1 // SPDX-License-Identifier: BSD-3-Clause OR GPL-2.0
2 /* Copyright (c) 2017-2018 Mellanox Technologies. All rights reserved */
3
4 #include <linux/kernel.h>
5 #include <linux/slab.h>
6 #include <linux/list.h>
7 #include <linux/errno.h>
8
9 #include "item.h"
10 #include "core_acl_flex_keys.h"
11
12 /* For the purpose of the driver, define an internal storage scratchpad
13 * that will be used to store key/mask values. For each defined element type
14 * define an internal storage geometry.
15 *
16 * When adding new elements, MLXSW_AFK_ELEMENT_STORAGE_SIZE must be increased
17 * accordingly.
18 */
19 static const struct mlxsw_afk_element_info mlxsw_afk_element_infos[] = {
20 MLXSW_AFK_ELEMENT_INFO_U32(SRC_SYS_PORT, 0x00, 16, 16),
21 MLXSW_AFK_ELEMENT_INFO_BUF(DMAC_32_47, 0x04, 2),
22 MLXSW_AFK_ELEMENT_INFO_BUF(DMAC_0_31, 0x06, 4),
23 MLXSW_AFK_ELEMENT_INFO_BUF(SMAC_32_47, 0x0A, 2),
24 MLXSW_AFK_ELEMENT_INFO_BUF(SMAC_0_31, 0x0C, 4),
25 MLXSW_AFK_ELEMENT_INFO_U32(ETHERTYPE, 0x00, 0, 16),
26 MLXSW_AFK_ELEMENT_INFO_U32(IP_PROTO, 0x10, 0, 8),
27 MLXSW_AFK_ELEMENT_INFO_U32(VID, 0x10, 8, 12),
28 MLXSW_AFK_ELEMENT_INFO_U32(PCP, 0x10, 20, 3),
29 MLXSW_AFK_ELEMENT_INFO_U32(TCP_FLAGS, 0x10, 23, 9),
30 MLXSW_AFK_ELEMENT_INFO_U32(DST_L4_PORT, 0x14, 0, 16),
31 MLXSW_AFK_ELEMENT_INFO_U32(SRC_L4_PORT, 0x14, 16, 16),
32 MLXSW_AFK_ELEMENT_INFO_U32(IP_TTL_, 0x18, 0, 8),
33 MLXSW_AFK_ELEMENT_INFO_U32(IP_ECN, 0x18, 9, 2),
34 MLXSW_AFK_ELEMENT_INFO_U32(IP_DSCP, 0x18, 11, 6),
35 MLXSW_AFK_ELEMENT_INFO_U32(VIRT_ROUTER_8_10, 0x18, 17, 3),
36 MLXSW_AFK_ELEMENT_INFO_U32(VIRT_ROUTER_0_7, 0x18, 20, 8),
37 MLXSW_AFK_ELEMENT_INFO_BUF(SRC_IP_96_127, 0x20, 4),
38 MLXSW_AFK_ELEMENT_INFO_BUF(SRC_IP_64_95, 0x24, 4),
39 MLXSW_AFK_ELEMENT_INFO_BUF(SRC_IP_32_63, 0x28, 4),
40 MLXSW_AFK_ELEMENT_INFO_BUF(SRC_IP_0_31, 0x2C, 4),
41 MLXSW_AFK_ELEMENT_INFO_BUF(DST_IP_96_127, 0x30, 4),
42 MLXSW_AFK_ELEMENT_INFO_BUF(DST_IP_64_95, 0x34, 4),
43 MLXSW_AFK_ELEMENT_INFO_BUF(DST_IP_32_63, 0x38, 4),
44 MLXSW_AFK_ELEMENT_INFO_BUF(DST_IP_0_31, 0x3C, 4),
45 };
46
47 struct mlxsw_afk {
48 struct list_head key_info_list;
49 unsigned int max_blocks;
50 const struct mlxsw_afk_ops *ops;
51 const struct mlxsw_afk_block *blocks;
52 unsigned int blocks_count;
53 };
54
mlxsw_afk_blocks_check(struct mlxsw_afk * mlxsw_afk)55 static bool mlxsw_afk_blocks_check(struct mlxsw_afk *mlxsw_afk)
56 {
57 int i;
58 int j;
59
60 for (i = 0; i < mlxsw_afk->blocks_count; i++) {
61 const struct mlxsw_afk_block *block = &mlxsw_afk->blocks[i];
62
63 for (j = 0; j < block->instances_count; j++) {
64 const struct mlxsw_afk_element_info *elinfo;
65 struct mlxsw_afk_element_inst *elinst;
66
67 elinst = &block->instances[j];
68 elinfo = &mlxsw_afk_element_infos[elinst->element];
69 if (elinst->type != elinfo->type ||
70 (!elinst->avoid_size_check &&
71 elinst->item.size.bits !=
72 elinfo->item.size.bits))
73 return false;
74 }
75 }
76 return true;
77 }
78
