security.c 62.2 KB
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// SPDX-License-Identifier: GPL-2.0-or-later
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/*
 * Security plug functions
 *
 * Copyright (C) 2001 WireX Communications, Inc <chris@wirex.com>
 * Copyright (C) 2001-2002 Greg Kroah-Hartman <greg@kroah.com>
 * Copyright (C) 2001 Networks Associates Technology, Inc <ssmalley@nai.com>
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 * Copyright (C) 2016 Mellanox Technologies
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 */

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#define pr_fmt(fmt) "LSM: " fmt

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#include <linux/bpf.h>
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#include <linux/capability.h>
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#include <linux/dcache.h>
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#include <linux/export.h>
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#include <linux/init.h>
#include <linux/kernel.h>
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#include <linux/lsm_hooks.h>
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#include <linux/integrity.h>
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#include <linux/ima.h>
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#include <linux/evm.h>
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#include <linux/fsnotify.h>
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#include <linux/mman.h>
#include <linux/mount.h>
#include <linux/personality.h>
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#include <linux/backing-dev.h>
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#include <linux/string.h>
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#include <linux/msg.h>
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#include <net/flow.h>
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#define MAX_LSM_EVM_XATTR	2
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/* How many LSMs were built into the kernel? */
#define LSM_COUNT (__end_lsm_info - __start_lsm_info)

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/*
 * These are descriptions of the reasons that can be passed to the
 * security_locked_down() LSM hook. Placing this array here allows
 * all security modules to use the same descriptions for auditing
 * purposes.
 */
const char *const lockdown_reasons[LOCKDOWN_CONFIDENTIALITY_MAX+1] = {
	[LOCKDOWN_NONE] = "none",
	[LOCKDOWN_MODULE_SIGNATURE] = "unsigned module loading",
	[LOCKDOWN_DEV_MEM] = "/dev/mem,kmem,port",
	[LOCKDOWN_EFI_TEST] = "/dev/efi_test access",
	[LOCKDOWN_KEXEC] = "kexec of unsigned images",
	[LOCKDOWN_HIBERNATION] = "hibernation",
	[LOCKDOWN_PCI_ACCESS] = "direct PCI access",
	[LOCKDOWN_IOPORT] = "raw io port access",
	[LOCKDOWN_MSR] = "raw MSR access",
	[LOCKDOWN_ACPI_TABLES] = "modifying ACPI tables",
	[LOCKDOWN_PCMCIA_CIS] = "direct PCMCIA CIS storage",
	[LOCKDOWN_TIOCSSERIAL] = "reconfiguration of serial port IO",
	[LOCKDOWN_MODULE_PARAMETERS] = "unsafe module parameters",
	[LOCKDOWN_MMIOTRACE] = "unsafe mmio",
	[LOCKDOWN_DEBUGFS] = "debugfs access",
	[LOCKDOWN_XMON_WR] = "xmon write access",
	[LOCKDOWN_INTEGRITY_MAX] = "integrity",
	[LOCKDOWN_KCORE] = "/proc/kcore access",
	[LOCKDOWN_KPROBES] = "use of kprobes",
	[LOCKDOWN_BPF_READ] = "use of bpf to read kernel RAM",
	[LOCKDOWN_PERF] = "unsafe use of perf",
	[LOCKDOWN_TRACEFS] = "use of tracefs",
	[LOCKDOWN_XMON_RW] = "xmon read and write access",
	[LOCKDOWN_CONFIDENTIALITY_MAX] = "confidentiality",
};

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struct security_hook_heads security_hook_heads __lsm_ro_after_init;
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static BLOCKING_NOTIFIER_HEAD(blocking_lsm_notifier_chain);
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static struct kmem_cache *lsm_file_cache;
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static struct kmem_cache *lsm_inode_cache;
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char *lsm_names;
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static struct lsm_blob_sizes blob_sizes __lsm_ro_after_init;

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/* Boot-time LSM user choice */
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static __initdata const char *chosen_lsm_order;
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static __initdata const char *chosen_major_lsm;
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static __initconst const char * const builtin_lsm_order = CONFIG_LSM;

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/* Ordered list of LSMs to initialize. */
static __initdata struct lsm_info **ordered_lsms;
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static __initdata struct lsm_info *exclusive;
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static __initdata bool debug;
#define init_debug(...)						\
	do {							\
		if (debug)					\
			pr_info(__VA_ARGS__);			\
	} while (0)

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static bool __init is_enabled(struct lsm_info *lsm)
{
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	if (!lsm->enabled)
		return false;
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	return *lsm->enabled;
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}

/* Mark an LSM's enabled flag. */
static int lsm_enabled_true __initdata = 1;
static int lsm_enabled_false __initdata = 0;
static void __init set_enabled(struct lsm_info *lsm, bool enabled)
{
	/*
	 * When an LSM hasn't configured an enable variable, we can use
	 * a hard-coded location for storing the default enabled state.
	 */
	if (!lsm->enabled) {
		if (enabled)
			lsm->enabled = &lsm_enabled_true;
		else
			lsm->enabled = &lsm_enabled_false;
	} else if (lsm->enabled == &lsm_enabled_true) {
		if (!enabled)
			lsm->enabled = &lsm_enabled_false;
	} else if (lsm->enabled == &lsm_enabled_false) {
		if (enabled)
			lsm->enabled = &lsm_enabled_true;
	} else {
		*lsm->enabled = enabled;
	}
}

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/* Is an LSM already listed in the ordered LSMs list? */
static bool __init exists_ordered_lsm(struct lsm_info *lsm)
{
	struct lsm_info **check;

	for (check = ordered_lsms; *check; check++)
		if (*check == lsm)
			return true;

	return false;
}

/* Append an LSM to the list of ordered LSMs to initialize. */
static int last_lsm __initdata;
static void __init append_ordered_lsm(struct lsm_info *lsm, const char *from)
{
	/* Ignore duplicate selections. */
	if (exists_ordered_lsm(lsm))
		return;

	if (WARN(last_lsm == LSM_COUNT, "%s: out of LSM slots!?\n", from))
		return;

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	/* Enable this LSM, if it is not already set. */
	if (!lsm->enabled)
		lsm->enabled = &lsm_enabled_true;
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	ordered_lsms[last_lsm++] = lsm;
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	init_debug("%s ordering: %s (%sabled)\n", from, lsm->name,
		   is_enabled(lsm) ? "en" : "dis");
}

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/* Is an LSM allowed to be initialized? */
static bool __init lsm_allowed(struct lsm_info *lsm)
{
	/* Skip if the LSM is disabled. */
	if (!is_enabled(lsm))
		return false;

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	/* Not allowed if another exclusive LSM already initialized. */
	if ((lsm->flags & LSM_FLAG_EXCLUSIVE) && exclusive) {
		init_debug("exclusive disabled: %s\n", lsm->name);
		return false;
	}

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	return true;
}

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static void __init lsm_set_blob_size(int *need, int *lbs)
{
	int offset;

	if (*need > 0) {
		offset = *lbs;
		*lbs += *need;
		*need = offset;
	}
}

static void __init lsm_set_blob_sizes(struct lsm_blob_sizes *needed)
{
	if (!needed)
		return;

	lsm_set_blob_size(&needed->lbs_cred, &blob_sizes.lbs_cred);
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	lsm_set_blob_size(&needed->lbs_file, &blob_sizes.lbs_file);
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	/*
	 * The inode blob gets an rcu_head in addition to
	 * what the modules might need.
	 */
	if (needed->lbs_inode && blob_sizes.lbs_inode == 0)
		blob_sizes.lbs_inode = sizeof(struct rcu_head);
	lsm_set_blob_size(&needed->lbs_inode, &blob_sizes.lbs_inode);
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	lsm_set_blob_size(&needed->lbs_ipc, &blob_sizes.lbs_ipc);
	lsm_set_blob_size(&needed->lbs_msg_msg, &blob_sizes.lbs_msg_msg);
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	lsm_set_blob_size(&needed->lbs_task, &blob_sizes.lbs_task);
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}

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/* Prepare LSM for initialization. */
static void __init prepare_lsm(struct lsm_info *lsm)
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{
	int enabled = lsm_allowed(lsm);

	/* Record enablement (to handle any following exclusive LSMs). */
	set_enabled(lsm, enabled);

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	/* If enabled, do pre-initialization work. */
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	if (enabled) {
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		if ((lsm->flags & LSM_FLAG_EXCLUSIVE) && !exclusive) {
			exclusive = lsm;
			init_debug("exclusive chosen: %s\n", lsm->name);
		}
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		lsm_set_blob_sizes(lsm->blobs);
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	}
}

/* Initialize a given LSM, if it is enabled. */
static void __init initialize_lsm(struct lsm_info *lsm)
{
	if (is_enabled(lsm)) {
		int ret;
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		init_debug("initializing %s\n", lsm->name);
		ret = lsm->init();
		WARN(ret, "%s failed to initialize: %d\n", lsm->name, ret);
	}
}

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/* Populate ordered LSMs list from comma-separated LSM name list. */
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static void __init ordered_lsm_parse(const char *order, const char *origin)
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{
	struct lsm_info *lsm;
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	char *sep, *name, *next;

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	/* LSM_ORDER_FIRST is always first. */
	for (lsm = __start_lsm_info; lsm < __end_lsm_info; lsm++) {
		if (lsm->order == LSM_ORDER_FIRST)
			append_ordered_lsm(lsm, "first");
	}

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	/* Process "security=", if given. */
	if (chosen_major_lsm) {
		struct lsm_info *major;

		/*
		 * To match the original "security=" behavior, this
		 * explicitly does NOT fallback to another Legacy Major
		 * if the selected one was separately disabled: disable
		 * all non-matching Legacy Major LSMs.
		 */
		for (major = __start_lsm_info; major < __end_lsm_info;
		     major++) {
			if ((major->flags & LSM_FLAG_LEGACY_MAJOR) &&
			    strcmp(major->name, chosen_major_lsm) != 0) {
				set_enabled(major, false);
				init_debug("security=%s disabled: %s\n",
					   chosen_major_lsm, major->name);
			}
		}
	}
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	sep = kstrdup(order, GFP_KERNEL);
	next = sep;
	/* Walk the list, looking for matching LSMs. */
	while ((name = strsep(&next, ",")) != NULL) {
		bool found = false;

		for (lsm = __start_lsm_info; lsm < __end_lsm_info; lsm++) {
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			if (lsm->order == LSM_ORDER_MUTABLE &&
			    strcmp(lsm->name, name) == 0) {
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				append_ordered_lsm(lsm, origin);
				found = true;
			}
		}

		if (!found)
			init_debug("%s ignored: %s\n", origin, name);
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	}
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	/* Process "security=", if given. */
	if (chosen_major_lsm) {
		for (lsm = __start_lsm_info; lsm < __end_lsm_info; lsm++) {
			if (exists_ordered_lsm(lsm))
				continue;
			if (strcmp(lsm->name, chosen_major_lsm) == 0)
				append_ordered_lsm(lsm, "security=");
		}
	}

	/* Disable all LSMs not in the ordered list. */
	for (lsm = __start_lsm_info; lsm < __end_lsm_info; lsm++) {
		if (exists_ordered_lsm(lsm))
			continue;
		set_enabled(lsm, false);
		init_debug("%s disabled: %s\n", origin, lsm->name);
	}

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	kfree(sep);
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}

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static void __init lsm_early_cred(struct cred *cred);
static void __init lsm_early_task(struct task_struct *task);

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static int lsm_append(const char *new, char **result);

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static void __init ordered_lsm_init(void)
{
	struct lsm_info **lsm;

	ordered_lsms = kcalloc(LSM_COUNT + 1, sizeof(*ordered_lsms),
				GFP_KERNEL);

