mirror of
https://boringssl.googlesource.com/boringssl
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bd6f41c308
... and then run clang-format on the changed files to reflow any comment blocks that exceeded line lengths. (Which generated a bunch of noise formatting changes, but probably that reduces noise in future CLs.) No semantic change to the code. Change-Id: I455da9faaaedda3e751ac91b5eb43cbc662d68a6 Reviewed-on: https://boringssl-review.googlesource.com/c/boringssl/+/97367 Reviewed-by: David Benjamin <davidben@google.com> Commit-Queue: Adam Langley <agl@google.com> Auto-Submit: Adam Langley <agl@google.com>
400 lines
16 KiB
C
400 lines
16 KiB
C
// Copyright 1995-2016 The OpenSSL Project Authors. All Rights Reserved.
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//
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// Licensed under the Apache License, Version 2.0 (the "License");
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// you may not use this file except in compliance with the License.
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// You may obtain a copy of the License at
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//
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// https://www.apache.org/licenses/LICENSE-2.0
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//
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// Unless required by applicable law or agreed to in writing, software
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// distributed under the License is distributed on an "AS IS" BASIS,
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// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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// See the License for the specific language governing permissions and
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// limitations under the License.
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#ifndef OPENSSL_HEADER_DIGEST_H
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#define OPENSSL_HEADER_DIGEST_H
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#include <openssl/base.h> // IWYU pragma: export
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#if defined(__cplusplus)
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extern "C" {
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#endif
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// Digest functions.
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//
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// An EVP_MD abstracts the details of a specific hash function allowing code to
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// deal with the concept of a "hash function" without needing to know exactly
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// which hash function it is.
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// Hash algorithms.
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//
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// The following functions return `EVP_MD` objects that implement the named hash
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// function.
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OPENSSL_EXPORT const EVP_MD *EVP_md4(void);
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OPENSSL_EXPORT const EVP_MD *EVP_md5(void);
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OPENSSL_EXPORT const EVP_MD *EVP_sha1(void);
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OPENSSL_EXPORT const EVP_MD *EVP_sha224(void);
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OPENSSL_EXPORT const EVP_MD *EVP_sha256(void);
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OPENSSL_EXPORT const EVP_MD *EVP_sha384(void);
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OPENSSL_EXPORT const EVP_MD *EVP_sha512(void);
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OPENSSL_EXPORT const EVP_MD *EVP_sha512_256(void);
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OPENSSL_EXPORT const EVP_MD *EVP_blake2b256(void);
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// EVP_md5_sha1 is a TLS-specific `EVP_MD` which computes the concatenation of
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// MD5 and SHA-1, as used in TLS 1.1 and below.
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OPENSSL_EXPORT const EVP_MD *EVP_md5_sha1(void);
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// EVP_get_digestbynid returns an `EVP_MD` for the given NID, or NULL if no
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// such digest is known.
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OPENSSL_EXPORT const EVP_MD *EVP_get_digestbynid(int nid);
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// EVP_get_digestbyobj returns an `EVP_MD` for the given `ASN1_OBJECT`, or NULL
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// if no such digest is known.
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OPENSSL_EXPORT const EVP_MD *EVP_get_digestbyobj(const ASN1_OBJECT *obj);
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// Digest contexts.
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//
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// An EVP_MD_CTX represents the state of a specific digest operation in
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// progress.
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// EVP_MD_CTX_init sets an uninitialized `EVP_MD_CTX` to the zero state. This
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// is the same as setting the structure to zero.
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//
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// This function is used for initializing uninitialized memory in an
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// `EVP_MD_CTX`, e.g. if it is declared as a local variable on the stack. This
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// function should not be used on objects that have already been initialized.
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OPENSSL_EXPORT void EVP_MD_CTX_init(EVP_MD_CTX *ctx);
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// EVP_MD_CTX_new returns a newly-allocated `EVP_MD_CTX` in the zero state, or
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// NULL on allocation failure. The caller must use `EVP_MD_CTX_free` to release
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// the resulting object.
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OPENSSL_EXPORT EVP_MD_CTX *EVP_MD_CTX_new(void);
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// EVP_MD_CTX_cleanup frees any resources owned by `ctx` and resets it to the
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// zero state. It does not free `ctx` itself. It returns one.
