cifsacl.c 33.5 KB
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/*
 *   fs/cifs/cifsacl.c
 *
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 *   Copyright (C) International Business Machines  Corp., 2007,2008
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 *   Author(s): Steve French (sfrench@us.ibm.com)
 *
 *   Contains the routines for mapping CIFS/NTFS ACLs
 *
 *   This library is free software; you can redistribute it and/or modify
 *   it under the terms of the GNU Lesser General Public License as published
 *   by the Free Software Foundation; either version 2.1 of the License, or
 *   (at your option) any later version.
 *
 *   This library is distributed in the hope that it will be useful,
 *   but WITHOUT ANY WARRANTY; without even the implied warranty of
 *   MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See
 *   the GNU Lesser General Public License for more details.
 *
 *   You should have received a copy of the GNU Lesser General Public License
 *   along with this library; if not, write to the Free Software
 *   Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
 */

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#include <linux/fs.h>
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#include <linux/slab.h>
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#include <linux/string.h>
#include <linux/keyctl.h>
#include <linux/key-type.h>
#include <keys/user-type.h>
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#include "cifspdu.h"
#include "cifsglob.h"
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#include "cifsacl.h"
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#include "cifsproto.h"
#include "cifs_debug.h"

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/* security id for everyone/world system group */
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static const struct cifs_sid sid_everyone = {
	1, 1, {0, 0, 0, 0, 0, 1}, {0} };
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/* security id for Authenticated Users system group */
static const struct cifs_sid sid_authusers = {
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	1, 1, {0, 0, 0, 0, 0, 5}, {cpu_to_le32(11)} };
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/* group users */
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static const struct cifs_sid sid_user = {1, 2 , {0, 0, 0, 0, 0, 5}, {} };
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/* S-1-22-1 Unmapped Unix users */
static const struct cifs_sid sid_unix_users = {1, 1, {0, 0, 0, 0, 0, 22},
		{cpu_to_le32(1), 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0} };

/* S-1-22-2 Unmapped Unix groups */
static const struct cifs_sid sid_unix_groups = { 1, 1, {0, 0, 0, 0, 0, 22},
		{cpu_to_le32(2), 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0} };

/*
 * See http://technet.microsoft.com/en-us/library/hh509017(v=ws.10).aspx
 */

/* S-1-5-88 MS NFS and Apple style UID/GID/mode */

/* S-1-5-88-1 Unix uid */
static const struct cifs_sid sid_unix_NFS_users = { 1, 2, {0, 0, 0, 0, 0, 5},
	{cpu_to_le32(88),
	 cpu_to_le32(1), 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0} };

/* S-1-5-88-2 Unix gid */
static const struct cifs_sid sid_unix_NFS_groups = { 1, 2, {0, 0, 0, 0, 0, 5},
	{cpu_to_le32(88),
	 cpu_to_le32(2), 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0} };

/* S-1-5-88-3 Unix mode */
static const struct cifs_sid sid_unix_NFS_mode = { 1, 2, {0, 0, 0, 0, 0, 5},
	{cpu_to_le32(88),
	 cpu_to_le32(3), 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0} };

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static const struct cred *root_cred;
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static int
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cifs_idmap_key_instantiate(struct key *key, struct key_preparsed_payload *prep)
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{
	char *payload;

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	/*
	 * If the payload is less than or equal to the size of a pointer, then
	 * an allocation here is wasteful. Just copy the data directly to the
	 * payload.value union member instead.
	 *
	 * With this however, you must check the datalen before trying to
	 * dereference payload.data!
	 */
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	if (prep->datalen <= sizeof(key->payload)) {
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		key->payload.data[0] = NULL;
		memcpy(&key->payload, prep->data, prep->datalen);
	} else {
		payload = kmemdup(prep->data, prep->datalen, GFP_KERNEL);
		if (!payload)
			return -ENOMEM;
		key->payload.data[0] = payload;
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	}
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	key->datalen = prep->datalen;
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	return 0;
}

static inline void
cifs_idmap_key_destroy(struct key *key)
{
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	if (key->datalen > sizeof(key->payload))
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		kfree(key->payload.data[0]);
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}

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static struct key_type cifs_idmap_key_type = {
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	.name        = "cifs.idmap",
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	.instantiate = cifs_idmap_key_instantiate,
	.destroy     = cifs_idmap_key_destroy,
	.describe    = user_describe,
};

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static char *
sid_to_key_str(struct cifs_sid *sidptr, unsigned int type)
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{
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	int i, len;
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	unsigned int saval;
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	char *sidstr, *strptr;
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	unsigned long long id_auth_val;
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	/* 3 bytes for prefix */
	sidstr = kmalloc(3 + SID_STRING_BASE_SIZE +
			 (SID_STRING_SUBAUTH_SIZE * sidptr->num_subauth),
			 GFP_KERNEL);
	if (!sidstr)
		return sidstr;
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	strptr = sidstr;
	len = sprintf(strptr, "%cs:S-%hhu", type == SIDOWNER ? 'o' : 'g',
			sidptr->revision);
	strptr += len;
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	/* The authority field is a single 48-bit number */
	id_auth_val = (unsigned long long)sidptr->authority[5];
	id_auth_val |= (unsigned long long)sidptr->authority[4] << 8;
	id_auth_val |= (unsigned long long)sidptr->authority[3] << 16;
	id_auth_val |= (unsigned long long)sidptr->authority[2] << 24;
	id_auth_val |= (unsigned long long)sidptr->authority[1] << 32;
	id_auth_val |= (unsigned long long)sidptr->authority[0] << 48;

	/*
	 * MS-DTYP states that if the authority is >= 2^32, then it should be
	 * expressed as a hex value.
	 */
	if (id_auth_val <= UINT_MAX)
		len = sprintf(strptr, "-%llu", id_auth_val);
	else
		len = sprintf(strptr, "-0x%llx", id_auth_val);

	strptr += len;
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	for (i = 0; i < sidptr->num_subauth; ++i) {
		saval = le32_to_cpu(sidptr->sub_auth[i]);
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		len = sprintf(strptr, "-%u", saval);
		strptr += len;
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	}
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	return sidstr;
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}

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/*
 * if the two SIDs (roughly equivalent to a UUID for a user or group) are
 * the same returns zero, if they do not match returns non-zero.
 */
static int
compare_sids(const struct cifs_sid *ctsid, const struct cifs_sid *cwsid)
{
	int i;
	int num_subauth, num_sat, num_saw;

	if ((!ctsid) || (!cwsid))
		return 1;

