cachepc-linux

Fork of AMDESE/linux with modifications for CachePC side-channel attack
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ima_template_lib.c (19668B)


      1// SPDX-License-Identifier: GPL-2.0-only
      2/*
      3 * Copyright (C) 2013 Politecnico di Torino, Italy
      4 *                    TORSEC group -- https://security.polito.it
      5 *
      6 * Author: Roberto Sassu <roberto.sassu@polito.it>
      7 *
      8 * File: ima_template_lib.c
      9 *      Library of supported template fields.
     10 */
     11
     12#include "ima_template_lib.h"
     13#include <linux/xattr.h>
     14#include <linux/evm.h>
     15
     16static bool ima_template_hash_algo_allowed(u8 algo)
     17{
     18	if (algo == HASH_ALGO_SHA1 || algo == HASH_ALGO_MD5)
     19		return true;
     20
     21	return false;
     22}
     23
     24enum data_formats {
     25	DATA_FMT_DIGEST = 0,
     26	DATA_FMT_DIGEST_WITH_ALGO,
     27	DATA_FMT_DIGEST_WITH_TYPE_AND_ALGO,
     28	DATA_FMT_STRING,
     29	DATA_FMT_HEX,
     30	DATA_FMT_UINT
     31};
     32
     33enum digest_type {
     34	DIGEST_TYPE_IMA,
     35	DIGEST_TYPE_VERITY,
     36	DIGEST_TYPE__LAST
     37};
     38
     39#define DIGEST_TYPE_NAME_LEN_MAX 7	/* including NUL */
     40static const char * const digest_type_name[DIGEST_TYPE__LAST] = {
     41	[DIGEST_TYPE_IMA] = "ima",
     42	[DIGEST_TYPE_VERITY] = "verity"
     43};
     44
     45static int ima_write_template_field_data(const void *data, const u32 datalen,
     46					 enum data_formats datafmt,
     47					 struct ima_field_data *field_data)
     48{
     49	u8 *buf, *buf_ptr;
     50	u32 buflen = datalen;
     51
     52	if (datafmt == DATA_FMT_STRING)
     53		buflen = datalen + 1;
     54
     55	buf = kzalloc(buflen, GFP_KERNEL);
     56	if (!buf)
     57		return -ENOMEM;
     58
     59	memcpy(buf, data, datalen);
     60
     61	/*
     62	 * Replace all space characters with underscore for event names and
     63	 * strings. This avoid that, during the parsing of a measurements list,
     64	 * filenames with spaces or that end with the suffix ' (deleted)' are
     65	 * split into multiple template fields (the space is the delimitator
     66	 * character for measurements lists in ASCII format).
     67	 */
     68	if (datafmt == DATA_FMT_STRING) {
     69		for (buf_ptr = buf; buf_ptr - buf < datalen; buf_ptr++)
     70			if (*buf_ptr == ' ')
     71				*buf_ptr = '_';
     72	}
     73
     74	field_data->data = buf;
     75	field_data->len = buflen;
     76	return 0;
     77}
     78
     79static void ima_show_template_data_ascii(struct seq_file *m,
     80					 enum ima_show_type show,
     81					 enum data_formats datafmt,
     82					 struct ima_field_data *field_data)
     83{
     84	u8 *buf_ptr = field_data->data;
     85	u32 buflen = field_data->len;
     86
     87	switch (datafmt) {
     88	case DATA_FMT_DIGEST_WITH_TYPE_AND_ALGO:
     89	case DATA_FMT_DIGEST_WITH_ALGO:
     90		buf_ptr = strrchr(field_data->data, ':');
     91		if (buf_ptr != field_data->data)
     92			seq_printf(m, "%s", field_data->data);
     93
     94		/* skip ':' and '\0' */
     95		buf_ptr += 2;
     96		buflen -= buf_ptr - field_data->data;
     97		fallthrough;
     98	case DATA_FMT_DIGEST:
     99	case DATA_FMT_HEX:
    100		if (!buflen)
    101			break;
    102		ima_print_digest(m, buf_ptr, buflen);
    103		break;
    104	case DATA_FMT_STRING:
    105		seq_printf(m, "%s", buf_ptr);
    106		break;
    107	case DATA_FMT_UINT:
    108		switch (field_data->len) {
    109		case sizeof(u8):
    110			seq_printf(m, "%u", *(u8 *)buf_ptr);
    111			break;
    112		case sizeof(u16):
    113			if (ima_canonical_fmt)
    114				seq_printf(m, "%u",
    115					   le16_to_cpu(*(__le16 *)buf_ptr));
