blob: 22071eea8da21191ee61660b0aa6876d0f8db3e6 [file] [log] [blame]
Ratheesh Kannoth6307bec2021-11-25 08:26:39 +05301/*
2 * sfe_ipv4_tcp.c
3 * Shortcut forwarding engine - IPv4 TCP implementation
4 *
5 * Copyright (c) 2013-2016, 2019-2020, The Linux Foundation. All rights reserved.
Guduri Prathyusha5f27e232022-01-06 14:39:04 +05306 * Copyright (c) 2021-2022 Qualcomm Innovation Center, Inc. All rights reserved.
Ratheesh Kannoth6307bec2021-11-25 08:26:39 +05307 *
8 * Permission to use, copy, modify, and/or distribute this software for any
9 * purpose with or without fee is hereby granted, provided that the above
10 * copyright notice and this permission notice appear in all copies.
11 *
12 * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES
13 * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF
14 * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR
15 * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
16 * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN
17 * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF
18 * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
19 */
20
21#include <linux/skbuff.h>
22#include <net/tcp.h>
23#include <linux/etherdevice.h>
24#include <linux/lockdep.h>
25
26#include "sfe_debug.h"
27#include "sfe_api.h"
28#include "sfe.h"
29#include "sfe_flow_cookie.h"
30#include "sfe_ipv4.h"
Guduri Prathyusha79a5fee2021-11-11 17:59:10 +053031#include "sfe_pppoe.h"
Wayne Tanbb7f1782021-12-13 11:16:04 -080032#include "sfe_vlan.h"
Ratheesh Kannoth6307bec2021-11-25 08:26:39 +053033
34/*
35 * sfe_ipv4_process_tcp_option_sack()
36 * Parse TCP SACK option and update ack according
37 */
38static bool sfe_ipv4_process_tcp_option_sack(const struct tcphdr *th, const u32 data_offs,
39 u32 *ack)
40{
41 u32 length = sizeof(struct tcphdr);
42 u8 *ptr = (u8 *)th + length;
43
44 /*
45 * Ignore processing if TCP packet has only TIMESTAMP option.
46 */
47 if (likely(data_offs == length + TCPOLEN_TIMESTAMP + 1 + 1)
48 && likely(ptr[0] == TCPOPT_NOP)
49 && likely(ptr[1] == TCPOPT_NOP)
50 && likely(ptr[2] == TCPOPT_TIMESTAMP)
51 && likely(ptr[3] == TCPOLEN_TIMESTAMP)) {
52 return true;
53 }
54
55 /*
56 * TCP options. Parse SACK option.
57 */
58 while (length < data_offs) {
59 u8 size;
60 u8 kind;
61
62 ptr = (u8 *)th + length;
63 kind = *ptr;
64
65 /*
66 * NOP, for padding
67 * Not in the switch because to fast escape and to not calculate size
68 */
69 if (kind == TCPOPT_NOP) {
70 length++;
71 continue;
72 }
73
74 if (kind == TCPOPT_SACK) {
75 u32 sack = 0;
76 u8 re = 1 + 1;
77
78 size = *(ptr + 1);
79 if ((size < (1 + 1 + TCPOLEN_SACK_PERBLOCK))
80 || ((size - (1 + 1)) % (TCPOLEN_SACK_PERBLOCK))
81 || (size > (data_offs - length))) {
82 return false;
83 }
84
85 re += 4;
86 while (re < size) {
87 u32 sack_re;
88 u8 *sptr = ptr + re;
89 sack_re = (sptr[0] << 24) | (sptr[1] << 16) | (sptr[2] << 8) | sptr[3];
90 if (sack_re > sack) {
91 sack = sack_re;
92 }
93 re += TCPOLEN_SACK_PERBLOCK;
94 }
95 if (sack > *ack) {
96 *ack = sack;
97 }
98 length += size;
99 continue;
100 }
101 if (kind == TCPOPT_EOL) {
102 return true;
103 }
104 size = *(ptr + 1);
105 if (size < 2) {
106 return false;
107 }
108 length += size;
109 }
110
111 return true;
112}
113
114/*
115 * sfe_ipv4_recv_tcp()
116 * Handle TCP packet receives and forwarding.
117 */
118int sfe_ipv4_recv_tcp(struct sfe_ipv4 *si, struct sk_buff *skb, struct net_device *dev,
Ken Zhu88c58152021-12-09 15:12:06 -0800119 unsigned int len, struct iphdr *iph, unsigned int ihl, bool sync_on_find, struct sfe_l2_info *l2_info)
Ratheesh Kannoth6307bec2021-11-25 08:26:39 +0530120{
121 struct tcphdr *tcph;
122 __be32 src_ip;
123 __be32 dest_ip;
124 __be16 src_port;
125 __be16 dest_port;
126 struct sfe_ipv4_connection_match *cm;
127 struct sfe_ipv4_connection_match *counter_cm;
128 u8 ttl;
129 u32 flags;
Parikshit Guned31a8202022-01-05 22:15:04 +0530130 u32 service_class_id;
Ratheesh Kannoth6307bec2021-11-25 08:26:39 +0530131 struct net_device *xmit_dev;
132 bool ret;
Ratheesh Kannotha3cf0e02021-12-09 09:44:10 +0530133 bool hw_csum;
Ratheesh Kannoth71fc51e2022-01-05 10:02:47 +0530134 bool bridge_flow;
Ken Zhu7e38d1a2021-11-30 17:31:46 -0800135 bool fast_xmit;
136 netdev_features_t features;
Ratheesh Kannoth6307bec2021-11-25 08:26:39 +0530137
138 /*
Wayne Tanbb7f1782021-12-13 11:16:04 -0800139 * Is our packet too short to contain a valid TCP header?
