pax_global_header00006660000000000000000000000064126273724550014527gustar00rootroot0000000000000052 comment=941513fad5714aef602d832b9310600d2a8a3728 signify-13/000077500000000000000000000000001262737245500127645ustar00rootroot00000000000000signify-13/.gitignore000066400000000000000000000000771262737245500147600ustar00rootroot00000000000000*.o .*.sw[po] *.pyc signify signify.1.gz sha512hl.c sha256hl.c signify-13/.gitmodules000066400000000000000000000001211262737245500151330ustar00rootroot00000000000000[submodule "libwaive"] path = libwaive url = https://github.com/dimkr/libwaive signify-13/.ycm_extra_conf.py000066400000000000000000000003761262737245500164220ustar00rootroot00000000000000#! /usr/bin/env python # -*- coding: utf-8 -*- # vim:fenc=utf-8 # # Copyright © 2014 Adrian Perez # # Distributed under terms of the MIT license. def FlagsForFile(path, **kwarg): return { 'flags': ['-Wall'], 'do_cache': True } signify-13/Makefile000066400000000000000000000053151262737245500144300ustar00rootroot00000000000000# # Makefile # Adrian Perez, 2014-01-14 14:33 # PLEDGE ?= noop CFLAGS += $(EXTRA_CFLAGS) LDFLAGS += $(EXTRA_LDFLAGS) S := crypto_api.c \ mod_ed25519.c \ mod_ge25519.c \ fe25519.c \ sc25519.c \ smult_curve25519_ref.c \ bcrypt_pbkdf.c \ timingsafe_bcmp.c \ explicit_bzero.c \ blowfish.c \ base64.c \ sha2.c \ sha256hl.c \ sha512hl.c \ signify.c CPPFLAGS += -include compat.h PLEDGE := $(strip $(PLEDGE)) ifneq ($(PLEDGE),) S += pledge_$(PLEDGE).c endif all: signify # In order to use libwaive, we need libseccomp and making sure that the # Git submodule corresponding to libwaive is properly checked out. ifeq ($(PLEDGE),waive) SECCOMP_CFLAGS := $(shell pkg-config libseccomp --cflags) SECCOMP_LIBS := $(shell pkg-config libseccomp --libs) CFLAGS += $(SECCOMP_CFLAGS) -pthread LDFLAGS += $(SECCOMP_LIBS) -pthread S += libwaive/waive.c libwaive/waive.c: .gitmodules git submodule init && git submodule update libwaive touch $@ endif ifeq ($(strip $(VERIFY_ONLY)),) S += ohash.c else CPPFLAGS += -DVERIFY_ONLY=1 $(warning ) $(warning ******************************************************) $(warning ) $(warning Building with VERIFY_ONLY enabled is unsupported, YMMV) $(warning ) $(warning ******************************************************) $(warning ) endif ifeq ($(strip $(BOUNDS_CHECKING)),1) CPPFLAGS += -DCOMPAT_BOUNDS_CHECKING endif ifneq ($(strip $(LTO)),) CFLAGS += -flto LDFLAGS += -flto endif O := $(patsubst %.c,%.o,$S) PKG_VER := 0.7 PKG_CHECK := $(shell pkg-config libbsd --atleast-version=$(PKG_VER) && echo ok) ifneq ($(strip $(PKG_CHECK)),ok) $(error libbsd is not installed or version is older than $(PKG_VER)) endif PKG_CFLAGS := $(shell pkg-config libbsd --cflags) PKG_LDLIBS := $(shell pkg-config libbsd --libs) signify: $O $(CC) $(LDFLAGS) -o $@ $^ $(PKG_LDLIBS) signify: CFLAGS += $(PKG_CFLAGS) -Wall clean: $(RM) $O signify signify.1.gz sha256hl.c sha512hl.c signify.1.gz: signify.1 gzip -9c $< > $@ sha256hl.c: helper.c sed -e 's/hashinc/sha2.h/g' \ -e 's/HASH/SHA256/g' \ -e 's/SHA[0-9][0-9][0-9]_CTX/SHA2_CTX/g' $< > $@ sha512hl.c: helper.c sed -e 's/hashinc/sha2.h/g' \ -e 's/HASH/SHA512/g' \ -e 's/SHA[0-9][0-9][0-9]_CTX/SHA2_CTX/g' $< > $@ install: signify signify.1.gz install -m 755 -d $(DESTDIR)$(PREFIX)/bin install -m 755 -t $(DESTDIR)$(PREFIX)/bin signify install -m 755 -d $(DESTDIR)$(PREFIX)/share/man/man1 install -m 644 -t $(DESTDIR)$(PREFIX)/share/man/man1 signify.1.gz .PHONY: install GIT_TAG = $(shell git describe --tags HEAD) dist: T := $(GIT_TAG) dist: V := $(patsubst v%,%,$T) dist: git archive --prefix=signify-$V/ $T | xz -9c > signify-$V.tar.xz .PHONY: dist signify-13/README.md000066400000000000000000000033121262737245500142420ustar00rootroot00000000000000# Signify - Sign and Verify OpenBSD tool to signs and verify signatures on files. This is a portable version which uses [libbsd](http://libbsd.freedesktop.org/wiki/) (version 0.7 or newer is required). See http://www.tedunangst.com/flak/post/signify for more information. ## Build options The following options can be passed to Make: * `VERIFY_ONLY=1` Build only the verification code. Support for signing will not be available in the built `signify` binary. **Note that this is unsupported and compilation may not succeed.** * `BOUNDS_CHECKING=1` Enables bounds-checking using `__attribute__((bounded))`. Your compiler must have support for this. Clang 3.4 is known to work. * `LTO=1` Perform Link-Time Optimizations. Both your compiler *and* linker must have support for this. Recent binutils and GCC/Clang are known to work. * `PLEDGE=…` Choose among one of the alternative implementations of the [pledge()](http://www.openbsd.org/cgi-bin/man.cgi/OpenBSD-current/man2/pledge.2) system call. For the moment the only supported values is: - `noop` *(default)*: Uses an implementation which does nothing - `waive` *(Linux-only)*: Uses [libwaive](https://github.com/dimkr/libwaive), which itself uses [seccomp filters](https://en.wikipedia.org/wiki/Seccomp). To use your own implementation, use an empty value, and pass the needed flags for linking its code. For example: `make PLEDGE='' EXTRA_LDFLAGS=my-pledge.o`. * `EXTRA_CFLAGS=…`, `EXTRA_LDFLAGS=…` Additional flags to be passed to the compiler and the linker, repectively. For example, you can build a size-optimized version with: make EXTRA_CFLAGS='-Os -s' LTO=1 signify-13/arc4random.c000066400000000000000000000111401262737245500151570ustar00rootroot00000000000000/* $OpenBSD: arc4random.c,v 1.54 2015/09/13 08:31:47 guenther Exp $ */ /* * Copyright (c) 1996, David Mazieres * Copyright (c) 2008, Damien Miller * Copyright (c) 2013, Markus Friedl * Copyright (c) 2014, Theo de Raadt * * Permission to use, copy, modify, and distribute this software for any * purpose with or without fee is hereby granted, provided that the above * copyright notice and this permission notice appear in all copies. * * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE. */ /* * ChaCha based random number generator for OpenBSD. */ #include #include #include #include #include #include #include #include #include #define KEYSTREAM_ONLY #include "chacha_private.h" #define minimum(a, b) ((a) < (b) ? (a) : (b)) #if defined(__GNUC__) || defined(_MSC_VER) #define inline __inline #else /* __GNUC__ || _MSC_VER */ #define inline #endif /* !__GNUC__ && !_MSC_VER */ #define KEYSZ 32 #define IVSZ 8 #define BLOCKSZ 64 #define RSBUFSZ (16*BLOCKSZ) /* Marked MAP_INHERIT_ZERO, so zero'd out in fork children. */ static struct _rs { size_t rs_have; /* valid bytes at end of rs_buf */ size_t rs_count; /* bytes till reseed */ } *rs; /* Maybe be preserved in fork children, if _rs_allocate() decides. */ static struct _rsx { chacha_ctx rs_chacha; /* chacha context for random keystream */ u_char rs_buf[RSBUFSZ]; /* keystream blocks */ } *rsx; static inline int _rs_allocate(struct _rs **, struct _rsx **); static inline void _rs_forkdetect(void); #include "arc4random.h" static inline void _rs_rekey(u_char *dat, size_t datlen); static inline void _rs_init(u_char *buf, size_t n) { if (n < KEYSZ + IVSZ) return; if (rs == NULL) { if (_rs_allocate(&rs, &rsx) == -1) abort(); } chacha_keysetup(&rsx->rs_chacha, buf, KEYSZ * 8, 0); chacha_ivsetup(&rsx->rs_chacha, buf + KEYSZ); } static void _rs_stir(void) { u_char rnd[KEYSZ + IVSZ]; if (getentropy(rnd, sizeof rnd) == -1) _getentropy_fail(); if (!rs) _rs_init(rnd, sizeof(rnd)); else _rs_rekey(rnd, sizeof(rnd)); explicit_bzero(rnd, sizeof(rnd)); /* discard source seed */ /* invalidate rs_buf */ rs->rs_have = 0; memset(rsx->rs_buf, 0, sizeof(rsx->rs_buf)); rs->rs_count = 1600000; } static inline void _rs_stir_if_needed(size_t len) { _rs_forkdetect(); if (!rs || rs->rs_count <= len) _rs_stir(); if (rs->rs_count <= len) rs->rs_count = 0; else rs->rs_count -= len; } static inline void _rs_rekey(u_char *dat, size_t datlen) { #ifndef KEYSTREAM_ONLY memset(rsx->rs_buf, 0, sizeof(rsx->rs_buf)); #endif /* fill rs_buf with the keystream */ chacha_encrypt_bytes(&rsx->rs_chacha, rsx->rs_buf, rsx->rs_buf, sizeof(rsx->rs_buf)); /* mix in optional user provided data */ if (dat) { size_t i, m; m = minimum(datlen, KEYSZ + IVSZ); for (i = 0; i < m; i++) rsx->rs_buf[i] ^= dat[i]; } /* immediately reinit for backtracking resistance */ _rs_init(rsx->rs_buf, KEYSZ + IVSZ); memset(rsx->rs_buf, 0, KEYSZ + IVSZ); rs->rs_have = sizeof(rsx->rs_buf) - KEYSZ - IVSZ; } static inline void _rs_random_buf(void *_buf, size_t n) { u_char *buf = (u_char *)_buf; u_char *keystream; size_t m; _rs_stir_if_needed(n); while (n > 0) { if (rs->rs_have > 0) { m = minimum(n, rs->rs_have); keystream = rsx->rs_buf + sizeof(rsx->rs_buf) - rs->rs_have; memcpy(buf, keystream, m); memset(keystream, 0, m); buf += m; n -= m; rs->rs_have -= m; } if (rs->rs_have == 0) _rs_rekey(NULL, 0); } } static inline void _rs_random_u32(uint32_t *val) { u_char *keystream; _rs_stir_if_needed(sizeof(*val)); if (rs->rs_have < sizeof(*val)) _rs_rekey(NULL, 0); keystream = rsx->rs_buf + sizeof(rsx->rs_buf) - rs->rs_have; memcpy(val, keystream, sizeof(*val)); memset(keystream, 0, sizeof(*val)); rs->rs_have -= sizeof(*val); } uint32_t arc4random(void) { uint32_t val; _ARC4_LOCK(); _rs_random_u32(&val); _ARC4_UNLOCK(); return val; } DEF_WEAK(arc4random); void arc4random_buf(void *buf, size_t n) { _ARC4_LOCK(); _rs_random_buf(buf, n); _ARC4_UNLOCK(); } DEF_WEAK(arc4random_buf); signify-13/arc4random.h000066400000000000000000000031601262737245500151670ustar00rootroot00000000000000/* $OpenBSD: arc4random.h,v 1.4 2015/01/15 06:57:18 deraadt Exp $ */ /* * Copyright (c) 1996, David Mazieres * Copyright (c) 2008, Damien Miller * Copyright (c) 2013, Markus Friedl * Copyright (c) 2014, Theo de Raadt * * Permission to use, copy, modify, and distribute this software for any * purpose with or without fee is hereby granted, provided that the above * copyright notice and this permission notice appear in all copies. * * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE. */ /* * Stub functions for portability. */ #include #include #include "thread_private.h" static inline void _getentropy_fail(void) { raise(SIGKILL); } static inline int _rs_allocate(struct _rs **rsp, struct _rsx **rsxp) { struct { struct _rs rs; struct _rsx rsx; } *p; if ((p = mmap(NULL, sizeof(*p), PROT_READ|PROT_WRITE, MAP_ANON|MAP_PRIVATE, -1, 0)) == MAP_FAILED) return (-1); if (minherit(p, sizeof(*p), MAP_INHERIT_ZERO) == -1) { munmap(p, sizeof(*p)); return (-1); } *rsp = &p->rs; *rsxp = &p->rsx; return (0); } static inline void _rs_forkdetect(void) { } signify-13/base64.c000066400000000000000000000242471262737245500142250ustar00rootroot00000000000000/* $OpenBSD: base64.c,v 1.8 2015/01/16 16:48:51 deraadt Exp $ */ /* * Copyright (c) 1996 by Internet Software Consortium. * * Permission to use, copy, modify, and distribute this software for any * purpose with or without fee is hereby granted, provided that the above * copyright notice and this permission notice appear in all copies. * * THE SOFTWARE IS PROVIDED "AS IS" AND INTERNET SOFTWARE CONSORTIUM DISCLAIMS * ALL WARRANTIES WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES * OF MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL INTERNET SOFTWARE * CONSORTIUM BE LIABLE FOR ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL * DAMAGES OR ANY DAMAGES WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR * PROFITS, WHETHER IN AN ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS * ACTION, ARISING OUT OF OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS * SOFTWARE. */ /* * Portions Copyright (c) 1995 by International Business Machines, Inc. * * International Business Machines, Inc. (hereinafter called IBM) grants * permission under its copyrights to use, copy, modify, and distribute this * Software with or without fee, provided that the above copyright notice and * all paragraphs of this notice appear in all copies, and that the name of IBM * not be used in connection with the marketing of any product incorporating * the Software or modifications thereof, without specific, written prior * permission. * * To the extent it has a right to do so, IBM grants an immunity from suit * under its patents, if any, for the use, sale or manufacture of products to * the extent that such products are used for performing Domain Name System * dynamic updates in TCP/IP networks by means of the Software. No immunity is * granted for any product per se or for any other function of any product. * * THE SOFTWARE IS PROVIDED "AS IS", AND IBM DISCLAIMS ALL WARRANTIES, * INCLUDING ALL IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A * PARTICULAR PURPOSE. IN NO EVENT SHALL IBM BE LIABLE FOR ANY SPECIAL, * DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES WHATSOEVER ARISING * OUT OF OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE, EVEN * IF IBM IS APPRISED OF THE POSSIBILITY OF SUCH DAMAGES. */ #include #include #include #include #include #include #include #include #include #include static const char Base64[] = "ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789+/"; static const char Pad64 = '='; /* (From RFC1521 and draft-ietf-dnssec-secext-03.txt) The following encoding technique is taken from RFC 1521 by Borenstein and Freed. It is reproduced here in a slightly edited form for convenience. A 65-character subset of US-ASCII is used, enabling 6 bits to be represented per printable character. (The extra 65th character, "=", is used to signify a special processing function.) The encoding process represents 24-bit groups of input bits as output strings of 4 encoded characters. Proceeding from left to right, a 24-bit input group is formed by concatenating 3 8-bit input groups. These 24 bits are then treated as 4 concatenated 6-bit groups, each of which is translated into a single digit in the base64 alphabet. Each 6-bit group is used as an index into an array of 64 printable characters. The character referenced by the index is placed in the output string. Table 1: The Base64 Alphabet Value Encoding Value Encoding Value Encoding Value Encoding 0 A 17 R 34 i 51 z 1 B 18 S 35 j 52 0 2 C 19 T 36 k 53 1 3 D 20 U 37 l 54 2 4 E 21 V 38 m 55 3 5 F 22 W 39 n 56 4 6 G 23 X 40 o 57 5 7 H 24 Y 41 p 58 6 8 I 25 Z 42 q 59 7 9 J 26 a 43 r 60 8 10 K 27 b 44 s 61 9 11 L 28 c 45 t 62 + 12 M 29 d 46 u 63 / 13 N 30 e 47 v 14 O 31 f 48 w (pad) = 15 P 32 g 49 x 16 Q 33 h 50 y Special processing is performed if fewer than 24 bits are available at the end of the data being encoded. A full encoding quantum is always completed at the end of a quantity. When fewer than 24 input bits are available in an input group, zero bits are added (on the right) to form an integral number of 6-bit groups. Padding at the end of the data is performed using the '=' character. Since all base64 input is an integral number of octets, only the ------------------------------------------------- following cases can arise: (1) the final quantum of encoding input is an integral multiple of 24 bits; here, the final unit of encoded output will be an integral multiple of 4 characters with no "=" padding, (2) the final quantum of encoding input is exactly 8 bits; here, the final unit of encoded output will be two characters followed by two "=" padding characters, or (3) the final quantum of encoding input is exactly 16 bits; here, the final unit of encoded output will be three characters followed by one "=" padding character. */ int b64_ntop(src, srclength, target, targsize) u_char const *src; size_t srclength; char *target; size_t targsize; { size_t datalength = 0; u_char input[3]; u_char output[4]; int i; while (2 < srclength) { input[0] = *src++; input[1] = *src++; input[2] = *src++; srclength -= 3; output[0] = input[0] >> 2; output[1] = ((input[0] & 0x03) << 4) + (input[1] >> 4); output[2] = ((input[1] & 0x0f) << 2) + (input[2] >> 6); output[3] = input[2] & 0x3f; if (datalength + 4 > targsize) return (-1); target[datalength++] = Base64[output[0]]; target[datalength++] = Base64[output[1]]; target[datalength++] = Base64[output[2]]; target[datalength++] = Base64[output[3]]; } /* Now we worry about padding. */ if (0 != srclength) { /* Get what's left. */ input[0] = input[1] = input[2] = '\0'; for (i = 0; i < srclength; i++) input[i] = *src++; output[0] = input[0] >> 2; output[1] = ((input[0] & 0x03) << 4) + (input[1] >> 4); output[2] = ((input[1] & 0x0f) << 2) + (input[2] >> 6); if (datalength + 4 > targsize) return (-1); target[datalength++] = Base64[output[0]]; target[datalength++] = Base64[output[1]]; if (srclength == 1) target[datalength++] = Pad64; else target[datalength++] = Base64[output[2]]; target[datalength++] = Pad64; } if (datalength >= targsize) return (-1); target[datalength] = '\0'; /* Returned value doesn't count \0. */ return (datalength); } /* skips all whitespace anywhere. converts characters, four at a time, starting at (or after) src from base - 64 numbers into three 8 bit bytes in the target area. it returns the number of data bytes stored at the target, or -1 on error. */ int b64_pton(src, target, targsize) char const *src; u_char *target; size_t targsize; { int tarindex, state, ch; u_char nextbyte; char *pos; state = 0; tarindex = 0; while ((ch = (unsigned char)*src++) != '\0') { if (isspace(ch)) /* Skip whitespace anywhere. */ continue; if (ch == Pad64) break; pos = strchr(Base64, ch); if (pos == 0) /* A non-base64 character. */ return (-1); switch (state) { case 0: if (target) { if (tarindex >= targsize) return (-1); target[tarindex] = (pos - Base64) << 2; } state = 1; break; case 1: if (target) { if (tarindex >= targsize) return (-1); target[tarindex] |= (pos - Base64) >> 4; nextbyte = ((pos - Base64) & 0x0f) << 4; if (tarindex + 1 < targsize) target[tarindex+1] = nextbyte; else if (nextbyte) return (-1); } tarindex++; state = 2; break; case 2: if (target) { if (tarindex >= targsize) return (-1); target[tarindex] |= (pos - Base64) >> 2; nextbyte = ((pos - Base64) & 0x03) << 6; if (tarindex + 1 < targsize) target[tarindex+1] = nextbyte; else if (nextbyte) return (-1); } tarindex++; state = 3; break; case 3: if (target) { if (tarindex >= targsize) return (-1); target[tarindex] |= (pos - Base64); } tarindex++; state = 0; break; } } /* * We are done decoding Base-64 chars. Let's see if we ended * on a byte boundary, and/or with erroneous trailing characters. */ if (ch == Pad64) { /* We got a pad char. */ ch = (unsigned char)*src++; /* Skip