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kvm, emulator: Add initial three-byte insns support
[mirror_ubuntu-bionic-kernel.git] / arch / x86 / kvm / cpuid.c
CommitLineData
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AK
1/*
2 * Kernel-based Virtual Machine driver for Linux
3 * cpuid support routines
4 *
5 * derived from arch/x86/kvm/x86.c
6 *
7 * Copyright 2011 Red Hat, Inc. and/or its affiliates.
8 * Copyright IBM Corporation, 2008
9 *
10 * This work is licensed under the terms of the GNU GPL, version 2. See
11 * the COPYING file in the top-level directory.
12 *
13 */
14
15#include <linux/kvm_host.h>
16#include <linux/module.h>
bb5a798a
JK
17#include <linux/vmalloc.h>
18#include <linux/uaccess.h>
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19#include <asm/user.h>
20#include <asm/xsave.h>
21#include "cpuid.h"
22#include "lapic.h"
23#include "mmu.h"
24#include "trace.h"
25
4344ee98
PB
26static u32 xstate_required_size(u64 xstate_bv)
27{
28 int feature_bit = 0;
29 u32 ret = XSAVE_HDR_SIZE + XSAVE_HDR_OFFSET;
30
31 xstate_bv &= ~XSTATE_FPSSE;
32 while (xstate_bv) {
33 if (xstate_bv & 0x1) {
34 u32 eax, ebx, ecx, edx;
35 cpuid_count(0xD, feature_bit, &eax, &ebx, &ecx, &edx);
36 ret = max(ret, eax + ebx);
37 }
38
39 xstate_bv >>= 1;
40 feature_bit++;
41 }
42
43 return ret;
44}
45
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AK
46void kvm_update_cpuid(struct kvm_vcpu *vcpu)
47{
48 struct kvm_cpuid_entry2 *best;
49 struct kvm_lapic *apic = vcpu->arch.apic;
50
51 best = kvm_find_cpuid_entry(vcpu, 1, 0);
52 if (!best)
53 return;
54
55 /* Update OSXSAVE bit */
56 if (cpu_has_xsave && best->function == 0x1) {
57 best->ecx &= ~(bit(X86_FEATURE_OSXSAVE));
58 if (kvm_read_cr4_bits(vcpu, X86_CR4_OSXSAVE))
59 best->ecx |= bit(X86_FEATURE_OSXSAVE);
60 }
61
62 if (apic) {
63 if (best->ecx & bit(X86_FEATURE_TSC_DEADLINE_TIMER))
64 apic->lapic_timer.timer_mode_mask = 3 << 17;
65 else
66 apic->lapic_timer.timer_mode_mask = 1 << 17;
67 }
f5132b01 68
d7876f1b 69 best = kvm_find_cpuid_entry(vcpu, 0xD, 0);
4344ee98 70 if (!best) {
d7876f1b 71 vcpu->arch.guest_supported_xcr0 = 0;
4344ee98
PB
72 vcpu->arch.guest_xstate_size = XSAVE_HDR_SIZE + XSAVE_HDR_OFFSET;
73 } else {
d7876f1b
PB
74 vcpu->arch.guest_supported_xcr0 =
75 (best->eax | ((u64)best->edx << 32)) &
76 host_xcr0 & KVM_SUPPORTED_XCR0;
4344ee98
PB
77 vcpu->arch.guest_xstate_size =
78 xstate_required_size(vcpu->arch.guest_supported_xcr0);
79 }
d7876f1b 80
f5132b01 81 kvm_pmu_cpuid_update(vcpu);
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AK
82}
83
84static int is_efer_nx(void)
85{
86 unsigned long long efer = 0;
87
88 rdmsrl_safe(MSR_EFER, &efer);
89 return efer & EFER_NX;
90}
91
92static void cpuid_fix_nx_cap(struct kvm_vcpu *vcpu)
93{
94 int i;
95 struct kvm_cpuid_entry2 *e, *entry;
96
97 entry = NULL;
98 for (i = 0; i < vcpu->arch.cpuid_nent; ++i) {
99 e = &vcpu->arch.cpuid_entries[i];
100 if (e->function == 0x80000001) {
101 entry = e;
102 break;
