s3-util_sid Tidy up global struct security_token
[abartlet/samba.git/.git] / source3 / lib / util_seaccess.c
index b5a9010b5c4e8e5eccfdaaa4484dfb23c0fe04cd..6c16fea5857b1da37717c52df4f195974f7ba12a 100644 (file)
@@ -1,12 +1,14 @@
 /*
    Unix SMB/CIFS implementation.
-   Copyright (C) Luke Kenneth Casson Leighton 1996-2000.
-   Copyright (C) Tim Potter 2000.
-   Copyright (C) Re-written by Jeremy Allison 2000.
+
+   Copyright (C) Andrew Tridgell 2004
+   Copyright (C) Gerald Carter 2005
+   Copyright (C) Volker Lendecke 2007
+   Copyright (C) Jeremy Allison 2008
 
    This program is free software; you can redistribute it and/or modify
    it under the terms of the GNU General Public License as published by
-   the Free Software Foundation; either version 2 of the License, or
+   the Free Software Foundation; either version 3 of the License, or
    (at your option) any later version.
 
    This program is distributed in the hope that it will be useful,
    GNU General Public License for more details.
 
    You should have received a copy of the GNU General Public License
-   along with this program; if not, write to the Free Software
-   Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
+   along with this program.  If not, see <http://www.gnu.org/licenses/>.
 */
 
 #include "includes.h"
 
-extern DOM_SID global_sid_Builtin;
-
-/*********************************************************************************
- Check an ACE against a SID.  We return the remaining needed permission
- bits not yet granted. Zero means permission allowed (no more needed bits).
-**********************************************************************************/
-
-static uint32 check_ace(SEC_ACE *ace, const NT_USER_TOKEN *token, uint32 acc_desired, 
-                       NTSTATUS *status)
-{
-       uint32 mask = ace->info.mask;
-
-       /*
-        * Inherit only is ignored.
-        */
-
-       if (ace->flags & SEC_ACE_FLAG_INHERIT_ONLY) {
-               return acc_desired;
-       }
-
-       /*
-        * If this ACE has no SID in common with the token,
-        * ignore it as it cannot be used to make an access
-        * determination.
-        */
-
-       if (!token_sid_in_ace( token, ace))
-               return acc_desired;     
-
-       switch (ace->type) {
-               case SEC_ACE_TYPE_ACCESS_ALLOWED:
-                       /*
-                        * This is explicitly allowed.
-                        * Remove the bits from the remaining
-                        * access required. Return the remaining
-                        * bits needed.
-                        */
-                       acc_desired &= ~mask;
-                       break;
-               case SEC_ACE_TYPE_ACCESS_DENIED:
-                       /*
-                        * This is explicitly denied.
-                        * If any bits match terminate here,
-                        * we are denied.
-                        */
-                       if (acc_desired & mask) {
-                               *status = NT_STATUS_ACCESS_DENIED;
-                               return 0xFFFFFFFF;
-                       }
-                       break;
-               case SEC_ACE_TYPE_SYSTEM_ALARM:
-               case SEC_ACE_TYPE_SYSTEM_AUDIT:
-                       *status = NT_STATUS_NOT_IMPLEMENTED;
-                       return 0xFFFFFFFF;
-               default:
-                       *status = NT_STATUS_INVALID_PARAMETER;
-                       return 0xFFFFFFFF;
-       }
-
-       return acc_desired;
-}
-
-/*********************************************************************************
- Maximum access was requested. Calculate the max possible. Fail if it doesn't
- include other bits requested.
-**********************************************************************************/ 
-
-static BOOL get_max_access( SEC_ACL *the_acl, const NT_USER_TOKEN *token, uint32 *granted, 
-                           uint32 desired, 
-                           NTSTATUS *status)
-{
-       uint32 acc_denied = 0;
-       uint32 acc_granted = 0;
-       size_t i;
-       
-       for ( i = 0 ; i < the_acl->num_aces; i++) {
-               SEC_ACE *ace = &the_acl->ace[i];
-               uint32 mask = ace->info.mask;
-
-               if (!token_sid_in_ace( token, ace))
-                       continue;
-
-               switch (ace->type) {
-                       case SEC_ACE_TYPE_ACCESS_ALLOWED:
-                               acc_granted |= (mask & ~acc_denied);
-                               break;
-                       case SEC_ACE_TYPE_ACCESS_DENIED:
-                               acc_denied |= (mask & ~acc_granted);
-                               break;
-                       case SEC_ACE_TYPE_SYSTEM_ALARM:
-                       case SEC_ACE_TYPE_SYSTEM_AUDIT:
-                               *status = NT_STATUS_NOT_IMPLEMENTED;
-                               *granted = 0;
-                               return False;
-                       default:
-                               *status = NT_STATUS_INVALID_PARAMETER;
-                               *granted = 0;
-                               return False;
-               }                           
-       }
-
-       /*
-        * If we were granted no access, or we desired bits that we
-        * didn't get, then deny.
-        */
-
-       if ((acc_granted == 0) || ((acc_granted & desired) != desired)) {
-               *status = NT_STATUS_ACCESS_DENIED;
-               *granted = 0;
-               return False;
-       }
-
-       /*
-        * Return the access we did get.
-        */
-
-       *granted = acc_granted;
-       *status = NT_STATUS_OK;
-       return True;
-}
-
 /* Map generic access rights to object specific rights.  This technique is
    used to give meaning to assigning read, write, execute and all access to
    objects.  Each type of object has its own mapping of generic to object
    specific access rights. */
 
