1 /* SPDX-License-Identifier: GPL-2.0 */
2 #ifndef _X_TABLES_H
3 #define _X_TABLES_H
4
5
6 #include <linux/netdevice.h>
7 #include <linux/static_key.h>
8 #include <linux/netfilter.h>
9 #include <uapi/linux/netfilter/x_tables.h>
10
11 /* Test a struct->invflags and a boolean for inequality */
12 #define NF_INVF(ptr, flag, boolean) \
13 ((boolean) ^ !!((ptr)->invflags & (flag)))
14
15 /**
16 * struct xt_action_param - parameters for matches/targets
17 *
18 * @match: the match extension
19 * @target: the target extension
20 * @matchinfo: per-match data
21 * @targetinfo: per-target data
22 * @state: pointer to hook state this packet came from
23 * @fragoff: packet is a fragment, this is the data offset
24 * @thoff: position of transport header relative to skb->data
25 *
26 * Fields written to by extensions:
27 *
28 * @hotdrop: drop packet if we had inspection problems
29 */
30 struct xt_action_param {
31 union {
32 const struct xt_match *match;
33 const struct xt_target *target;
34 };
35 union {
36 const void *matchinfo, *targinfo;
37 };
38 const struct nf_hook_state *state;
39 unsigned int thoff;
40 u16 fragoff;
41 bool hotdrop;
42 };
43
xt_net(const struct xt_action_param * par)44 static inline struct net *xt_net(const struct xt_action_param *par)
45 {
46 return par->state->net;
47 }
48
xt_in(const struct xt_action_param * par)49 static inline struct net_device *xt_in(const struct xt_action_param *par)
50 {
51 return par->state->in;
52 }
53
xt_out(const struct xt_action_param * par)54 static inline struct net_device *xt_out(const struct xt_action_param *par)
55 {
56 return par->state->out;
57 }
58
xt_hooknum(const struct xt_action_param * par)59 static inline unsigned int xt_hooknum(const struct xt_action_param *par)
60 {
61 return par->state->hook;
62 }
63
xt_family(const struct xt_action_param * par)64 static inline u_int8_t xt_family(const struct xt_action_param *par)
65 {
66 return par->state->pf;
67 }
68
69 /**
70 * struct xt_mtchk_param - parameters for match extensions'
71 * checkentry functions
72 *
73 * @net: network namespace through which the check was invoked
74 * @table: table the rule is tried to be inserted into
75 * @entryinfo: the family-specific rule data
76 * (struct ipt_ip, ip6t_ip, arpt_arp or (note) ebt_entry)
77 * @match: struct xt_match through which this function was invoked
78 * @matchinfo: per-match data
79 * @hook_mask: via which hooks the new rule is reachable
80 * Other fields as above.
81 */
82 struct xt_mtchk_param {
83 struct net *net;
84 const char *table;
85 const void *entryinfo;
86 const struct xt_match *match;
87 void *matchinfo;
88 unsigned int hook_mask;
89 u_int8_t family;
90 bool nft_compat;
91 };
92
93 /**
94 * struct xt_mdtor_param - match destructor parameters
95 * Fields as above.
96 */
97 struct xt_mtdtor_param {
98 struct net *net;
99 const struct xt_match *match;
100 void *matchinfo;
101 u_int8_t family;
102 };
103
104 /**
105 * struct xt_tgchk_param - parameters for target extensions'
106 * checkentry functions
107 *
108 * @entryinfo: the family-specific rule data
109 * (struct ipt_entry, ip6t_entry, arpt_entry, ebt_entry)
110 *
111 * Other fields see above.