    116			else
    117				seq_printf(m, "%u", *(u16 *)buf_ptr);
    118			break;
    119		case sizeof(u32):
    120			if (ima_canonical_fmt)
    121				seq_printf(m, "%u",
    122					   le32_to_cpu(*(__le32 *)buf_ptr));
    123			else
    124				seq_printf(m, "%u", *(u32 *)buf_ptr);
    125			break;
    126		case sizeof(u64):
    127			if (ima_canonical_fmt)
    128				seq_printf(m, "%llu",
    129					   le64_to_cpu(*(__le64 *)buf_ptr));
    130			else
    131				seq_printf(m, "%llu", *(u64 *)buf_ptr);
    132			break;
    133		default:
    134			break;
    135		}
    136		break;
    137	default:
    138		break;
    139	}
    140}
    141
    142static void ima_show_template_data_binary(struct seq_file *m,
    143					  enum ima_show_type show,
    144					  enum data_formats datafmt,
    145					  struct ima_field_data *field_data)
    146{
    147	u32 len = (show == IMA_SHOW_BINARY_OLD_STRING_FMT) ?
    148	    strlen(field_data->data) : field_data->len;
    149
    150	if (show != IMA_SHOW_BINARY_NO_FIELD_LEN) {
    151		u32 field_len = !ima_canonical_fmt ?
    152				len : (__force u32)cpu_to_le32(len);
    153
    154		ima_putc(m, &field_len, sizeof(field_len));
    155	}
    156
    157	if (!len)
    158		return;
    159
    160	ima_putc(m, field_data->data, len);
    161}
    162
    163static void ima_show_template_field_data(struct seq_file *m,
    164					 enum ima_show_type show,
    165					 enum data_formats datafmt,
    166					 struct ima_field_data *field_data)
    167{
    168	switch (show) {
    169	case IMA_SHOW_ASCII:
    170		ima_show_template_data_ascii(m, show, datafmt, field_data);
    171		break;
    172	case IMA_SHOW_BINARY:
    173	case IMA_SHOW_BINARY_NO_FIELD_LEN:
    174	case IMA_SHOW_BINARY_OLD_STRING_FMT:
    175		ima_show_template_data_binary(m, show, datafmt, field_data);
    176		break;
    177	default:
    178		break;
    179	}
    180}
    181
    182void ima_show_template_digest(struct seq_file *m, enum ima_show_type show,
    183			      struct ima_field_data *field_data)
    184{
    185	ima_show_template_field_data(m, show, DATA_FMT_DIGEST, field_data);
    186}
    187
    188void ima_show_template_digest_ng(struct seq_file *m, enum ima_show_type show,
    189				 struct ima_field_data *field_data)
    190{
    191	ima_show_template_field_data(m, show, DATA_FMT_DIGEST_WITH_ALGO,
    192				     field_data);
    193}
    194
    195void ima_show_template_digest_ngv2(struct seq_file *m, enum ima_show_type show,
    196				   struct ima_field_data *field_data)
    197{
    198	ima_show_template_field_data(m, show,
    199				     DATA_FMT_DIGEST_WITH_TYPE_AND_ALGO,
    200				     field_data);
    201}
    202
    203void ima_show_template_string(struct seq_file *m, enum ima_show_type show,
    204			      struct ima_field_data *field_data)
    205{
    206	ima_show_template_field_data(m, show, DATA_FMT_STRING, field_data);
    207}
    208
    209void ima_show_template_sig(struct seq_file *m, enum ima_show_type show,
    210			   struct ima_field_data *field_data)
    211{
    212	ima_show_template_field_data(m, show, DATA_FMT_HEX, field_data);
    213}
    214
    215void ima_show_template_buf(struct seq_file *m, enum ima_show_type show,
    216			   struct ima_field_data *field_data)
    217{
    218	ima_show_template_field_data(m, show, DATA_FMT_HEX, field_data);
    219}
    220
    221void ima_show_template_uint(struct seq_file *m, enum ima_show_type show,
    222			    struct ima_field_data *field_data)
    223{
    224	ima_show_template_field_data(m, show, DATA_FMT_UINT, field_data);
    225}
    226
    227/**
    228 * ima_parse_buf() - Parses lengths and data from an input buffer
    229 * @bufstartp:       Buffer start address.
