mirror of
https://github.com/CloverHackyColor/CloverBootloader.git
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136 lines
5.8 KiB
Plaintext
136 lines
5.8 KiB
Plaintext
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=pod
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=head1 NAME
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d2i_PrivateKey_ex, d2i_PrivateKey, d2i_PublicKey, d2i_KeyParams,
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d2i_AutoPrivateKey_ex, d2i_AutoPrivateKey, i2d_PrivateKey, i2d_PublicKey,
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i2d_KeyParams, i2d_KeyParams_bio, d2i_PrivateKey_ex_bio, d2i_PrivateKey_bio,
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d2i_PrivateKey_ex_fp, d2i_PrivateKey_fp, d2i_KeyParams_bio, i2d_PrivateKey_bio,
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i2d_PrivateKey_fp
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- decode and encode functions for reading and saving EVP_PKEY structures
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=head1 SYNOPSIS
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#include <openssl/evp.h>
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EVP_PKEY *d2i_PrivateKey_ex(int type, EVP_PKEY **a, const unsigned char **pp,
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long length, OSSL_LIB_CTX *libctx,
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const char *propq);
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EVP_PKEY *d2i_PrivateKey(int type, EVP_PKEY **a, const unsigned char **pp,
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long length);
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EVP_PKEY *d2i_PublicKey(int type, EVP_PKEY **a, const unsigned char **pp,
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long length);
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EVP_PKEY *d2i_KeyParams(int type, EVP_PKEY **a, const unsigned char **pp,
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long length);
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EVP_PKEY *d2i_AutoPrivateKey_ex(EVP_PKEY **a, const unsigned char **pp,
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long length, OSSL_LIB_CTX *libctx,
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const char *propq);
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EVP_PKEY *d2i_AutoPrivateKey(EVP_PKEY **a, const unsigned char **pp,
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long length);
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int i2d_PrivateKey(const EVP_PKEY *a, unsigned char **pp);
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int i2d_PublicKey(const EVP_PKEY *a, unsigned char **pp);
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int i2d_KeyParams(const EVP_PKEY *a, unsigned char **pp);
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int i2d_KeyParams_bio(BIO *bp, const EVP_PKEY *pkey);
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EVP_PKEY *d2i_KeyParams_bio(int type, EVP_PKEY **a, BIO *in);
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#include <openssl/x509.h>
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EVP_PKEY *d2i_PrivateKey_ex_bio(BIO *bp, EVP_PKEY **a, OSSL_LIB_CTX *libctx,
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const char *propq);
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EVP_PKEY *d2i_PrivateKey_bio(BIO *bp, EVP_PKEY **a);
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EVP_PKEY *d2i_PrivateKey_ex_fp(FILE *fp, EVP_PKEY **a, OSSL_LIB_CTX *libctx,
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const char *propq);
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EVP_PKEY *d2i_PrivateKey_fp(FILE *fp, EVP_PKEY **a);
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int i2d_PrivateKey_bio(BIO *bp, const EVP_PKEY *pkey);
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int i2d_PrivateKey_fp(FILE *fp, const EVP_PKEY *pkey);
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=head1 DESCRIPTION
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d2i_PrivateKey_ex() decodes a private key using algorithm I<type>. It attempts
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to use any key-specific format or PKCS#8 unencrypted PrivateKeyInfo format.
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The I<type> parameter should be a public key algorithm constant such as
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B<EVP_PKEY_RSA>. An error occurs if the decoded key does not match I<type>. Some
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private key decoding implementations may use cryptographic algorithms (for
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example to automatically derive the public key if it is not explicitly
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included in the encoding). In this case the supplied library context I<libctx>
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and property query string I<propq> are used.
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If successful and the I<a> parameter is not NULL the function assigns the
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returned B<EVP_PKEY> structure pointer to I<*a>, overwriting any previous value.
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d2i_PrivateKey() does the same as d2i_PrivateKey_ex() except that the default
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library context and property query string are used.
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d2i_PublicKey() does the same for public keys.
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d2i_KeyParams() does the same for key parameters.
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The d2i_PrivateKey_ex_bio() and d2i_PrivateKey_bio() functions are similar to
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d2i_PrivateKey_ex() and d2i_PrivateKey() respectively except that they decode
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the data read from the given BIO. The d2i_PrivateKey_ex_fp() and
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d2i_PrivateKey_fp() functions are the same except that they read the data from
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the given FILE.
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d2i_AutoPrivateKey_ex() and d2i_AutoPrivateKey() are similar to
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d2i_PrivateKey_ex() and d2i_PrivateKey() respectively except that they attempt
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to automatically detect the private key format.
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i2d_PrivateKey() encodes I<a>. It uses a key specific format or, if none is
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defined for that key type, PKCS#8 unencrypted PrivateKeyInfo format.
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i2d_PublicKey() does the same for public keys.
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i2d_KeyParams() does the same for key parameters.
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These functions are similar to the d2i_X509() functions; see L<d2i_X509(3)>.
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i2d_PrivateKey_bio() and i2d_PrivateKey_fp() do the same thing except that they
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encode to a B<BIO> or B<FILE> respectively. Again, these work similarly to the
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functions described in L<d2i_X509(3)>.
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=head1 NOTES
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All the functions that operate on data in memory update the data pointer I<*pp>
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after a successful operation, just like the other d2i and i2d functions;
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see L<d2i_X509(3)>.
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All these functions use DER format and unencrypted keys. Applications wishing
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to encrypt or decrypt private keys should use other functions such as
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d2i_PKCS8PrivateKey() instead.
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To decode a key with type B<EVP_PKEY_EC>, d2i_PublicKey() requires I<*a> to be
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a non-NULL EVP_PKEY structure assigned an EC_KEY structure referencing the proper
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EC_GROUP.
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=head1 RETURN VALUES
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The d2i_PrivateKey_ex(), d2i_PrivateKey(), d2i_AutoPrivateKey_ex(),
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d2i_AutoPrivateKey(), d2i_PrivateKey_ex_bio(), d2i_PrivateKey_bio(),
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d2i_PrivateKey_ex_fp(), d2i_PrivateKey_fp(), d2i_PublicKey(), d2i_KeyParams()
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and d2i_KeyParams_bio() functions return a valid B<EVP_PKEY> structure or NULL if
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an error occurs. The error code can be obtained by calling L<ERR_get_error(3)>.
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i2d_PrivateKey(), i2d_PublicKey() and i2d_KeyParams() return the number of
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bytes successfully encoded or a negative value if an error occurs. The error
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code can be obtained by calling L<ERR_get_error(3)>.
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i2d_PrivateKey_bio(), i2d_PrivateKey_fp() and i2d_KeyParams_bio() return 1 if
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successfully encoded or zero if an error occurs.
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=head1 SEE ALSO
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L<crypto(7)>,
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L<d2i_PKCS8PrivateKey_bio(3)>
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=head1 HISTORY
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d2i_PrivateKey_ex(), d2i_PrivateKey_ex_bio(), d2i_PrivateKey_ex_fp(), and
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d2i_AutoPrivateKey_ex() were added in OpenSSL 3.0.
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=head1 COPYRIGHT
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Copyright 2017-2021 The OpenSSL Project Authors. All Rights Reserved.
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Licensed under the Apache License 2.0 (the "License"). You may not use
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this file except in compliance with the License. You can obtain a copy
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in the file LICENSE in the source distribution or at
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L<https://www.openssl.org/source/license.html>.
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=cut
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