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OPENSSL_EXPORT int EVP_MD_CTX_cleanup(EVP_MD_CTX *ctx);
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// EVP_MD_CTX_cleanse zeros the digest state in `ctx` and then performs the
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// actions of `EVP_MD_CTX_cleanup`. Note that some `EVP_MD_CTX` objects contain
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// more than just a digest (e.g. those resulting from `EVP_DigestSignInit`) but
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// this function does not zero out more than just the digest state even in that
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// case.
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OPENSSL_EXPORT void EVP_MD_CTX_cleanse(EVP_MD_CTX *ctx);
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// EVP_MD_CTX_free calls `EVP_MD_CTX_cleanup` and then frees `ctx` itself.
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OPENSSL_EXPORT void EVP_MD_CTX_free(EVP_MD_CTX *ctx);
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// EVP_MD_CTX_copy_ex sets `out` to be a copy of `in`. It returns one on success
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// and zero on allocation failure. `out` must have been previously initialized,
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// e.g. with `EVP_MD_CTX_init` or `EVP_MD_CTX_new`.
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OPENSSL_EXPORT int EVP_MD_CTX_copy_ex(EVP_MD_CTX *out, const EVP_MD_CTX *in);
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// EVP_MD_CTX_move sets `out`, which must already be initialised, to the hash
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// state in `in`. `in` is mutated and left in an empty state.
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OPENSSL_EXPORT void EVP_MD_CTX_move(EVP_MD_CTX *out, EVP_MD_CTX *in);
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// EVP_MD_CTX_reset calls `EVP_MD_CTX_cleanup` followed by `EVP_MD_CTX_init`. It
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// returns one.
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OPENSSL_EXPORT int EVP_MD_CTX_reset(EVP_MD_CTX *ctx);
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// Digest operations.
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// EVP_DigestInit_ex configures `ctx`, whose memory must already have been
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// initialised (e.g. with `EVP_MD_CTX_init` or `EVP_MD_CTX_new`), for a fresh
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// hashing operation using `type`. It returns one on success and zero on
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// allocation failure.
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//
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// This function may be used to reconfigure an `EVP_MD_CTX` that was previously
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// used for another operation.
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OPENSSL_EXPORT int EVP_DigestInit_ex(EVP_MD_CTX *ctx, const EVP_MD *type,
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ENGINE *engine);
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// EVP_DigestUpdate hashes `len` bytes from `data` into the hashing operation
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// in `ctx`. It returns one.
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OPENSSL_EXPORT int EVP_DigestUpdate(EVP_MD_CTX *ctx, const void *data,
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size_t len);
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// EVP_MAX_MD_SIZE is the largest digest size supported, in bytes.
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// Functions that output a digest generally require the buffer have
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// at least this much space.
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#define EVP_MAX_MD_SIZE 64 // SHA-512 is the longest so far.
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// EVP_MAX_MD_BLOCK_SIZE is the largest digest block size supported, in
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// bytes.
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#define EVP_MAX_MD_BLOCK_SIZE 128 // SHA-512 is the longest so far.
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// EVP_DigestFinal_ex finishes the digest in `ctx` and writes the output to
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// `md_out`. `EVP_MD_CTX_size` bytes are written, which is at most
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// `EVP_MAX_MD_SIZE`. If `out_size` is not NULL then `*out_size` is set to the
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// number of bytes written. It returns one. After this call, the hash cannot be
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// updated or finished again until `EVP_DigestInit_ex` is called to start
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// another hashing operation.
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OPENSSL_EXPORT int EVP_DigestFinal_ex(EVP_MD_CTX *ctx, uint8_t *md_out,
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unsigned int *out_size);
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// EVP_DigestFinal acts like `EVP_DigestFinal_ex` except that
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// `EVP_MD_CTX_cleanup` is called on `ctx` before returning.
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OPENSSL_EXPORT int EVP_DigestFinal(EVP_MD_CTX *ctx, uint8_t *md_out,
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unsigned int *out_size);
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// EVP_Digest performs a complete hashing operation in one call. It hashes `len`
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// bytes from `data` and writes the digest to `md_out`. `EVP_MD_CTX_size` bytes
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// are written, which is at most `EVP_MAX_MD_SIZE`. If `out_size` is not NULL
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// then `*out_size` is set to the number of bytes written. It returns one on
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// success and zero otherwise.
