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Update tpm2_load_context() to return -EINVAL on integrity failures and use this as a signal when loading the NULL context that something might be wrong. If the signal fails, check the name of the NULL primary against the one stored in the chip data and if there is a mismatch disable the TPM because it is likely to have suffered a reset attack. Signed-off-by: James Bottomley <James.Bottomley@HansenPartnership.com> Reviewed-by: Jarkko Sakkinen <jarkko@kernel.org> Tested-by: Jarkko Sakkinen <jarkko@kernel.org> Signed-off-by: Jarkko Sakkinen <jarkko@kernel.org>
604 lines
16 KiB
C
604 lines
16 KiB
C
/* SPDX-License-Identifier: GPL-2.0-only */
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/*
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* Copyright (C) 2004,2007,2008 IBM 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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* Debora Velarde <dvelarde@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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#ifndef __LINUX_TPM_H__
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#define __LINUX_TPM_H__
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#include <linux/hw_random.h>
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#include <linux/acpi.h>
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#include <linux/cdev.h>
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#include <linux/fs.h>
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#include <linux/highmem.h>
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#include <crypto/hash_info.h>
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#include <crypto/aes.h>
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#define TPM_DIGEST_SIZE 20 /* Max TPM v1.2 PCR size */
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#define TPM_MAX_DIGEST_SIZE SHA512_DIGEST_SIZE
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struct tpm_chip;
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struct trusted_key_payload;
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struct trusted_key_options;
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/* opaque structure, holds auth session parameters like the session key */
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struct tpm2_auth;
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enum tpm2_session_types {
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TPM2_SE_HMAC = 0x00,
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TPM2_SE_POLICY = 0x01,
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TPM2_SE_TRIAL = 0x02,
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};
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/* if you add a new hash to this, increment TPM_MAX_HASHES below */
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enum tpm_algorithms {
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TPM_ALG_ERROR = 0x0000,
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TPM_ALG_SHA1 = 0x0004,
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TPM_ALG_AES = 0x0006,
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TPM_ALG_KEYEDHASH = 0x0008,
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TPM_ALG_SHA256 = 0x000B,
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TPM_ALG_SHA384 = 0x000C,
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TPM_ALG_SHA512 = 0x000D,
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TPM_ALG_NULL = 0x0010,
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TPM_ALG_SM3_256 = 0x0012,
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TPM_ALG_ECC = 0x0023,
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TPM_ALG_CFB = 0x0043,
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};
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/*
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* maximum number of hashing algorithms a TPM can have. This is
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* basically a count of every hash in tpm_algorithms above
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*/
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#define TPM_MAX_HASHES 5
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enum tpm2_curves {
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TPM2_ECC_NONE = 0x0000,
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TPM2_ECC_NIST_P256 = 0x0003,
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};
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struct tpm_digest {
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u16 alg_id;
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u8 digest[TPM_MAX_DIGEST_SIZE];
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} __packed;
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struct tpm_bank_info {
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u16 alg_id;
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u16 digest_size;
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u16 crypto_id;
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};
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enum TPM_OPS_FLAGS {
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TPM_OPS_AUTO_STARTUP = BIT(0),
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};
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struct tpm_class_ops {
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unsigned int flags;
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const u8 req_complete_mask;
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const u8 req_complete_val;
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bool (*req_canceled)(struct tpm_chip *chip, u8 status);
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int (*recv) (struct tpm_chip *chip, u8 *buf, size_t len);
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int (*send) (struct tpm_chip *chip, u8 *buf, size_t len);
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void (*cancel) (struct tpm_chip *chip);
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u8 (*status) (struct tpm_chip *chip);
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void (*update_timeouts)(struct tpm_chip *chip,
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unsigned long *timeout_cap);
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void (*update_durations)(struct tpm_chip *chip,
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unsigned long *duration_cap);
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int (*go_idle)(struct tpm_chip *chip);
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int (*cmd_ready)(struct tpm_chip *chip);
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int (*request_locality)(struct tpm_chip *chip, int loc);
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int (*relinquish_locality)(struct tpm_chip *chip, int loc);
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void (*clk_enable)(struct tpm_chip *chip, bool value);
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};
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#define TPM_NUM_EVENT_LOG_FILES 3
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/* Indexes the duration array */
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enum tpm_duration {
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TPM_SHORT = 0,
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TPM_MEDIUM = 1,
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TPM_LONG = 2,
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TPM_LONG_LONG = 3,
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TPM_UNDEFINED,
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TPM_NUM_DURATIONS = TPM_UNDEFINED,
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};
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#define TPM_PPI_VERSION_LEN 3
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struct tpm_space {
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u32 context_tbl[3];
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u8 *context_buf;
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u32 session_tbl[3];
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u8 *session_buf;
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u32 buf_size;
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};
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struct tpm_bios_log {
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void *bios_event_log;
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void *bios_event_log_end;
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};
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struct tpm_chip_seqops {
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struct tpm_chip *chip;
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const struct seq_operations *seqops;
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};
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/* fixed define for the curve we use which is NIST_P256 */
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#define EC_PT_SZ 32
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/*
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* fixed define for the size of a name. This is actually HASHALG size
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* plus 2, so 32 for SHA256
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*/
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#define TPM2_NAME_SIZE 34
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/*
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* The maximum size for an object context
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*/
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#define TPM2_MAX_CONTEXT_SIZE 4096
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struct tpm_chip {
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struct device dev;
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struct device devs;
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struct cdev cdev;
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struct cdev cdevs;
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/* A driver callback under ops cannot be run unless ops_sem is held
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* (sometimes implicitly, eg for the sysfs code). ops becomes null
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* when the driver is unregistered, see tpm_try_get_ops.