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	if (chosen_lsm_order) {
		if (chosen_major_lsm) {
			pr_info("security= is ignored because it is superseded by lsm=\n");
			chosen_major_lsm = NULL;
		}
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		ordered_lsm_parse(chosen_lsm_order, "cmdline");
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	} else
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		ordered_lsm_parse(builtin_lsm_order, "builtin");
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	for (lsm = ordered_lsms; *lsm; lsm++)
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		prepare_lsm(*lsm);

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	init_debug("cred blob size     = %d\n", blob_sizes.lbs_cred);
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	init_debug("file blob size     = %d\n", blob_sizes.lbs_file);
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	init_debug("inode blob size    = %d\n", blob_sizes.lbs_inode);
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	init_debug("ipc blob size      = %d\n", blob_sizes.lbs_ipc);
	init_debug("msg_msg blob size  = %d\n", blob_sizes.lbs_msg_msg);
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	init_debug("task blob size     = %d\n", blob_sizes.lbs_task);
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	/*
	 * Create any kmem_caches needed for blobs
	 */
	if (blob_sizes.lbs_file)
		lsm_file_cache = kmem_cache_create("lsm_file_cache",
						   blob_sizes.lbs_file, 0,
						   SLAB_PANIC, NULL);
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	if (blob_sizes.lbs_inode)
		lsm_inode_cache = kmem_cache_create("lsm_inode_cache",
						    blob_sizes.lbs_inode, 0,
						    SLAB_PANIC, NULL);
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	lsm_early_cred((struct cred *) current->cred);
	lsm_early_task(current);
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	for (lsm = ordered_lsms; *lsm; lsm++)
		initialize_lsm(*lsm);
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	kfree(ordered_lsms);
}

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int __init early_security_init(void)
{
	int i;
	struct hlist_head *list = (struct hlist_head *) &security_hook_heads;
	struct lsm_info *lsm;

	for (i = 0; i < sizeof(security_hook_heads) / sizeof(struct hlist_head);
	     i++)
		INIT_HLIST_HEAD(&list[i]);

	for (lsm = __start_early_lsm_info; lsm < __end_early_lsm_info; lsm++) {
		if (!lsm->enabled)
			lsm->enabled = &lsm_enabled_true;
		prepare_lsm(lsm);
		initialize_lsm(lsm);
	}

	return 0;
}

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/**
 * security_init - initializes the security framework
 *
 * This should be called early in the kernel initialization sequence.
 */
int __init security_init(void)
{
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	struct lsm_info *lsm;
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	pr_info("Security Framework initializing\n");

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	/*
	 * Append the names of the early LSM modules now that kmalloc() is
	 * available
	 */
	for (lsm = __start_early_lsm_info; lsm < __end_early_lsm_info; lsm++) {
		if (lsm->enabled)
			lsm_append(lsm->name, &lsm_names);
	}
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	/* Load LSMs in specified order. */
	ordered_lsm_init();

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	return 0;
}

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/* Save user chosen LSM */
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static int __init choose_major_lsm(char *str)
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{
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	chosen_major_lsm = str;
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	return 1;
}
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__setup("security=", choose_major_lsm);
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/* Explicitly choose LSM initialization order. */
static int __init choose_lsm_order(char *str)
{
	chosen_lsm_order = str;
	return 1;
}
__setup("lsm=", choose_lsm_order);

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/* Enable LSM order debugging. */
static int __init enable_debug(char *str)
{
	debug = true;
	return 1;
}
__setup("lsm.debug", enable_debug);

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static bool match_last_lsm(const char *list, const char *lsm)
{
	const char *last;

	if (WARN_ON(!list || !lsm))
		return false;
	last = strrchr(list, ',');
	if (last)
		/* Pass the comma, strcmp() will check for '\0' */
		last++;
	else
		last = list;
	return !strcmp(last, lsm);
}

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static int lsm_append(const char *new, char **result)
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{
	char *cp;

	if (*result == NULL) {
		*result = kstrdup(new, GFP_KERNEL);
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		if (*result == NULL)
			return -ENOMEM;
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	} else {
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		/* Check if it is the last registered name */
		if (match_last_lsm(*result, new))
			return 0;
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		cp = kasprintf(GFP_KERNEL, "%s,%s", *result, new);
		if (cp == NULL)
			return -ENOMEM;
		kfree(*result);
		*result = cp;
	}
	return 0;
}

/**
 * security_add_hooks - Add a modules hooks to the hook lists.
 * @hooks: the hooks to add
 * @count: the number of hooks to add
 * @lsm: the name of the security module
 *
 * Each LSM has to register its hooks with the infrastructure.
 */
void __init security_add_hooks(struct security_hook_list *hooks, int count,
				char *lsm)
{
	int i;

	for (i = 0; i < count; i++) {
		hooks[i].lsm = lsm;
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		hlist_add_tail_rcu(&hooks[i].list, hooks[i].head);
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	}
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	/*
	 * Don't try to append during early_security_init(), we'll come back
	 * and fix this up afterwards.
	 */
	if (slab_is_available()) {
		if (lsm_append(lsm, &lsm_names) < 0)
			panic("%s - Cannot get early memory.\n", __func__);
	}
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}

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int call_blocking_lsm_notifier(enum lsm_event event, void *data)
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{
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	return blocking_notifier_call_chain(&blocking_lsm_notifier_chain,
					    event, data);
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}
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EXPORT_SYMBOL(call_blocking_lsm_notifier);
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int register_blocking_lsm_notifier(struct notifier_block *nb)
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{
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	return blocking_notifier_chain_register(&blocking_lsm_notifier_chain,
						nb);
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}
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EXPORT_SYMBOL(register_blocking_lsm_notifier);
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int unregister_blocking_lsm_notifier(struct notifier_block *nb)
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{
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	return blocking_notifier_chain_unregister(&blocking_lsm_notifier_chain,
						  nb);
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}
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EXPORT_SYMBOL(unregister_blocking_lsm_notifier);
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/**
 * lsm_cred_alloc - allocate a composite cred blob
 * @cred: the cred that needs a blob
 * @gfp: allocation type
 *
 * Allocate the cred blob for all the modules
 *
 * Returns 0, or -ENOMEM if memory can't be allocated.
 */
static int lsm_cred_alloc(struct cred *cred, gfp_t gfp)
{
	if (blob_sizes.lbs_cred == 0) {
		cred->security = NULL;
		return 0;
	}

	cred->security = kzalloc(blob_sizes.lbs_cred, gfp);
	if (cred->security == NULL)
		return -ENOMEM;
	return 0;
}

/**
 * lsm_early_cred - during initialization allocate a composite cred blob
 * @cred: the cred that needs a blob
 *
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 * Allocate the cred blob for all the modules
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 */
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static void __init lsm_early_cred(struct cred *cred)
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{
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	int rc = lsm_cred_alloc(cred, GFP_KERNEL);
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	if (rc)
		panic("%s: Early cred alloc failed.\n", __func__);
}

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/**
 * lsm_file_alloc - allocate a composite file blob
 * @file: the file that needs a blob
 *
 * Allocate the file blob for all the modules
 *
 * Returns 0, or -ENOMEM if memory can't be allocated.
 */
static int lsm_file_alloc(struct file *file)
{
	if (!lsm_file_cache) {
		file->f_security = NULL;
		return 0;
	}

	file->f_security = kmem_cache_zalloc(lsm_file_cache, GFP_KERNEL);
	if (file->f_security == NULL)
		return -ENOMEM;
	return 0;
}

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/**
 * lsm_inode_alloc - allocate a composite inode blob
 * @inode: the inode that needs a blob
 *
 * Allocate the inode blob for all the modules
 *
 * Returns 0, or -ENOMEM if memory can't be allocated.
 */
int lsm_inode_alloc(struct inode *inode)
{
	if (!lsm_inode_cache) {
		inode->i_security = NULL;
		return 0;
	}

	inode->i_security = kmem_cache_zalloc(lsm_inode_cache, GFP_NOFS);
	if (inode->i_security == NULL)
		return -ENOMEM;
	return 0;
}

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/**
 * lsm_task_alloc - allocate a composite task blob
 * @task: the task that needs a blob
 *
 * Allocate the task blob for all the modules
 *
 * Returns 0, or -ENOMEM if memory can't be allocated.
 */
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static int lsm_task_alloc(struct task_struct *task)
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{
	if (blob_sizes.lbs_task == 0) {
		task->security = NULL;
		return 0;
	}

	task->security = kzalloc(blob_sizes.lbs_task, GFP_KERNEL);
	if (task->security == NULL)
		return -ENOMEM;
	return 0;
}

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/**
 * lsm_ipc_alloc - allocate a composite ipc blob
 * @kip: the ipc that needs a blob
 *
 * Allocate the ipc blob for all the modules
 *
 * Returns 0, or -ENOMEM if memory can't be allocated.
 */
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static int lsm_ipc_alloc(struct kern_ipc_perm *kip)
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{
	if (blob_sizes.lbs_ipc == 0) {
		kip->security = NULL;
		return 0;
	}

	kip->security = kzalloc(blob_sizes.lbs_ipc, GFP_KERNEL);
	if (kip->security == NULL)
		return -ENOMEM;
	return 0;
}

/**
 * lsm_msg_msg_alloc - allocate a composite msg_msg blob
 * @mp: the msg_msg that needs a blob
 *
 * Allocate the ipc blob for all the modules
 *
 * Returns 0, or -ENOMEM if memory can't be allocated.
 */
W
Wei Yongjun 已提交
644
static int lsm_msg_msg_alloc(struct msg_msg *mp)
645 646 647 648 649 650 651 652 653 654 655 656
{
	if (blob_sizes.lbs_msg_msg == 0) {
		mp->security = NULL;
		return 0;
	}

	mp->security = kzalloc(blob_sizes.lbs_msg_msg, GFP_KERNEL);
	if (mp->security == NULL)
		return -ENOMEM;
	return 0;
}

657 658 659 660
/**
 * lsm_early_task - during initialization allocate a composite task blob
 * @task: the task that needs a blob
 *
661
 * Allocate the task blob for all the modules
662
 */
663
static void __init lsm_early_task(struct task_struct *task)
664
{
665
	int rc = lsm_task_alloc(task);
666 667 668 669 670

	if (rc)
		panic("%s: Early task alloc failed.\n", __func__);
}

671 672 673 674 675 676 677 678 679 680 681 682 683 684 685 686 687 688 689
/*
 * The default value of the LSM hook is defined in linux/lsm_hook_defs.h and
 * can be accessed with:
 *
 *	LSM_RET_DEFAULT(<hook_name>)
 *
 * The macros below define static constants for the default value of each
 * LSM hook.
 */
#define LSM_RET_DEFAULT(NAME) (NAME##_default)
#define DECLARE_LSM_RET_DEFAULT_void(DEFAULT, NAME)
#define DECLARE_LSM_RET_DEFAULT_int(DEFAULT, NAME) \
	static const int LSM_RET_DEFAULT(NAME) = (DEFAULT);
#define LSM_HOOK(RET, DEFAULT, NAME, ...) \
	DECLARE_LSM_RET_DEFAULT_##RET(DEFAULT, NAME)

#include <linux/lsm_hook_defs.h>
#undef LSM_HOOK

690
/*
C
Casey Schaufler 已提交
691
 * Hook list operation macros.
L
Linus Torvalds 已提交
692
 *
693 694
 * call_void_hook:
 *	This is a hook that does not return a value.
L
Linus Torvalds 已提交
695
 *
696 697
 * call_int_hook:
 *	This is a hook that returns a value.
L
Linus Torvalds 已提交
698 699
 */

