blob: 8e245e764c210ad908dfb33270414b70186c6692 [file] [log] [blame]
Heiko Carstens22938972014-01-01 16:26:52 +01001/*
2 * guest access functions
3 *
4 * Copyright IBM Corp. 2014
5 *
6 */
7
8#include <linux/vmalloc.h>
9#include <linux/err.h>
10#include <asm/pgtable.h>
11#include "kvm-s390.h"
12#include "gaccess.h"
Alexander Yarygin664b4972015-03-09 14:17:25 +030013#include <asm/switch_to.h>
Heiko Carstens22938972014-01-01 16:26:52 +010014
15union asce {
16 unsigned long val;
17 struct {
18 unsigned long origin : 52; /* Region- or Segment-Table Origin */
19 unsigned long : 2;
20 unsigned long g : 1; /* Subspace Group Control */
21 unsigned long p : 1; /* Private Space Control */
22 unsigned long s : 1; /* Storage-Alteration-Event Control */
23 unsigned long x : 1; /* Space-Switch-Event Control */
24 unsigned long r : 1; /* Real-Space Control */
25 unsigned long : 1;
26 unsigned long dt : 2; /* Designation-Type Control */
27 unsigned long tl : 2; /* Region- or Segment-Table Length */
28 };
29};
30
31enum {
32 ASCE_TYPE_SEGMENT = 0,
33 ASCE_TYPE_REGION3 = 1,
34 ASCE_TYPE_REGION2 = 2,
35 ASCE_TYPE_REGION1 = 3
36};
37
38union region1_table_entry {
39 unsigned long val;
40 struct {
41 unsigned long rto: 52;/* Region-Table Origin */
42 unsigned long : 2;
43 unsigned long p : 1; /* DAT-Protection Bit */
44 unsigned long : 1;
45 unsigned long tf : 2; /* Region-Second-Table Offset */
46 unsigned long i : 1; /* Region-Invalid Bit */
47 unsigned long : 1;
48 unsigned long tt : 2; /* Table-Type Bits */
49 unsigned long tl : 2; /* Region-Second-Table Length */
50 };
51};
52
53union region2_table_entry {
54 unsigned long val;
55 struct {
56 unsigned long rto: 52;/* Region-Table Origin */
57 unsigned long : 2;
58 unsigned long p : 1; /* DAT-Protection Bit */
59 unsigned long : 1;
60 unsigned long tf : 2; /* Region-Third-Table Offset */
61 unsigned long i : 1; /* Region-Invalid Bit */
62 unsigned long : 1;
63 unsigned long tt : 2; /* Table-Type Bits */
64 unsigned long tl : 2; /* Region-Third-Table Length */
65 };
66};
67
68struct region3_table_entry_fc0 {
69 unsigned long sto: 52;/* Segment-Table Origin */
70 unsigned long : 1;
71 unsigned long fc : 1; /* Format-Control */
72 unsigned long p : 1; /* DAT-Protection Bit */
73 unsigned long : 1;
74 unsigned long tf : 2; /* Segment-Table Offset */
75 unsigned long i : 1; /* Region-Invalid Bit */
76 unsigned long cr : 1; /* Common-Region Bit */
77 unsigned long tt : 2; /* Table-Type Bits */
78 unsigned long tl : 2; /* Segment-Table Length */
79};
80
81struct region3_table_entry_fc1 {
82 unsigned long rfaa : 33; /* Region-Frame Absolute Address */
83 unsigned long : 14;
84 unsigned long av : 1; /* ACCF-Validity Control */
85 unsigned long acc: 4; /* Access-Control Bits */
86 unsigned long f : 1; /* Fetch-Protection Bit */
87 unsigned long fc : 1; /* Format-Control */
88 unsigned long p : 1; /* DAT-Protection Bit */
89 unsigned long co : 1; /* Change-Recording Override */
90 unsigned long : 2;
91 unsigned long i : 1; /* Region-Invalid Bit */
92 unsigned long cr : 1; /* Common-Region Bit */
93 unsigned long tt : 2; /* Table-Type Bits */
94 unsigned long : 2;
95};
96
97union region3_table_entry {
98 unsigned long val;
99 struct region3_table_entry_fc0 fc0;
100 struct region3_table_entry_fc1 fc1;
101 struct {
102 unsigned long : 53;
103 unsigned long fc : 1; /* Format-Control */
104 unsigned long : 4;
105 unsigned long i : 1; /* Region-Invalid Bit */
106 unsigned long cr : 1; /* Common-Region Bit */
107 unsigned long tt : 2; /* Table-Type Bits */
108 unsigned long : 2;
109 };
110};
111
112struct segment_entry_fc0 {
113 unsigned long pto: 53;/* Page-Table Origin */
114 unsigned long fc : 1; /* Format-Control */
115 unsigned long p : 1; /* DAT-Protection Bit */
116 unsigned long : 3;
117 unsigned long i : 1; /* Segment-Invalid Bit */
118 unsigned long cs : 1; /* Common-Segment Bit */
119 unsigned long tt : 2; /* Table-Type Bits */
120 unsigned long : 2;
121};
122
123struct segment_entry_fc1 {
124 unsigned long sfaa : 44; /* Segment-Frame Absolute Address */
125 unsigned long : 3;
126 unsigned long av : 1; /* ACCF-Validity Control */
127 unsigned long acc: 4; /* Access-Control Bits */
128 unsigned long f : 1; /* Fetch-Protection Bit */
129 unsigned long fc : 1; /* Format-Control */
130 unsigned long p : 1; /* DAT-Protection Bit */
131 unsigned long co : 1; /* Change-Recording Override */
132 unsigned long : 2;
133 unsigned long i : 1; /* Segment-Invalid Bit */
134 unsigned long cs : 1; /* Common-Segment Bit */
135 unsigned long tt : 2; /* Table-Type Bits */
136 unsigned long : 2;
137};
138
139union segment_table_entry {
140 unsigned long val;
141 struct segment_entry_fc0 fc0;
142 struct segment_entry_fc1 fc1;
143 struct {
144 unsigned long : 53;
145 unsigned long fc : 1; /* Format-Control */
146 unsigned long : 4;
147 unsigned long i : 1; /* Segment-Invalid Bit */
148 unsigned long cs : 1; /* Common-Segment Bit */
149 unsigned long tt : 2; /* Table-Type Bits */
150 unsigned long : 2;
151 };
152};
153
154enum {
155 TABLE_TYPE_SEGMENT = 0,
156 TABLE_TYPE_REGION3 = 1,
157 TABLE_TYPE_REGION2 = 2,
158 TABLE_TYPE_REGION1 = 3
159};
160
161union page_table_entry {
162 unsigned long val;
163 struct {
164 unsigned long pfra : 52; /* Page-Frame Real Address */
165 unsigned long z : 1; /* Zero Bit */
166 unsigned long i : 1; /* Page-Invalid Bit */
167 unsigned long p : 1; /* DAT-Protection Bit */
168 unsigned long co : 1; /* Change-Recording Override */
169 unsigned long : 8;
170 };
171};
172
173/*
174 * vaddress union in order to easily decode a virtual address into its
175 * region first index, region second index etc. parts.
