diff options
-rw-r--r-- | news.rst | 3 | ||||
-rw-r--r-- | src/lib/misc/nist_keywrap/info.txt | 3 | ||||
-rw-r--r-- | src/lib/misc/nist_keywrap/nist_keywrap.cpp | 209 | ||||
-rw-r--r-- | src/lib/misc/nist_keywrap/nist_keywrap.h | 67 | ||||
-rw-r--r-- | src/lib/misc/rfc3394/info.txt | 1 | ||||
-rw-r--r-- | src/lib/misc/rfc3394/rfc3394.cpp | 76 | ||||
-rw-r--r-- | src/lib/misc/rfc3394/rfc3394.h | 8 | ||||
-rw-r--r-- | src/tests/data/keywrap/nist_key_wrap.vec | 550 | ||||
-rw-r--r-- | src/tests/data/keywrap/nist_key_wrap_invalid.vec | 36 | ||||
-rw-r--r-- | src/tests/data/keywrap/rfc3394.vec (renamed from src/tests/data/rfc3394.vec) | 0 | ||||
-rw-r--r-- | src/tests/test_keywrap.cpp | 130 |
11 files changed, 1008 insertions, 75 deletions
@@ -13,6 +13,9 @@ Version 2.4.0, Not Yet Released * Add support for verifying X.509 objects (certificates, CRLs, etc) using RSA-PSS signatures (GH #1270) +* Add support for AES key wrapping with padding, as specified in RFC 5649 + and NIST SP 800-38F + * Optimize GCM mode on systems both with and without carryless multiply support. This includes a new base case implementation (still constant time), a new SSSE3 implementation for systems with diff --git a/src/lib/misc/nist_keywrap/info.txt b/src/lib/misc/nist_keywrap/info.txt new file mode 100644 index 000000000..3fb3639f0 --- /dev/null +++ b/src/lib/misc/nist_keywrap/info.txt @@ -0,0 +1,3 @@ +<defines> +NIST_KEYWRAP -> 20171119 +</defines> diff --git a/src/lib/misc/nist_keywrap/nist_keywrap.cpp b/src/lib/misc/nist_keywrap/nist_keywrap.cpp new file mode 100644 index 000000000..c349f97aa --- /dev/null +++ b/src/lib/misc/nist_keywrap/nist_keywrap.cpp @@ -0,0 +1,209 @@ +/* +* (C) 2011,2017 Jack Lloyd +* +* Botan is released under the Simplified BSD License (see license.txt) +*/ + +#include <botan/nist_keywrap.h> +#include <botan/block_cipher.h> +#include <botan/loadstor.h> +#include <botan/exceptn.h> + +namespace Botan { + +namespace { + +std::vector<uint8_t> +raw_nist_key_wrap(const uint8_t input[], + size_t input_len, + const BlockCipher& bc, + uint64_t ICV) + { + const size_t n = (input_len + 7) / 8; + + secure_vector<uint8_t> R((n + 1) * 8); + secure_vector<uint8_t> A(16); + + store_be(ICV, A.data()); + + copy_mem(&R[8], input, input_len); + + for(size_t j = 0; j <= 5; ++j) + { + for(size_t i = 1; i <= n; ++i) + { + const uint32_t t = static_cast<uint32_t>((n * j) + i); + + copy_mem(&A[8], &R[8*i], 8); + + bc.encrypt(A.data()); + copy_mem(&R[8*i], &A[8], 8); + + uint8_t t_buf[4] = { 0 }; + store_be(t, t_buf); + xor_buf(&A[4], t_buf, 4); + } + } + + copy_mem(R.data(), A.data(), 8); + + return std::vector<uint8_t>(R.begin(), R.end()); + } + +secure_vector<uint8_t> +raw_nist_key_unwrap(const uint8_t input[], + size_t input_len, + const BlockCipher& bc, + uint64_t& ICV_out) + { + if(input_len < 16 || input_len % 8 != 0) + throw Invalid_Argument("Bad input size for NIST key unwrap"); + + const size_t n = (input_len - 8) / 8; + + secure_vector<uint8_t> R(n * 8); + secure_vector<uint8_t> A(16); + + for(size_t i = 0; i != 8; ++i) + A[i] = input[i]; + + copy_mem(R.data(), input + 8, input_len - 8); + + for(size_t j = 0; j <= 5; ++j) + { + for(size_t i = n; i != 0; --i) + { + const uint32_t t = static_cast<uint32_t>((5 - j) * n + i); + + uint8_t t_buf[4] = { 0 }; + store_be(t, t_buf); + + xor_buf(&A[4], t_buf, 4); + + copy_mem(&A[8], &R[8*(i-1)], 8); + + bc.decrypt(A.data()); + + copy_mem(&R[8*(i-1)], &A[8], 8); + } + } + + ICV_out = load_be<uint64_t>(A.data(), 0); + + return R; + } + +} + +std::vector<uint8_t> +nist_key_wrap(const uint8_t input[], + size_t input_len, + const BlockCipher& bc) + { + if(bc.block_size() != 