xref: /linux/arch/x86/include/asm/sev.h (revision 5fc2e891a5badbcb585850995c609be78bd73006)
1 /* SPDX-License-Identifier: GPL-2.0 */
2 /*
3  * AMD Encrypted Register State Support
4  *
5  * Author: Joerg Roedel <jroedel@suse.de>
6  */
7 
8 #ifndef __ASM_ENCRYPTED_STATE_H
9 #define __ASM_ENCRYPTED_STATE_H
10 
11 #include <linux/types.h>
12 #include <linux/sev-guest.h>
13 
14 #include <asm/insn.h>
15 #include <asm/sev-common.h>
16 #include <asm/coco.h>
17 #include <asm/set_memory.h>
18 #include <asm/svm.h>
19 
20 #define GHCB_PROTOCOL_MIN	1ULL
21 #define GHCB_PROTOCOL_MAX	2ULL
22 #define GHCB_DEFAULT_USAGE	0ULL
23 
24 #define	VMGEXIT()			{ asm volatile("rep; vmmcall\n\r"); }
25 
26 struct boot_params;
27 
28 enum es_result {
29 	ES_OK,			/* All good */
30 	ES_UNSUPPORTED,		/* Requested operation not supported */
31 	ES_VMM_ERROR,		/* Unexpected state from the VMM */
32 	ES_DECODE_FAILED,	/* Instruction decoding failed */
33 	ES_EXCEPTION,		/* Instruction caused exception */
34 	ES_RETRY,		/* Retry instruction emulation */
35 };
36 
37 struct es_fault_info {
38 	unsigned long vector;
39 	unsigned long error_code;
40 	unsigned long cr2;
41 };
42 
43 struct pt_regs;
44 
45 /* ES instruction emulation context */
46 struct es_em_ctxt {
47 	struct pt_regs *regs;
48 	struct insn insn;
49 	struct es_fault_info fi;
50 };
51 
52 /*
53  * AMD SEV Confidential computing blob structure. The structure is
54  * defined in OVMF UEFI firmware header:
55  * https://github.com/tianocore/edk2/blob/master/OvmfPkg/Include/Guid/ConfidentialComputingSevSnpBlob.h
56  */
57 #define CC_BLOB_SEV_HDR_MAGIC	0x45444d41
58 struct cc_blob_sev_info {
59 	u32 magic;
60 	u16 version;
61 	u16 reserved;
62 	u64 secrets_phys;
63 	u32 secrets_len;
64 	u32 rsvd1;
65 	u64 cpuid_phys;
66 	u32 cpuid_len;
67 	u32 rsvd2;
68 } __packed;
69 
70 void do_vc_no_ghcb(struct pt_regs *regs, unsigned long exit_code);
71 
lower_bits(u64 val,unsigned int bits)72 static inline u64 lower_bits(u64 val, unsigned int bits)
73 {
74 	u64 mask = (1ULL << bits) - 1;
75 
76 	return (val & mask);
77 }
78 
79 struct real_mode_header;
80 enum stack_type;
81 
82 /* Early IDT entry points for #VC handler */
83 extern void vc_no_ghcb(void);
84 extern void vc_boot_ghcb(void);
85 extern bool handle_vc_boot_ghcb(struct pt_regs *regs);
86 
87 /*
88  * Individual entries of the SNP CPUID table, as defined by the SNP
89  * Firmware ABI, Revision 0.9, Section 7.1, Table 14.
90  */
91 struct snp_cpuid_fn {
92 	u32 eax_in;
93 	u32 ecx_in;
94 	u64 xcr0_in;
95 	u64 xss_in;
96 	u32 eax;
97 	u32 ebx;
98 	u32 ecx;
99 	u32 edx;
100 	u64 __reserved;
101 } __packed;
102 
103 /*
104  * SNP CPUID table, as defined by the SNP Firmware ABI, Revision 0.9,
105  * Section 8.14.2.6. Also noted there is the SNP firmware-enforced limit
106  * of 64 entries per CPUID table.