176 */
177union vaddress {
178 unsigned long addr;
179 struct {
180 unsigned long rfx : 11;
181 unsigned long rsx : 11;
182 unsigned long rtx : 11;
183 unsigned long sx : 11;
184 unsigned long px : 8;
185 unsigned long bx : 12;
186 };
187 struct {
188 unsigned long rfx01 : 2;
189 unsigned long : 9;
190 unsigned long rsx01 : 2;
191 unsigned long : 9;
192 unsigned long rtx01 : 2;
193 unsigned long : 9;
194 unsigned long sx01 : 2;
195 unsigned long : 29;
196 };
197};
198
199/*
200 * raddress union which will contain the result (real or absolute address)
201 * after a page table walk. The rfaa, sfaa and pfra members are used to
202 * simply assign them the value of a region, segment or page table entry.
203 */
204union raddress {
205 unsigned long addr;
206 unsigned long rfaa : 33; /* Region-Frame Absolute Address */
207 unsigned long sfaa : 44; /* Segment-Frame Absolute Address */
208 unsigned long pfra : 52; /* Page-Frame Real Address */
209};
210
Alexander Yarygin664b4972015-03-09 14:17:25 +0300211union alet {
212 u32 val;
213 struct {
214 u32 reserved : 7;
215 u32 p : 1;
216 u32 alesn : 8;
217 u32 alen : 16;
218 };
219};
220
221union ald {
222 u32 val;
223 struct {
224 u32 : 1;
225 u32 alo : 24;
226 u32 all : 7;
227 };
228};
229
230struct ale {
231 unsigned long i : 1; /* ALEN-Invalid Bit */
232 unsigned long : 5;
233 unsigned long fo : 1; /* Fetch-Only Bit */
234 unsigned long p : 1; /* Private Bit */
235 unsigned long alesn : 8; /* Access-List-Entry Sequence Number */
236 unsigned long aleax : 16; /* Access-List-Entry Authorization Index */
237 unsigned long : 32;
238 unsigned long : 1;
239 unsigned long asteo : 25; /* ASN-Second-Table-Entry Origin */
240 unsigned long : 6;
241 unsigned long astesn : 32; /* ASTE Sequence Number */
242} __packed;
243
244struct aste {
245 unsigned long i : 1; /* ASX-Invalid Bit */
246 unsigned long ato : 29; /* Authority-Table Origin */
247 unsigned long : 1;
248 unsigned long b : 1; /* Base-Space Bit */
249 unsigned long ax : 16; /* Authorization Index */
250 unsigned long atl : 12; /* Authority-Table Length */
251 unsigned long : 2;
252 unsigned long ca : 1; /* Controlled-ASN Bit */
253 unsigned long ra : 1; /* Reusable-ASN Bit */
254 unsigned long asce : 64; /* Address-Space-Control Element */
255 unsigned long ald : 32;
256 unsigned long astesn : 32;
257 /* .. more fields there */
258} __packed;
Heiko Carstens8a2422342014-01-10 14:33:28 +0100259
260int ipte_lock_held(struct kvm_vcpu *vcpu)
261{
Eugene (jno) Dvurechenski5e044312015-04-22 18:08:39 +0200262 if (vcpu->arch.sie_block->eca & 1) {
263 int rc;
Heiko Carstens8a2422342014-01-10 14:33:28 +0100264
Eugene (jno) Dvurechenski5e044312015-04-22 18:08:39 +0200265 read_lock(&vcpu->kvm->arch.sca_lock);
266 rc = kvm_s390_get_ipte_control(vcpu->kvm)->kh != 0;
267 read_unlock(&vcpu->kvm->arch.sca_lock);
268 return rc;
269 }
Thomas Hutha6b7e452014-10-01 14:48:42 +0200270 return vcpu->kvm->arch.ipte_lock_count != 0;
Heiko Carstens8a2422342014-01-10 14:33:28 +0100271}
272
273static void ipte_lock_simple(struct kvm_vcpu *vcpu)
274{
275 union ipte_control old, new, *ic;
276
Thomas Hutha6b7e452014-10-01 14:48:42 +0200277 mutex_lock(&vcpu->kvm->arch.ipte_mutex);
278 vcpu->kvm->arch.ipte_lock_count++;
279 if (vcpu->kvm->arch.ipte_lock_count > 1)
Heiko Carstens8a2422342014-01-10 14:33:28 +0100280 goto out;
Eugene (jno) Dvurechenski5e044312015-04-22 18:08:39 +0200281retry:
282 read_lock(&vcpu->kvm->arch.sca_lock);
Eugene (jno) Dvurechenski60514512015-04-21 14:44:54 +0200283 ic = kvm_s390_get_ipte_control(vcpu->kvm);
Heiko Carstens8a2422342014-01-10 14:33:28 +0100284 do {
Christian Borntraeger5de72a22014-11-25 13:17:34 +0100285 old = READ_ONCE(*ic);
Eugene (jno) Dvurechenski5e044312015-04-22 18:08:39 +0200286 if (old.k) {
287 read_unlock(&vcpu->kvm->arch.sca_lock);
Heiko Carstens8a2422342014-01-10 14:33:28 +0100288 cond_resched();
Eugene (jno) Dvurechenski5e044312015-04-22 18:08:39 +0200289 goto retry;
Heiko Carstens8a2422342014-01-10 14:33:28 +0100290 }