103 }
104 }
105 if (entry && (entry->edx & (1 << 20)) && !is_efer_nx()) {
106 entry->edx &= ~(1 << 20);
107 printk(KERN_INFO "kvm: guest NX capability removed\n");
108 }
109}
110
111/* when an old userspace process fills a new kernel module */
112int kvm_vcpu_ioctl_set_cpuid(struct kvm_vcpu *vcpu,
113 struct kvm_cpuid *cpuid,
114 struct kvm_cpuid_entry __user *entries)
115{
116 int r, i;
117 struct kvm_cpuid_entry *cpuid_entries;
118
119 r = -E2BIG;
120 if (cpuid->nent > KVM_MAX_CPUID_ENTRIES)
121 goto out;
122 r = -ENOMEM;
123 cpuid_entries = vmalloc(sizeof(struct kvm_cpuid_entry) * cpuid->nent);
124 if (!cpuid_entries)
125 goto out;
126 r = -EFAULT;
127 if (copy_from_user(cpuid_entries, entries,
128 cpuid->nent * sizeof(struct kvm_cpuid_entry)))
129 goto out_free;
130 for (i = 0; i < cpuid->nent; i++) {
131 vcpu->arch.cpuid_entries[i].function = cpuid_entries[i].function;
132 vcpu->arch.cpuid_entries[i].eax = cpuid_entries[i].eax;
133 vcpu->arch.cpuid_entries[i].ebx = cpuid_entries[i].ebx;
134 vcpu->arch.cpuid_entries[i].ecx = cpuid_entries[i].ecx;
135 vcpu->arch.cpuid_entries[i].edx = cpuid_entries[i].edx;
136 vcpu->arch.cpuid_entries[i].index = 0;
137 vcpu->arch.cpuid_entries[i].flags = 0;
138 vcpu->arch.cpuid_entries[i].padding[0] = 0;
139 vcpu->arch.cpuid_entries[i].padding[1] = 0;
140 vcpu->arch.cpuid_entries[i].padding[2] = 0;
141 }
142 vcpu->arch.cpuid_nent = cpuid->nent;
143 cpuid_fix_nx_cap(vcpu);
144 r = 0;
145 kvm_apic_set_version(vcpu);
146 kvm_x86_ops->cpuid_update(vcpu);
147 kvm_update_cpuid(vcpu);
148
149out_free:
150 vfree(cpuid_entries);
151out:
152 return r;
153}
154
155int kvm_vcpu_ioctl_set_cpuid2(struct kvm_vcpu *vcpu,
156 struct kvm_cpuid2 *cpuid,
157 struct kvm_cpuid_entry2 __user *entries)
158{
159 int r;
160
161 r = -E2BIG;
162 if (cpuid->nent > KVM_MAX_CPUID_ENTRIES)
163 goto out;
164 r = -EFAULT;
165 if (copy_from_user(&vcpu->arch.cpuid_entries, entries,
166 cpuid->nent * sizeof(struct kvm_cpuid_entry2)))
167 goto out;
168 vcpu->arch.cpuid_nent = cpuid->nent;
169 kvm_apic_set_version(vcpu);
170 kvm_x86_ops->cpuid_update(vcpu);
171 kvm_update_cpuid(vcpu);
172 return 0;
173
174out:
175 return r;
176}
177
178int kvm_vcpu_ioctl_get_cpuid2(struct kvm_vcpu *vcpu,
179 struct kvm_cpuid2 *cpuid,
180 struct kvm_cpuid_entry2 __user *entries)
181{
182 int r;
183
184 r = -E2BIG;
185 if (cpuid->nent < vcpu->arch.cpuid_nent)
186 goto out;
187 r = -EFAULT;
188 if (copy_to_user(entries, &vcpu->arch.cpuid_entries,
189 vcpu->arch.cpuid_nent * sizeof(struct kvm_cpuid_entry2)))
190 goto out;
191 return 0;
192
193out:
194 cpuid->nent = vcpu->arch.cpuid_nent;
195 return r;
196}
197
198static void cpuid_mask(u32 *word, int wordnum)
199{
200 *word &= boot_cpu_data.x86_capability[wordnum];
201}
202
203static void do_cpuid_1_ent(struct kvm_cpuid_entry2 *entry, u32 function,
204 u32 index)
205{
206 entry->function = function;
207 entry->index = index;
208 cpuid_count(entry->function, entry->index,
209 &entry->eax, &entry->ebx, &entry->ecx, &entry->edx);
