1e1051a39Sopenharmony_ci/* 2e1051a39Sopenharmony_ci * Copyright 2006-2022 The OpenSSL Project Authors. All Rights Reserved. 3e1051a39Sopenharmony_ci * 4e1051a39Sopenharmony_ci * Licensed under the Apache License 2.0 (the "License"). You may not use 5e1051a39Sopenharmony_ci * this file except in compliance with the License. You can obtain a copy 6e1051a39Sopenharmony_ci * in the file LICENSE in the source distribution or at 7e1051a39Sopenharmony_ci * https://www.openssl.org/source/license.html 8e1051a39Sopenharmony_ci */ 9e1051a39Sopenharmony_ci 10e1051a39Sopenharmony_ci/* 11e1051a39Sopenharmony_ci * Implementation of RFC 3779 section 2.2. 12e1051a39Sopenharmony_ci */ 13e1051a39Sopenharmony_ci 14e1051a39Sopenharmony_ci#include <stdio.h> 15e1051a39Sopenharmony_ci#include <stdlib.h> 16e1051a39Sopenharmony_ci#include <assert.h> 17e1051a39Sopenharmony_ci#include <string.h> 18e1051a39Sopenharmony_ci 19e1051a39Sopenharmony_ci#include "internal/cryptlib.h" 20e1051a39Sopenharmony_ci#include <openssl/conf.h> 21e1051a39Sopenharmony_ci#include <openssl/asn1.h> 22e1051a39Sopenharmony_ci#include <openssl/asn1t.h> 23e1051a39Sopenharmony_ci#include <openssl/buffer.h> 24e1051a39Sopenharmony_ci#include <openssl/x509v3.h> 25e1051a39Sopenharmony_ci#include "crypto/x509.h" 26e1051a39Sopenharmony_ci#include "ext_dat.h" 27e1051a39Sopenharmony_ci#include "x509_local.h" 28e1051a39Sopenharmony_ci 29e1051a39Sopenharmony_ci#ifndef OPENSSL_NO_RFC3779 30e1051a39Sopenharmony_ci 31e1051a39Sopenharmony_ci/* 32e1051a39Sopenharmony_ci * OpenSSL ASN.1 template translation of RFC 3779 2.2.3. 33e1051a39Sopenharmony_ci */ 34e1051a39Sopenharmony_ci 35e1051a39Sopenharmony_ciASN1_SEQUENCE(IPAddressRange) = { 36e1051a39Sopenharmony_ci ASN1_SIMPLE(IPAddressRange, min, ASN1_BIT_STRING), 37e1051a39Sopenharmony_ci ASN1_SIMPLE(IPAddressRange, max, ASN1_BIT_STRING) 38e1051a39Sopenharmony_ci} ASN1_SEQUENCE_END(IPAddressRange) 39e1051a39Sopenharmony_ci 40e1051a39Sopenharmony_ciASN1_CHOICE(IPAddressOrRange) = { 41e1051a39Sopenharmony_ci ASN1_SIMPLE(IPAddressOrRange, u.addressPrefix, ASN1_BIT_STRING), 42e1051a39Sopenharmony_ci ASN1_SIMPLE(IPAddressOrRange, u.addressRange, IPAddressRange) 43e1051a39Sopenharmony_ci} ASN1_CHOICE_END(IPAddressOrRange) 44e1051a39Sopenharmony_ci 45e1051a39Sopenharmony_ciASN1_CHOICE(IPAddressChoice) = { 46e1051a39Sopenharmony_ci ASN1_SIMPLE(IPAddressChoice, u.inherit, ASN1_NULL), 47e1051a39Sopenharmony_ci ASN1_SEQUENCE_OF(IPAddressChoice, u.addressesOrRanges, IPAddressOrRange) 48e1051a39Sopenharmony_ci} ASN1_CHOICE_END(IPAddressChoice) 49e1051a39Sopenharmony_ci 50e1051a39Sopenharmony_ciASN1_SEQUENCE(IPAddressFamily) = { 51e1051a39Sopenharmony_ci ASN1_SIMPLE(IPAddressFamily, addressFamily, ASN1_OCTET_STRING), 52e1051a39Sopenharmony_ci ASN1_SIMPLE(IPAddressFamily, ipAddressChoice, IPAddressChoice) 53e1051a39Sopenharmony_ci} ASN1_SEQUENCE_END(IPAddressFamily) 54e1051a39Sopenharmony_ci 55e1051a39Sopenharmony_ciASN1_ITEM_TEMPLATE(IPAddrBlocks) = 56e1051a39Sopenharmony_ci ASN1_EX_TEMPLATE_TYPE(ASN1_TFLG_SEQUENCE_OF, 0, 57e1051a39Sopenharmony_ci IPAddrBlocks, IPAddressFamily) 58e1051a39Sopenharmony_cistatic_ASN1_ITEM_TEMPLATE_END(IPAddrBlocks) 59e1051a39Sopenharmony_ci 60e1051a39Sopenharmony_ciIMPLEMENT_ASN1_FUNCTIONS(IPAddressRange) 61e1051a39Sopenharmony_ciIMPLEMENT_ASN1_FUNCTIONS(IPAddressOrRange) 62e1051a39Sopenharmony_ciIMPLEMENT_ASN1_FUNCTIONS(IPAddressChoice) 63e1051a39Sopenharmony_ciIMPLEMENT_ASN1_FUNCTIONS(IPAddressFamily) 64e1051a39Sopenharmony_ci 65e1051a39Sopenharmony_ci/* 66e1051a39Sopenharmony_ci * How much buffer space do we need for a raw address? 67e1051a39Sopenharmony_ci */ 68e1051a39Sopenharmony_ci#define ADDR_RAW_BUF_LEN 16 69e1051a39Sopenharmony_ci 70e1051a39Sopenharmony_ci/* 71e1051a39Sopenharmony_ci * What's the address length associated with this AFI? 72e1051a39Sopenharmony_ci */ 73e1051a39Sopenharmony_cistatic int length_from_afi(const unsigned afi) 74e1051a39Sopenharmony_ci{ 75e1051a39Sopenharmony_ci switch (afi) { 76e1051a39Sopenharmony_ci case IANA_AFI_IPV4: 77e1051a39Sopenharmony_ci return 4; 78e1051a39Sopenharmony_ci case IANA_AFI_IPV6: 79e1051a39Sopenharmony_ci return 16; 80e1051a39Sopenharmony_ci default: 81e1051a39Sopenharmony_ci return 0; 82e1051a39Sopenharmony_ci } 83e1051a39Sopenharmony_ci} 84e1051a39Sopenharmony_ci 85e1051a39Sopenharmony_ci/* 86e1051a39Sopenharmony_ci * Extract the AFI from an IPAddressFamily. 87e1051a39Sopenharmony_ci */ 88e1051a39Sopenharmony_ciunsigned int X509v3_addr_get_afi(const IPAddressFamily *f) 89e1051a39Sopenharmony_ci{ 90e1051a39Sopenharmony_ci if (f == NULL 91e1051a39Sopenharmony_ci || f->addressFamily == NULL 92e1051a39Sopenharmony_ci || f->addressFamily->data == NULL 93e1051a39Sopenharmony_ci || f->addressFamily->length < 2) 94e1051a39Sopenharmony_ci return 0; 95e1051a39Sopenharmony_ci return (f->addressFamily->data[0] << 8) | f->addressFamily->data[1]; 96e1051a39Sopenharmony_ci} 97e1051a39Sopenharmony_ci 98e1051a39Sopenharmony_ci/* 99e1051a39Sopenharmony_ci * Expand the bitstring form of an address into a raw byte array. 100e1051a39Sopenharmony_ci * At the moment this is coded for simplicity, not speed. 101e1051a39Sopenharmony_ci */ 102e1051a39Sopenharmony_cistatic int addr_expand(unsigned char *addr, 103e1051a39Sopenharmony_ci const ASN1_BIT_STRING *bs, 104e1051a39Sopenharmony_ci const int length, const unsigned char fill) 105e1051a39Sopenharmony_ci{ 106e1051a39Sopenharmony_ci if (bs->length < 0 || bs->length > length) 107e1051a39Sopenharmony_ci return 0; 108e1051a39Sopenharmony_ci if (bs->length > 0) { 109e1051a39Sopenharmony_ci memcpy(addr, bs->data, bs->length); 110e1051a39Sopenharmony_ci if ((bs->flags & 7) != 0) { 111e1051a39Sopenharmony_ci unsigned char mask = 0xFF >> (8 - (bs->flags & 7)); 112e1051a39Sopenharmony_ci if (fill == 0) 113e1051a39Sopenharmony_ci addr[bs->length - 1] &= ~mask; 114e1051a39Sopenharmony_ci else 115e1051a39Sopenharmony_ci addr[bs->length - 1] |= mask; 116e1051a39Sopenharmony_ci } 117e1051a39Sopenharmony_ci } 118e1051a39Sopenharmony_ci memset(addr + bs->length, fill, length - bs->length); 119e1051a39Sopenharmony_ci return 1; 120e1051a39Sopenharmony_ci} 121e1051a39Sopenharmony_ci 122e1051a39Sopenharmony_ci/* 123e1051a39Sopenharmony_ci * Extract the prefix length from a bitstring. 124e1051a39Sopenharmony_ci */ 125e1051a39Sopenharmony_ci#define addr_prefixlen(bs) ((int) ((bs)->length * 8 - ((bs)->flags & 7))) 126e1051a39Sopenharmony_ci 127e1051a39Sopenharmony_ci/* 128e1051a39Sopenharmony_ci * i2r handler for one address bitstring. 129e1051a39Sopenharmony_ci */ 130e1051a39Sopenharmony_cistatic int i2r_address(BIO *out, 131e1051a39Sopenharmony_ci const unsigned afi, 132e1051a39Sopenharmony_ci const unsigned char fill, const ASN1_BIT_STRING *bs) 133e1051a39Sopenharmony_ci{ 134e1051a39Sopenharmony_ci unsigned char addr[ADDR_RAW_BUF_LEN]; 135e1051a39Sopenharmony_ci int i, n; 136e1051a39Sopenharmony_ci 137e1051a39Sopenharmony_ci if (bs->length < 0) 138e1051a39Sopenharmony_ci return 0; 139e1051a39Sopenharmony_ci switch (afi) { 140e1051a39Sopenharmony_ci case IANA_AFI_IPV4: 141e1051a39Sopenharmony_ci if (!addr_expand(addr, bs, 4, fill)) 142e1051a39Sopenharmony_ci return 0; 143e1051a39Sopenharmony_ci BIO_printf(out, "%d.%d.%d.%d", addr[0], addr[1], addr[2], addr[3]); 144e1051a39Sopenharmony_ci break; 145e1051a39Sopenharmony_ci case IANA_AFI_IPV6: 146e1051a39Sopenharmony_ci if (!addr_expand(addr, bs, 16, fill)) 147e1051a39Sopenharmony_ci return 0; 148e1051a39Sopenharmony_ci for (n = 16; n > 1 && addr[n - 1] == 0x00 && addr[n - 2] == 0x00; 149e1051a39Sopenharmony_ci n -= 2) ; 150e1051a39Sopenharmony_ci for (i = 0; i < n; i += 2) 151e1051a39Sopenharmony_ci BIO_printf(out, "%x%s", (addr[i] << 8) | addr[i + 1], 152e1051a39Sopenharmony_ci (i < 14 ? ":" : "")); 153e1051a39Sopenharmony_ci if (i < 16) 154e1051a39Sopenharmony_ci BIO_puts(out, ":"); 155e1051a39Sopenharmony_ci if (i == 0) 156e1051a39Sopenharmony_ci BIO_puts(out, ":"); 157e1051a39Sopenharmony_ci break; 158e1051a39Sopenharmony_ci default: 159e1051a39Sopenharmony_ci for (i = 0; i < bs->length; i++) 160e1051a39Sopenharmony_ci BIO_printf(out, "%s%02x", (i > 0 ? ":" : ""), bs->data[i]); 161e1051a39Sopenharmony_ci BIO_printf(out, "[%d]", (int)(bs->flags & 7)); 162e1051a39Sopenharmony_ci break; 163e1051a39Sopenharmony_ci } 164e1051a39Sopenharmony_ci return 1; 165e1051a39Sopenharmony_ci} 166e1051a39Sopenharmony_ci 167e1051a39Sopenharmony_ci/* 168e1051a39Sopenharmony_ci * i2r handler for a sequence of addresses and ranges. 