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It is possible that the dm_ima_measure_on_* functions run at the same time as a table is getting swapped, but before the md->ima.active_table is updated by dm_ima_measure_on_device_resume(). Instead of using the current device size, use the size of the active table that is being measured (assuming there is one), so the information is consistent. Also, don't allocate a separate string to hold the capactiy. Just print it directly to the measurement buffer. Signed-off-by: Benjamin Marzinski <bmarzins@redhat.com> Signed-off-by: Mikulas Patocka <mpatocka@redhat.com>
651 lines
18 KiB
C
651 lines
18 KiB
C
// SPDX-License-Identifier: GPL-2.0-only
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/*
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* Copyright (C) 2021 Microsoft Corporation
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*
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* Author: Tushar Sugandhi <tusharsu@linux.microsoft.com>
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*
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* Enables IMA measurements for DM targets
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*/
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#include "dm-core.h"
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#include "dm-ima.h"
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#include <linux/ima.h>
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#include <linux/sched/mm.h>
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#include <crypto/sha2.h>
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#define DM_MSG_PREFIX "ima"
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/*
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* Internal function to prefix separator characters in input buffer with escape
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* character, so that they don't interfere with the construction of key-value pairs,
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* and clients can split the key1=val1,key2=val2,key3=val3; pairs properly.
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*/
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static void fix_separator_chars(char *buf)
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{
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int l = strlen(buf);
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int i, j, sp = 0;
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for (i = 0; i < l; i++)
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if (buf[i] == '\\' || buf[i] == ';' || buf[i] == '=' || buf[i] == ',')
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sp++;
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if (!sp)
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return;
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buf[l + sp] = '\0';
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for (i = l-1, j = i+sp; i >= 0; i--) {
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buf[j--] = buf[i];
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if (buf[i] == '\\' || buf[i] == ';' || buf[i] == '=' || buf[i] == ',')
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buf[j--] = '\\';
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}
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}
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static void fix_context_strings(struct dm_ima_context *context)
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{
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fix_separator_chars(context->dev_name);
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fix_separator_chars(context->dev_uuid);
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}
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/*
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* Internal function to allocate memory for IMA measurements.
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*/
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static void *dm_ima_alloc(size_t len, bool noio)
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{
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unsigned int noio_flag;
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void *ptr;
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if (noio)
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noio_flag = memalloc_noio_save();
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ptr = kzalloc(len, GFP_KERNEL);
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if (noio)
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memalloc_noio_restore(noio_flag);
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return ptr;
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}
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void dm_ima_init(struct mapped_device *md)
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{
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md->ima.update_idx = 0;
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md->ima.measure_idx = 0;
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init_waitqueue_head(&md->ima.ima_wq);
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spin_lock_init(&md->ima.ima_lock);
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}
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void dm_ima_alloc_context(struct dm_ima_context **context, bool noio)
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{
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*context = dm_ima_alloc(sizeof(struct dm_ima_context), noio);
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}
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void dm_ima_free_context(struct dm_ima_context *context)
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{
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if (likely(context)) {
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kfree(context->table.device_metadata);
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kfree(context->table.hash);
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kfree(context);
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}
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}
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static void wait_to_measure(struct dm_ima_measurements *ima,
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unsigned int update_idx)
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{
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spin_lock_irq(&ima->ima_lock);
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wait_event_lock_irq(ima->ima_wq,
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ima->measure_idx == update_idx,
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ima->ima_lock);
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spin_unlock_irq(&ima->ima_lock);
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}
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static void wake_next_measure(struct dm_ima_measurements *ima)
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{
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spin_lock_irq(&ima->ima_lock);
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ima->measure_idx++;
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spin_unlock_irq(&ima->ima_lock);
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wake_up_all(&ima->ima_wq);
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}
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/*
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* Helper function for swapping the table, to make sure that the
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* correct table metadata is saved and restored.