210 entry->flags = 0;
211}
212
213static bool supported_xcr0_bit(unsigned bit)
214{
215 u64 mask = ((u64)1 << bit);
216
647e23bb 217 return mask & KVM_SUPPORTED_XCR0 & host_xcr0;
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218}
219
220#define F(x) bit(X86_FEATURE_##x)
221
9c15bb1d
BP
222static int __do_cpuid_ent_emulated(struct kvm_cpuid_entry2 *entry,
223 u32 func, u32 index, int *nent, int maxnent)
224{
225 return 0;
226}
227
228static inline int __do_cpuid_ent(struct kvm_cpuid_entry2 *entry, u32 function,
229 u32 index, int *nent, int maxnent)
00b27a3e 230{
831bf664 231 int r;
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232 unsigned f_nx = is_efer_nx() ? F(NX) : 0;
233#ifdef CONFIG_X86_64
234 unsigned f_gbpages = (kvm_x86_ops->get_lpage_level() == PT_PDPE_LEVEL)
235 ? F(GBPAGES) : 0;
236 unsigned f_lm = F(LM);
237#else
238 unsigned f_gbpages = 0;
239 unsigned f_lm = 0;
240#endif
241 unsigned f_rdtscp = kvm_x86_ops->rdtscp_supported() ? F(RDTSCP) : 0;
ad756a16 242 unsigned f_invpcid = kvm_x86_ops->invpcid_supported() ? F(INVPCID) : 0;
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243
244 /* cpuid 1.edx */
245 const u32 kvm_supported_word0_x86_features =
246 F(FPU) | F(VME) | F(DE) | F(PSE) |
247 F(TSC) | F(MSR) | F(PAE) | F(MCE) |
248 F(CX8) | F(APIC) | 0 /* Reserved */ | F(SEP) |
249 F(MTRR) | F(PGE) | F(MCA) | F(CMOV) |
250 F(PAT) | F(PSE36) | 0 /* PSN */ | F(CLFLSH) |
251 0 /* Reserved, DS, ACPI */ | F(MMX) |
252 F(FXSR) | F(XMM) | F(XMM2) | F(SELFSNOOP) |
253 0 /* HTT, TM, Reserved, PBE */;
254 /* cpuid 0x80000001.edx */
255 const u32 kvm_supported_word1_x86_features =
256 F(FPU) | F(VME) | F(DE) | F(PSE) |
257 F(TSC) | F(MSR) | F(PAE) | F(MCE) |
258 F(CX8) | F(APIC) | 0 /* Reserved */ | F(SYSCALL) |
259 F(MTRR) | F(PGE) | F(MCA) | F(CMOV) |
260 F(PAT) | F(PSE36) | 0 /* Reserved */ |
261 f_nx | 0 /* Reserved */ | F(MMXEXT) | F(MMX) |
262 F(FXSR) | F(FXSR_OPT) | f_gbpages | f_rdtscp |
263 0 /* Reserved */ | f_lm | F(3DNOWEXT) | F(3DNOW);
264 /* cpuid 1.ecx */
265 const u32 kvm_supported_word4_x86_features =
266 F(XMM3) | F(PCLMULQDQ) | 0 /* DTES64, MONITOR */ |
267 0 /* DS-CPL, VMX, SMX, EST */ |
268 0 /* TM2 */ | F(SSSE3) | 0 /* CNXT-ID */ | 0 /* Reserved */ |
fb215366 269 F(FMA) | F(CX16) | 0 /* xTPR Update, PDCM */ |
ad756a16 270 F(PCID) | 0 /* Reserved, DCA */ | F(XMM4_1) |
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271 F(XMM4_2) | F(X2APIC) | F(MOVBE) | F(POPCNT) |
272 0 /* Reserved*/ | F(AES) | F(XSAVE) | 0 /* OSXSAVE */ | F(AVX) |
273 F(F16C) | F(RDRAND);
274 /* cpuid 0x80000001.ecx */
275 const u32 kvm_supported_word6_x86_features =
276 F(LAHF_LM) | F(CMP_LEGACY) | 0 /*SVM*/ | 0 /* ExtApicSpace */ |
277 F(CR8_LEGACY) | F(ABM) | F(SSE4A) | F(MISALIGNSSE) |
2b036c6b 278 F(3DNOWPREFETCH) | F(OSVW) | 0 /* IBS */ | F(XOP) |
00b27a3e
AK
279 0 /* SKINIT, WDT, LWP */ | F(FMA4) | F(TBM);
280
281 /* cpuid 0xC0000001.edx */
282 const u32 kvm_supported_word5_x86_features =
