1 /*
2 * Copyright (c) 2013-2025 Apple Inc. All rights reserved.
3 *
4 * @APPLE_OSREFERENCE_LICENSE_HEADER_START@
5 *
6 * This file contains Original Code and/or Modifications of Original Code
7 * as defined in and that are subject to the Apple Public Source License
8 * Version 2.0 (the 'License'). You may not use this file except in
9 * compliance with the License. The rights granted to you under the License
10 * may not be used to create, or enable the creation or redistribution of,
11 * unlawful or unlicensed copies of an Apple operating system, or to
12 * circumvent, violate, or enable the circumvention or violation of, any
13 * terms of an Apple operating system software license agreement.
14 *
15 * Please obtain a copy of the License at
16 * http://www.opensource.apple.com/apsl/ and read it before using this file.
17 *
18 * The Original Code and all software distributed under the License are
19 * distributed on an 'AS IS' basis, WITHOUT WARRANTY OF ANY KIND, EITHER
20 * EXPRESS OR IMPLIED, AND APPLE HEREBY DISCLAIMS ALL SUCH WARRANTIES,
21 * INCLUDING WITHOUT LIMITATION, ANY WARRANTIES OF MERCHANTABILITY,
22 * FITNESS FOR A PARTICULAR PURPOSE, QUIET ENJOYMENT OR NON-INFRINGEMENT.
23 * Please see the License for the specific language governing rights and
24 * limitations under the License.
25 *
26 * @APPLE_OSREFERENCE_LICENSE_HEADER_END@
27 */
28
29 #include <string.h>
30 #include <sys/systm.h>
31 #include <sys/types.h>
32 #include <sys/queue.h>
33 #include <sys/malloc.h>
34 #include <sys/kernel.h>
35 #include <sys/kern_control.h>
36 #include <sys/mbuf.h>
37 #include <sys/kpi_mbuf.h>
38 #include <sys/proc_uuid_policy.h>
39 #include <net/if.h>
40 #include <sys/domain.h>
41 #include <sys/protosw.h>
42 #include <sys/socket.h>
43 #include <sys/socketvar.h>
44 #include <sys/coalition.h>
45 #include <sys/ubc.h>
46 #include <sys/codesign.h>
47 #include <kern/cs_blobs.h>
48 #include <netinet/ip.h>
49 #include <netinet/ip6.h>
50 #include <netinet/tcp.h>
51 #include <netinet/tcp_var.h>
52 #include <netinet/tcp_cache.h>
53 #include <netinet/udp.h>
54 #include <netinet/in_pcb.h>
55 #include <netinet/in_tclass.h>
56 #include <netinet6/esp.h>
57 #include <net/flowhash.h>
58 #include <net/bloom_filter.h>
59 #include <net/if_var.h>
60 #include <net/pfvar.h>
61 #if SKYWALK
62 #include <skywalk/lib/net_filter_event.h>
63 #endif /* defined(SKYWALK) */
64 #include <sys/kauth.h>
65 #include <sys/sysctl.h>
66 #include <sys/sysproto.h>
67 #include <sys/priv.h>
68 #include <sys/kern_event.h>
69 #include <sys/file_internal.h>
70 #include <IOKit/IOBSD.h>
71 #include <libkern/crypto/rand.h>
72 #include <corecrypto/cchmac.h>
73 #include <corecrypto/ccsha2.h>
74 #include <os/refcnt.h>
75 #include <mach-o/loader.h>
76 #include <net/network_agent.h>
77 #include <net/necp.h>
78 #include <netinet/flow_divert_proto.h>
79 #include <kern/socket_flows.h>
80
81 #include <net/sockaddr_utils.h>
82 #include <net/trie_utility.h>
83
84 /*
85 * NECP - Network Extension Control Policy database
86 * ------------------------------------------------
87 * The goal of this module is to allow clients connecting via a
88 * policy file descriptor to create high-level policy sessions, which
89 * are ingested into low-level kernel policies that control and tag
90 * traffic at the application, socket, and IP layers.
91 *
92 * ------------------------------------------------
93 * Sessions
94 * ------------------------------------------------
95 * Each session owns a list of session policies, each of which can
96 * specify any combination of conditions and a single result. Each
97 * session also has a priority level (such as High, Default, or Low)
98 * which is requested by the client. Based on the requested level,
99 * a session order value is assigned to the session, which will be used
100 * to sort kernel policies generated by the session. The session client
101 * can specify the sub-order for each policy it creates which will be
102 * used to further sort the kernel policies.
103 *
104 * Policy fd --> 1 necp_session --> list of necp_session_policy structs
105 *
106 * ------------------------------------------------
107 * Kernel Policies
108 * ------------------------------------------------
109 * Whenever a session send the Apply command, its policies are ingested
110 * and generate kernel policies. There are two phases of kernel policy
111 * ingestion.
112 *
113 * 1. The session policy is parsed to create kernel policies at the socket
114 * and IP layers, when applicable. For example, a policy that requires
115 * all traffic from App1 to Pass will generate a socket kernel policy to
116 * match App1 and mark packets with ID1, and also an IP policy to match
117 * ID1 and let the packet pass. This is handled in necp_apply_policy. The
118 * resulting kernel policies are added to the global socket and IP layer
119 * policy lists.
120 * necp_session_policy --> necp_kernel_socket_policy and necp_kernel_ip_output_policy
121 * || ||
122 * \/ \/
123 * necp_kernel_socket_policies necp_kernel_ip_output_policies
124 *
125 * 2. Once the global lists of kernel policies have been filled out, each
126 * list is traversed to create optimized sub-lists ("Maps") which are used during
127 * data-path evaluation. IP policies are sent into necp_kernel_ip_output_policies_map,
128 * which hashes incoming packets based on marked socket-layer policies, and removes
129 * duplicate or overlapping policies. Socket policies are sent into two maps,
130 * necp_kernel_socket_policies_map and necp_kernel_socket_policies_app_layer_map.
131 * The app layer map is used for policy checks coming in from user space, and is one
132 * list with duplicate and overlapping policies removed. The socket map hashes based
133 * on app UUID, and removes duplicate and overlapping policies.
134 * necp_kernel_socket_policy --> necp_kernel_socket_policies_app_layer_map
135 * |-> necp_kernel_socket_policies_map
136 *
137 * necp_kernel_ip_output_policies --> necp_kernel_ip_output_policies_map
138 *
139 * ------------------------------------------------
140 * Drop All Level
141 * ------------------------------------------------
142 * The Drop All Level is a sysctl that controls the level at which policies are allowed
143 * to override a global drop rule. If the value is 0, no drop rule is applied. If the value
144 * is 1, all traffic is dropped. If the value is greater than 1, all kernel policies created
145 * by a session with a priority level better than (numerically less than) the
146 * Drop All Level will allow matching traffic to not be dropped. The Drop All Level is
147 * dynamically interpreted into necp_drop_all_order, which specifies the equivalent assigned
148 * session orders to be dropped.
149 */
150
151 u_int32_t necp_drop_all_order = 0;
152 u_int32_t necp_drop_all_level = 0;
153
154 u_int32_t necp_pass_loopback = NECP_LOOPBACK_PASS_ALL;
155 u_int32_t necp_pass_keepalives = 1; // 0=Off, 1=On
156 u_int32_t necp_pass_interpose = 1; // 0=Off, 1=On
157 u_int32_t necp_restrict_multicast = 1; // 0=Off, 1=On
158 u_int32_t necp_dedup_policies = 0; // 0=Off, 1=On
159
160 u_int32_t necp_drop_unentitled_order = 0;
161 #ifdef XNU_TARGET_OS_WATCH
162 u_int32_t necp_drop_unentitled_level = NECP_SESSION_PRIORITY_CONTROL + 1; // Block all unentitled traffic from policies below control level
163 #else // XNU_TARGET_OS_WATCH
164 u_int32_t necp_drop_unentitled_level = 0;
165 #endif // XNU_TARGET_OS_WATCH
166
167 u_int32_t necp_drop_management_order = 0;
168 u_int32_t necp_drop_management_level = NECP_SESSION_PRIORITY_PRIVILEGED_TUNNEL;
169
170 u_int32_t necp_debug = 0; // 0=None, 1=Basic, 2=EveryMatch
171
172 os_log_t necp_log_handle = NULL;
173 os_log_t necp_data_trace_log_handle = NULL;
174
175 u_int32_t necp_session_count = 0;
176 u_int32_t necp_trie_count = 0;
177
178 static KALLOC_TYPE_DEFINE(necp_session_policy_zone,
179 struct necp_session_policy, NET_KT_DEFAULT);
180 static KALLOC_TYPE_DEFINE(necp_socket_policy_zone,
181 struct necp_kernel_socket_policy, NET_KT_DEFAULT);
182 static KALLOC_TYPE_DEFINE(necp_ip_policy_zone,
183 struct necp_kernel_ip_output_policy, NET_KT_DEFAULT);
184
185 #define LIST_INSERT_SORTED_ASCENDING(head, elm, field, sortfield, tmpelm) do { \
186 if (LIST_EMPTY((head)) || (LIST_FIRST(head)->sortfield >= (elm)->sortfield)) { \
187 LIST_INSERT_HEAD((head), elm, field); \
188 } else { \
189 LIST_FOREACH(tmpelm, head, field) { \
190 if (LIST_NEXT(tmpelm, field) == NULL || LIST_NEXT(tmpelm, field)->sortfield >= (elm)->sortfield) { \
191 LIST_INSERT_AFTER(tmpelm, elm, field); \
192 break; \
193 } \
194 } \
195 } \
196 } while (0)
197
198 #define LIST_INSERT_SORTED_TWICE_ASCENDING(head, elm, field, firstsortfield, secondsortfield, tmpelm) do { \
199 if (LIST_EMPTY((head)) || (LIST_FIRST(head)->firstsortfield > (elm)->firstsortfield) || ((LIST_FIRST(head)->firstsortfield == (elm)->firstsortfield) && (LIST_FIRST(head)->secondsortfield >= (elm)->secondsortfield))) { \
200 LIST_INSERT_HEAD((head), elm, field); \
201 } else { \
202 LIST_FOREACH(tmpelm, head, field) { \
203 if (LIST_NEXT(tmpelm, field) == NULL || (LIST_NEXT(tmpelm, field)->firstsortfield > (elm)->firstsortfield) || ((LIST_NEXT(tmpelm, field)->firstsortfield == (elm)->firstsortfield) && (LIST_NEXT(tmpelm, field)->secondsortfield >= (elm)->secondsortfield))) { \
204 LIST_INSERT_AFTER(tmpelm, elm, field); \
205 break; \
206 } \
207 } \
208 } \
209 } while (0)
210
211 #define LIST_INSERT_SORTED_THRICE_ASCENDING(head, elm, field, firstsortfield, secondsortfield, thirdsortfield, tmpelm) do { \
212 if (LIST_EMPTY((head)) || (LIST_FIRST(head)->firstsortfield > (elm)->firstsortfield) || ((LIST_FIRST(head)->firstsortfield == (elm)->firstsortfield) && (LIST_FIRST(head)->secondsortfield >= (elm)->secondsortfield)) || ((LIST_FIRST(head)->firstsortfield == (elm)->firstsortfield) && (LIST_FIRST(head)->secondsortfield == (elm)->secondsortfield) && (LIST_FIRST(head)->thirdsortfield >= (elm)->thirdsortfield))) { \
213 LIST_INSERT_HEAD((head), elm, field); \
214 } else { \
215 LIST_FOREACH(tmpelm, head, field) { \
216 if (LIST_NEXT(tmpelm, field) == NULL || (LIST_NEXT(tmpelm, field)->firstsortfield > (elm)->firstsortfield) || ((LIST_NEXT(tmpelm, field)->firstsortfield == (elm)->firstsortfield) && (LIST_NEXT(tmpelm, field)->secondsortfield >= (elm)->secondsortfield)) || ((LIST_NEXT(tmpelm, field)->firstsortfield == (elm)->firstsortfield) && (LIST_NEXT(tmpelm, field)->secondsortfield == (elm)->secondsortfield) && (LIST_NEXT(tmpelm, field)->thirdsortfield >= (elm)->thirdsortfield))) { \
217 LIST_INSERT_AFTER(tmpelm, elm, field); \
218 break; \
219 } \
220 } \
221 } \
222 } while (0)
223
224 #define IS_NECP_ROUTE_RULE_DENY(x) ((x) == NECP_ROUTE_RULE_DENY_INTERFACE || (x) == NECP_ROUTE_RULE_DENY_INTERFACE_WITH_TYPE)
225
226 #define IS_NECP_ROUTE_RULE_ALLOW_OR_DENY(x) (IS_NECP_ROUTE_RULE_DENY(x) || (x) == NECP_ROUTE_RULE_ALLOW_INTERFACE)
227
228 #define NECP_KERNEL_CONDITION_ALL_INTERFACES 0x000001
229 #define NECP_KERNEL_CONDITION_BOUND_INTERFACE 0x000002
230 #define NECP_KERNEL_CONDITION_PROTOCOL 0x000004
231 #define NECP_KERNEL_CONDITION_LOCAL_START 0x000008
232 #define NECP_KERNEL_CONDITION_LOCAL_END 0x000010
233 #define NECP_KERNEL_CONDITION_LOCAL_PREFIX 0x000020
234 #define NECP_KERNEL_CONDITION_REMOTE_START 0x000040
235 #define NECP_KERNEL_CONDITION_REMOTE_END 0x000080
236 #define NECP_KERNEL_CONDITION_REMOTE_PREFIX 0x000100
237 #define NECP_KERNEL_CONDITION_APP_ID 0x000200
238 #define NECP_KERNEL_CONDITION_REAL_APP_ID 0x000400
239 #define NECP_KERNEL_CONDITION_DOMAIN 0x000800
240 #define NECP_KERNEL_CONDITION_ACCOUNT_ID 0x001000
241 #define NECP_KERNEL_CONDITION_POLICY_ID 0x002000
242 #define NECP_KERNEL_CONDITION_PID 0x004000
243 #define NECP_KERNEL_CONDITION_UID 0x008000
244 #define NECP_KERNEL_CONDITION_LAST_INTERFACE 0x010000 // Only set from packets looping between interfaces
245 #define NECP_KERNEL_CONDITION_TRAFFIC_CLASS 0x020000
246 #define NECP_KERNEL_CONDITION_ENTITLEMENT 0x040000
247 #define NECP_KERNEL_CONDITION_CUSTOM_ENTITLEMENT 0x080000
248 #define NECP_KERNEL_CONDITION_AGENT_TYPE 0x100000
249 #define NECP_KERNEL_CONDITION_HAS_CLIENT 0x200000
250 #define NECP_KERNEL_CONDITION_LOCAL_NETWORKS 0x400000
251 #define NECP_KERNEL_CONDITION_CLIENT_FLAGS 0x800000
252 #define NECP_KERNEL_CONDITION_LOCAL_EMPTY 0x1000000
253 #define NECP_KERNEL_CONDITION_REMOTE_EMPTY 0x2000000
254 #define NECP_KERNEL_CONDITION_PLATFORM_BINARY 0x4000000
255 #define NECP_KERNEL_CONDITION_SDK_VERSION 0x8000000
256 #define NECP_KERNEL_CONDITION_SIGNING_IDENTIFIER 0x10000000
257 #define NECP_KERNEL_CONDITION_PACKET_FILTER_TAGS 0x20000000
258 #define NECP_KERNEL_CONDITION_IS_LOOPBACK 0x40000000
259 #define NECP_KERNEL_CONDITION_DELEGATE_IS_PLATFORM_BINARY 0x80000000
260 #define NECP_KERNEL_CONDITION_SCHEME_PORT 0x100000000
261 #define NECP_KERNEL_CONDITION_DOMAIN_FILTER 0x200000000
262 #define NECP_KERNEL_CONDITION_SYSTEM_SIGNED_RESULT 0x400000000
263 #define NECP_KERNEL_CONDITION_EXACT_DOMAIN 0x800000000
264 #define NECP_KERNEL_CONDITION_REAL_UID 0x1000000000
265 #define NECP_KERNEL_CONDITION_URL 0x2000000000
266 #define NECP_KERNEL_CONDITION_BOUND_INTERFACE_FLAGS 0x4000000000
267
268 #define NECP_MAX_POLICY_RESULT_SIZE 512
269 #define NECP_MAX_ROUTE_RULES_ARRAY_SIZE 1024
270 #define NECP_MAX_CONDITIONS_ARRAY_SIZE 4096
271 #define NECP_MAX_POLICY_LIST_COUNT 1024
272
273 #define NECP_MAX_DOMAIN_FILTER_SIZE 65536 // Allows room for 100K domains
274 #define NECP_MAX_DOMAIN_TRIE_SIZE (1024 * 512) // Allows 5000+ domains
275
276 typedef enum {
277 NECP_BYPASS_TYPE_NONE = 0,
278 NECP_BYPASS_TYPE_INTCOPROC = 1,
279 NECP_BYPASS_TYPE_LOOPBACK = 2,
280 NECP_BYPASS_TYPE_DROP = 3, // Drop now without hitting necp policies
281 } necp_socket_bypass_type_t;
282
283 // Cap the policy size at the max result + conditions size, with room for extra TLVs
284 #define NECP_MAX_POLICY_SIZE (1024 + NECP_MAX_POLICY_RESULT_SIZE + NECP_MAX_CONDITIONS_ARRAY_SIZE)
285
286 struct necp_domain_filter {
287 LIST_ENTRY(necp_domain_filter) owner_chain;
288 LIST_ENTRY(necp_domain_filter) chain;
289 u_int32_t id;
290 struct net_bloom_filter *filter;
291 os_refcnt_t refcount;
292 };
293 static LIST_HEAD(necp_domain_filter_list, necp_domain_filter) necp_global_domain_filter_list;
294
295 /*
296 * Filter id space is split between domain bloom filter id and domain trie filter id.
297 * id <= 10000 - bloom filter ids
298 * id > 10000 - trie filter ids
299 */
300 #define NECP_DOMAIN_FILTER_ID_MAX 10000
301 #define NECP_DOMAIN_TRIE_ID_START NECP_DOMAIN_FILTER_ID_MAX
302 #define NECP_IS_DOMAIN_FILTER_ID(id) (id <= NECP_DOMAIN_FILTER_ID_MAX)
303
304 struct necp_domain_trie {
305 LIST_ENTRY(necp_domain_trie) owner_chain;
306 LIST_ENTRY(necp_domain_trie) chain;
307 u_int32_t id;
308 struct necp_domain_trie_request *trie_request;
309 size_t trie_request_size;
310 struct net_trie trie;
311 os_refcnt_t refcount;
312 };
313 static LIST_HEAD(necp_domain_trie_list, necp_domain_trie) necp_global_domain_trie_list;
314
315 struct necp_session {
316 u_int8_t necp_fd_type;
317 u_int32_t control_unit;
318 u_int32_t session_priority; // Descriptive priority rating
319 u_int32_t session_order;
320
321 necp_policy_id last_policy_id;
322
323 decl_lck_mtx_data(, lock);
324
325 bool proc_locked; // Messages must come from proc_uuid
326 uuid_t proc_uuid;
327 int proc_pid;
328
329 bool dirty;
330 LIST_HEAD(_policies, necp_session_policy) policies;
331
332 struct necp_domain_filter_list domain_filters;
333 struct necp_domain_trie_list domain_tries;
334
335 TAILQ_ENTRY(necp_session) chain;
336 };
337
338 #define NECP_SESSION_LOCK(_s) lck_mtx_lock(&_s->lock)
339 #define NECP_SESSION_UNLOCK(_s) lck_mtx_unlock(&_s->lock)
340
341 static TAILQ_HEAD(_necp_session_list, necp_session) necp_session_list;
342
343 struct necp_socket_info {
344 pid_t pid;
345 int32_t pid_version;
346 uid_t uid;
347 uid_t real_uid;
348 union necp_sockaddr_union local_addr;
349 union necp_sockaddr_union remote_addr;
350 u_int32_t bound_interface_index;
351 u_int32_t bound_interface_flags;
352 u_int32_t bound_interface_eflags;
353 u_int32_t bound_interface_xflags;
354 u_int32_t traffic_class;
355 u_int16_t protocol;
356 u_int16_t scheme_port;
357 u_int32_t application_id;
358 u_int32_t real_application_id;
359 u_int32_t account_id;
360 u_int32_t drop_order;
361 u_int32_t client_flags;
362 char *domain __null_terminated;
363 char *url __null_terminated;
364 struct soflow_hash_entry *soflow_entry;
365 unsigned is_entitled : 1;
366 unsigned has_client : 1;
367 unsigned has_system_signed_result : 1;
368 unsigned is_platform_binary : 1;
369 unsigned used_responsible_pid : 1;
370 unsigned is_loopback : 1;
371 unsigned real_is_platform_binary : 1;
372 unsigned is_delegated : 1;
373 unsigned is_local : 1;
374 unsigned __pad_bits : 7;
375 };
376
377 static LCK_GRP_DECLARE(necp_kernel_policy_mtx_grp, NECP_CONTROL_NAME);
378 static LCK_ATTR_DECLARE(necp_kernel_policy_mtx_attr, 0, 0);
379 static LCK_RW_DECLARE_ATTR(necp_kernel_policy_lock, &necp_kernel_policy_mtx_grp,
380 &necp_kernel_policy_mtx_attr);
381
382 static LCK_GRP_DECLARE(necp_route_rule_mtx_grp, "necp_route_rule");
383 static LCK_RW_DECLARE(necp_route_rule_lock, &necp_route_rule_mtx_grp);
384
385 os_refgrp_decl(static, necp_refgrp, "NECPRefGroup", NULL);
386
387 /*
388 * On modification, invalidate cached lookups by bumping the generation count.
389 * Other calls will need to take the slowpath of taking
390 * the subsystem lock.
391 */
392 static volatile int32_t necp_kernel_socket_policies_gencount;
393 #define BUMP_KERNEL_SOCKET_POLICIES_GENERATION_COUNT() do { \
394 if (OSIncrementAtomic(&necp_kernel_socket_policies_gencount) == (INT32_MAX - 1)) { \
395 necp_kernel_socket_policies_gencount = 1; \
396 } \
397 } while (0)
398
399 /*
400 * Drop-all Bypass:
401 * Allow priviledged processes to bypass the default drop-all
402 * via entitlement check. For OSX, since entitlement check is
403 * not supported for configd, configd signing identity is checked
404 * instead.
405 */
406 #define SIGNING_ID_CONFIGD "com.apple.configd"
407 #define SIGNING_ID_CONFIGD_LEN (sizeof(SIGNING_ID_CONFIGD) - 1)
408
409 typedef enum {
410 NECP_DROP_ALL_BYPASS_CHECK_RESULT_NONE = 0,
411 NECP_DROP_ALL_BYPASS_CHECK_RESULT_TRUE = 1,
412 NECP_DROP_ALL_BYPASS_CHECK_RESULT_FALSE = 2,
413 } necp_drop_all_bypass_check_result_t;
414
415 static u_int64_t necp_kernel_application_policies_condition_mask;
416 static size_t necp_kernel_application_policies_count;
417 static u_int64_t necp_kernel_socket_policies_condition_mask;
418 static size_t necp_kernel_socket_policies_count;
419 static size_t necp_kernel_socket_policies_non_app_count;
420 static LIST_HEAD(_necpkernelsocketconnectpolicies, necp_kernel_socket_policy) necp_kernel_socket_policies;
421 #define NECP_KERNEL_SOCKET_POLICIES_MAP_NUM_APP_ID_BUCKETS 5
422 #define NECP_SOCKET_MAP_APP_ID_TO_BUCKET(appid) (appid ? (appid%(NECP_KERNEL_SOCKET_POLICIES_MAP_NUM_APP_ID_BUCKETS - 1) + 1) : 0)
423 static size_t necp_kernel_socket_policies_map_counts[NECP_KERNEL_SOCKET_POLICIES_MAP_NUM_APP_ID_BUCKETS];
424 static struct necp_kernel_socket_policy ** __indexable necp_kernel_socket_policies_map[NECP_KERNEL_SOCKET_POLICIES_MAP_NUM_APP_ID_BUCKETS];
425 static size_t necp_kernel_socket_policies_app_layer_map_count;
426 static struct necp_kernel_socket_policy ** __indexable necp_kernel_socket_policies_app_layer_map;
427 /*
428 * A note on policy 'maps': these are used for boosting efficiency when matching policies. For each dimension of the map,
429 * such as an ID, the 0 bucket is reserved for sockets/packets that do not have this parameter, while the other
430 * buckets lead to an array of policy pointers that form the list applicable when the (parameter%(NUM_BUCKETS - 1) + 1) == bucket_index.
431 *
432 * For example, a packet with policy ID of 7, when there are 4 ID buckets, will map to bucket (7%3 + 1) = 2.
433 */
434
435 static u_int64_t necp_kernel_ip_output_policies_condition_mask;
436 static size_t necp_kernel_ip_output_policies_count;
437 static size_t necp_kernel_ip_output_policies_non_id_count;
438 static LIST_HEAD(_necpkernelipoutputpolicies, necp_kernel_ip_output_policy) necp_kernel_ip_output_policies;
439 #define NECP_KERNEL_IP_OUTPUT_POLICIES_MAP_NUM_ID_BUCKETS 5
440 #define NECP_IP_OUTPUT_MAP_ID_TO_BUCKET(id) (id ? (id%(NECP_KERNEL_IP_OUTPUT_POLICIES_MAP_NUM_ID_BUCKETS - 1) + 1) : 0)
441 static size_t necp_kernel_ip_output_policies_map_counts[NECP_KERNEL_IP_OUTPUT_POLICIES_MAP_NUM_ID_BUCKETS];
442 static struct necp_kernel_ip_output_policy ** __indexable necp_kernel_ip_output_policies_map[NECP_KERNEL_IP_OUTPUT_POLICIES_MAP_NUM_ID_BUCKETS];
443 static struct necp_kernel_socket_policy pass_policy =
444 {
445 .id = NECP_KERNEL_POLICY_ID_NO_MATCH,
446 .result = NECP_KERNEL_POLICY_RESULT_PASS,
447 };
448
449 static struct necp_session *necp_create_session(void);
450 static void necp_delete_session(struct necp_session *session);
451
452 static necp_policy_id necp_handle_policy_add(struct necp_session *session,
453 u_int8_t * __sized_by(tlv_buffer_length)tlv_buffer, size_t tlv_buffer_length, int offset, int *error);
454 static int necp_handle_policy_dump_all(user_addr_t out_buffer, size_t out_buffer_length);
455
456 #define MAX_RESULT_STRING_LEN 64
457 static inline const char * __sized_by(MAX_RESULT_STRING_LEN) necp_get_result_description(char * __sized_by(MAX_RESULT_STRING_LEN) result_string, necp_kernel_policy_result result, necp_kernel_policy_result_parameter result_parameter);
458
459 static struct necp_session_policy *necp_policy_create(struct necp_session *session, necp_policy_order order, u_int8_t *__sized_by(conditions_array_size)conditions_array, u_int32_t conditions_array_size, u_int8_t * __sized_by(route_rules_array_size)route_rules_array, u_int32_t route_rules_array_size, u_int8_t * __sized_by(result_size)result, u_int32_t result_size);
460 static struct necp_session_policy *necp_policy_find(struct necp_session *session, necp_policy_id policy_id);
461 static bool necp_policy_mark_for_deletion(struct necp_session *session, struct necp_session_policy *policy);
462 static bool necp_policy_mark_all_for_deletion(struct necp_session *session);
463 static bool necp_policy_delete(struct necp_session *session, struct necp_session_policy *policy);
464 static void necp_policy_apply_all(struct necp_session *session);
465
466 static necp_kernel_policy_id necp_kernel_socket_policy_add(necp_policy_order order, u_int32_t session_order, int session_pid, u_int64_t condition_mask, u_int64_t condition_negated_mask, necp_app_id cond_app_id, necp_app_id cond_real_app_id, char *cond_custom_entitlement __null_terminated, u_int32_t cond_account_id, char *cond_domain __null_terminated, u_int32_t cond_domain_filter, char *cond_url __null_terminated, pid_t cond_pid, int32_t cond_pid_version, uid_t cond_uid, uid_t cond_real_uid, ifnet_t cond_bound_interface, struct necp_policy_condition_tc_range cond_traffic_class, u_int16_t cond_protocol, union necp_sockaddr_union * __single cond_local_start, union necp_sockaddr_union *cond_local_end, u_int8_t cond_local_prefix, union necp_sockaddr_union *cond_remote_start, union necp_sockaddr_union *cond_remote_end, u_int8_t cond_remote_prefix, struct necp_policy_condition_agent_type *cond_agent_type, struct necp_policy_condition_sdk_version *cond_sdk_version, u_int32_t cond_client_flags, char *cond_signing_identifier __null_terminated, u_int16_t cond_packet_filter_tags, u_int16_t cond_scheme_port, u_int32_t cond_bound_interface_flags, u_int32_t cond_bound_interface_eflags, u_int32_t cond_bound_interface_xflags, u_int8_t cond_local_networks_flags, necp_kernel_policy_result result, necp_kernel_policy_result_parameter result_parameter);
467 static bool necp_kernel_socket_policy_delete(necp_kernel_policy_id policy_id);
468 static bool necp_kernel_socket_policies_reprocess(void);
469 static bool necp_kernel_socket_policies_update_uuid_table(void);
470 static inline struct necp_kernel_socket_policy * necp_socket_find_policy_match_with_info_locked(struct necp_kernel_socket_policy ** __indexable policy_search_array,
471 struct necp_socket_info *info,
472 necp_kernel_policy_filter *return_filter,
473 u_int32_t * __counted_by(route_rule_id_array_count)return_route_rule_id_array,
474 size_t *return_route_rule_id_array_count,
475 size_t route_rule_id_array_count,
476 u_int32_t * __counted_by(netagent_array_count)return_netagent_array,
477 size_t netagent_array_count,
478 u_int32_t * __counted_by(netagent_use_flags_array_count)return_netagent_use_flags_array,
479 size_t netagent_use_flags_array_count,
480 struct necp_client_parameter_netagent_type * __counted_by(num_required_agent_types)required_agent_types,
481 u_int32_t num_required_agent_types,
482 proc_t proc,
483 u_int16_t pf_tag,
484 necp_kernel_policy_id *skip_policy_id,
485 struct rtentry *rt,
486 necp_kernel_policy_result *return_drop_dest_policy_result,
487 necp_drop_all_bypass_check_result_t *return_drop_all_bypass,
488 u_int32_t *return_flow_divert_aggregate_unit,
489 struct socket *so,
490 int debug);
491 static necp_kernel_policy_id necp_kernel_ip_output_policy_add(necp_policy_order order, necp_policy_order suborder, u_int32_t session_order, int session_pid, u_int64_t condition_mask, u_int64_t condition_negated_mask, necp_kernel_policy_id cond_policy_id, ifnet_t cond_bound_interface, u_int32_t cond_last_interface_index, u_int16_t cond_protocol, union necp_sockaddr_union *cond_local_start, union necp_sockaddr_union *cond_local_end, u_int8_t cond_local_prefix, union necp_sockaddr_union *cond_remote_start, union necp_sockaddr_union *cond_remote_end, u_int8_t cond_remote_prefix, u_int16_t cond_packet_filter_tags, u_int16_t cond_scheme_port, u_int32_t cond_bound_interface_flags, u_int32_t cond_bound_interface_eflags, u_int32_t cond_bound_interface_xflags, u_int8_t cond_local_networks_flags, necp_kernel_policy_result result, necp_kernel_policy_result_parameter result_parameter);
492 static bool necp_kernel_ip_output_policy_delete(necp_kernel_policy_id policy_id);
493 static bool necp_kernel_ip_output_policies_reprocess(void);
494
495 static bool necp_is_addr_in_range(struct sockaddr *addr, struct sockaddr *range_start, struct sockaddr *range_end);
496 static bool necp_is_range_in_range(struct sockaddr *inner_range_start, struct sockaddr *inner_range_end, struct sockaddr *range_start, struct sockaddr *range_end);
497 static bool necp_is_addr_in_subnet(struct sockaddr *addr, struct sockaddr *subnet_addr, u_int8_t subnet_prefix);
498 static int necp_addr_compare(struct sockaddr *sa1, struct sockaddr *sa2, int check_port);
499 static bool necp_buffer_compare_with_bit_prefix(u_int8_t * __indexable p1, u_int8_t * __indexable p2, u_int32_t bits);
500 static bool necp_addr_is_empty(struct sockaddr *addr);
501 static bool necp_is_loopback(struct sockaddr *local_addr, struct sockaddr *remote_addr, struct inpcb *inp, struct mbuf *packet, u_int32_t bound_interface_index);
502 static bool necp_is_intcoproc(struct inpcb *inp, struct mbuf *packet);
503
504 struct necp_uuid_id_mapping {
505 LIST_ENTRY(necp_uuid_id_mapping) chain;
506 uuid_t uuid;
507 u_int32_t id;
508 os_refcnt_t refcount;
509 u_int32_t table_usecount; // Add to UUID policy table count
510 };
511 static size_t necp_num_uuid_app_id_mappings;
512 static bool necp_uuid_app_id_mappings_dirty;
513 #define NECP_UUID_APP_ID_HASH_SIZE 64
514 static u_long necp_uuid_app_id_hash_mask;
515 static u_long necp_uuid_app_id_hash_num_buckets;
516 static LIST_HEAD(necp_uuid_id_mapping_head, necp_uuid_id_mapping) * __counted_by(necp_uuid_app_id_hash_num_buckets) necp_uuid_app_id_hashtbl, necp_agent_uuid_id_list; // App map is real hash table, agent map is just mapping
517 #define APPUUIDHASH(uuid) (&necp_uuid_app_id_hashtbl[uuid[0] & necp_uuid_app_id_hash_mask]) // Assume first byte of UUIDs are evenly distributed
518 static u_int32_t necp_create_uuid_app_id_mapping(uuid_t uuid, bool *allocated_mapping, bool uuid_policy_table);
519 static bool necp_remove_uuid_app_id_mapping(uuid_t uuid, bool *removed_mapping, bool uuid_policy_table);
520 static struct necp_uuid_id_mapping *necp_uuid_lookup_uuid_with_app_id_locked(u_int32_t agent_id);
521
522 static bool necp_agent_id_is_uuid(u_int32_t agent_id);
523 static struct necp_uuid_id_mapping *necp_uuid_lookup_agent_id_with_uuid_locked(uuid_t uuid);
524 static struct necp_uuid_id_mapping *necp_uuid_lookup_uuid_with_agent_id_locked(u_int32_t agent_id);
525 static u_int32_t necp_create_agent_uuid_id_mapping(uuid_t uuid);
526 static bool necp_remove_agent_uuid_id_mapping(uuid_t uuid);
527 static bool necp_remove_agent_uuid_id_mapping_with_agent_id(u_int32_t agent_id);
528
529 struct necp_agent_type_id_mapping {
530 LIST_ENTRY(necp_agent_type_id_mapping) chain;
531 struct necp_policy_condition_agent_type agent_type;
532 u_int32_t id;
533 os_refcnt_t refcount;
534 };
535 static LIST_HEAD(necp_agent_type_id_mapping_list, necp_agent_type_id_mapping) necp_agent_type_id_list;
536 static u_int32_t necp_create_agent_type_to_id_mapping(struct necp_policy_condition_agent_type *agent_type);
537 static bool necp_remove_agent_type_to_id_mapping(u_int32_t agent_type_id);
538 static struct necp_agent_type_id_mapping *necp_lookup_agent_type_with_id_locked(u_int32_t agent_id);
539
540 struct necp_string_id_mapping {
541 LIST_ENTRY(necp_string_id_mapping) chain;
542 char *string __null_terminated;
543 necp_app_id id;
544 os_refcnt_t refcount;
545 };
546 static LIST_HEAD(necp_string_id_mapping_list, necp_string_id_mapping) necp_account_id_list;
547 static u_int32_t necp_create_string_to_id_mapping(struct necp_string_id_mapping_list *list, char *domain __null_terminated);
548 static bool necp_remove_string_to_id_mapping(struct necp_string_id_mapping_list *list, char *domain __null_terminated);
549 static struct necp_string_id_mapping *necp_lookup_string_with_id_locked(struct necp_string_id_mapping_list *list, u_int32_t local_id);
550
551 static u_int32_t necp_create_domain_filter(struct necp_domain_filter_list *list, struct necp_domain_filter_list *owner_list, struct net_bloom_filter *filter);
552 static bool necp_remove_domain_filter(struct necp_domain_filter_list *list, struct necp_domain_filter_list *owner_list, u_int32_t filter_id);
553 static struct necp_domain_filter *necp_lookup_domain_filter(struct necp_domain_filter_list *list, u_int32_t filter_id);
554
555 static u_int32_t necp_create_domain_trie(struct necp_domain_trie_list *list, struct necp_domain_trie_list *owner_list,
556 struct necp_domain_trie_request *necp_trie_request, size_t necp_trie_request_size);
557 static bool necp_remove_domain_trie(struct necp_domain_trie_list *list, __unused struct necp_domain_trie_list *owner_list, u_int32_t id);
558 static void necp_free_domain_trie(struct necp_domain_trie *trie);
559 static struct necp_domain_trie *necp_lookup_domain_trie(struct necp_domain_trie_list *list, u_int32_t id);
560 static Boolean necp_match_domain_with_trie(struct necp_domain_trie_list *list, u_int32_t id, char * __sized_by(length) domain, size_t length);
561
562 static struct necp_kernel_socket_policy *necp_kernel_socket_policy_find(necp_kernel_policy_id policy_id);
563 static struct necp_kernel_ip_output_policy *necp_kernel_ip_output_policy_find(necp_kernel_policy_id policy_id);
564
565 static char * __null_terminated necp_create_trimmed_domain(char * __sized_by(length)string, size_t length);
566 static inline int necp_count_dots(char * __sized_by(length)string, size_t length);
567
568 static char * __null_terminated necp_copy_string(char * __sized_by(length)string, size_t length);
569 static bool necp_update_qos_marking(struct ifnet *ifp, u_int32_t * __counted_by(netagent_array_count)netagent_array, size_t netagent_array_count, u_int32_t route_rule_id);
570
571 #define ROUTE_RULE_IS_AGGREGATE(ruleid) (ruleid >= UINT16_MAX)
572
573 #define MAX_ROUTE_RULE_INTERFACES 10
574 struct necp_route_rule {
575 LIST_ENTRY(necp_route_rule) chain;
576 u_int32_t id;
577 u_int32_t netagent_id;
578 u_int32_t control_unit;
579 u_int32_t match_netagent_id;
580 u_int32_t effective_type;
581 u_int8_t default_action;
582 u_int8_t cellular_action;
583 u_int8_t wifi_action;
584 u_int8_t wired_action;
585 u_int8_t expensive_action;
586 u_int8_t constrained_action;
587 u_int8_t companion_action;
588 u_int8_t vpn_action;
589 u_int8_t ultra_constrained_action;
590 u_int exception_if_indices[MAX_ROUTE_RULE_INTERFACES];
591 u_int8_t exception_if_actions[MAX_ROUTE_RULE_INTERFACES];
592 os_refcnt_t refcount;
593 };
594 static LIST_HEAD(necp_route_rule_list, necp_route_rule) necp_route_rules;
595 static u_int32_t necp_create_route_rule(struct necp_route_rule_list *list, u_int8_t * __sized_by(route_rules_array_size)route_rules_array, u_int32_t route_rules_array_size, bool *has_socket_only_actions);
596 static bool necp_remove_route_rule(struct necp_route_rule_list *list, u_int32_t route_rule_id);
597 static bool necp_route_is_interface_type_allowed(struct rtentry *route, struct ifnet *ifp, proc_t proc, struct inpcb *inp);
598 static bool necp_route_is_allowed(struct rtentry *route, ifnet_t interface, u_int32_t * __counted_by(netagent_array_count)netagent_array, size_t netagent_array_count,
599 u_int32_t route_rule_id, u_int32_t *interface_type_denied, bool *ultra_constrained_denied);
600 static uint32_t necp_route_get_netagent(struct rtentry *route, u_int32_t * __counted_by(netagent_array_count)netagent_array, size_t netagent_array_count, u_int32_t route_rule_id, bool *remove);
601 static bool necp_route_rule_matches_agents(u_int32_t route_rule_id);
602 static uint32_t necp_route_get_flow_divert(struct rtentry *route, u_int32_t * __counted_by(netagent_array_count)netagent_array, size_t netagent_array_count, u_int32_t route_rule_id, u_int32_t *flow_divert_aggregate_unit);
603 static struct necp_route_rule *necp_lookup_route_rule_locked(struct necp_route_rule_list *list, u_int32_t route_rule_id);
604 static inline void necp_get_parent_is_entitled(task_t task, struct necp_socket_info *info);
605
606 #define MAX_AGGREGATE_ROUTE_RULES 16
607 struct necp_aggregate_route_rule {
608 LIST_ENTRY(necp_aggregate_route_rule) chain;
609 u_int32_t id;
610 u_int32_t rule_ids[MAX_AGGREGATE_ROUTE_RULES];
611 };
612 static LIST_HEAD(necp_aggregate_route_rule_list, necp_aggregate_route_rule) necp_aggregate_route_rules;
613 static u_int32_t necp_create_aggregate_route_rule(u_int32_t * __counted_by(MAX_AGGREGATE_ROUTE_RULES)rule_ids);
614
615 // Sysctl definitions
616 static int sysctl_handle_necp_level SYSCTL_HANDLER_ARGS;
617 static int sysctl_handle_necp_unentitled_level SYSCTL_HANDLER_ARGS;
618 static int sysctl_handle_necp_management_level SYSCTL_HANDLER_ARGS;
619
620 SYSCTL_NODE(_net, OID_AUTO, necp, CTLFLAG_RW | CTLFLAG_LOCKED, 0, "NECP");
621 SYSCTL_INT(_net_necp, NECPCTL_DEDUP_POLICIES, dedup_policies, CTLFLAG_LOCKED | CTLFLAG_RW, &necp_dedup_policies, 0, "");
622 SYSCTL_INT(_net_necp, NECPCTL_RESTRICT_MULTICAST, restrict_multicast, CTLFLAG_LOCKED | CTLFLAG_RW, &necp_restrict_multicast, 0, "");
623 SYSCTL_INT(_net_necp, NECPCTL_PASS_LOOPBACK, pass_loopback, CTLFLAG_LOCKED | CTLFLAG_RW, &necp_pass_loopback, 0, "");
624 SYSCTL_INT(_net_necp, NECPCTL_PASS_KEEPALIVES, pass_keepalives, CTLFLAG_LOCKED | CTLFLAG_RW, &necp_pass_keepalives, 0, "");
625 SYSCTL_INT(_net_necp, NECPCTL_PASS_INTERPOSE, pass_interpose, CTLFLAG_LOCKED | CTLFLAG_RW, &necp_pass_interpose, 0, "");
626 SYSCTL_INT(_net_necp, NECPCTL_DEBUG, debug, CTLFLAG_LOCKED | CTLFLAG_RW, &necp_debug, 0, "");
627 SYSCTL_PROC(_net_necp, NECPCTL_DROP_UNENTITLED_LEVEL, drop_unentitled_level, CTLTYPE_INT | CTLFLAG_LOCKED | CTLFLAG_RW, &necp_drop_unentitled_level, 0, &sysctl_handle_necp_unentitled_level, "IU", "");
628 SYSCTL_PROC(_net_necp, NECPCTL_DROP_MANAGEMENT_LEVEL, drop_management_level, CTLTYPE_INT | CTLFLAG_LOCKED | CTLFLAG_RW, &necp_drop_management_level, 0, &sysctl_handle_necp_management_level, "IU", "");
629 SYSCTL_PROC(_net_necp, NECPCTL_DROP_ALL_LEVEL, drop_all_level, CTLTYPE_INT | CTLFLAG_LOCKED | CTLFLAG_RW, &necp_drop_all_level, 0, &sysctl_handle_necp_level, "IU", "");
630 SYSCTL_LONG(_net_necp, NECPCTL_SOCKET_POLICY_COUNT, socket_policy_count, CTLFLAG_LOCKED | CTLFLAG_RD, &necp_kernel_socket_policies_count, "");
631 SYSCTL_LONG(_net_necp, NECPCTL_SOCKET_NON_APP_POLICY_COUNT, socket_non_app_policy_count, CTLFLAG_LOCKED | CTLFLAG_RD, &necp_kernel_socket_policies_non_app_count, "");
632 SYSCTL_LONG(_net_necp, NECPCTL_IP_POLICY_COUNT, ip_policy_count, CTLFLAG_LOCKED | CTLFLAG_RD, &necp_kernel_ip_output_policies_count, "");
633 SYSCTL_INT(_net_necp, NECPCTL_SESSION_COUNT, session_count, CTLFLAG_LOCKED | CTLFLAG_RD, &necp_session_count, 0, "");
634 SYSCTL_INT(_net_necp, NECPCTL_TRIE_COUNT, trie_count, CTLFLAG_LOCKED | CTLFLAG_RD, &necp_trie_count, 0, "");
635
636 static struct necp_drop_dest_policy necp_drop_dest_policy;
637 static int necp_drop_dest_debug = 0; // 0: off, 1: match, >1: every evaluation
638 SYSCTL_INT(_net_necp, OID_AUTO, drop_dest_debug, CTLFLAG_LOCKED | CTLFLAG_RW, &necp_drop_dest_debug, 0, "");
639
640 static int sysctl_handle_necp_drop_dest_level SYSCTL_HANDLER_ARGS;
641 SYSCTL_PROC(_net_necp, OID_AUTO, drop_dest_level, CTLTYPE_STRUCT | CTLFLAG_LOCKED | CTLFLAG_ANYBODY | CTLFLAG_RW,
642 0, 0, &sysctl_handle_necp_drop_dest_level, "S,necp_drop_dest_level", "");
643
644 static bool necp_address_matches_drop_dest_policy(union necp_sockaddr_union *, u_int32_t);
645
646 /*
647 * data tracing control -
648 *
649 * necp_data_tracing_level : 1 for brief trace, 2 for policy details, 3 for condition details
650 * necp_data_tracing_port : match traffic with specified port
651 * necp_data_tracing_proto : match traffic with specified protocol
652 * necp_data_tracing_pid : match traffic with specified pid (only applied at socket level)
653 * necp_data_tracing_ifindex : match traffic on specified ifindex
654 * necp_data_tracing_match_all: trace traffic only if ALL specified attributes matched. Default is 0 to trace traffic if any specified attributes matched.
655 * data_tracing_session_order : match policies in the specified session - log traffic that hit these policies
656 * necp_data_tracing_policy_order : match specified policy - log traffic that hit this policy
657 */
658 static int necp_data_tracing_level = 0;
659 SYSCTL_INT(_net_necp, OID_AUTO, data_tracing_level, CTLFLAG_LOCKED | CTLFLAG_RW, &necp_data_tracing_level, 0, "");
660
661 static int necp_data_tracing_port = 0;
662 SYSCTL_INT(_net_necp, OID_AUTO, data_tracing_port, CTLFLAG_LOCKED | CTLFLAG_RW, &necp_data_tracing_port, 0, "");
663
664 static int necp_data_tracing_proto = 0;
665 SYSCTL_INT(_net_necp, OID_AUTO, data_tracing_proto, CTLFLAG_LOCKED | CTLFLAG_RW, &necp_data_tracing_proto, 0, "");
666
667 static int necp_data_tracing_pid = 0;
668 SYSCTL_INT(_net_necp, OID_AUTO, data_tracing_pid, CTLFLAG_LOCKED | CTLFLAG_RW, &necp_data_tracing_pid, 0, "");
669
670 static int necp_data_tracing_ifindex = 0;
671 SYSCTL_INT(_net_necp, OID_AUTO, data_tracing_ifindex, CTLFLAG_LOCKED | CTLFLAG_RW, &necp_data_tracing_ifindex, 0, "");
672
673 static int necp_data_tracing_match_all = 0;
674 SYSCTL_INT(_net_necp, OID_AUTO, data_tracing_match_all, CTLFLAG_LOCKED | CTLFLAG_RW, &necp_data_tracing_match_all, 0, "");
675
676 static int necp_data_tracing_session_order = 0;
677 SYSCTL_INT(_net_necp, OID_AUTO, data_tracing_session_order, CTLFLAG_LOCKED | CTLFLAG_RW, &necp_data_tracing_session_order, 0, "");
678
679 static int necp_data_tracing_policy_order = 0;
680 SYSCTL_INT(_net_necp, OID_AUTO, data_tracing_policy_order, CTLFLAG_LOCKED | CTLFLAG_RW, &necp_data_tracing_policy_order, 0, "");
681
682 #define NECP_DATA_TRACE_LEVEL_BRIEF 1
683 #define NECP_DATA_TRACE_LEVEL_POLICY 2
684 #define NECP_DATA_TRACE_LEVEL_CONDITION 3
685 #define NECP_DATA_TRACE_LEVEL_DP 4
686
687 #define NECP_DATA_TRACE_PID_MATCHED(pid) \
688 (pid == necp_data_tracing_pid)
689 #define NECP_DATA_TRACE_PROTO_MATCHED(protocol) \
690 (protocol == necp_data_tracing_proto)
691 #define NECP_DATA_TRACE_LOCAL_PORT_MATCHED(local_addr) \
692 (local_addr && (ntohs(local_addr->sin.sin_port) == necp_data_tracing_port || ntohs(local_addr->sin6.sin6_port) == necp_data_tracing_port))
693 #define NECP_DATA_TRACE_REMOTE_ORT_MATCHED(remote_addr) \
694 (remote_addr && (ntohs(remote_addr->sin.sin_port) == necp_data_tracing_port || ntohs(remote_addr->sin6.sin6_port) == necp_data_tracing_port))
695 #define NECP_DATA_TRACE_IFINDEX_MATCHED(ifindex) \
696 (ifindex == necp_data_tracing_ifindex)
697
698 #define NECP_ENABLE_DATA_TRACE_OR(local_addr, remote_addr, protocol, pid, ifindex) \
699 ((necp_data_tracing_level && \
700 ((necp_data_tracing_pid && (!pid || NECP_DATA_TRACE_PID_MATCHED(pid))) || \
701 (necp_data_tracing_proto && NECP_DATA_TRACE_PROTO_MATCHED(protocol)) || \
702 (necp_data_tracing_ifindex && NECP_DATA_TRACE_IFINDEX_MATCHED(ifindex)) || \
703 (necp_data_tracing_port && (NECP_DATA_TRACE_LOCAL_PORT_MATCHED(local_addr) || NECP_DATA_TRACE_REMOTE_ORT_MATCHED(remote_addr))))) ? necp_data_tracing_level : 0)
704
705 #define NECP_ENABLE_DATA_TRACE_AND(local_addr, remote_addr, protocol, pid, ifindex) \
706 ((necp_data_tracing_level && \
707 ((!necp_data_tracing_pid || !pid || NECP_DATA_TRACE_PID_MATCHED(pid)) && \
708 (!necp_data_tracing_proto || NECP_DATA_TRACE_PROTO_MATCHED(protocol)) && \
709 (!necp_data_tracing_ifindex || NECP_DATA_TRACE_IFINDEX_MATCHED(ifindex)) && \
710 (!necp_data_tracing_port || (NECP_DATA_TRACE_LOCAL_PORT_MATCHED(local_addr) || NECP_DATA_TRACE_REMOTE_ORT_MATCHED(remote_addr))))) ? necp_data_tracing_level : 0)
711
712 #define NECP_ENABLE_DATA_TRACE(local_addr, remote_addr, protocol, pid, ifindex) \
713 (necp_data_tracing_match_all ? \
714 NECP_ENABLE_DATA_TRACE_AND(local_addr, remote_addr, protocol, pid, ifindex) : \
715 NECP_ENABLE_DATA_TRACE_OR(local_addr, remote_addr, protocol, pid, ifindex))
716
717 #define NECP_DATA_TRACE_ON(debug) (debug)
718 #define NECP_DATA_TRACE_POLICY_ON(debug) (debug > NECP_DATA_TRACE_LEVEL_BRIEF)
719 #define NECP_DATA_TRACE_CONDITION_ON(debug) (debug > NECP_DATA_TRACE_LEVEL_POLICY)
720 #define NECP_DATA_TRACE_DP_ON(debug) (debug > NECP_DATA_TRACE_LEVEL_CONDITION)
721
722 const char* necp_get_address_string(union necp_sockaddr_union *address, char addr_str[MAX_IPv6_STR_LEN]);
723
724 #define NECP_DATA_TRACE_LOG_APP_LEVEL(debug, caller, log_msg, policy_id, skip_policy_id) \
725 if (NECP_DATA_TRACE_ON(debug)) { \
726 char laddr_str[MAX_IPv6_STR_LEN]; \
727 char raddr_str[MAX_IPv6_STR_LEN]; \
728 NECPDATATRACELOG(LOG_ERR, "DATA-TRACE <%s>: %s - fam %d proto %d port <local %d/%d remote %d/%d> <local %s remote %s> <drop-all order %d> <pid=%d Application %d Real Application %d BoundInterface %d> <policy_id %d skip_policy_id %d>", \
729 caller, log_msg, info.local_addr.sin.sin_family, info.protocol, ntohs(info.local_addr.sin.sin_port), ntohs(info.local_addr.sin6.sin6_port), ntohs(info.remote_addr.sin.sin_port), ntohs(info.remote_addr.sin6.sin6_port), necp_get_address_string(&info.local_addr, laddr_str), necp_get_address_string(&info.remote_addr, raddr_str), necp_drop_all_order, info.pid, info.application_id, info.real_application_id, info.bound_interface_index, policy_id, skip_policy_id); \
730 }
731
732 #define NECP_DATA_TRACE_LOG_SOCKET(debug, socket, caller, log_msg, policy_id, skip_policy_id) \
733 if (NECP_DATA_TRACE_ON(debug)) { \
734 char laddr_str[MAX_IPv6_STR_LEN]; \
735 char raddr_str[MAX_IPv6_STR_LEN]; \
736 NECPDATATRACELOG(LOG_ERR, "DATA-TRACE <%s %llx>: %s - fam %d proto %d port <local %d/%d remote %d/%d> <local %s remote %s> <drop-all order %d> <pid=%d Application %d Real Application %d BoundInterface %d> <policy_id %d skip_policy_id %d result %d>", \
737 caller, (uint64_t)VM_KERNEL_ADDRPERM(socket), log_msg, info.local_addr.sin.sin_family, info.protocol, ntohs(info.local_addr.sin.sin_port), ntohs(info.local_addr.sin6.sin6_port), ntohs(info.remote_addr.sin.sin_port), ntohs(info.remote_addr.sin6.sin6_port), necp_get_address_string(&info.local_addr, laddr_str), necp_get_address_string(&info.remote_addr, raddr_str), necp_drop_all_order, info.pid, info.application_id, info.real_application_id, info.bound_interface_index, policy_id, skip_policy_id, inp ? inp->inp_policyresult.results.result : 0); \
738 }
739
740 #define NECP_DATA_TRACE_LOG_SOCKET_DP(debug, socket, caller, log_msg, policy_id, skip_policy_id) \
741 if (NECP_DATA_TRACE_ON(debug)) { \
742 char laddr_str[MAX_IPv6_STR_LEN]; \
743 char raddr_str[MAX_IPv6_STR_LEN]; \
744 NECPDATATRACELOG(LOG_ERR, "DATA-TRACE <%s %llx>: %s - fam %d proto %d port <local %d/%d remote %d/%d> <local %s remote %s> <drop-all order %d> <pid=%d Application %d Real Application %d BoundInterface %d> <policy_id %d skip_policy_id %d result %d> <input ifindex %d> <allowed_to_receive %d><pf_tag %X pass_flags %X>", \
745 caller, (uint64_t)VM_KERNEL_ADDRPERM(socket), log_msg, info.local_addr.sin.sin_family, info.protocol, ntohs(info.local_addr.sin.sin_port), ntohs(info.local_addr.sin6.sin6_port), ntohs(info.remote_addr.sin.sin_port), ntohs(info.remote_addr.sin6.sin6_port), necp_get_address_string(&info.local_addr, laddr_str), necp_get_address_string(&info.remote_addr, raddr_str), necp_drop_all_order, info.pid, info.application_id, info.real_application_id, info.bound_interface_index, policy_id, skip_policy_id, inp ? inp->inp_policyresult.results.result : 0, verifyifindex, allowed_to_receive, pf_tag, pass_flags); \
746 }
747
748 #define NECP_DATA_TRACE_LOG_SOCKET_RESULT(debug, socket, caller, log_msg) \
749 if (NECP_DATA_TRACE_ON(debug)) { \
750 char laddr_str[MAX_IPv6_STR_LEN]; \
751 char raddr_str[MAX_IPv6_STR_LEN]; \
752 NECPDATATRACELOG(LOG_ERR, "DATA-TRACE <%s %llx>: %s - fam %d proto %d port <local %d/%d remote %d/%d> <local %s remote %s> <drop-all order %d> <pid=%d Application %d Real Application %d BoundInterface %d> (policy id=%d session_order=%d policy_order=%d result=%s)", \
753 caller, (uint64_t)VM_KERNEL_ADDRPERM(socket), log_msg, info->local_addr.sin.sin_family, info->protocol, ntohs(info->local_addr.sin.sin_port), ntohs(info->local_addr.sin6.sin6_port), ntohs(info->remote_addr.sin.sin_port), ntohs(info->remote_addr.sin6.sin6_port), necp_get_address_string(&info->local_addr, laddr_str), necp_get_address_string(&info->remote_addr, raddr_str), necp_drop_all_order, info->pid, info->application_id, info->real_application_id, info->bound_interface_index, policy_search_array[i]->id, policy_search_array[i]->session_order, policy_search_array[i]->order, resultString[policy_search_array[i]->result]); \
754 }
755
756 #define NECP_DATA_TRACE_LOG_SOCKET_BRIEF(debug, socket, caller, log_msg, policy_id, skip_policy_id, cached_policy_id, cached_skip_policy_id) \
757 if (NECP_DATA_TRACE_ON(debug)) { \
758 NECPDATATRACELOG(LOG_ERR, "DATA-TRACE <%s %llx>: %s - <policy_id %d skip_policy_id %d> <cached policy_id %d skip_policy_id %d>", \
759 caller, (uint64_t)VM_KERNEL_ADDRPERM(socket), log_msg, policy_id, skip_policy_id, cached_policy_id, cached_skip_policy_id); \
760 }
761
762 #define NECP_DATA_TRACE_LOG_IP4(debug, caller, log_msg) \
763 if (NECP_DATA_TRACE_ON(debug)) { \
764 char laddr_str[MAX_IPv6_STR_LEN]; \
765 char raddr_str[MAX_IPv6_STR_LEN]; \
766 NECPDATATRACELOG(LOG_ERR, "DATA-TRACE <%s>: %s - fam %d proto %d port <local %d/%d remote %d/%d> <local %s remote %s> <drop-all order %d> <BoundInterface %d> <socket policy id %d socket skip id %d> <mbuf %X len %d %d>", \
767 caller, log_msg, local_addr.sin.sin_family, protocol, ntohs(local_addr.sin.sin_port), ntohs(local_addr.sin6.sin6_port), ntohs(remote_addr.sin.sin_port), ntohs(remote_addr.sin6.sin6_port), necp_get_address_string(&local_addr, laddr_str), necp_get_address_string(&remote_addr, raddr_str), necp_drop_all_order, bound_interface_index, socket_policy_id, socket_skip_policy_id, (unsigned int)packet, ip->ip_len, ntohs(ip->ip_len)); \
768 }
769
770 #define NECP_DATA_TRACE_LOG_IP6(debug, caller, log_msg) \
771 if (NECP_DATA_TRACE_ON(debug)) { \
772 char laddr_str[MAX_IPv6_STR_LEN]; \
773 char raddr_str[MAX_IPv6_STR_LEN]; \
774 NECPDATATRACELOG(LOG_ERR, "DATA-TRACE <%s>: %s - fam %d proto %d port <local %d/%d remote %d/%d> <local %s remote %s> <drop-all order %d> <BoundInterface %d> <socket policy id %d socket skip id %d> <mbuf %X len %d %d %d>", \
775 caller, log_msg, local_addr.sin.sin_family, protocol, ntohs(local_addr.sin.sin_port), ntohs(local_addr.sin6.sin6_port), ntohs(remote_addr.sin.sin_port), ntohs(remote_addr.sin6.sin6_port), necp_get_address_string(&local_addr, laddr_str), necp_get_address_string(&remote_addr, raddr_str), necp_drop_all_order, bound_interface_index, socket_policy_id, socket_skip_policy_id, (unsigned int)packet, ip6->ip6_plen, ntohs(ip6->ip6_plen), packet ? packet->m_pkthdr.len : 0); \
776 }
777
778 #define NECP_DATA_TRACE_LOG_IP_RESULT(debug, caller, log_msg) \
779 if (NECP_DATA_TRACE_ON(debug)) { \
780 char laddr_str[MAX_IPv6_STR_LEN]; \
781 char raddr_str[MAX_IPv6_STR_LEN]; \
782 NECPDATATRACELOG(LOG_ERR, "DATA-TRACE <%s>: %s - fam %d proto %d port <local %d/%d remote %d/%d> <local %s remote %s> <drop-all order %d> <BoundInterface %d> (policy id=%d session_order=%d policy_order=%d result=%s)", \
783 caller, log_msg, local_addr->sin.sin_family, protocol, ntohs(local_addr->sin.sin_port), ntohs(local_addr->sin6.sin6_port), ntohs(remote_addr->sin.sin_port), ntohs(remote_addr->sin6.sin6_port), necp_get_address_string(local_addr, laddr_str), necp_get_address_string(remote_addr, raddr_str), necp_drop_all_order, bound_interface_index, policy_search_array[i]->id, policy_search_array[i]->session_order, policy_search_array[i]->order, resultString[policy_search_array[i]->result]); \
784 }
785
786 #define NECP_DATA_TRACE_LOG_POLICY_SOCKET(debug, socket, caller, log_msg) \
787 if (NECP_DATA_TRACE_POLICY_ON(debug)) { \
788 NECPDATATRACELOG(LOG_ERR, "DATA-TRACE <%s %llx>: %s - policy id=%d session_order=%d policy_order=%d result=%s (cond_policy_id %d) (skip_session_order %d skip_order %d)", \
789 caller, (uint64_t)VM_KERNEL_ADDRPERM(socket), log_msg, policy_search_array[i]->id, policy_search_array[i]->session_order, policy_search_array[i]->order, resultString[policy_search_array[i]->result], policy_search_array[i]->condition_mask & NECP_KERNEL_CONDITION_POLICY_ID ? policy_search_array[i]->cond_policy_id : 0, skip_session_order, skip_order); \
790 }
791
792 #define NECP_DATA_TRACE_LOG_POLICY_IP(debug, caller, log_msg) \
793 if (NECP_DATA_TRACE_POLICY_ON(debug)) { \
794 NECPDATATRACELOG(LOG_ERR, "DATA-TRACE <%s>: %s - policy id=%d session_order=%d policy_order=%d result=%s (cond_policy_id %d) (skip_session_order %d skip_order %d)", \
795 caller, log_msg, policy_search_array[i]->id, policy_search_array[i]->session_order, policy_search_array[i]->order, resultString[policy_search_array[i]->result], policy_search_array[i]->condition_mask & NECP_KERNEL_CONDITION_POLICY_ID ? policy_search_array[i]->cond_policy_id : 0, skip_session_order, skip_order); \
796 }
797
798 #define NECP_DATA_TRACE_LOG_CONDITION_IP3(debug, caller, negate, name, val1, val2, val3, input1, input2, input3) \
799 if (NECP_DATA_TRACE_CONDITION_ON(debug)) { \
800 NECPDATATRACELOG(LOG_ERR, "DATA-TRACE <%s>: ------ %smatching <%s> <value (%d / 0x%X) (%d / 0x%X) (%d / 0x%X) input (%d / 0x%X) (%d / 0x%X) (%d / 0x%X)>", \
801 caller, negate ? "!":"", name, val1, val1, val2, val2, val3, val3, input1, input1, input2, input2, input3, input3); \
802 }
803
804 #define NECP_DATA_TRACE_LOG_CONDITION_IP_STR3(debug, caller, negate, name, val1, val2, val3, input1, input2, input3) \
805 if (NECP_DATA_TRACE_CONDITION_ON(debug)) { \
806 NECPDATATRACELOG(LOG_ERR, "DATA-TRACE <%s>: ------ %smatching <%s> <value %s %s %s input %s %s %s>", \
807 caller, negate ? "!":"", name, val1 != NULL ? val1 : "null", val2 != NULL ? val2 : "null", val3 != NULL ? val3 : "null", \
808 input1 != NULL ? input1 : "null", input2 != NULL ? input2 : "null", input3 != NULL ? input3 : "null"); \
809 }
810
811 #define NECP_DATA_TRACE_LOG_CONDITION_IP(debug, caller, negate, name, val, input) \
812 NECP_DATA_TRACE_LOG_CONDITION_IP3(debug, caller, negate, name, val, 0, 0, input, 0, 0)
813
814 #define NECP_DATA_TRACE_LOG_CONDITION_IP_STR(debug, caller, negate, name, val, input) \
815 NECP_DATA_TRACE_LOG_CONDITION_IP_STR3(debug, caller, negate, name, val, "n/a", "n/a", input, "n/a", "n/a")
816
817
818 #define NECP_DATA_TRACE_LOG_CONDITION_SOCKET3(debug, socket, caller, negate, name, val1, val2, val3, input1, input2, input3) \
819 if (NECP_DATA_TRACE_CONDITION_ON(debug)) { \
820 NECPDATATRACELOG(LOG_ERR, "DATA-TRACE <%s %llx>: ------ %smatching <%s> <value (%d / 0x%X) (%d / 0x%X) (%d / 0x%X) input (%d / 0x%X) (%d / 0x%X) (%d / 0x%X)>", \
821 caller, (uint64_t)VM_KERNEL_ADDRPERM(socket), negate ? "!":"", name, val1, val1, val2, val2, val3, val3, input1, input1, input2, input2, input3, input3); \
822 }
823
824 #define NECP_DATA_TRACE_LOG_CONDITION_SOCKET_STR3(debug, socket, caller, negate, name, val1, val2, val3, input1, input2, input3) \
825 if (NECP_DATA_TRACE_CONDITION_ON(debug)) { \
826 NECPDATATRACELOG(LOG_ERR, "DATA-TRACE <%s %llx>: ------ %smatching <%s> <value %s %s %s input %s %s %s>", \
827 caller, (uint64_t)VM_KERNEL_ADDRPERM(socket), negate ? "!":"", name, val1 != NULL ? val1 : "null", val2 != NULL ? val2 : "null", val3 != NULL ? val3 : "null", \
828 input1 != NULL ? input1 : "null", input2 != NULL ? input2 : "null", input3 != NULL ? input3 : "null"); \
829 }
830
831 #define NECP_DATA_TRACE_LOG_CONDITION_SOCKET(debug, socket, caller, negate, name, val, input) \
832 NECP_DATA_TRACE_LOG_CONDITION_SOCKET3(debug, socket, caller, negate, name, val, 0, 0, input, 0, 0)
833
834 #define NECP_DATA_TRACE_LOG_CONDITION_SOCKET_STR(debug, socket, caller, negate, name, val, input) \
835 NECP_DATA_TRACE_LOG_CONDITION_SOCKET_STR3(debug, socket, caller, negate, name, val, "n/a", "n/a", input, "n/a", "n/a")
836
837 #define NECP_IS_INTCOPROC_ADDRESS(addrv6) \
838 (IN6_IS_ADDR_LINKLOCAL(addrv6) && \
839 addrv6->s6_addr32[2] == ntohl(0xaede48ff) && addrv6->s6_addr32[3] == ntohl(0xfe334455))
840
841 const char* resultString[NECP_POLICY_RESULT_MAX + 1] = {
842 "INVALID",
843 "PASS",
844 "SKIP",
845 "DROP",
846 "SOCKET_DIVERT",
847 "SOCKET_FILTER",
848 "IP_TUNNEL",
849 "IP_FILTER",
850 "TRIGGER",
851 "TRIGGER_IF_NEEDED",
852 "TRIGGER_SCOPED",
853 "NO_TRIGGER_SCOPED",
854 "SOCKET_SCOPED",
855 "ROUTE_RULES",
856 "USE_NETAGENT",
857 "NETAGENT_SCOPED",
858 "SCOPED_DIRECT",
859 "ALLOW_UNENTITLED",
860 "REMOVE_NETAGENT",
861 "REMOVE_NETAGENT_TYPE"
862 };
863
864
865 #define NECP_DDE_ENTITLEMENT "com.apple.developer.media-device-discovery-extension"
866
867 static int necp_drop_loopback_count = 0;
868 SYSCTL_INT(_net_necp, OID_AUTO, drop_loopback_count, CTLFLAG_LOCKED | CTLFLAG_RD, &necp_drop_loopback_count, 0, "");
869
870 static bool
necp_address_is_local_interface_address(union necp_sockaddr_union * addr)871 necp_address_is_local_interface_address(union necp_sockaddr_union *addr)
872 {
873 bool is_interface_address = false;
874 if (addr == NULL) {
875 return false;
876 }
877
878 // Clean up the address before comparison with interface addresses
879 // Transform remote_addr into the ifaddr form
880 // IPv6 Scope IDs are always embedded in the ifaddr list
881 struct sockaddr_storage remote_address_sanitized;
882 u_int ifscope = IFSCOPE_NONE;
883 (void)sa_copy(SA(addr), &remote_address_sanitized, &ifscope);
884 SIN(&remote_address_sanitized)->sin_port = 0;
885 if (remote_address_sanitized.ss_family == AF_INET6) {
886 if (in6_embedded_scope || !IN6_IS_SCOPE_EMBED(&SIN6(&remote_address_sanitized)->sin6_addr)) {
887 SIN6(&remote_address_sanitized)->sin6_scope_id = 0;
888 }
889 }
890
891 // Check if remote address is an interface address
892 struct ifaddr *ifa = ifa_ifwithaddr(SA(&remote_address_sanitized));
893 if (ifa != NULL && ifa->ifa_ifp != NULL) {
894 is_interface_address = true;
895 }
896 if (ifa != NULL) {
897 ifaddr_release(ifa);
898 ifa = NULL;
899 }
900
901 return is_interface_address;
902 }
903
904 #define IS_NECP_DEST_IN_LOCAL_NETWORKS(rt, addr, include_local_addresses) \
905 ((rt) != NULL && !((rt)->rt_flags & RTF_GATEWAY) && (include_local_addresses || !((rt)->rt_flags & RTF_LOCAL)) && ((rt)->rt_ifa && (rt)->rt_ifa->ifa_ifp && !((rt)->rt_ifa->ifa_ifp->if_flags & IFF_POINTOPOINT) && !((rt)->rt_ifa->ifa_ifp->if_eflags & IFEF_DIRECTLINK)) && (include_local_addresses || addr == NULL || !necp_address_is_local_interface_address(addr)))
906
907 // Session order allocation
908 static u_int32_t
necp_allocate_new_session_order(u_int32_t priority,u_int32_t control_unit)909 necp_allocate_new_session_order(u_int32_t priority, u_int32_t control_unit)
910 {
911 u_int32_t new_order = 0;
912
913 // For now, just allocate 1000 orders for each priority
914 if (priority == NECP_SESSION_PRIORITY_UNKNOWN || priority > NECP_SESSION_NUM_PRIORITIES) {
915 priority = NECP_SESSION_PRIORITY_DEFAULT;
916 }
917
918 // Use the control unit to decide the offset into the priority list
919 new_order = (control_unit) + ((priority - 1) * 1000);
920
921 return new_order;
922 }
923
924 static inline u_int32_t
necp_get_first_order_for_priority(u_int32_t priority)925 necp_get_first_order_for_priority(u_int32_t priority)
926 {
927 if (priority == 0) {
928 return 0;
929 }
930 return ((priority - 1) * 1000) + 1;
931 }
932
933 // Sysctl handler
934 static int
935 sysctl_handle_necp_level SYSCTL_HANDLER_ARGS
936 {
937 #pragma unused(arg1, arg2)
938 int error = sysctl_handle_int(oidp, oidp->oid_arg1, oidp->oid_arg2, req);
939 necp_drop_all_order = necp_get_first_order_for_priority(necp_drop_all_level);
940 return error;
941 }
942
943 static int
944 sysctl_handle_necp_unentitled_level SYSCTL_HANDLER_ARGS
945 {
946 #pragma unused(arg1, arg2)
947 int error = sysctl_handle_int(oidp, oidp->oid_arg1, oidp->oid_arg2, req);
948 necp_drop_unentitled_order = necp_get_first_order_for_priority(necp_drop_unentitled_level);
949 return error;
950 }
951
952 // Use a macro here to avoid computing the kauth_cred_t when necp_drop_unentitled_level is 0
953 static inline u_int32_t
_necp_process_drop_order_inner(kauth_cred_t cred)954 _necp_process_drop_order_inner(kauth_cred_t cred)
955 {
956 if (priv_check_cred(cred, PRIV_NET_PRIVILEGED_CLIENT_ACCESS, 0) != 0 &&
957 priv_check_cred(cred, PRIV_NET_PRIVILEGED_SERVER_ACCESS, 0) != 0) {
958 return necp_drop_unentitled_order;
959 } else {
960 return 0;
961 }
962 }
963
964 #define necp_process_drop_order(_cred) (necp_drop_unentitled_order != 0 ? _necp_process_drop_order_inner(_cred) : necp_drop_unentitled_order)
965 #pragma GCC poison _necp_process_drop_order_inner
966
967 static int
968 sysctl_handle_necp_management_level SYSCTL_HANDLER_ARGS
969 {
970 #pragma unused(arg1, arg2)
971 int error = sysctl_handle_int(oidp, oidp->oid_arg1, oidp->oid_arg2, req);
972 necp_drop_management_order = necp_get_first_order_for_priority(necp_drop_management_level);
973 return error;
974 }
975
976 static inline bool
necp_socket_is_connected(struct inpcb * inp)977 necp_socket_is_connected(struct inpcb *inp)
978 {
979 return inp->inp_socket->so_state & (SS_ISCONNECTING | SS_ISCONNECTED | SS_ISDISCONNECTING);
980 }
981
982
983 // Session fd
984
985 static int necp_session_op_close(struct fileglob *, vfs_context_t);
986
987 static const struct fileops necp_session_fd_ops = {
988 .fo_type = DTYPE_NETPOLICY,
989 .fo_read = fo_no_read,
990 .fo_write = fo_no_write,
991 .fo_ioctl = fo_no_ioctl,
992 .fo_select = fo_no_select,
993 .fo_close = necp_session_op_close,
994 .fo_drain = fo_no_drain,
995 .fo_kqfilter = fo_no_kqfilter,
996 };
997
998 static inline int
necp_is_platform_binary(proc_t proc)999 necp_is_platform_binary(proc_t proc)
1000 {
1001 return (proc != NULL) ? (csproc_get_platform_binary(proc) && cs_valid(proc)) : 0;
1002 }
1003
1004 static inline necp_drop_all_bypass_check_result_t
necp_check_drop_all_bypass_result(proc_t proc)1005 necp_check_drop_all_bypass_result(proc_t proc)
1006 {
1007 if (proc == NULL) {
1008 proc = current_proc();
1009 if (proc == NULL) {
1010 return NECP_DROP_ALL_BYPASS_CHECK_RESULT_FALSE;
1011 }
1012 }
1013
1014 #if defined(XNU_TARGET_OS_OSX)
1015 const char *signing_id __null_terminated = NULL;
1016 const bool isConfigd = (necp_is_platform_binary(proc) &&
1017 (signing_id = cs_identity_get(proc)) &&
1018 (strlen(signing_id) == SIGNING_ID_CONFIGD_LEN) &&
1019 (strcmp(signing_id, SIGNING_ID_CONFIGD) == 0));
1020 if (isConfigd) {
1021 return NECP_DROP_ALL_BYPASS_CHECK_RESULT_TRUE;
1022 }
1023 #endif
1024
1025 const task_t __single task = proc_task(proc);
1026 if (task == NULL || !IOTaskHasEntitlement(task, "com.apple.private.necp.drop_all_bypass")) {
1027 return NECP_DROP_ALL_BYPASS_CHECK_RESULT_FALSE;
1028 } else {
1029 return NECP_DROP_ALL_BYPASS_CHECK_RESULT_TRUE;
1030 }
1031 }
1032
1033 int
necp_session_open(struct proc * p,struct necp_session_open_args * uap,int * retval)1034 necp_session_open(struct proc *p, struct necp_session_open_args *uap, int *retval)
1035 {
1036 #pragma unused(uap)
1037 int error = 0;
1038 struct necp_session *session = NULL;
1039 struct fileproc * __single fp = NULL;
1040 int fd = -1;
1041 uid_t uid = kauth_cred_getuid(kauth_cred_get());
1042
1043 if (!necp_is_platform_binary(p)) {
1044 NECPLOG0(LOG_ERR, "Only platform-signed binaries can open NECP sessions");
1045 error = EACCES;
1046 goto done;
1047 }
1048
1049 if (uid != 0 && priv_check_cred(kauth_cred_get(), PRIV_NET_PRIVILEGED_NECP_POLICIES, 0) != 0) {
1050 NECPLOG0(LOG_ERR, "Process does not hold necessary entitlement to open NECP session");
1051 error = EACCES;
1052 goto done;
1053 }
1054
1055 error = falloc(p, &fp, &fd);
1056 if (error != 0) {
1057 goto done;
1058 }
1059
1060 session = necp_create_session();
1061 if (session == NULL) {
1062 error = ENOMEM;
1063 goto done;
1064 }
1065
1066 fp->fp_flags |= FP_CLOEXEC | FP_CLOFORK;
1067 fp->fp_glob->fg_flag = 0;
1068 fp->fp_glob->fg_ops = &necp_session_fd_ops;
1069 fp_set_data(fp, session);
1070
1071 proc_fdlock(p);
1072 procfdtbl_releasefd(p, fd, NULL);
1073 fp_drop(p, fd, fp, 1);
1074 proc_fdunlock(p);
1075
1076 *retval = fd;
1077 done:
1078 if (error != 0) {
1079 if (fp != NULL) {
1080 fp_free(p, fd, fp);
1081 fp = NULL;
1082 }
1083 }
1084
1085 return error;
1086 }
1087
1088 static int
necp_session_op_close(struct fileglob * fg,vfs_context_t ctx)1089 necp_session_op_close(struct fileglob *fg, vfs_context_t ctx)
1090 {
1091 #pragma unused(ctx)
1092 struct necp_session *session = (struct necp_session *)fg_get_data(fg);
1093 fg_set_data(fg, NULL);
1094
1095 if (session != NULL) {
1096 necp_policy_mark_all_for_deletion(session);
1097 necp_policy_apply_all(session);
1098 necp_delete_session(session);
1099 return 0;
1100 } else {
1101 return ENOENT;
1102 }
1103 }
1104
1105 static int
necp_session_find_from_fd(struct proc * p,int fd,struct fileproc ** fpp,struct necp_session ** session)1106 necp_session_find_from_fd(struct proc *p, int fd,
1107 struct fileproc **fpp, struct necp_session **session)
1108 {
1109 struct fileproc * __single fp = NULL;
1110 int error = fp_get_ftype(p, fd, DTYPE_NETPOLICY, ENODEV, &fp);
1111
1112 if (error == 0) {
1113 *fpp = fp;
1114 *session = (struct necp_session *)fp_get_data(fp);
1115 if ((*session)->necp_fd_type != necp_fd_type_session) {
1116 // Not a client fd, ignore
1117 fp_drop(p, fd, fp, 0);
1118 error = EINVAL;
1119 }
1120 }
1121
1122 return error;
1123 }
1124
1125 static int
necp_session_add_policy(struct necp_session * session,struct necp_session_action_args * uap,int * retval)1126 necp_session_add_policy(struct necp_session *session, struct necp_session_action_args *uap, int *retval)
1127 {
1128 int error = 0;
1129 u_int8_t * __indexable tlv_buffer = NULL;
1130
1131 if (uap->in_buffer_length == 0 || uap->in_buffer_length > NECP_MAX_POLICY_SIZE || uap->in_buffer == 0) {
1132 NECPLOG(LOG_ERR, "necp_session_add_policy invalid input (%zu)", (size_t)uap->in_buffer_length);
1133 error = EINVAL;
1134 goto done;
1135 }
1136
1137 if (uap->out_buffer_length < sizeof(necp_policy_id) || uap->out_buffer == 0) {
1138 NECPLOG(LOG_ERR, "necp_session_add_policy invalid output buffer (%zu)", (size_t)uap->out_buffer_length);
1139 error = EINVAL;
1140 goto done;
1141 }
1142
1143 if ((tlv_buffer = (u_int8_t *)kalloc_data(uap->in_buffer_length, Z_WAITOK | Z_ZERO)) == NULL) {
1144 error = ENOMEM;
1145 goto done;
1146 }
1147
1148 error = copyin(uap->in_buffer, tlv_buffer, uap->in_buffer_length);
1149 if (error != 0) {
1150 NECPLOG(LOG_ERR, "necp_session_add_policy tlv copyin error (%d)", error);
1151 goto done;
1152 }
1153
1154 necp_policy_id new_policy_id = necp_handle_policy_add(session, tlv_buffer, uap->in_buffer_length, 0, &error);
1155 if (error != 0) {
1156 NECPLOG(LOG_ERR, "necp_session_add_policy failed to add policy (%d)", error);
1157 goto done;
1158 }
1159
1160 error = copyout(&new_policy_id, uap->out_buffer, sizeof(new_policy_id));
1161 if (error != 0) {
1162 NECPLOG(LOG_ERR, "necp_session_add_policy policy_id copyout error (%d)", error);
1163 goto done;
1164 }
1165
1166 done:
1167 if (tlv_buffer != NULL) {
1168 kfree_data(tlv_buffer, uap->in_buffer_length);
1169 tlv_buffer = NULL;
1170 }
1171 *retval = error;
1172
1173 return error;
1174 }
1175
1176 static int
necp_session_get_policy(struct necp_session * session,struct necp_session_action_args * uap,int * retval)1177 necp_session_get_policy(struct necp_session *session, struct necp_session_action_args *uap, int *retval)
1178 {
1179 int error = 0;
1180 u_int8_t * __indexable response = NULL;
1181
1182 if (uap->in_buffer_length < sizeof(necp_policy_id) || uap->in_buffer == 0) {
1183 NECPLOG(LOG_ERR, "necp_session_get_policy invalid input (%zu)", (size_t)uap->in_buffer_length);
1184 error = EINVAL;
1185 goto done;
1186 }
1187
1188 necp_policy_id policy_id = 0;
1189 error = copyin(uap->in_buffer, &policy_id, sizeof(policy_id));
1190 if (error != 0) {
1191 NECPLOG(LOG_ERR, "necp_session_get_policy policy_id copyin error (%d)", error);
1192 goto done;
1193 }
1194
1195 struct necp_session_policy *policy = necp_policy_find(session, policy_id);
1196 if (policy == NULL || policy->pending_deletion) {
1197 NECPLOG(LOG_ERR, "Failed to find policy with id %d", policy_id);
1198 error = ENOENT;
1199 goto done;
1200 }
1201
1202 u_int32_t order_tlv_size = sizeof(u_int8_t) + sizeof(u_int32_t) + sizeof(necp_policy_order);
1203 u_int32_t result_tlv_size = (policy->result_size ? (sizeof(u_int8_t) + sizeof(u_int32_t) + policy->result_size) : 0);
1204 u_int32_t response_size = order_tlv_size + result_tlv_size + policy->conditions_size;
1205
1206 if (uap->out_buffer_length < response_size || uap->out_buffer == 0) {
1207 NECPLOG(LOG_ERR, "necp_session_get_policy buffer not large enough (%zu < %u)", (size_t)uap->out_buffer_length, response_size);
1208 error = EINVAL;
1209 goto done;
1210 }
1211
1212 if (response_size > NECP_MAX_POLICY_SIZE) {
1213 NECPLOG(LOG_ERR, "necp_session_get_policy size too large to copy (%u)", response_size);
1214 error = EINVAL;
1215 goto done;
1216 }
1217
1218 response = (u_int8_t *)kalloc_data(response_size, Z_WAITOK | Z_ZERO);
1219 if (response == NULL) {
1220 error = ENOMEM;
1221 goto done;
1222 }
1223
1224 u_int8_t *cursor = response;
1225 cursor = necp_buffer_write_tlv(cursor, NECP_TLV_POLICY_ORDER, sizeof(necp_policy_order), &policy->order, response, response_size);
1226 if (result_tlv_size) {
1227 cursor = necp_buffer_write_tlv(cursor, NECP_TLV_POLICY_RESULT, policy->result_size, (void *)&policy->result, response, response_size);
1228 }
1229 if (policy->conditions_size) {
1230 memcpy(response + (cursor - response), policy->conditions, policy->conditions_size);
1231 }
1232
1233 error = copyout(response, uap->out_buffer, response_size);
1234 if (error != 0) {
1235 NECPLOG(LOG_ERR, "necp_session_get_policy TLV copyout error (%d)", error);
1236 goto done;
1237 }
1238
1239 done:
1240 if (response != NULL) {
1241 kfree_data(response, response_size);
1242 response = NULL;
1243 }
1244 *retval = error;
1245
1246 return error;
1247 }
1248
1249 static int
necp_session_delete_policy(struct necp_session * session,struct necp_session_action_args * uap,int * retval)1250 necp_session_delete_policy(struct necp_session *session, struct necp_session_action_args *uap, int *retval)
1251 {
1252 int error = 0;
1253
1254 if (uap->in_buffer_length < sizeof(necp_policy_id) || uap->in_buffer == 0) {
1255 NECPLOG(LOG_ERR, "necp_session_delete_policy invalid input (%zu)", (size_t)uap->in_buffer_length);
1256 error = EINVAL;
1257 goto done;
1258 }
1259
1260 necp_policy_id delete_policy_id = 0;
1261 error = copyin(uap->in_buffer, &delete_policy_id, sizeof(delete_policy_id));
1262 if (error != 0) {
1263 NECPLOG(LOG_ERR, "necp_session_delete_policy policy_id copyin error (%d)", error);
1264 goto done;
1265 }
1266
1267 struct necp_session_policy *policy = necp_policy_find(session, delete_policy_id);
1268 if (policy == NULL || policy->pending_deletion) {
1269 NECPLOG(LOG_ERR, "necp_session_delete_policy failed to find policy with id %u", delete_policy_id);
1270 error = ENOENT;
1271 goto done;
1272 }
1273
1274 necp_policy_mark_for_deletion(session, policy);
1275 done:
1276 *retval = error;
1277 return error;
1278 }
1279
1280 static int
necp_session_apply_all(struct necp_session * session,struct necp_session_action_args * uap,int * retval)1281 necp_session_apply_all(struct necp_session *session, struct necp_session_action_args *uap, int *retval)
1282 {
1283 #pragma unused(uap)
1284 necp_policy_apply_all(session);
1285 *retval = 0;
1286 return 0;
1287 }
1288
1289 static int
necp_session_list_all(struct necp_session * session,struct necp_session_action_args * uap,int * retval)1290 necp_session_list_all(struct necp_session *session, struct necp_session_action_args *uap, int *retval)
1291 {
1292 u_int32_t tlv_size = (sizeof(u_int8_t) + sizeof(u_int32_t) + sizeof(necp_policy_id));
1293 u_int32_t response_size = 0;
1294 u_int8_t * __indexable response = NULL;
1295 int num_policies = 0;
1296 int cur_policy_index = 0;
1297 int error = 0;
1298 struct necp_session_policy *policy;
1299
1300 LIST_FOREACH(policy, &session->policies, chain) {
1301 if (!policy->pending_deletion) {
1302 num_policies++;
1303 }
1304 }
1305
1306 if (num_policies > NECP_MAX_POLICY_LIST_COUNT) {
1307 NECPLOG(LOG_ERR, "necp_session_list_all size too large to copy (%u policies)", num_policies);
1308 error = EINVAL;
1309 goto done;
1310 }
1311
1312 response_size = num_policies * tlv_size;
1313 if (uap->out_buffer_length < response_size || uap->out_buffer == 0) {
1314 NECPLOG(LOG_ERR, "necp_session_list_all buffer not large enough (%zu < %u)", (size_t)uap->out_buffer_length, response_size);
1315 error = EINVAL;
1316 goto done;
1317 }
1318
1319 // Create a response with one Policy ID TLV for each policy
1320 response = (u_int8_t *)kalloc_data(response_size, Z_WAITOK | Z_ZERO);
1321 if (response == NULL) {
1322 error = ENOMEM;
1323 goto done;
1324 }
1325
1326 u_int8_t *cursor = response;
1327 LIST_FOREACH(policy, &session->policies, chain) {
1328 if (!policy->pending_deletion && cur_policy_index < num_policies) {
1329 cursor = necp_buffer_write_tlv(cursor, NECP_TLV_POLICY_ID, sizeof(u_int32_t), &policy->local_id, response, response_size);
1330 cur_policy_index++;
1331 }
1332 }
1333
1334 error = copyout(response, uap->out_buffer, response_size);
1335 if (error != 0) {
1336 NECPLOG(LOG_ERR, "necp_session_list_all TLV copyout error (%d)", error);
1337 goto done;
1338 }
1339
1340 done:
1341 if (response != NULL) {
1342 kfree_data(response, response_size);
1343 response = NULL;
1344 }
1345 *retval = error;
1346
1347 return error;
1348 }
1349
1350
1351 static int
necp_session_delete_all(struct necp_session * session,struct necp_session_action_args * uap,int * retval)1352 necp_session_delete_all(struct necp_session *session, struct necp_session_action_args *uap, int *retval)
1353 {
1354 #pragma unused(uap)
1355 necp_policy_mark_all_for_deletion(session);
1356 *retval = 0;
1357 return 0;
1358 }
1359
1360 static int
necp_session_set_session_priority(struct necp_session * session,struct necp_session_action_args * uap,int * retval)1361 necp_session_set_session_priority(struct necp_session *session, struct necp_session_action_args *uap, int *retval)
1362 {
1363 int error = 0;
1364 struct necp_session_policy *policy = NULL;
1365 struct necp_session_policy *temp_policy = NULL;
1366
1367 if (uap->in_buffer_length < sizeof(necp_session_priority) || uap->in_buffer == 0) {
1368 NECPLOG(LOG_ERR, "necp_session_set_session_priority invalid input (%zu)", (size_t)uap->in_buffer_length);
1369 error = EINVAL;
1370 goto done;
1371 }
1372
1373 necp_session_priority requested_session_priority = 0;
1374 error = copyin(uap->in_buffer, &requested_session_priority, sizeof(requested_session_priority));
1375 if (error != 0) {
1376 NECPLOG(LOG_ERR, "necp_session_set_session_priority priority copyin error (%d)", error);
1377 goto done;
1378 }
1379
1380 // Enforce special session priorities with entitlements
1381 if (requested_session_priority == NECP_SESSION_PRIORITY_CONTROL ||
1382 requested_session_priority == NECP_SESSION_PRIORITY_CONTROL_1 ||
1383 requested_session_priority == NECP_SESSION_PRIORITY_PRIVILEGED_TUNNEL ||
1384 requested_session_priority == NECP_SESSION_PRIORITY_HIGH_RESTRICTED) {
1385 errno_t cred_result = priv_check_cred(kauth_cred_get(), PRIV_NET_PRIVILEGED_NECP_POLICIES, 0);
1386 if (cred_result != 0) {
1387 NECPLOG(LOG_ERR, "Session does not hold necessary entitlement to claim priority level %d", requested_session_priority);
1388 error = EPERM;
1389 goto done;
1390 }
1391 }
1392
1393 if (session->session_priority != requested_session_priority) {
1394 session->session_priority = requested_session_priority;
1395 session->session_order = necp_allocate_new_session_order(session->session_priority, session->control_unit);
1396 session->dirty = TRUE;
1397
1398 // Mark all policies as needing updates
1399 LIST_FOREACH_SAFE(policy, &session->policies, chain, temp_policy) {
1400 policy->pending_update = TRUE;
1401 }
1402 }
1403
1404 done:
1405 *retval = error;
1406 return error;
1407 }
1408
1409 static int
necp_session_lock_to_process(struct necp_session * session,struct necp_session_action_args * uap,int * retval)1410 necp_session_lock_to_process(struct necp_session *session, struct necp_session_action_args *uap, int *retval)
1411 {
1412 #pragma unused(uap)
1413 session->proc_locked = TRUE;
1414 *retval = 0;
1415 return 0;
1416 }
1417
1418 static int
necp_session_dump_all(struct necp_session * session,struct necp_session_action_args * uap,int * retval)1419 necp_session_dump_all(struct necp_session *session, struct necp_session_action_args *uap, int *retval)
1420 {
1421 #pragma unused(session)
1422 int error = 0;
1423
1424 if (uap->out_buffer_length == 0 || uap->out_buffer == 0) {
1425 NECPLOG(LOG_ERR, "necp_session_dump_all invalid output buffer (%zu)", (size_t)uap->out_buffer_length);
1426 error = EINVAL;
1427 goto done;
1428 }
1429
1430 error = necp_handle_policy_dump_all(uap->out_buffer, uap->out_buffer_length);
1431 done:
1432 *retval = error;
1433 return error;
1434 }
1435
1436 static int
necp_session_add_domain_filter(struct necp_session * session,struct necp_session_action_args * uap,int * retval)1437 necp_session_add_domain_filter(struct necp_session *session, struct necp_session_action_args *uap, int *retval)
1438 {
1439 int error = 0;
1440 struct net_bloom_filter *bloom_filter = NULL;
1441 const size_t in_buffer_length = (size_t)uap->in_buffer_length;
1442 const size_t out_buffer_length = (size_t)uap->out_buffer_length;
1443
1444 if (in_buffer_length < sizeof(struct net_bloom_filter) ||
1445 in_buffer_length > NECP_MAX_DOMAIN_FILTER_SIZE ||
1446 uap->in_buffer == 0) {
1447 NECPLOG(LOG_ERR, "necp_session_add_domain_filter invalid input (%zu)", (size_t)in_buffer_length);
1448 error = EINVAL;
1449 goto done;
1450 }
1451
1452 if (out_buffer_length < sizeof(u_int32_t) || uap->out_buffer == 0) {
1453 NECPLOG(LOG_ERR, "necp_session_add_domain_filter buffer not large enough (%zu)", (size_t)out_buffer_length);
1454 error = EINVAL;
1455 goto done;
1456 }
1457
1458 bloom_filter = (struct net_bloom_filter *)kalloc_data(in_buffer_length, Z_WAITOK | Z_ZERO);
1459 if (bloom_filter == NULL) {
1460 NECPLOG(LOG_ERR, "necp_session_add_domain_filter allocate filter error (%zu)", in_buffer_length);
1461 error = ENOMEM;
1462 goto done;
1463 }
1464
1465 error = copyin(uap->in_buffer, bloom_filter, in_buffer_length);
1466 if (error != 0) {
1467 NECPLOG(LOG_ERR, "necp_session_add_domain_filter filter copyin error (%d)", error);
1468 goto done;
1469 }
1470
1471 size_t expected_filter_size = net_bloom_filter_get_size(bloom_filter->b_table_num_bits);
1472 if (expected_filter_size != in_buffer_length) {
1473 NECPLOG(LOG_ERR, "necp_session_add_domain_filter size mismatch (%zu != %zu)", expected_filter_size, in_buffer_length);
1474 error = EINVAL;
1475 goto done;
1476 }
1477
1478 lck_rw_lock_exclusive(&necp_kernel_policy_lock);
1479 u_int32_t filter_id = necp_create_domain_filter(&necp_global_domain_filter_list, &session->domain_filters, bloom_filter);
1480 lck_rw_done(&necp_kernel_policy_lock);
1481
1482 if (filter_id == 0) {
1483 error = ENOMEM;
1484 } else {
1485 // Bloom filter is taken over by the new filter entry, clear the local pointer
1486 bloom_filter = NULL;
1487
1488 error = copyout(&filter_id, uap->out_buffer, sizeof(filter_id));
1489 if (error != 0) {
1490 NECPLOG(LOG_ERR, "necp_session_add_domain_filter ID copyout error (%d)", error);
1491 goto done;
1492 }
1493 }
1494
1495 done:
1496 *retval = error;
1497 if (error != 0 && bloom_filter != NULL) {
1498 uint8_t * __single filter_buffer = (uint8_t *)bloom_filter;
1499 kfree_data(filter_buffer, in_buffer_length);
1500 bloom_filter = NULL;
1501 }
1502 return error;
1503 }
1504
1505 static int
