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Daniel Drowna45056e2012-03-23 10:42:54 -05001/*
2 * Copyright 2011 Daniel Drown
3 *
4 * Licensed under the Apache License, Version 2.0 (the "License");
5 * you may not use this file except in compliance with the License.
6 * You may obtain a copy of the License at
7 *
8 * http://www.apache.org/licenses/LICENSE-2.0
9 *
10 * Unless required by applicable law or agreed to in writing, software
11 * distributed under the License is distributed on an "AS IS" BASIS,
12 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
13 * See the License for the specific language governing permissions and
14 * limitations under the License.
15 *
16 * translate.c - CLAT functions / partial implementation of rfc6145
17 */
18#include <string.h>
Daniel Drowna45056e2012-03-23 10:42:54 -050019
Lorenzo Colitti98de5952019-01-20 11:45:03 +090020#include "netutils/checksum.h"
21
Daniel Drowna45056e2012-03-23 10:42:54 -050022#include "clatd.h"
Lorenzo Colittieb92f482019-01-04 14:59:11 +090023#include "common.h"
Daniel Drowna45056e2012-03-23 10:42:54 -050024#include "config.h"
Daniel Drowna45056e2012-03-23 10:42:54 -050025#include "debug.h"
junyulaic4e591a2018-11-26 22:36:10 +090026#include "icmp.h"
27#include "logging.h"
28#include "translate.h"
Lorenzo Colitti6b2007a2014-12-08 12:53:05 +090029#include "tun.h"
Daniel Drowna45056e2012-03-23 10:42:54 -050030
Lorenzo Colittiee80ca62013-04-10 16:52:22 +090031/* function: packet_checksum
32 * calculates the checksum over all the packet components starting from pos
33 * checksum - checksum of packet components before pos
34 * packet - packet to calculate the checksum of
35 * pos - position to start counting from
36 * returns - the completed 16-bit checksum, ready to write into a checksum header field
37 */
Lorenzo Colittia4454bf2014-02-25 09:27:31 +090038uint16_t packet_checksum(uint32_t checksum, clat_packet packet, clat_packet_index pos) {
Lorenzo Colittiee80ca62013-04-10 16:52:22 +090039 int i;
40 for (i = pos; i < CLAT_POS_MAX; i++) {
41 if (packet[i].iov_len > 0) {
42 checksum = ip_checksum_add(checksum, packet[i].iov_base, packet[i].iov_len);
43 }
44 }
45 return ip_checksum_finish(checksum);
46}
47
48/* function: packet_length
49 * returns the total length of all the packet components after pos
Lorenzo Colittid9084182013-03-22 00:42:21 +090050 * packet - packet to calculate the length of
Lorenzo Colitticd70b352013-04-10 12:24:56 +090051 * pos - position to start counting after
Lorenzo Colittid9084182013-03-22 00:42:21 +090052 * returns: the total length of the packet components after pos
53 */
Lorenzo Colittia4454bf2014-02-25 09:27:31 +090054uint16_t packet_length(clat_packet packet, clat_packet_index pos) {
Lorenzo Colittid9084182013-03-22 00:42:21 +090055 size_t len = 0;
56 int i;
Lorenzo Colittiee80ca62013-04-10 16:52:22 +090057 for (i = pos + 1; i < CLAT_POS_MAX; i++) {
Lorenzo Colittid9084182013-03-22 00:42:21 +090058 len += packet[i].iov_len;
59 }
60 return len;
61}
62
Lorenzo Colittiee80ca62013-04-10 16:52:22 +090063/* function: is_in_plat_subnet
64 * returns true iff the given IPv6 address is in the plat subnet.
65 * addr - IPv6 address
66 */
67int is_in_plat_subnet(const struct in6_addr *addr6) {
68 // Assumes a /96 plat subnet.
69 return (addr6 != NULL) && (memcmp(addr6, &Global_Clatd_Config.plat_subnet, 12) == 0);
70}
71
72/* function: ipv6_addr_to_ipv4_addr
73 * return the corresponding ipv4 address for the given ipv6 address
74 * addr6 - ipv6 address
75 * returns: the IPv4 address
76 */
77uint32_t ipv6_addr_to_ipv4_addr(const struct in6_addr *addr6) {
Lorenzo Colittiee80ca62013-04-10 16:52:22 +090078 if (is_in_plat_subnet(addr6)) {
79 // Assumes a /96 plat subnet.
80 return addr6->s6_addr32[3];
Lorenzo Colitticd70b352013-04-10 12:24:56 +090081 } else if (IN6_ARE_ADDR_EQUAL(addr6, &Global_Clatd_Config.ipv6_local_subnet)) {
82 // Special-case our own address.
Lorenzo Colittiee80ca62013-04-10 16:52:22 +090083 return Global_Clatd_Config.ipv4_local_subnet.s_addr;
Lorenzo Colitticd70b352013-04-10 12:24:56 +090084 } else {
85 // Third party packet. Let the caller deal with it.