283 F(XSTORE) | F(XSTORE_EN) | F(XCRYPT) | F(XCRYPT_EN) |
284 F(ACE2) | F(ACE2_EN) | F(PHE) | F(PHE_EN) |
285 F(PMM) | F(PMM_EN);
286
287 /* cpuid 7.0.ebx */
288 const u32 kvm_supported_word9_x86_features =
83c52915 289 F(FSGSBASE) | F(BMI1) | F(HLE) | F(AVX2) | F(SMEP) |
ad756a16 290 F(BMI2) | F(ERMS) | f_invpcid | F(RTM);
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291
292 /* all calls to cpuid_count() should be made on the same cpu */
293 get_cpu();
831bf664
SL
294
295 r = -E2BIG;
296
297 if (*nent >= maxnent)
298 goto out;
299
00b27a3e
AK
300 do_cpuid_1_ent(entry, function, index);
301 ++*nent;
302
303 switch (function) {
304 case 0:
305 entry->eax = min(entry->eax, (u32)0xd);
306 break;
307 case 1:
308 entry->edx &= kvm_supported_word0_x86_features;
309 cpuid_mask(&entry->edx, 0);
310 entry->ecx &= kvm_supported_word4_x86_features;
311 cpuid_mask(&entry->ecx, 4);
312 /* we support x2apic emulation even if host does not support
313 * it since we emulate x2apic in software */
314 entry->ecx |= F(X2APIC);
315 break;
316 /* function 2 entries are STATEFUL. That is, repeated cpuid commands
317 * may return different values. This forces us to get_cpu() before
318 * issuing the first command, and also to emulate this annoying behavior
319 * in kvm_emulate_cpuid() using KVM_CPUID_FLAG_STATE_READ_NEXT */
320 case 2: {
321 int t, times = entry->eax & 0xff;
322
323 entry->flags |= KVM_CPUID_FLAG_STATEFUL_FUNC;
324 entry->flags |= KVM_CPUID_FLAG_STATE_READ_NEXT;
831bf664
SL
325 for (t = 1; t < times; ++t) {
326 if (*nent >= maxnent)
327 goto out;
328
00b27a3e
AK
329 do_cpuid_1_ent(&entry[t], function, 0);
330 entry[t].flags |= KVM_CPUID_FLAG_STATEFUL_FUNC;
331 ++*nent;
332 }
333 break;
334 }
335 /* function 4 has additional index. */
336 case 4: {
337 int i, cache_type;
338
339 entry->flags |= KVM_CPUID_FLAG_SIGNIFCANT_INDEX;
340 /* read more entries until cache_type is zero */
831bf664
SL
341 for (i = 1; ; ++i) {
342 if (*nent >= maxnent)
343 goto out;
344
00b27a3e
AK
345 cache_type = entry[i - 1].eax & 0x1f;
346 if (!cache_type)
347 break;
348 do_cpuid_1_ent(&entry[i], function, i);
349 entry[i].flags |=
350 KVM_CPUID_FLAG_SIGNIFCANT_INDEX;
351 ++*nent;
352 }
353 break;
354 }
355 case 7: {
356 entry->flags |= KVM_CPUID_FLAG_SIGNIFCANT_INDEX;
bbbda795 357 /* Mask ebx against host capability word 9 */
00b27a3e
AK
358 if (index == 0) {
359 entry->ebx &= kvm_supported_word9_x86_features;
360 cpuid_mask(&entry->ebx, 9);
ba904635
WA
361 // TSC_ADJUST is emulated
362 entry->ebx |= F(TSC_ADJUST);
00b27a3e
AK
363 } else
364 entry->ebx = 0;
365 entry->eax = 0;
366 entry->ecx = 0;
367 entry->edx = 0;
368 break;
369 }
370 case 9:
371 break;
a6c06ed1
GN
372 case 0xa: { /* Architectural Performance Monitoring */
373 struct x86_pmu_capability cap;
374 union cpuid10_eax eax;
375 union cpuid10_edx edx;
376
377 perf_get_x86_pmu_capability(&cap);
378
379 /*
380 * Only support guest architectural pmu on a host
381 * with architectural pmu.
