security.c 63.9 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/kernel_read_file.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",
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	[LOCKDOWN_XFRM_SECRET] = "xfrm SA secret",
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	[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
646
static int lsm_msg_msg_alloc(struct msg_msg *mp)
647 648 649 650 651 652 653 654 655 656 657 658
{
	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;
}

659 660 661 662
/**
 * lsm_early_task - during initialization allocate a composite task blob
 * @task: the task that needs a blob
 *
663
 * Allocate the task blob for all the modules
664
 */
665
static void __init lsm_early_task(struct task_struct *task)
666
{
667
	int rc = lsm_task_alloc(task);
668 669 670 671 672

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

673 674 675 676 677 678 679 680 681 682 683 684 685 686 687 688 689 690 691
/*
 * 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

692
/*
C
Casey Schaufler 已提交
693
 * Hook list operation macros.
L
Linus Torvalds 已提交
694
 *
695 696
 * call_void_hook:
 *	This is a hook that does not return a value.
L
Linus Torvalds 已提交
697
 *
698 699
 * call_int_hook:
 *	This is a hook that returns a value.
L
Linus Torvalds 已提交
700 701
 */

C
Casey Schaufler 已提交
702 703 704 705
#define call_void_hook(FUNC, ...)				\
	do {							\
		struct security_hook_list *P;			\
								\
706
		hlist_for_each_entry(P, &security_hook_heads.FUNC, list) \
C
Casey Schaufler 已提交
707 708 709 710 711 712 713 714
			P->hook.FUNC(__VA_ARGS__);		\
	} while (0)

#define call_int_hook(FUNC, IRC, ...) ({			\
	int RC = IRC;						\
	do {							\
		struct security_hook_list *P;			\
								\
715
		hlist_for_each_entry(P, &security_hook_heads.FUNC, list) { \
C
Casey Schaufler 已提交
716 717 718 719 720 721 722
			RC = P->hook.FUNC(__VA_ARGS__);		\
			if (RC != 0)				\
				break;				\
		}						\
	} while (0);						\
	RC;							\
})
L
Linus Torvalds 已提交
723

724 725
/* Security operations */

726 727
int security_binder_set_context_mgr(struct task_struct *mgr)
{
728
	return call_int_hook(binder_set_context_mgr, 0, mgr);
729 730 731 732 733
}

int security_binder_transaction(struct task_struct *from,
				struct task_struct *to)
{
734
	return call_int_hook(binder_transaction, 0, from, to);
735 736 737 738 739
}

int security_binder_transfer_binder(struct task_struct *from,
				    struct task_struct *to)
{
740
	return call_int_hook(binder_transfer_binder, 0, from, to);
741 742 743 744 745
}

int security_binder_transfer_file(struct task_struct *from,
				  struct task_struct *to, struct file *file)
{
746
	return call_int_hook(binder_transfer_file, 0, from, to, file);
747 748
}

749
int security_ptrace_access_check(struct task_struct *child, unsigned int mode)
750
{
751
	return call_int_hook(ptrace_access_check, 0, child, mode);
752 753 754 755
}

int security_ptrace_traceme(struct task_struct *parent)
{
756
	return call_int_hook(ptrace_traceme, 0, parent);
757 758 759 760 761 762 763
}

int security_capget(struct task_struct *target,
		     kernel_cap_t *effective,
		     kernel_cap_t *inheritable,
		     kernel_cap_t *permitted)
{
764 765
	return call_int_hook(capget, 0, target,
				effective, inheritable, permitted);
766 767
}

D
David Howells 已提交
768 769 770 771
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)
772
{
773 774
	return call_int_hook(capset, 0, new, old,
				effective, inheritable, permitted);
775 776
}

777 778 779 780
int security_capable(const struct cred *cred,
		     struct user_namespace *ns,
		     int cap,
		     unsigned int opts)
781
{
782
	return call_int_hook(capable, 0, cred, ns, cap, opts);
783 784 785 786
}

int security_quotactl(int cmds, int type, int id, struct super_block *sb)
{
787
	return call_int_hook(quotactl, 0, cmds, type, id, sb);
788 789 790 791
}

int security_quota_on(struct dentry *dentry)
{
792
	return call_int_hook(quota_on, 0, dentry);
793 794
}

795
int security_syslog(int type)
796
{
797
	return call_int_hook(syslog, 0, type);
798 799
}

800
int security_settime64(const struct timespec64 *ts, const struct timezone *tz)
801
{
802
	return call_int_hook(settime, 0, ts, tz);
803 804 805 806
}

int security_vm_enough_memory_mm(struct mm_struct *mm, long pages)
{
C
Casey Schaufler 已提交
807 808 809 810 811 812 813 814 815 816 817
	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.
	 */
818
	hlist_for_each_entry(hp, &security_hook_heads.vm_enough_memory, list) {
C
Casey Schaufler 已提交
819 820 821 822 823 824 825
		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);
826 827
}

828
int security_bprm_creds_for_exec(struct linux_binprm *bprm)
829
{
830 831 832
	return call_int_hook(bprm_creds_for_exec, 0, bprm);
}

833
int security_bprm_creds_from_file(struct linux_binprm *bprm, struct file *file)
834
{
835
	return call_int_hook(bprm_creds_from_file, 0, bprm, file);
836 837
}

838
int security_bprm_check(struct linux_binprm *bprm)
839
{
840 841
	int ret;

842
	ret = call_int_hook(bprm_check_security, 0, bprm);
843 844 845
	if (ret)
		return ret;
	return ima_bprm_check(bprm);
846 847
}

848
void security_bprm_committing_creds(struct linux_binprm *bprm)
849
{
850
	call_void_hook(bprm_committing_creds, bprm);
851 852
}

853
void security_bprm_committed_creds(struct linux_binprm *bprm)
854
{
855
	call_void_hook(bprm_committed_creds, bprm);
856 857
}

A
Al Viro 已提交
858 859 860 861 862
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);
}

863 864 865 866 867
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);
}

868 869
int security_sb_alloc(struct super_block *sb)
{
870
	return call_int_hook(sb_alloc_security, 0, sb);
871 872 873 874
}

void security_sb_free(struct super_block *sb)
{
875
	call_void_hook(sb_free_security, sb);
876 877
}

878
void security_free_mnt_opts(void **mnt_opts)
879
{
880 881 882 883
	if (!*mnt_opts)
		return;
	call_void_hook(sb_free_mnt_opts, *mnt_opts);
	*mnt_opts = NULL;
884
}
885
EXPORT_SYMBOL(security_free_mnt_opts);
886

887
int security_sb_eat_lsm_opts(char *options, void **mnt_opts)
888
{
889
	return call_int_hook(sb_eat_lsm_opts, 0, options, mnt_opts);
890
}
A
Al Viro 已提交
891
EXPORT_SYMBOL(security_sb_eat_lsm_opts);
892

893
int security_sb_remount(struct super_block *sb,
894
			void *mnt_opts)
895
{
896
	return call_int_hook(sb_remount, 0, sb, mnt_opts);
897
}
A
Al Viro 已提交
898
EXPORT_SYMBOL(security_sb_remount);
899

900
int security_sb_kern_mount(struct super_block *sb)
901
{
902
	return call_int_hook(sb_kern_mount, 0, sb);
903 904
}

905 906
int security_sb_show_options(struct seq_file *m, struct super_block *sb)
{
907
	return call_int_hook(sb_show_options, 0, m, sb);
908 909
}

910 911
int security_sb_statfs(struct dentry *dentry)
{
912
	return call_int_hook(sb_statfs, 0, dentry);
913 914
}

A
Al Viro 已提交
915
int security_sb_mount(const char *dev_name, const struct path *path,
A
Al Viro 已提交
916
                       const char *type, unsigned long flags, void *data)
917
{
918
	return call_int_hook(sb_mount, 0, dev_name, path, type, flags, data);
919 920 921 922
}

int security_sb_umount(struct vfsmount *mnt, int flags)
{
923
	return call_int_hook(sb_umount, 0, mnt, flags);
924 925
}

