641 lines
16 KiB
C
641 lines
16 KiB
C
/* SPDX-License-Identifier: GPL-2.0 */
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/*
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* Ultravisor Interfaces
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*
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* Copyright IBM Corp. 2019, 2024
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*
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* Author(s):
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* Vasily Gorbik <gor@linux.ibm.com>
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* Janosch Frank <frankja@linux.ibm.com>
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*/
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#ifndef _ASM_S390_UV_H
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#define _ASM_S390_UV_H
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#include <linux/types.h>
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#include <linux/errno.h>
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#include <linux/bug.h>
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#include <linux/sched.h>
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#include <asm/page.h>
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#include <asm/gmap.h>
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#include <asm/asm.h>
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#define UVC_CC_OK 0
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#define UVC_CC_ERROR 1
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#define UVC_CC_BUSY 2
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#define UVC_CC_PARTIAL 3
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#define UVC_RC_EXECUTED 0x0001
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#define UVC_RC_INV_CMD 0x0002
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#define UVC_RC_INV_STATE 0x0003
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#define UVC_RC_INV_LEN 0x0005
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#define UVC_RC_NO_RESUME 0x0007
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#define UVC_RC_MORE_DATA 0x0100
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#define UVC_RC_NEED_DESTROY 0x8000
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#define UVC_CMD_QUI 0x0001
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#define UVC_CMD_QUERY_KEYS 0x0002
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#define UVC_CMD_INIT_UV 0x000f
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#define UVC_CMD_CREATE_SEC_CONF 0x0100
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#define UVC_CMD_DESTROY_SEC_CONF 0x0101
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#define UVC_CMD_DESTROY_SEC_CONF_FAST 0x0102
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#define UVC_CMD_CREATE_SEC_CPU 0x0120
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#define UVC_CMD_DESTROY_SEC_CPU 0x0121
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#define UVC_CMD_CONV_TO_SEC_STOR 0x0200
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#define UVC_CMD_CONV_FROM_SEC_STOR 0x0201
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#define UVC_CMD_DESTR_SEC_STOR 0x0202
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#define UVC_CMD_SET_SEC_CONF_PARAMS 0x0300
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#define UVC_CMD_UNPACK_IMG 0x0301
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#define UVC_CMD_VERIFY_IMG 0x0302
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#define UVC_CMD_CPU_RESET 0x0310
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#define UVC_CMD_CPU_RESET_INITIAL 0x0311
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#define UVC_CMD_PREPARE_RESET 0x0320
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#define UVC_CMD_CPU_RESET_CLEAR 0x0321
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#define UVC_CMD_CPU_SET_STATE 0x0330
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#define UVC_CMD_SET_UNSHARE_ALL 0x0340
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#define UVC_CMD_PIN_PAGE_SHARED 0x0341
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#define UVC_CMD_UNPIN_PAGE_SHARED 0x0342
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#define UVC_CMD_DUMP_INIT 0x0400
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#define UVC_CMD_DUMP_CONF_STOR_STATE 0x0401
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#define UVC_CMD_DUMP_CPU 0x0402
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#define UVC_CMD_DUMP_COMPLETE 0x0403
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#define UVC_CMD_SET_SHARED_ACCESS 0x1000
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#define UVC_CMD_REMOVE_SHARED_ACCESS 0x1001
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#define UVC_CMD_RETR_ATTEST 0x1020
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#define UVC_CMD_ADD_SECRET 0x1031
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#define UVC_CMD_LIST_SECRETS 0x1033
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#define UVC_CMD_LOCK_SECRETS 0x1034
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#define UVC_CMD_RETR_SECRET 0x1035
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/* Bits in installed uv calls */
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enum uv_cmds_inst {
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BIT_UVC_CMD_QUI = 0,
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BIT_UVC_CMD_INIT_UV = 1,
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BIT_UVC_CMD_CREATE_SEC_CONF = 2,
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BIT_UVC_CMD_DESTROY_SEC_CONF = 3,
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BIT_UVC_CMD_CREATE_SEC_CPU = 4,
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BIT_UVC_CMD_DESTROY_SEC_CPU = 5,
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BIT_UVC_CMD_CONV_TO_SEC_STOR = 6,
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BIT_UVC_CMD_CONV_FROM_SEC_STOR = 7,
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BIT_UVC_CMD_SET_SHARED_ACCESS = 8,
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BIT_UVC_CMD_REMOVE_SHARED_ACCESS = 9,
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BIT_UVC_CMD_SET_SEC_PARMS = 11,
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BIT_UVC_CMD_UNPACK_IMG = 13,
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BIT_UVC_CMD_VERIFY_IMG = 14,
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BIT_UVC_CMD_CPU_RESET = 15,
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BIT_UVC_CMD_CPU_RESET_INITIAL = 16,
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BIT_UVC_CMD_CPU_SET_STATE = 17,
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BIT_UVC_CMD_PREPARE_RESET = 18,
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BIT_UVC_CMD_CPU_PERFORM_CLEAR_RESET = 19,
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BIT_UVC_CMD_UNSHARE_ALL = 20,
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BIT_UVC_CMD_PIN_PAGE_SHARED = 21,
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BIT_UVC_CMD_UNPIN_PAGE_SHARED = 22,
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BIT_UVC_CMD_DESTROY_SEC_CONF_FAST = 23,
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BIT_UVC_CMD_DUMP_INIT = 24,
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BIT_UVC_CMD_DUMP_CONFIG_STOR_STATE = 25,
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BIT_UVC_CMD_DUMP_CPU = 26,
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BIT_UVC_CMD_DUMP_COMPLETE = 27,
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BIT_UVC_CMD_RETR_ATTEST = 28,