107  */
108 #define SNP_CPUID_COUNT_MAX 64
109 
110 struct snp_cpuid_table {
111 	u32 count;
112 	u32 __reserved1;
113 	u64 __reserved2;
114 	struct snp_cpuid_fn fn[SNP_CPUID_COUNT_MAX];
115 } __packed;
116 
117 /* PVALIDATE return codes */
118 #define PVALIDATE_FAIL_SIZEMISMATCH	6
119 
120 /* Software defined (when rFlags.CF = 1) */
121 #define PVALIDATE_FAIL_NOUPDATE		255
122 
123 /* RMUPDATE detected 4K page and 2MB page overlap. */
124 #define RMPUPDATE_FAIL_OVERLAP		4
125 
126 /* PSMASH failed due to concurrent access by another CPU */
127 #define PSMASH_FAIL_INUSE		3
128 
129 /* RMP page size */
130 #define RMP_PG_SIZE_4K			0
131 #define RMP_PG_SIZE_2M			1
132 #define RMP_TO_PG_LEVEL(level)		(((level) == RMP_PG_SIZE_4K) ? PG_LEVEL_4K : PG_LEVEL_2M)
133 #define PG_LEVEL_TO_RMP(level)		(((level) == PG_LEVEL_4K) ? RMP_PG_SIZE_4K : RMP_PG_SIZE_2M)
134 
135 struct rmp_state {
136 	u64 gpa;
137 	u8 assigned;
138 	u8 pagesize;
139 	u8 immutable;
140 	u8 rsvd;
141 	u32 asid;
142 } __packed;
143 
144 #define RMPADJUST_VMSA_PAGE_BIT		BIT(16)
145 
146 /* SNP Guest message request */
147 struct snp_req_data {
148 	unsigned long req_gpa;
149 	unsigned long resp_gpa;
150 	unsigned long data_gpa;
151 	unsigned int data_npages;
152 };
153 
154 #define MAX_AUTHTAG_LEN		32
155 #define AUTHTAG_LEN		16
156 #define AAD_LEN			48
157 #define MSG_HDR_VER		1
158 
159 #define SNP_REQ_MAX_RETRY_DURATION      (60*HZ)
160 #define SNP_REQ_RETRY_DELAY             (2*HZ)
161 
162 /* See SNP spec SNP_GUEST_REQUEST section for the structure */
163 enum msg_type {
164 	SNP_MSG_TYPE_INVALID = 0,
165 	SNP_MSG_CPUID_REQ,
166 	SNP_MSG_CPUID_RSP,
167 	SNP_MSG_KEY_REQ,
168 	SNP_MSG_KEY_RSP,
169 	SNP_MSG_REPORT_REQ,
170 	SNP_MSG_REPORT_RSP,
171 	SNP_MSG_EXPORT_REQ,
172 	SNP_MSG_EXPORT_RSP,
173 	SNP_MSG_IMPORT_REQ,
174 	SNP_MSG_IMPORT_RSP,
175 	SNP_MSG_ABSORB_REQ,
176 	SNP_MSG_ABSORB_RSP,
177 	SNP_MSG_VMRK_REQ,
178 	SNP_MSG_VMRK_RSP,
179 
180 	SNP_MSG_TSC_INFO_REQ = 17,
181 	SNP_MSG_TSC_INFO_RSP,
182 
183 	SNP_MSG_TYPE_MAX
184 };
185 
186 enum aead_algo {
187 	SNP_AEAD_INVALID,
188 	SNP_AEAD_AES_256_GCM,
189 };
190 
191 struct snp_guest_msg_hdr {
192 	u8 authtag[MAX_AUTHTAG_LEN];
193 	u64 msg_seqno;
194 	u8 rsvd1[8];
195 	u8 algo;
196 	u8 hdr_version;
197 	u16 hdr_sz;
198 	u8 msg_type;
199 	u8 msg_version;
200 	u16 msg_sz;
201 	u32 rsvd2;
202 	u8 msg_vmpck;
203 	u8 rsvd3[35];
204 } __packed;
205 
206 struct snp_guest_msg {
207 	struct snp_guest_msg_hdr hdr;
208 	u8 payload[PAGE_SIZE - sizeof(struct snp_guest_msg_hdr)];
209 } __packed;
210 
211 #define SNP_TSC_INFO_REQ_SZ	128
212 
213 struct snp_tsc_info_req {
214 	u8 rsvd[SNP_TSC_INFO_REQ_SZ];
215 } __packed;
216 
