linux/net/netlabel/netlabel_kapi.c
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   1/*
   2 * NetLabel Kernel API
   3 *
   4 * This file defines the kernel API for the NetLabel system.  The NetLabel
   5 * system manages static and dynamic label mappings for network protocols such
   6 * as CIPSO and RIPSO.
   7 *
   8 * Author: Paul Moore <paul@paul-moore.com>
   9 *
  10 */
  11
  12/*
  13 * (c) Copyright Hewlett-Packard Development Company, L.P., 2006, 2008
  14 *
  15 * This program is free software;  you can redistribute it and/or modify
  16 * it under the terms of the GNU General Public License as published by
  17 * the Free Software Foundation; either version 2 of the License, or
  18 * (at your option) any later version.
  19 *
  20 * This program is distributed in the hope that it will be useful,
  21 * but WITHOUT ANY WARRANTY;  without even the implied warranty of
  22 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See
  23 * the GNU General Public License for more details.
  24 *
  25 * You should have received a copy of the GNU General Public License
  26 * along with this program;  if not, see <http://www.gnu.org/licenses/>.
  27 *
  28 */
  29
  30#include <linux/init.h>
  31#include <linux/types.h>
  32#include <linux/slab.h>
  33#include <linux/audit.h>
  34#include <linux/in.h>
  35#include <linux/in6.h>
  36#include <net/ip.h>
  37#include <net/ipv6.h>
  38#include <net/netlabel.h>
  39#include <net/cipso_ipv4.h>
  40#include <net/calipso.h>
  41#include <asm/bug.h>
  42#include <linux/atomic.h>
  43
  44#include "netlabel_domainhash.h"
  45#include "netlabel_unlabeled.h"
  46#include "netlabel_cipso_v4.h"
  47#include "netlabel_calipso.h"
  48#include "netlabel_user.h"
  49#include "netlabel_mgmt.h"
  50#include "netlabel_addrlist.h"
  51
  52/*
  53 * Configuration Functions
  54 */
  55
  56/**
  57 * netlbl_cfg_map_del - Remove a NetLabel/LSM domain mapping
  58 * @domain: the domain mapping to remove
  59 * @family: address family
  60 * @addr: IP address
  61 * @mask: IP address mask
  62 * @audit_info: NetLabel audit information
  63 *
  64 * Description:
  65 * Removes a NetLabel/LSM domain mapping.  A @domain value of NULL causes the
  66 * default domain mapping to be removed.  Returns zero on success, negative
  67 * values on failure.
  68 *
  69 */
  70int netlbl_cfg_map_del(const char *domain,
  71                       u16 family,
  72                       const void *addr,
  73                       const void *mask,
  74                       struct netlbl_audit *audit_info)
  75{
  76        if (addr == NULL && mask == NULL) {
  77                return netlbl_domhsh_remove(domain, family, audit_info);
  78        } else if (addr != NULL && mask != NULL) {
  79                switch (family) {
  80                case AF_INET:
  81                        return netlbl_domhsh_remove_af4(domain, addr, mask,
  82                                                        audit_info);
  83#if IS_ENABLED(CONFIG_IPV6)
  84                case AF_INET6:
  85                        return netlbl_domhsh_remove_af6(domain, addr, mask,
  86                                                        audit_info);
  87#endif /* IPv6 */
  88                default:
  89                        return -EPFNOSUPPORT;
  90                }
  91        } else
  92                return -EINVAL;
  93}
  94
  95/**
  96 * netlbl_cfg_unlbl_map_add - Add a new unlabeled mapping
  97 * @domain: the domain mapping to add
  98 * @family: address family
  99 * @addr: IP address
 100 * @mask: IP address mask
 101 * @audit_info: NetLabel audit information
 102 *
 103 * Description:
 104 * Adds a new unlabeled NetLabel/LSM domain mapping.  A @domain value of NULL
 105 * causes a new default domain mapping to be added.  Returns zero on success,
 106 * negative values on failure.
 107 *
 108 */
 109int netlbl_cfg_unlbl_map_add(const char *domain,
 110                             u16 family,
 111                             const void *addr,
 112                             const void *mask,
 113                             struct netlbl_audit *audit_info)
 114{
 115        int ret_val = -ENOMEM;
 116        struct netlbl_dom_map *entry;
 117        struct netlbl_domaddr_map *addrmap = NULL;
 118        struct netlbl_domaddr4_map *map4 = NULL;
 119        struct netlbl_domaddr6_map *map6 = NULL;
 120
 121        entry = kzalloc(sizeof(*entry), GFP_ATOMIC);
 122        if (entry == NULL)
 123                return -ENOMEM;
 124        if (domain != NULL) {
 125                entry->domain = kstrdup(domain, GFP_ATOMIC);
 126                if (entry->domain == NULL)
 127                        goto cfg_unlbl_map_add_failure;
 128        }
 129        entry->family = family;
 130
 131        if (addr == NULL && mask == NULL)
 132                entry->def.type = NETLBL_NLTYPE_UNLABELED;
 133        else if (addr != NULL && mask != NULL) {
 134                addrmap = kzalloc(sizeof(*addrmap), GFP_ATOMIC);
 135                if (addrmap == NULL)
 136                        goto cfg_unlbl_map_add_failure;
 137                INIT_LIST_HEAD(&addrmap->list4);
 138                INIT_LIST_HEAD(&addrmap->list6);
 139
 140                switch (family) {
 141                case AF_INET: {
 142                        const struct in_addr *addr4 = addr;
 143                        const struct in_addr *mask4 = mask;
 144                        map4 = kzalloc(sizeof(*map4), GFP_ATOMIC);
 145                        if (map4 == NULL)
 146                                goto cfg_unlbl_map_add_failure;
 147                        map4->def.type = NETLBL_NLTYPE_UNLABELED;
 148                        map4->list.addr = addr4->s_addr & mask4->s_addr;
 149                        map4->list.mask = mask4->s_addr;
 150                        map4->list.valid = 1;
 151                        ret_val = netlbl_af4list_add(&map4->list,
 152                                                     &addrmap->list4);
 153                        if (ret_val != 0)
 154                                goto cfg_unlbl_map_add_failure;
 155                        break;
 156                        }
 157#if IS_ENABLED(CONFIG_IPV6)
 158                case AF_INET6: {
 159                        const struct in6_addr *addr6 = addr;
 160                        const struct in6_addr *mask6 = mask;
 161                        map6 = kzalloc(sizeof(*map6), GFP_ATOMIC);
 162                        if (map6 == NULL)
 163                                goto cfg_unlbl_map_add_failure;
 164                        map6->def.type = NETLBL_NLTYPE_UNLABELED;
 165                        map6->list.addr = *addr6;
 166                        map6->list.addr.s6_addr32[0] &= mask6->s6_addr32[0];
 167                        map6->list.addr.s6_addr32[1] &= mask6->s6_addr32[1];
 168                        map6->list.addr.s6_addr32[2] &= mask6->s6_addr32[2];
 169                        map6->list.addr.s6_addr32[3] &= mask6->s6_addr32[3];
 170                        map6->list.mask = *mask6;
 171                        map6->list.valid = 1;
 172                        ret_val = netlbl_af6list_add(&map6->list,
 173                                                     &addrmap->list6);
 174                        if (ret_val != 0)
 175                                goto cfg_unlbl_map_add_failure;
 176                        break;
 177                        }
 178#endif /* IPv6 */
 179                default:
 180                        goto cfg_unlbl_map_add_failure;
 181                }
 182
 183                entry->def.addrsel = addrmap;
 184                entry->def.type = NETLBL_NLTYPE_ADDRSELECT;
 185        } else {
 186                ret_val = -EINVAL;
 187                goto cfg_unlbl_map_add_failure;
 188        }
 189
 190        ret_val = netlbl_domhsh_add(entry, audit_info);
 191        if (ret_val != 0)
 192                goto cfg_unlbl_map_add_failure;
 193
 194        return 0;
 195
 196cfg_unlbl_map_add_failure:
 197        kfree(entry->domain);
 198        kfree(entry);
 199        kfree(addrmap);
 200        kfree(map4);
 201        kfree(map6);
 202        return ret_val;
 203}
 204
 205
 206/**
 207 * netlbl_cfg_unlbl_static_add - Adds a new static label
 208 * @net: network namespace
 209 * @dev_name: interface name
 210 * @addr: IP address in network byte order (struct in[6]_addr)
 211 * @mask: address mask in network byte order (struct in[6]_addr)
 212 * @family: address family
 213 * @secid: LSM secid value for the entry
 214 * @audit_info: NetLabel audit information
 215 *
 216 * Description:
 217 * Adds a new NetLabel static label to be used when protocol provided labels
 218 * are not present on incoming traffic.  If @dev_name is NULL then the default
 219 * interface will be used.  Returns zero on success, negative values on failure.