	/* compare the revision */
	if (ctsid->revision != cwsid->revision) {
		if (ctsid->revision > cwsid->revision)
			return 1;
		else
			return -1;
	}

	/* compare all of the six auth values */
	for (i = 0; i < NUM_AUTHS; ++i) {
		if (ctsid->authority[i] != cwsid->authority[i]) {
			if (ctsid->authority[i] > cwsid->authority[i])
				return 1;
			else
				return -1;
		}
	}

	/* compare all of the subauth values if any */
	num_sat = ctsid->num_subauth;
	num_saw = cwsid->num_subauth;
	num_subauth = num_sat < num_saw ? num_sat : num_saw;
	if (num_subauth) {
		for (i = 0; i < num_subauth; ++i) {
			if (ctsid->sub_auth[i] != cwsid->sub_auth[i]) {
				if (le32_to_cpu(ctsid->sub_auth[i]) >
					le32_to_cpu(cwsid->sub_auth[i]))
					return 1;
				else
					return -1;
			}
		}
	}

	return 0; /* sids compare/match */
}

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static bool
is_well_known_sid(const struct cifs_sid *psid, uint32_t *puid, bool is_group)
{
	int i;
	int num_subauth;
	const struct cifs_sid *pwell_known_sid;

	if (!psid || (puid == NULL))
		return false;

	num_subauth = psid->num_subauth;

	/* check if Mac (or Windows NFS) vs. Samba format for Unix owner SID */
	if (num_subauth == 2) {
		if (is_group)
			pwell_known_sid = &sid_unix_groups;
		else
			pwell_known_sid = &sid_unix_users;
	} else if (num_subauth == 3) {
		if (is_group)
			pwell_known_sid = &sid_unix_NFS_groups;
		else
			pwell_known_sid = &sid_unix_NFS_users;
	} else
		return false;

	/* compare the revision */
	if (psid->revision != pwell_known_sid->revision)
		return false;

	/* compare all of the six auth values */
	for (i = 0; i < NUM_AUTHS; ++i) {
		if (psid->authority[i] != pwell_known_sid->authority[i]) {
			cifs_dbg(FYI, "auth %d did not match\n", i);
			return false;
		}
	}

	if (num_subauth == 2) {
		if (psid->sub_auth[0] != pwell_known_sid->sub_auth[0])
			return false;

		*puid = le32_to_cpu(psid->sub_auth[1]);
	} else /* 3 subauths, ie Windows/Mac style */ {
		*puid = le32_to_cpu(psid->sub_auth[0]);
		if ((psid->sub_auth[0] != pwell_known_sid->sub_auth[0]) ||
		    (psid->sub_auth[1] != pwell_known_sid->sub_auth[1]))
			return false;

		*puid = le32_to_cpu(psid->sub_auth[2]);
	}

	cifs_dbg(FYI, "Unix UID %d returned from SID\n", *puid);
	return true; /* well known sid found, uid returned */
}

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static void
cifs_copy_sid(struct cifs_sid *dst, const struct cifs_sid *src)
{
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	int i;

	dst->revision = src->revision;
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	dst->num_subauth = min_t(u8, src->num_subauth, SID_MAX_SUB_AUTHORITIES);
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	for (i = 0; i < NUM_AUTHS; ++i)
		dst->authority[i] = src->authority[i];
	for (i = 0; i < dst->num_subauth; ++i)
		dst->sub_auth[i] = src->sub_auth[i];
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}

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static int
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id_to_sid(unsigned int cid, uint sidtype, struct cifs_sid *ssid)
286
{
287
	int rc;
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	struct key *sidkey;
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	struct cifs_sid *ksid;
	unsigned int ksid_size;
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	char desc[3 + 10 + 1]; /* 3 byte prefix + 10 bytes for value + NULL */
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	const struct cred *saved_cred;

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	rc = snprintf(desc, sizeof(desc), "%ci:%u",
			sidtype == SIDOWNER ? 'o' : 'g', cid);
	if (rc >= sizeof(desc))
		return -EINVAL;
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	rc = 0;
	saved_cred = override_creds(root_cred);
	sidkey = request_key(&cifs_idmap_key_type, desc, "");
	if (IS_ERR(sidkey)) {
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		rc = -EINVAL;
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		cifs_dbg(FYI, "%s: Can't map %cid %u to a SID\n",
			 __func__, sidtype == SIDOWNER ? 'u' : 'g', cid);
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		goto out_revert_creds;
	} else if (sidkey->datalen < CIFS_SID_BASE_SIZE) {
		rc = -EIO;
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		cifs_dbg(FYI, "%s: Downcall contained malformed key (datalen=%hu)\n",
			 __func__, sidkey->datalen);
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		goto invalidate_key;
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	}
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	/*
	 * A sid is usually too large to be embedded in payload.value, but if
	 * there are no subauthorities and the host has 8-byte pointers, then
	 * it could be.
	 */
	ksid = sidkey->datalen <= sizeof(sidkey->payload) ?
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		(struct cifs_sid *)&sidkey->payload :
		(struct cifs_sid *)sidkey->payload.data[0];
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	ksid_size = CIFS_SID_BASE_SIZE + (ksid->num_subauth * sizeof(__le32));
	if (ksid_size > sidkey->datalen) {
		rc = -EIO;
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		cifs_dbg(FYI, "%s: Downcall contained malformed key (datalen=%hu, ksid_size=%u)\n",
			 __func__, sidkey->datalen, ksid_size);
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		goto invalidate_key;
	}
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	cifs_copy_sid(ssid, ksid);
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out_key_put:
	key_put(sidkey);
out_revert_creds:
	revert_creds(saved_cred);
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	return rc;
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invalidate_key:
	key_invalidate(sidkey);
	goto out_key_put;
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}

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static int
sid_to_id(struct cifs_sb_info *cifs_sb, struct cifs_sid *psid,
		struct cifs_fattr *fattr, uint sidtype)
{
	int rc;
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	struct key *sidkey;
	char *sidstr;
350
	const struct cred *saved_cred;
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	kuid_t fuid = cifs_sb->mnt_uid;
	kgid_t fgid = cifs_sb->mnt_gid;
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	/*
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	 * If we have too many subauthorities, then something is really wrong.
	 * Just return an error.
357
	 */
358
	if (unlikely(psid->num_subauth > SID_MAX_SUB_AUTHORITIES)) {
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		cifs_dbg(FYI, "%s: %u subauthorities is too many!\n",
			 __func__, psid->num_subauth);
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		return -EIO;
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	}