16) + throw Invalid_Argument("NIST key wrap algorithm requires a 128-bit cipher"); + + if(input_len % 8 != 0) + throw Invalid_Argument("Bad input size for NIST key wrap"); + + return raw_nist_key_wrap(input, input_len, bc, 0xA6A6A6A6A6A6A6A6); + } + +secure_vector<uint8_t> +nist_key_unwrap(const uint8_t input[], + size_t input_len, + const BlockCipher& bc) + { + if(bc.block_size() != 16) + throw Invalid_Argument("NIST key wrap algorithm requires a 128-bit cipher"); + + if(input_len < 16 || input_len % 8 != 0) + throw Invalid_Argument("Bad input size for NIST key unwrap"); + + uint64_t ICV_out = 0; + + secure_vector<uint8_t> R = raw_nist_key_unwrap(input, input_len, bc, ICV_out); + + if(ICV_out != 0xA6A6A6A6A6A6A6A6) + throw Integrity_Failure("NIST key unwrap failed"); + + return R; + } + +std::vector<uint8_t> +nist_key_wrap_padded(const uint8_t input[], + size_t input_len, + const BlockCipher& bc) + { + if(bc.block_size() != 16) + throw Invalid_Argument("NIST key wrap algorithm requires a 128-bit cipher"); + + const uint64_t ICV = 0xA65959A600000000 | static_cast<uint32_t>(input_len); + + if(input_len <= 8) + { + /* + * Special case for small inputs: if input <= 8 bytes just use ECB + */ + std::vector<uint8_t> block(16); + store_be(ICV, block.data()); + copy_mem(block.data() + 8, input, input_len); + bc.encrypt(block); + return block; + } + else + { + return raw_nist_key_wrap(input, input_len, bc, ICV); + } + } + +secure_vector<uint8_t> +nist_key_unwrap_padded(const uint8_t input[], + size_t input_len, + const BlockCipher& bc) + { + if(bc.block_size() != 16) + throw Invalid_Argument("NIST key wrap algorithm requires a 128-bit cipher"); + + if(input_len < 16 || input_len % 8 != 0) + throw Invalid_Argument("Bad input size for NIST key unwrap"); + + uint64_t ICV_out = 0; + secure_vector<uint8_t> R; + + if(input_len == 16) + { + secure_vector<uint8_t> block(input, input + input_len); + bc.decrypt(block); + + ICV_out = load_be<uint64_t>(block.data(), 0); + R.resize(8); + copy_mem(R.data(), block.data() + 8, 8); + } + else + { + R = raw_nist_key_unwrap(input, input_len, bc, ICV_out); + } + + if((ICV_out >> 32) != 0xA65959A6) + throw Integrity_Failure("NIST key unwrap failed"); + + const size_t len = (ICV_out & 0xFFFFFFFF); + + if(len > R.size() || len < R.size() - 8) + throw Integrity_Failure("NIST key unwrap failed"); + + const size_t padding = R.size() - len; + + for(size_t i = 0; i != padding; ++i) + { + if(R[R.size() - i - 1] != 0) + throw Integrity_Failure("NIST key unwrap failed"); + } + + R.resize(R.size() - padding); + + return R; + } + +} diff --git a/src/lib/misc/nist_keywrap/nist_keywrap.h b/src/lib/misc/nist_keywrap/nist_keywrap.h new file mode 100644 index 000000000..022b4016f --- /dev/null +++ b/src/lib/misc/nist_keywrap/nist_keywrap.h @@ -0,0 +1,67 @@ +/* +* (C) 2011,2017 Jack Lloyd +* +* Botan is released under the Simplified BSD License (see license.txt) +*/ + +#ifndef BOTAN_NIST_KEY_WRAP_H_ +#define BOTAN_NIST_KEY_WRAP_H_ + +#include <botan/secmem.h> + +namespace Botan { + +class BlockCipher; + +/** +* Key wrap. See RFC 3394 and NIST SP800-38F +* @param input the value to be encrypted +* @param input_len length of input, must be a multiple of 8 +* @param bc a keyed 128-bit block cipher that will be used to encrypt input +* @return input encrypted under NIST key wrap algorithm +*/ +std::vector<uint8_t> BOTAN_PUBLIC_API(2,4) +nist_key_wrap(const uint8_t input[], + size_t input_len, + const BlockCipher& bc); + +/** +* @param input the value to be decrypted, output of nist_key_wrap +* @param input_len length of input +* @param bc a keyed 128-bit block cipher that