forked from Minki/linux
ima: Add digest and digest_len params to the functions to measure a buffer
This patch performs the final modification necessary to pass the buffer measurement to callers, so that they provide a functionality similar to ima_file_hash(). It adds the 'digest' and 'digest_len' parameters to ima_measure_critical_data() and process_buffer_measurement(). These functions calculate the digest even if there is no suitable rule in the IMA policy and, in this case, they simply return 1 before generating a new measurement entry. Signed-off-by: Roberto Sassu <roberto.sassu@huawei.com> Reviewed-by: Lakshmi Ramasubramanian <nramas@linux.microsoft.com> Signed-off-by: Mimi Zohar <zohar@linux.ibm.com>
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@ -38,7 +38,7 @@ extern void ima_kexec_cmdline(int kernel_fd, const void *buf, int size);
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extern int ima_measure_critical_data(const char *event_label,
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const char *event_name,
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const void *buf, size_t buf_len,
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bool hash);
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bool hash, u8 *digest, size_t digest_len);
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#ifdef CONFIG_IMA_APPRAISE_BOOTPARAM
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extern void ima_appraise_parse_cmdline(void);
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@ -147,7 +147,8 @@ static inline void ima_kexec_cmdline(int kernel_fd, const void *buf, int size) {
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static inline int ima_measure_critical_data(const char *event_label,
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const char *event_name,
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const void *buf, size_t buf_len,
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bool hash)
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bool hash, u8 *digest,
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size_t digest_len)
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{
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return -ENOENT;
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}
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@ -268,7 +268,7 @@ int process_buffer_measurement(struct user_namespace *mnt_userns,
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struct inode *inode, const void *buf, int size,
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const char *eventname, enum ima_hooks func,
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int pcr, const char *func_data,
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bool buf_hash);
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bool buf_hash, u8 *digest, size_t digest_len);
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void ima_audit_measurement(struct integrity_iint_cache *iint,
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const unsigned char *filename);
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int ima_alloc_init_template(struct ima_event_data *event_data,
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@ -357,7 +357,7 @@ int ima_check_blacklist(struct integrity_iint_cache *iint,
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if ((rc == -EPERM) && (iint->flags & IMA_MEASURE))
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process_buffer_measurement(&init_user_ns, NULL, digest, digestsize,
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"blacklisted-hash", NONE,
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pcr, NULL, false);
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pcr, NULL, false, NULL, 0);
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}
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return rc;
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@ -62,5 +62,5 @@ void ima_post_key_create_or_update(struct key *keyring, struct key *key,
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*/
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process_buffer_measurement(&init_user_ns, NULL, payload, payload_len,
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keyring->description, KEY_CHECK, 0,
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keyring->description, false);
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keyring->description, false, NULL, 0);
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}
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@ -154,7 +154,8 @@ int __init ima_init(void)
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ima_init_key_queue();
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ima_measure_critical_data("kernel_info", "kernel_version",
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UTS_RELEASE, strlen(UTS_RELEASE), false);
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UTS_RELEASE, strlen(UTS_RELEASE), false,
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NULL, 0);
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return rc;
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}
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@ -838,17 +838,20 @@ int ima_post_load_data(char *buf, loff_t size,
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* @pcr: pcr to extend the measurement
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* @func_data: func specific data, may be NULL
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* @buf_hash: measure buffer data hash
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* @digest: buffer digest will be written to
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* @digest_len: buffer length
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*
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* Based on policy, either the buffer data or buffer data hash is measured
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*
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* Return: 0 if the buffer has been successfully measured, a negative value
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* otherwise.
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* Return: 0 if the buffer has been successfully measured, 1 if the digest
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* has been written to the passed location but not added to a measurement entry,
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* a negative value otherwise.