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*/
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void dm_ima_context_table_op(struct mapped_device *md,
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struct dm_ima_context *context,
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enum dm_ima_table_op op)
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{
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struct dm_ima_measurements *ima = &md->ima;
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if (unlikely(!context))
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return;
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wait_to_measure(ima, context->update_idx);
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if (op == DM_IMA_TABLE_SAVE) {
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context->table = ima->inactive_table;
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memset(&ima->inactive_table, 0, sizeof(ima->inactive_table));
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} else {
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ima->inactive_table = context->table;
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memset(&context->table, 0, sizeof(context->table));
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}
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wake_next_measure(ima);
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}
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/*
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* Internal function to copy device data for IMA measurements.
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*/
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static void dm_ima_copy_device_data(struct mapped_device *md, char *device_data,
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struct dm_ima_context *context,
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unsigned int num_targets)
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{
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memset(device_data, 0, DM_IMA_DEVICE_BUF_LEN);
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scnprintf(device_data, DM_IMA_DEVICE_BUF_LEN,
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"name=%s,uuid=%s,major=%d,minor=%d,minor_count=%d,num_targets=%u;",
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context->dev_name, context->dev_uuid, md->disk->major,
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md->disk->first_minor, md->disk->minors, num_targets);
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}
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/*
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* Internal wrapper function to call IMA to measure DM data.
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*/
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static void dm_ima_measure_data(const char *event_name, const void *buf, size_t buf_len,
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bool noio)
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{
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unsigned int noio_flag;
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if (noio)
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noio_flag = memalloc_noio_save();
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ima_measure_critical_data(DM_NAME, event_name, buf, buf_len,
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false, NULL, 0);
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if (noio)
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memalloc_noio_restore(noio_flag);
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}
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static sector_t dm_ima_capacity(struct mapped_device *md)
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{
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return (md->ima.active_table.device_metadata) ?
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md->ima.active_table.capacity : get_capacity(md->disk);
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}
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/*
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* Build up the IMA data for each target, and finally measure.
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*/
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void dm_ima_measure_on_table_load(struct dm_table *table,
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struct dm_ima_context *context)
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{
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size_t device_data_buf_len, target_metadata_buf_len, target_data_buf_len, l = 0;
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char *target_metadata_buf = NULL, *target_data_buf = NULL, *digest_buf = NULL;
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char *ima_buf = NULL, *device_data_buf = NULL;
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status_type_t type = STATUSTYPE_IMA;
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size_t cur_total_buf_len = 0;
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unsigned int num_targets, i;
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struct sha256_ctx hash_ctx;
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u8 digest[SHA256_DIGEST_SIZE];
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bool noio = false;
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char table_load_event_name[] = "dm_table_load";
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if (unlikely(!context))
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return;
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wait_to_measure(&table->md->ima, context->update_idx);
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ima_buf = dm_ima_alloc(DM_IMA_MEASUREMENT_BUF_LEN, noio);
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if (!ima_buf)
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goto error;
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target_metadata_buf = dm_ima_alloc(DM_IMA_TARGET_METADATA_BUF_LEN, noio);
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if (!target_metadata_buf)
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goto error;
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target_data_buf = dm_ima_alloc(DM_IMA_TARGET_DATA_BUF_LEN, noio);
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if (!target_data_buf)
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goto error;
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num_targets = table->num_targets;
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device_data_buf = dm_ima_alloc(DM_IMA_DEVICE_BUF_LEN, noio);
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if (!device_data_buf)
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goto error;
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fix_context_strings(context);
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dm_ima_copy_device_data(table->md, device_data_buf, context,
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num_targets);
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sha256_init(&hash_ctx);
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memcpy(ima_buf + l, DM_IMA_VERSION_STR, strlen(DM_IMA_VERSION_STR));
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l += strlen(DM_IMA_VERSION_STR);
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device_data_buf_len = strlen(device_data_buf);
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memcpy(ima_buf + l, device_data_buf, device_data_buf_len);
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l += device_data_buf_len;
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for (i = 0; i < num_targets; i++) {
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struct dm_target *ti = dm_table_get_target(table, i);
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/*
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* First retrieve the target metadata.
