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Tom Rini10e47792018-05-06 17:58:06 -04001/* SPDX-License-Identifier: GPL-2.0+ */
Simon Glassdd6ab882014-02-26 15:59:18 -07002/*
3 * Copyright (c) 2013 Google, Inc
4 *
5 * (C) Copyright 2012
6 * Pavel Herrmann <morpheus.ibis@gmail.com>
7 * Marek Vasut <marex@denx.de>
Simon Glassdd6ab882014-02-26 15:59:18 -07008 */
9
10#ifndef _DM_DEVICE_H
11#define _DM_DEVICE_H
12
Simon Glass9a148602017-05-17 17:18:10 -060013#include <dm/ofnode.h>
Simon Glassdd6ab882014-02-26 15:59:18 -070014#include <dm/uclass-id.h>
Peng Fan99b72352015-02-10 14:46:32 +080015#include <fdtdec.h>
Simon Glassdd6ab882014-02-26 15:59:18 -070016#include <linker_lists.h>
Masahiro Yamadab475e1f2015-07-25 21:52:36 +090017#include <linux/kernel.h>
Simon Glassdd6ab882014-02-26 15:59:18 -070018#include <linux/list.h>
Masahiro Yamada9e74eb52017-09-26 11:58:29 +090019#include <linux/printk.h>
Simon Glassdd6ab882014-02-26 15:59:18 -070020
21struct driver_info;
22
23/* Driver is active (probed). Cleared when it is removed */
Simon Glassaa741682015-09-28 23:32:03 -060024#define DM_FLAG_ACTIVATED (1 << 0)
Simon Glassdd6ab882014-02-26 15:59:18 -070025
Simon Glass71fa5b42020-12-03 16:55:18 -070026/* DM is responsible for allocating and freeing plat */
Simon Glassaa741682015-09-28 23:32:03 -060027#define DM_FLAG_ALLOC_PDATA (1 << 1)
Simon Glassdd6ab882014-02-26 15:59:18 -070028
Simon Glassfef72b72014-07-23 06:55:03 -060029/* DM should init this device prior to relocation */
Simon Glassaa741682015-09-28 23:32:03 -060030#define DM_FLAG_PRE_RELOC (1 << 2)
Simon Glassfef72b72014-07-23 06:55:03 -060031
Simon Glass71fa5b42020-12-03 16:55:18 -070032/* DM is responsible for allocating and freeing parent_plat */
Simon Glass11b61732015-01-25 08:27:01 -070033#define DM_FLAG_ALLOC_PARENT_PDATA (1 << 3)
34
Simon Glass71fa5b42020-12-03 16:55:18 -070035/* DM is responsible for allocating and freeing uclass_plat */
Przemyslaw Marczakd850e672015-04-15 13:07:18 +020036#define DM_FLAG_ALLOC_UCLASS_PDATA (1 << 4)
37
Simon Glass825d3f92015-03-25 12:21:53 -060038/* Allocate driver private data on a DMA boundary */
Simon Glassaa741682015-09-28 23:32:03 -060039#define DM_FLAG_ALLOC_PRIV_DMA (1 << 5)
Simon Glass825d3f92015-03-25 12:21:53 -060040
Masahiro Yamadabdbb5dd2015-07-25 21:52:34 +090041/* Device is bound */
Simon Glassaa741682015-09-28 23:32:03 -060042#define DM_FLAG_BOUND (1 << 6)
Masahiro Yamadabdbb5dd2015-07-25 21:52:34 +090043
Simon Glass7760ba22016-05-01 13:52:23 -060044/* Device name is allocated and should be freed on unbind() */
Simon Glass2d4c7dc2016-07-04 11:58:15 -060045#define DM_FLAG_NAME_ALLOCED (1 << 7)
Simon Glass7760ba22016-05-01 13:52:23 -060046
Simon Glass2137c242019-12-29 21:19:19 -070047/* Device has platform data provided by of-platdata */
Simon Glassafbf9b82016-07-04 11:58:18 -060048#define DM_FLAG_OF_PLATDATA (1 << 8)
49
Stefan Roese80b5bc92017-03-20 12:51:48 +010050/*
51 * Call driver remove function to stop currently active DMA transfers or
52 * give DMA buffers back to the HW / controller. This may be needed for
53 * some drivers to do some final stage cleanup before the OS is called
54 * (U-Boot exit)
55 */
56#define DM_FLAG_ACTIVE_DMA (1 << 9)
57
58/*
Stefan Roese07456762017-04-24 09:48:02 +020059 * Call driver remove function to do some final configuration, before
60 * U-Boot exits and the OS is started
61 */
62#define DM_FLAG_OS_PREPARE (1 << 10)
63
Lokesh Vutlac10e52b2019-09-27 13:48:12 +053064/* DM does not enable/disable the power domains corresponding to this device */
65#define DM_FLAG_DEFAULT_PD_CTRL_OFF (1 << 11)
66
Simon Glass71fa5b42020-12-03 16:55:18 -070067/* Driver plat has been read. Cleared when the device is removed */
Simon Glassd3c9d302019-12-29 21:19:21 -070068#define DM_FLAG_PLATDATA_VALID (1 << 12)
69
Stefan Roese07456762017-04-24 09:48:02 +020070/*
Anatolij Gustschincfb28f12020-02-17 12:36:43 +010071 * Device is removed without switching off its power domain. This might
72 * be required, i. e. for serial console (debug) output when booting OS.
73 */
Simon Glass12810652021-01-24 14:32:42 -070074#define DM_FLAG_LEAVE_PD_ON (1 << 13)
Anatolij Gustschincfb28f12020-02-17 12:36:43 +010075
76/*
Marek Vasutabbdbbd2021-01-24 14:32:46 -070077 * Device is vital to the operation of other devices. It is possible to remove
78 * removed this device after all regular devices are removed. This is useful
79 * e.g. for clock, which need to be active during the device-removal phase.
80 */
81#define DM_FLAG_VITAL (1 << 14)
82
83/*
Stefan Roese80b5bc92017-03-20 12:51:48 +010084 * One or multiple of these flags are passed to device_remove() so that
85 * a selective device removal as specified by the remove-stage and the
86 * driver flags can be done.
Simon Glass97c2dfc2021-01-24 14:32:43 -070087 *
88 * DO NOT use these flags in your driver's @flags value...
