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x86/boot/compressed/64: Setup a GHCB-based VC Exception handler
Install an exception handler for #VC exception that uses a GHCB. Also add the infrastructure for handling different exit-codes by decoding the instruction that caused the exception and error handling. Signed-off-by: Joerg Roedel <jroedel@suse.de> Signed-off-by: Borislav Petkov <bp@suse.de> Link: https://lkml.kernel.org/r/20200907131613.12703-24-joro@8bytes.org
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@ -1521,6 +1521,7 @@ config AMD_MEM_ENCRYPT
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select DYNAMIC_PHYSICAL_MASK
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select ARCH_USE_MEMREMAP_PROT
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select ARCH_HAS_FORCE_DMA_UNENCRYPTED
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select INSTRUCTION_DECODER
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help
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Say yes to enable support for the encryption of system memory.
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This requires an AMD processor that supports Secure Memory
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@ -44,6 +44,11 @@ KBUILD_CFLAGS += $(call cc-option,-fmacro-prefix-map=$(srctree)/=)
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KBUILD_CFLAGS += -fno-asynchronous-unwind-tables
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KBUILD_CFLAGS += -D__DISABLE_EXPORTS
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# sev-es.c indirectly inludes inat-table.h which is generated during
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# compilation and stored in $(objtree). Add the directory to the includes so
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# that the compiler finds it even with out-of-tree builds (make O=/some/path).
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CFLAGS_sev-es.o += -I$(objtree)/arch/x86/lib/
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KBUILD_AFLAGS := $(KBUILD_CFLAGS) -D__ASSEMBLY__
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GCOV_PROFILE := n
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UBSAN_SANITIZE :=n
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@ -46,5 +46,9 @@ void load_stage2_idt(void)
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set_idt_entry(X86_TRAP_PF, boot_page_fault);
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#ifdef CONFIG_AMD_MEM_ENCRYPT
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set_idt_entry(X86_TRAP_VC, boot_stage2_vc);
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#endif
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load_boot_idt(&boot_idt_desc);
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}
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@ -72,5 +72,6 @@ SYM_FUNC_END(\name)
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EXCEPTION_HANDLER boot_page_fault do_boot_page_fault error_code=1
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#ifdef CONFIG_AMD_MEM_ENCRYPT
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EXCEPTION_HANDLER boot_stage1_vc do_vc_no_ghcb error_code=1
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EXCEPTION_HANDLER boot_stage1_vc do_vc_no_ghcb error_code=1
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EXCEPTION_HANDLER boot_stage2_vc do_boot_stage2_vc error_code=1
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#endif
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@ -442,6 +442,13 @@ asmlinkage __visible void *extract_kernel(void *rmode, memptr heap,
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parse_elf(output);
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handle_relocations(output, output_len, virt_addr);
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debug_putstr("done.\nBooting the kernel.\n");
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/*
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* Flush GHCB from cache and map it encrypted again when running as
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* SEV-ES guest.