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BIT_UVC_CMD_ADD_SECRET = 29,
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BIT_UVC_CMD_LIST_SECRETS = 30,
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BIT_UVC_CMD_LOCK_SECRETS = 31,
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BIT_UVC_CMD_RETR_SECRET = 33,
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BIT_UVC_CMD_QUERY_KEYS = 34,
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};
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enum uv_feat_ind {
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BIT_UV_FEAT_MISC = 0,
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BIT_UV_FEAT_AIV = 1,
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BIT_UV_FEAT_AP = 4,
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BIT_UV_FEAT_AP_INTR = 5,
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};
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struct uv_cb_header {
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u16 len;
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u16 cmd; /* Command Code */
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u16 rc; /* Response Code */
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u16 rrc; /* Return Reason Code */
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} __packed __aligned(8);
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/* Query Ultravisor Information */
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struct uv_cb_qui {
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struct uv_cb_header header; /* 0x0000 */
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u64 reserved08; /* 0x0008 */
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u64 inst_calls_list[4]; /* 0x0010 */
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u64 reserved30[2]; /* 0x0030 */
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u64 uv_base_stor_len; /* 0x0040 */
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u64 reserved48; /* 0x0048 */
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u64 conf_base_phys_stor_len; /* 0x0050 */
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u64 conf_base_virt_stor_len; /* 0x0058 */
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u64 conf_virt_var_stor_len; /* 0x0060 */
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u64 cpu_stor_len; /* 0x0068 */
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u32 reserved70[3]; /* 0x0070 */
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u32 max_num_sec_conf; /* 0x007c */
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u64 max_guest_stor_addr; /* 0x0080 */
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u8 reserved88[0x9e - 0x88]; /* 0x0088 */
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u16 max_guest_cpu_id; /* 0x009e */
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u64 uv_feature_indications; /* 0x00a0 */
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u64 reserveda8; /* 0x00a8 */
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u64 supp_se_hdr_versions; /* 0x00b0 */
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u64 supp_se_hdr_pcf; /* 0x00b8 */
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u64 reservedc0; /* 0x00c0 */
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u64 conf_dump_storage_state_len; /* 0x00c8 */
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u64 conf_dump_finalize_len; /* 0x00d0 */
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u64 reservedd8; /* 0x00d8 */
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u64 supp_att_req_hdr_ver; /* 0x00e0 */
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u64 supp_att_pflags; /* 0x00e8 */
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u64 reservedf0; /* 0x00f0 */
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u64 supp_add_secret_req_ver; /* 0x00f8 */
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u64 supp_add_secret_pcf; /* 0x0100 */
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u64 supp_secret_types; /* 0x0108 */
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u16 max_assoc_secrets; /* 0x0110 */
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u16 max_retr_secrets; /* 0x0112 */
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u8 reserved114[0x120 - 0x114]; /* 0x0114 */
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} __packed __aligned(8);
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struct uv_key_hash {
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u64 dword[4];
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} __packed __aligned(8);
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#define UVC_QUERY_KEYS_IDX_HK 0
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#define UVC_QUERY_KEYS_IDX_BACK_HK 1
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/* Query Ultravisor Keys */
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struct uv_cb_query_keys {
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struct uv_cb_header header; /* 0x0000 */
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u64 reserved08[3]; /* 0x0008 */
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struct uv_key_hash key_hashes[15]; /* 0x0020 */
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} __packed __aligned(8);
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static_assert(sizeof(struct uv_cb_query_keys) == 0x200);
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/* Initialize Ultravisor */
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struct uv_cb_init {
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struct uv_cb_header header;
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u64 reserved08[2];
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u64 stor_origin;
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u64 stor_len;
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u64 reserved28[4];
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} __packed __aligned(8);
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/* Create Guest Configuration */
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struct uv_cb_cgc {
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struct uv_cb_header header;
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u64 reserved08[2];
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u64 guest_handle;
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u64 conf_base_stor_origin;
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u64 conf_virt_stor_origin;
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u8 reserved30[6];
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union {
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struct {
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u16 : 14;
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u16 ap_instr_intr : 1;
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u16 ap_allow_instr : 1;
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};
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u16 raw;
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} flags;
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u64 guest_stor_origin;
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u64 guest_stor_len;
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u64 guest_sca;
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u64 guest_asce;
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u64 reserved58[5];
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} __packed __aligned(8);
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/* Create Secure CPU */
