blob: 7c9835b0a33f7b29b474038c91654b62f7536a87 [file] [log] [blame]
David Hildenbranda3508fb2015-07-08 13:19:48 +02001/*
2 * kvm nested virtualization support for s390x
3 *
4 * Copyright IBM Corp. 2016
5 *
6 * This program is free software; you can redistribute it and/or modify
7 * it under the terms of the GNU General Public License (version 2 only)
8 * as published by the Free Software Foundation.
9 *
10 * Author(s): David Hildenbrand <dahi@linux.vnet.ibm.com>
11 */
12#include <linux/vmalloc.h>
13#include <linux/kvm_host.h>
14#include <linux/bug.h>
15#include <linux/list.h>
16#include <linux/bitmap.h>
17#include <asm/gmap.h>
18#include <asm/mmu_context.h>
19#include <asm/sclp.h>
20#include <asm/nmi.h>
21#include "kvm-s390.h"
22#include "gaccess.h"
23
24struct vsie_page {
25 struct kvm_s390_sie_block scb_s; /* 0x0000 */
26 /* the pinned originial scb */
27 struct kvm_s390_sie_block *scb_o; /* 0x0200 */
28 /* the shadow gmap in use by the vsie_page */
29 struct gmap *gmap; /* 0x0208 */
30 __u8 reserved[0x1000 - 0x0210]; /* 0x0210 */
31} __packed;
32
33/* trigger a validity icpt for the given scb */
34static int set_validity_icpt(struct kvm_s390_sie_block *scb,
35 __u16 reason_code)
36{
37 scb->ipa = 0x1000;
38 scb->ipb = ((__u32) reason_code) << 16;
39 scb->icptcode = ICPT_VALIDITY;
40 return 1;
41}
42
43/* mark the prefix as unmapped, this will block the VSIE */
44static void prefix_unmapped(struct vsie_page *vsie_page)
45{
46 atomic_or(PROG_REQUEST, &vsie_page->scb_s.prog20);
47}
48
49/* mark the prefix as unmapped and wait until the VSIE has been left */
50static void prefix_unmapped_sync(struct vsie_page *vsie_page)
51{
52 prefix_unmapped(vsie_page);
53 if (vsie_page->scb_s.prog0c & PROG_IN_SIE)
54 atomic_or(CPUSTAT_STOP_INT, &vsie_page->scb_s.cpuflags);
55 while (vsie_page->scb_s.prog0c & PROG_IN_SIE)
56 cpu_relax();
57}
58
59/* mark the prefix as mapped, this will allow the VSIE to run */
60static void prefix_mapped(struct vsie_page *vsie_page)
61{
62 atomic_andnot(PROG_REQUEST, &vsie_page->scb_s.prog20);
63}
64
David Hildenbrand06d68a62016-04-22 13:50:09 +020065/* test if the prefix is mapped into the gmap shadow */
66static int prefix_is_mapped(struct vsie_page *vsie_page)
67{
68 return !(atomic_read(&vsie_page->scb_s.prog20) & PROG_REQUEST);
69}
David Hildenbranda3508fb2015-07-08 13:19:48 +020070
71/* copy the updated intervention request bits into the shadow scb */
72static void update_intervention_requests(struct vsie_page *vsie_page)
73{
74 const int bits = CPUSTAT_STOP_INT | CPUSTAT_IO_INT | CPUSTAT_EXT_INT;
75 int cpuflags;
76
77 cpuflags = atomic_read(&vsie_page->scb_o->cpuflags);
78 atomic_andnot(bits, &vsie_page->scb_s.cpuflags);
79 atomic_or(cpuflags & bits, &vsie_page->scb_s.cpuflags);
80}
81
82/* shadow (filter and validate) the cpuflags */
83static int prepare_cpuflags(struct kvm_vcpu *vcpu, struct vsie_page *vsie_page)
84{
85 struct kvm_s390_sie_block *scb_s = &vsie_page->scb_s;
86 struct kvm_s390_sie_block *scb_o = vsie_page->scb_o;
87 int newflags, cpuflags = atomic_read(&scb_o->cpuflags);
