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https://github.com/AuxXxilium/linux_dsm_epyc7002.git
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0b6cf6b97b
Currently, tpm_pcr_extend() accepts as an input only a SHA1 digest. This patch replaces the hash parameter of tpm_pcr_extend() with an array of tpm_digest structures, so that the caller can provide a digest for each PCR bank currently allocated in the TPM. tpm_pcr_extend() will not extend banks for which no digest was provided, as it happened before this patch, but instead it requires that callers provide the full set of digests. Since the number of digests will always be chip->nr_allocated_banks, the count parameter has been removed. Due to the API change, ima_pcr_extend() and pcrlock() have been modified. Since the number of allocated banks is not known in advance, the memory for the digests must be dynamically allocated. To avoid performance degradation and to avoid that a PCR extend is not done due to lack of memory, the array of tpm_digest structures is allocated by the users of the TPM driver at initialization time. Signed-off-by: Roberto Sassu <roberto.sassu@huawei.com> Reviewed-by: Jarkko Sakkinen <jarkko.sakkinen@linux.intel.com> Tested-by: Jarkko Sakkinen <jarkko.sakkinen@linux.intel.com> Tested-by: Mimi Zohar <zohar@linux.ibm.com> (on x86 for TPM 1.2 & PTT TPM 2.0) Signed-off-by: Jarkko Sakkinen <jarkko.sakkinen@linux.intel.com>
475 lines
12 KiB
C
475 lines
12 KiB
C
/*
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* Copyright (C) 2004 IBM Corporation
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* Copyright (C) 2015 Intel Corporation
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*
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* Authors:
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* Leendert van Doorn <leendert@watson.ibm.com>
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* Dave Safford <safford@watson.ibm.com>
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* Reiner Sailer <sailer@watson.ibm.com>
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* Kylene Hall <kjhall@us.ibm.com>
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*
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* Maintained by: <tpmdd-devel@lists.sourceforge.net>
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*
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* Device driver for TCG/TCPA TPM (trusted platform module).
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* Specifications at www.trustedcomputinggroup.org
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*
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* This program is free software; you can redistribute it and/or
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* modify it under the terms of the GNU General Public License as
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* published by the Free Software Foundation, version 2 of the
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* License.
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*
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*/
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#ifndef __TPM_H__
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#define __TPM_H__
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#include <linux/module.h>
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#include <linux/delay.h>
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#include <linux/mutex.h>
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#include <linux/sched.h>
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#include <linux/platform_device.h>
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#include <linux/io.h>
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#include <linux/tpm.h>
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#include <linux/highmem.h>
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#include <linux/tpm_eventlog.h>
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#ifdef CONFIG_X86
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#include <asm/intel-family.h>
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#endif
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#define TPM_MINOR 224 /* officially assigned */
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#define TPM_BUFSIZE 4096
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#define TPM_NUM_DEVICES 65536
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#define TPM_RETRY 50
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enum tpm_timeout {
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TPM_TIMEOUT = 5, /* msecs */
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TPM_TIMEOUT_RETRY = 100, /* msecs */
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TPM_TIMEOUT_RANGE_US = 300, /* usecs */
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TPM_TIMEOUT_POLL = 1, /* msecs */
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TPM_TIMEOUT_USECS_MIN = 100, /* usecs */
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TPM_TIMEOUT_USECS_MAX = 500 /* usecs */
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};
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/* TPM addresses */
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enum tpm_addr {
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TPM_SUPERIO_ADDR = 0x2E,
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TPM_ADDR = 0x4E,
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};
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#define TPM_WARN_RETRY 0x800
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#define TPM_WARN_DOING_SELFTEST 0x802
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#define TPM_ERR_DEACTIVATED 0x6
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#define TPM_ERR_DISABLED 0x7
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#define TPM_ERR_INVALID_POSTINIT 38
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#define TPM_HEADER_SIZE 10
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enum tpm2_const {
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TPM2_PLATFORM_PCR = 24,
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TPM2_PCR_SELECT_MIN = ((TPM2_PLATFORM_PCR + 7) / 8),
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};
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enum tpm2_timeouts {
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TPM2_TIMEOUT_A = 750,
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TPM2_TIMEOUT_B = 2000,
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TPM2_TIMEOUT_C = 200,
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TPM2_TIMEOUT_D = 30,
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TPM2_DURATION_SHORT = 20,
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TPM2_DURATION_MEDIUM = 750,