291 new = old;
292 new.k = 1;
293 } while (cmpxchg(&ic->val, old.val, new.val) != old.val);
Eugene (jno) Dvurechenski5e044312015-04-22 18:08:39 +0200294 read_unlock(&vcpu->kvm->arch.sca_lock);
Heiko Carstens8a2422342014-01-10 14:33:28 +0100295out:
Thomas Hutha6b7e452014-10-01 14:48:42 +0200296 mutex_unlock(&vcpu->kvm->arch.ipte_mutex);
Heiko Carstens8a2422342014-01-10 14:33:28 +0100297}
298
299static void ipte_unlock_simple(struct kvm_vcpu *vcpu)
300{
301 union ipte_control old, new, *ic;
302
Thomas Hutha6b7e452014-10-01 14:48:42 +0200303 mutex_lock(&vcpu->kvm->arch.ipte_mutex);
304 vcpu->kvm->arch.ipte_lock_count--;
305 if (vcpu->kvm->arch.ipte_lock_count)
Heiko Carstens8a2422342014-01-10 14:33:28 +0100306 goto out;
Eugene (jno) Dvurechenski5e044312015-04-22 18:08:39 +0200307 read_lock(&vcpu->kvm->arch.sca_lock);
Eugene (jno) Dvurechenski60514512015-04-21 14:44:54 +0200308 ic = kvm_s390_get_ipte_control(vcpu->kvm);
Heiko Carstens8a2422342014-01-10 14:33:28 +0100309 do {
Christian Borntraeger5de72a22014-11-25 13:17:34 +0100310 old = READ_ONCE(*ic);
Christian Borntraeger13650392014-11-04 08:31:16 +0100311 new = old;
Heiko Carstens8a2422342014-01-10 14:33:28 +0100312 new.k = 0;
313 } while (cmpxchg(&ic->val, old.val, new.val) != old.val);
Eugene (jno) Dvurechenski5e044312015-04-22 18:08:39 +0200314 read_unlock(&vcpu->kvm->arch.sca_lock);
Christian Borntraeger6b331952014-09-03 21:17:03 +0200315 wake_up(&vcpu->kvm->arch.ipte_wq);
Heiko Carstens8a2422342014-01-10 14:33:28 +0100316out:
Thomas Hutha6b7e452014-10-01 14:48:42 +0200317 mutex_unlock(&vcpu->kvm->arch.ipte_mutex);
Heiko Carstens8a2422342014-01-10 14:33:28 +0100318}
319
320static void ipte_lock_siif(struct kvm_vcpu *vcpu)
321{
322 union ipte_control old, new, *ic;
323
Eugene (jno) Dvurechenski5e044312015-04-22 18:08:39 +0200324retry:
325 read_lock(&vcpu->kvm->arch.sca_lock);
Eugene (jno) Dvurechenski60514512015-04-21 14:44:54 +0200326 ic = kvm_s390_get_ipte_control(vcpu->kvm);
Heiko Carstens8a2422342014-01-10 14:33:28 +0100327 do {
Christian Borntraeger5de72a22014-11-25 13:17:34 +0100328 old = READ_ONCE(*ic);
Eugene (jno) Dvurechenski5e044312015-04-22 18:08:39 +0200329 if (old.kg) {
330 read_unlock(&vcpu->kvm->arch.sca_lock);
Heiko Carstens8a2422342014-01-10 14:33:28 +0100331 cond_resched();
Eugene (jno) Dvurechenski5e044312015-04-22 18:08:39 +0200332 goto retry;
Heiko Carstens8a2422342014-01-10 14:33:28 +0100333 }
334 new = old;
335 new.k = 1;
336 new.kh++;
337 } while (cmpxchg(&ic->val, old.val, new.val) != old.val);
Eugene (jno) Dvurechenski5e044312015-04-22 18:08:39 +0200338 read_unlock(&vcpu->kvm->arch.sca_lock);
Heiko Carstens8a2422342014-01-10 14:33:28 +0100339}
340
341static void ipte_unlock_siif(struct kvm_vcpu *vcpu)
342{
343 union ipte_control old, new, *ic;
344
Eugene (jno) Dvurechenski5e044312015-04-22 18:08:39 +0200345 read_lock(&vcpu->kvm->arch.sca_lock);
Eugene (jno) Dvurechenski60514512015-04-21 14:44:54 +0200346 ic = kvm_s390_get_ipte_control(vcpu->kvm);
Heiko Carstens8a2422342014-01-10 14:33:28 +0100347 do {
Christian Borntraeger5de72a22014-11-25 13:17:34 +0100348 old = READ_ONCE(*ic);
Christian Borntraeger13650392014-11-04 08:31:16 +0100349 new = old;
Heiko Carstens8a2422342014-01-10 14:33:28 +0100350 new.kh--;
351 if (!new.kh)
352 new.k = 0;
353 } while (cmpxchg(&ic->val, old.val, new.val) != old.val);
Eugene (jno) Dvurechenski5e044312015-04-22 18:08:39 +0200354 read_unlock(&vcpu->kvm->arch.sca_lock);
Heiko Carstens8a2422342014-01-10 14:33:28 +0100355 if (!new.kh)
356 wake_up(&vcpu->kvm->arch.ipte_wq);
357}
358
Thomas Hutha0465f92014-02-04 14:48:07 +0100359void ipte_lock(struct kvm_vcpu *vcpu)
Heiko Carstens8a2422342014-01-10 14:33:28 +0100360{
361 if (vcpu->arch.sie_block->eca & 1)
362 ipte_lock_siif(vcpu);
363 else
364 ipte_lock_simple(vcpu);
365}
366
Thomas Hutha0465f92014-02-04 14:48:07 +0100367void ipte_unlock(struct kvm_vcpu *vcpu)
Heiko Carstens8a2422342014-01-10 14:33:28 +0100368{
369 if (vcpu->arch.sie_block->eca & 1)
370 ipte_unlock_siif(vcpu);