112 */
113 struct xt_tgchk_param {
114 struct net *net;
115 const char *table;
116 const void *entryinfo;
117 const struct xt_target *target;
118 void *targinfo;
119 unsigned int hook_mask;
120 u_int8_t family;
121 bool nft_compat;
122 };
123
124 /* Target destructor parameters */
125 struct xt_tgdtor_param {
126 struct net *net;
127 const struct xt_target *target;
128 void *targinfo;
129 u_int8_t family;
130 };
131
132 struct xt_match {
133 struct list_head list;
134
135 const char name[XT_EXTENSION_MAXNAMELEN];
136 u_int8_t revision;
137
138 /* Return true or false: return FALSE and set *hotdrop = 1 to
139 force immediate packet drop. */
140 /* Arguments changed since 2.6.9, as this must now handle
141 non-linear skb, using skb_header_pointer and
142 skb_ip_make_writable. */
143 bool (*match)(const struct sk_buff *skb,
144 struct xt_action_param *);
145
146 /* Called when user tries to insert an entry of this type. */
147 int (*checkentry)(const struct xt_mtchk_param *);
148
149 /* Called to validate hooks based on the match configuration. */
150 int (*check_hooks)(const struct xt_mtchk_param *);
151
152 /* Called when entry of this type deleted. */
153 void (*destroy)(const struct xt_mtdtor_param *);
154 #ifdef CONFIG_NETFILTER_XTABLES_COMPAT
155 /* Called when userspace align differs from kernel space one */
156 void (*compat_from_user)(void *dst, const void *src);
157 int (*compat_to_user)(void __user *dst, const void *src);
158 #endif
159 /* Set this to THIS_MODULE if you are a module, otherwise NULL */
160 struct module *me;
161
162 const char *table;
163 unsigned int matchsize;
164 unsigned int usersize;
165 #ifdef CONFIG_NETFILTER_XTABLES_COMPAT
166 unsigned int compatsize;
167 #endif
168 unsigned int hooks;
169 unsigned short proto;
170
171 unsigned short family;
172 };
173
174 /* Registration hooks for targets. */
175 struct xt_target {
176 struct list_head list;
177
178 const char name[XT_EXTENSION_MAXNAMELEN];
179 u_int8_t revision;
180
181 /* Returns verdict. Argument order changed since 2.6.9, as this
182 must now handle non-linear skbs, using skb_copy_bits and
183 skb_ip_make_writable. */
184 unsigned int (*target)(struct sk_buff *skb,
185 const struct xt_action_param *);
186
187 /* Called when user tries to insert an entry of this type:
188 hook_mask is a bitmask of hooks from which it can be
189 called. */
190 /* Should return 0 on success or an error code otherwise (-Exxxx). */
191 int (*checkentry)(const struct xt_tgchk_param *);
192
193 /* Called to validate hooks based on the target configuration. */
194 int (*check_hooks)(const struct xt_tgchk_param *);
195
196 /* Called when entry of this type deleted. */
197 void (*destroy)(const struct xt_tgdtor_param *);
198 #ifdef CONFIG_NETFILTER_XTABLES_COMPAT
199 /* Called when userspace align differs from kernel space one */
200 void (*compat_from_user)(void *dst, const void *src);
201 int (*compat_to_user)(void __user *dst, const void *src);
202 #endif
203 /* Set this to THIS_MODULE if you are a module, otherwise NULL */
204 struct module *me;
205
206 const char *table;
207 unsigned int targetsize;
208 unsigned int usersize;
209 #ifdef CONFIG_NETFILTER_XTABLES_COMPAT
210 unsigned int compatsize;
211 #endif
212 unsigned int hooks;
213 unsigned short proto;
214
215 unsigned short family;
216 };
217
218 /* Furniture shopping... */
219 struct xt_table {
220 struct list_head list;
221
222 /* What hooks you will enter on */
223 unsigned int valid_hooks;
224
225 /* Man behind the curtain... */
226 struct xt_table_info *private;
227
228 /* hook ops that register the table with the netfilter core */
229 struct nf_hook_ops *ops;
230
231 /* Set this to THIS_MODULE if you are a module, otherwise NULL */
232 struct module *me;
233
234 u_int8_t af; /* address/protocol family */
235 int priority; /* hook order */
236
237 /* A unique name... */
238 const char name[XT_TABLE_MAXNAMELEN];
239 };
240
241 #include <linux/netfilter_ipv4.h>
242
243 /* The table itself */
244 struct xt_table_info {
245 /* Size per table */
246 unsigned int size;
247 /* Number of entries: FIXME. --RR */
248 unsigned int number;
249 /* Initial number of entries. Needed for module usage count */
250 unsigned int initial_entries;
251
252 /* Entry points and underflows */
253 unsigned int hook_entry[NF_INET_NUMHOOKS];
254 unsigned int underflow[NF_INET_NUMHOOKS];
255
256 /*
257 * Number of user chains. Since tables cannot have loops, at most
258 * @stacksize jumps (number of user chains) can possibly be made.
