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1 /*
2 * Copyright (c) 2010, 2011, 2012, 2013, 2014, 2015 Nicira, Inc.
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
17 #include <config.h>
18
19 #include "nx-match.h"
20
21 #include <netinet/icmp6.h>
22
23 #include "classifier.h"
24 #include "dynamic-string.h"
25 #include "hmap.h"
26 #include "meta-flow.h"
27 #include "ofp-actions.h"
28 #include "ofp-errors.h"
29 #include "ofp-util.h"
30 #include "ofpbuf.h"
31 #include "openflow/nicira-ext.h"
32 #include "packets.h"
33 #include "shash.h"
34 #include "unaligned.h"
35 #include "util.h"
36 #include "openvswitch/vlog.h"
37
38 VLOG_DEFINE_THIS_MODULE(nx_match);
39
40 /* OXM headers.
41 *
42 *
43 * Standard OXM/NXM
44 * ================
45 *
46 * The header is 32 bits long. It looks like this:
47 *
48 * |31 16 15 9| 8 7 0
49 * +----------------------------------+---------------+--+------------------+
50 * | oxm_class | oxm_field |hm| oxm_length |
51 * +----------------------------------+---------------+--+------------------+
52 *
53 * where hm stands for oxm_hasmask. It is followed by oxm_length bytes of
54 * payload. When oxm_hasmask is 0, the payload is the value of the field
55 * identified by the header; when oxm_hasmask is 1, the payload is a value for
56 * the field followed by a mask of equal length.
57 *
58 * Internally, we represent a standard OXM header as a 64-bit integer with the
59 * above information in the most-significant bits.
60 *
61 *
62 * Experimenter OXM
63 * ================
64 *
65 * The header is 64 bits long. It looks like the diagram above except that a
66 * 32-bit experimenter ID, which we call oxm_vendor and which identifies a
67 * vendor, is inserted just before the payload. Experimenter OXMs are
68 * identified by an all-1-bits oxm_class (OFPXMC12_EXPERIMENTER). The
69 * oxm_length value *includes* the experimenter ID, so that the real payload is
70 * only oxm_length - 4 bytes long.
71 *
72 * Internally, we represent an experimenter OXM header as a 64-bit integer with
73 * the standard header in the upper 32 bits and the experimenter ID in the
74 * lower 32 bits. (It would be more convenient to swap the positions of the
75 * two 32-bit words, but this would be more error-prone because experimenter
76 * OXMs are very rarely used, so accidentally passing one through a 32-bit type
77 * somewhere in the OVS code would be hard to find.)
78 */
79
80 /*
81 * OXM Class IDs.
82 * The high order bit differentiate reserved classes from member classes.
83 * Classes 0x0000 to 0x7FFF are member classes, allocated by ONF.
84 * Classes 0x8000 to 0xFFFE are reserved classes, reserved for standardisation.
85 */
86 enum ofp12_oxm_class {
87 OFPXMC12_NXM_0 = 0x0000, /* Backward compatibility with NXM */
88 OFPXMC12_NXM_1 = 0x0001, /* Backward compatibility with NXM */
89 OFPXMC12_OPENFLOW_BASIC = 0x8000, /* Basic class for OpenFlow */
90 OFPXMC15_PACKET_REGS = 0x8001, /* Packet registers (pipeline fields). */
91 OFPXMC12_EXPERIMENTER = 0xffff, /* Experimenter class */
92 };
93
94 /* Functions for extracting raw field values from OXM/NXM headers. */
95 static uint32_t nxm_vendor(uint64_t header) { return header; }
96 static int nxm_class(uint64_t header) { return header >> 48; }
97 static int nxm_field(uint64_t header) { return (header >> 41) & 0x7f; }
98 static bool nxm_hasmask(uint64_t header) { return (header >> 40) & 1; }
99 static int nxm_length(uint64_t header) { return (header >> 32) & 0xff; }
100
101 static bool
102 is_experimenter_oxm(uint64_t header)
103 {
104 return nxm_class(header) == OFPXMC12_EXPERIMENTER;
105 }
106
107 /* The OXM header "length" field is somewhat tricky:
108 *
109 * - For a standard OXM header, the length is the number of bytes of the
110 * payload, and the payload consists of just the value (and mask, if
111 * present).
112 *
113 * - For an experimenter OXM header, the length is the number of bytes in
114 * the payload plus 4 (the length of the experimenter ID). That is, the
115 * experimenter ID is included in oxm_length.
116 *
117 * This function returns the length of the experimenter ID field in 'header'.
118 * That is, for an experimenter OXM (when an experimenter ID is present), it
119 * returns 4, and for a standard OXM (when no experimenter ID is present), it
120 * returns 0. */
121 static int
122 nxm_experimenter_len(uint64_t header)
123 {
124 return is_experimenter_oxm(header) ? 4 : 0;
125 }
126
127 /* Returns the number of bytes that follow the header for an NXM/OXM entry
128 * with the given 'header'. */
129 static int
130 nxm_payload_len(uint64_t header)
131 {
132 return nxm_length(header) - nxm_experimenter_len(header);
133 }
134
135 /* Returns the number of bytes in the header for an NXM/OXM entry with the
136 * given 'header'. */
137 static int
138 nxm_header_len(uint64_t header)
139 {
140 return 4 + nxm_experimenter_len(header);
141 }
142
143 #define NXM_HEADER(VENDOR, CLASS, FIELD, HASMASK, LENGTH) \
144 (((uint64_t) (CLASS) << 48) | \
145 ((uint64_t) (FIELD) << 41) | \
146 ((uint64_t) (HASMASK) << 40) | \
147 ((uint64_t) (LENGTH) << 32) | \
148 (VENDOR))
149
150 #define NXM_HEADER_FMT "%#"PRIx32":%d:%d:%d:%d"
151 #define NXM_HEADER_ARGS(HEADER) \
152 nxm_vendor(HEADER), nxm_class(HEADER), nxm_field(HEADER), \
153 nxm_hasmask(HEADER), nxm_length(HEADER)
154
155 /* Functions for turning the "hasmask" bit on or off. (This also requires
156 * adjusting the length.) */
157 static uint64_t
158 nxm_make_exact_header(uint64_t header)
159 {
160 int new_len = nxm_payload_len(header) / 2 + nxm_experimenter_len(header);
161 return NXM_HEADER(nxm_vendor(header), nxm_class(header),
162 nxm_field(header), 0, new_len);
163 }
164 static uint64_t
165 nxm_make_wild_header(uint64_t header)
166 {
167 int new_len = nxm_payload_len(header) * 2 + nxm_experimenter_len(header);
168 return NXM_HEADER(nxm_vendor(header), nxm_class(header),
169 nxm_field(header), 1, new_len);
170 }
171
172 /* Flow cookie.
173 *
174 * This may be used to gain the OpenFlow 1.1-like ability to restrict
175 * certain NXM-based Flow Mod and Flow Stats Request messages to flows
176 * with specific cookies. See the "nx_flow_mod" and "nx_flow_stats_request"
177 * structure definitions for more details. This match is otherwise not
178 * allowed. */
179 #define NXM_NX_COOKIE NXM_HEADER (0, 0x0001, 30, 0, 8)
180 #define NXM_NX_COOKIE_W nxm_make_wild_header(NXM_NX_COOKIE)
181
182 struct nxm_field {
183 uint64_t header;
184 enum ofp_version version;
185 const char *name; /* e.g. "NXM_OF_IN_PORT". */
186
187 enum mf_field_id id;
188 };
189
190 static const struct nxm_field *nxm_field_by_header(uint64_t header);
191 static const struct nxm_field *nxm_field_by_name(const char *name, size_t len);
192 static const struct nxm_field *nxm_field_by_mf_id(enum mf_field_id,
193 enum ofp_version);
194
195 static void nx_put_header__(struct ofpbuf *, uint64_t header, bool masked);
196
197 /* Rate limit for nx_match parse errors. These always indicate a bug in the
198 * peer and so there's not much point in showing a lot of them. */
199 static struct vlog_rate_limit rl = VLOG_RATE_LIMIT_INIT(1, 5);
200
201 static const struct nxm_field *
202 mf_parse_subfield_name(const char *name, int name_len, bool *wild);
203
204 /* Returns the preferred OXM header to use for field 'id' in OpenFlow version
205 * 'version'. Specify 0 for 'version' if an NXM legacy header should be
206 * preferred over any standardized OXM header. Returns 0 if field 'id' cannot
207 * be expressed in NXM or OXM. */
208 static uint64_t
209 mf_oxm_header(enum mf_field_id id, enum ofp_version version)
210 {
211 const struct nxm_field *f = nxm_field_by_mf_id(id, version);
212 return f ? f->header : 0;
213 }
214
215 /* Returns the 32-bit OXM or NXM header to use for field 'id', preferring an
216 * NXM legacy header over any standardized OXM header. Returns 0 if field 'id'
217 * cannot be expressed with a 32-bit NXM or OXM header.
