float_flag_invalid) {
344
        cpuflags |= FP_INVALID;
345
        cause |= FP_INVALID & enable;
346
    }
347
    if (flags & float_flag_divbyzero) {
348
        cpuflags |= FP_DIV0;    
349
        cause |= FP_DIV0 & enable;
350
    }
351
    if (flags & float_flag_overflow) {
352
        cpuflags |= FP_OVERFLOW;    
353
        cause |= FP_OVERFLOW & enable;
354
    }
355
    if (flags & float_flag_underflow) {
356
        cpuflags |= FP_UNDERFLOW;   
357
        cause |= FP_UNDERFLOW & enable;
358
    }
359
    if (flags & float_flag_inexact) {
360
        cpuflags |= FP_INEXACT; 
361
        cause |= FP_INEXACT & enable;
362
    }
363
    SET_FP_FLAGS(env->fcr31, cpuflags);
364
    SET_FP_CAUSE(env->fcr31, cause);
365
#else
366
    SET_FP_FLAGS(env->fcr31, 0);
367
    SET_FP_CAUSE(env->fcr31, 0);
368
#endif
369
}
370

    
371
/* TLB management */
372
void cpu_mips_tlb_flush (CPUState *env, int flush_global)
373
{
374
    /* Flush qemu's TLB and discard all shadowed entries.  */
375
    tlb_flush (env, flush_global);
376
    env->tlb_in_use = env->nb_tlb;
377
}
378

    
379
static void r4k_mips_tlb_flush_extra (CPUState *env, int first)
380
{
381
    /* Discard entries from env->tlb[first] onwards.  */
382
    while (env->tlb_in_use > first) {
383
        r4k_invalidate_tlb(env, --env->tlb_in_use, 0);
384
    }
385
}
386

    
387
static void r4k_fill_tlb (int idx)
388
{
389
    r4k_tlb_t *tlb;
390

    
391
    /* XXX: detect conflicting TLBs and raise a MCHECK exception when needed */
392
    tlb = &env->mmu.r4k.tlb[idx];
393
    tlb->VPN = env->CP0_EntryHi & ~(target_ulong)0x1FFF;
394
    tlb->ASID = env->CP0_EntryHi & 0xFF;
395
    tlb->PageMask = env->CP0_PageMask;
396
    tlb->G = env->CP0_EntryLo0 & env->CP0_EntryLo1 & 1;
397
    tlb->V0 = (env->CP0_EntryLo0 & 2) != 0;
398
    tlb->D0 = (env->CP0_EntryLo0 & 4) != 0;
399
    tlb->C0 = (env->CP0_EntryLo0 >> 3) & 0x7;
400
    tlb->PFN[0] = (env->CP0_EntryLo0 >> 6) << 12;
401
    tlb->V1 = (env->CP0_EntryLo1 & 2) != 0;
402
    tlb->D1 = (env->CP0_EntryLo1 & 4) != 0;
403
    tlb->C1 = (env->CP0_EntryLo1 >> 3) & 0x7;
404
    tlb->PFN[1] = (env->CP0_EntryLo1 >> 6) << 12;
405
}
406

    
407
void r4k_do_tlbwi (void)
408
{
409
    /* Discard cached TLB entries.  We could avoid doing this if the
410
       tlbwi is just upgrading access permissions on the current entry;
411
       that might be a further win.  */
412
    r4k_mips_tlb_flush_extra (env, env->nb_tlb);
413

    
414
    r4k_invalidate_tlb(env, env->CP0_Index % env->nb_tlb, 0);
415
    r4k_fill_tlb(env->CP0_Index % env->nb_tlb);
416
}
417

    
418
void r4k_do_tlbwr (void)
419
{
420
    int r = cpu_mips_get_random(env);
421

    
422
    r4k_invalidate_tlb(env, r, 1);
423
    r4k_fill_tlb(r);
424
}
425

    
426
void r4k_do_tlbp (void)
427
{
428
    r4k_tlb_t *tlb;
429
    target_ulong tag;
430
    uint8_t ASID;
431
    int i;
432

    
433
    tag = env->CP0_EntryHi & (int32_t)0xFFFFE000;
434
    ASID = env->CP0_EntryHi & 0xFF;
435
    for (i = 0; i < env->nb_tlb; i++) {
436
        tlb = &env->mmu.r4k.tlb[i];
437
        /* Check ASID, virtual page number & size */
438
        if ((tlb->G == 1 || tlb->ASID == ASID) && tlb->VPN == tag) {
439
            /* TLB match */
440
            env->CP0_Index = i;
441
            break;
442
        }
443
    }
444
    if (i == env->nb_tlb) {
445
        /* No match.  Discard any shadow entries, if any of them match.  */
446
        for (i = env->nb_tlb; i < env->tlb_in_use; i++) {
447
            tlb = &env->mmu.r4k.tlb[i];
448

    
449
            /* Check ASID, virtual page number & size */
450
            if ((tlb->G == 1 || tlb->ASID == ASID) && tlb->VPN == tag) {
451
                r4k_mips_tlb_flush_extra (env, i);
452
                break;
453
            }
454
        }
455

    
456
        env->CP0_Index |= 0x80000000;
457
    }
458
}
459

    
460
void r4k_do_tlbr (void)
461
{
462
    r4k_tlb_t *tlb;
463
    uint8_t ASID;
464

    
465
    ASID = env->CP0_EntryHi & 0xFF;
466
    tlb = &env->mmu.r4k.tlb[env->CP0_Index % env->nb_tlb];
467

    
468
    /* If this will change the current ASID, flush qemu's TLB.  */
469
    if (ASID != tlb->ASID)
470
        cpu_mips_tlb_flush (env, 1);
471