371 else
372 ipte_unlock_simple(vcpu);
373}
374
Alexander Yarygin664b4972015-03-09 14:17:25 +0300375static int ar_translation(struct kvm_vcpu *vcpu, union asce *asce, ar_t ar,
David Hildenbrand92c96322015-11-16 15:42:11 +0100376 enum gacc_mode mode)
Heiko Carstens22938972014-01-01 16:26:52 +0100377{
Alexander Yarygin664b4972015-03-09 14:17:25 +0300378 union alet alet;
379 struct ale ale;
380 struct aste aste;
381 unsigned long ald_addr, authority_table_addr;
382 union ald ald;
383 int eax, rc;
384 u8 authority_table;
385
386 if (ar >= NUM_ACRS)
387 return -EINVAL;
388
389 save_access_regs(vcpu->run->s.regs.acrs);
390 alet.val = vcpu->run->s.regs.acrs[ar];
391
392 if (ar == 0 || alet.val == 0) {
393 asce->val = vcpu->arch.sie_block->gcr[1];
394 return 0;
395 } else if (alet.val == 1) {
396 asce->val = vcpu->arch.sie_block->gcr[7];
397 return 0;
398 }
399
400 if (alet.reserved)
401 return PGM_ALET_SPECIFICATION;
402
403 if (alet.p)
404 ald_addr = vcpu->arch.sie_block->gcr[5];
405 else
406 ald_addr = vcpu->arch.sie_block->gcr[2];
407 ald_addr &= 0x7fffffc0;
408
409 rc = read_guest_real(vcpu, ald_addr + 16, &ald.val, sizeof(union ald));
410 if (rc)
411 return rc;
412
413 if (alet.alen / 8 > ald.all)
414 return PGM_ALEN_TRANSLATION;
415
416 if (0x7fffffff - ald.alo * 128 < alet.alen * 16)
417 return PGM_ADDRESSING;
418
419 rc = read_guest_real(vcpu, ald.alo * 128 + alet.alen * 16, &ale,
420 sizeof(struct ale));
421 if (rc)
422 return rc;
423
424 if (ale.i == 1)
425 return PGM_ALEN_TRANSLATION;
426 if (ale.alesn != alet.alesn)
427 return PGM_ALE_SEQUENCE;
428
429 rc = read_guest_real(vcpu, ale.asteo * 64, &aste, sizeof(struct aste));
430 if (rc)
431 return rc;
432
433 if (aste.i)
434 return PGM_ASTE_VALIDITY;
435 if (aste.astesn != ale.astesn)
436 return PGM_ASTE_SEQUENCE;
437
438 if (ale.p == 1) {
439 eax = (vcpu->arch.sie_block->gcr[8] >> 16) & 0xffff;
440 if (ale.aleax != eax) {
441 if (eax / 16 > aste.atl)
442 return PGM_EXTENDED_AUTHORITY;
443
444 authority_table_addr = aste.ato * 4 + eax / 4;
445
446 rc = read_guest_real(vcpu, authority_table_addr,
447 &authority_table,
448 sizeof(u8));
449 if (rc)
450 return rc;
451
452 if ((authority_table & (0x40 >> ((eax & 3) * 2))) == 0)
453 return PGM_EXTENDED_AUTHORITY;
454 }
455 }
456
David Hildenbrand92c96322015-11-16 15:42:11 +0100457 if (ale.fo == 1 && mode == GACC_STORE)
Alexander Yarygin664b4972015-03-09 14:17:25 +0300458 return PGM_PROTECTION;
459
460 asce->val = aste.asce;
461 return 0;
462}
463
464struct trans_exc_code_bits {
465 unsigned long addr : 52; /* Translation-exception Address */
466 unsigned long fsi : 2; /* Access Exception Fetch/Store Indication */
467 unsigned long : 6;
468 unsigned long b60 : 1;
469 unsigned long b61 : 1;
470 unsigned long as : 2; /* ASCE Identifier */
471};
472
473enum {
474 FSI_UNKNOWN = 0, /* Unknown wether fetch or store */
475 FSI_STORE = 1, /* Exception was due to store operation */
476 FSI_FETCH = 2 /* Exception was due to fetch operation */
477};
478
David Hildenbrandd03193d2016-05-31 19:56:46 +0200479enum prot_type {
480 PROT_TYPE_LA = 0,
481 PROT_TYPE_KEYC = 1,
482 PROT_TYPE_ALC = 2,
483 PROT_TYPE_DAT = 3,
484};
485
486static int trans_exc(struct kvm_vcpu *vcpu, int code, unsigned long gva,
487 ar_t ar, enum gacc_mode mode, enum prot_type prot)
488{
489 struct kvm_s390_pgm_info *pgm = &vcpu->arch.pgm;
490 struct trans_exc_code_bits *tec;
491
492 memset(pgm, 0, sizeof(*pgm));
493 pgm->code = code;
494 tec = (struct trans_exc_code_bits *)&pgm->trans_exc_code;
495
496 switch (code) {
497 case PGM_ASCE_TYPE:
498 case PGM_PAGE_TRANSLATION:
499 case PGM_REGION_FIRST_TRANS:
500 case PGM_REGION_SECOND_TRANS:
501 case PGM_REGION_THIRD_TRANS:
502 case PGM_SEGMENT_TRANSLATION:
503 /*
504 * op_access_id only applies to MOVE_PAGE -> set bit 61
505 * exc_access_id has to be set to 0 for some instructions. Both
506 * cases have to be handled by the caller. We can always store
507 * exc_access_id, as it is undefined for non-ar cases.
