auditsc.c 64.1 KB
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/* auditsc.c -- System-call auditing support
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 * Handles all system-call specific auditing features.
 *
 * Copyright 2003-2004 Red Hat Inc., Durham, North Carolina.
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 * Copyright 2005 Hewlett-Packard Development Company, L.P.
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 * Copyright (C) 2005, 2006 IBM Corporation
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 * All Rights Reserved.
 *
 * 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
 * (at your option) any later version.
 *
 * This program 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 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., 59 Temple Place, Suite 330, Boston, MA  02111-1307  USA
 *
 * Written by Rickard E. (Rik) Faith <faith@redhat.com>
 *
 * Many of the ideas implemented here are from Stephen C. Tweedie,
 * especially the idea of avoiding a copy by using getname.
 *
 * The method for actual interception of syscall entry and exit (not in
 * this file -- see entry.S) is based on a GPL'd patch written by
 * okir@suse.de and Copyright 2003 SuSE Linux AG.
 *
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 * POSIX message queue support added by George Wilson <ltcgcw@us.ibm.com>,
 * 2006.
 *
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 * The support of additional filter rules compares (>, <, >=, <=) was
 * added by Dustin Kirkland <dustin.kirkland@us.ibm.com>, 2005.
 *
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 * Modified by Amy Griffis <amy.griffis@hp.com> to collect additional
 * filesystem information.
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 *
 * Subject and object context labeling support added by <danjones@us.ibm.com>
 * and <dustin.kirkland@us.ibm.com> for LSPP certification compliance.
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 */

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#define pr_fmt(fmt) KBUILD_MODNAME ": " fmt

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#include <linux/init.h>
#include <asm/types.h>
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#include <linux/atomic.h>
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#include <linux/fs.h>
#include <linux/namei.h>
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#include <linux/mm.h>
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#include <linux/export.h>
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#include <linux/slab.h>
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#include <linux/mount.h>
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#include <linux/socket.h>
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#include <linux/mqueue.h>
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#include <linux/audit.h>
#include <linux/personality.h>
#include <linux/time.h>
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#include <linux/netlink.h>
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#include <linux/compiler.h>
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#include <asm/unistd.h>
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#include <linux/security.h>
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#include <linux/list.h>
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#include <linux/binfmts.h>
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#include <linux/highmem.h>
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#include <linux/syscalls.h>
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#include <asm/syscall.h>
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#include <linux/capability.h>
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#include <linux/fs_struct.h>
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#include <linux/compat.h>
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#include <linux/ctype.h>
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#include <linux/string.h>
#include <uapi/linux/limits.h>
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#include "audit.h"
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/* flags stating the success for a syscall */
#define AUDITSC_INVALID 0
#define AUDITSC_SUCCESS 1
#define AUDITSC_FAILURE 2

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/* no execve audit message should be longer than this (userspace limits) */
#define MAX_EXECVE_AUDIT_LEN 7500

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/* max length to print of cmdline/proctitle value during audit */
#define MAX_PROCTITLE_AUDIT_LEN 128

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/* number of audit rules */
int audit_n_rules;

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/* determines whether we collect data for signals sent */
int audit_signals;

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struct audit_aux_data {
	struct audit_aux_data	*next;
	int			type;
};

#define AUDIT_AUX_IPCPERM	0

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/* Number of target pids per aux struct. */
#define AUDIT_AUX_PIDS	16

struct audit_aux_data_pids {
	struct audit_aux_data	d;
	pid_t			target_pid[AUDIT_AUX_PIDS];
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	kuid_t			target_auid[AUDIT_AUX_PIDS];
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	kuid_t			target_uid[AUDIT_AUX_PIDS];
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	unsigned int		target_sessionid[AUDIT_AUX_PIDS];
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	u32			target_sid[AUDIT_AUX_PIDS];
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	char 			target_comm[AUDIT_AUX_PIDS][TASK_COMM_LEN];
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	int			pid_count;
};

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struct audit_aux_data_bprm_fcaps {
	struct audit_aux_data	d;
	struct audit_cap_data	fcap;
	unsigned int		fcap_ver;
	struct audit_cap_data	old_pcap;
	struct audit_cap_data	new_pcap;
};

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struct audit_tree_refs {
	struct audit_tree_refs *next;
	struct audit_chunk *c[31];
};

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static int audit_match_perm(struct audit_context *ctx, int mask)
{
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	unsigned n;
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	if (unlikely(!ctx))
		return 0;
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	n = ctx->major;
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	switch (audit_classify_syscall(ctx->arch, n)) {
	case 0:	/* native */
		if ((mask & AUDIT_PERM_WRITE) &&
		     audit_match_class(AUDIT_CLASS_WRITE, n))
			return 1;
		if ((mask & AUDIT_PERM_READ) &&
		     audit_match_class(AUDIT_CLASS_READ, n))
			return 1;
		if ((mask & AUDIT_PERM_ATTR) &&
		     audit_match_class(AUDIT_CLASS_CHATTR, n))
			return 1;
		return 0;
	case 1: /* 32bit on biarch */
		if ((mask & AUDIT_PERM_WRITE) &&
		     audit_match_class(AUDIT_CLASS_WRITE_32, n))
			return 1;
		if ((mask & AUDIT_PERM_READ) &&
		     audit_match_class(AUDIT_CLASS_READ_32, n))
			return 1;
		if ((mask & AUDIT_PERM_ATTR) &&
		     audit_match_class(AUDIT_CLASS_CHATTR_32, n))
			return 1;
		return 0;
	case 2: /* open */
		return mask & ACC_MODE(ctx->argv[1]);
	case 3: /* openat */
		return mask & ACC_MODE(ctx->argv[2]);
	case 4: /* socketcall */
		return ((mask & AUDIT_PERM_WRITE) && ctx->argv[0] == SYS_BIND);
	case 5: /* execve */
		return mask & AUDIT_PERM_EXEC;
	default:
		return 0;
	}
}

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static int audit_match_filetype(struct audit_context *ctx, int val)
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{
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	struct audit_names *n;
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	umode_t mode = (umode_t)val;
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	if (unlikely(!ctx))
		return 0;

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	list_for_each_entry(n, &ctx->names_list, list) {
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		if ((n->ino != AUDIT_INO_UNSET) &&
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		    ((n->mode & S_IFMT) == mode))
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			return 1;
	}
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	return 0;
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}

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/*
 * We keep a linked list of fixed-sized (31 pointer) arrays of audit_chunk *;
 * ->first_trees points to its beginning, ->trees - to the current end of data.
 * ->tree_count is the number of free entries in array pointed to by ->trees.
 * Original condition is (NULL, NULL, 0); as soon as it grows we never revert to NULL,
 * "empty" becomes (p, p, 31) afterwards.  We don't shrink the list (and seriously,
 * it's going to remain 1-element for almost any setup) until we free context itself.
 * References in it _are_ dropped - at the same time we free/drop aux stuff.
 */

#ifdef CONFIG_AUDIT_TREE
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static void audit_set_auditable(struct audit_context *ctx)
{
	if (!ctx->prio) {
		ctx->prio = 1;
		ctx->current_state = AUDIT_RECORD_CONTEXT;
	}
}

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static int put_tree_ref(struct audit_context *ctx, struct audit_chunk *chunk)
{
	struct audit_tree_refs *p = ctx->trees;
	int left = ctx->tree_count;
	if (likely(left)) {
		p->c[--left] = chunk;
		ctx->tree_count = left;
		return 1;
	}
	if (!p)
		return 0;
	p = p->next;
	if (p) {
		p->c[30] = chunk;
		ctx->trees = p;
		ctx->tree_count = 30;
		return 1;
	}
	return 0;
}

static int grow_tree_refs(struct audit_context *ctx)
{
	struct audit_tree_refs *p = ctx->trees;
	ctx->trees = kzalloc(sizeof(struct audit_tree_refs), GFP_KERNEL);
	if (!ctx->trees) {
		ctx->trees = p;
		return 0;
	}
	if (p)
		p->next = ctx->trees;
	else
		ctx->first_trees = ctx->trees;
	ctx->tree_count = 31;
	return 1;
}
#endif

static void unroll_tree_refs(struct audit_context *ctx,
		      struct audit_tree_refs *p, int count)
{
#ifdef CONFIG_AUDIT_TREE
	struct audit_tree_refs *q;
	int n;
	if (!p) {
		/* we started with empty chain */
		p = ctx->first_trees;
		count = 31;
		/* if the very first allocation has failed, nothing to do */
		if (!p)
			return;
	}
	n = count;
	for (q = p; q != ctx->trees; q = q->next, n = 31) {
		while (n--) {
			audit_put_chunk(q->c[n]);
			q->c[n] = NULL;
		}
	}
	while (n-- > ctx->tree_count) {
		audit_put_chunk(q->c[n]);
		q->c[n] = NULL;
	}
	ctx->trees = p;
	ctx->tree_count = count;
#endif
}

static void free_tree_refs(struct audit_context *ctx)
{
	struct audit_tree_refs *p, *q;
	for (p = ctx->first_trees; p; p = q) {
		q = p->next;
		kfree(p);
	}
}

static int match_tree_refs(struct audit_context *ctx, struct audit_tree *tree)
{
#ifdef CONFIG_AUDIT_TREE
	struct audit_tree_refs *p;
	int n;
	if (!tree)
		return 0;
	/* full ones */
	for (p = ctx->first_trees; p != ctx->trees; p = p->next) {
		for (n = 0; n < 31; n++)
			if (audit_tree_match(p->c[n], tree))
				return 1;
	}
	/* partial */
	if (p) {
		for (n = ctx->tree_count; n < 31; n++)
			if (audit_tree_match(p->c[n], tree))
				return 1;
	}
#endif
	return 0;
}

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static int audit_compare_uid(kuid_t uid,
			     struct audit_names *name,
			     struct audit_field *f,
			     struct audit_context *ctx)
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{
	struct audit_names *n;
	int rc;
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	if (name) {
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		rc = audit_uid_comparator(uid, f->op, name->uid);
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		if (rc)
			return rc;
	}
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	if (ctx) {
		list_for_each_entry(n, &ctx->names_list, list) {
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			rc = audit_uid_comparator(uid, f->op, n->uid);
			if (rc)
				return rc;
		}
	}
	return 0;
}
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static int audit_compare_gid(kgid_t gid,
			     struct audit_names *name,
			     struct audit_field *f,
			     struct audit_context *ctx)
{
	struct audit_names *n;
	int rc;
 
	if (name) {
		rc = audit_gid_comparator(gid, f->op, name->gid);
		if (rc)
			return rc;
	}
 
	if (ctx) {
		list_for_each_entry(n, &ctx->names_list, list) {
			rc = audit_gid_comparator(gid, f->op, n->gid);
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			if (rc)
				return rc;
		}
	}
	return 0;
}