88
89 /* we don't allow ESA/390 guests */
90 if (!(cpuflags & CPUSTAT_ZARCH))
91 return set_validity_icpt(scb_s, 0x0001U);
92
93 if (cpuflags & (CPUSTAT_RRF | CPUSTAT_MCDS))
94 return set_validity_icpt(scb_s, 0x0001U);
95 else if (cpuflags & (CPUSTAT_SLSV | CPUSTAT_SLSR))
96 return set_validity_icpt(scb_s, 0x0007U);
97
98 /* intervention requests will be set later */
99 newflags = CPUSTAT_ZARCH;
David Hildenbrand535ef812016-02-12 12:24:20 +0100100 if (cpuflags & CPUSTAT_GED && test_kvm_facility(vcpu->kvm, 8))
101 newflags |= CPUSTAT_GED;
102 if (cpuflags & CPUSTAT_GED2 && test_kvm_facility(vcpu->kvm, 78)) {
103 if (cpuflags & CPUSTAT_GED)
104 return set_validity_icpt(scb_s, 0x0001U);
105 newflags |= CPUSTAT_GED2;
106 }
David Hildenbranda3508fb2015-07-08 13:19:48 +0200107
108 atomic_set(&scb_s->cpuflags, newflags);
109 return 0;
110}
111
David Hildenbrand35736022016-02-19 10:11:24 +0100112/* shadow (round up/down) the ibc to avoid validity icpt */
113static void prepare_ibc(struct kvm_vcpu *vcpu, struct vsie_page *vsie_page)
114{
115 struct kvm_s390_sie_block *scb_s = &vsie_page->scb_s;
116 struct kvm_s390_sie_block *scb_o = vsie_page->scb_o;
117 __u64 min_ibc = (sclp.ibc >> 16) & 0x0fffU;
118
119 scb_s->ibc = 0;
120 /* ibc installed in g2 and requested for g3 */
121 if (vcpu->kvm->arch.model.ibc && (scb_o->ibc & 0x0fffU)) {
122 scb_s->ibc = scb_o->ibc & 0x0fffU;
123 /* takte care of the minimum ibc level of the machine */
124 if (scb_s->ibc < min_ibc)
125 scb_s->ibc = min_ibc;
126 /* take care of the maximum ibc level set for the guest */
127 if (scb_s->ibc > vcpu->kvm->arch.model.ibc)
128 scb_s->ibc = vcpu->kvm->arch.model.ibc;
129 }
130}
131
David Hildenbranda3508fb2015-07-08 13:19:48 +0200132/* unshadow the scb, copying parameters back to the real scb */
133static void unshadow_scb(struct kvm_vcpu *vcpu, struct vsie_page *vsie_page)
134{
135 struct kvm_s390_sie_block *scb_s = &vsie_page->scb_s;
136 struct kvm_s390_sie_block *scb_o = vsie_page->scb_o;
137
138 /* interception */
139 scb_o->icptcode = scb_s->icptcode;
140 scb_o->icptstatus = scb_s->icptstatus;
141 scb_o->ipa = scb_s->ipa;
142 scb_o->ipb = scb_s->ipb;
143 scb_o->gbea = scb_s->gbea;
144
145 /* timer */
146 scb_o->cputm = scb_s->cputm;
147 scb_o->ckc = scb_s->ckc;
148 scb_o->todpr = scb_s->todpr;
149
150 /* guest state */
151 scb_o->gpsw = scb_s->gpsw;
152 scb_o->gg14 = scb_s->gg14;
153 scb_o->gg15 = scb_s->gg15;
154 memcpy(scb_o->gcr, scb_s->gcr, 128);
155 scb_o->pp = scb_s->pp;
156
157 /* interrupt intercept */
158 switch (scb_s->icptcode) {
159 case ICPT_PROGI:
160 case ICPT_INSTPROGI:
161 case ICPT_EXTINT:
162 memcpy((void *)((u64)scb_o + 0xc0),
163 (void *)((u64)scb_s + 0xc0), 0xf0 - 0xc0);
164 break;
165 case ICPT_PARTEXEC:
166 /* MVPG only */
167 memcpy((void *)((u64)scb_o + 0xc0),
168 (void *)((u64)scb_s + 0xc0), 0xd0 - 0xc0);
169 break;
170 }
171
172 if (scb_s->ihcpu != 0xffffU)
173 scb_o->ihcpu = scb_s->ihcpu;
174}
175
176/*
177 * Setup the shadow scb by copying and checking the relevant parts of the g2
178 * provided scb.