89 * use the above DM_FLAG_... values instead
Stefan Roese80b5bc92017-03-20 12:51:48 +010090 */
91enum {
92 /* Normal remove, remove all devices */
Simon Glass42697f52020-03-28 14:03:48 -060093 DM_REMOVE_NORMAL = 1 << 0,
Stefan Roese80b5bc92017-03-20 12:51:48 +010094
95 /* Remove devices with active DMA */
Simon Glass42697f52020-03-28 14:03:48 -060096 DM_REMOVE_ACTIVE_DMA = DM_FLAG_ACTIVE_DMA,
Stefan Roese80b5bc92017-03-20 12:51:48 +010097
Stefan Roese07456762017-04-24 09:48:02 +020098 /* Remove devices which need some final OS preparation steps */
Simon Glass42697f52020-03-28 14:03:48 -060099 DM_REMOVE_OS_PREPARE = DM_FLAG_OS_PREPARE,
Stefan Roese07456762017-04-24 09:48:02 +0200100
Marek Vasutabbdbbd2021-01-24 14:32:46 -0700101 /* Remove only devices that are not marked vital */
102 DM_REMOVE_NON_VITAL = DM_FLAG_VITAL,
Stefan Roese80b5bc92017-03-20 12:51:48 +0100103
104 /* Remove devices with any active flag */
Simon Glass42697f52020-03-28 14:03:48 -0600105 DM_REMOVE_ACTIVE_ALL = DM_REMOVE_ACTIVE_DMA | DM_REMOVE_OS_PREPARE,
106
107 /* Don't power down any attached power domains */
108 DM_REMOVE_NO_PD = 1 << 1,
Stefan Roese80b5bc92017-03-20 12:51:48 +0100109};
110
Simon Glassdd6ab882014-02-26 15:59:18 -0700111/**
Heiko Schocherb74fcb42014-05-22 12:43:05 +0200112 * struct udevice - An instance of a driver
Simon Glassdd6ab882014-02-26 15:59:18 -0700113 *
114 * This holds information about a device, which is a driver bound to a
115 * particular port or peripheral (essentially a driver instance).
116 *
117 * A device will come into existence through a 'bind' call, either due to
Simon Glass1d8364a2020-12-28 20:34:54 -0700118 * a U_BOOT_DRVINFO() macro (in which case plat is non-NULL) or a node
Simon Glassdd6ab882014-02-26 15:59:18 -0700119 * in the device tree (in which case of_offset is >= 0). In the latter case
Simon Glass71fa5b42020-12-03 16:55:18 -0700120 * we translate the device tree information into plat in a function
Simon Glassaad29ae2020-12-03 16:55:21 -0700121 * implemented by the driver of_to_plat method (called just before the
Simon Glassdd6ab882014-02-26 15:59:18 -0700122 * probe method if the device has a device tree node.
123 *
Simon Glass71fa5b42020-12-03 16:55:18 -0700124 * All three of plat, priv and uclass_priv can be allocated by the
Dario Binacchi107819c2021-01-23 19:48:57 +0100125 * driver, or you can use the auto members of struct driver and
Simon Glassdd6ab882014-02-26 15:59:18 -0700126 * struct uclass_driver to have driver model do this automatically.
127 *
128 * @driver: The driver used by this device
129 * @name: Name of device, typically the FDT node name
Simon Glass541f62c2020-12-22 19:30:30 -0700130 * @plat_: Configuration data for this device (do not access outside driver
131 * model)
132 * @parent_plat_: The parent bus's configuration data for this device (do not
133 * access outside driver model)
134 * @uclass_plat_: The uclass's configuration data for this device (do not access
135 * outside driver model)
Simon Glass46227bd2015-03-25 12:21:55 -0600136 * @driver_data: Driver data word for the entry that matched this device with
137 * its driver
Simon Glassdd6ab882014-02-26 15:59:18 -0700138 * @parent: Parent of this device, or NULL for the top level device
Simon Glass541f62c2020-12-22 19:30:30 -0700139 * @priv_: Private data for this device (do not access outside driver model)
Simon Glassdd6ab882014-02-26 15:59:18 -0700140 * @uclass: Pointer to uclass for this device
Simon Glass541f62c2020-12-22 19:30:30 -0700141 * @uclass_priv_: The uclass's private data for this device (do not access
142 * outside driver model)
143 * @parent_priv_: The parent's private data for this device (do not access
144 * outside driver model)
Simon Glassdd6ab882014-02-26 15:59:18 -0700145 * @uclass_node: Used by uclass to link its devices
146 * @child_head: List of children of this device
147 * @sibling_node: Next device in list of all devices
Simon Glass2ef56382020-12-19 10:40:11 -0700148 * @flags_: Flags for this device DM_FLAG_... (do not access outside driver
149 * model)
Simon Glass5e349922020-12-19 10:40:09 -0700150 * @seq_: Allocated sequence number for this device (-1 = none). This is set up
Simon Glass7272e922020-12-16 21:20:09 -0700151 * when the device is bound and is unique within the device's uclass. If the
152 * device has an alias in the devicetree then that is used to set the sequence
153 * number. Otherwise, the next available number is used. Sequence numbers are
Simon Glass5e349922020-12-19 10:40:09 -0700154 * used by certain commands that need device to be numbered (e.g. 'mmc dev').
155 * (do not access outside driver model)
Simon Glass69314392020-12-19 10:40:15 -0700156 * @node_: Reference to device tree node for this device (do not access outside
157 * driver model)
Simon Glassc8ca1cb2015-09-28 23:32:04 -0600158 * @devres_head: List of memory allocations associated with this device.
159 * When CONFIG_DEVRES is enabled, devm_kmalloc() and friends will
160 * add to this list. Memory so-allocated will be freed
161 * automatically when the device is removed / unbound
Nicolas Saenz Juliennea2c7ead2021-01-12 13:55:24 +0100162 * @dma_offset: Offset between the physical address space (CPU's) and the
163 * device's bus address space
Simon Glassdd6ab882014-02-26 15:59:18 -0700164 */
Heiko Schocherb74fcb42014-05-22 12:43:05 +0200165struct udevice {
Simon Glassa626dff2015-03-25 12:21:54 -0600166 const struct driver *driver;
Simon Glassdd6ab882014-02-26 15:59:18 -0700167 const char *name;
Simon Glass541f62c2020-12-22 19:30:30 -0700168 void *plat_;
169 void *parent_plat_;
170 void *uclass_plat_;
Simon Glass46227bd2015-03-25 12:21:55 -0600171 ulong driver_data;
Heiko Schocherb74fcb42014-05-22 12:43:05 +0200172 struct udevice *parent;
Simon Glass541f62c2020-12-22 19:30:30 -0700173 void *priv_;
Simon Glassdd6ab882014-02-26 15:59:18 -0700174 struct uclass *uclass;
Simon Glass541f62c2020-12-22 19:30:30 -0700175 void *uclass_priv_;
176 void *parent_priv_;
Simon Glassdd6ab882014-02-26 15:59:18 -0700177 struct list_head uclass_node;
178 struct list_head child_head;
179 struct list_head sibling_node;
Simon Glass2ef56382020-12-19 10:40:11 -0700180 u32 flags_;
Simon Glass5e349922020-12-19 10:40:09 -0700181 int seq_;
Simon Glass69314392020-12-19 10:40:15 -0700182#if !CONFIG_IS_ENABLED(OF_PLATDATA)
183 ofnode node_;
184#endif
Masahiro Yamada029bfca2015-07-25 21:52:37 +0900185#ifdef CONFIG_DEVRES
Masahiro Yamada8b15b162015-07-25 21:52:35 +0900186 struct list_head devres_head;
Masahiro Yamada029bfca2015-07-25 21:52:37 +0900187#endif
Nicolas Saenz Juliennea2c7ead2021-01-12 13:55:24 +0100188#if CONFIG_IS_ENABLED(DM_DMA)
189 ulong dma_offset;
190#endif
Simon Glassdd6ab882014-02-26 15:59:18 -0700191};
192
Simon Glass8beeb282021-03-15 17:25:36 +1300193/**
194 * udevice_rt - runtime information set up by U-Boot
195 *
196 * This is only used with OF_PLATDATA_RT
197 *
198 * There is one of these for every udevice in the linker list, indexed by
199 * the udevice_info idx value.