necp_session_remove_domain_filter(struct necp_session * session,struct necp_session_action_args * uap,int * retval)1506 necp_session_remove_domain_filter(struct necp_session *session, struct necp_session_action_args *uap, int *retval)
1507 {
1508 int error = 0;
1509
1510 const size_t in_buffer_length = (size_t)uap->in_buffer_length;
1511 if (in_buffer_length < sizeof(u_int32_t) || uap->in_buffer == 0) {
1512 NECPLOG(LOG_ERR, "necp_session_remove_domain_filter invalid input (%zu)", (size_t)in_buffer_length);
1513 error = EINVAL;
1514 goto done;
1515 }
1516
1517 u_int32_t filter_id;
1518 error = copyin(uap->in_buffer, &filter_id, sizeof(filter_id));
1519 if (error != 0) {
1520 NECPLOG(LOG_ERR, "necp_session_remove_domain_filter uuid copyin error (%d)", error);
1521 goto done;
1522 }
1523
1524 lck_rw_lock_exclusive(&necp_kernel_policy_lock);
1525 bool removed = necp_remove_domain_filter(&necp_global_domain_filter_list, &session->domain_filters, filter_id);
1526 if (!removed) {
1527 error = ENOENT;
1528 }
1529 lck_rw_done(&necp_kernel_policy_lock);
1530
1531 done:
1532 *retval = error;
1533 return error;
1534 }
1535
1536 static int
necp_session_remove_all_domain_filters(struct necp_session * session,struct necp_session_action_args * uap,int * retval)1537 necp_session_remove_all_domain_filters(struct necp_session *session, struct necp_session_action_args *uap, int *retval)
1538 {
1539 #pragma unused(uap)
1540
1541 struct necp_domain_filter * __single filter = NULL;
1542 struct necp_domain_filter *temp_filter = NULL;
1543 LIST_FOREACH_SAFE(filter, &session->domain_filters, owner_chain, temp_filter) {
1544 if (os_ref_release_locked(&filter->refcount) == 0) {
1545 lck_rw_lock_exclusive(&necp_kernel_policy_lock);
1546 LIST_REMOVE(filter, chain);
1547 lck_rw_done(&necp_kernel_policy_lock);
1548 LIST_REMOVE(filter, owner_chain);
1549 net_bloom_filter_destroy(filter->filter);
1550 kfree_type(struct necp_domain_filter, filter);
1551 }
1552 }
1553
1554 *retval = 0;
1555 return 0;
1556 }
1557
1558 static int
necp_session_add_domain_trie(struct necp_session * session,struct necp_session_action_args * uap,int * retval)1559 necp_session_add_domain_trie(struct necp_session *session, struct necp_session_action_args *uap, int *retval)
1560 {
1561 int error = 0;
1562
1563 struct necp_domain_trie_request *domain_trie_request = NULL;
1564 const size_t in_buffer_length = (size_t)uap->in_buffer_length;
1565 const size_t out_buffer_length = (size_t)uap->out_buffer_length;
1566
1567 if (in_buffer_length < sizeof(struct necp_domain_trie_request) ||
1568 in_buffer_length > NECP_MAX_DOMAIN_TRIE_SIZE ||
1569 uap->in_buffer == 0) {
1570 NECPLOG(LOG_ERR, "necp_session_add_domain_trie invalid input (%zu)", (size_t)in_buffer_length);
1571 error = EINVAL;
1572 goto done;
1573 }
1574
1575 if (out_buffer_length < sizeof(u_int32_t) || uap->out_buffer == 0) {
1576 NECPLOG(LOG_ERR, "necp_session_add_domain_trie buffer not large enough (%zu)", (size_t)out_buffer_length);
1577 error = EINVAL;
1578 goto done;
1579 }
1580
1581 domain_trie_request = (struct necp_domain_trie_request *)kalloc_data(in_buffer_length, Z_WAITOK | Z_ZERO);
1582 if (domain_trie_request == NULL) {
1583 NECPLOG(LOG_ERR, "necp_session_add_domain_trie allocate trie request error (%zu)", in_buffer_length);
1584 error = ENOMEM;
1585 goto done;
1586 }
1587
1588 error = copyin(uap->in_buffer, domain_trie_request, in_buffer_length);
1589 if (error != 0) {
1590 NECPLOG(LOG_ERR, "necp_session_add_domain_trie filter copyin error (%d)", error);
1591 goto done;
1592 }
1593
1594 NECPLOG(LOG_INFO, "necp_session_add_domain_trie received %zu bytes <trie mem size %d>", in_buffer_length, domain_trie_request->total_mem_size);
1595
1596 lck_rw_lock_exclusive(&necp_kernel_policy_lock);
1597 u_int32_t id = necp_create_domain_trie(&necp_global_domain_trie_list, &session->domain_tries, domain_trie_request, in_buffer_length);
1598 lck_rw_done(&necp_kernel_policy_lock);
1599
1600 if (id == 0) {
1601 error = ENOMEM;
1602 } else {
1603 error = copyout(&id, uap->out_buffer, sizeof(id));
1604 if (error != 0) {
1605 NECPLOG(LOG_ERR, "necp_session_add_domain_trie ID copyout error (%d)", error);
1606 goto done;
1607 }
1608 }
1609
1610 done:
1611 *retval = error;
1612 if (error != 0 && domain_trie_request != NULL) {
1613 uint8_t * __single domain_buffer = (uint8_t *)domain_trie_request;
1614 kfree_data(domain_buffer, in_buffer_length);
1615 domain_trie_request = NULL;
1616 }
1617 return error;
1618 }
1619
1620 static int
necp_session_remove_domain_trie(struct necp_session * session,struct necp_session_action_args * uap,int * retval)1621 necp_session_remove_domain_trie(struct necp_session *session, struct necp_session_action_args *uap, int *retval)
1622 {
1623 int error = 0;
1624
1625 const size_t in_buffer_length = (size_t)uap->in_buffer_length;
1626 if (in_buffer_length < sizeof(u_int32_t) || uap->in_buffer == 0) {
1627 NECPLOG(LOG_ERR, "necp_session_remove_domain_trie invalid input (%zu)", (size_t)in_buffer_length);
1628 error = EINVAL;
1629 goto done;
1630 }
1631
1632 u_int32_t id;
1633 error = copyin(uap->in_buffer, &id, sizeof(id));
1634 if (error != 0) {
1635 NECPLOG(LOG_ERR, "necp_session_remove_domain_trie uuid copyin error (%d)", error);
1636 goto done;
1637 }
1638
1639 lck_rw_lock_exclusive(&necp_kernel_policy_lock);
1640 bool removed = necp_remove_domain_trie(&necp_global_domain_trie_list, &session->domain_tries, id);
1641 if (!removed) {
1642 error = ENOENT;
1643 }
1644 lck_rw_done(&necp_kernel_policy_lock);
1645
1646 done:
1647 *retval = error;
1648 return error;
1649 }
1650
1651 static int
necp_session_remove_all_domain_tries(struct necp_session * session,struct necp_session_action_args * uap,int * retval)1652 necp_session_remove_all_domain_tries(struct necp_session *session, struct necp_session_action_args *uap, int *retval)
1653 {
1654 #pragma unused(uap)
1655 struct necp_domain_trie* __single trie = NULL;
1656 struct necp_domain_trie* __single temp_trie = NULL;
1657 LIST_FOREACH_SAFE(trie, &session->domain_tries, owner_chain, temp_trie) {
1658 if (os_ref_release_locked(&trie->refcount) == 0) {
1659 lck_rw_lock_exclusive(&necp_kernel_policy_lock);
1660 LIST_REMOVE(trie, chain);
1661 lck_rw_done(&necp_kernel_policy_lock);
1662 LIST_REMOVE(trie, owner_chain);
1663 necp_free_domain_trie(trie);
1664 }
1665 }
1666 *retval = 0;
1667 return 0;
1668 }
1669
1670 static int
necp_session_trie_dump_all(struct necp_session * session,struct necp_session_action_args * uap,int * retval)1671 necp_session_trie_dump_all(struct necp_session *session, struct necp_session_action_args *uap, int *retval)
1672 {
1673 #pragma unused(session)
1674
1675 int error = 0;
1676
1677 uint8_t request_buffer[2000] = { 0 };
1678 uint8_t *ptr = NULL;
1679 uint32_t count = 0;
1680 int output_length = 0;
1681
1682 lck_rw_lock_shared(&necp_kernel_policy_lock);
1683 count = necp_trie_count;
1684 lck_rw_done(&necp_kernel_policy_lock);
1685
1686 if (count == 0) {
1687 error = ENOENT;
1688 goto done;
1689 }
1690
1691 output_length = sizeof(count) + (count * sizeof(struct necp_domain_trie_request)); // first byte contains count
1692 if (output_length > uap->out_buffer_length) {
1693 NECPLOG(LOG_ERR, "necp_session_trie_dump_all out_buffer not large enough for %zu", (size_t)output_length);
1694 error = EINVAL;
1695 goto done;
1696 }
1697 if (output_length > sizeof(request_buffer)) {
1698 NECPLOG(LOG_ERR, "necp_session_trie_dump_all temporary buffer not large enough for %zu", (size_t)output_length);
1699 error = EINVAL;
1700 goto done;
1701 }
1702
1703 memcpy(request_buffer, (u_int8_t *)&count, sizeof(count));
1704 ptr = request_buffer + sizeof(count);
1705
1706 lck_rw_lock_shared(&necp_kernel_policy_lock);
1707 struct necp_domain_trie* __single trie = NULL;
1708 LIST_FOREACH(trie, &necp_global_domain_trie_list, chain) {
1709 if (trie->trie_request != NULL) {
1710 memcpy((u_int8_t *)ptr, (u_int8_t *)trie->trie_request, sizeof(struct necp_domain_trie_request));
1711 ptr += sizeof(struct necp_domain_trie_request);
1712 }
1713 }
1714 lck_rw_done(&necp_kernel_policy_lock);
1715
1716 error = copyout(request_buffer, uap->out_buffer, output_length);
1717
1718 done:
1719 *retval = error;
1720 return error;
1721 }
1722
1723 int
necp_session_action(struct proc * p,struct necp_session_action_args * uap,int * retval)1724 necp_session_action(struct proc *p, struct necp_session_action_args *uap, int *retval)
1725 {
1726 struct fileproc * __single fp;
1727 int error = 0;
1728 int return_value = 0;
1729 struct necp_session * __single session = NULL;
1730
1731 error = necp_session_find_from_fd(p, uap->necp_fd, &fp, &session);
1732 if (error != 0) {
1733 NECPLOG(LOG_ERR, "necp_session_action find fd error (%d)", error);
1734 return error;
1735 }
1736
1737 NECP_SESSION_LOCK(session);
1738
1739 if (session->proc_locked) {
1740 // Verify that the calling process is allowed to do actions
1741 uuid_t proc_uuid;
1742 proc_getexecutableuuid(current_proc(), proc_uuid, sizeof(proc_uuid));
1743 if (uuid_compare(proc_uuid, session->proc_uuid) != 0) {
1744 error = EPERM;
1745 goto done;
1746 }
1747 } else {
1748 // If not locked, update the proc_uuid and proc_pid of the session
1749 proc_getexecutableuuid(current_proc(), session->proc_uuid, sizeof(session->proc_uuid));
1750 session->proc_pid = proc_pid(current_proc());
1751 }
1752
1753 u_int32_t action = uap->action;
1754 switch (action) {
1755 case NECP_SESSION_ACTION_POLICY_ADD: {
1756 return_value = necp_session_add_policy(session, uap, retval);
1757 break;
1758 }
1759 case NECP_SESSION_ACTION_POLICY_GET: {
1760 return_value = necp_session_get_policy(session, uap, retval);
1761 break;
1762 }
1763 case NECP_SESSION_ACTION_POLICY_DELETE: {
1764 return_value = necp_session_delete_policy(session, uap, retval);
1765 break;
1766 }
1767 case NECP_SESSION_ACTION_POLICY_APPLY_ALL: {
1768 return_value = necp_session_apply_all(session, uap, retval);
1769 break;
1770 }
1771 case NECP_SESSION_ACTION_POLICY_LIST_ALL: {
1772 return_value = necp_session_list_all(session, uap, retval);
1773 break;
1774 }
1775 case NECP_SESSION_ACTION_POLICY_DELETE_ALL: {
1776 return_value = necp_session_delete_all(session, uap, retval);
1777 break;
1778 }
1779 case NECP_SESSION_ACTION_SET_SESSION_PRIORITY: {
1780 return_value = necp_session_set_session_priority(session, uap, retval);
1781 break;
1782 }
1783 case NECP_SESSION_ACTION_LOCK_SESSION_TO_PROC: {
1784 return_value = necp_session_lock_to_process(session, uap, retval);
1785 break;
1786 }
1787 case NECP_SESSION_ACTION_REGISTER_SERVICE: {
1788 return_value = 0; // Ignore
1789 break;
1790 }
1791 case NECP_SESSION_ACTION_UNREGISTER_SERVICE: {
1792 return_value = 0; // Ignore
1793 break;
1794 }
1795 case NECP_SESSION_ACTION_POLICY_DUMP_ALL: {
1796 return_value = necp_session_dump_all(session, uap, retval);
1797 break;
1798 }
1799 case NECP_SESSION_ACTION_ADD_DOMAIN_FILTER: {
1800 return_value = necp_session_add_domain_filter(session, uap, retval);
1801 break;
1802 }
1803 case NECP_SESSION_ACTION_REMOVE_DOMAIN_FILTER: {
1804 return_value = necp_session_remove_domain_filter(session, uap, retval);
1805 break;
1806 }
1807 case NECP_SESSION_ACTION_REMOVE_ALL_DOMAIN_FILTERS: {
1808 return_value = necp_session_remove_all_domain_filters(session, uap, retval);
1809 break;
1810 }
1811 case NECP_SESSION_ACTION_ADD_DOMAIN_TRIE: {
1812 return_value = necp_session_add_domain_trie(session, uap, retval);
1813 break;
1814 }
1815 case NECP_SESSION_ACTION_REMOVE_DOMAIN_TRIE: {
1816 return_value = necp_session_remove_domain_trie(session, uap, retval);
1817 break;
1818 }
1819 case NECP_SESSION_ACTION_REMOVE_ALL_DOMAIN_TRIES: {
1820 return_value = necp_session_remove_all_domain_tries(session, uap, retval);
1821 break;
1822 }
1823 case NECP_SESSION_ACTION_TRIE_DUMP_ALL: {
1824 return_value = necp_session_trie_dump_all(session, uap, retval);
1825 break;
1826 }
1827 default: {
1828 NECPLOG(LOG_ERR, "necp_session_action unknown action (%u)", action);
1829 return_value = EINVAL;
1830 break;
1831 }
1832 }
1833
1834 done:
1835 NECP_SESSION_UNLOCK(session);
1836 fp_drop(p, uap->necp_fd, fp, 0);
1837 return return_value;
1838 }
1839
1840 struct necp_resolver_key_state {
1841 const struct ccdigest_info *digest_info;
1842 uint8_t key[CCSHA256_OUTPUT_SIZE];
1843 };
1844 static struct necp_resolver_key_state s_necp_resolver_key_state;
1845
1846 static void
necp_generate_resolver_key(void)1847 necp_generate_resolver_key(void)
1848 {
1849 s_necp_resolver_key_state.digest_info = ccsha256_di();
1850 cc_rand_generate(s_necp_resolver_key_state.key, sizeof(s_necp_resolver_key_state.key));
1851 }
1852
1853 static void
necp_sign_update_context(const struct ccdigest_info * di,cchmac_ctx_t ctx,uuid_t client_id,u_int32_t sign_type,u_int8_t * data,size_t data_length)1854 necp_sign_update_context(const struct ccdigest_info *di,
1855 cchmac_ctx_t ctx,
1856 uuid_t client_id,
1857 u_int32_t sign_type,
1858 u_int8_t *data,
1859 size_t data_length)
1860 {
1861 const uint8_t context[32] = {[0 ... 31] = 0x20}; // 0x20 repeated 32 times
1862 const char * __null_terminated context_string = "NECP Resolver Binder";
1863 uint8_t separator = 0;
1864 cchmac_update(di, ctx, sizeof(context), context);
1865 cchmac_update(di, ctx, strlen(context_string), __unsafe_null_terminated_to_indexable(context_string));
1866 cchmac_update(di, ctx, sizeof(separator), &separator);
1867 cchmac_update(di, ctx, sizeof(uuid_t), client_id);
1868 cchmac_update(di, ctx, sizeof(sign_type), &sign_type);
1869 cchmac_update(di, ctx, data_length, data);
1870 }
1871
1872 int
necp_sign_resolver_answer(uuid_t client_id,u_int32_t sign_type,u_int8_t * data,size_t data_length,u_int8_t * tag,size_t * out_tag_length)1873 necp_sign_resolver_answer(uuid_t client_id, u_int32_t sign_type,
1874 u_int8_t *data, size_t data_length,
1875 u_int8_t *tag, size_t *out_tag_length)
1876 {
1877 if (s_necp_resolver_key_state.digest_info == NULL) {
1878 return EINVAL;
1879 }
1880
1881 if (data == NULL ||
1882 data_length == 0 ||
1883 tag == NULL ||
1884 out_tag_length == NULL) {
1885 return EINVAL;
1886 }
1887
1888 size_t required_tag_length = s_necp_resolver_key_state.digest_info->output_size;
1889 if (*out_tag_length < required_tag_length) {
1890 return ERANGE;
1891 }
1892
1893 *out_tag_length = required_tag_length;
1894
1895 cchmac_ctx_decl(s_necp_resolver_key_state.digest_info->state_size,
1896 s_necp_resolver_key_state.digest_info->block_size, ctx);
1897 cchmac_init(s_necp_resolver_key_state.digest_info, ctx,
1898 sizeof(s_necp_resolver_key_state.key),
1899 s_necp_resolver_key_state.key);
1900 necp_sign_update_context(s_necp_resolver_key_state.digest_info,
1901 ctx, client_id, sign_type, data, data_length);
1902 cchmac_final(s_necp_resolver_key_state.digest_info, ctx, tag);
1903
1904 return 0;
1905 }
1906
1907 bool
necp_validate_resolver_answer(uuid_t client_id,u_int32_t sign_type,u_int8_t * __sized_by (data_length)data,size_t data_length,u_int8_t * __sized_by (tag_length)tag,size_t tag_length)1908 necp_validate_resolver_answer(uuid_t client_id, u_int32_t sign_type,
1909 u_int8_t * __sized_by(data_length)data, size_t data_length,
1910 u_int8_t * __sized_by(tag_length)tag, size_t tag_length)
1911 {
1912 if (s_necp_resolver_key_state.digest_info == NULL) {
1913 return false;
1914 }
1915
1916 if (data == NULL ||
1917 data_length == 0 ||
1918 tag == NULL ||
1919 tag_length == 0) {
1920 return false;
1921 }
1922
1923 size_t required_tag_length = s_necp_resolver_key_state.digest_info->output_size;
1924 if (tag_length != required_tag_length) {
1925 return false;
1926 }
1927
1928 uint8_t actual_tag[required_tag_length];
1929
1930 cchmac_ctx_decl(s_necp_resolver_key_state.digest_info->state_size,
1931 s_necp_resolver_key_state.digest_info->block_size, ctx);
1932 cchmac_init(s_necp_resolver_key_state.digest_info, ctx,
1933 sizeof(s_necp_resolver_key_state.key),
1934 s_necp_resolver_key_state.key);
1935 necp_sign_update_context(s_necp_resolver_key_state.digest_info,
1936 ctx, client_id, sign_type, data, data_length);
1937 cchmac_final(s_necp_resolver_key_state.digest_info, ctx, actual_tag);
1938
1939 return cc_cmp_safe(s_necp_resolver_key_state.digest_info->output_size, tag, actual_tag) == 0;
1940 }
1941
1942 struct necp_application_id_key_state {
1943 const struct ccdigest_info *digest_info;
1944 uint8_t key[CCSHA256_OUTPUT_SIZE];
1945 };
1946 static struct necp_application_id_key_state s_necp_application_id_key_state;
1947
1948 static void
necp_generate_application_id_key(void)1949 necp_generate_application_id_key(void)
1950 {
1951 s_necp_application_id_key_state.digest_info = ccsha256_di();
1952 cc_rand_generate(s_necp_application_id_key_state.key, sizeof(s_necp_application_id_key_state.key));
1953 }
1954
1955 static void
necp_sign_application_id_update_context(const struct ccdigest_info * di,cchmac_ctx_t ctx,uuid_t client_id,u_int32_t sign_type)1956 necp_sign_application_id_update_context(const struct ccdigest_info *di,
1957 cchmac_ctx_t ctx,
1958 uuid_t client_id,
1959 u_int32_t sign_type)
1960 {
1961 const uint8_t context[32] = {[0 ... 31] = 0x20}; // 0x20 repeated 32 times
1962 const char context_string[] = "NECP Application ID";
1963 uint8_t separator = 0;
1964 cchmac_update(di, ctx, sizeof(context), context);
1965 cchmac_update(di, ctx, sizeof(context_string) - 1, context_string);
1966 cchmac_update(di, ctx, sizeof(separator), &separator);
1967 cchmac_update(di, ctx, sizeof(uuid_t), client_id);
1968 cchmac_update(di, ctx, sizeof(sign_type), &sign_type);
1969 }
1970
1971 int
necp_sign_application_id(uuid_t client_id,u_int32_t sign_type,u_int8_t * __counted_by (* out_tag_length)tag,size_t * out_tag_length)1972 necp_sign_application_id(uuid_t client_id, u_int32_t sign_type,
1973 u_int8_t *__counted_by(*out_tag_length)tag, size_t *out_tag_length)
1974 {
1975 if (s_necp_application_id_key_state.digest_info == NULL) {
1976 return EINVAL;
1977 }
1978
1979 if (tag == NULL ||
1980 out_tag_length == NULL) {
1981 return EINVAL;
1982 }
1983
1984 size_t required_tag_length = s_necp_application_id_key_state.digest_info->output_size;
1985 if (*out_tag_length < required_tag_length) {
1986 return ERANGE;
1987 }
1988
1989 *out_tag_length = required_tag_length;
1990
1991 cchmac_ctx_decl(s_necp_application_id_key_state.digest_info->state_size,
1992 s_necp_application_id_key_state.digest_info->block_size, ctx);
1993 cchmac_init(s_necp_application_id_key_state.digest_info, ctx,
1994 sizeof(s_necp_application_id_key_state.key),
1995 s_necp_application_id_key_state.key);
1996 necp_sign_application_id_update_context(s_necp_application_id_key_state.digest_info,
1997 ctx, client_id, sign_type);
1998 cchmac_final(s_necp_application_id_key_state.digest_info, ctx, tag);
1999
2000 return 0;
2001 }
2002
2003 bool
necp_validate_application_id(uuid_t client_id,u_int32_t sign_type,u_int8_t * __sized_by (tag_length)tag,size_t tag_length)2004 necp_validate_application_id(uuid_t client_id, u_int32_t sign_type,
2005 u_int8_t * __sized_by(tag_length)tag, size_t tag_length)
2006 {
2007 if (s_necp_application_id_key_state.digest_info == NULL) {
2008 return false;
2009 }
2010
2011 if (tag == NULL ||
2012 tag_length == 0) {
2013 return false;
2014 }
2015
2016 size_t required_tag_length = s_necp_application_id_key_state.digest_info->output_size;
2017 if (tag_length != required_tag_length) {
2018 return false;
2019 }
2020
2021 uint8_t actual_tag[required_tag_length];
2022
2023 cchmac_ctx_decl(s_necp_application_id_key_state.digest_info->state_size,
2024 s_necp_application_id_key_state.digest_info->block_size, ctx);
2025 cchmac_init(s_necp_application_id_key_state.digest_info, ctx,
2026 sizeof(s_necp_application_id_key_state.key),
2027 s_necp_application_id_key_state.key);
2028 necp_sign_application_id_update_context(s_necp_application_id_key_state.digest_info,
2029 ctx, client_id, sign_type);
2030 cchmac_final(s_necp_application_id_key_state.digest_info, ctx, actual_tag);
2031
2032 return cc_cmp_safe(s_necp_application_id_key_state.digest_info->output_size, tag, actual_tag) == 0;
2033 }
2034
2035 void
necp_init(void)2036 necp_init(void)
2037 {
2038 necp_log_handle = os_log_create("com.apple.xnu.net.necp", "necp");
2039 necp_data_trace_log_handle = os_log_create("com.apple.xnu.net.necp", "necp-data-trace");
2040
2041 necp_client_init();
2042
2043 TAILQ_INIT(&necp_session_list);
2044
2045 LIST_INIT(&necp_kernel_socket_policies);
2046 LIST_INIT(&necp_kernel_ip_output_policies);
2047
2048 LIST_INIT(&necp_account_id_list);
2049
2050 LIST_INIT(&necp_agent_uuid_id_list);
2051
2052 LIST_INIT(&necp_route_rules);
2053 LIST_INIT(&necp_aggregate_route_rules);
2054
2055 LIST_INIT(&necp_global_domain_filter_list);
2056 LIST_INIT(&necp_global_domain_trie_list);
2057
2058 necp_generate_resolver_key();
2059 necp_generate_application_id_key();
2060
2061 necp_uuid_app_id_hashtbl = __unsafe_forge_bidi_indexable(struct necp_uuid_id_mapping_head *,
2062 hashinit(NECP_UUID_APP_ID_HASH_SIZE, M_NECP, &necp_uuid_app_id_hash_mask),
2063 NECP_UUID_APP_ID_HASH_SIZE * sizeof(void*));
2064 necp_uuid_app_id_hash_num_buckets = necp_uuid_app_id_hash_mask + 1;
2065 necp_num_uuid_app_id_mappings = 0;
2066 necp_uuid_app_id_mappings_dirty = FALSE;
2067
2068 necp_kernel_application_policies_condition_mask = 0;
2069 necp_kernel_socket_policies_condition_mask = 0;
2070 necp_kernel_ip_output_policies_condition_mask = 0;
2071
2072 necp_kernel_application_policies_count = 0;
2073 necp_kernel_socket_policies_count = 0;
2074 necp_kernel_socket_policies_non_app_count = 0;
2075 necp_kernel_ip_output_policies_count = 0;
2076 necp_kernel_ip_output_policies_non_id_count = 0;
2077
2078 necp_kernel_socket_policies_gencount = 1;
2079
2080 memset(&necp_kernel_socket_policies_map, 0, sizeof(necp_kernel_socket_policies_map));
2081 memset(&necp_kernel_ip_output_policies_map, 0, sizeof(necp_kernel_ip_output_policies_map));
2082 necp_kernel_socket_policies_app_layer_map = NULL;
2083
2084 necp_drop_unentitled_order = necp_get_first_order_for_priority(necp_drop_unentitled_level);
2085 necp_drop_management_order = necp_get_first_order_for_priority(necp_drop_management_level);
2086 }
2087
2088 static void
necp_post_change_event(struct kev_necp_policies_changed_data * necp_event_data)2089 necp_post_change_event(struct kev_necp_policies_changed_data *necp_event_data)
2090 {
2091 struct kev_msg ev_msg;
2092 memset(&ev_msg, 0, sizeof(ev_msg));
2093
2094 ev_msg.vendor_code = KEV_VENDOR_APPLE;
2095 ev_msg.kev_class = KEV_NETWORK_CLASS;
2096 ev_msg.kev_subclass = KEV_NECP_SUBCLASS;
2097 ev_msg.event_code = KEV_NECP_POLICIES_CHANGED;
2098
2099 ev_msg.dv[0].data_ptr = necp_event_data;
2100 ev_msg.dv[0].data_length = sizeof(necp_event_data->changed_count);
2101 ev_msg.dv[1].data_length = 0;
2102
2103 kev_post_msg(&ev_msg);
2104 }
2105
2106 static inline bool
necp_buffer_write_tlv_validate(u_int8_t * __indexable cursor,u_int8_t type,u_int32_t length,u_int8_t * __sized_by (buffer_length)buffer,u_int32_t buffer_length)2107 necp_buffer_write_tlv_validate(u_int8_t * __indexable cursor, u_int8_t type, u_int32_t length,
2108 u_int8_t * __sized_by(buffer_length)buffer, u_int32_t buffer_length)
2109 {
2110 if (cursor < buffer || (uintptr_t)(cursor - buffer) > buffer_length) {
2111 NECPLOG0(LOG_ERR, "Cannot write TLV in buffer (invalid cursor)");
2112 return false;
2113 }
2114 u_int8_t *next_tlv = (u_int8_t *)(cursor + sizeof(type) + sizeof(length) + length);
2115 if (next_tlv <= buffer || // make sure the next TLV start doesn't overflow
2116 (uintptr_t)(next_tlv - buffer) > buffer_length) { // make sure the next TLV has enough room in buffer
2117 NECPLOG(LOG_ERR, "Cannot write TLV in buffer (TLV length %u, buffer length %u)",
2118 length, buffer_length);
2119 return false;
2120 }
2121 return true;
2122 }
2123
2124 u_int8_t * __counted_by(0)
2125 necp_buffer_write_tlv_if_different(u_int8_t * __counted_by(0)cursor_, u_int8_t type,
2126 u_int32_t length, const void * __sized_by(length)value, bool *updated,
2127 u_int8_t * __sized_by(buffer_length)buffer, u_int32_t buffer_length)
2128 {
2129 // Use __counted_by(0) for cursor_ to avoid using __indexable in parameter list that causes ABI issue
2130 u_int8_t * cursor = buffer + (cursor_ - buffer);
2131 if (!necp_buffer_write_tlv_validate(cursor, type, length, buffer, buffer_length)) {
2132 // If we can't fit this TLV, return the current cursor
2133 return cursor;
2134 }
2135 u_int8_t * __indexable next_tlv = (u_int8_t *)(cursor + sizeof(type) + sizeof(length) + length);
2136 if (*updated || *(u_int8_t *)(cursor) != type) {
2137 *(u_int8_t *)(cursor) = type;
2138 *updated = TRUE;
2139 }
2140 if (*updated || *(u_int32_t *)(void *)(cursor + sizeof(type)) != length) {
2141 *(u_int32_t *)(void *)(cursor + sizeof(type)) = length;
2142 *updated = TRUE;
2143 }
2144 if (length > 0) {
2145 if (*updated || memcmp((u_int8_t *)(cursor + sizeof(type) + sizeof(length)), value, length) != 0) {
2146 memcpy((u_int8_t *)(cursor + sizeof(type) + sizeof(length)), value, length);
2147 *updated = TRUE;
2148 }
2149 }
2150 return next_tlv;
2151 }
2152
2153 u_int8_t * __counted_by(0)
2154 necp_buffer_write_tlv(u_int8_t * __counted_by(0)cursor_, u_int8_t type,
2155 u_int32_t length, const void * __sized_by(length)value,
2156 u_int8_t * __sized_by(buffer_length)buffer, u_int32_t buffer_length)
2157 {
2158 // Use __counted_by(0) for cursor_ to avoid using __indexable in parameter list that causes ABI issue
2159 u_int8_t * cursor = buffer + (cursor_ - buffer);
2160 if (!necp_buffer_write_tlv_validate(cursor, type, length, buffer, buffer_length)) {
2161 return NULL;
2162 }
2163 u_int8_t *next_tlv = (u_int8_t *)(cursor + sizeof(type) + sizeof(length) + length);
2164 *(u_int8_t *)(cursor) = type;
2165 *(u_int32_t *)(void *)(cursor + sizeof(type)) = length;
2166 if (length > 0) {
2167 memcpy((u_int8_t *)(cursor + sizeof(type) + sizeof(length)), value, length);
2168 }
2169
2170 return next_tlv;
2171 }
2172
2173 static u_int8_t * __counted_by(0)
2174 necp_buffer_write_tlv_with_flags(u_int8_t * __counted_by(0)cursor_, u_int8_t type, u_int8_t flags,
2175 u_int32_t length, const void * __sized_by(length)value,
2176 u_int8_t * __sized_by(buffer_length)buffer, u_int32_t buffer_length)
2177 {
2178 // Use __counted_by(0) for cursor_ to avoid using __indexable in parameter list that causes ABI issue
2179 // Add one extra byte to 'length' to account for the flags byte for validation.
2180 u_int8_t * cursor = buffer + (cursor_ - buffer);
2181 if (!necp_buffer_write_tlv_validate(cursor, type, length + 1, buffer, buffer_length)) {
2182 return NULL;
2183 }
2184 u_int8_t *next_tlv = (u_int8_t *)(cursor + sizeof(type) + sizeof(flags) + sizeof(length) + length);
2185
2186 // TLV with flags format: type, length, flags, value (added 1 byte for the leading flags)
2187 *(u_int8_t *)(cursor) = type;
2188 *(u_int32_t *)(void *)(cursor + sizeof(type)) = length;
2189 *(u_int8_t *)(cursor + sizeof(type) + sizeof(length)) = flags;
2190 if (length > 0) {
2191 memcpy((u_int8_t *)(cursor + sizeof(type) + sizeof(length) + sizeof(flags)), value, length);
2192 }
2193
2194 return next_tlv;
2195 }
2196
2197 u_int8_t
necp_buffer_get_tlv_type(u_int8_t * __counted_by (buffer_length)buffer,size_t buffer_length,u_int32_t tlv_offset)2198 necp_buffer_get_tlv_type(u_int8_t * __counted_by(buffer_length)buffer, size_t buffer_length, u_int32_t tlv_offset)
2199 {
2200 u_int8_t * __indexable type = NULL;
2201 uint64_t end_offset = 0;
2202
2203 if (buffer == NULL ||
2204 os_add_overflow(tlv_offset, sizeof(u_int8_t), &end_offset) || buffer_length < end_offset) {
2205 return 0;
2206 }
2207
2208 type = (u_int8_t *)((u_int8_t *)buffer + tlv_offset);
2209 return type ? *type : 0;
2210 }
2211
2212 u_int32_t
necp_buffer_get_tlv_length(u_int8_t * __counted_by (buffer_length)buffer,size_t buffer_length,u_int32_t tlv_offset)2213 necp_buffer_get_tlv_length(u_int8_t * __counted_by(buffer_length)buffer, size_t buffer_length, u_int32_t tlv_offset)
2214 {
2215 u_int32_t * __indexable length = NULL;
2216 uint64_t end_offset = 0;
2217
2218 if (buffer == NULL ||
2219 os_add_overflow(tlv_offset, sizeof(u_int8_t) + sizeof(u_int32_t), &end_offset) || buffer_length < end_offset) {
2220 return 0;
2221 }
2222
2223 length = (u_int32_t *)(void *)((u_int8_t *)buffer + tlv_offset + sizeof(u_int8_t));
2224 return length ? *length : 0;
2225 }
2226
2227 u_int8_t *__sized_by(*value_size)
__necp_buffer_get_tlv_value(u_int8_t * __counted_by (buffer_length)buffer,size_t buffer_length,u_int32_t tlv_offset,u_int32_t * value_size)2228 __necp_buffer_get_tlv_value(u_int8_t * __counted_by(buffer_length)buffer, size_t buffer_length, u_int32_t tlv_offset, u_int32_t * value_size)
2229 {
2230 u_int8_t * __indexable value = NULL;
2231 uint64_t end_offset = 0;
2232
2233 if (buffer == NULL) {
2234 return NULL;
2235 }
2236
2237 u_int32_t length = necp_buffer_get_tlv_length(buffer, buffer_length, tlv_offset);
2238 if (length == 0) {
2239 return NULL;
2240 }
2241
2242 if (os_add3_overflow(tlv_offset, length, sizeof(u_int8_t) + sizeof(u_int32_t), &end_offset) || buffer_length < end_offset) {
2243 return NULL;
2244 }
2245
2246 if (value_size) {
2247 *value_size = length;
2248 }
2249
2250 value = (u_int8_t *)((u_int8_t *)buffer + tlv_offset + sizeof(u_int8_t) + sizeof(u_int32_t));
2251 return value;
2252 }
2253
2254 int
necp_buffer_find_tlv(u_int8_t * __sized_by (buffer_length)buffer,u_int32_t buffer_length,int offset,u_int8_t type,int * err,int next)2255 necp_buffer_find_tlv(u_int8_t * __sized_by(buffer_length)buffer, u_int32_t buffer_length, int offset, u_int8_t type, int *err, int next)
2256 {
2257 if (err != NULL) {
2258 *err = ENOENT;
2259 }
2260 if (offset < 0) {
2261 if (err != NULL) {
2262 *err = EINVAL;
2263 }
2264 return -1;
2265 }
2266 int cursor = offset;
2267 int next_cursor;
2268 u_int32_t curr_length;
2269 u_int8_t curr_type;
2270
2271 while (TRUE) {
2272 if ((((u_int32_t)cursor) + sizeof(curr_type) + sizeof(curr_length)) > buffer_length) {
2273 return -1;
2274 }
2275 if (!next) {
2276 curr_type = necp_buffer_get_tlv_type(buffer, buffer_length, cursor);
2277 } else {
2278 next = 0;
2279 curr_type = NECP_TLV_NIL;
2280 }
2281 curr_length = necp_buffer_get_tlv_length(buffer, buffer_length, cursor);
2282 if (curr_length > buffer_length - ((u_int32_t)cursor + sizeof(curr_type) + sizeof(curr_length))) {
2283 return -1;
2284 }
2285
2286 next_cursor = (cursor + sizeof(curr_type) + sizeof(curr_length) + curr_length);
2287 if (curr_type == type) {
2288 // check if entire TLV fits inside buffer
2289 if (((u_int32_t)next_cursor) <= buffer_length) {
2290 if (err != NULL) {
2291 *err = 0;
2292 }
2293 return cursor;
2294 } else {
2295 return -1;
2296 }
2297 }
2298 cursor = next_cursor;
2299 }
2300 }
2301
2302 static int
necp_find_tlv(u_int8_t * __sized_by (buffer_length)buffer,u_int32_t buffer_length,int offset,u_int8_t type,int * err,int next)2303 necp_find_tlv(u_int8_t * __sized_by(buffer_length)buffer, u_int32_t buffer_length, int offset, u_int8_t type, int *err, int next)
2304 {
2305 int cursor = -1;
2306 if (buffer != NULL) {
2307 cursor = necp_buffer_find_tlv(buffer, buffer_length, offset, type, err, next);
2308 }
2309 return cursor;
2310 }
2311
2312 static int
necp_get_tlv_at_offset(u_int8_t * __sized_by (buffer_length)buffer,u_int32_t buffer_length,int tlv_offset,u_int32_t out_buffer_length,void * __indexable out_buffer,u_int32_t * value_size)2313 necp_get_tlv_at_offset(u_int8_t * __sized_by(buffer_length)buffer, u_int32_t buffer_length,
2314 int tlv_offset, u_int32_t out_buffer_length, void * __indexable out_buffer, u_int32_t *value_size)
2315 {
2316 if (buffer == NULL) {
2317 NECPLOG0(LOG_ERR, "necp_get_tlv_at_offset buffer is NULL");
2318 return EINVAL;
2319 }
2320
2321 // Handle buffer parsing
2322
2323 // Validate that buffer has enough room for any TLV
2324 if (tlv_offset + sizeof(u_int8_t) + sizeof(u_int32_t) > buffer_length) {
2325 NECPLOG(LOG_ERR, "necp_get_tlv_at_offset buffer_length is too small for TLV (%u < %lu)",
2326 buffer_length, tlv_offset + sizeof(u_int8_t) + sizeof(u_int32_t));
2327 return EINVAL;
2328 }
2329
2330 // Validate that buffer has enough room for this TLV
2331 u_int32_t tlv_length = necp_buffer_get_tlv_length(buffer, buffer_length, tlv_offset);
2332 if (tlv_length > buffer_length - (tlv_offset + sizeof(u_int8_t) + sizeof(u_int32_t))) {
2333 NECPLOG(LOG_ERR, "necp_get_tlv_at_offset buffer_length is too small for TLV of length %u (%u < %lu)",
2334 tlv_length, buffer_length, tlv_offset + sizeof(u_int8_t) + sizeof(u_int32_t) + tlv_length);
2335 return EINVAL;
2336 }
2337
2338 if (out_buffer != NULL && out_buffer_length > 0) {
2339 // Validate that out buffer is large enough for value
2340 if (out_buffer_length < tlv_length) {
2341 NECPLOG(LOG_ERR, "necp_get_tlv_at_offset out_buffer_length is too small for TLV value (%u < %u)",
2342 out_buffer_length, tlv_length);
2343 return EINVAL;
2344 }
2345
2346 // Get value pointer
2347 u_int8_t * __indexable tlv_value = necp_buffer_get_tlv_value(buffer, buffer_length, tlv_offset, NULL);
2348 if (tlv_value == NULL) {
2349 NECPLOG0(LOG_ERR, "necp_get_tlv_at_offset tlv_value is NULL");
2350 return ENOENT;
2351 }
2352
2353 // Copy value
2354 memcpy(out_buffer, tlv_value, tlv_length);
2355 }
2356
2357 // Copy out length
2358 if (value_size != NULL) {
2359 *value_size = tlv_length;
2360 }
2361
2362 return 0;
2363 }
2364
2365 static int
necp_get_tlv(u_int8_t * __sized_by (buffer_length)buffer,u_int32_t buffer_length,int offset,u_int8_t type,u_int32_t buff_len,void * __indexable buff,u_int32_t * value_size)2366 necp_get_tlv(u_int8_t * __sized_by(buffer_length)buffer, u_int32_t buffer_length,
2367 int offset, u_int8_t type, u_int32_t buff_len, void * __indexable buff, u_int32_t *value_size)
2368 {
2369 int error = 0;
2370
2371 int tlv_offset = necp_find_tlv(buffer, buffer_length, offset, type, &error, 0);
2372 if (tlv_offset < 0) {
2373 return error;
2374 }
2375
2376 return necp_get_tlv_at_offset(buffer, buffer_length, tlv_offset, buff_len, buff, value_size);
2377 }
2378
2379 // Session Management
2380
2381 static struct necp_session *
necp_create_session(void)2382 necp_create_session(void)
2383 {
2384 struct necp_session *new_session = NULL;
2385
2386 new_session = kalloc_type(struct necp_session,
2387 Z_WAITOK | Z_ZERO | Z_NOFAIL);
2388
2389 new_session->necp_fd_type = necp_fd_type_session;
2390 new_session->session_priority = NECP_SESSION_PRIORITY_UNKNOWN;
2391 new_session->dirty = FALSE;
2392 LIST_INIT(&new_session->policies);
2393 LIST_INIT(&new_session->domain_filters);
2394 LIST_INIT(&new_session->domain_tries);
2395 lck_mtx_init(&new_session->lock, &necp_kernel_policy_mtx_grp, &necp_kernel_policy_mtx_attr);
2396
2397 // Take the lock
2398 lck_rw_lock_exclusive(&necp_kernel_policy_lock);
2399
2400 // Find the next available control unit
2401 u_int32_t control_unit = 1;
2402 struct necp_session *next_session = NULL;
2403 TAILQ_FOREACH(next_session, &necp_session_list, chain) {
2404 if (next_session->control_unit > control_unit) {
2405 // Found a gap, grab this control unit
2406 break;
2407 }
2408
2409 // Try the next control unit, loop around
2410 control_unit = next_session->control_unit + 1;
2411 }
2412
2413 new_session->control_unit = control_unit;
2414 new_session->session_order = necp_allocate_new_session_order(new_session->session_priority, control_unit);
2415
2416 if (next_session != NULL) {
2417 TAILQ_INSERT_BEFORE(next_session, new_session, chain);
2418 } else {
2419 TAILQ_INSERT_TAIL(&necp_session_list, new_session, chain);
2420 }
2421
2422 necp_session_count++;
2423 lck_rw_done(&necp_kernel_policy_lock);
2424
2425 if (necp_debug) {
2426 NECPLOG(LOG_DEBUG, "Created NECP session, control unit %d", control_unit);
2427 }
2428
2429 return new_session;
2430 }
2431
2432 static void
necp_delete_session(struct necp_session * session)2433 necp_delete_session(struct necp_session *session)
2434 {
2435 if (session != NULL) {
2436 struct necp_domain_filter * __single filter = NULL;
2437 struct necp_domain_filter *temp_filter = NULL;
2438 LIST_FOREACH_SAFE(filter, &session->domain_filters, owner_chain, temp_filter) {
2439 if (os_ref_release_locked(&filter->refcount) == 0) {
2440 lck_rw_lock_exclusive(&necp_kernel_policy_lock);
2441 LIST_REMOVE(filter, chain);
2442 lck_rw_done(&necp_kernel_policy_lock);
2443 LIST_REMOVE(filter, owner_chain);
2444 net_bloom_filter_destroy(filter->filter);
2445 kfree_type(struct necp_domain_filter, filter);
2446 }
2447 }
2448 if (necp_debug) {
2449 NECPLOG0(LOG_DEBUG, "Deleted NECP session");
2450 }
2451
2452 lck_rw_lock_exclusive(&necp_kernel_policy_lock);
2453 TAILQ_REMOVE(&necp_session_list, session, chain);
2454 necp_session_count--;
2455 lck_rw_done(&necp_kernel_policy_lock);
2456
2457 lck_mtx_destroy(&session->lock, &necp_kernel_policy_mtx_grp);
2458 kfree_type(struct necp_session, session);
2459 }
2460 }
2461
2462 // Session Policy Management
2463
2464 static inline u_int8_t
necp_policy_result_get_type_from_buffer(u_int8_t * __sized_by (length)buffer,u_int32_t length)2465 necp_policy_result_get_type_from_buffer(u_int8_t * __sized_by(length)buffer, u_int32_t length)
2466 {
2467 return (buffer && length >= sizeof(u_int8_t)) ? buffer[0] : 0;
2468 }
2469
2470 static inline u_int32_t
necp_policy_result_get_parameter_length_from_buffer(u_int8_t * __sized_by (length)buffer,u_int32_t length)2471 necp_policy_result_get_parameter_length_from_buffer(u_int8_t * __sized_by(length)buffer, u_int32_t length)
2472 {
2473 return (buffer && length > sizeof(u_int8_t)) ? (length - sizeof(u_int8_t)) : 0;
2474 }
2475
2476 static inline u_int8_t * __indexable
necp_policy_result_get_parameter_pointer_from_buffer(u_int8_t * __indexable buffer,u_int32_t length)2477 necp_policy_result_get_parameter_pointer_from_buffer(u_int8_t * __indexable buffer, u_int32_t length)
2478 {
2479 return (buffer && length > sizeof(u_int8_t)) ? (buffer + sizeof(u_int8_t)) : NULL;
2480 }
2481
2482 static bool
necp_policy_result_requires_route_rules(u_int8_t * __sized_by (length)buffer,u_int32_t length)2483 necp_policy_result_requires_route_rules(u_int8_t * __sized_by(length)buffer, u_int32_t length)
2484 {
2485 u_int8_t type = necp_policy_result_get_type_from_buffer(buffer, length);
2486 if (type == NECP_POLICY_RESULT_ROUTE_RULES) {
2487 return TRUE;
2488 }
2489 return FALSE;
2490 }
2491
2492 static inline bool
_necp_address_is_valid(struct sockaddr * address)2493 _necp_address_is_valid(struct sockaddr *address)
2494 {
2495 if (address->sa_family == AF_INET) {
2496 return address->sa_len == sizeof(struct sockaddr_in);
2497 } else if (address->sa_family == AF_INET6) {
2498 return address->sa_len == sizeof(struct sockaddr_in6);
2499 } else {
2500 return FALSE;
2501 }
2502 }
2503
2504 #define necp_address_is_valid(S) _necp_address_is_valid(SA(S))
2505
2506 static bool
necp_policy_result_is_valid(u_int8_t * __sized_by (length)buffer,u_int32_t length,bool * is_pass_skip)2507 necp_policy_result_is_valid(u_int8_t * __sized_by(length)buffer, u_int32_t length, bool *is_pass_skip)
2508 {
2509 bool validated = FALSE;
2510 u_int8_t type = necp_policy_result_get_type_from_buffer(buffer, length);
2511 u_int32_t parameter_length = necp_policy_result_get_parameter_length_from_buffer(buffer, length);
2512 *is_pass_skip = FALSE;
2513 switch (type) {
2514 case NECP_POLICY_RESULT_PASS: {
2515 *is_pass_skip = TRUE;
2516 if (parameter_length == 0 || parameter_length == sizeof(u_int32_t)) {
2517 validated = TRUE;
2518 }
2519 break;
2520 }
2521 case NECP_POLICY_RESULT_DROP: {
2522 if (parameter_length == 0 || parameter_length == sizeof(u_int32_t)) {
2523 validated = TRUE;
2524 }
2525 break;
2526 }
2527 case NECP_POLICY_RESULT_ROUTE_RULES:
2528 case NECP_POLICY_RESULT_SCOPED_DIRECT:
2529 case NECP_POLICY_RESULT_ALLOW_UNENTITLED: {
2530 validated = TRUE;
2531 break;
2532 }
2533 case NECP_POLICY_RESULT_SKIP:
2534 *is_pass_skip = TRUE;
2535 case NECP_POLICY_RESULT_SOCKET_DIVERT:
2536 case NECP_POLICY_RESULT_SOCKET_FILTER: {
2537 if (parameter_length >= sizeof(u_int32_t)) {
2538 validated = TRUE;
2539 }
2540 break;
2541 }
2542 case NECP_POLICY_RESULT_IP_TUNNEL: {
2543 if (parameter_length > sizeof(u_int32_t)) {
2544 validated = TRUE;
2545 }
2546 break;
2547 }
2548 case NECP_POLICY_RESULT_SOCKET_SCOPED: {
2549 if (parameter_length > 0) {
2550 validated = TRUE;
2551 }
2552 break;
2553 }
2554 case NECP_POLICY_RESULT_USE_NETAGENT:
2555 case NECP_POLICY_RESULT_NETAGENT_SCOPED:
2556 case NECP_POLICY_RESULT_REMOVE_NETAGENT: {
2557 if (parameter_length >= sizeof(uuid_t)) {
2558 validated = TRUE;
2559 }
2560 break;
2561 }
2562 case NECP_POLICY_RESULT_REMOVE_NETAGENT_TYPE: {
2563 if (parameter_length >= sizeof(struct necp_policy_condition_agent_type)) {
2564 validated = TRUE;
2565 }
2566 break;
2567 }
2568 default: {
2569 validated = FALSE;
2570 break;
2571 }
2572 }
2573
2574 if (necp_debug) {
2575 NECPLOG(LOG_DEBUG, "Policy result type %d, valid %d", type, validated);
2576 }
2577
2578 return validated;
2579 }
2580
2581 static inline u_int8_t
necp_policy_condition_get_type_from_buffer(u_int8_t * __sized_by (length)buffer,u_int32_t length)2582 necp_policy_condition_get_type_from_buffer(u_int8_t * __sized_by(length)buffer, u_int32_t length)
2583 {
2584 return (buffer && length >= sizeof(u_int8_t)) ? buffer[0] : 0;
2585 }
2586
2587 static inline u_int8_t
necp_policy_condition_get_flags_from_buffer(u_int8_t * __sized_by (length)buffer,u_int32_t length)2588 necp_policy_condition_get_flags_from_buffer(u_int8_t * __sized_by(length)buffer, u_int32_t length)
2589 {
2590 return (buffer && length >= (2 * sizeof(u_int8_t))) ? buffer[1] : 0;
2591 }
2592
2593 static inline u_int32_t
necp_policy_condition_get_value_length_from_buffer(u_int8_t * __sized_by (length)buffer,u_int32_t length)2594 necp_policy_condition_get_value_length_from_buffer(u_int8_t * __sized_by(length)buffer, u_int32_t length)
2595 {
2596 return (buffer && length >= (2 * sizeof(u_int8_t))) ? (length - (2 * sizeof(u_int8_t))) : 0;
2597 }
2598
2599 static inline u_int8_t * __indexable
necp_policy_condition_get_value_pointer_from_buffer(u_int8_t * __indexable buffer,u_int32_t length)2600 necp_policy_condition_get_value_pointer_from_buffer(u_int8_t * __indexable buffer, u_int32_t length)
2601 {
2602 return (buffer && length > (2 * sizeof(u_int8_t))) ? (buffer + (2 * sizeof(u_int8_t))) : NULL;
2603 }
2604
2605 static inline bool
necp_policy_condition_is_default(u_int8_t * __sized_by (length)buffer,u_int32_t length)2606 necp_policy_condition_is_default(u_int8_t * __sized_by(length)buffer, u_int32_t length)
2607 {
2608 return necp_policy_condition_get_type_from_buffer(buffer, length) == NECP_POLICY_CONDITION_DEFAULT;
2609 }
2610
2611 static inline bool
necp_policy_condition_is_application(u_int8_t * __sized_by (length)buffer,u_int32_t length)2612 necp_policy_condition_is_application(u_int8_t * __sized_by(length)buffer, u_int32_t length)
2613 {
2614 return necp_policy_condition_get_type_from_buffer(buffer, length) == NECP_POLICY_CONDITION_APPLICATION;
2615 }
2616
2617 static inline bool
necp_policy_condition_is_real_application(u_int8_t * __sized_by (length)buffer,u_int32_t length)2618 necp_policy_condition_is_real_application(u_int8_t * __sized_by(length)buffer, u_int32_t length)
2619 {
2620 return necp_policy_condition_get_type_from_buffer(buffer, length) == NECP_POLICY_CONDITION_REAL_APPLICATION;
2621 }
2622
2623 static inline bool
necp_policy_condition_requires_application(u_int8_t * __sized_by (length)buffer,u_int32_t length)2624 necp_policy_condition_requires_application(u_int8_t * __sized_by(length)buffer, u_int32_t length)
2625 {
2626 u_int8_t type = necp_policy_condition_get_type_from_buffer(buffer, length);
2627 return type == NECP_POLICY_CONDITION_REAL_APPLICATION;
2628 }
2629
2630 static inline bool
necp_policy_condition_is_kernel_pid(u_int8_t * __sized_by (length)buffer,u_int32_t length)2631 necp_policy_condition_is_kernel_pid(u_int8_t * __sized_by(length)buffer, u_int32_t length)
2632 {
2633 u_int8_t type = necp_policy_condition_get_type_from_buffer(buffer, length);
2634 u_int32_t condition_length = 0;
2635 pid_t *condition_value = NULL;
2636
2637 if (type == NECP_POLICY_CONDITION_PID) {
2638 condition_length = necp_policy_condition_get_value_length_from_buffer(buffer, length);
2639 if (condition_length >= sizeof(pid_t)) {
2640 condition_value = (pid_t *)(void *)necp_policy_condition_get_value_pointer_from_buffer(buffer, length);
2641 return *condition_value == 0;
2642 }
2643 }
2644 return false;
2645 }
2646
2647 static bool
necp_policy_condition_is_valid(u_int8_t * __sized_by (length)buffer,u_int32_t length,u_int8_t policy_result_type)2648 necp_policy_condition_is_valid(u_int8_t * __sized_by(length)buffer, u_int32_t length, u_int8_t policy_result_type)
2649 {
2650 bool validated = FALSE;
2651 bool result_cannot_have_ip_layer = (policy_result_type == NECP_POLICY_RESULT_SOCKET_DIVERT ||
2652 policy_result_type == NECP_POLICY_RESULT_SOCKET_FILTER ||
2653 policy_result_type == NECP_POLICY_RESULT_SOCKET_SCOPED ||
2654 policy_result_type == NECP_POLICY_RESULT_ROUTE_RULES ||
2655 policy_result_type == NECP_POLICY_RESULT_USE_NETAGENT ||
2656 policy_result_type == NECP_POLICY_RESULT_NETAGENT_SCOPED ||
2657 policy_result_type == NECP_POLICY_RESULT_SCOPED_DIRECT ||
2658 policy_result_type == NECP_POLICY_RESULT_ALLOW_UNENTITLED ||
2659 policy_result_type == NECP_POLICY_RESULT_REMOVE_NETAGENT ||
2660 policy_result_type == NECP_POLICY_RESULT_REMOVE_NETAGENT_TYPE) ? TRUE : FALSE;
2661 u_int32_t condition_length = necp_policy_condition_get_value_length_from_buffer(buffer, length);
2662 u_int8_t *condition_value = necp_policy_condition_get_value_pointer_from_buffer(buffer, length);
2663 u_int8_t type = necp_policy_condition_get_type_from_buffer(buffer, length);
2664 u_int8_t flags = necp_policy_condition_get_flags_from_buffer(buffer, length);
2665 switch (type) {
2666 case NECP_POLICY_CONDITION_APPLICATION:
2667 case NECP_POLICY_CONDITION_REAL_APPLICATION: {
2668 if (!(flags & NECP_POLICY_CONDITION_FLAGS_NEGATIVE) &&
2669 condition_length >= sizeof(uuid_t) &&
2670 condition_value != NULL &&
2671 !uuid_is_null(condition_value)) {
2672 validated = TRUE;
2673 }
2674 break;
2675 }
2676 case NECP_POLICY_CONDITION_DOMAIN:
2677 case NECP_POLICY_CONDITION_ACCOUNT:
2678 case NECP_POLICY_CONDITION_BOUND_INTERFACE:
2679 case NECP_POLICY_CONDITION_SIGNING_IDENTIFIER:
2680 case NECP_POLICY_CONDITION_URL: {
2681 if (condition_length > 0) {
2682 validated = TRUE;
2683 }
2684 break;
2685 }
2686 case NECP_POLICY_CONDITION_TRAFFIC_CLASS: {
2687 if (condition_length >= sizeof(struct necp_policy_condition_tc_range)) {
2688 validated = TRUE;
2689 }
2690 break;
2691 }
2692 case NECP_POLICY_CONDITION_DEFAULT:
2693 case NECP_POLICY_CONDITION_ALL_INTERFACES:
2694 case NECP_POLICY_CONDITION_ENTITLEMENT:
2695 case NECP_POLICY_CONDITION_HAS_CLIENT:
2696 case NECP_POLICY_CONDITION_SYSTEM_SIGNED_RESULT: {
2697 if (!(flags & NECP_POLICY_CONDITION_FLAGS_NEGATIVE)) {
2698 validated = TRUE;
2699 }
2700 break;
2701 }
2702 case NECP_POLICY_CONDITION_LOCAL_NETWORKS: {
2703 if (condition_length == 0 || condition_length >= sizeof(u_int8_t)) {
2704 validated = TRUE;
2705 }
2706 break;
2707 }
2708 case NECP_POLICY_CONDITION_SDK_VERSION: {
2709 if (!(flags & NECP_POLICY_CONDITION_FLAGS_NEGATIVE) &&
2710 condition_length >= sizeof(struct necp_policy_condition_sdk_version)) {
2711 validated = TRUE;
2712 }
2713 break;
2714 }
2715 case NECP_POLICY_CONDITION_IP_PROTOCOL: {
2716 if (condition_length >= sizeof(u_int16_t)) {
2717 validated = TRUE;
2718 }
2719 break;
2720 }
2721 case NECP_POLICY_CONDITION_PID: {
2722 if (condition_length >= sizeof(pid_t) &&
2723 condition_value != NULL) {
2724 validated = TRUE;
2725 }
2726 break;
2727 }
2728 case NECP_POLICY_CONDITION_DOMAIN_FILTER: {
2729 if (condition_length >= sizeof(u_int32_t)) {
2730 validated = TRUE;
2731 }
2732 break;
2733 }
2734 case NECP_POLICY_CONDITION_UID:
2735 case NECP_POLICY_CONDITION_REAL_UID: {
2736 if (condition_length >= sizeof(uid_t)) {
2737 validated = TRUE;
2738 }
2739 break;
2740 }
2741 case NECP_POLICY_CONDITION_LOCAL_ADDR:
2742 case NECP_POLICY_CONDITION_REMOTE_ADDR: {
2743 if (!result_cannot_have_ip_layer && condition_length >= sizeof(struct necp_policy_condition_addr) &&
2744 necp_address_is_valid(&((struct necp_policy_condition_addr *)(void *)condition_value)->address.sa)) {
2745 validated = TRUE;
2746 }
2747 break;
2748 }
2749 case NECP_POLICY_CONDITION_LOCAL_ADDR_RANGE:
2750 case NECP_POLICY_CONDITION_REMOTE_ADDR_RANGE: {
2751 if (!result_cannot_have_ip_layer && condition_length >= sizeof(struct necp_policy_condition_addr_range) &&
2752 necp_address_is_valid(&((struct necp_policy_condition_addr_range *)(void *)condition_value)->start_address.sa) &&
2753 necp_address_is_valid(&((struct necp_policy_condition_addr_range *)(void *)condition_value)->end_address.sa)) {
2754 validated = TRUE;
2755 }
2756 break;
2757 }
2758 case NECP_POLICY_CONDITION_AGENT_TYPE: {
2759 if (!(flags & NECP_POLICY_CONDITION_FLAGS_NEGATIVE) &&
2760 condition_length >= sizeof(struct necp_policy_condition_agent_type)) {
2761 validated = TRUE;
2762 }
2763 break;
2764 }
2765 case NECP_POLICY_CONDITION_FLOW_IP_PROTOCOL: {
2766 if (condition_length >= sizeof(u_int16_t)) {
2767 validated = TRUE;
2768 }
2769 break;
2770 }
2771 case NECP_POLICY_CONDITION_FLOW_LOCAL_ADDR:
2772 case NECP_POLICY_CONDITION_FLOW_REMOTE_ADDR: {
2773 if (condition_length >= sizeof(struct necp_policy_condition_addr) &&
2774 necp_address_is_valid(&((struct necp_policy_condition_addr *)(void *)condition_value)->address.sa)) {
2775 validated = TRUE;
2776 }
2777 break;
2778 }
2779 case NECP_POLICY_CONDITION_FLOW_LOCAL_ADDR_RANGE:
2780 case NECP_POLICY_CONDITION_FLOW_REMOTE_ADDR_RANGE: {
2781 if (condition_length >= sizeof(struct necp_policy_condition_addr_range) &&
2782 necp_address_is_valid(&((struct necp_policy_condition_addr_range *)(void *)condition_value)->start_address.sa) &&
2783 necp_address_is_valid(&((struct necp_policy_condition_addr_range *)(void *)condition_value)->end_address.sa)) {
2784 validated = TRUE;
2785 }
2786 break;
2787 }
2788 case NECP_POLICY_CONDITION_CLIENT_FLAGS: {
2789 if (condition_length == 0 || condition_length >= sizeof(u_int32_t)) {
2790 validated = TRUE;
2791 }
2792 break;
2793 }
2794 case NECP_POLICY_CONDITION_FLOW_LOCAL_ADDR_EMPTY: {
2795 validated = TRUE;
2796 break;
2797 }
2798 case NECP_POLICY_CONDITION_FLOW_REMOTE_ADDR_EMPTY: {
2799 validated = TRUE;
2800 break;
2801 }
2802 case NECP_POLICY_CONDITION_PACKET_FILTER_TAGS: {
2803 if (condition_length >= sizeof(u_int16_t)) {
2804 u_int16_t packet_filter_tags = *(u_int16_t *)(void *)condition_value;
2805 if (packet_filter_tags > 0 && packet_filter_tags <= NECP_POLICY_CONDITION_PACKET_FILTER_TAG_MAX) {
2806 validated = TRUE;
2807 }
2808 }
2809 break;
2810 }
2811 case NECP_POLICY_CONDITION_FLOW_IS_LOOPBACK: {
2812 validated = TRUE;
2813 break;
2814 }
2815 case NECP_POLICY_CONDITION_PLATFORM_BINARY: {
2816 validated = TRUE;
2817 break;
2818 }
2819 case NECP_POLICY_CONDITION_DELEGATE_IS_PLATFORM_BINARY: {
2820 validated = TRUE;
2821 break;
2822 }
2823 case NECP_POLICY_CONDITION_SCHEME_PORT: {
2824 if (condition_length >= sizeof(u_int16_t)) {
2825 validated = TRUE;
2826 }
2827 break;
2828 }
2829 case NECP_POLICY_CONDITION_BOUND_INTERFACE_FLAGS: {
2830 if (condition_length >= sizeof(u_int32_t) * NECP_POLICY_CONDITION_BOUND_INTERFACE_FLAGS_IDX_MAX) {
2831 validated = TRUE;
2832 }
2833 break;
2834 }
2835 default: {
2836 validated = FALSE;
2837 break;
2838 }
2839 }
2840
2841 if (necp_debug) {
2842 NECPLOG(LOG_DEBUG, "Policy condition type %d, valid %d", type, validated);
2843 }
2844
2845 return validated;
2846 }
2847
2848 static bool
necp_policy_route_rule_is_default(u_int8_t * __sized_by (length)buffer,u_int32_t length)2849 necp_policy_route_rule_is_default(u_int8_t * __sized_by(length)buffer, u_int32_t length)
2850 {
2851 return necp_policy_condition_get_value_length_from_buffer(buffer, length) == 0 &&
2852 necp_policy_condition_get_flags_from_buffer(buffer, length) == 0;
2853 }
2854
2855 static bool
necp_policy_route_rule_is_valid(u_int8_t * __sized_by (length)buffer,u_int32_t length)2856 necp_policy_route_rule_is_valid(u_int8_t * __sized_by(length)buffer, u_int32_t length)
2857 {
2858 bool validated = FALSE;
2859 u_int8_t type = necp_policy_condition_get_type_from_buffer(buffer, length);
2860 switch (type) {
2861 case NECP_ROUTE_RULE_ALLOW_INTERFACE: {
2862 validated = TRUE;
2863 break;
2864 }
2865 case NECP_ROUTE_RULE_DENY_INTERFACE: {
2866 validated = TRUE;
2867 break;
2868 }
2869 case NECP_ROUTE_RULE_DENY_INTERFACE_WITH_TYPE: {
2870 u_int32_t rule_length = necp_policy_condition_get_value_length_from_buffer(buffer, length);
2871 validated = (rule_length >= sizeof(u_int32_t));
2872 break;
2873 }
2874 case NECP_ROUTE_RULE_QOS_MARKING: {
2875 validated = TRUE;
2876 break;
2877 }
2878 case NECP_ROUTE_RULE_DENY_LQM_ABORT: {
2879 validated = TRUE;
2880 break;
2881 }
2882 case NECP_ROUTE_RULE_USE_NETAGENT:
2883 case NECP_ROUTE_RULE_REMOVE_NETAGENT: {
2884 u_int32_t rule_length = necp_policy_condition_get_value_length_from_buffer(buffer, length);
2885 validated = (rule_length >= sizeof(uuid_t));
2886 break;
2887 }
2888 case NECP_ROUTE_RULE_DIVERT_SOCKET: {
2889 u_int32_t rule_length = necp_policy_condition_get_value_length_from_buffer(buffer, length);
2890 validated = (rule_length >= sizeof(uint32_t));
2891 break;
2892 }
2893 default: {
2894 validated = FALSE;
2895 break;
2896 }
2897 }
2898
2899 if (necp_debug) {
2900 NECPLOG(LOG_DEBUG, "Policy route rule type %d, valid %d", type, validated);
2901 }
2902
2903 return validated;
2904 }
2905
2906 static int
necp_get_posix_error_for_necp_error(int response_error)2907 necp_get_posix_error_for_necp_error(int response_error)
2908 {
2909 switch (response_error) {
2910 case NECP_ERROR_UNKNOWN_PACKET_TYPE:
2911 case NECP_ERROR_INVALID_TLV:
2912 case NECP_ERROR_POLICY_RESULT_INVALID:
2913 case NECP_ERROR_POLICY_CONDITIONS_INVALID:
2914 case NECP_ERROR_ROUTE_RULES_INVALID: {
2915 return EINVAL;
2916 }
2917 case NECP_ERROR_POLICY_ID_NOT_FOUND: {
2918 return ENOENT;
2919 }
2920 case NECP_ERROR_INVALID_PROCESS: {
2921 return EPERM;
2922 }
2923 case NECP_ERROR_INTERNAL:
2924 default: {
2925 return ENOMEM;
2926 }
2927 }
2928 }
2929
2930 static necp_policy_id
necp_handle_policy_add(struct necp_session * session,u_int8_t * __sized_by (tlv_buffer_length)tlv_buffer,size_t tlv_buffer_length,int offset,int * return_error)2931 necp_handle_policy_add(struct necp_session *session,
2932 u_int8_t * __sized_by(tlv_buffer_length)tlv_buffer, size_t tlv_buffer_length, int offset, int *return_error)
2933 {
2934 bool has_default_condition = FALSE;
2935 bool has_non_default_condition = FALSE;
2936 bool has_application_condition = FALSE;
2937 bool has_real_application_condition = FALSE;
2938 bool requires_application_condition = FALSE;
2939 bool has_kernel_pid = FALSE;
2940 bool is_pass_skip = FALSE;
2941 u_int32_t conditions_array_size = 0;
2942 u_int8_t *conditions_array = NULL;
2943 int conditions_array_cursor;
2944
2945 bool has_default_route_rule = FALSE;
2946 u_int32_t route_rules_array_size = 0;
2947 u_int8_t *route_rules_array = NULL;
2948 int route_rules_array_cursor;
2949
2950 int cursor;
2951 int error = 0;
2952 u_int32_t response_error = NECP_ERROR_INTERNAL;
2953
2954 necp_policy_order order = 0;
2955 struct necp_session_policy *policy = NULL;
2956 u_int32_t policy_result_size = 0;
2957 u_int8_t *policy_result = NULL;
2958
2959 // Read policy order
2960 error = necp_get_tlv(tlv_buffer, tlv_buffer_length, offset, NECP_TLV_POLICY_ORDER, sizeof(order), &order, NULL);
2961 if (error) {
2962 NECPLOG(LOG_ERR, "Failed to get policy order: %d", error);
2963 response_error = NECP_ERROR_INVALID_TLV;
2964 goto fail;
2965 }
2966
2967 // Read policy result
2968 cursor = necp_find_tlv(tlv_buffer, tlv_buffer_length, offset, NECP_TLV_POLICY_RESULT, &error, 0);
2969 if (error || cursor < 0) {
2970 NECPLOG(LOG_ERR, "Failed to find policy result TLV: %d", error);
2971 response_error = NECP_ERROR_INVALID_TLV;
2972 goto fail;
2973 }
2974
2975 error = necp_get_tlv_at_offset(tlv_buffer, tlv_buffer_length, cursor, 0, NULL, &policy_result_size);
2976 if (error || policy_result_size == 0) {
2977 NECPLOG(LOG_ERR, "Failed to get policy result length: %d", error);
2978 response_error = NECP_ERROR_INVALID_TLV;
2979 goto fail;
2980 }
2981 if (policy_result_size > NECP_MAX_POLICY_RESULT_SIZE) {
2982 NECPLOG(LOG_ERR, "Policy result length too large: %u", policy_result_size);
2983 response_error = NECP_ERROR_INVALID_TLV;
2984 goto fail;
2985 }
2986 policy_result = (u_int8_t *)kalloc_data(policy_result_size, Z_WAITOK);
2987 if (policy_result == NULL) {
2988 NECPLOG(LOG_ERR, "Failed to allocate a policy result buffer (size %d)", policy_result_size);
2989 response_error = NECP_ERROR_INTERNAL;
2990 goto fail;
2991 }
2992 error = necp_get_tlv_at_offset(tlv_buffer, tlv_buffer_length, cursor, policy_result_size, policy_result, NULL);
2993 if (error) {
2994 NECPLOG(LOG_ERR, "Failed to get policy result: %d", error);
2995 response_error = NECP_ERROR_POLICY_RESULT_INVALID;
2996 goto fail;
2997 }
2998 if (!necp_policy_result_is_valid(policy_result, policy_result_size, &is_pass_skip)) {
2999 NECPLOG0(LOG_ERR, "Failed to validate policy result");
3000 response_error = NECP_ERROR_POLICY_RESULT_INVALID;
3001 goto fail;
3002 }
3003
3004 if (necp_policy_result_requires_route_rules(policy_result, policy_result_size)) {
3005 // Read route rules conditions
3006
3007 for (cursor = necp_find_tlv(tlv_buffer, tlv_buffer_length, offset, NECP_TLV_ROUTE_RULE, &error, 0);
3008 cursor >= 0;
3009 cursor = necp_find_tlv(tlv_buffer, tlv_buffer_length, cursor, NECP_TLV_ROUTE_RULE, &error, 1)) {
3010 u_int32_t route_rule_size = 0;
3011 necp_get_tlv_at_offset(tlv_buffer, tlv_buffer_length, cursor, 0, NULL, &route_rule_size);
3012 if (os_add_overflow(route_rules_array_size,
3013 (sizeof(u_int8_t) + sizeof(u_int32_t) + route_rule_size),
3014 &route_rules_array_size)) {
3015 NECPLOG0(LOG_ERR, "Route rules size overflowed, too large");
3016 response_error = NECP_ERROR_INVALID_TLV;
3017 goto fail;
3018 }
3019 }
3020
3021 if (route_rules_array_size == 0) {
3022 NECPLOG0(LOG_ERR, "Failed to get policy route rules");
3023 response_error = NECP_ERROR_INVALID_TLV;
3024 goto fail;
3025 }
3026 if (route_rules_array_size > NECP_MAX_ROUTE_RULES_ARRAY_SIZE) {
3027 NECPLOG(LOG_ERR, "Route rules length too large: %u", route_rules_array_size);
3028 response_error = NECP_ERROR_INVALID_TLV;
3029 goto fail;
3030 }
3031 route_rules_array = (u_int8_t *)kalloc_data(route_rules_array_size, Z_WAITOK);
3032 if (route_rules_array == NULL) {
3033 NECPLOG(LOG_ERR, "Failed to allocate a policy route rules array (size %d)", route_rules_array_size);
3034 response_error = NECP_ERROR_INTERNAL;
3035 goto fail;
3036 }
3037
3038 route_rules_array_cursor = 0;
3039 for (cursor = necp_find_tlv(tlv_buffer, tlv_buffer_length, offset, NECP_TLV_ROUTE_RULE, &error, 0);
3040 cursor >= 0;
3041 cursor = necp_find_tlv(tlv_buffer, tlv_buffer_length, cursor, NECP_TLV_ROUTE_RULE, &error, 1)) {
3042 u_int8_t route_rule_type = NECP_TLV_ROUTE_RULE;
3043 u_int32_t route_rule_size = 0;
3044 necp_get_tlv_at_offset(tlv_buffer, tlv_buffer_length, cursor, 0, NULL, &route_rule_size);
3045 if (route_rule_size > 0 &&
3046 (sizeof(route_rule_type) + sizeof(route_rule_size) + route_rule_size) <= (route_rules_array_size - route_rules_array_cursor)) {
3047 // Add type
3048 memcpy((route_rules_array + route_rules_array_cursor), &route_rule_type, sizeof(route_rule_type));
3049 route_rules_array_cursor += sizeof(route_rule_type);
3050
3051 // Add length
3052 memcpy((route_rules_array + route_rules_array_cursor), &route_rule_size, sizeof(route_rule_size));
3053 route_rules_array_cursor += sizeof(route_rule_size);
3054
3055 // Add value
3056 necp_get_tlv_at_offset(tlv_buffer, tlv_buffer_length, cursor, route_rule_size, (route_rules_array + route_rules_array_cursor), NULL);
3057
3058 if (!necp_policy_route_rule_is_valid((route_rules_array + route_rules_array_cursor), route_rule_size)) {
3059 NECPLOG0(LOG_ERR, "Failed to validate policy route rule");
3060 response_error = NECP_ERROR_ROUTE_RULES_INVALID;
3061 goto fail;
3062 }
3063
3064 if (necp_policy_route_rule_is_default((route_rules_array + route_rules_array_cursor), route_rule_size)) {
3065 if (has_default_route_rule) {
3066 NECPLOG0(LOG_ERR, "Failed to validate route rule; contained multiple default route rules");
3067 response_error = NECP_ERROR_ROUTE_RULES_INVALID;
3068 goto fail;
3069 }
3070 has_default_route_rule = TRUE;
3071 }
3072
3073 route_rules_array_cursor += route_rule_size;
3074 }
3075 }
3076 }
3077
3078 // Read policy conditions
3079 for (cursor = necp_find_tlv(tlv_buffer, tlv_buffer_length, offset, NECP_TLV_POLICY_CONDITION, &error, 0);
3080 cursor >= 0;
3081 cursor = necp_find_tlv(tlv_buffer, tlv_buffer_length, cursor, NECP_TLV_POLICY_CONDITION, &error, 1)) {
3082 u_int32_t condition_size = 0;
3083 necp_get_tlv_at_offset(tlv_buffer, tlv_buffer_length, cursor, 0, NULL, &condition_size);
3084
3085 if (condition_size > 0) {
3086 if (os_add_overflow(conditions_array_size,
3087 (sizeof(u_int8_t) + sizeof(u_int32_t) + condition_size),
3088 &conditions_array_size)) {
3089 NECPLOG0(LOG_ERR, "Conditions size overflowed, too large");
3090 response_error = NECP_ERROR_INVALID_TLV;
3091 goto fail;
3092 }
3093 }
3094 }
3095
3096 if (conditions_array_size == 0) {
3097 NECPLOG0(LOG_ERR, "Failed to get policy conditions");
3098 response_error = NECP_ERROR_INVALID_TLV;
3099 goto fail;
3100 }
3101 if (conditions_array_size > NECP_MAX_CONDITIONS_ARRAY_SIZE) {
3102 NECPLOG(LOG_ERR, "Conditions length too large: %u", conditions_array_size);
3103 response_error = NECP_ERROR_INVALID_TLV;
3104 goto fail;
3105 }
3106 conditions_array = (u_int8_t *)kalloc_data(conditions_array_size, Z_WAITOK);
3107 if (conditions_array == NULL) {
3108 NECPLOG(LOG_ERR, "Failed to allocate a policy conditions array (size %d)", conditions_array_size);
3109 response_error = NECP_ERROR_INTERNAL;
3110 goto fail;
3111 }
3112
3113 conditions_array_cursor = 0;
3114 for (cursor = necp_find_tlv(tlv_buffer, tlv_buffer_length, offset, NECP_TLV_POLICY_CONDITION, &error, 0);
3115 cursor >= 0;
3116 cursor = necp_find_tlv(tlv_buffer, tlv_buffer_length, cursor, NECP_TLV_POLICY_CONDITION, &error, 1)) {
3117 u_int8_t condition_type = NECP_TLV_POLICY_CONDITION;
3118 u_int32_t condition_size = 0;
3119 necp_get_tlv_at_offset(tlv_buffer, tlv_buffer_length, cursor, 0, NULL, &condition_size);
3120 if (condition_size > 0 &&
3121 (sizeof(condition_type) + sizeof(condition_size) + condition_size) <= (conditions_array_size - conditions_array_cursor)) {
3122 // Add type
3123 memcpy((conditions_array + conditions_array_cursor), &condition_type, sizeof(condition_type));
3124 conditions_array_cursor += sizeof(condition_type);
3125
3126 // Add length
3127 memcpy((conditions_array + conditions_array_cursor), &condition_size, sizeof(condition_size));
3128 conditions_array_cursor += sizeof(condition_size);
3129
3130 // Add value
3131 necp_get_tlv_at_offset(tlv_buffer, tlv_buffer_length, cursor, condition_size, (conditions_array + conditions_array_cursor), NULL);
3132 if (!necp_policy_condition_is_valid((conditions_array + conditions_array_cursor), condition_size, necp_policy_result_get_type_from_buffer(policy_result, policy_result_size))) {
3133 NECPLOG0(LOG_ERR, "Failed to validate policy condition");
3134 response_error = NECP_ERROR_POLICY_CONDITIONS_INVALID;
3135 goto fail;
3136 }
3137
3138 if (necp_policy_condition_is_default((conditions_array + conditions_array_cursor), condition_size)) {
3139 has_default_condition = TRUE;
3140 } else {
3141 has_non_default_condition = TRUE;
3142 }
3143 if (has_default_condition && has_non_default_condition) {
3144 NECPLOG0(LOG_ERR, "Failed to validate conditions; contained default and non-default conditions");
3145 response_error = NECP_ERROR_POLICY_CONDITIONS_INVALID;
3146 goto fail;
3147 }
3148
3149 if (necp_policy_condition_is_application((conditions_array + conditions_array_cursor), condition_size)) {
3150 has_application_condition = TRUE;
3151 }
3152
3153 if (necp_policy_condition_is_real_application((conditions_array + conditions_array_cursor), condition_size)) {
3154 has_real_application_condition = TRUE;
3155 }
3156
3157 if (necp_policy_condition_requires_application((conditions_array + conditions_array_cursor), condition_size)) {
3158 requires_application_condition = TRUE;
3159 }
3160
3161 if (necp_policy_condition_is_kernel_pid((conditions_array + conditions_array_cursor), condition_size)) {
3162 has_kernel_pid = TRUE;
3163 }
3164
3165 conditions_array_cursor += condition_size;
3166 }
3167 }
3168
3169 if (requires_application_condition && !has_application_condition) {
3170 NECPLOG0(LOG_ERR, "Failed to validate conditions; did not contain application condition");
3171 response_error = NECP_ERROR_POLICY_CONDITIONS_INVALID;
3172 goto fail;
3173 }
3174
3175 if (has_kernel_pid && !is_pass_skip) {
3176 NECPLOG0(LOG_ERR, "Failed to validate conditions; kernel pid (0) condition allows only Pass/Skip result");
3177 response_error = NECP_ERROR_POLICY_CONDITIONS_INVALID;
3178 goto fail;
3179 }
3180
3181 if ((policy = necp_policy_create(session, order, conditions_array, conditions_array_size, route_rules_array, route_rules_array_size, policy_result, policy_result_size)) == NULL) {
3182 response_error = NECP_ERROR_INTERNAL;
3183 goto fail;
3184 }
3185
3186 return policy->local_id;
3187
3188 fail:
3189 if (policy_result != NULL) {
3190 kfree_data_sized_by(policy_result, policy_result_size);
3191 }
3192 if (conditions_array != NULL) {
3193 kfree_data_sized_by(conditions_array, conditions_array_size);
3194 }
3195 if (route_rules_array != NULL) {
3196 kfree_data_sized_by(route_rules_array, route_rules_array_size);
3197 }
3198
3199 if (return_error != NULL) {
3200 *return_error = necp_get_posix_error_for_necp_error(response_error);
3201 }
3202 return 0;
3203 }
3204
3205 static necp_policy_id
necp_policy_get_new_id(struct necp_session * session)3206 necp_policy_get_new_id(struct necp_session *session)
3207 {
3208 session->last_policy_id++;
3209 if (session->last_policy_id < 1) {
3210 session->last_policy_id = 1;
3211 }
3212
3213 necp_policy_id newid = session->last_policy_id;
3214
3215 if (newid == 0) {
3216 NECPLOG0(LOG_ERR, "Allocate policy id failed.\n");
3217 return 0;
3218 }
3219
3220 return newid;
3221 }
3222
3223 /*
3224 * For the policy dump response this is the structure:
3225 *
3226 * <NECP_PACKET_HEADER>
3227 * {
3228 * type : NECP_TLV_POLICY_DUMP
3229 * length : ...
3230 * value :
3231 * {
3232 * {
3233 * type : NECP_TLV_POLICY_ID
3234 * len : ...
3235 * value : ...
3236 * }
3237 * {
3238 * type : NECP_TLV_POLICY_ORDER
3239 * len : ...
3240 * value : ...
3241 * }
3242 * {
3243 * type : NECP_TLV_POLICY_RESULT_STRING
3244 * len : ...
3245 * value : ...
3246 * }
3247 * {
3248 * type : NECP_TLV_POLICY_OWNER
3249 * len : ...
3250 * value : ...
3251 * }
3252 * {
3253 * type : NECP_TLV_POLICY_CONDITION
3254 * len : ...
3255 * value :
3256 * {
3257 * {
3258 * type : NECP_POLICY_CONDITION_ALL_INTERFACES
3259 * len : ...
3260 * value : ...
3261 * }
3262 * {
3263 * type : NECP_POLICY_CONDITION_BOUND_INTERFACES
3264 * len : ...
3265 * value : ...
3266 * }
3267 * ...
3268 * }
3269 * }
3270 * }
3271 * }
3272 * {
3273 * type : NECP_TLV_POLICY_DUMP
3274 * length : ...
3275 * value :
3276 * {
3277 * {
3278 * type : NECP_TLV_POLICY_ID
3279 * len : ...
3280 * value : ...
3281 * }
3282 * {
3283 * type : NECP_TLV_POLICY_ORDER
3284 * len : ...
3285 * value : ...
3286 * }
3287 * {
3288 * type : NECP_TLV_POLICY_RESULT_STRING
3289 * len : ...
3290 * value : ...
3291 * }
3292 * {
3293 * type : NECP_TLV_POLICY_OWNER
3294 * len : ...
3295 * value : ...
3296 * }
3297 * {
3298 * type : NECP_TLV_POLICY_CONDITION
3299 * len : ...
3300 * value :
3301 * {
3302 * {
3303 * type : NECP_POLICY_CONDITION_ALL_INTERFACES
3304 * len : ...
3305 * value : ...
3306 * }
3307 * {
3308 * type : NECP_POLICY_CONDITION_BOUND_INTERFACES
3309 * len : ...
3310 * value : ...
3311 * }
3312 * ...
3313 * }
3314 * }
3315 * }
3316 * }
3317 * ...
3318 */
3319 static int
necp_handle_policy_dump_all(user_addr_t out_buffer,size_t out_buffer_length)3320 necp_handle_policy_dump_all(user_addr_t out_buffer, size_t out_buffer_length)
3321 {
3322 struct necp_kernel_socket_policy * __single policy = NULL;
3323 int policy_i;
3324 int policy_count = 0;
3325 u_int8_t * __indexable * __indexable tlv_buffer_pointers = NULL;
3326 u_int32_t * __indexable tlv_buffer_lengths = NULL;
3327 u_int32_t total_tlv_len = 0;
3328 u_int8_t * __indexable result_buf = NULL;
3329 u_int8_t *result_buf_cursor = result_buf;
3330 char result_string[MAX_RESULT_STRING_LEN];
3331 char proc_name_string[MAXCOMLEN + 1];
3332
3333 int error_code = 0;
3334 bool error_occured = false;
3335 u_int32_t response_error = NECP_ERROR_INTERNAL;
3336
3337 #define REPORT_ERROR(error) error_occured = true; \
3338 response_error = error; \
3339 goto done
3340
3341 #define UNLOCK_AND_REPORT_ERROR(lock, error) lck_rw_done(lock); \
3342 REPORT_ERROR(error)
3343
3344 errno_t cred_result = priv_check_cred(kauth_cred_get(), PRIV_NET_PRIVILEGED_NECP_POLICIES, 0);
3345 if (cred_result != 0) {
3346 NECPLOG0(LOG_ERR, "Session does not hold the necessary entitlement to get Network Extension Policy information");
3347 REPORT_ERROR(NECP_ERROR_INTERNAL);
3348 }
3349
3350 // LOCK
3351 lck_rw_lock_shared(&necp_kernel_policy_lock);
3352
3353 if (necp_debug) {
3354 NECPLOG0(LOG_DEBUG, "Gathering policies");
3355 }
3356
3357 policy_count = necp_kernel_application_policies_count;
3358
3359 tlv_buffer_pointers = kalloc_type(u_int8_t * __indexable, policy_count, M_WAITOK | Z_ZERO);
3360 if (tlv_buffer_pointers == NULL) {
3361 NECPLOG(LOG_DEBUG, "Failed to allocate tlv_buffer_pointers (%lu bytes)", sizeof(u_int8_t *) * policy_count);
3362 UNLOCK_AND_REPORT_ERROR(&necp_kernel_policy_lock, NECP_ERROR_INTERNAL);
3363 }
3364
3365 tlv_buffer_lengths = (u_int32_t *)kalloc_data(sizeof(u_int32_t) * policy_count, Z_NOWAIT | Z_ZERO);
3366 if (tlv_buffer_lengths == NULL) {
3367 NECPLOG(LOG_DEBUG, "Failed to allocate tlv_buffer_lengths (%lu bytes)", sizeof(u_int32_t) * policy_count);
3368 UNLOCK_AND_REPORT_ERROR(&necp_kernel_policy_lock, NECP_ERROR_INTERNAL);
3369 }
3370
3371 for (policy_i = 0; necp_kernel_socket_policies_app_layer_map != NULL && necp_kernel_socket_policies_app_layer_map[policy_i] != NULL; policy_i++) {
3372 policy = necp_kernel_socket_policies_app_layer_map[policy_i];
3373
3374 memset(result_string, 0, MAX_RESULT_STRING_LEN);
3375 memset(proc_name_string, 0, MAXCOMLEN + 1);
3376
3377 necp_get_result_description(result_string, policy->result, policy->result_parameter);
3378 proc_name(policy->session_pid, proc_name_string, MAXCOMLEN);
3379
3380 u_int16_t proc_name_len = strbuflen(proc_name_string, sizeof(proc_name_string) - 1) + 1;
3381 u_int16_t result_string_len = strbuflen(result_string, sizeof(result_string) - 1) + 1;
3382
3383 if (necp_debug) {
3384 NECPLOG(LOG_DEBUG, "Policy: process: %s, result: %s", proc_name_string, result_string);
3385 }
3386
3387 u_int32_t total_allocated_bytes = sizeof(u_int8_t) + sizeof(u_int32_t) + sizeof(policy->id) + // NECP_TLV_POLICY_ID
3388 sizeof(u_int8_t) + sizeof(u_int32_t) + sizeof(policy->order) + // NECP_TLV_POLICY_ORDER
3389 sizeof(u_int8_t) + sizeof(u_int32_t) + sizeof(policy->session_order) + // NECP_TLV_POLICY_SESSION_ORDER
3390 sizeof(u_int8_t) + sizeof(u_int32_t) + result_string_len + // NECP_TLV_POLICY_RESULT_STRING
3391 sizeof(u_int8_t) + sizeof(u_int32_t) + proc_name_len + // NECP_TLV_POLICY_OWNER
3392 sizeof(u_int8_t) + sizeof(u_int32_t); // NECP_TLV_POLICY_CONDITION
3393
3394 // We now traverse the condition_mask to see how much space we need to allocate
3395 u_int64_t condition_mask = policy->condition_mask;
3396 u_int64_t condition_negated_mask = policy->condition_negated_mask;
3397 u_int8_t num_conditions = 0;
3398 struct necp_string_id_mapping *account_id_entry = NULL;
3399 char if_name[IFXNAMSIZ];
3400 u_int32_t condition_tlv_length = 0;
3401 memset(if_name, 0, sizeof(if_name));
3402
3403 if (condition_mask == NECP_POLICY_CONDITION_DEFAULT) {
3404 num_conditions++;
3405 } else {
3406 if (condition_mask & NECP_KERNEL_CONDITION_ALL_INTERFACES) {
3407 num_conditions++;
3408 }
3409 if (condition_mask & NECP_KERNEL_CONDITION_HAS_CLIENT) {
3410 num_conditions++;
3411 }
3412 if (condition_mask & NECP_KERNEL_CONDITION_BOUND_INTERFACE) {
3413 snprintf(if_name, IFXNAMSIZ, "%s%d", ifnet_name(policy->cond_bound_interface), ifnet_unit(policy->cond_bound_interface));
3414 condition_tlv_length += strbuflen(if_name, sizeof(if_name) - 1) + 1;
3415 num_conditions++;
3416 }
3417 if (condition_mask & NECP_KERNEL_CONDITION_PROTOCOL) {
3418 condition_tlv_length += sizeof(policy->cond_protocol);
3419 num_conditions++;
3420 }
3421 if (condition_mask & NECP_KERNEL_CONDITION_APP_ID) {
3422 condition_tlv_length += sizeof(uuid_t);
3423 num_conditions++;
3424 }
3425 if (condition_mask & NECP_KERNEL_CONDITION_REAL_APP_ID) {
3426 condition_tlv_length += sizeof(uuid_t);
3427 num_conditions++;
3428 }
3429 if ((condition_mask & NECP_KERNEL_CONDITION_DOMAIN) ||
3430 (condition_mask & NECP_KERNEL_CONDITION_EXACT_DOMAIN)) {
3431 u_int32_t domain_len = strlen(policy->cond_domain) + 1;
3432 condition_tlv_length += domain_len;
3433 num_conditions++;
3434 }
3435 if (condition_mask & NECP_KERNEL_CONDITION_DOMAIN_FILTER) {
3436 condition_tlv_length += sizeof(u_int32_t);
3437 num_conditions++;
3438 }
3439 if (condition_mask & NECP_KERNEL_CONDITION_URL) {
3440 u_int32_t url_len = strlen(policy->cond_url) + 1;
3441 condition_tlv_length += url_len;
3442 num_conditions++;
3443 }
3444 if (condition_mask & NECP_KERNEL_CONDITION_ACCOUNT_ID) {
3445 account_id_entry = necp_lookup_string_with_id_locked(&necp_account_id_list, policy->cond_account_id);
3446 u_int32_t account_id_len = 0;
3447 if (account_id_entry) {
3448 account_id_len = account_id_entry->string ? strlen(account_id_entry->string) + 1 : 0;
3449 }
3450 condition_tlv_length += account_id_len;
3451 num_conditions++;
3452 }
3453 if (condition_mask & NECP_KERNEL_CONDITION_PID) {
3454 condition_tlv_length += (sizeof(pid_t) + sizeof(int32_t));
3455 num_conditions++;
3456 }
3457 if (condition_mask & NECP_KERNEL_CONDITION_UID) {
3458 condition_tlv_length += sizeof(uid_t);
3459 num_conditions++;
3460 }
3461 if (condition_mask & NECP_KERNEL_CONDITION_REAL_UID) {
3462 condition_tlv_length += sizeof(uid_t);
3463 num_conditions++;
3464 }
3465 if (condition_mask & NECP_KERNEL_CONDITION_TRAFFIC_CLASS) {
3466 condition_tlv_length += sizeof(struct necp_policy_condition_tc_range);
3467 num_conditions++;
3468 }
3469 if (condition_mask & NECP_KERNEL_CONDITION_ENTITLEMENT) {
3470 num_conditions++;
3471 }
3472 if (condition_mask & NECP_KERNEL_CONDITION_CUSTOM_ENTITLEMENT) {
3473 u_int32_t entitlement_len = strlen(policy->cond_custom_entitlement) + 1;
3474 condition_tlv_length += entitlement_len;
3475 num_conditions++;
3476 }
3477 if (condition_mask & NECP_KERNEL_CONDITION_PLATFORM_BINARY) {
3478 num_conditions++;
3479 }
3480 if (condition_mask & NECP_KERNEL_CONDITION_SYSTEM_SIGNED_RESULT) {
3481 num_conditions++;
3482 }
3483 if (condition_mask & NECP_KERNEL_CONDITION_SDK_VERSION) {
3484 condition_tlv_length += sizeof(struct necp_policy_condition_sdk_version);
3485 num_conditions++;
3486 }
3487 if (condition_mask & NECP_KERNEL_CONDITION_LOCAL_NETWORKS) {
3488 condition_tlv_length += sizeof(policy->cond_local_networks_flags);
3489 num_conditions++;
3490 }
3491 if (condition_mask & NECP_KERNEL_CONDITION_LOCAL_START) {
3492 if (condition_mask & NECP_KERNEL_CONDITION_LOCAL_END) {
3493 condition_tlv_length += sizeof(struct necp_policy_condition_addr_range);
3494 } else {
3495 condition_tlv_length += sizeof(struct necp_policy_condition_addr);
3496 }
3497 num_conditions++;
3498 }
3499 if (condition_mask & NECP_KERNEL_CONDITION_REMOTE_START) {
3500 if (condition_mask & NECP_KERNEL_CONDITION_REMOTE_END) {
3501 condition_tlv_length += sizeof(struct necp_policy_condition_addr_range);
3502 } else {
3503 condition_tlv_length += sizeof(struct necp_policy_condition_addr);
3504 }
3505 num_conditions++;
3506 }
3507 if (condition_mask & NECP_KERNEL_CONDITION_AGENT_TYPE) {
3508 condition_tlv_length += sizeof(struct necp_policy_condition_agent_type);
3509 num_conditions++;
3510 }
3511 if (condition_mask & NECP_KERNEL_CONDITION_CLIENT_FLAGS) {
3512 condition_tlv_length += sizeof(u_int32_t);
3513 num_conditions++;
3514 }
3515 if (condition_mask & NECP_KERNEL_CONDITION_LOCAL_EMPTY) {
3516 num_conditions++;
3517 }
3518 if (condition_mask & NECP_KERNEL_CONDITION_REMOTE_EMPTY) {
3519 num_conditions++;
3520 }
3521 if (condition_mask & NECP_KERNEL_CONDITION_SIGNING_IDENTIFIER) {
3522 u_int32_t identifier_len = strlen(policy->cond_signing_identifier) + 1;
3523 condition_tlv_length += identifier_len;
3524 num_conditions++;
3525 }
3526 if (condition_mask & NECP_KERNEL_CONDITION_PACKET_FILTER_TAGS) {
3527 condition_tlv_length += sizeof(u_int16_t);
3528 num_conditions++;
3529 }
3530 if (condition_mask & NECP_KERNEL_CONDITION_IS_LOOPBACK) {
3531 num_conditions++;
3532 }
3533 if (condition_mask & NECP_KERNEL_CONDITION_DELEGATE_IS_PLATFORM_BINARY) {
3534 num_conditions++;
3535 }
3536 if (condition_mask & NECP_KERNEL_CONDITION_SCHEME_PORT) {
3537 condition_tlv_length += sizeof(u_int16_t);
3538 num_conditions++;
3539 }
3540 if (condition_mask & NECP_KERNEL_CONDITION_BOUND_INTERFACE_FLAGS) {
3541 condition_tlv_length += (sizeof(u_int32_t) * NECP_POLICY_CONDITION_BOUND_INTERFACE_FLAGS_IDX_MAX);
3542 num_conditions++;
3543 }
3544 }
3545
3546 // These are for the condition TLVs (id, length, flags). The space for "value" is already accounted for above.