179 *
180 * Returns: - 0 if the scb has been shadowed
181 * - > 0 if control has to be given to guest 2
182 */
183static int shadow_scb(struct kvm_vcpu *vcpu, struct vsie_page *vsie_page)
184{
185 struct kvm_s390_sie_block *scb_o = vsie_page->scb_o;
186 struct kvm_s390_sie_block *scb_s = &vsie_page->scb_s;
David Hildenbrand06d68a62016-04-22 13:50:09 +0200187 unsigned long new_mso;
David Hildenbranda3508fb2015-07-08 13:19:48 +0200188 int rc;
189
190 /* make sure we don't have any leftovers when reusing the scb */
191 scb_s->icptcode = 0;
192 scb_s->eca = 0;
193 scb_s->ecb = 0;
194 scb_s->ecb2 = 0;
195 scb_s->ecb3 = 0;
196 scb_s->ecd = 0;
197
198 rc = prepare_cpuflags(vcpu, vsie_page);
199 if (rc)
200 goto out;
201
202 /* timer */
203 scb_s->cputm = scb_o->cputm;
204 scb_s->ckc = scb_o->ckc;
205 scb_s->todpr = scb_o->todpr;
206 scb_s->epoch = scb_o->epoch;
207
208 /* guest state */
209 scb_s->gpsw = scb_o->gpsw;
210 scb_s->gg14 = scb_o->gg14;
211 scb_s->gg15 = scb_o->gg15;
212 memcpy(scb_s->gcr, scb_o->gcr, 128);
213 scb_s->pp = scb_o->pp;
214
215 /* interception / execution handling */
216 scb_s->gbea = scb_o->gbea;
217 scb_s->lctl = scb_o->lctl;
218 scb_s->svcc = scb_o->svcc;
219 scb_s->ictl = scb_o->ictl;
220 /*
221 * SKEY handling functions can't deal with false setting of PTE invalid
222 * bits. Therefore we cannot provide interpretation and would later
223 * have to provide own emulation handlers.
224 */
225 scb_s->ictl |= ICTL_ISKE | ICTL_SSKE | ICTL_RRBE;
226 scb_s->icpua = scb_o->icpua;
227
David Hildenbrand06d68a62016-04-22 13:50:09 +0200228 new_mso = scb_o->mso & 0xfffffffffff00000UL;
229 /* if the hva of the prefix changes, we have to remap the prefix */
230 if (scb_s->mso != new_mso || scb_s->prefix != scb_o->prefix)
231 prefix_unmapped(vsie_page);
David Hildenbranda3508fb2015-07-08 13:19:48 +0200232 /* SIE will do mso/msl validity and exception checks for us */
233 scb_s->msl = scb_o->msl & 0xfffffffffff00000UL;
David Hildenbrand06d68a62016-04-22 13:50:09 +0200234 scb_s->mso = new_mso;
David Hildenbranda3508fb2015-07-08 13:19:48 +0200235 scb_s->prefix = scb_o->prefix;
236
237 /* We have to definetly flush the tlb if this scb never ran */
238 if (scb_s->ihcpu != 0xffffU)
239 scb_s->ihcpu = scb_o->ihcpu;
240
241 /* MVPG and Protection Exception Interpretation are always available */
242 scb_s->eca |= scb_o->eca & 0x01002000U;
243
David Hildenbrand35736022016-02-19 10:11:24 +0100244 prepare_ibc(vcpu, vsie_page);
David Hildenbranda3508fb2015-07-08 13:19:48 +0200245out:
246 if (rc)
247 unshadow_scb(vcpu, vsie_page);
248 return rc;
249}
250
251void kvm_s390_vsie_gmap_notifier(struct gmap *gmap, unsigned long start,
252 unsigned long end)
253{
254 struct kvm *kvm = gmap->private;
255 struct vsie_page *cur;
256 unsigned long prefix;
257 struct page *page;
258 int i;
259
260 if (!gmap_is_shadow(gmap))
261 return;
262 if (start >= 1UL << 31)
263 /* We are only interested in prefix pages */
264 return;
265
266 /*
267 * Only new shadow blocks are added to the list during runtime,
268 * therefore we can safely reference them all the time.
269 */
270 for (i = 0; i < kvm->arch.vsie.page_count; i++) {
271 page = READ_ONCE(kvm->arch.vsie.pages[i]);
272 if (!page)
273 continue;
274 cur = page_to_virt(page);
275 if (READ_ONCE(cur->gmap) != gmap)
276 continue;
277 prefix = cur->scb_s.prefix << GUEST_PREFIX_SHIFT;
278 /* with mso/msl, the prefix lies at an offset */
279 prefix += cur->scb_s.mso;
280 if (prefix <= end && start <= prefix + PAGE_SIZE - 1)
281 prefix_unmapped_sync(cur);
282 }
283}
284
285/*
286 * Map the first prefix page.
