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tpm: Move tpm_buf code to include/linux/
Move tpm_buf code to common include/linux/tpm.h header so that it can be reused via other subsystems like trusted keys etc. Also rename trusted keys and asymmetric keys usage of TPM 1.x buffer implementation to tpm1_buf to avoid any compilation errors. Suggested-by: Jarkko Sakkinen <jarkko.sakkinen@linux.intel.com> Signed-off-by: Sumit Garg <sumit.garg@linaro.org> Reviewed-by: Jerry Snitselaar <jsnitsel@redhat.com> Reviewed-by: Jarkko Sakkinen <jarkko.sakkinen@linux.intel.com> Tested-by: Jarkko Sakkinen <jarkko.sakkinen@linux.intel.com> Signed-off-by: Jarkko Sakkinen <jarkko.sakkinen@linux.intel.com>
This commit is contained in:
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@ -31,7 +31,7 @@
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/*
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* Load a TPM key from the blob provided by userspace
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*/
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static int tpm_loadkey2(struct tpm_buf *tb,
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static int tpm_loadkey2(struct tpm1_buf *tb,
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uint32_t keyhandle, unsigned char *keyauth,
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const unsigned char *keyblob, int keybloblen,
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uint32_t *newhandle)
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@ -99,7 +99,7 @@ static int tpm_loadkey2(struct tpm_buf *tb,
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/*
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* Execute the FlushSpecific TPM command
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*/
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static int tpm_flushspecific(struct tpm_buf *tb, uint32_t handle)
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static int tpm_flushspecific(struct tpm1_buf *tb, uint32_t handle)
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{
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INIT_BUF(tb);
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store16(tb, TPM_TAG_RQU_COMMAND);
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@ -115,7 +115,7 @@ static int tpm_flushspecific(struct tpm_buf *tb, uint32_t handle)
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* Decrypt a blob provided by userspace using a specific key handle.
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* The handle is a well known handle or previously loaded by e.g. LoadKey2
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*/
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static int tpm_unbind(struct tpm_buf *tb,
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static int tpm_unbind(struct tpm1_buf *tb,
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uint32_t keyhandle, unsigned char *keyauth,
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const unsigned char *blob, uint32_t bloblen,
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void *out, uint32_t outlen)
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@ -201,7 +201,7 @@ static int tpm_unbind(struct tpm_buf *tb,
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* up to key_length_in_bytes - 11 and not be limited to size 20 like the
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* TPM_SS_RSASSAPKCS1v15_SHA1 signature scheme.
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*/
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static int tpm_sign(struct tpm_buf *tb,
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static int tpm_sign(struct tpm1_buf *tb,
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uint32_t keyhandle, unsigned char *keyauth,
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const unsigned char *blob, uint32_t bloblen,
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void *out, uint32_t outlen)
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@ -519,7 +519,7 @@ static int tpm_key_decrypt(struct tpm_key *tk,
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struct kernel_pkey_params *params,
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const void *in, void *out)
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{
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struct tpm_buf *tb;
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struct tpm1_buf *tb;
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uint32_t keyhandle;
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uint8_t srkauth[SHA1_DIGEST_SIZE];
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uint8_t keyauth[SHA1_DIGEST_SIZE];
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@ -643,7 +643,7 @@ static int tpm_key_sign(struct tpm_key *tk,
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struct kernel_pkey_params *params,
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const void *in, void *out)
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{
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struct tpm_buf *tb;
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struct tpm1_buf *tb;
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uint32_t keyhandle;
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uint8_t srkauth[SHA1_DIGEST_SIZE];
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uint8_t keyauth[SHA1_DIGEST_SIZE];
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@ -25,7 +25,6 @@
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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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@ -58,124 +57,6 @@ enum tpm_addr {
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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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TPM_CHIP_FLAG_FIRMWARE_POWER_MANAGED = BIT(6),
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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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@ -272,99 +153,6 @@ enum tpm_sub_capabilities {
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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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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 = (u8 *)__get_free_page(GFP_KERNEL);