3547 condition_tlv_length += num_conditions * (sizeof(u_int8_t) + sizeof(u_int32_t) + sizeof(u_int8_t));
3548 total_allocated_bytes += condition_tlv_length;
3549
3550 u_int8_t * __indexable tlv_buffer;
3551 tlv_buffer = (u_int8_t *)kalloc_data(total_allocated_bytes, Z_NOWAIT | Z_ZERO);
3552 if (tlv_buffer == NULL) {
3553 NECPLOG(LOG_DEBUG, "Failed to allocate tlv_buffer (%u bytes)", total_allocated_bytes);
3554 continue;
3555 }
3556
3557 u_int8_t *cursor = tlv_buffer;
3558 cursor = necp_buffer_write_tlv(cursor, NECP_TLV_POLICY_ID, sizeof(policy->id), &policy->id, tlv_buffer, total_allocated_bytes);
3559 cursor = necp_buffer_write_tlv(cursor, NECP_TLV_POLICY_ORDER, sizeof(necp_policy_order), &policy->order, tlv_buffer, total_allocated_bytes);
3560 cursor = necp_buffer_write_tlv(cursor, NECP_TLV_POLICY_SESSION_ORDER, sizeof(policy->session_order), &policy->session_order, tlv_buffer, total_allocated_bytes);
3561 cursor = necp_buffer_write_tlv(cursor, NECP_TLV_POLICY_RESULT_STRING, result_string_len, result_string, tlv_buffer, total_allocated_bytes);
3562 cursor = necp_buffer_write_tlv(cursor, NECP_TLV_POLICY_OWNER, proc_name_len, proc_name_string, tlv_buffer, total_allocated_bytes);
3563
3564 #define N_QUICK 256
3565 u_int8_t q_cond_buf[N_QUICK]; // Minor optimization
3566
3567 u_int8_t * __indexable cond_buf; // To be used for condition TLVs
3568 if (condition_tlv_length <= N_QUICK) {
3569 cond_buf = q_cond_buf;
3570 } else {
3571 cond_buf = (u_int8_t *)kalloc_data(condition_tlv_length, Z_NOWAIT);
3572 if (cond_buf == NULL) {
3573 NECPLOG(LOG_DEBUG, "Failed to allocate cond_buffer (%u bytes)", condition_tlv_length);
3574 kfree_data(tlv_buffer, total_allocated_bytes);
3575 continue;
3576 }
3577 }
3578
3579 memset(cond_buf, 0, condition_tlv_length);
3580 u_int8_t *cond_buf_cursor = cond_buf;
3581 u_int8_t cond_flags = 0;
3582 if (condition_mask == NECP_POLICY_CONDITION_DEFAULT) {
3583 cond_buf_cursor = necp_buffer_write_tlv_with_flags(cond_buf_cursor, NECP_POLICY_CONDITION_DEFAULT, cond_flags, 0, "", cond_buf, condition_tlv_length);
3584 } else {
3585 if (condition_mask & NECP_KERNEL_CONDITION_ALL_INTERFACES) {
3586 cond_flags = (condition_negated_mask & NECP_KERNEL_CONDITION_ALL_INTERFACES) ? NECP_POLICY_CONDITION_FLAGS_NEGATIVE : 0;
3587 cond_buf_cursor = necp_buffer_write_tlv_with_flags(cond_buf_cursor, NECP_POLICY_CONDITION_ALL_INTERFACES, cond_flags, 0, "", cond_buf, condition_tlv_length);
3588 }
3589 if (condition_mask & NECP_KERNEL_CONDITION_HAS_CLIENT) {
3590 cond_flags = (condition_negated_mask & NECP_KERNEL_CONDITION_HAS_CLIENT) ? NECP_POLICY_CONDITION_FLAGS_NEGATIVE : 0;
3591 cond_buf_cursor = necp_buffer_write_tlv_with_flags(cond_buf_cursor, NECP_POLICY_CONDITION_HAS_CLIENT, cond_flags, 0, "", cond_buf, condition_tlv_length);
3592 }
3593 if (condition_mask & NECP_KERNEL_CONDITION_LOCAL_NETWORKS) {
3594 cond_flags = (condition_negated_mask & NECP_KERNEL_CONDITION_LOCAL_NETWORKS) ? NECP_POLICY_CONDITION_FLAGS_NEGATIVE : 0;
3595 cond_buf_cursor = necp_buffer_write_tlv_with_flags(cond_buf_cursor, NECP_POLICY_CONDITION_LOCAL_NETWORKS, cond_flags, sizeof(policy->cond_local_networks_flags), &policy->cond_local_networks_flags, cond_buf, condition_tlv_length);
3596 }
3597 if (condition_mask & NECP_KERNEL_CONDITION_BOUND_INTERFACE) {
3598 cond_flags = (condition_negated_mask & NECP_KERNEL_CONDITION_BOUND_INTERFACE) ? NECP_POLICY_CONDITION_FLAGS_NEGATIVE : 0;
3599 cond_buf_cursor = necp_buffer_write_tlv_with_flags(cond_buf_cursor, NECP_POLICY_CONDITION_BOUND_INTERFACE, cond_flags, strbuflen(if_name, sizeof(if_name) - 1) + 1,
3600 if_name, cond_buf, condition_tlv_length);
3601 }
3602 if (condition_mask & NECP_KERNEL_CONDITION_PROTOCOL) {
3603 cond_flags = (condition_negated_mask & NECP_KERNEL_CONDITION_PROTOCOL) ? NECP_POLICY_CONDITION_FLAGS_NEGATIVE : 0;
3604 cond_buf_cursor = necp_buffer_write_tlv_with_flags(cond_buf_cursor, NECP_POLICY_CONDITION_IP_PROTOCOL, cond_flags, sizeof(policy->cond_protocol), &policy->cond_protocol,
3605 cond_buf, condition_tlv_length);
3606 }
3607 if (condition_mask & NECP_KERNEL_CONDITION_APP_ID) {
3608 cond_flags = (condition_negated_mask & NECP_KERNEL_CONDITION_APP_ID) ? NECP_POLICY_CONDITION_FLAGS_NEGATIVE : 0;
3609 struct necp_uuid_id_mapping *entry = necp_uuid_lookup_uuid_with_app_id_locked(policy->cond_app_id);
3610 if (entry != NULL) {
3611 cond_buf_cursor = necp_buffer_write_tlv_with_flags(cond_buf_cursor, NECP_POLICY_CONDITION_APPLICATION, cond_flags, sizeof(entry->uuid), entry->uuid,
3612 cond_buf, condition_tlv_length);
3613 }
3614 }
3615 if (condition_mask & NECP_KERNEL_CONDITION_REAL_APP_ID) {
3616 cond_flags = (condition_negated_mask & NECP_KERNEL_CONDITION_REAL_APP_ID) ? NECP_POLICY_CONDITION_FLAGS_NEGATIVE : 0;
3617 struct necp_uuid_id_mapping *entry = necp_uuid_lookup_uuid_with_app_id_locked(policy->cond_real_app_id);
3618 if (entry != NULL) {
3619 cond_buf_cursor = necp_buffer_write_tlv_with_flags(cond_buf_cursor, NECP_POLICY_CONDITION_REAL_APPLICATION, cond_flags, sizeof(entry->uuid), entry->uuid,
3620 cond_buf, condition_tlv_length);
3621 }
3622 }
3623 if ((condition_mask & NECP_KERNEL_CONDITION_DOMAIN) ||
3624 (condition_mask & NECP_KERNEL_CONDITION_EXACT_DOMAIN)) {
3625 cond_flags = ((condition_negated_mask & NECP_KERNEL_CONDITION_DOMAIN) || (condition_negated_mask & NECP_KERNEL_CONDITION_EXACT_DOMAIN)) ? NECP_POLICY_CONDITION_FLAGS_NEGATIVE : 0;
3626 cond_buf_cursor = necp_buffer_write_tlv_with_flags(cond_buf_cursor, NECP_POLICY_CONDITION_DOMAIN, cond_flags, strlen(policy->cond_domain) + 1, __unsafe_null_terminated_to_indexable(policy->cond_domain), cond_buf, condition_tlv_length);
3627 }
3628 if (condition_mask & NECP_KERNEL_CONDITION_DOMAIN_FILTER) {
3629 cond_flags = (condition_negated_mask & NECP_KERNEL_CONDITION_DOMAIN_FILTER) ? NECP_POLICY_CONDITION_FLAGS_NEGATIVE : 0;
3630 cond_buf_cursor = necp_buffer_write_tlv_with_flags(cond_buf_cursor, NECP_POLICY_CONDITION_DOMAIN_FILTER, cond_flags, sizeof(policy->cond_domain_filter), &policy->cond_domain_filter,
3631 cond_buf, condition_tlv_length);
3632 }
3633 if (condition_mask & NECP_KERNEL_CONDITION_URL) {
3634 cond_flags = (condition_negated_mask & NECP_KERNEL_CONDITION_URL) ? NECP_POLICY_CONDITION_FLAGS_NEGATIVE : 0;
3635 cond_buf_cursor = necp_buffer_write_tlv_with_flags(cond_buf_cursor, NECP_POLICY_CONDITION_URL, cond_flags, strlen(policy->cond_url) + 1, __unsafe_null_terminated_to_indexable(policy->cond_url), cond_buf, condition_tlv_length);
3636 }
3637 if (condition_mask & NECP_KERNEL_CONDITION_ACCOUNT_ID) {
3638 cond_flags = (condition_negated_mask & NECP_KERNEL_CONDITION_ACCOUNT_ID) ? NECP_POLICY_CONDITION_FLAGS_NEGATIVE : 0;
3639 if (account_id_entry != NULL) {
3640 cond_buf_cursor = necp_buffer_write_tlv_with_flags(cond_buf_cursor, NECP_POLICY_CONDITION_ACCOUNT, cond_flags, strlen(account_id_entry->string) + 1, __unsafe_null_terminated_to_indexable(account_id_entry->string), cond_buf, condition_tlv_length);
3641 }
3642 }
3643 if (condition_mask & NECP_KERNEL_CONDITION_PID) {
3644 cond_flags = (condition_negated_mask & NECP_KERNEL_CONDITION_PID) ? NECP_POLICY_CONDITION_FLAGS_NEGATIVE : 0;
3645 uint8_t pid_buffer[sizeof(policy->cond_pid) + sizeof(policy->cond_pid_version)] = { };
3646 memcpy(pid_buffer, &policy->cond_pid, sizeof(policy->cond_pid));
3647 memcpy(pid_buffer + sizeof(policy->cond_pid), &policy->cond_pid_version, sizeof(policy->cond_pid_version));
3648 cond_buf_cursor = necp_buffer_write_tlv_with_flags(cond_buf_cursor, NECP_POLICY_CONDITION_PID, cond_flags, sizeof(pid_buffer), &pid_buffer,
3649 cond_buf, condition_tlv_length);
3650 }
3651 if (condition_mask & NECP_KERNEL_CONDITION_UID) {
3652 cond_flags = (condition_negated_mask & NECP_KERNEL_CONDITION_UID) ? NECP_POLICY_CONDITION_FLAGS_NEGATIVE : 0;
3653 cond_buf_cursor = necp_buffer_write_tlv_with_flags(cond_buf_cursor, NECP_POLICY_CONDITION_UID, cond_flags, sizeof(policy->cond_uid), &policy->cond_uid,
3654 cond_buf, condition_tlv_length);
3655 }
3656 if (condition_mask & NECP_KERNEL_CONDITION_REAL_UID) {
3657 cond_flags = (condition_negated_mask & NECP_KERNEL_CONDITION_REAL_UID) ? NECP_POLICY_CONDITION_FLAGS_NEGATIVE : 0;
3658 cond_buf_cursor = necp_buffer_write_tlv_with_flags(cond_buf_cursor, NECP_POLICY_CONDITION_REAL_UID, cond_flags, sizeof(policy->cond_real_uid), &policy->cond_real_uid,
3659 cond_buf, condition_tlv_length);
3660 }
3661 if (condition_mask & NECP_KERNEL_CONDITION_TRAFFIC_CLASS) {
3662 cond_flags = (condition_negated_mask & NECP_KERNEL_CONDITION_TRAFFIC_CLASS) ? NECP_POLICY_CONDITION_FLAGS_NEGATIVE : 0;
3663 cond_buf_cursor = necp_buffer_write_tlv_with_flags(cond_buf_cursor, NECP_POLICY_CONDITION_TRAFFIC_CLASS, cond_flags, sizeof(policy->cond_traffic_class), &policy->cond_traffic_class,
3664 cond_buf, condition_tlv_length);
3665 }
3666 if (condition_mask & NECP_KERNEL_CONDITION_ENTITLEMENT) {
3667 cond_flags = (condition_negated_mask & NECP_KERNEL_CONDITION_ENTITLEMENT) ? NECP_POLICY_CONDITION_FLAGS_NEGATIVE : 0;
3668 cond_buf_cursor = necp_buffer_write_tlv_with_flags(cond_buf_cursor, NECP_POLICY_CONDITION_ENTITLEMENT, cond_flags, 0, "",
3669 cond_buf, condition_tlv_length);
3670 }
3671 if (condition_mask & NECP_KERNEL_CONDITION_CUSTOM_ENTITLEMENT) {
3672 cond_flags = (condition_negated_mask & NECP_KERNEL_CONDITION_CUSTOM_ENTITLEMENT) ? NECP_POLICY_CONDITION_FLAGS_NEGATIVE : 0;
3673 cond_buf_cursor = necp_buffer_write_tlv_with_flags(cond_buf_cursor, NECP_POLICY_CONDITION_ENTITLEMENT, cond_flags, strlen(policy->cond_custom_entitlement) + 1, __unsafe_null_terminated_to_indexable(policy->cond_custom_entitlement), cond_buf, condition_tlv_length);
3674 }
3675 if (condition_mask & NECP_KERNEL_CONDITION_PLATFORM_BINARY) {
3676 cond_flags = (condition_negated_mask & NECP_KERNEL_CONDITION_PLATFORM_BINARY) ? NECP_POLICY_CONDITION_FLAGS_NEGATIVE : 0;
3677 cond_buf_cursor = necp_buffer_write_tlv_with_flags(cond_buf_cursor, NECP_POLICY_CONDITION_PLATFORM_BINARY, cond_flags, 0, "", cond_buf, condition_tlv_length);
3678 }
3679 if (condition_mask & NECP_KERNEL_CONDITION_SYSTEM_SIGNED_RESULT) {
3680 cond_flags = (condition_negated_mask & NECP_KERNEL_CONDITION_SYSTEM_SIGNED_RESULT) ? NECP_POLICY_CONDITION_FLAGS_NEGATIVE : 0;
3681 cond_buf_cursor = necp_buffer_write_tlv_with_flags(cond_buf_cursor, NECP_POLICY_CONDITION_SYSTEM_SIGNED_RESULT, cond_flags, 0, "", cond_buf, condition_tlv_length);
3682 }
3683 if (condition_mask & NECP_KERNEL_CONDITION_SDK_VERSION) {
3684 cond_flags = (condition_negated_mask & NECP_KERNEL_CONDITION_SDK_VERSION) ? NECP_POLICY_CONDITION_FLAGS_NEGATIVE : 0;
3685 cond_buf_cursor = necp_buffer_write_tlv_with_flags(cond_buf_cursor, NECP_POLICY_CONDITION_SDK_VERSION, cond_flags,
3686 sizeof(policy->cond_sdk_version), &policy->cond_sdk_version,
3687 cond_buf, condition_tlv_length);
3688 }
3689 if (condition_mask & NECP_KERNEL_CONDITION_LOCAL_START) {
3690 cond_flags = (condition_negated_mask & NECP_KERNEL_CONDITION_LOCAL_START) ? NECP_POLICY_CONDITION_FLAGS_NEGATIVE : 0;
3691 if (condition_mask & NECP_KERNEL_CONDITION_LOCAL_END) {
3692 struct necp_policy_condition_addr_range range;
3693 memcpy(&range.start_address, &policy->cond_local_start, sizeof(policy->cond_local_start));
3694 memcpy(&range.end_address, &policy->cond_local_end, sizeof(policy->cond_local_end));
3695 cond_buf_cursor = necp_buffer_write_tlv_with_flags(cond_buf_cursor, NECP_POLICY_CONDITION_LOCAL_ADDR_RANGE, cond_flags, sizeof(range), &range,
3696 cond_buf, condition_tlv_length);
3697 } else {
3698 struct necp_policy_condition_addr addr;
3699 addr.prefix = policy->cond_local_prefix;
3700 memcpy(&addr.address, &policy->cond_local_start, sizeof(policy->cond_local_start));
3701 cond_buf_cursor = necp_buffer_write_tlv_with_flags(cond_buf_cursor, NECP_POLICY_CONDITION_LOCAL_ADDR, cond_flags, sizeof(addr), &addr,
3702 cond_buf, condition_tlv_length);
3703 }
3704 }
3705 if (condition_mask & NECP_KERNEL_CONDITION_REMOTE_START) {
3706 cond_flags = (condition_negated_mask & NECP_KERNEL_CONDITION_REMOTE_START) ? NECP_POLICY_CONDITION_FLAGS_NEGATIVE : 0;
3707 if (condition_mask & NECP_KERNEL_CONDITION_REMOTE_END) {
3708 struct necp_policy_condition_addr_range range;
3709 memcpy(&range.start_address, &policy->cond_remote_start, sizeof(policy->cond_remote_start));
3710 memcpy(&range.end_address, &policy->cond_remote_end, sizeof(policy->cond_remote_end));
3711 cond_buf_cursor = necp_buffer_write_tlv_with_flags(cond_buf_cursor, NECP_POLICY_CONDITION_REMOTE_ADDR_RANGE, cond_flags, sizeof(range), &range,
3712 cond_buf, condition_tlv_length);
3713 } else {
3714 struct necp_policy_condition_addr addr;
3715 addr.prefix = policy->cond_remote_prefix;
3716 memcpy(&addr.address, &policy->cond_remote_start, sizeof(policy->cond_remote_start));
3717 cond_buf_cursor = necp_buffer_write_tlv_with_flags(cond_buf_cursor, NECP_POLICY_CONDITION_REMOTE_ADDR, cond_flags, sizeof(addr), &addr,
3718 cond_buf, condition_tlv_length);
3719 }
3720 }
3721 if (condition_mask & NECP_KERNEL_CONDITION_AGENT_TYPE) {
3722 cond_flags = (condition_negated_mask & NECP_KERNEL_CONDITION_AGENT_TYPE) ? NECP_POLICY_CONDITION_FLAGS_NEGATIVE : 0;
3723 cond_buf_cursor = necp_buffer_write_tlv_with_flags(cond_buf_cursor, NECP_POLICY_CONDITION_AGENT_TYPE, cond_flags,
3724 sizeof(policy->cond_agent_type), &policy->cond_agent_type,
3725 cond_buf, condition_tlv_length);
3726 }
3727 if (condition_mask & NECP_KERNEL_CONDITION_CLIENT_FLAGS) {
3728 cond_flags = (condition_negated_mask & NECP_KERNEL_CONDITION_CLIENT_FLAGS) ? NECP_POLICY_CONDITION_FLAGS_NEGATIVE : 0;
3729 cond_buf_cursor = necp_buffer_write_tlv_with_flags(cond_buf_cursor, NECP_POLICY_CONDITION_CLIENT_FLAGS, cond_flags, sizeof(policy->cond_client_flags), &policy->cond_client_flags, cond_buf, condition_tlv_length);
3730 }
3731 if (condition_mask & NECP_KERNEL_CONDITION_LOCAL_EMPTY) {
3732 cond_flags = (condition_negated_mask & NECP_KERNEL_CONDITION_LOCAL_EMPTY) ? NECP_POLICY_CONDITION_FLAGS_NEGATIVE : 0;
3733 cond_buf_cursor = necp_buffer_write_tlv_with_flags(cond_buf_cursor, NECP_POLICY_CONDITION_FLOW_LOCAL_ADDR_EMPTY, cond_flags, 0, "", cond_buf, condition_tlv_length);
3734 }
3735 if (condition_mask & NECP_KERNEL_CONDITION_REMOTE_EMPTY) {
3736 cond_flags = (condition_negated_mask & NECP_KERNEL_CONDITION_REMOTE_EMPTY) ? NECP_POLICY_CONDITION_FLAGS_NEGATIVE : 0;
3737 cond_buf_cursor = necp_buffer_write_tlv_with_flags(cond_buf_cursor, NECP_POLICY_CONDITION_FLOW_REMOTE_ADDR_EMPTY, cond_flags, 0, "", cond_buf, condition_tlv_length);
3738 }
3739 if (condition_mask & NECP_KERNEL_CONDITION_SIGNING_IDENTIFIER) {
3740 cond_flags = (condition_negated_mask & NECP_KERNEL_CONDITION_SIGNING_IDENTIFIER) ? NECP_POLICY_CONDITION_FLAGS_NEGATIVE : 0;
3741 cond_buf_cursor = necp_buffer_write_tlv_with_flags(cond_buf_cursor, NECP_POLICY_CONDITION_SIGNING_IDENTIFIER, cond_flags, strlen(policy->cond_signing_identifier) + 1, __unsafe_null_terminated_to_indexable(policy->cond_signing_identifier), cond_buf, condition_tlv_length);
3742 }
3743 if (condition_mask & NECP_KERNEL_CONDITION_PACKET_FILTER_TAGS) {
3744 cond_flags = (condition_negated_mask & NECP_KERNEL_CONDITION_PACKET_FILTER_TAGS) ? NECP_POLICY_CONDITION_FLAGS_NEGATIVE : 0;
3745 cond_buf_cursor = necp_buffer_write_tlv_with_flags(cond_buf_cursor, NECP_POLICY_CONDITION_PACKET_FILTER_TAGS, cond_flags, sizeof(policy->cond_packet_filter_tags), &policy->cond_packet_filter_tags, cond_buf, condition_tlv_length);
3746 }
3747 if (condition_mask & NECP_KERNEL_CONDITION_IS_LOOPBACK) {
3748 cond_flags = (condition_negated_mask & NECP_KERNEL_CONDITION_IS_LOOPBACK) ? NECP_POLICY_CONDITION_FLAGS_NEGATIVE : 0;
3749 cond_buf_cursor = necp_buffer_write_tlv_with_flags(cond_buf_cursor, NECP_POLICY_CONDITION_FLOW_IS_LOOPBACK, cond_flags, 0, "", cond_buf, condition_tlv_length);
3750 }
3751 if (condition_mask & NECP_KERNEL_CONDITION_DELEGATE_IS_PLATFORM_BINARY) {
3752 cond_flags = (condition_negated_mask & NECP_KERNEL_CONDITION_DELEGATE_IS_PLATFORM_BINARY) ? NECP_POLICY_CONDITION_FLAGS_NEGATIVE : 0;
3753 cond_buf_cursor = necp_buffer_write_tlv_with_flags(cond_buf_cursor, NECP_POLICY_CONDITION_DELEGATE_IS_PLATFORM_BINARY, cond_flags, 0, "", cond_buf, condition_tlv_length);
3754 }
3755 if (condition_mask & NECP_KERNEL_CONDITION_SCHEME_PORT) {
3756 cond_flags = (condition_negated_mask & NECP_KERNEL_CONDITION_SCHEME_PORT) ? NECP_POLICY_CONDITION_FLAGS_NEGATIVE : 0;
3757 cond_buf_cursor = necp_buffer_write_tlv_with_flags(cond_buf_cursor, NECP_POLICY_CONDITION_SCHEME_PORT, cond_flags, sizeof(policy->cond_scheme_port), &policy->cond_scheme_port, cond_buf, condition_tlv_length);
3758 }
3759 if (condition_mask & NECP_KERNEL_CONDITION_BOUND_INTERFACE_FLAGS) {
3760 cond_flags = (condition_negated_mask & NECP_KERNEL_CONDITION_BOUND_INTERFACE_FLAGS) ? NECP_POLICY_CONDITION_FLAGS_NEGATIVE : 0;
3761 uint32_t flags[NECP_POLICY_CONDITION_BOUND_INTERFACE_FLAGS_IDX_MAX] = {};
3762 flags[NECP_POLICY_CONDITION_BOUND_INTERFACE_FLAGS_IDX_FLAGS] = policy->cond_bound_interface_flags;
3763 flags[NECP_POLICY_CONDITION_BOUND_INTERFACE_FLAGS_IDX_EFLAGS] = policy->cond_bound_interface_eflags;
3764 flags[NECP_POLICY_CONDITION_BOUND_INTERFACE_FLAGS_IDX_XFLAGS] = policy->cond_bound_interface_xflags;
3765 cond_buf_cursor = necp_buffer_write_tlv_with_flags(cond_buf_cursor, NECP_POLICY_CONDITION_BOUND_INTERFACE_FLAGS, cond_flags, sizeof(flags), &flags,
3766 cond_buf, condition_tlv_length);
3767 }
3768 }
3769
3770 cursor = necp_buffer_write_tlv(cursor, NECP_TLV_POLICY_CONDITION, cond_buf_cursor - cond_buf, cond_buf, tlv_buffer, total_allocated_bytes);
3771 if (cond_buf != q_cond_buf) {
3772 kfree_data(cond_buf, condition_tlv_length);
3773 }
3774
3775 tlv_buffer_pointers[policy_i] = tlv_buffer;
3776 tlv_buffer_lengths[policy_i] = (cursor - tlv_buffer);
3777
3778 // This is the length of the TLV for NECP_TLV_POLICY_DUMP
3779 total_tlv_len += sizeof(u_int8_t) + sizeof(u_int32_t) + (cursor - tlv_buffer);
3780 }
3781
3782 // UNLOCK
3783 lck_rw_done(&necp_kernel_policy_lock);
3784
3785 // Copy out
3786 if (out_buffer != 0) {
3787 if (out_buffer_length < total_tlv_len + sizeof(u_int32_t)) {
3788 NECPLOG(LOG_DEBUG, "out_buffer_length too small (%lu < %lu)", out_buffer_length, total_tlv_len + sizeof(u_int32_t));
3789 REPORT_ERROR(NECP_ERROR_INVALID_TLV);
3790 }
3791
3792 // Allow malloc to wait, since the total buffer may be large and we are not holding any locks
3793 result_buf = (u_int8_t *)kalloc_data(total_tlv_len + sizeof(u_int32_t), Z_WAITOK | Z_ZERO);
3794 if (result_buf == NULL) {
3795 NECPLOG(LOG_DEBUG, "Failed to allocate result_buffer (%lu bytes)", total_tlv_len + sizeof(u_int32_t));
3796 REPORT_ERROR(NECP_ERROR_INTERNAL);
3797 }
3798
3799 // Add four bytes for total length at the start
3800 memcpy(result_buf, &total_tlv_len, sizeof(u_int32_t));
3801
3802 // Copy the TLVs
3803 result_buf_cursor = result_buf + sizeof(u_int32_t);
3804 for (int i = 0; i < policy_count; i++) {
3805 if (tlv_buffer_pointers[i] != NULL) {
3806 result_buf_cursor = necp_buffer_write_tlv(result_buf_cursor, NECP_TLV_POLICY_DUMP, tlv_buffer_lengths[i], tlv_buffer_pointers[i],
3807 result_buf, total_tlv_len + sizeof(u_int32_t));
3808 }
3809 }
3810
3811 int copy_error = copyout(result_buf, out_buffer, total_tlv_len + sizeof(u_int32_t));
3812 if (copy_error) {
3813 NECPLOG(LOG_DEBUG, "Failed to copy out result_buffer (%lu bytes)", total_tlv_len + sizeof(u_int32_t));
3814 REPORT_ERROR(NECP_ERROR_INTERNAL);
3815 }
3816 }
3817
3818 done:
3819
3820 if (error_occured) {
3821 error_code = necp_get_posix_error_for_necp_error(response_error);
3822 }
3823
3824 if (result_buf != NULL) {
3825 kfree_data(result_buf, total_tlv_len + sizeof(u_int32_t));
3826 }
3827
3828 if (tlv_buffer_pointers != NULL) {
3829 for (int i = 0; i < policy_count; i++) {
3830 if (tlv_buffer_pointers[i] != NULL) {
3831 kfree_data_addr(tlv_buffer_pointers[i]);
3832 tlv_buffer_pointers[i] = NULL;
3833 }
3834 }
3835 kfree_type(u_int8_t * __indexable, policy_count, tlv_buffer_pointers);
3836 }
3837
3838 if (tlv_buffer_lengths != NULL) {
3839 kfree_data(tlv_buffer_lengths, sizeof(*tlv_buffer_lengths) * policy_count);
3840 }
3841 #undef N_QUICK
3842 #undef RESET_COND_BUF
3843 #undef REPORT_ERROR
3844 #undef UNLOCK_AND_REPORT_ERROR
3845
3846 return error_code;
3847 }
3848
3849 static struct necp_session_policy *
necp_policy_create(struct necp_session * session,necp_policy_order order,u_int8_t * __sized_by (conditions_array_size)conditions_array,u_int32_t conditions_array_size,u_int8_t * __sized_by (route_rules_array_size)route_rules_array,u_int32_t route_rules_array_size,u_int8_t * __sized_by (result_size)result,u_int32_t result_size)3850 necp_policy_create(struct necp_session *session, necp_policy_order order, u_int8_t * __sized_by(conditions_array_size)conditions_array, u_int32_t conditions_array_size, u_int8_t * __sized_by(route_rules_array_size)route_rules_array, u_int32_t route_rules_array_size, u_int8_t *__sized_by(result_size)result, u_int32_t result_size)
3851 {
3852 struct necp_session_policy *new_policy = NULL;
3853 struct necp_session_policy *tmp_policy = NULL;
3854
3855 if (session == NULL || conditions_array == NULL || result == NULL || result_size == 0) {
3856 goto done;
3857 }
3858
3859 new_policy = zalloc_flags(necp_session_policy_zone, Z_WAITOK | Z_ZERO);
3860 new_policy->applied = FALSE;
3861 new_policy->pending_deletion = FALSE;
3862 new_policy->pending_update = FALSE;
3863 new_policy->order = order;
3864 new_policy->conditions = conditions_array;
3865 new_policy->conditions_size = conditions_array_size;
3866 new_policy->route_rules = route_rules_array;
3867 new_policy->route_rules_size = route_rules_array_size;
3868 new_policy->result = result;
3869 new_policy->result_size = result_size;
3870 new_policy->local_id = necp_policy_get_new_id(session);
3871
3872 LIST_INSERT_SORTED_ASCENDING(&session->policies, new_policy, chain, order, tmp_policy);
3873
3874 session->dirty = TRUE;
3875
3876 if (necp_debug) {
3877 NECPLOG(LOG_DEBUG, "Created NECP policy, order %d", order);
3878 }
3879 done:
3880 return new_policy;
3881 }
3882
3883 static struct necp_session_policy *
necp_policy_find(struct necp_session * session,necp_policy_id policy_id)3884 necp_policy_find(struct necp_session *session, necp_policy_id policy_id)
3885 {
3886 struct necp_session_policy *policy = NULL;
3887 if (policy_id == 0) {
3888 return NULL;
3889 }
3890
3891 LIST_FOREACH(policy, &session->policies, chain) {
3892 if (policy->local_id == policy_id) {
3893 return policy;
3894 }
3895 }
3896
3897 return NULL;
3898 }
3899
3900 static inline u_int8_t
necp_policy_get_result_type(struct necp_session_policy * policy)3901 necp_policy_get_result_type(struct necp_session_policy *policy)
3902 {
3903 return policy ? necp_policy_result_get_type_from_buffer(policy->result, policy->result_size) : 0;
3904 }
3905
3906 static inline u_int32_t
necp_policy_get_result_parameter_length(struct necp_session_policy * policy)3907 necp_policy_get_result_parameter_length(struct necp_session_policy *policy)
3908 {
3909 return policy ? necp_policy_result_get_parameter_length_from_buffer(policy->result, policy->result_size) : 0;
3910 }
3911
3912 static bool
necp_policy_get_result_parameter(struct necp_session_policy * policy,u_int8_t * __sized_by (parameter_buffer_length)parameter_buffer,u_int32_t parameter_buffer_length)3913 necp_policy_get_result_parameter(struct necp_session_policy *policy, u_int8_t * __sized_by(parameter_buffer_length)parameter_buffer, u_int32_t parameter_buffer_length)
3914 {
3915 if (policy) {
3916 u_int32_t parameter_length = necp_policy_result_get_parameter_length_from_buffer(policy->result, policy->result_size);
3917 if (parameter_buffer_length >= parameter_length) {
3918 u_int8_t *parameter = necp_policy_result_get_parameter_pointer_from_buffer(policy->result, policy->result_size);
3919 if (parameter && parameter_buffer) {
3920 memcpy(parameter_buffer, parameter, parameter_length);
3921 return TRUE;
3922 }
3923 }
3924 }
3925
3926 return FALSE;
3927 }
3928
3929 static bool
necp_policy_mark_for_deletion(struct necp_session * session,struct necp_session_policy * policy)3930 necp_policy_mark_for_deletion(struct necp_session *session, struct necp_session_policy *policy)
3931 {
3932 if (session == NULL || policy == NULL) {
3933 return FALSE;
3934 }
3935
3936 policy->pending_deletion = TRUE;
3937 session->dirty = TRUE;
3938
3939 if (necp_debug) {
3940 NECPLOG0(LOG_DEBUG, "Marked NECP policy for removal");
3941 }
3942 return TRUE;
3943 }
3944
3945 static bool
necp_policy_mark_all_for_deletion(struct necp_session * session)3946 necp_policy_mark_all_for_deletion(struct necp_session *session)
3947 {
3948 struct necp_session_policy *policy = NULL;
3949 struct necp_session_policy *temp_policy = NULL;
3950
3951 LIST_FOREACH_SAFE(policy, &session->policies, chain, temp_policy) {
3952 necp_policy_mark_for_deletion(session, policy);
3953 }
3954
3955 return TRUE;
3956 }
3957
3958 static bool
necp_policy_delete(struct necp_session * session,struct necp_session_policy * policy)3959 necp_policy_delete(struct necp_session *session, struct necp_session_policy *policy)
3960 {
3961 if (session == NULL || policy == NULL) {
3962 return FALSE;
3963 }
3964
3965 LIST_REMOVE(policy, chain);
3966
3967 if (policy->result) {
3968 kfree_data_sized_by(policy->result, policy->result_size);
3969 policy->result = NULL;
3970 policy->result_size = 0;
3971 }
3972
3973 if (policy->conditions) {
3974 kfree_data_sized_by(policy->conditions, policy->conditions_size);
3975 policy->conditions = NULL;
3976 policy->conditions_size = 0;
3977 }
3978
3979 if (policy->route_rules) {
3980 kfree_data_sized_by(policy->route_rules, policy->route_rules_size);
3981 policy->route_rules = NULL;
3982 policy->route_rules_size = 0;
3983 }
3984
3985 zfree(necp_session_policy_zone, policy);
3986
3987 if (necp_debug) {
3988 NECPLOG0(LOG_DEBUG, "Removed NECP policy");
3989 }
3990 return TRUE;
3991 }
3992
3993 static bool
necp_policy_unapply(struct necp_session_policy * policy)3994 necp_policy_unapply(struct necp_session_policy *policy)
3995 {
3996 int i = 0;
3997 if (policy == NULL) {
3998 return FALSE;
3999 }
4000
4001 LCK_RW_ASSERT(&necp_kernel_policy_lock, LCK_RW_ASSERT_EXCLUSIVE);
4002
4003 // Release local uuid mappings
4004 if (!uuid_is_null(policy->applied_app_uuid)) {
4005 bool removed_mapping = FALSE;
4006 if (necp_remove_uuid_app_id_mapping(policy->applied_app_uuid, &removed_mapping, TRUE) && removed_mapping) {
4007 necp_uuid_app_id_mappings_dirty = TRUE;
4008 necp_num_uuid_app_id_mappings--;
4009 }
4010 uuid_clear(policy->applied_app_uuid);
4011 }
4012 if (!uuid_is_null(policy->applied_real_app_uuid)) {
4013 necp_remove_uuid_app_id_mapping(policy->applied_real_app_uuid, NULL, FALSE);
4014 uuid_clear(policy->applied_real_app_uuid);
4015 }
4016 if (!uuid_is_null(policy->applied_result_uuid)) {
4017 necp_remove_agent_uuid_id_mapping(policy->applied_result_uuid);
4018 uuid_clear(policy->applied_result_uuid);
4019 }
4020
4021 // Release string mappings
4022 if (policy->applied_account != NULL) {
4023 necp_remove_string_to_id_mapping(&necp_account_id_list, __unsafe_null_terminated_from_indexable(policy->applied_account));
4024 kfree_data_sized_by(policy->applied_account, policy->applied_account_size);
4025 policy->applied_account = NULL;
4026 policy->applied_account_size = 0;
4027 }
4028
4029 // Release route rule
4030 if (policy->applied_route_rules_id != 0) {
4031 necp_remove_route_rule(&necp_route_rules, policy->applied_route_rules_id);
4032 policy->applied_route_rules_id = 0;
4033 }
4034
4035 // Release agent type mapping
4036 if (policy->applied_agent_type_id != 0) {
4037 necp_remove_agent_type_to_id_mapping(policy->applied_agent_type_id);
4038 policy->applied_agent_type_id = 0;
4039 }
4040
4041 // Remove socket policies
4042 for (i = 0; i < MAX_KERNEL_SOCKET_POLICIES; i++) {
4043 if (policy->kernel_socket_policies[i] != 0) {
4044 necp_kernel_socket_policy_delete(policy->kernel_socket_policies[i]);
4045 policy->kernel_socket_policies[i] = 0;
4046 }
4047 }
4048
4049 // Remove IP output policies
4050 for (i = 0; i < MAX_KERNEL_IP_OUTPUT_POLICIES; i++) {
4051 if (policy->kernel_ip_output_policies[i] != 0) {
4052 necp_kernel_ip_output_policy_delete(policy->kernel_ip_output_policies[i]);
4053 policy->kernel_ip_output_policies[i] = 0;
4054 }
4055 }
4056
4057 policy->applied = FALSE;
4058
4059 return TRUE;
4060 }
4061
4062 #define NECP_KERNEL_POLICY_SUBORDER_ID_TUNNEL_CONDITION 0
4063 #define NECP_KERNEL_POLICY_SUBORDER_NON_ID_TUNNEL_CONDITION 1
4064 #define NECP_KERNEL_POLICY_SUBORDER_ID_CONDITION 2
4065 #define NECP_KERNEL_POLICY_SUBORDER_NON_ID_CONDITIONS 3
4066 struct necp_policy_result_ip_tunnel {
4067 u_int32_t secondary_result;
4068 char interface_name[IFXNAMSIZ];
4069 } __attribute__((__packed__));
4070
4071 struct necp_policy_result_service {
4072 uuid_t identifier;
4073 u_int32_t data;
4074 } __attribute__((__packed__));
4075
4076 static bool
necp_policy_apply(struct necp_session * session,struct necp_session_policy * policy)4077 necp_policy_apply(struct necp_session *session, struct necp_session_policy *policy)
4078 {
4079 bool socket_only_conditions = FALSE;
4080 bool socket_ip_conditions = FALSE;
4081
4082 bool socket_layer_non_id_conditions = FALSE;
4083 bool ip_output_layer_non_id_conditions = FALSE;
4084 bool ip_output_layer_non_id_only = FALSE;
4085 bool ip_output_layer_id_condition = FALSE;
4086 bool ip_output_layer_tunnel_condition_from_id = FALSE;
4087 bool ip_output_layer_tunnel_condition_from_non_id = FALSE;
4088 necp_kernel_policy_id cond_ip_output_layer_id = NECP_KERNEL_POLICY_ID_NONE;
4089
4090 u_int64_t master_condition_mask = 0;
4091 u_int64_t master_condition_negated_mask = 0;
4092 ifnet_t __single cond_bound_interface = NULL;
4093 u_int32_t cond_account_id = 0;
4094 char *cond_domain __null_terminated = NULL;
4095 u_int32_t cond_domain_filter = 0;
4096 char *cond_url __null_terminated = NULL;
4097 char *cond_custom_entitlement __null_terminated = NULL;
4098 char *cond_signing_identifier __null_terminated = NULL;
4099 pid_t cond_pid = 0;
4100 int32_t cond_pid_version = 0;
4101 uid_t cond_uid = 0;
4102 uid_t cond_real_uid = 0;
4103 necp_app_id cond_app_id = 0;
4104 necp_app_id cond_real_app_id = 0;
4105 struct necp_policy_condition_tc_range cond_traffic_class;
4106 cond_traffic_class.start_tc = 0;
4107 cond_traffic_class.end_tc = 0;
4108 u_int16_t cond_protocol = 0;
4109 union necp_sockaddr_union cond_local_start;
4110 union necp_sockaddr_union cond_local_end;
4111 u_int8_t cond_local_prefix = 0;
4112 union necp_sockaddr_union cond_remote_start;
4113 union necp_sockaddr_union cond_remote_end;
4114 u_int8_t cond_remote_prefix = 0;
4115 u_int32_t cond_client_flags = 0;
4116 u_int8_t cond_local_networks_flags = 0;
4117 u_int32_t offset = 0;
4118 u_int8_t ultimate_result = 0;
4119 u_int32_t secondary_result = 0;
4120 struct necp_policy_condition_agent_type cond_agent_type = {};
4121 struct necp_policy_condition_sdk_version cond_sdk_version = {};
4122 u_int16_t cond_packet_filter_tags = 0;
4123 u_int16_t cond_scheme_port = 0;
4124 u_int32_t cond_bound_interface_flags = 0;
4125 u_int32_t cond_bound_interface_eflags = 0;
4126 u_int32_t cond_bound_interface_xflags = 0;
4127 necp_kernel_policy_result_parameter secondary_result_parameter;
4128 memset(&secondary_result_parameter, 0, sizeof(secondary_result_parameter));
4129 u_int32_t cond_last_interface_index = 0;
4130 necp_kernel_policy_result_parameter ultimate_result_parameter;
4131 memset(&ultimate_result_parameter, 0, sizeof(ultimate_result_parameter));
4132
4133 if (policy == NULL) {
4134 return FALSE;
4135 }
4136
4137 LCK_RW_ASSERT(&necp_kernel_policy_lock, LCK_RW_ASSERT_EXCLUSIVE);
4138
4139 // Process conditions
4140 while (offset < policy->conditions_size) {
4141 u_int32_t length = 0;
4142 u_int8_t * __indexable value = necp_buffer_get_tlv_value(policy->conditions, policy->conditions_size, offset, &length);
4143
4144 u_int8_t condition_type = necp_policy_condition_get_type_from_buffer(value, length);
4145 u_int8_t condition_flags = necp_policy_condition_get_flags_from_buffer(value, length);
4146 bool condition_is_negative = condition_flags & NECP_POLICY_CONDITION_FLAGS_NEGATIVE;
4147 u_int32_t condition_length = necp_policy_condition_get_value_length_from_buffer(value, length);
4148 u_int8_t *condition_value = necp_policy_condition_get_value_pointer_from_buffer(value, length);
4149 switch (condition_type) {
4150 case NECP_POLICY_CONDITION_DEFAULT: {
4151 socket_ip_conditions = TRUE;
4152 break;
4153 }
4154 case NECP_POLICY_CONDITION_ALL_INTERFACES: {
4155 master_condition_mask |= NECP_KERNEL_CONDITION_ALL_INTERFACES;
4156 socket_ip_conditions = TRUE;
4157 break;
4158 }
4159 case NECP_POLICY_CONDITION_HAS_CLIENT: {
4160 master_condition_mask |= NECP_KERNEL_CONDITION_HAS_CLIENT;
4161 socket_only_conditions = TRUE;
4162 break;
4163 }
4164 case NECP_POLICY_CONDITION_ENTITLEMENT: {
4165 if (condition_length > 0) {
4166 if (cond_custom_entitlement == NULL) {
4167 cond_custom_entitlement = necp_copy_string((char *)condition_value, condition_length);
4168 if (cond_custom_entitlement != NULL) {
4169 master_condition_mask |= NECP_KERNEL_CONDITION_CUSTOM_ENTITLEMENT;
4170 socket_only_conditions = TRUE;
4171 }
4172 }
4173 } else {
4174 master_condition_mask |= NECP_KERNEL_CONDITION_ENTITLEMENT;
4175 socket_only_conditions = TRUE;
4176 }
4177 break;
4178 }
4179 case NECP_POLICY_CONDITION_PLATFORM_BINARY: {
4180 master_condition_mask |= NECP_KERNEL_CONDITION_PLATFORM_BINARY;
4181 if (condition_is_negative) {
4182 master_condition_negated_mask |= NECP_KERNEL_CONDITION_PLATFORM_BINARY;
4183 }
4184 socket_only_conditions = TRUE;
4185 break;
4186 }
4187 case NECP_POLICY_CONDITION_SYSTEM_SIGNED_RESULT: {
4188 master_condition_mask |= NECP_KERNEL_CONDITION_SYSTEM_SIGNED_RESULT;
4189 socket_only_conditions = TRUE;
4190 break;
4191 }
4192 case NECP_POLICY_CONDITION_SDK_VERSION: {
4193 if (condition_length >= sizeof(cond_sdk_version)) {
4194 master_condition_mask |= NECP_KERNEL_CONDITION_SDK_VERSION;
4195 memcpy(&cond_sdk_version, condition_value, sizeof(cond_sdk_version));
4196 socket_only_conditions = TRUE;
4197 }
4198 break;
4199 }
4200 case NECP_POLICY_CONDITION_DOMAIN: {
4201 // Make sure there is only one such rule
4202 if (condition_length > 0 && cond_domain == NULL) {
4203 const bool condition_is_exact = condition_flags & NECP_POLICY_CONDITION_FLAGS_EXACT;
4204
4205 u_int64_t mask_value = condition_is_exact ? NECP_KERNEL_CONDITION_EXACT_DOMAIN : NECP_KERNEL_CONDITION_DOMAIN;
4206 cond_domain = necp_create_trimmed_domain((char *)condition_value, condition_length);
4207 if (cond_domain != NULL) {
4208 master_condition_mask |= mask_value;
4209 if (condition_is_negative) {
4210 master_condition_negated_mask |= mask_value;
4211 }
4212 socket_only_conditions = TRUE;
4213 }
4214 }
4215 break;
4216 }
4217 case NECP_POLICY_CONDITION_DOMAIN_FILTER: {
4218 // Make sure there is only one such rule
4219 if (condition_length >= sizeof(cond_domain_filter) && cond_domain_filter == 0) {
4220 memcpy(&cond_domain_filter, condition_value, sizeof(cond_domain_filter));
4221 if (cond_domain_filter != 0) {
4222 master_condition_mask |= NECP_KERNEL_CONDITION_DOMAIN_FILTER;
4223 if (condition_is_negative) {
4224 master_condition_negated_mask |= NECP_KERNEL_CONDITION_DOMAIN_FILTER;
4225 }
4226 socket_only_conditions = TRUE;
4227 }
4228 }
4229 break;
4230 }
4231 case NECP_POLICY_CONDITION_URL: {
4232 // Make sure there is only one such rule
4233 if (condition_length > 0 && cond_url == NULL) {
4234 u_int64_t mask_value = NECP_KERNEL_CONDITION_URL;
4235 cond_url = necp_create_trimmed_domain((char *)condition_value, condition_length);
4236 if (cond_url != NULL) {
4237 master_condition_mask |= mask_value;
4238 if (condition_is_negative) {
4239 master_condition_negated_mask |= mask_value;
4240 }
4241 socket_only_conditions = TRUE;
4242 }
4243 }
4244 break;
4245 }
4246 case NECP_POLICY_CONDITION_ACCOUNT: {
4247 // Make sure there is only one such rule
4248 if (condition_length > 0 && condition_length < UINT32_MAX && cond_account_id == 0 && policy->applied_account == NULL) {
4249 size_t string_buffer_size = 0;
4250 char * __sized_by(string_buffer_size) string = NULL;
4251 string = (char *)kalloc_data(condition_length + 1, Z_WAITOK);
4252 string_buffer_size = condition_length + 1;
4253 if (string != NULL) {
4254 memcpy(string, condition_value, condition_length);
4255 string[condition_length] = 0;
4256 cond_account_id = necp_create_string_to_id_mapping(&necp_account_id_list, __unsafe_null_terminated_from_indexable(string, &string[condition_length]));
4257 if (cond_account_id != 0) {
4258 policy->applied_account = string; // Save the string in parent policy
4259 policy->applied_account_size = string_buffer_size;
4260 master_condition_mask |= NECP_KERNEL_CONDITION_ACCOUNT_ID;
4261 if (condition_is_negative) {
4262 master_condition_negated_mask |= NECP_KERNEL_CONDITION_ACCOUNT_ID;
4263 }
4264 socket_only_conditions = TRUE;
4265 } else {
4266 kfree_data_sized_by(string, string_buffer_size);
4267 }
4268 }
4269 }
4270 break;
4271 }
4272 case NECP_POLICY_CONDITION_APPLICATION: {
4273 // Make sure there is only one such rule, because we save the uuid in the policy
4274 if (condition_length >= sizeof(uuid_t) && cond_app_id == 0) {
4275 bool allocated_mapping = FALSE;
4276 uuid_t application_uuid;
4277 memcpy(application_uuid, condition_value, sizeof(uuid_t));
4278 cond_app_id = necp_create_uuid_app_id_mapping(application_uuid, &allocated_mapping, TRUE);
4279 if (cond_app_id != 0) {
4280 if (allocated_mapping) {
4281 necp_uuid_app_id_mappings_dirty = TRUE;
4282 necp_num_uuid_app_id_mappings++;
4283 }
4284 uuid_copy(policy->applied_app_uuid, application_uuid);
4285 master_condition_mask |= NECP_KERNEL_CONDITION_APP_ID;
4286 if (condition_is_negative) {
4287 master_condition_negated_mask |= NECP_KERNEL_CONDITION_APP_ID;
4288 }
4289 socket_only_conditions = TRUE;
4290 }
4291 }
4292 break;
4293 }
4294 case NECP_POLICY_CONDITION_REAL_APPLICATION: {
4295 // Make sure there is only one such rule, because we save the uuid in the policy
4296 if (condition_length >= sizeof(uuid_t) && cond_real_app_id == 0) {
4297 uuid_t real_application_uuid;
4298 memcpy(real_application_uuid, condition_value, sizeof(uuid_t));
4299 cond_real_app_id = necp_create_uuid_app_id_mapping(real_application_uuid, NULL, FALSE);
4300 if (cond_real_app_id != 0) {
4301 uuid_copy(policy->applied_real_app_uuid, real_application_uuid);
4302 master_condition_mask |= NECP_KERNEL_CONDITION_REAL_APP_ID;
4303 if (condition_is_negative) {
4304 master_condition_negated_mask |= NECP_KERNEL_CONDITION_REAL_APP_ID;
4305 }
4306 socket_only_conditions = TRUE;
4307 }
4308 }
4309 break;
4310 }
4311 case NECP_POLICY_CONDITION_PID: {
4312 if (condition_length >= sizeof(pid_t)) {
4313 master_condition_mask |= NECP_KERNEL_CONDITION_PID;
4314 if (condition_is_negative) {
4315 master_condition_negated_mask |= NECP_KERNEL_CONDITION_PID;
4316 }
4317 memcpy(&cond_pid, condition_value, sizeof(cond_pid));
4318 if (condition_length >= (sizeof(pid_t) + sizeof(cond_pid_version))) {
4319 memcpy(&cond_pid_version, (condition_value + sizeof(pid_t)), sizeof(cond_pid_version));
4320 }
4321 socket_only_conditions = TRUE;
4322 }
4323 break;
4324 }
4325 case NECP_POLICY_CONDITION_UID: {
4326 if (condition_length >= sizeof(uid_t)) {
4327 master_condition_mask |= NECP_KERNEL_CONDITION_UID;
4328 if (condition_is_negative) {
4329 master_condition_negated_mask |= NECP_KERNEL_CONDITION_UID;
4330 }
4331 memcpy(&cond_uid, condition_value, sizeof(cond_uid));
4332 socket_only_conditions = TRUE;
4333 }
4334 break;
4335 }
4336 case NECP_POLICY_CONDITION_REAL_UID: {
4337 if (condition_length >= sizeof(uid_t)) {
4338 master_condition_mask |= NECP_KERNEL_CONDITION_REAL_UID;
4339 if (condition_is_negative) {
4340 master_condition_negated_mask |= NECP_KERNEL_CONDITION_REAL_UID;
4341 }
4342 memcpy(&cond_real_uid, condition_value, sizeof(cond_real_uid));
4343 socket_only_conditions = TRUE;
4344 }
4345 break;
4346 }
4347 case NECP_POLICY_CONDITION_TRAFFIC_CLASS: {
4348 if (condition_length >= sizeof(struct necp_policy_condition_tc_range)) {
4349 master_condition_mask |= NECP_KERNEL_CONDITION_TRAFFIC_CLASS;
4350 if (condition_is_negative) {
4351 master_condition_negated_mask |= NECP_KERNEL_CONDITION_TRAFFIC_CLASS;
4352 }
4353 memcpy(&cond_traffic_class, condition_value, sizeof(cond_traffic_class));
4354 socket_only_conditions = TRUE;
4355 }
4356 break;
4357 }
4358 case NECP_POLICY_CONDITION_BOUND_INTERFACE: {
4359 if (condition_length <= IFXNAMSIZ && condition_length > 0) {
4360 char interface_name[IFXNAMSIZ];
4361 memcpy(interface_name, condition_value, condition_length);
4362 interface_name[condition_length - 1] = 0; // Make sure the string is NULL terminated
4363 if (ifnet_find_by_name(__unsafe_null_terminated_from_indexable(interface_name, &interface_name[condition_length - 1]), &cond_bound_interface) == 0) {
4364 master_condition_mask |= NECP_KERNEL_CONDITION_BOUND_INTERFACE;
4365 if (condition_is_negative) {
4366 master_condition_negated_mask |= NECP_KERNEL_CONDITION_BOUND_INTERFACE;
4367 }
4368 }
4369 socket_ip_conditions = TRUE;
4370 }
4371 break;
4372 }
4373 case NECP_POLICY_CONDITION_IP_PROTOCOL:
4374 case NECP_POLICY_CONDITION_FLOW_IP_PROTOCOL: {
4375 if (condition_length >= sizeof(u_int16_t)) {
4376 master_condition_mask |= NECP_KERNEL_CONDITION_PROTOCOL;
4377 if (condition_is_negative) {
4378 master_condition_negated_mask |= NECP_KERNEL_CONDITION_PROTOCOL;
4379 }
4380 memcpy(&cond_protocol, condition_value, sizeof(cond_protocol));
4381 if (condition_type == NECP_POLICY_CONDITION_FLOW_IP_PROTOCOL) {
4382 socket_only_conditions = TRUE;
4383 } else {
4384 socket_ip_conditions = TRUE;
4385 }
4386 }
4387 break;
4388 }
4389 case NECP_POLICY_CONDITION_LOCAL_NETWORKS: {
4390 if (condition_is_negative) {
4391 master_condition_negated_mask |= NECP_POLICY_CONDITION_LOCAL_NETWORKS;
4392 }
4393 master_condition_mask |= NECP_KERNEL_CONDITION_LOCAL_NETWORKS;
4394 socket_ip_conditions = TRUE;
4395 if (condition_length >= sizeof(u_int8_t)) {
4396 memcpy(&cond_local_networks_flags, condition_value, sizeof(cond_local_networks_flags));
4397 }
4398 break;
4399 }
4400 case NECP_POLICY_CONDITION_LOCAL_ADDR:
4401 case NECP_POLICY_CONDITION_FLOW_LOCAL_ADDR: {
4402 struct necp_policy_condition_addr *address_struct = (struct necp_policy_condition_addr *)(void *)condition_value;
4403 if (!necp_address_is_valid(&address_struct->address.sa)) {
4404 break;
4405 }
4406
4407 cond_local_prefix = address_struct->prefix;
4408 memcpy(&cond_local_start, &address_struct->address, sizeof(address_struct->address));
4409 master_condition_mask |= NECP_KERNEL_CONDITION_LOCAL_START;
4410 master_condition_mask |= NECP_KERNEL_CONDITION_LOCAL_PREFIX;
4411 if (condition_is_negative) {
4412 master_condition_negated_mask |= NECP_KERNEL_CONDITION_LOCAL_START;
4413 master_condition_negated_mask |= NECP_KERNEL_CONDITION_LOCAL_PREFIX;
4414 }
4415 if (condition_type == NECP_POLICY_CONDITION_FLOW_LOCAL_ADDR) {
4416 socket_only_conditions = TRUE;
4417 } else {
4418 socket_ip_conditions = TRUE;
4419 }
4420 break;
4421 }
4422 case NECP_POLICY_CONDITION_REMOTE_ADDR:
4423 case NECP_POLICY_CONDITION_FLOW_REMOTE_ADDR: {
4424 struct necp_policy_condition_addr *address_struct = (struct necp_policy_condition_addr *)(void *)condition_value;
4425 if (!necp_address_is_valid(&address_struct->address.sa)) {
4426 break;
4427 }
4428
4429 cond_remote_prefix = address_struct->prefix;
4430 memcpy(&cond_remote_start, &address_struct->address, sizeof(address_struct->address));
4431 master_condition_mask |= NECP_KERNEL_CONDITION_REMOTE_START;
4432 master_condition_mask |= NECP_KERNEL_CONDITION_REMOTE_PREFIX;
4433 if (condition_is_negative) {
4434 master_condition_negated_mask |= NECP_KERNEL_CONDITION_REMOTE_START;
4435 master_condition_negated_mask |= NECP_KERNEL_CONDITION_REMOTE_PREFIX;
4436 }
4437 if (condition_type == NECP_POLICY_CONDITION_FLOW_REMOTE_ADDR) {
4438 socket_only_conditions = TRUE;
4439 } else {
4440 socket_ip_conditions = TRUE;
4441 }
4442 break;
4443 }
4444 case NECP_POLICY_CONDITION_LOCAL_ADDR_RANGE:
4445 case NECP_POLICY_CONDITION_FLOW_LOCAL_ADDR_RANGE: {
4446 struct necp_policy_condition_addr_range *address_struct = (struct necp_policy_condition_addr_range *)(void *)condition_value;
4447 if (!necp_address_is_valid(&address_struct->start_address.sa) ||
4448 !necp_address_is_valid(&address_struct->end_address.sa)) {
4449 break;
4450 }
4451
4452 memcpy(&cond_local_start, &address_struct->start_address, sizeof(address_struct->start_address));
4453 memcpy(&cond_local_end, &address_struct->end_address, sizeof(address_struct->end_address));
4454 master_condition_mask |= NECP_KERNEL_CONDITION_LOCAL_START;
4455 master_condition_mask |= NECP_KERNEL_CONDITION_LOCAL_END;
4456 if (condition_is_negative) {
4457 master_condition_negated_mask |= NECP_KERNEL_CONDITION_LOCAL_START;
4458 master_condition_negated_mask |= NECP_KERNEL_CONDITION_LOCAL_END;
4459 }
4460 if (condition_type == NECP_POLICY_CONDITION_FLOW_LOCAL_ADDR_RANGE) {
4461 socket_only_conditions = TRUE;
4462 } else {
4463 socket_ip_conditions = TRUE;
4464 }
4465 break;
4466 }
4467 case NECP_POLICY_CONDITION_REMOTE_ADDR_RANGE:
4468 case NECP_POLICY_CONDITION_FLOW_REMOTE_ADDR_RANGE: {
4469 struct necp_policy_condition_addr_range *address_struct = (struct necp_policy_condition_addr_range *)(void *)condition_value;
4470 if (!necp_address_is_valid(&address_struct->start_address.sa) ||
4471 !necp_address_is_valid(&address_struct->end_address.sa)) {
4472 break;
4473 }
4474
4475 memcpy(&cond_remote_start, &address_struct->start_address, sizeof(address_struct->start_address));
4476 memcpy(&cond_remote_end, &address_struct->end_address, sizeof(address_struct->end_address));
4477 master_condition_mask |= NECP_KERNEL_CONDITION_REMOTE_START;
4478 master_condition_mask |= NECP_KERNEL_CONDITION_REMOTE_END;
4479 if (condition_is_negative) {
4480 master_condition_negated_mask |= NECP_KERNEL_CONDITION_REMOTE_START;
4481 master_condition_negated_mask |= NECP_KERNEL_CONDITION_REMOTE_END;
4482 }
4483 if (condition_type == NECP_POLICY_CONDITION_FLOW_REMOTE_ADDR_RANGE) {
4484 socket_only_conditions = TRUE;
4485 } else {
4486 socket_ip_conditions = TRUE;
4487 }
4488 break;
4489 }
4490 case NECP_POLICY_CONDITION_AGENT_TYPE: {
4491 if (condition_length >= sizeof(cond_agent_type)) {
4492 master_condition_mask |= NECP_KERNEL_CONDITION_AGENT_TYPE;
4493 memcpy(&cond_agent_type, condition_value, sizeof(cond_agent_type));
4494 socket_only_conditions = TRUE;
4495 }
4496 break;
4497 }
4498 case NECP_POLICY_CONDITION_CLIENT_FLAGS: {
4499 if (condition_is_negative) {
4500 master_condition_negated_mask |= NECP_KERNEL_CONDITION_CLIENT_FLAGS;
4501 }
4502 master_condition_mask |= NECP_KERNEL_CONDITION_CLIENT_FLAGS;
4503 socket_only_conditions = TRUE;
4504 if (condition_length >= sizeof(u_int32_t)) {
4505 memcpy(&cond_client_flags, condition_value, sizeof(cond_client_flags));
4506 } else {
4507 // Empty means match on fallback traffic
4508 cond_client_flags = NECP_CLIENT_PARAMETER_FLAG_FALLBACK_TRAFFIC;
4509 }
4510 break;
4511 }
4512 case NECP_POLICY_CONDITION_FLOW_LOCAL_ADDR_EMPTY: {
4513 master_condition_mask |= NECP_KERNEL_CONDITION_LOCAL_EMPTY;
4514 if (condition_is_negative) {
4515 master_condition_negated_mask |= NECP_KERNEL_CONDITION_LOCAL_EMPTY;
4516 }
4517 socket_only_conditions = TRUE;
4518 break;
4519 }
4520 case NECP_POLICY_CONDITION_FLOW_REMOTE_ADDR_EMPTY: {
4521 master_condition_mask |= NECP_KERNEL_CONDITION_REMOTE_EMPTY;
4522 if (condition_is_negative) {
4523 master_condition_negated_mask |= NECP_KERNEL_CONDITION_REMOTE_EMPTY;
4524 }
4525 socket_only_conditions = TRUE;
4526 break;
4527 }
4528 case NECP_POLICY_CONDITION_SCHEME_PORT: {
4529 master_condition_mask |= NECP_KERNEL_CONDITION_SCHEME_PORT;
4530 if (condition_is_negative) {
4531 master_condition_negated_mask |= NECP_KERNEL_CONDITION_SCHEME_PORT;
4532 }
4533 memcpy(&cond_scheme_port, condition_value, sizeof(cond_scheme_port));
4534 socket_ip_conditions = TRUE;
4535 break;
4536 }
4537 case NECP_POLICY_CONDITION_SIGNING_IDENTIFIER: {
4538 if (condition_length > 0) {
4539 if (cond_signing_identifier == NULL) {
4540 cond_signing_identifier = necp_copy_string((char *)condition_value, condition_length);
4541 if (cond_signing_identifier != NULL) {
4542 master_condition_mask |= NECP_KERNEL_CONDITION_SIGNING_IDENTIFIER;
4543 socket_only_conditions = TRUE;
4544 if (condition_is_negative) {
4545 master_condition_negated_mask |= NECP_KERNEL_CONDITION_SIGNING_IDENTIFIER;
4546 }
4547 }
4548 }
4549 }
4550 break;
4551 }
4552 case NECP_POLICY_CONDITION_PACKET_FILTER_TAGS: {
4553 if (condition_length >= sizeof(u_int16_t)) {
4554 master_condition_mask |= NECP_KERNEL_CONDITION_PACKET_FILTER_TAGS;
4555 if (condition_is_negative) {
4556 master_condition_negated_mask |= NECP_KERNEL_CONDITION_PACKET_FILTER_TAGS;
4557 }
4558 memcpy(&cond_packet_filter_tags, condition_value, sizeof(cond_packet_filter_tags));
4559 socket_ip_conditions = TRUE;
4560 }
4561 break;
4562 }
4563 case NECP_POLICY_CONDITION_FLOW_IS_LOOPBACK: {
4564 master_condition_mask |= NECP_KERNEL_CONDITION_IS_LOOPBACK;
4565 if (condition_is_negative) {
4566 master_condition_negated_mask |= NECP_KERNEL_CONDITION_IS_LOOPBACK;
4567 }
4568 socket_only_conditions = TRUE;
4569 break;
4570 }
4571 case NECP_POLICY_CONDITION_DELEGATE_IS_PLATFORM_BINARY: {
4572 master_condition_mask |= NECP_KERNEL_CONDITION_DELEGATE_IS_PLATFORM_BINARY;
4573 if (condition_is_negative) {
4574 master_condition_negated_mask |= NECP_KERNEL_CONDITION_DELEGATE_IS_PLATFORM_BINARY;
4575 }
4576 socket_only_conditions = TRUE;
4577 break;
4578 }
4579 case NECP_POLICY_CONDITION_BOUND_INTERFACE_FLAGS: {
4580 if (condition_length <= (sizeof(u_int32_t) * NECP_POLICY_CONDITION_BOUND_INTERFACE_FLAGS_IDX_MAX) && condition_length > 0) {
4581 u_int32_t flags[NECP_POLICY_CONDITION_BOUND_INTERFACE_FLAGS_IDX_MAX] = {};
4582 memcpy(&flags, condition_value, sizeof(flags));
4583 cond_bound_interface_flags = flags[NECP_POLICY_CONDITION_BOUND_INTERFACE_FLAGS_IDX_FLAGS];
4584 cond_bound_interface_eflags = flags[NECP_POLICY_CONDITION_BOUND_INTERFACE_FLAGS_IDX_EFLAGS];
4585 cond_bound_interface_xflags = flags[NECP_POLICY_CONDITION_BOUND_INTERFACE_FLAGS_IDX_XFLAGS];
4586 master_condition_mask |= NECP_KERNEL_CONDITION_BOUND_INTERFACE_FLAGS;
4587 if (condition_is_negative) {
4588 master_condition_negated_mask |= NECP_KERNEL_CONDITION_BOUND_INTERFACE_FLAGS;
4589 }
4590 socket_ip_conditions = TRUE;
4591 }
4592 break;
4593 }
4594 default: {
4595 break;
4596 }
4597 }
4598
4599 offset += sizeof(u_int8_t) + sizeof(u_int32_t) + length;
4600 }
4601
4602 // Process result
4603 ultimate_result = necp_policy_get_result_type(policy);
4604 switch (ultimate_result) {
4605 case NECP_POLICY_RESULT_PASS: {
4606 u_int32_t pass_flags = 0;
4607 if (necp_policy_result_get_parameter_length_from_buffer(policy->result, policy->result_size) > 0) {
4608 if (necp_policy_get_result_parameter(policy, (u_int8_t *)&pass_flags, sizeof(pass_flags))) {
4609 ultimate_result_parameter.pass_flags = pass_flags;
4610 }
4611 }
4612 if (socket_only_conditions) { // socket_ip_conditions can be TRUE or FALSE
4613 socket_layer_non_id_conditions = TRUE;
4614 ip_output_layer_id_condition = TRUE;
4615 } else if (socket_ip_conditions) {
4616 socket_layer_non_id_conditions = TRUE;
4617 ip_output_layer_id_condition = TRUE;
4618 ip_output_layer_non_id_conditions = TRUE;
4619 }
4620 break;
4621 }
4622 case NECP_POLICY_RESULT_DROP: {
4623 u_int32_t drop_flags = 0;
4624 if (necp_policy_result_get_parameter_length_from_buffer(policy->result, policy->result_size) > 0) {
4625 if (necp_policy_get_result_parameter(policy, (u_int8_t *)&drop_flags, sizeof(drop_flags))) {
4626 ultimate_result_parameter.drop_flags = drop_flags;
4627 }
4628 }
4629 if (socket_only_conditions) { // socket_ip_conditions can be TRUE or FALSE
4630 socket_layer_non_id_conditions = TRUE;
4631 } else if (socket_ip_conditions) {
4632 socket_layer_non_id_conditions = TRUE;
4633 ip_output_layer_non_id_conditions = TRUE;
4634 ip_output_layer_non_id_only = TRUE; // Only apply drop to packets that didn't go through socket layer
4635 }
4636 break;
4637 }
4638 case NECP_POLICY_RESULT_SKIP: {
4639 u_int32_t skip_policy_order = 0;
4640 if (necp_policy_get_result_parameter(policy, (u_int8_t *)&skip_policy_order, sizeof(skip_policy_order))) {
4641 ultimate_result_parameter.skip_policy_order = skip_policy_order;
4642 }
4643
4644 if (socket_only_conditions) { // socket_ip_conditions can be TRUE or FALSE
4645 socket_layer_non_id_conditions = TRUE;
4646 ip_output_layer_id_condition = TRUE;
4647 } else if (socket_ip_conditions) {
4648 socket_layer_non_id_conditions = TRUE;
4649 ip_output_layer_non_id_conditions = TRUE;
4650 }
4651 break;
4652 }
4653 case NECP_POLICY_RESULT_SOCKET_DIVERT:
4654 case NECP_POLICY_RESULT_SOCKET_FILTER: {
4655 u_int32_t control_unit = 0;
4656 if (necp_policy_get_result_parameter(policy, (u_int8_t *)&control_unit, sizeof(control_unit))) {
4657 ultimate_result_parameter.flow_divert_control_unit = control_unit;
4658 }
4659 socket_layer_non_id_conditions = TRUE;
4660 break;
4661 }
4662 case NECP_POLICY_RESULT_IP_TUNNEL: {
4663 struct necp_policy_result_ip_tunnel tunnel_parameters;
4664 u_int32_t tunnel_parameters_length = necp_policy_get_result_parameter_length(policy);
4665 if (tunnel_parameters_length > sizeof(u_int32_t) &&
4666 tunnel_parameters_length <= sizeof(struct necp_policy_result_ip_tunnel) &&
4667 necp_policy_get_result_parameter(policy, (u_int8_t *)&tunnel_parameters, sizeof(tunnel_parameters))) {
4668 ifnet_t __single tunnel_interface = NULL;
4669 tunnel_parameters.interface_name[tunnel_parameters_length - sizeof(u_int32_t) - 1] = 0; // Make sure the string is NULL terminated
4670 if (ifnet_find_by_name(__unsafe_null_terminated_from_indexable(tunnel_parameters.interface_name), &tunnel_interface) == 0) {
4671 ultimate_result_parameter.tunnel_interface_index = tunnel_interface->if_index;
4672 ifnet_release(tunnel_interface);
4673 }
4674
4675 secondary_result = tunnel_parameters.secondary_result;
4676 if (secondary_result) {
4677 cond_last_interface_index = ultimate_result_parameter.tunnel_interface_index;
4678 }
4679 }
4680
4681 if (socket_only_conditions) { // socket_ip_conditions can be TRUE or FALSE
4682 socket_layer_non_id_conditions = TRUE;
4683 ip_output_layer_id_condition = TRUE;
4684 if (secondary_result) {
4685 ip_output_layer_tunnel_condition_from_id = TRUE;
4686 }
4687 } else if (socket_ip_conditions) {
4688 socket_layer_non_id_conditions = TRUE;
4689 ip_output_layer_id_condition = TRUE;
4690 ip_output_layer_non_id_conditions = TRUE;
4691 if (secondary_result) {
4692 ip_output_layer_tunnel_condition_from_id = TRUE;
4693 ip_output_layer_tunnel_condition_from_non_id = TRUE;
4694 }
4695 }
4696 break;
4697 }
4698 case NECP_POLICY_RESULT_USE_NETAGENT:
4699 case NECP_POLICY_RESULT_NETAGENT_SCOPED:
4700 case NECP_POLICY_RESULT_REMOVE_NETAGENT: {
4701 uuid_t netagent_uuid;
4702 if (necp_policy_get_result_parameter(policy, (u_int8_t *)&netagent_uuid, sizeof(netagent_uuid))) {
4703 ultimate_result_parameter.netagent_id = necp_create_agent_uuid_id_mapping(netagent_uuid);
4704 if (ultimate_result_parameter.netagent_id != 0) {
4705 uuid_copy(policy->applied_result_uuid, netagent_uuid);
4706 socket_layer_non_id_conditions = TRUE;
4707 }
4708 }
4709 break;
4710 }
4711 case NECP_POLICY_RESULT_REMOVE_NETAGENT_TYPE: {
4712 struct necp_policy_condition_agent_type netagent_type = {};
4713 if (necp_policy_get_result_parameter(policy, (u_int8_t *)&netagent_type, sizeof(netagent_type))) {
4714 ultimate_result_parameter.netagent_id = necp_create_agent_type_to_id_mapping(&netagent_type);
4715 if (ultimate_result_parameter.netagent_id != 0) {
4716 policy->applied_agent_type_id = ultimate_result_parameter.netagent_id;
4717 socket_layer_non_id_conditions = TRUE;
4718 }
4719 }
4720 break;
4721 }
4722 case NECP_POLICY_RESULT_SOCKET_SCOPED: {
4723 u_int32_t interface_name_length = necp_policy_get_result_parameter_length(policy);
4724 if (interface_name_length <= IFXNAMSIZ && interface_name_length > 0) {
4725 char interface_name[IFXNAMSIZ];
4726 ifnet_t __single scope_interface = NULL;
4727 necp_policy_get_result_parameter(policy, (u_int8_t *)interface_name, interface_name_length);
4728 interface_name[interface_name_length - 1] = 0; // Make sure the string is NULL terminated
4729 if (ifnet_find_by_name(__unsafe_null_terminated_from_indexable(interface_name, &interface_name[interface_name_length - 1]), &scope_interface) == 0) {
4730 ultimate_result_parameter.scoped_interface_index = scope_interface->if_index;
4731 socket_layer_non_id_conditions = TRUE;
4732 ifnet_release(scope_interface);
4733 }
4734 }
4735 break;
4736 }
4737 case NECP_POLICY_RESULT_SCOPED_DIRECT: {
4738 socket_layer_non_id_conditions = TRUE;
4739 break;
4740 }
4741 case NECP_POLICY_RESULT_ALLOW_UNENTITLED: {
4742 socket_layer_non_id_conditions = TRUE;
4743 break;
4744 }
4745 case NECP_POLICY_RESULT_ROUTE_RULES: {
4746 if (policy->route_rules != NULL && policy->route_rules_size > 0) {
4747 bool has_socket_only_actions = FALSE;
4748 u_int32_t route_rule_id = necp_create_route_rule(&necp_route_rules, policy->route_rules, policy->route_rules_size, &has_socket_only_actions);
4749 if (route_rule_id > 0) {
4750 policy->applied_route_rules_id = route_rule_id;
4751 ultimate_result_parameter.route_rule_id = route_rule_id;
4752 if (socket_only_conditions || has_socket_only_actions) { // socket_ip_conditions can be TRUE or FALSE
4753 socket_layer_non_id_conditions = TRUE;
4754 } else if (socket_ip_conditions) {
4755 socket_layer_non_id_conditions = TRUE;
4756 ip_output_layer_non_id_conditions = TRUE;
4757 ip_output_layer_non_id_only = TRUE; // Only apply route rules to packets that didn't go through socket layer
4758 }
4759 }
4760 }
4761 break;
4762 }
4763 default: {
4764 break;
4765 }
4766 }
4767
4768 if (socket_layer_non_id_conditions) {
4769 necp_kernel_policy_id policy_id = necp_kernel_socket_policy_add(policy->order, session->session_order, session->proc_pid, master_condition_mask, master_condition_negated_mask, cond_app_id, cond_real_app_id, cond_custom_entitlement, cond_account_id, cond_domain, cond_domain_filter, cond_url, cond_pid, cond_pid_version, cond_uid, cond_real_uid, cond_bound_interface, cond_traffic_class, cond_protocol, &cond_local_start, &cond_local_end, cond_local_prefix, &cond_remote_start, &cond_remote_end, cond_remote_prefix, &cond_agent_type, &cond_sdk_version, cond_client_flags, cond_signing_identifier, cond_packet_filter_tags, cond_scheme_port, cond_bound_interface_flags, cond_bound_interface_eflags, cond_bound_interface_xflags, cond_local_networks_flags, ultimate_result, ultimate_result_parameter);
4770
4771 if (policy_id == 0) {
4772 NECPLOG0(LOG_DEBUG, "Error applying socket kernel policy");
4773 goto fail;
4774 }
4775
4776 cond_ip_output_layer_id = policy_id;
4777 policy->kernel_socket_policies[0] = policy_id;
4778 }
4779
4780 if (ip_output_layer_non_id_conditions) {
4781 u_int64_t condition_mask = master_condition_mask;
4782 if (ip_output_layer_non_id_only) {
4783 condition_mask |= NECP_KERNEL_CONDITION_POLICY_ID;
4784 }
4785
4786 necp_kernel_policy_id policy_id = necp_kernel_ip_output_policy_add(policy->order, NECP_KERNEL_POLICY_SUBORDER_NON_ID_CONDITIONS, session->session_order, session->proc_pid, condition_mask, master_condition_negated_mask, NECP_KERNEL_POLICY_ID_NONE, cond_bound_interface, 0, cond_protocol, &cond_local_start, &cond_local_end, cond_local_prefix, &cond_remote_start, &cond_remote_end, cond_remote_prefix, cond_packet_filter_tags, cond_scheme_port, cond_bound_interface_flags, cond_bound_interface_eflags, cond_bound_interface_xflags, cond_local_networks_flags, ultimate_result, ultimate_result_parameter);
4787
4788 if (policy_id == 0) {
4789 NECPLOG0(LOG_DEBUG, "Error applying IP output kernel policy");
4790 goto fail;
4791 }
4792
4793 policy->kernel_ip_output_policies[NECP_KERNEL_POLICY_SUBORDER_NON_ID_CONDITIONS] = policy_id;
4794 }
4795
4796 if (ip_output_layer_id_condition) {
4797 necp_kernel_policy_id policy_id = necp_kernel_ip_output_policy_add(policy->order, NECP_KERNEL_POLICY_SUBORDER_ID_CONDITION, session->session_order, session->proc_pid, NECP_KERNEL_CONDITION_POLICY_ID | NECP_KERNEL_CONDITION_ALL_INTERFACES, 0, cond_ip_output_layer_id, NULL, 0, 0, NULL, NULL, 0, NULL, NULL, 0, 0, 0, cond_bound_interface_flags, cond_bound_interface_eflags, cond_bound_interface_xflags, cond_local_networks_flags, ultimate_result, ultimate_result_parameter);
4798
4799 if (policy_id == 0) {
4800 NECPLOG0(LOG_DEBUG, "Error applying IP output kernel policy");
4801 goto fail;
4802 }
4803
4804 policy->kernel_ip_output_policies[NECP_KERNEL_POLICY_SUBORDER_ID_CONDITION] = policy_id;
4805 }
4806
4807 // Extra policies for IP Output tunnels for when packets loop back
4808 if (ip_output_layer_tunnel_condition_from_id) {
4809 necp_kernel_policy_id policy_id = necp_kernel_ip_output_policy_add(policy->order, NECP_KERNEL_POLICY_SUBORDER_NON_ID_TUNNEL_CONDITION, session->session_order, session->proc_pid, NECP_KERNEL_CONDITION_POLICY_ID | NECP_KERNEL_CONDITION_LAST_INTERFACE | NECP_KERNEL_CONDITION_ALL_INTERFACES, 0, policy->kernel_ip_output_policies[NECP_KERNEL_POLICY_SUBORDER_NON_ID_CONDITIONS], NULL, cond_last_interface_index, 0, NULL, NULL, 0, NULL, NULL, 0, 0, 0, cond_bound_interface_flags, cond_bound_interface_eflags, cond_bound_interface_xflags, cond_local_networks_flags, secondary_result, secondary_result_parameter);
4810
4811 if (policy_id == 0) {
4812 NECPLOG0(LOG_DEBUG, "Error applying IP output kernel policy");
4813 goto fail;
4814 }
4815
4816 policy->kernel_ip_output_policies[NECP_KERNEL_POLICY_SUBORDER_NON_ID_TUNNEL_CONDITION] = policy_id;
4817 }
4818
4819 if (ip_output_layer_tunnel_condition_from_id) {
4820 necp_kernel_policy_id policy_id = necp_kernel_ip_output_policy_add(policy->order, NECP_KERNEL_POLICY_SUBORDER_ID_TUNNEL_CONDITION, session->session_order, session->proc_pid, NECP_KERNEL_CONDITION_POLICY_ID | NECP_KERNEL_CONDITION_LAST_INTERFACE | NECP_KERNEL_CONDITION_ALL_INTERFACES, 0, policy->kernel_ip_output_policies[NECP_KERNEL_POLICY_SUBORDER_ID_CONDITION], NULL, cond_last_interface_index, 0, NULL, NULL, 0, NULL, NULL, 0, 0, 0, cond_bound_interface_flags, cond_bound_interface_eflags, cond_bound_interface_xflags, cond_local_networks_flags, secondary_result, secondary_result_parameter);
4821
4822 if (policy_id == 0) {
4823 NECPLOG0(LOG_DEBUG, "Error applying IP output kernel policy");
4824 goto fail;
4825 }
4826
4827 policy->kernel_ip_output_policies[NECP_KERNEL_POLICY_SUBORDER_ID_TUNNEL_CONDITION] = policy_id;
4828 }
4829
4830 policy->applied = TRUE;
4831 policy->pending_update = FALSE;
4832 return TRUE;
4833
4834 fail:
4835 return FALSE;
4836 }
4837
4838 static void
necp_policy_apply_all(struct necp_session * session)4839 necp_policy_apply_all(struct necp_session *session)
4840 {
4841 struct necp_session_policy *policy = NULL;
4842 struct necp_session_policy *temp_policy = NULL;
4843 struct kev_necp_policies_changed_data kev_data;
4844 kev_data.changed_count = 0;
4845
4846 lck_rw_lock_exclusive(&necp_kernel_policy_lock);
4847
4848 // Remove exisiting applied policies
4849 if (session->dirty) {
4850 LIST_FOREACH_SAFE(policy, &session->policies, chain, temp_policy) {
4851 if (policy->pending_deletion) {
4852 if (policy->applied) {
4853 necp_policy_unapply(policy);
4854 }
4855 // Delete the policy
4856 necp_policy_delete(session, policy);
4857 } else if (!policy->applied) {
4858 necp_policy_apply(session, policy);
4859 } else if (policy->pending_update) {
4860 // Must have been applied, but needs an update. Remove and re-add.