287 *
288 * The prefix will be protected, a gmap notifier will inform about unmaps.
289 * The shadow scb must not be executed until the prefix is remapped, this is
290 * guaranteed by properly handling PROG_REQUEST.
291 *
292 * Returns: - 0 on if successfully mapped or already mapped
293 * - > 0 if control has to be given to guest 2
294 * - -EAGAIN if the caller can retry immediately
295 * - -ENOMEM if out of memory
296 */
297static int map_prefix(struct kvm_vcpu *vcpu, struct vsie_page *vsie_page)
298{
299 struct kvm_s390_sie_block *scb_s = &vsie_page->scb_s;
300 u64 prefix = scb_s->prefix << GUEST_PREFIX_SHIFT;
301 int rc;
302
David Hildenbrand06d68a62016-04-22 13:50:09 +0200303 if (prefix_is_mapped(vsie_page))
304 return 0;
305
David Hildenbranda3508fb2015-07-08 13:19:48 +0200306 /* mark it as mapped so we can catch any concurrent unmappers */
307 prefix_mapped(vsie_page);
308
309 /* with mso/msl, the prefix lies at offset *mso* */
310 prefix += scb_s->mso;
311
312 rc = kvm_s390_shadow_fault(vcpu, vsie_page->gmap, prefix);
313 /*
314 * We don't have to mprotect, we will be called for all unshadows.
315 * SIE will detect if protection applies and trigger a validity.
316 */
317 if (rc)
318 prefix_unmapped(vsie_page);
319 if (rc > 0 || rc == -EFAULT)
320 rc = set_validity_icpt(scb_s, 0x0037U);
321 return rc;
322}
323
324/*
325 * Pin the guest page given by gpa and set hpa to the pinned host address.
326 * Will always be pinned writable.
327 *
328 * Returns: - 0 on success
329 * - -EINVAL if the gpa is not valid guest storage
330 * - -ENOMEM if out of memory
331 */
332static int pin_guest_page(struct kvm *kvm, gpa_t gpa, hpa_t *hpa)
333{
334 struct page *page;
335 hva_t hva;
336 int rc;
337
338 hva = gfn_to_hva(kvm, gpa_to_gfn(gpa));
339 if (kvm_is_error_hva(hva))
340 return -EINVAL;
341 rc = get_user_pages_fast(hva, 1, 1, &page);
342 if (rc < 0)
343 return rc;
344 else if (rc != 1)
345 return -ENOMEM;
346 *hpa = (hpa_t) page_to_virt(page) + (gpa & ~PAGE_MASK);
347 return 0;
348}
349
350/* Unpins a page previously pinned via pin_guest_page, marking it as dirty. */
351static void unpin_guest_page(struct kvm *kvm, gpa_t gpa, hpa_t hpa)
352{
353 struct page *page;
354
355 page = virt_to_page(hpa);
356 set_page_dirty_lock(page);
357 put_page(page);
358 /* mark the page always as dirty for migration */
359 mark_page_dirty(kvm, gpa_to_gfn(gpa));
360}
361
362/* unpin all blocks previously pinned by pin_blocks(), marking them dirty */
363static void unpin_blocks(struct kvm_vcpu *vcpu, struct vsie_page *vsie_page)
364{
365 struct kvm_s390_sie_block *scb_o = vsie_page->scb_o;
366 struct kvm_s390_sie_block *scb_s = &vsie_page->scb_s;
367 hpa_t hpa;
368 gpa_t gpa;
369
370 hpa = (u64) scb_s->scaoh << 32 | scb_s->scaol;
371 if (hpa) {
372 gpa = scb_o->scaol & ~0xfUL;
373 unpin_guest_page(vcpu->kvm, gpa, hpa);
374 scb_s->scaol = 0;
375 scb_s->scaoh = 0;
376 }
377}
378
379/*
380 * Instead of shadowing some blocks, we can simply forward them because the
381 * addresses in the scb are 64 bit long.
382 *
383 * This works as long as the data lies in one page. If blocks ever exceed one
384 * page, we have to fall back to shadowing.
385 *
386 * As we reuse the sca, the vcpu pointers contained in it are invalid. We must
387 * therefore not enable any facilities that access these pointers (e.g. SIGPIF).
