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1
/*
2
 *  sparc helpers
3
 *
4
 *  Copyright (c) 2003-2005 Fabrice Bellard
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
 *
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 * 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
 *
16
 * 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., 51 Franklin Street, Fifth Floor, Boston MA  02110-1301 USA
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 */
20
#include <stdarg.h>
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#include <stdlib.h>
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#include <stdio.h>
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#include <string.h>
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#include <inttypes.h>
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#include <signal.h>
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#include <assert.h>
27

    
28
#include "cpu.h"
29
#include "exec-all.h"
30
#include "qemu-common.h"
31

    
32
//#define DEBUG_MMU
33
//#define DEBUG_FEATURES
34

    
35
static int cpu_sparc_find_by_name(sparc_def_t *cpu_def, const char *cpu_model);
36

    
37
/* Sparc MMU emulation */
38

    
39
/* thread support */
40

    
41
static spinlock_t global_cpu_lock = SPIN_LOCK_UNLOCKED;
42

    
43
void cpu_lock(void)
44
{
45
    spin_lock(&global_cpu_lock);
46
}
47

    
48
void cpu_unlock(void)
49
{
50
    spin_unlock(&global_cpu_lock);
51
}
52

    
53
#if defined(CONFIG_USER_ONLY)
54

    
55
int cpu_sparc_handle_mmu_fault(CPUState *env1, target_ulong address, int rw,
56
                               int mmu_idx, int is_softmmu)
57
{
58
    if (rw & 2)
59
        env1->exception_index = TT_TFAULT;
60
    else
61
        env1->exception_index = TT_DFAULT;
62
    return 1;
63
}
64

    
65
#else
66

    
67
#ifndef TARGET_SPARC64
68
/*
69
 * Sparc V8 Reference MMU (SRMMU)
70
 */
71
static const int access_table[8][8] = {
72
    { 0, 0, 0, 0, 8, 0, 12, 12 },
73
    { 0, 0, 0, 0, 8, 0, 0, 0 },
74
    { 8, 8, 0, 0, 0, 8, 12, 12 },
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    { 8, 8, 0, 0, 0, 8, 0, 0 },
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    { 8, 0, 8, 0, 8, 8, 12, 12 },
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    { 8, 0, 8, 0, 8, 0, 8, 0 },
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    { 8, 8, 8, 0, 8, 8, 12, 12 },
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    { 8, 8, 8, 0, 8, 8, 8, 0 }
80
};
81

    
82
static const int perm_table[2][8] = {
83
    {
84
        PAGE_READ,
85
        PAGE_READ | PAGE_WRITE,
86
        PAGE_READ | PAGE_EXEC,
87
        PAGE_READ | PAGE_WRITE | PAGE_EXEC,
88
        PAGE_EXEC,
89
        PAGE_READ | PAGE_WRITE,
90
        PAGE_READ | PAGE_EXEC,
91
        PAGE_READ | PAGE_WRITE | PAGE_EXEC
92
    },
93
    {
94
        PAGE_READ,
95
        PAGE_READ | PAGE_WRITE,
96
        PAGE_READ | PAGE_EXEC,
97
        PAGE_READ | PAGE_WRITE | PAGE_EXEC,
98
        PAGE_EXEC,
99
        PAGE_READ,
100
        0,
101
        0,
102
    }
103
};
104

    
105
static int get_physical_address(CPUState *env, target_phys_addr_t *physical,
106
                                int *prot, int *access_index,
107
                                target_ulong address, int rw, int mmu_idx)
108
{
109
    int access_perms = 0;
110
    target_phys_addr_t pde_ptr;
111
    uint32_t pde;
112
    target_ulong virt_addr;
113
    int error_code = 0, is_dirty, is_user;
114
    unsigned long page_offset;
115

    
116
    is_user = mmu_idx == MMU_USER_IDX;
117
    virt_addr = address & TARGET_PAGE_MASK;
118

    
119
    if ((env->mmuregs[0] & MMU_E) == 0) { /* MMU disabled */
120
        // Boot mode: instruction fetches are taken from PROM
121
        if (rw == 2 && (env->mmuregs[0] & env->def->mmu_bm)) {
122
            *physical = env->prom_addr | (address & 0x7ffffULL);
123
            *prot = PAGE_READ | PAGE_EXEC;
124
            return 0;
125
        }
126
        *physical = address;
127
        *prot = PAGE_READ | PAGE_WRITE | PAGE_EXEC;
128
        return 0;
129
    }
130

    
131
    *access_index = ((rw & 1) << 2) | (rw & 2) | (is_user? 0 : 1);
132
    *physical = 0xffffffffffff0000ULL;
133

    
134
    /* SPARC reference MMU table walk: Context table->L1->L2->PTE */
135
    /* Context base + context number */
136
    pde_ptr = (env->mmuregs[1] << 4) + (env->mmuregs[2] << 2);
137
    pde = ldl_phys(pde_ptr);
138

    
139
    /* Ctx pde */
140
    switch (pde & PTE_ENTRYTYPE_MASK) {
141
    default:
142
    case 0: /* Invalid */
143
        return 1 << 2;
144
    case 2: /* L0 PTE, maybe should not happen? */
145
    case 3: /* Reserved */
146
        return 4 << 2;
147
    case 1: /* L0 PDE */
148
        pde_ptr = ((address >> 22) & ~3) + ((pde & ~3) << 4);
149
        pde = ldl_phys(pde_ptr);
150

    
151
        switch (pde & PTE_ENTRYTYPE_MASK) {
152
        default:
153
        case 0: /* Invalid */
154
            return (1 << 8) | (1 << 2);
155
        case 3: /* Reserved */
156
            return (1 << 8) | (4 << 2);
157
        case 1: /* L1 PDE */
158
            pde_ptr = ((address & 0xfc0000) >> 16) + ((pde & ~3) << 4);
159
            pde = ldl_phys(pde_ptr);
160

    
161
            switch (pde & PTE_ENTRYTYPE_MASK) {
162
            default:
163
            case 0: /* Invalid */
164
                return (2 << 8) | (1 << 2);
165
            case 3: /* Reserved */
166
                return (2 << 8) | (4 << 2);
167
            case 1: /* L2 PDE */
168
                pde_ptr = ((address & 0x3f000) >> 10) + ((pde & ~3) << 4);
169
                pde = ldl_phys(pde_ptr);
170

    
171
                switch (pde & PTE_ENTRYTYPE_MASK) {
172
                default:
173
                case 0: /* Invalid */
174
                    return (3 << 8) | (1 << 2);
175
                case 1: /* PDE, should not happen */
176
                case 3: /* Reserved */
177
                    return (3 << 8) | (4 << 2);
178
                case 2: /* L3 PTE */
179
                    virt_addr = address & TARGET_PAGE_MASK;
180
                    page_offset = (address & TARGET_PAGE_MASK) &
181
                        (TARGET_PAGE_SIZE - 1);
182
                }
183
                break;
184
            case 2: /* L2 PTE */
185
                virt_addr = address & ~0x3ffff;
186
                page_offset = address & 0x3ffff;
187
            }
188
            break;
189
        case 2: /* L1 PTE */
190
            virt_addr = address & ~0xffffff;
191
            page_offset = address & 0xffffff;
192
        }
193
    }
194

    
195
    /* update page modified and dirty bits */
196
    is_dirty = (rw & 1) && !(pde & PG_MODIFIED_MASK);
197
    if (!(pde & PG_ACCESSED_MASK) || is_dirty) {
198
        pde |= PG_ACCESSED_MASK;
199
        if (is_dirty)
200
            pde |= PG_MODIFIED_MASK;
201
        stl_phys_notdirty(pde_ptr, pde);
202
    }
203
    /* check access */
204
    access_perms = (pde & PTE_ACCESS_MASK) >> PTE_ACCESS_SHIFT;
205
    error_code = access_table[*access_index][access_perms];
206
    if (error_code && !((env->mmuregs[0] & MMU_NF) && is_user))
207
        return error_code;
208