Ratheesh Kannoth6307bec2021-11-25 08:26:39 +0530140 */
141 if (unlikely(!pskb_may_pull(skb, (sizeof(struct tcphdr) + ihl)))) {
142 sfe_ipv4_exception_stats_inc(si, SFE_IPV4_EXCEPTION_EVENT_TCP_HEADER_INCOMPLETE);
143 DEBUG_TRACE("packet too short for TCP header\n");
144 return 0;
145 }
146
147 /*
148 * Read the IP address and port information. Read the IP header data first
149 * because we've almost certainly got that in the cache. We may not yet have
150 * the TCP header cached though so allow more time for any prefetching.
151 */
152 src_ip = iph->saddr;
153 dest_ip = iph->daddr;
154
155 tcph = (struct tcphdr *)(skb->data + ihl);
156 src_port = tcph->source;
157 dest_port = tcph->dest;
158 flags = tcp_flag_word(tcph);
159
160 rcu_read_lock();
161
162 /*
163 * Look for a connection match.
164 */
165#ifdef CONFIG_NF_FLOW_COOKIE
166 cm = si->sfe_flow_cookie_table[skb->flow_cookie & SFE_FLOW_COOKIE_MASK].match;
167 if (unlikely(!cm)) {
168 cm = sfe_ipv4_find_connection_match_rcu(si, dev, IPPROTO_TCP, src_ip, src_port, dest_ip, dest_port);
169 }
170#else
171 cm = sfe_ipv4_find_connection_match_rcu(si, dev, IPPROTO_TCP, src_ip, src_port, dest_ip, dest_port);
172#endif
173 if (unlikely(!cm)) {
174 /*
175 * We didn't get a connection but as TCP is connection-oriented that
176 * may be because this is a non-fast connection (not running established).
177 * For diagnostic purposes we differentiate this here.
178 */
179 if (likely((flags & (TCP_FLAG_SYN | TCP_FLAG_RST | TCP_FLAG_FIN | TCP_FLAG_ACK)) == TCP_FLAG_ACK)) {
180
181 rcu_read_unlock();
182 sfe_ipv4_exception_stats_inc(si, SFE_IPV4_EXCEPTION_EVENT_TCP_NO_CONNECTION_FAST_FLAGS);
183 DEBUG_TRACE("no connection found - fast flags\n");
184 return 0;
185 }
186
187 rcu_read_unlock();
188 sfe_ipv4_exception_stats_inc(si, SFE_IPV4_EXCEPTION_EVENT_TCP_NO_CONNECTION_SLOW_FLAGS);
189 DEBUG_TRACE("no connection found - slow flags: 0x%x\n",
190 flags & (TCP_FLAG_SYN | TCP_FLAG_RST | TCP_FLAG_FIN | TCP_FLAG_ACK));
191 return 0;
192 }
193
194 /*
Ratheesh Kannoth5dee3772022-01-18 11:27:14 +0530195 * Source interface validate.
196 */
197 if (unlikely((cm->flags & SFE_IPV4_CONNECTION_MATCH_FLAG_SRC_INTERFACE_CHECK) && (cm->match_dev != dev))) {
198 struct sfe_ipv4_connection *c = cm->connection;
199 spin_lock_bh(&si->lock);
200 ret = sfe_ipv4_remove_connection(si, c);
201 spin_unlock_bh(&si->lock);
202
203 if (ret) {
204 sfe_ipv4_flush_connection(si, c, SFE_SYNC_REASON_FLUSH);
205 }
206 rcu_read_unlock();
207 sfe_ipv4_exception_stats_inc(si, SFE_IPV4_EXCEPTION_EVENT_INVALID_SRC_IFACE);
208 DEBUG_TRACE("flush on wrong source interface check failure\n");
209 return 0;
210 }
211
212 /*
213 * If our packet has beern marked as "flush on find" we can't actually
Ratheesh Kannoth6307bec2021-11-25 08:26:39 +0530214 * forward it in the fast path, but now that we've found an associated
Ken Zhu88c58152021-12-09 15:12:06 -0800215 * connection we need sync its status before throw it slow path.
