lua-bcrypt

Secure password hashing for Lua
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commit b71abf3974bf39306862aa476904b29066f04688
Author: Michael Savage <mikejsavage@gmail.com>
Date:   Fri, 16 Dec 2011 15:12:37 +0000

Initial commit

Diffstat:
.gitignore | 3+++
Makefile | 13+++++++++++++
README.md | 19+++++++++++++++++++
src/bcrypt.c | 337+++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++
src/blf.h | 89+++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++
src/blowfish.c | 636+++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++
src/luabcrypt.c | 68++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++
tests.lua | 76++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++
8 files changed, 1241 insertions(+), 0 deletions(-)

diff --git a/.gitignore b/.gitignore @@ -0,0 +1,3 @@ +.tags + +bcrypt.so diff --git a/Makefile b/Makefile @@ -0,0 +1,13 @@ +CC = gcc +SRCDIR = src/ +CFLAGS = -O2 -shared -fPIC +LDFLAGS = -lcrypto -llua +WARNINGS = -Wall -Wextra -Werror + +all: bcrypt test + +bcrypt: ${SRCDIR}luabcrypt.c ${SRCDIR}bcrypt.c ${SRCDIR}blowfish.c + ${CC} -o $@.so $^ ${CFLAGS} ${LDFLAGS} ${WARNINGS} + +test: + @lua tests.lua diff --git a/README.md b/README.md @@ -0,0 +1,19 @@ +A Lua wrapper for the OpenBSD implementation of bcrypt. Note that it +will run on other operating systems. + + +Requirements +------------ + +luabcrypt requires OpenSSL (for salt generation) and Lua to compile. + + +Usage +----- + + require( "bcrypt" ) + + local salt = bcrypt.gensalt( 5 ) + local digest = bcrypt.digest( "password", salt ) + + assert( bcrypt.verify( "password", digest ) ) diff --git a/src/bcrypt.c b/src/bcrypt.c @@ -0,0 +1,337 @@ +/* $OpenBSD: bcrypt.c,v 1.24 2008/04/02 19:54:05 millert Exp $ */ + +/* + * Copyright 1997 Niels Provos <provos@physnet.uni-hamburg.de> + * All rights reserved. + * + * Redistribution and use in source and binary forms, with or without + * modification, are permitted provided that the following conditions + * are met: + * 1. Redistributions of source code must retain the above copyright + * notice, this list of conditions and the following disclaimer. + * 2. Redistributions in binary form must reproduce the above copyright + * notice, this list of conditions and the following disclaimer in the + * documentation and/or other materials provided with the distribution. + * 3. All advertising materials mentioning features or use of this software + * must display the following acknowledgement: + * This product includes software developed by Niels Provos. + * 4. The name of the author may not be used to endorse or promote products + * derived from this software without specific prior written permission. + * + * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR + * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES + * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. + * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT, + * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT + * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, + * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY + * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT + * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF + * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. + */ + +/* This password hashing algorithm was designed by David Mazieres + * <dm@lcs.mit.edu> and works as follows: + * + * 1. state := InitState () + * 2. state := ExpandKey (state, salt, password) 3. + * REPEAT rounds: + * state := ExpandKey (state, 0, salt) + * state := ExpandKey(state, 0, password) + * 4. ctext := "OrpheanBeholderScryDoubt" + * 5. REPEAT 64: + * ctext := Encrypt_ECB (state, ctext); + * 6. RETURN Concatenate (salt, ctext); + * + */ + +#include <stdio.h> +#include <sys/types.h> +#include <string.h> +#include <openssl/rand.h> + +#include "blf.h" + +/* This implementation is adaptable to current computing power. + * You can have up to 2^31 rounds which should be enough for some + * time to come. + */ + +#define BCRYPT_VERSION '2' +#define BCRYPT_BLOCKS 6 /* Ciphertext blocks */ +#define BCRYPT_MINROUNDS 16 /* we have