MIPS: KVM: Fix mapped fault broken commpage handling
[firefly-linux-kernel-4.4.55.git] / arch / mips / kvm / tlb.c
1 /*
2  * This file is subject to the terms and conditions of the GNU General Public
3  * License.  See the file "COPYING" in the main directory of this archive
4  * for more details.
5  *
6  * KVM/MIPS TLB handling, this file is part of the Linux host kernel so that
7  * TLB handlers run from KSEG0
8  *
9  * Copyright (C) 2012  MIPS Technologies, Inc.  All rights reserved.
10  * Authors: Sanjay Lal <sanjayl@kymasys.com>
11  */
12
13 #include <linux/sched.h>
14 #include <linux/smp.h>
15 #include <linux/mm.h>
16 #include <linux/delay.h>
17 #include <linux/module.h>
18 #include <linux/kvm_host.h>
19 #include <linux/srcu.h>
20
21 #include <asm/cpu.h>
22 #include <asm/bootinfo.h>
23 #include <asm/mmu_context.h>
24 #include <asm/pgtable.h>
25 #include <asm/cacheflush.h>
26 #include <asm/tlb.h>
27
28 #undef CONFIG_MIPS_MT
29 #include <asm/r4kcache.h>
30 #define CONFIG_MIPS_MT
31
32 #define KVM_GUEST_PC_TLB    0
33 #define KVM_GUEST_SP_TLB    1
34
35 #define PRIx64 "llx"
36
37 atomic_t kvm_mips_instance;
38 EXPORT_SYMBOL(kvm_mips_instance);
39
40 /* These function pointers are initialized once the KVM module is loaded */
41 pfn_t (*kvm_mips_gfn_to_pfn)(struct kvm *kvm, gfn_t gfn);
42 EXPORT_SYMBOL(kvm_mips_gfn_to_pfn);
43
44 void (*kvm_mips_release_pfn_clean)(pfn_t pfn);
45 EXPORT_SYMBOL(kvm_mips_release_pfn_clean);
46
47 bool (*kvm_mips_is_error_pfn)(pfn_t pfn);
48 EXPORT_SYMBOL(kvm_mips_is_error_pfn);
49
50 uint32_t kvm_mips_get_kernel_asid(struct kvm_vcpu *vcpu)
51 {
52         return vcpu->arch.guest_kernel_asid[smp_processor_id()] & ASID_MASK;
53 }
54
55 uint32_t kvm_mips_get_user_asid(struct kvm_vcpu *vcpu)
56 {
57         return vcpu->arch.guest_user_asid[smp_processor_id()] & ASID_MASK;
58 }
59
60 inline uint32_t kvm_mips_get_commpage_asid(struct kvm_vcpu *vcpu)
61 {
62         return vcpu->kvm->arch.commpage_tlb;
63 }
64
65 /* Structure defining an tlb entry data set. */
66
67 void kvm_mips_dump_host_tlbs(void)
68 {
69         unsigned long old_entryhi;
70         unsigned long old_pagemask;
71         struct kvm_mips_tlb tlb;
72         unsigned long flags;
73         int i;
74
75         local_irq_save(flags);
76
77         old_entryhi = read_c0_entryhi();
78         old_pagemask = read_c0_pagemask();
79
80         kvm_info("HOST TLBs:\n");
81         kvm_info("ASID: %#lx\n", read_c0_entryhi() & ASID_MASK);
82
83         for (i = 0; i < current_cpu_data.tlbsize; i++) {
84                 write_c0_index(i);
85                 mtc0_tlbw_hazard();
86
87                 tlb_read();
88                 tlbw_use_hazard();
89
90                 tlb.tlb_hi = read_c0_entryhi();
91                 tlb.tlb_lo0 = read_c0_entrylo0();
92                 tlb.tlb_lo1 = read_c0_entrylo1();
93                 tlb.tlb_mask = read_c0_pagemask();
94
95                 kvm_info("TLB%c%3d Hi 0x%08lx ",
96                          (tlb.tlb_lo0 | tlb.tlb_lo1) & MIPS3_PG_V ? ' ' : '*',
97                          i, tlb.tlb_hi);
98                 kvm_info("Lo0=0x%09" PRIx64 " %c%c attr %lx ",
99                          (uint64_t) mips3_tlbpfn_to_paddr(tlb.tlb_lo0),
100                          (tlb.tlb_lo0 & MIPS3_PG_D) ? 'D' : ' ',
101                          (tlb.tlb_lo0 & MIPS3_PG_G) ? 'G' : ' ',
102                          (tlb.tlb_lo0 >> 3) & 7);
103                 kvm_info("Lo1=0x%09" PRIx64 " %c%c attr %lx sz=%lx\n",