    230 * @bufendp:         Buffer end address.
    231 * @bufcurp:         Pointer to remaining (non-parsed) data.
    232 * @maxfields:       Length of fields array.
    233 * @fields:          Array containing lengths and pointers of parsed data.
    234 * @curfields:       Number of array items containing parsed data.
    235 * @len_mask:        Bitmap (if bit is set, data length should not be parsed).
    236 * @enforce_mask:    Check if curfields == maxfields and/or bufcurp == bufendp.
    237 * @bufname:         String identifier of the input buffer.
    238 *
    239 * Return: 0 on success, -EINVAL on error.
    240 */
    241int ima_parse_buf(void *bufstartp, void *bufendp, void **bufcurp,
    242		  int maxfields, struct ima_field_data *fields, int *curfields,
    243		  unsigned long *len_mask, int enforce_mask, char *bufname)
    244{
    245	void *bufp = bufstartp;
    246	int i;
    247
    248	for (i = 0; i < maxfields; i++) {
    249		if (len_mask == NULL || !test_bit(i, len_mask)) {
    250			if (bufp > (bufendp - sizeof(u32)))
    251				break;
    252
    253			if (ima_canonical_fmt)
    254				fields[i].len = le32_to_cpu(*(__le32 *)bufp);
    255			else
    256				fields[i].len = *(u32 *)bufp;
    257
    258			bufp += sizeof(u32);
    259		}
    260
    261		if (bufp > (bufendp - fields[i].len))
    262			break;
    263
    264		fields[i].data = bufp;
    265		bufp += fields[i].len;
    266	}
    267
    268	if ((enforce_mask & ENFORCE_FIELDS) && i != maxfields) {
    269		pr_err("%s: nr of fields mismatch: expected: %d, current: %d\n",
    270		       bufname, maxfields, i);
    271		return -EINVAL;
    272	}
    273
    274	if ((enforce_mask & ENFORCE_BUFEND) && bufp != bufendp) {
    275		pr_err("%s: buf end mismatch: expected: %p, current: %p\n",
    276		       bufname, bufendp, bufp);
    277		return -EINVAL;
    278	}
    279
    280	if (curfields)
    281		*curfields = i;
    282
    283	if (bufcurp)
    284		*bufcurp = bufp;
    285
    286	return 0;
    287}
    288
    289static int ima_eventdigest_init_common(const u8 *digest, u32 digestsize,
    290				       u8 digest_type, u8 hash_algo,
    291				       struct ima_field_data *field_data)
    292{
    293	/*
    294	 * digest formats:
    295	 *  - DATA_FMT_DIGEST: digest
    296	 *  - DATA_FMT_DIGEST_WITH_ALGO: <hash algo> + ':' + '\0' + digest,
    297	 *  - DATA_FMT_DIGEST_WITH_TYPE_AND_ALGO:
    298	 *	<digest type> + ':' + <hash algo> + ':' + '\0' + digest,
    299	 *
    300	 *    where 'DATA_FMT_DIGEST' is the original digest format ('d')
    301	 *      with a hash size limitation of 20 bytes,
    302	 *    where <digest type> is either "ima" or "verity",
    303	 *    where <hash algo> is the hash_algo_name[] string.