log2(rounds) in salt */ + +static void encode_salt(char *, u_int8_t *, u_int16_t, u_int8_t); +static void encode_base64(u_int8_t *, u_int8_t *, u_int16_t); +static void decode_base64(u_int8_t *, u_int16_t, u_int8_t *); + +static char error = ':'; + +static const u_int8_t Base64Code[] = +"./ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789"; + +static const u_int8_t index_64[128] = { + 255, 255, 255, 255, 255, 255, 255, 255, 255, 255, + 255, 255, 255, 255, 255, 255, 255, 255, 255, 255, + 255, 255, 255, 255, 255, 255, 255, 255, 255, 255, + 255, 255, 255, 255, 255, 255, 255, 255, 255, 255, + 255, 255, 255, 255, 255, 255, 0, 1, 54, 55, + 56, 57, 58, 59, 60, 61, 62, 63, 255, 255, + 255, 255, 255, 255, 255, 2, 3, 4, 5, 6, + 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, + 17, 18, 19, 20, 21, 22, 23, 24, 25, 26, 27, + 255, 255, 255, 255, 255, 255, 28, 29, 30, + 31, 32, 33, 34, 35, 36, 37, 38, 39, 40, + 41, 42, 43, 44, 45, 46, 47, 48, 49, 50, + 51, 52, 53, 255, 255, 255, 255, 255 +}; +#define CHAR64(c) ( (c) > 127 ? 255 : index_64[(c)]) + +static void +decode_base64(u_int8_t *buffer, u_int16_t len, u_int8_t *data) +{ + u_int8_t *bp = buffer; + u_int8_t *p = data; + u_int8_t c1, c2, c3, c4; + while (bp < buffer + len) { + c1 = CHAR64(*p); + c2 = CHAR64(*(p + 1)); + + /* Invalid data */ + if (c1 == 255 || c2 == 255) + break; + + *bp++ = (c1 << 2) | ((c2 & 0x30) >> 4); + if (bp >= buffer + len) + break; + + c3 = CHAR64(*(p + 2)); + if (c3 == 255) + break; + + *bp++ = ((c2 & 0x0f) << 4) | ((c3 & 0x3c) >> 2); + if (bp >= buffer + len) + break; + + c4 = CHAR64(*(p + 3)); + if (c4 == 255) + break; + *bp++ = ((c3 & 0x03) << 6) | c4; + + p += 4; + } +} + +static void +encode_salt(char *salt, u_int8_t *csalt, u_int16_t clen, u_int8_t logr) +{ + salt[0] = '$'; + salt[1] = BCRYPT_VERSION; + salt[2] = 'a'; + salt[3] = '$'; + + snprintf(salt + 4, 4, "%2.2u$", logr); + + encode_base64((u_int8_t *) salt + 7, csalt, clen); +} +/* Generates a salt for this version of crypt. + Since versions may change. Keeping this here + seems sensible. + */ + +void +bcrypt_gensalt(u_int8_t log_rounds, char *gsalt) +{ + u_int8_t salt[BCRYPT_MAXSALT]; + + if (RAND_bytes((unsigned char *)&salt, BCRYPT_MAXSALT) != 1) { + *gsalt = '\0'; + return; + } + + if (log_rounds < 4) + log_rounds = 4; + else if (log_rounds > 31) + log_rounds = 31; + + encode_salt(gsalt, salt, BCRYPT_MAXSALT, log_rounds); +} +/* We handle $Vers$log2(NumRounds)$salt+passwd$ + i.e. $2$04$iwouldntknowwhattosayetKdJ6iFtacBqJdKe6aW7ou */ + +void +bcrypt(const char *key, const char *salt, char *encrypted) +{ + blf_ctx state; + u_int32_t rounds, i, k; + u_int16_t j; + u_int8_t key_len, salt_len, logr, minor; + u_int8_t ciphertext[4 * BCRYPT_BLOCKS] = "OrpheanBeholderScryDoubt"; + u_int8_t csalt[BCRYPT_MAXSALT]; + u_int32_t cdata[BCRYPT_BLOCKS]; + int n; + + /* Discard "$" identifier */ + salt++; + + if (*salt > BCRYPT_VERSION) { + /* How do I handle errors ? Return ':' */ + *encrypted = error; + return; + } + + /* Check for minor versions */ + if (salt[1] != '$') { + switch (salt[1]) { + case 'a': + /* 'ab' should not yield the same as 'abab' */ + minor = salt[1]; + salt++; + break; + default: + *encrypted = error; + return; + } + } else + minor = 0; + + /* Discard version + "$" identifier */ + salt += 2; + + if (salt[2] != '$') { + /* Out of sync with passwd entry */ + *encrypted = error; + return; + } + + /* Computer power doesn't increase linear, 2^x should be fine */ + n = atoi(salt); + if (n > 31 || n < 0) { + *encrypted = error; + return; + } + logr = (u_int8_t)n; + if ((rounds = (u_int32_t) 1 << logr) < BCRYPT_MINROUNDS) { + *encrypted = error; + return; + } + + /* Discard num rounds + "$" identifier */ + salt += 3; + + if (strlen(salt) * 3 / 4 < BCRYPT_MAXSALT) { + *encrypted = error; + return; + } + + /* We dont want the base64 salt but the raw data */ + decode_base64(csalt, BCRYPT_MAXSALT, (u_int8_t *) salt); + salt_len = BCRYPT_MAXSALT; + key_len = strlen(key) + (minor >= 'a' ? 