C
Casey Schaufler 已提交
700 701 702 703
#define call_void_hook(FUNC, ...)				\
	do {							\
		struct security_hook_list *P;			\
								\
704
		hlist_for_each_entry(P, &security_hook_heads.FUNC, list) \
C
Casey Schaufler 已提交
705 706 707 708 709 710 711 712
			P->hook.FUNC(__VA_ARGS__);		\
	} while (0)

#define call_int_hook(FUNC, IRC, ...) ({			\
	int RC = IRC;						\
	do {							\
		struct security_hook_list *P;			\
								\
713
		hlist_for_each_entry(P, &security_hook_heads.FUNC, list) { \
C
Casey Schaufler 已提交
714 715 716 717 718 719 720
			RC = P->hook.FUNC(__VA_ARGS__);		\
			if (RC != 0)				\
				break;				\
		}						\
	} while (0);						\
	RC;							\
})
L
Linus Torvalds 已提交
721

722 723
/* Security operations */

724 725
int security_binder_set_context_mgr(struct task_struct *mgr)
{
726
	return call_int_hook(binder_set_context_mgr, 0, mgr);
727 728 729 730 731
}

int security_binder_transaction(struct task_struct *from,
				struct task_struct *to)
{
732
	return call_int_hook(binder_transaction, 0, from, to);
733 734 735 736 737
}

int security_binder_transfer_binder(struct task_struct *from,
				    struct task_struct *to)
{
738
	return call_int_hook(binder_transfer_binder, 0, from, to);
739 740 741 742 743
}

int security_binder_transfer_file(struct task_struct *from,
				  struct task_struct *to, struct file *file)
{
744
	return call_int_hook(binder_transfer_file, 0, from, to, file);
745 746
}

747
int security_ptrace_access_check(struct task_struct *child, unsigned int mode)
748
{
749
	return call_int_hook(ptrace_access_check, 0, child, mode);
750 751 752 753
}

int security_ptrace_traceme(struct task_struct *parent)
{
754
	return call_int_hook(ptrace_traceme, 0, parent);
755 756 757 758 759 760 761
}

int security_capget(struct task_struct *target,
		     kernel_cap_t *effective,
		     kernel_cap_t *inheritable,
		     kernel_cap_t *permitted)
{
762 763
	return call_int_hook(capget, 0, target,
				effective, inheritable, permitted);
764 765
}

D
David Howells 已提交
766 767 768 769
int security_capset(struct cred *new, const struct cred *old,
		    const kernel_cap_t *effective,
		    const kernel_cap_t *inheritable,
		    const kernel_cap_t *permitted)
770
{
771 772
	return call_int_hook(capset, 0, new, old,
				effective, inheritable, permitted);
773 774
}

775 776 777 778
int security_capable(const struct cred *cred,
		     struct user_namespace *ns,
		     int cap,
		     unsigned int opts)
779
{
780
	return call_int_hook(capable, 0, cred, ns, cap, opts);
781 782 783 784
}

int security_quotactl(int cmds, int type, int id, struct super_block *sb)
{
785
	return call_int_hook(quotactl, 0, cmds, type, id, sb);
786 787 788 789
}

int security_quota_on(struct dentry *dentry)
{
790
	return call_int_hook(quota_on, 0, dentry);
791 792
}

793
int security_syslog(int type)
794
{
795
	return call_int_hook(syslog, 0, type);
796 797
}

798
int security_settime64(const struct timespec64 *ts, const struct timezone *tz)
799
{
800
	return call_int_hook(settime, 0, ts, tz);
801 802 803 804
}

int security_vm_enough_memory_mm(struct mm_struct *mm, long pages)
{
C
Casey Schaufler 已提交
805 806 807 808 809 810 811 812 813 814 815
	struct security_hook_list *hp;
	int cap_sys_admin = 1;
	int rc;

	/*
	 * The module will respond with a positive value if
	 * it thinks the __vm_enough_memory() call should be
	 * made with the cap_sys_admin set. If all of the modules
	 * agree that it should be set it will. If any module
	 * thinks it should not be set it won't.
	 */
816
	hlist_for_each_entry(hp, &security_hook_heads.vm_enough_memory, list) {
C
Casey Schaufler 已提交
817 818 819 820 821 822 823
		rc = hp->hook.vm_enough_memory(mm, pages);
		if (rc <= 0) {
			cap_sys_admin = 0;
			break;
		}
	}
	return __vm_enough_memory(mm, pages, cap_sys_admin);
824 825
}

826
int security_bprm_set_creds(struct linux_binprm *bprm)
827
{
828
	return call_int_hook(bprm_set_creds, 0, bprm);
829 830
}

831
int security_bprm_check(struct linux_binprm *bprm)
832
{
833 834
	int ret;

835
	ret = call_int_hook(bprm_check_security, 0, bprm);
836 837 838
	if (ret)
		return ret;
	return ima_bprm_check(bprm);
839 840
}

841
void security_bprm_committing_creds(struct linux_binprm *bprm)
842
{
843
	call_void_hook(bprm_committing_creds, bprm);
844 845
}

846
void security_bprm_committed_creds(struct linux_binprm *bprm)
847
{
848
	call_void_hook(bprm_committed_creds, bprm);
849 850
}

A
Al Viro 已提交
851 852 853 854 855
int security_fs_context_dup(struct fs_context *fc, struct fs_context *src_fc)
{
	return call_int_hook(fs_context_dup, 0, fc, src_fc);
}

856 857 858 859 860
int security_fs_context_parse_param(struct fs_context *fc, struct fs_parameter *param)
{
	return call_int_hook(fs_context_parse_param, -ENOPARAM, fc, param);
}

861 862
int security_sb_alloc(struct super_block *sb)
{
863
	return call_int_hook(sb_alloc_security, 0, sb);
864 865 866 867
}

void security_sb_free(struct super_block *sb)
{
868
	call_void_hook(sb_free_security, sb);
869 870
}

871
void security_free_mnt_opts(void **mnt_opts)
872
{
873 874 875 876
	if (!*mnt_opts)
		return;
	call_void_hook(sb_free_mnt_opts, *mnt_opts);
	*mnt_opts = NULL;
877
}
878
EXPORT_SYMBOL(security_free_mnt_opts);
879

880
int security_sb_eat_lsm_opts(char *options, void **mnt_opts)
881
{
882
	return call_int_hook(sb_eat_lsm_opts, 0, options, mnt_opts);
883
}
A
Al Viro 已提交
884
EXPORT_SYMBOL(security_sb_eat_lsm_opts);
885

886
int security_sb_remount(struct super_block *sb,
887
			void *mnt_opts)
888
{
889
	return call_int_hook(sb_remount, 0, sb, mnt_opts);
890
}
A
Al Viro 已提交
891
EXPORT_SYMBOL(security_sb_remount);
892

893
int security_sb_kern_mount(struct super_block *sb)
894
{
895
	return call_int_hook(sb_kern_mount, 0, sb);
896 897
}

898 899
int security_sb_show_options(struct seq_file *m, struct super_block *sb)
{
900
	return call_int_hook(sb_show_options, 0, m, sb);
901 902
}

903 904
int security_sb_statfs(struct dentry *dentry)
{
905
	return call_int_hook(sb_statfs, 0, dentry);
906 907
}

A
Al Viro 已提交
908
int security_sb_mount(const char *dev_name, const struct path *path,
A
Al Viro 已提交
909
                       const char *type, unsigned long flags, void *data)
910
{
911
	return call_int_hook(sb_mount, 0, dev_name, path, type, flags, data);
912 913 914 915
}

int security_sb_umount(struct vfsmount *mnt, int flags)
{
916
	return call_int_hook(sb_umount, 0, mnt, flags);
917 918
}

A
Al Viro 已提交
919
int security_sb_pivotroot(const struct path *old_path, const struct path *new_path)
920
{
921
	return call_int_hook(sb_pivotroot, 0, old_path, new_path);
922 923
}

924
int security_sb_set_mnt_opts(struct super_block *sb,
925
				void *mnt_opts,
926 927
				unsigned long kern_flags,
				unsigned long *set_kern_flags)
928
{
C
Casey Schaufler 已提交
929
	return call_int_hook(sb_set_mnt_opts,
930 931
				mnt_opts ? -EOPNOTSUPP : 0, sb,
				mnt_opts, kern_flags, set_kern_flags);
932
}
933
EXPORT_SYMBOL(security_sb_set_mnt_opts);
934

935
int security_sb_clone_mnt_opts(const struct super_block *oldsb,
936 937 938
				struct super_block *newsb,
				unsigned long kern_flags,
				unsigned long *set_kern_flags)
939
{
940 941
	return call_int_hook(sb_clone_mnt_opts, 0, oldsb, newsb,
				kern_flags, set_kern_flags);
942
}
943 944
EXPORT_SYMBOL(security_sb_clone_mnt_opts);

A
Al Viro 已提交
945 946
int security_add_mnt_opt(const char *option, const char *val, int len,
			 void **mnt_opts)
947
{
A
Al Viro 已提交
948 949
	return call_int_hook(sb_add_mnt_opt, -EINVAL,
					option, val, len, mnt_opts);
950
}
A
Al Viro 已提交
951
EXPORT_SYMBOL(security_add_mnt_opt);
952

953 954 955 956 957
int security_move_mount(const struct path *from_path, const struct path *to_path)
{
	return call_int_hook(move_mount, 0, from_path, to_path);
}

958 959 960 961 962 963
int security_path_notify(const struct path *path, u64 mask,
				unsigned int obj_type)
{
	return call_int_hook(path_notify, 0, path, mask, obj_type);
}

964 965
int security_inode_alloc(struct inode *inode)
{
966 967 968 969 970 971 972 973 974 975 976 977 978 979 980 981
	int rc = lsm_inode_alloc(inode);

	if (unlikely(rc))
		return rc;
	rc = call_int_hook(inode_alloc_security, 0, inode);
	if (unlikely(rc))
		security_inode_free(inode);
	return rc;
}

static void inode_free_by_rcu(struct rcu_head *head)
{
	/*
	 * The rcu head is at the start of the inode blob
	 */
	kmem_cache_free(lsm_inode_cache, head);
982 983 984 985
}

void security_inode_free(struct inode *inode)
{
986
	integrity_inode_free(inode);
987
	call_void_hook(inode_free_security, inode);
988 989 990 991 992 993 994 995 996 997 998 999
	/*
	 * The inode may still be referenced in a path walk and
	 * a call to security_inode_permission() can be made
	 * after inode_free_security() is called. Ideally, the VFS
	 * wouldn't do this, but fixing that is a much harder
	 * job. For now, simply free the i_security via RCU, and
	 * leave the current inode->i_security pointer intact.
	 * The inode will be freed after the RCU grace period too.
	 */
	if (inode->i_security)
		call_rcu((struct rcu_head *)inode->i_security,
				inode_free_by_rcu);
1000 1001
}

1002
int security_dentry_init_security(struct dentry *dentry, int mode,
A
Al Viro 已提交
1003
					const struct qstr *name, void **ctx,
1004 1005
					u32 *ctxlen)
{
C
Casey Schaufler 已提交
1006 1007
	return call_int_hook(dentry_init_security, -EOPNOTSUPP, dentry, mode,
				name, ctx, ctxlen);
1008 1009 1010
}
EXPORT_SYMBOL(security_dentry_init_security);

1011 1012 1013 1014 1015 1016 1017 1018 1019
int security_dentry_create_files_as(struct dentry *dentry, int mode,
				    struct qstr *name,
				    const struct cred *old, struct cred *new)
{
	return call_int_hook(dentry_create_files_as, 0, dentry, mode,
				name, old, new);
}
EXPORT_SYMBOL(security_dentry_create_files_as);