200 *
201 * @flags_: Flags for this device DM_FLAG_... (do not access outside driver
202 * model)
203 */
204struct udevice_rt {
205 u32 flags_;
206};
207
Simon Glassdb6f0202014-07-23 06:55:12 -0600208/* Maximum sequence number supported */
209#define DM_MAX_SEQ 999
210
Simon Glassdd6ab882014-02-26 15:59:18 -0700211/* Returns the operations for a device */
212#define device_get_ops(dev) (dev->driver->ops)
213
Simon Glass6211d762020-12-19 10:40:10 -0700214static inline u32 dev_get_flags(const struct udevice *dev)
215{
Simon Glass2ef56382020-12-19 10:40:11 -0700216 return dev->flags_;
Simon Glass6211d762020-12-19 10:40:10 -0700217}
218
219static inline void dev_or_flags(struct udevice *dev, u32 or)
220{
Simon Glass2ef56382020-12-19 10:40:11 -0700221 dev->flags_ |= or;
Simon Glass6211d762020-12-19 10:40:10 -0700222}
223
224static inline void dev_bic_flags(struct udevice *dev, u32 bic)
225{
Simon Glass2ef56382020-12-19 10:40:11 -0700226 dev->flags_ &= ~bic;
Simon Glass6211d762020-12-19 10:40:10 -0700227}
228
Simon Glassf1d50f72020-12-19 10:40:13 -0700229/**
230 * dev_ofnode() - get the DT node reference associated with a udevice
231 *
232 * @dev: device to check
233 * @return reference of the the device's DT node
234 */
235static inline ofnode dev_ofnode(const struct udevice *dev)
236{
Simon Glassa7ece582020-12-19 10:40:14 -0700237#if !CONFIG_IS_ENABLED(OF_PLATDATA)
Simon Glass69314392020-12-19 10:40:15 -0700238 return dev->node_;
Simon Glassa7ece582020-12-19 10:40:14 -0700239#else
240 return ofnode_null();
241#endif
Simon Glassf1d50f72020-12-19 10:40:13 -0700242}
243
Simon Glass2ef56382020-12-19 10:40:11 -0700244/* Returns non-zero if the device is active (probed and not removed) */
245#define device_active(dev) (dev_get_flags(dev) & DM_FLAG_ACTIVATED)
246
Nicolas Saenz Juliennea2c7ead2021-01-12 13:55:24 +0100247#if CONFIG_IS_ENABLED(DM_DMA)
248#define dev_set_dma_offset(_dev, _offset) _dev->dma_offset = _offset
249#define dev_get_dma_offset(_dev) _dev->dma_offset
250#else
251#define dev_set_dma_offset(_dev, _offset)
252#define dev_get_dma_offset(_dev) 0
253#endif
254
Simon Glassdd79d6e2017-01-17 16:52:55 -0700255static inline int dev_of_offset(const struct udevice *dev)
256{
Simon Glassa7ece582020-12-19 10:40:14 -0700257#if !CONFIG_IS_ENABLED(OF_PLATDATA)
258 return ofnode_to_offset(dev_ofnode(dev));
259#else
260 return -1;
261#endif
Simon Glassdd79d6e2017-01-17 16:52:55 -0700262}
263
Simon Glassf1d50f72020-12-19 10:40:13 -0700264static inline bool dev_has_ofnode(const struct udevice *dev)
Simon Glass9a148602017-05-17 17:18:10 -0600265{
Simon Glassa7ece582020-12-19 10:40:14 -0700266#if !CONFIG_IS_ENABLED(OF_PLATDATA)
267 return ofnode_valid(dev_ofnode(dev));
268#else
269 return false;
270#endif
271}
272
273static inline void dev_set_ofnode(struct udevice *dev, ofnode node)
274{
275#if !CONFIG_IS_ENABLED(OF_PLATDATA)
Simon Glass69314392020-12-19 10:40:15 -0700276 dev->node_ = node;
Simon Glassa7ece582020-12-19 10:40:14 -0700277#endif
Simon Glassdd79d6e2017-01-17 16:52:55 -0700278}
279
Simon Glass75e534b2020-12-16 21:20:07 -0700280static inline int dev_seq(const struct udevice *dev)
281{
Simon Glass5e349922020-12-19 10:40:09 -0700282 return dev->seq_;
Simon Glass75e534b2020-12-16 21:20:07 -0700283}
284
Simon Glassdd6ab882014-02-26 15:59:18 -0700285/**
Simon Glass767827a2014-06-11 23:29:45 -0600286 * struct udevice_id - Lists the compatible strings supported by a driver
Simon Glassdd6ab882014-02-26 15:59:18 -0700287 * @compatible: Compatible string
288 * @data: Data for this compatible string
289 */
Simon Glass767827a2014-06-11 23:29:45 -0600290struct udevice_id {
Simon Glassdd6ab882014-02-26 15:59:18 -0700291 const char *compatible;
292 ulong data;
293};
294
Walter Lozano85447162020-07-29 13:17:31 -0300295#if CONFIG_IS_ENABLED(OF_CONTROL) && !CONFIG_IS_ENABLED(OF_PLATDATA)
Masahiro Yamadaf797bc22014-10-07 14:51:31 +0900296#define of_match_ptr(_ptr) (_ptr)
297#else
298#define of_match_ptr(_ptr) NULL
Masahiro Yamada366b24f2015-08-12 07:31:55 +0900299#endif /* CONFIG_IS_ENABLED(OF_CONTROL) */
Masahiro Yamadaf797bc22014-10-07 14:51:31 +0900300
Simon Glassdd6ab882014-02-26 15:59:18 -0700301/**
302 * struct driver - A driver for a feature or peripheral
303 *
304 * This holds methods for setting up a new device, and also removing it.
305 * The device needs information to set itself up - this is provided either
Simon Glass71fa5b42020-12-03 16:55:18 -0700306 * by plat or a device tree node (which we find by looking up
Simon Glassdd6ab882014-02-26 15:59:18 -0700307 * matching compatible strings with of_match).
308 *
309 * Drivers all belong to a uclass, representing a class of devices of the
310 * same type. Common elements of the drivers can be implemented in the uclass,
311 * or the uclass can provide a consistent interface to the drivers within
312 * it.
313 *
314 * @name: Device name
Heinrich Schuchardt3e142d92018-02-12 12:38:36 +0100315 * @id: Identifies the uclass we belong to
Simon Glassdd6ab882014-02-26 15:59:18 -0700316 * @of_match: List of compatible strings to match, and any identifying data
317 * for each.
318 * @bind: Called to bind a device to its driver
319 * @probe: Called to probe a device, i.e. activate it
320 * @remove: Called to remove a device, i.e. de-activate it
321 * @unbind: Called to unbind a device from its driver
Simon Glassaad29ae2020-12-03 16:55:21 -0700322 * @of_to_plat: Called before probe to decode device tree data
Simon Glassa4a51a02015-01-25 08:27:03 -0700323 * @child_post_bind: Called after a new child has been bound
Simon Glassd45560d2014-07-23 06:55:21 -0600324 * @child_pre_probe: Called before a child device is probed. The device has
325 * memory allocated but it has not yet been probed.
