Add TLS-PRF using HMAC with P_SHA384 for TEAP
This version of TLS PRF is needed when using TEAP with TLS ciphersuites that are defined to use SHA384 instead of SHA256. Signed-off-by: Jouni Malinen <j@w1.fi>
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6 changed files with 94 additions and 0 deletions
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@ -494,6 +494,8 @@ OBJS += src/eap_common/eap_teap_common.c
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TLS_FUNCS=y
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TLS_FUNCS=y
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NEED_T_PRF=y
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NEED_T_PRF=y
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NEED_SHA384=y
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NEED_SHA384=y
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NEED_TLS_PRF_SHA256=y
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NEED_TLS_PRF_SHA384=y
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NEED_AES_UNWRAP=y
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NEED_AES_UNWRAP=y
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endif
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endif
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@ -923,6 +925,9 @@ endif
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ifdef NEED_TLS_PRF_SHA256
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ifdef NEED_TLS_PRF_SHA256
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OBJS += src/crypto/sha256-tlsprf.c
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OBJS += src/crypto/sha256-tlsprf.c
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endif
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endif
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ifdef NEED_TLS_PRF_SHA384
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OBJS += src/crypto/sha384-tlsprf.c
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endif
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ifdef NEED_HMAC_SHA256_KDF
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ifdef NEED_HMAC_SHA256_KDF
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OBJS += src/crypto/sha256-kdf.c
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OBJS += src/crypto/sha256-kdf.c
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endif
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endif
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@ -533,6 +533,8 @@ OBJS += ../src/eap_common/eap_teap_common.o
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TLS_FUNCS=y
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TLS_FUNCS=y
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NEED_T_PRF=y
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NEED_T_PRF=y
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NEED_SHA384=y
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NEED_SHA384=y
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NEED_TLS_PRF_SHA256=y
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NEED_TLS_PRF_SHA384=y
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NEED_AES_UNWRAP=y
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NEED_AES_UNWRAP=y
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endif
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endif
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@ -1068,6 +1070,9 @@ endif
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ifdef NEED_TLS_PRF_SHA256
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ifdef NEED_TLS_PRF_SHA256
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OBJS += ../src/crypto/sha256-tlsprf.o
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OBJS += ../src/crypto/sha256-tlsprf.o
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endif
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endif
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ifdef NEED_TLS_PRF_SHA384
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OBJS += ../src/crypto/sha384-tlsprf.o
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endif
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ifdef NEED_HMAC_SHA256_KDF
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ifdef NEED_HMAC_SHA256_KDF
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OBJS += ../src/crypto/sha256-kdf.o
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OBJS += ../src/crypto/sha256-kdf.o
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endif
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endif
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71
src/crypto/sha384-tlsprf.c
Normal file
71
src/crypto/sha384-tlsprf.c
Normal file
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@ -0,0 +1,71 @@
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/*
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* TLS PRF P_SHA384
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* Copyright (c) 2011-2019, Jouni Malinen <j@w1.fi>
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*
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* This software may be distributed under the terms of the BSD license.
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* See README for more details.
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*/
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#include "includes.h"
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#include "common.h"
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#include "sha384.h"
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/**
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* tls_prf_sha384 - Pseudo-Random Function for TLS v1.2 (P_SHA384, RFC 5246)
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* @secret: Key for PRF
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* @secret_len: Length of the key in bytes
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* @label: A unique label for each purpose of the PRF
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* @seed: Seed value to bind into the key
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* @seed_len: Length of the seed
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* @out: Buffer for the generated pseudo-random key
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* @outlen: Number of bytes of key to generate
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* Returns: 0 on success, -1 on failure.
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*
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* This function is used to derive new, cryptographically separate keys from a
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* given key in TLS. This PRF is defined in RFC 5246, Chapter 5.
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*/
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int tls_prf_sha384(const u8 *secret, size_t secret_len, const char *label,
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const u8 *seed, size_t seed_len, u8 *out, size_t outlen)
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{
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size_t clen;
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u8 A[SHA384_MAC_LEN];
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u8 P[SHA384_MAC_LEN];
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size_t pos;
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const unsigned char *addr[3];
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size_t len[3];
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addr[0] = A;
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len[0] = SHA384_MAC_LEN;
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addr[1] = (unsigned char *) label;
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len[1] = os_strlen(label);
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addr[2] = seed;
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len[2] = seed_len;
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/*
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* RFC 5246, Chapter 5
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* A(0) = seed, A(i) = HMAC(secret, A(i-1))
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* P_hash = HMAC(secret, A(1) + seed) + HMAC(secret, A(2) + seed) + ..