1020
int security_inode_init_security(struct inode *inode, struct inode *dir,
1021 1022
				 const struct qstr *qstr,
				 const initxattrs initxattrs, void *fs_data)
1023
{
1024 1025
	struct xattr new_xattrs[MAX_LSM_EVM_XATTR + 1];
	struct xattr *lsm_xattr, *evm_xattr, *xattr;
1026 1027
	int ret;

1028
	if (unlikely(IS_PRIVATE(inode)))
1029
		return 0;
1030 1031

	if (!initxattrs)
1032 1033
		return call_int_hook(inode_init_security, -EOPNOTSUPP, inode,
				     dir, qstr, NULL, NULL, NULL);
1034
	memset(new_xattrs, 0, sizeof(new_xattrs));
1035
	lsm_xattr = new_xattrs;
C
Casey Schaufler 已提交
1036
	ret = call_int_hook(inode_init_security, -EOPNOTSUPP, inode, dir, qstr,
1037 1038 1039 1040 1041
						&lsm_xattr->name,
						&lsm_xattr->value,
						&lsm_xattr->value_len);
	if (ret)
		goto out;
1042 1043 1044 1045 1046

	evm_xattr = lsm_xattr + 1;
	ret = evm_inode_init_security(inode, lsm_xattr, evm_xattr);
	if (ret)
		goto out;
1047 1048
	ret = initxattrs(inode, new_xattrs, fs_data);
out:
1049
	for (xattr = new_xattrs; xattr->value != NULL; xattr++)
1050
		kfree(xattr->value);
1051 1052 1053 1054 1055
	return (ret == -EOPNOTSUPP) ? 0 : ret;
}
EXPORT_SYMBOL(security_inode_init_security);

int security_old_inode_init_security(struct inode *inode, struct inode *dir,
1056
				     const struct qstr *qstr, const char **name,
1057
				     void **value, size_t *len)
1058 1059
{
	if (unlikely(IS_PRIVATE(inode)))
1060
		return -EOPNOTSUPP;
1061 1062
	return call_int_hook(inode_init_security, -EOPNOTSUPP, inode, dir,
			     qstr, name, value, len);
1063
}
1064
EXPORT_SYMBOL(security_old_inode_init_security);
1065

1066
#ifdef CONFIG_SECURITY_PATH
1067
int security_path_mknod(const struct path *dir, struct dentry *dentry, umode_t mode,
1068 1069
			unsigned int dev)
{
1070
	if (unlikely(IS_PRIVATE(d_backing_inode(dir->dentry))))
1071
		return 0;
1072
	return call_int_hook(path_mknod, 0, dir, dentry, mode, dev);
1073 1074 1075
}
EXPORT_SYMBOL(security_path_mknod);

1076
int security_path_mkdir(const struct path *dir, struct dentry *dentry, umode_t mode)
1077
{
1078
	if (unlikely(IS_PRIVATE(d_backing_inode(dir->dentry))))
1079
		return 0;
1080
	return call_int_hook(path_mkdir, 0, dir, dentry, mode);
1081
}
1082
EXPORT_SYMBOL(security_path_mkdir);
1083

A
Al Viro 已提交
1084
int security_path_rmdir(const struct path *dir, struct dentry *dentry)
1085
{
1086
	if (unlikely(IS_PRIVATE(d_backing_inode(dir->dentry))))
1087
		return 0;
1088
	return call_int_hook(path_rmdir, 0, dir, dentry);
1089 1090
}

A
Al Viro 已提交
1091
int security_path_unlink(const struct path *dir, struct dentry *dentry)
1092
{
1093
	if (unlikely(IS_PRIVATE(d_backing_inode(dir->dentry))))
1094
		return 0;
1095
	return call_int_hook(path_unlink, 0, dir, dentry);
1096
}
1097
EXPORT_SYMBOL(security_path_unlink);
1098

1099
int security_path_symlink(const struct path *dir, struct dentry *dentry,
1100 1101
			  const char *old_name)
{
1102
	if (unlikely(IS_PRIVATE(d_backing_inode(dir->dentry))))
1103
		return 0;
1104
	return call_int_hook(path_symlink, 0, dir, dentry, old_name);
1105 1106
}

A
Al Viro 已提交
1107
int security_path_link(struct dentry *old_dentry, const struct path *new_dir,
1108 1109
		       struct dentry *new_dentry)
{
1110
	if (unlikely(IS_PRIVATE(d_backing_inode(old_dentry))))
1111
		return 0;
1112
	return call_int_hook(path_link, 0, old_dentry, new_dir, new_dentry);
1113 1114
}

A
Al Viro 已提交
1115 1116
int security_path_rename(const struct path *old_dir, struct dentry *old_dentry,
			 const struct path *new_dir, struct dentry *new_dentry,
1117
			 unsigned int flags)
1118
{
1119 1120
	if (unlikely(IS_PRIVATE(d_backing_inode(old_dentry)) ||
		     (d_is_positive(new_dentry) && IS_PRIVATE(d_backing_inode(new_dentry)))))
1121
		return 0;
M
Miklos Szeredi 已提交
1122 1123

	if (flags & RENAME_EXCHANGE) {
1124 1125
		int err = call_int_hook(path_rename, 0, new_dir, new_dentry,
					old_dir, old_dentry);
M
Miklos Szeredi 已提交
1126 1127 1128 1129
		if (err)
			return err;
	}

1130 1131
	return call_int_hook(path_rename, 0, old_dir, old_dentry, new_dir,
				new_dentry);
1132
}
1133
EXPORT_SYMBOL(security_path_rename);
1134

A
Al Viro 已提交
1135
int security_path_truncate(const struct path *path)
1136
{
1137
	if (unlikely(IS_PRIVATE(d_backing_inode(path->dentry))))
1138
		return 0;
1139
	return call_int_hook(path_truncate, 0, path);
1140
}
1141

1142
int security_path_chmod(const struct path *path, umode_t mode)
1143
{
1144
	if (unlikely(IS_PRIVATE(d_backing_inode(path->dentry))))
1145
		return 0;
1146
	return call_int_hook(path_chmod, 0, path, mode);
1147 1148
}

1149
int security_path_chown(const struct path *path, kuid_t uid, kgid_t gid)
1150
{
1151
	if (unlikely(IS_PRIVATE(d_backing_inode(path->dentry))))
1152
		return 0;
1153
	return call_int_hook(path_chown, 0, path, uid, gid);
1154
}
T
Tetsuo Handa 已提交
1155

A
Al Viro 已提交
1156
int security_path_chroot(const struct path *path)
T
Tetsuo Handa 已提交
1157
{
1158
	return call_int_hook(path_chroot, 0, path);
T
Tetsuo Handa 已提交
1159
}
1160 1161
#endif

A
Al Viro 已提交
1162
int security_inode_create(struct inode *dir, struct dentry *dentry, umode_t mode)
1163 1164 1165
{
	if (unlikely(IS_PRIVATE(dir)))
		return 0;
1166
	return call_int_hook(inode_create, 0, dir, dentry, mode);
1167
}
1168
EXPORT_SYMBOL_GPL(security_inode_create);
1169 1170 1171 1172

int security_inode_link(struct dentry *old_dentry, struct inode *dir,
			 struct dentry *new_dentry)
{
1173
	if (unlikely(IS_PRIVATE(d_backing_inode(old_dentry))))
1174
		return 0;
1175
	return call_int_hook(inode_link, 0, old_dentry, dir, new_dentry);
1176 1177 1178 1179
}

int security_inode_unlink(struct inode *dir, struct dentry *dentry)
{
1180
	if (unlikely(IS_PRIVATE(d_backing_inode(dentry))))
1181
		return 0;
1182
	return call_int_hook(inode_unlink, 0, dir, dentry);
1183 1184 1185 1186 1187 1188 1189
}

int security_inode_symlink(struct inode *dir, struct dentry *dentry,
			    const char *old_name)
{
	if (unlikely(IS_PRIVATE(dir)))
		return 0;
1190
	return call_int_hook(inode_symlink, 0, dir, dentry, old_name);
1191 1192
}

1193
int security_inode_mkdir(struct inode *dir, struct dentry *dentry, umode_t mode)
1194 1195 1196
{
	if (unlikely(IS_PRIVATE(dir)))
		return 0;
1197
	return call_int_hook(inode_mkdir, 0, dir, dentry, mode);
1198
}
1199
EXPORT_SYMBOL_GPL(security_inode_mkdir);
1200 1201 1202

int security_inode_rmdir(struct inode *dir, struct dentry *dentry)
{
1203
	if (unlikely(IS_PRIVATE(d_backing_inode(dentry))))
1204
		return 0;
1205
	return call_int_hook(inode_rmdir, 0, dir, dentry);
1206 1207
}

A
Al Viro 已提交
1208
int security_inode_mknod(struct inode *dir, struct dentry *dentry, umode_t mode, dev_t dev)
1209 1210 1211
{
	if (unlikely(IS_PRIVATE(dir)))
		return 0;
1212
	return call_int_hook(inode_mknod, 0, dir, dentry, mode, dev);
1213 1214 1215
}

int security_inode_rename(struct inode *old_dir, struct dentry *old_dentry,
1216 1217
			   struct inode *new_dir, struct dentry *new_dentry,
			   unsigned int flags)
1218
{
1219 1220
        if (unlikely(IS_PRIVATE(d_backing_inode(old_dentry)) ||
            (d_is_positive(new_dentry) && IS_PRIVATE(d_backing_inode(new_dentry)))))
1221
		return 0;
M
Miklos Szeredi 已提交
1222 1223

	if (flags & RENAME_EXCHANGE) {
1224
		int err = call_int_hook(inode_rename, 0, new_dir, new_dentry,
M
Miklos Szeredi 已提交
1225 1226 1227 1228 1229
						     old_dir, old_dentry);
		if (err)
			return err;
	}

1230
	return call_int_hook(inode_rename, 0, old_dir, old_dentry,
1231 1232 1233 1234 1235
					   new_dir, new_dentry);
}

int security_inode_readlink(struct dentry *dentry)
{
1236
	if (unlikely(IS_PRIVATE(d_backing_inode(dentry))))
1237
		return 0;
1238
	return call_int_hook(inode_readlink, 0, dentry);
1239 1240
}

1241 1242
int security_inode_follow_link(struct dentry *dentry, struct inode *inode,
			       bool rcu)
1243
{
1244
	if (unlikely(IS_PRIVATE(inode)))
1245
		return 0;
1246
	return call_int_hook(inode_follow_link, 0, dentry, inode, rcu);
1247 1248
}

1249
int security_inode_permission(struct inode *inode, int mask)
1250 1251 1252
{
	if (unlikely(IS_PRIVATE(inode)))
		return 0;
1253
	return call_int_hook(inode_permission, 0, inode, mask);
1254 1255 1256 1257
}

int security_inode_setattr(struct dentry *dentry, struct iattr *attr)
{
1258 1259
	int ret;

1260
	if (unlikely(IS_PRIVATE(d_backing_inode(dentry))))
1261
		return 0;
1262
	ret = call_int_hook(inode_setattr, 0, dentry, attr);
1263 1264 1265
	if (ret)
		return ret;
	return evm_inode_setattr(dentry, attr);
1266
}
1267
EXPORT_SYMBOL_GPL(security_inode_setattr);
1268

1269
int security_inode_getattr(const struct path *path)
1270
{
1271
	if (unlikely(IS_PRIVATE(d_backing_inode(path->dentry))))
1272
		return 0;
1273
	return call_int_hook(inode_getattr, 0, path);
1274 1275
}

1276 1277
int security_inode_setxattr(struct dentry *dentry, const char *name,
			    const void *value, size_t size, int flags)
1278
{
1279 1280
	int ret;