 220 *
 221 */
 222int netlbl_cfg_unlbl_static_add(struct net *net,
 223                                const char *dev_name,
 224                                const void *addr,
 225                                const void *mask,
 226                                u16 family,
 227                                u32 secid,
 228                                struct netlbl_audit *audit_info)
 229{
 230        u32 addr_len;
 231
 232        switch (family) {
 233        case AF_INET:
 234                addr_len = sizeof(struct in_addr);
 235                break;
 236#if IS_ENABLED(CONFIG_IPV6)
 237        case AF_INET6:
 238                addr_len = sizeof(struct in6_addr);
 239                break;
 240#endif /* IPv6 */
 241        default:
 242                return -EPFNOSUPPORT;
 243        }
 244
 245        return netlbl_unlhsh_add(net,
 246                                 dev_name, addr, mask, addr_len,
 247                                 secid, audit_info);
 248}
 249
 250/**
 251 * netlbl_cfg_unlbl_static_del - Removes an existing static label
 252 * @net: network namespace
 253 * @dev_name: interface name
 254 * @addr: IP address in network byte order (struct in[6]_addr)
 255 * @mask: address mask in network byte order (struct in[6]_addr)
 256 * @family: address family
 257 * @audit_info: NetLabel audit information
 258 *
 259 * Description:
 260 * Removes an existing NetLabel static label used when protocol provided labels
 261 * are not present on incoming traffic.  If @dev_name is NULL then the default
 262 * interface will be used.  Returns zero on success, negative values on failure.
 263 *
 264 */
 265int netlbl_cfg_unlbl_static_del(struct net *net,
 266                                const char *dev_name,
 267                                const void *addr,
 268                                const void *mask,
 269                                u16 family,
 270                                struct netlbl_audit *audit_info)
 271{
 272        u32 addr_len;
 273
 274        switch (family) {
 275        case AF_INET:
 276                addr_len = sizeof(struct in_addr);
 277                break;
 278#if IS_ENABLED(CONFIG_IPV6)
 279        case AF_INET6:
 280                addr_len = sizeof(struct in6_addr);
 281                break;
 282#endif /* IPv6 */
 283        default:
 284                return -EPFNOSUPPORT;
 285        }
 286
 287        return netlbl_unlhsh_remove(net,
 288                                    dev_name, addr, mask, addr_len,
 289                                    audit_info);
 290}
 291
 292/**
 293 * netlbl_cfg_cipsov4_add - Add a new CIPSOv4 DOI definition
 294 * @doi_def: CIPSO DOI definition
 295 * @audit_info: NetLabel audit information
 296 *
 297 * Description:
 298 * Add a new CIPSO DOI definition as defined by @doi_def.  Returns zero on
 299 * success and negative values on failure.
 300 *
 301 */
 302int netlbl_cfg_cipsov4_add(struct cipso_v4_doi *doi_def,
 303                           struct netlbl_audit *audit_info)
 304{
 305        return cipso_v4_doi_add(doi_def, audit_info);
 306}
 307
 308/**
 309 * netlbl_cfg_cipsov4_del - Remove an existing CIPSOv4 DOI definition
 310 * @doi: CIPSO DOI
 311 * @audit_info: NetLabel audit information
 312 *
 313 * Description:
 314 * Remove an existing CIPSO DOI definition matching @doi.  Returns zero on
 315 * success and negative values on failure.
 316 *
 317 */
 318void netlbl_cfg_cipsov4_del(u32 doi, struct netlbl_audit *audit_info)
 319{
 320        cipso_v4_doi_remove(doi, audit_info);
 321}
 322
 323/**
 324 * netlbl_cfg_cipsov4_map_add - Add a new CIPSOv4 DOI mapping
 325 * @doi: the CIPSO DOI
 326 * @domain: the domain mapping to add
 327 * @addr: IP address
 328 * @mask: IP address mask
 329 * @audit_info: NetLabel audit information
 330 *
 331 * Description:
 332 * Add a new NetLabel/LSM domain mapping for the given CIPSO DOI to the NetLabel
 333 * subsystem.  A @domain value of NULL adds a new default domain mapping.
 334 * Returns zero on success, negative values on failure.
