1 // SPDX-License-Identifier: GPL-2.0+
2 /* Microchip VCAP API
3 *
4 * Copyright (c) 2022 Microchip Technology Inc. and its subsidiaries.
5 */
6
7 #include <linux/types.h>
8
9 #include "vcap_api_private.h"
10
11 static int keyfield_size_table[] = {
12 [VCAP_FIELD_BIT] = sizeof(struct vcap_u1_key),
13 [VCAP_FIELD_U32] = sizeof(struct vcap_u32_key),
14 [VCAP_FIELD_U48] = sizeof(struct vcap_u48_key),
15 [VCAP_FIELD_U56] = sizeof(struct vcap_u56_key),
16 [VCAP_FIELD_U64] = sizeof(struct vcap_u64_key),
17 [VCAP_FIELD_U72] = sizeof(struct vcap_u72_key),
18 [VCAP_FIELD_U112] = sizeof(struct vcap_u112_key),
19 [VCAP_FIELD_U128] = sizeof(struct vcap_u128_key),
20 };
21
22 static int actionfield_size_table[] = {
23 [VCAP_FIELD_BIT] = sizeof(struct vcap_u1_action),
24 [VCAP_FIELD_U32] = sizeof(struct vcap_u32_action),
25 [VCAP_FIELD_U48] = sizeof(struct vcap_u48_action),
26 [VCAP_FIELD_U56] = sizeof(struct vcap_u56_action),
27 [VCAP_FIELD_U64] = sizeof(struct vcap_u64_action),
28 [VCAP_FIELD_U72] = sizeof(struct vcap_u72_action),
29 [VCAP_FIELD_U112] = sizeof(struct vcap_u112_action),
30 [VCAP_FIELD_U128] = sizeof(struct vcap_u128_action),
31 };
32
33 /* Moving a rule in the VCAP address space */
34 struct vcap_rule_move {
35 int addr; /* address to move */
36 int offset; /* change in address */
37 int count; /* blocksize of addresses to move */
38 };
39
40 /* Stores the filter cookie and chain id that enabled the port */
41 struct vcap_enabled_port {
42 struct list_head list; /* for insertion in enabled ports list */
43 struct net_device *ndev; /* the enabled port */
44 unsigned long cookie; /* filter that enabled the port */
45 int src_cid; /* source chain id */
46 int dst_cid; /* destination chain id */
47 };
48
vcap_iter_set(struct vcap_stream_iter * itr,int sw_width,const struct vcap_typegroup * tg,u32 offset)49 void vcap_iter_set(struct vcap_stream_iter *itr, int sw_width,
50 const struct vcap_typegroup *tg, u32 offset)
51 {
52 memset(itr, 0, sizeof(*itr));
53 itr->offset = offset;
54 itr->sw_width = sw_width;
55 itr->regs_per_sw = DIV_ROUND_UP(sw_width, 32);
56 itr->tg = tg;
57 }
58
vcap_iter_skip_tg(struct vcap_stream_iter * itr)59 static void vcap_iter_skip_tg(struct vcap_stream_iter *itr)
60 {
61 /* Compensate the field offset for preceding typegroups.
62 * A typegroup table ends with an all-zero terminator.
63 */
64 while (itr->tg->width && itr->offset >= itr->tg->offset) {
65 itr->offset += itr->tg->width;
66 itr->tg++; /* next typegroup */
67 }
68 }
69
vcap_iter_update(struct vcap_stream_iter * itr)70 void vcap_iter_update(struct vcap_stream_iter *itr)
71 {
72 int sw_idx, sw_bitpos;
73
74 /* Calculate the subword index and bitposition for current bit */
75 sw_idx = itr->offset / itr->sw_width;
76 sw_bitpos = itr->offset % itr->sw_width;
77 /* Calculate the register index and bitposition for current bit */
78 itr->reg_idx = (sw_idx * itr->regs_per_sw) + (sw_bitpos / 32);
79 itr->reg_bitpos = sw_bitpos % 32;
80 }
81
vcap_iter_init(struct vcap_stream_iter * itr,int sw_width,const struct vcap_typegroup * tg,u32 offset)82 void vcap_iter_init(struct vcap_stream_iter *itr, int sw_width,
83 const struct vcap_typegroup *tg, u32 offset)
84 {
85 vcap_iter_set(itr, sw_width, tg, offset);
86 vcap_iter_skip_tg(itr);
87 vcap_iter_update(itr);
88 }
89
vcap_iter_next(struct vcap_stream_iter * itr)90 void vcap_iter_next(struct vcap_stream_iter *itr)
91 {
92 itr->offset++;
93 vcap_iter_skip_tg(itr);
94 vcap_iter_update(itr);
95 }
96
vcap_set_bit(u32 * stream,struct vcap_stream_iter * itr,bool value)97 static void vcap_set_bit(u32 *stream, struct vcap_stream_iter *itr, bool value)
98 {
99 u32 mask = BIT(itr->reg_bitpos);
100 u32 *p = &stream[itr->reg_idx];
101
102 if (value)
103 *p |= mask;
104 else
105 *p &= ~mask;
106 }
107
vcap_encode_bit(u32 * stream,struct vcap_stream_iter * itr,bool val)108 static void vcap_encode_bit(u32 *stream, struct vcap_stream_iter *itr, bool val)
109 {
110 /* When intersected by a type group field, stream the type group bits
111 * before continuing with the value bit
112 */
113 while (itr->tg->width &&
114 itr->offset >= itr->tg->offset &&
115 itr->offset < itr->tg->offset + itr->tg->width) {
116 int tg_bitpos = itr->tg->offset - itr->offset;
117
118 vcap_set_bit(stream, itr, (itr->tg->value >> tg_bitpos) & 0x1);
119 itr->offset++;
120 vcap_iter_update(itr);
121 }
122 vcap_set_bit(stream, itr, val);
123 }
124
vcap_encode_field(u32 * stream,struct vcap_stream_iter * itr,int width,const u8 * value)125 static void vcap_encode_field(u32 *stream, struct vcap_stream_iter *itr,
126 int width, const u8 *value)
127 {
128 int idx;
129
130 /* Loop over the field value bits and add the value bits one by one to
131 * the output stream.
132 */
133 for (idx = 0; idx < width; idx++) {
134 u8 bidx = idx & GENMASK(2, 0);
135
136 /* Encode one field value bit */
137 vcap_encode_bit(stream, itr, (value[idx / 8] >> bidx) & 0x1);
138 vcap_iter_next(itr);
139 }
140 }
141
vcap_encode_typegroups(u32 * stream,int sw_width,const struct vcap_typegroup * tg,bool mask)142 static void vcap_encode_typegroups(u32 *stream, int sw_width,
143 const struct vcap_typegroup *tg,
144 bool mask)
145 {
146 struct vcap_stream_iter iter;
147 int idx;
148
149 /* Mask bits must be set to zeros (inverted later when writing to the
150 * mask cache register), so that the mask typegroup bits consist of
151 * match-1 or match-0, or both
152 */
153 vcap_iter_set(&iter, sw_width, tg, 0);
154 while (iter.tg->width) {
155 /* Set position to current typegroup bit */
156 iter.offset = iter.tg->offset;
157 vcap_iter_update(&iter);
158 for (idx = 0; idx < iter.tg->width; idx++) {
159 /* Iterate over current typegroup bits. Mask typegroup
160 * bits are always set
161 */
162 if (mask)
163 vcap_set_bit(stream, &iter, 0x1);
164 else
165 vcap_set_bit(stream, &iter,
166 (iter.tg->value >> idx) & 0x1);
167 iter.offset++;
168 vcap_iter_update(&iter);
169 }
170 iter.tg++; /* next typegroup */
171 }
172 }
173
vcap_bitarray_zero(int width,u8 * value)174 static bool vcap_bitarray_zero(int width, u8 *value)
175 {
176 int bytes = DIV_ROUND_UP(width, BITS_PER_BYTE);
177 u8 total = 0, bmask = 0xff;
178 int rwidth = width;
179 int idx;
180
181 for (idx = 0; idx < bytes; ++idx, rwidth -= BITS_PER_BYTE) {
182 if (rwidth && rwidth < BITS_PER_BYTE)
183 bmask = (1 << rwidth) - 1;
184 total += value[idx] & bmask;
185 }
186 return total == 0;
187 }
188
vcap_get_bit(u32 * stream,struct vcap_stream_iter * itr)189 static bool vcap_get_bit(u32 *stream, struct vcap_stream_iter *itr)
190 {
191 u32 mask = BIT(itr->reg_bitpos);
192 u32 *p = &stream[itr->reg_idx];
193
194 return !!(*p & mask);
195 }
196
vcap_decode_field(u32 * stream,struct vcap_stream_iter * itr,int width,u8 * value)197 static void vcap_decode_field(u32 *stream, struct vcap_stream_iter *itr,
198 int width, u8 *value)
199 {
200 int idx;
201
202 /* Loop over the field value bits and get the field bits and
203 * set them in the output value byte array
204 */
205 for (idx = 0; idx < width; idx++) {
206 u8 bidx = idx & 0x7;
207
208 /* Decode one field value bit */
209 if (vcap_get_bit(stream, itr))
210 *value |= 1 << bidx;
211 vcap_iter_next(itr);
212 if (bidx == 7)
213 value++;
214 }
215 }
216
217 /* Verify that the type id in the stream matches the type id of the keyset */
vcap_verify_keystream_keyset(struct vcap_control * vctrl,enum vcap_type vt,u32 * keystream,u32 * mskstream,enum vcap_keyfield_set keyset)218 static bool vcap_verify_keystream_keyset(struct vcap_control *vctrl,
219 enum vcap_type vt,
220 u32 *keystream,
221 u32 *mskstream,
222 enum vcap_keyfield_set keyset)
223 {
224 const struct vcap_info *vcap = &vctrl->vcaps[vt];
225 const struct vcap_field *typefld;
226 const struct vcap_typegroup *tgt;
227 const struct vcap_field *fields;
228 struct vcap_stream_iter iter;
229 const struct vcap_set *info;
230 u32 value = 0;
231 u32 mask = 0;
232
233 if (vcap_keyfield_count(vctrl, vt, keyset) == 0)
234 return false;
235
236 info = vcap_keyfieldset(vctrl, vt, keyset);
237 /* Check that the keyset is valid */
238 if (!info)
239 return false;
240
241 /* a type_id of value -1 means that there is no type field */
242 if (info->type_id == (u8)-1)
243 return true;
244
245 /* Get a valid typegroup for the specific keyset */
246 tgt = vcap_keyfield_typegroup(vctrl, vt, keyset);
247 if (!tgt)
248 return false;
249
250 fields = vcap_keyfields(vctrl, vt, keyset);
251 if (!fields)
252 return false;
253
254 typefld = &fields[VCAP_KF_TYPE];
255 vcap_iter_init(&iter, vcap->sw_width, tgt, typefld->offset);
256 vcap_decode_field(mskstream, &iter, typefld->width, (u8 *)&mask);
257 /* no type info if there are no mask bits */
258 if (vcap_bitarray_zero(typefld->width, (u8 *)&mask))
259 return false;
260
261 /* Get the value of the type field in the stream and compare to the
262 * one define in the vcap keyset
263 */
264 vcap_iter_init(&iter, vcap->sw_width, tgt, typefld->offset);
265 vcap_decode_field(keystream, &iter, typefld->width, (u8 *)&value);
266
267 return (value & mask) == (info->type_id & mask);
268 }
269
270 /* Verify that the typegroup bits have the correct values */
vcap_verify_typegroups(u32 * stream,int sw_width,const struct vcap_typegroup * tgt,bool mask,int sw_max)271 static int vcap_verify_typegroups(u32 *stream, int sw_width,
272 const struct vcap_typegroup *tgt, bool mask,
273 int sw_max)
274 {
275 struct vcap_stream_iter iter;
276 int sw_cnt, idx;
277
278 vcap_iter_set(&iter, sw_width, tgt, 0);
279 sw_cnt = 0;
280 while (iter.tg->width) {
281 u32 value = 0;
282 u32 tg_value = iter.tg->value;
283
284 if (mask)
285 tg_value = (1 << iter.tg->width) - 1;
286 /* Set position to current typegroup bit */
287 iter.offset = iter.tg->offset;
288 vcap_iter_update(&iter);
289 for (idx = 0; idx < iter.tg->width; idx++) {
290 /* Decode one typegroup bit */
291 if (vcap_get_bit(stream, &iter))
292 value |= 1 << idx;
293 iter.offset++;
294 vcap_iter_update(&iter);
295 }
296 if (value != tg_value)
297 return -EINVAL;
298 iter.tg++; /* next typegroup */
299 sw_cnt++;
300 /* Stop checking more typegroups */
301 if (sw_max && sw_cnt >= sw_max)
302 break;
303 }
304 return 0;
305 }
306
307 /* Find the subword width of the key typegroup that matches the stream data */
vcap_find_keystream_typegroup_sw(struct vcap_control * vctrl,enum vcap_type vt,u32 * stream,bool mask,int sw_max)308 static int vcap_find_keystream_typegroup_sw(struct vcap_control *vctrl,
309 enum vcap_type vt, u32 *stream,
310 bool mask, int sw_max)
311 {
312 const struct vcap_typegroup **tgt;
313 int sw_idx, res;
314
315 tgt = vctrl->vcaps[vt].keyfield_set_typegroups;
316 /* Try the longest subword match first */
317 for (sw_idx = vctrl->vcaps[vt].sw_count; sw_idx >= 0; sw_idx--) {
318 if (!tgt[sw_idx])
319 continue;
320
321 res = vcap_verify_typegroups(stream, vctrl->vcaps[vt].sw_width,
322 tgt[sw_idx], mask, sw_max);
323 if (res == 0)
324 return sw_idx;
325 }
326 return -EINVAL;
327 }
328
329 /* Verify that the typegroup information, subword count, keyset and type id
330 * are in sync and correct, return the list of matching keysets
331 */
332 int
vcap_find_keystream_keysets(struct vcap_control * vctrl,enum vcap_type vt,u32 * keystream,u32 * mskstream,bool mask,int sw_max,struct vcap_keyset_list * kslist)333 vcap_find_keystream_keysets(struct vcap_control *vctrl,
334 enum vcap_type vt,
335 u32 *keystream,
336 u32 *mskstream,
337 bool mask, int sw_max,
338 struct vcap_keyset_list *kslist)
339 {
340 const struct vcap_set *keyfield_set;
341 int sw_count, idx;
342
343 sw_count = vcap_find_keystream_typegroup_sw(vctrl, vt, keystream, mask,
344 sw_max);
345 if (sw_count < 0)
346 return sw_count;
347
348 keyfield_set = vctrl->vcaps[vt].keyfield_set;
349 for (idx = 0; idx < vctrl->vcaps[vt].keyfield_set_size; ++idx) {
350 if (keyfield_set[idx].sw_per_item != sw_count)
351 continue;
352
353 if (vcap_verify_keystream_keyset(vctrl, vt, keystream,
354 mskstream, idx))
355 vcap_keyset_list_add(kslist, idx);
356 }
357 if (kslist->cnt > 0)
358 return 0;
359 return -EINVAL;
360 }
361 EXPORT_SYMBOL_GPL(vcap_find_keystream_keysets);
362
363 /* Read key data from a VCAP address and discover if there are any rule keysets
364 * here
365 */
vcap_addr_keysets(struct vcap_control * vctrl,struct net_device * ndev,struct vcap_admin * admin,int addr,struct vcap_keyset_list * kslist)366 int vcap_addr_keysets(struct vcap_control *vctrl,
367 struct net_device *ndev,
368 struct vcap_admin *admin,
369 int addr,
370 struct vcap_keyset_list *kslist)
371 {
372 enum vcap_type vt = admin->vtype;
373 int keyset_sw_regs, idx;
374 u32 key = 0, mask = 0;
375
376 /* Read the cache at the specified address */
377 keyset_sw_regs = DIV_ROUND_UP(vctrl->vcaps[vt].sw_width, 32);
378 vctrl->ops->update(ndev, admin, VCAP_CMD_READ, VCAP_SEL_ALL, addr);
379 vctrl->ops->cache_read(ndev, admin, VCAP_SEL_ENTRY, 0,
380 keyset_sw_regs);
381 /* Skip uninitialized key/mask entries */
382 for (idx = 0; idx < keyset_sw_regs; ++idx) {
383 key |= ~admin->cache.keystream[idx];
384 mask |= admin->cache.maskstream[idx];
385 }
386 if (key == 0 && mask == 0)
387 return -EINVAL;
388 /* Decode and locate the keysets */
389 return vcap_find_keystream_keysets(vctrl, vt, admin->cache.keystream,
390 admin->cache.maskstream, false, 0,
391 kslist);
392 }
393 EXPORT_SYMBOL_GPL(vcap_addr_keysets);
394
395 /* Return the list of keyfields for the keyset */
vcap_keyfields(struct vcap_control * vctrl,enum vcap_type vt,enum vcap_keyfield_set keyset)396 const struct vcap_field *vcap_keyfields(struct vcap_control *vctrl,
397 enum vcap_type vt,
398 enum vcap_keyfield_set keyset)
399 {
400 /* Check that the keyset exists in the vcap keyset list */
401 if (keyset >= vctrl->vcaps[vt].keyfield_set_size)
402 return NULL;
403 return vctrl->vcaps[vt].keyfield_set_map[keyset];
404 }
405
406 /* Return the keyset information for the keyset */
vcap_keyfieldset(struct vcap_control * vctrl,enum vcap_type vt,enum vcap_keyfield_set keyset)407 const struct vcap_set *vcap_keyfieldset(struct vcap_control *vctrl,
408 enum vcap_type vt,
409 enum vcap_keyfield_set keyset)
410 {
411 const struct vcap_set *kset;
412
413 /* Check that the keyset exists in the vcap keyset list */
414 if (keyset >= vctrl->vcaps[vt].keyfield_set_size)
415 return NULL;
416 kset = &vctrl->vcaps[vt].keyfield_set[keyset];
417 if (kset->sw_per_item == 0 || kset->sw_per_item > vctrl->vcaps[vt].sw_count)
418 return NULL;
419 return kset;
420 }
421 EXPORT_SYMBOL_GPL(vcap_keyfieldset);
422
423 /* Return the typegroup table for the matching keyset (using subword size) */
424 const struct vcap_typegroup *
vcap_keyfield_typegroup(struct vcap_control * vctrl,enum vcap_type vt,enum vcap_keyfield_set keyset)425 vcap_keyfield_typegroup(struct vcap_control *vctrl,
426 enum vcap_type vt, enum vcap_keyfield_set keyset)
427 {
428 const struct vcap_set *kset = vcap_keyfieldset(vctrl, vt, keyset);
429
430 /* Check that the keyset is valid */
431 if (!kset)
432 return NULL;
433 return vctrl->vcaps[vt].keyfield_set_typegroups[kset->sw_per_item];
434 }
435
436 /* Return the number of keyfields in the keyset */
vcap_keyfield_count(struct vcap_control * vctrl,enum vcap_type vt,enum vcap_keyfield_set keyset)437 int vcap_keyfield_count(struct vcap_control *vctrl,
438 enum vcap_type vt, enum vcap_keyfield_set keyset)
439 {
440 /* Check that the keyset exists in the vcap keyset list */
441 if (keyset >= vctrl->vcaps[vt].keyfield_set_size)
442 return 0;
443 return vctrl->vcaps[vt].keyfield_set_map_size[keyset];
444 }
445
vcap_encode_keyfield(struct vcap_rule_internal * ri,const struct vcap_client_keyfield * kf,const struct vcap_field * rf,const struct vcap_typegroup * tgt)446 static void vcap_encode_keyfield(struct vcap_rule_internal *ri,
447 const struct vcap_client_keyfield *kf,
448 const struct vcap_field *rf,
449 const struct vcap_typegroup *tgt)
450 {
451 int sw_width = ri->vctrl->vcaps[ri->admin->vtype].sw_width;
452 struct vcap_cache_data *cache = &ri->admin->cache;
453 struct vcap_stream_iter iter;
454 const u8 *value, *mask;
455
456 /* Encode the fields for the key and the mask in their respective
457 * streams, respecting the subword width.