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	if (cifs_sb->mnt_cifs_flags & CIFS_MOUNT_UID_FROM_ACL) {
		uint32_t unix_id;
		bool is_group;

		if (sidtype != SIDOWNER)
			is_group = true;
		else
			is_group = false;

		if (is_well_known_sid(psid, &unix_id, is_group) == false)
			goto try_upcall_to_get_id;

		if (is_group) {
			kgid_t gid;
			gid_t id;

			id = (gid_t)unix_id;
			gid = make_kgid(&init_user_ns, id);
			if (gid_valid(gid)) {
				fgid = gid;
				goto got_valid_id;
			}
		} else {
			kuid_t uid;
			uid_t id;

			id = (uid_t)unix_id;
			uid = make_kuid(&init_user_ns, id);
			if (uid_valid(uid)) {
				fuid = uid;
				goto got_valid_id;
			}
		}
		/* If unable to find uid/gid easily from SID try via upcall */
	}

try_upcall_to_get_id:
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	sidstr = sid_to_key_str(psid, sidtype);
	if (!sidstr)
		return -ENOMEM;

	saved_cred = override_creds(root_cred);
	sidkey = request_key(&cifs_idmap_key_type, sidstr, "");
	if (IS_ERR(sidkey)) {
		rc = -EINVAL;
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		cifs_dbg(FYI, "%s: Can't map SID %s to a %cid\n",
			 __func__, sidstr, sidtype == SIDOWNER ? 'u' : 'g');
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		goto out_revert_creds;
	}

	/*
	 * FIXME: Here we assume that uid_t and gid_t are same size. It's
	 * probably a safe assumption but might be better to check based on
	 * sidtype.
	 */
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	BUILD_BUG_ON(sizeof(uid_t) != sizeof(gid_t));
420
	if (sidkey->datalen != sizeof(uid_t)) {
421
		rc = -EIO;
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		cifs_dbg(FYI, "%s: Downcall contained malformed key (datalen=%hu)\n",
			 __func__, sidkey->datalen);
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		key_invalidate(sidkey);
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		goto out_key_put;
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	}

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	if (sidtype == SIDOWNER) {
		kuid_t uid;
		uid_t id;
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		memcpy(&id, &sidkey->payload.data[0], sizeof(uid_t));
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		uid = make_kuid(&init_user_ns, id);
		if (uid_valid(uid))
			fuid = uid;
	} else {
		kgid_t gid;
		gid_t id;
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		memcpy(&id, &sidkey->payload.data[0], sizeof(gid_t));
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		gid = make_kgid(&init_user_ns, id);
		if (gid_valid(gid))
			fgid = gid;
	}
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out_key_put:
	key_put(sidkey);
out_revert_creds:
	revert_creds(saved_cred);
	kfree(sidstr);
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	/*
	 * Note that we return 0 here unconditionally. If the mapping
	 * fails then we just fall back to using the mnt_uid/mnt_gid.
	 */
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got_valid_id:
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	if (sidtype == SIDOWNER)
		fattr->cf_uid = fuid;
	else
		fattr->cf_gid = fgid;
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	return 0;
}

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int
init_cifs_idmap(void)
{
	struct cred *cred;
	struct key *keyring;
	int ret;

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	cifs_dbg(FYI, "Registering the %s key type\n",
		 cifs_idmap_key_type.name);
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	/* create an override credential set with a special thread keyring in
	 * which requests are cached
	 *
	 * this is used to prevent malicious redirections from being installed
	 * with add_key().
	 */
	cred = prepare_kernel_cred(NULL);
	if (!cred)
		return -ENOMEM;

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	keyring = keyring_alloc(".cifs_idmap",
				GLOBAL_ROOT_UID, GLOBAL_ROOT_GID, cred,
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				(KEY_POS_ALL & ~KEY_POS_SETATTR) |
				KEY_USR_VIEW | KEY_USR_READ,
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				KEY_ALLOC_NOT_IN_QUOTA, NULL, NULL);
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	if (IS_ERR(keyring)) {
		ret = PTR_ERR(keyring);
		goto failed_put_cred;
	}

	ret = register_key_type(&cifs_idmap_key_type);
	if (ret < 0)
		goto failed_put_key;

	/* instruct request_key() to use this special keyring as a cache for
	 * the results it looks up */
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	set_bit(KEY_FLAG_ROOT_CAN_CLEAR, &keyring->flags);
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	cred->thread_keyring = keyring;
	cred->jit_keyring = KEY_REQKEY_DEFL_THREAD_KEYRING;
	root_cred = cred;

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	cifs_dbg(FYI, "cifs idmap keyring: %d\n", key_serial(keyring));
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	return 0;

failed_put_key:
	key_put(keyring);
failed_put_cred:
	put_cred(cred);
	return ret;
}

void
exit_cifs_idmap(void)
{
	key_revoke(root_cred->thread_keyring);
	unregister_key_type(&cifs_idmap_key_type);
	put_cred(root_cred);
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	cifs_dbg(FYI, "Unregistered %s key type\n", cifs_idmap_key_type.name);
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}

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/* copy ntsd, owner sid, and group sid from a security descriptor to another */
static void copy_sec_desc(const struct cifs_ntsd *pntsd,
				struct cifs_ntsd *pnntsd, __u32 sidsoffset)
{
	struct cifs_sid *owner_sid_ptr, *group_sid_ptr;
	struct cifs_sid *nowner_sid_ptr, *ngroup_sid_ptr;

	/* copy security descriptor control portion */
	pnntsd->revision = pntsd->revision;
	pnntsd->type = pntsd->type;
	pnntsd->dacloffset = cpu_to_le32(sizeof(struct cifs_ntsd));
	pnntsd->sacloffset = 0;
	pnntsd->osidoffset = cpu_to_le32(sidsoffset);
	pnntsd->gsidoffset = cpu_to_le32(sidsoffset + sizeof(struct cifs_sid));

	/* copy owner sid */
	owner_sid_ptr = (struct cifs_sid *)((char *)pntsd +
				le32_to_cpu(pntsd->osidoffset));
	nowner_sid_ptr = (struct cifs_sid *)((char *)pnntsd + sidsoffset);
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	cifs_copy_sid(nowner_sid_ptr, owner_sid_ptr);
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	/* copy group sid */
	group_sid_ptr = (struct cifs_sid *)((char *)pntsd +
				le32_to_cpu(pntsd->gsidoffset));
	ngroup_sid_ptr = (struct cifs_sid *)((char *)pnntsd + sidsoffset +
					sizeof(struct cifs_sid));
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	cifs_copy_sid(ngroup_sid_ptr, group_sid_ptr);
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	return;
}


