1 /* SPDX-License-Identifier: GPL-2.0 */
2 /*
3  * nvmem framework provider.
4  *
5  * Copyright (C) 2015 Srinivas Kandagatla <srinivas.kandagatla@linaro.org>
6  * Copyright (C) 2013 Maxime Ripard <maxime.ripard@free-electrons.com>
7  */
8 
9 #ifndef _LINUX_NVMEM_PROVIDER_H
10 #define _LINUX_NVMEM_PROVIDER_H
11 
12 #include <linux/device/driver.h>
13 #include <linux/err.h>
14 #include <linux/errno.h>
15 #include <linux/gpio/consumer.h>
16 
17 struct nvmem_device;
18 typedef int (*nvmem_reg_read_t)(void *priv, unsigned int offset,
19 				void *val, size_t bytes);
20 typedef int (*nvmem_reg_write_t)(void *priv, unsigned int offset,
21 				 void *val, size_t bytes);
22 /* used for vendor specific post processing of cell data */
23 typedef int (*nvmem_cell_post_process_t)(void *priv, const char *id, int index,
24 					 unsigned int offset, void *buf,
25 					 size_t bytes);
26 
27 enum nvmem_type {
28 	NVMEM_TYPE_UNKNOWN = 0,
29 	NVMEM_TYPE_EEPROM,
30 	NVMEM_TYPE_OTP,
31 	NVMEM_TYPE_BATTERY_BACKED,
32 	NVMEM_TYPE_FRAM,
33 };
34 
35 #define NVMEM_DEVID_NONE	(-1)
36 #define NVMEM_DEVID_AUTO	(-2)
37 
38 /**
39  * struct nvmem_keepout - NVMEM register keepout range.
40  *
41  * @start:	The first byte offset to avoid.
42  * @end:	One beyond the last byte offset to avoid.
43  * @value:	The byte to fill reads with for this region.
44  */
45 struct nvmem_keepout {
46 	unsigned int start;
47 	unsigned int end;
48 	unsigned char value;
49 };
50 
51 /**
52  * struct nvmem_cell_info - NVMEM cell description
53  * @name:	Name.
54  * @offset:	Offset within the NVMEM device.
55  * @raw_len:	Length of raw data (without post processing).
56  * @bytes:	Length of the cell.
57  * @bit_offset:	Bit offset if cell is smaller than a byte.
58  * @nbits:	Number of bits.
59  * @np:		Optional device_node pointer.
60  * @read_post_process:	Callback for optional post processing of cell data
61  *			on reads.
62  * @priv:	Opaque data passed to the read_post_process hook.
63  */
64 struct nvmem_cell_info {
65 	const char		*name;
66 	unsigned int		offset;
67 	size_t			raw_len;
68 	unsigned int		bytes;
69 	unsigned int		bit_offset;
70 	unsigned int		nbits;
71 	struct device_node	*np;
72 	nvmem_cell_post_process_t read_post_process;
73 	void			*priv;
74 };
75 
76 /**
77  * struct nvmem_config - NVMEM device configuration
78  *
79  * @dev:	Parent device.
80  * @name:	Optional name.
81  * @id:		Optional device ID used in full name. Ignored if name is NULL.
82  * @owner:	Pointer to exporter module. Used for refcounting.
83  * @cells:	Optional array of pre-defined NVMEM cells.
84  * @ncells:	Number of elements in cells.
85  * @add_legacy_fixed_of_cells:	Read fixed NVMEM cells from old OF syntax.
86  * @keepout:	Optional array of keepout ranges (sorted ascending by start).
87  * @nkeepout:	Number of elements in the keepout array.
88  * @type:	Type of the nvmem storage
89  * @read_only:	Device is read-only.
90  * @root_only:	Device is accessibly to root only.
91  * @of_node:	If given, this will be used instead of the parent's of_node.
92  * @no_of_node:	Device should not use the parent's of_node even if it's !NULL.
93  * @reg_read:	Callback to read data.
94  * @reg_write:	Callback to write data.
95  * @size:	Device size.
96  * @word_size:	Minimum read/write access granularity.
97  * @stride:	Minimum read/write access stride.
98  * @priv:	User context passed to read/write callbacks.
99  * @ignore_wp:  Write Protect pin is managed by the provider.
100  * @layout:	Fixed layout associated with this nvmem device.
101  *
102  * Note: A default "nvmem<id>" name will be assigned to the device if
103  * no name is specified in its configuration. In such case "<id>" is
104  * generated with ida_simple_get() and provided id field is ignored.
105  *
106  * Note: Specifying name and setting id to -1 implies a unique device
107  * whose name is provided as-is (kept unaltered).
108  */
109 struct nvmem_config {
110 	struct device		*dev;
111 	const char		*name;
112 	int			id;
113 	struct module		*owner;
114 	const struct nvmem_cell_info	*cells;
115 	int			ncells;
116 	bool			add_legacy_fixed_of_cells;
117 	const struct nvmem_keepout *keepout;
118 	unsigned int		nkeepout;
119 	enum nvmem_type		type;
120 	bool			read_only;
121 	bool			root_only;
122 	bool			ignore_wp;
123 	struct nvmem_layout	*layout;
124 	struct device_node	*of_node;
125 	bool			no_of_node;
126 	nvmem_reg_read_t	reg_read;
127 	nvmem_reg_write_t	reg_write;
128 	int	size;
129 	int	word_size;
130 	int	stride;
131 	void	*priv;
132 	/* To be only used by old driver/misc/eeprom drivers */
133 	bool			compat;
134 	struct device		*base_dev;
135 };
136 
137 /**
138  * struct nvmem_cell_table - NVMEM cell definitions for given provider
139  *
140  * @nvmem_name:		Provider name.