    304	 */
    305	u8 buffer[DIGEST_TYPE_NAME_LEN_MAX + CRYPTO_MAX_ALG_NAME + 2 +
    306		IMA_MAX_DIGEST_SIZE] = { 0 };
    307	enum data_formats fmt = DATA_FMT_DIGEST;
    308	u32 offset = 0;
    309
    310	if (digest_type < DIGEST_TYPE__LAST && hash_algo < HASH_ALGO__LAST) {
    311		fmt = DATA_FMT_DIGEST_WITH_TYPE_AND_ALGO;
    312		offset += 1 + sprintf(buffer, "%s:%s:",
    313				      digest_type_name[digest_type],
    314				      hash_algo_name[hash_algo]);
    315	} else if (hash_algo < HASH_ALGO__LAST) {
    316		fmt = DATA_FMT_DIGEST_WITH_ALGO;
    317		offset += 1 + sprintf(buffer, "%s:",
    318				      hash_algo_name[hash_algo]);
    319	}
    320
    321	if (digest)
    322		memcpy(buffer + offset, digest, digestsize);
    323	else
    324		/*
    325		 * If digest is NULL, the event being recorded is a violation.
    326		 * Make room for the digest by increasing the offset of
    327		 * IMA_DIGEST_SIZE.
    328		 */
    329		offset += IMA_DIGEST_SIZE;
    330
    331	return ima_write_template_field_data(buffer, offset + digestsize,
    332					     fmt, field_data);
    333}
    334
    335/*
    336 * This function writes the digest of an event (with size limit).
    337 */
    338int ima_eventdigest_init(struct ima_event_data *event_data,
    339			 struct ima_field_data *field_data)
    340{
    341	struct ima_max_digest_data hash;
    342	u8 *cur_digest = NULL;
    343	u32 cur_digestsize = 0;
    344	struct inode *inode;
    345	int result;
    346
    347	memset(&hash, 0, sizeof(hash));
    348
    349	if (event_data->violation)	/* recording a violation. */
    350		goto out;
    351
    352	if (ima_template_hash_algo_allowed(event_data->iint->ima_hash->algo)) {
    353		cur_digest = event_data->iint->ima_hash->digest;
    354		cur_digestsize = event_data->iint->ima_hash->length;
    355		goto out;
    356	}
    357
    358	if ((const char *)event_data->filename == boot_aggregate_name) {
    359		if (ima_tpm_chip) {
    360			hash.hdr.algo = HASH_ALGO_SHA1;
    361			result = ima_calc_boot_aggregate(&hash.hdr);
    362
    363			/* algo can change depending on available PCR banks */
    364			if (!result && hash.hdr.algo != HASH_ALGO_SHA1)
    365				result = -EINVAL;
    366
    367			if (result < 0)
    368				memset(&hash, 0, sizeof(hash));
    369		}
    370
    371		cur_digest = hash.hdr.digest;
    372		cur_digestsize = hash_digest_size[HASH_ALGO_SHA1];
    373		goto out;
    374	}
    375
    376	if (!event_data->file)	/* missing info to re-calculate the digest */
    377		return -EINVAL;
    378
    379	inode = file_inode(event_data->file);
    380	hash.hdr.algo = ima_template_hash_algo_allowed(ima_hash_algo) ?
    381	    ima_hash_algo : HASH_ALGO_SHA1;
    382	result = ima_calc_file_hash(event_data->file, &hash.hdr);
    383	if (result) {
    384		integrity_audit_msg(AUDIT_INTEGRITY_DATA, inode,
    385				    event_data->filename, "collect_data",
    386				    "failed", result, 0);
    387		return result;
    388	}
    389	cur_digest = hash.hdr.digest;
    390	cur_digestsize = hash.hdr.length;
    391out:
    392	return ima_eventdigest_init_common(cur_digest, cur_digestsize,
    393					   DIGEST_TYPE__LAST, HASH_ALGO__LAST,
    394					   field_data);
    395}
    396
    397/*
    398 * This function writes the digest of an event (without size limit).