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*/
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sev_es_shutdown_ghcb();
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return output;
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}
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@ -115,6 +115,12 @@ static inline void console_init(void)
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void set_sev_encryption_mask(void);
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#ifdef CONFIG_AMD_MEM_ENCRYPT
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void sev_es_shutdown_ghcb(void);
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#else
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static inline void sev_es_shutdown_ghcb(void) { }
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#endif
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/* acpi.c */
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#ifdef CONFIG_ACPI
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acpi_physical_address get_rsdp_addr(void);
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@ -144,5 +150,6 @@ extern struct desc_ptr boot_idt_desc;
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/* IDT Entry Points */
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void boot_page_fault(void);
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void boot_stage1_vc(void);
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void boot_stage2_vc(void);
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#endif /* BOOT_COMPRESSED_MISC_H */
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@ -13,10 +13,17 @@
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#include "misc.h"
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#include <asm/sev-es.h>
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#include <asm/trapnr.h>
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#include <asm/trap_pf.h>
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#include <asm/msr-index.h>
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#include <asm/ptrace.h>
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#include <asm/svm.h>
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#include "error.h"
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struct ghcb boot_ghcb_page __aligned(PAGE_SIZE);
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struct ghcb *boot_ghcb;
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static inline u64 sev_es_rd_ghcb_msr(void)
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{
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unsigned long low, high;
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@ -38,8 +45,112 @@ static inline void sev_es_wr_ghcb_msr(u64 val)
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"a"(low), "d" (high) : "memory");
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}
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static enum es_result vc_decode_insn(struct es_em_ctxt *ctxt)
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{
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char buffer[MAX_INSN_SIZE];
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enum es_result ret;
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memcpy(buffer, (unsigned char *)ctxt->regs->ip, MAX_INSN_SIZE);
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insn_init(&ctxt->insn, buffer, MAX_INSN_SIZE, 1);
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insn_get_length(&ctxt->insn);
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ret = ctxt->insn.immediate.got ? ES_OK : ES_DECODE_FAILED;
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return ret;
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}
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static enum es_result vc_write_mem(struct es_em_ctxt *ctxt,
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void *dst, char *buf, size_t size)
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{
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memcpy(dst, buf, size);
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return ES_OK;
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}
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static enum es_result vc_read_mem(struct es_em_ctxt *ctxt,
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void *src, char *buf, size_t size)
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{
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memcpy(buf, src, size);
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return ES_OK;
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}
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#undef __init
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#undef __pa
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#define __init
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#define __pa(x) ((unsigned long)(x))
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#define __BOOT_COMPRESSED
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/* Basic instruction decoding support needed */
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#include "../../lib/inat.c"
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#include "../../lib/insn.c"
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/* Include code for early handlers */
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#include "../../kernel/sev-es-shared.c"
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static bool early_setup_sev_es(void)
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{
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if (!sev_es_negotiate_protocol())
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sev_es_terminate(GHCB_SEV_ES_REASON_PROTOCOL_UNSUPPORTED);
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if (set_page_decrypted((unsigned long)&boot_ghcb_page))
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return false;
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/* Page is now mapped decrypted, clear it */
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memset(&boot_ghcb_page, 0, sizeof(boot_ghcb_page));
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boot_ghcb = &boot_ghcb_page;
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/* Initialize lookup tables for the instruction decoder */
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inat_init_tables();
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return true;
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}
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void sev_es_shutdown_ghcb(void)
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{
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if (!boot_ghcb)
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return;
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/*
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* GHCB Page must be flushed from the cache and mapped encrypted again.
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* Otherwise the running kernel will see strange cache effects when
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* trying to use that page.
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*/
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if (set_page_encrypted((unsigned long)&boot_ghcb_page))
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error("Can't map GHCB page encrypted");
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}
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void do_boot_stage2_vc(struct pt_regs *regs, unsigned long exit_code)
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{
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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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sev_es_terminate(GHCB_SEV_ES_REASON_GENERAL_REQUEST);
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vc_ghcb_invalidate(boot_ghcb);
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result = vc_init_em_ctxt(&ctxt, regs, exit_code);
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if (result != ES_OK)
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goto finish;
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switch (exit_code) {
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default:
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result = ES_UNSUPPORTED;
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break;
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}
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finish:
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if (result == ES_OK) {
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vc_finish_insn(&ctxt);
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} else if (result != ES_RETRY) {
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/*
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* For now, just halt the machine. That makes debugging easier,
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* later we just call sev_es_terminate() here.