217 struct snp_tsc_info_resp {
218 	u32 status;
219 	u32 rsvd1;
220 	u64 tsc_scale;
221 	u64 tsc_offset;
222 	u32 tsc_factor;
223 	u8 rsvd2[100];
224 } __packed;
225 
226 /*
227  * Obtain the mean TSC frequency by decreasing the nominal TSC frequency with
228  * TSC_FACTOR as documented in the SNP Firmware ABI specification:
229  *
230  * GUEST_TSC_FREQ * (1 - (TSC_FACTOR * 0.00001))
231  *
232  * which is equivalent to:
233  *
234  * GUEST_TSC_FREQ -= (GUEST_TSC_FREQ * TSC_FACTOR) / 100000;
235  */
236 #define SNP_SCALE_TSC_FREQ(freq, factor) ((freq) - (freq) * (factor) / 100000)
237 
238 struct snp_guest_req {
239 	void *req_buf;
240 	size_t req_sz;
241 
242 	void *resp_buf;
243 	size_t resp_sz;
244 
245 	u64 exit_code;
246 	unsigned int vmpck_id;
247 	u8 msg_version;
248 	u8 msg_type;
249 
250 	struct snp_req_data input;
251 	void *certs_data;
252 };
253 
254 /*
255  * The secrets page contains 96-bytes of reserved field that can be used by
256  * the guest OS. The guest OS uses the area to save the message sequence
257  * number for each VMPCK.
258  *
259  * See the GHCB spec section Secret page layout for the format for this area.
260  */
261 struct secrets_os_area {
262 	u32 msg_seqno_0;
263 	u32 msg_seqno_1;
264 	u32 msg_seqno_2;
265 	u32 msg_seqno_3;
266 	u64 ap_jump_table_pa;
267 	u8 rsvd[40];
268 	u8 guest_usage[32];
269 } __packed;
270 
271 #define VMPCK_KEY_LEN		32
272 
273 /* See the SNP spec version 0.9 for secrets page format */
274 struct snp_secrets_page {
275 	u32 version;
276 	u32 imien	: 1,
277 	    rsvd1	: 31;
278 	u32 fms;
279 	u32 rsvd2;
280 	u8 gosvw[16];
281 	u8 vmpck0[VMPCK_KEY_LEN];
282 	u8 vmpck1[VMPCK_KEY_LEN];
283 	u8 vmpck2[VMPCK_KEY_LEN];
284 	u8 vmpck3[VMPCK_KEY_LEN];
285 	struct secrets_os_area os_area;
286 
287 	u8 vmsa_tweak_bitmap[64];
288 
289 	/* SVSM fields */
290 	u64 svsm_base;
291 	u64 svsm_size;
292 	u64 svsm_caa;
293 	u32 svsm_max_version;
294 	u8 svsm_guest_vmpl;
295 	u8 rsvd3[3];
296 
297 	/* The percentage decrease from nominal to mean TSC frequency. */
298 	u32 tsc_factor;
299 
300 	/* Remainder of page */
301 	u8 rsvd4[3740];
302 } __packed;
303 
304 struct snp_msg_desc {
305 	/* request and response are in unencrypted memory */
306 	struct snp_guest_msg *request, *response;
307 
308 	/*
309 	 * Avoid information leakage by double-buffering shared messages
310 	 * in fields that are in regular encrypted memory.
311 	 */
312 	struct snp_guest_msg secret_request, secret_response;
313 
314 	struct snp_secrets_page *secrets;
315 
316 	struct aesgcm_ctx *ctx;
317 
318 	u32 *os_area_msg_seqno;
319 	u8 *vmpck;
320 	int vmpck_id;
321 };
322 
323 /*
324  * The SVSM Calling Area (CA) related structures.