it, get next. */ switch (state) { case 0: /* Invalid = in first position */ case 1: /* Invalid = in second position */ return (-1); case 2: /* Valid, means one byte of info */ /* Skip any number of spaces. */ for (; ch != '\0'; ch = (unsigned char)*src++) if (!isspace(ch)) break; /* Make sure there is another trailing = sign. */ if (ch != Pad64) return (-1); ch = (unsigned char)*src++; /* Skip the = */ /* Fall through to "single trailing =" case. */ /* FALLTHROUGH */ case 3: /* Valid, means two bytes of info */ /* * We know this char is an =. Is there anything but * whitespace after it? */ for (; ch != '\0'; ch = (unsigned char)*src++) if (!isspace(ch)) return (-1); /* * Now make sure for cases 2 and 3 that the "extra" * bits that slopped past the last full byte were * zeros. If we don't check them, they become a * subliminal channel. */ if (target && tarindex < targsize && target[tarindex] != 0) return (-1); } } else { /* * We ended by seeing the end of the string. Make sure we * have no partial bytes lying around. */ if (state != 0) return (-1); } return (tarindex); } signify-13/bcrypt_pbkdf.c000066400000000000000000000122651262737245500156070ustar00rootroot00000000000000/* $OpenBSD: bcrypt_pbkdf.c,v 1.13 2015/01/12 03:20:04 tedu Exp $ */ /* * Copyright (c) 2013 Ted Unangst * * Permission to use, copy, modify, and distribute this software for any * purpose with or without fee is hereby granted, provided that the above * copyright notice and this permission notice appear in all copies. * * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE. */ #include #include #include #include "blf.h" #include "sha2.h" #include #include #define MINIMUM(a,b) (((a) < (b)) ? (a) : (b)) /* * pkcs #5 pbkdf2 implementation using the "bcrypt" hash * * The bcrypt hash function is derived from the bcrypt password hashing * function with the following modifications: * 1. The input password and salt are preprocessed with SHA512. * 2. The output length is expanded to 256 bits. * 3. Subsequently the magic string to be encrypted is lengthened and modifed * to "OxychromaticBlowfishSwatDynamite" * 4. The hash function is defined to perform 64 rounds of initial state * expansion. (More rounds are performed by iterating the hash.) * * Note that this implementation pulls the SHA512 operations into the caller * as a performance optimization. * * One modification from official pbkdf2. Instead of outputting key material * linearly, we mix it. pbkdf2 has a known weakness where if one uses it to * generate (e.g.) 512 bits of key material for use as two 256 bit keys, an * attacker can merely run once through the outer loop, but the user * always runs it twice. Shuffling output bytes requires computing the * entirety of the key material to assemble any subkey. This is something a * wise caller could do; we just do it for you. */ #define BCRYPT_WORDS 8 #define BCRYPT_HASHSIZE (BCRYPT_WORDS * 4) static void bcrypt_hash(uint8_t *sha2pass, uint8_t *sha2salt, uint8_t *out) { blf_ctx state; uint8_t ciphertext[BCRYPT_HASHSIZE] = "OxychromaticBlowfishSwatDynamite"; uint32_t cdata[BCRYPT_WORDS]; int i; uint16_t j; size_t shalen = SHA512_DIGEST_LENGTH; /* key expansion */ Blowfish_initstate(&state); Blowfish_expandstate(&state, sha2salt, shalen, sha2pass, shalen); for (i = 0; i < 64; i++) { Blowfish_expand0state(&state, sha2salt, shalen); Blowfish_expand0state(&state, sha2pass, shalen); } /* encryption */ j = 0; for (i = 0; i < BCRYPT_WORDS; i++) cdata[i] = Blowfish_stream2word(ciphertext, sizeof(ciphertext), &j); for (i = 0; i < 64; i++) blf_enc(&state, cdata, sizeof(cdata) / sizeof(uint64_t)); /* copy out */ for (i = 0; i < BCRYPT_WORDS; i++) { out[4 * i + 3] = (cdata[i] >> 24) & 0xff; out[4 * i + 2] = (cdata[i] >> 16) & 0xff; out[4 * i + 1] = (cdata[i] >> 8) & 0xff; out[4 * i + 0] = cdata[i] & 0xff; } /* zap */ explicit_bzero(ciphertext, sizeof(ciphertext)); explicit_bzero(cdata, sizeof(cdata)); explicit_bzero(&state, sizeof(state)); } int bcrypt_pbkdf(const char *pass, size_t passlen, const uint8_t *salt, size_t saltlen, uint8_t *key, size_t keylen, unsigned int rounds) { SHA2_CTX ctx; uint8_t sha2pass[SHA512_DIGEST_LENGTH]; uint8_t sha2salt[SHA512_DIGEST_LENGTH]; uint8_t out[BCRYPT_HASHSIZE]; uint8_t tmpout[BCRYPT_HASHSIZE]; uint8_t countsalt[4]; size_t i, j, amt, stride; uint32_t count; size_t origkeylen = keylen; /* nothing crazy */ if (rounds < 1) return -1; if (passlen == 0 || saltlen == 0 || keylen == 0 || keylen > sizeof(out) * sizeof(out)) return -1; stride = (keylen + sizeof(out) - 1) / sizeof(out); amt = (keylen + stride - 1) / stride; /* collapse password */ SHA512Init(&ctx); SHA512Update(&ctx, pass, passlen); SHA512Final(sha2pass, &ctx); /* generate key, sizeof(out) at a time */ for (count = 1; keylen > 0; count++) { countsalt[0] = (count >> 24) & 0xff; countsalt[1] = (count >> 16) & 0xff; countsalt[2] = (count >> 8) & 0xff; countsalt[3] = count & 0xff; /* first round, salt is salt */ SHA512Init(&ctx); SHA512Update(&ctx, salt, saltlen); SHA512Update(&ctx, countsalt, sizeof(countsalt)); SHA512Final(sha2salt, &ctx); bcrypt_hash(sha2pass, sha2salt, tmpout); memcpy(out, tmpout, sizeof(out)); for (i = 1; i < rounds; i++) { /* subsequent rounds, salt is previous output */ SHA512Init(&ctx); SHA512Update(&ctx, tmpout, sizeof(tmpout)); SHA512Final(sha2salt, &ctx); bcrypt_hash(sha2pass, sha2salt, tmpout); for (j = 0; j < sizeof(out); j++) out[j] ^= tmpout[j]; } /* * pbkdf2 deviation: output the key material non-linearly. */ amt = MINIMUM(amt, keylen); for (i = 0; i < amt; i++) { size_t dest = i * stride + (count - 1); if (dest >= origkeylen) break; key[dest] = out[i]; } keylen -= i; } /* zap */ explicit_bzero(&ctx, sizeof(ctx)); explicit_bzero(out, sizeof(out)); return 0; } signify-13/blf.h000066400000000000000000000065271262737245500137120ustar00rootroot00000000000000/* $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 * 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 */ /* 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 *); #endif signify-13/blowfish.c000066400000000000000000000561631262737245500147600ustar00rootroot00000000000000/* $OpenBSD: blowfish.c,v 1.19 2015/09/11 09:18:27 guenther Exp $ */ /* * Blowfish block cipher for OpenBSD * Copyright 1997 Niels Provos * All rights reserved. * * Implementation advice by David Mazieres . * * 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. */ #if 0 #include /* used for debugging */ #include #endif #include #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; } DEF_WEAK(Blowfish_encipher); 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; } DEF_WEAK(Blowfish_decipher); 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, 0xbbca58c8, 0xe1ffa35d, 0xb8f011a0, 0x10fa3d98, 0xfd2183b8, 0x4afcb56c, 0x2dd1d35b, 0x9a53e479, 0xb6f84565, 0xd28e49bc, 0x4bfb9790, 0xe1ddf2da, 0xa4cb7e33, 0x62fb1341, 0xcee4c6e8, 0xef20cada, 0x36774c01, 0xd07e9efe, 0x2bf11fb4, 0x95dbda4d, 0xae909198, 0xeaad8e71, 0x6b93d5a0, 0xd08ed1d0, 0xafc725e0, 0x8e3c5b2f, 0x8e7594b7, 0x8ff6e2fb, 0xf2122b64, 0x8888b812, 0x900df01c, 0x4fad5ea0, 0x688fc31c, 0xd1cff191, 0xb3a8c1ad, 0x2f2f2218, 0xbe0e1777, 0xea752dfe, 0x8b021fa1, 0xe5a0cc0f, 0xb56f74e8, 0x18acf3d6, 0xce89e299, 0xb4a84fe0, 0xfd13e0b7, 0x7cc43b81, 0xd2ada8d9, 0x165fa266, 0x80957705, 0x93cc7314, 0x211a1477, 0xe6ad2065, 0x77b5fa86, 0xc75442f5, 0xfb9d35cf, 0xebcdaf0c, 0x7b3e89a0, 0xd6411bd3, 0xae1e7e49, 0x00250e2d, 0x2071b35e, 0x226800bb, 0x57b8e0af, 0x2464369b, 0xf009b91e, 0x5563911d, 0x59dfa6aa, 0x78c14389, 0xd95a537f, 0x207d5ba2, 0x02e5b9c5, 0x83260376, 0x6295cfa9, 0x11c81968, 0x4e734a41, 0xb3472dca, 0x7b14a94a, 0x1b510052, 0x9a532915, 0xd60f573f, 0xbc9bc6e4, 0x2b60a476, 0x81e67400, 0x08ba6fb5, 0x571be91f, 0xf296ec6b, 0x2a0dd915, 0xb6636521, 0xe7b9f9b6, 0xff34052e, 0xc5855664, 0x53b02d5d, 0xa99f8fa1, 0x08ba4799, 0x6e85076a}, { 0x4b7a70e9, 0xb5b32944, 0xdb75092e, 0xc4192623, 0xad6ea6b0, 0x49a7df7d, 0x9cee60b8, 0x8fedb266, 0xecaa8c71, 0x699a17ff, 0x5664526c, 0xc2b19ee1, 0x193602a5, 0x75094c29, 0xa0591340, 0xe4183a3e, 0x3f54989a, 0x5b429d65, 0x6b8fe4d6, 0x99f73fd6, 0xa1d29c07, 0xefe830f5, 0x4d2d38e6, 0xf0255dc1, 0x4cdd2086, 0x8470eb26, 0x6382e9c6, 0x021ecc5e, 0x09686b3f, 0x3ebaefc9, 0x3c971814, 0x6b6a70a1, 0x687f3584, 0x52a0e286, 0xb79c5305, 0xaa500737, 0x3e07841c, 0x7fdeae5c, 0x8e7d44ec, 0x5716f2b8, 0xb03ada37, 0xf0500c0d, 0xf01c1f04, 0x0200b3ff, 0xae0cf51a, 0x3cb574b2, 0x25837a58, 0xdc0921bd, 0xd19113f9, 0x7ca92ff6, 0x94324773, 0x22f54701, 0x3ae5e581, 0x37c2dadc, 0xc8b57634, 0x9af3dda7, 0xa9446146, 0x0fd0030e, 0xecc8c73e, 0xa4751e41, 0xe238cd99, 0x3bea0e2f, 0x3280bba1, 0x183eb331, 0x4e548b38, 0x4f6db908, 0x6f420d03, 0xf60a04bf, 0x2cb81290, 0x24977c79, 0x5679b072, 0xbcaf89af, 0xde9a771f, 0xd9930810, 0xb38bae12, 0xdccf3f2e, 0x5512721f, 0x2e6b7124, 0x501adde6, 0x9f84cd87, 0x7a584718, 0x7408da17, 0xbc9f9abc, 0xe94b7d8c, 0xec7aec3a, 0xdb851dfa, 0x63094366, 0xc464c3d2, 0xef1c1847, 0x3215d908, 0xdd433b37, 0x24c2ba16, 0x12a14d43, 0x2a65c451, 0x50940002, 0x133ae4dd, 0x71dff89e, 0x10314e55, 0x81ac77d6, 0x5f11199b, 0x043556f1, 0xd7a3c76b, 0x3c11183b, 0x5924a509, 0xf28fe6ed, 0x97f1fbfa, 0x9ebabf2c, 0x1e153c6e, 0x86e34570, 0xeae96fb1, 0x860e5e0a, 0x5a3e2ab3, 0x771fe71c, 0x4e3d06fa, 0x2965dcb9, 0x99e71d0f, 0x803e89d6, 0x5266c825, 0x2e4cc978, 0x9c10b36a, 0xc6150eba, 0x94e2ea78, 0xa5fc3c53, 0x1e0a2df4, 0xf2f74ea7, 0x361d2b3d, 0x1939260f, 0x19c27960, 0x5223a708, 0xf71312b6, 0xebadfe6e, 0xeac31f66, 0xe3bc4595, 0xa67bc883, 0xb17f37d1, 0x018cff28, 0xc332ddef, 0xbe6c5aa5, 0x65582185, 0x68ab9802, 0xeecea50f, 0xdb2f953b, 0x2aef7dad, 0x5b6e2f84, 0x1521b628, 0x29076170, 0xecdd4775, 0x619f1510, 0x13cca830, 0xeb61bd96, 0x0334fe1e, 0xaa0363cf, 0xb5735c90, 0x4c70a239, 0xd59e9e0b, 0xcbaade14, 0xeecc86bc, 0x60622ca7, 0x9cab5cab, 0xb2f3846e, 0x648b1eaf, 0x19bdf0ca, 0xa02369b9, 0x655abb50, 0x40685a32, 0x3c2ab4b3, 0x319ee9d5, 0xc021b8f7, 0x9b540b19, 0x875fa099, 0x95f7997e, 0x623d7da8, 0xf837889a, 0x97e32d77, 0x11ed935f, 0x16681281, 0x0e358829, 0xc7e61fd6, 0x96dedfa1, 0x7858ba99, 0x57f584a5, 0x1b227263, 0x9b83c3ff, 0x1ac24696, 0xcdb30aeb, 0x532e3054, 0x8fd948e4, 0x6dbc3128, 0x58ebf2ef, 0x34c6ffea, 0xfe28ed61, 0xee7c3c73, 0x5d4a14d9, 0xe864b7e3, 0x42105d14, 0x203e13e0, 0x45eee2b6, 0xa3aaabea, 0xdb6c4f15, 0xfacb4fd0, 0xc742f442, 0xef6abbb5, 0x654f3b1d, 0x41cd2105, 0xd81e799e, 0x86854dc7, 0xe44b476a, 0x3d816250, 0xcf62a1f2, 0x5b8d2646, 0xfc8883a0, 0xc1c7b6a3, 0x7f1524c3, 0x69cb7492, 0x47848a0b, 0x5692b285, 0x095bbf00, 0xad19489d, 0x1462b174, 0x23820e00, 0x58428d2a, 0x0c55f5ea, 0x1dadf43e, 0x233f7061, 0x3372f092, 0x8d937e41, 0xd65fecf1, 0x6c223bdb, 0x7cde3759, 0xcbee7460, 0x4085f2a7, 0xce77326e, 0xa6078084, 0x19f8509e, 0xe8efd855, 0x61d99735, 0xa969a7aa, 0xc50c06c2, 0x5a04abfc, 0x800bcadc, 0x9e447a2e, 0xc3453484, 0xfdd56705, 0x0e1e9ec9, 0xdb73dbd3, 0x105588cd, 0x675fda79, 0xe3674340, 0xc5c43465, 0x713e38d8, 0x3d28f89e, 0xf16dff20, 0x153e21e7, 0x8fb03d4a, 0xe6e39f2b, 0xdb83adf7}, { 0xe93d5a68, 0x948140f7, 0xf64c261c, 0x94692934, 0x411520f7, 0x7602d4f7, 0xbcf46b2e, 0xd4a20068, 0xd4082471, 0x3320f46a, 0x43b7d4b7, 0x500061af, 0x1e39f62e, 0x97244546, 0x14214f74, 0xbf8b8840, 0x4d95fc1d, 0x96b591af, 0x70f4ddd3, 0x66a02f45, 0xbfbc09ec, 0x03bd9785, 0x7fac6dd0, 0x31cb8504, 0x96eb27b3, 0x55fd3941, 0xda2547e6, 0xabca0a9a, 0x28507825, 0x530429f4, 0x0a2c86da, 0xe9b66dfb, 0x68dc1462, 0xd7486900, 0x680ec0a4, 0x27a18dee, 0x4f3ffea2, 0xe887ad8c, 0xb58ce006, 0x7af4d6b6, 0xaace1e7c, 0xd3375fec, 0xce78a399, 0x406b2a42, 0x20fe9e35, 0xd9f385b9, 0xee39d7ab, 0x3b124e8b, 0x1dc9faf7, 0x4b6d1856, 0x26a36631, 0xeae397b2, 0x3a6efa74, 0xdd5b4332, 0x6841e7f7, 0xca7820fb, 0xfb0af54e, 0xd8feb397, 0x454056ac, 0xba489527, 0x55533a3a, 0x20838d87, 0xfe6ba9b7, 0xd096954b, 0x55a867bc, 0xa1159a58, 0xcca92963, 0x99e1db33, 0xa62a4a56, 0x3f3125f9, 0x5ef47e1c, 0x9029317c, 0xfdf8e802, 0x04272f70, 0x80bb155c, 0x05282ce3, 0x95c11548, 0xe4c66d22, 0x48c1133f, 0xc70f86dc, 0x07f9c9ee, 0x41041f0f, 0x404779a4, 0x5d886e17, 0x325f51eb, 0xd59bc0d1, 0xf2bcc18f, 0x41113564, 0x257b7834, 0x602a9c60, 0xdff8e8a3, 0x1f636c1b, 0x0e12b4c2, 0x02e1329e, 0xaf664fd1, 0xcad18115, 0x6b2395e0, 0x333e92e1, 0x3b240b62, 0xeebeb922, 0x85b2a20e, 0xe6ba0d99, 0xde720c8c, 0x2da2f728, 0xd0127845, 0x95b794fd, 0x647d0862, 0xe7ccf5f0, 0x5449a36f, 0x877d48fa, 0xc39dfd27, 0xf33e8d1e, 0x0a476341, 0x992eff74, 0x3a6f6eab, 0xf4f8fd37, 0xa812dc60, 0xa1ebddf8, 0x991be14c, 0xdb6e6b0d, 0xc67b5510, 0x6d672c37, 0x2765d43b, 0xdcd0e804, 0xf1290dc7, 0xcc00ffa3, 0xb5390f92, 0x690fed0b, 0x667b9ffb, 0xcedb7d9c, 0xa091cf0b, 0xd9155ea3, 0xbb132f88, 0x515bad24, 0x7b9479bf, 0x763bd6eb, 0x37392eb3, 0xcc115979, 0x8026e297, 0xf42e312d, 0x6842ada7, 0xc66a2b3b, 0x12754ccc, 0x782ef11c, 0x6a124237, 0xb79251e7, 0x06a1bbe6, 0x4bfb6350, 0x1a6b1018, 0x11caedfa, 0x3d25bdd8, 0xe2e1c3c9, 0x44421659, 0x0a121386, 0xd90cec6e, 0xd5abea2a, 0x64af674e, 0xda86a85f, 0xbebfe988, 0x64e4c3fe, 0x9dbc8057, 0xf0f7c086, 0x60787bf8, 0x6003604d, 0xd1fd8346, 0xf6381fb0, 0x7745ae04, 0xd736fccc, 0x83426b33, 0xf01eab71, 0xb0804187, 0x3c005e5f, 0x77a057be, 0xbde8ae24, 0x55464299, 0xbf582e61, 0x4e58f48f, 0xf2ddfda2, 0xf474ef38, 0x8789bdc2, 0x5366f9c3, 0xc8b38e74, 0xb475f255, 0x46fcd9b9, 0x7aeb2661, 0x8b1ddf84, 0x846a0e79, 0x915f95e2, 0x466e598e, 0x20b45770, 0x8cd55591, 0xc902de4c, 0xb90bace1, 0xbb8205d0, 0x11a86248, 0x7574a99e, 0xb77f19b6, 0xe0a9dc09, 0x662d09a1, 0xc4324633, 0xe85a1f02, 0x09f0be8c, 0x4a99a025, 0x1d6efe10, 0x1ab93d1d, 0x0ba5a4df, 0xa186f20f, 0x2868f169, 0xdcb7da83, 0x573906fe, 0xa1e2ce9b, 0x4fcd7f52, 0x50115e01, 0xa70683fa, 0xa002b5c4, 0x0de6d027, 0x9af88c27, 0x773f8641, 0xc3604c06, 0x61a806b5, 0xf0177a28, 0xc0f586e0, 0x006058aa, 0x30dc7d62, 0x11e69ed7, 0x2338ea63, 0x53c2dd94, 0xc2c21634, 0xbbcbee56, 0x90bcb6de, 0xebfc7da1, 0xce591d76, 0x6f05e409, 0x4b7c0188, 0x39720a3d, 0x7c927c24, 0x86e3725f, 0x724d9db9, 0x1ac15bb4, 0xd39eb8fc, 0xed545578, 0x08fca5b5, 0xd83d7cd3, 0x4dad0fc4, 0x1e50ef5e, 0xb161e6f8, 0xa28514d9, 0x6c51133c, 0x6fd5c7e7, 0x56e14ec4, 0x362abfce, 0xddc6c837, 0xd79a3234, 0x92638212, 0x670efa8e, 0x406000e0}, { 0x3a39ce37, 0xd3faf5cf, 0xabc27737, 0x5ac52d1b, 0x5cb0679e, 0x4fa33742, 0xd3822740, 0x99bc9bbe, 0xd5118e9d, 0xbf0f7315, 0xd62d1c7e, 0xc700c47b, 0xb78c1b6b, 0x21a19045, 0xb26eb1be, 0x6a366eb4, 0x5748ab2f, 0xbc946e79, 0xc6a376d2, 0x6549c2c8, 0x530ff8ee, 0x468dde7d, 0xd5730a1d, 0x4cd04dc6, 0x2939bbdb, 0xa9ba4650, 0xac9526e8, 0xbe5ee304, 0xa1fad5f0, 0x6a2d519a, 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; } DEF_WEAK(Blowfish_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; } DEF_WEAK(Blowfish_stream2word); 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; } } } DEF_WEAK(Blowfish_expand0state); 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; } } } DEF_WEAK(Blowfish_expandstate); 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); } DEF_WEAK(blf_key); 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; } } DEF_WEAK(blf_enc); 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; } } DEF_WEAK(blf_dec); 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; } } DEF_WEAK(blf_ecb_encrypt); 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; } } DEF_WEAK(blf_ecb_decrypt); 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; } } DEF_WEAK(blf_cbc_encrypt); 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]; } DEF_WEAK(blf_cbc_decrypt); #if 0 void report(u_int32_t data[], u_int16_t len) { u_int16_t i; for (i = 0; i < len; i += 2) printf("Block %0hd: %08lx %08lx.\n", i / 2, data[i], data[i + 1]); } void main(void) { blf_ctx c; char key[] = "AAAAA"; char key2[] = "abcdefghijklmnopqrstuvwxyz"; u_int32_t data[10]; u_int32_t data2[] = {0x424c4f57l, 0x46495348l}; u_int16_t i; /* First test */ for (i = 0; i < 10; i++) data[i] = i; blf_key(&c, (u_int8_t *) key, 5); blf_enc(&c, data, 5); blf_dec(&c, data, 1); blf_dec(&c, data + 2, 4); printf("Should read as 0 - 9.\n"); report(data, 10); /* Second test */ blf_key(&c, (u_int8_t *) key2, strlen(key2)); blf_enc(&c, data2, 1); printf("\nShould read as: 0x324ed0fe 0xf413a203.\n"); report(data2, 2); blf_dec(&c, data2, 1); report(data2, 2); } #endif signify-13/compat.h000066400000000000000000000032511262737245500144210ustar00rootroot00000000000000/* * Copyright (c) 2015, Adrián Pérez de Castro * * Permission to use, copy, modify, and distribute this software for any * purpose with or without fee is hereby granted, provided that the above * copyright notice and this permission notice appear in all copies. * * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE. */ #ifndef COMPAT_H #define COMPAT_H #ifndef COMPAT_BOUNDS_CHECKING #define __bounded__(a, b, c) #endif /* !COMPAT_BOUNDS_CHECKING */ #ifndef __dead #define __dead #endif /* !