1 /* SPDX-License-Identifier: GPL-2.0 */ 2 #ifndef __NET_NETLINK_H 3 #define __NET_NETLINK_H 4 5 #include <linux/types.h> 6 #include <linux/netlink.h> 7 #include <linux/jiffies.h> 8 #include <linux/in6.h> 9 10 /* ======================================================================== 11 * Netlink Messages and Attributes Interface (As Seen On TV) 12 * ------------------------------------------------------------------------ 13 * Messages Interface 14 * ------------------------------------------------------------------------ 15 * 16 * Message Format: 17 * <--- nlmsg_total_size(payload) ---> 18 * <-- nlmsg_msg_size(payload) -> 19 * +----------+- - -+-------------+- - -+-------- - - 20 * | nlmsghdr | Pad | Payload | Pad | nlmsghdr 21 * +----------+- - -+-------------+- - -+-------- - - 22 * nlmsg_data(nlh)---^ ^ 23 * nlmsg_next(nlh)-----------------------+ 24 * 25 * Payload Format: 26 * <---------------------- nlmsg_len(nlh) ---------------------> 27 * <------ hdrlen ------> <- nlmsg_attrlen(nlh, hdrlen) -> 28 * +----------------------+- - -+--------------------------------+ 29 * | Family Header | Pad | Attributes | 30 * +----------------------+- - -+--------------------------------+ 31 * nlmsg_attrdata(nlh, hdrlen)---^ 32 * 33 * Data Structures: 34 * struct nlmsghdr netlink message header 35 * 36 * Message Construction: 37 * nlmsg_new() create a new netlink message 38 * nlmsg_put() add a netlink message to an skb 39 * nlmsg_put_answer() callback based nlmsg_put() 40 * nlmsg_end() finalize netlink message 41 * nlmsg_get_pos() return current position in message 42 * nlmsg_trim() trim part of message 43 * nlmsg_cancel() cancel message construction 44 * nlmsg_free() free a netlink message 45 * 46 * Message Sending: 47 * nlmsg_multicast() multicast message to several groups 48 * nlmsg_unicast() unicast a message to a single socket 49 * nlmsg_notify() send notification message 50 * 51 * Message Length Calculations: 52 * nlmsg_msg_size(payload) length of message w/o padding 53 * nlmsg_total_size(payload) length of message w/ padding 54 * nlmsg_padlen(payload) length of padding at tail 55 * 56 * Message Payload Access: 57 * nlmsg_data(nlh) head of message payload 58 * nlmsg_len(nlh) length of message payload 59 * nlmsg_attrdata(nlh, hdrlen) head of attributes data 60 * nlmsg_attrlen(nlh, hdrlen) length of attributes data 61 * 62 * Message Parsing: 63 * nlmsg_ok(nlh, remaining) does nlh fit into remaining bytes? 64 * nlmsg_next(nlh, remaining) get next netlink message 65 * nlmsg_parse() parse attributes of a message 66 * nlmsg_find_attr() find an attribute in a message 67 * nlmsg_for_each_msg() loop over all messages 68 * nlmsg_validate() validate netlink message incl. attrs 69 * nlmsg_for_each_attr() loop over all attributes 70 * 71 * Misc: 72 * nlmsg_report() report back to application? 73 * 74 * ------------------------------------------------------------------------ 75 * Attributes Interface 76 * ------------------------------------------------------------------------ 77 * 78 * Attribute Format: 79 * <------- nla_total_size(payload) -------> 80 * <---- nla_attr_size(payload) -----> 81 * +----------+- - -+- - - - - - - - - +- - -+-------- - - 82 * | Header | Pad | Payload | Pad | Header 83 * +----------+- - -+- - - - - - - - - +- - -+-------- - - 84 * <- nla_len(nla) -> ^ 85 * nla_data(nla)----^ | 86 * nla_next(nla)-----------------------------' 87 * 88 * Data Structures: 89 * struct nlattr netlink attribute header 90 * 91 * Attribute Construction: 92 * nla_reserve(skb, type, len) reserve room for an attribute 93 * nla_reserve_nohdr(skb, len) reserve room for an attribute w/o hdr 94 * nla_put(skb, type, len, data) add attribute to skb 95 * nla_put_nohdr(skb, len, data) add attribute w/o hdr 96 * nla_append(skb, len, data) append data to skb 97 * 98 * Attribute Construction for Basic Types: 99 * nla_put_u8(skb, type, value) add u8 attribute to skb 100 * nla_put_u16(skb, type, value) add u16 attribute to skb 101 * nla_put_u32(skb, type, value) add u32 attribute to skb 102 * nla_put_u64_64bit(skb, type, 103 * value, padattr) add u64 attribute to skb 104 * nla_put_s8(skb, type, value) add s8 attribute to skb 105 * nla_put_s16(skb, type, value) add s16 attribute to skb 106 * nla_put_s32(skb, type, value) add s32 attribute to skb 107 * nla_put_s64(skb, type, value, 108 * padattr) add s64 attribute to skb 109 * nla_put_string(skb, type, str) add string attribute to skb 110 * nla_put_flag(skb, type) add flag attribute to skb 111 * nla_put_msecs(skb, type, jiffies, 112 * padattr) add msecs attribute to skb 113 * nla_put_in_addr(skb, type, addr) add IPv4 address attribute to skb 114 * nla_put_in6_addr(skb, type, addr) add IPv6 address attribute to skb 115 * 116 * Nested Attributes Construction: 117 * nla_nest_start(skb, type) start a nested attribute 118 * nla_nest_end(skb, nla) finalize a nested attribute 119 * nla_nest_cancel(skb, nla) cancel nested attribute construction 120 * 121 * Attribute Length Calculations: 122 * nla_attr_size(payload) length of attribute w/o padding 123 * nla_total_size(payload) length of attribute w/ padding 124 * nla_padlen(payload) length of padding 125 * 126 * Attribute Payload Access: 127 * nla_data(nla) head of attribute payload 128 * nla_len(nla) length of attribute payload 129 * 130 * Attribute Payload Access for Basic Types: 131 * nla_get_u8(nla) get payload for a u8 attribute 132 * nla_get_u16(nla) get payload for a u16 attribute 133 * nla_get_u32(nla) get payload for a u32 attribute 134 * nla_get_u64(nla) get payload for a u64 attribute 135 * nla_get_s8(nla) get payload for a s8 attribute 136 * nla_get_s16(nla) get payload for a s16 attribute 137 * nla_get_s32(nla) get payload for a s32 attribute 138 * nla_get_s64(nla) get payload for a s64 attribute 139 * nla_get_flag(nla) return 1 if flag is true 140 * nla_get_msecs(nla) get payload for a msecs attribute 141 * 142 * Attribute Misc: 143 * nla_memcpy(dest, nla, count) copy attribute into memory 144 * nla_memcmp(nla, data, size) compare attribute with memory area 145 * nla_strscpy(dst, nla, size) copy attribute to a sized string 146 * nla_strcmp(nla, str) compare attribute with string 147 * 148 * Attribute Parsing: 149 * nla_ok(nla, remaining) does nla fit into remaining bytes? 150 * nla_next(nla, remaining) get next netlink attribute 151 * nla_validate() validate a stream of attributes 152 * nla_validate_nested() validate a stream of nested attributes 153 * nla_find() find attribute in stream of attributes 154 * nla_find_nested() find attribute in nested attributes 155 * nla_parse() parse and validate stream of attrs 156 * nla_parse_nested() parse nested attributes 157 * nla_for_each_attr() loop over all attributes 158 * nla_for_each_nested() loop over the nested attributes 159 *========================================================================= 160 */ 161 162 /** 163 * Standard attribute types to specify validation policy 164 */ 165 enum { 166 NLA_UNSPEC, 167 NLA_U8, 168 NLA_U16, 169 NLA_U32, 170 NLA_U64, 171 NLA_STRING, 172 NLA_FLAG, 173 NLA_MSECS, 174 NLA_NESTED, 175 NLA_NESTED_ARRAY, 176 NLA_NUL_STRING, 177 NLA_BINARY, 178 NLA_S8, 179 NLA_S16, 180 NLA_S32, 181 NLA_S64, 182 NLA_BITFIELD32, 183 NLA_REJECT, 184 __NLA_TYPE_MAX, 185 }; 186 187 #define NLA_TYPE_MAX (__NLA_TYPE_MAX - 1) 188 189 struct netlink_range_validation { 190 u64 min, max; 191 }; 192 193 struct netlink_range_validation_signed { 194 s64 min, max; 195 }; 196 197 enum nla_policy_validation { 198 NLA_VALIDATE_NONE, 199 NLA_VALIDATE_RANGE, 200 NLA_VALIDATE_RANGE_WARN_TOO_LONG, 201 NLA_VALIDATE_MIN, 202 NLA_VALIDATE_MAX, 203 NLA_VALIDATE_MASK, 204 NLA_VALIDATE_RANGE_PTR, 205 NLA_VALIDATE_FUNCTION, 206 }; 207 208 /** 209 * struct nla_policy - attribute validation policy 210 * @type: Type of attribute or NLA_UNSPEC 211 * @validation_type: type of attribute validation done in addition to 212 * type-specific validation (e.g. range, function call), see 213 * &enum nla_policy_validation 214 * @len: Type specific length of payload 215 * 216 * Policies are defined as arrays of this struct, the array must be 217 * accessible by attribute type up to the highest identifier to be expected. 