    
472
    r4k_mips_tlb_flush_extra(env, env->nb_tlb);
473

    
474
    env->CP0_EntryHi = tlb->VPN | tlb->ASID;
475
    env->CP0_PageMask = tlb->PageMask;
476
    env->CP0_EntryLo0 = tlb->G | (tlb->V0 << 1) | (tlb->D0 << 2) |
477
                        (tlb->C0 << 3) | (tlb->PFN[0] >> 6);
478
    env->CP0_EntryLo1 = tlb->G | (tlb->V1 << 1) | (tlb->D1 << 2) |
479
                        (tlb->C1 << 3) | (tlb->PFN[1] >> 6);
480
}
481

    
482
#endif /* !CONFIG_USER_ONLY */
483

    
484
void dump_ldst (const unsigned char *func)
485
{
486
    if (loglevel)
487
        fprintf(logfile, "%s => " TARGET_FMT_lx " " TARGET_FMT_lx "\n", __func__, T0, T1);
488
}
489

    
490
void dump_sc (void)
491
{
492
    if (loglevel) {
493
        fprintf(logfile, "%s " TARGET_FMT_lx " at " TARGET_FMT_lx " (" TARGET_FMT_lx ")\n", __func__,
494
                T1, T0, env->CP0_LLAddr);
495
    }
496
}
497

    
498
void debug_pre_eret (void)
499
{
500
    fprintf(logfile, "ERET: PC " TARGET_FMT_lx " EPC " TARGET_FMT_lx,
501
            env->PC, env->CP0_EPC);
502
    if (env->CP0_Status & (1 << CP0St_ERL))
503
        fprintf(logfile, " ErrorEPC " TARGET_FMT_lx, env->CP0_ErrorEPC);
504
    if (env->hflags & MIPS_HFLAG_DM)
505
        fprintf(logfile, " DEPC " TARGET_FMT_lx, env->CP0_DEPC);
506
    fputs("\n", logfile);
507
}
508

    
509
void debug_post_eret (void)
510
{
511
    fprintf(logfile, "  =>  PC " TARGET_FMT_lx " EPC " TARGET_FMT_lx,
512
            env->PC, env->CP0_EPC);
513
    if (env->CP0_Status & (1 << CP0St_ERL))
514
        fprintf(logfile, " ErrorEPC " TARGET_FMT_lx, env->CP0_ErrorEPC);
515
    if (env->hflags & MIPS_HFLAG_DM)
516
        fprintf(logfile, " DEPC " TARGET_FMT_lx, env->CP0_DEPC);
517
    if (env->hflags & MIPS_HFLAG_UM)
518
        fputs(", UM\n", logfile);
519
    else
520
        fputs("\n", logfile);
521
}
522

    
523
void do_pmon (int function)
524
{
525
    function /= 2;
526
    switch (function) {
527
    case 2: /* TODO: char inbyte(int waitflag); */
528
        if (env->gpr[4] == 0)
529
            env->gpr[2] = -1;
530
        /* Fall through */
531
    case 11: /* TODO: char inbyte (void); */
532
        env->gpr[2] = -1;
533
        break;
534
    case 3:
535
    case 12:
536
        printf("%c", (char)(env->gpr[4] & 0xFF));
537
        break;
538
    case 17:
539
        break;
540
    case 158:
541
        {
542
            unsigned char *fmt = (void *)(unsigned long)env->gpr[4];
543
            printf("%s", fmt);
544
        }
545
        break;
546
    }
547
}
548

    
549
#if !defined(CONFIG_USER_ONLY) 
550

    
551
static void do_unaligned_access (target_ulong addr, int is_write, int is_user, void *retaddr);
552

    
553
#define MMUSUFFIX _mmu
554
#define ALIGNED_ONLY
555

    
556
#define SHIFT 0
557
#include "softmmu_template.h"
558

    
559
#define SHIFT 1
560
#include "softmmu_template.h"
561

    
562
#define SHIFT 2
563
#include "softmmu_template.h"
564

    
565
#define SHIFT 3
566
#include "softmmu_template.h"
567

    
568
static void do_unaligned_access (target_ulong addr, int is_write, int is_user, void *retaddr)
569
{
570
    env->CP0_BadVAddr = addr;
571
    do_restore_state (retaddr);
572
    do_raise_exception ((is_write == 1) ? EXCP_AdES : EXCP_AdEL);
573
}
574

    
575
void tlb_fill (target_ulong addr, int is_write, int is_user, void *retaddr)
576
{
577
    TranslationBlock *tb;
578
    CPUState *saved_env;
579
    unsigned long pc;
580
    int ret;
581

    
582
    /* XXX: hack to restore env in all cases, even if not called from
583
       generated code */
584
    saved_env = env;
585
    env = cpu_single_env;
586
    ret = cpu_mips_handle_mmu_fault(env, addr, is_write, is_user, 1);
587
    if (ret) {
588
        if (retaddr) {
589
            /* now we have a real cpu fault */
590
            pc = (unsigned long)retaddr;
591
            tb = tb_find_pc(pc);
592
            if (tb) {
593
                /* the PC is inside the translated code. It means that we have
594
                   a virtual CPU fault */
595
                cpu_restore_state(tb, env, pc, NULL);
596
            }
597
        }
598
        do_raise_exception_err(env->exception_index, env->error_code);
599
    }
600
    env = saved_env;
601
}
602

    
603
#endif