    399 */
    400int ima_eventdigest_ng_init(struct ima_event_data *event_data,
    401			    struct ima_field_data *field_data)
    402{
    403	u8 *cur_digest = NULL, hash_algo = ima_hash_algo;
    404	u32 cur_digestsize = 0;
    405
    406	if (event_data->violation)	/* recording a violation. */
    407		goto out;
    408
    409	cur_digest = event_data->iint->ima_hash->digest;
    410	cur_digestsize = event_data->iint->ima_hash->length;
    411
    412	hash_algo = event_data->iint->ima_hash->algo;
    413out:
    414	return ima_eventdigest_init_common(cur_digest, cur_digestsize,
    415					   DIGEST_TYPE__LAST, hash_algo,
    416					   field_data);
    417}
    418
    419/*
    420 * This function writes the digest of an event (without size limit),
    421 * prefixed with both the digest type and hash algorithm.
    422 */
    423int ima_eventdigest_ngv2_init(struct ima_event_data *event_data,
    424			      struct ima_field_data *field_data)
    425{
    426	u8 *cur_digest = NULL, hash_algo = ima_hash_algo;
    427	u32 cur_digestsize = 0;
    428	u8 digest_type = DIGEST_TYPE_IMA;
    429
    430	if (event_data->violation)	/* recording a violation. */
    431		goto out;
    432
    433	cur_digest = event_data->iint->ima_hash->digest;
    434	cur_digestsize = event_data->iint->ima_hash->length;
    435
    436	hash_algo = event_data->iint->ima_hash->algo;
    437	if (event_data->iint->flags & IMA_VERITY_REQUIRED)
    438		digest_type = DIGEST_TYPE_VERITY;
    439out:
    440	return ima_eventdigest_init_common(cur_digest, cur_digestsize,
    441					   digest_type, hash_algo,
    442					   field_data);
    443}
    444
    445/*
    446 * This function writes the digest of the file which is expected to match the
    447 * digest contained in the file's appended signature.
    448 */
    449int ima_eventdigest_modsig_init(struct ima_event_data *event_data,
    450				struct ima_field_data *field_data)
    451{
    452	enum hash_algo hash_algo;
    453	const u8 *cur_digest;
    454	u32 cur_digestsize;
    455
    456	if (!event_data->modsig)
    457		return 0;
    458
    459	if (event_data->violation) {
    460		/* Recording a violation. */
    461		hash_algo = HASH_ALGO_SHA1;
    462		cur_digest = NULL;
    463		cur_digestsize = 0;
    464	} else {
    465		int rc;
    466
    467		rc = ima_get_modsig_digest(event_data->modsig, &hash_algo,
    468					   &cur_digest, &cur_digestsize);
    469		if (rc)
    470			return rc;
    471		else if (hash_algo == HASH_ALGO__LAST || cur_digestsize == 0)
    472			/* There was some error collecting the digest. */
    473			return -EINVAL;
    474	}
    475
    476	return ima_eventdigest_init_common(cur_digest, cur_digestsize,
    477					   DIGEST_TYPE__LAST, hash_algo,
    478					   field_data);
    479}
    480
    481static int ima_eventname_init_common(struct ima_event_data *event_data,
    482				     struct ima_field_data *field_data,
    483				     bool size_limit)
    484{
    485	const char *cur_filename = NULL;
    486	u32 cur_filename_len = 0;
    487
    488	BUG_ON(event_data->filename == NULL && event_data->file == NULL);
    489
    490	if (event_data->filename) {
    491		cur_filename = event_data->filename;
    492		cur_filename_len = strlen(event_data->filename);
    493
    494		if (!size_limit || cur_filename_len <= IMA_EVENT_NAME_LEN_MAX)
    495			goto out;
    496	}
    497
    498	if (event_data->file) {
    499		cur_filename = event_data->file->f_path.dentry->d_name.name;
    500		cur_filename_len = strlen(cur_filename);
    501	} else
    502		/*
    503		 * Truncate filename if the latter is too long and
    504		 * the file descriptor is not available.
    505		 */
    506		cur_filename_len = IMA_EVENT_NAME_LEN_MAX;
    507out:
    508	return ima_write_template_field_data(cur_filename, cur_filename_len,
    509					     DATA_FMT_STRING, field_data);
    510}
    511
    512/*
    513 * This function writes the name of an event (with size limit).
