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There are only a few things found in <mtd.h> today. Go through and audit the C files which include <mtd.h> and remove it when not required. Then, add it to the files which had either missed it or had an indirect inclusion of it. Signed-off-by: Tom Rini <trini@konsulko.com>
431 lines
12 KiB
C
431 lines
12 KiB
C
/* SPDX-License-Identifier: GPL-2.0-or-later */
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/*
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* Copyright (c) 2022, Linaro Limited
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*/
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#if !defined _FWU_H_
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#define _FWU_H_
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#include <blk.h>
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#include <efi.h>
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#include <fwu_mdata.h>
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#include <u-boot/uuid.h>
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#include <linux/types.h>
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struct fwu_mdata;
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struct udevice;
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struct fwu_mdata_gpt_blk_priv {
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struct udevice *blk_dev;
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};
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struct fwu_mtd_image_info {
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u32 start, size;
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int bank_num, image_num;
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char uuidbuf[UUID_STR_LEN + 1];
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};
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struct fwu_mdata_mtd_priv {
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struct mtd_info *mtd;
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char pri_label[50];
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char sec_label[50];
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u32 pri_offset;
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u32 sec_offset;
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struct fwu_mtd_image_info *fwu_mtd_images;
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};
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struct fwu_data {
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uint32_t crc32;
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uint32_t version;
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uint32_t active_index;
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uint32_t previous_active_index;
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uint32_t metadata_size;
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uint32_t boot_index;
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uint32_t num_banks;
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uint32_t num_images;
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uint8_t bank_state[4];
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bool trial_state;
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struct fwu_mdata *fwu_mdata;
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struct fwu_image_entry fwu_images[CONFIG_FWU_NUM_IMAGES_PER_BANK];
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};
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struct fwu_mdata_ops {
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/**
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* read_mdata() - Populate the asked FWU metadata copy
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* @dev: FWU metadata device
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* @mdata: Output FWU mdata read
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* @primary: If primary or secondary copy of metadata is to be read
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* @size: Size in bytes of the metadata to be read
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*
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* Return: 0 if OK, -ve on error
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*/
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int (*read_mdata)(struct udevice *dev, struct fwu_mdata *mdata,
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bool primary, uint32_t size);
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/**
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* write_mdata() - Write the given FWU metadata copy
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* @dev: FWU metadata device
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* @mdata: Copy of the FWU metadata to write
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* @primary: If primary or secondary copy of metadata is to be written
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* @size: Size in bytes of the metadata to be written
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*
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* Return: 0 if OK, -ve on error
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*/
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int (*write_mdata)(struct udevice *dev, struct fwu_mdata *mdata,
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bool primary, uint32_t size);
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};
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#define FWU_IMAGE_ACCEPTED 0x1
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#define FWU_BANK_INVALID (uint8_t)0xFF
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#define FWU_BANK_VALID (uint8_t)0xFE
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#define FWU_BANK_ACCEPTED (uint8_t)0xFC
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enum {
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PRIMARY_PART = 1,
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SECONDARY_PART,
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BOTH_PARTS,
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};
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/*
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* GUID value defined in the FWU specification for identification
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* of the FWU metadata partition.
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*/
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#define FWU_MDATA_GUID \
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EFI_GUID(0x8a7a84a0, 0x8387, 0x40f6, 0xab, 0x41, \
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0xa8, 0xb9, 0xa5, 0xa6, 0x0d, 0x23)
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/*
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* GUID value defined in the Dependable Boot specification for
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* identification of the revert capsule, used for reverting
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* any image in the updated bank.
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*/
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#define FWU_OS_REQUEST_FW_REVERT_GUID \
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EFI_GUID(0xacd58b4b, 0xc0e8, 0x475f, 0x99, 0xb5, \
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0x6b, 0x3f, 0x7e, 0x07, 0xaa, 0xf0)
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/*
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* GUID value defined in the Dependable Boot specification for
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* identification of the accept capsule, used for accepting
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* an image in the updated bank.
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*/
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#define FWU_OS_REQUEST_FW_ACCEPT_GUID \
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EFI_GUID(0x0c996046, 0xbcc0, 0x4d04, 0x85, 0xec, \
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0xe1, 0xfc, 0xed, 0xf1, 0xc6, 0xf8)
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/**
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* fwu_read_mdata() - Wrapper around fwu_mdata_ops.read_mdata()
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*/
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int fwu_read_mdata(struct udevice *dev, struct fwu_mdata *mdata,
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bool primary, uint32_t size);
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/**
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* fwu_write_mdata() - Wrapper around fwu_mdata_ops.write_mdata()
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*/
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int fwu_write_mdata(struct udevice *dev, struct fwu_mdata *mdata,
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bool primary, uint32_t size);
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/**
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* fwu_get_mdata() - Read, verify and return the FWU metadata
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*
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* Read both the metadata copies from the storage media, verify their checksum,
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* and ascertain that both copies match. If one of the copies has gone bad,
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* restore it from the good copy.