86 return INADDR_NONE;
Lorenzo Colittiee80ca62013-04-10 16:52:22 +090087 }
88}
89
90/* function: ipv4_addr_to_ipv6_addr
91 * return the corresponding ipv6 address for the given ipv4 address
92 * addr4 - ipv4 address
93 */
94struct in6_addr ipv4_addr_to_ipv6_addr(uint32_t addr4) {
95 struct in6_addr addr6;
96 // Both addresses are in network byte order (addr4 comes from a network packet, and the config
97 // file entry is read using inet_ntop).
98 if (addr4 == Global_Clatd_Config.ipv4_local_subnet.s_addr) {
99 return Global_Clatd_Config.ipv6_local_subnet;
100 } else {
101 // Assumes a /96 plat subnet.
junyulaic4e591a2018-11-26 22:36:10 +0900102 addr6 = Global_Clatd_Config.plat_subnet;
Lorenzo Colittiee80ca62013-04-10 16:52:22 +0900103 addr6.s6_addr32[3] = addr4;
104 return addr6;
105 }
106}
107
Daniel Drowna45056e2012-03-23 10:42:54 -0500108/* function: fill_tun_header
109 * fill in the header for the tun fd
110 * tun_header - tunnel header, already allocated
111 * proto - ethernet protocol id: ETH_P_IP(ipv4) or ETH_P_IPV6(ipv6)
112 */
113void fill_tun_header(struct tun_pi *tun_header, uint16_t proto) {
114 tun_header->flags = 0;
115 tun_header->proto = htons(proto);
116}
117
Daniel Drowna45056e2012-03-23 10:42:54 -0500118/* function: fill_ip_header
Lorenzo Colittid9084182013-03-22 00:42:21 +0900119 * generate an ipv4 header from an ipv6 header
120 * ip_targ - (ipv4) target packet header, source: original ipv4 addr, dest: local subnet addr
Daniel Drowna45056e2012-03-23 10:42:54 -0500121 * payload_len - length of other data inside packet
122 * protocol - protocol number (tcp, udp, etc)
Lorenzo Colittid9084182013-03-22 00:42:21 +0900123 * old_header - (ipv6) source packet header, source: nat64 prefix, dest: local subnet prefix
Daniel Drowna45056e2012-03-23 10:42:54 -0500124 */
Lorenzo Colittid9084182013-03-22 00:42:21 +0900125void fill_ip_header(struct iphdr *ip, uint16_t payload_len, uint8_t protocol,
126 const struct ip6_hdr *old_header) {
Lorenzo Colitticd70b352013-04-10 12:24:56 +0900127 int ttl_guess;
Lorenzo Colittid9084182013-03-22 00:42:21 +0900128 memset(ip, 0, sizeof(struct iphdr));
Daniel Drowna45056e2012-03-23 10:42:54 -0500129
junyulaic4e591a2018-11-26 22:36:10 +0900130 ip->ihl = 5;
131 ip->version = 4;
132 ip->tos = 0;
133 ip->tot_len = htons(sizeof(struct iphdr) + payload_len);
134 ip->id = 0;
Lorenzo Colittid9084182013-03-22 00:42:21 +0900135 ip->frag_off = htons(IP_DF);
junyulaic4e591a2018-11-26 22:36:10 +0900136 ip->ttl = old_header->ip6_hlim;
Lorenzo Colittid9084182013-03-22 00:42:21 +0900137 ip->protocol = protocol;
junyulaic4e591a2018-11-26 22:36:10 +0900138 ip->check = 0;
Daniel Drowna45056e2012-03-23 10:42:54 -0500139
Lorenzo Colittiee80ca62013-04-10 16:52:22 +0900140 ip->saddr = ipv6_addr_to_ipv4_addr(&old_header->ip6_src);
141 ip->daddr = ipv6_addr_to_ipv4_addr(&old_header->ip6_dst);
Lorenzo Colitticd70b352013-04-10 12:24:56 +0900142
143 // Third-party ICMPv6 message. This may have been originated by an native IPv6 address.
144 // In that case, the source IPv6 address can't be translated and we need to make up an IPv4
145 // source address. For now, use 255.0.0.<ttl>, which at least looks useful in traceroute.