326 * @child_post_remove: Called after a child device is removed. The device
327 * has memory allocated but its device_remove() method has been called.
Simon Glass8a2b47f2020-12-03 16:55:17 -0700328 * @priv_auto: If non-zero this is the size of the private data
Simon Glassdd6ab882014-02-26 15:59:18 -0700329 * to be allocated in the device's ->priv pointer. If zero, then the driver
330 * is responsible for allocating any data required.
Simon Glass71fa5b42020-12-03 16:55:18 -0700331 * @plat_auto: If non-zero this is the size of the
332 * platform data to be allocated in the device's ->plat pointer.
Simon Glassdd6ab882014-02-26 15:59:18 -0700333 * This is typically only useful for device-tree-aware drivers (those with
Simon Glass71fa5b42020-12-03 16:55:18 -0700334 * an of_match), since drivers which use plat will have the data
Simon Glass1d8364a2020-12-28 20:34:54 -0700335 * provided in the U_BOOT_DRVINFO() instantiation.
Simon Glass8a2b47f2020-12-03 16:55:17 -0700336 * @per_child_auto: Each device can hold private data owned by
Simon Glass60d971b2014-07-23 06:55:20 -0600337 * its parent. If required this will be automatically allocated if this
338 * value is non-zero.
Simon Glass71fa5b42020-12-03 16:55:18 -0700339 * @per_child_plat_auto: A bus likes to store information about
Simon Glass11b61732015-01-25 08:27:01 -0700340 * its children. If non-zero this is the size of this data, to be allocated
Simon Glass71fa5b42020-12-03 16:55:18 -0700341 * in the child's parent_plat pointer.
Simon Glasscebcebb2014-07-23 06:55:17 -0600342 * @ops: Driver-specific operations. This is typically a list of function
Simon Glassdd6ab882014-02-26 15:59:18 -0700343 * pointers defined by the driver, to implement driver functions required by
344 * the uclass.
Simon Glassfef72b72014-07-23 06:55:03 -0600345 * @flags: driver flags - see DM_FLAGS_...
Simon Glass9fb9e9b2020-04-09 10:27:38 -0600346 * @acpi_ops: Advanced Configuration and Power Interface (ACPI) operations,
347 * allowing the device to add things to the ACPI tables passed to Linux
Simon Glassdd6ab882014-02-26 15:59:18 -0700348 */
349struct driver {
350 char *name;
351 enum uclass_id id;
Simon Glass767827a2014-06-11 23:29:45 -0600352 const struct udevice_id *of_match;
Heiko Schocherb74fcb42014-05-22 12:43:05 +0200353 int (*bind)(struct udevice *dev);
354 int (*probe)(struct udevice *dev);
355 int (*remove)(struct udevice *dev);
356 int (*unbind)(struct udevice *dev);
Simon Glassaad29ae2020-12-03 16:55:21 -0700357 int (*of_to_plat)(struct udevice *dev);
Simon Glassa4a51a02015-01-25 08:27:03 -0700358 int (*child_post_bind)(struct udevice *dev);
Simon Glassd45560d2014-07-23 06:55:21 -0600359 int (*child_pre_probe)(struct udevice *dev);
360 int (*child_post_remove)(struct udevice *dev);
Simon Glass8a2b47f2020-12-03 16:55:17 -0700361 int priv_auto;
Simon Glass71fa5b42020-12-03 16:55:18 -0700362 int plat_auto;
Simon Glass8a2b47f2020-12-03 16:55:17 -0700363 int per_child_auto;
Simon Glass71fa5b42020-12-03 16:55:18 -0700364 int per_child_plat_auto;
Simon Glassdd6ab882014-02-26 15:59:18 -0700365 const void *ops; /* driver-specific operations */
Simon Glassfef72b72014-07-23 06:55:03 -0600366 uint32_t flags;
Simon Glass9fb9e9b2020-04-09 10:27:38 -0600367#if CONFIG_IS_ENABLED(ACPIGEN)
368 struct acpi_ops *acpi_ops;
369#endif
Simon Glassdd6ab882014-02-26 15:59:18 -0700370};
371
372/* Declare a new U-Boot driver */
373#define U_BOOT_DRIVER(__name) \
374 ll_entry_declare(struct driver, __name, driver)
375
Simon Glass32d8ab62016-07-17 15:23:15 -0600376/* Get a pointer to a given driver */
Simon Glass65130cd2020-12-28 20:34:56 -0700377#define DM_DRIVER_GET(__name) \
Simon Glass32d8ab62016-07-17 15:23:15 -0600378 ll_entry_get(struct driver, __name, driver)
379
Simon Glassdd6ab882014-02-26 15:59:18 -0700380/**
Simon Glass70743542021-03-15 17:25:14 +1300381 * DM_DRIVER_REF() - Get a reference to a driver
382 *
383 * This is useful in data structures and code for referencing a driver at
384 * build time. Before this is used, an extern U_BOOT_DRIVER() must have been
385 * declared.
386 *
387 * For example:
388 *
389 * extern U_BOOT_DRIVER(sandbox_fixed_clock);
390 *
391 * struct driver *drvs[] = {
392 * DM_DRIVER_REF(sandbox_fixed_clock),
393 * };
394 *
395 * @_name: Name of the driver. This must be a valid C identifier, used by the
396 * linker_list
397 * @returns struct driver * for the driver
398 */
399#define DM_DRIVER_REF(_name) \
400 ll_entry_ref(struct driver, _name, driver)
401
402/**
Walter Lozano48e5b042020-06-25 01:10:06 -0300403 * Declare a macro to state a alias for a driver name. This macro will
404 * produce no code but its information will be parsed by tools like
405 * dtoc
406 */
Simon Glassdf65db82020-12-28 20:34:57 -0700407#define DM_DRIVER_ALIAS(__name, __alias)
Walter Lozano48e5b042020-06-25 01:10:06 -0300408
409/**
Simon Glassf303ee72021-02-03 06:01:02 -0700410 * Declare a macro to indicate which phase of U-Boot this driver is fore.
411 *
412 *
413 * This macro produces no code but its information will be parsed by dtoc. The
414 * macro can be only be used once in a driver. Put it within the U_BOOT_DRIVER()
415 * declaration, e.g.:
416 *
417 * U_BOOT_DRIVER(cpu) = {
418 * .name = ...
419 * ...
420 * DM_PHASE(tpl)
421 * };
422 */
423#define DM_PHASE(_phase)
424
425/**
Simon Glassa7b1c772021-02-03 06:01:04 -0700426 * Declare a macro to declare a header needed for a driver. Often the correct
427 * header can be found automatically, but only for struct declarations. For
428 * enums and #defines used in the driver declaration and declared in a different
429 * header from the structs, this macro must be used.
430 *
431 * This macro produces no code but its information will be parsed by dtoc. The
432 * macro can be used multiple times with different headers, for the same driver.
433 * Put it within the U_BOOT_DRIVER() declaration, e.g.:
434 *
435 * U_BOOT_DRIVER(cpu) = {
436 * .name = ...
437 * ...