will be used to decrypt input +* @return input decrypted under NIST key wrap algorithm +* Throws an exception if decryption fails. +*/ +secure_vector<uint8_t> BOTAN_PUBLIC_API(2,4) +nist_key_unwrap(const uint8_t input[], + size_t input_len, + const BlockCipher& bc); + +/** +* KWP (key wrap with padding). See RFC 5649 and NIST SP800-38F +* @param input the value to be encrypted +* @param input_len length of input +* @param bc a keyed 128-bit block cipher that will be used to encrypt input +* @return input encrypted under NIST key wrap algorithm +*/ +std::vector<uint8_t> BOTAN_PUBLIC_API(2,4) +nist_key_wrap_padded(const uint8_t input[], + size_t input_len, + const BlockCipher& bc); + +/** +* @param input the value to be decrypted, output of nist_key_wrap +* @param input_len length of input +* @param bc a keyed 128-bit block cipher that will be used to decrypt input +* @return input decrypted under NIST key wrap algorithm +* Throws an exception if decryption fails. +*/ +secure_vector<uint8_t> BOTAN_PUBLIC_API(2,4) +nist_key_unwrap_padded(const uint8_t input[], + size_t input_len, + const BlockCipher& bc); + + +} + +#endif diff --git a/src/lib/misc/rfc3394/info.txt b/src/lib/misc/rfc3394/info.txt index ac56ee833..075834219 100644 --- a/src/lib/misc/rfc3394/info.txt +++ b/src/lib/misc/rfc3394/info.txt @@ -4,4 +4,5 @@ RFC3394_KEYWRAP -> 20131128 <requires> aes +nist_keywrap </requires> diff --git a/src/lib/misc/rfc3394/rfc3394.cpp b/src/lib/misc/rfc3394/rfc3394.cpp index 3bb792723..8e69933c7 100644 --- a/src/lib/misc/rfc3394/rfc3394.cpp +++ b/src/lib/misc/rfc3394/rfc3394.cpp @@ -6,18 +6,14 @@ */ #include <botan/rfc3394.h> +#include <botan/nist_keywrap.h> #include <botan/block_cipher.h> -#include <botan/loadstor.h> -#include <botan/exceptn.h> namespace Botan { secure_vector<uint8_t> rfc3394_keywrap(const secure_vector<uint8_t>& key, - const SymmetricKey& kek) + const SymmetricKey& kek) { - if(key.size() % 8 != 0) - throw Invalid_Argument("Bad input key size for NIST key wrap"); - if(kek.size() != 16 && kek.size() != 24 && kek.size() != 32) throw Invalid_Argument("Bad KEK length " + std::to_string(kek.size()) + " for NIST key wrap"); @@ -25,40 +21,12 @@ secure_vector<uint8_t> rfc3394_keywrap(const secure_vector<uint8_t>& key, std::unique_ptr<BlockCipher> aes(BlockCipher::create_or_throw(cipher_name)); aes->set_key(kek); - const size_t n = key.size() / 8; - - secure_vector<uint8_t> R((n + 1) * 8); - secure_vector<uint8_t> A(16); - - for(size_t i = 0; i != 8; ++i) - A[i] = 0xA6; - - copy_mem(&R[8], key.data(), key.size()); - - for(size_t j = 0; j <= 5; ++j) - { - for(size_t i = 1; i <= n; ++i) - { - const uint32_t t = static_cast<uint32_t>((n * j) + i); - - copy_mem(&A[8], &R[8*i], 8); - - aes->encrypt(A.data()); - copy_mem(&R[8*i], &A[8], 8); - - uint8_t t_buf[4] = { 0 }; - store_be(t, t_buf); - xor_buf(&A[4], t_buf, 4); - } - } - - copy_mem(R.data(), A.data(), 8); - - return R; + std::vector<uint8_t> wrapped = nist_key_wrap(key.data(), key.size(), *aes); + return secure_vector<uint8_t>(wrapped.begin(), wrapped.end()); } secure_vector<uint8_t> rfc3394_keyunwrap(const secure_vector<uint8_t>& key, - const SymmetricKey& kek) + const SymmetricKey& kek) { if(key.size() < 16 || key.size() % 8 != 0) throw Invalid_Argument("Bad input key size for NIST key unwrap"); @@ -70,39 +38,7 @@ secure_vector<uint8_t> rfc3394_keyunwrap(const secure_vector<uint8_t>& key, std::unique_ptr<BlockCipher> aes(BlockCipher::create_or_throw(cipher_name)); aes->set_key(kek); - const size_t n = (key.size() - 8) / 8; - - secure_vector<uint8_t> R(n * 8); - secure_vector<uint8_t> A(16); - - for(size_t i = 0; i != 