mirror of https://github.com/lukechilds/node.git
Fedor Indutny
10 years ago
committed by
Timothy J Fontaine
97 changed files with 2421 additions and 717 deletions
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/* crypto/constant_time_locl.h */ |
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/*
|
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* Utilities for constant-time cryptography. |
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* |
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* Author: Emilia Kasper (emilia@openssl.org) |
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* Based on previous work by Bodo Moeller, Emilia Kasper, Adam Langley |
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* (Google). |
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* ==================================================================== |
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* Copyright (c) 2014 The OpenSSL Project. All rights reserved. |
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* |
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* Redistribution and use in source and binary forms, with or without |
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* modification, are permitted provided that the following conditions |
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* are met: |
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* 1. Redistributions of source code must retain the copyright |
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* notice, this list of conditions and the following disclaimer. |
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* 2. Redistributions in binary form must reproduce the above copyright |
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* notice, this list of conditions and the following disclaimer in the |
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* documentation and/or other materials provided with the distribution. |
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* 3. All advertising materials mentioning features or use of this software |
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* must display the following acknowledgement: |
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* "This product includes cryptographic software written by |
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* Eric Young (eay@cryptsoft.com)" |
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* The word 'cryptographic' can be left out if the rouines from the library |
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* being used are not cryptographic related :-). |
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* 4. If you include any Windows specific code (or a derivative thereof) from |
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* the apps directory (application code) you must include an acknowledgement: |
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* "This product includes software written by Tim Hudson (tjh@cryptsoft.com)" |
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* |
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* THIS SOFTWARE IS PROVIDED BY ERIC YOUNG ``AS IS'' AND |
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* ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE |
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* IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE |
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* ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE |
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* FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL |
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* DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS |
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* OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) |
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* HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT |
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* LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY |
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* OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF |
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* SUCH DAMAGE. |
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* |
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* The licence and distribution terms for any publically available version or |
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* derivative of this code cannot be changed. i.e. this code cannot simply be |
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* copied and put under another distribution licence |
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* [including the GNU Public Licence.] |
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*/ |
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|
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#ifndef HEADER_CONSTANT_TIME_LOCL_H |
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#define HEADER_CONSTANT_TIME_LOCL_H |
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|
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#include "e_os.h" /* For 'inline' */ |
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|
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#ifdef __cplusplus |
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extern "C" { |
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#endif |
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|
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/*
|
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* The boolean methods return a bitmask of all ones (0xff...f) for true |
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* and 0 for false. This is useful for choosing a value based on the result |
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* of a conditional in constant time. For example, |
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* |
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* if (a < b) { |
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* c = a; |
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* } else { |
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* c = b; |
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* } |
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* |
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* can be written as |
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* |
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* unsigned int lt = constant_time_lt(a, b); |
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* c = constant_time_select(lt, a, b); |
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*/ |
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|
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/*
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* Returns the given value with the MSB copied to all the other |
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* bits. Uses the fact that arithmetic shift shifts-in the sign bit. |
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* However, this is not ensured by the C standard so you may need to |