 335 *
 336 */
 337int netlbl_cfg_cipsov4_map_add(u32 doi,
 338                               const char *domain,
 339                               const struct in_addr *addr,
 340                               const struct in_addr *mask,
 341                               struct netlbl_audit *audit_info)
 342{
 343        int ret_val = -ENOMEM;
 344        struct cipso_v4_doi *doi_def;
 345        struct netlbl_dom_map *entry;
 346        struct netlbl_domaddr_map *addrmap = NULL;
 347        struct netlbl_domaddr4_map *addrinfo = NULL;
 348
 349        doi_def = cipso_v4_doi_getdef(doi);
 350        if (doi_def == NULL)
 351                return -ENOENT;
 352
 353        entry = kzalloc(sizeof(*entry), GFP_ATOMIC);
 354        if (entry == NULL)
 355                goto out_entry;
 356        entry->family = AF_INET;
 357        if (domain != NULL) {
 358                entry->domain = kstrdup(domain, GFP_ATOMIC);
 359                if (entry->domain == NULL)
 360                        goto out_domain;
 361        }
 362
 363        if (addr == NULL && mask == NULL) {
 364                entry->def.cipso = doi_def;
 365                entry->def.type = NETLBL_NLTYPE_CIPSOV4;
 366        } else if (addr != NULL && mask != NULL) {
 367                addrmap = kzalloc(sizeof(*addrmap), GFP_ATOMIC);
 368                if (addrmap == NULL)
 369                        goto out_addrmap;
 370                INIT_LIST_HEAD(&addrmap->list4);
 371                INIT_LIST_HEAD(&addrmap->list6);
 372
 373                addrinfo = kzalloc(sizeof(*addrinfo), GFP_ATOMIC);
 374                if (addrinfo == NULL)
 375                        goto out_addrinfo;
 376                addrinfo->def.cipso = doi_def;
 377                addrinfo->def.type = NETLBL_NLTYPE_CIPSOV4;
 378                addrinfo->list.addr = addr->s_addr & mask->s_addr;
 379                addrinfo->list.mask = mask->s_addr;
 380                addrinfo->list.valid = 1;
 381                ret_val = netlbl_af4list_add(&addrinfo->list, &addrmap->list4);
 382                if (ret_val != 0)
 383                        goto cfg_cipsov4_map_add_failure;
 384
 385                entry->def.addrsel = addrmap;
 386                entry->def.type = NETLBL_NLTYPE_ADDRSELECT;
 387        } else {
 388                ret_val = -EINVAL;
 389                goto out_addrmap;
 390        }
 391
 392        ret_val = netlbl_domhsh_add(entry, audit_info);
 393        if (ret_val != 0)
 394                goto cfg_cipsov4_map_add_failure;
 395
 396        return 0;
 397
 398cfg_cipsov4_map_add_failure:
 399        kfree(addrinfo);
 400out_addrinfo:
 401        kfree(addrmap);
 402out_addrmap:
 403        kfree(entry->domain);
 404out_domain:
 405        kfree(entry);
 406out_entry:
 407        cipso_v4_doi_putdef(doi_def);
 408        return ret_val;
 409}
 410
 411/**
 412 * netlbl_cfg_calipso_add - Add a new CALIPSO DOI definition
 413 * @doi_def: CALIPSO DOI definition
 414 * @audit_info: NetLabel audit information
 415 *
 416 * Description:
 417 * Add a new CALIPSO DOI definition as defined by @doi_def.  Returns zero on
 418 * success and negative values on failure.
 419 *
 420 */
 421int netlbl_cfg_calipso_add(struct calipso_doi *doi_def,
 422                           struct netlbl_audit *audit_info)
 423{
 424#if IS_ENABLED(CONFIG_IPV6)
 425        return calipso_doi_add(doi_def, audit_info);
 426#else /* IPv6 */
 427        return -ENOSYS;
 428#endif /* IPv6 */
 429}
 430
 431/**
 432 * netlbl_cfg_calipso_del - Remove an existing CALIPSO DOI definition
 433 * @doi: CALIPSO DOI
 434 * @audit_info: NetLabel audit information
 435 *
 436 * Description:
 437 * Remove an existing CALIPSO DOI definition matching @doi.  Returns zero on
 438 * success and negative values on failure.
 439 *
 440 */
 441void netlbl_cfg_calipso_del(u32 doi, struct netlbl_audit *audit_info)
 442{
 443#if IS_ENABLED(CONFIG_IPV6)
 444        calipso_doi_remove(doi, audit_info);
 445#endif /* IPv6 */
 446}
 447
 448/**
 449 * netlbl_cfg_calipso_map_add - Add a new CALIPSO DOI mapping
 450 * @doi: the CALIPSO DOI
 451 * @domain: the domain mapping to add
 452 * @addr: IP address
 453 * @mask: IP address mask
 454 * @audit_info: NetLabel audit information
 455 *
 456 * Description:
 457 * Add a new NetLabel/LSM domain mapping for the given CALIPSO DOI to the
 458 * NetLabel subsystem.  A @domain value of NULL adds a new default domain
 459 * mapping.  Returns zero on success, negative values on failure.
 460 *
 461 */
 462int netlbl_cfg_calipso_map_add(u32 doi,
 463                               const char *domain,
 464                               const struct in6_addr *addr,
 465                               const struct in6_addr *mask,
 466                               struct netlbl_audit *audit_info)
 467{
 468#if IS_ENABLED(CONFIG_IPV6)
 469        int ret_val = -ENOMEM;
 470        struct calipso_doi *doi_def;
 471        struct netlbl_dom_map *entry;
 472        struct netlbl_domaddr_map *addrmap = NULL;
 473        struct netlbl_domaddr6_map *addrinfo = NULL;
 474
 475        doi_def = calipso_doi_getdef(doi);
 476        if (doi_def == NULL)
 477                return -ENOENT;
 478
 479        entry = kzalloc(sizeof(*entry), GFP_ATOMIC);
 480        if (entry == NULL)
 481                goto out_entry;
 482        entry->family = AF_INET6;
 483        if (domain != NULL) {
 484                entry->domain = kstrdup(domain, GFP_ATOMIC);
 485                if (entry->domain == NULL)
 486                        goto out_domain;
 487        }
 488
 489        if (addr == NULL && mask == NULL) {
 490                entry->def.calipso = doi_def;
 491                entry->def.type = NETLBL_NLTYPE_CALIPSO;
 492        } else if (addr != NULL && mask != NULL) {
 493                addrmap = kzalloc(sizeof(*addrmap), GFP_ATOMIC);
 494                if (addrmap == NULL)
 495                        goto out_addrmap;
 496                INIT_LIST_HEAD(&addrmap->list4);
 497                INIT_LIST_HEAD(&addrmap->list6);
 498
 499                addrinfo = kzalloc(sizeof(*addrinfo), GFP_ATOMIC);
 500                if (addrinfo == NULL)
 501                        goto out_addrinfo;
 502                addrinfo->def.calipso = doi_def;
 503                addrinfo->def.type = NETLBL_NLTYPE_CALIPSO;
 504                addrinfo->list.addr = *addr;
 505                addrinfo->list.addr.s6_addr32[0] &= mask->s6_addr32[0];
 506                addrinfo->list.addr.s6_addr32[1] &= mask->s6_addr32[1];
 507                addrinfo->list.addr.s6_addr32[2] &= mask->s6_addr32[2];
 508                addrinfo->list.addr.s6_addr32[3] &= mask->s6_addr32[3];
 509                addrinfo->list.mask = *mask;
 510                addrinfo->list.valid = 1;
 511                ret_val = netlbl_af6list_add(&addrinfo->list, &addrmap->list6);
 512                if (ret_val != 0)
 513                        goto cfg_calipso_map_add_failure;
 514
 515                entry->def.addrsel = addrmap;
 516                entry->def.type = NETLBL_NLTYPE_ADDRSELECT;
 517        } else {
 518                ret_val = -EINVAL;
 519                goto out_addrmap;
 520        }
 521
 522        ret_val = netlbl_domhsh_add(entry, audit_info);
 523        if (ret_val != 0)
 524                goto cfg_calipso_map_add_failure;
 525
 526        return 0;
 527
 528cfg_calipso_map_add_failure:
 529        kfree(addrinfo);
 530out_addrinfo:
 531        kfree(addrmap);
 532out_addrmap:
 533        kfree(entry->domain);
 534out_domain:
 535        kfree(entry);
 536out_entry:
 537        calipso_doi_putdef(doi_def);
 538        return ret_val;
 539#else /* IPv6 */
 540        return -ENOSYS;
 541#endif /* IPv6 */
 542}
 543
 544/*
 545 * Security Attribute Functions
 546 */
 547
 548#define _CM_F_NONE      0x00000000
 549#define _CM_F_ALLOC     0x00000001
 550#define _CM_F_WALK      0x00000002
 551
 552/**
 553 * _netlbl_catmap_getnode - Get a individual node from a catmap
 554 * @catmap: pointer to the category bitmap
 555 * @offset: the requested offset
 556 * @cm_flags: catmap flags, see _CM_F_*
 557 * @gfp_flags: memory allocation flags
 558 *
 559 * Description:
 560 * Iterate through the catmap looking for the node associated with @offset.