382 */
383 if (!cap.version)
384 memset(&cap, 0, sizeof(cap));
385
386 eax.split.version_id = min(cap.version, 2);
387 eax.split.num_counters = cap.num_counters_gp;
388 eax.split.bit_width = cap.bit_width_gp;
389 eax.split.mask_length = cap.events_mask_len;
390
391 edx.split.num_counters_fixed = cap.num_counters_fixed;
392 edx.split.bit_width_fixed = cap.bit_width_fixed;
393 edx.split.reserved = 0;
394
395 entry->eax = eax.full;
396 entry->ebx = cap.events_mask;
397 entry->ecx = 0;
398 entry->edx = edx.full;
399 break;
400 }
00b27a3e
AK
401 /* function 0xb has additional index. */
402 case 0xb: {
403 int i, level_type;
404
405 entry->flags |= KVM_CPUID_FLAG_SIGNIFCANT_INDEX;
406 /* read more entries until level_type is zero */
831bf664
SL
407 for (i = 1; ; ++i) {
408 if (*nent >= maxnent)
409 goto out;
410
00b27a3e
AK
411 level_type = entry[i - 1].ecx & 0xff00;
412 if (!level_type)
413 break;
414 do_cpuid_1_ent(&entry[i], function, i);
415 entry[i].flags |=
416 KVM_CPUID_FLAG_SIGNIFCANT_INDEX;
417 ++*nent;
418 }
419 break;
420 }
421 case 0xd: {
422 int idx, i;
423
647e23bb
PB
424 entry->eax &= host_xcr0 & KVM_SUPPORTED_XCR0;
425 entry->edx &= (host_xcr0 & KVM_SUPPORTED_XCR0) >> 32;
00b27a3e 426 entry->flags |= KVM_CPUID_FLAG_SIGNIFCANT_INDEX;
831bf664
SL
427 for (idx = 1, i = 1; idx < 64; ++idx) {
428 if (*nent >= maxnent)
429 goto out;
430
00b27a3e
AK
431 do_cpuid_1_ent(&entry[i], function, idx);
432 if (entry[i].eax == 0 || !supported_xcr0_bit(idx))
433 continue;
434 entry[i].flags |=
435 KVM_CPUID_FLAG_SIGNIFCANT_INDEX;
436 ++*nent;
437 ++i;
438 }
439 break;
440 }
441 case KVM_CPUID_SIGNATURE: {
326d07cb
MK
442 static const char signature[12] = "KVMKVMKVM\0\0";
443 const u32 *sigptr = (const u32 *)signature;
57c22e5f 444 entry->eax = KVM_CPUID_FEATURES;
00b27a3e
AK
445 entry->ebx = sigptr[0];
446 entry->ecx = sigptr[1];
447 entry->edx = sigptr[2];
448 break;
449 }
450 case KVM_CPUID_FEATURES:
451 entry->eax = (1 << KVM_FEATURE_CLOCKSOURCE) |
452 (1 << KVM_FEATURE_NOP_IO_DELAY) |
453 (1 << KVM_FEATURE_CLOCKSOURCE2) |
454 (1 << KVM_FEATURE_ASYNC_PF) |
ae7a2a3f 455 (1 << KVM_FEATURE_PV_EOI) |
6aef266c
SV
456 (1 << KVM_FEATURE_CLOCKSOURCE_STABLE_BIT) |
457 (1 << KVM_FEATURE_PV_UNHALT);
00b27a3e
AK
458
459 if (sched_info_on())
460 entry->eax |= (1 << KVM_FEATURE_STEAL_TIME);
461
462 entry->ebx = 0;
463 entry->ecx = 0;
464 entry->edx = 0;
465 break;
466 case 0x80000000:
467 entry->eax = min(entry->eax, 0x8000001a);
468 break;
469 case 0x80000001:
470 entry->edx &= kvm_supported_word1_x86_features;
471 cpuid_mask(&entry->edx, 1);