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/*
   change posix mode to reflect permissions
   pmode is the existing mode (we only want to overwrite part of this
   bits to set can be: S_IRWXU, S_IRWXG or S_IRWXO ie 00700 or 00070 or 00007
*/
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Al Viro 已提交
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static void access_flags_to_mode(__le32 ace_flags, int type, umode_t *pmode,
560
				 umode_t *pbits_to_set)
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Steve French 已提交
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{
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	__u32 flags = le32_to_cpu(ace_flags);
563
	/* the order of ACEs is important.  The canonical order is to begin with
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	   DENY entries followed by ALLOW, otherwise an allow entry could be
565
	   encountered first, making the subsequent deny entry like "dead code"
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	   which would be superflous since Windows stops when a match is made
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	   for the operation you are trying to perform for your user */

	/* For deny ACEs we change the mask so that subsequent allow access
	   control entries do not turn on the bits we are denying */
	if (type == ACCESS_DENIED) {
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Steve French 已提交
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		if (flags & GENERIC_ALL)
573
			*pbits_to_set &= ~S_IRWXUGO;
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		if ((flags & GENERIC_WRITE) ||
			((flags & FILE_WRITE_RIGHTS) == FILE_WRITE_RIGHTS))
577
			*pbits_to_set &= ~S_IWUGO;
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Al Viro 已提交
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		if ((flags & GENERIC_READ) ||
			((flags & FILE_READ_RIGHTS) == FILE_READ_RIGHTS))
580
			*pbits_to_set &= ~S_IRUGO;
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Al Viro 已提交
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		if ((flags & GENERIC_EXECUTE) ||
			((flags & FILE_EXEC_RIGHTS) == FILE_EXEC_RIGHTS))
583 584 585
			*pbits_to_set &= ~S_IXUGO;
		return;
	} else if (type != ACCESS_ALLOWED) {
586
		cifs_dbg(VFS, "unknown access control type %d\n", type);
587 588 589
		return;
	}
	/* else ACCESS_ALLOWED type */
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591
	if (flags & GENERIC_ALL) {
592
		*pmode |= (S_IRWXUGO & (*pbits_to_set));
593
		cifs_dbg(NOISY, "all perms\n");
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594 595
		return;
	}
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596 597
	if ((flags & GENERIC_WRITE) ||
			((flags & FILE_WRITE_RIGHTS) == FILE_WRITE_RIGHTS))
598
		*pmode |= (S_IWUGO & (*pbits_to_set));
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599 600
	if ((flags & GENERIC_READ) ||
			((flags & FILE_READ_RIGHTS) == FILE_READ_RIGHTS))
601
		*pmode |= (S_IRUGO & (*pbits_to_set));
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602 603
	if ((flags & GENERIC_EXECUTE) ||
			((flags & FILE_EXEC_RIGHTS) == FILE_EXEC_RIGHTS))
604
		*pmode |= (S_IXUGO & (*pbits_to_set));
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605

606
	cifs_dbg(NOISY, "access flags 0x%x mode now 0x%x\n", flags, *pmode);
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607 608 609
	return;
}

610 611 612 613 614 615 616 617 618 619 620 621 622 623 624 625 626 627 628 629 630 631 632 633 634
/*
   Generate access flags to reflect permissions mode is the existing mode.
   This function is called for every ACE in the DACL whose SID matches
   with either owner or group or everyone.
*/

static void mode_to_access_flags(umode_t mode, umode_t bits_to_use,
				__u32 *pace_flags)
{
	/* reset access mask */
	*pace_flags = 0x0;

	/* bits to use are either S_IRWXU or S_IRWXG or S_IRWXO */
	mode &= bits_to_use;

	/* check for R/W/X UGO since we do not know whose flags
	   is this but we have cleared all the bits sans RWX for
	   either user or group or other as per bits_to_use */
	if (mode & S_IRUGO)
		*pace_flags |= SET_FILE_READ_RIGHTS;
	if (mode & S_IWUGO)
		*pace_flags |= SET_FILE_WRITE_RIGHTS;
	if (mode & S_IXUGO)
		*pace_flags |= SET_FILE_EXEC_RIGHTS;

635 636
	cifs_dbg(NOISY, "mode: 0x%x, access flags now 0x%x\n",
		 mode, *pace_flags);
637 638 639
	return;
}

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640
static __u16 fill_ace_for_sid(struct cifs_ace *pntace,
641 642 643 644 645 646 647 648 649 650 651 652 653 654 655
			const struct cifs_sid *psid, __u64 nmode, umode_t bits)
{
	int i;
	__u16 size = 0;
	__u32 access_req = 0;

	pntace->type = ACCESS_ALLOWED;
	pntace->flags = 0x0;
	mode_to_access_flags(nmode, bits, &access_req);
	if (!access_req)
		access_req = SET_MINIMUM_RIGHTS;
	pntace->access_req = cpu_to_le32(access_req);

	pntace->sid.revision = psid->revision;
	pntace->sid.num_subauth = psid->num_subauth;
656
	for (i = 0; i < NUM_AUTHS; i++)
657 658 659 660 661 662 663
		pntace->sid.authority[i] = psid->authority[i];
	for (i = 0; i < psid->num_subauth; i++)
		pntace->sid.sub_auth[i] = psid->sub_auth[i];

	size = 1 + 1 + 2 + 4 + 1 + 1 + 6 + (psid->num_subauth * 4);
	pntace->size = cpu_to_le16(size);

664
	return size;
665 666
}

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667

668 669
#ifdef CONFIG_CIFS_DEBUG2
static void dump_ace(struct cifs_ace *pace, char *end_of_acl)
670 671 672 673
{
	int num_subauth;

	/* validate that we do not go past end of acl */
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674

S
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675
	if (le16_to_cpu(pace->size) < 16) {
676
		cifs_dbg(VFS, "ACE too small %d\n", le16_to_cpu(pace->size));
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677 678 679 680
		return;
	}

	if (end_of_acl < (char *)pace + le16_to_cpu(pace->size)) {
681
		cifs_dbg(VFS, "ACL too small to parse ACE\n");
682
		return;
S
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683
	}
684

