2019-07-22 09:26:23 -07:00
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// SPDX-License-Identifier: GPL-2.0
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/*
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2020-11-13 14:19:17 -07:00
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* Ioctl to get a verity file's digest
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2019-07-22 09:26:23 -07:00
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*
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* Copyright 2019 Google LLC
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*/
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#include "fsverity_private.h"
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2023-11-29 16:44:13 -07:00
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#include <linux/bpf.h>
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#include <linux/btf.h>
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2019-07-22 09:26:23 -07:00
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#include <linux/uaccess.h>
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/**
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2020-11-13 14:19:17 -07:00
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* fsverity_ioctl_measure() - get a verity file's digest
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* @filp: file to get digest of
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2020-05-11 12:21:17 -07:00
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* @_uarg: user pointer to fsverity_digest
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2019-07-22 09:26:23 -07:00
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*
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* Retrieve the file digest that the kernel is enforcing for reads from a verity
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* file. See the "FS_IOC_MEASURE_VERITY" section of
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2019-07-22 09:26:23 -07:00
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* Documentation/filesystems/fsverity.rst for the documentation.
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*
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* Return: 0 on success, -errno on failure
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*/
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int fsverity_ioctl_measure(struct file *filp, void __user *_uarg)
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{
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const struct inode *inode = file_inode(filp);
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struct fsverity_digest __user *uarg = _uarg;
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const struct fsverity_info *vi;
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const struct fsverity_hash_alg *hash_alg;
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struct fsverity_digest arg;
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vi = fsverity_get_info(inode);
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if (!vi)
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return -ENODATA; /* not a verity file */
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hash_alg = vi->tree_params.hash_alg;
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/*
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* The user specifies the digest_size their buffer has space for; we can
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* return the digest if it fits in the available space. We write back
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* the actual size, which may be shorter than the user-specified size.
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*/
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if (get_user(arg.digest_size, &uarg->digest_size))
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return -EFAULT;
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if (arg.digest_size < hash_alg->digest_size)
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return -EOVERFLOW;
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memset(&arg, 0, sizeof(arg));
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arg.digest_algorithm = hash_alg - fsverity_hash_algs;
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arg.digest_size = hash_alg->digest_size;
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if (copy_to_user(uarg, &arg, sizeof(arg)))
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return -EFAULT;
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2020-11-13 14:19:17 -07:00
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if (copy_to_user(uarg->digest, vi->file_digest, hash_alg->digest_size))
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2019-07-22 09:26:23 -07:00
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return -EFAULT;
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return 0;
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}
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EXPORT_SYMBOL_GPL(fsverity_ioctl_measure);
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2021-11-23 11:37:52 -07:00
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/**
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* fsverity_get_digest() - get a verity file's digest
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* @inode: inode to get digest of
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2023-06-12 12:00:47 -07:00
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* @raw_digest: (out) the raw file digest
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* @alg: (out) the digest's algorithm, as a FS_VERITY_HASH_ALG_* value
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* @halg: (out) the digest's algorithm, as a HASH_ALGO_* value
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*
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* Retrieves the fsverity digest of the given file. The file must have been
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* opened at least once since the inode was last loaded into the inode cache;
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* otherwise this function will not recognize when fsverity is enabled.
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*
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* The file's fsverity digest consists of @raw_digest in combination with either
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* @alg or @halg. (The caller can choose which one of @alg or @halg to use.)
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*
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* IMPORTANT: Callers *must* make use of one of the two algorithm IDs, since
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* @raw_digest is meaningless without knowing which algorithm it uses! fsverity
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* provides no security guarantee for users who ignore the algorithm ID, even if
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* they use the digest size (since algorithms can share the same digest size).
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*
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* Return: The size of the raw digest in bytes, or 0 if the file doesn't have
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* fsverity enabled.
