xref: /linux/arch/x86/kernel/cpu/vmware.c (revision e6b2aa6d40045a3149071ca3af950ea8e6ff79c4)
1 /*
2  * VMware Detection code.
3  *
4  * Copyright (C) 2008, VMware, Inc.
5  * Author : Alok N Kataria <akataria@vmware.com>
6  *
7  * This program is free software; you can redistribute it and/or modify
8  * it under the terms of the GNU General Public License as published by
9  * the Free Software Foundation; either version 2 of the License, or
10  * (at your option) any later version.
11  *
12  * This program is distributed in the hope that it will be useful, but
13  * WITHOUT ANY WARRANTY; without even the implied warranty of
14  * MERCHANTABILITY OR FITNESS FOR A PARTICULAR PURPOSE, GOOD TITLE or
15  * NON INFRINGEMENT.  See the GNU General Public License for more
16  * details.
17  *
18  * You should have received a copy of the GNU General Public License
19  * along with this program; if not, write to the Free Software
20  * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA.
21  *
22  */
23 
24 #include <linux/dmi.h>
25 #include <linux/init.h>
26 #include <linux/export.h>
27 #include <linux/clocksource.h>
28 #include <linux/cpu.h>
29 #include <linux/efi.h>
30 #include <linux/reboot.h>
31 #include <linux/static_call.h>
32 #include <linux/sched/cputime.h>
33 #include <asm/div64.h>
34 #include <asm/x86_init.h>
35 #include <asm/hypervisor.h>
36 #include <asm/timer.h>
37 #include <asm/apic.h>
38 #include <asm/vmware.h>
39 #include <asm/svm.h>
40 
41 #undef pr_fmt
42 #define pr_fmt(fmt)	"vmware: " fmt
43 
44 #define CPUID_VMWARE_INFO_LEAF               0x40000000
45 #define CPUID_VMWARE_FEATURES_LEAF           0x40000010
46 
47 #define GETVCPU_INFO_LEGACY_X2APIC           BIT(3)
48 #define GETVCPU_INFO_VCPU_RESERVED           BIT(31)
49 
50 #define STEALCLOCK_NOT_AVAILABLE (-1)
51 #define STEALCLOCK_DISABLED        0
52 #define STEALCLOCK_ENABLED         1
53 
54 struct vmware_steal_time {
55 	union {
56 		u64 clock;	/* stolen time counter in units of vtsc */
57 		struct {
58 			/* only for little-endian */
59 			u32 clock_low;
60 			u32 clock_high;
61 		};
62 	};
63 	u64 reserved[7];
64 };
65 
66 static unsigned long vmware_tsc_khz __ro_after_init;
67 static u8 vmware_hypercall_mode     __ro_after_init;
68 
69 unsigned long vmware_hypercall_slow(unsigned long cmd,
70 				    unsigned long in1, unsigned long in3,
71 				    unsigned long in4, unsigned long in5,
72 				    u32 *out1, u32 *out2, u32 *out3,
73 				    u32 *out4, u32 *out5)
74 {
75 	unsigned long out0, rbx, rcx, rdx, rsi, rdi;
76 
77 	switch (vmware_hypercall_mode) {
78 	case CPUID_VMWARE_FEATURES_ECX_VMCALL:
79 		asm_inline volatile ("vmcall"
80 				: "=a" (out0), "=b" (rbx), "=c" (rcx),
81 				"=d" (rdx), "=S" (rsi), "=D" (rdi)
82 				: "a" (VMWARE_HYPERVISOR_MAGIC),
83 				"b" (in1),
84 				"c" (cmd),
85 				"d" (in3),
86 				"S" (in4),
87 				"D" (in5)
88 				: "cc", "memory");
89 		break;
90 	case CPUID_VMWARE_FEATURES_ECX_VMMCALL:
91 		asm_inline volatile ("vmmcall"
92 				: "=a" (out0), "=b" (rbx), "=c" (rcx),
93 				"=d" (rdx), "=S" (rsi), "=D" (rdi)
94 				: "a" (VMWARE_HYPERVISOR_MAGIC),
95 				"b" (in1),
96 				"c" (cmd),
97 				"d" (in3),
98 				"S" (in4),
99 				"D" (in5)
100 				: "cc", "memory");
101 		break;
102 	default:
