xref: /openbmc/linux/arch/x86/include/asm/mshyperv.h (revision a46d15cc1ae5af905afac2af4cc0c188c2eb59b0)
1b2441318SGreg Kroah-Hartman /* SPDX-License-Identifier: GPL-2.0 */
2e08cae41SH. Peter Anvin #ifndef _ASM_X86_MSHYPER_H
3e08cae41SH. Peter Anvin #define _ASM_X86_MSHYPER_H
4a2a47c6cSKy Srinivasan 
5e08cae41SH. Peter Anvin #include <linux/types.h>
626fcd952SThomas Gleixner #include <linux/atomic.h>
7806c8927SVitaly Kuznetsov #include <linux/nmi.h>
8fc53662fSVitaly Kuznetsov #include <asm/io.h>
95a485803SVitaly Kuznetsov #include <asm/hyperv-tlfs.h>
10e70e5892SDavid Woodhouse #include <asm/nospec-branch.h>
11e08cae41SH. Peter Anvin 
12e08cae41SH. Peter Anvin struct ms_hyperv_info {
13e08cae41SH. Peter Anvin 	u32 features;
14cc2dd402SDenis V. Lunev 	u32 misc_features;
15e08cae41SH. Peter Anvin 	u32 hints;
16dd018597SVitaly Kuznetsov 	u32 max_vp_index;
17dd018597SVitaly Kuznetsov 	u32 max_lp_index;
18e08cae41SH. Peter Anvin };
19e08cae41SH. Peter Anvin 
20e08cae41SH. Peter Anvin extern struct ms_hyperv_info ms_hyperv;
21a2a47c6cSKy Srinivasan 
223f646ed7SK. Y. Srinivasan 
23352c9624SK. Y. Srinivasan /*
24415bd1cdSVitaly Kuznetsov  * Generate the guest ID.
25352c9624SK. Y. Srinivasan  */
26352c9624SK. Y. Srinivasan 
27352c9624SK. Y. Srinivasan static inline  __u64 generate_guest_id(__u64 d_info1, __u64 kernel_version,
28352c9624SK. Y. Srinivasan 				       __u64 d_info2)
29352c9624SK. Y. Srinivasan {
30352c9624SK. Y. Srinivasan 	__u64 guest_id = 0;
31352c9624SK. Y. Srinivasan 
329b06e101SK. Y. Srinivasan 	guest_id = (((__u64)HV_LINUX_VENDOR_ID) << 48);
33352c9624SK. Y. Srinivasan 	guest_id |= (d_info1 << 48);
34352c9624SK. Y. Srinivasan 	guest_id |= (kernel_version << 16);
35352c9624SK. Y. Srinivasan 	guest_id |= d_info2;
36352c9624SK. Y. Srinivasan 
37352c9624SK. Y. Srinivasan 	return guest_id;
38352c9624SK. Y. Srinivasan }
39352c9624SK. Y. Srinivasan 
40e810e48cSK. Y. Srinivasan 
41e810e48cSK. Y. Srinivasan /* Free the message slot and signal end-of-message if required */
42e810e48cSK. Y. Srinivasan static inline void vmbus_signal_eom(struct hv_message *msg, u32 old_msg_type)
43e810e48cSK. Y. Srinivasan {
44e810e48cSK. Y. Srinivasan 	/*
45e810e48cSK. Y. Srinivasan 	 * On crash we're reading some other CPU's message page and we need
46e810e48cSK. Y. Srinivasan 	 * to be careful: this other CPU may already had cleared the header
47e810e48cSK. Y. Srinivasan 	 * and the host may already had delivered some other message there.
48e810e48cSK. Y. Srinivasan 	 * In case we blindly write msg->header.message_type we're going
49e810e48cSK. Y. Srinivasan 	 * to lose it. We can still lose a message of the same type but
50e810e48cSK. Y. Srinivasan 	 * we count on the fact that there can only be one
51e810e48cSK. Y. Srinivasan 	 * CHANNELMSG_UNLOAD_RESPONSE and we don't care about other messages
52e810e48cSK. Y. Srinivasan 	 * on crash.
