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Update the query struct such that secret-UVC related information can be parsed. Add sysfs files for these new values. 'supp_add_secret_req_ver' notes the supported versions for the Add Secret UVC. Bit 0 indicates that version 0x100 is supported, bit 1 indicates 0x200, and so on. 'supp_add_secret_pcf' notes the supported plaintext flags for the Add Secret UVC. 'supp_secret_types' notes the supported types of secrets. Bit 0 indicates secret type 1, bit 1 indicates type 2, and so on. 'max_secrets' notes the maximum amount of secrets the secret store can store per pv guest. Signed-off-by: Steffen Eiden <seiden@linux.ibm.com> Reviewed-by: Janosch Frank <frankja@linux.ibm.com> Link: https://lore.kernel.org/r/20230615100533.3996107-8-seiden@linux.ibm.com Signed-off-by: Janosch Frank <frankja@linux.ibm.com> Message-Id: <20230615100533.3996107-8-seiden@linux.ibm.com>
96 lines
2.9 KiB
C
96 lines
2.9 KiB
C
// SPDX-License-Identifier: GPL-2.0
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#include <asm/uv.h>
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#include <asm/boot_data.h>
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#include <asm/facility.h>
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#include <asm/sections.h>
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#include "boot.h"
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#include "uv.h"
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/* will be used in arch/s390/kernel/uv.c */
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#ifdef CONFIG_PROTECTED_VIRTUALIZATION_GUEST
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int __bootdata_preserved(prot_virt_guest);
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#endif
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#if IS_ENABLED(CONFIG_KVM)
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int __bootdata_preserved(prot_virt_host);
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#endif
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struct uv_info __bootdata_preserved(uv_info);
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void uv_query_info(void)
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{
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struct uv_cb_qui uvcb = {
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.header.cmd = UVC_CMD_QUI,
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.header.len = sizeof(uvcb)
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};
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if (!test_facility(158))
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return;
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/* rc==0x100 means that there is additional data we do not process */
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if (uv_call(0, (uint64_t)&uvcb) && uvcb.header.rc != 0x100)
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return;
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if (IS_ENABLED(CONFIG_KVM)) {
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memcpy(uv_info.inst_calls_list, uvcb.inst_calls_list, sizeof(uv_info.inst_calls_list));
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uv_info.uv_base_stor_len = uvcb.uv_base_stor_len;
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uv_info.guest_base_stor_len = uvcb.conf_base_phys_stor_len;
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uv_info.guest_virt_base_stor_len = uvcb.conf_base_virt_stor_len;
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uv_info.guest_virt_var_stor_len = uvcb.conf_virt_var_stor_len;
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uv_info.guest_cpu_stor_len = uvcb.cpu_stor_len;
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uv_info.max_sec_stor_addr = ALIGN(uvcb.max_guest_stor_addr, PAGE_SIZE);
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uv_info.max_num_sec_conf = uvcb.max_num_sec_conf;
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uv_info.max_guest_cpu_id = uvcb.max_guest_cpu_id;
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uv_info.uv_feature_indications = uvcb.uv_feature_indications;
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uv_info.supp_se_hdr_ver = uvcb.supp_se_hdr_versions;
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uv_info.supp_se_hdr_pcf = uvcb.supp_se_hdr_pcf;
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uv_info.conf_dump_storage_state_len = uvcb.conf_dump_storage_state_len;
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uv_info.conf_dump_finalize_len = uvcb.conf_dump_finalize_len;
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uv_info.supp_att_req_hdr_ver = uvcb.supp_att_req_hdr_ver;
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uv_info.supp_att_pflags = uvcb.supp_att_pflags;
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uv_info.supp_add_secret_req_ver = uvcb.supp_add_secret_req_ver;
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uv_info.supp_add_secret_pcf = uvcb.supp_add_secret_pcf;
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uv_info.supp_secret_types = uvcb.supp_secret_types;
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uv_info.max_secrets = uvcb.max_secrets;
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}
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#ifdef CONFIG_PROTECTED_VIRTUALIZATION_GUEST
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if (test_bit_inv(BIT_UVC_CMD_SET_SHARED_ACCESS, (unsigned long *)uvcb.inst_calls_list) &&
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test_bit_inv(BIT_UVC_CMD_REMOVE_SHARED_ACCESS, (unsigned long *)uvcb.inst_calls_list))
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prot_virt_guest = 1;
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#endif
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}
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#if IS_ENABLED(CONFIG_KVM)
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unsigned long adjust_to_uv_max(unsigned long limit)
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{
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if (is_prot_virt_host() && uv_info.max_sec_stor_addr)
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limit = min_t(unsigned long, limit, uv_info.max_sec_stor_addr);
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return limit;
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}
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static int is_prot_virt_host_capable(void)
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{
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/* disable if no prot_virt=1 given on command-line */
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if (!is_prot_virt_host())
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return 0;
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/* disable if protected guest virtualization is enabled */
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if (is_prot_virt_guest())
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return 0;
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/* disable if no hardware support */
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if (!test_facility(158))
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return 0;
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/* disable if kdump */
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if (oldmem_data.start)
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return 0;
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/* disable if stand-alone dump */
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if (ipl_block_valid && is_ipl_block_dump())
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return 0;
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return 1;
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}
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void sanitize_prot_virt_host(void)
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{
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prot_virt_host = is_prot_virt_host_capable();
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}
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#endif
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