mirror of
https://gitlab.torproject.org/tpo/core/tor.git
synced 2024-11-11 13:43:47 +01:00
7fbd297532
svn:r3019
163 lines
7.0 KiB
C
163 lines
7.0 KiB
C
/* Copyright 2001,2002,2003 Roger Dingledine, Matej Pfajfar. */
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/* See LICENSE for licensing information */
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/* $Id$ */
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/**
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* \file crypto.h
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*
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* \brief Headers for low-level cryptographic functions.
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**/
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#ifndef __CRYPTO_H
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#define __CRYPTO_H
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#define CRYPTO_H_ID "$Id$"
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#include <stdio.h>
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/** Length of the output of our message digest. */
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#define DIGEST_LEN 20
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/** Length of our symmetric cipher's keys. */
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#define CIPHER_KEY_LEN 16
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/** Length of our public keys. */
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#define PK_BYTES (1024/8)
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/** Length of our DH keys. */
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#define DH_BYTES (1024/8)
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/** Constants used to indicate no padding for public-key encryption */
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#define PK_NO_PADDING 60000
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/** Constants used to indicate PKCS1 padding for public-key encryption */
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#define PK_PKCS1_PADDING 60001
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/** Constants used to indicate OAEP padding for public-key encryption */
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#define PK_PKCS1_OAEP_PADDING 60002
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/** Number of bytes added for PKCS1 padding. */
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#define PKCS1_PADDING_OVERHEAD 11
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/** Number of bytes added for PKCS1-OAEP padding. */
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#define PKCS1_OAEP_PADDING_OVERHEAD 42
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/** Length of encoded public key fingerprints, including space; but not
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* including terminating NUL. */
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#define FINGERPRINT_LEN 49
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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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typedef struct crypto_pk_env_t crypto_pk_env_t;
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typedef struct crypto_cipher_env_t crypto_cipher_env_t;
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typedef struct crypto_digest_env_t crypto_digest_env_t;
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typedef struct crypto_dh_env_t crypto_dh_env_t;
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/* global state */
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int crypto_global_init(void);
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int crypto_global_cleanup(void);
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/* environment setup */
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crypto_pk_env_t *crypto_new_pk_env(void);
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void crypto_free_pk_env(crypto_pk_env_t *env);
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/* convenience function: wraps crypto_create_crypto_env, set_key, and init. */
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crypto_cipher_env_t *crypto_create_init_cipher(const char *key, int encrypt_mode);
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crypto_cipher_env_t *crypto_new_cipher_env(void);
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void crypto_free_cipher_env(crypto_cipher_env_t *env);
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/* public key crypto */
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int crypto_pk_generate_key(crypto_pk_env_t *env);
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int crypto_pk_read_private_key_from_filename(crypto_pk_env_t *env, const char *keyfile);
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int crypto_pk_write_public_key_to_string(crypto_pk_env_t *env, char **dest, size_t *len);
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int crypto_pk_read_public_key_from_string(crypto_pk_env_t *env, const char *src, size_t len);
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int crypto_pk_write_private_key_to_filename(crypto_pk_env_t *env, const char *fname);
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int crypto_pk_DER64_encode_public_key(crypto_pk_env_t *env, char **dest);
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crypto_pk_env_t *crypto_pk_DER64_decode_public_key(const char *in);
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int crypto_pk_check_key(crypto_pk_env_t *env);
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int crypto_pk_cmp_keys(crypto_pk_env_t *a, crypto_pk_env_t *b);
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int crypto_pk_keysize(crypto_pk_env_t *env);
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crypto_pk_env_t *crypto_pk_dup_key(crypto_pk_env_t *orig);
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int crypto_pk_public_encrypt(crypto_pk_env_t *env, unsigned char *to,
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const unsigned char *from, int fromlen, int padding);
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int crypto_pk_private_decrypt(crypto_pk_env_t *env, unsigned char *to,
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const unsigned char *from, int fromlen,
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int padding, int warnOnFailure);
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int crypto_pk_public_checksig(crypto_pk_env_t *env, unsigned char *to,
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const unsigned char *from, int fromlen);
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int crypto_pk_public_checksig_digest(crypto_pk_env_t *env, const unsigned char *data,