    
209
    /* the page can be put in the TLB */
210
    *prot = perm_table[is_user][access_perms];
211
    if (!(pde & PG_MODIFIED_MASK)) {
212
        /* only set write access if already dirty... otherwise wait
213
           for dirty access */
214
        *prot &= ~PAGE_WRITE;
215
    }
216

    
217
    /* Even if large ptes, we map only one 4KB page in the cache to
218
       avoid filling it too fast */
219
    *physical = ((target_phys_addr_t)(pde & PTE_ADDR_MASK) << 4) + page_offset;
220
    return error_code;
221
}
222

    
223
/* Perform address translation */
224
int cpu_sparc_handle_mmu_fault (CPUState *env, target_ulong address, int rw,
225
                              int mmu_idx, int is_softmmu)
226
{
227
    target_phys_addr_t paddr;
228
    target_ulong vaddr;
229
    int error_code = 0, prot, ret = 0, access_index;
230

    
231
    error_code = get_physical_address(env, &paddr, &prot, &access_index,
232
                                      address, rw, mmu_idx);
233
    if (error_code == 0) {
234
        vaddr = address & TARGET_PAGE_MASK;
235
        paddr &= TARGET_PAGE_MASK;
236
#ifdef DEBUG_MMU
237
        printf("Translate at " TARGET_FMT_lx " -> " TARGET_FMT_plx ", vaddr "
238
               TARGET_FMT_lx "\n", address, paddr, vaddr);
239
#endif
240
        ret = tlb_set_page_exec(env, vaddr, paddr, prot, mmu_idx, is_softmmu);
241
        return ret;
242
    }
243

    
244
    if (env->mmuregs[3]) /* Fault status register */
245
        env->mmuregs[3] = 1; /* overflow (not read before another fault) */
246
    env->mmuregs[3] |= (access_index << 5) | error_code | 2;
247
    env->mmuregs[4] = address; /* Fault address register */
248

    
249
    if ((env->mmuregs[0] & MMU_NF) || env->psret == 0)  {
250
        // No fault mode: if a mapping is available, just override
251
        // permissions. If no mapping is available, redirect accesses to
252
        // neverland. Fake/overridden mappings will be flushed when
253
        // switching to normal mode.
254
        vaddr = address & TARGET_PAGE_MASK;
255
        prot = PAGE_READ | PAGE_WRITE | PAGE_EXEC;
256
        ret = tlb_set_page_exec(env, vaddr, paddr, prot, mmu_idx, is_softmmu);
257
        return ret;
258
    } else {
259
        if (rw & 2)
260
            env->exception_index = TT_TFAULT;
261
        else
262
            env->exception_index = TT_DFAULT;
263
        return 1;
264
    }
265
}
266

    
267
target_ulong mmu_probe(CPUState *env, target_ulong address, int mmulev)
268
{
269
    target_phys_addr_t pde_ptr;
270
    uint32_t pde;
271

    
272
    /* Context base + context number */
273
    pde_ptr = (target_phys_addr_t)(env->mmuregs[1] << 4) +
274
        (env->mmuregs[2] << 2);
275
    pde = ldl_phys(pde_ptr);
276

    
277
    switch (pde & PTE_ENTRYTYPE_MASK) {
278
    default:
279
    case 0: /* Invalid */
280
    case 2: /* PTE, maybe should not happen? */
281
    case 3: /* Reserved */
282
        return 0;
283
    case 1: /* L1 PDE */
284
        if (mmulev == 3)
285
            return pde;
286
        pde_ptr = ((address >> 22) & ~3) + ((pde & ~3) << 4);
287
        pde = ldl_phys(pde_ptr);
288

    
289
        switch (pde & PTE_ENTRYTYPE_MASK) {
290
        default:
291
        case 0: /* Invalid */
292
        case 3: /* Reserved */
293
            return 0;
294
        case 2: /* L1 PTE */
295
            return pde;
296
        case 1: /* L2 PDE */
297
            if (mmulev == 2)
298
                return pde;
299
            pde_ptr = ((address & 0xfc0000) >> 16) + ((pde & ~3) << 4);
300
            pde = ldl_phys(pde_ptr);
301

    
302
            switch (pde & PTE_ENTRYTYPE_MASK) {
303
            default:
304
            case 0: /* Invalid */
305
            case 3: /* Reserved */
306
                return 0;
307
            case 2: /* L2 PTE */
308
                return pde;
309
            case 1: /* L3 PDE */
310
                if (mmulev == 1)
311
                    return pde;
312
                pde_ptr = ((address & 0x3f000) >> 10) + ((pde & ~3) << 4);
313
                pde = ldl_phys(pde_ptr);
314

    
315
                switch (pde & PTE_ENTRYTYPE_MASK) {
316
                default:
317
                case 0: /* Invalid */
318
                case 1: /* PDE, should not happen */
319
                case 3: /* Reserved */
320
                    return 0;
321
                case 2: /* L3 PTE */
322
                    return pde;
323
                }
324
            }
325
        }
326
    }
327
    return 0;
328
}
329

    
330
#ifdef DEBUG_MMU
331
void dump_mmu(CPUState *env)
332
{
333
    target_ulong va, va1, va2;
334
    unsigned int n, m, o;
335
    target_phys_addr_t pde_ptr, pa;
336
    uint32_t pde;
337

    
338
    printf("MMU dump:\n");
339
    pde_ptr = (env->mmuregs[1] << 4) + (env->mmuregs[2] << 2);
340
    pde = ldl_phys(pde_ptr);
341
    printf("Root ptr: " TARGET_FMT_plx ", ctx: %d\n",
342
           (target_phys_addr_t)env->mmuregs[1] << 4, env->mmuregs[2]);
343
    for (n = 0, va = 0; n < 256; n++, va += 16 * 1024 * 1024) {
344
        pde = mmu_probe(env, va, 2);
345
        if (pde) {
346
            pa = cpu_get_phys_page_debug(env, va);
347
            printf("VA: " TARGET_FMT_lx ", PA: " TARGET_FMT_plx
348
                   " PDE: " TARGET_FMT_lx "\n", va, pa, pde);
349
            for (m = 0, va1 = va; m < 64; m++, va1 += 256 * 1024) {
350
                pde = mmu_probe(env, va1, 1);
351
                if (pde) {
352
                    pa = cpu_get_phys_page_debug(env, va1);
353
                    printf(" VA: " TARGET_FMT_lx ", PA: " TARGET_FMT_plx
354
                           " PDE: " TARGET_FMT_lx "\n", va1, pa, pde);
355
                    for (o = 0, va2 = va1; o < 64; o++, va2 += 4 * 1024) {
356
                        pde = mmu_probe(env, va2, 0);
357
                        if (pde) {
358
                            pa = cpu_get_phys_page_debug(env, va2);
359
                            printf("  VA: " TARGET_FMT_lx ", PA: "
360
                                   TARGET_FMT_plx " PTE: " TARGET_FMT_lx "\n",
361
                                   va2, pa, pde);
362
                        }
363
                    }
364
                }
365
            }
366
        }
367
    }
368
    printf("MMU dump ends\n");
369
}
370
#endif /* DEBUG_MMU */
371

    
372
#else /* !TARGET_SPARC64 */
373
/*
374
 * UltraSparc IIi I/DMMUs
375
 */
376
static int get_physical_address_data(CPUState *env,
377
                                     target_phys_addr_t *physical, int *prot,
378
                                     target_ulong address, int rw, int is_user)
379
{
380
    target_ulong mask;
381
    unsigned int i;
382

    
383
    if ((env->lsu & DMMU_E) == 0) { /* DMMU disabled */
384
        *physical = address;
385
        *prot = PAGE_READ | PAGE_WRITE;
386
        return 0;
387
    }
388