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static int audit_field_compare(struct task_struct *tsk,
			       const struct cred *cred,
			       struct audit_field *f,
			       struct audit_context *ctx,
			       struct audit_names *name)
{
	switch (f->val) {
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	/* process to file object comparisons */
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	case AUDIT_COMPARE_UID_TO_OBJ_UID:
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		return audit_compare_uid(cred->uid, name, f, ctx);
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	case AUDIT_COMPARE_GID_TO_OBJ_GID:
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		return audit_compare_gid(cred->gid, name, f, ctx);
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	case AUDIT_COMPARE_EUID_TO_OBJ_UID:
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		return audit_compare_uid(cred->euid, name, f, ctx);
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	case AUDIT_COMPARE_EGID_TO_OBJ_GID:
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		return audit_compare_gid(cred->egid, name, f, ctx);
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	case AUDIT_COMPARE_AUID_TO_OBJ_UID:
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		return audit_compare_uid(tsk->loginuid, name, f, ctx);
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	case AUDIT_COMPARE_SUID_TO_OBJ_UID:
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		return audit_compare_uid(cred->suid, name, f, ctx);
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	case AUDIT_COMPARE_SGID_TO_OBJ_GID:
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		return audit_compare_gid(cred->sgid, name, f, ctx);
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	case AUDIT_COMPARE_FSUID_TO_OBJ_UID:
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		return audit_compare_uid(cred->fsuid, name, f, ctx);
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	case AUDIT_COMPARE_FSGID_TO_OBJ_GID:
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		return audit_compare_gid(cred->fsgid, name, f, ctx);
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	/* uid comparisons */
	case AUDIT_COMPARE_UID_TO_AUID:
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		return audit_uid_comparator(cred->uid, f->op, tsk->loginuid);
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	case AUDIT_COMPARE_UID_TO_EUID:
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		return audit_uid_comparator(cred->uid, f->op, cred->euid);
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	case AUDIT_COMPARE_UID_TO_SUID:
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		return audit_uid_comparator(cred->uid, f->op, cred->suid);
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	case AUDIT_COMPARE_UID_TO_FSUID:
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		return audit_uid_comparator(cred->uid, f->op, cred->fsuid);
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	/* auid comparisons */
	case AUDIT_COMPARE_AUID_TO_EUID:
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		return audit_uid_comparator(tsk->loginuid, f->op, cred->euid);
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	case AUDIT_COMPARE_AUID_TO_SUID:
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		return audit_uid_comparator(tsk->loginuid, f->op, cred->suid);
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	case AUDIT_COMPARE_AUID_TO_FSUID:
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		return audit_uid_comparator(tsk->loginuid, f->op, cred->fsuid);
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	/* euid comparisons */
	case AUDIT_COMPARE_EUID_TO_SUID:
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		return audit_uid_comparator(cred->euid, f->op, cred->suid);
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	case AUDIT_COMPARE_EUID_TO_FSUID:
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		return audit_uid_comparator(cred->euid, f->op, cred->fsuid);
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	/* suid comparisons */
	case AUDIT_COMPARE_SUID_TO_FSUID:
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		return audit_uid_comparator(cred->suid, f->op, cred->fsuid);
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	/* gid comparisons */
	case AUDIT_COMPARE_GID_TO_EGID:
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		return audit_gid_comparator(cred->gid, f->op, cred->egid);
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	case AUDIT_COMPARE_GID_TO_SGID:
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		return audit_gid_comparator(cred->gid, f->op, cred->sgid);
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	case AUDIT_COMPARE_GID_TO_FSGID:
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		return audit_gid_comparator(cred->gid, f->op, cred->fsgid);
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	/* egid comparisons */
	case AUDIT_COMPARE_EGID_TO_SGID:
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		return audit_gid_comparator(cred->egid, f->op, cred->sgid);
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	case AUDIT_COMPARE_EGID_TO_FSGID:
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		return audit_gid_comparator(cred->egid, f->op, cred->fsgid);
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	/* sgid comparison */
	case AUDIT_COMPARE_SGID_TO_FSGID:
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		return audit_gid_comparator(cred->sgid, f->op, cred->fsgid);
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	default:
		WARN(1, "Missing AUDIT_COMPARE define.  Report as a bug\n");
		return 0;
	}
	return 0;
}

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/* Determine if any context name data matches a rule's watch data */
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/* Compare a task_struct with an audit_rule.  Return 1 on match, 0
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 * otherwise.
 *
 * If task_creation is true, this is an explicit indication that we are
 * filtering a task rule at task creation time.  This and tsk == current are
 * the only situations where tsk->cred may be accessed without an rcu read lock.
 */
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static int audit_filter_rules(struct task_struct *tsk,
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			      struct audit_krule *rule,
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			      struct audit_context *ctx,
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			      struct audit_names *name,
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			      enum audit_state *state,
			      bool task_creation)
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{
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	const struct cred *cred;
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	int i, need_sid = 1;
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	u32 sid;

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	cred = rcu_dereference_check(tsk->cred, tsk == current || task_creation);

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	for (i = 0; i < rule->field_count; i++) {
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		struct audit_field *f = &rule->fields[i];
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		struct audit_names *n;
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		int result = 0;
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		pid_t pid;
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		switch (f->type) {
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		case AUDIT_PID:
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			pid = task_pid_nr(tsk);
			result = audit_comparator(pid, f->op, f->val);
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			break;
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		case AUDIT_PPID:
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			if (ctx) {
				if (!ctx->ppid)
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					ctx->ppid = task_ppid_nr(tsk);
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				result = audit_comparator(ctx->ppid, f->op, f->val);
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			}
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			break;
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		case AUDIT_EXE:
			result = audit_exe_compare(tsk, rule->exe);
			break;
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		case AUDIT_UID:
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			result = audit_uid_comparator(cred->uid, f->op, f->uid);
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			break;
		case AUDIT_EUID:
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			result = audit_uid_comparator(cred->euid, f->op, f->uid);
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			break;
		case AUDIT_SUID:
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			result = audit_uid_comparator(cred->suid, f->op, f->uid);
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			break;
		case AUDIT_FSUID:
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			result = audit_uid_comparator(cred->fsuid, f->op, f->uid);
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			break;
		case AUDIT_GID:
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			result = audit_gid_comparator(cred->gid, f->op, f->gid);
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			if (f->op == Audit_equal) {
				if (!result)
					result = in_group_p(f->gid);
			} else if (f->op == Audit_not_equal) {
				if (result)
					result = !in_group_p(f->gid);
			}
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			break;
		case AUDIT_EGID:
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			result = audit_gid_comparator(cred->egid, f->op, f->gid);
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			if (f->op == Audit_equal) {
				if (!result)
					result = in_egroup_p(f->gid);
			} else if (f->op == Audit_not_equal) {
				if (result)
					result = !in_egroup_p(f->gid);
			}
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			break;
		case AUDIT_SGID:
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			result = audit_gid_comparator(cred->sgid, f->op, f->gid);
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			break;
		case AUDIT_FSGID:
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			result = audit_gid_comparator(cred->fsgid, f->op, f->gid);
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			break;
		case AUDIT_PERS:
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			result = audit_comparator(tsk->personality, f->op, f->val);
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			break;
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		case AUDIT_ARCH:
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			if (ctx)
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				result = audit_comparator(ctx->arch, f->op, f->val);
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			break;
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		case AUDIT_EXIT:
			if (ctx && ctx->return_valid)
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				result = audit_comparator(ctx->return_code, f->op, f->val);
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			break;
		case AUDIT_SUCCESS:
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			if (ctx && ctx->return_valid) {
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				if (f->val)
					result = audit_comparator(ctx->return_valid, f->op, AUDITSC_SUCCESS);
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				else
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					result = audit_comparator(ctx->return_valid, f->op, AUDITSC_FAILURE);
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			}
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			break;
		case AUDIT_DEVMAJOR:
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			if (name) {
				if (audit_comparator(MAJOR(name->dev), f->op, f->val) ||
				    audit_comparator(MAJOR(name->rdev), f->op, f->val))
					++result;
			} else if (ctx) {
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				list_for_each_entry(n, &ctx->names_list, list) {
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					if (audit_comparator(MAJOR(n->dev), f->op, f->val) ||
					    audit_comparator(MAJOR(n->rdev), f->op, f->val)) {
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						++result;
						break;
					}
				}
			}
			break;
		case AUDIT_DEVMINOR:
545 546 547 548 549
			if (name) {
				if (audit_comparator(MINOR(name->dev), f->op, f->val) ||
				    audit_comparator(MINOR(name->rdev), f->op, f->val))
					++result;
			} else if (ctx) {
550
				list_for_each_entry(n, &ctx->names_list, list) {
551 552
					if (audit_comparator(MINOR(n->dev), f->op, f->val) ||
					    audit_comparator(MINOR(n->rdev), f->op, f->val)) {
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						++result;
						break;
					}
				}
			}
			break;
		case AUDIT_INODE:
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			if (name)
561
				result = audit_comparator(name->ino, f->op, f->val);
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			else if (ctx) {
563 564
				list_for_each_entry(n, &ctx->names_list, list) {
					if (audit_comparator(n->ino, f->op, f->val)) {
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						++result;
						break;
					}
				}
			}
			break;
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		case AUDIT_OBJ_UID:
			if (name) {
573
				result = audit_uid_comparator(name->uid, f->op, f->uid);
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			} else if (ctx) {
				list_for_each_entry(n, &ctx->names_list, list) {
576
					if (audit_uid_comparator(n->uid, f->op, f->uid)) {
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						++result;
						break;
					}
				}
			}
			break;
583 584
		case AUDIT_OBJ_GID:
			if (name) {
585
				result = audit_gid_comparator(name->gid, f->op, f->gid);
586 587
			} else if (ctx) {
				list_for_each_entry(n, &ctx->names_list, list) {
588
					if (audit_gid_comparator(n->gid, f->op, f->gid)) {
589 590 591 592 593 594
						++result;
						break;
					}
				}
			}
			break;
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		case AUDIT_WATCH:
596 597
			if (name)
				result = audit_watch_compare(rule->watch, name->ino, name->dev);
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			break;
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		case AUDIT_DIR:
			if (ctx)
				result = match_tree_refs(ctx, rule->tree);
			break;
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		case AUDIT_LOGINUID:
604
			result = audit_uid_comparator(tsk->loginuid, f->op, f->uid);
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			break;
606 607 608
		case AUDIT_LOGINUID_SET:
			result = audit_comparator(audit_loginuid_set(tsk), f->op, f->val);
			break;
609 610 611 612 613
		case AUDIT_SUBJ_USER:
		case AUDIT_SUBJ_ROLE:
		case AUDIT_SUBJ_TYPE:
		case AUDIT_SUBJ_SEN:
		case AUDIT_SUBJ_CLR:
614 615 616 617 618
			/* NOTE: this may return negative values indicating
			   a temporary error.  We simply treat this as a
			   match for now to avoid losing information that
			   may be wanted.   An error message will also be
			   logged upon error */
619
			if (f->lsm_rule) {
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				if (need_sid) {
621
					security_task_getsecid(tsk, &sid);
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					need_sid = 0;
				}
624
				result = security_audit_rule_match(sid, f->type,
625
				                                  f->op,
626
				                                  f->lsm_rule,
627
				                                  ctx);
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			}
629
			break;
630 631 632 633 634 635 636
		case AUDIT_OBJ_USER:
		case AUDIT_OBJ_ROLE:
		case AUDIT_OBJ_TYPE:
		case AUDIT_OBJ_LEV_LOW:
		case AUDIT_OBJ_LEV_HIGH:
			/* The above note for AUDIT_SUBJ_USER...AUDIT_SUBJ_CLR
			   also applies here */
637
			if (f->lsm_rule) {
638 639
				/* Find files that match */
				if (name) {
640
					result = security_audit_rule_match(
641
					           name->osid, f->type, f->op,
642
					           f->lsm_rule, ctx);
643
				} else if (ctx) {
644 645 646 647
					list_for_each_entry(n, &ctx->names_list, list) {
						if (security_audit_rule_match(n->osid, f->type,
									      f->op, f->lsm_rule,
									      ctx)) {
648 649 650 651 652 653
							++result;
							break;
						}
					}
				}
				/* Find ipc objects that match */
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				if (!ctx || ctx->type != AUDIT_IPC)
					break;
				if (security_audit_rule_match(ctx->ipc.osid,
							      f->type, f->op,
							      f->lsm_rule, ctx))
					++result;
660 661
			}
			break;
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		case AUDIT_ARG0:
		case AUDIT_ARG1:
		case AUDIT_ARG2:
		case AUDIT_ARG3:
			if (ctx)
667
				result = audit_comparator(ctx->argv[f->type-AUDIT_ARG0], f->op, f->val);
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			break;
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669 670 671 672
		case AUDIT_FILTERKEY:
			/* ignore this field for filtering */
			result = 1;
			break;
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		case AUDIT_PERM:
			result = audit_match_perm(ctx, f->val);
			break;
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		case AUDIT_FILETYPE:
			result = audit_match_filetype(ctx, f->val);
			break;
679 680 681
		case AUDIT_FIELD_COMPARE:
			result = audit_field_compare(tsk, cred, f, ctx, name);
			break;
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		}
683
		if (!result)
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			return 0;
	}
686 687 688 689 690 691 692 693 694 695

	if (ctx) {
		if (rule->prio <= ctx->prio)
			return 0;
		if (rule->filterkey) {
			kfree(ctx->filterkey);
			ctx->filterkey = kstrdup(rule->filterkey, GFP_ATOMIC);
		}
		ctx->prio = rule->prio;
	}
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	switch (rule->action) {
	case AUDIT_NEVER:    *state = AUDIT_DISABLED;	    break;
	case AUDIT_ALWAYS:   *state = AUDIT_RECORD_CONTEXT; break;
	}
	return 1;
}