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OPENSSL_EXPORT int EVP_Digest(const void *data, size_t len, uint8_t *md_out,
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unsigned int *md_out_size, const EVP_MD *type,
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ENGINE *impl);
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// Digest function accessors.
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//
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// These functions allow code to learn details about an abstract hash
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// function.
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// EVP_MD_type returns a NID identifying `md`. (For example, `NID_sha256`.)
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OPENSSL_EXPORT int EVP_MD_type(const EVP_MD *md);
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// EVP_MD_flags returns the flags for `md`, which is a set of `EVP_MD_FLAG_*`
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// values, ORed together.
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OPENSSL_EXPORT uint32_t EVP_MD_flags(const EVP_MD *md);
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// EVP_MD_size returns the digest size of `md`, in bytes.
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OPENSSL_EXPORT size_t EVP_MD_size(const EVP_MD *md);
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// EVP_MD_block_size returns the native block-size of `md`, in bytes.
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OPENSSL_EXPORT size_t EVP_MD_block_size(const EVP_MD *md);
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// EVP_MD_FLAG_DIGALGID_ABSENT indicates that the parameter type in an X.509
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// DigestAlgorithmIdentifier representing this digest function should be
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// undefined rather than NULL.
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#define EVP_MD_FLAG_DIGALGID_ABSENT 2
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// EVP_MD_FLAG_XOF indicates that the digest is an extensible-output function
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// (XOF). This flag is defined for compatibility and will never be set in any
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// `EVP_MD` in BoringSSL.
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#define EVP_MD_FLAG_XOF 4
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// Digest operation accessors.
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// EVP_MD_CTX_get0_md returns the underlying digest function, or NULL if one has
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// not been set.
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OPENSSL_EXPORT const EVP_MD *EVP_MD_CTX_get0_md(const EVP_MD_CTX *ctx);
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// EVP_MD_CTX_md returns the underlying digest function, or NULL if one has not
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// been set. (This is the same as `EVP_MD_CTX_get0_md` but OpenSSL has
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// deprecated this spelling.)
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OPENSSL_EXPORT const EVP_MD *EVP_MD_CTX_md(const EVP_MD_CTX *ctx);
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// EVP_MD_CTX_size returns the digest size of `ctx`, in bytes. It
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// will crash if a digest hasn't been set on `ctx`.
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OPENSSL_EXPORT size_t EVP_MD_CTX_size(const EVP_MD_CTX *ctx);
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// EVP_MD_CTX_block_size returns the block size of the digest function used by
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// `ctx`, in bytes. It will crash if a digest hasn't been set on `ctx`.
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OPENSSL_EXPORT size_t EVP_MD_CTX_block_size(const EVP_MD_CTX *ctx);
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// EVP_MD_CTX_type returns a NID describing the digest function used by `ctx`.
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// (For example, `NID_sha256`.) It will crash if a digest hasn't been set on
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// `ctx`.
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OPENSSL_EXPORT int EVP_MD_CTX_type(const EVP_MD_CTX *ctx);
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// EVP_MD_CTX_pkey_ctx returns the `EVP_PKEY_CTX` used to configure additional
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// parameters on `ctx` if `ctx` is used for a sign or verify operation with
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// `EVP_DigestSignInit` or `EVP_DigestVerifyInit`. It returns NULL otherwise.
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OPENSSL_EXPORT EVP_PKEY_CTX *EVP_MD_CTX_pkey_ctx(const EVP_MD_CTX *ctx);
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// ASN.1 functions.
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//
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// These functions allow code to parse and serialize AlgorithmIdentifiers for
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// hash functions.
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// EVP_parse_digest_algorithm parses an AlgorithmIdentifier structure containing
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// a hash function OID (for example, 2.16.840.1.101.3.4.2.1 is SHA-256) and
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// advances `cbs`. The parameters field may either be omitted or a NULL. It
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// returns the digest function or NULL on error.
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OPENSSL_EXPORT const EVP_MD *EVP_parse_digest_algorithm(CBS *cbs);
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// EVP_parse_digest_algorithm_nid behaves like `EVP_parse_digest_algorithm`
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// except it returns `NID_undef` on error and some other value on success. This
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// may be used to avoid depending on every digest algorithm in the library.