junyulaic4e591a2018-11-26 22:36:10 +0900146 if ((uint32_t)ip->saddr == INADDR_NONE) {
Lorenzo Colitticd70b352013-04-10 12:24:56 +0900147 ttl_guess = icmp_guess_ttl(old_header->ip6_hlim);
148 ip->saddr = htonl((0xff << 24) + ttl_guess);
149 }
Daniel Drowna45056e2012-03-23 10:42:54 -0500150}
151
152/* function: fill_ip6_header
Lorenzo Colittid9084182013-03-22 00:42:21 +0900153 * generate an ipv6 header from an ipv4 header
154 * ip6 - (ipv6) target packet header, source: local subnet prefix, dest: nat64 prefix
Daniel Drowna45056e2012-03-23 10:42:54 -0500155 * payload_len - length of other data inside packet
156 * protocol - protocol number (tcp, udp, etc)
Lorenzo Colittid9084182013-03-22 00:42:21 +0900157 * old_header - (ipv4) source packet header, source: local subnet addr, dest: internet's ipv4 addr
Daniel Drowna45056e2012-03-23 10:42:54 -0500158 */
Lorenzo Colittid9084182013-03-22 00:42:21 +0900159void fill_ip6_header(struct ip6_hdr *ip6, uint16_t payload_len, uint8_t protocol,
160 const struct iphdr *old_header) {
Daniel Drowna45056e2012-03-23 10:42:54 -0500161 memset(ip6, 0, sizeof(struct ip6_hdr));
162
junyulaic4e591a2018-11-26 22:36:10 +0900163 ip6->ip6_vfc = 6 << 4;
Daniel Drowna45056e2012-03-23 10:42:54 -0500164 ip6->ip6_plen = htons(payload_len);
junyulaic4e591a2018-11-26 22:36:10 +0900165 ip6->ip6_nxt = protocol;
Daniel Drowna45056e2012-03-23 10:42:54 -0500166 ip6->ip6_hlim = old_header->ttl;
167
Lorenzo Colittiee80ca62013-04-10 16:52:22 +0900168 ip6->ip6_src = ipv4_addr_to_ipv6_addr(old_header->saddr);
169 ip6->ip6_dst = ipv4_addr_to_ipv6_addr(old_header->daddr);
Daniel Drowna45056e2012-03-23 10:42:54 -0500170}
171
Lorenzo Colitti57d480d2014-02-09 10:35:38 +0900172/* function: maybe_fill_frag_header
173 * fills a fragmentation header
174 * generate an ipv6 fragment header from an ipv4 header
175 * frag_hdr - target (ipv6) fragmentation header
176 * ip6_targ - target (ipv6) header
177 * old_header - (ipv4) source packet header
178 * returns: the length of the fragmentation header if present, or zero if not present
179 */
180size_t maybe_fill_frag_header(struct ip6_frag *frag_hdr, struct ip6_hdr *ip6_targ,
181 const struct iphdr *old_header) {
182 uint16_t frag_flags = ntohs(old_header->frag_off);
junyulaic4e591a2018-11-26 22:36:10 +0900183 uint16_t frag_off = frag_flags & IP_OFFMASK;
Lorenzo Colitti57d480d2014-02-09 10:35:38 +0900184 if (frag_off == 0 && (frag_flags & IP_MF) == 0) {
185 // Not a fragment.
186 return 0;
187 }
188
junyulaic4e591a2018-11-26 22:36:10 +0900189 frag_hdr->ip6f_nxt = ip6_targ->ip6_nxt;
Lorenzo Colitti57d480d2014-02-09 10:35:38 +0900190 frag_hdr->ip6f_reserved = 0;
191 // In IPv4, the offset is the bottom 13 bits; in IPv6 it's the top 13 bits.
192 frag_hdr->ip6f_offlg = htons(frag_off << 3);
193 if (frag_flags & IP_MF) {
194 frag_hdr->ip6f_offlg |= IP6F_MORE_FRAG;
195 }
196 frag_hdr->ip6f_ident = htonl(ntohs(old_header->id));
junyulaic4e591a2018-11-26 22:36:10 +0900197 ip6_targ->ip6_nxt = IPPROTO_FRAGMENT;
Lorenzo Colitti57d480d2014-02-09 10:35:38 +0900198
199 return sizeof(*frag_hdr);
200}
201
202/* function: parse_frag_header
203 * return the length of the fragmentation header if present, or zero if not present
204 * generate an ipv6 fragment header from an ipv4 header
205 * frag_hdr - (ipv6) fragmentation header
206 * ip_targ - target (ipv4) header
207 * returns: the next header value
208 */
209uint8_t parse_frag_header(const struct ip6_frag *frag_hdr, struct iphdr *ip_targ) {
210 uint16_t frag_off = (ntohs(frag_hdr->ip6f_offlg & IP6F_OFF_MASK) >> 3);
211 if (frag_hdr->ip6f_offlg & IP6F_MORE_FRAG) {
212 frag_off |= IP_MF;
213 }
214 ip_targ->frag_off = htons(frag_off);
junyulaic4e591a2018-11-26 22:36:10 +0900215 ip_targ->id = htons(ntohl(frag_hdr->ip6f_ident) & 0xffff);
