xref: /openbmc/u-boot/include/dm/device.h (revision 83d290c56fab2d38cd1ab4c4cc7099559c1d5046)
1*83d290c5STom Rini /* SPDX-License-Identifier: GPL-2.0+ */
26494d708SSimon Glass /*
36494d708SSimon Glass  * Copyright (c) 2013 Google, Inc
46494d708SSimon Glass  *
56494d708SSimon Glass  * (C) Copyright 2012
66494d708SSimon Glass  * Pavel Herrmann <morpheus.ibis@gmail.com>
76494d708SSimon Glass  * Marek Vasut <marex@denx.de>
86494d708SSimon Glass  */
96494d708SSimon Glass 
106494d708SSimon Glass #ifndef _DM_DEVICE_H
116494d708SSimon Glass #define _DM_DEVICE_H
126494d708SSimon Glass 
134984de2bSSimon Glass #include <dm/ofnode.h>
146494d708SSimon Glass #include <dm/uclass-id.h>
15c9cac3f8SPeng Fan #include <fdtdec.h>
166494d708SSimon Glass #include <linker_lists.h>
172b07f685SMasahiro Yamada #include <linux/compat.h>
182b07f685SMasahiro Yamada #include <linux/kernel.h>
196494d708SSimon Glass #include <linux/list.h>
20c898cba4SMasahiro Yamada #include <linux/printk.h>
216494d708SSimon Glass 
226494d708SSimon Glass struct driver_info;
236494d708SSimon Glass 
246494d708SSimon Glass /* Driver is active (probed). Cleared when it is removed */
256494d708SSimon Glass #define DM_FLAG_ACTIVATED		(1 << 0)
266494d708SSimon Glass 
276494d708SSimon Glass /* DM is responsible for allocating and freeing platdata */
28f2bc6fc3SSimon Glass #define DM_FLAG_ALLOC_PDATA		(1 << 1)
296494d708SSimon Glass 
3000606d7eSSimon Glass /* DM should init this device prior to relocation */
3100606d7eSSimon Glass #define DM_FLAG_PRE_RELOC		(1 << 2)
3200606d7eSSimon Glass 
33cdc133bdSSimon Glass /* DM is responsible for allocating and freeing parent_platdata */
34cdc133bdSSimon Glass #define DM_FLAG_ALLOC_PARENT_PDATA	(1 << 3)
35cdc133bdSSimon Glass 
365eaed880SPrzemyslaw Marczak /* DM is responsible for allocating and freeing uclass_platdata */
375eaed880SPrzemyslaw Marczak #define DM_FLAG_ALLOC_UCLASS_PDATA	(1 << 4)
385eaed880SPrzemyslaw Marczak 
392c03c463SSimon Glass /* Allocate driver private data on a DMA boundary */
405eaed880SPrzemyslaw Marczak #define DM_FLAG_ALLOC_PRIV_DMA		(1 << 5)
412c03c463SSimon Glass 
42aed1a4ddSMasahiro Yamada /* Device is bound */
43aed1a4ddSMasahiro Yamada #define DM_FLAG_BOUND			(1 << 6)
44aed1a4ddSMasahiro Yamada 
45a2040facSSimon Glass /* Device name is allocated and should be freed on unbind() */
46fd1c2d9bSSimon Glass #define DM_FLAG_NAME_ALLOCED		(1 << 7)
47a2040facSSimon Glass 
489fa28190SSimon Glass #define DM_FLAG_OF_PLATDATA		(1 << 8)
499fa28190SSimon Glass 
50706865afSStefan Roese /*
51706865afSStefan Roese  * Call driver remove function to stop currently active DMA transfers or
52706865afSStefan Roese  * give DMA buffers back to the HW / controller. This may be needed for
53706865afSStefan Roese  * some drivers to do some final stage cleanup before the OS is called
54706865afSStefan Roese  * (U-Boot exit)
55706865afSStefan Roese  */
56706865afSStefan Roese #define DM_FLAG_ACTIVE_DMA		(1 << 9)
57706865afSStefan Roese 
58706865afSStefan Roese /*
59426f99faSStefan Roese  * Call driver remove function to do some final configuration, before
60426f99faSStefan Roese  * U-Boot exits and the OS is started
61426f99faSStefan Roese  */
62426f99faSStefan Roese #define DM_FLAG_OS_PREPARE		(1 << 10)
63426f99faSStefan Roese 
64426f99faSStefan Roese /*
65706865afSStefan Roese  * One or multiple of these flags are passed to device_remove() so that
66706865afSStefan Roese  * a selective device removal as specified by the remove-stage and the
67706865afSStefan Roese  * driver flags can be done.
68706865afSStefan Roese  */
69706865afSStefan Roese enum {
70706865afSStefan Roese 	/* Normal remove, remove all devices */
71706865afSStefan Roese 	DM_REMOVE_NORMAL     = 1 << 0,
72706865afSStefan Roese 
73706865afSStefan Roese 	/* Remove devices with active DMA */
74706865afSStefan Roese 	DM_REMOVE_ACTIVE_DMA = DM_FLAG_ACTIVE_DMA,
75706865afSStefan Roese 
76426f99faSStefan Roese 	/* Remove devices which need some final OS preparation steps */
77426f99faSStefan Roese 	DM_REMOVE_OS_PREPARE = DM_FLAG_OS_PREPARE,
78426f99faSStefan Roese 
79706865afSStefan Roese 	/* Add more use cases here */
80706865afSStefan Roese 
81706865afSStefan Roese 	/* Remove devices with any active flag */
82426f99faSStefan Roese 	DM_REMOVE_ACTIVE_ALL = DM_REMOVE_ACTIVE_DMA | DM_REMOVE_OS_PREPARE,
83706865afSStefan Roese };
84706865afSStefan Roese 
856494d708SSimon Glass /**
8654c5d08aSHeiko Schocher  * struct udevice - An instance of a driver
876494d708SSimon Glass  *
886494d708SSimon Glass  * This holds information about a device, which is a driver bound to a
896494d708SSimon Glass  * particular port or peripheral (essentially a driver instance).
906494d708SSimon Glass  *
916494d708SSimon Glass  * A device will come into existence through a 'bind' call, either due to
926494d708SSimon Glass  * a U_BOOT_DEVICE() macro (in which case platdata is non-NULL) or a node
936494d708SSimon Glass  * in the device tree (in which case of_offset is >= 0). In the latter case
946494d708SSimon Glass  * we translate the device tree information into platdata in a function
956494d708SSimon Glass  * implemented by the driver ofdata_to_platdata method (called just before the
966494d708SSimon Glass  * probe method if the device has a device tree node.
976494d708SSimon Glass  *
986494d708SSimon Glass  * All three of platdata, priv and uclass_priv can be allocated by the
996494d708SSimon Glass  * driver, or you can use the auto_alloc_size members of struct driver and
1006494d708SSimon Glass  * struct uclass_driver to have driver model do this automatically.
1016494d708SSimon Glass  *
1026494d708SSimon Glass  * @driver: The driver used by this device
1036494d708SSimon Glass  * @name: Name of device, typically the FDT node name
1046494d708SSimon Glass  * @platdata: Configuration data for this device
105cdc133bdSSimon Glass  * @parent_platdata: The parent bus's configuration data for this device
1065eaed880SPrzemyslaw Marczak  * @uclass_platdata: The uclass's configuration data for this device
1074984de2bSSimon Glass  * @node: Reference to device tree node for this device
10839de8433SSimon Glass  * @driver_data: Driver data word for the entry that matched this device with
10939de8433SSimon Glass  *		its driver
1106494d708SSimon Glass  * @parent: Parent of this device, or NULL for the top level device
1116494d708SSimon Glass  * @priv: Private data for this device
1126494d708SSimon Glass  * @uclass: Pointer to uclass for this device
1136494d708SSimon Glass  * @uclass_priv: The uclass's private data for this device
114e59f458dSSimon Glass  * @parent_priv: The parent's private data for this device
1156494d708SSimon Glass  * @uclass_node: Used by uclass to link its devices
1166494d708SSimon Glass  * @child_head: List of children of this device
1176494d708SSimon Glass  * @sibling_node: Next device in list of all devices
1186494d708SSimon Glass  * @flags: Flags for this device DM_FLAG_...