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* replace this with something else on odd CPUs. |
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*/ |
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static inline unsigned int constant_time_msb(unsigned int a); |
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|
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/*
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* Returns 0xff..f if a < b and 0 otherwise. |
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*/ |
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static inline unsigned int constant_time_lt(unsigned int a, unsigned int b); |
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/* Convenience method for getting an 8-bit mask. */ |
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static inline unsigned char constant_time_lt_8(unsigned int a, unsigned int b); |
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|
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/*
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* Returns 0xff..f if a >= b and 0 otherwise. |
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*/ |
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static inline unsigned int constant_time_ge(unsigned int a, unsigned int b); |
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/* Convenience method for getting an 8-bit mask. */ |
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static inline unsigned char constant_time_ge_8(unsigned int a, unsigned int b); |
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|
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/*
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* Returns 0xff..f if a == 0 and 0 otherwise. |
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*/ |
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static inline unsigned int constant_time_is_zero(unsigned int a); |
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/* Convenience method for getting an 8-bit mask. */ |
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static inline unsigned char constant_time_is_zero_8(unsigned int a); |
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|
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|
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/*
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* Returns 0xff..f if a == b and 0 otherwise. |
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*/ |
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static inline unsigned int constant_time_eq(unsigned int a, unsigned int b); |
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/* Convenience method for getting an 8-bit mask. */ |
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static inline unsigned char constant_time_eq_8(unsigned int a, unsigned int b); |
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/* Signed integers. */ |
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static inline unsigned int constant_time_eq_int(int a, int b); |
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/* Convenience method for getting an 8-bit mask. */ |
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static inline unsigned char constant_time_eq_int_8(int a, int b); |
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|
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|
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/*
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* Returns (mask & a) | (~mask & b). |
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* |
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* When |mask| is all 1s or all 0s (as returned by the methods above), |
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* the select methods return either |a| (if |mask| is nonzero) or |b| |
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* (if |mask| is zero). |
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*/ |
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static inline unsigned int constant_time_select(unsigned int mask, |
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unsigned int a, unsigned int b); |
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/* Convenience method for unsigned chars. */ |
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static inline unsigned char constant_time_select_8(unsigned char mask, |
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unsigned char a, unsigned char b); |
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/* Convenience method for signed integers. */ |
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static inline int constant_time_select_int(unsigned int mask, int a, int b); |
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|
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static inline unsigned int constant_time_msb(unsigned int a) |
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{ |
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return (unsigned int)((int)(a) >> (sizeof(int) * 8 - 1)); |
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} |
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|
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static inline unsigned int constant_time_lt(unsigned int a, unsigned int b) |
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{ |
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unsigned int lt; |
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/* Case 1: msb(a) == msb(b). a < b iff the MSB of a - b is set.*/ |
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lt = ~(a ^ b) & (a - b); |
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/* Case 2: msb(a) != msb(b). a < b iff the MSB of b is set. */ |
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lt |= ~a & b; |
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return constant_time_msb(lt); |
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} |
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|
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static inline unsigned char constant_time_lt_8(unsigned int a, unsigned int b) |
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{ |
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return (unsigned char)(constant_time_lt(a, b)); |
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} |
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|
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static inline unsigned int constant_time_ge(unsigned int a, unsigned int b) |
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{ |
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unsigned int ge; |
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/* Case 1: msb(a) == msb(b). a >= b iff the MSB of a - b is not set.*/ |
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ge = ~((a ^ b) | (a - b)); |
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/* Case 2: msb(a) != msb(b). a >= b iff the MSB of a is set. */ |
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ge |= a & ~b; |
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return constant_time_msb(ge); |