/* At process creation time, we can determine if system-call auditing is
 * completely disabled for this task.  Since we only have the task
 * structure at this point, we can only check uid and gid.
 */
707
static enum audit_state audit_filter_task(struct task_struct *tsk, char **key)
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{
	struct audit_entry *e;
	enum audit_state   state;

	rcu_read_lock();
713
	list_for_each_entry_rcu(e, &audit_filter_list[AUDIT_FILTER_TASK], list) {
714 715
		if (audit_filter_rules(tsk, &e->rule, NULL, NULL,
				       &state, true)) {
716 717
			if (state == AUDIT_RECORD_CONTEXT)
				*key = kstrdup(e->rule.filterkey, GFP_ATOMIC);
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			rcu_read_unlock();
			return state;
		}
	}
	rcu_read_unlock();
	return AUDIT_BUILD_CONTEXT;
}

726 727 728 729 730 731 732 733 734 735 736 737 738 739 740 741
static int audit_in_mask(const struct audit_krule *rule, unsigned long val)
{
	int word, bit;

	if (val > 0xffffffff)
		return false;

	word = AUDIT_WORD(val);
	if (word >= AUDIT_BITMASK_SIZE)
		return false;

	bit = AUDIT_BIT(val);

	return rule->mask[word] & bit;
}

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/* At syscall entry and exit time, this filter is called if the
 * audit_state is not low enough that auditing cannot take place, but is
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Steve Grubb 已提交
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 * also not high enough that we already know we have to write an audit
745
 * record (i.e., the state is AUDIT_SETUP_CONTEXT or AUDIT_BUILD_CONTEXT).
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 */
static enum audit_state audit_filter_syscall(struct task_struct *tsk,
					     struct audit_context *ctx,
					     struct list_head *list)
{
	struct audit_entry *e;
752
	enum audit_state state;
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754
	if (audit_pid && tsk->tgid == audit_pid)
755 756
		return AUDIT_DISABLED;

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	rcu_read_lock();
758
	if (!list_empty(list)) {
759
		list_for_each_entry_rcu(e, list, list) {
760
			if (audit_in_mask(&e->rule, ctx->major) &&
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			    audit_filter_rules(tsk, &e->rule, ctx, NULL,
762
					       &state, false)) {
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				rcu_read_unlock();
764
				ctx->current_state = state;
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				return state;
			}
		}
	}
	rcu_read_unlock();
	return AUDIT_BUILD_CONTEXT;
}

773 774 775 776 777 778 779 780 781 782 783 784 785 786 787 788
/*
 * Given an audit_name check the inode hash table to see if they match.
 * Called holding the rcu read lock to protect the use of audit_inode_hash
 */
static int audit_filter_inode_name(struct task_struct *tsk,
				   struct audit_names *n,
				   struct audit_context *ctx) {
	int h = audit_hash_ino((u32)n->ino);
	struct list_head *list = &audit_inode_hash[h];
	struct audit_entry *e;
	enum audit_state state;

	if (list_empty(list))
		return 0;

	list_for_each_entry_rcu(e, list, list) {
789
		if (audit_in_mask(&e->rule, ctx->major) &&
790 791 792 793 794 795 796 797 798 799
		    audit_filter_rules(tsk, &e->rule, ctx, n, &state, false)) {
			ctx->current_state = state;
			return 1;
		}
	}

	return 0;
}

/* At syscall exit time, this filter is called if any audit_names have been
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 * collected during syscall processing.  We only check rules in sublists at hash
801
 * buckets applicable to the inode numbers in audit_names.
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 * Regarding audit_state, same rules apply as for audit_filter_syscall().
 */
804
void audit_filter_inodes(struct task_struct *tsk, struct audit_context *ctx)
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{
806
	struct audit_names *n;
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	if (audit_pid && tsk->tgid == audit_pid)
809
		return;
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	rcu_read_lock();

813 814 815
	list_for_each_entry(n, &ctx->names_list, list) {
		if (audit_filter_inode_name(tsk, n, ctx))
			break;
816 817 818 819
	}
	rcu_read_unlock();
}

820 821
/* Transfer the audit context pointer to the caller, clearing it in the tsk's struct */
static inline struct audit_context *audit_take_context(struct task_struct *tsk,
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						      int return_valid,
823
						      long return_code)
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824 825 826
{
	struct audit_context *context = tsk->audit_context;

827
	if (!context)
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		return NULL;
	context->return_valid = return_valid;
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	/*
	 * we need to fix up the return code in the audit logs if the actual
	 * return codes are later going to be fixed up by the arch specific
	 * signal handlers
	 *
	 * This is actually a test for:
	 * (rc == ERESTARTSYS ) || (rc == ERESTARTNOINTR) ||
	 * (rc == ERESTARTNOHAND) || (rc == ERESTART_RESTARTBLOCK)
	 *
	 * but is faster than a bunch of ||
	 */
	if (unlikely(return_code <= -ERESTARTSYS) &&
	    (return_code >= -ERESTART_RESTARTBLOCK) &&
	    (return_code != -ENOIOCTLCMD))
		context->return_code = -EINTR;
	else
		context->return_code  = return_code;
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849 850 851
	if (context->in_syscall && !context->dummy) {
		audit_filter_syscall(tsk, context, &audit_filter_list[AUDIT_FILTER_EXIT]);
		audit_filter_inodes(tsk, context);
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	}

	tsk->audit_context = NULL;
	return context;
}

858 859 860 861 862 863 864
static inline void audit_proctitle_free(struct audit_context *context)
{
	kfree(context->proctitle.value);
	context->proctitle.value = NULL;
	context->proctitle.len = 0;
}

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static inline void audit_free_names(struct audit_context *context)
{
867
	struct audit_names *n, *next;
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868

869 870
	list_for_each_entry_safe(n, next, &context->names_list, list) {
		list_del(&n->list);
871 872
		if (n->name)
			putname(n->name);
873 874
		if (n->should_free)
			kfree(n);
875
	}
L
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	context->name_count = 0;
877 878 879
	path_put(&context->pwd);
	context->pwd.dentry = NULL;
	context->pwd.mnt = NULL;
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}

static inline void audit_free_aux(struct audit_context *context)
{
	struct audit_aux_data *aux;

	while ((aux = context->aux)) {
		context->aux = aux->next;
		kfree(aux);
	}
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	while ((aux = context->aux_pids)) {
		context->aux_pids = aux->next;
		kfree(aux);
	}
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894 895 896 897 898 899
}

static inline struct audit_context *audit_alloc_context(enum audit_state state)
{
	struct audit_context *context;

900 901
	context = kzalloc(sizeof(*context), GFP_KERNEL);
	if (!context)
L
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902
		return NULL;
903 904
	context->state = state;
	context->prio = state == AUDIT_RECORD_CONTEXT ? ~0ULL : 0;
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Al Viro 已提交
905
	INIT_LIST_HEAD(&context->killed_trees);
906
	INIT_LIST_HEAD(&context->names_list);
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907 908 909
	return context;
}

910 911 912 913 914
/**
 * audit_alloc - allocate an audit context block for a task
 * @tsk: task
 *
 * Filter on the task information and allocate a per-task audit context
L
Linus Torvalds 已提交
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 * if necessary.  Doing so turns on system call auditing for the
 * specified task.  This is called from copy_process, so no lock is
917 918
 * needed.
 */
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919 920 921 922
int audit_alloc(struct task_struct *tsk)
{
	struct audit_context *context;
	enum audit_state     state;
923
	char *key = NULL;
L
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924

925
	if (likely(!audit_ever_enabled))
L
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926 927
		return 0; /* Return if not auditing. */

928
	state = audit_filter_task(tsk, &key);
929 930
	if (state == AUDIT_DISABLED) {
		clear_tsk_thread_flag(tsk, TIF_SYSCALL_AUDIT);
L
Linus Torvalds 已提交
931
		return 0;
932
	}
L
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933 934

	if (!(context = audit_alloc_context(state))) {
935
		kfree(key);
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936 937 938
		audit_log_lost("out of memory in audit_alloc");
		return -ENOMEM;
	}
939
	context->filterkey = key;
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940 941 942 943 944 945 946 947

	tsk->audit_context  = context;
	set_tsk_thread_flag(tsk, TIF_SYSCALL_AUDIT);
	return 0;
}

static inline void audit_free_context(struct audit_context *context)
{
A
Al Viro 已提交
948 949 950 951 952 953
	audit_free_names(context);
	unroll_tree_refs(context, NULL, 0);
	free_tree_refs(context);
	audit_free_aux(context);
	kfree(context->filterkey);
	kfree(context->sockaddr);
954
	audit_proctitle_free(context);
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955
	kfree(context);
L
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956 957
}

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958
static int audit_log_pid_context(struct audit_context *context, pid_t pid,
959
				 kuid_t auid, kuid_t uid, unsigned int sessionid,
960
				 u32 sid, char *comm)
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961 962
{
	struct audit_buffer *ab;
963
	char *ctx = NULL;
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964 965 966 967 968
	u32 len;
	int rc = 0;

	ab = audit_log_start(context, GFP_KERNEL, AUDIT_OBJ_PID);
	if (!ab)
969
		return rc;
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Amy Griffis 已提交
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971 972
	audit_log_format(ab, "opid=%d oauid=%d ouid=%d oses=%d", pid,
			 from_kuid(&init_user_ns, auid),
973
			 from_kuid(&init_user_ns, uid), sessionid);
974 975 976 977 978 979 980 981
	if (sid) {
		if (security_secid_to_secctx(sid, &ctx, &len)) {
			audit_log_format(ab, " obj=(none)");
			rc = 1;
		} else {
			audit_log_format(ab, " obj=%s", ctx);
			security_release_secctx(ctx, len);
		}
982
	}
983 984
	audit_log_format(ab, " ocomm=");
	audit_log_untrustedstring(ab, comm);
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	audit_log_end(ab);

	return rc;
}

990 991 992
/*
 * to_send and len_sent accounting are very loose estimates.  We aren't
 * really worried about a hard cap to MAX_EXECVE_AUDIT_LEN so much as being
L
Lucas De Marchi 已提交
993
 * within about 500 bytes (next page boundary)
994 995 996 997 998 999 1000 1001 1002 1003 1004 1005 1006
 *
 * why snprintf?  an int is up to 12 digits long.  if we just assumed when
 * logging that a[%d]= was going to be 16 characters long we would be wasting
 * space in every audit message.  In one 7500 byte message we can log up to
 * about 1000 min size arguments.  That comes down to about 50% waste of space
 * if we didn't do the snprintf to find out how long arg_num_len was.
 */
static int audit_log_single_execve_arg(struct audit_context *context,
					struct audit_buffer **ab,
					int arg_num,
					size_t *len_sent,
					const char __user *p,
					char *buf)
P
Peter Zijlstra 已提交
1007
{
1008 1009
	char arg_num_len_buf[12];
	const char __user *tmp_p = p;
1010 1011
	/* how many digits are in arg_num? 5 is the length of ' a=""' */
	size_t arg_num_len = snprintf(arg_num_len_buf, 12, "%d", arg_num) + 5;
1012 1013 1014 1015 1016 1017 1018
	size_t len, len_left, to_send;
	size_t max_execve_audit_len = MAX_EXECVE_AUDIT_LEN;
	unsigned int i, has_cntl = 0, too_long = 0;
	int ret;

	/* strnlen_user includes the null we don't want to send */
	len_left = len = strnlen_user(p, MAX_ARG_STRLEN) - 1;
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Peter Zijlstra 已提交
1019

