583 lines
20 KiB
C++
583 lines
20 KiB
C++
/* security.h: security declarations
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This file is part of Cygwin.
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This software is a copyrighted work licensed under the terms of the
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Cygwin license. Please consult the file "CYGWIN_LICENSE" for
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details. */
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#pragma once
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#include <accctrl.h>
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#include <dsgetdc.h>
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/* Special file attribute set in set_created_file_access to flag that a file
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has just been created. Used in get_posix_access. */
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#define S_JUSTCREATED 0x80000000
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/* UID/GID */
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void uinfo_init ();
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bool check_token_membership (PSID);
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#define ILLEGAL_UID ((uid_t)-1)
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#define ILLEGAL_GID ((gid_t)-1)
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/* Offset for accounts in the primary domain of the machine. */
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#define PRIMARY_POSIX_OFFSET (0x00100000)
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/* Fake POSIX offsets used in scenarios in which the account has no permission
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to fetch the POSIX offset, or when the admins have set the offset to an
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unreasonable low value. The values are chosen in the hope that they won't
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collide with "real" offsets. */
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#define NOACCESS_POSIX_OFFSET (0xfe500000)
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#define UNUSABLE_POSIX_OFFSET (0xfea00000)
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/* For UNIX accounts not mapped to Windows accounts via winbind, Samba returns
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SIDs of the form S-1-22-x-y, with x == 1 for users and x == 2 for groups,
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and y == UNIX uid/gid. NFS returns no SIDs at all, but the plain UNIX
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uid/gid values.
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UNIX uid/gid values are mapped to Cygwin uid/gid values 0xff000000 +
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unix uid/gid. This *might* collide with a posix_offset of some trusted
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domain, but it's *very* unlikely. Define the mapping as macro. */
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#define UNIX_POSIX_OFFSET (0xff000000)
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#define UNIX_POSIX_MASK (0x00ffffff)
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#define MAP_UNIX_TO_CYGWIN_ID(id) (UNIX_POSIX_OFFSET \
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| ((id) & UNIX_POSIX_MASK))
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#ifdef __i386__
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#define ILLEGAL_UID16 ((__uid16_t)-1)
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#define ILLEGAL_GID16 ((__gid16_t)-1)
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#define uid16touid32(u16) ((u16)==ILLEGAL_UID16?ILLEGAL_UID:(uid_t)(u16))
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#define gid16togid32(g16) ((g16)==ILLEGAL_GID16?ILLEGAL_GID:(gid_t)(g16))
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#endif
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#define MAX_DACL_LEN(n) (sizeof (ACL) \
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+ (n) * (sizeof (ACCESS_ALLOWED_ACE) - sizeof (DWORD) \
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+ SECURITY_MAX_SID_SIZE))
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#define SD_MIN_SIZE (sizeof (SECURITY_DESCRIPTOR) + MAX_DACL_LEN (1))
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#define ACL_MAXIMUM_SIZE 65532 /* Yeah, right. 64K - sizeof (DWORD). */
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#define SD_MAXIMUM_SIZE 65536
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#define NO_SID ((PSID)NULL)
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#ifndef SE_CREATE_TOKEN_PRIVILEGE
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#define SE_CREATE_TOKEN_PRIVILEGE 2U
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#define SE_ASSIGNPRIMARYTOKEN_PRIVILEGE 3U
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#define SE_LOCK_MEMORY_PRIVILEGE 4U
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#define SE_INCREASE_QUOTA_PRIVILEGE 5U
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#define SE_MACHINE_ACCOUNT_PRIVILEGE 6U
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#define SE_TCB_PRIVILEGE 7U
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#define SE_SECURITY_PRIVILEGE 8U
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#define SE_TAKE_OWNERSHIP_PRIVILEGE 9U
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#define SE_LOAD_DRIVER_PRIVILEGE 10U
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#define SE_SYSTEM_PROFILE_PRIVILEGE 11U
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#define SE_SYSTEMTIME_PRIVILEGE 12U
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#define SE_PROF_SINGLE_PROCESS_PRIVILEGE 13U
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#define SE_INC_BASE_PRIORITY_PRIVILEGE 14U
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#define SE_CREATE_PAGEFILE_PRIVILEGE 15U
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#define SE_CREATE_PERMANENT_PRIVILEGE 16U
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#define SE_BACKUP_PRIVILEGE 17U
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#define SE_RESTORE_PRIVILEGE 18U
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#define SE_SHUTDOWN_PRIVILEGE 19U
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#define SE_DEBUG_PRIVILEGE 20U
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#define SE_AUDIT_PRIVILEGE 21U
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#define SE_SYSTEM_ENVIRONMENT_PRIVILEGE 22U
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#define SE_CHANGE_NOTIFY_PRIVILEGE 23U
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#define SE_REMOTE_SHUTDOWN_PRIVILEGE 24U
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#define SE_UNDOCK_PRIVILEGE 25U
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#define SE_SYNC_AGENT_PRIVILEGE 26U
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#define SE_ENABLE_DELEGATION_PRIVILEGE 27U
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#define SE_MANAGE_VOLUME_PRIVILEGE 28U
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#define SE_IMPERSONATE_PRIVILEGE 29U
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#define SE_CREATE_GLOBAL_PRIVILEGE 30U
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#define SE_TRUSTED_CREDMAN_ACCESS_PRIVILEGE 31U