103 		asm_inline volatile ("movw %[port], %%dx; inl (%%dx), %%eax"
104 				: "=a" (out0), "=b" (rbx), "=c" (rcx),
105 				"=d" (rdx), "=S" (rsi), "=D" (rdi)
106 				: [port] "i" (VMWARE_HYPERVISOR_PORT),
107 				"a" (VMWARE_HYPERVISOR_MAGIC),
108 				"b" (in1),
109 				"c" (cmd),
110 				"d" (in3),
111 				"S" (in4),
112 				"D" (in5)
113 				: "cc", "memory");
114 		break;
115 	}
116 
117 	if (out1)
118 		*out1 = rbx;
119 	if (out2)
120 		*out2 = rcx;
121 	if (out3)
122 		*out3 = rdx;
123 	if (out4)
124 		*out4 = rsi;
125 	if (out5)
126 		*out5 = rdi;
127 
128 	return out0;
129 }
130 
131 static inline int __vmware_platform(void)
132 {
133 	u32 eax, ebx, ecx;
134 
135 	eax = vmware_hypercall3(VMWARE_CMD_GETVERSION, 0, &ebx, &ecx);
136 	return eax != UINT_MAX && ebx == VMWARE_HYPERVISOR_MAGIC;
137 }
138 
139 static unsigned long vmware_get_tsc_khz(void)
140 {
141 	return vmware_tsc_khz;
142 }
143 
144 #ifdef CONFIG_PARAVIRT
145 static struct cyc2ns_data vmware_cyc2ns __ro_after_init;
146 static bool vmw_sched_clock __initdata = true;
147 static DEFINE_PER_CPU_DECRYPTED(struct vmware_steal_time, vmw_steal_time) __aligned(64);
148 static bool has_steal_clock;
149 static bool steal_acc __initdata = true; /* steal time accounting */
150 
151 static __init int setup_vmw_sched_clock(char *s)
152 {
153 	vmw_sched_clock = false;
154 	return 0;
155 }
156 early_param("no-vmw-sched-clock", setup_vmw_sched_clock);
157 
158 static __init int parse_no_stealacc(char *arg)
159 {
160 	steal_acc = false;
161 	return 0;
162 }
163 early_param("no-steal-acc", parse_no_stealacc);
164 
165 static noinstr u64 vmware_sched_clock(void)
166 {
167 	unsigned long long ns;
168 
169 	ns = mul_u64_u32_shr(rdtsc(), vmware_cyc2ns.cyc2ns_mul,
170 			     vmware_cyc2ns.cyc2ns_shift);
171 	ns -= vmware_cyc2ns.cyc2ns_offset;
172 	return ns;
173 }
174 
175 static void __init vmware_cyc2ns_setup(void)
176 {
177 	struct cyc2ns_data *d = &vmware_cyc2ns;
178 	unsigned long long tsc_now = rdtsc();
179 
180 	clocks_calc_mult_shift(&d->cyc2ns_mul, &d->cyc2ns_shift,
181 			       vmware_tsc_khz, NSEC_PER_MSEC, 0);
182 	d->cyc2ns_offset = mul_u64_u32_shr(tsc_now, d->cyc2ns_mul,
183 					   d->cyc2ns_shift);
184 
185 	pr_info("using clock offset of %llu ns\n", d->cyc2ns_offset);
186 }
187 
188 static int vmware_cmd_stealclock(u32 addr_hi, u32 addr_lo)
189 {
190 	u32 info;
191 
192 	return vmware_hypercall5(VMWARE_CMD_STEALCLOCK, 0, 0, addr_hi, addr_lo,
193 				 &info);
194 }
195 
196 static bool stealclock_enable(phys_addr_t pa)
197 {
198 	return vmware_cmd_stealclock(upper_32_bits(pa),
199 				     lower_32_bits(pa)) == STEALCLOCK_ENABLED;
200 }
201 
202 static int __stealclock_disable(void)
203 {
204 	return vmware_cmd_stealclock(0, 1);
205 }
206 
207 static void stealclock_disable(void)
208 {
209 	__stealclock_disable();
210 }
211 
212 static bool vmware_is_stealclock_available(void)
213 {
214 	return __stealclock_disable() != STEALCLOCK_NOT_AVAILABLE;
215 }
216 
217 /**
218  * vmware_steal_clock() - read the per-cpu steal clock
219  * @cpu:            the cpu number whose steal clock we want to read
220  *
221  * The function reads the steal clock if we are on a 64-bit system, otherwise
222  * reads it in parts, checking that the high part didn't change in the
223  * meantime.