438 * DM_HEADER(<asm/cpu.h>)
439 * };
440 */
441#define DM_HEADER(_hdr)
442
443/**
Simon Glassfa20e932020-12-03 16:55:20 -0700444 * dev_get_plat() - Get the platform data for a device
Simon Glassdd6ab882014-02-26 15:59:18 -0700445 *
446 * This checks that dev is not NULL, but no other checks for now
447 *
448 * @dev Device to check
449 * @return platform data, or NULL if none
450 */
Simon Glassfa20e932020-12-03 16:55:20 -0700451void *dev_get_plat(const struct udevice *dev);
Simon Glassdd6ab882014-02-26 15:59:18 -0700452
453/**
Simon Glass71fa5b42020-12-03 16:55:18 -0700454 * dev_get_parent_plat() - Get the parent platform data for a device
Simon Glass11b61732015-01-25 08:27:01 -0700455 *
456 * This checks that dev is not NULL, but no other checks for now
457 *
458 * @dev Device to check
459 * @return parent's platform data, or NULL if none
460 */
Simon Glass71fa5b42020-12-03 16:55:18 -0700461void *dev_get_parent_plat(const struct udevice *dev);
Simon Glass11b61732015-01-25 08:27:01 -0700462
463/**
Simon Glass71fa5b42020-12-03 16:55:18 -0700464 * dev_get_uclass_plat() - Get the uclass platform data for a device
Przemyslaw Marczakd850e672015-04-15 13:07:18 +0200465 *
466 * This checks that dev is not NULL, but no other checks for now
467 *
468 * @dev Device to check
469 * @return uclass's platform data, or NULL if none
470 */
Simon Glass71fa5b42020-12-03 16:55:18 -0700471void *dev_get_uclass_plat(const struct udevice *dev);
Przemyslaw Marczakd850e672015-04-15 13:07:18 +0200472
473/**
Simon Glassffca2022015-09-28 23:32:02 -0600474 * dev_get_priv() - Get the private data for a device
475 *
476 * This checks that dev is not NULL, but no other checks for now
477 *
478 * @dev Device to check
479 * @return private data, or NULL if none
480 */
Simon Glass2e5e5ec2018-10-01 12:22:06 -0600481void *dev_get_priv(const struct udevice *dev);
Simon Glassffca2022015-09-28 23:32:02 -0600482
483/**
Simon Glassde44acf2015-09-28 23:32:01 -0600484 * dev_get_parent_priv() - Get the parent private data for a device
Simon Glass60d971b2014-07-23 06:55:20 -0600485 *
Simon Glassde44acf2015-09-28 23:32:01 -0600486 * The parent private data is data stored in the device but owned by the
487 * parent. For example, a USB device may have parent data which contains
488 * information about how to talk to the device over USB.
Simon Glass60d971b2014-07-23 06:55:20 -0600489 *
490 * This checks that dev is not NULL, but no other checks for now
491 *
492 * @dev Device to check
493 * @return parent data, or NULL if none
494 */
Simon Glass2e5e5ec2018-10-01 12:22:06 -0600495void *dev_get_parent_priv(const struct udevice *dev);
Simon Glass60d971b2014-07-23 06:55:20 -0600496
497/**
Simon Glassffca2022015-09-28 23:32:02 -0600498 * dev_get_uclass_priv() - Get the private uclass data for a device
Simon Glassdd6ab882014-02-26 15:59:18 -0700499 *
500 * This checks that dev is not NULL, but no other checks for now
501 *
502 * @dev Device to check
Simon Glassffca2022015-09-28 23:32:02 -0600503 * @return private uclass data for this device, or NULL if none
Simon Glassdd6ab882014-02-26 15:59:18 -0700504 */
Simon Glass2e5e5ec2018-10-01 12:22:06 -0600505void *dev_get_uclass_priv(const struct udevice *dev);
Simon Glassdd6ab882014-02-26 15:59:18 -0700506
Simon Glassdb6f0202014-07-23 06:55:12 -0600507/**
Simon Glass43f488a2014-11-11 10:46:19 -0700508 * struct dev_get_parent() - Get the parent of a device
509 *
510 * @child: Child to check
511 * @return parent of child, or NULL if this is the root device
512 */
Simon Glass2e5e5ec2018-10-01 12:22:06 -0600513struct udevice *dev_get_parent(const struct udevice *child);
Simon Glass43f488a2014-11-11 10:46:19 -0700514
515/**
Simon Glass46227bd2015-03-25 12:21:55 -0600516 * dev_get_driver_data() - get the driver data used to bind a device
Simon Glass70c3a0e2014-11-11 10:46:18 -0700517 *
518 * When a device is bound using a device tree node, it matches a
Simon Glass1958eec2015-09-28 23:32:06 -0600519 * particular compatible string in struct udevice_id. This function
Simon Glass46227bd2015-03-25 12:21:55 -0600520 * returns the associated data value for that compatible string. This is
521 * the 'data' field in struct udevice_id.
522 *
Simon Glass1958eec2015-09-28 23:32:06 -0600523 * As an example, consider this structure:
524 * static const struct udevice_id tegra_i2c_ids[] = {
525 * { .compatible = "nvidia,tegra114-i2c", .data = TYPE_114 },
526 * { .compatible = "nvidia,tegra20-i2c", .data = TYPE_STD },
527 * { .compatible = "nvidia,tegra20-i2c-dvc", .data = TYPE_DVC },
528 * { }
529 * };
530 *
531 * When driver model finds a driver for this it will store the 'data' value
532 * corresponding to the compatible string it matches. This function returns
533 * that value. This allows the driver to handle several variants of a device.
534 *
Simon Glass46227bd2015-03-25 12:21:55 -0600535 * For USB devices, this is the driver_info field in struct usb_device_id.
536 *
537 * @dev: Device to check
Simon Glass1958eec2015-09-28 23:32:06 -0600538 * @return driver data (0 if none is provided)
Simon Glass70c3a0e2014-11-11 10:46:18 -0700539 */
Simon Glass2e5e5ec2018-10-01 12:22:06 -0600540ulong dev_get_driver_data(const struct udevice *dev);
Simon Glass70c3a0e2014-11-11 10:46:18 -0700541
Przemyslaw Marczakd3ef0d72015-04-15 13:07:24 +0200542/**
543 * dev_get_driver_ops() - get the device's driver's operations
544 *
545 * This checks that dev is not NULL, and returns the pointer to device's
546 * driver's operations.
547 *
548 * @dev: Device to check
549 * @return void pointer to driver's operations or NULL for NULL-dev or NULL-ops
550 */
Simon Glass2e5e5ec2018-10-01 12:22:06 -0600551const void *dev_get_driver_ops(const struct udevice *dev);
Przemyslaw Marczakd3ef0d72015-04-15 13:07:24 +0200552
Simon Glass1958eec2015-09-28 23:32:06 -0600553/**
Simon Glass98fd5d12015-01-25 08:27:04 -0700554 * device_get_uclass_id() - return the uclass ID of a device
555 *
556 * @dev: Device to check
557 * @return uclass ID for the device
558 */
Simon Glass2e5e5ec2018-10-01 12:22:06 -0600559enum uclass_id device_get_uclass_id(const struct udevice *dev);
Simon Glass98fd5d12015-01-25 08:27:04 -0700560
Simon Glass1958eec2015-09-28 23:32:06 -0600561/**
Przemyslaw Marczak5ed2e422015-04-15 13:07:25 +0200562 * dev_get_uclass_name() - return the uclass name of a device
563 *
564 * This checks that dev is not NULL.