218 *
219 * Whenever possible, use nx_pull_header() instead of this function, because
220 * this function cannot support 64-bit experimenter OXM headers. */
221 uint32_t
222 mf_nxm_header(enum mf_field_id id)
223 {
224 uint64_t oxm = mf_oxm_header(id, 0);
225 return is_experimenter_oxm(oxm) ? 0 : oxm >> 32;
226 }
227
228 static const struct mf_field *
229 mf_from_oxm_header(uint64_t header)
230 {
231 const struct nxm_field *f = nxm_field_by_header(header);
232 return f ? mf_from_id(f->id) : NULL;
233 }
234
235 /* Returns the "struct mf_field" that corresponds to NXM or OXM header
236 * 'header', or NULL if 'header' doesn't correspond to any known field. */
237 const struct mf_field *
238 mf_from_nxm_header(uint32_t header)
239 {
240 return mf_from_oxm_header((uint64_t) header << 32);
241 }
242
243 /* Returns the width of the data for a field with the given 'header', in
244 * bytes. */
245 static int
246 nxm_field_bytes(uint64_t header)
247 {
248 unsigned int length = nxm_payload_len(header);
249 return nxm_hasmask(header) ? length / 2 : length;
250 }
251 \f
252 /* nx_pull_match() and helpers. */
253
254 /* Given NXM/OXM value 'value' and mask 'mask' associated with 'header', checks
255 * for any 1-bit in the value where there is a 0-bit in the mask. Returns 0 if
256 * none, otherwise an error code. */
257 static bool
258 is_mask_consistent(uint64_t header, const uint8_t *value, const uint8_t *mask)
259 {
260 unsigned int width = nxm_field_bytes(header);
261 unsigned int i;
262
263 for (i = 0; i < width; i++) {
264 if (value[i] & ~mask[i]) {
265 if (!VLOG_DROP_WARN(&rl)) {
266 VLOG_WARN_RL(&rl, "Rejecting NXM/OXM entry "NXM_HEADER_FMT " "
267 "with 1-bits in value for bits wildcarded by the "
268 "mask.", NXM_HEADER_ARGS(header));
269 }
270 return false;
271 }
272 }
273 return true;
274 }
275
276 static bool
277 is_cookie_pseudoheader(uint64_t header)
278 {
279 return header == NXM_NX_COOKIE || header == NXM_NX_COOKIE_W;
280 }
281
282 static enum ofperr
283 nx_pull_header__(struct ofpbuf *b, bool allow_cookie, uint64_t *header,
284 const struct mf_field **field)
285 {
286 if (b->size < 4) {
287 goto bad_len;
288 }
289
290 *header = ((uint64_t) ntohl(get_unaligned_be32(b->data))) << 32;
291 if (is_experimenter_oxm(*header)) {
292 if (b->size < 8) {
293 goto bad_len;
294 }
295 *header = ntohll(get_unaligned_be64(b->data));
296 }
297 if (nxm_length(*header) <= nxm_experimenter_len(*header)) {
298 VLOG_WARN_RL(&rl, "OXM header "NXM_HEADER_FMT" has invalid length %d "
299 "(minimum is %d)",
300 NXM_HEADER_ARGS(*header), nxm_length(*header),
301 nxm_header_len(*header) + 1);
302 goto error;
303 }
304 ofpbuf_pull(b, nxm_header_len(*header));
305
306 if (field) {
307 *field = mf_from_oxm_header(*header);
308 if (!*field && !(allow_cookie && is_cookie_pseudoheader(*header))) {
309 VLOG_DBG_RL(&rl, "OXM header "NXM_HEADER_FMT" is unknown",
310 NXM_HEADER_ARGS(*header));
311 return OFPERR_OFPBMC_BAD_FIELD;
312 }
313 }
314
315 return 0;
316
317 bad_len:
318 VLOG_DBG_RL(&rl, "encountered partial (%"PRIu32"-byte) OXM entry",
319 b->size);
320 error:
321 *header = 0;
322 *field = NULL;
323 return OFPERR_OFPBMC_BAD_LEN;
324 }
325
326 static enum ofperr
327 nx_pull_entry__(struct ofpbuf *b, bool allow_cookie, uint64_t *header,
328 const struct mf_field **field,
329 union mf_value *value, union mf_value *mask)
330 {
331 enum ofperr header_error;
332 unsigned int payload_len;
333 const uint8_t *payload;
334 int width;
335
336 header_error = nx_pull_header__(b, allow_cookie, header, field);
337 if (header_error && header_error != OFPERR_OFPBMC_BAD_FIELD) {
338 return header_error;
339 }
340
341 payload_len = nxm_payload_len(*header);
342 payload = ofpbuf_try_pull(b, payload_len);
343 if (!payload) {
344 VLOG_DBG_RL(&rl, "OXM header "NXM_HEADER_FMT" calls for %u-byte "
345 "payload but only %"PRIu32" bytes follow OXM header",
346 NXM_HEADER_ARGS(*header), payload_len, b->size);
347 return OFPERR_OFPBMC_BAD_LEN;
348 }
349
350 width = nxm_field_bytes(*header);
351 if (nxm_hasmask(*header)
352 && !is_mask_consistent(*header, payload, payload + width)) {
353 return OFPERR_OFPBMC_BAD_WILDCARDS;
354 }
355
356 memcpy(value, payload, MIN(width, sizeof *value));
357 if (mask) {
358 if (nxm_hasmask(*header)) {
359 memcpy(mask, payload + width, MIN(width, sizeof *mask));
360 } else {
361 memset(mask, 0xff, MIN(width, sizeof *mask));
362 }
363 } else if (nxm_hasmask(*header)) {
364 VLOG_DBG_RL(&rl, "OXM header "NXM_HEADER_FMT" includes mask but "
365 "masked OXMs are not allowed here",
366 NXM_HEADER_ARGS(*header));
367 return OFPERR_OFPBMC_BAD_MASK;
368 }
369
370 return header_error;
371 }
372
373 /* Attempts to pull an NXM or OXM header, value, and mask (if present) from the
374 * beginning of 'b'. If successful, stores a pointer to the "struct mf_field"
375 * corresponding to the pulled header in '*field', the value into '*value',
376 * and the mask into '*mask', and returns 0. On error, returns an OpenFlow
377 * error; in this case, some bytes might have been pulled off 'b' anyhow, and
378 * the output parameters might have been modified.
379 *
380 * If a NULL 'mask' is supplied, masked OXM or NXM entries are treated as
381 * errors (with OFPERR_OFPBMC_BAD_MASK).
382 */
383 enum ofperr
384 nx_pull_entry(struct ofpbuf *b, const struct mf_field **field,
385 union mf_value *value, union mf_value *mask)
386 {
387 uint64_t header;
388
389 return nx_pull_entry__(b, false, &header, field, value, mask);
390 }
391
392 /* Attempts to pull an NXM or OXM header from the beginning of 'b'. If
393 * successful, stores a pointer to the "struct mf_field" corresponding to the
394 * pulled header in '*field', stores the header's hasmask bit in '*masked'
395 * (true if hasmask=1, false if hasmask=0), and returns 0. On error, returns
396 * an OpenFlow error; in this case, some bytes might have been pulled off 'b'
397 * anyhow, and the output parameters might have been modified.
398 *
399 * If NULL 'masked' is supplied, masked OXM or NXM headers are treated as
400 * errors (with OFPERR_OFPBMC_BAD_MASK).
