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1#
2# Traffic control configuration.
3#
6a2e9b73 4
85ef3e5c 5menuconfig NET_SCHED
6a2e9b73 6 bool "QoS and/or fair queueing"
3c62f75a 7 select NET_SCH_FIFO
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8 ---help---
9 When the kernel has several packets to send out over a network
10 device, it has to decide which ones to send first, which ones to
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11 delay, and which ones to drop. This is the job of the queueing
12 disciplines, several different algorithms for how to do this
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13 "fairly" have been proposed.
14
15 If you say N here, you will get the standard packet scheduler, which
16 is a FIFO (first come, first served). If you say Y here, you will be
17 able to choose from among several alternative algorithms which can
18 then be attached to different network devices. This is useful for
19 example if some of your network devices are real time devices that
20 need a certain minimum data flow rate, or if you need to limit the
21 maximum data flow rate for traffic which matches specified criteria.
22 This code is considered to be experimental.
23
24 To administer these schedulers, you'll need the user-level utilities
25 from the package iproute2+tc at <ftp://ftp.tux.org/pub/net/ip-routing/>.
26 That package also contains some documentation; for more, check out
52ab4ac2 27 <http://linux-net.osdl.org/index.php/Iproute2>.
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28
29 This Quality of Service (QoS) support will enable you to use
30 Differentiated Services (diffserv) and Resource Reservation Protocol
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31 (RSVP) on your Linux router if you also say Y to the corresponding
32 classifiers below. Documentation and software is at
33 <http://diffserv.sourceforge.net/>.
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34
35 If you say Y here and to "/proc file system" below, you will be able
36 to read status information about packet schedulers from the file
37 /proc/net/psched.
38
39 The available schedulers are listed in the following questions; you
40 can say Y to as many as you like. If unsure, say N now.
41
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42if NET_SCHED
43
52ab4ac2 44comment "Queueing/Scheduling"
52ab4ac2 45
1da177e4 46config NET_SCH_CBQ
52ab4ac2 47 tristate "Class Based Queueing (CBQ)"
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48 ---help---
49 Say Y here if you want to use the Class-Based Queueing (CBQ) packet
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50 scheduling algorithm. This algorithm classifies the waiting packets
51 into a tree-like hierarchy of classes; the leaves of this tree are
52 in turn scheduled by separate algorithms.
1da177e4 53
52ab4ac2 54 See the top of <file:net/sched/sch_cbq.c> for more details.
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55
56 CBQ is a commonly used scheduler, so if you're unsure, you should
57 say Y here. Then say Y to all the queueing algorithms below that you
52ab4ac2 58 want to use as leaf disciplines.
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59
60 To compile this code as a module, choose M here: the
61 module will be called sch_cbq.
62
63config NET_SCH_HTB
52ab4ac2 64 tristate "Hierarchical Token Bucket (HTB)"
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65 ---help---
66 Say Y here if you want to use the Hierarchical Token Buckets (HTB)
52ab4ac2 67 packet scheduling algorithm. See
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68 <http://luxik.cdi.cz/~devik/qos/htb/> for complete manual and
69 in-depth articles.
70
52ab4ac2 71 HTB is very similar to CBQ regarding its goals however is has
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72 different properties and different algorithm.
73
74 To compile this code as a module, choose M here: the
75 module will be called sch_htb.
76
77config NET_SCH_HFSC
52ab4ac2 78 tristate "Hierarchical Fair Service Curve (HFSC)"
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79 ---help---
80 Say Y here if you want to use the Hierarchical Fair Service Curve
52ab4ac2 81 (HFSC) packet scheduling algorithm.
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82
83 To compile this code as a module, choose M here: the
84 module will be called sch_hfsc.
85
1da177e4 86config NET_SCH_ATM
52ab4ac2 87 tristate "ATM Virtual Circuits (ATM)"
05b8b0fa 88 depends on ATM
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89 ---help---
90 Say Y here if you want to use the ATM pseudo-scheduler. This
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91 provides a framework for invoking classifiers, which in turn
92 select classes of this queuing discipline. Each class maps
93 the flow(s) it is handling to a given virtual circuit.