Ratheesh Kannoth6307bec2021-11-25 08:26:39 +0530216 */
Ken Zhu88c58152021-12-09 15:12:06 -0800217 if (unlikely(sync_on_find)) {
218 sfe_ipv4_sync_status(si, cm->connection, SFE_SYNC_REASON_STATS);
Ratheesh Kannoth6307bec2021-11-25 08:26:39 +0530219 rcu_read_unlock();
220
221 sfe_ipv4_exception_stats_inc(si, SFE_IPV4_EXCEPTION_EVENT_TCP_IP_OPTIONS_OR_INITIAL_FRAGMENT);
Ken Zhu88c58152021-12-09 15:12:06 -0800222 DEBUG_TRACE("Sync on find\n");
Ratheesh Kannoth6307bec2021-11-25 08:26:39 +0530223 return 0;
224 }
225
226#ifdef CONFIG_XFRM
227 /*
228 * We can't accelerate the flow on this direction, just let it go
229 * through the slow path.
230 */
231 if (unlikely(!cm->flow_accel)) {
232 rcu_read_unlock();
233 this_cpu_inc(si->stats_pcpu->packets_not_forwarded64);
234 return 0;
235 }
236#endif
Ratheesh Kannoth71fc51e2022-01-05 10:02:47 +0530237
Wayne Tanbb7f1782021-12-13 11:16:04 -0800238 /*
239 * Do we expect an ingress VLAN tag for this flow?
240 */
241 if (unlikely(!sfe_vlan_validate_ingress_tag(skb, cm->ingress_vlan_hdr_cnt, cm->ingress_vlan_hdr, l2_info))) {
242 rcu_read_unlock();
243 sfe_ipv4_exception_stats_inc(si, SFE_IPV4_EXCEPTION_EVENT_INGRESS_VLAN_TAG_MISMATCH);
244 DEBUG_TRACE("VLAN tag mismatch. skb=%px\n", skb);
245 return 0;
246 }
247
Ratheesh Kannoth71fc51e2022-01-05 10:02:47 +0530248 bridge_flow = !!(cm->flags & SFE_IPV4_CONNECTION_MATCH_FLAG_BRIDGE_FLOW);
249
Ratheesh Kannoth6307bec2021-11-25 08:26:39 +0530250 /*
251 * Does our TTL allow forwarding?
252 */
Ratheesh Kannoth71fc51e2022-01-05 10:02:47 +0530253 if (likely(!bridge_flow)) {
254 ttl = iph->ttl;
255 if (unlikely(ttl < 2)) {
Ken Zhu88c58152021-12-09 15:12:06 -0800256 sfe_ipv4_sync_status(si, cm->connection, SFE_SYNC_REASON_STATS);
Ratheesh Kannoth71fc51e2022-01-05 10:02:47 +0530257 rcu_read_unlock();
Ken Zhu88c58152021-12-09 15:12:06 -0800258
Ratheesh Kannoth71fc51e2022-01-05 10:02:47 +0530259 sfe_ipv4_exception_stats_inc(si, SFE_IPV4_EXCEPTION_EVENT_TCP_SMALL_TTL);
Ken Zhu88c58152021-12-09 15:12:06 -0800260 DEBUG_TRACE("TTL too low\n");
Ratheesh Kannoth71fc51e2022-01-05 10:02:47 +0530261 return 0;
Ratheesh Kannoth6307bec2021-11-25 08:26:39 +0530262 }
Ratheesh Kannoth6307bec2021-11-25 08:26:39 +0530263 }
264
265 /*
266 * If our packet is larger than the MTU of the transmit interface then
267 * we can't forward it easily.
268 */
269 if (unlikely((len > cm->xmit_dev_mtu) && !skb_is_gso(skb))) {
Ken Zhu88c58152021-12-09 15:12:06 -0800270 sfe_ipv4_sync_status(si, cm->connection, SFE_SYNC_REASON_STATS);
Ratheesh Kannoth6307bec2021-11-25 08:26:39 +0530271 rcu_read_unlock();
Ken Zhu88c58152021-12-09 15:12:06 -0800272
Wayne Tanbb7f1782021-12-13 11:16:04 -0800273 sfe_ipv4_exception_stats_inc(si, SFE_IPV4_EXCEPTION_EVENT_TCP_IP_OPTIONS_OR_INITIAL_FRAGMENT);
Ken Zhu88c58152021-12-09 15:12:06 -0800274 DEBUG_TRACE("Larger than MTU\n");
Ratheesh Kannoth6307bec2021-11-25 08:26:39 +0530275 return 0;
276 }
277
278 /*
279 * Look at our TCP flags. Anything missing an ACK or that has RST, SYN or FIN
280 * set is not a fast path packet.
281 */
282 if (unlikely((flags & (TCP_FLAG_SYN | TCP_FLAG_RST | TCP_FLAG_FIN | TCP_FLAG_ACK)) != TCP_FLAG_ACK)) {
283 struct sfe_ipv4_connection *c = cm->connection;
284 spin_lock_bh(&si->lock);
285 ret = sfe_ipv4_remove_connection(si, c);
286 spin_unlock_bh(&si->lock);
287
288 DEBUG_TRACE("TCP flags: 0x%x are not fast\n",
289 flags & (TCP_FLAG_SYN | TCP_FLAG_RST | TCP_FLAG_FIN | TCP_FLAG_ACK));
290 if (ret) {
291 sfe_ipv4_flush_connection(si, c, SFE_SYNC_REASON_FLUSH);
292 }
293 rcu_read_unlock();
294 sfe_ipv4_exception_stats_inc(si, SFE_IPV4_EXCEPTION_EVENT_TCP_FLAGS);
295 return 0;
296 }
297
298 counter_cm = cm->counter_match;
299
300 /*
301 * Are we doing sequence number checking?