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*/
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while (true)
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asm volatile("hlt\n");
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}
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}
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@ -9,7 +9,14 @@
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#define __ASM_ENCRYPTED_STATE_H
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#include <linux/types.h>
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#include <asm/insn.h>
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#define GHCB_SEV_INFO 0x001UL
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#define GHCB_SEV_INFO_REQ 0x002UL
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#define GHCB_INFO(v) ((v) & 0xfffUL)
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#define GHCB_PROTO_MAX(v) (((v) >> 48) & 0xffffUL)
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#define GHCB_PROTO_MIN(v) (((v) >> 32) & 0xffffUL)
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#define GHCB_PROTO_OUR 0x0001UL
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#define GHCB_SEV_CPUID_REQ 0x004UL
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#define GHCB_CPUID_REQ_EAX 0
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#define GHCB_CPUID_REQ_EBX 1
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@ -19,12 +26,44 @@
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(((unsigned long)reg & 3) << 30) | \
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(((unsigned long)fn) << 32))
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#define GHCB_PROTOCOL_MAX 0x0001UL
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#define GHCB_DEFAULT_USAGE 0x0000UL
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#define GHCB_SEV_CPUID_RESP 0x005UL
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#define GHCB_SEV_TERMINATE 0x100UL
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#define GHCB_SEV_TERMINATE_REASON(reason_set, reason_val) \
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(((((u64)reason_set) & 0x7) << 12) | \
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((((u64)reason_val) & 0xff) << 16))
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#define GHCB_SEV_ES_REASON_GENERAL_REQUEST 0
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#define GHCB_SEV_ES_REASON_PROTOCOL_UNSUPPORTED 1
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#define GHCB_SEV_GHCB_RESP_CODE(v) ((v) & 0xfff)
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#define VMGEXIT() { asm volatile("rep; vmmcall\n\r"); }
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enum es_result {
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ES_OK, /* All good */
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ES_UNSUPPORTED, /* Requested operation not supported */
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ES_VMM_ERROR, /* Unexpected state from the VMM */
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ES_DECODE_FAILED, /* Instruction decoding failed */
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ES_EXCEPTION, /* Instruction caused exception */
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ES_RETRY, /* Retry instruction emulation */
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};
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struct es_fault_info {
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unsigned long vector;
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unsigned long error_code;
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unsigned long cr2;
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};
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struct pt_regs;
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/* ES instruction emulation context */
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struct es_em_ctxt {
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struct pt_regs *regs;
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struct insn insn;
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struct es_fault_info fi;
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};
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void do_vc_no_ghcb(struct pt_regs *regs, unsigned long exit_code);
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static inline u64 lower_bits(u64 val, unsigned int bits)
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#define SVM_EXIT_WRITE_DR6 0x036
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#define SVM_EXIT_WRITE_DR7 0x037
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#define SVM_EXIT_EXCP_BASE 0x040
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#define SVM_EXIT_LAST_EXCP 0x05f
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#define SVM_EXIT_INTR 0x060
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#define SVM_EXIT_NMI 0x061
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#define SVM_EXIT_SMI 0x062
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* and is included directly into both code-bases.
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*/
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static void sev_es_terminate(unsigned int reason)
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{
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u64 val = GHCB_SEV_TERMINATE;
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/*
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* Tell the hypervisor what went wrong - only reason-set 0 is
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* currently supported.
