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0b78c9e8c1
Python 2 is no longer supported by the Python upstream project, so upgrade TPM2 tests to Python 3. Fixed minor merge conflicts Shuah Khan <skhan@linuxfoundation.org> Signed-off-by: Pengfei Xu <pengfei.xu@intel.com> Reviewed-by: Jarkko Sakkinen <jarkko.sakkinen@linux.intel.com> Tested-by: Jarkko Sakkinen <jarkko.sakkinen@linux.intel.com> Signed-off-by: Shuah Khan <skhan@linuxfoundation.org>
715 lines
20 KiB
Python
715 lines
20 KiB
Python
# SPDX-License-Identifier: (GPL-2.0 OR BSD-3-Clause)
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import hashlib
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import os
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import socket
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import struct
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import sys
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import unittest
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import fcntl
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import select
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TPM2_ST_NO_SESSIONS = 0x8001
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TPM2_ST_SESSIONS = 0x8002
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TPM2_CC_FIRST = 0x01FF
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TPM2_CC_CREATE_PRIMARY = 0x0131
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TPM2_CC_DICTIONARY_ATTACK_LOCK_RESET = 0x0139
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TPM2_CC_CREATE = 0x0153
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TPM2_CC_LOAD = 0x0157
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TPM2_CC_UNSEAL = 0x015E
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TPM2_CC_FLUSH_CONTEXT = 0x0165
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TPM2_CC_START_AUTH_SESSION = 0x0176
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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_POLICY_PCR = 0x017F
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TPM2_CC_PCR_EXTEND = 0x0182
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TPM2_CC_POLICY_PASSWORD = 0x018C
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TPM2_CC_POLICY_GET_DIGEST = 0x0189
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TPM2_SE_POLICY = 0x01
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TPM2_SE_TRIAL = 0x03
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TPM2_ALG_RSA = 0x0001
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TPM2_ALG_SHA1 = 0x0004
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TPM2_ALG_AES = 0x0006
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TPM2_ALG_KEYEDHASH = 0x0008
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TPM2_ALG_SHA256 = 0x000B
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TPM2_ALG_NULL = 0x0010
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TPM2_ALG_CBC = 0x0042
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TPM2_ALG_CFB = 0x0043
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TPM2_RH_OWNER = 0x40000001
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TPM2_RH_NULL = 0x40000007
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TPM2_RH_LOCKOUT = 0x4000000A
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TPM2_RS_PW = 0x40000009
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TPM2_RC_SIZE = 0x01D5
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TPM2_RC_AUTH_FAIL = 0x098E
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TPM2_RC_POLICY_FAIL = 0x099D
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TPM2_RC_COMMAND_CODE = 0x0143
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TSS2_RC_LAYER_SHIFT = 16
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TSS2_RESMGR_TPM_RC_LAYER = (11 << TSS2_RC_LAYER_SHIFT)
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TPM2_CAP_HANDLES = 0x00000001
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TPM2_CAP_COMMANDS = 0x00000002
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TPM2_CAP_TPM_PROPERTIES = 0x00000006
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TPM2_PT_FIXED = 0x100
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TPM2_PT_TOTAL_COMMANDS = TPM2_PT_FIXED + 41
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HR_SHIFT = 24
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HR_LOADED_SESSION = 0x02000000
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HR_TRANSIENT = 0x80000000
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SHA1_DIGEST_SIZE = 20
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SHA256_DIGEST_SIZE = 32
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TPM2_VER0_ERRORS = {
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0x000: "TPM_RC_SUCCESS",
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0x030: "TPM_RC_BAD_TAG",
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}
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TPM2_VER1_ERRORS = {
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0x000: "TPM_RC_FAILURE",
