2 * AMD Memory Encryption Support
4 * Copyright (C) 2016 Advanced Micro Devices, Inc.
6 * Author: Tom Lendacky <thomas.lendacky@amd.com>
8 * This program is free software; you can redistribute it and/or modify
9 * it under the terms of the GNU General Public License version 2 as
10 * published by the Free Software Foundation.
13 #include <linux/linkage.h>
14 #include <asm/pgtable.h>
16 #include <asm/processor-flags.h>
17 #include <asm/msr-index.h>
21 ENTRY(sme_encrypt_execute)
25 * RDI - virtual address for the encrypted mapping
26 * RSI - virtual address for the decrypted mapping
27 * RDX - length to encrypt
28 * RCX - virtual address of the encryption workarea, including:
29 * - stack page (PAGE_SIZE)
30 * - encryption routine page (PAGE_SIZE)
31 * - intermediate copy buffer (PMD_PAGE_SIZE)
32 * R8 - physcial address of the pagetables to use for encryption
36 movq %rsp, %rbp /* RBP now has original stack pointer */
38 /* Set up a one page stack in the non-encrypted memory area */
39 movq %rcx, %rax /* Workarea stack page */
40 leaq PAGE_SIZE(%rax), %rsp /* Set new stack pointer */
41 addq $PAGE_SIZE, %rax /* Workarea encryption routine */
44 movq %rdi, %r10 /* Encrypted area */
45 movq %rsi, %r11 /* Decrypted area */
46 movq %rdx, %r12 /* Area length */
48 /* Copy encryption routine into the workarea */
49 movq %rax, %rdi /* Workarea encryption routine */
50 leaq __enc_copy(%rip), %rsi /* Encryption routine */
51 movq $(.L__enc_copy_end - __enc_copy), %rcx /* Encryption routine length */
54 /* Setup registers for call */
55 movq %r10, %rdi /* Encrypted area */
56 movq %r11, %rsi /* Decrypted area */
57 movq %r8, %rdx /* Pagetables used for encryption */
58 movq %r12, %rcx /* Area length */
59 movq %rax, %r8 /* Workarea encryption routine */
60 addq $PAGE_SIZE, %r8 /* Workarea intermediate copy buffer */
62 call *%rax /* Call the encryption routine */
66 movq %rbp, %rsp /* Restore original stack pointer */
70 ENDPROC(sme_encrypt_execute)
74 * Routine used to encrypt memory in place.
75 * This routine must be run outside of the kernel proper since
76 * the kernel will be encrypted during the process. So this
77 * routine is defined here and then copied to an area outside
78 * of the kernel where it will remain and run decrypted
81 * On entry the registers must be:
82 * RDI - virtual address for the encrypted mapping
83 * RSI - virtual address for the decrypted mapping
84 * RDX - address of the pagetables to use for encryption
85 * RCX - length of area
86 * R8 - intermediate copy buffer
88 * RAX - points to this routine
90 * The area will be encrypted by copying from the non-encrypted
91 * memory space to an intermediate buffer and then copying from the
92 * intermediate buffer back to the encrypted memory space. The physical
93 * addresses of the two mappings are the same which results in the area
94 * being encrypted "in place".
96 /* Enable the new page tables */
99 /* Flush any global TLBs */
101 andq $~X86_CR4_PGE, %rdx
103 orq $X86_CR4_PGE, %rdx
109 movq %rcx, %r9 /* Save area length */
110 movq %rdi, %r10 /* Save encrypted area address */
111 movq %rsi, %r11 /* Save decrypted area address */
113 /* Set the PAT register PA5 entry to write-protect */
114 movl $MSR_IA32_CR_PAT, %ecx
116 mov %rdx, %r15 /* Save original PAT value */
117 andl $0xffff00ff, %edx /* Clear PA5 */
118 orl $0x00000500, %edx /* Set PA5 to WP */
121 wbinvd /* Invalidate any cache entries */
123 /* Copy/encrypt up to 2MB at a time */
124 movq $PMD_PAGE_SIZE, %r12
131 movq %r11, %rsi /* Source - decrypted area */
132 movq %r8, %rdi /* Dest - intermediate copy buffer */
136 movq %r8, %rsi /* Source - intermediate copy buffer */
137 movq %r10, %rdi /* Dest - encrypted area */
143 subq %r12, %r9 /* Kernel length decrement */
144 jnz 1b /* Kernel length not zero? */
146 /* Restore PAT register */
147 movl $MSR_IA32_CR_PAT, %ecx
149 mov %r15, %rdx /* Restore original PAT value */