325  */
326 struct svsm_ca {
327 	u8 call_pending;
328 	u8 mem_available;
329 	u8 rsvd1[6];
330 
331 	u8 svsm_buffer[PAGE_SIZE - 8];
332 };
333 
334 #define SVSM_SUCCESS				0
335 #define SVSM_ERR_INCOMPLETE			0x80000000
336 #define SVSM_ERR_UNSUPPORTED_PROTOCOL		0x80000001
337 #define SVSM_ERR_UNSUPPORTED_CALL		0x80000002
338 #define SVSM_ERR_INVALID_ADDRESS		0x80000003
339 #define SVSM_ERR_INVALID_FORMAT			0x80000004
340 #define SVSM_ERR_INVALID_PARAMETER		0x80000005
341 #define SVSM_ERR_INVALID_REQUEST		0x80000006
342 #define SVSM_ERR_BUSY				0x80000007
343 #define SVSM_PVALIDATE_FAIL_SIZEMISMATCH	0x80001006
344 
345 /*
346  * The SVSM PVALIDATE related structures
347  */
348 struct svsm_pvalidate_entry {
349 	u64 page_size		: 2,
350 	    action		: 1,
351 	    ignore_cf		: 1,
352 	    rsvd		: 8,
353 	    pfn			: 52;
354 };
355 
356 struct svsm_pvalidate_call {
357 	u16 num_entries;
358 	u16 cur_index;
359 
360 	u8 rsvd1[4];
361 
362 	struct svsm_pvalidate_entry entry[];
363 };
364 
365 #define SVSM_PVALIDATE_MAX_COUNT	((sizeof_field(struct svsm_ca, svsm_buffer) -		\
366 					  offsetof(struct svsm_pvalidate_call, entry)) /	\
367 					 sizeof(struct svsm_pvalidate_entry))
368 
369 /*
370  * The SVSM Attestation related structures
371  */
372 struct svsm_loc_entry {
373 	u64 pa;
374 	u32 len;
375 	u8 rsvd[4];
376 };
377 
378 struct svsm_attest_call {
379 	struct svsm_loc_entry report_buf;
380 	struct svsm_loc_entry nonce;
381 	struct svsm_loc_entry manifest_buf;
382 	struct svsm_loc_entry certificates_buf;
383 
384 	/* For attesting a single service */
385 	u8 service_guid[16];
386 	u32 service_manifest_ver;
387 	u8 rsvd[4];
388 };
389 
390 /* PTE descriptor used for the prepare_pte_enc() operations. */
391 struct pte_enc_desc {
392 	pte_t *kpte;
393 	int pte_level;
394 	bool encrypt;
395 	/* pfn of the kpte above */
396 	unsigned long pfn;
397 	/* physical address of @pfn */
398 	unsigned long pa;
399 	/* virtual address of @pfn */
400 	void *va;
401 	/* memory covered by the pte */
402 	unsigned long size;
403 	pgprot_t new_pgprot;
404 };
405 
406 /*
407  * SVSM protocol structure
408  */
409 struct svsm_call {
410 	struct svsm_ca *caa;
411 	u64 rax;
412 	u64 rcx;
413 	u64 rdx;
414 	u64 r8;
415 	u64 r9;
416 	u64 rax_out;
417 	u64 rcx_out;
418 	u64 rdx_out;
419 	u64 r8_out;
420 	u64 r9_out;
421 };
422 
423 #define SVSM_CORE_CALL(x)		((0ULL << 32) | (x))
424 #define SVSM_CORE_REMAP_CA		0
425 #define SVSM_CORE_PVALIDATE		1
426 #define SVSM_CORE_CREATE_VCPU		2
427 #define SVSM_CORE_DELETE_VCPU		3
428 
429 #define SVSM_ATTEST_CALL(x)		((1ULL << 32) | (x))
430 #define SVSM_ATTEST_SERVICES		0
431 #define SVSM_ATTEST_SINGLE_SERVICE	1
432 
433 #define SVSM_VTPM_CALL(x)		((2ULL << 32) | (x))
434 #define SVSM_VTPM_QUERY			0
435 #define SVSM_VTPM_CMD			1
436 
437 #ifdef CONFIG_AMD_MEM_ENCRYPT
438 
439 extern u8 snp_vmpl;
440 
441 extern void __sev_es_ist_enter(struct pt_regs *regs);
442 extern void __sev_es_ist_exit(void);
sev_es_ist_enter(struct pt_regs * regs)443 static __always_inline void sev_es_ist_enter(struct pt_regs *regs)
444 {
445 	if (cc_vendor == CC_VENDOR_AMD &&
446 	    cc_platform_has(CC_ATTR_GUEST_STATE_ENCRYPT))
447 		__sev_es_ist_enter(regs);
448 }
sev_es_ist_exit(void)449 static __always_inline void sev_es_ist_exit(void)
450 {
451 	if (cc_vendor == CC_VENDOR_AMD &&
452 	    cc_platform_has(CC_ATTR_GUEST_STATE_ENCRYPT))
453 		__sev_es_ist_exit();
454 }
455 extern int sev_es_setup_ap_jump_table(struct real_mode_header *rmh);
456 extern void __sev_es_nmi_complete(void);
sev_es_nmi_complete(void)457 static __always_inline void sev_es_nmi_complete(void)
458 {
459 	if (cc_vendor == CC_VENDOR_AMD &&
460 	    cc_platform_has(CC_ATTR_GUEST_STATE_ENCRYPT))
461 		__sev_es_nmi_complete();
462 }
463 extern int __init sev_es_efi_map_ghcbs(pgd_t *pgd);
464 extern void sev_enable(struct boot_params *bp);
465 
466 /*
467  * RMPADJUST modifies the RMP permissions of a page of a lesser-
468  * privileged (numerically higher) VMPL.