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0x001: "TPM_RC_FAILURE",
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0x003: "TPM_RC_SEQUENCE",
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0x00B: "TPM_RC_PRIVATE",
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0x019: "TPM_RC_HMAC",
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0x020: "TPM_RC_DISABLED",
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0x021: "TPM_RC_EXCLUSIVE",
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0x024: "TPM_RC_AUTH_TYPE",
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0x025: "TPM_RC_AUTH_MISSING",
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0x026: "TPM_RC_POLICY",
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0x027: "TPM_RC_PCR",
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0x028: "TPM_RC_PCR_CHANGED",
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0x02D: "TPM_RC_UPGRADE",
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0x02E: "TPM_RC_TOO_MANY_CONTEXTS",
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0x02F: "TPM_RC_AUTH_UNAVAILABLE",
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0x030: "TPM_RC_REBOOT",
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0x031: "TPM_RC_UNBALANCED",
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0x042: "TPM_RC_COMMAND_SIZE",
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0x043: "TPM_RC_COMMAND_CODE",
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0x044: "TPM_RC_AUTHSIZE",
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0x045: "TPM_RC_AUTH_CONTEXT",
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0x046: "TPM_RC_NV_RANGE",
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0x047: "TPM_RC_NV_SIZE",
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0x048: "TPM_RC_NV_LOCKED",
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0x049: "TPM_RC_NV_AUTHORIZATION",
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0x04A: "TPM_RC_NV_UNINITIALIZED",
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0x04B: "TPM_RC_NV_SPACE",
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0x04C: "TPM_RC_NV_DEFINED",
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0x050: "TPM_RC_BAD_CONTEXT",
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0x051: "TPM_RC_CPHASH",
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0x052: "TPM_RC_PARENT",
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0x053: "TPM_RC_NEEDS_TEST",
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0x054: "TPM_RC_NO_RESULT",
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0x055: "TPM_RC_SENSITIVE",
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0x07F: "RC_MAX_FM0",
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}
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TPM2_FMT1_ERRORS = {
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0x001: "TPM_RC_ASYMMETRIC",
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0x002: "TPM_RC_ATTRIBUTES",
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0x003: "TPM_RC_HASH",
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0x004: "TPM_RC_VALUE",
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0x005: "TPM_RC_HIERARCHY",
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0x007: "TPM_RC_KEY_SIZE",
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0x008: "TPM_RC_MGF",
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0x009: "TPM_RC_MODE",
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0x00A: "TPM_RC_TYPE",
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0x00B: "TPM_RC_HANDLE",
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0x00C: "TPM_RC_KDF",
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0x00D: "TPM_RC_RANGE",
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0x00E: "TPM_RC_AUTH_FAIL",
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0x00F: "TPM_RC_NONCE",
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0x010: "TPM_RC_PP",
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0x012: "TPM_RC_SCHEME",
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0x015: "TPM_RC_SIZE",
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0x016: "TPM_RC_SYMMETRIC",
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0x017: "TPM_RC_TAG",
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0x018: "TPM_RC_SELECTOR",
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0x01A: "TPM_RC_INSUFFICIENT",
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0x01B: "TPM_RC_SIGNATURE",
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0x01C: "TPM_RC_KEY",
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0x01D: "TPM_RC_POLICY_FAIL",
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0x01F: "TPM_RC_INTEGRITY",
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0x020: "TPM_RC_TICKET",
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0x021: "TPM_RC_RESERVED_BITS",
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0x022: "TPM_RC_BAD_AUTH",
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0x023: "TPM_RC_EXPIRED",
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0x024: "TPM_RC_POLICY_CC",