508 */
509 tec->addr = gva >> PAGE_SHIFT;
510 tec->fsi = mode == GACC_STORE ? FSI_STORE : FSI_FETCH;
511 tec->as = psw_bits(vcpu->arch.sie_block->gpsw).as;
512 /* FALL THROUGH */
513 case PGM_ALEN_TRANSLATION:
514 case PGM_ALE_SEQUENCE:
515 case PGM_ASTE_VALIDITY:
516 case PGM_ASTE_SEQUENCE:
517 case PGM_EXTENDED_AUTHORITY:
518 pgm->exc_access_id = ar;
519 break;
520 case PGM_PROTECTION:
521 switch (prot) {
522 case PROT_TYPE_ALC:
523 tec->b60 = 1;
524 /* FALL THROUGH */
525 case PROT_TYPE_DAT:
526 tec->b61 = 1;
527 tec->addr = gva >> PAGE_SHIFT;
528 tec->fsi = mode == GACC_STORE ? FSI_STORE : FSI_FETCH;
529 tec->as = psw_bits(vcpu->arch.sie_block->gpsw).as;
530 /* exc_access_id is undefined for most cases */
531 pgm->exc_access_id = ar;
532 break;
533 default: /* LA and KEYC set b61 to 0, other params undefined */
534 break;
535 }
536 break;
537 }
538 return code;
539}
540
Alexander Yarygin664b4972015-03-09 14:17:25 +0300541static int get_vcpu_asce(struct kvm_vcpu *vcpu, union asce *asce,
David Hildenbrand61673752016-05-31 19:44:10 +0200542 unsigned long ga, ar_t ar, enum gacc_mode mode)
Alexander Yarygin664b4972015-03-09 14:17:25 +0300543{
544 int rc;
David Hildenbrand34346b92015-11-16 15:48:59 +0100545 struct psw_bits psw = psw_bits(vcpu->arch.sie_block->gpsw);
Alexander Yarygin664b4972015-03-09 14:17:25 +0300546
David Hildenbrand34346b92015-11-16 15:48:59 +0100547 if (!psw.t) {
Alexander Yarygin664b4972015-03-09 14:17:25 +0300548 asce->val = 0;
549 asce->r = 1;
550 return 0;
551 }
552
David Hildenbrand34346b92015-11-16 15:48:59 +0100553 if (mode == GACC_IFETCH)
554 psw.as = psw.as == PSW_AS_HOME ? PSW_AS_HOME : PSW_AS_PRIMARY;
555
556 switch (psw.as) {
Heiko Carstens22938972014-01-01 16:26:52 +0100557 case PSW_AS_PRIMARY:
Alexander Yarygin664b4972015-03-09 14:17:25 +0300558 asce->val = vcpu->arch.sie_block->gcr[1];
559 return 0;
Heiko Carstens22938972014-01-01 16:26:52 +0100560 case PSW_AS_SECONDARY:
Alexander Yarygin664b4972015-03-09 14:17:25 +0300561 asce->val = vcpu->arch.sie_block->gcr[7];
562 return 0;
Heiko Carstens22938972014-01-01 16:26:52 +0100563 case PSW_AS_HOME:
Alexander Yarygin664b4972015-03-09 14:17:25 +0300564 asce->val = vcpu->arch.sie_block->gcr[13];
565 return 0;
566 case PSW_AS_ACCREG:
David Hildenbrand92c96322015-11-16 15:42:11 +0100567 rc = ar_translation(vcpu, asce, ar, mode);
Alexander Yarygin664b4972015-03-09 14:17:25 +0300568 if (rc > 0)
David Hildenbrandbcfa01d72016-05-31 20:21:03 +0200569 return trans_exc(vcpu, rc, ga, ar, mode, PROT_TYPE_ALC);
Alexander Yarygin664b4972015-03-09 14:17:25 +0300570 return rc;
Heiko Carstens22938972014-01-01 16:26:52 +0100571 }
572 return 0;
573}
574
575static int deref_table(struct kvm *kvm, unsigned long gpa, unsigned long *val)
576{
577 return kvm_read_guest(kvm, gpa, val, sizeof(*val));
578}
579
580/**
581 * guest_translate - translate a guest virtual into a guest absolute address
582 * @vcpu: virtual cpu
583 * @gva: guest virtual address
584 * @gpa: points to where guest physical (absolute) address should be stored
Alexander Yarygin75a18122015-01-22 12:44:11 +0300585 * @asce: effective asce
David Hildenbrand92c96322015-11-16 15:42:11 +0100586 * @mode: indicates the access mode to be used
Heiko Carstens22938972014-01-01 16:26:52 +0100587 *
588 * Translate a guest virtual address into a guest absolute address by means
Yannick Guerrini16b0fc12015-02-26 23:16:44 +0100589 * of dynamic address translation as specified by the architecture.
Heiko Carstens22938972014-01-01 16:26:52 +0100590 * If the resulting absolute address is not available in the configuration
591 * an addressing exception is indicated and @gpa will not be changed.
592 *
593 * Returns: - zero on success; @gpa contains the resulting absolute address
594 * - a negative value if guest access failed due to e.g. broken
595 * guest mapping
596 * - a positve value if an access exception happened. In this case
597 * the returned value is the program interruption code as defined
598 * by the architecture
599 */
600static unsigned long guest_translate(struct kvm_vcpu *vcpu, unsigned long gva,
Alexander Yarygin75a18122015-01-22 12:44:11 +0300601 unsigned long *gpa, const union asce asce,
David Hildenbrand92c96322015-11-16 15:42:11 +0100602 enum gacc_mode mode)
Heiko Carstens22938972014-01-01 16:26:52 +0100603{
604 union vaddress vaddr = {.addr = gva};
605 union raddress raddr = {.addr = gva};
606 union page_table_entry pte;
607 int dat_protection = 0;
608 union ctlreg0 ctlreg0;
609 unsigned long ptr;
610 int edat1, edat2;
Heiko Carstens22938972014-01-01 16:26:52 +0100611
612 ctlreg0.val = vcpu->arch.sie_block->gcr[0];
Michael Mueller9d8d5782015-02-02 15:42:51 +0100613 edat1 = ctlreg0.edat && test_kvm_facility(vcpu->kvm, 8);
614 edat2 = edat1 && test_kvm_facility(vcpu->kvm, 78);