169e1051a39Sopenharmony_ci */ 170e1051a39Sopenharmony_cistatic int i2r_IPAddressOrRanges(BIO *out, 171e1051a39Sopenharmony_ci const int indent, 172e1051a39Sopenharmony_ci const IPAddressOrRanges *aors, 173e1051a39Sopenharmony_ci const unsigned afi) 174e1051a39Sopenharmony_ci{ 175e1051a39Sopenharmony_ci int i; 176e1051a39Sopenharmony_ci for (i = 0; i < sk_IPAddressOrRange_num(aors); i++) { 177e1051a39Sopenharmony_ci const IPAddressOrRange *aor = sk_IPAddressOrRange_value(aors, i); 178e1051a39Sopenharmony_ci BIO_printf(out, "%*s", indent, ""); 179e1051a39Sopenharmony_ci switch (aor->type) { 180e1051a39Sopenharmony_ci case IPAddressOrRange_addressPrefix: 181e1051a39Sopenharmony_ci if (!i2r_address(out, afi, 0x00, aor->u.addressPrefix)) 182e1051a39Sopenharmony_ci return 0; 183e1051a39Sopenharmony_ci BIO_printf(out, "/%d\n", addr_prefixlen(aor->u.addressPrefix)); 184e1051a39Sopenharmony_ci continue; 185e1051a39Sopenharmony_ci case IPAddressOrRange_addressRange: 186e1051a39Sopenharmony_ci if (!i2r_address(out, afi, 0x00, aor->u.addressRange->min)) 187e1051a39Sopenharmony_ci return 0; 188e1051a39Sopenharmony_ci BIO_puts(out, "-"); 189e1051a39Sopenharmony_ci if (!i2r_address(out, afi, 0xFF, aor->u.addressRange->max)) 190e1051a39Sopenharmony_ci return 0; 191e1051a39Sopenharmony_ci BIO_puts(out, "\n"); 192e1051a39Sopenharmony_ci continue; 193e1051a39Sopenharmony_ci } 194e1051a39Sopenharmony_ci } 195e1051a39Sopenharmony_ci return 1; 196e1051a39Sopenharmony_ci} 197e1051a39Sopenharmony_ci 198e1051a39Sopenharmony_ci/* 199e1051a39Sopenharmony_ci * i2r handler for an IPAddrBlocks extension. 200e1051a39Sopenharmony_ci */ 201e1051a39Sopenharmony_cistatic int i2r_IPAddrBlocks(const X509V3_EXT_METHOD *method, 202e1051a39Sopenharmony_ci void *ext, BIO *out, int indent) 203e1051a39Sopenharmony_ci{ 204e1051a39Sopenharmony_ci const IPAddrBlocks *addr = ext; 205e1051a39Sopenharmony_ci int i; 206e1051a39Sopenharmony_ci for (i = 0; i < sk_IPAddressFamily_num(addr); i++) { 207e1051a39Sopenharmony_ci IPAddressFamily *f = sk_IPAddressFamily_value(addr, i); 208e1051a39Sopenharmony_ci const unsigned int afi = X509v3_addr_get_afi(f); 209e1051a39Sopenharmony_ci switch (afi) { 210e1051a39Sopenharmony_ci case IANA_AFI_IPV4: 211e1051a39Sopenharmony_ci BIO_printf(out, "%*sIPv4", indent, ""); 212e1051a39Sopenharmony_ci break; 213e1051a39Sopenharmony_ci case IANA_AFI_IPV6: 214e1051a39Sopenharmony_ci BIO_printf(out, "%*sIPv6", indent, ""); 215e1051a39Sopenharmony_ci break; 216e1051a39Sopenharmony_ci default: 217e1051a39Sopenharmony_ci BIO_printf(out, "%*sUnknown AFI %u", indent, "", afi); 218e1051a39Sopenharmony_ci break; 219e1051a39Sopenharmony_ci } 220e1051a39Sopenharmony_ci if (f->addressFamily->length > 2) { 221e1051a39Sopenharmony_ci switch (f->addressFamily->data[2]) { 222e1051a39Sopenharmony_ci case 1: 223e1051a39Sopenharmony_ci BIO_puts(out, " (Unicast)"); 224e1051a39Sopenharmony_ci break; 225e1051a39Sopenharmony_ci case 2: 226e1051a39Sopenharmony_ci BIO_puts(out, " (Multicast)"); 227e1051a39Sopenharmony_ci break; 228e1051a39Sopenharmony_ci case 3: 229e1051a39Sopenharmony_ci BIO_puts(out, " (Unicast/Multicast)"); 230e1051a39Sopenharmony_ci break; 231e1051a39Sopenharmony_ci case 4: 232e1051a39Sopenharmony_ci BIO_puts(out, " (MPLS)"); 233e1051a39Sopenharmony_ci break; 234e1051a39Sopenharmony_ci case 64: 235e1051a39Sopenharmony_ci BIO_puts(out, " (Tunnel)"); 236e1051a39Sopenharmony_ci break; 237e1051a39Sopenharmony_ci case 65: 238e1051a39Sopenharmony_ci BIO_puts(out, " (VPLS)"); 239e1051a39Sopenharmony_ci break; 240e1051a39Sopenharmony_ci case 66: 241e1051a39Sopenharmony_ci BIO_puts(out, " (BGP MDT)"); 242e1051a39Sopenharmony_ci break; 243e1051a39Sopenharmony_ci case 128: 244e1051a39Sopenharmony_ci BIO_puts(out, " (MPLS-labeled VPN)"); 245e1051a39Sopenharmony_ci break; 246e1051a39Sopenharmony_ci default: 247e1051a39Sopenharmony_ci BIO_printf(out, " (Unknown SAFI %u)", 248e1051a39Sopenharmony_ci (unsigned)f->addressFamily->data[2]); 249e1051a39Sopenharmony_ci break; 250e1051a39Sopenharmony_ci } 251e1051a39Sopenharmony_ci } 252e1051a39Sopenharmony_ci switch (f->ipAddressChoice->type) { 253e1051a39Sopenharmony_ci case IPAddressChoice_inherit: 254e1051a39Sopenharmony_ci BIO_puts(out, ": inherit\n"); 255e1051a39Sopenharmony_ci break; 256e1051a39Sopenharmony_ci case IPAddressChoice_addressesOrRanges: 257e1051a39Sopenharmony_ci BIO_puts(out, ":\n"); 258e1051a39Sopenharmony_ci if (!i2r_IPAddressOrRanges(out, 259e1051a39Sopenharmony_ci indent + 2, 260e1051a39Sopenharmony_ci f->ipAddressChoice-> 261e1051a39Sopenharmony_ci u.addressesOrRanges, afi)) 262e1051a39Sopenharmony_ci return 0; 263e1051a39Sopenharmony_ci break; 264e1051a39Sopenharmony_ci } 265e1051a39Sopenharmony_ci } 266e1051a39Sopenharmony_ci return 1; 267e1051a39Sopenharmony_ci} 268e1051a39Sopenharmony_ci 269e1051a39Sopenharmony_ci/* 270e1051a39Sopenharmony_ci * Sort comparison function for a sequence of IPAddressOrRange 271e1051a39Sopenharmony_ci * elements. 272e1051a39Sopenharmony_ci * 273e1051a39Sopenharmony_ci * There's no sane answer we can give if addr_expand() fails, and an 274e1051a39Sopenharmony_ci * assertion failure on externally supplied data is seriously uncool, 275e1051a39Sopenharmony_ci * so we just arbitrarily declare that if given invalid inputs this 276e1051a39Sopenharmony_ci * function returns -1. If this messes up your preferred sort order 277e1051a39Sopenharmony_ci * for garbage input, tough noogies. 278e1051a39Sopenharmony_ci */ 279e1051a39Sopenharmony_cistatic int IPAddressOrRange_cmp(const IPAddressOrRange *a, 280e1051a39Sopenharmony_ci const IPAddressOrRange *b, const int length) 281e1051a39Sopenharmony_ci{ 282e1051a39Sopenharmony_ci unsigned char addr_a[ADDR_RAW_BUF_LEN], addr_b[ADDR_RAW_BUF_LEN]; 283e1051a39Sopenharmony_ci int prefixlen_a = 0, prefixlen_b = 0; 284e1051a39Sopenharmony_ci int r; 285e1051a39Sopenharmony_ci 286e1051a39Sopenharmony_ci switch (a->type) { 287e1051a39Sopenharmony_ci case IPAddressOrRange_addressPrefix: 288e1051a39Sopenharmony_ci if (!addr_expand(addr_a, a->u.addressPrefix, length, 0x00)) 289e1051a39Sopenharmony_ci return -1; 290e1051a39Sopenharmony_ci prefixlen_a = addr_prefixlen(a->u.addressPrefix); 291e1051a39Sopenharmony_ci break; 292e1051a39Sopenharmony_ci case IPAddressOrRange_addressRange: 293e1051a39Sopenharmony_ci if (!addr_expand(addr_a, a->u.addressRange->min, length, 0x00)) 294e1051a39Sopenharmony_ci return -1; 295e1051a39Sopenharmony_ci prefixlen_a = length * 8; 296e1051a39Sopenharmony_ci break; 297e1051a39Sopenharmony_ci } 298e1051a39Sopenharmony_ci 299e1051a39Sopenharmony_ci switch (b->type) { 300e1051a39Sopenharmony_ci case IPAddressOrRange_addressPrefix: 301e1051a39Sopenharmony_ci if (!addr_expand(addr_b, b->u.addressPrefix, length, 0x00)) 302e1051a39Sopenharmony_ci return -1; 303e1051a39Sopenharmony_ci prefixlen_b = addr_prefixlen(b->u.addressPrefix); 304e1051a39Sopenharmony_ci break; 305e1051a39Sopenharmony_ci case IPAddressOrRange_addressRange: 306e1051a39Sopenharmony_ci if (!addr_expand(addr_b, b->u.addressRange->min, length, 0x00)) 307e1051a39Sopenharmony_ci return -1; 308e1051a39Sopenharmony_ci prefixlen_b = length * 8; 309e1051a39Sopenharmony_ci break; 310e1051a39Sopenharmony_ci } 311e1051a39Sopenharmony_ci 312e1051a39Sopenharmony_ci if ((r = memcmp(addr_a, addr_b, length)) != 0) 313e1051a39Sopenharmony_ci return r; 314e1051a39Sopenharmony_ci else 315e1051a39Sopenharmony_ci return prefixlen_a - prefixlen_b; 316e1051a39Sopenharmony_ci} 317e1051a39Sopenharmony_ci 318e1051a39Sopenharmony_ci/* 319e1051a39Sopenharmony_ci * IPv4-specific closure over IPAddressOrRange_cmp, since sk_sort() 320e1051a39Sopenharmony_ci * comparison routines are only allowed two arguments. 321e1051a39Sopenharmony_ci */ 322e1051a39Sopenharmony_cistatic int v4IPAddressOrRange_cmp(const IPAddressOrRange *const *a, 323e1051a39Sopenharmony_ci const IPAddressOrRange *const *b) 324e1051a39Sopenharmony_ci{ 325e1051a39Sopenharmony_ci return IPAddressOrRange_cmp(*a, *b, 4); 326e1051a39Sopenharmony_ci} 327e1051a39Sopenharmony_ci 328e1051a39Sopenharmony_ci/* 329e1051a39Sopenharmony_ci * IPv6-specific closure over IPAddressOrRange_cmp, since sk_sort() 330e1051a39Sopenharmony_ci * comparison routines are only allowed two arguments. 331e1051a39Sopenharmony_ci */ 332e1051a39Sopenharmony_cistatic int v6IPAddressOrRange_cmp(const IPAddressOrRange *const *a, 333e1051a39Sopenharmony_ci const IPAddressOrRange *const *b) 334e1051a39Sopenharmony_ci{ 335e1051a39Sopenharmony_ci return IPAddressOrRange_cmp(*a, *b, 16); 336e1051a39Sopenharmony_ci} 337e1051a39Sopenharmony_ci 338e1051a39Sopenharmony_ci/* 339e1051a39Sopenharmony_ci * Calculate whether a range collapses to a prefix. 340e1051a39Sopenharmony_ci * See last paragraph of RFC 3779 2.2.3.7. 