141  * @cells:		Array of cell definitions.
142  * @ncells:		Number of cell definitions in the array.
143  * @node:		List node.
144  *
145  * This structure together with related helper functions is provided for users
146  * that don't can't access the nvmem provided structure but wish to register
147  * cell definitions for it e.g. board files registering an EEPROM device.
148  */
149 struct nvmem_cell_table {
150 	const char		*nvmem_name;
151 	const struct nvmem_cell_info	*cells;
152 	size_t			ncells;
153 	struct list_head	node;
154 };
155 
156 /**
157  * struct nvmem_layout - NVMEM layout definitions
158  *
159  * @name:		Layout name.
160  * @of_match_table:	Open firmware match table.
161  * @add_cells:		Will be called if a nvmem device is found which
162  *			has this layout. The function will add layout
163  *			specific cells with nvmem_add_one_cell().
164  * @fixup_cell_info:	Will be called before a cell is added. Can be
165  *			used to modify the nvmem_cell_info.
166  * @owner:		Pointer to struct module.
167  * @node:		List node.
168  *
169  * A nvmem device can hold a well defined structure which can just be
170  * evaluated during runtime. For example a TLV list, or a list of "name=val"
171  * pairs. A nvmem layout can parse the nvmem device and add appropriate
172  * cells.
173  */
174 struct nvmem_layout {
175 	const char *name;
176 	const struct of_device_id *of_match_table;
177 	int (*add_cells)(struct device *dev, struct nvmem_device *nvmem,
178 			 struct nvmem_layout *layout);
179 	void (*fixup_cell_info)(struct nvmem_device *nvmem,
180 				struct nvmem_layout *layout,
181 				struct nvmem_cell_info *cell);
182 
183 	/* private */
184 	struct module *owner;
185 	struct list_head node;
186 };
187 
188 #if IS_ENABLED(CONFIG_NVMEM)
189 
190 struct nvmem_device *nvmem_register(const struct nvmem_config *cfg);
191 void nvmem_unregister(struct nvmem_device *nvmem);
192 
193 struct nvmem_device *devm_nvmem_register(struct device *dev,
194 					 const struct nvmem_config *cfg);
195 
196 void nvmem_add_cell_table(struct nvmem_cell_table *table);
197 void nvmem_del_cell_table(struct nvmem_cell_table *table);
198 
199 int nvmem_add_one_cell(struct nvmem_device *nvmem,
200 		       const struct nvmem_cell_info *info);
201 
202 int __nvmem_layout_register(struct nvmem_layout *layout, struct module *owner);
203 #define nvmem_layout_register(layout) \
204 	__nvmem_layout_register(layout, THIS_MODULE)
205 void nvmem_layout_unregister(struct nvmem_layout *layout);
206 
207 const void *nvmem_layout_get_match_data(struct nvmem_device *nvmem,
208 					struct nvmem_layout *layout);
209 
210 #else
211 
nvmem_register(const struct nvmem_config * c)212 static inline struct nvmem_device *nvmem_register(const struct nvmem_config *c)
213 {
214 	return ERR_PTR(-EOPNOTSUPP);
215 }
216 
nvmem_unregister(struct nvmem_device * nvmem)217 static inline void nvmem_unregister(struct nvmem_device *nvmem) {}
218 
219 static inline struct nvmem_device *
devm_nvmem_register(struct device * dev,const struct nvmem_config * c)220 devm_nvmem_register(struct device *dev, const struct nvmem_config *c)
221 {
222 	return nvmem_register(c);
223 }
224 
nvmem_add_cell_table(struct nvmem_cell_table * table)225 static inline void nvmem_add_cell_table(struct nvmem_cell_table *table) {}
nvmem_del_cell_table(struct nvmem_cell_table * table)226 static inline void nvmem_del_cell_table(struct nvmem_cell_table *table) {}
nvmem_add_one_cell(struct nvmem_device * nvmem,const struct nvmem_cell_info * info)227 static inline int nvmem_add_one_cell(struct nvmem_device *nvmem,
228 				     const struct nvmem_cell_info *info)
229 {
230 	return -EOPNOTSUPP;
231 }
232 
nvmem_layout_register(struct nvmem_layout * layout)233 static inline int nvmem_layout_register(struct nvmem_layout *layout)
234 {
235 	return -EOPNOTSUPP;
236 }
237 
nvmem_layout_unregister(struct nvmem_layout * layout)238 static inline void nvmem_layout_unregister(struct nvmem_layout *layout) {}
239 
240 static inline const void *
nvmem_layout_get_match_data(struct nvmem_device * nvmem,struct nvmem_layout * layout)241 nvmem_layout_get_match_data(struct nvmem_device *nvmem,
242 			    struct nvmem_layout *layout)
243 {
244 	return NULL;
245 }
246 
247 #endif /* CONFIG_NVMEM */
248 
249 #define module_nvmem_layout_driver(__layout_driver)		\
250 	module_driver(__layout_driver, nvmem_layout_register,	\
251 		      nvmem_layout_unregister)
252 
253 #endif  /* ifndef _LINUX_NVMEM_PROVIDER_H */
254