53e810e48cSK. Y. Srinivasan 	 */
54e810e48cSK. Y. Srinivasan 	if (cmpxchg(&msg->header.message_type, old_msg_type,
55e810e48cSK. Y. Srinivasan 		    HVMSG_NONE) != old_msg_type)
56e810e48cSK. Y. Srinivasan 		return;
57e810e48cSK. Y. Srinivasan 
58e810e48cSK. Y. Srinivasan 	/*
59e810e48cSK. Y. Srinivasan 	 * Make sure the write to MessageType (ie set to
60e810e48cSK. Y. Srinivasan 	 * HVMSG_NONE) happens before we read the
61e810e48cSK. Y. Srinivasan 	 * MessagePending and EOMing. Otherwise, the EOMing
62e810e48cSK. Y. Srinivasan 	 * will not deliver any more messages since there is
63e810e48cSK. Y. Srinivasan 	 * no empty slot
64e810e48cSK. Y. Srinivasan 	 */
65e810e48cSK. Y. Srinivasan 	mb();
66e810e48cSK. Y. Srinivasan 
67e810e48cSK. Y. Srinivasan 	if (msg->header.message_flags.msg_pending) {
68e810e48cSK. Y. Srinivasan 		/*
69e810e48cSK. Y. Srinivasan 		 * This will cause message queue rescan to
70e810e48cSK. Y. Srinivasan 		 * possibly deliver another msg from the
71e810e48cSK. Y. Srinivasan 		 * hypervisor
72e810e48cSK. Y. Srinivasan 		 */
73e810e48cSK. Y. Srinivasan 		wrmsrl(HV_X64_MSR_EOM, 0);
74e810e48cSK. Y. Srinivasan 	}
75e810e48cSK. Y. Srinivasan }
76e810e48cSK. Y. Srinivasan 
77d5116b40SK. Y. Srinivasan #define hv_init_timer(timer, tick) wrmsrl(timer, tick)
78d5116b40SK. Y. Srinivasan #define hv_init_timer_config(config, val) wrmsrl(config, val)
79d5116b40SK. Y. Srinivasan 
80155e4a2fSK. Y. Srinivasan #define hv_get_simp(val) rdmsrl(HV_X64_MSR_SIMP, val)
81155e4a2fSK. Y. Srinivasan #define hv_set_simp(val) wrmsrl(HV_X64_MSR_SIMP, val)
82155e4a2fSK. Y. Srinivasan 
838e307bf8SK. Y. Srinivasan #define hv_get_siefp(val) rdmsrl(HV_X64_MSR_SIEFP, val)
848e307bf8SK. Y. Srinivasan #define hv_set_siefp(val) wrmsrl(HV_X64_MSR_SIEFP, val)
858e307bf8SK. Y. Srinivasan 
8606d1d98aSK. Y. Srinivasan #define hv_get_synic_state(val) rdmsrl(HV_X64_MSR_SCONTROL, val)
8706d1d98aSK. Y. Srinivasan #define hv_set_synic_state(val) wrmsrl(HV_X64_MSR_SCONTROL, val)
8806d1d98aSK. Y. Srinivasan 
897297ff0cSK. Y. Srinivasan #define hv_get_vp_index(index) rdmsrl(HV_X64_MSR_VP_INDEX, index)
907297ff0cSK. Y. Srinivasan 
9137e11d5cSK. Y. Srinivasan #define hv_get_synint_state(int_num, val) rdmsrl(int_num, val)
9237e11d5cSK. Y. Srinivasan #define hv_set_synint_state(int_num, val) wrmsrl(int_num, val)
9337e11d5cSK. Y. Srinivasan 
94bc2b0331SK. Y. Srinivasan void hyperv_callback_vector(void);
9593286261SVitaly Kuznetsov void hyperv_reenlightenment_vector(void);
96cf910e83SSeiji Aguchi #ifdef CONFIG_TRACING