388 *
389 * Returns: - 0 if all blocks were pinned.
390 * - > 0 if control has to be given to guest 2
391 * - -ENOMEM if out of memory
392 */
393static int pin_blocks(struct kvm_vcpu *vcpu, struct vsie_page *vsie_page)
394{
395 struct kvm_s390_sie_block *scb_o = vsie_page->scb_o;
396 struct kvm_s390_sie_block *scb_s = &vsie_page->scb_s;
397 hpa_t hpa;
398 gpa_t gpa;
399 int rc = 0;
400
401 gpa = scb_o->scaol & ~0xfUL;
402 if (gpa) {
403 if (!(gpa & ~0x1fffUL))
404 rc = set_validity_icpt(scb_s, 0x0038U);
405 else if ((gpa & ~0x1fffUL) == kvm_s390_get_prefix(vcpu))
406 rc = set_validity_icpt(scb_s, 0x0011U);
407 else if ((gpa & PAGE_MASK) !=
408 ((gpa + sizeof(struct bsca_block) - 1) & PAGE_MASK))
409 rc = set_validity_icpt(scb_s, 0x003bU);
410 if (!rc) {
411 rc = pin_guest_page(vcpu->kvm, gpa, &hpa);
412 if (rc == -EINVAL)
413 rc = set_validity_icpt(scb_s, 0x0034U);
414 }
415 if (rc)
416 goto unpin;
417 scb_s->scaoh = (u32)((u64)hpa >> 32);
418 scb_s->scaol = (u32)(u64)hpa;
419 }
420 return 0;
421unpin:
422 unpin_blocks(vcpu, vsie_page);
423 return rc;
424}
425
426/* unpin the scb provided by guest 2, marking it as dirty */
427static void unpin_scb(struct kvm_vcpu *vcpu, struct vsie_page *vsie_page,
428 gpa_t gpa)
429{
430 hpa_t hpa = (hpa_t) vsie_page->scb_o;
431
432 if (hpa)
433 unpin_guest_page(vcpu->kvm, gpa, hpa);
434 vsie_page->scb_o = NULL;
435}
436
437/*
438 * Pin the scb at gpa provided by guest 2 at vsie_page->scb_o.
439 *
440 * Returns: - 0 if the scb was pinned.
441 * - > 0 if control has to be given to guest 2
442 * - -ENOMEM if out of memory
443 */
444static int pin_scb(struct kvm_vcpu *vcpu, struct vsie_page *vsie_page,
445 gpa_t gpa)
446{
447 hpa_t hpa;
448 int rc;
449
450 rc = pin_guest_page(vcpu->kvm, gpa, &hpa);
451 if (rc == -EINVAL) {
452 rc = kvm_s390_inject_program_int(vcpu, PGM_ADDRESSING);
453 if (!rc)
454 rc = 1;
455 }
456 if (!rc)
457 vsie_page->scb_o = (struct kvm_s390_sie_block *) hpa;
458 return rc;
459}
460
461/*
462 * Inject a fault into guest 2.
463 *
464 * Returns: - > 0 if control has to be given to guest 2
465 * < 0 if an error occurred during injection.
466 */
467static int inject_fault(struct kvm_vcpu *vcpu, __u16 code, __u64 vaddr,
468 bool write_flag)
469{
470 struct kvm_s390_pgm_info pgm = {
471 .code = code,
472 .trans_exc_code =
473 /* 0-51: virtual address */
474 (vaddr & 0xfffffffffffff000UL) |
475 /* 52-53: store / fetch */
476 (((unsigned int) !write_flag) + 1) << 10,
477 /* 62-63: asce id (alway primary == 0) */
478 .exc_access_id = 0, /* always primary */
479 .op_access_id = 0, /* not MVPG */
480 };
481 int rc;
482
483 if (code == PGM_PROTECTION)
484 pgm.trans_exc_code |= 0x4UL;
485
486 rc = kvm_s390_inject_prog_irq(vcpu, &pgm);
487 return rc ? rc : 1;
488}
489
490/*
491 * Handle a fault during vsie execution on a gmap shadow.