mlxsw_afk_create(unsigned int max_blocks,const struct mlxsw_afk_ops * ops)79 struct mlxsw_afk *mlxsw_afk_create(unsigned int max_blocks,
80 const struct mlxsw_afk_ops *ops)
81 {
82 struct mlxsw_afk *mlxsw_afk;
83
84 mlxsw_afk = kzalloc(sizeof(*mlxsw_afk), GFP_KERNEL);
85 if (!mlxsw_afk)
86 return NULL;
87 INIT_LIST_HEAD(&mlxsw_afk->key_info_list);
88 mlxsw_afk->max_blocks = max_blocks;
89 mlxsw_afk->ops = ops;
90 mlxsw_afk->blocks = ops->blocks;
91 mlxsw_afk->blocks_count = ops->blocks_count;
92 WARN_ON(!mlxsw_afk_blocks_check(mlxsw_afk));
93 return mlxsw_afk;
94 }
95 EXPORT_SYMBOL(mlxsw_afk_create);
96
mlxsw_afk_destroy(struct mlxsw_afk * mlxsw_afk)97 void mlxsw_afk_destroy(struct mlxsw_afk *mlxsw_afk)
98 {
99 WARN_ON(!list_empty(&mlxsw_afk->key_info_list));
100 kfree(mlxsw_afk);
101 }
102 EXPORT_SYMBOL(mlxsw_afk_destroy);
103
104 struct mlxsw_afk_key_info {
105 struct list_head list;
106 unsigned int ref_count;
107 unsigned int blocks_count;
108 int element_to_block[MLXSW_AFK_ELEMENT_MAX]; /* index is element, value
109 * is index inside "blocks"
110 */
111 struct mlxsw_afk_element_usage elusage;
112 const struct mlxsw_afk_block *blocks[];
113 };
114
115 static bool
mlxsw_afk_key_info_elements_eq(struct mlxsw_afk_key_info * key_info,struct mlxsw_afk_element_usage * elusage)116 mlxsw_afk_key_info_elements_eq(struct mlxsw_afk_key_info *key_info,
117 struct mlxsw_afk_element_usage *elusage)
118 {
119 return memcmp(&key_info->elusage, elusage, sizeof(*elusage)) == 0;
120 }
121
122 static struct mlxsw_afk_key_info *
mlxsw_afk_key_info_find(struct mlxsw_afk * mlxsw_afk,struct mlxsw_afk_element_usage * elusage)123 mlxsw_afk_key_info_find(struct mlxsw_afk *mlxsw_afk,
124 struct mlxsw_afk_element_usage *elusage)
125 {
126 struct mlxsw_afk_key_info *key_info;
127
128 list_for_each_entry(key_info, &mlxsw_afk->key_info_list, list) {
129 if (mlxsw_afk_key_info_elements_eq(key_info, elusage))
130 return key_info;
131 }
132 return NULL;
133 }
134
135 struct mlxsw_afk_picker {
136 struct {
137 DECLARE_BITMAP(element, MLXSW_AFK_ELEMENT_MAX);
138 unsigned int total;
139 } hits[0];
140 };
141
mlxsw_afk_picker_count_hits(struct mlxsw_afk * mlxsw_afk,struct mlxsw_afk_picker * picker,enum mlxsw_afk_element element)142 static void mlxsw_afk_picker_count_hits(struct mlxsw_afk *mlxsw_afk,
143 struct mlxsw_afk_picker *picker,
144 enum mlxsw_afk_element element)
145 {
146 int i;
147 int j;
148
149 for (i = 0; i < mlxsw_afk->blocks_count; i++) {
150 const struct mlxsw_afk_block *block = &mlxsw_afk->blocks[i];
151
152 for (j = 0; j < block->instances_count; j++) {
153 struct mlxsw_afk_element_inst *elinst;
154
155 elinst = &block->instances[j];
156 if (elinst->element == element) {
157 __set_bit(element, picker->hits[i].element);
158 picker->hits[i].total++;
159 }
160 }
161 }
162 }
163
mlxsw_afk_picker_subtract_hits(struct mlxsw_afk * mlxsw_afk,struct mlxsw_afk_picker * picker,int block_index)164 static void mlxsw_afk_picker_subtract_hits(struct mlxsw_afk *mlxsw_afk,