97cf910e83SSeiji Aguchi #define trace_hyperv_callback_vector hyperv_callback_vector
98cf910e83SSeiji Aguchi #endif
99bc2b0331SK. Y. Srinivasan void hyperv_vector_handler(struct pt_regs *regs);
10076d388cdSThomas Gleixner void hv_setup_vmbus_irq(void (*handler)(void));
10176d388cdSThomas Gleixner void hv_remove_vmbus_irq(void);
102bc2b0331SK. Y. Srinivasan 
1032517281dSVitaly Kuznetsov void hv_setup_kexec_handler(void (*handler)(void));
1042517281dSVitaly Kuznetsov void hv_remove_kexec_handler(void);
105b4370df2SVitaly Kuznetsov void hv_setup_crash_handler(void (*handler)(struct pt_regs *regs));
106b4370df2SVitaly Kuznetsov void hv_remove_crash_handler(void);
1078730046cSK. Y. Srinivasan 
1088730046cSK. Y. Srinivasan #if IS_ENABLED(CONFIG_HYPERV)
109dee863b5SVitaly Kuznetsov extern struct clocksource *hyperv_cs;
110fc53662fSVitaly Kuznetsov extern void *hv_hypercall_pg;
111fc53662fSVitaly Kuznetsov 
112fc53662fSVitaly Kuznetsov static inline u64 hv_do_hypercall(u64 control, void *input, void *output)
113fc53662fSVitaly Kuznetsov {
114fc53662fSVitaly Kuznetsov 	u64 input_address = input ? virt_to_phys(input) : 0;
115fc53662fSVitaly Kuznetsov 	u64 output_address = output ? virt_to_phys(output) : 0;
116fc53662fSVitaly Kuznetsov 	u64 hv_status;
117fc53662fSVitaly Kuznetsov 
118fc53662fSVitaly Kuznetsov #ifdef CONFIG_X86_64
119fc53662fSVitaly Kuznetsov 	if (!hv_hypercall_pg)
120fc53662fSVitaly Kuznetsov 		return U64_MAX;
121fc53662fSVitaly Kuznetsov 
122fc53662fSVitaly Kuznetsov 	__asm__ __volatile__("mov %4, %%r8\n"
123e70e5892SDavid Woodhouse 			     CALL_NOSPEC
124f5caf621SJosh Poimboeuf 			     : "=a" (hv_status), ASM_CALL_CONSTRAINT,
125fc53662fSVitaly Kuznetsov 			       "+c" (control), "+d" (input_address)
126e70e5892SDavid Woodhouse 			     :  "r" (output_address),
127e70e5892SDavid Woodhouse 				THUNK_TARGET(hv_hypercall_pg)
128fc53662fSVitaly Kuznetsov 			     : "cc", "memory", "r8", "r9", "r10", "r11");
129fc53662fSVitaly Kuznetsov #else
130fc53662fSVitaly Kuznetsov 	u32 input_address_hi = upper_32_bits(input_address);
131fc53662fSVitaly Kuznetsov 	u32 input_address_lo = lower_32_bits(input_address);
132fc53662fSVitaly Kuznetsov 	u32 output_address_hi = upper_32_bits(output_address);
133fc53662fSVitaly Kuznetsov 	u32 output_address_lo = lower_32_bits(output_address);
134fc53662fSVitaly Kuznetsov 
135fc53662fSVitaly Kuznetsov 	if (!hv_hypercall_pg)
136fc53662fSVitaly Kuznetsov 		return U64_MAX;
137fc53662fSVitaly Kuznetsov 
138e70e5892SDavid Woodhouse 	__asm__ __volatile__(CALL_NOSPEC
