2018-02-03 15:27:55 +01:00
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/* Copyright (c) 2001, Matej Pfajfar.
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* Copyright (c) 2001-2004, Roger Dingledine.
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* Copyright (c) 2004-2006, Roger Dingledine, Nick Mathewson.
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2018-06-20 08:13:28 -04:00
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* Copyright (c) 2007-2018, The Tor Project, Inc. */
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2018-02-03 15:27:55 +01:00
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/* See LICENSE for licensing information */
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/**
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* \file crypto_digest.h
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*
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* \brief Headers for crypto_digest.c
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**/
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#ifndef TOR_CRYPTO_DIGEST_H
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#define TOR_CRYPTO_DIGEST_H
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2018-06-21 12:20:52 -04:00
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#include "lib/cc/torint.h"
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2018-06-21 16:34:00 -04:00
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#include "lib/defs/digest_sizes.h"
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2018-07-10 15:16:57 -04:00
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#include "lib/malloc/malloc.h"
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2018-02-03 15:27:55 +01:00
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/** Length of a sha1 message digest when encoded in base32 with trailing =
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* signs removed. */
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#define BASE32_DIGEST_LEN 32
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/** Length of a sha1 message digest when encoded in base64 with trailing =
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* signs removed. */
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#define BASE64_DIGEST_LEN 27
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/** Length of a sha256 message digest when encoded in base64 with trailing =
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* signs removed. */
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#define BASE64_DIGEST256_LEN 43
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/** Length of a sha512 message digest when encoded in base64 with trailing =
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* signs removed. */
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#define BASE64_DIGEST512_LEN 86
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/** Length of hex encoding of SHA1 digest, not including final NUL. */
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#define HEX_DIGEST_LEN 40
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/** Length of hex encoding of SHA256 digest, not including final NUL. */
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#define HEX_DIGEST256_LEN 64
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/** Length of hex encoding of SHA512 digest, not including final NUL. */
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#define HEX_DIGEST512_LEN 128
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typedef enum {
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DIGEST_SHA1 = 0,
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DIGEST_SHA256 = 1,
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DIGEST_SHA512 = 2,
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DIGEST_SHA3_256 = 3,
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DIGEST_SHA3_512 = 4,
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} digest_algorithm_t;
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#define N_DIGEST_ALGORITHMS (DIGEST_SHA3_512+1)
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#define N_COMMON_DIGEST_ALGORITHMS (DIGEST_SHA256+1)
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2018-03-26 19:52:58 -04:00
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#define DIGEST_CHECKPOINT_BYTES (SIZEOF_VOID_P + 512)
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/** Structure used to temporarily save the a digest object. Only implemented
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* for SHA1 digest for now. */
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typedef struct crypto_digest_checkpoint_t {
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2018-07-11 16:54:05 -04:00
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#ifdef ENABLE_NSS
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unsigned int bytes_used;
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#endif
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2018-03-26 19:52:58 -04:00
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uint8_t mem[DIGEST_CHECKPOINT_BYTES];
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} crypto_digest_checkpoint_t;
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2018-02-03 15:27:55 +01:00
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/** A set of all the digests we commonly compute, taken on a single
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* string. Any digests that are shorter than 512 bits are right-padded
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* with 0 bits.
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*
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* Note that this representation wastes 44 bytes for the SHA1 case, so
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* don't use it for anything where we need to allocate a whole bunch at
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* once.
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**/
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typedef struct {
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char d[N_COMMON_DIGEST_ALGORITHMS][DIGEST256_LEN];
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} common_digests_t;
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typedef struct crypto_digest_t crypto_digest_t;
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2018-02-03 15:50:56 +01:00
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typedef struct crypto_xof_t crypto_xof_t;
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2018-02-03 15:27:55 +01:00
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2018-06-21 17:00:48 -04:00
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struct smartlist_t;
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2018-02-03 15:27:55 +01:00
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/* SHA-1 and other digests */
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int crypto_digest(char *digest, const char *m, size_t len);
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int crypto_digest256(char *digest, const char *m, size_t len,
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digest_algorithm_t algorithm);
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int crypto_digest512(char *digest, const char *m, size_t len,
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digest_algorithm_t algorithm);
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int crypto_common_digests(common_digests_t *ds_out, const char *m, size_t len);
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void crypto_digest_smartlist_prefix(char *digest_out, size_t len_out,
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const char *prepend,
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const struct smartlist_t *lst,
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const char *append,
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digest_algorithm_t alg);
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void crypto_digest_smartlist(char *digest_out, size_t len_out,
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const struct smartlist_t *lst, const char *append,
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digest_algorithm_t alg);
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const char *crypto_digest_algorithm_get_name(digest_algorithm_t alg);
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size_t crypto_digest_algorithm_get_length(digest_algorithm_t alg);
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int crypto_digest_algorithm_parse_name(const char *name);
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crypto_digest_t *crypto_digest_new(void);
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crypto_digest_t *crypto_digest256_new(digest_algorithm_t algorithm);
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crypto_digest_t *crypto_digest512_new(digest_algorithm_t algorithm);
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void crypto_digest_free_(crypto_digest_t *digest);
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#define crypto_digest_free(d) \
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FREE_AND_NULL(crypto_digest_t, crypto_digest_free_, (d))
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void crypto_digest_add_bytes(crypto_digest_t *digest, const char *data,
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size_t len);
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void crypto_digest_get_digest(crypto_digest_t *digest,
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char *out, size_t out_len);
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crypto_digest_t *crypto_digest_dup(const crypto_digest_t *digest);
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2018-03-26 19:52:58 -04:00
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void crypto_digest_checkpoint(crypto_digest_checkpoint_t *checkpoint,
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const crypto_digest_t *digest);
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void crypto_digest_restore(crypto_digest_t *digest,
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const crypto_digest_checkpoint_t *checkpoint);
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2018-02-03 15:27:55 +01:00
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void crypto_digest_assign(crypto_digest_t *into,
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const crypto_digest_t *from);
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void crypto_hmac_sha256(char *hmac_out,
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const char *key, size_t key_len,
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const char *msg, size_t msg_len);
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void crypto_mac_sha3_256(uint8_t *mac_out, size_t len_out,
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const uint8_t *key, size_t key_len,
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const uint8_t *msg, size_t msg_len);
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2018-02-03 15:50:56 +01:00
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/* xof functions*/
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crypto_xof_t *crypto_xof_new(void);
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void crypto_xof_add_bytes(crypto_xof_t *xof, const uint8_t *data, size_t len);
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void crypto_xof_squeeze_bytes(crypto_xof_t *xof, uint8_t *out, size_t len);
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void crypto_xof_free_(crypto_xof_t *xof);
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#define crypto_xof_free(xof) \
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FREE_AND_NULL(crypto_xof_t, crypto_xof_free_, (xof))
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2018-02-03 15:27:55 +01:00
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#ifdef TOR_UNIT_TESTS
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digest_algorithm_t crypto_digest_get_algorithm(crypto_digest_t *digest);
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#endif
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#endif /* !defined(TOR_CRYPTO_DIGEST_H) */
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