A
Al Viro 已提交
926
int security_sb_pivotroot(const struct path *old_path, const struct path *new_path)
927
{
928
	return call_int_hook(sb_pivotroot, 0, old_path, new_path);
929 930
}

931
int security_sb_set_mnt_opts(struct super_block *sb,
932
				void *mnt_opts,
933 934
				unsigned long kern_flags,
				unsigned long *set_kern_flags)
935
{
C
Casey Schaufler 已提交
936
	return call_int_hook(sb_set_mnt_opts,
937 938
				mnt_opts ? -EOPNOTSUPP : 0, sb,
				mnt_opts, kern_flags, set_kern_flags);
939
}
940
EXPORT_SYMBOL(security_sb_set_mnt_opts);
941

942
int security_sb_clone_mnt_opts(const struct super_block *oldsb,
943 944 945
				struct super_block *newsb,
				unsigned long kern_flags,
				unsigned long *set_kern_flags)
946
{
947 948
	return call_int_hook(sb_clone_mnt_opts, 0, oldsb, newsb,
				kern_flags, set_kern_flags);
949
}
950 951
EXPORT_SYMBOL(security_sb_clone_mnt_opts);

A
Al Viro 已提交
952 953
int security_add_mnt_opt(const char *option, const char *val, int len,
			 void **mnt_opts)
954
{
A
Al Viro 已提交
955 956
	return call_int_hook(sb_add_mnt_opt, -EINVAL,
					option, val, len, mnt_opts);
957
}
A
Al Viro 已提交
958
EXPORT_SYMBOL(security_add_mnt_opt);
959

960 961 962 963 964
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);
}

965 966 967 968 969 970
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);
}

971 972
int security_inode_alloc(struct inode *inode)
{
973 974 975 976 977 978 979 980 981 982 983 984 985 986 987 988
	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);
989 990 991 992
}

void security_inode_free(struct inode *inode)
{
993
	integrity_inode_free(inode);
994
	call_void_hook(inode_free_security, inode);
995 996 997 998 999 1000 1001 1002 1003 1004 1005 1006
	/*
	 * 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);
1007 1008
}

1009
int security_dentry_init_security(struct dentry *dentry, int mode,
A
Al Viro 已提交
1010
					const struct qstr *name, void **ctx,
1011 1012
					u32 *ctxlen)
{
C
Casey Schaufler 已提交
1013 1014
	return call_int_hook(dentry_init_security, -EOPNOTSUPP, dentry, mode,
				name, ctx, ctxlen);
1015 1016 1017
}
EXPORT_SYMBOL(security_dentry_init_security);

1018 1019 1020 1021 1022 1023 1024 1025 1026
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);

1027
int security_inode_init_security(struct inode *inode, struct inode *dir,
1028 1029
				 const struct qstr *qstr,
				 const initxattrs initxattrs, void *fs_data)
1030
{
1031 1032
	struct xattr new_xattrs[MAX_LSM_EVM_XATTR + 1];
	struct xattr *lsm_xattr, *evm_xattr, *xattr;
1033 1034
	int ret;

1035
	if (unlikely(IS_PRIVATE(inode)))
1036
		return 0;
1037 1038

	if (!initxattrs)
1039 1040
		return call_int_hook(inode_init_security, -EOPNOTSUPP, inode,
				     dir, qstr, NULL, NULL, NULL);
1041
	memset(new_xattrs, 0, sizeof(new_xattrs));
1042
	lsm_xattr = new_xattrs;
C
Casey Schaufler 已提交
1043
	ret = call_int_hook(inode_init_security, -EOPNOTSUPP, inode, dir, qstr,
1044 1045 1046 1047 1048
						&lsm_xattr->name,
						&lsm_xattr->value,
						&lsm_xattr->value_len);
	if (ret)
		goto out;
1049 1050 1051 1052 1053

	evm_xattr = lsm_xattr + 1;
	ret = evm_inode_init_security(inode, lsm_xattr, evm_xattr);
	if (ret)
		goto out;
1054 1055
	ret = initxattrs(inode, new_xattrs, fs_data);
out:
1056
	for (xattr = new_xattrs; xattr->value != NULL; xattr++)
1057
		kfree(xattr->value);
1058 1059 1060 1061 1062
	return (ret == -EOPNOTSUPP) ? 0 : ret;
}
EXPORT_SYMBOL(security_inode_init_security);

int security_old_inode_init_security(struct inode *inode, struct inode *dir,
1063
				     const struct qstr *qstr, const char **name,
1064
				     void **value, size_t *len)
1065 1066
{
	if (unlikely(IS_PRIVATE(inode)))
1067
		return -EOPNOTSUPP;
1068 1069
	return call_int_hook(inode_init_security, -EOPNOTSUPP, inode, dir,
			     qstr, name, value, len);
1070
}
1071
EXPORT_SYMBOL(security_old_inode_init_security);
1072

1073
#ifdef CONFIG_SECURITY_PATH
1074
int security_path_mknod(const struct path *dir, struct dentry *dentry, umode_t mode,
1075 1076
			unsigned int dev)
{
1077
	if (unlikely(IS_PRIVATE(d_backing_inode(dir->dentry))))
1078
		return 0;
1079
	return call_int_hook(path_mknod, 0, dir, dentry, mode, dev);
1080 1081 1082
}
EXPORT_SYMBOL(security_path_mknod);

1083
int security_path_mkdir(const struct path *dir, struct dentry *dentry, umode_t mode)
1084
{
1085
	if (unlikely(IS_PRIVATE(d_backing_inode(dir->dentry))))
1086
		return 0;
1087
	return call_int_hook(path_mkdir, 0, dir, dentry, mode);
1088
}
1089
EXPORT_SYMBOL(security_path_mkdir);
1090

A
Al Viro 已提交
1091
int security_path_rmdir(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_rmdir, 0, dir, dentry);
1096 1097
}

A
Al Viro 已提交
1098
int security_path_unlink(const struct path *dir, struct dentry *dentry)
1099
{
1100
	if (unlikely(IS_PRIVATE(d_backing_inode(dir->dentry))))
1101
		return 0;
1102
	return call_int_hook(path_unlink, 0, dir, dentry);
1103
}
1104
EXPORT_SYMBOL(security_path_unlink);
1105

1106
int security_path_symlink(const struct path *dir, struct dentry *dentry,
1107 1108
			  const char *old_name)
{
1109
	if (unlikely(IS_PRIVATE(d_backing_inode(dir->dentry))))
1110
		return 0;
1111
	return call_int_hook(path_symlink, 0, dir, dentry, old_name);
1112 1113
}

A
Al Viro 已提交
1114
int security_path_link(struct dentry *old_dentry, const struct path *new_dir,
1115 1116
		       struct dentry *new_dentry)
{
1117
	if (unlikely(IS_PRIVATE(d_backing_inode(old_dentry))))
1118
		return 0;
1119
	return call_int_hook(path_link, 0, old_dentry, new_dir, new_dentry);
1120 1121
}

A
Al Viro 已提交
1122 1123
int security_path_rename(const struct path *old_dir, struct dentry *old_dentry,
			 const struct path *new_dir, struct dentry *new_dentry,
1124
			 unsigned int flags)
1125
{
1126 1127
	if (unlikely(IS_PRIVATE(d_backing_inode(old_dentry)) ||
		     (d_is_positive(new_dentry) && IS_PRIVATE(d_backing_inode(new_dentry)))))
1128
		return 0;
M
Miklos Szeredi 已提交
1129 1130

	if (flags & RENAME_EXCHANGE) {
1131 1132
		int err = call_int_hook(path_rename, 0, new_dir, new_dentry,
					old_dir, old_dentry);
M
Miklos Szeredi 已提交
1133 1134 1135 1136
		if (err)
			return err;
	}

1137 1138
	return call_int_hook(path_rename, 0, old_dir, old_dentry, new_dir,
				new_dentry);
1139
}
1140
EXPORT_SYMBOL(security_path_rename);
1141

