Linux kernel & device driver programming

Cross-Referenced Linux and Device Driver Code

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Version: [ 2.6.11.8 ] [ 2.6.25 ] [ 2.6.25.8 ] [ 2.6.31.13 ] Architecture: [ i386 ]
  1 /*
  2  *      Format of an ARP firewall descriptor
  3  *
  4  *      src, tgt, src_mask, tgt_mask, arpop, arpop_mask are always stored in
  5  *      network byte order.
  6  *      flags are stored in host byte order (of course).
  7  */
  8 
  9 #ifndef _ARPTABLES_H
 10 #define _ARPTABLES_H
 11 
 12 #ifdef __KERNEL__
 13 #include <linux/if.h>
 14 #include <linux/in.h>
 15 #include <linux/if_arp.h>
 16 #include <linux/skbuff.h>
 17 #endif
 18 #include <linux/types.h>
 19 #include <linux/compiler.h>
 20 #include <linux/netfilter_arp.h>
 21 
 22 #include <linux/netfilter/x_tables.h>
 23 
 24 #define ARPT_FUNCTION_MAXNAMELEN XT_FUNCTION_MAXNAMELEN
 25 #define ARPT_TABLE_MAXNAMELEN XT_TABLE_MAXNAMELEN
 26 
 27 #define ARPT_DEV_ADDR_LEN_MAX 16
 28 
 29 struct arpt_devaddr_info {
 30         char addr[ARPT_DEV_ADDR_LEN_MAX];
 31         char mask[ARPT_DEV_ADDR_LEN_MAX];
 32 };
 33 
 34 /* Yes, Virginia, you have to zero the padding. */
 35 struct arpt_arp {
 36         /* Source and target IP addr */
 37         struct in_addr src, tgt;
 38         /* Mask for src and target IP addr */
 39         struct in_addr smsk, tmsk;
 40 
 41         /* Device hw address length, src+target device addresses */
 42         u_int8_t arhln, arhln_mask;
 43         struct arpt_devaddr_info src_devaddr;
 44         struct arpt_devaddr_info tgt_devaddr;
 45 
 46         /* ARP operation code. */
 47         __be16 arpop, arpop_mask;
 48 
 49         /* ARP hardware address and protocol address format. */
 50         __be16 arhrd, arhrd_mask;
 51         __be16 arpro, arpro_mask;
 52 
 53         /* The protocol address length is only accepted if it is 4
 54          * so there is no use in offering a way to do filtering on it.
 55          */
 56 
 57         char iniface[IFNAMSIZ], outiface[IFNAMSIZ];
 58         unsigned char iniface_mask[IFNAMSIZ], outiface_mask[IFNAMSIZ];
 59 
 60         /* Flags word */
 61         u_int8_t flags;
 62         /* Inverse flags */
 63         u_int16_t invflags;
 64 };
 65 
 66 #define arpt_entry_target xt_entry_target
 67 #define arpt_standard_target xt_standard_target
 68 
 69 /* Values for "flag" field in struct arpt_ip (general arp structure).
 70  * No flags defined yet.
 71  */
 72 #define ARPT_F_MASK             0x00    /* All possible flag bits mask. */
 73 
 74 /* Values for "inv" field in struct arpt_arp. */
 75 #define ARPT_INV_VIA_IN         0x0001  /* Invert the sense of IN IFACE. */
 76 #define ARPT_INV_VIA_OUT        0x0002  /* Invert the sense of OUT IFACE */
 77 #define ARPT_INV_SRCIP          0x0004  /* Invert the sense of SRC IP. */
 78 #define ARPT_INV_TGTIP          0x0008  /* Invert the sense of TGT IP. */
 79 #define ARPT_INV_SRCDEVADDR     0x0010  /* Invert the sense of SRC DEV ADDR. */
 80 #define ARPT_INV_TGTDEVADDR     0x0020  /* Invert the sense of TGT DEV ADDR. */
 81 #define ARPT_INV_ARPOP          0x0040  /* Invert the sense of ARP OP. */
 82 #define ARPT_INV_ARPHRD         0x0080  /* Invert the sense of ARP HRD. */
 83 #define ARPT_INV_ARPPRO         0x0100  /* Invert the sense of ARP PRO. */
 84 #define ARPT_INV_ARPHLN         0x0200  /* Invert the sense of ARP HLN. */
 85 #define ARPT_INV_MASK           0x03FF  /* All possible flag bits mask. */
 86 
 87 /* This structure defines each of the firewall rules.  Consists of 3
 88    parts which are 1) general ARP header stuff 2) match specific
 89    stuff 3) the target to perform if the rule matches */
 90 struct arpt_entry
 91 {
 92         struct arpt_arp arp;
 93 
 94         /* Size of arpt_entry + matches */
 95         u_int16_t target_offset;
 96         /* Size of arpt_entry + matches + target */
 97         u_int16_t next_offset;
 98 
 99         /* Back pointer */
100         unsigned int comefrom;
101 
102         /* Packet and byte counters. */
103         struct xt_counters counters;
104 
105         /* The matches (if any), then the target. */
106         unsigned char elems[0];
107 };
108 
109 /*
110  * New IP firewall options for [gs]etsockopt at the RAW IP level.