1281
	if (unlikely(IS_PRIVATE(d_backing_inode(dentry))))
1282
		return 0;
C
Casey Schaufler 已提交
1283 1284 1285 1286 1287
	/*
	 * SELinux and Smack integrate the cap call,
	 * so assume that all LSMs supplying this call do so.
	 */
	ret = call_int_hook(inode_setxattr, 1, dentry, name, value, size,
1288
				flags);
C
Casey Schaufler 已提交
1289 1290 1291

	if (ret == 1)
		ret = cap_inode_setxattr(dentry, name, value, size, flags);
1292 1293 1294
	if (ret)
		return ret;
	ret = ima_inode_setxattr(dentry, name, value, size);
1295 1296 1297
	if (ret)
		return ret;
	return evm_inode_setxattr(dentry, name, value, size);
1298 1299
}

1300 1301
void security_inode_post_setxattr(struct dentry *dentry, const char *name,
				  const void *value, size_t size, int flags)
1302
{
1303
	if (unlikely(IS_PRIVATE(d_backing_inode(dentry))))
1304
		return;
1305
	call_void_hook(inode_post_setxattr, dentry, name, value, size, flags);
1306
	evm_inode_post_setxattr(dentry, name, value, size);
1307 1308
}

1309
int security_inode_getxattr(struct dentry *dentry, const char *name)
1310
{
1311
	if (unlikely(IS_PRIVATE(d_backing_inode(dentry))))
1312
		return 0;
1313
	return call_int_hook(inode_getxattr, 0, dentry, name);
1314 1315 1316 1317
}

int security_inode_listxattr(struct dentry *dentry)
{
1318
	if (unlikely(IS_PRIVATE(d_backing_inode(dentry))))
1319
		return 0;
1320
	return call_int_hook(inode_listxattr, 0, dentry);
1321 1322
}

1323
int security_inode_removexattr(struct dentry *dentry, const char *name)
1324
{
1325 1326
	int ret;

1327
	if (unlikely(IS_PRIVATE(d_backing_inode(dentry))))
1328
		return 0;
C
Casey Schaufler 已提交
1329 1330 1331 1332 1333 1334 1335
	/*
	 * SELinux and Smack integrate the cap call,
	 * so assume that all LSMs supplying this call do so.
	 */
	ret = call_int_hook(inode_removexattr, 1, dentry, name);
	if (ret == 1)
		ret = cap_inode_removexattr(dentry, name);
1336 1337 1338
	if (ret)
		return ret;
	ret = ima_inode_removexattr(dentry, name);
1339 1340 1341
	if (ret)
		return ret;
	return evm_inode_removexattr(dentry, name);
1342 1343
}

1344 1345
int security_inode_need_killpriv(struct dentry *dentry)
{
1346
	return call_int_hook(inode_need_killpriv, 0, dentry);
1347 1348 1349 1350
}

int security_inode_killpriv(struct dentry *dentry)
{
1351
	return call_int_hook(inode_killpriv, 0, dentry);
1352 1353
}

1354
int security_inode_getsecurity(struct inode *inode, const char *name, void **buffer, bool alloc)
1355
{
1356 1357 1358
	struct security_hook_list *hp;
	int rc;

1359
	if (unlikely(IS_PRIVATE(inode)))
1360
		return LSM_RET_DEFAULT(inode_getsecurity);
1361 1362 1363
	/*
	 * Only one module will provide an attribute with a given name.
	 */
1364
	hlist_for_each_entry(hp, &security_hook_heads.inode_getsecurity, list) {
1365
		rc = hp->hook.inode_getsecurity(inode, name, buffer, alloc);
1366
		if (rc != LSM_RET_DEFAULT(inode_getsecurity))
1367 1368
			return rc;
	}
1369
	return LSM_RET_DEFAULT(inode_getsecurity);
1370 1371 1372 1373
}

int security_inode_setsecurity(struct inode *inode, const char *name, const void *value, size_t size, int flags)
{
1374 1375 1376
	struct security_hook_list *hp;
	int rc;

1377
	if (unlikely(IS_PRIVATE(inode)))
1378
		return LSM_RET_DEFAULT(inode_setsecurity);
1379 1380 1381
	/*
	 * Only one module will provide an attribute with a given name.
	 */
1382
	hlist_for_each_entry(hp, &security_hook_heads.inode_setsecurity, list) {
1383 1384
		rc = hp->hook.inode_setsecurity(inode, name, value, size,
								flags);
1385
		if (rc != LSM_RET_DEFAULT(inode_setsecurity))
1386 1387
			return rc;
	}
1388
	return LSM_RET_DEFAULT(inode_setsecurity);
1389 1390 1391 1392 1393 1394
}

int security_inode_listsecurity(struct inode *inode, char *buffer, size_t buffer_size)
{
	if (unlikely(IS_PRIVATE(inode)))
		return 0;
1395
	return call_int_hook(inode_listsecurity, 0, inode, buffer, buffer_size);
1396
}
1397
EXPORT_SYMBOL(security_inode_listsecurity);
1398

1399
void security_inode_getsecid(struct inode *inode, u32 *secid)
1400
{
1401
	call_void_hook(inode_getsecid, inode, secid);
1402 1403
}

1404 1405 1406 1407 1408 1409
int security_inode_copy_up(struct dentry *src, struct cred **new)
{
	return call_int_hook(inode_copy_up, 0, src, new);
}
EXPORT_SYMBOL(security_inode_copy_up);

1410 1411 1412 1413 1414 1415
int security_inode_copy_up_xattr(const char *name)
{
	return call_int_hook(inode_copy_up_xattr, -EOPNOTSUPP, name);
}
EXPORT_SYMBOL(security_inode_copy_up_xattr);

1416 1417 1418 1419 1420 1421
int security_kernfs_init_security(struct kernfs_node *kn_dir,
				  struct kernfs_node *kn)
{
	return call_int_hook(kernfs_init_security, 0, kn_dir, kn);
}

1422 1423
int security_file_permission(struct file *file, int mask)
{
1424 1425
	int ret;

1426
	ret = call_int_hook(file_permission, 0, file, mask);
1427 1428 1429 1430
	if (ret)
		return ret;

	return fsnotify_perm(file, mask);
1431 1432 1433 1434
}

int security_file_alloc(struct file *file)
{
1435 1436 1437 1438 1439 1440 1441 1442
	int rc = lsm_file_alloc(file);

	if (rc)
		return rc;
	rc = call_int_hook(file_alloc_security, 0, file);
	if (unlikely(rc))
		security_file_free(file);
	return rc;
1443 1444 1445 1446
}

void security_file_free(struct file *file)
{
1447 1448
	void *blob;

1449
	call_void_hook(file_free_security, file);
1450 1451 1452 1453 1454 1455

	blob = file->f_security;
	if (blob) {
		file->f_security = NULL;
		kmem_cache_free(lsm_file_cache, blob);
	}
1456 1457 1458 1459
}

int security_file_ioctl(struct file *file, unsigned int cmd, unsigned long arg)
{
1460
	return call_int_hook(file_ioctl, 0, file, cmd, arg);
1461 1462
}

1463
static inline unsigned long mmap_prot(struct file *file, unsigned long prot)
1464
{
1465
	/*
1466 1467
	 * Does we have PROT_READ and does the application expect
	 * it to imply PROT_EXEC?  If not, nothing to talk about...
1468
	 */
1469 1470
	if ((prot & (PROT_READ | PROT_EXEC)) != PROT_READ)
		return prot;
1471
	if (!(current->personality & READ_IMPLIES_EXEC))
1472 1473 1474 1475 1476 1477 1478 1479
		return prot;
	/*
	 * if that's an anonymous mapping, let it.
	 */
	if (!file)
		return prot | PROT_EXEC;
	/*
	 * ditto if it's not on noexec mount, except that on !MMU we need
1480
	 * NOMMU_MAP_EXEC (== VM_MAYEXEC) in this case
1481
	 */
1482
	if (!path_noexec(&file->f_path)) {
1483
#ifndef CONFIG_MMU
1484 1485 1486 1487 1488
		if (file->f_op->mmap_capabilities) {
			unsigned caps = file->f_op->mmap_capabilities(file);
			if (!(caps & NOMMU_MAP_EXEC))
				return prot;
		}
1489
#endif
1490
		return prot | PROT_EXEC;
1491
	}
1492 1493 1494 1495 1496 1497 1498 1499
	/* anything on noexec mount won't get PROT_EXEC */
	return prot;
}

int security_mmap_file(struct file *file, unsigned long prot,
			unsigned long flags)
{
	int ret;
1500
	ret = call_int_hook(mmap_file, 0, file, prot,
1501
					mmap_prot(file, prot), flags);
1502 1503 1504
	if (ret)
		return ret;
	return ima_file_mmap(file, prot);
1505 1506
}

1507 1508
int security_mmap_addr(unsigned long addr)
{
1509
	return call_int_hook(mmap_addr, 0, addr);
1510 1511
}

1512 1513 1514
int security_file_mprotect(struct vm_area_struct *vma, unsigned long reqprot,
			    unsigned long prot)
{
1515
	return call_int_hook(file_mprotect, 0, vma, reqprot, prot);
1516 1517 1518 1519
}

int security_file_lock(struct file *file, unsigned int cmd)
{
1520
	return call_int_hook(file_lock, 0, file, cmd);
1521 1522 1523 1524
}

int security_file_fcntl(struct file *file, unsigned int cmd, unsigned long arg)
{
1525
	return call_int_hook(file_fcntl, 0, file, cmd, arg);
1526 1527
}

1528
void security_file_set_fowner(struct file *file)
1529
{
1530
	call_void_hook(file_set_fowner, file);
1531 1532 1533 1534 1535
}

int security_file_send_sigiotask(struct task_struct *tsk,
				  struct fown_struct *fown, int sig)
{
1536
	return call_int_hook(file_send_sigiotask, 0, tsk, fown, sig);
1537 1538 1539 1540
}

int security_file_receive(struct file *file)
{
1541
	return call_int_hook(file_receive, 0, file);
1542 1543
}

1544
int security_file_open(struct file *file)
1545
{
1546 1547
	int ret;

A
Al Viro 已提交
1548
	ret = call_int_hook(file_open, 0, file);
1549 1550 1551 1552
	if (ret)
		return ret;

	return fsnotify_perm(file, MAY_OPEN);
1553 1554
}

1555 1556
int security_task_alloc(struct task_struct *task, unsigned long clone_flags)
{
1557 1558 1559 1560 1561 1562 1563 1564
	int rc = lsm_task_alloc(task);

	if (rc)
		return rc;
	rc = call_int_hook(task_alloc, 0, task, clone_flags);
	if (unlikely(rc))
		security_task_free(task);
	return rc;
1565 1566
}

1567 1568
void security_task_free(struct task_struct *task)
{
1569
	call_void_hook(task_free, task);
1570 1571 1572

	kfree(task->security);
	task->security = NULL;
1573 1574
}

1575 1576
int security_cred_alloc_blank(struct cred *cred, gfp_t gfp)
{
1577 1578 1579 1580 1581 1582
	int rc = lsm_cred_alloc(cred, gfp);

	if (rc)
		return rc;

	rc = call_int_hook(cred_alloc_blank, 0, cred, gfp);
1583
	if (unlikely(rc))
1584 1585
		security_cred_free(cred);
	return rc;
1586 1587
}

D
David Howells 已提交
1588
void security_cred_free(struct cred *cred)
1589
{
1590 1591 1592 1593 1594 1595 1596
	/*
	 * There is a failure case in prepare_creds() that
	 * may result in a call here with ->security being NULL.
	 */
	if (unlikely(cred->security == NULL))
		return;