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*/
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target_metadata_buf_len =
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scnprintf(target_metadata_buf,
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DM_IMA_TARGET_METADATA_BUF_LEN,
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"target_index=%d,target_begin=%llu,target_len=%llu,",
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i, ti->begin, ti->len);
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/*
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* Then retrieve the actual target data.
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*/
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if (ti->type->status)
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ti->type->status(ti, type, 0, target_data_buf,
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DM_IMA_TARGET_DATA_BUF_LEN);
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else
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target_data_buf[0] = '\0';
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target_data_buf_len = strlen(target_data_buf);
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/*
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* Check if the total data can fit into the IMA buffer.
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*/
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cur_total_buf_len = l + target_metadata_buf_len + target_data_buf_len;
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/*
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* IMA measurements for DM targets are best-effort.
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* If the total data buffered so far, including the current target,
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* is too large to fit into DM_IMA_MEASUREMENT_BUF_LEN, measure what
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* we have in the current buffer, and continue measuring the remaining
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* targets by prefixing the device metadata again.
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*/
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if (unlikely(cur_total_buf_len >= DM_IMA_MEASUREMENT_BUF_LEN)) {
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dm_ima_measure_data(table_load_event_name, ima_buf, l, noio);
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sha256_update(&hash_ctx, (const u8 *)ima_buf, l);
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memset(ima_buf, 0, DM_IMA_MEASUREMENT_BUF_LEN);
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l = 0;
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/*
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* Each new "dm_table_load" entry in IMA log should have device data
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* prefix, so that multiple records from the same "dm_table_load" for
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* a given device can be linked together.
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*/
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memcpy(ima_buf + l, DM_IMA_VERSION_STR, strlen(DM_IMA_VERSION_STR));
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l += strlen(DM_IMA_VERSION_STR);
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memcpy(ima_buf + l, device_data_buf, device_data_buf_len);
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l += device_data_buf_len;
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}
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/*
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* Fill-in all the target metadata, so that multiple targets for the same
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* device can be linked together.
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*/
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memcpy(ima_buf + l, target_metadata_buf, target_metadata_buf_len);
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l += target_metadata_buf_len;
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memcpy(ima_buf + l, target_data_buf, target_data_buf_len);
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l += target_data_buf_len;
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}
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dm_ima_measure_data(table_load_event_name, ima_buf, l, noio);
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sha256_update(&hash_ctx, (const u8 *)ima_buf, l);
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/*
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* Finalize the table hash, and store it in table->md->ima.inactive_table.hash,
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* so that the table data can be verified against the future device state change
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* events, e.g. resume, rename, remove, table-clear etc.
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*/
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sha256_final(&hash_ctx, digest);
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digest_buf = kasprintf(GFP_KERNEL, "sha256:%*phN", SHA256_DIGEST_SIZE,
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digest);
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if (!digest_buf)
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goto error;
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kfree(table->md->ima.inactive_table.hash);
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table->md->ima.inactive_table.hash = digest_buf;
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table->md->ima.inactive_table.hash_len = strlen(digest_buf);
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table->md->ima.inactive_table.num_targets = num_targets;
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table->md->ima.inactive_table.capacity = dm_table_get_size(table);
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kfree(table->md->ima.inactive_table.device_metadata);
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table->md->ima.inactive_table.device_metadata = device_data_buf;
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table->md->ima.inactive_table.device_metadata_len = device_data_buf_len;
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goto exit;
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error:
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kfree(digest_buf);
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kfree(device_data_buf);
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exit:
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kfree(ima_buf);
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kfree(target_metadata_buf);
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kfree(target_data_buf);
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wake_next_measure(&table->md->ima);
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}
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/*
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* Measure IMA data on device resume.