139fc53662fSVitaly Kuznetsov 			     : "=A" (hv_status),
140f5caf621SJosh Poimboeuf 			       "+c" (input_address_lo), ASM_CALL_CONSTRAINT
141fc53662fSVitaly Kuznetsov 			     : "A" (control),
142fc53662fSVitaly Kuznetsov 			       "b" (input_address_hi),
143fc53662fSVitaly Kuznetsov 			       "D"(output_address_hi), "S"(output_address_lo),
144e70e5892SDavid Woodhouse 			       THUNK_TARGET(hv_hypercall_pg)
145fc53662fSVitaly Kuznetsov 			     : "cc", "memory");
146fc53662fSVitaly Kuznetsov #endif /* !x86_64 */
147fc53662fSVitaly Kuznetsov 	return hv_status;
148fc53662fSVitaly Kuznetsov }
149dee863b5SVitaly Kuznetsov 
1506a8edbd0SVitaly Kuznetsov /* Fast hypercall with 8 bytes of input and no output */
1516a8edbd0SVitaly Kuznetsov static inline u64 hv_do_fast_hypercall8(u16 code, u64 input1)
1526a8edbd0SVitaly Kuznetsov {
1536a8edbd0SVitaly Kuznetsov 	u64 hv_status, control = (u64)code | HV_HYPERCALL_FAST_BIT;
1546a8edbd0SVitaly Kuznetsov 
1556a8edbd0SVitaly Kuznetsov #ifdef CONFIG_X86_64
1566a8edbd0SVitaly Kuznetsov 	{
157e70e5892SDavid Woodhouse 		__asm__ __volatile__(CALL_NOSPEC
158f5caf621SJosh Poimboeuf 				     : "=a" (hv_status), ASM_CALL_CONSTRAINT,
1596a8edbd0SVitaly Kuznetsov 				       "+c" (control), "+d" (input1)
160e70e5892SDavid Woodhouse 				     : THUNK_TARGET(hv_hypercall_pg)
1616a8edbd0SVitaly Kuznetsov 				     : "cc", "r8", "r9", "r10", "r11");
1626a8edbd0SVitaly Kuznetsov 	}
1636a8edbd0SVitaly Kuznetsov #else
1646a8edbd0SVitaly Kuznetsov 	{
1656a8edbd0SVitaly Kuznetsov 		u32 input1_hi = upper_32_bits(input1);
1666a8edbd0SVitaly Kuznetsov 		u32 input1_lo = lower_32_bits(input1);
1676a8edbd0SVitaly Kuznetsov 
168e70e5892SDavid Woodhouse 		__asm__ __volatile__ (CALL_NOSPEC
1696a8edbd0SVitaly Kuznetsov 				      : "=A"(hv_status),
1706a8edbd0SVitaly Kuznetsov 					"+c"(input1_lo),
171f5caf621SJosh Poimboeuf 					ASM_CALL_CONSTRAINT
1726a8edbd0SVitaly Kuznetsov 				      :	"A" (control),
1736a8edbd0SVitaly Kuznetsov 					"b" (input1_hi),
174e70e5892SDavid Woodhouse 					THUNK_TARGET(hv_hypercall_pg)
1756a8edbd0SVitaly Kuznetsov 				      : "cc", "edi", "esi");
1766a8edbd0SVitaly Kuznetsov 	}
1776a8edbd0SVitaly Kuznetsov #endif
1786a8edbd0SVitaly Kuznetsov 		return hv_status;
1796a8edbd0SVitaly Kuznetsov }
1806a8edbd0SVitaly Kuznetsov 
181806c8927SVitaly Kuznetsov /*
182806c8927SVitaly Kuznetsov  * Rep hypercalls. Callers of this functions are supposed to ensure that
183806c8927SVitaly Kuznetsov  * rep_count and varhead_size comply with Hyper-V hypercall definition.