1 : 0); + + /* Setting up S-Boxes and Subkeys */ + Blowfish_initstate(&state); + Blowfish_expandstate(&state, csalt, salt_len, + (u_int8_t *) key, key_len); + for (k = 0; k < rounds; k++) { + Blowfish_expand0state(&state, (u_int8_t *) key, key_len); + Blowfish_expand0state(&state, csalt, salt_len); + } + + /* This can be precomputed later */ + j = 0; + for (i = 0; i < BCRYPT_BLOCKS; i++) + cdata[i] = Blowfish_stream2word(ciphertext, 4 * BCRYPT_BLOCKS, &j); + + /* Now do the encryption */ + for (k = 0; k < 64; k++) + blf_enc(&state, cdata, BCRYPT_BLOCKS / 2); + + for (i = 0; i < BCRYPT_BLOCKS; i++) { + ciphertext[4 * i + 3] = cdata[i] & 0xff; + cdata[i] = cdata[i] >> 8; + ciphertext[4 * i + 2] = cdata[i] & 0xff; + cdata[i] = cdata[i] >> 8; + ciphertext[4 * i + 1] = cdata[i] & 0xff; + cdata[i] = cdata[i] >> 8; + ciphertext[4 * i + 0] = cdata[i] & 0xff; + } + + i = 0; + + encrypted[i++] = '$'; + encrypted[i++] = BCRYPT_VERSION; + if (minor) + encrypted[i++] = minor; + encrypted[i++] = '$'; + + snprintf(encrypted + i, 4, "%2.2u$", logr); + + encode_base64((u_int8_t *) encrypted + i + 3, csalt, BCRYPT_MAXSALT); + encode_base64((u_int8_t *) encrypted + strlen(encrypted), ciphertext, + 4 * BCRYPT_BLOCKS - 1); + memset(&state, 0, sizeof(state)); + memset(ciphertext, 0, sizeof(ciphertext)); + memset(csalt, 0, sizeof(csalt)); + memset(cdata, 0, sizeof(cdata)); +} + +static void +encode_base64(u_int8_t *buffer, u_int8_t *data, u_int16_t len) +{ + u_int8_t *bp = buffer; + u_int8_t *p = data; + u_int8_t c1, c2; + while (p < data + len) { + c1 = *p++; + *bp++ = Base64Code[(c1 >> 2)]; + c1 = (c1 & 0x03) << 4; + if (p >= data + len) { + *bp++ = Base64Code[c1]; + break; + } + c2 = *p++; + c1 |= (c2 >> 4) & 0x0f; + *bp++ = Base64Code[c1]; + c1 = (c2 & 0x0f) << 2; + if (p >= data + len) { + *bp++ = Base64Code[c1]; + break; + } + c2 = *p++; + c1 |= (c2 >> 6) & 0x03; + *bp++ = Base64Code[c1]; + *bp++ = Base64Code[c2 & 0x3f]; + } + *bp = '\0'; +} +#if 0 + void +main() +{ + char blubber[73]; + char salt[100]; + char *p; + salt[0] = '$'; + salt[1] = BCRYPT_VERSION; + salt[2] = '$'; + + snprintf(salt + 3, 4, "%2.2u$", 5); + + printf("24 bytes of salt: "); + fgets(salt + 6, sizeof(salt) - 6, stdin); + salt[99] = 0; + printf("72 bytes of password: "); + fpurge(stdin); + fgets(blubber, sizeof(blubber), stdin); + blubber[72] = 0; + + p = crypt(blubber, salt); + printf("Passwd entry: %s\n\n", p); + + p = bcrypt_gensalt(5); + printf("Generated salt: %s\n", p); + p = crypt(blubber, p); + printf("Passwd entry: %s\n", p); +} +#endif diff --git a/src/blf.h b/src/blf.h @@ -0,0 +1,89 @@ +/* $OpenBSD: blf.h,v 1.7 2007/03/14 17:59:41 grunk Exp $ */ +/* + * Blowfish - a fast block cipher designed by Bruce Schneier + * + * Copyright 1997 Niels Provos <provos@physnet.uni-hamburg.de> + * All rights reserved. + * + * Redistribution and use in source and binary forms, with or without + * modification, are permitted provided that the following conditions + * are met: + * 1. Redistributions of source code must retain the above copyright + * notice, this list of conditions and the following disclaimer. + * 2. Redistributions in binary form must reproduce the above copyright + * notice, this list of conditions and the following disclaimer in the + * documentation and/or other materials provided with the distribution. + * 3. All advertising materials mentioning features or use of this software + * must display the following acknowledgement: + * This product includes software developed by Niels Provos. + * 4. The name of the author may not be used to endorse or promote products + * derived from this software without specific prior written permission. + * + * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR + * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES + * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. + * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT, + * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT + * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, + * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY + * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT + * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF + * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. + */ + +#ifndef _BLF_H_ +#define _BLF_H_ + +/* Schneier specifies a maximum key length of 56 bytes. + * This ensures that every key bit affects every cipher + * bit. However, the subkeys can hold up to 72 bytes. + * Warning: For normal blowfish encryption only 56 bytes + * of the key affect all cipherbits. + */ + +#define BLF_N 16 /* Number of Subkeys */ +#define BLF_MAXKEYLEN ((BLF_N-2)*4) /* 448 bits */ +#define BLF_MAXUTILIZED ((BLF_N+2)*4) /* 576 bits */ + +#define _PASSWORD_LEN 256 +#define BCRYPT_MAXSALT 16 /* Precomputation is just so nice */ + +/* Blowfish context */ +typedef struct BlowfishContext { + u_int32_t S[4][256]; /* S-Boxes */ + u_int32_t P[BLF_N + 2]; /* Subkeys */ +} blf_ctx; + +/* Raw access to customized Blowfish + * blf_key is just: + * Blowfish_initstate( state ) + * Blowfish_expand0state( state, key, keylen ) + */ + +void Blowfish_encipher(blf_ctx *, u_int32_t *, u_int32_t *); +void Blowfish_decipher(blf_ctx *, u_int32_t *, u_int32_t *); +void Blowfish_initstate(blf_ctx *); +void Blowfish_expand0state(blf_ctx *, const u_int8_t *, u_int16_t); +void Blowfish_expandstate +(blf_ctx *, const u_int8_t *, u_int16_t, const u_int8_t *, u_int16_t); + +/* Standard Blowfish */ + +void blf_key(blf_ctx *, const u_int8_t *, u_int16_t); +void blf_enc(blf_ctx *, u_int32_t *, u_int16_t); +void blf_dec(blf_ctx *, u_int32_t *, u_int16_t); + +void blf_ecb_encrypt(blf_ctx *, u_int8_t *, u_int32_t); +void blf_ecb_decrypt(blf_ctx *, u_int8_t *, u_int32_t); + +void blf_cbc_encrypt(blf_ctx *, u_int8_t *, u_int8_t *, u_int32_t); +void blf_cbc_decrypt(blf_ctx *, u_int8_t *, u_int8_t *, u_int32_t); + +/* Converts u_int8_t to u_int32_t */ +u_int32_t Blowfish_stream2word(const u_int8_t *, u_int16_t , u_int16_t *); + +/* bcrypt */ +void bcrypt_gensalt(u_int8_t log_rounds, char *gsalt); +void bcrypt(const char *key, const char *salt, char *encrypted); + +#endif diff --git a/src/blowfish.c b/src/blowfish.c @@ -0,0 +1,636 @@ +/* $OpenBSD: blowfish.c,v 1.18 2004/11/02 17:23:26 hshoexer Exp $ */ +/* + * Blowfish block cipher for OpenBSD + * Copyright 1997 Niels Provos <provos@physnet.uni-hamburg.de> + * All rights reserved. + * + * Implementation advice by David Mazieres <dm@lcs.mit.edu>. + * + * Redistribution and use in source and binary forms, with or without + * modification, are permitted provided that the following conditions + * are met: + * 1. Redistributions of source code must retain the above copyright + * notice, this list of conditions and the following disclaimer. + * 2. Redistributions in binary form must reproduce the above copyright + * notice, this list of conditions and the following disclaimer in the + * documentation and/or other materials provided with the distribution. + * 3. All advertising materials mentioning features or use of this software + * must display the following acknowledgement: + * This product includes software developed by Niels Provos. + * 4. The name of the author may not be used to endorse or promote products + * derived from this software without specific prior written permission. + * + * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR + * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES + * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. + * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT, + * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT + * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, + * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY + * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT + * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF + * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. + */ + +/* + * This code is derived from section 14.3 and the given source + * in section V of Applied Cryptography, second edition. + * Blowfish is an unpatented fast block cipher designed by + * Bruce Schneier. + */ + +#include <sys/types.h> +#include "blf.h" + +#undef inline +#ifdef __GNUC__ +#define inline __inline +#else /* !__GNUC__ */ +#define inline +#endif /* !