458 */
459 switch (kf->ctrl.type) {
460 case VCAP_FIELD_BIT:
461 value = &kf->data.u1.value;
462 mask = &kf->data.u1.mask;
463 break;
464 case VCAP_FIELD_U32:
465 value = (const u8 *)&kf->data.u32.value;
466 mask = (const u8 *)&kf->data.u32.mask;
467 break;
468 case VCAP_FIELD_U48:
469 value = kf->data.u48.value;
470 mask = kf->data.u48.mask;
471 break;
472 case VCAP_FIELD_U56:
473 value = kf->data.u56.value;
474 mask = kf->data.u56.mask;
475 break;
476 case VCAP_FIELD_U64:
477 value = kf->data.u64.value;
478 mask = kf->data.u64.mask;
479 break;
480 case VCAP_FIELD_U72:
481 value = kf->data.u72.value;
482 mask = kf->data.u72.mask;
483 break;
484 case VCAP_FIELD_U112:
485 value = kf->data.u112.value;
486 mask = kf->data.u112.mask;
487 break;
488 case VCAP_FIELD_U128:
489 value = kf->data.u128.value;
490 mask = kf->data.u128.mask;
491 break;
492 }
493 vcap_iter_init(&iter, sw_width, tgt, rf->offset);
494 vcap_encode_field(cache->keystream, &iter, rf->width, value);
495 vcap_iter_init(&iter, sw_width, tgt, rf->offset);
496 vcap_encode_field(cache->maskstream, &iter, rf->width, mask);
497 }
498
vcap_encode_keyfield_typegroups(struct vcap_control * vctrl,struct vcap_rule_internal * ri,const struct vcap_typegroup * tgt)499 static void vcap_encode_keyfield_typegroups(struct vcap_control *vctrl,
500 struct vcap_rule_internal *ri,
501 const struct vcap_typegroup *tgt)
502 {
503 int sw_width = vctrl->vcaps[ri->admin->vtype].sw_width;
504 struct vcap_cache_data *cache = &ri->admin->cache;
505
506 /* Encode the typegroup bits for the key and the mask in their streams,
507 * respecting the subword width.
508 */
509 vcap_encode_typegroups(cache->keystream, sw_width, tgt, false);
510 vcap_encode_typegroups(cache->maskstream, sw_width, tgt, true);
511 }
512
513 /* Copy data from src to dst but reverse the data in chunks of 32bits.
514 * For example if src is 00:11:22:33:44:55 where 55 is LSB the dst will
515 * have the value 22:33:44:55:00:11.
516 */
vcap_copy_to_w32be(u8 * dst,const u8 * src,int size)517 static void vcap_copy_to_w32be(u8 *dst, const u8 *src, int size)
518 {
519 for (int idx = 0; idx < size; ++idx) {
520 int first_byte_index = 0;
521 int nidx;
522
523 first_byte_index = size - (((idx >> 2) + 1) << 2);
524 if (first_byte_index < 0)
525 first_byte_index = 0;
526 nidx = idx + first_byte_index - (idx & ~0x3);
527 dst[nidx] = src[idx];
528 }
529 }
530
531 static void
vcap_copy_from_client_keyfield(struct vcap_rule * rule,struct vcap_client_keyfield * dst,const struct vcap_client_keyfield * src)532 vcap_copy_from_client_keyfield(struct vcap_rule *rule,
533 struct vcap_client_keyfield *dst,
534 const struct vcap_client_keyfield *src)
535 {
536 struct vcap_rule_internal *ri = to_intrule(rule);
537 const struct vcap_client_keyfield_data *sdata;
538 struct vcap_client_keyfield_data *ddata;
539 int size;
540
541 dst->ctrl.type = src->ctrl.type;
542 dst->ctrl.key = src->ctrl.key;
543 INIT_LIST_HEAD(&dst->ctrl.list);
544 sdata = &src->data;
545 ddata = &dst->data;
546
547 if (!ri->admin->w32be) {
548 memcpy(ddata, sdata, sizeof(dst->data));
549 return;
550 }
551
552 size = keyfield_size_table[dst->ctrl.type] / 2;
553
554 switch (dst->ctrl.type) {
555 case VCAP_FIELD_BIT:
556 case VCAP_FIELD_U32:
557 memcpy(ddata, sdata, sizeof(dst->data));
558 break;
559 case VCAP_FIELD_U48:
560 vcap_copy_to_w32be(ddata->u48.value, src->data.u48.value, size);
561 vcap_copy_to_w32be(ddata->u48.mask, src->data.u48.mask, size);
562 break;
563 case VCAP_FIELD_U56:
564 vcap_copy_to_w32be(ddata->u56.value, sdata->u56.value, size);
565 vcap_copy_to_w32be(ddata->u56.mask, sdata->u56.mask, size);
566 break;
567 case VCAP_FIELD_U64:
568 vcap_copy_to_w32be(ddata->u64.value, sdata->u64.value, size);
569 vcap_copy_to_w32be(ddata->u64.mask, sdata->u64.mask, size);
570 break;
571 case VCAP_FIELD_U72:
572 vcap_copy_to_w32be(ddata->u72.value, sdata->u72.value, size);
573 vcap_copy_to_w32be(ddata->u72.mask, sdata->u72.mask, size);
574 break;
575 case VCAP_FIELD_U112:
576 vcap_copy_to_w32be(ddata->u112.value, sdata->u112.value, size);
577 vcap_copy_to_w32be(ddata->u112.mask, sdata->u112.mask, size);
578 break;
579 case VCAP_FIELD_U128:
580 vcap_copy_to_w32be(ddata->u128.value, sdata->u128.value, size);
581 vcap_copy_to_w32be(ddata->u128.mask, sdata->u128.mask, size);
582 break;
583 }
584 }
585
586 static void
vcap_copy_from_client_actionfield(struct vcap_rule * rule,struct vcap_client_actionfield * dst,const struct vcap_client_actionfield * src)587 vcap_copy_from_client_actionfield(struct vcap_rule *rule,
588 struct vcap_client_actionfield *dst,
589 const struct vcap_client_actionfield *src)
590 {
591 struct vcap_rule_internal *ri = to_intrule(rule);
592 const struct vcap_client_actionfield_data *sdata;
593 struct vcap_client_actionfield_data *ddata;
594 int size;
595
596 dst->ctrl.type = src->ctrl.type;
597 dst->ctrl.action = src->ctrl.action;
598 INIT_LIST_HEAD(&dst->ctrl.list);
599 sdata = &src->data;
600 ddata = &dst->data;
601
602 if (!ri->admin->w32be) {
603 memcpy(ddata, sdata, sizeof(dst->data));
604 return;
605 }
606
607 size = actionfield_size_table[dst->ctrl.type];
608
609 switch (dst->ctrl.type) {
610 case VCAP_FIELD_BIT:
611 case VCAP_FIELD_U32:
612 memcpy(ddata, sdata, sizeof(dst->data));
613 break;
614 case VCAP_FIELD_U48:
615 vcap_copy_to_w32be(ddata->u48.value, sdata->u48.value, size);
616 break;
617 case VCAP_FIELD_U56:
618 vcap_copy_to_w32be(ddata->u56.value, sdata->u56.value, size);
619 break;
620 case VCAP_FIELD_U64:
621 vcap_copy_to_w32be(ddata->u64.value, sdata->u64.value, size);
622 break;
623 case VCAP_FIELD_U72:
624 vcap_copy_to_w32be(ddata->u72.value, sdata->u72.value, size);
625 break;
626 case VCAP_FIELD_U112:
627 vcap_copy_to_w32be(ddata->u112.value, sdata->u112.value, size);
628 break;
629 case VCAP_FIELD_U128:
630 vcap_copy_to_w32be(ddata->u128.value, sdata->u128.value, size);
631 break;
632 }
633 }
634
vcap_encode_rule_keyset(struct vcap_rule_internal * ri)635 static int vcap_encode_rule_keyset(struct vcap_rule_internal *ri)
636 {
637 const struct vcap_client_keyfield *ckf;
638 const struct vcap_typegroup *tg_table;
639 struct vcap_client_keyfield tempkf;
640 const struct vcap_field *kf_table;
641 int keyset_size;
642
643 /* Get a valid set of fields for the specific keyset */
644 kf_table = vcap_keyfields(ri->vctrl, ri->admin->vtype, ri->data.keyset);
645 if (!kf_table) {
646 pr_err("%s:%d: no fields available for this keyset: %d\n",
647 __func__, __LINE__, ri->data.keyset);
648 return -EINVAL;
649 }
650 /* Get a valid typegroup for the specific keyset */
651 tg_table = vcap_keyfield_typegroup(ri->vctrl, ri->admin->vtype,
652 ri->data.keyset);
653 if (!tg_table) {
654 pr_err("%s:%d: no typegroups available for this keyset: %d\n",
655 __func__, __LINE__, ri->data.keyset);
656 return -EINVAL;
657 }
658 /* Get a valid size for the specific keyset */
659 keyset_size = vcap_keyfield_count(ri->vctrl, ri->admin->vtype,
660 ri->data.keyset);
661 if (keyset_size == 0) {
662 pr_err("%s:%d: zero field count for this keyset: %d\n",
663 __func__, __LINE__, ri->data.keyset);
664 return -EINVAL;
665 }
666 /* Iterate over the keyfields (key, mask) in the rule
667 * and encode these bits
668 */
669 if (list_empty(&ri->data.keyfields)) {
670 pr_err("%s:%d: no keyfields in the rule\n", __func__, __LINE__);
671 return -EINVAL;
672 }
673 list_for_each_entry(ckf, &ri->data.keyfields, ctrl.list) {
674 /* Check that the client entry exists in the keyset */
675 if (ckf->ctrl.key >= keyset_size) {
676 pr_err("%s:%d: key %d is not in vcap\n",
677 __func__, __LINE__, ckf->ctrl.key);
678 return -EINVAL;
679 }
680 vcap_copy_from_client_keyfield(&ri->data, &tempkf, ckf);
681 vcap_encode_keyfield(ri, &tempkf, &kf_table[ckf->ctrl.key],
682 tg_table);
683 }
684 /* Add typegroup bits to the key/mask bitstreams */
685 vcap_encode_keyfield_typegroups(ri->vctrl, ri, tg_table);
686 return 0;
687 }
688
689 /* Return the list of actionfields for the actionset */
690 const struct vcap_field *
vcap_actionfields(struct vcap_control * vctrl,enum vcap_type vt,enum vcap_actionfield_set actionset)691 vcap_actionfields(struct vcap_control *vctrl,
692 enum vcap_type vt, enum vcap_actionfield_set actionset)
693 {
694 /* Check that the actionset exists in the vcap actionset list */
695 if (actionset >= vctrl->vcaps[vt].actionfield_set_size)
696 return NULL;
697 return vctrl->vcaps[vt].actionfield_set_map[actionset];
698 }
699
700 const struct vcap_set *
vcap_actionfieldset(struct vcap_control * vctrl,enum vcap_type vt,enum vcap_actionfield_set actionset)701 vcap_actionfieldset(struct vcap_control *vctrl,
702 enum vcap_type vt, enum vcap_actionfield_set actionset)
703 {
704 const struct vcap_set *aset;
705
706 /* Check that the actionset exists in the vcap actionset list */
707 if (actionset >= vctrl->vcaps[vt].actionfield_set_size)
708 return NULL;
709 aset = &vctrl->vcaps[vt].actionfield_set[actionset];
710 if (aset->sw_per_item == 0 || aset->sw_per_item > vctrl->vcaps[vt].sw_count)
711 return NULL;
712 return aset;
713 }
714
715 /* Return the typegroup table for the matching actionset (using subword size) */
716 const struct vcap_typegroup *
vcap_actionfield_typegroup(struct vcap_control * vctrl,enum vcap_type vt,enum vcap_actionfield_set actionset)717 vcap_actionfield_typegroup(struct vcap_control *vctrl,
718 enum vcap_type vt, enum vcap_actionfield_set actionset)
719 {
720 const struct vcap_set *aset = vcap_actionfieldset(vctrl, vt, actionset);
721
722 /* Check that the actionset is valid */
723 if (!aset)
724 return NULL;
725 return vctrl->vcaps[vt].actionfield_set_typegroups[aset->sw_per_item];
726 }
727
728 /* Return the number of actionfields in the actionset */
vcap_actionfield_count(struct vcap_control * vctrl,enum vcap_type vt,enum vcap_actionfield_set actionset)729 int vcap_actionfield_count(struct vcap_control *vctrl,
730 enum vcap_type vt,
731 enum vcap_actionfield_set actionset)
732 {
733 /* Check that the actionset exists in the vcap actionset list */
734 if (actionset >= vctrl->vcaps[vt].actionfield_set_size)
735 return 0;
736 return vctrl->vcaps[vt].actionfield_set_map_size[actionset];
737 }
738
vcap_encode_actionfield(struct vcap_rule_internal * ri,const struct vcap_client_actionfield * af,const struct vcap_field * rf,const struct vcap_typegroup * tgt)739 static void vcap_encode_actionfield(struct vcap_rule_internal *ri,
740 const struct vcap_client_actionfield *af,
741 const struct vcap_field *rf,
742 const struct vcap_typegroup *tgt)
743 {
744 int act_width = ri->vctrl->vcaps[ri->admin->vtype].act_width;
745
746 struct vcap_cache_data *cache = &ri->admin->cache;
747 struct vcap_stream_iter iter;
748 const u8 *value;
749
750 /* Encode the action field in the stream, respecting the subword width */
751 switch (af->ctrl.type) {
752 case VCAP_FIELD_BIT:
753 value = &af->data.u1.value;
754 break;
755 case VCAP_FIELD_U32:
756 value = (const u8 *)&af->data.u32.value;
757 break;
758 case VCAP_FIELD_U48:
759 value = af->data.u48.value;
760 break;
761 case VCAP_FIELD_U56:
762 value = af->data.u56.value;
763 break;
764 case VCAP_FIELD_U64:
765 value = af->data.u64.value;
766 break;
767 case VCAP_FIELD_U72:
768 value = af->data.u72.value;
769 break;
770 case VCAP_FIELD_U112:
771 value = af->data.u112.value;
772 break;
773 case VCAP_FIELD_U128:
774 value = af->data.u128.value;
775 break;
776 }
777 vcap_iter_init(&iter, act_width, tgt, rf->offset);
778 vcap_encode_field(cache->actionstream, &iter, rf->width, value);
779 }
780
vcap_encode_actionfield_typegroups(struct vcap_rule_internal * ri,const struct vcap_typegroup * tgt)781 static void vcap_encode_actionfield_typegroups(struct vcap_rule_internal *ri,
782 const struct vcap_typegroup *tgt)
783 {
784 int sw_width = ri->vctrl->vcaps[ri->admin->vtype].act_width;
785 struct vcap_cache_data *cache = &ri->admin->cache;
786
787 /* Encode the typegroup bits for the actionstream respecting the subword
788 * width.