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} |
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|
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static inline unsigned char constant_time_ge_8(unsigned int a, unsigned int b) |
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{ |
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return (unsigned char)(constant_time_ge(a, b)); |
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} |
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|
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static inline unsigned int constant_time_is_zero(unsigned int a) |
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{ |
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return constant_time_msb(~a & (a - 1)); |
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} |
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static inline unsigned char constant_time_is_zero_8(unsigned int a) |
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{ |
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return (unsigned char)(constant_time_is_zero(a)); |
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} |
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|
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static inline unsigned int constant_time_eq(unsigned int a, unsigned int b) |
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{ |
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return constant_time_is_zero(a ^ b); |
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} |
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static inline unsigned char constant_time_eq_8(unsigned int a, unsigned int b) |
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{ |
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return (unsigned char)(constant_time_eq(a, b)); |
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} |
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|
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static inline unsigned int constant_time_eq_int(int a, int b) |
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{ |
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return constant_time_eq((unsigned)(a), (unsigned)(b)); |
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} |
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|
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static inline unsigned char constant_time_eq_int_8(int a, int b) |
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{ |
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return constant_time_eq_8((unsigned)(a), (unsigned)(b)); |
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} |
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|
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static inline unsigned int constant_time_select(unsigned int mask, |
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unsigned int a, unsigned int b) |
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{ |
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return (mask & a) | (~mask & b); |
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} |
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|
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static inline unsigned char constant_time_select_8(unsigned char mask, |
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unsigned char a, unsigned char b) |
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{ |
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return (unsigned char)(constant_time_select(mask, a, b)); |
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} |
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|
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inline int constant_time_select_int(unsigned int mask, int a, int b) |
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{ |
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return (int)(constant_time_select(mask, (unsigned)(a), (unsigned)(b))); |
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} |
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|
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#ifdef __cplusplus |
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} |
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#endif |
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|
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#endif /* HEADER_CONSTANT_TIME_LOCL_H */ |
@ -0,0 +1,330 @@ |
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/* crypto/constant_time_test.c */ |
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/*
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* Utilities for constant-time cryptography. |
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* |
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* Author: Emilia Kasper (emilia@openssl.org) |
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* Based on previous work by Bodo Moeller, Emilia Kasper, Adam Langley |
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* (Google). |
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* ==================================================================== |
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* Copyright (c) 2014 The OpenSSL Project. All rights reserved. |
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* |
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* Redistribution and use in source and binary forms, with or without |
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* modification, are permitted provided that the following conditions |
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* are met: |
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* 1. Redistributions of source code must retain the copyright |
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* notice, this list of conditions and the following disclaimer. |
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* 2. Redistributions in binary form must reproduce the above copyright |
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* notice, this list of conditions and the following disclaimer in the |
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* documentation and/or other materials provided with the distribution. |
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* 3. All advertising materials mentioning features or use of this software |
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* must display the following acknowledgement: |
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* "This product includes cryptographic software written by |
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* Eric Young (eay@cryptsoft.com)" |
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* The word 'cryptographic' can be left out if the rouines from the library |
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* being used are not cryptographic related :-). |
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* 4. If you include any Windows specific code (or a derivative thereof) from |