104                          (uint64_t) mips3_tlbpfn_to_paddr(tlb.tlb_lo1),
105                          (tlb.tlb_lo1 & MIPS3_PG_D) ? 'D' : ' ',
106                          (tlb.tlb_lo1 & MIPS3_PG_G) ? 'G' : ' ',
107                          (tlb.tlb_lo1 >> 3) & 7, tlb.tlb_mask);
108         }
109         write_c0_entryhi(old_entryhi);
110         write_c0_pagemask(old_pagemask);
111         mtc0_tlbw_hazard();
112         local_irq_restore(flags);
113 }
114 EXPORT_SYMBOL(kvm_mips_dump_host_tlbs);
115
116 void kvm_mips_dump_guest_tlbs(struct kvm_vcpu *vcpu)
117 {
118         struct mips_coproc *cop0 = vcpu->arch.cop0;
119         struct kvm_mips_tlb tlb;
120         int i;
121
122         kvm_info("Guest TLBs:\n");
123         kvm_info("Guest EntryHi: %#lx\n", kvm_read_c0_guest_entryhi(cop0));
124
125         for (i = 0; i < KVM_MIPS_GUEST_TLB_SIZE; i++) {
126                 tlb = vcpu->arch.guest_tlb[i];
127                 kvm_info("TLB%c%3d Hi 0x%08lx ",
128                          (tlb.tlb_lo0 | tlb.tlb_lo1) & MIPS3_PG_V ? ' ' : '*',
129                          i, tlb.tlb_hi);
130                 kvm_info("Lo0=0x%09" PRIx64 " %c%c attr %lx ",
131                          (uint64_t) mips3_tlbpfn_to_paddr(tlb.tlb_lo0),
132                          (tlb.tlb_lo0 & MIPS3_PG_D) ? 'D' : ' ',
133                          (tlb.tlb_lo0 & MIPS3_PG_G) ? 'G' : ' ',
134                          (tlb.tlb_lo0 >> 3) & 7);
135                 kvm_info("Lo1=0x%09" PRIx64 " %c%c attr %lx sz=%lx\n",
136                          (uint64_t) mips3_tlbpfn_to_paddr(tlb.tlb_lo1),
137                          (tlb.tlb_lo1 & MIPS3_PG_D) ? 'D' : ' ',
138                          (tlb.tlb_lo1 & MIPS3_PG_G) ? 'G' : ' ',
139                          (tlb.tlb_lo1 >> 3) & 7, tlb.tlb_mask);
140         }
141 }
142 EXPORT_SYMBOL(kvm_mips_dump_guest_tlbs);
143
144 static int kvm_mips_map_page(struct kvm *kvm, gfn_t gfn)
145 {
146         int srcu_idx, err = 0;
147         pfn_t pfn;
148
149         if (kvm->arch.guest_pmap[gfn] != KVM_INVALID_PAGE)
150                 return 0;
151
152         srcu_idx = srcu_read_lock(&kvm->srcu);
153         pfn = kvm_mips_gfn_to_pfn(kvm, gfn);
154
155         if (kvm_mips_is_error_pfn(pfn)) {
156                 kvm_err("Couldn't get pfn for gfn %#" PRIx64 "!\n", gfn);
157                 err = -EFAULT;
158                 goto out;
159         }
160
161         kvm->arch.guest_pmap[gfn] = pfn;
162 out:
163         srcu_read_unlock(&kvm->srcu, srcu_idx);
164         return err;
165 }
166
167 /* Translate guest KSEG0 addresses to Host PA */
168 unsigned long kvm_mips_translate_guest_kseg0_to_hpa(struct kvm_vcpu *vcpu,
169                                                     unsigned long gva)
170 {
171         gfn_t gfn;
172         uint32_t offset = gva & ~PAGE_MASK;
173         struct kvm *kvm = vcpu->kvm;
174
175         if (KVM_GUEST_KSEGX(gva) != KVM_GUEST_KSEG0) {
176                 kvm_err("%s/%p: Invalid gva: %#lx\n", __func__,
177                         __builtin_return_address(0), gva);
178                 return KVM_INVALID_PAGE;
179         }
180
181         gfn = (KVM_GUEST_CPHYSADDR(gva) >> PAGE_SHIFT);
182
183         if (gfn >= kvm->arch.guest_pmap_npages) {
184                 kvm_err("%s: Invalid gfn: %#llx, GVA: %#lx\n", __func__, gfn,
185                         gva);
186                 return KVM_INVALID_PAGE;
187         }
188
189         if (kvm_mips_map_page(vcpu->kvm, gfn) < 0)
190                 return KVM_INVALID_ADDR;