165 struct mlxsw_afk_picker *picker,
166 int block_index)
167 {
168 DECLARE_BITMAP(hits_element, MLXSW_AFK_ELEMENT_MAX);
169 int i;
170 int j;
171
172 memcpy(&hits_element, &picker->hits[block_index].element,
173 sizeof(hits_element));
174
175 for (i = 0; i < mlxsw_afk->blocks_count; i++) {
176 for_each_set_bit(j, hits_element, MLXSW_AFK_ELEMENT_MAX) {
177 if (__test_and_clear_bit(j, picker->hits[i].element))
178 picker->hits[i].total--;
179 }
180 }
181 }
182
mlxsw_afk_picker_most_hits_get(struct mlxsw_afk * mlxsw_afk,struct mlxsw_afk_picker * picker)183 static int mlxsw_afk_picker_most_hits_get(struct mlxsw_afk *mlxsw_afk,
184 struct mlxsw_afk_picker *picker)
185 {
186 int most_index = -EINVAL; /* Should never happen to return this */
187 int most_hits = 0;
188 int i;
189
190 for (i = 0; i < mlxsw_afk->blocks_count; i++) {
191 if (picker->hits[i].total > most_hits) {
192 most_hits = picker->hits[i].total;
193 most_index = i;
194 }
195 }
196 return most_index;
197 }
198
mlxsw_afk_picker_key_info_add(struct mlxsw_afk * mlxsw_afk,struct mlxsw_afk_picker * picker,int block_index,struct mlxsw_afk_key_info * key_info)199 static int mlxsw_afk_picker_key_info_add(struct mlxsw_afk *mlxsw_afk,
200 struct mlxsw_afk_picker *picker,
201 int block_index,
202 struct mlxsw_afk_key_info *key_info)
203 {
204 enum mlxsw_afk_element element;
205
206 if (key_info->blocks_count == mlxsw_afk->max_blocks)
207 return -EINVAL;
208
209 for_each_set_bit(element, picker->hits[block_index].element,
210 MLXSW_AFK_ELEMENT_MAX) {
211 key_info->element_to_block[element] = key_info->blocks_count;
212 mlxsw_afk_element_usage_add(&key_info->elusage, element);
213 }
214
215 key_info->blocks[key_info->blocks_count] =
216 &mlxsw_afk->blocks[block_index];
217 key_info->blocks_count++;
218 return 0;
219 }
220
mlxsw_afk_picker(struct mlxsw_afk * mlxsw_afk,struct mlxsw_afk_key_info * key_info,struct mlxsw_afk_element_usage * elusage)221 static int mlxsw_afk_picker(struct mlxsw_afk *mlxsw_afk,
222 struct mlxsw_afk_key_info *key_info,
223 struct mlxsw_afk_element_usage *elusage)
224 {
225 struct mlxsw_afk_picker *picker;
226 enum mlxsw_afk_element element;
227 size_t alloc_size;
228 int err;
229
230 alloc_size = sizeof(picker->hits[0]) * mlxsw_afk->blocks_count;
231 picker = kzalloc(alloc_size, GFP_KERNEL);
232 if (!picker)
233 return -ENOMEM;
234
235 /* Since the same elements could be present in multiple blocks,
236 * we must find out optimal block list in order to make the
237 * block count as low as possible.
238 *
239 * First, we count hits. We go over all available blocks and count
240 * how many of requested elements are covered by each.
241 *
242 * Then in loop, we find block with most hits and add it to
243 * output key_info. Then we have to subtract this block hits so
244 * the next iteration will find most suitable block for
245 * the rest of requested elements.