218 * 219 * Meaning of `len' field: 220 * NLA_STRING Maximum length of string 221 * NLA_NUL_STRING Maximum length of string (excluding NUL) 222 * NLA_FLAG Unused 223 * NLA_BINARY Maximum length of attribute payload 224 * (but see also below with the validation type) 225 * NLA_NESTED, 226 * NLA_NESTED_ARRAY Length verification is done by checking len of 227 * nested header (or empty); len field is used if 228 * nested_policy is also used, for the max attr 229 * number in the nested policy. 230 * NLA_U8, NLA_U16, 231 * NLA_U32, NLA_U64, 232 * NLA_S8, NLA_S16, 233 * NLA_S32, NLA_S64, 234 * NLA_MSECS Leaving the length field zero will verify the 235 * given type fits, using it verifies minimum length 236 * just like "All other" 237 * NLA_BITFIELD32 Unused 238 * NLA_REJECT Unused 239 * All other Minimum length of attribute payload 240 * 241 * Meaning of validation union: 242 * NLA_BITFIELD32 This is a 32-bit bitmap/bitselector attribute and 243 * `bitfield32_valid' is the u32 value of valid flags 244 * NLA_REJECT This attribute is always rejected and `reject_message' 245 * may point to a string to report as the error instead 246 * of the generic one in extended ACK. 247 * NLA_NESTED `nested_policy' to a nested policy to validate, must 248 * also set `len' to the max attribute number. Use the 249 * provided NLA_POLICY_NESTED() macro. 250 * Note that nla_parse() will validate, but of course not 251 * parse, the nested sub-policies. 252 * NLA_NESTED_ARRAY `nested_policy' points to a nested policy to validate, 253 * must also set `len' to the max attribute number. Use 254 * the provided NLA_POLICY_NESTED_ARRAY() macro. 255 * The difference to NLA_NESTED is the structure: 256 * NLA_NESTED has the nested attributes directly inside 257 * while an array has the nested attributes at another 258 * level down and the attribute types directly in the 259 * nesting don't matter. 260 * NLA_U8, 261 * NLA_U16, 262 * NLA_U32, 263 * NLA_U64, 264 * NLA_S8, 265 * NLA_S16, 266 * NLA_S32, 267 * NLA_S64 The `min' and `max' fields are used depending on the 268 * validation_type field, if that is min/max/range then 269 * the min, max or both are used (respectively) to check 270 * the value of the integer attribute. 271 * Note that in the interest of code simplicity and 272 * struct size both limits are s16, so you cannot 273 * enforce a range that doesn't fall within the range 274 * of s16 - do that as usual in the code instead. 275 * Use the NLA_POLICY_MIN(), NLA_POLICY_MAX() and 276 * NLA_POLICY_RANGE() macros. 277 * NLA_U8, 278 * NLA_U16, 279 * NLA_U32, 280 * NLA_U64 If the validation_type field instead is set to 281 * NLA_VALIDATE_RANGE_PTR, `range' must be a pointer 282 * to a struct netlink_range_validation that indicates 283 * the min/max values. 284 * Use NLA_POLICY_FULL_RANGE(). 285 * NLA_S8, 286 * NLA_S16, 287 * NLA_S32, 288 * NLA_S64 If the validation_type field instead is set to 289 * NLA_VALIDATE_RANGE_PTR, `range_signed' must be a 290 * pointer to a struct netlink_range_validation_signed 291 * that indicates the min/max values. 292 * Use NLA_POLICY_FULL_RANGE_SIGNED(). 293 * 294 * NLA_BINARY If the validation type is like the ones for integers 295 * above, then the min/max length (not value like for 296 * integers) of the attribute is enforced. 297 * 298 * All other Unused - but note that it's a union 299 * 300 * Meaning of `validate' field, use via NLA_POLICY_VALIDATE_FN: 301 * NLA_BINARY Validation function called for the attribute. 302 * All other Unused - but note that it's a union 303 * 304 * Example: 305 * 306 * static const u32 myvalidflags = 0xff231023; 307 * 308 * static const struct nla_policy my_policy[ATTR_MAX+1] = { 309 * [ATTR_FOO] = { .type = NLA_U16 }, 310 * [ATTR_BAR] = { .type = NLA_STRING, .len = BARSIZ }, 311 * [ATTR_BAZ] = NLA_POLICY_EXACT_LEN(sizeof(struct mystruct)), 312 * [ATTR_GOO] = NLA_POLICY_BITFIELD32(myvalidflags), 313 * }; 314 */ 315 struct nla_policy { 316 u8 type; 317 u8 validation_type; 318 u16 len; 319 union { 320 const u32 bitfield32_valid; 321 const u32 mask; 322 const char *reject_message; 323 const struct nla_policy *nested_policy; 324 struct netlink_range_validation *range; 325 struct netlink_range_validation_signed *range_signed; 326 struct { 327 s16 min, max; 328 }; 329 int (*validate)(const struct nlattr *attr, 330 struct netlink_ext_ack *extack); 331 /* This entry is special, and used for the attribute at index 0 332 * only, and specifies special data about the policy, namely it 333 * specifies the "boundary type" where strict length validation 334 * starts for any attribute types >= this value, also, strict 335 * nesting validation starts here. 336 * 337 * Additionally, it means that NLA_UNSPEC is actually NLA_REJECT 338 * for any types >= this, so need to use NLA_POLICY_MIN_LEN() to 339 * get the previous pure { .len = xyz } behaviour. The advantage 340 * of this is that types not specified in the policy will be 341 * rejected. 342 * 343 * For completely new families it should be set to 1 so that the 344 * validation is enforced for all attributes. For existing ones 345 * it should be set at least when new attributes are added to 346 * the enum used by the policy, and be set to the new value that 347 * was added to enforce strict validation from thereon. 348 */ 349 u16 strict_start_type; 350 }; 351 }; 352 353 #define NLA_POLICY_ETH_ADDR NLA_POLICY_EXACT_LEN(ETH_ALEN) 354 #define NLA_POLICY_ETH_ADDR_COMPAT NLA_POLICY_EXACT_LEN_WARN(ETH_ALEN) 355 356 #define _NLA_POLICY_NESTED(maxattr, policy) \ 357 { .type = NLA_NESTED, .nested_policy = policy, .len = maxattr } 358 #define _NLA_POLICY_NESTED_ARRAY(maxattr, policy) \ 359 { .type = NLA_NESTED_ARRAY, .nested_policy = policy, .len = maxattr } 360 #define NLA_POLICY_NESTED(policy) \ 361 _NLA_POLICY_NESTED(ARRAY_SIZE(policy) - 1, policy) 362 #define NLA_POLICY_NESTED_ARRAY(policy) \ 363 _NLA_POLICY_NESTED_ARRAY(ARRAY_SIZE(policy) - 1, policy) 364 #define NLA_POLICY_BITFIELD32(valid) \ 365 { .type = NLA_BITFIELD32, .bitfield32_valid = valid } 366 367 #define __NLA_IS_UINT_TYPE(tp) \ 368 (tp == NLA_U8 || tp == NLA_U16 || tp == NLA_U32 || tp == NLA_U64) 369 #define __NLA_IS_SINT_TYPE(tp) \ 370 (tp == NLA_S8 || tp == NLA_S16 || tp == NLA_S32 || tp == NLA_S64) 371 372 #define __NLA_ENSURE(condition) BUILD_BUG_ON_ZERO(!(condition)) 373 #define NLA_ENSURE_UINT_TYPE(tp) \ 374 (__NLA_ENSURE(__NLA_IS_UINT_TYPE(tp)) + tp) 375 #define NLA_ENSURE_UINT_OR_BINARY_TYPE(tp) \ 376 (__NLA_ENSURE(__NLA_IS_UINT_TYPE(tp) || \ 377 tp == NLA_MSECS || \ 378 tp == NLA_BINARY) + tp) 379 #define NLA_ENSURE_SINT_TYPE(tp) \ 380 (__NLA_ENSURE(__NLA_IS_SINT_TYPE(tp)) + tp) 381 #define NLA_ENSURE_INT_OR_BINARY_TYPE(tp) \ 382 (__NLA_ENSURE(__NLA_IS_UINT_TYPE(tp) || \ 383 __NLA_IS_SINT_TYPE(tp) || \ 384 tp == NLA_MSECS || \ 385 tp == NLA_BINARY) + tp) 386 #define NLA_ENSURE_NO_VALIDATION_PTR(tp) \ 387 (__NLA_ENSURE(tp != NLA_BITFIELD32 && \ 388 tp != NLA_REJECT && \ 389 tp != NLA_NESTED && \ 390 tp != NLA_NESTED_ARRAY) + tp) 391 392 #define NLA_POLICY_RANGE(tp, _min, _max) { \ 393 .type = NLA_ENSURE_INT_OR_BINARY_TYPE(tp), \ 394 .validation_type = NLA_VALIDATE_RANGE, \ 395 .min = _min, \ 396 .max = _max \ 397 } 398 399 #define NLA_POLICY_FULL_RANGE(tp, _range) { \ 400 .type = NLA_ENSURE_UINT_OR_BINARY_TYPE(tp), \ 401 .validation_type = NLA_VALIDATE_RANGE_PTR, \ 402 .range = _range, \ 403 } 404 405 #define NLA_POLICY_FULL_RANGE_SIGNED(tp, _range) { \ 406 .type = NLA_ENSURE_SINT_TYPE(tp), \ 407 .validation_type = NLA_VALIDATE_RANGE_PTR, \ 408 .range_signed = _range, \ 409 } 410 411 #define NLA_POLICY_MIN(tp, _min) { \ 412 .type = NLA_ENSURE_INT_OR_BINARY_TYPE(tp), \ 413 .validation_type = NLA_VALIDATE_MIN, \ 414 .min = _min, \ 415 } 416 417 #define NLA_POLICY_MAX(tp, _max) { \ 418 .type = NLA_ENSURE_INT_OR_BINARY_TYPE(tp), \ 419 .validation_type = NLA_VALIDATE_MAX, \ 420 .max = _max, \ 421 } 422 423 #define NLA_POLICY_MASK(tp, _mask) { \ 424 .type = NLA_ENSURE_UINT_TYPE(tp), \ 425 .validation_type = NLA_VALIDATE_MASK, \ 426 .mask = _mask, \ 427 } 428 429 #define NLA_POLICY_VALIDATE_FN(tp, fn, ...) { \ 430 .type = NLA_ENSURE_NO_VALIDATION_PTR(tp), \ 431 .validation_type = NLA_VALIDATE_FUNCTION, \ 432 .validate = fn, \ 433 .len = __VA_ARGS__ + 0, \ 434 } 435 436 #define NLA_POLICY_EXACT_LEN(_len) NLA_POLICY_RANGE(NLA_BINARY, _len, _len) 437 #define NLA_POLICY_EXACT_LEN_WARN(_len) { \ 438 .type = NLA_BINARY, \ 439 .validation_type = NLA_VALIDATE_RANGE_WARN_TOO_LONG, \ 440 .min = _len, \ 441 .max = _len \ 442 } 443 #define NLA_POLICY_MIN_LEN(_len) NLA_POLICY_MIN(NLA_BINARY, _len) 444 445 /** 446 * struct nl_info - netlink source information 447 * @nlh: Netlink message header of original request 448 * @nl_net: Network namespace 449 * @portid: Netlink PORTID of requesting application 450 * @skip_notify: Skip netlink notifications to user space 451 * @skip_notify_kernel: Skip selected in-kernel notifications 452 */ 453 struct nl_info { 454 struct nlmsghdr *nlh; 455 struct net *nl_net; 456 u32 portid; 457 u8 skip_notify:1, 458 skip_notify_kernel:1; 459 }; 460 461 /** 462 * enum netlink_validation - netlink message/attribute validation levels 463 * @NL_VALIDATE_LIBERAL: Old-style "be liberal" validation, not caring about 464 * extra data at the end of the message, attributes being longer than 465 * they should be, or unknown attributes being present. 