341e1051a39Sopenharmony_ci */ 342e1051a39Sopenharmony_cistatic int range_should_be_prefix(const unsigned char *min, 343e1051a39Sopenharmony_ci const unsigned char *max, const int length) 344e1051a39Sopenharmony_ci{ 345e1051a39Sopenharmony_ci unsigned char mask; 346e1051a39Sopenharmony_ci int i, j; 347e1051a39Sopenharmony_ci 348e1051a39Sopenharmony_ci /* 349e1051a39Sopenharmony_ci * It is the responsibility of the caller to confirm min <= max. We don't 350e1051a39Sopenharmony_ci * use ossl_assert() here since we have no way of signalling an error from 351e1051a39Sopenharmony_ci * this function - so we just use a plain assert instead. 352e1051a39Sopenharmony_ci */ 353e1051a39Sopenharmony_ci assert(memcmp(min, max, length) <= 0); 354e1051a39Sopenharmony_ci 355e1051a39Sopenharmony_ci for (i = 0; i < length && min[i] == max[i]; i++) ; 356e1051a39Sopenharmony_ci for (j = length - 1; j >= 0 && min[j] == 0x00 && max[j] == 0xFF; j--) ; 357e1051a39Sopenharmony_ci if (i < j) 358e1051a39Sopenharmony_ci return -1; 359e1051a39Sopenharmony_ci if (i > j) 360e1051a39Sopenharmony_ci return i * 8; 361e1051a39Sopenharmony_ci mask = min[i] ^ max[i]; 362e1051a39Sopenharmony_ci switch (mask) { 363e1051a39Sopenharmony_ci case 0x01: 364e1051a39Sopenharmony_ci j = 7; 365e1051a39Sopenharmony_ci break; 366e1051a39Sopenharmony_ci case 0x03: 367e1051a39Sopenharmony_ci j = 6; 368e1051a39Sopenharmony_ci break; 369e1051a39Sopenharmony_ci case 0x07: 370e1051a39Sopenharmony_ci j = 5; 371e1051a39Sopenharmony_ci break; 372e1051a39Sopenharmony_ci case 0x0F: 373e1051a39Sopenharmony_ci j = 4; 374e1051a39Sopenharmony_ci break; 375e1051a39Sopenharmony_ci case 0x1F: 376e1051a39Sopenharmony_ci j = 3; 377e1051a39Sopenharmony_ci break; 378e1051a39Sopenharmony_ci case 0x3F: 379e1051a39Sopenharmony_ci j = 2; 380e1051a39Sopenharmony_ci break; 381e1051a39Sopenharmony_ci case 0x7F: 382e1051a39Sopenharmony_ci j = 1; 383e1051a39Sopenharmony_ci break; 384e1051a39Sopenharmony_ci default: 385e1051a39Sopenharmony_ci return -1; 386e1051a39Sopenharmony_ci } 387e1051a39Sopenharmony_ci if ((min[i] & mask) != 0 || (max[i] & mask) != mask) 388e1051a39Sopenharmony_ci return -1; 389e1051a39Sopenharmony_ci else 390e1051a39Sopenharmony_ci return i * 8 + j; 391e1051a39Sopenharmony_ci} 392e1051a39Sopenharmony_ci 393e1051a39Sopenharmony_ci/* 394e1051a39Sopenharmony_ci * Construct a prefix. 395e1051a39Sopenharmony_ci */ 396e1051a39Sopenharmony_cistatic int make_addressPrefix(IPAddressOrRange **result, unsigned char *addr, 397e1051a39Sopenharmony_ci const int prefixlen, const int afilen) 398e1051a39Sopenharmony_ci{ 399e1051a39Sopenharmony_ci int bytelen = (prefixlen + 7) / 8, bitlen = prefixlen % 8; 400e1051a39Sopenharmony_ci IPAddressOrRange *aor = IPAddressOrRange_new(); 401e1051a39Sopenharmony_ci 402e1051a39Sopenharmony_ci if (prefixlen < 0 || prefixlen > (afilen * 8)) 403e1051a39Sopenharmony_ci return 0; 404e1051a39Sopenharmony_ci if (aor == NULL) 405e1051a39Sopenharmony_ci return 0; 406e1051a39Sopenharmony_ci aor->type = IPAddressOrRange_addressPrefix; 407e1051a39Sopenharmony_ci if (aor->u.addressPrefix == NULL && 408e1051a39Sopenharmony_ci (aor->u.addressPrefix = ASN1_BIT_STRING_new()) == NULL) 409e1051a39Sopenharmony_ci goto err; 410e1051a39Sopenharmony_ci if (!ASN1_BIT_STRING_set(aor->u.addressPrefix, addr, bytelen)) 411e1051a39Sopenharmony_ci goto err; 412e1051a39Sopenharmony_ci aor->u.addressPrefix->flags &= ~7; 413e1051a39Sopenharmony_ci aor->u.addressPrefix->flags |= ASN1_STRING_FLAG_BITS_LEFT; 414e1051a39Sopenharmony_ci if (bitlen > 0) { 415e1051a39Sopenharmony_ci aor->u.addressPrefix->data[bytelen - 1] &= ~(0xFF >> bitlen); 416e1051a39Sopenharmony_ci aor->u.addressPrefix->flags |= 8 - bitlen; 417e1051a39Sopenharmony_ci } 418e1051a39Sopenharmony_ci 419e1051a39Sopenharmony_ci *result = aor; 420e1051a39Sopenharmony_ci return 1; 421e1051a39Sopenharmony_ci 422e1051a39Sopenharmony_ci err: 423e1051a39Sopenharmony_ci IPAddressOrRange_free(aor); 424e1051a39Sopenharmony_ci return 0; 425e1051a39Sopenharmony_ci} 426e1051a39Sopenharmony_ci 427e1051a39Sopenharmony_ci/* 428e1051a39Sopenharmony_ci * Construct a range. If it can be expressed as a prefix, 429e1051a39Sopenharmony_ci * return a prefix instead. Doing this here simplifies 430e1051a39Sopenharmony_ci * the rest of the code considerably. 431e1051a39Sopenharmony_ci */ 432e1051a39Sopenharmony_cistatic int make_addressRange(IPAddressOrRange **result, 433e1051a39Sopenharmony_ci unsigned char *min, 434e1051a39Sopenharmony_ci unsigned char *max, const int length) 435e1051a39Sopenharmony_ci{ 436e1051a39Sopenharmony_ci IPAddressOrRange *aor; 437e1051a39Sopenharmony_ci int i, prefixlen; 438e1051a39Sopenharmony_ci 439e1051a39Sopenharmony_ci if (memcmp(min, max, length) > 0) 440e1051a39Sopenharmony_ci return 0; 441e1051a39Sopenharmony_ci 442e1051a39Sopenharmony_ci if ((prefixlen = range_should_be_prefix(min, max, length)) >= 0) 443e1051a39Sopenharmony_ci return make_addressPrefix(result, min, prefixlen, length); 444e1051a39Sopenharmony_ci 445e1051a39Sopenharmony_ci if ((aor = IPAddressOrRange_new()) == NULL) 446e1051a39Sopenharmony_ci return 0; 447e1051a39Sopenharmony_ci aor->type = IPAddressOrRange_addressRange; 448e1051a39Sopenharmony_ci if ((aor->u.addressRange = IPAddressRange_new()) == NULL) 449e1051a39Sopenharmony_ci goto err; 450e1051a39Sopenharmony_ci if (aor->u.addressRange->min == NULL && 451e1051a39Sopenharmony_ci (aor->u.addressRange->min = ASN1_BIT_STRING_new()) == NULL) 452e1051a39Sopenharmony_ci goto err; 453e1051a39Sopenharmony_ci if (aor->u.addressRange->max == NULL && 454e1051a39Sopenharmony_ci (aor->u.addressRange->max = ASN1_BIT_STRING_new()) == NULL) 455e1051a39Sopenharmony_ci goto err; 456e1051a39Sopenharmony_ci 457e1051a39Sopenharmony_ci for (i = length; i > 0 && min[i - 1] == 0x00; --i) ; 458e1051a39Sopenharmony_ci if (!ASN1_BIT_STRING_set(aor->u.addressRange->min, min, i)) 459e1051a39Sopenharmony_ci goto err; 460e1051a39Sopenharmony_ci aor->u.addressRange->min->flags &= ~7; 461e1051a39Sopenharmony_ci aor->u.addressRange->min->flags |= ASN1_STRING_FLAG_BITS_LEFT; 462e1051a39Sopenharmony_ci if (i > 0) { 463e1051a39Sopenharmony_ci unsigned char b = min[i - 1]; 464e1051a39Sopenharmony_ci int j = 1; 465e1051a39Sopenharmony_ci while ((b & (0xFFU >> j)) != 0) 466e1051a39Sopenharmony_ci ++j; 467e1051a39Sopenharmony_ci aor->u.addressRange->min->flags |= 8 - j; 468e1051a39Sopenharmony_ci } 469e1051a39Sopenharmony_ci 470e1051a39Sopenharmony_ci for (i = length; i > 0 && max[i - 1] == 0xFF; --i) ; 471e1051a39Sopenharmony_ci if (!ASN1_BIT_STRING_set(aor->u.addressRange->max, max, i)) 472e1051a39Sopenharmony_ci goto err; 473e1051a39Sopenharmony_ci aor->u.addressRange->max->flags &= ~7; 474e1051a39Sopenharmony_ci aor->u.addressRange->max->flags |= ASN1_STRING_FLAG_BITS_LEFT; 475e1051a39Sopenharmony_ci if (i > 0) { 476e1051a39Sopenharmony_ci unsigned char b = max[i - 1]; 477e1051a39Sopenharmony_ci int j = 1; 478e1051a39Sopenharmony_ci while ((b & (0xFFU >> j)) != (0xFFU >> j)) 479e1051a39Sopenharmony_ci ++j; 480e1051a39Sopenharmony_ci aor->u.addressRange->max->flags |= 8 - j; 481e1051a39Sopenharmony_ci } 482e1051a39Sopenharmony_ci 483e1051a39Sopenharmony_ci *result = aor; 484e1051a39Sopenharmony_ci return 1; 485e1051a39Sopenharmony_ci 486e1051a39Sopenharmony_ci err: 487e1051a39Sopenharmony_ci IPAddressOrRange_free(aor); 488e1051a39Sopenharmony_ci return 0; 489e1051a39Sopenharmony_ci} 490e1051a39Sopenharmony_ci 491e1051a39Sopenharmony_ci/* 492e1051a39Sopenharmony_ci * Construct a new address family or find an existing one. 493e1051a39Sopenharmony_ci */ 494e1051a39Sopenharmony_cistatic IPAddressFamily *make_IPAddressFamily(IPAddrBlocks *addr, 495e1051a39Sopenharmony_ci const unsigned afi, 496e1051a39Sopenharmony_ci const unsigned *safi) 497e1051a39Sopenharmony_ci{ 498e1051a39Sopenharmony_ci IPAddressFamily *f; 499e1051a39Sopenharmony_ci unsigned char key[3]; 500e1051a39Sopenharmony_ci int keylen; 501e1051a39Sopenharmony_ci int i; 502e1051a39Sopenharmony_ci 503e1051a39Sopenharmony_ci key[0] = (afi >> 8) & 0xFF; 504e1051a39Sopenharmony_ci key[1] = afi & 0xFF; 505e1051a39Sopenharmony_ci if (safi != NULL) { 506e1051a39Sopenharmony_ci key[2] = *safi & 0xFF; 507e1051a39Sopenharmony_ci keylen = 3; 508e1051a39Sopenharmony_ci } else { 509e1051a39Sopenharmony_ci keylen = 2; 510e1051a39Sopenharmony_ci } 511e1051a39Sopenharmony_ci 512e1051a39Sopenharmony_ci for (i = 0; i < sk_IPAddressFamily_num(addr); i++) { 513e1051a39Sopenharmony_ci f = sk_IPAddressFamily_value(addr, i); 514e1051a39Sopenharmony_ci if (f->addressFamily->length == keylen && 515e1051a39Sopenharmony_ci !memcmp(f->addressFamily->data, key, keylen)) 516e1051a39Sopenharmony_ci return f; 517e1051a39Sopenharmony_ci } 518e1051a39Sopenharmony_ci 519e1051a39Sopenharmony_ci if ((f = IPAddressFamily_new()) == NULL) 520e1051a39Sopenharmony_ci goto err; 521e1051a39Sopenharmony_ci if (f->ipAddressChoice == NULL && 522e1051a39Sopenharmony_ci (f->ipAddressChoice = IPAddressChoice_new()) == NULL) 523e1051a39Sopenharmony_ci goto err; 524e1051a39Sopenharmony_ci if (f->addressFamily == NULL && 525e1051a39Sopenharmony_ci (f->addressFamily = ASN1_OCTET_STRING_new()) == NULL) 526e1051a39Sopenharmony_ci goto err; 527e1051a39Sopenharmony_ci if (!ASN1_OCTET_STRING_set(f->addressFamily, key, keylen)) 528e1051a39Sopenharmony_ci goto err; 529e1051a39Sopenharmony_ci if (!sk_IPAddressFamily_push(addr, f)) 530e1051a39Sopenharmony_ci goto err; 531e1051a39Sopenharmony_ci 532e1051a39Sopenharmony_ci return f; 533e1051a39Sopenharmony_ci 534e1051a39Sopenharmony_ci err: 535e1051a39Sopenharmony_ci IPAddressFamily_free(f); 536e1051a39Sopenharmony_ci return NULL; 537e1051a39Sopenharmony_ci} 538e1051a39Sopenharmony_ci 539e1051a39Sopenharmony_ci/* 540e1051a39Sopenharmony_ci * Add an inheritance element. 