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0x025: "TPM_RC_BINDING",
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0x026: "TPM_RC_CURVE",
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0x027: "TPM_RC_ECC_POINT",
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}
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TPM2_WARN_ERRORS = {
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0x001: "TPM_RC_CONTEXT_GAP",
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0x002: "TPM_RC_OBJECT_MEMORY",
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0x003: "TPM_RC_SESSION_MEMORY",
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0x004: "TPM_RC_MEMORY",
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0x005: "TPM_RC_SESSION_HANDLES",
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0x006: "TPM_RC_OBJECT_HANDLES",
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0x007: "TPM_RC_LOCALITY",
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0x008: "TPM_RC_YIELDED",
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0x009: "TPM_RC_CANCELED",
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0x00A: "TPM_RC_TESTING",
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0x010: "TPM_RC_REFERENCE_H0",
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0x011: "TPM_RC_REFERENCE_H1",
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0x012: "TPM_RC_REFERENCE_H2",
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0x013: "TPM_RC_REFERENCE_H3",
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0x014: "TPM_RC_REFERENCE_H4",
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0x015: "TPM_RC_REFERENCE_H5",
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0x016: "TPM_RC_REFERENCE_H6",
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0x018: "TPM_RC_REFERENCE_S0",
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0x019: "TPM_RC_REFERENCE_S1",
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0x01A: "TPM_RC_REFERENCE_S2",
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0x01B: "TPM_RC_REFERENCE_S3",
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0x01C: "TPM_RC_REFERENCE_S4",
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0x01D: "TPM_RC_REFERENCE_S5",
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0x01E: "TPM_RC_REFERENCE_S6",
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0x020: "TPM_RC_NV_RATE",
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0x021: "TPM_RC_LOCKOUT",
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0x022: "TPM_RC_RETRY",
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0x023: "TPM_RC_NV_UNAVAILABLE",
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0x7F: "TPM_RC_NOT_USED",
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}
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RC_VER1 = 0x100
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RC_FMT1 = 0x080
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RC_WARN = 0x900
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ALG_DIGEST_SIZE_MAP = {
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TPM2_ALG_SHA1: SHA1_DIGEST_SIZE,
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TPM2_ALG_SHA256: SHA256_DIGEST_SIZE,
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}
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ALG_HASH_FUNCTION_MAP = {
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TPM2_ALG_SHA1: hashlib.sha1,
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TPM2_ALG_SHA256: hashlib.sha256
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}
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NAME_ALG_MAP = {
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"sha1": TPM2_ALG_SHA1,
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"sha256": TPM2_ALG_SHA256,
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}
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class UnknownAlgorithmIdError(Exception):
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def __init__(self, alg):
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self.alg = alg
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def __str__(self):
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return '0x%0x' % (alg)
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class UnknownAlgorithmNameError(Exception):
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def __init__(self, name):
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self.name = name
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def __str__(self):
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return name
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class UnknownPCRBankError(Exception):
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def __init__(self, alg):
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self.alg = alg
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def __str__(self):
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return '0x%0x' % (alg)
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class ProtocolError(Exception):