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*/
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struct rw_semaphore ops_sem;
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const struct tpm_class_ops *ops;
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struct tpm_bios_log log;
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struct tpm_chip_seqops bin_log_seqops;
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struct tpm_chip_seqops ascii_log_seqops;
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unsigned int flags;
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int dev_num; /* /dev/tpm# */
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unsigned long is_open; /* only one allowed */
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char hwrng_name[64];
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struct hwrng hwrng;
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struct mutex tpm_mutex; /* tpm is processing */
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unsigned long timeout_a; /* jiffies */
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unsigned long timeout_b; /* jiffies */
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unsigned long timeout_c; /* jiffies */
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unsigned long timeout_d; /* jiffies */
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bool timeout_adjusted;
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unsigned long duration[TPM_NUM_DURATIONS]; /* jiffies */
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bool duration_adjusted;
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struct dentry *bios_dir[TPM_NUM_EVENT_LOG_FILES];
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const struct attribute_group *groups[3 + TPM_MAX_HASHES];
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unsigned int groups_cnt;
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u32 nr_allocated_banks;
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struct tpm_bank_info *allocated_banks;
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#ifdef CONFIG_ACPI
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acpi_handle acpi_dev_handle;
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char ppi_version[TPM_PPI_VERSION_LEN + 1];
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#endif /* CONFIG_ACPI */
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struct tpm_space work_space;
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u32 last_cc;
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u32 nr_commands;
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u32 *cc_attrs_tbl;
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/* active locality */
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int locality;
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#ifdef CONFIG_TCG_TPM2_HMAC
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/* details for communication security via sessions */
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/* saved context for NULL seed */
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u8 null_key_context[TPM2_MAX_CONTEXT_SIZE];
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/* name of NULL seed */
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u8 null_key_name[TPM2_NAME_SIZE];
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u8 null_ec_key_x[EC_PT_SZ];
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u8 null_ec_key_y[EC_PT_SZ];
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struct tpm2_auth *auth;
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#endif
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};
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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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TPM2_ST_CREATION = 0x8021,
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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_INTEGRITY = 0x009F,
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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_UPGRADE = 0x012D,
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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_READ_PUBLIC = 0x0173,
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TPM2_CC_START_AUTH_SESS = 0x0176,
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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_RH_NULL = 0x40000007,
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TPM2_RS_PW = 0x40000009,
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};
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/* Most Significant Octet for key types */
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enum tpm2_mso_type {
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TPM2_MSO_NVRAM = 0x01,
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TPM2_MSO_SESSION = 0x02,
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TPM2_MSO_POLICY = 0x03,
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TPM2_MSO_PERMANENT = 0x40,
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TPM2_MSO_VOLATILE = 0x80,
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TPM2_MSO_PERSISTENT = 0x81,
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};
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static inline enum tpm2_mso_type tpm2_handle_mso(u32 handle)
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{
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return handle >> 24;
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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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TPM2_CC_ATTR_VENDOR = 29,
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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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#define TPM_VID_ATML 0x1114
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enum tpm_chip_flags {
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TPM_CHIP_FLAG_BOOTSTRAPPED = BIT(0),
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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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TPM_CHIP_FLAG_FIRMWARE_POWER_MANAGED = BIT(6),
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TPM_CHIP_FLAG_FIRMWARE_UPGRADE = BIT(7),
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TPM_CHIP_FLAG_SUSPENDED = BIT(8),
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TPM_CHIP_FLAG_HWRNG_DISABLED = BIT(9),
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TPM_CHIP_FLAG_DISABLE = BIT(10),
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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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enum tpm_buf_flags {
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/* the capacity exceeded: */
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TPM_BUF_OVERFLOW = BIT(0),
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/* TPM2B format: */
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TPM_BUF_TPM2B = BIT(1),
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/* read out of boundary: */
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TPM_BUF_BOUNDARY_ERROR = BIT(2),
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};
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/*
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* A string buffer type for constructing TPM commands.