469  *
470  * If the guest is running at a higher-privilege than the privilege
471  * level the instruction is targeting, the instruction will succeed,
472  * otherwise, it will fail.
473  */
rmpadjust(unsigned long vaddr,bool rmp_psize,unsigned long attrs)474 static inline int rmpadjust(unsigned long vaddr, bool rmp_psize, unsigned long attrs)
475 {
476 	int rc;
477 
478 	/* "rmpadjust" mnemonic support in binutils 2.36 and newer */
479 	asm volatile(".byte 0xF3,0x0F,0x01,0xFE\n\t"
480 		     : "=a"(rc)
481 		     : "a"(vaddr), "c"(rmp_psize), "d"(attrs)
482 		     : "memory", "cc");
483 
484 	return rc;
485 }
pvalidate(unsigned long vaddr,bool rmp_psize,bool validate)486 static inline int pvalidate(unsigned long vaddr, bool rmp_psize, bool validate)
487 {
488 	bool no_rmpupdate;
489 	int rc;
490 
491 	/* "pvalidate" mnemonic support in binutils 2.36 and newer */
492 	asm volatile(".byte 0xF2, 0x0F, 0x01, 0xFF\n\t"
493 		     CC_SET(c)
494 		     : CC_OUT(c) (no_rmpupdate), "=a"(rc)
495 		     : "a"(vaddr), "c"(rmp_psize), "d"(validate)
496 		     : "memory", "cc");
497 
498 	if (no_rmpupdate)
499 		return PVALIDATE_FAIL_NOUPDATE;
500 
501 	return rc;
502 }
503 
504 struct snp_guest_request_ioctl;
505 
506 void setup_ghcb(void);
507 void early_snp_set_memory_private(unsigned long vaddr, unsigned long paddr,
508 				  unsigned long npages);
509 void early_snp_set_memory_shared(unsigned long vaddr, unsigned long paddr,
510 				 unsigned long npages);
511 void snp_set_memory_shared(unsigned long vaddr, unsigned long npages);
512 void snp_set_memory_private(unsigned long vaddr, unsigned long npages);
513 void snp_set_wakeup_secondary_cpu(void);
514 bool snp_init(struct boot_params *bp);
515 void __noreturn snp_abort(void);
516 void snp_dmi_setup(void);
517 int snp_issue_svsm_attest_req(u64 call_id, struct svsm_call *call, struct svsm_attest_call *input);
518 void snp_accept_memory(phys_addr_t start, phys_addr_t end);
519 u64 snp_get_unsupported_features(u64 status);
520 u64 sev_get_status(void);
521 void sev_show_status(void);
522 void snp_update_svsm_ca(void);
523 int prepare_pte_enc(struct pte_enc_desc *d);
524 void set_pte_enc_mask(pte_t *kpte, unsigned long pfn, pgprot_t new_prot);
525 void snp_kexec_finish(void);
526 void snp_kexec_begin(void);
527 
528 int snp_msg_init(struct snp_msg_desc *mdesc, int vmpck_id);
529 struct snp_msg_desc *snp_msg_alloc(void);
530 void snp_msg_free(struct snp_msg_desc *mdesc);
531 int snp_send_guest_request(struct snp_msg_desc *mdesc, struct snp_guest_req *req,
532 			   struct snp_guest_request_ioctl *rio);
533 
534 int snp_svsm_vtpm_send_command(u8 *buffer);
535 
536 void __init snp_secure_tsc_prepare(void);
537 void __init snp_secure_tsc_init(void);
538 
vc_ghcb_invalidate(struct ghcb * ghcb)539 static __always_inline void vc_ghcb_invalidate(struct ghcb *ghcb)
540 {
541 	ghcb->save.sw_exit_code = 0;
542 	__builtin_memset(ghcb->save.valid_bitmap, 0, sizeof(ghcb->save.valid_bitmap));
543 }
544 
545 void vc_forward_exception(struct es_em_ctxt *ctxt);
546 
547 /* I/O parameters for CPUID-related helpers */
548 struct cpuid_leaf {
549 	u32 fn;
550 	u32 subfn;
551 	u32 eax;
552 	u32 ebx;
553 	u32 ecx;