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*
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* Return: 0 if OK, -ve on error
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*/
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int fwu_get_mdata(struct fwu_mdata *mdata);
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/**
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* fwu_get_active_index() - Get active_index from the FWU metadata
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* @active_idxp: active_index value to be read
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*
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* Read the active_index field from the FWU metadata and place it in
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* the variable pointed to be the function argument.
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*
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* Return: 0 if OK, -ve on error
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*
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*/
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int fwu_get_active_index(uint *active_idxp);
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/**
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* fwu_set_active_index() - Set active_index in the FWU metadata
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* @active_idx: active_index value to be set
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*
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* Update the active_index field in the FWU metadata
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*
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* Return: 0 if OK, -ve on error
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*
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*/
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int fwu_set_active_index(uint active_idx);
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/**
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* fwu_get_dfu_alt_num() - Get the dfu_alt_num to be used for capsule update
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* @image_index: The Image Index for the image
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* @alt_num: pointer to store dfu_alt_num
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*
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* Currently, the capsule update driver uses the DFU framework for
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* the updates. This function gets the DFU alt number which is to
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* be used for capsule update.
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*
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* Return: 0 if OK, -ve on error
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*
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*/
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int fwu_get_dfu_alt_num(u8 image_index, u8 *alt_num);
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/**
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* fwu_revert_boot_index() - Revert the active index in the FWU metadata
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*
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* Revert the active_index value in the FWU metadata, by swapping the values
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* of active_index and previous_active_index in both copies of the
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* FWU metadata.
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*
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* Return: 0 if OK, -ve on error
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*
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*/
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int fwu_revert_boot_index(void);
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/**
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* fwu_accept_image() - Set the Acceptance bit for the image
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* @img_type_id: GUID of the image type for which the accepted bit is to be
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* cleared
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* @bank: Bank of which the image's Accept bit is to be set
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*
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* Set the accepted bit for the image specified by the img_guid parameter. This
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* indicates acceptance of image for subsequent boots by some governing component
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* like OS(or firmware).
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*
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* Return: 0 if OK, -ve on error
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*
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*/
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int fwu_accept_image(efi_guid_t *img_type_id, u32 bank);
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/**
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* fwu_clear_accept_image() - Clear the Acceptance bit for the image
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* @img_type_id: GUID of the image type for which the accepted bit is to be
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* cleared
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* @bank: Bank of which the image's Accept bit is to be cleared
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*
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* Clear the accepted bit for the image type specified by the img_type_id parameter.
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* This function is called after the image has been updated. The accepted bit is
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* cleared to be set subsequently after passing the image acceptance criteria, by
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* either the OS(or firmware)
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*
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* Return: 0 if OK, -ve on error
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*
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*/
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int fwu_clear_accept_image(efi_guid_t *img_type_id, u32 bank);
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/**
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* fwu_plat_get_alt_num() - Get the DFU Alt Num for the image from the platform
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* @dev: FWU device
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* @image_guid: Image GUID for which DFU alt number needs to be retrieved
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* @alt_num: Pointer to the alt_num
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*
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* Get the DFU alt number from the platform for the image specified by the
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* image GUID.
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*
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* Return: 0 if OK, -ve on error
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*
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*/
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int fwu_plat_get_alt_num(struct udevice *dev, efi_guid_t *image_guid,
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u8 *alt_num);
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/**
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* fwu_plat_get_update_index() - Get the value of the update bank
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* @update_idx: Bank number to which images are to be updated
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*
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* Get the value of the bank(partition) to which the update needs to be
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* made.
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*
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* Note: This is a weak function and platforms can override this with
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* their own implementation for selection of the update bank.
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*
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* Return: 0 if OK, -ve on error
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*
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*/
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int fwu_plat_get_update_index(uint *update_idx);
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/**
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* fwu_plat_get_bootidx() - Get the value of the boot index
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* @boot_idx: Boot index value
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*
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* Get the value of the bank(partition) from which the platform
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* has booted. This value is passed to U-Boot from the earlier
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* stage bootloader which loads and boots all the relevant
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* firmware images
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*
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*/
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void fwu_plat_get_bootidx(uint *boot_idx);
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/**
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* fwu_update_checks_pass() - Check if FWU update can be done
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*
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* Check if the FWU update can be executed. The updates are
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* allowed only when the platform is not in Trial State and
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* the boot time checks have passed
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*
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* Return: 1 if OK, 0 if checks do not pass
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*
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*/
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u8 fwu_update_checks_pass(void);
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/**
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* fwu_empty_capsule_checks_pass() - Check if empty capsule can be processed
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*
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* Check if the empty capsule can be processed to either accept or revert
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* an earlier executed update. The empty capsules need to be processed
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* only when the platform is in Trial State and the boot time checks have
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* passed
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*
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* Return: 1 if OK, 0 if not to be allowed
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*
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*/
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u8 fwu_empty_capsule_checks_pass(void);
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/**
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* fwu_trial_state_ctr_start() - Start the Trial State counter
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*
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* Start the counter to identify the platform booting in the
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* Trial State. The counter is implemented as an EFI variable.