4861 necp_policy_unapply(policy);
4862 necp_policy_apply(session, policy);
4863 }
4864 }
4865
4866 necp_kernel_socket_policies_update_uuid_table();
4867 necp_kernel_socket_policies_reprocess();
4868 necp_kernel_ip_output_policies_reprocess();
4869
4870 // Clear dirty bit flags
4871 session->dirty = FALSE;
4872 }
4873
4874 lck_rw_done(&necp_kernel_policy_lock);
4875
4876 necp_update_all_clients();
4877 necp_post_change_event(&kev_data);
4878
4879 if (necp_debug) {
4880 NECPLOG0(LOG_DEBUG, "Applied NECP policies");
4881 }
4882 }
4883
4884 // Kernel Policy Management
4885 // ---------------------
4886 // Kernel policies are derived from session policies
4887 static necp_kernel_policy_id
necp_kernel_policy_get_new_id(bool socket_level)4888 necp_kernel_policy_get_new_id(bool socket_level)
4889 {
4890 static necp_kernel_policy_id necp_last_kernel_socket_policy_id = 0;
4891 static necp_kernel_policy_id necp_last_kernel_ip_policy_id = 0;
4892
4893 necp_kernel_policy_id newid = NECP_KERNEL_POLICY_ID_NONE;
4894
4895 LCK_RW_ASSERT(&necp_kernel_policy_lock, LCK_RW_ASSERT_EXCLUSIVE);
4896
4897 if (socket_level) {
4898 bool wrapped = FALSE;
4899 do {
4900 necp_last_kernel_socket_policy_id++;
4901 if (necp_last_kernel_socket_policy_id < NECP_KERNEL_POLICY_ID_FIRST_VALID_SOCKET ||
4902 necp_last_kernel_socket_policy_id >= NECP_KERNEL_POLICY_ID_FIRST_VALID_IP) {
4903 if (wrapped) {
4904 // Already wrapped, give up
4905 NECPLOG0(LOG_ERR, "Failed to find a free socket kernel policy ID.\n");
4906 return NECP_KERNEL_POLICY_ID_NONE;
4907 }
4908 necp_last_kernel_socket_policy_id = NECP_KERNEL_POLICY_ID_FIRST_VALID_SOCKET;
4909 wrapped = TRUE;
4910 }
4911 newid = necp_last_kernel_socket_policy_id;
4912 } while (necp_kernel_socket_policy_find(newid) != NULL); // If already used, keep trying
4913 } else {
4914 bool wrapped = FALSE;
4915 do {
4916 necp_last_kernel_ip_policy_id++;
4917 if (necp_last_kernel_ip_policy_id < NECP_KERNEL_POLICY_ID_FIRST_VALID_IP) {
4918 if (wrapped) {
4919 // Already wrapped, give up
4920 NECPLOG0(LOG_ERR, "Failed to find a free IP kernel policy ID.\n");
4921 return NECP_KERNEL_POLICY_ID_NONE;
4922 }
4923 necp_last_kernel_ip_policy_id = NECP_KERNEL_POLICY_ID_FIRST_VALID_IP;
4924 wrapped = TRUE;
4925 }
4926 newid = necp_last_kernel_ip_policy_id;
4927 } while (necp_kernel_ip_output_policy_find(newid) != NULL); // If already used, keep trying
4928 }
4929
4930 if (newid == NECP_KERNEL_POLICY_ID_NONE) {
4931 NECPLOG0(LOG_ERR, "Allocate kernel policy id failed.\n");
4932 return NECP_KERNEL_POLICY_ID_NONE;
4933 }
4934
4935 return newid;
4936 }
4937
4938 #define NECP_KERNEL_VALID_SOCKET_CONDITIONS (NECP_KERNEL_CONDITION_APP_ID | NECP_KERNEL_CONDITION_REAL_APP_ID | NECP_KERNEL_CONDITION_DOMAIN | NECP_KERNEL_CONDITION_ACCOUNT_ID | NECP_KERNEL_CONDITION_PID | NECP_KERNEL_CONDITION_UID | NECP_KERNEL_CONDITION_REAL_UID | NECP_KERNEL_CONDITION_ALL_INTERFACES | NECP_KERNEL_CONDITION_BOUND_INTERFACE | NECP_KERNEL_CONDITION_TRAFFIC_CLASS | NECP_KERNEL_CONDITION_PROTOCOL | NECP_KERNEL_CONDITION_LOCAL_START | NECP_KERNEL_CONDITION_LOCAL_END | NECP_KERNEL_CONDITION_LOCAL_PREFIX | NECP_KERNEL_CONDITION_REMOTE_START | NECP_KERNEL_CONDITION_REMOTE_END | NECP_KERNEL_CONDITION_REMOTE_PREFIX | NECP_KERNEL_CONDITION_ENTITLEMENT | NECP_KERNEL_CONDITION_CUSTOM_ENTITLEMENT | NECP_KERNEL_CONDITION_AGENT_TYPE | NECP_KERNEL_CONDITION_HAS_CLIENT | NECP_KERNEL_CONDITION_LOCAL_NETWORKS | NECP_KERNEL_CONDITION_CLIENT_FLAGS | NECP_KERNEL_CONDITION_LOCAL_EMPTY | NECP_KERNEL_CONDITION_REMOTE_EMPTY | NECP_KERNEL_CONDITION_PLATFORM_BINARY | NECP_KERNEL_CONDITION_SDK_VERSION | NECP_KERNEL_CONDITION_SIGNING_IDENTIFIER | NECP_KERNEL_CONDITION_PACKET_FILTER_TAGS | NECP_KERNEL_CONDITION_IS_LOOPBACK | NECP_KERNEL_CONDITION_DELEGATE_IS_PLATFORM_BINARY | NECP_KERNEL_CONDITION_SCHEME_PORT | NECP_KERNEL_CONDITION_DOMAIN_FILTER | NECP_KERNEL_CONDITION_SYSTEM_SIGNED_RESULT | NECP_KERNEL_CONDITION_EXACT_DOMAIN | NECP_KERNEL_CONDITION_URL | NECP_KERNEL_CONDITION_BOUND_INTERFACE_FLAGS)
4939
4940 static necp_kernel_policy_id
necp_kernel_socket_policy_add(necp_policy_order order,u_int32_t session_order,int session_pid,u_int64_t condition_mask,u_int64_t condition_negated_mask,necp_app_id cond_app_id,necp_app_id cond_real_app_id,char * cond_custom_entitlement __null_terminated,u_int32_t cond_account_id,char * cond_domain __null_terminated,u_int32_t cond_domain_filter,char * cond_url __null_terminated,pid_t cond_pid,int32_t cond_pid_version,uid_t cond_uid,uid_t cond_real_uid,ifnet_t cond_bound_interface,struct necp_policy_condition_tc_range cond_traffic_class,u_int16_t cond_protocol,union necp_sockaddr_union * __single cond_local_start,union necp_sockaddr_union * cond_local_end,u_int8_t cond_local_prefix,union necp_sockaddr_union * cond_remote_start,union necp_sockaddr_union * cond_remote_end,u_int8_t cond_remote_prefix,struct necp_policy_condition_agent_type * cond_agent_type,struct necp_policy_condition_sdk_version * cond_sdk_version,u_int32_t cond_client_flags,char * cond_signing_identifier __null_terminated,u_int16_t cond_packet_filter_tags,u_int16_t cond_scheme_port,u_int32_t cond_bound_interface_flags,u_int32_t cond_bound_interface_eflags,u_int32_t cond_bound_interface_xflags,u_int8_t cond_local_networks_flags,necp_kernel_policy_result result,necp_kernel_policy_result_parameter result_parameter)4941 necp_kernel_socket_policy_add(necp_policy_order order, u_int32_t session_order, int session_pid, u_int64_t condition_mask, u_int64_t condition_negated_mask, necp_app_id cond_app_id, necp_app_id cond_real_app_id, char *cond_custom_entitlement __null_terminated, u_int32_t cond_account_id, char *cond_domain __null_terminated, u_int32_t cond_domain_filter, char *cond_url __null_terminated, pid_t cond_pid, int32_t cond_pid_version, uid_t cond_uid, uid_t cond_real_uid, ifnet_t cond_bound_interface, struct necp_policy_condition_tc_range cond_traffic_class, u_int16_t cond_protocol, union necp_sockaddr_union * __single cond_local_start, union necp_sockaddr_union *cond_local_end, u_int8_t cond_local_prefix, union necp_sockaddr_union *cond_remote_start, union necp_sockaddr_union *cond_remote_end, u_int8_t cond_remote_prefix, struct necp_policy_condition_agent_type *cond_agent_type, struct necp_policy_condition_sdk_version *cond_sdk_version, u_int32_t cond_client_flags, char *cond_signing_identifier __null_terminated, u_int16_t cond_packet_filter_tags, u_int16_t cond_scheme_port, u_int32_t cond_bound_interface_flags, u_int32_t cond_bound_interface_eflags, u_int32_t cond_bound_interface_xflags, u_int8_t cond_local_networks_flags, necp_kernel_policy_result result, necp_kernel_policy_result_parameter result_parameter)
4942 {
4943 struct necp_kernel_socket_policy *new_kernel_policy = NULL;
4944 struct necp_kernel_socket_policy *tmp_kernel_policy = NULL;
4945
4946 new_kernel_policy = zalloc_flags(necp_socket_policy_zone, Z_WAITOK | Z_ZERO);
4947
4948 new_kernel_policy->id = necp_kernel_policy_get_new_id(true);
4949 new_kernel_policy->order = order;
4950 new_kernel_policy->session_order = session_order;
4951 new_kernel_policy->session_pid = session_pid;
4952
4953 // Sanitize condition mask
4954 new_kernel_policy->condition_mask = (condition_mask & NECP_KERNEL_VALID_SOCKET_CONDITIONS);
4955 if ((new_kernel_policy->condition_mask & NECP_KERNEL_CONDITION_ALL_INTERFACES) && (new_kernel_policy->condition_mask & NECP_KERNEL_CONDITION_BOUND_INTERFACE)) {
4956 new_kernel_policy->condition_mask &= ~NECP_KERNEL_CONDITION_BOUND_INTERFACE;
4957 }
4958 if ((new_kernel_policy->condition_mask & NECP_KERNEL_CONDITION_ALL_INTERFACES) && (new_kernel_policy->condition_mask & NECP_KERNEL_CONDITION_BOUND_INTERFACE_FLAGS)) {
4959 new_kernel_policy->condition_mask &= ~NECP_KERNEL_CONDITION_BOUND_INTERFACE_FLAGS;
4960 }
4961 if ((new_kernel_policy->condition_mask & NECP_KERNEL_CONDITION_REAL_APP_ID) && !(new_kernel_policy->condition_mask & NECP_KERNEL_CONDITION_APP_ID)) {
4962 new_kernel_policy->condition_mask &= ~NECP_KERNEL_CONDITION_REAL_APP_ID;
4963 }
4964 if ((new_kernel_policy->condition_mask & NECP_KERNEL_CONDITION_LOCAL_END) && (new_kernel_policy->condition_mask & NECP_KERNEL_CONDITION_LOCAL_PREFIX)) {
4965 new_kernel_policy->condition_mask &= ~NECP_KERNEL_CONDITION_LOCAL_PREFIX;
4966 }
4967 if ((new_kernel_policy->condition_mask & NECP_KERNEL_CONDITION_REMOTE_END) && (new_kernel_policy->condition_mask & NECP_KERNEL_CONDITION_REMOTE_PREFIX)) {
4968 new_kernel_policy->condition_mask &= ~NECP_KERNEL_CONDITION_REMOTE_PREFIX;
4969 }
4970 if (new_kernel_policy->condition_mask & NECP_KERNEL_CONDITION_LOCAL_EMPTY) {
4971 new_kernel_policy->condition_mask &= ~(NECP_KERNEL_CONDITION_LOCAL_PREFIX | NECP_KERNEL_CONDITION_LOCAL_END);
4972 }
4973 if ((new_kernel_policy->condition_mask & NECP_KERNEL_CONDITION_REMOTE_EMPTY)) {
4974 new_kernel_policy->condition_mask &= ~(NECP_KERNEL_CONDITION_REMOTE_PREFIX | NECP_KERNEL_CONDITION_REMOTE_END);
4975 }
4976 new_kernel_policy->condition_negated_mask = condition_negated_mask & new_kernel_policy->condition_mask;
4977
4978 // Set condition values
4979 if (new_kernel_policy->condition_mask & NECP_KERNEL_CONDITION_APP_ID) {
4980 new_kernel_policy->cond_app_id = cond_app_id;
4981 }
4982 if (new_kernel_policy->condition_mask & NECP_KERNEL_CONDITION_REAL_APP_ID) {
4983 new_kernel_policy->cond_real_app_id = cond_real_app_id;
4984 }
4985 if (new_kernel_policy->condition_mask & NECP_KERNEL_CONDITION_CUSTOM_ENTITLEMENT) {
4986 new_kernel_policy->cond_custom_entitlement = cond_custom_entitlement;
4987 }
4988 if (new_kernel_policy->condition_mask & NECP_KERNEL_CONDITION_ACCOUNT_ID) {
4989 new_kernel_policy->cond_account_id = cond_account_id;
4990 }
4991 if ((new_kernel_policy->condition_mask & NECP_KERNEL_CONDITION_DOMAIN) ||
4992 (new_kernel_policy->condition_mask & NECP_KERNEL_CONDITION_EXACT_DOMAIN)) {
4993 new_kernel_policy->cond_domain = cond_domain;
4994 new_kernel_policy->cond_domain_dot_count = necp_count_dots(__unsafe_null_terminated_to_indexable(cond_domain), strlen(cond_domain));
4995 }
4996 if (new_kernel_policy->condition_mask & NECP_KERNEL_CONDITION_DOMAIN_FILTER) {
4997 new_kernel_policy->cond_domain_filter = cond_domain_filter;
4998 }
4999 if (new_kernel_policy->condition_mask & NECP_KERNEL_CONDITION_URL) {
5000 new_kernel_policy->cond_url = cond_url;
5001 }
5002 if (new_kernel_policy->condition_mask & NECP_KERNEL_CONDITION_PID) {
5003 new_kernel_policy->cond_pid = cond_pid;
5004 new_kernel_policy->cond_pid_version = cond_pid_version;
5005 }
5006 if (new_kernel_policy->condition_mask & NECP_KERNEL_CONDITION_UID) {
5007 new_kernel_policy->cond_uid = cond_uid;
5008 }
5009 if (new_kernel_policy->condition_mask & NECP_KERNEL_CONDITION_REAL_UID) {
5010 new_kernel_policy->cond_real_uid = cond_real_uid;
5011 }
5012 if (new_kernel_policy->condition_mask & NECP_KERNEL_CONDITION_BOUND_INTERFACE) {
5013 if (cond_bound_interface) {
5014 ifnet_reference(cond_bound_interface);
5015 }
5016 new_kernel_policy->cond_bound_interface = cond_bound_interface;
5017 }
5018 if (new_kernel_policy->condition_mask & NECP_KERNEL_CONDITION_TRAFFIC_CLASS) {
5019 new_kernel_policy->cond_traffic_class = cond_traffic_class;
5020 }
5021 if (new_kernel_policy->condition_mask & NECP_KERNEL_CONDITION_PROTOCOL) {
5022 new_kernel_policy->cond_protocol = cond_protocol;
5023 }
5024 if (new_kernel_policy->condition_mask & NECP_KERNEL_CONDITION_LOCAL_START) {
5025 SOCKADDR_COPY(cond_local_start, &new_kernel_policy->cond_local_start, cond_local_start->sa.sa_len);
5026 }
5027 if (new_kernel_policy->condition_mask & NECP_KERNEL_CONDITION_LOCAL_END) {
5028 SOCKADDR_COPY(cond_local_end, &new_kernel_policy->cond_local_end, cond_local_end->sa.sa_len);
5029 }
5030 if (new_kernel_policy->condition_mask & NECP_KERNEL_CONDITION_LOCAL_PREFIX) {
5031 new_kernel_policy->cond_local_prefix = cond_local_prefix;
5032 }
5033 if (new_kernel_policy->condition_mask & NECP_KERNEL_CONDITION_REMOTE_START) {
5034 SOCKADDR_COPY(cond_remote_start, &new_kernel_policy->cond_remote_start, cond_remote_start->sa.sa_len);
5035 }
5036 if (new_kernel_policy->condition_mask & NECP_KERNEL_CONDITION_REMOTE_END) {
5037 SOCKADDR_COPY(cond_remote_end, &new_kernel_policy->cond_remote_end, cond_remote_end->sa.sa_len);
5038 }
5039 if (new_kernel_policy->condition_mask & NECP_KERNEL_CONDITION_REMOTE_PREFIX) {
5040 new_kernel_policy->cond_remote_prefix = cond_remote_prefix;
5041 }
5042 if (new_kernel_policy->condition_mask & NECP_KERNEL_CONDITION_AGENT_TYPE) {
5043 memcpy(&new_kernel_policy->cond_agent_type, cond_agent_type, sizeof(*cond_agent_type));
5044 }
5045 if (new_kernel_policy->condition_mask & NECP_KERNEL_CONDITION_SDK_VERSION) {
5046 memcpy(&new_kernel_policy->cond_sdk_version, cond_sdk_version, sizeof(*cond_sdk_version));
5047 }
5048 if (new_kernel_policy->condition_mask & NECP_KERNEL_CONDITION_CLIENT_FLAGS) {
5049 new_kernel_policy->cond_client_flags = cond_client_flags;
5050 }
5051 if (new_kernel_policy->condition_mask & NECP_KERNEL_CONDITION_SIGNING_IDENTIFIER) {
5052 new_kernel_policy->cond_signing_identifier = cond_signing_identifier;
5053 }
5054 if (new_kernel_policy->condition_mask & NECP_KERNEL_CONDITION_PACKET_FILTER_TAGS) {
5055 new_kernel_policy->cond_packet_filter_tags = cond_packet_filter_tags;
5056 }
5057 if (new_kernel_policy->condition_mask & NECP_KERNEL_CONDITION_SCHEME_PORT) {
5058 new_kernel_policy->cond_scheme_port = cond_scheme_port;
5059 }
5060 if (new_kernel_policy->condition_mask & NECP_KERNEL_CONDITION_BOUND_INTERFACE_FLAGS) {
5061 new_kernel_policy->cond_bound_interface_flags = cond_bound_interface_flags;
5062 new_kernel_policy->cond_bound_interface_eflags = cond_bound_interface_eflags;
5063 new_kernel_policy->cond_bound_interface_xflags = cond_bound_interface_xflags;
5064 }
5065 if (new_kernel_policy->condition_mask & NECP_KERNEL_CONDITION_LOCAL_NETWORKS) {
5066 new_kernel_policy->cond_local_networks_flags = cond_local_networks_flags;
5067 }
5068
5069 new_kernel_policy->result = result;
5070 memcpy(&new_kernel_policy->result_parameter, &result_parameter, sizeof(result_parameter));
5071
5072 if (necp_debug) {
5073 NECPLOG(LOG_DEBUG, "Added kernel policy: socket, id=%d, mask=%llx\n", new_kernel_policy->id, new_kernel_policy->condition_mask);
5074 }
5075 LIST_INSERT_SORTED_TWICE_ASCENDING(&necp_kernel_socket_policies, new_kernel_policy, chain, session_order, order, tmp_kernel_policy);
5076
5077 return new_kernel_policy ? new_kernel_policy->id : 0;
5078 }
5079
5080 static struct necp_kernel_socket_policy *
necp_kernel_socket_policy_find(necp_kernel_policy_id policy_id)5081 necp_kernel_socket_policy_find(necp_kernel_policy_id policy_id)
5082 {
5083 struct necp_kernel_socket_policy *kernel_policy = NULL;
5084 struct necp_kernel_socket_policy *tmp_kernel_policy = NULL;
5085
5086 if (policy_id == 0) {
5087 return NULL;
5088 }
5089
5090 LIST_FOREACH_SAFE(kernel_policy, &necp_kernel_socket_policies, chain, tmp_kernel_policy) {
5091 if (kernel_policy->id == policy_id) {
5092 return kernel_policy;
5093 }
5094 }
5095
5096 return NULL;
5097 }
5098
5099 static bool
necp_kernel_socket_policy_delete(necp_kernel_policy_id policy_id)5100 necp_kernel_socket_policy_delete(necp_kernel_policy_id policy_id)
5101 {
5102 struct necp_kernel_socket_policy * __single policy = NULL;
5103 char * __indexable buffer = NULL;
5104 LCK_RW_ASSERT(&necp_kernel_policy_lock, LCK_RW_ASSERT_EXCLUSIVE);
5105
5106 policy = necp_kernel_socket_policy_find(policy_id);
5107 if (policy) {
5108 LIST_REMOVE(policy, chain);
5109
5110 if (policy->cond_bound_interface) {
5111 ifnet_release(policy->cond_bound_interface);
5112 policy->cond_bound_interface = NULL;
5113 }
5114
5115 if (policy->cond_domain) {
5116 buffer = __unsafe_null_terminated_to_indexable(policy->cond_domain);
5117 kfree_data_addr(buffer);
5118 policy->cond_domain = NULL;
5119 }
5120
5121 if (policy->cond_url) {
5122 buffer = __unsafe_null_terminated_to_indexable(policy->cond_url);
5123 kfree_data_addr(buffer);
5124 policy->cond_url = NULL;
5125 }
5126
5127 if (policy->cond_custom_entitlement) {
5128 buffer = __unsafe_null_terminated_to_indexable(policy->cond_custom_entitlement);
5129 kfree_data_addr(buffer);
5130 policy->cond_custom_entitlement = NULL;
5131 }
5132
5133 if (policy->cond_signing_identifier) {
5134 buffer = __unsafe_null_terminated_to_indexable(policy->cond_signing_identifier);
5135 kfree_data_addr(buffer);
5136 policy->cond_signing_identifier = NULL;
5137 }
5138
5139 zfree(necp_socket_policy_zone, policy);
5140 return TRUE;
5141 }
5142
5143 return FALSE;
5144 }
5145
5146 static inline const char *
__sized_by(MAX_RESULT_STRING_LEN)5147 __sized_by(MAX_RESULT_STRING_LEN)
5148 necp_get_result_description(char * __sized_by(MAX_RESULT_STRING_LEN) result_string, necp_kernel_policy_result result, necp_kernel_policy_result_parameter result_parameter)
5149 {
5150 uuid_string_t uuid_string;
5151 switch (result) {
5152 case NECP_KERNEL_POLICY_RESULT_NONE: {
5153 snprintf(result_string, MAX_RESULT_STRING_LEN, "None");
5154 break;
5155 }
5156 case NECP_KERNEL_POLICY_RESULT_PASS: {
5157 snprintf(result_string, MAX_RESULT_STRING_LEN, "Pass (%X)", result_parameter.pass_flags);
5158 break;
5159 }
5160 case NECP_KERNEL_POLICY_RESULT_SKIP: {
5161 snprintf(result_string, MAX_RESULT_STRING_LEN, "Skip (%u)", result_parameter.skip_policy_order);
5162 break;
5163 }
5164 case NECP_KERNEL_POLICY_RESULT_DROP: {
5165 snprintf(result_string, MAX_RESULT_STRING_LEN, "Drop (%X)", result_parameter.drop_flags);
5166 break;
5167 }
5168 case NECP_KERNEL_POLICY_RESULT_SOCKET_DIVERT: {
5169 snprintf(result_string, MAX_RESULT_STRING_LEN, "SocketDivert (%d)", result_parameter.flow_divert_control_unit);
5170 break;
5171 }
5172 case NECP_KERNEL_POLICY_RESULT_SOCKET_FILTER: {
5173 snprintf(result_string, MAX_RESULT_STRING_LEN, "SocketFilter (%d)", result_parameter.filter_control_unit);
5174 break;
5175 }
5176 case NECP_KERNEL_POLICY_RESULT_IP_TUNNEL: {
5177 ifnet_t interface = ifindex2ifnet[result_parameter.tunnel_interface_index];
5178 snprintf(result_string, MAX_RESULT_STRING_LEN, "IPTunnel (%s%d)", ifnet_name(interface), ifnet_unit(interface));
5179 break;
5180 }
5181 case NECP_KERNEL_POLICY_RESULT_IP_FILTER: {
5182 snprintf(result_string, MAX_RESULT_STRING_LEN, "IPFilter");
5183 break;
5184 }
5185 case NECP_KERNEL_POLICY_RESULT_SOCKET_SCOPED: {
5186 ifnet_t interface = ifindex2ifnet[result_parameter.scoped_interface_index];
5187 snprintf(result_string, MAX_RESULT_STRING_LEN, "SocketScoped (%s%d)", ifnet_name(interface), ifnet_unit(interface));
5188 break;
5189 }
5190 case NECP_KERNEL_POLICY_RESULT_SCOPED_DIRECT: {
5191 snprintf(result_string, MAX_RESULT_STRING_LEN, "ScopedDirect");
5192 break;
5193 }
5194 case NECP_KERNEL_POLICY_RESULT_ALLOW_UNENTITLED: {
5195 snprintf(result_string, MAX_RESULT_STRING_LEN, "AllowUnentitled");
5196 break;
5197 }
5198 case NECP_KERNEL_POLICY_RESULT_ROUTE_RULES: {
5199 int index = 0;
5200 char interface_names[MAX_ROUTE_RULE_INTERFACES][IFXNAMSIZ];
5201 struct necp_route_rule *route_rule = necp_lookup_route_rule_locked(&necp_route_rules, result_parameter.route_rule_id);
5202 if (route_rule != NULL) {
5203 for (index = 0; index < MAX_ROUTE_RULE_INTERFACES; index++) {
5204 if (route_rule->exception_if_indices[index] != 0) {
5205 ifnet_t interface = ifindex2ifnet[route_rule->exception_if_indices[index]];
5206 snprintf(interface_names[index], IFXNAMSIZ, "%s%d", ifnet_name(interface), ifnet_unit(interface));
5207 } else {
5208 memset(interface_names[index], 0, IFXNAMSIZ);
5209 }
5210 }
5211 switch (route_rule->default_action) {
5212 case NECP_ROUTE_RULE_DENY_INTERFACE:
5213 case NECP_ROUTE_RULE_DENY_INTERFACE_WITH_TYPE:
5214 snprintf(result_string, MAX_RESULT_STRING_LEN, "RouteRules (Only %s%s%s%s%s%s%s%s%s%s%s%s%s%s%s%s%s%s%s%s%s%s%s%s%s%s%s)",
5215 (route_rule->cellular_action == NECP_ROUTE_RULE_ALLOW_INTERFACE) ? "Cell " : "",
5216 (route_rule->wifi_action == NECP_ROUTE_RULE_ALLOW_INTERFACE) ? "WiFi " : "",
5217 (route_rule->wired_action == NECP_ROUTE_RULE_ALLOW_INTERFACE) ? "Wired " : "",
5218 (route_rule->expensive_action == NECP_ROUTE_RULE_ALLOW_INTERFACE) ? "Exp " : "",
5219 (route_rule->constrained_action == NECP_ROUTE_RULE_ALLOW_INTERFACE) ? "Constrained " : "",
5220 (route_rule->ultra_constrained_action == NECP_ROUTE_RULE_ALLOW_INTERFACE) ? "Ultra-Constrained " : "",
5221 (route_rule->companion_action == NECP_ROUTE_RULE_ALLOW_INTERFACE) ? "Companion " : "",
5222 (route_rule->vpn_action == NECP_ROUTE_RULE_ALLOW_INTERFACE) ? "VPN " : "",
5223 (route_rule->exception_if_actions[0] == NECP_ROUTE_RULE_ALLOW_INTERFACE) ? interface_names[0] : "",
5224 (route_rule->exception_if_actions[0] == NECP_ROUTE_RULE_ALLOW_INTERFACE) ? " " : "",
5225 (route_rule->exception_if_actions[1] == NECP_ROUTE_RULE_ALLOW_INTERFACE) ? interface_names[1] : "",
5226 (route_rule->exception_if_actions[1] == NECP_ROUTE_RULE_ALLOW_INTERFACE) ? " " : "",
5227 (route_rule->exception_if_actions[2] == NECP_ROUTE_RULE_ALLOW_INTERFACE) ? interface_names[2] : "",
5228 (route_rule->exception_if_actions[2] == NECP_ROUTE_RULE_ALLOW_INTERFACE) ? " " : "",
5229 (route_rule->exception_if_actions[3] == NECP_ROUTE_RULE_ALLOW_INTERFACE) ? interface_names[3] : "",
5230 (route_rule->exception_if_actions[3] == NECP_ROUTE_RULE_ALLOW_INTERFACE) ? " " : "",
5231 (route_rule->exception_if_actions[4] == NECP_ROUTE_RULE_ALLOW_INTERFACE) ? interface_names[4] : "",
5232 (route_rule->exception_if_actions[4] == NECP_ROUTE_RULE_ALLOW_INTERFACE) ? " " : "",
5233 (route_rule->exception_if_actions[5] == NECP_ROUTE_RULE_ALLOW_INTERFACE) ? interface_names[5] : "",
5234 (route_rule->exception_if_actions[5] == NECP_ROUTE_RULE_ALLOW_INTERFACE) ? " " : "",
5235 (route_rule->exception_if_actions[6] == NECP_ROUTE_RULE_ALLOW_INTERFACE) ? interface_names[6] : "",
5236 (route_rule->exception_if_actions[6] == NECP_ROUTE_RULE_ALLOW_INTERFACE) ? " " : "",
5237 (route_rule->exception_if_actions[7] == NECP_ROUTE_RULE_ALLOW_INTERFACE) ? interface_names[7] : "",
5238 (route_rule->exception_if_actions[7] == NECP_ROUTE_RULE_ALLOW_INTERFACE) ? " " : "",
5239 (route_rule->exception_if_actions[8] == NECP_ROUTE_RULE_ALLOW_INTERFACE) ? interface_names[8] : "",
5240 (route_rule->exception_if_actions[8] == NECP_ROUTE_RULE_ALLOW_INTERFACE) ? " " : "",
5241 (route_rule->exception_if_actions[9] == NECP_ROUTE_RULE_ALLOW_INTERFACE) ? interface_names[9] : "");
5242 break;
5243 case NECP_ROUTE_RULE_ALLOW_INTERFACE:
5244 snprintf(result_string, MAX_RESULT_STRING_LEN, "RouteRules (%s%s%s%s%s%s%s%s%s%s%s%s%s%s%s%s%s%s%s%s%s%s%s%s%s%s%s%s)",
5245 IS_NECP_ROUTE_RULE_DENY(route_rule->cellular_action) ? "!Cell " : "",
5246 IS_NECP_ROUTE_RULE_DENY(route_rule->wifi_action) ? "!WiFi " : "",
5247 IS_NECP_ROUTE_RULE_DENY(route_rule->wired_action) ? "!Wired " : "",
5248 IS_NECP_ROUTE_RULE_DENY(route_rule->expensive_action) ? "!Exp " : "",
5249 IS_NECP_ROUTE_RULE_DENY(route_rule->constrained_action) ? "!Constrained " : "",
5250 IS_NECP_ROUTE_RULE_DENY(route_rule->ultra_constrained_action) ? "!Ultra-Constrained " : "",
5251 IS_NECP_ROUTE_RULE_DENY(route_rule->companion_action) ? "!Companion " : "",
5252 IS_NECP_ROUTE_RULE_DENY(route_rule->vpn_action) ? "!VPN " : "",
5253 IS_NECP_ROUTE_RULE_DENY(route_rule->exception_if_actions[0]) ? "!" : "",
5254 IS_NECP_ROUTE_RULE_DENY(route_rule->exception_if_actions[0]) ? interface_names[0] : "",
5255 IS_NECP_ROUTE_RULE_DENY(route_rule->exception_if_actions[1]) ? "!" : "",
5256 IS_NECP_ROUTE_RULE_DENY(route_rule->exception_if_actions[1]) ? interface_names[1] : "",
5257 IS_NECP_ROUTE_RULE_DENY(route_rule->exception_if_actions[2]) ? "!" : "",
5258 IS_NECP_ROUTE_RULE_DENY(route_rule->exception_if_actions[2]) ? interface_names[2] : "",
5259 IS_NECP_ROUTE_RULE_DENY(route_rule->exception_if_actions[3]) ? "!" : "",
5260 IS_NECP_ROUTE_RULE_DENY(route_rule->exception_if_actions[3]) ? interface_names[3] : "",
5261 IS_NECP_ROUTE_RULE_DENY(route_rule->exception_if_actions[4]) ? "!" : "",
5262 IS_NECP_ROUTE_RULE_DENY(route_rule->exception_if_actions[4]) ? interface_names[4] : "",
5263 IS_NECP_ROUTE_RULE_DENY(route_rule->exception_if_actions[5]) ? "!" : "",
5264 IS_NECP_ROUTE_RULE_DENY(route_rule->exception_if_actions[5]) ? interface_names[5] : "",
5265 IS_NECP_ROUTE_RULE_DENY(route_rule->exception_if_actions[6]) ? "!" : "",
5266 IS_NECP_ROUTE_RULE_DENY(route_rule->exception_if_actions[6]) ? interface_names[6] : "",
5267 IS_NECP_ROUTE_RULE_DENY(route_rule->exception_if_actions[7]) ? "!" : "",
5268 IS_NECP_ROUTE_RULE_DENY(route_rule->exception_if_actions[7]) ? interface_names[7] : "",
5269 IS_NECP_ROUTE_RULE_DENY(route_rule->exception_if_actions[8]) ? "!" : "",
5270 IS_NECP_ROUTE_RULE_DENY(route_rule->exception_if_actions[8]) ? interface_names[8] : "",
5271 IS_NECP_ROUTE_RULE_DENY(route_rule->exception_if_actions[9]) ? "!" : "",
5272 IS_NECP_ROUTE_RULE_DENY(route_rule->exception_if_actions[9]) ? interface_names[9] : "");
5273 break;
5274 case NECP_ROUTE_RULE_QOS_MARKING:
5275 snprintf(result_string, MAX_RESULT_STRING_LEN, "RouteRules (QoSMarking %s%s%s%s%s%s%s%s%s%s%s%s%s%s%s%s%s%s%s%s%s%s%s%s%s%s%s)",
5276 (route_rule->cellular_action == NECP_ROUTE_RULE_QOS_MARKING) ? "Cell " : "",
5277 (route_rule->wifi_action == NECP_ROUTE_RULE_QOS_MARKING) ? "WiFi " : "",
5278 (route_rule->wired_action == NECP_ROUTE_RULE_QOS_MARKING) ? "Wired " : "",
5279 (route_rule->expensive_action == NECP_ROUTE_RULE_QOS_MARKING) ? "Exp " : "",
5280 (route_rule->constrained_action == NECP_ROUTE_RULE_QOS_MARKING) ? "Constrained " : "",
5281 (route_rule->ultra_constrained_action == NECP_ROUTE_RULE_QOS_MARKING) ? "Ultra-Constrained " : "",
5282 (route_rule->companion_action == NECP_ROUTE_RULE_QOS_MARKING) ? "Companion " : "",
5283 (route_rule->vpn_action == NECP_ROUTE_RULE_QOS_MARKING) ? "VPN " : "",
5284 (route_rule->exception_if_actions[0] == NECP_ROUTE_RULE_QOS_MARKING) ? interface_names[0] : "",
5285 (route_rule->exception_if_actions[0] == NECP_ROUTE_RULE_QOS_MARKING) ? " " : "",
5286 (route_rule->exception_if_actions[1] == NECP_ROUTE_RULE_QOS_MARKING) ? interface_names[1] : "",
5287 (route_rule->exception_if_actions[1] == NECP_ROUTE_RULE_QOS_MARKING) ? " " : "",
5288 (route_rule->exception_if_actions[2] == NECP_ROUTE_RULE_QOS_MARKING) ? interface_names[2] : "",
5289 (route_rule->exception_if_actions[2] == NECP_ROUTE_RULE_QOS_MARKING) ? " " : "",
5290 (route_rule->exception_if_actions[3] == NECP_ROUTE_RULE_QOS_MARKING) ? interface_names[3] : "",
5291 (route_rule->exception_if_actions[3] == NECP_ROUTE_RULE_QOS_MARKING) ? " " : "",
5292 (route_rule->exception_if_actions[4] == NECP_ROUTE_RULE_QOS_MARKING) ? interface_names[4] : "",
5293 (route_rule->exception_if_actions[4] == NECP_ROUTE_RULE_QOS_MARKING) ? " " : "",
5294 (route_rule->exception_if_actions[5] == NECP_ROUTE_RULE_QOS_MARKING) ? interface_names[5] : "",
5295 (route_rule->exception_if_actions[5] == NECP_ROUTE_RULE_QOS_MARKING) ? " " : "",
5296 (route_rule->exception_if_actions[6] == NECP_ROUTE_RULE_QOS_MARKING) ? interface_names[6] : "",
5297 (route_rule->exception_if_actions[6] == NECP_ROUTE_RULE_QOS_MARKING) ? " " : "",
5298 (route_rule->exception_if_actions[7] == NECP_ROUTE_RULE_QOS_MARKING) ? interface_names[7] : "",
5299 (route_rule->exception_if_actions[7] == NECP_ROUTE_RULE_QOS_MARKING) ? " " : "",
5300 (route_rule->exception_if_actions[8] == NECP_ROUTE_RULE_QOS_MARKING) ? interface_names[8] : "",
5301 (route_rule->exception_if_actions[8] == NECP_ROUTE_RULE_QOS_MARKING) ? " " : "",
5302 (route_rule->exception_if_actions[9] == NECP_ROUTE_RULE_QOS_MARKING) ? interface_names[9] : "");
5303 break;
5304 default:
5305 snprintf(result_string, MAX_RESULT_STRING_LEN, "RouteRules (Unknown)");
5306 break;
5307 }
5308 }
5309 break;
5310 }
5311 case NECP_KERNEL_POLICY_RESULT_USE_NETAGENT: {
5312 bool found_mapping = FALSE;
5313 struct necp_uuid_id_mapping *mapping = necp_uuid_lookup_uuid_with_agent_id_locked(result_parameter.netagent_id);
5314 if (mapping != NULL) {
5315 uuid_unparse(mapping->uuid, uuid_string);
5316 found_mapping = TRUE;
5317 }
5318 snprintf(result_string, MAX_RESULT_STRING_LEN, "UseNetAgent (%s)", found_mapping ? uuid_string : "Unknown");
5319 break;
5320 }
5321 case NECP_KERNEL_POLICY_RESULT_NETAGENT_SCOPED: {
5322 bool found_mapping = FALSE;
5323 struct necp_uuid_id_mapping *mapping = necp_uuid_lookup_uuid_with_agent_id_locked(result_parameter.netagent_id);
5324 if (mapping != NULL) {
5325 uuid_unparse(mapping->uuid, uuid_string);
5326 found_mapping = TRUE;
5327 }
5328 snprintf(result_string, MAX_RESULT_STRING_LEN, "NetAgentScoped (%s)", found_mapping ? uuid_string : "Unknown");
5329 break;
5330 }
5331 case NECP_KERNEL_POLICY_RESULT_REMOVE_NETAGENT: {
5332 bool found_mapping = FALSE;
5333 struct necp_uuid_id_mapping *mapping = necp_uuid_lookup_uuid_with_agent_id_locked(result_parameter.netagent_id);
5334 if (mapping != NULL) {
5335 uuid_unparse(mapping->uuid, uuid_string);
5336 found_mapping = TRUE;
5337 }
5338 snprintf(result_string, MAX_RESULT_STRING_LEN, "RemoveNetAgent (%s)", found_mapping ? uuid_string : "Unknown");
5339 break;
5340 }
5341 case NECP_KERNEL_POLICY_RESULT_REMOVE_NETAGENT_TYPE: {
5342 bool found_mapping = FALSE;
5343 struct necp_agent_type_id_mapping *mapping = necp_lookup_agent_type_with_id_locked(result_parameter.netagent_id);
5344 if (mapping != NULL) {
5345 found_mapping = TRUE;
5346 }
5347 snprintf(result_string, MAX_RESULT_STRING_LEN, "RemoveNetAgentType (%s/%s)", found_mapping ? mapping->agent_type.agent_domain : "Unknown", found_mapping ? mapping->agent_type.agent_type : "Unknown");
5348 break;
5349 }
5350 default: {
5351 snprintf(result_string, MAX_RESULT_STRING_LEN, "Unknown %d (%d)", result, result_parameter.tunnel_interface_index);
5352 break;
5353 }
5354 }
5355 return result_string;
5356 }
5357
5358 static void
necp_kernel_socket_policies_dump_all(void)5359 necp_kernel_socket_policies_dump_all(void)
5360 {
5361 if (necp_debug) {
5362 struct necp_kernel_socket_policy *policy = NULL;
5363 int policy_i;
5364 int app_i;
5365 char result_string[MAX_RESULT_STRING_LEN];
5366 char proc_name_string[MAXCOMLEN + 1];
5367 memset(result_string, 0, MAX_RESULT_STRING_LEN);
5368 memset(proc_name_string, 0, MAXCOMLEN + 1);
5369
5370 NECPLOG0(LOG_DEBUG, "NECP Application Policies:\n");
5371 NECPLOG0(LOG_DEBUG, "-----------\n");
5372 for (policy_i = 0; necp_kernel_socket_policies_app_layer_map != NULL && necp_kernel_socket_policies_app_layer_map[policy_i] != NULL; policy_i++) {
5373 policy = necp_kernel_socket_policies_app_layer_map[policy_i];
5374 proc_name(policy->session_pid, proc_name_string, MAXCOMLEN);
5375 NECPLOG(LOG_DEBUG, "\t%3d. Policy ID: %5d\tProcess: %10.10s\tOrder: %04d.%04d\tMask: %llx\tResult: %s\n", policy_i, policy->id, proc_name_string, policy->session_order, policy->order, policy->condition_mask, necp_get_result_description(result_string, policy->result, policy->result_parameter));
5376 }
5377 if (necp_kernel_socket_policies_app_layer_map[0] != NULL) {
5378 NECPLOG0(LOG_DEBUG, "-----------\n");
5379 }
5380
5381 NECPLOG0(LOG_DEBUG, "NECP Socket Policies:\n");
5382 NECPLOG0(LOG_DEBUG, "-----------\n");
5383 for (app_i = 0; app_i < NECP_KERNEL_SOCKET_POLICIES_MAP_NUM_APP_ID_BUCKETS; app_i++) {
5384 NECPLOG(LOG_DEBUG, "\tApp Bucket: %d\n", app_i);
5385 for (policy_i = 0; necp_kernel_socket_policies_map[app_i] != NULL && (necp_kernel_socket_policies_map[app_i])[policy_i] != NULL; policy_i++) {
5386 policy = (necp_kernel_socket_policies_map[app_i])[policy_i];
5387 proc_name(policy->session_pid, proc_name_string, MAXCOMLEN);
5388 NECPLOG(LOG_DEBUG, "\t%3d. Policy ID: %5d\tProcess: %10.10s\tOrder: %04d.%04d\tMask: %llx\tResult: %s\n", policy_i, policy->id, proc_name_string, policy->session_order, policy->order, policy->condition_mask, necp_get_result_description(result_string, policy->result, policy->result_parameter));
5389 }
5390 NECPLOG0(LOG_DEBUG, "-----------\n");
5391 }
5392 }
5393 }
5394
5395 static inline bool
necp_kernel_socket_policy_results_overlap(struct necp_kernel_socket_policy * upper_policy,struct necp_kernel_socket_policy * lower_policy)5396 necp_kernel_socket_policy_results_overlap(struct necp_kernel_socket_policy *upper_policy, struct necp_kernel_socket_policy *lower_policy)
5397 {
5398 if (upper_policy->result == NECP_KERNEL_POLICY_RESULT_DROP) {
5399 // Drop always cancels out lower policies
5400 return TRUE;
5401 } else if (upper_policy->result == NECP_KERNEL_POLICY_RESULT_SOCKET_FILTER ||
5402 upper_policy->result == NECP_KERNEL_POLICY_RESULT_ROUTE_RULES ||
5403 upper_policy->result == NECP_KERNEL_POLICY_RESULT_USE_NETAGENT ||
5404 upper_policy->result == NECP_KERNEL_POLICY_RESULT_NETAGENT_SCOPED ||
5405 upper_policy->result == NECP_KERNEL_POLICY_RESULT_ALLOW_UNENTITLED ||
5406 upper_policy->result == NECP_KERNEL_POLICY_RESULT_REMOVE_NETAGENT ||
5407 upper_policy->result == NECP_KERNEL_POLICY_RESULT_REMOVE_NETAGENT_TYPE) {
5408 // Filters and route rules never cancel out lower policies
5409 return FALSE;
5410 } else if (upper_policy->result == NECP_KERNEL_POLICY_RESULT_SKIP) {
5411 if (upper_policy->session_order != lower_policy->session_order) {
5412 // A skip cannot override a policy of a different session
5413 return FALSE;
5414 } else {
5415 if (upper_policy->result_parameter.skip_policy_order == 0 ||
5416 lower_policy->order >= upper_policy->result_parameter.skip_policy_order) {
5417 // This policy is beyond the skip
5418 return FALSE;
5419 } else {
5420 // This policy is inside the skip
5421 return TRUE;
5422 }
5423 }
5424 }
5425
5426 // A hard pass, flow divert, tunnel, or scope will currently block out lower policies
5427 return TRUE;
5428 }
5429
5430 static bool
necp_kernel_socket_policy_is_unnecessary(struct necp_kernel_socket_policy * policy,struct necp_kernel_socket_policy ** __indexable policy_array,int valid_indices)5431 necp_kernel_socket_policy_is_unnecessary(struct necp_kernel_socket_policy *policy, struct necp_kernel_socket_policy ** __indexable policy_array, int valid_indices)
5432 {
5433 bool can_skip = FALSE;
5434 u_int32_t highest_skip_session_order = 0;
5435 u_int32_t highest_skip_order = 0;
5436 int i;
5437 for (i = 0; i < valid_indices; i++) {
5438 struct necp_kernel_socket_policy *compared_policy = policy_array[i];
5439
5440 // For policies in a skip window, we can't mark conflicting policies as unnecessary
5441 if (can_skip) {
5442 if (highest_skip_session_order != compared_policy->session_order ||
5443 (highest_skip_order != 0 && compared_policy->order >= highest_skip_order)) {
5444 // If we've moved on to the next session, or passed the skip window
5445 highest_skip_session_order = 0;
5446 highest_skip_order = 0;
5447 can_skip = FALSE;
5448 } else {
5449 // If this policy is also a skip, in can increase the skip window
5450 if (compared_policy->result == NECP_KERNEL_POLICY_RESULT_SKIP) {
5451 if (compared_policy->result_parameter.skip_policy_order > highest_skip_order) {
5452 highest_skip_order = compared_policy->result_parameter.skip_policy_order;
5453 }
5454 }
5455 continue;
5456 }
5457 }
5458
5459 if (compared_policy->result == NECP_KERNEL_POLICY_RESULT_SKIP) {
5460 // This policy is a skip. Set the skip window accordingly
5461 can_skip = TRUE;
5462 highest_skip_session_order = compared_policy->session_order;
5463 highest_skip_order = compared_policy->result_parameter.skip_policy_order;
5464 }
5465
5466 // The result of the compared policy must be able to block out this policy result
5467 if (!necp_kernel_socket_policy_results_overlap(compared_policy, policy)) {
5468 continue;
5469 }
5470
5471 // If new policy matches All Interfaces, compared policy must also
5472 if ((policy->condition_mask & NECP_KERNEL_CONDITION_ALL_INTERFACES) && !(compared_policy->condition_mask & NECP_KERNEL_CONDITION_ALL_INTERFACES)) {
5473 continue;
5474 }
5475
5476 // If new policy matches Local Networks, compared policy must also
5477 if (((policy->condition_mask & NECP_KERNEL_CONDITION_LOCAL_NETWORKS) && !(compared_policy->condition_mask & NECP_KERNEL_CONDITION_LOCAL_NETWORKS)) ||
5478 policy->cond_local_networks_flags != compared_policy->cond_local_networks_flags) {
5479 continue;
5480 }
5481
5482 // Default makes lower policies unecessary always
5483 if (compared_policy->condition_mask == 0) {
5484 return TRUE;
5485 }
5486
5487 // Compared must be more general than policy, and include only conditions within policy
5488 if ((policy->condition_mask & compared_policy->condition_mask) != compared_policy->condition_mask) {
5489 continue;
5490 }
5491
5492 // Negative conditions must match for the overlapping conditions
5493 if ((policy->condition_negated_mask & compared_policy->condition_mask) != (compared_policy->condition_negated_mask & compared_policy->condition_mask)) {
5494 continue;
5495 }
5496
5497 if ((compared_policy->condition_mask & NECP_KERNEL_CONDITION_DOMAIN ||
5498 compared_policy->condition_mask & NECP_KERNEL_CONDITION_EXACT_DOMAIN) &&
5499 strcmp(compared_policy->cond_domain, policy->cond_domain) != 0) {
5500 continue;
5501 }
5502
5503 if (compared_policy->condition_mask & NECP_KERNEL_CONDITION_DOMAIN_FILTER &&
5504 compared_policy->cond_domain_filter != policy->cond_domain_filter) {
5505 continue;
5506 }
5507
5508 if (compared_policy->condition_mask & NECP_KERNEL_CONDITION_URL &&
5509 strcmp(compared_policy->cond_url, policy->cond_url) != 0) {
5510 continue;
5511 }
5512
5513 if (compared_policy->condition_mask & NECP_KERNEL_CONDITION_CUSTOM_ENTITLEMENT &&
5514 strcmp(compared_policy->cond_custom_entitlement, policy->cond_custom_entitlement) != 0) {
5515 continue;
5516 }
5517
5518 if (compared_policy->condition_mask & NECP_KERNEL_CONDITION_ACCOUNT_ID &&
5519 compared_policy->cond_account_id != policy->cond_account_id) {
5520 continue;
5521 }
5522
5523 if (compared_policy->condition_mask & NECP_KERNEL_CONDITION_POLICY_ID &&
5524 compared_policy->cond_policy_id != policy->cond_policy_id) {
5525 continue;
5526 }
5527
5528 if (compared_policy->condition_mask & NECP_KERNEL_CONDITION_APP_ID &&
5529 compared_policy->cond_app_id != policy->cond_app_id) {
5530 continue;
5531 }
5532
5533 if (compared_policy->condition_mask & NECP_KERNEL_CONDITION_REAL_APP_ID &&
5534 compared_policy->cond_real_app_id != policy->cond_real_app_id) {
5535 continue;
5536 }
5537
5538 if (compared_policy->condition_mask & NECP_KERNEL_CONDITION_PID &&
5539 (compared_policy->cond_pid != policy->cond_pid || compared_policy->cond_pid_version != policy->cond_pid_version)) {
5540 continue;
5541 }
5542
5543 if (compared_policy->condition_mask & NECP_KERNEL_CONDITION_UID &&
5544 compared_policy->cond_uid != policy->cond_uid) {
5545 continue;
5546 }
5547
5548 if (compared_policy->condition_mask & NECP_KERNEL_CONDITION_REAL_UID &&
5549 compared_policy->cond_real_uid != policy->cond_real_uid) {
5550 continue;
5551 }
5552
5553 if (compared_policy->condition_mask & NECP_KERNEL_CONDITION_BOUND_INTERFACE &&
5554 compared_policy->cond_bound_interface != policy->cond_bound_interface) {
5555 continue;
5556 }
5557
5558 if (compared_policy->condition_mask & NECP_KERNEL_CONDITION_PROTOCOL &&
5559 compared_policy->cond_protocol != policy->cond_protocol) {
5560 continue;
5561 }
5562
5563 if (compared_policy->condition_mask & NECP_KERNEL_CONDITION_CLIENT_FLAGS &&
5564 compared_policy->cond_client_flags != policy->cond_client_flags) {
5565 continue;
5566 }
5567
5568 if (compared_policy->condition_mask & NECP_KERNEL_CONDITION_TRAFFIC_CLASS &&
5569 !(compared_policy->cond_traffic_class.start_tc <= policy->cond_traffic_class.start_tc &&
5570 compared_policy->cond_traffic_class.end_tc >= policy->cond_traffic_class.end_tc)) {
5571 continue;
5572 }
5573
5574 if (compared_policy->condition_mask & NECP_KERNEL_CONDITION_LOCAL_START) {
5575 if (compared_policy->condition_mask & NECP_KERNEL_CONDITION_LOCAL_END) {
5576 if (!necp_is_range_in_range(SA(&policy->cond_local_start), SA(&policy->cond_local_end), SA(&compared_policy->cond_local_start), SA(&compared_policy->cond_local_end))) {
5577 continue;
5578 }
5579 } else if (compared_policy->condition_mask & NECP_KERNEL_CONDITION_LOCAL_PREFIX) {
5580 if (compared_policy->cond_local_prefix > policy->cond_local_prefix ||
5581 !necp_is_addr_in_subnet(SA(&policy->cond_local_start), SA(&compared_policy->cond_local_start), compared_policy->cond_local_prefix)) {
5582 continue;
5583 }
5584 }
5585 }
5586
5587 if (compared_policy->condition_mask & NECP_KERNEL_CONDITION_REMOTE_START) {
5588 if (compared_policy->condition_mask & NECP_KERNEL_CONDITION_REMOTE_END) {
5589 if (!necp_is_range_in_range(SA(&policy->cond_remote_start), SA(&policy->cond_remote_end), SA(&compared_policy->cond_remote_start), SA(&compared_policy->cond_remote_end))) {
5590 continue;
5591 }
5592 } else if (compared_policy->condition_mask & NECP_KERNEL_CONDITION_REMOTE_PREFIX) {
5593 if (compared_policy->cond_remote_prefix > policy->cond_remote_prefix ||
5594 !necp_is_addr_in_subnet(SA(&policy->cond_remote_start), SA(&compared_policy->cond_remote_start), compared_policy->cond_remote_prefix)) {
5595 continue;
5596 }
5597 }
5598 }
5599
5600 if (compared_policy->condition_mask & NECP_KERNEL_CONDITION_AGENT_TYPE &&
5601 memcmp(&compared_policy->cond_agent_type, &policy->cond_agent_type, sizeof(policy->cond_agent_type)) == 0) {
5602 continue;
5603 }
5604
5605 if (compared_policy->condition_mask & NECP_KERNEL_CONDITION_SDK_VERSION &&
5606 memcmp(&compared_policy->cond_sdk_version, &policy->cond_sdk_version, sizeof(policy->cond_sdk_version)) == 0) {
5607 continue;
5608 }
5609
5610 if (compared_policy->condition_mask & NECP_KERNEL_CONDITION_PACKET_FILTER_TAGS &&
5611 memcmp(&compared_policy->cond_packet_filter_tags, &policy->cond_packet_filter_tags, sizeof(policy->cond_packet_filter_tags)) == 0) {
5612 continue;
5613 }
5614
5615 if (compared_policy->condition_mask & NECP_KERNEL_CONDITION_SCHEME_PORT &&
5616 memcmp(&compared_policy->cond_scheme_port, &policy->cond_scheme_port, sizeof(policy->cond_scheme_port)) == 0) {
5617 continue;
5618 }
5619
5620 if (compared_policy->condition_mask & NECP_KERNEL_CONDITION_BOUND_INTERFACE_FLAGS &&
5621 (compared_policy->cond_bound_interface_flags != policy->cond_bound_interface_flags ||
5622 compared_policy->cond_bound_interface_eflags != policy->cond_bound_interface_eflags ||
5623 compared_policy->cond_bound_interface_xflags != policy->cond_bound_interface_xflags)) {
5624 continue;
5625 }
5626
5627 return TRUE;
5628 }
5629
5630 return FALSE;
5631 }
5632
5633 static bool
necp_kernel_socket_policies_reprocess(void)5634 necp_kernel_socket_policies_reprocess(void)
5635 {
5636 int app_i;
5637 int bucket_current_free_index[NECP_KERNEL_SOCKET_POLICIES_MAP_NUM_APP_ID_BUCKETS];
5638 int app_layer_current_free_index = 0;
5639 struct necp_kernel_socket_policy *kernel_policy = NULL;
5640
5641 LCK_RW_ASSERT(&necp_kernel_policy_lock, LCK_RW_ASSERT_EXCLUSIVE);
5642
5643 // Reset mask to 0
5644 necp_kernel_application_policies_condition_mask = 0;
5645 necp_kernel_socket_policies_condition_mask = 0;
5646 necp_kernel_application_policies_count = 0;
5647 necp_kernel_socket_policies_count = 0;
5648 necp_kernel_socket_policies_non_app_count = 0;
5649
5650 // Reset all maps to NULL
5651 for (app_i = 0; app_i < NECP_KERNEL_SOCKET_POLICIES_MAP_NUM_APP_ID_BUCKETS; app_i++) {
5652 if (necp_kernel_socket_policies_map[app_i] != NULL) {
5653 kfree_type(struct necp_kernel_socket_policy *,
5654 necp_kernel_socket_policies_map_counts[app_i] + 1,
5655 necp_kernel_socket_policies_map[app_i]);
5656 necp_kernel_socket_policies_map[app_i] = NULL;
5657 }
5658
5659 // Init counts
5660 necp_kernel_socket_policies_map_counts[app_i] = 0;
5661 }
5662 if (necp_kernel_socket_policies_app_layer_map != NULL) {
5663 kfree_type(struct necp_kernel_socket_policy *,
5664 necp_kernel_socket_policies_app_layer_map_count + 1,
5665 necp_kernel_socket_policies_app_layer_map);
5666 }
5667 necp_kernel_socket_policies_app_layer_map = NULL;
5668 necp_kernel_socket_policies_app_layer_map_count = 0;
5669
5670 // Create masks and counts
5671 LIST_FOREACH(kernel_policy, &necp_kernel_socket_policies, chain) {
5672 // App layer mask/count
5673 necp_kernel_application_policies_condition_mask |= kernel_policy->condition_mask;
5674 necp_kernel_application_policies_count++;
5675 necp_kernel_socket_policies_app_layer_map_count++;
5676
5677 if ((kernel_policy->condition_mask & NECP_KERNEL_CONDITION_AGENT_TYPE)) {
5678 // Agent type conditions only apply to app layer
5679 continue;
5680 }
5681
5682 // Update socket layer bucket mask/counts
5683 necp_kernel_socket_policies_condition_mask |= kernel_policy->condition_mask;
5684 necp_kernel_socket_policies_count++;
5685
5686 if (!(kernel_policy->condition_mask & NECP_KERNEL_CONDITION_APP_ID) ||
5687 kernel_policy->condition_negated_mask & NECP_KERNEL_CONDITION_APP_ID) {
5688 necp_kernel_socket_policies_non_app_count++;
5689 for (app_i = 0; app_i < NECP_KERNEL_SOCKET_POLICIES_MAP_NUM_APP_ID_BUCKETS; app_i++) {
5690 necp_kernel_socket_policies_map_counts[app_i]++;
5691 }
5692 } else {
5693 necp_kernel_socket_policies_map_counts[NECP_SOCKET_MAP_APP_ID_TO_BUCKET(kernel_policy->cond_app_id)]++;
5694 }
5695 }
5696
5697 // Allocate maps
5698 for (app_i = 0; app_i < NECP_KERNEL_SOCKET_POLICIES_MAP_NUM_APP_ID_BUCKETS; app_i++) {
5699 if (necp_kernel_socket_policies_map_counts[app_i] > 0) {
5700 // Allocate a NULL-terminated array of policy pointers for each bucket
5701 necp_kernel_socket_policies_map[app_i] = kalloc_type(struct necp_kernel_socket_policy *,
5702 necp_kernel_socket_policies_map_counts[app_i] + 1, Z_WAITOK | Z_ZERO);
5703 if (necp_kernel_socket_policies_map[app_i] == NULL) {
5704 goto fail;
5705 }
5706 }
5707 bucket_current_free_index[app_i] = 0;
5708 }
5709 necp_kernel_socket_policies_app_layer_map = kalloc_type(struct necp_kernel_socket_policy *,
5710 necp_kernel_socket_policies_app_layer_map_count + 1, Z_WAITOK | Z_ZERO);
5711 if (necp_kernel_socket_policies_app_layer_map == NULL) {
5712 goto fail;
5713 }
5714
5715 // Fill out maps
5716 LIST_FOREACH(kernel_policy, &necp_kernel_socket_policies, chain) {
5717 // Add app layer policies
5718 if (!necp_dedup_policies || !necp_kernel_socket_policy_is_unnecessary(kernel_policy, necp_kernel_socket_policies_app_layer_map, app_layer_current_free_index)) {
5719 necp_kernel_socket_policies_app_layer_map[app_layer_current_free_index] = kernel_policy;
5720 app_layer_current_free_index++;
5721 necp_kernel_socket_policies_app_layer_map[app_layer_current_free_index] = NULL;
5722 }
5723
5724 if ((kernel_policy->condition_mask & NECP_KERNEL_CONDITION_AGENT_TYPE)) {
5725 // Agent type conditions only apply to app layer
5726 continue;
5727 }
5728
5729 // Add socket policies
5730 if (!(kernel_policy->condition_mask & NECP_KERNEL_CONDITION_APP_ID) ||
5731 kernel_policy->condition_negated_mask & NECP_KERNEL_CONDITION_APP_ID) {
5732 for (app_i = 0; app_i < NECP_KERNEL_SOCKET_POLICIES_MAP_NUM_APP_ID_BUCKETS; app_i++) {
5733 if (!necp_dedup_policies || !necp_kernel_socket_policy_is_unnecessary(kernel_policy, necp_kernel_socket_policies_map[app_i], bucket_current_free_index[app_i])) {
5734 (necp_kernel_socket_policies_map[app_i])[(bucket_current_free_index[app_i])] = kernel_policy;
5735 bucket_current_free_index[app_i]++;
5736 (necp_kernel_socket_policies_map[app_i])[(bucket_current_free_index[app_i])] = NULL;
5737 }
5738 }
5739 } else {
5740 app_i = NECP_SOCKET_MAP_APP_ID_TO_BUCKET(kernel_policy->cond_app_id);
5741 if (!necp_dedup_policies || !necp_kernel_socket_policy_is_unnecessary(kernel_policy, necp_kernel_socket_policies_map[app_i], bucket_current_free_index[app_i])) {
5742 (necp_kernel_socket_policies_map[app_i])[(bucket_current_free_index[app_i])] = kernel_policy;
5743 bucket_current_free_index[app_i]++;
5744 (necp_kernel_socket_policies_map[app_i])[(bucket_current_free_index[app_i])] = NULL;
5745 }
5746 }
5747 }
5748 necp_kernel_socket_policies_dump_all();
5749 BUMP_KERNEL_SOCKET_POLICIES_GENERATION_COUNT();
5750 return TRUE;
5751
5752 fail:
5753 // Free memory, reset masks to 0
5754 necp_kernel_application_policies_condition_mask = 0;
5755 necp_kernel_socket_policies_condition_mask = 0;
5756 necp_kernel_application_policies_count = 0;
5757 necp_kernel_socket_policies_count = 0;
5758 necp_kernel_socket_policies_non_app_count = 0;
5759 for (app_i = 0; app_i < NECP_KERNEL_SOCKET_POLICIES_MAP_NUM_APP_ID_BUCKETS; app_i++) {
5760 if (necp_kernel_socket_policies_map[app_i] != NULL) {
5761 kfree_type(struct necp_kernel_socket_policy *,
5762 necp_kernel_socket_policies_map_counts[app_i] + 1,
5763 necp_kernel_socket_policies_map[app_i]);
5764 necp_kernel_socket_policies_map[app_i] = NULL;
5765 }
5766 necp_kernel_socket_policies_map_counts[app_i] = 0;
5767 }
5768 if (necp_kernel_socket_policies_app_layer_map != NULL) {
5769 kfree_type(struct necp_kernel_socket_policy *,
5770 necp_kernel_socket_policies_app_layer_map_count + 1,
5771 necp_kernel_socket_policies_app_layer_map);
5772 necp_kernel_socket_policies_app_layer_map = NULL;
5773 }
5774 necp_kernel_socket_policies_app_layer_map_count = 0;
5775 return FALSE;
5776 }
5777
5778 static u_int32_t
necp_get_new_string_id(void)5779 necp_get_new_string_id(void)
5780 {
5781 static u_int32_t necp_last_string_id = 0;
5782
5783 u_int32_t newid = 0;
5784
5785 LCK_RW_ASSERT(&necp_kernel_policy_lock, LCK_RW_ASSERT_EXCLUSIVE);
5786
5787 bool wrapped = FALSE;
5788 do {
5789 necp_last_string_id++;
5790 if (necp_last_string_id < 1) {
5791 if (wrapped) {
5792 // Already wrapped, give up
5793 NECPLOG0(LOG_ERR, "Failed to find a free app UUID.\n");
5794 return 0;
5795 }
5796 necp_last_string_id = 1;
5797 wrapped = TRUE;
5798 }
5799 newid = necp_last_string_id;
5800 } while (necp_lookup_string_with_id_locked(&necp_account_id_list, newid) != NULL); // If already used, keep trying
5801
5802 if (newid == 0) {
5803 NECPLOG0(LOG_ERR, "Allocate string id failed.\n");
5804 return 0;
5805 }
5806
5807 return newid;
5808 }
5809
5810 static struct necp_string_id_mapping *
necp_lookup_string_to_id_locked(struct necp_string_id_mapping_list * list,char * string __null_terminated)5811 necp_lookup_string_to_id_locked(struct necp_string_id_mapping_list *list, char *string __null_terminated)
5812 {
5813 struct necp_string_id_mapping *searchentry = NULL;
5814 struct necp_string_id_mapping *foundentry = NULL;
5815
5816 LIST_FOREACH(searchentry, list, chain) {
5817 if (strcmp(searchentry->string, string) == 0) {
5818 foundentry = searchentry;
5819 break;
5820 }
5821 }
5822
5823 return foundentry;
5824 }
5825
5826 static struct necp_string_id_mapping *
necp_lookup_string_with_id_locked(struct necp_string_id_mapping_list * list,u_int32_t local_id)5827 necp_lookup_string_with_id_locked(struct necp_string_id_mapping_list *list, u_int32_t local_id)
5828 {
5829 struct necp_string_id_mapping *searchentry = NULL;
5830 struct necp_string_id_mapping *foundentry = NULL;
5831
5832 LIST_FOREACH(searchentry, list, chain) {
5833 if (searchentry->id == local_id) {
5834 foundentry = searchentry;
5835 break;
5836 }
5837 }
5838
5839 return foundentry;
5840 }
5841
5842 static u_int32_t
necp_create_string_to_id_mapping(struct necp_string_id_mapping_list * list,char * string __null_terminated)5843 necp_create_string_to_id_mapping(struct necp_string_id_mapping_list *list, char *string __null_terminated)
5844 {
5845 u_int32_t string_id = 0;
5846 struct necp_string_id_mapping *existing_mapping = NULL;
5847
5848 LCK_RW_ASSERT(&necp_kernel_policy_lock, LCK_RW_ASSERT_EXCLUSIVE);
5849
5850 existing_mapping = necp_lookup_string_to_id_locked(list, string);
5851 if (existing_mapping != NULL) {
5852 string_id = existing_mapping->id;
5853 os_ref_retain_locked(&existing_mapping->refcount);
5854 } else {
5855 struct necp_string_id_mapping * __single new_mapping = NULL;
5856 new_mapping = kalloc_type(struct necp_string_id_mapping,
5857 Z_WAITOK | Z_ZERO | Z_NOFAIL);
5858
5859 size_t length = strlen(string) + 1;
5860 char *buffer = kalloc_data(length, Z_WAITOK);
5861 if (buffer != NULL) {
5862 strlcpy(buffer, string, length);
5863 new_mapping->string = __unsafe_null_terminated_from_indexable(buffer, &buffer[length - 1]);
5864 new_mapping->id = necp_get_new_string_id();
5865 os_ref_init(&new_mapping->refcount, &necp_refgrp);
5866 LIST_INSERT_HEAD(list, new_mapping, chain);
5867 string_id = new_mapping->id;
5868 } else {
5869 kfree_type(struct necp_string_id_mapping, new_mapping);
5870 new_mapping = NULL;
5871 }
5872 }
5873 return string_id;
5874 }
5875
5876 static bool
necp_remove_string_to_id_mapping(struct necp_string_id_mapping_list * list,char * string __null_terminated)5877 necp_remove_string_to_id_mapping(struct necp_string_id_mapping_list *list, char *string __null_terminated)
5878 {
5879 struct necp_string_id_mapping * __single existing_mapping = NULL;
5880 char * __indexable buffer = NULL;
5881
5882 LCK_RW_ASSERT(&necp_kernel_policy_lock, LCK_RW_ASSERT_EXCLUSIVE);
5883
5884 existing_mapping = necp_lookup_string_to_id_locked(list, string);
5885 if (existing_mapping != NULL) {
5886 if (os_ref_release_locked(&existing_mapping->refcount) == 0) {
5887 LIST_REMOVE(existing_mapping, chain);
5888 buffer = __unsafe_null_terminated_to_indexable(existing_mapping->string);
5889 kfree_data_addr(buffer);
5890 kfree_type(struct necp_string_id_mapping, existing_mapping);
5891 }
5892 return TRUE;
5893 }
5894
5895 return FALSE;
5896 }
5897
5898 static struct necp_domain_filter *
necp_lookup_domain_filter(struct necp_domain_filter_list * list,u_int32_t filter_id)5899 necp_lookup_domain_filter(struct necp_domain_filter_list *list, u_int32_t filter_id)
5900 {
5901 struct necp_domain_filter *searchfilter = NULL;
5902 struct necp_domain_filter *foundfilter = NULL;
5903
5904 LIST_FOREACH(searchfilter, list, chain) {
5905 if (searchfilter->id == filter_id) {
5906 foundfilter = searchfilter;
5907 break;
5908 }
5909 }
5910
5911 return foundfilter;
5912 }
5913
5914 static u_int32_t
necp_get_new_domain_filter_id(void)5915 necp_get_new_domain_filter_id(void)
5916 {
5917 static u_int32_t necp_last_filter_id = 0;
5918
5919 u_int32_t newid = 0;
5920
5921 LCK_RW_ASSERT(&necp_kernel_policy_lock, LCK_RW_ASSERT_EXCLUSIVE);
5922
5923 bool wrapped = FALSE;
5924 do {
5925 // Scope id within its space
5926 if (++necp_last_filter_id > NECP_DOMAIN_FILTER_ID_MAX) {
5927 necp_last_filter_id = 0;
5928 }
5929 if (necp_last_filter_id < 1) {
5930 if (wrapped) {
5931 // Already wrapped, give up
5932 NECPLOG0(LOG_ERR, "Failed to find a free filter ID.\n");
5933 return 0;
5934 }
5935 necp_last_filter_id = 1;
5936 wrapped = TRUE;
5937 }
5938 newid = necp_last_filter_id;
5939 } while (necp_lookup_domain_filter(&necp_global_domain_filter_list, newid) != NULL); // If already used, keep trying
5940
5941 if (newid == 0) {
5942 NECPLOG0(LOG_ERR, "Allocate filter id failed.\n");
5943 return 0;
5944 }
5945
5946 return newid;
5947 }
5948
5949 static u_int32_t
necp_create_domain_filter(struct necp_domain_filter_list * list,struct necp_domain_filter_list * owner_list,struct net_bloom_filter * filter)5950 necp_create_domain_filter(struct necp_domain_filter_list *list, struct necp_domain_filter_list *owner_list, struct net_bloom_filter *filter)
5951 {
5952 LCK_RW_ASSERT(&necp_kernel_policy_lock, LCK_RW_ASSERT_EXCLUSIVE);
5953
5954 struct necp_domain_filter *new_filter = NULL;
5955 new_filter = kalloc_type(struct necp_domain_filter,
5956 Z_WAITOK | Z_ZERO | Z_NOFAIL);
5957
5958 new_filter->filter = filter;
5959 new_filter->id = necp_get_new_domain_filter_id();
5960 LIST_INSERT_HEAD(list, new_filter, chain);
5961 LIST_INSERT_HEAD(owner_list, new_filter, owner_chain);
5962 os_ref_init(&new_filter->refcount, &necp_refgrp);
5963
5964 return new_filter->id;
5965 }
5966
5967 static bool
necp_remove_domain_filter(struct necp_domain_filter_list * list,__unused struct necp_domain_filter_list * owner_list,u_int32_t filter_id)5968 necp_remove_domain_filter(struct necp_domain_filter_list *list, __unused struct necp_domain_filter_list *owner_list, u_int32_t filter_id)
5969 {
5970 struct necp_domain_filter * __single existing_filter = NULL;
5971
5972 LCK_RW_ASSERT(&necp_kernel_policy_lock, LCK_RW_ASSERT_EXCLUSIVE);
5973
5974 existing_filter = necp_lookup_domain_filter(list, filter_id);
5975 if (existing_filter != NULL) {
5976 if (os_ref_release_locked(&existing_filter->refcount) == 0) {
5977 LIST_REMOVE(existing_filter, chain);
5978 LIST_REMOVE(existing_filter, owner_chain);
5979 net_bloom_filter_destroy(existing_filter->filter);
5980 kfree_type(struct necp_domain_filter, existing_filter);
5981 }
5982 return true;
5983 }
5984
5985 return false;
5986 }
5987
5988 static struct necp_domain_trie *
necp_lookup_domain_trie(struct necp_domain_trie_list * list,u_int32_t id)5989 necp_lookup_domain_trie(struct necp_domain_trie_list *list, u_int32_t id)
5990 {
5991 struct necp_domain_trie *searchTrie = NULL;
5992 struct necp_domain_trie *foundTrie = NULL;
5993
5994 LIST_FOREACH(searchTrie, list, chain) {
5995 if (searchTrie->id == id) {
5996 foundTrie = searchTrie;
5997 break;
5998 }
5999 }
6000
6001 return foundTrie;
6002 }
6003
6004 static u_int32_t
necp_get_new_domain_trie_id(void)6005 necp_get_new_domain_trie_id(void)
6006 {
6007 static u_int32_t necp_last_trie_id = NECP_DOMAIN_TRIE_ID_START;
6008 u_int32_t newid = necp_last_trie_id;
6009
6010 LCK_RW_ASSERT(&necp_kernel_policy_lock, LCK_RW_ASSERT_EXCLUSIVE);
6011
6012 bool wrapped = FALSE;
6013 do {
6014 if (++necp_last_trie_id < NECP_DOMAIN_TRIE_ID_START + 1) {
6015 if (wrapped) {
6016 // Already wrapped, give up
6017 NECPLOG0(LOG_ERR, "Failed to find a free trie ID.\n");
6018 return 0;
6019 }
6020 necp_last_trie_id = NECP_DOMAIN_TRIE_ID_START + 1;
6021 wrapped = TRUE;
6022 }
6023 newid = necp_last_trie_id;
6024 } while (necp_lookup_domain_trie(&necp_global_domain_trie_list, newid) != NULL); // If already used, keep trying
6025
6026 if (newid == NECP_DOMAIN_TRIE_ID_START) {
6027 NECPLOG0(LOG_ERR, "Allocate trie id failed.\n");
6028 return 0;
6029 }
6030
6031 return newid;
6032 }
6033
6034 static u_int32_t
necp_create_domain_trie(struct necp_domain_trie_list * list,struct necp_domain_trie_list * owner_list,struct necp_domain_trie_request * trie_request,size_t trie_request_size)6035 necp_create_domain_trie(struct necp_domain_trie_list *list,
6036 struct necp_domain_trie_list *owner_list,
6037 struct necp_domain_trie_request *trie_request, size_t trie_request_size)
6038 {
6039 LCK_RW_ASSERT(&necp_kernel_policy_lock, LCK_RW_ASSERT_EXCLUSIVE);
6040
6041 struct necp_domain_trie *new_trie = NULL;
6042 new_trie = kalloc_type(struct necp_domain_trie, Z_WAITOK | Z_ZERO | Z_NOFAIL);
6043 if (new_trie == NULL) {
6044 NECPLOG0(LOG_ERR, "Failed to allow domain trie\n");
6045 return 0;
6046 }
6047
6048 if (net_trie_init_with_mem(&new_trie->trie, trie_request->data, trie_request->total_mem_size,
6049 trie_request->nodes_mem_size, trie_request->maps_mem_size, trie_request->bytes_mem_size,
6050 trie_request->nodes_count, trie_request->maps_count, trie_request->bytes_count) == false) {
6051 NECPLOG0(LOG_ERR, "Failed to initialize domain trie\n");
6052 kfree_type(struct necp_domain_trie, new_trie);
6053 return 0;
6054 }
6055 new_trie->trie_request = trie_request;
6056 new_trie->trie_request_size = trie_request_size;
6057 new_trie->id = necp_get_new_domain_trie_id();
6058 new_trie->trie_request->id = new_trie->id;
6059 LIST_INSERT_HEAD(list, new_trie, chain);
6060 LIST_INSERT_HEAD(owner_list, new_trie, owner_chain);
6061
6062 os_ref_init(&new_trie->refcount, &necp_refgrp);
6063 necp_trie_count++;
6064 return new_trie->id;
6065 }
6066
6067 static void
necp_free_domain_trie(struct necp_domain_trie * existing_trie)6068 necp_free_domain_trie(struct necp_domain_trie *existing_trie)
6069 {
6070 if (existing_trie != NULL) {
6071 uint8_t *necp_trie_request_buffer = (uint8_t *)existing_trie->trie_request;
6072 kfree_data(necp_trie_request_buffer, existing_trie->trie_request_size);
6073 kfree_type(struct necp_domain_trie, existing_trie);
6074 }
6075 }
6076
6077 static bool
necp_remove_domain_trie(struct necp_domain_trie_list * list,__unused struct necp_domain_trie_list * owner_list,u_int32_t id)6078 necp_remove_domain_trie(struct necp_domain_trie_list *list, __unused struct necp_domain_trie_list *owner_list, u_int32_t id)
6079 {
6080 struct necp_domain_trie * __single existing_trie = NULL;
6081
6082 LCK_RW_ASSERT(&necp_kernel_policy_lock, LCK_RW_ASSERT_EXCLUSIVE);
6083
6084 existing_trie = necp_lookup_domain_trie(list, id);
6085 if (existing_trie != NULL) {
6086 if (os_ref_release_locked(&existing_trie->refcount) == 0) {
6087 LIST_REMOVE(existing_trie, chain);
6088 LIST_REMOVE(existing_trie, owner_chain);
6089 necp_free_domain_trie(existing_trie);
6090 necp_trie_count--;
6091 }
6092 return true;
6093 }
6094
6095 return false;
6096 }
6097
6098 static Boolean
necp_match_domain_with_trie(struct necp_domain_trie_list * list,u_int32_t id,char * __sized_by (length)domain,size_t length)6099 necp_match_domain_with_trie(struct necp_domain_trie_list *list, u_int32_t id, char * __sized_by(length) domain, size_t length)
6100 {
6101 size_t metadata_length = 0;
6102 const uint8_t * __sized_by(metadata_length) metadata = NULL;
6103
6104 struct necp_domain_trie *necp_trie = necp_lookup_domain_trie(list, id);
6105 if (necp_trie == NULL || necp_trie->trie_request == NULL) {
6106 return false;
6107 }
6108 Boolean reverse = (necp_trie->trie_request->flags & NECP_DOMAIN_TRIE_FLAG_REVERSE_SEARCH);
6109 Boolean allow_partial_match = (necp_trie->trie_request->flags & NECP_DOMAIN_TRIE_FLAG_ALLOW_PARTIAL_MATCH);
6110 return net_trie_search(&necp_trie->trie, (const uint8_t *)domain, length,
6111 &metadata, &metadata_length, reverse, allow_partial_match, necp_trie->trie_request->partial_match_terminator, NULL, NULL) != NULL_TRIE_IDX;
6112 }
6113
6114 #define NECP_FIRST_VALID_ROUTE_RULE_ID 1
6115 #define NECP_FIRST_VALID_AGGREGATE_ROUTE_RULE_ID UINT16_MAX
6116 static u_int32_t
necp_get_new_route_rule_id(bool aggregate)6117 necp_get_new_route_rule_id(bool aggregate)
6118 {
6119 static u_int32_t necp_last_route_rule_id = 0;
6120 static u_int32_t necp_last_aggregate_route_rule_id = 0;
6121
6122 u_int32_t newid = 0;
6123
6124 if (!aggregate) {
6125 // Main necp_kernel_policy_lock protects non-aggregate rule IDs
6126 LCK_RW_ASSERT(&necp_kernel_policy_lock, LCK_RW_ASSERT_EXCLUSIVE);
6127
6128 bool wrapped = FALSE;
6129 do {
6130 necp_last_route_rule_id++;
6131 if (necp_last_route_rule_id < NECP_FIRST_VALID_ROUTE_RULE_ID ||
6132 necp_last_route_rule_id >= NECP_FIRST_VALID_AGGREGATE_ROUTE_RULE_ID) {
6133 if (wrapped) {
6134 // Already wrapped, give up
6135 NECPLOG0(LOG_ERR, "Failed to find a free route rule id.\n");
6136 return 0;
6137 }
6138 necp_last_route_rule_id = NECP_FIRST_VALID_ROUTE_RULE_ID;
6139 wrapped = TRUE;
6140 }
6141 newid = necp_last_route_rule_id;
6142 } while (necp_lookup_route_rule_locked(&necp_route_rules, newid) != NULL); // If already used, keep trying
6143 } else {
6144 // necp_route_rule_lock protects aggregate rule IDs
6145 LCK_RW_ASSERT(&necp_route_rule_lock, LCK_RW_ASSERT_EXCLUSIVE);
6146
6147 bool wrapped = FALSE;
6148 do {
6149 necp_last_aggregate_route_rule_id++;
6150 if (necp_last_aggregate_route_rule_id < NECP_FIRST_VALID_AGGREGATE_ROUTE_RULE_ID) {
6151 if (wrapped) {
6152 // Already wrapped, give up
6153 NECPLOG0(LOG_ERR, "Failed to find a free aggregate route rule id.\n");
6154 return 0;
6155 }
6156 necp_last_aggregate_route_rule_id = NECP_FIRST_VALID_AGGREGATE_ROUTE_RULE_ID;
6157 wrapped = TRUE;
6158 }
6159 newid = necp_last_aggregate_route_rule_id;
6160 } while (necp_lookup_route_rule_locked(&necp_route_rules, newid) != NULL); // If already used, keep trying
6161 }
6162
6163 if (newid == 0) {
6164 NECPLOG0(LOG_ERR, "Allocate route rule ID failed.\n");
6165 return 0;
6166 }
6167
6168 return newid;
6169 }
6170
6171 static struct necp_route_rule *
necp_lookup_route_rule_locked(struct necp_route_rule_list * list,u_int32_t route_rule_id)6172 necp_lookup_route_rule_locked(struct necp_route_rule_list *list, u_int32_t route_rule_id)
6173 {
6174 struct necp_route_rule *searchentry = NULL;
6175 struct necp_route_rule *foundentry = NULL;
6176
6177 LIST_FOREACH(searchentry, list, chain) {
6178 if (searchentry->id == route_rule_id) {
6179 foundentry = searchentry;
6180 break;
6181 }
6182 }
6183
6184 return foundentry;
6185 }
6186
6187 static struct necp_route_rule *
necp_lookup_route_rule_by_contents_locked(struct necp_route_rule_list * list,u_int8_t default_action,u_int8_t cellular_action,u_int8_t wifi_action,u_int8_t wired_action,u_int8_t expensive_action,u_int8_t constrained_action,u_int8_t companion_action,u_int8_t vpn_action,u_int8_t ultra_constrained_action,u_int32_t * __indexable if_indices,u_int8_t * __indexable if_actions,uuid_t netagent_uuid,uuid_t match_netagent_uuid,u_int32_t control_unit,u_int32_t effective_type)6188 necp_lookup_route_rule_by_contents_locked(struct necp_route_rule_list *list, u_int8_t default_action, u_int8_t cellular_action, u_int8_t wifi_action, u_int8_t wired_action, u_int8_t expensive_action, u_int8_t constrained_action, u_int8_t companion_action, u_int8_t vpn_action, u_int8_t ultra_constrained_action, u_int32_t * __indexable if_indices, u_int8_t * __indexable if_actions, uuid_t netagent_uuid, uuid_t match_netagent_uuid, u_int32_t control_unit, u_int32_t effective_type)
6189 {
6190 struct necp_route_rule *searchentry = NULL;
6191 struct necp_route_rule *foundentry = NULL;
6192
6193 LIST_FOREACH(searchentry, list, chain) {
6194 if (searchentry->default_action == default_action &&
6195 searchentry->cellular_action == cellular_action &&
6196 searchentry->wifi_action == wifi_action &&
6197 searchentry->wired_action == wired_action &&
6198 searchentry->expensive_action == expensive_action &&
6199 searchentry->constrained_action == constrained_action &&
6200 searchentry->companion_action == companion_action &&
6201 searchentry->vpn_action == vpn_action &&
6202 searchentry->ultra_constrained_action == ultra_constrained_action &&
6203 searchentry->control_unit == control_unit &&
6204 searchentry->effective_type == effective_type) {
6205 bool match_failed = FALSE;
6206 size_t index_a = 0;
6207 size_t index_b = 0;
6208 size_t count_a = 0;
6209 size_t count_b = 0;
6210 for (index_a = 0; index_a < MAX_ROUTE_RULE_INTERFACES; index_a++) {
6211 bool found_index = FALSE;
6212 if (searchentry->exception_if_indices[index_a] == 0) {
6213 break;
6214 }
6215 count_a++;
6216 for (index_b = 0; index_b < MAX_ROUTE_RULE_INTERFACES; index_b++) {
6217 if (if_indices[index_b] == 0) {
6218 break;
6219 }
6220 if (index_b >= count_b) {
6221 count_b = index_b + 1;
6222 }
6223 if (searchentry->exception_if_indices[index_a] == if_indices[index_b] &&
6224 searchentry->exception_if_actions[index_a] == if_actions[index_b]) {
6225 found_index = TRUE;
6226 break;
6227 }
6228 }
6229 if (!found_index) {
6230 match_failed = TRUE;
6231 break;
6232 }
6233 }
6234
6235 if (match_failed || count_a != count_b) {
6236 continue;
6237 }
6238
6239 bool has_agent_a = !uuid_is_null(netagent_uuid);
6240 bool has_agent_b = (searchentry->netagent_id != 0);
6241 if (has_agent_a != has_agent_b) {
6242 continue;
6243 }
6244
6245 if (has_agent_a) {
6246 struct necp_uuid_id_mapping *mapping = necp_uuid_lookup_uuid_with_agent_id_locked(searchentry->netagent_id);
6247 if (mapping == NULL) {
6248 // Bad mapping, doesn't match
6249 continue;
6250 }
6251 if (uuid_compare(mapping->uuid, netagent_uuid) != 0) {
6252 // UUIDs don't match
6253 continue;
6254 }
6255 }
6256
6257 bool has_match_agent_a = !uuid_is_null(match_netagent_uuid);
6258 bool has_match_agent_b = (searchentry->match_netagent_id != 0);
6259 if (has_match_agent_a != has_match_agent_b) {
6260 continue;
6261 }
6262
6263 if (has_match_agent_a) {
6264 struct necp_uuid_id_mapping *mapping = necp_uuid_lookup_uuid_with_agent_id_locked(searchentry->match_netagent_id);
6265 if (mapping == NULL) {
6266 // Bad mapping, doesn't match
6267 continue;
6268 }
6269 if (uuid_compare(mapping->uuid, match_netagent_uuid) != 0) {
6270 // UUIDs don't match
6271 continue;
6272 }
6273 }
6274
6275 // Rules match!
6276 foundentry = searchentry;
6277 break;
6278 }
6279 }
6280
6281 return foundentry;
6282 }
6283
6284 static u_int32_t
necp_create_route_rule(struct necp_route_rule_list * list,u_int8_t * __sized_by (route_rules_array_size)route_rules_array,u_int32_t route_rules_array_size,bool * has_socket_only_actions)6285 necp_create_route_rule(struct necp_route_rule_list *list, u_int8_t * __sized_by(route_rules_array_size)route_rules_array, u_int32_t route_rules_array_size,
6286 bool *has_socket_only_actions)
6287 {
6288 size_t offset = 0;
6289 u_int32_t route_rule_id = 0;
6290 struct necp_route_rule *existing_rule = NULL;
6291 u_int8_t default_action = NECP_ROUTE_RULE_ALLOW_INTERFACE;
6292 u_int8_t cellular_action = NECP_ROUTE_RULE_NONE;
6293 u_int8_t wifi_action = NECP_ROUTE_RULE_NONE;
6294 u_int8_t wired_action = NECP_ROUTE_RULE_NONE;
6295 u_int8_t expensive_action = NECP_ROUTE_RULE_NONE;
6296 u_int8_t constrained_action = NECP_ROUTE_RULE_NONE;
6297 u_int8_t companion_action = NECP_ROUTE_RULE_NONE;
6298 u_int8_t vpn_action = NECP_ROUTE_RULE_NONE;
6299 u_int8_t ultra_constrained_action = NECP_ROUTE_RULE_NONE;
6300 u_int32_t if_indices[MAX_ROUTE_RULE_INTERFACES];
6301 size_t num_valid_indices = 0;
6302 memset(&if_indices, 0, sizeof(if_indices));
6303 u_int8_t if_actions[MAX_ROUTE_RULE_INTERFACES];
6304 memset(&if_actions, 0, sizeof(if_actions));
6305
6306 uuid_t netagent_uuid = {};
6307
6308 uuid_t match_netagent_uuid = {};
6309 uint32_t control_unit = 0;
6310 uint32_t effective_type = 0;
6311
6312 LCK_RW_ASSERT(&necp_kernel_policy_lock, LCK_RW_ASSERT_EXCLUSIVE);
6313
6314 if (route_rules_array == NULL || route_rules_array_size == 0 || has_socket_only_actions == NULL) {
6315 return 0;
6316 }
6317
6318 // Process rules
6319 while ((offset + sizeof(u_int8_t) + sizeof(u_int32_t)) < route_rules_array_size) {
6320 ifnet_t __single rule_interface = NULL;
6321 char interface_name[IFXNAMSIZ];
6322 u_int32_t length = 0;
6323 u_int8_t * __indexable value = necp_buffer_get_tlv_value(route_rules_array, route_rules_array_size, offset, &length);
6324
6325 if (offset + sizeof(u_int8_t) + sizeof(u_int32_t) + length > route_rules_array_size) {
6326 // Invalid TLV goes beyond end of the rules array
6327 break;
6328 }
6329
6330 // Increment offset for the next time through the loop
6331 offset += sizeof(u_int8_t) + sizeof(u_int32_t) + length;
6332
6333 u_int8_t rule_action = necp_policy_condition_get_type_from_buffer(value, length);
6334 u_int8_t rule_flags = necp_policy_condition_get_flags_from_buffer(value, length);
6335 u_int32_t rule_length = necp_policy_condition_get_value_length_from_buffer(value, length);
6336 u_int8_t *rule_value = necp_policy_condition_get_value_pointer_from_buffer(value, length);
6337
6338 if (rule_action == NECP_ROUTE_RULE_NONE) {
6339 // Don't allow an explicit rule to be None action
6340 continue;
6341 }
6342
6343 if (rule_action == NECP_ROUTE_RULE_USE_NETAGENT ||
6344 rule_action == NECP_ROUTE_RULE_REMOVE_NETAGENT) {
6345 if (rule_length < sizeof(uuid_t)) {
6346 // Too short, skip
6347 continue;
6348 }
6349
6350 if (!uuid_is_null(netagent_uuid)) {
6351 if (uuid_compare(netagent_uuid, rule_value) != 0) {
6352 // UUIDs don't match, skip
6353 continue;
6354 }
6355 } else {
6356 // Copy out agent UUID
6357 memcpy(netagent_uuid, rule_value, sizeof(netagent_uuid));
6358 }
6359
6360 // Adjust remaining length
6361 rule_value += sizeof(netagent_uuid);
6362 rule_length -= sizeof(netagent_uuid);
6363 *has_socket_only_actions = true;
6364 } else if (rule_action == NECP_ROUTE_RULE_DIVERT_SOCKET) {
6365 if (rule_length < sizeof(control_unit)) {
6366 // Too short, skip
6367 continue;
6368 }
6369
6370 memcpy(&control_unit, rule_value, sizeof(control_unit));
6371
6372 // Adjust remaining length
6373 rule_value += sizeof(control_unit);
6374 rule_length -= sizeof(control_unit);
6375 *has_socket_only_actions = true;
6376 } else if (rule_action == NECP_ROUTE_RULE_DENY_INTERFACE_WITH_TYPE) {
6377 if (rule_length < sizeof(effective_type)) {
6378 // Too short, skip
6379 continue;
6380 }
6381
6382 memcpy(&effective_type, rule_value, sizeof(effective_type));
6383
6384 // Adjust remaining length
6385 rule_value += sizeof(effective_type);
6386 rule_length -= sizeof(effective_type);
6387 }
6388
6389 if (rule_length == 0) {
6390 if (rule_flags & NECP_ROUTE_RULE_FLAG_CELLULAR) {
6391 cellular_action = rule_action;
6392 }
6393 if (rule_flags & NECP_ROUTE_RULE_FLAG_WIFI) {
6394 wifi_action = rule_action;
6395 }
6396 if (rule_flags & NECP_ROUTE_RULE_FLAG_WIRED) {
6397 wired_action = rule_action;
6398 }
6399 if (rule_flags & NECP_ROUTE_RULE_FLAG_EXPENSIVE) {
6400 expensive_action = rule_action;
6401 }
6402 if ((rule_flags & NECP_ROUTE_RULE_FLAG_ULTRA_CONSTRAINED) == NECP_ROUTE_RULE_FLAG_ULTRA_CONSTRAINED) {
6403 ultra_constrained_action = rule_action;
6404 } else if (rule_flags & NECP_ROUTE_RULE_FLAG_CONSTRAINED) {
6405 constrained_action = rule_action;
6406 }
6407 if (rule_flags & NECP_ROUTE_RULE_FLAG_COMPANION) {
6408 companion_action = rule_action;
6409 }
6410 if (rule_flags & NECP_ROUTE_RULE_FLAG_VPN) {
6411 vpn_action = rule_action;
6412 }
6413 if (rule_flags == 0) {
6414 default_action = rule_action;
6415 }
6416 continue;
6417 } else if (rule_flags & NECP_ROUTE_RULE_FLAG_NETAGENT) {
6418 if (rule_length < sizeof(uuid_t)) {
6419 // Too short, skip
6420 continue;
6421 }
6422
6423 // Store the netagent UUID to match
6424 memcpy(match_netagent_uuid, rule_value, sizeof(match_netagent_uuid));
6425 // If the data is exactly a UUID, this is the default action
6426 if (rule_length == sizeof(uuid_t)) {
6427 default_action = rule_action;
6428 continue;
6429 }
6430
6431 // If the data is longer than a UUID, this also includes an interface name
6432 // Adjust remaining length to make sure the interface name is picked up below
6433 rule_value += sizeof(uuid_t);
6434 rule_length -= sizeof(uuid_t);
6435 }
6436
6437 if (num_valid_indices >= MAX_ROUTE_RULE_INTERFACES) {
6438 continue;
6439 }
6440
6441 if (rule_length <= IFXNAMSIZ) {
6442 memcpy(interface_name, rule_value, rule_length);
6443 interface_name[rule_length - 1] = 0; // Make sure the string is NULL terminated
6444 if (ifnet_find_by_name(__unsafe_null_terminated_from_indexable(interface_name, &interface_name[rule_length - 1]), &rule_interface) == 0) {
6445 if_actions[num_valid_indices] = rule_action;
6446 if_indices[num_valid_indices++] = rule_interface->if_index;
6447 ifnet_release(rule_interface);
6448 }
6449 }
6450 }
6451
6452 existing_rule = necp_lookup_route_rule_by_contents_locked(list, default_action, cellular_action, wifi_action, wired_action, expensive_action, constrained_action, companion_action, vpn_action, ultra_constrained_action, if_indices, if_actions, netagent_uuid, match_netagent_uuid, control_unit, effective_type);
6453 if (existing_rule != NULL) {
6454 route_rule_id = existing_rule->id;
6455 os_ref_retain_locked(&existing_rule->refcount);
6456 } else {
6457 struct necp_route_rule *new_rule = NULL;
6458 new_rule = kalloc_type(struct necp_route_rule,
6459 Z_WAITOK | Z_ZERO | Z_NOFAIL);
6460 route_rule_id = new_rule->id = necp_get_new_route_rule_id(false);
6461 if (!uuid_is_null(netagent_uuid)) {
6462 new_rule->netagent_id = necp_create_agent_uuid_id_mapping(netagent_uuid);
6463 }
6464 if (!uuid_is_null(match_netagent_uuid)) {
6465 new_rule->match_netagent_id = necp_create_agent_uuid_id_mapping(match_netagent_uuid);
6466 }
6467 new_rule->effective_type = effective_type;
6468 new_rule->control_unit = control_unit;
6469 new_rule->default_action = default_action;
6470 new_rule->cellular_action = cellular_action;
6471 new_rule->wifi_action = wifi_action;
6472 new_rule->wired_action = wired_action;
6473 new_rule->expensive_action = expensive_action;
6474 new_rule->constrained_action = constrained_action;
6475 new_rule->companion_action = companion_action;
6476 new_rule->vpn_action = vpn_action;
6477 new_rule->ultra_constrained_action = ultra_constrained_action;
6478 memcpy(&new_rule->exception_if_indices, &if_indices, sizeof(if_indices));
6479 memcpy(&new_rule->exception_if_actions, &if_actions, sizeof(if_actions));
6480 os_ref_init(&new_rule->refcount, &necp_refgrp);
6481 LIST_INSERT_HEAD(list, new_rule, chain);
6482 }
6483 return route_rule_id;
6484 }
6485
6486 static void
necp_remove_aggregate_route_rule_for_id(u_int32_t rule_id)6487 necp_remove_aggregate_route_rule_for_id(u_int32_t rule_id)
6488 {
6489 if (rule_id) {
6490 lck_rw_lock_exclusive(&necp_route_rule_lock);
6491
6492 struct necp_aggregate_route_rule * __single existing_rule = NULL;
6493 struct necp_aggregate_route_rule *tmp_rule = NULL;
6494
6495 LIST_FOREACH_SAFE(existing_rule, &necp_aggregate_route_rules, chain, tmp_rule) {
6496 int index = 0;
6497 for (index = 0; index < MAX_AGGREGATE_ROUTE_RULES; index++) {
6498 u_int32_t route_rule_id = existing_rule->rule_ids[index];
6499 if (route_rule_id == rule_id) {
6500 LIST_REMOVE(existing_rule, chain);
6501 kfree_type(struct necp_aggregate_route_rule, existing_rule);
6502 break;
6503 }
6504 }
6505 }
6506
6507 lck_rw_done(&necp_route_rule_lock);
6508 }
6509 }
6510
6511 static bool
necp_remove_route_rule(struct necp_route_rule_list * list,u_int32_t route_rule_id)6512 necp_remove_route_rule(struct necp_route_rule_list *list, u_int32_t route_rule_id)
6513 {
6514 struct necp_route_rule * __single existing_rule = NULL;
6515
6516 LCK_RW_ASSERT(&necp_kernel_policy_lock, LCK_RW_ASSERT_EXCLUSIVE);
6517
6518 existing_rule = necp_lookup_route_rule_locked(list, route_rule_id);
6519 if (existing_rule != NULL) {
6520 if (os_ref_release_locked(&existing_rule->refcount) == 0) {
6521 necp_remove_aggregate_route_rule_for_id(existing_rule->id);
6522 necp_remove_agent_uuid_id_mapping_with_agent_id(existing_rule->netagent_id);
6523 necp_remove_agent_uuid_id_mapping_with_agent_id(existing_rule->match_netagent_id);
6524 LIST_REMOVE(existing_rule, chain);
6525 kfree_type(struct necp_route_rule, existing_rule);
6526 }
6527 return TRUE;
6528 }
6529
6530 return FALSE;
6531 }
6532
6533 static struct necp_aggregate_route_rule *
necp_lookup_aggregate_route_rule_locked(u_int32_t route_rule_id)6534 necp_lookup_aggregate_route_rule_locked(u_int32_t route_rule_id)
6535 {
6536 struct necp_aggregate_route_rule *searchentry = NULL;
6537 struct necp_aggregate_route_rule *foundentry = NULL;
6538
6539 lck_rw_lock_shared(&necp_route_rule_lock);
6540
6541 LIST_FOREACH(searchentry, &necp_aggregate_route_rules, chain) {
6542 if (searchentry->id == route_rule_id) {
6543 foundentry = searchentry;
6544 break;
6545 }
6546 }
6547
6548 lck_rw_done(&necp_route_rule_lock);
6549
6550 return foundentry;
6551 }
6552
6553 static u_int32_t
necp_create_aggregate_route_rule(u_int32_t * __counted_by (MAX_AGGREGATE_ROUTE_RULES)rule_ids)6554 necp_create_aggregate_route_rule(u_int32_t * __counted_by(MAX_AGGREGATE_ROUTE_RULES)rule_ids)
6555 {
6556 u_int32_t aggregate_route_rule_id = 0;
6557 struct necp_aggregate_route_rule *new_rule = NULL;
6558 struct necp_aggregate_route_rule *existing_rule = NULL;
6559
6560 lck_rw_lock_exclusive(&necp_route_rule_lock);
6561
6562 // Check if the rule already exists
6563 LIST_FOREACH(existing_rule, &necp_aggregate_route_rules, chain) {
6564 if (memcmp(existing_rule->rule_ids, rule_ids, (sizeof(u_int32_t) * MAX_AGGREGATE_ROUTE_RULES)) == 0) {
6565 lck_rw_done(&necp_route_rule_lock);
6566 return existing_rule->id;
6567 }
6568 }
6569
6570 new_rule = kalloc_type(struct necp_aggregate_route_rule,
6571 Z_WAITOK | Z_ZERO | Z_NOFAIL);
6572 aggregate_route_rule_id = new_rule->id = necp_get_new_route_rule_id(true);
6573 new_rule->id = aggregate_route_rule_id;
6574 memcpy(new_rule->rule_ids, rule_ids, (sizeof(u_int32_t) * MAX_AGGREGATE_ROUTE_RULES));
6575 LIST_INSERT_HEAD(&necp_aggregate_route_rules, new_rule, chain);
6576 lck_rw_done(&necp_route_rule_lock);
6577
6578 return aggregate_route_rule_id;
6579 }
6580
6581 static u_int32_t
necp_get_new_app_uuid_id(void)6582 necp_get_new_app_uuid_id(void)
6583 {
6584 static u_int32_t necp_last_app_uuid_id = 0;
6585
6586 u_int32_t newid = 0;
6587
6588 LCK_RW_ASSERT(&necp_kernel_policy_lock, LCK_RW_ASSERT_EXCLUSIVE);
6589
6590 bool wrapped = FALSE;
6591 do {
6592 necp_last_app_uuid_id++;
6593 if (necp_last_app_uuid_id < 1) {
6594 if (wrapped) {
6595 // Already wrapped, give up
6596 NECPLOG0(LOG_ERR, "Failed to find a free app UUID ID.\n");
6597 return 0;
6598 }
6599 necp_last_app_uuid_id = 1;
6600 wrapped = TRUE;
6601 }
6602 newid = necp_last_app_uuid_id;
6603 } while (necp_uuid_lookup_uuid_with_app_id_locked(newid) != NULL); // If already used, keep trying
6604
6605 if (newid == 0) {
6606 NECPLOG0(LOG_ERR, "Allocate app UUID ID failed.\n");
6607 return 0;
6608 }
6609
6610 return newid;
6611 }
6612
6613 static struct necp_uuid_id_mapping *
necp_uuid_lookup_app_id_locked(uuid_t uuid)6614 necp_uuid_lookup_app_id_locked(uuid_t uuid)
6615 {
6616 struct necp_uuid_id_mapping *searchentry = NULL;
6617 struct necp_uuid_id_mapping *foundentry = NULL;
6618
6619 LIST_FOREACH(searchentry, APPUUIDHASH(uuid), chain) {
6620 if (uuid_compare(searchentry->uuid, uuid) == 0) {
6621 foundentry = searchentry;
6622 break;
6623 }
6624 }
6625
6626 return foundentry;
6627 }
6628
6629 static struct necp_uuid_id_mapping *
necp_uuid_lookup_uuid_with_app_id_locked(u_int32_t local_id)6630 necp_uuid_lookup_uuid_with_app_id_locked(u_int32_t local_id)
6631 {
6632 struct necp_uuid_id_mapping *searchentry = NULL;
6633 struct necp_uuid_id_mapping *foundentry = NULL;
6634
6635 struct necp_uuid_id_mapping_head *uuid_list_head = NULL;
6636 for (uuid_list_head = &necp_uuid_app_id_hashtbl[necp_uuid_app_id_hash_num_buckets - 1]; uuid_list_head >= necp_uuid_app_id_hashtbl; uuid_list_head--) {
6637 LIST_FOREACH(searchentry, uuid_list_head, chain) {
6638 if (searchentry->id == local_id) {
6639 foundentry = searchentry;
6640 break;
6641 }
6642 }
6643 }
6644
6645 return foundentry;
6646 }
6647
6648 static u_int32_t
necp_create_uuid_app_id_mapping(uuid_t uuid,bool * allocated_mapping,bool uuid_policy_table)6649 necp_create_uuid_app_id_mapping(uuid_t uuid, bool *allocated_mapping, bool uuid_policy_table)
6650 {
6651 u_int32_t local_id = 0;
6652 struct necp_uuid_id_mapping *existing_mapping = NULL;
6653
6654 LCK_RW_ASSERT(&necp_kernel_policy_lock, LCK_RW_ASSERT_EXCLUSIVE);
6655
6656 if (allocated_mapping) {
6657 *allocated_mapping = FALSE;
6658 }
6659
6660 existing_mapping = necp_uuid_lookup_app_id_locked(uuid);
6661 if (existing_mapping != NULL) {
6662 local_id = existing_mapping->id;
6663 os_ref_retain_locked(&existing_mapping->refcount);
6664 if (uuid_policy_table) {
6665 existing_mapping->table_usecount++;
6666 }
6667 } else {
6668 struct necp_uuid_id_mapping *new_mapping = NULL;
6669 new_mapping = kalloc_type(struct necp_uuid_id_mapping,
6670 Z_WAITOK | Z_NOFAIL);
6671 uuid_copy(new_mapping->uuid, uuid);
6672 new_mapping->id = necp_get_new_app_uuid_id();
6673 os_ref_init(&new_mapping->refcount, &necp_refgrp);
6674 if (uuid_policy_table) {
6675 new_mapping->table_usecount = 1;
6676 } else {
6677 new_mapping->table_usecount = 0;
6678 }
6679
6680 LIST_INSERT_HEAD(APPUUIDHASH(uuid), new_mapping, chain);
6681
6682 if (allocated_mapping) {
6683 *allocated_mapping = TRUE;
6684 }
6685
6686 local_id = new_mapping->id;
6687 }
6688
6689 return local_id;
6690 }
6691
6692 static bool
necp_remove_uuid_app_id_mapping(uuid_t uuid,bool * removed_mapping,bool uuid_policy_table)6693 necp_remove_uuid_app_id_mapping(uuid_t uuid, bool *removed_mapping, bool uuid_policy_table)
6694 {
6695 struct necp_uuid_id_mapping * __single existing_mapping = NULL;
6696
6697 LCK_RW_ASSERT(&necp_kernel_policy_lock, LCK_RW_ASSERT_EXCLUSIVE);
6698
6699 if (removed_mapping) {
6700 *removed_mapping = FALSE;
6701 }
6702
6703 existing_mapping = necp_uuid_lookup_app_id_locked(uuid);
6704 if (existing_mapping != NULL) {
6705 if (uuid_policy_table) {
6706 existing_mapping->table_usecount--;
6707 }
6708 if (os_ref_release_locked(&existing_mapping->refcount) == 0) {
6709 LIST_REMOVE(existing_mapping, chain);
6710 kfree_type(struct necp_uuid_id_mapping, existing_mapping);
6711 if (removed_mapping) {
6712 *removed_mapping = TRUE;
6713 }
6714 }
6715 return TRUE;
6716 }
6717
6718 return FALSE;
6719 }
6720
6721 #define NECP_NULL_AGENT_ID 1
6722 #define NECP_FIRST_VALID_AGENT_UUID_ID 2
6723 #define NECP_FIRST_VALID_AGENT_TYPE_ID UINT16_MAX
6724
6725 static bool
necp_agent_id_is_uuid(u_int32_t agent_id)6726 necp_agent_id_is_uuid(u_int32_t agent_id)
6727 {
6728 return agent_id < NECP_FIRST_VALID_AGENT_TYPE_ID;
6729 }
6730
6731 static u_int32_t
necp_get_new_agent_id(bool uuid)6732 necp_get_new_agent_id(bool uuid)
6733 {
6734 static u_int32_t necp_last_agent_id = 0;
6735 static u_int32_t necp_last_agent_type_id = 0;
6736
6737 u_int32_t newid = 0;
6738
6739 LCK_RW_ASSERT(&necp_kernel_policy_lock, LCK_RW_ASSERT_EXCLUSIVE);
6740
6741 if (uuid) {
6742 bool wrapped = FALSE;
6743 do {
6744 necp_last_agent_id++;
6745 if (necp_last_agent_id < NECP_FIRST_VALID_AGENT_UUID_ID ||
6746 necp_last_agent_id >= NECP_FIRST_VALID_AGENT_TYPE_ID) {
6747 if (wrapped) {
6748 // Already wrapped, give up
6749 NECPLOG0(LOG_ERR, "Failed to find a free agent UUID ID.\n");
6750 return NECP_NULL_AGENT_ID;
6751 }
6752 necp_last_agent_id = NECP_FIRST_VALID_AGENT_UUID_ID;
6753 wrapped = TRUE;
6754 }
6755 newid = necp_last_agent_id;
6756 } while (necp_uuid_lookup_uuid_with_agent_id_locked(newid) != NULL); // If already used, keep trying
6757 } else {
6758 bool wrapped = FALSE;
6759 do {
6760 necp_last_agent_type_id++;
6761 if (necp_last_agent_type_id < NECP_FIRST_VALID_AGENT_TYPE_ID) {
6762 if (wrapped) {
6763 // Already wrapped, give up
6764 NECPLOG0(LOG_ERR, "Failed to find a free agent type ID.\n");
6765 return NECP_NULL_AGENT_ID;
6766 }
6767 necp_last_agent_type_id = NECP_FIRST_VALID_AGENT_TYPE_ID;
6768 wrapped = TRUE;
6769 }
6770 newid = necp_last_agent_type_id;
6771 } while (necp_lookup_agent_type_with_id_locked(newid) != NULL); // If already used, keep trying
6772 }
6773
6774 if (newid == NECP_NULL_AGENT_ID) {
6775 NECPLOG0(LOG_ERR, "Allocate agent ID failed.\n");
6776 return NECP_NULL_AGENT_ID;
6777 }
6778
6779 return newid;
6780 }
6781
6782 static struct necp_uuid_id_mapping *
necp_uuid_get_null_agent_id_mapping(void)6783 necp_uuid_get_null_agent_id_mapping(void)
6784 {
6785 static struct necp_uuid_id_mapping null_mapping;
6786 uuid_clear(null_mapping.uuid);
6787 null_mapping.id = NECP_NULL_AGENT_ID;
6788
6789 return &null_mapping;
6790 }
6791
6792 static struct necp_uuid_id_mapping *
necp_uuid_lookup_agent_id_with_uuid_locked(uuid_t uuid)6793 necp_uuid_lookup_agent_id_with_uuid_locked(uuid_t uuid)
6794 {
6795 struct necp_uuid_id_mapping *searchentry = NULL;
6796 struct necp_uuid_id_mapping *foundentry = NULL;
6797
6798 if (uuid_is_null(uuid)) {
6799 return necp_uuid_get_null_agent_id_mapping();
6800 }
6801
6802 LIST_FOREACH(searchentry, &necp_agent_uuid_id_list, chain) {
6803 if (uuid_compare(searchentry->uuid, uuid) == 0) {
6804 foundentry = searchentry;
6805 break;
6806 }
6807 }
6808
6809 return foundentry;
6810 }
6811
6812 static struct necp_uuid_id_mapping *
necp_uuid_lookup_uuid_with_agent_id_locked(u_int32_t agent_id)6813 necp_uuid_lookup_uuid_with_agent_id_locked(u_int32_t agent_id)
6814 {
6815 struct necp_uuid_id_mapping *searchentry = NULL;
6816 struct necp_uuid_id_mapping *foundentry = NULL;
6817
6818 if (agent_id == NECP_NULL_AGENT_ID) {
6819 return necp_uuid_get_null_agent_id_mapping();
6820 }
6821
6822 LIST_FOREACH(searchentry, &necp_agent_uuid_id_list, chain) {
6823 if (searchentry->id == agent_id) {
6824 foundentry = searchentry;
6825 break;
6826 }
6827 }
6828
6829 return foundentry;
6830 }
6831
6832 static u_int32_t
necp_create_agent_uuid_id_mapping(uuid_t uuid)6833 necp_create_agent_uuid_id_mapping(uuid_t uuid)
6834 {
6835 u_int32_t agent_id = 0;
6836 struct necp_uuid_id_mapping *existing_mapping = NULL;
6837
6838 if (uuid_is_null(uuid)) {
6839 return NECP_NULL_AGENT_ID;
6840 }
6841
6842 LCK_RW_ASSERT(&necp_kernel_policy_lock, LCK_RW_ASSERT_EXCLUSIVE);
6843
6844 existing_mapping = necp_uuid_lookup_agent_id_with_uuid_locked(uuid);
6845 if (existing_mapping != NULL) {
6846 agent_id = existing_mapping->id;
6847 os_ref_retain_locked(&existing_mapping->refcount);
6848 } else {
6849 struct necp_uuid_id_mapping *new_mapping = NULL;
6850 new_mapping = kalloc_type(struct necp_uuid_id_mapping,
6851 Z_WAITOK | Z_NOFAIL);
6852 uuid_copy(new_mapping->uuid, uuid);
6853 new_mapping->id = necp_get_new_agent_id(true);
6854 os_ref_init(&new_mapping->refcount, &necp_refgrp);
6855
6856 LIST_INSERT_HEAD(&necp_agent_uuid_id_list, new_mapping, chain);
6857
6858 agent_id = new_mapping->id;
6859 }
6860
6861 return agent_id;
6862 }
6863
6864 static bool
necp_remove_agent_uuid_id_mapping(uuid_t uuid)6865 necp_remove_agent_uuid_id_mapping(uuid_t uuid)
6866 {
6867 struct necp_uuid_id_mapping * __single existing_mapping = NULL;
6868
6869 if (uuid_is_null(uuid)) {
6870 return TRUE;
6871 }
6872
6873 LCK_RW_ASSERT(&necp_kernel_policy_lock, LCK_RW_ASSERT_EXCLUSIVE);
6874
6875 existing_mapping = necp_uuid_lookup_agent_id_with_uuid_locked(uuid);
6876 if (existing_mapping != NULL) {
6877 if (os_ref_release_locked(&existing_mapping->refcount) == 0) {
6878 LIST_REMOVE(existing_mapping, chain);
6879 kfree_type(struct necp_uuid_id_mapping, existing_mapping);
6880 }
6881 return TRUE;
6882 }
6883
6884 return FALSE;
6885 }
6886
6887 static bool
necp_remove_agent_uuid_id_mapping_with_agent_id(u_int32_t agent_id)6888 necp_remove_agent_uuid_id_mapping_with_agent_id(u_int32_t agent_id)
6889 {
6890 struct necp_uuid_id_mapping * __single existing_mapping = NULL;
6891
6892 if (agent_id == 0) {
6893 return TRUE;
6894 }
6895
6896 LCK_RW_ASSERT(&necp_kernel_policy_lock, LCK_RW_ASSERT_EXCLUSIVE);
6897
6898 existing_mapping = necp_uuid_lookup_uuid_with_agent_id_locked(agent_id);
6899 if (existing_mapping != NULL) {
6900 if (os_ref_release_locked(&existing_mapping->refcount) == 0) {
6901 LIST_REMOVE(existing_mapping, chain);
6902 kfree_type(struct necp_uuid_id_mapping, existing_mapping);
6903 }
6904 return TRUE;
6905 }
6906
6907 return FALSE;
6908 }
6909
6910 static struct necp_agent_type_id_mapping *
necp_lookup_agent_type_to_id_locked(struct necp_policy_condition_agent_type * agent_type)6911 necp_lookup_agent_type_to_id_locked(struct necp_policy_condition_agent_type *agent_type)
6912 {
6913 struct necp_agent_type_id_mapping *searchentry = NULL;
6914 struct necp_agent_type_id_mapping *foundentry = NULL;
6915
6916 LIST_FOREACH(searchentry, &necp_agent_type_id_list, chain) {
6917 if (strlcmp(searchentry->agent_type.agent_domain, __unsafe_null_terminated_from_indexable(agent_type->agent_domain), NETAGENT_DOMAINSIZE) == 0 &&
6918 strlcmp(searchentry->agent_type.agent_type, __unsafe_null_terminated_from_indexable(agent_type->agent_type), NETAGENT_TYPESIZE) == 0) {
6919 foundentry = searchentry;
6920 break;
6921 }
6922 }
6923
6924 return foundentry;
6925 }
6926
6927 static struct necp_agent_type_id_mapping *
necp_lookup_agent_type_with_id_locked(u_int32_t agent_id)6928 necp_lookup_agent_type_with_id_locked(u_int32_t agent_id)
6929 {
6930 struct necp_agent_type_id_mapping *searchentry = NULL;
6931 struct necp_agent_type_id_mapping *foundentry = NULL;
6932
6933 LIST_FOREACH(searchentry, &necp_agent_type_id_list, chain) {
6934 if (searchentry->id == agent_id) {
6935 foundentry = searchentry;
6936 break;
6937 }
6938 }
6939
6940 return foundentry;
6941 }
6942
6943 static u_int32_t
necp_create_agent_type_to_id_mapping(struct necp_policy_condition_agent_type * agent_type)6944 necp_create_agent_type_to_id_mapping(struct necp_policy_condition_agent_type *agent_type)
6945 {
6946 u_int32_t agent_type_id = 0;
6947 struct necp_agent_type_id_mapping *existing_mapping = NULL;
6948
6949 LCK_RW_ASSERT(&necp_kernel_policy_lock, LCK_RW_ASSERT_EXCLUSIVE);
6950
6951 existing_mapping = necp_lookup_agent_type_to_id_locked(agent_type);
6952 if (existing_mapping != NULL) {
6953 agent_type_id = existing_mapping->id;
6954 os_ref_retain_locked(&existing_mapping->refcount);
6955 } else {
6956 struct necp_agent_type_id_mapping * __single new_mapping = NULL;
6957 new_mapping = kalloc_type(struct necp_agent_type_id_mapping,
6958 Z_WAITOK | Z_ZERO | Z_NOFAIL);
6959 strlcpy(new_mapping->agent_type.agent_domain, __unsafe_null_terminated_from_indexable(agent_type->agent_domain), NETAGENT_DOMAINSIZE);
6960 strlcpy(new_mapping->agent_type.agent_type, __unsafe_null_terminated_from_indexable(agent_type->agent_type), NETAGENT_TYPESIZE);
6961 new_mapping->id = necp_get_new_agent_id(false);
6962 os_ref_init(&new_mapping->refcount, &necp_refgrp);
6963 LIST_INSERT_HEAD(&necp_agent_type_id_list, new_mapping, chain);
6964 agent_type_id = new_mapping->id;
6965 }
6966 return agent_type_id;
6967 }
6968
6969 static bool
necp_remove_agent_type_to_id_mapping(u_int32_t agent_type_id)6970 necp_remove_agent_type_to_id_mapping(u_int32_t agent_type_id)
6971 {
6972 struct necp_agent_type_id_mapping * __single existing_mapping = NULL;
6973
6974 LCK_RW_ASSERT(&necp_kernel_policy_lock, LCK_RW_ASSERT_EXCLUSIVE);
6975
6976 existing_mapping = necp_lookup_agent_type_with_id_locked(agent_type_id);
6977 if (existing_mapping != NULL) {
6978 if (os_ref_release_locked(&existing_mapping->refcount) == 0) {
6979 LIST_REMOVE(existing_mapping, chain);
6980 kfree_type(struct necp_agent_type_id_mapping, existing_mapping);
6981 }
6982 return true;
6983 }
6984
6985 return false;
6986 }
6987
6988 static bool
necp_kernel_socket_policies_update_uuid_table(void)6989 necp_kernel_socket_policies_update_uuid_table(void)
6990 {
6991 LCK_RW_ASSERT(&necp_kernel_policy_lock, LCK_RW_ASSERT_EXCLUSIVE);
6992
6993 if (necp_uuid_app_id_mappings_dirty) {
6994 uuid_t dummy_uuid = {};
6995 if (proc_uuid_policy_kernel(PROC_UUID_POLICY_OPERATION_CLEAR, dummy_uuid, PROC_UUID_NECP_APP_POLICY) < 0) {
6996 NECPLOG0(LOG_DEBUG, "Error clearing uuids from policy table\n");
6997 return FALSE;
6998 }
6999
7000 if (necp_num_uuid_app_id_mappings > 0) {
7001 struct necp_uuid_id_mapping_head *uuid_list_head = NULL;
7002 for (uuid_list_head = &necp_uuid_app_id_hashtbl[necp_uuid_app_id_hash_num_buckets - 1]; uuid_list_head >= necp_uuid_app_id_hashtbl; uuid_list_head--) {
7003 struct necp_uuid_id_mapping *mapping = NULL;
7004 LIST_FOREACH(mapping, uuid_list_head, chain) {
7005 if (mapping->table_usecount > 0 &&
7006 proc_uuid_policy_kernel(PROC_UUID_POLICY_OPERATION_ADD, mapping->uuid, PROC_UUID_NECP_APP_POLICY) < 0) {
7007 NECPLOG0(LOG_DEBUG, "Error adding uuid to policy table\n");
7008 }
7009 }
7010 }
7011 }
7012
7013 necp_uuid_app_id_mappings_dirty = FALSE;
7014 }
7015
7016 return TRUE;
7017 }
7018
7019 #define NECP_KERNEL_VALID_IP_OUTPUT_CONDITIONS (NECP_KERNEL_CONDITION_ALL_INTERFACES | NECP_KERNEL_CONDITION_BOUND_INTERFACE | NECP_KERNEL_CONDITION_PROTOCOL | NECP_KERNEL_CONDITION_LOCAL_START | NECP_KERNEL_CONDITION_LOCAL_END | NECP_KERNEL_CONDITION_LOCAL_PREFIX | NECP_KERNEL_CONDITION_REMOTE_START | NECP_KERNEL_CONDITION_REMOTE_END | NECP_KERNEL_CONDITION_REMOTE_PREFIX | NECP_KERNEL_CONDITION_POLICY_ID | NECP_KERNEL_CONDITION_LAST_INTERFACE | NECP_KERNEL_CONDITION_LOCAL_NETWORKS | NECP_KERNEL_CONDITION_PACKET_FILTER_TAGS | NECP_KERNEL_CONDITION_SCHEME_PORT | NECP_KERNEL_CONDITION_BOUND_INTERFACE_FLAGS)
7020 static necp_kernel_policy_id
necp_kernel_ip_output_policy_add(necp_policy_order order,necp_policy_order suborder,u_int32_t session_order,int session_pid,u_int64_t condition_mask,u_int64_t condition_negated_mask,necp_kernel_policy_id cond_policy_id,ifnet_t cond_bound_interface,u_int32_t cond_last_interface_index,u_int16_t cond_protocol,union necp_sockaddr_union * cond_local_start,union necp_sockaddr_union * cond_local_end,u_int8_t cond_local_prefix,union necp_sockaddr_union * cond_remote_start,union necp_sockaddr_union * cond_remote_end,u_int8_t cond_remote_prefix,u_int16_t cond_packet_filter_tags,u_int16_t cond_scheme_port,u_int32_t cond_bound_interface_flags,u_int32_t cond_bound_interface_eflags,u_int32_t cond_bound_interface_xflags,u_int8_t cond_local_networks_flags,necp_kernel_policy_result result,necp_kernel_policy_result_parameter result_parameter)7021 necp_kernel_ip_output_policy_add(necp_policy_order order, necp_policy_order suborder, u_int32_t session_order, int session_pid, u_int64_t condition_mask, u_int64_t condition_negated_mask, necp_kernel_policy_id cond_policy_id, ifnet_t cond_bound_interface, u_int32_t cond_last_interface_index, u_int16_t cond_protocol, union necp_sockaddr_union *cond_local_start, union necp_sockaddr_union *cond_local_end, u_int8_t cond_local_prefix, union necp_sockaddr_union *cond_remote_start, union necp_sockaddr_union *cond_remote_end, u_int8_t cond_remote_prefix, u_int16_t cond_packet_filter_tags, u_int16_t cond_scheme_port, u_int32_t cond_bound_interface_flags, u_int32_t cond_bound_interface_eflags, u_int32_t cond_bound_interface_xflags, u_int8_t cond_local_networks_flags, necp_kernel_policy_result result, necp_kernel_policy_result_parameter result_parameter)
7022 {
7023 struct necp_kernel_ip_output_policy *new_kernel_policy = NULL;
7024 struct necp_kernel_ip_output_policy *tmp_kernel_policy = NULL;
7025
7026 new_kernel_policy = zalloc_flags(necp_ip_policy_zone, Z_WAITOK | Z_ZERO);
7027 new_kernel_policy->id = necp_kernel_policy_get_new_id(false);
7028 new_kernel_policy->suborder = suborder;
7029 new_kernel_policy->order = order;
7030 new_kernel_policy->session_order = session_order;
7031 new_kernel_policy->session_pid = session_pid;
7032
7033 // Sanitize condition mask
7034 new_kernel_policy->condition_mask = (condition_mask & NECP_KERNEL_VALID_IP_OUTPUT_CONDITIONS);
7035 if ((new_kernel_policy->condition_mask & NECP_KERNEL_CONDITION_ALL_INTERFACES) && (new_kernel_policy->condition_mask & NECP_KERNEL_CONDITION_BOUND_INTERFACE)) {
7036 new_kernel_policy->condition_mask &= ~NECP_KERNEL_CONDITION_BOUND_INTERFACE;
7037 }
7038 if ((new_kernel_policy->condition_mask & NECP_KERNEL_CONDITION_ALL_INTERFACES) && (new_kernel_policy->condition_mask & NECP_KERNEL_CONDITION_BOUND_INTERFACE_FLAGS)) {
7039 new_kernel_policy->condition_mask &= ~NECP_KERNEL_CONDITION_BOUND_INTERFACE_FLAGS;
7040 }
7041 if ((new_kernel_policy->condition_mask & NECP_KERNEL_CONDITION_LOCAL_END) && (new_kernel_policy->condition_mask & NECP_KERNEL_CONDITION_LOCAL_PREFIX)) {
7042 new_kernel_policy->condition_mask &= ~NECP_KERNEL_CONDITION_LOCAL_PREFIX;
7043 }
7044 if ((new_kernel_policy->condition_mask & NECP_KERNEL_CONDITION_REMOTE_END) && (new_kernel_policy->condition_mask & NECP_KERNEL_CONDITION_REMOTE_PREFIX)) {
7045 new_kernel_policy->condition_mask &= ~NECP_KERNEL_CONDITION_REMOTE_PREFIX;
7046 }
7047 new_kernel_policy->condition_negated_mask = condition_negated_mask & new_kernel_policy->condition_mask;
7048
7049 // Set condition values
7050 if (new_kernel_policy->condition_mask & NECP_KERNEL_CONDITION_POLICY_ID) {
7051 new_kernel_policy->cond_policy_id = cond_policy_id;
7052 }
7053 if (new_kernel_policy->condition_mask & NECP_KERNEL_CONDITION_BOUND_INTERFACE) {
7054 if (cond_bound_interface) {
7055 ifnet_reference(cond_bound_interface);
7056 }
7057 new_kernel_policy->cond_bound_interface = cond_bound_interface;
7058 }
7059 if (new_kernel_policy->condition_mask & NECP_KERNEL_CONDITION_LAST_INTERFACE) {
7060 new_kernel_policy->cond_last_interface_index = cond_last_interface_index;
7061 }
7062 if (new_kernel_policy->condition_mask & NECP_KERNEL_CONDITION_PROTOCOL) {
7063 new_kernel_policy->cond_protocol = cond_protocol;
7064 }
7065 if (new_kernel_policy->condition_mask & NECP_KERNEL_CONDITION_LOCAL_START) {
7066 SOCKADDR_COPY(cond_local_start, &new_kernel_policy->cond_local_start, cond_local_start->sa.sa_len);
7067 }
7068 if (new_kernel_policy->condition_mask & NECP_KERNEL_CONDITION_LOCAL_END) {
7069 SOCKADDR_COPY(cond_local_end, &new_kernel_policy->cond_local_end, cond_local_end->sa.sa_len);
7070 }
7071 if (new_kernel_policy->condition_mask & NECP_KERNEL_CONDITION_LOCAL_PREFIX) {
7072 new_kernel_policy->cond_local_prefix = cond_local_prefix;
7073 }
7074 if (new_kernel_policy->condition_mask & NECP_KERNEL_CONDITION_REMOTE_START) {
7075 SOCKADDR_COPY(cond_remote_start, &new_kernel_policy->cond_remote_start, cond_remote_start->sa.sa_len);
7076 }
7077 if (new_kernel_policy->condition_mask & NECP_KERNEL_CONDITION_REMOTE_END) {
7078 SOCKADDR_COPY(cond_remote_end, &new_kernel_policy->cond_remote_end, cond_remote_end->sa.sa_len);
7079 }
7080 if (new_kernel_policy->condition_mask & NECP_KERNEL_CONDITION_REMOTE_PREFIX) {
7081 new_kernel_policy->cond_remote_prefix = cond_remote_prefix;
7082 }
7083 if (new_kernel_policy->condition_mask & NECP_KERNEL_CONDITION_PACKET_FILTER_TAGS) {
7084 new_kernel_policy->cond_packet_filter_tags = cond_packet_filter_tags;
7085 }
7086 if (new_kernel_policy->condition_mask & NECP_KERNEL_CONDITION_SCHEME_PORT) {
7087 new_kernel_policy->cond_scheme_port = cond_scheme_port;
7088 }
7089 if (new_kernel_policy->condition_mask & NECP_KERNEL_CONDITION_BOUND_INTERFACE_FLAGS) {
7090 new_kernel_policy->cond_bound_interface_flags = cond_bound_interface_flags;
7091 new_kernel_policy->cond_bound_interface_eflags = cond_bound_interface_eflags;
7092 new_kernel_policy->cond_bound_interface_xflags = cond_bound_interface_xflags;
7093 }
7094 if (new_kernel_policy->condition_mask & NECP_KERNEL_CONDITION_LOCAL_NETWORKS) {
7095 new_kernel_policy->cond_local_networks_flags = cond_local_networks_flags;
7096 }
7097
7098 new_kernel_policy->result = result;
7099 memcpy(&new_kernel_policy->result_parameter, &result_parameter, sizeof(result_parameter));
7100
7101 if (necp_debug) {
7102 NECPLOG(LOG_DEBUG, "Added kernel policy: ip output, id=%d, mask=%llx\n", new_kernel_policy->id, new_kernel_policy->condition_mask);
7103 }
7104 LIST_INSERT_SORTED_THRICE_ASCENDING(&necp_kernel_ip_output_policies, new_kernel_policy, chain, session_order, order, suborder, tmp_kernel_policy);
7105
7106 return new_kernel_policy ? new_kernel_policy->id : 0;
7107 }
7108
7109 static struct necp_kernel_ip_output_policy *
necp_kernel_ip_output_policy_find(necp_kernel_policy_id policy_id)7110 necp_kernel_ip_output_policy_find(necp_kernel_policy_id policy_id)
7111 {
7112 struct necp_kernel_ip_output_policy *kernel_policy = NULL;
7113 struct necp_kernel_ip_output_policy *tmp_kernel_policy = NULL;
7114
7115 if (policy_id == 0) {
7116 return NULL;
7117 }
7118
7119 LIST_FOREACH_SAFE(kernel_policy, &necp_kernel_ip_output_policies, chain, tmp_kernel_policy) {
7120 if (kernel_policy->id == policy_id) {
7121 return kernel_policy;
7122 }
7123 }
7124
7125 return NULL;
7126 }
7127
7128 static bool
necp_kernel_ip_output_policy_delete(necp_kernel_policy_id policy_id)7129 necp_kernel_ip_output_policy_delete(necp_kernel_policy_id policy_id)
7130 {
7131 struct necp_kernel_ip_output_policy * __single policy = NULL;
7132
7133 LCK_RW_ASSERT(&necp_kernel_policy_lock, LCK_RW_ASSERT_EXCLUSIVE);
7134
7135 policy = necp_kernel_ip_output_policy_find(policy_id);
7136 if (policy) {
7137 LIST_REMOVE(policy, chain);
7138
7139 if (policy->cond_bound_interface) {
7140 ifnet_release(policy->cond_bound_interface);
7141 policy->cond_bound_interface = NULL;
7142 }
7143
7144 zfree(necp_ip_policy_zone, policy);
7145 return TRUE;
7146 }
7147
7148 return FALSE;
7149 }
7150
7151 static void
necp_kernel_ip_output_policies_dump_all(void)7152 necp_kernel_ip_output_policies_dump_all(void)
7153 {
7154 if (necp_debug) {
7155 struct necp_kernel_ip_output_policy *policy = NULL;
7156 int policy_i;
7157 int id_i;
7158 char result_string[MAX_RESULT_STRING_LEN];
7159 char proc_name_string[MAXCOMLEN + 1];
7160 memset(result_string, 0, MAX_RESULT_STRING_LEN);
7161 memset(proc_name_string, 0, MAXCOMLEN + 1);
7162
7163 NECPLOG0(LOG_DEBUG, "NECP IP Output Policies:\n");
7164 NECPLOG0(LOG_DEBUG, "-----------\n");
7165 for (id_i = 0; id_i < NECP_KERNEL_IP_OUTPUT_POLICIES_MAP_NUM_ID_BUCKETS; id_i++) {
7166 NECPLOG(LOG_DEBUG, " ID Bucket: %d\n", id_i);
7167 for (policy_i = 0; necp_kernel_ip_output_policies_map[id_i] != NULL && (necp_kernel_ip_output_policies_map[id_i])[policy_i] != NULL; policy_i++) {
7168 policy = (necp_kernel_ip_output_policies_map[id_i])[policy_i];
7169 proc_name(policy->session_pid, proc_name_string, MAXCOMLEN);
7170 NECPLOG(LOG_DEBUG, "\t%3d. Policy ID: %5d\tProcess: %10.10s\tOrder: %04d.%04d.%d\tMask: %llx\tResult: %s\n", policy_i, policy->id, proc_name_string, policy->session_order, policy->order, policy->suborder, policy->condition_mask, necp_get_result_description(result_string, policy->result, policy->result_parameter));
7171 }
7172 NECPLOG0(LOG_DEBUG, "-----------\n");
7173 }
7174 }
7175 }
7176
7177 static inline bool
necp_kernel_ip_output_policy_results_overlap(struct necp_kernel_ip_output_policy * upper_policy,struct necp_kernel_ip_output_policy * lower_policy)7178 necp_kernel_ip_output_policy_results_overlap(struct necp_kernel_ip_output_policy *upper_policy, struct necp_kernel_ip_output_policy *lower_policy)
7179 {
7180 if (upper_policy->result == NECP_KERNEL_POLICY_RESULT_SKIP) {
7181 if (upper_policy->session_order != lower_policy->session_order) {
7182 // A skip cannot override a policy of a different session
7183 return FALSE;
7184 } else {
7185 if (upper_policy->result_parameter.skip_policy_order == 0 ||
7186 lower_policy->order >= upper_policy->result_parameter.skip_policy_order) {
7187 // This policy is beyond the skip
7188 return FALSE;
7189 } else {
7190 // This policy is inside the skip
7191 return TRUE;
7192 }
7193 }
7194 }
7195
7196 // All other IP Output policy results (drop, tunnel, hard pass) currently overlap
7197 return TRUE;
7198 }
7199
7200 static bool
necp_kernel_ip_output_policy_is_unnecessary(struct necp_kernel_ip_output_policy * policy,struct necp_kernel_ip_output_policy ** __indexable policy_array,int valid_indices)7201 necp_kernel_ip_output_policy_is_unnecessary(struct necp_kernel_ip_output_policy *policy, struct necp_kernel_ip_output_policy ** __indexable policy_array, int valid_indices)
7202 {
7203 bool can_skip = FALSE;
7204 u_int32_t highest_skip_session_order = 0;
7205 u_int32_t highest_skip_order = 0;
7206 int i;
7207 for (i = 0; i < valid_indices; i++) {
7208 struct necp_kernel_ip_output_policy *compared_policy = policy_array[i];
7209
7210 // For policies in a skip window, we can't mark conflicting policies as unnecessary
7211 if (can_skip) {
7212 if (highest_skip_session_order != compared_policy->session_order ||
7213 (highest_skip_order != 0 && compared_policy->order >= highest_skip_order)) {
7214 // If we've moved on to the next session, or passed the skip window
7215 highest_skip_session_order = 0;
7216 highest_skip_order = 0;
7217 can_skip = FALSE;
7218 } else {
7219 // If this policy is also a skip, in can increase the skip window
7220 if (compared_policy->result == NECP_KERNEL_POLICY_RESULT_SKIP) {
7221 if (compared_policy->result_parameter.skip_policy_order > highest_skip_order) {
7222 highest_skip_order = compared_policy->result_parameter.skip_policy_order;
7223 }
7224 }
7225 continue;
7226 }
7227 }
7228
7229 if (compared_policy->result == NECP_KERNEL_POLICY_RESULT_SKIP) {
7230 // This policy is a skip. Set the skip window accordingly
7231 can_skip = TRUE;
7232 highest_skip_session_order = compared_policy->session_order;
7233 highest_skip_order = compared_policy->result_parameter.skip_policy_order;
7234 }
7235
7236 // The result of the compared policy must be able to block out this policy result
7237 if (!necp_kernel_ip_output_policy_results_overlap(compared_policy, policy)) {
7238 continue;
7239 }
7240
7241 // If new policy matches All Interfaces, compared policy must also
7242 if ((policy->condition_mask & NECP_KERNEL_CONDITION_ALL_INTERFACES) && !(compared_policy->condition_mask & NECP_KERNEL_CONDITION_ALL_INTERFACES)) {
7243 continue;
7244 }
7245
7246 // If new policy matches Local Networks, compared policy must also
7247 if ((policy->condition_mask & NECP_KERNEL_CONDITION_LOCAL_NETWORKS) && !(compared_policy->condition_mask & NECP_KERNEL_CONDITION_LOCAL_NETWORKS)) {
7248 continue;
7249 }
7250
7251 // Default makes lower policies unnecessary always
7252 if (compared_policy->condition_mask == 0) {
7253 return TRUE;
7254 }
7255
7256 // Compared must be more general than policy, and include only conditions within policy
7257 if ((policy->condition_mask & compared_policy->condition_mask) != compared_policy->condition_mask) {
7258 continue;
7259 }
7260
7261 // Negative conditions must match for the overlapping conditions
7262 if ((policy->condition_negated_mask & compared_policy->condition_mask) != (compared_policy->condition_negated_mask & compared_policy->condition_mask)) {
7263 continue;
7264 }
7265
7266 if (compared_policy->condition_mask & NECP_KERNEL_CONDITION_POLICY_ID &&
7267 compared_policy->cond_policy_id != policy->cond_policy_id) {
7268 continue;
7269 }
7270
7271 if (compared_policy->condition_mask & NECP_KERNEL_CONDITION_BOUND_INTERFACE &&
7272 compared_policy->cond_bound_interface != policy->cond_bound_interface) {
7273 continue;
7274 }
7275
7276 if (compared_policy->condition_mask & NECP_KERNEL_CONDITION_PROTOCOL &&
7277 compared_policy->cond_protocol != policy->cond_protocol) {
7278 continue;
7279 }
7280
7281 if (compared_policy->condition_mask & NECP_KERNEL_CONDITION_LOCAL_START) {
7282 if (compared_policy->condition_mask & NECP_KERNEL_CONDITION_LOCAL_END) {
7283 if (!necp_is_range_in_range(SA(&policy->cond_local_start), SA(&policy->cond_local_end), SA(&compared_policy->cond_local_start), SA(&compared_policy->cond_local_end))) {
7284 continue;
7285 }
7286 } else if (compared_policy->condition_mask & NECP_KERNEL_CONDITION_LOCAL_PREFIX) {
7287 if (compared_policy->cond_local_prefix > policy->cond_local_prefix ||
7288 !necp_is_addr_in_subnet(SA(&policy->cond_local_start), SA(&compared_policy->cond_local_start), compared_policy->cond_local_prefix)) {
7289 continue;
7290 }
7291 }
7292 }
7293
7294 if (compared_policy->condition_mask & NECP_KERNEL_CONDITION_REMOTE_START) {
7295 if (compared_policy->condition_mask & NECP_KERNEL_CONDITION_REMOTE_END) {
7296 if (!necp_is_range_in_range(SA(&policy->cond_remote_start), SA(&policy->cond_remote_end), SA(&compared_policy->cond_remote_start), SA(&compared_policy->cond_remote_end))) {
7297 continue;
7298 }
7299 } else if (compared_policy->condition_mask & NECP_KERNEL_CONDITION_REMOTE_PREFIX) {
7300 if (compared_policy->cond_remote_prefix > policy->cond_remote_prefix ||
7301 !necp_is_addr_in_subnet(SA(&policy->cond_remote_start), SA(&compared_policy->cond_remote_start), compared_policy->cond_remote_prefix)) {
7302 continue;
7303 }
7304 }
7305 }
7306
7307 if (compared_policy->condition_mask & NECP_KERNEL_CONDITION_SCHEME_PORT &&
7308 compared_policy->cond_scheme_port != policy->cond_scheme_port) {
7309 continue;
7310 }
7311
7312 if (compared_policy->condition_mask & NECP_KERNEL_CONDITION_BOUND_INTERFACE_FLAGS &&
7313 (compared_policy->cond_bound_interface_flags != policy->cond_bound_interface_flags ||
7314 compared_policy->cond_bound_interface_eflags != policy->cond_bound_interface_eflags ||
7315 compared_policy->cond_bound_interface_xflags != policy->cond_bound_interface_xflags)) {
7316 continue;
7317 }
7318
7319 return TRUE;
7320 }
7321
7322 return FALSE;
7323 }
7324
7325 static bool
necp_kernel_ip_output_policies_reprocess(void)7326 necp_kernel_ip_output_policies_reprocess(void)
7327 {
7328 int i;
7329 int bucket_current_free_index[NECP_KERNEL_IP_OUTPUT_POLICIES_MAP_NUM_ID_BUCKETS];
7330 struct necp_kernel_ip_output_policy *kernel_policy = NULL;
7331
7332 LCK_RW_ASSERT(&necp_kernel_policy_lock, LCK_RW_ASSERT_EXCLUSIVE);
7333
7334 // Reset mask to 0
7335 necp_kernel_ip_output_policies_condition_mask = 0;
7336 necp_kernel_ip_output_policies_count = 0;
7337 necp_kernel_ip_output_policies_non_id_count = 0;
7338
7339 for (i = 0; i < NECP_KERNEL_IP_OUTPUT_POLICIES_MAP_NUM_ID_BUCKETS; i++) {
7340 if (necp_kernel_ip_output_policies_map[i] != NULL) {
7341 kfree_type(struct necp_kernel_ip_output_policy *,
7342 necp_kernel_ip_output_policies_map_counts[i] + 1,
7343 necp_kernel_ip_output_policies_map[i]);
7344 necp_kernel_ip_output_policies_map[i] = NULL;
7345 }
7346
7347 // Init counts
7348 necp_kernel_ip_output_policies_map_counts[i] = 0;
7349 }
7350
7351 LIST_FOREACH(kernel_policy, &necp_kernel_ip_output_policies, chain) {
7352 // Update mask
7353 necp_kernel_ip_output_policies_condition_mask |= kernel_policy->condition_mask;
7354 necp_kernel_ip_output_policies_count++;
7355
7356 /* Update bucket counts:
7357 * Non-id and SKIP policies will be added to all buckets
7358 * Add local networks policy to all buckets for incoming IP
7359 */
7360 if (!(kernel_policy->condition_mask & NECP_KERNEL_CONDITION_POLICY_ID) ||
7361 (kernel_policy->condition_mask & NECP_KERNEL_CONDITION_LOCAL_NETWORKS) ||
7362 kernel_policy->result == NECP_KERNEL_POLICY_RESULT_SKIP) {
7363 for (i = 0; i < NECP_KERNEL_IP_OUTPUT_POLICIES_MAP_NUM_ID_BUCKETS; i++) {
7364 necp_kernel_ip_output_policies_map_counts[i]++;
7365 }
7366 }
7367 if (!(kernel_policy->condition_mask & NECP_KERNEL_CONDITION_POLICY_ID)) {
7368 necp_kernel_ip_output_policies_non_id_count++;
7369 } else {
7370 necp_kernel_ip_output_policies_map_counts[NECP_IP_OUTPUT_MAP_ID_TO_BUCKET(kernel_policy->cond_policy_id)]++;
7371 }
7372 }
7373
7374 for (i = 0; i < NECP_KERNEL_IP_OUTPUT_POLICIES_MAP_NUM_ID_BUCKETS; i++) {
7375 if (necp_kernel_ip_output_policies_map_counts[i] > 0) {
7376 // Allocate a NULL-terminated array of policy pointers for each bucket
7377 necp_kernel_ip_output_policies_map[i] = kalloc_type(struct necp_kernel_ip_output_policy *,
7378 necp_kernel_ip_output_policies_map_counts[i] + 1, Z_WAITOK | Z_ZERO);
7379 if (necp_kernel_ip_output_policies_map[i] == NULL) {
7380 goto fail;
7381 }
7382 }
7383 bucket_current_free_index[i] = 0;
7384 }
7385
7386 u_int32_t current_session_order = 0;
7387 u_int32_t current_session_last_non_skip_policy = 0;
7388
7389 LIST_FOREACH(kernel_policy, &necp_kernel_ip_output_policies, chain) {
7390 // For each new session, find the last non-skip policy. We can
7391 // avoid adding any skip policies that don't actually skip over
7392 // any non-skip policies.