259 */
260 unsigned int stacksize;
261 void ***jumpstack;
262
263 unsigned char entries[] __aligned(8);
264 };
265
266 int xt_register_target(struct xt_target *target);
267 void xt_unregister_target(struct xt_target *target);
268 int xt_register_targets(struct xt_target *target, unsigned int n);
269 void xt_unregister_targets(struct xt_target *target, unsigned int n);
270
271 int xt_register_match(struct xt_match *target);
272 void xt_unregister_match(struct xt_match *target);
273 int xt_register_matches(struct xt_match *match, unsigned int n);
274 void xt_unregister_matches(struct xt_match *match, unsigned int n);
275
276 int xt_check_entry_offsets(const void *base, const char *elems,
277 unsigned int target_offset,
278 unsigned int next_offset);
279
280 int xt_check_table_hooks(const struct xt_table_info *info, unsigned int valid_hooks);
281
282 unsigned int *xt_alloc_entry_offsets(unsigned int size);
283 bool xt_find_jump_offset(const unsigned int *offsets,
284 unsigned int target, unsigned int size);
285
286 int xt_check_proc_name(const char *name, unsigned int size);
287
288 int xt_check_hooks_match(struct xt_mtchk_param *par);
289 int xt_check_match(struct xt_mtchk_param *, unsigned int size, u16 proto,
290 bool inv_proto);
291 int xt_check_hooks_target(struct xt_tgchk_param *par);
292 int xt_check_target(struct xt_tgchk_param *, unsigned int size, u16 proto,
293 bool inv_proto);
294
295 int xt_match_to_user(const struct xt_entry_match *m,
296 struct xt_entry_match __user *u);
297 int xt_target_to_user(const struct xt_entry_target *t,
298 struct xt_entry_target __user *u);
299 int xt_data_to_user(void __user *dst, const void *src,
300 int usersize, int size, int aligned_size);
301
302 void *xt_copy_counters(sockptr_t arg, unsigned int len,
303 struct xt_counters_info *info);
304 struct xt_counters *xt_counters_alloc(unsigned int counters);
305
306 struct xt_table *xt_register_table(struct net *net,
307 const struct xt_table *table,
308 const struct nf_hook_ops *template_ops,
309 struct xt_table_info *bootstrap,
310 struct xt_table_info *newinfo);
311 void xt_unregister_table_pre_exit(struct net *net, u8 af, const char *name);
312 struct xt_table *xt_unregister_table_exit(struct net *net, u8 af, const char *name);
313
314 struct xt_table_info *xt_replace_table(struct xt_table *table,
315 unsigned int num_counters,
316 struct xt_table_info *newinfo,
317 int *error);
318
319 struct xt_match *xt_find_match(u8 af, const char *name, u8 revision);
320 struct xt_match *xt_request_find_match(u8 af, const char *name, u8 revision);
321 struct xt_target *xt_request_find_target(u8 af, const char *name, u8 revision);
322 int xt_find_revision(u8 af, const char *name, u8 revision, int target,
323 int *err);
324
325 struct xt_table *xt_find_table(struct net *net, u8 af, const char *name);
326 struct xt_table *xt_find_table_lock(struct net *net, u_int8_t af,
327 const char *name);
328 struct xt_table *xt_request_find_table_lock(struct net *net, u_int8_t af,
329 const char *name);
330 void xt_table_unlock(struct xt_table *t);
331
332 int xt_proto_init(struct net *net, u_int8_t af);
333 void xt_proto_fini(struct net *net, u_int8_t af);
334
335 struct xt_table_info *xt_alloc_table_info(unsigned int size);
336 void xt_free_table_info(struct xt_table_info *info);
337
338 /**
339 * xt_recseq - recursive seqcount for netfilter use
340 *
341 * Packet processing changes the seqcount only if no recursion happened
342 * get_counters() can use read_seqcount_begin()/read_seqcount_retry(),
343 * because we use the normal seqcount convention :
344 * Low order bit set to 1 if a writer is active.
