Mirror of BoringSSL (grpc依赖)
https://boringssl.googlesource.com/boringssl
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155 lines
5.7 KiB
155 lines
5.7 KiB
/* Copyright (c) 2015, Google Inc. |
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* |
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* Permission to use, copy, modify, and/or distribute this software for any |
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* purpose with or without fee is hereby granted, provided that the above |
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* copyright notice and this permission notice appear in all copies. |
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* |
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* THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES |
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* WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF |
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* MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY |
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* SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES |
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* WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN ACTION |
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* OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF OR IN |
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* CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE. */ |
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#ifndef OPENSSL_HEADER_CRYPTO_RAND_INTERNAL_H |
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#define OPENSSL_HEADER_CRYPTO_RAND_INTERNAL_H |
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#include <openssl/aes.h> |
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#include <openssl/ctrdrbg.h> |
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#include "../../internal.h" |
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#include "../modes/internal.h" |
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#if defined(__cplusplus) |
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extern "C" { |
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#endif |
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#if !defined(OPENSSL_WINDOWS) && !defined(OPENSSL_FUCHSIA) && \ |
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!defined(BORINGSSL_UNSAFE_DETERMINISTIC_MODE) && !defined(OPENSSL_TRUSTY) |
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#define OPENSSL_URANDOM |
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#endif |
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// RAND_bytes_with_additional_data samples from the RNG after mixing 32 bytes |
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// from |user_additional_data| in. |
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void RAND_bytes_with_additional_data(uint8_t *out, size_t out_len, |
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const uint8_t user_additional_data[32]); |
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#if defined(BORINGSSL_FIPS) |
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// We overread from /dev/urandom or RDRAND by a factor of 10 and XOR to whiten. |
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#define BORINGSSL_FIPS_OVERREAD 10 |
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// CRYPTO_get_seed_entropy writes |out_entropy_len| bytes of entropy, suitable |
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// for seeding a DRBG, to |out_entropy|. It sets |*out_used_cpu| to one if the |
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// entropy came directly from the CPU and zero if it came from the OS. It |
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// actively obtains entropy from the CPU/OS and so should not be called from |
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// within the FIPS module. |
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void CRYPTO_get_seed_entropy(uint8_t *out_entropy, size_t out_entropy_len, |
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int *out_used_cpu); |
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// RAND_load_entropy supplies |entropy_len| bytes of entropy to the module. The |
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// |want_additional_input| parameter is true iff the entropy was obtained from |
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// a source other than the system, e.g. directly from the CPU. |
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void RAND_load_entropy(const uint8_t *entropy, size_t entropy_len, |
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int want_additional_input); |
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// RAND_need_entropy is implemented outside of the FIPS module and is called |
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// when the module has stopped because it has run out of entropy. |
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void RAND_need_entropy(size_t bytes_needed); |
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#endif // BORINGSSL_FIPS |
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// CRYPTO_sysrand fills |len| bytes at |buf| with entropy from the operating |
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// system. |
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void CRYPTO_sysrand(uint8_t *buf, size_t len); |
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// CRYPTO_sysrand_for_seed fills |len| bytes at |buf| with entropy from the |
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// operating system. It may draw from the |GRND_RANDOM| pool on Android, |
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// depending on the vendor's configuration. |
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void CRYPTO_sysrand_for_seed(uint8_t *buf, size_t len); |
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#if defined(OPENSSL_URANDOM) |
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// CRYPTO_init_sysrand initializes long-lived resources needed to draw entropy |
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// from the operating system. |
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void CRYPTO_init_sysrand(void); |
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// CRYPTO_sysrand_if_available fills |len| bytes at |buf| with entropy from the |
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// operating system, or early /dev/urandom data, and returns 1, _if_ the entropy |
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// pool is initialized or if getrandom() is not available and not in FIPS mode. |
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// Otherwise it will not block and will instead fill |buf| with all zeros and |
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// return 0. |
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int CRYPTO_sysrand_if_available(uint8_t *buf, size_t len); |
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#else |
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OPENSSL_INLINE void CRYPTO_init_sysrand(void) {} |
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OPENSSL_INLINE int CRYPTO_sysrand_if_available(uint8_t *buf, size_t len) { |
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CRYPTO_sysrand(buf, len); |
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return 1; |
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} |
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#endif |
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// rand_fork_unsafe_buffering_enabled returns whether fork-unsafe buffering has |
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// been enabled via |RAND_enable_fork_unsafe_buffering|. |
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int rand_fork_unsafe_buffering_enabled(void); |
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// CTR_DRBG_STATE contains the state of a CTR_DRBG based on AES-256. See SP |
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// 800-90Ar1. |
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struct ctr_drbg_state_st { |
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AES_KEY ks; |
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block128_f block; |
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ctr128_f ctr; |
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uint8_t counter[16]; |
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uint64_t reseed_counter; |
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}; |
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// CTR_DRBG_init initialises |*drbg| given |CTR_DRBG_ENTROPY_LEN| bytes of |
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// entropy in |entropy| and, optionally, a personalization string up to |
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// |CTR_DRBG_ENTROPY_LEN| bytes in length. It returns one on success and zero |
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// on error. |
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OPENSSL_EXPORT int CTR_DRBG_init(CTR_DRBG_STATE *drbg, |
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const uint8_t entropy[CTR_DRBG_ENTROPY_LEN], |
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const uint8_t *personalization, |
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size_t personalization_len); |
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#if defined(OPENSSL_X86_64) && !defined(OPENSSL_NO_ASM) |
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OPENSSL_INLINE int have_rdrand(void) { |
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return CRYPTO_is_RDRAND_capable(); |
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} |
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// have_fast_rdrand returns true if RDRAND is supported and it's reasonably |
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// fast. Concretely the latter is defined by whether the chip is Intel (fast) or |
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// not (assumed slow). |
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OPENSSL_INLINE int have_fast_rdrand(void) { |
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return CRYPTO_is_RDRAND_capable() && CRYPTO_is_intel_cpu(); |
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} |
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// CRYPTO_rdrand writes eight bytes of random data from the hardware RNG to |
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// |out|. It returns one on success or zero on hardware failure. |
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int CRYPTO_rdrand(uint8_t out[8]); |
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// CRYPTO_rdrand_multiple8_buf fills |len| bytes at |buf| with random data from |
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// the hardware RNG. The |len| argument must be a multiple of eight. It returns |
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// one on success and zero on hardware failure. |
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int CRYPTO_rdrand_multiple8_buf(uint8_t *buf, size_t len); |
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#else // OPENSSL_X86_64 && !OPENSSL_NO_ASM |
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OPENSSL_INLINE int have_rdrand(void) { |
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return 0; |
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} |
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OPENSSL_INLINE int have_fast_rdrand(void) { |
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return 0; |
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} |
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#endif // OPENSSL_X86_64 && !OPENSSL_NO_ASM |
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#if defined(__cplusplus) |
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} // extern C |
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#endif |
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#endif // OPENSSL_HEADER_CRYPTO_RAND_INTERNAL_H
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