    
389
    for (i = 0; i < 64; i++) {
390
        switch ((env->dtlb_tte[i] >> 61) & 3) {
391
        default:
392
        case 0x0: // 8k
393
            mask = 0xffffffffffffe000ULL;
394
            break;
395
        case 0x1: // 64k
396
            mask = 0xffffffffffff0000ULL;
397
            break;
398
        case 0x2: // 512k
399
            mask = 0xfffffffffff80000ULL;
400
            break;
401
        case 0x3: // 4M
402
            mask = 0xffffffffffc00000ULL;
403
            break;
404
        }
405
        // ctx match, vaddr match, valid?
406
        if (env->dmmuregs[1] == (env->dtlb_tag[i] & 0x1fff) &&
407
            (address & mask) == (env->dtlb_tag[i] & mask) &&
408
            (env->dtlb_tte[i] & 0x8000000000000000ULL)) {
409
            // access ok?
410
            if (((env->dtlb_tte[i] & 0x4) && is_user) ||
411
                (!(env->dtlb_tte[i] & 0x2) && (rw == 1))) {
412
                if (env->dmmuregs[3]) /* Fault status register */
413
                    env->dmmuregs[3] = 2; /* overflow (not read before
414
                                             another fault) */
415
                env->dmmuregs[3] |= (is_user << 3) | ((rw == 1) << 2) | 1;
416
                env->dmmuregs[4] = address; /* Fault address register */
417
                env->exception_index = TT_DFAULT;
418
#ifdef DEBUG_MMU
419
                printf("DFAULT at 0x%" PRIx64 "\n", address);
420
#endif
421
                return 1;
422
            }
423
            *physical = ((env->dtlb_tte[i] & mask) | (address & ~mask)) &
424
                        0x1ffffffe000ULL;
425
            *prot = PAGE_READ;
426
            if (env->dtlb_tte[i] & 0x2)
427
                *prot |= PAGE_WRITE;
428
            return 0;
429
        }
430
    }
431
#ifdef DEBUG_MMU
432
    printf("DMISS at 0x%" PRIx64 "\n", address);
433
#endif
434
    env->dmmuregs[6] = (address & ~0x1fffULL) | (env->dmmuregs[1] & 0x1fff);
435
    env->exception_index = TT_DMISS;
436
    return 1;
437
}
438

    
439
static int get_physical_address_code(CPUState *env,
440
                                     target_phys_addr_t *physical, int *prot,
441
                                     target_ulong address, int is_user)
442
{
443
    target_ulong mask;
444
    unsigned int i;
445

    
446
    if ((env->lsu & IMMU_E) == 0) { /* IMMU disabled */
447
        *physical = address;
448
        *prot = PAGE_EXEC;
449
        return 0;
450
    }
451

    
452
    for (i = 0; i < 64; i++) {
453
        switch ((env->itlb_tte[i] >> 61) & 3) {
454
        default:
455
        case 0x0: // 8k
456
            mask = 0xffffffffffffe000ULL;
457
            break;
458
        case 0x1: // 64k
459
            mask = 0xffffffffffff0000ULL;
460
            break;
461
        case 0x2: // 512k
462
            mask = 0xfffffffffff80000ULL;
463
            break;
464
        case 0x3: // 4M
465
            mask = 0xffffffffffc00000ULL;
466
                break;
467
        }
468
        // ctx match, vaddr match, valid?
469
        if (env->dmmuregs[1] == (env->itlb_tag[i] & 0x1fff) &&
470
            (address & mask) == (env->itlb_tag[i] & mask) &&
471
            (env->itlb_tte[i] & 0x8000000000000000ULL)) {
472
            // access ok?
473
            if ((env->itlb_tte[i] & 0x4) && is_user) {
474
                if (env->immuregs[3]) /* Fault status register */
475
                    env->immuregs[3] = 2; /* overflow (not read before
476
                                             another fault) */
477
                env->immuregs[3] |= (is_user << 3) | 1;
478
                env->exception_index = TT_TFAULT;
479
#ifdef DEBUG_MMU
480
                printf("TFAULT at 0x%" PRIx64 "\n", address);
481
#endif
482
                return 1;
483
            }
484
            *physical = ((env->itlb_tte[i] & mask) | (address & ~mask)) &
485
                        0x1ffffffe000ULL;
486
            *prot = PAGE_EXEC;
487
            return 0;
488
        }
489
    }
490
#ifdef DEBUG_MMU
491
    printf("TMISS at 0x%" PRIx64 "\n", address);
492
#endif
493
    /* Context is stored in DMMU (dmmuregs[1]) also for IMMU */
494
    env->immuregs[6] = (address & ~0x1fffULL) | (env->dmmuregs[1] & 0x1fff);
495
    env->exception_index = TT_TMISS;
496
    return 1;
497
}
498

    
499
static int get_physical_address(CPUState *env, target_phys_addr_t *physical,
500
                                int *prot, int *access_index,
501
                                target_ulong address, int rw, int mmu_idx)
502
{
503
    int is_user = mmu_idx == MMU_USER_IDX;
504

    
505
    if (rw == 2)
506
        return get_physical_address_code(env, physical, prot, address,
507
                                         is_user);
508
    else
509
        return get_physical_address_data(env, physical, prot, address, rw,
510
                                         is_user);
511
}
512

    
513
/* Perform address translation */
514
int cpu_sparc_handle_mmu_fault (CPUState *env, target_ulong address, int rw,
515
                              int mmu_idx, int is_softmmu)
516
{
517
    target_ulong virt_addr, vaddr;
518
    target_phys_addr_t paddr;
519
    int error_code = 0, prot, ret = 0, access_index;
520

    
521
    error_code = get_physical_address(env, &paddr, &prot, &access_index,
522
                                      address, rw, mmu_idx);
523
    if (error_code == 0) {
524
        virt_addr = address & TARGET_PAGE_MASK;
525
        vaddr = virt_addr + ((address & TARGET_PAGE_MASK) &
526
                             (TARGET_PAGE_SIZE - 1));
527
#ifdef DEBUG_MMU
528
        printf("Translate at 0x%" PRIx64 " -> 0x%" PRIx64 ", vaddr 0x%" PRIx64
529
               "\n", address, paddr, vaddr);
530
#endif
531
        ret = tlb_set_page_exec(env, vaddr, paddr, prot, mmu_idx, is_softmmu);
532
        return ret;
533
    }
534
    // XXX
535
    return 1;
536
}
537

    
538
#ifdef DEBUG_MMU
539
void dump_mmu(CPUState *env)
540
{
541
    unsigned int i;
542
    const char *mask;
543

    
544
    printf("MMU contexts: Primary: %" PRId64 ", Secondary: %" PRId64 "\n",
545
           env->dmmuregs[1], env->dmmuregs[2]);
546
    if ((env->lsu & DMMU_E) == 0) {
547
        printf("DMMU disabled\n");
548
    } else {
549
        printf("DMMU dump:\n");
550
        for (i = 0; i < 64; i++) {
551
            switch ((env->dtlb_tte[i] >> 61) & 3) {
552
            default:
553
            case 0x0:
554
                mask = "  8k";
555
                break;
556
            case 0x1:
557
                mask = " 64k";
558
                break;
559
            case 0x2:
560
                mask = "512k";
561
                break;
562
            case 0x3:
563
                mask = "  4M";
564
                break;
565
            }
566
            if ((env->dtlb_tte[i] & 0x8000000000000000ULL) != 0) {
567
                printf("VA: " TARGET_FMT_lx ", PA: " TARGET_FMT_lx
568
                       ", %s, %s, %s, %s, ctx %" PRId64 "\n",
569
                       env->dtlb_tag[i] & ~0x1fffULL,
570
                       env->dtlb_tte[i] & 0x1ffffffe000ULL,
571
                       mask,
572
                       env->dtlb_tte[i] & 0x4? "priv": "user",
573
                       env->dtlb_tte[i] & 0x2? "RW": "RO",
574
                       env->dtlb_tte[i] & 0x40? "locked": "unlocked",
575
                       env->dtlb_tag[i] & 0x1fffULL);
576
            }
577
        }
578
    }
579
    if ((env->lsu & IMMU_E) == 0) {
580
        printf("IMMU disabled\n");
581
    } else {
582
        printf("IMMU dump:\n");
583
        for (i = 0; i < 64; i++) {
584
            switch ((env->itlb_tte[i] >> 61) & 3) {
585
            default:
586
            case 0x0:
587
                mask = "  8k";
588
                break;
589
            case 0x1:
590
                mask = " 64k";
591
                break;
592
            case 0x2:
593
                mask = "512k";
594
                break;
595
            case 0x3:
596
                mask = "  4M";
597
                break;
598
            }
599
            if ((env->itlb_tte[i] & 0x8000000000000000ULL) != 0) {
600
                printf("VA: " TARGET_FMT_lx ", PA: " TARGET_FMT_lx
601
                       ", %s, %s, %s, ctx %" PRId64 "\n",
602
                       env->itlb_tag[i] & ~0x1fffULL,
603
                       env->itlb_tte[i] & 0x1ffffffe000ULL,
604
                       mask,
605
                       env->itlb_tte[i] & 0x4? "priv": "user",
606
                       env->itlb_tte[i] & 0x40? "locked": "unlocked",
607
                       env->itlb_tag[i] & 0x1fffULL);
608
            }
609
        }
610
    }
611
}
612
#endif /* DEBUG_MMU */
613