1020 1021 1022 1023 1024 1025
	/*
	 * We just created this mm, if we can't find the strings
	 * we just copied into it something is _very_ wrong. Similar
	 * for strings that are too long, we should not have created
	 * any.
	 */
1026
	if (WARN_ON_ONCE(len < 0 || len > MAX_ARG_STRLEN - 1)) {
1027
		send_sig(SIGKILL, current, 0);
1028
		return -1;
1029
	}
1030

1031 1032 1033 1034 1035 1036 1037
	/* walk the whole argument looking for non-ascii chars */
	do {
		if (len_left > MAX_EXECVE_AUDIT_LEN)
			to_send = MAX_EXECVE_AUDIT_LEN;
		else
			to_send = len_left;
		ret = copy_from_user(buf, tmp_p, to_send);
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Peter Zijlstra 已提交
1038
		/*
1039 1040 1041
		 * There is no reason for this copy to be short. We just
		 * copied them here, and the mm hasn't been exposed to user-
		 * space yet.
P
Peter Zijlstra 已提交
1042
		 */
1043
		if (ret) {
P
Peter Zijlstra 已提交
1044 1045
			WARN_ON(1);
			send_sig(SIGKILL, current, 0);
1046
			return -1;
P
Peter Zijlstra 已提交
1047
		}
1048 1049 1050 1051 1052 1053 1054 1055
		buf[to_send] = '\0';
		has_cntl = audit_string_contains_control(buf, to_send);
		if (has_cntl) {
			/*
			 * hex messages get logged as 2 bytes, so we can only
			 * send half as much in each message
			 */
			max_execve_audit_len = MAX_EXECVE_AUDIT_LEN / 2;
P
Peter Zijlstra 已提交
1056 1057
			break;
		}
1058 1059 1060 1061 1062 1063 1064 1065 1066 1067 1068 1069 1070 1071 1072 1073 1074 1075 1076 1077 1078 1079 1080 1081 1082 1083 1084 1085 1086 1087 1088
		len_left -= to_send;
		tmp_p += to_send;
	} while (len_left > 0);

	len_left = len;

	if (len > max_execve_audit_len)
		too_long = 1;

	/* rewalk the argument actually logging the message */
	for (i = 0; len_left > 0; i++) {
		int room_left;

		if (len_left > max_execve_audit_len)
			to_send = max_execve_audit_len;
		else
			to_send = len_left;

		/* do we have space left to send this argument in this ab? */
		room_left = MAX_EXECVE_AUDIT_LEN - arg_num_len - *len_sent;
		if (has_cntl)
			room_left -= (to_send * 2);
		else
			room_left -= to_send;
		if (room_left < 0) {
			*len_sent = 0;
			audit_log_end(*ab);
			*ab = audit_log_start(context, GFP_KERNEL, AUDIT_EXECVE);
			if (!*ab)
				return 0;
		}
P
Peter Zijlstra 已提交
1089 1090

		/*
1091 1092 1093 1094
		 * first record needs to say how long the original string was
		 * so we can be sure nothing was lost.
		 */
		if ((i == 0) && (too_long))
1095
			audit_log_format(*ab, " a%d_len=%zu", arg_num,
1096 1097 1098 1099 1100 1101
					 has_cntl ? 2*len : len);

		/*
		 * normally arguments are small enough to fit and we already
		 * filled buf above when we checked for control characters
		 * so don't bother with another copy_from_user
P
Peter Zijlstra 已提交
1102
		 */
1103 1104 1105 1106
		if (len >= max_execve_audit_len)
			ret = copy_from_user(buf, p, to_send);
		else
			ret = 0;
1107
		if (ret) {
P
Peter Zijlstra 已提交
1108 1109
			WARN_ON(1);
			send_sig(SIGKILL, current, 0);
1110
			return -1;
P
Peter Zijlstra 已提交
1111
		}
1112 1113 1114
		buf[to_send] = '\0';

		/* actually log it */
1115
		audit_log_format(*ab, " a%d", arg_num);
1116 1117 1118 1119
		if (too_long)
			audit_log_format(*ab, "[%d]", i);
		audit_log_format(*ab, "=");
		if (has_cntl)
1120
			audit_log_n_hex(*ab, buf, to_send);
1121
		else
1122
			audit_log_string(*ab, buf);
1123 1124 1125 1126 1127 1128 1129 1130 1131 1132 1133 1134 1135 1136

		p += to_send;
		len_left -= to_send;
		*len_sent += arg_num_len;
		if (has_cntl)
			*len_sent += to_send * 2;
		else
			*len_sent += to_send;
	}
	/* include the null we didn't log */
	return len + 1;
}

static void audit_log_execve_info(struct audit_context *context,
1137
				  struct audit_buffer **ab)
1138
{
1139 1140
	int i, len;
	size_t len_sent = 0;
1141 1142
	const char __user *p;
	char *buf;
P
Peter Zijlstra 已提交
1143

1144
	p = (const char __user *)current->mm->arg_start;
P
Peter Zijlstra 已提交
1145

1146
	audit_log_format(*ab, "argc=%d", context->execve.argc);
1147 1148 1149 1150 1151 1152 1153 1154 1155

	/*
	 * we need some kernel buffer to hold the userspace args.  Just
	 * allocate one big one rather than allocating one of the right size
	 * for every single argument inside audit_log_single_execve_arg()
	 * should be <8k allocation so should be pretty safe.
	 */
	buf = kmalloc(MAX_EXECVE_AUDIT_LEN + 1, GFP_KERNEL);
	if (!buf) {
1156
		audit_panic("out of memory for argv string");
1157
		return;
P
Peter Zijlstra 已提交
1158
	}
1159

1160
	for (i = 0; i < context->execve.argc; i++) {
1161 1162 1163 1164 1165 1166 1167
		len = audit_log_single_execve_arg(context, ab, i,
						  &len_sent, p, buf);
		if (len <= 0)
			break;
		p += len;
	}
	kfree(buf);
P
Peter Zijlstra 已提交
1168 1169
}

A
Al Viro 已提交
1170
static void show_special(struct audit_context *context, int *call_panic)
A
Al Viro 已提交
1171 1172 1173 1174 1175 1176 1177 1178 1179 1180 1181 1182 1183 1184 1185 1186
{
	struct audit_buffer *ab;
	int i;

	ab = audit_log_start(context, GFP_KERNEL, context->type);
	if (!ab)
		return;

	switch (context->type) {
	case AUDIT_SOCKETCALL: {
		int nargs = context->socketcall.nargs;
		audit_log_format(ab, "nargs=%d", nargs);
		for (i = 0; i < nargs; i++)
			audit_log_format(ab, " a%d=%lx", i,
				context->socketcall.args[i]);
		break; }
A
Al Viro 已提交
1187 1188 1189
	case AUDIT_IPC: {
		u32 osid = context->ipc.osid;

A
Al Viro 已提交
1190
		audit_log_format(ab, "ouid=%u ogid=%u mode=%#ho",
1191 1192 1193
				 from_kuid(&init_user_ns, context->ipc.uid),
				 from_kgid(&init_user_ns, context->ipc.gid),
				 context->ipc.mode);
A
Al Viro 已提交
1194 1195 1196 1197 1198 1199 1200 1201 1202 1203 1204
		if (osid) {
			char *ctx = NULL;
			u32 len;
			if (security_secid_to_secctx(osid, &ctx, &len)) {
				audit_log_format(ab, " osid=%u", osid);
				*call_panic = 1;
			} else {
				audit_log_format(ab, " obj=%s", ctx);
				security_release_secctx(ctx, len);
			}
		}
A
Al Viro 已提交
1205 1206 1207 1208
		if (context->ipc.has_perm) {
			audit_log_end(ab);
			ab = audit_log_start(context, GFP_KERNEL,
					     AUDIT_IPC_SET_PERM);
1209 1210
			if (unlikely(!ab))
				return;
A
Al Viro 已提交
1211
			audit_log_format(ab,
A
Al Viro 已提交
1212
				"qbytes=%lx ouid=%u ogid=%u mode=%#ho",
A
Al Viro 已提交
1213 1214 1215 1216 1217
				context->ipc.qbytes,
				context->ipc.perm_uid,
				context->ipc.perm_gid,
				context->ipc.perm_mode);
		}
A
Al Viro 已提交
1218
		break; }
A
Al Viro 已提交
1219 1220
	case AUDIT_MQ_OPEN: {
		audit_log_format(ab,
A
Al Viro 已提交
1221
			"oflag=0x%x mode=%#ho mq_flags=0x%lx mq_maxmsg=%ld "
A
Al Viro 已提交
1222 1223 1224 1225 1226 1227 1228
			"mq_msgsize=%ld mq_curmsgs=%ld",
			context->mq_open.oflag, context->mq_open.mode,
			context->mq_open.attr.mq_flags,
			context->mq_open.attr.mq_maxmsg,
			context->mq_open.attr.mq_msgsize,
			context->mq_open.attr.mq_curmsgs);
		break; }
A
Al Viro 已提交
1229 1230 1231 1232 1233 1234 1235 1236 1237 1238
	case AUDIT_MQ_SENDRECV: {
		audit_log_format(ab,
			"mqdes=%d msg_len=%zd msg_prio=%u "
			"abs_timeout_sec=%ld abs_timeout_nsec=%ld",
			context->mq_sendrecv.mqdes,
			context->mq_sendrecv.msg_len,
			context->mq_sendrecv.msg_prio,
			context->mq_sendrecv.abs_timeout.tv_sec,
			context->mq_sendrecv.abs_timeout.tv_nsec);
		break; }
A
Al Viro 已提交
1239 1240 1241 1242 1243
	case AUDIT_MQ_NOTIFY: {
		audit_log_format(ab, "mqdes=%d sigev_signo=%d",
				context->mq_notify.mqdes,
				context->mq_notify.sigev_signo);
		break; }
A
Al Viro 已提交
1244 1245 1246 1247 1248 1249 1250 1251 1252
	case AUDIT_MQ_GETSETATTR: {
		struct mq_attr *attr = &context->mq_getsetattr.mqstat;
		audit_log_format(ab,
			"mqdes=%d mq_flags=0x%lx mq_maxmsg=%ld mq_msgsize=%ld "
			"mq_curmsgs=%ld ",
			context->mq_getsetattr.mqdes,
			attr->mq_flags, attr->mq_maxmsg,
			attr->mq_msgsize, attr->mq_curmsgs);
		break; }
A
Al Viro 已提交
1253 1254 1255 1256 1257 1258
	case AUDIT_CAPSET: {
		audit_log_format(ab, "pid=%d", context->capset.pid);
		audit_log_cap(ab, "cap_pi", &context->capset.cap.inheritable);
		audit_log_cap(ab, "cap_pp", &context->capset.cap.permitted);
		audit_log_cap(ab, "cap_pe", &context->capset.cap.effective);
		break; }
A
Al Viro 已提交
1259 1260 1261 1262
	case AUDIT_MMAP: {
		audit_log_format(ab, "fd=%d flags=0x%x", context->mmap.fd,
				 context->mmap.flags);
		break; }
1263 1264 1265
	case AUDIT_EXECVE: {
		audit_log_execve_info(context, &ab);
		break; }
A
Al Viro 已提交
1266 1267 1268 1269
	}
	audit_log_end(ab);
}

1270 1271 1272 1273 1274 1275 1276 1277 1278 1279 1280 1281 1282 1283 1284 1285 1286 1287 1288 1289 1290 1291 1292 1293 1294 1295 1296 1297 1298 1299 1300 1301 1302 1303 1304 1305 1306 1307 1308 1309 1310 1311 1312 1313 1314 1315 1316 1317 1318 1319 1320 1321 1322
static inline int audit_proctitle_rtrim(char *proctitle, int len)
{
	char *end = proctitle + len - 1;
	while (end > proctitle && !isprint(*end))
		end--;

	/* catch the case where proctitle is only 1 non-print character */
	len = end - proctitle + 1;
	len -= isprint(proctitle[len-1]) == 0;
	return len;
}

static void audit_log_proctitle(struct task_struct *tsk,
			 struct audit_context *context)
{
	int res;
	char *buf;
	char *msg = "(null)";
	int len = strlen(msg);
	struct audit_buffer *ab;

	ab = audit_log_start(context, GFP_KERNEL, AUDIT_PROCTITLE);
	if (!ab)
		return;	/* audit_panic or being filtered */

	audit_log_format(ab, "proctitle=");