184806c8927SVitaly Kuznetsov  */
185806c8927SVitaly Kuznetsov static inline u64 hv_do_rep_hypercall(u16 code, u16 rep_count, u16 varhead_size,
186806c8927SVitaly Kuznetsov 				      void *input, void *output)
187806c8927SVitaly Kuznetsov {
188806c8927SVitaly Kuznetsov 	u64 control = code;
189806c8927SVitaly Kuznetsov 	u64 status;
190806c8927SVitaly Kuznetsov 	u16 rep_comp;
191806c8927SVitaly Kuznetsov 
192806c8927SVitaly Kuznetsov 	control |= (u64)varhead_size << HV_HYPERCALL_VARHEAD_OFFSET;
193806c8927SVitaly Kuznetsov 	control |= (u64)rep_count << HV_HYPERCALL_REP_COMP_OFFSET;
194806c8927SVitaly Kuznetsov 
195806c8927SVitaly Kuznetsov 	do {
196806c8927SVitaly Kuznetsov 		status = hv_do_hypercall(control, input, output);
197806c8927SVitaly Kuznetsov 		if ((status & HV_HYPERCALL_RESULT_MASK) != HV_STATUS_SUCCESS)
198806c8927SVitaly Kuznetsov 			return status;
199806c8927SVitaly Kuznetsov 
200806c8927SVitaly Kuznetsov 		/* Bits 32-43 of status have 'Reps completed' data. */
201806c8927SVitaly Kuznetsov 		rep_comp = (status & HV_HYPERCALL_REP_COMP_MASK) >>
202806c8927SVitaly Kuznetsov 			HV_HYPERCALL_REP_COMP_OFFSET;
203806c8927SVitaly Kuznetsov 
204806c8927SVitaly Kuznetsov 		control &= ~HV_HYPERCALL_REP_START_MASK;
205806c8927SVitaly Kuznetsov 		control |= (u64)rep_comp << HV_HYPERCALL_REP_START_OFFSET;
206806c8927SVitaly Kuznetsov 
207806c8927SVitaly Kuznetsov 		touch_nmi_watchdog();
208806c8927SVitaly Kuznetsov 	} while (rep_comp < rep_count);
209806c8927SVitaly Kuznetsov 
210806c8927SVitaly Kuznetsov 	return status;
211806c8927SVitaly Kuznetsov }
212806c8927SVitaly Kuznetsov 
2137415aea6SVitaly Kuznetsov /*
2147415aea6SVitaly Kuznetsov  * Hypervisor's notion of virtual processor ID is different from
2157415aea6SVitaly Kuznetsov  * Linux' notion of CPU ID. This information can only be retrieved
2167415aea6SVitaly Kuznetsov  * in the context of the calling CPU. Setup a map for easy access
2177415aea6SVitaly Kuznetsov  * to this information.
2187415aea6SVitaly Kuznetsov  */
2197415aea6SVitaly Kuznetsov extern u32 *hv_vp_index;
220a3b74243SVitaly Kuznetsov extern u32 hv_max_vp_index;
221*a46d15ccSVitaly Kuznetsov extern struct hv_vp_assist_page **hv_vp_assist_page;
222*a46d15ccSVitaly Kuznetsov 
223*a46d15ccSVitaly Kuznetsov static inline struct hv_vp_assist_page *hv_get_vp_assist_page(unsigned int cpu)
224*a46d15ccSVitaly Kuznetsov {
225*a46d15ccSVitaly Kuznetsov 	if (!hv_vp_assist_page)
226*a46d15ccSVitaly Kuznetsov 		return NULL;
227*a46d15ccSVitaly Kuznetsov 
228*a46d15ccSVitaly Kuznetsov 	return hv_vp_assist_page[cpu];
229*a46d15ccSVitaly Kuznetsov }
2307415aea6SVitaly Kuznetsov 
2317415aea6SVitaly Kuznetsov /**
2327415aea6SVitaly Kuznetsov  * hv_cpu_number_to_vp_number() - Map CPU to VP.
2337415aea6SVitaly Kuznetsov  * @cpu_number: CPU number in Linux terms
2347415aea6SVitaly Kuznetsov  *
2357415aea6SVitaly Kuznetsov  * This function returns the mapping between the Linux processor
2367415aea6SVitaly Kuznetsov  * number and the hypervisor's virtual processor number, useful
2377415aea6SVitaly Kuznetsov  * in making hypercalls and such that talk about specific
2387415aea6SVitaly Kuznetsov  * processors.
