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128 lines
4.4 KiB
128 lines
4.4 KiB
/* |
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* Copyright (C) 2015 The Android Open Source Project |
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* |
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* Licensed under the Apache License, Version 2.0 (the "License"); |
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* you may not use this file except in compliance with the License. |
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* You may obtain a copy of the License at |
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* |
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* http://www.apache.org/licenses/LICENSE-2.0 |
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* |
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* Unless required by applicable law or agreed to in writing, software |
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* distributed under the License is distributed on an "AS IS" BASIS, |
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. |
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* See the License for the specific language governing permissions and |
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* limitations under the License. |
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*/ |
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#ifndef KEYSTORE_BLOB_H_ |
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#define KEYSTORE_BLOB_H_ |
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#include <stdint.h> |
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#include <openssl/aes.h> |
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#include <openssl/md5.h> |
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#include <keystore/keystore.h> |
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constexpr size_t kValueSize = 32768; |
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constexpr size_t kAesKeySize = 128 / 8; |
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constexpr size_t kGcmTagLength = 128 / 8; |
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constexpr size_t kGcmIvLength = 96 / 8; |
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/* Here is the file format. There are two parts in blob.value, the secret and |
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* the description. The secret is stored in ciphertext, and its original size |
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* can be found in blob.length. The description is stored after the secret in |
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* plaintext, and its size is specified in blob.info. The total size of the two |
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* parts must be no more than kValueSize bytes. The first field is the version, |
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* the second is the blob's type, and the third byte is flags. Fields other |
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* than blob.info, blob.length, and blob.value are modified by encryptBlob() |
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* and decryptBlob(). Thus they should not be accessed from outside. */ |
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struct __attribute__((packed)) blobv3 { |
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uint8_t version; |
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uint8_t type; |
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uint8_t flags; |
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uint8_t info; |
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uint8_t initialization_vector[AES_BLOCK_SIZE]; // Only 96 bits is used, rest is zeroed. |
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uint8_t aead_tag[kGcmTagLength]; |
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int32_t length; // in network byte order, only for backward compatibility |
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uint8_t value[kValueSize + AES_BLOCK_SIZE]; |
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}; |
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struct __attribute__((packed)) blobv2 { |
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uint8_t version; |
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uint8_t type; |
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uint8_t flags; |
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uint8_t info; |
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uint8_t vector[AES_BLOCK_SIZE]; |
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uint8_t encrypted[0]; // Marks offset to encrypted data. |
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uint8_t digest[MD5_DIGEST_LENGTH]; |
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uint8_t digested[0]; // Marks offset to digested data. |
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int32_t length; // in network byte order |
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uint8_t value[kValueSize + AES_BLOCK_SIZE]; |
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}; |
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static_assert(sizeof(blobv3) == sizeof(blobv2) && |
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offsetof(blobv3, initialization_vector) == offsetof(blobv2, vector) && |
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offsetof(blobv3, aead_tag) == offsetof(blobv2, digest) && |
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offsetof(blobv3, aead_tag) == offsetof(blobv2, encrypted) && |
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offsetof(blobv3, length) == offsetof(blobv2, length) && |
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offsetof(blobv3, value) == offsetof(blobv2, value), |
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"Oops. Blob layout changed."); |
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static const uint8_t CURRENT_BLOB_VERSION = 3; |
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typedef enum { |
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TYPE_ANY = 0, // meta type that matches anything |
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TYPE_GENERIC = 1, |
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TYPE_MASTER_KEY = 2, |
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TYPE_KEY_PAIR = 3, |
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TYPE_KEYMASTER_10 = 4, |
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TYPE_KEY_CHARACTERISTICS = 5, |
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} BlobType; |
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class Entropy; |
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class Blob { |
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public: |
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Blob(const uint8_t* value, size_t valueLength, const uint8_t* info, uint8_t infoLength, |
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BlobType type); |
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explicit Blob(blobv3 b); |
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Blob(); |
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~Blob() { mBlob = {}; } |
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const uint8_t* getValue() const { return mBlob.value; } |
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int32_t getLength() const { return mBlob.length; } |
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const uint8_t* getInfo() const { return mBlob.value + mBlob.length; } |
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uint8_t getInfoLength() const { return mBlob.info; } |
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uint8_t getVersion() const { return mBlob.version; } |
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bool isEncrypted() const; |
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void setEncrypted(bool encrypted); |
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bool isSuperEncrypted() const; |
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void setSuperEncrypted(bool superEncrypted); |
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bool isCriticalToDeviceEncryption() const; |
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void setCriticalToDeviceEncryption(bool critical); |
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bool isFallback() const { return mBlob.flags & KEYSTORE_FLAG_FALLBACK; } |
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void setFallback(bool fallback); |
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void setVersion(uint8_t version) { mBlob.version = version; } |
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BlobType getType() const { return BlobType(mBlob.type); } |
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void setType(BlobType type) { mBlob.type = uint8_t(type); } |
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ResponseCode writeBlob(const std::string& filename, const uint8_t* aes_key, State state, |
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Entropy* entropy); |
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ResponseCode readBlob(const std::string& filename, const uint8_t* aes_key, State state); |
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private: |
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blobv3 mBlob; |
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}; |
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#endif // KEYSTORE_BLOB_H_
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