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Public exponentiation which is required in rsa verify functionality is tightly integrated with verification code in rsa_verify.c. The patch splits the file into twp separating the modular exponentiation. 1. rsa-verify.c - The file parses device tree keys node to fill a keyprop structure. The keyprop structure can then be converted to implementation specific format. (struct rsa_pub_key for sw implementation) - The parsed device tree node is then passed to a generic rsa_mod_exp function. 2. rsa-mod-exp.c Move the software specific functions related to modular exponentiation from rsa-verify.c to this file. Signed-off-by: Ruchika Gupta <ruchika.gupta@freescale.com> CC: Simon Glass <sjg@chromium.org> Acked-by: Simon Glass <sjg@chromium.org>
44 lines
1.2 KiB
C
44 lines
1.2 KiB
C
/*
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* Copyright (c) 2014, Ruchika Gupta.
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*
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* SPDX-License-Identifier: GPL-2.0+
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*/
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#ifndef _RSA_MOD_EXP_H
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#define _RSA_MOD_EXP_H
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#include <errno.h>
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#include <image.h>
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/**
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* struct key_prop - holder for a public key properties
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*
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* The struct has pointers to modulus (Typically called N),
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* The inverse, R^2, exponent. These can be typecasted and
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* used as byte arrays or converted to the required format
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* as per requirement of RSA implementation.
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*/
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struct key_prop {
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const void *rr; /* R^2 can be treated as byte array */
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const void *modulus; /* modulus as byte array */
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const void *public_exponent; /* public exponent as byte array */
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uint32_t n0inv; /* -1 / modulus[0] mod 2^32 */
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int num_bits; /* Key length in bits */
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uint32_t exp_len; /* Exponent length in number of uint8_t */
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};
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/**
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* rsa_mod_exp_sw() - Perform RSA Modular Exponentiation in sw
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*
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* Operation: out[] = sig ^ exponent % modulus
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*
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* @sig: RSA PKCS1.5 signature
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* @sig_len: Length of signature in number of bytes
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* @node: Node with RSA key elements like modulus, exponent, R^2, n0inv
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* @out: Result in form of byte array
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*/
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int rsa_mod_exp_sw(const uint8_t *sig, uint32_t sig_len,
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struct key_prop *node, uint8_t *out);
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#endif
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