224  *
225  * Return:
226  *      The steal clock reading in ns.
227  */
228 static u64 vmware_steal_clock(int cpu)
229 {
230 	struct vmware_steal_time *steal = &per_cpu(vmw_steal_time, cpu);
231 	u64 clock;
232 
233 	if (IS_ENABLED(CONFIG_64BIT))
234 		clock = READ_ONCE(steal->clock);
235 	else {
236 		u32 initial_high, low, high;
237 
238 		do {
239 			initial_high = READ_ONCE(steal->clock_high);
240 			/* Do not reorder initial_high and high readings */
241 			virt_rmb();
242 			low = READ_ONCE(steal->clock_low);
243 			/* Keep low reading in between */
244 			virt_rmb();
245 			high = READ_ONCE(steal->clock_high);
246 		} while (initial_high != high);
247 
248 		clock = ((u64)high << 32) | low;
249 	}
250 
251 	return mul_u64_u32_shr(clock, vmware_cyc2ns.cyc2ns_mul,
252 			     vmware_cyc2ns.cyc2ns_shift);
253 }
254 
255 static void vmware_register_steal_time(void)
256 {
257 	int cpu = smp_processor_id();
258 	struct vmware_steal_time *st = &per_cpu(vmw_steal_time, cpu);
259 
260 	if (!has_steal_clock)
261 		return;
262 
263 	if (!stealclock_enable(slow_virt_to_phys(st))) {
264 		has_steal_clock = false;
265 		return;
266 	}
267 
268 	pr_info("vmware-stealtime: cpu %d, pa %llx\n",
269 		cpu, (unsigned long long) slow_virt_to_phys(st));
270 }
271 
272 static void vmware_disable_steal_time(void)
273 {
274 	if (!has_steal_clock)
275 		return;
276 
277 	stealclock_disable();
278 }
279 
280 static void vmware_guest_cpu_init(void)
281 {
282 	if (has_steal_clock)
283 		vmware_register_steal_time();
284 }
285 
286 static void vmware_pv_guest_cpu_reboot(void *unused)
287 {
288 	vmware_disable_steal_time();
289 }
290 
291 static int vmware_pv_reboot_notify(struct notifier_block *nb,
292 				unsigned long code, void *unused)
293 {
294 	if (code == SYS_RESTART)
295 		on_each_cpu(vmware_pv_guest_cpu_reboot, NULL, 1);
296 	return NOTIFY_DONE;
297 }
298 
299 static struct notifier_block vmware_pv_reboot_nb = {
300 	.notifier_call = vmware_pv_reboot_notify,
301 };
302 
303 #ifdef CONFIG_SMP
304 static void __init vmware_smp_prepare_boot_cpu(void)
305 {
306 	vmware_guest_cpu_init();
307 	native_smp_prepare_boot_cpu();
308 }
309 
310 static int vmware_cpu_online(unsigned int cpu)
311 {
312 	local_irq_disable();
313 	vmware_guest_cpu_init();
314 	local_irq_enable();
315 	return 0;
316 }
317 
318 static int vmware_cpu_down_prepare(unsigned int cpu)
319 {
320 	local_irq_disable();
321 	vmware_disable_steal_time();
322 	local_irq_enable();
323 	return 0;
324 }
325 #endif
326 
327 static __init int activate_jump_labels(void)
328 {
329 	if (has_steal_clock) {
330 		static_key_slow_inc(&paravirt_steal_enabled);
331 		if (steal_acc)
332 			static_key_slow_inc(&paravirt_steal_rq_enabled);
333 	}
334 
335 	return 0;
336 }
337 arch_initcall(activate_jump_labels);