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*/
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struct tpm_buf {
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u32 flags;
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u32 length;
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u8 *data;
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u8 handles;
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};
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enum tpm2_object_attributes {
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TPM2_OA_FIXED_TPM = BIT(1),
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TPM2_OA_ST_CLEAR = BIT(2),
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TPM2_OA_FIXED_PARENT = BIT(4),
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TPM2_OA_SENSITIVE_DATA_ORIGIN = BIT(5),
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TPM2_OA_USER_WITH_AUTH = BIT(6),
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TPM2_OA_ADMIN_WITH_POLICY = BIT(7),
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TPM2_OA_NO_DA = BIT(10),
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TPM2_OA_ENCRYPTED_DUPLICATION = BIT(11),
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TPM2_OA_RESTRICTED = BIT(16),
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TPM2_OA_DECRYPT = BIT(17),
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TPM2_OA_SIGN = BIT(18),
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};
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/*
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* definitions for the canonical template. These are mandated
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* by the TCG key template documents
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*/
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#define AES_KEY_BYTES AES_KEYSIZE_128
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#define AES_KEY_BITS (AES_KEY_BYTES*8)
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#define TPM2_OA_TMPL (TPM2_OA_NO_DA | \
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TPM2_OA_FIXED_TPM | \
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TPM2_OA_FIXED_PARENT | \
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TPM2_OA_SENSITIVE_DATA_ORIGIN | \
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TPM2_OA_USER_WITH_AUTH | \
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TPM2_OA_DECRYPT | \
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TPM2_OA_RESTRICTED)
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enum tpm2_session_attributes {
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TPM2_SA_CONTINUE_SESSION = BIT(0),
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TPM2_SA_AUDIT_EXCLUSIVE = BIT(1),
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TPM2_SA_AUDIT_RESET = BIT(3),
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TPM2_SA_DECRYPT = BIT(5),
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TPM2_SA_ENCRYPT = BIT(6),
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TPM2_SA_AUDIT = BIT(7),
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};
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struct tpm2_hash {
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unsigned int crypto_id;
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unsigned int tpm_id;
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};
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int tpm_buf_init(struct tpm_buf *buf, u16 tag, u32 ordinal);
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void tpm_buf_reset(struct tpm_buf *buf, u16 tag, u32 ordinal);
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int tpm_buf_init_sized(struct tpm_buf *buf);
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void tpm_buf_reset_sized(struct tpm_buf *buf);
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void tpm_buf_destroy(struct tpm_buf *buf);
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u32 tpm_buf_length(struct tpm_buf *buf);
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void tpm_buf_append(struct tpm_buf *buf, const u8 *new_data, u16 new_length);
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void tpm_buf_append_u8(struct tpm_buf *buf, const u8 value);
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void tpm_buf_append_u16(struct tpm_buf *buf, const u16 value);
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void tpm_buf_append_u32(struct tpm_buf *buf, const u32 value);
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u8 tpm_buf_read_u8(struct tpm_buf *buf, off_t *offset);
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u16 tpm_buf_read_u16(struct tpm_buf *buf, off_t *offset);
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u32 tpm_buf_read_u32(struct tpm_buf *buf, off_t *offset);
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u8 *tpm_buf_parameters(struct tpm_buf *buf);
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/*
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* Check if TPM device is in the firmware upgrade mode.