111  * Unlike BSD Linux inherits IP options so you don't have to use a raw
112  * socket for this. Instead we check rights in the calls.
113  *
114  * ATTENTION: check linux/in.h before adding new number here.
115  */
116 #define ARPT_BASE_CTL           96
117 
118 #define ARPT_SO_SET_REPLACE             (ARPT_BASE_CTL)
119 #define ARPT_SO_SET_ADD_COUNTERS        (ARPT_BASE_CTL + 1)
120 #define ARPT_SO_SET_MAX                 ARPT_SO_SET_ADD_COUNTERS
121 
122 #define ARPT_SO_GET_INFO                (ARPT_BASE_CTL)
123 #define ARPT_SO_GET_ENTRIES             (ARPT_BASE_CTL + 1)
124 /* #define ARPT_SO_GET_REVISION_MATCH   (APRT_BASE_CTL + 2) */
125 #define ARPT_SO_GET_REVISION_TARGET     (ARPT_BASE_CTL + 3)
126 #define ARPT_SO_GET_MAX                 (ARPT_SO_GET_REVISION_TARGET)
127 
128 /* CONTINUE verdict for targets */
129 #define ARPT_CONTINUE XT_CONTINUE
130 
131 /* For standard target */
132 #define ARPT_RETURN XT_RETURN
133 
134 /* The argument to ARPT_SO_GET_INFO */
135 struct arpt_getinfo
136 {
137         /* Which table: caller fills this in. */
138         char name[ARPT_TABLE_MAXNAMELEN];
139 
140         /* Kernel fills these in. */
141         /* Which hook entry points are valid: bitmask */
142         unsigned int valid_hooks;
143 
144         /* Hook entry points: one per netfilter hook. */
145         unsigned int hook_entry[NF_ARP_NUMHOOKS];
146 
147         /* Underflow points. */
148         unsigned int underflow[NF_ARP_NUMHOOKS];
149 
150         /* Number of entries */
151         unsigned int num_entries;
152 
153         /* Size of entries. */
154         unsigned int size;
155 };
156 
157 /* The argument to ARPT_SO_SET_REPLACE. */
158 struct arpt_replace
159 {
160         /* Which table. */
161         char name[ARPT_TABLE_MAXNAMELEN];
162 
163         /* Which hook entry points are valid: bitmask.  You can't
164            change this. */
165         unsigned int valid_hooks;
166 
167         /* Number of entries */
168         unsigned int num_entries;
169 
170         /* Total size of new entries */
171         unsigned int size;
172 
173         /* Hook entry points. */
174         unsigned int hook_entry[NF_ARP_NUMHOOKS];
175 
176         /* Underflow points. */
177         unsigned int underflow[NF_ARP_NUMHOOKS];
178 
179         /* Information about old entries: */
180         /* Number of counters (must be equal to current number of entries). */
181         unsigned int num_counters;
182         /* The old entries' counters. */
183         struct xt_counters __user *counters;
184 
185         /* The entries (hang off end: not really an array). */
186         struct arpt_entry entries[0];
187 };
188 
189 /* The argument to ARPT_SO_ADD_COUNTERS. */
190 #define arpt_counters_info xt_counters_info
191 #define arpt_counters xt_counters
192 
193 /* The argument to ARPT_SO_GET_ENTRIES. */
194 struct arpt_get_entries
195 {
196         /* Which table: user fills this in. */
197         char name[ARPT_TABLE_MAXNAMELEN];
198 
199         /* User fills this in: total entry size. */
200         unsigned int size;
201 
202         /* The entries. */
203         struct arpt_entry entrytable[0];
204 };
205 
206 /* Standard return verdict, or do jump. */
207 #define ARPT_STANDARD_TARGET XT_STANDARD_TARGET
208 /* Error verdict. */
209 #define ARPT_ERROR_TARGET XT_ERROR_TARGET
210 
211 /* Helper functions */
212 static __inline__ struct arpt_entry_target *arpt_get_target(struct arpt_entry *e)
213 {
214         return (void *)e + e->target_offset;
215 }
216 
217 /* fn returns 0 to continue iteration */
218 #define ARPT_ENTRY_ITERATE(entries, size, fn, args...) \
219         XT_ENTRY_ITERATE(struct arpt_entry, entries, size, fn, ## args)
220 
221 /*
222  *      Main firewall chains definitions and global var's definitions.