1195a66a8ffSSimon Glass  * @req_seq: Requested sequence number for this device (-1 = any)
120547cea19SSimon Glass  * @seq: Allocated sequence number for this device (-1 = none). This is set up
121547cea19SSimon Glass  * when the device is probed and will be unique within the device's uclass.
12293c7fe4aSSimon Glass  * @devres_head: List of memory allocations associated with this device.
12393c7fe4aSSimon Glass  *		When CONFIG_DEVRES is enabled, devm_kmalloc() and friends will
12493c7fe4aSSimon Glass  *		add to this list. Memory so-allocated will be freed
12593c7fe4aSSimon Glass  *		automatically when the device is removed / unbound
1266494d708SSimon Glass  */
12754c5d08aSHeiko Schocher struct udevice {
1283479253dSSimon Glass 	const struct driver *driver;
1296494d708SSimon Glass 	const char *name;
1306494d708SSimon Glass 	void *platdata;
131cdc133bdSSimon Glass 	void *parent_platdata;
1325eaed880SPrzemyslaw Marczak 	void *uclass_platdata;
1334984de2bSSimon Glass 	ofnode node;
13439de8433SSimon Glass 	ulong driver_data;
13554c5d08aSHeiko Schocher 	struct udevice *parent;
1366494d708SSimon Glass 	void *priv;
1376494d708SSimon Glass 	struct uclass *uclass;
1386494d708SSimon Glass 	void *uclass_priv;
139e59f458dSSimon Glass 	void *parent_priv;
1406494d708SSimon Glass 	struct list_head uclass_node;
1416494d708SSimon Glass 	struct list_head child_head;
1426494d708SSimon Glass 	struct list_head sibling_node;
1436494d708SSimon Glass 	uint32_t flags;
1445a66a8ffSSimon Glass 	int req_seq;
1455a66a8ffSSimon Glass 	int seq;
146e2282d70SMasahiro Yamada #ifdef CONFIG_DEVRES
147608f26c5SMasahiro Yamada 	struct list_head devres_head;
148e2282d70SMasahiro Yamada #endif
1496494d708SSimon Glass };
1506494d708SSimon Glass 
1515a66a8ffSSimon Glass /* Maximum sequence number supported */
1525a66a8ffSSimon Glass #define DM_MAX_SEQ	999
1535a66a8ffSSimon Glass 
1546494d708SSimon Glass /* Returns the operations for a device */
1556494d708SSimon Glass #define device_get_ops(dev)	(dev->driver->ops)
1566494d708SSimon Glass 
1576494d708SSimon Glass /* Returns non-zero if the device is active (probed and not removed) */
1586494d708SSimon Glass #define device_active(dev)	((dev)->flags & DM_FLAG_ACTIVATED)
1596494d708SSimon Glass 
160e160f7d4SSimon Glass static inline int dev_of_offset(const struct udevice *dev)
161e160f7d4SSimon Glass {
1624984de2bSSimon Glass 	return ofnode_to_offset(dev->node);
163e160f7d4SSimon Glass }
164e160f7d4SSimon Glass 
165e160f7d4SSimon Glass static inline void dev_set_of_offset(struct udevice *dev, int of_offset)
166e160f7d4SSimon Glass {
1674984de2bSSimon Glass 	dev->node = offset_to_ofnode(of_offset);
1684984de2bSSimon Glass }
1694984de2bSSimon Glass 
1704984de2bSSimon Glass static inline bool dev_has_of_node(struct udevice *dev)
1714984de2bSSimon Glass {
1724984de2bSSimon Glass 	return ofnode_valid(dev->node);
173e160f7d4SSimon Glass }
174e160f7d4SSimon Glass 
1756494d708SSimon Glass /**
176ae7f4513SSimon Glass  * struct udevice_id - Lists the compatible strings supported by a driver
1776494d708SSimon Glass  * @compatible: Compatible string
1786494d708SSimon Glass  * @data: Data for this compatible string
1796494d708SSimon Glass  */
180ae7f4513SSimon Glass struct udevice_id {
1816494d708SSimon Glass 	const char *compatible;
1826494d708SSimon Glass 	ulong data;
1836494d708SSimon Glass };
1846494d708SSimon Glass 
1850f925822SMasahiro Yamada #if CONFIG_IS_ENABLED(OF_CONTROL)
186f887cb6dSMasahiro Yamada #define of_match_ptr(_ptr)	(_ptr)
187f887cb6dSMasahiro Yamada #else
188f887cb6dSMasahiro Yamada #define of_match_ptr(_ptr)	NULL
1890f925822SMasahiro Yamada #endif /* CONFIG_IS_ENABLED(OF_CONTROL) */
190f887cb6dSMasahiro Yamada 
1916494d708SSimon Glass /**
1926494d708SSimon Glass  * struct driver - A driver for a feature or peripheral
1936494d708SSimon Glass  *
1946494d708SSimon Glass  * This holds methods for setting up a new device, and also removing it.
1956494d708SSimon Glass  * The device needs information to set itself up - this is provided either
1966494d708SSimon Glass  * by platdata or a device tree node (which we find by looking up
1976494d708SSimon Glass  * matching compatible strings with of_match).
1986494d708SSimon Glass  *
1996494d708SSimon Glass  * Drivers all belong to a uclass, representing a class of devices of the
2006494d708SSimon Glass  * same type. Common elements of the drivers can be implemented in the uclass,
2016494d708SSimon Glass  * or the uclass can provide a consistent interface to the drivers within
2026494d708SSimon Glass  * it.
2036494d708SSimon Glass  *
2046494d708SSimon Glass  * @name: Device name
20580ee4fc5SHeinrich Schuchardt  * @id: Identifies the uclass we belong to
2066494d708SSimon Glass  * @of_match: List of compatible strings to match, and any identifying data
2076494d708SSimon Glass  * for each.
2086494d708SSimon Glass  * @bind: Called to bind a device to its driver
2096494d708SSimon Glass  * @probe: Called to probe a device, i.e. activate it
2106494d708SSimon Glass  * @remove: Called to remove a device, i.e. de-activate it
2116494d708SSimon Glass  * @unbind: Called to unbind a device from its driver
2126494d708SSimon Glass  * @ofdata_to_platdata: Called before probe to decode device tree data
2130118ce79SSimon Glass  * @child_post_bind: Called after a new child has been bound
214a327dee0SSimon Glass  * @child_pre_probe: Called before a child device is probed. The device has
215a327dee0SSimon Glass  * memory allocated but it has not yet been probed.
216a327dee0SSimon Glass  * @child_post_remove: Called after a child device is removed. The device
217a327dee0SSimon Glass  * has memory allocated but its device_remove() method has been called.
2186494d708SSimon Glass  * @priv_auto_alloc_size: If non-zero this is the size of the private data
2196494d708SSimon Glass  * to be allocated in the device's ->priv pointer. If zero, then the driver
2206494d708SSimon Glass  * is responsible for allocating any data required.
2216494d708SSimon Glass  * @platdata_auto_alloc_size: If non-zero this is the size of the
2226494d708SSimon Glass  * platform data to be allocated in the device's ->platdata pointer.
2236494d708SSimon Glass  * This is typically only useful for device-tree-aware drivers (those with
2246494d708SSimon Glass  * an of_match), since drivers which use platdata will have the data
2256494d708SSimon Glass  * provided in the U_BOOT_DEVICE() instantiation.
226e59f458dSSimon Glass  * @per_child_auto_alloc_size: Each device can hold private data owned by
227e59f458dSSimon Glass  * its parent. If required this will be automatically allocated if this
228e59f458dSSimon Glass  * value is non-zero.
229cdc133bdSSimon Glass  * @per_child_platdata_auto_alloc_size: A bus likes to store information about
230cdc133bdSSimon Glass  * its children. If non-zero this is the size of this data, to be allocated
231cdc133bdSSimon Glass  * in the child's parent_platdata pointer.
2320040b944SSimon Glass  * @ops: Driver-specific operations. This is typically a list of function
2336494d708SSimon Glass  * pointers defined by the driver, to implement driver functions required by
2346494d708SSimon Glass  * the uclass.
23500606d7eSSimon Glass  * @flags: driver flags - see DM_FLAGS_...