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int datalen, const unsigned char *sig, int siglen);
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int crypto_pk_private_sign(crypto_pk_env_t *env, unsigned char *to,
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const unsigned char *from, int fromlen);
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int crypto_pk_private_sign_digest(crypto_pk_env_t *env, unsigned char *to,
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const unsigned char *from, int fromlen);
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int crypto_pk_public_hybrid_encrypt(crypto_pk_env_t *env, unsigned char *to,
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const unsigned char *from, int fromlen,
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int padding, int force);
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int crypto_pk_private_hybrid_decrypt(crypto_pk_env_t *env, unsigned char *to,
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const unsigned char *from, int fromlen,
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int padding, int warnOnFailure);
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int crypto_pk_asn1_encode(crypto_pk_env_t *pk, char *dest, int dest_len);
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crypto_pk_env_t *crypto_pk_asn1_decode(const char *str, int len);
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int crypto_pk_get_digest(crypto_pk_env_t *pk, char *digest_out);
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int crypto_pk_get_fingerprint(crypto_pk_env_t *pk, char *fp_out,int add_space);
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int crypto_pk_check_fingerprint_syntax(const char *s);
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/* symmetric crypto */
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int crypto_cipher_generate_key(crypto_cipher_env_t *env);
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int crypto_cipher_set_key(crypto_cipher_env_t *env, const unsigned char *key);
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const unsigned char *crypto_cipher_get_key(crypto_cipher_env_t *env);
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int crypto_cipher_encrypt_init_cipher(crypto_cipher_env_t *env);
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int crypto_cipher_decrypt_init_cipher(crypto_cipher_env_t *env);
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int crypto_cipher_encrypt(crypto_cipher_env_t *env, unsigned char *to,
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const unsigned char *from, unsigned int fromlen);
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int crypto_cipher_decrypt(crypto_cipher_env_t *env, unsigned char *to,
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const unsigned char *from, unsigned int fromlen);
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/* only implemented for CRYPTO_CIPHER_AES_CTR */
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int crypto_cipher_rewind(crypto_cipher_env_t *env, long delta);
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int crypto_cipher_advance(crypto_cipher_env_t *env, long delta);
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/* SHA-1 */
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int crypto_digest(unsigned char *digest, const unsigned char *m, int len);
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crypto_digest_env_t *crypto_new_digest_env(void);
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void crypto_free_digest_env(crypto_digest_env_t *digest);
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void crypto_digest_add_bytes(crypto_digest_env_t *digest, const char *data,
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size_t len);
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void crypto_digest_get_digest(crypto_digest_env_t *digest,
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char *out, size_t out_len);
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crypto_digest_env_t *crypto_digest_dup(const crypto_digest_env_t *digest);
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void crypto_digest_assign(crypto_digest_env_t *into,
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const crypto_digest_env_t *from);
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/* Key negotiation */
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crypto_dh_env_t *crypto_dh_new(void);
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int crypto_dh_get_bytes(crypto_dh_env_t *dh);
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int crypto_dh_generate_public(crypto_dh_env_t *dh);
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int crypto_dh_get_public(crypto_dh_env_t *dh, char *pubkey_out,
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size_t pubkey_out_len);
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int crypto_dh_compute_secret(crypto_dh_env_t *dh,
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const char *pubkey, size_t pubkey_len,
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char *secret_out, size_t secret_out_len);
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void crypto_dh_free(crypto_dh_env_t *dh);
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/* random numbers */
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int crypto_seed_rng(void);
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int crypto_rand(unsigned char *to, unsigned int n);
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void crypto_pseudo_rand(unsigned char *to, unsigned int n);
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int crypto_pseudo_rand_int(unsigned int max);
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struct smartlist_t;
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void *smartlist_choose(const struct smartlist_t *sl);
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int base64_encode(char *dest, size_t destlen, const char *src, size_t srclen);
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int base64_decode(char *dest, size_t destlen, const char *src, size_t srclen);
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#define BASE32_CHARS "abcdefghijklmnopqrstuvwxyz234567"
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void base32_encode(char *dest, size_t destlen, const char *src, size_t srclen);
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#define S2K_SPECIFIER_LEN 9
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void secret_to_key(char *key_out, size_t key_out_len, const char *secret,
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size_t secret_len, const char *s2k_specifier);
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#endif
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