Heiko Carstens22938972014-01-01 16:26:52 +0100615 if (asce.r)
616 goto real_address;
617 ptr = asce.origin * 4096;
618 switch (asce.dt) {
619 case ASCE_TYPE_REGION1:
620 if (vaddr.rfx01 > asce.tl)
621 return PGM_REGION_FIRST_TRANS;
622 ptr += vaddr.rfx * 8;
623 break;
624 case ASCE_TYPE_REGION2:
625 if (vaddr.rfx)
626 return PGM_ASCE_TYPE;
627 if (vaddr.rsx01 > asce.tl)
628 return PGM_REGION_SECOND_TRANS;
629 ptr += vaddr.rsx * 8;
630 break;
631 case ASCE_TYPE_REGION3:
632 if (vaddr.rfx || vaddr.rsx)
633 return PGM_ASCE_TYPE;
634 if (vaddr.rtx01 > asce.tl)
635 return PGM_REGION_THIRD_TRANS;
636 ptr += vaddr.rtx * 8;
637 break;
638 case ASCE_TYPE_SEGMENT:
639 if (vaddr.rfx || vaddr.rsx || vaddr.rtx)
640 return PGM_ASCE_TYPE;
641 if (vaddr.sx01 > asce.tl)
642 return PGM_SEGMENT_TRANSLATION;
643 ptr += vaddr.sx * 8;
644 break;
645 }
646 switch (asce.dt) {
647 case ASCE_TYPE_REGION1: {
648 union region1_table_entry rfte;
649
650 if (kvm_is_error_gpa(vcpu->kvm, ptr))
651 return PGM_ADDRESSING;
652 if (deref_table(vcpu->kvm, ptr, &rfte.val))
653 return -EFAULT;
654 if (rfte.i)
655 return PGM_REGION_FIRST_TRANS;
656 if (rfte.tt != TABLE_TYPE_REGION1)
657 return PGM_TRANSLATION_SPEC;
658 if (vaddr.rsx01 < rfte.tf || vaddr.rsx01 > rfte.tl)
659 return PGM_REGION_SECOND_TRANS;
660 if (edat1)
661 dat_protection |= rfte.p;
662 ptr = rfte.rto * 4096 + vaddr.rsx * 8;
663 }
664 /* fallthrough */
665 case ASCE_TYPE_REGION2: {
666 union region2_table_entry rste;
667
668 if (kvm_is_error_gpa(vcpu->kvm, ptr))
669 return PGM_ADDRESSING;
670 if (deref_table(vcpu->kvm, ptr, &rste.val))
671 return -EFAULT;
672 if (rste.i)
673 return PGM_REGION_SECOND_TRANS;
674 if (rste.tt != TABLE_TYPE_REGION2)
675 return PGM_TRANSLATION_SPEC;
676 if (vaddr.rtx01 < rste.tf || vaddr.rtx01 > rste.tl)
677 return PGM_REGION_THIRD_TRANS;
678 if (edat1)
679 dat_protection |= rste.p;
680 ptr = rste.rto * 4096 + vaddr.rtx * 8;
681 }
682 /* fallthrough */
683 case ASCE_TYPE_REGION3: {
684 union region3_table_entry rtte;
685
686 if (kvm_is_error_gpa(vcpu->kvm, ptr))
687 return PGM_ADDRESSING;
688 if (deref_table(vcpu->kvm, ptr, &rtte.val))
689 return -EFAULT;
690 if (rtte.i)
691 return PGM_REGION_THIRD_TRANS;
692 if (rtte.tt != TABLE_TYPE_REGION3)
693 return PGM_TRANSLATION_SPEC;
694 if (rtte.cr && asce.p && edat2)
695 return PGM_TRANSLATION_SPEC;
696 if (rtte.fc && edat2) {
697 dat_protection |= rtte.fc1.p;
698 raddr.rfaa = rtte.fc1.rfaa;
699 goto absolute_address;
700 }
701 if (vaddr.sx01 < rtte.fc0.tf)
702 return PGM_SEGMENT_TRANSLATION;
703 if (vaddr.sx01 > rtte.fc0.tl)
704 return PGM_SEGMENT_TRANSLATION;
705 if (edat1)
706 dat_protection |= rtte.fc0.p;
707 ptr = rtte.fc0.sto * 4096 + vaddr.sx * 8;
708 }
709 /* fallthrough */
710 case ASCE_TYPE_SEGMENT: {
711 union segment_table_entry ste;
712
713 if (kvm_is_error_gpa(vcpu->kvm, ptr))
714 return PGM_ADDRESSING;
715 if (deref_table(vcpu->kvm, ptr, &ste.val))
716 return -EFAULT;
717 if (ste.i)
718 return PGM_SEGMENT_TRANSLATION;
719 if (ste.tt != TABLE_TYPE_SEGMENT)
720 return PGM_TRANSLATION_SPEC;
721 if (ste.cs && asce.p)
722 return PGM_TRANSLATION_SPEC;
723 if (ste.fc && edat1) {
724 dat_protection |= ste.fc1.p;
725 raddr.sfaa = ste.fc1.sfaa;
726 goto absolute_address;
727 }
728 dat_protection |= ste.fc0.p;
729 ptr = ste.fc0.pto * 2048 + vaddr.px * 8;
730 }
731 }
732 if (kvm_is_error_gpa(vcpu->kvm, ptr))
733 return PGM_ADDRESSING;
734 if (deref_table(vcpu->kvm, ptr, &pte.val))
735 return -EFAULT;
736 if (pte.i)
737 return PGM_PAGE_TRANSLATION;
738 if (pte.z)
739 return PGM_TRANSLATION_SPEC;
740 if (pte.co && !edat1)
741 return PGM_TRANSLATION_SPEC;
742 dat_protection |= pte.p;
743 raddr.pfra = pte.pfra;
744real_address:
745 raddr.addr = kvm_s390_real_to_abs(vcpu, raddr.addr);
746absolute_address:
David Hildenbrand92c96322015-11-16 15:42:11 +0100747 if (mode == GACC_STORE && dat_protection)
Heiko Carstens22938972014-01-01 16:26:52 +0100748 return PGM_PROTECTION;
749 if (kvm_is_error_gpa(vcpu->kvm, raddr.addr))
750 return PGM_ADDRESSING;
751 *gpa = raddr.addr;
752 return 0;
753}
754
755static inline int is_low_address(unsigned long ga)
756{
757 /* Check for address ranges 0..511 and 4096..4607 */
758 return (ga & ~0x11fful) == 0;
759}
760
Alexander Yarygin75a18122015-01-22 12:44:11 +0300761static int low_address_protection_enabled(struct kvm_vcpu *vcpu,
762 const union asce asce)
Heiko Carstens22938972014-01-01 16:26:52 +0100763{
764 union ctlreg0 ctlreg0 = {.val = vcpu->arch.sie_block->gcr[0]};
765 psw_t *psw = &vcpu->arch.sie_block->gpsw;
Heiko Carstens22938972014-01-01 16:26:52 +0100766
767 if (!ctlreg0.lap)
768 return 0;
Heiko Carstens22938972014-01-01 16:26:52 +0100769 if (psw_bits(*psw).t && asce.p)
770 return 0;
771 return 1;
772}
773