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*/
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void dm_ima_measure_on_device_resume(struct mapped_device *md, bool swap,
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struct dm_ima_context *context)
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{
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char *device_table_data = NULL;
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char active[] = "active_table_hash=";
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unsigned int active_len = strlen(active);
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unsigned int l = 0;
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bool noio = true;
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bool nodata = true;
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if (unlikely(!context))
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return;
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wait_to_measure(&md->ima, context->update_idx);
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if (swap) {
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kfree(md->ima.active_table.hash);
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kfree(md->ima.active_table.device_metadata);
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md->ima.active_table = context->table;
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memset(&context->table, 0, sizeof(context->table));
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if (md->ima.active_table.device_metadata) {
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/*
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* A rename could have happened while the swap was
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* going on. In that case, the saved table info would
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* still have the old name. Update the metadata to be
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* sure that it has the current name
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*/
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struct dm_ima_device_table_metadata *table = &md->ima.active_table;
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fix_context_strings(context);
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dm_ima_copy_device_data(md, table->device_metadata,
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context, table->num_targets);
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table->device_metadata_len = strlen(table->device_metadata);
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}
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}
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device_table_data = dm_ima_alloc(DM_IMA_DEVICE_BUF_LEN, noio);
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if (!device_table_data)
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goto error;
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memcpy(device_table_data + l, DM_IMA_VERSION_STR, strlen(DM_IMA_VERSION_STR));
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l += strlen(DM_IMA_VERSION_STR);
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if (md->ima.active_table.device_metadata) {
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memcpy(device_table_data + l, md->ima.active_table.device_metadata,
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md->ima.active_table.device_metadata_len);
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l += md->ima.active_table.device_metadata_len;
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nodata = false;
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}
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if (md->ima.active_table.hash) {
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memcpy(device_table_data + l, active, active_len);
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l += active_len;
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memcpy(device_table_data + l, md->ima.active_table.hash,
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md->ima.active_table.hash_len);
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l += md->ima.active_table.hash_len;
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memcpy(device_table_data + l, ";", 1);
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l++;
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nodata = false;
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}
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if (nodata) {
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fix_context_strings(context);
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l = scnprintf(device_table_data, DM_IMA_DEVICE_BUF_LEN,
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"%sname=%s,uuid=%s;device_resume=no_data;",
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DM_IMA_VERSION_STR, context->dev_name,
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context->dev_uuid);
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}
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l += scnprintf(device_table_data + l, DM_IMA_DEVICE_BUF_LEN - l,
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"current_device_capacity=%llu;", dm_ima_capacity(md));
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dm_ima_measure_data("dm_device_resume", device_table_data, l, noio);
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error:
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kfree(device_table_data);
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wake_next_measure(&md->ima);
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}
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/*
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* Measure IMA data on remove.
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*/
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void dm_ima_measure_on_device_remove(struct mapped_device *md, bool remove_all,