    
614
#endif /* TARGET_SPARC64 */
615
#endif /* !CONFIG_USER_ONLY */
616

    
617

    
618
#if defined(CONFIG_USER_ONLY)
619
target_phys_addr_t cpu_get_phys_page_debug(CPUState *env, target_ulong addr)
620
{
621
    return addr;
622
}
623

    
624
#else
625
target_phys_addr_t cpu_get_phys_page_debug(CPUState *env, target_ulong addr)
626
{
627
    target_phys_addr_t phys_addr;
628
    int prot, access_index;
629

    
630
    if (get_physical_address(env, &phys_addr, &prot, &access_index, addr, 2,
631
                             MMU_KERNEL_IDX) != 0)
632
        if (get_physical_address(env, &phys_addr, &prot, &access_index, addr,
633
                                 0, MMU_KERNEL_IDX) != 0)
634
            return -1;
635
    if (cpu_get_physical_page_desc(phys_addr) == IO_MEM_UNASSIGNED)
636
        return -1;
637
    return phys_addr;
638
}
639
#endif
640

    
641
void cpu_reset(CPUSPARCState *env)
642
{
643
    if (qemu_loglevel_mask(CPU_LOG_RESET)) {
644
        qemu_log("CPU Reset (CPU %d)\n", env->cpu_index);
645
        log_cpu_state(env, 0);
646
    }
647

    
648
    tlb_flush(env, 1);
649
    env->cwp = 0;
650
    env->wim = 1;
651
    env->regwptr = env->regbase + (env->cwp * 16);
652
#if defined(CONFIG_USER_ONLY)
653
#ifdef TARGET_SPARC64
654
    env->cleanwin = env->nwindows - 2;
655
    env->cansave = env->nwindows - 2;
656
    env->pstate = PS_RMO | PS_PEF | PS_IE;
657
    env->asi = 0x82; // Primary no-fault
658
#endif
659
#else
660
    env->psret = 0;
661
    env->psrs = 1;
662
    env->psrps = 1;
663
#ifdef TARGET_SPARC64
664
    env->pstate = PS_PRIV;
665
    env->hpstate = HS_PRIV;
666
    env->tsptr = &env->ts[env->tl & MAXTL_MASK];
667
    env->lsu = 0;
668
#else
669
    env->mmuregs[0] &= ~(MMU_E | MMU_NF);
670
    env->mmuregs[0] |= env->def->mmu_bm;
671
#endif
672
    env->pc = 0;
673
    env->npc = env->pc + 4;
674
#endif
675
}
676

    
677
static int cpu_sparc_register(CPUSPARCState *env, const char *cpu_model)
678
{
679
    sparc_def_t def1, *def = &def1;
680

    
681
    if (cpu_sparc_find_by_name(def, cpu_model) < 0)
682
        return -1;
683

    
684
    env->def = qemu_mallocz(sizeof(*def));
685
    memcpy(env->def, def, sizeof(*def));
686
#if defined(CONFIG_USER_ONLY)
687
    if ((env->def->features & CPU_FEATURE_FLOAT))
688
        env->def->features |= CPU_FEATURE_FLOAT128;
689
#endif
690
    env->cpu_model_str = cpu_model;
691
    env->version = def->iu_version;
692
    env->fsr = def->fpu_version;
693
    env->nwindows = def->nwindows;
694
#if !defined(TARGET_SPARC64)
695
    env->mmuregs[0] |= def->mmu_version;
696
    cpu_sparc_set_id(env, 0);
697
    env->mxccregs[7] |= def->mxcc_version;
698
#else
699
    env->mmu_version = def->mmu_version;
700
    env->maxtl = def->maxtl;
701
    env->version |= def->maxtl << 8;
702
    env->version |= def->nwindows - 1;
703
#endif
704
    return 0;
705
}
706

    
707
static void cpu_sparc_close(CPUSPARCState *env)
708
{
709
    free(env->def);
710
    free(env);
711
}
712

    
713
CPUSPARCState *cpu_sparc_init(const char *cpu_model)
714
{
715
    CPUSPARCState *env;
716

    
717
    env = qemu_mallocz(sizeof(CPUSPARCState));
718
    cpu_exec_init(env);
719

    
720
    gen_intermediate_code_init(env);
721

    
722
    if (cpu_sparc_register(env, cpu_model) < 0) {
723
        cpu_sparc_close(env);
724
        return NULL;
725
    }
726
    cpu_reset(env);
727
    qemu_init_vcpu(env);
728

    
729
    return env;
730
}
731

    
732
void cpu_sparc_set_id(CPUSPARCState *env, unsigned int cpu)
733
{
734
#if !defined(TARGET_SPARC64)
735
    env->mxccregs[7] = ((cpu + 8) & 0xf) << 24;
736
#endif
737
}
738

