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https://github.com/AsahiLinux/u-boot
synced 2024-11-28 15:41:40 +00:00
efi_loader: add UEFI GPT measurement
This commit adds the UEFI GPT disk partition topology measurement required in TCG PC Client Platform Firmware Profile Specification Signed-off-by: Masahisa Kojima <masahisa.kojima@linaro.org>
This commit is contained in:
parent
3d49ee8510
commit
ce3dbc5d08
6 changed files with 190 additions and 3 deletions
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@ -45,6 +45,9 @@ enum if_type {
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#define BLK_PRD_SIZE 20
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#define BLK_REV_SIZE 8
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#define PART_FORMAT_PCAT 0x1
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#define PART_FORMAT_GPT 0x2
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/*
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* Identifies the partition table type (ie. MBR vs GPT GUID) signature
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*/
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@ -503,7 +503,7 @@ efi_status_t efi_init_variables(void);
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void efi_variables_boot_exit_notify(void);
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efi_status_t efi_tcg2_notify_exit_boot_services_failed(void);
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/* Measure efi application invocation */
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efi_status_t efi_tcg2_measure_efi_app_invocation(void);
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efi_status_t efi_tcg2_measure_efi_app_invocation(struct efi_loaded_image_obj *handle);
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/* Measure efi application exit */
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efi_status_t efi_tcg2_measure_efi_app_exit(void);
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/* Called by bootefi to initialize root node */
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@ -847,6 +847,7 @@ struct efi_device_path *efi_dp_from_lo(struct efi_load_option *lo,
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const efi_guid_t *guid);
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struct efi_device_path *efi_dp_concat(const struct efi_device_path *dp1,
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const struct efi_device_path *dp2);
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struct efi_device_path *search_gpt_dp_node(struct efi_device_path *device_path);
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efi_status_t efi_deserialize_load_option(struct efi_load_option *lo, u8 *data,
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efi_uintn_t *size);
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unsigned long efi_serialize_load_option(struct efi_load_option *lo, u8 **data);
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@ -225,6 +225,18 @@ struct smbios_handoff_table_pointers2 {
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struct efi_configuration_table table_entry[];
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} __packed;
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/**
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* struct tdUEFI_GPT_DATA - event log structure of industry standard tables
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* @uefi_partition_header: gpt partition header
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* @number_of_partitions: the number of partition
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* @partitions: partition entries
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*/
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struct efi_gpt_data {
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gpt_header uefi_partition_header;
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u64 number_of_partitions;
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gpt_entry partitions[];
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} __packed;
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struct efi_tcg2_protocol {
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efi_status_t (EFIAPI * get_capability)(struct efi_tcg2_protocol *this,
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struct efi_tcg2_boot_service_capability *capability);
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@ -3004,7 +3004,7 @@ efi_status_t EFIAPI efi_start_image(efi_handle_t image_handle,
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if (IS_ENABLED(CONFIG_EFI_TCG2_PROTOCOL)) {
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if (image_obj->image_type == IMAGE_SUBSYSTEM_EFI_APPLICATION) {
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ret = efi_tcg2_measure_efi_app_invocation();
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ret = efi_tcg2_measure_efi_app_invocation(image_obj);
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if (ret != EFI_SUCCESS) {
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log_warning("tcg2 measurement fails(0x%lx)\n",
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ret);
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@ -1239,3 +1239,30 @@ efi_device_path *efi_dp_from_lo(struct efi_load_option *lo,
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return NULL;
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}
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/**
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* search_gpt_dp_node() - search gpt device path node
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*
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* @device_path: device path
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*
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* Return: pointer to the gpt device path node
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*/
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struct efi_device_path *search_gpt_dp_node(struct efi_device_path *device_path)
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{
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struct efi_device_path *dp = device_path;
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while (dp) {
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if (dp->type == DEVICE_PATH_TYPE_MEDIA_DEVICE &&
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dp->sub_type == DEVICE_PATH_SUB_TYPE_HARD_DRIVE_PATH) {
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struct efi_device_path_hard_drive_path *hd_dp =
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(struct efi_device_path_hard_drive_path *)dp;
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if (hd_dp->partmap_type == PART_FORMAT_GPT &&
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hd_dp->signature_type == SIG_TYPE_GUID)
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return dp;
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}
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dp = efi_dp_next(dp);
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}
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return NULL;
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}
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@ -1528,12 +1528,152 @@ static void *find_smbios_table(void)
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return NULL;
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}
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/**
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* tcg2_measure_gpt_table() - measure gpt table
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*
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* @dev: TPM device
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* @loaded_image: handle to the loaded image
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*
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* Return: status code
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*/
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static efi_status_t
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tcg2_measure_gpt_data(struct udevice *dev,
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struct efi_loaded_image_obj *loaded_image)
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{
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efi_status_t ret;
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efi_handle_t handle;
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struct efi_handler *dp_handler;
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struct efi_device_path *orig_device_path;
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struct efi_device_path *device_path;
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struct efi_device_path *dp;
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struct efi_block_io *block_io;
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struct efi_gpt_data *event = NULL;
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efi_guid_t null_guid = NULL_GUID;
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gpt_header *gpt_h;
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gpt_entry *entry = NULL;
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gpt_entry *gpt_e;
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u32 num_of_valid_entry = 0;