302 */
303 if (likely(!(cm->flags & SFE_IPV4_CONNECTION_MATCH_FLAG_NO_SEQ_CHECK))) {
304 u32 seq;
305 u32 ack;
306 u32 sack;
307 u32 data_offs;
308 u32 end;
309 u32 left_edge;
310 u32 scaled_win;
311 u32 max_end;
312
313 /*
314 * Is our sequence fully past the right hand edge of the window?
315 */
316 seq = ntohl(tcph->seq);
317 if (unlikely((s32)(seq - (cm->protocol_state.tcp.max_end + 1)) > 0)) {
318 struct sfe_ipv4_connection *c = cm->connection;
319 spin_lock_bh(&si->lock);
320 ret = sfe_ipv4_remove_connection(si, c);
321 spin_unlock_bh(&si->lock);
322
323 DEBUG_TRACE("seq: %u exceeds right edge: %u\n",
324 seq, cm->protocol_state.tcp.max_end + 1);
325 if (ret) {
326 sfe_ipv4_flush_connection(si, c, SFE_SYNC_REASON_FLUSH);
327 }
328 rcu_read_unlock();
329 sfe_ipv4_exception_stats_inc(si, SFE_IPV4_EXCEPTION_EVENT_TCP_SEQ_EXCEEDS_RIGHT_EDGE);
330 return 0;
331 }
332
333 /*
334 * Check that our TCP data offset isn't too short.
335 */
336 data_offs = tcph->doff << 2;
337 if (unlikely(data_offs < sizeof(struct tcphdr))) {
338 struct sfe_ipv4_connection *c = cm->connection;
339 spin_lock_bh(&si->lock);
340 ret = sfe_ipv4_remove_connection(si, c);
341 spin_unlock_bh(&si->lock);
342
343 DEBUG_TRACE("TCP data offset: %u, too small\n", data_offs);
344 if (ret) {
345 sfe_ipv4_flush_connection(si, c, SFE_SYNC_REASON_FLUSH);
346 }
347 rcu_read_unlock();
348 sfe_ipv4_exception_stats_inc(si, SFE_IPV4_EXCEPTION_EVENT_TCP_SMALL_DATA_OFFS);
349 return 0;
350 }
351
352 /*
353 * Update ACK according to any SACK option.
354 */
355 ack = ntohl(tcph->ack_seq);
356 sack = ack;
357 if (unlikely(!sfe_ipv4_process_tcp_option_sack(tcph, data_offs, &sack))) {
358 struct sfe_ipv4_connection *c = cm->connection;
359 spin_lock_bh(&si->lock);
360 ret = sfe_ipv4_remove_connection(si, c);
361 spin_unlock_bh(&si->lock);
362
363 DEBUG_TRACE("TCP option SACK size is wrong\n");
364 if (ret) {
365 sfe_ipv4_flush_connection(si, c, SFE_SYNC_REASON_FLUSH);
366 }
367 rcu_read_unlock();
368 sfe_ipv4_exception_stats_inc(si, SFE_IPV4_EXCEPTION_EVENT_TCP_BAD_SACK);
369 return 0;
370 }
371
372 /*
373 * Check that our TCP data offset isn't past the end of the packet.
374 */
375 data_offs += sizeof(struct iphdr);
376 if (unlikely(len < data_offs)) {
377 struct sfe_ipv4_connection *c = cm->connection;
378 spin_lock_bh(&si->lock);
379 ret = sfe_ipv4_remove_connection(si, c);
380 spin_unlock_bh(&si->lock);
381
382 DEBUG_TRACE("TCP data offset: %u, past end of packet: %u\n",
383 data_offs, len);
384 if (ret) {
385 sfe_ipv4_flush_connection(si, c, SFE_SYNC_REASON_FLUSH);
386 }
387 rcu_read_unlock();
388 sfe_ipv4_exception_stats_inc(si, SFE_IPV4_EXCEPTION_EVENT_TCP_BIG_DATA_OFFS);
389 return 0;
390 }
391
392 end = seq + len - data_offs;
393
394 /*
395 * Is our sequence fully before the left hand edge of the window?