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TPM2_DURATION_LONG = 2000,
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TPM2_DURATION_LONG_LONG = 300000,
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TPM2_DURATION_DEFAULT = 120000,
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};
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enum tpm2_structures {
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TPM2_ST_NO_SESSIONS = 0x8001,
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TPM2_ST_SESSIONS = 0x8002,
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};
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/* Indicates from what layer of the software stack the error comes from */
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#define TSS2_RC_LAYER_SHIFT 16
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#define TSS2_RESMGR_TPM_RC_LAYER (11 << TSS2_RC_LAYER_SHIFT)
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enum tpm2_return_codes {
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TPM2_RC_SUCCESS = 0x0000,
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TPM2_RC_HASH = 0x0083, /* RC_FMT1 */
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TPM2_RC_HANDLE = 0x008B,
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TPM2_RC_INITIALIZE = 0x0100, /* RC_VER1 */
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TPM2_RC_FAILURE = 0x0101,
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TPM2_RC_DISABLED = 0x0120,
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TPM2_RC_COMMAND_CODE = 0x0143,
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TPM2_RC_TESTING = 0x090A, /* RC_WARN */
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TPM2_RC_REFERENCE_H0 = 0x0910,
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TPM2_RC_RETRY = 0x0922,
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};
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enum tpm2_command_codes {
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TPM2_CC_FIRST = 0x011F,
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TPM2_CC_HIERARCHY_CONTROL = 0x0121,
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TPM2_CC_HIERARCHY_CHANGE_AUTH = 0x0129,
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TPM2_CC_CREATE_PRIMARY = 0x0131,
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TPM2_CC_SEQUENCE_COMPLETE = 0x013E,
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TPM2_CC_SELF_TEST = 0x0143,
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TPM2_CC_STARTUP = 0x0144,
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TPM2_CC_SHUTDOWN = 0x0145,
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TPM2_CC_NV_READ = 0x014E,
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TPM2_CC_CREATE = 0x0153,
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TPM2_CC_LOAD = 0x0157,
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TPM2_CC_SEQUENCE_UPDATE = 0x015C,
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TPM2_CC_UNSEAL = 0x015E,
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TPM2_CC_CONTEXT_LOAD = 0x0161,
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TPM2_CC_CONTEXT_SAVE = 0x0162,
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TPM2_CC_FLUSH_CONTEXT = 0x0165,
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TPM2_CC_VERIFY_SIGNATURE = 0x0177,
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TPM2_CC_GET_CAPABILITY = 0x017A,
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TPM2_CC_GET_RANDOM = 0x017B,
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TPM2_CC_PCR_READ = 0x017E,
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TPM2_CC_PCR_EXTEND = 0x0182,
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TPM2_CC_EVENT_SEQUENCE_COMPLETE = 0x0185,
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TPM2_CC_HASH_SEQUENCE_START = 0x0186,
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TPM2_CC_CREATE_LOADED = 0x0191,
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TPM2_CC_LAST = 0x0193, /* Spec 1.36 */
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};
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enum tpm2_permanent_handles {
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TPM2_RS_PW = 0x40000009,
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};
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enum tpm2_capabilities {
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TPM2_CAP_HANDLES = 1,
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TPM2_CAP_COMMANDS = 2,
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TPM2_CAP_PCRS = 5,
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TPM2_CAP_TPM_PROPERTIES = 6,
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};
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enum tpm2_properties {
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TPM_PT_TOTAL_COMMANDS = 0x0129,
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};
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enum tpm2_startup_types {
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TPM2_SU_CLEAR = 0x0000,
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TPM2_SU_STATE = 0x0001,
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};
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enum tpm2_cc_attrs {
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TPM2_CC_ATTR_CHANDLES = 25,
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TPM2_CC_ATTR_RHANDLE = 28,
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};
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#define TPM_VID_INTEL 0x8086
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#define TPM_VID_WINBOND 0x1050
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#define TPM_VID_STM 0x104A
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enum tpm_chip_flags {
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TPM_CHIP_FLAG_TPM2 = BIT(1),
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TPM_CHIP_FLAG_IRQ = BIT(2),
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TPM_CHIP_FLAG_VIRTUAL = BIT(3),
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TPM_CHIP_FLAG_HAVE_TIMEOUTS = BIT(4),
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TPM_CHIP_FLAG_ALWAYS_POWERED = BIT(5),
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};
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#define to_tpm_chip(d) container_of(d, struct tpm_chip, dev)
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struct tpm_header {
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__be16 tag;
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__be32 length;
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union {
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__be32 ordinal;
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__be32 return_code;
