forked from Minki/linux
x86/sev: Check SEV-SNP features support
Version 2 of the GHCB specification added the advertisement of features that are supported by the hypervisor. If the hypervisor supports SEV-SNP then it must set the SEV-SNP features bit to indicate that the base functionality is supported. Check that feature bit while establishing the GHCB; if failed, terminate the guest. Version 2 of the GHCB specification adds several new Non-Automatic Exits (NAEs), most of them are optional except the hypervisor feature. Now that the hypervisor feature NAE is implemented, bump the GHCB maximum supported protocol version. While at it, move the GHCB protocol negotiation check from the #VC exception handler to sev_enable() so that all feature detection happens before the first #VC exception. While at it, document why the GHCB page cannot be setup from load_stage2_idt(). [ bp: Massage commit message. ] Signed-off-by: Brijesh Singh <brijesh.singh@amd.com> Signed-off-by: Borislav Petkov <bp@suse.de> Link: https://lore.kernel.org/r/20220307213356.2797205-13-brijesh.singh@amd.com
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@ -39,7 +39,23 @@ void load_stage1_idt(void)
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load_boot_idt(&boot_idt_desc);
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}
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/* Setup IDT after kernel jumping to .Lrelocated */
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/*
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* Setup IDT after kernel jumping to .Lrelocated.
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*
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* initialize_identity_maps() needs a #PF handler to be setup
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* in order to be able to fault-in identity mapping ranges; see
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* do_boot_page_fault().
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*
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* This #PF handler setup needs to happen in load_stage2_idt() where the
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* IDT is loaded and there the #VC IDT entry gets setup too.
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*
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* In order to be able to handle #VCs, one needs a GHCB which
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* gets setup with an already set up pagetable, which is done in
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* initialize_identity_maps(). And there's the catch 22: the boot #VC
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* handler do_boot_stage2_vc() needs to call early_setup_ghcb() itself
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* (and, especially set_page_decrypted()) because the SEV-ES setup code
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* cannot initialize a GHCB as there's no #PF handler yet...
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*/
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void load_stage2_idt(void)
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{
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boot_idt_desc.address = (unsigned long)boot_idt;
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@ -116,11 +116,8 @@ static enum es_result vc_read_mem(struct es_em_ctxt *ctxt,
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/* Include code for early handlers */
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#include "../../kernel/sev-shared.c"
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static bool early_setup_sev_es(void)
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static bool early_setup_ghcb(void)
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{
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if (!sev_es_negotiate_protocol())
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sev_es_terminate(SEV_TERM_SET_GEN, GHCB_SEV_ES_PROT_UNSUPPORTED);
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if (set_page_decrypted((unsigned long)&boot_ghcb_page))
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return false;
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@ -171,7 +168,7 @@ void do_boot_stage2_vc(struct pt_regs *regs, unsigned long exit_code)
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struct es_em_ctxt ctxt;
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enum es_result result;
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if (!boot_ghcb && !early_setup_sev_es())
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if (!boot_ghcb && !early_setup_ghcb())
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sev_es_terminate(SEV_TERM_SET_GEN, GHCB_SEV_ES_GEN_REQ);
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vc_ghcb_invalidate(boot_ghcb);
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@ -235,5 +232,18 @@ void sev_enable(struct boot_params *bp)
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if (!(sev_status & MSR_AMD64_SEV_ENABLED))
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return;
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/* Negotiate the GHCB protocol version. */
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if (sev_status & MSR_AMD64_SEV_ES_ENABLED) {
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if (!sev_es_negotiate_protocol())
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sev_es_terminate(SEV_TERM_SET_GEN, GHCB_SEV_ES_PROT_UNSUPPORTED);
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}
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/*
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* SNP is supported in v2 of the GHCB spec which mandates support for HV
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* features.