554 	u32 edx;
555 };
556 
557 int snp_cpuid(struct ghcb *ghcb, struct es_em_ctxt *ctxt, struct cpuid_leaf *leaf);
558 
559 void __noreturn sev_es_terminate(unsigned int set, unsigned int reason);
560 enum es_result sev_es_ghcb_hv_call(struct ghcb *ghcb,
561 				   struct es_em_ctxt *ctxt,
562 				   u64 exit_code, u64 exit_info_1,
563 				   u64 exit_info_2);
564 
565 extern struct ghcb *boot_ghcb;
566 
567 #else	/* !CONFIG_AMD_MEM_ENCRYPT */
568 
569 #define snp_vmpl 0
sev_es_ist_enter(struct pt_regs * regs)570 static inline void sev_es_ist_enter(struct pt_regs *regs) { }
sev_es_ist_exit(void)571 static inline void sev_es_ist_exit(void) { }
sev_es_setup_ap_jump_table(struct real_mode_header * rmh)572 static inline int sev_es_setup_ap_jump_table(struct real_mode_header *rmh) { return 0; }
sev_es_nmi_complete(void)573 static inline void sev_es_nmi_complete(void) { }
sev_es_efi_map_ghcbs(pgd_t * pgd)574 static inline int sev_es_efi_map_ghcbs(pgd_t *pgd) { return 0; }
sev_enable(struct boot_params * bp)575 static inline void sev_enable(struct boot_params *bp) { }
pvalidate(unsigned long vaddr,bool rmp_psize,bool validate)576 static inline int pvalidate(unsigned long vaddr, bool rmp_psize, bool validate) { return 0; }
rmpadjust(unsigned long vaddr,bool rmp_psize,unsigned long attrs)577 static inline int rmpadjust(unsigned long vaddr, bool rmp_psize, unsigned long attrs) { return 0; }
setup_ghcb(void)578 static inline void setup_ghcb(void) { }
579 static inline void __init
early_snp_set_memory_private(unsigned long vaddr,unsigned long paddr,unsigned long npages)580 early_snp_set_memory_private(unsigned long vaddr, unsigned long paddr, unsigned long npages) { }
581 static inline void __init
early_snp_set_memory_shared(unsigned long vaddr,unsigned long paddr,unsigned long npages)582 early_snp_set_memory_shared(unsigned long vaddr, unsigned long paddr, unsigned long npages) { }
snp_set_memory_shared(unsigned long vaddr,unsigned long npages)583 static inline void snp_set_memory_shared(unsigned long vaddr, unsigned long npages) { }
snp_set_memory_private(unsigned long vaddr,unsigned long npages)584 static inline void snp_set_memory_private(unsigned long vaddr, unsigned long npages) { }
snp_set_wakeup_secondary_cpu(void)585 static inline void snp_set_wakeup_secondary_cpu(void) { }
snp_init(struct boot_params * bp)586 static inline bool snp_init(struct boot_params *bp) { return false; }
snp_abort(void)587 static inline void snp_abort(void) { }
snp_dmi_setup(void)588 static inline void snp_dmi_setup(void) { }
snp_issue_svsm_attest_req(u64 call_id,struct svsm_call * call,struct svsm_attest_call * input)589 static inline int snp_issue_svsm_attest_req(u64 call_id, struct svsm_call *call, struct svsm_attest_call *input)
590 {
591 	return -ENOTTY;
592 }
snp_accept_memory(phys_addr_t start,phys_addr_t end)593 static inline void snp_accept_memory(phys_addr_t start, phys_addr_t end) { }
snp_get_unsupported_features(u64 status)594 static inline u64 snp_get_unsupported_features(u64 status) { return 0; }
sev_get_status(void)595 static inline u64 sev_get_status(void) { return 0; }
sev_show_status(void)596 static inline void sev_show_status(void) { }