2366494d708SSimon Glass  */
2376494d708SSimon Glass struct driver {
2386494d708SSimon Glass 	char *name;
2396494d708SSimon Glass 	enum uclass_id id;
240ae7f4513SSimon Glass 	const struct udevice_id *of_match;
24154c5d08aSHeiko Schocher 	int (*bind)(struct udevice *dev);
24254c5d08aSHeiko Schocher 	int (*probe)(struct udevice *dev);
24354c5d08aSHeiko Schocher 	int (*remove)(struct udevice *dev);
24454c5d08aSHeiko Schocher 	int (*unbind)(struct udevice *dev);
24554c5d08aSHeiko Schocher 	int (*ofdata_to_platdata)(struct udevice *dev);
2460118ce79SSimon Glass 	int (*child_post_bind)(struct udevice *dev);
247a327dee0SSimon Glass 	int (*child_pre_probe)(struct udevice *dev);
248a327dee0SSimon Glass 	int (*child_post_remove)(struct udevice *dev);
2496494d708SSimon Glass 	int priv_auto_alloc_size;
2506494d708SSimon Glass 	int platdata_auto_alloc_size;
251e59f458dSSimon Glass 	int per_child_auto_alloc_size;
252cdc133bdSSimon Glass 	int per_child_platdata_auto_alloc_size;
2536494d708SSimon Glass 	const void *ops;	/* driver-specific operations */
25400606d7eSSimon Glass 	uint32_t flags;
2556494d708SSimon Glass };
2566494d708SSimon Glass 
2576494d708SSimon Glass /* Declare a new U-Boot driver */
2586494d708SSimon Glass #define U_BOOT_DRIVER(__name)						\
2596494d708SSimon Glass 	ll_entry_declare(struct driver, __name, driver)
2606494d708SSimon Glass 
261c57f806bSSimon Glass /* Get a pointer to a given driver */
262c57f806bSSimon Glass #define DM_GET_DRIVER(__name)						\
263c57f806bSSimon Glass 	ll_entry_get(struct driver, __name, driver)
264c57f806bSSimon Glass 
2656494d708SSimon Glass /**
2666494d708SSimon Glass  * dev_get_platdata() - Get the platform data for a device
2676494d708SSimon Glass  *
2686494d708SSimon Glass  * This checks that dev is not NULL, but no other checks for now
2696494d708SSimon Glass  *
2706494d708SSimon Glass  * @dev		Device to check
2716494d708SSimon Glass  * @return platform data, or NULL if none
2726494d708SSimon Glass  */
27354c5d08aSHeiko Schocher void *dev_get_platdata(struct udevice *dev);
2746494d708SSimon Glass 
2756494d708SSimon Glass /**
276cdc133bdSSimon Glass  * dev_get_parent_platdata() - Get the parent platform data for a device
277cdc133bdSSimon Glass  *
278cdc133bdSSimon Glass  * This checks that dev is not NULL, but no other checks for now
279cdc133bdSSimon Glass  *
280cdc133bdSSimon Glass  * @dev		Device to check
281cdc133bdSSimon Glass  * @return parent's platform data, or NULL if none
282cdc133bdSSimon Glass  */
283cdc133bdSSimon Glass void *dev_get_parent_platdata(struct udevice *dev);
284cdc133bdSSimon Glass 
285cdc133bdSSimon Glass /**
2865eaed880SPrzemyslaw Marczak  * dev_get_uclass_platdata() - Get the uclass platform data for a device
2875eaed880SPrzemyslaw Marczak  *
2885eaed880SPrzemyslaw Marczak  * This checks that dev is not NULL, but no other checks for now
2895eaed880SPrzemyslaw Marczak  *
2905eaed880SPrzemyslaw Marczak  * @dev		Device to check
2915eaed880SPrzemyslaw Marczak  * @return uclass's platform data, or NULL if none
2925eaed880SPrzemyslaw Marczak  */
2935eaed880SPrzemyslaw Marczak void *dev_get_uclass_platdata(struct udevice *dev);
2945eaed880SPrzemyslaw Marczak 
2955eaed880SPrzemyslaw Marczak /**
2969a79f6e6SSimon Glass  * dev_get_priv() - Get the private data for a device
2979a79f6e6SSimon Glass  *
2989a79f6e6SSimon Glass  * This checks that dev is not NULL, but no other checks for now
2999a79f6e6SSimon Glass  *
3009a79f6e6SSimon Glass  * @dev		Device to check
3019a79f6e6SSimon Glass  * @return private data, or NULL if none
3029a79f6e6SSimon Glass  */
3039a79f6e6SSimon Glass void *dev_get_priv(struct udevice *dev);
3049a79f6e6SSimon Glass 
3059a79f6e6SSimon Glass /**
306bcbe3d15SSimon Glass  * dev_get_parent_priv() - Get the parent private data for a device
307e59f458dSSimon Glass  *
308bcbe3d15SSimon Glass  * The parent private data is data stored in the device but owned by the
309bcbe3d15SSimon Glass  * parent. For example, a USB device may have parent data which contains
310bcbe3d15SSimon Glass  * information about how to talk to the device over USB.
311e59f458dSSimon Glass  *
312e59f458dSSimon Glass  * This checks that dev is not NULL, but no other checks for now
313e59f458dSSimon Glass  *
314e59f458dSSimon Glass  * @dev		Device to check
315e59f458dSSimon Glass  * @return parent data, or NULL if none
316e59f458dSSimon Glass  */
317bcbe3d15SSimon Glass void *dev_get_parent_priv(struct udevice *dev);
318e59f458dSSimon Glass 
319e59f458dSSimon Glass /**
320e564f054SSimon Glass  * dev_get_uclass_priv() - Get the private uclass data for a device
321e564f054SSimon Glass  *
322e564f054SSimon Glass  * This checks that dev is not NULL, but no other checks for now
323e564f054SSimon Glass  *
324e564f054SSimon Glass  * @dev		Device to check
325e564f054SSimon Glass  * @return private uclass data for this device, or NULL if none
326e564f054SSimon Glass  */
327e564f054SSimon Glass void *dev_get_uclass_priv(struct udevice *dev);
328e564f054SSimon Glass 
329e564f054SSimon Glass /**
3309a79f6e6SSimon Glass  * struct dev_get_parent() - Get the parent of a device
3319a79f6e6SSimon Glass  *
3329a79f6e6SSimon Glass  * @child:	Child to check
3339a79f6e6SSimon Glass  * @return parent of child, or NULL if this is the root device
3349a79f6e6SSimon Glass  */
3359a79f6e6SSimon Glass struct udevice *dev_get_parent(struct udevice *child);
3369a79f6e6SSimon Glass 
3379a79f6e6SSimon Glass /**
33839de8433SSimon Glass  * dev_get_driver_data() - get the driver data used to bind a device
3392ef249b4SSimon Glass  *
3402ef249b4SSimon Glass  * When a device is bound using a device tree node, it matches a
3418d1f3a9dSSimon Glass  * particular compatible string in struct udevice_id. This function
34239de8433SSimon Glass  * returns the associated data value for that compatible string. This is
34339de8433SSimon Glass  * the 'data' field in struct udevice_id.
34439de8433SSimon Glass  *
3458d1f3a9dSSimon Glass  * As an example, consider this structure:
3468d1f3a9dSSimon Glass  * static const struct udevice_id tegra_i2c_ids[] = {
3478d1f3a9dSSimon Glass  *	{ .compatible = "nvidia,tegra114-i2c", .data = TYPE_114 },
3488d1f3a9dSSimon Glass  *	{ .compatible = "nvidia,tegra20-i2c", .data = TYPE_STD },
3498d1f3a9dSSimon Glass  *	{ .compatible = "nvidia,tegra20-i2c-dvc", .data = TYPE_DVC },
3508d1f3a9dSSimon Glass  *	{ }
3518d1f3a9dSSimon Glass  * };
3528d1f3a9dSSimon Glass  *
3538d1f3a9dSSimon Glass  * When driver model finds a driver for this it will store the 'data' value
3548d1f3a9dSSimon Glass  * corresponding to the compatible string it matches. This function returns
3558d1f3a9dSSimon Glass  * that value. This allows the driver to handle several variants of a device.
3568d1f3a9dSSimon Glass  *
35739de8433SSimon Glass  * For USB devices, this is the driver_info field in struct usb_device_id.