7393 if (current_session_order != kernel_policy->session_order) {
7394 current_session_order = kernel_policy->session_order;
7395 current_session_last_non_skip_policy = 0;
7396
7397 struct necp_kernel_ip_output_policy *inner_policy = NULL;
7398 LIST_FOREACH(inner_policy, &necp_kernel_ip_output_policies, chain) {
7399 if (inner_policy->session_order < current_session_order) {
7400 continue;
7401 }
7402 if (inner_policy->session_order > current_session_order) {
7403 break;
7404 }
7405 if (inner_policy->result == NECP_KERNEL_POLICY_RESULT_SKIP) {
7406 continue;
7407 }
7408
7409 current_session_last_non_skip_policy = inner_policy->order;
7410 }
7411 }
7412
7413 if (kernel_policy->result == NECP_KERNEL_POLICY_RESULT_SKIP) {
7414 if (current_session_last_non_skip_policy == 0) {
7415 // No useful policies to skip over, don't add
7416 continue;
7417 }
7418 if (kernel_policy->order >= current_session_last_non_skip_policy) {
7419 // Skip policy is after the last useful policy, don't add
7420 continue;
7421 }
7422 }
7423
7424 // Insert pointers into map
7425 if (!(kernel_policy->condition_mask & NECP_KERNEL_CONDITION_POLICY_ID) ||
7426 (kernel_policy->condition_mask & NECP_KERNEL_CONDITION_LOCAL_NETWORKS) ||
7427 kernel_policy->result == NECP_KERNEL_POLICY_RESULT_SKIP) {
7428 for (i = 0; i < NECP_KERNEL_IP_OUTPUT_POLICIES_MAP_NUM_ID_BUCKETS; i++) {
7429 if (!necp_dedup_policies || !necp_kernel_ip_output_policy_is_unnecessary(kernel_policy, necp_kernel_ip_output_policies_map[i], bucket_current_free_index[i])) {
7430 (necp_kernel_ip_output_policies_map[i])[(bucket_current_free_index[i])] = kernel_policy;
7431 bucket_current_free_index[i]++;
7432 (necp_kernel_ip_output_policies_map[i])[(bucket_current_free_index[i])] = NULL;
7433 }
7434 }
7435 } else {
7436 i = NECP_IP_OUTPUT_MAP_ID_TO_BUCKET(kernel_policy->cond_policy_id);
7437 if (!necp_dedup_policies || !necp_kernel_ip_output_policy_is_unnecessary(kernel_policy, necp_kernel_ip_output_policies_map[i], bucket_current_free_index[i])) {
7438 (necp_kernel_ip_output_policies_map[i])[(bucket_current_free_index[i])] = kernel_policy;
7439 bucket_current_free_index[i]++;
7440 (necp_kernel_ip_output_policies_map[i])[(bucket_current_free_index[i])] = NULL;
7441 }
7442 }
7443 }
7444
7445 if (bucket_current_free_index[0] == 0) {
7446 // No non-id policies were actually added
7447 necp_kernel_ip_output_policies_non_id_count = 0;
7448
7449 // Also check if no policies at all were added
7450 bool policies_added = FALSE;
7451 for (i = 1; i < NECP_KERNEL_IP_OUTPUT_POLICIES_MAP_NUM_ID_BUCKETS; i++) {
7452 if (bucket_current_free_index[i] != 0) {
7453 policies_added = TRUE;
7454 break;
7455 }
7456 }
7457 if (!policies_added) {
7458 necp_kernel_ip_output_policies_condition_mask = 0;
7459 necp_kernel_ip_output_policies_count = 0;
7460 }
7461 }
7462
7463 necp_kernel_ip_output_policies_dump_all();
7464 return TRUE;
7465
7466 fail:
7467 // Free memory, reset mask to 0
7468 necp_kernel_ip_output_policies_condition_mask = 0;
7469 necp_kernel_ip_output_policies_count = 0;
7470 necp_kernel_ip_output_policies_non_id_count = 0;
7471 for (i = 0; i < NECP_KERNEL_IP_OUTPUT_POLICIES_MAP_NUM_ID_BUCKETS; i++) {
7472 if (necp_kernel_ip_output_policies_map[i] != NULL) {
7473 kfree_type(struct necp_kernel_ip_output_policy *,
7474 necp_kernel_ip_output_policies_map_counts[i] + 1,
7475 necp_kernel_ip_output_policies_map[i]);
7476 necp_kernel_ip_output_policies_map[i] = NULL;
7477 }
7478 }
7479 return FALSE;
7480 }
7481
7482 // Outbound Policy Matching
7483 // ---------------------
7484 struct substring {
7485 size_t length;
7486 char * __sized_by(length) string;
7487 };
7488
7489 static struct substring
necp_trim_dots_and_stars(char * __sized_by (length)string,size_t length)7490 necp_trim_dots_and_stars(char * __sized_by(length)string, size_t length)
7491 {
7492 struct substring sub = {};
7493 char * __indexable ptr = string;
7494 size_t len = string ? length : 0;
7495
7496 while (len && (ptr[0] == '.' || ptr[0] == '*')) {
7497 ptr++;
7498 len--;
7499 }
7500
7501 while (len && (ptr[len - 1] == '.' || ptr[len - 1] == '*')) {
7502 len--;
7503 }
7504
7505 sub.string = ptr;
7506 sub.length = len;
7507 return sub;
7508 }
7509
7510 static char * __null_terminated
necp_create_trimmed_domain(char * __sized_by (length)string,size_t length)7511 necp_create_trimmed_domain(char * __sized_by(length)string, size_t length)
7512 {
7513 size_t trimmed_domain_length = 0;
7514 char *trimmed_domain = NULL;
7515 struct substring sub = necp_trim_dots_and_stars(string, length);
7516
7517 trimmed_domain = (char *)kalloc_data(sub.length + 1, Z_WAITOK);
7518 trimmed_domain_length = sub.length + 1;
7519 if (trimmed_domain == NULL) {
7520 return NULL;
7521 }
7522
7523 strbufcpy(trimmed_domain, trimmed_domain_length, sub.string, sub.length);
7524 trimmed_domain[sub.length] = 0;
7525
7526 return __unsafe_null_terminated_from_indexable(trimmed_domain, &trimmed_domain[sub.length]);
7527 }
7528
7529 static inline int
necp_count_dots(char * __sized_by (length)string,size_t length)7530 necp_count_dots(char * __sized_by(length)string, size_t length)
7531 {
7532 int dot_count = 0;
7533 size_t i = 0;
7534
7535 for (i = 0; i < length; i++) {
7536 if (string[i] == '.') {
7537 dot_count++;
7538 }
7539 }
7540
7541 return dot_count;
7542 }
7543
7544 static bool
necp_check_suffix(struct substring parent,struct substring suffix,bool require_dot_before_suffix)7545 necp_check_suffix(struct substring parent, struct substring suffix, bool require_dot_before_suffix)
7546 {
7547 if (parent.length <= suffix.length) {
7548 return FALSE;
7549 }
7550
7551 size_t length_difference = (parent.length - suffix.length);
7552
7553 if (require_dot_before_suffix) {
7554 if (((char *)(parent.string + length_difference - 1))[0] != '.') {
7555 return FALSE;
7556 }
7557 }
7558
7559 // strncasecmp does case-insensitive check for all UTF-8 strings (ignores non-ASCII characters)
7560 return strbufcasecmp(parent.string + length_difference, parent.length - length_difference, suffix.string, suffix.length) == 0;
7561 }
7562
7563 static bool
necp_hostname_matches_domain(struct substring hostname_substring,u_int8_t hostname_dot_count,char * domain __null_terminated,u_int8_t domain_dot_count)7564 necp_hostname_matches_domain(struct substring hostname_substring, u_int8_t hostname_dot_count, char *domain __null_terminated, u_int8_t domain_dot_count)
7565 {
7566 if (hostname_substring.string == NULL || domain == NULL) {
7567 return hostname_substring.string == domain;
7568 }
7569
7570 struct substring domain_substring;
7571 domain_substring.string = __unsafe_null_terminated_to_indexable(domain);
7572 domain_substring.length = strlen(domain);
7573
7574 if (hostname_dot_count == domain_dot_count) {
7575 // strncasecmp does case-insensitive check for all UTF-8 strings (ignores non-ASCII characters)
7576 if (hostname_substring.length == domain_substring.length &&
7577 strbufcasecmp(hostname_substring.string, hostname_substring.length, domain_substring.string, domain_substring.length) == 0) {
7578 return TRUE;
7579 }
7580 } else if (domain_dot_count < hostname_dot_count) {
7581 if (necp_check_suffix(hostname_substring, domain_substring, TRUE)) {
7582 return TRUE;
7583 }
7584 }
7585
7586 return FALSE;
7587 }
7588
7589 bool
net_domain_contains_hostname(char * hostname_string __null_terminated,char * domain_string __null_terminated)7590 net_domain_contains_hostname(char *hostname_string __null_terminated, char *domain_string __null_terminated)
7591 {
7592 if (hostname_string == NULL ||
7593 domain_string == NULL) {
7594 return false;
7595 }
7596
7597 struct substring hostname_substring;
7598 hostname_substring.string = __unsafe_null_terminated_to_indexable(hostname_string);
7599 hostname_substring.length = strlen(hostname_string);
7600
7601 return necp_hostname_matches_domain(hostname_substring,
7602 necp_count_dots(hostname_substring.string, hostname_substring.length),
7603 domain_string,
7604 necp_count_dots(__unsafe_null_terminated_to_indexable(domain_string), strlen(domain_string)));
7605 }
7606
7607 #define NECP_MAX_STRING_LEN 1024
7608
7609 static char * __null_terminated
necp_copy_string(char * __sized_by (length)string,size_t length)7610 necp_copy_string(char * __sized_by(length)string, size_t length)
7611 {
7612 size_t copied_string_length = 0;
7613 char * __sized_by(copied_string_length) copied_string = NULL;
7614
7615 if (length > NECP_MAX_STRING_LEN) {
7616 return NULL;
7617 }
7618
7619 copied_string = (char *)kalloc_data(length + 1, Z_WAITOK);
7620 copied_string_length = length + 1;
7621 if (copied_string == NULL) {
7622 return NULL;
7623 }
7624
7625 memcpy(copied_string, string, length);
7626 copied_string[length] = 0;
7627
7628 return __unsafe_null_terminated_from_indexable(copied_string, &copied_string[length]);
7629 }
7630
7631 static u_int32_t
necp_get_primary_direct_interface_index(void)7632 necp_get_primary_direct_interface_index(void)
7633 {
7634 u_int32_t interface_index = IFSCOPE_NONE;
7635
7636 ifnet_head_lock_shared();
7637 struct ifnet *ordered_interface = NULL;
7638 TAILQ_FOREACH(ordered_interface, &ifnet_ordered_head, if_ordered_link) {
7639 const u_int8_t functional_type = if_functional_type(ordered_interface, TRUE);
7640 if (functional_type != IFRTYPE_FUNCTIONAL_UNKNOWN &&
7641 functional_type != IFRTYPE_FUNCTIONAL_LOOPBACK) {
7642 // All known, non-loopback functional types represent direct physical interfaces (Wi-Fi, Cellular, Wired)
7643 interface_index = ordered_interface->if_index;
7644 break;
7645 }
7646 }
7647 ifnet_head_done();
7648
7649 return interface_index;
7650 }
7651
7652 static inline bool
necp_task_has_match_entitlement(task_t task)7653 necp_task_has_match_entitlement(task_t task)
7654 {
7655 return task != NULL &&
7656 (IOTaskHasEntitlement(task, "com.apple.private.necp.match") ||
7657 IOTaskHasEntitlement(task, "com.apple.developer.CaptiveNetworkPlugin"));
7658 }
7659
7660 // Loopback traffic from certain entitled process will be dropped
7661 static inline bool
necp_task_has_loopback_drop_entitlement(task_t task)7662 necp_task_has_loopback_drop_entitlement(task_t task)
7663 {
7664 bool drop = (task != NULL && IOTaskHasEntitlement(task, NECP_DDE_ENTITLEMENT));
7665 if (drop) {
7666 necp_drop_loopback_count++;
7667 }
7668 return drop;
7669 }
7670
7671 static inline void
necp_get_parent_is_entitled(task_t task,struct necp_socket_info * info)7672 necp_get_parent_is_entitled(task_t task, struct necp_socket_info *info)
7673 {
7674 coalition_t __single coal = task_get_coalition(task, COALITION_TYPE_JETSAM);
7675
7676 if (coal == COALITION_NULL || coalition_is_leader(task, coal)) {
7677 // No parent, nothing to do
7678 return;
7679 }
7680
7681 task_t __single lead_task = coalition_get_leader(coal);
7682 if (lead_task != NULL) {
7683 info->is_entitled = necp_task_has_match_entitlement(lead_task);
7684 task_deallocate(lead_task);
7685 }
7686 }
7687
7688 // Some processes, due to particular entitlements, require using an NECP client to
7689 // access networking. Returns true if the result should be a Drop.
7690 static inline bool
necp_check_missing_client_drop(proc_t proc,struct necp_socket_info * info)7691 necp_check_missing_client_drop(proc_t proc, struct necp_socket_info *info)
7692 {
7693 if (necp_is_platform_binary(proc)) {
7694 // This check is currently for the "on-demand-install-capable"
7695 // entitlement, which by definition cannot be a built-in platform
7696 // binary.
7697 return false;
7698 }
7699
7700 task_t __single task = proc_task(proc ? proc : current_proc());
7701
7702 if (!info->has_client &&
7703 task != NULL &&
7704 IOTaskHasEntitlement(task, "com.apple.developer.on-demand-install-capable")) {
7705 // Drop connections that don't use NECP clients and have the
7706 // com.apple.developer.on-demand-install-capable entitlement.
7707 // This effectively restricts those processes to only using
7708 // an NECP-aware path for networking.
7709 return true;
7710 } else {
7711 return false;
7712 }
7713 }
7714
7715 static inline bool
necp_check_restricted_multicast_drop(proc_t proc,struct necp_socket_info * info,bool check_minor_version)7716 necp_check_restricted_multicast_drop(proc_t proc, struct necp_socket_info *info, bool check_minor_version)
7717 {
7718 if (!necp_restrict_multicast || proc == NULL) {
7719 return false;
7720 }
7721
7722 // Check for multicast/broadcast here
7723 if (info->remote_addr.sa.sa_family == AF_INET) {
7724 if (!IN_MULTICAST(ntohl(info->remote_addr.sin.sin_addr.s_addr)) &&
7725 info->remote_addr.sin.sin_addr.s_addr != INADDR_BROADCAST) {
7726 return false;
7727 }
7728 } else if (info->remote_addr.sa.sa_family == AF_INET6) {
7729 if (!IN6_IS_ADDR_MULTICAST(&info->remote_addr.sin6.sin6_addr)) {
7730 return false;
7731 }
7732 } else {
7733 // Not IPv4/IPv6
7734 return false;
7735 }
7736
7737 if (necp_is_platform_binary(proc)) {
7738 return false;
7739 }
7740
7741 const uint32_t platform = proc_platform(proc);
7742 const uint32_t sdk = proc_sdk(proc);
7743
7744 // Enforce for iOS, linked on or after version 14
7745 // If the caller set `check_minor_version`, only enforce starting at 14.5
7746 if ((platform != PLATFORM_IOS ||
7747 sdk == 0 ||
7748 (sdk >> 16) < 14 ||
7749 (check_minor_version && (sdk >> 16) == 14 && ((sdk >> 8) & 0xff) < 5))) {
7750 return false;
7751 }
7752
7753 // Allow entitled processes to use multicast
7754 task_t __single task = proc_task(proc);
7755 if (task != NULL &&
7756 IOTaskHasEntitlement(task, "com.apple.developer.networking.multicast")) {
7757 return false;
7758 }
7759
7760 const uint32_t min_sdk = proc_min_sdk(proc);
7761 NECPLOG(LOG_INFO, "Dropping unentitled multicast (SDK 0x%x, min 0x%x)", sdk, min_sdk);
7762
7763 return true;
7764 }
7765
7766 #define NECP_KERNEL_ADDRESS_TYPE_CONDITIONS (NECP_KERNEL_CONDITION_LOCAL_START | NECP_KERNEL_CONDITION_LOCAL_END | NECP_KERNEL_CONDITION_LOCAL_PREFIX | NECP_KERNEL_CONDITION_REMOTE_START | NECP_KERNEL_CONDITION_REMOTE_END | NECP_KERNEL_CONDITION_REMOTE_PREFIX | NECP_KERNEL_CONDITION_LOCAL_EMPTY | NECP_KERNEL_CONDITION_REMOTE_EMPTY | NECP_KERNEL_CONDITION_LOCAL_NETWORKS | NECP_KERNEL_CONDITION_SCHEME_PORT)
7767 static void
necp_application_fillout_info_locked(task_t task,uuid_t application_uuid,uuid_t real_application_uuid,uuid_t responsible_application_uuid,char * account __null_terminated,char * domain __null_terminated,char * url __null_terminated,pid_t pid,int32_t pid_version,uid_t uid,uid_t real_uid,u_int16_t protocol,u_int32_t bound_interface_index,u_int32_t traffic_class,union necp_sockaddr_union * local_addr,union necp_sockaddr_union * remote_addr,u_int16_t local_port,u_int16_t remote_port,bool has_client,bool has_system_signed_result,proc_t real_proc,proc_t proc,proc_t responsible_proc,u_int32_t drop_order,u_int32_t client_flags,u_int16_t scheme_port,struct necp_socket_info * info,bool is_loopback,bool is_delegated)7768 necp_application_fillout_info_locked(task_t task, uuid_t application_uuid, uuid_t real_application_uuid, uuid_t responsible_application_uuid, char *account __null_terminated, char *domain __null_terminated, char *url __null_terminated, pid_t pid, int32_t pid_version, uid_t uid, uid_t real_uid, u_int16_t protocol, u_int32_t bound_interface_index, u_int32_t traffic_class, union necp_sockaddr_union *local_addr, union necp_sockaddr_union *remote_addr, u_int16_t local_port, u_int16_t remote_port, bool has_client, bool has_system_signed_result, proc_t real_proc, proc_t proc, proc_t responsible_proc, u_int32_t drop_order, u_int32_t client_flags, u_int16_t scheme_port, struct necp_socket_info *info, bool is_loopback, bool is_delegated)
7769 {
7770 memset(info, 0, sizeof(struct necp_socket_info));
7771
7772 info->pid = pid;
7773 info->pid_version = pid_version;
7774 info->uid = uid;
7775 info->real_uid = real_uid;
7776 info->protocol = protocol;
7777 info->bound_interface_index = bound_interface_index;
7778 info->traffic_class = traffic_class;
7779 info->has_client = has_client;
7780 info->has_system_signed_result = has_system_signed_result;
7781 info->drop_order = drop_order;
7782 info->client_flags = client_flags;
7783 info->is_loopback = is_loopback;
7784 info->is_delegated = is_delegated;
7785
7786 if ((necp_kernel_socket_policies_condition_mask & NECP_KERNEL_CONDITION_BOUND_INTERFACE_FLAGS) &&
7787 info->bound_interface_index != IFSCOPE_NONE) {
7788 ifnet_head_lock_shared();
7789 ifnet_t interface = ifindex2ifnet[info->bound_interface_index];
7790 if (interface != NULL) {
7791 info->bound_interface_flags = interface->if_flags;
7792 info->bound_interface_eflags = interface->if_eflags;
7793 info->bound_interface_xflags = interface->if_xflags;
7794 }
7795 ifnet_head_done();
7796 }
7797
7798 if (necp_kernel_application_policies_condition_mask & NECP_KERNEL_CONDITION_APP_ID && !uuid_is_null(application_uuid)) {
7799 struct necp_uuid_id_mapping *existing_mapping = necp_uuid_lookup_app_id_locked(application_uuid);
7800 if (existing_mapping) {
7801 info->application_id = existing_mapping->id;
7802 }
7803 }
7804
7805 if (necp_kernel_application_policies_condition_mask & NECP_KERNEL_CONDITION_REAL_APP_ID && !uuid_is_null(real_application_uuid)) {
7806 if (uuid_compare(application_uuid, real_application_uuid) == 0) {
7807 info->real_application_id = info->application_id;
7808 } else {
7809 struct necp_uuid_id_mapping *existing_mapping = necp_uuid_lookup_app_id_locked(real_application_uuid);
7810 if (existing_mapping) {
7811 info->real_application_id = existing_mapping->id;
7812 }
7813 }
7814 }
7815
7816 if (necp_kernel_application_policies_condition_mask & NECP_KERNEL_CONDITION_APP_ID && !uuid_is_null(responsible_application_uuid)) {
7817 struct necp_uuid_id_mapping *existing_mapping = necp_uuid_lookup_app_id_locked(responsible_application_uuid);
7818 if (existing_mapping != NULL) {
7819 info->real_application_id = info->application_id;
7820 info->application_id = existing_mapping->id;
7821 info->used_responsible_pid = true;
7822 }
7823 }
7824
7825 if (info->used_responsible_pid) {
7826 proc = responsible_proc;
7827 }
7828
7829 if (necp_kernel_application_policies_condition_mask & NECP_KERNEL_CONDITION_ENTITLEMENT && proc != NULL) {
7830 info->is_entitled = necp_task_has_match_entitlement(task);
7831 if (!info->is_entitled) {
7832 // Task does not have entitlement, check the parent task
7833 necp_get_parent_is_entitled(task, info);
7834 }
7835 }
7836
7837 if (((necp_kernel_application_policies_condition_mask & NECP_KERNEL_CONDITION_PLATFORM_BINARY) ||
7838 (necp_kernel_application_policies_condition_mask & NECP_KERNEL_CONDITION_DELEGATE_IS_PLATFORM_BINARY)) && proc != NULL) {
7839 if (necp_is_platform_binary(proc)) {
7840 info->is_platform_binary = true;
7841 } else if (responsible_proc != NULL && necp_is_platform_binary(responsible_proc)) {
7842 info->is_platform_binary = true;
7843 info->used_responsible_pid = true;
7844 } else {
7845 info->is_platform_binary = false;
7846 }
7847 }
7848
7849 if (necp_kernel_application_policies_condition_mask & NECP_KERNEL_CONDITION_DELEGATE_IS_PLATFORM_BINARY && real_proc != NULL) {
7850 info->real_is_platform_binary = (necp_is_platform_binary(real_proc) ? true : false);
7851 }
7852
7853 if (necp_kernel_application_policies_condition_mask & NECP_KERNEL_CONDITION_ACCOUNT_ID && account != NULL) {
7854 struct necp_string_id_mapping *existing_mapping = necp_lookup_string_to_id_locked(&necp_account_id_list, account);
7855 if (existing_mapping) {
7856 info->account_id = existing_mapping->id;
7857 }
7858 }
7859
7860 if ((necp_kernel_application_policies_condition_mask & NECP_KERNEL_CONDITION_DOMAIN) ||
7861 (necp_kernel_application_policies_condition_mask & NECP_KERNEL_CONDITION_EXACT_DOMAIN) ||
7862 (necp_kernel_application_policies_condition_mask & NECP_KERNEL_CONDITION_DOMAIN_FILTER)) {
7863 info->domain = domain;
7864 }
7865
7866 if (necp_kernel_application_policies_condition_mask & NECP_KERNEL_CONDITION_URL) {
7867 info->url = url;
7868 }
7869
7870 if ((necp_data_tracing_level && necp_data_tracing_port) ||
7871 necp_restrict_multicast ||
7872 (necp_kernel_application_policies_condition_mask & NECP_KERNEL_ADDRESS_TYPE_CONDITIONS)) {
7873 if (local_addr && local_addr->sa.sa_len > 0) {
7874 SOCKADDR_COPY(local_addr, &info->local_addr, local_addr->sa.sa_len);
7875 if (local_port != 0) {
7876 info->local_addr.sin6.sin6_port = local_port;
7877 }
7878 } else {
7879 if (remote_addr && remote_addr->sa.sa_len > 0) {
7880 info->local_addr.sa.sa_family = remote_addr->sa.sa_family;
7881 info->local_addr.sa.sa_len = remote_addr->sa.sa_len;
7882 } else {
7883 info->local_addr.sin6.sin6_family = AF_INET6;
7884 info->local_addr.sin6.sin6_len = sizeof(struct sockaddr_in6);
7885 }
7886 if (local_port != 0) {
7887 info->local_addr.sin6.sin6_port = local_port;
7888 }
7889 }
7890 if (remote_addr && remote_addr->sa.sa_len > 0) {
7891 SOCKADDR_COPY(remote_addr, &info->remote_addr, remote_addr->sa.sa_len);
7892 if (remote_port != 0) {
7893 info->remote_addr.sin6.sin6_port = remote_port;
7894 }
7895 } else if (remote_port != 0) {
7896 info->remote_addr.sin6.sin6_len = sizeof(struct sockaddr_in6);
7897 info->remote_addr.sin6.sin6_family = AF_INET6;
7898 info->remote_addr.sin6.sin6_port = remote_port;
7899 }
7900 }
7901
7902 if (necp_kernel_application_policies_condition_mask & NECP_KERNEL_CONDITION_SCHEME_PORT) {
7903 info->scheme_port = scheme_port;
7904 }
7905 }
7906
7907 static void
necp_send_application_interface_denied_event(pid_t pid,uuid_t proc_uuid,u_int32_t if_functional_type)7908 necp_send_application_interface_denied_event(pid_t pid, uuid_t proc_uuid, u_int32_t if_functional_type)
7909 {
7910 struct kev_netpolicy_ifdenied ev_ifdenied;
7911
7912 bzero(&ev_ifdenied, sizeof(ev_ifdenied));
7913
7914 ev_ifdenied.ev_data.epid = pid;
7915 uuid_copy(ev_ifdenied.ev_data.euuid, proc_uuid);
7916 ev_ifdenied.ev_if_functional_type = if_functional_type;
7917
7918 netpolicy_post_msg(KEV_NETPOLICY_IFDENIED, &ev_ifdenied.ev_data, sizeof(ev_ifdenied));
7919 }
7920
7921 static void
necp_send_network_denied_event(pid_t pid,uuid_t proc_uuid,u_int32_t network_type)7922 necp_send_network_denied_event(pid_t pid, uuid_t proc_uuid, u_int32_t network_type)
7923 {
7924 struct kev_netpolicy_netdenied ev_netdenied = {};
7925
7926 bzero(&ev_netdenied, sizeof(ev_netdenied));
7927
7928 ev_netdenied.ev_data.epid = pid;
7929 uuid_copy(ev_netdenied.ev_data.euuid, proc_uuid);
7930 ev_netdenied.ev_network_type = network_type;
7931
7932 netpolicy_post_msg(KEV_NETPOLICY_NETDENIED, &ev_netdenied.ev_data, sizeof(ev_netdenied));
7933 }
7934
7935 extern char *proc_name_address(void *p);
7936
7937 #define NECP_VERIFY_DELEGATION_ENTITLEMENT(_p, _c, _d) \
7938 if (!has_checked_delegation_entitlement) { \
7939 has_delegation_entitlement = (priv_check_cred(_c, PRIV_NET_PRIVILEGED_SOCKET_DELEGATE, 0) == 0); \
7940 has_checked_delegation_entitlement = TRUE; \
7941 } \
7942 if (!has_delegation_entitlement) { \
7943 NECPLOG(LOG_ERR, "%s(%d) does not hold the necessary entitlement to delegate network traffic for other processes by %s", \
7944 proc_name_address(_p), proc_pid(_p), _d); \
7945 break; \
7946 }
7947
7948 int
necp_application_find_policy_match_internal(proc_t proc,u_int8_t * __sized_by (parameters_size)parameters,u_int32_t parameters_size,struct necp_aggregate_result * returned_result,u_int32_t * flags,u_int32_t * reason,u_int required_interface_index,const union necp_sockaddr_union * override_local_addr,const union necp_sockaddr_union * override_remote_addr,struct necp_client_endpoint * returned_v4_gateway,struct necp_client_endpoint * returned_v6_gateway,struct rtentry ** returned_route,bool ignore_address,bool has_client,uuid_t * returned_override_euuid)7949 necp_application_find_policy_match_internal(proc_t proc,
7950 u_int8_t * __sized_by(parameters_size)parameters,
7951 u_int32_t parameters_size,
7952 struct necp_aggregate_result *returned_result,
7953 u_int32_t *flags,
7954 u_int32_t *reason,
7955 u_int required_interface_index,
7956 const union necp_sockaddr_union *override_local_addr,
7957 const union necp_sockaddr_union *override_remote_addr,
7958 struct necp_client_endpoint *returned_v4_gateway,
7959 struct necp_client_endpoint *returned_v6_gateway,
7960 struct rtentry **returned_route, bool ignore_address,
7961 bool has_client,
7962 uuid_t *returned_override_euuid)
7963 {
7964 int error = 0;
7965 size_t offset = 0;
7966
7967 struct necp_kernel_socket_policy *matched_policy = NULL;
7968 struct necp_socket_info info = {};
7969 necp_kernel_policy_filter filter_control_unit = 0;
7970
7971 u_int64_t extended_client_flags = 0;
7972 u_int16_t protocol = 0;
7973 u_int32_t bound_interface_index = required_interface_index;
7974 u_int32_t traffic_class = 0;
7975 u_int32_t client_flags = 0;
7976 u_int16_t scheme_port = 0;
7977 union necp_sockaddr_union local_addr;
7978 union necp_sockaddr_union remote_addr;
7979 bool no_remote_addr = FALSE;
7980 u_int8_t remote_family = 0;
7981 bool no_local_addr = FALSE;
7982 u_int16_t local_port = 0;
7983 u_int16_t remote_port = 0;
7984 u_int32_t remote_endpoint_type = 0;
7985 bool remote_address_is_empty = false;
7986 necp_drop_all_bypass_check_result_t drop_all_bypass = NECP_DROP_ALL_BYPASS_CHECK_RESULT_NONE;
7987 bool is_delegated = false;
7988
7989 if (override_local_addr) {
7990 memcpy(&local_addr, override_local_addr, sizeof(local_addr));
7991 } else {
7992 memset(&local_addr, 0, sizeof(local_addr));
7993 }
7994 if (override_remote_addr) {
7995 memcpy(&remote_addr, override_remote_addr, sizeof(remote_addr));
7996 } else {
7997 memset(&remote_addr, 0, sizeof(remote_addr));
7998 }
7999
8000 // Initialize UID, PID, and UUIDs to the current process
8001 uid_t uid = 0;
8002 uid_t real_uid = 0;
8003 kauth_cred_t __single cred = kauth_cred_proc_ref(proc);
8004 if (cred != NULL) {
8005 uid = kauth_cred_getuid(cred);
8006 real_uid = uid;
8007 }
8008 task_t __single task = proc_task(proc);
8009 pid_t pid = proc_pid(proc);
8010 int32_t pid_version = proc_pidversion(proc);
8011 uuid_t application_uuid;
8012 uuid_clear(application_uuid);
8013 uuid_t real_application_uuid;
8014 uuid_clear(real_application_uuid);
8015 proc_getexecutableuuid(proc, real_application_uuid, sizeof(real_application_uuid));
8016 uuid_copy(application_uuid, real_application_uuid);
8017 uuid_t responsible_application_uuid;
8018 uuid_clear(responsible_application_uuid);
8019
8020 char *domain __null_terminated = NULL;
8021 char *url __null_terminated = NULL;
8022 char *account __null_terminated = NULL;
8023
8024 #define NECP_MAX_REQUIRED_AGENTS 16
8025 u_int32_t num_required_agent_types = 0;
8026 struct necp_client_parameter_netagent_type required_agent_types[NECP_MAX_REQUIRED_AGENTS];
8027 memset(&required_agent_types, 0, sizeof(required_agent_types));
8028
8029 u_int32_t netagent_ids[NECP_MAX_NETAGENTS];
8030 u_int32_t netagent_use_flags[NECP_MAX_NETAGENTS];
8031 memset(&netagent_ids, 0, sizeof(netagent_ids));
8032 memset(&netagent_use_flags, 0, sizeof(netagent_use_flags));
8033 int netagent_cursor;
8034
8035 bool has_checked_delegation_entitlement = false;
8036 bool has_delegation_entitlement = false;
8037 bool has_system_signed_result = false;
8038
8039 proc_t responsible_proc = PROC_NULL;
8040 proc_t effective_proc = proc;
8041 bool release_eproc = false;
8042 necp_socket_bypass_type_t bypass_type = NECP_BYPASS_TYPE_NONE;
8043
8044 u_int32_t flow_divert_aggregate_unit = 0;
8045
8046 if (returned_result == NULL) {
8047 if (cred != NULL) {
8048 kauth_cred_unref(&cred);
8049 }
8050 return EINVAL;
8051 }
8052
8053 if (returned_v4_gateway != NULL) {
8054 memset(returned_v4_gateway, 0, sizeof(struct necp_client_endpoint));
8055 }
8056
8057 if (returned_v6_gateway != NULL) {
8058 memset(returned_v6_gateway, 0, sizeof(struct necp_client_endpoint));
8059 }
8060
8061 if (returned_override_euuid != NULL) {
8062 uuid_clear(*returned_override_euuid);
8063 }
8064
8065 memset(returned_result, 0, sizeof(struct necp_aggregate_result));
8066
8067 u_int32_t drop_order = necp_process_drop_order(cred);
8068
8069 necp_kernel_policy_result drop_dest_policy_result = NECP_KERNEL_POLICY_RESULT_NONE;
8070
8071 lck_rw_lock_shared(&necp_kernel_policy_lock);
8072 if (necp_kernel_application_policies_count == 0 && necp_drop_management_order == 0) {
8073 if (necp_drop_all_order > 0 || drop_order > 0) {
8074 returned_result->routing_result = NECP_KERNEL_POLICY_RESULT_DROP;
8075 lck_rw_done(&necp_kernel_policy_lock);
8076 if (cred != NULL) {
8077 kauth_cred_unref(&cred);
8078 }
8079 return 0;
8080 }
8081 }
8082 lck_rw_done(&necp_kernel_policy_lock);
8083
8084 while ((offset + sizeof(u_int8_t) + sizeof(u_int32_t)) <= parameters_size) {
8085 u_int8_t type = necp_buffer_get_tlv_type(parameters, parameters_size, offset);
8086 u_int32_t length = necp_buffer_get_tlv_length(parameters, parameters_size, offset);
8087
8088 if (length > (parameters_size - (offset + sizeof(u_int8_t) + sizeof(u_int32_t)))) {
8089 // If the length is larger than what can fit in the remaining parameters size, bail
8090 NECPLOG(LOG_ERR, "Invalid TLV length (%u)", length);
8091 break;
8092 }
8093
8094 if (length > 0) {
8095 u_int8_t * __indexable value = necp_buffer_get_tlv_value(parameters, parameters_size, offset, NULL);
8096 if (value != NULL) {
8097 switch (type) {
8098 case NECP_CLIENT_PARAMETER_APPLICATION: {
8099 if (length >= sizeof(uuid_t)) {
8100 if (uuid_compare(application_uuid, value) == 0) {
8101 // No delegation
8102 break;
8103 }
8104
8105 NECP_VERIFY_DELEGATION_ENTITLEMENT(proc, cred, "euuid");
8106
8107 is_delegated = true;
8108 uuid_copy(application_uuid, value);
8109 }
8110 break;
8111 }
8112 case NECP_CLIENT_PARAMETER_REAL_APPLICATION: {
8113 if (length >= sizeof(uuid_t)) {
8114 if (uuid_compare(real_application_uuid, value) == 0) {
8115 // No delegation
8116 break;
8117 }
8118
8119 NECP_VERIFY_DELEGATION_ENTITLEMENT(proc, cred, "uuid");
8120
8121 is_delegated = true;
8122 uuid_copy(real_application_uuid, value);
8123 }
8124 break;
8125 }
8126 case NECP_CLIENT_PARAMETER_PID: {
8127 if (length >= sizeof(pid_t)) {
8128 if (memcmp(&pid, value, sizeof(pid_t)) == 0) {
8129 // No delegation
8130 break;
8131 }
8132
8133 NECP_VERIFY_DELEGATION_ENTITLEMENT(proc, cred, "pid");
8134
8135 is_delegated = true;
8136 memcpy(&pid, value, sizeof(pid_t));
8137 }
8138 break;
8139 }
8140 case NECP_CLIENT_PARAMETER_UID: {
8141 if (length >= sizeof(uid_t)) {
8142 if (memcmp(&uid, value, sizeof(uid_t)) == 0) {
8143 // No delegation
8144 break;
8145 }
8146
8147 NECP_VERIFY_DELEGATION_ENTITLEMENT(proc, cred, "uid");
8148
8149 is_delegated = true;
8150 memcpy(&uid, value, sizeof(uid_t));
8151 }
8152 break;
8153 }
8154 case NECP_CLIENT_PARAMETER_DOMAIN: {
8155 char *ptr = (char *)value;
8156 ptr[length - 1] = 0;
8157 domain = __unsafe_null_terminated_from_indexable(ptr, &ptr[length - 1]);
8158 break;
8159 }
8160 case NECP_CLIENT_PARAMETER_URL: {
8161 char *ptr = (char *)value;
8162 ptr[length - 1] = 0;
8163 url = __unsafe_null_terminated_from_indexable(ptr, &ptr[length - 1]);
8164 break;
8165 }
8166 case NECP_CLIENT_PARAMETER_ACCOUNT: {
8167 char *ptr = (char *)value;
8168 ptr[length - 1] = 0;
8169 account = __unsafe_null_terminated_from_indexable(ptr, &ptr[length - 1]);
8170 break;
8171 }
8172 case NECP_CLIENT_PARAMETER_TRAFFIC_CLASS: {
8173 if (length >= sizeof(u_int32_t)) {
8174 memcpy(&traffic_class, value, sizeof(u_int32_t));
8175 }
8176 break;
8177 }
8178 case NECP_CLIENT_PARAMETER_IP_PROTOCOL: {
8179 if (length >= sizeof(u_int16_t)) {
8180 memcpy(&protocol, value, sizeof(u_int16_t));
8181 } else if (length >= sizeof(u_int8_t)) {
8182 memcpy(&protocol, value, sizeof(u_int8_t));
8183 }
8184 break;
8185 }
8186 case NECP_CLIENT_PARAMETER_BOUND_INTERFACE: {
8187 if (length <= IFXNAMSIZ && length > 0) {
8188 ifnet_t __single bound_interface = NULL;
8189 char interface_name[IFXNAMSIZ];
8190 memcpy(interface_name, value, length);
8191 interface_name[length - 1] = 0; // Make sure the string is NULL terminated
8192 if (ifnet_find_by_name(__unsafe_null_terminated_from_indexable(interface_name, &interface_name[length - 1]), &bound_interface) == 0) {
8193 bound_interface_index = bound_interface->if_index;
8194 ifnet_release(bound_interface);
8195 }
8196 }
8197 break;
8198 }
8199 case NECP_CLIENT_PARAMETER_LOCAL_ADDRESS: {
8200 if (ignore_address || override_local_addr) {
8201 break;
8202 }
8203
8204 if (length >= sizeof(struct necp_policy_condition_addr)) {
8205 struct necp_policy_condition_addr *address_struct = (struct necp_policy_condition_addr *)(void *)value;
8206 if (necp_address_is_valid(&address_struct->address.sa)) {
8207 memcpy(&local_addr, &address_struct->address, sizeof(address_struct->address));
8208 }
8209 }
8210 break;
8211 }
8212 case NECP_CLIENT_PARAMETER_REMOTE_ADDRESS: {
8213 if (ignore_address || override_remote_addr) {
8214 break;
8215 }
8216
8217 if (length >= sizeof(struct necp_policy_condition_addr)) {
8218 struct necp_policy_condition_addr *address_struct = (struct necp_policy_condition_addr *)(void *)value;
8219 if (necp_address_is_valid(&address_struct->address.sa)) {
8220 memcpy(&remote_addr, &address_struct->address, sizeof(address_struct->address));
8221 }
8222 }
8223 break;
8224 }
8225 case NECP_CLIENT_PARAMETER_LOCAL_ENDPOINT: {
8226 if (ignore_address || override_local_addr) {
8227 break;
8228 }
8229
8230 if (length >= sizeof(struct necp_client_endpoint)) {
8231 struct necp_client_endpoint *endpoint = (struct necp_client_endpoint *)(void *)value;
8232 if (endpoint->u.endpoint.endpoint_family == AF_UNSPEC &&
8233 endpoint->u.endpoint.endpoint_port != 0) {
8234 // Save port
8235 local_port = endpoint->u.endpoint.endpoint_port;
8236 }
8237 }
8238 break;
8239 }
8240 case NECP_CLIENT_PARAMETER_REMOTE_ENDPOINT: {
8241 if (ignore_address || override_remote_addr) {
8242 break;
8243 }
8244
8245 if (length >= sizeof(struct necp_client_endpoint)) {
8246 struct necp_client_endpoint *endpoint = (struct necp_client_endpoint *)(void *)value;
8247 if (endpoint->u.endpoint.endpoint_family == AF_UNSPEC) {
8248 remote_endpoint_type = endpoint->u.endpoint.endpoint_type;
8249 if (endpoint->u.endpoint.endpoint_port != 0) {
8250 // Save port
8251 remote_port = endpoint->u.endpoint.endpoint_port;
8252 }
8253 } else if (necp_addr_is_empty(&endpoint->u.sa)) {
8254 remote_address_is_empty = true;
8255 }
8256 }
8257 break;
8258 }
8259 case NECP_CLIENT_PARAMETER_FLAGS: {
8260 if (length >= sizeof(client_flags)) {
8261 memcpy(&client_flags, value, sizeof(client_flags));
8262 }
8263 break;
8264 }
8265 case NECP_CLIENT_PARAMETER_REQUIRE_AGENT_TYPE:
8266 case NECP_CLIENT_PARAMETER_PREFER_AGENT_TYPE: {
8267 if (num_required_agent_types >= NECP_MAX_REQUIRED_AGENTS) {
8268 break;
8269 }
8270 if (length >= sizeof(struct necp_client_parameter_netagent_type)) {
8271 memcpy(&required_agent_types[num_required_agent_types], value, sizeof(struct necp_client_parameter_netagent_type));
8272 num_required_agent_types++;
8273 }
8274 break;
8275 }
8276 case NECP_CLIENT_PARAMETER_PREFER_AGENT: {
8277 if (num_required_agent_types >= NECP_MAX_REQUIRED_AGENTS) {
8278 break;
8279 }
8280 if (length >= sizeof(uuid_t)) {
8281 if (netagent_get_agent_domain_and_type(value,
8282 required_agent_types[num_required_agent_types].netagent_domain,
8283 required_agent_types[num_required_agent_types].netagent_type)) {
8284 num_required_agent_types++;
8285 }
8286 }
8287 break;
8288 }
8289 case NECP_CLIENT_PARAMETER_SCHEME_PORT: {
8290 if (length >= sizeof(scheme_port)) {
8291 memcpy(&scheme_port, value, sizeof(scheme_port));
8292 }
8293 break;
8294 }
8295 case NECP_CLIENT_PARAMETER_RESOLVER_TAG: {
8296 has_system_signed_result = true;
8297 struct necp_client_validatable *validatable = (struct necp_client_validatable *)value;
8298 if (length >= sizeof(struct necp_client_validatable)) {
8299 // Check for system-signed sign_type values
8300 if (validatable->signable.sign_type == NECP_CLIENT_SIGN_TYPE_SYSTEM_RESOLVER_ANSWER ||
8301 validatable->signable.sign_type == NECP_CLIENT_SIGN_TYPE_SYSTEM_BROWSE_RESULT ||
8302 validatable->signable.sign_type == NECP_CLIENT_SIGN_TYPE_SYSTEM_SERVICE_RESOLVER_ANSWER) {
8303 has_system_signed_result = true;
8304 }
8305 }
8306 break;
8307 }
8308 case NECP_CLIENT_PARAMETER_EXTENDED_FLAGS: {
8309 if (length >= sizeof(extended_client_flags)) {
8310 memcpy(&extended_client_flags, value, sizeof(extended_client_flags));
8311 }
8312 break;
8313 }
8314 default: {
8315 break;
8316 }
8317 }
8318 }
8319 }
8320
8321 offset += sizeof(u_int8_t) + sizeof(u_int32_t) + length;
8322 }
8323
8324 // Check for loopback exception
8325 if (necp_is_loopback(SA(&local_addr.sa), SA(&remote_addr.sa), NULL, NULL, bound_interface_index)) {
8326 if (necp_task_has_loopback_drop_entitlement(task)) {
8327 // Disallow certain entitled processes to send loopback traffic
8328 returned_result->policy_id = NECP_KERNEL_POLICY_ID_NO_MATCH;
8329 returned_result->skip_policy_id = NECP_KERNEL_POLICY_ID_NO_MATCH;
8330 returned_result->routing_result = NECP_KERNEL_POLICY_RESULT_DROP;
8331 if (cred != NULL) {
8332 kauth_cred_unref(&cred);
8333 }
8334 return 0;
8335 }
8336 if (necp_pass_loopback > 0) {
8337 bypass_type = NECP_BYPASS_TYPE_LOOPBACK;
8338 }
8339 } else if (bound_interface_index != IFSCOPE_NONE) {
8340 // Check for inter-process exception
8341 struct sockaddr *dst = SA(&remote_addr.sa);
8342 if (dst->sa_family == AF_INET6) {
8343 struct in6_addr *addrv6 = &SIN6(dst)->sin6_addr;
8344 if (NECP_IS_INTCOPROC_ADDRESS(addrv6)) {
8345 ifnet_head_lock_shared();
8346 ifnet_t bound_interface = ifindex2ifnet[bound_interface_index];
8347 if (bound_interface != NULL && IFNET_IS_INTCOPROC(bound_interface)) {
8348 bypass_type = NECP_BYPASS_TYPE_INTCOPROC;
8349 }
8350 ifnet_head_done();
8351 }
8352 }
8353 }
8354
8355 if (bypass_type == NECP_BYPASS_TYPE_INTCOPROC || (bypass_type == NECP_BYPASS_TYPE_LOOPBACK && necp_pass_loopback == NECP_LOOPBACK_PASS_ALL)) {
8356 returned_result->policy_id = NECP_KERNEL_POLICY_ID_NO_MATCH;
8357 returned_result->skip_policy_id = NECP_KERNEL_POLICY_ID_NO_MATCH;
8358 returned_result->routing_result = NECP_KERNEL_POLICY_RESULT_PASS;
8359 if (bypass_type == NECP_BYPASS_TYPE_LOOPBACK) {
8360 returned_result->routed_interface_index = lo_ifp->if_index;
8361 *flags |= (NECP_CLIENT_RESULT_FLAG_IS_LOCAL | NECP_CLIENT_RESULT_FLAG_IS_DIRECT);
8362 } else {
8363 returned_result->routed_interface_index = bound_interface_index;
8364 }
8365 if (cred != NULL) {
8366 kauth_cred_unref(&cred);
8367 }
8368 return 0;
8369 }
8370
8371 if (drop_order != 0) {
8372 if (remote_endpoint_type == NECP_CLIENT_ENDPOINT_TYPE_APPLICATION_SERVICE ||
8373 client_flags & NECP_CLIENT_PARAMETER_FLAG_LISTENER ||
8374 ((client_flags & NECP_CLIENT_PARAMETER_FLAG_INBOUND) && remote_address_is_empty)) {
8375 // Allow listeners, inbound connections without remote addresses, and
8376 // application service connections to bypass the unentitled drop order,
8377 // to allow them to connect to application services (not directly over
8378 // physical networking interfaces)
8379 drop_order = 0;
8380 }
8381 }
8382
8383 if (proc_pid(effective_proc) != pid) {
8384 proc_t found_proc = proc_find(pid);
8385 if (found_proc != PROC_NULL) {
8386 effective_proc = found_proc;
8387 pid_version = proc_pidversion(effective_proc);
8388 release_eproc = true;
8389 }
8390 }
8391 #if defined(XNU_TARGET_OS_OSX)
8392 if (effective_proc->p_responsible_pid > 0 && effective_proc->p_responsible_pid != pid) {
8393 proc_getresponsibleuuid(effective_proc, responsible_application_uuid, sizeof(responsible_application_uuid));
8394 responsible_proc = proc_find(effective_proc->p_responsible_pid);
8395 }
8396 #endif /* defined(XNU_TARGET_OS_OSX) */
8397
8398 // Lock
8399 lck_rw_lock_shared(&necp_kernel_policy_lock);
8400
8401 u_int32_t route_rule_id_array[MAX_AGGREGATE_ROUTE_RULES];
8402 size_t route_rule_id_array_count = 0;
8403 necp_application_fillout_info_locked(task, application_uuid, real_application_uuid, responsible_application_uuid, account, domain, url, pid, pid_version, uid, real_uid, protocol, bound_interface_index, traffic_class, &local_addr, &remote_addr, local_port, remote_port, has_client, has_system_signed_result, proc, effective_proc, responsible_proc, drop_order, client_flags, scheme_port, &info, (bypass_type == NECP_BYPASS_TYPE_LOOPBACK), is_delegated);
8404
8405 int debug = NECP_ENABLE_DATA_TRACE((&info.local_addr), (&info.remote_addr), info.protocol, info.pid, info.bound_interface_index);
8406 NECP_DATA_TRACE_LOG_APP_LEVEL(debug, "APPLICATION", "START", 0, 0);
8407
8408 necp_kernel_policy_id skip_policy_id = NECP_KERNEL_POLICY_ID_NONE;
8409 matched_policy = necp_socket_find_policy_match_with_info_locked(necp_kernel_socket_policies_app_layer_map,
8410 &info,
8411 &filter_control_unit,
8412 route_rule_id_array,
8413 &route_rule_id_array_count,
8414 MAX_AGGREGATE_ROUTE_RULES,
8415 netagent_ids,
8416 NECP_MAX_NETAGENTS,
8417 netagent_use_flags,
8418 NECP_MAX_NETAGENTS,
8419 required_agent_types,
8420 num_required_agent_types,
8421 info.used_responsible_pid ? responsible_proc : effective_proc,
8422 0,
8423 &skip_policy_id,
8424 NULL,
8425 &drop_dest_policy_result,
8426 &drop_all_bypass,
8427 &flow_divert_aggregate_unit,
8428 NULL,
8429 debug);
8430
8431 // Check for loopback exception again after the policy match
8432 if (bypass_type == NECP_BYPASS_TYPE_LOOPBACK &&
8433 necp_pass_loopback == NECP_LOOPBACK_PASS_WITH_FILTER &&
8434 (matched_policy == NULL || matched_policy->result != NECP_KERNEL_POLICY_RESULT_SOCKET_DIVERT)) {
8435 if (filter_control_unit == NECP_FILTER_UNIT_NO_FILTER) {
8436 returned_result->filter_control_unit = 0;
8437 } else {
8438 returned_result->filter_control_unit = filter_control_unit;
8439 }
8440
8441 if (flow_divert_aggregate_unit > 0) {
8442 returned_result->flow_divert_aggregate_unit = flow_divert_aggregate_unit;
8443 }
8444
8445 returned_result->policy_id = NECP_KERNEL_POLICY_ID_NO_MATCH;
8446 returned_result->skip_policy_id = NECP_KERNEL_POLICY_ID_NO_MATCH;
8447 returned_result->routing_result = NECP_KERNEL_POLICY_RESULT_PASS;
8448 returned_result->routed_interface_index = lo_ifp->if_index;
8449 *flags |= (NECP_CLIENT_RESULT_FLAG_IS_LOCAL | NECP_CLIENT_RESULT_FLAG_IS_DIRECT);
8450 error = 0;
8451 NECP_DATA_TRACE_LOG_APP_LEVEL(debug, "APPLICATION", "RESULT - Loopback PASS <NO MATCH>", returned_result->policy_id, returned_result->skip_policy_id);
8452 goto done;
8453 }
8454
8455 if (matched_policy) {
8456 returned_result->policy_id = matched_policy->id;
8457 returned_result->skip_policy_id = skip_policy_id;
8458 returned_result->routing_result = matched_policy->result;
8459 memcpy(&returned_result->routing_result_parameter, &matched_policy->result_parameter, sizeof(returned_result->routing_result_parameter));
8460 if (returned_override_euuid != NULL && info.used_responsible_pid && !(matched_policy->condition_mask & NECP_KERNEL_CONDITION_REAL_APP_ID)) {
8461 uuid_copy(*returned_override_euuid, responsible_application_uuid);
8462 }
8463 } else {
8464 bool drop_all = false;
8465 if (necp_drop_all_order > 0 || info.drop_order > 0 || drop_dest_policy_result == NECP_KERNEL_POLICY_RESULT_DROP) {
8466 // Mark socket as a drop if drop_all is set
8467 drop_all = true;
8468 if (drop_all_bypass == NECP_DROP_ALL_BYPASS_CHECK_RESULT_NONE) {
8469 drop_all_bypass = necp_check_drop_all_bypass_result(proc);
8470 }
8471 }
8472 if (drop_all && drop_all_bypass == NECP_DROP_ALL_BYPASS_CHECK_RESULT_FALSE) {
8473 returned_result->policy_id = NECP_KERNEL_POLICY_ID_NO_MATCH;
8474 returned_result->skip_policy_id = NECP_KERNEL_POLICY_ID_NO_MATCH;
8475 returned_result->routing_result = NECP_KERNEL_POLICY_RESULT_DROP;
8476 NECP_DATA_TRACE_LOG_APP_LEVEL(debug, "APPLICATION", "RESULT - DROP <NO MATCH>", returned_result->policy_id, returned_result->skip_policy_id);
8477 } else {
8478 returned_result->policy_id = NECP_KERNEL_POLICY_ID_NO_MATCH;
8479 returned_result->skip_policy_id = skip_policy_id;
8480 returned_result->routing_result = NECP_KERNEL_POLICY_RESULT_NONE;
8481 NECP_DATA_TRACE_LOG_APP_LEVEL(debug, "APPLICATION", "RESULT - NO MATCH", returned_result->policy_id, returned_result->skip_policy_id);
8482 }
8483 }
8484 if (necp_check_missing_client_drop(proc, &info) ||
8485 necp_check_restricted_multicast_drop(proc, &info, false)) {
8486 // Mark as drop
8487 returned_result->policy_id = NECP_KERNEL_POLICY_ID_NO_MATCH;
8488 returned_result->skip_policy_id = NECP_KERNEL_POLICY_ID_NO_MATCH;
8489 returned_result->routing_result = NECP_KERNEL_POLICY_RESULT_DROP;
8490 NECP_DATA_TRACE_LOG_APP_LEVEL(debug, "APPLICATION", "RESULT - DROP <NO CLIENT / MULTICAST>", returned_result->policy_id, returned_result->skip_policy_id);
8491 }
8492 if (filter_control_unit == NECP_FILTER_UNIT_NO_FILTER) {
8493 returned_result->filter_control_unit = 0;
8494 } else {
8495 returned_result->filter_control_unit = filter_control_unit;
8496 }
8497
8498 if (flow_divert_aggregate_unit > 0) {
8499 returned_result->flow_divert_aggregate_unit = flow_divert_aggregate_unit;
8500 }
8501
8502 // Handle netagents
8503 size_t netagent_i = 0;
8504 size_t removed_netagent_type_i = 0;
8505 for (netagent_cursor = 0; netagent_cursor < NECP_MAX_NETAGENTS; netagent_cursor++) {
8506 u_int32_t netagent_id = netagent_ids[netagent_cursor];
8507 if (netagent_id == 0) {
8508 continue;
8509 }
8510
8511 if (necp_agent_id_is_uuid(netagent_id)) {
8512 struct necp_uuid_id_mapping *mapping = necp_uuid_lookup_uuid_with_agent_id_locked(netagent_id);
8513 if (mapping != NULL) {
8514 uuid_copy(returned_result->netagents[netagent_i], mapping->uuid);
8515 returned_result->netagent_use_flags[netagent_i] = netagent_use_flags[netagent_cursor];
8516 netagent_i++;
8517 }
8518 } else {
8519 struct necp_agent_type_id_mapping *mapping = necp_lookup_agent_type_with_id_locked(netagent_id);
8520 if (mapping != NULL && removed_netagent_type_i < NECP_MAX_REMOVE_NETAGENT_TYPES &&
8521 netagent_use_flags[netagent_cursor] & NECP_AGENT_USE_FLAG_REMOVE) {
8522 memcpy(&returned_result->remove_netagent_types[removed_netagent_type_i], &mapping->agent_type, sizeof(mapping->agent_type));
8523 removed_netagent_type_i++;
8524 }
8525 }
8526
8527 // If the flags say to remove, clear the local copy
8528 if (netagent_use_flags[netagent_cursor] & NECP_AGENT_USE_FLAG_REMOVE) {
8529 netagent_ids[netagent_cursor] = 0;
8530 }
8531 }
8532
8533 // Do routing evaluation
8534 u_int output_bound_interface = bound_interface_index;
8535 if (returned_result->routing_result == NECP_KERNEL_POLICY_RESULT_SOCKET_SCOPED) {
8536 output_bound_interface = returned_result->routing_result_parameter.scoped_interface_index;
8537 } else if (returned_result->routing_result == NECP_KERNEL_POLICY_RESULT_IP_TUNNEL) {
8538 output_bound_interface = returned_result->routing_result_parameter.tunnel_interface_index;
8539 } else if (returned_result->routing_result == NECP_KERNEL_POLICY_RESULT_SCOPED_DIRECT) {
8540 output_bound_interface = necp_get_primary_direct_interface_index();
8541 if (output_bound_interface == IFSCOPE_NONE) {
8542 returned_result->routing_result = NECP_KERNEL_POLICY_RESULT_DROP;
8543 } else {
8544 returned_result->routing_result = NECP_KERNEL_POLICY_RESULT_SOCKET_SCOPED;
8545 returned_result->routing_result_parameter.scoped_interface_index = output_bound_interface;
8546 }
8547 }
8548
8549 if (returned_result->routing_result == NECP_KERNEL_POLICY_RESULT_DROP &&
8550 returned_result->routing_result_parameter.drop_flags & NECP_KERNEL_POLICY_DROP_FLAG_LOCAL_NETWORK) {
8551 if (!(matched_policy->result_parameter.drop_flags & NECP_KERNEL_POLICY_DROP_FLAG_SUPPRESS_ALERTS)) {
8552 // Trigger the event that we dropped due to a local network policy
8553 #if defined(XNU_TARGET_OS_OSX)
8554 bool should_report_responsible_pid = (effective_proc->p_responsible_pid > 0 && effective_proc->p_responsible_pid != pid);
8555 necp_send_network_denied_event(should_report_responsible_pid ? effective_proc->p_responsible_pid : pid,
8556 should_report_responsible_pid ? responsible_application_uuid : application_uuid,
8557 NETPOLICY_NETWORKTYPE_LOCAL);
8558 #else
8559 necp_send_network_denied_event(pid, application_uuid, NETPOLICY_NETWORKTYPE_LOCAL);
8560 #endif
8561 }
8562 if (reason != NULL) {
8563 *reason = NECP_CLIENT_RESULT_REASON_LOCAL_NETWORK_PROHIBITED;
8564 }
8565 }
8566
8567 if (local_addr.sa.sa_len == 0 ||
8568 (local_addr.sa.sa_family == AF_INET && local_addr.sin.sin_addr.s_addr == 0) ||
8569 (local_addr.sa.sa_family == AF_INET6 && IN6_IS_ADDR_UNSPECIFIED(&local_addr.sin6.sin6_addr))) {
8570 no_local_addr = TRUE;
8571 }
8572
8573 if (remote_addr.sa.sa_len == 0 ||
8574 (remote_addr.sa.sa_family == AF_INET && remote_addr.sin.sin_addr.s_addr == 0) ||
8575 (remote_addr.sa.sa_family == AF_INET6 && IN6_IS_ADDR_UNSPECIFIED(&remote_addr.sin6.sin6_addr))) {
8576 no_remote_addr = TRUE;
8577 remote_family = remote_addr.sa.sa_family;
8578 }
8579
8580 returned_result->routed_interface_index = 0;
8581 struct rtentry *rt = NULL;
8582 if (!no_local_addr && (client_flags & NECP_CLIENT_PARAMETER_FLAG_LISTENER) != 0) {
8583 // Treat the output bound interface as the routed interface for local address
8584 // validation later.
8585 returned_result->routed_interface_index = output_bound_interface;
8586 } else {
8587 if (no_remote_addr) {
8588 memset(&remote_addr, 0, sizeof(remote_addr));
8589 if (remote_family == AF_INET6) {
8590 // Reset address to ::
8591 remote_addr.sa.sa_family = AF_INET6;
8592 remote_addr.sa.sa_len = sizeof(struct sockaddr_in6);
8593 } else {
8594 // Reset address to 0.0.0.0
8595 remote_addr.sa.sa_family = AF_INET;
8596 remote_addr.sa.sa_len = sizeof(struct sockaddr_in);
8597 }
8598 }
8599
8600 rt = rtalloc1_scoped(SA(&remote_addr), 0, 0,
8601 output_bound_interface);
8602
8603 if (remote_addr.sa.sa_family == AF_INET && rt != NULL &&
8604 IS_INTF_CLAT46(rt->rt_ifp)) {
8605 rtfree(rt);
8606 rt = NULL;
8607 returned_result->routed_interface_index = 0;
8608 }
8609
8610 if (no_remote_addr && remote_family == AF_UNSPEC &&
8611 (rt == NULL || rt->rt_ifp == NULL)) {
8612 // Route lookup for default IPv4 failed, try IPv6
8613
8614 // Cleanup old route if necessary
8615 if (rt != NULL) {
8616 rtfree(rt);
8617 rt = NULL;
8618 }
8619
8620 // Reset address to ::
8621 memset(&remote_addr, 0, sizeof(remote_addr));
8622 remote_addr.sa.sa_family = AF_INET6;
8623 remote_addr.sa.sa_len = sizeof(struct sockaddr_in6);
8624
8625 // Get route
8626 rt = rtalloc1_scoped(SA(&remote_addr), 0, 0,
8627 output_bound_interface);
8628 }
8629
8630 if (rt != NULL &&
8631 rt->rt_ifp != NULL) {
8632 returned_result->routed_interface_index = rt->rt_ifp->if_index;
8633 /*
8634 * For local addresses, we allow the interface scope to be
8635 * either the loopback interface or the interface hosting the
8636 * local address.
8637 */
8638 if (bound_interface_index != IFSCOPE_NONE &&
8639 rt->rt_ifa != NULL && rt->rt_ifa->ifa_ifp &&
8640 (output_bound_interface == lo_ifp->if_index ||
8641 rt->rt_ifp->if_index == lo_ifp->if_index ||
8642 rt->rt_ifa->ifa_ifp->if_index == bound_interface_index)) {
8643 struct sockaddr_storage dst;
8644 unsigned int ifscope = bound_interface_index;
8645
8646 /*
8647 * Transform dst into the internal routing table form
8648 */
8649 (void) sa_copy(SA(&remote_addr),
8650 &dst, &ifscope);
8651
8652 if ((rt->rt_ifp->if_index == lo_ifp->if_index) ||
8653 rt_ifa_is_dst(SA(&dst), rt->rt_ifa)) {
8654 returned_result->routed_interface_index =
8655 bound_interface_index;
8656 }
8657 }
8658 }
8659 }
8660
8661 if (returned_result->routed_interface_index != 0 &&
8662 returned_result->routed_interface_index != lo_ifp->if_index && // Loopback can accept any local address
8663 !no_local_addr) {
8664 // Transform local_addr into the ifaddr form
8665 // IPv6 Scope IDs are always embedded in the ifaddr list
8666 struct sockaddr_storage local_address_sanitized;
8667 u_int ifscope = IFSCOPE_NONE;
8668 (void)sa_copy(SA(&local_addr.sa), &local_address_sanitized, &ifscope);
8669 SIN(&local_address_sanitized)->sin_port = 0;
8670 if (local_address_sanitized.ss_family == AF_INET6) {
8671 if (in6_embedded_scope || !IN6_IS_SCOPE_EMBED(&SIN6(&local_address_sanitized)->sin6_addr)) {
8672 SIN6(&local_address_sanitized)->sin6_scope_id = 0;
8673 }
8674 }
8675
8676 // Validate local address on routed interface
8677 struct ifaddr *ifa = ifa_ifwithaddr_scoped(SA(&local_address_sanitized), returned_result->routed_interface_index);
8678 if (ifa == NULL) {
8679 // Interface address not found, reject route
8680 returned_result->routed_interface_index = 0;
8681 if (rt != NULL) {
8682 rtfree(rt);
8683 rt = NULL;
8684 }
8685 } else {
8686 ifaddr_release(ifa);
8687 ifa = NULL;
8688 }
8689 }
8690
8691 if (flags != NULL) {
8692 #if SKYWALK
8693 if (kernel_is_macos_or_server()) {
8694 enum net_filter_event_subsystems filters = net_filter_event_get_state();
8695
8696 if (filters & (NET_FILTER_EVENT_SOCKET | NET_FILTER_EVENT_INTERFACE | NET_FILTER_EVENT_IP)) {
8697 *flags |= NECP_CLIENT_RESULT_FLAG_KEXT_FILTER_PRESENT;
8698 }
8699 if (filters & NET_FILTER_EVENT_PF_PRIVATE_PROXY) {
8700 *flags |= NECP_CLIENT_RESULT_FLAG_PF_RULES_PRESENT;
8701 }
8702 if (filters & NET_FILTER_EVENT_ALF) {
8703 *flags |= NECP_CLIENT_RESULT_FLAG_ALF_PRESENT;
8704 }
8705 if (filters & NET_FILTER_EVENT_PARENTAL_CONTROLS) {
8706 *flags |= NECP_CLIENT_RESULT_FLAG_PARENTAL_CONTROLS_PRESENT;
8707 }
8708 }
8709 #endif /* SKYWALK */
8710 if ((client_flags & NECP_CLIENT_PARAMETER_FLAG_LISTENER) == 0) {
8711 // Check for local/direct
8712 bool is_local = FALSE;
8713 if (rt != NULL && (rt->rt_flags & RTF_LOCAL)) {
8714 is_local = TRUE;
8715 } else if (returned_result->routed_interface_index != 0 &&
8716 !no_remote_addr) {
8717 // Clean up the address before comparison with interface addresses
8718
8719 // Transform remote_addr into the ifaddr form
8720 // IPv6 Scope IDs are always embedded in the ifaddr list
8721 struct sockaddr_storage remote_address_sanitized;
8722 u_int ifscope = IFSCOPE_NONE;
8723 (void)sa_copy(SA(&remote_addr.sa), &remote_address_sanitized, &ifscope);
8724 SIN(&remote_address_sanitized)->sin_port = 0;
8725 if (remote_address_sanitized.ss_family == AF_INET6) {
8726 if (in6_embedded_scope || !IN6_IS_SCOPE_EMBED(&SIN6(&remote_address_sanitized)->sin6_addr)) {
8727 SIN6(&remote_address_sanitized)->sin6_scope_id = 0;
8728 }
8729 }
8730
8731 // Check if remote address is an interface address
8732 struct ifaddr *ifa = ifa_ifwithaddr(SA(&remote_address_sanitized));
8733 if (ifa != NULL && ifa->ifa_ifp != NULL) {
8734 u_int if_index_for_remote_addr = ifa->ifa_ifp->if_index;
8735 if (if_index_for_remote_addr == returned_result->routed_interface_index ||
8736 if_index_for_remote_addr == lo_ifp->if_index) {
8737 is_local = TRUE;
8738 }
8739 }
8740 if (ifa != NULL) {
8741 ifaddr_release(ifa);
8742 ifa = NULL;
8743 }
8744 }
8745
8746 if (is_local) {
8747 *flags |= (NECP_CLIENT_RESULT_FLAG_IS_LOCAL | NECP_CLIENT_RESULT_FLAG_IS_DIRECT);
8748 } else if (rt != NULL) {
8749 if (rt->rt_flags & RTF_GLOBAL) {
8750 *flags |= NECP_CLIENT_RESULT_FLAG_IS_GLOBAL_INTERNET;
8751 } else if (!(rt->rt_flags & RTF_GATEWAY) &&
8752 (rt->rt_ifa && rt->rt_ifa->ifa_ifp && !(rt->rt_ifa->ifa_ifp->if_flags & IFF_POINTOPOINT))) {
8753 // Route is directly accessible
8754 *flags |= NECP_CLIENT_RESULT_FLAG_IS_DIRECT;
8755 }
8756 }
8757
8758 if (rt != NULL &&
8759 rt->rt_ifp != NULL) {
8760 // Check probe status
8761 if (rt->rt_ifp->if_eflags & IFEF_PROBE_CONNECTIVITY) {
8762 *flags |= NECP_CLIENT_RESULT_FLAG_PROBE_CONNECTIVITY;
8763 }
8764
8765 if (if_link_heuristics_enabled(rt->rt_ifp)) {
8766 *flags |= NECP_CLIENT_RESULT_FLAG_LINK_HEURISTICS;
8767 }
8768
8769 if (rt->rt_ifp->if_type == IFT_CELLULAR) {
8770 struct if_cellular_status_v1 *ifsr;
8771
8772 ifnet_lock_shared(rt->rt_ifp);
8773 lck_rw_lock_exclusive(&rt->rt_ifp->if_link_status_lock);
8774
8775 if (rt->rt_ifp->if_link_status != NULL) {
8776 ifsr = &rt->rt_ifp->if_link_status->ifsr_u.ifsr_cell.if_cell_u.if_status_v1;
8777
8778 if (ifsr->valid_bitmask & IF_CELL_UL_MSS_RECOMMENDED_VALID) {
8779 if (ifsr->mss_recommended == IF_CELL_UL_MSS_RECOMMENDED_NONE) {
8780 returned_result->mss_recommended = NECP_CLIENT_RESULT_RECOMMENDED_MSS_NONE;
8781 } else if (ifsr->mss_recommended == IF_CELL_UL_MSS_RECOMMENDED_MEDIUM) {
8782 returned_result->mss_recommended = NECP_CLIENT_RESULT_RECOMMENDED_MSS_MEDIUM;
8783 } else if (ifsr->mss_recommended == IF_CELL_UL_MSS_RECOMMENDED_LOW) {
8784 returned_result->mss_recommended = NECP_CLIENT_RESULT_RECOMMENDED_MSS_LOW;
8785 }
8786 }
8787 }
8788 lck_rw_done(&rt->rt_ifp->if_link_status_lock);
8789 ifnet_lock_done(rt->rt_ifp);
8790 }
8791
8792 // Check link quality
8793 if ((client_flags & NECP_CLIENT_PARAMETER_FLAG_DISCRETIONARY) &&
8794 (rt->rt_ifp->if_interface_state.valid_bitmask & IF_INTERFACE_STATE_LQM_STATE_VALID) &&
8795 rt->rt_ifp->if_interface_state.lqm_state == IFNET_LQM_THRESH_ABORT) {
8796 *flags |= NECP_CLIENT_RESULT_FLAG_LINK_QUALITY_ABORT;
8797 }
8798
8799 // Check QoS marking (fastlane)
8800 for (size_t route_rule_index = 0; route_rule_index < route_rule_id_array_count; route_rule_index++) {
8801 if (necp_update_qos_marking(rt->rt_ifp, netagent_ids, NECP_MAX_NETAGENTS, route_rule_id_array[route_rule_index])) {
8802 *flags |= NECP_CLIENT_RESULT_FLAG_ALLOW_QOS_MARKING;
8803 // If the route can use QoS markings, stop iterating route rules
8804 break;
8805 }
8806 }
8807
8808 if (IFNET_IS_LOW_POWER(rt->rt_ifp)) {
8809 *flags |= NECP_CLIENT_RESULT_FLAG_INTERFACE_LOW_POWER;
8810 }
8811
8812 if (traffic_class == SO_TC_BK_SYS) {
8813 // Block BK_SYS traffic if interface is throttled
8814 u_int32_t throttle_level = 0;
8815 if (ifnet_get_throttle(rt->rt_ifp, &throttle_level) == 0) {
8816 if (throttle_level == IFNET_THROTTLE_OPPORTUNISTIC) {
8817 returned_result->routing_result = NECP_KERNEL_POLICY_RESULT_DROP;
8818 memset(&returned_result->routing_result_parameter, 0, sizeof(returned_result->routing_result_parameter));
8819 }
8820 }
8821 }
8822 }
8823 }
8824
8825 u_int interface_to_check = returned_result->routed_interface_index;
8826 if (interface_to_check == 0) {
8827 interface_to_check = output_bound_interface;
8828 }
8829 union necp_sockaddr_union default_address;
8830 struct rtentry *v4Route = NULL;
8831 struct rtentry *v6Route = NULL;
8832
8833 memset(&default_address, 0, sizeof(default_address));
8834
8835 // Reset address to 0.0.0.0
8836 default_address.sa.sa_family = AF_INET;
8837 default_address.sa.sa_len = sizeof(struct sockaddr_in);
8838 v4Route = rtalloc1_scoped(SA(&default_address), 0, 0,
8839 returned_result->routed_interface_index);
8840
8841 // Reset address to ::
8842 default_address.sa.sa_family = AF_INET6;
8843 default_address.sa.sa_len = sizeof(struct sockaddr_in6);
8844 v6Route = rtalloc1_scoped(SA(&default_address), 0, 0,
8845 returned_result->routed_interface_index);
8846
8847 if (v4Route != NULL) {
8848 if (v4Route->rt_ifp != NULL && !IS_INTF_CLAT46(v4Route->rt_ifp)) {
8849 *flags |= NECP_CLIENT_RESULT_FLAG_HAS_IPV4;
8850 }
8851 if (returned_v4_gateway != NULL &&
8852 v4Route->rt_gateway != NULL &&
8853 v4Route->rt_gateway->sa_len == sizeof(returned_v4_gateway->u.sin)) {
8854 memcpy(&returned_v4_gateway->u.sin, v4Route->rt_gateway, sizeof(returned_v4_gateway->u.sin));
8855 memset(&returned_v4_gateway->u.sin.sin_zero, 0, sizeof(returned_v4_gateway->u.sin.sin_zero));
8856 }
8857 rtfree(v4Route);
8858 v4Route = NULL;
8859 }
8860
8861 if (v6Route != NULL) {
8862 if (v6Route->rt_ifp != NULL) {
8863 *flags |= NECP_CLIENT_RESULT_FLAG_HAS_IPV6;
8864
8865 if (ifnet_get_nat64prefix(v6Route->rt_ifp, returned_result->nat64_prefixes) == 0) {
8866 *flags |= NECP_CLIENT_RESULT_FLAG_HAS_NAT64;
8867 }
8868 }
8869 if (returned_v6_gateway != NULL &&
8870 v6Route->rt_gateway != NULL &&
8871 v6Route->rt_gateway->sa_len == sizeof(returned_v6_gateway->u.sin6)) {
8872 SOCKADDR_COPY(v6Route->rt_gateway, &returned_v6_gateway->u.sin6, sizeof(returned_v6_gateway->u.sin6));
8873 }
8874 rtfree(v6Route);
8875 v6Route = NULL;
8876 }
8877 }
8878
8879 // Take two passes through the rule list: first for rules that don't match based on agents,
8880 // second for rules that match based on agents. Since rules can modify the agent list itself,
8881 // this makes the logic more deterministic. This allows a non-agent matching rule to remove
8882 // an agent before it is used for matching later.