191
192         return (kvm->arch.guest_pmap[gfn] << PAGE_SHIFT) + offset;
193 }
194 EXPORT_SYMBOL(kvm_mips_translate_guest_kseg0_to_hpa);
195
196 /* XXXKYMA: Must be called with interrupts disabled */
197 /* set flush_dcache_mask == 0 if no dcache flush required */
198 int kvm_mips_host_tlb_write(struct kvm_vcpu *vcpu, unsigned long entryhi,
199                             unsigned long entrylo0, unsigned long entrylo1,
200                             int flush_dcache_mask)
201 {
202         unsigned long flags;
203         unsigned long old_entryhi;
204         int idx;
205
206         local_irq_save(flags);
207
208         old_entryhi = read_c0_entryhi();
209         write_c0_entryhi(entryhi);
210         mtc0_tlbw_hazard();
211
212         tlb_probe();
213         tlb_probe_hazard();
214         idx = read_c0_index();
215
216         if (idx > current_cpu_data.tlbsize) {
217                 kvm_err("%s: Invalid Index: %d\n", __func__, idx);
218                 kvm_mips_dump_host_tlbs();
219                 local_irq_restore(flags);
220                 return -1;
221         }
222
223         write_c0_entrylo0(entrylo0);
224         write_c0_entrylo1(entrylo1);
225         mtc0_tlbw_hazard();
226
227         if (idx < 0)
228                 tlb_write_random();
229         else
230                 tlb_write_indexed();
231         tlbw_use_hazard();
232
233         kvm_debug("@ %#lx idx: %2d [entryhi(R): %#lx] entrylo0(R): 0x%08lx, entrylo1(R): 0x%08lx\n",
234                   vcpu->arch.pc, idx, read_c0_entryhi(),
235                   read_c0_entrylo0(), read_c0_entrylo1());
236
237         /* Flush D-cache */
238         if (flush_dcache_mask) {
239                 if (entrylo0 & MIPS3_PG_V) {
240                         ++vcpu->stat.flush_dcache_exits;
241                         flush_data_cache_page((entryhi & VPN2_MASK) &
242                                               ~flush_dcache_mask);
243                 }
244                 if (entrylo1 & MIPS3_PG_V) {
245                         ++vcpu->stat.flush_dcache_exits;
246                         flush_data_cache_page(((entryhi & VPN2_MASK) &
247                                                ~flush_dcache_mask) |
248                                               (0x1 << PAGE_SHIFT));
249                 }
250         }
251
252         /* Restore old ASID */
253         write_c0_entryhi(old_entryhi);
254         mtc0_tlbw_hazard();
255         tlbw_use_hazard();
256         local_irq_restore(flags);
257         return 0;
258 }
259
260 /* XXXKYMA: Must be called with interrupts disabled */
261 int kvm_mips_handle_kseg0_tlb_fault(unsigned long badvaddr,
262                                     struct kvm_vcpu *vcpu)
263 {
264         gfn_t gfn;
265         pfn_t pfn0, pfn1;
266         unsigned long vaddr = 0;
267         unsigned long entryhi = 0, entrylo0 = 0, entrylo1 = 0;
268         int even;
269         struct kvm *kvm = vcpu->kvm;
270         const int flush_dcache_mask = 0;
271
272         if (KVM_GUEST_KSEGX(badvaddr) != KVM_GUEST_KSEG0) {
273                 kvm_err("%s: Invalid BadVaddr: %#lx\n", __func__, badvaddr);
274                 kvm_mips_dump_host_tlbs();
275                 return -1;
276         }
277
278         gfn = (KVM_GUEST_CPHYSADDR(badvaddr) >> PAGE_SHIFT);
279         if (gfn >= kvm->arch.guest_pmap_npages) {
280                 kvm_err("%s: Invalid gfn: %#llx, BadVaddr: %#lx\n", __func__,
281                         gfn, badvaddr);