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def __init__(self, cc, rc):
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self.cc = cc
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self.rc = rc
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if (rc & RC_FMT1) == RC_FMT1:
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self.name = TPM2_FMT1_ERRORS.get(rc & 0x3f, "TPM_RC_UNKNOWN")
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elif (rc & RC_WARN) == RC_WARN:
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self.name = TPM2_WARN_ERRORS.get(rc & 0x7f, "TPM_RC_UNKNOWN")
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elif (rc & RC_VER1) == RC_VER1:
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self.name = TPM2_VER1_ERRORS.get(rc & 0x7f, "TPM_RC_UNKNOWN")
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else:
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self.name = TPM2_VER0_ERRORS.get(rc & 0x7f, "TPM_RC_UNKNOWN")
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def __str__(self):
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if self.cc:
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return '%s: cc=0x%08x, rc=0x%08x' % (self.name, self.cc, self.rc)
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else:
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return '%s: rc=0x%08x' % (self.name, self.rc)
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class AuthCommand(object):
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"""TPMS_AUTH_COMMAND"""
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def __init__(self, session_handle=TPM2_RS_PW, nonce=bytes(),
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session_attributes=0, hmac=bytes()):
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self.session_handle = session_handle
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self.nonce = nonce
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self.session_attributes = session_attributes
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self.hmac = hmac
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def __bytes__(self):
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fmt = '>I H%us B H%us' % (len(self.nonce), len(self.hmac))
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return struct.pack(fmt, self.session_handle, len(self.nonce),
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self.nonce, self.session_attributes, len(self.hmac),
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self.hmac)
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def __len__(self):
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fmt = '>I H%us B H%us' % (len(self.nonce), len(self.hmac))
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return struct.calcsize(fmt)
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class SensitiveCreate(object):
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"""TPMS_SENSITIVE_CREATE"""
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def __init__(self, user_auth=bytes(), data=bytes()):
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self.user_auth = user_auth
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self.data = data
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def __bytes__(self):
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fmt = '>H%us H%us' % (len(self.user_auth), len(self.data))
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return struct.pack(fmt, len(self.user_auth), self.user_auth,
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len(self.data), self.data)
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def __len__(self):
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fmt = '>H%us H%us' % (len(self.user_auth), len(self.data))
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return struct.calcsize(fmt)
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class Public(object):
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"""TPMT_PUBLIC"""
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FIXED_TPM = (1 << 1)
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FIXED_PARENT = (1 << 4)
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SENSITIVE_DATA_ORIGIN = (1 << 5)
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USER_WITH_AUTH = (1 << 6)
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RESTRICTED = (1 << 16)
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DECRYPT = (1 << 17)
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def __fmt(self):
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return '>HHIH%us%usH%us' % \
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(len(self.auth_policy), len(self.parameters), len(self.unique))
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def __init__(self, object_type, name_alg, object_attributes,
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auth_policy=bytes(), parameters=bytes(),
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unique=bytes()):
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self.object_type = object_type