__GNUC__ */ + +/* Function for Feistel Networks */ + +#define F(s, x) ((((s)[ (((x)>>24)&0xFF)] \ + + (s)[0x100 + (((x)>>16)&0xFF)]) \ + ^ (s)[0x200 + (((x)>> 8)&0xFF)]) \ + + (s)[0x300 + ( (x) &0xFF)]) + +#define BLFRND(s,p,i,j,n) (i ^= F(s,j) ^ (p)[n]) + +void +Blowfish_encipher(blf_ctx *c, u_int32_t *xl, u_int32_t *xr) +{ + u_int32_t Xl; + u_int32_t Xr; + u_int32_t *s = c->S[0]; + u_int32_t *p = c->P; + + Xl = *xl; + Xr = *xr; + + Xl ^= p[0]; + BLFRND(s, p, Xr, Xl, 1); BLFRND(s, p, Xl, Xr, 2); + BLFRND(s, p, Xr, Xl, 3); BLFRND(s, p, Xl, Xr, 4); + BLFRND(s, p, Xr, Xl, 5); BLFRND(s, p, Xl, Xr, 6); + BLFRND(s, p, Xr, Xl, 7); BLFRND(s, p, Xl, Xr, 8); + BLFRND(s, p, Xr, Xl, 9); BLFRND(s, p, Xl, Xr, 10); + BLFRND(s, p, Xr, Xl, 11); BLFRND(s, p, Xl, Xr, 12); + BLFRND(s, p, Xr, Xl, 13); BLFRND(s, p, Xl, Xr, 14); + BLFRND(s, p, Xr, Xl, 15); BLFRND(s, p, Xl, Xr, 16); + + *xl = Xr ^ p[17]; + *xr = Xl; +} + +void +Blowfish_decipher(blf_ctx *c, u_int32_t *xl, u_int32_t *xr) +{ + u_int32_t Xl; + u_int32_t Xr; + u_int32_t *s = c->S[0]; + u_int32_t *p = c->P; + + Xl = *xl; + Xr = *xr; + + Xl ^= p[17]; + BLFRND(s, p, Xr, Xl, 16); BLFRND(s, p, Xl, Xr, 15); + BLFRND(s, p, Xr, Xl, 14); BLFRND(s, p, Xl, Xr, 13); + BLFRND(s, p, Xr, Xl, 12); BLFRND(s, p, Xl, Xr, 11); + BLFRND(s, p, Xr, Xl, 10); BLFRND(s, p, Xl, Xr, 9); + BLFRND(s, p, Xr, Xl, 8); BLFRND(s, p, Xl, Xr, 7); + BLFRND(s, p, Xr, Xl, 6); BLFRND(s, p, Xl, Xr, 5); + BLFRND(s, p, Xr, Xl, 4); BLFRND(s, p, Xl, Xr, 3); + BLFRND(s, p, Xr, Xl, 2); BLFRND(s, p, Xl, Xr, 1); + + *xl = Xr ^ p[0]; + *xr = Xl; +} + +void +Blowfish_initstate(blf_ctx *c) +{ + /* P-box and S-box tables initialized with digits of Pi */ + + static const blf_ctx initstate = + { { + { + 0xd1310ba6, 0x98dfb5ac, 0x2ffd72db, 0xd01adfb7, + 0xb8e1afed, 0x6a267e96, 0xba7c9045, 0xf12c7f99, + 0x24a19947, 0xb3916cf7, 0x0801f2e2, 0x858efc16, + 0x636920d8, 0x71574e69, 0xa458fea3, 0xf4933d7e, + 0x0d95748f, 0x728eb658, 0x718bcd58, 0x82154aee, + 0x7b54a41d, 0xc25a59b5, 0x9c30d539, 0x2af26013, + 0xc5d1b023, 0x286085f0, 0xca417918, 0xb8db38ef, + 0x8e79dcb0, 0x603a180e, 0x6c9e0e8b, 0xb01e8a3e, + 0xd71577c1, 0xbd314b27, 0x78af2fda, 0x55605c60, + 0xe65525f3, 0xaa55ab94, 0x57489862, 0x63e81440, + 0x55ca396a, 0x2aab10b6, 0xb4cc5c34, 0x1141e8ce, + 0xa15486af, 0x7c72e993, 0xb3ee1411, 0x636fbc2a, + 0x2ba9c55d, 0x741831f6, 0xce5c3e16, 0x9b87931e, + 0xafd6ba33, 0x6c24cf5c, 0x7a325381, 0x28958677, + 0x3b8f4898, 0x6b4bb9af, 0xc4bfe81b, 0x66282193, + 0x61d809cc, 0xfb21a991, 0x487cac60, 0x5dec8032, + 0xef845d5d, 0xe98575b1, 0xdc262302, 0xeb651b88, + 0x23893e81, 0xd396acc5, 0x0f6d6ff3, 0x83f44239, + 0x2e0b4482, 0xa4842004, 0x69c8f04a, 0x9e1f9b5e, + 0x21c66842, 0xf6e96c9a, 0x670c9c61, 0xabd388f0, + 0x6a51a0d2, 0xd8542f68, 0x960fa728, 0xab5133a3, + 0x6eef0b6c, 0x137a3be4, 0xba3bf050, 0x7efb2a98, + 0xa1f1651d, 0x39af0176, 0x66ca593e, 0x82430e88, + 0x8cee8619, 0x456f9fb4, 0x7d84a5c3, 0x3b8b5ebe, + 0xe06f75d8, 0x85c12073, 0x401a449f, 0x56c16aa6, + 0x4ed3aa62, 0x363f7706, 0x1bfedf72, 0x429b023d, + 0x37d0d724, 0xd00a1248, 0xdb0fead3, 0x49f1c09b, + 0x075372c9, 0x80991b7b, 0x25d479d8, 0xf6e8def7, + 0xe3fe501a, 0xb6794c3b, 0x976ce0bd, 0x04c006ba, + 0xc1a94fb6, 0x409f60c4, 0x5e5c9ec2, 0x196a2463, + 0x68fb6faf, 0x3e6c53b5, 0x1339b2eb, 0x3b52ec6f, + 0x6dfc511f, 0x9b30952c, 0xcc814544, 0xaf5ebd09, + 0xbee3d004, 0xde334afd, 0x660f2807, 0x192e4bb3, + 0xc0cba857, 0x45c8740f, 0xd20b5f39, 0xb9d3fbdb, + 0x5579c0bd, 0x1a60320a, 0xd6a100c6, 0x402c7279, + 0x679f25fe, 0xfb1fa3cc, 0x8ea5e9f8, 0xdb3222f8, + 0x3c7516df, 0xfd616b15, 0x2f501ec8, 0xad0552ab, + 0x323db5fa, 0xfd238760, 0x53317b48, 0x3e00df82, + 0x9e5c57bb, 0xca6f8ca0, 0x1a87562e, 0xdf1769db, + 0xd542a8f6, 0x287effc3, 0xac6732c6, 0x8c4f5573, + 0x695b27b0, 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0x63ef8ce2, 0x9a86ee22, + 0xc089c2b8, 0x43242ef6, 0xa51e03aa, 0x9cf2d0a4, + 0x83c061ba, 0x9be96a4d, 0x8fe51550, 0xba645bd6, + 0x2826a2f9, 0xa73a3ae1, 0x4ba99586, 0xef5562e9, + 0xc72fefd3, 0xf752f7da, 0x3f046f69, 0x77fa0a59, + 0x80e4a915, 0x87b08601, 0x9b09e6ad, 0x3b3ee593, + 0xe990fd5a, 0x9e34d797, 0x2cf0b7d9, 0x022b8b51, + 0x96d5ac3a, 0x017da67d, 0xd1cf3ed6, 0x7c7d2d28, + 0x1f9f25cf, 0xadf2b89b, 0x5ad6b472, 0x5a88f54c, + 0xe029ac71, 