 561 * If the _CM_F_ALLOC flag is set in @cm_flags and there is no associated node,
 562 * one will be created and inserted into the catmap.  If the _CM_F_WALK flag is
 563 * set in @cm_flags and there is no associated node, the next highest node will
 564 * be returned.  Returns a pointer to the node on success, NULL on failure.
 565 *
 566 */
 567static struct netlbl_lsm_catmap *_netlbl_catmap_getnode(
 568                                             struct netlbl_lsm_catmap **catmap,
 569                                             u32 offset,
 570                                             unsigned int cm_flags,
 571                                             gfp_t gfp_flags)
 572{
 573        struct netlbl_lsm_catmap *iter = *catmap;
 574        struct netlbl_lsm_catmap *prev = NULL;
 575
 576        if (iter == NULL)
 577                goto catmap_getnode_alloc;
 578        if (offset < iter->startbit)
 579                goto catmap_getnode_walk;
 580        while (iter && offset >= (iter->startbit + NETLBL_CATMAP_SIZE)) {
 581                prev = iter;
 582                iter = iter->next;
 583        }
 584        if (iter == NULL || offset < iter->startbit)
 585                goto catmap_getnode_walk;
 586
 587        return iter;
 588
 589catmap_getnode_walk:
 590        if (cm_flags & _CM_F_WALK)
 591                return iter;
 592catmap_getnode_alloc:
 593        if (!(cm_flags & _CM_F_ALLOC))
 594                return NULL;
 595
 596        iter = netlbl_catmap_alloc(gfp_flags);
 597        if (iter == NULL)
 598                return NULL;
 599        iter->startbit = offset & ~(NETLBL_CATMAP_SIZE - 1);
 600
 601        if (prev == NULL) {
 602                iter->next = *catmap;
 603                *catmap = iter;
 604        } else {
 605                iter->next = prev->next;
 606                prev->next = iter;
 607        }
 608
 609        return iter;
 610}
 611
 612/**
 613 * netlbl_catmap_walk - Walk a LSM secattr catmap looking for a bit
 614 * @catmap: the category bitmap
 615 * @offset: the offset to start searching at, in bits
 616 *
 617 * Description:
 618 * This function walks a LSM secattr category bitmap starting at @offset and
 619 * returns the spot of the first set bit or -ENOENT if no bits are set.
 620 *
 621 */
 622int netlbl_catmap_walk(struct netlbl_lsm_catmap *catmap, u32 offset)
 623{
 624        struct netlbl_lsm_catmap *iter = catmap;
 625        u32 idx;
 626        u32 bit;
 627        NETLBL_CATMAP_MAPTYPE bitmap;
 628
 629        iter = _netlbl_catmap_getnode(&catmap, offset, _CM_F_WALK, 0);
 630        if (iter == NULL)
 631                return -ENOENT;
 632        if (offset > iter->startbit) {
 633                offset -= iter->startbit;
 634                idx = offset / NETLBL_CATMAP_MAPSIZE;
 635                bit = offset % NETLBL_CATMAP_MAPSIZE;
 636        } else {
 637                idx = 0;
 638                bit = 0;
 639        }
 640        bitmap = iter->bitmap[idx] >> bit;
 641
 642        for (;;) {
 643                if (bitmap != 0) {
 644                        while ((bitmap & NETLBL_CATMAP_BIT) == 0) {
 645                                bitmap >>= 1;
 646                                bit++;
 647                        }
 648                        return iter->startbit +
 649                               (NETLBL_CATMAP_MAPSIZE * idx) + bit;
 650                }
 651                if (++idx >= NETLBL_CATMAP_MAPCNT) {
 652                        if (iter->next != NULL) {
 653                                iter = iter->next;
 654                                idx = 0;
 655                        } else
 656                                return -ENOENT;
 657                }
 658                bitmap = iter->bitmap[idx];
 659                bit = 0;
 660        }
 661
 662        return -ENOENT;
 663}
 664EXPORT_SYMBOL(netlbl_catmap_walk);
 665
 666/**
 667 * netlbl_catmap_walkrng - Find the end of a string of set bits
 668 * @catmap: the category bitmap
 669 * @offset: the offset to start searching at, in bits
 670 *
 671 * Description:
 672 * This function walks a LSM secattr category bitmap starting at @offset and
 673 * returns the spot of the first cleared bit or -ENOENT if the offset is past
 674 * the end of the bitmap.
 675 *
 676 */
 677int netlbl_catmap_walkrng(struct netlbl_lsm_catmap *catmap, u32 offset)
 678{
 679        struct netlbl_lsm_catmap *iter;
 680        struct netlbl_lsm_catmap *prev = NULL;
 681        u32 idx;
 682        u32 bit;
 683        NETLBL_CATMAP_MAPTYPE bitmask;
 684        NETLBL_CATMAP_MAPTYPE bitmap;
 685
 686        iter = _netlbl_catmap_getnode(&catmap, offset, _CM_F_WALK, 0);
 687        if (iter == NULL)
 688                return -ENOENT;
 689        if (offset > iter->startbit) {
 690                offset -= iter->startbit;
 691                idx = offset / NETLBL_CATMAP_MAPSIZE;
 692                bit = offset % NETLBL_CATMAP_MAPSIZE;
 693        } else {
 694                idx = 0;
 695                bit = 0;
 696        }
 697        bitmask = NETLBL_CATMAP_BIT << bit;
 698
 699        for (;;) {
 700                bitmap = iter->bitmap[idx];
 701                while (bitmask != 0 && (bitmap & bitmask) != 0) {
 702                        bitmask <<= 1;
 703                        bit++;
 704                }
 705
 706                if (prev && idx == 0 && bit == 0)
 707                        return prev->startbit + NETLBL_CATMAP_SIZE - 1;
 708                else if (bitmask != 0)
 709                        return iter->startbit +
 710                                (NETLBL_CATMAP_MAPSIZE * idx) + bit - 1;
 711                else if (++idx >= NETLBL_CATMAP_MAPCNT) {
 712                        if (iter->next == NULL)
 713                                return iter->startbit + NETLBL_CATMAP_SIZE - 1;
 714                        prev = iter;
 715                        iter = iter->next;
 716                        idx = 0;
 717                }
 718                bitmask = NETLBL_CATMAP_BIT;
 719                bit = 0;
 720        }
 721
 722        return -ENOENT;
 723}
 724
 725/**
 726 * netlbl_catmap_getlong - Export an unsigned long bitmap
 727 * @catmap: pointer to the category bitmap
 728 * @offset: pointer to the requested offset
 729 * @bitmap: the exported bitmap
 730 *
 731 * Description:
 732 * Export a bitmap with an offset greater than or equal to @offset and return
 733 * it in @bitmap.  The @offset must be aligned to an unsigned long and will be
 734 * updated on return if different from what was requested; if the catmap is
 735 * empty at the requested offset and beyond, the @offset is set to (u32)-1.