94
99acaeb9 95 See the top of <file:net/sched/sch_atm.c> for more details.
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96
97 To compile this code as a module, choose M here: the
98 module will be called sch_atm.
99
100config NET_SCH_PRIO
52ab4ac2 101 tristate "Multi Band Priority Queueing (PRIO)"
52ab4ac2 102 ---help---
1da177e4 103 Say Y here if you want to use an n-band priority queue packet
52ab4ac2 104 scheduler.
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105
106 To compile this code as a module, choose M here: the
107 module will be called sch_prio.
108
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109config NET_SCH_MULTIQ
110 tristate "Hardware Multiqueue-aware Multi Band Queuing (MULTIQ)"
111 ---help---
112 Say Y here if you want to use an n-band queue packet scheduler
113 to support devices that have multiple hardware transmit queues.
114
115 To compile this code as a module, choose M here: the
116 module will be called sch_multiq.
117
1da177e4 118config NET_SCH_RED
52ab4ac2 119 tristate "Random Early Detection (RED)"
52ab4ac2 120 ---help---
1da177e4 121 Say Y here if you want to use the Random Early Detection (RED)
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122 packet scheduling algorithm.
123
124 See the top of <file:net/sched/sch_red.c> for more details.
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125
126 To compile this code as a module, choose M here: the
127 module will be called sch_red.
128
129config NET_SCH_SFQ
52ab4ac2 130 tristate "Stochastic Fairness Queueing (SFQ)"
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131 ---help---
132 Say Y here if you want to use the Stochastic Fairness Queueing (SFQ)
99acaeb9 133 packet scheduling algorithm.
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134
135 See the top of <file:net/sched/sch_sfq.c> for more details.
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136
137 To compile this code as a module, choose M here: the
138 module will be called sch_sfq.
139
140config NET_SCH_TEQL
52ab4ac2 141 tristate "True Link Equalizer (TEQL)"
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142 ---help---
143 Say Y here if you want to use the True Link Equalizer (TLE) packet
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144 scheduling algorithm. This queueing discipline allows the combination
145 of several physical devices into one virtual device.
146
147 See the top of <file:net/sched/sch_teql.c> for more details.
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148
149 To compile this code as a module, choose M here: the
150 module will be called sch_teql.
151
152config NET_SCH_TBF
52ab4ac2 153 tristate "Token Bucket Filter (TBF)"
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154 ---help---
155 Say Y here if you want to use the Token Bucket Filter (TBF) packet
156 scheduling algorithm.
157
158 See the top of <file:net/sched/sch_tbf.c> for more details.
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159
160 To compile this code as a module, choose M here: the
161 module will be called sch_tbf.
162
163config NET_SCH_GRED
52ab4ac2 164 tristate "Generic Random Early Detection (GRED)"
52ab4ac2 165 ---help---
1da177e4 166 Say Y here if you want to use the Generic Random Early Detection
20cc6bef 167 (GRED) packet scheduling algorithm for some of your network devices
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168 (see the top of <file:net/sched/sch_red.c> for details and
169 references about the algorithm).
170
171 To compile this code as a module, choose M here: the
172 module will be called sch_gred.
173
174config NET_SCH_DSMARK
52ab4ac2 175 tristate "Differentiated Services marker (DSMARK)"
52ab4ac2 176 ---help---
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177 Say Y if you want to schedule packets according to the
178 Differentiated Services architecture proposed in RFC 2475.
179 Technical information on this method, with pointers to associated
180 RFCs, is available at <http://www.gta.ufrj.br/diffserv/>.
181
182 To compile this code as a module, choose M here: the
183 module will be called sch_dsmark.
184
185config NET_SCH_NETEM
52ab4ac2 186 tristate "Network emulator (NETEM)"
52ab4ac2 187 ---help---
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188 Say Y if you want to emulate network delay, loss, and packet
189 re-ordering. This is often useful to simulate networks when
190 testing applications or protocols.