    
739
static const sparc_def_t sparc_defs[] = {
740
#ifdef TARGET_SPARC64
741
    {
742
        .name = "Fujitsu Sparc64",
743
        .iu_version = ((0x04ULL << 48) | (0x02ULL << 32) | (0ULL << 24)),
744
        .fpu_version = 0x00000000,
745
        .mmu_version = mmu_us_12,
746
        .nwindows = 4,
747
        .maxtl = 4,
748
        .features = CPU_DEFAULT_FEATURES,
749
    },
750
    {
751
        .name = "Fujitsu Sparc64 III",
752
        .iu_version = ((0x04ULL << 48) | (0x03ULL << 32) | (0ULL << 24)),
753
        .fpu_version = 0x00000000,
754
        .mmu_version = mmu_us_12,
755
        .nwindows = 5,
756
        .maxtl = 4,
757
        .features = CPU_DEFAULT_FEATURES,
758
    },
759
    {
760
        .name = "Fujitsu Sparc64 IV",
761
        .iu_version = ((0x04ULL << 48) | (0x04ULL << 32) | (0ULL << 24)),
762
        .fpu_version = 0x00000000,
763
        .mmu_version = mmu_us_12,
764
        .nwindows = 8,
765
        .maxtl = 5,
766
        .features = CPU_DEFAULT_FEATURES,
767
    },
768
    {
769
        .name = "Fujitsu Sparc64 V",
770
        .iu_version = ((0x04ULL << 48) | (0x05ULL << 32) | (0x51ULL << 24)),
771
        .fpu_version = 0x00000000,
772
        .mmu_version = mmu_us_12,
773
        .nwindows = 8,
774
        .maxtl = 5,
775
        .features = CPU_DEFAULT_FEATURES,
776
    },
777
    {
778
        .name = "TI UltraSparc I",
779
        .iu_version = ((0x17ULL << 48) | (0x10ULL << 32) | (0x40ULL << 24)),
780
        .fpu_version = 0x00000000,
781
        .mmu_version = mmu_us_12,
782
        .nwindows = 8,
783
        .maxtl = 5,
784
        .features = CPU_DEFAULT_FEATURES,
785
    },
786
    {
787
        .name = "TI UltraSparc II",
788
        .iu_version = ((0x17ULL << 48) | (0x11ULL << 32) | (0x20ULL << 24)),
789
        .fpu_version = 0x00000000,
790
        .mmu_version = mmu_us_12,
791
        .nwindows = 8,
792
        .maxtl = 5,
793
        .features = CPU_DEFAULT_FEATURES,
794
    },
795
    {
796
        .name = "TI UltraSparc IIi",
797
        .iu_version = ((0x17ULL << 48) | (0x12ULL << 32) | (0x91ULL << 24)),
798
        .fpu_version = 0x00000000,
799
        .mmu_version = mmu_us_12,
800
        .nwindows = 8,
801
        .maxtl = 5,
802
        .features = CPU_DEFAULT_FEATURES,
803
    },
804
    {
805
        .name = "TI UltraSparc IIe",
806
        .iu_version = ((0x17ULL << 48) | (0x13ULL << 32) | (0x14ULL << 24)),
807
        .fpu_version = 0x00000000,
808
        .mmu_version = mmu_us_12,
809
        .nwindows = 8,
810
        .maxtl = 5,
811
        .features = CPU_DEFAULT_FEATURES,
812
    },
813
    {
814
        .name = "Sun UltraSparc III",
815
        .iu_version = ((0x3eULL << 48) | (0x14ULL << 32) | (0x34ULL << 24)),
816
        .fpu_version = 0x00000000,
817
        .mmu_version = mmu_us_12,
818
        .nwindows = 8,
819
        .maxtl = 5,
820
        .features = CPU_DEFAULT_FEATURES,
821
    },
822
    {
823
        .name = "Sun UltraSparc III Cu",
824
        .iu_version = ((0x3eULL << 48) | (0x15ULL << 32) | (0x41ULL << 24)),
825
        .fpu_version = 0x00000000,
826
        .mmu_version = mmu_us_3,
827
        .nwindows = 8,
828
        .maxtl = 5,
829
        .features = CPU_DEFAULT_FEATURES,
830
    },
831
    {
832
        .name = "Sun UltraSparc IIIi",
833
        .iu_version = ((0x3eULL << 48) | (0x16ULL << 32) | (0x34ULL << 24)),
834
        .fpu_version = 0x00000000,
835
        .mmu_version = mmu_us_12,
836
        .nwindows = 8,
837
        .maxtl = 5,
838
        .features = CPU_DEFAULT_FEATURES,
839
    },
840
    {
841
        .name = "Sun UltraSparc IV",
842
        .iu_version = ((0x3eULL << 48) | (0x18ULL << 32) | (0x31ULL << 24)),
843
        .fpu_version = 0x00000000,
844
        .mmu_version = mmu_us_4,
845
        .nwindows = 8,
846
        .maxtl = 5,
847
        .features = CPU_DEFAULT_FEATURES,
848
    },
849
    {
850
        .name = "Sun UltraSparc IV+",
851
        .iu_version = ((0x3eULL << 48) | (0x19ULL << 32) | (0x22ULL << 24)),
852
        .fpu_version = 0x00000000,
853
        .mmu_version = mmu_us_12,
854
        .nwindows = 8,
855
        .maxtl = 5,
856
        .features = CPU_DEFAULT_FEATURES | CPU_FEATURE_CMT,
857
    },
858
    {
859
        .name = "Sun UltraSparc IIIi+",
860
        .iu_version = ((0x3eULL << 48) | (0x22ULL << 32) | (0ULL << 24)),
861
        .fpu_version = 0x00000000,
862
        .mmu_version = mmu_us_3,
863
        .nwindows = 8,
864
        .maxtl = 5,
865
        .features = CPU_DEFAULT_FEATURES,
866
    },
867
    {
868
        .name = "Sun UltraSparc T1",
869
        // defined in sparc_ifu_fdp.v and ctu.h
870
        .iu_version = ((0x3eULL << 48) | (0x23ULL << 32) | (0x02ULL << 24)),
871
        .fpu_version = 0x00000000,
872
        .mmu_version = mmu_sun4v,
873
        .nwindows = 8,
874
        .maxtl = 6,
875
        .features = CPU_DEFAULT_FEATURES | CPU_FEATURE_HYPV | CPU_FEATURE_CMT
876
        | CPU_FEATURE_GL,
877
    },
878
    {
879
        .name = "Sun UltraSparc T2",
880
        // defined in tlu_asi_ctl.v and n2_revid_cust.v
881
        .iu_version = ((0x3eULL << 48) | (0x24ULL << 32) | (0x02ULL << 24)),
882
        .fpu_version = 0x00000000,
883
        .mmu_version = mmu_sun4v,
884
        .nwindows = 8,
885
        .maxtl = 6,
886
        .features = CPU_DEFAULT_FEATURES | CPU_FEATURE_HYPV | CPU_FEATURE_CMT
887
        | CPU_FEATURE_GL,
888
    },
889
    {
890
        .name = "NEC UltraSparc I",
891
        .iu_version = ((0x22ULL << 48) | (0x10ULL << 32) | (0x40ULL << 24)),
892
        .fpu_version = 0x00000000,
893
        .mmu_version = mmu_us_12,
894
        .nwindows = 8,
895
        .maxtl = 5,
896
        .features = CPU_DEFAULT_FEATURES,
897
    },
898
#else
899
    {
900
        .name = "Fujitsu MB86900",
901
        .iu_version = 0x00 << 24, /* Impl 0, ver 0 */
902
        .fpu_version = 4 << 17, /* FPU version 4 (Meiko) */
903
        .mmu_version = 0x00 << 24, /* Impl 0, ver 0 */
904
        .mmu_bm = 0x00004000,
905
        .mmu_ctpr_mask = 0x007ffff0,
906
        .mmu_cxr_mask = 0x0000003f,
907
        .mmu_sfsr_mask = 0xffffffff,
908
        .mmu_trcr_mask = 0xffffffff,
909
        .nwindows = 7,
910
        .features = CPU_FEATURE_FLOAT | CPU_FEATURE_FSMULD,
911
    },
912
    {
913
        .name = "Fujitsu MB86904",
914
        .iu_version = 0x04 << 24, /* Impl 0, ver 4 */
915
        .fpu_version = 4 << 17, /* FPU version 4 (Meiko) */
916
        .mmu_version = 0x04 << 24, /* Impl 0, ver 4 */
917
        .mmu_bm = 0x00004000,
918
        .mmu_ctpr_mask = 0x00ffffc0,
919
        .mmu_cxr_mask = 0x000000ff,
920
        .mmu_sfsr_mask = 0x00016fff,
921
        .mmu_trcr_mask = 0x00ffffff,
922
        .nwindows = 8,
923
        .features = CPU_DEFAULT_FEATURES,
924
    },
925
    {
926
        .name = "Fujitsu MB86907",
927
        .iu_version = 0x05 << 24, /* Impl 0, ver 5 */
928
        .fpu_version = 4 << 17, /* FPU version 4 (Meiko) */
929
        .mmu_version = 0x05 << 24, /* Impl 0, ver 5 */
930
        .mmu_bm = 0x00004000,
931
        .mmu_ctpr_mask = 0xffffffc0,
932
        .mmu_cxr_mask = 0x000000ff,
933
        .mmu_sfsr_mask = 0x00016fff,
934
        .mmu_trcr_mask = 0xffffffff,
935
        .nwindows = 8,
936
        .features = CPU_DEFAULT_FEATURES,
937
    },
938
    {
939
        .name = "LSI L64811",
940
        .iu_version = 0x10 << 24, /* Impl 1, ver 0 */
941
        .fpu_version = 1 << 17, /* FPU version 1 (LSI L64814) */
942
        .mmu_version = 0x10 << 24,
943
        .mmu_bm = 0x00004000,
944
        .mmu_ctpr_mask = 0x007ffff0,
945
        .mmu_cxr_mask = 0x0000003f,
946
        .mmu_sfsr_mask = 0xffffffff,
947
        .mmu_trcr_mask = 0xffffffff,
948
        .nwindows = 8,
949
        .features = CPU_FEATURE_FLOAT | CPU_FEATURE_SWAP | CPU_FEATURE_FSQRT |
950
        CPU_FEATURE_FSMULD,
951
    },
952
    {
953
        .name = "Cypress CY7C601",
954
        .iu_version = 0x11 << 24, /* Impl 1, ver 1 */
955
        .fpu_version = 3 << 17, /* FPU version 3 (Cypress CY7C602) */
956
        .mmu_version = 0x10 << 24,
957
        .mmu_bm = 0x00004000,
958
        .mmu_ctpr_mask = 0x007ffff0,
959
        .mmu_cxr_mask = 0x0000003f,
960
        .mmu_sfsr_mask = 0xffffffff,
961
        .mmu_trcr_mask = 0xffffffff,
962
        .nwindows = 8,
963
        .features = CPU_FEATURE_FLOAT | CPU_FEATURE_SWAP | CPU_FEATURE_FSQRT |
964
        CPU_FEATURE_FSMULD,
965
    },
966
    {
967
        .name = "Cypress CY7C611",
968
        .iu_version = 0x13 << 24, /* Impl 1, ver 3 */
969