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OPENSSL_EXPORT int EVP_parse_digest_algorithm_nid(CBS *cbs);
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// EVP_marshal_digest_algorithm marshals `md` as an AlgorithmIdentifier
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// structure and appends the result to `cbb`. It returns one on success and zero
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// on error. It sets the parameters field to NULL. Use
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// `EVP_marshal_digest_algorithm_no_params` to omit the parameters instead.
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//
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// In general, the parameters should be omitted for digest algorithms, but the
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// following specifications require a NULL parameter instead.
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//
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// - Hash algorithms and MGF-1 hash algorithms used in RSASSA-PSS and RSAES-OAEP
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// (see RFC 4055, Section 2.1)
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// - The hash algorithm in the DigestInfo structure of RSASSA-PKCS1-v1_5 (see
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// RFC 8017, Appendix A.2.4)
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//
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// Some existing software also uses NULL parameters in other contexts. In
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// practice, digest algorithms are encoded wildly inconsistently.
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OPENSSL_EXPORT int EVP_marshal_digest_algorithm(CBB *cbb, const EVP_MD *md);
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// EVP_marshal_digest_algorithm_no_params behaves like
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// `EVP_marshal_digest_algorithm` but omits the parameters field.
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OPENSSL_EXPORT int EVP_marshal_digest_algorithm_no_params(CBB *cbb,
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const EVP_MD *md);
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// Deprecated functions.
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// EVP_DigestInit calls `EVP_MD_CTX_init`, followed by `EVP_DigestInit_ex`.
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//
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// `EVP_MD_CTX_init` is used for initializing uninitialized memory in an
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// `EVP_MD_CTX`, e.g. if it is declared as a local variable on the stack. Thus
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// this function should not be used on objects that have already been
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// initialized.
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//
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// WARNING: This differs from OpenSSL 1.1.x, where `EVP_DigestInit` and
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// `EVP_DigestInit_ex` are largely equivalent. This difference is because
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// BoringSSL, like OpenSSL 1.0.x, still supports stack-allocating `EVP_MD_CTX`.
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// Implementing the OpenSSL 1.1.x semantics would introduce uninitialized reads
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// in those callers.
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OPENSSL_EXPORT int EVP_DigestInit(EVP_MD_CTX *ctx, const EVP_MD *type);
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// EVP_MD_CTX_copy calls `EVP_MD_CTX_init`, followed by `EVP_MD_CTX_copy_ex`.
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//
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// `EVP_MD_CTX_init` is used for initializing uninitialized memory in an
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// `EVP_MD_CTX`, e.g. if it is declared as a local variable on the stack. Thus
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// this function should not be used on objects that have already been
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// initialized.
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//
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// WARNING: This differs from OpenSSL 1.1.x, where `EVP_MD_CTX_copy` and
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// |EVP_MD_CTX_copy_ex| are largely equivalent. This difference is because
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// BoringSSL, like OpenSSL 1.0.x, still supports stack-allocating `EVP_MD_CTX`.
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// Implementing the OpenSSL 1.1.x semantics would introduce uninitialized reads
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// in those callers.
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OPENSSL_EXPORT int EVP_MD_CTX_copy(EVP_MD_CTX *out, const EVP_MD_CTX *in);
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// EVP_add_digest does nothing and returns one. It exists only for
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// compatibility with OpenSSL.
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OPENSSL_EXPORT int EVP_add_digest(const EVP_MD *digest);
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// EVP_get_digestbyname returns an `EVP_MD` given a human readable name in
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// `name`, or NULL if the name is unknown.
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OPENSSL_EXPORT const EVP_MD *EVP_get_digestbyname(const char *name);
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// EVP_dss1 returns the value of EVP_sha1(). This was provided by OpenSSL to
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// specify the original DSA signatures, which were fixed to use SHA-1. Note,
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// however, that attempting to sign or verify DSA signatures with the EVP
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// interface will always fail.
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OPENSSL_EXPORT const EVP_MD *EVP_dss1(void);
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// EVP_MD_CTX_create calls `EVP_MD_CTX_new`.
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OPENSSL_EXPORT EVP_MD_CTX *EVP_MD_CTX_create(void);
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// EVP_MD_CTX_destroy calls `EVP_MD_CTX_free`.
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OPENSSL_EXPORT void EVP_MD_CTX_destroy(EVP_MD_CTX *ctx);
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// EVP_DigestFinalXOF returns zero and adds an error to the error queue.
