mirror of
https://github.com/AsahiLinux/u-boot
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91943ff703
We want to support scanning a single label, like 'mmc' or 'usb0'. Add this feature by plumbing the label through to the iterator, setting a flag to indicate that only siblings of the initial device should be used. This means that scanning a bootdev by its name is not supported anymore. That feature doesn't seem very useful in practice, so it is no great loss. Add a test for bootdev_find_by_any() while we are here. Signed-off-by: Simon Glass <sjg@chromium.org>
443 lines
15 KiB
C
443 lines
15 KiB
C
/* SPDX-License-Identifier: GPL-2.0+ */
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/*
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* Copyright 2021 Google LLC
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* Written by Simon Glass <sjg@chromium.org>
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*/
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#ifndef __bootdev_h
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#define __bootdev_h
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#include <linux/list.h>
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struct bootflow;
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struct bootflow_iter;
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struct bootstd_priv;
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struct udevice;
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/**
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* enum bootdev_prio_t - priority of each bootdev
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*
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* These values are associated with each bootdev and set up by the driver.
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*
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* Smallest value is the highest priority. By default, bootdevs are scanned from
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* highest to lowest priority
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*
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* BOOTDEVP_0_NONE: Invalid value, do not use
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* @BOOTDEVP_6_PRE_SCAN: Scan bootdevs with this priority always, before
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* starting any bootflow scan
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* @BOOTDEVP_2_INTERNAL_FAST: Internal devices which don't need scanning and
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* generally very quick to access, e.g. less than 100ms
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* @BOOTDEVP_3_INTERNAL_SLOW: Internal devices which don't need scanning but
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* take a significant fraction of a second to access
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* @BOOTDEVP_4_SCAN_FAST: Extenal devices which need scanning or bus
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* enumeration to find, but this enumeration happens quickly, typically under
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* 100ms
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* @BOOTDEVP_5_SCAN_SLOW: Extenal devices which need scanning or bus
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* enumeration to find. The enumeration takes significant fraction of a second
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* to complete
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* @BOOTDEVP_6_NET_BASE: Basic network devices which are quickly and easily
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* available. Typically used for an internal Ethernet device
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* @BOOTDEVP_7_NET_FALLBACK: Secondary network devices which require extra time
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* to start up, or are less desirable. Typically used for secondary Ethernet
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* devices. Note that USB ethernet devices are found during USB enumeration,
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* so do not use this priority
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*/
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enum bootdev_prio_t {
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BOOTDEVP_0_NONE,
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BOOTDEVP_1_PRE_SCAN,
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BOOTDEVP_2_INTERNAL_FAST,
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BOOTDEVP_3_INTERNAL_SLOW,
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BOOTDEVP_4_SCAN_FAST,
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BOOTDEVP_5_SCAN_SLOW,
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BOOTDEVP_6_NET_BASE,
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BOOTDEVP_7_NET_FALLBACK,
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BOOTDEVP_COUNT,
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};
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struct bootdev_hunter;
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/**
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* bootdev_hunter_func - function to probe for bootdevs of a given type
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*
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* This should hunt around for bootdevs of the given type, binding them as it
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* finds them. This may involve bus enumeration, etc.
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*
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* @info: Info structure describing this hunter
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* @show: true to show information from the hunter
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* Returns: 0 if OK, -ve on error
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*/
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typedef int (*bootdev_hunter_func)(struct bootdev_hunter *info, bool show);
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/**
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* struct bootdev_hunter - information about how to hunt for bootdevs
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*
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* @prio: Scanning priority of this hunter
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* @uclass: Uclass ID for the media associated with this bootdev
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* @drv: bootdev driver for the things found by this hunter
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* @hunt: Function to call to hunt for bootdevs of this type (NULL if none)
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*
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* Some bootdevs are not visible until other devices are enumerated. For
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* example, USB bootdevs only appear when the USB bus is enumerated.
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*
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* On the other hand, we don't always want to enumerate all the buses just to
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* find the first valid bootdev. Ideally we want to work through them in
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* priority order, so that the fastest bootdevs are discovered first.