        .fpu_version = 3 << 17, /* FPU version 3 (Cypress CY7C602) */
970
        .mmu_version = 0x10 << 24,
971
        .mmu_bm = 0x00004000,
972
        .mmu_ctpr_mask = 0x007ffff0,
973
        .mmu_cxr_mask = 0x0000003f,
974
        .mmu_sfsr_mask = 0xffffffff,
975
        .mmu_trcr_mask = 0xffffffff,
976
        .nwindows = 8,
977
        .features = CPU_FEATURE_FLOAT | CPU_FEATURE_SWAP | CPU_FEATURE_FSQRT |
978
        CPU_FEATURE_FSMULD,
979
    },
980
    {
981
        .name = "TI MicroSparc I",
982
        .iu_version = 0x41000000,
983
        .fpu_version = 4 << 17,
984
        .mmu_version = 0x41000000,
985
        .mmu_bm = 0x00004000,
986
        .mmu_ctpr_mask = 0x007ffff0,
987
        .mmu_cxr_mask = 0x0000003f,
988
        .mmu_sfsr_mask = 0x00016fff,
989
        .mmu_trcr_mask = 0x0000003f,
990
        .nwindows = 7,
991
        .features = CPU_FEATURE_FLOAT | CPU_FEATURE_SWAP | CPU_FEATURE_MUL |
992
        CPU_FEATURE_DIV | CPU_FEATURE_FLUSH | CPU_FEATURE_FSQRT |
993
        CPU_FEATURE_FMUL,
994
    },
995
    {
996
        .name = "TI MicroSparc II",
997
        .iu_version = 0x42000000,
998
        .fpu_version = 4 << 17,
999
        .mmu_version = 0x02000000,
1000
        .mmu_bm = 0x00004000,
1001
        .mmu_ctpr_mask = 0x00ffffc0,
1002
        .mmu_cxr_mask = 0x000000ff,
1003
        .mmu_sfsr_mask = 0x00016fff,
1004
        .mmu_trcr_mask = 0x00ffffff,
1005
        .nwindows = 8,
1006
        .features = CPU_DEFAULT_FEATURES,
1007
    },
1008
    {
1009
        .name = "TI MicroSparc IIep",
1010
        .iu_version = 0x42000000,
1011
        .fpu_version = 4 << 17,
1012
        .mmu_version = 0x04000000,
1013
        .mmu_bm = 0x00004000,
1014
        .mmu_ctpr_mask = 0x00ffffc0,
1015
        .mmu_cxr_mask = 0x000000ff,
1016
        .mmu_sfsr_mask = 0x00016bff,
1017
        .mmu_trcr_mask = 0x00ffffff,
1018
        .nwindows = 8,
1019
        .features = CPU_DEFAULT_FEATURES,
1020
    },
1021
    {
1022
        .name = "TI SuperSparc 40", // STP1020NPGA
1023
        .iu_version = 0x41000000, // SuperSPARC 2.x
1024
        .fpu_version = 0 << 17,
1025
        .mmu_version = 0x00000800, // SuperSPARC 2.x, no MXCC
1026
        .mmu_bm = 0x00002000,
1027
        .mmu_ctpr_mask = 0xffffffc0,
1028
        .mmu_cxr_mask = 0x0000ffff,
1029
        .mmu_sfsr_mask = 0xffffffff,
1030
        .mmu_trcr_mask = 0xffffffff,
1031
        .nwindows = 8,
1032
        .features = CPU_DEFAULT_FEATURES,
1033
    },
1034
    {
1035
        .name = "TI SuperSparc 50", // STP1020PGA
1036
        .iu_version = 0x40000000, // SuperSPARC 3.x
1037
        .fpu_version = 0 << 17,
1038
        .mmu_version = 0x01000800, // SuperSPARC 3.x, no MXCC
1039
        .mmu_bm = 0x00002000,
1040
        .mmu_ctpr_mask = 0xffffffc0,
1041
        .mmu_cxr_mask = 0x0000ffff,
1042
        .mmu_sfsr_mask = 0xffffffff,
1043
        .mmu_trcr_mask = 0xffffffff,
1044
        .nwindows = 8,
1045
        .features = CPU_DEFAULT_FEATURES,
1046
    },
1047
    {
1048
        .name = "TI SuperSparc 51",
1049
        .iu_version = 0x40000000, // SuperSPARC 3.x
1050
        .fpu_version = 0 << 17,
1051
        .mmu_version = 0x01000000, // SuperSPARC 3.x, MXCC
1052
        .mmu_bm = 0x00002000,
1053
        .mmu_ctpr_mask = 0xffffffc0,
1054
        .mmu_cxr_mask = 0x0000ffff,
1055
        .mmu_sfsr_mask = 0xffffffff,
1056
        .mmu_trcr_mask = 0xffffffff,
1057
        .mxcc_version = 0x00000104,
1058
        .nwindows = 8,
1059
        .features = CPU_DEFAULT_FEATURES,
1060
    },
1061
    {
1062
        .name = "TI SuperSparc 60", // STP1020APGA
1063
        .iu_version = 0x40000000, // SuperSPARC 3.x
1064
        .fpu_version = 0 << 17,
1065
        .mmu_version = 0x01000800, // SuperSPARC 3.x, no MXCC
1066
        .mmu_bm = 0x00002000,
1067
        .mmu_ctpr_mask = 0xffffffc0,
1068
        .mmu_cxr_mask = 0x0000ffff,
1069
        .mmu_sfsr_mask = 0xffffffff,
1070
        .mmu_trcr_mask = 0xffffffff,
1071
        .nwindows = 8,
1072
        .features = CPU_DEFAULT_FEATURES,
1073
    },
1074
    {
1075
        .name = "TI SuperSparc 61",
1076
        .iu_version = 0x44000000, // SuperSPARC 3.x
1077
        .fpu_version = 0 << 17,
1078
        .mmu_version = 0x01000000, // SuperSPARC 3.x, MXCC
1079
        .mmu_bm = 0x00002000,
1080
        .mmu_ctpr_mask = 0xffffffc0,
1081
        .mmu_cxr_mask = 0x0000ffff,
1082
        .mmu_sfsr_mask = 0xffffffff,
1083
        .mmu_trcr_mask = 0xffffffff,
1084
        .mxcc_version = 0x00000104,
1085
        .nwindows = 8,
1086
        .features = CPU_DEFAULT_FEATURES,
1087
    },
1088
    {
1089
        .name = "TI SuperSparc II",
1090
        .iu_version = 0x40000000, // SuperSPARC II 1.x
1091
        .fpu_version = 0 << 17,
1092
        .mmu_version = 0x08000000, // SuperSPARC II 1.x, MXCC
1093
        .mmu_bm = 0x00002000,
1094
        .mmu_ctpr_mask = 0xffffffc0,
1095
        .mmu_cxr_mask = 0x0000ffff,
1096
        .mmu_sfsr_mask = 0xffffffff,
1097
        .mmu_trcr_mask = 0xffffffff,
1098
        .mxcc_version = 0x00000104,
1099
        .nwindows = 8,
1100
        .features = CPU_DEFAULT_FEATURES,
1101
    },
1102
    {
1103
        .name = "Ross RT625",
1104
        .iu_version = 0x1e000000,
1105
        .fpu_version = 1 << 17,
1106
        .mmu_version = 0x1e000000,
1107
        .mmu_bm = 0x00004000,
1108
        .mmu_ctpr_mask = 0x007ffff0,
1109
        .mmu_cxr_mask = 0x0000003f,
1110
        .mmu_sfsr_mask = 0xffffffff,
1111
        .mmu_trcr_mask = 0xffffffff,
1112
        .nwindows = 8,
1113
        .features = CPU_DEFAULT_FEATURES,
1114
    },
1115
    {
1116
        .name = "Ross RT620",
1117
        .iu_version = 0x1f000000,
1118
        .fpu_version = 1 << 17,
1119
        .mmu_version = 0x1f000000,
1120
        .mmu_bm = 0x00004000,
1121
        .mmu_ctpr_mask = 0x007ffff0,
1122
        .mmu_cxr_mask = 0x0000003f,
1123
        .mmu_sfsr_mask = 0xffffffff,
1124
        .mmu_trcr_mask = 0xffffffff,
1125
        .nwindows = 8,
1126
        .features = CPU_DEFAULT_FEATURES,
1127
    },
1128
    {
1129
        .name = "BIT B5010",
1130
        .iu_version = 0x20000000,
1131
        .fpu_version = 0 << 17, /* B5010/B5110/B5120/B5210 */
1132
        .mmu_version = 0x20000000,
1133
        .mmu_bm = 0x00004000,
1134
        .mmu_ctpr_mask = 0x007ffff0,
1135
        .mmu_cxr_mask = 0x0000003f,
1136
        .mmu_sfsr_mask = 0xffffffff,
1137
        .mmu_trcr_mask = 0xffffffff,
1138
        .nwindows = 8,
1139
        .features = CPU_FEATURE_FLOAT | CPU_FEATURE_SWAP | CPU_FEATURE_FSQRT |
1140
        CPU_FEATURE_FSMULD,
1141
    },
1142
    {
1143
        .name = "Matsushita MN10501",
1144
        .iu_version = 0x50000000,
1145
        .fpu_version = 0 << 17,
1146
        .mmu_version = 0x50000000,
1147
        .mmu_bm = 0x00004000,
1148
        .mmu_ctpr_mask = 0x007ffff0,
1149
        .mmu_cxr_mask = 0x0000003f,
1150
        .mmu_sfsr_mask = 0xffffffff,
1151
        .mmu_trcr_mask = 0xffffffff,
1152
        .nwindows = 8,
1153
        .features = CPU_FEATURE_FLOAT | CPU_FEATURE_MUL | CPU_FEATURE_FSQRT |
1154
        CPU_FEATURE_FSMULD,
1155
    },
1156
    {
1157
        .name = "Weitek W8601",
1158
        .iu_version = 0x90 << 24, /* Impl 9, ver 0 */
1159
        .fpu_version = 3 << 17, /* FPU version 3 (Weitek WTL3170/2) */
1160
        .mmu_version = 0x10 << 24,
1161
        .mmu_bm = 0x00004000,
1162
        .mmu_ctpr_mask = 0x007ffff0,
1163
        .mmu_cxr_mask = 0x0000003f,
1164
        .mmu_sfsr_mask = 0xffffffff,
1165
        .mmu_trcr_mask = 0xffffffff,
1166
        .nwindows = 8,
1167
        .features = CPU_DEFAULT_FEATURES,
1168
    },
1169
    {
1170
        .name = "LEON2",
1171
        .iu_version = 0xf2000000,
1172
        .fpu_version = 4 << 17, /* FPU version 4 (Meiko) */
1173
        .mmu_version = 0xf2000000,
1174
        .mmu_bm = 0x00004000,
1175
        .mmu_ctpr_mask = 0x007ffff0,
1176
        .mmu_cxr_mask = 0x0000003f,
1177
        .mmu_sfsr_mask = 0xffffffff,
1178
        .mmu_trcr_mask = 0xffffffff,
1179
        .nwindows = 8,
1180
        .features = CPU_DEFAULT_FEATURES,
1181
    },
1182
    {
1183
        .name = "LEON3",
1184
        .iu_version = 0xf3000000,
1185
        .fpu_version = 4 << 17, /* FPU version 4 (Meiko) */
1186
        .mmu_version = 0xf3000000,
1187
        .mmu_bm = 0x00004000,
1188
        .mmu_ctpr_mask = 0x007ffff0,
1189
        .mmu_cxr_mask = 0x0000003f,
1190
        .mmu_sfsr_mask = 0xffffffff,
1191
        .mmu_trcr_mask = 0xffffffff,
1192
        .nwindows = 8,
1193
        .features = CPU_DEFAULT_FEATURES,
1194
    },
1195
#endif
1196
};
1197