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#define SE_RELABEL_PRIVILEGE 32U
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#define SE_INCREASE_WORKING_SET_PRIVILEGE 33U
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#define SE_TIME_ZONE_PRIVILEGE 34U
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#define SE_CREATE_SYMBOLIC_LINK_PRIVILEGE 35U
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#define SE_MAX_WELL_KNOWN_PRIVILEGE SE_CREATE_SYMBOLIC_LINK_PRIVILEGE
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#endif /* ! SE_CREATE_TOKEN_PRIVILEGE */
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/* Added for debugging purposes. */
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typedef struct {
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BYTE Revision;
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BYTE SubAuthorityCount;
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SID_IDENTIFIER_AUTHORITY IdentifierAuthority;
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DWORD SubAuthority[SID_MAX_SUB_AUTHORITIES];
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} DBGSID, *PDBGSID;
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/* Macro to define variable length SID structures */
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#define MKSID(name, comment, authority, count, rid...) \
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static NO_COPY struct { \
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BYTE Revision; \
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BYTE SubAuthorityCount; \
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SID_IDENTIFIER_AUTHORITY IdentifierAuthority; \
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DWORD SubAuthority[count]; \
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} name##_struct = { SID_REVISION, count, {authority}, {rid}}; \
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cygpsid NO_COPY name = (PSID) &name##_struct;
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#define FILE_READ_BITS (FILE_READ_DATA | GENERIC_READ | GENERIC_ALL)
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#define FILE_WRITE_BITS (FILE_WRITE_DATA | GENERIC_WRITE | GENERIC_ALL)
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#define FILE_EXEC_BITS (FILE_EXECUTE | GENERIC_EXECUTE | GENERIC_ALL)
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/* Convenience macros. The Windows SID access functions are crude. */
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#define sid_id_auth(s) \
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(RtlIdentifierAuthoritySid (s)->Value[5])
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#define sid_sub_auth_count(s) \
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(*RtlSubAuthorityCountSid ((s)))
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#define sid_sub_auth(s,i) \
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(*RtlSubAuthoritySid ((s),(i)))
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#define sid_sub_auth_rid(s) \
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(*RtlSubAuthoritySid ((s), (*RtlSubAuthorityCountSid ((s)) - 1)))
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#ifdef __cplusplus
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extern "C"
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{
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#endif
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/* We need these declarations, otherwise g++ complains that the below
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inline methods use an undefined function, if ntdll.h isn't included. */
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BOOLEAN NTAPI RtlEqualSid (PSID, PSID);
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NTSTATUS NTAPI RtlCopySid (ULONG, PSID, PSID);
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#ifdef __cplusplus
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}
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#endif
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class cyg_ldap;
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class cygpsid {
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protected:
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PSID psid;
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public:
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cygpsid () {}
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cygpsid (PSID nsid) { psid = nsid; }
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operator PSID () const { return psid; }
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const PSID operator= (PSID nsid) { return psid = nsid;}
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uid_t get_id (BOOL search_grp, int *type, cyg_ldap *pldap);
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int get_uid (cyg_ldap *pldap) { return get_id (FALSE, NULL, pldap); }
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int get_gid (cyg_ldap *pldap) { return get_id (TRUE, NULL, pldap); }
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PWCHAR pstring (PWCHAR nsidstr) const;
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PWCHAR string (PWCHAR nsidstr) const;
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char *pstring (char *nsidstr) const;
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char *string (char *nsidstr) const;
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bool operator== (const PSID nsid) const
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{
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if (!psid || !nsid)
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return nsid == psid;
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return RtlEqualSid (psid, nsid);
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}
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bool operator!= (const PSID nsid) const
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{ return !(*this == nsid); }
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bool operator== (const char *nsidstr) const;
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bool operator!= (const char *nsidstr) const
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{ return !(*this == nsidstr); }
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void debug_print (const char *prefix = NULL) const
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{
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char buf[256] __attribute__ ((unused));
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debug_printf ("%s %s", prefix ?: "", string (buf) ?: "NULL");
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}
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};
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class cygsid : public cygpsid {
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char sbuf[SECURITY_MAX_SID_SIZE];
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bool well_known_sid;
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const PSID getfromstr (PCWSTR nsidstr, bool well_known);
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const PSID getfromstr (const char *nsidstr, bool well_known);
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PSID get_sid (DWORD s, DWORD cnt, DWORD *r, bool well_known);
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inline const PSID assign (const PSID nsid, bool well_known)