789 */
790 vcap_encode_typegroups(cache->actionstream, sw_width, tgt, false);
791 }
792
vcap_encode_rule_actionset(struct vcap_rule_internal * ri)793 static int vcap_encode_rule_actionset(struct vcap_rule_internal *ri)
794 {
795 const struct vcap_client_actionfield *caf;
796 const struct vcap_typegroup *tg_table;
797 struct vcap_client_actionfield tempaf;
798 const struct vcap_field *af_table;
799 int actionset_size;
800
801 /* Get a valid set of actionset fields for the specific actionset */
802 af_table = vcap_actionfields(ri->vctrl, ri->admin->vtype,
803 ri->data.actionset);
804 if (!af_table) {
805 pr_err("%s:%d: no fields available for this actionset: %d\n",
806 __func__, __LINE__, ri->data.actionset);
807 return -EINVAL;
808 }
809 /* Get a valid typegroup for the specific actionset */
810 tg_table = vcap_actionfield_typegroup(ri->vctrl, ri->admin->vtype,
811 ri->data.actionset);
812 if (!tg_table) {
813 pr_err("%s:%d: no typegroups available for this actionset: %d\n",
814 __func__, __LINE__, ri->data.actionset);
815 return -EINVAL;
816 }
817 /* Get a valid actionset size for the specific actionset */
818 actionset_size = vcap_actionfield_count(ri->vctrl, ri->admin->vtype,
819 ri->data.actionset);
820 if (actionset_size == 0) {
821 pr_err("%s:%d: zero field count for this actionset: %d\n",
822 __func__, __LINE__, ri->data.actionset);
823 return -EINVAL;
824 }
825 /* Iterate over the actionfields in the rule
826 * and encode these bits
827 */
828 if (list_empty(&ri->data.actionfields))
829 pr_warn("%s:%d: no actionfields in the rule\n",
830 __func__, __LINE__);
831 list_for_each_entry(caf, &ri->data.actionfields, ctrl.list) {
832 /* Check that the client action exists in the actionset */
833 if (caf->ctrl.action >= actionset_size) {
834 pr_err("%s:%d: action %d is not in vcap\n",
835 __func__, __LINE__, caf->ctrl.action);
836 return -EINVAL;
837 }
838 vcap_copy_from_client_actionfield(&ri->data, &tempaf, caf);
839 vcap_encode_actionfield(ri, &tempaf,
840 &af_table[caf->ctrl.action], tg_table);
841 }
842 /* Add typegroup bits to the entry bitstreams */
843 vcap_encode_actionfield_typegroups(ri, tg_table);
844 return 0;
845 }
846
vcap_encode_rule(struct vcap_rule_internal * ri)847 static int vcap_encode_rule(struct vcap_rule_internal *ri)
848 {
849 int err;
850
851 err = vcap_encode_rule_keyset(ri);
852 if (err)
853 return err;
854 err = vcap_encode_rule_actionset(ri);
855 if (err)
856 return err;
857 return 0;
858 }
859
vcap_api_check(struct vcap_control * ctrl)860 int vcap_api_check(struct vcap_control *ctrl)
861 {
862 if (!ctrl) {
863 pr_err("%s:%d: vcap control is missing\n", __func__, __LINE__);
864 return -EINVAL;
865 }
866 if (!ctrl->ops || !ctrl->ops->validate_keyset ||
867 !ctrl->ops->add_default_fields || !ctrl->ops->cache_erase ||
868 !ctrl->ops->cache_write || !ctrl->ops->cache_read ||
869 !ctrl->ops->init || !ctrl->ops->update || !ctrl->ops->move ||
870 !ctrl->ops->port_info) {
871 pr_err("%s:%d: client operations are missing\n",
872 __func__, __LINE__);
873 return -ENOENT;
874 }
875 return 0;
876 }
877
vcap_erase_cache(struct vcap_rule_internal * ri)878 void vcap_erase_cache(struct vcap_rule_internal *ri)
879 {
880 ri->vctrl->ops->cache_erase(ri->admin);
881 }
882
883 /* Update the keyset for the rule */
vcap_set_rule_set_keyset(struct vcap_rule * rule,enum vcap_keyfield_set keyset)884 int vcap_set_rule_set_keyset(struct vcap_rule *rule,
885 enum vcap_keyfield_set keyset)
886 {
887 struct vcap_rule_internal *ri = to_intrule(rule);
888 const struct vcap_set *kset;
889 int sw_width;
890
891 kset = vcap_keyfieldset(ri->vctrl, ri->admin->vtype, keyset);
892 /* Check that the keyset is valid */
893 if (!kset)
894 return -EINVAL;
895 ri->keyset_sw = kset->sw_per_item;
896 sw_width = ri->vctrl->vcaps[ri->admin->vtype].sw_width;
897 ri->keyset_sw_regs = DIV_ROUND_UP(sw_width, 32);
898 ri->data.keyset = keyset;
899 return 0;
900 }
901 EXPORT_SYMBOL_GPL(vcap_set_rule_set_keyset);
902
903 /* Update the actionset for the rule */
vcap_set_rule_set_actionset(struct vcap_rule * rule,enum vcap_actionfield_set actionset)904 int vcap_set_rule_set_actionset(struct vcap_rule *rule,
905 enum vcap_actionfield_set actionset)
906 {
907 struct vcap_rule_internal *ri = to_intrule(rule);
908 const struct vcap_set *aset;
909 int act_width;
910
911 aset = vcap_actionfieldset(ri->vctrl, ri->admin->vtype, actionset);
912 /* Check that the actionset is valid */
913 if (!aset)
914 return -EINVAL;
915 ri->actionset_sw = aset->sw_per_item;
916 act_width = ri->vctrl->vcaps[ri->admin->vtype].act_width;
917 ri->actionset_sw_regs = DIV_ROUND_UP(act_width, 32);
918 ri->data.actionset = actionset;
919 return 0;
920 }
921 EXPORT_SYMBOL_GPL(vcap_set_rule_set_actionset);
922
923 /* Check if a rule with this id exists */
vcap_rule_exists(struct vcap_control * vctrl,u32 id)924 static bool vcap_rule_exists(struct vcap_control *vctrl, u32 id)
925 {
926 struct vcap_rule_internal *ri;
927 struct vcap_admin *admin;
928
929 /* Look for the rule id in all vcaps */
930 list_for_each_entry(admin, &vctrl->list, list)
931 list_for_each_entry(ri, &admin->rules, list)
932 if (ri->data.id == id)
933 return true;
934 return false;
935 }
936
vcap_lock(struct vcap_admin * admin)937 void vcap_lock(struct vcap_admin *admin)
938 {
939 mutex_lock(&admin->vctrl->lock);
940 }
941
vcap_unlock(struct vcap_admin * admin)942 void vcap_unlock(struct vcap_admin *admin)
943 {
944 mutex_unlock(&admin->vctrl->lock);
945 }
946
947 /* Find a rule with a provided rule id return a locked vcap */
948 static struct vcap_rule_internal *
vcap_get_locked_rule(struct vcap_control * vctrl,u32 id)949 vcap_get_locked_rule(struct vcap_control *vctrl, u32 id)
950 {
951 struct vcap_rule_internal *ri;
952 struct vcap_admin *admin;
953
954 /* Look for the rule id in all vcaps */
955 list_for_each_entry(admin, &vctrl->list, list) {
956 vcap_lock(admin);
957 list_for_each_entry(ri, &admin->rules, list)
958 if (ri->data.id == id)
959 return ri;
960 vcap_unlock(admin);
961 }
962 return NULL;
963 }
964
965 /* Find a rule id with a provided cookie */
vcap_lookup_rule_by_cookie(struct vcap_control * vctrl,u64 cookie)966 int vcap_lookup_rule_by_cookie(struct vcap_control *vctrl, u64 cookie)
967 {
968 struct vcap_rule_internal *ri;
969 struct vcap_admin *admin;
970 int id = 0;
971
972 /* Look for the rule id in all vcaps */
973 list_for_each_entry(admin, &vctrl->list, list) {
974 vcap_lock(admin);
975 list_for_each_entry(ri, &admin->rules, list) {
976 if (ri->data.cookie == cookie) {
977 id = ri->data.id;
978 break;
979 }
980 }
981 vcap_unlock(admin);
982 if (id)
983 return id;
984 }
985 return -ENOENT;
986 }
987 EXPORT_SYMBOL_GPL(vcap_lookup_rule_by_cookie);
988
989 /* Get number of rules in a vcap instance lookup chain id range */
vcap_admin_rule_count(struct vcap_admin * admin,int cid)990 int vcap_admin_rule_count(struct vcap_admin *admin, int cid)
991 {
992 int max_cid = roundup(cid + 1, VCAP_CID_LOOKUP_SIZE);
993 int min_cid = rounddown(cid, VCAP_CID_LOOKUP_SIZE);
994 struct vcap_rule_internal *elem;
995 int count = 0;
996
997 list_for_each_entry(elem, &admin->rules, list) {
998 vcap_lock(admin);
999 if (elem->data.vcap_chain_id >= min_cid &&
1000 elem->data.vcap_chain_id < max_cid)
1001 ++count;
1002 vcap_unlock(admin);
1003 }
1004 return count;
1005 }
1006 EXPORT_SYMBOL_GPL(vcap_admin_rule_count);
1007
1008 /* Make a copy of the rule, shallow or full */
vcap_dup_rule(struct vcap_rule_internal * ri,bool full)1009 static struct vcap_rule_internal *vcap_dup_rule(struct vcap_rule_internal *ri,
1010 bool full)
1011 {
1012 struct vcap_client_actionfield *caf, *newcaf;
1013 struct vcap_client_keyfield *ckf, *newckf;
1014 struct vcap_rule_internal *duprule;
1015
1016 /* Allocate the client part */
1017 duprule = kzalloc_obj(*duprule);
1018 if (!duprule)
1019 return ERR_PTR(-ENOMEM);
1020 *duprule = *ri;
1021 /* Not inserted in the VCAP */
1022 INIT_LIST_HEAD(&duprule->list);
1023 /* No elements in these lists */
1024 INIT_LIST_HEAD(&duprule->data.keyfields);
1025 INIT_LIST_HEAD(&duprule->data.actionfields);
1026
1027 /* A full rule copy includes keys and actions */
1028 if (!full)
1029 return duprule;
1030
1031 list_for_each_entry(ckf, &ri->data.keyfields, ctrl.list) {
1032 newckf = kmemdup(ckf, sizeof(*newckf), GFP_KERNEL);
1033 if (!newckf)
1034 goto err;
1035 list_add_tail(&newckf->ctrl.list, &duprule->data.keyfields);
1036 }
1037
1038 list_for_each_entry(caf, &ri->data.actionfields, ctrl.list) {
1039 newcaf = kmemdup(caf, sizeof(*newcaf), GFP_KERNEL);
1040 if (!newcaf)
1041 goto err;
1042 list_add_tail(&newcaf->ctrl.list, &duprule->data.actionfields);
1043 }
1044
1045 return duprule;
1046
1047 err:
1048 list_for_each_entry_safe(ckf, newckf, &duprule->data.keyfields, ctrl.list) {
1049 list_del(&ckf->ctrl.list);
1050 kfree(ckf);
1051 }
1052
1053 list_for_each_entry_safe(caf, newcaf, &duprule->data.actionfields, ctrl.list) {
1054 list_del(&caf->ctrl.list);
1055 kfree(caf);
1056 }
1057
1058 kfree(duprule);
1059 return ERR_PTR(-ENOMEM);
1060 }
1061
vcap_apply_width(u8 * dst,int width,int bytes)1062 static void vcap_apply_width(u8 *dst, int width, int bytes)
1063 {
1064 u8 bmask;
1065 int idx;
1066
1067 for (idx = 0; idx < bytes; idx++) {
1068 if (width > 0)
1069 if (width < 8)
1070 bmask = (1 << width) - 1;
1071 else
1072 bmask = ~0;
1073 else
1074 bmask = 0;
1075 dst[idx] &= bmask;
1076 width -= 8;
1077 }
1078 }
1079
vcap_copy_from_w32be(u8 * dst,u8 * src,int size,int width)1080 static void vcap_copy_from_w32be(u8 *dst, u8 *src, int size, int width)
1081 {
1082 int idx, ridx, wstart, nidx;
1083 int tail_bytes = (((size + 4) >> 2) << 2) - size;
1084
1085 for (idx = 0, ridx = size - 1; idx < size; ++idx, --ridx) {
1086 wstart = (idx >> 2) << 2;
1087 nidx = wstart + 3 - (idx & 0x3);
1088 if (nidx >= size)
1089 nidx -= tail_bytes;
1090 dst[nidx] = src[ridx];
1091 }
1092
1093 vcap_apply_width(dst, width, size);
1094 }
1095
vcap_copy_action_bit_field(struct vcap_u1_action * field,u8 * value)1096 static void vcap_copy_action_bit_field(struct vcap_u1_action *field, u8 *value)
1097 {
1098 field->value = (*value) & 0x1;
1099 }
1100
vcap_copy_limited_actionfield(u8 * dstvalue,u8 * srcvalue,int width,int bytes)1101 static void vcap_copy_limited_actionfield(u8 *dstvalue, u8 *srcvalue,
1102 int width, int bytes)
1103 {
1104 memcpy(dstvalue, srcvalue, bytes);
1105 vcap_apply_width(dstvalue, width, bytes);
1106 }
1107
vcap_copy_to_client_actionfield(struct vcap_rule_internal * ri,struct vcap_client_actionfield * field,u8 * value,u16 width)1108 static void vcap_copy_to_client_actionfield(struct vcap_rule_internal *ri,
1109 struct vcap_client_actionfield *field,
1110 u8 *value, u16 width)
1111 {
1112 int field_size = actionfield_size_table[field->ctrl.type];
1113
1114 if (ri->admin->w32be) {
1115 switch (field->ctrl.type) {
1116 case VCAP_FIELD_BIT:
1117 vcap_copy_action_bit_field(&field->data.u1, value);
1118 break;
1119 case VCAP_FIELD_U32:
1120 vcap_copy_limited_actionfield((u8 *)&field->data.u32.value,
1121 value,
1122 width, field_size);
1123 break;
1124 case VCAP_FIELD_U48:
1125 vcap_copy_from_w32be(field->data.u48.value, value,
1126 field_size, width);
1127 break;
1128 case VCAP_FIELD_U56:
1129 vcap_copy_from_w32be(field->data.u56.value, value,
1130 field_size, width);
1131 break;
1132 case VCAP_FIELD_U64:
1133 vcap_copy_from_w32be(field->data.u64.value, value,
1134 field_size, width);
1135 break;
1136 case VCAP_FIELD_U72:
1137 vcap_copy_from_w32be(field->data.u72.value, value,
1138 field_size, width);
1139 break;
1140 case VCAP_FIELD_U112:
1141 vcap_copy_from_w32be(field->data.u112.value, value,
1142 field_size, width);
1143 break;
1144 case VCAP_FIELD_U128:
1145 vcap_copy_from_w32be(field->data.u128.value, value,
1146 field_size, width);
1147 break;
1148 }
1149 } else {
1150 switch (field->ctrl.type) {
1151 case VCAP_FIELD_BIT:
1152 vcap_copy_action_bit_field(&field->data.u1, value);
1153 break;
1154 case VCAP_FIELD_U32:
1155 vcap_copy_limited_actionfield((u8 *)&field->data.u32.value,
1156 value,
1157 width, field_size);
1158 break;
1159 case VCAP_FIELD_U48:
1160 vcap_copy_limited_actionfield(field->data.u48.value,
1161 value,
1162 width, field_size);
1163 break;
1164 case VCAP_FIELD_U56:
1165 vcap_copy_limited_actionfield(field->data.u56.value,
1166 value,
1167 width, field_size);
1168 break;
1169 case VCAP_FIELD_U64:
1170 vcap_copy_limited_actionfield(field->data.u64.value,
1171 value,
1172 width, field_size);
1173 break;
1174 case VCAP_FIELD_U72:
1175 vcap_copy_limited_actionfield(field->data.u72.value,
1176 value,
1177 width, field_size);
1178 break;
1179 case VCAP_FIELD_U112:
1180 vcap_copy_limited_actionfield(field->data.u112.value,
1181 value,
1182 width, field_size);
1183 break;
1184 case VCAP_FIELD_U128:
1185 vcap_copy_limited_actionfield(field->data.u128.value,
1186 value,
1187 width, field_size);
1188 break;
1189 }
1190 }
1191 }
1192
vcap_copy_key_bit_field(struct vcap_u1_key * field,u8 * value,u8 * mask)1193 static void vcap_copy_key_bit_field(struct vcap_u1_key *field,
1194 u8 *value, u8 *mask)
1195 {
1196 field->value = (*value) & 0x1;
1197 field->mask = (*mask) & 0x1;
1198 }
1199
vcap_copy_limited_keyfield(u8 * dstvalue,u8 * dstmask,u8 * srcvalue,u8 * srcmask,int width,int bytes)1200 static void vcap_copy_limited_keyfield(u8 *dstvalue, u8 *dstmask,
1201 u8 *srcvalue, u8 *srcmask,
1202 int width, int bytes)
1203 {
1204 memcpy(dstvalue, srcvalue, bytes);
1205 vcap_apply_width(dstvalue, width, bytes);
1206 memcpy(dstmask, srcmask, bytes);
1207 vcap_apply_width(dstmask, width, bytes);
1208 }
1209
vcap_copy_to_client_keyfield(struct vcap_rule_internal * ri,struct vcap_client_keyfield * field,u8 * value,u8 * mask,u16 width)1210 static void vcap_copy_to_client_keyfield(struct vcap_rule_internal *ri,
1211 struct vcap_client_keyfield *field,
1212 u8 *value, u8 *mask, u16 width)
1213 {
1214 int field_size = keyfield_size_table[field->ctrl.type] / 2;
1215
1216 if (ri->admin->w32be) {
1217 switch (field->ctrl.type) {
1218 case VCAP_FIELD_BIT:
1219 vcap_copy_key_bit_field(&field->data.u1, value, mask);
1220 break;
1221 case VCAP_FIELD_U32:
1222 vcap_copy_limited_keyfield((u8 *)&field->data.u32.value,
1223 (u8 *)&field->data.u32.mask,
1224 value, mask,
1225 width, field_size);
1226 break;
1227 case VCAP_FIELD_U48:
1228 vcap_copy_from_w32be(field->data.u48.value, value,
1229 field_size, width);
1230 vcap_copy_from_w32be(field->data.u48.mask, mask,
1231 field_size, width);
1232 break;
1233 case VCAP_FIELD_U56:
1234 vcap_copy_from_w32be(field->data.u56.value, value,
1235 field_size, width);
1236 vcap_copy_from_w32be(field->data.u56.mask, mask,
1237 field_size, width);
1238 break;
1239 case VCAP_FIELD_U64:
1240 vcap_copy_from_w32be(field->data.u64.value, value,
1241 field_size, width);
1242 vcap_copy_from_w32be(field->data.u64.mask, mask,
1243 field_size, width);
1244 break;
1245 case VCAP_FIELD_U72:
1246 vcap_copy_from_w32be(field->data.u72.value, value,
1247 field_size, width);
1248 vcap_copy_from_w32be(field->data.u72.mask, mask,
1249 field_size, width);
1250 break;
1251 case VCAP_FIELD_U112:
1252 vcap_copy_from_w32be(field->data.u112.value, value,
1253 field_size, width);