338 
339 static void __init vmware_paravirt_ops_setup(void)
340 {
341 	pv_info.name = "VMware hypervisor";
342 	pv_ops.cpu.io_delay = paravirt_nop;
343 
344 	if (vmware_tsc_khz == 0)
345 		return;
346 
347 	vmware_cyc2ns_setup();
348 
349 	if (vmw_sched_clock)
350 		paravirt_set_sched_clock(vmware_sched_clock);
351 
352 	if (vmware_is_stealclock_available()) {
353 		has_steal_clock = true;
354 		static_call_update(pv_steal_clock, vmware_steal_clock);
355 
356 		/* We use reboot notifier only to disable steal clock */
357 		register_reboot_notifier(&vmware_pv_reboot_nb);
358 
359 #ifdef CONFIG_SMP
360 		smp_ops.smp_prepare_boot_cpu =
361 			vmware_smp_prepare_boot_cpu;
362 		if (cpuhp_setup_state_nocalls(CPUHP_AP_ONLINE_DYN,
363 					      "x86/vmware:online",
364 					      vmware_cpu_online,
365 					      vmware_cpu_down_prepare) < 0)
366 			pr_err("vmware_guest: Failed to install cpu hotplug callbacks\n");
367 #else
368 		vmware_guest_cpu_init();
369 #endif
370 	}
371 }
372 #else
373 #define vmware_paravirt_ops_setup() do {} while (0)
374 #endif
375 
376 /*
377  * VMware hypervisor takes care of exporting a reliable TSC to the guest.
378  * Still, due to timing difference when running on virtual cpus, the TSC can
379  * be marked as unstable in some cases. For example, the TSC sync check at
380  * bootup can fail due to a marginal offset between vcpus' TSCs (though the
381  * TSCs do not drift from each other).  Also, the ACPI PM timer clocksource
382  * is not suitable as a watchdog when running on a hypervisor because the
383  * kernel may miss a wrap of the counter if the vcpu is descheduled for a
384  * long time. To skip these checks at runtime we set these capability bits,
385  * so that the kernel could just trust the hypervisor with providing a
386  * reliable virtual TSC that is suitable for timekeeping.
387  */
388 static void __init vmware_set_capabilities(void)
389 {
390 	setup_force_cpu_cap(X86_FEATURE_CONSTANT_TSC);
391 	setup_force_cpu_cap(X86_FEATURE_TSC_RELIABLE);
392 	if (vmware_tsc_khz)
393 		setup_force_cpu_cap(X86_FEATURE_TSC_KNOWN_FREQ);
394 	if (vmware_hypercall_mode == CPUID_VMWARE_FEATURES_ECX_VMCALL)
395 		setup_force_cpu_cap(X86_FEATURE_VMCALL);
396 	else if (vmware_hypercall_mode == CPUID_VMWARE_FEATURES_ECX_VMMCALL)
397 		setup_force_cpu_cap(X86_FEATURE_VMW_VMMCALL);
398 }
399 
400 static void __init vmware_platform_setup(void)
401 {
402 	u32 eax, ebx, ecx;
403 	u64 lpj, tsc_khz;
404 
405 	eax = vmware_hypercall3(VMWARE_CMD_GETHZ, UINT_MAX, &ebx, &ecx);
406 
407 	if (ebx != UINT_MAX) {
408 		lpj = tsc_khz = eax | (((u64)ebx) << 32);
409 		do_div(tsc_khz, 1000);
410 		WARN_ON(tsc_khz >> 32);
411 		pr_info("TSC freq read from hypervisor : %lu.%03lu MHz\n",