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685
	num_subauth = pace->sid.num_subauth;
686
	if (num_subauth) {
687
		int i;
688 689 690
		cifs_dbg(FYI, "ACE revision %d num_auth %d type %d flags %d size %d\n",
			 pace->sid.revision, pace->sid.num_subauth, pace->type,
			 pace->flags, le16_to_cpu(pace->size));
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691
		for (i = 0; i < num_subauth; ++i) {
692 693
			cifs_dbg(FYI, "ACE sub_auth[%d]: 0x%x\n",
				 i, le32_to_cpu(pace->sid.sub_auth[i]));
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694 695 696 697 698 699 700 701
		}

		/* BB add length check to make sure that we do not have huge
			num auths and therefore go off the end */
	}

	return;
}
702
#endif
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703

704

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705
static void parse_dacl(struct cifs_acl *pdacl, char *end_of_acl,
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706
		       struct cifs_sid *pownersid, struct cifs_sid *pgrpsid,
707
		       struct cifs_fattr *fattr)
708 709 710 711 712 713 714 715 716
{
	int i;
	int num_aces = 0;
	int acl_size;
	char *acl_base;
	struct cifs_ace **ppace;

	/* BB need to add parm so we can store the SID BB */

717 718 719
	if (!pdacl) {
		/* no DACL in the security descriptor, set
		   all the permissions for user/group/other */
720
		fattr->cf_mode |= S_IRWXUGO;
721 722 723
		return;
	}

724
	/* validate that we do not go past end of acl */
725
	if (end_of_acl < (char *)pdacl + le16_to_cpu(pdacl->size)) {
726
		cifs_dbg(VFS, "ACL too small to parse DACL\n");
727 728 729
		return;
	}

730 731 732
	cifs_dbg(NOISY, "DACL revision %d size %d num aces %d\n",
		 le16_to_cpu(pdacl->revision), le16_to_cpu(pdacl->size),
		 le32_to_cpu(pdacl->num_aces));
733

734 735 736
	/* reset rwx permissions for user/group/other.
	   Also, if num_aces is 0 i.e. DACL has no ACEs,
	   user/group/other have no permissions */
737
	fattr->cf_mode &= ~(S_IRWXUGO);
738

739 740 741
	acl_base = (char *)pdacl;
	acl_size = sizeof(struct cifs_acl);

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742
	num_aces = le32_to_cpu(pdacl->num_aces);
743
	if (num_aces > 0) {
744 745
		umode_t user_mask = S_IRWXU;
		umode_t group_mask = S_IRWXG;
746
		umode_t other_mask = S_IRWXU | S_IRWXG | S_IRWXO;
747

748 749
		if (num_aces > ULONG_MAX / sizeof(struct cifs_ace *))
			return;
750 751
		ppace = kmalloc(num_aces * sizeof(struct cifs_ace *),
				GFP_KERNEL);
752
		if (!ppace)
753
			return;
754 755

		for (i = 0; i < num_aces; ++i) {
S
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756
			ppace[i] = (struct cifs_ace *) (acl_base + acl_size);
757 758 759
#ifdef CONFIG_CIFS_DEBUG2
			dump_ace(ppace[i], end_of_acl);
#endif
760
			if (compare_sids(&(ppace[i]->sid), pownersid) == 0)
761
				access_flags_to_mode(ppace[i]->access_req,
762
						     ppace[i]->type,
763
						     &fattr->cf_mode,
764
						     &user_mask);
765
			if (compare_sids(&(ppace[i]->sid), pgrpsid) == 0)
766
				access_flags_to_mode(ppace[i]->access_req,
767
						     ppace[i]->type,
768
						     &fattr->cf_mode,
769
						     &group_mask);
770
			if (compare_sids(&(ppace[i]->sid), &sid_everyone) == 0)
771
				access_flags_to_mode(ppace[i]->access_req,
772
						     ppace[i]->type,
773
						     &fattr->cf_mode,
774
						     &other_mask);
775
			if (compare_sids(&(ppace[i]->sid), &sid_authusers) == 0)
776 777 778 779 780
				access_flags_to_mode(ppace[i]->access_req,
						     ppace[i]->type,
						     &fattr->cf_mode,
						     &other_mask);

781

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782
/*			memcpy((void *)(&(cifscred->aces[i])),
S
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783 784
				(void *)ppace[i],
				sizeof(struct cifs_ace)); */
785

S
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786 787
			acl_base = (char *)ppace[i];
			acl_size = le16_to_cpu(ppace[i]->size);
788 789 790 791 792 793 794 795
		}

		kfree(ppace);
	}

	return;
}

796

797 798 799
static int set_chmod_dacl(struct cifs_acl *pndacl, struct cifs_sid *pownersid,
			struct cifs_sid *pgrpsid, __u64 nmode)
{
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800
	u16 size = 0;
801 802 803 804 805 806 807 808 809 810 811 812
	struct cifs_acl *pnndacl;

	pnndacl = (struct cifs_acl *)((char *)pndacl + sizeof(struct cifs_acl));

	size += fill_ace_for_sid((struct cifs_ace *) ((char *)pnndacl + size),
					pownersid, nmode, S_IRWXU);
	size += fill_ace_for_sid((struct cifs_ace *)((char *)pnndacl + size),
					pgrpsid, nmode, S_IRWXG);
	size += fill_ace_for_sid((struct cifs_ace *)((char *)pnndacl + size),
					 &sid_everyone, nmode, S_IRWXO);

	pndacl->size = cpu_to_le16(size + sizeof(struct cifs_acl));
813
	pndacl->num_aces = cpu_to_le32(3);
814

815
	return 0;
816 817 818
}


819 820 821 822
static int parse_sid(struct cifs_sid *psid, char *end_of_acl)
{
	/* BB need to add parm so we can store the SID BB */

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823 824 825
	/* validate that we do not go past end of ACL - sid must be at least 8
	   bytes long (assuming no sub-auths - e.g. the null SID */
	if (end_of_acl < (char *)psid + 8) {
826
		cifs_dbg(VFS, "ACL too small to parse SID %p\n", psid);
827 828
		return -EINVAL;
	}
829

830
#ifdef CONFIG_CIFS_DEBUG2
831
	if (psid->num_subauth) {
832
		int i;
833 834
		cifs_dbg(FYI, "SID revision %d num_auth %d\n",
			 psid->revision, psid->num_subauth);
835