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};
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} __packed;
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#define TPM_TAG_RQU_COMMAND 193
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struct stclear_flags_t {
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__be16 tag;
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u8 deactivated;
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u8 disableForceClear;
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u8 physicalPresence;
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u8 physicalPresenceLock;
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u8 bGlobalLock;
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} __packed;
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struct tpm_version_t {
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u8 Major;
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u8 Minor;
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u8 revMajor;
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u8 revMinor;
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} __packed;
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struct tpm_version_1_2_t {
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__be16 tag;
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u8 Major;
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u8 Minor;
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u8 revMajor;
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u8 revMinor;
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} __packed;
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struct timeout_t {
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__be32 a;
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__be32 b;
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__be32 c;
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__be32 d;
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} __packed;
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struct duration_t {
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__be32 tpm_short;
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__be32 tpm_medium;
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__be32 tpm_long;
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} __packed;
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struct permanent_flags_t {
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__be16 tag;
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u8 disable;
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u8 ownership;
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u8 deactivated;
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u8 readPubek;
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u8 disableOwnerClear;
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u8 allowMaintenance;
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u8 physicalPresenceLifetimeLock;
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u8 physicalPresenceHWEnable;
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u8 physicalPresenceCMDEnable;
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u8 CEKPUsed;
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u8 TPMpost;
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u8 TPMpostLock;
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u8 FIPS;
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u8 operator;
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u8 enableRevokeEK;
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u8 nvLocked;
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u8 readSRKPub;
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u8 tpmEstablished;
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u8 maintenanceDone;
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u8 disableFullDALogicInfo;
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} __packed;
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typedef union {
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struct permanent_flags_t perm_flags;
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struct stclear_flags_t stclear_flags;
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__u8 owned;
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__be32 num_pcrs;
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struct tpm_version_t tpm_version;
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struct tpm_version_1_2_t tpm_version_1_2;
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__be32 manufacturer_id;
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struct timeout_t timeout;
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struct duration_t duration;
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} cap_t;
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enum tpm_capabilities {
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TPM_CAP_FLAG = 4,
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TPM_CAP_PROP = 5,
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TPM_CAP_VERSION_1_1 = 0x06,
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TPM_CAP_VERSION_1_2 = 0x1A,
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};
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enum tpm_sub_capabilities {
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TPM_CAP_PROP_PCR = 0x101,
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TPM_CAP_PROP_MANUFACTURER = 0x103,
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TPM_CAP_FLAG_PERM = 0x108,
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TPM_CAP_FLAG_VOL = 0x109,
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TPM_CAP_PROP_OWNER = 0x111,
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TPM_CAP_PROP_TIS_TIMEOUT = 0x115,
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TPM_CAP_PROP_TIS_DURATION = 0x120,
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};
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/* 128 bytes is an arbitrary cap. This could be as large as TPM_BUFSIZE - 18
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* bytes, but 128 is still a relatively large number of random bytes and
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* anything much bigger causes users of struct tpm_cmd_t to start getting
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* compiler warnings about stack frame size. */
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#define TPM_MAX_RNG_DATA 128
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/* A string buffer type for constructing TPM commands. This is based on the
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* ideas of string buffer code in security/keys/trusted.h but is heap based
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* in order to keep the stack usage minimal.