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// BoringSSL does not support any XOF digests.
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OPENSSL_EXPORT int EVP_DigestFinalXOF(EVP_MD_CTX *ctx, uint8_t *out,
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size_t len);
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// EVP_MD_meth_get_flags calls `EVP_MD_flags`.
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OPENSSL_EXPORT uint32_t EVP_MD_meth_get_flags(const EVP_MD *md);
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// EVP_MD_CTX_set_flags does nothing.
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OPENSSL_EXPORT void EVP_MD_CTX_set_flags(EVP_MD_CTX *ctx, int flags);
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// EVP_MD_CTX_FLAG_NON_FIPS_ALLOW is meaningless. In OpenSSL it permits non-FIPS
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// algorithms in FIPS mode. But BoringSSL FIPS mode doesn't prohibit algorithms
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// (it's up to the caller to use the FIPS module in a fashion compliant with
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// their needs). Thus this exists only to allow code to compile.
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#define EVP_MD_CTX_FLAG_NON_FIPS_ALLOW 0
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// EVP_MD_nid calls `EVP_MD_type`.
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OPENSSL_EXPORT int EVP_MD_nid(const EVP_MD *md);
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// EVP_MD_fetch behaves like `EVP_get_digestbyname`. `libctx` and `propq` are
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// ignored. Although it returns a non-const pointer, `EVP_MD`s in BoringSSL are
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// static and do not need to be freed.
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OPENSSL_EXPORT EVP_MD *EVP_MD_fetch(OSSL_LIB_CTX *libctx, const char *name,
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const char *propq);
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// EVP_MD_up_ref returns one. `EVP_MD`s in BoringSSL are static.
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OPENSSL_EXPORT int EVP_MD_up_ref(EVP_MD *md);
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// EVP_MD_free does nothing. `EVP_MD`s in BoringSSL are static.
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OPENSSL_EXPORT void EVP_MD_free(EVP_MD *md);
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// EVP_Q_digest behaves like `EVP_Digest` but specifies the digest by a string
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// `name`. `libctx` and `propq` are ignored.
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OPENSSL_EXPORT int EVP_Q_digest(OSSL_LIB_CTX *libctx, const char *name,
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const char *propq, const void *in,
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size_t in_len, uint8_t *out, size_t *out_len);
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// Internal constants and structures (hidden).
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struct evp_md_pctx_ops;
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// EVP_MAX_MD_DATA_SIZE is a private constant which specifies the size of the
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// largest digest state. SHA-512 and BLAKE2b are joint-largest. Consuming code
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// only uses this via the `EVP_MD_CTX` type.
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#define EVP_MAX_MD_DATA_SIZE 208
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// env_md_ctx_st is typoed ("evp" -> "env"), but the typo comes from OpenSSL
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// and some consumers forward-declare these structures so we're leaving it
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// alone.
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struct env_md_ctx_st {
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// md_data contains the hash-specific context.
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union {
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uint8_t md_data[EVP_MAX_MD_DATA_SIZE];
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uint64_t alignment;
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};
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// digest is the underlying digest function, or NULL if not set.
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const EVP_MD *digest;
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// pctx is an opaque (at this layer) pointer to additional context that
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// EVP_PKEY functions may store in this object.
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EVP_PKEY_CTX *pctx;
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// pctx_ops, if not NULL, points to a vtable that contains functions to
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// manipulate `pctx`.
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const struct evp_md_pctx_ops *pctx_ops;
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} /* EVP_MD_CTX */;
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#if defined(__cplusplus)
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} // extern C
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#if !defined(BORINGSSL_NO_CXX)
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extern "C++" {
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BSSL_NAMESPACE_BEGIN
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BORINGSSL_MAKE_DELETER(EVP_MD_CTX, EVP_MD_CTX_free)
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using ScopedEVP_MD_CTX =
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internal::StackAllocatedMovable<EVP_MD_CTX, int, EVP_MD_CTX_init,
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EVP_MD_CTX_cleanup, EVP_MD_CTX_move>;
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BSSL_NAMESPACE_END
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} // extern C++
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#endif
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#endif
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#define DIGEST_R_INPUT_NOT_INITIALIZED 100
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#define DIGEST_R_DECODE_ERROR 101
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#define DIGEST_R_UNKNOWN_HASH 102
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#endif // OPENSSL_HEADER_DIGEST_H
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