492 *
493 * Returns: - 0 if the fault was resolved
494 * - > 0 if control has to be given to guest 2
495 * - < 0 if an error occurred
496 */
497static int handle_fault(struct kvm_vcpu *vcpu, struct vsie_page *vsie_page)
498{
499 int rc;
500
501 if (current->thread.gmap_int_code == PGM_PROTECTION)
502 /* we can directly forward all protection exceptions */
503 return inject_fault(vcpu, PGM_PROTECTION,
504 current->thread.gmap_addr, 1);
505
506 rc = kvm_s390_shadow_fault(vcpu, vsie_page->gmap,
507 current->thread.gmap_addr);
508 if (rc > 0) {
509 rc = inject_fault(vcpu, rc,
510 current->thread.gmap_addr,
511 current->thread.gmap_write_flag);
512 }
513 return rc;
514}
515
516static inline void clear_vsie_icpt(struct vsie_page *vsie_page)
517{
518 vsie_page->scb_s.icptcode = 0;
519}
520
521/*
522 * Run the vsie on a shadow scb and a shadow gmap, without any further
523 * sanity checks, handling SIE faults.
524 *
525 * Returns: - 0 everything went fine
526 * - > 0 if control has to be given to guest 2
527 * - < 0 if an error occurred
528 */
529static int do_vsie_run(struct kvm_vcpu *vcpu, struct vsie_page *vsie_page)
530{
531 struct kvm_s390_sie_block *scb_s = &vsie_page->scb_s;
532 struct kvm_s390_sie_block *scb_o = vsie_page->scb_o;
533 int rc;
534
535 if (need_resched())
536 schedule();
537 if (test_cpu_flag(CIF_MCCK_PENDING))
538 s390_handle_mcck();
539
540 srcu_read_unlock(&vcpu->kvm->srcu, vcpu->srcu_idx);
541 local_irq_disable();
542 kvm_guest_enter();
543 local_irq_enable();
544
545 rc = sie64a(scb_s, vcpu->run->s.regs.gprs);
546
547 local_irq_disable();
548 kvm_guest_exit();
549 local_irq_enable();
550 vcpu->srcu_idx = srcu_read_lock(&vcpu->kvm->srcu);
551
552 if (rc > 0)
553 rc = 0; /* we could still have an icpt */
554 else if (rc == -EFAULT)
555 return handle_fault(vcpu, vsie_page);
556
557 switch (scb_s->icptcode) {
558 case ICPT_STOP:
559 /* stop not requested by g2 - must have been a kick */
560 if (!(atomic_read(&scb_o->cpuflags) & CPUSTAT_STOP_INT))
561 clear_vsie_icpt(vsie_page);
562 break;
563 case ICPT_VALIDITY:
564 if ((scb_s->ipa & 0xf000) != 0xf000)
565 scb_s->ipa += 0x1000;
566 break;
567 }
568 return rc;
569}
570
571static void release_gmap_shadow(struct vsie_page *vsie_page)
572{
573 if (vsie_page->gmap)
574 gmap_put(vsie_page->gmap);
575 WRITE_ONCE(vsie_page->gmap, NULL);
David Hildenbrand06d68a62016-04-22 13:50:09 +0200576 prefix_unmapped(vsie_page);
David Hildenbranda3508fb2015-07-08 13:19:48 +0200577}
578
579static int acquire_gmap_shadow(struct kvm_vcpu *vcpu,
580 struct vsie_page *vsie_page)
581{
582 unsigned long asce;
583 union ctlreg0 cr0;
584 struct gmap *gmap;
585 int edat;
586
587 asce = vcpu->arch.sie_block->gcr[1];
588 cr0.val = vcpu->arch.sie_block->gcr[0];
589 edat = cr0.edat && test_kvm_facility(vcpu->kvm, 8);
590 edat += edat && test_kvm_facility(vcpu->kvm, 78);
591
David Hildenbrand06d68a62016-04-22 13:50:09 +0200592 /*
593 * ASCE or EDAT could have changed since last icpt, or the gmap
594 * we're holding has been unshadowed. If the gmap is still valid,
595 * we can safely reuse it.
596 */
597 if (vsie_page->gmap && gmap_shadow_valid(vsie_page->gmap, asce, edat))
598 return 0;
599
600 /* release the old shadow - if any, and mark the prefix as unmapped */
601 release_gmap_shadow(vsie_page);
David Hildenbranda3508fb2015-07-08 13:19:48 +0200602 gmap = gmap_shadow(vcpu->arch.gmap, asce, edat);
603 if (IS_ERR(gmap))
604 return PTR_ERR(gmap);
605 gmap->private = vcpu->kvm;
606 WRITE_ONCE(vsie_page->gmap, gmap);
607 return 0;
608}
609
610/*
611 * Run the vsie on a shadowed scb, managing the gmap shadow, handling
612 * prefix pages and faults.
