193 lines
5.9 KiB
C
193 lines
5.9 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/asn1.h>
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#include <assert.h>
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#include <stdlib.h>
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#include <string.h>
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#include <openssl/err.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 "../lhash/internal.h"
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#include "internal.h"
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DEFINE_LHASH_OF(ASN1_STRING_TABLE)
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static LHASH_OF(ASN1_STRING_TABLE) *string_tables = NULL;
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static struct CRYPTO_STATIC_MUTEX string_tables_lock = CRYPTO_STATIC_MUTEX_INIT;
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void ASN1_STRING_set_default_mask(unsigned long mask) {}
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unsigned long ASN1_STRING_get_default_mask(void) { return B_ASN1_UTF8STRING; }
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int ASN1_STRING_set_default_mask_asc(const char *p) { return 1; }
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static const ASN1_STRING_TABLE *asn1_string_table_get(int nid);
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// The following function generates an ASN1_STRING based on limits in a
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// table. Frequently the types and length of an ASN1_STRING are restricted by
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// a corresponding OID. For example certificates and certificate requests.
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ASN1_STRING *ASN1_STRING_set_by_NID(ASN1_STRING **out, const unsigned char *in,
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ossl_ssize_t len, int inform, int nid) {
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ASN1_STRING *str = NULL;
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int ret;
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if (!out) {
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out = &str;
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}
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const ASN1_STRING_TABLE *tbl = asn1_string_table_get(nid);
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if (tbl != NULL) {
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unsigned long mask = tbl->mask;
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if (!(tbl->flags & STABLE_NO_MASK)) {
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mask &= B_ASN1_UTF8STRING;
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}
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ret = ASN1_mbstring_ncopy(out, in, len, inform, mask, tbl->minsize,
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tbl->maxsize);
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} else {
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ret = ASN1_mbstring_copy(out, in, len, inform, B_ASN1_UTF8STRING);
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}
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if (ret <= 0) {
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return NULL;
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}
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return *out;
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}
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// Now the tables and helper functions for the string table:
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// See RFC 5280.
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#define ub_name 32768
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#define ub_common_name 64
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#define ub_locality_name 128
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#define ub_state_name 128
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#define ub_organization_name 64
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#define ub_organization_unit_name 64
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#define ub_email_address 128
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#define ub_serial_number 64
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// This table must be kept in NID order
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static const ASN1_STRING_TABLE tbl_standard[] = {
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{NID_commonName, 1, ub_common_name, DIRSTRING_TYPE, 0},
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{NID_countryName, 2, 2, B_ASN1_PRINTABLESTRING, STABLE_NO_MASK},
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{NID_localityName, 1, ub_locality_name, DIRSTRING_TYPE, 0},
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{NID_stateOrProvinceName, 1, ub_state_name, DIRSTRING_TYPE, 0},
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{NID_organizationName, 1, ub_organization_name, DIRSTRING_TYPE, 0},
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{NID_organizationalUnitName, 1, ub_organization_unit_name, DIRSTRING_TYPE,
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0},
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{NID_pkcs9_emailAddress, 1, ub_email_address, B_ASN1_IA5STRING,
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STABLE_NO_MASK},
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{NID_pkcs9_unstructuredName, 1, -1, PKCS9STRING_TYPE, 0},
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{NID_pkcs9_challengePassword, 1, -1, PKCS9STRING_TYPE, 0},
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{NID_pkcs9_unstructuredAddress, 1, -1, DIRSTRING_TYPE, 0},
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{NID_givenName, 1, ub_name, DIRSTRING_TYPE, 0},
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{NID_surname, 1, ub_name, DIRSTRING_TYPE, 0},
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{NID_initials, 1, ub_name, DIRSTRING_TYPE, 0},
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{NID_serialNumber, 1, ub_serial_number, B_ASN1_PRINTABLESTRING,
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STABLE_NO_MASK},
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{NID_friendlyName, -1, -1, B_ASN1_BMPSTRING, STABLE_NO_MASK},
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{NID_name, 1, ub_name, DIRSTRING_TYPE, 0},
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{NID_dnQualifier, -1, -1, B_ASN1_PRINTABLESTRING, STABLE_NO_MASK},
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{NID_domainComponent, 1, -1, B_ASN1_IA5STRING, STABLE_NO_MASK},
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{NID_ms_csp_name, -1, -1, B_ASN1_BMPSTRING, STABLE_NO_MASK}};