A
Al Viro 已提交
1142
int security_path_truncate(const struct path *path)
1143
{
1144
	if (unlikely(IS_PRIVATE(d_backing_inode(path->dentry))))
1145
		return 0;
1146
	return call_int_hook(path_truncate, 0, path);
1147
}
1148

1149
int security_path_chmod(const struct path *path, umode_t mode)
1150
{
1151
	if (unlikely(IS_PRIVATE(d_backing_inode(path->dentry))))
1152
		return 0;
1153
	return call_int_hook(path_chmod, 0, path, mode);
1154 1155
}

1156
int security_path_chown(const struct path *path, kuid_t uid, kgid_t gid)
1157
{
1158
	if (unlikely(IS_PRIVATE(d_backing_inode(path->dentry))))
1159
		return 0;
1160
	return call_int_hook(path_chown, 0, path, uid, gid);
1161
}
T
Tetsuo Handa 已提交
1162

A
Al Viro 已提交
1163
int security_path_chroot(const struct path *path)
T
Tetsuo Handa 已提交
1164
{
1165
	return call_int_hook(path_chroot, 0, path);
T
Tetsuo Handa 已提交
1166
}
1167 1168
#endif

A
Al Viro 已提交
1169
int security_inode_create(struct inode *dir, struct dentry *dentry, umode_t mode)
1170 1171 1172
{
	if (unlikely(IS_PRIVATE(dir)))
		return 0;
1173
	return call_int_hook(inode_create, 0, dir, dentry, mode);
1174
}
1175
EXPORT_SYMBOL_GPL(security_inode_create);
1176 1177 1178 1179

int security_inode_link(struct dentry *old_dentry, struct inode *dir,
			 struct dentry *new_dentry)
{
1180
	if (unlikely(IS_PRIVATE(d_backing_inode(old_dentry))))
1181
		return 0;
1182
	return call_int_hook(inode_link, 0, old_dentry, dir, new_dentry);
1183 1184 1185 1186
}

int security_inode_unlink(struct inode *dir, struct dentry *dentry)
{
1187
	if (unlikely(IS_PRIVATE(d_backing_inode(dentry))))
1188
		return 0;
1189
	return call_int_hook(inode_unlink, 0, dir, dentry);
1190 1191 1192 1193 1194 1195 1196
}

int security_inode_symlink(struct inode *dir, struct dentry *dentry,
			    const char *old_name)
{
	if (unlikely(IS_PRIVATE(dir)))
		return 0;
1197
	return call_int_hook(inode_symlink, 0, dir, dentry, old_name);
1198 1199
}

1200
int security_inode_mkdir(struct inode *dir, struct dentry *dentry, umode_t mode)
1201 1202 1203
{
	if (unlikely(IS_PRIVATE(dir)))
		return 0;
1204
	return call_int_hook(inode_mkdir, 0, dir, dentry, mode);
1205
}
1206
EXPORT_SYMBOL_GPL(security_inode_mkdir);
1207 1208 1209

int security_inode_rmdir(struct inode *dir, struct dentry *dentry)
{
1210
	if (unlikely(IS_PRIVATE(d_backing_inode(dentry))))
1211
		return 0;
1212
	return call_int_hook(inode_rmdir, 0, dir, dentry);
1213 1214
}

A
Al Viro 已提交
1215
int security_inode_mknod(struct inode *dir, struct dentry *dentry, umode_t mode, dev_t dev)
1216 1217 1218
{
	if (unlikely(IS_PRIVATE(dir)))
		return 0;
1219
	return call_int_hook(inode_mknod, 0, dir, dentry, mode, dev);
1220 1221 1222
}

int security_inode_rename(struct inode *old_dir, struct dentry *old_dentry,
1223 1224
			   struct inode *new_dir, struct dentry *new_dentry,
			   unsigned int flags)
1225
{
1226 1227
        if (unlikely(IS_PRIVATE(d_backing_inode(old_dentry)) ||
            (d_is_positive(new_dentry) && IS_PRIVATE(d_backing_inode(new_dentry)))))
1228
		return 0;
M
Miklos Szeredi 已提交
1229 1230

	if (flags & RENAME_EXCHANGE) {
1231
		int err = call_int_hook(inode_rename, 0, new_dir, new_dentry,
M
Miklos Szeredi 已提交
1232 1233 1234 1235 1236
						     old_dir, old_dentry);
		if (err)
			return err;
	}

1237
	return call_int_hook(inode_rename, 0, old_dir, old_dentry,
1238 1239 1240 1241 1242
					   new_dir, new_dentry);
}

int security_inode_readlink(struct dentry *dentry)
{
1243
	if (unlikely(IS_PRIVATE(d_backing_inode(dentry))))
1244
		return 0;
1245
	return call_int_hook(inode_readlink, 0, dentry);
1246 1247
}

1248 1249
int security_inode_follow_link(struct dentry *dentry, struct inode *inode,
			       bool rcu)
1250
{
1251
	if (unlikely(IS_PRIVATE(inode)))
1252
		return 0;
1253
	return call_int_hook(inode_follow_link, 0, dentry, inode, rcu);
1254 1255
}

1256
int security_inode_permission(struct inode *inode, int mask)
1257 1258 1259
{
	if (unlikely(IS_PRIVATE(inode)))
		return 0;
1260
	return call_int_hook(inode_permission, 0, inode, mask);
1261 1262 1263 1264
}

int security_inode_setattr(struct dentry *dentry, struct iattr *attr)
{
1265 1266
	int ret;

1267
	if (unlikely(IS_PRIVATE(d_backing_inode(dentry))))
1268
		return 0;
1269
	ret = call_int_hook(inode_setattr, 0, dentry, attr);
1270 1271 1272
	if (ret)
		return ret;
	return evm_inode_setattr(dentry, attr);
1273
}
1274
EXPORT_SYMBOL_GPL(security_inode_setattr);
1275

1276
int security_inode_getattr(const struct path *path)
1277
{
1278
	if (unlikely(IS_PRIVATE(d_backing_inode(path->dentry))))
1279
		return 0;
1280
	return call_int_hook(inode_getattr, 0, path);
1281 1282
}

1283 1284
int security_inode_setxattr(struct dentry *dentry, const char *name,
			    const void *value, size_t size, int flags)
1285
{
1286 1287
	int ret;

1288
	if (unlikely(IS_PRIVATE(d_backing_inode(dentry))))
1289
		return 0;
C
Casey Schaufler 已提交
1290 1291 1292 1293 1294
	/*
	 * 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,
1295
				flags);
C
Casey Schaufler 已提交
1296 1297 1298

	if (ret == 1)
		ret = cap_inode_setxattr(dentry, name, value, size, flags);
1299 1300 1301
	if (ret)
		return ret;
	ret = ima_inode_setxattr(dentry, name, value, size);
1302 1303 1304
	if (ret)
		return ret;
	return evm_inode_setxattr(dentry, name, value, size);
1305 1306
}

1307 1308
void security_inode_post_setxattr(struct dentry *dentry, const char *name,
				  const void *value, size_t size, int flags)
1309
{
1310
	if (unlikely(IS_PRIVATE(d_backing_inode(dentry))))
1311
		return;
1312
	call_void_hook(inode_post_setxattr, dentry, name, value, size, flags);
1313
	evm_inode_post_setxattr(dentry, name, value, size);
1314 1315
}

1316
int security_inode_getxattr(struct dentry *dentry, const char *name)
1317
{
1318
	if (unlikely(IS_PRIVATE(d_backing_inode(dentry))))
1319
		return 0;
1320
	return call_int_hook(inode_getxattr, 0, dentry, name);
1321 1322 1323 1324
}

int security_inode_listxattr(struct dentry *dentry)
{
1325
	if (unlikely(IS_PRIVATE(d_backing_inode(dentry))))
1326
		return 0;
1327
	return call_int_hook(inode_listxattr, 0, dentry);
1328 1329
}

1330
int security_inode_removexattr(struct dentry *dentry, const char *name)
1331
{
1332 1333
	int ret;