472 entry->ecx &= kvm_supported_word6_x86_features;
473 cpuid_mask(&entry->ecx, 6);
474 break;
475 case 0x80000008: {
476 unsigned g_phys_as = (entry->eax >> 16) & 0xff;
477 unsigned virt_as = max((entry->eax >> 8) & 0xff, 48U);
478 unsigned phys_as = entry->eax & 0xff;
479
480 if (!g_phys_as)
481 g_phys_as = phys_as;
482 entry->eax = g_phys_as | (virt_as << 8);
483 entry->ebx = entry->edx = 0;
484 break;
485 }
486 case 0x80000019:
487 entry->ecx = entry->edx = 0;
488 break;
489 case 0x8000001a:
490 break;
491 case 0x8000001d:
492 break;
493 /*Add support for Centaur's CPUID instruction*/
494 case 0xC0000000:
495 /*Just support up to 0xC0000004 now*/
496 entry->eax = min(entry->eax, 0xC0000004);
497 break;
498 case 0xC0000001:
499 entry->edx &= kvm_supported_word5_x86_features;
500 cpuid_mask(&entry->edx, 5);
501 break;
502 case 3: /* Processor serial number */
503 case 5: /* MONITOR/MWAIT */
504 case 6: /* Thermal management */
00b27a3e
AK
505 case 0x80000007: /* Advanced power management */
506 case 0xC0000002:
507 case 0xC0000003:
508 case 0xC0000004:
509 default:
510 entry->eax = entry->ebx = entry->ecx = entry->edx = 0;
511 break;
512 }
513
514 kvm_x86_ops->set_supported_cpuid(function, entry);
515
831bf664
SL
516 r = 0;
517
518out:
00b27a3e 519 put_cpu();
831bf664
SL
520
521 return r;
00b27a3e
AK
522}
523
9c15bb1d
BP
524static int do_cpuid_ent(struct kvm_cpuid_entry2 *entry, u32 func,
525 u32 idx, int *nent, int maxnent, unsigned int type)
526{
527 if (type == KVM_GET_EMULATED_CPUID)
528 return __do_cpuid_ent_emulated(entry, func, idx, nent, maxnent);
529
530 return __do_cpuid_ent(entry, func, idx, nent, maxnent);
531}
532
00b27a3e
AK
533#undef F
534
831bf664
SL
535struct kvm_cpuid_param {
536 u32 func;
537 u32 idx;
538 bool has_leaf_count;
326d07cb 539 bool (*qualifier)(const struct kvm_cpuid_param *param);
831bf664
SL
540};
541
326d07cb 542static bool is_centaur_cpu(const struct kvm_cpuid_param *param)
831bf664
SL
543{
544 return boot_cpu_data.x86_vendor == X86_VENDOR_CENTAUR;
545}
546
9c15bb1d
BP
547static bool sanity_check_entries(struct kvm_cpuid_entry2 __user *entries,
548 __u32 num_entries, unsigned int ioctl_type)
549{
550 int i;
551
552 if (ioctl_type != KVM_GET_EMULATED_CPUID)
553 return false;
554
555 /*
556 * We want to make sure that ->padding is being passed clean from
557 * userspace in case we want to use it for something in the future.
558 *
559 * Sadly, this wasn't enforced for KVM_GET_SUPPORTED_CPUID and so we
560 * have to give ourselves satisfied only with the emulated side. /me
561 * sheds a tear.
