Mirror of BoringSSL (grpc依赖)
https://boringssl.googlesource.com/boringssl
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95 lines
3.7 KiB
95 lines
3.7 KiB
/* Copyright (c) 2019, Google Inc. |
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* |
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* Permission to use, copy, modify, and/or distribute this software for any |
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* purpose with or without fee is hereby granted, provided that the above |
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* copyright notice and this permission notice appear in all copies. |
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* |
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* THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES |
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* WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF |
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* MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY |
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* SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES |
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* WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN ACTION |
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* OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF OR IN |
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* CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE. */ |
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#include <openssl/ec_key.h> |
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#include <string.h> |
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#include <openssl/ec.h> |
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#include <openssl/err.h> |
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#include <openssl/digest.h> |
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#include <openssl/hkdf.h> |
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#include <openssl/mem.h> |
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#include "../fipsmodule/ec/internal.h" |
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EC_KEY *EC_KEY_derive_from_secret(const EC_GROUP *group, const uint8_t *secret, |
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size_t secret_len) { |
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#define EC_KEY_DERIVE_MAX_NAME_LEN 16 |
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const char *name = EC_curve_nid2nist(EC_GROUP_get_curve_name(group)); |
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if (name == NULL || strlen(name) > EC_KEY_DERIVE_MAX_NAME_LEN) { |
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OPENSSL_PUT_ERROR(EC, EC_R_UNKNOWN_GROUP); |
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return NULL; |
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} |
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// Assemble a label string to provide some key separation in case |secret| is |
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// misused, but ultimately it's on the caller to ensure |secret| is suitably |
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// separated. |
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static const char kLabel[] = "derive EC key "; |
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char info[sizeof(kLabel) + EC_KEY_DERIVE_MAX_NAME_LEN]; |
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OPENSSL_strlcpy(info, kLabel, sizeof(info)); |
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OPENSSL_strlcat(info, name, sizeof(info)); |
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// Generate 128 bits beyond the group order so the bias is at most 2^-128. |
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#define EC_KEY_DERIVE_EXTRA_BITS 128 |
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#define EC_KEY_DERIVE_EXTRA_BYTES (EC_KEY_DERIVE_EXTRA_BITS / 8) |
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if (EC_GROUP_order_bits(group) <= EC_KEY_DERIVE_EXTRA_BITS + 8) { |
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// The reduction strategy below requires the group order be large enough. |
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// (The actual bound is a bit tighter, but our curves are much larger than |
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// 128-bit.) |
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OPENSSL_PUT_ERROR(EC, ERR_R_INTERNAL_ERROR); |
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return NULL; |
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} |
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uint8_t derived[EC_KEY_DERIVE_EXTRA_BYTES + EC_MAX_BYTES]; |
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size_t derived_len = BN_num_bytes(&group->order) + EC_KEY_DERIVE_EXTRA_BYTES; |
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assert(derived_len <= sizeof(derived)); |
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if (!HKDF(derived, derived_len, EVP_sha256(), secret, secret_len, |
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/*salt=*/NULL, /*salt_len=*/0, (const uint8_t *)info, |
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strlen(info))) { |
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return NULL; |
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} |
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EC_KEY *key = EC_KEY_new(); |
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BN_CTX *ctx = BN_CTX_new(); |
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BIGNUM *priv = BN_bin2bn(derived, derived_len, NULL); |
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EC_POINT *pub = EC_POINT_new(group); |
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if (key == NULL || ctx == NULL || priv == NULL || pub == NULL || |
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// Reduce |priv| with Montgomery reduction. First, convert "from" |
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// Montgomery form to compute |priv| * R^-1 mod |order|. This requires |
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// |priv| be under order * R, which is true if the group order is large |
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// enough. 2^(num_bytes(order)) < 2^8 * order, so: |
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// |
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// priv < 2^8 * order * 2^128 < order * order < order * R |
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!BN_from_montgomery(priv, priv, group->order_mont, ctx) || |
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// Multiply by R^2 and do another Montgomery reduction to compute |
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// priv * R^-1 * R^2 * R^-1 = priv mod order. |
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!BN_to_montgomery(priv, priv, group->order_mont, ctx) || |
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!EC_POINT_mul(group, pub, priv, NULL, NULL, ctx) || |
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!EC_KEY_set_group(key, group) || !EC_KEY_set_public_key(key, pub) || |
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!EC_KEY_set_private_key(key, priv)) { |
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EC_KEY_free(key); |
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key = NULL; |
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goto err; |
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} |
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err: |
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OPENSSL_cleanse(derived, sizeof(derived)); |
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BN_CTX_free(ctx); |
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BN_free(priv); |
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EC_POINT_free(pub); |
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return key; |
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}
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