    514 */
    515int ima_eventname_init(struct ima_event_data *event_data,
    516		       struct ima_field_data *field_data)
    517{
    518	return ima_eventname_init_common(event_data, field_data, true);
    519}
    520
    521/*
    522 * This function writes the name of an event (without size limit).
    523 */
    524int ima_eventname_ng_init(struct ima_event_data *event_data,
    525			  struct ima_field_data *field_data)
    526{
    527	return ima_eventname_init_common(event_data, field_data, false);
    528}
    529
    530/*
    531 *  ima_eventsig_init - include the file signature as part of the template data
    532 */
    533int ima_eventsig_init(struct ima_event_data *event_data,
    534		      struct ima_field_data *field_data)
    535{
    536	struct evm_ima_xattr_data *xattr_value = event_data->xattr_value;
    537
    538	if (!xattr_value ||
    539	    (xattr_value->type != EVM_IMA_XATTR_DIGSIG &&
    540	     xattr_value->type != IMA_VERITY_DIGSIG))
    541		return ima_eventevmsig_init(event_data, field_data);
    542
    543	return ima_write_template_field_data(xattr_value, event_data->xattr_len,
    544					     DATA_FMT_HEX, field_data);
    545}
    546
    547/*
    548 *  ima_eventbuf_init - include the buffer(kexec-cmldine) as part of the
    549 *  template data.
    550 */
    551int ima_eventbuf_init(struct ima_event_data *event_data,
    552		      struct ima_field_data *field_data)
    553{
    554	if ((!event_data->buf) || (event_data->buf_len == 0))
    555		return 0;
    556
    557	return ima_write_template_field_data(event_data->buf,
    558					     event_data->buf_len, DATA_FMT_HEX,
    559					     field_data);
    560}
    561
    562/*
    563 *  ima_eventmodsig_init - include the appended file signature as part of the
    564 *  template data
    565 */
    566int ima_eventmodsig_init(struct ima_event_data *event_data,
    567			 struct ima_field_data *field_data)
    568{
    569	const void *data;
    570	u32 data_len;
    571	int rc;
    572
    573	if (!event_data->modsig)
    574		return 0;
    575
    576	/*
    577	 * modsig is a runtime structure containing pointers. Get its raw data
    578	 * instead.
    579	 */
    580	rc = ima_get_raw_modsig(event_data->modsig, &data, &data_len);
    581	if (rc)
    582		return rc;
    583
    584	return ima_write_template_field_data(data, data_len, DATA_FMT_HEX,
    585					     field_data);
    586}
    587
    588/*
    589 *  ima_eventevmsig_init - include the EVM portable signature as part of the
    590 *  template data
    591 */
    592int ima_eventevmsig_init(struct ima_event_data *event_data,
    593			 struct ima_field_data *field_data)
    594{
    595	struct evm_ima_xattr_data *xattr_data = NULL;
    596	int rc = 0;
    597
    598	if (!event_data->file)
    599		return 0;
    600
    601	rc = vfs_getxattr_alloc(&init_user_ns, file_dentry(event_data->file),
    602				XATTR_NAME_EVM, (char **)&xattr_data, 0,
    603				GFP_NOFS);
    604	if (rc <= 0)
    605		return 0;
    606
    607	if (xattr_data->type != EVM_XATTR_PORTABLE_DIGSIG) {
    608		kfree(xattr_data);
    609		return 0;
    610	}
    611
    612	rc = ima_write_template_field_data((char *)xattr_data, rc, DATA_FMT_HEX,
    613					   field_data);
    614	kfree(xattr_data);
    615	return rc;
    616}
    617
    618static int ima_eventinodedac_init_common(struct ima_event_data *event_data,
    619					 struct ima_field_data *field_data,
    620					 bool get_uid)
    621{
    622	unsigned int id;
    623
    624	if (!event_data->file)
    625		return 0;
    626
    627	if (get_uid)
    628		id = i_uid_read(file_inode(event_data->file));
    629	else
    630		id = i_gid_read(file_inode(event_data->file));