246 */
247
248 mlxsw_afk_element_usage_for_each(element, elusage)
249 mlxsw_afk_picker_count_hits(mlxsw_afk, picker, element);
250
251 do {
252 int block_index;
253
254 block_index = mlxsw_afk_picker_most_hits_get(mlxsw_afk, picker);
255 if (block_index < 0) {
256 err = block_index;
257 goto out;
258 }
259 err = mlxsw_afk_picker_key_info_add(mlxsw_afk, picker,
260 block_index, key_info);
261 if (err)
262 goto out;
263 mlxsw_afk_picker_subtract_hits(mlxsw_afk, picker, block_index);
264 } while (!mlxsw_afk_key_info_elements_eq(key_info, elusage));
265
266 err = 0;
267 out:
268 kfree(picker);
269 return err;
270 }
271
272 static struct mlxsw_afk_key_info *
mlxsw_afk_key_info_create(struct mlxsw_afk * mlxsw_afk,struct mlxsw_afk_element_usage * elusage)273 mlxsw_afk_key_info_create(struct mlxsw_afk *mlxsw_afk,
274 struct mlxsw_afk_element_usage *elusage)
275 {
276 struct mlxsw_afk_key_info *key_info;
277 int err;
278
279 key_info = kzalloc(struct_size(key_info, blocks, mlxsw_afk->max_blocks),
280 GFP_KERNEL);
281 if (!key_info)
282 return ERR_PTR(-ENOMEM);
283 err = mlxsw_afk_picker(mlxsw_afk, key_info, elusage);
284 if (err)
285 goto err_picker;
286 list_add(&key_info->list, &mlxsw_afk->key_info_list);
287 key_info->ref_count = 1;
288 return key_info;
289
290 err_picker:
291 kfree(key_info);
292 return ERR_PTR(err);
293 }
294
mlxsw_afk_key_info_destroy(struct mlxsw_afk_key_info * key_info)295 static void mlxsw_afk_key_info_destroy(struct mlxsw_afk_key_info *key_info)
296 {
297 list_del(&key_info->list);
298 kfree(key_info);
299 }
300
301 struct mlxsw_afk_key_info *
mlxsw_afk_key_info_get(struct mlxsw_afk * mlxsw_afk,struct mlxsw_afk_element_usage * elusage)302 mlxsw_afk_key_info_get(struct mlxsw_afk *mlxsw_afk,
303 struct mlxsw_afk_element_usage *elusage)
304 {
305 struct mlxsw_afk_key_info *key_info;
306
307 key_info = mlxsw_afk_key_info_find(mlxsw_afk, elusage);
308 if (key_info) {
309 key_info->ref_count++;
310 return key_info;
311 }
312 return mlxsw_afk_key_info_create(mlxsw_afk, elusage);
313 }
314 EXPORT_SYMBOL(mlxsw_afk_key_info_get);
315
mlxsw_afk_key_info_put(struct mlxsw_afk_key_info * key_info)316 void mlxsw_afk_key_info_put(struct mlxsw_afk_key_info *key_info)
317 {
318 if (--key_info->ref_count)
319 return;
320 mlxsw_afk_key_info_destroy(key_info);
321 }
322 EXPORT_SYMBOL(mlxsw_afk_key_info_put);
323
mlxsw_afk_key_info_subset(struct mlxsw_afk_key_info * key_info,struct mlxsw_afk_element_usage * elusage)324 bool mlxsw_afk_key_info_subset(struct mlxsw_afk_key_info *key_info,
325 struct mlxsw_afk_element_usage *elusage)
326 {
327 return mlxsw_afk_element_usage_subset(elusage, &key_info->elusage);
328 }
329 EXPORT_SYMBOL(mlxsw_afk_key_info_subset);
330
331 static const struct mlxsw_afk_element_inst *
mlxsw_afk_block_elinst_get(const struct mlxsw_afk_block * block,enum mlxsw_afk_element element)332 mlxsw_afk_block_elinst_get(const struct mlxsw_afk_block *block,
333 enum mlxsw_afk_element element)
334 {
335 int i;
336
337 for (i = 0; i < block->instances_count; i++) {
338 struct mlxsw_afk_element_inst *elinst;
339
340 elinst = &block->instances[i];
341 if (elinst->element == element)
342 return elinst;
343 }
344 return NULL;
345 }
346
347 static const struct mlxsw_afk_element_inst *