1254 vcap_copy_from_w32be(field->data.u112.mask, mask,
1255 field_size, width);
1256 break;
1257 case VCAP_FIELD_U128:
1258 vcap_copy_from_w32be(field->data.u128.value, value,
1259 field_size, width);
1260 vcap_copy_from_w32be(field->data.u128.mask, mask,
1261 field_size, width);
1262 break;
1263 }
1264 } else {
1265 switch (field->ctrl.type) {
1266 case VCAP_FIELD_BIT:
1267 vcap_copy_key_bit_field(&field->data.u1, value, mask);
1268 break;
1269 case VCAP_FIELD_U32:
1270 vcap_copy_limited_keyfield((u8 *)&field->data.u32.value,
1271 (u8 *)&field->data.u32.mask,
1272 value, mask,
1273 width, field_size);
1274 break;
1275 case VCAP_FIELD_U48:
1276 vcap_copy_limited_keyfield(field->data.u48.value,
1277 field->data.u48.mask,
1278 value, mask,
1279 width, field_size);
1280 break;
1281 case VCAP_FIELD_U56:
1282 vcap_copy_limited_keyfield(field->data.u56.value,
1283 field->data.u56.mask,
1284 value, mask,
1285 width, field_size);
1286 break;
1287 case VCAP_FIELD_U64:
1288 vcap_copy_limited_keyfield(field->data.u64.value,
1289 field->data.u64.mask,
1290 value, mask,
1291 width, field_size);
1292 break;
1293 case VCAP_FIELD_U72:
1294 vcap_copy_limited_keyfield(field->data.u72.value,
1295 field->data.u72.mask,
1296 value, mask,
1297 width, field_size);
1298 break;
1299 case VCAP_FIELD_U112:
1300 vcap_copy_limited_keyfield(field->data.u112.value,
1301 field->data.u112.mask,
1302 value, mask,
1303 width, field_size);
1304 break;
1305 case VCAP_FIELD_U128:
1306 vcap_copy_limited_keyfield(field->data.u128.value,
1307 field->data.u128.mask,
1308 value, mask,
1309 width, field_size);
1310 break;
1311 }
1312 }
1313 }
1314
vcap_rule_alloc_keyfield(struct vcap_rule_internal * ri,const struct vcap_field * keyfield,enum vcap_key_field key,u8 * value,u8 * mask)1315 static void vcap_rule_alloc_keyfield(struct vcap_rule_internal *ri,
1316 const struct vcap_field *keyfield,
1317 enum vcap_key_field key,
1318 u8 *value, u8 *mask)
1319 {
1320 struct vcap_client_keyfield *field;
1321
1322 field = kzalloc_obj(*field);
1323 if (!field)
1324 return;
1325 INIT_LIST_HEAD(&field->ctrl.list);
1326 field->ctrl.key = key;
1327 field->ctrl.type = keyfield->type;
1328 vcap_copy_to_client_keyfield(ri, field, value, mask, keyfield->width);
1329 list_add_tail(&field->ctrl.list, &ri->data.keyfields);
1330 }
1331
1332 /* Read key data from a VCAP address and discover if there is a rule keyset
1333 * here
1334 */
1335 static bool
vcap_verify_actionstream_actionset(struct vcap_control * vctrl,enum vcap_type vt,u32 * actionstream,enum vcap_actionfield_set actionset)1336 vcap_verify_actionstream_actionset(struct vcap_control *vctrl,
1337 enum vcap_type vt,
1338 u32 *actionstream,
1339 enum vcap_actionfield_set actionset)
1340 {
1341 const struct vcap_typegroup *tgt;
1342 const struct vcap_field *fields;
1343 const struct vcap_set *info;
1344
1345 if (vcap_actionfield_count(vctrl, vt, actionset) == 0)
1346 return false;
1347
1348 info = vcap_actionfieldset(vctrl, vt, actionset);
1349 /* Check that the actionset is valid */
1350 if (!info)
1351 return false;
1352
1353 /* a type_id of value -1 means that there is no type field */
1354 if (info->type_id == (u8)-1)
1355 return true;
1356
1357 /* Get a valid typegroup for the specific actionset */
1358 tgt = vcap_actionfield_typegroup(vctrl, vt, actionset);
1359 if (!tgt)
1360 return false;
1361
1362 fields = vcap_actionfields(vctrl, vt, actionset);
1363 if (!fields)
1364 return false;
1365
1366 /* Later this will be expanded with a check of the type id */
1367 return true;
1368 }
1369
1370 /* Find the subword width of the action typegroup that matches the stream data
1371 */
vcap_find_actionstream_typegroup_sw(struct vcap_control * vctrl,enum vcap_type vt,u32 * stream,int sw_max)1372 static int vcap_find_actionstream_typegroup_sw(struct vcap_control *vctrl,
1373 enum vcap_type vt, u32 *stream,
1374 int sw_max)
1375 {
1376 const struct vcap_typegroup **tgt;
1377 int sw_idx, res;
1378
1379 tgt = vctrl->vcaps[vt].actionfield_set_typegroups;
1380 /* Try the longest subword match first */
1381 for (sw_idx = vctrl->vcaps[vt].sw_count; sw_idx >= 0; sw_idx--) {
1382 if (!tgt[sw_idx])
1383 continue;
1384 res = vcap_verify_typegroups(stream, vctrl->vcaps[vt].act_width,
1385 tgt[sw_idx], false, sw_max);
1386 if (res == 0)
1387 return sw_idx;
1388 }
1389 return -EINVAL;
1390 }
1391
1392 /* Verify that the typegroup information, subword count, actionset and type id
1393 * are in sync and correct, return the actionset
1394 */
1395 static enum vcap_actionfield_set
vcap_find_actionstream_actionset(struct vcap_control * vctrl,enum vcap_type vt,u32 * stream,int sw_max)1396 vcap_find_actionstream_actionset(struct vcap_control *vctrl,
1397 enum vcap_type vt,
1398 u32 *stream,
1399 int sw_max)
1400 {
1401 const struct vcap_set *actionfield_set;
1402 int sw_count, idx;
1403 bool res;
1404
1405 sw_count = vcap_find_actionstream_typegroup_sw(vctrl, vt, stream,
1406 sw_max);
1407 if (sw_count < 0)
1408 return sw_count;
1409
1410 actionfield_set = vctrl->vcaps[vt].actionfield_set;
1411 for (idx = 0; idx < vctrl->vcaps[vt].actionfield_set_size; ++idx) {
1412 if (actionfield_set[idx].sw_per_item != sw_count)
1413 continue;
1414
1415 res = vcap_verify_actionstream_actionset(vctrl, vt,
1416 stream, idx);
1417 if (res)
1418 return idx;
1419 }
1420 return -EINVAL;
1421 }
1422
1423 /* Store action value in an element in a list for the client */
vcap_rule_alloc_actionfield(struct vcap_rule_internal * ri,const struct vcap_field * actionfield,enum vcap_action_field action,u8 * value)1424 static void vcap_rule_alloc_actionfield(struct vcap_rule_internal *ri,
1425 const struct vcap_field *actionfield,
1426 enum vcap_action_field action,
1427 u8 *value)
1428 {
1429 struct vcap_client_actionfield *field;
1430
1431 field = kzalloc_obj(*field);
1432 if (!field)
1433 return;
1434 INIT_LIST_HEAD(&field->ctrl.list);
1435 field->ctrl.action = action;
1436 field->ctrl.type = actionfield->type;
1437 vcap_copy_to_client_actionfield(ri, field, value, actionfield->width);
1438 list_add_tail(&field->ctrl.list, &ri->data.actionfields);
1439 }
1440
vcap_decode_actionset(struct vcap_rule_internal * ri)1441 static int vcap_decode_actionset(struct vcap_rule_internal *ri)
1442 {
1443 struct vcap_control *vctrl = ri->vctrl;
1444 struct vcap_admin *admin = ri->admin;
1445 const struct vcap_field *actionfield;
1446 enum vcap_actionfield_set actionset;
1447 enum vcap_type vt = admin->vtype;
1448 const struct vcap_typegroup *tgt;
1449 struct vcap_stream_iter iter;
1450 int idx, res, actfield_count;
1451 u32 *actstream;
1452 u8 value[16];
1453
1454 actstream = admin->cache.actionstream;
1455 res = vcap_find_actionstream_actionset(vctrl, vt, actstream, 0);
1456 if (res < 0) {
1457 pr_err("%s:%d: could not find valid actionset: %d\n",
1458 __func__, __LINE__, res);
1459 return -EINVAL;
1460 }
1461 actionset = res;
1462 actfield_count = vcap_actionfield_count(vctrl, vt, actionset);
1463 actionfield = vcap_actionfields(vctrl, vt, actionset);
1464 tgt = vcap_actionfield_typegroup(vctrl, vt, actionset);
1465 /* Start decoding the stream */
1466 for (idx = 0; idx < actfield_count; ++idx) {
1467 if (actionfield[idx].width <= 0)
1468 continue;
1469 /* Get the action */
1470 memset(value, 0, DIV_ROUND_UP(actionfield[idx].width, 8));
1471 vcap_iter_init(&iter, vctrl->vcaps[vt].act_width, tgt,
1472 actionfield[idx].offset);
1473 vcap_decode_field(actstream, &iter, actionfield[idx].width,
1474 value);
1475 /* Skip if no bits are set */
1476 if (vcap_bitarray_zero(actionfield[idx].width, value))
1477 continue;
1478 vcap_rule_alloc_actionfield(ri, &actionfield[idx], idx, value);
1479 /* Later the action id will also be checked */
1480 }
1481 return vcap_set_rule_set_actionset((struct vcap_rule *)ri, actionset);
1482 }
1483
vcap_decode_keyset(struct vcap_rule_internal * ri)1484 static int vcap_decode_keyset(struct vcap_rule_internal *ri)
1485 {
1486 struct vcap_control *vctrl = ri->vctrl;
1487 struct vcap_stream_iter kiter, miter;
1488 struct vcap_admin *admin = ri->admin;
1489 enum vcap_keyfield_set keysets[10];
1490 const struct vcap_field *keyfield;
1491 enum vcap_type vt = admin->vtype;
1492 const struct vcap_typegroup *tgt;
1493 struct vcap_keyset_list matches;
1494 enum vcap_keyfield_set keyset;
1495 int idx, res, keyfield_count;
1496 u32 *maskstream;
1497 u32 *keystream;
1498 u8 value[16];
1499 u8 mask[16];
1500
1501 keystream = admin->cache.keystream;
1502 maskstream = admin->cache.maskstream;
1503 matches.keysets = keysets;
1504 matches.cnt = 0;
1505 matches.max = ARRAY_SIZE(keysets);
1506 res = vcap_find_keystream_keysets(vctrl, vt, keystream, maskstream,
1507 false, 0, &matches);
1508 if (res < 0) {
1509 pr_err("%s:%d: could not find valid keysets: %d\n",
1510 __func__, __LINE__, res);
1511 return -EINVAL;
1512 }
1513 keyset = matches.keysets[0];
1514 keyfield_count = vcap_keyfield_count(vctrl, vt, keyset);
1515 keyfield = vcap_keyfields(vctrl, vt, keyset);
1516 tgt = vcap_keyfield_typegroup(vctrl, vt, keyset);
1517 /* Start decoding the streams */
1518 for (idx = 0; idx < keyfield_count; ++idx) {
1519 if (keyfield[idx].width <= 0)
1520 continue;
1521 /* First get the mask */
1522 memset(mask, 0, DIV_ROUND_UP(keyfield[idx].width, 8));
1523 vcap_iter_init(&miter, vctrl->vcaps[vt].sw_width, tgt,
1524 keyfield[idx].offset);
1525 vcap_decode_field(maskstream, &miter, keyfield[idx].width,
1526 mask);
1527 /* Skip if no mask bits are set */
1528 if (vcap_bitarray_zero(keyfield[idx].width, mask))
1529 continue;
1530 /* Get the key */
1531 memset(value, 0, DIV_ROUND_UP(keyfield[idx].width, 8));
1532 vcap_iter_init(&kiter, vctrl->vcaps[vt].sw_width, tgt,
1533 keyfield[idx].offset);
1534 vcap_decode_field(keystream, &kiter, keyfield[idx].width,
1535 value);
1536 vcap_rule_alloc_keyfield(ri, &keyfield[idx], idx, value, mask);
1537 }
1538 return vcap_set_rule_set_keyset((struct vcap_rule *)ri, keyset);
1539 }
1540
1541 /* Read VCAP content into the VCAP cache */
vcap_read_rule(struct vcap_rule_internal * ri)1542 static int vcap_read_rule(struct vcap_rule_internal *ri)
1543 {
1544 struct vcap_admin *admin = ri->admin;
1545 int sw_idx, ent_idx = 0, act_idx = 0;
1546 u32 addr = ri->addr;
1547
1548 if (!ri->size || !ri->keyset_sw_regs || !ri->actionset_sw_regs) {
1549 pr_err("%s:%d: rule is empty\n", __func__, __LINE__);
1550 return -EINVAL;
1551 }
1552 vcap_erase_cache(ri);
1553 /* Use the values in the streams to read the VCAP cache */
1554 for (sw_idx = 0; sw_idx < ri->size; sw_idx++, addr++) {
1555 ri->vctrl->ops->update(ri->ndev, admin, VCAP_CMD_READ,
1556 VCAP_SEL_ALL, addr);
1557 ri->vctrl->ops->cache_read(ri->ndev, admin,
1558 VCAP_SEL_ENTRY, ent_idx,
1559 ri->keyset_sw_regs);
1560 ri->vctrl->ops->cache_read(ri->ndev, admin,
1561 VCAP_SEL_ACTION, act_idx,
1562 ri->actionset_sw_regs);
1563 if (sw_idx == 0)
1564 ri->vctrl->ops->cache_read(ri->ndev, admin,
1565 VCAP_SEL_COUNTER,
1566 ri->counter_id, 0);
1567 ent_idx += ri->keyset_sw_regs;
1568 act_idx += ri->actionset_sw_regs;
1569 }
1570 return 0;
1571 }
1572
1573 /* Write VCAP cache content to the VCAP HW instance */
vcap_write_rule(struct vcap_rule_internal * ri)1574 static int vcap_write_rule(struct vcap_rule_internal *ri)
1575 {
1576 struct vcap_admin *admin = ri->admin;
1577 int sw_idx, ent_idx = 0, act_idx = 0;
1578 u32 addr = ri->addr;
1579
1580 if (!ri->size || !ri->keyset_sw_regs || !ri->actionset_sw_regs) {
1581 pr_err("%s:%d: rule is empty\n", __func__, __LINE__);
1582 return -EINVAL;
1583 }
1584 /* Use the values in the streams to write the VCAP cache */
1585 for (sw_idx = 0; sw_idx < ri->size; sw_idx++, addr++) {
1586 ri->vctrl->ops->cache_write(ri->ndev, admin,
1587 VCAP_SEL_ENTRY, ent_idx,
1588 ri->keyset_sw_regs);
1589 ri->vctrl->ops->cache_write(ri->ndev, admin,
1590 VCAP_SEL_ACTION, act_idx,
1591 ri->actionset_sw_regs);
1592 ri->vctrl->ops->update(ri->ndev, admin, VCAP_CMD_WRITE,
1593 VCAP_SEL_ALL, addr);
1594 ent_idx += ri->keyset_sw_regs;
1595 act_idx += ri->actionset_sw_regs;
1596 }
1597 return 0;
1598 }
1599
vcap_write_counter(struct vcap_rule_internal * ri,struct vcap_counter * ctr)1600 static int vcap_write_counter(struct vcap_rule_internal *ri,
1601 struct vcap_counter *ctr)
1602 {
1603 struct vcap_admin *admin = ri->admin;
1604
1605 admin->cache.counter = ctr->value;
1606 admin->cache.sticky = ctr->sticky;
1607 ri->vctrl->ops->cache_write(ri->ndev, admin, VCAP_SEL_COUNTER,
1608 ri->counter_id, 0);
1609 ri->vctrl->ops->update(ri->ndev, admin, VCAP_CMD_WRITE,
1610 VCAP_SEL_COUNTER, ri->addr);
1611 return 0;
1612 }
1613
1614 /* Convert a chain id to a VCAP lookup index */
vcap_chain_id_to_lookup(struct vcap_admin * admin,int cur_cid)1615 int vcap_chain_id_to_lookup(struct vcap_admin *admin, int cur_cid)
1616 {
1617 int lookup_first = admin->vinst * admin->lookups_per_instance;
1618 int lookup_last = lookup_first + admin->lookups_per_instance;
1619 int cid_next = admin->first_cid + VCAP_CID_LOOKUP_SIZE;
1620 int cid = admin->first_cid;
1621 int lookup;
1622
1623 for (lookup = lookup_first; lookup < lookup_last; ++lookup,
1624 cid += VCAP_CID_LOOKUP_SIZE, cid_next += VCAP_CID_LOOKUP_SIZE)
1625 if (cur_cid >= cid && cur_cid < cid_next)
1626 return lookup;
1627 return 0;
1628 }
1629 EXPORT_SYMBOL_GPL(vcap_chain_id_to_lookup);
1630
1631 /* Lookup a vcap instance using chain id */
vcap_find_admin(struct vcap_control * vctrl,int cid)1632 struct vcap_admin *vcap_find_admin(struct vcap_control *vctrl, int cid)
1633 {
1634 struct vcap_admin *admin;
1635
1636 if (vcap_api_check(vctrl))
1637 return NULL;
1638
1639 list_for_each_entry(admin, &vctrl->list, list) {
1640 if (cid >= admin->first_cid && cid <= admin->last_cid)
1641 return admin;
1642 }
1643 return NULL;
1644 }
1645 EXPORT_SYMBOL_GPL(vcap_find_admin);
1646
1647 /* Is this the last admin instance ordered by chain id and direction */
vcap_admin_is_last(struct vcap_control * vctrl,struct vcap_admin * admin,bool ingress)1648 static bool vcap_admin_is_last(struct vcap_control *vctrl,
1649 struct vcap_admin *admin,
1650 bool ingress)
1651 {
1652 struct vcap_admin *iter, *last = NULL;
1653 int max_cid = 0;
1654
1655 list_for_each_entry(iter, &vctrl->list, list) {
1656 if (iter->first_cid > max_cid &&
1657 iter->ingress == ingress) {
1658 last = iter;
1659 max_cid = iter->first_cid;
1660 }
1661 }
1662 if (!last)
1663 return false;
1664
1665 return admin == last;
1666 }
1667
1668 /* Calculate the value used for chaining VCAP rules */
vcap_chain_offset(struct vcap_control * vctrl,int from_cid,int to_cid)1669 int vcap_chain_offset(struct vcap_control *vctrl, int from_cid, int to_cid)
1670 {
1671 int diff = to_cid - from_cid;
1672
1673 if (diff < 0) /* Wrong direction */
1674 return diff;
1675 to_cid %= VCAP_CID_LOOKUP_SIZE;
1676 if (to_cid == 0) /* Destination aligned to a lookup == no chaining */
1677 return 0;
1678 diff %= VCAP_CID_LOOKUP_SIZE; /* Limit to a value within a lookup */
1679 return diff;
1680 }
1681 EXPORT_SYMBOL_GPL(vcap_chain_offset);
1682
1683 /* Is the next chain id in one of the following lookups
1684 * For now this does not support filters linked to other filters using
1685 * keys and actions. That will be added later.