	/* Not  cached */
	if (!context->proctitle.value) {
		buf = kmalloc(MAX_PROCTITLE_AUDIT_LEN, GFP_KERNEL);
		if (!buf)
			goto out;
		/* Historically called this from procfs naming */
		res = get_cmdline(tsk, buf, MAX_PROCTITLE_AUDIT_LEN);
		if (res == 0) {
			kfree(buf);
			goto out;
		}
		res = audit_proctitle_rtrim(buf, res);
		if (res == 0) {
			kfree(buf);
			goto out;
		}
		context->proctitle.value = buf;
		context->proctitle.len = res;
	}
	msg = context->proctitle.value;
	len = context->proctitle.len;
out:
	audit_log_n_untrustedstring(ab, msg, len);
	audit_log_end(ab);
}

1323
static void audit_log_exit(struct audit_context *context, struct task_struct *tsk)
L
Linus Torvalds 已提交
1324
{
S
Steve Grubb 已提交
1325
	int i, call_panic = 0;
L
Linus Torvalds 已提交
1326
	struct audit_buffer *ab;
1327
	struct audit_aux_data *aux;
1328
	struct audit_names *n;
L
Linus Torvalds 已提交
1329

1330
	/* tsk == current */
1331
	context->personality = tsk->personality;
1332 1333

	ab = audit_log_start(context, GFP_KERNEL, AUDIT_SYSCALL);
L
Linus Torvalds 已提交
1334 1335
	if (!ab)
		return;		/* audit_panic has been called */
1336 1337
	audit_log_format(ab, "arch=%x syscall=%d",
			 context->arch, context->major);
L
Linus Torvalds 已提交
1338 1339 1340
	if (context->personality != PER_LINUX)
		audit_log_format(ab, " per=%lx", context->personality);
	if (context->return_valid)
D
Daniel Walker 已提交
1341
		audit_log_format(ab, " success=%s exit=%ld",
1342 1343
				 (context->return_valid==AUDITSC_SUCCESS)?"yes":"no",
				 context->return_code);
A
Alan Cox 已提交
1344

L
Linus Torvalds 已提交
1345
	audit_log_format(ab,
P
Peter Moody 已提交
1346 1347 1348 1349 1350 1351
			 " a0=%lx a1=%lx a2=%lx a3=%lx items=%d",
			 context->argv[0],
			 context->argv[1],
			 context->argv[2],
			 context->argv[3],
			 context->name_count);
A
Alan Cox 已提交
1352

1353
	audit_log_task_info(ab, tsk);
1354
	audit_log_key(ab, context->filterkey);
L
Linus Torvalds 已提交
1355 1356
	audit_log_end(ab);

1357
	for (aux = context->aux; aux; aux = aux->next) {
1358

1359
		ab = audit_log_start(context, GFP_KERNEL, aux->type);
L
Linus Torvalds 已提交
1360 1361 1362 1363
		if (!ab)
			continue; /* audit_panic has been called */

		switch (aux->type) {
1364

1365 1366 1367 1368 1369 1370 1371 1372 1373 1374 1375 1376 1377 1378
		case AUDIT_BPRM_FCAPS: {
			struct audit_aux_data_bprm_fcaps *axs = (void *)aux;
			audit_log_format(ab, "fver=%x", axs->fcap_ver);
			audit_log_cap(ab, "fp", &axs->fcap.permitted);
			audit_log_cap(ab, "fi", &axs->fcap.inheritable);
			audit_log_format(ab, " fe=%d", axs->fcap.fE);
			audit_log_cap(ab, "old_pp", &axs->old_pcap.permitted);
			audit_log_cap(ab, "old_pi", &axs->old_pcap.inheritable);
			audit_log_cap(ab, "old_pe", &axs->old_pcap.effective);
			audit_log_cap(ab, "new_pp", &axs->new_pcap.permitted);
			audit_log_cap(ab, "new_pi", &axs->new_pcap.inheritable);
			audit_log_cap(ab, "new_pe", &axs->new_pcap.effective);
			break; }

L
Linus Torvalds 已提交
1379 1380 1381 1382
		}
		audit_log_end(ab);
	}

A
Al Viro 已提交
1383
	if (context->type)
A
Al Viro 已提交
1384
		show_special(context, &call_panic);
A
Al Viro 已提交
1385

A
Al Viro 已提交
1386 1387 1388 1389 1390 1391 1392 1393 1394
	if (context->fds[0] >= 0) {
		ab = audit_log_start(context, GFP_KERNEL, AUDIT_FD_PAIR);
		if (ab) {
			audit_log_format(ab, "fd0=%d fd1=%d",
					context->fds[0], context->fds[1]);
			audit_log_end(ab);
		}
	}

1395 1396 1397 1398 1399 1400 1401 1402 1403 1404
	if (context->sockaddr_len) {
		ab = audit_log_start(context, GFP_KERNEL, AUDIT_SOCKADDR);
		if (ab) {
			audit_log_format(ab, "saddr=");
			audit_log_n_hex(ab, (void *)context->sockaddr,
					context->sockaddr_len);
			audit_log_end(ab);
		}
	}

A
Amy Griffis 已提交
1405 1406 1407 1408 1409
	for (aux = context->aux_pids; aux; aux = aux->next) {
		struct audit_aux_data_pids *axs = (void *)aux;

		for (i = 0; i < axs->pid_count; i++)
			if (audit_log_pid_context(context, axs->target_pid[i],
1410 1411
						  axs->target_auid[i],
						  axs->target_uid[i],
1412
						  axs->target_sessionid[i],
1413 1414
						  axs->target_sid[i],
						  axs->target_comm[i]))
A
Amy Griffis 已提交
1415
				call_panic = 1;
A
Al Viro 已提交
1416 1417
	}

A
Amy Griffis 已提交
1418 1419
	if (context->target_pid &&
	    audit_log_pid_context(context, context->target_pid,
1420
				  context->target_auid, context->target_uid,
1421
				  context->target_sessionid,
1422
				  context->target_sid, context->target_comm))
A
Amy Griffis 已提交
1423 1424
			call_panic = 1;

1425
	if (context->pwd.dentry && context->pwd.mnt) {
1426
		ab = audit_log_start(context, GFP_KERNEL, AUDIT_CWD);
1427
		if (ab) {
1428
			audit_log_d_path(ab, " cwd=", &context->pwd);
1429 1430 1431
			audit_log_end(ab);
		}
	}
1432

1433
	i = 0;
1434 1435 1436
	list_for_each_entry(n, &context->names_list, list) {
		if (n->hidden)
			continue;
1437
		audit_log_name(context, n, NULL, i++, &call_panic);
1438
	}
E
Eric Paris 已提交
1439

1440 1441
	audit_log_proctitle(tsk, context);

E
Eric Paris 已提交
1442 1443 1444 1445
	/* Send end of event record to help user space know we are finished */
	ab = audit_log_start(context, GFP_KERNEL, AUDIT_EOE);
	if (ab)
		audit_log_end(ab);
S
Steve Grubb 已提交
1446 1447
	if (call_panic)
		audit_panic("error converting sid to string");
L
Linus Torvalds 已提交
1448 1449
}

1450 1451 1452 1453
/**
 * audit_free - free a per-task audit context
 * @tsk: task whose audit context block to free
 *
1454
 * Called from copy_process and do_exit
1455
 */
1456
void __audit_free(struct task_struct *tsk)
L
Linus Torvalds 已提交
1457 1458 1459
{
	struct audit_context *context;

1460
	context = audit_take_context(tsk, 0, 0);
1461
	if (!context)
L
Linus Torvalds 已提交
1462 1463 1464
		return;

	/* Check for system calls that do not go through the exit
D
Daniel Walker 已提交
1465 1466
	 * function (e.g., exit_group), then free context block.
	 * We use GFP_ATOMIC here because we might be doing this
1467
	 * in the context of the idle thread */
1468
	/* that can happen only if we are called from do_exit() */
1469
	if (context->in_syscall && context->current_state == AUDIT_RECORD_CONTEXT)
1470
		audit_log_exit(context, tsk);
A
Al Viro 已提交
1471 1472
	if (!list_empty(&context->killed_trees))
		audit_kill_trees(&context->killed_trees);
L
Linus Torvalds 已提交
1473 1474 1475 1476

	audit_free_context(context);
}

1477 1478 1479 1480 1481 1482 1483 1484 1485
/**
 * audit_syscall_entry - fill in an audit record at syscall entry
 * @major: major syscall type (function)
 * @a1: additional syscall register 1
 * @a2: additional syscall register 2
 * @a3: additional syscall register 3
 * @a4: additional syscall register 4
 *
 * Fill in audit context at syscall entry.  This only happens if the
L
Linus Torvalds 已提交
1486 1487 1488 1489 1490
 * audit context was created when the task was created and the state or
 * filters demand the audit context be built.  If the state from the
 * per-task filter or from the per-syscall filter is AUDIT_RECORD_CONTEXT,
 * then the record will be written at syscall exit time (otherwise, it
 * will only be written if another part of the kernel requests that it
1491 1492
 * be written).
 */
1493 1494
void __audit_syscall_entry(int major, unsigned long a1, unsigned long a2,
			   unsigned long a3, unsigned long a4)
L
Linus Torvalds 已提交
1495
{
1496
	struct task_struct *tsk = current;
L
Linus Torvalds 已提交
1497 1498 1499
	struct audit_context *context = tsk->audit_context;
	enum audit_state     state;

1500
	if (!context)
R
Roland McGrath 已提交
1501
		return;
L
Linus Torvalds 已提交
1502 1503 1504 1505 1506 1507

	BUG_ON(context->in_syscall || context->name_count);

	if (!audit_enabled)
		return;

1508
	context->arch	    = syscall_get_arch();
L
Linus Torvalds 已提交
1509 1510 1511 1512 1513 1514 1515
	context->major      = major;
	context->argv[0]    = a1;
	context->argv[1]    = a2;
	context->argv[2]    = a3;
	context->argv[3]    = a4;

	state = context->state;
1516
	context->dummy = !audit_n_rules;
1517 1518
	if (!context->dummy && state == AUDIT_BUILD_CONTEXT) {
		context->prio = 0;
1519
		state = audit_filter_syscall(tsk, context, &audit_filter_list[AUDIT_FILTER_ENTRY]);
1520
	}
1521
	if (state == AUDIT_DISABLED)
L
Linus Torvalds 已提交
1522 1523
		return;

1524
	context->serial     = 0;
L
Linus Torvalds 已提交
1525 1526
	context->ctime      = CURRENT_TIME;
	context->in_syscall = 1;
1527
	context->current_state  = state;
A
Alexander Viro 已提交
1528
	context->ppid       = 0;
L
Linus Torvalds 已提交
1529 1530
}

1531 1532
/**
 * audit_syscall_exit - deallocate audit context after a system call
1533 1534
 * @success: success value of the syscall
 * @return_code: return value of the syscall
1535 1536
 *
 * Tear down after system call.  If the audit context has been marked as
L
Linus Torvalds 已提交
1537
 * auditable (either because of the AUDIT_RECORD_CONTEXT state from
1538
 * filtering, or because some other part of the kernel wrote an audit
L
Linus Torvalds 已提交
1539
 * message), then write out the syscall information.  In call cases,
1540 1541
 * free the names stored from getname().
 */
1542
void __audit_syscall_exit(int success, long return_code)
L
Linus Torvalds 已提交
1543
{
1544
	struct task_struct *tsk = current;
L
Linus Torvalds 已提交
1545 1546
	struct audit_context *context;

1547 1548 1549 1550
	if (success)
		success = AUDITSC_SUCCESS;
	else
		success = AUDITSC_FAILURE;
L
Linus Torvalds 已提交
1551

1552
	context = audit_take_context(tsk, success, return_code);
1553
	if (!context)
1554
		return;
L
Linus Torvalds 已提交
1555