Lorenzo Colitti57d480d2014-02-09 10:35:38 +0900216 ip_targ->protocol = frag_hdr->ip6f_nxt;
217 return frag_hdr->ip6f_nxt;
218}
Lorenzo Colittif9390602014-02-13 12:53:35 +0900219
Daniel Drowna45056e2012-03-23 10:42:54 -0500220/* function: icmp_to_icmp6
Lorenzo Colitticd70b352013-04-10 12:24:56 +0900221 * translate ipv4 icmp to ipv6 icmp
Lorenzo Colittid9084182013-03-22 00:42:21 +0900222 * out - output packet
Daniel Drowna45056e2012-03-23 10:42:54 -0500223 * icmp - source packet icmp header
Lorenzo Colittid9084182013-03-22 00:42:21 +0900224 * checksum - pseudo-header checksum
Daniel Drowna45056e2012-03-23 10:42:54 -0500225 * payload - icmp payload
226 * payload_size - size of payload
Lorenzo Colittid9084182013-03-22 00:42:21 +0900227 * returns: the highest position in the output clat_packet that's filled in
Daniel Drowna45056e2012-03-23 10:42:54 -0500228 */
Lorenzo Colittia4454bf2014-02-25 09:27:31 +0900229int icmp_to_icmp6(clat_packet out, clat_packet_index pos, const struct icmphdr *icmp,
230 uint32_t checksum, const uint8_t *payload, size_t payload_size) {
Lorenzo Colittid9084182013-03-22 00:42:21 +0900231 struct icmp6_hdr *icmp6_targ = out[pos].iov_base;
Lorenzo Colitticd70b352013-04-10 12:24:56 +0900232 uint8_t icmp6_type;
233 int clat_packet_len;
Daniel Drowna45056e2012-03-23 10:42:54 -0500234
Lorenzo Colittid9084182013-03-22 00:42:21 +0900235 memset(icmp6_targ, 0, sizeof(struct icmp6_hdr));
Lorenzo Colitticd70b352013-04-10 12:24:56 +0900236
junyulaic4e591a2018-11-26 22:36:10 +0900237 icmp6_type = icmp_to_icmp6_type(icmp->type, icmp->code);
Lorenzo Colitticd70b352013-04-10 12:24:56 +0900238 icmp6_targ->icmp6_type = icmp6_type;
239 icmp6_targ->icmp6_code = icmp_to_icmp6_code(icmp->type, icmp->code);
Daniel Drowna45056e2012-03-23 10:42:54 -0500240
Lorenzo Colittid9084182013-03-22 00:42:21 +0900241 out[pos].iov_len = sizeof(struct icmp6_hdr);
Lorenzo Colitticd70b352013-04-10 12:24:56 +0900242
junyulaic4e591a2018-11-26 22:36:10 +0900243 if (pos == CLAT_POS_TRANSPORTHDR && is_icmp_error(icmp->type) && icmp6_type != ICMP6_PARAM_PROB) {
Lorenzo Colitticd70b352013-04-10 12:24:56 +0900244 // An ICMP error we understand, one level deep.
245 // Translate the nested packet (the one that caused the error).
246 clat_packet_len = ipv4_packet(out, pos + 1, payload, payload_size);
247
248 // The pseudo-header checksum was calculated on the transport length of the original IPv4
249 // packet that we were asked to translate. This transport length is 20 bytes smaller than it
250 // needs to be, because the ICMP error contains an IPv4 header, which we will be translating to
Lorenzo Colitti5a50c022014-02-10 09:20:05 +0900251 // an IPv6 header, which is 20 bytes longer. Fix it up here.
Lorenzo Colitticd70b352013-04-10 12:24:56 +0900252 // We only need to do this for ICMP->ICMPv6, not ICMPv6->ICMP, because ICMP does not use the
253 // pseudo-header when calculating its checksum (as the IPv4 header has its own checksum).
Lorenzo Colitti5a50c022014-02-10 09:20:05 +0900254 checksum = checksum + htons(20);
Lorenzo Colitticd70b352013-04-10 12:24:56 +0900255 } else if (icmp6_type == ICMP6_ECHO_REQUEST || icmp6_type == ICMP6_ECHO_REPLY) {
256 // Ping packet.
junyulaic4e591a2018-11-26 22:36:10 +0900257 icmp6_targ->icmp6_id = icmp->un.echo.id;
258 icmp6_targ->icmp6_seq = icmp->un.echo.sequence;
259 out[CLAT_POS_PAYLOAD].iov_base = (uint8_t *)payload;
260 out[CLAT_POS_PAYLOAD].iov_len = payload_size;
261 clat_packet_len = CLAT_POS_PAYLOAD + 1;
Lorenzo Colitticd70b352013-04-10 12:24:56 +0900262 } else {
263 // Unknown type/code. The type/code conversion functions have already logged an error.
264 return 0;
265 }
Daniel Drowna45056e2012-03-23 10:42:54 -0500266
Lorenzo Colittiee80ca62013-04-10 16:52:22 +0900267 icmp6_targ->icmp6_cksum = 0; // Checksum field must be 0 when calculating checksum.