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{
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if (!nsid)
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psid = NO_SID;
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else
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{
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psid = (PSID) sbuf;
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RtlCopySid (SECURITY_MAX_SID_SIZE, psid, nsid);
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well_known_sid = well_known;
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}
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return psid;
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}
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public:
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inline operator const PSID () { return psid; }
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inline bool is_well_known_sid () { return well_known_sid; }
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/* Both, = and *= are assignment operators. = creates a "normal" SID,
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*= marks the SID as being a well-known SID. This difference is
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important when creating a SID list for LSA authentication. */
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inline const PSID operator= (cygsid &nsid)
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{ return assign (nsid, nsid.well_known_sid); }
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inline const PSID operator= (const PSID nsid)
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{ return assign (nsid, false); }
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inline const PSID operator= (PCWSTR nsidstr)
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{ return getfromstr (nsidstr, false); }
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inline const PSID operator= (const char *nsidstr)
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{ return getfromstr (nsidstr, false); }
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inline const PSID operator*= (cygsid &nsid)
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{ return assign (nsid, true); }
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inline const PSID operator*= (const PSID nsid)
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{ return assign (nsid, true); }
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inline const PSID operator*= (PCWSTR nsidstr)
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{ return getfromstr (nsidstr, true); }
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inline const PSID operator*= (const char *nsidstr)
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{ return getfromstr (nsidstr, true); }
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inline cygsid () : cygpsid ((PSID) sbuf), well_known_sid (false) {}
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inline cygsid (const PSID nsid) { *this = nsid; }
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inline cygsid (const char *nstrsid) { *this = nstrsid; }
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inline cygsid (cygsid &nsid) { *this = nsid; }
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inline PSID set () { return psid = (PSID) sbuf; }
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inline BOOL getfrompw_gecos (const struct passwd *pw)
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{
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char *sp = (pw && pw->pw_gecos) ? strrchr (pw->pw_gecos, ',') : NULL;
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return (*this = sp ? sp + 1 : sp) != NO_SID;
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}
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inline BOOL getfromgr_passwd (const struct group *gr)
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{
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char *sp = (gr && gr->gr_passwd) ? gr->gr_passwd : NULL;
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return (*this = sp) != NO_SID;
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}
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const PSID create (DWORD auth, DWORD subauth_cnt, ...);
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bool append (DWORD rid);
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/* Implemented in pwdgrp.h. */
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BOOL getfrompw (const struct passwd *pw);
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BOOL getfromgr (const struct group *gr);
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void debug_print (const char *prefix = NULL) const
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{
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char buf[256] __attribute__ ((unused));
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debug_printf ("%s %s%s", prefix ?: "", string (buf) ?: "NULL", well_known_sid ? " (*)" : " (+)");
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}
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};
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typedef enum { cygsidlist_empty, cygsidlist_alloc, cygsidlist_auto } cygsidlist_type;
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class cygsidlist {
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int maxcnt;
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int cnt;
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BOOL add (const PSID nsi, bool well_known); /* Only with auto for now */
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public:
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cygsid *sids;
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cygsidlist_type type;
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cygsidlist (cygsidlist_type t, int m)
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: maxcnt (m), cnt (0), type (t)
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{
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if (t == cygsidlist_alloc)
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sids = alloc_sids (m);
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else
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sids = new cygsid [m];
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}
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~cygsidlist () { if (type == cygsidlist_auto) delete [] sids; }
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BOOL addfromgr (struct group *gr) /* Only with alloc */
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{ return sids[cnt].getfromgr (gr) && ++cnt; }
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/* += adds a "normal" SID, *= adds a well-known SID. See comment in class
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cygsid above. */
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BOOL operator+= (cygsid &si) { return add ((PSID) si,
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si.is_well_known_sid ()); }
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BOOL operator+= (const char *sidstr) { cygsid nsi (sidstr);
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return add ((PSID) nsi,
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nsi.is_well_known_sid ());
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}