401 */
402 enum ofperr
403 nx_pull_header(struct ofpbuf *b, const struct mf_field **field, bool *masked)
404 {
405 enum ofperr error;
406 uint64_t header;
407
408 error = nx_pull_header__(b, false, &header, field);
409 if (masked) {
410 *masked = !error && nxm_hasmask(header);
411 } else if (!error && nxm_hasmask(header)) {
412 error = OFPERR_OFPBMC_BAD_MASK;
413 }
414 return error;
415 }
416
417 static enum ofperr
418 nx_pull_match_entry(struct ofpbuf *b, bool allow_cookie,
419 const struct mf_field **field,
420 union mf_value *value, union mf_value *mask)
421 {
422 enum ofperr error;
423 uint64_t header;
424
425 error = nx_pull_entry__(b, allow_cookie, &header, field, value, mask);
426 if (error) {
427 return error;
428 }
429 if (field && *field) {
430 if (!mf_is_mask_valid(*field, mask)) {
431 VLOG_DBG_RL(&rl, "bad mask for field %s", (*field)->name);
432 return OFPERR_OFPBMC_BAD_MASK;
433 }
434 if (!mf_is_value_valid(*field, value)) {
435 VLOG_DBG_RL(&rl, "bad value for field %s", (*field)->name);
436 return OFPERR_OFPBMC_BAD_VALUE;
437 }
438 }
439 return 0;
440 }
441
442 static enum ofperr
443 nx_pull_raw(const uint8_t *p, unsigned int match_len, bool strict,
444 struct match *match, ovs_be64 *cookie, ovs_be64 *cookie_mask)
445 {
446 struct ofpbuf b;
447
448 ovs_assert((cookie != NULL) == (cookie_mask != NULL));
449
450 match_init_catchall(match);
451 if (cookie) {
452 *cookie = *cookie_mask = htonll(0);
453 }
454
455 ofpbuf_use_const(&b, p, match_len);
456 while (b.size) {
457 const uint8_t *pos = b.data;
458 const struct mf_field *field;
459 union mf_value value;
460 union mf_value mask;
461 enum ofperr error;
462
463 error = nx_pull_match_entry(&b, cookie != NULL, &field, &value, &mask);
464 if (error) {
465 if (error == OFPERR_OFPBMC_BAD_FIELD && !strict) {
466 continue;
467 }
468 } else if (!field) {
469 if (!cookie) {
470 error = OFPERR_OFPBMC_BAD_FIELD;
471 } else if (*cookie_mask) {
472 error = OFPERR_OFPBMC_DUP_FIELD;
473 } else {
474 *cookie = value.be64;
475 *cookie_mask = mask.be64;
476 }
477 } else if (!mf_are_prereqs_ok(field, &match->flow)) {
478 error = OFPERR_OFPBMC_BAD_PREREQ;
479 } else if (!mf_is_all_wild(field, &match->wc)) {
480 error = OFPERR_OFPBMC_DUP_FIELD;
481 } else {
482 mf_set(field, &value, &mask, match);
483 }
484
485 if (error) {
486 VLOG_DBG_RL(&rl, "error parsing OXM at offset %"PRIdPTR" "
487 "within match (%s)", pos -
488 p, ofperr_to_string(error));
489 return error;
490 }
491 }
492
493 return 0;
494 }
495
496 static enum ofperr
497 nx_pull_match__(struct ofpbuf *b, unsigned int match_len, bool strict,
498 struct match *match,
499 ovs_be64 *cookie, ovs_be64 *cookie_mask)
500 {
501 uint8_t *p = NULL;
502
503 if (match_len) {
504 p = ofpbuf_try_pull(b, ROUND_UP(match_len, 8));
505 if (!p) {
506 VLOG_DBG_RL(&rl, "nx_match length %u, rounded up to a "
507 "multiple of 8, is longer than space in message (max "
508 "length %"PRIu32")", match_len, b->size);
509 return OFPERR_OFPBMC_BAD_LEN;
510 }
511 }
512
513 return nx_pull_raw(p, match_len, strict, match, cookie, cookie_mask);
514 }
515
516 /* Parses the nx_match formatted match description in 'b' with length
517 * 'match_len'. Stores the results in 'match'. If 'cookie' and 'cookie_mask'
518 * are valid pointers, then stores the cookie and mask in them if 'b' contains
519 * a "NXM_NX_COOKIE*" match. Otherwise, stores 0 in both.
520 *
521 * Fails with an error upon encountering an unknown NXM header.
522 *
523 * Returns 0 if successful, otherwise an OpenFlow error code. */
524 enum ofperr
525 nx_pull_match(struct ofpbuf *b, unsigned int match_len, struct match *match,
526 ovs_be64 *cookie, ovs_be64 *cookie_mask)
527 {
528 return nx_pull_match__(b, match_len, true, match, cookie, cookie_mask);
529 }
530
531 /* Behaves the same as nx_pull_match(), but skips over unknown NXM headers,
532 * instead of failing with an error. */
533 enum ofperr
534 nx_pull_match_loose(struct ofpbuf *b, unsigned int match_len,
535 struct match *match,
536 ovs_be64 *cookie, ovs_be64 *cookie_mask)
537 {
538 return nx_pull_match__(b, match_len, false, match, cookie, cookie_mask);
539 }
540
541 static enum ofperr
542 oxm_pull_match__(struct ofpbuf *b, bool strict, struct match *match)
543 {
544 struct ofp11_match_header *omh = b->data;
545 uint8_t *p;
546 uint16_t match_len;
547
548 if (b->size < sizeof *omh) {
549 return OFPERR_OFPBMC_BAD_LEN;
550 }
551
552 match_len = ntohs(omh->length);
553 if (match_len < sizeof *omh) {
554 return OFPERR_OFPBMC_BAD_LEN;
555 }
556
557 if (omh->type != htons(OFPMT_OXM)) {
558 return OFPERR_OFPBMC_BAD_TYPE;
559 }
560
561 p = ofpbuf_try_pull(b, ROUND_UP(match_len, 8));
562 if (!p) {
563 VLOG_DBG_RL(&rl, "oxm length %u, rounded up to a "
564 "multiple of 8, is longer than space in message (max "
565 "length %"PRIu32")", match_len, b->size);
566 return OFPERR_OFPBMC_BAD_LEN;
567 }
568
569 return nx_pull_raw(p + sizeof *omh, match_len - sizeof *omh,
570 strict, match, NULL, NULL);
571 }
572
573 /* Parses the oxm formatted match description preceded by a struct
574 * ofp11_match_header in 'b'. Stores the result in 'match'.
575 *
576 * Fails with an error when encountering unknown OXM headers.
577 *
578 * Returns 0 if successful, otherwise an OpenFlow error code. */
579 enum ofperr
580 oxm_pull_match(struct ofpbuf *b, struct match *match)
581 {
582 return oxm_pull_match__(b, true, match);
583 }
584
585 /* Behaves the same as oxm_pull_match() with one exception. Skips over unknown
586 * OXM headers instead of failing with an error when they are encountered. */
587 enum ofperr
588 oxm_pull_match_loose(struct ofpbuf *b, struct match *match)
589 {
590 return oxm_pull_match__(b, false, match);
591 }
592 \f
593 /* nx_put_match() and helpers.
594 *
595 * 'put' functions whose names end in 'w' add a wildcarded field.
596 * 'put' functions whose names end in 'm' add a field that might be wildcarded.
597 * Other 'put' functions add exact-match fields.
598 */
599
600 static void
601 nxm_put_unmasked(struct ofpbuf *b, enum mf_field_id field,
602 enum ofp_version version, const void *value, size_t n_bytes)
603 {
604 nx_put_header(b, field, version, false);
605 ofpbuf_put(b, value, n_bytes);
606 }
607
608 static void
609 nxm_put(struct ofpbuf *b, enum mf_field_id field, enum ofp_version version,
610 const void *value, const void *mask, size_t n_bytes)
611 {
612 if (!is_all_zeros(mask, n_bytes)) {
613 bool masked = !is_all_ones(mask, n_bytes);
614 nx_put_header(b, field, version, masked);
615 ofpbuf_put(b, value, n_bytes);
616 if (masked) {
617 ofpbuf_put(b, mask, n_bytes);
618 }
619 }
620 }
621
622 static void
623 nxm_put_8m(struct ofpbuf *b, enum mf_field_id field, enum ofp_version version,
624 uint8_t value, uint8_t mask)