 736 * Returns zero on sucess, negative values on failure.
 737 *
 738 */
 739int netlbl_catmap_getlong(struct netlbl_lsm_catmap *catmap,
 740                          u32 *offset,
 741                          unsigned long *bitmap)
 742{
 743        struct netlbl_lsm_catmap *iter;
 744        u32 off = *offset;
 745        u32 idx;
 746
 747        /* only allow aligned offsets */
 748        if ((off & (BITS_PER_LONG - 1)) != 0)
 749                return -EINVAL;
 750
 751        /* a null catmap is equivalent to an empty one */
 752        if (!catmap) {
 753                *offset = (u32)-1;
 754                return 0;
 755        }
 756
 757        if (off < catmap->startbit) {
 758                off = catmap->startbit;
 759                *offset = off;
 760        }
 761        iter = _netlbl_catmap_getnode(&catmap, off, _CM_F_WALK, 0);
 762        if (iter == NULL) {
 763                *offset = (u32)-1;
 764                return 0;
 765        }
 766
 767        if (off < iter->startbit) {
 768                *offset = iter->startbit;
 769                off = 0;
 770        } else
 771                off -= iter->startbit;
 772        idx = off / NETLBL_CATMAP_MAPSIZE;
 773        *bitmap = iter->bitmap[idx] >> (off % NETLBL_CATMAP_MAPSIZE);
 774
 775        return 0;
 776}
 777
 778/**
 779 * netlbl_catmap_setbit - Set a bit in a LSM secattr catmap
 780 * @catmap: pointer to the category bitmap
 781 * @bit: the bit to set
 782 * @flags: memory allocation flags
 783 *
 784 * Description:
 785 * Set the bit specified by @bit in @catmap.  Returns zero on success,
 786 * negative values on failure.
 787 *
 788 */
 789int netlbl_catmap_setbit(struct netlbl_lsm_catmap **catmap,
 790                         u32 bit,
 791                         gfp_t flags)
 792{
 793        struct netlbl_lsm_catmap *iter;
 794        u32 idx;
 795
 796        iter = _netlbl_catmap_getnode(catmap, bit, _CM_F_ALLOC, flags);
 797        if (iter == NULL)
 798                return -ENOMEM;
 799
 800        bit -= iter->startbit;
 801        idx = bit / NETLBL_CATMAP_MAPSIZE;
 802        iter->bitmap[idx] |= NETLBL_CATMAP_BIT << (bit % NETLBL_CATMAP_MAPSIZE);
 803
 804        return 0;
 805}
 806EXPORT_SYMBOL(netlbl_catmap_setbit);
 807
 808/**
 809 * netlbl_catmap_setrng - Set a range of bits in a LSM secattr catmap
 810 * @catmap: pointer to the category bitmap
 811 * @start: the starting bit
 812 * @end: the last bit in the string
 813 * @flags: memory allocation flags
 814 *
 815 * Description:
 816 * Set a range of bits, starting at @start and ending with @end.  Returns zero
 817 * on success, negative values on failure.
 818 *
 819 */
 820int netlbl_catmap_setrng(struct netlbl_lsm_catmap **catmap,
 821                         u32 start,
 822                         u32 end,
 823                         gfp_t flags)
 824{
 825        int rc = 0;
 826        u32 spot = start;
 827
 828        while (rc == 0 && spot <= end) {
 829                if (((spot & (BITS_PER_LONG - 1)) == 0) &&
 830                    ((end - spot) > BITS_PER_LONG)) {
 831                        rc = netlbl_catmap_setlong(catmap,
 832                                                   spot,
 833                                                   (unsigned long)-1,
 834                                                   flags);
 835                        spot += BITS_PER_LONG;
 836                } else
 837                        rc = netlbl_catmap_setbit(catmap, spot++, flags);
 838        }
 839
 840        return rc;
 841}
 842
 843/**
 844 * netlbl_catmap_setlong - Import an unsigned long bitmap
 845 * @catmap: pointer to the category bitmap
 846 * @offset: offset to the start of the imported bitmap
 847 * @bitmap: the bitmap to import
 848 * @flags: memory allocation flags
 849 *
 850 * Description:
 851 * Import the bitmap specified in @bitmap into @catmap, using the offset
 852 * in @offset.  The offset must be aligned to an unsigned long.  Returns zero
 853 * on success, negative values on failure.
 854 *
 855 */
 856int netlbl_catmap_setlong(struct netlbl_lsm_catmap **catmap,
 857                          u32 offset,
 858                          unsigned long bitmap,
 859                          gfp_t flags)
 860{
 861        struct netlbl_lsm_catmap *iter;
 862        u32 idx;
 863
 864        /* only allow aligned offsets */
 865        if ((offset & (BITS_PER_LONG - 1)) != 0)
 866                return -EINVAL;
 867
 868        iter = _netlbl_catmap_getnode(catmap, offset, _CM_F_ALLOC, flags);
 869        if (iter == NULL)
 870                return -ENOMEM;
 871
 872        offset -= iter->startbit;
 873        idx = offset / NETLBL_CATMAP_MAPSIZE;
 874        iter->bitmap[idx] |= bitmap << (offset % NETLBL_CATMAP_MAPSIZE);
 875
 876        return 0;
 877}
 878
 879/* Bitmap functions
 880 */
 881
 882/**
 883 * netlbl_bitmap_walk - Walk a bitmap looking for a bit
 884 * @bitmap: the bitmap
 885 * @bitmap_len: length in bits
 886 * @offset: starting offset
 887 * @state: if non-zero, look for a set (1) bit else look for a cleared (0) bit
 888 *
 889 * Description:
 890 * Starting at @offset, walk the bitmap from left to right until either the
 891 * desired bit is found or we reach the end.  Return the bit offset, -1 if
 892 * not found, or -2 if error.
 893 */
 894int netlbl_bitmap_walk(const unsigned char *bitmap, u32 bitmap_len,
 895                       u32 offset, u8 state)
 896{
 897        u32 bit_spot;
 898        u32 byte_offset;
 899        unsigned char bitmask;
 900        unsigned char byte;
 901
 902        byte_offset = offset / 8;
 903        byte = bitmap[byte_offset];
 904        bit_spot = offset;
 905        bitmask = 0x80 >> (offset % 8);
 906
 907        while (bit_spot < bitmap_len) {
 908                if ((state && (byte & bitmask) == bitmask) ||
 909                    (state == 0 && (byte & bitmask) == 0))
 910                        return bit_spot;
 911
 912                if (++bit_spot >= bitmap_len)
 913                        return -1;
 914                bitmask >>= 1;
 915                if (bitmask == 0) {
 916                        byte = bitmap[++byte_offset];
 917                        bitmask = 0x80;
 918                }
 919        }
 920
 921        return -1;
 922}
 923EXPORT_SYMBOL(netlbl_bitmap_walk);
 924
 925/**
 926 * netlbl_bitmap_setbit - Sets a single bit in a bitmap
 927 * @bitmap: the bitmap
 928 * @bit: the bit
 929 * @state: if non-zero, set the bit (1) else clear the bit (0)
 930 *
 931 * Description:
 932 * Set a single bit in the bitmask.  Returns zero on success, negative values
 933 * on error.