466 * @NL_VALIDATE_TRAILING: Reject junk data encountered after attribute parsing. 467 * @NL_VALIDATE_MAXTYPE: Reject attributes > max type; Together with _TRAILING 468 * this is equivalent to the old nla_parse_strict()/nlmsg_parse_strict(). 469 * @NL_VALIDATE_UNSPEC: Reject attributes with NLA_UNSPEC in the policy. 470 * This can safely be set by the kernel when the given policy has no 471 * NLA_UNSPEC anymore, and can thus be used to ensure policy entries 472 * are enforced going forward. 473 * @NL_VALIDATE_STRICT_ATTRS: strict attribute policy parsing (e.g. 474 * U8, U16, U32 must have exact size, etc.) 475 * @NL_VALIDATE_NESTED: Check that NLA_F_NESTED is set for NLA_NESTED(_ARRAY) 476 * and unset for other policies. 477 */ 478 enum netlink_validation { 479 NL_VALIDATE_LIBERAL = 0, 480 NL_VALIDATE_TRAILING = BIT(0), 481 NL_VALIDATE_MAXTYPE = BIT(1), 482 NL_VALIDATE_UNSPEC = BIT(2), 483 NL_VALIDATE_STRICT_ATTRS = BIT(3), 484 NL_VALIDATE_NESTED = BIT(4), 485 }; 486 487 #define NL_VALIDATE_DEPRECATED_STRICT (NL_VALIDATE_TRAILING |\ 488 NL_VALIDATE_MAXTYPE) 489 #define NL_VALIDATE_STRICT (NL_VALIDATE_TRAILING |\ 490 NL_VALIDATE_MAXTYPE |\ 491 NL_VALIDATE_UNSPEC |\ 492 NL_VALIDATE_STRICT_ATTRS |\ 493 NL_VALIDATE_NESTED) 494 495 int netlink_rcv_skb(struct sk_buff *skb, 496 int (*cb)(struct sk_buff *, struct nlmsghdr *, 497 struct netlink_ext_ack *)); 498 int nlmsg_notify(struct sock *sk, struct sk_buff *skb, u32 portid, 499 unsigned int group, int report, gfp_t flags); 500 501 int __nla_validate(const struct nlattr *head, int len, int maxtype, 502 const struct nla_policy *policy, unsigned int validate, 503 struct netlink_ext_ack *extack); 504 int __nla_parse(struct nlattr **tb, int maxtype, const struct nlattr *head, 505 int len, const struct nla_policy *policy, unsigned int validate, 506 struct netlink_ext_ack *extack); 507 int nla_policy_len(const struct nla_policy *, int); 508 struct nlattr *nla_find(const struct nlattr *head, int len, int attrtype); 509 ssize_t nla_strscpy(char *dst, const struct nlattr *nla, size_t dstsize); 510 char *nla_strdup(const struct nlattr *nla, gfp_t flags); 511 int nla_memcpy(void *dest, const struct nlattr *src, int count); 512 int nla_memcmp(const struct nlattr *nla, const void *data, size_t size); 513 int nla_strcmp(const struct nlattr *nla, const char *str); 514 struct nlattr *__nla_reserve(struct sk_buff *skb, int attrtype, int attrlen); 515 struct nlattr *__nla_reserve_64bit(struct sk_buff *skb, int attrtype, 516 int attrlen, int padattr); 517 void *__nla_reserve_nohdr(struct sk_buff *skb, int attrlen); 518 struct nlattr *nla_reserve(struct sk_buff *skb, int attrtype, int attrlen); 519 struct nlattr *nla_reserve_64bit(struct sk_buff *skb, int attrtype, 520 int attrlen, int padattr); 521 void *nla_reserve_nohdr(struct sk_buff *skb, int attrlen); 522 void __nla_put(struct sk_buff *skb, int attrtype, int attrlen, 523 const void *data); 524 void __nla_put_64bit(struct sk_buff *skb, int attrtype, int attrlen, 525 const void *data, int padattr); 526 void __nla_put_nohdr(struct sk_buff *skb, int attrlen, const void *data); 527 int nla_put(struct sk_buff *skb, int attrtype, int attrlen, const void *data); 528 int nla_put_64bit(struct sk_buff *skb, int attrtype, int attrlen, 529 const void *data, int padattr); 530 int nla_put_nohdr(struct sk_buff *skb, int attrlen, const void *data); 531 int nla_append(struct sk_buff *skb, int attrlen, const void *data); 532 533 /************************************************************************** 534 * Netlink Messages 535 **************************************************************************/ 536 537 /** 538 * nlmsg_msg_size - length of netlink message not including padding 539 * @payload: length of message payload 540 */ 541 static inline int nlmsg_msg_size(int payload) 542 { 543 return NLMSG_HDRLEN + payload; 544 } 545 546 /** 547 * nlmsg_total_size - length of netlink message including padding 548 * @payload: length of message payload 549 */ 550 static inline int nlmsg_total_size(int payload) 551 { 552 return NLMSG_ALIGN(nlmsg_msg_size(payload)); 553 } 554 555 /** 556 * nlmsg_padlen - length of padding at the message's tail 557 * @payload: length of message payload 558 */ 559 static inline int nlmsg_padlen(int payload) 560 { 561 return nlmsg_total_size(payload) - nlmsg_msg_size(payload); 562 } 563 564 /** 565 * nlmsg_data - head of message payload 566 * @nlh: netlink message header 567 */ 568 static inline void *nlmsg_data(const struct nlmsghdr *nlh) 569 { 570 return (unsigned char *) nlh + NLMSG_HDRLEN; 571 } 572 573 /** 574 * nlmsg_len - length of message payload 575 * @nlh: netlink message header 576 */ 577 static inline int nlmsg_len(const struct nlmsghdr *nlh) 578 { 579 return nlh->nlmsg_len - NLMSG_HDRLEN; 580 } 581 582 /** 583 * nlmsg_attrdata - head of attributes data 584 * @nlh: netlink message header 585 * @hdrlen: length of family specific header 586 */ 587 static inline struct nlattr *nlmsg_attrdata(const struct nlmsghdr *nlh, 588 int hdrlen) 589 { 590 unsigned char *data = nlmsg_data(nlh); 591 return (struct nlattr *) (data + NLMSG_ALIGN(hdrlen)); 592 } 593 594 /** 595 * nlmsg_attrlen - length of attributes data 596 * @nlh: netlink message header 597 * @hdrlen: length of family specific header 598 */ 599 static inline int nlmsg_attrlen(const struct nlmsghdr *nlh, int hdrlen) 600 { 601 return nlmsg_len(nlh) - NLMSG_ALIGN(hdrlen); 602 } 603 604 /** 605 * nlmsg_ok - check if the netlink message fits into the remaining bytes 606 * @nlh: netlink message header 607 * @remaining: number of bytes remaining in message stream 608 */ 609 static inline int nlmsg_ok(const struct nlmsghdr *nlh, int remaining) 610 { 611 return (remaining >= (int) sizeof(struct nlmsghdr) && 612 nlh->nlmsg_len >= sizeof(struct nlmsghdr) && 613 nlh->nlmsg_len <= remaining); 614 } 615 616 /** 617 * nlmsg_next - next netlink message in message stream 618 * @nlh: netlink message header 619 * @remaining: number of bytes remaining in message stream 620 * 621 * Returns the next netlink message in the message stream and 622 * decrements remaining by the size of the current message. 623 */ 624 static inline struct nlmsghdr * 625 nlmsg_next(const struct nlmsghdr *nlh, int *remaining) 626 { 627 int totlen = NLMSG_ALIGN(nlh->nlmsg_len); 628 629 *remaining -= totlen; 630 631 return (struct nlmsghdr *) ((unsigned char *) nlh + totlen); 632 } 633 634 /** 635 * nla_parse - Parse a stream of attributes into a tb buffer 636 * @tb: destination array with maxtype+1 elements 637 * @maxtype: maximum attribute type to be expected 638 * @head: head of attribute stream 639 * @len: length of attribute stream 640 * @policy: validation policy 641 * @extack: extended ACK pointer 642 * 643 * Parses a stream of attributes and stores a pointer to each attribute in 644 * the tb array accessible via the attribute type. Attributes with a type 645 * exceeding maxtype will be rejected, policy must be specified, attributes 646 * will be validated in the strictest way possible. 