1597
	call_void_hook(cred_free, cred);
1598 1599 1600

	kfree(cred->security);
	cred->security = NULL;
1601 1602
}

D
David Howells 已提交
1603
int security_prepare_creds(struct cred *new, const struct cred *old, gfp_t gfp)
1604
{
1605 1606 1607 1608 1609 1610
	int rc = lsm_cred_alloc(new, gfp);

	if (rc)
		return rc;

	rc = call_int_hook(cred_prepare, 0, new, old, gfp);
1611
	if (unlikely(rc))
1612 1613
		security_cred_free(new);
	return rc;
D
David Howells 已提交
1614 1615
}

1616 1617
void security_transfer_creds(struct cred *new, const struct cred *old)
{
1618
	call_void_hook(cred_transfer, new, old);
1619 1620
}

1621 1622 1623 1624 1625 1626 1627
void security_cred_getsecid(const struct cred *c, u32 *secid)
{
	*secid = 0;
	call_void_hook(cred_getsecid, c, secid);
}
EXPORT_SYMBOL(security_cred_getsecid);

1628 1629
int security_kernel_act_as(struct cred *new, u32 secid)
{
1630
	return call_int_hook(kernel_act_as, 0, new, secid);
1631 1632 1633 1634
}

int security_kernel_create_files_as(struct cred *new, struct inode *inode)
{
1635
	return call_int_hook(kernel_create_files_as, 0, new, inode);
1636 1637
}

1638
int security_kernel_module_request(char *kmod_name)
1639
{
1640 1641 1642 1643 1644 1645
	int ret;

	ret = call_int_hook(kernel_module_request, 0, kmod_name);
	if (ret)
		return ret;
	return integrity_kernel_module_request(kmod_name);
1646 1647
}

1648 1649 1650 1651 1652 1653 1654 1655 1656 1657 1658
int security_kernel_read_file(struct file *file, enum kernel_read_file_id id)
{
	int ret;

	ret = call_int_hook(kernel_read_file, 0, file, id);
	if (ret)
		return ret;
	return ima_read_file(file, id);
}
EXPORT_SYMBOL_GPL(security_kernel_read_file);

1659 1660
int security_kernel_post_read_file(struct file *file, char *buf, loff_t size,
				   enum kernel_read_file_id id)
1661
{
1662 1663 1664 1665 1666 1667
	int ret;

	ret = call_int_hook(kernel_post_read_file, 0, file, buf, size, id);
	if (ret)
		return ret;
	return ima_post_read_file(file, buf, size, id);
1668 1669 1670
}
EXPORT_SYMBOL_GPL(security_kernel_post_read_file);

1671 1672
int security_kernel_load_data(enum kernel_load_data_id id)
{
1673 1674 1675 1676 1677 1678
	int ret;

	ret = call_int_hook(kernel_load_data, 0, id);
	if (ret)
		return ret;
	return ima_load_data(id);
1679
}
1680
EXPORT_SYMBOL_GPL(security_kernel_load_data);
1681

D
David Howells 已提交
1682 1683
int security_task_fix_setuid(struct cred *new, const struct cred *old,
			     int flags)
1684
{
1685
	return call_int_hook(task_fix_setuid, 0, new, old, flags);
1686 1687 1688 1689
}

int security_task_setpgid(struct task_struct *p, pid_t pgid)
{
1690
	return call_int_hook(task_setpgid, 0, p, pgid);
1691 1692 1693 1694
}

int security_task_getpgid(struct task_struct *p)
{
1695
	return call_int_hook(task_getpgid, 0, p);
1696 1697 1698 1699
}

int security_task_getsid(struct task_struct *p)
{
1700
	return call_int_hook(task_getsid, 0, p);
1701 1702 1703 1704
}

void security_task_getsecid(struct task_struct *p, u32 *secid)
{
C
Casey Schaufler 已提交
1705
	*secid = 0;
1706
	call_void_hook(task_getsecid, p, secid);
1707 1708 1709 1710 1711
}
EXPORT_SYMBOL(security_task_getsecid);

int security_task_setnice(struct task_struct *p, int nice)
{
1712
	return call_int_hook(task_setnice, 0, p, nice);
1713 1714 1715 1716
}

int security_task_setioprio(struct task_struct *p, int ioprio)
{
1717
	return call_int_hook(task_setioprio, 0, p, ioprio);
1718 1719 1720 1721
}

int security_task_getioprio(struct task_struct *p)
{
1722
	return call_int_hook(task_getioprio, 0, p);
1723 1724
}

1725 1726 1727 1728 1729 1730
int security_task_prlimit(const struct cred *cred, const struct cred *tcred,
			  unsigned int flags)
{
	return call_int_hook(task_prlimit, 0, cred, tcred, flags);
}

1731 1732
int security_task_setrlimit(struct task_struct *p, unsigned int resource,
		struct rlimit *new_rlim)
1733
{
1734
	return call_int_hook(task_setrlimit, 0, p, resource, new_rlim);
1735 1736
}

1737
int security_task_setscheduler(struct task_struct *p)
1738
{
1739
	return call_int_hook(task_setscheduler, 0, p);
1740 1741 1742 1743
}

int security_task_getscheduler(struct task_struct *p)
{
1744
	return call_int_hook(task_getscheduler, 0, p);
1745 1746 1747 1748
}

int security_task_movememory(struct task_struct *p)
{
1749
	return call_int_hook(task_movememory, 0, p);
1750 1751
}

1752
int security_task_kill(struct task_struct *p, struct kernel_siginfo *info,
1753
			int sig, const struct cred *cred)
1754
{
1755
	return call_int_hook(task_kill, 0, p, info, sig, cred);
1756 1757 1758
}

int security_task_prctl(int option, unsigned long arg2, unsigned long arg3,
D
David Howells 已提交
1759
			 unsigned long arg4, unsigned long arg5)
1760
{
C
Casey Schaufler 已提交
1761
	int thisrc;
1762
	int rc = LSM_RET_DEFAULT(task_prctl);
C
Casey Schaufler 已提交
1763 1764
	struct security_hook_list *hp;

1765
	hlist_for_each_entry(hp, &security_hook_heads.task_prctl, list) {
C
Casey Schaufler 已提交
1766
		thisrc = hp->hook.task_prctl(option, arg2, arg3, arg4, arg5);
1767
		if (thisrc != LSM_RET_DEFAULT(task_prctl)) {
C
Casey Schaufler 已提交
1768 1769 1770 1771 1772 1773
			rc = thisrc;
			if (thisrc != 0)
				break;
		}
	}
	return rc;
1774 1775 1776 1777
}

void security_task_to_inode(struct task_struct *p, struct inode *inode)
{
1778
	call_void_hook(task_to_inode, p, inode);
1779 1780 1781 1782
}

int security_ipc_permission(struct kern_ipc_perm *ipcp, short flag)
{
1783
	return call_int_hook(ipc_permission, 0, ipcp, flag);
1784 1785
}

1786 1787
void security_ipc_getsecid(struct kern_ipc_perm *ipcp, u32 *secid)
{
C
Casey Schaufler 已提交
1788
	*secid = 0;
1789
	call_void_hook(ipc_getsecid, ipcp, secid);
1790 1791
}

1792 1793
int security_msg_msg_alloc(struct msg_msg *msg)
{
1794 1795 1796 1797 1798 1799 1800 1801
	int rc = lsm_msg_msg_alloc(msg);

	if (unlikely(rc))
		return rc;
	rc = call_int_hook(msg_msg_alloc_security, 0, msg);
	if (unlikely(rc))
		security_msg_msg_free(msg);
	return rc;
1802 1803 1804 1805
}

void security_msg_msg_free(struct msg_msg *msg)
{
1806
	call_void_hook(msg_msg_free_security, msg);
1807 1808
	kfree(msg->security);
	msg->security = NULL;
1809 1810
}

1811
int security_msg_queue_alloc(struct kern_ipc_perm *msq)
1812
{
1813 1814 1815 1816 1817 1818 1819 1820
	int rc = lsm_ipc_alloc(msq);

	if (unlikely(rc))
		return rc;
	rc = call_int_hook(msg_queue_alloc_security, 0, msq);
	if (unlikely(rc))
		security_msg_queue_free(msq);
	return rc;
1821 1822
}

1823
void security_msg_queue_free(struct kern_ipc_perm *msq)
1824
{
1825
	call_void_hook(msg_queue_free_security, msq);
1826 1827
	kfree(msq->security);
	msq->security = NULL;
1828 1829
}

1830
int security_msg_queue_associate(struct kern_ipc_perm *msq, int msqflg)
1831
{
1832
	return call_int_hook(msg_queue_associate, 0, msq, msqflg);
1833 1834
}

1835
int security_msg_queue_msgctl(struct kern_ipc_perm *msq, int cmd)
1836
{
1837
	return call_int_hook(msg_queue_msgctl, 0, msq, cmd);
1838 1839
}

1840
int security_msg_queue_msgsnd(struct kern_ipc_perm *msq,
1841 1842
			       struct msg_msg *msg, int msqflg)
{
1843
	return call_int_hook(msg_queue_msgsnd, 0, msq, msg, msqflg);
1844 1845
}

1846
int security_msg_queue_msgrcv(struct kern_ipc_perm *msq, struct msg_msg *msg,
1847 1848
			       struct task_struct *target, long type, int mode)
{
1849
	return call_int_hook(msg_queue_msgrcv, 0, msq, msg, target, type, mode);
1850 1851
}

1852
int security_shm_alloc(struct kern_ipc_perm *shp)
1853
{
1854 1855 1856 1857 1858 1859 1860 1861
	int rc = lsm_ipc_alloc(shp);

	if (unlikely(rc))
		return rc;
	rc = call_int_hook(shm_alloc_security, 0, shp);
	if (unlikely(rc))
		security_shm_free(shp);
	return rc;
1862 1863
}

1864
void security_shm_free(struct kern_ipc_perm *shp)
1865
{
1866
	call_void_hook(shm_free_security, shp);
1867 1868
	kfree(shp->security);
	shp->security = NULL;
1869 1870
}

1871
int security_shm_associate(struct kern_ipc_perm *shp, int shmflg)
1872
{
1873
	return call_int_hook(shm_associate, 0, shp, shmflg);
1874 1875
}

1876
int security_shm_shmctl(struct kern_ipc_perm *shp, int cmd)
1877
{
1878
	return call_int_hook(shm_shmctl, 0, shp, cmd);
1879 1880
}

1881
int security_shm_shmat(struct kern_ipc_perm *shp, char __user *shmaddr, int shmflg)
1882
{
1883
	return call_int_hook(shm_shmat, 0, shp, shmaddr, shmflg);
1884 1885
}

1886
int security_sem_alloc(struct kern_ipc_perm *sma)
1887
{
1888 1889 1890 1891 1892 1893 1894 1895
	int rc = lsm_ipc_alloc(sma);

	if (unlikely(rc))
		return rc;
	rc = call_int_hook(sem_alloc_security, 0, sma);
	if (unlikely(rc))
		security_sem_free(sma);
	return rc;
1896 1897
}

1898
void security_sem_free(struct kern_ipc_perm *sma)
1899
{
1900
	call_void_hook(sem_free_security, sma);
1901 1902
	kfree(sma->security);
	sma->security = NULL;
1903 1904
}

1905
int security_sem_associate(struct kern_ipc_perm *sma, int semflg)
1906
{
1907
	return call_int_hook(sem_associate, 0, sma, semflg);
1908 1909
}

1910
int security_sem_semctl(struct kern_ipc_perm *sma, int cmd)
1911
{
1912
	return call_int_hook(sem_semctl, 0, sma, cmd);
1913 1914
}