396 */
397 if (unlikely((s32)(end - (cm->protocol_state.tcp.end
398 - counter_cm->protocol_state.tcp.max_win - 1)) < 0)) {
399 struct sfe_ipv4_connection *c = cm->connection;
400 spin_lock_bh(&si->lock);
401 ret = sfe_ipv4_remove_connection(si, c);
402 spin_unlock_bh(&si->lock);
403
404 DEBUG_TRACE("seq: %u before left edge: %u\n",
405 end, cm->protocol_state.tcp.end - counter_cm->protocol_state.tcp.max_win - 1);
406 if (ret) {
407 sfe_ipv4_flush_connection(si, c, SFE_SYNC_REASON_FLUSH);
408 }
409 rcu_read_unlock();
410 sfe_ipv4_exception_stats_inc(si, SFE_IPV4_EXCEPTION_EVENT_TCP_SEQ_BEFORE_LEFT_EDGE);
411 return 0;
412 }
413
414 /*
415 * Are we acking data that is to the right of what has been sent?
416 */
417 if (unlikely((s32)(sack - (counter_cm->protocol_state.tcp.end + 1)) > 0)) {
418 struct sfe_ipv4_connection *c = cm->connection;
419 spin_lock_bh(&si->lock);
420 ret = sfe_ipv4_remove_connection(si, c);
421 spin_unlock_bh(&si->lock);
422
423 DEBUG_TRACE("ack: %u exceeds right edge: %u\n",
424 sack, counter_cm->protocol_state.tcp.end + 1);
425 if (ret) {
426 sfe_ipv4_flush_connection(si, c, SFE_SYNC_REASON_FLUSH);
427 }
428 rcu_read_unlock();
429 sfe_ipv4_exception_stats_inc(si, SFE_IPV4_EXCEPTION_EVENT_TCP_ACK_EXCEEDS_RIGHT_EDGE);
430 return 0;
431 }
432
433 /*
434 * Is our ack too far before the left hand edge of the window?
435 */
436 left_edge = counter_cm->protocol_state.tcp.end
437 - cm->protocol_state.tcp.max_win
438 - SFE_IPV4_TCP_MAX_ACK_WINDOW
439 - 1;
440 if (unlikely((s32)(sack - left_edge) < 0)) {
441 struct sfe_ipv4_connection *c = cm->connection;
442 spin_lock_bh(&si->lock);
443 ret = sfe_ipv4_remove_connection(si, c);
444 spin_unlock_bh(&si->lock);
445
446 DEBUG_TRACE("ack: %u before left edge: %u\n", sack, left_edge);
447 if (ret) {
448 sfe_ipv4_flush_connection(si, c, SFE_SYNC_REASON_FLUSH);
449 }
450 rcu_read_unlock();
451 sfe_ipv4_exception_stats_inc(si, SFE_IPV4_EXCEPTION_EVENT_TCP_ACK_BEFORE_LEFT_EDGE);
452 return 0;
453 }
454
455 /*
456 * Have we just seen the largest window size yet for this connection? If yes
457 * then we need to record the new value.
458 */
459 scaled_win = ntohs(tcph->window) << cm->protocol_state.tcp.win_scale;
460 scaled_win += (sack - ack);
461 if (unlikely(cm->protocol_state.tcp.max_win < scaled_win)) {
462 cm->protocol_state.tcp.max_win = scaled_win;
463 }
464
465 /*
466 * If our sequence and/or ack numbers have advanced then record the new state.
467 */
468 if (likely((s32)(end - cm->protocol_state.tcp.end) >= 0)) {
469 cm->protocol_state.tcp.end = end;
470 }
471
472 max_end = sack + scaled_win;
473 if (likely((s32)(max_end - counter_cm->protocol_state.tcp.max_end) >= 0)) {
474 counter_cm->protocol_state.tcp.max_end = max_end;
475 }
476 }
477
478 /*
Ratheesh Kannoth6307bec2021-11-25 08:26:39 +0530479 * Check if skb was cloned. If it was, unshare it. Because
480 * the data area is going to be written in this path and we don't want to
481 * change the cloned skb's data section.
482 */
483 if (unlikely(skb_cloned(skb))) {
484 DEBUG_TRACE("%px: skb is a cloned skb\n", skb);
485 skb = skb_unshare(skb, GFP_ATOMIC);
486 if (!skb) {
487 DEBUG_WARN("Failed to unshare the cloned skb\n");
488 rcu_read_unlock();
489 return 0;
490 }
491
492 /*
493 * Update the iph and tcph pointers with the unshared skb's data area.