412 			(unsigned long) tsc_khz / 1000,
413 			(unsigned long) tsc_khz % 1000);
414 
415 		if (!preset_lpj) {
416 			do_div(lpj, HZ);
417 			preset_lpj = lpj;
418 		}
419 
420 		vmware_tsc_khz = tsc_khz;
421 		x86_platform.calibrate_tsc = vmware_get_tsc_khz;
422 		x86_platform.calibrate_cpu = vmware_get_tsc_khz;
423 
424 #ifdef CONFIG_X86_LOCAL_APIC
425 		/* Skip lapic calibration since we know the bus frequency. */
426 		lapic_timer_period = ecx / HZ;
427 		pr_info("Host bus clock speed read from hypervisor : %u Hz\n",
428 			ecx);
429 #endif
430 	} else {
431 		pr_warn("Failed to get TSC freq from the hypervisor\n");
432 	}
433 
434 	if (cc_platform_has(CC_ATTR_GUEST_SEV_SNP) && !efi_enabled(EFI_BOOT))
435 		x86_init.mpparse.find_mptable = mpparse_find_mptable;
436 
437 	vmware_paravirt_ops_setup();
438 
439 #ifdef CONFIG_X86_IO_APIC
440 	no_timer_check = 1;
441 #endif
442 
443 	vmware_set_capabilities();
444 }
445 
446 static u8 __init vmware_select_hypercall(void)
447 {
448 	int eax, ebx, ecx, edx;
449 
450 	cpuid(CPUID_VMWARE_FEATURES_LEAF, &eax, &ebx, &ecx, &edx);
451 	return (ecx & (CPUID_VMWARE_FEATURES_ECX_VMMCALL |
452 		       CPUID_VMWARE_FEATURES_ECX_VMCALL));
453 }
454 
455 /*
456  * While checking the dmi string information, just checking the product
457  * serial key should be enough, as this will always have a VMware
458  * specific string when running under VMware hypervisor.
459  * If !boot_cpu_has(X86_FEATURE_HYPERVISOR), vmware_hypercall_mode
460  * intentionally defaults to 0.
461  */
462 static u32 __init vmware_platform(void)
463 {
464 	if (boot_cpu_has(X86_FEATURE_HYPERVISOR)) {
465 		unsigned int eax;
466 		unsigned int hyper_vendor_id[3];
467 
468 		cpuid(CPUID_VMWARE_INFO_LEAF, &eax, &hyper_vendor_id[0],
469 		      &hyper_vendor_id[1], &hyper_vendor_id[2]);
470 		if (!memcmp(hyper_vendor_id, "VMwareVMware", 12)) {
471 			if (eax >= CPUID_VMWARE_FEATURES_LEAF)
472 				vmware_hypercall_mode =
473 					vmware_select_hypercall();
474 
475 			pr_info("hypercall mode: 0x%02x\n",
476 				(unsigned int) vmware_hypercall_mode);
477 
478 			return CPUID_VMWARE_INFO_LEAF;
479 		}
480 	} else if (dmi_available && dmi_name_in_serial("VMware") &&
481 		   __vmware_platform())
482 		return 1;
483 
484 	return 0;
485 }
486 
487 /* Checks if hypervisor supports x2apic without VT-D interrupt remapping. */
488 static bool __init vmware_legacy_x2apic_available(void)
489 {
490 	u32 eax;
491 
492 	eax = vmware_hypercall1(VMWARE_CMD_GETVCPU_INFO, 0);
493 	return !(eax & GETVCPU_INFO_VCPU_RESERVED) &&
494 		(eax & GETVCPU_INFO_LEGACY_X2APIC);
495 }
496 
497 #ifdef CONFIG_INTEL_TDX_GUEST
498 /*
499  * TDCALL[TDG.VP.VMCALL] uses %rax (arg0) and %rcx (arg2). Therefore,
500  * we remap those registers to %r12 and %r13, respectively.