David Hildenbrandcde0dcf2016-05-31 20:13:35 +0200774static int guest_page_range(struct kvm_vcpu *vcpu, unsigned long ga, ar_t ar,
Heiko Carstens22938972014-01-01 16:26:52 +0100775 unsigned long *pages, unsigned long nr_pages,
David Hildenbrand92c96322015-11-16 15:42:11 +0100776 const union asce asce, enum gacc_mode mode)
Heiko Carstens22938972014-01-01 16:26:52 +0100777{
Heiko Carstens22938972014-01-01 16:26:52 +0100778 psw_t *psw = &vcpu->arch.sie_block->gpsw;
David Hildenbrandcde0dcf2016-05-31 20:13:35 +0200779 int lap_enabled, rc = 0;
Heiko Carstens22938972014-01-01 16:26:52 +0100780
Alexander Yarygin75a18122015-01-22 12:44:11 +0300781 lap_enabled = low_address_protection_enabled(vcpu, asce);
Heiko Carstens22938972014-01-01 16:26:52 +0100782 while (nr_pages) {
783 ga = kvm_s390_logical_to_effective(vcpu, ga);
David Hildenbrandcde0dcf2016-05-31 20:13:35 +0200784 if (mode == GACC_STORE && lap_enabled && is_low_address(ga))
785 return trans_exc(vcpu, PGM_PROTECTION, ga, ar, mode,
786 PROT_TYPE_LA);
Heiko Carstens22938972014-01-01 16:26:52 +0100787 ga &= PAGE_MASK;
788 if (psw_bits(*psw).t) {
David Hildenbrand92c96322015-11-16 15:42:11 +0100789 rc = guest_translate(vcpu, ga, pages, asce, mode);
Heiko Carstens22938972014-01-01 16:26:52 +0100790 if (rc < 0)
791 return rc;
Heiko Carstens22938972014-01-01 16:26:52 +0100792 } else {
793 *pages = kvm_s390_real_to_abs(vcpu, ga);
794 if (kvm_is_error_gpa(vcpu->kvm, *pages))
David Hildenbrandcde0dcf2016-05-31 20:13:35 +0200795 rc = PGM_ADDRESSING;
Heiko Carstens22938972014-01-01 16:26:52 +0100796 }
David Hildenbrandcde0dcf2016-05-31 20:13:35 +0200797 if (rc)
798 return trans_exc(vcpu, rc, ga, ar, mode, PROT_TYPE_DAT);
Heiko Carstens22938972014-01-01 16:26:52 +0100799 ga += PAGE_SIZE;
800 pages++;
801 nr_pages--;
802 }
803 return 0;
804}
805
Alexander Yarygin8ae04b82015-01-19 13:24:51 +0300806int access_guest(struct kvm_vcpu *vcpu, unsigned long ga, ar_t ar, void *data,
David Hildenbrand92c96322015-11-16 15:42:11 +0100807 unsigned long len, enum gacc_mode mode)
Heiko Carstens22938972014-01-01 16:26:52 +0100808{
809 psw_t *psw = &vcpu->arch.sie_block->gpsw;
810 unsigned long _len, nr_pages, gpa, idx;
811 unsigned long pages_array[2];
812 unsigned long *pages;
Heiko Carstens8a2422342014-01-10 14:33:28 +0100813 int need_ipte_lock;
814 union asce asce;
Heiko Carstens22938972014-01-01 16:26:52 +0100815 int rc;
816
817 if (!len)
818 return 0;
David Hildenbrand61673752016-05-31 19:44:10 +0200819 ga = kvm_s390_logical_to_effective(vcpu, ga);
820 rc = get_vcpu_asce(vcpu, &asce, ga, ar, mode);
Alexander Yarygin664b4972015-03-09 14:17:25 +0300821 if (rc)
822 return rc;
Heiko Carstens22938972014-01-01 16:26:52 +0100823 nr_pages = (((ga & ~PAGE_MASK) + len - 1) >> PAGE_SHIFT) + 1;
824 pages = pages_array;
825 if (nr_pages > ARRAY_SIZE(pages_array))
826 pages = vmalloc(nr_pages * sizeof(unsigned long));
827 if (!pages)
828 return -ENOMEM;
Heiko Carstens8a2422342014-01-10 14:33:28 +0100829 need_ipte_lock = psw_bits(*psw).t && !asce.r;
830 if (need_ipte_lock)
831 ipte_lock(vcpu);
David Hildenbrandcde0dcf2016-05-31 20:13:35 +0200832 rc = guest_page_range(vcpu, ga, ar, pages, nr_pages, asce, mode);
Heiko Carstens22938972014-01-01 16:26:52 +0100833 for (idx = 0; idx < nr_pages && !rc; idx++) {
834 gpa = *(pages + idx) + (ga & ~PAGE_MASK);
835 _len = min(PAGE_SIZE - (gpa & ~PAGE_MASK), len);
David Hildenbrand92c96322015-11-16 15:42:11 +0100836 if (mode == GACC_STORE)
Heiko Carstens22938972014-01-01 16:26:52 +0100837 rc = kvm_write_guest(vcpu->kvm, gpa, data, _len);
838 else
839 rc = kvm_read_guest(vcpu->kvm, gpa, data, _len);
840 len -= _len;
841 ga += _len;
842 data += _len;
843 }
Heiko Carstens8a2422342014-01-10 14:33:28 +0100844 if (need_ipte_lock)
845 ipte_unlock(vcpu);
Heiko Carstens22938972014-01-01 16:26:52 +0100846 if (nr_pages > ARRAY_SIZE(pages_array))
847 vfree(pages);
848 return rc;
849}
850
851int access_guest_real(struct kvm_vcpu *vcpu, unsigned long gra,
David Hildenbrand92c96322015-11-16 15:42:11 +0100852 void *data, unsigned long len, enum gacc_mode mode)
Heiko Carstens22938972014-01-01 16:26:52 +0100853{
854 unsigned long _len, gpa;
855 int rc = 0;
856
857 while (len && !rc) {
858 gpa = kvm_s390_real_to_abs(vcpu, gra);
859 _len = min(PAGE_SIZE - (gpa & ~PAGE_MASK), len);
David Hildenbrand92c96322015-11-16 15:42:11 +0100860 if (mode)
Heiko Carstens22938972014-01-01 16:26:52 +0100861 rc = write_guest_abs(vcpu, gpa, data, _len);
862 else
863 rc = read_guest_abs(vcpu, gpa, data, _len);
864 len -= _len;
865 gra += _len;
866 data += _len;
867 }
868 return rc;
869}
Thomas Huthf8232c82014-03-03 23:34:42 +0100870
871/**
Thomas Huth9fbc0272014-02-04 14:43:25 +0100872 * guest_translate_address - translate guest logical into guest absolute address
873 *
874 * Parameter semantics are the same as the ones from guest_translate.