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u32 event_size;
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u32 i;
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u32 total_gpt_entry_size;
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ret = efi_search_protocol(&loaded_image->header,
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&efi_guid_loaded_image_device_path,
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&dp_handler);
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if (ret != EFI_SUCCESS)
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return ret;
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orig_device_path = dp_handler->protocol_interface;
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if (!orig_device_path) /* no device path, skip GPT measurement */
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return EFI_SUCCESS;
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device_path = efi_dp_dup(orig_device_path);
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if (!device_path)
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return EFI_OUT_OF_RESOURCES;
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dp = search_gpt_dp_node(device_path);
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if (!dp) {
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/* no GPT device path node found, skip GPT measurement */
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ret = EFI_SUCCESS;
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goto out1;
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}
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/* read GPT header */
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dp->type = DEVICE_PATH_TYPE_END;
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dp->sub_type = DEVICE_PATH_SUB_TYPE_END;
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dp = device_path;
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ret = EFI_CALL(systab.boottime->locate_device_path(&efi_block_io_guid,
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&dp, &handle));
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if (ret != EFI_SUCCESS)
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goto out1;
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ret = EFI_CALL(efi_handle_protocol(handle,
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&efi_block_io_guid, (void **)&block_io));
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if (ret != EFI_SUCCESS)
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goto out1;
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gpt_h = memalign(block_io->media->io_align, block_io->media->block_size);
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if (!gpt_h) {
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ret = EFI_OUT_OF_RESOURCES;
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goto out2;
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}
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ret = block_io->read_blocks(block_io, block_io->media->media_id, 1,
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block_io->media->block_size, gpt_h);
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if (ret != EFI_SUCCESS)
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goto out2;
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/* read GPT entry */
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total_gpt_entry_size = gpt_h->num_partition_entries *
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gpt_h->sizeof_partition_entry;
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entry = memalign(block_io->media->io_align, total_gpt_entry_size);
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if (!entry) {
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ret = EFI_OUT_OF_RESOURCES;
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goto out2;
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}
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ret = block_io->read_blocks(block_io, block_io->media->media_id,
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gpt_h->partition_entry_lba,
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total_gpt_entry_size, entry);
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if (ret != EFI_SUCCESS)
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goto out2;
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/* count valid GPT entry */
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gpt_e = entry;
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for (i = 0; i < gpt_h->num_partition_entries; i++) {
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if (guidcmp(&null_guid, &gpt_e->partition_type_guid))
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num_of_valid_entry++;
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gpt_e = (gpt_entry *)((u8 *)gpt_e + gpt_h->sizeof_partition_entry);
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}
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/* prepare event data for measurement */
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event_size = sizeof(struct efi_gpt_data) +
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(num_of_valid_entry * gpt_h->sizeof_partition_entry);
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event = calloc(1, event_size);
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if (!event) {
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ret = EFI_OUT_OF_RESOURCES;
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goto out2;
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}
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memcpy(event, gpt_h, sizeof(gpt_header));
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put_unaligned_le64(num_of_valid_entry, &event->number_of_partitions);
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/* copy valid GPT entry */
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gpt_e = entry;
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num_of_valid_entry = 0;
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for (i = 0; i < gpt_h->num_partition_entries; i++) {
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if (guidcmp(&null_guid, &gpt_e->partition_type_guid)) {
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memcpy((u8 *)event->partitions +
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(num_of_valid_entry * gpt_h->sizeof_partition_entry),
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gpt_e, gpt_h->sizeof_partition_entry);
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num_of_valid_entry++;
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}
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gpt_e = (gpt_entry *)((u8 *)gpt_e + gpt_h->sizeof_partition_entry);
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}
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ret = tcg2_measure_event(dev, 5, EV_EFI_GPT_EVENT, event_size, (u8 *)event);
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if (ret != EFI_SUCCESS)
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goto out2;
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out2:
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EFI_CALL(efi_close_protocol((efi_handle_t)block_io, &efi_block_io_guid,
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NULL, NULL));
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free(gpt_h);
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free(entry);
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free(event);
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out1:
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efi_free_pool(device_path);
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return ret;
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}
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/**
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* efi_tcg2_measure_efi_app_invocation() - measure efi app invocation
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*
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* Return: status code
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*/
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efi_status_t efi_tcg2_measure_efi_app_invocation(void)
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efi_status_t efi_tcg2_measure_efi_app_invocation(struct efi_loaded_image_obj *handle)
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{
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efi_status_t ret;
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u32 pcr_index;
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@ -1565,6 +1705,10 @@ efi_status_t efi_tcg2_measure_efi_app_invocation(void)
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goto out;
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}
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ret = tcg2_measure_gpt_data(dev, handle);
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if (ret != EFI_SUCCESS)
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goto out;
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for (pcr_index = 0; pcr_index <= 7; pcr_index++) {
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ret = tcg2_measure_event(dev, pcr_index, EV_SEPARATOR,
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sizeof(event), (u8 *)&event);
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