836
		for (i = 0; i < psid->num_subauth; i++) {
837 838
			cifs_dbg(FYI, "SID sub_auth[%d]: 0x%x\n",
				 i, le32_to_cpu(psid->sub_auth[i]));
839 840
		}

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841
		/* BB add length check to make sure that we do not have huge
842
			num auths and therefore go off the end */
843 844
		cifs_dbg(FYI, "RID 0x%x\n",
			 le32_to_cpu(psid->sub_auth[psid->num_subauth-1]));
845
	}
846
#endif
847

848 849 850
	return 0;
}

851

852
/* Convert CIFS ACL to POSIX form */
853 854
static int parse_sec_desc(struct cifs_sb_info *cifs_sb,
		struct cifs_ntsd *pntsd, int acl_len, struct cifs_fattr *fattr)
855
{
856
	int rc = 0;
857 858 859
	struct cifs_sid *owner_sid_ptr, *group_sid_ptr;
	struct cifs_acl *dacl_ptr; /* no need for SACL ptr */
	char *end_of_acl = ((char *)pntsd) + acl_len;
860
	__u32 dacloffset;
861

862
	if (pntsd == NULL)
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863 864
		return -EIO;

865
	owner_sid_ptr = (struct cifs_sid *)((char *)pntsd +
866
				le32_to_cpu(pntsd->osidoffset));
867
	group_sid_ptr = (struct cifs_sid *)((char *)pntsd +
868
				le32_to_cpu(pntsd->gsidoffset));
869
	dacloffset = le32_to_cpu(pntsd->dacloffset);
870
	dacl_ptr = (struct cifs_acl *)((char *)pntsd + dacloffset);
871
	cifs_dbg(NOISY, "revision %d type 0x%x ooffset 0x%x goffset 0x%x sacloffset 0x%x dacloffset 0x%x\n",
872 873
		 pntsd->revision, pntsd->type, le32_to_cpu(pntsd->osidoffset),
		 le32_to_cpu(pntsd->gsidoffset),
874
		 le32_to_cpu(pntsd->sacloffset), dacloffset);
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875
/*	cifs_dump_mem("owner_sid: ", owner_sid_ptr, 64); */
876
	rc = parse_sid(owner_sid_ptr, end_of_acl);
877
	if (rc) {
878
		cifs_dbg(FYI, "%s: Error %d parsing Owner SID\n", __func__, rc);
879 880 881 882
		return rc;
	}
	rc = sid_to_id(cifs_sb, owner_sid_ptr, fattr, SIDOWNER);
	if (rc) {
883 884
		cifs_dbg(FYI, "%s: Error %d mapping Owner SID to uid\n",
			 __func__, rc);
885
		return rc;
886
	}
887 888

	rc = parse_sid(group_sid_ptr, end_of_acl);
889
	if (rc) {
890 891
		cifs_dbg(FYI, "%s: Error %d mapping Owner SID to gid\n",
			 __func__, rc);
892
		return rc;
893 894 895
	}
	rc = sid_to_id(cifs_sb, group_sid_ptr, fattr, SIDGROUP);
	if (rc) {
896 897
		cifs_dbg(FYI, "%s: Error %d mapping Group SID to gid\n",
			 __func__, rc);
898 899
		return rc;
	}
900

901 902
	if (dacloffset)
		parse_dacl(dacl_ptr, end_of_acl, owner_sid_ptr,
903
			   group_sid_ptr, fattr);
904
	else
905
		cifs_dbg(FYI, "no ACL\n"); /* BB grant all or default perms? */
906

907
	return rc;
908
}
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909

910 911
/* Convert permission bits from mode to equivalent CIFS ACL */
static int build_sec_desc(struct cifs_ntsd *pntsd, struct cifs_ntsd *pnntsd,
912
	__u32 secdesclen, __u64 nmode, kuid_t uid, kgid_t gid, int *aclflag)
913 914 915 916 917 918
{
	int rc = 0;
	__u32 dacloffset;
	__u32 ndacloffset;
	__u32 sidsoffset;
	struct cifs_sid *owner_sid_ptr, *group_sid_ptr;
919
	struct cifs_sid *nowner_sid_ptr, *ngroup_sid_ptr;
920 921 922
	struct cifs_acl *dacl_ptr = NULL;  /* no need for SACL ptr */
	struct cifs_acl *ndacl_ptr = NULL; /* no need for SACL ptr */

923 924
	if (nmode != NO_CHANGE_64) { /* chmod */
		owner_sid_ptr = (struct cifs_sid *)((char *)pntsd +
925
				le32_to_cpu(pntsd->osidoffset));
926
		group_sid_ptr = (struct cifs_sid *)((char *)pntsd +
927
				le32_to_cpu(pntsd->gsidoffset));
928 929 930 931 932 933 934 935 936 937 938 939 940 941 942 943
		dacloffset = le32_to_cpu(pntsd->dacloffset);
		dacl_ptr = (struct cifs_acl *)((char *)pntsd + dacloffset);
		ndacloffset = sizeof(struct cifs_ntsd);
		ndacl_ptr = (struct cifs_acl *)((char *)pnntsd + ndacloffset);
		ndacl_ptr->revision = dacl_ptr->revision;
		ndacl_ptr->size = 0;
		ndacl_ptr->num_aces = 0;

		rc = set_chmod_dacl(ndacl_ptr, owner_sid_ptr, group_sid_ptr,
					nmode);
		sidsoffset = ndacloffset + le16_to_cpu(ndacl_ptr->size);
		/* copy sec desc control portion & owner and group sids */
		copy_sec_desc(pntsd, pnntsd, sidsoffset);
		*aclflag = CIFS_ACL_DACL;
	} else {
		memcpy(pnntsd, pntsd, secdesclen);
944 945
		if (uid_valid(uid)) { /* chown */
			uid_t id;
946 947 948 949 950 951
			owner_sid_ptr = (struct cifs_sid *)((char *)pnntsd +
					le32_to_cpu(pnntsd->osidoffset));
			nowner_sid_ptr = kmalloc(sizeof(struct cifs_sid),
								GFP_KERNEL);
			if (!nowner_sid_ptr)
				return -ENOMEM;
952 953
			id = from_kuid(&init_user_ns, uid);
			rc = id_to_sid(id, SIDOWNER, nowner_sid_ptr);
954
			if (rc) {
955 956
				cifs_dbg(FYI, "%s: Mapping error %d for owner id %d\n",
					 __func__, rc, id);
957 958 959
				kfree(nowner_sid_ptr);
				return rc;
			}
960
			cifs_copy_sid(owner_sid_ptr, nowner_sid_ptr);
961 962 963
			kfree(nowner_sid_ptr);
			*aclflag = CIFS_ACL_OWNER;
		}
964 965
		if (gid_valid(gid)) { /* chgrp */
			gid_t id;
966 967 968 969 970 971
			group_sid_ptr = (struct cifs_sid *)((char *)pnntsd +
					le32_to_cpu(pnntsd->gsidoffset));
			ngroup_sid_ptr = kmalloc(sizeof(struct cifs_sid),
								GFP_KERNEL);
			if (!ngroup_sid_ptr)
				return -ENOMEM;
972 973
			id = from_kgid(&init_user_ns, gid);
			rc = id_to_sid(id, SIDGROUP, ngroup_sid_ptr);
974
			if (rc) {
975 976
				cifs_dbg(FYI, "%s: Mapping error %d for group id %d\n",
					 __func__, rc, id);
977 978 979
				kfree(ngroup_sid_ptr);
				return rc;
			}
980
			cifs_copy_sid(group_sid_ptr, ngroup_sid_ptr);
981 982 983 984
			kfree(ngroup_sid_ptr);
			*aclflag = CIFS_ACL_GROUP;
		}
	}
985