__dead */ #define DEF_WEAK(a) #define MAKE_CLONE(a, b) #define SHA224Transform SHA256Transform #define SHA224Update SHA256Update #define SHA224Pad SHA256Pad #define SHA384Transform SHA512Transform #define SHA384Update SHA512Update #define SHA384Pad SHA512Pad #include #include extern void explicit_bzero(void *buf, size_t len); extern int pledge (const char *promises, const char *paths[]); extern void arc4random_buf(void *buf, size_t n); extern int bcrypt_pbkdf(const char *pass, size_t passlen, const uint8_t *salt, size_t saltlen, uint8_t *key, size_t keylen, unsigned int rounds); #endif /* !COMPAT_H */ signify-13/crypto_api.c000066400000000000000000000012361262737245500153030ustar00rootroot00000000000000/* $OpenBSD: crypto_api.c,v 1.1 2014/01/08 03:59:46 tedu Exp $ */ /* * Public domain. Author: Ted Unangst * API compatible reimplementation of functions from nacl */ #include #include #include "sha2.h" #include "crypto_api.h" extern int timingsafe_bcmp(const void *b1, const void *b2, size_t n); int crypto_hash_sha512(unsigned char *out, const unsigned char *in, unsigned long long inlen) { SHA2_CTX ctx; SHA512Init(&ctx); SHA512Update(&ctx, in, inlen); SHA512Final(out, &ctx); return 0; } int crypto_verify_32(const unsigned char *x, const unsigned char *y) { return timingsafe_bcmp(x, y, 32) ? -1 : 0; } signify-13/crypto_api.h000066400000000000000000000024061262737245500153100ustar00rootroot00000000000000/* $OpenBSD: crypto_api.h,v 1.1 2014/07/22 00:41:19 deraadt Exp $ */ /* * Assembled from generated headers and source files by Markus Friedl. * Placed in the public domain. */ #ifndef crypto_api_h #define crypto_api_h #include #include typedef int32_t crypto_int32; typedef uint32_t crypto_uint32; #define randombytes(buf, buf_len) arc4random_buf((buf), (buf_len)) #define crypto_hashblocks_sha512_STATEBYTES 64U #define crypto_hashblocks_sha512_BLOCKBYTES 128U int crypto_hashblocks_sha512(unsigned char *, const unsigned char *, unsigned long long); #define crypto_hash_sha512_BYTES 64U int crypto_hash_sha512(unsigned char *, const unsigned char *, unsigned long long); int crypto_verify_32(const unsigned char *, const unsigned char *); #define crypto_sign_ed25519_SECRETKEYBYTES 64U #define crypto_sign_ed25519_PUBLICKEYBYTES 32U #define crypto_sign_ed25519_BYTES 64U int crypto_sign_ed25519(unsigned char *, unsigned long long *, const unsigned char *, unsigned long long, const unsigned char *); int crypto_sign_ed25519_open(unsigned char *, unsigned long long *, const unsigned char *, unsigned long long, const unsigned char *); int crypto_sign_ed25519_keypair(unsigned char *, unsigned char *); #endif /* crypto_api_h */ signify-13/cvs-files000066400000000000000000000014301262737245500146000ustar00rootroot00000000000000 src/include/blf.h src/include/sha2.h src/lib/libc/crypt/arc4random.c src/lib/libc/crypt/arc4random.h src/lib/libc/crypt/blowfish.c src/lib/libc/hash/sha2.c src/lib/libc/hash/helper.c src/lib/libc/net/base64.c src/lib/libc/string/timingsafe_bcmp.c src/lib/libc/string/explicit_bzero.c src/lib/libutil/ohash.h src/lib/libutil/ohash.c src/lib/libutil/bcrypt_pbkdf.c src/usr.bin/signify/crypto_api.c src/usr.bin/signify/crypto_api.h src/usr.bin/signify/fe25519.c src/usr.bin/signify/fe25519.h src/usr.bin/signify/ge25519.h src/usr.bin/signify/ge25519_base.data src/usr.bin/signify/mod_ed25519.c src/usr.bin/signify/mod_ge25519.c src/usr.bin/signify/sc25519.c src/usr.bin/signify/sc25519.h src/usr.bin/signify/signify.c src/usr.bin/signify/signify.1 src/usr.bin/signify/smult_curve25519_ref.c signify-13/explicit_bzero.c000066400000000000000000000005461262737245500161570ustar00rootroot00000000000000/* $OpenBSD: explicit_bzero.c,v 1.4 2015/08/31 02:53:57 guenther Exp $ */ /* * Public domain. * Written by Matthew Dempsky. */ #include __attribute__((weak)) void __explicit_bzero_hook(void *buf, size_t len) { } void explicit_bzero(void *buf, size_t len) { memset(buf, 0, len); __explicit_bzero_hook(buf, len); } DEF_WEAK(explicit_bzero); signify-13/fe25519.c000066400000000000000000000201641262737245500141330ustar00rootroot00000000000000/* $OpenBSD: fe25519.c,v 1.1 2014/07/22 00:41:19 deraadt Exp $ */ /* * Public Domain, Authors: Daniel J. Bernstein, Niels Duif, Tanja Lange, * Peter Schwabe, Bo-Yin Yang. * Copied from supercop-20130419/crypto_sign/ed25519/ref/fe25519.c */ #define WINDOWSIZE 1 /* Should be 1,2, or 4 */ #define WINDOWMASK ((1<>= 31; /* 1: yes; 0: no */ return x; } static crypto_uint32 ge(crypto_uint32 a,crypto_uint32 b) /* 16-bit inputs */ { unsigned int x = a; x -= (unsigned int) b; /* 0..65535: yes; 4294901761..4294967295: no */ x >>= 31; /* 0: yes; 1: no */ x ^= 1; /* 1: yes; 0: no */ return x; } static crypto_uint32 times19(crypto_uint32 a) { return (a << 4) + (a << 1) + a; } static crypto_uint32 times38(crypto_uint32 a) { return (a << 5) + (a << 2) + (a << 1); } static void reduce_add_sub(fe25519 *r) { crypto_uint32 t; int i,rep; for(rep=0;rep<4;rep++) { t = r->v[31] >> 7; r->v[31] &= 127; t = times19(t); r->v[0] += t; for(i=0;i<31;i++) { t = r->v[i] >> 8; r->v[i+1] += t; r->v[i] &= 255; } } } static void reduce_mul(fe25519 *r) { crypto_uint32 t; int i,rep; for(rep=0;rep<2;rep++) { t = r->v[31] >> 7; r->v[31] &= 127; t = times19(t); r->v[0] += t; for(i=0;i<31;i++) { t = r->v[i] >> 8; r->v[i+1] += t; r->v[i] &= 255; } } } /* reduction modulo 2^255-19 */ void fe25519_freeze(fe25519 *r) { int i; crypto_uint32 m = equal(r->v[31],127); for(i=30;i>0;i--) m &= equal(r->v[i],255); m &= ge(r->v[0],237); m = -m; r->v[31] -= m&127; for(i=30;i>0;i--) r->v[i] -= m&255; r->v[0] -= m&237; } void fe25519_unpack(fe25519 *r, const unsigned char x[32]) { int i; for(i=0;i<32;i++) r->v[i] = x[i]; r->v[31] &= 127; } /* Assumes input x being reduced below 2^255 */ void fe25519_pack(unsigned char r[32], const fe25519 *x) { int i; fe25519 y = *x; fe25519_freeze(&y); for(i=0;i<32;i++) r[i] = y.v[i]; } int fe25519_iszero(const fe25519 *x) { int i; int r; fe25519 t = *x; fe25519_freeze(&t); r = equal(t.v[0],0); for(i=1;i<32;i++) r &= equal(t.v[i],0); return r; } int fe25519_iseq_vartime(const fe25519 *x, const fe25519 *y) { int i; fe25519 t1 = *x; fe25519 t2 = *y; fe25519_freeze(&t1); fe25519_freeze(&t2); for(i=0;i<32;i++) if(t1.v[i] != t2.v[i]) return 0; return 1; } void fe25519_cmov(fe25519 *r, const fe25519 *x, unsigned char b) { int i; crypto_uint32 mask = b; mask = -mask; for(i=0;i<32;i++) r->v[i] ^= mask & (x->v[i] ^ r->v[i]); } unsigned char fe25519_getparity(const fe25519 *x) { fe25519 t = *x; fe25519_freeze(&t); return t.v[0] & 1; } void fe25519_setone(fe25519 *r) { int i; r->v[0] = 1; for(i=1;i<32;i++) r->v[i]=0; } void fe25519_setzero(fe25519 *r) { int i; for(i=0;i<32;i++) r->v[i]=0; } void fe25519_neg(fe25519 *r, const fe25519 *x) { fe25519 t; int i; for(i=0;i<32;i++) t.v[i]=x->v[i]; fe25519_setzero(r); fe25519_sub(r, r, &t); } void fe25519_add(fe25519 *r, const fe25519 *x, const fe25519 *y) { int i; for(i=0;i<32;i++) r->v[i] = x->v[i] + y->v[i]; reduce_add_sub(r); } void fe25519_sub(fe25519 *r, const fe25519 *x, const fe25519 *y) { int i; crypto_uint32 t[32]; t[0] = x->v[0] + 0x1da; t[31] = x->v[31] + 0xfe; for(i=1;i<31;i++) t[i] = x->v[i] + 0x1fe; for(i=0;i<32;i++) r->v[i] = t[i] - y->v[i]; reduce_add_sub(r); } void fe25519_mul(fe25519 *r, const fe25519 *x, const fe25519 *y) { int i,j; crypto_uint32 t[63]; for(i=0;i<63;i++)t[i] = 0; for(i=0;i<32;i++) for(j=0;j<32;j++) t[i+j] += x->v[i] * y->v[j]; for(i=32;i<63;i++) r->v[i-32] = t[i-32] + times38(t[i]); r->v[31] = t[31]; /* result now in r[0]...r[31] */ reduce_mul(r); } void fe25519_square(fe25519 *r, const fe25519 *x) { fe25519_mul(r, x, x); } void fe25519_invert(fe25519 *r, const fe25519 *x) { fe25519 z2; fe25519 z9; fe25519 z11; fe25519 z2_5_0; fe25519 z2_10_0; fe25519 z2_20_0; fe25519 z2_50_0; fe25519 z2_100_0; fe25519 t0; fe25519 t1; int i; /* 2 */ fe25519_square(&z2,x); /* 4 */ fe25519_square(&t1,&z2); /* 8 */ fe25519_square(&t0,&t1); /* 9 */ fe25519_mul(&z9,&t0,x); /* 11 */ fe25519_mul(&z11,&z9,&z2); /* 22 */ fe25519_square(&t0,&z11); /* 2^5 - 2^0 = 31 */ fe25519_mul(&z2_5_0,&t0,&z9); /* 2^6 - 2^1 */ fe25519_square(&t0,&z2_5_0); /* 2^7 - 2^2 */ fe25519_square(&t1,&t0); /* 2^8 - 2^3 */ fe25519_square(&t0,&t1); /* 2^9 - 2^4 */ fe25519_square(&t1,&t0); /* 2^10 - 2^5 */ fe25519_square(&t0,&t1); /* 2^10 - 2^0 */ fe25519_mul(&z2_10_0,&t0,&z2_5_0); /* 2^11 - 2^1 */ fe25519_square(&t0,&z2_10_0); /* 2^12 - 2^2 */ fe25519_square(&t1,&t0); /* 2^20 - 2^10 */ for (i = 2;i < 10;i += 2) { fe25519_square(&t0,&t1); fe25519_square(&t1,&t0); } /* 2^20 - 2^0 */ fe25519_mul(&z2_20_0,&t1,&z2_10_0); /* 2^21 - 2^1 */ fe25519_square(&t0,&z2_20_0); /* 2^22 - 2^2 */ fe25519_square(&t1,&t0); /* 2^40 - 2^20 */ for (i = 2;i < 20;i += 2) { fe25519_square(&t0,&t1); fe25519_square(&t1,&t0); } /* 2^40 - 2^0 */ fe25519_mul(&t0,&t1,&z2_20_0); /* 2^41 - 2^1 */ fe25519_square(&t1,&t0); /* 2^42 - 2^2 */ fe25519_square(&t0,&t1); /* 2^50 - 2^10 */ for (i = 2;i < 10;i += 2) { fe25519_square(&t1,&t0); fe25519_square(&t0,&t1); } /* 2^50 - 2^0 */ fe25519_mul(&z2_50_0,&t0,&z2_10_0); /* 2^51 - 2^1 */ fe25519_square(&t0,&z2_50_0); /* 2^52 - 2^2 */ fe25519_square(&t1,&t0); /* 2^100 - 2^50 */ for (i = 2;i < 50;i += 2) { fe25519_square(&t0,&t1); fe25519_square(&t1,&t0); } /* 2^100 - 2^0 */ fe25519_mul(&z2_100_0,&t1,&z2_50_0); /* 2^101 - 2^1 */ fe25519_square(&t1,&z2_100_0); /* 2^102 - 2^2 */ fe25519_square(&t0,&t1); /* 2^200 - 2^100 */ for (i = 2;i < 100;i += 2) { fe25519_square(&t1,&t0); fe25519_square(&t0,&t1); } /* 2^200 - 2^0 */ fe25519_mul(&t1,&t0,&z2_100_0); /* 2^201 - 2^1 */ fe25519_square(&t0,&t1); /* 2^202 - 2^2 */ fe25519_square(&t1,&t0); /* 2^250 - 2^50 */ for (i = 2;i < 50;i += 2) { fe25519_square(&t0,&t1); fe25519_square(&t1,&t0); } /* 2^250 - 2^0 */ fe25519_mul(&t0,&t1,&z2_50_0); /* 2^251 - 2^1 */ fe25519_square(&t1,&t0); /* 2^252 - 2^2 */ fe25519_square(&t0,&t1); /* 2^253 - 2^3 */ fe25519_square(&t1,&t0); /* 2^254 - 2^4 */ fe25519_square(&t0,&t1); /* 2^255 - 2^5 */ fe25519_square(&t1,&t0); /* 2^255 - 21 */ fe25519_mul(r,&t1,&z11); } void fe25519_pow2523(fe25519 *r, const fe25519 *x) { fe25519 z2; fe25519 z9; fe25519 z11; fe25519 z2_5_0; fe25519 z2_10_0; fe25519 z2_20_0; fe25519 z2_50_0; fe25519 z2_100_0; fe25519 t; int i; /* 2 */ fe25519_square(&z2,x); /* 4 */ fe25519_square(&t,&z2); /* 8 */ fe25519_square(&t,&t); /* 9 */ fe25519_mul(&z9,&t,x); /* 11 */ fe25519_mul(&z11,&z9,&z2); /* 22 */ fe25519_square(&t,&z11); /* 2^5 - 2^0 = 31 */ fe25519_mul(&z2_5_0,&t,&z9); /* 2^6 - 2^1 */ fe25519_square(&t,&z2_5_0); /* 2^10 - 2^5 */ for (i = 1;i < 5;i++) { fe25519_square(&t,&t); } /* 2^10 - 2^0 */ fe25519_mul(&z2_10_0,&t,&z2_5_0); /* 2^11 - 2^1 */ fe25519_square(&t,&z2_10_0); /* 2^20 - 2^10 */ for (i = 1;i < 10;i++) { fe25519_square(&t,&t); } /* 2^20 - 2^0 */ fe25519_mul(&z2_20_0,&t,&z2_10_0); /* 2^21 - 2^1 */ fe25519_square(&t,&z2_20_0); /* 2^40 - 2^20 */ for (i = 1;i < 20;i++) { fe25519_square(&t,&t); } /* 2^40 - 2^0 */ fe25519_mul(&t,&t,&z2_20_0); /* 2^41 - 2^1 */ fe25519_square(&t,&t); /* 2^50 - 2^10 */ for (i = 1;i < 10;i++) { fe25519_square(&t,&t); } /* 2^50 - 2^0 */ fe25519_mul(&z2_50_0,&t,&z2_10_0); /* 2^51 - 2^1 */ fe25519_square(&t,&z2_50_0); /* 2^100 - 2^50 */ for (i = 1;i < 50;i++) { fe25519_square(&t,&t); } /* 2^100 - 2^0 */ fe25519_mul(&z2_100_0,&t,&z2_50_0); /* 2^101 - 2^1 */ fe25519_square(&t,&z2_100_0); /* 2^200 - 2^100 */ for (i = 1;i < 100;i++) { fe25519_square(&t,&t); } /* 2^200 - 2^0 */ fe25519_mul(&t,&t,&z2_100_0); /* 2^201 - 2^1 */ fe25519_square(&t,&t); /* 2^250 - 2^50 */ for (i = 1;i < 50;i++) { fe25519_square(&t,&t); } /* 2^250 - 2^0 */ fe25519_mul(&t,&t,&z2_50_0); /* 2^251 - 2^1 */ fe25519_square(&t,&t); /* 2^252 - 2^2 */ fe25519_square(&t,&t); /* 2^252 - 3 */ fe25519_mul(r,&t,x); } signify-13/fe25519.h000066400000000000000000000044751262737245500141470ustar00rootroot00000000000000/* $OpenBSD: fe25519.h,v 1.1 2014/07/22 00:41:19 deraadt Exp $ */ /* * Public Domain, Authors: Daniel J. Bernstein, Niels Duif, Tanja Lange, * Peter Schwabe, Bo-Yin Yang. * Copied from supercop-20130419/crypto_sign/ed25519/ref/fe25519.h */ #ifndef FE25519_H #define FE25519_H #include "crypto_api.h" #define fe25519 crypto_sign_ed25519_ref_fe25519 #define fe25519_freeze crypto_sign_ed25519_ref_fe25519_freeze #define fe25519_unpack crypto_sign_ed25519_ref_fe25519_unpack #define fe25519_pack crypto_sign_ed25519_ref_fe25519_pack #define fe25519_iszero crypto_sign_ed25519_ref_fe25519_iszero #define fe25519_iseq_vartime crypto_sign_ed25519_ref_fe25519_iseq_vartime #define fe25519_cmov crypto_sign_ed25519_ref_fe25519_cmov #define fe25519_setone crypto_sign_ed25519_ref_fe25519_setone #define fe25519_setzero crypto_sign_ed25519_ref_fe25519_setzero #define fe25519_neg crypto_sign_ed25519_ref_fe25519_neg #define fe25519_getparity crypto_sign_ed25519_ref_fe25519_getparity #define fe25519_add crypto_sign_ed25519_ref_fe25519_add #define fe25519_sub crypto_sign_ed25519_ref_fe25519_sub #define fe25519_mul crypto_sign_ed25519_ref_fe25519_mul #define fe25519_square crypto_sign_ed25519_ref_fe25519_square #define fe25519_invert crypto_sign_ed25519_ref_fe25519_invert #define fe25519_pow2523 crypto_sign_ed25519_ref_fe25519_pow2523 typedef struct { crypto_uint32 v[32]; } fe25519; void fe25519_freeze(fe25519 *r); void fe25519_unpack(fe25519 *r, const unsigned char x[32]); void fe25519_pack(unsigned char r[32], const fe25519 *x); int fe25519_iszero(const fe25519 *x); int fe25519_iseq_vartime(const fe25519 *x, const fe25519 *y); void fe25519_cmov(fe25519 *r, const fe25519 *x, unsigned char b); void fe25519_setone(fe25519 *r); void fe25519_setzero(fe25519 *r); void fe25519_neg(fe25519 *r, const fe25519 *x); unsigned char fe25519_getparity(const fe25519 *x); void fe25519_add(fe25519 *r, const fe25519 *x, const fe25519 *y); void fe25519_sub(fe25519 *r, const fe25519 *x, const fe25519 *y); void fe25519_mul(fe25519 *r, const fe25519 *x, const fe25519 *y); void fe25519_square(fe25519 *r, const fe25519 *x); void fe25519_invert(fe25519 *r, const fe25519 *x); void fe25519_pow2523(fe25519 *r, const fe25519 *x); #endif signify-13/ge25519.h000066400000000000000000000025501262737245500141400ustar00rootroot00000000000000/* $OpenBSD: ge25519.h,v 1.2 2015/02/16 18:26:26 miod Exp $ */ /* * Public Domain, Authors: Daniel J. Bernstein, Niels Duif, Tanja Lange, * Peter Schwabe, Bo-Yin Yang. * Copied from supercop-20130419/crypto_sign/ed25519/ref/ge25519.h */ #ifndef GE25519_H #define GE25519_H #include "fe25519.h" #include "sc25519.h" #define ge25519 crypto_sign_ed25519_ref_ge25519 #define ge25519_base crypto_sign_ed25519_ref_ge25519_base #define ge25519_unpackneg_vartime crypto_sign_ed25519_ref_unpackneg_vartime #define ge25519_pack crypto_sign_ed25519_ref_pack #define ge25519_isneutral_vartime crypto_sign_ed25519_ref_isneutral_vartime #define ge25519_double_scalarmult_vartime crypto_sign_ed25519_ref_double_scalarmult_vartime #define ge25519_scalarmult_base crypto_sign_ed25519_ref_scalarmult_base typedef struct { fe25519 x; fe25519 y; fe25519 z; fe25519 t; } ge25519; extern const ge25519 ge25519_base; int ge25519_unpackneg_vartime(ge25519 *r, const unsigned char p[32]); void ge25519_pack(unsigned char r[32], const ge25519 *p); int ge25519_isneutral_vartime(const ge25519 *p); void ge25519_double_scalarmult_vartime(ge25519 *r, const ge25519 *p1, const sc25519 *s1, const ge25519 *p2, const sc25519 *s2); void ge25519_scalarmult_base(ge25519 *r, const sc25519 *s); #endif signify-13/ge25519_base.data000066400000000000000000005111611262737245500156170ustar00rootroot00000000000000/* $OpenBSD: ge25519_base.data,v 1.1 2014/07/22 00:41:19 deraadt Exp $ */ /* * Public Domain, Authors: Daniel J. Bernstein, Niels Duif, Tanja Lange, * Peter Schwabe, Bo-Yin Yang. * Copied from supercop-20130419/crypto_sign/ed25519/ref/ge25519_base.data */ {{{0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00}}, {{0x01, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00}}}, {{{0x1a, 0xd5, 0x25, 0x8f, 0x60, 0x2d, 0x56, 0xc9, 0xb2, 0xa7, 0x25, 0x95, 0x60, 0xc7, 0x2c, 0x69, 0x5c, 0xdc, 0xd6, 0xfd, 0x31, 0xe2, 0xa4, 0xc0, 0xfe, 0x53, 0x6e, 0xcd, 0xd3, 0x36, 0x69, 0x21}} , {{0x58, 0x66, 0x66, 0x66, 0x66, 0x66, 0x66, 0x66, 0x66, 0x66, 0x66, 0x66, 0x66, 0x66, 0x66, 0x66, 0x66, 0x66, 0x66, 0x66, 0x66, 0x66, 0x66, 0x66, 0x66, 0x66, 0x66, 0x66, 0x66, 0x66, 0x66, 0x66}}}, {{{0x0e, 0xce, 0x43, 0x28, 0x4e, 0xa1, 0xc5, 0x83, 0x5f, 0xa4, 0xd7, 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0xeb, 0x82, 0x4b}} , {{0x2c, 0x28, 0xf4, 0x3a, 0xf6, 0xde, 0x0a, 0xe0, 0x41, 0x44, 0x23, 0xf8, 0x3f, 0x03, 0x64, 0x9f, 0xc3, 0x55, 0x4c, 0xc6, 0xc1, 0x94, 0x1c, 0x24, 0x5d, 0x5f, 0x92, 0x45, 0x96, 0x57, 0x37, 0x14}}}, {{{0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00}}, {{0x01, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00}}}, {{{0xc1, 0xcd, 0x90, 0x66, 0xb9, 0x76, 0xa0, 0x5b, 0xa5, 0x85, 0x75, 0x23, 0xf9, 0x89, 0xa5, 0x82, 0xb2, 0x6f, 0xb1, 0xeb, 0xc4, 0x69, 0x6f, 0x18, 0x5a, 0xed, 0x94, 0x3d, 0x9d, 0xd9, 0x2c, 0x1a}} , {{0x35, 0xb0, 0xe6, 0x73, 0x06, 0xb7, 0x37, 0xe0, 0xf8, 0xb0, 0x22, 0xe8, 0xd2, 0xed, 0x0b, 0xef, 0xe6, 0xc6, 0x5a, 0x99, 0x9e, 0x1a, 0x9f, 0x04, 0x97, 0xe4, 0x4d, 0x0b, 0xbe, 0xba, 0x44, 0x40}}}, {{{0xc1, 0x56, 0x96, 0x91, 0x5f, 0x1f, 0xbb, 0x54, 0x6f, 0x88, 0x89, 0x0a, 0xb2, 0xd6, 0x41, 0x42, 0x6a, 0x82, 0xee, 0x14, 0xaa, 0x76, 0x30, 0x65, 0x0f, 0x67, 0x39, 0xa6, 0x51, 0x7c, 0x49, 0x24}} , {{0x35, 0xa3, 0x78, 0xd1, 0x11, 0x0f, 0x75, 0xd3, 0x70, 0x46, 0xdb, 0x20, 0x51, 0xcb, 0x92, 0x80, 0x54, 0x10, 0x74, 0x36, 0x86, 0xa9, 0xd7, 0xa3, 0x08, 0x78, 0xf1, 0x01, 0x29, 0xf8, 0x80, 0x3b}}}, {{{0xdb, 0xa7, 0x9d, 0x9d, 0xbf, 0xa0, 0xcc, 0xed, 0x53, 0xa2, 0xa2, 0x19, 0x39, 0x48, 0x83, 0x19, 0x37, 0x58, 0xd1, 0x04, 0x28, 0x40, 0xf7, 0x8a, 0xc2, 0x08, 0xb7, 0xa5, 0x42, 0xcf, 0x53, 0x4c}} , {{0xa7, 0xbb, 0xf6, 0x8e, 0xad, 0xdd, 0xf7, 0x90, 0xdd, 0x5f, 0x93, 0x89, 0xae, 0x04, 0x37, 0xe6, 0x9a, 0xb7, 0xe8, 0xc0, 0xdf, 0x16, 0x2a, 0xbf, 0xc4, 0x3a, 0x3c, 0x41, 0xd5, 0x89, 0x72, 0x5a}}}, {{{0x1f, 0x96, 0xff, 0x34, 0x2c, 0x13, 0x21, 0xcb, 0x0a, 0x89, 0x85, 0xbe, 0xb3, 0x70, 0x9e, 0x1e, 0xde, 0x97, 0xaf, 0x96, 0x30, 0xf7, 0x48, 0x89, 0x40, 0x8d, 0x07, 0xf1, 0x25, 0xf0, 0x30, 0x58}} , {{0x1e, 0xd4, 0x93, 0x57, 0xe2, 0x17, 0xe7, 0x9d, 0xab, 0x3c, 0x55, 0x03, 0x82, 0x2f, 0x2b, 0xdb, 0x56, 0x1e, 0x30, 0x2e, 0x24, 0x47, 0x6e, 0xe6, 0xff, 0x33, 0x24, 0x2c, 0x75, 0x51, 0xd4, 0x67}}}, {{{0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00}}, {{0x01, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00}}}, {{{0x2b, 0x06, 0xd9, 0xa1, 0x5d, 0xe1, 0xf4, 0xd1, 0x1e, 0x3c, 0x9a, 0xc6, 0x29, 0x2b, 0x13, 0x13, 0x78, 0xc0, 0xd8, 0x16, 0x17, 0x2d, 0x9e, 0xa9, 0xc9, 0x79, 0x57, 0xab, 0x24, 0x91, 0x92, 0x19}} , {{0x69, 0xfb, 0xa1, 0x9c, 0xa6, 0x75, 0x49, 0x7d, 0x60, 0x73, 0x40, 0x42, 0xc4, 0x13, 0x0a, 0x95, 0x79, 0x1e, 0x04, 0x83, 0x94, 0x99, 0x9b, 0x1e, 0x0c, 0xe8, 0x1f, 0x54, 0xef, 0xcb, 0xc0, 0x52}}}, {{{0x14, 0x89, 0x73, 0xa1, 0x37, 0x87, 0x6a, 0x7a, 0xcf, 0x1d, 0xd9, 0x2e, 0x1a, 0x67, 0xed, 0x74, 0xc0, 0xf0, 0x9c, 0x33, 0xdd, 0xdf, 0x08, 0xbf, 0x7b, 0xd1, 0x66, 0xda, 0xe6, 0xc9, 0x49, 0x08}} , {{0xe9, 0xdd, 0x5e, 0x55, 0xb0, 0x0a, 0xde, 0x21, 0x4c, 0x5a, 0x2e, 0xd4, 0x80, 0x3a, 0x57, 0x92, 0x7a, 0xf1, 0xc4, 0x2c, 0x40, 0xaf, 0x2f, 0xc9, 0x92, 0x03, 0xe5, 0x5a, 0xbc, 0xdc, 0xf4, 0x09}}}, {{{0xf3, 0xe1, 0x2b, 0x7c, 0x05, 0x86, 0x80, 0x93, 0x4a, 0xad, 0xb4, 0x8f, 0x7e, 0x99, 0x0c, 0xfd, 0xcd, 0xef, 0xd1, 0xff, 0x2c, 0x69, 0x34, 0x13, 0x41, 0x64, 0xcf, 0x3b, 0xd0, 0x90, 0x09, 0x1e}} , {{0x9d, 0x45, 0xd6, 0x80, 0xe6, 0x45, 0xaa, 0xf4, 0x15, 0xaa, 0x5c, 0x34, 0x87, 0x99, 0xa2, 0x8c, 0x26, 0x84, 0x62, 0x7d, 0xb6, 0x29, 0xc0, 0x52, 0xea, 0xf5, 0x81, 0x18, 0x0f, 0x35, 0xa9, 0x0e}}}, {{{0xe7, 0x20, 0x72, 0x7c, 0x6d, 0x94, 0x5f, 0x52, 0x44, 0x54, 0xe3, 0xf1, 0xb2, 0xb0, 0x36, 0x46, 0x0f, 0xae, 0x92, 0xe8, 0x70, 0x9d, 0x6e, 0x79, 0xb1, 0xad, 0x37, 0xa9, 0x5f, 0xc0, 0xde, 0x03}} , {{0x15, 0x55, 0x37, 0xc6, 0x1c, 0x27, 0x1c, 0x6d, 0x14, 0x4f, 0xca, 0xa4, 0xc4, 0x88, 0x25, 0x46, 0x39, 0xfc, 0x5a, 0xe5, 0xfe, 0x29, 0x11, 0x69, 0xf5, 0x72, 0x84, 0x4d, 0x78, 0x9f, 0x94, 0x15}}}, {{{0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00}}, {{0x01, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00}}}, {{{0xec, 