282                 kvm_mips_dump_host_tlbs();
283                 return -1;
284         }
285         even = !(gfn & 0x1);
286         vaddr = badvaddr & (PAGE_MASK << 1);
287
288         if (kvm_mips_map_page(vcpu->kvm, gfn) < 0)
289                 return -1;
290
291         if (kvm_mips_map_page(vcpu->kvm, gfn ^ 0x1) < 0)
292                 return -1;
293
294         if (even) {
295                 pfn0 = kvm->arch.guest_pmap[gfn];
296                 pfn1 = kvm->arch.guest_pmap[gfn ^ 0x1];
297         } else {
298                 pfn0 = kvm->arch.guest_pmap[gfn ^ 0x1];
299                 pfn1 = kvm->arch.guest_pmap[gfn];
300         }
301
302         entryhi = (vaddr | kvm_mips_get_kernel_asid(vcpu));
303         entrylo0 = mips3_paddr_to_tlbpfn(pfn0 << PAGE_SHIFT) | (0x3 << 3) |
304                    (1 << 2) | (0x1 << 1);
305         entrylo1 = mips3_paddr_to_tlbpfn(pfn1 << PAGE_SHIFT) | (0x3 << 3) |
306                    (1 << 2) | (0x1 << 1);
307
308         return kvm_mips_host_tlb_write(vcpu, entryhi, entrylo0, entrylo1,
309                                        flush_dcache_mask);
310 }
311 EXPORT_SYMBOL(kvm_mips_handle_kseg0_tlb_fault);
312
313 int kvm_mips_handle_commpage_tlb_fault(unsigned long badvaddr,
314         struct kvm_vcpu *vcpu)
315 {
316         pfn_t pfn0, pfn1;
317         unsigned long flags, old_entryhi = 0, vaddr = 0;
318         unsigned long entrylo0 = 0, entrylo1 = 0;
319
320         pfn0 = CPHYSADDR(vcpu->arch.kseg0_commpage) >> PAGE_SHIFT;
321         pfn1 = 0;
322         entrylo0 = mips3_paddr_to_tlbpfn(pfn0 << PAGE_SHIFT) | (0x3 << 3) |
323                    (1 << 2) | (0x1 << 1);
324         entrylo1 = 0;
325
326         local_irq_save(flags);
327
328         old_entryhi = read_c0_entryhi();
329         vaddr = badvaddr & (PAGE_MASK << 1);
330         write_c0_entryhi(vaddr | kvm_mips_get_kernel_asid(vcpu));
331         mtc0_tlbw_hazard();
332         write_c0_entrylo0(entrylo0);
333         mtc0_tlbw_hazard();
334         write_c0_entrylo1(entrylo1);
335         mtc0_tlbw_hazard();
336         write_c0_index(kvm_mips_get_commpage_asid(vcpu));
337         mtc0_tlbw_hazard();
338         tlb_write_indexed();
339         mtc0_tlbw_hazard();
340         tlbw_use_hazard();
341
342         kvm_debug("@ %#lx idx: %2d [entryhi(R): %#lx] entrylo0 (R): 0x%08lx, entrylo1(R): 0x%08lx\n",
343                   vcpu->arch.pc, read_c0_index(), read_c0_entryhi(),
344                   read_c0_entrylo0(), read_c0_entrylo1());
345
346         /* Restore old ASID */
347         write_c0_entryhi(old_entryhi);
348         mtc0_tlbw_hazard();
349         tlbw_use_hazard();
350         local_irq_restore(flags);
351
352         return 0;
353 }
354 EXPORT_SYMBOL(kvm_mips_handle_commpage_tlb_fault);
355
356 int kvm_mips_handle_mapped_seg_tlb_fault(struct kvm_vcpu *vcpu,
357                                          struct kvm_mips_tlb *tlb,
358                                          unsigned long *hpa0,
359                                          unsigned long *hpa1)
360 {
361         unsigned long entryhi = 0, entrylo0 = 0, entrylo1 = 0;
362         struct kvm *kvm = vcpu->kvm;
363         pfn_t pfn0, pfn1;
364         long tlb_lo[2];
365
366         tlb_lo[0] = tlb->tlb_lo0;
367         tlb_lo[1] = tlb->tlb_lo1;
368
369         /*
370          * The commpage address must not be mapped to anything else if the guest
371          * TLB contains entries nearby, or commpage accesses will break.