647 * 648 * Returns 0 on success or a negative error code. 649 */ 650 static inline int nla_parse(struct nlattr **tb, int maxtype, 651 const struct nlattr *head, int len, 652 const struct nla_policy *policy, 653 struct netlink_ext_ack *extack) 654 { 655 return __nla_parse(tb, maxtype, head, len, policy, 656 NL_VALIDATE_STRICT, extack); 657 } 658 659 /** 660 * nla_parse_deprecated - Parse a stream of attributes into a tb buffer 661 * @tb: destination array with maxtype+1 elements 662 * @maxtype: maximum attribute type to be expected 663 * @head: head of attribute stream 664 * @len: length of attribute stream 665 * @policy: validation policy 666 * @extack: extended ACK pointer 667 * 668 * Parses a stream of attributes and stores a pointer to each attribute in 669 * the tb array accessible via the attribute type. Attributes with a type 670 * exceeding maxtype will be ignored and attributes from the policy are not 671 * always strictly validated (only for new attributes). 672 * 673 * Returns 0 on success or a negative error code. 674 */ 675 static inline int nla_parse_deprecated(struct nlattr **tb, int maxtype, 676 const struct nlattr *head, int len, 677 const struct nla_policy *policy, 678 struct netlink_ext_ack *extack) 679 { 680 return __nla_parse(tb, maxtype, head, len, policy, 681 NL_VALIDATE_LIBERAL, extack); 682 } 683 684 /** 685 * nla_parse_deprecated_strict - Parse a stream of attributes into a tb buffer 686 * @tb: destination array with maxtype+1 elements 687 * @maxtype: maximum attribute type to be expected 688 * @head: head of attribute stream 689 * @len: length of attribute stream 690 * @policy: validation policy 691 * @extack: extended ACK pointer 692 * 693 * Parses a stream of attributes and stores a pointer to each attribute in 694 * the tb array accessible via the attribute type. Attributes with a type 695 * exceeding maxtype will be rejected as well as trailing data, but the 696 * policy is not completely strictly validated (only for new attributes). 697 * 698 * Returns 0 on success or a negative error code. 699 */ 700 static inline int nla_parse_deprecated_strict(struct nlattr **tb, int maxtype, 701 const struct nlattr *head, 702 int len, 703 const struct nla_policy *policy, 704 struct netlink_ext_ack *extack) 705 { 706 return __nla_parse(tb, maxtype, head, len, policy, 707 NL_VALIDATE_DEPRECATED_STRICT, extack); 708 } 709 710 /** 711 * __nlmsg_parse - parse attributes of a netlink message 712 * @nlh: netlink message header 713 * @hdrlen: length of family specific header 714 * @tb: destination array with maxtype+1 elements 715 * @maxtype: maximum attribute type to be expected 716 * @policy: validation policy 717 * @validate: validation strictness 718 * @extack: extended ACK report struct 719 * 720 * See nla_parse() 721 */ 722 static inline int __nlmsg_parse(const struct nlmsghdr *nlh, int hdrlen, 723 struct nlattr *tb[], int maxtype, 724 const struct nla_policy *policy, 725 unsigned int validate, 726 struct netlink_ext_ack *extack) 727 { 728 if (nlh->nlmsg_len < nlmsg_msg_size(hdrlen)) { 729 NL_SET_ERR_MSG(extack, "Invalid header length"); 730 return -EINVAL; 731 } 732 733 return __nla_parse(tb, maxtype, nlmsg_attrdata(nlh, hdrlen), 734 nlmsg_attrlen(nlh, hdrlen), policy, validate, 735 extack); 736 } 737 738 /** 739 * nlmsg_parse - parse attributes of a netlink message 740 * @nlh: netlink message header 741 * @hdrlen: length of family specific header 742 * @tb: destination array with maxtype+1 elements 743 * @maxtype: maximum attribute type to be expected 744 * @policy: validation policy 745 * @extack: extended ACK report struct 746 * 747 * See nla_parse() 748 */ 749 static inline int nlmsg_parse(const struct nlmsghdr *nlh, int hdrlen, 750 struct nlattr *tb[], int maxtype, 751 const struct nla_policy *policy, 752 struct netlink_ext_ack *extack) 753 { 754 return __nlmsg_parse(nlh, hdrlen, tb, maxtype, policy, 755 NL_VALIDATE_STRICT, extack); 756 } 757 758 /** 759 * nlmsg_parse_deprecated - parse attributes of a netlink message 760 * @nlh: netlink message header 761 * @hdrlen: length of family specific header 762 * @tb: destination array with maxtype+1 elements 763 * @maxtype: maximum attribute type to be expected 764 * @policy: validation policy 765 * @extack: extended ACK report struct 766 * 767 * See nla_parse_deprecated() 768 */ 769 static inline int nlmsg_parse_deprecated(const struct nlmsghdr *nlh, int hdrlen, 770 struct nlattr *tb[], int maxtype, 771 const struct nla_policy *policy, 772 struct netlink_ext_ack *extack) 773 { 774 return __nlmsg_parse(nlh, hdrlen, tb, maxtype, policy, 775 NL_VALIDATE_LIBERAL, extack); 776 } 777 778 /** 779 * nlmsg_parse_deprecated_strict - parse attributes of a netlink message 780 * @nlh: netlink message header 781 * @hdrlen: length of family specific header 782 * @tb: destination array with maxtype+1 elements 783 * @maxtype: maximum attribute type to be expected 784 * @policy: validation policy 785 * @extack: extended ACK report struct 786 * 787 * See nla_parse_deprecated_strict() 788 */ 789 static inline int 790 nlmsg_parse_deprecated_strict(const struct nlmsghdr *nlh, int hdrlen, 791 struct nlattr *tb[], int maxtype, 792 const struct nla_policy *policy, 793 struct netlink_ext_ack *extack) 794 { 795 return __nlmsg_parse(nlh, hdrlen, tb, maxtype, policy, 796 NL_VALIDATE_DEPRECATED_STRICT, extack); 797 } 798 799 /** 800 * nlmsg_find_attr - find a specific attribute in a netlink message 801 * @nlh: netlink message header 802 * @hdrlen: length of familiy specific header 803 * @attrtype: type of attribute to look for 804 * 805 * Returns the first attribute which matches the specified type. 806 */ 807 static inline struct nlattr *nlmsg_find_attr(const struct nlmsghdr *nlh, 808 int hdrlen, int attrtype) 809 { 810 return nla_find(nlmsg_attrdata(nlh, hdrlen), 811 nlmsg_attrlen(nlh, hdrlen), attrtype); 812 } 813 814 /** 815 * nla_validate_deprecated - Validate a stream of attributes 816 * @head: head of attribute stream 817 * @len: length of attribute stream 818 * @maxtype: maximum attribute type to be expected 819 * @policy: validation policy 820 * @extack: extended ACK report struct 821 * 822 * Validates all attributes in the specified attribute stream against the 823 * specified policy. Validation is done in liberal mode. 824 * See documenation of struct nla_policy for more details. 825 * 826 * Returns 0 on success or a negative error code. 827 */ 828 static inline int nla_validate_deprecated(const struct nlattr *head, int len, 829 int maxtype, 830 const struct nla_policy *policy, 831 struct netlink_ext_ack *extack) 832 { 833 return __nla_validate(head, len, maxtype, policy, NL_VALIDATE_LIBERAL, 834 extack); 835 } 836 837 /** 838 * nla_validate - Validate a stream of attributes 839 * @head: head of attribute stream 840 * @len: length of attribute stream 841 * @maxtype: maximum attribute type to be expected 842 * @policy: validation policy 843 * @extack: extended ACK report struct 844 * 845 * Validates all attributes in the specified attribute stream against the 846 * specified policy. Validation is done in strict mode. 847 * See documenation of struct nla_policy for more details. 848 * 849 * Returns 0 on success or a negative error code. 850 */ 851 static inline int nla_validate(const struct nlattr *head, int len, int maxtype, 852 const struct nla_policy *policy, 853 struct netlink_ext_ack *extack) 854 { 855 return __nla_validate(head, len, maxtype, policy, NL_VALIDATE_STRICT, 856 extack); 857 } 858 859 /** 860 * nlmsg_validate_deprecated - validate a netlink message including attributes 861 * @nlh: netlinket message header 862 * @hdrlen: length of familiy specific header 863 * @maxtype: maximum attribute type to be expected 864 * @policy: validation policy 865 * @extack: extended ACK report struct 866 */ 867 static inline int nlmsg_validate_deprecated(const struct nlmsghdr *nlh, 868 int hdrlen, int maxtype, 869 const struct nla_policy *policy, 870 struct netlink_ext_ack *extack) 871 { 872 if (nlh->nlmsg_len < nlmsg_msg_size(hdrlen)) 873 return -EINVAL; 874 875 return __nla_validate(nlmsg_attrdata(nlh, hdrlen), 876 nlmsg_attrlen(nlh, hdrlen), maxtype, 877 policy, NL_VALIDATE_LIBERAL, extack); 878 } 879 880 881 882 /** 883 * nlmsg_report - need to report back to application? 884 * @nlh: netlink message header 885 * 886 * Returns 1 if a report back to the application is requested. 887 */ 888 static inline int nlmsg_report(const struct nlmsghdr *nlh) 889 { 890 return nlh ? !!