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*/
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int process_buffer_measurement(struct user_namespace *mnt_userns,
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struct inode *inode, const void *buf, int size,
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const char *eventname, enum ima_hooks func,
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int pcr, const char *func_data,
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bool buf_hash)
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bool buf_hash, u8 *digest, size_t digest_len)
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{
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int ret = 0;
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const char *audit_cause = "ENOMEM";
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@ -869,7 +872,10 @@ int process_buffer_measurement(struct user_namespace *mnt_userns,
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int action = 0;
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u32 secid;
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if (!ima_policy_flag)
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if (digest && digest_len < digest_hash_len)
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return -EINVAL;
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if (!ima_policy_flag && !digest)
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return -ENOENT;
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template = ima_template_desc_buf();
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@ -891,7 +897,7 @@ int process_buffer_measurement(struct user_namespace *mnt_userns,
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action = ima_get_action(mnt_userns, inode, current_cred(),
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secid, 0, func, &pcr, &template,
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func_data);
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if (!(action & IMA_MEASURE))
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if (!(action & IMA_MEASURE) && !digest)
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return -ENOENT;
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}
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@ -922,6 +928,12 @@ int process_buffer_measurement(struct user_namespace *mnt_userns,
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event_data.buf_len = digest_hash_len;
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}
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if (digest)
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memcpy(digest, iint.ima_hash->digest, digest_hash_len);
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if (!ima_policy_flag || (func && !(action & IMA_MEASURE)))
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return 1;
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ret = ima_alloc_init_template(&event_data, &entry, template);
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if (ret < 0) {
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audit_cause = "alloc_entry";
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@ -964,7 +976,7 @@ void ima_kexec_cmdline(int kernel_fd, const void *buf, int size)
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process_buffer_measurement(file_mnt_user_ns(f.file), file_inode(f.file),
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buf, size, "kexec-cmdline", KEXEC_CMDLINE, 0,
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NULL, false);
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NULL, false, NULL, 0);
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fdput(f);
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}
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@ -975,26 +987,30 @@ void ima_kexec_cmdline(int kernel_fd, const void *buf, int size)
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* @buf: pointer to buffer data
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* @buf_len: length of buffer data (in bytes)
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* @hash: measure buffer data hash
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* @digest: buffer digest will be written to
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* @digest_len: buffer length
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*
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* Measure data critical to the integrity of the kernel into the IMA log
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* and extend the pcr. Examples of critical data could be various data
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* structures, policies, and states stored in kernel memory that can
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* impact the integrity of the system.
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*
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* Return: 0 if the buffer has been successfully measured, a negative value
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* otherwise.
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* Return: 0 if the buffer has been successfully measured, 1 if the digest
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* has been written to the passed location but not added to a measurement entry,
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* a negative value otherwise.
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*/
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int ima_measure_critical_data(const char *event_label,
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const char *event_name,
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const void *buf, size_t buf_len,
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bool hash)
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bool hash, u8 *digest, size_t digest_len)
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{
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if (!event_name || !event_label || !buf || !buf_len)
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return -ENOPARAM;
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return process_buffer_measurement(&init_user_ns, NULL, buf, buf_len,
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event_name, CRITICAL_DATA, 0,
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event_label, hash);
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event_label, hash, digest,
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digest_len);
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}
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static int __init init_ima(void)
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@ -165,7 +165,7 @@ void ima_process_queued_keys(void)
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entry->keyring_name,
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KEY_CHECK, 0,
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entry->keyring_name,
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false);
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false, NULL, 0);
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list_del(&entry->list);
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ima_free_key_entry(entry);
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}
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@ -86,7 +86,8 @@ void selinux_ima_measure_state_locked(struct selinux_state *state)
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}
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ima_measure_critical_data("selinux", "selinux-state",
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state_str, strlen(state_str), false);
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state_str, strlen(state_str), false,
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NULL, 0);
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kfree(state_str);
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@ -103,7 +104,8 @@ void selinux_ima_measure_state_locked(struct selinux_state *state)
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}
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ima_measure_critical_data("selinux", "selinux-policy-hash",
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policy, policy_len, true);
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policy, policy_len, true,
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NULL, 0);
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vfree(policy);
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}
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