565 *
566 * @dev: Device to check
567 * @return pointer to the uclass name for the device
568 */
Simon Glass2e5e5ec2018-10-01 12:22:06 -0600569const char *dev_get_uclass_name(const struct udevice *dev);
Przemyslaw Marczak5ed2e422015-04-15 13:07:25 +0200570
Simon Glass70c3a0e2014-11-11 10:46:18 -0700571/**
Simon Glass48d4e292014-07-23 06:55:19 -0600572 * device_get_child() - Get the child of a device by index
573 *
574 * Returns the numbered child, 0 being the first. This does not use
575 * sequence numbers, only the natural order.
576 *
577 * @dev: Parent device to check
578 * @index: Child index
579 * @devp: Returns pointer to device
Simon Glass147a5602015-07-27 15:47:19 -0600580 * @return 0 if OK, -ENODEV if no such device, other error if the device fails
581 * to probe
Simon Glass48d4e292014-07-23 06:55:19 -0600582 */
Simon Glass2a580882020-01-27 08:49:36 -0700583int device_get_child(const struct udevice *parent, int index,
584 struct udevice **devp);
Simon Glass48d4e292014-07-23 06:55:19 -0600585
586/**
Lokesh Vutlafa45a082019-09-04 16:01:26 +0530587 * device_get_child_count() - Get the available child count of a device
588 *
589 * Returns the number of children to a device.
590 *
591 * @parent: Parent device to check
592 */
Simon Glass2a580882020-01-27 08:49:36 -0700593int device_get_child_count(const struct udevice *parent);
Lokesh Vutlafa45a082019-09-04 16:01:26 +0530594
595/**
Simon Glassdb6f0202014-07-23 06:55:12 -0600596 * device_find_child_by_seq() - Find a child device based on a sequence
597 *
Simon Glass07e13382020-12-16 21:20:29 -0700598 * This searches for a device with the given seq.
Simon Glassdb6f0202014-07-23 06:55:12 -0600599 *
600 * @parent: Parent device
Simon Glass07e13382020-12-16 21:20:29 -0700601 * @seq: Sequence number to find (0=first)
Simon Glassdb6f0202014-07-23 06:55:12 -0600602 * @devp: Returns pointer to device (there is only one per for each seq).
603 * Set to NULL if none is found
Simon Glass07e13382020-12-16 21:20:29 -0700604 * @return 0 if OK, -ENODEV if not found
Simon Glassdb6f0202014-07-23 06:55:12 -0600605 */
Simon Glass07e13382020-12-16 21:20:29 -0700606int device_find_child_by_seq(const struct udevice *parent, int seq,
607 struct udevice **devp);
Simon Glassdb6f0202014-07-23 06:55:12 -0600608
Simon Glass48d4e292014-07-23 06:55:19 -0600609/**
610 * device_get_child_by_seq() - Get a child device based on a sequence
611 *
612 * If an active device has this sequence it will be returned. If there is no
613 * such device then this will check for a device that is requesting this
614 * sequence.
615 *
616 * The device is probed to activate it ready for use.
617 *
618 * @parent: Parent device
619 * @seq: Sequence number to find (0=first)
620 * @devp: Returns pointer to device (there is only one per for each seq)
621 * Set to NULL if none is found
622 * @return 0 if OK, -ve on error
623 */
Simon Glass2a580882020-01-27 08:49:36 -0700624int device_get_child_by_seq(const struct udevice *parent, int seq,
Simon Glass48d4e292014-07-23 06:55:19 -0600625 struct udevice **devp);
626
627/**
628 * device_find_child_by_of_offset() - Find a child device based on FDT offset
629 *
630 * Locates a child device by its device tree offset.
631 *
632 * @parent: Parent device
633 * @of_offset: Device tree offset to find
634 * @devp: Returns pointer to device if found, otherwise this is set to NULL
635 * @return 0 if OK, -ve on error
636 */
Simon Glass2a580882020-01-27 08:49:36 -0700637int device_find_child_by_of_offset(const struct udevice *parent, int of_offset,
Simon Glass48d4e292014-07-23 06:55:19 -0600638 struct udevice **devp);
639
640/**
641 * device_get_child_by_of_offset() - Get a child device based on FDT offset
642 *
643 * Locates a child device by its device tree offset.
644 *
645 * The device is probed to activate it ready for use.
646 *
647 * @parent: Parent device
648 * @of_offset: Device tree offset to find
649 * @devp: Returns pointer to device if found, otherwise this is set to NULL
650 * @return 0 if OK, -ve on error
651 */
Simon Glass2a580882020-01-27 08:49:36 -0700652int device_get_child_by_of_offset(const struct udevice *parent, int of_offset,
Simon Glass48d4e292014-07-23 06:55:19 -0600653 struct udevice **devp);
654
Simon Glass44da7352014-10-13 23:41:49 -0600655/**
Jean-Jacques Hiblota7b0d6a2018-08-09 16:17:44 +0200656 * device_find_global_by_ofnode() - Get a device based on ofnode
Simon Glassae2efac2015-06-23 15:38:37 -0600657 *
Jean-Jacques Hiblota7b0d6a2018-08-09 16:17:44 +0200658 * Locates a device by its device tree ofnode, searching globally throughout
Simon Glassae2efac2015-06-23 15:38:37 -0600659 * the all driver model devices.
660 *
Jean-Jacques Hiblota7b0d6a2018-08-09 16:17:44 +0200661 * The device is NOT probed
662 *
663 * @node: Device tree ofnode to find
664 * @devp: Returns pointer to device if found, otherwise this is set to NULL
665 * @return 0 if OK, -ve on error
666 */
667
668int device_find_global_by_ofnode(ofnode node, struct udevice **devp);
669
670/**
671 * device_get_global_by_ofnode() - Get a device based on ofnode
672 *
673 * Locates a device by its device tree ofnode, searching globally throughout
674 * the all driver model devices.
675 *
Simon Glassae2efac2015-06-23 15:38:37 -0600676 * The device is probed to activate it ready for use.
677 *
Jean-Jacques Hiblota7b0d6a2018-08-09 16:17:44 +0200678 * @node: Device tree ofnode to find
Simon Glassae2efac2015-06-23 15:38:37 -0600679 * @devp: Returns pointer to device if found, otherwise this is set to NULL
680 * @return 0 if OK, -ve on error
681 */
Jean-Jacques Hiblota7b0d6a2018-08-09 16:17:44 +0200682int device_get_global_by_ofnode(ofnode node, struct udevice **devp);
Simon Glassae2efac2015-06-23 15:38:37 -0600683
684/**
Simon Glass0000e0d2021-03-15 17:25:28 +1300685 * device_get_by_ofplat_idx() - Get a device based on of-platdata index
Simon Glass5792f4b2020-10-03 11:31:40 -0600686 *
Simon Glass0000e0d2021-03-15 17:25:28 +1300687 * Locates a device by either its struct driver_info index, or its
688 * struct udevice index. The latter is used with OF_PLATDATA_INST, since we have
689 * a list of build-time instantiated struct udevice records, The former is used
690 * with !OF_PLATDATA_INST since in that case we have a list of
691 * struct driver_info records.