8883 size_t route_rule_index = 0;
8884 bool second_pass = false;
8885 while (route_rule_index < route_rule_id_array_count) {
8886 bool rule_matches_agents = necp_route_rule_matches_agents(route_rule_id_array[route_rule_index]);
8887 if (rule_matches_agents != second_pass) {
8888 // Process rules that match based on agents only in the second pass
8889 route_rule_index++;
8890 if (route_rule_index == route_rule_id_array_count && !second_pass) {
8891 route_rule_index = 0;
8892 second_pass = true;
8893 }
8894 continue;
8895 }
8896
8897 u_int32_t interface_type_denied = IFRTYPE_FUNCTIONAL_UNKNOWN;
8898 bool ultra_constrained_denied = false;
8899 bool route_is_allowed = necp_route_is_allowed(rt, NULL, netagent_ids, NECP_MAX_NETAGENTS, route_rule_id_array[route_rule_index], &interface_type_denied, &ultra_constrained_denied);
8900 if (!route_is_allowed) {
8901 // If the route is blocked, treat the lookup as a drop
8902 returned_result->routing_result = NECP_KERNEL_POLICY_RESULT_DROP;
8903 memset(&returned_result->routing_result_parameter, 0, sizeof(returned_result->routing_result_parameter));
8904
8905 if (interface_type_denied != IFRTYPE_FUNCTIONAL_UNKNOWN) {
8906 if (reason != NULL) {
8907 if (interface_type_denied == IFRTYPE_FUNCTIONAL_CELLULAR) {
8908 *reason = NECP_CLIENT_RESULT_REASON_CELLULAR_DENIED;
8909 } else if (interface_type_denied == IFRTYPE_FUNCTIONAL_WIFI_INFRA) {
8910 *reason = NECP_CLIENT_RESULT_REASON_WIFI_DENIED;
8911 }
8912 }
8913 necp_send_application_interface_denied_event(pid, application_uuid, interface_type_denied);
8914 } else if (ultra_constrained_denied) {
8915 if (reason != NULL) {
8916 *reason = NECP_CLIENT_RESULT_REASON_ULTRA_CONSTRAINED_NOT_ALLOWED;
8917 }
8918 necp_send_network_denied_event(pid, application_uuid, NETPOLICY_NETWORKTYPE_ULTRA_CONSTRAINED);
8919 }
8920
8921 // If the route gets denied, stop matching rules
8922 break;
8923 }
8924
8925 // Check if there is a route rule that adds flow divert, if we don't already have a terminal policy result
8926 if (returned_result->routing_result == NECP_KERNEL_POLICY_RESULT_NONE) {
8927 u_int32_t flow_divert_control_unit = necp_route_get_flow_divert(rt, netagent_ids, NECP_MAX_NETAGENTS,
8928 route_rule_id_array[route_rule_index], &flow_divert_aggregate_unit);
8929 if (flow_divert_control_unit != 0) {
8930 returned_result->routing_result = NECP_KERNEL_POLICY_RESULT_SOCKET_DIVERT;
8931 returned_result->routing_result_parameter.flow_divert_control_unit = flow_divert_control_unit;
8932 }
8933 if (flow_divert_aggregate_unit != 0) {
8934 returned_result->flow_divert_aggregate_unit = flow_divert_aggregate_unit;
8935 }
8936 }
8937
8938 // Check if there is a route rule that adds or removes an agent
8939 bool remove = false;
8940 u_int32_t netagent_id = necp_route_get_netagent(rt, netagent_ids, NECP_MAX_NETAGENTS, route_rule_id_array[route_rule_index], &remove);
8941 if (netagent_id != 0) {
8942 struct necp_uuid_id_mapping *mapping = necp_uuid_lookup_uuid_with_agent_id_locked(netagent_id);
8943 if (mapping != NULL) {
8944 bool agent_already_present = false;
8945 for (netagent_cursor = 0; netagent_cursor < NECP_MAX_NETAGENTS; netagent_cursor++) {
8946 if (uuid_compare(returned_result->netagents[netagent_cursor], mapping->uuid) == 0) {
8947 // Found the agent already present
8948 agent_already_present = true;
8949 if (remove) {
8950 // Mark as remove if necessary
8951 returned_result->netagent_use_flags[netagent_cursor] = NECP_AGENT_USE_FLAG_REMOVE;
8952 }
8953 } else if (uuid_is_null(returned_result->netagents[netagent_cursor])) {
8954 // Found open slot
8955 if (!agent_already_present) {
8956 uuid_copy(returned_result->netagents[netagent_cursor], mapping->uuid);
8957 if (remove) {
8958 returned_result->netagent_use_flags[netagent_cursor] = NECP_AGENT_USE_FLAG_REMOVE;
8959 } else {
8960 returned_result->netagent_use_flags[netagent_cursor] = 0;
8961 }
8962 }
8963 break;
8964 }
8965 }
8966 }
8967
8968 // Update the local netagent_ids array for future evaluations
8969 if (remove) {
8970 // Check if the agent ID is in the array, and remove it
8971 for (netagent_cursor = 0; netagent_cursor < NECP_MAX_NETAGENTS; netagent_cursor++) {
8972 if (netagent_id == netagent_ids[netagent_cursor]) {
8973 netagent_ids[netagent_cursor] = 0;
8974 }
8975 }
8976 } else {
8977 // Check if the agent ID is not yet in the array, and add it
8978 bool found = false;
8979 for (netagent_cursor = 0; netagent_cursor < NECP_MAX_NETAGENTS; netagent_cursor++) {
8980 if (netagent_id == netagent_ids[netagent_cursor]) {
8981 found = true;
8982 break;
8983 }
8984 }
8985 if (!found) {
8986 for (netagent_cursor = 0; netagent_cursor < NECP_MAX_NETAGENTS; netagent_cursor++) {
8987 if (netagent_ids[netagent_cursor] == 0) {
8988 // Empty slot, add the agent
8989 netagent_ids[netagent_cursor] = netagent_id;
8990 break;
8991 }
8992 }
8993 }
8994 }
8995 }
8996
8997 route_rule_index++;
8998 if (route_rule_index == route_rule_id_array_count && !second_pass) {
8999 route_rule_index = 0;
9000 second_pass = true;
9001 }
9002 }
9003
9004 if (rt != NULL && rt->rt_ifp != NULL) {
9005 const bool is_listener = ((client_flags & NECP_CLIENT_PARAMETER_FLAG_LISTENER) != 0);
9006 const bool is_browser = ((client_flags & NECP_CLIENT_PARAMETER_FLAG_BROWSE) != 0);
9007 const bool expensive_prohibited = ((client_flags & NECP_CLIENT_PARAMETER_FLAG_PROHIBIT_EXPENSIVE) &&
9008 IFNET_IS_EXPENSIVE(rt->rt_ifp));
9009 const bool constrained_prohibited = ((client_flags & NECP_CLIENT_PARAMETER_FLAG_PROHIBIT_CONSTRAINED) &&
9010 IFNET_IS_CONSTRAINED(rt->rt_ifp));
9011 const bool ultra_constrained_not_allowed = (!(client_flags & NECP_CLIENT_PARAMETER_FLAG_ALLOW_ULTRA_CONSTRAINED) &&
9012 IFNET_IS_ULTRA_CONSTRAINED(rt->rt_ifp) && (task == NULL ||
9013 (!if_ultra_constrained_default_allowed && !IOTaskHasEntitlement(task, ULTRA_CONSTRAINED_ENTITLEMENT))));
9014
9015 const bool interface_type_blocked = !necp_route_is_interface_type_allowed(rt, NULL, proc, NULL);
9016 if (!is_listener && !is_browser) {
9017 if (reason != NULL) {
9018 if (expensive_prohibited) {
9019 *reason = NECP_CLIENT_RESULT_REASON_EXPENSIVE_PROHIBITED;
9020 } else if (constrained_prohibited) {
9021 *reason = NECP_CLIENT_RESULT_REASON_CONSTRAINED_PROHIBITED;
9022 } else if (ultra_constrained_not_allowed) {
9023 *reason = NECP_CLIENT_RESULT_REASON_ULTRA_CONSTRAINED_NOT_ALLOWED;
9024 necp_send_network_denied_event(pid, application_uuid, NETPOLICY_NETWORKTYPE_ULTRA_CONSTRAINED);
9025 }
9026 }
9027 if (expensive_prohibited || constrained_prohibited || ultra_constrained_not_allowed || interface_type_blocked) {
9028 // If a property of the interface was not allowed, treat it as a drop
9029 returned_result->routing_result = NECP_KERNEL_POLICY_RESULT_DROP;
9030 memset(&returned_result->routing_result_parameter, 0, sizeof(returned_result->routing_result_parameter));
9031 }
9032 }
9033
9034 if ((extended_client_flags & NECP_CLIENT_PARAMETER_EXTENDED_FLAG_AOP2_OFFLOAD) &&
9035 ((rt->rt_ifp->if_xflags & IFXF_RX_FLOW_STEERING) == 0)) {
9036 returned_result->routing_result = NECP_KERNEL_POLICY_RESULT_DROP;
9037 memset(&returned_result->routing_result_parameter, 0, sizeof(returned_result->routing_result_parameter));
9038 }
9039 }
9040
9041 if (rt != NULL) {
9042 if (returned_route != NULL) {
9043 *returned_route = rt;
9044 } else {
9045 rtfree(rt);
9046 }
9047 rt = NULL;
9048 }
9049
9050 done:
9051 // Unlock
9052 lck_rw_done(&necp_kernel_policy_lock);
9053
9054 if (release_eproc && effective_proc != PROC_NULL) {
9055 proc_rele(effective_proc);
9056 }
9057 #if defined(XNU_TARGET_OS_OSX)
9058 if (responsible_proc != PROC_NULL) {
9059 proc_rele(responsible_proc);
9060 }
9061 #endif
9062
9063 if (cred != NULL) {
9064 kauth_cred_unref(&cred);
9065 }
9066
9067 return error;
9068 }
9069
9070 static bool
necp_is_route_local(union necp_sockaddr_union * remote_addr,Boolean include_local_addresses)9071 necp_is_route_local(union necp_sockaddr_union *remote_addr, Boolean include_local_addresses)
9072 {
9073 struct rtentry *rt = NULL;
9074 bool is_local = FALSE;
9075
9076 if (remote_addr == NULL) {
9077 return NULL;
9078 }
9079
9080 if (remote_addr->sa.sa_len == 0 ||
9081 (remote_addr->sa.sa_family == AF_INET && remote_addr->sin.sin_addr.s_addr == 0) ||
9082 (remote_addr->sa.sa_family == AF_INET6 && IN6_IS_ADDR_UNSPECIFIED(&remote_addr->sin6.sin6_addr))) {
9083 return FALSE;
9084 }
9085
9086 // Lookup route regardless of the scoped interface to check if
9087 // remote address is in a local network.
9088 rt = rtalloc1_scoped(SA(remote_addr), 0, 0, 0);
9089
9090 if (rt == NULL) {
9091 goto done;
9092 }
9093 if (remote_addr->sa.sa_family == AF_INET && IS_INTF_CLAT46(rt->rt_ifp)) {
9094 goto free_rt;
9095 }
9096 is_local = IS_NECP_DEST_IN_LOCAL_NETWORKS(rt, remote_addr, include_local_addresses);
9097
9098 free_rt:
9099 rtfree(rt);
9100
9101 done:
9102 return is_local;
9103 }
9104
9105 static bool
necp_socket_check_policy(struct necp_kernel_socket_policy * kernel_policy,necp_app_id app_id,necp_app_id real_app_id,uint8_t is_entitled,u_int32_t account_id,struct substring domain,u_int8_t domain_dot_count,const char * url __null_terminated,pid_t pid,int32_t pid_version,uid_t uid,uid_t real_uid,u_int32_t bound_interface_index,u_int32_t traffic_class,u_int16_t protocol,union necp_sockaddr_union * local,union necp_sockaddr_union * remote,struct necp_client_parameter_netagent_type * __counted_by (num_required_agent_types)required_agent_types,u_int32_t num_required_agent_types,bool has_client,uint32_t client_flags,int is_platform_binary,bool has_signed_result,proc_t proc,u_int16_t pf_tag,u_int16_t scheme_port,struct rtentry * rt,bool is_loopback,int debug,bool real_is_platform_binary,u_int32_t bound_interface_flags,u_int32_t bound_interface_eflags,u_int32_t bound_interface_xflags,struct necp_socket_info * info,bool is_delegated,struct socket * socket)9106 necp_socket_check_policy(struct necp_kernel_socket_policy *kernel_policy,
9107 necp_app_id app_id,
9108 necp_app_id real_app_id,
9109 uint8_t is_entitled,
9110 u_int32_t account_id,
9111 struct substring domain,
9112 u_int8_t domain_dot_count,
9113 const char *url __null_terminated,
9114 pid_t pid,
9115 int32_t pid_version,
9116 uid_t uid,
9117 uid_t real_uid,
9118 u_int32_t bound_interface_index,
9119 u_int32_t traffic_class,
9120 u_int16_t protocol,
9121 union necp_sockaddr_union *local,
9122 union necp_sockaddr_union *remote,
9123 struct necp_client_parameter_netagent_type * __counted_by(num_required_agent_types)required_agent_types,
9124 u_int32_t num_required_agent_types,
9125 bool has_client,
9126 uint32_t client_flags,
9127 int is_platform_binary,
9128 bool has_signed_result,
9129 proc_t proc,
9130 u_int16_t pf_tag,
9131 u_int16_t scheme_port,
9132 struct rtentry *rt,
9133 bool is_loopback,
9134 int debug,
9135 bool real_is_platform_binary,
9136 u_int32_t bound_interface_flags,
9137 u_int32_t bound_interface_eflags,
9138 u_int32_t bound_interface_xflags,
9139 struct necp_socket_info *info,
9140 bool is_delegated,
9141 struct socket *socket)
9142 {
9143 if (!(kernel_policy->condition_mask & NECP_KERNEL_CONDITION_ALL_INTERFACES)) {
9144 if (kernel_policy->condition_mask & NECP_KERNEL_CONDITION_BOUND_INTERFACE) {
9145 u_int32_t cond_bound_interface_index = kernel_policy->cond_bound_interface ? kernel_policy->cond_bound_interface->if_index : 0;
9146 NECP_DATA_TRACE_LOG_CONDITION_SOCKET(debug, socket, "SOCKET", kernel_policy->condition_negated_mask & NECP_KERNEL_CONDITION_BOUND_INTERFACE,
9147 "NECP_KERNEL_CONDITION_BOUND_INTERFACE", cond_bound_interface_index, bound_interface_index);
9148 if (kernel_policy->condition_negated_mask & NECP_KERNEL_CONDITION_BOUND_INTERFACE) {
9149 if (bound_interface_index == cond_bound_interface_index) {
9150 // No match, matches forbidden interface
9151 return FALSE;
9152 }
9153 } else {
9154 if (bound_interface_index != cond_bound_interface_index) {
9155 // No match, does not match required interface
9156 return FALSE;
9157 }
9158 }
9159 }
9160 if (kernel_policy->condition_mask & NECP_KERNEL_CONDITION_BOUND_INTERFACE_FLAGS) {
9161 NECP_DATA_TRACE_LOG_CONDITION_SOCKET(debug, socket, "SOCKET", kernel_policy->condition_negated_mask & NECP_KERNEL_CONDITION_BOUND_INTERFACE_FLAGS,
9162 "NECP_KERNEL_CONDITION_BOUND_INTERFACE_FLAGS - flags", kernel_policy->cond_bound_interface_flags, bound_interface_flags);
9163 NECP_DATA_TRACE_LOG_CONDITION_SOCKET(debug, socket, "SOCKET", kernel_policy->condition_negated_mask & NECP_KERNEL_CONDITION_BOUND_INTERFACE_FLAGS,
9164 "NECP_KERNEL_CONDITION_BOUND_INTERFACE_FLAGS - eflags", kernel_policy->cond_bound_interface_eflags, bound_interface_eflags);
9165 NECP_DATA_TRACE_LOG_CONDITION_SOCKET(debug, socket, "SOCKET", kernel_policy->condition_negated_mask & NECP_KERNEL_CONDITION_BOUND_INTERFACE_FLAGS,
9166 "NECP_KERNEL_CONDITION_BOUND_INTERFACE_FLAGS - xflags", kernel_policy->cond_bound_interface_xflags, bound_interface_xflags);
9167 if (kernel_policy->condition_negated_mask & NECP_KERNEL_CONDITION_BOUND_INTERFACE_FLAGS) {
9168 if ((kernel_policy->cond_bound_interface_flags && (bound_interface_flags & kernel_policy->cond_bound_interface_flags)) ||
9169 (kernel_policy->cond_bound_interface_eflags && (bound_interface_eflags & kernel_policy->cond_bound_interface_eflags)) ||
9170 (kernel_policy->cond_bound_interface_xflags && (bound_interface_xflags & kernel_policy->cond_bound_interface_xflags))) {
9171 // No match, matches some forbidden interface flags
9172 return FALSE;
9173 }
9174 } else {
9175 if ((kernel_policy->cond_bound_interface_flags && !(bound_interface_flags & kernel_policy->cond_bound_interface_flags)) ||
9176 (kernel_policy->cond_bound_interface_eflags && !(bound_interface_eflags & kernel_policy->cond_bound_interface_eflags)) ||
9177 (kernel_policy->cond_bound_interface_xflags && !(bound_interface_xflags & kernel_policy->cond_bound_interface_xflags))) {
9178 // No match, does not match some required interface xflags
9179 return FALSE;
9180 }
9181 }
9182 }
9183 if (!(kernel_policy->condition_mask & NECP_KERNEL_CONDITION_BOUND_INTERFACE) &&
9184 !(kernel_policy->condition_mask & NECP_KERNEL_CONDITION_BOUND_INTERFACE_FLAGS)) {
9185 NECP_DATA_TRACE_LOG_CONDITION_SOCKET(debug, socket, "SOCKET", false, "Requiring no bound interface", 0, bound_interface_index);
9186 if (bound_interface_index != 0) {
9187 // No match, requires a non-bound packet
9188 return FALSE;
9189 }
9190 }
9191 }
9192
9193 if (kernel_policy->condition_mask == 0) {
9194 return TRUE;
9195 }
9196
9197 if (kernel_policy->condition_mask & NECP_KERNEL_CONDITION_APP_ID) {
9198 NECP_DATA_TRACE_LOG_CONDITION_SOCKET(debug, socket, "SOCKET", kernel_policy->condition_negated_mask & NECP_KERNEL_CONDITION_APP_ID,
9199 "NECP_KERNEL_CONDITION_APP_ID", kernel_policy->cond_app_id, app_id);
9200 if (kernel_policy->condition_negated_mask & NECP_KERNEL_CONDITION_APP_ID) {
9201 if (app_id == kernel_policy->cond_app_id) {
9202 // No match, matches forbidden application
9203 return FALSE;
9204 }
9205 } else {
9206 if (app_id != kernel_policy->cond_app_id) {
9207 // No match, does not match required application
9208 return FALSE;
9209 }
9210 }
9211
9212 // Check signing identifier only after APP ID matched
9213 if (kernel_policy->condition_negated_mask & NECP_KERNEL_CONDITION_SIGNING_IDENTIFIER ||
9214 kernel_policy->condition_mask & NECP_KERNEL_CONDITION_SIGNING_IDENTIFIER) {
9215 u_int8_t matched = necp_boolean_state_false;
9216 const char *signing_id __null_terminated = cs_identity_get(proc ? proc : current_proc());
9217 NECP_DATA_TRACE_LOG_CONDITION_SOCKET_STR(debug, socket, "SOCKET", kernel_policy->condition_negated_mask & NECP_KERNEL_CONDITION_SIGNING_IDENTIFIER,
9218 "NECP_KERNEL_CONDITION_SIGNING_IDENTIFIER",
9219 kernel_policy->cond_signing_identifier ? kernel_policy->cond_signing_identifier : "<n/a>",
9220 signing_id ? signing_id : "<n/a>");
9221 if (signing_id != NULL) {
9222 if (strcmp(signing_id, kernel_policy->cond_signing_identifier) == 0) {
9223 matched = necp_boolean_state_true;
9224 }
9225 }
9226
9227 if (kernel_policy->condition_negated_mask & NECP_KERNEL_CONDITION_SIGNING_IDENTIFIER) {
9228 if (matched == necp_boolean_state_true) {
9229 return FALSE;
9230 }
9231 } else {
9232 if (matched != necp_boolean_state_true) {
9233 return FALSE;
9234 }
9235 }
9236 }
9237 }
9238
9239 if (kernel_policy->condition_mask & NECP_KERNEL_CONDITION_REAL_APP_ID) {
9240 NECP_DATA_TRACE_LOG_CONDITION_SOCKET(debug, socket, "SOCKET", kernel_policy->condition_negated_mask & NECP_KERNEL_CONDITION_REAL_APP_ID,
9241 "NECP_KERNEL_CONDITION_REAL_APP_ID",
9242 kernel_policy->cond_real_app_id, real_app_id);
9243 if (kernel_policy->condition_negated_mask & NECP_KERNEL_CONDITION_REAL_APP_ID) {
9244 if (real_app_id == kernel_policy->cond_real_app_id) {
9245 // No match, matches forbidden application
9246 return FALSE;
9247 }
9248 } else {
9249 if (real_app_id != kernel_policy->cond_real_app_id) {
9250 // No match, does not match required application
9251 return FALSE;
9252 }
9253 }
9254 }
9255
9256 if (kernel_policy->condition_mask & NECP_KERNEL_CONDITION_HAS_CLIENT) {
9257 NECP_DATA_TRACE_LOG_CONDITION_SOCKET(debug, socket, "SOCKET", false, "NECP_KERNEL_CONDITION_HAS_CLIENT", 0, has_client);
9258 if (!has_client) {
9259 return FALSE;
9260 }
9261 }
9262
9263 if (kernel_policy->condition_mask & NECP_KERNEL_CONDITION_ENTITLEMENT) {
9264 NECP_DATA_TRACE_LOG_CONDITION_SOCKET(debug, socket, "SOCKET", false, "NECP_KERNEL_CONDITION_ENTITLEMENT", 0, is_entitled);
9265 if (!is_entitled) {
9266 // Process is missing entitlement
9267 return FALSE;
9268 }
9269 }
9270
9271 if (kernel_policy->condition_mask & NECP_KERNEL_CONDITION_PLATFORM_BINARY) {
9272 NECP_DATA_TRACE_LOG_CONDITION_SOCKET(debug, socket, "SOCKET", kernel_policy->condition_negated_mask & NECP_KERNEL_CONDITION_PLATFORM_BINARY, "NECP_KERNEL_CONDITION_PLATFORM_BINARY", 0, is_platform_binary);
9273 if (kernel_policy->condition_negated_mask & NECP_KERNEL_CONDITION_PLATFORM_BINARY) {
9274 if (is_platform_binary) {
9275 // Process is platform binary
9276 return FALSE;
9277 }
9278 } else {
9279 if (!is_platform_binary) {
9280 // Process is not platform binary
9281 return FALSE;
9282 }
9283 }
9284 }
9285
9286 if (kernel_policy->condition_mask & NECP_KERNEL_CONDITION_SYSTEM_SIGNED_RESULT) {
9287 NECP_DATA_TRACE_LOG_CONDITION_SOCKET(debug, socket, "SOCKET", false, "NECP_KERNEL_CONDITION_SYSTEM_SIGNED_RESULT", 0, is_platform_binary);
9288 if (has_signed_result == 0) {
9289 // Client did not have a system-signed result
9290 return FALSE;
9291 }
9292 }
9293
9294 if (kernel_policy->condition_mask & NECP_KERNEL_CONDITION_SDK_VERSION) {
9295 if (proc != NULL) {
9296 NECP_DATA_TRACE_LOG_CONDITION_SOCKET3(debug, socket, "SOCKET", false, "NECP_KERNEL_CONDITION_SDK_VERSION",
9297 kernel_policy->cond_sdk_version.platform,
9298 kernel_policy->cond_sdk_version.min_version,
9299 kernel_policy->cond_sdk_version.version,
9300 proc_platform(proc),
9301 proc_min_sdk(proc),
9302 proc_sdk(proc));
9303 if (kernel_policy->cond_sdk_version.platform != 0) {
9304 if (kernel_policy->cond_sdk_version.platform != proc_platform(proc)) {
9305 // Process does not match platform
9306 return FALSE;
9307 }
9308 }
9309
9310 if (kernel_policy->cond_sdk_version.min_version != 0) {
9311 if (kernel_policy->cond_sdk_version.min_version > proc_min_sdk(proc)) {
9312 // Process min version is older than required min version
9313 return FALSE;
9314 }
9315 }
9316
9317 if (kernel_policy->cond_sdk_version.version != 0) {
9318 if (kernel_policy->cond_sdk_version.version > proc_sdk(proc)) {
9319 // Process SDK version is older than required version
9320 return FALSE;
9321 }
9322 }
9323 }
9324 }
9325
9326 if (kernel_policy->condition_mask & NECP_KERNEL_CONDITION_EXACT_DOMAIN) {
9327 NECP_DATA_TRACE_LOG_CONDITION_SOCKET_STR(debug, socket, "SOCKET", kernel_policy->condition_negated_mask & NECP_KERNEL_CONDITION_EXACT_DOMAIN,
9328 "NECP_KERNEL_CONDITION_EXACT_DOMAIN", kernel_policy->cond_domain, domain.string);
9329 // Exact match requires the number of dots to match (no suffix matching allowed)
9330 bool domain_matches = (domain_dot_count == kernel_policy->cond_domain_dot_count &&
9331 necp_hostname_matches_domain(domain, domain_dot_count, kernel_policy->cond_domain, kernel_policy->cond_domain_dot_count));
9332 if (domain_matches && socket != NULL) {
9333 socket->so_flags1 |= SOF1_DOMAIN_MATCHED_POLICY;
9334 }
9335 if (kernel_policy->condition_negated_mask & NECP_KERNEL_CONDITION_EXACT_DOMAIN) {
9336 if (domain_matches) {
9337 // No match, matches forbidden domain
9338 return FALSE;
9339 }
9340 } else {
9341 if (!domain_matches) {
9342 // No match, does not match required domain
9343 return FALSE;
9344 }
9345 }
9346 } else if (kernel_policy->condition_mask & NECP_KERNEL_CONDITION_DOMAIN) {
9347 NECP_DATA_TRACE_LOG_CONDITION_SOCKET_STR(debug, socket, "SOCKET", kernel_policy->condition_negated_mask & NECP_KERNEL_CONDITION_DOMAIN,
9348 "NECP_KERNEL_CONDITION_DOMAIN", kernel_policy->cond_domain, domain.string);
9349 bool domain_matches = necp_hostname_matches_domain(domain, domain_dot_count, kernel_policy->cond_domain, kernel_policy->cond_domain_dot_count);
9350 if (domain_matches && socket != NULL) {
9351 socket->so_flags1 |= SOF1_DOMAIN_MATCHED_POLICY;
9352 }
9353 if (kernel_policy->condition_negated_mask & NECP_KERNEL_CONDITION_DOMAIN) {
9354 if (domain_matches) {
9355 // No match, matches forbidden domain
9356 return FALSE;
9357 }
9358 } else {
9359 if (!domain_matches) {
9360 // No match, does not match required domain
9361 return FALSE;
9362 }
9363 }
9364 }
9365
9366 if (kernel_policy->condition_mask & NECP_KERNEL_CONDITION_DOMAIN_FILTER) {
9367 NECP_DATA_TRACE_LOG_CONDITION_SOCKET(debug, socket, "SOCKET", kernel_policy->condition_negated_mask & NECP_KERNEL_CONDITION_DOMAIN_FILTER,
9368 "NECP_KERNEL_CONDITION_DOMAIN_FILTER (ID)", kernel_policy->cond_domain_filter, 0);
9369 NECP_DATA_TRACE_LOG_CONDITION_SOCKET_STR(debug, socket, "SOCKET", kernel_policy->condition_negated_mask & NECP_KERNEL_CONDITION_DOMAIN_FILTER,
9370 "NECP_KERNEL_CONDITION_DOMAIN_FILTER (domain)", "<n/a>", domain.string);
9371 bool domain_matches = false;
9372 if (NECP_IS_DOMAIN_FILTER_ID(kernel_policy->cond_domain_filter)) {
9373 struct necp_domain_filter *filter = necp_lookup_domain_filter(&necp_global_domain_filter_list, kernel_policy->cond_domain_filter);
9374 if (filter != NULL && filter->filter != NULL) {
9375 domain_matches = (domain.string != NULL && domain.length > 0) ? net_bloom_filter_contains(filter->filter, domain.string, domain.length) : FALSE;
9376 }
9377 } else {
9378 domain_matches = necp_match_domain_with_trie(&necp_global_domain_trie_list, kernel_policy->cond_domain_filter, domain.string, domain.length);
9379 if (debug) {
9380 NECPLOG(LOG_ERR, "DATA-TRACE: matching <%s %zu> with trie id %d - matched %d", domain.string, domain.length, kernel_policy->cond_domain_filter, domain_matches);
9381 }
9382 }
9383 if (domain_matches && socket != NULL) {
9384 socket->so_flags1 |= SOF1_DOMAIN_MATCHED_POLICY;
9385 }
9386 if (kernel_policy->condition_negated_mask & NECP_KERNEL_CONDITION_DOMAIN_FILTER) {
9387 if (domain_matches) {
9388 // No match, matches forbidden domain
9389 return FALSE;
9390 }
9391 } else {
9392 if (!domain_matches) {
9393 // No match, does not match required domain
9394 return FALSE;
9395 }
9396 }
9397 }
9398
9399 if (kernel_policy->condition_mask & NECP_KERNEL_CONDITION_URL) {
9400 NECP_DATA_TRACE_LOG_CONDITION_SOCKET_STR(debug, socket, "SOCKET", kernel_policy->condition_negated_mask & NECP_KERNEL_CONDITION_URL,
9401 "NECP_KERNEL_CONDITION_URL", kernel_policy->cond_url, url);
9402 bool url_matches = (url ? strcasecmp(kernel_policy->cond_url, url) == 0 : false);
9403 if (kernel_policy->condition_negated_mask & NECP_KERNEL_CONDITION_URL) {
9404 if (url_matches) {
9405 // No match, matches forbidden url
9406 return FALSE;
9407 }
9408 } else {
9409 if (!url_matches) {
9410 // No match, does not match required url
9411 return FALSE;
9412 }
9413 }
9414 }
9415
9416 if (kernel_policy->condition_mask & NECP_KERNEL_CONDITION_ACCOUNT_ID) {
9417 NECP_DATA_TRACE_LOG_CONDITION_SOCKET(debug, socket, "SOCKET", kernel_policy->condition_negated_mask & NECP_KERNEL_CONDITION_ACCOUNT_ID,
9418 "NECP_KERNEL_CONDITION_ACCOUNT_ID",
9419 kernel_policy->cond_account_id, account_id);
9420 if (kernel_policy->condition_negated_mask & NECP_KERNEL_CONDITION_ACCOUNT_ID) {
9421 if (account_id == kernel_policy->cond_account_id) {
9422 // No match, matches forbidden account
9423 return FALSE;
9424 }
9425 } else {
9426 if (account_id != kernel_policy->cond_account_id) {
9427 // No match, does not match required account
9428 return FALSE;
9429 }
9430 }
9431 }
9432
9433 if (kernel_policy->condition_mask & NECP_KERNEL_CONDITION_PID) {
9434 NECP_DATA_TRACE_LOG_CONDITION_SOCKET(debug, socket, "SOCKET", kernel_policy->condition_negated_mask & NECP_KERNEL_CONDITION_PID,
9435 "NECP_KERNEL_CONDITION_PID",
9436 kernel_policy->cond_pid, pid);
9437 if (kernel_policy->condition_negated_mask & NECP_KERNEL_CONDITION_PID) {
9438 if (pid == kernel_policy->cond_pid) {
9439 // No match, matches forbidden pid
9440 return FALSE;
9441 }
9442 if (kernel_policy->cond_pid_version != 0 && pid_version == kernel_policy->cond_pid_version) {
9443 return FALSE;
9444 }
9445 } else {
9446 if (pid != kernel_policy->cond_pid) {
9447 // No match, does not match required pid
9448 return FALSE;
9449 }
9450 if (kernel_policy->cond_pid_version != 0 && pid_version != kernel_policy->cond_pid_version) {
9451 return FALSE;
9452 }
9453 }
9454 }
9455
9456 if (kernel_policy->condition_mask & NECP_KERNEL_CONDITION_UID) {
9457 NECP_DATA_TRACE_LOG_CONDITION_SOCKET(debug, socket, "SOCKET", kernel_policy->condition_negated_mask & NECP_KERNEL_CONDITION_UID,
9458 "NECP_KERNEL_CONDITION_UID",
9459 kernel_policy->cond_uid, uid);
9460 if (kernel_policy->condition_negated_mask & NECP_KERNEL_CONDITION_UID) {
9461 if (uid == kernel_policy->cond_uid) {
9462 // No match, matches forbidden uid
9463 return FALSE;
9464 }
9465 } else {
9466 if (uid != kernel_policy->cond_uid) {
9467 // No match, does not match required uid
9468 return FALSE;
9469 }
9470 }
9471 }
9472
9473 if (kernel_policy->condition_mask & NECP_KERNEL_CONDITION_REAL_UID) {
9474 NECP_DATA_TRACE_LOG_CONDITION_SOCKET(debug, socket, "SOCKET", kernel_policy->condition_negated_mask & NECP_KERNEL_CONDITION_REAL_UID,
9475 "NECP_KERNEL_CONDITION_REAL_UID",
9476 kernel_policy->cond_real_uid, real_uid);
9477 if (kernel_policy->condition_negated_mask & NECP_KERNEL_CONDITION_REAL_UID) {
9478 if (real_uid == kernel_policy->cond_real_uid) {
9479 // No match, matches forbidden uid
9480 return FALSE;
9481 }
9482 } else {
9483 if (real_uid != kernel_policy->cond_real_uid) {
9484 // No match, does not match required uid
9485 return FALSE;
9486 }
9487 }
9488 }
9489
9490 if (kernel_policy->condition_mask & NECP_KERNEL_CONDITION_TRAFFIC_CLASS) {
9491 NECP_DATA_TRACE_LOG_CONDITION_SOCKET3(debug, socket, "SOCKET", false, "NECP_KERNEL_CONDITION_TRAFFIC_CLASS",
9492 kernel_policy->cond_traffic_class.start_tc, kernel_policy->cond_traffic_class.end_tc, 0,
9493 traffic_class, 0, 0);
9494 if (kernel_policy->condition_negated_mask & NECP_KERNEL_CONDITION_TRAFFIC_CLASS) {
9495 if (traffic_class >= kernel_policy->cond_traffic_class.start_tc &&
9496 traffic_class <= kernel_policy->cond_traffic_class.end_tc) {
9497 // No match, matches forbidden traffic class
9498 return FALSE;
9499 }
9500 } else {
9501 if (traffic_class < kernel_policy->cond_traffic_class.start_tc ||
9502 traffic_class > kernel_policy->cond_traffic_class.end_tc) {
9503 // No match, does not match required traffic class
9504 return FALSE;
9505 }
9506 }
9507 }
9508
9509 if (kernel_policy->condition_mask & NECP_KERNEL_CONDITION_PROTOCOL) {
9510 NECP_DATA_TRACE_LOG_CONDITION_SOCKET(debug, socket, "SOCKET", kernel_policy->condition_negated_mask & NECP_KERNEL_CONDITION_PROTOCOL,
9511 "NECP_KERNEL_CONDITION_PROTOCOL",
9512 kernel_policy->cond_protocol, protocol);
9513 if (kernel_policy->condition_negated_mask & NECP_KERNEL_CONDITION_PROTOCOL) {
9514 if (protocol == kernel_policy->cond_protocol) {
9515 // No match, matches forbidden protocol
9516 return FALSE;
9517 }
9518 } else {
9519 if (protocol != kernel_policy->cond_protocol) {
9520 // No match, does not match required protocol
9521 return FALSE;
9522 }
9523 }
9524 }
9525
9526 if (kernel_policy->condition_mask & NECP_KERNEL_CONDITION_AGENT_TYPE) {
9527 NECP_DATA_TRACE_LOG_CONDITION_SOCKET_STR3(debug, socket, "SOCKET", false, "NECP_KERNEL_CONDITION_AGENT_TYPE",
9528 kernel_policy->cond_agent_type.agent_domain, kernel_policy->cond_agent_type.agent_type, "n/a",
9529 "n/a", "n/a", "n/a");
9530 bool matches_agent_type = FALSE;
9531 for (u_int32_t i = 0; i < num_required_agent_types; i++) {
9532 struct necp_client_parameter_netagent_type *required_agent_type = &required_agent_types[i];
9533 if ((strbuflen(kernel_policy->cond_agent_type.agent_domain, sizeof(kernel_policy->cond_agent_type.agent_domain)) == 0 ||
9534 strbufcmp(required_agent_type->netagent_domain, sizeof(required_agent_type->netagent_domain), kernel_policy->cond_agent_type.agent_domain, sizeof(kernel_policy->cond_agent_type.agent_domain)) == 0) &&
9535 (strbuflen(kernel_policy->cond_agent_type.agent_type, sizeof(kernel_policy->cond_agent_type.agent_type)) == 0 ||
9536 strbufcmp(required_agent_type->netagent_type, sizeof(required_agent_type->netagent_type), kernel_policy->cond_agent_type.agent_type, sizeof(kernel_policy->cond_agent_type.agent_type)) == 0)) {
9537 // Found a required agent that matches
9538 matches_agent_type = TRUE;
9539 break;
9540 }
9541 }
9542 if (!matches_agent_type) {
9543 return FALSE;
9544 }
9545 }
9546
9547 if (kernel_policy->condition_mask & NECP_KERNEL_CONDITION_LOCAL_NETWORKS) {
9548 bool is_local = FALSE;
9549 bool include_local_addresses = (kernel_policy->cond_local_networks_flags & NECP_POLICY_LOCAL_NETWORKS_FLAG_INCLUDE_LOCAL_ADDRESSES);
9550
9551 if (rt != NULL) {
9552 is_local = IS_NECP_DEST_IN_LOCAL_NETWORKS(rt, remote, include_local_addresses);
9553 } else {
9554 is_local = necp_is_route_local(remote, include_local_addresses);
9555 }
9556 if (info != NULL) {
9557 info->is_local = is_local;
9558 }
9559
9560 NECP_DATA_TRACE_LOG_CONDITION_SOCKET(debug, socket, "SOCKET", kernel_policy->condition_negated_mask & NECP_KERNEL_CONDITION_LOCAL_NETWORKS, "NECP_KERNEL_CONDITION_LOCAL_NETWORKS", 0, is_local);
9561 if (kernel_policy->condition_negated_mask & NECP_KERNEL_CONDITION_LOCAL_NETWORKS) {
9562 if (is_local) {
9563 // Match local-networks, fail
9564 return FALSE;
9565 }
9566 } else {
9567 if (!is_local) {
9568 // Either no route to validate or no match for local networks
9569 return FALSE;
9570 }
9571 }
9572 }
9573
9574 if (kernel_policy->condition_mask & NECP_KERNEL_CONDITION_LOCAL_START) {
9575 if (kernel_policy->condition_mask & NECP_KERNEL_CONDITION_LOCAL_END) {
9576 bool inRange = necp_is_addr_in_range(SA(local), SA(&kernel_policy->cond_local_start), SA(&kernel_policy->cond_local_end));
9577 NECP_DATA_TRACE_LOG_CONDITION_SOCKET(debug, socket, "SOCKET", kernel_policy->condition_negated_mask & NECP_KERNEL_CONDITION_LOCAL_END, "local address range", 0, 0);
9578 if (kernel_policy->condition_negated_mask & NECP_KERNEL_CONDITION_LOCAL_END) {
9579 if (inRange) {
9580 return FALSE;
9581 }
9582 } else {
9583 if (!inRange) {
9584 return FALSE;
9585 }
9586 }
9587 } else if (kernel_policy->condition_mask & NECP_KERNEL_CONDITION_LOCAL_PREFIX) {
9588 bool inSubnet = necp_is_addr_in_subnet(SA(local), SA(&kernel_policy->cond_local_start), kernel_policy->cond_local_prefix);
9589 NECP_DATA_TRACE_LOG_CONDITION_SOCKET(debug, socket, "SOCKET", kernel_policy->condition_negated_mask & NECP_KERNEL_CONDITION_LOCAL_PREFIX, "local address with prefix", 0, 0);
9590 if (kernel_policy->condition_negated_mask & NECP_KERNEL_CONDITION_LOCAL_PREFIX) {
9591 if (inSubnet) {
9592 return FALSE;
9593 }
9594 } else {
9595 if (!inSubnet) {
9596 return FALSE;
9597 }
9598 }
9599 }
9600 }
9601
9602 if (kernel_policy->condition_mask & NECP_KERNEL_CONDITION_REMOTE_START) {
9603 if (kernel_policy->condition_mask & NECP_KERNEL_CONDITION_REMOTE_END) {
9604 bool inRange = necp_is_addr_in_range(SA(remote), SA(&kernel_policy->cond_remote_start), SA(&kernel_policy->cond_remote_end));
9605 NECP_DATA_TRACE_LOG_CONDITION_SOCKET(debug, socket, "SOCKET", kernel_policy->condition_negated_mask & NECP_KERNEL_CONDITION_REMOTE_END, "remote address range", 0, 0);
9606 if (kernel_policy->condition_negated_mask & NECP_KERNEL_CONDITION_REMOTE_END) {
9607 if (inRange) {
9608 return FALSE;
9609 }
9610 } else {
9611 if (!inRange) {
9612 return FALSE;
9613 }
9614 }
9615 } else if (kernel_policy->condition_mask & NECP_KERNEL_CONDITION_REMOTE_PREFIX) {
9616 bool inSubnet = necp_is_addr_in_subnet(SA(remote), SA(&kernel_policy->cond_remote_start), kernel_policy->cond_remote_prefix);
9617 NECP_DATA_TRACE_LOG_CONDITION_SOCKET(debug, socket, "SOCKET", kernel_policy->condition_negated_mask & NECP_KERNEL_CONDITION_REMOTE_PREFIX, "remote address with prefix", 0, 0);
9618 if (kernel_policy->condition_negated_mask & NECP_KERNEL_CONDITION_REMOTE_PREFIX) {
9619 if (inSubnet) {
9620 return FALSE;
9621 }
9622 } else {
9623 if (!inSubnet) {
9624 return FALSE;
9625 }
9626 }
9627 }
9628 }
9629
9630 if (kernel_policy->condition_mask & NECP_KERNEL_CONDITION_CLIENT_FLAGS) {
9631 NECP_DATA_TRACE_LOG_CONDITION_SOCKET(debug, socket, "SOCKET", kernel_policy->condition_negated_mask & NECP_KERNEL_CONDITION_CLIENT_FLAGS,
9632 "NECP_KERNEL_CONDITION_CLIENT_FLAGS",
9633 kernel_policy->cond_client_flags, client_flags);
9634 if (kernel_policy->condition_negated_mask & NECP_KERNEL_CONDITION_CLIENT_FLAGS) {
9635 if ((client_flags & kernel_policy->cond_client_flags) == kernel_policy->cond_client_flags) {
9636 // Flags do match, and condition is negative, fail.
9637 return FALSE;
9638 }
9639 } else {
9640 if ((client_flags & kernel_policy->cond_client_flags) != kernel_policy->cond_client_flags) {
9641 // Flags do not match, fail.
9642 return FALSE;
9643 }
9644 }
9645 }
9646
9647 if (kernel_policy->condition_mask & NECP_KERNEL_CONDITION_LOCAL_EMPTY) {
9648 bool isEmpty = necp_addr_is_empty(SA(local));
9649 NECP_DATA_TRACE_LOG_CONDITION_SOCKET(debug, socket, "SOCKET", kernel_policy->condition_negated_mask & NECP_KERNEL_CONDITION_LOCAL_EMPTY,
9650 "NECP_KERNEL_CONDITION_LOCAL_EMPTY",
9651 0, isEmpty);
9652 if (kernel_policy->condition_negated_mask & NECP_KERNEL_CONDITION_LOCAL_EMPTY) {
9653 if (isEmpty) {
9654 return FALSE;
9655 }
9656 } else {
9657 if (!isEmpty) {
9658 return FALSE;
9659 }
9660 }
9661 }
9662
9663 if (kernel_policy->condition_mask & NECP_KERNEL_CONDITION_REMOTE_EMPTY) {
9664 bool isEmpty = necp_addr_is_empty(SA(remote));
9665 NECP_DATA_TRACE_LOG_CONDITION_SOCKET(debug, socket, "SOCKET", kernel_policy->condition_negated_mask & NECP_KERNEL_CONDITION_REMOTE_EMPTY,
9666 "NECP_KERNEL_CONDITION_REMOTE_EMPTY",
9667 0, isEmpty);
9668 if (kernel_policy->condition_negated_mask & NECP_KERNEL_CONDITION_REMOTE_EMPTY) {
9669 if (isEmpty) {
9670 return FALSE;
9671 }
9672 } else {
9673 if (!isEmpty) {
9674 return FALSE;
9675 }
9676 }
9677 }
9678
9679 if (kernel_policy->condition_mask & NECP_KERNEL_CONDITION_SCHEME_PORT) {
9680 u_int16_t remote_port = 0;
9681 if ((SA(remote))->sa_family == AF_INET || (SA(remote))->sa_family == AF_INET6) {
9682 remote_port = SIN(remote)->sin_port;
9683 }
9684 NECP_DATA_TRACE_LOG_CONDITION_SOCKET(debug, socket, "SOCKET", kernel_policy->condition_negated_mask & NECP_KERNEL_CONDITION_SCHEME_PORT,
9685 "NECP_KERNEL_CONDITION_SCHEME_PORT",
9686 scheme_port, remote_port);
9687 if (kernel_policy->condition_negated_mask & NECP_KERNEL_CONDITION_SCHEME_PORT) {
9688 if (kernel_policy->cond_scheme_port == scheme_port ||
9689 kernel_policy->cond_scheme_port == remote_port) {
9690 return FALSE;
9691 }
9692 } else {
9693 if (kernel_policy->cond_scheme_port != scheme_port &&
9694 kernel_policy->cond_scheme_port != remote_port) {
9695 return FALSE;
9696 }
9697 }
9698 }
9699
9700 if (kernel_policy->condition_mask & NECP_KERNEL_CONDITION_PACKET_FILTER_TAGS) {
9701 NECP_DATA_TRACE_LOG_CONDITION_SOCKET(debug, socket, "SOCKET", kernel_policy->condition_negated_mask & NECP_KERNEL_CONDITION_PACKET_FILTER_TAGS,
9702 "NECP_KERNEL_CONDITION_PACKET_FILTER_TAGS",
9703 kernel_policy->cond_packet_filter_tags,
9704 pf_tag);
9705 bool tags_matched = false;
9706 if (kernel_policy->cond_packet_filter_tags & NECP_POLICY_CONDITION_PACKET_FILTER_TAG_STACK_DROP) {
9707 if (pf_tag == PF_TAG_ID_STACK_DROP) {
9708 tags_matched = true;
9709 }
9710 }
9711
9712 if (kernel_policy->condition_negated_mask & NECP_KERNEL_CONDITION_PACKET_FILTER_TAGS) {
9713 if (tags_matched) {
9714 return FALSE;
9715 }
9716 } else {
9717 if (!tags_matched) {
9718 return FALSE;
9719 }
9720 }
9721 }
9722
9723 if (kernel_policy->condition_mask & NECP_KERNEL_CONDITION_IS_LOOPBACK) {
9724 NECP_DATA_TRACE_LOG_CONDITION_SOCKET(debug, socket, "SOCKET", kernel_policy->condition_negated_mask & NECP_KERNEL_CONDITION_IS_LOOPBACK,
9725 "NECP_KERNEL_CONDITION_IS_LOOPBACK", 0, is_loopback);
9726 if (kernel_policy->condition_negated_mask & NECP_KERNEL_CONDITION_IS_LOOPBACK) {
9727 if (is_loopback) {
9728 return FALSE;
9729 }
9730 } else {
9731 if (!is_loopback) {
9732 return FALSE;
9733 }
9734 }
9735 }
9736
9737 if (kernel_policy->condition_mask & NECP_KERNEL_CONDITION_DELEGATE_IS_PLATFORM_BINARY) {
9738 NECP_DATA_TRACE_LOG_CONDITION_SOCKET(debug, socket, "SOCKET", kernel_policy->condition_negated_mask & NECP_KERNEL_CONDITION_DELEGATE_IS_PLATFORM_BINARY,
9739 "NECP_KERNEL_CONDITION_DELEGATE_IS_PLATFORM_BINARY", 0, real_is_platform_binary);
9740 if (is_delegated) {
9741 if (kernel_policy->condition_negated_mask & NECP_KERNEL_CONDITION_DELEGATE_IS_PLATFORM_BINARY) {
9742 if (real_is_platform_binary) {
9743 return FALSE;
9744 }
9745 } else {
9746 if (!real_is_platform_binary) {
9747 return FALSE;
9748 }
9749 }
9750 } else if (!(kernel_policy->condition_mask & NECP_KERNEL_CONDITION_APP_ID) &&
9751 !(kernel_policy->condition_mask & NECP_KERNEL_CONDITION_PID)) {
9752 // If the connection is not delegated, and the policy did not specify a particular effective process UUID
9753 // or PID, check the process directly
9754 if (kernel_policy->condition_negated_mask & NECP_KERNEL_CONDITION_DELEGATE_IS_PLATFORM_BINARY) {
9755 if (is_platform_binary) {
9756 return FALSE;
9757 }
9758 } else {
9759 if (!is_platform_binary) {
9760 return FALSE;
9761 }
9762 }
9763 }
9764 }
9765
9766 if (kernel_policy->condition_mask & NECP_KERNEL_CONDITION_CUSTOM_ENTITLEMENT) {
9767 NECP_DATA_TRACE_LOG_CONDITION_SOCKET_STR(debug, socket, "SOCKET", false, "NECP_KERNEL_CONDITION_CUSTOM_ENTITLEMENT", "n/a", kernel_policy->cond_custom_entitlement);
9768 if (kernel_policy->cond_custom_entitlement != NULL) {
9769 if (proc == NULL) {
9770 // No process found, cannot check entitlement
9771 return FALSE;
9772 }
9773 task_t __single task = proc_task(proc);
9774 if (task == NULL ||
9775 !IOTaskHasEntitlementAsBooleanOrObject(task, kernel_policy->cond_custom_entitlement)) {
9776 // Process is missing custom entitlement
9777 return FALSE;
9778 }
9779 }
9780 }
9781
9782 return TRUE;
9783 }
9784
9785 static inline u_int32_t
necp_socket_calc_flowhash_locked(struct necp_socket_info * info)9786 necp_socket_calc_flowhash_locked(struct necp_socket_info *info)
9787 {
9788 return net_flowhash(info, sizeof(*info), necp_kernel_socket_policies_gencount);
9789 }
9790
9791 static void
necp_socket_fillout_info_locked(struct inpcb * inp,struct sockaddr * override_local_addr,struct sockaddr * override_remote_addr,u_int32_t override_bound_interface,soflow_direction_t override_direction,u_int32_t drop_order,proc_t * socket_proc,struct necp_socket_info * info,bool is_loopback,int input_ifindex)9792 necp_socket_fillout_info_locked(struct inpcb *inp, struct sockaddr *override_local_addr, struct sockaddr *override_remote_addr, u_int32_t override_bound_interface, soflow_direction_t override_direction, u_int32_t drop_order, proc_t *socket_proc, struct necp_socket_info *info, bool is_loopback, int input_ifindex)
9793 {
9794 struct socket *so = NULL;
9795 proc_t sock_proc = NULL;
9796 proc_t curr_proc = current_proc();
9797
9798 memset(info, 0, sizeof(struct necp_socket_info));
9799
9800 so = inp->inp_socket;
9801
9802 info->drop_order = drop_order;
9803 info->is_loopback = is_loopback;
9804 info->is_delegated = ((so->so_flags & SOF_DELEGATED) ? true : false);
9805
9806 if (necp_kernel_socket_policies_condition_mask & NECP_KERNEL_CONDITION_UID ||
9807 necp_kernel_socket_policies_condition_mask & NECP_KERNEL_CONDITION_REAL_UID) {
9808 info->uid = kauth_cred_getuid(so->so_cred);
9809 info->real_uid = info->uid;
9810 }
9811
9812 if (necp_kernel_socket_policies_condition_mask & NECP_KERNEL_CONDITION_TRAFFIC_CLASS) {
9813 info->traffic_class = so->so_traffic_class;
9814 }
9815
9816 if (necp_kernel_socket_policies_condition_mask & NECP_KERNEL_CONDITION_HAS_CLIENT) {
9817 info->has_client = !uuid_is_null(inp->necp_client_uuid);
9818 }
9819
9820 if (inp->inp_ip_p) {
9821 info->protocol = inp->inp_ip_p;
9822 } else {
9823 info->protocol = SOCK_PROTO(so);
9824 }
9825
9826 if (inp->inp_flags2 & INP2_WANT_APP_POLICY && necp_kernel_socket_policies_condition_mask & NECP_KERNEL_CONDITION_APP_ID) {
9827 u_int32_t responsible_application_id = 0;
9828
9829 struct necp_uuid_id_mapping *existing_mapping = necp_uuid_lookup_app_id_locked(((so->so_flags & SOF_DELEGATED) ? so->e_uuid : so->last_uuid));
9830 if (existing_mapping) {
9831 info->application_id = existing_mapping->id;
9832 }
9833
9834 #if defined(XNU_TARGET_OS_OSX)
9835 if (so->so_rpid > 0) {
9836 existing_mapping = necp_uuid_lookup_app_id_locked(so->so_ruuid);
9837 if (existing_mapping != NULL) {
9838 responsible_application_id = existing_mapping->id;
9839 }
9840 }
9841 #endif
9842
9843 if (responsible_application_id > 0) {
9844 info->real_application_id = info->application_id;
9845 info->application_id = responsible_application_id;
9846 info->used_responsible_pid = true;
9847 } else if (!(so->so_flags & SOF_DELEGATED)) {
9848 info->real_application_id = info->application_id;
9849 } else if (necp_kernel_socket_policies_condition_mask & NECP_KERNEL_CONDITION_REAL_APP_ID) {
9850 struct necp_uuid_id_mapping *real_existing_mapping = necp_uuid_lookup_app_id_locked(so->last_uuid);
9851 if (real_existing_mapping) {
9852 info->real_application_id = real_existing_mapping->id;
9853 }
9854 }
9855 }
9856
9857 pid_t socket_pid =
9858 #if defined(XNU_TARGET_OS_OSX)
9859 info->used_responsible_pid ? so->so_rpid :
9860 #endif
9861 ((so->so_flags & SOF_DELEGATED) ? so->e_pid : so->last_pid);
9862 if (socket_pid && (socket_pid != proc_pid(curr_proc))) {
9863 sock_proc = proc_find(socket_pid);
9864 if (socket_proc) {
9865 *socket_proc = sock_proc;
9866 }
9867 }
9868
9869 if (necp_kernel_socket_policies_condition_mask & NECP_KERNEL_CONDITION_ENTITLEMENT) {
9870 const task_t __single task = proc_task(sock_proc != NULL ? sock_proc : curr_proc);
9871 info->is_entitled = necp_task_has_match_entitlement(task);
9872 if (!info->is_entitled) {
9873 // Task does not have entitlement, check the parent task
9874 necp_get_parent_is_entitled(task, info);
9875 }
9876 }
9877
9878 info->pid = socket_pid;
9879 if (necp_kernel_socket_policies_condition_mask & NECP_KERNEL_CONDITION_PID) {
9880 info->pid_version = proc_pidversion(sock_proc != NULL ? sock_proc : curr_proc);
9881 }
9882
9883 if ((necp_kernel_socket_policies_condition_mask & NECP_KERNEL_CONDITION_PLATFORM_BINARY) ||
9884 (necp_kernel_socket_policies_condition_mask & NECP_KERNEL_CONDITION_DELEGATE_IS_PLATFORM_BINARY)) {
9885 if (info->pid == 0 || necp_is_platform_binary(sock_proc ? sock_proc : curr_proc)) {
9886 info->is_platform_binary = true;
9887 } else if (so->so_rpid != 0) {
9888 proc_t responsible_proc = proc_find(so->so_rpid);
9889 if (responsible_proc != NULL) {
9890 if (necp_is_platform_binary(responsible_proc)) {
9891 info->is_platform_binary = true;
9892 info->used_responsible_pid = true;
9893 }
9894 proc_rele(responsible_proc);
9895 }
9896 }
9897 }
9898
9899 if (necp_kernel_socket_policies_condition_mask & NECP_KERNEL_CONDITION_DELEGATE_IS_PLATFORM_BINARY) {
9900 proc_t real_proc = curr_proc;
9901 bool release_real_proc = false;
9902 if (so->last_pid != proc_pid(real_proc)) {
9903 if (so->last_pid == socket_pid && sock_proc != NULL) {
9904 real_proc = sock_proc;
9905 } else {
9906 proc_t last_proc = proc_find(so->last_pid);
9907 if (last_proc != NULL) {
9908 real_proc = last_proc;
9909 release_real_proc = true;
9910 }
9911 }
9912 }
9913 if (real_proc != NULL) {
9914 if (real_proc == kernproc) {
9915 info->real_is_platform_binary = true;
9916 } else {
9917 info->real_is_platform_binary = (necp_is_platform_binary(real_proc) ? true : false);
9918 }
9919 if (release_real_proc) {
9920 proc_rele(real_proc);
9921 }
9922 }
9923 }
9924
9925 if (necp_kernel_socket_policies_condition_mask & NECP_KERNEL_CONDITION_ACCOUNT_ID && inp->inp_necp_attributes.inp_account != NULL) {
9926 struct necp_string_id_mapping *existing_mapping = necp_lookup_string_to_id_locked(&necp_account_id_list, inp->inp_necp_attributes.inp_account);
9927 if (existing_mapping) {
9928 info->account_id = existing_mapping->id;
9929 }
9930 }
9931
9932 if ((necp_kernel_socket_policies_condition_mask & NECP_KERNEL_CONDITION_DOMAIN) ||
9933 (necp_kernel_socket_policies_condition_mask & NECP_KERNEL_CONDITION_EXACT_DOMAIN) ||
9934 (necp_kernel_socket_policies_condition_mask & NECP_KERNEL_CONDITION_DOMAIN_FILTER)) {
9935 info->domain = inp->inp_necp_attributes.inp_domain;
9936 }
9937
9938 if (override_bound_interface) {
9939 info->bound_interface_index = override_bound_interface;
9940 } else {
9941 if ((inp->inp_flags & INP_BOUND_IF) && inp->inp_boundifp) {
9942 info->bound_interface_index = inp->inp_boundifp->if_index;
9943 }
9944 }
9945
9946 if ((necp_kernel_socket_policies_condition_mask & NECP_KERNEL_CONDITION_BOUND_INTERFACE_FLAGS) &&
9947 info->bound_interface_index != IFSCOPE_NONE) {
9948 ifnet_head_lock_shared();
9949 ifnet_t interface = ifindex2ifnet[info->bound_interface_index];
9950 if (interface != NULL) {
9951 info->bound_interface_flags = interface->if_flags;
9952 info->bound_interface_eflags = interface->if_eflags;
9953 info->bound_interface_xflags = interface->if_xflags;
9954 }
9955 ifnet_head_done();
9956 }
9957
9958 bool needs_address_for_signature = ((necp_kernel_socket_policies_condition_mask & NECP_KERNEL_CONDITION_SYSTEM_SIGNED_RESULT) &&
9959 uuid_is_null(inp->necp_client_uuid) &&
9960 necp_socket_has_resolver_signature(inp));
9961 if ((necp_data_tracing_level && necp_data_tracing_port) ||
9962 necp_restrict_multicast ||
9963 needs_address_for_signature ||
9964 (necp_kernel_socket_policies_condition_mask & NECP_KERNEL_ADDRESS_TYPE_CONDITIONS) ||
9965 NEED_DGRAM_FLOW_TRACKING(so)) {
9966 if (override_local_addr != NULL) {
9967 if (override_local_addr->sa_family == AF_INET6 && override_local_addr->sa_len <= sizeof(struct sockaddr_in6)) {
9968 SOCKADDR_COPY(override_local_addr, &info->local_addr, override_local_addr->sa_len);
9969 if (IN6_IS_ADDR_V4MAPPED(&(info->local_addr.sin6.sin6_addr))) {
9970 struct sockaddr_in sin;
9971 in6_sin6_2_sin(&sin, &(info->local_addr.sin6));
9972 memset(&info->local_addr, 0, sizeof(union necp_sockaddr_union));
9973 memcpy(&info->local_addr, &sin, sin.sin_len);
9974 }
9975 } else if (override_local_addr->sa_family == AF_INET && override_local_addr->sa_len <= sizeof(struct sockaddr_in)) {
9976 SOCKADDR_COPY(override_local_addr, &info->local_addr, override_local_addr->sa_len);
9977 }
9978 } else {
9979 if (inp->inp_vflag & INP_IPV6) {
9980 SIN6(&info->local_addr)->sin6_family = AF_INET6;
9981 SIN6(&info->local_addr)->sin6_len = sizeof(struct sockaddr_in6);
9982 SIN6(&info->local_addr)->sin6_port = inp->inp_lport;
9983 memcpy(&SIN6(&info->local_addr)->sin6_addr, &inp->in6p_laddr, sizeof(struct in6_addr));
9984 } else if (inp->inp_vflag & INP_IPV4) {
9985 SIN(&info->local_addr)->sin_family = AF_INET;
9986 SIN(&info->local_addr)->sin_len = sizeof(struct sockaddr_in);
9987 SIN(&info->local_addr)->sin_port = inp->inp_lport;
9988 memcpy(&SIN(&info->local_addr)->sin_addr, &inp->inp_laddr, sizeof(struct in_addr));
9989 }
9990 }
9991
9992 if (override_remote_addr != NULL) {
9993 if (override_remote_addr->sa_family == AF_INET6 && override_remote_addr->sa_len <= sizeof(struct sockaddr_in6)) {
9994 SOCKADDR_COPY(override_remote_addr, &info->remote_addr, override_remote_addr->sa_len);
9995 if (IN6_IS_ADDR_V4MAPPED(&(info->remote_addr.sin6.sin6_addr))) {
9996 struct sockaddr_in sin;
9997 in6_sin6_2_sin(&sin, &(info->remote_addr.sin6));
9998 memset(&info->remote_addr, 0, sizeof(union necp_sockaddr_union));
9999 memcpy(&info->remote_addr, &sin, sin.sin_len);
10000 }
10001 } else if (override_remote_addr->sa_family == AF_INET && override_remote_addr->sa_len <= sizeof(struct sockaddr_in)) {
10002 SOCKADDR_COPY(override_remote_addr, &info->remote_addr, override_remote_addr->sa_len);
10003 }
10004 } else {
10005 if (inp->inp_vflag & INP_IPV6) {
10006 SIN6(&info->remote_addr)->sin6_family = AF_INET6;
10007 SIN6(&info->remote_addr)->sin6_len = sizeof(struct sockaddr_in6);
10008 SIN6(&info->remote_addr)->sin6_port = inp->inp_fport;
10009 memcpy(&SIN6(&info->remote_addr)->sin6_addr, &inp->in6p_faddr, sizeof(struct in6_addr));
10010 } else if (inp->inp_vflag & INP_IPV4) {
10011 SIN(&info->remote_addr)->sin_family = AF_INET;
10012 SIN(&info->remote_addr)->sin_len = sizeof(struct sockaddr_in);
10013 SIN(&info->remote_addr)->sin_port = inp->inp_fport;
10014 memcpy(&SIN(&info->remote_addr)->sin_addr, &inp->inp_faddr, sizeof(struct in_addr));
10015 }
10016 }
10017 // Clear the embedded scope id from v6 addresses
10018 if (info->local_addr.sa.sa_family == AF_INET6) {
10019 struct sockaddr_in6 *sin6 = SIN6(&info->local_addr);
10020 if (IN6_IS_SCOPE_EMBED(&sin6->sin6_addr) && in6_embedded_scope) {
10021 if (sin6->sin6_addr.s6_addr16[1] != 0) {
10022 sin6->sin6_scope_id = ntohs(sin6->sin6_addr.s6_addr16[1]);
10023 sin6->sin6_addr.s6_addr16[1] = 0;
10024 }
10025 }
10026 }
10027 if (info->remote_addr.sa.sa_family == AF_INET6) {
10028 struct sockaddr_in6 *sin6 = SIN6(&info->remote_addr);
10029 if (IN6_IS_SCOPE_EMBED(&sin6->sin6_addr) && in6_embedded_scope) {
10030 if (sin6->sin6_addr.s6_addr16[1] != 0) {
10031 sin6->sin6_scope_id = ntohs(sin6->sin6_addr.s6_addr16[1]);
10032 sin6->sin6_addr.s6_addr16[1] = 0;
10033 }
10034 }
10035 }
10036 }
10037
10038 if (necp_kernel_socket_policies_condition_mask & NECP_KERNEL_CONDITION_SYSTEM_SIGNED_RESULT) {
10039 // For checking sockets, only validate that there is an NECP client present. It will have
10040 // already checked for the signature.
10041 if (!uuid_is_null(inp->necp_client_uuid)) {
10042 info->has_system_signed_result = true;
10043 } else {
10044 info->has_system_signed_result = necp_socket_resolver_signature_matches_address(inp, &info->remote_addr);
10045 }
10046 }
10047
10048 if (NEED_DGRAM_FLOW_TRACKING(so)) {
10049 info->soflow_entry = soflow_get_flow(so, NULL, &(info->remote_addr.sa), NULL, 0, override_direction, input_ifindex);
10050 } else {
10051 info->soflow_entry = NULL;
10052 }
10053
10054 if (necp_kernel_socket_policies_condition_mask & NECP_KERNEL_CONDITION_CLIENT_FLAGS) {
10055 info->client_flags = 0;
10056 if (INP_NO_CONSTRAINED(inp)) {
10057 info->client_flags |= NECP_CLIENT_PARAMETER_FLAG_PROHIBIT_CONSTRAINED;
10058 }
10059 if (INP_NO_EXPENSIVE(inp)) {
10060 info->client_flags |= NECP_CLIENT_PARAMETER_FLAG_PROHIBIT_EXPENSIVE;
10061 }
10062 if (inp->inp_socket->so_flags1 & SOF1_CELLFALLBACK) {
10063 info->client_flags |= NECP_CLIENT_PARAMETER_FLAG_FALLBACK_TRAFFIC;
10064 }
10065 if (inp->inp_socket->so_flags1 & SOF1_KNOWN_TRACKER) {
10066 info->client_flags |= NECP_CLIENT_PARAMETER_FLAG_KNOWN_TRACKER;
10067 }
10068 if (inp->inp_socket->so_flags1 & SOF1_APPROVED_APP_DOMAIN) {
10069 info->client_flags |= NECP_CLIENT_PARAMETER_FLAG_APPROVED_APP_DOMAIN;
10070 }
10071 if (NEED_DGRAM_FLOW_TRACKING(so)) {
10072 // If the socket has a flow entry for this 4-tuple then check if the flow is outgoing
10073 // and set the inbound flag accordingly. Otherwise use the direction to set the inbound flag.
10074 if (info->soflow_entry != NULL) {
10075 if (!info->soflow_entry->soflow_outgoing) {
10076 info->client_flags |= NECP_CLIENT_PARAMETER_FLAG_INBOUND;
10077 }
10078 } else if (override_direction == SOFLOW_DIRECTION_INBOUND) {
10079 info->client_flags |= NECP_CLIENT_PARAMETER_FLAG_INBOUND;
10080 }
10081 } else {
10082 // If the socket is explicitly marked as inbound then set the inbound flag.
10083 if (inp->inp_socket->so_flags1 & SOF1_INBOUND) {
10084 info->client_flags |= NECP_CLIENT_PARAMETER_FLAG_INBOUND;
10085 }
10086 }
10087 if (inp->inp_socket->so_options & SO_ACCEPTCONN ||
10088 inp->inp_flags2 & INP2_EXTERNAL_PORT) {
10089 info->client_flags |= NECP_CLIENT_PARAMETER_FLAG_LISTENER;
10090 }
10091 if (inp->inp_socket->so_options & SO_NOWAKEFROMSLEEP) {
10092 info->client_flags |= NECP_CLIENT_PARAMETER_FLAG_NO_WAKE_FROM_SLEEP;
10093 }
10094 if (inp->inp_socket->so_options & SO_REUSEPORT) {
10095 info->client_flags |= NECP_CLIENT_PARAMETER_FLAG_REUSE_LOCAL;
10096 }
10097 }
10098 }
10099
10100 #define IS_NECP_KERNEL_POLICY_IP_RESULT(result) (result == NECP_KERNEL_POLICY_RESULT_PASS || result == NECP_KERNEL_POLICY_RESULT_DROP || result == NECP_KERNEL_POLICY_RESULT_IP_TUNNEL || result == NECP_KERNEL_POLICY_RESULT_ROUTE_RULES)
10101
10102 static inline struct necp_kernel_socket_policy *
necp_socket_find_policy_match_with_info_locked(struct necp_kernel_socket_policy ** __indexable policy_search_array,struct necp_socket_info * info,necp_kernel_policy_filter * return_filter,u_int32_t * __counted_by (route_rule_id_array_count)return_route_rule_id_array,size_t * return_route_rule_id_array_count,size_t route_rule_id_array_count,u_int32_t * __counted_by (netagent_array_count)return_netagent_array,size_t netagent_array_count,u_int32_t * __counted_by (netagent_use_flags_array_count)return_netagent_use_flags_array,size_t netagent_use_flags_array_count,struct necp_client_parameter_netagent_type * __counted_by (num_required_agent_types)required_agent_types,u_int32_t num_required_agent_types,proc_t proc,u_int16_t pf_tag,necp_kernel_policy_id * skip_policy_id,struct rtentry * rt,necp_kernel_policy_result * return_drop_dest_policy_result,necp_drop_all_bypass_check_result_t * return_drop_all_bypass,u_int32_t * return_flow_divert_aggregate_unit,struct socket * so,int debug)10103 necp_socket_find_policy_match_with_info_locked(struct necp_kernel_socket_policy ** __indexable policy_search_array,
10104 struct necp_socket_info *info,
10105 necp_kernel_policy_filter *return_filter,
10106 u_int32_t * __counted_by(route_rule_id_array_count)return_route_rule_id_array,
10107 size_t *return_route_rule_id_array_count,
10108 size_t route_rule_id_array_count,
10109 u_int32_t * __counted_by(netagent_array_count)return_netagent_array,
10110 size_t netagent_array_count,
10111 u_int32_t * __counted_by(netagent_use_flags_array_count)return_netagent_use_flags_array,
10112 size_t netagent_use_flags_array_count,
10113 struct necp_client_parameter_netagent_type * __counted_by(num_required_agent_types)required_agent_types,
10114 u_int32_t num_required_agent_types,
10115 proc_t proc,
10116 u_int16_t pf_tag,
10117 necp_kernel_policy_id *skip_policy_id,
10118 struct rtentry *rt,
10119 necp_kernel_policy_result *return_drop_dest_policy_result,
10120 necp_drop_all_bypass_check_result_t *return_drop_all_bypass,
10121 u_int32_t *return_flow_divert_aggregate_unit,
10122 struct socket *so,
10123 int debug)
10124 {
10125 struct necp_kernel_socket_policy *matched_policy = NULL;
10126 u_int32_t skip_order = 0;
10127 u_int32_t skip_session_order = 0;
10128 bool skipped_ip_result = false;
10129 size_t route_rule_id_count = 0;
10130 int i;
10131 u_int32_t netagent_ids[NECP_MAX_NETAGENTS];
10132 u_int32_t netagent_use_flags[NECP_MAX_NETAGENTS];
10133 memset(&netagent_ids, 0, sizeof(netagent_ids));
10134 memset(&netagent_use_flags, 0, sizeof(netagent_use_flags));
10135 size_t netagent_cursor = 0;
10136 necp_drop_all_bypass_check_result_t drop_all_bypass = NECP_DROP_ALL_BYPASS_CHECK_RESULT_NONE;
10137 size_t netagent_array_count_adjusted = netagent_array_count;
10138 if (netagent_use_flags_array_count > 0 && netagent_use_flags_array_count < netagent_array_count_adjusted) {
10139 netagent_array_count_adjusted = netagent_use_flags_array_count;
10140 }
10141
10142 if (return_drop_all_bypass != NULL) {
10143 *return_drop_all_bypass = drop_all_bypass;
10144 }
10145
10146 if (netagent_array_count_adjusted > NECP_MAX_NETAGENTS) {
10147 netagent_array_count_adjusted = NECP_MAX_NETAGENTS;
10148 }
10149
10150 // Pre-process domain for quick matching
10151 struct substring domain_substring = {};
10152 u_int8_t domain_dot_count = 0;
10153 if (info->domain != NULL) {
10154 domain_substring = necp_trim_dots_and_stars(__unsafe_null_terminated_to_indexable(info->domain), info->domain ? strlen(info->domain) : 0);
10155 domain_dot_count = necp_count_dots(domain_substring.string, domain_substring.length);
10156 }
10157
10158 if (return_filter != NULL) {
10159 *return_filter = 0;
10160 }
10161
10162 if (return_route_rule_id_array_count != NULL) {
10163 *return_route_rule_id_array_count = 0;
10164 }
10165
10166 // Do not subject layer-2 filter to NECP policies, return a PASS policy
10167 if (necp_pass_interpose > 0 && info->client_flags & NECP_CLIENT_PARAMETER_FLAG_INTERPOSE) {
10168 return &pass_policy;
10169 }
10170
10171 *return_drop_dest_policy_result = NECP_KERNEL_POLICY_RESULT_NONE;
10172
10173 if (policy_search_array != NULL) {
10174 for (i = 0; policy_search_array[i] != NULL; i++) {
10175 NECP_DATA_TRACE_LOG_POLICY_SOCKET(debug, so, "SOCKET", "EXAMINING");
10176
10177 if (necp_drop_all_order != 0 && policy_search_array[i]->session_order >= necp_drop_all_order) {
10178 // We've hit a drop all rule
10179 if (drop_all_bypass == NECP_DROP_ALL_BYPASS_CHECK_RESULT_NONE) {
10180 drop_all_bypass = necp_check_drop_all_bypass_result(proc);
10181 if (return_drop_all_bypass != NULL) {
10182 *return_drop_all_bypass = drop_all_bypass;
10183 }
10184 }
10185 if (drop_all_bypass == NECP_DROP_ALL_BYPASS_CHECK_RESULT_FALSE) {
10186 NECP_DATA_TRACE_LOG_SOCKET_RESULT(debug, so, "SOCKET", "RESULT - DROP - (session order > drop-all order)");
10187 break;
10188 }
10189 }
10190 if (necp_drop_dest_policy.entry_count != 0 &&
10191 necp_address_matches_drop_dest_policy(&info->remote_addr, policy_search_array[i]->session_order)) {
10192 // We've hit a drop by destination address rule
10193 *return_drop_dest_policy_result = NECP_KERNEL_POLICY_RESULT_DROP;
10194 break;
10195 }
10196 if (info->drop_order != 0 && policy_search_array[i]->session_order >= info->drop_order) {
10197 // We've hit a drop order for this socket
10198 break;
10199 }
10200 if (skip_session_order && policy_search_array[i]->session_order >= skip_session_order) {
10201 // Done skipping
10202 skip_order = 0;
10203 skip_session_order = 0;
10204 // If we didn't skip any policy with IP result, no need to save the skip for IP evaluation.
10205 if (skip_policy_id && *skip_policy_id != NECP_KERNEL_POLICY_ID_NONE && !skipped_ip_result) {
10206 *skip_policy_id = NECP_KERNEL_POLICY_ID_NONE;
10207 NECP_DATA_TRACE_LOG_POLICY_SOCKET(debug, so, "SOCKET", "SKIP (cleared saved skip)");
10208 }
10209 }
10210 if (skip_order) {
10211 if (policy_search_array[i]->order < skip_order) {
10212 // Skip this policy
10213 // Remember if we skipped an interesting PASS/DROP/IP_TUNNEL/ROUTE_RULES policy. If we
10214 // didn't, clear out the return value for skip ID when we are done with each session.'
10215 if (IS_NECP_KERNEL_POLICY_IP_RESULT(policy_search_array[i]->result)) {
10216 skipped_ip_result = true;
10217 NECP_DATA_TRACE_LOG_POLICY_SOCKET(debug, so, "SOCKET", "SKIPPING POLICY");
10218 }
10219 NECP_DATA_TRACE_LOG_POLICY_SOCKET(debug, so, "SOCKET", "SKIP (session order < skip-order)");
10220 continue;
10221 } else {
10222 // Done skipping
10223 skip_order = 0;
10224 skip_session_order = 0;
10225 }
10226 } else if (skip_session_order) {
10227 // Skip this policy
10228 // Remember if we skipped an interesting PASS/DROP/IP_TUNNEL/ROUTE_RULES policy. If we
10229 // didn't, clear out the return value for skip ID when we are done with each session.'
10230 if (IS_NECP_KERNEL_POLICY_IP_RESULT(policy_search_array[i]->result)) {
10231 skipped_ip_result = true;
10232 NECP_DATA_TRACE_LOG_POLICY_SOCKET(debug, so, "SOCKET", "SKIPPING POLICY");
10233 }
10234 NECP_DATA_TRACE_LOG_POLICY_SOCKET(debug, so, "SOCKET", "SKIP (skip-session-order)");
10235 continue;
10236 }
10237
10238 if (necp_socket_check_policy(policy_search_array[i],
10239 info->application_id,
10240 info->real_application_id,
10241 info->is_entitled,
10242 info->account_id,
10243 domain_substring,
10244 domain_dot_count,
10245 info->url,
10246 info->pid,
10247 info->pid_version,
10248 info->uid,
10249 info->real_uid,
10250 info->bound_interface_index,
10251 info->traffic_class,
10252 info->protocol,
10253 &info->local_addr,
10254 &info->remote_addr,
10255 required_agent_types,
10256 num_required_agent_types,
10257 info->has_client,
10258 info->client_flags,
10259 info->is_platform_binary,
10260 info->has_system_signed_result,
10261 proc,
10262 pf_tag,
10263 info->scheme_port,
10264 rt,
10265 info->is_loopback,
10266 debug,
10267 info->real_is_platform_binary,
10268 info->bound_interface_flags,
10269 info->bound_interface_eflags,
10270 info->bound_interface_xflags,
10271 info,
10272 info->is_delegated,
10273 so)) {
10274 if (!debug && necp_data_tracing_session_order) {
10275 if ((necp_data_tracing_session_order == policy_search_array[i]->session_order) &&
10276 (!necp_data_tracing_policy_order || (necp_data_tracing_policy_order == policy_search_array[i]->order))) {
10277 NECP_DATA_TRACE_LOG_SOCKET_RESULT(true, so, "SOCKET", "DEBUG - MATCHED POLICY");
10278 }
10279 }
10280
10281 if (policy_search_array[i]->result == NECP_KERNEL_POLICY_RESULT_SOCKET_FILTER) {
10282 if (return_filter && *return_filter != NECP_FILTER_UNIT_NO_FILTER) {
10283 necp_kernel_policy_filter control_unit = policy_search_array[i]->result_parameter.filter_control_unit;
10284 if (control_unit == NECP_FILTER_UNIT_NO_FILTER) {
10285 *return_filter = control_unit;
10286 } else {
10287 // Preserve pre-existing connections only if all filters preserve.
10288 bool preserve_bit_off = false;
10289 if ((*return_filter && !(*return_filter & NECP_MASK_PRESERVE_CONNECTIONS)) ||
10290 (control_unit && !(control_unit & NECP_MASK_PRESERVE_CONNECTIONS))) {
10291 preserve_bit_off = true;
10292 }
10293 *return_filter |= control_unit;
10294 if (preserve_bit_off == true) {
10295 *return_filter &= ~NECP_MASK_PRESERVE_CONNECTIONS;
10296 }
10297 }
10298 if (necp_debug > 1 || NECP_DATA_TRACE_POLICY_ON(debug)) {
10299 NECPLOG(LOG_DEBUG, "DATA-TRACE: Socket Policy <so %llx>: (Application %d Real Application %d BoundInterface %d Proto %d) Filter %d", (uint64_t)VM_KERNEL_ADDRPERM(so), info->application_id, info->real_application_id, info->bound_interface_index, info->protocol, *return_filter);
10300 }
10301 }
10302 continue;
10303 } else if (policy_search_array[i]->result == NECP_KERNEL_POLICY_RESULT_ROUTE_RULES) {
10304 if (return_route_rule_id_array && route_rule_id_count < route_rule_id_array_count) {
10305 return_route_rule_id_array[route_rule_id_count++] = policy_search_array[i]->result_parameter.route_rule_id;
10306 if (necp_debug > 1 || NECP_DATA_TRACE_POLICY_ON(debug)) {
10307 NECPLOG(LOG_DEBUG, "DATA-TRACE: Socket Policy <so %llx>: (Application %d Real Application %d BoundInterface %d Proto %d) Route Rule %d", (uint64_t)VM_KERNEL_ADDRPERM(so), info->application_id, info->real_application_id, info->bound_interface_index, info->protocol, policy_search_array[i]->result_parameter.route_rule_id);
10308 }
10309 }
10310 continue;
10311 } else if (policy_search_array[i]->result == NECP_KERNEL_POLICY_RESULT_USE_NETAGENT ||
10312 policy_search_array[i]->result == NECP_KERNEL_POLICY_RESULT_NETAGENT_SCOPED) {
10313 if (netagent_cursor < netagent_array_count_adjusted) {
10314 bool agent_already_present = false;
10315 for (size_t netagent_i = 0; netagent_i < netagent_cursor; netagent_i++) {
10316 if (netagent_ids[netagent_i] == policy_search_array[i]->result_parameter.netagent_id) {
10317 // Already present. Mark the "SCOPED" flag if flags are necessary.
10318 agent_already_present = true;
10319 if (!(netagent_use_flags[netagent_i] & NECP_AGENT_USE_FLAG_REMOVE) &&
10320 policy_search_array[i]->result == NECP_KERNEL_POLICY_RESULT_NETAGENT_SCOPED) {
10321 netagent_use_flags[netagent_i] |= NECP_AGENT_USE_FLAG_SCOPE;
10322 }
10323 }
10324 }
10325
10326 if (!agent_already_present) {
10327 netagent_ids[netagent_cursor] = policy_search_array[i]->result_parameter.netagent_id;
10328 if (policy_search_array[i]->result == NECP_KERNEL_POLICY_RESULT_NETAGENT_SCOPED) {
10329 netagent_use_flags[netagent_cursor] |= NECP_AGENT_USE_FLAG_SCOPE;
10330 }
10331 netagent_cursor++;
10332 }
10333 if (necp_debug > 1 || NECP_DATA_TRACE_POLICY_ON(debug)) {
10334 NECPLOG(LOG_DEBUG, "DATA-TRACE: Socket Policy <so %llx>: (Application %d Real Application %d BoundInterface %d Proto %d) %s Netagent %d",
10335 (uint64_t)VM_KERNEL_ADDRPERM(so), info->application_id, info->real_application_id, info->bound_interface_index, info->protocol,
10336 policy_search_array[i]->result == NECP_KERNEL_POLICY_RESULT_USE_NETAGENT ? "Use" : "Scope",
10337 policy_search_array[i]->result_parameter.netagent_id);
10338 }
10339 }
10340 continue;
10341 } else if (policy_search_array[i]->result == NECP_KERNEL_POLICY_RESULT_REMOVE_NETAGENT) {
10342 bool agent_already_present = false;
10343 for (size_t netagent_i = 0; netagent_i < netagent_cursor; netagent_i++) {
10344 if (netagent_ids[netagent_i] == policy_search_array[i]->result_parameter.netagent_id) {
10345 // Already present. Mark the "REMOVE" flag if flags are supported, or just clear the entry
10346 agent_already_present = true;
10347 netagent_use_flags[netagent_i] = NECP_AGENT_USE_FLAG_REMOVE;
10348 }
10349 }
10350 if (!agent_already_present && netagent_cursor < netagent_array_count_adjusted) {
10351 // If not present, and flags are supported, add an entry with the "REMOVE" flag
10352 netagent_ids[netagent_cursor] = policy_search_array[i]->result_parameter.netagent_id;
10353 netagent_use_flags[netagent_cursor] = NECP_AGENT_USE_FLAG_REMOVE;
10354 netagent_cursor++;
10355 }
10356 if (necp_debug > 1 || NECP_DATA_TRACE_POLICY_ON(debug)) {
10357 NECPLOG(LOG_DEBUG, "DATA-TRACE: Socket Policy <so %llx>: (Application %d Real Application %d BoundInterface %d Proto %d) Remove Netagent %d",
10358 (uint64_t)VM_KERNEL_ADDRPERM(so), info->application_id, info->real_application_id, info->bound_interface_index, info->protocol,
10359 policy_search_array[i]->result_parameter.netagent_id);
10360 }
10361 continue;
10362 } else if (policy_search_array[i]->result == NECP_KERNEL_POLICY_RESULT_REMOVE_NETAGENT_TYPE) {
10363 bool agent_already_present = false;
10364 for (size_t netagent_i = 0; netagent_i < netagent_cursor; netagent_i++) {
10365 if (netagent_ids[netagent_i] == policy_search_array[i]->result_parameter.netagent_id) {
10366 // Already present. Mark the "REMOVE" flag if flags are supported, or just clear the entry
10367 agent_already_present = true;
10368 netagent_use_flags[netagent_i] = NECP_AGENT_USE_FLAG_REMOVE;
10369 }
10370 }
10371 if (!agent_already_present && netagent_cursor < netagent_array_count_adjusted) {
10372 // If not present, and flags are supported, add an entry with the "REMOVE" flag
10373 netagent_ids[netagent_cursor] = policy_search_array[i]->result_parameter.netagent_id;
10374 netagent_use_flags[netagent_cursor] = NECP_AGENT_USE_FLAG_REMOVE;
10375 netagent_cursor++;
10376 }
10377 if (necp_debug > 1 || NECP_DATA_TRACE_POLICY_ON(debug)) {
10378 NECPLOG(LOG_DEBUG, "DATA-TRACE: Socket Policy <so %llx>: (Application %d Real Application %d BoundInterface %d Proto %d) Remove NetagentType %d",
10379 (uint64_t)VM_KERNEL_ADDRPERM(so), info->application_id, info->real_application_id, info->bound_interface_index, info->protocol,
10380 policy_search_array[i]->result_parameter.netagent_id);
10381 }
10382 continue;
10383 } else if (policy_search_array[i]->result == NECP_KERNEL_POLICY_RESULT_SOCKET_DIVERT) {
10384 u_int32_t control_unit = policy_search_array[i]->result_parameter.flow_divert_control_unit;
10385 if (control_unit & FLOW_DIVERT_IS_TRANSPARENT) {
10386 /* For transparent proxies, accumulate the control unit and continue to the next policy */
10387 if (return_flow_divert_aggregate_unit != NULL) {
10388 *return_flow_divert_aggregate_unit |= (control_unit & ~FLOW_DIVERT_IS_TRANSPARENT);
10389 if (necp_debug > 1 || NECP_DATA_TRACE_POLICY_ON(debug)) {
10390 NECPLOG(LOG_DEBUG, "DATA-TRACE: Socket Policy <so %llx>: (Application %d Real Application %d BoundInterface %d Proto %d) flow divert %u", (uint64_t)VM_KERNEL_ADDRPERM(so), info->application_id, info->real_application_id, info->bound_interface_index, info->protocol, control_unit);
10391 }
10392 }
10393 continue;
10394 }
10395 }
10396
10397 // Matched policy is a skip. Do skip and continue.