541e1051a39Sopenharmony_ci */ 542e1051a39Sopenharmony_ciint X509v3_addr_add_inherit(IPAddrBlocks *addr, 543e1051a39Sopenharmony_ci const unsigned afi, const unsigned *safi) 544e1051a39Sopenharmony_ci{ 545e1051a39Sopenharmony_ci IPAddressFamily *f = make_IPAddressFamily(addr, afi, safi); 546e1051a39Sopenharmony_ci if (f == NULL || 547e1051a39Sopenharmony_ci f->ipAddressChoice == NULL || 548e1051a39Sopenharmony_ci (f->ipAddressChoice->type == IPAddressChoice_addressesOrRanges && 549e1051a39Sopenharmony_ci f->ipAddressChoice->u.addressesOrRanges != NULL)) 550e1051a39Sopenharmony_ci return 0; 551e1051a39Sopenharmony_ci if (f->ipAddressChoice->type == IPAddressChoice_inherit && 552e1051a39Sopenharmony_ci f->ipAddressChoice->u.inherit != NULL) 553e1051a39Sopenharmony_ci return 1; 554e1051a39Sopenharmony_ci if (f->ipAddressChoice->u.inherit == NULL && 555e1051a39Sopenharmony_ci (f->ipAddressChoice->u.inherit = ASN1_NULL_new()) == NULL) 556e1051a39Sopenharmony_ci return 0; 557e1051a39Sopenharmony_ci f->ipAddressChoice->type = IPAddressChoice_inherit; 558e1051a39Sopenharmony_ci return 1; 559e1051a39Sopenharmony_ci} 560e1051a39Sopenharmony_ci 561e1051a39Sopenharmony_ci/* 562e1051a39Sopenharmony_ci * Construct an IPAddressOrRange sequence, or return an existing one. 563e1051a39Sopenharmony_ci */ 564e1051a39Sopenharmony_cistatic IPAddressOrRanges *make_prefix_or_range(IPAddrBlocks *addr, 565e1051a39Sopenharmony_ci const unsigned afi, 566e1051a39Sopenharmony_ci const unsigned *safi) 567e1051a39Sopenharmony_ci{ 568e1051a39Sopenharmony_ci IPAddressFamily *f = make_IPAddressFamily(addr, afi, safi); 569e1051a39Sopenharmony_ci IPAddressOrRanges *aors = NULL; 570e1051a39Sopenharmony_ci 571e1051a39Sopenharmony_ci if (f == NULL || 572e1051a39Sopenharmony_ci f->ipAddressChoice == NULL || 573e1051a39Sopenharmony_ci (f->ipAddressChoice->type == IPAddressChoice_inherit && 574e1051a39Sopenharmony_ci f->ipAddressChoice->u.inherit != NULL)) 575e1051a39Sopenharmony_ci return NULL; 576e1051a39Sopenharmony_ci if (f->ipAddressChoice->type == IPAddressChoice_addressesOrRanges) 577e1051a39Sopenharmony_ci aors = f->ipAddressChoice->u.addressesOrRanges; 578e1051a39Sopenharmony_ci if (aors != NULL) 579e1051a39Sopenharmony_ci return aors; 580e1051a39Sopenharmony_ci if ((aors = sk_IPAddressOrRange_new_null()) == NULL) 581e1051a39Sopenharmony_ci return NULL; 582e1051a39Sopenharmony_ci switch (afi) { 583e1051a39Sopenharmony_ci case IANA_AFI_IPV4: 584e1051a39Sopenharmony_ci (void)sk_IPAddressOrRange_set_cmp_func(aors, v4IPAddressOrRange_cmp); 585e1051a39Sopenharmony_ci break; 586e1051a39Sopenharmony_ci case IANA_AFI_IPV6: 587e1051a39Sopenharmony_ci (void)sk_IPAddressOrRange_set_cmp_func(aors, v6IPAddressOrRange_cmp); 588e1051a39Sopenharmony_ci break; 589e1051a39Sopenharmony_ci } 590e1051a39Sopenharmony_ci f->ipAddressChoice->type = IPAddressChoice_addressesOrRanges; 591e1051a39Sopenharmony_ci f->ipAddressChoice->u.addressesOrRanges = aors; 592e1051a39Sopenharmony_ci return aors; 593e1051a39Sopenharmony_ci} 594e1051a39Sopenharmony_ci 595e1051a39Sopenharmony_ci/* 596e1051a39Sopenharmony_ci * Add a prefix. 597e1051a39Sopenharmony_ci */ 598e1051a39Sopenharmony_ciint X509v3_addr_add_prefix(IPAddrBlocks *addr, 599e1051a39Sopenharmony_ci const unsigned afi, 600e1051a39Sopenharmony_ci const unsigned *safi, 601e1051a39Sopenharmony_ci unsigned char *a, const int prefixlen) 602e1051a39Sopenharmony_ci{ 603e1051a39Sopenharmony_ci IPAddressOrRanges *aors = make_prefix_or_range(addr, afi, safi); 604e1051a39Sopenharmony_ci IPAddressOrRange *aor; 605e1051a39Sopenharmony_ci 606e1051a39Sopenharmony_ci if (aors == NULL 607e1051a39Sopenharmony_ci || !make_addressPrefix(&aor, a, prefixlen, length_from_afi(afi))) 608e1051a39Sopenharmony_ci return 0; 609e1051a39Sopenharmony_ci if (sk_IPAddressOrRange_push(aors, aor)) 610e1051a39Sopenharmony_ci return 1; 611e1051a39Sopenharmony_ci IPAddressOrRange_free(aor); 612e1051a39Sopenharmony_ci return 0; 613e1051a39Sopenharmony_ci} 614e1051a39Sopenharmony_ci 615e1051a39Sopenharmony_ci/* 616e1051a39Sopenharmony_ci * Add a range. 617e1051a39Sopenharmony_ci */ 618e1051a39Sopenharmony_ciint X509v3_addr_add_range(IPAddrBlocks *addr, 619e1051a39Sopenharmony_ci const unsigned afi, 620e1051a39Sopenharmony_ci const unsigned *safi, 621e1051a39Sopenharmony_ci unsigned char *min, unsigned char *max) 622e1051a39Sopenharmony_ci{ 623e1051a39Sopenharmony_ci IPAddressOrRanges *aors = make_prefix_or_range(addr, afi, safi); 624e1051a39Sopenharmony_ci IPAddressOrRange *aor; 625e1051a39Sopenharmony_ci int length = length_from_afi(afi); 626e1051a39Sopenharmony_ci if (aors == NULL) 627e1051a39Sopenharmony_ci return 0; 628e1051a39Sopenharmony_ci if (!make_addressRange(&aor, min, max, length)) 629e1051a39Sopenharmony_ci return 0; 630e1051a39Sopenharmony_ci if (sk_IPAddressOrRange_push(aors, aor)) 631e1051a39Sopenharmony_ci return 1; 632e1051a39Sopenharmony_ci IPAddressOrRange_free(aor); 633e1051a39Sopenharmony_ci return 0; 634e1051a39Sopenharmony_ci} 635e1051a39Sopenharmony_ci 636e1051a39Sopenharmony_ci/* 637e1051a39Sopenharmony_ci * Extract min and max values from an IPAddressOrRange. 638e1051a39Sopenharmony_ci */ 639e1051a39Sopenharmony_cistatic int extract_min_max(IPAddressOrRange *aor, 640e1051a39Sopenharmony_ci unsigned char *min, unsigned char *max, int length) 641e1051a39Sopenharmony_ci{ 642e1051a39Sopenharmony_ci if (aor == NULL || min == NULL || max == NULL) 643e1051a39Sopenharmony_ci return 0; 644e1051a39Sopenharmony_ci switch (aor->type) { 645e1051a39Sopenharmony_ci case IPAddressOrRange_addressPrefix: 646e1051a39Sopenharmony_ci return (addr_expand(min, aor->u.addressPrefix, length, 0x00) && 647e1051a39Sopenharmony_ci addr_expand(max, aor->u.addressPrefix, length, 0xFF)); 648e1051a39Sopenharmony_ci case IPAddressOrRange_addressRange: 649e1051a39Sopenharmony_ci return (addr_expand(min, aor->u.addressRange->min, length, 0x00) && 650e1051a39Sopenharmony_ci addr_expand(max, aor->u.addressRange->max, length, 0xFF)); 651e1051a39Sopenharmony_ci } 652e1051a39Sopenharmony_ci return 0; 653e1051a39Sopenharmony_ci} 654e1051a39Sopenharmony_ci 655e1051a39Sopenharmony_ci/* 656e1051a39Sopenharmony_ci * Public wrapper for extract_min_max(). 657e1051a39Sopenharmony_ci */ 658e1051a39Sopenharmony_ciint X509v3_addr_get_range(IPAddressOrRange *aor, 659e1051a39Sopenharmony_ci const unsigned afi, 660e1051a39Sopenharmony_ci unsigned char *min, 661e1051a39Sopenharmony_ci unsigned char *max, const int length) 662e1051a39Sopenharmony_ci{ 663e1051a39Sopenharmony_ci int afi_length = length_from_afi(afi); 664e1051a39Sopenharmony_ci if (aor == NULL || min == NULL || max == NULL || 665e1051a39Sopenharmony_ci afi_length == 0 || length < afi_length || 666e1051a39Sopenharmony_ci (aor->type != IPAddressOrRange_addressPrefix && 667e1051a39Sopenharmony_ci aor->type != IPAddressOrRange_addressRange) || 668e1051a39Sopenharmony_ci !extract_min_max(aor, min, max, afi_length)) 669e1051a39Sopenharmony_ci return 0; 670e1051a39Sopenharmony_ci 671e1051a39Sopenharmony_ci return afi_length; 672e1051a39Sopenharmony_ci} 673e1051a39Sopenharmony_ci 674e1051a39Sopenharmony_ci/* 675e1051a39Sopenharmony_ci * Sort comparison function for a sequence of IPAddressFamily. 676e1051a39Sopenharmony_ci * 677e1051a39Sopenharmony_ci * The last paragraph of RFC 3779 2.2.3.3 is slightly ambiguous about 678e1051a39Sopenharmony_ci * the ordering: I can read it as meaning that IPv6 without a SAFI 679e1051a39Sopenharmony_ci * comes before IPv4 with a SAFI, which seems pretty weird. The 680e1051a39Sopenharmony_ci * examples in appendix B suggest that the author intended the 681e1051a39Sopenharmony_ci * null-SAFI rule to apply only within a single AFI, which is what I 682e1051a39Sopenharmony_ci * would have expected and is what the following code implements. 