0xe019a5e6, 0x47b0acfd, 0xed93fa9b, + 0xe8d3c48d, 0x283b57cc, 0xf8d56629, 0x79132e28, + 0x785f0191, 0xed756055, 0xf7960e44, 0xe3d35e8c, + 0x15056dd4, 0x88f46dba, 0x03a16125, 0x0564f0bd, + 0xc3eb9e15, 0x3c9057a2, 0x97271aec, 0xa93a072a, + 0x1b3f6d9b, 0x1e6321f5, 0xf59c66fb, 0x26dcf319, + 0x7533d928, 0xb155fdf5, 0x03563482, 0x8aba3cbb, + 0x28517711, 0xc20ad9f8, 0xabcc5167, 0xccad925f, + 0x4de81751, 0x3830dc8e, 0x379d5862, 0x9320f991, + 0xea7a90c2, 0xfb3e7bce, 0x5121ce64, 0x774fbe32, + 0xa8b6e37e, 0xc3293d46, 0x48de5369, 0x6413e680, + 0xa2ae0810, 0xdd6db224, 0x69852dfd, 0x09072166, + 0xb39a460a, 0x6445c0dd, 0x586cdecf, 0x1c20c8ae, + 0x5bbef7dd, 0x1b588d40, 0xccd2017f, 0x6bb4e3bb, + 0xdda26a7e, 0x3a59ff45, 0x3e350a44, 0xbcb4cdd5, + 0x72eacea8, 0xfa6484bb, 0x8d6612ae, 0xbf3c6f47, + 0xd29be463, 0x542f5d9e, 0xaec2771b, 0xf64e6370, + 0x740e0d8d, 0xe75b1357, 0xf8721671, 0xaf537d5d, + 0x4040cb08, 0x4eb4e2cc, 0x34d2466a, 0x0115af84, + 0xe1b00428, 0x95983a1d, 0x06b89fb4, 0xce6ea048, + 0x6f3f3b82, 0x3520ab82, 0x011a1d4b, 0x277227f8, + 0x611560b1, 0xe7933fdc, 0xbb3a792b, 0x344525bd, + 0xa08839e1, 0x51ce794b, 0x2f32c9b7, 0xa01fbac9, + 0xe01cc87e, 0xbcc7d1f6, 0xcf0111c3, 0xa1e8aac7, + 0x1a908749, 0xd44fbd9a, 0xd0dadecb, 0xd50ada38, + 0x0339c32a, 0xc6913667, 0x8df9317c, 0xe0b12b4f, + 0xf79e59b7, 0x43f5bb3a, 0xf2d519ff, 0x27d9459c, + 0xbf97222c, 0x15e6fc2a, 0x0f91fc71, 0x9b941525, + 0xfae59361, 0xceb69ceb, 0xc2a86459, 0x12baa8d1, + 0xb6c1075e, 0xe3056a0c, 0x10d25065, 0xcb03a442, + 0xe0ec6e0e, 0x1698db3b, 0x4c98a0be, 0x3278e964, + 0x9f1f9532, 0xe0d392df, 0xd3a0342b, 0x8971f21e, + 0x1b0a7441, 0x4ba3348c, 0xc5be7120, 0xc37632d8, + 0xdf359f8d, 0x9b992f2e, 0xe60b6f47, 0x0fe3f11d, + 0xe54cda54, 0x1edad891, 0xce6279cf, 0xcd3e7e6f, + 0x1618b166, 0xfd2c1d05, 0x848fd2c5, 0xf6fb2299, + 0xf523f357, 0xa6327623, 0x93a83531, 0x56cccd02, + 0xacf08162, 0x5a75ebb5, 0x6e163697, 0x88d273cc, + 0xde966292, 0x81b949d0, 0x4c50901b, 0x71c65614, + 0xe6c6c7bd, 0x327a140a, 0x45e1d006, 0xc3f27b9a, + 0xc9aa53fd, 0x62a80f00, 0xbb25bfe2, 0x35bdd2f6, + 0x71126905, 0xb2040222, 0xb6cbcf7c, 0xcd769c2b, + 0x53113ec0, 0x1640e3d3, 0x38abbd60, 0x2547adf0, + 0xba38209c, 0xf746ce76, 0x77afa1c5, 0x20756060, + 0x85cbfe4e, 0x8ae88dd8, 0x7aaaf9b0, 0x4cf9aa7e, + 0x1948c25c, 0x02fb8a8c, 0x01c36ae4, 0xd6ebe1f9, + 0x90d4f869, 0xa65cdea0, 0x3f09252d, 0xc208e69f, + 0xb74e6132, 0xce77e25b, 0x578fdfe3, 0x3ac372e6} + }, + { + 0x243f6a88, 0x85a308d3, 0x13198a2e, 0x03707344, + 0xa4093822, 0x299f31d0, 0x082efa98, 0xec4e6c89, + 0x452821e6, 0x38d01377, 0xbe5466cf, 0x34e90c6c, + 0xc0ac29b7, 0xc97c50dd, 0x3f84d5b5, 0xb5470917, + 0x9216d5d9, 0x8979fb1b + } }; + + *c = initstate; +} + +u_int32_t +Blowfish_stream2word(const u_int8_t *data, u_int16_t databytes, + u_int16_t *current) +{ + u_int8_t i; + u_int16_t j; + u_int32_t temp; + + temp = 0x00000000; + j = *current; + + for (i = 0; i < 4; i++, j++) { + if (j >= databytes) + j = 0; + temp = (temp << 8) | data[j]; + } + + *current = j; + return temp; +} + +void +Blowfish_expand0state(blf_ctx *c, const u_int8_t *key, u_int16_t keybytes) +{ + u_int16_t i; + u_int16_t j; + u_int16_t k; + u_int32_t temp; + u_int32_t datal; + u_int32_t datar; + + j = 0; + for (i = 0; i < BLF_N + 2; i++) { + /* Extract 4 int8 to 1 int32 from keystream */ + temp = Blowfish_stream2word(key, keybytes, &j); + c->P[i] = c->P[i] ^ temp; + } + + j = 0; + datal = 0x00000000; + datar = 0x00000000; + for (i = 0; i < BLF_N + 2; i += 2) { + Blowfish_encipher(c, &datal, &datar); + + c->P[i] = datal; + c->P[i + 1] = datar; + } + + for (i = 0; i < 4; i++) { + for (k = 0; k < 256; k += 2) { + Blowfish_encipher(c, &datal, &datar); + + c->S[i][k] = datal; + c->S[i][k + 1] = datar; + } + } +} + + +void +Blowfish_expandstate(blf_ctx *c, const u_int8_t *data, u_int16_t databytes, + const u_int8_t *key, u_int16_t keybytes) +{ + u_int16_t i; + u_int16_t j; + u_int16_t k; + u_int32_t temp; + u_int32_t datal; + u_int32_t datar; + + j = 0; + for (i = 0; i < BLF_N + 2; i++) { + /* Extract 4 int8 to 1 int32 from keystream */ + temp = Blowfish_stream2word(key, keybytes, &j); + c->P[i] = c->P[i] ^ temp; + } + + j = 0; + datal = 