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1215 decky 1
/*
2071 jermar 2
 * Copyright (c) 2006 Martin Decky
1215 decky 3
 * All rights reserved.
4
 *
5
 * Redistribution and use in source and binary forms, with or without
6
 * modification, are permitted provided that the following conditions
7
 * are met:
8
 *
9
 * - Redistributions of source code must retain the above copyright
10
 *   notice, this list of conditions and the following disclaimer.
11
 * - Redistributions in binary form must reproduce the above copyright
12
 *   notice, this list of conditions and the following disclaimer in the
13
 *   documentation and/or other materials provided with the distribution.
14
 * - The name of the author may not be used to endorse or promote products
15
 *   derived from this software without specific prior written permission.
16
 *
17
 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
18
 * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
19
 * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
20
 * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
21
 * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
22
 * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
23
 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
24
 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
25
 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
26
 * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
27
 */
28
 
1730 decky 29
/** @addtogroup ppc32mm	
1702 cejka 30
 * @{
31
 */
32
/** @file
33
 */
34
 
1215 decky 35
#include <mm/tlb.h>
1730 decky 36
#include <arch/mm/tlb.h>
37
#include <arch/interrupt.h>
3594 svoboda 38
#include <interrupt.h>
1730 decky 39
#include <mm/as.h>
40
#include <arch.h>
41
#include <print.h>
42
#include <symtab.h>
1215 decky 43
 
44
 
1730 decky 45
/** Try to find PTE for faulting address
1215 decky 46
 *
1730 decky 47
 * Try to find PTE for faulting address.
48
 * The as->lock must be held on entry to this function
49
 * if lock is true.
1215 decky 50
 *
3193 jermar 51
 * @param as		Address space.
52
 * @param lock		Lock/unlock the address space.
53
 * @param badvaddr	Faulting virtual address.
54
 * @param access	Access mode that caused the fault.
55
 * @param istate	Pointer to interrupted state.
56
 * @param pfrc		Pointer to variable where as_page_fault() return code
57
 * 			will be stored.
58
 * @return		PTE on success, NULL otherwise.
1730 decky 59
 *
1215 decky 60
 */
3193 jermar 61
static pte_t *
62
find_mapping_and_check(as_t *as, bool lock, uintptr_t badvaddr, int access,
63
    istate_t *istate, int *pfrc)
1730 decky 64
{
65
	/*
66
	 * Check if the mapping exists in page tables.
67
	 */	
68
	pte_t *pte = page_mapping_find(as, badvaddr);
3830 decky 69
	if ((pte) && (pte->present)) {
1730 decky 70
		/*
71
		 * Mapping found in page tables.
72
		 * Immediately succeed.
73
		 */
74
		return pte;
75
	} else {
76
		int rc;
77
 
78
		/*
79
		 * Mapping not found in page tables.
80
		 * Resort to higher-level page fault handler.
81
		 */
82
		page_table_unlock(as, lock);
83
		switch (rc = as_page_fault(badvaddr, access, istate)) {
3193 jermar 84
		case AS_PF_OK:
85
			/*
86
			 * The higher-level page fault handler succeeded,
87
			 * The mapping ought to be in place.
88
			 */
89
			page_table_lock(as, lock);
90
			pte = page_mapping_find(as, badvaddr);
3830 decky 91
			ASSERT((pte) && (pte->present));
3193 jermar 92
			*pfrc = 0;
93
			return pte;
94
		case AS_PF_DEFER:
95
			page_table_lock(as, lock);
96
			*pfrc = rc;
97
			return NULL;
98
		case AS_PF_FAULT:
99
			page_table_lock(as, lock);
100
			*pfrc = rc;
101
			return NULL;
102
		default:
3790 svoboda 103
			panic("Unexpected rc (%d).", rc);
1730 decky 104
		}	
105
	}
106
}
107
 
108
 
1780 jermar 109
static void pht_refill_fail(uintptr_t badvaddr, istate_t *istate)
1730 decky 110
{
111
	char *symbol = "";
112
	char *sym2 = "";
113
 
114
	char *s = get_symtab_entry(istate->pc);
115
	if (s)
116
		symbol = s;
117
	s = get_symtab_entry(istate->lr);
118
	if (s)
119
		sym2 = s;
3594 svoboda 120
 