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self.name_alg = name_alg
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self.object_attributes = object_attributes
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self.auth_policy = auth_policy
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self.parameters = parameters
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self.unique = unique
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def __bytes__(self):
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return struct.pack(self.__fmt(),
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self.object_type,
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self.name_alg,
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self.object_attributes,
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len(self.auth_policy),
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self.auth_policy,
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self.parameters,
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len(self.unique),
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self.unique)
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def __len__(self):
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return struct.calcsize(self.__fmt())
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def get_digest_size(alg):
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ds = ALG_DIGEST_SIZE_MAP.get(alg)
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if not ds:
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raise UnknownAlgorithmIdError(alg)
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return ds
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def get_hash_function(alg):
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f = ALG_HASH_FUNCTION_MAP.get(alg)
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if not f:
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raise UnknownAlgorithmIdError(alg)
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return f
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def get_algorithm(name):
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alg = NAME_ALG_MAP.get(name)
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if not alg:
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raise UnknownAlgorithmNameError(name)
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return alg
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def hex_dump(d):
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d = [format(ord(x), '02x') for x in d]
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d = [d[i: i + 16] for i in range(0, len(d), 16)]
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d = [' '.join(x) for x in d]
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d = os.linesep.join(d)
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return d
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class Client:
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FLAG_DEBUG = 0x01
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FLAG_SPACE = 0x02
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FLAG_NONBLOCK = 0x04
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TPM_IOC_NEW_SPACE = 0xa200
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def __init__(self, flags = 0):
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self.flags = flags
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if (self.flags & Client.FLAG_SPACE) == 0:
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self.tpm = open('/dev/tpm0', 'r+b', buffering=0)
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else:
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self.tpm = open('/dev/tpmrm0', 'r+b', buffering=0)
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if (self.flags & Client.FLAG_NONBLOCK):
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flags = fcntl.fcntl(self.tpm, fcntl.F_GETFL)
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flags |= os.O_NONBLOCK
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fcntl.fcntl(self.tpm, fcntl.F_SETFL, flags)
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self.tpm_poll = select.poll()
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def close(self):
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self.tpm.close()
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def send_cmd(self, cmd):
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self.tpm.write(cmd)
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if (self.flags & Client.FLAG_NONBLOCK):
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self.tpm_poll.register(self.tpm, select.POLLIN)
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self.tpm_poll.poll(10000)
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rsp = self.tpm.read()
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if (self.flags & Client.FLAG_NONBLOCK):
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self.tpm_poll.unregister(self.tpm)