-void se_map_generic(uint32 *access_mask, struct generic_mapping *mapping)
+void se_map_generic(uint32 *access_mask, const struct generic_mapping *mapping)
 {
        uint32 old_mask = *access_mask;
 
@@ -177,22 +57,40 @@ void se_map_generic(uint32 *access_mask, struct generic_mapping *mapping)
        }
 }
 
+/* Map generic access rights to object specific rights for all the ACE's
+ * in a security_acl.
+ */
+
+void security_acl_map_generic(struct security_acl *sa,
+                               const struct generic_mapping *mapping)
+{
+       unsigned int i;
+
+       if (!sa) {
+               return;
+       }
+
+       for (i = 0; i < sa->num_aces; i++) {
+               se_map_generic(&sa->aces[i].access_mask, mapping);
+       }
+}
+
 /* Map standard access rights to object specific rights.  This technique is
    used to give meaning to assigning read, write, execute and all access to
    objects.  Each type of object has its own mapping of standard to object
    specific access rights. */
 
-void se_map_standard(uint32 *access_mask, struct standard_mapping *mapping)
+void se_map_standard(uint32 *access_mask, const struct standard_mapping *mapping)
 {
        uint32 old_mask = *access_mask;
 
-       if (*access_mask & READ_CONTROL_ACCESS) {
-               *access_mask &= ~READ_CONTROL_ACCESS;
+       if (*access_mask & SEC_STD_READ_CONTROL) {
+               *access_mask &= ~SEC_STD_READ_CONTROL;
                *access_mask |= mapping->std_read;
        }
 
-       if (*access_mask & (DELETE_ACCESS|WRITE_DAC_ACCESS|WRITE_OWNER_ACCESS|SYNCHRONIZE_ACCESS)) {
-               *access_mask &= ~(DELETE_ACCESS|WRITE_DAC_ACCESS|WRITE_OWNER_ACCESS|SYNCHRONIZE_ACCESS);
+       if (*access_mask & (SEC_STD_DELETE|SEC_STD_WRITE_DAC|SEC_STD_WRITE_OWNER|SEC_STD_SYNCHRONIZE)) {
+               *access_mask &= ~(SEC_STD_DELETE|SEC_STD_WRITE_DAC|SEC_STD_WRITE_OWNER|SEC_STD_SYNCHRONIZE);
                *access_mask |= mapping->std_all;
        }
 
@@ -202,117 +100,147 @@ void se_map_standard(uint32 *access_mask, struct standard_mapping *mapping)
        }
 }
 
-/*****************************************************************************
- Check access rights of a user against a security descriptor.  Look at
- each ACE in the security descriptor until an access denied ACE denies
- any of the desired rights to the user or any of the users groups, or one
- or more ACEs explicitly grant all requested access rights.  See
- "Access-Checking" document in MSDN.
-*****************************************************************************/ 
-
-BOOL se_access_check(const SEC_DESC *sd, const NT_USER_TOKEN *token,
-                    uint32 acc_desired, uint32 *acc_granted, 
-                    NTSTATUS *status)
+/*
+  perform a SEC_FLAG_MAXIMUM_ALLOWED access check
+*/
+static uint32_t access_check_max_allowed(const struct security_descriptor *sd, 
+                                       const struct security_token *token)
 {
-       extern NT_USER_TOKEN anonymous_token;
-       size_t i;
-       SEC_ACL *the_acl;
-       fstring sid_str;
-       uint32 tmp_acc_desired = acc_desired;
+       uint32_t denied = 0, granted = 0;
+       unsigned i;
 