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struct uv_cb_csc {
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struct uv_cb_header header;
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u64 reserved08[2];
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u64 cpu_handle;
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u64 guest_handle;
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u64 stor_origin;
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u8 reserved30[6];
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u16 num;
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u64 state_origin;
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u64 reserved40[4];
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} __packed __aligned(8);
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/* Convert to Secure */
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struct uv_cb_cts {
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struct uv_cb_header header;
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u64 reserved08[2];
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u64 guest_handle;
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u64 gaddr;
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} __packed __aligned(8);
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/* Convert from Secure / Pin Page Shared */
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struct uv_cb_cfs {
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struct uv_cb_header header;
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u64 reserved08[2];
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u64 paddr;
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} __packed __aligned(8);
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/* Set Secure Config Parameter */
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struct uv_cb_ssc {
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struct uv_cb_header header;
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u64 reserved08[2];
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u64 guest_handle;
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u64 sec_header_origin;
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u32 sec_header_len;
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u32 reserved2c;
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u64 reserved30[4];
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} __packed __aligned(8);
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/* Unpack */
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struct uv_cb_unp {
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struct uv_cb_header header;
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u64 reserved08[2];
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u64 guest_handle;
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u64 gaddr;
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u64 tweak[2];
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u64 reserved38[3];
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} __packed __aligned(8);
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#define PV_CPU_STATE_OPR 1
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#define PV_CPU_STATE_STP 2
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#define PV_CPU_STATE_CHKSTP 3
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#define PV_CPU_STATE_OPR_LOAD 5
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struct uv_cb_cpu_set_state {
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struct uv_cb_header header;
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u64 reserved08[2];
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u64 cpu_handle;
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u8 reserved20[7];
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u8 state;
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u64 reserved28[5];
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};
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/*
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* A common UV call struct for calls that take no payload
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* Examples:
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* Destroy cpu/config
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* Verify
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*/
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struct uv_cb_nodata {
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struct uv_cb_header header;
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u64 reserved08[2];
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u64 handle;
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u64 reserved20[4];
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} __packed __aligned(8);
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/* Destroy Configuration Fast */
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struct uv_cb_destroy_fast {
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struct uv_cb_header header;
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u64 reserved08[2];
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u64 handle;
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u64 reserved20[5];
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} __packed __aligned(8);
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/* Set Shared Access */
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struct uv_cb_share {
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struct uv_cb_header header;
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u64 reserved08[3];
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u64 paddr;
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u64 reserved28;
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} __packed __aligned(8);
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/* Retrieve Attestation Measurement */
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struct uv_cb_attest {
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struct uv_cb_header header; /* 0x0000 */
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u64 reserved08[2]; /* 0x0008 */
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u64 arcb_addr; /* 0x0018 */
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u64 cont_token; /* 0x0020 */
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u8 reserved28[6]; /* 0x0028 */
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u16 user_data_len; /* 0x002e */
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u8 user_data[256]; /* 0x0030 */
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u32 reserved130[3]; /* 0x0130 */
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u32 meas_len; /* 0x013c */
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u64 meas_addr; /* 0x0140 */
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u8 config_uid[16]; /* 0x0148 */
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u32 reserved158; /* 0x0158 */
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u32 add_data_len; /* 0x015c */
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u64 add_data_addr; /* 0x0160 */
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u64 reserved168[4]; /* 0x0168 */
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} __packed __aligned(8);
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struct uv_cb_dump_cpu {
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struct uv_cb_header header;
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u64 reserved08[2];