1334
	if (unlikely(IS_PRIVATE(d_backing_inode(dentry))))
1335
		return 0;
C
Casey Schaufler 已提交
1336 1337 1338 1339 1340 1341 1342
	/*
	 * 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);
1343 1344 1345
	if (ret)
		return ret;
	ret = ima_inode_removexattr(dentry, name);
1346 1347 1348
	if (ret)
		return ret;
	return evm_inode_removexattr(dentry, name);
1349 1350
}

1351 1352
int security_inode_need_killpriv(struct dentry *dentry)
{
1353
	return call_int_hook(inode_need_killpriv, 0, dentry);
1354 1355 1356 1357
}

int security_inode_killpriv(struct dentry *dentry)
{
1358
	return call_int_hook(inode_killpriv, 0, dentry);
1359 1360
}

1361
int security_inode_getsecurity(struct inode *inode, const char *name, void **buffer, bool alloc)
1362
{
1363 1364 1365
	struct security_hook_list *hp;
	int rc;

1366
	if (unlikely(IS_PRIVATE(inode)))
1367
		return LSM_RET_DEFAULT(inode_getsecurity);
1368 1369 1370
	/*
	 * Only one module will provide an attribute with a given name.
	 */
1371
	hlist_for_each_entry(hp, &security_hook_heads.inode_getsecurity, list) {
1372
		rc = hp->hook.inode_getsecurity(inode, name, buffer, alloc);
1373
		if (rc != LSM_RET_DEFAULT(inode_getsecurity))
1374 1375
			return rc;
	}
1376
	return LSM_RET_DEFAULT(inode_getsecurity);
1377 1378 1379 1380
}

int security_inode_setsecurity(struct inode *inode, const char *name, const void *value, size_t size, int flags)
{
1381 1382 1383
	struct security_hook_list *hp;
	int rc;

1384
	if (unlikely(IS_PRIVATE(inode)))
1385
		return LSM_RET_DEFAULT(inode_setsecurity);
1386 1387 1388
	/*
	 * Only one module will provide an attribute with a given name.
	 */
1389
	hlist_for_each_entry(hp, &security_hook_heads.inode_setsecurity, list) {
1390 1391
		rc = hp->hook.inode_setsecurity(inode, name, value, size,
								flags);
1392
		if (rc != LSM_RET_DEFAULT(inode_setsecurity))
1393 1394
			return rc;
	}
1395
	return LSM_RET_DEFAULT(inode_setsecurity);
1396 1397 1398 1399 1400 1401
}

int security_inode_listsecurity(struct inode *inode, char *buffer, size_t buffer_size)
{
	if (unlikely(IS_PRIVATE(inode)))
		return 0;
1402
	return call_int_hook(inode_listsecurity, 0, inode, buffer, buffer_size);
1403
}
1404
EXPORT_SYMBOL(security_inode_listsecurity);
1405

1406
void security_inode_getsecid(struct inode *inode, u32 *secid)
1407
{
1408
	call_void_hook(inode_getsecid, inode, secid);
1409 1410
}

1411 1412 1413 1414 1415 1416
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);

1417 1418
int security_inode_copy_up_xattr(const char *name)
{
1419 1420 1421 1422 1423 1424 1425 1426 1427 1428 1429 1430 1431 1432 1433 1434
	struct security_hook_list *hp;
	int rc;

	/*
	 * The implementation can return 0 (accept the xattr), 1 (discard the
	 * xattr), -EOPNOTSUPP if it does not know anything about the xattr or
	 * any other error code incase of an error.
	 */
	hlist_for_each_entry(hp,
		&security_hook_heads.inode_copy_up_xattr, list) {
		rc = hp->hook.inode_copy_up_xattr(name);
		if (rc != LSM_RET_DEFAULT(inode_copy_up_xattr))
			return rc;
	}

	return LSM_RET_DEFAULT(inode_copy_up_xattr);
1435 1436 1437
}
EXPORT_SYMBOL(security_inode_copy_up_xattr);

1438 1439 1440 1441 1442 1443
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);
}

1444 1445
int security_file_permission(struct file *file, int mask)
{
1446 1447
	int ret;

1448
	ret = call_int_hook(file_permission, 0, file, mask);
1449 1450 1451 1452
	if (ret)
		return ret;

	return fsnotify_perm(file, mask);
1453 1454 1455 1456
}

int security_file_alloc(struct file *file)
{
1457 1458 1459 1460 1461 1462 1463 1464
	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;
1465 1466 1467 1468
}

void security_file_free(struct file *file)
{
1469 1470
	void *blob;

1471
	call_void_hook(file_free_security, file);
1472 1473 1474 1475 1476 1477

	blob = file->f_security;
	if (blob) {
		file->f_security = NULL;
		kmem_cache_free(lsm_file_cache, blob);
	}
1478 1479 1480 1481
}

int security_file_ioctl(struct file *file, unsigned int cmd, unsigned long arg)
{
1482
	return call_int_hook(file_ioctl, 0, file, cmd, arg);
1483
}
1484
EXPORT_SYMBOL_GPL(security_file_ioctl);
1485

1486
static inline unsigned long mmap_prot(struct file *file, unsigned long prot)
1487
{
1488
	/*
1489 1490
	 * Does we have PROT_READ and does the application expect
	 * it to imply PROT_EXEC?  If not, nothing to talk about...
1491
	 */
1492 1493
	if ((prot & (PROT_READ | PROT_EXEC)) != PROT_READ)
		return prot;
1494
	if (!(current->personality & READ_IMPLIES_EXEC))
1495 1496 1497 1498 1499 1500 1501 1502
		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
1503
	 * NOMMU_MAP_EXEC (== VM_MAYEXEC) in this case
1504
	 */
1505
	if (!path_noexec(&file->f_path)) {
1506
#ifndef CONFIG_MMU
1507 1508 1509 1510 1511
		if (file->f_op->mmap_capabilities) {
			unsigned caps = file->f_op->mmap_capabilities(file);
			if (!(caps & NOMMU_MAP_EXEC))
				return prot;
		}
1512
#endif
1513
		return prot | PROT_EXEC;
1514
	}
1515 1516 1517 1518 1519 1520 1521 1522
	/* 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;
1523
	ret = call_int_hook(mmap_file, 0, file, prot,
1524
					mmap_prot(file, prot), flags);
1525 1526 1527
	if (ret)
		return ret;
	return ima_file_mmap(file, prot);
1528 1529
}

1530 1531
int security_mmap_addr(unsigned long addr)
{
1532
	return call_int_hook(mmap_addr, 0, addr);
1533 1534
}

1535 1536 1537
int security_file_mprotect(struct vm_area_struct *vma, unsigned long reqprot,
			    unsigned long prot)
{
1538 1539 1540 1541 1542 1543
	int ret;

	ret = call_int_hook(file_mprotect, 0, vma, reqprot, prot);
	if (ret)
		return ret;
	return ima_file_mprotect(vma, prot);
1544 1545 1546 1547
}

int security_file_lock(struct file *file, unsigned int cmd)
{
1548
	return call_int_hook(file_lock, 0, file, cmd);
1549 1550 1551 1552
}

int security_file_fcntl(struct file *file, unsigned int cmd, unsigned long arg)
{
1553
	return call_int_hook(file_fcntl, 0, file, cmd, arg);
1554 1555
}

1556
void security_file_set_fowner(struct file *file)
1557
{
1558
	call_void_hook(file_set_fowner, file);
1559 1560 1561 1562 1563
}

int security_file_send_sigiotask(struct task_struct *tsk,
				  struct fown_struct *fown, int sig)
{
1564
	return call_int_hook(file_send_sigiotask, 0, tsk, fown, sig);
1565 1566 1567 1568
}

int security_file_receive(struct file *file)
{
1569
	return call_int_hook(file_receive, 0, file);
1570 1571
}

1572
int security_file_open(struct file *file)
1573
{
1574 1575
	int ret;