-       if (!status || !acc_granted)
-               return False;
+       if (is_sid_in_token(token, sd->owner_sid)) {
+               granted |= SEC_STD_WRITE_DAC | SEC_STD_READ_CONTROL | SEC_STD_DELETE;
+       } else if (security_token_has_privilege(token, SEC_PRIV_RESTORE)) {
+               granted |= SEC_STD_DELETE;
+       }
 
-       if (!token)
-               token = &anonymous_token;
+       if (sd->dacl == NULL) {
+               return granted & ~denied;
+       }
+
+       for (i = 0;i<sd->dacl->num_aces; i++) {
+               struct security_ace *ace = &sd->dacl->aces[i];
+
+               if (ace->flags & SEC_ACE_FLAG_INHERIT_ONLY) {
+                       continue;
+               }
 
-       *status = NT_STATUS_OK;
-       *acc_granted = 0;
+               if (!is_sid_in_token(token, &ace->trustee)) {
+                       continue;
+               }
+
+               switch (ace->type) {
+               case SEC_ACE_TYPE_ACCESS_ALLOWED:
+                       granted |= ace->access_mask;
+                       break;
+               case SEC_ACE_TYPE_ACCESS_DENIED:
+               case SEC_ACE_TYPE_ACCESS_DENIED_OBJECT:
+                       denied |= ace->access_mask;
+                       break;
+               default:        /* Other ACE types not handled/supported */
+                       break;
+               }
+       }
+
+       return granted & ~denied;
+}
+
+/*
+  The main entry point for access checking. If returning ACCESS_DENIED
+  this function returns the denied bits in the uint32_t pointed
+  to by the access_granted pointer.
+*/
+NTSTATUS se_access_check(const struct security_descriptor *sd, 
+                         const struct security_token *token,
+                         uint32_t access_desired,
+                         uint32_t *access_granted)
+{
+       int i;
+       uint32_t bits_remaining;
 
-       DEBUG(10,("se_access_check: requested access 0x%08x, for NT token with %u entries and first sid %s.\n",
-                (unsigned int)acc_desired, (unsigned int)token->num_sids,
-               sid_to_string(sid_str, &token->user_sids[0])));
+       *access_granted = access_desired;
+       bits_remaining = access_desired;
 
-       /*
-        * No security descriptor or security descriptor with no DACL
-        * present allows all access.
-        */
+       /* handle the maximum allowed flag */
+       if (access_desired & SEC_FLAG_MAXIMUM_ALLOWED) {
+               uint32_t orig_access_desired = access_desired;
 
-       /* ACL must have something in it */
+               access_desired |= access_check_max_allowed(sd, token);
+               access_desired &= ~SEC_FLAG_MAXIMUM_ALLOWED;
+               *access_granted = access_desired;
+               bits_remaining = access_desired & ~SEC_STD_DELETE;
 
-       if (!sd || (sd && (!(sd->type & SEC_DESC_DACL_PRESENT) || sd->dacl == NULL))) {
-               *status = NT_STATUS_OK;
-               *acc_granted = acc_desired;
-               DEBUG(5, ("se_access_check: no sd or blank DACL, access allowed\n"));
-               return True;
+               DEBUG(10,("se_access_check: MAX desired = 0x%x, granted = 0x%x, remaining = 0x%x\n",
+                       orig_access_desired,
+                       *access_granted,
+                       bits_remaining));
        }
 
-       /* The user sid is the first in the token */
-       if (DEBUGLVL(3)) {
-               DEBUG(3, ("se_access_check: user sid is %s\n", sid_to_string(sid_str, &token->user_sids[PRIMARY_USER_SID_INDEX]) ));
-               
-               for (i = 1; i < token->num_sids; i++) {
-                       DEBUGADD(3, ("se_access_check: also %s\n",
-                                 sid_to_string(sid_str, &token->user_sids[i])));
+#if 0
+       /* We need to support SeSecurityPrivilege for this. */
+
+       if (access_desired & SEC_FLAG_SYSTEM_SECURITY) {
+               if (user_has_privileges(token, &sec_security)) {
+                       bits_remaining &= ~SEC_FLAG_SYSTEM_SECURITY;
+               } else {
+                       return NT_STATUS_PRIVILEGE_NOT_HELD;
                }
        }
+#endif
 