494 */
495 iph = (struct iphdr *)skb->data;
496 tcph = (struct tcphdr *)(skb->data + ihl);
497 }
498
499 /*
Guduri Prathyusha5f27e232022-01-06 14:39:04 +0530500 * For PPPoE packets, match server MAC and session id
501 */
502 if (unlikely(cm->flags & SFE_IPV4_CONNECTION_MATCH_FLAG_PPPOE_DECAP)) {
Guduri Prathyusha5f27e232022-01-06 14:39:04 +0530503 struct ethhdr *eth;
Nitin Shetty9af87d42022-02-11 16:25:29 +0530504 bool pppoe_match;
Guduri Prathyusha5f27e232022-01-06 14:39:04 +0530505
506 if (unlikely(!sfe_l2_parse_flag_check(l2_info, SFE_L2_PARSE_FLAGS_PPPOE_INGRESS))) {
507 rcu_read_unlock();
508 DEBUG_TRACE("%px: PPPoE header not present in packet for PPPoE rule\n", skb);
509 sfe_ipv4_exception_stats_inc(si, SFE_IPV4_EXCEPTION_EVENT_INCORRECT_PPPOE_PARSING);
510 return 0;
511 }
512
Nitin Shetty9af87d42022-02-11 16:25:29 +0530513 eth = eth_hdr(skb);
514
515 pppoe_match = (cm->pppoe_session_id == sfe_l2_pppoe_session_id_get(l2_info)) &&
516 ether_addr_equal((u8*)cm->pppoe_remote_mac, (u8 *)eth->h_source);
517
518 if (unlikely(!pppoe_match)) {
519 DEBUG_TRACE("%px: PPPoE session ID %d and %d or MAC %pM and %pM did not match\n",
520 skb, cm->pppoe_session_id, sfe_l2_pppoe_session_id_get(l2_info),
521 cm->pppoe_remote_mac, eth->h_source);
Guduri Prathyusha5f27e232022-01-06 14:39:04 +0530522 rcu_read_unlock();
523 sfe_ipv4_exception_stats_inc(si, SFE_IPV4_EXCEPTION_EVENT_INVALID_PPPOE_SESSION);
524 return 0;
525 }
Nitin Shetty9af87d42022-02-11 16:25:29 +0530526
Guduri Prathyusha5f27e232022-01-06 14:39:04 +0530527 skb->protocol = htons(l2_info->protocol);
528 this_cpu_inc(si->stats_pcpu->pppoe_decap_packets_forwarded64);
Guduri Prathyusha5f27e232022-01-06 14:39:04 +0530529 } else if (unlikely(sfe_l2_parse_flag_check(l2_info, SFE_L2_PARSE_FLAGS_PPPOE_INGRESS))) {
530
531 /*
Nitin Shetty9af87d42022-02-11 16:25:29 +0530532 * If packet contains PPPoE header but CME doesn't contain PPPoE flag yet we are exceptioning
533 * the packet to linux
Guduri Prathyusha5f27e232022-01-06 14:39:04 +0530534 */
Guduri Prathyusha034d6352022-01-12 16:49:04 +0530535 if (unlikely(!(cm->flags & SFE_IPV4_CONNECTION_MATCH_FLAG_BRIDGE_FLOW))) {
536 rcu_read_unlock();
537 DEBUG_TRACE("%px: CME doesn't contain PPPoE flag but packet has PPPoE header\n", skb);
538 sfe_ipv4_exception_stats_inc(si, SFE_IPV4_EXCEPTION_EVENT_PPPOE_NOT_SET_IN_CME);
539 return 0;
540 }
541
542 /*
Nitin Shetty9af87d42022-02-11 16:25:29 +0530543 * For bridged flows when packet contains PPPoE header, restore the header back and forward
544 * to xmit interface
Guduri Prathyusha034d6352022-01-12 16:49:04 +0530545 */
546 __skb_push(skb, (sizeof(struct pppoe_hdr) + sizeof(struct sfe_ppp_hdr)));
Guduri Prathyusha034d6352022-01-12 16:49:04 +0530547 this_cpu_inc(si->stats_pcpu->pppoe_bridge_packets_forwarded64);
Guduri Prathyusha5f27e232022-01-06 14:39:04 +0530548 }
549
550 /*
Wayne Tanbb7f1782021-12-13 11:16:04 -0800551 * Check if skb has enough headroom to write L2 headers
552 */
553 if (unlikely(skb_headroom(skb) < cm->l2_hdr_size)) {
554 rcu_read_unlock();
555 DEBUG_WARN("%px: Not enough headroom: %u\n", skb, skb_headroom(skb));
556 sfe_ipv4_exception_stats_inc(si, SFE_IPV4_EXCEPTION_EVENT_NO_HEADROOM);
557 return 0;
558 }
559
560 /*
Guduri Prathyusha5f27e232022-01-06 14:39:04 +0530561 * From this point on we're good to modify the packet.
562 */
563
564 /*
Guduri Prathyusha79a5fee2021-11-11 17:59:10 +0530565 * For PPPoE flows, add PPPoE header before L2 header is added.
566 */
Guduri Prathyusha034d6352022-01-12 16:49:04 +0530567 if (unlikely(cm->flags & SFE_IPV4_CONNECTION_MATCH_FLAG_PPPOE_ENCAP)) {
Wayne Tanbb7f1782021-12-13 11:16:04 -0800568 sfe_pppoe_add_header(skb, cm->pppoe_session_id, PPP_IP);
Guduri Prathyusha79a5fee2021-11-11 17:59:10 +0530569 this_cpu_inc(si->stats_pcpu->pppoe_encap_packets_forwarded64);
570 }
571
572 /*
Ratheesh Kannoth6307bec2021-11-25 08:26:39 +0530573 * Update DSCP
574 */
575 if (unlikely(cm->flags & SFE_IPV4_CONNECTION_MATCH_FLAG_DSCP_REMARK)) {
576 iph->tos = (iph->tos & SFE_IPV4_DSCP_MASK) | cm->dscp;
577 }
578
579 /*
580 * Decrement our TTL.