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*
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* This struct holds information about the bootdev so we can determine the probe
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* order and how to hunt for bootdevs of this type
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*/
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struct bootdev_hunter {
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enum bootdev_prio_t prio;
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enum uclass_id uclass;
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struct driver *drv;
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bootdev_hunter_func hunt;
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};
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/* declare a new bootdev hunter */
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#define BOOTDEV_HUNTER(__name) \
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ll_entry_declare(struct bootdev_hunter, __name, bootdev_hunter)
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/* access a bootdev hunter by name */
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#define BOOTDEV_HUNTER_GET(__name) \
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ll_entry_get(struct bootdev_hunter, __name, bootdev_hunter)
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/**
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* struct bootdev_uc_plat - uclass information about a bootdev
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*
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* This is attached to each device in the bootdev uclass and accessible via
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* dev_get_uclass_plat(dev)
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*
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* @bootflows: List of available bootflows for this bootdev
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* @piro: Priority of this bootdev
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*/
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struct bootdev_uc_plat {
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struct list_head bootflow_head;
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enum bootdev_prio_t prio;
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};
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/** struct bootdev_ops - Operations for the bootdev uclass */
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struct bootdev_ops {
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/**
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* get_bootflow() - get a bootflow (optional)
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*
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* If this is NULL then the default implementaton is used, which is
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* default_get_bootflow()
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*
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* @dev: Bootflow device to check
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* @iter: Provides current dev, part, method to get. Should update
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* max_part if there is a partition table. Should update state,
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* subdir, fname, buf, size according to progress
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* @bflow: Updated bootflow if found
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* Return: 0 if OK, -ESHUTDOWN if there are no more bootflows on this
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* device, -ENOSYS if this device doesn't support bootflows,
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* other -ve value on other error
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*/
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int (*get_bootflow)(struct udevice *dev, struct bootflow_iter *iter,
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struct bootflow *bflow);
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};
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#define bootdev_get_ops(dev) ((struct bootdev_ops *)(dev)->driver->ops)
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/**
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* bootdev_get_bootflow() - get a bootflow
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*
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* @dev: Bootflow device to check
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* @iter: Provides current part, method to get
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* @bflow: Returns bootflow if found
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* Return: 0 if OK, -ESHUTDOWN if there are no more bootflows on this device,
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* -ENOSYS if this device doesn't support bootflows, other -ve value on
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* other error
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*/
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int bootdev_get_bootflow(struct udevice *dev, struct bootflow_iter *iter,
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struct bootflow *bflow);
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/**
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* bootdev_bind() - Bind a new named bootdev device
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*
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* @parent: Parent of the new device
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* @drv_name: Driver name to use for the bootdev device
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* @name: Name for the device (parent name is prepended)
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* @devp: the new device (which has not been probed)
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*/
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int bootdev_bind(struct udevice *parent, const char *drv_name, const char *name,
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struct udevice **devp);
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/**
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* bootdev_find_in_blk() - Find a bootdev in a block device
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*
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* @dev: Bootflow device associated with this block device
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* @blk: Block device to search
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* @iter: Provides current dev, part, method to get. Should update
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* max_part if there is a partition table
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* @bflow: On entry, provides information about the partition and device to
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* check. On exit, returns bootflow if found
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* Return: 0 if found, -ESHUTDOWN if no more bootflows, other -ve on error
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*/
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int bootdev_find_in_blk(struct udevice *dev, struct udevice *blk,
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struct bootflow_iter *iter, struct bootflow *bflow);
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/**
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* bootdev_list() - List all available bootdevs
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*
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* @probe: true to probe devices, false to leave them as is
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*/
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void bootdev_list(bool probe);
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/**
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* bootdev_clear_bootflows() - Clear bootflows from a bootdev
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*
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* Each bootdev maintains a list of discovered bootflows. This provides a
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* way to clear it. These bootflows are removed from the global list too.
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*
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* @dev: bootdev device to update
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*/
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void bootdev_clear_bootflows(struct udevice *dev);
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/**
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* bootdev_add_bootflow() - Add a bootflow to the bootdev's list
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*
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* All fields in @bflow must be set up. Note that @bflow->dev is used to add the
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* bootflow to that device.