 934 */
 935void netlbl_bitmap_setbit(unsigned char *bitmap, u32 bit, u8 state)
 936{
 937        u32 byte_spot;
 938        u8 bitmask;
 939
 940        /* gcc always rounds to zero when doing integer division */
 941        byte_spot = bit / 8;
 942        bitmask = 0x80 >> (bit % 8);
 943        if (state)
 944                bitmap[byte_spot] |= bitmask;
 945        else
 946                bitmap[byte_spot] &= ~bitmask;
 947}
 948EXPORT_SYMBOL(netlbl_bitmap_setbit);
 949
 950/*
 951 * LSM Functions
 952 */
 953
 954/**
 955 * netlbl_enabled - Determine if the NetLabel subsystem is enabled
 956 *
 957 * Description:
 958 * The LSM can use this function to determine if it should use NetLabel
 959 * security attributes in it's enforcement mechanism.  Currently, NetLabel is
 960 * considered to be enabled when it's configuration contains a valid setup for
 961 * at least one labeled protocol (i.e. NetLabel can understand incoming
 962 * labeled packets of at least one type); otherwise NetLabel is considered to
 963 * be disabled.
 964 *
 965 */
 966int netlbl_enabled(void)
 967{
 968        /* At some point we probably want to expose this mechanism to the user
 969         * as well so that admins can toggle NetLabel regardless of the
 970         * configuration */
 971        return (atomic_read(&netlabel_mgmt_protocount) > 0);
 972}
 973
 974/**
 975 * netlbl_sock_setattr - Label a socket using the correct protocol
 976 * @sk: the socket to label
 977 * @family: protocol family
 978 * @secattr: the security attributes
 979 *
 980 * Description:
 981 * Attach the correct label to the given socket using the security attributes
 982 * specified in @secattr.  This function requires exclusive access to @sk,
 983 * which means it either needs to be in the process of being created or locked.
 984 * Returns zero on success, -EDESTADDRREQ if the domain is configured to use
 985 * network address selectors (can't blindly label the socket), and negative
 986 * values on all other failures.
 987 *
 988 */
 989int netlbl_sock_setattr(struct sock *sk,
 990                        u16 family,
 991                        const struct netlbl_lsm_secattr *secattr)
 992{
 993        int ret_val;
 994        struct netlbl_dom_map *dom_entry;
 995
 996        rcu_read_lock();
 997        dom_entry = netlbl_domhsh_getentry(secattr->domain, family);
 998        if (dom_entry == NULL) {
 999                ret_val = -ENOENT;
1000                goto socket_setattr_return;
1001        }
1002        switch (family) {
1003        case AF_INET:
1004                switch (dom_entry->def.type) {
1005                case NETLBL_NLTYPE_ADDRSELECT:
1006                        ret_val = -EDESTADDRREQ;
1007                        break;
1008                case NETLBL_NLTYPE_CIPSOV4:
1009                        ret_val = cipso_v4_sock_setattr(sk,
1010                                                        dom_entry->def.cipso,
1011                                                        secattr);
1012                        break;
1013                case NETLBL_NLTYPE_UNLABELED:
1014                        ret_val = 0;
1015                        break;
1016                default:
1017                        ret_val = -ENOENT;
1018                }
1019                break;
1020#if IS_ENABLED(CONFIG_IPV6)
1021        case AF_INET6:
1022                switch (dom_entry->def.type) {
1023                case NETLBL_NLTYPE_ADDRSELECT:
1024                        ret_val = -EDESTADDRREQ;
1025                        break;
1026                case NETLBL_NLTYPE_CALIPSO:
1027                        ret_val = calipso_sock_setattr(sk,
1028                                                       dom_entry->def.calipso,
1029                                                       secattr);
1030                        break;
1031                case NETLBL_NLTYPE_UNLABELED:
1032                        ret_val = 0;
1033                        break;
1034                default:
1035                        ret_val = -ENOENT;
1036                }
1037                break;
1038#endif /* IPv6 */
1039        default:
1040                ret_val = -EPROTONOSUPPORT;
1041        }
1042
1043socket_setattr_return:
1044        rcu_read_unlock();
1045        return ret_val;
1046}
1047
1048/**
1049 * netlbl_sock_delattr - Delete all the NetLabel labels on a socket
1050 * @sk: the socket
1051 *
1052 * Description:
1053 * Remove all the NetLabel labeling from @sk.  The caller is responsible for
1054 * ensuring that @sk is locked.
1055 *
1056 */
1057void netlbl_sock_delattr(struct sock *sk)
1058{
1059        switch (sk->sk_family) {
1060        case AF_INET:
1061                cipso_v4_sock_delattr(sk);
1062                break;
1063#if IS_ENABLED(CONFIG_IPV6)
1064        case AF_INET6:
1065                calipso_sock_delattr(sk);
1066                break;
1067#endif /* IPv6 */
1068        }
1069}
1070
1071/**
1072 * netlbl_sock_getattr - Determine the security attributes of a sock
1073 * @sk: the sock
1074 * @secattr: the security attributes
1075 *
1076 * Description:
1077 * Examines the given sock to see if any NetLabel style labeling has been
1078 * applied to the sock, if so it parses the socket label and returns the
1079 * security attributes in @secattr.  Returns zero on success, negative values
1080 * on failure.
1081 *
1082 */
1083int netlbl_sock_getattr(struct sock *sk,
1084                        struct netlbl_lsm_secattr *secattr)
1085{
1086        int ret_val;
1087
1088        switch (sk->sk_family) {
1089        case AF_INET:
1090                ret_val = cipso_v4_sock_getattr(sk, secattr);
1091                break;
1092#if IS_ENABLED(CONFIG_IPV6)
1093        case AF_INET6:
1094                ret_val = calipso_sock_getattr(sk, secattr);
1095                break;
1096#endif /* IPv6 */
1097        default:
1098                ret_val = -EPROTONOSUPPORT;
1099        }
1100
1101        return ret_val;
1102}
1103
1104/**
1105 * netlbl_conn_setattr - Label a connected socket using the correct protocol
1106 * @sk: the socket to label
1107 * @addr: the destination address
1108 * @secattr: the security attributes
1109 *
1110 * Description:
1111 * Attach the correct label to the given connected socket using the security
1112 * attributes specified in @secattr.  The caller is responsible for ensuring
1113 * that @sk is locked.  Returns zero on success, negative values on failure.