mlxsw_afk_key_info_elinst_get(struct mlxsw_afk_key_info * key_info,enum mlxsw_afk_element element,int * p_block_index)348 mlxsw_afk_key_info_elinst_get(struct mlxsw_afk_key_info *key_info,
349 enum mlxsw_afk_element element,
350 int *p_block_index)
351 {
352 const struct mlxsw_afk_element_inst *elinst;
353 const struct mlxsw_afk_block *block;
354 int block_index;
355
356 if (WARN_ON(!test_bit(element, key_info->elusage.usage)))
357 return NULL;
358 block_index = key_info->element_to_block[element];
359 block = key_info->blocks[block_index];
360
361 elinst = mlxsw_afk_block_elinst_get(block, element);
362 if (WARN_ON(!elinst))
363 return NULL;
364
365 *p_block_index = block_index;
366 return elinst;
367 }
368
369 u16
mlxsw_afk_key_info_block_encoding_get(const struct mlxsw_afk_key_info * key_info,int block_index)370 mlxsw_afk_key_info_block_encoding_get(const struct mlxsw_afk_key_info *key_info,
371 int block_index)
372 {
373 return key_info->blocks[block_index]->encoding;
374 }
375 EXPORT_SYMBOL(mlxsw_afk_key_info_block_encoding_get);
376
377 unsigned int
mlxsw_afk_key_info_blocks_count_get(const struct mlxsw_afk_key_info * key_info)378 mlxsw_afk_key_info_blocks_count_get(const struct mlxsw_afk_key_info *key_info)
379 {
380 return key_info->blocks_count;
381 }
382 EXPORT_SYMBOL(mlxsw_afk_key_info_blocks_count_get);
383
mlxsw_afk_values_add_u32(struct mlxsw_afk_element_values * values,enum mlxsw_afk_element element,u32 key_value,u32 mask_value)384 void mlxsw_afk_values_add_u32(struct mlxsw_afk_element_values *values,
385 enum mlxsw_afk_element element,
386 u32 key_value, u32 mask_value)
387 {
388 const struct mlxsw_afk_element_info *elinfo =
389 &mlxsw_afk_element_infos[element];
390 const struct mlxsw_item *storage_item = &elinfo->item;
391
392 if (!mask_value)
393 return;
394 if (WARN_ON(elinfo->type != MLXSW_AFK_ELEMENT_TYPE_U32))
395 return;
396 __mlxsw_item_set32(values->storage.key, storage_item, 0, key_value);
397 __mlxsw_item_set32(values->storage.mask, storage_item, 0, mask_value);
398 mlxsw_afk_element_usage_add(&values->elusage, element);
399 }
400 EXPORT_SYMBOL(mlxsw_afk_values_add_u32);
401
mlxsw_afk_values_add_buf(struct mlxsw_afk_element_values * values,enum mlxsw_afk_element element,const char * key_value,const char * mask_value,unsigned int len)402 void mlxsw_afk_values_add_buf(struct mlxsw_afk_element_values *values,
403 enum mlxsw_afk_element element,
404 const char *key_value, const char *mask_value,
405 unsigned int len)
406 {
407 const struct mlxsw_afk_element_info *elinfo =
408 &mlxsw_afk_element_infos[element];
409 const struct mlxsw_item *storage_item = &elinfo->item;
410
411 if (!memchr_inv(mask_value, 0, len)) /* If mask is zero */
412 return;
413 if (WARN_ON(elinfo->type != MLXSW_AFK_ELEMENT_TYPE_BUF) ||
414 WARN_ON(elinfo->item.size.bytes != len))
415 return;
416 __mlxsw_item_memcpy_to(values->storage.key, key_value,
417 storage_item, 0);
418 __mlxsw_item_memcpy_to(values->storage.mask, mask_value,
419 storage_item, 0);
420 mlxsw_afk_element_usage_add(&values->elusage, element);
421 }
422 EXPORT_SYMBOL(mlxsw_afk_values_add_buf);
423
mlxsw_sp_afk_encode_u32(const struct mlxsw_item * storage_item,const struct mlxsw_item * output_item,char * storage,char * output,int diff)424 static void mlxsw_sp_afk_encode_u32(const struct mlxsw_item *storage_item,