692 *
693 * The index number is written into the idx field of struct phandle_1_arg, etc.
694 * It is the position of this driver_info/udevice in its linker list.
Simon Glass5792f4b2020-10-03 11:31:40 -0600695 *
696 * The device is probed to activate it ready for use.
697 *
Simon Glass0000e0d2021-03-15 17:25:28 +1300698 * @idx: Index number of the driver_info/udevice structure (0=first)
Simon Glass5792f4b2020-10-03 11:31:40 -0600699 * @devp: Returns pointer to device if found, otherwise this is set to NULL
700 * @return 0 if OK, -ve on error
701 */
Simon Glass0000e0d2021-03-15 17:25:28 +1300702int device_get_by_ofplat_idx(uint idx, struct udevice **devp);
Simon Glass5792f4b2020-10-03 11:31:40 -0600703
704/**
Simon Glass44da7352014-10-13 23:41:49 -0600705 * device_find_first_child() - Find the first child of a device
706 *
707 * @parent: Parent device to search
708 * @devp: Returns first child device, or NULL if none
709 * @return 0
710 */
Simon Glass2a580882020-01-27 08:49:36 -0700711int device_find_first_child(const struct udevice *parent,
712 struct udevice **devp);
Simon Glass44da7352014-10-13 23:41:49 -0600713
714/**
Simon Glass147a5602015-07-27 15:47:19 -0600715 * device_find_next_child() - Find the next child of a device
Simon Glass44da7352014-10-13 23:41:49 -0600716 *
717 * @devp: Pointer to previous child device on entry. Returns pointer to next
718 * child device, or NULL if none
719 * @return 0
720 */
721int device_find_next_child(struct udevice **devp);
722
Peng Fan99b72352015-02-10 14:46:32 +0800723/**
Simon Glassb775e872018-10-01 12:22:07 -0600724 * device_find_first_inactive_child() - Find the first inactive child
725 *
726 * This is used to locate an existing child of a device which is of a given
727 * uclass.
728 *
Simon Glassa11341a2018-11-18 08:14:31 -0700729 * The device is NOT probed
730 *
Simon Glassb775e872018-10-01 12:22:07 -0600731 * @parent: Parent device to search
732 * @uclass_id: Uclass to look for
733 * @devp: Returns device found, if any
734 * @return 0 if found, else -ENODEV
735 */
Simon Glass2a580882020-01-27 08:49:36 -0700736int device_find_first_inactive_child(const struct udevice *parent,
Simon Glassb775e872018-10-01 12:22:07 -0600737 enum uclass_id uclass_id,
738 struct udevice **devp);
739
740/**
Simon Glassa11341a2018-11-18 08:14:31 -0700741 * device_find_first_child_by_uclass() - Find the first child of a device in uc
742 *
743 * @parent: Parent device to search
744 * @uclass_id: Uclass to look for
745 * @devp: Returns first child device in that uclass, if any
746 * @return 0 if found, else -ENODEV
747 */
Simon Glass2a580882020-01-27 08:49:36 -0700748int device_find_first_child_by_uclass(const struct udevice *parent,
Simon Glassa11341a2018-11-18 08:14:31 -0700749 enum uclass_id uclass_id,
750 struct udevice **devp);
751
752/**
753 * device_find_child_by_name() - Find a child by device name
754 *
755 * @parent: Parent device to search
756 * @name: Name to look for
757 * @devp: Returns device found, if any
758 * @return 0 if found, else -ENODEV
759 */
Simon Glass2a580882020-01-27 08:49:36 -0700760int device_find_child_by_name(const struct udevice *parent, const char *name,
Simon Glassa11341a2018-11-18 08:14:31 -0700761 struct udevice **devp);
762
763/**
Simon Glass71fa5b42020-12-03 16:55:18 -0700764 * device_first_child_ofdata_err() - Find the first child and reads its plat
Simon Glass000676b2020-01-27 08:49:47 -0700765 *
Simon Glassaad29ae2020-12-03 16:55:21 -0700766 * The of_to_plat() method is called on the child before it is returned,
Simon Glass000676b2020-01-27 08:49:47 -0700767 * but the child is not probed.
768 *
769 * @parent: Parent to check
770 * @devp: Returns child that was found, if any
771 * @return 0 on success, -ENODEV if no children, other -ve on error
772 */
773int device_first_child_ofdata_err(struct udevice *parent,
774 struct udevice **devp);
775
776/*
Simon Glass71fa5b42020-12-03 16:55:18 -0700777 * device_next_child_ofdata_err() - Find the next child and read its plat
Simon Glass000676b2020-01-27 08:49:47 -0700778 *
Simon Glassaad29ae2020-12-03 16:55:21 -0700779 * The of_to_plat() method is called on the child before it is returned,
Simon Glass000676b2020-01-27 08:49:47 -0700780 * but the child is not probed.
781 *
782 * @devp: On entry, points to the previous child; on exit returns the child that
783 * was found, if any
784 * @return 0 on success, -ENODEV if no children, other -ve on error
785 */
786int device_next_child_ofdata_err(struct udevice **devp);
787
788/**
Simon Glass76db9b72020-01-27 08:49:48 -0700789 * device_first_child_err() - Get the first child of a device
790 *
791 * The device returned is probed if necessary, and ready for use
792 *
793 * @parent: Parent device to search
794 * @devp: Returns device found, if any
795 * @return 0 if found, -ENODEV if not, -ve error if device failed to probe
796 */
797int device_first_child_err(struct udevice *parent, struct udevice **devp);
798
799/**
800 * device_next_child_err() - Get the next child of a parent device
801 *
802 * The device returned is probed if necessary, and ready for use
803 *
804 * @devp: On entry, pointer to device to lookup. On exit, returns pointer
805 * to the next sibling if no error occurred
806 * @return 0 if found, -ENODEV if not, -ve error if device failed to probe
807 */
808int device_next_child_err(struct udevice **devp);
809
810/**
Simon Glass40f829a2015-03-25 12:21:57 -0600811 * device_has_children() - check if a device has any children
812 *
813 * @dev: Device to check
814 * @return true if the device has one or more children
815 */
Simon Glass2e5e5ec2018-10-01 12:22:06 -0600816bool device_has_children(const struct udevice *dev);
Simon Glass40f829a2015-03-25 12:21:57 -0600817
818/**
819 * device_has_active_children() - check if a device has any active children
820 *
821 * @dev: Device to check
822 * @return true if the device has one or more children and at least one of
823 * them is active (probed).
824 */
Simon Glass2a580882020-01-27 08:49:36 -0700825bool device_has_active_children(const struct udevice *dev);
Simon Glass40f829a2015-03-25 12:21:57 -0600826
827/**
828 * device_is_last_sibling() - check if a device is the last sibling
829 *
830 * This function can be useful for display purposes, when special action needs
831 * to be taken when displaying the last sibling. This can happen when a tree
832 * view of devices is being displayed.
833 *
834 * @dev: Device to check
835 * @return true if there are no more siblings after this one - i.e. is it
836 * last in the list.