613 *
614 * Returns: - 0 if no errors occurred
615 * - > 0 if control has to be given to guest 2
616 * - -ENOMEM if out of memory
617 */
618static int vsie_run(struct kvm_vcpu *vcpu, struct vsie_page *vsie_page)
619{
620 struct kvm_s390_sie_block *scb_s = &vsie_page->scb_s;
621 int rc = 0;
622
623 while (1) {
624 rc = acquire_gmap_shadow(vcpu, vsie_page);
625 if (!rc)
626 rc = map_prefix(vcpu, vsie_page);
627 if (!rc) {
628 gmap_enable(vsie_page->gmap);
629 update_intervention_requests(vsie_page);
630 rc = do_vsie_run(vcpu, vsie_page);
631 gmap_enable(vcpu->arch.gmap);
632 }
David Hildenbranda3508fb2015-07-08 13:19:48 +0200633
634 if (rc == -EAGAIN)
635 rc = 0;
636 if (rc || scb_s->icptcode || signal_pending(current) ||
637 kvm_s390_vcpu_has_irq(vcpu, 0))
638 break;
639 };
640
641 if (rc == -EFAULT) {
642 /*
643 * Addressing exceptions are always presentes as intercepts.
644 * As addressing exceptions are suppressing and our guest 3 PSW
645 * points at the responsible instruction, we have to
646 * forward the PSW and set the ilc. If we can't read guest 3
647 * instruction, we can use an arbitrary ilc. Let's always use
648 * ilen = 4 for now, so we can avoid reading in guest 3 virtual
649 * memory. (we could also fake the shadow so the hardware
650 * handles it).
651 */
652 scb_s->icptcode = ICPT_PROGI;
653 scb_s->iprcc = PGM_ADDRESSING;
654 scb_s->pgmilc = 4;
655 scb_s->gpsw.addr = __rewind_psw(scb_s->gpsw, 4);
656 }
657 return rc;
658}
659
660/*
661 * Get or create a vsie page for a scb address.
662 *
663 * Returns: - address of a vsie page (cached or new one)
664 * - NULL if the same scb address is already used by another VCPU
665 * - ERR_PTR(-ENOMEM) if out of memory
666 */
667static struct vsie_page *get_vsie_page(struct kvm *kvm, unsigned long addr)
668{
669 struct vsie_page *vsie_page;
670 struct page *page;
671 int nr_vcpus;
672
673 rcu_read_lock();
674 page = radix_tree_lookup(&kvm->arch.vsie.addr_to_page, addr >> 9);
675 rcu_read_unlock();
676 if (page) {
677 if (page_ref_inc_return(page) == 2)
678 return page_to_virt(page);
679 page_ref_dec(page);
680 }
681
682 /*
683 * We want at least #online_vcpus shadows, so every VCPU can execute
684 * the VSIE in parallel.
685 */
686 nr_vcpus = atomic_read(&kvm->online_vcpus);
687
688 mutex_lock(&kvm->arch.vsie.mutex);
689 if (kvm->arch.vsie.page_count < nr_vcpus) {
690 page = alloc_page(GFP_KERNEL | __GFP_ZERO);
691 if (!page) {
692 mutex_unlock(&kvm->arch.vsie.mutex);
693 return ERR_PTR(-ENOMEM);
694 }
695 page_ref_inc(page);
696 kvm->arch.vsie.pages[kvm->arch.vsie.page_count] = page;
697 kvm->arch.vsie.page_count++;
698 } else {
699 /* reuse an existing entry that belongs to nobody */
700 while (true) {
701 page = kvm->arch.vsie.pages[kvm->arch.vsie.next];
702 if (page_ref_inc_return(page) == 2)
703 break;
704 page_ref_dec(page);
705 kvm->arch.vsie.next++;
706 kvm->arch.vsie.next %= nr_vcpus;
707 }
708 radix_tree_delete(&kvm->arch.vsie.addr_to_page, page->index >> 9);
709 }
710 page->index = addr;
711 /* double use of the same address */
712 if (radix_tree_insert(&kvm->arch.vsie.addr_to_page, addr >> 9, page)) {
713 page_ref_dec(page);