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u64 cpu_handle;
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u64 dump_area_origin;
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u64 reserved28[5];
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} __packed __aligned(8);
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struct uv_cb_dump_stor_state {
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struct uv_cb_header header;
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u64 reserved08[2];
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u64 config_handle;
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u64 dump_area_origin;
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u64 gaddr;
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u64 reserved28[4];
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} __packed __aligned(8);
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struct uv_cb_dump_complete {
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struct uv_cb_header header;
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u64 reserved08[2];
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u64 config_handle;
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u64 dump_area_origin;
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u64 reserved30[5];
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} __packed __aligned(8);
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/*
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* A common UV call struct for pv guests that contains a single address
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* Examples:
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* Add Secret
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*/
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struct uv_cb_guest_addr {
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struct uv_cb_header header;
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u64 reserved08[3];
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u64 addr;
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u64 reserved28[4];
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} __packed __aligned(8);
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#define UVC_RC_RETR_SECR_BUF_SMALL 0x0109
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#define UVC_RC_RETR_SECR_STORE_EMPTY 0x010f
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#define UVC_RC_RETR_SECR_INV_IDX 0x0110
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#define UVC_RC_RETR_SECR_INV_SECRET 0x0111
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struct uv_cb_retr_secr {
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struct uv_cb_header header;
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u64 reserved08[2];
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u16 secret_idx;
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u16 reserved1a;
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u32 buf_size;
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u64 buf_addr;
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u64 reserved28[4];
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} __packed __aligned(8);
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struct uv_cb_list_secrets {
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struct uv_cb_header header;
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u64 reserved08[2];
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u8 reserved18[6];
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u16 start_idx;
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u64 list_addr;
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u64 reserved28[4];
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} __packed __aligned(8);
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enum uv_secret_types {
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UV_SECRET_INVAL = 0x0,
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UV_SECRET_NULL = 0x1,
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UV_SECRET_ASSOCIATION = 0x2,
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UV_SECRET_PLAIN = 0x3,
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UV_SECRET_AES_128 = 0x4,
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UV_SECRET_AES_192 = 0x5,
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UV_SECRET_AES_256 = 0x6,
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UV_SECRET_AES_XTS_128 = 0x7,
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UV_SECRET_AES_XTS_256 = 0x8,
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UV_SECRET_HMAC_SHA_256 = 0x9,
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UV_SECRET_HMAC_SHA_512 = 0xa,
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/* 0x0b - 0x10 reserved */
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UV_SECRET_ECDSA_P256 = 0x11,
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UV_SECRET_ECDSA_P384 = 0x12,
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UV_SECRET_ECDSA_P521 = 0x13,
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UV_SECRET_ECDSA_ED25519 = 0x14,
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UV_SECRET_ECDSA_ED448 = 0x15,
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};
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/**
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* uv_secret_list_item_hdr - UV secret metadata.
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* @index: Index of the secret in the secret list.
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* @type: Type of the secret. See `enum uv_secret_types`.
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* @length: Length of the stored secret.
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*/
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struct uv_secret_list_item_hdr {
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u16 index;
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u16 type;
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u32 length;
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} __packed __aligned(8);
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#define UV_SECRET_ID_LEN 32
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/**
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* uv_secret_list_item - UV secret entry.
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* @hdr: The metadata of this secret.
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* @id: The ID of this secret, not the secret itself.
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*/
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struct uv_secret_list_item {
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struct uv_secret_list_item_hdr hdr;
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u64 reserverd08;
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u8 id[UV_SECRET_ID_LEN];
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} __packed __aligned(8);
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/**
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* uv_secret_list - UV secret-metadata list.
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* @num_secr_stored: Number of secrets stored in this list.
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* @total_num_secrets: Number of secrets stored in the UV for this guest.
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* @next_secret_idx: positive number if there are more secrets available or zero.
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* @secrets: Up to 85 UV-secret metadata entries.