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* the apps directory (application code) you must include an acknowledgement: |
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* "This product includes software written by Tim Hudson (tjh@cryptsoft.com)" |
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* |
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* THIS SOFTWARE IS PROVIDED BY ERIC YOUNG ``AS IS'' AND |
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* ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE |
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* IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE |
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* ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE |
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* FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL |
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* DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS |
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* OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) |
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* HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT |
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* LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY |
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* OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF |
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* SUCH DAMAGE. |
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* |
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* The licence and distribution terms for any publically available version or |
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* derivative of this code cannot be changed. i.e. this code cannot simply be |
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* copied and put under another distribution licence |
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* [including the GNU Public Licence.] |
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*/ |
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|
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#include "../crypto/constant_time_locl.h" |
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|
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#include <limits.h> |
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#include <stdio.h> |
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#include <stdlib.h> |
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static const unsigned int CONSTTIME_TRUE = (unsigned)(~0); |
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static const unsigned int CONSTTIME_FALSE = 0; |
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static const unsigned char CONSTTIME_TRUE_8 = 0xff; |
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static const unsigned char CONSTTIME_FALSE_8 = 0; |
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|
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static int test_binary_op(unsigned int (*op)(unsigned int a, unsigned int b), |
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const char* op_name, unsigned int a, unsigned int b, int is_true) |
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{ |
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unsigned c = op(a, b); |
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if (is_true && c != CONSTTIME_TRUE) |
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{ |
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fprintf(stderr, "Test failed for %s(%du, %du): expected %du " |
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"(TRUE), got %du\n", op_name, a, b, CONSTTIME_TRUE, c); |
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return 1; |
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} |
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else if (!is_true && c != CONSTTIME_FALSE) |
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{ |
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fprintf(stderr, "Test failed for %s(%du, %du): expected %du " |
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"(FALSE), got %du\n", op_name, a, b, CONSTTIME_FALSE, |
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c); |
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return 1; |
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} |
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return 0; |
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} |
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|
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static int test_binary_op_8(unsigned char (*op)(unsigned int a, unsigned int b), |
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const char* op_name, unsigned int a, unsigned int b, int is_true) |
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{ |
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unsigned char c = op(a, b); |
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if (is_true && c != CONSTTIME_TRUE_8) |
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{ |
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fprintf(stderr, "Test failed for %s(%du, %du): expected %u " |
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"(TRUE), got %u\n", op_name, a, b, CONSTTIME_TRUE_8, c); |
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return 1; |
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} |
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else if (!is_true && c != CONSTTIME_FALSE_8) |
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{ |
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fprintf(stderr, "Test failed for %s(%du, %du): expected %u " |
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"(FALSE), got %u\n", op_name, a, b, CONSTTIME_FALSE_8, |
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c); |
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return 1; |
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} |
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return 0; |
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} |
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|
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static int test_is_zero(unsigned int a) |
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{ |
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unsigned int c = constant_time_is_zero(a); |
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if (a == 0 && c != CONSTTIME_TRUE) |
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{ |
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fprintf(stderr, "Test failed for constant_time_is_zero(%du): " |
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"expected %du (TRUE), got %du\n", a, CONSTTIME_TRUE, c); |
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return 1; |
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} |
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else if (a != 0 && c != CONSTTIME_FALSE) |
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{ |
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fprintf(stderr, "Test failed for constant_time_is_zero(%du): " |
