158 lines
3.8 KiB
C
158 lines
3.8 KiB
C
// Copyright (C) 1995-1998 Eric Young (eay@cryptsoft.com) All rights reserved.
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// SPDX-License-Identifier: Apache-2.0
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#include <openssl/x509.h>
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#include <limits.h>
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#include <openssl/asn1.h>
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#include <openssl/asn1t.h>
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#include <openssl/bytestring.h>
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#include <openssl/err.h>
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#include <openssl/evp.h>
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#include <openssl/mem.h>
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#include <openssl/obj.h>
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#include "../internal.h"
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#include "internal.h"
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static void x509_pubkey_changed(X509_PUBKEY *pub) {
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EVP_PKEY_free(pub->pkey);
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pub->pkey = NULL;
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// Re-encode the |X509_PUBKEY| to DER and parse it with EVP's APIs.
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uint8_t *spki = NULL;
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int spki_len = i2d_X509_PUBKEY(pub, &spki);
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if (spki_len < 0) {
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goto err;
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}
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CBS cbs;
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CBS_init(&cbs, spki, (size_t)spki_len);
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EVP_PKEY *pkey = EVP_parse_public_key(&cbs);
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if (pkey == NULL || CBS_len(&cbs) != 0) {
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EVP_PKEY_free(pkey);
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goto err;
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}
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pub->pkey = pkey;
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err:
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OPENSSL_free(spki);
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// If the operation failed, clear errors. An |X509_PUBKEY| whose key we cannot
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// parse is still a valid SPKI. It just cannot be converted to an |EVP_PKEY|.
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ERR_clear_error();
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}
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static int pubkey_cb(int operation, ASN1_VALUE **pval, const ASN1_ITEM *it,
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void *exarg) {
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X509_PUBKEY *pubkey = (X509_PUBKEY *)*pval;
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if (operation == ASN1_OP_FREE_POST) {
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EVP_PKEY_free(pubkey->pkey);
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} else if (operation == ASN1_OP_D2I_POST) {
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x509_pubkey_changed(pubkey);
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}
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return 1;
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}
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ASN1_SEQUENCE_cb(X509_PUBKEY, pubkey_cb) = {
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ASN1_SIMPLE(X509_PUBKEY, algor, X509_ALGOR),
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ASN1_SIMPLE(X509_PUBKEY, public_key, ASN1_BIT_STRING),
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} ASN1_SEQUENCE_END_cb(X509_PUBKEY, X509_PUBKEY)
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IMPLEMENT_ASN1_FUNCTIONS_const(X509_PUBKEY)
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int X509_PUBKEY_set(X509_PUBKEY **x, EVP_PKEY *pkey) {
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X509_PUBKEY *pk = NULL;
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uint8_t *spki = NULL;
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size_t spki_len;
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if (x == NULL) {
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return 0;
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}
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CBB cbb;
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if (!CBB_init(&cbb, 0) || //
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!EVP_marshal_public_key(&cbb, pkey) ||
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!CBB_finish(&cbb, &spki, &spki_len) || //
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spki_len > LONG_MAX) {
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CBB_cleanup(&cbb);
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OPENSSL_PUT_ERROR(X509, X509_R_PUBLIC_KEY_ENCODE_ERROR);
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goto error;
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}
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const uint8_t *p = spki;
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pk = d2i_X509_PUBKEY(NULL, &p, (long)spki_len);
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if (pk == NULL || p != spki + spki_len) {
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OPENSSL_PUT_ERROR(X509, X509_R_PUBLIC_KEY_DECODE_ERROR);
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goto error;
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}
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OPENSSL_free(spki);
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X509_PUBKEY_free(*x);
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*x = pk;
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return 1;
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error:
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X509_PUBKEY_free(pk);
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OPENSSL_free(spki);
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return 0;
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}
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EVP_PKEY *X509_PUBKEY_get0(const X509_PUBKEY *key) {
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if (key == NULL) {
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return NULL;
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}
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if (key->pkey == NULL) {
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OPENSSL_PUT_ERROR(X509, X509_R_PUBLIC_KEY_DECODE_ERROR);
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return NULL;
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}
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return key->pkey;
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}
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EVP_PKEY *X509_PUBKEY_get(const X509_PUBKEY *key) {
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EVP_PKEY *pkey = X509_PUBKEY_get0(key);
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if (pkey != NULL) {
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EVP_PKEY_up_ref(pkey);
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}
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return pkey;
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}
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int X509_PUBKEY_set0_param(X509_PUBKEY *pub, ASN1_OBJECT *obj, int param_type,
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void *param_value, uint8_t *key, int key_len) {
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if (!X509_ALGOR_set0(pub->algor, obj, param_type, param_value)) {
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return 0;
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}
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ASN1_STRING_set0(pub->public_key, key, key_len);
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// Set the number of unused bits to zero.
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pub->public_key->flags &= ~(ASN1_STRING_FLAG_BITS_LEFT | 0x07);
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pub->public_key->flags |= ASN1_STRING_FLAG_BITS_LEFT;
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x509_pubkey_changed(pub);
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return 1;
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}
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int X509_PUBKEY_get0_param(ASN1_OBJECT **out_obj, const uint8_t **out_key,
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int *out_key_len, X509_ALGOR **out_alg,
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X509_PUBKEY *pub) {
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if (out_obj != NULL) {
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*out_obj = pub->algor->algorithm;
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}
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if (out_key != NULL) {
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*out_key = pub->public_key->data;
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*out_key_len = pub->public_key->length;
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}
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if (out_alg != NULL) {
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*out_alg = pub->algor;
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}
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return 1;
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}
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const ASN1_BIT_STRING *X509_PUBKEY_get0_public_key(const X509_PUBKEY *pub) {
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return pub->public_key;
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}
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