-       /* Is the token the owner of the SID ? */
-
-       if (sd->owner_sid) {
-               for (i = 0; i < token->num_sids; i++) {
-                       if (sid_equal(&token->user_sids[i], sd->owner_sid)) {
-                               /*
-                                * The owner always has SEC_RIGHTS_WRITE_DAC & READ_CONTROL.
-                                */
-                               if (tmp_acc_desired & WRITE_DAC_ACCESS)
-                                       tmp_acc_desired &= ~WRITE_DAC_ACCESS;
-                               if (tmp_acc_desired & READ_CONTROL_ACCESS)
-                                       tmp_acc_desired &= ~READ_CONTROL_ACCESS;
-                       }
-               }
+       /* a NULL dacl allows access */
+       if ((sd->type & SEC_DESC_DACL_PRESENT) && sd->dacl == NULL) {
+               *access_granted = access_desired;
+               return NT_STATUS_OK;
        }
 
-       the_acl = sd->dacl;
+       /* the owner always gets SEC_STD_WRITE_DAC, SEC_STD_READ_CONTROL and SEC_STD_DELETE */
+       if ((bits_remaining & (SEC_STD_WRITE_DAC|SEC_STD_READ_CONTROL|SEC_STD_DELETE)) &&
+           is_sid_in_token(token, sd->owner_sid)) {
+               bits_remaining &= ~(SEC_STD_WRITE_DAC|SEC_STD_READ_CONTROL|SEC_STD_DELETE);
+       }
+       if ((bits_remaining & SEC_STD_DELETE) &&
+           (security_token_has_privilege(token, SEC_PRIV_RESTORE))) {
+               bits_remaining &= ~SEC_STD_DELETE;
+       }
 
-       if (tmp_acc_desired & MAXIMUM_ALLOWED_ACCESS) {
-               tmp_acc_desired &= ~MAXIMUM_ALLOWED_ACCESS;
-               return get_max_access( the_acl, token, acc_granted, tmp_acc_desired, 
-                                      status);
+       if (sd->dacl == NULL) {
+               goto done;
        }
 
-       for ( i = 0 ; i < the_acl->num_aces && tmp_acc_desired != 0; i++) {
-               SEC_ACE *ace = &the_acl->ace[i];
+       /* check each ace in turn. */
+       for (i=0; bits_remaining && i < sd->dacl->num_aces; i++) {
+               struct security_ace *ace = &sd->dacl->aces[i];
 
-               DEBUGADD(10,("se_access_check: ACE %u: type %d, flags = 0x%02x, SID = %s mask = %x, current desired = %x\n",
-                         (unsigned int)i, ace->type, ace->flags,
-                         sid_to_string(sid_str, &ace->trustee),
-                         (unsigned int) ace->info.mask, 
-                         (unsigned int)tmp_acc_desired ));
+               if (ace->flags & SEC_ACE_FLAG_INHERIT_ONLY) {
+                       continue;
+               }
 
-               tmp_acc_desired = check_ace( ace, token, tmp_acc_desired, status);
-               if (NT_STATUS_V(*status)) {
-                       *acc_granted = 0;
-                       DEBUG(5,("se_access_check: ACE %u denied with status %s.\n", (unsigned int)i, nt_errstr(*status)));
-                       return False;
+               if (!is_sid_in_token(token, &ace->trustee)) {
+                       continue;
                }
-       }
 
-       /*
-        * If there are no more desired permissions left then
-        * access was allowed.
-        */
+               switch (ace->type) {
+               case SEC_ACE_TYPE_ACCESS_ALLOWED:
+                       bits_remaining &= ~ace->access_mask;
+                       break;
+               case SEC_ACE_TYPE_ACCESS_DENIED:
+               case SEC_ACE_TYPE_ACCESS_DENIED_OBJECT:
+                       if (bits_remaining & ace->access_mask) {
+                               return NT_STATUS_ACCESS_DENIED;
+                       }
+                       break;
+               default:        /* Other ACE types not handled/supported */
+                       break;
+               }
+       }
 
-       if (tmp_acc_desired == 0) {
-               *acc_granted = acc_desired;
-               *status = NT_STATUS_OK;
-               DEBUG(5,("se_access_check: access (%x) granted.\n", (unsigned int)acc_desired ));
-               return True;
+done:
+       if (bits_remaining != 0) {
+               *access_granted = bits_remaining;
+               return NT_STATUS_ACCESS_DENIED;
        }
-               
-       *acc_granted = 0;
-       *status = NT_STATUS_ACCESS_DENIED;
-       DEBUG(5,("se_access_check: access (%x) denied.\n", (unsigned int)acc_desired ));
-       return False;
-}
 
+       return NT_STATUS_OK;
+}