1use serde_json::value::Value;
2use serde::{Deserialize, Serialize};
3use colored::Colorize;
4use ldap3::SearchEntry;
5use log::{info, debug, trace};
6use std::collections::HashMap;
7use std::error::Error;
8
9use crate::enums::{OBJECT_SID_RE1, SID_PART1_RE1};
10use crate::objects::common::{LdapObject, Session, AceTemplate, Member, SPNTarget, LocalGroup, Link, DCRegistryData};
11use crate::utils::date::{convert_timestamp,string_to_epoch};
12use crate::utils::crypto::convert_encryption_types;
13use crate::enums::acl::{
14 parse_embedded_security_descriptor, parse_ntsecuritydescriptor,
15};
16use crate::enums::secdesc::LdapSid;
17use crate::enums::sid::sid_maker;
18use crate::enums::uacflags::get_flag;
19
20use super::common::UserRight;
21
22#[derive(Debug, Clone, Deserialize, Serialize, Default)]
24pub struct Computer {
25 #[serde(rename = "Properties")]
26 properties: ComputerProperties,
27 #[serde(rename = "Aces")]
28 aces: Vec<AceTemplate>,
29 #[serde(rename = "ObjectIdentifier")]
30 object_identifier: String,
31 #[serde(rename = "IsDeleted")]
32 is_deleted: bool,
33 #[serde(rename = "IsACLProtected")]
34 is_acl_protected: bool,
35 #[serde(rename = "ContainedBy")]
36 contained_by: Option<Member>,
37
38 #[serde(rename = "PrimaryGroupSID")]
39 primary_group_sid: String,
40 #[serde(rename = "AllowedToDelegate")]
41 allowed_to_delegate: Vec<Member>,
42 #[serde(rename = "AllowedToAct")]
43 allowed_to_act: Vec<Member>,
44 #[serde(rename = "HasSIDHistory")]
45 has_sid_history: Vec<String>,
46 #[serde(rename = "DumpSMSAPassword")]
47 dump_smsa_password: Vec<Member>,
48
49 #[serde(rename = "Sessions")]
50 sessions: Session,
51 #[serde(rename = "PrivilegedSessions")]
52 privileged_sessions: Session,
53 #[serde(rename = "RegistrySessions")]
54 registry_sessions: Session,
55 #[serde(rename = "LocalGroups")]
56 local_groups: Vec<LocalGroup>,
57 #[serde(rename = "UserRights")]
58 users_rights: Vec<UserRight>,
59 #[serde(rename = "DCRegistryData")]
60 dcregistry_data: DCRegistryData,
61
62 #[serde(rename = "IsDC")]
63 is_dc: bool,
64 #[serde(rename = "UnconstrainedDelegation")]
65 unconstrained_delegation: bool,
66 #[serde(rename = "DomainSID")]
67 domain_sid: String,
68
69 #[serde(rename = "Status")]
70 status: Option<String>,
71}
72
73impl Computer {
74 pub fn new() -> Self {
76 Self { ..Default::default() }
77 }
78
79 pub fn properties(&self) -> &ComputerProperties {
81 &self.properties
82 }
83 pub fn object_identifier(&self) -> &String {
84 &self.object_identifier
85 }
86 pub fn allowed_to_act(&self) -> &Vec<Member> {
87 &self.allowed_to_act
88 }
89
90 pub fn allowed_to_act_mut(&mut self) -> &mut Vec<Member> {
92 &mut self.allowed_to_act
93 }
94 pub fn sessions_mut(&mut self) -> &mut Session {
95 &mut self.sessions
96 }
97 pub fn privileged_sessions_mut(&mut self) -> &mut Session {
98 &mut self.privileged_sessions
99 }
100 pub fn registry_sessions_mut(&mut self) -> &mut Session {
101 &mut self.registry_sessions
102 }
103 pub fn users_rights_mut(&mut self) -> &mut Vec<UserRight> {
104 &mut self.users_rights
105 }
106
107 pub fn parse(
110 &mut self,
111 result: SearchEntry,
112 domain: &str,
113 dn_sid: &mut HashMap<String, String>,
114 sid_type: &mut HashMap<String, String>,
115 fqdn_sid: &mut HashMap<String, String>,
116 fqdn_ip: &mut HashMap<String, String>,
117 domain_sid: &str,
118 schema_guid_map: &HashMap<String, String>,
119 ) -> Result<(), Box<dyn Error>> {
120 let result_dn: String = result.dn.to_uppercase();
121 let result_attrs: HashMap<String, Vec<String>> = result.attrs;
122 let result_bin: HashMap<String, Vec<Vec<u8>>> = result.bin_attrs;
123
124 debug!("Parse computer: {result_dn}");
126
127 for (key, value) in &result_attrs {