268 icmp6_targ->icmp6_cksum = packet_checksum(checksum, out, pos);
269
Lorenzo Colitticd70b352013-04-10 12:24:56 +0900270 return clat_packet_len;
Daniel Drowna45056e2012-03-23 10:42:54 -0500271}
272
273/* function: icmp6_to_icmp
Lorenzo Colitticd70b352013-04-10 12:24:56 +0900274 * translate ipv6 icmp to ipv4 icmp
Lorenzo Colittid9084182013-03-22 00:42:21 +0900275 * out - output packet
Daniel Drowna45056e2012-03-23 10:42:54 -0500276 * icmp6 - source packet icmp6 header
277 * payload - icmp6 payload
278 * payload_size - size of payload
Lorenzo Colittid9084182013-03-22 00:42:21 +0900279 * returns: the highest position in the output clat_packet that's filled in
Daniel Drowna45056e2012-03-23 10:42:54 -0500280 */
Lorenzo Colittia4454bf2014-02-25 09:27:31 +0900281int icmp6_to_icmp(clat_packet out, clat_packet_index pos, const struct icmp6_hdr *icmp6,
Brian Carlstromfcac4102014-02-24 20:03:01 -0800282 const uint8_t *payload, size_t payload_size) {
Lorenzo Colittid9084182013-03-22 00:42:21 +0900283 struct icmphdr *icmp_targ = out[pos].iov_base;
Lorenzo Colitticd70b352013-04-10 12:24:56 +0900284 uint8_t icmp_type;
Lorenzo Colitticd70b352013-04-10 12:24:56 +0900285 int clat_packet_len;
Daniel Drowna45056e2012-03-23 10:42:54 -0500286
Lorenzo Colittid9084182013-03-22 00:42:21 +0900287 memset(icmp_targ, 0, sizeof(struct icmphdr));
Daniel Drowna45056e2012-03-23 10:42:54 -0500288
junyulaic4e591a2018-11-26 22:36:10 +0900289 icmp_type = icmp6_to_icmp_type(icmp6->icmp6_type, icmp6->icmp6_code);
Lorenzo Colitticd70b352013-04-10 12:24:56 +0900290 icmp_targ->type = icmp_type;
291 icmp_targ->code = icmp6_to_icmp_code(icmp6->icmp6_type, icmp6->icmp6_code);
Daniel Drowna45056e2012-03-23 10:42:54 -0500292
Lorenzo Colittid9084182013-03-22 00:42:21 +0900293 out[pos].iov_len = sizeof(struct icmphdr);
Lorenzo Colitticd70b352013-04-10 12:24:56 +0900294
junyulaic4e591a2018-11-26 22:36:10 +0900295 if (pos == CLAT_POS_TRANSPORTHDR && is_icmp6_error(icmp6->icmp6_type) &&
Lorenzo Colitticd70b352013-04-10 12:24:56 +0900296 icmp_type != ICMP_PARAMETERPROB) {
297 // An ICMPv6 error we understand, one level deep.
298 // Translate the nested packet (the one that caused the error).
299 clat_packet_len = ipv6_packet(out, pos + 1, payload, payload_size);
300 } else if (icmp_type == ICMP_ECHO || icmp_type == ICMP_ECHOREPLY) {
301 // Ping packet.
junyulaic4e591a2018-11-26 22:36:10 +0900302 icmp_targ->un.echo.id = icmp6->icmp6_id;
303 icmp_targ->un.echo.sequence = icmp6->icmp6_seq;
304 out[CLAT_POS_PAYLOAD].iov_base = (uint8_t *)payload;
305 out[CLAT_POS_PAYLOAD].iov_len = payload_size;
306 clat_packet_len = CLAT_POS_PAYLOAD + 1;
Lorenzo Colitticd70b352013-04-10 12:24:56 +0900307 } else {
junyulaic4e591a2018-11-26 22:36:10 +0900308 // Unknown type/code. The type/code conversion functions have already logged an error.
Lorenzo Colitticd70b352013-04-10 12:24:56 +0900309 return 0;
310 }
Daniel Drowna45056e2012-03-23 10:42:54 -0500311
Lorenzo Colittiee80ca62013-04-10 16:52:22 +0900312 icmp_targ->checksum = 0; // Checksum field must be 0 when calculating checksum.