35839de8433SSimon Glass  *
35939de8433SSimon Glass  * @dev:	Device to check
3608d1f3a9dSSimon Glass  * @return driver data (0 if none is provided)
3612ef249b4SSimon Glass  */
36239de8433SSimon Glass ulong dev_get_driver_data(struct udevice *dev);
3632ef249b4SSimon Glass 
364cc73d37bSPrzemyslaw Marczak /**
365cc73d37bSPrzemyslaw Marczak  * dev_get_driver_ops() - get the device's driver's operations
366cc73d37bSPrzemyslaw Marczak  *
367cc73d37bSPrzemyslaw Marczak  * This checks that dev is not NULL, and returns the pointer to device's
368cc73d37bSPrzemyslaw Marczak  * driver's operations.
369cc73d37bSPrzemyslaw Marczak  *
370cc73d37bSPrzemyslaw Marczak  * @dev:	Device to check
371cc73d37bSPrzemyslaw Marczak  * @return void pointer to driver's operations or NULL for NULL-dev or NULL-ops
372cc73d37bSPrzemyslaw Marczak  */
373cc73d37bSPrzemyslaw Marczak const void *dev_get_driver_ops(struct udevice *dev);
374cc73d37bSPrzemyslaw Marczak 
3758d1f3a9dSSimon Glass /**
376b3670531SSimon Glass  * device_get_uclass_id() - return the uclass ID of a device
377b3670531SSimon Glass  *
378b3670531SSimon Glass  * @dev:	Device to check
379b3670531SSimon Glass  * @return uclass ID for the device
380b3670531SSimon Glass  */
381b3670531SSimon Glass enum uclass_id device_get_uclass_id(struct udevice *dev);
382b3670531SSimon Glass 
3838d1f3a9dSSimon Glass /**
384f9c370dcSPrzemyslaw Marczak  * dev_get_uclass_name() - return the uclass name of a device
385f9c370dcSPrzemyslaw Marczak  *
386f9c370dcSPrzemyslaw Marczak  * This checks that dev is not NULL.
387f9c370dcSPrzemyslaw Marczak  *
388f9c370dcSPrzemyslaw Marczak  * @dev:	Device to check
389f9c370dcSPrzemyslaw Marczak  * @return  pointer to the uclass name for the device
390f9c370dcSPrzemyslaw Marczak  */
391f9c370dcSPrzemyslaw Marczak const char *dev_get_uclass_name(struct udevice *dev);
392f9c370dcSPrzemyslaw Marczak 
3932ef249b4SSimon Glass /**
394997c87bbSSimon Glass  * device_get_child() - Get the child of a device by index
395997c87bbSSimon Glass  *
396997c87bbSSimon Glass  * Returns the numbered child, 0 being the first. This does not use
397997c87bbSSimon Glass  * sequence numbers, only the natural order.
398997c87bbSSimon Glass  *
399997c87bbSSimon Glass  * @dev:	Parent device to check
400997c87bbSSimon Glass  * @index:	Child index
401997c87bbSSimon Glass  * @devp:	Returns pointer to device
4023f416f33SSimon Glass  * @return 0 if OK, -ENODEV if no such device, other error if the device fails
4033f416f33SSimon Glass  *	   to probe
404997c87bbSSimon Glass  */
405997c87bbSSimon Glass int device_get_child(struct udevice *parent, int index, struct udevice **devp);
406997c87bbSSimon Glass 
407997c87bbSSimon Glass /**
4085a66a8ffSSimon Glass  * device_find_child_by_seq() - Find a child device based on a sequence
4095a66a8ffSSimon Glass  *
4105a66a8ffSSimon Glass  * This searches for a device with the given seq or req_seq.
4115a66a8ffSSimon Glass  *
4125a66a8ffSSimon Glass  * For seq, if an active device has this sequence it will be returned.
4135a66a8ffSSimon Glass  * If there is no such device then this will return -ENODEV.
4145a66a8ffSSimon Glass  *
4155a66a8ffSSimon Glass  * For req_seq, if a device (whether activated or not) has this req_seq
4165a66a8ffSSimon Glass  * value, that device will be returned. This is a strong indication that
4175a66a8ffSSimon Glass  * the device will receive that sequence when activated.
4185a66a8ffSSimon Glass  *
4195a66a8ffSSimon Glass  * @parent: Parent device
4205a66a8ffSSimon Glass  * @seq_or_req_seq: Sequence number to find (0=first)
4215a66a8ffSSimon Glass  * @find_req_seq: true to find req_seq, false to find seq
4225a66a8ffSSimon Glass  * @devp: Returns pointer to device (there is only one per for each seq).
4235a66a8ffSSimon Glass  * Set to NULL if none is found
4245a66a8ffSSimon Glass  * @return 0 if OK, -ve on error
4255a66a8ffSSimon Glass  */
4265a66a8ffSSimon Glass int device_find_child_by_seq(struct udevice *parent, int seq_or_req_seq,
4275a66a8ffSSimon Glass 			     bool find_req_seq, struct udevice **devp);
4285a66a8ffSSimon Glass 
429997c87bbSSimon Glass /**
430997c87bbSSimon Glass  * device_get_child_by_seq() - Get a child device based on a sequence
431997c87bbSSimon Glass  *
432997c87bbSSimon Glass  * If an active device has this sequence it will be returned. If there is no
433997c87bbSSimon Glass  * such device then this will check for a device that is requesting this
434997c87bbSSimon Glass  * sequence.
435997c87bbSSimon Glass  *
436997c87bbSSimon Glass  * The device is probed to activate it ready for use.
437997c87bbSSimon Glass  *
438997c87bbSSimon Glass  * @parent: Parent device
439997c87bbSSimon Glass  * @seq: Sequence number to find (0=first)
440997c87bbSSimon Glass  * @devp: Returns pointer to device (there is only one per for each seq)
441997c87bbSSimon Glass  * Set to NULL if none is found
442997c87bbSSimon Glass  * @return 0 if OK, -ve on error
443997c87bbSSimon Glass  */
444997c87bbSSimon Glass int device_get_child_by_seq(struct udevice *parent, int seq,
445997c87bbSSimon Glass 			    struct udevice **devp);
446997c87bbSSimon Glass 
447997c87bbSSimon Glass /**
448997c87bbSSimon Glass  * device_find_child_by_of_offset() - Find a child device based on FDT offset
449997c87bbSSimon Glass  *
450997c87bbSSimon Glass  * Locates a child device by its device tree offset.
451997c87bbSSimon Glass  *
452997c87bbSSimon Glass  * @parent: Parent device
453997c87bbSSimon Glass  * @of_offset: Device tree offset to find
454997c87bbSSimon Glass  * @devp: Returns pointer to device if found, otherwise this is set to NULL
455997c87bbSSimon Glass  * @return 0 if OK, -ve on error
456997c87bbSSimon Glass  */
457997c87bbSSimon Glass int device_find_child_by_of_offset(struct udevice *parent, int of_offset,
458997c87bbSSimon Glass 				   struct udevice **devp);
459997c87bbSSimon Glass 
460997c87bbSSimon Glass /**
461997c87bbSSimon Glass  * device_get_child_by_of_offset() - Get a child device based on FDT offset
462997c87bbSSimon Glass  *
463997c87bbSSimon Glass  * Locates a child device by its device tree offset.
464997c87bbSSimon Glass  *
465997c87bbSSimon Glass  * The device is probed to activate it ready for use.
466997c87bbSSimon Glass  *
467997c87bbSSimon Glass  * @parent: Parent device
468997c87bbSSimon Glass  * @of_offset: Device tree offset to find
469997c87bbSSimon Glass  * @devp: Returns pointer to device if found, otherwise this is set to NULL
470997c87bbSSimon Glass  * @return 0 if OK, -ve on error
471997c87bbSSimon Glass  */
472132f9bfcSSimon Glass int device_get_child_by_of_offset(struct udevice *parent, int of_offset,
473997c87bbSSimon Glass 				  struct udevice **devp);
474997c87bbSSimon Glass 
475a8981d4fSSimon Glass /**
4762693047aSSimon Glass  * device_get_global_by_of_offset() - Get a device based on FDT offset
4772693047aSSimon Glass  *
4782693047aSSimon Glass  * Locates a device by its device tree offset, searching globally throughout
4792693047aSSimon Glass  * the all driver model devices.