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"expected %du (FALSE), got %du\n", a, CONSTTIME_FALSE, |
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c); |
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return 1; |
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} |
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return 0; |
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} |
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|
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static int test_is_zero_8(unsigned int a) |
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{ |
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unsigned char c = constant_time_is_zero_8(a); |
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if (a == 0 && c != CONSTTIME_TRUE_8) |
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{ |
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fprintf(stderr, "Test failed for constant_time_is_zero(%du): " |
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"expected %u (TRUE), got %u\n", a, CONSTTIME_TRUE_8, c); |
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return 1; |
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} |
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else if (a != 0 && c != CONSTTIME_FALSE) |
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{ |
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fprintf(stderr, "Test failed for constant_time_is_zero(%du): " |
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"expected %u (FALSE), got %u\n", a, CONSTTIME_FALSE_8, |
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c); |
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return 1; |
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} |
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return 0; |
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} |
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|
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static int test_select(unsigned int a, unsigned int b) |
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{ |
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unsigned int selected = constant_time_select(CONSTTIME_TRUE, a, b); |
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if (selected != a) |
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{ |
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fprintf(stderr, "Test failed for constant_time_select(%du, %du," |
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"%du): expected %du(first value), got %du\n", |
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CONSTTIME_TRUE, a, b, a, selected); |
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return 1; |
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} |
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selected = constant_time_select(CONSTTIME_FALSE, a, b); |
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if (selected != b) |
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{ |
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fprintf(stderr, "Test failed for constant_time_select(%du, %du," |
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"%du): expected %du(second value), got %du\n", |
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CONSTTIME_FALSE, a, b, b, selected); |
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return 1; |
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} |
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return 0; |
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} |
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|
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static int test_select_8(unsigned char a, unsigned char b) |
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{ |
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unsigned char selected = constant_time_select_8(CONSTTIME_TRUE_8, a, b); |
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if (selected != a) |
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{ |
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fprintf(stderr, "Test failed for constant_time_select(%u, %u," |
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"%u): expected %u(first value), got %u\n", |
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CONSTTIME_TRUE, a, b, a, selected); |
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return 1; |
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} |
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selected = constant_time_select_8(CONSTTIME_FALSE_8, a, b); |
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if (selected != b) |
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{ |
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fprintf(stderr, "Test failed for constant_time_select(%u, %u," |
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"%u): expected %u(second value), got %u\n", |
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CONSTTIME_FALSE, a, b, b, selected); |
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return 1; |
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} |
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return 0; |
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} |
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|
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static int test_select_int(int a, int b) |
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{ |
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int selected = constant_time_select_int(CONSTTIME_TRUE, a, b); |
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if (selected != a) |
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{ |
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fprintf(stderr, "Test failed for constant_time_select(%du, %d," |
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"%d): expected %d(first value), got %d\n", |
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CONSTTIME_TRUE, a, b, a, selected); |
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return 1; |
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} |
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selected = constant_time_select_int(CONSTTIME_FALSE, a, b); |
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if (selected != b) |
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{ |
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fprintf(stderr, "Test failed for constant_time_select(%du, %d," |
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"%d): expected %d(second value), got %d\n", |
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CONSTTIME_FALSE, a, b, b, selected); |
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return 1; |
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} |
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return 0; |
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} |
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|
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static int test_eq_int(int a, int b) |
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{ |