372          */
373         if (!((tlb->tlb_hi ^ KVM_GUEST_COMMPAGE_ADDR) &
374                         VPN2_MASK & (PAGE_MASK << 1)))
375                 tlb_lo[(KVM_GUEST_COMMPAGE_ADDR >> PAGE_SHIFT) & 1] = 0;
376
377         if (kvm_mips_map_page(kvm, mips3_tlbpfn_to_paddr(tlb_lo[0])
378                                    >> PAGE_SHIFT) < 0)
379                 return -1;
380
381         if (kvm_mips_map_page(kvm, mips3_tlbpfn_to_paddr(tlb_lo[1])
382                                    >> PAGE_SHIFT) < 0)
383                 return -1;
384
385         pfn0 = kvm->arch.guest_pmap[mips3_tlbpfn_to_paddr(tlb_lo[0])
386                                     >> PAGE_SHIFT];
387         pfn1 = kvm->arch.guest_pmap[mips3_tlbpfn_to_paddr(tlb_lo[1])
388                                     >> PAGE_SHIFT];
389
390         if (hpa0)
391                 *hpa0 = pfn0 << PAGE_SHIFT;
392
393         if (hpa1)
394                 *hpa1 = pfn1 << PAGE_SHIFT;
395
396         /* Get attributes from the Guest TLB */
397         entryhi = (tlb->tlb_hi & VPN2_MASK) | (KVM_GUEST_KERNEL_MODE(vcpu) ?
398                                                kvm_mips_get_kernel_asid(vcpu) :
399                                                kvm_mips_get_user_asid(vcpu));
400         entrylo0 = mips3_paddr_to_tlbpfn(pfn0 << PAGE_SHIFT) | (0x3 << 3) |
401                    (tlb_lo[0] & MIPS3_PG_D) | (tlb_lo[0] & MIPS3_PG_V);
402         entrylo1 = mips3_paddr_to_tlbpfn(pfn1 << PAGE_SHIFT) | (0x3 << 3) |
403                    (tlb_lo[1] & MIPS3_PG_D) | (tlb_lo[1] & MIPS3_PG_V);
404
405         kvm_debug("@ %#lx tlb_lo0: 0x%08lx tlb_lo1: 0x%08lx\n", vcpu->arch.pc,
406                   tlb->tlb_lo0, tlb->tlb_lo1);
407
408         return kvm_mips_host_tlb_write(vcpu, entryhi, entrylo0, entrylo1,
409                                        tlb->tlb_mask);
410 }
411 EXPORT_SYMBOL(kvm_mips_handle_mapped_seg_tlb_fault);
412
413 int kvm_mips_guest_tlb_lookup(struct kvm_vcpu *vcpu, unsigned long entryhi)
414 {
415         int i;
416         int index = -1;
417         struct kvm_mips_tlb *tlb = vcpu->arch.guest_tlb;
418
419         for (i = 0; i < KVM_MIPS_GUEST_TLB_SIZE; i++) {
420                 if (TLB_HI_VPN2_HIT(tlb[i], entryhi) &&
421                     TLB_HI_ASID_HIT(tlb[i], entryhi)) {
422                         index = i;
423                         break;
424                 }
425         }
426
427         kvm_debug("%s: entryhi: %#lx, index: %d lo0: %#lx, lo1: %#lx\n",
428                   __func__, entryhi, index, tlb[i].tlb_lo0, tlb[i].tlb_lo1);
429
430         return index;
431 }
432 EXPORT_SYMBOL(kvm_mips_guest_tlb_lookup);
433
434 int kvm_mips_host_tlb_lookup(struct kvm_vcpu *vcpu, unsigned long vaddr)
435 {
436         unsigned long old_entryhi, flags;
437         int idx;
438
439         local_irq_save(flags);
440
441         old_entryhi = read_c0_entryhi();
442
443         if (KVM_GUEST_KERNEL_MODE(vcpu))
444                 write_c0_entryhi((vaddr & VPN2_MASK) |
445                                  kvm_mips_get_kernel_asid(vcpu));
446         else {
447                 write_c0_entryhi((vaddr & VPN2_MASK) |
448                                  kvm_mips_get_user_asid(vcpu));
449         }
450
451         mtc0_tlbw_hazard();
452
453         tlb_probe();
454         tlb_probe_hazard();
455         idx = read_c0_index();
456
457         /* Restore old ASID */
458         write_c0_entryhi(old_entryhi);
459         mtc0_tlbw_hazard();
460         tlbw_use_hazard();
461
462         local_irq_restore(flags);
463
464         kvm_debug("Host TLB lookup, %#lx, idx: %2d\n", vaddr, idx);
465
466         return idx;
467 }
468 EXPORT_SYMBOL(kvm_mips_host_tlb_lookup);
469
470 int kvm_mips_host_tlb_inv(struct kvm_vcpu *vcpu, unsigned long va)
471 {
472         int idx;
473         unsigned long flags, old_entryhi;
474
475         local_irq_save(flags);
476
477         old_entryhi = read_c0_entryhi();
478
479         write_c0_entryhi((va & VPN2_MASK) | kvm_mips_get_user_asid(vcpu));
480         mtc0_tlbw_hazard();
481