313 icmp_targ->checksum = packet_checksum(0, out, pos);
314
Lorenzo Colitticd70b352013-04-10 12:24:56 +0900315 return clat_packet_len;
Lorenzo Colittid9084182013-03-22 00:42:21 +0900316}
Daniel Drowna45056e2012-03-23 10:42:54 -0500317
Lorenzo Colittic9f4c892013-11-18 12:59:44 +0900318/* function: generic_packet
319 * takes a generic IP packet and sets it up for translation
320 * out - output packet
321 * pos - position in the output packet of the transport header
322 * payload - pointer to IP payload
323 * len - size of ip payload
324 * returns: the highest position in the output clat_packet that's filled in
325 */
Lorenzo Colittia4454bf2014-02-25 09:27:31 +0900326int generic_packet(clat_packet out, clat_packet_index pos, const uint8_t *payload, size_t len) {
junyulaic4e591a2018-11-26 22:36:10 +0900327 out[pos].iov_len = 0;
328 out[CLAT_POS_PAYLOAD].iov_base = (uint8_t *)payload;
329 out[CLAT_POS_PAYLOAD].iov_len = len;
Lorenzo Colittic9f4c892013-11-18 12:59:44 +0900330
331 return CLAT_POS_PAYLOAD + 1;
332}
333
Lorenzo Colittid9084182013-03-22 00:42:21 +0900334/* function: udp_packet
335 * takes a udp packet and sets it up for translation
336 * out - output packet
337 * udp - pointer to udp header in packet
Lorenzo Colitti5a50c022014-02-10 09:20:05 +0900338 * old_sum - pseudo-header checksum of old header
339 * new_sum - pseudo-header checksum of new header
Lorenzo Colittid9084182013-03-22 00:42:21 +0900340 * len - size of ip payload
341 */
junyulaic4e591a2018-11-26 22:36:10 +0900342int udp_packet(clat_packet out, clat_packet_index pos, const struct udphdr *udp, uint32_t old_sum,
343 uint32_t new_sum, size_t len) {
Brian Carlstromfcac4102014-02-24 20:03:01 -0800344 const uint8_t *payload;
Lorenzo Colittid9084182013-03-22 00:42:21 +0900345 size_t payload_size;
346
junyulaic4e591a2018-11-26 22:36:10 +0900347 if (len < sizeof(struct udphdr)) {
348 logmsg_dbg(ANDROID_LOG_ERROR, "udp_packet/(too small)");
Lorenzo Colittid9084182013-03-22 00:42:21 +0900349 return 0;
350 }
351
junyulaic4e591a2018-11-26 22:36:10 +0900352 payload = (const uint8_t *)(udp + 1);
Lorenzo Colittid9084182013-03-22 00:42:21 +0900353 payload_size = len - sizeof(struct udphdr);
354
Lorenzo Colitti5a50c022014-02-10 09:20:05 +0900355 return udp_translate(out, pos, udp, old_sum, new_sum, payload, payload_size);
Lorenzo Colittid9084182013-03-22 00:42:21 +0900356}
357
358/* function: tcp_packet
359 * takes a tcp packet and sets it up for translation
360 * out - output packet
361 * tcp - pointer to tcp header in packet
362 * checksum - pseudo-header checksum
363 * len - size of ip payload
364 * returns: the highest position in the output clat_packet that's filled in
365 */
junyulaic4e591a2018-11-26 22:36:10 +0900366int tcp_packet(clat_packet out, clat_packet_index pos, const struct tcphdr *tcp, uint32_t old_sum,
367 uint32_t new_sum, size_t len) {
Brian Carlstromfcac4102014-02-24 20:03:01 -0800368 const uint8_t *payload;
Lorenzo Colittid9084182013-03-22 00:42:21 +0900369 size_t payload_size, header_size;
370
junyulaic4e591a2018-11-26 22:36:10 +0900371 if (len < sizeof(struct tcphdr)) {
372 logmsg_dbg(ANDROID_LOG_ERROR, "tcp_packet/(too small)");
Lorenzo Colittid9084182013-03-22 00:42:21 +0900373 return 0;
374 }
375
junyulaic4e591a2018-11-26 22:36:10 +0900376 if (tcp->doff < 5) {
377 logmsg_dbg(ANDROID_LOG_ERROR, "tcp_packet/tcp header length set to less than 5: %x", tcp->doff);
Lorenzo Colittid9084182013-03-22 00:42:21 +0900378 return 0;
379 }
380
junyulaic4e591a2018-11-26 22:36:10 +0900381 if ((size_t)tcp->doff * 4 > len) {
382 logmsg_dbg(ANDROID_LOG_ERROR, "tcp_packet/tcp header length set too large: %x", tcp->doff);
Lorenzo Colittid9084182013-03-22 00:42:21 +0900383 return 0;
384 }
385
junyulaic4e591a2018-11-26 22:36:10 +0900386 header_size = tcp->doff * 4;
387 payload = ((const uint8_t *)tcp) + header_size;
Lorenzo Colittid9084182013-03-22 00:42:21 +0900388 payload_size = len - header_size;
389
Lorenzo Colitti5a50c022014-02-10 09:20:05 +0900390 return tcp_translate(out, pos, tcp, header_size, old_sum, new_sum, payload, payload_size);
Daniel Drowna45056e2012-03-23 10:42:54 -0500391}
392
393/* function: udp_translate
394 * common between ipv4/ipv6 - setup checksum and send udp packet
Lorenzo Colittid9084182013-03-22 00:42:21 +0900395 * out - output packet
396 * udp - udp header
Lorenzo Colitti5a50c022014-02-10 09:20:05 +0900397 * old_sum - pseudo-header checksum of old header
398 * new_sum - pseudo-header checksum of new header
Lorenzo Colittid9084182013-03-22 00:42:21 +0900399 * payload - tcp payload
Daniel Drowna45056e2012-03-23 10:42:54 -0500400 * payload_size - size of payload
Lorenzo Colittid9084182013-03-22 00:42:21 +0900401 * returns: the highest position in the output clat_packet that's filled in
Daniel Drowna45056e2012-03-23 10:42:54 -0500402 */
Lorenzo Colittia4454bf2014-02-25 09:27:31 +0900403int udp_translate(clat_packet out, clat_packet_index pos, const struct udphdr *udp,
404 uint32_t old_sum, uint32_t new_sum, const uint8_t *payload, size_t payload_size) {
Lorenzo Colittid9084182013-03-22 00:42:21 +0900405 struct udphdr *udp_targ = out[pos].iov_base;
Daniel Drowna45056e2012-03-23 10:42:54 -0500406
Lorenzo Colittid9084182013-03-22 00:42:21 +0900407 memcpy(udp_targ, udp, sizeof(struct udphdr));
Daniel Drowna45056e2012-03-23 10:42:54 -0500408
junyulaic4e591a2018-11-26 22:36:10 +0900409 out[pos].iov_len = sizeof(struct udphdr);
410 out[CLAT_POS_PAYLOAD].iov_base = (uint8_t *)payload;
411 out[CLAT_POS_PAYLOAD].iov_len = payload_size;
Daniel Drowna45056e2012-03-23 10:42:54 -0500412
Lorenzo Colitti5a50c022014-02-10 09:20:05 +0900413 if (udp_targ->check) {
414 udp_targ->check = ip_checksum_adjust(udp->check, old_sum, new_sum);
415 } else {
416 // Zero checksums are special. RFC 768 says, "An all zero transmitted checksum value means that
417 // the transmitter generated no checksum (for debugging or for higher level protocols that
418 // don't care)." However, in IPv6 zero UDP checksums were only permitted by RFC 6935 (2013). So
419 // for safety we recompute it.