129 trace!(" {key:?}:{value:?}");
130 }
131 for (key, value) in &result_bin {
133 trace!(" {key:?}:{value:?}");
134 }
135
136 self.properties.domain = domain.to_uppercase();
138 self.properties.distinguishedname = result_dn;
139 self.properties.enabled = true;
140 self.domain_sid = domain_sid.to_string();
141
142 let mut sid: String = "".to_owned();
143 let mut group_id: String = "".to_owned();
144 for (key, value) in &result_attrs {
146 match key.as_str() {
147 "name" => {
148 if !result_attrs.contains_key("dNSHostName") {
154 let name = &value[0];
155 let email = format!("{}.{}",name.to_owned(),domain);
156 self.properties.name = email.to_uppercase();
157 }
158 }
159 "sAMAccountName" => {
160 self.properties.samaccountname = value[0].to_owned();
161 }
162 "dNSHostName" => {
163 self.properties.name = value[0].to_uppercase();
164 }
165 "description" => {
166 self.properties.description = Some(value[0].to_owned());
167 }
168 "operatingSystem" => {
169 self.properties.operatingsystem = value[0].to_owned();
170 }
171 "lastLogon" => {
189 let lastlogon = &value[0].parse::<i64>().unwrap_or(0);
190 if lastlogon.is_positive() {
191 let epoch = convert_timestamp(*lastlogon);
192 self.properties.lastlogon = epoch;
193 }
194 }
195 "lastLogonTimestamp" => {
196 let lastlogontimestamp = &value[0].parse::<i64>().unwrap_or(0);
197 if lastlogontimestamp.is_positive() {
198 let epoch = convert_timestamp(*lastlogontimestamp);
199 self.properties.lastlogontimestamp = epoch;
200 }
201 }
202 "pwdLastSet" => {
203 let pwdlastset = &value[0].parse::<i64>().unwrap_or(0);
204 if pwdlastset.is_positive() {
205 let epoch = convert_timestamp(*pwdlastset);
206 self.properties.pwdlastset = epoch;
207 }
208 }
209 "whenCreated" => {
210 let epoch = string_to_epoch(&value[0])?;
211 if epoch.is_positive() {
212 self.properties.whencreated = epoch;
213 }
214 }
215 "servicePrincipalName" => {
216 let mut result: Vec<String> = Vec::new();
218 for value in &result_attrs["servicePrincipalName"] {
219 result.push(value.to_owned());
220 }
221 self.properties.serviceprincipalnames = result;
222 }
223 "userAccountControl" => {
224 let uac = &value[0].parse::<u32>().unwrap();
226 let uac_flags = get_flag(*uac);
227 for flag in uac_flags {
229 if flag.contains("AccountDisable") {
230 self.properties.enabled = false;
231 };
232 if flag.contains("TrustedForDelegation") {
235 self.properties.unconstraineddelegation = true;
236 self.unconstrained_delegation = true;
237 };
238 if flag.contains("TrustedToAuthForDelegation") {
239 self.properties.trustedtoauth = true;
240 };
241 if flag.contains("PasswordNotRequired") {
242 self.properties.passwordnotreqd = true;
243 };
244 if flag.contains("DontExpirePassword") {
245 self.properties.pwdneverexpires = true;
246 };
247 if flag.contains("ServerTrustAccount") {
248 self.properties.is_dc = true;
249 self.is_dc = true;
250 }
251 }
252 }
253 "msDS-AllowedToDelegateTo" => {
254 let mut vec_members2: Vec<Member> = Vec::new();
258 for objet in value {
259 let mut member_allowed_to_delegate = Member::new();
260 let split = objet.split("/");
261 let fqdn = split.collect::<Vec<&str>>()[1];
262 let mut checker = false;
263 for member in &vec_members2 {
264 if member.object_identifier().contains(fqdn.to_uppercase().as_str()) {
265 checker = true;
266 }
267 }
268 if !checker {
269 *member_allowed_to_delegate.object_identifier_mut() = fqdn.to_uppercase().to_owned().to_uppercase();
270 *member_allowed_to_delegate.object_type_mut() = "Computer".to_owned();
271 vec_members2.push(member_allowed_to_delegate.to_owned());
272 }
273 }
274 self.allowed_to_delegate = vec_members2;
276 }
277 "ms-Mcs-AdmPwd" => {
279 info!(
282 "Your user can read LAPS password on {}: {}",
