2 * Copyright (c) 2016 HUAWEI TECHNOLOGIES CO., LTD.
3 * Copyright (c) 2016 FUJITSU LIMITED
4 * Copyright (c) 2016 Intel Corporation
6 * Author: Zhang Chen <zhangchen.fnst@cn.fujitsu.com>
8 * This work is licensed under the terms of the GNU GPL, version 2 or
9 * later. See the COPYING file in the top-level directory.
12 #include "qemu/osdep.h"
15 #include "net/filter.h"
17 #include "qemu-common.h"
18 #include "qapi/error.h"
19 #include "qapi/qmp/qerror.h"
20 #include "qapi-visit.h"
21 #include "qom/object.h"
22 #include "qemu/main-loop.h"
24 #include "net/checksum.h"
26 #define FILTER_COLO_REWRITER(obj) \
27 OBJECT_CHECK(RewriterState, (obj), TYPE_FILTER_REWRITER)
29 #define TYPE_FILTER_REWRITER "filter-rewriter"
31 typedef struct RewriterState
{
32 NetFilterState parent_obj
;
33 NetQueue
*incoming_queue
;
34 /* hashtable to save connection */
35 GHashTable
*connection_track_table
;
38 static void filter_rewriter_flush(NetFilterState
*nf
)
40 RewriterState
*s
= FILTER_COLO_REWRITER(nf
);
42 if (!qemu_net_queue_flush(s
->incoming_queue
)) {
43 /* Unable to empty the queue, purge remaining packets */
44 qemu_net_queue_purge(s
->incoming_queue
, nf
->netdev
);
49 * Return 1 on success, if return 0 means the pkt
52 static int is_tcp_packet(Packet
*pkt
)
54 if (!parse_packet_early(pkt
) &&
55 pkt
->ip
->ip_p
== IPPROTO_TCP
) {
62 /* handle tcp packet from primary guest */
63 static int handle_primary_tcp_pkt(NetFilterState
*nf
,
67 struct tcphdr
*tcp_pkt
;
69 tcp_pkt
= (struct tcphdr
*)pkt
->transport_header
;
70 if (trace_event_get_state(TRACE_COLO_FILTER_REWRITER_DEBUG
)) {
71 trace_colo_filter_rewriter_pkt_info(__func__
,
72 inet_ntoa(pkt
->ip
->ip_src
), inet_ntoa(pkt
->ip
->ip_dst
),
73 ntohl(tcp_pkt
->th_seq
), ntohl(tcp_pkt
->th_ack
),
75 trace_colo_filter_rewriter_conn_offset(conn
->offset
);
78 if (((tcp_pkt
->th_flags
& (TH_ACK
| TH_SYN
)) == TH_SYN
)) {
80 * we use this flag update offset func
81 * run once in independent tcp connection
86 if (((tcp_pkt
->th_flags
& (TH_ACK
| TH_SYN
)) == TH_ACK
)) {
89 * offset = secondary_seq - primary seq
90 * ack packet sent by guest from primary node,
91 * so we use th_ack - 1 get primary_seq
93 conn
->offset
-= (ntohl(tcp_pkt
->th_ack
) - 1);
97 /* handle packets to the secondary from the primary */
98 tcp_pkt
->th_ack
= htonl(ntohl(tcp_pkt
->th_ack
) + conn
->offset
);
100 net_checksum_calculate((uint8_t *)pkt
->data
, pkt
->size
);
107 /* handle tcp packet from secondary guest */
108 static int handle_secondary_tcp_pkt(NetFilterState
*nf
,
112 struct tcphdr
*tcp_pkt
;
114 tcp_pkt
= (struct tcphdr
*)pkt
->transport_header
;
116 if (trace_event_get_state(TRACE_COLO_FILTER_REWRITER_DEBUG
)) {
117 trace_colo_filter_rewriter_pkt_info(__func__
,
118 inet_ntoa(pkt
->ip
->ip_src
), inet_ntoa(pkt
->ip
->ip_dst
),
119 ntohl(tcp_pkt
->th_seq
), ntohl(tcp_pkt
->th_ack
),
121 trace_colo_filter_rewriter_conn_offset(conn
->offset
);
124 if (((tcp_pkt
->th_flags
& (TH_ACK
| TH_SYN
)) == (TH_ACK