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unsigned int equal = constant_time_eq_int(a, b); |
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if (a == b && equal != CONSTTIME_TRUE) |
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{ |
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fprintf(stderr, "Test failed for constant_time_eq_int(%d, %d): " |
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"expected %du(TRUE), got %du\n", |
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a, b, CONSTTIME_TRUE, equal); |
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return 1; |
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} |
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else if (a != b && equal != CONSTTIME_FALSE) |
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{ |
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fprintf(stderr, "Test failed for constant_time_eq_int(%d, %d): " |
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"expected %du(FALSE), got %du\n", |
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a, b, CONSTTIME_FALSE, equal); |
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return 1; |
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} |
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return 0; |
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} |
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|
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static int test_eq_int_8(int a, int b) |
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{ |
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unsigned char equal = constant_time_eq_int_8(a, b); |
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if (a == b && equal != CONSTTIME_TRUE_8) |
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{ |
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fprintf(stderr, "Test failed for constant_time_eq_int_8(%d, %d): " |
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"expected %u(TRUE), got %u\n", |
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a, b, CONSTTIME_TRUE_8, equal); |
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return 1; |
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} |
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else if (a != b && equal != CONSTTIME_FALSE_8) |
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{ |
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fprintf(stderr, "Test failed for constant_time_eq_int_8(%d, %d): " |
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"expected %u(FALSE), got %u\n", |
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a, b, CONSTTIME_FALSE_8, equal); |
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return 1; |
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} |
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return 0; |
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} |
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|
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static unsigned int test_values[] = {0, 1, 1024, 12345, 32000, UINT_MAX/2-1, |
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UINT_MAX/2, UINT_MAX/2+1, UINT_MAX-1, |
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UINT_MAX}; |
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|
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static unsigned char test_values_8[] = {0, 1, 2, 20, 32, 127, 128, 129, 255}; |
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|
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static int signed_test_values[] = {0, 1, -1, 1024, -1024, 12345, -12345, |
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32000, -32000, INT_MAX, INT_MIN, INT_MAX-1, |
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INT_MIN+1}; |
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|
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|
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int main(int argc, char *argv[]) |
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{ |
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unsigned int a, b, i, j; |
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int c, d; |
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unsigned char e, f; |
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int num_failed = 0, num_all = 0; |
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fprintf(stdout, "Testing constant time operations...\n"); |
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|
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for (i = 0; i < sizeof(test_values)/sizeof(int); ++i) |
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{ |
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a = test_values[i]; |
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num_failed += test_is_zero(a); |
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num_failed += test_is_zero_8(a); |
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num_all += 2; |
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for (j = 0; j < sizeof(test_values)/sizeof(int); ++j) |
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{ |
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b = test_values[j]; |
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num_failed += test_binary_op(&constant_time_lt, |
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"constant_time_lt", a, b, a < b); |
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num_failed += test_binary_op_8(&constant_time_lt_8, |
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"constant_time_lt_8", a, b, a < b); |
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num_failed += test_binary_op(&constant_time_lt, |
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"constant_time_lt_8", b, a, b < a); |
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num_failed += test_binary_op_8(&constant_time_lt_8, |
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"constant_time_lt_8", b, a, b < a); |
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num_failed += test_binary_op(&constant_time_ge, |
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"constant_time_ge", a, b, a >= b); |
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num_failed += test_binary_op_8(&constant_time_ge_8, |
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"constant_time_ge_8", a, b, a >= b); |
|||
num_failed += test_binary_op(&constant_time_ge, |
|||
"constant_time_ge", b, a, b >= a); |
|||
num_failed += test_binary_op_8(&constant_time_ge_8, |
|||
"constant_time_ge_8", b, a, b >= a); |
|||
num_failed += test_binary_op(&constant_time_eq, |
|||
"constant_time_eq", a, b, a == b); |
|||
num_failed += test_binary_op_8(&constant_time_eq_8, |
|||
"constant_time_eq_8", a, b, a == b); |
|||
num_failed += test_binary_op(&constant_time_eq, |
|||
"constant_time_eq", b, a, b == a); |
|||
num_failed += test_binary_op_8(&constant_time_eq_8, |
|||
"constant_time_eq_8", b, a, b == a); |
|||
num_failed += test_select(a, b); |
|||
num_all += 13; |
|||
} |
|||
} |
|||
|
|||
for (i = 0; i < sizeof(signed_test_values)/sizeof(int); ++i) |
|||
{ |
|||
c = signed_test_values[i]; |
|||