1556
	if (context->in_syscall && context->current_state == AUDIT_RECORD_CONTEXT)
1557
		audit_log_exit(context, tsk);
L
Linus Torvalds 已提交
1558 1559

	context->in_syscall = 0;
1560
	context->prio = context->state == AUDIT_RECORD_CONTEXT ? ~0ULL : 0;
1561

A
Al Viro 已提交
1562 1563 1564
	if (!list_empty(&context->killed_trees))
		audit_kill_trees(&context->killed_trees);

A
Al Viro 已提交
1565 1566 1567 1568 1569 1570 1571 1572 1573 1574 1575 1576 1577
	audit_free_names(context);
	unroll_tree_refs(context, NULL, 0);
	audit_free_aux(context);
	context->aux = NULL;
	context->aux_pids = NULL;
	context->target_pid = 0;
	context->target_sid = 0;
	context->sockaddr_len = 0;
	context->type = 0;
	context->fds[0] = -1;
	if (context->state != AUDIT_RECORD_CONTEXT) {
		kfree(context->filterkey);
		context->filterkey = NULL;
L
Linus Torvalds 已提交
1578
	}
A
Al Viro 已提交
1579
	tsk->audit_context = context;
L
Linus Torvalds 已提交
1580 1581
}

A
Al Viro 已提交
1582 1583 1584 1585 1586 1587 1588
static inline void handle_one(const struct inode *inode)
{
#ifdef CONFIG_AUDIT_TREE
	struct audit_context *context;
	struct audit_tree_refs *p;
	struct audit_chunk *chunk;
	int count;
1589
	if (likely(hlist_empty(&inode->i_fsnotify_marks)))
A
Al Viro 已提交
1590 1591 1592 1593 1594 1595 1596 1597 1598 1599 1600 1601
		return;
	context = current->audit_context;
	p = context->trees;
	count = context->tree_count;
	rcu_read_lock();
	chunk = audit_tree_lookup(inode);
	rcu_read_unlock();
	if (!chunk)
		return;
	if (likely(put_tree_ref(context, chunk)))
		return;
	if (unlikely(!grow_tree_refs(context))) {
1602
		pr_warn("out of memory, audit has lost a tree reference\n");
A
Al Viro 已提交
1603 1604 1605 1606 1607 1608 1609 1610 1611 1612 1613 1614 1615 1616 1617 1618 1619 1620 1621 1622 1623 1624 1625 1626 1627 1628 1629 1630
		audit_set_auditable(context);
		audit_put_chunk(chunk);
		unroll_tree_refs(context, p, count);
		return;
	}
	put_tree_ref(context, chunk);
#endif
}

static void handle_path(const struct dentry *dentry)
{
#ifdef CONFIG_AUDIT_TREE
	struct audit_context *context;
	struct audit_tree_refs *p;
	const struct dentry *d, *parent;
	struct audit_chunk *drop;
	unsigned long seq;
	int count;

	context = current->audit_context;
	p = context->trees;
	count = context->tree_count;
retry:
	drop = NULL;
	d = dentry;
	rcu_read_lock();
	seq = read_seqbegin(&rename_lock);
	for(;;) {
1631
		struct inode *inode = d_backing_inode(d);
1632
		if (inode && unlikely(!hlist_empty(&inode->i_fsnotify_marks))) {
A
Al Viro 已提交
1633 1634 1635 1636 1637 1638 1639 1640 1641 1642 1643 1644 1645 1646 1647 1648 1649 1650 1651 1652 1653 1654 1655 1656 1657 1658 1659 1660
			struct audit_chunk *chunk;
			chunk = audit_tree_lookup(inode);
			if (chunk) {
				if (unlikely(!put_tree_ref(context, chunk))) {
					drop = chunk;
					break;
				}
			}
		}
		parent = d->d_parent;
		if (parent == d)
			break;
		d = parent;
	}
	if (unlikely(read_seqretry(&rename_lock, seq) || drop)) {  /* in this order */
		rcu_read_unlock();
		if (!drop) {
			/* just a race with rename */
			unroll_tree_refs(context, p, count);
			goto retry;
		}
		audit_put_chunk(drop);
		if (grow_tree_refs(context)) {
			/* OK, got more space */
			unroll_tree_refs(context, p, count);
			goto retry;
		}
		/* too bad */
1661
		pr_warn("out of memory, audit has lost a tree reference\n");
A
Al Viro 已提交
1662 1663 1664 1665 1666 1667 1668 1669
		unroll_tree_refs(context, p, count);
		audit_set_auditable(context);
		return;
	}
	rcu_read_unlock();
#endif
}

1670 1671
static struct audit_names *audit_alloc_name(struct audit_context *context,
						unsigned char type)
1672 1673 1674 1675 1676 1677 1678 1679 1680 1681 1682 1683 1684
{
	struct audit_names *aname;

	if (context->name_count < AUDIT_NAMES) {
		aname = &context->preallocated_names[context->name_count];
		memset(aname, 0, sizeof(*aname));
	} else {
		aname = kzalloc(sizeof(*aname), GFP_NOFS);
		if (!aname)
			return NULL;
		aname->should_free = true;
	}

1685
	aname->ino = AUDIT_INO_UNSET;
1686
	aname->type = type;
1687 1688 1689 1690 1691 1692
	list_add_tail(&aname->list, &context->names_list);

	context->name_count++;
	return aname;
}

1693 1694 1695 1696 1697 1698 1699 1700 1701 1702 1703 1704 1705 1706 1707 1708 1709
/**
 * audit_reusename - fill out filename with info from existing entry
 * @uptr: userland ptr to pathname
 *
 * Search the audit_names list for the current audit context. If there is an
 * existing entry with a matching "uptr" then return the filename
 * associated with that audit_name. If not, return NULL.
 */
struct filename *
__audit_reusename(const __user char *uptr)
{
	struct audit_context *context = current->audit_context;
	struct audit_names *n;

	list_for_each_entry(n, &context->names_list, list) {
		if (!n->name)
			continue;
1710 1711
		if (n->name->uptr == uptr) {
			n->name->refcnt++;
1712
			return n->name;
1713
		}
1714 1715 1716 1717
	}
	return NULL;
}

1718 1719 1720 1721 1722 1723 1724
/**
 * audit_getname - add a name to the list
 * @name: name to add
 *
 * Add a name to the list of audit names for this context.
 * Called from fs/namei.c:getname().
 */
1725
void __audit_getname(struct filename *name)
L
Linus Torvalds 已提交
1726 1727
{
	struct audit_context *context = current->audit_context;
1728
	struct audit_names *n;
L
Linus Torvalds 已提交
1729

1730
	if (!context->in_syscall)
L
Linus Torvalds 已提交
1731
		return;
1732

1733
	n = audit_alloc_name(context, AUDIT_TYPE_UNKNOWN);
1734 1735 1736 1737 1738
	if (!n)
		return;

	n->name = name;
	n->name_len = AUDIT_NAME_FULL;
1739
	name->aname = n;
1740
	name->refcnt++;
1741

1742 1743
	if (!context->pwd.dentry)
		get_fs_pwd(current->fs, &context->pwd);
L
Linus Torvalds 已提交
1744 1745
}

1746
/**
1747
 * __audit_inode - store the inode and device from a lookup
1748
 * @name: name being audited
1749
 * @dentry: dentry being audited
1750
 * @flags: attributes for this particular entry
1751
 */
1752
void __audit_inode(struct filename *name, const struct dentry *dentry,
1753
		   unsigned int flags)
L
Linus Torvalds 已提交
1754 1755
{
	struct audit_context *context = current->audit_context;
1756
	struct inode *inode = d_backing_inode(dentry);
1757
	struct audit_names *n;
1758
	bool parent = flags & AUDIT_INODE_PARENT;
L
Linus Torvalds 已提交
1759 1760 1761

	if (!context->in_syscall)
		return;
1762

1763 1764 1765
	if (!name)
		goto out_alloc;

1766 1767 1768 1769 1770 1771 1772 1773 1774 1775 1776 1777 1778 1779 1780 1781
	/*
	 * If we have a pointer to an audit_names entry already, then we can
	 * just use it directly if the type is correct.
	 */
	n = name->aname;
	if (n) {
		if (parent) {
			if (n->type == AUDIT_TYPE_PARENT ||
			    n->type == AUDIT_TYPE_UNKNOWN)
				goto out;
		} else {
			if (n->type != AUDIT_TYPE_PARENT)
				goto out;
		}
	}

1782
	list_for_each_entry_reverse(n, &context->names_list, list) {
1783 1784 1785 1786 1787 1788 1789 1790 1791 1792 1793
		if (n->ino) {
			/* valid inode number, use that for the comparison */
			if (n->ino != inode->i_ino ||
			    n->dev != inode->i_sb->s_dev)
				continue;
		} else if (n->name) {
			/* inode number has not been set, check the name */
			if (strcmp(n->name->name, name->name))
				continue;
		} else
			/* no inode and no name (?!) ... this is odd ... */
1794 1795 1796 1797 1798 1799 1800 1801 1802 1803 1804
			continue;

		/* match the correct record type */
		if (parent) {
			if (n->type == AUDIT_TYPE_PARENT ||
			    n->type == AUDIT_TYPE_UNKNOWN)
				goto out;
		} else {
			if (n->type != AUDIT_TYPE_PARENT)
				goto out;
		}
L
Linus Torvalds 已提交
1805
	}
1806

1807
out_alloc:
1808 1809
	/* unable to find an entry with both a matching name and type */
	n = audit_alloc_name(context, AUDIT_TYPE_UNKNOWN);
1810 1811
	if (!n)
		return;
1812
	if (name) {
1813
		n->name = name;
1814
		name->refcnt++;
1815
	}
1816

1817
out:
1818
	if (parent) {
1819
		n->name_len = n->name ? parent_len(n->name->name) : AUDIT_NAME_FULL;
1820
		n->type = AUDIT_TYPE_PARENT;
1821 1822
		if (flags & AUDIT_INODE_HIDDEN)
			n->hidden = true;
1823 1824 1825 1826
	} else {
		n->name_len = AUDIT_NAME_FULL;
		n->type = AUDIT_TYPE_NORMAL;
	}
A
Al Viro 已提交
1827
	handle_path(dentry);
1828
	audit_copy_inode(n, dentry, inode);
1829 1830
}

A
Al Viro 已提交
1831 1832 1833 1834 1835
void __audit_file(const struct file *file)
{
	__audit_inode(NULL, file->f_path.dentry, 0);
}

1836
/**
1837
 * __audit_inode_child - collect inode info for created/removed objects
1838
 * @parent: inode of dentry parent
1839
 * @dentry: dentry being audited
1840
 * @type:   AUDIT_TYPE_* value that we're looking for
1841 1842 1843 1844 1845 1846 1847 1848 1849
 *
 * For syscalls that create or remove filesystem objects, audit_inode
 * can only collect information for the filesystem object's parent.
 * This call updates the audit context with the child's information.
 * Syscalls that create a new filesystem object must be hooked after
 * the object is created.  Syscalls that remove a filesystem object
 * must be hooked prior, in order to capture the target inode during
 * unsuccessful attempts.
 */
1850
void __audit_inode_child(struct inode *parent,
1851 1852
			 const struct dentry *dentry,
			 const unsigned char type)
1853 1854
{
	struct audit_context *context = current->audit_context;
1855
	struct inode *inode = d_backing_inode(dentry);
1856
	const char *dname = dentry->d_name.name;
1857
	struct audit_names *n, *found_parent = NULL, *found_child = NULL;
1858 1859 1860 1861

	if (!context->in_syscall)
		return;

A
Al Viro 已提交
1862 1863
	if (inode)
		handle_one(inode);
1864

1865
	/* look for a parent entry first */
1866
	list_for_each_entry(n, &context->names_list, list) {
1867 1868 1869
		if (!n->name ||
		    (n->type != AUDIT_TYPE_PARENT &&
		     n->type != AUDIT_TYPE_UNKNOWN))
A
Amy Griffis 已提交
1870 1871
			continue;