683e1051a39Sopenharmony_ci */ 684e1051a39Sopenharmony_cistatic int IPAddressFamily_cmp(const IPAddressFamily *const *a_, 685e1051a39Sopenharmony_ci const IPAddressFamily *const *b_) 686e1051a39Sopenharmony_ci{ 687e1051a39Sopenharmony_ci const ASN1_OCTET_STRING *a = (*a_)->addressFamily; 688e1051a39Sopenharmony_ci const ASN1_OCTET_STRING *b = (*b_)->addressFamily; 689e1051a39Sopenharmony_ci int len = ((a->length <= b->length) ? a->length : b->length); 690e1051a39Sopenharmony_ci int cmp = memcmp(a->data, b->data, len); 691e1051a39Sopenharmony_ci return cmp ? cmp : a->length - b->length; 692e1051a39Sopenharmony_ci} 693e1051a39Sopenharmony_ci 694e1051a39Sopenharmony_cistatic int IPAddressFamily_check_len(const IPAddressFamily *f) 695e1051a39Sopenharmony_ci{ 696e1051a39Sopenharmony_ci if (f->addressFamily->length < 2 || f->addressFamily->length > 3) 697e1051a39Sopenharmony_ci return 0; 698e1051a39Sopenharmony_ci else 699e1051a39Sopenharmony_ci return 1; 700e1051a39Sopenharmony_ci} 701e1051a39Sopenharmony_ci 702e1051a39Sopenharmony_ci/* 703e1051a39Sopenharmony_ci * Check whether an IPAddrBLocks is in canonical form. 704e1051a39Sopenharmony_ci */ 705e1051a39Sopenharmony_ciint X509v3_addr_is_canonical(IPAddrBlocks *addr) 706e1051a39Sopenharmony_ci{ 707e1051a39Sopenharmony_ci unsigned char a_min[ADDR_RAW_BUF_LEN], a_max[ADDR_RAW_BUF_LEN]; 708e1051a39Sopenharmony_ci unsigned char b_min[ADDR_RAW_BUF_LEN], b_max[ADDR_RAW_BUF_LEN]; 709e1051a39Sopenharmony_ci IPAddressOrRanges *aors; 710e1051a39Sopenharmony_ci int i, j, k; 711e1051a39Sopenharmony_ci 712e1051a39Sopenharmony_ci /* 713e1051a39Sopenharmony_ci * Empty extension is canonical. 714e1051a39Sopenharmony_ci */ 715e1051a39Sopenharmony_ci if (addr == NULL) 716e1051a39Sopenharmony_ci return 1; 717e1051a39Sopenharmony_ci 718e1051a39Sopenharmony_ci /* 719e1051a39Sopenharmony_ci * Check whether the top-level list is in order. 720e1051a39Sopenharmony_ci */ 721e1051a39Sopenharmony_ci for (i = 0; i < sk_IPAddressFamily_num(addr) - 1; i++) { 722e1051a39Sopenharmony_ci const IPAddressFamily *a = sk_IPAddressFamily_value(addr, i); 723e1051a39Sopenharmony_ci const IPAddressFamily *b = sk_IPAddressFamily_value(addr, i + 1); 724e1051a39Sopenharmony_ci 725e1051a39Sopenharmony_ci if (!IPAddressFamily_check_len(a) || !IPAddressFamily_check_len(b)) 726e1051a39Sopenharmony_ci return 0; 727e1051a39Sopenharmony_ci 728e1051a39Sopenharmony_ci if (IPAddressFamily_cmp(&a, &b) >= 0) 729e1051a39Sopenharmony_ci return 0; 730e1051a39Sopenharmony_ci } 731e1051a39Sopenharmony_ci 732e1051a39Sopenharmony_ci /* 733e1051a39Sopenharmony_ci * Top level's ok, now check each address family. 734e1051a39Sopenharmony_ci */ 735e1051a39Sopenharmony_ci for (i = 0; i < sk_IPAddressFamily_num(addr); i++) { 736e1051a39Sopenharmony_ci IPAddressFamily *f = sk_IPAddressFamily_value(addr, i); 737e1051a39Sopenharmony_ci int length = length_from_afi(X509v3_addr_get_afi(f)); 738e1051a39Sopenharmony_ci 739e1051a39Sopenharmony_ci /* 740e1051a39Sopenharmony_ci * Inheritance is canonical. Anything other than inheritance or 741e1051a39Sopenharmony_ci * a SEQUENCE OF IPAddressOrRange is an ASN.1 error or something. 742e1051a39Sopenharmony_ci */ 743e1051a39Sopenharmony_ci if (f == NULL || f->ipAddressChoice == NULL) 744e1051a39Sopenharmony_ci return 0; 745e1051a39Sopenharmony_ci switch (f->ipAddressChoice->type) { 746e1051a39Sopenharmony_ci case IPAddressChoice_inherit: 747e1051a39Sopenharmony_ci continue; 748e1051a39Sopenharmony_ci case IPAddressChoice_addressesOrRanges: 749e1051a39Sopenharmony_ci break; 750e1051a39Sopenharmony_ci default: 751e1051a39Sopenharmony_ci return 0; 752e1051a39Sopenharmony_ci } 753e1051a39Sopenharmony_ci 754e1051a39Sopenharmony_ci if (!IPAddressFamily_check_len(f)) 755e1051a39Sopenharmony_ci return 0; 756e1051a39Sopenharmony_ci 757e1051a39Sopenharmony_ci /* 758e1051a39Sopenharmony_ci * It's an IPAddressOrRanges sequence, check it. 759e1051a39Sopenharmony_ci */ 760e1051a39Sopenharmony_ci aors = f->ipAddressChoice->u.addressesOrRanges; 761e1051a39Sopenharmony_ci if (sk_IPAddressOrRange_num(aors) == 0) 762e1051a39Sopenharmony_ci return 0; 763e1051a39Sopenharmony_ci for (j = 0; j < sk_IPAddressOrRange_num(aors) - 1; j++) { 764e1051a39Sopenharmony_ci IPAddressOrRange *a = sk_IPAddressOrRange_value(aors, j); 765e1051a39Sopenharmony_ci IPAddressOrRange *b = sk_IPAddressOrRange_value(aors, j + 1); 766e1051a39Sopenharmony_ci 767e1051a39Sopenharmony_ci if (!extract_min_max(a, a_min, a_max, length) || 768e1051a39Sopenharmony_ci !extract_min_max(b, b_min, b_max, length)) 769e1051a39Sopenharmony_ci return 0; 770e1051a39Sopenharmony_ci 771e1051a39Sopenharmony_ci /* 772e1051a39Sopenharmony_ci * Punt misordered list, overlapping start, or inverted range. 773e1051a39Sopenharmony_ci */ 774e1051a39Sopenharmony_ci if (memcmp(a_min, b_min, length) >= 0 || 775e1051a39Sopenharmony_ci memcmp(a_min, a_max, length) > 0 || 776e1051a39Sopenharmony_ci memcmp(b_min, b_max, length) > 0) 777e1051a39Sopenharmony_ci return 0; 778e1051a39Sopenharmony_ci 779e1051a39Sopenharmony_ci /* 780e1051a39Sopenharmony_ci * Punt if adjacent or overlapping. Check for adjacency by 781e1051a39Sopenharmony_ci * subtracting one from b_min first. 782e1051a39Sopenharmony_ci */ 783e1051a39Sopenharmony_ci for (k = length - 1; k >= 0 && b_min[k]-- == 0x00; k--) ; 784e1051a39Sopenharmony_ci if (memcmp(a_max, b_min, length) >= 0) 785e1051a39Sopenharmony_ci return 0; 786e1051a39Sopenharmony_ci 787e1051a39Sopenharmony_ci /* 788e1051a39Sopenharmony_ci * Check for range that should be expressed as a prefix. 789e1051a39Sopenharmony_ci */ 790e1051a39Sopenharmony_ci if (a->type == IPAddressOrRange_addressRange && 791e1051a39Sopenharmony_ci range_should_be_prefix(a_min, a_max, length) >= 0) 792e1051a39Sopenharmony_ci return 0; 793e1051a39Sopenharmony_ci } 794e1051a39Sopenharmony_ci 795e1051a39Sopenharmony_ci /* 796e1051a39Sopenharmony_ci * Check range to see if it's inverted or should be a 797e1051a39Sopenharmony_ci * prefix. 798e1051a39Sopenharmony_ci */ 799e1051a39Sopenharmony_ci j = sk_IPAddressOrRange_num(aors) - 1; 800e1051a39Sopenharmony_ci { 801e1051a39Sopenharmony_ci IPAddressOrRange *a = sk_IPAddressOrRange_value(aors, j); 802e1051a39Sopenharmony_ci if (a != NULL && a->type == IPAddressOrRange_addressRange) { 803e1051a39Sopenharmony_ci if (!extract_min_max(a, a_min, a_max, length)) 804e1051a39Sopenharmony_ci return 0; 805e1051a39Sopenharmony_ci if (memcmp(a_min, a_max, length) > 0 || 806e1051a39Sopenharmony_ci range_should_be_prefix(a_min, a_max, length) >= 0) 807e1051a39Sopenharmony_ci return 0; 808e1051a39Sopenharmony_ci } 809e1051a39Sopenharmony_ci } 810e1051a39Sopenharmony_ci } 811e1051a39Sopenharmony_ci 812e1051a39Sopenharmony_ci /* 813e1051a39Sopenharmony_ci * If we made it through all that, we're happy. 814e1051a39Sopenharmony_ci */ 815e1051a39Sopenharmony_ci return 1; 816e1051a39Sopenharmony_ci} 817e1051a39Sopenharmony_ci 818e1051a39Sopenharmony_ci/* 819e1051a39Sopenharmony_ci * Whack an IPAddressOrRanges into canonical form. 820e1051a39Sopenharmony_ci */ 821e1051a39Sopenharmony_cistatic int IPAddressOrRanges_canonize(IPAddressOrRanges *aors, 822e1051a39Sopenharmony_ci const unsigned afi) 823e1051a39Sopenharmony_ci{ 824e1051a39Sopenharmony_ci int i, j, length = length_from_afi(afi); 825e1051a39Sopenharmony_ci 826e1051a39Sopenharmony_ci /* 827e1051a39Sopenharmony_ci * Sort the IPAddressOrRanges sequence. 828e1051a39Sopenharmony_ci */ 829e1051a39Sopenharmony_ci sk_IPAddressOrRange_sort(aors); 830e1051a39Sopenharmony_ci 831e1051a39Sopenharmony_ci /* 832e1051a39Sopenharmony_ci * Clean up representation issues, punt on duplicates or overlaps. 833e1051a39Sopenharmony_ci */ 834e1051a39Sopenharmony_ci for (i = 0; i < sk_IPAddressOrRange_num(aors) - 1; i++) { 835e1051a39Sopenharmony_ci IPAddressOrRange *a = sk_IPAddressOrRange_value(aors, i); 836e1051a39Sopenharmony_ci IPAddressOrRange *b = sk_IPAddressOrRange_value(aors, i + 1); 837e1051a39Sopenharmony_ci unsigned char a_min[ADDR_RAW_BUF_LEN], a_max[ADDR_RAW_BUF_LEN]; 838e1051a39Sopenharmony_ci unsigned char b_min[ADDR_RAW_BUF_LEN], b_max[ADDR_RAW_BUF_LEN]; 839e1051a39Sopenharmony_ci 840e1051a39Sopenharmony_ci if (!extract_min_max(a, a_min, a_max, length) || 841e1051a39Sopenharmony_ci !extract_min_max(b, b_min, b_max, length)) 842e1051a39Sopenharmony_ci return 0; 843e1051a39Sopenharmony_ci 844e1051a39Sopenharmony_ci /* 845e1051a39Sopenharmony_ci * Punt inverted ranges. 