121
	fault_if_from_uspace(istate,
3790 svoboda 122
	    "%p: PHT Refill Exception at %p (%s<-%s).", badvaddr,
3594 svoboda 123
	    istate->pc, symbol, sym2);
3790 svoboda 124
	panic("%p: PHT Refill Exception at %p (%s<-%s).", badvaddr,
3193 jermar 125
	    istate->pc, symbol, sym2);
1730 decky 126
}
127
 
128
 
3830 decky 129
static void pht_insert(const uintptr_t vaddr, const pte_t *pte)
1730 decky 130
{
1780 jermar 131
	uint32_t page = (vaddr >> 12) & 0xffff;
132
	uint32_t api = (vaddr >> 22) & 0x3f;
1730 decky 133
 
1780 jermar 134
	uint32_t vsid;
1730 decky 135
	asm volatile (
136
		"mfsrin %0, %1\n"
137
		: "=r" (vsid)
138
		: "r" (vaddr)
139
	);
140
 
1780 jermar 141
	uint32_t sdr1;
1730 decky 142
	asm volatile (
143
		"mfsdr1 %0\n"
144
		: "=r" (sdr1)
145
	);
146
	phte_t *phte = (phte_t *) PA2KA(sdr1 & 0xffff0000);
147
 
148
	/* Primary hash (xor) */
1780 jermar 149
	uint32_t h = 0;
150
	uint32_t hash = vsid ^ page;
151
	uint32_t base = (hash & 0x3ff) << 3;
152
	uint32_t i;
1730 decky 153
	bool found = false;
154
 
155
	/* Find unused or colliding
156
	   PTE in PTEG */
157
	for (i = 0; i < 8; i++) {
3193 jermar 158
		if ((!phte[base + i].v) || ((phte[base + i].vsid == vsid) &&
159
		    (phte[base + i].api == api))) {
1730 decky 160
			found = true;
161
			break;
162
		}
163
	}
164
 
165
	if (!found) {
166
		/* Secondary hash (not) */
1780 jermar 167
		uint32_t base2 = (~hash & 0x3ff) << 3;
1730 decky 168
 
169
		/* Find unused or colliding
170
		   PTE in PTEG */
171
		for (i = 0; i < 8; i++) {
3193 jermar 172
			if ((!phte[base2 + i].v) ||
173
			    ((phte[base2 + i].vsid == vsid) &&
174
			    (phte[base2 + i].api == api))) {
1730 decky 175
				found = true;
176
				base = base2;
177
				h = 1;
178
				break;
179
			}
180
		}
181
 
182
		if (!found) {
183
			// TODO: A/C precedence groups
184
			i = page % 8;
185
		}
186
	}
187
 
188
	phte[base + i].v = 1;
189
	phte[base + i].vsid = vsid;
190
	phte[base + i].h = h;
191
	phte[base + i].api = api;
3830 decky 192
	phte[base + i].rpn = pte->pfn;
1730 decky 193
	phte[base + i].r = 0;
194
	phte[base + i].c = 0;
3830 decky 195
	phte[base + i].wimg = (pte->page_cache_disable ? WIMG_NO_CACHE : 0);
1730 decky 196
	phte[base + i].pp = 2; // FIXME
197
}
198
 
199
 
1780 jermar 200
static void pht_real_insert(const uintptr_t vaddr, const pfn_t pfn)
1730 decky 201
{
1780 jermar 202
	uint32_t page = (vaddr >> 12) & 0xffff;
203
	uint32_t api = (vaddr >> 22) & 0x3f;
1730 decky 204
 
1780 jermar 205
	uint32_t vsid;
1730 decky 206
	asm volatile (
207
		"mfsrin %0, %1\n"
208
		: "=r" (vsid)
209
		: "r" (vaddr)
210
	);
211
 
1780 jermar 212
	uint32_t sdr1;
1730 decky 213
	asm volatile (
214
		"mfsdr1 %0\n"
215
		: "=r" (sdr1)
216
	);
217
	phte_t *phte_physical = (phte_t *) (sdr1 & 0xffff0000);
218
 
219
	/* Primary hash (xor) */
1780 jermar 220
	uint32_t h = 0;
221
	uint32_t hash = vsid ^ page;
222
	uint32_t base = (hash & 0x3ff) << 3;
223
	uint32_t i;
1730 decky 224
	bool found = false;
225
 
226
	/* Find unused or colliding
227
	   PTE in PTEG */
228
	for (i = 0; i < 8; i++) {
3193 jermar 229
		if ((!phte_physical[base + i].v) ||
230
		    ((phte_physical[base + i].vsid == vsid) &&
231
		    (phte_physical[base + i].api == api))) {
1730 decky 232
			found = true;
233
			break;
234
		}
235
	}
236
 