425 const struct mlxsw_item *output_item,
426 char *storage, char *output, int diff)
427 {
428 u32 value;
429
430 value = __mlxsw_item_get32(storage, storage_item, 0);
431 __mlxsw_item_set32(output, output_item, 0, value + diff);
432 }
433
mlxsw_sp_afk_encode_buf(const struct mlxsw_item * storage_item,const struct mlxsw_item * output_item,char * storage,char * output)434 static void mlxsw_sp_afk_encode_buf(const struct mlxsw_item *storage_item,
435 const struct mlxsw_item *output_item,
436 char *storage, char *output)
437 {
438 char *storage_data = __mlxsw_item_data(storage, storage_item, 0);
439 char *output_data = __mlxsw_item_data(output, output_item, 0);
440 size_t len = output_item->size.bytes;
441
442 memcpy(output_data, storage_data, len);
443 }
444
445 static void
mlxsw_sp_afk_encode_one(const struct mlxsw_afk_element_inst * elinst,char * output,char * storage,int u32_diff)446 mlxsw_sp_afk_encode_one(const struct mlxsw_afk_element_inst *elinst,
447 char *output, char *storage, int u32_diff)
448 {
449 const struct mlxsw_item *output_item = &elinst->item;
450 const struct mlxsw_afk_element_info *elinfo;
451 const struct mlxsw_item *storage_item;
452
453 elinfo = &mlxsw_afk_element_infos[elinst->element];
454 storage_item = &elinfo->item;
455 if (elinst->type == MLXSW_AFK_ELEMENT_TYPE_U32)
456 mlxsw_sp_afk_encode_u32(storage_item, output_item,
457 storage, output, u32_diff);
458 else if (elinst->type == MLXSW_AFK_ELEMENT_TYPE_BUF)
459 mlxsw_sp_afk_encode_buf(storage_item, output_item,
460 storage, output);
461 }
462
463 #define MLXSW_SP_AFK_KEY_BLOCK_MAX_SIZE 16
464
mlxsw_afk_encode(struct mlxsw_afk * mlxsw_afk,struct mlxsw_afk_key_info * key_info,struct mlxsw_afk_element_values * values,char * key,char * mask)465 void mlxsw_afk_encode(struct mlxsw_afk *mlxsw_afk,
466 struct mlxsw_afk_key_info *key_info,
467 struct mlxsw_afk_element_values *values,
468 char *key, char *mask)
469 {
470 unsigned int blocks_count =
471 mlxsw_afk_key_info_blocks_count_get(key_info);
472 char block_mask[MLXSW_SP_AFK_KEY_BLOCK_MAX_SIZE];
473 char block_key[MLXSW_SP_AFK_KEY_BLOCK_MAX_SIZE];
474 const struct mlxsw_afk_element_inst *elinst;
475 enum mlxsw_afk_element element;
476 int block_index, i;
477
478 for (i = 0; i < blocks_count; i++) {
479 memset(block_key, 0, MLXSW_SP_AFK_KEY_BLOCK_MAX_SIZE);
480 memset(block_mask, 0, MLXSW_SP_AFK_KEY_BLOCK_MAX_SIZE);
481
482 mlxsw_afk_element_usage_for_each(element, &values->elusage) {
483 elinst = mlxsw_afk_key_info_elinst_get(key_info,
484 element,
485 &block_index);
486 if (!elinst || block_index != i)
487 continue;
488
489 mlxsw_sp_afk_encode_one(elinst, block_key,
490 values->storage.key,
491 elinst->u32_key_diff);
492 mlxsw_sp_afk_encode_one(elinst, block_mask,
493 values->storage.mask, 0);
494 }
495
496 mlxsw_afk->ops->encode_block(key, i, block_key);
497 mlxsw_afk->ops->encode_block(mask, i, block_mask);
498 }
499 }
500 EXPORT_SYMBOL(mlxsw_afk_encode);
501
mlxsw_afk_clear(struct mlxsw_afk * mlxsw_afk,char * key,int block_start,int block_end)502 void mlxsw_afk_clear(struct mlxsw_afk *mlxsw_afk, char *key,
503 int block_start, int block_end)
504 {
505 int i;
506
507 for (i = block_start; i <= block_end; i++)
508 mlxsw_afk->ops->clear_block(key, i);
509 }
510 EXPORT_SYMBOL(mlxsw_afk_clear);
511