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struct dm_ima_context *context,
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unsigned int idx)
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{
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char *device_table_data;
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char active_table_str[] = "active_table_hash=";
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char inactive_table_str[] = "inactive_table_hash=";
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char device_active_str[] = "device_active_metadata=";
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char device_inactive_str[] = "device_inactive_metadata=";
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unsigned int active_table_len = strlen(active_table_str);
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unsigned int inactive_table_len = strlen(inactive_table_str);
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unsigned int device_active_len = strlen(device_active_str);
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unsigned int device_inactive_len = strlen(device_inactive_str);
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unsigned int l = 0;
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bool noio = true;
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bool nodata = true;
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wait_to_measure(&md->ima, idx);
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if (unlikely(!context))
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goto exit;
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device_table_data = dm_ima_alloc(DM_IMA_DEVICE_BUF_LEN*2, noio);
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if (!device_table_data)
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goto exit;
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memcpy(device_table_data + l, DM_IMA_VERSION_STR, strlen(DM_IMA_VERSION_STR));
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l += strlen(DM_IMA_VERSION_STR);
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if (md->ima.active_table.device_metadata) {
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memcpy(device_table_data + l, device_active_str, device_active_len);
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l += device_active_len;
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memcpy(device_table_data + l, md->ima.active_table.device_metadata,
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md->ima.active_table.device_metadata_len);
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l += md->ima.active_table.device_metadata_len;
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nodata = false;
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}
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if (md->ima.inactive_table.device_metadata) {
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memcpy(device_table_data + l, device_inactive_str, device_inactive_len);
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l += device_inactive_len;
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memcpy(device_table_data + l, md->ima.inactive_table.device_metadata,
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md->ima.inactive_table.device_metadata_len);
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l += md->ima.inactive_table.device_metadata_len;
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nodata = false;
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}
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if (md->ima.active_table.hash) {
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memcpy(device_table_data + l, active_table_str, active_table_len);
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l += active_table_len;
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memcpy(device_table_data + l, md->ima.active_table.hash,
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md->ima.active_table.hash_len);
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l += md->ima.active_table.hash_len;
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memcpy(device_table_data + l, ",", 1);
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l++;
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nodata = false;
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}
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if (md->ima.inactive_table.hash) {
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memcpy(device_table_data + l, inactive_table_str, inactive_table_len);
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l += inactive_table_len;
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memcpy(device_table_data + l, md->ima.inactive_table.hash,
|
|
md->ima.inactive_table.hash_len);
|
|
l += md->ima.inactive_table.hash_len;
|
|
|
|
memcpy(device_table_data + l, ",", 1);
|
|
l++;
|
|
|
|
nodata = false;
|
|
}
|
|
/*
|
|
* In case both active and inactive tables, and corresponding
|
|
* device metadata is cleared/missing - record the name and uuid
|
|
* in IMA measurements.
|
|
*/
|
|
if (nodata) {
|
|
fix_context_strings(context);
|
|
l = scnprintf(device_table_data, DM_IMA_DEVICE_BUF_LEN,
|
|
"%sname=%s,uuid=%s;device_remove=no_data;",
|
|
DM_IMA_VERSION_STR, context->dev_name,
|
|
context->dev_uuid);
|
|
}
|
|
|
|
l += scnprintf(device_table_data + l, (DM_IMA_DEVICE_BUF_LEN * 2) - l,
|
|
"remove_all=%c;current_device_capacity=%llu;",
|
|
remove_all ? 'y' : 'n', dm_ima_capacity(md));
|
|
|
|
dm_ima_measure_data("dm_device_remove", device_table_data, l, noio);
|
|
|
|
kfree(device_table_data);
|
|
exit:
|
|
kfree(md->ima.active_table.device_metadata);
|
|
kfree(md->ima.inactive_table.device_metadata);
|
|
|
|
kfree(md->ima.active_table.hash);
|
|
kfree(md->ima.inactive_table.hash);
|
|
|
|
memset(&md->ima.active_table, 0, sizeof(md->ima.active_table));
|
|
memset(&md->ima.inactive_table, 0, sizeof(md->ima.inactive_table));
|
|
|
|
wake_next_measure(&md->ima);
|
|
}
|
|
|
|
/*
|
|
* Measure ima data on table clear.