501  */
502 unsigned long vmware_tdx_hypercall(unsigned long cmd,
503 				   unsigned long in1, unsigned long in3,
504 				   unsigned long in4, unsigned long in5,
505 				   u32 *out1, u32 *out2, u32 *out3,
506 				   u32 *out4, u32 *out5)
507 {
508 	struct tdx_module_args args = {};
509 
510 	if (!hypervisor_is_type(X86_HYPER_VMWARE)) {
511 		pr_warn_once("Incorrect usage\n");
512 		return ULONG_MAX;
513 	}
514 
515 	if (cmd & ~VMWARE_CMD_MASK) {
516 		pr_warn_once("Out of range command %lx\n", cmd);
517 		return ULONG_MAX;
518 	}
519 
520 	args.rbx = in1;
521 	args.rdx = in3;
522 	args.rsi = in4;
523 	args.rdi = in5;
524 	args.r10 = VMWARE_TDX_VENDOR_LEAF;
525 	args.r11 = VMWARE_TDX_HCALL_FUNC;
526 	args.r12 = VMWARE_HYPERVISOR_MAGIC;
527 	args.r13 = cmd;
528 	/* CPL */
529 	args.r15 = 0;
530 
531 	__tdx_hypercall(&args);
532 
533 	if (out1)
534 		*out1 = args.rbx;
535 	if (out2)
536 		*out2 = args.r13;
537 	if (out3)
538 		*out3 = args.rdx;
539 	if (out4)
540 		*out4 = args.rsi;
541 	if (out5)
542 		*out5 = args.rdi;
543 
544 	return args.r12;
545 }
546 EXPORT_SYMBOL_GPL(vmware_tdx_hypercall);
547 #endif
548 
549 #ifdef CONFIG_AMD_MEM_ENCRYPT
550 static void vmware_sev_es_hcall_prepare(struct ghcb *ghcb,
551 					struct pt_regs *regs)
552 {
553 	/* Copy VMWARE specific Hypercall parameters to the GHCB */
554 	ghcb_set_rip(ghcb, regs->ip);
555 	ghcb_set_rbx(ghcb, regs->bx);
556 	ghcb_set_rcx(ghcb, regs->cx);
557 	ghcb_set_rdx(ghcb, regs->dx);
558 	ghcb_set_rsi(ghcb, regs->si);
559 	ghcb_set_rdi(ghcb, regs->di);
560 	ghcb_set_rbp(ghcb, regs->bp);
561 }
562 
563 static bool vmware_sev_es_hcall_finish(struct ghcb *ghcb, struct pt_regs *regs)
564 {
565 	if (!(ghcb_rbx_is_valid(ghcb) &&
566 	      ghcb_rcx_is_valid(ghcb) &&
567 	      ghcb_rdx_is_valid(ghcb) &&
568 	      ghcb_rsi_is_valid(ghcb) &&
569 	      ghcb_rdi_is_valid(ghcb) &&
570 	      ghcb_rbp_is_valid(ghcb)))
571 		return false;
572 
573 	regs->bx = ghcb_get_rbx(ghcb);
574 	regs->cx = ghcb_get_rcx(ghcb);
575 	regs->dx = ghcb_get_rdx(ghcb);
576 	regs->si = ghcb_get_rsi(ghcb);
577 	regs->di = ghcb_get_rdi(ghcb);
578 	regs->bp = ghcb_get_rbp(ghcb);
579 
580 	return true;
581 }
582 #endif
583 
584 const __initconst struct hypervisor_x86 x86_hyper_vmware = {
585 	.name				= "VMware",
586 	.detect				= vmware_platform,
587 	.type				= X86_HYPER_VMWARE,
588 	.init.init_platform		= vmware_platform_setup,
589 	.init.x2apic_available		= vmware_legacy_x2apic_available,
590 #ifdef CONFIG_AMD_MEM_ENCRYPT
591 	.runtime.sev_es_hcall_prepare	= vmware_sev_es_hcall_prepare,
592 	.runtime.sev_es_hcall_finish	= vmware_sev_es_hcall_finish,
593 #endif
594 };
595