625 {
626 nxm_put(b, field, version, &value, &mask, sizeof value);
627 }
628
629 static void
630 nxm_put_8(struct ofpbuf *b, enum mf_field_id field, enum ofp_version version,
631 uint8_t value)
632 {
633 nxm_put_unmasked(b, field, version, &value, sizeof value);
634 }
635
636 static void
637 nxm_put_16m(struct ofpbuf *b, enum mf_field_id field, enum ofp_version version,
638 ovs_be16 value, ovs_be16 mask)
639 {
640 nxm_put(b, field, version, &value, &mask, sizeof value);
641 }
642
643 static void
644 nxm_put_16(struct ofpbuf *b, enum mf_field_id field, enum ofp_version version,
645 ovs_be16 value)
646 {
647 nxm_put_unmasked(b, field, version, &value, sizeof value);
648 }
649
650 static void
651 nxm_put_32m(struct ofpbuf *b, enum mf_field_id field, enum ofp_version version,
652 ovs_be32 value, ovs_be32 mask)
653 {
654 nxm_put(b, field, version, &value, &mask, sizeof value);
655 }
656
657 static void
658 nxm_put_32(struct ofpbuf *b, enum mf_field_id field, enum ofp_version version,
659 ovs_be32 value)
660 {
661 nxm_put_unmasked(b, field, version, &value, sizeof value);
662 }
663
664 static void
665 nxm_put_64m(struct ofpbuf *b, enum mf_field_id field, enum ofp_version version,
666 ovs_be64 value, ovs_be64 mask)
667 {
668 nxm_put(b, field, version, &value, &mask, sizeof value);
669 }
670
671 static void
672 nxm_put_eth_masked(struct ofpbuf *b,
673 enum mf_field_id field, enum ofp_version version,
674 const uint8_t value[ETH_ADDR_LEN],
675 const uint8_t mask[ETH_ADDR_LEN])
676 {
677 nxm_put(b, field, version, value, mask, ETH_ADDR_LEN);
678 }
679
680 static void
681 nxm_put_ipv6(struct ofpbuf *b,
682 enum mf_field_id field, enum ofp_version version,
683 const struct in6_addr *value, const struct in6_addr *mask)
684 {
685 nxm_put(b, field, version, value->s6_addr, mask->s6_addr,
686 sizeof value->s6_addr);
687 }
688
689 static void
690 nxm_put_frag(struct ofpbuf *b, const struct match *match,
691 enum ofp_version version)
692 {
693 uint8_t nw_frag = match->flow.nw_frag & FLOW_NW_FRAG_MASK;
694 uint8_t nw_frag_mask = match->wc.masks.nw_frag & FLOW_NW_FRAG_MASK;
695
696 nxm_put_8m(b, MFF_IP_FRAG, version, nw_frag,
697 nw_frag_mask == FLOW_NW_FRAG_MASK ? UINT8_MAX : nw_frag_mask);
698 }
699
700 /* Appends to 'b' a set of OXM or NXM matches for the IPv4 or IPv6 fields in
701 * 'match'. */
702 static void
703 nxm_put_ip(struct ofpbuf *b, const struct match *match, enum ofp_version oxm)
704 {
705 const struct flow *flow = &match->flow;
706
707 if (flow->dl_type == htons(ETH_TYPE_IP)) {
708 nxm_put_32m(b, MFF_IPV4_SRC, oxm,
709 flow->nw_src, match->wc.masks.nw_src);
710 nxm_put_32m(b, MFF_IPV4_DST, oxm,
711 flow->nw_dst, match->wc.masks.nw_dst);
712 } else {
713 nxm_put_ipv6(b, MFF_IPV6_SRC, oxm,
714 &flow->ipv6_src, &match->wc.masks.ipv6_src);
715 nxm_put_ipv6(b, MFF_IPV6_DST, oxm,
716 &flow->ipv6_dst, &match->wc.masks.ipv6_dst);
717 }
718
719 nxm_put_frag(b, match, oxm);
720
721 if (match->wc.masks.nw_tos & IP_DSCP_MASK) {
722 if (oxm) {
723 nxm_put_8(b, MFF_IP_DSCP_SHIFTED, oxm,
724 flow->nw_tos >> 2);
725 } else {
726 nxm_put_8(b, MFF_IP_DSCP, oxm,
727 flow->nw_tos & IP_DSCP_MASK);
728 }
729 }
730
731 if (match->wc.masks.nw_tos & IP_ECN_MASK) {
732 nxm_put_8(b, MFF_IP_ECN, oxm,
733 flow->nw_tos & IP_ECN_MASK);
734 }
735
736 if (!oxm && match->wc.masks.nw_ttl) {
737 nxm_put_8(b, MFF_IP_TTL, oxm, flow->nw_ttl);
738 }
739
740 nxm_put_32m(b, MFF_IPV6_LABEL, oxm,
741 flow->ipv6_label, match->wc.masks.ipv6_label);
742
743 if (match->wc.masks.nw_proto) {
744 nxm_put_8(b, MFF_IP_PROTO, oxm, flow->nw_proto);
745
746 if (flow->nw_proto == IPPROTO_TCP) {
747 nxm_put_16m(b, MFF_TCP_SRC, oxm,
748 flow->tp_src, match->wc.masks.tp_src);
749 nxm_put_16m(b, MFF_TCP_DST, oxm,
750 flow->tp_dst, match->wc.masks.tp_dst);
751 nxm_put_16m(b, MFF_TCP_FLAGS, oxm,
752 flow->tcp_flags, match->wc.masks.tcp_flags);
753 } else if (flow->nw_proto == IPPROTO_UDP) {
754 nxm_put_16m(b, MFF_UDP_SRC, oxm,
755 flow->tp_src, match->wc.masks.tp_src);
756 nxm_put_16m(b, MFF_UDP_DST, oxm,
757 flow->tp_dst, match->wc.masks.tp_dst);
758 } else if (flow->nw_proto == IPPROTO_SCTP) {
759 nxm_put_16m(b, MFF_SCTP_SRC, oxm, flow->tp_src,
760 match->wc.masks.tp_src);
761 nxm_put_16m(b, MFF_SCTP_DST, oxm, flow->tp_dst,
762 match->wc.masks.tp_dst);
763 } else if (is_icmpv4(flow)) {
764 if (match->wc.masks.tp_src) {
765 nxm_put_8(b, MFF_ICMPV4_TYPE, oxm,
766 ntohs(flow->tp_src));
767 }
768 if (match->wc.masks.tp_dst) {
769 nxm_put_8(b, MFF_ICMPV4_CODE, oxm,
770 ntohs(flow->tp_dst));
771 }
772 } else if (is_icmpv6(flow)) {
773 if (match->wc.masks.tp_src) {
774 nxm_put_8(b, MFF_ICMPV6_TYPE, oxm,
775 ntohs(flow->tp_src));
776 }
777 if (match->wc.masks.tp_dst) {
778 nxm_put_8(b, MFF_ICMPV6_CODE, oxm,
779 ntohs(flow->tp_dst));
780 }
781 if (flow->tp_src == htons(ND_NEIGHBOR_SOLICIT) ||
782 flow->tp_src == htons(ND_NEIGHBOR_ADVERT)) {
783 nxm_put_ipv6(b, MFF_ND_TARGET, oxm,
784 &flow->nd_target, &match->wc.masks.nd_target);
785 if (flow->tp_src == htons(ND_NEIGHBOR_SOLICIT)) {
786 nxm_put_eth_masked(b, MFF_ND_SLL, oxm,
787 flow->arp_sha, match->wc.masks.arp_sha);
788 }
789 if (flow->tp_src == htons(ND_NEIGHBOR_ADVERT)) {
790 nxm_put_eth_masked(b, MFF_ND_TLL, oxm,
791 flow->arp_tha, match->wc.masks.arp_tha);
792 }
793 }
794 }
795 }
796 }
797
798 /* Appends to 'b' the nx_match format that expresses 'match'. For Flow Mod and
799 * Flow Stats Requests messages, a 'cookie' and 'cookie_mask' may be supplied.
800 * Otherwise, 'cookie_mask' should be zero.
801 *
802 * Specify 'oxm' as 0 to express the match in NXM format; otherwise, specify
803 * 'oxm' as the OpenFlow version number for the OXM format to use.
804 *
805 * This function can cause 'b''s data to be reallocated.
806 *
807 * Returns the number of bytes appended to 'b', excluding padding.
808 *
809 * If 'match' is a catch-all rule that matches every packet, then this function
810 * appends nothing to 'b' and returns 0. */
811 static int
812 nx_put_raw(struct ofpbuf *b, enum ofp_version oxm, const struct match *match,
813 ovs_be64 cookie, ovs_be64 cookie_mask)
814 {
815 const struct flow *flow = &match->flow;
816 const size_t start_len = b->size;
817 int match_len;
818 int i;
819
820 BUILD_ASSERT_DECL(FLOW_WC_SEQ == 31);
821
822 /* Metadata. */
823 if (match->wc.masks.dp_hash) {
824 nxm_put_32m(b, MFF_DP_HASH, oxm,
825 htonl(flow->dp_hash), htonl(match->wc.masks.dp_hash));
826 }
827
828 if (match->wc.masks.recirc_id) {
829 nxm_put_32(b, MFF_RECIRC_ID, oxm, htonl(flow->recirc_id));
830 }
831
832 if (match->wc.masks.conj_id) {
833 nxm_put_32(b, MFF_CONJ_ID, oxm, htonl(flow->conj_id));
834 }
835
836 if (match->wc.masks.in_port.ofp_port) {
837 ofp_port_t in_port = flow->in_port.ofp_port;
838 if (oxm) {