for (j = 0; j < sizeof(signed_test_values)/sizeof(int); ++j) |
|||
{ |
|||
d = signed_test_values[j]; |
|||
num_failed += test_select_int(c, d); |
|||
num_failed += test_eq_int(c, d); |
|||
num_failed += test_eq_int_8(c, d); |
|||
num_all += 3; |
|||
} |
|||
} |
|||
|
|||
for (i = 0; i < sizeof(test_values_8); ++i) |
|||
{ |
|||
e = test_values_8[i]; |
|||
for (j = 0; j < sizeof(test_values_8); ++j) |
|||
{ |
|||
f = test_values_8[j]; |
|||
num_failed += test_select_8(e, f); |
|||
num_all += 1; |
|||
} |
|||
} |
|||
|
|||
if (!num_failed) |
|||
{ |
|||
fprintf(stdout, "ok (ran %d tests)\n", num_all); |
|||
return EXIT_SUCCESS; |
|||
} |
|||
else |
|||
{ |
|||
fprintf(stdout, "%d of %d tests failed!\n", num_failed, num_all); |
|||
return EXIT_FAILURE; |
|||
} |
|||
} |
@ -0,0 +1,81 @@ |
|||
=pod |
|||
|
|||
=for comment |
|||
Original text by James Westby, contributed under the OpenSSL license. |
|||
|
|||
=head1 NAME |
|||
|
|||
c_rehash - Create symbolic links to files named by the hash values |
|||
|
|||
=head1 SYNOPSIS |
|||
|
|||
B<c_rehash> |
|||
[ I<directory>...] |
|||
|
|||
=head1 DESCRIPTION |
|||
|
|||
B<c_rehash> scans directories and calculates a hash value of each C<.pem> |
|||
file in the specified directory list and creates symbolic links |
|||
for each file, where the name of the link is the hash value. |
|||
This utility is useful as many programs that use OpenSSL require |
|||
directories to be set up like this in order to find certificates. |
|||
|
|||
If any directories are named on the command line, then those are |
|||
processed in turn. If not, then the B<SSL_CERT_DIR> environment variable |
|||
is consulted; this shold be a colon-separated list of directories, |
|||
like the Unix B<PATH> variable. |
|||
If that is not set then the default directory (installation-specific |
|||
but often B</usr/local/ssl/certs>) is processed. |
|||
|
|||
In order for a directory to be processed, the user must have write |
|||
permissions on that directory, otherwise it will be skipped. |
|||
The links created are of the form C<HHHHHHHH.D>, where each B<H> |
|||
is a hexadecimal character and B<D> is a single decimal digit. |
|||
When processing a directory, B<c_rehash> will first remove all links |
|||
that have a name in that syntax. If you have links in that format |
|||
used for other purposes, they will be removed. |
|||
Hashes for CRL's look similar except the letter B<r> appears after |
|||
the period, like this: C<HHHHHHHH.rD>. |
|||
|
|||
Multiple objects may have the same hash; they will be indicated by |
|||
incrementing the B<D> value. Duplicates are found by comparing the |
|||
full SHA-1 fingerprint. A warning will be displayed if a duplicate |
|||
is found. |
|||
|
|||
A warning will also be displayed if there are B<.pem> files that |
|||
cannot be parsed as either a certificate or a CRL. |
|||
|
|||
The program uses the B<openssl> program to compute the hashes and |
|||
fingerprints. If not found in the user's B<PATH>, then set the |
|||
B<OPENSSL> environment variable to the full pathname. |
|||
Any program can be used, it will be invoked as follows for either |
|||
a certificate or CRL: |
|||
|
|||
$OPENSSL x509 -hash -fingerprint -noout -in FFFFFF |
|||
$OPENSSL crl -hash -fingerprint -noout -in FFFFFF |
|||
|
|||
where B<FFFFFF> is the filename. It must output the hash of the |
|||
file on the first line, and the fingerprint on the second, |
|||
optionally prefixed with some text and an equals sign. |
|||
|
|||
=head1 ENVIRONMENT |
|||
|
|||
=over |
|||
|
|||
=item B<OPENSSL> |
|||
|
|||
The path to an executable to use to generate hashes and |
|||
fingerprints (see above). |
|||
|
|||
=item B<SSL_CERT_DIR> |
|||
|
|||
Colon separated list of directories to operate on. |
|||
Ignored if directories are listed on the command line. |
|||
|
|||
=back |
|||
|
|||
=head1 SEE ALSO |
|||
|
|||
L<openssl(1)|openssl(1)>, |
|||
L<crl(1)|crl(1)>. |
|||
L<x509(1)|x509(1)>. |
@ -0,0 +1,330 @@ |
|||
/* crypto/constant_time_test.c */ |
|||
/*
|
|||
* Utilities for constant-time cryptography. |
|||
* |
|||
* Author: Emilia Kasper (emilia@openssl.org) |
|||
* Based on previous work by Bodo Moeller, Emilia Kasper, Adam Langley |
|||
* (Google). |
|||
* ==================================================================== |
|||
* Copyright (c) 2014 The OpenSSL Project. 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 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 cryptographic software written by |
|||
* Eric Young (eay@cryptsoft.com)" |
|||
* The word 'cryptographic' can be left out if the rouines from the library |
|||
* being used are not cryptographic related :-). |
|||
* 4. If you include any Windows specific code (or a derivative thereof) from |
|||
* the apps directory (application code) you must include an acknowledgement: |
|||
* "This product includes software written by Tim Hudson (tjh@cryptsoft.com)" |
|||
* |
|||
* THIS SOFTWARE IS PROVIDED BY ERIC YOUNG ``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 CONTRIBUTORS 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. |
|||
* |
|||
* The licence and distribution terms for any publically available version or |
|||
* derivative of this code cannot be changed. i.e. this code cannot simply be |
|||
* copied and put under another distribution licence |
|||
* [including the GNU Public Licence.] |
|||
*/ |
|||
|
|||
#include "../crypto/constant_time_locl.h" |
|||
|
|||
#include <limits.h> |
|||
#include <stdio.h> |
|||
#include <stdlib.h> |
|||
|
|||
static const unsigned int CONSTTIME_TRUE = (unsigned)(~0); |
|||
static const unsigned int CONSTTIME_FALSE = 0; |
|||
static const unsigned char CONSTTIME_TRUE_8 = 0xff; |
|||
static const unsigned char CONSTTIME_FALSE_8 = 0; |
|||
|
|||
static int test_binary_op(unsigned int (*op)(unsigned int a, unsigned int b), |
|||
const char* op_name, unsigned int a, unsigned int b, int is_true) |
|||
{ |
|||
unsigned c = op(a, b); |
|||
if (is_true && c != CONSTTIME_TRUE) |
|||
{ |
|||
fprintf(stderr, "Test failed for %s(%du, %du): expected %du " |
|||
"(TRUE), got %du\n", op_name, a, b, CONSTTIME_TRUE, c); |
|||
return 1; |
|||
} |
|||
else if (!is_true && c != CONSTTIME_FALSE) |
|||
{ |
|||
fprintf(stderr, "Test failed for %s(%du, %du): expected %du " |
|||
"(FALSE), got %du\n", op_name, a, b, CONSTTIME_FALSE, |
|||
c); |
|||
return 1; |
|||
} |
|||
return 0; |
|||
} |
|||
|
|||
static int test_binary_op_8(unsigned char (*op)(unsigned int a, unsigned int b), |
|||
const char* op_name, unsigned int a, unsigned int b, int is_true) |
|||
{ |
|||
unsigned char c = op(a, b); |
|||
if (is_true && c != CONSTTIME_TRUE_8) |
|||
{ |
|||
fprintf(stderr, "Test failed for %s(%du, %du): expected %u " |
|||
"(TRUE), got %u\n", op_name, a, b, CONSTTIME_TRUE_8, c); |
|||
return 1; |
|||
} |
|||
else if (!is_true && c != CONSTTIME_FALSE_8) |
|||
{ |
|||
fprintf(stderr, "Test failed for %s(%du, %du): expected %u " |
|||
"(FALSE), got %u\n", op_name, a, b, CONSTTIME_FALSE_8, |
|||
c); |
|||
return 1; |
|||
} |
|||
return 0; |
|||
} |
|||
|
|||
static int test_is_zero(unsigned int a) |
|||
{ |
|||
unsigned int c = constant_time_is_zero(a); |
|||
if (a == 0 && c != CONSTTIME_TRUE) |
|||
{ |
|||