1915
int security_sem_semop(struct kern_ipc_perm *sma, struct sembuf *sops,
1916 1917
			unsigned nsops, int alter)
{
1918
	return call_int_hook(sem_semop, 0, sma, sops, nsops, alter);
1919 1920 1921 1922 1923 1924
}

void security_d_instantiate(struct dentry *dentry, struct inode *inode)
{
	if (unlikely(inode && IS_PRIVATE(inode)))
		return;
1925
	call_void_hook(d_instantiate, dentry, inode);
1926 1927 1928
}
EXPORT_SYMBOL(security_d_instantiate);

1929 1930
int security_getprocattr(struct task_struct *p, const char *lsm, char *name,
				char **value)
1931
{
1932 1933 1934 1935 1936 1937 1938
	struct security_hook_list *hp;

	hlist_for_each_entry(hp, &security_hook_heads.getprocattr, list) {
		if (lsm != NULL && strcmp(lsm, hp->lsm))
			continue;
		return hp->hook.getprocattr(p, name, value);
	}
1939
	return LSM_RET_DEFAULT(getprocattr);
1940 1941
}

1942 1943
int security_setprocattr(const char *lsm, const char *name, void *value,
			 size_t size)
1944
{
1945 1946 1947 1948 1949 1950 1951
	struct security_hook_list *hp;

	hlist_for_each_entry(hp, &security_hook_heads.setprocattr, list) {
		if (lsm != NULL && strcmp(lsm, hp->lsm))
			continue;
		return hp->hook.setprocattr(name, value, size);
	}
1952
	return LSM_RET_DEFAULT(setprocattr);
1953 1954 1955 1956
}

int security_netlink_send(struct sock *sk, struct sk_buff *skb)
{
1957
	return call_int_hook(netlink_send, 0, sk, skb);
1958 1959
}

1960 1961
int security_ismaclabel(const char *name)
{
1962
	return call_int_hook(ismaclabel, 0, name);
1963 1964 1965
}
EXPORT_SYMBOL(security_ismaclabel);

1966 1967
int security_secid_to_secctx(u32 secid, char **secdata, u32 *seclen)
{
C
Casey Schaufler 已提交
1968 1969
	return call_int_hook(secid_to_secctx, -EOPNOTSUPP, secid, secdata,
				seclen);
1970 1971 1972
}
EXPORT_SYMBOL(security_secid_to_secctx);

1973
int security_secctx_to_secid(const char *secdata, u32 seclen, u32 *secid)
1974
{
C
Casey Schaufler 已提交
1975
	*secid = 0;
1976
	return call_int_hook(secctx_to_secid, 0, secdata, seclen, secid);
1977 1978 1979
}
EXPORT_SYMBOL(security_secctx_to_secid);

1980 1981
void security_release_secctx(char *secdata, u32 seclen)
{
1982
	call_void_hook(release_secctx, secdata, seclen);
1983 1984 1985
}
EXPORT_SYMBOL(security_release_secctx);

1986 1987 1988 1989 1990 1991
void security_inode_invalidate_secctx(struct inode *inode)
{
	call_void_hook(inode_invalidate_secctx, inode);
}
EXPORT_SYMBOL(security_inode_invalidate_secctx);

1992 1993
int security_inode_notifysecctx(struct inode *inode, void *ctx, u32 ctxlen)
{
1994
	return call_int_hook(inode_notifysecctx, 0, inode, ctx, ctxlen);
1995 1996 1997 1998 1999
}
EXPORT_SYMBOL(security_inode_notifysecctx);

int security_inode_setsecctx(struct dentry *dentry, void *ctx, u32 ctxlen)
{
2000
	return call_int_hook(inode_setsecctx, 0, dentry, ctx, ctxlen);
2001 2002 2003 2004 2005
}
EXPORT_SYMBOL(security_inode_setsecctx);

int security_inode_getsecctx(struct inode *inode, void **ctx, u32 *ctxlen)
{
C
Casey Schaufler 已提交
2006
	return call_int_hook(inode_getsecctx, -EOPNOTSUPP, inode, ctx, ctxlen);
2007 2008 2009
}
EXPORT_SYMBOL(security_inode_getsecctx);

2010 2011 2012 2013 2014 2015 2016 2017 2018
#ifdef CONFIG_WATCH_QUEUE
int security_post_notification(const struct cred *w_cred,
			       const struct cred *cred,
			       struct watch_notification *n)
{
	return call_int_hook(post_notification, 0, w_cred, cred, n);
}
#endif /* CONFIG_WATCH_QUEUE */

2019 2020 2021 2022 2023 2024 2025
#ifdef CONFIG_KEY_NOTIFICATIONS
int security_watch_key(struct key *key)
{
	return call_int_hook(watch_key, 0, key);
}
#endif

2026 2027
#ifdef CONFIG_SECURITY_NETWORK

2028
int security_unix_stream_connect(struct sock *sock, struct sock *other, struct sock *newsk)
2029
{
2030
	return call_int_hook(unix_stream_connect, 0, sock, other, newsk);
2031 2032 2033 2034 2035
}
EXPORT_SYMBOL(security_unix_stream_connect);

int security_unix_may_send(struct socket *sock,  struct socket *other)
{
2036
	return call_int_hook(unix_may_send, 0, sock, other);
2037 2038 2039 2040 2041
}
EXPORT_SYMBOL(security_unix_may_send);

int security_socket_create(int family, int type, int protocol, int kern)
{
2042
	return call_int_hook(socket_create, 0, family, type, protocol, kern);
2043 2044 2045 2046 2047
}

int security_socket_post_create(struct socket *sock, int family,
				int type, int protocol, int kern)
{
2048
	return call_int_hook(socket_post_create, 0, sock, family, type,
2049 2050 2051
						protocol, kern);
}

2052 2053 2054 2055 2056 2057
int security_socket_socketpair(struct socket *socka, struct socket *sockb)
{
	return call_int_hook(socket_socketpair, 0, socka, sockb);
}
EXPORT_SYMBOL(security_socket_socketpair);

2058 2059
int security_socket_bind(struct socket *sock, struct sockaddr *address, int addrlen)
{
2060
	return call_int_hook(socket_bind, 0, sock, address, addrlen);
2061 2062 2063 2064
}

int security_socket_connect(struct socket *sock, struct sockaddr *address, int addrlen)
{
2065
	return call_int_hook(socket_connect, 0, sock, address, addrlen);
2066 2067 2068 2069
}

int security_socket_listen(struct socket *sock, int backlog)
{
2070
	return call_int_hook(socket_listen, 0, sock, backlog);
2071 2072 2073 2074
}

int security_socket_accept(struct socket *sock, struct socket *newsock)
{
2075
	return call_int_hook(socket_accept, 0, sock, newsock);
2076 2077 2078 2079
}

int security_socket_sendmsg(struct socket *sock, struct msghdr *msg, int size)
{
2080
	return call_int_hook(socket_sendmsg, 0, sock, msg, size);
2081 2082 2083 2084 2085
}

int security_socket_recvmsg(struct socket *sock, struct msghdr *msg,
			    int size, int flags)
{
2086
	return call_int_hook(socket_recvmsg, 0, sock, msg, size, flags);
2087 2088 2089 2090
}

int security_socket_getsockname(struct socket *sock)
{
2091
	return call_int_hook(socket_getsockname, 0, sock);
2092 2093 2094 2095
}

int security_socket_getpeername(struct socket *sock)
{
2096
	return call_int_hook(socket_getpeername, 0, sock);
2097 2098 2099 2100
}

int security_socket_getsockopt(struct socket *sock, int level, int optname)
{
2101
	return call_int_hook(socket_getsockopt, 0, sock, level, optname);
2102 2103 2104 2105
}

int security_socket_setsockopt(struct socket *sock, int level, int optname)
{
2106
	return call_int_hook(socket_setsockopt, 0, sock, level, optname);
2107 2108 2109 2110
}

int security_socket_shutdown(struct socket *sock, int how)
{
2111
	return call_int_hook(socket_shutdown, 0, sock, how);
2112 2113 2114 2115
}

int security_sock_rcv_skb(struct sock *sk, struct sk_buff *skb)
{
2116
	return call_int_hook(socket_sock_rcv_skb, 0, sk, skb);
2117 2118 2119 2120 2121 2122
}
EXPORT_SYMBOL(security_sock_rcv_skb);

int security_socket_getpeersec_stream(struct socket *sock, char __user *optval,
				      int __user *optlen, unsigned len)
{
C
Casey Schaufler 已提交
2123 2124
	return call_int_hook(socket_getpeersec_stream, -ENOPROTOOPT, sock,
				optval, optlen, len);
2125 2126 2127 2128
}

int security_socket_getpeersec_dgram(struct socket *sock, struct sk_buff *skb, u32 *secid)
{
2129 2130
	return call_int_hook(socket_getpeersec_dgram, -ENOPROTOOPT, sock,
			     skb, secid);
2131 2132 2133 2134 2135
}
EXPORT_SYMBOL(security_socket_getpeersec_dgram);

int security_sk_alloc(struct sock *sk, int family, gfp_t priority)
{
2136
	return call_int_hook(sk_alloc_security, 0, sk, family, priority);
2137 2138 2139 2140
}

void security_sk_free(struct sock *sk)
{
2141
	call_void_hook(sk_free_security, sk);
2142 2143 2144 2145
}

void security_sk_clone(const struct sock *sk, struct sock *newsk)
{
2146
	call_void_hook(sk_clone_security, sk, newsk);
2147
}
2148
EXPORT_SYMBOL(security_sk_clone);
2149 2150 2151

void security_sk_classify_flow(struct sock *sk, struct flowi *fl)
{
2152
	call_void_hook(sk_getsecid, sk, &fl->flowi_secid);
2153 2154 2155 2156 2157
}
EXPORT_SYMBOL(security_sk_classify_flow);

void security_req_classify_flow(const struct request_sock *req, struct flowi *fl)
{
2158
	call_void_hook(req_classify_flow, req, fl);
2159 2160 2161 2162 2163
}
EXPORT_SYMBOL(security_req_classify_flow);

void security_sock_graft(struct sock *sk, struct socket *parent)
{
2164
	call_void_hook(sock_graft, sk, parent);
2165 2166 2167 2168 2169 2170
}
EXPORT_SYMBOL(security_sock_graft);

int security_inet_conn_request(struct sock *sk,
			struct sk_buff *skb, struct request_sock *req)
{
2171
	return call_int_hook(inet_conn_request, 0, sk, skb, req);
2172 2173 2174 2175 2176 2177
}
EXPORT_SYMBOL(security_inet_conn_request);

void security_inet_csk_clone(struct sock *newsk,
			const struct request_sock *req)
{
2178
	call_void_hook(inet_csk_clone, newsk, req);
2179 2180 2181 2182 2183
}

void security_inet_conn_established(struct sock *sk,
			struct sk_buff *skb)
{
2184
	call_void_hook(inet_conn_established, sk, skb);
2185
}
2186
EXPORT_SYMBOL(security_inet_conn_established);
2187

2188 2189
int security_secmark_relabel_packet(u32 secid)
{
2190
	return call_int_hook(secmark_relabel_packet, 0, secid);
2191 2192 2193 2194 2195
}
EXPORT_SYMBOL(security_secmark_relabel_packet);

void security_secmark_refcount_inc(void)
{
2196
	call_void_hook(secmark_refcount_inc);
2197 2198 2199 2200 2201
}
EXPORT_SYMBOL(security_secmark_refcount_inc);

void security_secmark_refcount_dec(void)
{
2202
	call_void_hook(secmark_refcount_dec);
2203 2204 2205
}
EXPORT_SYMBOL(security_secmark_refcount_dec);