839 nxm_put_32(b, MFF_IN_PORT_OXM, oxm,
840 ofputil_port_to_ofp11(in_port));
841 } else {
842 nxm_put_16(b, MFF_IN_PORT, oxm,
843 htons(ofp_to_u16(in_port)));
844 }
845 }
846 if (match->wc.masks.actset_output) {
847 nxm_put_32(b, MFF_ACTSET_OUTPUT, oxm,
848 ofputil_port_to_ofp11(flow->actset_output));
849 }
850
851 /* Ethernet. */
852 nxm_put_eth_masked(b, MFF_ETH_SRC, oxm,
853 flow->dl_src, match->wc.masks.dl_src);
854 nxm_put_eth_masked(b, MFF_ETH_DST, oxm,
855 flow->dl_dst, match->wc.masks.dl_dst);
856 nxm_put_16m(b, MFF_ETH_TYPE, oxm,
857 ofputil_dl_type_to_openflow(flow->dl_type),
858 match->wc.masks.dl_type);
859
860 /* 802.1Q. */
861 if (oxm) {
862 ovs_be16 VID_CFI_MASK = htons(VLAN_VID_MASK | VLAN_CFI);
863 ovs_be16 vid = flow->vlan_tci & VID_CFI_MASK;
864 ovs_be16 mask = match->wc.masks.vlan_tci & VID_CFI_MASK;
865
866 if (mask == htons(VLAN_VID_MASK | VLAN_CFI)) {
867 nxm_put_16(b, MFF_VLAN_VID, oxm, vid);
868 } else if (mask) {
869 nxm_put_16m(b, MFF_VLAN_VID, oxm, vid, mask);
870 }
871
872 if (vid && vlan_tci_to_pcp(match->wc.masks.vlan_tci)) {
873 nxm_put_8(b, MFF_VLAN_PCP, oxm,
874 vlan_tci_to_pcp(flow->vlan_tci));
875 }
876
877 } else {
878 nxm_put_16m(b, MFF_VLAN_TCI, oxm, flow->vlan_tci,
879 match->wc.masks.vlan_tci);
880 }
881
882 /* MPLS. */
883 if (eth_type_mpls(flow->dl_type)) {
884 if (match->wc.masks.mpls_lse[0] & htonl(MPLS_TC_MASK)) {
885 nxm_put_8(b, MFF_MPLS_TC, oxm,
886 mpls_lse_to_tc(flow->mpls_lse[0]));
887 }
888
889 if (match->wc.masks.mpls_lse[0] & htonl(MPLS_BOS_MASK)) {
890 nxm_put_8(b, MFF_MPLS_BOS, oxm,
891 mpls_lse_to_bos(flow->mpls_lse[0]));
892 }
893
894 if (match->wc.masks.mpls_lse[0] & htonl(MPLS_LABEL_MASK)) {
895 nxm_put_32(b, MFF_MPLS_LABEL, oxm,
896 htonl(mpls_lse_to_label(flow->mpls_lse[0])));
897 }
898 }
899
900 /* L3. */
901 if (is_ip_any(flow)) {
902 nxm_put_ip(b, match, oxm);
903 } else if (flow->dl_type == htons(ETH_TYPE_ARP) ||
904 flow->dl_type == htons(ETH_TYPE_RARP)) {
905 /* ARP. */
906 if (match->wc.masks.nw_proto) {
907 nxm_put_16(b, MFF_ARP_OP, oxm,
908 htons(flow->nw_proto));
909 }
910 nxm_put_32m(b, MFF_ARP_SPA, oxm,
911 flow->nw_src, match->wc.masks.nw_src);
912 nxm_put_32m(b, MFF_ARP_TPA, oxm,
913 flow->nw_dst, match->wc.masks.nw_dst);
914 nxm_put_eth_masked(b, MFF_ARP_SHA, oxm,
915 flow->arp_sha, match->wc.masks.arp_sha);
916 nxm_put_eth_masked(b, MFF_ARP_THA, oxm,
917 flow->arp_tha, match->wc.masks.arp_tha);
918 }
919
920 /* Tunnel ID. */
921 nxm_put_64m(b, MFF_TUN_ID, oxm,
922 flow->tunnel.tun_id, match->wc.masks.tunnel.tun_id);
923
924 /* Other tunnel metadata. */
925 nxm_put_32m(b, MFF_TUN_SRC, oxm,
926 flow->tunnel.ip_src, match->wc.masks.tunnel.ip_src);
927 nxm_put_32m(b, MFF_TUN_DST, oxm,
928 flow->tunnel.ip_dst, match->wc.masks.tunnel.ip_dst);
929 nxm_put_16m(b, MFF_TUN_GBP_ID, oxm,
930 flow->tunnel.gbp_id, match->wc.masks.tunnel.gbp_id);
931 nxm_put_8m(b, MFF_TUN_GBP_FLAGS, oxm,
932 flow->tunnel.gbp_flags, match->wc.masks.tunnel.gbp_flags);
933
934 /* Registers. */
935 if (oxm < OFP15_VERSION) {
936 for (i = 0; i < FLOW_N_REGS; i++) {
937 nxm_put_32m(b, MFF_REG0 + i, oxm,
938 htonl(flow->regs[i]), htonl(match->wc.masks.regs[i]));
939 }
940 } else {
941 for (i = 0; i < FLOW_N_XREGS; i++) {
942 nxm_put_64m(b, MFF_XREG0 + i, oxm,
943 htonll(flow_get_xreg(flow, i)),
944 htonll(flow_get_xreg(&match->wc.masks, i)));
945 }
946 }
947
948 /* Mark. */
949 nxm_put_32m(b, MFF_PKT_MARK, oxm, htonl(flow->pkt_mark),
950 htonl(match->wc.masks.pkt_mark));
951
952 /* OpenFlow 1.1+ Metadata. */
953 nxm_put_64m(b, MFF_METADATA, oxm,
954 flow->metadata, match->wc.masks.metadata);
955
956 /* Cookie. */
957 if (cookie_mask) {
958 bool masked = cookie_mask != OVS_BE64_MAX;
959
960 cookie &= cookie_mask;
961 nx_put_header__(b, NXM_NX_COOKIE, masked);
962 ofpbuf_put(b, &cookie, sizeof cookie);
963 if (masked) {
964 ofpbuf_put(b, &cookie_mask, sizeof cookie_mask);
965 }
966 }
967
968 match_len = b->size - start_len;
969 return match_len;
970 }
971
972 /* Appends to 'b' the nx_match format that expresses 'match', plus enough zero
973 * bytes to pad the nx_match out to a multiple of 8. For Flow Mod and Flow
974 * Stats Requests messages, a 'cookie' and 'cookie_mask' may be supplied.
975 * Otherwise, 'cookie_mask' should be zero.
976 *
977 * This function can cause 'b''s data to be reallocated.
978 *
979 * Returns the number of bytes appended to 'b', excluding padding. The return
980 * value can be zero if it appended nothing at all to 'b' (which happens if
981 * 'cr' is a catch-all rule that matches every packet). */
982 int
983 nx_put_match(struct ofpbuf *b, const struct match *match,
984 ovs_be64 cookie, ovs_be64 cookie_mask)
985 {
986 int match_len = nx_put_raw(b, 0, match, cookie, cookie_mask);
987
988 ofpbuf_put_zeros(b, PAD_SIZE(match_len, 8));
989 return match_len;
990 }
991
992 /* Appends to 'b' an struct ofp11_match_header followed by the OXM format that
993 * expresses 'cr', plus enough zero bytes to pad the data appended out to a
994 * multiple of 8.
995 *
996 * OXM differs slightly among versions of OpenFlow. Specify the OpenFlow
997 * version in use as 'version'.
998 *
999 * This function can cause 'b''s data to be reallocated.
1000 *
1001 * Returns the number of bytes appended to 'b', excluding the padding. Never
1002 * returns zero. */
1003 int
1004 oxm_put_match(struct ofpbuf *b, const struct match *match,
1005 enum ofp_version version)
1006 {
1007 int match_len;
1008 struct ofp11_match_header *omh;
1009 size_t start_len = b->size;
1010 ovs_be64 cookie = htonll(0), cookie_mask = htonll(0);
1011
1012 ofpbuf_put_uninit(b, sizeof *omh);
1013 match_len = (nx_put_raw(b, version, match, cookie, cookie_mask)
1014 + sizeof *omh);
1015 ofpbuf_put_zeros(b, PAD_SIZE(match_len, 8));
1016
1017 omh = ofpbuf_at(b, start_len, sizeof *omh);
1018 omh->type = htons(OFPMT_OXM);
1019 omh->length = htons(match_len);
1020
1021 return match_len;
1022 }
1023
1024 static void
1025 nx_put_header__(struct ofpbuf *b, uint64_t header, bool masked)
1026 {
1027 uint64_t masked_header = masked ? nxm_make_wild_header(header) : header;
1028 ovs_be64 network_header = htonll(masked_header);
1029
1030 ofpbuf_put(b, &network_header, nxm_header_len(header));
1031 }
1032
1033 void
1034 nx_put_header(struct ofpbuf *b, enum mf_field_id field,
1035 enum ofp_version version, bool masked)
1036 {
1037 nx_put_header__(b, mf_oxm_header(field, version), masked);
1038 }
1039
1040 void
1041 nx_put_entry(struct ofpbuf *b,
1042 enum mf_field_id field, enum ofp_version version,
1043 const union mf_value *value, const union mf_value *mask)
1044 {
1045 int n_bytes = mf_from_id(field)->n_bytes;
1046 bool masked = mask && !is_all_ones(mask, n_bytes);
1047
1048 nx_put_header(b, field, version, masked);