8; ++i) - A[i] = key[i]; - - copy_mem(R.data(), &key[8], key.size() - 8); - - for(size_t j = 0; j <= 5; ++j) - { - for(size_t i = n; i != 0; --i) - { - const uint32_t t = static_cast<uint32_t>((5 - j) * n + i); - - uint8_t t_buf[4] = { 0 }; - store_be(t, t_buf); - - xor_buf(&A[4], t_buf, 4); - - copy_mem(&A[8], &R[8*(i-1)], 8); - - aes->decrypt(A.data()); - - copy_mem(&R[8*(i-1)], &A[8], 8); - } - } - - if(load_be<uint64_t>(A.data(), 0) != 0xA6A6A6A6A6A6A6A6) - throw Integrity_Failure("NIST key unwrap failed"); - - return R; + return nist_key_unwrap(key.data(), key.size(), *aes); } } diff --git a/src/lib/misc/rfc3394/rfc3394.h b/src/lib/misc/rfc3394/rfc3394.h index 77e602fda..9cfcfaaf6 100644 --- a/src/lib/misc/rfc3394/rfc3394.h +++ b/src/lib/misc/rfc3394/rfc3394.h @@ -5,8 +5,8 @@ * Botan is released under the Simplified BSD License (see license.txt) */ -#ifndef BOTAN_AES_KEY_WRAP_H_ -#define BOTAN_AES_KEY_WRAP_H_ +#ifndef BOTAN_RFC3394_H_ +#define BOTAN_RFC3394_H_ #include <botan/symkey.h> @@ -21,7 +21,7 @@ namespace Botan { * @return key encrypted under kek */ secure_vector<uint8_t> BOTAN_PUBLIC_API(2,0) rfc3394_keywrap(const secure_vector<uint8_t>& key, - const SymmetricKey& kek); + const SymmetricKey& kek); /** * Decrypt a key under a key encryption key using the algorithm @@ -32,7 +32,7 @@ secure_vector<uint8_t> BOTAN_PUBLIC_API(2,0) rfc3394_keywrap(const secure_vector * @return key decrypted under kek */ secure_vector<uint8_t> BOTAN_PUBLIC_API(2,0) rfc3394_keyunwrap(const secure_vector<uint8_t>& key, - const SymmetricKey& kek); + const SymmetricKey& kek); } diff --git a/src/tests/data/keywrap/nist_key_wrap.vec b/src/tests/data/keywrap/nist_key_wrap.vec new file mode 100644 index 000000000..5846ce0e9 --- /dev/null +++ b/src/tests/data/keywrap/nist_key_wrap.vec @@ -0,0 +1,550 @@ + +[KW] + +Input = 00112233445566778899AABBCCDDEEFF +Key = 000102030405060708090A0B0C0D0E0F +Output = 1FA68B0A8112B447AEF34BD8FB5A7B829D3E862371D2CFE5 + +Input = 00112233445566778899AABBCCDDEEFF +Key = 000102030405060708090A0B0C0D0E0F1011121314151617 +Output = 96778B25AE6CA435F92B5B97C050AED2468AB8A17AD84E5D + +Input = 00112233445566778899AABBCCDDEEFF +Key = 000102030405060708090A0B0C0D0E0F101112131415161718191A1B1C1D1E1F +Output = 64E8C3F9CE0F5BA263E9777905818A2A93C8191E7D6E8AE7 + +Input = 00112233445566778899AABBCCDDEEFF0001020304050607 +Key = 000102030405060708090A0B0C0D0E0F1011121314151617 +Output = 031D33264E15D33268F24EC260743EDCE1C6C7DDEE725A936BA814915C6762D2 + +Input = 00112233445566778899AABBCCDDEEFF0001020304050607 +Key = 000102030405060708090A0B0C0D0E0F101112131415161718191A1B1C1D1E1F +Output = A8F9BC1612C68B3FF6E6F4FBE30E71E4769C8B80A32CB8958CD5D17D6B254DA1 + +Input = 00112233445566778899AABBCCDDEEFF000102030405060708090A0B0C0D0E0F +Key = 000102030405060708090A0B0C0D0E0F101112131415161718191A1B1C1D1E1F +Output = 28C9F404C4B810F4CBCCB35CFB87F8263F5786E2D80ED326CBC7F0E71A99F43BFB988B9B7A02DD21 + +[KWP] + +# From RFC 5649 + +Key = 5840df6e29b02af1ab493b705bf16ea1ae8338f4dcc176a8 +Input = c37b7e6492584340bed12207808941155068f738 +Output = 138bdeaa9b8fa7fc61f97742e72248ee5ae6ae5360d1ae6a5f54f373fa543b6a + +Key = 5840df6e29b02af1ab493b705bf16ea1ae8338f4dcc176a8 +Input = 466f7250617369 +Output = afbeb0f07dfbf5419200f2ccb50bb24f + +# Following values generated by OpenSSL + +Key = 00000000000000000000000000000000 +Input = 00 +Output = A9D2D4394815D53F2799ABD7E51D2C8B + +Key = 00000000000000000000000000000000 +Input = 0001 +Output = 36D0CA197F638BF478D022C7E543B699 + +Key = 00000000000000000000000000000000 +Input = 000102 +Output = DAB4EE2853E1C44C5E553E644143902B + +Key = 00000000000000000000000000000000 +Input = 00010203 +Output = 446C037F831092B147C372616357BF7D + +Key = 00000000000000000000000000000000 +Input = 0001020304 +Output = 9ED0AF6457B82E0DDADBD2240A303D74 + +Key = 00000000000000000000000000000000 +Input = 000102030405 +Output = D863A8CE0DF301A564945259B4F74E7D + +Key = 00000000000000000000000000000000 +Input = 00010203040506 +Output = E8387E5456242B0C30BE77FC1FF0C1FD + +Key = 00000000000000000000000000000000 +Input = 0001020304050607 +Output = 01FF4C430CDF3D2D815B0972B23D7C35 + +Key = 00000000000000000000000000000000 +Input = 000102030405060708 +Output = C06E2163E0CC845B348E012AC9413DEEE40C8C3B030A3681 + +Key = 00000000000000000000000000000000 +Input = 00010203040506070809 +Output = 3DFD2F643C38B07E121C77C2CA0EF82DA742B0989B6D848E + +Key = 00000000000000000000000000000000 +Input = 000102030405060708090A +Output = AFAEF390634E21E754FD09F55A4EDD918A1D23ECA9B76F2B + +Key = 00000000000000000000000000000000 +Input = 000102030405060708090A0B +Output = A42D14C830F64F0A73570BFA7FDF8DDDD5E3AD3065A09FB0 + +Key = 00000000000000000000000000000000 +Input = 000102030405060708090A0B0C +Output = 83F23527625FC643942279D090C1B61D10FC978B54D778CD + +Key = 00000000000000000000000000000000 +Input = 000102030405060708090A0B0C0D +Output = E073C30E0DAC595F9FD28A0CB9E53945B26D1E1DE4E66D04 + +Key = 00000000000000000000000000000000 +Input = 000102030405060708090A0B0C0D0E +Output = 64E3C2F7E0F7CB297C6B8C4CAF665F9F0A3F7082D2522635 + +Key = 00000000000000000000000000000000 +Input = 000102030405060708090A0B0C0D0E0F +Output = 8F5982C7D265A0A40FC81D2326429A0A65BCD1368F0E16CB + +Key = 00000000000000000000000000000000 +Input = 000102030405060708090A0B0C0D0E0F10 +Output = E29EC6664BCBA00986DD9845F8C4B26472BFDDF98522E537B5D23D5D2A8D02C5 + +Key = 00000000000000000000000000000000 +Input = 000102030405060708090A0B0C0D0E0F1011 +Output = 9451ABCA0B9756A183F8C9ADA834E1AD2400B693C33624E59F26C35AC1586E2B + +Key = 00000000000000000000000000000000 +Input = 000102030405060708090A0B0C0D0E0F101112 +Output = F03CB49A65FD3EF8FC83C52F029A3D73667D5B84DB429C38436619ED8320D12E + +Key = 00000000000000000000000000000000 +Input = 000102030405060708090A0B0C0D0E0F10111213 +Output = 759524B855037849812D62979A18F24D3E672C2663DEA9204BA5A639FB7DB292 + +Key = 00000000000000000000000000000000 +Input = 000102030405060708090A0B0C0D0E0F1011121314 +Output = F352B8228FBFA0769C2E3858D7451FA603E9B751CFE780ED0F93C850C7870259 + +Key = 00000000000000000000000000000000 +Input = 000102030405060708090A0B0C0D0E0F101112131415 +Output = 3491F4C8D916A1BC3824D1478EC746BE8C837415017ED52A1ABC30FB14DDE825 + +Key = 00000000000000000000000000000000 +Input = 000102030405060708090A0B0C0D0E0F10111213141516 +Output = 0E6E35C5B9D706C2FF2C4C6CFCF254849879D6C1CB577E0A73BB12CBC7AC9740 + +Key = 00000000000000000000000000000000 +Input = 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6E1C71E71669D7CCC469DBA5342B6C14192A0E25A086352A3DD4558A12E1C348FDB1923C31C63F560C08F963B50D4BE52C21989B7A6D83AA14CA8A6089124734734AC4CF4F4C6AC2721D76BCB811F91507E975E4058F1FAF + +Key = 00000000000000000000000000000000 +Input = 000102030405060708090A0B0C0D0E0F101112131415161718191A1B1C1D1E1F202122232425262728292A2B2C2D2E2F303132333435363738393A3B3C3D3E3F404142434445464748494A4B4C4D4E4F +Output = 518BF14BE0D60D53D184D05068C0795E6AB1846949937546886552F23581A4A934DB2496731E93BDCFD43A78343FBEFDBC8A8B55D5E1A94AD03EEF07BFD32CEECA1A8816BEE47B846E4A368A30D64C10B993CC041EA69073 + +Key = 00000000000000000000000000000000 +Input = 000102030405060708090A0B0C0D0E0F101112131415161718191A1B1C1D1E1F202122232425262728292A2B2C2D2E2F303132333435363738393A3B3C3D3E3F404142434445464748494A4B4C4D4E4F50 +Output = B1BC96690224BEAF3F51EE319CE697E8DAF7A666B676239F7C32B7FFE63040F601B8EDEF54D90B243A39C9CD56CDD3AC14CBE89F45D5958798F7DAB6B6F2092FC38F1D5BDA51F06ED67B75AF2587015B1AD21C10C63ACBFB0707D5CC651F8458 + +Key = 00000000000000000000000000000000 +Input = 000102030405060708090A0B0C0D0E0F101112131415161718191A1B1C1D1E1F202122232425262728292A2B2C2D2E2F303132333435363738393A3B3C3D3E3F404142434445464748494A4B4C4D4E4F5051 +Output = 649D67FEF0AE7432B793DE16B3C27598088E87DFD1A4CDA952703412B3828DBA04F9188FD823C03F6221DDBAD16C3728D40FFA2FD88DB52964E556B28D5CE532A52DAC53C7C3258FF2EE12CE901825372A01DCFCAA07C0B55773532838D9CDF0 + +Key = 00000000000000000000000000000000 +Input = 000102030405060708090A0B0C0D0E0F101112131415161718191A1B1C1D1E1F202122232425262728292A2B2C2D2E2F303132333435363738393A3B3C3D3E3F404142434445464748494A4B4C4D4E4F505152 +Output = 997555B6E7CBDF2D1A010AA7865CA84781A2FA2C4F32762D234A0895BC62004B6BDEE39953B6236B0889147398A8BFDD609D92531325E4B7926DA0B06CD9026B032A929F6172DDCB99C6D42D35F9FC94D6C3ADAF0522D5F3D05217405645FB16 + +Key = 00000000000000000000000000000000 +Input = 000102030405060708090A0B0C0D0E0F101112131415161718191A1B1C1D1E1F202122232425262728292A2B2C2D2E2F303132333435363738393A3B3C3D3E3F404142434445464748494A4B4C4D4E4F50515253 +Output = 7B8582D74051A6DB1B7483D26E0612B86E55ED0CBB7BA88A676049F6DE0EF4C9C4D719B66DECF1A5E6F23653B705E6BF9BDBF423F905944E51D65D1DC792A2D3554B4C427E9CA40B4C406AAF58ED611109F97DE8B05B1ACA8F9C76118F2AA925 + +Key = 00000000000000000000000000000000 +Input = 000102030405060708090A0B0C0D0E0F101112131415161718191A1B1C1D1E1F202122232425262728292A2B2C2D2E2F303132333435363738393A3B3C3D3E3F404142434445464748494A4B4C4D4E4F5051525354 +Output = BA9D1128654C32AC040C7B8460774CADB9E38D9EA07D034FA83516D9E06802FB55F5872C16EF5695EAF6C6A9DAEEE83748793843F213C54A778D4524C72C5ADF5F02801FB2F6C2FC9EC4B8299A42BC33BEA4C7DDEB6A5CF492F4F757ED9A3A86 + +Key = 00000000000000000000000000000000 +Input = 000102030405060708090A0B0C0D0E0F101112131415161718191A1B1C1D1E1F202122232425262728292A2B2C2D2E2F303132333435363738393A3B3C3D3E3F404142434445464748494A4B4C4D4E4F505152535455 +Output = DBEB24A8A1198084F973517C8457DB028ED6DB5D1E3D97AE75F1E33EF7D63148DD60AF68F6378E04CE46D6B466C46F4089AA94C36FB0BE591E8D41547A55534E3B004CE4AABE1890B258317EEA581682D9DA7891B2A3AD5186E579B7403A6910 + +Key = 00000000000000000000000000000000 +Input = 000102030405060708090A0B0C0D0E0F101112131415161718191A1B1C1D1E1F202122232425262728292A2B2C2D2E2F303132333435363738393A3B3C3D3E3F404142434445464748494A4B4C4D4E4F50515253545556 +Output = 9325A7B4B743ADBDEB4F8E9BF92672CBD3E6D29AED20B24415B8D8ADFF2C7652573401BBF7C45386AC6D93F70BFCFF2351489EFDA6720EB9C1BAADFE1D52CED1D0754B5F00EDC1CD8AE4654EB2E0215FC694E64B32A09CF7DA0FCCE5875E0A90 + +Key = 00000000000000000000000000000000 +Input = 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2D15CBC166B3EDFB652B09120251DFC5092756E66AE810B1957A9425B2A592D4D21C9E5DC63FBAF0F5079E94F11326599C8D9E71BCA4E9EA6FE11FBFB6901D6A7E2106C1354B18FF6329C6B3E76FDE3A01CC268B7A01562C55CE3B3BF261CDE406750CDAA016FA990951494E54B13469AA6143F205F8D86544C672EB8369A5F363CB0E8355D92083 + +Key = 00000000000000000000000000000000 +Input = 000102030405060708090A0B0C0D0E0F101112131415161718191A1B1C1D1E1F202122232425262728292A2B2C2D2E2F303132333435363738393A3B3C3D3E3F404142434445464748494A4B4C4D4E4F505152535455565758595A5B5C5D5E5F606162636465666768696A6B6C6D6E6F707172737475767778797A7B +Output = 19BC8957D0E3C941EBDE22B87A81AE8B422BF122C0C4AD133DC11FF43529039DC9D8671CC4B073C9A1C52A86C0B8F917A0D747224671F87CF3CFFAC440A2843398311A12EEDE2709C4C75C9955BBD9B7D3B2E58B7BBB428D62F20C58C6985CB3292CD82D1E2350071C91FFA08F3C27AAC312B47BBCB5ADE3877F4AB64DA88C1F82D89E78A76E73F6 + +Key = 00000000000000000000000000000000 +Input = 000102030405060708090A0B0C0D0E0F101112131415161718191A1B1C1D1E1F202122232425262728292A2B2C2D2E2F303132333435363738393A3B3C3D3E3F404142434445464748494A4B4C4D4E4F505152535455565758595A5B5C5D5E5F606162636465666768696A6B6C6D6E6F707172737475767778797A7B7C +Output = 80C4B26C03B3FC542BD0674E46BE692606D7D0107EAF03E4AC3DB176D9CE0CE5104A9E5E9CA94BBB402C35643FEB6D08D5C9B7496141033CDFAB7D02FA6293D2EF001354C9565B875CA781872D922B4A4BFC2948295D7FB7C6874DAF9D0F10F24FA07338E08054A02A30D4E27F1C4A7BE139971CF4F5F1862AD7E0C170F5ABFE13EC19F5D7E37CA2 + +Key = 00000000000000000000000000000000 +Input = 000102030405060708090A0B0C0D0E0F101112131415161718191A1B1C1D1E1F202122232425262728292A2B2C2D2E2F303132333435363738393A3B3C3D3E3F404142434445464748494A4B4C4D4E4F505152535455565758595A5B5C5D5E5F606162636465666768696A6B6C6D6E6F707172737475767778797A7B7C7D +Output = 0321201DA921361D45A6F9BF613CE15316945C2C3D52D9DDB2D6FA33549CFC4C0837FEBAB65E9AEB2777E4B4D367BC9F0A15683A1BB5805A3292A7DAC59CD1E73524F561FF1E2BDE898FB2605648B385F9A1AA38A10581F4F5DDB31DD54A777F91F21C1B8F61FCD5D3884AE083A5C90545B807FB3EEBD472A81B574718CEE428D5A0FAF776A5229A + +Key = 00000000000000000000000000000000 +Input = 000102030405060708090A0B0C0D0E0F101112131415161718191A1B1C1D1E1F202122232425262728292A2B2C2D2E2F303132333435363738393A3B3C3D3E3F404142434445464748494A4B4C4D4E4F505152535455565758595A5B5C5D5E5F606162636465666768696A6B6C6D6E6F707172737475767778797A7B7C7D7E +Output = AF2187578A2495DB2A746058D04E2902C83134D727E750C37681015921A852D1E796D2B6D352C86A1F31B891C7EF5A7BB03CF2D61C941D6DC51F5DEDA91C512921E631C8287175EF9D49365F86B4D27160B0CDCC7755E1C60E52C60579014BD705BFEA6323CED9F4072A06CA00BD8A57F69BB87966CC34811DADAA52CC92823AC5DB2AFBA20369D8 + +[KWP.INVALID] diff --git a/src/tests/data/keywrap/nist_key_wrap_invalid.vec b/src/tests/data/keywrap/nist_key_wrap_invalid.vec new file mode 100644 index 000000000..97f2a18af --- /dev/null +++ b/src/tests/data/keywrap/nist_key_wrap_invalid.vec @@ -0,0 +1,36 @@ + +# From CAVS + +[KW] +Key = a377331672bf423c0e523d39bb549493 +Input = 1f3c7f161fa59b93b3df55ffa092b0e557f92397a0d40159 + +Key = accc4b014123f9e95d3c6f92d07da9fd +Input = 020cc7c82b6b7cd2ff4d28186930305edce13d65cc36d8d1 + +Key = 25be3d1d7fa0d1e6d7c97d78f80f538e +Input = 5913a3d046449f5a7ceb5e1e8576e2744b96f179978edcb8 + +Key = 95af5484f263f99346fc45578b651f0a +Input = ed6d3a9014809c0024d0b066e8a9850b6b27f5d320986a6c + +Key = 58f3ac243b1f937e6b131fb06b723277 +Input = d542544d8ff9d1454ecd2104b17d5f13756b2a6c8b15f5f3 + +Key = c5cbee63ff4ec496d7a4c4f2c09554ed +Input = e53da2e62d1a358678f91ff8e421eb84ab00b93239023ba4 + +Key = 5148bdfb74e1a52f5c8cb24c36981019 +Input = 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 + +[KWP] + +Key = 659fc41b910ed045a76707d722ff6fa8 +Input = 4d4b37f9ca2416b2942f34f702f0cd37 + +Key = 49ba2b4ac8919de4e7e4cb2648b5dab6 +Input = 3d9afc5661d9c8e0343e1c362b9b2bc5 + +Key = 6801637408f46b912c14330a88ce02d9 +Input = 31f78f54d749e02014a8580f600ae1de796e08efa4f6b60230b979f133a0b735967304b67e280cf25805ab55a16765ba209a4eb66eeb902b90db633d9df1e71e1f707e8fc938adc415b051b6bfb452816f51cd820197b79d16816bd5263b10cd6ceec3239aa1288c731e146a9c8e7bd0 + diff --git a/src/tests/data/rfc3394.vec b/src/tests/data/keywrap/rfc3394.vec index 29192789c..29192789c 100644 --- a/src/tests/data/rfc3394.vec +++ b/src/tests/data/keywrap/rfc3394.vec diff --git a/src/tests/test_keywrap.cpp b/src/tests/test_keywrap.cpp index d710dfc68..a5b216562 100644 --- a/src/tests/test_keywrap.cpp +++ b/src/tests/test_keywrap.cpp @@ -10,6 +10,11 @@ #include <botan/rfc3394.h> #endif +#if defined(BOTAN_HAS_NIST_KEYWRAP) + #include <botan/nist_keywrap.h> + #include <botan/block_cipher.h> +#endif + namespace Botan_Tests { namespace { @@ -18,7 +23,7 @@ namespace { class RFC3394_Keywrap_Tests final : public Text_Based_Test { public: - RFC3394_Keywrap_Tests() : Text_Based_Test("rfc3394.vec", "Key,KEK,Output") {} + RFC3394_Keywrap_Tests() : Text_Based_Test("keywrap/rfc3394.vec", "Key,KEK,Output") {} Test::Result run_one_test(const std::string&, const VarMap& vars) override { @@ -50,6 +55,129 @@ class RFC3394_Keywrap_Tests final : public Text_Based_Test BOTAN_REGISTER_TEST("rfc3394", RFC3394_Keywrap_Tests); #endif +#if defined(BOTAN_HAS_NIST_KEYWRAP) && defined(BOTAN_HAS_AES) + +class NIST_Keywrap_Tests final : public Text_Based_Test + { + public: + NIST_Keywrap_Tests() : Text_Based_Test("keywrap/nist_key_wrap.vec", "Input,Key,Output") {} + + Test::Result run_one_test(const std::string& typ, const VarMap& vars) override + { + Test::Result result("NIST keywrap"); + + try + { + if(typ != "KW" && typ != "KWP") + throw Test_Error("Unknown type in NIST key wrap tests"); + + const std::vector<uint8_t> expected = get_req_bin(vars, "Output"); + const std::vector<uint8_t> input = get_req_bin(vars, "Input"); + const std::vector<uint8_t> key = get_req_bin(vars, "Key"); + + std::unique_ptr<Botan::BlockCipher> bc = + Botan::BlockCipher::create_or_throw("AES-" + std::to_string(key.size()*8)); + + bc->set_key(key); + + std::vector<uint8_t> wrapped; + + if(typ == "KW") + { + wrapped = nist_key_wrap(input.data(), input.size(), *bc); + } + else if(typ == "KWP") + { + wrapped = nist_key_wrap_padded(input.data(), input.size(), *bc); + } + + result.test_eq("key wrap", wrapped, expected); + + try + { + Botan::secure_vector<uint8_t> unwrapped; + if(typ == "KW") + { + unwrapped = nist_key_unwrap(expected.data(), expected.size(), *bc); + } + else if(typ == "KWP") + { + unwrapped = nist_key_unwrap_padded(expected.data(), expected.size(), *bc); + } + + result.test_eq("key unwrap", unwrapped, input); + } + catch(Botan::Integrity_Failure& e) + { + result.test_failure("NIST key unwrap failed with integrity failure", e.what()); + } + } + catch(std::exception& e) + { + result.test_failure("", e.what()); + } + + return result; + } + + }; + +BOTAN_REGISTER_TEST("nist_key_wrap", NIST_Keywrap_Tests); + +class NIST_Keywrap_Invalid_Tests final : public Text_Based_Test + { + public: + NIST_Keywrap_Invalid_Tests() : Text_Based_Test("keywrap/nist_key_wrap_invalid.vec", "Key,Input") {} + + Test::Result run_one_test(const std::string& typ, const VarMap& vars) override + { + Test::Result result("NIST keywrap (invalid inputs)"); + + try + { + if(typ != "KW" && typ != "KWP") + throw Test_Error("Unknown type in NIST key wrap tests"); + + const std::vector<uint8_t> input = get_req_bin(vars, "Input"); + const std::vector<uint8_t> key = get_req_bin(vars, "Key"); + + std::unique_ptr<Botan::BlockCipher> bc = + Botan::BlockCipher::create_or_throw("AES-" + std::to_string(key.size()*8)); + + bc->set_key(key); + + try + { + Botan::secure_vector<uint8_t> unwrapped; + if(typ == "KW") + { + unwrapped = nist_key_unwrap(input.data(), input.size(), *bc); + } + else if(typ == "KWP") + { + unwrapped = nist_key_unwrap_padded(input.data(), input.size(), *bc); + } + + result.test_failure("Was able to unwrap invalid keywrap input"); + } + catch(Botan::Integrity_Failure) + { + result.test_success("Rejected invalid input"); + } + } + catch(std::exception& e) + { + result.test_failure("", e.what()); + } + + return result; + } + + }; + +BOTAN_REGISTER_TEST("nist_key_wrap_invalid", NIST_Keywrap_Invalid_Tests); +#endif + } } |