345 */
346 DECLARE_PER_CPU(seqcount_t, xt_recseq);
347
348 /* xt_tee_enabled - true if x_tables needs to handle reentrancy
349 *
350 * Enabled if current ip(6)tables ruleset has at least one -j TEE rule.
351 */
352 extern struct static_key xt_tee_enabled;
353
354 /**
355 * xt_write_recseq_begin - start of a write section
356 *
357 * Begin packet processing : all readers must wait the end
358 * 1) Must be called with preemption disabled
359 * 2) softirqs must be disabled too (or we should use this_cpu_add())
360 * Returns:
361 * 1 if no recursion on this cpu
362 * 0 if recursion detected
363 */
xt_write_recseq_begin(void)364 static inline unsigned int xt_write_recseq_begin(void)
365 {
366 unsigned int addend;
367
368 /*
369 * Low order bit of sequence is set if we already
370 * called xt_write_recseq_begin().
371 */
372 addend = (__this_cpu_read(xt_recseq.sequence) + 1) & 1;
373
374 /*
375 * This is kind of a write_seqcount_begin(), but addend is 0 or 1
376 * We dont check addend value to avoid a test and conditional jump,
377 * since addend is most likely 1
378 */
379 __this_cpu_add(xt_recseq.sequence, addend);
380 smp_mb();
381
382 return addend;
383 }
384
385 /**
386 * xt_write_recseq_end - end of a write section
387 * @addend: return value from previous xt_write_recseq_begin()
388 *
389 * End packet processing : all readers can proceed
390 * 1) Must be called with preemption disabled
391 * 2) softirqs must be disabled too (or we should use this_cpu_add())
392 */
xt_write_recseq_end(unsigned int addend)393 static inline void xt_write_recseq_end(unsigned int addend)
394 {
395 /* this is kind of a write_seqcount_end(), but addend is 0 or 1 */
396 smp_wmb();
397 __this_cpu_add(xt_recseq.sequence, addend);
398 }
399
400 /*
401 * This helper is performance critical and must be inlined
402 */
ifname_compare_aligned(const char * _a,const char * _b,const char * _mask)403 static inline unsigned long ifname_compare_aligned(const char *_a,
404 const char *_b,
405 const char *_mask)
406 {
407 const unsigned long *a = (const unsigned long *)_a;
408 const unsigned long *b = (const unsigned long *)_b;
409 const unsigned long *mask = (const unsigned long *)_mask;
410 unsigned long ret;
411
412 ret = (a[0] ^ b[0]) & mask[0];
413 if (IFNAMSIZ > sizeof(unsigned long))
414 ret |= (a[1] ^ b[1]) & mask[1];
415 if (IFNAMSIZ > 2 * sizeof(unsigned long))
416 ret |= (a[2] ^ b[2]) & mask[2];
417 if (IFNAMSIZ > 3 * sizeof(unsigned long))
418 ret |= (a[3] ^ b[3]) & mask[3];
419 BUILD_BUG_ON(IFNAMSIZ > 4 * sizeof(unsigned long));
420 return ret;
421 }
422
423 struct xt_percpu_counter_alloc_state {
424 unsigned int off;
425 const char __percpu *mem;
426 };
427
428 bool xt_percpu_counter_alloc(struct xt_percpu_counter_alloc_state *state,
429 struct xt_counters *counter);
430 void xt_percpu_counter_free(struct xt_counters *cnt);
431
432 static inline struct xt_counters *
xt_get_this_cpu_counter(struct xt_counters * cnt)433 xt_get_this_cpu_counter(struct xt_counters *cnt)
434 {
435 if (nr_cpu_ids > 1)