420 udp_targ->check = 0; // Checksum field must be 0 when calculating checksum.
421 udp_targ->check = packet_checksum(new_sum, out, pos);
422 }
423
424 // RFC 768: "If the computed checksum is zero, it is transmitted as all ones (the equivalent
425 // in one's complement arithmetic)."
426 if (!udp_targ->check) {
427 udp_targ->check = 0xffff;
428 }
Lorenzo Colittiee80ca62013-04-10 16:52:22 +0900429
430 return CLAT_POS_PAYLOAD + 1;
Daniel Drowna45056e2012-03-23 10:42:54 -0500431}
432
433/* function: tcp_translate
434 * common between ipv4/ipv6 - setup checksum and send tcp packet
Lorenzo Colittid9084182013-03-22 00:42:21 +0900435 * out - output packet
436 * tcp - tcp header
437 * header_size - size of tcp header including options
438 * checksum - partial checksum covering ipv4/ipv6 header
Daniel Drowna45056e2012-03-23 10:42:54 -0500439 * payload - tcp payload
440 * payload_size - size of payload
Lorenzo Colittid9084182013-03-22 00:42:21 +0900441 * returns: the highest position in the output clat_packet that's filled in
Daniel Drowna45056e2012-03-23 10:42:54 -0500442 */
Lorenzo Colittia4454bf2014-02-25 09:27:31 +0900443int tcp_translate(clat_packet out, clat_packet_index pos, const struct tcphdr *tcp,
junyulaic4e591a2018-11-26 22:36:10 +0900444 size_t header_size, uint32_t old_sum, uint32_t new_sum, const uint8_t *payload,
445 size_t payload_size) {
Lorenzo Colittid9084182013-03-22 00:42:21 +0900446 struct tcphdr *tcp_targ = out[pos].iov_base;
junyulaic4e591a2018-11-26 22:36:10 +0900447 out[pos].iov_len = header_size;
Daniel Drowna45056e2012-03-23 10:42:54 -0500448
Lorenzo Colittid9084182013-03-22 00:42:21 +0900449 if (header_size > MAX_TCP_HDR) {
450 // A TCP header cannot be more than MAX_TCP_HDR bytes long because it's a 4-bit field that
451 // counts in 4-byte words. So this can never happen unless there is a bug in the caller.
junyulaic4e591a2018-11-26 22:36:10 +0900452 logmsg(ANDROID_LOG_ERROR, "tcp_translate: header too long %d > %d, truncating", header_size,
453 MAX_TCP_HDR);
Lorenzo Colittid9084182013-03-22 00:42:21 +0900454 header_size = MAX_TCP_HDR;
Daniel Drowna45056e2012-03-23 10:42:54 -0500455 }
Lorenzo Colitti5cc877d2013-04-08 19:12:43 +0900456
Lorenzo Colittid9084182013-03-22 00:42:21 +0900457 memcpy(tcp_targ, tcp, header_size);
Lorenzo Colitti5cc877d2013-04-08 19:12:43 +0900458
junyulaic4e591a2018-11-26 22:36:10 +0900459 out[CLAT_POS_PAYLOAD].iov_base = (uint8_t *)payload;
460 out[CLAT_POS_PAYLOAD].iov_len = payload_size;
Daniel Drowna45056e2012-03-23 10:42:54 -0500461
Lorenzo Colitti5a50c022014-02-10 09:20:05 +0900462 tcp_targ->check = ip_checksum_adjust(tcp->check, old_sum, new_sum);
Daniel Drowna45056e2012-03-23 10:42:54 -0500463
Lorenzo Colittiee80ca62013-04-10 16:52:22 +0900464 return CLAT_POS_PAYLOAD + 1;
Daniel Drowna45056e2012-03-23 10:42:54 -0500465}
Lorenzo Colittif9390602014-02-13 12:53:35 +0900466
Lorenzo Colitti10e88272014-06-02 21:20:40 +0900467// Weak symbol so we can override it in the unit test.