1686 */
vcap_is_next_lookup(struct vcap_control * vctrl,int src_cid,int dst_cid)1687 bool vcap_is_next_lookup(struct vcap_control *vctrl, int src_cid, int dst_cid)
1688 {
1689 struct vcap_admin *admin;
1690 int next_cid;
1691
1692 if (vcap_api_check(vctrl))
1693 return false;
1694
1695 /* The offset must be at least one lookup so round up one chain */
1696 next_cid = roundup(src_cid + 1, VCAP_CID_LOOKUP_SIZE);
1697
1698 if (dst_cid < next_cid)
1699 return false;
1700
1701 admin = vcap_find_admin(vctrl, dst_cid);
1702 if (!admin)
1703 return false;
1704
1705 return true;
1706 }
1707 EXPORT_SYMBOL_GPL(vcap_is_next_lookup);
1708
1709 /* Check if there is room for a new rule */
vcap_rule_space(struct vcap_admin * admin,int size)1710 static int vcap_rule_space(struct vcap_admin *admin, int size)
1711 {
1712 if (admin->last_used_addr - size < admin->first_valid_addr) {
1713 pr_err("%s:%d: No room for rule size: %u, %u\n",
1714 __func__, __LINE__, size, admin->first_valid_addr);
1715 return -ENOSPC;
1716 }
1717 return 0;
1718 }
1719
1720 /* Add the keyset typefield to the list of rule keyfields */
vcap_add_type_keyfield(struct vcap_rule * rule)1721 static int vcap_add_type_keyfield(struct vcap_rule *rule)
1722 {
1723 struct vcap_rule_internal *ri = to_intrule(rule);
1724 enum vcap_keyfield_set keyset = rule->keyset;
1725 enum vcap_type vt = ri->admin->vtype;
1726 const struct vcap_field *fields;
1727 const struct vcap_set *kset;
1728 int ret = -EINVAL;
1729
1730 kset = vcap_keyfieldset(ri->vctrl, vt, keyset);
1731 if (!kset)
1732 return ret;
1733 if (kset->type_id == (u8)-1) /* No type field is needed */
1734 return 0;
1735
1736 fields = vcap_keyfields(ri->vctrl, vt, keyset);
1737 if (!fields)
1738 return -EINVAL;
1739 if (fields[VCAP_KF_TYPE].width > 1) {
1740 ret = vcap_rule_add_key_u32(rule, VCAP_KF_TYPE,
1741 kset->type_id, 0xff);
1742 } else {
1743 if (kset->type_id)
1744 ret = vcap_rule_add_key_bit(rule, VCAP_KF_TYPE,
1745 VCAP_BIT_1);
1746 else
1747 ret = vcap_rule_add_key_bit(rule, VCAP_KF_TYPE,
1748 VCAP_BIT_0);
1749 }
1750 return 0;
1751 }
1752
1753 /* Add the actionset typefield to the list of rule actionfields */
vcap_add_type_actionfield(struct vcap_rule * rule)1754 static int vcap_add_type_actionfield(struct vcap_rule *rule)
1755 {
1756 enum vcap_actionfield_set actionset = rule->actionset;
1757 struct vcap_rule_internal *ri = to_intrule(rule);
1758 enum vcap_type vt = ri->admin->vtype;
1759 const struct vcap_field *fields;
1760 const struct vcap_set *aset;
1761 int ret = -EINVAL;
1762
1763 aset = vcap_actionfieldset(ri->vctrl, vt, actionset);
1764 if (!aset)
1765 return ret;
1766 if (aset->type_id == (u8)-1) /* No type field is needed */
1767 return 0;
1768
1769 fields = vcap_actionfields(ri->vctrl, vt, actionset);
1770 if (!fields)
1771 return -EINVAL;
1772 if (fields[VCAP_AF_TYPE].width > 1) {
1773 ret = vcap_rule_add_action_u32(rule, VCAP_AF_TYPE,
1774 aset->type_id);
1775 } else {
1776 if (aset->type_id)
1777 ret = vcap_rule_add_action_bit(rule, VCAP_AF_TYPE,
1778 VCAP_BIT_1);
1779 else
1780 ret = vcap_rule_add_action_bit(rule, VCAP_AF_TYPE,
1781 VCAP_BIT_0);
1782 }
1783 return ret;
1784 }
1785
1786 /* Add a keyset to a keyset list */
vcap_keyset_list_add(struct vcap_keyset_list * keysetlist,enum vcap_keyfield_set keyset)1787 bool vcap_keyset_list_add(struct vcap_keyset_list *keysetlist,
1788 enum vcap_keyfield_set keyset)
1789 {
1790 int idx;
1791
1792 if (keysetlist->cnt < keysetlist->max) {
1793 /* Avoid duplicates */
1794 for (idx = 0; idx < keysetlist->cnt; ++idx)
1795 if (keysetlist->keysets[idx] == keyset)
1796 return keysetlist->cnt < keysetlist->max;
1797 keysetlist->keysets[keysetlist->cnt++] = keyset;
1798 }
1799 return keysetlist->cnt < keysetlist->max;
1800 }
1801 EXPORT_SYMBOL_GPL(vcap_keyset_list_add);
1802
1803 /* Add a actionset to a actionset list */
vcap_actionset_list_add(struct vcap_actionset_list * actionsetlist,enum vcap_actionfield_set actionset)1804 static bool vcap_actionset_list_add(struct vcap_actionset_list *actionsetlist,
1805 enum vcap_actionfield_set actionset)
1806 {
1807 int idx;
1808
1809 if (actionsetlist->cnt < actionsetlist->max) {
1810 /* Avoid duplicates */
1811 for (idx = 0; idx < actionsetlist->cnt; ++idx)
1812 if (actionsetlist->actionsets[idx] == actionset)
1813 return actionsetlist->cnt < actionsetlist->max;
1814 actionsetlist->actionsets[actionsetlist->cnt++] = actionset;
1815 }
1816 return actionsetlist->cnt < actionsetlist->max;
1817 }
1818
1819 /* map keyset id to a string with the keyset name */
vcap_keyset_name(struct vcap_control * vctrl,enum vcap_keyfield_set keyset)1820 const char *vcap_keyset_name(struct vcap_control *vctrl,
1821 enum vcap_keyfield_set keyset)
1822 {
1823 return vctrl->stats->keyfield_set_names[keyset];
1824 }
1825 EXPORT_SYMBOL_GPL(vcap_keyset_name);
1826
1827 /* map key field id to a string with the key name */
vcap_keyfield_name(struct vcap_control * vctrl,enum vcap_key_field key)1828 const char *vcap_keyfield_name(struct vcap_control *vctrl,
1829 enum vcap_key_field key)
1830 {
1831 return vctrl->stats->keyfield_names[key];
1832 }
1833 EXPORT_SYMBOL_GPL(vcap_keyfield_name);
1834
1835 /* map actionset id to a string with the actionset name */
vcap_actionset_name(struct vcap_control * vctrl,enum vcap_actionfield_set actionset)1836 const char *vcap_actionset_name(struct vcap_control *vctrl,
1837 enum vcap_actionfield_set actionset)
1838 {
1839 return vctrl->stats->actionfield_set_names[actionset];
1840 }
1841
1842 /* map action field id to a string with the action name */
vcap_actionfield_name(struct vcap_control * vctrl,enum vcap_action_field action)1843 const char *vcap_actionfield_name(struct vcap_control *vctrl,
1844 enum vcap_action_field action)
1845 {
1846 return vctrl->stats->actionfield_names[action];
1847 }
1848
1849 /* Return the keyfield that matches a key in a keyset */
1850 static const struct vcap_field *
vcap_find_keyset_keyfield(struct vcap_control * vctrl,enum vcap_type vtype,enum vcap_keyfield_set keyset,enum vcap_key_field key)1851 vcap_find_keyset_keyfield(struct vcap_control *vctrl,
1852 enum vcap_type vtype,
1853 enum vcap_keyfield_set keyset,
1854 enum vcap_key_field key)
1855 {
1856 const struct vcap_field *fields;
1857 int idx, count;
1858
1859 fields = vcap_keyfields(vctrl, vtype, keyset);
1860 if (!fields)
1861 return NULL;
1862
1863 /* Iterate the keyfields of the keyset */
1864 count = vcap_keyfield_count(vctrl, vtype, keyset);
1865 for (idx = 0; idx < count; ++idx) {
1866 if (fields[idx].width == 0)
1867 continue;
1868
1869 if (key == idx)
1870 return &fields[idx];
1871 }
1872
1873 return NULL;
1874 }
1875
1876 /* Match a list of keys against the keysets available in a vcap type */
_vcap_rule_find_keysets(struct vcap_rule_internal * ri,struct vcap_keyset_list * matches)1877 static bool _vcap_rule_find_keysets(struct vcap_rule_internal *ri,
1878 struct vcap_keyset_list *matches)
1879 {
1880 const struct vcap_client_keyfield *ckf;
1881 int keyset, found, keycount, map_size;
1882 const struct vcap_field **map;
1883 enum vcap_type vtype;
1884
1885 vtype = ri->admin->vtype;
1886 map = ri->vctrl->vcaps[vtype].keyfield_set_map;
1887 map_size = ri->vctrl->vcaps[vtype].keyfield_set_size;
1888
1889 /* Get a count of the keyfields we want to match */
1890 keycount = 0;
1891 list_for_each_entry(ckf, &ri->data.keyfields, ctrl.list)
1892 ++keycount;
1893
1894 matches->cnt = 0;
1895 /* Iterate the keysets of the VCAP */
1896 for (keyset = 0; keyset < map_size; ++keyset) {
1897 if (!map[keyset])
1898 continue;
1899
1900 /* Iterate the keys in the rule */
1901 found = 0;
1902 list_for_each_entry(ckf, &ri->data.keyfields, ctrl.list)
1903 if (vcap_find_keyset_keyfield(ri->vctrl, vtype,
1904 keyset, ckf->ctrl.key))
1905 ++found;
1906
1907 /* Save the keyset if all keyfields were found */
1908 if (found == keycount)
1909 if (!vcap_keyset_list_add(matches, keyset))
1910 /* bail out when the quota is filled */
1911 break;
1912 }
1913
1914 return matches->cnt > 0;
1915 }
1916
1917 /* Match a list of keys against the keysets available in a vcap type */
vcap_rule_find_keysets(struct vcap_rule * rule,struct vcap_keyset_list * matches)1918 bool vcap_rule_find_keysets(struct vcap_rule *rule,
1919 struct vcap_keyset_list *matches)
1920 {
1921 struct vcap_rule_internal *ri = to_intrule(rule);
1922
1923 return _vcap_rule_find_keysets(ri, matches);
1924 }
1925 EXPORT_SYMBOL_GPL(vcap_rule_find_keysets);
1926
1927 /* Return the actionfield that matches a action in a actionset */
1928 static const struct vcap_field *
vcap_find_actionset_actionfield(struct vcap_control * vctrl,enum vcap_type vtype,enum vcap_actionfield_set actionset,enum vcap_action_field action)1929 vcap_find_actionset_actionfield(struct vcap_control *vctrl,
1930 enum vcap_type vtype,
1931 enum vcap_actionfield_set actionset,
1932 enum vcap_action_field action)
1933 {
1934 const struct vcap_field *fields;
1935 int idx, count;
1936
1937 fields = vcap_actionfields(vctrl, vtype, actionset);
1938 if (!fields)
1939 return NULL;
1940
1941 /* Iterate the actionfields of the actionset */
1942 count = vcap_actionfield_count(vctrl, vtype, actionset);
1943 for (idx = 0; idx < count; ++idx) {
1944 if (fields[idx].width == 0)
1945 continue;
1946
1947 if (action == idx)
1948 return &fields[idx];
1949 }
1950
1951 return NULL;
1952 }
1953
1954 /* Match a list of actions against the actionsets available in a vcap type */
vcap_rule_find_actionsets(struct vcap_rule_internal * ri,struct vcap_actionset_list * matches)1955 static bool vcap_rule_find_actionsets(struct vcap_rule_internal *ri,
1956 struct vcap_actionset_list *matches)
1957 {
1958 int actionset, found, actioncount, map_size;
1959 const struct vcap_client_actionfield *ckf;
1960 const struct vcap_field **map;
1961 enum vcap_type vtype;
1962
1963 vtype = ri->admin->vtype;
1964 map = ri->vctrl->vcaps[vtype].actionfield_set_map;
1965 map_size = ri->vctrl->vcaps[vtype].actionfield_set_size;
1966
1967 /* Get a count of the actionfields we want to match */
1968 actioncount = 0;
1969 list_for_each_entry(ckf, &ri->data.actionfields, ctrl.list)
1970 ++actioncount;
1971
1972 matches->cnt = 0;
1973 /* Iterate the actionsets of the VCAP */
1974 for (actionset = 0; actionset < map_size; ++actionset) {
1975 if (!map[actionset])
1976 continue;
1977
1978 /* Iterate the actions in the rule */
1979 found = 0;
1980 list_for_each_entry(ckf, &ri->data.actionfields, ctrl.list)
1981 if (vcap_find_actionset_actionfield(ri->vctrl, vtype,
1982 actionset,
1983 ckf->ctrl.action))
1984 ++found;
1985
1986 /* Save the actionset if all actionfields were found */
1987 if (found == actioncount)
1988 if (!vcap_actionset_list_add(matches, actionset))
1989 /* bail out when the quota is filled */
1990 break;
1991 }
1992
1993 return matches->cnt > 0;
1994 }
1995
1996 /* Validate a rule with respect to available port keys */
vcap_val_rule(struct vcap_rule * rule,u16 l3_proto)1997 int vcap_val_rule(struct vcap_rule *rule, u16 l3_proto)
1998 {
1999 struct vcap_rule_internal *ri = to_intrule(rule);
2000 struct vcap_keyset_list matches = {};
2001 enum vcap_keyfield_set keysets[10];
2002 int ret;
2003
2004 ret = vcap_api_check(ri->vctrl);
2005 if (ret)
2006 return ret;
2007 if (!ri->admin) {
2008 ri->data.exterr = VCAP_ERR_NO_ADMIN;
2009 return -EINVAL;
2010 }
2011 if (!ri->ndev) {
2012 ri->data.exterr = VCAP_ERR_NO_NETDEV;
2013 return -EINVAL;
2014 }
2015
2016 matches.keysets = keysets;
2017 matches.max = ARRAY_SIZE(keysets);
2018 if (ri->data.keyset == VCAP_KFS_NO_VALUE) {
2019 /* Iterate over rule keyfields and select keysets that fits */
2020 if (!_vcap_rule_find_keysets(ri, &matches)) {
2021 ri->data.exterr = VCAP_ERR_NO_KEYSET_MATCH;
2022 return -EINVAL;
2023 }
2024 } else {
2025 /* prepare for keyset validation */
2026 keysets[0] = ri->data.keyset;
2027 matches.cnt = 1;
2028 }
2029
2030 /* Pick a keyset that is supported in the port lookups */
2031 ret = ri->vctrl->ops->validate_keyset(ri->ndev, ri->admin, rule,
2032 &matches, l3_proto);
2033 if (ret < 0) {
2034 pr_err("%s:%d: keyset validation failed: %d\n",
2035 __func__, __LINE__, ret);
2036 ri->data.exterr = VCAP_ERR_NO_PORT_KEYSET_MATCH;
2037 return ret;
2038 }
2039 /* use the keyset that is supported in the port lookups */
2040 ret = vcap_set_rule_set_keyset(rule, ret);
2041 if (ret < 0) {
2042 pr_err("%s:%d: keyset was not updated: %d\n",
2043 __func__, __LINE__, ret);
2044 return ret;
2045 }
2046 if (ri->data.actionset == VCAP_AFS_NO_VALUE) {
2047 struct vcap_actionset_list matches = {};
2048 enum vcap_actionfield_set actionsets[10];
2049
2050 matches.actionsets = actionsets;
2051 matches.max = ARRAY_SIZE(actionsets);
2052
2053 /* Find an actionset that fits the rule actions */
2054 if (!vcap_rule_find_actionsets(ri, &matches)) {
2055 ri->data.exterr = VCAP_ERR_NO_ACTIONSET_MATCH;
2056 return -EINVAL;
2057 }
2058 ret = vcap_set_rule_set_actionset(rule, actionsets[0]);
2059 if (ret < 0) {
2060 pr_err("%s:%d: actionset was not updated: %d\n",
2061 __func__, __LINE__, ret);
2062 return ret;
2063 }
2064 }
2065 vcap_add_type_keyfield(rule);
2066 vcap_add_type_actionfield(rule);
2067 /* Add default fields to this rule */
2068 ri->vctrl->ops->add_default_fields(ri->ndev, ri->admin, rule);
2069
2070 /* Rule size is the maximum of the entry and action subword count */
2071 ri->size = max(ri->keyset_sw, ri->actionset_sw);
2072
2073 /* Finally check if there is room for the rule in the VCAP */
2074 return vcap_rule_space(ri->admin, ri->size);
2075 }
2076 EXPORT_SYMBOL_GPL(vcap_val_rule);
2077
2078 /* Entries are sorted with increasing values of sort_key.
2079 * I.e. Lowest numerical sort_key is first in list.
2080 * In order to locate largest keys first in list we negate the key size with
2081 * (max_size - size).
2082 */
vcap_sort_key(u32 max_size,u32 size,u8 user,u16 prio)2083 static u32 vcap_sort_key(u32 max_size, u32 size, u8 user, u16 prio)
2084 {
2085 return ((max_size - size) << 24) | (user << 16) | prio;
2086 }
2087
2088 /* calculate the address of the next rule after this (lower address and prio) */
vcap_next_rule_addr(u32 addr,struct vcap_rule_internal * ri)2089 static u32 vcap_next_rule_addr(u32 addr, struct vcap_rule_internal *ri)
2090 {
2091 return ((addr - ri->size) / ri->size) * ri->size;
2092 }
2093
2094 /* Assign a unique rule id and autogenerate one if id == 0 */
vcap_set_rule_id(struct vcap_rule_internal * ri)2095 static u32 vcap_set_rule_id(struct vcap_rule_internal *ri)
2096 {
2097 if (ri->data.id != 0)
2098 return ri->data.id;
2099
2100 for (u32 next_id = 1; next_id < ~0; ++next_id) {
2101 if (!vcap_rule_exists(ri->vctrl, next_id)) {
2102 ri->data.id = next_id;
2103 break;
2104 }
2105 }
2106 return ri->data.id;
2107 }
2108
vcap_insert_rule(struct vcap_rule_internal * ri,struct vcap_rule_move * move)2109 static int vcap_insert_rule(struct vcap_rule_internal *ri,
2110 struct vcap_rule_move *move)
2111 {
2112 int sw_count = ri->vctrl->vcaps[ri->admin->vtype].sw_count;
2113 struct vcap_rule_internal *duprule, *iter, *elem = NULL;
2114 struct vcap_admin *admin = ri->admin;
2115 u32 addr;
2116
2117 ri->sort_key = vcap_sort_key(sw_count, ri->size, ri->data.user,
2118 ri->data.priority);
2119
2120 /* Insert the new rule in the list of rule based on the sort key
2121 * If the rule needs to be inserted between existing rules then move
2122 * these rules to make room for the new rule and update their start
2123 * address.
2124 */
2125 list_for_each_entry(iter, &admin->rules, list) {
2126 if (ri->sort_key < iter->sort_key) {
2127 elem = iter;
2128 break;
2129 }
2130 }
2131
2132 if (!elem) {
2133 ri->addr = vcap_next_rule_addr(admin->last_used_addr, ri);
2134 admin->last_used_addr = ri->addr;
2135
2136 /* Add a copy of the rule to the VCAP list */
2137 duprule = vcap_dup_rule(ri, ri->state == VCAP_RS_DISABLED);
2138 if (IS_ERR(duprule))
2139 return PTR_ERR(duprule);
2140
2141 list_add_tail(&duprule->list, &admin->rules);
2142 return 0;
2143 }
2144
2145 /* Reuse the space of the current rule */
2146 addr = elem->addr + elem->size;
2147 ri->addr = vcap_next_rule_addr(addr, ri);
2148 addr = ri->addr;
2149
2150 /* Add a copy of the rule to the VCAP list */
2151 duprule = vcap_dup_rule(ri, ri->state == VCAP_RS_DISABLED);
2152 if (IS_ERR(duprule))
2153 return PTR_ERR(duprule);
2154
2155 /* Add before the current entry */
2156 list_add_tail(&duprule->list, &elem->list);
2157
2158 /* Update the current rule */
2159 elem->addr = vcap_next_rule_addr(addr, elem);
2160 addr = elem->addr;
2161
2162 /* Update the address in the remaining rules in the list */
2163 list_for_each_entry_continue(elem, &admin->rules, list) {
2164 elem->addr = vcap_next_rule_addr(addr, elem);
2165 addr = elem->addr;
2166 }
2167
2168 /* Update the move info */
2169 move->addr = admin->last_used_addr;
2170 move->count = ri->addr - addr;
2171 move->offset = admin->last_used_addr - addr;
2172 admin->last_used_addr = addr;
2173 return 0;
2174 }
2175
vcap_move_rules(struct vcap_rule_internal * ri,struct vcap_rule_move * move)2176 static void vcap_move_rules(struct vcap_rule_internal *ri,
2177 struct vcap_rule_move *move)
2178 {
2179 ri->vctrl->ops->move(ri->ndev, ri->admin, move->addr,
2180 move->offset, move->count);
2181 }
2182
2183 /* Check if the chain is already used to enable a VCAP lookup for this port */
vcap_is_chain_used(struct vcap_control * vctrl,struct net_device * ndev,int src_cid)2184 static bool vcap_is_chain_used(struct vcap_control *vctrl,
2185 struct net_device *ndev, int src_cid)
2186 {
2187 struct vcap_enabled_port *eport;
2188 struct vcap_admin *admin;
2189
2190 list_for_each_entry(admin, &vctrl->list, list)
2191 list_for_each_entry(eport, &admin->enabled, list)
2192 if (eport->src_cid == src_cid && eport->ndev == ndev)
2193 return true;
2194
2195 return false;
2196 }
2197
2198 /* Fetch the next chain in the enabled list for the port */
vcap_get_next_chain(struct vcap_control * vctrl,struct net_device * ndev,int dst_cid)2199 static int vcap_get_next_chain(struct vcap_control *vctrl,
2200 struct net_device *ndev,
2201 int dst_cid)
2202 {
2203 struct vcap_enabled_port *eport;
2204 struct vcap_admin *admin;
2205
2206 list_for_each_entry(admin, &vctrl->list, list) {
2207 list_for_each_entry(eport, &admin->enabled, list) {
2208 if (eport->ndev != ndev)
2209 continue;
2210 if (eport->src_cid == dst_cid)
2211 return eport->dst_cid;
2212 }
2213 }
2214
2215 return 0;
2216 }
2217
vcap_path_exist(struct vcap_control * vctrl,struct net_device * ndev,int dst_cid)2218 static bool vcap_path_exist(struct vcap_control *vctrl, struct net_device *ndev,
2219 int dst_cid)
2220 {
2221 int cid = rounddown(dst_cid, VCAP_CID_LOOKUP_SIZE);
2222 struct vcap_enabled_port *eport = NULL;
2223 struct vcap_enabled_port *elem;
2224 struct vcap_admin *admin;
2225 int tmp;
2226
2227 if (cid == 0) /* Chain zero is always available */
2228 return true;
2229
2230 /* Find first entry that starts from chain 0*/
2231 list_for_each_entry(admin, &vctrl->list, list) {
2232 list_for_each_entry(elem, &admin->enabled, list) {
2233 if (elem->src_cid == 0 && elem->ndev == ndev) {
2234 eport = elem;
2235 break;
2236 }
2237 }
2238 if (eport)
2239 break;
2240 }
2241
2242 if (!eport)
2243 return false;
2244
2245 tmp = eport->dst_cid;
2246 while (tmp != cid && tmp != 0)
2247 tmp = vcap_get_next_chain(vctrl, ndev, tmp);
2248
2249 return !!tmp;
2250 }
2251
2252 /* Internal clients can always store their rules in HW
2253 * External clients can store their rules if the chain is enabled all
2254 * the way from chain 0, otherwise the rule will be cached until
2255 * the chain is enabled.