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if (!buf->data)
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return -ENOMEM;
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buf->flags = 0;
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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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free_page((unsigned long)buf->data);
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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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#define LOAD32N(buffer, offset) (*(uint32_t *)&buffer[offset])
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#define LOAD16(buffer, offset) (ntohs(*(uint16_t *)&buffer[offset]))
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struct tpm_buf {
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struct tpm1_buf {
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int len;
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unsigned char data[MAX_BUF_SIZE];
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};
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@ -46,7 +46,7 @@ int TSS_checkhmac1(unsigned char *buffer,
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unsigned int keylen, ...);
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int trusted_tpm_send(unsigned char *cmd, size_t buflen);
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int oiap(struct tpm_buf *tb, uint32_t *handle, unsigned char *nonce);
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int oiap(struct tpm1_buf *tb, uint32_t *handle, unsigned char *nonce);
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#define TPM_DEBUG 0
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@ -110,24 +110,24 @@ static inline void dump_tpm_buf(unsigned char *buf)
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}
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#endif
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static inline void store8(struct tpm_buf *buf, const unsigned char value)
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static inline void store8(struct tpm1_buf *buf, const unsigned char value)
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{
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buf->data[buf->len++] = value;
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}
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static inline void store16(struct tpm_buf *buf, const uint16_t value)
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static inline void store16(struct tpm1_buf *buf, const uint16_t value)
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{
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*(uint16_t *) & buf->data[buf->len] = htons(value);
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buf->len += sizeof value;
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}
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static inline void store32(struct tpm_buf *buf, const uint32_t value)
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static inline void store32(struct tpm1_buf *buf, const uint32_t value)
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{
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*(uint32_t *) & buf->data[buf->len] = htonl(value);
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buf->len += sizeof value;
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}
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static inline void storebytes(struct tpm_buf *buf, const unsigned char *in,
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static inline void storebytes(struct tpm1_buf *buf, const unsigned char *in,
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const int len)
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{
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memcpy(buf->data + buf->len, in, len);
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@ -21,6 +21,7 @@
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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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#define TPM_DIGEST_SIZE 20 /* Max TPM v1.2 PCR size */
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@ -163,6 +164,217 @@ struct tpm_chip {
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int locality;
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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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};
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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,
|
||||
TPM2_CC_CREATE_LOADED = 0x0191,
|
||||
TPM2_CC_LAST = 0x0193, /* Spec 1.36 */
|
||||
};
|
||||
|
||||
enum tpm2_permanent_handles {
|
||||
TPM2_RS_PW = 0x40000009,
|
||||
};
|
||||
|
||||
enum tpm2_capabilities {
|
||||
TPM2_CAP_HANDLES = 1,
|
||||
TPM2_CAP_COMMANDS = 2,
|
||||
TPM2_CAP_PCRS = 5,
|
||||
TPM2_CAP_TPM_PROPERTIES = 6,
|
||||
};
|
||||
|
||||
enum tpm2_properties {
|
||||
TPM_PT_TOTAL_COMMANDS = 0x0129,
|
||||
};
|
||||
|
||||
enum tpm2_startup_types {
|
||||
TPM2_SU_CLEAR = 0x0000,
|
||||
TPM2_SU_STATE = 0x0001,
|
||||
};
|
||||
|
||||
enum tpm2_cc_attrs {
|
||||
TPM2_CC_ATTR_CHANDLES = 25,
|
||||
TPM2_CC_ATTR_RHANDLE = 28,
|
||||
};
|
||||
|
||||
#define TPM_VID_INTEL 0x8086
|
||||
#define TPM_VID_WINBOND 0x1050
|
||||
#define TPM_VID_STM 0x104A
|
||||
|
||||
enum tpm_chip_flags {
|
||||
TPM_CHIP_FLAG_TPM2 = BIT(1),
|
||||
TPM_CHIP_FLAG_IRQ = BIT(2),
|
||||
TPM_CHIP_FLAG_VIRTUAL = BIT(3),
|
||||
TPM_CHIP_FLAG_HAVE_TIMEOUTS = BIT(4),
|
||||
TPM_CHIP_FLAG_ALWAYS_POWERED = BIT(5),
|
||||
TPM_CHIP_FLAG_FIRMWARE_POWER_MANAGED = BIT(6),
|
||||
};
|
||||
|
||||
#define to_tpm_chip(d) container_of(d, struct tpm_chip, dev)
|
||||
|
||||
struct tpm_header {
|
||||
__be16 tag;
|
||||
__be32 length;
|
||||
union {
|
||||
__be32 ordinal;
|
||||
__be32 return_code;
|
||||
};
|
||||
} __packed;
|
||||
|
||||
/* A string buffer type for constructing TPM commands. This is based on the
|
||||
* ideas of string buffer code in security/keys/trusted.h but is heap based
|
||||
* in order to keep the stack usage minimal.