2397415aea6SVitaly Kuznetsov  *
2407415aea6SVitaly Kuznetsov  * Return: Virtual processor number in Hyper-V terms
2417415aea6SVitaly Kuznetsov  */
2427415aea6SVitaly Kuznetsov static inline int hv_cpu_number_to_vp_number(int cpu_number)
2437415aea6SVitaly Kuznetsov {
2447415aea6SVitaly Kuznetsov 	return hv_vp_index[cpu_number];
2457415aea6SVitaly Kuznetsov }
24673638cddSK. Y. Srinivasan 
247d6f3609dSVitaly Kuznetsov void hyperv_init(void);
2482ffd9e33SVitaly Kuznetsov void hyperv_setup_mmu_ops(void);
2492ffd9e33SVitaly Kuznetsov void hyper_alloc_mmu(void);
2507ed4325aSK. Y. Srinivasan void hyperv_report_panic(struct pt_regs *regs, long err);
2514a5f3cdeSMichael Kelley bool hv_is_hyperv_initialized(void);
2528730046cSK. Y. Srinivasan void hyperv_cleanup(void);
25393286261SVitaly Kuznetsov 
25493286261SVitaly Kuznetsov void hyperv_reenlightenment_intr(struct pt_regs *regs);
25593286261SVitaly Kuznetsov void set_hv_tscchange_cb(void (*cb)(void));
25693286261SVitaly Kuznetsov void clear_hv_tscchange_cb(void);
25793286261SVitaly Kuznetsov void hyperv_stop_tsc_emulation(void);
25879cadff2SVitaly Kuznetsov #else /* CONFIG_HYPERV */
25979cadff2SVitaly Kuznetsov static inline void hyperv_init(void) {}
2604a5f3cdeSMichael Kelley static inline bool hv_is_hyperv_initialized(void) { return false; }
26179cadff2SVitaly Kuznetsov static inline void hyperv_cleanup(void) {}
2622ffd9e33SVitaly Kuznetsov static inline void hyperv_setup_mmu_ops(void) {}
26393286261SVitaly Kuznetsov static inline void set_hv_tscchange_cb(void (*cb)(void)) {}
26493286261SVitaly Kuznetsov static inline void clear_hv_tscchange_cb(void) {}
26593286261SVitaly Kuznetsov static inline void hyperv_stop_tsc_emulation(void) {};
266*a46d15ccSVitaly Kuznetsov static inline struct hv_vp_assist_page *hv_get_vp_assist_page(unsigned int cpu)
267*a46d15ccSVitaly Kuznetsov {
268*a46d15ccSVitaly Kuznetsov 	return NULL;
269*a46d15ccSVitaly Kuznetsov }
27079cadff2SVitaly Kuznetsov #endif /* CONFIG_HYPERV */
27179cadff2SVitaly Kuznetsov 
272bd2a9adaSVitaly Kuznetsov #ifdef CONFIG_HYPERV_TSCPAGE
273bd2a9adaSVitaly Kuznetsov struct ms_hyperv_tsc_page *hv_get_tsc_page(void);
274e2768eaaSVitaly Kuznetsov static inline u64 hv_read_tsc_page_tsc(const struct ms_hyperv_tsc_page *tsc_pg,
275e2768eaaSVitaly Kuznetsov 				       u64 *cur_tsc)
2760733379bSVitaly Kuznetsov {
277e2768eaaSVitaly Kuznetsov 	u64 scale, offset;
2780733379bSVitaly Kuznetsov 	u32 sequence;
2790733379bSVitaly Kuznetsov 
2800733379bSVitaly Kuznetsov 	/*
2810733379bSVitaly Kuznetsov 	 * The protocol for reading Hyper-V TSC page is specified in Hypervisor
2820733379bSVitaly Kuznetsov 	 * Top-Level Functional Specification ver. 3.0 and above. To get the
2830733379bSVitaly Kuznetsov 	 * reference time we must do the following:
2840733379bSVitaly Kuznetsov 	 * - READ ReferenceTscSequence
2850733379bSVitaly Kuznetsov 	 *   A special '0' value indicates the time source is unreliable and we
2860733379bSVitaly Kuznetsov 	 *   need to use something else. The currently published specification
2870733379bSVitaly Kuznetsov 	 *   versions (up to 4.0b) contain a mistake and wrongly claim '-1'
2880733379bSVitaly Kuznetsov 	 *   instead of '0' as the special value, see commit c35b82ef0294.