(nlh->nlmsg_flags & NLM_F_ECHO) : 0; 891 } 892 893 /** 894 * nlmsg_for_each_attr - iterate over a stream of attributes 895 * @pos: loop counter, set to current attribute 896 * @nlh: netlink message header 897 * @hdrlen: length of familiy specific header 898 * @rem: initialized to len, holds bytes currently remaining in stream 899 */ 900 #define nlmsg_for_each_attr(pos, nlh, hdrlen, rem) \ 901 nla_for_each_attr(pos, nlmsg_attrdata(nlh, hdrlen), \ 902 nlmsg_attrlen(nlh, hdrlen), rem) 903 904 /** 905 * nlmsg_put - Add a new netlink message to an skb 906 * @skb: socket buffer to store message in 907 * @portid: netlink PORTID of requesting application 908 * @seq: sequence number of message 909 * @type: message type 910 * @payload: length of message payload 911 * @flags: message flags 912 * 913 * Returns NULL if the tailroom of the skb is insufficient to store 914 * the message header and payload. 915 */ 916 static inline struct nlmsghdr *nlmsg_put(struct sk_buff *skb, u32 portid, u32 seq, 917 int type, int payload, int flags) 918 { 919 if (unlikely(skb_tailroom(skb) < nlmsg_total_size(payload))) 920 return NULL; 921 922 return __nlmsg_put(skb, portid, seq, type, payload, flags); 923 } 924 925 /** 926 * nlmsg_put_answer - Add a new callback based netlink message to an skb 927 * @skb: socket buffer to store message in 928 * @cb: netlink callback 929 * @type: message type 930 * @payload: length of message payload 931 * @flags: message flags 932 * 933 * Returns NULL if the tailroom of the skb is insufficient to store 934 * the message header and payload. 935 */ 936 static inline struct nlmsghdr *nlmsg_put_answer(struct sk_buff *skb, 937 struct netlink_callback *cb, 938 int type, int payload, 939 int flags) 940 { 941 return nlmsg_put(skb, NETLINK_CB(cb->skb).portid, cb->nlh->nlmsg_seq, 942 type, payload, flags); 943 } 944 945 /** 946 * nlmsg_new - Allocate a new netlink message 947 * @payload: size of the message payload 948 * @flags: the type of memory to allocate. 949 * 950 * Use NLMSG_DEFAULT_SIZE if the size of the payload isn't known 951 * and a good default is needed. 952 */ 953 static inline struct sk_buff *nlmsg_new(size_t payload, gfp_t flags) 954 { 955 return alloc_skb(nlmsg_total_size(payload), flags); 956 } 957 958 /** 959 * nlmsg_end - Finalize a netlink message 960 * @skb: socket buffer the message is stored in 961 * @nlh: netlink message header 962 * 963 * Corrects the netlink message header to include the appeneded 964 * attributes. Only necessary if attributes have been added to 965 * the message. 966 */ 967 static inline void nlmsg_end(struct sk_buff *skb, struct nlmsghdr *nlh) 968 { 969 nlh->nlmsg_len = skb_tail_pointer(skb) - (unsigned char *)nlh; 970 } 971 972 /** 973 * nlmsg_get_pos - return current position in netlink message 974 * @skb: socket buffer the message is stored in 975 * 976 * Returns a pointer to the current tail of the message. 977 */ 978 static inline void *nlmsg_get_pos(struct sk_buff *skb) 979 { 980 return skb_tail_pointer(skb); 981 } 982 983 /** 984 * nlmsg_trim - Trim message to a mark 985 * @skb: socket buffer the message is stored in 986 * @mark: mark to trim to 987 * 988 * Trims the message to the provided mark. 989 */ 990 static inline void nlmsg_trim(struct sk_buff *skb, const void *mark) 991 { 992 if (mark) { 993 WARN_ON((unsigned char *) mark < skb->data); 994 skb_trim(skb, (unsigned char *) mark - skb->data); 995 } 996 } 997 998 /** 999 * nlmsg_cancel - Cancel construction of a netlink message 1000 * @skb: socket buffer the message is stored in 1001 * @nlh: netlink message header 1002 * 1003 * Removes the complete netlink message including all 1004 * attributes from the socket buffer again. 1005 */ 1006 static inline void nlmsg_cancel(struct sk_buff *skb, struct nlmsghdr *nlh) 1007 { 1008 nlmsg_trim(skb, nlh); 1009 } 1010 1011 /** 1012 * nlmsg_free - free a netlink message 1013 * @skb: socket buffer of netlink message 1014 */ 1015 static inline void nlmsg_free(struct sk_buff *skb) 1016 { 1017 kfree_skb(skb); 1018 } 1019 1020 /** 1021 * nlmsg_multicast - multicast a netlink message 1022 * @sk: netlink socket to spread messages to 1023 * @skb: netlink message as socket buffer 1024 * @portid: own netlink portid to avoid sending to yourself 1025 * @group: multicast group id 1026 * @flags: allocation flags 1027 */ 1028 static inline int nlmsg_multicast(struct sock *sk, struct sk_buff *skb, 1029 u32 portid, unsigned int group, gfp_t flags) 1030 { 1031 int err; 1032 1033 NETLINK_CB(skb).dst_group = group; 1034 1035 err = netlink_broadcast(sk, skb, portid, group, flags); 1036 if (err > 0) 1037 err = 0; 1038 1039 return err; 1040 } 1041 1042 /** 1043 * nlmsg_unicast - unicast a netlink message 1044 * @sk: netlink socket to spread message to 1045 * @skb: netlink message as socket buffer 1046 * @portid: netlink portid of the destination socket 1047 */ 1048 static inline int nlmsg_unicast(struct sock *sk, struct sk_buff *skb, u32 portid) 1049 { 1050 int err; 1051 1052 err = netlink_unicast(sk, skb, portid, MSG_DONTWAIT); 1053 if (err > 0) 1054 err = 0; 1055 1056 return err; 1057 } 1058 1059 /** 1060 * nlmsg_for_each_msg - iterate over a stream of messages 1061 * @pos: loop counter, set to current message 1062 * @head: head of message stream 1063 * @len: length of message stream 1064 * @rem: initialized to len, holds bytes currently remaining in stream 1065 */ 1066 #define nlmsg_for_each_msg(pos, head, len, rem) \ 1067 for (pos = head, rem = len; \ 1068 nlmsg_ok(pos, rem); \ 1069 pos = nlmsg_next(pos, &(rem))) 1070 1071 /** 1072 * nl_dump_check_consistent - check if sequence is consistent and advertise if not 1073 * @cb: netlink callback structure that stores the sequence number 1074 * @nlh: netlink message header to write the flag to 1075 * 1076 * This function checks if the sequence (generation) number changed during dump 1077 * and if it did, advertises it in the netlink message header. 1078 * 1079 * The correct way to use it is to set cb->seq to the generation counter when 1080 * all locks for dumping have been acquired, and then call this function for 1081 * each message that is generated. 1082 * 1083 * Note that due to initialisation concerns, 0 is an invalid sequence number 1084 * and must not be used by code that uses this functionality. 1085 */ 1086 static inline void 1087 nl_dump_check_consistent(struct netlink_callback *cb, 1088 struct nlmsghdr *nlh) 1089 { 1090 if (cb->prev_seq && cb->seq != cb->prev_seq) 1091 nlh->nlmsg_flags |= NLM_F_DUMP_INTR; 1092 cb->prev_seq = cb->seq; 1093 } 1094 1095 /************************************************************************** 1096 * Netlink Attributes 1097 **************************************************************************/ 1098 1099 /** 1100 * nla_attr_size - length of attribute not including padding 1101 * @payload: length of payload 1102 */ 1103 static inline int nla_attr_size(int payload) 1104 { 1105 return NLA_HDRLEN + payload; 1106 } 1107 1108 /** 1109 * nla_total_size - total length of attribute including padding 1110 * @payload: length of payload 1111 */ 1112 static inline int nla_total_size(int payload) 1113 { 1114 return NLA_ALIGN(nla_attr_size(payload)); 1115 } 1116 1117 /** 1118 * nla_padlen - length of padding at the tail of attribute 1119 * @payload: length of payload 1120 */ 1121 static inline int nla_padlen(int payload) 1122 { 1123 return nla_total_size(payload) - nla_attr_size(payload); 1124 } 1125 1126 /** 1127 * nla_type - attribute type 1128 * @nla: netlink attribute 1129 */ 1130 static inline int nla_type(const struct nlattr *nla) 1131 { 1132 return nla->nla_type & NLA_TYPE_MASK; 1133 } 1134 1135 /** 1136 * nla_data - head of payload 1137 * @nla: netlink attribute 1138 */ 1139 static inline void *nla_data(const struct nlattr *nla) 1140 { 1141 return (char *) nla + NLA_HDRLEN; 1142 } 1143 1144 /** 1145 * nla_len - length of payload 1146 * @nla: netlink attribute 1147 */ 1148 static inline int nla_len(const struct nlattr *nla) 1149 { 1150 return nla->nla_len - NLA_HDRLEN; 1151 } 1152 1153 /** 1154 * nla_ok - check if the netlink attribute fits into the remaining bytes 1155 * @nla: netlink attribute 1156 * @remaining: number of bytes remaining in attribute stream 1157 */ 1158 static inline int nla_ok(const struct nlattr *nla, int remaining) 1159 { 1160 return remaining >= (int) sizeof(*nla) && 1161 nla->nla_len >= sizeof(*nla) && 1162 nla->nla_len <= remaining; 1163 } 1164 1165 /** 1166 * nla_next - next netlink attribute in attribute stream 1167 * @nla: netlink attribute 1168 * @remaining: number of bytes remaining in attribute stream 1169 * 1170 * Returns the next netlink attribute in the attribute stream and 1171 * decrements remaining by the size of the current attribute. 