fprintf(stderr, "Test failed for constant_time_is_zero(%du): " |
|||
"expected %du (TRUE), got %du\n", a, CONSTTIME_TRUE, c); |
|||
return 1; |
|||
} |
|||
else if (a != 0 && c != CONSTTIME_FALSE) |
|||
{ |
|||
fprintf(stderr, "Test failed for constant_time_is_zero(%du): " |
|||
"expected %du (FALSE), got %du\n", a, CONSTTIME_FALSE, |
|||
c); |
|||
return 1; |
|||
} |
|||
return 0; |
|||
} |
|||
|
|||
static int test_is_zero_8(unsigned int a) |
|||
{ |
|||
unsigned char c = constant_time_is_zero_8(a); |
|||
if (a == 0 && c != CONSTTIME_TRUE_8) |
|||
{ |
|||
fprintf(stderr, "Test failed for constant_time_is_zero(%du): " |
|||
"expected %u (TRUE), got %u\n", a, CONSTTIME_TRUE_8, c); |
|||
return 1; |
|||
} |
|||
else if (a != 0 && c != CONSTTIME_FALSE) |
|||
{ |
|||
fprintf(stderr, "Test failed for constant_time_is_zero(%du): " |
|||
"expected %u (FALSE), got %u\n", a, CONSTTIME_FALSE_8, |
|||
c); |
|||
return 1; |
|||
} |
|||
return 0; |
|||
} |
|||
|
|||
static int test_select(unsigned int a, unsigned int b) |
|||
{ |
|||
unsigned int selected = constant_time_select(CONSTTIME_TRUE, a, b); |
|||
if (selected != a) |
|||
{ |
|||
fprintf(stderr, "Test failed for constant_time_select(%du, %du," |
|||
"%du): expected %du(first value), got %du\n", |
|||
CONSTTIME_TRUE, a, b, a, selected); |
|||
return 1; |
|||
} |
|||
selected = constant_time_select(CONSTTIME_FALSE, a, b); |
|||
if (selected != b) |
|||
{ |
|||
fprintf(stderr, "Test failed for constant_time_select(%du, %du," |
|||
"%du): expected %du(second value), got %du\n", |
|||
CONSTTIME_FALSE, a, b, b, selected); |
|||
return 1; |
|||
} |
|||
return 0; |
|||
} |
|||
|
|||
static int test_select_8(unsigned char a, unsigned char b) |
|||
{ |
|||
unsigned char selected = constant_time_select_8(CONSTTIME_TRUE_8, a, b); |
|||
if (selected != a) |
|||
{ |
|||
fprintf(stderr, "Test failed for constant_time_select(%u, %u," |
|||
"%u): expected %u(first value), got %u\n", |
|||
CONSTTIME_TRUE, a, b, a, selected); |
|||
return 1; |
|||
} |
|||
selected = constant_time_select_8(CONSTTIME_FALSE_8, a, b); |
|||
if (selected != b) |
|||
{ |
|||
fprintf(stderr, "Test failed for constant_time_select(%u, %u," |
|||
"%u): expected %u(second value), got %u\n", |
|||
CONSTTIME_FALSE, a, b, b, selected); |
|||
return 1; |
|||
} |
|||
return 0; |
|||
} |
|||
|
|||
static int test_select_int(int a, int b) |
|||
{ |
|||
int selected = constant_time_select_int(CONSTTIME_TRUE, a, b); |
|||
if (selected != a) |
|||
{ |
|||
fprintf(stderr, "Test failed for constant_time_select(%du, %d," |
|||
"%d): expected %d(first value), got %d\n", |
|||
CONSTTIME_TRUE, a, b, a, selected); |
|||
return 1; |
|||
} |
|||
selected = constant_time_select_int(CONSTTIME_FALSE, a, b); |
|||
if (selected != b) |
|||
{ |
|||
fprintf(stderr, "Test failed for constant_time_select(%du, %d," |
|||
"%d): expected %d(second value), got %d\n", |
|||
CONSTTIME_FALSE, a, b, b, selected); |
|||
return 1; |
|||
} |
|||
return 0; |
|||
} |
|||
|
|||
static int test_eq_int(int a, int b) |
|||
{ |
|||
unsigned int equal = constant_time_eq_int(a, b); |
|||
if (a == b && equal != CONSTTIME_TRUE) |
|||
{ |
|||
fprintf(stderr, "Test failed for constant_time_eq_int(%d, %d): " |
|||
"expected %du(TRUE), got %du\n", |
|||
a, b, CONSTTIME_TRUE, equal); |
|||
return 1; |
|||
} |
|||
else if (a != b && equal != CONSTTIME_FALSE) |
|||
{ |
|||
fprintf(stderr, "Test failed for constant_time_eq_int(%d, %d): " |
|||
"expected %du(FALSE), got %du\n", |
|||
a, b, CONSTTIME_FALSE, equal); |
|||
return 1; |
|||
} |
|||
return 0; |
|||
} |
|||
|
|||
static int test_eq_int_8(int a, int b) |
|||
{ |
|||
unsigned char equal = constant_time_eq_int_8(a, b); |
|||
if (a == b && equal != CONSTTIME_TRUE_8) |
|||
{ |
|||
fprintf(stderr, "Test failed for constant_time_eq_int_8(%d, %d): " |
|||
"expected %u(TRUE), got %u\n", |
|||
a, b, CONSTTIME_TRUE_8, equal); |
|||
return 1; |
|||
} |
|||
else if (a != b && equal != CONSTTIME_FALSE_8) |
|||
{ |
|||
fprintf(stderr, "Test failed for constant_time_eq_int_8(%d, %d): " |
|||
"expected %u(FALSE), got %u\n", |
|||
a, b, CONSTTIME_FALSE_8, equal); |
|||
return 1; |
|||
} |
|||
return 0; |
|||
} |
|||
|
|||
static unsigned int test_values[] = {0, 1, 1024, 12345, 32000, UINT_MAX/2-1, |
|||
UINT_MAX/2, UINT_MAX/2+1, UINT_MAX-1, |
|||
UINT_MAX}; |
|||
|
|||
static unsigned char test_values_8[] = {0, 1, 2, 20, 32, 127, 128, 129, 255}; |
|||
|
|||
static int signed_test_values[] = {0, 1, -1, 1024, -1024, 12345, -12345, |
|||
32000, -32000, INT_MAX, INT_MIN, INT_MAX-1, |
|||
INT_MIN+1}; |
|||
|
|||
|
|||
int main(int argc, char *argv[]) |
|||
{ |
|||
unsigned int a, b, i, j; |
|||
int c, d; |
|||
unsigned char e, f; |
|||
int num_failed = 0, num_all = 0; |
|||
fprintf(stdout, "Testing constant time operations...\n"); |
|||
|
|||
for (i = 0; i < sizeof(test_values)/sizeof(int); ++i) |
|||
{ |
|||
a = test_values[i]; |
|||
num_failed += test_is_zero(a); |
|||
num_failed += test_is_zero_8(a); |
|||
num_all += 2; |
|||
for (j = 0; j < sizeof(test_values)/sizeof(int); ++j) |
|||
{ |
|||
b = test_values[j]; |
|||
num_failed += test_binary_op(&constant_time_lt, |
|||
"constant_time_lt", a, b, a < b); |
|||
num_failed += test_binary_op_8(&constant_time_lt_8, |
|||
"constant_time_lt_8", a, b, a < b); |
|||
num_failed += test_binary_op(&constant_time_lt, |
|||
"constant_time_lt_8", b, a, b < a); |
|||
num_failed += test_binary_op_8(&constant_time_lt_8, |
|||
"constant_time_lt_8", b, a, b < a); |
|||
num_failed += test_binary_op(&constant_time_ge, |
|||
"constant_time_ge", a, b, a >= b); |
|||
num_failed += test_binary_op_8(&constant_time_ge_8, |
|||
"constant_time_ge_8", a, b, a >= b); |
|||
num_failed += test_binary_op(&constant_time_ge, |
|||
"constant_time_ge", b, a, b >= a); |
|||
num_failed += test_binary_op_8(&constant_time_ge_8, |
|||
"constant_time_ge_8", b, a, b >= a); |
|||
num_failed += test_binary_op(&constant_time_eq, |
|||
"constant_time_eq", a, b, a == b); |
|||
num_failed += test_binary_op_8(&constant_time_eq_8, |
|||
"constant_time_eq_8", a, b, a == b); |
|||
num_failed += test_binary_op(&constant_time_eq, |
|||
"constant_time_eq", b, a, b == a); |
|||
num_failed += test_binary_op_8(&constant_time_eq_8, |
|||
"constant_time_eq_8", b, a, b == a); |
|||
num_failed += test_select(a, b); |
|||
num_all += 13; |
|||
} |
|||
} |
|||
|
|||
for (i = 0; i < sizeof(signed_test_values)/sizeof(int); ++i) |
|||
{ |
|||
c = signed_test_values[i]; |
|||
for (j = 0; j < sizeof(signed_test_values)/sizeof(int); ++j) |
|||
{ |
|||
d = signed_test_values[j]; |
|||
num_failed += test_select_int(c, d); |
|||
num_failed += test_eq_int(c, d); |
|||
num_failed += test_eq_int_8(c, d); |
|||
num_all += 3; |
|||
} |
|||
} |
|||
|
|||
for (i = 0; i < sizeof(test_values_8); ++i) |
|||
{ |
|||
e = test_values_8[i]; |
|||
for (j = 0; j < sizeof(test_values_8); ++j) |
|||
{ |
|||
f = test_values_8[j]; |
|||
num_failed += test_select_8(e, f); |
|||
num_all += 1; |
|||
} |
|||
} |
|||
|
|||
if (!num_failed) |
|||
{ |
|||
fprintf(stdout, "ok (ran %d tests)\n", num_all); |
|||
return EXIT_SUCCESS; |
|||
} |
|||
else |
|||
{ |
|||
fprintf(stdout, "%d of %d tests failed!\n", num_failed, num_all); |
|||
return EXIT_FAILURE; |
|||
} |
|||
} |
Loading…
Reference in new issue