562 */
563 for (i = 0; i < num_entries; i++) {
564 if (entries[i].padding[0] ||
565 entries[i].padding[1] ||
566 entries[i].padding[2])
567 return true;
568 }
569 return false;
570}
571
572int kvm_dev_ioctl_get_cpuid(struct kvm_cpuid2 *cpuid,
573 struct kvm_cpuid_entry2 __user *entries,
574 unsigned int type)
00b27a3e
AK
575{
576 struct kvm_cpuid_entry2 *cpuid_entries;
831bf664 577 int limit, nent = 0, r = -E2BIG, i;
00b27a3e 578 u32 func;
326d07cb 579 static const struct kvm_cpuid_param param[] = {
831bf664
SL
580 { .func = 0, .has_leaf_count = true },
581 { .func = 0x80000000, .has_leaf_count = true },
582 { .func = 0xC0000000, .qualifier = is_centaur_cpu, .has_leaf_count = true },
583 { .func = KVM_CPUID_SIGNATURE },
584 { .func = KVM_CPUID_FEATURES },
585 };
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586
587 if (cpuid->nent < 1)
588 goto out;
589 if (cpuid->nent > KVM_MAX_CPUID_ENTRIES)
590 cpuid->nent = KVM_MAX_CPUID_ENTRIES;
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591
592 if (sanity_check_entries(entries, cpuid->nent, type))
593 return -EINVAL;
594
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595 r = -ENOMEM;
596 cpuid_entries = vmalloc(sizeof(struct kvm_cpuid_entry2) * cpuid->nent);
597 if (!cpuid_entries)
598 goto out;
599
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600 r = 0;
601 for (i = 0; i < ARRAY_SIZE(param); i++) {
326d07cb 602 const struct kvm_cpuid_param *ent = &param[i];
00b27a3e 603
831bf664
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604 if (ent->qualifier && !ent->qualifier(ent))
605 continue;
00b27a3e 606
831bf664 607 r = do_cpuid_ent(&cpuid_entries[nent], ent->func, ent->idx,
9c15bb1d 608 &nent, cpuid->nent, type);
00b27a3e 609
831bf664 610 if (r)
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611 goto out_free;
612
831bf664
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613 if (!ent->has_leaf_count)
614 continue;
615
00b27a3e 616 limit = cpuid_entries[nent - 1].eax;
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617 for (func = ent->func + 1; func <= limit && nent < cpuid->nent && r == 0; ++func)
618 r = do_cpuid_ent(&cpuid_entries[nent], func, ent->idx,
9c15bb1d 619 &nent, cpuid->nent, type);
00b27a3e 620
831bf664 621 if (r)
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622 goto out_free;
623 }
624
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625 r = -EFAULT;
626 if (copy_to_user(entries, cpuid_entries,
627 nent * sizeof(struct kvm_cpuid_entry2)))
628 goto out_free;
629 cpuid->nent = nent;
630 r = 0;
631
632out_free:
633 vfree(cpuid_entries);
634out:
635 return r;
636}
637
638static int move_to_next_stateful_cpuid_entry(struct kvm_vcpu *vcpu, int i)
639{
640 struct kvm_cpuid_entry2 *e = &vcpu->arch.cpuid_entries[i];
641 int j, nent = vcpu->arch.cpuid_nent;
642
643 e->flags &= ~KVM_CPUID_FLAG_STATE_READ_NEXT;
644 /* when no next entry is found, the current entry[i] is reselected */
645 for (j = i + 1; ; j = (j + 1) % nent) {
646 struct kvm_cpuid_entry2 *ej = &vcpu->arch.cpuid_entries[j];
647 if (ej->function == e->function) {
648 ej->flags |= KVM_CPUID_FLAG_STATE_READ_NEXT;
649 return j;
650 }
651 }
652 return 0; /* silence gcc, even though control never reaches here */
653}
654
655/* find an entry with matching function, matching index (if needed), and that
656 * should be read next (if it's stateful) */