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*
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* @dev: Bootdevice device to add to
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* @bflow: Bootflow to add. Note that fields within bflow must be allocated
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* since this function takes over ownership of these. This functions makes
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* a copy of @bflow itself (without allocating its fields again), so the
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* caller must dispose of the memory used by the @bflow pointer itself
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* Return: 0 if OK, -ENOMEM if out of memory
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*/
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int bootdev_add_bootflow(struct bootflow *bflow);
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/**
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* bootdev_first_bootflow() - Get the first bootflow from a bootdev
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*
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* Returns the first bootflow attached to a bootdev
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*
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* @dev: bootdev device
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* @bflowp: Returns a pointer to the bootflow
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* Return: 0 if found, -ENOENT if there are no bootflows
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*/
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int bootdev_first_bootflow(struct udevice *dev, struct bootflow **bflowp);
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/**
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* bootdev_next_bootflow() - Get the next bootflow from a bootdev
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*
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* Returns the next bootflow attached to a bootdev
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*
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* @bflowp: On entry, the last bootflow returned , e.g. from
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* bootdev_first_bootflow()
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* Return: 0 if found, -ENOENT if there are no more bootflows
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*/
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int bootdev_next_bootflow(struct bootflow **bflowp);
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/**
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* bootdev_find_by_label() - Look up a bootdev by label
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*
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* Each bootdev has a label which contains the media-uclass name and a number,
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* e.g. 'mmc2'. This looks up the label and returns the associated bootdev
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*
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* The lookup is performed based on the media device's sequence number. So for
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* 'mmc2' this looks for a device in UCLASS_MMC with a dev_seq() of 2.
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*
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* @label: Label to look up (e.g. "mmc1" or "mmc0")
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* @devp: Returns the bootdev device found, or NULL if none (note it does not
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* return the media device, but its bootdev child)
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* @method_flagsp: If non-NULL, returns any flags implied by the label
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* (enum bootflow_meth_flags_t), 0 if none. Unset if function fails
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* Return: 0 if OK, -EINVAL if the uclass is not supported by this board,
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* -ENOENT if there is no device with that number
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*/
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int bootdev_find_by_label(const char *label, struct udevice **devp,
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int *method_flagsp);
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/**
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* bootdev_find_by_any() - Find a bootdev by name, label or sequence
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*
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* @name: name (e.g. "mmc2.bootdev"), label ("mmc2"), or sequence ("2") to find
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* @devp: returns the device found, on success
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* @method_flagsp: If non-NULL, returns any flags implied by the label
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* (enum bootflow_meth_flags_t), 0 if none. Unset if function fails
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* Return: 0 if OK, -EINVAL if the uclass is not supported by this board,
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* -ENOENT if there is no device with that number
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*/
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int bootdev_find_by_any(const char *name, struct udevice **devp,
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int *method_flagsp);
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/**
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* bootdev_setup_iter() - Set up iteration through bootdevs
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*
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* This sets up the an interation, based on the provided device or label. If
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* neither is provided, the iteration is based on the priority of each bootdev,
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* the * bootdev-order property in the bootstd node (or the boot_targets env
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* var).
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*
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* @iter: Iterator to update with the order
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* @label: label to scan, or NULL to scan all
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* @devp: On entry, *devp is NULL to scan all, otherwise this is the (single)
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* device to scan. Returns the first device to use, which is the passed-in
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* @devp if it was non-NULL
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* @method_flagsp: If non-NULL, returns any flags implied by the label
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* (enum bootflow_meth_flags_t), 0 if none
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* Return: 0 if OK, -ENOENT if no bootdevs, -ENOMEM if out of memory, other -ve
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* on other error
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*/
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int bootdev_setup_iter(struct bootflow_iter *iter, const char *label,
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struct udevice **devp, int *method_flagsp);
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/**
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* bootdev_list_hunters() - List the available bootdev hunters
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*
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* These provide a way to find new bootdevs by enumerating buses, etc. This
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* function lists the available hunters
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*
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* @std: Pointer to bootstd private info
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*/
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void bootdev_list_hunters(struct bootstd_priv *std);
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/**
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* bootdev_hunt() - Hunt for bootdevs matching a particular spec
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*
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* This runs the selected hunter (or all if @spec is NULL) to try to find new
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* bootdevs.
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*
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* @spec: Spec to match, e.g. "mmc0", or NULL for any. If provided, this must
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* match a uclass name so that the hunter can be determined. Any trailing number
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* is ignored
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* @show: true to show each hunter before using it
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* Returns: 0 if OK, -ve on error
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*/
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int bootdev_hunt(const char *spec, bool show);
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/**
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* bootdev_hunt_prio() - Hunt for bootdevs of a particular priority
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*
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* This runs all hunters which can find bootdevs of the given priority.