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if (self.flags & Client.FLAG_DEBUG) != 0:
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sys.stderr.write('cmd' + os.linesep)
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sys.stderr.write(hex_dump(cmd) + os.linesep)
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sys.stderr.write('rsp' + os.linesep)
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sys.stderr.write(hex_dump(rsp) + os.linesep)
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rc = struct.unpack('>I', rsp[6:10])[0]
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if rc != 0:
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cc = struct.unpack('>I', cmd[6:10])[0]
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raise ProtocolError(cc, rc)
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return rsp
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def read_pcr(self, i, bank_alg = TPM2_ALG_SHA1):
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pcrsel_len = max((i >> 3) + 1, 3)
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pcrsel = [0] * pcrsel_len
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pcrsel[i >> 3] = 1 << (i & 7)
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pcrsel = ''.join(map(chr, pcrsel)).encode()
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fmt = '>HII IHB%us' % (pcrsel_len)
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cmd = struct.pack(fmt,
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TPM2_ST_NO_SESSIONS,
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struct.calcsize(fmt),
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TPM2_CC_PCR_READ,
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1,
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bank_alg,
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pcrsel_len, pcrsel)
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rsp = self.send_cmd(cmd)
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pcr_update_cnt, pcr_select_cnt = struct.unpack('>II', rsp[10:18])
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assert pcr_select_cnt == 1
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rsp = rsp[18:]
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alg2, pcrsel_len2 = struct.unpack('>HB', rsp[:3])
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assert bank_alg == alg2 and pcrsel_len == pcrsel_len2
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rsp = rsp[3 + pcrsel_len:]
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digest_cnt = struct.unpack('>I', rsp[:4])[0]
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if digest_cnt == 0:
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return None
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rsp = rsp[6:]
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return rsp
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def extend_pcr(self, i, dig, bank_alg = TPM2_ALG_SHA1):
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ds = get_digest_size(bank_alg)
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assert(ds == len(dig))
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auth_cmd = AuthCommand()
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fmt = '>HII I I%us IH%us' % (len(auth_cmd), ds)
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cmd = struct.pack(
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fmt,
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TPM2_ST_SESSIONS,
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struct.calcsize(fmt),
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TPM2_CC_PCR_EXTEND,
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i,
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len(auth_cmd),
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bytes(auth_cmd),
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1, bank_alg, dig)
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self.send_cmd(cmd)
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def start_auth_session(self, session_type, name_alg = TPM2_ALG_SHA1):
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fmt = '>HII IIH16sHBHH'
|
|
cmd = struct.pack(fmt,
|
|
TPM2_ST_NO_SESSIONS,
|
|
struct.calcsize(fmt),
|
|
TPM2_CC_START_AUTH_SESSION,
|
|
TPM2_RH_NULL,
|
|
TPM2_RH_NULL,
|
|
16,
|
|
('\0' * 16).encode(),
|
|
0,
|
|
session_type,
|
|
TPM2_ALG_NULL,
|
|
name_alg)
|
|
|
|
return struct.unpack('>I', self.send_cmd(cmd)[10:14])[0]
|
|
|
|
def __calc_pcr_digest(self, pcrs, bank_alg = TPM2_ALG_SHA1,
|
|
digest_alg = TPM2_ALG_SHA1):
|
|
x = []
|
|
f = get_hash_function(digest_alg)
|
|
|
|
for i in pcrs:
|
|
pcr = self.read_pcr(i, bank_alg)
|
|
if pcr is None:
|
|
return None
|
|
x += pcr
|
|
|
|
return f(bytearray(x)).digest()
|
|
|
|
def policy_pcr(self, handle, pcrs, bank_alg = TPM2_ALG_SHA1,
|
|
name_alg = TPM2_ALG_SHA1):
|
|
ds = get_digest_size(name_alg)
|
|
dig = self.__calc_pcr_digest(pcrs, bank_alg, name_alg)
|
|
if not dig:
|
|
raise UnknownPCRBankError(bank_alg)
|
|
|
|
pcrsel_len = max((max(pcrs) >> 3) + 1, 3)
|
|
pcrsel = [0] * pcrsel_len
|
|
for i in pcrs:
|
|