0xd3, 0xff, 0x57, 0x0b, 0xb0, 0xb2, 0xdc, 0xf8, 0x4f, 0xe2, 0x12, 0xd5, 0x36, 0xbe, 0x6b, 0x09, 0x43, 0x6d, 0xa3, 0x4d, 0x90, 0x2d, 0xb8, 0x74, 0xe8, 0x71, 0x45, 0x19, 0x8b, 0x0c, 0x6a}} , {{0xb8, 0x42, 0x1c, 0x03, 0xad, 0x2c, 0x03, 0x8e, 0xac, 0xd7, 0x98, 0x29, 0x13, 0xc6, 0x02, 0x29, 0xb5, 0xd4, 0xe7, 0xcf, 0xcc, 0x8b, 0x83, 0xec, 0x35, 0xc7, 0x9c, 0x74, 0xb7, 0xad, 0x85, 0x5f}}}, {{{0x78, 0x84, 0xe1, 0x56, 0x45, 0x69, 0x68, 0x5a, 0x4f, 0xb8, 0xb1, 0x29, 0xff, 0x33, 0x03, 0x31, 0xb7, 0xcb, 0x96, 0x25, 0xe6, 0xe6, 0x41, 0x98, 0x1a, 0xbb, 0x03, 0x56, 0xf2, 0xb2, 0x91, 0x34}} , {{0x2c, 0x6c, 0xf7, 0x66, 0xa4, 0x62, 0x6b, 0x39, 0xb3, 0xba, 0x65, 0xd3, 0x1c, 0xf8, 0x11, 0xaa, 0xbe, 0xdc, 0x80, 0x59, 0x87, 0xf5, 0x7b, 0xe5, 0xe3, 0xb3, 0x3e, 0x39, 0xda, 0xbe, 0x88, 0x09}}}, {{{0x8b, 0xf1, 0xa0, 0xf5, 0xdc, 0x29, 0xb4, 0xe2, 0x07, 0xc6, 0x7a, 0x00, 0xd0, 0x89, 0x17, 0x51, 0xd4, 0xbb, 0xd4, 0x22, 0xea, 0x7e, 0x7d, 0x7c, 0x24, 0xea, 0xf2, 0xe8, 0x22, 0x12, 0x95, 0x06}} , {{0xda, 0x7c, 0xa4, 0x0c, 0xf4, 0xba, 0x6e, 0xe1, 0x89, 0xb5, 0x59, 0xca, 0xf1, 0xc0, 0x29, 0x36, 0x09, 0x44, 0xe2, 0x7f, 0xd1, 0x63, 0x15, 0x99, 0xea, 0x25, 0xcf, 0x0c, 0x9d, 0xc0, 0x44, 0x6f}}}, {{{0x1d, 0x86, 0x4e, 0xcf, 0xf7, 0x37, 0x10, 0x25, 0x8f, 0x12, 0xfb, 0x19, 0xfb, 0xe0, 0xed, 0x10, 0xc8, 0xe2, 0xf5, 0x75, 0xb1, 0x33, 0xc0, 0x96, 0x0d, 0xfb, 0x15, 0x6c, 0x0d, 0x07, 0x5f, 0x05}} , {{0x69, 0x3e, 0x47, 0x97, 0x2c, 0xaf, 0x52, 0x7c, 0x78, 0x83, 0xad, 0x1b, 0x39, 0x82, 0x2f, 0x02, 0x6f, 0x47, 0xdb, 0x2a, 0xb0, 0xe1, 0x91, 0x99, 0x55, 0xb8, 0x99, 0x3a, 0xa0, 0x44, 0x11, 0x51}}} signify-13/helper.c000066400000000000000000000052441262737245500144140ustar00rootroot00000000000000/* $OpenBSD: helper.c,v 1.15 2015/11/01 03:45:29 guenther Exp $ */ /* * Copyright (c) 2000 Poul-Henning Kamp * * Permission to use, copy, modify, and distribute this software for any * purpose with or without fee is hereby granted, provided that the above * copyright notice and this permission notice appear in all copies. * * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE. */ /* * If we meet some day, and you think this stuff is worth it, you * can buy me a beer in return. Poul-Henning Kamp */ #include #include #include #include #include #include #include #include #include "hashinc" #define MINIMUM(a, b) (((a) < (b)) ? (a) : (b)) char * HASHEnd(HASH_CTX *ctx, char *buf) { int i; u_int8_t digest[HASH_DIGEST_LENGTH]; static const char hex[] = "0123456789abcdef"; if (buf == NULL && (buf = malloc(HASH_DIGEST_STRING_LENGTH)) == NULL) return (NULL); HASHFinal(digest, ctx); for (i = 0; i < HASH_DIGEST_LENGTH; i++) { buf[i + i] = hex[digest[i] >> 4]; buf[i + i + 1] = hex[digest[i] & 0x0f]; } buf[i + i] = '\0'; explicit_bzero(digest, sizeof(digest)); return (buf); } DEF_WEAK(HASHEnd); char * HASHFileChunk(const char *filename, char *buf, off_t off, off_t len) { struct stat sb; u_char buffer[BUFSIZ]; HASH_CTX ctx; int fd, save_errno; ssize_t nr; HASHInit(&ctx); if ((fd = open(filename, O_RDONLY)) < 0) return (NULL); if (len == 0) { if (fstat(fd, &sb) == -1) { close(fd); return (NULL); } len = sb.st_size; } if (off > 0 && lseek(fd, off, SEEK_SET) < 0) { close(fd); return (NULL); } while ((nr = read(fd, buffer, MINIMUM(sizeof(buffer), len))) > 0) { HASHUpdate(&ctx, buffer, (size_t)nr); if (len > 0 && (len -= nr) == 0) break; } save_errno = errno; close(fd); errno = save_errno; return (nr < 0 ? NULL : HASHEnd(&ctx, buf)); } DEF_WEAK(HASHFileChunk); char * HASHFile(const char *filename, char *buf) { return (HASHFileChunk(filename, buf, (off_t)0, (off_t)0)); } DEF_WEAK(HASHFile); char * HASHData(const u_char *data, size_t len, char *buf) { HASH_CTX ctx; HASHInit(&ctx); HASHUpdate(&ctx, data, len); return (HASHEnd(&ctx, buf)); } DEF_WEAK(HASHData); signify-13/libwaive/000077500000000000000000000000001262737245500145665ustar00rootroot00000000000000signify-13/mod_ed25519.c000066400000000000000000000061471262737245500147750ustar00rootroot00000000000000/* $OpenBSD: mod_ed25519.c,v 1.1 2014/01/08 05:00:01 tedu Exp $ */ /* * Public Domain, Authors: Daniel J. Bernstein, Niels Duif, Tanja Lange, * Peter Schwabe, Bo-Yin Yang. * Copied from supercop-20130419/crypto_sign/ed25519/ref/ed25519.c */ #include "crypto_api.h" #include "ge25519.h" static void get_hram(unsigned char *hram, const unsigned char *sm, const unsigned char *pk, unsigned char *playground, unsigned long long smlen) { unsigned long long i; for (i = 0;i < 32;++i) playground[i] = sm[i]; for (i = 32;i < 64;++i) playground[i] = pk[i-32]; for (i = 64;i < smlen;++i) playground[i] = sm[i]; crypto_hash_sha512(hram,playground,smlen); } #ifndef VERIFYONLY int crypto_sign_ed25519_keypair( unsigned char *pk, unsigned char *sk ) { sc25519 scsk; ge25519 gepk; unsigned char extsk[64]; int i; randombytes(sk, 32); crypto_hash_sha512(extsk, sk, 32); extsk[0] &= 248; extsk[31] &= 127; extsk[31] |= 64; sc25519_from32bytes(&scsk,extsk); ge25519_scalarmult_base(&gepk, &scsk); ge25519_pack(pk, &gepk); for(i=0;i<32;i++) sk[32 + i] = pk[i]; return 0; } int crypto_sign_ed25519( unsigned char *sm,unsigned long long *smlen, const unsigned char *m,unsigned long long mlen, const unsigned char *sk ) { sc25519 sck, scs, scsk; ge25519 ger; unsigned char r[32]; unsigned char s[32]; unsigned char extsk[64]; unsigned long long i; unsigned char hmg[crypto_hash_sha512_BYTES]; unsigned char hram[crypto_hash_sha512_BYTES]; crypto_hash_sha512(extsk, sk, 32); extsk[0] &= 248; extsk[31] &= 127; extsk[31] |= 64; *smlen = mlen+64; for(i=0;ix, &p->x, &p->t); fe25519_mul(&r->y, &p->y, &p->z); fe25519_mul(&r->z, &p->z, &p->t); } static void p1p1_to_p3(ge25519_p3 *r, const ge25519_p1p1 *p) { p1p1_to_p2((ge25519_p2 *)r, p); fe25519_mul(&r->t, &p->x, &p->y); } #ifndef VERIFYONLY static void ge25519_mixadd2(ge25519_p3 *r, const ge25519_aff *q) { fe25519 a,b,t1,t2,c,d,e,f,g,h,qt; fe25519_mul(&qt, &q->x, &q->y); fe25519_sub(&a, &r->y, &r->x); /* A = (Y1-X1)*(Y2-X2) */ fe25519_add(&b, &r->y, &r->x); /* B = (Y1+X1)*(Y2+X2) */ fe25519_sub(&t1, &q->y, &q->x); fe25519_add(&t2, &q->y, &q->x); fe25519_mul(&a, &a, &t1); fe25519_mul(&b, &b, &t2); fe25519_sub(&e, &b, &a); /* E = B-A */ fe25519_add(&h, &b, &a); /* H = B+A */ fe25519_mul(&c, &r->t, &qt); /* C = T1*k*T2 */ fe25519_mul(&c, &c, &ge25519_ec2d); fe25519_add(&d, &r->z, &r->z); /* D = Z1*2 */ fe25519_sub(&f, &d, &c); /* F = D-C */ fe25519_add(&g, &d, &c); /* G = D+C */ fe25519_mul(&r->x, &e, &f); fe25519_mul(&r->y, &h, &g); fe25519_mul(&r->z, &g, &f); fe25519_mul(&r->t, &e, &h); } #endif static void add_p1p1(ge25519_p1p1 *r, const ge25519_p3 *p, const ge25519_p3 *q) { fe25519 a, b, c, d, t; fe25519_sub(&a, &p->y, &p->x); /* A = (Y1-X1)*(Y2-X2) */ fe25519_sub(&t, &q->y, &q->x); fe25519_mul(&a, &a, &t); fe25519_add(&b, &p->x, &p->y); /* B = (Y1+X1)*(Y2+X2) */ fe25519_add(&t, &q->x, &q->y); fe25519_mul(&b, &b, &t); fe25519_mul(&c, &p->t, &q->t); /* C = T1*k*T2 */ fe25519_mul(&c, &c, &ge25519_ec2d); fe25519_mul(&d, &p->z, &q->z); /* D = Z1*2*Z2 */ fe25519_add(&d, &d, &d); fe25519_sub(&r->x, &b, &a); /* E = B-A */ fe25519_sub(&r->t, &d, &c); /* F = D-C */ fe25519_add(&r->z, &d, &c); /* G = D+C */ fe25519_add(&r->y, &b, &a); /* H = B+A */ } /* See http://www.hyperelliptic.org/EFD/g1p/auto-twisted-extended-1.html#doubling-dbl-2008-hwcd */ static void dbl_p1p1(ge25519_p1p1 *r, const ge25519_p2 *p) { fe25519 a,b,c,d; fe25519_square(&a, &p->x); fe25519_square(&b, &p->y); fe25519_square(&c, &p->z); fe25519_add(&c, &c, &c); fe25519_neg(&d, &a); fe25519_add(&r->x, &p->x, &p->y); fe25519_square(&r->x, &r->x); fe25519_sub(&r->x, &r->x, &a); fe25519_sub(&r->x, &r->x, &b); fe25519_add(&r->z, &d, &b); fe25519_sub(&r->t, &r->z, &c); fe25519_sub(&r->y, &d, &b); } #ifndef VERIFYONLY /* Constant-time version of: if(b) r = p */ static void cmov_aff(ge25519_aff *r, const ge25519_aff *p, unsigned char b) { fe25519_cmov(&r->x, &p->x, b); fe25519_cmov(&r->y, &p->y, b); } static unsigned char equal(signed char b,signed char c) { unsigned char ub = b; unsigned char uc = c; unsigned char x = ub ^ uc; /* 0: yes; 1..255: no */ crypto_uint32 y = x; /* 0: yes; 1..255: no */ y -= 1; /* 4294967295: yes; 0..254: no */ y >>= 31; /* 1: yes; 0: no */ return y; } static unsigned char negative(signed char b) { unsigned long long x = b; /* 18446744073709551361..18446744073709551615: yes; 0..255: no */ x >>= 63; /* 1: yes; 0: no */ return x; } static void choose_t(ge25519_aff *t, unsigned long long pos, signed char b) { /* constant time */ fe25519 v; *t = ge25519_base_multiples_affine[5*pos+0]; cmov_aff(t, &ge25519_base_multiples_affine[5*pos+1],equal(b,1) | equal(b,-1)); cmov_aff(t, &ge25519_base_multiples_affine[5*pos+2],equal(b,2) | equal(b,-2)); cmov_aff(t, &ge25519_base_multiples_affine[5*pos+3],equal(b,3) | equal(b,-3)); cmov_aff(t, &ge25519_base_multiples_affine[5*pos+4],equal(b,-4)); fe25519_neg(&v, &t->x); fe25519_cmov(&t->x, &v, negative(b)); } #endif static void setneutral(ge25519 *r) { fe25519_setzero(&r->x); fe25519_setone(&r->y); fe25519_setone(&r->z); fe25519_setzero(&r->t); } /* ******************************************************************** * EXPORTED FUNCTIONS ******************************************************************** */ /* return 0 on success, -1 otherwise */ int ge25519_unpackneg_vartime(ge25519_p3 *r, const unsigned char p[32]) { unsigned char par; fe25519 t, chk, num, den, den2, den4, den6; fe25519_setone(&r->z); par = p[31] >> 7; fe25519_unpack(&r->y, p); fe25519_square(&num, &r->y); /* x = y^2 */ fe25519_mul(&den, &num, &ge25519_ecd); /* den = dy^2 */ fe25519_sub(&num, &num, &r->z); /* x = y^2-1 */ fe25519_add(&den, &r->z, &den); /* den = dy^2+1 */ /* Computation of sqrt(num/den) */ /* 1.: computation of num^((p-5)/8)*den^((7p-35)/8) = (num*den^7)^((p-5)/8) */ fe25519_square(&den2, &den); fe25519_square(&den4, &den2); fe25519_mul(&den6, &den4, &den2); fe25519_mul(&t, &den6, &num); fe25519_mul(&t, &t, &den); fe25519_pow2523(&t, &t); /* 2. computation of r->x = t * num * den^3 */ fe25519_mul(&t, &t, &num); fe25519_mul(&t, &t, &den); fe25519_mul(&t, &t, &den); fe25519_mul(&r->x, &t, &den); /* 3. Check whether sqrt computation gave correct result, multiply by sqrt(-1) if not: */ fe25519_square(&chk, &r->x); fe25519_mul(&chk, &chk, &den); if (!fe25519_iseq_vartime(&chk, &num)) fe25519_mul(&r->x, &r->x, &ge25519_sqrtm1); /* 4. Now we have one of the two square roots, except if input was not a square */ fe25519_square(&chk, &r->x); fe25519_mul(&chk, &chk, &den); if (!fe25519_iseq_vartime(&chk, &num)) return -1; /* 5. Choose the desired square root according to parity: */ if(fe25519_getparity(&r->x) != (1-par)) fe25519_neg(&r->x, &r->x); fe25519_mul(&r->t, &r->x, &r->y); return 0; } void ge25519_pack(unsigned char r[32], const ge25519_p3 *p) { fe25519 tx, ty, zi; fe25519_invert(&zi, &p->z); fe25519_mul(&tx, &p->x, &zi); fe25519_mul(&ty, &p->y, &zi); fe25519_pack(r, &ty); r[31] ^= fe25519_getparity(&tx) << 7; } int ge25519_isneutral_vartime(const ge25519_p3 *p) { int ret = 1; if(!fe25519_iszero(&p->x)) ret = 0; if(!fe25519_iseq_vartime(&p->y, &p->z)) ret = 0; return ret; } /* computes [s1]p1 + [s2]p2 */ void ge25519_double_scalarmult_vartime(ge25519_p3 *r, const ge25519_p3 *p1, const sc25519 *s1, const ge25519_p3 *p2, const sc25519 *s2) { ge25519_p1p1 tp1p1; ge25519_p3 pre[16]; unsigned char b[127]; int i; /* precomputation s2 s1 */ setneutral(pre); /* 00 00 */ pre[1] = *p1; /* 00 01 */ dbl_p1p1(&tp1p1,(ge25519_p2 *)p1); p1p1_to_p3( &pre[2], &tp1p1); /* 00 10 */ add_p1p1(&tp1p1,&pre[1], &pre[2]); p1p1_to_p3( &pre[3], &tp1p1); /* 00 11 */ pre[4] = *p2; /* 01 00 */ add_p1p1(&tp1p1,&pre[1], &pre[4]); p1p1_to_p3( &pre[5], &tp1p1); /* 01 01 */ add_p1p1(&tp1p1,&pre[2], &pre[4]); p1p1_to_p3( &pre[6], &tp1p1); /* 01 10 */ add_p1p1(&tp1p1,&pre[3], &pre[4]); p1p1_to_p3( &pre[7], &tp1p1); /* 01 11 */ dbl_p1p1(&tp1p1,(ge25519_p2 *)p2); p1p1_to_p3( &pre[8], &tp1p1); /* 10 00 */ add_p1p1(&tp1p1,&pre[1], &pre[8]); p1p1_to_p3( &pre[9], &tp1p1); /* 10 01 */ dbl_p1p1(&tp1p1,(ge25519_p2 *)&pre[5]); p1p1_to_p3(&pre[10], &tp1p1); /* 10 10 */ add_p1p1(&tp1p1,&pre[3], &pre[8]); p1p1_to_p3(&pre[11], &tp1p1); /* 10 11 */ add_p1p1(&tp1p1,&pre[4], &pre[8]); p1p1_to_p3(&pre[12], &tp1p1); /* 11 00 */ add_p1p1(&tp1p1,&pre[1],&pre[12]); p1p1_to_p3(&pre[13], &tp1p1); /* 11 01 */ add_p1p1(&tp1p1,&pre[2],&pre[12]); p1p1_to_p3(&pre[14], &tp1p1); /* 11 10 */ add_p1p1(&tp1p1,&pre[3],&pre[12]); p1p1_to_p3(&pre[15], &tp1p1); /* 11 11 */ sc25519_2interleave2(b,s1,s2); /* scalar multiplication */ *r = pre[b[126]]; for(i=125;i>=0;i--) { dbl_p1p1(&tp1p1, (ge25519_p2 *)r); p1p1_to_p2((ge25519_p2 *) r, &tp1p1); dbl_p1p1(&tp1p1, (ge25519_p2 *)r); if(b[i]!=0) { p1p1_to_p3(r, &tp1p1); add_p1p1(&tp1p1, r, &pre[b[i]]); } if(i != 0) p1p1_to_p2((ge25519_p2 *)r, &tp1p1); else p1p1_to_p3(r, &tp1p1); } } #ifndef VERIFYONLY void ge25519_scalarmult_base(ge25519_p3 *r, const sc25519 *s) { signed char b[85]; int i; ge25519_aff t; sc25519_window3(b,s); choose_t((ge25519_aff *)r, 0, b[0]); fe25519_setone(&r->z); fe25519_mul(&r->t, &r->x, &r->y); for(i=1;i<85;i++) { choose_t(&t, (unsigned long long) i, b[i]); ge25519_mixadd2(r, &t); } } #endif signify-13/ohash.c000066400000000000000000000153301262737245500142340ustar00rootroot00000000000000/* $OpenBSD: ohash.c,v 1.1 2014/06/02 18:52:03 deraadt Exp $ */ /* Copyright (c) 1999, 2004 Marc Espie * * Permission to use, copy, modify, and distribute this software for any * purpose with or without fee is hereby granted, provided that the above * copyright notice and this permission notice appear in all copies. * * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE. */ #include #include #include #include #include #include "ohash.h" struct _ohash_record { uint32_t hv; const char *p; }; #define DELETED ((const char *)h) #define NONE (h->size) /* Don't bother changing the hash table if the change is small enough. */ #define MINSIZE (1UL << 4) #define MINDELETED 4 static void ohash_resize(struct ohash *); /* This handles the common case of variable length keys, where the * key is stored at the end of the record. */ void * ohash_create_entry(struct ohash_info *i, const char *start, const char **end) { char *p; if (!*end) *end = start + strlen(start); p = (i->alloc)(i->key_offset + (*end - start) + 1, i->data); if (p) { memcpy(p+i->key_offset, start, *end-start); p[i->key_offset + (*end - start)] = '\0'; } return (void *)p; } /* hash_delete only frees the hash structure. Use hash_first/hash_next * to free entries as well. */ void ohash_delete(struct ohash *h) { (h->info.free)(h->t, h->info.data); #ifndef NDEBUG h->t = NULL; #endif } static void ohash_resize(struct ohash *h) { struct _ohash_record *n; size_t ns; unsigned int j; unsigned int i, incr; if (4 * h->deleted < h->total) { if (h->size >= (UINT_MAX >> 1U)) ns = UINT_MAX; else ns = h->size << 1U; } else if (3 * h->deleted > 2 * h->total) ns = h->size >> 1U; else ns = h->size; if (ns < MINSIZE) ns = MINSIZE; #ifdef STATS_HASH STAT_HASH_EXPAND++; STAT_HASH_SIZE += ns - h->size; #endif n = (h->info.calloc)(ns, sizeof(struct _ohash_record), h->info.data); if (!n) return; for (j = 0; j < h->size; j++) { if (h->t[j].p != NULL && h->t[j].p != DELETED) { i = h->t[j].hv % ns; incr = ((h->t[j].hv % (ns - 2)) & ~1) + 1; while (n[i].p != NULL) { i += incr; if (i >= ns) i -= ns; } n[i].hv = h->t[j].hv; n[i].p = h->t[j].p; } } (h->info.free)(h->t, h->info.data); h->t = n; h->size = ns; h->total -= h->deleted; h->deleted = 0; } void * ohash_remove(struct ohash *h, unsigned int i) { void *result = (void *)h->t[i].p; if (result == NULL || result == DELETED) return NULL; #ifdef STATS_HASH STAT_HASH_ENTRIES--; #endif h->t[i].p = DELETED; h->deleted++; if (h->deleted >= MINDELETED && 4 * h->deleted > h->total) ohash_resize(h); return result; } void * ohash_find(struct ohash *h, unsigned int i) { if (h->t[i].p == DELETED) return NULL; else return (void *)h->t[i].p; } void * ohash_insert(struct ohash *h, unsigned int i, void *p) { #ifdef STATS_HASH STAT_HASH_ENTRIES++; #endif if (h->t[i].p == DELETED) { h->deleted--; h->t[i].p = p; } else { h->t[i].p = p; /* Arbitrary resize boundary. Tweak if not efficient enough. */ if (++h->total * 4 > h->size * 3) ohash_resize(h); } return p; } unsigned int ohash_entries(struct ohash *h) { return h->total - h->deleted; } void * ohash_first(struct ohash *h, unsigned int *pos) { *pos = 0; return ohash_next(h, pos); } void * ohash_next(struct ohash *h, unsigned int *pos) { for (; *pos < h->size; (*pos)++) if (h->t[*pos].p != DELETED && h->t[*pos].p != NULL) return (void *)h->t[(*pos)++].p; return NULL; } void ohash_init(struct ohash *h, unsigned int size, struct ohash_info *info) { h->size = 1UL << size; if (h->size < MINSIZE) h->size = MINSIZE; #ifdef STATS_HASH STAT_HASH_CREATION++; STAT_HASH_SIZE += h->size; #endif /* Copy info so that caller may free it. */ h->info.key_offset = info->key_offset; h->info.calloc = info->calloc; h->info.free = info->free; h->info.alloc = info->alloc; h->info.data = info->data; h->t = (h->info.calloc)(h->size, sizeof(struct _ohash_record), h->info.data); h->total = h->deleted = 0; } uint32_t ohash_interval(const char *s, const char **e) { uint32_t k; if (!