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[crypto] Allow ecPublicKey to be identified as a public-key algorithm
Add a public-key algorithm to the definition of the "ecPublicKey" OID-identified algorithm, and move this definition to ecdsa.c to avoid unconditionally dragging in ECDSA support. Signed-off-by: Michael Brown <mcb30@ipxe.org>
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@@ -83,19 +83,6 @@ FILE_LICENCE ( GPL2_OR_LATER_OR_UBDL );
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#define EINFO_ENOTTY_ALGORITHM \
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__einfo_uniqify ( EINFO_ENOTTY, 0x01, "Inappropriate algorithm" )
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/** "ecPublicKey" object identifier */
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static uint8_t oid_ecpublickey[] = { ASN1_OID_ECPUBLICKEY };
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/** Generic elliptic curve container algorithm
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*
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* The actual curve to be used is identified via the algorithm
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* parameters, rather than the top-level OID.
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*/
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struct asn1_algorithm ecpubkey_algorithm __asn1_algorithm = {
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.name = "ecPublicKey",
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.oid = ASN1_CURSOR ( oid_ecpublickey ),
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};
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/**
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* Start parsing ASN.1 object
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*
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@@ -664,22 +651,24 @@ int asn1_signature_algorithm ( const struct asn1_cursor *cursor,
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* Parse ASN.1 OID-identified elliptic curve algorithm
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*
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* @v cursor ASN.1 object cursor
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* @v wrapper Optional wrapper algorithm, or NULL
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* @ret algorithm Algorithm
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* @ret rc Return status code
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*/
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int asn1_curve_algorithm ( const struct asn1_cursor *cursor,
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struct asn1_algorithm *wrapper,
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struct asn1_algorithm **algorithm ) {
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struct asn1_cursor curve;
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/* Elliptic curves are identified as either:
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*
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* - the algorithm "id-ecPublicKey" with the actual curve
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* specified in the algorithm parameters, or
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* - a wrapper algorithm "id-ecPublicKey" with the actual
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* curve specified in the algorithm parameters, or
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*
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* - a standalone object identifier for the curve
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*/
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if ( asn1_check_algorithm ( cursor, &ecpubkey_algorithm,
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&curve ) != 0 ) {
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if ( wrapper && asn1_check_algorithm ( cursor, wrapper,
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&curve ) != 0 ) {
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memcpy ( &curve, cursor, sizeof ( curve ) );
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}
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@@ -63,6 +63,20 @@ FILE_LICENCE ( GPL2_OR_LATER_OR_UBDL );
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#define EINFO_EINVAL_SIGNATURE \
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__einfo_uniqify ( EINFO_EINVAL, 0x05, "Invalid signature" )
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/** "ecPublicKey" object identifier */
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static uint8_t oid_ecpublickey[] = { ASN1_OID_ECPUBLICKEY };
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/** Generic elliptic curve container algorithm
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*
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* The actual curve to be used is identified via the algorithm
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* parameters, rather than the top-level OID.
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*/
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struct asn1_algorithm ecpubkey_algorithm __asn1_algorithm = {
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.name = "ecPublicKey",
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.oid = ASN1_CURSOR ( oid_ecpublickey ),
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.pubkey = &ecdsa_algorithm,
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};
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/** An ECDSA key */
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struct ecdsa_key {
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/** Elliptic curve */
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@@ -197,7 +211,8 @@ static int ecdsa_parse_key ( struct ecdsa_key *key,
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asn1_enter_bits ( &cursor, NULL );
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/* Identify curve */
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if ( ( rc = asn1_curve_algorithm ( &curve, &algorithm ) ) != 0 ) {
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if ( ( rc = asn1_curve_algorithm ( &curve, &ecpubkey_algorithm,
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&algorithm ) ) != 0 ) {
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DBGC ( key, "ECDSA %p unknown curve: %s\n",
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key, strerror ( rc ) );
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DBGC_HDA ( key, 0, raw->data, raw->len );
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@@ -506,6 +506,7 @@ extern int asn1_cipher_algorithm ( const struct asn1_cursor *cursor,
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extern int asn1_signature_algorithm ( const struct asn1_cursor *cursor,
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struct asn1_algorithm **algorithm );
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extern int asn1_curve_algorithm ( const struct asn1_cursor *cursor,
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struct asn1_algorithm *wrapper,
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struct asn1_algorithm **algorithm );
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extern int asn1_check_algorithm ( const struct asn1_cursor *cursor,
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struct asn1_algorithm *expected,
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