10398 if (policy_search_array[i]->result == NECP_KERNEL_POLICY_RESULT_SKIP) {
10399 NECP_DATA_TRACE_LOG_POLICY_SOCKET(debug, so, "SOCKET", "MATCHED SKIP POLICY");
10400 skip_order = policy_search_array[i]->result_parameter.skip_policy_order;
10401 skip_session_order = policy_search_array[i]->session_order + 1;
10402 if (skip_policy_id && *skip_policy_id == NECP_KERNEL_POLICY_ID_NONE) {
10403 *skip_policy_id = policy_search_array[i]->id;
10404 if (necp_debug > 1 || NECP_DATA_TRACE_POLICY_ON(debug)) {
10405 NECPLOG(LOG_DEBUG, "DATA-TRACE: Socket Policy <so %llx>: MATCHED SKIP POLICY (Application %d Real Application %d BoundInterface %d Proto %d) set skip_policy_id %d", (uint64_t)VM_KERNEL_ADDRPERM(so), info->application_id, info->real_application_id, info->bound_interface_index, info->protocol, *skip_policy_id);
10406 }
10407 }
10408 continue;
10409 }
10410
10411 // Matched an allow unentitled, which clears any drop order
10412 if (policy_search_array[i]->result == NECP_KERNEL_POLICY_RESULT_ALLOW_UNENTITLED) {
10413 info->drop_order = 0;
10414 continue;
10415 }
10416
10417 // Passed all tests, found a match
10418 matched_policy = policy_search_array[i];
10419 NECP_DATA_TRACE_LOG_SOCKET_RESULT(debug, so, "SOCKET", "RESULT - MATCHED POLICY");
10420 break;
10421 }
10422 }
10423 }
10424
10425 if (return_netagent_array != NULL) {
10426 if (return_netagent_use_flags_array != NULL) {
10427 memcpy(return_netagent_array, &netagent_ids, sizeof(u_int32_t) * netagent_array_count_adjusted);
10428 memcpy(return_netagent_use_flags_array, &netagent_use_flags, sizeof(u_int32_t) * netagent_array_count_adjusted);
10429 } else {
10430 for (size_t netagent_i = 0; netagent_i < netagent_array_count_adjusted; netagent_i++) {
10431 if (!(netagent_use_flags[netagent_i] & NECP_AGENT_USE_FLAG_REMOVE)) {
10432 return_netagent_array[netagent_i] = netagent_ids[netagent_i];
10433 } else {
10434 return_netagent_array[netagent_i] = 0;
10435 }
10436 }
10437 }
10438 }
10439
10440 if (return_route_rule_id_array_count != NULL) {
10441 *return_route_rule_id_array_count = route_rule_id_count;
10442 }
10443 return matched_policy;
10444 }
10445
10446 static bool
necp_socket_uses_interface(struct inpcb * inp,u_int32_t interface_index)10447 necp_socket_uses_interface(struct inpcb *inp, u_int32_t interface_index)
10448 {
10449 bool found_match = FALSE;
10450 ifaddr_t ifa;
10451 union necp_sockaddr_union address_storage;
10452 int family = AF_INET;
10453
10454 ifnet_head_lock_shared();
10455 ifnet_t interface = ifindex2ifnet[interface_index];
10456 ifnet_head_done();
10457
10458 if (inp == NULL || interface == NULL) {
10459 return FALSE;
10460 }
10461
10462 if (inp->inp_vflag & INP_IPV4) {
10463 family = AF_INET;
10464 } else if (inp->inp_vflag & INP_IPV6) {
10465 family = AF_INET6;
10466 } else {
10467 return FALSE;
10468 }
10469
10470 // Match socket address against interface addresses
10471 ifnet_lock_shared(interface);
10472 TAILQ_FOREACH(ifa, &interface->if_addrhead, ifa_link) {
10473 if (ifaddr_address(ifa, SA(&address_storage.sa), sizeof(address_storage)) == 0) {
10474 if (address_storage.sa.sa_family != family) {
10475 continue;
10476 }
10477
10478 if (family == AF_INET) {
10479 if (memcmp(&address_storage.sin.sin_addr, &inp->inp_laddr, sizeof(inp->inp_laddr)) == 0) {
10480 found_match = TRUE;
10481 break;
10482 }
10483 } else if (family == AF_INET6) {
10484 if (memcmp(&address_storage.sin6.sin6_addr, &inp->in6p_laddr, sizeof(inp->in6p_laddr)) == 0) {
10485 found_match = TRUE;
10486 break;
10487 }
10488 }
10489 }
10490 }
10491 ifnet_lock_done(interface);
10492
10493 return found_match;
10494 }
10495
10496 static inline necp_socket_bypass_type_t
necp_socket_bypass(struct sockaddr * override_local_addr,struct sockaddr * override_remote_addr,struct inpcb * inp)10497 necp_socket_bypass(struct sockaddr *override_local_addr, struct sockaddr *override_remote_addr, struct inpcb *inp)
10498 {
10499 if (necp_is_loopback(override_local_addr, override_remote_addr, inp, NULL, IFSCOPE_NONE)) {
10500 proc_t curr_proc = current_proc();
10501 proc_t sock_proc = NULL;
10502 struct socket *so = inp ? inp->inp_socket : NULL;
10503 pid_t socket_pid = (so == NULL) ? 0 :
10504 #if defined(XNU_TARGET_OS_OSX)
10505 so->so_rpid ? so->so_rpid :
10506 #endif
10507 ((so->so_flags & SOF_DELEGATED) ? so->e_pid : so->last_pid);
10508 if (socket_pid && (socket_pid != proc_pid(curr_proc))) {
10509 sock_proc = proc_find(socket_pid);
10510 }
10511 const task_t __single task = proc_task(sock_proc != NULL ? sock_proc : curr_proc);
10512 if (task != NULL && necp_task_has_loopback_drop_entitlement(task)) {
10513 if (sock_proc) {
10514 proc_rele(sock_proc);
10515 }
10516 return NECP_BYPASS_TYPE_DROP;
10517 }
10518 if (sock_proc) {
10519 proc_rele(sock_proc);
10520 }
10521
10522 if (necp_pass_loopback > 0) {
10523 return NECP_BYPASS_TYPE_LOOPBACK;
10524 }
10525 } else if (necp_is_intcoproc(inp, NULL)) {
10526 return NECP_BYPASS_TYPE_INTCOPROC;
10527 }
10528
10529 return NECP_BYPASS_TYPE_NONE;
10530 }
10531
10532 static inline void
necp_socket_ip_tunnel_tso(struct inpcb * inp)10533 necp_socket_ip_tunnel_tso(struct inpcb *inp)
10534 {
10535 u_int tunnel_interface_index = inp->inp_policyresult.results.result_parameter.tunnel_interface_index;
10536 ifnet_t tunnel_interface = NULL;
10537
10538 ifnet_head_lock_shared();
10539 tunnel_interface = ifindex2ifnet[tunnel_interface_index];
10540 ifnet_head_done();
10541
10542 if (tunnel_interface != NULL) {
10543 tcp_set_tso(intotcpcb(inp), tunnel_interface);
10544 }
10545 }
10546
10547 static inline void
necp_unscope(struct inpcb * inp)10548 necp_unscope(struct inpcb *inp)
10549 {
10550 // If the current policy result is "socket scoped" and the pcb was actually re-scoped as a result, then un-bind the pcb
10551 if (inp->inp_policyresult.results.result == NECP_KERNEL_POLICY_RESULT_SOCKET_SCOPED && (inp->inp_flags2 & INP2_SCOPED_BY_NECP)) {
10552 inp->inp_flags &= ~INP_BOUND_IF;
10553 inp->inp_boundifp = NULL;
10554 }
10555 }
10556
10557 static inline void
necp_clear_tunnel(struct inpcb * inp)10558 necp_clear_tunnel(struct inpcb *inp)
10559 {
10560 if (inp->inp_boundifp != NULL && inp->inp_policyresult.results.result == NECP_KERNEL_POLICY_RESULT_IP_TUNNEL) {
10561 inp->inp_flags &= ~INP_BOUND_IF;
10562 inp->inp_boundifp = NULL;
10563 }
10564 }
10565
10566 static inline bool
necp_socket_verify_netagents(u_int32_t * __counted_by (NECP_MAX_NETAGENTS)netagent_ids,int debug,struct socket * so)10567 necp_socket_verify_netagents(u_int32_t * __counted_by(NECP_MAX_NETAGENTS)netagent_ids, int debug, struct socket *so)
10568 {
10569 // Verify netagents
10570 for (int netagent_cursor = 0; netagent_cursor < NECP_MAX_NETAGENTS; netagent_cursor++) {
10571 struct necp_uuid_id_mapping *mapping = NULL;
10572 u_int32_t netagent_id = netagent_ids[netagent_cursor];
10573 if (netagent_id == 0) {
10574 continue;
10575 }
10576 mapping = necp_uuid_lookup_uuid_with_agent_id_locked(netagent_id);
10577 if (mapping != NULL) {
10578 u_int32_t agent_flags = 0;
10579 agent_flags = netagent_get_flags(mapping->uuid);
10580 if (agent_flags & NETAGENT_FLAG_REGISTERED) {
10581 if (agent_flags & NETAGENT_FLAG_ACTIVE) {
10582 continue;
10583 } else if ((agent_flags & NETAGENT_FLAG_VOLUNTARY) == 0) {
10584 if (agent_flags & NETAGENT_FLAG_KERNEL_ACTIVATED) {
10585 int trigger_error = 0;
10586 trigger_error = netagent_kernel_trigger(mapping->uuid);
10587 if (necp_debug > 1 || NECP_DATA_TRACE_POLICY_ON(debug)) {
10588 NECPLOG(LOG_ERR, "DATA-TRACE: Socket Policy: <so %llx> Triggering inactive agent (%d), error %d", (uint64_t)VM_KERNEL_ADDRPERM(so), netagent_id, trigger_error);
10589 }
10590 }
10591 return false;
10592 }
10593 }
10594 }
10595 }
10596 return true;
10597 }
10598
10599 necp_kernel_policy_id
necp_socket_find_policy_match(struct inpcb * inp,struct sockaddr * override_local_addr,struct sockaddr * override_remote_addr,u_int32_t override_bound_interface)10600 necp_socket_find_policy_match(struct inpcb *inp, struct sockaddr *override_local_addr, struct sockaddr *override_remote_addr, u_int32_t override_bound_interface)
10601 {
10602 struct socket *so = NULL;
10603 necp_kernel_policy_filter filter_control_unit = 0;
10604 struct necp_kernel_socket_policy *matched_policy = NULL;
10605 necp_kernel_policy_id matched_policy_id = NECP_KERNEL_POLICY_ID_NONE;
10606 u_int32_t drop_dest_policy_result = NECP_KERNEL_POLICY_RESULT_NONE;
10607 necp_drop_all_bypass_check_result_t drop_all_bypass = NECP_DROP_ALL_BYPASS_CHECK_RESULT_NONE;
10608 proc_t __single socket_proc = NULL;
10609 necp_socket_bypass_type_t bypass_type = NECP_BYPASS_TYPE_NONE;
10610
10611 u_int32_t netagent_ids[NECP_MAX_NETAGENTS];
10612 memset(&netagent_ids, 0, sizeof(netagent_ids));
10613
10614 struct necp_socket_info info = {};
10615
10616 u_int32_t flow_divert_aggregate_unit = 0;
10617
10618 if (inp == NULL) {
10619 return NECP_KERNEL_POLICY_ID_NONE;
10620 }
10621
10622 // Ignore invalid addresses
10623 if (override_local_addr != NULL &&
10624 !necp_address_is_valid(override_local_addr)) {
10625 override_local_addr = NULL;
10626 }
10627 if (override_remote_addr != NULL &&
10628 !necp_address_is_valid(override_remote_addr)) {
10629 override_remote_addr = NULL;
10630 }
10631
10632 so = inp->inp_socket;
10633
10634 u_int32_t drop_order = necp_process_drop_order(so->so_cred);
10635
10636 // Don't lock. Possible race condition, but we don't want the performance hit.
10637 if (necp_drop_management_order == 0 &&
10638 (necp_kernel_socket_policies_count == 0 ||
10639 (!(inp->inp_flags2 & INP2_WANT_APP_POLICY) && necp_kernel_socket_policies_non_app_count == 0))) {
10640 if (necp_drop_all_order > 0 || drop_order > 0) {
10641 inp->inp_policyresult.policy_id = NECP_KERNEL_POLICY_ID_NO_MATCH;
10642 inp->inp_policyresult.skip_policy_id = NECP_KERNEL_POLICY_ID_NO_MATCH;
10643 inp->inp_policyresult.policy_gencount = 0;
10644 inp->inp_policyresult.app_id = 0;
10645 inp->inp_policyresult.flowhash = 0;
10646 inp->inp_policyresult.results.filter_control_unit = 0;
10647 inp->inp_policyresult.results.flow_divert_aggregate_unit = 0;
10648 inp->inp_policyresult.results.route_rule_id = 0;
10649 bypass_type = necp_socket_bypass(override_local_addr, override_remote_addr, inp);
10650 if (bypass_type != NECP_BYPASS_TYPE_NONE && bypass_type != NECP_BYPASS_TYPE_DROP) {
10651 inp->inp_policyresult.results.result = NECP_KERNEL_POLICY_RESULT_PASS;
10652 } else {
10653 inp->inp_policyresult.results.result = NECP_KERNEL_POLICY_RESULT_DROP;
10654 }
10655 }
10656 return NECP_KERNEL_POLICY_ID_NONE;
10657 }
10658
10659 // Check for loopback exception
10660 bypass_type = necp_socket_bypass(override_local_addr, override_remote_addr, inp);
10661 if (bypass_type == NECP_BYPASS_TYPE_DROP) {
10662 // Mark socket as a drop
10663 necp_unscope(inp);
10664 inp->inp_policyresult.policy_id = NECP_KERNEL_POLICY_ID_NO_MATCH;
10665 inp->inp_policyresult.skip_policy_id = NECP_KERNEL_POLICY_ID_NO_MATCH;
10666 inp->inp_policyresult.policy_gencount = 0;
10667 inp->inp_policyresult.app_id = 0;
10668 inp->inp_policyresult.flowhash = 0;
10669 inp->inp_policyresult.results.filter_control_unit = 0;
10670 inp->inp_policyresult.results.flow_divert_aggregate_unit = 0;
10671 inp->inp_policyresult.results.route_rule_id = 0;
10672 inp->inp_policyresult.results.result = NECP_KERNEL_POLICY_RESULT_DROP;
10673 return NECP_KERNEL_POLICY_ID_NONE;
10674 }
10675
10676 if (bypass_type == NECP_BYPASS_TYPE_INTCOPROC || (bypass_type == NECP_BYPASS_TYPE_LOOPBACK && necp_pass_loopback == NECP_LOOPBACK_PASS_ALL)) {
10677 // Mark socket as a pass
10678 necp_unscope(inp);
10679 inp->inp_policyresult.policy_id = NECP_KERNEL_POLICY_ID_NO_MATCH;
10680 inp->inp_policyresult.skip_policy_id = NECP_KERNEL_POLICY_ID_NO_MATCH;
10681 inp->inp_policyresult.policy_gencount = 0;
10682 inp->inp_policyresult.app_id = 0;
10683 inp->inp_policyresult.flowhash = 0;
10684 inp->inp_policyresult.results.filter_control_unit = 0;
10685 inp->inp_policyresult.results.flow_divert_aggregate_unit = 0;
10686 inp->inp_policyresult.results.route_rule_id = 0;
10687 inp->inp_policyresult.results.result = NECP_KERNEL_POLICY_RESULT_PASS;
10688 return NECP_KERNEL_POLICY_ID_NONE;
10689 }
10690
10691 // Lock
10692 lck_rw_lock_shared(&necp_kernel_policy_lock);
10693 necp_socket_fillout_info_locked(inp, override_local_addr, override_remote_addr, override_bound_interface, SOFLOW_DIRECTION_UNKNOWN, drop_order, &socket_proc, &info, (bypass_type == NECP_BYPASS_TYPE_LOOPBACK), 0);
10694
10695 int debug = NECP_ENABLE_DATA_TRACE((&info.local_addr), (&info.remote_addr), info.protocol, info.pid, info.bound_interface_index);
10696 NECP_DATA_TRACE_LOG_SOCKET(debug, so, "SOCKET - INP UPDATE", "START", 0, 0);
10697
10698 // Check info
10699 u_int32_t flowhash = necp_socket_calc_flowhash_locked(&info);
10700 if (inp->inp_policyresult.policy_id != NECP_KERNEL_POLICY_ID_NONE &&
10701 inp->inp_policyresult.policy_gencount == necp_kernel_socket_policies_gencount &&
10702 inp->inp_policyresult.flowhash == flowhash) {
10703 // If already matched this socket on this generation of table, skip
10704
10705 if (info.soflow_entry != NULL) {
10706 soflow_free_flow(info.soflow_entry);
10707 }
10708
10709 // Unlock
10710 lck_rw_done(&necp_kernel_policy_lock);
10711
10712 if (socket_proc) {
10713 proc_rele(socket_proc);
10714 }
10715
10716 if (necp_debug > 1 || NECP_DATA_TRACE_POLICY_ON(debug)) {
10717 NECPLOG(LOG_DEBUG, "DATA-TRACE: Socket Policy - INP UPDATE - RESULT - CACHED <MATCHED>: %p (BoundInterface %d Proto %d) Policy %d Result %d Parameter %d",
10718 inp->inp_socket, info.bound_interface_index, info.protocol,
10719 inp->inp_policyresult.policy_id,
10720 inp->inp_policyresult.results.result,
10721 inp->inp_policyresult.results.result_parameter.tunnel_interface_index);
10722 }
10723 NECP_DATA_TRACE_LOG_SOCKET(debug, so, "SOCKET - INP UPDATE", "RESULT - CACHED <MATCHED>", inp->inp_policyresult.policy_id, inp->inp_policyresult.skip_policy_id);
10724 return inp->inp_policyresult.policy_id;
10725 }
10726
10727 inp->inp_policyresult.app_id = info.application_id;
10728
10729 // Match socket to policy
10730 necp_kernel_policy_id skip_policy_id = NECP_KERNEL_POLICY_ID_NONE;
10731 u_int32_t route_rule_id_array[MAX_AGGREGATE_ROUTE_RULES] = {};
10732 size_t route_rule_id_array_count = 0;
10733
10734 proc_t __single effective_proc = socket_proc ? socket_proc : current_proc();
10735 matched_policy = necp_socket_find_policy_match_with_info_locked(necp_kernel_socket_policies_map[NECP_SOCKET_MAP_APP_ID_TO_BUCKET(info.application_id)],
10736 &info,
10737 &filter_control_unit,
10738 route_rule_id_array,
10739 &route_rule_id_array_count,
10740 MAX_AGGREGATE_ROUTE_RULES,
10741 netagent_ids,
10742 NECP_MAX_NETAGENTS,
10743 NULL,
10744 0,
10745 NULL,
10746 0,
10747 effective_proc,
10748 0,
10749 &skip_policy_id,
10750 inp->inp_route.ro_rt,
10751 &drop_dest_policy_result,
10752 &drop_all_bypass,
10753 &flow_divert_aggregate_unit,
10754 so,
10755 debug);
10756
10757 // Check for loopback exception again after the policy match
10758 if (bypass_type == NECP_BYPASS_TYPE_LOOPBACK &&
10759 necp_pass_loopback == NECP_LOOPBACK_PASS_WITH_FILTER &&
10760 (matched_policy == NULL || matched_policy->result != NECP_KERNEL_POLICY_RESULT_SOCKET_DIVERT)) {
10761 // Mark socket as a pass
10762 necp_unscope(inp);
10763 inp->inp_policyresult.policy_id = NECP_KERNEL_POLICY_ID_NO_MATCH;
10764 inp->inp_policyresult.skip_policy_id = NECP_KERNEL_POLICY_ID_NO_MATCH;
10765 inp->inp_policyresult.policy_gencount = 0;
10766 inp->inp_policyresult.app_id = 0;
10767 inp->inp_policyresult.flowhash = 0;
10768 inp->inp_policyresult.results.filter_control_unit = filter_control_unit;
10769 inp->inp_policyresult.results.flow_divert_aggregate_unit = flow_divert_aggregate_unit;
10770 inp->inp_policyresult.results.route_rule_id = 0;
10771 inp->inp_policyresult.results.result = NECP_KERNEL_POLICY_RESULT_PASS;
10772 if (info.soflow_entry != NULL) {
10773 info.soflow_entry->soflow_filter_control_unit = filter_control_unit;
10774 info.soflow_entry->soflow_policies_gencount = 0;
10775 soflow_free_flow(info.soflow_entry);
10776 }
10777
10778 // Unlock
10779 lck_rw_done(&necp_kernel_policy_lock);
10780
10781 if (socket_proc) {
10782 proc_rele(socket_proc);
10783 }
10784
10785 NECP_DATA_TRACE_LOG_SOCKET(debug, so, "SOCKET - INP UPDATE", "RESULT - Loopback PASS", inp->inp_policyresult.policy_id, inp->inp_policyresult.skip_policy_id);
10786 return NECP_KERNEL_POLICY_ID_NONE;
10787 }
10788
10789 // Verify netagents
10790 if (necp_socket_verify_netagents(netagent_ids, debug, so) == false) {
10791 if (necp_debug > 1 || NECP_DATA_TRACE_POLICY_ON(debug)) {
10792 NECPLOG(LOG_ERR, "DATA-TRACE: Socket Policy: <so %llx> (BoundInterface %d Proto %d) Dropping packet because agent is not active", (uint64_t)VM_KERNEL_ADDRPERM(so), info.bound_interface_index, info.protocol);
10793 }
10794
10795 // Mark socket as a drop if required agent is not active
10796 inp->inp_policyresult.policy_id = NECP_KERNEL_POLICY_ID_NO_MATCH;
10797 inp->inp_policyresult.skip_policy_id = NECP_KERNEL_POLICY_ID_NO_MATCH;
10798 inp->inp_policyresult.policy_gencount = necp_kernel_socket_policies_gencount;
10799 inp->inp_policyresult.flowhash = flowhash;
10800 inp->inp_policyresult.results.filter_control_unit = 0;
10801 inp->inp_policyresult.results.flow_divert_aggregate_unit = 0;
10802 inp->inp_policyresult.results.route_rule_id = 0;
10803 inp->inp_policyresult.results.result = NECP_KERNEL_POLICY_RESULT_DROP;
10804 if (info.soflow_entry != NULL) {
10805 info.soflow_entry->soflow_filter_control_unit = 0;
10806 info.soflow_entry->soflow_policies_gencount = necp_kernel_socket_policies_gencount;
10807 soflow_free_flow(info.soflow_entry);
10808 }
10809
10810 // Unlock
10811 lck_rw_done(&necp_kernel_policy_lock);
10812
10813 if (socket_proc) {
10814 proc_rele(socket_proc);
10815 }
10816
10817 NECP_DATA_TRACE_LOG_SOCKET(debug, so, "SOCKET - INP UPDATE", "RESULT - Inactive Agent DROP", inp->inp_policyresult.policy_id, inp->inp_policyresult.skip_policy_id);
10818 return NECP_KERNEL_POLICY_ID_NONE;
10819 }
10820
10821 u_int32_t route_rule_id = 0;
10822 if (route_rule_id_array_count == 1) {
10823 route_rule_id = route_rule_id_array[0];
10824 } else if (route_rule_id_array_count > 1) {
10825 route_rule_id = necp_create_aggregate_route_rule(route_rule_id_array);
10826 }
10827
10828 bool reset_tcp_tunnel_interface = false;
10829 bool send_local_network_denied_event = false;
10830 if (matched_policy) {
10831 // For PASS policy result, clear previous rescope / tunnel inteface
10832 if (matched_policy->result == NECP_KERNEL_POLICY_RESULT_PASS &&
10833 (info.client_flags & NECP_CLIENT_PARAMETER_FLAG_LISTENER || info.is_local)) {
10834 necp_unscope(inp);
10835 necp_clear_tunnel(inp);
10836 if (necp_debug > 1 || NECP_DATA_TRACE_POLICY_ON(debug)) {
10837 NECP_DATA_TRACE_LOG_SOCKET(debug, so, "SOCKET - INP UPDATE", "socket unscoped for PASS result", inp->inp_policyresult.policy_id, skip_policy_id);
10838 }
10839 }
10840 matched_policy_id = matched_policy->id;
10841 inp->inp_policyresult.policy_id = matched_policy->id;
10842 inp->inp_policyresult.skip_policy_id = skip_policy_id;
10843 inp->inp_policyresult.policy_gencount = necp_kernel_socket_policies_gencount;
10844 inp->inp_policyresult.flowhash = flowhash;
10845 inp->inp_policyresult.results.filter_control_unit = filter_control_unit;
10846 inp->inp_policyresult.results.flow_divert_aggregate_unit = flow_divert_aggregate_unit;
10847 inp->inp_policyresult.results.route_rule_id = route_rule_id;
10848 inp->inp_policyresult.results.result = matched_policy->result;
10849 memcpy(&inp->inp_policyresult.results.result_parameter, &matched_policy->result_parameter, sizeof(matched_policy->result_parameter));
10850 if (info.soflow_entry != NULL) {
10851 info.soflow_entry->soflow_filter_control_unit = filter_control_unit;
10852 info.soflow_entry->soflow_policies_gencount = necp_kernel_socket_policies_gencount;
10853 }
10854
10855 if (info.used_responsible_pid && (matched_policy->condition_mask & NECP_KERNEL_CONDITION_REAL_APP_ID)) {
10856 inp->inp_policyresult.app_id = info.real_application_id;
10857 }
10858
10859 if (necp_socket_is_connected(inp) &&
10860 (matched_policy->result == NECP_KERNEL_POLICY_RESULT_DROP ||
10861 (matched_policy->result == NECP_KERNEL_POLICY_RESULT_IP_TUNNEL && !necp_socket_uses_interface(inp, matched_policy->result_parameter.tunnel_interface_index)))) {
10862 NECPLOG(LOG_ERR, "Marking socket in state %d as defunct", so->so_state);
10863 sosetdefunct(current_proc(), so, SHUTDOWN_SOCKET_LEVEL_NECP | SHUTDOWN_SOCKET_LEVEL_DISCONNECT_ALL, TRUE);
10864 } else if (necp_socket_is_connected(inp) &&
10865 matched_policy->result == NECP_KERNEL_POLICY_RESULT_IP_TUNNEL &&
10866 info.protocol == IPPROTO_TCP) {
10867 // Reset TCP socket interface based parameters if tunnel policy changes
10868 reset_tcp_tunnel_interface = true;
10869 }
10870
10871 if (necp_debug > 1 || NECP_DATA_TRACE_POLICY_ON(debug)) {
10872 NECPLOG(LOG_DEBUG, "DATA-TRACE: Socket Policy: <so %llx> (BoundInterface %d Proto %d) Policy %d Skip %d Result %d Parameter %d Filter %d", (uint64_t)VM_KERNEL_ADDRPERM(so), info.bound_interface_index, info.protocol, matched_policy->id, skip_policy_id, matched_policy->result, matched_policy->result_parameter.tunnel_interface_index, inp->inp_policyresult.results.filter_control_unit);
10873 }
10874
10875 if (matched_policy->result == NECP_KERNEL_POLICY_RESULT_DROP &&
10876 matched_policy->result_parameter.drop_flags & NECP_KERNEL_POLICY_DROP_FLAG_LOCAL_NETWORK &&
10877 !(matched_policy->result_parameter.drop_flags & NECP_KERNEL_POLICY_DROP_FLAG_SUPPRESS_ALERTS)) {
10878 // Trigger the event that we dropped due to a local network policy
10879 send_local_network_denied_event = true;
10880 }
10881 } else {
10882 bool drop_all = false;
10883 if (necp_drop_all_order > 0 || info.drop_order > 0 || drop_dest_policy_result == NECP_KERNEL_POLICY_RESULT_DROP) {
10884 // Mark socket as a drop if set
10885 drop_all = true;
10886 if (drop_all_bypass == NECP_DROP_ALL_BYPASS_CHECK_RESULT_NONE) {
10887 drop_all_bypass = necp_check_drop_all_bypass_result(effective_proc);
10888 }
10889 }
10890
10891 // Check if there is a route rule that adds flow divert, if we don't already have a terminal policy result
10892 u_int32_t flow_divert_control_unit = necp_route_get_flow_divert(NULL, netagent_ids, NECP_MAX_NETAGENTS, route_rule_id, &flow_divert_aggregate_unit);
10893 if (flow_divert_control_unit != 0) {
10894 inp->inp_policyresult.policy_id = NECP_KERNEL_POLICY_ID_NO_MATCH;
10895 inp->inp_policyresult.skip_policy_id = NECP_KERNEL_POLICY_ID_NO_MATCH;
10896 inp->inp_policyresult.policy_gencount = necp_kernel_socket_policies_gencount;
10897 inp->inp_policyresult.flowhash = flowhash;
10898 inp->inp_policyresult.results.filter_control_unit = filter_control_unit;
10899 inp->inp_policyresult.results.flow_divert_aggregate_unit = flow_divert_aggregate_unit;
10900 inp->inp_policyresult.results.route_rule_id = route_rule_id;
10901 inp->inp_policyresult.results.result = NECP_KERNEL_POLICY_RESULT_SOCKET_DIVERT;
10902 inp->inp_policyresult.results.result_parameter.flow_divert_control_unit = flow_divert_control_unit;
10903 if (info.soflow_entry != NULL) {
10904 info.soflow_entry->soflow_filter_control_unit = filter_control_unit;
10905 info.soflow_entry->soflow_policies_gencount = necp_kernel_socket_policies_gencount;
10906 }
10907 NECP_DATA_TRACE_LOG_SOCKET(debug, so, "SOCKET - INP UPDATE", "FLOW DIVERT <ROUTE RULE>", inp->inp_policyresult.policy_id, inp->inp_policyresult.skip_policy_id);
10908 } else if (drop_all && drop_all_bypass == NECP_DROP_ALL_BYPASS_CHECK_RESULT_FALSE) {
10909 inp->inp_policyresult.policy_id = NECP_KERNEL_POLICY_ID_NO_MATCH;
10910 inp->inp_policyresult.skip_policy_id = NECP_KERNEL_POLICY_ID_NO_MATCH;
10911 inp->inp_policyresult.policy_gencount = necp_kernel_socket_policies_gencount;
10912 inp->inp_policyresult.flowhash = flowhash;
10913 inp->inp_policyresult.results.filter_control_unit = 0;
10914 inp->inp_policyresult.results.flow_divert_aggregate_unit = 0;
10915 inp->inp_policyresult.results.route_rule_id = 0;
10916 inp->inp_policyresult.results.result = NECP_KERNEL_POLICY_RESULT_DROP;
10917 NECP_DATA_TRACE_LOG_SOCKET(debug, so, "SOCKET - INP UPDATE", "RESULT - DROP <NO MATCH>", inp->inp_policyresult.policy_id, inp->inp_policyresult.skip_policy_id);
10918 if (info.soflow_entry != NULL) {
10919 info.soflow_entry->soflow_filter_control_unit = 0;
10920 info.soflow_entry->soflow_policies_gencount = necp_kernel_socket_policies_gencount;
10921 }
10922 } else {
10923 // Mark non-matching socket so we don't re-check it
10924 necp_unscope(inp);
10925 if (info.client_flags & NECP_CLIENT_PARAMETER_FLAG_LISTENER || info.is_local) {
10926 necp_clear_tunnel(inp);
10927 }
10928 if (necp_debug > 1 || NECP_DATA_TRACE_POLICY_ON(debug)) {
10929 NECP_DATA_TRACE_LOG_SOCKET(debug, so, "SOCKET - INP UPDATE", "socket unscoped for <NO MATCH>", inp->inp_policyresult.policy_id, inp->inp_policyresult.skip_policy_id);
10930 }
10931 inp->inp_policyresult.policy_id = NECP_KERNEL_POLICY_ID_NO_MATCH;
10932 inp->inp_policyresult.skip_policy_id = skip_policy_id;
10933 inp->inp_policyresult.policy_gencount = necp_kernel_socket_policies_gencount;
10934 inp->inp_policyresult.flowhash = flowhash;
10935 inp->inp_policyresult.results.filter_control_unit = filter_control_unit; // We may have matched a filter, so mark it!
10936 inp->inp_policyresult.results.flow_divert_aggregate_unit = flow_divert_aggregate_unit;
10937 inp->inp_policyresult.results.route_rule_id = route_rule_id; // We may have matched a route rule, so mark it!
10938 inp->inp_policyresult.results.result = NECP_KERNEL_POLICY_RESULT_NONE;
10939 if (info.soflow_entry != NULL) {
10940 info.soflow_entry->soflow_filter_control_unit = filter_control_unit;
10941 info.soflow_entry->soflow_policies_gencount = necp_kernel_socket_policies_gencount;
10942 }
10943 NECP_DATA_TRACE_LOG_SOCKET(debug, so, "SOCKET - INP UPDATE", "RESULT - NO MATCH", inp->inp_policyresult.policy_id, inp->inp_policyresult.skip_policy_id);
10944 }
10945 }
10946
10947 if (necp_check_missing_client_drop(effective_proc, &info) ||
10948 necp_check_restricted_multicast_drop(effective_proc, &info, false)) {
10949 // Mark as drop
10950 inp->inp_policyresult.policy_id = NECP_KERNEL_POLICY_ID_NO_MATCH;
10951 inp->inp_policyresult.skip_policy_id = NECP_KERNEL_POLICY_ID_NO_MATCH;
10952 inp->inp_policyresult.policy_gencount = necp_kernel_socket_policies_gencount;
10953 inp->inp_policyresult.flowhash = flowhash;
10954 inp->inp_policyresult.results.filter_control_unit = 0;
10955 inp->inp_policyresult.results.flow_divert_aggregate_unit = 0;
10956 inp->inp_policyresult.results.route_rule_id = 0;
10957 inp->inp_policyresult.results.result = NECP_KERNEL_POLICY_RESULT_DROP;
10958 if (info.soflow_entry != NULL) {
10959 info.soflow_entry->soflow_filter_control_unit = 0;
10960 info.soflow_entry->soflow_policies_gencount = necp_kernel_socket_policies_gencount;
10961 }
10962 if (necp_debug > 1 || NECP_DATA_TRACE_POLICY_ON(debug)) {
10963 NECP_DATA_TRACE_LOG_SOCKET(debug, so, "SOCKET - INP UPDATE", "RESULT - DROP <MISSING CLIENT>", 0, 0);
10964 }
10965 }
10966
10967 if (info.soflow_entry != NULL) {
10968 soflow_free_flow(info.soflow_entry);
10969 }
10970
10971 // Unlock
10972 lck_rw_done(&necp_kernel_policy_lock);
10973
10974 if (reset_tcp_tunnel_interface) {
10975 // Update MSS when not holding the policy lock to avoid recursive locking
10976 tcp_mtudisc(inp, 0);
10977
10978 // Update TSO flag based on the tunnel interface
10979 necp_socket_ip_tunnel_tso(inp);
10980 }
10981
10982 if (send_local_network_denied_event && inp->inp_policyresult.network_denied_notifies == 0) {
10983 inp->inp_policyresult.network_denied_notifies++;
10984 #if defined(XNU_TARGET_OS_OSX)
10985 bool should_report_responsible_pid = (so->so_rpid > 0 && so->so_rpid != ((so->so_flags & SOF_DELEGATED) ? so->e_pid : so->last_pid));
10986 necp_send_network_denied_event(should_report_responsible_pid ? so->so_rpid : ((so->so_flags & SOF_DELEGATED) ? so->e_pid : so->last_pid),
10987 should_report_responsible_pid ? so->so_ruuid : ((so->so_flags & SOF_DELEGATED) ? so->e_uuid : so->last_uuid),
10988 NETPOLICY_NETWORKTYPE_LOCAL);
10989 #else
10990 necp_send_network_denied_event(((so->so_flags & SOF_DELEGATED) ? so->e_pid : so->last_pid),
10991 ((so->so_flags & SOF_DELEGATED) ? so->e_uuid : so->last_uuid),
10992 NETPOLICY_NETWORKTYPE_LOCAL);
10993 #endif
10994 }
10995
10996 if (socket_proc) {
10997 proc_rele(socket_proc);
10998 }
10999
11000 return matched_policy_id;
11001 }
11002
11003 static bool
necp_ip_output_check_policy(struct necp_kernel_ip_output_policy * kernel_policy,necp_kernel_policy_id socket_policy_id,necp_kernel_policy_id socket_skip_policy_id,u_int32_t bound_interface_index,u_int32_t last_interface_index,u_int16_t protocol,union necp_sockaddr_union * local,union necp_sockaddr_union * remote,struct rtentry * rt,u_int16_t pf_tag,int debug)11004 necp_ip_output_check_policy(struct necp_kernel_ip_output_policy *kernel_policy, necp_kernel_policy_id socket_policy_id, necp_kernel_policy_id socket_skip_policy_id, u_int32_t bound_interface_index, u_int32_t last_interface_index, u_int16_t protocol, union necp_sockaddr_union *local, union necp_sockaddr_union *remote, struct rtentry *rt, u_int16_t pf_tag, int debug)
11005 {
11006 u_int32_t bound_interface_flags = 0;
11007 u_int32_t bound_interface_eflags = 0;
11008 u_int32_t bound_interface_xflags = 0;
11009
11010 if (!(kernel_policy->condition_mask & NECP_KERNEL_CONDITION_ALL_INTERFACES)) {
11011 if (kernel_policy->condition_mask & NECP_KERNEL_CONDITION_BOUND_INTERFACE) {
11012 u_int32_t cond_bound_interface_index = kernel_policy->cond_bound_interface ? kernel_policy->cond_bound_interface->if_index : 0;
11013 NECP_DATA_TRACE_LOG_CONDITION_IP(debug, "IP", kernel_policy->condition_negated_mask & NECP_KERNEL_CONDITION_BOUND_INTERFACE,
11014 "NECP_KERNEL_CONDITION_BOUND_INTERFACE",
11015 cond_bound_interface_index, bound_interface_index);
11016 if (kernel_policy->condition_negated_mask & NECP_KERNEL_CONDITION_BOUND_INTERFACE) {
11017 if (bound_interface_index == cond_bound_interface_index) {
11018 // No match, matches forbidden interface
11019 return FALSE;
11020 }
11021 } else {
11022 if (bound_interface_index != cond_bound_interface_index) {
11023 // No match, does not match required interface
11024 return FALSE;
11025 }
11026 }
11027 }
11028 if (kernel_policy->condition_mask & NECP_KERNEL_CONDITION_BOUND_INTERFACE_FLAGS) {
11029 if (bound_interface_index != IFSCOPE_NONE) {
11030 ifnet_head_lock_shared();
11031 ifnet_t interface = ifindex2ifnet[bound_interface_index];
11032 if (interface != NULL) {
11033 bound_interface_flags = interface->if_flags;
11034 bound_interface_eflags = interface->if_eflags;
11035 bound_interface_xflags = interface->if_xflags;
11036 }
11037 ifnet_head_done();
11038 }
11039
11040 NECP_DATA_TRACE_LOG_CONDITION_IP(debug, "IP", kernel_policy->condition_negated_mask & NECP_KERNEL_CONDITION_BOUND_INTERFACE_FLAGS,
11041 "NECP_KERNEL_CONDITION_BOUND_INTERFACE_FLAGS - flags", kernel_policy->cond_bound_interface_flags, bound_interface_flags);
11042 NECP_DATA_TRACE_LOG_CONDITION_IP(debug, "IP", kernel_policy->condition_negated_mask & NECP_KERNEL_CONDITION_BOUND_INTERFACE_FLAGS,
11043 "NECP_KERNEL_CONDITION_BOUND_INTERFACE_FLAGS - eflags", kernel_policy->cond_bound_interface_eflags, bound_interface_eflags);
11044 NECP_DATA_TRACE_LOG_CONDITION_IP(debug, "IP", kernel_policy->condition_negated_mask & NECP_KERNEL_CONDITION_BOUND_INTERFACE_FLAGS,
11045 "NECP_KERNEL_CONDITION_BOUND_INTERFACE_FLAGS - xflags", kernel_policy->cond_bound_interface_xflags, bound_interface_xflags);
11046 if (kernel_policy->condition_negated_mask & NECP_KERNEL_CONDITION_BOUND_INTERFACE_FLAGS) {
11047 if ((kernel_policy->cond_bound_interface_flags && (bound_interface_flags & kernel_policy->cond_bound_interface_flags)) ||
11048 (kernel_policy->cond_bound_interface_eflags && (bound_interface_eflags & kernel_policy->cond_bound_interface_eflags)) ||
11049 (kernel_policy->cond_bound_interface_xflags && (bound_interface_xflags & kernel_policy->cond_bound_interface_xflags))) {
11050 // No match, matches some forbidden interface flags
11051 return FALSE;
11052 }
11053 } else {
11054 if ((kernel_policy->cond_bound_interface_flags && !(bound_interface_flags & kernel_policy->cond_bound_interface_flags)) ||
11055 (kernel_policy->cond_bound_interface_eflags && !(bound_interface_eflags & kernel_policy->cond_bound_interface_eflags)) ||
11056 (kernel_policy->cond_bound_interface_xflags && !(bound_interface_xflags & kernel_policy->cond_bound_interface_xflags))) {
11057 // No match, does not match some required interface xflags
11058 return FALSE;
11059 }
11060 }
11061 }
11062 if (!(kernel_policy->condition_mask & NECP_KERNEL_CONDITION_BOUND_INTERFACE) &&
11063 !(kernel_policy->condition_mask & NECP_KERNEL_CONDITION_BOUND_INTERFACE_FLAGS)) {
11064 NECP_DATA_TRACE_LOG_CONDITION_IP(debug, "IP", false, "Requiring no bound interface", 0, bound_interface_index);
11065 if (bound_interface_index != 0) {
11066 // No match, requires a non-bound packet
11067 return FALSE;
11068 }
11069 }
11070 }
11071
11072 if (kernel_policy->condition_mask == 0) {
11073 return TRUE;
11074 }
11075
11076 if (kernel_policy->condition_mask & NECP_KERNEL_CONDITION_POLICY_ID) {
11077 necp_kernel_policy_id matched_policy_id =
11078 kernel_policy->result == NECP_KERNEL_POLICY_RESULT_SKIP ? socket_skip_policy_id : socket_policy_id;
11079 NECP_DATA_TRACE_LOG_CONDITION_IP3(debug, "IP", false,
11080 "NECP_KERNEL_CONDITION_POLICY_ID",
11081 kernel_policy->cond_policy_id, 0, 0,
11082 matched_policy_id, socket_policy_id, socket_skip_policy_id);
11083 if (matched_policy_id != kernel_policy->cond_policy_id) {
11084 // No match, does not match required id
11085 return FALSE;
11086 }
11087 }
11088
11089 if (kernel_policy->condition_mask & NECP_KERNEL_CONDITION_LAST_INTERFACE) {
11090 NECP_DATA_TRACE_LOG_CONDITION_IP(debug, "IP", false,
11091 "NECP_KERNEL_CONDITION_LAST_INTERFACE",
11092 kernel_policy->cond_last_interface_index, last_interface_index);
11093 if (last_interface_index != kernel_policy->cond_last_interface_index) {
11094 return FALSE;
11095 }
11096 }
11097
11098 if (kernel_policy->condition_mask & NECP_KERNEL_CONDITION_PROTOCOL) {
11099 NECP_DATA_TRACE_LOG_CONDITION_IP(debug, "IP", kernel_policy->condition_negated_mask & NECP_KERNEL_CONDITION_PROTOCOL,
11100 "NECP_KERNEL_CONDITION_PROTOCOL",
11101 kernel_policy->cond_protocol, protocol);
11102 if (kernel_policy->condition_negated_mask & NECP_KERNEL_CONDITION_PROTOCOL) {
11103 if (protocol == kernel_policy->cond_protocol) {
11104 // No match, matches forbidden protocol
11105 return FALSE;
11106 }
11107 } else {
11108 if (protocol != kernel_policy->cond_protocol) {
11109 // No match, does not match required protocol
11110 return FALSE;
11111 }
11112 }
11113 }
11114
11115 if (kernel_policy->condition_mask & NECP_KERNEL_CONDITION_LOCAL_NETWORKS) {
11116 bool is_local = FALSE;
11117 bool include_local_addresses = (kernel_policy->cond_local_networks_flags & NECP_POLICY_LOCAL_NETWORKS_FLAG_INCLUDE_LOCAL_ADDRESSES);
11118
11119 if (rt != NULL) {
11120 is_local = IS_NECP_DEST_IN_LOCAL_NETWORKS(rt, remote, include_local_addresses);
11121 } else {
11122 is_local = necp_is_route_local(remote, include_local_addresses);
11123 }
11124 NECP_DATA_TRACE_LOG_CONDITION_IP(debug, "IP", kernel_policy->condition_negated_mask & NECP_KERNEL_CONDITION_LOCAL_NETWORKS, "NECP_KERNEL_CONDITION_LOCAL_NETWORKS", 0, is_local);
11125 if (kernel_policy->condition_negated_mask & NECP_KERNEL_CONDITION_LOCAL_NETWORKS) {
11126 if (is_local) {
11127 // Match local-networks, fail
11128 return FALSE;
11129 }
11130 } else {
11131 if (!is_local) {
11132 // Either no route to validate or no match for local networks
11133 return FALSE;
11134 }
11135 }
11136 }
11137
11138 if (kernel_policy->condition_mask & NECP_KERNEL_CONDITION_LOCAL_START) {
11139 if (kernel_policy->condition_mask & NECP_KERNEL_CONDITION_LOCAL_END) {
11140 bool inRange = necp_is_addr_in_range(SA(local), SA(&kernel_policy->cond_local_start), SA(&kernel_policy->cond_local_end));
11141 NECP_DATA_TRACE_LOG_CONDITION_IP(debug, "IP", kernel_policy->condition_negated_mask & NECP_KERNEL_CONDITION_LOCAL_END, "local address range", 0, 0);
11142 if (kernel_policy->condition_negated_mask & NECP_KERNEL_CONDITION_LOCAL_END) {
11143 if (inRange) {
11144 return FALSE;
11145 }
11146 } else {
11147 if (!inRange) {
11148 return FALSE;
11149 }
11150 }
11151 } else if (kernel_policy->condition_mask & NECP_KERNEL_CONDITION_LOCAL_PREFIX) {
11152 bool inSubnet = necp_is_addr_in_subnet(SA(local), SA(&kernel_policy->cond_local_start), kernel_policy->cond_local_prefix);
11153 NECP_DATA_TRACE_LOG_CONDITION_IP(debug, "IP", kernel_policy->condition_negated_mask & NECP_KERNEL_CONDITION_LOCAL_PREFIX, "local address with prefix", 0, 0);
11154 if (kernel_policy->condition_negated_mask & NECP_KERNEL_CONDITION_LOCAL_PREFIX) {
11155 if (inSubnet) {
11156 return FALSE;
11157 }
11158 } else {
11159 if (!inSubnet) {
11160 return FALSE;
11161 }
11162 }
11163 }
11164 }
11165
11166 if (kernel_policy->condition_mask & NECP_KERNEL_CONDITION_REMOTE_START) {
11167 if (kernel_policy->condition_mask & NECP_KERNEL_CONDITION_REMOTE_END) {
11168 bool inRange = necp_is_addr_in_range(SA(remote), SA(&kernel_policy->cond_remote_start), SA(&kernel_policy->cond_remote_end));
11169 NECP_DATA_TRACE_LOG_CONDITION_IP(debug, "IP", kernel_policy->condition_negated_mask & NECP_KERNEL_CONDITION_REMOTE_END, "remote address range", 0, 0);
11170 if (kernel_policy->condition_negated_mask & NECP_KERNEL_CONDITION_REMOTE_END) {
11171 if (inRange) {
11172 return FALSE;
11173 }
11174 } else {
11175 if (!inRange) {
11176 return FALSE;
11177 }
11178 }
11179 } else if (kernel_policy->condition_mask & NECP_KERNEL_CONDITION_REMOTE_PREFIX) {
11180 bool inSubnet = necp_is_addr_in_subnet(SA(remote), SA(&kernel_policy->cond_remote_start), kernel_policy->cond_remote_prefix);
11181 NECP_DATA_TRACE_LOG_CONDITION_IP(debug, "IP", kernel_policy->condition_negated_mask & NECP_KERNEL_CONDITION_REMOTE_PREFIX, "remote address with prefix", 0, 0);
11182 if (kernel_policy->condition_negated_mask & NECP_KERNEL_CONDITION_REMOTE_PREFIX) {
11183 if (inSubnet) {
11184 return FALSE;
11185 }
11186 } else {
11187 if (!inSubnet) {
11188 return FALSE;
11189 }
11190 }
11191 }
11192 }
11193
11194 if (kernel_policy->condition_mask & NECP_KERNEL_CONDITION_SCHEME_PORT) {
11195 u_int16_t remote_port = 0;
11196 if ((SA(remote))->sa_family == AF_INET || SA(remote)->sa_family == AF_INET6) {
11197 remote_port = SIN(remote)->sin_port;
11198 }
11199 NECP_DATA_TRACE_LOG_CONDITION_IP(debug, "IP", kernel_policy->condition_negated_mask & NECP_KERNEL_CONDITION_SCHEME_PORT,
11200 "NECP_KERNEL_CONDITION_SCHEME_PORT",
11201 0, remote_port);
11202 if (kernel_policy->condition_negated_mask & NECP_KERNEL_CONDITION_SCHEME_PORT) {
11203 if (kernel_policy->cond_scheme_port == remote_port) {
11204 return FALSE;
11205 }
11206 } else {
11207 if (kernel_policy->cond_scheme_port != remote_port) {
11208 return FALSE;
11209 }
11210 }
11211 }
11212
11213 if (kernel_policy->condition_mask & NECP_KERNEL_CONDITION_PACKET_FILTER_TAGS) {
11214 bool tags_matched = false;
11215 NECP_DATA_TRACE_LOG_CONDITION_IP(debug, "IP", kernel_policy->condition_negated_mask & NECP_KERNEL_CONDITION_PACKET_FILTER_TAGS,
11216 "NECP_KERNEL_CONDITION_PACKET_FILTER_TAGS",
11217 kernel_policy->cond_packet_filter_tags, pf_tag);
11218 if (kernel_policy->cond_packet_filter_tags & NECP_POLICY_CONDITION_PACKET_FILTER_TAG_STACK_DROP) {
11219 if ((pf_tag & PF_TAG_ID_STACK_DROP) == PF_TAG_ID_STACK_DROP) {
11220 tags_matched = true;
11221 }
11222
11223 if (kernel_policy->condition_negated_mask & NECP_KERNEL_CONDITION_PACKET_FILTER_TAGS) {
11224 if (tags_matched) {
11225 return FALSE;
11226 }
11227 } else {
11228 if (!tags_matched) {
11229 return FALSE;
11230 }
11231 }
11232 }
11233 }
11234
11235 return TRUE;
11236 }
11237
11238 static inline struct necp_kernel_ip_output_policy *
necp_ip_output_find_policy_match_locked(necp_kernel_policy_id socket_policy_id,necp_kernel_policy_id socket_skip_policy_id,u_int32_t bound_interface_index,u_int32_t last_interface_index,u_int16_t protocol,union necp_sockaddr_union * local_addr,union necp_sockaddr_union * remote_addr,struct rtentry * rt,u_int16_t pf_tag,u_int32_t * return_route_rule_id,necp_kernel_policy_result * return_drop_dest_policy_result,necp_drop_all_bypass_check_result_t * return_drop_all_bypass,int debug)11239 necp_ip_output_find_policy_match_locked(necp_kernel_policy_id socket_policy_id, necp_kernel_policy_id socket_skip_policy_id, u_int32_t bound_interface_index, u_int32_t last_interface_index, u_int16_t protocol, union necp_sockaddr_union *local_addr, union necp_sockaddr_union *remote_addr, struct rtentry *rt, u_int16_t pf_tag, u_int32_t *return_route_rule_id, necp_kernel_policy_result *return_drop_dest_policy_result, necp_drop_all_bypass_check_result_t *return_drop_all_bypass, int debug)
11240 {
11241 u_int32_t skip_order = 0;
11242 u_int32_t skip_session_order = 0;
11243 struct necp_kernel_ip_output_policy *matched_policy = NULL;
11244 struct necp_kernel_ip_output_policy **policy_search_array = necp_kernel_ip_output_policies_map[NECP_IP_OUTPUT_MAP_ID_TO_BUCKET(socket_policy_id)];
11245 u_int32_t route_rule_id_array[MAX_AGGREGATE_ROUTE_RULES];
11246 size_t route_rule_id_count = 0;
11247 necp_drop_all_bypass_check_result_t drop_all_bypass = NECP_DROP_ALL_BYPASS_CHECK_RESULT_NONE;
11248 if (return_drop_all_bypass != NULL) {
11249 *return_drop_all_bypass = drop_all_bypass;
11250 }
11251
11252 if (return_route_rule_id != NULL) {
11253 *return_route_rule_id = 0;
11254 }
11255
11256 *return_drop_dest_policy_result = NECP_KERNEL_POLICY_RESULT_NONE;
11257
11258 if (policy_search_array != NULL) {
11259 for (int i = 0; policy_search_array[i] != NULL; i++) {
11260 NECP_DATA_TRACE_LOG_POLICY_IP(debug, "IP", "EXAMINING");
11261 if (necp_drop_all_order != 0 && policy_search_array[i]->session_order >= necp_drop_all_order) {
11262 // We've hit a drop all rule
11263 if (drop_all_bypass == NECP_DROP_ALL_BYPASS_CHECK_RESULT_NONE) {
11264 drop_all_bypass = necp_check_drop_all_bypass_result(NULL);
11265 if (return_drop_all_bypass != NULL) {
11266 *return_drop_all_bypass = drop_all_bypass;
11267 }
11268 }
11269 if (drop_all_bypass == NECP_DROP_ALL_BYPASS_CHECK_RESULT_FALSE) {
11270 NECP_DATA_TRACE_LOG_IP_RESULT(debug, "IP", "RESULT - DROP (session order > drop-all order)");
11271 break;
11272 }
11273 }
11274 if (necp_drop_dest_policy.entry_count > 0 &&
11275 necp_address_matches_drop_dest_policy(remote_addr, policy_search_array[i]->session_order)) {
11276 // We've hit a drop by destination address rule
11277 *return_drop_dest_policy_result = NECP_KERNEL_POLICY_RESULT_DROP;
11278 NECP_DATA_TRACE_LOG_IP_RESULT(debug, "IP", "RESULT - DROP (destination address rule)");
11279 break;
11280 }
11281 if (skip_session_order && policy_search_array[i]->session_order >= skip_session_order) {
11282 // Done skipping
11283 skip_order = 0;
11284 skip_session_order = 0;
11285 }
11286 if (skip_order) {
11287 if (policy_search_array[i]->order < skip_order) {
11288 // Skip this policy
11289 NECP_DATA_TRACE_LOG_POLICY_IP(debug, "IP", "SKIP (session order < skip-order)");
11290 continue;
11291 } else {
11292 // Done skipping
11293 skip_order = 0;
11294 skip_session_order = 0;
11295 }
11296 } else if (skip_session_order) {
11297 // Skip this policy
11298 NECP_DATA_TRACE_LOG_POLICY_IP(debug, "IP", "SKIP (skip-session-order)");
11299 continue;
11300 }
11301
11302 if (necp_ip_output_check_policy(policy_search_array[i], socket_policy_id, socket_skip_policy_id, bound_interface_index, last_interface_index, protocol, local_addr, remote_addr, rt, pf_tag, debug)) {
11303 if (!debug && necp_data_tracing_session_order) {
11304 if ((necp_data_tracing_session_order == policy_search_array[i]->session_order) &&
11305 (!necp_data_tracing_policy_order || (necp_data_tracing_policy_order == policy_search_array[i]->order))) {
11306 NECP_DATA_TRACE_LOG_IP_RESULT(true, "IP", "DEBUG - MATCHED POLICY");
11307 }
11308 }
11309
11310 if (policy_search_array[i]->result == NECP_KERNEL_POLICY_RESULT_ROUTE_RULES) {
11311 if (return_route_rule_id != NULL && route_rule_id_count < MAX_AGGREGATE_ROUTE_RULES) {
11312 route_rule_id_array[route_rule_id_count++] = policy_search_array[i]->result_parameter.route_rule_id;
11313 }
11314 continue;
11315 } else if (policy_search_array[i]->result == NECP_KERNEL_POLICY_RESULT_SKIP) {
11316 skip_order = policy_search_array[i]->result_parameter.skip_policy_order;
11317 skip_session_order = policy_search_array[i]->session_order + 1;
11318 NECP_DATA_TRACE_LOG_POLICY_IP(debug, "IP", "MATCHED SKIP POLICY");
11319 continue;
11320 }
11321
11322 // Passed all tests, found a match
11323 matched_policy = policy_search_array[i];
11324 NECP_DATA_TRACE_LOG_IP_RESULT(debug, "IP", "RESULT - MATCHED POLICY");
11325 break;
11326 }
11327 }
11328 }
11329
11330 if (route_rule_id_count == 1) {
11331 *return_route_rule_id = route_rule_id_array[0];
11332 } else if (route_rule_id_count > 1) {
11333 *return_route_rule_id = necp_create_aggregate_route_rule(route_rule_id_array);
11334 }
11335
11336 return matched_policy;
11337 }
11338
11339 static inline bool
necp_output_bypass(struct mbuf * packet)11340 necp_output_bypass(struct mbuf *packet)
11341 {
11342 if (necp_pass_loopback > 0 && necp_is_loopback(NULL, NULL, NULL, packet, IFSCOPE_NONE)) {
11343 return true;
11344 }
11345 if (necp_pass_keepalives > 0 && necp_get_is_keepalive_from_packet(packet)) {
11346 return true;
11347 }
11348 if (necp_is_intcoproc(NULL, packet)) {
11349 return true;
11350 }
11351 return false;
11352 }
11353
11354 necp_kernel_policy_id
necp_ip_output_find_policy_match(struct mbuf * packet,int flags,struct ip_out_args * ipoa,struct rtentry * rt,necp_kernel_policy_result * result,necp_kernel_policy_result_parameter * result_parameter)11355 necp_ip_output_find_policy_match(struct mbuf *packet, int flags, struct ip_out_args *ipoa, struct rtentry *rt,
11356 necp_kernel_policy_result *result, necp_kernel_policy_result_parameter *result_parameter)
11357 {
11358 struct ip *ip = NULL;
11359 int hlen = sizeof(struct ip);
11360 necp_kernel_policy_id socket_policy_id = NECP_KERNEL_POLICY_ID_NONE;
11361 necp_kernel_policy_id socket_skip_policy_id = NECP_KERNEL_POLICY_ID_NONE;
11362 necp_kernel_policy_id matched_policy_id = NECP_KERNEL_POLICY_ID_NONE;
11363 struct necp_kernel_ip_output_policy *matched_policy = NULL;
11364 u_int16_t protocol = 0;
11365 u_int32_t bound_interface_index = 0;
11366 u_int32_t last_interface_index = 0;
11367 union necp_sockaddr_union local_addr = { };
11368 union necp_sockaddr_union remote_addr = { };
11369 u_int32_t drop_dest_policy_result = NECP_KERNEL_POLICY_RESULT_NONE;
11370 necp_drop_all_bypass_check_result_t drop_all_bypass = NECP_DROP_ALL_BYPASS_CHECK_RESULT_NONE;
11371 u_int16_t pf_tag = 0;
11372
11373 if (result) {
11374 *result = 0;
11375 }
11376
11377 if (result_parameter) {
11378 memset(result_parameter, 0, sizeof(*result_parameter));
11379 }
11380
11381 if (packet == NULL) {
11382 return NECP_KERNEL_POLICY_ID_NONE;
11383 }
11384
11385 socket_policy_id = necp_get_policy_id_from_packet(packet);
11386 socket_skip_policy_id = necp_get_skip_policy_id_from_packet(packet);
11387 pf_tag = necp_get_packet_filter_tags_from_packet(packet);
11388
11389 // Exit early for an empty list
11390 // Don't lock. Possible race condition, but we don't want the performance hit.
11391 if (necp_kernel_ip_output_policies_count == 0 ||
11392 (socket_policy_id == NECP_KERNEL_POLICY_ID_NONE && necp_kernel_ip_output_policies_non_id_count == 0 && necp_drop_dest_policy.entry_count == 0)) {
11393 if (necp_drop_all_order > 0) {
11394 matched_policy_id = NECP_KERNEL_POLICY_ID_NO_MATCH;
11395 if (result) {
11396 if (necp_output_bypass(packet)) {
11397 *result = NECP_KERNEL_POLICY_RESULT_PASS;
11398 } else {
11399 *result = NECP_KERNEL_POLICY_RESULT_DROP;
11400 }
11401 }
11402 }
11403
11404 return matched_policy_id;
11405 }
11406
11407 // Check for loopback exception
11408 if (necp_output_bypass(packet)) {
11409 matched_policy_id = NECP_KERNEL_POLICY_ID_NO_MATCH;
11410 if (result) {
11411 *result = NECP_KERNEL_POLICY_RESULT_PASS;
11412 }
11413 return matched_policy_id;
11414 }
11415
11416 last_interface_index = necp_get_last_interface_index_from_packet(packet);
11417
11418 // Process packet to get relevant fields
11419 ip = mtod(packet, struct ip *);
11420 #ifdef _IP_VHL
11421 hlen = _IP_VHL_HL(ip->ip_vhl) << 2;
11422 #else
11423 hlen = ip->ip_hl << 2;
11424 #endif
11425
11426 protocol = ip->ip_p;
11427
11428 if ((flags & IP_OUTARGS) && (ipoa != NULL) &&
11429 (ipoa->ipoa_flags & IPOAF_BOUND_IF) &&
11430 ipoa->ipoa_boundif != IFSCOPE_NONE) {
11431 bound_interface_index = ipoa->ipoa_boundif;
11432 }
11433
11434 local_addr.sin.sin_family = AF_INET;
11435 local_addr.sin.sin_len = sizeof(struct sockaddr_in);
11436 memcpy(&local_addr.sin.sin_addr, &ip->ip_src, sizeof(ip->ip_src));
11437
11438 remote_addr.sin.sin_family = AF_INET;
11439 remote_addr.sin.sin_len = sizeof(struct sockaddr_in);
11440 memcpy(&SIN(&remote_addr)->sin_addr, &ip->ip_dst, sizeof(ip->ip_dst));
11441
11442 switch (protocol) {
11443 case IPPROTO_TCP: {
11444 struct tcphdr th;
11445 if ((int)(hlen + sizeof(th)) <= packet->m_pkthdr.len) {
11446 m_copydata(packet, hlen, sizeof(th), (u_int8_t *)&th);
11447 SIN(&local_addr)->sin_port = th.th_sport;
11448 SIN(&remote_addr)->sin_port = th.th_dport;
11449 }
11450 break;
11451 }
11452 case IPPROTO_UDP: {
11453 struct udphdr uh;
11454 if ((int)(hlen + sizeof(uh)) <= packet->m_pkthdr.len) {
11455 m_copydata(packet, hlen, sizeof(uh), (u_int8_t *)&uh);
11456 SIN(&local_addr)->sin_port = uh.uh_sport;
11457 SIN(&remote_addr)->sin_port = uh.uh_dport;
11458 }
11459 break;
11460 }
11461 default: {
11462 SIN(&local_addr)->sin_port = 0;
11463 SIN(&remote_addr)->sin_port = 0;
11464 break;
11465 }
11466 }
11467
11468 // Match packet to policy
11469 lck_rw_lock_shared(&necp_kernel_policy_lock);
11470 u_int32_t route_rule_id = 0;
11471
11472 int debug = NECP_ENABLE_DATA_TRACE((&local_addr), (&remote_addr), protocol, 0, bound_interface_index);
11473 NECP_DATA_TRACE_LOG_IP4(debug, "IP4", "START");
11474
11475 matched_policy = necp_ip_output_find_policy_match_locked(socket_policy_id, socket_skip_policy_id, bound_interface_index, last_interface_index, protocol, &local_addr, &remote_addr, rt, pf_tag, &route_rule_id, &drop_dest_policy_result, &drop_all_bypass, debug);
11476 if (matched_policy) {
11477 matched_policy_id = matched_policy->id;
11478 if (result) {
11479 *result = matched_policy->result;
11480 }
11481
11482 if (result_parameter) {
11483 memcpy(result_parameter, &matched_policy->result_parameter, sizeof(matched_policy->result_parameter));
11484 }
11485
11486 if (route_rule_id != 0 &&
11487 packet->m_pkthdr.necp_mtag.necp_route_rule_id == 0) {
11488 packet->m_pkthdr.necp_mtag.necp_route_rule_id = route_rule_id;
11489 }
11490
11491 if (necp_debug > 1 || NECP_DATA_TRACE_POLICY_ON(debug)) {
11492 NECPLOG(LOG_DEBUG, "DATA-TRACE: IP Output: RESULT - MATCHED (ID %d BoundInterface %d LastInterface %d Proto %d) Policy %d Result %d Parameter %d Route Rule %u", socket_policy_id, bound_interface_index, last_interface_index, protocol, matched_policy->id, matched_policy->result, matched_policy->result_parameter.tunnel_interface_index, route_rule_id);
11493 }
11494 } else {
11495 bool drop_all = false;
11496 /*
11497 * Apply drop-all only to packets which have never matched a primary policy (check
11498 * if the packet saved policy id is none or falls within the socket policy id range).
11499 */
11500 if (socket_policy_id < NECP_KERNEL_POLICY_ID_FIRST_VALID_IP &&
11501 (necp_drop_all_order > 0 || drop_dest_policy_result == NECP_KERNEL_POLICY_RESULT_DROP)) {
11502 drop_all = true;
11503 if (drop_all_bypass == NECP_DROP_ALL_BYPASS_CHECK_RESULT_NONE) {
11504 drop_all_bypass = necp_check_drop_all_bypass_result(NULL);
11505 }
11506 }
11507 if (drop_all && drop_all_bypass == NECP_DROP_ALL_BYPASS_CHECK_RESULT_FALSE) {
11508 matched_policy_id = NECP_KERNEL_POLICY_ID_NO_MATCH;
11509 if (result) {
11510 *result = NECP_KERNEL_POLICY_RESULT_DROP;
11511 NECP_DATA_TRACE_LOG_IP4(debug, "IP4", "RESULT - DROP <NO MATCH>");
11512 }
11513 } else if (route_rule_id != 0 &&
11514 packet->m_pkthdr.necp_mtag.necp_route_rule_id == 0) {
11515 // If we matched a route rule, mark it
11516 packet->m_pkthdr.necp_mtag.necp_route_rule_id = route_rule_id;
11517 }
11518 if (necp_debug > 1 || NECP_DATA_TRACE_POLICY_ON(debug)) {
11519 NECPLOG(LOG_DEBUG, "DATA-TRACE: IP Output: RESULT - NO MATCH (ID %d BoundInterface %d LastInterface %d Proto %d)", socket_policy_id, bound_interface_index, last_interface_index, protocol);
11520 }
11521 }
11522
11523 lck_rw_done(&necp_kernel_policy_lock);
11524
11525 return matched_policy_id;
11526 }
11527
11528 necp_kernel_policy_id
necp_ip6_output_find_policy_match(struct mbuf * packet,int flags,struct ip6_out_args * ip6oa,struct rtentry * rt,necp_kernel_policy_result * result,necp_kernel_policy_result_parameter * result_parameter)11529 necp_ip6_output_find_policy_match(struct mbuf *packet, int flags, struct ip6_out_args *ip6oa, struct rtentry *rt,
11530 necp_kernel_policy_result *result, necp_kernel_policy_result_parameter *result_parameter)
11531 {
11532 struct ip6_hdr *ip6 = NULL;
11533 int next = -1;
11534 int offset = 0;
11535 necp_kernel_policy_id socket_policy_id = NECP_KERNEL_POLICY_ID_NONE;
11536 necp_kernel_policy_id socket_skip_policy_id = NECP_KERNEL_POLICY_ID_NONE;
11537 necp_kernel_policy_id matched_policy_id = NECP_KERNEL_POLICY_ID_NONE;
11538 struct necp_kernel_ip_output_policy *matched_policy = NULL;
11539 u_int16_t protocol = 0;
11540 u_int32_t bound_interface_index = 0;
11541 u_int32_t last_interface_index = 0;
11542 union necp_sockaddr_union local_addr = { };
11543 union necp_sockaddr_union remote_addr = { };
11544 u_int32_t drop_dest_policy_result = NECP_KERNEL_POLICY_RESULT_NONE;
11545 necp_drop_all_bypass_check_result_t drop_all_bypass = NECP_DROP_ALL_BYPASS_CHECK_RESULT_NONE;
11546 u_int16_t pf_tag = 0;
11547
11548 if (result) {
11549 *result = 0;
11550 }
11551
11552 if (result_parameter) {
11553 memset(result_parameter, 0, sizeof(*result_parameter));
11554 }
11555
11556 if (packet == NULL) {
11557 return NECP_KERNEL_POLICY_ID_NONE;
11558 }
11559
11560 socket_policy_id = necp_get_policy_id_from_packet(packet);
11561 socket_skip_policy_id = necp_get_skip_policy_id_from_packet(packet);
11562 pf_tag = necp_get_packet_filter_tags_from_packet(packet);
11563
11564 // Exit early for an empty list
11565 // Don't lock. Possible race condition, but we don't want the performance hit.
11566 if (necp_drop_management_order == 0 &&
11567 (necp_kernel_ip_output_policies_count == 0 ||
11568 (socket_policy_id == NECP_KERNEL_POLICY_ID_NONE && necp_kernel_ip_output_policies_non_id_count == 0 && necp_drop_dest_policy.entry_count == 0))) {
11569 if (necp_drop_all_order > 0) {
11570 matched_policy_id = NECP_KERNEL_POLICY_ID_NO_MATCH;
11571 if (result) {
11572 if (necp_output_bypass(packet)) {
11573 *result = NECP_KERNEL_POLICY_RESULT_PASS;
11574 } else {
11575 *result = NECP_KERNEL_POLICY_RESULT_DROP;
11576 }
11577 }
11578 }
11579
11580 return matched_policy_id;
11581 }
11582
11583 // Check for loopback exception
11584 if (necp_output_bypass(packet)) {
11585 matched_policy_id = NECP_KERNEL_POLICY_ID_NO_MATCH;
11586 if (result) {
11587 *result = NECP_KERNEL_POLICY_RESULT_PASS;
11588 }
11589 return matched_policy_id;
11590 }
11591
11592 last_interface_index = necp_get_last_interface_index_from_packet(packet);
11593
11594 // Process packet to get relevant fields
11595 ip6 = mtod(packet, struct ip6_hdr *);
11596
11597 if ((flags & IPV6_OUTARGS) && (ip6oa != NULL) &&
11598 (ip6oa->ip6oa_flags & IP6OAF_BOUND_IF) &&
11599 ip6oa->ip6oa_boundif != IFSCOPE_NONE) {
11600 bound_interface_index = ip6oa->ip6oa_boundif;
11601 }
11602
11603 SIN6(&local_addr)->sin6_family = AF_INET6;
11604 SIN6(&local_addr)->sin6_len = sizeof(struct sockaddr_in6);
11605 memcpy(&SIN6(&local_addr)->sin6_addr, &ip6->ip6_src, sizeof(ip6->ip6_src));
11606
11607 SIN6(&remote_addr)->sin6_family = AF_INET6;
11608 SIN6(&remote_addr)->sin6_len = sizeof(struct sockaddr_in6);
11609 memcpy(&SIN6(&remote_addr)->sin6_addr, &ip6->ip6_dst, sizeof(ip6->ip6_dst));
11610
11611 offset = ip6_lasthdr(packet, 0, IPPROTO_IPV6, &next);
11612 if (offset >= 0 && packet->m_pkthdr.len >= offset) {
11613 protocol = next;
11614 switch (protocol) {
11615 case IPPROTO_TCP: {
11616 struct tcphdr th;
11617 if ((int)(offset + sizeof(th)) <= packet->m_pkthdr.len) {
11618 m_copydata(packet, offset, sizeof(th), (u_int8_t *)&th);
11619 SIN6(&local_addr)->sin6_port = th.th_sport;
11620 SIN6(&remote_addr)->sin6_port = th.th_dport;
11621 }
11622 break;
11623 }
11624 case IPPROTO_UDP: {
11625 struct udphdr uh;
11626 if ((int)(offset + sizeof(uh)) <= packet->m_pkthdr.len) {
11627 m_copydata(packet, offset, sizeof(uh), (u_int8_t *)&uh);
11628 SIN6(&local_addr)->sin6_port = uh.uh_sport;
11629 SIN6(&remote_addr)->sin6_port = uh.uh_dport;
11630 }
11631 break;
11632 }
11633 default: {
11634 SIN6(&local_addr)->sin6_port = 0;
11635 SIN6(&remote_addr)->sin6_port = 0;
11636 break;
11637 }
11638 }
11639 }
11640
11641 // Match packet to policy
11642 lck_rw_lock_shared(&necp_kernel_policy_lock);
11643 u_int32_t route_rule_id = 0;
11644
11645 int debug = NECP_ENABLE_DATA_TRACE((&local_addr), (&remote_addr), protocol, 0, bound_interface_index);
11646 NECP_DATA_TRACE_LOG_IP6(debug, "IP6", "START");
11647
11648 matched_policy = necp_ip_output_find_policy_match_locked(socket_policy_id, socket_skip_policy_id, bound_interface_index, last_interface_index, protocol, &local_addr, &remote_addr, rt, pf_tag, &route_rule_id, &drop_dest_policy_result, &drop_all_bypass, debug);
11649 if (matched_policy) {
11650 matched_policy_id = matched_policy->id;
11651 if (result) {
11652 *result = matched_policy->result;
11653 }
11654
11655 if (result_parameter) {
11656 memcpy(result_parameter, &matched_policy->result_parameter, sizeof(matched_policy->result_parameter));
11657 }
11658
11659 if (route_rule_id != 0 &&
11660 packet->m_pkthdr.necp_mtag.necp_route_rule_id == 0) {
11661 packet->m_pkthdr.necp_mtag.necp_route_rule_id = route_rule_id;
11662 }
11663
11664 if (necp_debug > 1 || NECP_DATA_TRACE_POLICY_ON(debug)) {
11665 NECPLOG(LOG_DEBUG, "DATA-TRACE: IP6 Output: RESULT - MATCHED (ID %d BoundInterface %d LastInterface %d Proto %d) Policy %d Result %d Parameter %d Route Rule %u", socket_policy_id, bound_interface_index, last_interface_index, protocol, matched_policy->id, matched_policy->result, matched_policy->result_parameter.tunnel_interface_index, route_rule_id);
11666 }
11667 } else {
11668 bool drop_all = false;
11669 /*
11670 * Apply drop-all only to packets which have never matched a primary policy (check
11671 * if the packet saved policy id is none or falls within the socket policy id range).