191
192 To compile this driver as a module, choose M here: the module
193 will be called sch_netem.
194
195 If unsure, say N.
196
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197config NET_SCH_DRR
198 tristate "Deficit Round Robin scheduler (DRR)"
199 help
200 Say Y here if you want to use the Deficit Round Robin (DRR) packet
201 scheduling algorithm.
202
203 To compile this driver as a module, choose M here: the module
204 will be called sch_drr.
205
206 If unsure, say N.
207
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208config NET_SCH_INGRESS
209 tristate "Ingress Qdisc"
72eb7bd2 210 depends on NET_CLS_ACT
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211 ---help---
212 Say Y here if you want to use classifiers for incoming packets.
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213 If unsure, say Y.
214
215 To compile this code as a module, choose M here: the
216 module will be called sch_ingress.
217
52ab4ac2 218comment "Classification"
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219
220config NET_CLS
52ab4ac2 221 boolean
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222
223config NET_CLS_BASIC
52ab4ac2 224 tristate "Elementary classification (BASIC)"
52ab4ac2 225 select NET_CLS
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226 ---help---
227 Say Y here if you want to be able to classify packets using
228 only extended matches and actions.
229
230 To compile this code as a module, choose M here: the
231 module will be called cls_basic.
232
233config NET_CLS_TCINDEX
52ab4ac2 234 tristate "Traffic-Control Index (TCINDEX)"
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235 select NET_CLS
236 ---help---
237 Say Y here if you want to be able to classify packets based on
238 traffic control indices. You will want this feature if you want
239 to implement Differentiated Services together with DSMARK.
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240
241 To compile this code as a module, choose M here: the
242 module will be called cls_tcindex.
243
244config NET_CLS_ROUTE4
52ab4ac2 245 tristate "Routing decision (ROUTE)"
1da177e4 246 select NET_CLS_ROUTE
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247 select NET_CLS
248 ---help---
249 If you say Y here, you will be able to classify packets
250 according to the route table entry they matched.
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251
252 To compile this code as a module, choose M here: the
253 module will be called cls_route.
254
255config NET_CLS_ROUTE
256 bool
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257
258config NET_CLS_FW
52ab4ac2 259 tristate "Netfilter mark (FW)"
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260 select NET_CLS
261 ---help---
262 If you say Y here, you will be able to classify packets
263 according to netfilter/firewall marks.
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264
265 To compile this code as a module, choose M here: the
266 module will be called cls_fw.
267
268config NET_CLS_U32
52ab4ac2 269 tristate "Universal 32bit comparisons w/ hashing (U32)"
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270 select NET_CLS
271 ---help---
3539c272 272 Say Y here to be able to classify packets using a universal
52ab4ac2 273 32bit pieces based comparison scheme.
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274
275 To compile this code as a module, choose M here: the
276 module will be called cls_u32.
277
278config CLS_U32_PERF
52ab4ac2 279 bool "Performance counters support"
1da177e4 280 depends on NET_CLS_U32
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281 ---help---
282 Say Y here to make u32 gather additional statistics useful for
283 fine tuning u32 classifiers.
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284
285config CLS_U32_MARK
52ab4ac2 286 bool "Netfilter marks support"
82e91ffe 287 depends on NET_CLS_U32
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288 ---help---
289 Say Y here to be able to use netfilter marks as u32 key.
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290
291config NET_CLS_RSVP
52ab4ac2 292 tristate "IPv4 Resource Reservation Protocol (RSVP)"
52ab4ac2 293 select NET_CLS
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294 ---help---
295 The Resource Reservation Protocol (RSVP) permits end systems to
296 request a minimum and maximum data flow rate for a connection; this
297 is important for real time data such as streaming sound or video.
298
299 Say Y here if you want to be able to classify outgoing packets based
300 on their RSVP requests.
301
302 To compile this code as a module, choose M here: the
303 module will be called cls_rsvp.