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*/
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static inline bool tpm_is_firmware_upgrade(struct tpm_chip *chip)
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{
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return chip->flags & TPM_CHIP_FLAG_FIRMWARE_UPGRADE;
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}
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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 & 0xbf : rc;
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}
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#if defined(CONFIG_TCG_TPM) || defined(CONFIG_TCG_TPM_MODULE)
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extern int tpm_is_tpm2(struct tpm_chip *chip);
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extern __must_check int tpm_try_get_ops(struct tpm_chip *chip);
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extern void tpm_put_ops(struct tpm_chip *chip);
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extern 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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extern int tpm_pcr_read(struct tpm_chip *chip, u32 pcr_idx,
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struct tpm_digest *digest);
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extern int tpm_pcr_extend(struct tpm_chip *chip, u32 pcr_idx,
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struct tpm_digest *digests);
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extern int tpm_get_random(struct tpm_chip *chip, u8 *data, size_t max);
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extern struct tpm_chip *tpm_default_chip(void);
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void tpm2_flush_context(struct tpm_chip *chip, u32 handle);
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static inline void tpm_buf_append_empty_auth(struct tpm_buf *buf, u32 handle)
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{
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/* simple authorization for empty auth */
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tpm_buf_append_u32(buf, 9); /* total length of auth */
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tpm_buf_append_u32(buf, handle);
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tpm_buf_append_u16(buf, 0); /* nonce len */
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tpm_buf_append_u8(buf, 0); /* attributes */
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tpm_buf_append_u16(buf, 0); /* hmac len */
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}
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#else
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static inline int tpm_is_tpm2(struct tpm_chip *chip)
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{
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return -ENODEV;
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}
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static inline int tpm_pcr_read(struct tpm_chip *chip, int pcr_idx,
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struct tpm_digest *digest)
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{
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return -ENODEV;
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}
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static inline int tpm_pcr_extend(struct tpm_chip *chip, u32 pcr_idx,
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struct tpm_digest *digests)
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{
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return -ENODEV;
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}
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static inline int tpm_get_random(struct tpm_chip *chip, u8 *data, size_t max)
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{
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return -ENODEV;
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}
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static inline struct tpm_chip *tpm_default_chip(void)
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{
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return NULL;
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}
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static inline void tpm_buf_append_empty_auth(struct tpm_buf *buf, u32 handle)
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{
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}
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#endif
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#ifdef CONFIG_TCG_TPM2_HMAC
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int tpm2_start_auth_session(struct tpm_chip *chip);
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void tpm_buf_append_name(struct tpm_chip *chip, struct tpm_buf *buf,
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u32 handle, u8 *name);
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void tpm_buf_append_hmac_session(struct tpm_chip *chip, struct tpm_buf *buf,
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u8 attributes, u8 *passphrase,
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int passphraselen);
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static inline void tpm_buf_append_hmac_session_opt(struct tpm_chip *chip,
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struct tpm_buf *buf,
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u8 attributes,
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u8 *passphrase,
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int passphraselen)
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{
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tpm_buf_append_hmac_session(chip, buf, attributes, passphrase,
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passphraselen);
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}
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void tpm_buf_fill_hmac_session(struct tpm_chip *chip, struct tpm_buf *buf);
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int tpm_buf_check_hmac_response(struct tpm_chip *chip, struct tpm_buf *buf,
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int rc);
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void tpm2_end_auth_session(struct tpm_chip *chip);
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#else
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#include <asm/unaligned.h>
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static inline int tpm2_start_auth_session(struct tpm_chip *chip)
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{
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return 0;
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}
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static inline void tpm2_end_auth_session(struct tpm_chip *chip)
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{
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}
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static inline void tpm_buf_append_name(struct tpm_chip *chip,
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struct tpm_buf *buf,
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u32 handle, u8 *name)
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{
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tpm_buf_append_u32(buf, handle);
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/* count the number of handles in the upper bits of flags */
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buf->handles++;
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}
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static inline void tpm_buf_append_hmac_session(struct tpm_chip *chip,
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struct tpm_buf *buf,
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u8 attributes, u8 *passphrase,
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int passphraselen)
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{
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/* offset tells us where the sessions area begins */
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int offset = buf->handles * 4 + TPM_HEADER_SIZE;
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u32 len = 9 + passphraselen;
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if (tpm_buf_length(buf) != offset) {
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/* not the first session so update the existing length */
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len += get_unaligned_be32(&buf->data[offset]);
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put_unaligned_be32(len, &buf->data[offset]);
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} else {
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tpm_buf_append_u32(buf, len);
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}
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/* auth handle */
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tpm_buf_append_u32(buf, TPM2_RS_PW);
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/* nonce */
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tpm_buf_append_u16(buf, 0);
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/* attributes */
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tpm_buf_append_u8(buf, 0);
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/* passphrase */
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tpm_buf_append_u16(buf, passphraselen);
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tpm_buf_append(buf, passphrase, passphraselen);
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}
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static inline void tpm_buf_append_hmac_session_opt(struct tpm_chip *chip,
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struct tpm_buf *buf,
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u8 attributes,
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u8 *passphrase,
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|
int passphraselen)
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|
{
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int offset = buf->handles * 4 + TPM_HEADER_SIZE;
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struct tpm_header *head = (struct tpm_header *) buf->data;
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|
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/*
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* if the only sessions are optional, the command tag
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* must change to TPM2_ST_NO_SESSIONS
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*/
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if (tpm_buf_length(buf) == offset)
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head->tag = cpu_to_be16(TPM2_ST_NO_SESSIONS);
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}
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static inline void tpm_buf_fill_hmac_session(struct tpm_chip *chip,
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struct tpm_buf *buf)
|
|
{
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|
}
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static inline int tpm_buf_check_hmac_response(struct tpm_chip *chip,
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struct tpm_buf *buf,
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|
int rc)
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|
{
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return rc;
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}
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#endif /* CONFIG_TCG_TPM2_HMAC */
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#endif
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