11672 */
11673 if (socket_policy_id < NECP_KERNEL_POLICY_ID_FIRST_VALID_IP &&
11674 (necp_drop_all_order > 0 || drop_dest_policy_result == NECP_KERNEL_POLICY_RESULT_DROP)) {
11675 drop_all = true;
11676 if (drop_all_bypass == NECP_DROP_ALL_BYPASS_CHECK_RESULT_NONE) {
11677 drop_all_bypass = necp_check_drop_all_bypass_result(NULL);
11678 }
11679 }
11680 if (drop_all && drop_all_bypass == NECP_DROP_ALL_BYPASS_CHECK_RESULT_FALSE) {
11681 matched_policy_id = NECP_KERNEL_POLICY_ID_NO_MATCH;
11682 if (result) {
11683 *result = NECP_KERNEL_POLICY_RESULT_DROP;
11684 NECP_DATA_TRACE_LOG_IP6(debug, "IP6", "RESULT - DROP <NO MATCH>");
11685 }
11686 } else if (route_rule_id != 0 &&
11687 packet->m_pkthdr.necp_mtag.necp_route_rule_id == 0) {
11688 // If we matched a route rule, mark it
11689 packet->m_pkthdr.necp_mtag.necp_route_rule_id = route_rule_id;
11690 }
11691 if (necp_debug > 1 || NECP_DATA_TRACE_POLICY_ON(debug)) {
11692 NECPLOG(LOG_DEBUG, "DATA-TRACE: IP6 Output: RESULT - NO MATCH (ID %d BoundInterface %d LastInterface %d Proto %d)", socket_policy_id, bound_interface_index, last_interface_index, protocol);
11693 }
11694 }
11695
11696 lck_rw_done(&necp_kernel_policy_lock);
11697
11698 return matched_policy_id;
11699 }
11700
11701 // Utilities
11702 static bool
necp_is_addr_in_range(struct sockaddr * addr,struct sockaddr * range_start,struct sockaddr * range_end)11703 necp_is_addr_in_range(struct sockaddr *addr, struct sockaddr *range_start, struct sockaddr *range_end)
11704 {
11705 int cmp = 0;
11706
11707 if (addr == NULL || range_start == NULL || range_end == NULL) {
11708 return FALSE;
11709 }
11710
11711 /* Must be greater than or equal to start */
11712 cmp = necp_addr_compare(addr, range_start, 1);
11713 if (cmp != 0 && cmp != 1) {
11714 return FALSE;
11715 }
11716
11717 /* Must be less than or equal to end */
11718 cmp = necp_addr_compare(addr, range_end, 1);
11719 if (cmp != 0 && cmp != -1) {
11720 return FALSE;
11721 }
11722
11723 return TRUE;
11724 }
11725
11726 static bool
necp_is_range_in_range(struct sockaddr * inner_range_start,struct sockaddr * inner_range_end,struct sockaddr * range_start,struct sockaddr * range_end)11727 necp_is_range_in_range(struct sockaddr *inner_range_start, struct sockaddr *inner_range_end, struct sockaddr *range_start, struct sockaddr *range_end)
11728 {
11729 int cmp = 0;
11730
11731 if (inner_range_start == NULL || inner_range_end == NULL || range_start == NULL || range_end == NULL) {
11732 return FALSE;
11733 }
11734
11735 /* Must be greater than or equal to start */
11736 cmp = necp_addr_compare(inner_range_start, range_start, 1);
11737 if (cmp != 0 && cmp != 1) {
11738 return FALSE;
11739 }
11740
11741 /* Must be less than or equal to end */
11742 cmp = necp_addr_compare(inner_range_end, range_end, 1);
11743 if (cmp != 0 && cmp != -1) {
11744 return FALSE;
11745 }
11746
11747 return TRUE;
11748 }
11749
11750 static bool
necp_is_addr_in_subnet(struct sockaddr * addr,struct sockaddr * subnet_addr,u_int8_t subnet_prefix)11751 necp_is_addr_in_subnet(struct sockaddr *addr, struct sockaddr *subnet_addr, u_int8_t subnet_prefix)
11752 {
11753 if (addr == NULL || subnet_addr == NULL) {
11754 return FALSE;
11755 }
11756
11757 if (addr->sa_family != subnet_addr->sa_family || addr->sa_len != subnet_addr->sa_len) {
11758 return FALSE;
11759 }
11760
11761 switch (addr->sa_family) {
11762 case AF_INET: {
11763 if (satosin(subnet_addr)->sin_port != 0 &&
11764 satosin(addr)->sin_port != satosin(subnet_addr)->sin_port) {
11765 return FALSE;
11766 }
11767 return necp_buffer_compare_with_bit_prefix((u_int8_t *)&satosin(addr)->sin_addr, (u_int8_t *)&satosin(subnet_addr)->sin_addr, subnet_prefix);
11768 }
11769 case AF_INET6: {
11770 if (satosin6(subnet_addr)->sin6_port != 0 &&
11771 satosin6(addr)->sin6_port != satosin6(subnet_addr)->sin6_port) {
11772 return FALSE;
11773 }
11774 if (satosin6(addr)->sin6_scope_id &&
11775 satosin6(subnet_addr)->sin6_scope_id &&
11776 satosin6(addr)->sin6_scope_id != satosin6(subnet_addr)->sin6_scope_id) {
11777 return FALSE;
11778 }
11779 return necp_buffer_compare_with_bit_prefix((u_int8_t *)&satosin6(addr)->sin6_addr, (u_int8_t *)&satosin6(subnet_addr)->sin6_addr, subnet_prefix);
11780 }
11781 default: {
11782 return FALSE;
11783 }
11784 }
11785
11786 return FALSE;
11787 }
11788
11789 /*
11790 * Return values:
11791 * -1: sa1 < sa2
11792 * 0: sa1 == sa2
11793 * 1: sa1 > sa2
11794 * 2: Not comparable or error
11795 */
11796 static int
necp_addr_compare(struct sockaddr * sa1,struct sockaddr * sa2,int check_port)11797 necp_addr_compare(struct sockaddr *sa1, struct sockaddr *sa2, int check_port)
11798 {
11799 int result = 0;
11800 int port_result = 0;
11801
11802 if (sa1->sa_family != sa2->sa_family || sa1->sa_len != sa2->sa_len) {
11803 return 2;
11804 }
11805
11806 if (sa1->sa_len == 0) {
11807 return 0;
11808 }
11809
11810 switch (sa1->sa_family) {
11811 case AF_INET: {
11812 if (sa1->sa_len != sizeof(struct sockaddr_in)) {
11813 return 2;
11814 }
11815
11816 result = memcmp(&satosin(sa1)->sin_addr.s_addr, &satosin(sa2)->sin_addr.s_addr, sizeof(satosin(sa1)->sin_addr.s_addr));
11817
11818 if (check_port) {
11819 if (satosin(sa1)->sin_port < satosin(sa2)->sin_port) {
11820 port_result = -1;
11821 } else if (satosin(sa1)->sin_port > satosin(sa2)->sin_port) {
11822 port_result = 1;
11823 }
11824
11825 if (result == 0) {
11826 result = port_result;
11827 } else if ((result > 0 && port_result < 0) || (result < 0 && port_result > 0)) {
11828 return 2;
11829 }
11830 }
11831
11832 break;
11833 }
11834 case AF_INET6: {
11835 if (sa1->sa_len != sizeof(struct sockaddr_in6)) {
11836 return 2;
11837 }
11838
11839 if (satosin6(sa1)->sin6_scope_id != satosin6(sa2)->sin6_scope_id) {
11840 return 2;
11841 }
11842
11843 result = memcmp(&satosin6(sa1)->sin6_addr.s6_addr[0], &satosin6(sa2)->sin6_addr.s6_addr[0], sizeof(struct in6_addr));
11844
11845 if (check_port) {
11846 if (satosin6(sa1)->sin6_port < satosin6(sa2)->sin6_port) {
11847 port_result = -1;
11848 } else if (satosin6(sa1)->sin6_port > satosin6(sa2)->sin6_port) {
11849 port_result = 1;
11850 }
11851
11852 if (result == 0) {
11853 result = port_result;
11854 } else if ((result > 0 && port_result < 0) || (result < 0 && port_result > 0)) {
11855 return 2;
11856 }
11857 }
11858
11859 break;
11860 }
11861 default: {
11862 result = SOCKADDR_CMP(sa1, sa2, sa1->sa_len);
11863 break;
11864 }
11865 }
11866
11867 if (result < 0) {
11868 result = (-1);
11869 } else if (result > 0) {
11870 result = (1);
11871 }
11872
11873 return result;
11874 }
11875
11876 static bool
necp_buffer_compare_with_bit_prefix(u_int8_t * __indexable p1,u_int8_t * __indexable p2,u_int32_t bits)11877 necp_buffer_compare_with_bit_prefix(u_int8_t * __indexable p1, u_int8_t * __indexable p2, u_int32_t bits)
11878 {
11879 u_int8_t mask;
11880
11881 /* Handle null pointers */
11882 if (p1 == NULL || p2 == NULL) {
11883 return p1 == p2;
11884 }
11885
11886 while (bits >= 8) {
11887 if (*p1++ != *p2++) {
11888 return FALSE;
11889 }
11890 bits -= 8;
11891 }
11892
11893 if (bits > 0) {
11894 mask = ~((1 << (8 - bits)) - 1);
11895 if ((*p1 & mask) != (*p2 & mask)) {
11896 return FALSE;
11897 }
11898 }
11899 return TRUE;
11900 }
11901
11902 static bool
necp_addr_is_empty(struct sockaddr * addr)11903 necp_addr_is_empty(struct sockaddr *addr)
11904 {
11905 if (addr == NULL) {
11906 return TRUE;
11907 }
11908
11909 if (addr->sa_len == 0) {
11910 return TRUE;
11911 }
11912
11913 switch (addr->sa_family) {
11914 case AF_INET: {
11915 static struct sockaddr_in ipv4_empty_address = {
11916 .sin_len = sizeof(struct sockaddr_in),
11917 .sin_family = AF_INET,
11918 .sin_port = 0,
11919 .sin_addr = { .s_addr = 0 }, // 0.0.0.0
11920 .sin_zero = {0},
11921 };
11922 if (necp_addr_compare(addr, SA(&ipv4_empty_address), 0) == 0) {
11923 return TRUE;
11924 } else {
11925 return FALSE;
11926 }
11927 }
11928 case AF_INET6: {
11929 static struct sockaddr_in6 ipv6_empty_address = {
11930 .sin6_len = sizeof(struct sockaddr_in6),
11931 .sin6_family = AF_INET6,
11932 .sin6_port = 0,
11933 .sin6_flowinfo = 0,
11934 .sin6_addr = IN6ADDR_ANY_INIT, // ::
11935 .sin6_scope_id = 0,
11936 };
11937 if (necp_addr_compare(addr, SA(&ipv6_empty_address), 0) == 0) {
11938 return TRUE;
11939 } else {
11940 return FALSE;
11941 }
11942 }
11943 default:
11944 return FALSE;
11945 }
11946
11947 return FALSE;
11948 }
11949
11950 static bool
necp_update_qos_marking(struct ifnet * ifp,u_int32_t * __counted_by (netagent_array_count)netagent_array,size_t netagent_array_count,u_int32_t route_rule_id)11951 necp_update_qos_marking(struct ifnet *ifp, u_int32_t * __counted_by(netagent_array_count)netagent_array, size_t netagent_array_count, u_int32_t route_rule_id)
11952 {
11953 bool qos_marking = FALSE;
11954 int exception_index = 0;
11955 struct necp_route_rule *route_rule = NULL;
11956
11957 route_rule = necp_lookup_route_rule_locked(&necp_route_rules, route_rule_id);
11958 if (route_rule == NULL) {
11959 qos_marking = FALSE;
11960 goto done;
11961 }
11962
11963 if (route_rule->match_netagent_id != 0) {
11964 if (netagent_array == NULL || netagent_array_count == 0) {
11965 // No agents, ignore rule
11966 goto done;
11967 }
11968 bool found_match = FALSE;
11969 for (size_t agent_index = 0; agent_index < netagent_array_count; agent_index++) {
11970 if (route_rule->match_netagent_id == netagent_array[agent_index]) {
11971 found_match = TRUE;
11972 break;
11973 }
11974 }
11975 if (!found_match) {
11976 // Agents don't match, ignore rule
11977 goto done;
11978 }
11979 }
11980
11981 qos_marking = (route_rule->default_action == NECP_ROUTE_RULE_QOS_MARKING) ? TRUE : FALSE;
11982
11983 if (ifp == NULL) {
11984 goto done;
11985 }
11986
11987 for (exception_index = 0; exception_index < MAX_ROUTE_RULE_INTERFACES; exception_index++) {
11988 if (route_rule->exception_if_indices[exception_index] == 0) {
11989 break;
11990 }
11991 if (route_rule->exception_if_actions[exception_index] != NECP_ROUTE_RULE_QOS_MARKING) {
11992 continue;
11993 }
11994 if (route_rule->exception_if_indices[exception_index] == ifp->if_index) {
11995 qos_marking = TRUE;
11996 if (necp_debug > 2) {
11997 NECPLOG(LOG_DEBUG, "QoS Marking : Interface match %d for Rule %d Allowed %d",
11998 route_rule->exception_if_indices[exception_index], route_rule_id, qos_marking);
11999 }
12000 goto done;
12001 }
12002 }
12003
12004 if ((route_rule->cellular_action == NECP_ROUTE_RULE_QOS_MARKING && IFNET_IS_CELLULAR(ifp)) ||
12005 (route_rule->wifi_action == NECP_ROUTE_RULE_QOS_MARKING && IFNET_IS_WIFI(ifp)) ||
12006 (route_rule->wired_action == NECP_ROUTE_RULE_QOS_MARKING && IFNET_IS_WIRED(ifp)) ||
12007 (route_rule->expensive_action == NECP_ROUTE_RULE_QOS_MARKING && IFNET_IS_EXPENSIVE(ifp)) ||
12008 (route_rule->constrained_action == NECP_ROUTE_RULE_QOS_MARKING && IFNET_IS_CONSTRAINED(ifp)) ||
12009 (route_rule->ultra_constrained_action == NECP_ROUTE_RULE_QOS_MARKING && IFNET_IS_ULTRA_CONSTRAINED(ifp)) ||
12010 (route_rule->companion_action == NECP_ROUTE_RULE_QOS_MARKING && IFNET_IS_COMPANION_LINK(ifp)) ||
12011 (route_rule->vpn_action == NECP_ROUTE_RULE_QOS_MARKING && IFNET_IS_VPN(ifp))) {
12012 qos_marking = TRUE;
12013 if (necp_debug > 2) {
12014 NECPLOG(LOG_DEBUG, "QoS Marking: C:%d WF:%d W:%d E:%d Cn:%d Cmpn:%d VPN:%d UlCn:%d for Rule %d Allowed %d",
12015 route_rule->cellular_action, route_rule->wifi_action, route_rule->wired_action,
12016 route_rule->expensive_action, route_rule->constrained_action, route_rule->companion_action, route_rule->vpn_action,
12017 route_rule->ultra_constrained_action, route_rule_id, qos_marking);
12018 }
12019 goto done;
12020 }
12021 done:
12022 if (necp_debug > 1) {
12023 NECPLOG(LOG_DEBUG, "QoS Marking: Rule %d ifp %s Allowed %d",
12024 route_rule_id, ifp ? ifp->if_xname : "", qos_marking);
12025 }
12026 return qos_marking;
12027 }
12028
12029 bool
necp_lookup_current_qos_marking(int32_t * qos_marking_gencount,struct rtentry * route,struct ifnet * interface,u_int32_t route_rule_id,bool old_qos_marking)12030 necp_lookup_current_qos_marking(int32_t *qos_marking_gencount, struct rtentry *route, struct ifnet *interface, u_int32_t route_rule_id, bool old_qos_marking)
12031 {
12032 bool new_qos_marking = old_qos_marking;
12033 struct ifnet *ifp = interface;
12034
12035 if (net_qos_policy_restricted == 0) {
12036 return new_qos_marking;
12037 }
12038
12039 /*
12040 * This is racy but we do not need the performance hit of taking necp_kernel_policy_lock
12041 */
12042 if (*qos_marking_gencount == necp_kernel_socket_policies_gencount) {
12043 return new_qos_marking;
12044 }
12045
12046 lck_rw_lock_shared(&necp_kernel_policy_lock);
12047
12048 if (ifp == NULL && route != NULL) {
12049 ifp = route->rt_ifp;
12050 }
12051 /*
12052 * By default, until we have a interface, do not mark and reevaluate the Qos marking policy
12053 */
12054 if (ifp == NULL || route_rule_id == 0) {
12055 new_qos_marking = FALSE;
12056 goto done;
12057 }
12058
12059 if (ROUTE_RULE_IS_AGGREGATE(route_rule_id)) {
12060 struct necp_aggregate_route_rule *aggregate_route_rule = necp_lookup_aggregate_route_rule_locked(route_rule_id);
12061 if (aggregate_route_rule != NULL) {
12062 int index = 0;
12063 for (index = 0; index < MAX_AGGREGATE_ROUTE_RULES; index++) {
12064 u_int32_t sub_route_rule_id = aggregate_route_rule->rule_ids[index];
12065 if (sub_route_rule_id == 0) {
12066 break;
12067 }
12068 new_qos_marking = necp_update_qos_marking(ifp, NULL, 0, sub_route_rule_id);
12069 if (new_qos_marking == TRUE) {
12070 break;
12071 }
12072 }
12073 }
12074 } else {
12075 new_qos_marking = necp_update_qos_marking(ifp, NULL, 0, route_rule_id);
12076 }
12077 /*
12078 * Now that we have an interface we remember the gencount
12079 */
12080 *qos_marking_gencount = necp_kernel_socket_policies_gencount;
12081
12082 done:
12083 lck_rw_done(&necp_kernel_policy_lock);
12084 return new_qos_marking;
12085 }
12086
12087 void
necp_socket_update_qos_marking(struct inpcb * inp,struct rtentry * route,u_int32_t route_rule_id)12088 necp_socket_update_qos_marking(struct inpcb *inp, struct rtentry *route, u_int32_t route_rule_id)
12089 {
12090 bool qos_marking = inp->inp_socket->so_flags1 & SOF1_QOSMARKING_ALLOWED ? TRUE : FALSE;
12091
12092 if (net_qos_policy_restricted == 0) {
12093 return;
12094 }
12095 if (inp->inp_socket == NULL) {
12096 return;
12097 }
12098 if ((inp->inp_socket->so_flags1 & SOF1_QOSMARKING_POLICY_OVERRIDE)) {
12099 return;
12100 }
12101
12102 qos_marking = necp_lookup_current_qos_marking(&(inp->inp_policyresult.results.qos_marking_gencount), route, NULL, route_rule_id, qos_marking);
12103
12104 if (qos_marking == TRUE) {
12105 inp->inp_socket->so_flags1 |= SOF1_QOSMARKING_ALLOWED;
12106 } else {
12107 inp->inp_socket->so_flags1 &= ~SOF1_QOSMARKING_ALLOWED;
12108 }
12109 }
12110
12111 static bool
necp_route_is_lqm_abort(struct ifnet * ifp,struct ifnet * delegated_ifp)12112 necp_route_is_lqm_abort(struct ifnet *ifp, struct ifnet *delegated_ifp)
12113 {
12114 if (ifp != NULL &&
12115 (ifp->if_interface_state.valid_bitmask & IF_INTERFACE_STATE_LQM_STATE_VALID) &&
12116 ifp->if_interface_state.lqm_state == IFNET_LQM_THRESH_ABORT) {
12117 return true;
12118 }
12119 if (delegated_ifp != NULL &&
12120 (delegated_ifp->if_interface_state.valid_bitmask & IF_INTERFACE_STATE_LQM_STATE_VALID) &&
12121 delegated_ifp->if_interface_state.lqm_state == IFNET_LQM_THRESH_ABORT) {
12122 return true;
12123 }
12124 return false;
12125 }
12126
12127 static bool
necp_route_is_allowed_inner(struct rtentry * route,struct ifnet * ifp,u_int32_t * __counted_by (netagent_array_count)netagent_array,size_t netagent_array_count,u_int32_t route_rule_id,u_int32_t * interface_type_denied,bool * ultra_constrained_denied)12128 necp_route_is_allowed_inner(struct rtentry *route, struct ifnet *ifp, u_int32_t * __counted_by(netagent_array_count)netagent_array, size_t netagent_array_count,
12129 u_int32_t route_rule_id, u_int32_t *interface_type_denied, bool *ultra_constrained_denied)
12130 {
12131 bool default_is_allowed = TRUE;
12132 u_int8_t type_aggregate_action = NECP_ROUTE_RULE_NONE;
12133 int exception_index = 0;
12134 struct ifnet *delegated_ifp = NULL;
12135 struct necp_route_rule *route_rule = NULL;
12136
12137 route_rule = necp_lookup_route_rule_locked(&necp_route_rules, route_rule_id);
12138 if (route_rule == NULL) {
12139 return TRUE;
12140 }
12141
12142 if (route_rule->match_netagent_id != 0) {
12143 if (netagent_array == NULL || netagent_array_count == 0) {
12144 // No agents, ignore rule
12145 return TRUE;
12146 }
12147 bool found_match = FALSE;
12148 for (size_t agent_index = 0; agent_index < netagent_array_count; agent_index++) {
12149 if (route_rule->match_netagent_id == netagent_array[agent_index]) {
12150 found_match = TRUE;
12151 break;
12152 }
12153 }
12154 if (!found_match) {
12155 // Agents don't match, ignore rule
12156 return TRUE;
12157 }
12158 }
12159
12160 default_is_allowed = IS_NECP_ROUTE_RULE_DENY(route_rule->default_action) ? FALSE : TRUE;
12161 if (ifp == NULL && route != NULL) {
12162 ifp = route->rt_ifp;
12163 }
12164 if (ifp == NULL) {
12165 if (necp_debug > 1 && !default_is_allowed) {
12166 NECPLOG(LOG_DEBUG, "Route Allowed: No interface for route, using default for Rule %d Allowed %d", route_rule_id, default_is_allowed);
12167 }
12168 return default_is_allowed;
12169 }
12170
12171 delegated_ifp = ifp->if_delegated.ifp;
12172 for (exception_index = 0; exception_index < MAX_ROUTE_RULE_INTERFACES; exception_index++) {
12173 if (route_rule->exception_if_indices[exception_index] == 0) {
12174 break;
12175 }
12176 if (route_rule->exception_if_indices[exception_index] == ifp->if_index ||
12177 (delegated_ifp != NULL && route_rule->exception_if_indices[exception_index] == delegated_ifp->if_index)) {
12178 if (route_rule->exception_if_actions[exception_index] == NECP_ROUTE_RULE_DENY_LQM_ABORT) {
12179 const bool lqm_abort = necp_route_is_lqm_abort(ifp, delegated_ifp);
12180 if (necp_debug > 1 && lqm_abort) {
12181 NECPLOG(LOG_DEBUG, "Route Allowed: Interface match %d for Rule %d Deny LQM Abort",
12182 route_rule->exception_if_indices[exception_index], route_rule_id);
12183 }
12184 return false;
12185 } else if (IS_NECP_ROUTE_RULE_ALLOW_OR_DENY(route_rule->exception_if_actions[exception_index])) {
12186 if (necp_debug > 1) {
12187 NECPLOG(LOG_DEBUG, "Route Allowed: Interface match %d for Rule %d Allowed %d", route_rule->exception_if_indices[exception_index], route_rule_id, (IS_NECP_ROUTE_RULE_DENY(route_rule->exception_if_actions[exception_index]) ? FALSE : TRUE));
12188 }
12189 if (IS_NECP_ROUTE_RULE_DENY(route_rule->exception_if_actions[exception_index]) && route_rule->effective_type != 0 && interface_type_denied != NULL) {
12190 *interface_type_denied = route_rule->effective_type;
12191 }
12192 return IS_NECP_ROUTE_RULE_DENY(route_rule->exception_if_actions[exception_index]) ? FALSE : TRUE;
12193 }
12194 }
12195 }
12196
12197 if (IFNET_IS_CELLULAR(ifp)) {
12198 if (route_rule->cellular_action == NECP_ROUTE_RULE_DENY_LQM_ABORT) {
12199 if (necp_route_is_lqm_abort(ifp, delegated_ifp)) {
12200 if (interface_type_denied != NULL) {
12201 *interface_type_denied = IFRTYPE_FUNCTIONAL_CELLULAR;
12202 if (route_rule->effective_type != 0) {
12203 *interface_type_denied = route_rule->effective_type;
12204 }
12205 }
12206 // Mark aggregate action as deny
12207 type_aggregate_action = NECP_ROUTE_RULE_DENY_INTERFACE;
12208 }
12209 } else if (IS_NECP_ROUTE_RULE_ALLOW_OR_DENY(route_rule->cellular_action)) {
12210 if (interface_type_denied != NULL) {
12211 *interface_type_denied = IFRTYPE_FUNCTIONAL_CELLULAR;
12212 if (route_rule->effective_type != 0) {
12213 *interface_type_denied = route_rule->effective_type;
12214 }
12215 }
12216 if (type_aggregate_action == NECP_ROUTE_RULE_NONE ||
12217 (type_aggregate_action == NECP_ROUTE_RULE_ALLOW_INTERFACE &&
12218 IS_NECP_ROUTE_RULE_DENY(route_rule->cellular_action))) {
12219 // Deny wins if there is a conflict
12220 type_aggregate_action = route_rule->cellular_action;
12221 }
12222 }
12223 }
12224
12225 if (IFNET_IS_WIFI(ifp)) {
12226 if (route_rule->wifi_action == NECP_ROUTE_RULE_DENY_LQM_ABORT) {
12227 if (necp_route_is_lqm_abort(ifp, delegated_ifp)) {
12228 if (interface_type_denied != NULL) {
12229 *interface_type_denied = IFRTYPE_FUNCTIONAL_WIFI_INFRA;
12230 if (route_rule->effective_type != 0) {
12231 *interface_type_denied = route_rule->effective_type;
12232 }
12233 }
12234 // Mark aggregate action as deny
12235 type_aggregate_action = NECP_ROUTE_RULE_DENY_INTERFACE;
12236 }
12237 } else if (IS_NECP_ROUTE_RULE_ALLOW_OR_DENY(route_rule->wifi_action)) {
12238 if (interface_type_denied != NULL) {
12239 *interface_type_denied = IFRTYPE_FUNCTIONAL_WIFI_INFRA;
12240 if (route_rule->effective_type != 0) {
12241 *interface_type_denied = route_rule->effective_type;
12242 }
12243 }
12244 if (type_aggregate_action == NECP_ROUTE_RULE_NONE ||
12245 (type_aggregate_action == NECP_ROUTE_RULE_ALLOW_INTERFACE &&
12246 IS_NECP_ROUTE_RULE_DENY(route_rule->wifi_action))) {
12247 // Deny wins if there is a conflict
12248 type_aggregate_action = route_rule->wifi_action;
12249 }
12250 }
12251 }
12252
12253 if (IFNET_IS_COMPANION_LINK(ifp) ||
12254 (ifp->if_delegated.ifp != NULL && IFNET_IS_COMPANION_LINK(ifp->if_delegated.ifp))) {
12255 if (route_rule->companion_action == NECP_ROUTE_RULE_DENY_LQM_ABORT) {
12256 if (necp_route_is_lqm_abort(ifp, delegated_ifp)) {
12257 if (interface_type_denied != NULL) {
12258 *interface_type_denied = IFRTYPE_FUNCTIONAL_COMPANIONLINK;
12259 if (route_rule->effective_type != 0) {
12260 *interface_type_denied = route_rule->effective_type;
12261 }
12262 }
12263 // Mark aggregate action as deny
12264 type_aggregate_action = NECP_ROUTE_RULE_DENY_INTERFACE;
12265 }
12266 } else if (IS_NECP_ROUTE_RULE_ALLOW_OR_DENY(route_rule->companion_action)) {
12267 if (interface_type_denied != NULL) {
12268 *interface_type_denied = IFRTYPE_FUNCTIONAL_COMPANIONLINK;
12269 if (route_rule->effective_type != 0) {
12270 *interface_type_denied = route_rule->effective_type;
12271 }
12272 }
12273 if (type_aggregate_action == NECP_ROUTE_RULE_NONE ||
12274 (type_aggregate_action == NECP_ROUTE_RULE_ALLOW_INTERFACE &&
12275 IS_NECP_ROUTE_RULE_DENY(route_rule->companion_action))) {
12276 // Deny wins if there is a conflict
12277 type_aggregate_action = route_rule->companion_action;
12278 }
12279 }
12280 }
12281
12282 if (IFNET_IS_WIRED(ifp)) {
12283 if (route_rule->wired_action == NECP_ROUTE_RULE_DENY_LQM_ABORT) {
12284 if (necp_route_is_lqm_abort(ifp, delegated_ifp)) {
12285 if (interface_type_denied != NULL) {
12286 *interface_type_denied = IFRTYPE_FUNCTIONAL_WIRED;
12287 if (route_rule->effective_type != 0) {
12288 *interface_type_denied = route_rule->effective_type;
12289 }
12290 }
12291 // Mark aggregate action as deny
12292 type_aggregate_action = NECP_ROUTE_RULE_DENY_INTERFACE;
12293 }
12294 } else if (IS_NECP_ROUTE_RULE_ALLOW_OR_DENY(route_rule->wired_action)) {
12295 if (interface_type_denied != NULL) {
12296 *interface_type_denied = IFRTYPE_FUNCTIONAL_WIRED;
12297 if (route_rule->effective_type != 0) {
12298 *interface_type_denied = route_rule->effective_type;
12299 }
12300 }
12301 if (type_aggregate_action == NECP_ROUTE_RULE_NONE ||
12302 (type_aggregate_action == NECP_ROUTE_RULE_ALLOW_INTERFACE &&
12303 IS_NECP_ROUTE_RULE_DENY(route_rule->wired_action))) {
12304 // Deny wins if there is a conflict
12305 type_aggregate_action = route_rule->wired_action;
12306 }
12307 }
12308 }
12309
12310 if (IFNET_IS_EXPENSIVE(ifp)) {
12311 if (route_rule->expensive_action == NECP_ROUTE_RULE_DENY_LQM_ABORT) {
12312 if (necp_route_is_lqm_abort(ifp, delegated_ifp)) {
12313 // Mark aggregate action as deny
12314 type_aggregate_action = NECP_ROUTE_RULE_DENY_INTERFACE;
12315 }
12316 } else if (IS_NECP_ROUTE_RULE_ALLOW_OR_DENY(route_rule->expensive_action)) {
12317 if (type_aggregate_action == NECP_ROUTE_RULE_NONE ||
12318 (type_aggregate_action == NECP_ROUTE_RULE_ALLOW_INTERFACE &&
12319 IS_NECP_ROUTE_RULE_DENY(route_rule->expensive_action))) {
12320 // Deny wins if there is a conflict
12321 type_aggregate_action = route_rule->expensive_action;
12322 }
12323 }
12324 }
12325
12326 if (IFNET_IS_CONSTRAINED(ifp)) {
12327 if (route_rule->constrained_action == NECP_ROUTE_RULE_DENY_LQM_ABORT) {
12328 if (necp_route_is_lqm_abort(ifp, delegated_ifp)) {
12329 // Mark aggregate action as deny
12330 type_aggregate_action = NECP_ROUTE_RULE_DENY_INTERFACE;
12331 }
12332 } else if (IS_NECP_ROUTE_RULE_ALLOW_OR_DENY(route_rule->constrained_action)) {
12333 if (type_aggregate_action == NECP_ROUTE_RULE_NONE ||
12334 (type_aggregate_action == NECP_ROUTE_RULE_ALLOW_INTERFACE &&
12335 IS_NECP_ROUTE_RULE_DENY(route_rule->constrained_action))) {
12336 // Deny wins if there is a conflict
12337 type_aggregate_action = route_rule->constrained_action;
12338 }
12339 }
12340 }
12341
12342 if (IFNET_IS_VPN(ifp)) {
12343 if (route_rule->vpn_action == NECP_ROUTE_RULE_DENY_LQM_ABORT) {
12344 if (necp_route_is_lqm_abort(ifp, delegated_ifp)) {
12345 // Mark aggregate action as deny
12346 type_aggregate_action = NECP_ROUTE_RULE_DENY_INTERFACE;
12347 }
12348 } else if (IS_NECP_ROUTE_RULE_ALLOW_OR_DENY(route_rule->vpn_action)) {
12349 if (type_aggregate_action == NECP_ROUTE_RULE_NONE ||
12350 (type_aggregate_action == NECP_ROUTE_RULE_ALLOW_INTERFACE &&
12351 IS_NECP_ROUTE_RULE_DENY(route_rule->vpn_action))) {
12352 // Deny wins if there is a conflict
12353 type_aggregate_action = route_rule->vpn_action;
12354 }
12355 }
12356 }
12357
12358 if (IFNET_IS_ULTRA_CONSTRAINED(ifp)) {
12359 if (route_rule->ultra_constrained_action == NECP_ROUTE_RULE_DENY_LQM_ABORT) {
12360 if (necp_route_is_lqm_abort(ifp, delegated_ifp)) {
12361 // Mark aggregate action as deny
12362 type_aggregate_action = NECP_ROUTE_RULE_DENY_INTERFACE;
12363 }
12364 } else if (IS_NECP_ROUTE_RULE_ALLOW_OR_DENY(route_rule->ultra_constrained_action)) {
12365 if (ultra_constrained_denied != NULL && IS_NECP_ROUTE_RULE_DENY(route_rule->ultra_constrained_action)) {
12366 *ultra_constrained_denied = true;
12367 }
12368 if (type_aggregate_action == NECP_ROUTE_RULE_NONE ||
12369 (type_aggregate_action == NECP_ROUTE_RULE_ALLOW_INTERFACE &&
12370 IS_NECP_ROUTE_RULE_DENY(route_rule->ultra_constrained_action))) {
12371 // Deny wins if there is a conflict
12372 type_aggregate_action = route_rule->ultra_constrained_action;
12373 }
12374 }
12375 }
12376
12377 if (type_aggregate_action != NECP_ROUTE_RULE_NONE) {
12378 if (necp_debug > 1) {
12379 NECPLOG(LOG_DEBUG, "Route Allowed: C:%d WF:%d W:%d E:%d Cmpn:%d VPN:%d for Rule %d Allowed %d", route_rule->cellular_action, route_rule->wifi_action, route_rule->wired_action, route_rule->expensive_action, route_rule->companion_action, route_rule->vpn_action, route_rule_id, (IS_NECP_ROUTE_RULE_DENY(type_aggregate_action) ? FALSE : TRUE));
12380 }
12381 return IS_NECP_ROUTE_RULE_DENY(type_aggregate_action) ? FALSE : TRUE;
12382 }
12383
12384 if (necp_debug > 1 && !default_is_allowed) {
12385 NECPLOG(LOG_DEBUG, "Route Allowed: Using default for Rule %d Allowed %d", route_rule_id, default_is_allowed);
12386 }
12387 return default_is_allowed;
12388 }
12389
12390 static bool
necp_proc_is_allowed_on_management_interface(proc_t proc)12391 necp_proc_is_allowed_on_management_interface(proc_t proc)
12392 {
12393 bool allowed = false;
12394 const task_t __single task = proc_task(proc);
12395
12396 if (task != NULL) {
12397 if (IOTaskHasEntitlement(task, INTCOPROC_RESTRICTED_ENTITLEMENT) == true
12398 || IOTaskHasEntitlement(task, MANAGEMENT_DATA_ENTITLEMENT) == true
12399 #if DEBUG || DEVELOPMENT
12400 || IOTaskHasEntitlement(task, INTCOPROC_RESTRICTED_ENTITLEMENT_DEVELOPMENT) == true
12401 || IOTaskHasEntitlement(task, MANAGEMENT_DATA_ENTITLEMENT_DEVELOPMENT) == true
12402 #endif /* DEBUG || DEVELOPMENT */
12403 ) {
12404 allowed = true;
12405 }
12406 }
12407 return allowed;
12408 }
12409
12410 __attribute__((noinline))
12411 static void
necp_log_interface_not_allowed(struct ifnet * ifp,proc_t proc,struct inpcb * inp)12412 necp_log_interface_not_allowed(struct ifnet *ifp, proc_t proc, struct inpcb *inp)
12413 {
12414 char buf[128];
12415
12416 if (inp != NULL) {
12417 inp_snprintf_tuple(inp, buf, sizeof(buf));
12418 } else {
12419 *buf = 0;
12420 }
12421 os_log(OS_LOG_DEFAULT,
12422 "necp_route_is_interface_type_allowed %s:%d %s not allowed on management interface %s",
12423 proc != NULL ? proc_best_name(proc) : proc_best_name(current_proc()),
12424 proc != NULL ? proc_getpid(proc) : proc_selfpid(),
12425 inp != NULL ? buf : "",
12426 ifp->if_xname);
12427 }
12428
12429 static bool
necp_route_is_interface_type_allowed(struct rtentry * route,struct ifnet * ifp,proc_t proc,struct inpcb * inp)12430 necp_route_is_interface_type_allowed(struct rtentry *route, struct ifnet *ifp, proc_t proc, struct inpcb *inp)
12431 {
12432 if (if_management_interface_check_needed == false) {
12433 return true;
12434 }
12435 if (necp_drop_management_order == 0) {
12436 return true;
12437 }
12438 if (ifp == NULL && route != NULL) {
12439 ifp = route->rt_ifp;
12440 }
12441 if (ifp == NULL) {
12442 return true;
12443 }
12444
12445 if (IFNET_IS_MANAGEMENT(ifp)) {
12446 bool allowed = true;
12447
12448 if (inp != NULL) {
12449 /*
12450 * The entitlement check is already performed for socket flows
12451 */
12452 allowed = INP_MANAGEMENT_ALLOWED(inp);
12453 } else if (proc != NULL) {
12454 allowed = necp_proc_is_allowed_on_management_interface(proc);
12455 }
12456 if (__improbable(if_management_verbose > 1 && allowed == false)) {
12457 necp_log_interface_not_allowed(ifp, proc, inp);
12458 }
12459 return allowed;
12460 }
12461 return true;
12462 }
12463
12464 static bool
necp_route_is_allowed(struct rtentry * route,struct ifnet * interface,u_int32_t * __counted_by (netagent_array_count)netagent_array,size_t netagent_array_count,u_int32_t route_rule_id,u_int32_t * interface_type_denied,bool * ultra_constrained_denied)12465 necp_route_is_allowed(struct rtentry *route, struct ifnet *interface, u_int32_t * __counted_by(netagent_array_count)netagent_array, size_t netagent_array_count,
12466 u_int32_t route_rule_id, u_int32_t *interface_type_denied, bool *ultra_constrained_denied)
12467 {
12468 if ((route == NULL && interface == NULL && netagent_array == NULL) || route_rule_id == 0) {
12469 if (necp_debug > 1) {
12470 NECPLOG(LOG_DEBUG, "Route Allowed: no route or interface, Rule %d Allowed %d", route_rule_id, TRUE);
12471 }
12472 return TRUE;
12473 }
12474
12475 if (ROUTE_RULE_IS_AGGREGATE(route_rule_id)) {
12476 struct necp_aggregate_route_rule *aggregate_route_rule = necp_lookup_aggregate_route_rule_locked(route_rule_id);
12477 if (aggregate_route_rule != NULL) {
12478 int index = 0;
12479 for (index = 0; index < MAX_AGGREGATE_ROUTE_RULES; index++) {
12480 u_int32_t sub_route_rule_id = aggregate_route_rule->rule_ids[index];
12481 if (sub_route_rule_id == 0) {
12482 break;
12483 }
12484 if (!necp_route_is_allowed_inner(route, interface, netagent_array, netagent_array_count, sub_route_rule_id, interface_type_denied, ultra_constrained_denied)) {
12485 return FALSE;
12486 }
12487 }
12488 }
12489 } else {
12490 return necp_route_is_allowed_inner(route, interface, netagent_array, netagent_array_count, route_rule_id, interface_type_denied, ultra_constrained_denied);
12491 }
12492
12493 return TRUE;
12494 }
12495
12496 static bool
necp_route_rule_matches_agents(u_int32_t route_rule_id)12497 necp_route_rule_matches_agents(u_int32_t route_rule_id)
12498 {
12499 struct necp_route_rule *route_rule = necp_lookup_route_rule_locked(&necp_route_rules, route_rule_id);
12500 if (route_rule == NULL) {
12501 return false;
12502 }
12503
12504 return route_rule->match_netagent_id != 0;
12505 }
12506
12507 static uint32_t
necp_route_get_netagent(struct rtentry * route,u_int32_t * __counted_by (netagent_array_count)netagent_array,size_t netagent_array_count,u_int32_t route_rule_id,bool * remove)12508 necp_route_get_netagent(struct rtentry *route, u_int32_t * __counted_by(netagent_array_count)netagent_array, size_t netagent_array_count, u_int32_t route_rule_id, bool *remove)
12509 {
12510 if (remove == NULL) {
12511 return 0;
12512 }
12513
12514 struct necp_route_rule *route_rule = necp_lookup_route_rule_locked(&necp_route_rules, route_rule_id);
12515 if (route_rule == NULL) {
12516 return 0;
12517 }
12518
12519 // No netagent, skip
12520 if (route_rule->netagent_id == 0) {
12521 return 0;
12522 }
12523
12524 if (route_rule->match_netagent_id != 0) {
12525 if (netagent_array == NULL || netagent_array_count == 0) {
12526 // No agents, ignore rule
12527 return 0;
12528 }
12529 bool found_match = FALSE;
12530 for (size_t agent_index = 0; agent_index < netagent_array_count; agent_index++) {
12531 if (route_rule->match_netagent_id == netagent_array[agent_index]) {
12532 found_match = TRUE;
12533 break;
12534 }
12535 }
12536 if (!found_match) {
12537 // Agents don't match, ignore rule
12538 return 0;
12539 }
12540 }
12541
12542 struct ifnet *ifp = route != NULL ? route->rt_ifp : NULL;
12543 if (ifp == NULL) {
12544 // No interface, apply the default action
12545 if (route_rule->default_action == NECP_ROUTE_RULE_USE_NETAGENT ||
12546 route_rule->default_action == NECP_ROUTE_RULE_REMOVE_NETAGENT) {
12547 *remove = (route_rule->default_action == NECP_ROUTE_RULE_REMOVE_NETAGENT);
12548 return route_rule->netagent_id;
12549 }
12550 return 0;
12551 }
12552
12553 for (int exception_index = 0; exception_index < MAX_ROUTE_RULE_INTERFACES; exception_index++) {
12554 if (route_rule->exception_if_indices[exception_index] == 0) {
12555 break;
12556 }
12557 if (route_rule->exception_if_indices[exception_index] == ifp->if_index &&
12558 route_rule->exception_if_actions[exception_index] != NECP_ROUTE_RULE_NONE) {
12559 if (route_rule->exception_if_actions[exception_index] == NECP_ROUTE_RULE_USE_NETAGENT ||
12560 route_rule->exception_if_actions[exception_index] == NECP_ROUTE_RULE_REMOVE_NETAGENT) {
12561 *remove = (route_rule->exception_if_actions[exception_index] == NECP_ROUTE_RULE_REMOVE_NETAGENT);
12562 return route_rule->netagent_id;
12563 }
12564 return 0;
12565 }
12566 }
12567
12568 if (ifp->if_type == IFT_CELLULAR &&
12569 route_rule->cellular_action != NECP_ROUTE_RULE_NONE) {
12570 if (route_rule->cellular_action == NECP_ROUTE_RULE_USE_NETAGENT ||
12571 route_rule->cellular_action == NECP_ROUTE_RULE_REMOVE_NETAGENT) {
12572 *remove = (route_rule->cellular_action == NECP_ROUTE_RULE_REMOVE_NETAGENT);
12573 return route_rule->netagent_id;
12574 }
12575 return 0;
12576 }
12577
12578 if (ifp->if_family == IFNET_FAMILY_ETHERNET && ifp->if_subfamily == IFNET_SUBFAMILY_WIFI &&
12579 route_rule->wifi_action != NECP_ROUTE_RULE_NONE) {
12580 if ((route_rule->wifi_action == NECP_ROUTE_RULE_USE_NETAGENT ||
12581 route_rule->wifi_action == NECP_ROUTE_RULE_REMOVE_NETAGENT)) {
12582 *remove = (route_rule->wifi_action == NECP_ROUTE_RULE_REMOVE_NETAGENT);
12583 return route_rule->netagent_id;
12584 }
12585 return 0;
12586 }
12587
12588 if (IFNET_IS_COMPANION_LINK(ifp) &&
12589 route_rule->companion_action != NECP_ROUTE_RULE_NONE) {
12590 if ((route_rule->companion_action == NECP_ROUTE_RULE_USE_NETAGENT ||
12591 route_rule->companion_action == NECP_ROUTE_RULE_REMOVE_NETAGENT)) {
12592 *remove = (route_rule->companion_action == NECP_ROUTE_RULE_REMOVE_NETAGENT);
12593 return route_rule->netagent_id;
12594 }
12595 return 0;
12596 }
12597
12598 if ((ifp->if_family == IFNET_FAMILY_ETHERNET || ifp->if_family == IFNET_FAMILY_FIREWIRE) &&
12599 route_rule->wired_action != NECP_ROUTE_RULE_NONE) {
12600 if ((route_rule->wired_action == NECP_ROUTE_RULE_USE_NETAGENT ||
12601 route_rule->wired_action == NECP_ROUTE_RULE_REMOVE_NETAGENT)) {
12602 *remove = (route_rule->wired_action == NECP_ROUTE_RULE_REMOVE_NETAGENT);
12603 return route_rule->netagent_id;
12604 }
12605 return 0;
12606 }
12607
12608 if (ifp->if_eflags & IFEF_EXPENSIVE &&
12609 route_rule->expensive_action != NECP_ROUTE_RULE_NONE) {
12610 if (route_rule->expensive_action == NECP_ROUTE_RULE_USE_NETAGENT ||
12611 route_rule->expensive_action == NECP_ROUTE_RULE_REMOVE_NETAGENT) {
12612 *remove = (route_rule->expensive_action == NECP_ROUTE_RULE_REMOVE_NETAGENT);
12613 return route_rule->netagent_id;
12614 }
12615 return 0;
12616 }
12617
12618 if ((ifp->if_xflags & IFXF_CONSTRAINED || ifp->if_xflags & IFXF_ULTRA_CONSTRAINED) &&
12619 route_rule->constrained_action != NECP_ROUTE_RULE_NONE) {
12620 if (route_rule->constrained_action == NECP_ROUTE_RULE_USE_NETAGENT ||
12621 route_rule->constrained_action == NECP_ROUTE_RULE_REMOVE_NETAGENT) {
12622 *remove = (route_rule->constrained_action == NECP_ROUTE_RULE_REMOVE_NETAGENT);
12623 return route_rule->netagent_id;
12624 }
12625 return 0;
12626 }
12627
12628 if ((ifp->if_xflags & IFXF_ULTRA_CONSTRAINED) &&
12629 route_rule->ultra_constrained_action != NECP_ROUTE_RULE_NONE) {
12630 if (route_rule->ultra_constrained_action == NECP_ROUTE_RULE_USE_NETAGENT ||
12631 route_rule->ultra_constrained_action == NECP_ROUTE_RULE_REMOVE_NETAGENT) {
12632 *remove = (route_rule->ultra_constrained_action == NECP_ROUTE_RULE_REMOVE_NETAGENT);
12633 return route_rule->netagent_id;
12634 }
12635 return 0;
12636 }
12637
12638 if (ifp->if_xflags & IFXF_IS_VPN &&
12639 route_rule->vpn_action != NECP_ROUTE_RULE_NONE) {
12640 if (route_rule->vpn_action == NECP_ROUTE_RULE_USE_NETAGENT ||
12641 route_rule->vpn_action == NECP_ROUTE_RULE_REMOVE_NETAGENT) {
12642 *remove = (route_rule->vpn_action == NECP_ROUTE_RULE_REMOVE_NETAGENT);
12643 return route_rule->netagent_id;
12644 }
12645 return 0;
12646 }
12647
12648 // No more specific case matched, apply the default action
12649 if (route_rule->default_action == NECP_ROUTE_RULE_USE_NETAGENT ||
12650 route_rule->default_action == NECP_ROUTE_RULE_REMOVE_NETAGENT) {
12651 *remove = (route_rule->default_action == NECP_ROUTE_RULE_REMOVE_NETAGENT);
12652 return route_rule->netagent_id;
12653 }
12654
12655 return 0;
12656 }
12657
12658 static uint32_t
necp_route_get_flow_divert_inner(struct rtentry * route,u_int32_t * __counted_by (netagent_array_count)netagent_array,size_t netagent_array_count,u_int32_t route_rule_id)12659 necp_route_get_flow_divert_inner(struct rtentry *route, u_int32_t * __counted_by(netagent_array_count)netagent_array, size_t netagent_array_count, u_int32_t route_rule_id)
12660 {
12661 struct necp_route_rule *route_rule = necp_lookup_route_rule_locked(&necp_route_rules, route_rule_id);
12662 if (route_rule == NULL) {
12663 return 0;
12664 }
12665
12666 // No control unit, skip
12667 if (route_rule->control_unit == 0) {
12668 return 0;
12669 }
12670
12671 if (route_rule->match_netagent_id != 0) {
12672 if (netagent_array == NULL || netagent_array_count == 0) {
12673 // No agents, ignore rule
12674 return 0;
12675 }
12676 bool found_match = FALSE;
12677 for (size_t agent_index = 0; agent_index < netagent_array_count; agent_index++) {
12678 if (route_rule->match_netagent_id == netagent_array[agent_index]) {
12679 found_match = TRUE;
12680 break;
12681 }
12682 }
12683 if (!found_match) {
12684 // Agents don't match, ignore rule
12685 return 0;
12686 }
12687 }
12688
12689 struct ifnet *ifp = route != NULL ? route->rt_ifp : NULL;
12690 if (ifp == NULL) {
12691 // No interface, apply the default action
12692 if (route_rule->default_action == NECP_ROUTE_RULE_DIVERT_SOCKET) {
12693 return route_rule->control_unit;
12694 }
12695 return 0;
12696 }
12697
12698 for (int exception_index = 0; exception_index < MAX_ROUTE_RULE_INTERFACES; exception_index++) {
12699 if (route_rule->exception_if_indices[exception_index] == 0) {
12700 break;
12701 }
12702 if (route_rule->exception_if_indices[exception_index] == ifp->if_index &&
12703 route_rule->exception_if_actions[exception_index] != NECP_ROUTE_RULE_NONE) {
12704 if (route_rule->exception_if_actions[exception_index] == NECP_ROUTE_RULE_DIVERT_SOCKET) {
12705 return route_rule->control_unit;
12706 }
12707 return 0;
12708 }
12709 }
12710
12711 if (ifp->if_type == IFT_CELLULAR &&
12712 route_rule->cellular_action != NECP_ROUTE_RULE_NONE) {
12713 if (route_rule->cellular_action == NECP_ROUTE_RULE_DIVERT_SOCKET) {
12714 return route_rule->control_unit;
12715 }
12716 return 0;
12717 }
12718
12719 if (ifp->if_family == IFNET_FAMILY_ETHERNET && ifp->if_subfamily == IFNET_SUBFAMILY_WIFI &&
12720 route_rule->wifi_action == NECP_ROUTE_RULE_DIVERT_SOCKET) {
12721 if (route_rule->wifi_action == NECP_ROUTE_RULE_DIVERT_SOCKET) {
12722 return route_rule->control_unit;
12723 }
12724 return 0;
12725 }
12726
12727 if (IFNET_IS_COMPANION_LINK(ifp) &&
12728 route_rule->companion_action == NECP_ROUTE_RULE_DIVERT_SOCKET) {
12729 if (route_rule->companion_action == NECP_ROUTE_RULE_DIVERT_SOCKET) {
12730 return route_rule->control_unit;
12731 }
12732 return 0;
12733 }
12734
12735 if ((ifp->if_family == IFNET_FAMILY_ETHERNET || ifp->if_family == IFNET_FAMILY_FIREWIRE) &&
12736 route_rule->wired_action != NECP_ROUTE_RULE_NONE) {
12737 if (route_rule->wired_action == NECP_ROUTE_RULE_DIVERT_SOCKET) {
12738 return route_rule->control_unit;
12739 }
12740 return 0;
12741 }
12742
12743 if (ifp->if_eflags & IFEF_EXPENSIVE &&
12744 route_rule->expensive_action != NECP_ROUTE_RULE_NONE) {
12745 if (route_rule->expensive_action == NECP_ROUTE_RULE_DIVERT_SOCKET) {
12746 return route_rule->control_unit;
12747 }
12748 return 0;
12749 }
12750
12751 if ((ifp->if_xflags & IFXF_CONSTRAINED || ifp->if_xflags & IFXF_ULTRA_CONSTRAINED) &&
12752 route_rule->constrained_action != NECP_ROUTE_RULE_NONE) {
12753 if (route_rule->constrained_action == NECP_ROUTE_RULE_DIVERT_SOCKET) {
12754 return route_rule->control_unit;
12755 }
12756 return 0;
12757 }
12758
12759 if ((ifp->if_xflags & IFXF_ULTRA_CONSTRAINED) &&
12760 route_rule->ultra_constrained_action != NECP_ROUTE_RULE_NONE) {
12761 if (route_rule->ultra_constrained_action == NECP_ROUTE_RULE_DIVERT_SOCKET) {
12762 return route_rule->control_unit;
12763 }
12764 return 0;
12765 }
12766
12767 if (ifp->if_xflags & IFXF_IS_VPN &&
12768 route_rule->vpn_action != NECP_ROUTE_RULE_NONE) {
12769 if (route_rule->vpn_action == NECP_ROUTE_RULE_DIVERT_SOCKET) {
12770 return route_rule->control_unit;
12771 }
12772 return 0;
12773 }
12774
12775 // No more specific case matched, apply the default action
12776 if (route_rule->default_action == NECP_ROUTE_RULE_DIVERT_SOCKET) {
12777 return route_rule->control_unit;
12778 }
12779 return 0;
12780 }
12781
12782 static uint32_t
necp_route_get_flow_divert(struct rtentry * route,u_int32_t * __counted_by (netagent_array_count)netagent_array,size_t netagent_array_count,u_int32_t route_rule_id,u_int32_t * flow_divert_aggregate_unit)12783 necp_route_get_flow_divert(struct rtentry *route, u_int32_t * __counted_by(netagent_array_count)netagent_array, size_t netagent_array_count, u_int32_t route_rule_id,
12784 u_int32_t *flow_divert_aggregate_unit)
12785 {
12786 if ((route == NULL && netagent_array == NULL) || route_rule_id == 0 || flow_divert_aggregate_unit == NULL) {
12787 return 0;
12788 }
12789
12790 if (ROUTE_RULE_IS_AGGREGATE(route_rule_id)) {
12791 struct necp_aggregate_route_rule *aggregate_route_rule = necp_lookup_aggregate_route_rule_locked(route_rule_id);
12792 if (aggregate_route_rule != NULL) {
12793 int index = 0;
12794 for (index = 0; index < MAX_AGGREGATE_ROUTE_RULES; index++) {
12795 u_int32_t sub_route_rule_id = aggregate_route_rule->rule_ids[index];
12796 if (sub_route_rule_id == 0) {
12797 break;
12798 }
12799 uint32_t control_unit = necp_route_get_flow_divert_inner(route, netagent_array, netagent_array_count, sub_route_rule_id);
12800 if (control_unit & FLOW_DIVERT_IS_TRANSPARENT) {
12801 // For transparent proxies, accumulate the control unit and continue to the next route rule
12802 *flow_divert_aggregate_unit |= (control_unit & ~FLOW_DIVERT_IS_TRANSPARENT);
12803 continue;
12804 }
12805
12806 if (control_unit != 0) {
12807 return control_unit;
12808 }
12809 }
12810 }
12811 } else {
12812 uint32_t control_unit = necp_route_get_flow_divert_inner(route, netagent_array, netagent_array_count, route_rule_id);
12813 if (control_unit & FLOW_DIVERT_IS_TRANSPARENT) {
12814 // For transparent proxies, accumulate the control unit and let the caller continue
12815 *flow_divert_aggregate_unit |= (control_unit & ~FLOW_DIVERT_IS_TRANSPARENT);
12816 return 0;
12817 }
12818 return control_unit;
12819 }
12820
12821 return 0;
12822 }
12823
12824 bool
necp_packet_is_allowed_over_interface(struct mbuf * packet,struct ifnet * interface)12825 necp_packet_is_allowed_over_interface(struct mbuf *packet, struct ifnet *interface)
12826 {
12827 bool is_allowed = true;
12828 u_int32_t route_rule_id = necp_get_route_rule_id_from_packet(packet);
12829 if (route_rule_id != 0 &&
12830 interface != NULL) {
12831 lck_rw_lock_shared(&necp_kernel_policy_lock);
12832 is_allowed = necp_route_is_allowed(NULL, interface, NULL, 0, necp_get_route_rule_id_from_packet(packet), NULL, NULL);
12833 lck_rw_done(&necp_kernel_policy_lock);
12834 }
12835 return is_allowed;
12836 }
12837
12838 static bool
necp_netagents_allow_traffic(u_int32_t * __counted_by (netagent_id_count)netagent_ids,size_t netagent_id_count)12839 necp_netagents_allow_traffic(u_int32_t * __counted_by(netagent_id_count)netagent_ids, size_t netagent_id_count)
12840 {
12841 size_t netagent_cursor;
12842 for (netagent_cursor = 0; netagent_cursor < netagent_id_count; netagent_cursor++) {
12843 struct necp_uuid_id_mapping *mapping = NULL;
12844 u_int32_t netagent_id = netagent_ids[netagent_cursor];
12845 if (netagent_id == 0) {
12846 continue;
12847 }
12848 mapping = necp_uuid_lookup_uuid_with_agent_id_locked(netagent_id);
12849 if (mapping != NULL) {
12850 u_int32_t agent_flags = 0;
12851 agent_flags = netagent_get_flags(mapping->uuid);
12852 if (agent_flags & NETAGENT_FLAG_REGISTERED) {
12853 if (agent_flags & NETAGENT_FLAG_ACTIVE) {
12854 continue;
12855 } else if ((agent_flags & NETAGENT_FLAG_VOLUNTARY) == 0) {
12856 return FALSE;
12857 }
12858 }
12859 }
12860 }
12861 return TRUE;
12862 }
12863
12864 static bool
necp_packet_filter_tags_receive(u_int16_t pf_tag,u_int32_t pass_flags)12865 necp_packet_filter_tags_receive(u_int16_t pf_tag, u_int32_t pass_flags)
12866 {
12867 bool allowed_to_receive = TRUE;
12868
12869 if (pf_tag == PF_TAG_ID_STACK_DROP &&
12870 (pass_flags & NECP_KERNEL_POLICY_PASS_PF_TAG) != NECP_KERNEL_POLICY_PASS_PF_TAG) {
12871 allowed_to_receive = FALSE;
12872 }
12873
12874 return allowed_to_receive;
12875 }
12876
12877 static bool
necp_socket_is_allowed_to_send_recv_internal(struct inpcb * inp,struct sockaddr * override_local_addr,struct sockaddr * override_remote_addr,ifnet_t input_interface,u_int16_t pf_tag,necp_kernel_policy_id * return_policy_id,u_int32_t * return_route_rule_id,necp_kernel_policy_id * return_skip_policy_id,u_int32_t * return_pass_flags)12878 necp_socket_is_allowed_to_send_recv_internal(struct inpcb *inp, struct sockaddr *override_local_addr, struct sockaddr *override_remote_addr, ifnet_t input_interface, u_int16_t pf_tag, necp_kernel_policy_id *return_policy_id, u_int32_t *return_route_rule_id, necp_kernel_policy_id *return_skip_policy_id, u_int32_t *return_pass_flags)
12879 {
12880 u_int32_t verifyifindex = input_interface ? input_interface->if_index : 0;
12881 bool allowed_to_receive = TRUE;
12882 struct necp_socket_info info = {};
12883 u_int32_t flowhash = 0;
12884 u_int32_t route_rule_id = 0;
12885 struct rtentry *route = NULL;
12886 u_int32_t interface_type_denied = IFRTYPE_FUNCTIONAL_UNKNOWN;
12887 necp_kernel_policy_result drop_dest_policy_result = NECP_KERNEL_POLICY_RESULT_NONE;
12888 necp_drop_all_bypass_check_result_t drop_all_bypass = NECP_DROP_ALL_BYPASS_CHECK_RESULT_NONE;
12889 u_int32_t netagent_ids[NECP_MAX_NETAGENTS];
12890 proc_t __single socket_proc = NULL;
12891 necp_kernel_policy_filter filter_control_unit = 0;
12892 u_int32_t pass_flags = 0;
12893 u_int32_t flow_divert_aggregate_unit = 0;
12894 necp_socket_bypass_type_t bypass_type = NECP_BYPASS_TYPE_NONE;
12895 int debug = NECP_DATA_TRACE_ON(necp_data_tracing_level);
12896
12897 memset(&netagent_ids, 0, sizeof(netagent_ids));
12898
12899 if (return_policy_id) {
12900 *return_policy_id = NECP_KERNEL_POLICY_ID_NONE;
12901 }
12902 if (return_skip_policy_id) {
12903 *return_skip_policy_id = NECP_KERNEL_POLICY_ID_NONE;
12904 }
12905 if (return_route_rule_id) {
12906 *return_route_rule_id = 0;
12907 }
12908 if (return_pass_flags) {
12909 *return_pass_flags = 0;
12910 }
12911
12912 if (inp == NULL) {
12913 goto done;
12914 }
12915
12916 route = inp->inp_route.ro_rt;
12917
12918 struct socket *so = inp->inp_socket;
12919
12920 u_int32_t drop_order = necp_process_drop_order(so->so_cred);
12921
12922 // Don't lock. Possible race condition, but we don't want the performance hit.
12923 if (necp_drop_management_order == 0 &&
12924 (necp_kernel_socket_policies_count == 0 ||
12925 (!(inp->inp_flags2 & INP2_WANT_APP_POLICY) && necp_kernel_socket_policies_non_app_count == 0))) {
12926 if (necp_drop_all_order > 0 || drop_order > 0) {
12927 bypass_type = necp_socket_bypass(override_local_addr, override_remote_addr, inp);
12928 if (bypass_type != NECP_BYPASS_TYPE_NONE && bypass_type != NECP_BYPASS_TYPE_DROP) {
12929 allowed_to_receive = TRUE;
12930 } else {
12931 allowed_to_receive = FALSE;
12932 }
12933 }
12934 goto done;
12935 }
12936
12937 // If this socket is connected, or we are not taking addresses into account, try to reuse last result
12938 if ((necp_socket_is_connected(inp) || (override_local_addr == NULL && override_remote_addr == NULL)) && inp->inp_policyresult.policy_id != NECP_KERNEL_POLICY_ID_NONE) {
12939 bool policies_have_changed = FALSE;
12940 bool route_allowed = necp_route_is_interface_type_allowed(route, input_interface, NULL, inp);
12941 if (inp->inp_policyresult.policy_gencount != necp_kernel_socket_policies_gencount) {
12942 policies_have_changed = TRUE;
12943 } else {
12944 if (inp->inp_policyresult.results.route_rule_id != 0) {
12945 lck_rw_lock_shared(&necp_kernel_policy_lock);
12946 if (!necp_route_is_allowed(route, input_interface, NULL, 0, inp->inp_policyresult.results.route_rule_id, &interface_type_denied, NULL)) {
12947 route_allowed = FALSE;
12948 }
12949 lck_rw_done(&necp_kernel_policy_lock);
12950 }
12951 }
12952
12953 if (!policies_have_changed) {
12954 if (debug) {
12955 necp_socket_fillout_info_locked(inp, override_local_addr, override_remote_addr, 0, input_interface != NULL ? SOFLOW_DIRECTION_INBOUND : SOFLOW_DIRECTION_OUTBOUND, drop_order, &socket_proc, &info, (bypass_type == NECP_BYPASS_TYPE_LOOPBACK), verifyifindex);
12956 debug = NECP_ENABLE_DATA_TRACE((&info.local_addr), (&info.remote_addr), info.protocol, info.pid, info.bound_interface_index);
12957 }
12958
12959 if (!route_allowed ||
12960 inp->inp_policyresult.results.result == NECP_KERNEL_POLICY_RESULT_DROP ||
12961 inp->inp_policyresult.results.result == NECP_KERNEL_POLICY_RESULT_SOCKET_DIVERT ||
12962 (inp->inp_policyresult.results.result == NECP_KERNEL_POLICY_RESULT_IP_TUNNEL && input_interface &&
12963 inp->inp_policyresult.results.result_parameter.tunnel_interface_index != verifyifindex)) {
12964 allowed_to_receive = FALSE;
12965 NECP_DATA_TRACE_LOG_SOCKET_DP(debug, so, "SOCKET - DATA PATH", "START - RESULT - CACHED DROP", return_policy_id ? *return_policy_id : 0, return_skip_policy_id ? *return_skip_policy_id : 0);
12966 } else {
12967 if (return_policy_id) {
12968 *return_policy_id = inp->inp_policyresult.policy_id;
12969 }
12970 if (return_skip_policy_id) {
12971 *return_skip_policy_id = inp->inp_policyresult.skip_policy_id;
12972 }
12973 if (return_route_rule_id) {
12974 *return_route_rule_id = inp->inp_policyresult.results.route_rule_id;
12975 }
12976 if (inp->inp_policyresult.results.result == NECP_KERNEL_POLICY_RESULT_PASS) {
12977 pass_flags = inp->inp_policyresult.results.result_parameter.pass_flags;
12978 }
12979 NECP_DATA_TRACE_LOG_SOCKET_DP(debug, so, "SOCKET - DATA PATH", "START - RESULT - CACHED", return_policy_id ? *return_policy_id : 0, return_skip_policy_id ? *return_skip_policy_id : 0);
12980 }
12981 goto done;
12982 }
12983 }
12984
12985 // Check for loopback exception
12986 bypass_type = necp_socket_bypass(override_local_addr, override_remote_addr, inp);
12987 if (bypass_type == NECP_BYPASS_TYPE_DROP) {
12988 allowed_to_receive = FALSE;
12989 goto done;
12990 }
12991 if (bypass_type == NECP_BYPASS_TYPE_INTCOPROC || (bypass_type == NECP_BYPASS_TYPE_LOOPBACK && necp_pass_loopback == NECP_LOOPBACK_PASS_ALL)) {
12992 allowed_to_receive = TRUE;
12993 goto done;
12994 }
12995
12996 // Actually calculate policy result
12997 lck_rw_lock_shared(&necp_kernel_policy_lock);
12998 necp_socket_fillout_info_locked(inp, override_local_addr, override_remote_addr, 0, input_interface != NULL ? SOFLOW_DIRECTION_INBOUND : SOFLOW_DIRECTION_OUTBOUND, drop_order, &socket_proc, &info, (bypass_type == NECP_BYPASS_TYPE_LOOPBACK), verifyifindex);
12999
13000 debug = NECP_ENABLE_DATA_TRACE((&info.local_addr), (&info.remote_addr), info.protocol, info.pid, info.bound_interface_index);
13001 NECP_DATA_TRACE_LOG_SOCKET_DP(debug, so, "SOCKET - DATA PATH", "START", 0, 0);
13002
13003 flowhash = necp_socket_calc_flowhash_locked(&info);
13004 if (inp->inp_policyresult.policy_id != NECP_KERNEL_POLICY_ID_NONE &&
13005 inp->inp_policyresult.policy_gencount == necp_kernel_socket_policies_gencount &&
13006 inp->inp_policyresult.flowhash == flowhash) {
13007 if (inp->inp_policyresult.results.result == NECP_KERNEL_POLICY_RESULT_DROP ||
13008 inp->inp_policyresult.results.result == NECP_KERNEL_POLICY_RESULT_SOCKET_DIVERT ||
13009 (inp->inp_policyresult.results.result == NECP_KERNEL_POLICY_RESULT_IP_TUNNEL && input_interface &&
13010 inp->inp_policyresult.results.result_parameter.tunnel_interface_index != verifyifindex) ||
13011 !necp_route_is_interface_type_allowed(route, input_interface, NULL, inp) ||
13012 (inp->inp_policyresult.results.route_rule_id != 0 &&
13013 !necp_route_is_allowed(route, input_interface, NULL, 0, inp->inp_policyresult.results.route_rule_id, &interface_type_denied, NULL))) {
13014 allowed_to_receive = FALSE;
13015 NECP_DATA_TRACE_LOG_SOCKET_DP(debug, so, "SOCKET - DATA PATH", "RESULT - CACHED <DROP>", return_policy_id ? *return_policy_id : 0, return_skip_policy_id ? *return_skip_policy_id : 0);
13016 } else {
13017 if (return_policy_id) {
13018 *return_policy_id = inp->inp_policyresult.policy_id;
13019 }
13020 if (return_route_rule_id) {
13021 *return_route_rule_id = inp->inp_policyresult.results.route_rule_id;
13022 }
13023 if (return_skip_policy_id) {
13024 *return_skip_policy_id = inp->inp_policyresult.skip_policy_id;
13025 }
13026 if (inp->inp_policyresult.results.result == NECP_KERNEL_POLICY_RESULT_PASS) {
13027 pass_flags = inp->inp_policyresult.results.result_parameter.pass_flags;
13028 }
13029 if (necp_debug > 1 || NECP_DATA_TRACE_POLICY_ON(debug)) {
13030 NECPLOG(LOG_DEBUG, "DATA-TRACE: Socket Policy - Send/Recv - RESULT - CACHED <MATCHED>: %p (BoundInterface %d Proto %d) Policy %d Skip %d Result %d Parameter %d",
13031 inp->inp_socket, info.bound_interface_index, info.protocol,
13032 inp->inp_policyresult.policy_id,
13033 inp->inp_policyresult.skip_policy_id,
13034 inp->inp_policyresult.results.result,
13035 inp->inp_policyresult.results.result_parameter.tunnel_interface_index);
13036 }
13037 NECP_DATA_TRACE_LOG_SOCKET_DP(debug, so, "SOCKET - DATA PATH", "RESULT - CACHED <MATCHED>",
13038 return_policy_id ? *return_policy_id : 0, return_skip_policy_id ? *return_skip_policy_id : 0);
13039 }
13040 lck_rw_done(&necp_kernel_policy_lock);
13041 goto done;
13042 }
13043
13044 u_int32_t route_rule_id_array[MAX_AGGREGATE_ROUTE_RULES];
13045 size_t route_rule_id_array_count = 0;
13046 proc_t __single effective_proc = socket_proc ? socket_proc : current_proc();
13047 struct necp_kernel_socket_policy *matched_policy =
13048 necp_socket_find_policy_match_with_info_locked(necp_kernel_socket_policies_map[NECP_SOCKET_MAP_APP_ID_TO_BUCKET(info.application_id)],
13049 &info,
13050 &filter_control_unit,
13051 route_rule_id_array,
13052 &route_rule_id_array_count,
13053 MAX_AGGREGATE_ROUTE_RULES,
13054 netagent_ids,
13055 NECP_MAX_NETAGENTS,
13056 NULL,
13057 0,
13058 NULL,
13059 0,
13060 effective_proc,
13061 pf_tag,
13062 return_skip_policy_id,
13063 inp->inp_route.ro_rt,
13064 &drop_dest_policy_result,
13065 &drop_all_bypass,
13066 &flow_divert_aggregate_unit,
13067 so,
13068 debug);
13069
13070 // Check for loopback exception again after the policy match
13071 if (bypass_type == NECP_BYPASS_TYPE_LOOPBACK &&
13072 necp_pass_loopback == NECP_LOOPBACK_PASS_WITH_FILTER &&
13073 (matched_policy == NULL || matched_policy->result != NECP_KERNEL_POLICY_RESULT_SOCKET_DIVERT)) {
13074 // If policies haven't changed since last evaluation, do not update filter result in order to
13075 // preserve the very first filter result for the socket. Otherwise, update the filter result to
13076 // allow content filter to detect and drop pre-existing flows.
13077 uint32_t current_filter_control_unit = inp->inp_policyresult.results.filter_control_unit;
13078 int32_t current_policies_gencount = inp->inp_policyresult.policy_gencount;
13079 if (info.soflow_entry != NULL) {
13080 current_filter_control_unit = info.soflow_entry->soflow_filter_control_unit;
13081 current_policies_gencount = info.soflow_entry->soflow_policies_gencount;
13082 }
13083 if (current_policies_gencount != necp_kernel_socket_policies_gencount &&
13084 current_filter_control_unit != filter_control_unit) {
13085 inp->inp_policyresult.results.filter_control_unit = filter_control_unit;
13086 inp->inp_policyresult.policy_gencount = necp_kernel_socket_policies_gencount;
13087 if (info.soflow_entry != NULL) {
13088 info.soflow_entry->soflow_filter_control_unit = filter_control_unit;
13089 info.soflow_entry->soflow_policies_gencount = necp_kernel_socket_policies_gencount;
13090 }
13091 }
13092 if (inp->inp_policyresult.results.flow_divert_aggregate_unit != flow_divert_aggregate_unit) {
13093 inp->inp_policyresult.results.flow_divert_aggregate_unit = flow_divert_aggregate_unit;
13094 }
13095 allowed_to_receive = TRUE;
13096 lck_rw_done(&necp_kernel_policy_lock);
13097
13098 NECP_DATA_TRACE_LOG_SOCKET_DP(debug, so, "SOCKET - DATA PATH", "RESULT - loopback", return_policy_id ? *return_policy_id : 0, return_skip_policy_id ? *return_skip_policy_id : 0);
13099 goto done;
13100 }
13101
13102 if (info.protocol != IPPROTO_UDP) {
13103 goto skip_agent_check;
13104 }
13105
13106 // Verify netagents
13107 if (necp_socket_verify_netagents(netagent_ids, debug, so) == false) {
13108 if (necp_debug > 1 || NECP_DATA_TRACE_POLICY_ON(debug)) {
13109 NECPLOG(LOG_ERR, "DATA-TRACE: Socket Policy: <so %llx> (BoundInterface %d Proto %d) Dropping packet because agent is not active", (uint64_t)VM_KERNEL_ADDRPERM(so), info.bound_interface_index, info.protocol);
13110 }
13111
13112 // Mark socket as a drop if required agent is not active
13113 inp->inp_policyresult.policy_id = NECP_KERNEL_POLICY_ID_NO_MATCH;
13114 inp->inp_policyresult.skip_policy_id = NECP_KERNEL_POLICY_ID_NO_MATCH;
13115 inp->inp_policyresult.policy_gencount = necp_kernel_socket_policies_gencount;
13116 inp->inp_policyresult.flowhash = flowhash;
13117 inp->inp_policyresult.results.filter_control_unit = 0;
13118 inp->inp_policyresult.results.flow_divert_aggregate_unit = 0;
13119 inp->inp_policyresult.results.route_rule_id = 0;
13120 inp->inp_policyresult.results.result = NECP_KERNEL_POLICY_RESULT_DROP;
13121 if (info.soflow_entry != NULL) {
13122 info.soflow_entry->soflow_filter_control_unit = 0;
13123 info.soflow_entry->soflow_policies_gencount = necp_kernel_socket_policies_gencount;
13124 }
13125
13126 // Unlock
13127 allowed_to_receive = FALSE;
13128 lck_rw_done(&necp_kernel_policy_lock);
13129
13130 NECP_DATA_TRACE_LOG_SOCKET_DP(debug, so, "SOCKET - DATA PATH", "RESULT - AGENT INACTIVE", return_policy_id ? *return_policy_id : 0, return_skip_policy_id ? *return_skip_policy_id : 0);
13131
13132 goto done;
13133 }
13134
13135 skip_agent_check:
13136
13137 if (route_rule_id_array_count == 1) {
13138 route_rule_id = route_rule_id_array[0];
13139 } else if (route_rule_id_array_count > 1) {
13140 route_rule_id = necp_create_aggregate_route_rule(route_rule_id_array);
13141 }
13142
13143 bool send_local_network_denied_event = false;
13144 if (matched_policy != NULL) {
13145 if (matched_policy->result == NECP_KERNEL_POLICY_RESULT_DROP &&
13146 matched_policy->result_parameter.drop_flags & NECP_KERNEL_POLICY_DROP_FLAG_LOCAL_NETWORK &&
13147 !(matched_policy->result_parameter.drop_flags & NECP_KERNEL_POLICY_DROP_FLAG_SUPPRESS_ALERTS)) {
13148 // Trigger the event that we dropped due to a local network policy
13149 send_local_network_denied_event = true;
13150 }
13151
13152 if (matched_policy->result == NECP_KERNEL_POLICY_RESULT_DROP ||
13153 matched_policy->result == NECP_KERNEL_POLICY_RESULT_SOCKET_DIVERT ||
13154 (matched_policy->result == NECP_KERNEL_POLICY_RESULT_IP_TUNNEL && input_interface &&
13155 matched_policy->result_parameter.tunnel_interface_index != verifyifindex) ||
13156 !necp_route_is_interface_type_allowed(route, input_interface, NULL, inp) ||
13157 (route_rule_id != 0 &&
13158 !necp_route_is_allowed(route, input_interface, netagent_ids, NECP_MAX_NETAGENTS, route_rule_id, &interface_type_denied, NULL)) ||
13159 !necp_netagents_allow_traffic(netagent_ids, NECP_MAX_NETAGENTS)) {
13160 allowed_to_receive = FALSE;
13161 } else {
13162 if (return_policy_id) {
13163 *return_policy_id = matched_policy->id;
13164 }
13165 if (return_route_rule_id) {
13166 *return_route_rule_id = route_rule_id;
13167 }
13168 if (matched_policy->result == NECP_KERNEL_POLICY_RESULT_PASS) {
13169 pass_flags = matched_policy->result_parameter.pass_flags;
13170 }
13171 // If policies haven't changed since last evaluation, do not update filter result in order to
13172 // preserve the very first filter result for the socket. Otherwise, update the filter result to
13173 // allow content filter to detect and drop pre-existing flows.
13174 uint32_t current_filter_control_unit = inp->inp_policyresult.results.filter_control_unit;
13175 int32_t current_policies_gencount = inp->inp_policyresult.policy_gencount;
13176 if (info.soflow_entry != NULL) {
13177 current_filter_control_unit = info.soflow_entry->soflow_filter_control_unit;
13178 current_policies_gencount = info.soflow_entry->soflow_policies_gencount;
13179 }
13180 if (current_policies_gencount != necp_kernel_socket_policies_gencount &&
13181 current_filter_control_unit != filter_control_unit) {
13182 inp->inp_policyresult.results.filter_control_unit = filter_control_unit;
13183 inp->inp_policyresult.policy_gencount = necp_kernel_socket_policies_gencount;
13184 if (info.soflow_entry != NULL) {
13185 info.soflow_entry->soflow_filter_control_unit = filter_control_unit;
13186 info.soflow_entry->soflow_policies_gencount = necp_kernel_socket_policies_gencount;
13187 }
13188 }
13189 if (inp->inp_policyresult.results.flow_divert_aggregate_unit != flow_divert_aggregate_unit) {
13190 inp->inp_policyresult.results.flow_divert_aggregate_unit = flow_divert_aggregate_unit;
13191 }
13192 }
13193
13194 if ((necp_debug > 1 && matched_policy->id != inp->inp_policyresult.policy_id) || NECP_DATA_TRACE_POLICY_ON(debug)) {
13195 NECPLOG(LOG_DEBUG, "DATA-TRACE: Socket Policy - Send/Recv: %p (BoundInterface %d Proto %d) Policy %d Result %d Parameter %d Allowed %d <filter_control_unit %d flow_divert_aggregate_unit %d>",
13196 inp->inp_socket, info.bound_interface_index, info.protocol, matched_policy->id, matched_policy->result, matched_policy->result_parameter.tunnel_interface_index, allowed_to_receive, filter_control_unit, flow_divert_aggregate_unit);
13197 }
13198 } else {
13199 bool drop_all = false;
13200 if (necp_drop_all_order > 0 || info.drop_order > 0 || drop_dest_policy_result == NECP_KERNEL_POLICY_RESULT_DROP) {
13201 drop_all = true;
13202 if (drop_all_bypass == NECP_DROP_ALL_BYPASS_CHECK_RESULT_NONE) {
13203 drop_all_bypass = necp_check_drop_all_bypass_result(effective_proc);
13204 }
13205 }
13206 if (drop_all && drop_all_bypass == NECP_DROP_ALL_BYPASS_CHECK_RESULT_FALSE) {
13207 allowed_to_receive = FALSE;
13208 NECP_DATA_TRACE_LOG_SOCKET_DP(debug, so, "SOCKET - DATA PATH", "RESULT - DROP - NO MATCH", 0, 0);
13209 } else {
13210 if (return_policy_id) {
13211 *return_policy_id = NECP_KERNEL_POLICY_ID_NO_MATCH;
13212 }
13213 if (return_route_rule_id) {
13214 *return_route_rule_id = route_rule_id;
13215 }
13216
13217 // If policies haven't changed since last evaluation, do not update filter result in order to
13218 // preserve the very first filter result for the socket. Otherwise, update the filter result to
13219 // allow content filter to detect and drop pre-existing flows.
13220 uint32_t current_filter_control_unit = inp->inp_policyresult.results.filter_control_unit;
13221 int32_t current_policies_gencount = inp->inp_policyresult.policy_gencount;
13222 if (info.soflow_entry != NULL) {
13223 current_filter_control_unit = info.soflow_entry->soflow_filter_control_unit;
13224 current_policies_gencount = info.soflow_entry->soflow_policies_gencount;
13225 }
13226 if (current_policies_gencount != necp_kernel_socket_policies_gencount &&
13227 current_filter_control_unit != filter_control_unit) {
13228 inp->inp_policyresult.results.filter_control_unit = filter_control_unit;
13229 inp->inp_policyresult.policy_gencount = necp_kernel_socket_policies_gencount;
13230 if (info.soflow_entry != NULL) {
13231 info.soflow_entry->soflow_filter_control_unit = filter_control_unit;
13232 info.soflow_entry->soflow_policies_gencount = necp_kernel_socket_policies_gencount;
13233 }
13234 }
13235 if (inp->inp_policyresult.results.flow_divert_aggregate_unit != flow_divert_aggregate_unit) {
13236 inp->inp_policyresult.results.flow_divert_aggregate_unit = flow_divert_aggregate_unit;
13237 }
13238 NECP_DATA_TRACE_LOG_SOCKET_DP(debug, so, "SOCKET - DATA PATH", "RESULT - NO MATCH", return_policy_id ? *return_policy_id : 0, return_skip_policy_id ? *return_skip_policy_id : 0);
13239 }
13240 }
13241
13242 if (necp_check_restricted_multicast_drop(effective_proc, &info, true)) {
13243 allowed_to_receive = FALSE;
13244 NECP_DATA_TRACE_LOG_SOCKET_DP(debug, so, "SOCKET - DATA PATH", "RESULT - DROP - MULTICAST", 0, 0);
13245 }
13246
13247 lck_rw_done(&necp_kernel_policy_lock);
13248
13249 if (send_local_network_denied_event && inp->inp_policyresult.network_denied_notifies == 0) {
13250 inp->inp_policyresult.network_denied_notifies++;
13251 #if defined(XNU_TARGET_OS_OSX)
13252 bool should_report_responsible_pid = (so->so_rpid > 0 && so->so_rpid != ((so->so_flags & SOF_DELEGATED) ? so->e_pid : so->last_pid));
13253 necp_send_network_denied_event(should_report_responsible_pid ? so->so_rpid : ((so->so_flags & SOF_DELEGATED) ? so->e_pid : so->last_pid),
13254 should_report_responsible_pid ? so->so_ruuid : ((so->so_flags & SOF_DELEGATED) ? so->e_uuid : so->last_uuid),
13255 NETPOLICY_NETWORKTYPE_LOCAL);
13256 #else
13257 necp_send_network_denied_event(((so->so_flags & SOF_DELEGATED) ? so->e_pid : so->last_pid),
13258 ((so->so_flags & SOF_DELEGATED) ? so->e_uuid : so->last_uuid),
13259 NETPOLICY_NETWORKTYPE_LOCAL);
13260 #endif
13261 }
13262
13263 done:
13264 if (return_pass_flags != NULL) {
13265 *return_pass_flags = pass_flags;
13266 }
13267
13268 if (pf_tag != 0 && allowed_to_receive) {
13269 allowed_to_receive = necp_packet_filter_tags_receive(pf_tag, pass_flags);
13270 }
13271
13272 if (!allowed_to_receive && interface_type_denied != IFRTYPE_FUNCTIONAL_UNKNOWN) {
13273 soevent(inp->inp_socket, (SO_FILT_HINT_LOCKED | SO_FILT_HINT_IFDENIED));
13274 }
13275
13276 if (socket_proc) {
13277 proc_rele(socket_proc);
13278 }
13279
13280 if (info.soflow_entry != NULL) {
13281 soflow_free_flow(info.soflow_entry);
13282 }
13283
13284 return allowed_to_receive;
13285 }
13286
13287 bool
necp_socket_is_allowed_to_send_recv_v4(struct inpcb * inp,u_int16_t local_port,u_int16_t remote_port,struct in_addr * local_addr,struct in_addr * remote_addr,ifnet_t input_interface,u_int16_t pf_tag,necp_kernel_policy_id * return_policy_id,u_int32_t * return_route_rule_id,necp_kernel_policy_id * return_skip_policy_id,u_int32_t * return_pass_flags)13288 necp_socket_is_allowed_to_send_recv_v4(struct inpcb *inp, u_int16_t local_port, u_int16_t remote_port, struct in_addr *local_addr, struct in_addr *remote_addr, ifnet_t input_interface, u_int16_t pf_tag, necp_kernel_policy_id *return_policy_id, u_int32_t *return_route_rule_id, necp_kernel_policy_id *return_skip_policy_id, u_int32_t *return_pass_flags)
13289 {
13290 struct sockaddr_in local = {};
13291 struct sockaddr_in remote = {};
13292 local.sin_family = remote.sin_family = AF_INET;
13293 local.sin_len = remote.sin_len = sizeof(struct sockaddr_in);
13294 local.sin_port = local_port;
13295 remote.sin_port = remote_port;
13296 memcpy(&local.sin_addr, local_addr, sizeof(local.sin_addr));
13297 memcpy(&remote.sin_addr, remote_addr, sizeof(remote.sin_addr));
13298
13299 return necp_socket_is_allowed_to_send_recv_internal(inp, SA(&local), SA(&remote), input_interface,
13300 pf_tag, return_policy_id, return_route_rule_id, return_skip_policy_id, return_pass_flags);
13301 }
13302
13303 bool
necp_socket_is_allowed_to_send_recv_v6(struct inpcb * inp,u_int16_t local_port,u_int16_t remote_port,struct in6_addr * local_addr,struct in6_addr * remote_addr,ifnet_t input_interface,u_int16_t pf_tag,necp_kernel_policy_id * return_policy_id,u_int32_t * return_route_rule_id,necp_kernel_policy_id * return_skip_policy_id,u_int32_t * return_pass_flags)13304 necp_socket_is_allowed_to_send_recv_v6(struct inpcb *inp, u_int16_t local_port, u_int16_t remote_port, struct in6_addr *local_addr, struct in6_addr *remote_addr, ifnet_t input_interface, u_int16_t pf_tag, necp_kernel_policy_id *return_policy_id, u_int32_t *return_route_rule_id, necp_kernel_policy_id *return_skip_policy_id, u_int32_t *return_pass_flags)
13305 {
13306 struct sockaddr_in6 local = {};
13307 struct sockaddr_in6 remote = {};
13308 local.sin6_family = remote.sin6_family = AF_INET6;
13309 local.sin6_len = remote.sin6_len = sizeof(struct sockaddr_in6);
13310 local.sin6_port = local_port;
13311 remote.sin6_port = remote_port;
13312 memcpy(&local.sin6_addr, local_addr, sizeof(local.sin6_addr));
13313 memcpy(&remote.sin6_addr, remote_addr, sizeof(remote.sin6_addr));
13314
13315 return necp_socket_is_allowed_to_send_recv_internal(inp, SA(&local), SA(&remote), input_interface,
13316 pf_tag, return_policy_id, return_route_rule_id, return_skip_policy_id, return_pass_flags);
13317 }
13318
13319 bool
necp_socket_is_allowed_to_send_recv(struct inpcb * inp,ifnet_t input_interface,u_int16_t pf_tag,necp_kernel_policy_id * return_policy_id,u_int32_t * return_route_rule_id,necp_kernel_policy_id * return_skip_policy_id,u_int32_t * return_pass_flags)13320 necp_socket_is_allowed_to_send_recv(struct inpcb *inp, ifnet_t input_interface, u_int16_t pf_tag, necp_kernel_policy_id *return_policy_id,
13321 u_int32_t *return_route_rule_id, necp_kernel_policy_id *return_skip_policy_id, u_int32_t *return_pass_flags)
13322 {
13323 return necp_socket_is_allowed_to_send_recv_internal(inp, NULL, NULL, input_interface, pf_tag,
13324 return_policy_id, return_route_rule_id,
13325 return_skip_policy_id, return_pass_flags);
13326 }
13327
13328 int
necp_mark_packet_from_socket(struct mbuf * packet,struct inpcb * inp,necp_kernel_policy_id policy_id,u_int32_t route_rule_id,necp_kernel_policy_id skip_policy_id,u_int32_t pass_flags)13329 necp_mark_packet_from_socket(struct mbuf *packet, struct inpcb *inp, necp_kernel_policy_id policy_id, u_int32_t route_rule_id,
13330 necp_kernel_policy_id skip_policy_id, u_int32_t pass_flags)
13331 {
13332 if (packet == NULL || inp == NULL || !(packet->m_flags & M_PKTHDR)) {
13333 return EINVAL;
13334 }
13335
13336 if (NECP_DATA_TRACE_DP_ON(necp_data_tracing_level)) {
13337 NECP_DATA_TRACE_LOG_SOCKET_BRIEF(TRUE, inp->inp_socket, "SOCKET", "START - MARK PACKET",
13338 policy_id, skip_policy_id, inp->inp_policyresult.policy_id, inp->inp_policyresult.skip_policy_id);
13339 }
13340
13341 // Mark ID for Pass and IP Tunnel
13342 if (policy_id != NECP_KERNEL_POLICY_ID_NONE) {
13343 packet->m_pkthdr.necp_mtag.necp_policy_id = policy_id;
13344 } else if (inp->inp_policyresult.results.result == NECP_KERNEL_POLICY_RESULT_PASS ||
13345 inp->inp_policyresult.results.result == NECP_KERNEL_POLICY_RESULT_IP_TUNNEL) {
13346 packet->m_pkthdr.necp_mtag.necp_policy_id = inp->inp_policyresult.policy_id;
13347 } else if (inp->inp_policyresult.policy_id == NECP_KERNEL_POLICY_ID_NO_MATCH &&
13348 inp->inp_policyresult.results.result == NECP_KERNEL_POLICY_RESULT_NONE) {
13349 // This case is same as a PASS
13350 packet->m_pkthdr.necp_mtag.necp_policy_id = inp->inp_policyresult.policy_id;
13351 } else {
13352 packet->m_pkthdr.necp_mtag.necp_policy_id = NECP_KERNEL_POLICY_ID_NONE;
13353 }
13354 packet->m_pkthdr.necp_mtag.necp_last_interface_index = 0;
13355 if (route_rule_id != 0) {
13356 packet->m_pkthdr.necp_mtag.necp_route_rule_id = route_rule_id;
13357 } else {
13358 packet->m_pkthdr.necp_mtag.necp_route_rule_id = inp->inp_policyresult.results.route_rule_id;
13359 }
13360 packet->m_pkthdr.necp_mtag.necp_app_id = (inp->inp_policyresult.app_id >= UINT16_MAX ? (inp->inp_policyresult.app_id - UINT16_MAX) : inp->inp_policyresult.app_id);
13361
13362 if (skip_policy_id != NECP_KERNEL_POLICY_ID_NONE &&
13363 skip_policy_id != NECP_KERNEL_POLICY_ID_NO_MATCH) {
13364 // Only mark the skip policy if it is a valid policy ID
13365 packet->m_pkthdr.necp_mtag.necp_skip_policy_id = skip_policy_id;
13366 } else if (inp->inp_policyresult.skip_policy_id != NECP_KERNEL_POLICY_ID_NONE &&
13367 inp->inp_policyresult.skip_policy_id != NECP_KERNEL_POLICY_ID_NO_MATCH) {
13368 packet->m_pkthdr.necp_mtag.necp_skip_policy_id = inp->inp_policyresult.skip_policy_id;
13369 } else if (inp->inp_policyresult.results.filter_control_unit == NECP_FILTER_UNIT_NO_FILTER) {
13370 // Overload the meaning of "NECP_KERNEL_POLICY_ID_NO_MATCH"
13371 // to indicate that NECP_FILTER_UNIT_NO_FILTER was set
13372 // See necp_get_skip_policy_id_from_packet() and
13373 // necp_packet_should_skip_filters().
13374 packet->m_pkthdr.necp_mtag.necp_skip_policy_id = NECP_KERNEL_POLICY_ID_NO_MATCH;
13375 } else {
13376 packet->m_pkthdr.necp_mtag.necp_skip_policy_id = NECP_KERNEL_POLICY_ID_NONE;
13377 }
13378
13379 if (((pass_flags & NECP_KERNEL_POLICY_PASS_PF_TAG) == NECP_KERNEL_POLICY_PASS_PF_TAG) ||
13380 ((inp->inp_policyresult.results.result_parameter.pass_flags & NECP_KERNEL_POLICY_PASS_PF_TAG) == NECP_KERNEL_POLICY_PASS_PF_TAG)) {
13381 m_pftag(packet)->pftag_tag = PF_TAG_ID_SYSTEM_SERVICE;
13382 }
13383
13384 if (NECP_DATA_TRACE_DP_ON(necp_data_tracing_level)) {
13385 NECP_DATA_TRACE_LOG_SOCKET_BRIEF(TRUE, inp->inp_socket, "SOCKET", "RESULT - MARK PACKET",
13386 packet->m_pkthdr.necp_mtag.necp_policy_id, packet->m_pkthdr.necp_mtag.necp_skip_policy_id, 0, 0);
13387 }
13388
13389 return 0;
13390 }
13391
13392 int
necp_mark_packet_from_ip(struct mbuf * packet,necp_kernel_policy_id policy_id)13393 necp_mark_packet_from_ip(struct mbuf *packet, necp_kernel_policy_id policy_id)
13394 {
13395 if (packet == NULL || !(packet->m_flags & M_PKTHDR)) {
13396 return EINVAL;
13397 }
13398
13399 // Mark ID for Pass and IP Tunnel
13400 if (policy_id != NECP_KERNEL_POLICY_ID_NONE) {
13401 packet->m_pkthdr.necp_mtag.necp_policy_id = policy_id;
13402 } else {
13403 packet->m_pkthdr.necp_mtag.necp_policy_id = NECP_KERNEL_POLICY_ID_NONE;
13404 }
13405
13406 return 0;
13407 }
13408
13409 int
necp_mark_packet_from_ip_with_skip(struct mbuf * packet,necp_kernel_policy_id policy_id,necp_kernel_policy_id skip_policy_id)13410 necp_mark_packet_from_ip_with_skip(struct mbuf *packet, necp_kernel_policy_id policy_id, necp_kernel_policy_id skip_policy_id)
13411 {
13412 if (packet == NULL || !(packet->m_flags & M_PKTHDR)) {
13413 return EINVAL;
13414 }
13415
13416 // Mark ID for Pass and IP Tunnel
13417 if (policy_id != NECP_KERNEL_POLICY_ID_NONE) {
13418 packet->m_pkthdr.necp_mtag.necp_policy_id = policy_id;
13419 } else {
13420 packet->m_pkthdr.necp_mtag.necp_policy_id = NECP_KERNEL_POLICY_ID_NONE;
13421 }
13422
13423 if (skip_policy_id != NECP_KERNEL_POLICY_ID_NONE) {
13424 packet->m_pkthdr.necp_mtag.necp_skip_policy_id = skip_policy_id;
13425 } else {
13426 packet->m_pkthdr.necp_mtag.necp_skip_policy_id = NECP_KERNEL_POLICY_ID_NONE;
13427 }
13428 return 0;
13429 }
13430
13431 int
necp_mark_packet_from_interface(struct mbuf * packet,ifnet_t interface)13432 necp_mark_packet_from_interface(struct mbuf *packet, ifnet_t interface)
13433 {
13434 if (packet == NULL || !(packet->m_flags & M_PKTHDR)) {
13435 return EINVAL;
13436 }
13437
13438 // Mark ID for Pass and IP Tunnel
13439 if (interface != NULL) {
13440 packet->m_pkthdr.necp_mtag.necp_last_interface_index = interface->if_index;
13441 }
13442
13443 return 0;
13444 }
13445
13446 int
necp_mark_packet_as_keepalive(struct mbuf * packet,bool is_keepalive)13447 necp_mark_packet_as_keepalive(struct mbuf *packet, bool is_keepalive)
13448 {
13449 if (packet == NULL || !(packet->m_flags & M_PKTHDR)) {
13450 return EINVAL;
13451 }
13452
13453 if (is_keepalive) {
13454 packet->m_pkthdr.pkt_flags |= PKTF_KEEPALIVE;
13455 } else {
13456 packet->m_pkthdr.pkt_flags &= ~PKTF_KEEPALIVE;
13457 }
13458
13459 return 0;
13460 }
13461
13462 necp_kernel_policy_id
necp_get_policy_id_from_packet(struct mbuf * packet)13463 necp_get_policy_id_from_packet(struct mbuf *packet)
13464 {
13465 if (packet == NULL || !(packet->m_flags & M_PKTHDR)) {
13466 return NECP_KERNEL_POLICY_ID_NONE;
13467 }
13468
13469 return packet->m_pkthdr.necp_mtag.necp_policy_id;
13470 }
13471
13472 necp_kernel_policy_id
necp_get_skip_policy_id_from_packet(struct mbuf * packet)13473 necp_get_skip_policy_id_from_packet(struct mbuf *packet)
13474 {
13475 if (packet == NULL || !(packet->m_flags & M_PKTHDR)) {
13476 return NECP_KERNEL_POLICY_ID_NONE;
13477 }
13478
13479 // Check for overloaded value. See necp_mark_packet_from_socket().
13480 if (packet->m_pkthdr.necp_mtag.necp_skip_policy_id == NECP_KERNEL_POLICY_ID_NO_MATCH) {
13481 return NECP_KERNEL_POLICY_ID_NONE;
13482 }
13483
13484 return packet->m_pkthdr.necp_mtag.necp_skip_policy_id;
13485 }
13486
13487 u_int16_t
necp_get_packet_filter_tags_from_packet(struct mbuf * packet)13488 necp_get_packet_filter_tags_from_packet(struct mbuf *packet)
13489 {
13490 if (packet == NULL || !(packet->m_flags & M_PKTHDR)) {
13491 return 0;
13492 }
13493
13494 return m_pftag(packet)->pftag_tag;
13495 }
13496
13497 bool
necp_packet_should_skip_filters(struct mbuf * packet)13498 necp_packet_should_skip_filters(struct mbuf *packet)
13499 {
13500 if (packet == NULL || !(packet->m_flags & M_PKTHDR)) {
13501 return false;
13502 }
13503
13504 // Check for overloaded value. See necp_mark_packet_from_socket().
13505 return packet->m_pkthdr.necp_mtag.necp_skip_policy_id == NECP_KERNEL_POLICY_ID_NO_MATCH;
13506 }
13507
13508 u_int32_t
necp_get_last_interface_index_from_packet(struct mbuf * packet)13509 necp_get_last_interface_index_from_packet(struct mbuf *packet)
13510 {
13511 if (packet == NULL || !(packet->m_flags & M_PKTHDR)) {
13512 return 0;
13513 }
13514
13515 return packet->m_pkthdr.necp_mtag.necp_last_interface_index;
13516 }
13517
13518 u_int32_t
necp_get_route_rule_id_from_packet(struct mbuf * packet)13519 necp_get_route_rule_id_from_packet(struct mbuf *packet)
13520 {
13521 if (packet == NULL || !(packet->m_flags & M_PKTHDR)) {
13522 return 0;
13523 }
13524
13525 return packet->m_pkthdr.necp_mtag.necp_route_rule_id;
13526 }
13527
13528 int
necp_get_app_uuid_from_packet(struct mbuf * packet,uuid_t app_uuid)13529 necp_get_app_uuid_from_packet(struct mbuf *packet,
13530 uuid_t app_uuid)
13531 {
13532 if (packet == NULL || !(packet->m_flags & M_PKTHDR)) {
13533 return EINVAL;
13534 }
13535
13536 bool found_mapping = FALSE;
13537 if (packet->m_pkthdr.necp_mtag.necp_app_id != 0) {
13538 lck_rw_lock_shared(&necp_kernel_policy_lock);
13539 necp_app_id app_id = (packet->m_pkthdr.necp_mtag.necp_app_id < UINT16_MAX ? (packet->m_pkthdr.necp_mtag.necp_app_id + UINT16_MAX) : packet->m_pkthdr.necp_mtag.necp_app_id);
13540 struct necp_uuid_id_mapping *entry = necp_uuid_lookup_uuid_with_app_id_locked(app_id);
13541 if (entry != NULL) {
13542 uuid_copy(app_uuid, entry->uuid);
13543 found_mapping = true;
13544 }
13545 lck_rw_done(&necp_kernel_policy_lock);
13546 }
13547 if (!found_mapping) {
13548 uuid_clear(app_uuid);
13549 }
13550 return 0;
13551 }
13552
13553 bool
necp_get_is_keepalive_from_packet(struct mbuf * packet)13554 necp_get_is_keepalive_from_packet(struct mbuf *packet)
13555 {
13556 if (packet == NULL || !(packet->m_flags & M_PKTHDR)) {
13557 return FALSE;
13558 }
13559
13560 return packet->m_pkthdr.pkt_flags & PKTF_KEEPALIVE;
13561 }
13562
13563 u_int32_t
necp_socket_get_content_filter_control_unit(struct socket * so)13564 necp_socket_get_content_filter_control_unit(struct socket *so)
13565 {
13566 struct inpcb *inp = sotoinpcb(so);
13567
13568 if (inp == NULL) {
13569 return 0;
13570 }
13571 return inp->inp_policyresult.results.filter_control_unit;
13572 }
13573
13574 u_int32_t
necp_socket_get_policy_gencount(struct socket * so)13575 necp_socket_get_policy_gencount(struct socket *so)
13576 {
13577 struct inpcb *inp = so ? sotoinpcb(so) : NULL;
13578
13579 if (inp == NULL) {
13580 return 0;
13581 }
13582 return inp->inp_policyresult.policy_gencount;
13583 }
13584
13585 bool
necp_socket_should_use_flow_divert(struct inpcb * inp)13586 necp_socket_should_use_flow_divert(struct inpcb *inp)
13587 {
13588 if (inp == NULL) {
13589 return FALSE;
13590 }
13591
13592 return !(inp->inp_socket->so_flags1 & SOF1_FLOW_DIVERT_SKIP) &&
13593 (inp->inp_policyresult.results.result == NECP_KERNEL_POLICY_RESULT_SOCKET_DIVERT ||
13594 (inp->inp_policyresult.results.flow_divert_aggregate_unit != 0));
13595 }
13596
13597 u_int32_t
necp_socket_get_flow_divert_control_unit(struct inpcb * inp,uint32_t * aggregate_unit)13598 necp_socket_get_flow_divert_control_unit(struct inpcb *inp, uint32_t *aggregate_unit)
13599 {
13600 if (inp == NULL) {
13601 return 0;
13602 }
13603
13604 if (inp->inp_socket->so_flags1 & SOF1_FLOW_DIVERT_SKIP) {
13605 return 0;
13606 }
13607
13608 if (aggregate_unit != NULL &&
13609 inp->inp_policyresult.results.flow_divert_aggregate_unit != 0) {
13610 *aggregate_unit = inp->inp_policyresult.results.flow_divert_aggregate_unit;
13611 }
13612
13613 if (inp->inp_policyresult.results.result == NECP_KERNEL_POLICY_RESULT_SOCKET_DIVERT) {
13614 return inp->inp_policyresult.results.result_parameter.flow_divert_control_unit;
13615 }
13616
13617 return 0;
13618 }
13619
13620 bool
necp_socket_should_rescope(struct inpcb * inp)13621 necp_socket_should_rescope(struct inpcb *inp)
13622 {
13623 if (inp == NULL) {
13624 return FALSE;
13625 }
13626
13627 return inp->inp_policyresult.results.result == NECP_KERNEL_POLICY_RESULT_SOCKET_SCOPED ||
13628 inp->inp_policyresult.results.result == NECP_KERNEL_POLICY_RESULT_SCOPED_DIRECT;
13629 }
13630
13631 u_int
necp_socket_get_rescope_if_index(struct inpcb * inp)13632 necp_socket_get_rescope_if_index(struct inpcb *inp)
13633 {
13634 if (inp == NULL) {
13635 return 0;
13636 }
13637
13638 if (inp->inp_policyresult.results.result == NECP_KERNEL_POLICY_RESULT_SOCKET_SCOPED) {
13639 return inp->inp_policyresult.results.result_parameter.scoped_interface_index;
13640 } else if (inp->inp_policyresult.results.result == NECP_KERNEL_POLICY_RESULT_SCOPED_DIRECT) {
13641 return necp_get_primary_direct_interface_index();
13642 }
13643
13644 return 0;
13645 }
13646
13647 u_int32_t
necp_socket_get_effective_mtu(struct inpcb * inp,u_int32_t current_mtu)13648 necp_socket_get_effective_mtu(struct inpcb *inp, u_int32_t current_mtu)
13649 {
13650 if (inp == NULL) {
13651 return current_mtu;
13652 }
13653
13654 if (inp->inp_policyresult.results.result == NECP_KERNEL_POLICY_RESULT_IP_TUNNEL &&
13655 (inp->inp_flags & INP_BOUND_IF) &&
13656 inp->inp_boundifp) {
13657 u_int bound_interface_index = inp->inp_boundifp->if_index;
13658 u_int tunnel_interface_index = inp->inp_policyresult.results.result_parameter.tunnel_interface_index;
13659
13660 // The result is IP Tunnel, and is rescoping from one interface to another. Recalculate MTU.
13661 if (bound_interface_index != tunnel_interface_index) {
13662 ifnet_t tunnel_interface = NULL;
13663
13664 ifnet_head_lock_shared();
13665 tunnel_interface = ifindex2ifnet[tunnel_interface_index];
13666 ifnet_head_done();
13667
13668 if (tunnel_interface != NULL) {
13669 u_int32_t direct_tunnel_mtu = tunnel_interface->if_mtu;
13670 u_int32_t delegate_tunnel_mtu = (tunnel_interface->if_delegated.ifp != NULL) ? tunnel_interface->if_delegated.ifp->if_mtu : 0;
13671 const char ipsec_prefix[] = "ipsec";
13672 if (delegate_tunnel_mtu != 0 &&
13673 strlcmp(ipsec_prefix, tunnel_interface->if_name, sizeof(ipsec_prefix)) == 0) {
13674 // For ipsec interfaces, calculate the overhead from the delegate interface
13675 u_int32_t tunnel_overhead = (u_int32_t)(esp_hdrsiz(NULL) + sizeof(struct ip6_hdr));
13676 if (delegate_tunnel_mtu > tunnel_overhead) {
13677 delegate_tunnel_mtu -= tunnel_overhead;
13678 }
13679
13680 if (delegate_tunnel_mtu < direct_tunnel_mtu) {
13681 // If the (delegate - overhead) < direct, return (delegate - overhead)
13682 return delegate_tunnel_mtu;
13683 } else {
13684 // Otherwise return direct
13685 return direct_tunnel_mtu;
13686 }
13687 } else {
13688 // For non-ipsec interfaces, just return the tunnel MTU
13689 return direct_tunnel_mtu;
13690 }
13691 }
13692 }
13693 }
13694
13695 // By default, just return the MTU passed in
13696 return current_mtu;
13697 }
13698
13699 ifnet_t
necp_get_ifnet_from_result_parameter(necp_kernel_policy_result_parameter * result_parameter)13700 necp_get_ifnet_from_result_parameter(necp_kernel_policy_result_parameter *result_parameter)
13701 {
13702 if (result_parameter == NULL) {
13703 return NULL;
13704 }
13705
13706 return ifindex2ifnet[result_parameter->tunnel_interface_index];
13707 }
13708
13709 bool
necp_packet_can_rebind_to_ifnet(struct mbuf * packet,struct ifnet * interface,struct route * new_route,int family)13710 necp_packet_can_rebind_to_ifnet(struct mbuf *packet, struct ifnet *interface, struct route *new_route, int family)
13711 {
13712 bool found_match = FALSE;
13713 bool can_rebind = FALSE;
13714 ifaddr_t ifa;
13715 union necp_sockaddr_union address_storage;
13716
13717 if (packet == NULL || interface == NULL || new_route == NULL || (family != AF_INET && family != AF_INET6)) {
13718 return FALSE;
13719 }
13720
13721 // Match source address against interface addresses
13722 ifnet_lock_shared(interface);
13723 TAILQ_FOREACH(ifa, &interface->if_addrhead, ifa_link) {
13724 if (ifaddr_address(ifa, SA(&address_storage.sa), sizeof(address_storage)) == 0) {
13725 if (address_storage.sa.sa_family != family) {
13726 continue;
13727 }
13728
13729 if (family == AF_INET) {
13730 struct ip *ip = mtod(packet, struct ip *);
13731 if (memcmp(&address_storage.sin.sin_addr, &ip->ip_src, sizeof(ip->ip_src)) == 0) {
13732 found_match = TRUE;
13733 break;
13734 }
13735 } else if (family == AF_INET6) {
13736 struct ip6_hdr *ip6 = mtod(packet, struct ip6_hdr *);
13737 if (memcmp(&address_storage.sin6.sin6_addr, &ip6->ip6_src, sizeof(ip6->ip6_src)) == 0) {
13738 found_match = TRUE;
13739 break;
13740 }
13741 }
13742 }
13743 }
13744 const uint32_t if_idx = interface->if_index;
13745 ifnet_lock_done(interface);
13746
13747 // If source address matched, attempt to construct a route to the destination address
13748 if (found_match) {
13749 ROUTE_RELEASE(new_route);
13750
13751 if (family == AF_INET) {
13752 struct ip *ip = mtod(packet, struct ip *);
13753 struct sockaddr_in *dst4 = SIN(&new_route->ro_dst);
13754 dst4->sin_family = AF_INET;
13755 dst4->sin_len = sizeof(struct sockaddr_in);
13756 dst4->sin_addr = ip->ip_dst;
13757 rtalloc_scoped(new_route, if_idx);
13758 if (!ROUTE_UNUSABLE(new_route)) {
13759 can_rebind = TRUE;
13760 }
13761 } else if (family == AF_INET6) {
13762 struct ip6_hdr *ip6 = mtod(packet, struct ip6_hdr *);
13763 struct sockaddr_in6 *dst6 = SIN6(SA(&new_route->ro_dst));
13764 dst6->sin6_family = AF_INET6;
13765 dst6->sin6_len = sizeof(struct sockaddr_in6);
13766 dst6->sin6_addr = ip6->ip6_dst;
13767 rtalloc_scoped(new_route, if_idx);
13768 if (!ROUTE_UNUSABLE(new_route)) {
13769 can_rebind = TRUE;
13770 }
13771 }
13772 }
13773
13774 return can_rebind;
13775 }
13776
13777 static bool
necp_addr_is_loopback(struct sockaddr * address)13778 necp_addr_is_loopback(struct sockaddr *address)
13779 {
13780 if (address == NULL) {
13781 return FALSE;
13782 }
13783
13784 if (address->sa_family == AF_INET) {
13785 return IN_LOOPBACK(ntohl(SIN(address)->sin_addr.s_addr));
13786 } else if (address->sa_family == AF_INET6) {
13787 if (!IN6_IS_ADDR_V4MAPPED(&SIN6(address)->sin6_addr)) {
13788 return IN6_IS_ADDR_LOOPBACK(&SIN6(address)->sin6_addr);
13789 } else {
13790 // Match ::ffff:127.0.0.1 loopback address
13791 in6_addr_t *in6_addr_ptr = &(SIN6(address)->sin6_addr);
13792 return *(const __uint32_t *)(const void *)(&in6_addr_ptr->s6_addr[12]) == ntohl(INADDR_LOOPBACK);
13793 }
13794 }
13795
13796 return FALSE;
13797 }
13798
13799 static bool
necp_is_loopback(struct sockaddr * local_addr,struct sockaddr * remote_addr,struct inpcb * inp,struct mbuf * packet,u_int32_t bound_interface_index)13800 necp_is_loopback(struct sockaddr *local_addr, struct sockaddr *remote_addr, struct inpcb *inp, struct mbuf *packet, u_int32_t bound_interface_index)
13801 {
13802 // Note: This function only checks for the loopback addresses.
13803 // In the future, we may want to expand to also allow any traffic
13804 // going through the loopback interface, but until then, this
13805 // check is cheaper.
13806
13807 if (local_addr != NULL && necp_addr_is_loopback(local_addr)) {
13808 return TRUE;
13809 }
13810
13811 if (remote_addr != NULL && necp_addr_is_loopback(remote_addr)) {
13812 return TRUE;
13813 }
13814
13815 if (inp != NULL) {
13816 if ((inp->inp_flags & INP_BOUND_IF) && inp->inp_boundifp && (inp->inp_boundifp->if_flags & IFF_LOOPBACK)) {
13817 return TRUE;
13818 }
13819 if (inp->inp_vflag & INP_IPV4) {
13820 if (IN_LOOPBACK(ntohl(inp->inp_laddr.s_addr)) ||
13821 IN_LOOPBACK(ntohl(inp->inp_faddr.s_addr))) {
13822 return TRUE;
13823 }
13824 } else if (inp->inp_vflag & INP_IPV6) {
13825 if (IN6_IS_ADDR_LOOPBACK(&inp->in6p_laddr) ||
13826 IN6_IS_ADDR_LOOPBACK(&inp->in6p_faddr)) {
13827 return TRUE;
13828 }
13829 }
13830 } else if (bound_interface_index != IFSCOPE_NONE && lo_ifp->if_index == bound_interface_index) {
13831 return TRUE;
13832 }
13833
13834 if (packet != NULL) {
13835 struct ip *ip = mtod(packet, struct ip *);
13836 if (ip->ip_v == 4) {
13837 if (IN_LOOPBACK(ntohl(ip->ip_src.s_addr))) {
13838 return TRUE;
13839 }
13840 if (IN_LOOPBACK(ntohl(ip->ip_dst.s_addr))) {
13841 return TRUE;
13842 }
13843 } else if (ip->ip_v == 6) {
13844 struct ip6_hdr *ip6 = mtod(packet, struct ip6_hdr *);
13845 if (IN6_IS_ADDR_LOOPBACK(&ip6->ip6_src)) {
13846 return TRUE;
13847 }
13848 if (IN6_IS_ADDR_LOOPBACK(&ip6->ip6_dst)) {
13849 return TRUE;
13850 }
13851 }
13852 }
13853
13854 return FALSE;
13855 }
13856
13857 static bool
necp_is_intcoproc(struct inpcb * inp,struct mbuf * packet)13858 necp_is_intcoproc(struct inpcb *inp, struct mbuf *packet)
13859 {
13860 if (inp != NULL) {
13861 if (!(inp->inp_vflag & INP_IPV6)) {
13862 return false;
13863 }
13864 if (INP_INTCOPROC_ALLOWED(inp)) {
13865 return true;
13866 }
13867 if ((inp->inp_flags & INP_BOUND_IF) &&
13868 IFNET_IS_INTCOPROC(inp->inp_boundifp)) {
13869 return true;
13870 }
13871 return false;
13872 }
13873 if (packet != NULL) {
13874 struct ip6_hdr * __single ip6 = mtod(packet, struct ip6_hdr *);
13875 struct in6_addr * __single addrv6 = &ip6->ip6_dst;
13876 if ((ip6->ip6_vfc & IPV6_VERSION_MASK) == IPV6_VERSION &&
13877 NECP_IS_INTCOPROC_ADDRESS(addrv6)) {
13878 return true;
13879 }
13880 }
13881
13882 return false;
13883 }
13884
13885 static bool
necp_address_matches_drop_dest_policy(union necp_sockaddr_union * sau,u_int32_t session_order)13886 necp_address_matches_drop_dest_policy(union necp_sockaddr_union *sau, u_int32_t session_order)
13887 {
13888 char dest_str[MAX_IPv6_STR_LEN];
13889
13890 if (necp_drop_dest_debug > 0) {
13891 if (sau->sa.sa_family == AF_INET) {
13892 (void) inet_ntop(AF_INET, &sau->sin.sin_addr, dest_str, sizeof(dest_str));
13893 } else if (sau->sa.sa_family == AF_INET6) {
13894 (void) inet_ntop(AF_INET6, &sau->sin6.sin6_addr, dest_str, sizeof(dest_str));
13895 } else {
13896 dest_str[0] = 0;
13897 }
13898 }
13899 for (u_int32_t i = 0; i < necp_drop_dest_policy.entry_count; i++) {
13900 struct necp_drop_dest_entry *necp_drop_dest_entry = &necp_drop_dest_policy.entries[i];
13901 struct necp_policy_condition_addr *npca = &necp_drop_dest_entry->cond_addr;
13902
13903 if (session_order >= necp_drop_dest_entry->order && necp_is_addr_in_subnet(SA(&sau->sa), SA(&npca->address.sa), npca->prefix)) {
13904 if (necp_drop_dest_debug > 0) {
13905 char subnet_str[MAX_IPv6_STR_LEN];
13906 struct proc *p = current_proc();
13907 pid_t pid = proc_pid(p);
13908
13909 if (sau->sa.sa_family == AF_INET) {
13910 (void) inet_ntop(AF_INET, &npca->address.sin, subnet_str, sizeof(subnet_str));
13911 os_log(OS_LOG_DEFAULT, "%s (process %s:%u) %s matches %s/%u", __func__, proc_best_name(p), pid, dest_str, subnet_str, npca->prefix);
13912 } else if (sau->sa.sa_family == AF_INET6) {
13913 (void) inet_ntop(AF_INET6, &npca->address.sin6, subnet_str, sizeof(subnet_str));
13914 os_log(OS_LOG_DEFAULT, "%s (process %s:%u) %s matches %s/%u", __func__, proc_best_name(p), pid, dest_str, subnet_str, npca->prefix);
13915 }
13916 }
13917 return true;
13918 }
13919 }
13920 if (necp_drop_dest_debug > 1) {
13921 struct proc *p = current_proc();
13922 pid_t pid = proc_pid(p);
13923
13924 os_log(OS_LOG_DEFAULT, "%s (process %s:%u) %s no match", __func__, proc_best_name(p), pid, dest_str);
13925 }
13926 return false;
13927 }
13928
13929 static int
13930 sysctl_handle_necp_drop_dest_level SYSCTL_HANDLER_ARGS
13931 {
13932 #pragma unused(arg1, arg2, oidp)
13933 int changed = 0;
13934 int error = 0;
13935 struct necp_drop_dest_policy tmp_drop_dest_policy;
13936 struct proc *p = current_proc();
13937 pid_t pid = proc_pid(p);
13938
13939 if (req->newptr != USER_ADDR_NULL && proc_suser(current_proc()) != 0 &&
13940 priv_check_cred(kauth_cred_get(), PRIV_NET_PRIVILEGED_NECP_POLICIES, 0) != 0) {
13941 NECPLOG(LOG_ERR, "%s (process %s:%u) not permitted", __func__, proc_best_name(p), pid);
13942 return EPERM;
13943 }
13944 if (req->newptr != USER_ADDR_NULL && req->newlen != sizeof(struct necp_drop_dest_policy)) {
13945 NECPLOG(LOG_ERR, "%s (process %s:%u) bad newlen %lu", __func__, proc_best_name(p), pid, req->newlen);
13946 return EINVAL;
13947 }
13948
13949 memcpy(&tmp_drop_dest_policy, &necp_drop_dest_policy, sizeof(struct necp_drop_dest_policy));
13950 error = sysctl_io_opaque(req, &tmp_drop_dest_policy, sizeof(struct necp_drop_dest_policy), &changed);
13951 if (error != 0) {
13952 NECPLOG(LOG_ERR, "%s (process %s:%u) sysctl_io_opaque() error %d", __func__, proc_best_name(p), pid, error);
13953 return error;
13954 }
13955 if (changed == 0 || req->newptr == USER_ADDR_NULL) {
13956 return error;
13957 }
13958
13959 //
13960 // Validate the passed parameters
13961 //
13962 if (tmp_drop_dest_policy.entry_count >= MAX_NECP_DROP_DEST_LEVEL_ADDRS) {
13963 NECPLOG(LOG_ERR, "%s (process %s:%u) bad entry_count %u", __func__, proc_best_name(p), pid, tmp_drop_dest_policy.entry_count);
13964 return EINVAL;
13965 }
13966 for (u_int32_t i = 0; i < tmp_drop_dest_policy.entry_count; i++) {
13967 struct necp_drop_dest_entry *tmp_drop_dest_entry = &tmp_drop_dest_policy.entries[i];
13968 struct necp_policy_condition_addr *npca = &tmp_drop_dest_entry->cond_addr;
13969
13970 switch (tmp_drop_dest_entry->level) {
13971 case NECP_SESSION_PRIORITY_UNKNOWN:
13972 if (tmp_drop_dest_policy.entry_count != 0) {
13973 NECPLOG(LOG_ERR, "%s (process %s:%u) NECP_SESSION_PRIORITY_UNKNOWN bad entry_count %u", __func__, proc_best_name(p), pid, tmp_drop_dest_policy.entry_count);
13974 return EINVAL;
13975 }
13976 break;
13977 case NECP_SESSION_PRIORITY_CONTROL:
13978 case NECP_SESSION_PRIORITY_CONTROL_1:
13979 case NECP_SESSION_PRIORITY_PRIVILEGED_TUNNEL:
13980 case NECP_SESSION_PRIORITY_HIGH:
13981 case NECP_SESSION_PRIORITY_HIGH_1:
13982 case NECP_SESSION_PRIORITY_HIGH_2:
13983 case NECP_SESSION_PRIORITY_HIGH_3:
13984 case NECP_SESSION_PRIORITY_HIGH_4:
13985 case NECP_SESSION_PRIORITY_HIGH_RESTRICTED:
13986 case NECP_SESSION_PRIORITY_DEFAULT:
13987 case NECP_SESSION_PRIORITY_LOW:
13988 if (tmp_drop_dest_policy.entry_count == 0) {
13989 NECPLOG(LOG_ERR, "%s (process %s:%u) priority %u entry_count 0", __func__, proc_best_name(p), pid, tmp_drop_dest_entry->level);
13990 return EINVAL;
13991 }
13992 break;
13993 default: {
13994 NECPLOG(LOG_ERR, "%s (process %s:%u) bad level %u", __func__, proc_best_name(p), pid, tmp_drop_dest_entry->level);
13995 return EINVAL;
13996 }
13997 }
13998
13999 switch (npca->address.sa.sa_family) {
14000 case AF_INET: {
14001 if (npca->prefix > 32) {
14002 NECPLOG(LOG_ERR, "%s (process %s:%u) AF_INET bad prefix %u", __func__, proc_best_name(p), pid, npca->prefix);
14003 return EINVAL;
14004 }
14005 if (npca->address.sin.sin_len != sizeof(struct sockaddr_in)) {
14006 NECPLOG(LOG_ERR, "%s (process %s:%u) AF_INET bad sin_len %u", __func__, proc_best_name(p), pid, npca->address.sin.sin_len);
14007 return EINVAL;
14008 }
14009 if (npca->address.sin.sin_port != 0) {
14010 NECPLOG(LOG_ERR, "%s (process %s:%u) AF_INET bad sin_port %u, not zero", __func__, proc_best_name(p), pid, npca->address.sin.sin_port);
14011 return EINVAL;
14012 }
14013 break;
14014 }
14015 case AF_INET6: {
14016 if (npca->prefix > 128) {
14017 NECPLOG(LOG_ERR, "%s (process %s:%u) AF_INET6 bad prefix %u", __func__, proc_best_name(p), pid, npca->prefix);
14018 return EINVAL;
14019 }
14020 if (npca->address.sin6.sin6_len != sizeof(struct sockaddr_in6)) {
14021 NECPLOG(LOG_ERR, "%s (process %s:%u) AF_INET6 bad sin6_len %u", __func__, proc_best_name(p), pid, npca->address.sin6.sin6_len);
14022 return EINVAL;
14023 }
14024 if (npca->address.sin6.sin6_port != 0) {
14025 NECPLOG(LOG_ERR, "%s (process %s:%u) AF_INET6 bad sin6_port %u, not zero", __func__, proc_best_name(p), pid, npca->address.sin6.sin6_port);
14026 return EINVAL;
14027 }
14028 if (npca->address.sin6.sin6_flowinfo != 0) {
14029 NECPLOG(LOG_ERR, "%s (process %s:%u) AF_INET6 bad sin6_flowinfo %u, not zero", __func__, proc_best_name(p), pid, npca->address.sin6.sin6_flowinfo);
14030 return EINVAL;
14031 }
14032 if (npca->address.sin6.sin6_scope_id != 0) {
14033 NECPLOG(LOG_ERR, "%s (process %s:%u) AF_INET6 bad sin6_scope_id %u, not zero", __func__, proc_best_name(p), pid, npca->address.sin6.sin6_scope_id);
14034 return EINVAL;
14035 }
14036 break;
14037 }
14038 default: {
14039 return EINVAL;
14040 }
14041 }
14042 }
14043
14044 //
14045 // Commit the changed policy
14046 //
14047 lck_rw_lock_exclusive(&necp_kernel_policy_lock);
14048 memset(&necp_drop_dest_policy, 0, sizeof(struct necp_drop_dest_policy));
14049
14050 necp_drop_dest_policy.entry_count = tmp_drop_dest_policy.entry_count;
14051 for (u_int32_t i = 0; i < tmp_drop_dest_policy.entry_count; i++) {
14052 struct necp_drop_dest_entry *tmp_drop_dest_entry = &tmp_drop_dest_policy.entries[i];
14053 struct necp_drop_dest_entry *necp_drop_dest_entry = &necp_drop_dest_policy.entries[i];
14054
14055 memcpy(necp_drop_dest_entry, tmp_drop_dest_entry, sizeof(struct necp_drop_dest_entry));
14056
14057 necp_drop_dest_entry->order = necp_get_first_order_for_priority(necp_drop_dest_entry->level);
14058 }
14059 lck_rw_done(&necp_kernel_policy_lock);
14060
14061 return 0;
14062 }
14063
14064 const char*
necp_get_address_string(union necp_sockaddr_union * address,char addr_str[MAX_IPv6_STR_LEN])14065 necp_get_address_string(union necp_sockaddr_union *address, char addr_str[MAX_IPv6_STR_LEN])
14066 {
14067 uint16_t fam = address->sa.sa_family;
14068 memset(addr_str, 0, MAX_IPv6_STR_LEN);
14069 if (fam == AF_INET) {
14070 (void) inet_ntop(AF_INET, &address->sin.sin_addr, addr_str, MAX_IPv6_STR_LEN);
14071 } else if (fam == AF_INET6) {
14072 (void) inet_ntop(AF_INET6, &address->sin6.sin6_addr, addr_str, MAX_IPv6_STR_LEN);
14073 }
14074 return __unsafe_null_terminated_from_indexable(addr_str);
14075 }
14076