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*/
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val |= GHCB_SEV_TERMINATE_REASON(0, reason);
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/* Request Guest Termination from Hypvervisor */
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sev_es_wr_ghcb_msr(val);
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VMGEXIT();
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while (true)
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asm volatile("hlt\n" : : : "memory");
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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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/* Do the GHCB protocol version negotiation */
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sev_es_wr_ghcb_msr(GHCB_SEV_INFO_REQ);
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VMGEXIT();
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val = sev_es_rd_ghcb_msr();
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if (GHCB_INFO(val) != GHCB_SEV_INFO)
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return false;
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if (GHCB_PROTO_MAX(val) < GHCB_PROTO_OUR ||
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GHCB_PROTO_MIN(val) > GHCB_PROTO_OUR)
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return false;
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return true;
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}
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static void vc_ghcb_invalidate(struct ghcb *ghcb)
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{
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memset(ghcb->save.valid_bitmap, 0, sizeof(ghcb->save.valid_bitmap));
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}
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static bool vc_decoding_needed(unsigned long exit_code)
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{
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/* Exceptions don't require to decode the instruction */
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return !(exit_code >= SVM_EXIT_EXCP_BASE &&
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exit_code <= SVM_EXIT_LAST_EXCP);
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}
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static enum es_result vc_init_em_ctxt(struct es_em_ctxt *ctxt,
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struct pt_regs *regs,
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unsigned long exit_code)
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{
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enum es_result ret = ES_OK;
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memset(ctxt, 0, sizeof(*ctxt));
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ctxt->regs = regs;
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if (vc_decoding_needed(exit_code))
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ret = vc_decode_insn(ctxt);
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return ret;
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}
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static void vc_finish_insn(struct es_em_ctxt *ctxt)
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{
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ctxt->regs->ip += ctxt->insn.length;
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}
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static enum es_result sev_es_ghcb_hv_call(struct ghcb *ghcb,
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struct es_em_ctxt *ctxt,
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u64 exit_code, u64 exit_info_1,
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u64 exit_info_2)
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{
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enum es_result ret;
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/* Fill in protocol and format specifiers */
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ghcb->protocol_version = GHCB_PROTOCOL_MAX;
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ghcb->ghcb_usage = GHCB_DEFAULT_USAGE;
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ghcb_set_sw_exit_code(ghcb, exit_code);
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ghcb_set_sw_exit_info_1(ghcb, exit_info_1);
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ghcb_set_sw_exit_info_2(ghcb, exit_info_2);
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sev_es_wr_ghcb_msr(__pa(ghcb));
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VMGEXIT();
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if ((ghcb->save.sw_exit_info_1 & 0xffffffff) == 1) {
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u64 info = ghcb->save.sw_exit_info_2;
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unsigned long v;
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info = ghcb->save.sw_exit_info_2;
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v = info & SVM_EVTINJ_VEC_MASK;
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/* Check if exception information from hypervisor is sane. */
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if ((info & SVM_EVTINJ_VALID) &&
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((v == X86_TRAP_GP) || (v == X86_TRAP_UD)) &&
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((info & SVM_EVTINJ_TYPE_MASK) == SVM_EVTINJ_TYPE_EXEPT)) {
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ctxt->fi.vector = v;
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if (info & SVM_EVTINJ_VALID_ERR)
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ctxt->fi.error_code = info >> 32;
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ret = ES_EXCEPTION;
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} else {
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ret = ES_VMM_ERROR;
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}
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} else {
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ret = ES_OK;
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}
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return ret;
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}
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/*
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* Boot VC Handler - This is the first VC handler during boot, there is no GHCB
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* page yet, so it only supports the MSR based communication with the
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@ -64,3 +176,45 @@ fail:
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while (true)
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asm volatile("hlt\n");
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}
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static enum es_result vc_insn_string_read(struct es_em_ctxt *ctxt,
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void *src, char *buf,
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unsigned int data_size,
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unsigned int count,
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bool backwards)
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{
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int i, b = backwards ? -1 : 1;
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enum es_result ret = ES_OK;
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for (i = 0; i < count; i++) {
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void *s = src + (i * data_size * b);
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char *d = buf + (i * data_size);
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ret = vc_read_mem(ctxt, s, d, data_size);
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if (ret != ES_OK)
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break;
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}
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return ret;
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}
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static enum es_result vc_insn_string_write(struct es_em_ctxt *ctxt,
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void *dst, char *buf,
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unsigned int data_size,
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unsigned int count,
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bool backwards)
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{
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int i, s = backwards ? -1 : 1;
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enum es_result ret = ES_OK;
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for (i = 0; i < count; i++) {
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void *d = dst + (i * data_size * s);
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char *b = buf + (i * data_size);
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ret = vc_write_mem(ctxt, d, b, data_size);
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if (ret != ES_OK)
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break;
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}
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return ret;
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}
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