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*
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* Return: 0 if OK, -ve on error
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*
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*/
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int fwu_trial_state_ctr_start(void);
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/**
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* fwu_gen_alt_info_from_mtd() - Parse dfu_alt_info from metadata in mtd
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* @buf: Buffer into which the dfu_alt_info is filled
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* @len: Maximum characters that can be written in buf
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* @mtd: Pointer to underlying MTD device
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*
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* Parse dfu_alt_info from metadata in mtd. Used for setting the env.
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*
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* Return: 0 if OK, -ve on error
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*/
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int fwu_gen_alt_info_from_mtd(char *buf, size_t len, struct mtd_info *mtd);
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/**
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* fwu_mtd_get_alt_num() - Mapping of fwu_plat_get_alt_num for MTD device
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* @image_guid: Image GUID for which DFU alt number needs to be retrieved
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* @alt_num: Pointer to the alt_num
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* @mtd_dev: Name of mtd device instance
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*
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* To map fwu_plat_get_alt_num onto mtd based metadata implementation.
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*
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* Return: 0 if OK, -ve on error
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*/
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int fwu_mtd_get_alt_num(efi_guid_t *image_guid, u8 *alt_num, const char *mtd_dev);
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/**
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* fwu_mdata_copies_allocate() - Allocate memory for metadata
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* @mdata_size: Size of the metadata structure
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*
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* Allocate memory for storing both the copies of the FWU metadata. The
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* copies are then used as a cache for storing FWU metadata contents.
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*
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* Return: 0 if OK, -ve on error
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*/
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int fwu_mdata_copies_allocate(u32 mdata_size);
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/**
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* fwu_get_dev() - Return the FWU metadata device
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*
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* Return the pointer to the FWU metadata device.
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*
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* Return: Pointer to the FWU metadata dev
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*/
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struct udevice *fwu_get_dev(void);
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/**
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* fwu_get_data() - Return the version agnostic FWU structure
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*
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* Return the pointer to the version agnostic FWU structure.
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*
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* Return: Pointer to the FWU data structure
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*/
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struct fwu_data *fwu_get_data(void);
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/**
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* fwu_sync_mdata() - Update given meta-data partition(s) with the copy provided
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* @data: FWU Data structure
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* @part: Bitmask of FWU metadata partitions to be written to
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*
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* Return: 0 if OK, -ve on error
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*/
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int fwu_sync_mdata(struct fwu_mdata *mdata, int part);
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/**
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* fwu_populate_mdata_image_info() - Populate the image information
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* of the metadata
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* @data: Version agnostic FWU metadata information
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*
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* Populate the image information in the FWU metadata by copying it
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* from the version agnostic structure. This is done before the
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* metadata gets written to the storage media.
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*
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* Return: None
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*/
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void fwu_populate_mdata_image_info(struct fwu_data *data);
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/**
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* fwu_get_mdata_size() - Get the FWU metadata size
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* @mdata_size: Size of the metadata structure
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*
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* Get the size of the FWU metadata from the structure. This is later used
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* to allocate memory for the structure.
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*
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* Return: 0 if OK, -ve on error
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*/
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int fwu_get_mdata_size(uint32_t *mdata_size);
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/**
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* fwu_state_machine_updates() - Update FWU state of the platform
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* @trial_state: Is platform transitioning into Trial State
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* @update_index: Bank number to which images have been updated
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*
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* On successful completion of updates, transition the platform to
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* either Trial State or Regular State.
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*
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* To transition the platform to Trial State, start the
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* TrialStateCtr counter, followed by setting the value of bank_state
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* field of the metadata to Valid state(applicable only in version 2
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* of metadata).
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*
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* In case, the platform is to transition directly to Regular State,
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* update the bank_state field of the metadata to Accepted
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* state(applicable only in version 2 of metadata).
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*
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* Return: 0 if OK, -ve on error
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*/
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int fwu_state_machine_updates(bool trial_state, uint32_t update_index);
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/**
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* fwu_init() - FWU specific initialisations
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*
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* Carry out some FWU specific initialisations including allocation
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* of memory for the metadata copies, and reading the FWU metadata
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* copies into the allocated memory. The metadata fields are then
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* copied into a version agnostic structure.
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*
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* Return: 0 if OK, -ve on error
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*/
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int fwu_init(void);
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/**
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* fwu_bank_accepted() - Has the bank been accepted
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* @data: Version agnostic FWU metadata information
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* @bank: Update bank to check
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*
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* Check in the given bank if all the images have been accepted.
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*
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* Return: true if all images accepted, false otherwise
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*/
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bool fwu_bank_accepted(struct fwu_data *data, uint32_t bank);
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#endif /* _FWU_H_ */
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