2206 2207
int security_tun_dev_alloc_security(void **security)
{
2208
	return call_int_hook(tun_dev_alloc_security, 0, security);
2209 2210 2211 2212 2213
}
EXPORT_SYMBOL(security_tun_dev_alloc_security);

void security_tun_dev_free_security(void *security)
{
2214
	call_void_hook(tun_dev_free_security, security);
2215 2216 2217
}
EXPORT_SYMBOL(security_tun_dev_free_security);

P
Paul Moore 已提交
2218 2219
int security_tun_dev_create(void)
{
2220
	return call_int_hook(tun_dev_create, 0);
P
Paul Moore 已提交
2221 2222 2223
}
EXPORT_SYMBOL(security_tun_dev_create);

2224
int security_tun_dev_attach_queue(void *security)
P
Paul Moore 已提交
2225
{
2226
	return call_int_hook(tun_dev_attach_queue, 0, security);
P
Paul Moore 已提交
2227
}
2228
EXPORT_SYMBOL(security_tun_dev_attach_queue);
P
Paul Moore 已提交
2229

2230
int security_tun_dev_attach(struct sock *sk, void *security)
P
Paul Moore 已提交
2231
{
2232
	return call_int_hook(tun_dev_attach, 0, sk, security);
P
Paul Moore 已提交
2233 2234 2235
}
EXPORT_SYMBOL(security_tun_dev_attach);

2236 2237
int security_tun_dev_open(void *security)
{
2238
	return call_int_hook(tun_dev_open, 0, security);
2239 2240 2241
}
EXPORT_SYMBOL(security_tun_dev_open);

2242 2243 2244 2245 2246 2247 2248 2249 2250 2251 2252 2253 2254 2255 2256 2257 2258 2259 2260 2261 2262
int security_sctp_assoc_request(struct sctp_endpoint *ep, struct sk_buff *skb)
{
	return call_int_hook(sctp_assoc_request, 0, ep, skb);
}
EXPORT_SYMBOL(security_sctp_assoc_request);

int security_sctp_bind_connect(struct sock *sk, int optname,
			       struct sockaddr *address, int addrlen)
{
	return call_int_hook(sctp_bind_connect, 0, sk, optname,
			     address, addrlen);
}
EXPORT_SYMBOL(security_sctp_bind_connect);

void security_sctp_sk_clone(struct sctp_endpoint *ep, struct sock *sk,
			    struct sock *newsk)
{
	call_void_hook(sctp_sk_clone, ep, sk, newsk);
}
EXPORT_SYMBOL(security_sctp_sk_clone);

2263 2264
#endif	/* CONFIG_SECURITY_NETWORK */

2265 2266 2267 2268 2269 2270 2271 2272
#ifdef CONFIG_SECURITY_INFINIBAND

int security_ib_pkey_access(void *sec, u64 subnet_prefix, u16 pkey)
{
	return call_int_hook(ib_pkey_access, 0, sec, subnet_prefix, pkey);
}
EXPORT_SYMBOL(security_ib_pkey_access);

2273 2274 2275 2276 2277 2278
int security_ib_endport_manage_subnet(void *sec, const char *dev_name, u8 port_num)
{
	return call_int_hook(ib_endport_manage_subnet, 0, sec, dev_name, port_num);
}
EXPORT_SYMBOL(security_ib_endport_manage_subnet);

2279 2280 2281 2282 2283 2284 2285 2286 2287 2288 2289 2290 2291
int security_ib_alloc_security(void **sec)
{
	return call_int_hook(ib_alloc_security, 0, sec);
}
EXPORT_SYMBOL(security_ib_alloc_security);

void security_ib_free_security(void *sec)
{
	call_void_hook(ib_free_security, sec);
}
EXPORT_SYMBOL(security_ib_free_security);
#endif	/* CONFIG_SECURITY_INFINIBAND */

2292 2293
#ifdef CONFIG_SECURITY_NETWORK_XFRM

2294 2295 2296
int security_xfrm_policy_alloc(struct xfrm_sec_ctx **ctxp,
			       struct xfrm_user_sec_ctx *sec_ctx,
			       gfp_t gfp)
2297
{
2298
	return call_int_hook(xfrm_policy_alloc_security, 0, ctxp, sec_ctx, gfp);
2299 2300 2301
}
EXPORT_SYMBOL(security_xfrm_policy_alloc);

2302 2303
int security_xfrm_policy_clone(struct xfrm_sec_ctx *old_ctx,
			      struct xfrm_sec_ctx **new_ctxp)
2304
{
2305
	return call_int_hook(xfrm_policy_clone_security, 0, old_ctx, new_ctxp);
2306 2307
}

2308
void security_xfrm_policy_free(struct xfrm_sec_ctx *ctx)
2309
{
2310
	call_void_hook(xfrm_policy_free_security, ctx);
2311 2312 2313
}
EXPORT_SYMBOL(security_xfrm_policy_free);

2314
int security_xfrm_policy_delete(struct xfrm_sec_ctx *ctx)
2315
{
2316
	return call_int_hook(xfrm_policy_delete_security, 0, ctx);
2317 2318
}

2319 2320
int security_xfrm_state_alloc(struct xfrm_state *x,
			      struct xfrm_user_sec_ctx *sec_ctx)
2321
{
2322
	return call_int_hook(xfrm_state_alloc, 0, x, sec_ctx);
2323 2324 2325 2326 2327 2328
}
EXPORT_SYMBOL(security_xfrm_state_alloc);

int security_xfrm_state_alloc_acquire(struct xfrm_state *x,
				      struct xfrm_sec_ctx *polsec, u32 secid)
{
2329
	return call_int_hook(xfrm_state_alloc_acquire, 0, x, polsec, secid);
2330 2331 2332 2333
}

int security_xfrm_state_delete(struct xfrm_state *x)
{
2334
	return call_int_hook(xfrm_state_delete_security, 0, x);
2335 2336 2337 2338 2339
}
EXPORT_SYMBOL(security_xfrm_state_delete);

void security_xfrm_state_free(struct xfrm_state *x)
{
2340
	call_void_hook(xfrm_state_free_security, x);
2341 2342
}

2343
int security_xfrm_policy_lookup(struct xfrm_sec_ctx *ctx, u32 fl_secid, u8 dir)
2344
{
2345
	return call_int_hook(xfrm_policy_lookup, 0, ctx, fl_secid, dir);
2346 2347 2348
}

int security_xfrm_state_pol_flow_match(struct xfrm_state *x,
2349 2350
				       struct xfrm_policy *xp,
				       const struct flowi *fl)
2351
{
C
Casey Schaufler 已提交
2352
	struct security_hook_list *hp;
2353
	int rc = LSM_RET_DEFAULT(xfrm_state_pol_flow_match);
C
Casey Schaufler 已提交
2354 2355 2356 2357 2358 2359 2360 2361 2362 2363

	/*
	 * Since this function is expected to return 0 or 1, the judgment
	 * becomes difficult if multiple LSMs supply this call. Fortunately,
	 * we can use the first LSM's judgment because currently only SELinux
	 * supplies this call.
	 *
	 * For speed optimization, we explicitly break the loop rather than
	 * using the macro
	 */
2364
	hlist_for_each_entry(hp, &security_hook_heads.xfrm_state_pol_flow_match,
C
Casey Schaufler 已提交
2365 2366 2367 2368 2369
				list) {
		rc = hp->hook.xfrm_state_pol_flow_match(x, xp, fl);
		break;
	}
	return rc;
2370 2371 2372 2373
}

int security_xfrm_decode_session(struct sk_buff *skb, u32 *secid)
{
2374
	return call_int_hook(xfrm_decode_session, 0, skb, secid, 1);
2375 2376 2377 2378
}

void security_skb_classify_flow(struct sk_buff *skb, struct flowi *fl)
{
2379 2380
	int rc = call_int_hook(xfrm_decode_session, 0, skb, &fl->flowi_secid,
				0);
2381 2382 2383 2384 2385 2386 2387 2388 2389

	BUG_ON(rc);
}
EXPORT_SYMBOL(security_skb_classify_flow);

#endif	/* CONFIG_SECURITY_NETWORK_XFRM */

#ifdef CONFIG_KEYS

D
David Howells 已提交
2390 2391
int security_key_alloc(struct key *key, const struct cred *cred,
		       unsigned long flags)
2392
{
2393
	return call_int_hook(key_alloc, 0, key, cred, flags);
2394 2395 2396 2397
}

void security_key_free(struct key *key)
{
2398
	call_void_hook(key_free, key);
2399 2400 2401
}

int security_key_permission(key_ref_t key_ref,
2402
			    const struct cred *cred, unsigned perm)
2403
{
2404
	return call_int_hook(key_permission, 0, key_ref, cred, perm);
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}

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int security_key_getsecurity(struct key *key, char **_buffer)
{
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	*_buffer = NULL;
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	return call_int_hook(key_getsecurity, 0, key, _buffer);
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}

2413
#endif	/* CONFIG_KEYS */
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#ifdef CONFIG_AUDIT

int security_audit_rule_init(u32 field, u32 op, char *rulestr, void **lsmrule)
{
2419
	return call_int_hook(audit_rule_init, 0, field, op, rulestr, lsmrule);
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}

int security_audit_rule_known(struct audit_krule *krule)
{
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	return call_int_hook(audit_rule_known, 0, krule);
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}

void security_audit_rule_free(void *lsmrule)
{
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	call_void_hook(audit_rule_free, lsmrule);
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}

2432
int security_audit_rule_match(u32 secid, u32 field, u32 op, void *lsmrule)
2433
{
2434
	return call_int_hook(audit_rule_match, 0, secid, field, op, lsmrule);
2435
}
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Casey Schaufler 已提交
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#endif /* CONFIG_AUDIT */
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#ifdef CONFIG_BPF_SYSCALL
int security_bpf(int cmd, union bpf_attr *attr, unsigned int size)
{
	return call_int_hook(bpf, 0, cmd, attr, size);
}
int security_bpf_map(struct bpf_map *map, fmode_t fmode)
{
	return call_int_hook(bpf_map, 0, map, fmode);
}
int security_bpf_prog(struct bpf_prog *prog)
{
	return call_int_hook(bpf_prog, 0, prog);
}
int security_bpf_map_alloc(struct bpf_map *map)
{
	return call_int_hook(bpf_map_alloc_security, 0, map);
}
int security_bpf_prog_alloc(struct bpf_prog_aux *aux)
{
	return call_int_hook(bpf_prog_alloc_security, 0, aux);
}
void security_bpf_map_free(struct bpf_map *map)
{
	call_void_hook(bpf_map_free_security, map);
}
void security_bpf_prog_free(struct bpf_prog_aux *aux)
{
	call_void_hook(bpf_prog_free_security, aux);
}
#endif /* CONFIG_BPF_SYSCALL */
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int security_locked_down(enum lockdown_reason what)
{
	return call_int_hook(locked_down, 0, what);
}
EXPORT_SYMBOL(security_locked_down);
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#ifdef CONFIG_PERF_EVENTS
int security_perf_event_open(struct perf_event_attr *attr, int type)
{
	return call_int_hook(perf_event_open, 0, attr, type);
}

int security_perf_event_alloc(struct perf_event *event)
{
	return call_int_hook(perf_event_alloc, 0, event);
}

void security_perf_event_free(struct perf_event *event)
{
	call_void_hook(perf_event_free, event);
}

int security_perf_event_read(struct perf_event *event)
{
	return call_int_hook(perf_event_read, 0, event);
}

int security_perf_event_write(struct perf_event *event)
{
	return call_int_hook(perf_event_write, 0, event);
}
#endif /* CONFIG_PERF_EVENTS */