    631
    632	if (ima_canonical_fmt) {
    633		if (sizeof(id) == sizeof(u16))
    634			id = (__force u16)cpu_to_le16(id);
    635		else
    636			id = (__force u32)cpu_to_le32(id);
    637	}
    638
    639	return ima_write_template_field_data((void *)&id, sizeof(id),
    640					     DATA_FMT_UINT, field_data);
    641}
    642
    643/*
    644 *  ima_eventinodeuid_init - include the inode UID as part of the template
    645 *  data
    646 */
    647int ima_eventinodeuid_init(struct ima_event_data *event_data,
    648			   struct ima_field_data *field_data)
    649{
    650	return ima_eventinodedac_init_common(event_data, field_data, true);
    651}
    652
    653/*
    654 *  ima_eventinodegid_init - include the inode GID as part of the template
    655 *  data
    656 */
    657int ima_eventinodegid_init(struct ima_event_data *event_data,
    658			   struct ima_field_data *field_data)
    659{
    660	return ima_eventinodedac_init_common(event_data, field_data, false);
    661}
    662
    663/*
    664 *  ima_eventinodemode_init - include the inode mode as part of the template
    665 *  data
    666 */
    667int ima_eventinodemode_init(struct ima_event_data *event_data,
    668			    struct ima_field_data *field_data)
    669{
    670	struct inode *inode;
    671	u16 mode;
    672
    673	if (!event_data->file)
    674		return 0;
    675
    676	inode = file_inode(event_data->file);
    677	mode = inode->i_mode;
    678	if (ima_canonical_fmt)
    679		mode = (__force u16)cpu_to_le16(mode);
    680
    681	return ima_write_template_field_data((char *)&mode, sizeof(mode),
    682					     DATA_FMT_UINT, field_data);
    683}
    684
    685static int ima_eventinodexattrs_init_common(struct ima_event_data *event_data,
    686					    struct ima_field_data *field_data,
    687					    char type)
    688{
    689	u8 *buffer = NULL;
    690	int rc;
    691
    692	if (!event_data->file)
    693		return 0;
    694
    695	rc = evm_read_protected_xattrs(file_dentry(event_data->file), NULL, 0,
    696				       type, ima_canonical_fmt);
    697	if (rc < 0)
    698		return 0;
    699
    700	buffer = kmalloc(rc, GFP_KERNEL);
    701	if (!buffer)
    702		return 0;
    703
    704	rc = evm_read_protected_xattrs(file_dentry(event_data->file), buffer,
    705				       rc, type, ima_canonical_fmt);
    706	if (rc < 0) {
    707		rc = 0;
    708		goto out;
    709	}
    710
    711	rc = ima_write_template_field_data((char *)buffer, rc, DATA_FMT_HEX,
    712					   field_data);
    713out:
    714	kfree(buffer);
    715	return rc;
    716}
    717
    718/*
    719 *  ima_eventinodexattrnames_init - include a list of xattr names as part of the
    720 *  template data
    721 */
    722int ima_eventinodexattrnames_init(struct ima_event_data *event_data,
    723				  struct ima_field_data *field_data)
    724{
    725	return ima_eventinodexattrs_init_common(event_data, field_data, 'n');
    726}
    727
    728/*
    729 *  ima_eventinodexattrlengths_init - include a list of xattr lengths as part of
    730 *  the template data
    731 */
    732int ima_eventinodexattrlengths_init(struct ima_event_data *event_data,
    733				    struct ima_field_data *field_data)
    734{
    735	return ima_eventinodexattrs_init_common(event_data, field_data, 'l');
    736}
    737
    738/*
    739 *  ima_eventinodexattrvalues_init - include a list of xattr values as part of
    740 *  the template data
    741 */
    742int ima_eventinodexattrvalues_init(struct ima_event_data *event_data,
    743				   struct ima_field_data *field_data)
    744{
    745	return ima_eventinodexattrs_init_common(event_data, field_data, 'v');
    746}