|
|
*/
|
|
void dm_ima_measure_on_table_clear(struct mapped_device *md,
|
|
struct dm_ima_context *context)
|
|
{
|
|
unsigned int l = 0;
|
|
char *device_table_data = NULL;
|
|
char inactive_str[] = "inactive_table_hash=";
|
|
unsigned int inactive_len = strlen(inactive_str);
|
|
bool noio = true;
|
|
bool nodata = true;
|
|
|
|
if (unlikely(!context))
|
|
return;
|
|
|
|
wait_to_measure(&md->ima, context->update_idx);
|
|
|
|
device_table_data = dm_ima_alloc(DM_IMA_DEVICE_BUF_LEN, noio);
|
|
if (!device_table_data)
|
|
goto error;
|
|
|
|
memcpy(device_table_data + l, DM_IMA_VERSION_STR, strlen(DM_IMA_VERSION_STR));
|
|
l += strlen(DM_IMA_VERSION_STR);
|
|
|
|
if (md->ima.inactive_table.device_metadata_len &&
|
|
md->ima.inactive_table.hash_len) {
|
|
memcpy(device_table_data + l, md->ima.inactive_table.device_metadata,
|
|
md->ima.inactive_table.device_metadata_len);
|
|
l += md->ima.inactive_table.device_metadata_len;
|
|
|
|
memcpy(device_table_data + l, inactive_str, inactive_len);
|
|
l += inactive_len;
|
|
|
|
memcpy(device_table_data + l, md->ima.inactive_table.hash,
|
|
md->ima.inactive_table.hash_len);
|
|
|
|
l += md->ima.inactive_table.hash_len;
|
|
|
|
memcpy(device_table_data + l, ";", 1);
|
|
l++;
|
|
|
|
nodata = false;
|
|
}
|
|
|
|
if (nodata) {
|
|
fix_context_strings(context);
|
|
l = scnprintf(device_table_data, DM_IMA_DEVICE_BUF_LEN,
|
|
"%sname=%s,uuid=%s;table_clear=no_data;",
|
|
DM_IMA_VERSION_STR, context->dev_name,
|
|
context->dev_uuid);
|
|
}
|
|
|
|
l += scnprintf(device_table_data + l, DM_IMA_DEVICE_BUF_LEN - l,
|
|
"current_device_capacity=%llu;", dm_ima_capacity(md));
|
|
|
|
dm_ima_measure_data("dm_table_clear", device_table_data, l, noio);
|
|
|
|
error:
|
|
kfree(md->ima.inactive_table.hash);
|
|
kfree(md->ima.inactive_table.device_metadata);
|
|
memset(&md->ima.inactive_table, 0, sizeof(md->ima.inactive_table));
|
|
|
|
kfree(device_table_data);
|
|
|
|
wake_next_measure(&md->ima);
|
|
}
|
|
|
|
/*
|
|
* Measure IMA data on device rename.
|
|
*/
|
|
void dm_ima_measure_on_device_rename(struct mapped_device *md,
|
|
struct dm_ima_context *context)
|
|
{
|
|
char *old_device_data = NULL;
|
|
char *combined_device_data = NULL;
|
|
bool noio = true;
|
|
int len;
|
|
struct dm_ima_device_table_metadata *table;
|
|
|
|
if (unlikely(!context))
|
|
return;
|
|
|
|
wait_to_measure(&md->ima, context->update_idx);
|
|
|
|
fix_context_strings(context);
|
|
|
|
combined_device_data = dm_ima_alloc(DM_IMA_DEVICE_BUF_LEN * 2, noio);
|
|
if (!combined_device_data)
|
|
goto exit;
|
|
|
|
if (md->ima.active_table.device_metadata)
|
|
old_device_data = md->ima.active_table.device_metadata;
|
|
else if (md->ima.inactive_table.device_metadata)
|
|
old_device_data = md->ima.inactive_table.device_metadata;
|
|
else
|
|
old_device_data = "device_rename=no_data;";
|
|
len = scnprintf(combined_device_data, DM_IMA_DEVICE_BUF_LEN * 2,
|
|
"%s%snew_name=%s,new_uuid=%s;current_device_capacity=%llu;",
|
|
DM_IMA_VERSION_STR, old_device_data, context->dev_name,
|
|
context->dev_uuid, dm_ima_capacity(md));
|
|
|
|
dm_ima_measure_data("dm_device_rename", combined_device_data, len, noio);
|
|
kfree(combined_device_data);
|
|
|
|
exit:
|
|
if (md->ima.active_table.device_metadata) {
|
|
table = &md->ima.active_table;
|
|
dm_ima_copy_device_data(md, table->device_metadata, context,
|
|
table->num_targets);
|
|
table->device_metadata_len = strlen(table->device_metadata);
|
|
}
|
|
|
|
if (md->ima.inactive_table.device_metadata) {
|
|
table = &md->ima.inactive_table;
|
|
dm_ima_copy_device_data(md, table->device_metadata, context,
|
|
table->num_targets);
|
|
table->device_metadata_len = strlen(table->device_metadata);
|
|
}
|
|
|
|
wake_next_measure(&md->ima);
|
|
}
|