846e1051a39Sopenharmony_ci */ 847e1051a39Sopenharmony_ci if (memcmp(a_min, a_max, length) > 0 || 848e1051a39Sopenharmony_ci memcmp(b_min, b_max, length) > 0) 849e1051a39Sopenharmony_ci return 0; 850e1051a39Sopenharmony_ci 851e1051a39Sopenharmony_ci /* 852e1051a39Sopenharmony_ci * Punt overlaps. 853e1051a39Sopenharmony_ci */ 854e1051a39Sopenharmony_ci if (memcmp(a_max, b_min, length) >= 0) 855e1051a39Sopenharmony_ci return 0; 856e1051a39Sopenharmony_ci 857e1051a39Sopenharmony_ci /* 858e1051a39Sopenharmony_ci * Merge if a and b are adjacent. We check for 859e1051a39Sopenharmony_ci * adjacency by subtracting one from b_min first. 860e1051a39Sopenharmony_ci */ 861e1051a39Sopenharmony_ci for (j = length - 1; j >= 0 && b_min[j]-- == 0x00; j--) ; 862e1051a39Sopenharmony_ci if (memcmp(a_max, b_min, length) == 0) { 863e1051a39Sopenharmony_ci IPAddressOrRange *merged; 864e1051a39Sopenharmony_ci if (!make_addressRange(&merged, a_min, b_max, length)) 865e1051a39Sopenharmony_ci return 0; 866e1051a39Sopenharmony_ci (void)sk_IPAddressOrRange_set(aors, i, merged); 867e1051a39Sopenharmony_ci (void)sk_IPAddressOrRange_delete(aors, i + 1); 868e1051a39Sopenharmony_ci IPAddressOrRange_free(a); 869e1051a39Sopenharmony_ci IPAddressOrRange_free(b); 870e1051a39Sopenharmony_ci --i; 871e1051a39Sopenharmony_ci continue; 872e1051a39Sopenharmony_ci } 873e1051a39Sopenharmony_ci } 874e1051a39Sopenharmony_ci 875e1051a39Sopenharmony_ci /* 876e1051a39Sopenharmony_ci * Check for inverted final range. 877e1051a39Sopenharmony_ci */ 878e1051a39Sopenharmony_ci j = sk_IPAddressOrRange_num(aors) - 1; 879e1051a39Sopenharmony_ci { 880e1051a39Sopenharmony_ci IPAddressOrRange *a = sk_IPAddressOrRange_value(aors, j); 881e1051a39Sopenharmony_ci if (a != NULL && a->type == IPAddressOrRange_addressRange) { 882e1051a39Sopenharmony_ci unsigned char a_min[ADDR_RAW_BUF_LEN], a_max[ADDR_RAW_BUF_LEN]; 883e1051a39Sopenharmony_ci if (!extract_min_max(a, a_min, a_max, length)) 884e1051a39Sopenharmony_ci return 0; 885e1051a39Sopenharmony_ci if (memcmp(a_min, a_max, length) > 0) 886e1051a39Sopenharmony_ci return 0; 887e1051a39Sopenharmony_ci } 888e1051a39Sopenharmony_ci } 889e1051a39Sopenharmony_ci 890e1051a39Sopenharmony_ci return 1; 891e1051a39Sopenharmony_ci} 892e1051a39Sopenharmony_ci 893e1051a39Sopenharmony_ci/* 894e1051a39Sopenharmony_ci * Whack an IPAddrBlocks extension into canonical form. 895e1051a39Sopenharmony_ci */ 896e1051a39Sopenharmony_ciint X509v3_addr_canonize(IPAddrBlocks *addr) 897e1051a39Sopenharmony_ci{ 898e1051a39Sopenharmony_ci int i; 899e1051a39Sopenharmony_ci for (i = 0; i < sk_IPAddressFamily_num(addr); i++) { 900e1051a39Sopenharmony_ci IPAddressFamily *f = sk_IPAddressFamily_value(addr, i); 901e1051a39Sopenharmony_ci 902e1051a39Sopenharmony_ci if (!IPAddressFamily_check_len(f)) 903e1051a39Sopenharmony_ci return 0; 904e1051a39Sopenharmony_ci 905e1051a39Sopenharmony_ci if (f->ipAddressChoice->type == IPAddressChoice_addressesOrRanges && 906e1051a39Sopenharmony_ci !IPAddressOrRanges_canonize(f->ipAddressChoice-> 907e1051a39Sopenharmony_ci u.addressesOrRanges, 908e1051a39Sopenharmony_ci X509v3_addr_get_afi(f))) 909e1051a39Sopenharmony_ci return 0; 910e1051a39Sopenharmony_ci } 911e1051a39Sopenharmony_ci (void)sk_IPAddressFamily_set_cmp_func(addr, IPAddressFamily_cmp); 912e1051a39Sopenharmony_ci sk_IPAddressFamily_sort(addr); 913e1051a39Sopenharmony_ci if (!ossl_assert(X509v3_addr_is_canonical(addr))) 914e1051a39Sopenharmony_ci return 0; 915e1051a39Sopenharmony_ci return 1; 916e1051a39Sopenharmony_ci} 917e1051a39Sopenharmony_ci 918e1051a39Sopenharmony_ci/* 919e1051a39Sopenharmony_ci * v2i handler for the IPAddrBlocks extension. 920e1051a39Sopenharmony_ci */ 921e1051a39Sopenharmony_cistatic void *v2i_IPAddrBlocks(const struct v3_ext_method *method, 922e1051a39Sopenharmony_ci struct v3_ext_ctx *ctx, 923e1051a39Sopenharmony_ci STACK_OF(CONF_VALUE) *values) 924e1051a39Sopenharmony_ci{ 925e1051a39Sopenharmony_ci static const char v4addr_chars[] = "0123456789."; 926e1051a39Sopenharmony_ci static const char v6addr_chars[] = "0123456789.:abcdefABCDEF"; 927e1051a39Sopenharmony_ci IPAddrBlocks *addr = NULL; 928e1051a39Sopenharmony_ci char *s = NULL, *t; 929e1051a39Sopenharmony_ci int i; 930e1051a39Sopenharmony_ci 931e1051a39Sopenharmony_ci if ((addr = sk_IPAddressFamily_new(IPAddressFamily_cmp)) == NULL) { 932e1051a39Sopenharmony_ci ERR_raise(ERR_LIB_X509V3, ERR_R_MALLOC_FAILURE); 933e1051a39Sopenharmony_ci return NULL; 934e1051a39Sopenharmony_ci } 935e1051a39Sopenharmony_ci 936e1051a39Sopenharmony_ci for (i = 0; i < sk_CONF_VALUE_num(values); i++) { 937e1051a39Sopenharmony_ci CONF_VALUE *val = sk_CONF_VALUE_value(values, i); 938e1051a39Sopenharmony_ci unsigned char min[ADDR_RAW_BUF_LEN], max[ADDR_RAW_BUF_LEN]; 939e1051a39Sopenharmony_ci unsigned afi, *safi = NULL, safi_; 940e1051a39Sopenharmony_ci const char *addr_chars = NULL; 941e1051a39Sopenharmony_ci int prefixlen, i1, i2, delim, length; 942e1051a39Sopenharmony_ci 943e1051a39Sopenharmony_ci if (!ossl_v3_name_cmp(val->name, "IPv4")) { 944e1051a39Sopenharmony_ci afi = IANA_AFI_IPV4; 945e1051a39Sopenharmony_ci } else if (!ossl_v3_name_cmp(val->name, "IPv6")) { 946e1051a39Sopenharmony_ci afi = IANA_AFI_IPV6; 947e1051a39Sopenharmony_ci } else if (!ossl_v3_name_cmp(val->name, "IPv4-SAFI")) { 948e1051a39Sopenharmony_ci afi = IANA_AFI_IPV4; 949e1051a39Sopenharmony_ci safi = &safi_; 950e1051a39Sopenharmony_ci } else if (!ossl_v3_name_cmp(val->name, "IPv6-SAFI")) { 951e1051a39Sopenharmony_ci afi = IANA_AFI_IPV6; 952e1051a39Sopenharmony_ci safi = &safi_; 953e1051a39Sopenharmony_ci } else { 954e1051a39Sopenharmony_ci ERR_raise_data(ERR_LIB_X509V3, X509V3_R_EXTENSION_NAME_ERROR, 955e1051a39Sopenharmony_ci "%s", val->name); 956e1051a39Sopenharmony_ci goto err; 957e1051a39Sopenharmony_ci } 958e1051a39Sopenharmony_ci 959e1051a39Sopenharmony_ci switch (afi) { 960e1051a39Sopenharmony_ci case IANA_AFI_IPV4: 961e1051a39Sopenharmony_ci addr_chars = v4addr_chars; 962e1051a39Sopenharmony_ci break; 963e1051a39Sopenharmony_ci case IANA_AFI_IPV6: 964e1051a39Sopenharmony_ci addr_chars = v6addr_chars; 965e1051a39Sopenharmony_ci break; 966e1051a39Sopenharmony_ci } 967e1051a39Sopenharmony_ci 968e1051a39Sopenharmony_ci length = length_from_afi(afi); 969e1051a39Sopenharmony_ci 970e1051a39Sopenharmony_ci /* 971e1051a39Sopenharmony_ci * Handle SAFI, if any, and OPENSSL_strdup() so we can null-terminate 972e1051a39Sopenharmony_ci * the other input values. 973e1051a39Sopenharmony_ci */ 974e1051a39Sopenharmony_ci if (safi != NULL) { 975e1051a39Sopenharmony_ci *safi = strtoul(val->value, &t, 0); 976e1051a39Sopenharmony_ci t += strspn(t, " \t"); 977e1051a39Sopenharmony_ci if (*safi > 0xFF || *t++ != ':') { 978e1051a39Sopenharmony_ci ERR_raise(ERR_LIB_X509V3, X509V3_R_INVALID_SAFI); 979e1051a39Sopenharmony_ci X509V3_conf_add_error_name_value(val); 980e1051a39Sopenharmony_ci goto err; 981e1051a39Sopenharmony_ci } 982e1051a39Sopenharmony_ci t += strspn(t, " \t"); 983e1051a39Sopenharmony_ci s = OPENSSL_strdup(t); 984e1051a39Sopenharmony_ci } else { 985e1051a39Sopenharmony_ci s = OPENSSL_strdup(val->value); 986e1051a39Sopenharmony_ci } 987e1051a39Sopenharmony_ci if (s == NULL) { 988e1051a39Sopenharmony_ci ERR_raise(ERR_LIB_X509V3, ERR_R_MALLOC_FAILURE); 989e1051a39Sopenharmony_ci goto err; 990e1051a39Sopenharmony_ci } 991e1051a39Sopenharmony_ci 992e1051a39Sopenharmony_ci /* 993e1051a39Sopenharmony_ci * Check for inheritance. Not worth additional complexity to 994e1051a39Sopenharmony_ci * optimize this (seldom-used) case. 995e1051a39Sopenharmony_ci */ 996e1051a39Sopenharmony_ci if (strcmp(s, "inherit") == 0) { 997e1051a39Sopenharmony_ci if (!X509v3_addr_add_inherit(addr, afi, safi)) { 998e1051a39Sopenharmony_ci ERR_raise(ERR_LIB_X509V3, X509V3_R_INVALID_INHERITANCE); 999e1051a39Sopenharmony_ci X509V3_conf_add_error_name_value(val); 1000e1051a39Sopenharmony_ci goto err; 1001e1051a39Sopenharmony_ci } 1002e1051a39Sopenharmony_ci OPENSSL_free(s); 1003e1051a39Sopenharmony_ci s = NULL; 1004e1051a39Sopenharmony_ci continue; 1005e1051a39Sopenharmony_ci } 1006e1051a39Sopenharmony_ci 1007e1051a39Sopenharmony_ci i1 = strspn(s, addr_chars); 1008e1051a39Sopenharmony_ci i2 = i1 + strspn(s + i1, " \t"); 1009e1051a39Sopenharmony_ci delim = s[i2++]; 1010e1051a39Sopenharmony_ci s[i1] = '\0'; 1011e1051a39Sopenharmony_ci 1012e1051a39Sopenharmony_ci if (ossl_a2i_ipadd(min, s) != length) { 1013e1051a39Sopenharmony_ci ERR_raise(ERR_LIB_X509V3, X509V3_R_INVALID_IPADDRESS); 1014e1051a39Sopenharmony_ci X509V3_conf_add_error_name_value(val); 1015e1051a39Sopenharmony_ci goto err; 1016e1051a39Sopenharmony_ci } 1017e1051a39Sopenharmony_ci 1018e1051a39Sopenharmony_ci switch (delim) { 1019e1051a39Sopenharmony_ci case '/': 1020e1051a39Sopenharmony_ci prefixlen = (int)strtoul(s + i2, &t, 10); 1021e1051a39Sopenharmony_ci if (t == s + i2 1022e1051a39Sopenharmony_ci || *t != '\0' 1023e1051a39Sopenharmony_ci || prefixlen > (length * 8) 1024e1051a39Sopenharmony_ci || prefixlen < 0) { 1025e1051a39Sopenharmony_ci ERR_raise(ERR_LIB_X509V3, X509V3_R_EXTENSION_VALUE_ERROR); 1026e1051a39Sopenharmony_ci X509V3_conf_add_error_name_value(val); 1027e1051a39Sopenharmony_ci goto err; 1028e1051a39Sopenharmony_ci } 1029e1051a39Sopenharmony_ci if (!X509v3_addr_add_prefix(addr, afi, safi, min, prefixlen)) { 1030e1051a39Sopenharmony_ci ERR_raise(ERR_LIB_X509V3, ERR_R_MALLOC_FAILURE); 1031e1051a39Sopenharmony_ci goto err; 1032e1051a39Sopenharmony_ci } 1033e1051a39Sopenharmony_ci break; 1034e1051a39Sopenharmony_ci case '-': 1035e1051a39Sopenharmony_ci i1 = i2 + strspn(s + i2, " \t"); 1036e1051a39Sopenharmony_ci i2 = i1 + strspn(s + i1, addr_chars); 1037e1051a39Sopenharmony_ci if (i1 == i2 || s[i2] != '\0') { 1038e1051a39Sopenharmony_ci ERR_raise(ERR_LIB_X509V3, X509V3_R_EXTENSION_VALUE_ERROR); 1039e1051a39Sopenharmony_ci X509V3_conf_add_error_name_value(val); 1040e1051a39Sopenharmony_ci goto err; 1041e1051a39Sopenharmony_ci } 1042e1051a39Sopenharmony_ci if (ossl_a2i_ipadd(max, s + i1) != length) { 1043e1051a39Sopenharmony_ci ERR_raise(ERR_LIB_X509V3, X509V3_R_INVALID_IPADDRESS); 1044e1051a39Sopenharmony_ci X509V3_conf_add_error_name_value(val); 1045e1051a39Sopenharmony_ci goto err; 1046e1051a39Sopenharmony_ci } 1047e1051a39Sopenharmony_ci if (memcmp(min, max, length_from_afi(afi)) > 0) { 1048e1051a39Sopenharmony_ci ERR_raise(ERR_LIB_X509V3, X509V3_R_EXTENSION_VALUE_ERROR); 1049e1051a39Sopenharmony_ci X509V3_conf_add_error_name_value(val); 1050e1051a39Sopenharmony_ci goto err; 1051e1051a39Sopenharmony_ci } 1052e1051a39Sopenharmony_ci if (!X509v3_addr_add_range(addr, afi, safi, min, max)) { 1053e1051a39Sopenharmony_ci ERR_raise(ERR_LIB_X509V3, ERR_R_MALLOC_FAILURE); 1054e1051a39Sopenharmony_ci goto err; 1055e1051a39Sopenharmony_ci } 1056e1051a39Sopenharmony_ci break; 1057e1051a39Sopenharmony_ci case '\0': 1058e1051a39Sopenharmony_ci if (!X509v3_addr_add_prefix(addr, afi, safi, min, length * 8)) { 1059e1051a39Sopenharmony_ci ERR_raise(ERR_LIB_X509V3, ERR_R_MALLOC_FAILURE); 1060e1051a39Sopenharmony_ci goto err; 1061e1051a39Sopenharmony_ci } 1062e1051a39Sopenharmony_ci break; 1063e1051a39Sopenharmony_ci default: 1064e1051a39Sopenharmony_ci ERR_raise(ERR_LIB_X509V3, X509V3_R_EXTENSION_VALUE_ERROR); 1065e1051a39Sopenharmony_ci X509V3_conf_add_error_name_value(val); 1066e1051a39Sopenharmony_ci goto err; 1067e1051a39Sopenharmony_ci } 1068e1051a39Sopenharmony_ci 1069e1051a39Sopenharmony_ci OPENSSL_free(s); 1070e1051a39Sopenharmony_ci s = NULL; 1071e1051a39Sopenharmony_ci } 1072e1051a39Sopenharmony_ci 1073e1051a39Sopenharmony_ci /* 1074e1051a39Sopenharmony_ci * Canonize the result, then we're done. 1075e1051a39Sopenharmony_ci */ 1076e1051a39Sopenharmony_ci if (!X509v3_addr_canonize(addr)) 1077e1051a39Sopenharmony_ci goto err; 1078e1051a39Sopenharmony_ci return addr; 1079e1051a39Sopenharmony_ci 1080e1051a39Sopenharmony_ci err: 1081e1051a39Sopenharmony_ci OPENSSL_free(s); 1082e1051a39Sopenharmony_ci sk_IPAddressFamily_pop_free(addr, IPAddressFamily_free); 1083e1051a39Sopenharmony_ci return NULL; 1084e1051a39Sopenharmony_ci} 1085e1051a39Sopenharmony_ci 1086e1051a39Sopenharmony_ci/* 1087e1051a39Sopenharmony_ci * OpenSSL dispatch 1088e1051a39Sopenharmony_ci */ 1089e1051a39Sopenharmony_ciconst X509V3_EXT_METHOD ossl_v3_addr = { 1090e1051a39Sopenharmony_ci NID_sbgp_ipAddrBlock, /* nid */ 1091e1051a39Sopenharmony_ci 0, /* flags */ 1092e1051a39Sopenharmony_ci ASN1_ITEM_ref(IPAddrBlocks), /* template */ 1093e1051a39Sopenharmony_ci 0, 0, 0, 0, /* old functions, ignored */ 1094e1051a39Sopenharmony_ci 0, /* i2s */ 1095e1051a39Sopenharmony_ci 0, /* s2i */ 1096e1051a39Sopenharmony_ci 0, /* i2v */ 1097e1051a39Sopenharmony_ci v2i_IPAddrBlocks, /* v2i */ 1098e1051a39Sopenharmony_ci i2r_IPAddrBlocks, /* i2r */ 1099e1051a39Sopenharmony_ci 0, /* r2i */ 1100e1051a39Sopenharmony_ci NULL /* extension-specific data */ 1101e1051a39Sopenharmony_ci}; 1102e1051a39Sopenharmony_ci 1103e1051a39Sopenharmony_ci/* 1104e1051a39Sopenharmony_ci * Figure out whether extension sues inheritance. 1105e1051a39Sopenharmony_ci */ 1106e1051a39Sopenharmony_ciint X509v3_addr_inherits(IPAddrBlocks *addr) 1107e1051a39Sopenharmony_ci{ 1108e1051a39Sopenharmony_ci int i; 1109e1051a39Sopenharmony_ci if (addr == NULL) 1110e1051a39Sopenharmony_ci return 0; 1111e1051a39Sopenharmony_ci for (i = 0; i < sk_IPAddressFamily_num(addr); i++) { 1112e1051a39Sopenharmony_ci IPAddressFamily *f = sk_IPAddressFamily_value(addr, i); 1113e1051a39Sopenharmony_ci if (f->ipAddressChoice->type == IPAddressChoice_inherit) 1114e1051a39Sopenharmony_ci return 1; 1115e1051a39Sopenharmony_ci } 1116e1051a39Sopenharmony_ci return 0; 1117e1051a39Sopenharmony_ci} 1118e1051a39Sopenharmony_ci 1119e1051a39Sopenharmony_ci/* 1120e1051a39Sopenharmony_ci * Figure out whether parent contains child. 1121e1051a39Sopenharmony_ci */ 1122e1051a39Sopenharmony_cistatic int addr_contains(IPAddressOrRanges *parent, 1123e1051a39Sopenharmony_ci IPAddressOrRanges *child, int length) 1124e1051a39Sopenharmony_ci{ 1125e1051a39Sopenharmony_ci unsigned char p_min[ADDR_RAW_BUF_LEN], p_max[ADDR_RAW_BUF_LEN]; 1126e1051a39Sopenharmony_ci unsigned char c_min[ADDR_RAW_BUF_LEN], c_max[ADDR_RAW_BUF_LEN]; 1127e1051a39Sopenharmony_ci int p, c; 1128e1051a39Sopenharmony_ci 1129e1051a39Sopenharmony_ci if (child == NULL || parent == child) 1130e1051a39Sopenharmony_ci return 1; 1131e1051a39Sopenharmony_ci if (parent == NULL) 1132e1051a39Sopenharmony_ci return 0; 1133e1051a39Sopenharmony_ci 1134e1051a39Sopenharmony_ci p = 0; 1135e1051a39Sopenharmony_ci for (c = 0; c < sk_IPAddressOrRange_num(child); c++) { 1136e1051a39Sopenharmony_ci if (!extract_min_max(sk_IPAddressOrRange_value(child, c), 1137e1051a39Sopenharmony_ci c_min, c_max, length)) 1138e1051a39Sopenharmony_ci return 0; 1139e1051a39Sopenharmony_ci for (;; p++) { 1140e1051a39Sopenharmony_ci if (p >= sk_IPAddressOrRange_num(parent)) 1141e1051a39Sopenharmony_ci return 0; 1142e1051a39Sopenharmony_ci if (!extract_min_max(sk_IPAddressOrRange_value(parent, p), 1143e1051a39Sopenharmony_ci p_min, p_max, length)) 1144e1051a39Sopenharmony_ci return 0; 1145e1051a39Sopenharmony_ci if (memcmp(p_max, c_max, length) < 0) 1146e1051a39Sopenharmony_ci continue; 1147e1051a39Sopenharmony_ci if (memcmp(p_min, c_min, length) > 0) 1148e1051a39Sopenharmony_ci return 0; 1149e1051a39Sopenharmony_ci break; 1150e1051a39Sopenharmony_ci } 1151e1051a39Sopenharmony_ci } 1152e1051a39Sopenharmony_ci 1153e1051a39Sopenharmony_ci return 1; 1154e1051a39Sopenharmony_ci} 1155e1051a39Sopenharmony_ci 1156e1051a39Sopenharmony_ci/* 1157e1051a39Sopenharmony_ci * Test whether a is a subset of b. 1158e1051a39Sopenharmony_ci */ 1159e1051a39Sopenharmony_ciint X509v3_addr_subset(IPAddrBlocks *a, IPAddrBlocks *b) 1160e1051a39Sopenharmony_ci{ 1161e1051a39Sopenharmony_ci int i; 1162e1051a39Sopenharmony_ci if (a == NULL || a == b) 1163e1051a39Sopenharmony_ci return 1; 1164e1051a39Sopenharmony_ci if (b == NULL || X509v3_addr_inherits(a) || X509v3_addr_inherits(b)) 1165e1051a39Sopenharmony_ci return 0; 1166e1051a39Sopenharmony_ci (void)sk_IPAddressFamily_set_cmp_func(b, IPAddressFamily_cmp); 1167e1051a39Sopenharmony_ci for (i = 0; i < sk_IPAddressFamily_num(a); i++) { 1168e1051a39Sopenharmony_ci IPAddressFamily *fa = sk_IPAddressFamily_value(a, i); 1169e1051a39Sopenharmony_ci int j = sk_IPAddressFamily_find(b, fa); 1170e1051a39Sopenharmony_ci IPAddressFamily *fb = sk_IPAddressFamily_value(b, j); 1171e1051a39Sopenharmony_ci 1172e1051a39Sopenharmony_ci if (fb == NULL) 1173e1051a39Sopenharmony_ci return 0; 1174e1051a39Sopenharmony_ci if (!IPAddressFamily_check_len(fa) || !IPAddressFamily_check_len(fb)) 1175e1051a39Sopenharmony_ci return 0; 1176e1051a39Sopenharmony_ci if (!addr_contains(fb->ipAddressChoice->u.addressesOrRanges, 1177e1051a39Sopenharmony_ci fa->ipAddressChoice->u.addressesOrRanges, 1178e1051a39Sopenharmony_ci length_from_afi(X509v3_addr_get_afi(fb)))) 1179e1051a39Sopenharmony_ci return 0; 1180e1051a39Sopenharmony_ci } 1181e1051a39Sopenharmony_ci return 1; 1182e1051a39Sopenharmony_ci} 1183e1051a39Sopenharmony_ci 1184e1051a39Sopenharmony_ci/* 1185e1051a39Sopenharmony_ci * Validation error handling via callback. 