657static int is_matching_cpuid_entry(struct kvm_cpuid_entry2 *e,
658 u32 function, u32 index)
659{
660 if (e->function != function)
661 return 0;
662 if ((e->flags & KVM_CPUID_FLAG_SIGNIFCANT_INDEX) && e->index != index)
663 return 0;
664 if ((e->flags & KVM_CPUID_FLAG_STATEFUL_FUNC) &&
665 !(e->flags & KVM_CPUID_FLAG_STATE_READ_NEXT))
666 return 0;
667 return 1;
668}
669
670struct kvm_cpuid_entry2 *kvm_find_cpuid_entry(struct kvm_vcpu *vcpu,
671 u32 function, u32 index)
672{
673 int i;
674 struct kvm_cpuid_entry2 *best = NULL;
675
676 for (i = 0; i < vcpu->arch.cpuid_nent; ++i) {
677 struct kvm_cpuid_entry2 *e;
678
679 e = &vcpu->arch.cpuid_entries[i];
680 if (is_matching_cpuid_entry(e, function, index)) {
681 if (e->flags & KVM_CPUID_FLAG_STATEFUL_FUNC)
682 move_to_next_stateful_cpuid_entry(vcpu, i);
683 best = e;
684 break;
685 }
686 }
687 return best;
688}
689EXPORT_SYMBOL_GPL(kvm_find_cpuid_entry);
690
691int cpuid_maxphyaddr(struct kvm_vcpu *vcpu)
692{
693 struct kvm_cpuid_entry2 *best;
694
695 best = kvm_find_cpuid_entry(vcpu, 0x80000000, 0);
696 if (!best || best->eax < 0x80000008)
697 goto not_found;
698 best = kvm_find_cpuid_entry(vcpu, 0x80000008, 0);
699 if (best)
700 return best->eax & 0xff;
701not_found:
702 return 36;
703}
704
705/*
706 * If no match is found, check whether we exceed the vCPU's limit
707 * and return the content of the highest valid _standard_ leaf instead.
708 * This is to satisfy the CPUID specification.
709 */
710static struct kvm_cpuid_entry2* check_cpuid_limit(struct kvm_vcpu *vcpu,
711 u32 function, u32 index)
712{
713 struct kvm_cpuid_entry2 *maxlevel;
714
715 maxlevel = kvm_find_cpuid_entry(vcpu, function & 0x80000000, 0);
716 if (!maxlevel || maxlevel->eax >= function)
717 return NULL;
718 if (function & 0x80000000) {
719 maxlevel = kvm_find_cpuid_entry(vcpu, 0, 0);
720 if (!maxlevel)
721 return NULL;
722 }
723 return kvm_find_cpuid_entry(vcpu, maxlevel->eax, index);
724}
725
62046e5a 726void kvm_cpuid(struct kvm_vcpu *vcpu, u32 *eax, u32 *ebx, u32 *ecx, u32 *edx)
00b27a3e 727{
62046e5a 728 u32 function = *eax, index = *ecx;
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729 struct kvm_cpuid_entry2 *best;
730
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731 best = kvm_find_cpuid_entry(vcpu, function, index);
732
733 if (!best)
734 best = check_cpuid_limit(vcpu, function, index);
735
736 if (best) {
62046e5a
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737 *eax = best->eax;
738 *ebx = best->ebx;
739 *ecx = best->ecx;
740 *edx = best->edx;
741 } else
742 *eax = *ebx = *ecx = *edx = 0;
743}
66f7b72e 744EXPORT_SYMBOL_GPL(kvm_cpuid);
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745
746void kvm_emulate_cpuid(struct kvm_vcpu *vcpu)
747{
748 u32 function, eax, ebx, ecx, edx;
749
750 function = eax = kvm_register_read(vcpu, VCPU_REGS_RAX);
751 ecx = kvm_register_read(vcpu, VCPU_REGS_RCX);
752 kvm_cpuid(vcpu, &eax, &ebx, &ecx, &edx);
753 kvm_register_write(vcpu, VCPU_REGS_RAX, eax);
754 kvm_register_write(vcpu, VCPU_REGS_RBX, ebx);
755 kvm_register_write(vcpu, VCPU_REGS_RCX, ecx);
756 kvm_register_write(vcpu, VCPU_REGS_RDX, edx);
00b27a3e 757 kvm_x86_ops->skip_emulated_instruction(vcpu);
62046e5a 758 trace_kvm_cpuid(function, eax, ebx, ecx, edx);
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759}
760EXPORT_SYMBOL_GPL(kvm_emulate_cpuid);