581 */
Ratheesh Kannoth71fc51e2022-01-05 10:02:47 +0530582 if (likely(!bridge_flow)) {
583 iph->ttl = ttl - 1;
584 }
Ratheesh Kannoth6307bec2021-11-25 08:26:39 +0530585
586 /*
Ratheesh Kannotha3cf0e02021-12-09 09:44:10 +0530587 * Enable HW csum if rx checksum is verified and xmit interface is CSUM offload capable.
588 * Note: If L4 csum at Rx was found to be incorrect, we (router) should use incremental L4 checksum here
589 * so that HW does not re-calculate/replace the L4 csum
590 */
591 hw_csum = !!(cm->flags & SFE_IPV4_CONNECTION_MATCH_FLAG_CSUM_OFFLOAD) && (skb->ip_summed == CHECKSUM_UNNECESSARY);
592
593 /*
Ratheesh Kannoth6307bec2021-11-25 08:26:39 +0530594 * Do we have to perform translations of the source address/port?
595 */
596 if (unlikely(cm->flags & SFE_IPV4_CONNECTION_MATCH_FLAG_XLATE_SRC)) {
597 u16 tcp_csum;
598 u32 sum;
599
600 iph->saddr = cm->xlate_src_ip;
601 tcph->source = cm->xlate_src_port;
602
Ratheesh Kannotha3cf0e02021-12-09 09:44:10 +0530603 if (unlikely(!hw_csum)) {
604 tcp_csum = tcph->check;
605 if (unlikely(skb->ip_summed == CHECKSUM_PARTIAL)) {
606 sum = tcp_csum + cm->xlate_src_partial_csum_adjustment;
607 } else {
608 sum = tcp_csum + cm->xlate_src_csum_adjustment;
609 }
Ratheesh Kannoth6307bec2021-11-25 08:26:39 +0530610
Ratheesh Kannotha3cf0e02021-12-09 09:44:10 +0530611 sum = (sum & 0xffff) + (sum >> 16);
612 tcph->check = (u16)sum;
613 }
Ratheesh Kannoth6307bec2021-11-25 08:26:39 +0530614 }
615
616 /*
617 * Do we have to perform translations of the destination address/port?
618 */
619 if (unlikely(cm->flags & SFE_IPV4_CONNECTION_MATCH_FLAG_XLATE_DEST)) {
620 u16 tcp_csum;
621 u32 sum;
622
623 iph->daddr = cm->xlate_dest_ip;
624 tcph->dest = cm->xlate_dest_port;
625
Ratheesh Kannotha3cf0e02021-12-09 09:44:10 +0530626 if (unlikely(!hw_csum)) {
627 tcp_csum = tcph->check;
628 if (unlikely(skb->ip_summed == CHECKSUM_PARTIAL)) {
629 sum = tcp_csum + cm->xlate_dest_partial_csum_adjustment;
630 } else {
631 sum = tcp_csum + cm->xlate_dest_csum_adjustment;
632 }
Ratheesh Kannoth6307bec2021-11-25 08:26:39 +0530633
Ratheesh Kannotha3cf0e02021-12-09 09:44:10 +0530634 sum = (sum & 0xffff) + (sum >> 16);
635 tcph->check = (u16)sum;
636 }
Ratheesh Kannoth6307bec2021-11-25 08:26:39 +0530637 }
638
639 /*
Ratheesh Kannotha3cf0e02021-12-09 09:44:10 +0530640 * If HW checksum offload is not possible, full L3 checksum and incremental L4 checksum
641 * are used to update the packet. Setting ip_summed to CHECKSUM_UNNECESSARY ensures checksum is
642 * not recalculated further in packet path.
Ratheesh Kannoth6307bec2021-11-25 08:26:39 +0530643 */
Ratheesh Kannotha3cf0e02021-12-09 09:44:10 +0530644 if (likely(hw_csum)) {
645 skb->ip_summed = CHECKSUM_PARTIAL;
646 } else {
647 iph->check = sfe_ipv4_gen_ip_csum(iph);
648 skb->ip_summed = CHECKSUM_UNNECESSARY;
649 }
Ratheesh Kannoth6307bec2021-11-25 08:26:39 +0530650
651 /*
652 * Update traffic stats.
653 */
654 atomic_inc(&cm->rx_packet_count);
655 atomic_add(len, &cm->rx_byte_count);
656
657 xmit_dev = cm->xmit_dev;
658 skb->dev = xmit_dev;
659
660 /*
Wayne Tanbb7f1782021-12-13 11:16:04 -0800661 * Check to see if we need to add VLAN tags
662 */
663 if (unlikely(cm->flags & SFE_IPV4_CONNECTION_MATCH_FLAG_INSERT_EGRESS_VLAN_TAG)) {
664 sfe_vlan_add_tag(skb, cm->egress_vlan_hdr_cnt, cm->egress_vlan_hdr);
665 }
666
667 /*
668 * Check to see if we need to write an Ethernet header.