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*/
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enum tpm_buf_flags {
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TPM_BUF_OVERFLOW = BIT(0),
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};
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struct tpm_buf {
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struct page *data_page;
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unsigned int flags;
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u8 *data;
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};
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static inline void tpm_buf_reset(struct tpm_buf *buf, u16 tag, u32 ordinal)
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{
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struct tpm_header *head = (struct tpm_header *)buf->data;
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head->tag = cpu_to_be16(tag);
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head->length = cpu_to_be32(sizeof(*head));
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head->ordinal = cpu_to_be32(ordinal);
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}
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static inline int tpm_buf_init(struct tpm_buf *buf, u16 tag, u32 ordinal)
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{
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buf->data_page = alloc_page(GFP_HIGHUSER);
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if (!buf->data_page)
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return -ENOMEM;
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buf->flags = 0;
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buf->data = kmap(buf->data_page);
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tpm_buf_reset(buf, tag, ordinal);
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return 0;
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}
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static inline void tpm_buf_destroy(struct tpm_buf *buf)
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{
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kunmap(buf->data_page);
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__free_page(buf->data_page);
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}
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static inline u32 tpm_buf_length(struct tpm_buf *buf)
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{
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struct tpm_header *head = (struct tpm_header *)buf->data;
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return be32_to_cpu(head->length);
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}
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static inline u16 tpm_buf_tag(struct tpm_buf *buf)
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{
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struct tpm_header *head = (struct tpm_header *)buf->data;
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return be16_to_cpu(head->tag);
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}
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static inline void tpm_buf_append(struct tpm_buf *buf,
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const unsigned char *new_data,
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unsigned int new_len)
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{
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struct tpm_header *head = (struct tpm_header *)buf->data;
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u32 len = tpm_buf_length(buf);
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/* Return silently if overflow has already happened. */
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if (buf->flags & TPM_BUF_OVERFLOW)
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return;
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if ((len + new_len) > PAGE_SIZE) {
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WARN(1, "tpm_buf: overflow\n");
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buf->flags |= TPM_BUF_OVERFLOW;
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return;
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}
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memcpy(&buf->data[len], new_data, new_len);
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head->length = cpu_to_be32(len + new_len);
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}
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static inline void tpm_buf_append_u8(struct tpm_buf *buf, const u8 value)
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{
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tpm_buf_append(buf, &value, 1);
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}
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static inline void tpm_buf_append_u16(struct tpm_buf *buf, const u16 value)
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{
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__be16 value2 = cpu_to_be16(value);
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tpm_buf_append(buf, (u8 *) &value2, 2);
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}
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static inline void tpm_buf_append_u32(struct tpm_buf *buf, const u32 value)
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{
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__be32 value2 = cpu_to_be32(value);
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tpm_buf_append(buf, (u8 *) &value2, 4);
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}
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extern struct class *tpm_class;
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extern struct class *tpmrm_class;
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extern dev_t tpm_devt;
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extern const struct file_operations tpm_fops;
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extern const struct file_operations tpmrm_fops;
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extern struct idr dev_nums_idr;
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ssize_t tpm_transmit(struct tpm_chip *chip, u8 *buf, size_t bufsiz);
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ssize_t tpm_transmit_cmd(struct tpm_chip *chip, struct tpm_buf *buf,
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size_t min_rsp_body_length, const char *desc);
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int tpm_get_timeouts(struct tpm_chip *);
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int tpm_auto_startup(struct tpm_chip *chip);
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int tpm1_pm_suspend(struct tpm_chip *chip, u32 tpm_suspend_pcr);