*e) *e = s + strlen(s); if (s == *e) k = 0; else k = *s++; while (s != *e) k = ((k << 2) | (k >> 30)) ^ *s++; return k; } unsigned int ohash_lookup_interval(struct ohash *h, const char *start, const char *end, uint32_t hv) { unsigned int i, incr; unsigned int empty; #ifdef STATS_HASH STAT_HASH_LOOKUP++; #endif empty = NONE; i = hv % h->size; incr = ((hv % (h->size-2)) & ~1) + 1; while (h->t[i].p != NULL) { #ifdef STATS_HASH STAT_HASH_LENGTH++; #endif if (h->t[i].p == DELETED) { if (empty == NONE) empty = i; } else if (h->t[i].hv == hv && strncmp(h->t[i].p+h->info.key_offset, start, end - start) == 0 && (h->t[i].p+h->info.key_offset)[end-start] == '\0') { if (empty != NONE) { h->t[empty].hv = hv; h->t[empty].p = h->t[i].p; h->t[i].p = DELETED; return empty; } else { #ifdef STATS_HASH STAT_HASH_POSITIVE++; #endif return i; } } i += incr; if (i >= h->size) i -= h->size; } /* Found an empty position. */ if (empty != NONE) i = empty; h->t[i].hv = hv; return i; } unsigned int ohash_lookup_memory(struct ohash *h, const char *k, size_t size, uint32_t hv) { unsigned int i, incr; unsigned int empty; #ifdef STATS_HASH STAT_HASH_LOOKUP++; #endif empty = NONE; i = hv % h->size; incr = ((hv % (h->size-2)) & ~1) + 1; while (h->t[i].p != NULL) { #ifdef STATS_HASH STAT_HASH_LENGTH++; #endif if (h->t[i].p == DELETED) { if (empty == NONE) empty = i; } else if (h->t[i].hv == hv && memcmp(h->t[i].p+h->info.key_offset, k, size) == 0) { if (empty != NONE) { h->t[empty].hv = hv; h->t[empty].p = h->t[i].p; h->t[i].p = DELETED; return empty; } else { #ifdef STATS_HASH STAT_HASH_POSITIVE++; #endif } return i; } i += incr; if (i >= h->size) i -= h->size; } /* Found an empty position. */ if (empty != NONE) i = empty; h->t[i].hv = hv; return i; } unsigned int ohash_qlookup(struct ohash *h, const char *s) { const char *e = NULL; return ohash_qlookupi(h, s, &e); } unsigned int ohash_qlookupi(struct ohash *h, const char *s, const char **e) { uint32_t hv; hv = ohash_interval(s, e); return ohash_lookup_interval(h, s, *e, hv); } signify-13/ohash.h000066400000000000000000000053231262737245500142420ustar00rootroot00000000000000/* $OpenBSD: ohash.h,v 1.2 2014/06/02 18:52:03 deraadt Exp $ */ /* Copyright (c) 1999, 2004 Marc Espie * * Permission to use, copy, modify, and distribute this software for any * purpose with or without fee is hereby granted, provided that the above * copyright notice and this permission notice appear in all copies. * * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE. */ #ifndef OHASH_H #define OHASH_H /* Open hashing support. * Open hashing was chosen because it is much lighter than other hash * techniques, and more efficient in most cases. */ /* user-visible data structure */ struct ohash_info { ptrdiff_t key_offset; void *data; /* user data */ void *(*calloc)(size_t, size_t, void *); void (*free)(void *, void *); void *(*alloc)(size_t, void *); }; struct _ohash_record; /* private structure. It's there just so you can do a sizeof */ struct ohash { struct _ohash_record *t; struct ohash_info info; unsigned int size; unsigned int total; unsigned int deleted; }; /* For this to be tweakable, we use small primitives, and leave part of the * logic to the client application. e.g., hashing is left to the client * application. We also provide a simple table entry lookup that yields * a hashing table index (opaque) to be used in find/insert/remove. * The keys are stored at a known position in the client data. */ __BEGIN_DECLS void ohash_init(struct ohash *, unsigned, struct ohash_info *); void ohash_delete(struct ohash *); unsigned int ohash_lookup_interval(struct ohash *, const char *, const char *, uint32_t); unsigned int ohash_lookup_memory(struct ohash *, const char *, size_t, uint32_t) __attribute__ ((__bounded__(__string__,2,3))); void *ohash_find(struct ohash *, unsigned int); void *ohash_remove(struct ohash *, unsigned int); void *ohash_insert(struct ohash *, unsigned int, void *); void *ohash_first(struct ohash *, unsigned int *); void *ohash_next(struct ohash *, unsigned int *); unsigned int ohash_entries(struct ohash *); void *ohash_create_entry(struct ohash_info *, const char *, const char **); uint32_t ohash_interval(const char *, const char **); unsigned int ohash_qlookupi(struct ohash *, const char *, const char **); unsigned int ohash_qlookup(struct ohash *, const char *); __END_DECLS #endif signify-13/pledge_noop.c000066400000000000000000000016251262737245500154270ustar00rootroot00000000000000/* * Copyright (c) 2015, Adrián Pérez de Castro * * Permission to use, copy, modify, and distribute this software for any * purpose with or without fee is hereby granted, provided that the above * copyright notice and this permission notice appear in all copies. * * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE. */ int pledge (const char *promises, const char *paths[]) { (void) promises; (void) paths; return 0; } signify-13/pledge_waive.c000066400000000000000000000052211262737245500155630ustar00rootroot00000000000000/* * Copyright (c) 2015, Adrián Pérez de Castro * * Permission to use, copy, modify, and distribute this software for any * purpose with or without fee is hereby granted, provided that the above * copyright notice and this permission notice appear in all copies. * * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE. */ #include "libwaive/waive.h" #include #include #include static const struct { const char *pledge_name; int waive_flag; } flag_table[] = { { "stdio", WAIVE_PIPE }, { "rpath", WAIVE_OPEN }, { "wpath", WAIVE_OPEN }, { "cpath", 0 }, { "tmppath", WAIVE_OPEN }, { "inet", WAIVE_INET }, { "fattr", 0 }, { "flock", WAIVE_OPEN }, { "unix", WAIVE_UN }, { "dns", WAIVE_INET }, { "getpw", WAIVE_OPEN }, { "sendfd", 0 }, { "recvfd", 0 }, { "ioctl", 0 }, { "tty", 0 }, { "proc", WAIVE_CLONE | WAIVE_KILL }, { "exec", WAIVE_EXEC }, { "prot_exec", WAIVE_EXEC }, { "settime", 0 }, { "ps", 0 }, { "vminfo", 0 }, { "id", 0 }, { "pf", 0 }, }; static int find_flag (const char *pledge_name, size_t len) { size_t i; for (i = 0; i < sizeof (flag_table) / sizeof (flag_table[0]); i++) { if (strncmp (pledge_name, flag_table[i].pledge_name, len) == 0) return flag_table[i].waive_flag; } return 0; } int pledge (const char *promises, const char *paths[]) { int flags = WAIVE_INET | WAIVE_UN | WAIVE_PACKET | WAIVE_MOUNT | WAIVE_OPEN | WAIVE_EXEC | WAIVE_CLONE | WAIVE_KILL | WAIVE_PIPE; size_t s = 0; size_t e = 0; for (;;) { while (promises[e] != '\0' && !isspace (promises[e])) e++; if (s < e) flags &= ~find_flag (&promises[s], e-s); if (promises[e] == '\0') break; e++; while (promises[e] != '\0' && isspace (promises[e])) e++; s = e; } return waive (flags); } signify-13/sc25519.c000066400000000000000000000162161262737245500141510ustar00rootroot00000000000000/* $OpenBSD: sc25519.c,v 1.1 2014/07/22 00:41:19 deraadt Exp $ */ /* * Public Domain, Authors: Daniel J. Bernstein, Niels Duif, Tanja Lange, * Peter Schwabe, Bo-Yin Yang. * Copied from supercop-20130419/crypto_sign/ed25519/ref/sc25519.c */ #include "sc25519.h" /*Arithmetic modulo the group order m = 2^252 + 27742317777372353535851937790883648493 = 7237005577332262213973186563042994240857116359379907606001950938285454250989 */ static const crypto_uint32 m[32] = {0xED, 0xD3, 0xF5, 0x5C, 0x1A, 0x63, 0x12, 0x58, 0xD6, 0x9C, 0xF7, 0xA2, 0xDE, 0xF9, 0xDE, 0x14, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x10}; static const crypto_uint32 mu[33] = {0x1B, 0x13, 0x2C, 0x0A, 0xA3, 0xE5, 0x9C, 0xED, 0xA7, 0x29, 0x63, 0x08, 0x5D, 0x21, 0x06, 0x21, 0xEB, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0x0F}; static crypto_uint32 lt(crypto_uint32 a,crypto_uint32 b) /* 16-bit inputs */ { unsigned int x = a; x -= (unsigned int) b; /* 0..65535: no; 4294901761..4294967295: yes */ x >>= 31; /* 0: no; 1: yes */ return x; } /* Reduce coefficients of r before calling reduce_add_sub */ static void reduce_add_sub(sc25519 *r) { crypto_uint32 pb = 0; crypto_uint32 b; crypto_uint32 mask; int i; unsigned char t[32]; for(i=0;i<32;i++) { pb += m[i]; b = lt(r->v[i],pb); t[i] = r->v[i]-pb+(b<<8); pb = b; } mask = b - 1; for(i=0;i<32;i++) r->v[i] ^= mask & (r->v[i] ^ t[i]); } /* Reduce coefficients of x before calling barrett_reduce */ static void barrett_reduce(sc25519 *r, const crypto_uint32 x[64]) { /* See HAC, Alg. 14.42 */ int i,j; crypto_uint32 q2[66]; crypto_uint32 *q3 = q2 + 33; crypto_uint32 r1[33]; crypto_uint32 r2[33]; crypto_uint32 carry; crypto_uint32 pb = 0; crypto_uint32 b; for (i = 0;i < 66;++i) q2[i] = 0; for (i = 0;i < 33;++i) r2[i] = 0; for(i=0;i<33;i++) for(j=0;j<33;j++) if(i+j >= 31) q2[i+j] += mu[i]*x[j+31]; carry = q2[31] >> 8; q2[32] += carry; carry = q2[32] >> 8; q2[33] += carry; for(i=0;i<33;i++)r1[i] = x[i]; for(i=0;i<32;i++) for(j=0;j<33;j++) if(i+j < 33) r2[i+j] += m[i]*q3[j]; for(i=0;i<32;i++) { carry = r2[i] >> 8; r2[i+1] += carry; r2[i] &= 0xff; } for(i=0;i<32;i++) { pb += r2[i]; b = lt(r1[i],pb); r->v[i] = r1[i]-pb+(b<<8); pb = b; } /* XXX: Can it really happen that r<0?, See HAC, Alg 14.42, Step 3 * If so: Handle it here! */ reduce_add_sub(r); reduce_add_sub(r); } void sc25519_from32bytes(sc25519 *r, const unsigned char x[32]) { int i; crypto_uint32 t[64]; for(i=0;i<32;i++) t[i] = x[i]; for(i=32;i<64;++i) t[i] = 0; barrett_reduce(r, t); } void shortsc25519_from16bytes(shortsc25519 *r, const unsigned char x[16]) { int i; for(i=0;i<16;i++) r->v[i] = x[i]; } void sc25519_from64bytes(sc25519 *r, const unsigned char x[64]) { int i; crypto_uint32 t[64]; for(i=0;i<64;i++) t[i] = x[i]; barrett_reduce(r, t); } void sc25519_from_shortsc(sc25519 *r, const shortsc25519 *x) { int i; for(i=0;i<16;i++) r->v[i] = x->v[i]; for(i=0;i<16;i++) r->v[16+i] = 0; } void sc25519_to32bytes(unsigned char r[32], const sc25519 *x) { int i; for(i=0;i<32;i++) r[i] = x->v[i]; } int sc25519_iszero_vartime(const sc25519 *x) { int i; for(i=0;i<32;i++) if(x->v[i] != 0) return 0; return 1; } int sc25519_isshort_vartime(const sc25519 *x) { int i; for(i=31;i>15;i--) if(x->v[i] != 0) return 0; return 1; } int sc25519_lt_vartime(const sc25519 *x, const sc25519 *y) { int i; for(i=31;i>=0;i--) { if(x->v[i] < y->v[i]) return 1; if(x->v[i] > y->v[i]) return 0; } return 0; } void sc25519_add(sc25519 *r, const sc25519 *x, const sc25519 *y) { int i, carry; for(i=0;i<32;i++) r->v[i] = x->v[i] + y->v[i]; for(i=0;i<31;i++) { carry = r->v[i] >> 8; r->v[i+1] += carry; r->v[i] &= 0xff; } reduce_add_sub(r); } void sc25519_sub_nored(sc25519 *r, const sc25519 *x, const sc25519 *y) { crypto_uint32 b = 0; crypto_uint32 t; int i; for(i=0;i<32;i++) { t = x->v[i] - y->v[i] - b; r->v[i] = t & 255; b = (t >> 8) & 1; } } void sc25519_mul(sc25519 *r, const sc25519 *x, const sc25519 *y) { int i,j,carry; crypto_uint32 t[64]; for(i=0;i<64;i++)t[i] = 0; for(i=0;i<32;i++) for(j=0;j<32;j++) t[i+j] += x->v[i] * y->v[j]; /* Reduce coefficients */ for(i=0;i<63;i++) { carry = t[i] >> 8; t[i+1] += carry; t[i] &= 0xff; } barrett_reduce(r, t); } void sc25519_mul_shortsc(sc25519 *r, const sc25519 *x, const shortsc25519 *y) { sc25519 t; sc25519_from_shortsc(&t, y); sc25519_mul(r, x, &t); } void sc25519_window3(signed char r[85], const sc25519 *s) { char carry; int i; for(i=0;i<10;i++) { r[8*i+0] = s->v[3*i+0] & 7; r[8*i+1] = (s->v[3*i+0] >> 3) & 7; r[8*i+2] = (s->v[3*i+0] >> 6) & 7; r[8*i+2] ^= (s->v[3*i+1] << 2) & 7; r[8*i+3] = (s->v[3*i+1] >> 1) & 7; r[8*i+4] = (s->v[3*i+1] >> 4) & 7; r[8*i+5] = (s->v[3*i+1] >> 7) & 7; r[8*i+5] ^= (s->v[3*i+2] << 1) & 7; r[8*i+6] = (s->v[3*i+2] >> 2) & 7; r[8*i+7] = (s->v[3*i+2] >> 5) & 7; } r[8*i+0] = s->v[3*i+0] & 7; r[8*i+1] = (s->v[3*i+0] >> 3) & 7; r[8*i+2] = (s->v[3*i+0] >> 6) & 7; r[8*i+2] ^= (s->v[3*i+1] << 2) & 7; r[8*i+3] = (s->v[3*i+1] >> 1) & 7; r[8*i+4] = (s->v[3*i+1] >> 4) & 7; /* Making it signed */ carry = 0; for(i=0;i<84;i++) { r[i] += carry; r[i+1] += r[i] >> 3; r[i] &= 7; carry = r[i] >> 2; r[i] -= carry<<3; } r[84] += carry; } void sc25519_window5(signed char r[51], const sc25519 *s) { char carry; int i; for(i=0;i<6;i++) { r[8*i+0] = s->v[5*i+0] & 31; r[8*i+1] = (s->v[5*i+0] >> 5) & 31; r[8*i+1] ^= (s->v[5*i+1] << 3) & 31; r[8*i+2] = (s->v[5*i+1] >> 2) & 31; r[8*i+3] = (s->v[5*i+1] >> 7) & 31; r[8*i+3] ^= (s->v[5*i+2] << 1) & 31; r[8*i+4] = (s->v[5*i+2] >> 4) & 31; r[8*i+4] ^= (s->v[5*i+3] << 4) & 31; r[8*i+5] = (s->v[5*i+3] >> 1) & 31; r[8*i+6] = (s->v[5*i+3] >> 6) & 31; r[8*i+6] ^= (s->v[5*i+4] << 2) & 31; r[8*i+7] = (s->v[5*i+4] >> 3) & 31; } r[8*i+0] = s->v[5*i+0] & 31; r[8*i+1] = (s->v[5*i+0] >> 5) & 31; r[8*i+1] ^= (s->v[5*i+1] << 3) & 31; r[8*i+2] = (s->v[5*i+1] >> 2) & 31; /* Making it signed */ carry = 0; for(i=0;i<50;i++) { r[i] += carry; r[i+1] += r[i] >> 5; r[i] &= 31; carry = r[i] >> 4; r[i] -= carry<<5; } r[50] += carry; } void sc25519_2interleave2(unsigned char r[127], const sc25519 *s1, const sc25519 *s2) { int i; for(i=0;i<31;i++) { r[4*i] = ( s1->v[i] & 3) ^ (( s2->v[i] & 3) << 2); r[4*i+1] = ((s1->v[i] >> 2) & 3) ^ (((s2->v[i] >> 2) & 3) << 2); r[4*i+2] = ((s1->v[i] >> 4) & 3) ^ (((s2->v[i] >> 4) & 3) << 2); r[4*i+3] = ((s1->v[i] >> 6) & 3) ^ (((s2->v[i] >> 6) & 3) << 2); } r[124] = ( s1->v[31] & 3) ^ (( s2->v[31] & 3) << 2); r[125] = ((s1->v[31] >> 2) & 3) ^ (((s2->v[31] >> 2) & 3) << 2); r[126] = ((s1->v[31] >> 4) & 3) ^ (((s2->v[31] >> 4) & 3) << 2); } signify-13/sc25519.h000066400000000000000000000055161262737245500141570ustar00rootroot00000000000000/* $OpenBSD: sc25519.h,v 1.1 2014/07/22 00:41:19 deraadt Exp $ */ /* * Public Domain, Authors: Daniel J. Bernstein, Niels Duif, Tanja Lange, * Peter Schwabe, Bo-Yin Yang. * Copied from supercop-20130419/crypto_sign/ed25519/ref/sc25519.h */ #ifndef SC25519_H #define SC25519_H #include "crypto_api.h" #define sc25519 crypto_sign_ed25519_ref_sc25519 #define shortsc25519 crypto_sign_ed25519_ref_shortsc25519 #define sc25519_from32bytes crypto_sign_ed25519_ref_sc25519_from32bytes #define shortsc25519_from16bytes crypto_sign_ed25519_ref_shortsc25519_from16bytes #define sc25519_from64bytes crypto_sign_ed25519_ref_sc25519_from64bytes #define sc25519_from_shortsc crypto_sign_ed25519_ref_sc25519_from_shortsc #define sc25519_to32bytes crypto_sign_ed25519_ref_sc25519_to32bytes #define sc25519_iszero_vartime crypto_sign_ed25519_ref_sc25519_iszero_vartime #define sc25519_isshort_vartime crypto_sign_ed25519_ref_sc25519_isshort_vartime #define sc25519_lt_vartime crypto_sign_ed25519_ref_sc25519_lt_vartime #define sc25519_add crypto_sign_ed25519_ref_sc25519_add #define sc25519_sub_nored crypto_sign_ed25519_ref_sc25519_sub_nored #define sc25519_mul crypto_sign_ed25519_ref_sc25519_mul #define sc25519_mul_shortsc crypto_sign_ed25519_ref_sc25519_mul_shortsc #define sc25519_window3 crypto_sign_ed25519_ref_sc25519_window3 #define sc25519_window5 crypto_sign_ed25519_ref_sc25519_window5 #define sc25519_2interleave2 crypto_sign_ed25519_ref_sc25519_2interleave2 typedef struct { crypto_uint32 v[32]; } sc25519; typedef struct { crypto_uint32 v[16]; } shortsc25519; void sc25519_from32bytes(sc25519 *r, const unsigned char x[32]); void shortsc25519_from16bytes(shortsc25519 *r, const unsigned char x[16]); void sc25519_from64bytes(sc25519 *r, const unsigned char x[64]); void sc25519_from_shortsc(sc25519 *r, const shortsc25519 *x); void sc25519_to32bytes(unsigned char r[32], const sc25519 *x); int sc25519_iszero_vartime(const sc25519 *x); int sc25519_isshort_vartime(const sc25519 *x); int sc25519_lt_vartime(const sc25519 *x, const sc25519 *y); void sc25519_add(sc25519 *r, const sc25519 *x, const sc25519 *y); void sc25519_sub_nored(sc25519 *r, const sc25519 *x, const sc25519 *y); void sc25519_mul(sc25519 *r, const sc25519 *x, const sc25519 *y); void sc25519_mul_shortsc(sc25519 *r, const sc25519 *x, const shortsc25519 *y); /* Convert s into a representation of the form \sum_{i=0}^{84}r[i]2^3 * with r[i] in {-4,...,3} */ void sc25519_window3(signed char r[85], const sc25519 *s); /* Convert s into a representation of the form \sum_{i=0}^{50}r[i]2^5 * with r[i] in {-16,...,15} */ void sc25519_window5(signed char r[51], const sc25519 *s); void sc25519_2interleave2(unsigned char r[127], const sc25519 *s1, const sc25519 *s2); #endif signify-13/sha2.c000066400000000000000000000633151262737245500137750ustar00rootroot00000000000000/* $OpenBSD: sha2.c,v 1.24 2015/09/11 09:18:27 guenther Exp $ */ /* * FILE: sha2.c * AUTHOR: Aaron D. Gifford * * Copyright (c) 2000-2001, Aaron D. Gifford * 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. Neither the name of the copyright holder nor the names of contributors * may be used to endorse or promote products derived from this software * without specific prior written permission. * * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTOR(S) ``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 OR CONTRIBUTOR(S) 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. * * $From: sha2.c,v 1.1 2001/11/08 00:01:51 adg Exp adg $ */ #include #include #include "sha2.h" /* * UNROLLED TRANSFORM LOOP NOTE: * You can define SHA2_UNROLL_TRANSFORM to use the unrolled transform * loop version for the hash transform rounds (defined using macros * later in this file). Either define on the command line, for example: * * cc -DSHA2_UNROLL_TRANSFORM -o sha2 sha2.c sha2prog.c * * or define below: * * #define SHA2_UNROLL_TRANSFORM * */ #ifndef SHA2_SMALL #if defined(__amd64__) || defined(__i386__) #define SHA2_UNROLL_TRANSFORM #endif #endif /*** SHA-224/256/384/512 Machine Architecture Definitions *****************/ /* * BYTE_ORDER NOTE: * * Please make sure that your system defines BYTE_ORDER. If your * architecture is little-endian, make sure it also defines * LITTLE_ENDIAN and that the two (BYTE_ORDER and LITTLE_ENDIAN) are * equivalent. * * If your system does not define the above, then you can do so by * hand like this: * * #define LITTLE_ENDIAN 1234 * #define BIG_ENDIAN 4321 * * And for little-endian machines, add: * * #define BYTE_ORDER LITTLE_ENDIAN * * Or for big-endian machines: * * #define BYTE_ORDER BIG_ENDIAN * * The FreeBSD machine this was written on defines BYTE_ORDER * appropriately by including (which in turn includes * where the appropriate definitions are actually * made). */ #if !defined(BYTE_ORDER) || (BYTE_ORDER != LITTLE_ENDIAN && BYTE_ORDER != BIG_ENDIAN) #error Define BYTE_ORDER to be equal to either LITTLE_ENDIAN or BIG_ENDIAN #endif /*** SHA-224/256/384/512 Various Length Definitions ***********************/ /* NOTE: Most of these are in sha2.h */ #define SHA224_SHORT_BLOCK_LENGTH (SHA224_BLOCK_LENGTH - 8) #define SHA256_SHORT_BLOCK_LENGTH (SHA256_BLOCK_LENGTH - 8) #define SHA384_SHORT_BLOCK_LENGTH (SHA384_BLOCK_LENGTH - 16) #define SHA512_SHORT_BLOCK_LENGTH (SHA512_BLOCK_LENGTH - 16) /*** ENDIAN SPECIFIC COPY MACROS **************************************/ #define BE_8_TO_32(dst, cp) do { \ (dst) = (u_int32_t)(cp)[3] | ((u_int32_t)(cp)[2] << 8) | \ ((u_int32_t)(cp)[1] << 16) | ((u_int32_t)(cp)[0] << 24); \ } while(0) #define BE_8_TO_64(dst, cp) do { \ (dst) = (u_int64_t)(cp)[7] | ((u_int64_t)(cp)[6] << 8) | \ ((u_int64_t)(cp)[5] << 16) | ((u_int64_t)(cp)[4] << 24) | \ ((u_int64_t)(cp)[3] << 32) | ((u_int64_t)(cp)[2] << 40) | \ ((u_int64_t)(cp)[1] << 48) | ((u_int64_t)(cp)[0] << 56); \ } while (0) #define BE_64_TO_8(cp, src) do { \ (cp)[0] = (src) >> 56; \ (cp)[1] = (src) >> 48; \ (cp)[2] = (src) >> 40; \ (cp)[3] = (src) >> 32; \ (cp)[4] = (src) >> 24; \ (cp)[5] = (src) >> 16; \ (cp)[6] = (src) >> 8; \ (cp)[7] = (src); \ } while (0) #define BE_32_TO_8(cp, src) do { \ (cp)[0] = (src) >> 24; \ (cp)[1] = (src) >> 16; \ (cp)[2] = (src) >> 8; \ (cp)[3] = (src); \ } while (0) /* * Macro for incrementally adding the unsigned 64-bit integer n to the * unsigned 128-bit integer (represented using a two-element array of * 64-bit words): */ #define ADDINC128(w,n) do { \ (w)[0] += (u_int64_t)(n); \ if ((w)[0] < (n)) { \ (w)[1]++; \ } \ } while (0) /*** THE SIX LOGICAL FUNCTIONS ****************************************/ /* * Bit shifting and rotation (used by the six SHA-XYZ logical functions: * * NOTE: The naming of R and S appears backwards here (R is a SHIFT and * S is a ROTATION) because the SHA-224/256/384/512 description document * (see http://csrc.nist.gov/cryptval/shs/sha256-384-512.pdf) uses this * same "backwards" definition. */ /* Shift-right (used in SHA-224, SHA-256, SHA-384, and SHA-512): */ #define R(b,x) ((x) >> (b)) /* 32-bit Rotate-right (used in SHA-224 and SHA-256): */ #define S32(b,x) (((x) >> (b)) | ((x) << (32 - (b)))) /* 64-bit Rotate-right (used in SHA-384 and SHA-512): */ #define S64(b,x) (((x) >> (b)) | ((x) << (64 - (b)))) /* Two of six logical functions used in SHA-224, SHA-256, SHA-384, and SHA-512: */ #define Ch(x,y,z) (((x) & (y)) ^ ((~(x)) & (z))) #define Maj(x,y,z) (((x) & (y)) ^ ((x) & (z)) ^ ((y) & (z))) /* Four of six logical functions used in SHA-224 and SHA-256: */ #define Sigma0_256(x) (S32(2, (x)) ^ S32(13, (x)) ^ S32(22, (x))) #define Sigma1_256(x) (S32(6, (x)) ^ S32(11, (x)) ^ S32(25, (x))) #define sigma0_256(x) (S32(7, (x)) ^ S32(18, (x)) ^ R(3 , (x))) #define sigma1_256(x) (S32(17, (x)) ^ S32(19, (x)) ^ R(10, (x))) /* Four of six logical functions used in SHA-384 and SHA-512: */ #define Sigma0_512(x) (S64(28, (x)) ^ S64(34, (x)) ^ S64(39, (x))) #define Sigma1_512(x) (S64(14, (x)) ^ S64(18, (x)) ^ S64(41, (x))) #define sigma0_512(x) (S64( 1, (x)) ^ S64( 8, (x)) ^ R( 7, (x))) #define sigma1_512(x) (S64(19, (x)) ^ S64(61, (x)) ^ R( 6, (x))) /*** SHA-XYZ INITIAL HASH VALUES AND CONSTANTS ************************/ /* Hash constant words K for SHA-224 and SHA-256: */ static const u_int32_t K256[64] = { 0x428a2f98UL, 0x71374491UL, 0xb5c0fbcfUL, 0xe9b5dba5UL, 0x3956c25bUL, 0x59f111f1UL, 0x923f82a4UL, 0xab1c5ed5UL, 0xd807aa98UL, 0x12835b01UL, 0x243185beUL, 0x550c7dc3UL, 0x72be5d74UL, 0x80deb1feUL, 0x9bdc06a7UL, 0xc19bf174UL, 0xe49b69c1UL, 0xefbe4786UL, 0x0fc19dc6UL, 0x240ca1ccUL, 0x2de92c6fUL, 0x4a7484aaUL, 0x5cb0a9dcUL, 0x76f988daUL, 0x983e5152UL, 0xa831c66dUL, 0xb00327c8UL, 0xbf597fc7UL, 0xc6e00bf3UL, 0xd5a79147UL, 0x06ca6351UL, 0x14292967UL, 0x27b70a85UL, 0x2e1b2138UL, 0x4d2c6dfcUL, 0x53380d13UL, 0x650a7354UL, 0x766a0abbUL, 0x81c2c92eUL, 0x92722c85UL, 0xa2bfe8a1UL, 0xa81a664bUL, 0xc24b8b70UL, 0xc76c51a3UL, 0xd192e819UL, 0xd6990624UL, 0xf40e3585UL, 0x106aa070UL, 0x19a4c116UL, 0x1e376c08UL, 0x2748774cUL, 0x34b0bcb5UL, 0x391c0cb3UL, 0x4ed8aa4aUL, 0x5b9cca4fUL, 0x682e6ff3UL, 0x748f82eeUL, 0x78a5636fUL, 0x84c87814UL, 0x8cc70208UL, 0x90befffaUL, 0xa4506cebUL, 0xbef9a3f7UL, 0xc67178f2UL }; /* Initial hash value H for SHA-224: */ static const u_int32_t sha224_initial_hash_value[8] = { 0xc1059ed8UL, 0x367cd507UL, 0x3070dd17UL, 0xf70e5939UL, 0xffc00b31UL, 0x68581511UL, 0x64f98fa7UL, 0xbefa4fa4UL }; /* Initial hash value H for SHA-256: */ static const u_int32_t sha256_initial_hash_value[8] = { 0x6a09e667UL, 0xbb67ae85UL, 0x3c6ef372UL, 0xa54ff53aUL, 0x510e527fUL, 0x9b05688cUL, 0x1f83d9abUL, 0x5be0cd19UL }; /* Hash constant words K for SHA-384 and SHA-512: */ static const u_int64_t K512[80] = { 0x428a2f98d728ae22ULL, 0x7137449123ef65cdULL, 0xb5c0fbcfec4d3b2fULL, 0xe9b5dba58189dbbcULL, 0x3956c25bf348b538ULL, 0x59f111f1b605d019ULL, 0x923f82a4af194f9bULL, 0xab1c5ed5da6d8118ULL, 0xd807aa98a3030242ULL, 0x12835b0145706fbeULL, 0x243185be4ee4b28cULL, 0x550c7dc3d5ffb4e2ULL, 0x72be5d74f27b896fULL, 0x80deb1fe3b1696b1ULL, 0x9bdc06a725c71235ULL, 0xc19bf174cf692694ULL, 0xe49b69c19ef14ad2ULL, 0xefbe4786384f25e3ULL, 0x0fc19dc68b8cd5b5ULL, 0x240ca1cc77ac9c65ULL, 0x2de92c6f592b0275ULL, 0x4a7484aa6ea6e483ULL, 0x5cb0a9dcbd41fbd4ULL, 0x76f988da831153b5ULL, 0x983e5152ee66dfabULL, 0xa831c66d2db43210ULL, 0xb00327c898fb213fULL, 0xbf597fc7beef0ee4ULL, 0xc6e00bf33da88fc2ULL, 0xd5a79147930aa725ULL, 0x06ca6351e003826fULL, 0x142929670a0e6e70ULL, 0x27b70a8546d22ffcULL, 0x2e1b21385c26c926ULL, 0x4d2c6dfc5ac42aedULL, 0x53380d139d95b3dfULL, 0x650a73548baf63deULL, 0x766a0abb3c77b2a8ULL, 0x81c2c92e47edaee6ULL, 0x92722c851482353bULL, 0xa2bfe8a14cf10364ULL, 0xa81a664bbc423001ULL, 0xc24b8b70d0f89791ULL, 0xc76c51a30654be30ULL, 0xd192e819d6ef5218ULL, 0xd69906245565a910ULL, 0xf40e35855771202aULL, 0x106aa07032bbd1b8ULL, 0x19a4c116b8d2d0c8ULL, 0x1e376c085141ab53ULL, 0x2748774cdf8eeb99ULL, 0x34b0bcb5e19b48a8ULL, 0x391c0cb3c5c95a63ULL, 0x4ed8aa4ae3418acbULL, 0x5b9cca4f7763e373ULL, 0x682e6ff3d6b2b8a3ULL, 0x748f82ee5defb2fcULL, 0x78a5636f43172f60ULL, 0x84c87814a1f0ab72ULL, 0x8cc702081a6439ecULL, 0x90befffa23631e28ULL, 0xa4506cebde82bde9ULL, 0xbef9a3f7b2c67915ULL, 0xc67178f2e372532bULL, 0xca273eceea26619cULL, 0xd186b8c721c0c207ULL, 0xeada7dd6cde0eb1eULL, 0xf57d4f7fee6ed178ULL, 0x06f067aa72176fbaULL, 0x0a637dc5a2c898a6ULL, 0x113f9804bef90daeULL, 0x1b710b35131c471bULL, 0x28db77f523047d84ULL, 0x32caab7b40c72493ULL, 0x3c9ebe0a15c9bebcULL, 0x431d67c49c100d4cULL, 0x4cc5d4becb3e42b6ULL, 0x597f299cfc657e2aULL, 0x5fcb6fab3ad6faecULL, 0x6c44198c4a475817ULL }; /* Initial hash value H for SHA-512 */ static const u_int64_t sha512_initial_hash_value[8] = { 0x6a09e667f3bcc908ULL, 0xbb67ae8584caa73bULL, 0x3c6ef372fe94f82bULL, 0xa54ff53a5f1d36f1ULL, 0x510e527fade682d1ULL, 0x9b05688c2b3e6c1fULL, 0x1f83d9abfb41bd6bULL, 0x5be0cd19137e2179ULL }; #if !defined(SHA2_SMALL) /* Initial hash value H for SHA-384 */ static const u_int64_t sha384_initial_hash_value[8] = { 0xcbbb9d5dc1059ed8ULL, 0x629a292a367cd507ULL, 0x9159015a3070dd17ULL, 0x152fecd8f70e5939ULL, 0x67332667ffc00b31ULL, 0x8eb44a8768581511ULL, 0xdb0c2e0d64f98fa7ULL, 0x47b5481dbefa4fa4ULL }; /*** SHA-224: *********************************************************/ void SHA224Init(SHA2_CTX *context) { memcpy(context->state.st32, sha224_initial_hash_value, sizeof(sha224_initial_hash_value)); memset(context->buffer, 0, sizeof(context->buffer)); context->bitcount[0] = 0; } DEF_WEAK(SHA224Init); MAKE_CLONE(SHA224Transform, SHA256Transform); MAKE_CLONE(SHA224Update, SHA256Update); MAKE_CLONE(SHA224Pad, SHA256Pad); DEF_WEAK(SHA224Transform); DEF_WEAK(SHA224Update); DEF_WEAK(SHA224Pad); void SHA224Final(u_int8_t digest[SHA224_DIGEST_LENGTH], SHA2_CTX *context) { SHA224Pad(context); #if BYTE_ORDER == LITTLE_ENDIAN int i; /* Convert TO host byte order */ for (i = 0; i < 7; i++) BE_32_TO_8(digest + i * 4, context->state.st32[i]); #else memcpy(digest, context->state.st32, SHA224_DIGEST_LENGTH); #endif explicit_bzero(context, sizeof(*context)); } DEF_WEAK(SHA224Final); #endif /* !defined(SHA2_SMALL) */ /*** SHA-256: *********************************************************/ void SHA256Init(SHA2_CTX *context) { memcpy(context->state.st32, sha256_initial_hash_value, sizeof(sha256_initial_hash_value)); memset(context->buffer, 0, sizeof(context->buffer)); context->bitcount[0] = 0; } DEF_WEAK(SHA256Init); #ifdef SHA2_UNROLL_TRANSFORM /* Unrolled SHA-256 round macros: */ #define ROUND256_0_TO_15(a,b,c,d,e,f,g,h) do { \ BE_8_TO_32(W256[j], data); \ data += 4; \ T1 = (h) + Sigma1_256((e)) + Ch((e), (f), (g)) + K256[j] + W256[j]; \ (d) += T1; \ (h) = T1 + Sigma0_256((a)) + Maj((a), (b), (c)); \ j++; \ } while(0) #define ROUND256(a,b,c,d,e,f,g,h) do { \ s0 = W256[(j+1)&0x0f]; \ s0 = sigma0_256(s0); \ s1 = W256[(j+14)&0x0f]; \ s1 = sigma1_256(s1); \ T1 = (h) + Sigma1_256((e)) + Ch((e), (f), (g)) + K256[j] + \ (W256[j&0x0f] += s1 + W256[(j+9)&0x0f] + s0); \ (d) += T1; \ (h) = T1 + Sigma0_256((a)) + Maj((a), (b), (c)); \ j++; \ } while(0) void SHA256Transform(u_int32_t state[8], const u_int8_t data[SHA256_BLOCK_LENGTH]) { u_int32_t a, b, c, d, e, f, g, h, s0, s1; u_int32_t T1, W256[16]; int j; /* Initialize registers with the prev. intermediate value */ a = state[0]; b = state[1]; c = state[2]; d = state[3]; e = state[4]; f = state[5]; g = state[6]; h = state[7]; j = 0; do { /* Rounds 0 to 15 (unrolled): */ ROUND256_0_TO_15(a,b,c,d,e,f,g,h); ROUND256_0_TO_15(h,a,b,c,d,e,f,g); ROUND256_0_TO_15(g,h,a,b,c,d,e,f); ROUND256_0_TO_15(f,g,h,a,b,c,d,e); ROUND256_0_TO_15(e,f,g,h,a,b,c,d); ROUND256_0_TO_15(d,e,f,g,h,a,b,c); ROUND256_0_TO_15(c,d,e,f,g,h,a,b); ROUND256_0_TO_15(b,c,d,e,f,g,h,a); } while (j < 16); /* Now for the remaining rounds up to 63: */ do { ROUND256(a,b,c,d,e,f,g,h); ROUND256(h,a,b,c,d,e,f,g); ROUND256(g,h,a,b,c,d,e,f); ROUND256(f,g,h,a,b,c,d,e); ROUND256(e,f,g,h,a,b,c,d); ROUND256(d,e,f,g,h,a,b,c); ROUND256(c,d,e,f,g,h,a,b); ROUND256(b,c,d,e,f,g,h,a); } while (j < 64); /* Compute the current intermediate hash value */ state[0] += a; state[1] += b; state[2] += c; state[3] += d; state[4] += e; state[5] += f; state[6] += g; state[7] += h; /* Clean up */ a = b = c = d = e = f = g = h = T1 = 0; } #else /* SHA2_UNROLL_TRANSFORM */ void SHA256Transform(u_int32_t state[8], const u_int8_t data[SHA256_BLOCK_LENGTH]) { u_int32_t a, b, c, d, e, f, g, h, s0, s1; u_int32_t T1, T2, W256[16]; int j; /* Initialize registers with the prev. intermediate value */ a = state[0]; b = state[1]; c = state[2]; d = state[3]; e = state[4]; f = state[5]; g = state[6]; h = state[7]; j = 0; do { BE_8_TO_32(W256[j], data); data += 4; /* Apply the SHA-256 compression function to update a..h */ T1 = h + Sigma1_256(e) + Ch(e, f, g) + K256[j] + W256[j]; T2 = Sigma0_256(a) + Maj(a, b, c); h = g; g = f; f = e; e = d + T1; d = c; c = b; b = a; a = T1 + T2; j++; } while (j < 16); do { /* Part of the message block expansion: */ s0 = W256[(j+1)&0x0f]; s0 = sigma0_256(s0); s1 = W256[(j+14)&0x0f]; s1 = sigma1_256(s1); /* Apply the SHA-256 compression function to update a..h */ T1 = h + Sigma1_256(e) + Ch(e, f, g) + K256[j] + (W256[j&0x0f] += s1 + W256[(j+9)&0x0f] + s0); T2 = Sigma0_256(a) + Maj(a, b, c); h = g; g = f; f = e; e = d + T1; d = c; c = b; b = a; a = T1 + T2; j++; } while (j < 64); /* Compute the current intermediate hash value */ state[0] += a; state[1] += b; state[2] += c; state[3] += d; state[4] += e; state[5] += f; state[6] += g; state[7] += h; /* Clean up */ a = b = c = d = e = f = g = h = T1 = T2 = 0; } #endif /* SHA2_UNROLL_TRANSFORM */ DEF_WEAK(SHA256Transform); void SHA256Update(SHA2_CTX *context, const u_int8_t *data, size_t len) { size_t freespace, usedspace; /* Calling with no data is valid (we do nothing) */ if (len == 0) return; usedspace = (context->bitcount[0] >> 3) % SHA256_BLOCK_LENGTH; if (usedspace > 0) { /* Calculate how much free space is available in the buffer */ freespace = SHA256_BLOCK_LENGTH - usedspace; if (len >= freespace) { /* Fill the buffer completely and process it */ memcpy(&context->buffer[usedspace], data, freespace); context->bitcount[0] += freespace << 3; len -= freespace; data += freespace; SHA256Transform(context->state.st32, context->buffer); } else { /* The buffer is not yet full */ memcpy(&context->buffer[usedspace], data, len); context->bitcount[0] += len << 3; /* Clean up: */ usedspace = freespace = 0; return; } } while (len >= SHA256_BLOCK_LENGTH) { /* Process as many complete blocks as we can */ SHA256Transform(context->state.st32, data); context->bitcount[0] += SHA256_BLOCK_LENGTH << 3; len -= SHA256_BLOCK_LENGTH; data += SHA256_BLOCK_LENGTH; } if (len > 0) { /* There's left-overs, so save 'em */ memcpy(context->buffer, data, len); context->bitcount[0] += len << 3; } /* Clean up: */ usedspace = freespace = 0; } DEF_WEAK(SHA256Update); void SHA256Pad(SHA2_CTX *context) { unsigned int usedspace; usedspace = (context->bitcount[0] >> 3) % SHA256_BLOCK_LENGTH; if (usedspace > 0) { /* Begin padding with a 1 bit: */ context->buffer[usedspace++] = 0x80; if (usedspace <= SHA256_SHORT_BLOCK_LENGTH) { /* Set-up for the last transform: */ memset(&context->buffer[usedspace], 0, SHA256_SHORT_BLOCK_LENGTH - usedspace); } else { if (usedspace < SHA256_BLOCK_LENGTH) { memset(&context->buffer[usedspace], 0, SHA256_BLOCK_LENGTH - usedspace); } /* Do second-to-last transform: */ SHA256Transform(context->state.st32, context->buffer); /* Prepare for last transform: */ memset(context->buffer, 0, SHA256_SHORT_BLOCK_LENGTH); } } else { /* Set-up for the last transform: */ memset(context->buffer, 0, SHA256_SHORT_BLOCK_LENGTH); /* Begin padding with a 1 bit: */ *context->buffer = 0x80; } /* Store the length of input data (in bits) in big endian format: */ BE_64_TO_8(&context->buffer[SHA256_SHORT_BLOCK_LENGTH], context->bitcount[0]); /* Final transform: */ SHA256Transform(context->state.st32, context->buffer); /* Clean up: */ usedspace = 0; } DEF_WEAK(SHA256Pad); void SHA256Final(u_int8_t digest[SHA256_DIGEST_LENGTH], SHA2_CTX *context) { SHA256Pad(context); #if BYTE_ORDER == LITTLE_ENDIAN int i; /* Convert TO host byte order */ for (i = 0; i < 8; i++) BE_32_TO_8(digest + i * 4, context->state.st32[i]); #else memcpy(digest, context->state.st32, SHA256_DIGEST_LENGTH); #endif explicit_bzero(context, sizeof(*context)); } DEF_WEAK(SHA256Final); /*** SHA-512: *********************************************************/ void SHA512Init(SHA2_CTX *context) { memcpy(context->state.st64, sha512_initial_hash_value, sizeof(sha512_initial_hash_value)); memset(context->buffer, 0, sizeof(context->buffer)); context->bitcount[0] = context->bitcount[1] = 0; } DEF_WEAK(SHA512Init); #ifdef SHA2_UNROLL_TRANSFORM /* Unrolled SHA-512 round macros: */ #define ROUND512_0_TO_15(a,b,c,d,e,f,g,h) do { \ BE_8_TO_64(W512[j], data); \ data += 8; \ T1 = (h) + Sigma1_512((e)) + Ch((e), (f), (g)) + K512[j] + W512[j]; \ (d) += T1; \ (h) = T1 + Sigma0_512((a)) + Maj((a), (b), (c)); \ j++; \ } while(0) #define ROUND512(a,b,c,d,e,f,g,h) do { \ s0 = W512[(j+1)&0x0f]; \ s0 = sigma0_512(s0); \ s1 = W512[(j+14)&0x0f]; \ s1 = sigma1_512(s1); \ T1 = (h) + Sigma1_512((e)) + Ch((e), (f), (g)) + K512[j] + \ (W512[j&0x0f] += s1 + W512[(j+9)&0x0f] + s0); \ (d) += T1; \ (h) = T1 + Sigma0_512((a)) + Maj((a), (b), (c)); \ j++; \ } while(0) void SHA512Transform(u_int64_t state[8], const u_int8_t data[SHA512_BLOCK_LENGTH]) { u_int64_t a, b, c, d, e, f, g, h, s0, s1; u_int64_t T1, W512[16]; int j; /* Initialize registers with the prev. intermediate value */ a = state[0]; b = state[1]; c = state[2]; d = state[3]; e = state[4]; f = state[5]; g = state[6]; h = state[7]; j = 0; do { /* Rounds 0 to 15 (unrolled): */ ROUND512_0_TO_15(a,b,c,d,e,f,g,h); ROUND512_0_TO_15(h,a,b,c,d,e,f,g); ROUND512_0_TO_15(g,h,a,b,c,d,e,f); ROUND512_0_TO_15(f,g,h,a,b,c,d,e); ROUND512_0_TO_15(e,f,g,h,a,b,c,d); ROUND512_0_TO_15(d,e,f,g,h,a,b,c); ROUND512_0_TO_15(c,d,e,f,g,h,a,b); ROUND512_0_TO_15(b,c,d,e,f,g,h,a); } while (j < 16); /* Now for the remaining rounds up to 79: */ do { ROUND512(a,b,c,d,e,f,g,h); ROUND512(h,a,b,c,d,e,f,g); ROUND512(g,h,a,b,c,d,e,f); ROUND512(f,g,h,a,b,c,d,e); ROUND512(e,f,g,h,a,b,c,d); ROUND512(d,e,f,g,h,a,b,c); ROUND512(c,d,e,f,g,h,a,b); ROUND512(b,c,d,e,f,g,h,a); } while (j < 80); /* Compute the current intermediate hash value */ state[0] += a; state[1] += b; state[2] += c; state[3] += d; state[4] += e; state[5] += f; state[6] += g; state[7] += h; /* Clean up */ a = b = c = d = e = f = g = h = T1 = 0; } #else /* SHA2_UNROLL_TRANSFORM */ void SHA512Transform(u_int64_t state[8], const u_int8_t data[SHA512_BLOCK_LENGTH]) { u_int64_t a, b, c, d, e, f, g, h, s0, s1; u_int64_t T1, T2, W512[16]; int j; /* Initialize registers with the prev. intermediate value */ a = state[0]; b = state[1]; c = state[2]; d = state[3]; e = state[4]; f = state[5]; g = state[6]; h = state[7]; j = 0; do { BE_8_TO_64(W512[j], data); data += 8; /* Apply the SHA-512 compression function to update a..h */ T1 = h + Sigma1_512(e) + Ch(e, f, g) + K512[j] + W512[j]; T2 = Sigma0_512(a) + Maj(a, b, c); h = g; g = f; f = e; e = d + T1; d = c; c = b; b = a; a = T1 + T2; j++; } while (j < 16); do { /* Part of the message block expansion: */ s0 = W512[(j+1)&0x0f]; s0 = sigma0_512(s0); s1 = W512[(j+14)&0x0f]; s1 = sigma1_512(s1); /* Apply the SHA-512 compression function to update a..h */ T1 = h + Sigma1_512(e) + Ch(e, f, g) + K512[j] + (W512[j&0x0f] += s1 + W512[(j+9)&0x0f] + s0); T2 = Sigma0_512(a) + Maj(a, b, c); h = g; g = f; f = e; e = d + T1; d = c; c = b; b = a; a = T1 + T2; j++; } while (j < 80); /* Compute the current intermediate hash value */ state[0] += a; state[1] += b; state[2] += c; state[3] += d; state[4] += e; state[5] += f; state[6] += g; state[7] += h; /* Clean up */ a = b = c = d = e = f = g = h = T1 = T2 = 0; } #endif /* SHA2_UNROLL_TRANSFORM */ DEF_WEAK(SHA512Transform); void SHA512Update(SHA2_CTX *context, const u_int8_t *data, size_t len) { size_t freespace, usedspace; /* Calling with no data is valid (we do nothing) */ if (len == 0) return; usedspace = (context->bitcount[0] >> 3) % SHA512_BLOCK_LENGTH; if (usedspace > 0) { /* Calculate how much free space is available in the buffer */ freespace = SHA512_BLOCK_LENGTH - usedspace; if (len >= freespace) { /* Fill the buffer completely and process it */ memcpy(&context->buffer[usedspace], data, freespace); ADDINC128(context->bitcount, freespace << 3); len -= freespace; data += freespace; SHA512Transform(context->state.st64, context->buffer); } else { /* The buffer is not yet full */ memcpy(&context->buffer[usedspace], data, len); ADDINC128(context->bitcount, len << 3); /* Clean up: */ usedspace = freespace = 0; return; } } while (len >= SHA512_BLOCK_LENGTH) { /* Process as many complete blocks as we can */ SHA512Transform(context->state.st64, data); ADDINC128(context->bitcount, SHA512_BLOCK_LENGTH << 3); len -= SHA512_BLOCK_LENGTH; data += SHA512_BLOCK_LENGTH; } if (len > 0) { /* There's left-overs, so save 'em */ memcpy(context->buffer, data, len); ADDINC128(context->bitcount, len << 3); } /* Clean up: */ usedspace = freespace = 0; } DEF_WEAK(SHA512Update); void SHA512Pad(SHA2_CTX *context) { unsigned int usedspace; usedspace = (context->bitcount[0] >> 3) % SHA512_BLOCK_LENGTH; if (usedspace > 0) { /* Begin padding with a 1 bit: */ context->buffer[usedspace++] = 0x80; if (usedspace <= SHA512_SHORT_BLOCK_LENGTH) { /* Set-up for the last transform: */ memset(&context->buffer[usedspace], 0, SHA512_SHORT_BLOCK_LENGTH - usedspace); } else { if (usedspace < SHA512_BLOCK_LENGTH) { memset(&context->buffer[usedspace], 0, SHA512_BLOCK_LENGTH - usedspace); } /* Do second-to-last transform: */ SHA512Transform(context->state.st64, context->buffer); /* And set-up for the last transform: */ memset(context->buffer, 0, SHA512_BLOCK_LENGTH - 