Ratheesh Kannoth6307bec2021-11-25 08:26:39 +0530669 */
670 if (likely(cm->flags & SFE_IPV4_CONNECTION_MATCH_FLAG_WRITE_L2_HDR)) {
671 if (unlikely(!(cm->flags & SFE_IPV4_CONNECTION_MATCH_FLAG_WRITE_FAST_ETH_HDR))) {
Guduri Prathyusha5f27e232022-01-06 14:39:04 +0530672 dev_hard_header(skb, xmit_dev, ntohs(skb->protocol),
Ratheesh Kannoth6307bec2021-11-25 08:26:39 +0530673 cm->xmit_dest_mac, cm->xmit_src_mac, len);
674 } else {
675 /*
676 * For the simple case we write this really fast.
677 */
678 struct ethhdr *eth = (struct ethhdr *)__skb_push(skb, ETH_HLEN);
679
Guduri Prathyusha5f27e232022-01-06 14:39:04 +0530680 eth->h_proto = skb->protocol;
Ratheesh Kannoth6307bec2021-11-25 08:26:39 +0530681
682 ether_addr_copy((u8 *)eth->h_dest, (u8 *)cm->xmit_dest_mac);
683 ether_addr_copy((u8 *)eth->h_source, (u8 *)cm->xmit_src_mac);
684 }
685 }
686
687 /*
688 * Update priority of skb.
689 */
690 if (unlikely(cm->flags & SFE_IPV4_CONNECTION_MATCH_FLAG_PRIORITY_REMARK)) {
691 skb->priority = cm->priority;
692 }
693
694 /*
695 * Mark outgoing packet
696 */
Ken Zhu37040ea2021-09-09 21:11:15 -0700697 if (unlikely(cm->flags & SFE_IPV4_CONNECTION_MATCH_FLAG_MARK)) {
Ken Zhu306a68f2022-01-20 09:00:43 -0800698 skb->mark = cm->mark;
Parikshit Guned31a8202022-01-05 22:15:04 +0530699 /*
700 * Update service class stats if SAWF is valid.
701 */
702 if (likely(cm->sawf_valid)) {
703 service_class_id = SFE_GET_SAWF_SERVICE_CLASS(cm->mark);
704 sfe_ipv4_service_class_stats_inc(si, service_class_id, len);
705 }
Ratheesh Kannoth6307bec2021-11-25 08:26:39 +0530706 }
707
Ken Zhu7e38d1a2021-11-30 17:31:46 -0800708 /*
709 * For the first packets, check if it could got fast xmit.
710 */
711 if (unlikely(!(cm->flags & SFE_IPV4_CONNECTION_MATCH_FLAG_FAST_XMIT_FLOW_CHECKED)
712 && (cm->flags & SFE_IPV4_CONNECTION_MATCH_FLAG_FAST_XMIT_DEV_ADMISSION))){
713 cm->features = netif_skb_features(skb);
714 if (likely(sfe_fast_xmit_check(skb, cm->features))) {
715 cm->flags |= SFE_IPV4_CONNECTION_MATCH_FLAG_FAST_XMIT;
716 }
717 cm->flags |= SFE_IPV4_CONNECTION_MATCH_FLAG_FAST_XMIT_FLOW_CHECKED;
718 }
719 features = cm->features;
720 fast_xmit = !!(cm->flags & SFE_IPV4_CONNECTION_MATCH_FLAG_FAST_XMIT);
721
Ratheesh Kannoth6307bec2021-11-25 08:26:39 +0530722 rcu_read_unlock();
723
724 this_cpu_inc(si->stats_pcpu->packets_forwarded64);
725
726 /*
727 * We're going to check for GSO flags when we transmit the packet so
728 * start fetching the necessary cache line now.
729 */
730 prefetch(skb_shinfo(skb));
731
732 /*
Ken Zhu7e38d1a2021-11-30 17:31:46 -0800733 * We do per packet condition check before we could fast xmit the
734 * packet.
735 */
Nitin Shetty502db402022-04-27 21:29:28 +0530736 if (likely(fast_xmit)) {
737 if (likely(!skb_is_gso(skb))) {
738 if (likely(dev_fast_xmit(skb, xmit_dev, features))) {
739 this_cpu_inc(si->stats_pcpu->packets_fast_xmited64);
740 return 1;
741 }
742 } else {
743 cm->flags &= ~SFE_IPV4_CONNECTION_MATCH_FLAG_FAST_XMIT;
744 DEBUG_TRACE("%px: fast xmit disabled for xmit dev %s", skb, xmit_dev->name);
745 }
Ken Zhu7e38d1a2021-11-30 17:31:46 -0800746 }
747
748 /*
Ratheesh Kannoth6307bec2021-11-25 08:26:39 +0530749 * Mark that this packet has been fast forwarded.
750 */
751 skb->fast_forwarded = 1;
752
753 /*
754 * Send the packet on its way.
755 */
756 dev_queue_xmit(skb);
757
758 return 1;
759}