1049 ofpbuf_put(b, value, n_bytes);
1050 if (masked) {
1051 ofpbuf_put(b, mask, n_bytes);
1052 }
1053 }
1054 \f
1055 /* nx_match_to_string() and helpers. */
1056
1057 static void format_nxm_field_name(struct ds *, uint64_t header);
1058
1059 char *
1060 nx_match_to_string(const uint8_t *p, unsigned int match_len)
1061 {
1062 struct ofpbuf b;
1063 struct ds s;
1064
1065 if (!match_len) {
1066 return xstrdup("<any>");
1067 }
1068
1069 ofpbuf_use_const(&b, p, match_len);
1070 ds_init(&s);
1071 while (b.size) {
1072 union mf_value value;
1073 union mf_value mask;
1074 enum ofperr error;
1075 uint64_t header;
1076 int value_len;
1077
1078 error = nx_pull_entry__(&b, true, &header, NULL, &value, &mask);
1079 if (error) {
1080 break;
1081 }
1082 value_len = MIN(sizeof value, nxm_field_bytes(header));
1083
1084 if (s.length) {
1085 ds_put_cstr(&s, ", ");
1086 }
1087
1088 format_nxm_field_name(&s, header);
1089 ds_put_char(&s, '(');
1090
1091 for (int i = 0; i < value_len; i++) {
1092 ds_put_format(&s, "%02x", ((const uint8_t *) &value)[i]);
1093 }
1094 if (nxm_hasmask(header)) {
1095 ds_put_char(&s, '/');
1096 for (int i = 0; i < value_len; i++) {
1097 ds_put_format(&s, "%02x", ((const uint8_t *) &mask)[i]);
1098 }
1099 }
1100 ds_put_char(&s, ')');
1101 }
1102
1103 if (b.size) {
1104 if (s.length) {
1105 ds_put_cstr(&s, ", ");
1106 }
1107
1108 ds_put_format(&s, "<%u invalid bytes>", b.size);
1109 }
1110
1111 return ds_steal_cstr(&s);
1112 }
1113
1114 char *
1115 oxm_match_to_string(const struct ofpbuf *p, unsigned int match_len)
1116 {
1117 const struct ofp11_match_header *omh = p->data;
1118 uint16_t match_len_;
1119 struct ds s;
1120
1121 ds_init(&s);
1122
1123 if (match_len < sizeof *omh) {
1124 ds_put_format(&s, "<match too short: %u>", match_len);
1125 goto err;
1126 }
1127
1128 if (omh->type != htons(OFPMT_OXM)) {
1129 ds_put_format(&s, "<bad match type field: %u>", ntohs(omh->type));
1130 goto err;
1131 }
1132
1133 match_len_ = ntohs(omh->length);
1134 if (match_len_ < sizeof *omh) {
1135 ds_put_format(&s, "<match length field too short: %u>", match_len_);
1136 goto err;
1137 }
1138
1139 if (match_len_ != match_len) {
1140 ds_put_format(&s, "<match length field incorrect: %u != %u>",
1141 match_len_, match_len);
1142 goto err;
1143 }
1144
1145 return nx_match_to_string(ofpbuf_at(p, sizeof *omh, 0),
1146 match_len - sizeof *omh);
1147
1148 err:
1149 return ds_steal_cstr(&s);
1150 }
1151
1152 void
1153 nx_format_field_name(enum mf_field_id id, enum ofp_version version,
1154 struct ds *s)
1155 {
1156 format_nxm_field_name(s, mf_oxm_header(id, version));
1157 }
1158
1159 static void
1160 format_nxm_field_name(struct ds *s, uint64_t header)
1161 {
1162 const struct nxm_field *f = nxm_field_by_header(header);
1163 if (f) {
1164 ds_put_cstr(s, f->name);
1165 if (nxm_hasmask(header)) {
1166 ds_put_cstr(s, "_W");
1167 }
1168 } else if (header == NXM_NX_COOKIE) {
1169 ds_put_cstr(s, "NXM_NX_COOKIE");
1170 } else if (header == NXM_NX_COOKIE_W) {
1171 ds_put_cstr(s, "NXM_NX_COOKIE_W");
1172 } else {
1173 ds_put_format(s, "%d:%d", nxm_class(header), nxm_field(header));
1174 }
1175 }
1176
1177 static bool
1178 streq_len(const char *a, size_t a_len, const char *b)
1179 {
1180 return strlen(b) == a_len && !memcmp(a, b, a_len);
1181 }
1182
1183 static uint64_t
1184 parse_nxm_field_name(const char *name, int name_len)
1185 {
1186 const struct nxm_field *f;
1187 bool wild;
1188
1189 f = mf_parse_subfield_name(name, name_len, &wild);
1190 if (f) {
1191 if (!wild) {
1192 return f->header;
1193 } else if (mf_from_id(f->id)->maskable != MFM_NONE) {
1194 return nxm_make_wild_header(f->header);
1195 }
1196 }
1197
1198 if (streq_len(name, name_len, "NXM_NX_COOKIE")) {
1199 return NXM_NX_COOKIE;
1200 } else if (streq_len(name, name_len, "NXM_NX_COOKIE_W")) {
1201 return NXM_NX_COOKIE_W;
1202 }
1203
1204 /* Check whether it's a field header value as hex.
1205 * (This isn't ordinarily useful except for testing error behavior.) */
1206 if (name_len == 8) {
1207 uint64_t header;
1208 bool ok;
1209
1210 header = hexits_value(name, name_len, &ok) << 32;
1211 if (ok) {
1212 return header;
1213 }
1214 } else if (name_len == 16) {
1215 uint64_t header;
1216 bool ok;
1217
1218 header = hexits_value(name, name_len, &ok);
1219 if (ok && is_experimenter_oxm(header)) {
1220 return header;
1221 }
1222 }
1223
1224 return 0;
1225 }
1226 \f
1227 /* nx_match_from_string(). */
1228
1229 static int
1230 nx_match_from_string_raw(const char *s, struct ofpbuf *b)
1231 {
1232 const char *full_s = s;
1233 const size_t start_len = b->size;
1234
1235 if (!strcmp(s, "<any>")) {
1236 /* Ensure that 'b->data' isn't actually null. */
1237 ofpbuf_prealloc_tailroom(b, 1);
1238 return 0;
1239 }
1240
1241 for (s += strspn(s, ", "); *s; s += strspn(s, ", ")) {
1242 const char *name;
1243 uint64_t header;
1244 int name_len;
1245 size_t n;
1246
1247 name = s;
1248 name_len = strcspn(s, "(");
1249 if (s[name_len] != '(') {
1250 ovs_fatal(0, "%s: missing ( at end of nx_match", full_s);
1251 }
1252
1253 header = parse_nxm_field_name(name, name_len);
1254 if (!header) {
1255 ovs_fatal(0, "%s: unknown field `%.*s'", full_s, name_len, s);
1256 }
1257
1258 s += name_len + 1;
1259
1260 nx_put_header__(b, header, false);
1261 s = ofpbuf_put_hex(b, s, &n);
1262 if (n != nxm_field_bytes(header)) {
1263 ovs_fatal(0, "%.2s: hex digits expected", s);
1264 }
1265 if (nxm_hasmask(header)) {
1266 s += strspn(s, " ");
1267 if (*s != '/') {
1268 ovs_fatal(0, "%s: missing / in masked field %.*s",
1269 full_s, name_len, name);
1270 }
1271 s = ofpbuf_put_hex(b, s + 1, &n);
1272 if (n != nxm_field_bytes(header)) {
1273 ovs_fatal(0, "%.2s: hex digits expected", s);
1274 }
1275 }
1276
1277 s += strspn(s, " ");
1278 if (*s != ')') {
1279 ovs_fatal(0, "%s: missing ) following field %.*s",
1280 full_s, name_len, name);
1281 }
1282 s++;
1283 }
1284
1285 return b->size - start_len;
1286 }
1287
1288 int
1289 nx_match_from_string(const char *s, struct ofpbuf *b)
1290 {
1291 int match_len = nx_match_from_string_raw(s, b);
1292 ofpbuf_put_zeros(b, PAD_SIZE(match_len, 8));
1293 return match_len;
1294 }
1295
1296 int
1297 oxm_match_from_string(const char *s, struct ofpbuf *b)
1298 {
1299 int match_len;
1300 struct ofp11_match_header *omh;
1301 size_t start_len = b->size;
1302
1303 ofpbuf_put_uninit(b, sizeof *omh);
1304 match_len = nx_match_from_string_raw(s, b) + sizeof *omh;
1305 ofpbuf_put_zeros(b, PAD_SIZE(match_len, 8));
1306
1307 omh = ofpbuf_at(b, start_len, sizeof *omh);
1308 omh->type = htons(OFPMT_OXM);
1309 omh->length = htons(match_len);
1310
1311 return match_len;
1312 }
1313 \f
1314 /* Parses 's' as a "move" action, in the form described in ovs-ofctl(8), into
1315 * '*move'.