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static int table_cmp(const ASN1_STRING_TABLE *a, const ASN1_STRING_TABLE *b) {
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if (a->nid < b->nid) {
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return -1;
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}
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if (a->nid > b->nid) {
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return 1;
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}
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return 0;
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}
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static int table_cmp_void(const void *a, const void *b) {
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return table_cmp(a, b);
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}
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static uint32_t table_hash(const ASN1_STRING_TABLE *tbl) {
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return OPENSSL_hash32(&tbl->nid, sizeof(tbl->nid));
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}
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static const ASN1_STRING_TABLE *asn1_string_table_get(int nid) {
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ASN1_STRING_TABLE key;
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key.nid = nid;
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const ASN1_STRING_TABLE *tbl =
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bsearch(&key, tbl_standard, OPENSSL_ARRAY_SIZE(tbl_standard),
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sizeof(ASN1_STRING_TABLE), table_cmp_void);
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if (tbl != NULL) {
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return tbl;
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}
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CRYPTO_STATIC_MUTEX_lock_read(&string_tables_lock);
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if (string_tables != NULL) {
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tbl = lh_ASN1_STRING_TABLE_retrieve(string_tables, &key);
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}
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CRYPTO_STATIC_MUTEX_unlock_read(&string_tables_lock);
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// Note returning |tbl| without the lock is only safe because
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// |ASN1_STRING_TABLE_add| cannot modify or delete existing entries. If we
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// wish to support that, this function must copy the result under a lock.
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return tbl;
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}
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int ASN1_STRING_TABLE_add(int nid, long minsize, long maxsize,
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unsigned long mask, unsigned long flags) {
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// Existing entries cannot be overwritten.
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if (asn1_string_table_get(nid) != NULL) {
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OPENSSL_PUT_ERROR(ASN1, ERR_R_SHOULD_NOT_HAVE_BEEN_CALLED);
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return 0;
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}
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int ret = 0;
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CRYPTO_STATIC_MUTEX_lock_write(&string_tables_lock);
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if (string_tables == NULL) {
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string_tables = lh_ASN1_STRING_TABLE_new(table_hash, table_cmp);
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if (string_tables == NULL) {
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goto err;
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}
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} else {
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// Check again for an existing entry. One may have been added while
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// unlocked.
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ASN1_STRING_TABLE key;
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key.nid = nid;
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if (lh_ASN1_STRING_TABLE_retrieve(string_tables, &key) != NULL) {
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OPENSSL_PUT_ERROR(ASN1, ERR_R_SHOULD_NOT_HAVE_BEEN_CALLED);
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goto err;
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}
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}
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ASN1_STRING_TABLE *tbl = OPENSSL_malloc(sizeof(ASN1_STRING_TABLE));
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if (tbl == NULL) {
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goto err;
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}
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tbl->nid = nid;
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tbl->flags = flags;
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tbl->minsize = minsize;
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tbl->maxsize = maxsize;
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tbl->mask = mask;
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ASN1_STRING_TABLE *old_tbl;
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if (!lh_ASN1_STRING_TABLE_insert(string_tables, &old_tbl, tbl)) {
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OPENSSL_free(tbl);
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goto err;
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}
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assert(old_tbl == NULL);
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ret = 1;
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err:
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CRYPTO_STATIC_MUTEX_unlock_write(&string_tables_lock);
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return ret;
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}
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void ASN1_STRING_TABLE_cleanup(void) {}
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void asn1_get_string_table_for_testing(const ASN1_STRING_TABLE **out_ptr,
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size_t *out_len) {
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*out_ptr = tbl_standard;
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*out_len = OPENSSL_ARRAY_SIZE(tbl_standard);
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}
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