482         tlb_probe();
483         tlb_probe_hazard();
484         idx = read_c0_index();
485
486         if (idx >= current_cpu_data.tlbsize)
487                 BUG();
488
489         if (idx > 0) {
490                 write_c0_entryhi(UNIQUE_ENTRYHI(idx));
491                 mtc0_tlbw_hazard();
492
493                 write_c0_entrylo0(0);
494                 mtc0_tlbw_hazard();
495
496                 write_c0_entrylo1(0);
497                 mtc0_tlbw_hazard();
498
499                 tlb_write_indexed();
500                 mtc0_tlbw_hazard();
501         }
502
503         write_c0_entryhi(old_entryhi);
504         mtc0_tlbw_hazard();
505         tlbw_use_hazard();
506
507         local_irq_restore(flags);
508
509         if (idx > 0)
510                 kvm_debug("%s: Invalidated entryhi %#lx @ idx %d\n", __func__,
511                           (va & VPN2_MASK) | kvm_mips_get_user_asid(vcpu), idx);
512
513         return 0;
514 }
515 EXPORT_SYMBOL(kvm_mips_host_tlb_inv);
516
517 /* XXXKYMA: Fix Guest USER/KERNEL no longer share the same ASID */
518 int kvm_mips_host_tlb_inv_index(struct kvm_vcpu *vcpu, int index)
519 {
520         unsigned long flags, old_entryhi;
521
522         if (index >= current_cpu_data.tlbsize)
523                 BUG();
524
525         local_irq_save(flags);
526
527         old_entryhi = read_c0_entryhi();
528
529         write_c0_entryhi(UNIQUE_ENTRYHI(index));
530         mtc0_tlbw_hazard();
531
532         write_c0_index(index);
533         mtc0_tlbw_hazard();
534
535         write_c0_entrylo0(0);
536         mtc0_tlbw_hazard();
537
538         write_c0_entrylo1(0);
539         mtc0_tlbw_hazard();
540
541         tlb_write_indexed();
542         mtc0_tlbw_hazard();
543         tlbw_use_hazard();
544
545         write_c0_entryhi(old_entryhi);
546         mtc0_tlbw_hazard();
547         tlbw_use_hazard();
548
549         local_irq_restore(flags);
550
551         return 0;
552 }
553
554 void kvm_mips_flush_host_tlb(int skip_kseg0)
555 {
556         unsigned long flags;
557         unsigned long old_entryhi, entryhi;
558         unsigned long old_pagemask;
559         int entry = 0;
560         int maxentry = current_cpu_data.tlbsize;
561
562         local_irq_save(flags);
563
564         old_entryhi = read_c0_entryhi();
565         old_pagemask = read_c0_pagemask();
566
567         /* Blast 'em all away. */
568         for (entry = 0; entry < maxentry; entry++) {
569                 write_c0_index(entry);
570                 mtc0_tlbw_hazard();
571
572                 if (skip_kseg0) {
573                         tlb_read();
574                         tlbw_use_hazard();
575
576                         entryhi = read_c0_entryhi();
577
578                         /* Don't blow away guest kernel entries */
579                         if (KVM_GUEST_KSEGX(entryhi) == KVM_GUEST_KSEG0)
580                                 continue;
581                 }
582
583                 /* Make sure all entries differ. */
584                 write_c0_entryhi(UNIQUE_ENTRYHI(entry));
585                 mtc0_tlbw_hazard();
586                 write_c0_entrylo0(0);
587                 mtc0_tlbw_hazard();
588                 write_c0_entrylo1(0);
589                 mtc0_tlbw_hazard();
590
591                 tlb_write_indexed();
592                 mtc0_tlbw_hazard();
593         }
594
595         tlbw_use_hazard();
596
597         write_c0_entryhi(old_entryhi);
598         write_c0_pagemask(old_pagemask);
599         mtc0_tlbw_hazard();
600         tlbw_use_hazard();
601
602         local_irq_restore(flags);
603 }
604 EXPORT_SYMBOL(kvm_mips_flush_host_tlb);
605
606 void kvm_get_new_mmu_context(struct mm_struct *mm, unsigned long cpu,
607                              struct kvm_vcpu *vcpu)
608 {
609         unsigned long asid = asid_cache(cpu);
610
611         asid += ASID_INC;
612         if (!(asid & ASID_MASK)) {
613                 if (cpu_has_vtag_icache)
614                         flush_icache_all();
615
616                 kvm_local_flush_tlb_all();      /* start new asid cycle */