283 &result_attrs["name"][0].yellow().bold(),
284 &result_attrs["ms-Mcs-AdmPwd"][0].yellow().bold()
285 );
286 self.properties.haslaps = true;
287 }
288 "ms-Mcs-AdmPwdExpirationTime" => {
289 self.properties.haslaps = true;
292 }
293 "msLAPS-Password" => {
295 info!(
296 "Your user can read LAPS password on {}: {:?}",
297 &result_attrs["name"][0].yellow().bold(),
298 &value[0].yellow().bold()
299 );
300 self.properties.haslaps = true;
301 }
302 "msLAPS-EncryptedPassword" => {
303 info!(
304 "Your user can read uncrypted LAPS password on {} please check manually to decrypt it!",
305 &result_attrs["name"][0].yellow().bold()
306 );
307 self.properties.haslaps = true;
308 }
309 "msLAPS-PasswordExpirationTime" => {
310 self.properties.haslaps = true;
312 }
313 "primaryGroupID" => {
314 group_id = value[0].to_owned();
315 }
316 "isDeleted" => {
317 self.is_deleted = true;
318 }
319 "msDS-SupportedEncryptionTypes" => {
320 self.properties.supportedencryptiontypes = convert_encryption_types(value[0].parse::<i32>().unwrap_or(0));
321 }
322 _ => {}
323 }
324 }
325
326 for (key, value) in &result_bin {
328 match key.as_str() {
329 "objectSid" => {
330 sid = sid_maker(LdapSid::parse(&value[0]).unwrap().1, domain);
332 self.object_identifier = sid.to_owned();
333
334 for domain_sid in OBJECT_SID_RE1.captures_iter(&sid) {
335 self.properties.domainsid = domain_sid[0].to_owned().to_string();
336 }
337 }
338 "nTSecurityDescriptor" => {
339 let relations_ace = parse_ntsecuritydescriptor(
342 self,
343 &value[0],
344 "Computer",
345 &result_attrs,
346 &result_bin,
347 domain,
348 schema_guid_map,
349 );
350 self.aces = relations_ace;
351 }
352 "msDS-AllowedToActOnBehalfOfOtherIdentity" => {
353 let relations_ace = parse_embedded_security_descriptor(
356 self,
357 &value[0],
358 "Computer",
359 &result_attrs,
360 &result_bin,
361 domain,
362 schema_guid_map,
363 );
364 let mut vec_members_allowtoact: Vec<Member> = Vec::new();
365 let mut allowed_to_act = Member::new();
366 for delegated in relations_ace {
367 if *delegated.right_name() == "GenericAll" {
370 *allowed_to_act.object_identifier_mut() = delegated.principal_sid().to_string();
371 vec_members_allowtoact.push(allowed_to_act.to_owned());
372 continue
373 }
374 }
375 self.allowed_to_act = vec_members_allowtoact;
376 }
377 "sIDHistory" => {
378 let mut list_sid_history: Vec<String> = Vec::new();
380 for bsid in value {
381 debug!("sIDHistory: {:?}", &bsid);
382 list_sid_history.push(sid_maker(LdapSid::parse(bsid).unwrap().1, domain));
383 }
384 self.properties.sidhistory = list_sid_history.clone();
385 self.has_sid_history = list_sid_history;
386 }
387 _ => {}
388 }
389 }
390
391 #[allow(irrefutable_let_patterns)]
393 if let id = group_id {
394 if let Some(part1) = SID_PART1_RE1.find(&sid) {
395 self.primary_group_sid = format!("{}{}", part1.as_str(), id);
396 } else {
397 eprintln!("[!] Regex did not match any part of the SID");
398 }
399 }
400
401 dn_sid.insert(
403 self.properties.distinguishedname.to_string(),
404 self.object_identifier.to_string(),
405
406 );
407 sid_type.insert(
409 self.object_identifier.to_string(),
410 "Computer".to_string(),
411 );
412
413 fqdn_sid.insert(
414 self.properties.name.to_string(),
415 self.object_identifier.to_string(),
416 );
417
418 fqdn_ip.insert(
419 self.properties.name.to_string(),
420 String::from(""),
421 );
422
423 Ok(())
426 }
427}
428
429impl LdapObject for Computer {
430 fn to_json(&self) -> Value {
432 serde_json::to_value(self).unwrap()
433 }
434
435 fn get_object_identifier(&self) -> &String {
437 &self.object_identifier
438 }
439 fn get_is_acl_protected(&self) -> &bool {
440 &self.is_acl_protected
441 }
442 fn get_aces(&self) -> &Vec<AceTemplate> {