4802693047aSSimon Glass  *
4812693047aSSimon Glass  * The device is probed to activate it ready for use.
4822693047aSSimon Glass  *
4832693047aSSimon Glass  * @of_offset: Device tree offset to find
4842693047aSSimon Glass  * @devp: Returns pointer to device if found, otherwise this is set to NULL
4852693047aSSimon Glass  * @return 0 if OK, -ve on error
4862693047aSSimon Glass  */
4872693047aSSimon Glass int device_get_global_by_of_offset(int of_offset, struct udevice **devp);
4882693047aSSimon Glass 
4892693047aSSimon Glass /**
490a8981d4fSSimon Glass  * device_find_first_child() - Find the first child of a device
491a8981d4fSSimon Glass  *
492a8981d4fSSimon Glass  * @parent: Parent device to search
493a8981d4fSSimon Glass  * @devp: Returns first child device, or NULL if none
494a8981d4fSSimon Glass  * @return 0
495a8981d4fSSimon Glass  */
496a8981d4fSSimon Glass int device_find_first_child(struct udevice *parent, struct udevice **devp);
497a8981d4fSSimon Glass 
498a8981d4fSSimon Glass /**
4993f416f33SSimon Glass  * device_find_next_child() - Find the next child of a device
500a8981d4fSSimon Glass  *
501a8981d4fSSimon Glass  * @devp: Pointer to previous child device on entry. Returns pointer to next
502a8981d4fSSimon Glass  *		child device, or NULL if none
503a8981d4fSSimon Glass  * @return 0
504a8981d4fSSimon Glass  */
505a8981d4fSSimon Glass int device_find_next_child(struct udevice **devp);
506a8981d4fSSimon Glass 
507c9cac3f8SPeng Fan /**
508c5785673SSimon Glass  * device_has_children() - check if a device has any children
509c5785673SSimon Glass  *
510c5785673SSimon Glass  * @dev:	Device to check
511c5785673SSimon Glass  * @return true if the device has one or more children
512c5785673SSimon Glass  */
513c5785673SSimon Glass bool device_has_children(struct udevice *dev);
514c5785673SSimon Glass 
515c5785673SSimon Glass /**
516c5785673SSimon Glass  * device_has_active_children() - check if a device has any active children
517c5785673SSimon Glass  *
518c5785673SSimon Glass  * @dev:	Device to check
519c5785673SSimon Glass  * @return true if the device has one or more children and at least one of
520c5785673SSimon Glass  * them is active (probed).
521c5785673SSimon Glass  */
522c5785673SSimon Glass bool device_has_active_children(struct udevice *dev);
523c5785673SSimon Glass 
524c5785673SSimon Glass /**
525c5785673SSimon Glass  * device_is_last_sibling() - check if a device is the last sibling
526c5785673SSimon Glass  *
527c5785673SSimon Glass  * This function can be useful for display purposes, when special action needs
528c5785673SSimon Glass  * to be taken when displaying the last sibling. This can happen when a tree
529c5785673SSimon Glass  * view of devices is being displayed.
530c5785673SSimon Glass  *
531c5785673SSimon Glass  * @dev:	Device to check
532c5785673SSimon Glass  * @return true if there are no more siblings after this one - i.e. is it
533c5785673SSimon Glass  * last in the list.
534c5785673SSimon Glass  */
535c5785673SSimon Glass bool device_is_last_sibling(struct udevice *dev);
536c5785673SSimon Glass 
537f5c67ea0SSimon Glass /**
538f5c67ea0SSimon Glass  * device_set_name() - set the name of a device
539f5c67ea0SSimon Glass  *
540f5c67ea0SSimon Glass  * This must be called in the device's bind() method and no later. Normally
541f5c67ea0SSimon Glass  * this is unnecessary but for probed devices which don't get a useful name
542f5c67ea0SSimon Glass  * this function can be helpful.
543f5c67ea0SSimon Glass  *
544a2040facSSimon Glass  * The name is allocated and will be freed automatically when the device is
545a2040facSSimon Glass  * unbound.
546a2040facSSimon Glass  *
547f5c67ea0SSimon Glass  * @dev:	Device to update
548f5c67ea0SSimon Glass  * @name:	New name (this string is allocated new memory and attached to
549f5c67ea0SSimon Glass  *		the device)
550f5c67ea0SSimon Glass  * @return 0 if OK, -ENOMEM if there is not enough memory to allocate the
551f5c67ea0SSimon Glass  * string
552f5c67ea0SSimon Glass  */
553f5c67ea0SSimon Glass int device_set_name(struct udevice *dev, const char *name);
554f5c67ea0SSimon Glass 
5551e0f2263SBin Meng /**
556a2040facSSimon Glass  * device_set_name_alloced() - note that a device name is allocated
557a2040facSSimon Glass  *
558fd1c2d9bSSimon Glass  * This sets the DM_FLAG_NAME_ALLOCED flag for the device, so that when it is
559a2040facSSimon Glass  * unbound the name will be freed. This avoids memory leaks.
560a2040facSSimon Glass  *
561a2040facSSimon Glass  * @dev:	Device to update
562a2040facSSimon Glass  */
563a2040facSSimon Glass void device_set_name_alloced(struct udevice *dev);
564a2040facSSimon Glass 
565a2040facSSimon Glass /**
566911f3aefSSimon Glass  * device_is_compatible() - check if the device is compatible with the compat
56773443b9eSMugunthan V N  *
56873443b9eSMugunthan V N  * This allows to check whether the device is comaptible with the compat.
56973443b9eSMugunthan V N  *
57073443b9eSMugunthan V N  * @dev:	udevice pointer for which compatible needs to be verified.
57173443b9eSMugunthan V N  * @compat:	Compatible string which needs to verified in the given
57273443b9eSMugunthan V N  *		device
57373443b9eSMugunthan V N  * @return true if OK, false if the compatible is not found
57473443b9eSMugunthan V N  */
575911f3aefSSimon Glass bool device_is_compatible(struct udevice *dev, const char *compat);
57673443b9eSMugunthan V N 
57773443b9eSMugunthan V N /**
57873443b9eSMugunthan V N  * of_machine_is_compatible() - check if the machine is compatible with
57973443b9eSMugunthan V N  *				the compat
58073443b9eSMugunthan V N  *
58173443b9eSMugunthan V N  * This allows to check whether the machine is comaptible with the compat.
58273443b9eSMugunthan V N  *
58373443b9eSMugunthan V N  * @compat:	Compatible string which needs to verified
58473443b9eSMugunthan V N  * @return true if OK, false if the compatible is not found
58573443b9eSMugunthan V N  */
58673443b9eSMugunthan V N bool of_machine_is_compatible(const char *compat);
58773443b9eSMugunthan V N 
58873443b9eSMugunthan V N /**
5891e0f2263SBin Meng  * device_is_on_pci_bus - Test if a device is on a PCI bus
5901e0f2263SBin Meng  *
5911e0f2263SBin Meng  * @dev:	device to test
5921e0f2263SBin Meng  * @return:	true if it is on a PCI bus, false otherwise
5931e0f2263SBin Meng  */
5941e0f2263SBin Meng static inline bool device_is_on_pci_bus(struct udevice *dev)
5951e0f2263SBin Meng {
5961e0f2263SBin Meng 	return device_get_uclass_id(dev->parent) == UCLASS_PCI;
5971e0f2263SBin Meng }
5981e0f2263SBin Meng 
5997aeac5bcSSimon Glass /**
6007aeac5bcSSimon Glass  * device_foreach_child_safe() - iterate through child devices safely
6017aeac5bcSSimon Glass  *
6027aeac5bcSSimon Glass  * This allows the @pos child to be removed in the loop if required.
6037aeac5bcSSimon Glass  *
6047aeac5bcSSimon Glass  * @pos: struct udevice * for the current device
6057aeac5bcSSimon Glass  * @next: struct udevice * for the next device
6067aeac5bcSSimon Glass  * @parent: parent device to scan
6077aeac5bcSSimon Glass  */
6087aeac5bcSSimon Glass #define device_foreach_child_safe(pos, next, parent)	\
6097aeac5bcSSimon Glass 	list_for_each_entry_safe(pos, next, &parent->child_head, sibling_node)
6107aeac5bcSSimon Glass 
611cc7f66f7SSimon Glass /**
612cc7f66f7SSimon Glass  * dm_scan_fdt_dev() - Bind child device in a the device tree
613cc7f66f7SSimon Glass  *
614cc7f66f7SSimon Glass  * This handles device which have sub-nodes in the device tree. It scans all
615cc7f66f7SSimon Glass  * sub-nodes and binds drivers for each node where a driver can be found.