1316 *
1317 * Returns NULL if successful, otherwise a malloc()'d string describing the
1318 * error. The caller is responsible for freeing the returned string. */
1319 char * OVS_WARN_UNUSED_RESULT
1320 nxm_parse_reg_move(struct ofpact_reg_move *move, const char *s)
1321 {
1322 const char *full_s = s;
1323 char *error;
1324
1325 error = mf_parse_subfield__(&move->src, &s);
1326 if (error) {
1327 return error;
1328 }
1329 if (strncmp(s, "->", 2)) {
1330 return xasprintf("%s: missing `->' following source", full_s);
1331 }
1332 s += 2;
1333 error = mf_parse_subfield(&move->dst, s);
1334 if (error) {
1335 return error;
1336 }
1337
1338 if (move->src.n_bits != move->dst.n_bits) {
1339 return xasprintf("%s: source field is %d bits wide but destination is "
1340 "%d bits wide", full_s,
1341 move->src.n_bits, move->dst.n_bits);
1342 }
1343 return NULL;
1344 }
1345 \f
1346 /* nxm_format_reg_move(). */
1347
1348 void
1349 nxm_format_reg_move(const struct ofpact_reg_move *move, struct ds *s)
1350 {
1351 ds_put_format(s, "move:");
1352 mf_format_subfield(&move->src, s);
1353 ds_put_cstr(s, "->");
1354 mf_format_subfield(&move->dst, s);
1355 }
1356
1357 \f
1358 enum ofperr
1359 nxm_reg_move_check(const struct ofpact_reg_move *move, const struct flow *flow)
1360 {
1361 enum ofperr error;
1362
1363 error = mf_check_src(&move->src, flow);
1364 if (error) {
1365 return error;
1366 }
1367
1368 return mf_check_dst(&move->dst, flow);
1369 }
1370 \f
1371 /* nxm_execute_reg_move(). */
1372
1373 void
1374 nxm_execute_reg_move(const struct ofpact_reg_move *move,
1375 struct flow *flow, struct flow_wildcards *wc)
1376 {
1377 union mf_value src_value;
1378 union mf_value dst_value;
1379
1380 mf_mask_field_and_prereqs(move->dst.field, &wc->masks);
1381 mf_mask_field_and_prereqs(move->src.field, &wc->masks);
1382
1383 /* A flow may wildcard nw_frag. Do nothing if setting a transport
1384 * header field on a packet that does not have them. */
1385 if (mf_are_prereqs_ok(move->dst.field, flow)
1386 && mf_are_prereqs_ok(move->src.field, flow)) {
1387
1388 mf_get_value(move->dst.field, flow, &dst_value);
1389 mf_get_value(move->src.field, flow, &src_value);
1390 bitwise_copy(&src_value, move->src.field->n_bytes, move->src.ofs,
1391 &dst_value, move->dst.field->n_bytes, move->dst.ofs,
1392 move->src.n_bits);
1393 mf_set_flow_value(move->dst.field, &dst_value, flow);
1394 }
1395 }
1396
1397 void
1398 nxm_reg_load(const struct mf_subfield *dst, uint64_t src_data,
1399 struct flow *flow, struct flow_wildcards *wc)
1400 {
1401 union mf_subvalue src_subvalue;
1402 union mf_subvalue mask_value;
1403 ovs_be64 src_data_be = htonll(src_data);
1404
1405 memset(&mask_value, 0xff, sizeof mask_value);
1406 mf_write_subfield_flow(dst, &mask_value, &wc->masks);
1407
1408 bitwise_copy(&src_data_be, sizeof src_data_be, 0,
1409 &src_subvalue, sizeof src_subvalue, 0,
1410 sizeof src_data_be * 8);
1411 mf_write_subfield_flow(dst, &src_subvalue, flow);
1412 }
1413 \f
1414 /* nxm_parse_stack_action, works for both push() and pop(). */
1415
1416 /* Parses 's' as a "push" or "pop" action, in the form described in
1417 * ovs-ofctl(8), into '*stack_action'.
1418 *
1419 * Returns NULL if successful, otherwise a malloc()'d string describing the
1420 * error. The caller is responsible for freeing the returned string. */
1421 char * OVS_WARN_UNUSED_RESULT
1422 nxm_parse_stack_action(struct ofpact_stack *stack_action, const char *s)
1423 {
1424 char *error;
1425
1426 error = mf_parse_subfield__(&stack_action->subfield, &s);
1427 if (error) {
1428 return error;
1429 }
1430
1431 if (*s != '\0') {
1432 return xasprintf("%s: trailing garbage following push or pop", s);
1433 }
1434
1435 return NULL;
1436 }
1437
1438 void
1439 nxm_format_stack_push(const struct ofpact_stack *push, struct ds *s)
1440 {
1441 ds_put_cstr(s, "push:");
1442 mf_format_subfield(&push->subfield, s);
1443 }
1444
1445 void
1446 nxm_format_stack_pop(const struct ofpact_stack *pop, struct ds *s)
1447 {
1448 ds_put_cstr(s, "pop:");
1449 mf_format_subfield(&pop->subfield, s);
1450 }
1451
1452 enum ofperr
1453 nxm_stack_push_check(const struct ofpact_stack *push,
1454 const struct flow *flow)
1455 {
1456 return mf_check_src(&push->subfield, flow);
1457 }
1458
1459 enum ofperr
1460 nxm_stack_pop_check(const struct ofpact_stack *pop,
1461 const struct flow *flow)
1462 {
1463 return mf_check_dst(&pop->subfield, flow);
1464 }
1465
1466 /* nxm_execute_stack_push(), nxm_execute_stack_pop(). */
1467 static void
1468 nx_stack_push(struct ofpbuf *stack, union mf_subvalue *v)
1469 {
1470 ofpbuf_put(stack, v, sizeof *v);
1471 }
1472
1473 static union mf_subvalue *
1474 nx_stack_pop(struct ofpbuf *stack)
1475 {
1476 union mf_subvalue *v = NULL;
1477
1478 if (stack->size) {
1479
1480 stack->size -= sizeof *v;
1481 v = (union mf_subvalue *) ofpbuf_tail(stack);
1482 }
1483
1484 return v;
1485 }
1486
1487 void
1488 nxm_execute_stack_push(const struct ofpact_stack *push,
1489 const struct flow *flow, struct flow_wildcards *wc,
1490 struct ofpbuf *stack)
1491 {
1492 union mf_subvalue mask_value;
1493 union mf_subvalue dst_value;
1494
1495 memset(&mask_value, 0xff, sizeof mask_value);
1496 mf_write_subfield_flow(&push->subfield, &mask_value, &wc->masks);
1497
1498 mf_read_subfield(&push->subfield, flow, &dst_value);
1499 nx_stack_push(stack, &dst_value);
1500 }
1501
1502 void
1503 nxm_execute_stack_pop(const struct ofpact_stack *pop,
1504 struct flow *flow, struct flow_wildcards *wc,
1505 struct ofpbuf *stack)
1506 {
1507 union mf_subvalue *src_value;
1508
1509 src_value = nx_stack_pop(stack);
1510
1511 /* Only pop if stack is not empty. Otherwise, give warning. */
1512 if (src_value) {
1513 union mf_subvalue mask_value;
1514
1515 memset(&mask_value, 0xff, sizeof mask_value);
1516 mf_write_subfield_flow(&pop->subfield, &mask_value, &wc->masks);
1517 mf_write_subfield_flow(&pop->subfield, src_value, flow);
1518 } else {
1519 if (!VLOG_DROP_WARN(&rl)) {
1520 char *flow_str = flow_to_string(flow);
1521 VLOG_WARN_RL(&rl, "Failed to pop from an empty stack. On flow\n"
1522 " %s", flow_str);
1523 free(flow_str);
1524 }
1525 }
1526 }
1527 \f
1528 /* Formats 'sf' into 's' in a format normally acceptable to
1529 * mf_parse_subfield(). (It won't be acceptable if sf->field is NULL or if
1530 * sf->field has no NXM name.) */
1531 void
1532 mf_format_subfield(const struct mf_subfield *sf, struct ds *s)
1533 {
1534 if (!sf->field) {
1535 ds_put_cstr(s, "<unknown>");
1536 } else {
1537 const struct nxm_field *f = nxm_field_by_mf_id(sf->field->id, 0);
1538 ds_put_cstr(s, f ? f->name : sf->field->name);
1539 }
1540
1541 if (sf->field && sf->ofs == 0 && sf->n_bits == sf->field->n_bits) {
1542 ds_put_cstr(s, "[]");
1543 } else if (sf->n_bits == 1) {
1544 ds_put_format(s, "[%d]", sf->ofs);
1545 } else {
1546 ds_put_format(s, "[%d..%d]", sf->ofs, sf->ofs + sf->n_bits - 1);
1547 }
1548 }
1549
1550 static const struct nxm_field *
1551 mf_parse_subfield_name(const char *name, int name_len, bool *wild)
1552 {
1553 *wild = name_len > 2 && !memcmp(&name[name_len - 2], "_W", 2);
1554 if (*wild) {
1555 name_len -= 2;
1556 }
1557
1558 return nxm_field_by_name(name, name_len);
1559 }
1560
1561 /* Parses a subfield from the beginning of '*sp' into 'sf'. If successful,
1562 * returns NULL and advances '*sp' to the first byte following the parsed
1563 * string. On failure, returns a malloc()'d error message, does not modify
1564 * '*sp', and does not properly initialize 'sf'.