|
||||
*/
|
||||
|
||||
enum tpm_buf_flags {
|
||||
TPM_BUF_OVERFLOW = BIT(0),
|
||||
};
|
||||
|
||||
struct tpm_buf {
|
||||
unsigned int flags;
|
||||
u8 *data;
|
||||
};
|
||||
|
||||
static inline void tpm_buf_reset(struct tpm_buf *buf, u16 tag, u32 ordinal)
|
||||
{
|
||||
struct tpm_header *head = (struct tpm_header *)buf->data;
|
||||
|
||||
head->tag = cpu_to_be16(tag);
|
||||
head->length = cpu_to_be32(sizeof(*head));
|
||||
head->ordinal = cpu_to_be32(ordinal);
|
||||
}
|
||||
|
||||
static inline int tpm_buf_init(struct tpm_buf *buf, u16 tag, u32 ordinal)
|
||||
{
|
||||
buf->data = (u8 *)__get_free_page(GFP_KERNEL);
|
||||
if (!buf->data)
|
||||
return -ENOMEM;
|
||||
|
||||
buf->flags = 0;
|
||||
tpm_buf_reset(buf, tag, ordinal);
|
||||
return 0;
|
||||
}
|
||||
|
||||
static inline void tpm_buf_destroy(struct tpm_buf *buf)
|
||||
{
|
||||
free_page((unsigned long)buf->data);
|
||||
}
|
||||
|
||||
static inline u32 tpm_buf_length(struct tpm_buf *buf)
|
||||
{
|
||||
struct tpm_header *head = (struct tpm_header *)buf->data;
|
||||
|
||||
return be32_to_cpu(head->length);
|
||||
}
|
||||
|
||||
static inline u16 tpm_buf_tag(struct tpm_buf *buf)
|
||||
{
|
||||
struct tpm_header *head = (struct tpm_header *)buf->data;
|
||||
|
||||
return be16_to_cpu(head->tag);
|
||||
}
|
||||
|
||||
static inline void tpm_buf_append(struct tpm_buf *buf,
|
||||
const unsigned char *new_data,
|
||||
unsigned int new_len)
|
||||
{
|
||||
struct tpm_header *head = (struct tpm_header *)buf->data;
|
||||
u32 len = tpm_buf_length(buf);
|
||||
|
||||
/* Return silently if overflow has already happened. */
|
||||
if (buf->flags & TPM_BUF_OVERFLOW)
|
||||
return;
|
||||
|
||||
if ((len + new_len) > PAGE_SIZE) {
|
||||
WARN(1, "tpm_buf: overflow\n");
|
||||
buf->flags |= TPM_BUF_OVERFLOW;
|
||||
return;
|
||||
}
|
||||
|
||||
memcpy(&buf->data[len], new_data, new_len);
|
||||
head->length = cpu_to_be32(len + new_len);
|
||||
}
|
||||
|
||||
static inline void tpm_buf_append_u8(struct tpm_buf *buf, const u8 value)
|
||||
{
|
||||
tpm_buf_append(buf, &value, 1);
|
||||
}
|
||||
|
||||
static inline void tpm_buf_append_u16(struct tpm_buf *buf, const u16 value)
|
||||
{
|
||||
__be16 value2 = cpu_to_be16(value);
|
||||
|
||||
tpm_buf_append(buf, (u8 *) &value2, 2);
|
||||
}
|
||||
|
||||
static inline void tpm_buf_append_u32(struct tpm_buf *buf, const u32 value)
|
||||
{
|
||||
__be32 value2 = cpu_to_be32(value);
|
||||
|
||||