2256 */
vcap_rule_set_state(struct vcap_rule_internal * ri)2257 static void vcap_rule_set_state(struct vcap_rule_internal *ri)
2258 {
2259 if (ri->data.user <= VCAP_USER_QOS)
2260 ri->state = VCAP_RS_PERMANENT;
2261 else if (vcap_path_exist(ri->vctrl, ri->ndev, ri->data.vcap_chain_id))
2262 ri->state = VCAP_RS_ENABLED;
2263 else
2264 ri->state = VCAP_RS_DISABLED;
2265 }
2266
2267 /* Encode and write a validated rule to the VCAP */
vcap_add_rule(struct vcap_rule * rule)2268 int vcap_add_rule(struct vcap_rule *rule)
2269 {
2270 struct vcap_rule_internal *ri = to_intrule(rule);
2271 struct vcap_rule_move move = {0};
2272 struct vcap_counter ctr = {0};
2273 int ret;
2274
2275 ret = vcap_api_check(ri->vctrl);
2276 if (ret)
2277 return ret;
2278 /* Insert the new rule in the list of vcap rules */
2279 vcap_lock(ri->admin);
2280
2281 vcap_rule_set_state(ri);
2282 ret = vcap_insert_rule(ri, &move);
2283 if (ret < 0) {
2284 pr_err("%s:%d: could not insert rule in vcap list: %d\n",
2285 __func__, __LINE__, ret);
2286 goto out;
2287 }
2288 if (move.count > 0)
2289 vcap_move_rules(ri, &move);
2290
2291 /* Set the counter to zero */
2292 ret = vcap_write_counter(ri, &ctr);
2293 if (ret)
2294 goto out;
2295
2296 if (ri->state == VCAP_RS_DISABLED) {
2297 /* Erase the rule area */
2298 ri->vctrl->ops->init(ri->ndev, ri->admin, ri->addr, ri->size);
2299 goto out;
2300 }
2301
2302 vcap_erase_cache(ri);
2303 ret = vcap_encode_rule(ri);
2304 if (ret) {
2305 pr_err("%s:%d: rule encoding error: %d\n", __func__, __LINE__, ret);
2306 goto out;
2307 }
2308
2309 ret = vcap_write_rule(ri);
2310 if (ret) {
2311 pr_err("%s:%d: rule write error: %d\n", __func__, __LINE__, ret);
2312 goto out;
2313 }
2314 out:
2315 vcap_unlock(ri->admin);
2316 return ret;
2317 }
2318 EXPORT_SYMBOL_GPL(vcap_add_rule);
2319
2320 /* Allocate a new rule with the provided arguments */
vcap_alloc_rule(struct vcap_control * vctrl,struct net_device * ndev,int vcap_chain_id,enum vcap_user user,u16 priority,u32 id)2321 struct vcap_rule *vcap_alloc_rule(struct vcap_control *vctrl,
2322 struct net_device *ndev, int vcap_chain_id,
2323 enum vcap_user user, u16 priority,
2324 u32 id)
2325 {
2326 struct vcap_rule_internal *ri;
2327 struct vcap_admin *admin;
2328 int err, maxsize;
2329
2330 err = vcap_api_check(vctrl);
2331 if (err)
2332 return ERR_PTR(err);
2333 if (!ndev)
2334 return ERR_PTR(-ENODEV);
2335 /* Get the VCAP instance */
2336 admin = vcap_find_admin(vctrl, vcap_chain_id);
2337 if (!admin)
2338 return ERR_PTR(-ENOENT);
2339 /* Sanity check that this VCAP is supported on this platform */
2340 if (vctrl->vcaps[admin->vtype].rows == 0)
2341 return ERR_PTR(-EINVAL);
2342
2343 vcap_lock(admin);
2344 /* Check if a rule with this id already exists */
2345 if (vcap_rule_exists(vctrl, id)) {
2346 err = -EINVAL;
2347 goto out_unlock;
2348 }
2349
2350 /* Check if there is room for the rule in the block(s) of the VCAP */
2351 maxsize = vctrl->vcaps[admin->vtype].sw_count; /* worst case rule size */
2352 if (vcap_rule_space(admin, maxsize)) {
2353 err = -ENOSPC;
2354 goto out_unlock;
2355 }
2356
2357 /* Create a container for the rule and return it */
2358 ri = kzalloc_obj(*ri);
2359 if (!ri) {
2360 err = -ENOMEM;
2361 goto out_unlock;
2362 }
2363
2364 ri->data.vcap_chain_id = vcap_chain_id;
2365 ri->data.user = user;
2366 ri->data.priority = priority;
2367 ri->data.id = id;
2368 ri->data.keyset = VCAP_KFS_NO_VALUE;
2369 ri->data.actionset = VCAP_AFS_NO_VALUE;
2370 INIT_LIST_HEAD(&ri->list);
2371 INIT_LIST_HEAD(&ri->data.keyfields);
2372 INIT_LIST_HEAD(&ri->data.actionfields);
2373 ri->ndev = ndev;
2374 ri->admin = admin; /* refer to the vcap instance */
2375 ri->vctrl = vctrl; /* refer to the client */
2376
2377 if (vcap_set_rule_id(ri) == 0) {
2378 err = -EINVAL;
2379 goto out_free;
2380 }
2381
2382 vcap_unlock(admin);
2383 return (struct vcap_rule *)ri;
2384
2385 out_free:
2386 kfree(ri);
2387 out_unlock:
2388 vcap_unlock(admin);
2389 return ERR_PTR(err);
2390
2391 }
2392 EXPORT_SYMBOL_GPL(vcap_alloc_rule);
2393
2394 /* Free mem of a rule owned by client after the rule as been added to the VCAP */
vcap_free_rule(struct vcap_rule * rule)2395 void vcap_free_rule(struct vcap_rule *rule)
2396 {
2397 struct vcap_rule_internal *ri = to_intrule(rule);
2398 struct vcap_client_actionfield *caf, *next_caf;
2399 struct vcap_client_keyfield *ckf, *next_ckf;
2400
2401 /* Deallocate the list of keys and actions */
2402 list_for_each_entry_safe(ckf, next_ckf, &ri->data.keyfields, ctrl.list) {
2403 list_del(&ckf->ctrl.list);
2404 kfree(ckf);
2405 }
2406 list_for_each_entry_safe(caf, next_caf, &ri->data.actionfields, ctrl.list) {
2407 list_del(&caf->ctrl.list);
2408 kfree(caf);
2409 }
2410 /* Deallocate the rule */
2411 kfree(rule);
2412 }
2413 EXPORT_SYMBOL_GPL(vcap_free_rule);
2414
2415 /* Decode a rule from the VCAP cache and return a copy */
vcap_decode_rule(struct vcap_rule_internal * elem)2416 struct vcap_rule *vcap_decode_rule(struct vcap_rule_internal *elem)
2417 {
2418 struct vcap_rule_internal *ri;
2419 int err;
2420
2421 ri = vcap_dup_rule(elem, elem->state == VCAP_RS_DISABLED);
2422 if (IS_ERR(ri))
2423 return ERR_CAST(ri);
2424
2425 if (ri->state == VCAP_RS_DISABLED)
2426 goto out;
2427
2428 err = vcap_read_rule(ri);
2429 if (err)
2430 goto err_free_rule;
2431
2432 err = vcap_decode_keyset(ri);
2433 if (err)
2434 goto err_free_rule;
2435
2436 err = vcap_decode_actionset(ri);
2437 if (err)
2438 goto err_free_rule;
2439
2440 out:
2441 return &ri->data;
2442 err_free_rule:
2443 vcap_free_rule(&ri->data);
2444 return ERR_PTR(err);
2445 }
2446
vcap_get_rule(struct vcap_control * vctrl,u32 id)2447 struct vcap_rule *vcap_get_rule(struct vcap_control *vctrl, u32 id)
2448 {
2449 struct vcap_rule_internal *elem;
2450 struct vcap_rule *rule;
2451 int err;
2452
2453 err = vcap_api_check(vctrl);
2454 if (err)
2455 return ERR_PTR(err);
2456
2457 elem = vcap_get_locked_rule(vctrl, id);
2458 if (!elem)
2459 return ERR_PTR(-ENOENT);
2460
2461 rule = vcap_decode_rule(elem);
2462 vcap_unlock(elem->admin);
2463 return rule;
2464 }
2465 EXPORT_SYMBOL_GPL(vcap_get_rule);
2466
2467 /* Update existing rule */
vcap_mod_rule(struct vcap_rule * rule)2468 int vcap_mod_rule(struct vcap_rule *rule)
2469 {
2470 struct vcap_rule_internal *ri = to_intrule(rule);
2471 struct vcap_counter ctr;
2472 int err;
2473
2474 err = vcap_api_check(ri->vctrl);
2475 if (err)
2476 return err;
2477
2478 if (!vcap_get_locked_rule(ri->vctrl, ri->data.id))
2479 return -ENOENT;
2480
2481 vcap_rule_set_state(ri);
2482 if (ri->state == VCAP_RS_DISABLED)
2483 goto out;
2484
2485 /* Encode the bitstreams to the VCAP cache */
2486 vcap_erase_cache(ri);
2487 err = vcap_encode_rule(ri);
2488 if (err)
2489 goto out;
2490
2491 err = vcap_write_rule(ri);
2492 if (err)
2493 goto out;
2494
2495 memset(&ctr, 0, sizeof(ctr));
2496 err = vcap_write_counter(ri, &ctr);
2497
2498 out:
2499 vcap_unlock(ri->admin);
2500 return err;
2501 }
2502 EXPORT_SYMBOL_GPL(vcap_mod_rule);
2503
2504 /* Return the alignment offset for a new rule address */
vcap_valid_rule_move(struct vcap_rule_internal * el,int offset)2505 static int vcap_valid_rule_move(struct vcap_rule_internal *el, int offset)
2506 {
2507 return (el->addr + offset) % el->size;
2508 }
2509
2510 /* Update the rule address with an offset */
vcap_adjust_rule_addr(struct vcap_rule_internal * el,int offset)2511 static void vcap_adjust_rule_addr(struct vcap_rule_internal *el, int offset)
2512 {
2513 el->addr += offset;
2514 }
2515
2516 /* Rules needs to be moved to fill the gap of the deleted rule */
vcap_fill_rule_gap(struct vcap_rule_internal * ri)2517 static int vcap_fill_rule_gap(struct vcap_rule_internal *ri)
2518 {
2519 struct vcap_admin *admin = ri->admin;
2520 struct vcap_rule_internal *elem;
2521 struct vcap_rule_move move;
2522 int gap = 0, offset = 0;
2523
2524 /* If the first rule is deleted: Move other rules to the top */
2525 if (list_is_first(&ri->list, &admin->rules))
2526 offset = admin->last_valid_addr + 1 - ri->addr - ri->size;
2527
2528 /* Locate gaps between odd size rules and adjust the move */
2529 elem = ri;
2530 list_for_each_entry_continue(elem, &admin->rules, list)
2531 gap += vcap_valid_rule_move(elem, ri->size);
2532
2533 /* Update the address in the remaining rules in the list */
2534 elem = ri;
2535 list_for_each_entry_continue(elem, &admin->rules, list)
2536 vcap_adjust_rule_addr(elem, ri->size + gap + offset);
2537
2538 /* Update the move info */
2539 move.addr = admin->last_used_addr;
2540 move.count = ri->addr - admin->last_used_addr - gap;
2541 move.offset = -(ri->size + gap + offset);
2542
2543 /* Do the actual move operation */
2544 vcap_move_rules(ri, &move);
2545
2546 return gap + offset;
2547 }
2548
2549 /* Delete rule in a VCAP instance */
vcap_del_rule(struct vcap_control * vctrl,struct net_device * ndev,u32 id)2550 int vcap_del_rule(struct vcap_control *vctrl, struct net_device *ndev, u32 id)
2551 {
2552 struct vcap_rule_internal *ri, *elem;
2553 struct vcap_admin *admin;
2554 int gap = 0, err;
2555
2556 /* This will later also handle rule moving */
2557 if (!ndev)
2558 return -ENODEV;
2559 err = vcap_api_check(vctrl);
2560 if (err)
2561 return err;
2562 /* Look for the rule id in all vcaps */
2563 ri = vcap_get_locked_rule(vctrl, id);
2564 if (!ri)
2565 return -ENOENT;
2566
2567 admin = ri->admin;
2568
2569 if (ri->addr > admin->last_used_addr)
2570 gap = vcap_fill_rule_gap(ri);
2571
2572 /* Delete the rule from the list of rules and the cache */
2573 list_del(&ri->list);
2574 vctrl->ops->init(ndev, admin, admin->last_used_addr, ri->size + gap);
2575 vcap_free_rule(&ri->data);
2576
2577 /* Update the last used address, set to default when no rules */
2578 if (list_empty(&admin->rules)) {
2579 admin->last_used_addr = admin->last_valid_addr + 1;
2580 } else {
2581 elem = list_last_entry(&admin->rules, struct vcap_rule_internal,
2582 list);
2583 admin->last_used_addr = elem->addr;
2584 }
2585
2586 vcap_unlock(admin);
2587 return err;
2588 }
2589 EXPORT_SYMBOL_GPL(vcap_del_rule);
2590
2591 /* Delete all rules in the VCAP instance */
vcap_del_rules(struct vcap_control * vctrl,struct vcap_admin * admin)2592 int vcap_del_rules(struct vcap_control *vctrl, struct vcap_admin *admin)
2593 {
2594 struct vcap_enabled_port *eport, *next_eport;
2595 struct vcap_rule_internal *ri, *next_ri;
2596 int ret = vcap_api_check(vctrl);
2597
2598 if (ret)
2599 return ret;
2600
2601 vcap_lock(admin);
2602 list_for_each_entry_safe(ri, next_ri, &admin->rules, list) {
2603 vctrl->ops->init(ri->ndev, admin, ri->addr, ri->size);
2604 list_del(&ri->list);
2605 vcap_free_rule(&ri->data);
2606 }
2607 admin->last_used_addr = admin->last_valid_addr;
2608
2609 /* Remove list of enabled ports */
2610 list_for_each_entry_safe(eport, next_eport, &admin->enabled, list) {
2611 list_del(&eport->list);
2612 kfree(eport);
2613 }
2614 vcap_unlock(admin);
2615
2616 return 0;
2617 }
2618 EXPORT_SYMBOL_GPL(vcap_del_rules);
2619
2620 /* Find a client key field in a rule */
2621 static struct vcap_client_keyfield *
vcap_find_keyfield(struct vcap_rule * rule,enum vcap_key_field key)2622 vcap_find_keyfield(struct vcap_rule *rule, enum vcap_key_field key)
2623 {
2624 struct vcap_rule_internal *ri = to_intrule(rule);
2625 struct vcap_client_keyfield *ckf;
2626
2627 list_for_each_entry(ckf, &ri->data.keyfields, ctrl.list)
2628 if (ckf->ctrl.key == key)
2629 return ckf;
2630 return NULL;
2631 }
2632
2633 /* Find information on a key field in a rule */
vcap_lookup_keyfield(struct vcap_rule * rule,enum vcap_key_field key)2634 const struct vcap_field *vcap_lookup_keyfield(struct vcap_rule *rule,
2635 enum vcap_key_field key)
2636 {
2637 struct vcap_rule_internal *ri = to_intrule(rule);
2638 enum vcap_keyfield_set keyset = rule->keyset;
2639 enum vcap_type vt = ri->admin->vtype;
2640 const struct vcap_field *fields;
2641
2642 if (keyset == VCAP_KFS_NO_VALUE)
2643 return NULL;
2644 fields = vcap_keyfields(ri->vctrl, vt, keyset);
2645 if (!fields)
2646 return NULL;
2647 return &fields[key];
2648 }
2649 EXPORT_SYMBOL_GPL(vcap_lookup_keyfield);
2650
2651 /* Check if the keyfield is already in the rule */
vcap_keyfield_unique(struct vcap_rule * rule,enum vcap_key_field key)2652 static bool vcap_keyfield_unique(struct vcap_rule *rule,
2653 enum vcap_key_field key)
2654 {
2655 struct vcap_rule_internal *ri = to_intrule(rule);
2656 const struct vcap_client_keyfield *ckf;
2657
2658 list_for_each_entry(ckf, &ri->data.keyfields, ctrl.list)
2659 if (ckf->ctrl.key == key)
2660 return false;
2661 return true;
2662 }
2663
2664 /* Check if the keyfield is in the keyset */
vcap_keyfield_match_keyset(struct vcap_rule * rule,enum vcap_key_field key)2665 static bool vcap_keyfield_match_keyset(struct vcap_rule *rule,
2666 enum vcap_key_field key)
2667 {
2668 struct vcap_rule_internal *ri = to_intrule(rule);
2669 enum vcap_keyfield_set keyset = rule->keyset;
2670 enum vcap_type vt = ri->admin->vtype;
2671 const struct vcap_field *fields;
2672
2673 /* the field is accepted if the rule has no keyset yet */
2674 if (keyset == VCAP_KFS_NO_VALUE)
2675 return true;
2676 fields = vcap_keyfields(ri->vctrl, vt, keyset);
2677 if (!fields)
2678 return false;
2679 /* if there is a width there is a way */
2680 return fields[key].width > 0;
2681 }
2682
vcap_rule_add_key(struct vcap_rule * rule,enum vcap_key_field key,enum vcap_field_type ftype,struct vcap_client_keyfield_data * data)2683 static int vcap_rule_add_key(struct vcap_rule *rule,
2684 enum vcap_key_field key,
2685 enum vcap_field_type ftype,
2686 struct vcap_client_keyfield_data *data)
2687 {
2688 struct vcap_rule_internal *ri = to_intrule(rule);
2689 struct vcap_client_keyfield *field;
2690
2691 if (!vcap_keyfield_unique(rule, key)) {
2692 pr_warn("%s:%d: keyfield %s is already in the rule\n",
2693 __func__, __LINE__,
2694 vcap_keyfield_name(ri->vctrl, key));
2695 return -EINVAL;
2696 }
2697
2698 if (!vcap_keyfield_match_keyset(rule, key)) {
2699 pr_err("%s:%d: keyfield %s does not belong in the rule keyset\n",
2700 __func__, __LINE__,
2701 vcap_keyfield_name(ri->vctrl, key));
2702 return -EINVAL;
2703 }
2704
2705 field = kzalloc_obj(*field);
2706 if (!field)
2707 return -ENOMEM;
2708 memcpy(&field->data, data, sizeof(field->data));
2709 field->ctrl.key = key;
2710 field->ctrl.type = ftype;
2711 list_add_tail(&field->ctrl.list, &rule->keyfields);
2712 return 0;
2713 }
2714
vcap_rule_set_key_bitsize(struct vcap_u1_key * u1,enum vcap_bit val)2715 static void vcap_rule_set_key_bitsize(struct vcap_u1_key *u1, enum vcap_bit val)
2716 {
2717 switch (val) {
2718 case VCAP_BIT_0:
2719 u1->value = 0;
2720 u1->mask = 1;
2721 break;
2722 case VCAP_BIT_1:
2723 u1->value = 1;
2724 u1->mask = 1;
2725 break;
2726 case VCAP_BIT_ANY:
2727 u1->value = 0;