pcrsel[i >> 3] |= 1 << (i & 7)
|
|
pcrsel = ''.join(map(chr, pcrsel)).encode()
|
|
|
|
fmt = '>HII IH%usIHB3s' % ds
|
|
cmd = struct.pack(fmt,
|
|
TPM2_ST_NO_SESSIONS,
|
|
struct.calcsize(fmt),
|
|
TPM2_CC_POLICY_PCR,
|
|
handle,
|
|
len(dig),
|
|
bytes(dig),
|
|
1,
|
|
bank_alg,
|
|
pcrsel_len, pcrsel)
|
|
|
|
self.send_cmd(cmd)
|
|
|
|
def policy_password(self, handle):
|
|
fmt = '>HII I'
|
|
cmd = struct.pack(fmt,
|
|
TPM2_ST_NO_SESSIONS,
|
|
struct.calcsize(fmt),
|
|
TPM2_CC_POLICY_PASSWORD,
|
|
handle)
|
|
|
|
self.send_cmd(cmd)
|
|
|
|
def get_policy_digest(self, handle):
|
|
fmt = '>HII I'
|
|
cmd = struct.pack(fmt,
|
|
TPM2_ST_NO_SESSIONS,
|
|
struct.calcsize(fmt),
|
|
TPM2_CC_POLICY_GET_DIGEST,
|
|
handle)
|
|
|
|
return self.send_cmd(cmd)[12:]
|
|
|
|
def flush_context(self, handle):
|
|
fmt = '>HIII'
|
|
cmd = struct.pack(fmt,
|
|
TPM2_ST_NO_SESSIONS,
|
|
struct.calcsize(fmt),
|
|
TPM2_CC_FLUSH_CONTEXT,
|
|
handle)
|
|
|
|
self.send_cmd(cmd)
|
|
|
|
def create_root_key(self, auth_value = bytes()):
|
|
attributes = \
|
|
Public.FIXED_TPM | \
|
|
Public.FIXED_PARENT | \
|
|
Public.SENSITIVE_DATA_ORIGIN | \
|
|
Public.USER_WITH_AUTH | \
|
|
Public.RESTRICTED | \
|
|
Public.DECRYPT
|
|
|
|
auth_cmd = AuthCommand()
|
|
sensitive = SensitiveCreate(user_auth=auth_value)
|
|
|
|
public_parms = struct.pack(
|
|
'>HHHHHI',
|
|
TPM2_ALG_AES,
|
|
128,
|
|
TPM2_ALG_CFB,
|
|
TPM2_ALG_NULL,
|
|
2048,
|
|
0)
|
|
|
|
public = Public(
|
|
object_type=TPM2_ALG_RSA,
|
|
name_alg=TPM2_ALG_SHA1,
|
|
object_attributes=attributes,
|
|
parameters=public_parms)
|
|
|
|
fmt = '>HIII I%us H%us H%us HI' % \
|
|
(len(auth_cmd), len(sensitive), len(public))
|
|
cmd = struct.pack(
|
|
fmt,
|
|
TPM2_ST_SESSIONS,
|
|
struct.calcsize(fmt),
|
|
TPM2_CC_CREATE_PRIMARY,
|
|
TPM2_RH_OWNER,
|
|
len(auth_cmd),
|
|
bytes(auth_cmd),
|
|
len(sensitive),
|
|
bytes(sensitive),
|
|
len(public),
|
|
bytes(public),
|
|
0, 0)
|
|
|
|
return struct.unpack('>I', self.send_cmd(cmd)[10:14])[0]
|
|
|
|
def seal(self, parent_key, data, auth_value, policy_dig,
|
|
name_alg = TPM2_ALG_SHA1):
|
|
ds = get_digest_size(name_alg)
|
|
assert(not policy_dig or ds == len(policy_dig))
|
|
|
|
attributes = 0
|
|
if not policy_dig:
|
|
attributes |= Public.USER_WITH_AUTH
|
|
policy_dig = bytes()
|
|
|
|
auth_cmd = AuthCommand()
|
|
sensitive = SensitiveCreate(user_auth=auth_value, data=data)
|
|
|
|
public = Public(
|
|
object_type=TPM2_ALG_KEYEDHASH,
|
|
name_alg=name_alg,
|
|
object_attributes=attributes,
|
|
auth_policy=policy_dig,
|
|
parameters=struct.pack('>H', TPM2_ALG_NULL))
|
|
|
|
fmt = '>HIII I%us H%us H%us HI' % \
|
|
(len(auth_cmd), len(sensitive), len(public))
|
|
cmd = struct.pack(
|
|
fmt,
|
|
TPM2_ST_SESSIONS,
|
|
struct.calcsize(fmt),
|
|
TPM2_CC_CREATE,
|
|
parent_key,
|
|
len(auth_cmd),
|
|
bytes(auth_cmd),
|
|
len(sensitive),
|
|
bytes(sensitive),
|
|
len(public),
|
|
bytes(public),
|
|
0, 0)
|
|
|
|
rsp = self.send_cmd(cmd)
|
|
|
|
return rsp[14:]
|
|
|
|
def unseal(self, parent_key, blob, auth_value, policy_handle):
|
|
private_len = struct.unpack('>H', blob[0:2])[0]
|
|
public_start = private_len + 2
|
|
public_len = struct.unpack('>H', blob[public_start:public_start + 2])[0]
|
|
blob = blob[:private_len + public_len + 4]
|
|
|
|
auth_cmd = AuthCommand()
|
|
|
|
fmt = '>HII I I%us %us' % (len(auth_cmd), len(blob))
|
|
cmd = struct.pack(
|
|
fmt,
|
|
TPM2_ST_SESSIONS,
|
|
struct.calcsize(fmt),
|
|
TPM2_CC_LOAD,
|
|
parent_key,
|
|
len(auth_cmd),
|
|
bytes(auth_cmd),
|
|
blob)
|
|
|
|
data_handle = struct.unpack('>I', self.send_cmd(cmd)[10:14])[0]
|
|
|
|
if policy_handle:
|
|
auth_cmd = AuthCommand(session_handle=policy_handle, hmac=auth_value)
|
|
else:
|
|
auth_cmd = AuthCommand(hmac=auth_value)
|
|
|
|
fmt = '>HII I I%us' % (len(auth_cmd))
|
|
cmd = struct.pack(
|
|
fmt,
|
|
TPM2_ST_SESSIONS,
|
|
struct.calcsize(fmt),
|
|
TPM2_CC_UNSEAL,
|
|
data_handle,
|
|
len(auth_cmd),
|
|
bytes(auth_cmd))
|
|
|
|
try:
|
|
rsp = self.send_cmd(cmd)
|
|
finally:
|
|
self.flush_context(data_handle)
|
|
|
|
data_len = struct.unpack('>I', rsp[10:14])[0] - 2
|
|
|
|
return rsp[16:16 + data_len]
|
|
|
|
def reset_da_lock(self):
|
|
auth_cmd = AuthCommand()
|
|
|
|
fmt = '>HII I I%us' % (len(auth_cmd))
|
|
cmd = struct.pack(
|
|
fmt,
|
|
TPM2_ST_SESSIONS,
|
|
struct.calcsize(fmt),
|
|
TPM2_CC_DICTIONARY_ATTACK_LOCK_RESET,
|
|
TPM2_RH_LOCKOUT,
|
|
len(auth_cmd),
|
|
bytes(auth_cmd))
|
|
|
|
self.send_cmd(cmd)
|
|
|
|
def __get_cap_cnt(self, cap, pt, cnt):
|
|
handles = []
|
|
fmt = '>HII III'
|
|
|
|
cmd = struct.pack(fmt,
|
|
TPM2_ST_NO_SESSIONS,
|
|
struct.calcsize(fmt),
|
|
TPM2_CC_GET_CAPABILITY,
|
|
cap, pt, cnt)
|
|
|
|
rsp = self.send_cmd(cmd)[10:]
|
|
more_data, cap, cnt = struct.unpack('>BII', rsp[:9])
|
|
rsp = rsp[9:]
|
|
|
|
for i in range(0, cnt):
|
|
handle = struct.unpack('>I', rsp[:4])[0]
|
|
handles.append(handle)
|
|
rsp = rsp[4:]
|
|
|
|
return handles, more_data
|
|
|
|
def get_cap(self, cap, pt):
|
|
handles = []
|
|
|
|
more_data = True
|
|
while more_data:
|
|
next_handles, more_data = self.__get_cap_cnt(cap, pt, 1)
|
|
handles += next_handles
|
|
pt += 1
|
|
|
|
return handles
|