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BOOL operator+= (const PSID psid) { return add (psid, false); }
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BOOL operator*= (cygsid &si) { return add ((PSID) si, true); }
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BOOL operator*= (const char *sidstr) { cygsid nsi (sidstr);
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return add ((PSID) nsi, true); }
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BOOL operator*= (const PSID psid) { return add (psid, true); }
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void count (int ncnt)
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{ cnt = ncnt; }
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int count () const { return cnt; }
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int non_well_known_count () const
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{
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int wcnt = 0;
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for (int i = 0; i < cnt; ++i)
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if (!sids[i].is_well_known_sid ())
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++wcnt;
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return wcnt;
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}
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int position (const PSID sid) const
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{
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for (int i = 0; i < cnt; ++i)
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if (sids[i] == sid)
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return i;
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return -1;
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}
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int next_non_well_known_sid (int idx)
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{
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while (++idx < cnt)
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if (!sids[idx].is_well_known_sid ())
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return idx;
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return -1;
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}
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BOOL contains (const PSID sid) const { return position (sid) >= 0; }
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cygsid *alloc_sids (int n);
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void free_sids ();
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void debug_print (const char *prefix = NULL) const
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{
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debug_printf ("-- begin sidlist ---");
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if (!cnt)
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debug_printf ("No elements");
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for (int i = 0; i < cnt; ++i)
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sids[i].debug_print (prefix);
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debug_printf ("-- ende sidlist ---");
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}
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};
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/* Wrapper class to allow simple deleting of buffer space allocated
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by read_sd() */
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class security_descriptor {
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protected:
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PSECURITY_DESCRIPTOR psd;
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DWORD sd_size;
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public:
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security_descriptor () : psd (NULL), sd_size (0) {}
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~security_descriptor () { free (); }
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PSECURITY_DESCRIPTOR malloc (size_t nsize);
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PSECURITY_DESCRIPTOR realloc (size_t nsize);
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void free ();
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inline DWORD size () const { return sd_size; }
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inline DWORD copy (void *buf, DWORD buf_size) const {
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if (buf_size < size ())
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return sd_size;
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memcpy (buf, psd, sd_size);
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return 0;
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}
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inline operator const PSECURITY_DESCRIPTOR () { return psd; }
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inline operator PSECURITY_DESCRIPTOR *() { return &psd; }
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inline void operator =(PSECURITY_DESCRIPTOR nsd) { psd = nsd; }
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};
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class user_groups {
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public:
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cygsid pgsid;
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cygsidlist sgsids;
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BOOL ischanged;
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BOOL issetgroups () const { return (sgsids.type == cygsidlist_alloc); }
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void update_supp (const cygsidlist &newsids)
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{
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sgsids.free_sids ();
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sgsids = newsids;
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ischanged = TRUE;
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}
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void clear_supp ()
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{
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if (issetgroups ())
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{
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sgsids.free_sids ();
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ischanged = TRUE;
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}
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}
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void update_pgrp (const PSID sid)
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{
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pgsid = sid;
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ischanged = TRUE;
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}
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};
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extern cygpsid well_known_null_sid;
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extern cygpsid well_known_world_sid;
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extern cygpsid well_known_local_sid;
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extern cygpsid well_known_console_logon_sid;
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extern cygpsid well_known_creator_owner_sid;