1872 1873 1874 1875 1876
		if (n->ino == parent->i_ino && n->dev == parent->i_sb->s_dev &&
		    !audit_compare_dname_path(dname,
					      n->name->name, n->name_len)) {
			if (n->type == AUDIT_TYPE_UNKNOWN)
				n->type = AUDIT_TYPE_PARENT;
1877 1878
			found_parent = n;
			break;
A
Amy Griffis 已提交
1879
		}
A
Amy Griffis 已提交
1880
	}
1881

1882
	/* is there a matching child entry? */
1883
	list_for_each_entry(n, &context->names_list, list) {
1884
		/* can only match entries that have a name */
1885 1886
		if (!n->name ||
		    (n->type != type && n->type != AUDIT_TYPE_UNKNOWN))
A
Amy Griffis 已提交
1887 1888
			continue;

1889 1890
		if (!strcmp(dname, n->name->name) ||
		    !audit_compare_dname_path(dname, n->name->name,
1891 1892
						found_parent ?
						found_parent->name_len :
1893
						AUDIT_NAME_FULL)) {
1894 1895
			if (n->type == AUDIT_TYPE_UNKNOWN)
				n->type = type;
1896 1897
			found_child = n;
			break;
A
Amy Griffis 已提交
1898
		}
S
Steve Grubb 已提交
1899
	}
A
Amy Griffis 已提交
1900 1901

	if (!found_parent) {
1902 1903
		/* create a new, "anonymous" parent record */
		n = audit_alloc_name(context, AUDIT_TYPE_PARENT);
1904
		if (!n)
S
Steve Grubb 已提交
1905
			return;
1906
		audit_copy_inode(n, NULL, parent);
1907
	}
A
Amy Griffis 已提交
1908 1909

	if (!found_child) {
1910 1911
		found_child = audit_alloc_name(context, type);
		if (!found_child)
A
Amy Griffis 已提交
1912 1913 1914 1915 1916 1917
			return;

		/* Re-use the name belonging to the slot for a matching parent
		 * directory. All names for this context are relinquished in
		 * audit_free_names() */
		if (found_parent) {
1918 1919
			found_child->name = found_parent->name;
			found_child->name_len = AUDIT_NAME_FULL;
1920
			found_child->name->refcnt++;
A
Amy Griffis 已提交
1921 1922
		}
	}
1923

1924 1925 1926
	if (inode)
		audit_copy_inode(found_child, dentry, inode);
	else
1927
		found_child->ino = AUDIT_INO_UNSET;
1928
}
1929
EXPORT_SYMBOL_GPL(__audit_inode_child);
1930

1931 1932 1933 1934 1935 1936 1937 1938
/**
 * auditsc_get_stamp - get local copies of audit_context values
 * @ctx: audit_context for the task
 * @t: timespec to store time recorded in the audit_context
 * @serial: serial value that is recorded in the audit_context
 *
 * Also sets the context as auditable.
 */
1939
int auditsc_get_stamp(struct audit_context *ctx,
1940
		       struct timespec *t, unsigned int *serial)
L
Linus Torvalds 已提交
1941
{
1942 1943
	if (!ctx->in_syscall)
		return 0;
1944 1945
	if (!ctx->serial)
		ctx->serial = audit_serial();
1946 1947 1948
	t->tv_sec  = ctx->ctime.tv_sec;
	t->tv_nsec = ctx->ctime.tv_nsec;
	*serial    = ctx->serial;
1949 1950 1951 1952
	if (!ctx->prio) {
		ctx->prio = 1;
		ctx->current_state = AUDIT_RECORD_CONTEXT;
	}
1953
	return 1;
L
Linus Torvalds 已提交
1954 1955
}

1956 1957 1958
/* global counter which is incremented every time something logs in */
static atomic_t session_id = ATOMIC_INIT(0);

1959 1960 1961 1962 1963
static int audit_set_loginuid_perm(kuid_t loginuid)
{
	/* if we are unset, we don't need privs */
	if (!audit_loginuid_set(current))
		return 0;
1964 1965 1966
	/* if AUDIT_FEATURE_LOGINUID_IMMUTABLE means never ever allow a change*/
	if (is_audit_feature_set(AUDIT_FEATURE_LOGINUID_IMMUTABLE))
		return -EPERM;
1967 1968 1969
	/* it is set, you need permission */
	if (!capable(CAP_AUDIT_CONTROL))
		return -EPERM;
1970 1971 1972
	/* reject if this is not an unset and we don't allow that */
	if (is_audit_feature_set(AUDIT_FEATURE_ONLY_UNSET_LOGINUID) && uid_valid(loginuid))
		return -EPERM;
1973
	return 0;
1974 1975 1976 1977 1978 1979 1980
}

static void audit_log_set_loginuid(kuid_t koldloginuid, kuid_t kloginuid,
				   unsigned int oldsessionid, unsigned int sessionid,
				   int rc)
{
	struct audit_buffer *ab;
1981
	uid_t uid, oldloginuid, loginuid;
1982
	struct tty_struct *tty;
1983

1984 1985 1986
	if (!audit_enabled)
		return;

1987 1988 1989 1990
	ab = audit_log_start(NULL, GFP_KERNEL, AUDIT_LOGIN);
	if (!ab)
		return;

1991
	uid = from_kuid(&init_user_ns, task_uid(current));
1992 1993
	oldloginuid = from_kuid(&init_user_ns, koldloginuid);
	loginuid = from_kuid(&init_user_ns, kloginuid),
1994
	tty = audit_get_tty(current);
1995

1996 1997
	audit_log_format(ab, "pid=%d uid=%u", task_pid_nr(current), uid);
	audit_log_task_context(ab);
1998 1999 2000 2001
	audit_log_format(ab, " old-auid=%u auid=%u tty=%s old-ses=%u ses=%u res=%d",
			 oldloginuid, loginuid, tty ? tty_name(tty) : "(none)",
			 oldsessionid, sessionid, !rc);
	audit_put_tty(tty);
2002 2003 2004
	audit_log_end(ab);
}

2005
/**
2006
 * audit_set_loginuid - set current task's audit_context loginuid
2007 2008 2009 2010 2011 2012
 * @loginuid: loginuid value
 *
 * Returns 0.
 *
 * Called (set) from fs/proc/base.c::proc_loginuid_write().
 */
2013
int audit_set_loginuid(kuid_t loginuid)
L
Linus Torvalds 已提交
2014
{
2015
	struct task_struct *task = current;
2016 2017
	unsigned int oldsessionid, sessionid = (unsigned int)-1;
	kuid_t oldloginuid;
2018
	int rc;
2019

2020 2021 2022 2023 2024 2025
	oldloginuid = audit_get_loginuid(current);
	oldsessionid = audit_get_sessionid(current);

	rc = audit_set_loginuid_perm(loginuid);
	if (rc)
		goto out;
2026

2027 2028
	/* are we setting or clearing? */
	if (uid_valid(loginuid))
2029
		sessionid = (unsigned int)atomic_inc_return(&session_id);
A
Al Viro 已提交
2030

2031
	task->sessionid = sessionid;
A
Al Viro 已提交
2032
	task->loginuid = loginuid;
2033 2034 2035
out:
	audit_log_set_loginuid(oldloginuid, loginuid, oldsessionid, sessionid, rc);
	return rc;
L
Linus Torvalds 已提交
2036 2037
}

2038 2039 2040 2041
/**
 * __audit_mq_open - record audit data for a POSIX MQ open
 * @oflag: open flag
 * @mode: mode bits
R
Randy Dunlap 已提交
2042
 * @attr: queue attributes
2043 2044
 *
 */
A
Al Viro 已提交
2045
void __audit_mq_open(int oflag, umode_t mode, struct mq_attr *attr)
2046 2047 2048
{
	struct audit_context *context = current->audit_context;

A
Al Viro 已提交
2049 2050 2051 2052
	if (attr)
		memcpy(&context->mq_open.attr, attr, sizeof(struct mq_attr));
	else
		memset(&context->mq_open.attr, 0, sizeof(struct mq_attr));
2053

A
Al Viro 已提交
2054 2055
	context->mq_open.oflag = oflag;
	context->mq_open.mode = mode;
2056

A
Al Viro 已提交
2057
	context->type = AUDIT_MQ_OPEN;
2058 2059 2060
}

/**
A
Al Viro 已提交
2061
 * __audit_mq_sendrecv - record audit data for a POSIX MQ timed send/receive
2062 2063 2064
 * @mqdes: MQ descriptor
 * @msg_len: Message length
 * @msg_prio: Message priority
A
Al Viro 已提交
2065
 * @abs_timeout: Message timeout in absolute time
2066 2067
 *
 */
A
Al Viro 已提交
2068 2069
void __audit_mq_sendrecv(mqd_t mqdes, size_t msg_len, unsigned int msg_prio,
			const struct timespec *abs_timeout)
2070 2071
{
	struct audit_context *context = current->audit_context;
A
Al Viro 已提交
2072
	struct timespec *p = &context->mq_sendrecv.abs_timeout;
2073

A
Al Viro 已提交
2074 2075 2076 2077
	if (abs_timeout)
		memcpy(p, abs_timeout, sizeof(struct timespec));
	else
		memset(p, 0, sizeof(struct timespec));
2078

A
Al Viro 已提交
2079 2080 2081
	context->mq_sendrecv.mqdes = mqdes;
	context->mq_sendrecv.msg_len = msg_len;
	context->mq_sendrecv.msg_prio = msg_prio;
2082

A
Al Viro 已提交
2083
	context->type = AUDIT_MQ_SENDRECV;
2084 2085 2086 2087 2088
}

/**
 * __audit_mq_notify - record audit data for a POSIX MQ notify
 * @mqdes: MQ descriptor
R
Randy Dunlap 已提交
2089
 * @notification: Notification event
2090 2091 2092
 *
 */

A
Al Viro 已提交
2093
void __audit_mq_notify(mqd_t mqdes, const struct sigevent *notification)
2094 2095 2096
{
	struct audit_context *context = current->audit_context;

A
Al Viro 已提交
2097 2098 2099 2100
	if (notification)
		context->mq_notify.sigev_signo = notification->sigev_signo;
	else
		context->mq_notify.sigev_signo = 0;
2101

A
Al Viro 已提交
2102 2103
	context->mq_notify.mqdes = mqdes;
	context->type = AUDIT_MQ_NOTIFY;
2104 2105 2106 2107 2108 2109 2110 2111
}

/**
 * __audit_mq_getsetattr - record audit data for a POSIX MQ get/set attribute
 * @mqdes: MQ descriptor
 * @mqstat: MQ flags
 *
 */
A
Al Viro 已提交
2112
void __audit_mq_getsetattr(mqd_t mqdes, struct mq_attr *mqstat)
2113 2114
{
	struct audit_context *context = current->audit_context;
A
Al Viro 已提交
2115 2116 2117
	context->mq_getsetattr.mqdes = mqdes;
	context->mq_getsetattr.mqstat = *mqstat;
	context->type = AUDIT_MQ_GETSETATTR;
2118 2119
}

2120
/**
S
Steve Grubb 已提交
2121 2122 2123 2124
 * audit_ipc_obj - record audit data for ipc object
 * @ipcp: ipc permissions
 *
 */
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void __audit_ipc_obj(struct kern_ipc_perm *ipcp)
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Steve Grubb 已提交
2126 2127
{
	struct audit_context *context = current->audit_context;
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	context->ipc.uid = ipcp->uid;
	context->ipc.gid = ipcp->gid;
	context->ipc.mode = ipcp->mode;
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	context->ipc.has_perm = 0;
A
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2132 2133
	security_ipc_getsecid(ipcp, &context->ipc.osid);
	context->type = AUDIT_IPC;
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Steve Grubb 已提交
2134 2135 2136 2137
}

/**
 * audit_ipc_set_perm - record audit data for new ipc permissions
2138 2139 2140 2141 2142
 * @qbytes: msgq bytes
 * @uid: msgq user id
 * @gid: msgq group id
 * @mode: msgq mode (permissions)
 *
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 * Called only after audit_ipc_obj().
2144
 */
A
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2145
void __audit_ipc_set_perm(unsigned long qbytes, uid_t uid, gid_t gid, umode_t mode)
L
Linus Torvalds 已提交
2146 2147 2148
{
	struct audit_context *context = current->audit_context;