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int tpm1_auto_startup(struct tpm_chip *chip);
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int tpm1_do_selftest(struct tpm_chip *chip);
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int tpm1_get_timeouts(struct tpm_chip *chip);
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unsigned long tpm1_calc_ordinal_duration(struct tpm_chip *chip, u32 ordinal);
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int tpm1_pcr_extend(struct tpm_chip *chip, u32 pcr_idx, const u8 *hash,
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const char *log_msg);
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int tpm1_pcr_read(struct tpm_chip *chip, u32 pcr_idx, u8 *res_buf);
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ssize_t tpm1_getcap(struct tpm_chip *chip, u32 subcap_id, cap_t *cap,
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const char *desc, size_t min_cap_length);
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int tpm1_get_random(struct tpm_chip *chip, u8 *out, size_t max);
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unsigned long tpm_calc_ordinal_duration(struct tpm_chip *chip, u32 ordinal);
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int tpm_pm_suspend(struct device *dev);
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int tpm_pm_resume(struct device *dev);
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static inline void tpm_msleep(unsigned int delay_msec)
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{
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usleep_range((delay_msec * 1000) - TPM_TIMEOUT_RANGE_US,
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delay_msec * 1000);
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};
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int tpm_chip_start(struct tpm_chip *chip);
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void tpm_chip_stop(struct tpm_chip *chip);
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struct tpm_chip *tpm_find_get_ops(struct tpm_chip *chip);
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__must_check int tpm_try_get_ops(struct tpm_chip *chip);
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void tpm_put_ops(struct tpm_chip *chip);
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struct tpm_chip *tpm_chip_alloc(struct device *dev,
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const struct tpm_class_ops *ops);
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struct tpm_chip *tpmm_chip_alloc(struct device *pdev,
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const struct tpm_class_ops *ops);
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int tpm_chip_register(struct tpm_chip *chip);
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void tpm_chip_unregister(struct tpm_chip *chip);
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void tpm_sysfs_add_device(struct tpm_chip *chip);
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#ifdef CONFIG_ACPI
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extern void tpm_add_ppi(struct tpm_chip *chip);
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#else
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static inline void tpm_add_ppi(struct tpm_chip *chip)
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{
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}
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#endif
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static inline u32 tpm2_rc_value(u32 rc)
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{
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return (rc & BIT(7)) ? rc & 0xff : rc;
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}
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int tpm2_get_timeouts(struct tpm_chip *chip);
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int tpm2_pcr_read(struct tpm_chip *chip, u32 pcr_idx,
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struct tpm_digest *digest, u16 *digest_size_ptr);
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int tpm2_pcr_extend(struct tpm_chip *chip, u32 pcr_idx,
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struct tpm_digest *digests);
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int tpm2_get_random(struct tpm_chip *chip, u8 *dest, size_t max);
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void tpm2_flush_context(struct tpm_chip *chip, u32 handle);
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int tpm2_seal_trusted(struct tpm_chip *chip,
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struct trusted_key_payload *payload,
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struct trusted_key_options *options);
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int tpm2_unseal_trusted(struct tpm_chip *chip,
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struct trusted_key_payload *payload,
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struct trusted_key_options *options);
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ssize_t tpm2_get_tpm_pt(struct tpm_chip *chip, u32 property_id,
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u32 *value, const char *desc);
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int tpm2_auto_startup(struct tpm_chip *chip);
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void tpm2_shutdown(struct tpm_chip *chip, u16 shutdown_type);
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unsigned long tpm2_calc_ordinal_duration(struct tpm_chip *chip, u32 ordinal);
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int tpm2_probe(struct tpm_chip *chip);
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int tpm2_find_cc(struct tpm_chip *chip, u32 cc);
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int tpm2_init_space(struct tpm_space *space);
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void tpm2_del_space(struct tpm_chip *chip, struct tpm_space *space);
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void tpm2_flush_space(struct tpm_chip *chip);
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int tpm2_prepare_space(struct tpm_chip *chip, struct tpm_space *space, u8 *cmd,
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size_t cmdsiz);
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int tpm2_commit_space(struct tpm_chip *chip, struct tpm_space *space, void *buf,
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size_t *bufsiz);
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int tpm_bios_log_setup(struct tpm_chip *chip);
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void tpm_bios_log_teardown(struct tpm_chip *chip);
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int tpm_dev_common_init(void);
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void tpm_dev_common_exit(void);
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#endif
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