0x00000000; + datar = 0x00000000; + for (i = 0; i < BLF_N + 2; i += 2) { + datal ^= Blowfish_stream2word(data, databytes, &j); + datar ^= Blowfish_stream2word(data, databytes, &j); + Blowfish_encipher(c, &datal, &datar); + + c->P[i] = datal; + c->P[i + 1] = datar; + } + + for (i = 0; i < 4; i++) { + for (k = 0; k < 256; k += 2) { + datal ^= Blowfish_stream2word(data, databytes, &j); + datar ^= Blowfish_stream2word(data, databytes, &j); + Blowfish_encipher(c, &datal, &datar); + + c->S[i][k] = datal; + c->S[i][k + 1] = datar; + } + } + +} + +void +blf_key(blf_ctx *c, const u_int8_t *k, u_int16_t len) +{ + /* Initialize S-boxes and subkeys with Pi */ + Blowfish_initstate(c); + + /* Transform S-boxes and subkeys with key */ + Blowfish_expand0state(c, k, len); +} + +void +blf_enc(blf_ctx *c, u_int32_t *data, u_int16_t blocks) +{ + u_int32_t *d; + u_int16_t i; + + d = data; + for (i = 0; i < blocks; i++) { + Blowfish_encipher(c, d, d + 1); + d += 2; + } +} + +void +blf_dec(blf_ctx *c, u_int32_t *data, u_int16_t blocks) +{ + u_int32_t *d; + u_int16_t i; + + d = data; + for (i = 0; i < blocks; i++) { + Blowfish_decipher(c, d, d + 1); + d += 2; + } +} + +void +blf_ecb_encrypt(blf_ctx *c, u_int8_t *data, u_int32_t len) +{ + u_int32_t l, r; + u_int32_t i; + + for (i = 0; i < len; i += 8) { + l = data[0] << 24 | data[1] << 16 | data[2] << 8 | data[3]; + r = data[4] << 24 | data[5] << 16 | data[6] << 8 | data[7]; + Blowfish_encipher(c, &l, &r); + data[0] = l >> 24 & 0xff; + data[1] = l >> 16 & 0xff; + data[2] = l >> 8 & 0xff; + data[3] = l & 0xff; + data[4] = r >> 24 & 0xff; + data[5] = r >> 16 & 0xff; + data[6] = r >> 8 & 0xff; + data[7] = r & 0xff; + data += 8; + } +} + +void +blf_ecb_decrypt(blf_ctx *c, u_int8_t *data, u_int32_t len) +{ + u_int32_t l, r; + u_int32_t i; + + for (i = 0; i < len; i += 8) { + l = data[0] << 24 | data[1] << 16 | data[2] << 8 | data[3]; + r = data[4] << 24 | data[5] << 16 | data[6] << 8 | data[7]; + Blowfish_decipher(c, &l, &r); + data[0] = l >> 24 & 0xff; + data[1] = l >> 16 & 0xff; + data[2] = l >> 8 & 0xff; + data[3] = l & 0xff; + data[4] = r >> 24 & 0xff; + data[5] = r >> 16 & 0xff; + data[6] = r >> 8 & 0xff; + data[7] = r & 0xff; + data += 8; + } +} + +void +blf_cbc_encrypt(blf_ctx *c, u_int8_t *iv, u_int8_t *data, u_int32_t len) +{ + u_int32_t l, r; + u_int32_t i, j; + + for (i = 0; i < len; i += 8) { + for (j = 0; j < 8; j++) + data[j] ^= iv[j]; + l = data[0] << 24 | data[1] << 16 | data[2] << 8 | data[3]; + r = data[4] << 24 | data[5] << 16 | data[6] << 8 | data[7]; + Blowfish_encipher(c, &l, &r); + data[0] = l >> 24 & 0xff; + data[1] = l >> 16 & 0xff; + data[2] = l >> 8 & 0xff; + data[3] = l & 0xff; + data[4] = r >> 24 & 0xff; + data[5] = r >> 16 & 0xff; + data[6] = r >> 8 & 0xff; + data[7] = r & 0xff; + iv = data; + data += 8; + } +} + +void +blf_cbc_decrypt(blf_ctx *c, u_int8_t *iva, u_int8_t *data, u_int32_t len) +{ + u_int32_t l, r; + u_int8_t *iv; + u_int32_t i, j; + + iv = data + len - 16; + data = data + len - 8; + for (i = len - 8; i >= 8; i -= 8) { + l = data[0] << 24 | data[1] << 16 | data[2] << 8 | data[3]; + r = data[4] << 24 | data[5] << 16 | data[6] << 8 | data[7]; + Blowfish_decipher(c, &l, &r); + data[0] = l >> 24 & 0xff; + data[1] = l >> 16 & 0xff; + data[2] = l >> 8 & 0xff; + data[3] = l & 0xff; + data[4] = r >> 24 & 0xff; + data[5] = r >> 16 & 0xff; + data[6] = r >> 8 & 0xff; + data[7] = r & 0xff; + for (j = 0; j < 8; j++) + data[j] ^= iv[j]; + iv -= 8; + data -= 8; + } + l = data[0] << 24 | data[1] << 16 | data[2] << 8 | data[3]; + r = data[4] << 24 | data[5] << 16 | data[6] << 8 | data[7]; + Blowfish_decipher(c, &l, &r); + data[0] = l >> 24 & 0xff; + data[1] = l >> 16 & 0xff; + data[2] = l >> 8 & 0xff; + data[3] = l & 0xff; + data[4] = r >> 24 & 0xff; + data[5] = r >> 16 & 0xff; + data[6] = r >> 8 & 0xff; + data[7] = r & 0xff; + for (j = 0; j < 8; j++) + data[j] ^= iva[j]; +} diff --git a/src/luabcrypt.c b/src/luabcrypt.c @@ -0,0 +1,68 @@ +#include <stdlib.h> +#include <string.h> +#include <sys/types.h> + +#include <lua.h> +#include <lualib.h> +#include <lauxlib.h> + +#include "blf.h" + +static int