714 mutex_unlock(&kvm->arch.vsie.mutex);
715 return NULL;
716 }
717 mutex_unlock(&kvm->arch.vsie.mutex);
718
719 vsie_page = page_to_virt(page);
720 memset(&vsie_page->scb_s, 0, sizeof(struct kvm_s390_sie_block));
David Hildenbrand06d68a62016-04-22 13:50:09 +0200721 release_gmap_shadow(vsie_page);
David Hildenbranda3508fb2015-07-08 13:19:48 +0200722 vsie_page->scb_s.ihcpu = 0xffffU;
723 return vsie_page;
724}
725
726/* put a vsie page acquired via get_vsie_page */
727static void put_vsie_page(struct kvm *kvm, struct vsie_page *vsie_page)
728{
729 struct page *page = pfn_to_page(__pa(vsie_page) >> PAGE_SHIFT);
730
731 page_ref_dec(page);
732}
733
734int kvm_s390_handle_vsie(struct kvm_vcpu *vcpu)
735{
736 struct vsie_page *vsie_page;
737 unsigned long scb_addr;
738 int rc;
739
740 vcpu->stat.instruction_sie++;
741 if (!test_kvm_cpu_feat(vcpu->kvm, KVM_S390_VM_CPU_FEAT_SIEF2))
742 return -EOPNOTSUPP;
743 if (vcpu->arch.sie_block->gpsw.mask & PSW_MASK_PSTATE)
744 return kvm_s390_inject_program_int(vcpu, PGM_PRIVILEGED_OP);
745
746 BUILD_BUG_ON(sizeof(struct vsie_page) != 4096);
747 scb_addr = kvm_s390_get_base_disp_s(vcpu, NULL);
748
749 /* 512 byte alignment */
750 if (unlikely(scb_addr & 0x1ffUL))
751 return kvm_s390_inject_program_int(vcpu, PGM_SPECIFICATION);
752
753 if (signal_pending(current) || kvm_s390_vcpu_has_irq(vcpu, 0))
754 return 0;
755
756 vsie_page = get_vsie_page(vcpu->kvm, scb_addr);
757 if (IS_ERR(vsie_page))
758 return PTR_ERR(vsie_page);
759 else if (!vsie_page)
760 /* double use of sie control block - simply do nothing */
761 return 0;
762
763 rc = pin_scb(vcpu, vsie_page, scb_addr);
764 if (rc)
765 goto out_put;
766 rc = shadow_scb(vcpu, vsie_page);
767 if (rc)
768 goto out_unpin_scb;
769 rc = pin_blocks(vcpu, vsie_page);
770 if (rc)
771 goto out_unshadow;
772 rc = vsie_run(vcpu, vsie_page);
773 unpin_blocks(vcpu, vsie_page);
774out_unshadow:
775 unshadow_scb(vcpu, vsie_page);
776out_unpin_scb:
777 unpin_scb(vcpu, vsie_page, scb_addr);
778out_put:
779 put_vsie_page(vcpu->kvm, vsie_page);
780
781 return rc < 0 ? rc : 0;
782}
783
784/* Init the vsie data structures. To be called when a vm is initialized. */
785void kvm_s390_vsie_init(struct kvm *kvm)
786{
787 mutex_init(&kvm->arch.vsie.mutex);
788 INIT_RADIX_TREE(&kvm->arch.vsie.addr_to_page, GFP_KERNEL);
789}
790
791/* Destroy the vsie data structures. To be called when a vm is destroyed. */
792void kvm_s390_vsie_destroy(struct kvm *kvm)
793{
David Hildenbrand06d68a62016-04-22 13:50:09 +0200794 struct vsie_page *vsie_page;
David Hildenbranda3508fb2015-07-08 13:19:48 +0200795 struct page *page;
796 int i;
797
798 mutex_lock(&kvm->arch.vsie.mutex);
799 for (i = 0; i < kvm->arch.vsie.page_count; i++) {
800 page = kvm->arch.vsie.pages[i];
801 kvm->arch.vsie.pages[i] = NULL;
David Hildenbrand06d68a62016-04-22 13:50:09 +0200802 vsie_page = page_to_virt(page);
803 release_gmap_shadow(vsie_page);
David Hildenbranda3508fb2015-07-08 13:19:48 +0200804 /* free the radix tree entry */
805 radix_tree_delete(&kvm->arch.vsie.addr_to_page, page->index >> 9);
806 __free_page(page);
807 }
808 kvm->arch.vsie.page_count = 0;
809 mutex_unlock(&kvm->arch.vsie.mutex);
810}