2728 u1->mask = 0;
2729 break;
2730 }
2731 }
2732
2733 /* Add a bit key with value and mask to the rule */
vcap_rule_add_key_bit(struct vcap_rule * rule,enum vcap_key_field key,enum vcap_bit val)2734 int vcap_rule_add_key_bit(struct vcap_rule *rule, enum vcap_key_field key,
2735 enum vcap_bit val)
2736 {
2737 struct vcap_client_keyfield_data data;
2738
2739 vcap_rule_set_key_bitsize(&data.u1, val);
2740 return vcap_rule_add_key(rule, key, VCAP_FIELD_BIT, &data);
2741 }
2742 EXPORT_SYMBOL_GPL(vcap_rule_add_key_bit);
2743
2744 /* Add a 32 bit key field with value and mask to the rule */
vcap_rule_add_key_u32(struct vcap_rule * rule,enum vcap_key_field key,u32 value,u32 mask)2745 int vcap_rule_add_key_u32(struct vcap_rule *rule, enum vcap_key_field key,
2746 u32 value, u32 mask)
2747 {
2748 struct vcap_client_keyfield_data data;
2749
2750 data.u32.value = value;
2751 data.u32.mask = mask;
2752 return vcap_rule_add_key(rule, key, VCAP_FIELD_U32, &data);
2753 }
2754 EXPORT_SYMBOL_GPL(vcap_rule_add_key_u32);
2755
2756 /* Add a 48 bit key with value and mask to the rule */
vcap_rule_add_key_u48(struct vcap_rule * rule,enum vcap_key_field key,struct vcap_u48_key * fieldval)2757 int vcap_rule_add_key_u48(struct vcap_rule *rule, enum vcap_key_field key,
2758 struct vcap_u48_key *fieldval)
2759 {
2760 struct vcap_client_keyfield_data data;
2761
2762 memcpy(&data.u48, fieldval, sizeof(data.u48));
2763 return vcap_rule_add_key(rule, key, VCAP_FIELD_U48, &data);
2764 }
2765 EXPORT_SYMBOL_GPL(vcap_rule_add_key_u48);
2766
2767 /* Add a 72 bit key with value and mask to the rule */
vcap_rule_add_key_u72(struct vcap_rule * rule,enum vcap_key_field key,struct vcap_u72_key * fieldval)2768 int vcap_rule_add_key_u72(struct vcap_rule *rule, enum vcap_key_field key,
2769 struct vcap_u72_key *fieldval)
2770 {
2771 struct vcap_client_keyfield_data data;
2772
2773 memcpy(&data.u72, fieldval, sizeof(data.u72));
2774 return vcap_rule_add_key(rule, key, VCAP_FIELD_U72, &data);
2775 }
2776 EXPORT_SYMBOL_GPL(vcap_rule_add_key_u72);
2777
2778 /* Add a 128 bit key with value and mask to the rule */
vcap_rule_add_key_u128(struct vcap_rule * rule,enum vcap_key_field key,struct vcap_u128_key * fieldval)2779 int vcap_rule_add_key_u128(struct vcap_rule *rule, enum vcap_key_field key,
2780 struct vcap_u128_key *fieldval)
2781 {
2782 struct vcap_client_keyfield_data data;
2783
2784 memcpy(&data.u128, fieldval, sizeof(data.u128));
2785 return vcap_rule_add_key(rule, key, VCAP_FIELD_U128, &data);
2786 }
2787 EXPORT_SYMBOL_GPL(vcap_rule_add_key_u128);
2788
vcap_rule_get_key_u32(struct vcap_rule * rule,enum vcap_key_field key,u32 * value,u32 * mask)2789 int vcap_rule_get_key_u32(struct vcap_rule *rule, enum vcap_key_field key,
2790 u32 *value, u32 *mask)
2791 {
2792 struct vcap_client_keyfield *ckf;
2793
2794 ckf = vcap_find_keyfield(rule, key);
2795 if (!ckf)
2796 return -ENOENT;
2797
2798 *value = ckf->data.u32.value;
2799 *mask = ckf->data.u32.mask;
2800
2801 return 0;
2802 }
2803 EXPORT_SYMBOL_GPL(vcap_rule_get_key_u32);
2804
2805 /* Find a client action field in a rule */
2806 struct vcap_client_actionfield *
vcap_find_actionfield(struct vcap_rule * rule,enum vcap_action_field act)2807 vcap_find_actionfield(struct vcap_rule *rule, enum vcap_action_field act)
2808 {
2809 struct vcap_rule_internal *ri = (struct vcap_rule_internal *)rule;
2810 struct vcap_client_actionfield *caf;
2811
2812 list_for_each_entry(caf, &ri->data.actionfields, ctrl.list)
2813 if (caf->ctrl.action == act)
2814 return caf;
2815 return NULL;
2816 }
2817 EXPORT_SYMBOL_GPL(vcap_find_actionfield);
2818
2819 /* Check if the actionfield is already in the rule */
vcap_actionfield_unique(struct vcap_rule * rule,enum vcap_action_field act)2820 static bool vcap_actionfield_unique(struct vcap_rule *rule,
2821 enum vcap_action_field act)
2822 {
2823 struct vcap_rule_internal *ri = to_intrule(rule);
2824 const struct vcap_client_actionfield *caf;
2825
2826 list_for_each_entry(caf, &ri->data.actionfields, ctrl.list)
2827 if (caf->ctrl.action == act)
2828 return false;
2829 return true;
2830 }
2831
2832 /* Check if the actionfield is in the actionset */
vcap_actionfield_match_actionset(struct vcap_rule * rule,enum vcap_action_field action)2833 static bool vcap_actionfield_match_actionset(struct vcap_rule *rule,
2834 enum vcap_action_field action)
2835 {
2836 enum vcap_actionfield_set actionset = rule->actionset;
2837 struct vcap_rule_internal *ri = to_intrule(rule);
2838 enum vcap_type vt = ri->admin->vtype;
2839 const struct vcap_field *fields;
2840
2841 /* the field is accepted if the rule has no actionset yet */
2842 if (actionset == VCAP_AFS_NO_VALUE)
2843 return true;
2844 fields = vcap_actionfields(ri->vctrl, vt, actionset);
2845 if (!fields)
2846 return false;
2847 /* if there is a width there is a way */
2848 return fields[action].width > 0;
2849 }
2850
vcap_rule_add_action(struct vcap_rule * rule,enum vcap_action_field action,enum vcap_field_type ftype,struct vcap_client_actionfield_data * data)2851 static int vcap_rule_add_action(struct vcap_rule *rule,
2852 enum vcap_action_field action,
2853 enum vcap_field_type ftype,
2854 struct vcap_client_actionfield_data *data)
2855 {
2856 struct vcap_rule_internal *ri = to_intrule(rule);
2857 struct vcap_client_actionfield *field;
2858
2859 if (!vcap_actionfield_unique(rule, action)) {
2860 pr_warn("%s:%d: actionfield %s is already in the rule\n",
2861 __func__, __LINE__,
2862 vcap_actionfield_name(ri->vctrl, action));
2863 return -EINVAL;
2864 }
2865
2866 if (!vcap_actionfield_match_actionset(rule, action)) {
2867 pr_err("%s:%d: actionfield %s does not belong in the rule actionset\n",
2868 __func__, __LINE__,
2869 vcap_actionfield_name(ri->vctrl, action));
2870 return -EINVAL;
2871 }
2872
2873 field = kzalloc_obj(*field);
2874 if (!field)
2875 return -ENOMEM;
2876 memcpy(&field->data, data, sizeof(field->data));
2877 field->ctrl.action = action;
2878 field->ctrl.type = ftype;
2879 list_add_tail(&field->ctrl.list, &rule->actionfields);
2880 return 0;
2881 }
2882
vcap_rule_set_action_bitsize(struct vcap_u1_action * u1,enum vcap_bit val)2883 static void vcap_rule_set_action_bitsize(struct vcap_u1_action *u1,
2884 enum vcap_bit val)
2885 {
2886 switch (val) {
2887 case VCAP_BIT_0:
2888 u1->value = 0;
2889 break;
2890 case VCAP_BIT_1:
2891 u1->value = 1;
2892 break;
2893 case VCAP_BIT_ANY:
2894 u1->value = 0;
2895 break;
2896 }
2897 }
2898
2899 /* Add a bit action with value to the rule */
vcap_rule_add_action_bit(struct vcap_rule * rule,enum vcap_action_field action,enum vcap_bit val)2900 int vcap_rule_add_action_bit(struct vcap_rule *rule,
2901 enum vcap_action_field action,
2902 enum vcap_bit val)
2903 {
2904 struct vcap_client_actionfield_data data;
2905
2906 vcap_rule_set_action_bitsize(&data.u1, val);
2907 return vcap_rule_add_action(rule, action, VCAP_FIELD_BIT, &data);
2908 }
2909 EXPORT_SYMBOL_GPL(vcap_rule_add_action_bit);
2910
2911 /* Add a 32 bit action field with value to the rule */
vcap_rule_add_action_u32(struct vcap_rule * rule,enum vcap_action_field action,u32 value)2912 int vcap_rule_add_action_u32(struct vcap_rule *rule,
2913 enum vcap_action_field action,
2914 u32 value)
2915 {
2916 struct vcap_client_actionfield_data data;
2917
2918 data.u32.value = value;
2919 return vcap_rule_add_action(rule, action, VCAP_FIELD_U32, &data);
2920 }
2921 EXPORT_SYMBOL_GPL(vcap_rule_add_action_u32);
2922
2923 /* Add a 72 bit action field with value to the rule */
vcap_rule_add_action_u72(struct vcap_rule * rule,enum vcap_action_field action,struct vcap_u72_action * fieldval)2924 int vcap_rule_add_action_u72(struct vcap_rule *rule,
2925 enum vcap_action_field action,
2926 struct vcap_u72_action *fieldval)
2927 {
2928 struct vcap_client_actionfield_data data;
2929
2930 memcpy(&data.u72, fieldval, sizeof(data.u72));
2931 return vcap_rule_add_action(rule, action, VCAP_FIELD_U72, &data);
2932 }
2933 EXPORT_SYMBOL_GPL(vcap_rule_add_action_u72);
2934
vcap_read_counter(struct vcap_rule_internal * ri,struct vcap_counter * ctr)2935 static int vcap_read_counter(struct vcap_rule_internal *ri,
2936 struct vcap_counter *ctr)
2937 {
2938 struct vcap_admin *admin = ri->admin;
2939
2940 ri->vctrl->ops->update(ri->ndev, admin, VCAP_CMD_READ, VCAP_SEL_COUNTER,
2941 ri->addr);
2942 ri->vctrl->ops->cache_read(ri->ndev, admin, VCAP_SEL_COUNTER,
2943 ri->counter_id, 0);
2944 ctr->value = admin->cache.counter;
2945 ctr->sticky = admin->cache.sticky;
2946 return 0;
2947 }
2948
2949 /* Copy to host byte order */
vcap_netbytes_copy(u8 * dst,u8 * src,int count)2950 void vcap_netbytes_copy(u8 *dst, u8 *src, int count)
2951 {
2952 int idx;
2953
2954 for (idx = 0; idx < count; ++idx, ++dst)
2955 *dst = src[count - idx - 1];
2956 }
2957 EXPORT_SYMBOL_GPL(vcap_netbytes_copy);
2958
2959 /* Convert validation error code into tc extack error message */
vcap_set_tc_exterr(struct flow_cls_offload * fco,struct vcap_rule * vrule)2960 void vcap_set_tc_exterr(struct flow_cls_offload *fco, struct vcap_rule *vrule)
2961 {
2962 switch (vrule->exterr) {
2963 case VCAP_ERR_NONE:
2964 break;
2965 case VCAP_ERR_NO_ADMIN:
2966 NL_SET_ERR_MSG_MOD(fco->common.extack,
2967 "Missing VCAP instance");
2968 break;
2969 case VCAP_ERR_NO_NETDEV:
2970 NL_SET_ERR_MSG_MOD(fco->common.extack,
2971 "Missing network interface");
2972 break;
2973 case VCAP_ERR_NO_KEYSET_MATCH:
2974 NL_SET_ERR_MSG_MOD(fco->common.extack,
2975 "No keyset matched the filter keys");
2976 break;
2977 case VCAP_ERR_NO_ACTIONSET_MATCH:
2978 NL_SET_ERR_MSG_MOD(fco->common.extack,
2979 "No actionset matched the filter actions");
2980 break;
2981 case VCAP_ERR_NO_PORT_KEYSET_MATCH:
2982 NL_SET_ERR_MSG_MOD(fco->common.extack,
2983 "No port keyset matched the filter keys");
2984 break;
2985 }
2986 }
2987 EXPORT_SYMBOL_GPL(vcap_set_tc_exterr);
2988
2989 /* Write a rule to VCAP HW to enable it */
vcap_enable_rule(struct vcap_rule_internal * ri)2990 static int vcap_enable_rule(struct vcap_rule_internal *ri)
2991 {
2992 struct vcap_client_actionfield *af, *naf;
2993 struct vcap_client_keyfield *kf, *nkf;
2994 int err;
2995
2996 vcap_erase_cache(ri);
2997 err = vcap_encode_rule(ri);
2998 if (err)
2999 goto out;
3000 err = vcap_write_rule(ri);
3001 if (err)
3002 goto out;
3003
3004 /* Deallocate the list of keys and actions */
3005 list_for_each_entry_safe(kf, nkf, &ri->data.keyfields, ctrl.list) {
3006 list_del(&kf->ctrl.list);
3007 kfree(kf);
3008 }
3009 list_for_each_entry_safe(af, naf, &ri->data.actionfields, ctrl.list) {
3010 list_del(&af->ctrl.list);
3011 kfree(af);
3012 }
3013 ri->state = VCAP_RS_ENABLED;
3014 out:
3015 return err;
3016 }
3017
3018 /* Enable all disabled rules for a specific chain/port in the VCAP HW */
vcap_enable_rules(struct vcap_control * vctrl,struct net_device * ndev,int chain)3019 static int vcap_enable_rules(struct vcap_control *vctrl,
3020 struct net_device *ndev, int chain)
3021 {
3022 int next_chain = chain + VCAP_CID_LOOKUP_SIZE;
3023 struct vcap_rule_internal *ri;
3024 struct vcap_admin *admin;
3025 int err = 0;
3026
3027 list_for_each_entry(admin, &vctrl->list, list) {
3028 if (!(chain >= admin->first_cid && chain <= admin->last_cid))
3029 continue;
3030
3031 /* Found the admin, now find the offloadable rules */
3032 vcap_lock(admin);
3033 list_for_each_entry(ri, &admin->rules, list) {
3034 /* Is the rule in the lookup defined by the chain */
3035 if (!(ri->data.vcap_chain_id >= chain &&
3036 ri->data.vcap_chain_id < next_chain)) {
3037 continue;
3038 }
3039
3040 if (ri->ndev != ndev)
3041 continue;
3042
3043 if (ri->state != VCAP_RS_DISABLED)
3044 continue;
3045
3046 err = vcap_enable_rule(ri);
3047 if (err)
3048 break;
3049 }
3050 vcap_unlock(admin);
3051 if (err)
3052 break;
3053 }
3054 return err;
3055 }
3056
3057 /* Read and erase a rule from VCAP HW to disable it */
vcap_disable_rule(struct vcap_rule_internal * ri)3058 static int vcap_disable_rule(struct vcap_rule_internal *ri)
3059 {
3060 int err;
3061
3062 err = vcap_read_rule(ri);
3063 if (err)
3064 return err;
3065 err = vcap_decode_keyset(ri);
3066 if (err)
3067 return err;
3068 err = vcap_decode_actionset(ri);
3069 if (err)
3070 return err;
3071
3072 ri->state = VCAP_RS_DISABLED;
3073 ri->vctrl->ops->init(ri->ndev, ri->admin, ri->addr, ri->size);
3074 return 0;
3075 }
3076
3077 /* Disable all enabled rules for a specific chain/port in the VCAP HW */
vcap_disable_rules(struct vcap_control * vctrl,struct net_device * ndev,int chain)3078 static int vcap_disable_rules(struct vcap_control *vctrl,
3079 struct net_device *ndev, int chain)
3080 {
3081 struct vcap_rule_internal *ri;
3082 struct vcap_admin *admin;
3083 int err = 0;
3084
3085 list_for_each_entry(admin, &vctrl->list, list) {
3086 if (!(chain >= admin->first_cid && chain <= admin->last_cid))
3087 continue;
3088
3089 /* Found the admin, now find the rules on the chain */
3090 vcap_lock(admin);
3091 list_for_each_entry(ri, &admin->rules, list) {
3092 if (ri->data.vcap_chain_id != chain)
3093 continue;
3094
3095 if (ri->ndev != ndev)
3096 continue;
3097
3098 if (ri->state != VCAP_RS_ENABLED)
3099 continue;
3100
3101 err = vcap_disable_rule(ri);
3102 if (err)
3103 break;
3104 }
3105 vcap_unlock(admin);
3106 if (err)
3107 break;
3108 }
3109 return err;
3110 }
3111
3112 /* Check if this port is already enabled for this VCAP instance */
vcap_is_enabled(struct vcap_control * vctrl,struct net_device * ndev,int dst_cid)3113 static bool vcap_is_enabled(struct vcap_control *vctrl, struct net_device *ndev,
3114 int dst_cid)
3115 {
3116 struct vcap_enabled_port *eport;
3117 struct vcap_admin *admin;
3118
3119 list_for_each_entry(admin, &vctrl->list, list)
3120 list_for_each_entry(eport, &admin->enabled, list)
3121 if (eport->dst_cid == dst_cid && eport->ndev == ndev)
3122 return true;
3123
3124 return false;
3125 }
3126
3127 /* Enable this port and chain id in a VCAP instance */
vcap_enable(struct vcap_control * vctrl,struct net_device * ndev,unsigned long cookie,int src_cid,int dst_cid)3128 static int vcap_enable(struct vcap_control *vctrl, struct net_device *ndev,
3129 unsigned long cookie, int src_cid, int dst_cid)
3130 {
3131 struct vcap_enabled_port *eport;
3132 struct vcap_admin *admin;
3133
3134 if (src_cid >= dst_cid)
3135 return -EFAULT;
3136
3137 admin = vcap_find_admin(vctrl, dst_cid);
3138 if (!admin)
3139 return -ENOENT;
3140
3141 eport = kzalloc_obj(*eport);
3142 if (!eport)
3143 return -ENOMEM;
3144
3145 eport->ndev = ndev;
3146 eport->cookie = cookie;
3147 eport->src_cid = src_cid;
3148 eport->dst_cid = dst_cid;
3149 vcap_lock(admin);
3150 list_add_tail(&eport->list, &admin->enabled);
3151 vcap_unlock(admin);
3152
3153 if (vcap_path_exist(vctrl, ndev, src_cid)) {
3154 /* Enable chained lookups */
3155 while (dst_cid) {