1114 *
1115 */
1116int netlbl_conn_setattr(struct sock *sk,
1117                        struct sockaddr *addr,
1118                        const struct netlbl_lsm_secattr *secattr)
1119{
1120        int ret_val;
1121        struct sockaddr_in *addr4;
1122#if IS_ENABLED(CONFIG_IPV6)
1123        struct sockaddr_in6 *addr6;
1124#endif
1125        struct netlbl_dommap_def *entry;
1126
1127        rcu_read_lock();
1128        switch (addr->sa_family) {
1129        case AF_INET:
1130                addr4 = (struct sockaddr_in *)addr;
1131                entry = netlbl_domhsh_getentry_af4(secattr->domain,
1132                                                   addr4->sin_addr.s_addr);
1133                if (entry == NULL) {
1134                        ret_val = -ENOENT;
1135                        goto conn_setattr_return;
1136                }
1137                switch (entry->type) {
1138                case NETLBL_NLTYPE_CIPSOV4:
1139                        ret_val = cipso_v4_sock_setattr(sk,
1140                                                        entry->cipso, secattr);
1141                        break;
1142                case NETLBL_NLTYPE_UNLABELED:
1143                        /* just delete the protocols we support for right now
1144                         * but we could remove other protocols if needed */
1145                        netlbl_sock_delattr(sk);
1146                        ret_val = 0;
1147                        break;
1148                default:
1149                        ret_val = -ENOENT;
1150                }
1151                break;
1152#if IS_ENABLED(CONFIG_IPV6)
1153        case AF_INET6:
1154                addr6 = (struct sockaddr_in6 *)addr;
1155                entry = netlbl_domhsh_getentry_af6(secattr->domain,
1156                                                   &addr6->sin6_addr);
1157                if (entry == NULL) {
1158                        ret_val = -ENOENT;
1159                        goto conn_setattr_return;
1160                }
1161                switch (entry->type) {
1162                case NETLBL_NLTYPE_CALIPSO:
1163                        ret_val = calipso_sock_setattr(sk,
1164                                                       entry->calipso, secattr);
1165                        break;
1166                case NETLBL_NLTYPE_UNLABELED:
1167                        /* just delete the protocols we support for right now
1168                         * but we could remove other protocols if needed */
1169                        netlbl_sock_delattr(sk);
1170                        ret_val = 0;
1171                        break;
1172                default:
1173                        ret_val = -ENOENT;
1174                }
1175                break;
1176#endif /* IPv6 */
1177        default:
1178                ret_val = -EPROTONOSUPPORT;
1179        }
1180
1181conn_setattr_return:
1182        rcu_read_unlock();
1183        return ret_val;
1184}
1185
1186/**
1187 * netlbl_req_setattr - Label a request socket using the correct protocol
1188 * @req: the request socket to label
1189 * @secattr: the security attributes
1190 *
1191 * Description:
1192 * Attach the correct label to the given socket using the security attributes
1193 * specified in @secattr.  Returns zero on success, negative values on failure.
1194 *
1195 */
1196int netlbl_req_setattr(struct request_sock *req,
1197                       const struct netlbl_lsm_secattr *secattr)
1198{
1199        int ret_val;
1200        struct netlbl_dommap_def *entry;
1201        struct inet_request_sock *ireq = inet_rsk(req);
1202
1203        rcu_read_lock();
1204        switch (req->rsk_ops->family) {
1205        case AF_INET:
1206                entry = netlbl_domhsh_getentry_af4(secattr->domain,
1207                                                   ireq->ir_rmt_addr);
1208                if (entry == NULL) {
1209                        ret_val = -ENOENT;
1210                        goto req_setattr_return;
1211                }
1212                switch (entry->type) {
1213                case NETLBL_NLTYPE_CIPSOV4:
1214                        ret_val = cipso_v4_req_setattr(req,
1215                                                       entry->cipso, secattr);
1216                        break;
1217                case NETLBL_NLTYPE_UNLABELED:
1218                        netlbl_req_delattr(req);
1219                        ret_val = 0;
1220                        break;
1221                default:
1222                        ret_val = -ENOENT;
1223                }
1224                break;
1225#if IS_ENABLED(CONFIG_IPV6)
1226        case AF_INET6:
1227                entry = netlbl_domhsh_getentry_af6(secattr->domain,
1228                                                   &ireq->ir_v6_rmt_addr);
1229                if (entry == NULL) {
1230                        ret_val = -ENOENT;
1231                        goto req_setattr_return;
1232                }
1233                switch (entry->type) {
1234                case NETLBL_NLTYPE_CALIPSO:
1235                        ret_val = calipso_req_setattr(req,
1236                                                      entry->calipso, secattr);
1237                        break;
1238                case NETLBL_NLTYPE_UNLABELED:
1239                        netlbl_req_delattr(req);
1240                        ret_val = 0;
1241                        break;
1242                default:
1243                        ret_val = -ENOENT;
1244                }
1245                break;
1246#endif /* IPv6 */
1247        default:
1248                ret_val = -EPROTONOSUPPORT;
1249        }
1250
1251req_setattr_return:
1252        rcu_read_unlock();
1253        return ret_val;
1254}
1255
1256/**
1257* netlbl_req_delattr - Delete all the NetLabel labels on a socket
1258* @req: the socket
1259*
1260* Description:
1261* Remove all the NetLabel labeling from @req.
1262*
1263*/
1264void netlbl_req_delattr(struct request_sock *req)
1265{
1266        switch (req->rsk_ops->family) {
1267        case AF_INET:
1268                cipso_v4_req_delattr(req);
1269                break;
1270#if IS_ENABLED(CONFIG_IPV6)
1271        case AF_INET6:
1272                calipso_req_delattr(req);
1273                break;
1274#endif /* IPv6 */
1275        }
1276}
1277
1278/**
1279 * netlbl_skbuff_setattr - Label a packet using the correct protocol
1280 * @skb: the packet
1281 * @family: protocol family
1282 * @secattr: the security attributes
1283 *
1284 * Description:
1285 * Attach the correct label to the given packet using the security attributes
1286 * specified in @secattr.  Returns zero on success, negative values on failure.
1287 *
1288 */
1289int netlbl_skbuff_setattr(struct sk_buff *skb,
1290                          u16 family,
1291                          const struct netlbl_lsm_secattr *secattr)
1292{
1293        int ret_val;
1294        struct iphdr *hdr4;
1295#if IS_ENABLED(CONFIG_IPV6)
1296        struct ipv6hdr *hdr6;
1297#endif
1298        struct netlbl_dommap_def *entry;
1299
1300        rcu_read_lock();
1301        switch (family) {
1302        case AF_INET:
1303                hdr4 = ip_hdr(skb);
1304                entry = netlbl_domhsh_getentry_af4(secattr->domain,
1305                                                   hdr4->daddr);
1306                if (entry == NULL) {
1307                        ret_val = -ENOENT;
1308                        goto skbuff_setattr_return;
1309                }
1310                switch (entry->type) {
1311                case NETLBL_NLTYPE_CIPSOV4:
1312                        ret_val = cipso_v4_skbuff_setattr(skb, entry->cipso,
1313                                                          secattr);
1314                        break;
1315                case NETLBL_NLTYPE_UNLABELED:
1316                        /* just delete the protocols we support for right now
1317                         * but we could remove other protocols if needed */
1318                        ret_val = cipso_v4_skbuff_delattr(skb);
1319                        break;
1320                default:
1321                        ret_val = -ENOENT;
1322                }
1323                break;
1324#if IS_ENABLED(CONFIG_IPV6)
1325        case AF_INET6:
1326                hdr6 = ipv6_hdr(skb);
1327                entry = netlbl_domhsh_getentry_af6(secattr->domain,
1328                                                   &hdr6->daddr);
1329                if (entry == NULL) {
1330                        ret_val = -ENOENT;
1331                        goto skbuff_setattr_return;
1332                }
1333                switch (entry->type) {
1334                case NETLBL_NLTYPE_CALIPSO:
1335                        ret_val = calipso_skbuff_setattr(skb, entry->calipso,
1336                                                         secattr);
1337                        break;
1338                case NETLBL_NLTYPE_UNLABELED:
1339                        /* just delete the protocols we support for right now
1340                         * but we could remove other protocols if needed */
1341                        ret_val = calipso_skbuff_delattr(skb);
1342                        break;
1343                default:
1344                        ret_val = -ENOENT;
1345                }
1346                break;
1347#endif /* IPv6 */
1348        default:
1349                ret_val = -EPROTONOSUPPORT;
1350        }
1351
1352skbuff_setattr_return:
1353        rcu_read_unlock();
1354        return ret_val;
1355}
1356
1357/**
1358 * netlbl_skbuff_getattr - Determine the security attributes of a packet
1359 * @skb: the packet
1360 * @family: protocol family
1361 * @secattr: the security attributes
1362 *
1363 * Description:
1364 * Examines the given packet to see if a recognized form of packet labeling
1365 * is present, if so it parses the packet label and returns the security
1366 * attributes in @secattr.  Returns zero on success, negative values on
1367 * failure.