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*/
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int fsverity_get_digest(struct inode *inode,
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u8 raw_digest[FS_VERITY_MAX_DIGEST_SIZE],
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u8 *alg, enum hash_algo *halg)
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{
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const struct fsverity_info *vi;
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const struct fsverity_hash_alg *hash_alg;
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vi = fsverity_get_info(inode);
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if (!vi)
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return 0; /* not a verity file */
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hash_alg = vi->tree_params.hash_alg;
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memcpy(raw_digest, vi->file_digest, hash_alg->digest_size);
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if (alg)
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*alg = hash_alg - fsverity_hash_algs;
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if (halg)
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*halg = hash_alg->algo_id;
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return hash_alg->digest_size;
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}
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EXPORT_SYMBOL_GPL(fsverity_get_digest);
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2023-11-29 16:44:13 -07:00
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#ifdef CONFIG_BPF_SYSCALL
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/* bpf kfuncs */
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__bpf_kfunc_start_defs();
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/**
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* bpf_get_fsverity_digest: read fsverity digest of file
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* @file: file to get digest from
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2024-06-12 08:58:33 -07:00
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* @digest_p: (out) dynptr for struct fsverity_digest
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2023-11-29 16:44:13 -07:00
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*
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* Read fsverity_digest of *file* into *digest_ptr*.
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*
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* Return: 0 on success, a negative value on error.
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*/
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__bpf_kfunc int bpf_get_fsverity_digest(struct file *file, struct bpf_dynptr *digest_p)
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{
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struct bpf_dynptr_kern *digest_ptr = (struct bpf_dynptr_kern *)digest_p;
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const struct inode *inode = file_inode(file);
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u32 dynptr_sz = __bpf_dynptr_size(digest_ptr);
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struct fsverity_digest *arg;
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const struct fsverity_info *vi;
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const struct fsverity_hash_alg *hash_alg;
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int out_digest_sz;
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if (dynptr_sz < sizeof(struct fsverity_digest))
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return -EINVAL;
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arg = __bpf_dynptr_data_rw(digest_ptr, dynptr_sz);
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if (!arg)
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return -EINVAL;
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if (!IS_ALIGNED((uintptr_t)arg, __alignof__(*arg)))
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return -EINVAL;
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vi = fsverity_get_info(inode);
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if (!vi)
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return -ENODATA; /* not a verity file */
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hash_alg = vi->tree_params.hash_alg;
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arg->digest_algorithm = hash_alg - fsverity_hash_algs;
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arg->digest_size = hash_alg->digest_size;
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out_digest_sz = dynptr_sz - sizeof(struct fsverity_digest);
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/* copy digest */
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memcpy(arg->digest, vi->file_digest, min_t(int, hash_alg->digest_size, out_digest_sz));
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/* fill the extra buffer with zeros */
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if (out_digest_sz > hash_alg->digest_size)
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memset(arg->digest + arg->digest_size, 0, out_digest_sz - hash_alg->digest_size);
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return 0;
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}
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__bpf_kfunc_end_defs();
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2024-01-28 18:24:08 -07:00
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BTF_KFUNCS_START(fsverity_set_ids)
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BTF_ID_FLAGS(func, bpf_get_fsverity_digest, KF_TRUSTED_ARGS)
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BTF_KFUNCS_END(fsverity_set_ids)
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static int bpf_get_fsverity_digest_filter(const struct bpf_prog *prog, u32 kfunc_id)
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{
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if (!btf_id_set8_contains(&fsverity_set_ids, kfunc_id))
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return 0;
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/* Only allow to attach from LSM hooks, to avoid recursion */
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return prog->type != BPF_PROG_TYPE_LSM ? -EACCES : 0;
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}
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static const struct btf_kfunc_id_set bpf_fsverity_set = {
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.owner = THIS_MODULE,
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.set = &fsverity_set_ids,
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.filter = bpf_get_fsverity_digest_filter,
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};
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void __init fsverity_init_bpf(void)
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{
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register_btf_kfunc_id_set(BPF_PROG_TYPE_LSM, &bpf_fsverity_set);
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}
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#endif /* CONFIG_BPF_SYSCALL */
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