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extern cygpsid well_known_creator_group_sid;
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extern cygpsid well_known_dialup_sid;
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extern cygpsid well_known_network_sid;
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extern cygpsid well_known_batch_sid;
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extern cygpsid well_known_interactive_sid;
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extern cygpsid well_known_service_sid;
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extern cygpsid well_known_authenticated_users_sid;
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extern cygpsid well_known_this_org_sid;
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extern cygpsid well_known_system_sid;
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extern cygpsid well_known_local_service_sid;
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extern cygpsid well_known_network_service_sid;
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extern cygpsid well_known_builtin_sid;
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extern cygpsid well_known_admins_sid;
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extern cygpsid well_known_users_sid;
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extern cygpsid trusted_installer_sid;
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extern cygpsid mandatory_medium_integrity_sid;
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extern cygpsid mandatory_high_integrity_sid;
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extern cygpsid mandatory_system_integrity_sid;
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extern cygpsid well_known_samba_unix_user_fake_sid;
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bool privilege_luid (const PWCHAR pname, LUID &luid, bool &high_integrity);
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extern inline BOOL
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well_known_sid_type (SID_NAME_USE type)
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{
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return type == SidTypeAlias || type == SidTypeWellKnownGroup;
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}
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extern inline BOOL
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legal_sid_type (SID_NAME_USE type)
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{
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return type == SidTypeUser || type == SidTypeGroup
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|| type == SidTypeAlias || type == SidTypeWellKnownGroup;
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}
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class path_conv;
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/* File manipulation */
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int __reg3 get_file_attribute (HANDLE, path_conv &, mode_t *,
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uid_t *, gid_t *);
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int __reg3 set_created_file_access (HANDLE, path_conv &, mode_t);
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int __reg2 get_object_sd (HANDLE, security_descriptor &);
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int __reg3 get_object_attribute (HANDLE, uid_t *, gid_t *, mode_t *);
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int __reg3 set_object_attribute (HANDLE, uid_t, gid_t, mode_t);
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int __reg3 create_object_sd_from_attribute (uid_t, gid_t, mode_t,
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security_descriptor &);
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int __reg3 set_object_sd (HANDLE, security_descriptor &, bool);
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int __reg3 get_reg_attribute (HKEY hkey, mode_t *, uid_t *, gid_t *);
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LONG __reg3 get_file_sd (HANDLE fh, path_conv &, security_descriptor &, bool);
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LONG __reg3 set_file_sd (HANDLE fh, path_conv &, security_descriptor &, bool);
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bool __reg3 add_access_allowed_ace (PACL, DWORD, PSID, size_t &, DWORD);
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bool __reg3 add_access_denied_ace (PACL, DWORD, PSID, size_t &, DWORD);
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int __reg3 check_file_access (path_conv &, int, bool);
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int __reg3 check_registry_access (HANDLE, int, bool);
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void set_security_attribute (path_conv &pc, int attribute,
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PSECURITY_ATTRIBUTES psa,
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security_descriptor &sd_buf);
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bool authz_get_user_attribute (mode_t *attribute, PSECURITY_DESCRIPTOR psd,
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PSID user_sid);
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/* sec_acl.cc */
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struct acl;
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extern "C" int aclsort32 (int, int, struct acl *);
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extern "C" int acl32 (const char *, int, int, struct acl *);
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int searchace (struct acl *, int, int, uid_t id = ILLEGAL_UID);
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PSECURITY_DESCRIPTOR set_posix_access (mode_t, uid_t, gid_t, struct acl *, int,
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security_descriptor &, bool);
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int get_posix_access (PSECURITY_DESCRIPTOR, mode_t *, uid_t *, gid_t *,
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struct acl *, int, bool * = NULL);
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int getacl (HANDLE, path_conv &, int, struct acl *);
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int setacl (HANDLE, path_conv &, int, struct acl *, bool &);
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/* Set impersonation or restricted token. */
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void set_imp_token (HANDLE token, int type);
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/* Function creating a token by calling NtCreateToken. */
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HANDLE create_token (cygsid &usersid, user_groups &groups);
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/* LSA authentication function. */
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HANDLE lsaauth (cygsid &, user_groups &);
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/* LSA private key storage authentication, same as when using service logons. */
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HANDLE lsaprivkeyauth (struct passwd *pw);
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/* Kerberos or MsV1 S4U logon. */
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HANDLE s4uauth (struct passwd *pw);
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/* Verify an existing token */
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bool verify_token (HANDLE token, cygsid &usersid, user_groups &groups, bool *pintern = NULL);