1368 *
1369 */
1370int netlbl_skbuff_getattr(const struct sk_buff *skb,
1371                          u16 family,
1372                          struct netlbl_lsm_secattr *secattr)
1373{
1374        unsigned char *ptr;
1375
1376        switch (family) {
1377        case AF_INET:
1378                ptr = cipso_v4_optptr(skb);
1379                if (ptr && cipso_v4_getattr(ptr, secattr) == 0)
1380                        return 0;
1381                break;
1382#if IS_ENABLED(CONFIG_IPV6)
1383        case AF_INET6:
1384                ptr = calipso_optptr(skb);
1385                if (ptr && calipso_getattr(ptr, secattr) == 0)
1386                        return 0;
1387                break;
1388#endif /* IPv6 */
1389        }
1390
1391        return netlbl_unlabel_getattr(skb, family, secattr);
1392}
1393
1394/**
1395 * netlbl_skbuff_err - Handle a LSM error on a sk_buff
1396 * @skb: the packet
1397 * @family: the family
1398 * @error: the error code
1399 * @gateway: true if host is acting as a gateway, false otherwise
1400 *
1401 * Description:
1402 * Deal with a LSM problem when handling the packet in @skb, typically this is
1403 * a permission denied problem (-EACCES).  The correct action is determined
1404 * according to the packet's labeling protocol.
1405 *
1406 */
1407void netlbl_skbuff_err(struct sk_buff *skb, u16 family, int error, int gateway)
1408{
1409        switch (family) {
1410        case AF_INET:
1411                if (cipso_v4_optptr(skb))
1412                        cipso_v4_error(skb, error, gateway);
1413                break;
1414        }
1415}
1416
1417/**
1418 * netlbl_cache_invalidate - Invalidate all of the NetLabel protocol caches
1419 *
1420 * Description:
1421 * For all of the NetLabel protocols that support some form of label mapping
1422 * cache, invalidate the cache.  Returns zero on success, negative values on
1423 * error.
1424 *
1425 */
1426void netlbl_cache_invalidate(void)
1427{
1428        cipso_v4_cache_invalidate();
1429#if IS_ENABLED(CONFIG_IPV6)
1430        calipso_cache_invalidate();
1431#endif /* IPv6 */
1432}
1433
1434/**
1435 * netlbl_cache_add - Add an entry to a NetLabel protocol cache
1436 * @skb: the packet
1437 * @family: the family
1438 * @secattr: the packet's security attributes
1439 *
1440 * Description:
1441 * Add the LSM security attributes for the given packet to the underlying
1442 * NetLabel protocol's label mapping cache.  Returns zero on success, negative
1443 * values on error.
1444 *
1445 */
1446int netlbl_cache_add(const struct sk_buff *skb, u16 family,
1447                     const struct netlbl_lsm_secattr *secattr)
1448{
1449        unsigned char *ptr;
1450
1451        if ((secattr->flags & NETLBL_SECATTR_CACHE) == 0)
1452                return -ENOMSG;
1453
1454        switch (family) {
1455        case AF_INET:
1456                ptr = cipso_v4_optptr(skb);
1457                if (ptr)
1458                        return cipso_v4_cache_add(ptr, secattr);
1459                break;
1460#if IS_ENABLED(CONFIG_IPV6)
1461        case AF_INET6:
1462                ptr = calipso_optptr(skb);
1463                if (ptr)
1464                        return calipso_cache_add(ptr, secattr);
1465                break;
1466#endif /* IPv6 */
1467        }
1468        return -ENOMSG;
1469}
1470
1471/*
1472 * Protocol Engine Functions
1473 */
1474
1475/**
1476 * netlbl_audit_start - Start an audit message
1477 * @type: audit message type
1478 * @audit_info: NetLabel audit information
1479 *
1480 * Description:
1481 * Start an audit message using the type specified in @type and fill the audit
1482 * message with some fields common to all NetLabel audit messages.  This
1483 * function should only be used by protocol engines, not LSMs.  Returns a
1484 * pointer to the audit buffer on success, NULL on failure.
1485 *
1486 */
1487struct audit_buffer *netlbl_audit_start(int type,
1488                                        struct netlbl_audit *audit_info)
1489{
1490        return netlbl_audit_start_common(type, audit_info);
1491}
1492EXPORT_SYMBOL(netlbl_audit_start);
1493
1494/*
1495 * Setup Functions
1496 */
1497
1498/**
1499 * netlbl_init - Initialize NetLabel
1500 *
1501 * Description:
1502 * Perform the required NetLabel initialization before first use.
1503 *
1504 */
1505static int __init netlbl_init(void)
1506{
1507        int ret_val;
1508
1509        printk(KERN_INFO "NetLabel: Initializing\n");
1510        printk(KERN_INFO "NetLabel:  domain hash size = %u\n",
1511               (1 << NETLBL_DOMHSH_BITSIZE));
1512        printk(KERN_INFO "NetLabel:  protocols = UNLABELED CIPSOv4 CALIPSO\n");
1513
1514        ret_val = netlbl_domhsh_init(NETLBL_DOMHSH_BITSIZE);
1515        if (ret_val != 0)
1516                goto init_failure;
1517
1518        ret_val = netlbl_unlabel_init(NETLBL_UNLHSH_BITSIZE);
1519        if (ret_val != 0)
1520                goto init_failure;
1521
1522        ret_val = netlbl_netlink_init();
1523        if (ret_val != 0)
1524                goto init_failure;
1525
1526        ret_val = netlbl_unlabel_defconf();
1527        if (ret_val != 0)
1528                goto init_failure;
1529        printk(KERN_INFO "NetLabel:  unlabeled traffic allowed by default\n");
1530
1531        return 0;
1532
1533init_failure:
1534        panic("NetLabel: failed to initialize properly (%d)\n", ret_val);
1535}
1536
1537subsys_initcall(netlbl_init);
1538