223  */
224 #ifdef __KERNEL__
225 
226 /* Standard entry. */
227 struct arpt_standard
228 {
229         struct arpt_entry entry;
230         struct arpt_standard_target target;
231 };
232 
233 struct arpt_error_target
234 {
235         struct arpt_entry_target target;
236         char errorname[ARPT_FUNCTION_MAXNAMELEN];
237 };
238 
239 struct arpt_error
240 {
241         struct arpt_entry entry;
242         struct arpt_error_target target;
243 };
244 
245 #define ARPT_ENTRY_INIT(__size)                                                \
246 {                                                                              \
247         .target_offset  = sizeof(struct arpt_entry),                           \
248         .next_offset    = (__size),                                            \
249 }
250 
251 #define ARPT_STANDARD_INIT(__verdict)                                          \
252 {                                                                              \
253         .entry          = ARPT_ENTRY_INIT(sizeof(struct arpt_standard)),       \
254         .target         = XT_TARGET_INIT(ARPT_STANDARD_TARGET,                 \
255                                          sizeof(struct arpt_standard_target)), \
256         .target.verdict = -(__verdict) - 1,                                    \
257 }
258 
259 #define ARPT_ERROR_INIT                                                        \
260 {                                                                              \
261         .entry          = ARPT_ENTRY_INIT(sizeof(struct arpt_error)),          \
262         .target         = XT_TARGET_INIT(ARPT_ERROR_TARGET,                    \
263                                          sizeof(struct arpt_error_target)),    \
264         .target.errorname = "ERROR",                                           \
265 }
266 
267 extern struct xt_table *arpt_register_table(struct net *net,
268                                             struct xt_table *table,
269                                             const struct arpt_replace *repl);
270 extern void arpt_unregister_table(struct xt_table *table);
271 extern unsigned int arpt_do_table(struct sk_buff *skb,
272                                   unsigned int hook,
273                                   const struct net_device *in,
274                                   const struct net_device *out,
275                                   struct xt_table *table);
276 
277 #define ARPT_ALIGN(s) XT_ALIGN(s)
278 
279 #ifdef CONFIG_COMPAT
280 #include <net/compat.h>
281 
282 struct compat_arpt_entry
283 {
284         struct arpt_arp arp;
285         u_int16_t target_offset;
286         u_int16_t next_offset;
287         compat_uint_t comefrom;
288         struct compat_xt_counters counters;
289         unsigned char elems[0];
290 };
291 
292 static inline struct arpt_entry_target *
293 compat_arpt_get_target(struct compat_arpt_entry *e)
294 {
295         return (void *)e + e->target_offset;
296 }
297 
298 #define COMPAT_ARPT_ALIGN(s)    COMPAT_XT_ALIGN(s)
299 
300 /* fn returns 0 to continue iteration */
301 #define COMPAT_ARPT_ENTRY_ITERATE(entries, size, fn, args...) \
302         XT_ENTRY_ITERATE(struct compat_arpt_entry, entries, size, fn, ## args)
303 
304 #define COMPAT_ARPT_ENTRY_ITERATE_CONTINUE(entries, size, n, fn, args...) \
305         XT_ENTRY_ITERATE_CONTINUE(struct compat_arpt_entry, entries, size, n, \
306                                   fn, ## args)
307 
308 #endif /* CONFIG_COMPAT */
309 #endif /*__KERNEL__*/
310 #endif /* _ARPTABLES_H */
311 
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