snp_update_svsm_ca(void)597 static inline void snp_update_svsm_ca(void) { }
prepare_pte_enc(struct pte_enc_desc * d)598 static inline int prepare_pte_enc(struct pte_enc_desc *d) { return 0; }
set_pte_enc_mask(pte_t * kpte,unsigned long pfn,pgprot_t new_prot)599 static inline void set_pte_enc_mask(pte_t *kpte, unsigned long pfn, pgprot_t new_prot) { }
snp_kexec_finish(void)600 static inline void snp_kexec_finish(void) { }
snp_kexec_begin(void)601 static inline void snp_kexec_begin(void) { }
snp_msg_init(struct snp_msg_desc * mdesc,int vmpck_id)602 static inline int snp_msg_init(struct snp_msg_desc *mdesc, int vmpck_id) { return -1; }
snp_msg_alloc(void)603 static inline struct snp_msg_desc *snp_msg_alloc(void) { return NULL; }
snp_msg_free(struct snp_msg_desc * mdesc)604 static inline void snp_msg_free(struct snp_msg_desc *mdesc) { }
snp_send_guest_request(struct snp_msg_desc * mdesc,struct snp_guest_req * req,struct snp_guest_request_ioctl * rio)605 static inline int snp_send_guest_request(struct snp_msg_desc *mdesc, struct snp_guest_req *req,
606 					 struct snp_guest_request_ioctl *rio) { return -ENODEV; }
snp_svsm_vtpm_send_command(u8 * buffer)607 static inline int snp_svsm_vtpm_send_command(u8 *buffer) { return -ENODEV; }
snp_secure_tsc_prepare(void)608 static inline void __init snp_secure_tsc_prepare(void) { }
snp_secure_tsc_init(void)609 static inline void __init snp_secure_tsc_init(void) { }
610 
611 #endif	/* CONFIG_AMD_MEM_ENCRYPT */
612 
613 #ifdef CONFIG_KVM_AMD_SEV
614 bool snp_probe_rmptable_info(void);
615 int snp_rmptable_init(void);
616 int snp_lookup_rmpentry(u64 pfn, bool *assigned, int *level);
617 void snp_dump_hva_rmpentry(unsigned long address);
618 int psmash(u64 pfn);
619 int rmp_make_private(u64 pfn, u64 gpa, enum pg_level level, u32 asid, bool immutable);
620 int rmp_make_shared(u64 pfn, enum pg_level level);
621 void snp_leak_pages(u64 pfn, unsigned int npages);
622 void kdump_sev_callback(void);
623 void snp_fixup_e820_tables(void);
624 #else
snp_probe_rmptable_info(void)625 static inline bool snp_probe_rmptable_info(void) { return false; }
snp_rmptable_init(void)626 static inline int snp_rmptable_init(void) { return -ENOSYS; }
snp_lookup_rmpentry(u64 pfn,bool * assigned,int * level)627 static inline int snp_lookup_rmpentry(u64 pfn, bool *assigned, int *level) { return -ENODEV; }
snp_dump_hva_rmpentry(unsigned long address)628 static inline void snp_dump_hva_rmpentry(unsigned long address) {}
psmash(u64 pfn)629 static inline int psmash(u64 pfn) { return -ENODEV; }
rmp_make_private(u64 pfn,u64 gpa,enum pg_level level,u32 asid,bool immutable)630 static inline int rmp_make_private(u64 pfn, u64 gpa, enum pg_level level, u32 asid,
631 				   bool immutable)
632 {
633 	return -ENODEV;
634 }
rmp_make_shared(u64 pfn,enum pg_level level)635 static inline int rmp_make_shared(u64 pfn, enum pg_level level) { return -ENODEV; }
snp_leak_pages(u64 pfn,unsigned int npages)636 static inline void snp_leak_pages(u64 pfn, unsigned int npages) {}
kdump_sev_callback(void)637 static inline void kdump_sev_callback(void) { }
snp_fixup_e820_tables(void)638 static inline void snp_fixup_e820_tables(void) {}
639 #endif
640 
641 #endif
642