986
	return rc;
987 988
}

989 990
struct cifs_ntsd *get_cifs_acl_by_fid(struct cifs_sb_info *cifs_sb,
		const struct cifs_fid *cifsfid, u32 *pacllen)
S
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991 992
{
	struct cifs_ntsd *pntsd = NULL;
993 994
	unsigned int xid;
	int rc;
995 996 997
	struct tcon_link *tlink = cifs_sb_tlink(cifs_sb);

	if (IS_ERR(tlink))
998
		return ERR_CAST(tlink);
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999

1000
	xid = get_xid();
1001 1002
	rc = CIFSSMBGetCIFSACL(xid, tlink_tcon(tlink), cifsfid->netfid, &pntsd,
				pacllen);
1003
	free_xid(xid);
S
Steve French 已提交
1004

1005
	cifs_put_tlink(tlink);
S
Steve French 已提交
1006

1007
	cifs_dbg(FYI, "%s: rc = %d ACL len %d\n", __func__, rc, *pacllen);
1008 1009
	if (rc)
		return ERR_PTR(rc);
1010 1011
	return pntsd;
}
1012

1013 1014 1015 1016 1017
static struct cifs_ntsd *get_cifs_acl_by_path(struct cifs_sb_info *cifs_sb,
		const char *path, u32 *pacllen)
{
	struct cifs_ntsd *pntsd = NULL;
	int oplock = 0;
1018 1019
	unsigned int xid;
	int rc, create_options = 0;
1020
	struct cifs_tcon *tcon;
1021
	struct tcon_link *tlink = cifs_sb_tlink(cifs_sb);
1022 1023
	struct cifs_fid fid;
	struct cifs_open_parms oparms;
1024 1025

	if (IS_ERR(tlink))
1026
		return ERR_CAST(tlink);
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1027

1028
	tcon = tlink_tcon(tlink);
1029
	xid = get_xid();
1030

1031 1032 1033
	if (backup_cred(cifs_sb))
		create_options |= CREATE_OPEN_BACKUP_INTENT;

1034 1035 1036 1037 1038 1039 1040 1041 1042 1043
	oparms.tcon = tcon;
	oparms.cifs_sb = cifs_sb;
	oparms.desired_access = READ_CONTROL;
	oparms.create_options = create_options;
	oparms.disposition = FILE_OPEN;
	oparms.path = path;
	oparms.fid = &fid;
	oparms.reconnect = false;

	rc = CIFS_open(xid, &oparms, &oplock, NULL);
1044
	if (!rc) {
1045 1046
		rc = CIFSSMBGetCIFSACL(xid, tcon, fid.netfid, &pntsd, pacllen);
		CIFSSMBClose(xid, tcon, fid.netfid);
S
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1047 1048
	}

1049
	cifs_put_tlink(tlink);
1050
	free_xid(xid);
1051

1052
	cifs_dbg(FYI, "%s: rc = %d ACL len %d\n", __func__, rc, *pacllen);
1053 1054
	if (rc)
		return ERR_PTR(rc);
1055 1056 1057
	return pntsd;
}

1058
/* Retrieve an ACL from the server */
1059
struct cifs_ntsd *get_cifs_acl(struct cifs_sb_info *cifs_sb,
1060 1061 1062 1063 1064 1065 1066
				      struct inode *inode, const char *path,
				      u32 *pacllen)
{
	struct cifs_ntsd *pntsd = NULL;
	struct cifsFileInfo *open_file = NULL;

	if (inode)
1067
		open_file = find_readable_file(CIFS_I(inode), true);
1068 1069 1070
	if (!open_file)
		return get_cifs_acl_by_path(cifs_sb, path, pacllen);

1071
	pntsd = get_cifs_acl_by_fid(cifs_sb, &open_file->fid, pacllen);
1072
	cifsFileInfo_put(open_file);
1073 1074 1075
	return pntsd;
}

1076 1077 1078
 /* Set an ACL on the server */
int set_cifs_acl(struct cifs_ntsd *pnntsd, __u32 acllen,
			struct inode *inode, const char *path, int aclflag)
1079 1080
{
	int oplock = 0;
1081 1082
	unsigned int xid;
	int rc, access_flags, create_options = 0;
1083
	struct cifs_tcon *tcon;
1084
	struct cifs_sb_info *cifs_sb = CIFS_SB(inode->i_sb);
1085
	struct tcon_link *tlink = cifs_sb_tlink(cifs_sb);
1086 1087
	struct cifs_fid fid;
	struct cifs_open_parms oparms;
1088

1089 1090 1091 1092
	if (IS_ERR(tlink))
		return PTR_ERR(tlink);

	tcon = tlink_tcon(tlink);
1093
	xid = get_xid();
1094

1095 1096 1097
	if (backup_cred(cifs_sb))
		create_options |= CREATE_OPEN_BACKUP_INTENT;

1098 1099 1100 1101 1102
	if (aclflag == CIFS_ACL_OWNER || aclflag == CIFS_ACL_GROUP)
		access_flags = WRITE_OWNER;
	else
		access_flags = WRITE_DAC;