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* PRF(secret, label, seed) = P_SHA384(secret, label + seed)
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*/
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if (hmac_sha384_vector(secret, secret_len, 2, &addr[1], &len[1], A) < 0)
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return -1;
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pos = 0;
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while (pos < outlen) {
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if (hmac_sha384_vector(secret, secret_len, 3, addr, len, P) <
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0 ||
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hmac_sha384(secret, secret_len, A, SHA384_MAC_LEN, A) < 0)
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return -1;
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clen = outlen - pos;
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if (clen > SHA384_MAC_LEN)
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clen = SHA384_MAC_LEN;
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os_memcpy(out + pos, P, clen);
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pos += clen;
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}
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return 0;
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}
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@ -20,6 +20,9 @@ int sha384_prf(const u8 *key, size_t key_len, const char *label,
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int sha384_prf_bits(const u8 *key, size_t key_len, const char *label,
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int sha384_prf_bits(const u8 *key, size_t key_len, const char *label,
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const u8 *data, size_t data_len, u8 *buf,
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const u8 *data, size_t data_len, u8 *buf,
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size_t buf_len_bits);
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size_t buf_len_bits);
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int tls_prf_sha384(const u8 *secret, size_t secret_len,
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const char *label, const u8 *seed, size_t seed_len,
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u8 *out, size_t outlen);
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int hmac_sha384_kdf(const u8 *secret, size_t secret_len,
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int hmac_sha384_kdf(const u8 *secret, size_t secret_len,
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const char *label, const u8 *seed, size_t seed_len,
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const char *label, const u8 *seed, size_t seed_len,
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u8 *out, size_t outlen);
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u8 *out, size_t outlen);
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@ -659,6 +659,8 @@ TLS_FUNCS=y
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CONFIG_IEEE8021X_EAPOL=y
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CONFIG_IEEE8021X_EAPOL=y
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NEED_T_PRF=y
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NEED_T_PRF=y
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NEED_SHA384=y
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NEED_SHA384=y
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NEED_TLS_PRF_SHA256=y
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NEED_TLS_PRF_SHA384=y
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endif
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endif
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ifdef CONFIG_EAP_PAX
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ifdef CONFIG_EAP_PAX
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@ -1366,6 +1368,9 @@ endif
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ifdef NEED_TLS_PRF_SHA256
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ifdef NEED_TLS_PRF_SHA256
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SHA256OBJS += src/crypto/sha256-tlsprf.c
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SHA256OBJS += src/crypto/sha256-tlsprf.c
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endif
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endif
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ifdef NEED_TLS_PRF_SHA384
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SHA256OBJS += src/crypto/sha384-tlsprf.c
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endif
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ifdef NEED_HMAC_SHA256_KDF
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ifdef NEED_HMAC_SHA256_KDF
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L_CFLAGS += -DCONFIG_HMAC_SHA256_KDF
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L_CFLAGS += -DCONFIG_HMAC_SHA256_KDF
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SHA256OBJS += src/crypto/sha256-kdf.c
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SHA256OBJS += src/crypto/sha256-kdf.c
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@ -686,6 +686,8 @@ TLS_FUNCS=y
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CONFIG_IEEE8021X_EAPOL=y
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CONFIG_IEEE8021X_EAPOL=y
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NEED_T_PRF=y
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NEED_T_PRF=y
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NEED_SHA384=y
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NEED_SHA384=y
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NEED_TLS_PRF_SHA256=y
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NEED_TLS_PRF_SHA384=y
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endif
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endif
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ifdef CONFIG_EAP_PAX
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ifdef CONFIG_EAP_PAX
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@ -1501,6 +1503,9 @@ endif
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ifdef NEED_TLS_PRF_SHA256
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ifdef NEED_TLS_PRF_SHA256
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SHA256OBJS += ../src/crypto/sha256-tlsprf.o
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SHA256OBJS += ../src/crypto/sha256-tlsprf.o
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endif
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endif
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ifdef NEED_TLS_PRF_SHA384
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SHA256OBJS += ../src/crypto/sha384-tlsprf.o
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endif
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ifdef NEED_HMAC_SHA256_KDF
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ifdef NEED_HMAC_SHA256_KDF
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CFLAGS += -DCONFIG_HMAC_SHA256_KDF
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CFLAGS += -DCONFIG_HMAC_SHA256_KDF
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OBJS += ../src/crypto/sha256-kdf.o
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OBJS += ../src/crypto/sha256-kdf.o
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