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*/
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if (sev_status & MSR_AMD64_SEV_SNP_ENABLED && !(get_hv_features() & GHCB_HV_FT_SNP))
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sev_es_terminate(SEV_TERM_SET_GEN, GHCB_SNP_UNSUPPORTED);
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sme_me_mask = BIT_ULL(ebx & 0x3f);
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}
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@ -60,6 +60,11 @@
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/* GHCB Hypervisor Feature Request/Response */
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#define GHCB_MSR_HV_FT_REQ 0x080
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#define GHCB_MSR_HV_FT_RESP 0x081
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#define GHCB_MSR_HV_FT_RESP_VAL(v) \
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/* GHCBData[63:12] */ \
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(((u64)(v) & GENMASK_ULL(63, 12)) >> 12)
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#define GHCB_HV_FT_SNP BIT_ULL(0)
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#define GHCB_MSR_TERM_REQ 0x100
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#define GHCB_MSR_TERM_REASON_SET_POS 12
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@ -77,6 +82,7 @@
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#define SEV_TERM_SET_GEN 0
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#define GHCB_SEV_ES_GEN_REQ 0
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#define GHCB_SEV_ES_PROT_UNSUPPORTED 1
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#define GHCB_SNP_UNSUPPORTED 2
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/* Linux-specific reason codes (used with reason set 1) */
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#define SEV_TERM_SET_LINUX 1
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@ -13,7 +13,7 @@
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#include <asm/sev-common.h>
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#define GHCB_PROTOCOL_MIN 1ULL
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#define GHCB_PROTOCOL_MAX 1ULL
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#define GHCB_PROTOCOL_MAX 2ULL
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#define GHCB_DEFAULT_USAGE 0ULL
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#define VMGEXIT() { asm volatile("rep; vmmcall\n\r"); }
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@ -108,6 +108,7 @@
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#define SVM_VMGEXIT_AP_JUMP_TABLE 0x80000005
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#define SVM_VMGEXIT_SET_AP_JUMP_TABLE 0
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#define SVM_VMGEXIT_GET_AP_JUMP_TABLE 1
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#define SVM_VMGEXIT_HV_FEATURES 0x8000fffd
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#define SVM_VMGEXIT_UNSUPPORTED_EVENT 0x8000ffff
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/* Exit code reserved for hypervisor/software use */
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@ -218,6 +219,7 @@
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{ SVM_VMGEXIT_NMI_COMPLETE, "vmgexit_nmi_complete" }, \
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{ SVM_VMGEXIT_AP_HLT_LOOP, "vmgexit_ap_hlt_loop" }, \
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{ SVM_VMGEXIT_AP_JUMP_TABLE, "vmgexit_ap_jump_table" }, \
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{ SVM_VMGEXIT_HV_FEATURES, "vmgexit_hypervisor_feature" }, \
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{ SVM_EXIT_ERR, "invalid_guest_state" }
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@ -48,6 +48,26 @@ static void __noreturn sev_es_terminate(unsigned int set, unsigned int reason)
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asm volatile("hlt\n" : : : "memory");
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}
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/*
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* The hypervisor features are available from GHCB version 2 onward.
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*/
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static u64 get_hv_features(void)
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{
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u64 val;
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if (ghcb_version < 2)
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return 0;
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sev_es_wr_ghcb_msr(GHCB_MSR_HV_FT_REQ);
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VMGEXIT();
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val = sev_es_rd_ghcb_msr();
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if (GHCB_RESP_CODE(val) != GHCB_MSR_HV_FT_RESP)
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return 0;
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return GHCB_MSR_HV_FT_RESP_VAL(val);
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}
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static bool sev_es_negotiate_protocol(void)
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{
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u64 val;
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@ -43,6 +43,9 @@ static struct ghcb boot_ghcb_page __bss_decrypted __aligned(PAGE_SIZE);
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*/
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static struct ghcb __initdata *boot_ghcb;
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/* Bitmap of SEV features supported by the hypervisor */
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static u64 sev_hv_features __ro_after_init;
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/* #VC handler runtime per-CPU data */
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struct sev_es_runtime_data {
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struct ghcb ghcb_page;
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@ -766,6 +769,17 @@ void __init sev_es_init_vc_handling(void)
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if (!sev_es_check_cpu_features())
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panic("SEV-ES CPU Features missing");
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/*
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* SNP is supported in v2 of the GHCB spec which mandates support for HV
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* features.
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*/
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if (cc_platform_has(CC_ATTR_GUEST_SEV_SNP)) {
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sev_hv_features = get_hv_features();
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if (!(sev_hv_features & GHCB_HV_FT_SNP))
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sev_es_terminate(SEV_TERM_SET_GEN, GHCB_SNP_UNSUPPORTED);
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}
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/* Enable SEV-ES special handling */
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static_branch_enable(&sev_es_enable_key);
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