237
	if (!found) {
238
		/* Secondary hash (not) */
1780 jermar 239
		uint32_t base2 = (~hash & 0x3ff) << 3;
1730 decky 240
 
241
		/* Find unused or colliding
242
		   PTE in PTEG */
243
		for (i = 0; i < 8; i++) {
3193 jermar 244
			if ((!phte_physical[base2 + i].v) ||
245
			    ((phte_physical[base2 + i].vsid == vsid) &&
246
			    (phte_physical[base2 + i].api == api))) {
1730 decky 247
				found = true;
248
				base = base2;
249
				h = 1;
250
				break;
251
			}
252
		}
253
 
254
		if (!found) {
255
			// TODO: A/C precedence groups
256
			i = page % 8;
257
		}
258
	}
259
 
260
	phte_physical[base + i].v = 1;
261
	phte_physical[base + i].vsid = vsid;
262
	phte_physical[base + i].h = h;
263
	phte_physical[base + i].api = api;
264
	phte_physical[base + i].rpn = pfn;
265
	phte_physical[base + i].r = 0;
266
	phte_physical[base + i].c = 0;
3830 decky 267
	phte_physical[base + i].wimg = 0;
1730 decky 268
	phte_physical[base + i].pp = 2; // FIXME
269
}
270
 
271
 
272
/** Process Instruction/Data Storage Interrupt
273
 *
3193 jermar 274
 * @param n		Interrupt vector number.
275
 * @param istate	Interrupted register context.
1730 decky 276
 *
277
 */
278
void pht_refill(int n, istate_t *istate)
279
{
1780 jermar 280
	uintptr_t badvaddr;
1730 decky 281
	pte_t *pte;
282
	int pfrc;
283
	as_t *as;
284
	bool lock;
285
 
286
	if (AS == NULL) {
287
		as = AS_KERNEL;
288
		lock = false;
289
	} else {
290
		as = AS;
291
		lock = true;
292
	}
293
 
294
	if (n == VECTOR_DATA_STORAGE) {
295
		asm volatile (
296
			"mfdar %0\n"
297
			: "=r" (badvaddr)
298
		);
299
	} else
300
		badvaddr = istate->pc;
301
 
302
	page_table_lock(as, lock);
303
 
3193 jermar 304
	pte = find_mapping_and_check(as, lock, badvaddr,
305
	    PF_ACCESS_READ /* FIXME */, istate, &pfrc);
1730 decky 306
	if (!pte) {
307
		switch (pfrc) {
3193 jermar 308
		case AS_PF_FAULT:
309
			goto fail;
310
			break;
311
		case AS_PF_DEFER:
312
			/*
313
			 * The page fault came during copy_from_uspace()
314
			 * or copy_to_uspace().
315
			 */
316
			page_table_unlock(as, lock);
317
			return;
318
		default:
3790 svoboda 319
			panic("Unexpected pfrc (%d).", pfrc);
1730 decky 320
		}
321
	}
322
 
3830 decky 323
	pte->accessed = 1; /* Record access to PTE */
324
	pht_insert(badvaddr, pte);
1730 decky 325
 
326
	page_table_unlock(as, lock);
327
	return;
328
 
329
fail:
330
	page_table_unlock(as, lock);
331
	pht_refill_fail(badvaddr, istate);
332
}
333
 
334
 
335
/** Process Instruction/Data Storage Interrupt in Real Mode
336
 *
3193 jermar 337
 * @param n		Interrupt vector number.
338
 * @param istate	Interrupted register context.
1730 decky 339
 *
340
 */
341
bool pht_real_refill(int n, istate_t *istate)
342
{
1780 jermar 343
	uintptr_t badvaddr;
1730 decky 344
 
345
	if (n == VECTOR_DATA_STORAGE) {
346
		asm volatile (
347
			"mfdar %0\n"
348
			: "=r" (badvaddr)
349
		);
350
	} else
351
		badvaddr = istate->pc;
352
 
1780 jermar 353
	uint32_t physmem;
1730 decky 354
	asm volatile (
355
		"mfsprg3 %0\n"
356
		: "=r" (physmem)
357
	);
358
 
359
	if ((badvaddr >= PA2KA(0)) && (badvaddr < PA2KA(physmem))) {
360
		pht_real_insert(badvaddr, KA2PA(badvaddr) >> 12);
361
		return true;
362
	}
363
 