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*
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* @prio: Priority to use
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* @show: true to show each hunter as it is used
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* Returns: 0 if OK, -ve on error
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*/
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int bootdev_hunt_prio(enum bootdev_prio_t prio, bool show);
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/**
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* bootdev_hunt_and_find_by_label() - Hunt for bootdevs by label
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*
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* Runs the hunter for the label, then tries to find the bootdev, possible
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* created by the hunter
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*
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* @label: Label to look up (e.g. "mmc1" or "mmc0")
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* @devp: Returns the bootdev device found, or NULL if none (note it does not
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* return the media device, but its bootdev child)
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* @method_flagsp: If non-NULL, returns any flags implied by the label
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* (enum bootflow_meth_flags_t), 0 if none. Unset if function fails
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* Return: 0 if OK, -EINVAL if the uclass is not supported by this board,
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* -ENOENT if there is no device with that number
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*/
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int bootdev_hunt_and_find_by_label(const char *label, struct udevice **devp,
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int *method_flagsp);
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/**
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* bootdev_next_label() - Move to the next bootdev in the label sequence
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*
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* Looks through the remaining labels until it finds one that matches a bootdev.
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* Bootdev scanners are used as needed. For example a label "mmc1" results in
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* running the "mmc" bootdrv.
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*
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* @iter: Interation info, containing iter->cur_label
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* @devp: New bootdev found, if any was found
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* @method_flagsp: If non-NULL, returns any flags implied by the label
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* (enum bootflow_meth_flags_t), 0 if none
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* Returns 0 if OK, -ENODEV if no bootdev was found
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*/
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int bootdev_next_label(struct bootflow_iter *iter, struct udevice **devp,
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int *method_flagsp);
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/**
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* bootdev_next_prio() - Find the next bootdev in priority order
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*
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* This moves @devp to the next bootdev with the current priority. If there is
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* none, then it moves to the next priority and scans for new bootdevs there.
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*
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* @iter: Interation info, containing iter->cur_prio
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* @devp: On entry this is the previous bootdev that was considered. On exit
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* this is the new bootdev, if any was found
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* Returns 0 on success (*devp is updated), -ENODEV if there are no more
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* bootdevs at any priority
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*/
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int bootdev_next_prio(struct bootflow_iter *iter, struct udevice **devp);
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#if CONFIG_IS_ENABLED(BOOTSTD)
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/**
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* bootdev_setup_for_dev() - Bind a new bootdev device (deprecated)
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*
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* Please use bootdev_setup_sibling_blk() instead since it supports multiple
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* (child) block devices for each media device.
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*
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* Creates a bootdev device as a child of @parent. This should be called from
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* the driver's bind() method or its uclass' post_bind() method.
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*
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* If a child bootdev already exists, this function does nothing
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*
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* @parent: Parent device (e.g. MMC or Ethernet)
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* @drv_name: Name of bootdev driver to bind
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* Return: 0 if OK, -ve on error
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*/
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int bootdev_setup_for_dev(struct udevice *parent, const char *drv_name);
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/**
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* bootdev_setup_for_blk() - Bind a new bootdev device for a blk device
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*
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* Creates a bootdev device as a sibling of @blk. This should be called from
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* the driver's bind() method or its uclass' post_bind() method, at the same
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* time as the bould device is bound
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*
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* If a device of the same name already exists, this function does nothing
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*
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* @parent: Parent device (e.g. MMC or Ethernet)
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* @drv_name: Name of bootdev driver to bind
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* Return: 0 if OK, -ve on error
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*/
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int bootdev_setup_sibling_blk(struct udevice *blk, const char *drv_name);
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/**
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* bootdev_get_sibling_blk() - Locate the block device for a bootdev
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*
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* @dev: bootdev to check
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* @blkp: returns associated block device
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* Return: 0 if OK, -EINVAL if @dev is not a bootdev device, other -ve on other
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* error
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*/
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int bootdev_get_sibling_blk(struct udevice *dev, struct udevice **blkp);
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/**
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* bootdev_unbind_dev() - Unbind a bootdev device
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*
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* Remove and unbind a bootdev device which is a child of @parent. This should
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* be called from the driver's unbind() method or its uclass' post_bind()
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* method.
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*
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* @parent: Parent device (e.g. MMC or Ethernet)
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* Return: 0 if OK, -ve on error
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*/
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int bootdev_unbind_dev(struct udevice *parent);
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#else
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static inline int bootdev_setup_for_dev(struct udevice *parent,
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const char *drv_name)
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{
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return 0;
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}
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static inline int bootdev_setup_sibling_blk(struct udevice *blk,
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const char *drv_name)
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{
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return 0;
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}
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static inline int bootdev_unbind_dev(struct udevice *parent)
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{
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return 0;
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}
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#endif
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#endif
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