A
Al Viro 已提交
1576
	ret = call_int_hook(file_open, 0, file);
1577 1578 1579 1580
	if (ret)
		return ret;

	return fsnotify_perm(file, MAY_OPEN);
1581 1582
}

1583 1584
int security_task_alloc(struct task_struct *task, unsigned long clone_flags)
{
1585 1586 1587 1588 1589 1590 1591 1592
	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;
1593 1594
}

1595 1596
void security_task_free(struct task_struct *task)
{
1597
	call_void_hook(task_free, task);
1598 1599 1600

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

1603 1604
int security_cred_alloc_blank(struct cred *cred, gfp_t gfp)
{
1605 1606 1607 1608 1609 1610
	int rc = lsm_cred_alloc(cred, gfp);

	if (rc)
		return rc;

	rc = call_int_hook(cred_alloc_blank, 0, cred, gfp);
1611
	if (unlikely(rc))
1612 1613
		security_cred_free(cred);
	return rc;
1614 1615
}

D
David Howells 已提交
1616
void security_cred_free(struct cred *cred)
1617
{
1618 1619 1620 1621 1622 1623 1624
	/*
	 * 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;

1625
	call_void_hook(cred_free, cred);
1626 1627 1628

	kfree(cred->security);
	cred->security = NULL;
1629 1630
}

D
David Howells 已提交
1631
int security_prepare_creds(struct cred *new, const struct cred *old, gfp_t gfp)
1632
{
1633 1634 1635 1636 1637 1638
	int rc = lsm_cred_alloc(new, gfp);

	if (rc)
		return rc;

	rc = call_int_hook(cred_prepare, 0, new, old, gfp);
1639
	if (unlikely(rc))
1640 1641
		security_cred_free(new);
	return rc;
D
David Howells 已提交
1642 1643
}

1644 1645
void security_transfer_creds(struct cred *new, const struct cred *old)
{
1646
	call_void_hook(cred_transfer, new, old);
1647 1648
}

1649 1650 1651 1652 1653 1654 1655
void security_cred_getsecid(const struct cred *c, u32 *secid)
{
	*secid = 0;
	call_void_hook(cred_getsecid, c, secid);
}
EXPORT_SYMBOL(security_cred_getsecid);

1656 1657
int security_kernel_act_as(struct cred *new, u32 secid)
{
1658
	return call_int_hook(kernel_act_as, 0, new, secid);
1659 1660 1661 1662
}

int security_kernel_create_files_as(struct cred *new, struct inode *inode)
{
1663
	return call_int_hook(kernel_create_files_as, 0, new, inode);
1664 1665
}

1666
int security_kernel_module_request(char *kmod_name)
1667
{
1668 1669 1670 1671 1672 1673
	int ret;

	ret = call_int_hook(kernel_module_request, 0, kmod_name);
	if (ret)
		return ret;
	return integrity_kernel_module_request(kmod_name);
1674 1675
}

1676 1677
int security_kernel_read_file(struct file *file, enum kernel_read_file_id id,
			      bool contents)
1678 1679 1680
{
	int ret;

1681
	ret = call_int_hook(kernel_read_file, 0, file, id, contents);
1682 1683
	if (ret)
		return ret;
1684
	return ima_read_file(file, id, contents);
1685 1686 1687
}
EXPORT_SYMBOL_GPL(security_kernel_read_file);

1688 1689
int security_kernel_post_read_file(struct file *file, char *buf, loff_t size,
				   enum kernel_read_file_id id)
1690
{
1691 1692 1693 1694 1695 1696
	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);
1697 1698 1699
}
EXPORT_SYMBOL_GPL(security_kernel_post_read_file);

1700
int security_kernel_load_data(enum kernel_load_data_id id, bool contents)
1701
{
1702 1703
	int ret;

1704
	ret = call_int_hook(kernel_load_data, 0, id, contents);
1705 1706
	if (ret)
		return ret;
1707
	return ima_load_data(id, contents);
1708
}
1709
EXPORT_SYMBOL_GPL(security_kernel_load_data);
1710

1711 1712 1713 1714 1715 1716 1717 1718 1719 1720 1721 1722 1723 1724
int security_kernel_post_load_data(char *buf, loff_t size,
				   enum kernel_load_data_id id,
				   char *description)
{
	int ret;

	ret = call_int_hook(kernel_post_load_data, 0, buf, size, id,
			    description);
	if (ret)
		return ret;
	return ima_post_load_data(buf, size, id, description);
}
EXPORT_SYMBOL_GPL(security_kernel_post_load_data);

D
David Howells 已提交
1725 1726
int security_task_fix_setuid(struct cred *new, const struct cred *old,
			     int flags)
1727
{
1728
	return call_int_hook(task_fix_setuid, 0, new, old, flags);
1729 1730
}

1731 1732 1733 1734 1735 1736
int security_task_fix_setgid(struct cred *new, const struct cred *old,
				 int flags)
{
	return call_int_hook(task_fix_setgid, 0, new, old, flags);
}

1737 1738
int security_task_setpgid(struct task_struct *p, pid_t pgid)
{
1739
	return call_int_hook(task_setpgid, 0, p, pgid);
1740 1741 1742 1743
}

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

int security_task_getsid(struct task_struct *p)
{
1749
	return call_int_hook(task_getsid, 0, p);
1750 1751 1752 1753
}

void security_task_getsecid(struct task_struct *p, u32 *secid)
{
C
Casey Schaufler 已提交
1754
	*secid = 0;
1755
	call_void_hook(task_getsecid, p, secid);
1756 1757 1758 1759 1760
}
EXPORT_SYMBOL(security_task_getsecid);

int security_task_setnice(struct task_struct *p, int nice)
{
1761
	return call_int_hook(task_setnice, 0, p, nice);
1762 1763 1764 1765
}

int security_task_setioprio(struct task_struct *p, int ioprio)
{
1766
	return call_int_hook(task_setioprio, 0, p, ioprio);
1767 1768 1769 1770
}

int security_task_getioprio(struct task_struct *p)
{
1771
	return call_int_hook(task_getioprio, 0, p);
1772 1773
}

1774 1775 1776 1777 1778 1779
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);
}

1780 1781
int security_task_setrlimit(struct task_struct *p, unsigned int resource,
		struct rlimit *new_rlim)
1782
{
1783
	return call_int_hook(task_setrlimit, 0, p, resource, new_rlim);
1784 1785
}

1786
int security_task_setscheduler(struct task_struct *p)
1787
{
1788
	return call_int_hook(task_setscheduler, 0, p);
1789 1790 1791 1792
}

int security_task_getscheduler(struct task_struct *p)
{
1793
	return call_int_hook(task_getscheduler, 0, p);
1794 1795 1796 1797
}

int security_task_movememory(struct task_struct *p)
{
1798
	return call_int_hook(task_movememory, 0, p);
1799 1800
}

1801
int security_task_kill(struct task_struct *p, struct kernel_siginfo *info,
1802
			int sig, const struct cred *cred)
1803
{
1804
	return call_int_hook(task_kill, 0, p, info, sig, cred);
1805 1806 1807
}

int security_task_prctl(int option, unsigned long arg2, unsigned long arg3,
D
David Howells 已提交
1808
			 unsigned long arg4, unsigned long arg5)
1809
{
C
Casey Schaufler 已提交
1810
	int thisrc;
1811
	int rc = LSM_RET_DEFAULT(task_prctl);
C
Casey Schaufler 已提交
1812 1813
	struct security_hook_list *hp;

1814
	hlist_for_each_entry(hp, &security_hook_heads.task_prctl, list) {
C
Casey Schaufler 已提交
1815
		thisrc = hp->hook.task_prctl(option, arg2, arg3, arg4, arg5);
1816
		if (thisrc != LSM_RET_DEFAULT(task_prctl)) {
C
Casey Schaufler 已提交
1817 1818 1819 1820 1821 1822
			rc = thisrc;
			if (thisrc != 0)
				break;
		}
	}
	return rc;
1823 1824 1825 1826
}

void security_task_to_inode(struct task_struct *p, struct inode *inode)
{
1827
	call_void_hook(task_to_inode, p, inode);
1828 1829 1830 1831
}

int security_ipc_permission(struct kern_ipc_perm *ipcp, short flag)
{
1832
	return call_int_hook(ipc_permission, 0, ipcp, flag);
1833 1834
}