1103 1104 1105 1106 1107 1108 1109 1110 1111 1112
	oparms.tcon = tcon;
	oparms.cifs_sb = cifs_sb;
	oparms.desired_access = access_flags;
	oparms.create_options = create_options;
	oparms.disposition = FILE_OPEN;
	oparms.path = path;
	oparms.fid = &fid;
	oparms.reconnect = false;

	rc = CIFS_open(xid, &oparms, &oplock, NULL);
1113
	if (rc) {
1114
		cifs_dbg(VFS, "Unable to open file to set ACL\n");
1115
		goto out;
1116 1117
	}

1118
	rc = CIFSSMBSetCIFSACL(xid, tcon, fid.netfid, pnntsd, acllen, aclflag);
1119
	cifs_dbg(NOISY, "SetCIFSACL rc = %d\n", rc);
1120

1121
	CIFSSMBClose(xid, tcon, fid.netfid);
1122
out:
1123
	free_xid(xid);
1124
	cifs_put_tlink(tlink);
1125 1126
	return rc;
}
1127

1128
/* Translate the CIFS ACL (simlar to NTFS ACL) for a file into mode bits */
1129
int
1130
cifs_acl_to_fattr(struct cifs_sb_info *cifs_sb, struct cifs_fattr *fattr,
1131 1132
		  struct inode *inode, const char *path,
		  const struct cifs_fid *pfid)
1133 1134 1135 1136
{
	struct cifs_ntsd *pntsd = NULL;
	u32 acllen = 0;
	int rc = 0;
1137 1138
	struct tcon_link *tlink = cifs_sb_tlink(cifs_sb);
	struct cifs_tcon *tcon;
1139

1140
	cifs_dbg(NOISY, "converting ACL to mode for %s\n", path);
1141

1142 1143 1144
	if (IS_ERR(tlink))
		return PTR_ERR(tlink);
	tcon = tlink_tcon(tlink);
1145

1146 1147 1148 1149 1150 1151 1152 1153 1154 1155
	if (pfid && (tcon->ses->server->ops->get_acl_by_fid))
		pntsd = tcon->ses->server->ops->get_acl_by_fid(cifs_sb, pfid,
							  &acllen);
	else if (tcon->ses->server->ops->get_acl)
		pntsd = tcon->ses->server->ops->get_acl(cifs_sb, inode, path,
							&acllen);
	else {
		cifs_put_tlink(tlink);
		return -EOPNOTSUPP;
	}
1156
	/* if we can retrieve the ACL, now parse Access Control Entries, ACEs */
1157 1158
	if (IS_ERR(pntsd)) {
		rc = PTR_ERR(pntsd);
1159
		cifs_dbg(VFS, "%s: error %d getting sec desc\n", __func__, rc);
1160
	} else {
1161
		rc = parse_sec_desc(cifs_sb, pntsd, acllen, fattr);
1162 1163
		kfree(pntsd);
		if (rc)
1164
			cifs_dbg(VFS, "parse sec desc failed rc = %d\n", rc);
1165
	}
1166

1167 1168
	cifs_put_tlink(tlink);

1169
	return rc;
S
Steve French 已提交
1170
}
1171

1172
/* Convert mode bits to an ACL so we can update the ACL on the server */
1173 1174
int
id_mode_to_cifs_acl(struct inode *inode, const char *path, __u64 nmode,
1175
			kuid_t uid, kgid_t gid)
1176 1177
{
	int rc = 0;
1178
	int aclflag = CIFS_ACL_DACL; /* default flag to set */
1179
	__u32 secdesclen = 0;
1180 1181
	struct cifs_ntsd *pntsd = NULL; /* acl obtained from server */
	struct cifs_ntsd *pnntsd = NULL; /* modified acl to be sent to server */
1182 1183 1184 1185 1186 1187 1188
	struct cifs_sb_info *cifs_sb = CIFS_SB(inode->i_sb);
	struct tcon_link *tlink = cifs_sb_tlink(cifs_sb);
	struct cifs_tcon *tcon;

	if (IS_ERR(tlink))
		return PTR_ERR(tlink);
	tcon = tlink_tcon(tlink);
1189

1190
	cifs_dbg(NOISY, "set ACL from mode for %s\n", path);
1191 1192

	/* Get the security descriptor */
1193 1194 1195 1196 1197 1198 1199 1200

	if (tcon->ses->server->ops->get_acl == NULL) {
		cifs_put_tlink(tlink);
		return -EOPNOTSUPP;
	}

	pntsd = tcon->ses->server->ops->get_acl(cifs_sb, inode, path,
						&secdesclen);
1201 1202
	if (IS_ERR(pntsd)) {
		rc = PTR_ERR(pntsd);
1203
		cifs_dbg(VFS, "%s: error %d getting sec desc\n", __func__, rc);
1204 1205
		cifs_put_tlink(tlink);
		return rc;
J
Jeff Layton 已提交
1206
	}
1207

J
Jeff Layton 已提交
1208 1209 1210 1211 1212 1213
	/*
	 * Add three ACEs for owner, group, everyone getting rid of other ACEs
	 * as chmod disables ACEs and set the security descriptor. Allocate
	 * memory for the smb header, set security descriptor request security
	 * descriptor parameters, and secuirty descriptor itself
	 */
1214
	secdesclen = max_t(u32, secdesclen, DEFAULT_SEC_DESC_LEN);
J
Jeff Layton 已提交
1215 1216 1217
	pnntsd = kmalloc(secdesclen, GFP_KERNEL);
	if (!pnntsd) {
		kfree(pntsd);
1218
		cifs_put_tlink(tlink);
J
Jeff Layton 已提交
1219 1220
		return -ENOMEM;
	}
1221

J
Jeff Layton 已提交
1222 1223
	rc = build_sec_desc(pntsd, pnntsd, secdesclen, nmode, uid, gid,
				&aclflag);
1224

1225
	cifs_dbg(NOISY, "build_sec_desc rc: %d\n", rc);
1226

1227 1228 1229
	if (tcon->ses->server->ops->set_acl == NULL)
		rc = -EOPNOTSUPP;

J
Jeff Layton 已提交
1230 1231
	if (!rc) {
		/* Set the security descriptor */
1232 1233
		rc = tcon->ses->server->ops->set_acl(pnntsd, secdesclen, inode,
						     path, aclflag);
1234
		cifs_dbg(NOISY, "set_cifs_acl rc: %d\n", rc);
1235
	}
1236
	cifs_put_tlink(tlink);
1237

J
Jeff Layton 已提交
1238 1239
	kfree(pnntsd);
	kfree(pntsd);
1240
	return rc;
1241
}