1186e1051a39Sopenharmony_ci */ 1187e1051a39Sopenharmony_ci# define validation_err(_err_) \ 1188e1051a39Sopenharmony_ci do { \ 1189e1051a39Sopenharmony_ci if (ctx != NULL) { \ 1190e1051a39Sopenharmony_ci ctx->error = _err_; \ 1191e1051a39Sopenharmony_ci ctx->error_depth = i; \ 1192e1051a39Sopenharmony_ci ctx->current_cert = x; \ 1193e1051a39Sopenharmony_ci rv = ctx->verify_cb(0, ctx); \ 1194e1051a39Sopenharmony_ci } else { \ 1195e1051a39Sopenharmony_ci rv = 0; \ 1196e1051a39Sopenharmony_ci } \ 1197e1051a39Sopenharmony_ci if (rv == 0) \ 1198e1051a39Sopenharmony_ci goto done; \ 1199e1051a39Sopenharmony_ci } while (0) 1200e1051a39Sopenharmony_ci 1201e1051a39Sopenharmony_ci/* 1202e1051a39Sopenharmony_ci * Core code for RFC 3779 2.3 path validation. 1203e1051a39Sopenharmony_ci * 1204e1051a39Sopenharmony_ci * Returns 1 for success, 0 on error. 1205e1051a39Sopenharmony_ci * 1206e1051a39Sopenharmony_ci * When returning 0, ctx->error MUST be set to an appropriate value other than 1207e1051a39Sopenharmony_ci * X509_V_OK. 1208e1051a39Sopenharmony_ci */ 1209e1051a39Sopenharmony_cistatic int addr_validate_path_internal(X509_STORE_CTX *ctx, 1210e1051a39Sopenharmony_ci STACK_OF(X509) *chain, 1211e1051a39Sopenharmony_ci IPAddrBlocks *ext) 1212e1051a39Sopenharmony_ci{ 1213e1051a39Sopenharmony_ci IPAddrBlocks *child = NULL; 1214e1051a39Sopenharmony_ci int i, j, ret = 0, rv; 1215e1051a39Sopenharmony_ci X509 *x; 1216e1051a39Sopenharmony_ci 1217e1051a39Sopenharmony_ci if (!ossl_assert(chain != NULL && sk_X509_num(chain) > 0) 1218e1051a39Sopenharmony_ci || !ossl_assert(ctx != NULL || ext != NULL) 1219e1051a39Sopenharmony_ci || !ossl_assert(ctx == NULL || ctx->verify_cb != NULL)) { 1220e1051a39Sopenharmony_ci if (ctx != NULL) 1221e1051a39Sopenharmony_ci ctx->error = X509_V_ERR_UNSPECIFIED; 1222e1051a39Sopenharmony_ci return 0; 1223e1051a39Sopenharmony_ci } 1224e1051a39Sopenharmony_ci 1225e1051a39Sopenharmony_ci /* 1226e1051a39Sopenharmony_ci * Figure out where to start. If we don't have an extension to 1227e1051a39Sopenharmony_ci * check, we're done. Otherwise, check canonical form and 1228e1051a39Sopenharmony_ci * set up for walking up the chain. 1229e1051a39Sopenharmony_ci */ 1230e1051a39Sopenharmony_ci if (ext != NULL) { 1231e1051a39Sopenharmony_ci i = -1; 1232e1051a39Sopenharmony_ci x = NULL; 1233e1051a39Sopenharmony_ci } else { 1234e1051a39Sopenharmony_ci i = 0; 1235e1051a39Sopenharmony_ci x = sk_X509_value(chain, i); 1236e1051a39Sopenharmony_ci if ((ext = x->rfc3779_addr) == NULL) 1237e1051a39Sopenharmony_ci return 1; /* Return success */ 1238e1051a39Sopenharmony_ci } 1239e1051a39Sopenharmony_ci if (!X509v3_addr_is_canonical(ext)) 1240e1051a39Sopenharmony_ci validation_err(X509_V_ERR_INVALID_EXTENSION); 1241e1051a39Sopenharmony_ci (void)sk_IPAddressFamily_set_cmp_func(ext, IPAddressFamily_cmp); 1242e1051a39Sopenharmony_ci if ((child = sk_IPAddressFamily_dup(ext)) == NULL) { 1243e1051a39Sopenharmony_ci ERR_raise(ERR_LIB_X509V3, ERR_R_MALLOC_FAILURE); 1244e1051a39Sopenharmony_ci if (ctx != NULL) 1245e1051a39Sopenharmony_ci ctx->error = X509_V_ERR_OUT_OF_MEM; 1246e1051a39Sopenharmony_ci goto done; 1247e1051a39Sopenharmony_ci } 1248e1051a39Sopenharmony_ci 1249e1051a39Sopenharmony_ci /* 1250e1051a39Sopenharmony_ci * Now walk up the chain. No cert may list resources that its 1251e1051a39Sopenharmony_ci * parent doesn't list. 1252e1051a39Sopenharmony_ci */ 1253e1051a39Sopenharmony_ci for (i++; i < sk_X509_num(chain); i++) { 1254e1051a39Sopenharmony_ci x = sk_X509_value(chain, i); 1255e1051a39Sopenharmony_ci if (!X509v3_addr_is_canonical(x->rfc3779_addr)) 1256e1051a39Sopenharmony_ci validation_err(X509_V_ERR_INVALID_EXTENSION); 1257e1051a39Sopenharmony_ci if (x->rfc3779_addr == NULL) { 1258e1051a39Sopenharmony_ci for (j = 0; j < sk_IPAddressFamily_num(child); j++) { 1259e1051a39Sopenharmony_ci IPAddressFamily *fc = sk_IPAddressFamily_value(child, j); 1260e1051a39Sopenharmony_ci 1261e1051a39Sopenharmony_ci if (!IPAddressFamily_check_len(fc)) 1262e1051a39Sopenharmony_ci goto done; 1263e1051a39Sopenharmony_ci 1264e1051a39Sopenharmony_ci if (fc->ipAddressChoice->type != IPAddressChoice_inherit) { 1265e1051a39Sopenharmony_ci validation_err(X509_V_ERR_UNNESTED_RESOURCE); 1266e1051a39Sopenharmony_ci break; 1267e1051a39Sopenharmony_ci } 1268e1051a39Sopenharmony_ci } 1269e1051a39Sopenharmony_ci continue; 1270e1051a39Sopenharmony_ci } 1271e1051a39Sopenharmony_ci (void)sk_IPAddressFamily_set_cmp_func(x->rfc3779_addr, 1272e1051a39Sopenharmony_ci IPAddressFamily_cmp); 1273e1051a39Sopenharmony_ci for (j = 0; j < sk_IPAddressFamily_num(child); j++) { 1274e1051a39Sopenharmony_ci IPAddressFamily *fc = sk_IPAddressFamily_value(child, j); 1275e1051a39Sopenharmony_ci int k = sk_IPAddressFamily_find(x->rfc3779_addr, fc); 1276e1051a39Sopenharmony_ci IPAddressFamily *fp = 1277e1051a39Sopenharmony_ci sk_IPAddressFamily_value(x->rfc3779_addr, k); 1278e1051a39Sopenharmony_ci 1279e1051a39Sopenharmony_ci if (fp == NULL) { 1280e1051a39Sopenharmony_ci if (fc->ipAddressChoice->type == 1281e1051a39Sopenharmony_ci IPAddressChoice_addressesOrRanges) { 1282e1051a39Sopenharmony_ci validation_err(X509_V_ERR_UNNESTED_RESOURCE); 1283e1051a39Sopenharmony_ci break; 1284e1051a39Sopenharmony_ci } 1285e1051a39Sopenharmony_ci continue; 1286e1051a39Sopenharmony_ci } 1287e1051a39Sopenharmony_ci 1288e1051a39Sopenharmony_ci if (!IPAddressFamily_check_len(fc) || !IPAddressFamily_check_len(fp)) 1289e1051a39Sopenharmony_ci goto done; 1290e1051a39Sopenharmony_ci 1291e1051a39Sopenharmony_ci if (fp->ipAddressChoice->type == 1292e1051a39Sopenharmony_ci IPAddressChoice_addressesOrRanges) { 1293e1051a39Sopenharmony_ci if (fc->ipAddressChoice->type == IPAddressChoice_inherit 1294e1051a39Sopenharmony_ci || addr_contains(fp->ipAddressChoice->u.addressesOrRanges, 1295e1051a39Sopenharmony_ci fc->ipAddressChoice->u.addressesOrRanges, 1296e1051a39Sopenharmony_ci length_from_afi(X509v3_addr_get_afi(fc)))) 1297e1051a39Sopenharmony_ci (void)sk_IPAddressFamily_set(child, j, fp); 1298e1051a39Sopenharmony_ci else 1299e1051a39Sopenharmony_ci validation_err(X509_V_ERR_UNNESTED_RESOURCE); 1300e1051a39Sopenharmony_ci } 1301e1051a39Sopenharmony_ci } 1302e1051a39Sopenharmony_ci } 1303e1051a39Sopenharmony_ci 1304e1051a39Sopenharmony_ci /* 1305e1051a39Sopenharmony_ci * Trust anchor can't inherit. 1306e1051a39Sopenharmony_ci */ 1307e1051a39Sopenharmony_ci if (x->rfc3779_addr != NULL) { 1308e1051a39Sopenharmony_ci for (j = 0; j < sk_IPAddressFamily_num(x->rfc3779_addr); j++) { 1309e1051a39Sopenharmony_ci IPAddressFamily *fp = sk_IPAddressFamily_value(x->rfc3779_addr, j); 1310e1051a39Sopenharmony_ci 1311e1051a39Sopenharmony_ci if (!IPAddressFamily_check_len(fp)) 1312e1051a39Sopenharmony_ci goto done; 1313e1051a39Sopenharmony_ci 1314e1051a39Sopenharmony_ci if (fp->ipAddressChoice->type == IPAddressChoice_inherit 1315e1051a39Sopenharmony_ci && sk_IPAddressFamily_find(child, fp) >= 0) 1316e1051a39Sopenharmony_ci validation_err(X509_V_ERR_UNNESTED_RESOURCE); 1317e1051a39Sopenharmony_ci } 1318e1051a39Sopenharmony_ci } 1319e1051a39Sopenharmony_ci ret = 1; 1320e1051a39Sopenharmony_ci done: 1321e1051a39Sopenharmony_ci sk_IPAddressFamily_free(child); 1322e1051a39Sopenharmony_ci return ret; 1323e1051a39Sopenharmony_ci} 1324e1051a39Sopenharmony_ci 1325e1051a39Sopenharmony_ci#undef validation_err 1326e1051a39Sopenharmony_ci 1327e1051a39Sopenharmony_ci/* 1328e1051a39Sopenharmony_ci * RFC 3779 2.3 path validation -- called from X509_verify_cert(). 1329e1051a39Sopenharmony_ci */ 1330e1051a39Sopenharmony_ciint X509v3_addr_validate_path(X509_STORE_CTX *ctx) 1331e1051a39Sopenharmony_ci{ 1332e1051a39Sopenharmony_ci if (ctx->chain == NULL 1333e1051a39Sopenharmony_ci || sk_X509_num(ctx->chain) == 0 1334e1051a39Sopenharmony_ci || ctx->verify_cb == NULL) { 1335e1051a39Sopenharmony_ci ctx->error = X509_V_ERR_UNSPECIFIED; 1336e1051a39Sopenharmony_ci return 0; 1337e1051a39Sopenharmony_ci } 1338e1051a39Sopenharmony_ci return addr_validate_path_internal(ctx, ctx->chain, NULL); 1339e1051a39Sopenharmony_ci} 1340e1051a39Sopenharmony_ci 1341e1051a39Sopenharmony_ci/* 1342e1051a39Sopenharmony_ci * RFC 3779 2.3 path validation of an extension. 1343e1051a39Sopenharmony_ci * Test whether chain covers extension. 1344e1051a39Sopenharmony_ci */ 1345e1051a39Sopenharmony_ciint X509v3_addr_validate_resource_set(STACK_OF(X509) *chain, 1346e1051a39Sopenharmony_ci IPAddrBlocks *ext, int allow_inheritance) 1347e1051a39Sopenharmony_ci{ 1348e1051a39Sopenharmony_ci if (ext == NULL) 1349e1051a39Sopenharmony_ci return 1; 1350e1051a39Sopenharmony_ci if (chain == NULL || sk_X509_num(chain) == 0) 1351e1051a39Sopenharmony_ci return 0; 1352e1051a39Sopenharmony_ci if (!allow_inheritance && X509v3_addr_inherits(ext)) 1353e1051a39Sopenharmony_ci return 0; 1354e1051a39Sopenharmony_ci return addr_validate_path_internal(NULL, chain, ext); 1355e1051a39Sopenharmony_ci} 1356e1051a39Sopenharmony_ci 1357e1051a39Sopenharmony_ci#endif /* OPENSSL_NO_RFC3779 */ 1358