    
1198
static const char * const feature_name[] = {
1199
    "float",
1200
    "float128",
1201
    "swap",
1202
    "mul",
1203
    "div",
1204
    "flush",
1205
    "fsqrt",
1206
    "fmul",
1207
    "vis1",
1208
    "vis2",
1209
    "fsmuld",
1210
    "hypv",
1211
    "cmt",
1212
    "gl",
1213
};
1214

    
1215
static void print_features(FILE *f,
1216
                           int (*cpu_fprintf)(FILE *f, const char *fmt, ...),
1217
                           uint32_t features, const char *prefix)
1218
{
1219
    unsigned int i;
1220

    
1221
    for (i = 0; i < ARRAY_SIZE(feature_name); i++)
1222
        if (feature_name[i] && (features & (1 << i))) {
1223
            if (prefix)
1224
                (*cpu_fprintf)(f, "%s", prefix);
1225
            (*cpu_fprintf)(f, "%s ", feature_name[i]);
1226
        }
1227
}
1228

    
1229
static void add_flagname_to_bitmaps(const char *flagname, uint32_t *features)
1230
{
1231
    unsigned int i;
1232

    
1233
    for (i = 0; i < ARRAY_SIZE(feature_name); i++)
1234
        if (feature_name[i] && !strcmp(flagname, feature_name[i])) {
1235
            *features |= 1 << i;
1236
            return;
1237
        }
1238
    fprintf(stderr, "CPU feature %s not found\n", flagname);
1239
}
1240

    
1241
static int cpu_sparc_find_by_name(sparc_def_t *cpu_def, const char *cpu_model)
1242
{
1243
    unsigned int i;
1244
    const sparc_def_t *def = NULL;
1245
    char *s = strdup(cpu_model);
1246
    char *featurestr, *name = strtok(s, ",");
1247
    uint32_t plus_features = 0;
1248
    uint32_t minus_features = 0;
1249
    long long iu_version;
1250
    uint32_t fpu_version, mmu_version, nwindows;
1251

    
1252
    for (i = 0; i < ARRAY_SIZE(sparc_defs); i++) {
1253
        if (strcasecmp(name, sparc_defs[i].name) == 0) {
1254
            def = &sparc_defs[i];
1255
        }
1256
    }
1257
    if (!def)
1258
        goto error;
1259
    memcpy(cpu_def, def, sizeof(*def));
1260

    
1261
    featurestr = strtok(NULL, ",");
1262
    while (featurestr) {
1263
        char *val;
1264

    
1265
        if (featurestr[0] == '+') {
1266
            add_flagname_to_bitmaps(featurestr + 1, &plus_features);
1267
        } else if (featurestr[0] == '-') {
1268
            add_flagname_to_bitmaps(featurestr + 1, &minus_features);
1269
        } else if ((val = strchr(featurestr, '='))) {
1270
            *val = 0; val++;
1271
            if (!strcmp(featurestr, "iu_version")) {
1272
                char *err;
1273