1172 */ 1173 static inline struct nlattr *nla_next(const struct nlattr *nla, int *remaining) 1174 { 1175 unsigned int totlen = NLA_ALIGN(nla->nla_len); 1176 1177 *remaining -= totlen; 1178 return (struct nlattr *) ((char *) nla + totlen); 1179 } 1180 1181 /** 1182 * nla_find_nested - find attribute in a set of nested attributes 1183 * @nla: attribute containing the nested attributes 1184 * @attrtype: type of attribute to look for 1185 * 1186 * Returns the first attribute which matches the specified type. 1187 */ 1188 static inline struct nlattr * 1189 nla_find_nested(const struct nlattr *nla, int attrtype) 1190 { 1191 return nla_find(nla_data(nla), nla_len(nla), attrtype); 1192 } 1193 1194 /** 1195 * nla_parse_nested - parse nested attributes 1196 * @tb: destination array with maxtype+1 elements 1197 * @maxtype: maximum attribute type to be expected 1198 * @nla: attribute containing the nested attributes 1199 * @policy: validation policy 1200 * @extack: extended ACK report struct 1201 * 1202 * See nla_parse() 1203 */ 1204 static inline int nla_parse_nested(struct nlattr *tb[], int maxtype, 1205 const struct nlattr *nla, 1206 const struct nla_policy *policy, 1207 struct netlink_ext_ack *extack) 1208 { 1209 if (!(nla->nla_type & NLA_F_NESTED)) { 1210 NL_SET_ERR_MSG_ATTR(extack, nla, "NLA_F_NESTED is missing"); 1211 return -EINVAL; 1212 } 1213 1214 return __nla_parse(tb, maxtype, nla_data(nla), nla_len(nla), policy, 1215 NL_VALIDATE_STRICT, extack); 1216 } 1217 1218 /** 1219 * nla_parse_nested_deprecated - parse nested attributes 1220 * @tb: destination array with maxtype+1 elements 1221 * @maxtype: maximum attribute type to be expected 1222 * @nla: attribute containing the nested attributes 1223 * @policy: validation policy 1224 * @extack: extended ACK report struct 1225 * 1226 * See nla_parse_deprecated() 1227 */ 1228 static inline int nla_parse_nested_deprecated(struct nlattr *tb[], int maxtype, 1229 const struct nlattr *nla, 1230 const struct nla_policy *policy, 1231 struct netlink_ext_ack *extack) 1232 { 1233 return __nla_parse(tb, maxtype, nla_data(nla), nla_len(nla), policy, 1234 NL_VALIDATE_LIBERAL, extack); 1235 } 1236 1237 /** 1238 * nla_put_u8 - Add a u8 netlink attribute to a socket buffer 1239 * @skb: socket buffer to add attribute to 1240 * @attrtype: attribute type 1241 * @value: numeric value 1242 */ 1243 static inline int nla_put_u8(struct sk_buff *skb, int attrtype, u8 value) 1244 { 1245 /* temporary variables to work around GCC PR81715 with asan-stack=1 */ 1246 u8 tmp = value; 1247 1248 return nla_put(skb, attrtype, sizeof(u8), &tmp); 1249 } 1250 1251 /** 1252 * nla_put_u16 - Add a u16 netlink attribute to a socket buffer 1253 * @skb: socket buffer to add attribute to 1254 * @attrtype: attribute type 1255 * @value: numeric value 1256 */ 1257 static inline int nla_put_u16(struct sk_buff *skb, int attrtype, u16 value) 1258 { 1259 u16 tmp = value; 1260 1261 return nla_put(skb, attrtype, sizeof(u16), &tmp); 1262 } 1263 1264 /** 1265 * nla_put_be16 - Add a __be16 netlink attribute to a socket buffer 1266 * @skb: socket buffer to add attribute to 1267 * @attrtype: attribute type 1268 * @value: numeric value 1269 */ 1270 static inline int nla_put_be16(struct sk_buff *skb, int attrtype, __be16 value) 1271 { 1272 __be16 tmp = value; 1273 1274 return nla_put(skb, attrtype, sizeof(__be16), &tmp); 1275 } 1276 1277 /** 1278 * nla_put_net16 - Add 16-bit network byte order netlink attribute to a socket buffer 1279 * @skb: socket buffer to add attribute to 1280 * @attrtype: attribute type 1281 * @value: numeric value 1282 */ 1283 static inline int nla_put_net16(struct sk_buff *skb, int attrtype, __be16 value) 1284 { 1285 __be16 tmp = value; 1286 1287 return nla_put_be16(skb, attrtype | NLA_F_NET_BYTEORDER, tmp); 1288 } 1289 1290 /** 1291 * nla_put_le16 - Add a __le16 netlink attribute to a socket buffer 1292 * @skb: socket buffer to add attribute to 1293 * @attrtype: attribute type 1294 * @value: numeric value 1295 */ 1296 static inline int nla_put_le16(struct sk_buff *skb, int attrtype, __le16 value) 1297 { 1298 __le16 tmp = value; 1299 1300 return nla_put(skb, attrtype, sizeof(__le16), &tmp); 1301 } 1302 1303 /** 1304 * nla_put_u32 - Add a u32 netlink attribute to a socket buffer 1305 * @skb: socket buffer to add attribute to 1306 * @attrtype: attribute type 1307 * @value: numeric value 1308 */ 1309 static inline int nla_put_u32(struct sk_buff *skb, int attrtype, u32 value) 1310 { 1311 u32 tmp = value; 1312 1313 return nla_put(skb, attrtype, sizeof(u32), &tmp); 1314 } 1315 1316 /** 1317 * nla_put_be32 - Add a __be32 netlink attribute to a socket buffer 1318 * @skb: socket buffer to add attribute to 1319 * @attrtype: attribute type 1320 * @value: numeric value 1321 */ 1322 static inline int nla_put_be32(struct sk_buff *skb, int attrtype, __be32 value) 1323 { 1324 __be32 tmp = value; 1325 1326 return nla_put(skb, attrtype, sizeof(__be32), &tmp); 1327 } 1328 1329 /** 1330 * nla_put_net32 - Add 32-bit network byte order netlink attribute to a socket buffer 1331 * @skb: socket buffer to add attribute to 1332 * @attrtype: attribute type 1333 * @value: numeric value 1334 */ 1335 static inline int nla_put_net32(struct sk_buff *skb, int attrtype, __be32 value) 1336 { 1337 __be32 tmp = value; 1338 1339 return nla_put_be32(skb, attrtype | NLA_F_NET_BYTEORDER, tmp); 1340 } 1341 1342 /** 1343 * nla_put_le32 - Add a __le32 netlink attribute to a socket buffer 1344 * @skb: socket buffer to add attribute to 1345 * @attrtype: attribute type 1346 * @value: numeric value 1347 */ 1348 static inline int nla_put_le32(struct sk_buff *skb, int attrtype, __le32 value) 1349 { 1350 __le32 tmp = value; 1351 1352 return nla_put(skb, attrtype, sizeof(__le32), &tmp); 1353 } 1354 1355 /** 1356 * nla_put_u64_64bit - Add a u64 netlink attribute to a skb and align it 1357 * @skb: socket buffer to add attribute to 1358 * @attrtype: attribute type 1359 * @value: numeric value 1360 * @padattr: attribute type for the padding 1361 */ 1362 static inline int nla_put_u64_64bit(struct sk_buff *skb, int attrtype, 1363 u64 value, int padattr) 1364 { 1365 u64 tmp = value; 1366 1367 return nla_put_64bit(skb, attrtype, sizeof(u64), &tmp, padattr); 1368 } 1369 1370 /** 1371 * nla_put_be64 - Add a __be64 netlink attribute to a socket buffer and align it 1372 * @skb: socket buffer to add attribute to 1373 * @attrtype: attribute type 1374 * @value: numeric value 1375 * @padattr: attribute type for the padding 1376 */ 1377 static inline int nla_put_be64(struct sk_buff *skb, int attrtype, __be64 value, 1378 int padattr) 1379 { 1380 __be64 tmp = value; 1381 1382 return nla_put_64bit(skb, attrtype, sizeof(__be64), &tmp, padattr); 1383 } 1384 1385 /** 1386 * nla_put_net64 - Add 64-bit network byte order nlattr to a skb and align it 1387 * @skb: socket buffer to add attribute to 1388 * @attrtype: attribute type 1389 * @value: numeric value 1390 * @padattr: attribute type for the padding 1391 */ 1392 static inline int nla_put_net64(struct sk_buff *skb, int attrtype, __be64 value, 1393 int padattr) 1394 { 1395 __be64 tmp = value; 1396 1397 return nla_put_be64(skb, attrtype | NLA_F_NET_BYTEORDER, tmp, 1398 padattr); 1399 } 1400 1401 /** 1402 * nla_put_le64 - Add a __le64 netlink attribute to a socket buffer and align it 1403 * @skb: socket buffer to add attribute to 1404 * @attrtype: attribute type 1405 * @value: numeric value 1406 * @padattr: attribute type for the padding 1407 */ 1408 static inline int nla_put_le64(struct sk_buff *skb, int attrtype, __le64 value, 1409 int padattr) 1410 { 1411 __le64 tmp = value; 1412 1413 return nla_put_64bit(skb, attrtype, sizeof(__le64), &tmp, padattr); 1414 } 1415 1416 /** 1417 * nla_put_s8 - Add a s8 netlink attribute to a socket buffer 1418 * @skb: socket buffer to add attribute to 1419 * @attrtype: attribute type 1420 * @value: numeric value 1421 */ 1422 static inline int