837 */
Simon Glass2a580882020-01-27 08:49:36 -0700838bool device_is_last_sibling(const struct udevice *dev);
Simon Glass40f829a2015-03-25 12:21:57 -0600839
Simon Glasse3b23e22015-07-30 13:40:39 -0600840/**
841 * device_set_name() - set the name of a device
842 *
843 * This must be called in the device's bind() method and no later. Normally
844 * this is unnecessary but for probed devices which don't get a useful name
845 * this function can be helpful.
846 *
Simon Glass7760ba22016-05-01 13:52:23 -0600847 * The name is allocated and will be freed automatically when the device is
848 * unbound.
849 *
Simon Glasse3b23e22015-07-30 13:40:39 -0600850 * @dev: Device to update
851 * @name: New name (this string is allocated new memory and attached to
852 * the device)
853 * @return 0 if OK, -ENOMEM if there is not enough memory to allocate the
854 * string
855 */
856int device_set_name(struct udevice *dev, const char *name);
857
Bin Meng05bedb12015-09-11 03:24:34 -0700858/**
Simon Glass7760ba22016-05-01 13:52:23 -0600859 * device_set_name_alloced() - note that a device name is allocated
860 *
Simon Glass2d4c7dc2016-07-04 11:58:15 -0600861 * This sets the DM_FLAG_NAME_ALLOCED flag for the device, so that when it is
Simon Glass7760ba22016-05-01 13:52:23 -0600862 * unbound the name will be freed. This avoids memory leaks.
863 *
864 * @dev: Device to update
865 */
866void device_set_name_alloced(struct udevice *dev);
867
868/**
Simon Glass54cbcc82017-05-18 20:08:57 -0600869 * device_is_compatible() - check if the device is compatible with the compat
Mugunthan V N4666bd92016-04-28 15:36:02 +0530870 *
871 * This allows to check whether the device is comaptible with the compat.
872 *
873 * @dev: udevice pointer for which compatible needs to be verified.
874 * @compat: Compatible string which needs to verified in the given
875 * device
876 * @return true if OK, false if the compatible is not found
877 */
Simon Glass2a580882020-01-27 08:49:36 -0700878bool device_is_compatible(const struct udevice *dev, const char *compat);
Mugunthan V N4666bd92016-04-28 15:36:02 +0530879
880/**
881 * of_machine_is_compatible() - check if the machine is compatible with
882 * the compat
883 *
884 * This allows to check whether the machine is comaptible with the compat.
885 *
886 * @compat: Compatible string which needs to verified
887 * @return true if OK, false if the compatible is not found
888 */
889bool of_machine_is_compatible(const char *compat);
890
891/**
Mario Six3bedfbe2018-06-26 08:46:50 +0200892 * dev_disable_by_path() - Disable a device given its device tree path
893 *
894 * @path: The device tree path identifying the device to be disabled
895 * @return 0 on success, -ve on error
896 */
897int dev_disable_by_path(const char *path);
898
899/**
900 * dev_enable_by_path() - Enable a device given its device tree path
901 *
902 * @path: The device tree path identifying the device to be enabled
903 * @return 0 on success, -ve on error
904 */
905int dev_enable_by_path(const char *path);
906
907/**
Bin Meng05bedb12015-09-11 03:24:34 -0700908 * device_is_on_pci_bus - Test if a device is on a PCI bus
909 *
910 * @dev: device to test
911 * @return: true if it is on a PCI bus, false otherwise
912 */
Simon Glass2a580882020-01-27 08:49:36 -0700913static inline bool device_is_on_pci_bus(const struct udevice *dev)
Bin Meng05bedb12015-09-11 03:24:34 -0700914{
Simon Glass6ad24f62020-07-07 13:12:10 -0600915 return dev->parent && device_get_uclass_id(dev->parent) == UCLASS_PCI;
Bin Meng05bedb12015-09-11 03:24:34 -0700916}
917
Simon Glass0a74c962015-11-08 23:47:52 -0700918/**
919 * device_foreach_child_safe() - iterate through child devices safely
920 *
921 * This allows the @pos child to be removed in the loop if required.
922 *
923 * @pos: struct udevice * for the current device
924 * @next: struct udevice * for the next device
925 * @parent: parent device to scan
926 */
927#define device_foreach_child_safe(pos, next, parent) \
928 list_for_each_entry_safe(pos, next, &parent->child_head, sibling_node)
929
Simon Glass5d5388d2016-07-05 17:10:08 -0600930/**
Simon Glasscfd72932019-09-25 08:55:56 -0600931 * device_foreach_child() - iterate through child devices
932 *
933 * @pos: struct udevice * for the current device
934 * @parent: parent device to scan
935 */
936#define device_foreach_child(pos, parent) \
937 list_for_each_entry(pos, &parent->child_head, sibling_node)
938
939/**
Simon Glassaad29ae2020-12-03 16:55:21 -0700940 * device_foreach_child_of_to_plat() - iterate through children
Simon Glass000676b2020-01-27 08:49:47 -0700941 *
942 * This stops when it gets an error, with @pos set to the device that failed to
943 * read ofdata.
944
945 * This creates a for() loop which works through the available children of
946 * a device in order from start to end. Device ofdata is read by calling
Simon Glassaad29ae2020-12-03 16:55:21 -0700947 * device_of_to_plat() on each one. The devices are not probed.
Simon Glass000676b2020-01-27 08:49:47 -0700948 *
949 * @pos: struct udevice * for the current device
950 * @parent: parent device to scan
951 */
Simon Glassaad29ae2020-12-03 16:55:21 -0700952#define device_foreach_child_of_to_plat(pos, parent) \
Simon Glass000676b2020-01-27 08:49:47 -0700953 for (int _ret = device_first_child_ofdata_err(parent, &dev); !_ret; \
954 _ret = device_next_child_ofdata_err(&dev))
955
956/**
Simon Glass76db9b72020-01-27 08:49:48 -0700957 * device_foreach_child_probe() - iterate through children, probing them
958 *
959 * This creates a for() loop which works through the available children of
960 * a device in order from start to end. Devices are probed if necessary,
961 * and ready for use.
962 *
963 * This stops when it gets an error, with @pos set to the device that failed to
964 * probe
965 *
966 * @pos: struct udevice * for the current device
967 * @parent: parent device to scan
968 */
969#define device_foreach_child_probe(pos, parent) \
970 for (int _ret = device_first_child_err(parent, &dev); !_ret; \
971 _ret = device_next_child_err(&dev))
972
973/**
Dario Binacchi26983592020-10-11 14:27:07 +0200974 * dm_scan_fdt_dev() - Bind child device in the device tree
Simon Glass5d5388d2016-07-05 17:10:08 -0600975 *
976 * This handles device which have sub-nodes in the device tree. It scans all
977 * sub-nodes and binds drivers for each node where a driver can be found.
978 *
979 * If this is called prior to relocation, only pre-relocation devices will be
980 * bound (those marked with u-boot,dm-pre-reloc in the device tree, or where
981 * the driver has the DM_FLAG_PRE_RELOC flag set). Otherwise, all devices will
982 * be bound.
983 *
984 * @dev: Device to scan
985 * @return 0 if OK, -ve on error
986 */
987int dm_scan_fdt_dev(struct udevice *dev);
988
Simon Glassdd6ab882014-02-26 15:59:18 -0700989#endif