A
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2149 2150 2151 2152 2153
	context->ipc.qbytes = qbytes;
	context->ipc.perm_uid = uid;
	context->ipc.perm_gid = gid;
	context->ipc.perm_mode = mode;
	context->ipc.has_perm = 1;
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Linus Torvalds 已提交
2154
}
2155

2156
void __audit_bprm(struct linux_binprm *bprm)
A
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{
	struct audit_context *context = current->audit_context;

2160 2161
	context->type = AUDIT_EXECVE;
	context->execve.argc = bprm->argc;
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}


2165 2166
/**
 * audit_socketcall - record audit data for sys_socketcall
2167
 * @nargs: number of args, which should not be more than AUDITSC_ARGS.
2168 2169 2170
 * @args: args array
 *
 */
2171
int __audit_socketcall(int nargs, unsigned long *args)
2172 2173 2174
{
	struct audit_context *context = current->audit_context;

2175 2176
	if (nargs <= 0 || nargs > AUDITSC_ARGS || !args)
		return -EINVAL;
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	context->type = AUDIT_SOCKETCALL;
	context->socketcall.nargs = nargs;
	memcpy(context->socketcall.args, args, nargs * sizeof(unsigned long));
2180
	return 0;
2181 2182
}

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/**
 * __audit_fd_pair - record audit data for pipe and socketpair
 * @fd1: the first file descriptor
 * @fd2: the second file descriptor
 *
 */
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void __audit_fd_pair(int fd1, int fd2)
A
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2190 2191
{
	struct audit_context *context = current->audit_context;
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	context->fds[0] = fd1;
	context->fds[1] = fd2;
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}

2196 2197 2198 2199 2200 2201 2202
/**
 * audit_sockaddr - record audit data for sys_bind, sys_connect, sys_sendto
 * @len: data length in user space
 * @a: data address in kernel space
 *
 * Returns 0 for success or NULL context or < 0 on error.
 */
2203
int __audit_sockaddr(int len, void *a)
2204 2205 2206
{
	struct audit_context *context = current->audit_context;

2207 2208 2209 2210 2211 2212
	if (!context->sockaddr) {
		void *p = kmalloc(sizeof(struct sockaddr_storage), GFP_KERNEL);
		if (!p)
			return -ENOMEM;
		context->sockaddr = p;
	}
2213

2214 2215
	context->sockaddr_len = len;
	memcpy(context->sockaddr, a, len);
2216 2217 2218
	return 0;
}

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void __audit_ptrace(struct task_struct *t)
{
	struct audit_context *context = current->audit_context;

2223
	context->target_pid = task_pid_nr(t);
2224
	context->target_auid = audit_get_loginuid(t);
2225
	context->target_uid = task_uid(t);
2226
	context->target_sessionid = audit_get_sessionid(t);
2227
	security_task_getsecid(t, &context->target_sid);
2228
	memcpy(context->target_comm, t->comm, TASK_COMM_LEN);
A
Al Viro 已提交
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}

2231 2232 2233 2234 2235 2236 2237 2238
/**
 * audit_signal_info - record signal info for shutting down audit subsystem
 * @sig: signal value
 * @t: task being signaled
 *
 * If the audit subsystem is being terminated, record the task (pid)
 * and uid that is doing that.
 */
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Amy Griffis 已提交
2239
int __audit_signal_info(int sig, struct task_struct *t)
2240
{
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Amy Griffis 已提交
2241 2242 2243
	struct audit_aux_data_pids *axp;
	struct task_struct *tsk = current;
	struct audit_context *ctx = tsk->audit_context;
2244
	kuid_t uid = current_uid(), t_uid = task_uid(t);
2245

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	if (audit_pid && t->tgid == audit_pid) {
2247
		if (sig == SIGTERM || sig == SIGHUP || sig == SIGUSR1 || sig == SIGUSR2) {
2248
			audit_sig_pid = task_pid_nr(tsk);
2249
			if (uid_valid(tsk->loginuid))
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				audit_sig_uid = tsk->loginuid;
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			else
2252
				audit_sig_uid = uid;
2253
			security_task_getsecid(tsk, &audit_sig_sid);
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		}
		if (!audit_signals || audit_dummy_context())
			return 0;
2257
	}
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Amy Griffis 已提交
2258 2259 2260 2261

	/* optimize the common case by putting first signal recipient directly
	 * in audit_context */
	if (!ctx->target_pid) {
2262
		ctx->target_pid = task_tgid_nr(t);
2263
		ctx->target_auid = audit_get_loginuid(t);
2264
		ctx->target_uid = t_uid;
2265
		ctx->target_sessionid = audit_get_sessionid(t);
2266
		security_task_getsecid(t, &ctx->target_sid);
2267
		memcpy(ctx->target_comm, t->comm, TASK_COMM_LEN);
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		return 0;
	}

	axp = (void *)ctx->aux_pids;
	if (!axp || axp->pid_count == AUDIT_AUX_PIDS) {
		axp = kzalloc(sizeof(*axp), GFP_ATOMIC);
		if (!axp)
			return -ENOMEM;

		axp->d.type = AUDIT_OBJ_PID;
		axp->d.next = ctx->aux_pids;
		ctx->aux_pids = (void *)axp;
	}
2281
	BUG_ON(axp->pid_count >= AUDIT_AUX_PIDS);
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Amy Griffis 已提交
2282

2283
	axp->target_pid[axp->pid_count] = task_tgid_nr(t);
2284
	axp->target_auid[axp->pid_count] = audit_get_loginuid(t);
2285
	axp->target_uid[axp->pid_count] = t_uid;
2286
	axp->target_sessionid[axp->pid_count] = audit_get_sessionid(t);
2287
	security_task_getsecid(t, &axp->target_sid[axp->pid_count]);
2288
	memcpy(axp->target_comm[axp->pid_count], t->comm, TASK_COMM_LEN);
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2289 2290 2291
	axp->pid_count++;

	return 0;
2292
}
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Steve Grubb 已提交
2293

2294 2295
/**
 * __audit_log_bprm_fcaps - store information about a loading bprm and relevant fcaps
D
David Howells 已提交
2296 2297 2298
 * @bprm: pointer to the bprm being processed
 * @new: the proposed new credentials
 * @old: the old credentials
2299 2300 2301 2302 2303 2304
 *
 * Simply check if the proc already has the caps given by the file and if not
 * store the priv escalation info for later auditing at the end of the syscall
 *
 * -Eric
 */
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2305 2306
int __audit_log_bprm_fcaps(struct linux_binprm *bprm,
			   const struct cred *new, const struct cred *old)
2307 2308 2309 2310 2311 2312 2313
{
	struct audit_aux_data_bprm_fcaps *ax;
	struct audit_context *context = current->audit_context;
	struct cpu_vfs_cap_data vcaps;

	ax = kmalloc(sizeof(*ax), GFP_KERNEL);
	if (!ax)
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2314
		return -ENOMEM;
2315 2316 2317 2318 2319

	ax->d.type = AUDIT_BPRM_FCAPS;
	ax->d.next = context->aux;
	context->aux = (void *)ax;

2320
	get_vfs_caps_from_disk(bprm->file->f_path.dentry, &vcaps);
2321 2322 2323 2324 2325 2326

	ax->fcap.permitted = vcaps.permitted;
	ax->fcap.inheritable = vcaps.inheritable;
	ax->fcap.fE = !!(vcaps.magic_etc & VFS_CAP_FLAGS_EFFECTIVE);
	ax->fcap_ver = (vcaps.magic_etc & VFS_CAP_REVISION_MASK) >> VFS_CAP_REVISION_SHIFT;

D
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2327 2328 2329
	ax->old_pcap.permitted   = old->cap_permitted;
	ax->old_pcap.inheritable = old->cap_inheritable;
	ax->old_pcap.effective   = old->cap_effective;
2330

D
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2331 2332 2333 2334
	ax->new_pcap.permitted   = new->cap_permitted;
	ax->new_pcap.inheritable = new->cap_inheritable;
	ax->new_pcap.effective   = new->cap_effective;
	return 0;
2335 2336
}

2337 2338
/**
 * __audit_log_capset - store information about the arguments to the capset syscall
D
David Howells 已提交
2339 2340
 * @new: the new credentials
 * @old: the old (current) credentials
2341
 *
2342
 * Record the arguments userspace sent to sys_capset for later printing by the
2343 2344
 * audit system if applicable
 */
2345
void __audit_log_capset(const struct cred *new, const struct cred *old)
2346 2347
{
	struct audit_context *context = current->audit_context;
2348
	context->capset.pid = task_pid_nr(current);
A
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2349 2350 2351 2352
	context->capset.cap.effective   = new->cap_effective;
	context->capset.cap.inheritable = new->cap_effective;
	context->capset.cap.permitted   = new->cap_permitted;
	context->type = AUDIT_CAPSET;
2353 2354
}

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void __audit_mmap_fd(int fd, int flags)
{
	struct audit_context *context = current->audit_context;
	context->mmap.fd = fd;
	context->mmap.flags = flags;
	context->type = AUDIT_MMAP;
}

2363
static void audit_log_task(struct audit_buffer *ab)
2364
{
2365 2366
	kuid_t auid, uid;
	kgid_t gid;
2367
	unsigned int sessionid;
2368
	char comm[sizeof(current->comm)];
2369 2370 2371 2372 2373 2374

	auid = audit_get_loginuid(current);
	sessionid = audit_get_sessionid(current);
	current_uid_gid(&uid, &gid);

	audit_log_format(ab, "auid=%u uid=%u gid=%u ses=%u",
2375 2376 2377 2378
			 from_kuid(&init_user_ns, auid),
			 from_kuid(&init_user_ns, uid),
			 from_kgid(&init_user_ns, gid),
			 sessionid);
2379
	audit_log_task_context(ab);
2380
	audit_log_format(ab, " pid=%d comm=", task_pid_nr(current));
2381
	audit_log_untrustedstring(ab, get_task_comm(comm, current));
2382
	audit_log_d_path_exe(ab, current->mm);
2383 2384
}

S
Steve Grubb 已提交
2385 2386
/**
 * audit_core_dumps - record information about processes that end abnormally
2387
 * @signr: signal value
S
Steve Grubb 已提交
2388 2389 2390 2391 2392 2393 2394 2395 2396 2397 2398 2399 2400 2401 2402
 *
 * If a process ends with a core dump, something fishy is going on and we
 * should record the event for investigation.
 */
void audit_core_dumps(long signr)
{
	struct audit_buffer *ab;

	if (!audit_enabled)
		return;

	if (signr == SIGQUIT)	/* don't care for those */
		return;

	ab = audit_log_start(NULL, GFP_KERNEL, AUDIT_ANOM_ABEND);
2403 2404
	if (unlikely(!ab))
		return;
P
Paul Davies C 已提交
2405 2406
	audit_log_task(ab);
	audit_log_format(ab, " sig=%ld", signr);
2407 2408
	audit_log_end(ab);
}
S
Steve Grubb 已提交
2409

2410
void __audit_seccomp(unsigned long syscall, long signr, int code)
2411 2412 2413
{
	struct audit_buffer *ab;

2414 2415 2416 2417
	ab = audit_log_start(NULL, GFP_KERNEL, AUDIT_SECCOMP);
	if (unlikely(!ab))
		return;
	audit_log_task(ab);
2418 2419 2420
	audit_log_format(ab, " sig=%ld arch=%x syscall=%ld compat=%d ip=0x%lx code=0x%x",
			 signr, syscall_get_arch(), syscall, is_compat_task(),
			 KSTK_EIP(current), code);
S
Steve Grubb 已提交
2421 2422
	audit_log_end(ab);
}
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2423 2424 2425 2426 2427 2428 2429 2430

struct list_head *audit_killed_trees(void)
{
	struct audit_context *ctx = current->audit_context;
	if (likely(!ctx || !ctx->in_syscall))
		return NULL;
	return &ctx->killed_trees;
}