617
618                 if (!asid)      /* fix version if needed */
619                         asid = ASID_FIRST_VERSION;
620         }
621
622         cpu_context(cpu, mm) = asid_cache(cpu) = asid;
623 }
624
625 void kvm_local_flush_tlb_all(void)
626 {
627         unsigned long flags;
628         unsigned long old_ctx;
629         int entry = 0;
630
631         local_irq_save(flags);
632         /* Save old context and create impossible VPN2 value */
633         old_ctx = read_c0_entryhi();
634         write_c0_entrylo0(0);
635         write_c0_entrylo1(0);
636
637         /* Blast 'em all away. */
638         while (entry < current_cpu_data.tlbsize) {
639                 /* Make sure all entries differ. */
640                 write_c0_entryhi(UNIQUE_ENTRYHI(entry));
641                 write_c0_index(entry);
642                 mtc0_tlbw_hazard();
643                 tlb_write_indexed();
644                 entry++;
645         }
646         tlbw_use_hazard();
647         write_c0_entryhi(old_ctx);
648         mtc0_tlbw_hazard();
649
650         local_irq_restore(flags);
651 }
652 EXPORT_SYMBOL(kvm_local_flush_tlb_all);
653
654 /**
655  * kvm_mips_migrate_count() - Migrate timer.
656  * @vcpu:       Virtual CPU.
657  *
658  * Migrate CP0_Count hrtimer to the current CPU by cancelling and restarting it
659  * if it was running prior to being cancelled.
660  *
661  * Must be called when the VCPU is migrated to a different CPU to ensure that
662  * timer expiry during guest execution interrupts the guest and causes the
663  * interrupt to be delivered in a timely manner.
664  */
665 static void kvm_mips_migrate_count(struct kvm_vcpu *vcpu)
666 {
667         if (hrtimer_cancel(&vcpu->arch.comparecount_timer))
668                 hrtimer_restart(&vcpu->arch.comparecount_timer);
669 }
670
671 /* Restore ASID once we are scheduled back after preemption */
672 void kvm_arch_vcpu_load(struct kvm_vcpu *vcpu, int cpu)
673 {
674         unsigned long flags;
675         int newasid = 0;
676
677         kvm_debug("%s: vcpu %p, cpu: %d\n", __func__, vcpu, cpu);
678
679         /* Alocate new kernel and user ASIDs if needed */
680
681         local_irq_save(flags);
682
683         if (((vcpu->arch.
684               guest_kernel_asid[cpu] ^ asid_cache(cpu)) & ASID_VERSION_MASK)) {
685                 kvm_get_new_mmu_context(&vcpu->arch.guest_kernel_mm, cpu, vcpu);
686                 vcpu->arch.guest_kernel_asid[cpu] =
687                     vcpu->arch.guest_kernel_mm.context.asid[cpu];
688                 kvm_get_new_mmu_context(&vcpu->arch.guest_user_mm, cpu, vcpu);
689                 vcpu->arch.guest_user_asid[cpu] =
690                     vcpu->arch.guest_user_mm.context.asid[cpu];
691                 newasid++;
692
693                 kvm_debug("[%d]: cpu_context: %#lx\n", cpu,
694                           cpu_context(cpu, current->mm));
695                 kvm_debug("[%d]: Allocated new ASID for Guest Kernel: %#x\n",
696                           cpu, vcpu->arch.guest_kernel_asid[cpu]);
697                 kvm_debug("[%d]: Allocated new ASID for Guest User: %#x\n", cpu,
698                           vcpu->arch.guest_user_asid[cpu]);
699         }
700
701         if (vcpu->arch.last_sched_cpu != cpu) {
702                 kvm_debug("[%d->%d]KVM VCPU[%d] switch\n",
703                           vcpu->arch.last_sched_cpu, cpu, vcpu->vcpu_id);
704                 /*
705                  * Migrate the timer interrupt to the current CPU so that it
706                  * always interrupts the guest and synchronously triggers a
707                  * guest timer interrupt.
708                  */
709                 kvm_mips_migrate_count(vcpu);
710         }
711
712         if (!newasid) {
713                 /*
714                  * If we preempted while the guest was executing, then reload
715                  * the pre-empted ASID
716                  */
717                 if (current->flags & PF_VCPU) {
718                         write_c0_entryhi(vcpu->arch.