tpm_buf_append(buf, (u8 *) &value2, 4);
|
||||
}
|
||||
|
||||
#if defined(CONFIG_TCG_TPM) || defined(CONFIG_TCG_TPM_MODULE)
|
||||
|
||||
extern int tpm_is_tpm2(struct tpm_chip *chip);
|
||||
|
@ -395,7 +395,7 @@ static int pcrlock(const int pcrnum)
|
||||
/*
|
||||
* Create an object specific authorisation protocol (OSAP) session
|
||||
*/
|
||||
static int osap(struct tpm_buf *tb, struct osapsess *s,
|
||||
static int osap(struct tpm1_buf *tb, struct osapsess *s,
|
||||
const unsigned char *key, uint16_t type, uint32_t handle)
|
||||
{
|
||||
unsigned char enonce[TPM_NONCE_SIZE];
|
||||
@ -430,7 +430,7 @@ static int osap(struct tpm_buf *tb, struct osapsess *s,
|
||||
/*
|
||||
* Create an object independent authorisation protocol (oiap) session
|
||||
*/
|
||||
int oiap(struct tpm_buf *tb, uint32_t *handle, unsigned char *nonce)
|
||||
int oiap(struct tpm1_buf *tb, uint32_t *handle, unsigned char *nonce)
|
||||
{
|
||||
int ret;
|
||||
|
||||
@ -464,7 +464,7 @@ struct tpm_digests {
|
||||
* Have the TPM seal(encrypt) the trusted key, possibly based on
|
||||
* Platform Configuration Registers (PCRs). AUTH1 for sealing key.
|
||||
*/
|
||||
static int tpm_seal(struct tpm_buf *tb, uint16_t keytype,
|
||||
static int tpm_seal(struct tpm1_buf *tb, uint16_t keytype,
|
||||
uint32_t keyhandle, const unsigned char *keyauth,
|
||||
const unsigned char *data, uint32_t datalen,
|
||||
unsigned char *blob, uint32_t *bloblen,
|
||||
@ -579,7 +579,7 @@ out:
|
||||
/*
|
||||
* use the AUTH2_COMMAND form of unseal, to authorize both key and blob
|
||||
*/
|
||||
static int tpm_unseal(struct tpm_buf *tb,
|
||||
static int tpm_unseal(struct tpm1_buf *tb,
|
||||
uint32_t keyhandle, const unsigned char *keyauth,
|
||||
const unsigned char *blob, int bloblen,
|
||||
const unsigned char *blobauth,
|
||||
@ -670,7 +670,7 @@ static int tpm_unseal(struct tpm_buf *tb,
|
||||
static int key_seal(struct trusted_key_payload *p,
|
||||
struct trusted_key_options *o)
|
||||
{
|
||||
struct tpm_buf *tb;
|
||||
struct tpm1_buf *tb;
|
||||
int ret;
|
||||
|
||||
tb = kzalloc(sizeof *tb, GFP_KERNEL);
|
||||
@ -696,7 +696,7 @@ static int key_seal(struct trusted_key_payload *p,
|
||||
static int key_unseal(struct trusted_key_payload *p,
|
||||
struct trusted_key_options *o)
|
||||
{
|
||||
struct tpm_buf *tb;
|
||||
struct tpm1_buf *tb;
|
||||
int ret;
|
||||
|
||||
tb = kzalloc(sizeof *tb, GFP_KERNEL);
|
||||
|
Loading…
Reference in New Issue
Block a user