    
1274
                iu_version = strtoll(val, &err, 0);
1275
                if (!*val || *err) {
1276
                    fprintf(stderr, "bad numerical value %s\n", val);
1277
                    goto error;
1278
                }
1279
                cpu_def->iu_version = iu_version;
1280
#ifdef DEBUG_FEATURES
1281
                fprintf(stderr, "iu_version %llx\n", iu_version);
1282
#endif
1283
            } else if (!strcmp(featurestr, "fpu_version")) {
1284
                char *err;
1285

    
1286
                fpu_version = strtol(val, &err, 0);
1287
                if (!*val || *err) {
1288
                    fprintf(stderr, "bad numerical value %s\n", val);
1289
                    goto error;
1290
                }
1291
                cpu_def->fpu_version = fpu_version;
1292
#ifdef DEBUG_FEATURES
1293
                fprintf(stderr, "fpu_version %llx\n", fpu_version);
1294
#endif
1295
            } else if (!strcmp(featurestr, "mmu_version")) {
1296
                char *err;
1297

    
1298
                mmu_version = strtol(val, &err, 0);
1299
                if (!*val || *err) {
1300
                    fprintf(stderr, "bad numerical value %s\n", val);
1301
                    goto error;
1302
                }
1303
                cpu_def->mmu_version = mmu_version;
1304
#ifdef DEBUG_FEATURES
1305
                fprintf(stderr, "mmu_version %llx\n", mmu_version);
1306
#endif
1307
            } else if (!strcmp(featurestr, "nwindows")) {
1308
                char *err;
1309

    
1310
                nwindows = strtol(val, &err, 0);
1311
                if (!*val || *err || nwindows > MAX_NWINDOWS ||
1312
                    nwindows < MIN_NWINDOWS) {
1313
                    fprintf(stderr, "bad numerical value %s\n", val);
1314
                    goto error;
1315
                }
1316
                cpu_def->nwindows = nwindows;
1317
#ifdef DEBUG_FEATURES
1318
                fprintf(stderr, "nwindows %d\n", nwindows);
1319
#endif
1320
            } else {
1321
                fprintf(stderr, "unrecognized feature %s\n", featurestr);
1322
                goto error;
1323
            }
1324
        } else {
1325
            fprintf(stderr, "feature string `%s' not in format "
1326
                    "(+feature|-feature|feature=xyz)\n", featurestr);
1327
            goto error;
1328
        }
1329
        featurestr = strtok(NULL, ",");
1330
    }
1331
    cpu_def->features |= plus_features;
1332
    cpu_def->features &= ~minus_features;
1333
#ifdef DEBUG_FEATURES
1334
    print_features(stderr, fprintf, cpu_def->features, NULL);
1335
#endif
1336
    free(s);
1337
    return 0;
1338

    
1339
 error:
1340
    free(s);
1341
    return -1;
1342
}
1343

    
1344
void sparc_cpu_list(FILE *f, int (*cpu_fprintf)(FILE *f, const char *fmt, ...))
1345
{
1346
    unsigned int i;
1347

    
1348
    for (i = 0; i < ARRAY_SIZE(sparc_defs); i++) {
1349
        (*cpu_fprintf)(f, "Sparc %16s IU " TARGET_FMT_lx " FPU %08x MMU %08x NWINS %d ",
1350
                       sparc_defs[i].name,
1351
                       sparc_defs[i].iu_version,
1352
                       sparc_defs[i].fpu_version,
1353
                       sparc_defs[i].mmu_version,
1354
                       sparc_defs[i].nwindows);
1355
        print_features(f, cpu_fprintf, CPU_DEFAULT_FEATURES &
1356
                       ~sparc_defs[i].features, "-");
1357
        print_features(f, cpu_fprintf, ~CPU_DEFAULT_FEATURES &
1358
                       sparc_defs[i].features, "+");
1359
        (*cpu_fprintf)(f, "\n");
1360
    }
1361
    (*cpu_fprintf)(f, "Default CPU feature flags (use '-' to remove): ");
1362
    print_features(f, cpu_fprintf, CPU_DEFAULT_FEATURES, NULL);
1363
    (*cpu_fprintf)(f, "\n");
1364
    (*cpu_fprintf)(f, "Available CPU feature flags (use '+' to add): ");
1365
    print_features(f, cpu_fprintf, ~CPU_DEFAULT_FEATURES, NULL);
1366
    (*cpu_fprintf)(f, "\n");
1367
    (*cpu_fprintf)(f, "Numerical features (use '=' to set): iu_version "
1368
                   "fpu_version mmu_version nwindows\n");
1369
}
1370

    
1371
void cpu_dump_state(CPUState *env, FILE *f,
1372
                    int (*cpu_fprintf)(FILE *f, const char *fmt, ...),
1373
                    int flags)
1374
{
1375
    int i, x;
1376

    
1377
    cpu_fprintf(f, "pc: " TARGET_FMT_lx "  npc: " TARGET_FMT_lx "\n", env->pc,
1378
                env->npc);
1379
    cpu_fprintf(f, "General Registers:\n");
1380
    for (i = 0; i < 4; i++)
1381
        cpu_fprintf(f, "%%g%c: " TARGET_FMT_lx "\t", i + '0', env->gregs[i]);
1382
    cpu_fprintf(f, "\n");
1383
    for (; i < 8; i++)
1384
        cpu_fprintf(f, "%%g%c: " TARGET_FMT_lx "\t", i + '0', env->gregs[i]);
1385
    cpu_fprintf(f, "\nCurrent Register Window:\n");
1386
    for (x = 0; x < 3; x++) {
1387
        for (i = 0; i < 4; i++)
1388
            cpu_fprintf(f, "%%%c%d: " TARGET_FMT_lx "\t",
1389
                    (x == 0 ? 'o' : (x == 1 ? 'l' : 'i')), i,
1390
                    env->regwptr[i + x * 8]);
1391
        cpu_fprintf(f, "\n");
1392
        for (; i < 8; i++)
1393
            cpu_fprintf(f, "%%%c%d: " TARGET_FMT_lx "\t",
1394
                    (x == 0 ? 'o' : x == 1 ? 'l' : 'i'), i,
1395
                    env->regwptr[i + x * 8]);
1396
        cpu_fprintf(f, "\n");
1397
    }
1398
    cpu_fprintf(f, "\nFloating Point Registers:\n");
1399
    for (i = 0; i < 32; i++) {
1400
        if ((i & 3) == 0)
1401
            cpu_fprintf(f, "%%f%02d:", i);
1402
        cpu_fprintf(f, " %016f", *(float *)&env->fpr[i]);
1403
        if ((i & 3) == 3)
1404
            cpu_fprintf(f, "\n");
1405
    }
1406
#ifdef TARGET_SPARC64
1407
    cpu_fprintf(f, "pstate: 0x%08x ccr: 0x%02x asi: 0x%02x tl: %d fprs: %d\n",
1408
                env->pstate, GET_CCR(env), env->asi, env->tl, env->fprs);
1409
    cpu_fprintf(f, "cansave: %d canrestore: %d otherwin: %d wstate %d "
1410
                "cleanwin %d cwp %d\n",
1411
                env->cansave, env->canrestore, env->otherwin, env->wstate,
1412
                env->cleanwin, env->nwindows - 1 - env->cwp);
1413
#else
1414

    
1415
#define GET_FLAG(a,b) ((env->psr & a)?b:'-')
1416

    
1417
    cpu_fprintf(f, "psr: 0x%08x -> %c%c%c%c %c%c%c wim: 0x%08x\n",
1418
                GET_PSR(env), GET_FLAG(PSR_ZERO, 'Z'), GET_FLAG(PSR_OVF, 'V'),
1419
                GET_FLAG(PSR_NEG, 'N'), GET_FLAG(PSR_CARRY, 'C'),
1420
                env->psrs?'S':'-', env->psrps?'P':'-',
1421
                env->psret?'E':'-', env->wim);
1422
#endif
1423
    cpu_fprintf(f, "fsr: 0x%08x\n", env->fsr);
1424
}