304
305config NET_CLS_RSVP6
52ab4ac2 306 tristate "IPv6 Resource Reservation Protocol (RSVP6)"
52ab4ac2 307 select NET_CLS
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308 ---help---
309 The Resource Reservation Protocol (RSVP) permits end systems to
310 request a minimum and maximum data flow rate for a connection; this
311 is important for real time data such as streaming sound or video.
312
313 Say Y here if you want to be able to classify outgoing packets based
99acaeb9 314 on their RSVP requests and you are using the IPv6 protocol.
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315
316 To compile this code as a module, choose M here: the
317 module will be called cls_rsvp6.
318
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319config NET_CLS_FLOW
320 tristate "Flow classifier"
321 select NET_CLS
322 ---help---
323 If you say Y here, you will be able to classify packets based on
324 a configurable combination of packet keys. This is mostly useful
325 in combination with SFQ.
326
327 To compile this code as a module, choose M here: the
328 module will be called cls_flow.
329
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330config NET_CLS_CGROUP
331 bool "Control Group Classifier"
332 select NET_CLS
333 depends on CGROUPS
334 ---help---
335 Say Y here if you want to classify packets based on the control
336 cgroup of their process.
337
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338config NET_EMATCH
339 bool "Extended Matches"
52ab4ac2 340 select NET_CLS
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341 ---help---
342 Say Y here if you want to use extended matches on top of classifiers
343 and select the extended matches below.
344
345 Extended matches are small classification helpers not worth writing
52ab4ac2 346 a separate classifier for.
1da177e4 347
52ab4ac2 348 A recent version of the iproute2 package is required to use
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349 extended matches.
350
351config NET_EMATCH_STACK
352 int "Stack size"
353 depends on NET_EMATCH
354 default "32"
355 ---help---
356 Size of the local stack variable used while evaluating the tree of
357 ematches. Limits the depth of the tree, i.e. the number of
b824979a 358 encapsulated precedences. Every level requires 4 bytes of additional
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359 stack space.
360
361config NET_EMATCH_CMP
362 tristate "Simple packet data comparison"
363 depends on NET_EMATCH
364 ---help---
365 Say Y here if you want to be able to classify packets based on
366 simple packet data comparisons for 8, 16, and 32bit values.
367
368 To compile this code as a module, choose M here: the
369 module will be called em_cmp.
370
371config NET_EMATCH_NBYTE
372 tristate "Multi byte comparison"
373 depends on NET_EMATCH
374 ---help---
375 Say Y here if you want to be able to classify packets based on
376 multiple byte comparisons mainly useful for IPv6 address comparisons.
377
378 To compile this code as a module, choose M here: the
379 module will be called em_nbyte.
380
381config NET_EMATCH_U32
52ab4ac2 382 tristate "U32 key"
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383 depends on NET_EMATCH
384 ---help---
385 Say Y here if you want to be able to classify packets using
386 the famous u32 key in combination with logic relations.
387
388 To compile this code as a module, choose M here: the
389 module will be called em_u32.
390
391config NET_EMATCH_META
392 tristate "Metadata"
393 depends on NET_EMATCH
394 ---help---
bb7e8c5a 395 Say Y here if you want to be able to classify packets based on
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396 metadata such as load average, netfilter attributes, socket
397 attributes and routing decisions.
398
399 To compile this code as a module, choose M here: the
400 module will be called em_meta.
401
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402config NET_EMATCH_TEXT
403 tristate "Textsearch"
404 depends on NET_EMATCH
f2d368fa 405 select TEXTSEARCH
f7704347 406 select TEXTSEARCH_KMP
29cb9f9c 407 select TEXTSEARCH_BM
f7704347 408 select TEXTSEARCH_FSM
d675c989 409 ---help---
52ab4ac2 410 Say Y here if you want to be able to classify packets based on
f7704347 411 textsearch comparisons.
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412
413 To compile this code as a module, choose M here: the
414 module will be called em_text.
415
1da177e4 416config NET_CLS_ACT
52ab4ac2 417 bool "Actions"
1da177e4 418 ---help---
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419 Say Y here if you want to use traffic control actions. Actions
420 get attached to classifiers and are invoked after a successful
421 classification. They are used to overwrite the classification
422 result, instantly drop or redirect packets, etc.