436 return this_cpu_ptr((void __percpu *) (unsigned long) cnt->pcnt);
437
438 return cnt;
439 }
440
441 static inline struct xt_counters *
xt_get_per_cpu_counter(struct xt_counters * cnt,unsigned int cpu)442 xt_get_per_cpu_counter(struct xt_counters *cnt, unsigned int cpu)
443 {
444 if (nr_cpu_ids > 1)
445 return per_cpu_ptr((void __percpu *) (unsigned long) cnt->pcnt, cpu);
446
447 return cnt;
448 }
449
450 struct nf_hook_ops *xt_hook_ops_alloc(const struct xt_table *, nf_hookfn *);
451
452 int xt_register_template(const struct xt_table *t, int(*table_init)(struct net *net));
453 void xt_unregister_template(const struct xt_table *t);
454
455 #ifdef CONFIG_NETFILTER_XTABLES_COMPAT
456 #include <net/compat.h>
457
458 struct compat_xt_entry_match {
459 union {
460 struct {
461 u_int16_t match_size;
462 char name[XT_FUNCTION_MAXNAMELEN - 1];
463 u_int8_t revision;
464 } user;
465 struct {
466 u_int16_t match_size;
467 compat_uptr_t match;
468 } kernel;
469 u_int16_t match_size;
470 } u;
471 unsigned char data[];
472 };
473
474 struct compat_xt_entry_target {
475 union {
476 struct {
477 u_int16_t target_size;
478 char name[XT_FUNCTION_MAXNAMELEN - 1];
479 u_int8_t revision;
480 } user;
481 struct {
482 u_int16_t target_size;
483 compat_uptr_t target;
484 } kernel;
485 u_int16_t target_size;
486 } u;
487 unsigned char data[];
488 };
489
490 /* FIXME: this works only on 32 bit tasks
491 * need to change whole approach in order to calculate align as function of
492 * current task alignment */
493
494 struct compat_xt_counters {
495 compat_u64 pcnt, bcnt; /* Packet and byte counters */
496 };
497
498 struct compat_xt_counters_info {
499 char name[XT_TABLE_MAXNAMELEN];
500 compat_uint_t num_counters;
501 struct compat_xt_counters counters[];
502 };
503
504 struct _compat_xt_align {
505 __u8 u8;
506 __u16 u16;
507 __u32 u32;
508 compat_u64 u64;
509 };
510
511 #define COMPAT_XT_ALIGN(s) __ALIGN_KERNEL((s), __alignof__(struct _compat_xt_align))
512
513 void xt_compat_lock(u_int8_t af);
514 void xt_compat_unlock(u_int8_t af);
515
516 int xt_compat_add_offset(u_int8_t af, unsigned int offset, int delta);
517 void xt_compat_flush_offsets(u_int8_t af);
518 int xt_compat_init_offsets(u8 af, unsigned int number);
519 int xt_compat_calc_jump(u_int8_t af, unsigned int offset);
520
521 int xt_compat_match_offset(const struct xt_match *match);
522 void xt_compat_match_from_user(struct xt_entry_match *m, void **dstptr,
523 unsigned int *size);
524 int xt_compat_match_to_user(const struct xt_entry_match *m,
525 void __user **dstptr, unsigned int *size);
526
527 int xt_compat_target_offset(const struct xt_target *target);
528 void xt_compat_target_from_user(struct xt_entry_target *t, void **dstptr,
529 unsigned int *size);
530 int xt_compat_target_to_user(const struct xt_entry_target *t,
531 void __user **dstptr, unsigned int *size);
532 int xt_compat_check_entry_offsets(const void *base, const char *elems,
533 unsigned int target_offset,
534 unsigned int next_offset);
535
536 #endif /* CONFIG_NETFILTER_XTABLES_COMPAT */
537 #endif /* _X_TABLES_H */
538