875 * The memory contents at the guest address are not changed.
876 *
877 * Note: The IPTE lock is not taken during this function, so the caller
878 * has to take care of this.
879 */
Alexander Yarygin8ae04b82015-01-19 13:24:51 +0300880int guest_translate_address(struct kvm_vcpu *vcpu, unsigned long gva, ar_t ar,
David Hildenbrand92c96322015-11-16 15:42:11 +0100881 unsigned long *gpa, enum gacc_mode mode)
Thomas Huth9fbc0272014-02-04 14:43:25 +0100882{
Thomas Huth9fbc0272014-02-04 14:43:25 +0100883 psw_t *psw = &vcpu->arch.sie_block->gpsw;
Thomas Huth9fbc0272014-02-04 14:43:25 +0100884 union asce asce;
885 int rc;
886
Thomas Huth9fbc0272014-02-04 14:43:25 +0100887 gva = kvm_s390_logical_to_effective(vcpu, gva);
David Hildenbrand61673752016-05-31 19:44:10 +0200888 rc = get_vcpu_asce(vcpu, &asce, gva, ar, mode);
Alexander Yarygin664b4972015-03-09 14:17:25 +0300889 if (rc)
890 return rc;
Alexander Yarygin75a18122015-01-22 12:44:11 +0300891 if (is_low_address(gva) && low_address_protection_enabled(vcpu, asce)) {
David Hildenbrandfbcb7d52016-05-31 20:06:55 +0200892 if (mode == GACC_STORE)
893 return trans_exc(vcpu, PGM_PROTECTION, gva, 0,
894 mode, PROT_TYPE_LA);
Thomas Huth9fbc0272014-02-04 14:43:25 +0100895 }
896
Thomas Huth9fbc0272014-02-04 14:43:25 +0100897 if (psw_bits(*psw).t && !asce.r) { /* Use DAT? */
David Hildenbrand92c96322015-11-16 15:42:11 +0100898 rc = guest_translate(vcpu, gva, gpa, asce, mode);
David Hildenbrandfbcb7d52016-05-31 20:06:55 +0200899 if (rc > 0)
900 return trans_exc(vcpu, rc, gva, 0, mode, PROT_TYPE_DAT);
Thomas Huth9fbc0272014-02-04 14:43:25 +0100901 } else {
Thomas Huth9fbc0272014-02-04 14:43:25 +0100902 *gpa = kvm_s390_real_to_abs(vcpu, gva);
903 if (kvm_is_error_gpa(vcpu->kvm, *gpa))
David Hildenbrandfbcb7d52016-05-31 20:06:55 +0200904 return trans_exc(vcpu, rc, gva, PGM_ADDRESSING, mode, 0);
Thomas Huth9fbc0272014-02-04 14:43:25 +0100905 }
906
907 return rc;
908}
909
910/**
Thomas Huth41408c282015-02-06 15:01:21 +0100911 * check_gva_range - test a range of guest virtual addresses for accessibility
912 */
913int check_gva_range(struct kvm_vcpu *vcpu, unsigned long gva, ar_t ar,
David Hildenbrand92c96322015-11-16 15:42:11 +0100914 unsigned long length, enum gacc_mode mode)
Thomas Huth41408c282015-02-06 15:01:21 +0100915{
916 unsigned long gpa;
917 unsigned long currlen;
918 int rc = 0;
919
920 ipte_lock(vcpu);
921 while (length > 0 && !rc) {
922 currlen = min(length, PAGE_SIZE - (gva % PAGE_SIZE));
David Hildenbrand92c96322015-11-16 15:42:11 +0100923 rc = guest_translate_address(vcpu, gva, ar, &gpa, mode);
Thomas Huth41408c282015-02-06 15:01:21 +0100924 gva += currlen;
925 length -= currlen;
926 }
927 ipte_unlock(vcpu);
928
929 return rc;
930}
931
932/**
Alexander Yarygindd9e5b72015-03-03 14:26:14 +0300933 * kvm_s390_check_low_addr_prot_real - check for low-address protection
934 * @gra: Guest real address
Thomas Huthf8232c82014-03-03 23:34:42 +0100935 *
936 * Checks whether an address is subject to low-address protection and set
937 * up vcpu->arch.pgm accordingly if necessary.
938 *
939 * Return: 0 if no protection exception, or PGM_PROTECTION if protected.
940 */
Alexander Yarygindd9e5b72015-03-03 14:26:14 +0300941int kvm_s390_check_low_addr_prot_real(struct kvm_vcpu *vcpu, unsigned long gra)
Thomas Huthf8232c82014-03-03 23:34:42 +0100942{
Alexander Yarygindd9e5b72015-03-03 14:26:14 +0300943 union ctlreg0 ctlreg0 = {.val = vcpu->arch.sie_block->gcr[0]};
Thomas Huthf8232c82014-03-03 23:34:42 +0100944
Alexander Yarygindd9e5b72015-03-03 14:26:14 +0300945 if (!ctlreg0.lap || !is_low_address(gra))
Thomas Huthf8232c82014-03-03 23:34:42 +0100946 return 0;
David Hildenbrand3e3c67f2016-05-31 20:00:33 +0200947 return trans_exc(vcpu, PGM_PROTECTION, gra, 0, GACC_STORE, PROT_TYPE_LA);
Thomas Huthf8232c82014-03-03 23:34:42 +0100948}