616cc7f66f7SSimon Glass  *
617cc7f66f7SSimon Glass  * If this is called prior to relocation, only pre-relocation devices will be
618cc7f66f7SSimon Glass  * bound (those marked with u-boot,dm-pre-reloc in the device tree, or where
619cc7f66f7SSimon Glass  * the driver has the DM_FLAG_PRE_RELOC flag set). Otherwise, all devices will
620cc7f66f7SSimon Glass  * be bound.
621cc7f66f7SSimon Glass  *
622cc7f66f7SSimon Glass  * @dev:	Device to scan
623cc7f66f7SSimon Glass  * @return 0 if OK, -ve on error
624cc7f66f7SSimon Glass  */
625cc7f66f7SSimon Glass int dm_scan_fdt_dev(struct udevice *dev);
626cc7f66f7SSimon Glass 
627608f26c5SMasahiro Yamada /* device resource management */
628608f26c5SMasahiro Yamada typedef void (*dr_release_t)(struct udevice *dev, void *res);
629608f26c5SMasahiro Yamada typedef int (*dr_match_t)(struct udevice *dev, void *res, void *match_data);
630608f26c5SMasahiro Yamada 
631e2282d70SMasahiro Yamada #ifdef CONFIG_DEVRES
632e2282d70SMasahiro Yamada 
633608f26c5SMasahiro Yamada #ifdef CONFIG_DEBUG_DEVRES
634608f26c5SMasahiro Yamada void *__devres_alloc(dr_release_t release, size_t size, gfp_t gfp,
635608f26c5SMasahiro Yamada 		     const char *name);
636608f26c5SMasahiro Yamada #define _devres_alloc(release, size, gfp) \
637608f26c5SMasahiro Yamada 	__devres_alloc(release, size, gfp, #release)
638608f26c5SMasahiro Yamada #else
639608f26c5SMasahiro Yamada void *_devres_alloc(dr_release_t release, size_t size, gfp_t gfp);
640608f26c5SMasahiro Yamada #endif
641608f26c5SMasahiro Yamada 
642608f26c5SMasahiro Yamada /**
64393c7fe4aSSimon Glass  * devres_alloc() - Allocate device resource data
644608f26c5SMasahiro Yamada  * @release: Release function devres will be associated with
645608f26c5SMasahiro Yamada  * @size: Allocation size
646608f26c5SMasahiro Yamada  * @gfp: Allocation flags
647608f26c5SMasahiro Yamada  *
648608f26c5SMasahiro Yamada  * Allocate devres of @size bytes.  The allocated area is associated
649608f26c5SMasahiro Yamada  * with @release.  The returned pointer can be passed to
650608f26c5SMasahiro Yamada  * other devres_*() functions.
651608f26c5SMasahiro Yamada  *
652608f26c5SMasahiro Yamada  * RETURNS:
653608f26c5SMasahiro Yamada  * Pointer to allocated devres on success, NULL on failure.
654608f26c5SMasahiro Yamada  */
655608f26c5SMasahiro Yamada #define devres_alloc(release, size, gfp) \
656608f26c5SMasahiro Yamada 	_devres_alloc(release, size, gfp | __GFP_ZERO)
657608f26c5SMasahiro Yamada 
658608f26c5SMasahiro Yamada /**
65993c7fe4aSSimon Glass  * devres_free() - Free device resource data
660608f26c5SMasahiro Yamada  * @res: Pointer to devres data to free
661608f26c5SMasahiro Yamada  *
662608f26c5SMasahiro Yamada  * Free devres created with devres_alloc().
663608f26c5SMasahiro Yamada  */
664608f26c5SMasahiro Yamada void devres_free(void *res);
665608f26c5SMasahiro Yamada 
666608f26c5SMasahiro Yamada /**
66793c7fe4aSSimon Glass  * devres_add() - Register device resource
668608f26c5SMasahiro Yamada  * @dev: Device to add resource to
669608f26c5SMasahiro Yamada  * @res: Resource to register
670608f26c5SMasahiro Yamada  *
671608f26c5SMasahiro Yamada  * Register devres @res to @dev.  @res should have been allocated
672608f26c5SMasahiro Yamada  * using devres_alloc().  On driver detach, the associated release
673608f26c5SMasahiro Yamada  * function will be invoked and devres will be freed automatically.
674608f26c5SMasahiro Yamada  */
675608f26c5SMasahiro Yamada void devres_add(struct udevice *dev, void *res);
676608f26c5SMasahiro Yamada 
677608f26c5SMasahiro Yamada /**
67893c7fe4aSSimon Glass  * devres_find() - Find device resource
679608f26c5SMasahiro Yamada  * @dev: Device to lookup resource from
680608f26c5SMasahiro Yamada  * @release: Look for resources associated with this release function
681608f26c5SMasahiro Yamada  * @match: Match function (optional)
682608f26c5SMasahiro Yamada  * @match_data: Data for the match function
683608f26c5SMasahiro Yamada  *
684608f26c5SMasahiro Yamada  * Find the latest devres of @dev which is associated with @release
685608f26c5SMasahiro Yamada  * and for which @match returns 1.  If @match is NULL, it's considered
686608f26c5SMasahiro Yamada  * to match all.
687608f26c5SMasahiro Yamada  *
68893c7fe4aSSimon Glass  * @return pointer to found devres, NULL if not found.
689608f26c5SMasahiro Yamada  */
690608f26c5SMasahiro Yamada void *devres_find(struct udevice *dev, dr_release_t release,
691608f26c5SMasahiro Yamada 		  dr_match_t match, void *match_data);
692608f26c5SMasahiro Yamada 
693608f26c5SMasahiro Yamada /**
69493c7fe4aSSimon Glass  * devres_get() - Find devres, if non-existent, add one atomically
695608f26c5SMasahiro Yamada  * @dev: Device to lookup or add devres for
696608f26c5SMasahiro Yamada  * @new_res: Pointer to new initialized devres to add if not found
697608f26c5SMasahiro Yamada  * @match: Match function (optional)
698608f26c5SMasahiro Yamada  * @match_data: Data for the match function
699608f26c5SMasahiro Yamada  *
700608f26c5SMasahiro Yamada  * Find the latest devres of @dev which has the same release function
701608f26c5SMasahiro Yamada  * as @new_res and for which @match return 1.  If found, @new_res is
702608f26c5SMasahiro Yamada  * freed; otherwise, @new_res is added atomically.
703608f26c5SMasahiro Yamada  *
70493c7fe4aSSimon Glass  * @return ointer to found or added devres.
705608f26c5SMasahiro Yamada  */
706608f26c5SMasahiro Yamada void *devres_get(struct udevice *dev, void *new_res,
707608f26c5SMasahiro Yamada 		 dr_match_t match, void *match_data);
708608f26c5SMasahiro Yamada 
709608f26c5SMasahiro Yamada /**
71093c7fe4aSSimon Glass  * devres_remove() - Find a device resource and remove it
711608f26c5SMasahiro Yamada  * @dev: Device to find resource from
712608f26c5SMasahiro Yamada  * @release: Look for resources associated with this release function
713608f26c5SMasahiro Yamada  * @match: Match function (optional)
714608f26c5SMasahiro Yamada  * @match_data: Data for the match function
715608f26c5SMasahiro Yamada  *
716608f26c5SMasahiro Yamada  * Find the latest devres of @dev associated with @release and for
717608f26c5SMasahiro Yamada  * which @match returns 1.  If @match is NULL, it's considered to
718608f26c5SMasahiro Yamada  * match all.  If found, the resource is removed atomically and
719608f26c5SMasahiro Yamada  * returned.
720608f26c5SMasahiro Yamada  *
72193c7fe4aSSimon Glass  * @return ointer to removed devres on success, NULL if not found.