1835 1836
void security_ipc_getsecid(struct kern_ipc_perm *ipcp, u32 *secid)
{
C
Casey Schaufler 已提交
1837
	*secid = 0;
1838
	call_void_hook(ipc_getsecid, ipcp, secid);
1839 1840
}

1841 1842
int security_msg_msg_alloc(struct msg_msg *msg)
{
1843 1844 1845 1846 1847 1848 1849 1850
	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;
1851 1852 1853 1854
}

void security_msg_msg_free(struct msg_msg *msg)
{
1855
	call_void_hook(msg_msg_free_security, msg);
1856 1857
	kfree(msg->security);
	msg->security = NULL;
1858 1859
}

1860
int security_msg_queue_alloc(struct kern_ipc_perm *msq)
1861
{
1862 1863 1864 1865 1866 1867 1868 1869
	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;
1870 1871
}

1872
void security_msg_queue_free(struct kern_ipc_perm *msq)
1873
{
1874
	call_void_hook(msg_queue_free_security, msq);
1875 1876
	kfree(msq->security);
	msq->security = NULL;
1877 1878
}

1879
int security_msg_queue_associate(struct kern_ipc_perm *msq, int msqflg)
1880
{
1881
	return call_int_hook(msg_queue_associate, 0, msq, msqflg);
1882 1883
}

1884
int security_msg_queue_msgctl(struct kern_ipc_perm *msq, int cmd)
1885
{
1886
	return call_int_hook(msg_queue_msgctl, 0, msq, cmd);
1887 1888
}

1889
int security_msg_queue_msgsnd(struct kern_ipc_perm *msq,
1890 1891
			       struct msg_msg *msg, int msqflg)
{
1892
	return call_int_hook(msg_queue_msgsnd, 0, msq, msg, msqflg);
1893 1894
}

1895
int security_msg_queue_msgrcv(struct kern_ipc_perm *msq, struct msg_msg *msg,
1896 1897
			       struct task_struct *target, long type, int mode)
{
1898
	return call_int_hook(msg_queue_msgrcv, 0, msq, msg, target, type, mode);
1899 1900
}

1901
int security_shm_alloc(struct kern_ipc_perm *shp)
1902
{
1903 1904 1905 1906 1907 1908 1909 1910
	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;
1911 1912
}

1913
void security_shm_free(struct kern_ipc_perm *shp)
1914
{
1915
	call_void_hook(shm_free_security, shp);
1916 1917
	kfree(shp->security);
	shp->security = NULL;
1918 1919
}

1920
int security_shm_associate(struct kern_ipc_perm *shp, int shmflg)
1921
{
1922
	return call_int_hook(shm_associate, 0, shp, shmflg);
1923 1924
}

1925
int security_shm_shmctl(struct kern_ipc_perm *shp, int cmd)
1926
{
1927
	return call_int_hook(shm_shmctl, 0, shp, cmd);
1928 1929
}

1930
int security_shm_shmat(struct kern_ipc_perm *shp, char __user *shmaddr, int shmflg)
1931
{
1932
	return call_int_hook(shm_shmat, 0, shp, shmaddr, shmflg);
1933 1934
}

1935
int security_sem_alloc(struct kern_ipc_perm *sma)
1936
{
1937 1938 1939 1940 1941 1942 1943 1944
	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;
1945 1946
}

1947
void security_sem_free(struct kern_ipc_perm *sma)
1948
{
1949
	call_void_hook(sem_free_security, sma);
1950 1951
	kfree(sma->security);
	sma->security = NULL;
1952 1953
}

1954
int security_sem_associate(struct kern_ipc_perm *sma, int semflg)
1955
{
1956
	return call_int_hook(sem_associate, 0, sma, semflg);
1957 1958
}

1959
int security_sem_semctl(struct kern_ipc_perm *sma, int cmd)
1960
{
1961
	return call_int_hook(sem_semctl, 0, sma, cmd);
1962 1963
}

1964
int security_sem_semop(struct kern_ipc_perm *sma, struct sembuf *sops,
1965 1966
			unsigned nsops, int alter)
{
1967
	return call_int_hook(sem_semop, 0, sma, sops, nsops, alter);
1968 1969 1970 1971 1972 1973
}

void security_d_instantiate(struct dentry *dentry, struct inode *inode)
{
	if (unlikely(inode && IS_PRIVATE(inode)))
		return;
1974
	call_void_hook(d_instantiate, dentry, inode);
1975 1976 1977
}
EXPORT_SYMBOL(security_d_instantiate);

1978 1979
int security_getprocattr(struct task_struct *p, const char *lsm, char *name,
				char **value)
1980
{
1981 1982 1983 1984 1985 1986 1987
	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);
	}
1988
	return LSM_RET_DEFAULT(getprocattr);
1989 1990
}

1991 1992
int security_setprocattr(const char *lsm, const char *name, void *value,
			 size_t size)
1993
{
1994 1995 1996 1997 1998 1999 2000
	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);
	}
2001
	return LSM_RET_DEFAULT(setprocattr);
2002 2003 2004 2005
}

int security_netlink_send(struct sock *sk, struct sk_buff *skb)
{
2006
	return call_int_hook(netlink_send, 0, sk, skb);
2007 2008
}

2009 2010
int security_ismaclabel(const char *name)
{
2011
	return call_int_hook(ismaclabel, 0, name);
2012 2013 2014
}
EXPORT_SYMBOL(security_ismaclabel);

2015 2016
int security_secid_to_secctx(u32 secid, char **secdata, u32 *seclen)
{
2017 2018 2019 2020 2021 2022 2023 2024 2025 2026 2027 2028 2029 2030
	struct security_hook_list *hp;
	int rc;

	/*
	 * Currently, only one LSM can implement secid_to_secctx (i.e this
	 * LSM hook is not "stackable").
	 */
	hlist_for_each_entry(hp, &security_hook_heads.secid_to_secctx, list) {
		rc = hp->hook.secid_to_secctx(secid, secdata, seclen);
		if (rc != LSM_RET_DEFAULT(secid_to_secctx))
			return rc;
	}

	return LSM_RET_DEFAULT(secid_to_secctx);
2031 2032 2033
}
EXPORT_SYMBOL(security_secid_to_secctx);

2034
int security_secctx_to_secid(const char *secdata, u32 seclen, u32 *secid)
2035
{
C
Casey Schaufler 已提交
2036
	*secid = 0;
2037
	return call_int_hook(secctx_to_secid, 0, secdata, seclen, secid);
2038 2039 2040
}
EXPORT_SYMBOL(security_secctx_to_secid);

2041 2042
void security_release_secctx(char *secdata, u32 seclen)
{
2043
	call_void_hook(release_secctx, secdata, seclen);
2044 2045 2046
}
EXPORT_SYMBOL(security_release_secctx);

2047 2048 2049 2050 2051 2052
void security_inode_invalidate_secctx(struct inode *inode)
{
	call_void_hook(inode_invalidate_secctx, inode);
}
EXPORT_SYMBOL(security_inode_invalidate_secctx);

2053 2054
int security_inode_notifysecctx(struct inode *inode, void *ctx, u32 ctxlen)
{
2055
	return call_int_hook(inode_notifysecctx, 0, inode, ctx, ctxlen);
2056 2057 2058 2059 2060
}
EXPORT_SYMBOL(security_inode_notifysecctx);

int security_inode_setsecctx(struct dentry *dentry, void *ctx, u32 ctxlen)
{
2061
	return call_int_hook(inode_setsecctx, 0, dentry, ctx, ctxlen);
2062 2063 2064 2065 2066
}
EXPORT_SYMBOL(security_inode_setsecctx);

int security_inode_getsecctx(struct inode *inode, void **ctx, u32 *ctxlen)
{
C
Casey Schaufler 已提交
2067
	return call_int_hook(inode_getsecctx, -EOPNOTSUPP, inode, ctx, ctxlen);
2068 2069 2070
}
EXPORT_SYMBOL(security_inode_getsecctx);