2); } } else { /* Prepare for final transform: */ memset(context->buffer, 0, SHA512_SHORT_BLOCK_LENGTH); /* Begin padding with a 1 bit: */ *context->buffer = 0x80; } /* Store the length of input data (in bits) in big endian format: */ BE_64_TO_8(&context->buffer[SHA512_SHORT_BLOCK_LENGTH], context->bitcount[1]); BE_64_TO_8(&context->buffer[SHA512_SHORT_BLOCK_LENGTH + 8], context->bitcount[0]); /* Final transform: */ SHA512Transform(context->state.st64, context->buffer); /* Clean up: */ usedspace = 0; } DEF_WEAK(SHA512Pad); void SHA512Final(u_int8_t digest[SHA512_DIGEST_LENGTH], SHA2_CTX *context) { SHA512Pad(context); #if BYTE_ORDER == LITTLE_ENDIAN int i; /* Convert TO host byte order */ for (i = 0; i < 8; i++) BE_64_TO_8(digest + i * 8, context->state.st64[i]); #else memcpy(digest, context->state.st64, SHA512_DIGEST_LENGTH); #endif explicit_bzero(context, sizeof(*context)); } DEF_WEAK(SHA512Final); #if !defined(SHA2_SMALL) /*** SHA-384: *********************************************************/ void SHA384Init(SHA2_CTX *context) { memcpy(context->state.st64, sha384_initial_hash_value, sizeof(sha384_initial_hash_value)); memset(context->buffer, 0, sizeof(context->buffer)); context->bitcount[0] = context->bitcount[1] = 0; } DEF_WEAK(SHA384Init); MAKE_CLONE(SHA384Transform, SHA512Transform); MAKE_CLONE(SHA384Update, SHA512Update); MAKE_CLONE(SHA384Pad, SHA512Pad); DEF_WEAK(SHA384Transform); DEF_WEAK(SHA384Update); DEF_WEAK(SHA384Pad); void SHA384Final(u_int8_t digest[SHA384_DIGEST_LENGTH], SHA2_CTX *context) { SHA384Pad(context); #if BYTE_ORDER == LITTLE_ENDIAN int i; /* Convert TO host byte order */ for (i = 0; i < 6; i++) BE_64_TO_8(digest + i * 8, context->state.st64[i]); #else memcpy(digest, context->state.st64, SHA384_DIGEST_LENGTH); #endif /* Zero out state data */ explicit_bzero(context, sizeof(*context)); } DEF_WEAK(SHA384Final); #endif /* !defined(SHA2_SMALL) */ signify-13/sha2.h000066400000000000000000000142271262737245500140000ustar00rootroot00000000000000/* $OpenBSD: sha2.h,v 1.9 2013/04/15 15:54:17 millert Exp $ */ /* * FILE: sha2.h * AUTHOR: Aaron D. Gifford * * Copyright (c) 2000-2001, Aaron D. Gifford * 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. Neither the name of the copyright holder nor the names of contributors * may be used to endorse or promote products derived from this software * without specific prior written permission. * * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTOR(S) ``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 OR CONTRIBUTOR(S) 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. * * $From: sha2.h,v 1.1 2001/11/08 00:02:01 adg Exp adg $ */ #ifndef _SHA2_H #define _SHA2_H /*** SHA-256/384/512 Various Length Definitions ***********************/ #define SHA224_BLOCK_LENGTH 64 #define SHA224_DIGEST_LENGTH 28 #define SHA224_DIGEST_STRING_LENGTH (SHA224_DIGEST_LENGTH * 2 + 1) #define SHA256_BLOCK_LENGTH 64 #define SHA256_DIGEST_LENGTH 32 #define SHA256_DIGEST_STRING_LENGTH (SHA256_DIGEST_LENGTH * 2 + 1) #define SHA384_BLOCK_LENGTH 128 #define SHA384_DIGEST_LENGTH 48 #define SHA384_DIGEST_STRING_LENGTH (SHA384_DIGEST_LENGTH * 2 + 1) #define SHA512_BLOCK_LENGTH 128 #define SHA512_DIGEST_LENGTH 64 #define SHA512_DIGEST_STRING_LENGTH (SHA512_DIGEST_LENGTH * 2 + 1) /*** SHA-224/256/384/512 Context Structure *******************************/ typedef struct _SHA2_CTX { union { u_int32_t st32[8]; u_int64_t st64[8]; } state; u_int64_t bitcount[2]; u_int8_t buffer[SHA512_BLOCK_LENGTH]; } SHA2_CTX; __BEGIN_DECLS void SHA224Init(SHA2_CTX *); void SHA224Transform(u_int32_t state[8], const u_int8_t [SHA224_BLOCK_LENGTH]); void SHA224Update(SHA2_CTX *, const u_int8_t *, size_t) __attribute__((__bounded__(__string__,2,3))); void SHA224Pad(SHA2_CTX *); void SHA224Final(u_int8_t [SHA224_DIGEST_LENGTH], SHA2_CTX *) __attribute__((__bounded__(__minbytes__,1,SHA224_DIGEST_LENGTH))); char *SHA224End(SHA2_CTX *, char *) __attribute__((__bounded__(__minbytes__,2,SHA224_DIGEST_STRING_LENGTH))); char *SHA224File(const char *, char *) __attribute__((__bounded__(__minbytes__,2,SHA224_DIGEST_STRING_LENGTH))); char *SHA224FileChunk(const char *, char *, off_t, off_t) __attribute__((__bounded__(__minbytes__,2,SHA224_DIGEST_STRING_LENGTH))); char *SHA224Data(const u_int8_t *, size_t, char *) __attribute__((__bounded__(__string__,1,2))) __attribute__((__bounded__(__minbytes__,3,SHA224_DIGEST_STRING_LENGTH))); void SHA256Init(SHA2_CTX *); void SHA256Transform(u_int32_t state[8], const u_int8_t [SHA256_BLOCK_LENGTH]); void SHA256Update(SHA2_CTX *, const u_int8_t *, size_t) __attribute__((__bounded__(__string__,2,3))); void SHA256Pad(SHA2_CTX *); void SHA256Final(u_int8_t [SHA256_DIGEST_LENGTH], SHA2_CTX *) __attribute__((__bounded__(__minbytes__,1,SHA256_DIGEST_LENGTH))); char *SHA256End(SHA2_CTX *, char *) __attribute__((__bounded__(__minbytes__,2,SHA256_DIGEST_STRING_LENGTH))); char *SHA256File(const char *, char *) __attribute__((__bounded__(__minbytes__,2,SHA256_DIGEST_STRING_LENGTH))); char *SHA256FileChunk(const char *, char *, off_t, off_t) __attribute__((__bounded__(__minbytes__,2,SHA256_DIGEST_STRING_LENGTH))); char *SHA256Data(const u_int8_t *, size_t, char *) __attribute__((__bounded__(__string__,1,2))) __attribute__((__bounded__(__minbytes__,3,SHA256_DIGEST_STRING_LENGTH))); void SHA384Init(SHA2_CTX *); void SHA384Transform(u_int64_t state[8], const u_int8_t [SHA384_BLOCK_LENGTH]); void SHA384Update(SHA2_CTX *, const u_int8_t *, size_t) __attribute__((__bounded__(__string__,2,3))); void SHA384Pad(SHA2_CTX *); void SHA384Final(u_int8_t [SHA384_DIGEST_LENGTH], SHA2_CTX *) __attribute__((__bounded__(__minbytes__,1,SHA384_DIGEST_LENGTH))); char *SHA384End(SHA2_CTX *, char *) __attribute__((__bounded__(__minbytes__,2,SHA384_DIGEST_STRING_LENGTH))); char *SHA384File(const char *, char *) __attribute__((__bounded__(__minbytes__,2,SHA384_DIGEST_STRING_LENGTH))); char *SHA384FileChunk(const char *, char *, off_t, off_t) __attribute__((__bounded__(__minbytes__,2,SHA384_DIGEST_STRING_LENGTH))); char *SHA384Data(const u_int8_t *, size_t, char *) __attribute__((__bounded__(__string__,1,2))) __attribute__((__bounded__(__minbytes__,3,SHA384_DIGEST_STRING_LENGTH))); void SHA512Init(SHA2_CTX *); void SHA512Transform(u_int64_t state[8], const u_int8_t [SHA512_BLOCK_LENGTH]); void SHA512Update(SHA2_CTX *, const u_int8_t *, size_t) __attribute__((__bounded__(__string__,2,3))); void SHA512Pad(SHA2_CTX *); void SHA512Final(u_int8_t [SHA512_DIGEST_LENGTH], SHA2_CTX *) __attribute__((__bounded__(__minbytes__,1,SHA512_DIGEST_LENGTH))); char *SHA512End(SHA2_CTX *, char *) __attribute__((__bounded__(__minbytes__,2,SHA512_DIGEST_STRING_LENGTH))); char *SHA512File(const char *, char *) __attribute__((__bounded__(__minbytes__,2,SHA512_DIGEST_STRING_LENGTH))); char *SHA512FileChunk(const char *, char *, off_t, off_t) __attribute__((__bounded__(__minbytes__,2,SHA512_DIGEST_STRING_LENGTH))); char *SHA512Data(const u_int8_t *, size_t, char *) __attribute__((__bounded__(__string__,1,2))) __attribute__((__bounded__(__minbytes__,3,SHA512_DIGEST_STRING_LENGTH))); __END_DECLS #endif /* _SHA2_H */ signify-13/signify.1000066400000000000000000000106511262737245500145210ustar00rootroot00000000000000.\" $OpenBSD: signify.1,v 1.31 2015/07/14 23:30:02 florian Exp $ .\" .\"Copyright (c) 2013 Marc Espie .\"Copyright (c) 2013 Ted Unangst .\" .\"Permission to use, copy, modify, and distribute this software for any .\"purpose with or without fee is hereby granted, provided that the above .\"copyright notice and this permission notice appear in all copies. .\" .\"THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES .\"WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF .\"MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR .\"ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES .\"WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN .\"ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF .\"OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE. .Dd $Mdocdate: July 14 2015 $ .Dt SIGNIFY 1 .Os .Sh NAME .Nm signify .Nd cryptographically sign and verify files .Sh SYNOPSIS .Nm signify .Fl C .Op Fl q .Fl p Ar pubkey .Fl x Ar sigfile .Op Ar .Nm signify .Fl G .Op Fl n .Op Fl c Ar comment .Fl p Ar pubkey .Fl s Ar seckey .Nm signify .Fl S .Op Fl e .Op Fl x Ar sigfile .Fl s Ar seckey .Fl m Ar message .Nm signify .Fl V .Op Fl eq .Op Fl x Ar sigfile .Fl p Ar pubkey .Fl m Ar message .Sh DESCRIPTION The .Nm utility creates and verifies cryptographic signatures. A signature verifies the integrity of a .Ar message . The mode of operation is selected with the following options: .Bl -tag -width Dsssigfile .It Fl C Verify a signed checksum list, and then verify the checksum for each file. If no files are specified, all of them are checked. .Ar sigfile should be the signed output of .Xr sha256 1 . .It Fl G Generate a new key pair. .It Fl S Sign the specified message file and create a signature. .It Fl V Verify the message and signature match. .El .Pp The other options are as follows: .Bl -tag -width Dsssignature .It Fl c Ar comment Specify the comment to be added during key generation. .It Fl e When signing, embed the message after the signature. When verifying, extract the message from the signature. (This requires that the signature was created using .Fl e and creates a new message file as output.) .It Fl m Ar message When signing, the file containing the message to sign. When verifying, the file containing the message to verify. When verifying with .Fl e , the file to create. .It Fl n Do not ask for a passphrase during key generation. Otherwise, .Nm will prompt the user for a passphrase to protect the secret key. .It Fl p Ar pubkey Public key produced by .Fl G , and used by .Fl V to check a signature. .It Fl q Quiet mode. Suppress informational output. .It Fl s Ar seckey Secret (private) key produced by .Fl G , and used by .Fl S to sign a message. .It Fl x Ar sigfile The signature file to create or verify. The default is .Ar message Ns .sig . .El .Pp The key and signature files created by .Nm have the same format. The first line of the file is a free form text comment that may be edited, so long as it does not exceed a single line. .\" Signature comments will be generated based on the name of the secret .\" key used for signing. .\" This comment can then be used as a hint for the name of the public key .\" when verifying. The second line of the file is the actual key or signature base64 encoded. .Sh EXIT STATUS .Ex -std signify It may fail because of one of the following reasons: .Pp .Bl -bullet -compact .It Some necessary files do not exist. .It Entered passphrase is incorrect. .It The message file was corrupted and its signature does not match. .It The message file is too large. .El .Sh EXAMPLES Create a new key pair: .Dl $ signify -G -p newkey.pub -s newkey.sec .Pp Sign a file, specifying a signature name: .Dl $ signify -S -s key.sec -m message.txt -x msg.sig .Pp Verify a signature, using the default signature name: .Dl $ signify -V -p key.pub -m generalsorders.txt .Pp Verify a release directory containing .Pa SHA256.sig and a full set of release files: .Bd -literal -offset indent -compact $ signify \-C \-p /etc/signify/openbsd-56-base.pub \-x SHA256.sig Note that for non-OpenBSD operating systems, you will have to get the signing key yourself. .Ed .Pp Verify a bsd.rd before an upgrade: .Bd -literal -offset indent -compact $ signify \-C \-p /etc/signify/openbsd-56-base.pub \-x SHA256.sig bsd.rd .Ed .Sh HISTORY The .Nm command first appeared in .Ox 5.5 . .Sh AUTHORS .An Ted Unangst Aq Mt tedu@openbsd.org signify-13/signify.c000066400000000000000000000453371262737245500146140ustar00rootroot00000000000000/* $OpenBSD: signify.c,v 1.104 2015/11/02 22:01:10 bluhm Exp $ */ /* * Copyright (c) 2013 Ted Unangst * * Permission to use, copy, modify, and distribute this software for any * purpose with or without fee is hereby granted, provided that the above * copyright notice and this permission notice appear in all copies. * * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE. */ #include #include #include #include #include #include #include #include #include #include #include "ohash.h" #include #include #include #include #include #include "sha2.h" #include "crypto_api.h" #define SIGBYTES crypto_sign_ed25519_BYTES #define SECRETBYTES crypto_sign_ed25519_SECRETKEYBYTES #define PUBLICBYTES crypto_sign_ed25519_PUBLICKEYBYTES #define PKALG "Ed" #define KDFALG "BK" #define KEYNUMLEN 8 #define COMMENTHDR "untrusted comment: " #define COMMENTHDRLEN 19 #define COMMENTMAXLEN 1024 #define VERIFYWITH "verify with " struct enckey { uint8_t pkalg[2]; uint8_t kdfalg[2]; uint32_t kdfrounds; uint8_t salt[16]; uint8_t checksum[8]; uint8_t keynum[KEYNUMLEN]; uint8_t seckey[SECRETBYTES]; }; struct pubkey { uint8_t pkalg[2]; uint8_t keynum[KEYNUMLEN]; uint8_t pubkey[PUBLICBYTES]; }; struct sig { uint8_t pkalg[2]; uint8_t keynum[KEYNUMLEN]; uint8_t sig[SIGBYTES]; }; extern char *__progname; static void __dead usage(const char *error) { if (error) fprintf(stderr, "%s\n", error); fprintf(stderr, "usage:" #ifndef VERIFYONLY "\t%1$s -C [-q] -p pubkey -x sigfile [file ...]\n" "\t%1$s -G [-n] [-c comment] -p pubkey -s seckey\n" "\t%1$s -S [-e] [-x sigfile] -s seckey -m message\n" #endif "\t%1$s -V [-eq] [-x sigfile] -p pubkey -m message\n", __progname); exit(1); } static int xopen(const char *fname, int oflags, mode_t mode) { struct stat sb; int fd; if (strcmp(fname, "-") == 0) { if ((oflags & O_WRONLY)) fd = dup(STDOUT_FILENO); else fd = dup(STDIN_FILENO); if (fd == -1) err(1, "dup failed"); } else { fd = open(fname, oflags, mode); if (fd == -1) err(1, "can't open %s for %s", fname, (oflags & O_WRONLY) ? "writing" : "reading"); } if (fstat(fd, &sb) == -1 || S_ISDIR(sb.st_mode)) errx(1, "not a valid file: %s", fname); return fd; } static void * xmalloc(size_t len) { void *p; if (!(p = malloc(len))) err(1, "malloc %zu", len); return p; } static size_t parseb64file(const char *filename, char *b64, void *buf, size_t buflen, char *comment) { char *commentend, *b64end; commentend = strchr(b64, '\n'); if (!commentend || commentend - b64 <= COMMENTHDRLEN || memcmp(b64, COMMENTHDR, COMMENTHDRLEN) != 0) errx(1, "invalid comment in %s; must start with '%s'", filename, COMMENTHDR); *commentend = '\0'; if (comment) { if (strlcpy(comment, b64 + COMMENTHDRLEN, COMMENTMAXLEN) >= COMMENTMAXLEN) errx(1, "comment too long"); } if (!(b64end = strchr(commentend + 1, '\n'))) errx(1, "missing new line after base64 in %s", filename); *b64end = '\0'; if (b64_pton(commentend + 1, buf, buflen) != buflen) errx(1, "invalid base64 encoding in %s", filename); if (memcmp(buf, PKALG, 2) != 0) errx(1, "unsupported file %s", filename); return b64end - b64 + 1; } static void readb64file(const char *filename, void *buf, size_t buflen, char *comment) { char b64[2048]; int rv, fd; fd = xopen(filename, O_RDONLY | O_NOFOLLOW, 0); if ((rv = read(fd, b64, sizeof(b64) - 1)) == -1) err(1, "read from %s", filename); b64[rv] = '\0'; parseb64file(filename, b64, buf, buflen, comment); explicit_bzero(b64, sizeof(b64)); close(fd); } static uint8_t * readmsg(const char *filename, unsigned long long *msglenp) { unsigned long long msglen = 0; uint8_t *msg = NULL; struct stat sb; ssize_t x, space; int fd; const unsigned long long maxmsgsize = 1UL << 30; fd = xopen(filename, O_RDONLY | O_NOFOLLOW, 0); if (fstat(fd, &sb) == 0 && S_ISREG(sb.st_mode)) { if (sb.st_size > maxmsgsize) errx(1, "msg too large in %s", filename); space = sb.st_size + 1; } else { space = 64 * 1024 - 1; } msg = xmalloc(space + 1); while (1) { if (space == 0) { if (msglen * 2 > maxmsgsize) errx(1, "msg too large in %s", filename); space = msglen; if (!(msg = realloc(msg, msglen + space + 1))) errx(1, "realloc"); } if ((x = read(fd, msg + msglen, space)) == -1) err(1, "read from %s", filename); if (x == 0) break; space -= x; msglen += x; } msg[msglen] = '\0'; close(fd); *msglenp = msglen; return msg; } static void writeall(int fd, const void *buf, size_t buflen, const char *filename) { ssize_t x; while (buflen != 0) { if ((x = write(fd, buf, buflen)) == -1) err(1, "write to %s", filename); buflen -= x; buf = (char *)buf + x; } } #ifndef VERIFYONLY static void writeb64file(const char *filename, const char *comment, const void *buf, size_t buflen, const void *msg, size_t msglen, int oflags, mode_t mode) { char header[1024]; char b64[1024]; int fd, rv, nr; fd = xopen(filename, O_CREAT|oflags|O_NOFOLLOW|O_WRONLY, mode); if ((nr = snprintf(header, sizeof(header), "%s%s\n", COMMENTHDR, comment)) == -1 || nr >= sizeof(header)) errx(1, "comment too long"); writeall(fd, header, strlen(header), filename); if ((rv = b64_ntop(buf, buflen, b64, sizeof(b64))) == -1) errx(1, "base64 encode failed"); b64[rv++] = '\n'; writeall(fd, b64, rv, filename); explicit_bzero(b64, sizeof(b64)); if (msg) writeall(fd, msg, msglen, filename); close(fd); } static void kdf(uint8_t *salt, size_t saltlen, int rounds, int allowstdin, int confirm, uint8_t *key, size_t keylen) { char pass[1024]; int rppflags = RPP_ECHO_OFF; if (rounds == 0) { memset(key, 0, keylen); return; } if (allowstdin && !isatty(STDIN_FILENO)) rppflags |= RPP_STDIN; if (!readpassphrase("passphrase: ", pass, sizeof(pass), rppflags)) errx(1, "unable to read passphrase"); if (strlen(pass) == 0) errx(1, "please provide a password"); if (confirm && !