423
424 A recent version of the iproute2 package is required to use
425 extended matches.
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426
427config NET_ACT_POLICE
52ab4ac2 428 tristate "Traffic Policing"
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429 depends on NET_CLS_ACT
430 ---help---
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431 Say Y here if you want to do traffic policing, i.e. strict
432 bandwidth limiting. This action replaces the existing policing
433 module.
434
435 To compile this code as a module, choose M here: the
d4ae20b3 436 module will be called act_police.
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437
438config NET_ACT_GACT
52ab4ac2 439 tristate "Generic actions"
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440 depends on NET_CLS_ACT
441 ---help---
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442 Say Y here to take generic actions such as dropping and
443 accepting packets.
444
445 To compile this code as a module, choose M here: the
d4ae20b3 446 module will be called act_gact.
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447
448config GACT_PROB
52ab4ac2 449 bool "Probability support"
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450 depends on NET_ACT_GACT
451 ---help---
52ab4ac2 452 Say Y here to use the generic action randomly or deterministically.
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453
454config NET_ACT_MIRRED
52ab4ac2 455 tristate "Redirecting and Mirroring"
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456 depends on NET_CLS_ACT
457 ---help---
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458 Say Y here to allow packets to be mirrored or redirected to
459 other devices.
460
461 To compile this code as a module, choose M here: the
d4ae20b3 462 module will be called act_mirred.
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463
464config NET_ACT_IPT
52ab4ac2 465 tristate "IPtables targets"
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466 depends on NET_CLS_ACT && NETFILTER && IP_NF_IPTABLES
467 ---help---
3539c272 468 Say Y here to be able to invoke iptables targets after successful
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469 classification.
470
471 To compile this code as a module, choose M here: the
d4ae20b3 472 module will be called act_ipt.
1da177e4 473
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474config NET_ACT_NAT
475 tristate "Stateless NAT"
476 depends on NET_CLS_ACT
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477 ---help---
478 Say Y here to do stateless NAT on IPv4 packets. You should use
479 netfilter for NAT unless you know what you are doing.
480
481 To compile this code as a module, choose M here: the
d4ae20b3 482 module will be called act_nat.
b4219952 483
1da177e4 484config NET_ACT_PEDIT
52ab4ac2 485 tristate "Packet Editing"
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486 depends on NET_CLS_ACT
487 ---help---
52ab4ac2 488 Say Y here if you want to mangle the content of packets.
1da177e4 489
52ab4ac2 490 To compile this code as a module, choose M here: the
d4ae20b3 491 module will be called act_pedit.
1da177e4 492
db753079 493config NET_ACT_SIMP
52ab4ac2 494 tristate "Simple Example (Debug)"
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495 depends on NET_CLS_ACT
496 ---help---
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497 Say Y here to add a simple action for demonstration purposes.
498 It is meant as an example and for debugging purposes. It will
499 print a configured policy string followed by the packet count
500 to the console for every packet that passes by.
501
502 If unsure, say N.
503
504 To compile this code as a module, choose M here: the
d4ae20b3 505 module will be called act_simple.
52ab4ac2 506
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507config NET_ACT_SKBEDIT
508 tristate "SKB Editing"
509 depends on NET_CLS_ACT
510 ---help---
511 Say Y here to change skb priority or queue_mapping settings.
512
513 If unsure, say N.
514
515 To compile this code as a module, choose M here: the
d4ae20b3 516 module will be called act_skbedit.
ca9b0e27 517
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518config NET_CLS_IND
519 bool "Incoming device classification"
05b8b0fa 520 depends on NET_CLS_U32 || NET_CLS_FW
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521 ---help---
522 Say Y here to extend the u32 and fw classifier to support
523 classification based on the incoming device. This option is
524 likely to disappear in favour of the metadata ematch.
525
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526endif # NET_SCHED
527
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528config NET_SCH_FIFO
529 bool