722608f26c5SMasahiro Yamada  */
723608f26c5SMasahiro Yamada void *devres_remove(struct udevice *dev, dr_release_t release,
724608f26c5SMasahiro Yamada 		    dr_match_t match, void *match_data);
725608f26c5SMasahiro Yamada 
726608f26c5SMasahiro Yamada /**
72793c7fe4aSSimon Glass  * devres_destroy() - Find a device resource and destroy it
728608f26c5SMasahiro Yamada  * @dev: Device to find resource from
729608f26c5SMasahiro Yamada  * @release: Look for resources associated with this release function
730608f26c5SMasahiro Yamada  * @match: Match function (optional)
731608f26c5SMasahiro Yamada  * @match_data: Data for the match function
732608f26c5SMasahiro Yamada  *
733608f26c5SMasahiro Yamada  * Find the latest devres of @dev associated with @release and for
734608f26c5SMasahiro Yamada  * which @match returns 1.  If @match is NULL, it's considered to
735608f26c5SMasahiro Yamada  * match all.  If found, the resource is removed atomically and freed.
736608f26c5SMasahiro Yamada  *
737608f26c5SMasahiro Yamada  * Note that the release function for the resource will not be called,
738608f26c5SMasahiro Yamada  * only the devres-allocated data will be freed.  The caller becomes
739608f26c5SMasahiro Yamada  * responsible for freeing any other data.
740608f26c5SMasahiro Yamada  *
74193c7fe4aSSimon Glass  * @return 0 if devres is found and freed, -ENOENT if not found.
742608f26c5SMasahiro Yamada  */
743608f26c5SMasahiro Yamada int devres_destroy(struct udevice *dev, dr_release_t release,
744608f26c5SMasahiro Yamada 		   dr_match_t match, void *match_data);
745608f26c5SMasahiro Yamada 
746608f26c5SMasahiro Yamada /**
74793c7fe4aSSimon Glass  * devres_release() - Find a device resource and destroy it, calling release
748608f26c5SMasahiro Yamada  * @dev: Device to find resource from
749608f26c5SMasahiro Yamada  * @release: Look for resources associated with this release function
750608f26c5SMasahiro Yamada  * @match: Match function (optional)
751608f26c5SMasahiro Yamada  * @match_data: Data for the match function
752608f26c5SMasahiro Yamada  *
753608f26c5SMasahiro Yamada  * Find the latest devres of @dev associated with @release and for
754608f26c5SMasahiro Yamada  * which @match returns 1.  If @match is NULL, it's considered to
755608f26c5SMasahiro Yamada  * match all.  If found, the resource is removed atomically, the
756608f26c5SMasahiro Yamada  * release function called and the resource freed.
757608f26c5SMasahiro Yamada  *
75893c7fe4aSSimon Glass  * @return 0 if devres is found and freed, -ENOENT if not found.
759608f26c5SMasahiro Yamada  */
760608f26c5SMasahiro Yamada int devres_release(struct udevice *dev, dr_release_t release,
761608f26c5SMasahiro Yamada 		   dr_match_t match, void *match_data);
762608f26c5SMasahiro Yamada 
7632b07f685SMasahiro Yamada /* managed devm_k.alloc/kfree for device drivers */
7642b07f685SMasahiro Yamada /**
76593c7fe4aSSimon Glass  * devm_kmalloc() - Resource-managed kmalloc
7662b07f685SMasahiro Yamada  * @dev: Device to allocate memory for
7672b07f685SMasahiro Yamada  * @size: Allocation size
7682b07f685SMasahiro Yamada  * @gfp: Allocation gfp flags
7692b07f685SMasahiro Yamada  *
7702b07f685SMasahiro Yamada  * Managed kmalloc.  Memory allocated with this function is
7712b07f685SMasahiro Yamada  * automatically freed on driver detach.  Like all other devres
7722b07f685SMasahiro Yamada  * resources, guaranteed alignment is unsigned long long.
7732b07f685SMasahiro Yamada  *
77493c7fe4aSSimon Glass  * @return pointer to allocated memory on success, NULL on failure.
7752b07f685SMasahiro Yamada  */
7762b07f685SMasahiro Yamada void *devm_kmalloc(struct udevice *dev, size_t size, gfp_t gfp);
7772b07f685SMasahiro Yamada static inline void *devm_kzalloc(struct udevice *dev, size_t size, gfp_t gfp)
7782b07f685SMasahiro Yamada {
7792b07f685SMasahiro Yamada 	return devm_kmalloc(dev, size, gfp | __GFP_ZERO);
7802b07f685SMasahiro Yamada }
7812b07f685SMasahiro Yamada static inline void *devm_kmalloc_array(struct udevice *dev,
7822b07f685SMasahiro Yamada 				       size_t n, size_t size, gfp_t flags)
7832b07f685SMasahiro Yamada {
7842b07f685SMasahiro Yamada 	if (size != 0 && n > SIZE_MAX / size)
7852b07f685SMasahiro Yamada 		return NULL;
7862b07f685SMasahiro Yamada 	return devm_kmalloc(dev, n * size, flags);
7872b07f685SMasahiro Yamada }
7882b07f685SMasahiro Yamada static inline void *devm_kcalloc(struct udevice *dev,
7892b07f685SMasahiro Yamada 				 size_t n, size_t size, gfp_t flags)
7902b07f685SMasahiro Yamada {
7912b07f685SMasahiro Yamada 	return devm_kmalloc_array(dev, n, size, flags | __GFP_ZERO);
7922b07f685SMasahiro Yamada }
7932b07f685SMasahiro Yamada 
7942b07f685SMasahiro Yamada /**
79593c7fe4aSSimon Glass  * devm_kfree() - Resource-managed kfree
7962b07f685SMasahiro Yamada  * @dev: Device this memory belongs to
79793c7fe4aSSimon Glass  * @ptr: Memory to free
7982b07f685SMasahiro Yamada  *
7992b07f685SMasahiro Yamada  * Free memory allocated with devm_kmalloc().