2071 2072 2073 2074 2075 2076 2077 2078 2079
#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 */

2080 2081 2082 2083 2084 2085 2086
#ifdef CONFIG_KEY_NOTIFICATIONS
int security_watch_key(struct key *key)
{
	return call_int_hook(watch_key, 0, key);
}
#endif

2087 2088
#ifdef CONFIG_SECURITY_NETWORK

2089
int security_unix_stream_connect(struct sock *sock, struct sock *other, struct sock *newsk)
2090
{
2091
	return call_int_hook(unix_stream_connect, 0, sock, other, newsk);
2092 2093 2094 2095 2096
}
EXPORT_SYMBOL(security_unix_stream_connect);

int security_unix_may_send(struct socket *sock,  struct socket *other)
{
2097
	return call_int_hook(unix_may_send, 0, sock, other);
2098 2099 2100 2101 2102
}
EXPORT_SYMBOL(security_unix_may_send);

int security_socket_create(int family, int type, int protocol, int kern)
{
2103
	return call_int_hook(socket_create, 0, family, type, protocol, kern);
2104 2105 2106 2107 2108
}

int security_socket_post_create(struct socket *sock, int family,
				int type, int protocol, int kern)
{
2109
	return call_int_hook(socket_post_create, 0, sock, family, type,
2110 2111 2112
						protocol, kern);
}

2113 2114 2115 2116 2117 2118
int security_socket_socketpair(struct socket *socka, struct socket *sockb)
{
	return call_int_hook(socket_socketpair, 0, socka, sockb);
}
EXPORT_SYMBOL(security_socket_socketpair);

2119 2120
int security_socket_bind(struct socket *sock, struct sockaddr *address, int addrlen)
{
2121
	return call_int_hook(socket_bind, 0, sock, address, addrlen);
2122 2123 2124 2125
}

int security_socket_connect(struct socket *sock, struct sockaddr *address, int addrlen)
{
2126
	return call_int_hook(socket_connect, 0, sock, address, addrlen);
2127 2128 2129 2130
}

int security_socket_listen(struct socket *sock, int backlog)
{
2131
	return call_int_hook(socket_listen, 0, sock, backlog);
2132 2133 2134 2135
}

int security_socket_accept(struct socket *sock, struct socket *newsock)
{
2136
	return call_int_hook(socket_accept, 0, sock, newsock);
2137 2138 2139 2140
}

int security_socket_sendmsg(struct socket *sock, struct msghdr *msg, int size)
{
2141
	return call_int_hook(socket_sendmsg, 0, sock, msg, size);
2142 2143 2144 2145 2146
}

int security_socket_recvmsg(struct socket *sock, struct msghdr *msg,
			    int size, int flags)
{
2147
	return call_int_hook(socket_recvmsg, 0, sock, msg, size, flags);
2148 2149 2150 2151
}

int security_socket_getsockname(struct socket *sock)
{
2152
	return call_int_hook(socket_getsockname, 0, sock);
2153 2154 2155 2156
}

int security_socket_getpeername(struct socket *sock)
{
2157
	return call_int_hook(socket_getpeername, 0, sock);
2158 2159 2160 2161
}

int security_socket_getsockopt(struct socket *sock, int level, int optname)
{
2162
	return call_int_hook(socket_getsockopt, 0, sock, level, optname);
2163 2164 2165 2166
}

int security_socket_setsockopt(struct socket *sock, int level, int optname)
{
2167
	return call_int_hook(socket_setsockopt, 0, sock, level, optname);
2168 2169 2170 2171
}

int security_socket_shutdown(struct socket *sock, int how)
{
2172
	return call_int_hook(socket_shutdown, 0, sock, how);
2173 2174 2175 2176
}

int security_sock_rcv_skb(struct sock *sk, struct sk_buff *skb)
{
2177
	return call_int_hook(socket_sock_rcv_skb, 0, sk, skb);
2178 2179 2180 2181 2182 2183
}
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
2184 2185
	return call_int_hook(socket_getpeersec_stream, -ENOPROTOOPT, sock,
				optval, optlen, len);
2186 2187 2188 2189
}

int security_socket_getpeersec_dgram(struct socket *sock, struct sk_buff *skb, u32 *secid)
{
2190 2191
	return call_int_hook(socket_getpeersec_dgram, -ENOPROTOOPT, sock,
			     skb, secid);
2192 2193 2194 2195 2196
}
EXPORT_SYMBOL(security_socket_getpeersec_dgram);

int security_sk_alloc(struct sock *sk, int family, gfp_t priority)
{
2197
	return call_int_hook(sk_alloc_security, 0, sk, family, priority);
2198 2199 2200 2201
}

void security_sk_free(struct sock *sk)
{
2202
	call_void_hook(sk_free_security, sk);
2203 2204 2205 2206
}

void security_sk_clone(const struct sock *sk, struct sock *newsk)
{
2207
	call_void_hook(sk_clone_security, sk, newsk);
2208
}
2209
EXPORT_SYMBOL(security_sk_clone);
2210

2211
void security_sk_classify_flow(struct sock *sk, struct flowi_common *flic)
2212
{
2213
	call_void_hook(sk_getsecid, sk, &flic->flowic_secid);
2214 2215 2216
}
EXPORT_SYMBOL(security_sk_classify_flow);

2217 2218
void security_req_classify_flow(const struct request_sock *req,
				struct flowi_common *flic)
2219
{
2220
	call_void_hook(req_classify_flow, req, flic);
2221 2222 2223 2224 2225
}
EXPORT_SYMBOL(security_req_classify_flow);

void security_sock_graft(struct sock *sk, struct socket *parent)
{
2226
	call_void_hook(sock_graft, sk, parent);
2227 2228 2229
}
EXPORT_SYMBOL(security_sock_graft);

2230
int security_inet_conn_request(const struct sock *sk,
2231 2232
			struct sk_buff *skb, struct request_sock *req)
{
2233
	return call_int_hook(inet_conn_request, 0, sk, skb, req);
2234 2235 2236 2237 2238 2239
}
EXPORT_SYMBOL(security_inet_conn_request);

void security_inet_csk_clone(struct sock *newsk,
			const struct request_sock *req)
{
2240
	call_void_hook(inet_csk_clone, newsk, req);
2241 2242 2243 2244 2245
}

void security_inet_conn_established(struct sock *sk,
			struct sk_buff *skb)
{
2246
	call_void_hook(inet_conn_established, sk, skb);
2247
}
2248
EXPORT_SYMBOL(security_inet_conn_established);
2249

2250 2251
int security_secmark_relabel_packet(u32 secid)
{
2252
	return call_int_hook(secmark_relabel_packet, 0, secid);
2253 2254 2255 2256 2257
}
EXPORT_SYMBOL(security_secmark_relabel_packet);

void security_secmark_refcount_inc(void)
{
2258
	call_void_hook(secmark_refcount_inc);
2259 2260 2261 2262 2263
}
EXPORT_SYMBOL(security_secmark_refcount_inc);

void security_secmark_refcount_dec(void)
{
2264
	call_void_hook(secmark_refcount_dec);
2265 2266 2267
}
EXPORT_SYMBOL(security_secmark_refcount_dec);

2268 2269
int security_tun_dev_alloc_security(void **security)
{
2270
	return call_int_hook(tun_dev_alloc_security, 0, security);
2271 2272 2273 2274 2275
}
EXPORT_SYMBOL(security_tun_dev_alloc_security);

void security_tun_dev_free_security(void *security)
{
2276
	call_void_hook(tun_dev_free_security, security);
2277 2278 2279
}
EXPORT_SYMBOL(security_tun_dev_free_security);

P
Paul Moore 已提交
2280 2281
int security_tun_dev_create(void)
{
2282
	return call_int_hook(tun_dev_create, 0);
P
Paul Moore 已提交
2283 2284 2285
}
EXPORT_SYMBOL(security_tun_dev_create);