443 &self.aces
444 }
445 fn get_spntargets(&self) -> &Vec<SPNTarget> {
446 panic!("Not used by current object.");
447 }
448 fn get_allowed_to_delegate(&self) -> &Vec<Member> {
449 &self.allowed_to_delegate
450 }
451 fn get_links(&self) -> &Vec<Link> {
452 panic!("Not used by current object.");
453 }
454 fn get_contained_by(&self) -> &Option<Member> {
455 &self.contained_by
456 }
457 fn get_child_objects(&self) -> &Vec<Member> {
458 panic!("Not used by current object.");
459 }
460 fn get_haslaps(&self) -> &bool {
461 &self.properties.haslaps
462 }
463
464 fn get_aces_mut(&mut self) -> &mut Vec<AceTemplate> {
466 &mut self.aces
467 }
468 fn get_spntargets_mut(&mut self) -> &mut Vec<SPNTarget> {
469 panic!("Not used by current object.");
470 }
471 fn get_allowed_to_delegate_mut(&mut self) -> &mut Vec<Member> {
472 &mut self.allowed_to_delegate
473 }
474
475 fn set_is_acl_protected(&mut self, is_acl_protected: bool) {
477 self.is_acl_protected = is_acl_protected;
478 self.properties.isaclprotected = is_acl_protected;
479 }
480 fn set_aces(&mut self, aces: Vec<AceTemplate>) {
481 self.aces = aces;
482 }
483 fn set_spntargets(&mut self, _spn_targets: Vec<SPNTarget>) {
484 }
486 fn set_allowed_to_delegate(&mut self, allowed_to_delegate: Vec<Member>) {
487 self.allowed_to_delegate = allowed_to_delegate;
488 }
489 fn set_links(&mut self, _links: Vec<Link>) {
490 }
492 fn set_contained_by(&mut self, contained_by: Option<Member>) {
493 self.contained_by = contained_by;
494 }
495 fn set_child_objects(&mut self, _child_objects: Vec<Member>) {
496 }
498}
499
500#[derive(Debug, Clone, Serialize, Deserialize, Default)]
502pub struct ComputerProperties {
503 domain: String,
504 name: String,
505 distinguishedname: String,
506 domainsid: String,
507 isaclprotected: bool,
508 highvalue: bool,
509 samaccountname: String,
510 haslaps: bool,
511 description: Option<String>,
512 whencreated: i64,
513 enabled: bool,
514 unconstraineddelegation: bool,
515 trustedtoauth: bool,
516 lastlogon: i64,
517 lastlogontimestamp: i64,
518 pwdlastset: i64,
519 passwordnotreqd: bool,
520 pwdneverexpires: bool,
521 serviceprincipalnames: Vec<String>,
522 operatingsystem: String,
523 sidhistory: Vec<String>,
524 supportedencryptiontypes: Vec<String>,
525 #[serde(skip_serializing)]
526 is_dc: bool
527}
528
529impl ComputerProperties {
530 pub fn name(&self) -> &String {
532 &self.name
533 }
534 pub fn unconstraineddelegation(&self) -> &bool {
535 &self.unconstraineddelegation
536 }
537 pub fn enabled(&self) -> &bool {
538 &self.enabled
539 }
540 pub fn get_is_dc(&self) -> &bool {
541 &self.is_dc
542 }
543 pub fn pwdlastset(&self) -> i64 {
544 self.pwdlastset
545 }
546 pub fn distinguishedname(&self) -> &String {
547 &self.distinguishedname
548 }
549}
550
551#[cfg(test)]
552mod tests {
553 use super::*;
554
555 #[test]
556 fn parse_populates_has_sid_history() {
557 let mut computer = Computer::new();
558 let result = SearchEntry {
559 dn: "CN=TESTPC,OU=Computers,DC=example,DC=local".to_string(),
560 attrs: HashMap::new(),
561 bin_attrs: HashMap::from([(
562 "sIDHistory".to_string(),
563 vec![vec![1, 2, 0, 0, 0, 0, 0, 5, 21, 0, 0, 0, 0x15, 0xCD, 0x5B, 0x07]],
564 )]),
565 };
566 let mut dn_sid = HashMap::new();
567 let mut sid_type = HashMap::new();
568 let mut fqdn_sid = HashMap::new();
569 let mut fqdn_ip = HashMap::new();
570 let schema_guid_map = HashMap::new();
571
572 computer
573 .parse(
574 result,
575 "example.local",
576 &mut dn_sid,
577 &mut sid_type,
578 &mut fqdn_sid,
579 &mut fqdn_ip,
580 "S-1-5-21-1-2-3",
581 &schema_guid_map,
582 )
583 .unwrap();
584
585 assert_eq!(computer.has_sid_history, vec!["S-1-5-21-123456789".to_string()]);
587 }
588}