468void send_rawv6(int fd, clat_packet out, int iov_len) __attribute__((weak));
469
470void send_rawv6(int fd, clat_packet out, int iov_len) {
471 // A send on a raw socket requires a destination address to be specified even if the socket's
472 // protocol is IPPROTO_RAW. This is the address that will be used in routing lookups; the
473 // destination address in the packet header only affects what appears on the wire, not where the
474 // packet is sent to.
475 static struct sockaddr_in6 sin6 = { AF_INET6, 0, 0, { { { 0, 0, 0, 0 } } }, 0 };
junyulaic4e591a2018-11-26 22:36:10 +0900476 static struct msghdr msg = {
477 .msg_name = &sin6,
Lorenzo Colitti10e88272014-06-02 21:20:40 +0900478 .msg_namelen = sizeof(sin6),
479 };
480
junyulaic4e591a2018-11-26 22:36:10 +0900481 msg.msg_iov = out, msg.msg_iovlen = iov_len,
482 sin6.sin6_addr = ((struct ip6_hdr *)out[CLAT_POS_IPHDR].iov_base)->ip6_dst;
Lorenzo Colitti10e88272014-06-02 21:20:40 +0900483 sendmsg(fd, &msg, 0);
484}
485
Lorenzo Colittif9390602014-02-13 12:53:35 +0900486/* function: translate_packet
Lorenzo Colitti91d0f1b2014-06-02 15:49:36 +0900487 * takes a packet, translates it, and writes it to fd
488 * fd - fd to write translated packet to
489 * to_ipv6 - true if translating to ipv6, false if translating to ipv4
Lorenzo Colittif9390602014-02-13 12:53:35 +0900490 * packet - packet
491 * packetsize - size of packet
492 */
Lorenzo Colitti91d0f1b2014-06-02 15:49:36 +0900493void translate_packet(int fd, int to_ipv6, const uint8_t *packet, size_t packetsize) {
Lorenzo Colittif9390602014-02-13 12:53:35 +0900494 int iov_len = 0;
495
496 // Allocate buffers for all packet headers.
497 struct tun_pi tun_targ;
498 char iphdr[sizeof(struct ip6_hdr)];
Lorenzo Colitti57d480d2014-02-09 10:35:38 +0900499 char fraghdr[sizeof(struct ip6_frag)];
Lorenzo Colittif9390602014-02-13 12:53:35 +0900500 char transporthdr[MAX_TCP_HDR];
501 char icmp_iphdr[sizeof(struct ip6_hdr)];
Lorenzo Colitti57d480d2014-02-09 10:35:38 +0900502 char icmp_fraghdr[sizeof(struct ip6_frag)];
Lorenzo Colittif9390602014-02-13 12:53:35 +0900503 char icmp_transporthdr[MAX_TCP_HDR];
504
505 // iovec of the packets we'll send. This gets passed down to the translation functions.
506 clat_packet out = {
junyulaic4e591a2018-11-26 22:36:10 +0900507 { &tun_targ, 0 }, // Tunnel header.
508 { iphdr, 0 }, // IP header.
509 { fraghdr, 0 }, // Fragment header.
510 { transporthdr, 0 }, // Transport layer header.
511 { icmp_iphdr, 0 }, // ICMP error inner IP header.
512 { icmp_fraghdr, 0 }, // ICMP error fragmentation header.
513 { icmp_transporthdr, 0 }, // ICMP error transport layer header.
514 { NULL, 0 }, // Payload. No buffer, it's a pointer to the original payload.
Lorenzo Colittif9390602014-02-13 12:53:35 +0900515 };
516
Lorenzo Colitti91d0f1b2014-06-02 15:49:36 +0900517 if (to_ipv6) {
Lorenzo Colittif9390602014-02-13 12:53:35 +0900518 iov_len = ipv4_packet(out, CLAT_POS_IPHDR, packet, packetsize);
Lorenzo Colitti10e88272014-06-02 21:20:40 +0900519 if (iov_len > 0) {
520 send_rawv6(fd, out, iov_len);
521 }
Lorenzo Colittif9390602014-02-13 12:53:35 +0900522 } else {
Lorenzo Colitti91d0f1b2014-06-02 15:49:36 +0900523 iov_len = ipv6_packet(out, CLAT_POS_IPHDR, packet, packetsize);
Lorenzo Colitti10e88272014-06-02 21:20:40 +0900524 if (iov_len > 0) {
525 fill_tun_header(&tun_targ, ETH_P_IP);
526 out[CLAT_POS_TUNHDR].iov_len = sizeof(tun_targ);
527 send_tun(fd, out, iov_len);
528 }
Lorenzo Colittif9390602014-02-13 12:53:35 +0900529 }
530}