nla_put_s8(struct sk_buff *skb, int attrtype, s8 value) 1423 { 1424 s8 tmp = value; 1425 1426 return nla_put(skb, attrtype, sizeof(s8), &tmp); 1427 } 1428 1429 /** 1430 * nla_put_s16 - Add a s16 netlink attribute to a socket buffer 1431 * @skb: socket buffer to add attribute to 1432 * @attrtype: attribute type 1433 * @value: numeric value 1434 */ 1435 static inline int nla_put_s16(struct sk_buff *skb, int attrtype, s16 value) 1436 { 1437 s16 tmp = value; 1438 1439 return nla_put(skb, attrtype, sizeof(s16), &tmp); 1440 } 1441 1442 /** 1443 * nla_put_s32 - Add a s32 netlink attribute to a socket buffer 1444 * @skb: socket buffer to add attribute to 1445 * @attrtype: attribute type 1446 * @value: numeric value 1447 */ 1448 static inline int nla_put_s32(struct sk_buff *skb, int attrtype, s32 value) 1449 { 1450 s32 tmp = value; 1451 1452 return nla_put(skb, attrtype, sizeof(s32), &tmp); 1453 } 1454 1455 /** 1456 * nla_put_s64 - Add a s64 netlink attribute to a socket buffer and align it 1457 * @skb: socket buffer to add attribute to 1458 * @attrtype: attribute type 1459 * @value: numeric value 1460 * @padattr: attribute type for the padding 1461 */ 1462 static inline int nla_put_s64(struct sk_buff *skb, int attrtype, s64 value, 1463 int padattr) 1464 { 1465 s64 tmp = value; 1466 1467 return nla_put_64bit(skb, attrtype, sizeof(s64), &tmp, padattr); 1468 } 1469 1470 /** 1471 * nla_put_string - Add a string netlink attribute to a socket buffer 1472 * @skb: socket buffer to add attribute to 1473 * @attrtype: attribute type 1474 * @str: NUL terminated string 1475 */ 1476 static inline int nla_put_string(struct sk_buff *skb, int attrtype, 1477 const char *str) 1478 { 1479 return nla_put(skb, attrtype, strlen(str) + 1, str); 1480 } 1481 1482 /** 1483 * nla_put_flag - Add a flag netlink attribute to a socket buffer 1484 * @skb: socket buffer to add attribute to 1485 * @attrtype: attribute type 1486 */ 1487 static inline int nla_put_flag(struct sk_buff *skb, int attrtype) 1488 { 1489 return nla_put(skb, attrtype, 0, NULL); 1490 } 1491 1492 /** 1493 * nla_put_msecs - Add a msecs netlink attribute to a skb and align it 1494 * @skb: socket buffer to add attribute to 1495 * @attrtype: attribute type 1496 * @njiffies: number of jiffies to convert to msecs 1497 * @padattr: attribute type for the padding 1498 */ 1499 static inline int nla_put_msecs(struct sk_buff *skb, int attrtype, 1500 unsigned long njiffies, int padattr) 1501 { 1502 u64 tmp = jiffies_to_msecs(njiffies); 1503 1504 return nla_put_64bit(skb, attrtype, sizeof(u64), &tmp, padattr); 1505 } 1506 1507 /** 1508 * nla_put_in_addr - Add an IPv4 address netlink attribute to a socket 1509 * buffer 1510 * @skb: socket buffer to add attribute to 1511 * @attrtype: attribute type 1512 * @addr: IPv4 address 1513 */ 1514 static inline int nla_put_in_addr(struct sk_buff *skb, int attrtype, 1515 __be32 addr) 1516 { 1517 __be32 tmp = addr; 1518 1519 return nla_put_be32(skb, attrtype, tmp); 1520 } 1521 1522 /** 1523 * nla_put_in6_addr - Add an IPv6 address netlink attribute to a socket 1524 * buffer 1525 * @skb: socket buffer to add attribute to 1526 * @attrtype: attribute type 1527 * @addr: IPv6 address 1528 */ 1529 static inline int nla_put_in6_addr(struct sk_buff *skb, int attrtype, 1530 const struct in6_addr *addr) 1531 { 1532 return nla_put(skb, attrtype, sizeof(*addr), addr); 1533 } 1534 1535 /** 1536 * nla_put_bitfield32 - Add a bitfield32 netlink attribute to a socket buffer 1537 * @skb: socket buffer to add attribute to 1538 * @attrtype: attribute type 1539 * @value: value carrying bits 1540 * @selector: selector of valid bits 1541 */ 1542 static inline int nla_put_bitfield32(struct sk_buff *skb, int attrtype, 1543 __u32 value, __u32 selector) 1544 { 1545 struct nla_bitfield32 tmp = { value, selector, }; 1546 1547 return nla_put(skb, attrtype, sizeof(tmp), &tmp); 1548 } 1549 1550 /** 1551 * nla_get_u32 - return payload of u32 attribute 1552 * @nla: u32 netlink attribute 1553 */ 1554 static inline u32 nla_get_u32(const struct nlattr *nla) 1555 { 1556 return *(u32 *) nla_data(nla); 1557 } 1558 1559 /** 1560 * nla_get_be32 - return payload of __be32 attribute 1561 * @nla: __be32 netlink attribute 1562 */ 1563 static inline __be32 nla_get_be32(const struct nlattr *nla) 1564 { 1565 return *(__be32 *) nla_data(nla); 1566 } 1567 1568 /** 1569 * nla_get_le32 - return payload of __le32 attribute 1570 * @nla: __le32 netlink attribute 1571 */ 1572 static inline __le32 nla_get_le32(const struct nlattr *nla) 1573 { 1574 return *(__le32 *) nla_data(nla); 1575 } 1576 1577 /** 1578 * nla_get_u16 - return payload of u16 attribute 1579 * @nla: u16 netlink attribute 1580 */ 1581 static inline u16 nla_get_u16(const struct nlattr *nla) 1582 { 1583 return *(u16 *) nla_data(nla); 1584 } 1585 1586 /** 1587 * nla_get_be16 - return payload of __be16 attribute 1588 * @nla: __be16 netlink attribute 1589 */ 1590 static inline __be16 nla_get_be16(const struct nlattr *nla) 1591 { 1592 return *(__be16 *) nla_data(nla); 1593 } 1594 1595 /** 1596 * nla_get_le16 - return payload of __le16 attribute 1597 * @nla: __le16 netlink attribute 1598 */ 1599 static inline __le16 nla_get_le16(const struct nlattr *nla) 1600 { 1601 return *(__le16 *) nla_data(nla); 1602 } 1603 1604 /** 1605 * nla_get_u8 - return payload of u8 attribute 1606 * @nla: u8 netlink attribute 1607 */ 1608 static inline u8 nla_get_u8(const struct nlattr *nla) 1609 { 1610 return *(u8 *) nla_data(nla); 1611 } 1612 1613 /** 1614 * nla_get_u64 - return payload of u64 attribute 1615 * @nla: u64 netlink attribute 1616 */ 1617 static inline u64 nla_get_u64(const struct nlattr *nla) 1618 { 1619 u64 tmp; 1620 1621 nla_memcpy(&tmp, nla, sizeof(tmp)); 1622 1623 return tmp; 1624 } 1625 1626 /** 1627 * nla_get_be64 - return payload of __be64 attribute 1628 * @nla: __be64 netlink attribute 1629 */ 1630 static inline __be64 nla_get_be64(const struct nlattr *nla) 1631 { 1632 __be64 tmp; 1633 1634 nla_memcpy(&tmp, nla, sizeof(tmp)); 1635 1636 return tmp; 1637 } 1638 1639 /** 1640 * nla_get_le64 - return payload of __le64 attribute 1641 * @nla: __le64 netlink attribute 1642 */ 1643 static inline __le64 nla_get_le64(const struct nlattr *nla) 1644 { 1645 return *(__le64 *) nla_data(nla); 1646 } 1647 1648 /** 1649 * nla_get_s32 - return payload of s32 attribute 1650 * @nla: s32 netlink attribute 1651 */ 1652 static inline s32 nla_get_s32(const struct nlattr *nla) 1653 { 1654 return *(s32 *) nla_data(nla); 1655 } 1656 1657 /** 1658 * nla_get_s16 - return payload of s16 attribute 1659 * @nla: s16 netlink attribute 1660 */ 1661 static inline s16 nla_get_s16(const struct nlattr *nla) 1662 { 1663 return *(s16 *) nla_data(nla); 1664 } 1665 1666 /** 1667 * nla_get_s8 - return payload of s8 attribute 1668 * @nla: s8 netlink attribute 1669 */ 1670 static inline s8 nla_get_s8(const struct nlattr *nla) 1671 { 1672 return *(s8 *) nla_data(nla); 1673 } 1674 1675 /** 1676 * nla_get_s64 - return payload of s64 attribute 1677 * @nla: s64 netlink attribute 1678 */ 1679 static inline s64 nla_get_s64(const struct nlattr *nla) 1680 { 1681 s64 tmp; 1682 1683 nla_memcpy(&tmp, nla, sizeof(tmp)); 1684 1685 return tmp; 1686 } 1687 1688 /** 1689 * nla_get_flag - return payload of flag attribute 1690 * @nla: flag netlink attribute 1691 */ 1692 static inline int nla_get_flag(const struct nlattr *nla) 1693 { 1694 return !!nla; 1695 } 1696 1697 /** 1698 * nla_get_msecs - return payload of msecs attribute 1699 * @nla: msecs netlink attribute 1700 * 1701 * Returns the number of milliseconds in jiffies. 