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/* Get groups of a user */
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enum acct_disabled_chk_t {
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NO_CHK_DISABLED = 0,
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CHK_DISABLED = 1
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};
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bool get_server_groups (cygsidlist &grp_list, PSID usersid,
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acct_disabled_chk_t check_account_disabled);
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/* Extract U-domain\user field from passwd entry. */
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void extract_nt_dom_user (const struct passwd *pw, PWCHAR domain, PWCHAR user);
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/* Get default logonserver for a domain. */
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bool get_logon_server (PCWSTR domain, PWCHAR wserver, ULONG flags);
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/* Fetch user profile path from registry, if it already exists. */
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PWCHAR get_user_profile_directory (PCWSTR sidstr, PWCHAR path, SIZE_T path_len);
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/* Load user profile if it's not already loaded. */
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HANDLE load_user_profile (HANDLE token, struct passwd *pw, cygpsid &sid);
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HANDLE lsa_open_policy (PWCHAR server, ACCESS_MASK access);
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void lsa_close_policy (HANDLE lsa);
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/* sec_helper.cc: Security helper functions. */
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int set_privilege (HANDLE token, DWORD privilege, bool enable);
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void set_cygwin_privileges (HANDLE token);
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#define _push_thread_privilege(_priv, _val, _check) { \
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HANDLE _dup_token = NULL; \
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HANDLE _token = (cygheap->user.issetuid () && (_check)) \
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? cygheap->user.primary_token () : hProcToken; \
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if (!DuplicateTokenEx (_token, MAXIMUM_ALLOWED, NULL, \
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SecurityImpersonation, TokenImpersonation, \
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&_dup_token)) \
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debug_printf ("DuplicateTokenEx: %E"); \
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else if (!ImpersonateLoggedOnUser (_dup_token)) \
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debug_printf ("ImpersonateLoggedOnUser: %E"); \
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else \
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set_privilege (_dup_token, (_priv), (_val));
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#define push_thread_privilege(_priv, _val) _push_thread_privilege(_priv,_val,1)
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#define push_self_privilege(_priv, _val) _push_thread_privilege(_priv,_val,0)
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#define pop_thread_privilege() \
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if (_dup_token) \
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{ \
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if (!cygheap->user.issetuid ()) \
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RevertToSelf (); \
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else \
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cygheap->user.reimpersonate (); \
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CloseHandle (_dup_token); \
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} \
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}
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#define pop_self_privilege() pop_thread_privilege()
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/* shared.cc: */
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/* Various types of security attributes for use in Create* functions. */
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extern SECURITY_ATTRIBUTES sec_none, sec_none_nih, sec_all, sec_all_nih;
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extern SECURITY_ATTRIBUTES *__reg3 __sec_user (PVOID, PSID, PSID,
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DWORD, BOOL);
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extern PSECURITY_DESCRIPTOR _recycler_sd (void *buf, bool users, bool dir);
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#define recycler_sd(users,dir) \
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(_recycler_sd (alloca (sizeof (SECURITY_DESCRIPTOR) + MAX_DACL_LEN (3)), \
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(users), \
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(dir)))
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extern PSECURITY_DESCRIPTOR _everyone_sd (void *buf, ACCESS_MASK access);
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#define everyone_sd(access) (_everyone_sd (alloca (SD_MIN_SIZE), (access)))
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#define sec_none_cloexec(f) (((f) & O_CLOEXEC ? &sec_none_nih : &sec_none))
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extern bool sec_acl (PACL acl, bool original, bool admins, PSID sid1 = NO_SID,
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PSID sid2 = NO_SID, DWORD access2 = 0);
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ssize_t __reg3 read_ea (HANDLE, path_conv &, const char *,
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char *, size_t);
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int __reg3 write_ea (HANDLE, path_conv &, const char *, const char *,
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size_t, int);
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/* Note: sid1 is usually (read: currently always) the current user's
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effective sid (cygheap->user.sid ()). */
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extern inline SECURITY_ATTRIBUTES *
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sec_user_nih (SECURITY_ATTRIBUTES *sa_buf, PSID sid1, PSID sid2 = NULL,
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DWORD access2 = 0)
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{
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return __sec_user (sa_buf, sid1, sid2, access2, FALSE);
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}
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extern inline SECURITY_ATTRIBUTES *
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sec_user (SECURITY_ATTRIBUTES *sa_buf, PSID sid1, PSID sid2 = NULL,
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DWORD access2 = 0)
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{
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return __sec_user (sa_buf, sid1, sid2, access2, TRUE);
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}
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