719                                          preempt_entryhi & ASID_MASK);
720                         ehb();
721                 }
722         } else {
723                 /* New ASIDs were allocated for the VM */
724
725                 /*
726                  * Were we in guest context? If so then the pre-empted ASID is
727                  * no longer valid, we need to set it to what it should be based
728                  * on the mode of the Guest (Kernel/User)
729                  */
730                 if (current->flags & PF_VCPU) {
731                         if (KVM_GUEST_KERNEL_MODE(vcpu))
732                                 write_c0_entryhi(vcpu->arch.
733                                                  guest_kernel_asid[cpu] &
734                                                  ASID_MASK);
735                         else
736                                 write_c0_entryhi(vcpu->arch.
737                                                  guest_user_asid[cpu] &
738                                                  ASID_MASK);
739                         ehb();
740                 }
741         }
742
743         /* restore guest state to registers */
744         kvm_mips_callbacks->vcpu_set_regs(vcpu);
745
746         local_irq_restore(flags);
747
748 }
749 EXPORT_SYMBOL(kvm_arch_vcpu_load);
750
751 /* ASID can change if another task is scheduled during preemption */
752 void kvm_arch_vcpu_put(struct kvm_vcpu *vcpu)
753 {
754         unsigned long flags;
755         uint32_t cpu;
756
757         local_irq_save(flags);
758
759         cpu = smp_processor_id();
760
761         vcpu->arch.preempt_entryhi = read_c0_entryhi();
762         vcpu->arch.last_sched_cpu = cpu;
763
764         /* save guest state in registers */
765         kvm_mips_callbacks->vcpu_get_regs(vcpu);
766
767         if (((cpu_context(cpu, current->mm) ^ asid_cache(cpu)) &
768              ASID_VERSION_MASK)) {
769                 kvm_debug("%s: Dropping MMU Context:  %#lx\n", __func__,
770                           cpu_context(cpu, current->mm));
771                 drop_mmu_context(current->mm, cpu);
772         }
773         write_c0_entryhi(cpu_asid(cpu, current->mm));
774         ehb();
775
776         local_irq_restore(flags);
777 }
778 EXPORT_SYMBOL(kvm_arch_vcpu_put);
779
780 uint32_t kvm_get_inst(uint32_t *opc, struct kvm_vcpu *vcpu)
781 {
782         struct mips_coproc *cop0 = vcpu->arch.cop0;
783         unsigned long paddr, flags, vpn2, asid;
784         uint32_t inst;
785         int index;
786
787         if (KVM_GUEST_KSEGX((unsigned long) opc) < KVM_GUEST_KSEG0 ||
788             KVM_GUEST_KSEGX((unsigned long) opc) == KVM_GUEST_KSEG23) {
789                 local_irq_save(flags);
790                 index = kvm_mips_host_tlb_lookup(vcpu, (unsigned long) opc);
791                 if (index >= 0) {
792                         inst = *(opc);
793                 } else {
794                         vpn2 = (unsigned long) opc & VPN2_MASK;
795                         asid = kvm_read_c0_guest_entryhi(cop0) & ASID_MASK;
796                         index = kvm_mips_guest_tlb_lookup(vcpu, vpn2 | asid);
797                         if (index < 0) {
798                                 kvm_err("%s: get_user_failed for %p, vcpu: %p, ASID: %#lx\n",
799                                         __func__, opc, vcpu, read_c0_entryhi());
800                                 kvm_mips_dump_host_tlbs();
801                                 local_irq_restore(flags);
802                                 return KVM_INVALID_INST;
803                         }
804                         kvm_mips_handle_mapped_seg_tlb_fault(vcpu,
805                                                              &vcpu->arch.
806                                                              guest_tlb[index],
807                                                              NULL, NULL);
808                         inst = *(opc);
809                 }
810                 local_irq_restore(flags);
811         } else if (KVM_GUEST_KSEGX(opc) == KVM_GUEST_KSEG0) {
812                 paddr =
813                     kvm_mips_translate_guest_kseg0_to_hpa(vcpu,
814                                                           (unsigned long) opc);
815                 inst = *(uint32_t *) CKSEG0ADDR(paddr);
816         } else {
817                 kvm_err("%s: illegal address: %p\n", __func__, opc);
818                 return KVM_INVALID_INST;
819         }
820
821         return inst;
822 }
823 EXPORT_SYMBOL(kvm_get_inst);