luabcrypt_digest( lua_State *L ) +{ + const char *key = luaL_checkstring( L, 1 ); + const char *salt = luaL_checkstring( L, 2 ); + + char *hash = malloc( _PASSWORD_LEN ); + bcrypt( key, salt, hash ); + + lua_pushstring( L, hash ); + + free( hash ); + + return 1; +} + +static int luabcrypt_gensalt( lua_State *L ) +{ + u_int8_t logRounds = luaL_checkinteger( L, 1 ); + + char *salt = malloc( 7 + ( BCRYPT_MAXSALT * 4 + 2 ) / 3 + 1 ); + bcrypt_gensalt( logRounds, salt ); + + lua_pushstring( L, salt ); + + free( salt ); + + return 1; +} + +static int luabcrypt_verify( lua_State *L ) +{ + const char *key = luaL_checkstring( L, 1 ); + const char *digest = luaL_checkstring( L, 2 ); + + char *encrypted = malloc( _PASSWORD_LEN ); + bcrypt( key, digest, encrypted ); + + lua_pushboolean( L, strncmp( encrypted, digest, _PASSWORD_LEN ) == 0 ); + + free( encrypted ); + + return 1; +} + +struct luaL_reg luabcrypt_lib[] = +{ + { "digest", luabcrypt_digest }, + { "gensalt", luabcrypt_gensalt }, + { "verify", luabcrypt_verify }, + { NULL, NULL }, +}; + +LUALIB_API int luaopen_bcrypt( lua_State *L ) +{ + luaL_openlib( L, "bcrypt", luabcrypt_lib, 0 ); + + return 1; +} diff --git a/tests.lua b/tests.lua @@ -0,0 +1,76 @@ +require( "bcrypt" ) + +local salt = bcrypt.gensalt( 5 ) +assert( salt:len() == 29 ) + +local digest = bcrypt.digest( salt, salt ) +assert( bcrypt.verify( salt, digest ) ) +assert( not bcrypt.verify( salt:gsub( "^%$", "#" ), digest ) ) + +local tests = { + { + "$2a$04$TnjywYklQbbZjdjBgBoA4e9G7RJt9blgMgsCvUvus4Iv4TENB5nHy", + "test" + }, + + -- rest are taken from John the Ripper + -- http://cvsweb.openwall.com/cgi/cvsweb.cgi/Owl/packages/john/john/src/BF_fmt.c?rev=HEAD + { + "$2a$05$CCCCCCCCCCCCCCCCCCCCC.E5YPO9kmyuRGyh0XouQYb4YMJKvyOeW", + "U*U" + }, + { + "$2a$05$CCCCCCCCCCCCCCCCCCCCC.VGOzA784oUp/Z0DY336zx7pLYAy0lwK", + "U*U*" + }, + { + "$2a$05$XXXXXXXXXXXXXXXXXXXXXOAcXxm9kjPGEMsLznoKqmqw7tc8WCx4a", + "U*U*U" + }, + { + "$2a$05$CCCCCCCCCCCCCCCCCCCCC.7uG0VCzI2bS7j6ymqJi9CdcdxiRTWNy", + "" + }, + { + "$2a$05$/OK.fbVrR/bpIqNJ5ianF.Sa7shbm4.OzKpvFnX1pQLmQW96oUlCq", + "\\xa3" + }, + { + "$2a$05$/OK.fbVrR/bpIqNJ5ianF.nRht2l/HRhr6zmCp9vYUvvsqynflf9e", + "\\xff\\xa3345" + }, + { + "$2a$05$/OK.fbVrR/bpIqNJ5ianF.6IflQkJytoRVc1yuaNtHfiuq.FRlSIS", + "\\xa3ab" + }, + { + "$2a$05$abcdefghijklmnopqrstuu5s2v8.iXieOjg/.AySBTTZIIVFJeBui", + "0123456789abcdefghijklmnopqrstuvwxyzABCDEFGHIJKLMNOPQRSTUVWXYZ0123456789chars after 72 are ignored" + }, + { + "$2a$05$/OK.fbVrR/bpIqNJ5ianF.swQOIzjOiJ9GHEPuhEkvqrUyvWhEMx6", + "\\xaa\\xaa\\xaa\\xaa\\xaa\\xaa\\xaa\\xaa\\xaa\\xaa\\xaa\\xaa\\xaa\\xaa\\xaa\\xaa\\xaa\\xaa\\xaa\\xaa\\xaa\\xaa\\xaa\\xaa\\xaa\\xaa\\xaa\\xaa\\xaa\\xaa\\xaa\\xaa\\xaa\\xaa\\xaa\\xaa\\xaa\\xaa\\xaa\\xaa\\xaa\\xaa\\xaa\\xaa\\xaa\\xaa\\xaa\\xaa\\xaa\\xaa\\xaa\\xaa\\xaa\\xaa\\xaa\\xaa\\xaa\\xaa\\xaa\\xaa\\xaa\\xaa\\xaa\\xaa\\xaa\\xaa\\xaa\\xaa\\xaa\\xaa\\xaa\\xaachars after 72 are ignored as usual" + }, + { + "$2a$05$/OK.fbVrR/bpIqNJ5ianF.R9xrDjiycxMbQE2bp.vgqlYpW5wx2yy", + "\\xaa\\x55\\xaa\\x55\\xaa\\x55\\xaa\\x55\\xaa\\x55\\xaa\\x55\\xaa\\x55\\xaa\\x55\\xaa\\x55\\xaa\\x55\\xaa\\x55\\xaa\\x55\\xaa\\x55\\xaa\\x55\\xaa\\x55\\xaa\\x55\\xaa\\x55\\xaa\\x55\\xaa\\x55\\xaa\\x55\\xaa\\x55\\xaa\\x55\\xaa\\x55\\xaa\\x55\\xaa\\x55\\xaa\\x55\\xaa\\x55\\xaa\\x55\\xaa\\x55\\xaa\\x55\\xaa\\x55\\xaa\\x55\\xaa\\x55\\xaa\\x55\\xaa\\x55\\xaa\\x55" + }, + { + "$2a$05$CCCCCCCCCCCCCCCCCCCCC.7uG0VCzI2bS7j6ymqJi9CdcdxiRTWNy", + "" + }, + { + "$2a$05$/OK.fbVrR/bpIqNJ5ianF.9tQZzcJfm3uj2NvJ/n5xkhpqLrMpWCe", + "\\x55\\xaa\\xff\\x55\\xaa\\xff\\x55\\xaa\\xff\\x55\\xaa\\xff\\x55\\xaa\\xff\\x55\\xaa\\xff\\x55\\xaa\\xff\\x55\\xaa\\xff\\x55\\xaa\\xff\\x55\\xaa\\xff\\x55\\xaa\\xff\\x55\\xaa\\xff\\x55\\xaa\\xff\\x55\\xaa\\xff\\x55\\xaa\\xff\\x55\\xaa\\xff\\x55\\xaa\\xff\\x55\\xaa\\xff\\x55\\xaa\\xff\\x55\\xaa\\xff\\x55\\xaa\\xff\\x55\\xaa\\xff\\x55\\xaa\\xff\\x55\\xaa\\xff" + }, +} + +for _, test in pairs( tests ) do + local key = test[ 2 ]:gsub( "\\x([%l%d][%l%d])", function( hex ) + return string.char( tonumber( hex, 16 ) ) + end ) + + assert( bcrypt.verify( key, test[ 1 ] ) ) +end + +print( "Tests passed!" )