1565 *
1566 * The syntax parsed from '*sp' takes the form "header[start..end]" where
1567 * 'header' is the name of an NXM field and 'start' and 'end' are (inclusive)
1568 * bit indexes. "..end" may be omitted to indicate a single bit. "start..end"
1569 * may both be omitted (the [] are still required) to indicate an entire
1570 * field. */
1571 char * OVS_WARN_UNUSED_RESULT
1572 mf_parse_subfield__(struct mf_subfield *sf, const char **sp)
1573 {
1574 const struct mf_field *field;
1575 const struct nxm_field *f;
1576 const char *name;
1577 int start, end;
1578 const char *s;
1579 int name_len;
1580 bool wild;
1581
1582 s = *sp;
1583 name = s;
1584 name_len = strcspn(s, "[");
1585 if (s[name_len] != '[') {
1586 return xasprintf("%s: missing [ looking for field name", *sp);
1587 }
1588
1589 f = mf_parse_subfield_name(name, name_len, &wild);
1590 if (!f) {
1591 return xasprintf("%s: unknown field `%.*s'", *sp, name_len, s);
1592 }
1593 field = mf_from_id(f->id);
1594
1595 s += name_len;
1596 if (ovs_scan(s, "[%d..%d]", &start, &end)) {
1597 /* Nothing to do. */
1598 } else if (ovs_scan(s, "[%d]", &start)) {
1599 end = start;
1600 } else if (!strncmp(s, "[]", 2)) {
1601 start = 0;
1602 end = field->n_bits - 1;
1603 } else {
1604 return xasprintf("%s: syntax error expecting [] or [<bit>] or "
1605 "[<start>..<end>]", *sp);
1606 }
1607 s = strchr(s, ']') + 1;
1608
1609 if (start > end) {
1610 return xasprintf("%s: starting bit %d is after ending bit %d",
1611 *sp, start, end);
1612 } else if (start >= field->n_bits) {
1613 return xasprintf("%s: starting bit %d is not valid because field is "
1614 "only %d bits wide", *sp, start, field->n_bits);
1615 } else if (end >= field->n_bits){
1616 return xasprintf("%s: ending bit %d is not valid because field is "
1617 "only %d bits wide", *sp, end, field->n_bits);
1618 }
1619
1620 sf->field = field;
1621 sf->ofs = start;
1622 sf->n_bits = end - start + 1;
1623
1624 *sp = s;
1625 return NULL;
1626 }
1627
1628 /* Parses a subfield from the entirety of 's' into 'sf'. Returns NULL if
1629 * successful, otherwise a malloc()'d string describing the error. The caller
1630 * is responsible for freeing the returned string.
1631 *
1632 * The syntax parsed from 's' takes the form "header[start..end]" where
1633 * 'header' is the name of an NXM field and 'start' and 'end' are (inclusive)
1634 * bit indexes. "..end" may be omitted to indicate a single bit. "start..end"
1635 * may both be omitted (the [] are still required) to indicate an entire
1636 * field. */
1637 char * OVS_WARN_UNUSED_RESULT
1638 mf_parse_subfield(struct mf_subfield *sf, const char *s)
1639 {
1640 char *error = mf_parse_subfield__(sf, &s);
1641 if (!error && s[0]) {
1642 error = xstrdup("unexpected input following field syntax");
1643 }
1644 return error;
1645 }
1646 \f
1647 /* Returns an bitmap in which each bit corresponds to the like-numbered field
1648 * in the OFPXMC12_OPENFLOW_BASIC OXM class, in which the bit values are taken
1649 * from the 'fields' bitmap. Only fields defined in OpenFlow 'version' are
1650 * considered.
1651 *
1652 * This is useful for encoding OpenFlow 1.2 table stats messages. */
1653 ovs_be64
1654 oxm_bitmap_from_mf_bitmap(const struct mf_bitmap *fields,
1655 enum ofp_version version)
1656 {
1657 uint64_t oxm_bitmap = 0;
1658 int i;
1659
1660 BITMAP_FOR_EACH_1 (i, MFF_N_IDS, fields->bm) {
1661 uint64_t oxm = mf_oxm_header(i, version);
1662 uint32_t class = nxm_class(oxm);
1663 int field = nxm_field(oxm);
1664
1665 if (class == OFPXMC12_OPENFLOW_BASIC && field < 64) {
1666 oxm_bitmap |= UINT64_C(1) << field;
1667 }
1668 }
1669 return htonll(oxm_bitmap);
1670 }
1671
1672 /* Opposite conversion from oxm_bitmap_from_mf_bitmap().
1673 *
1674 * This is useful for decoding OpenFlow 1.2 table stats messages. */
1675 struct mf_bitmap
1676 oxm_bitmap_to_mf_bitmap(ovs_be64 oxm_bitmap, enum ofp_version version)
1677 {
1678 struct mf_bitmap fields = MF_BITMAP_INITIALIZER;
1679
1680 for (enum mf_field_id id = 0; id < MFF_N_IDS; id++) {
1681 uint64_t oxm = mf_oxm_header(id, version);
1682 if (oxm && version >= nxm_field_by_header(oxm)->version) {
1683 uint32_t class = nxm_class(oxm);
1684 int field = nxm_field(oxm);
1685
1686 if (class == OFPXMC12_OPENFLOW_BASIC
1687 && field < 64
1688 && oxm_bitmap & htonll(UINT64_C(1) << field)) {
1689 bitmap_set1(fields.bm, id);
1690 }
1691 }
1692 }
1693 return fields;
1694 }
1695
1696 /* Returns a bitmap of fields that can be encoded in OXM and that can be
1697 * modified with a "set_field" action. */
1698 struct mf_bitmap
1699 oxm_writable_fields(void)
1700 {
1701 struct mf_bitmap b = MF_BITMAP_INITIALIZER;
1702 int i;
1703
1704 for (i = 0; i < MFF_N_IDS; i++) {
1705 if (mf_oxm_header(i, 0) && mf_from_id(i)->writable) {
1706 bitmap_set1(b.bm, i);
1707 }
1708 }
1709 return b;
1710 }
1711
1712 /* Returns a bitmap of fields that can be encoded in OXM and that can be
1713 * matched in a flow table. */
1714 struct mf_bitmap
1715 oxm_matchable_fields(void)
1716 {
1717 struct mf_bitmap b = MF_BITMAP_INITIALIZER;
1718 int i;
1719
1720 for (i = 0; i < MFF_N_IDS; i++) {
1721 if (mf_oxm_header(i, 0)) {
1722 bitmap_set1(b.bm, i);
1723 }
1724 }
1725 return b;
1726 }
1727
1728 /* Returns a bitmap of fields that can be encoded in OXM and that can be
1729 * matched in a flow table with an arbitrary bitmask. */
1730 struct mf_bitmap
1731 oxm_maskable_fields(void)
1732 {
1733 struct mf_bitmap b = MF_BITMAP_INITIALIZER;
1734 int i;
1735
1736 for (i = 0; i < MFF_N_IDS; i++) {
1737 if (mf_oxm_header(i, 0) && mf_from_id(i)->maskable == MFM_FULLY) {
1738 bitmap_set1(b.bm, i);
1739 }
1740 }
1741 return b;
1742 }
1743 \f
1744 struct nxm_field_index {
1745 struct hmap_node header_node; /* In nxm_header_map. */
1746 struct hmap_node name_node; /* In nxm_name_map. */
1747 struct ovs_list mf_node; /* In mf_mf_map[nf.id]. */
1748 const struct nxm_field nf;
1749 };
1750
1751 #include "nx-match.inc"
1752
1753 static struct hmap nxm_header_map;
1754 static struct hmap nxm_name_map;
1755 static struct ovs_list nxm_mf_map[MFF_N_IDS];
1756
1757 static void
1758 nxm_init(void)
1759 {
1760 static struct ovsthread_once once = OVSTHREAD_ONCE_INITIALIZER;
1761 if (ovsthread_once_start(&once)) {
1762 hmap_init(&nxm_header_map);
1763 hmap_init(&nxm_name_map);
1764 for (int i = 0; i < MFF_N_IDS; i++) {
1765 list_init(&nxm_mf_map[i]);
1766 }
1767 for (struct nxm_field_index *nfi = all_nxm_fields;
1768 nfi < &all_nxm_fields[ARRAY_SIZE(all_nxm_fields)]; nfi++) {
1769 hmap_insert(&nxm_header_map, &nfi->header_node,
1770 hash_int(nfi->nf.header, 0));
1771 hmap_insert(&nxm_name_map, &nfi->name_node,
1772 hash_string(nfi->nf.name, 0));
1773 list_push_back(&nxm_mf_map[nfi->nf.id], &nfi->mf_node);
1774 }
1775 ovsthread_once_done(&once);
1776 }
1777 }
1778
1779 static const struct nxm_field *
1780 nxm_field_by_header(uint64_t header)
1781 {
1782 const struct nxm_field_index *nfi;
1783
1784 nxm_init();
1785 if (nxm_hasmask(header)) {
1786 header = nxm_make_exact_header(header);
1787 }
1788
1789 HMAP_FOR_EACH_IN_BUCKET (nfi, header_node, hash_int(header, 0),
1790 &nxm_header_map) {
1791 if (header == nfi->nf.header) {
1792 return &nfi->nf;
1793 }
1794 }
1795 return NULL;
1796 }
1797
1798 static const struct nxm_field *
1799 nxm_field_by_name(const char *name, size_t len)
1800 {
1801 const struct nxm_field_index *nfi;
1802
1803 nxm_init();
1804 HMAP_FOR_EACH_WITH_HASH (nfi, name_node, hash_bytes(name, len, 0),
1805 &nxm_name_map) {
1806 if (strlen(nfi->nf.name) == len && !memcmp(nfi->nf.name, name, len)) {
1807 return &nfi->nf;
1808 }
1809 }
1810 return NULL;
1811 }
1812
1813 static const struct nxm_field *
1814 nxm_field_by_mf_id(enum mf_field_id id, enum ofp_version version)
1815 {
1816 const struct nxm_field_index *nfi;
1817 const struct nxm_field *f;
1818
1819 nxm_init();
1820
1821 f = NULL;
1822 LIST_FOR_EACH (nfi, mf_node, &nxm_mf_map[id]) {
1823 if (!f || version >= nfi->nf.version) {
1824 f = &nfi->nf;
1825 }
1826 }
1827 return f;
1828 }