(rppflags & RPP_STDIN)) { char pass2[1024]; if (!readpassphrase("confirm passphrase: ", pass2, sizeof(pass2), rppflags)) errx(1, "unable to read passphrase"); if (strcmp(pass, pass2) != 0) errx(1, "passwords don't match"); explicit_bzero(pass2, sizeof(pass2)); } if (bcrypt_pbkdf(pass, strlen(pass), salt, saltlen, key, keylen, rounds) == -1) errx(1, "bcrypt pbkdf"); explicit_bzero(pass, sizeof(pass)); } static void signmsg(uint8_t *seckey, uint8_t *msg, unsigned long long msglen, uint8_t *sig) { unsigned long long siglen; uint8_t *sigbuf; sigbuf = xmalloc(msglen + SIGBYTES); crypto_sign_ed25519(sigbuf, &siglen, msg, msglen, seckey); memcpy(sig, sigbuf, SIGBYTES); free(sigbuf); } static void generate(const char *pubkeyfile, const char *seckeyfile, int rounds, const char *comment) { uint8_t digest[SHA512_DIGEST_LENGTH]; struct pubkey pubkey; struct enckey enckey; uint8_t xorkey[sizeof(enckey.seckey)]; uint8_t keynum[KEYNUMLEN]; char commentbuf[COMMENTMAXLEN]; SHA2_CTX ctx; int i, nr; crypto_sign_ed25519_keypair(pubkey.pubkey, enckey.seckey); arc4random_buf(keynum, sizeof(keynum)); SHA512Init(&ctx); SHA512Update(&ctx, enckey.seckey, sizeof(enckey.seckey)); SHA512Final(digest, &ctx); memcpy(enckey.pkalg, PKALG, 2); memcpy(enckey.kdfalg, KDFALG, 2); enckey.kdfrounds = htonl(rounds); memcpy(enckey.keynum, keynum, KEYNUMLEN); arc4random_buf(enckey.salt, sizeof(enckey.salt)); kdf(enckey.salt, sizeof(enckey.salt), rounds, 1, 1, xorkey, sizeof(xorkey)); memcpy(enckey.checksum, digest, sizeof(enckey.checksum)); for (i = 0; i < sizeof(enckey.seckey); i++) enckey.seckey[i] ^= xorkey[i]; explicit_bzero(digest, sizeof(digest)); explicit_bzero(xorkey, sizeof(xorkey)); if ((nr = snprintf(commentbuf, sizeof(commentbuf), "%s secret key", comment)) == -1 || nr >= sizeof(commentbuf)) errx(1, "comment too long"); writeb64file(seckeyfile, commentbuf, &enckey, sizeof(enckey), NULL, 0, O_EXCL, 0600); explicit_bzero(&enckey, sizeof(enckey)); memcpy(pubkey.pkalg, PKALG, 2); memcpy(pubkey.keynum, keynum, KEYNUMLEN); if ((nr = snprintf(commentbuf, sizeof(commentbuf), "%s public key", comment)) == -1 || nr >= sizeof(commentbuf)) errx(1, "comment too long"); writeb64file(pubkeyfile, commentbuf, &pubkey, sizeof(pubkey), NULL, 0, O_EXCL, 0666); } static void sign(const char *seckeyfile, const char *msgfile, const char *sigfile, int embedded) { struct sig sig; uint8_t digest[SHA512_DIGEST_LENGTH]; struct enckey enckey; uint8_t xorkey[sizeof(enckey.seckey)]; uint8_t *msg; char comment[COMMENTMAXLEN], sigcomment[COMMENTMAXLEN]; char *secname; unsigned long long msglen; int i, rounds, nr; SHA2_CTX ctx; readb64file(seckeyfile, &enckey, sizeof(enckey), comment); if (memcmp(enckey.kdfalg, KDFALG, 2) != 0) errx(1, "unsupported KDF"); rounds = ntohl(enckey.kdfrounds); kdf(enckey.salt, sizeof(enckey.salt), rounds, strcmp(msgfile, "-") != 0, 0, xorkey, sizeof(xorkey)); for (i = 0; i < sizeof(enckey.seckey); i++) enckey.seckey[i] ^= xorkey[i]; explicit_bzero(xorkey, sizeof(xorkey)); SHA512Init(&ctx); SHA512Update(&ctx, enckey.seckey, sizeof(enckey.seckey)); SHA512Final(digest, &ctx); if (memcmp(enckey.checksum, digest, sizeof(enckey.checksum)) != 0) errx(1, "incorrect passphrase"); explicit_bzero(digest, sizeof(digest)); msg = readmsg(msgfile, &msglen); signmsg(enckey.seckey, msg, msglen, sig.sig); memcpy(sig.keynum, enckey.keynum, KEYNUMLEN); explicit_bzero(&enckey, sizeof(enckey)); memcpy(sig.pkalg, PKALG, 2); secname = strstr(seckeyfile, ".sec"); if (secname && strlen(secname) == 4) { if ((nr = snprintf(sigcomment, sizeof(sigcomment), VERIFYWITH "%.*s.pub", (int)strlen(seckeyfile) - 4, seckeyfile)) == -1 || nr >= sizeof(sigcomment)) errx(1, "comment too long"); } else { if ((nr = snprintf(sigcomment, sizeof(sigcomment), "signature from %s", comment)) == -1 || nr >= sizeof(sigcomment)) errx(1, "comment too long"); } if (embedded) writeb64file(sigfile, sigcomment, &sig, sizeof(sig), msg, msglen, O_TRUNC, 0666); else writeb64file(sigfile, sigcomment, &sig, sizeof(sig), NULL, 0, O_TRUNC, 0666); free(msg); } #endif static void verifymsg(struct pubkey *pubkey, uint8_t *msg, unsigned long long msglen, struct sig *sig, int quiet) { uint8_t *sigbuf, *dummybuf; unsigned long long siglen, dummylen; if (memcmp(pubkey->keynum, sig->keynum, KEYNUMLEN) != 0) errx(1, "verification failed: checked against wrong key"); siglen = SIGBYTES + msglen; sigbuf = xmalloc(siglen); dummybuf = xmalloc(siglen); memcpy(sigbuf, sig->sig, SIGBYTES); memcpy(sigbuf + SIGBYTES, msg, msglen); if (crypto_sign_ed25519_open(dummybuf, &dummylen, sigbuf, siglen, pubkey->pubkey) == -1) errx(1, "signature verification failed"); if (!quiet) printf("Signature Verified\n"); free(sigbuf); free(dummybuf); } static void readpubkey(const char *pubkeyfile, struct pubkey *pubkey, const char *sigcomment) { const char *safepath = "/etc/signify/"; if (!pubkeyfile) { pubkeyfile = strstr(sigcomment, VERIFYWITH); if (pubkeyfile) { pubkeyfile += strlen(VERIFYWITH); if (strncmp(pubkeyfile, safepath, strlen(safepath)) != 0 || strstr(pubkeyfile, "/../") != NULL) errx(1, "untrusted path %s", pubkeyfile); } else usage("must specify pubkey"); } readb64file(pubkeyfile, pubkey, sizeof(*pubkey), NULL); } static void verifysimple(const char *pubkeyfile, const char *msgfile, const char *sigfile, int quiet) { char sigcomment[COMMENTMAXLEN]; struct sig sig; struct pubkey pubkey; unsigned long long msglen; uint8_t *msg; msg = readmsg(msgfile, &msglen); readb64file(sigfile, &sig, sizeof(sig), sigcomment); readpubkey(pubkeyfile, &pubkey, sigcomment); verifymsg(&pubkey, msg, msglen, &sig, quiet); free(msg); } static uint8_t * verifyembedded(const char *pubkeyfile, const char *sigfile, int quiet, unsigned long long *msglenp) { char sigcomment[COMMENTMAXLEN]; struct sig sig; struct pubkey pubkey; unsigned long long msglen, siglen; uint8_t *msg; msg = readmsg(sigfile, &msglen); siglen = parseb64file(sigfile, msg, &sig, sizeof(sig), sigcomment); readpubkey(pubkeyfile, &pubkey, sigcomment); msglen -= siglen; memmove(msg, msg + siglen, msglen); msg[msglen] = 0; verifymsg(&pubkey, msg, msglen, &sig, quiet); *msglenp = msglen; return msg; } static void verify(const char *pubkeyfile, const char *msgfile, const char *sigfile, int embedded, int quiet) { unsigned long long msglen; uint8_t *msg; int fd; if (embedded) { msg = verifyembedded(pubkeyfile, sigfile, quiet, &msglen); fd = xopen(msgfile, O_CREAT|O_TRUNC|O_NOFOLLOW|O_WRONLY, 0666); writeall(fd, msg, msglen, msgfile); free(msg); close(fd); } else { verifysimple(pubkeyfile, msgfile, sigfile, quiet); } } #ifndef VERIFYONLY #define HASHBUFSIZE 224 struct checksum { char file[PATH_MAX]; char hash[HASHBUFSIZE]; char algo[32]; }; static void * ecalloc(size_t s1, size_t s2, void *data) { void *p; if (!(p = calloc(s1, s2))) err(1, "calloc"); return p; } static void efree(void *p, void *data) { free(p); } static void recodehash(char *hash, size_t len) { uint8_t data[HASHBUFSIZE / 2]; int i, rv; if (strlen(hash) == len) return; if ((rv = b64_pton(hash, data, sizeof(data))) == -1) errx(1, "invalid base64 encoding"); for (i = 0; i < rv; i++) snprintf(hash + i * 2, HASHBUFSIZE - i * 2, "%2.2x", data[i]); } static int verifychecksum(struct checksum *c, int quiet) { char buf[HASHBUFSIZE]; if (strcmp(c->algo, "SHA256") == 0) { recodehash(c->hash, SHA256_DIGEST_STRING_LENGTH-1); if (!SHA256File(c->file, buf)) return 0; } else if (strcmp(c->algo, "SHA512") == 0) { recodehash(c->hash, SHA512_DIGEST_STRING_LENGTH-1); if (!SHA512File(c->file, buf)) return 0; } else { errx(1, "can't handle algorithm %s", c->algo); } if (strcmp(c->hash, buf) != 0) { return 0; } if (!quiet) printf("%s: OK\n", c->file); return 1; } static void verifychecksums(char *msg, int argc, char **argv, int quiet) { struct ohash_info info = { 0, NULL, ecalloc, efree, NULL }; struct ohash myh; struct checksum c; char *e, *line, *endline; int hasfailed = 0; int i, rv; unsigned int slot; ohash_init(&myh, 6, &info); if (argc) { for (i = 0; i < argc; i++) { slot = ohash_qlookup(&myh, argv[i]); e = ohash_find(&myh, slot); if (e == NULL) ohash_insert(&myh, slot, argv[i]); } } line = msg; while (line && *line) { if ((endline = strchr(line, '\n'))) *endline++ = '\0'; #if PATH_MAX < 1024 || HASHBUFSIZE < 224 #error sizes are wrong #endif rv = sscanf(line, "%31s (%1023[^)]) = %223s", c.algo, c.file, c.hash); if (rv != 3) errx(1, "unable to parse checksum line %s", line); line = endline; if (argc) { slot = ohash_qlookup(&myh, c.file); e = ohash_find(&myh, slot); if (e != NULL) { if (verifychecksum(&c, quiet) != 0) ohash_remove(&myh, slot); } } else { if (verifychecksum(&c, quiet) == 0) { slot = ohash_qlookup(&myh, c.file); e = ohash_find(&myh, slot); if (e == NULL) { if (!(e = strdup(c.file))) err(1, "strdup"); ohash_insert(&myh, slot, e); } } } } for (e = ohash_first(&myh, &slot); e != NULL; e = ohash_next(&myh, &slot)) { fprintf(stderr, "%s: FAIL\n", e); hasfailed = 1; if (argc == 0) free(e); } ohash_delete(&myh); if (hasfailed) exit(1); } static void check(const char *pubkeyfile, const char *sigfile, int quiet, int argc, char **argv) { unsigned long long msglen; uint8_t *msg; msg = verifyembedded(pubkeyfile, sigfile, quiet, &msglen); verifychecksums((char *)msg, argc, argv, quiet); free(msg); } #endif int main(int argc, char **argv) { const char *pubkeyfile = NULL, *seckeyfile = NULL, *msgfile = NULL, *sigfile = NULL; char sigfilebuf[PATH_MAX]; const char *comment = "signify"; int ch, rounds; int embedded = 0; int quiet = 0; enum { NONE, CHECK, GENERATE, SIGN, VERIFY } verb = NONE; if (pledge("stdio rpath wpath cpath tty", NULL) == -1) err(1, "pledge"); rounds = 42; while ((ch = getopt(argc, argv, "CGSVc:em:np:qs:x:")) != -1) { switch (ch) { #ifndef VERIFYONLY case 'C': if (verb) usage(NULL); verb = CHECK; break; case 'G': if (verb) usage(NULL); verb = GENERATE; break; case 'S': if (verb) usage(NULL); verb = SIGN; break; #endif case 'V': if (verb) usage(NULL); verb = VERIFY; break; case 'c': comment = optarg; break; case 'e': embedded = 1; break; case 'm': msgfile = optarg; break; case 'n': rounds = 0; break; case 'p': pubkeyfile = optarg; break; case 'q': quiet = 1; break; case 's': seckeyfile = optarg; break; case 'x': sigfile = optarg; break; default: usage(NULL); break; } } argc -= optind; argv += optind; if (setvbuf(stdout, NULL, _IOLBF, 0) != 0) err(1, "setvbuf"); switch (verb) { case GENERATE: case SIGN: /* keep it all */ break; case CHECK: if (pledge("stdio rpath", NULL) == -1) err(1, "pledge"); break; case VERIFY: if (embedded && (!msgfile || strcmp(msgfile, "-") != 0)) { if (pledge("stdio rpath wpath cpath", NULL) == -1) err(1, "pledge"); } else { if (pledge("stdio rpath", NULL) == -1) err(1, "pledge"); } break; default: if (pledge("stdio", NULL) == -1) err(1, "pledge"); break; } #ifndef VERIFYONLY if (verb == CHECK) { if (!sigfile) usage("must specify sigfile"); check(pubkeyfile, sigfile, quiet, argc, argv); return 0; } #endif if (argc != 0) usage(NULL); if (!sigfile && msgfile) { int nr; if (strcmp(msgfile, "-") == 0) usage("must specify sigfile with - message"); if ((nr = snprintf(sigfilebuf, sizeof(sigfilebuf), "%s.sig", msgfile)) == -1 || nr >= sizeof(sigfilebuf)) errx(1, "path too long"); sigfile = sigfilebuf; } switch (verb) { #ifndef VERIFYONLY case GENERATE: if (!pubkeyfile || !seckeyfile) usage("must specify pubkey and seckey"); generate(pubkeyfile, seckeyfile, rounds, comment); break; case SIGN: if (!msgfile || !seckeyfile) usage("must specify message and seckey"); sign(seckeyfile, msgfile, sigfile, embedded); break; #endif case VERIFY: if (!msgfile) usage("must specify message"); verify(pubkeyfile, msgfile, sigfile, embedded, quiet); break; default: usage(NULL); break; } return 0; } signify-13/smult_curve25519_ref.c000066400000000000000000000153251262737245500167500ustar00rootroot00000000000000/* $OpenBSD: smult_curve25519_ref.c,v 1.1 2014/07/22 00:41:19 deraadt Exp $ */ /* version 20081011 Matthew Dempsky Public domain. Derived from public domain code by D. J. Bernstein. */ int crypto_scalarmult_curve25519(unsigned char *, const unsigned char *, const unsigned char *); static void add(unsigned int out[32],const unsigned int a[32],const unsigned int b[32]) { unsigned int j; unsigned int u; u = 0; for (j = 0;j < 31;++j) { u += a[j] + b[j]; out[j] = u & 255; u >>= 8; } u += a[31] + b[31]; out[31] = u; } static void sub(unsigned int out[32],const unsigned int a[32],const unsigned int b[32]) { unsigned int j; unsigned int u; u = 218; for (j = 0;j < 31;++j) { u += a[j] + 65280 - b[j]; out[j] = u & 255; u >>= 8; } u += a[31] - b[31]; out[31] = u; } static void squeeze(unsigned int a[32]) { unsigned int j; unsigned int u; u = 0; for (j = 0;j < 31;++j) { u += a[j]; a[j] = u & 255; u >>= 8; } u += a[31]; a[31] = u & 127; u = 19 * (u >> 7); for (j = 0;j < 31;++j) { u += a[j]; a[j] = u & 255; u >>= 8; } u += a[31]; a[31] = u; } static const unsigned int minusp[32] = { 19, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 128 } ; static void freeze(unsigned int a[32]) { unsigned int aorig[32]; unsigned int j; unsigned int negative; for (j = 0;j < 32;++j) aorig[j] = a[j]; add(a,a,minusp); negative = -((a[31] >> 7) & 1); for (j = 0;j < 32;++j) a[j] ^= negative & (aorig[j] ^ a[j]); } static void mult(unsigned int out[32],const unsigned int a[32],const unsigned int b[32]) { unsigned int i; unsigned int j; unsigned int u; for (i = 0;i < 32;++i) { u = 0; for (j = 0;j <= i;++j) u += a[j] * b[i - j]; for (j = i + 1;j < 32;++j) u += 38 * a[j] * b[i + 32 - j]; out[i] = u; } squeeze(out); } static void mult121665(unsigned int out[32],const unsigned int a[32]) { unsigned int j; unsigned int u; u = 0; for (j = 0;j < 31;++j) { u += 121665 * a[j]; out[j] = u & 255; u >>= 8; } u += 121665 * a[31]; out[31] = u & 127; u = 19 * (u >> 7); for (j = 0;j < 31;++j) { u += out[j]; out[j] = u & 255; u >>= 8; } u += out[j]; out[j] = u; } static void square(unsigned int out[32],const unsigned int a[32]) { unsigned int i; unsigned int j; unsigned int u; for (i = 0;i < 32;++i) { u = 0; for (j = 0;j < i - j;++j) u += a[j] * a[i - j]; for (j = i + 1;j < i + 32 - j;++j) u += 38 * a[j] * a[i + 32 - j]; u *= 2; if ((i & 1) == 0) { u += a[i / 2] * a[i / 2]; u += 38 * a[i / 2 + 16] * a[i / 2 + 16]; } out[i] = u; } squeeze(out); } static void select(unsigned int p[64],unsigned int q[64],const unsigned int r[64],const unsigned int s[64],unsigned int b) { unsigned int j; unsigned int t; unsigned int bminus1; bminus1 = b - 1; for (j = 0;j < 64;++j) { t = bminus1 & (r[j] ^ s[j]); p[j] = s[j] ^ t; q[j] = r[j] ^ t; } } static void mainloop(unsigned int work[64],const unsigned char e[32]) { unsigned int xzm1[64]; unsigned int xzm[64]; unsigned int xzmb[64]; unsigned int xzm1b[64]; unsigned int xznb[64]; unsigned int xzn1b[64]; unsigned int a0[64]; unsigned int a1[64]; unsigned int b0[64]; unsigned int b1[64]; unsigned int c1[64]; unsigned int r[32]; unsigned int s[32]; unsigned int t[32]; unsigned int u[32]; unsigned int j; unsigned int b; int pos; for (j = 0;j < 32;++j) xzm1[j] = work[j]; xzm1[32] = 1; for (j = 33;j < 64;++j) xzm1[j] = 0; xzm[0] = 1; for (j = 1;j < 64;++j) xzm[j] = 0; for (pos = 254;pos >= 0;--pos) { b = e[pos / 8] >> (pos & 7); b &= 1; select(xzmb,xzm1b,xzm,xzm1,b); add(a0,xzmb,xzmb + 32); sub(a0 + 32,xzmb,xzmb + 32); add(a1,xzm1b,xzm1b + 32); sub(a1 + 32,xzm1b,xzm1b + 32); square(b0,a0); square(b0 + 32,a0 + 32); mult(b1,a1,a0 + 32); mult(b1 + 32,a1 + 32,a0); add(c1,b1,b1 + 32); sub(c1 + 32,b1,b1 + 32); square(r,c1 + 32); sub(s,b0,b0 + 32); mult121665(t,s); add(u,t,b0); mult(xznb,b0,b0 + 32); mult(xznb + 32,s,u); square(xzn1b,c1); mult(xzn1b + 32,r,work); select(xzm,xzm1,xznb,xzn1b,b); } for (j = 0;j < 64;++j) work[j] = xzm[j]; } static void recip(unsigned int out[32],const unsigned int z[32]) { unsigned int z2[32]; unsigned int z9[32]; unsigned int z11[32]; unsigned int z2_5_0[32]; unsigned int z2_10_0[32]; unsigned int z2_20_0[32]; unsigned int z2_50_0[32]; unsigned int z2_100_0[32]; unsigned int t0[32]; unsigned int t1[32]; int i; /* 2 */ square(z2,z); /* 4 */ square(t1,z2); /* 8 */ square(t0,t1); /* 9 */ mult(z9,t0,z); /* 11 */ mult(z11,z9,z2); /* 22 */ square(t0,z11); /* 2^5 - 2^0 = 31 */ mult(z2_5_0,t0,z9); /* 2^6 - 2^1 */ square(t0,z2_5_0); /* 2^7 - 2^2 */ square(t1,t0); /* 2^8 - 2^3 */ square(t0,t1); /* 2^9 - 2^4 */ square(t1,t0); /* 2^10 - 2^5 */ square(t0,t1); /* 2^10 - 2^0 */ mult(z2_10_0,t0,z2_5_0); /* 2^11 - 2^1 */ square(t0,z2_10_0); /* 2^12 - 2^2 */ square(t1,t0); /* 2^20 - 2^10 */ for (i = 2;i < 10;i += 2) { square(t0,t1); square(t1,t0); } /* 2^20 - 2^0 */ mult(z2_20_0,t1,z2_10_0); /* 2^21 - 2^1 */ square(t0,z2_20_0); /* 2^22 - 2^2 */ square(t1,t0); /* 2^40 - 2^20 */ for (i = 2;i < 20;i += 2) { square(t0,t1); square(t1,t0); } /* 2^40 - 2^0 */ mult(t0,t1,z2_20_0); /* 2^41 - 2^1 */ square(t1,t0); /* 2^42 - 2^2 */ square(t0,t1); /* 2^50 - 2^10 */ for (i = 2;i < 10;i += 2) { square(t1,t0); square(t0,t1); } /* 2^50 - 2^0 */ mult(z2_50_0,t0,z2_10_0); /* 2^51 - 2^1 */ square(t0,z2_50_0); /* 2^52 - 2^2 */ square(t1,t0); /* 2^100 - 2^50 */ for (i = 2;i < 50;i += 2) { square(t0,t1); square(t1,t0); } /* 2^100 - 2^0 */ mult(z2_100_0,t1,z2_50_0); /* 2^101 - 2^1 */ square(t1,z2_100_0); /* 2^102 - 2^2 */ square(t0,t1); /* 2^200 - 2^100 */ for (i = 2;i < 100;i += 2) { square(t1,t0); square(t0,t1); } /* 2^200 - 2^0 */ mult(t1,t0,z2_100_0); /* 2^201 - 2^1 */ square(t0,t1); /* 2^202 - 2^2 */ square(t1,t0); /* 2^250 - 2^50 */ for (i = 2;i < 50;i += 2) { square(t0,t1); square(t1,t0); } /* 2^250 - 2^0 */ mult(t0,t1,z2_50_0); /* 2^251 - 2^1 */ square(t1,t0); /* 2^252 - 2^2 */ square(t0,t1); /* 2^253 - 2^3 */ square(t1,t0); /* 2^254 - 2^4 */ square(t0,t1); /* 2^255 - 2^5 */ square(t1,t0); /* 2^255 - 21 */ mult(out,t1,z11); } int crypto_scalarmult_curve25519(unsigned char *q, const unsigned char *n, const unsigned char *p) { unsigned int work[96]; unsigned char e[32]; unsigned int i; for (i = 0;i < 32;++i) e[i] = n[i]; e[0] &= 248; e[31] &= 127; e[31] |= 64; for (i = 0;i < 32;++i) work[i] = p[i]; mainloop(work,e); recip(work + 32,work + 32); mult(work + 64,work,work + 32); freeze(work + 64); for (i = 0;i < 32;++i) q[i] = work[64 + i]; return 0; } signify-13/timingsafe_bcmp.c000066400000000000000000000021211262737245500162530ustar00rootroot00000000000000/* $OpenBSD: timingsafe_bcmp.c,v 1.3 2015/08/31 02:53:57 guenther Exp $ */ /* * Copyright (c) 2010 Damien Miller. All rights reserved. * * Permission to use, copy, modify, and distribute this software for any * purpose with or without fee is hereby granted, provided that the above * copyright notice and this permission notice appear in all copies. * * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE. */ #include int timingsafe_bcmp(const void *b1, const void *b2, size_t n) { const unsigned char *p1 = b1, *p2 = b2; int ret = 0; for (; n > 0; n--) ret |= *p1++ ^ *p2++; return (ret != 0); } DEF_WEAK(timingsafe_bcmp); signify-13/update-cvs-files000077500000000000000000000007241262737245500160700ustar00rootroot00000000000000#! /bin/sh # # update-cvs-files # Copyright (C) 2014 Adrian Perez # # Distributed under terms of the MIT license. # set -e : ${CVSWEB_URL:='http://openbsd.cs.toronto.edu/cgi-bin/cvsweb'} CVSWEB_URL="${CVSWEB_URL}/~checkout~" while read -r cvs_path ; do filename=${cvs_path##*/} if [[ -z ${filename} ]] ; then continue fi echo "* ${filename} ($cvs_path)" curl -\# -o "${filename}" "${CVSWEB_URL}/${cvs_path}" done