364
	return false;
365
}
366
 
367
 
1215 decky 368
void tlb_arch_init(void)
369
{
1384 decky 370
	tlb_invalidate_all();
371
}
372
 
373
 
374
void tlb_invalidate_all(void)
375
{
1269 decky 376
	asm volatile (
1384 decky 377
		"tlbsync\n"
1269 decky 378
	);
1215 decky 379
}
380
 
381
 
1384 decky 382
void tlb_invalidate_asid(asid_t asid)
1328 decky 383
{
1780 jermar 384
	uint32_t sdr1;
1758 decky 385
	asm volatile (
386
		"mfsdr1 %0\n"
387
		: "=r" (sdr1)
388
	);
389
	phte_t *phte = (phte_t *) PA2KA(sdr1 & 0xffff0000);
390
 
1780 jermar 391
	uint32_t i;
1758 decky 392
	for (i = 0; i < 8192; i++) {
3193 jermar 393
		if ((phte[i].v) && (phte[i].vsid >= (asid << 4)) &&
394
		    (phte[i].vsid < ((asid << 4) + 16)))
1758 decky 395
			phte[i].v = 0;
396
	}
1384 decky 397
	tlb_invalidate_all();
1328 decky 398
}
399
 
1730 decky 400
 
1780 jermar 401
void tlb_invalidate_pages(asid_t asid, uintptr_t page, count_t cnt)
1384 decky 402
{
1730 decky 403
	// TODO
1384 decky 404
	tlb_invalidate_all();
405
}
1328 decky 406
 
1384 decky 407
 
1736 decky 408
#define PRINT_BAT(name, ureg, lreg) \
409
	asm volatile ( \
410
		"mfspr %0," #ureg "\n" \
411
		"mfspr %1," #lreg "\n" \
412
		: "=r" (upper), "=r" (lower) \
413
	); \
414
	mask = (upper & 0x1ffc) >> 2; \
415
	if (upper & 3) { \
1780 jermar 416
		uint32_t tmp = mask; \
1736 decky 417
		length = 128; \
418
		while (tmp) { \
419
			if ((tmp & 1) == 0) { \
420
				printf("ibat[0]: error in mask\n"); \
421
				break; \
422
			} \
423
			length <<= 1; \
424
			tmp >>= 1; \
425
		} \
426
	} else \
427
		length = 0; \
3193 jermar 428
	printf(name ": page=%.*p frame=%.*p length=%d KB (mask=%#x)%s%s\n", \
429
	    sizeof(upper) * 2, upper & 0xffff0000, sizeof(lower) * 2, \
430
	    lower & 0xffff0000, length, mask, \
431
	    ((upper >> 1) & 1) ? " supervisor" : "", \
432
	    (upper & 1) ? " user" : "");
1736 decky 433
 
434
 
1215 decky 435
void tlb_print(void)
436
{
1780 jermar 437
	uint32_t sr;
1733 decky 438
 
439
	for (sr = 0; sr < 16; sr++) {
1780 jermar 440
		uint32_t vsid;
1733 decky 441
		asm volatile (
442
			"mfsrin %0, %1\n"
443
			: "=r" (vsid)
444
			: "r" (sr << 28)
445
		);
3193 jermar 446
		printf("vsid[%d]: VSID=%.*p (ASID=%d)%s%s\n", sr,
447
		    sizeof(vsid) * 2, vsid & 0xffffff, (vsid & 0xffffff) >> 4,
448
		    ((vsid >> 30) & 1) ? " supervisor" : "",
449
		    ((vsid >> 29) & 1) ? " user" : "");
1733 decky 450
	}
1736 decky 451
 
1780 jermar 452
	uint32_t upper;
453
	uint32_t lower;
454
	uint32_t mask;
455
	uint32_t length;
1736 decky 456
 
457
	PRINT_BAT("ibat[0]", 528, 529);
458
	PRINT_BAT("ibat[1]", 530, 531);
459
	PRINT_BAT("ibat[2]", 532, 533);
460
	PRINT_BAT("ibat[3]", 534, 535);
461
 
462
	PRINT_BAT("dbat[0]", 536, 537);
463
	PRINT_BAT("dbat[1]", 538, 539);
464
	PRINT_BAT("dbat[2]", 540, 541);
465
	PRINT_BAT("dbat[3]", 542, 543);
1215 decky 466
}
1702 cejka 467
 
1730 decky 468
/** @}
1702 cejka 469
 */