8002b07f685SMasahiro Yamada  */
80193c7fe4aSSimon Glass void devm_kfree(struct udevice *dev, void *ptr);
8022b07f685SMasahiro Yamada 
803e2282d70SMasahiro Yamada #else /* ! CONFIG_DEVRES */
804e2282d70SMasahiro Yamada 
805e2282d70SMasahiro Yamada static inline void *devres_alloc(dr_release_t release, size_t size, gfp_t gfp)
806e2282d70SMasahiro Yamada {
807e2282d70SMasahiro Yamada 	return kzalloc(size, gfp);
808e2282d70SMasahiro Yamada }
809e2282d70SMasahiro Yamada 
810e2282d70SMasahiro Yamada static inline void devres_free(void *res)
811e2282d70SMasahiro Yamada {
812e2282d70SMasahiro Yamada 	kfree(res);
813e2282d70SMasahiro Yamada }
814e2282d70SMasahiro Yamada 
815e2282d70SMasahiro Yamada static inline void devres_add(struct udevice *dev, void *res)
816e2282d70SMasahiro Yamada {
817e2282d70SMasahiro Yamada }
818e2282d70SMasahiro Yamada 
819e2282d70SMasahiro Yamada static inline void *devres_find(struct udevice *dev, dr_release_t release,
820e2282d70SMasahiro Yamada 				dr_match_t match, void *match_data)
821e2282d70SMasahiro Yamada {
822e2282d70SMasahiro Yamada 	return NULL;
823e2282d70SMasahiro Yamada }
824e2282d70SMasahiro Yamada 
825e2282d70SMasahiro Yamada static inline void *devres_get(struct udevice *dev, void *new_res,
826e2282d70SMasahiro Yamada 			       dr_match_t match, void *match_data)
827e2282d70SMasahiro Yamada {
828e2282d70SMasahiro Yamada 	return NULL;
829e2282d70SMasahiro Yamada }
830e2282d70SMasahiro Yamada 
831e2282d70SMasahiro Yamada static inline void *devres_remove(struct udevice *dev, dr_release_t release,
832e2282d70SMasahiro Yamada 				  dr_match_t match, void *match_data)
833e2282d70SMasahiro Yamada {
834e2282d70SMasahiro Yamada 	return NULL;
835e2282d70SMasahiro Yamada }
836e2282d70SMasahiro Yamada 
837e2282d70SMasahiro Yamada static inline int devres_destroy(struct udevice *dev, dr_release_t release,
838e2282d70SMasahiro Yamada 				 dr_match_t match, void *match_data)
839e2282d70SMasahiro Yamada {
840e2282d70SMasahiro Yamada 	return 0;
841e2282d70SMasahiro Yamada }
842e2282d70SMasahiro Yamada 
843e2282d70SMasahiro Yamada static inline int devres_release(struct udevice *dev, dr_release_t release,
844e2282d70SMasahiro Yamada 				 dr_match_t match, void *match_data)
845e2282d70SMasahiro Yamada {
846e2282d70SMasahiro Yamada 	return 0;
847e2282d70SMasahiro Yamada }
848e2282d70SMasahiro Yamada 
849e2282d70SMasahiro Yamada static inline void *devm_kmalloc(struct udevice *dev, size_t size, gfp_t gfp)
850e2282d70SMasahiro Yamada {
851e2282d70SMasahiro Yamada 	return kmalloc(size, gfp);
852e2282d70SMasahiro Yamada }
853e2282d70SMasahiro Yamada 
854e2282d70SMasahiro Yamada static inline void *devm_kzalloc(struct udevice *dev, size_t size, gfp_t gfp)
855e2282d70SMasahiro Yamada {
856e2282d70SMasahiro Yamada 	return kzalloc(size, gfp);
857e2282d70SMasahiro Yamada }
858e2282d70SMasahiro Yamada 
859e2282d70SMasahiro Yamada static inline void *devm_kmaloc_array(struct udevice *dev,
860e2282d70SMasahiro Yamada 				      size_t n, size_t size, gfp_t flags)
861e2282d70SMasahiro Yamada {
862e2282d70SMasahiro Yamada 	/* TODO: add kmalloc_array() to linux/compat.h */
863e2282d70SMasahiro Yamada 	if (size != 0 && n > SIZE_MAX / size)
864e2282d70SMasahiro Yamada 		return NULL;
865e2282d70SMasahiro Yamada 	return kmalloc(n * size, flags);
866e2282d70SMasahiro Yamada }
867e2282d70SMasahiro Yamada 
868e2282d70SMasahiro Yamada static inline void *devm_kcalloc(struct udevice *dev,
869e2282d70SMasahiro Yamada 				 size_t n, size_t size, gfp_t flags)
870e2282d70SMasahiro Yamada {
871e2282d70SMasahiro Yamada 	/* TODO: add kcalloc() to linux/compat.h */
872e2282d70SMasahiro Yamada 	return kmalloc(n * size, flags | __GFP_ZERO);
873e2282d70SMasahiro Yamada }
874e2282d70SMasahiro Yamada 
87593c7fe4aSSimon Glass static inline void devm_kfree(struct udevice *dev, void *ptr)
876e2282d70SMasahiro Yamada {
87793c7fe4aSSimon Glass 	kfree(ptr);
878e2282d70SMasahiro Yamada }
879e2282d70SMasahiro Yamada 
880e2282d70SMasahiro Yamada #endif /* ! CONFIG_DEVRES */
8812b07f685SMasahiro Yamada 
882c898cba4SMasahiro Yamada /*
883c898cba4SMasahiro Yamada  * REVISIT:
884c898cba4SMasahiro Yamada  * remove the following after resolving conflicts with <linux/compat.h>
885c898cba4SMasahiro Yamada  */
886c898cba4SMasahiro Yamada #ifdef dev_dbg
887c898cba4SMasahiro Yamada #undef dev_dbg
888c898cba4SMasahiro Yamada #endif
889c898cba4SMasahiro Yamada #ifdef dev_vdbg
890c898cba4SMasahiro Yamada #undef dev_vdbg
891c898cba4SMasahiro Yamada #endif
892c898cba4SMasahiro Yamada #ifdef dev_info
893c898cba4SMasahiro Yamada #undef dev_info
894c898cba4SMasahiro Yamada #endif
895c898cba4SMasahiro Yamada #ifdef dev_err
896c898cba4SMasahiro Yamada #undef dev_err
897c898cba4SMasahiro Yamada #endif
898c898cba4SMasahiro Yamada #ifdef dev_warn
899c898cba4SMasahiro Yamada #undef dev_warn
900c898cba4SMasahiro Yamada #endif
901c898cba4SMasahiro Yamada 
902c898cba4SMasahiro Yamada /*
903c898cba4SMasahiro Yamada  * REVISIT:
904c898cba4SMasahiro Yamada  * print device name like Linux
905c898cba4SMasahiro Yamada  */
906c898cba4SMasahiro Yamada #define dev_printk(dev, fmt, ...)				\
907c898cba4SMasahiro Yamada ({								\
908c898cba4SMasahiro Yamada 	printk(fmt, ##__VA_ARGS__);				\
909c898cba4SMasahiro Yamada })
910c898cba4SMasahiro Yamada 
911c898cba4SMasahiro Yamada #define __dev_printk(level, dev, fmt, ...)			\
912c898cba4SMasahiro Yamada ({								\
913c898cba4SMasahiro Yamada 	if (level < CONFIG_VAL(LOGLEVEL))			\
914c898cba4SMasahiro Yamada 		dev_printk(dev, fmt, ##__VA_ARGS__);		\
915c898cba4SMasahiro Yamada })
916c898cba4SMasahiro Yamada 
917c898cba4SMasahiro Yamada #define dev_emerg(dev, fmt, ...) \
918c898cba4SMasahiro Yamada 	__dev_printk(0, dev, fmt, ##__VA_ARGS__)
919c898cba4SMasahiro Yamada #define dev_alert(dev, fmt, ...) \
920c898cba4SMasahiro Yamada 	__dev_printk(1, dev, fmt, ##__VA_ARGS__)
921c898cba4SMasahiro Yamada #define dev_crit(dev, fmt, ...) \
922c898cba4SMasahiro Yamada 	__dev_printk(2, dev, fmt, ##__VA_ARGS__)
923c898cba4SMasahiro Yamada #define dev_err(dev, fmt, ...) \
924c898cba4SMasahiro Yamada 	__dev_printk(3, dev, fmt, ##__VA_ARGS__)
925c898cba4SMasahiro Yamada #define dev_warn(dev, fmt, ...) \
926c898cba4SMasahiro Yamada 	__dev_printk(4, dev, fmt, ##__VA_ARGS__)
927c898cba4SMasahiro Yamada #define dev_notice(dev, fmt, ...) \
928c898cba4SMasahiro Yamada 	__dev_printk(5, dev, fmt, ##__VA_ARGS__)
929c898cba4SMasahiro Yamada #define dev_info(dev, fmt, ...) \
930c898cba4SMasahiro Yamada 	__dev_printk(6, dev, fmt, ##__VA_ARGS__)
931c898cba4SMasahiro Yamada 
932c898cba4SMasahiro Yamada #ifdef DEBUG
933c898cba4SMasahiro Yamada #define dev_dbg(dev, fmt, ...) \
934c898cba4SMasahiro Yamada 	__dev_printk(7, dev, fmt, ##__VA_ARGS__)
935c898cba4SMasahiro Yamada #else
936c898cba4SMasahiro Yamada #define dev_dbg(dev, fmt, ...)					\
937c898cba4SMasahiro Yamada ({								\
938c898cba4SMasahiro Yamada 	if (0)							\
939c898cba4SMasahiro Yamada 		__dev_printk(7, dev, fmt, ##__VA_ARGS__);	\
940c898cba4SMasahiro Yamada })
941c898cba4SMasahiro Yamada #endif
942c898cba4SMasahiro Yamada 
943c898cba4SMasahiro Yamada #ifdef VERBOSE_DEBUG
944c898cba4SMasahiro Yamada #define dev_vdbg	dev_dbg
945c898cba4SMasahiro Yamada #else
946c898cba4SMasahiro Yamada #define dev_vdbg(dev, fmt, ...)					\
947c898cba4SMasahiro Yamada ({								\
948c898cba4SMasahiro Yamada 	if (0)							\
949c898cba4SMasahiro Yamada 		__dev_printk(7, dev, fmt, ##__VA_ARGS__);	\
950c898cba4SMasahiro Yamada })
951c898cba4SMasahiro Yamada #endif
952c898cba4SMasahiro Yamada 
9536494d708SSimon Glass #endif
954