| TH_SYN
))) {
126 * save offset = secondary_seq and then
127 * in handle_primary_tcp_pkt make offset
128 * = secondary_seq - primary_seq
130 conn
->offset
= ntohl(tcp_pkt
->th_seq
);
133 if ((tcp_pkt
->th_flags
& (TH_ACK
| TH_SYN
)) == TH_ACK
) {
134 /* Only need to adjust seq while offset is Non-zero */
136 /* handle packets to the primary from the secondary*/
137 tcp_pkt
->th_seq
= htonl(ntohl(tcp_pkt
->th_seq
) - conn
->offset
);
139 net_checksum_calculate((uint8_t *)pkt
->data
, pkt
->size
);
146 static ssize_t
colo_rewriter_receive_iov(NetFilterState
*nf
,
147 NetClientState
*sender
,
149 const struct iovec
*iov
,
151 NetPacketSent
*sent_cb
)
153 RewriterState
*s
= FILTER_COLO_REWRITER(nf
);
157 ssize_t size
= iov_size(iov
, iovcnt
);
158 char *buf
= g_malloc0(size
);
160 iov_to_buf(iov
, iovcnt
, 0, buf
, size
);
161 pkt
= packet_new(buf
, size
);
165 * if we get tcp packet
166 * we will rewrite it to make secondary guest's
167 * connection established successfully
169 if (pkt
&& is_tcp_packet(pkt
)) {
171 fill_connection_key(pkt
, &key
);
173 if (sender
== nf
->netdev
) {
175 * We need make tcp TX and RX packet
176 * into one connection.
178 reverse_connection_key(&key
);
180 conn
= connection_get(s
->connection_track_table
,
184 if (sender
== nf
->netdev
) {
185 /* NET_FILTER_DIRECTION_TX */
186 if (!handle_primary_tcp_pkt(nf
, conn
, pkt
)) {
187 qemu_net_queue_send(s
->incoming_queue
, sender
, 0,
188 (const uint8_t *)pkt
->data
, pkt
->size
, NULL
);
189 packet_destroy(pkt
, NULL
);
192 * We block the packet here,after rewrite pkt
198 /* NET_FILTER_DIRECTION_RX */
199 if (!handle_secondary_tcp_pkt(nf
, conn
, pkt
)) {
200 qemu_net_queue_send(s
->incoming_queue
, sender
, 0,
201 (const uint8_t *)pkt
->data
, pkt
->size
, NULL
);
202 packet_destroy(pkt
, NULL
);
205 * We block the packet here,after rewrite pkt
213 packet_destroy(pkt
, NULL
);
218 static void colo_rewriter_cleanup(NetFilterState
*nf
)
220 RewriterState
*s
= FILTER_COLO_REWRITER(nf
);
223 if (s
->incoming_queue
) {
224 filter_rewriter_flush(nf
);
225 g_free(s
->incoming_queue
);
229 static void colo_rewriter_setup(NetFilterState
*nf
, Error
**errp
)
231 RewriterState
*s
= FILTER_COLO_REWRITER(nf
);
233 s
->connection_track_table
= g_hash_table_new_full(connection_key_hash
,
234 connection_key_equal
,
237 s
->incoming_queue
= qemu_new_net_queue(qemu_netfilter_pass_to_next
, nf
);
240 static void colo_rewriter_class_init(ObjectClass
*oc
, void *data
)
242 NetFilterClass
*nfc
= NETFILTER_CLASS(oc
);
244 nfc
->setup
= colo_rewriter_setup
;
245 nfc
->cleanup
= colo_rewriter_cleanup
;
246 nfc
->receive_iov
= colo_rewriter_receive_iov
;
249 static const TypeInfo colo_rewriter_info
= {
250 .name
= TYPE_FILTER_REWRITER
,
251 .parent
= TYPE_NETFILTER
,
252 .class_init
= colo_rewriter_class_init
,
253 .instance_size
= sizeof(RewriterState
),
256 static void register_types(void)
258 type_register_static(&colo_rewriter_info
);
261 type_init(register_types
);