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*/
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struct uv_secret_list {
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u16 num_secr_stored;
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u16 total_num_secrets;
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u16 next_secret_idx;
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u16 reserved_06;
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u64 reserved_08;
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struct uv_secret_list_item secrets[85];
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} __packed __aligned(8);
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static_assert(sizeof(struct uv_secret_list) == PAGE_SIZE);
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static inline int __uv_call(unsigned long r1, unsigned long r2)
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{
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int cc;
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asm volatile(
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" .insn rrf,0xb9a40000,%[r1],%[r2],0,0\n"
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CC_IPM(cc)
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: CC_OUT(cc, cc)
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: [r1] "a" (r1), [r2] "a" (r2)
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: CC_CLOBBER_LIST("memory"));
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return CC_TRANSFORM(cc);
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}
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static inline int uv_call(unsigned long r1, unsigned long r2)
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{
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int cc;
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do {
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cc = __uv_call(r1, r2);
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} while (cc > 1);
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return cc;
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}
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/* Low level uv_call that avoids stalls for long running busy conditions */
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static inline int uv_call_sched(unsigned long r1, unsigned long r2)
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{
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int cc;
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do {
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cc = __uv_call(r1, r2);
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cond_resched();
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} while (cc > 1);
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return cc;
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}
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/*
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* special variant of uv_call that only transports the cpu or guest
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* handle and the command, like destroy or verify.
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*/
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static inline int uv_cmd_nodata(u64 handle, u16 cmd, u16 *rc, u16 *rrc)
|
|
{
|
|
struct uv_cb_nodata uvcb = {
|
|
.header.cmd = cmd,
|
|
.header.len = sizeof(uvcb),
|
|
.handle = handle,
|
|
};
|
|
int cc;
|
|
|
|
WARN(!handle, "No handle provided to Ultravisor call cmd %x\n", cmd);
|
|
cc = uv_call_sched(0, (u64)&uvcb);
|
|
*rc = uvcb.header.rc;
|
|
*rrc = uvcb.header.rrc;
|
|
return cc ? -EINVAL : 0;
|
|
}
|
|
|
|
/**
|
|
* uv_list_secrets() - Do a List Secrets UVC.
|
|
*
|
|
* @buf: Buffer to write list into; size of one page.
|
|
* @start_idx: The smallest index that should be included in the list.
|
|
* For the fist invocation use 0.
|
|
* @rc: Pointer to store the return code or NULL.
|
|
* @rrc: Pointer to store the return reason code or NULL.
|
|
*
|
|
* This function calls the List Secrets UVC. The result is written into `buf`,
|
|
* that needs to be at least one page of writable memory.
|
|
* `buf` consists of:
|
|
* * %struct uv_secret_list_hdr
|
|
* * %struct uv_secret_list_item (multiple)
|
|
*
|
|
* For `start_idx` use _0_ for the first call. If there are more secrets available
|
|
* but could not fit into the page then `rc` is `UVC_RC_MORE_DATA`.
|
|
* In this case use `uv_secret_list_hdr.next_secret_idx` for `start_idx`.
|
|
*
|
|
* Context: might sleep.
|
|
*
|
|
* Return: The UVC condition code.