1702 */ 1703 static inline unsigned long nla_get_msecs(const struct nlattr *nla) 1704 { 1705 u64 msecs = nla_get_u64(nla); 1706 1707 return msecs_to_jiffies((unsigned long) msecs); 1708 } 1709 1710 /** 1711 * nla_get_in_addr - return payload of IPv4 address attribute 1712 * @nla: IPv4 address netlink attribute 1713 */ 1714 static inline __be32 nla_get_in_addr(const struct nlattr *nla) 1715 { 1716 return *(__be32 *) nla_data(nla); 1717 } 1718 1719 /** 1720 * nla_get_in6_addr - return payload of IPv6 address attribute 1721 * @nla: IPv6 address netlink attribute 1722 */ 1723 static inline struct in6_addr nla_get_in6_addr(const struct nlattr *nla) 1724 { 1725 struct in6_addr tmp; 1726 1727 nla_memcpy(&tmp, nla, sizeof(tmp)); 1728 return tmp; 1729 } 1730 1731 /** 1732 * nla_get_bitfield32 - return payload of 32 bitfield attribute 1733 * @nla: nla_bitfield32 attribute 1734 */ 1735 static inline struct nla_bitfield32 nla_get_bitfield32(const struct nlattr *nla) 1736 { 1737 struct nla_bitfield32 tmp; 1738 1739 nla_memcpy(&tmp, nla, sizeof(tmp)); 1740 return tmp; 1741 } 1742 1743 /** 1744 * nla_memdup - duplicate attribute memory (kmemdup) 1745 * @src: netlink attribute to duplicate from 1746 * @gfp: GFP mask 1747 */ 1748 static inline void *nla_memdup(const struct nlattr *src, gfp_t gfp) 1749 { 1750 return kmemdup(nla_data(src), nla_len(src), gfp); 1751 } 1752 1753 /** 1754 * nla_nest_start_noflag - Start a new level of nested attributes 1755 * @skb: socket buffer to add attributes to 1756 * @attrtype: attribute type of container 1757 * 1758 * This function exists for backward compatibility to use in APIs which never 1759 * marked their nest attributes with NLA_F_NESTED flag. New APIs should use 1760 * nla_nest_start() which sets the flag. 1761 * 1762 * Returns the container attribute or NULL on error 1763 */ 1764 static inline struct nlattr *nla_nest_start_noflag(struct sk_buff *skb, 1765 int attrtype) 1766 { 1767 struct nlattr *start = (struct nlattr *)skb_tail_pointer(skb); 1768 1769 if (nla_put(skb, attrtype, 0, NULL) < 0) 1770 return NULL; 1771 1772 return start; 1773 } 1774 1775 /** 1776 * nla_nest_start - Start a new level of nested attributes, with NLA_F_NESTED 1777 * @skb: socket buffer to add attributes to 1778 * @attrtype: attribute type of container 1779 * 1780 * Unlike nla_nest_start_noflag(), mark the nest attribute with NLA_F_NESTED 1781 * flag. This is the preferred function to use in new code. 1782 * 1783 * Returns the container attribute or NULL on error 1784 */ 1785 static inline struct nlattr *nla_nest_start(struct sk_buff *skb, int attrtype) 1786 { 1787 return nla_nest_start_noflag(skb, attrtype | NLA_F_NESTED); 1788 } 1789 1790 /** 1791 * nla_nest_end - Finalize nesting of attributes 1792 * @skb: socket buffer the attributes are stored in 1793 * @start: container attribute 1794 * 1795 * Corrects the container attribute header to include the all 1796 * appeneded attributes. 1797 * 1798 * Returns the total data length of the skb. 1799 */ 1800 static inline int nla_nest_end(struct sk_buff *skb, struct nlattr *start) 1801 { 1802 start->nla_len = skb_tail_pointer(skb) - (unsigned char *)start; 1803 return skb->len; 1804 } 1805 1806 /** 1807 * nla_nest_cancel - Cancel nesting of attributes 1808 * @skb: socket buffer the message is stored in 1809 * @start: container attribute 1810 * 1811 * Removes the container attribute and including all nested 1812 * attributes. Returns -EMSGSIZE 1813 */ 1814 static inline void nla_nest_cancel(struct sk_buff *skb, struct nlattr *start) 1815 { 1816 nlmsg_trim(skb, start); 1817 } 1818 1819 /** 1820 * __nla_validate_nested - Validate a stream of nested attributes 1821 * @start: container attribute 1822 * @maxtype: maximum attribute type to be expected 1823 * @policy: validation policy 1824 * @validate: validation strictness 1825 * @extack: extended ACK report struct 1826 * 1827 * Validates all attributes in the nested attribute stream against the 1828 * specified policy. Attributes with a type exceeding maxtype will be 1829 * ignored. See documenation of struct nla_policy for more details. 1830 * 1831 * Returns 0 on success or a negative error code. 1832 */ 1833 static inline int __nla_validate_nested(const struct nlattr *start, int maxtype, 1834 const struct nla_policy *policy, 1835 unsigned int validate, 1836 struct netlink_ext_ack *extack) 1837 { 1838 return __nla_validate(nla_data(start), nla_len(start), maxtype, policy, 1839 validate, extack); 1840 } 1841 1842 static inline int 1843 nla_validate_nested(const struct nlattr *start, int maxtype, 1844 const struct nla_policy *policy, 1845 struct netlink_ext_ack *extack) 1846 { 1847 return __nla_validate_nested(start, maxtype, policy, 1848 NL_VALIDATE_STRICT, extack); 1849 } 1850 1851 static inline int 1852 nla_validate_nested_deprecated(const struct nlattr *start, int maxtype, 1853 const struct nla_policy *policy, 1854 struct netlink_ext_ack *extack) 1855 { 1856 return __nla_validate_nested(start, maxtype, policy, 1857 NL_VALIDATE_LIBERAL, extack); 1858 } 1859 1860 /** 1861 * nla_need_padding_for_64bit - test 64-bit alignment of the next attribute 1862 * @skb: socket buffer the message is stored in 1863 * 1864 * Return true if padding is needed to align the next attribute (nla_data()) to 1865 * a 64-bit aligned area. 1866 */ 1867 static inline bool nla_need_padding_for_64bit(struct sk_buff *skb) 1868 { 1869 #ifndef CONFIG_HAVE_EFFICIENT_UNALIGNED_ACCESS 1870 /* The nlattr header is 4 bytes in size, that's why we test 1871 * if the skb->data _is_ aligned. A NOP attribute, plus 1872 * nlattr header for next attribute, will make nla_data() 1873 * 8-byte aligned. 1874 */ 1875 if (IS_ALIGNED((unsigned long)skb_tail_pointer(skb), 8)) 1876 return true; 1877 #endif 1878 return false; 1879 } 1880 1881 /** 1882 * nla_align_64bit - 64-bit align the nla_data() of next attribute 1883 * @skb: socket buffer the message is stored in 1884 * @padattr: attribute type for the padding 1885 * 1886 * Conditionally emit a padding netlink attribute in order to make 1887 * the next attribute we emit have a 64-bit aligned nla_data() area. 1888 * This will only be done in architectures which do not have 1889 * CONFIG_HAVE_EFFICIENT_UNALIGNED_ACCESS defined. 1890 * 1891 * Returns zero on success or a negative error code. 1892 */ 1893 static inline int nla_align_64bit(struct sk_buff *skb, int padattr) 1894 { 1895 if (nla_need_padding_for_64bit(skb) && 1896 !nla_reserve(skb, padattr, 0)) 1897 return -EMSGSIZE; 1898 1899 return 0; 1900 } 1901 1902 /** 1903 * nla_total_size_64bit - total length of attribute including padding 1904 * @payload: length of payload 1905 */ 1906 static inline int nla_total_size_64bit(int payload) 1907 { 1908 return NLA_ALIGN(nla_attr_size(payload)) 1909 #ifndef CONFIG_HAVE_EFFICIENT_UNALIGNED_ACCESS 1910 + NLA_ALIGN(nla_attr_size(0)) 1911 #endif 1912 ; 1913 } 1914 1915 /** 1916 * nla_for_each_attr - iterate over a stream of attributes 1917 * @pos: loop counter, set to current attribute 1918 * @head: head of attribute stream 1919 * @len: length of attribute stream 1920 * @rem: initialized to len, holds bytes currently remaining in stream 1921 */ 1922 #define nla_for_each_attr(pos, head, len, rem) \ 1923 for (pos = head, rem = len; \ 1924 nla_ok(pos, rem); \ 1925 pos = nla_next(pos, &(rem))) 1926 1927 /** 1928 * nla_for_each_nested - iterate over nested attributes 1929 * @pos: loop counter, set to current attribute 1930 * @nla: attribute containing the nested attributes 1931 * @rem: initialized to len, holds bytes currently remaining in stream 1932 */ 1933 #define nla_for_each_nested(pos, nla, rem) \ 1934 nla_for_each_attr(pos, nla_data(nla), nla_len(nla), rem) 1935 1936 /** 1937 * nla_is_last - Test if attribute is last in stream 1938 * @nla: attribute to test 1939 * @rem: bytes remaining in stream 1940 */ 1941 static inline bool nla_is_last(const struct nlattr *nla, int rem) 1942 { 1943 return nla->nla_len == rem; 1944 } 1945 1946 void nla_get_range_unsigned(const struct nla_policy *pt, 1947 struct netlink_range_validation *range); 1948 void nla_get_range_signed(const struct nla_policy *pt, 1949 struct netlink_range_validation_signed *range); 1950 1951 struct netlink_policy_dump_state; 1952 1953 int netlink_policy_dump_add_policy(struct netlink_policy_dump_state **pstate, 1954 const struct nla_policy *policy, 1955 unsigned int maxtype); 1956 int netlink_policy_dump_get_policy_idx(struct netlink_policy_dump_state *state, 1957 const struct nla_policy *policy, 1958 unsigned int maxtype); 1959 bool netlink_policy_dump_loop(struct netlink_policy_dump_state *state); 1960 int netlink_policy_dump_write(struct sk_buff *skb, 1961 struct netlink_policy_dump_state *state); 1962 int netlink_policy_dump_attr_size_estimate(const struct nla_policy *pt); 1963 int netlink_policy_dump_write_attr(struct sk_buff *skb, 1964 const struct nla_policy *pt, 1965 int nestattr); 1966 void netlink_policy_dump_free(struct netlink_policy_dump_state *state); 1967 1968 #endif 1969