3156 admin = vcap_find_admin(vctrl, dst_cid);
3157 if (!admin)
3158 return -ENOENT;
3159
3160 vcap_enable_rules(vctrl, ndev, dst_cid);
3161 dst_cid = vcap_get_next_chain(vctrl, ndev, dst_cid);
3162 }
3163 }
3164 return 0;
3165 }
3166
3167 /* Disable this port and chain id for a VCAP instance */
vcap_disable(struct vcap_control * vctrl,struct net_device * ndev,unsigned long cookie)3168 static int vcap_disable(struct vcap_control *vctrl, struct net_device *ndev,
3169 unsigned long cookie)
3170 {
3171 struct vcap_enabled_port *elem, *eport = NULL;
3172 struct vcap_admin *found = NULL, *admin;
3173 int dst_cid;
3174
3175 list_for_each_entry(admin, &vctrl->list, list) {
3176 list_for_each_entry(elem, &admin->enabled, list) {
3177 if (elem->cookie == cookie && elem->ndev == ndev) {
3178 eport = elem;
3179 found = admin;
3180 break;
3181 }
3182 }
3183 if (eport)
3184 break;
3185 }
3186
3187 if (!eport)
3188 return -ENOENT;
3189
3190 /* Disable chained lookups */
3191 dst_cid = eport->dst_cid;
3192 while (dst_cid) {
3193 admin = vcap_find_admin(vctrl, dst_cid);
3194 if (!admin)
3195 return -ENOENT;
3196
3197 vcap_disable_rules(vctrl, ndev, dst_cid);
3198 dst_cid = vcap_get_next_chain(vctrl, ndev, dst_cid);
3199 }
3200
3201 vcap_lock(found);
3202 list_del(&eport->list);
3203 vcap_unlock(found);
3204 kfree(eport);
3205 return 0;
3206 }
3207
3208 /* Enable/Disable the VCAP instance lookups */
vcap_enable_lookups(struct vcap_control * vctrl,struct net_device * ndev,int src_cid,int dst_cid,unsigned long cookie,bool enable)3209 int vcap_enable_lookups(struct vcap_control *vctrl, struct net_device *ndev,
3210 int src_cid, int dst_cid, unsigned long cookie,
3211 bool enable)
3212 {
3213 int err;
3214
3215 err = vcap_api_check(vctrl);
3216 if (err)
3217 return err;
3218
3219 if (!ndev)
3220 return -ENODEV;
3221
3222 /* Source and destination must be the first chain in a lookup */
3223 if (src_cid % VCAP_CID_LOOKUP_SIZE)
3224 return -EFAULT;
3225 if (dst_cid % VCAP_CID_LOOKUP_SIZE)
3226 return -EFAULT;
3227
3228 if (enable) {
3229 if (vcap_is_enabled(vctrl, ndev, dst_cid))
3230 return -EADDRINUSE;
3231 if (vcap_is_chain_used(vctrl, ndev, src_cid))
3232 return -EADDRNOTAVAIL;
3233 err = vcap_enable(vctrl, ndev, cookie, src_cid, dst_cid);
3234 } else {
3235 err = vcap_disable(vctrl, ndev, cookie);
3236 }
3237
3238 return err;
3239 }
3240 EXPORT_SYMBOL_GPL(vcap_enable_lookups);
3241
3242 /* Is this chain id the last lookup of all VCAPs */
vcap_is_last_chain(struct vcap_control * vctrl,int cid,bool ingress)3243 bool vcap_is_last_chain(struct vcap_control *vctrl, int cid, bool ingress)
3244 {
3245 struct vcap_admin *admin;
3246 int lookup;
3247
3248 if (vcap_api_check(vctrl))
3249 return false;
3250
3251 admin = vcap_find_admin(vctrl, cid);
3252 if (!admin)
3253 return false;
3254
3255 if (!vcap_admin_is_last(vctrl, admin, ingress))
3256 return false;
3257
3258 /* This must be the last lookup in this VCAP type */
3259 lookup = vcap_chain_id_to_lookup(admin, cid);
3260 return lookup == admin->lookups - 1;
3261 }
3262 EXPORT_SYMBOL_GPL(vcap_is_last_chain);
3263
3264 /* Set a rule counter id (for certain vcaps only) */
vcap_rule_set_counter_id(struct vcap_rule * rule,u32 counter_id)3265 void vcap_rule_set_counter_id(struct vcap_rule *rule, u32 counter_id)
3266 {
3267 struct vcap_rule_internal *ri = to_intrule(rule);
3268
3269 ri->counter_id = counter_id;
3270 }
3271 EXPORT_SYMBOL_GPL(vcap_rule_set_counter_id);
3272
vcap_rule_set_counter(struct vcap_rule * rule,struct vcap_counter * ctr)3273 int vcap_rule_set_counter(struct vcap_rule *rule, struct vcap_counter *ctr)
3274 {
3275 struct vcap_rule_internal *ri = to_intrule(rule);
3276 int err;
3277
3278 err = vcap_api_check(ri->vctrl);
3279 if (err)
3280 return err;
3281 if (!ctr) {
3282 pr_err("%s:%d: counter is missing\n", __func__, __LINE__);
3283 return -EINVAL;
3284 }
3285
3286 vcap_lock(ri->admin);
3287 err = vcap_write_counter(ri, ctr);
3288 vcap_unlock(ri->admin);
3289
3290 return err;
3291 }
3292 EXPORT_SYMBOL_GPL(vcap_rule_set_counter);
3293
vcap_rule_get_counter(struct vcap_rule * rule,struct vcap_counter * ctr)3294 int vcap_rule_get_counter(struct vcap_rule *rule, struct vcap_counter *ctr)
3295 {
3296 struct vcap_rule_internal *ri = to_intrule(rule);
3297 int err;
3298
3299 err = vcap_api_check(ri->vctrl);
3300 if (err)
3301 return err;
3302 if (!ctr) {
3303 pr_err("%s:%d: counter is missing\n", __func__, __LINE__);
3304 return -EINVAL;
3305 }
3306
3307 vcap_lock(ri->admin);
3308 err = vcap_read_counter(ri, ctr);
3309 vcap_unlock(ri->admin);
3310
3311 return err;
3312 }
3313 EXPORT_SYMBOL_GPL(vcap_rule_get_counter);
3314
3315 /* Get a copy of a client key field */
vcap_rule_get_key(struct vcap_rule * rule,enum vcap_key_field key,struct vcap_client_keyfield * ckf)3316 static int vcap_rule_get_key(struct vcap_rule *rule,
3317 enum vcap_key_field key,
3318 struct vcap_client_keyfield *ckf)
3319 {
3320 struct vcap_client_keyfield *field;
3321
3322 field = vcap_find_keyfield(rule, key);
3323 if (!field)
3324 return -EINVAL;
3325 memcpy(ckf, field, sizeof(*ckf));
3326 INIT_LIST_HEAD(&ckf->ctrl.list);
3327 return 0;
3328 }
3329
3330 /* Find a keyset having the same size as the provided rule, where the keyset
3331 * does not have a type id.
3332 */
vcap_rule_get_untyped_keyset(struct vcap_rule_internal * ri,struct vcap_keyset_list * matches)3333 static int vcap_rule_get_untyped_keyset(struct vcap_rule_internal *ri,
3334 struct vcap_keyset_list *matches)
3335 {
3336 struct vcap_control *vctrl = ri->vctrl;
3337 enum vcap_type vt = ri->admin->vtype;
3338 const struct vcap_set *keyfield_set;
3339 int idx;
3340
3341 keyfield_set = vctrl->vcaps[vt].keyfield_set;
3342 for (idx = 0; idx < vctrl->vcaps[vt].keyfield_set_size; ++idx) {
3343 if (keyfield_set[idx].sw_per_item == ri->keyset_sw &&
3344 keyfield_set[idx].type_id == (u8)-1) {
3345 vcap_keyset_list_add(matches, idx);
3346 return 0;
3347 }
3348 }
3349 return -EINVAL;
3350 }
3351
3352 /* Get the keysets that matches the rule key type/mask */
vcap_rule_get_keysets(struct vcap_rule_internal * ri,struct vcap_keyset_list * matches)3353 int vcap_rule_get_keysets(struct vcap_rule_internal *ri,
3354 struct vcap_keyset_list *matches)
3355 {
3356 struct vcap_control *vctrl = ri->vctrl;
3357 enum vcap_type vt = ri->admin->vtype;
3358 const struct vcap_set *keyfield_set;
3359 struct vcap_client_keyfield kf = {};
3360 u32 value, mask;
3361 int err, idx;
3362
3363 err = vcap_rule_get_key(&ri->data, VCAP_KF_TYPE, &kf);
3364 if (err)
3365 return vcap_rule_get_untyped_keyset(ri, matches);
3366
3367 if (kf.ctrl.type == VCAP_FIELD_BIT) {
3368 value = kf.data.u1.value;
3369 mask = kf.data.u1.mask;
3370 } else if (kf.ctrl.type == VCAP_FIELD_U32) {
3371 value = kf.data.u32.value;
3372 mask = kf.data.u32.mask;
3373 } else {
3374 return -EINVAL;
3375 }
3376
3377 keyfield_set = vctrl->vcaps[vt].keyfield_set;
3378 for (idx = 0; idx < vctrl->vcaps[vt].keyfield_set_size; ++idx) {
3379 if (keyfield_set[idx].sw_per_item != ri->keyset_sw)
3380 continue;
3381
3382 if (keyfield_set[idx].type_id == (u8)-1) {
3383 vcap_keyset_list_add(matches, idx);
3384 continue;
3385 }
3386
3387 if ((keyfield_set[idx].type_id & mask) == value)
3388 vcap_keyset_list_add(matches, idx);
3389 }
3390 if (matches->cnt > 0)
3391 return 0;
3392
3393 return -EINVAL;
3394 }
3395
3396 /* Collect packet counts from all rules with the same cookie */
vcap_get_rule_count_by_cookie(struct vcap_control * vctrl,struct vcap_counter * ctr,u64 cookie)3397 int vcap_get_rule_count_by_cookie(struct vcap_control *vctrl,
3398 struct vcap_counter *ctr, u64 cookie)
3399 {
3400 struct vcap_rule_internal *ri;
3401 struct vcap_counter temp = {};
3402 struct vcap_admin *admin;
3403 int err;
3404
3405 err = vcap_api_check(vctrl);
3406 if (err)
3407 return err;
3408
3409 /* Iterate all rules in each VCAP instance */
3410 list_for_each_entry(admin, &vctrl->list, list) {
3411 vcap_lock(admin);
3412 list_for_each_entry(ri, &admin->rules, list) {
3413 if (ri->data.cookie != cookie)
3414 continue;
3415
3416 err = vcap_read_counter(ri, &temp);
3417 if (err)
3418 goto unlock;
3419 ctr->value += temp.value;
3420
3421 /* Reset the rule counter */
3422 temp.value = 0;
3423 temp.sticky = 0;
3424 err = vcap_write_counter(ri, &temp);
3425 if (err)
3426 goto unlock;
3427 }
3428 vcap_unlock(admin);
3429 }
3430 return err;
3431
3432 unlock:
3433 vcap_unlock(admin);
3434 return err;
3435 }
3436 EXPORT_SYMBOL_GPL(vcap_get_rule_count_by_cookie);
3437
vcap_rule_mod_key(struct vcap_rule * rule,enum vcap_key_field key,enum vcap_field_type ftype,struct vcap_client_keyfield_data * data)3438 static int vcap_rule_mod_key(struct vcap_rule *rule,
3439 enum vcap_key_field key,
3440 enum vcap_field_type ftype,
3441 struct vcap_client_keyfield_data *data)
3442 {
3443 struct vcap_client_keyfield *field;
3444
3445 field = vcap_find_keyfield(rule, key);
3446 if (!field)
3447 return vcap_rule_add_key(rule, key, ftype, data);
3448 memcpy(&field->data, data, sizeof(field->data));
3449 return 0;
3450 }
3451
3452 /* Modify a 32 bit key field with value and mask in the rule */
vcap_rule_mod_key_u32(struct vcap_rule * rule,enum vcap_key_field key,u32 value,u32 mask)3453 int vcap_rule_mod_key_u32(struct vcap_rule *rule, enum vcap_key_field key,
3454 u32 value, u32 mask)
3455 {
3456 struct vcap_client_keyfield_data data;
3457
3458 data.u32.value = value;
3459 data.u32.mask = mask;
3460 return vcap_rule_mod_key(rule, key, VCAP_FIELD_U32, &data);
3461 }
3462 EXPORT_SYMBOL_GPL(vcap_rule_mod_key_u32);
3463
3464 /* Remove a key field with value and mask in the rule */
vcap_rule_rem_key(struct vcap_rule * rule,enum vcap_key_field key)3465 int vcap_rule_rem_key(struct vcap_rule *rule, enum vcap_key_field key)
3466 {
3467 struct vcap_rule_internal *ri = to_intrule(rule);
3468 struct vcap_client_keyfield *field;
3469
3470 field = vcap_find_keyfield(rule, key);
3471 if (!field) {
3472 pr_err("%s:%d: key %s is not in the rule\n",
3473 __func__, __LINE__, vcap_keyfield_name(ri->vctrl, key));
3474 return -EINVAL;
3475 }
3476 /* Deallocate the key field */
3477 list_del(&field->ctrl.list);
3478 kfree(field);
3479 return 0;
3480 }
3481 EXPORT_SYMBOL_GPL(vcap_rule_rem_key);
3482
vcap_rule_mod_action(struct vcap_rule * rule,enum vcap_action_field action,enum vcap_field_type ftype,struct vcap_client_actionfield_data * data)3483 static int vcap_rule_mod_action(struct vcap_rule *rule,
3484 enum vcap_action_field action,
3485 enum vcap_field_type ftype,
3486 struct vcap_client_actionfield_data *data)
3487 {
3488 struct vcap_client_actionfield *field;
3489
3490 field = vcap_find_actionfield(rule, action);
3491 if (!field)
3492 return vcap_rule_add_action(rule, action, ftype, data);
3493 memcpy(&field->data, data, sizeof(field->data));
3494 return 0;
3495 }
3496
3497 /* Modify a 32 bit action field with value in the rule */
vcap_rule_mod_action_u32(struct vcap_rule * rule,enum vcap_action_field action,u32 value)3498 int vcap_rule_mod_action_u32(struct vcap_rule *rule,
3499 enum vcap_action_field action,
3500 u32 value)
3501 {
3502 struct vcap_client_actionfield_data data;
3503
3504 data.u32.value = value;
3505 return vcap_rule_mod_action(rule, action, VCAP_FIELD_U32, &data);
3506 }
3507 EXPORT_SYMBOL_GPL(vcap_rule_mod_action_u32);
3508
3509 /* Drop keys in a keylist and any keys that are not supported by the keyset */
vcap_filter_rule_keys(struct vcap_rule * rule,enum vcap_key_field keylist[],int length,bool drop_unsupported)3510 int vcap_filter_rule_keys(struct vcap_rule *rule,
3511 enum vcap_key_field keylist[], int length,
3512 bool drop_unsupported)
3513 {
3514 struct vcap_rule_internal *ri = to_intrule(rule);
3515 struct vcap_client_keyfield *ckf, *next_ckf;
3516 const struct vcap_field *fields;
3517 enum vcap_key_field key;
3518 int err = 0;
3519 int idx;
3520
3521 if (length > 0) {
3522 err = -EEXIST;
3523 list_for_each_entry_safe(ckf, next_ckf,
3524 &ri->data.keyfields, ctrl.list) {
3525 key = ckf->ctrl.key;
3526 for (idx = 0; idx < length; ++idx)
3527 if (key == keylist[idx]) {
3528 list_del(&ckf->ctrl.list);
3529 kfree(ckf);
3530 idx++;
3531 err = 0;
3532 }
3533 }
3534 }
3535 if (drop_unsupported) {
3536 err = -EEXIST;
3537 fields = vcap_keyfields(ri->vctrl, ri->admin->vtype,
3538 rule->keyset);
3539 if (!fields)
3540 return err;
3541 list_for_each_entry_safe(ckf, next_ckf,
3542 &ri->data.keyfields, ctrl.list) {
3543 key = ckf->ctrl.key;
3544 if (fields[key].width == 0) {
3545 list_del(&ckf->ctrl.list);
3546 kfree(ckf);
3547 err = 0;
3548 }
3549 }
3550 }
3551 return err;
3552 }
3553 EXPORT_SYMBOL_GPL(vcap_filter_rule_keys);
3554
3555 /* Select the keyset from the list that results in the smallest rule size */
3556 enum vcap_keyfield_set
vcap_select_min_rule_keyset(struct vcap_control * vctrl,enum vcap_type vtype,struct vcap_keyset_list * kslist)3557 vcap_select_min_rule_keyset(struct vcap_control *vctrl,
3558 enum vcap_type vtype,
3559 struct vcap_keyset_list *kslist)
3560 {
3561 enum vcap_keyfield_set ret = VCAP_KFS_NO_VALUE;
3562 const struct vcap_set *kset;
3563 int max = 100, idx;
3564
3565 for (idx = 0; idx < kslist->cnt; ++idx) {
3566 kset = vcap_keyfieldset(vctrl, vtype, kslist->keysets[idx]);
3567 if (!kset)
3568 continue;
3569 if (kset->sw_per_item >= max)
3570 continue;
3571 max = kset->sw_per_item;
3572 ret = kslist->keysets[idx];
3573 }
3574 return ret;
3575 }
3576 EXPORT_SYMBOL_GPL(vcap_select_min_rule_keyset);
3577
3578 /* Make a full copy of an existing rule with a new rule id */
vcap_copy_rule(struct vcap_rule * erule)3579 struct vcap_rule *vcap_copy_rule(struct vcap_rule *erule)
3580 {
3581 struct vcap_rule_internal *ri = to_intrule(erule);
3582 struct vcap_client_actionfield *caf;
3583 struct vcap_client_keyfield *ckf;
3584 struct vcap_rule *rule;
3585 int err;
3586
3587 err = vcap_api_check(ri->vctrl);
3588 if (err)
3589 return ERR_PTR(err);
3590
3591 rule = vcap_alloc_rule(ri->vctrl, ri->ndev, ri->data.vcap_chain_id,
3592 ri->data.user, ri->data.priority, 0);
3593 if (IS_ERR(rule))
3594 return rule;
3595
3596 list_for_each_entry(ckf, &ri->data.keyfields, ctrl.list) {
3597 /* Add a key duplicate in the new rule */
3598 err = vcap_rule_add_key(rule,
3599 ckf->ctrl.key,
3600 ckf->ctrl.type,
3601 &ckf->data);
3602 if (err)
3603 goto err;
3604 }
3605
3606 list_for_each_entry(caf, &ri->data.actionfields, ctrl.list) {
3607 /* Add a action duplicate in the new rule */
3608 err = vcap_rule_add_action(rule,
3609 caf->ctrl.action,
3610 caf->ctrl.type,
3611 &caf->data);
3612 if (err)
3613 goto err;
3614 }
3615 return rule;
3616 err:
3617 vcap_free_rule(rule);
3618 return ERR_PTR(err);
3619 }
3620 EXPORT_SYMBOL_GPL(vcap_copy_rule);
3621
3622 #ifdef CONFIG_VCAP_KUNIT_TEST
3623 #include "vcap_api_kunit.c"
3624 #endif
3625