2286
int security_tun_dev_attach_queue(void *security)
P
Paul Moore 已提交
2287
{
2288
	return call_int_hook(tun_dev_attach_queue, 0, security);
P
Paul Moore 已提交
2289
}
2290
EXPORT_SYMBOL(security_tun_dev_attach_queue);
P
Paul Moore 已提交
2291

2292
int security_tun_dev_attach(struct sock *sk, void *security)
P
Paul Moore 已提交
2293
{
2294
	return call_int_hook(tun_dev_attach, 0, sk, security);
P
Paul Moore 已提交
2295 2296 2297
}
EXPORT_SYMBOL(security_tun_dev_attach);

2298 2299
int security_tun_dev_open(void *security)
{
2300
	return call_int_hook(tun_dev_open, 0, security);
2301 2302 2303
}
EXPORT_SYMBOL(security_tun_dev_open);

2304 2305 2306 2307 2308 2309 2310 2311 2312 2313 2314 2315 2316 2317 2318 2319 2320 2321 2322 2323 2324
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);

2325 2326
#endif	/* CONFIG_SECURITY_NETWORK */

2327 2328 2329 2330 2331 2332 2333 2334
#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);

2335 2336 2337 2338 2339 2340
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);

2341 2342 2343 2344 2345 2346 2347 2348 2349 2350 2351 2352 2353
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 */

2354 2355
#ifdef CONFIG_SECURITY_NETWORK_XFRM

2356 2357 2358
int security_xfrm_policy_alloc(struct xfrm_sec_ctx **ctxp,
			       struct xfrm_user_sec_ctx *sec_ctx,
			       gfp_t gfp)
2359
{
2360
	return call_int_hook(xfrm_policy_alloc_security, 0, ctxp, sec_ctx, gfp);
2361 2362 2363
}
EXPORT_SYMBOL(security_xfrm_policy_alloc);

2364 2365
int security_xfrm_policy_clone(struct xfrm_sec_ctx *old_ctx,
			      struct xfrm_sec_ctx **new_ctxp)
2366
{
2367
	return call_int_hook(xfrm_policy_clone_security, 0, old_ctx, new_ctxp);
2368 2369
}

2370
void security_xfrm_policy_free(struct xfrm_sec_ctx *ctx)
2371
{
2372
	call_void_hook(xfrm_policy_free_security, ctx);
2373 2374 2375
}
EXPORT_SYMBOL(security_xfrm_policy_free);

2376
int security_xfrm_policy_delete(struct xfrm_sec_ctx *ctx)
2377
{
2378
	return call_int_hook(xfrm_policy_delete_security, 0, ctx);
2379 2380
}

2381 2382
int security_xfrm_state_alloc(struct xfrm_state *x,
			      struct xfrm_user_sec_ctx *sec_ctx)
2383
{
2384
	return call_int_hook(xfrm_state_alloc, 0, x, sec_ctx);
2385 2386 2387 2388 2389 2390
}
EXPORT_SYMBOL(security_xfrm_state_alloc);

int security_xfrm_state_alloc_acquire(struct xfrm_state *x,
				      struct xfrm_sec_ctx *polsec, u32 secid)
{
2391
	return call_int_hook(xfrm_state_alloc_acquire, 0, x, polsec, secid);
2392 2393 2394 2395
}

int security_xfrm_state_delete(struct xfrm_state *x)
{
2396
	return call_int_hook(xfrm_state_delete_security, 0, x);
2397 2398 2399 2400 2401
}
EXPORT_SYMBOL(security_xfrm_state_delete);

void security_xfrm_state_free(struct xfrm_state *x)
{
2402
	call_void_hook(xfrm_state_free_security, x);
2403 2404
}

2405
int security_xfrm_policy_lookup(struct xfrm_sec_ctx *ctx, u32 fl_secid, u8 dir)
2406
{
2407
	return call_int_hook(xfrm_policy_lookup, 0, ctx, fl_secid, dir);
2408 2409 2410
}

int security_xfrm_state_pol_flow_match(struct xfrm_state *x,
2411
				       struct xfrm_policy *xp,
2412
				       const struct flowi_common *flic)
2413
{
C
Casey Schaufler 已提交
2414
	struct security_hook_list *hp;
2415
	int rc = LSM_RET_DEFAULT(xfrm_state_pol_flow_match);
C
Casey Schaufler 已提交
2416 2417 2418 2419 2420 2421 2422 2423 2424 2425

	/*
	 * 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
	 */
2426
	hlist_for_each_entry(hp, &security_hook_heads.xfrm_state_pol_flow_match,
C
Casey Schaufler 已提交
2427
				list) {
2428
		rc = hp->hook.xfrm_state_pol_flow_match(x, xp, flic);
C
Casey Schaufler 已提交
2429 2430 2431
		break;
	}
	return rc;
2432 2433 2434 2435
}

int security_xfrm_decode_session(struct sk_buff *skb, u32 *secid)
{
2436
	return call_int_hook(xfrm_decode_session, 0, skb, secid, 1);
2437 2438
}

2439
void security_skb_classify_flow(struct sk_buff *skb, struct flowi_common *flic)
2440
{
2441
	int rc = call_int_hook(xfrm_decode_session, 0, skb, &flic->flowic_secid,
2442
				0);
2443 2444 2445 2446 2447 2448 2449 2450 2451

	BUG_ON(rc);
}
EXPORT_SYMBOL(security_skb_classify_flow);

#endif	/* CONFIG_SECURITY_NETWORK_XFRM */

#ifdef CONFIG_KEYS

D
David Howells 已提交
2452 2453
int security_key_alloc(struct key *key, const struct cred *cred,
		       unsigned long flags)
2454
{
2455
	return call_int_hook(key_alloc, 0, key, cred, flags);
2456 2457 2458 2459
}

void security_key_free(struct key *key)
{
2460
	call_void_hook(key_free, key);
2461 2462
}

2463 2464
int security_key_permission(key_ref_t key_ref, const struct cred *cred,
			    enum key_need_perm need_perm)
2465
{
2466
	return call_int_hook(key_permission, 0, key_ref, cred, need_perm);
2467 2468
}

2469 2470
int security_key_getsecurity(struct key *key, char **_buffer)
{
C
Casey Schaufler 已提交
2471
	*_buffer = NULL;
2472
	return call_int_hook(key_getsecurity, 0, key, _buffer);
2473 2474
}

2475
#endif	/* CONFIG_KEYS */
2476 2477 2478 2479 2480

#ifdef CONFIG_AUDIT

int security_audit_rule_init(u32 field, u32 op, char *rulestr, void **lsmrule)
{
2481
	return call_int_hook(audit_rule_init, 0, field, op, rulestr, lsmrule);
2482 2483 2484 2485
}

int security_audit_rule_known(struct audit_krule *krule)
{
2486
	return call_int_hook(audit_rule_known, 0, krule);
2487 2488 2489 2490
}

void security_audit_rule_free(void *lsmrule)
{
2491
	call_void_hook(audit_rule_free, lsmrule);
2492 2493
}

2494
int security_audit_rule_match(u32 secid, u32 field, u32 op, void *lsmrule)
2495
{
2496
	return call_int_hook(audit_rule_match, 0, secid, field, op, lsmrule);
2497
}
C
Casey Schaufler 已提交
2498
#endif /* CONFIG_AUDIT */
2499 2500 2501 2502 2503 2504 2505 2506 2507 2508 2509 2510 2511 2512 2513 2514 2515 2516 2517 2518 2519 2520 2521 2522 2523 2524 2525 2526 2527 2528 2529

#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 */
2530 2531 2532 2533 2534 2535

int security_locked_down(enum lockdown_reason what)
{
	return call_int_hook(locked_down, 0, what);
}
EXPORT_SYMBOL(security_locked_down);
2536 2537 2538 2539 2540 2541 2542 2543 2544 2545 2546 2547 2548 2549 2550 2551 2552 2553 2554 2555 2556 2557 2558 2559 2560 2561 2562

#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 */