|
|
*/
|
|
static inline int uv_list_secrets(struct uv_secret_list *buf, u16 start_idx,
|
|
u16 *rc, u16 *rrc)
|
|
{
|
|
struct uv_cb_list_secrets uvcb = {
|
|
.header.len = sizeof(uvcb),
|
|
.header.cmd = UVC_CMD_LIST_SECRETS,
|
|
.start_idx = start_idx,
|
|
.list_addr = (u64)buf,
|
|
};
|
|
int cc = uv_call_sched(0, (u64)&uvcb);
|
|
|
|
if (rc)
|
|
*rc = uvcb.header.rc;
|
|
if (rrc)
|
|
*rrc = uvcb.header.rrc;
|
|
|
|
return cc;
|
|
}
|
|
|
|
struct uv_info {
|
|
unsigned long inst_calls_list[4];
|
|
unsigned long uv_base_stor_len;
|
|
unsigned long guest_base_stor_len;
|
|
unsigned long guest_virt_base_stor_len;
|
|
unsigned long guest_virt_var_stor_len;
|
|
unsigned long guest_cpu_stor_len;
|
|
unsigned long max_sec_stor_addr;
|
|
unsigned int max_num_sec_conf;
|
|
unsigned short max_guest_cpu_id;
|
|
unsigned long uv_feature_indications;
|
|
unsigned long supp_se_hdr_ver;
|
|
unsigned long supp_se_hdr_pcf;
|
|
unsigned long conf_dump_storage_state_len;
|
|
unsigned long conf_dump_finalize_len;
|
|
unsigned long supp_att_req_hdr_ver;
|
|
unsigned long supp_att_pflags;
|
|
unsigned long supp_add_secret_req_ver;
|
|
unsigned long supp_add_secret_pcf;
|
|
unsigned long supp_secret_types;
|
|
unsigned short max_assoc_secrets;
|
|
unsigned short max_retr_secrets;
|
|
};
|
|
|
|
extern struct uv_info uv_info;
|
|
|
|
static inline bool uv_has_feature(u8 feature_bit)
|
|
{
|
|
if (feature_bit >= sizeof(uv_info.uv_feature_indications) * 8)
|
|
return false;
|
|
return test_bit_inv(feature_bit, &uv_info.uv_feature_indications);
|
|
}
|
|
|
|
extern int prot_virt_guest;
|
|
|
|
static inline int is_prot_virt_guest(void)
|
|
{
|
|
return prot_virt_guest;
|
|
}
|
|
|
|
static inline int share(unsigned long addr, u16 cmd)
|
|
{
|
|
struct uv_cb_share uvcb = {
|
|
.header.cmd = cmd,
|
|
.header.len = sizeof(uvcb),
|
|
.paddr = addr
|
|
};
|
|
|
|
if (!is_prot_virt_guest())
|
|
return -EOPNOTSUPP;
|
|
/*
|
|
* Sharing is page wise, if we encounter addresses that are
|
|
* not page aligned, we assume something went wrong. If
|
|
* malloced structs are passed to this function, we could leak
|
|
* data to the hypervisor.
|
|
*/
|
|
BUG_ON(addr & ~PAGE_MASK);
|
|
|
|
if (!uv_call(0, (u64)&uvcb))
|
|
return 0;
|
|
pr_err("%s UVC failed (rc: 0x%x, rrc: 0x%x), possible hypervisor bug.\n",
|
|
uvcb.header.cmd == UVC_CMD_SET_SHARED_ACCESS ? "Share" : "Unshare",
|
|
uvcb.header.rc, uvcb.header.rrc);
|
|
panic("System security cannot be guaranteed unless the system panics now.\n");
|
|
}
|
|
|
|
/*
|
|
* Guest 2 request to the Ultravisor to make a page shared with the
|
|
* hypervisor for IO.
|
|
*
|
|
* @addr: Real or absolute address of the page to be shared
|
|
*/
|
|
static inline int uv_set_shared(unsigned long addr)
|
|
{
|
|
return share(addr, UVC_CMD_SET_SHARED_ACCESS);
|
|
}
|
|
|
|
/*
|
|
* Guest 2 request to the Ultravisor to make a page unshared.
|
|
*
|
|
* @addr: Real or absolute address of the page to be unshared
|
|
*/
|
|
static inline int uv_remove_shared(unsigned long addr)
|
|
{
|
|
return share(addr, UVC_CMD_REMOVE_SHARED_ACCESS);
|
|
}
|
|
|
|
int uv_get_secret_metadata(const u8 secret_id[UV_SECRET_ID_LEN],
|
|
struct uv_secret_list_item_hdr *secret);
|
|
int uv_retrieve_secret(u16 secret_idx, u8 *buf, size_t buf_size);
|
|
|
|
extern int prot_virt_host;
|
|
|
|
static inline int is_prot_virt_host(void)
|
|
{
|
|
return prot_virt_host;
|
|
}
|
|
|
|
int uv_pin_shared(unsigned long paddr);
|
|
int gmap_make_secure(struct gmap *gmap, unsigned long gaddr, void *uvcb);
|
|
int gmap_destroy_page(struct gmap *gmap, unsigned long gaddr);
|
|
int uv_destroy_folio(struct folio *folio);
|
|
int uv_destroy_pte(pte_t pte);
|
|
int uv_convert_from_secure_pte(pte_t pte);
|
|
int gmap_convert_to_secure(struct gmap *gmap, unsigned long gaddr);
|
|
|
|
void setup_uv(void);
|
|
|
|
#endif /* _ASM_S390_UV_H */
|