2890733379bSVitaly Kuznetsov 	 * - ReferenceTime =
2900733379bSVitaly Kuznetsov 	 *        ((RDTSC() * ReferenceTscScale) >> 64) + ReferenceTscOffset
2910733379bSVitaly Kuznetsov 	 * - READ ReferenceTscSequence again. In case its value has changed
2920733379bSVitaly Kuznetsov 	 *   since our first reading we need to discard ReferenceTime and repeat
2930733379bSVitaly Kuznetsov 	 *   the whole sequence as the hypervisor was updating the page in
2940733379bSVitaly Kuznetsov 	 *   between.
2950733379bSVitaly Kuznetsov 	 */
2960733379bSVitaly Kuznetsov 	do {
2970733379bSVitaly Kuznetsov 		sequence = READ_ONCE(tsc_pg->tsc_sequence);
2980733379bSVitaly Kuznetsov 		if (!sequence)
2990733379bSVitaly Kuznetsov 			return U64_MAX;
3000733379bSVitaly Kuznetsov 		/*
3010733379bSVitaly Kuznetsov 		 * Make sure we read sequence before we read other values from
3020733379bSVitaly Kuznetsov 		 * TSC page.
3030733379bSVitaly Kuznetsov 		 */
3040733379bSVitaly Kuznetsov 		smp_rmb();
3050733379bSVitaly Kuznetsov 
3060733379bSVitaly Kuznetsov 		scale = READ_ONCE(tsc_pg->tsc_scale);
3070733379bSVitaly Kuznetsov 		offset = READ_ONCE(tsc_pg->tsc_offset);
308e2768eaaSVitaly Kuznetsov 		*cur_tsc = rdtsc_ordered();
3090733379bSVitaly Kuznetsov 
3100733379bSVitaly Kuznetsov 		/*
3110733379bSVitaly Kuznetsov 		 * Make sure we read sequence after we read all other values
3120733379bSVitaly Kuznetsov 		 * from TSC page.
3130733379bSVitaly Kuznetsov 		 */
3140733379bSVitaly Kuznetsov 		smp_rmb();
3150733379bSVitaly Kuznetsov 
3160733379bSVitaly Kuznetsov 	} while (READ_ONCE(tsc_pg->tsc_sequence) != sequence);
3170733379bSVitaly Kuznetsov 
318e2768eaaSVitaly Kuznetsov 	return mul_u64_u64_shr(*cur_tsc, scale, 64) + offset;
319e2768eaaSVitaly Kuznetsov }
320e2768eaaSVitaly Kuznetsov 
321e2768eaaSVitaly Kuznetsov static inline u64 hv_read_tsc_page(const struct ms_hyperv_tsc_page *tsc_pg)
322e2768eaaSVitaly Kuznetsov {
323e2768eaaSVitaly Kuznetsov 	u64 cur_tsc;
324e2768eaaSVitaly Kuznetsov 
325e2768eaaSVitaly Kuznetsov 	return hv_read_tsc_page_tsc(tsc_pg, &cur_tsc);
3260733379bSVitaly Kuznetsov }
3270733379bSVitaly Kuznetsov 
328bd2a9adaSVitaly Kuznetsov #else
329bd2a9adaSVitaly Kuznetsov static inline struct ms_hyperv_tsc_page *hv_get_tsc_page(void)
330bd2a9adaSVitaly Kuznetsov {
331bd2a9adaSVitaly Kuznetsov 	return NULL;
332bd2a9adaSVitaly Kuznetsov }
333e2768eaaSVitaly Kuznetsov 
334e2768eaaSVitaly Kuznetsov static inline u64 hv_read_tsc_page_tsc(const struct ms_hyperv_tsc_page *tsc_pg,
335e2768eaaSVitaly Kuznetsov 				       u64 *cur_tsc)
336e2768eaaSVitaly Kuznetsov {
337e2768eaaSVitaly Kuznetsov 	BUG();
338e2768eaaSVitaly Kuznetsov 	return U64_MAX;
339e2768eaaSVitaly Kuznetsov }
340bd2a9adaSVitaly Kuznetsov #endif
341a2a47c6cSKy Srinivasan #endif
342