1 /* SPDX-License-Identifier: GPL-2.0-only */
3 * Copyright(c) 2013-2015 Intel Corporation. All rights reserved.
7 #include <linux/libnvdimm.h>
8 #include <linux/device.h>
9 #include <linux/sizes.h>
10 #include <linux/mutex.h>
14 extern struct list_head nvdimm_bus_list
;
15 extern struct mutex nvdimm_bus_list_mutex
;
16 extern int nvdimm_major
;
17 extern struct workqueue_struct
*nvdimm_wq
;
20 struct nvdimm_bus_descriptor
*nd_desc
;
21 wait_queue_head_t wait
;
22 struct list_head list
;
25 atomic_t ioctl_active
;
26 struct list_head mapping_list
;
27 struct mutex reconfig_mutex
;
28 struct badrange badrange
;
34 unsigned long cmd_mask
;
38 struct resource
*flush_wpq
;
41 const struct nvdimm_security_ops
*ops
;
43 unsigned long ext_flags
;
44 unsigned int overwrite_tmo
;
45 struct kernfs_node
*overwrite_state
;
47 struct delayed_work dwork
;
48 const struct nvdimm_fw_ops
*fw_ops
;
51 static inline unsigned long nvdimm_security_flags(
52 struct nvdimm
*nvdimm
, enum nvdimm_passphrase_type ptype
)
55 const u64 state_flags
= 1UL << NVDIMM_SECURITY_DISABLED
56 | 1UL << NVDIMM_SECURITY_LOCKED
57 | 1UL << NVDIMM_SECURITY_UNLOCKED
58 | 1UL << NVDIMM_SECURITY_OVERWRITE
;
63 flags
= nvdimm
->sec
.ops
->get_flags(nvdimm
, ptype
);
64 /* disabled, locked, unlocked, and overwrite are mutually exclusive */
65 dev_WARN_ONCE(&nvdimm
->dev
, hweight64(flags
& state_flags
) > 1,
66 "reported invalid security state: %#llx\n",
67 (unsigned long long) flags
);
70 int nvdimm_security_freeze(struct nvdimm
*nvdimm
);
71 #if IS_ENABLED(CONFIG_NVDIMM_KEYS)
72 ssize_t
nvdimm_security_store(struct device
*dev
, const char *buf
, size_t len
);
73 void nvdimm_security_overwrite_query(struct work_struct
*work
);
75 static inline ssize_t
nvdimm_security_store(struct device
*dev
,
76 const char *buf
, size_t len
)
80 static inline void nvdimm_security_overwrite_query(struct work_struct
*work
)
86 * struct blk_alloc_info - tracking info for BLK dpa scanning
87 * @nd_mapping: blk region mapping boundaries
88 * @available: decremented in alias_dpa_busy as aliased PMEM is scanned
89 * @busy: decremented in blk_dpa_busy to account for ranges already
90 * handled by alias_dpa_busy
91 * @res: alias_dpa_busy interprets this a free space range that needs to
92 * be truncated to the valid BLK allocation starting DPA, blk_dpa_busy
93 * treats it as a busy range that needs the aliased PMEM ranges
96 struct blk_alloc_info
{
97 struct nd_mapping
*nd_mapping
;
98 resource_size_t available
, busy
;
102 bool is_nvdimm(struct device
*dev
);
103 bool is_nd_pmem(struct device
*dev
);
104 bool is_nd_volatile(struct device
*dev
);
105 bool is_nd_blk(struct device
*dev
);
106 static inline bool is_nd_region(struct device
*dev
)
108 return is_nd_pmem(dev
) || is_nd_blk(dev
) || is_nd_volatile(dev
);
110 static inline bool is_memory(struct device
*dev
)
112 return is_nd_pmem(dev
) || is_nd_volatile(dev
);
114 struct nvdimm_bus
*walk_to_nvdimm_bus(struct device
*nd_dev
);
115 int __init
nvdimm_bus_init(void);
116 void nvdimm_bus_exit(void);
117 void nvdimm_devs_exit(void);
119 void nd_region_advance_seeds(struct nd_region
*nd_region
, struct device
*dev
);
120 void nd_region_create_ns_seed(struct nd_region
*nd_region
);
121 void nd_region_create_btt_seed(struct nd_region
*nd_region
);
122 void nd_region_create_pfn_seed(struct nd_region
*nd_region
);
123 void nd_region_create_dax_seed(struct nd_region
*nd_region
);
124 int nvdimm_bus_create_ndctl(struct nvdimm_bus
*nvdimm_bus
);
125 void nvdimm_bus_destroy_ndctl(struct nvdimm_bus
*nvdimm_bus
);
126 void nd_synchronize(void);
127 void __nd_device_register(struct device
*dev
);
129 char *nd_label_gen_id(struct nd_label_id
*label_id
, u8
*uuid
, u32 flags
);
130 bool nd_is_uuid_unique(struct device
*dev
, u8
*uuid
);
132 struct nvdimm_drvdata
;
134 void nd_mapping_free_labels(struct nd_mapping
*nd_mapping
);
136 int __reserve_free_pmem(struct device
*dev
, void *data
);
137 void release_free_pmem(struct nvdimm_bus
*nvdimm_bus
,
138 struct nd_mapping
*nd_mapping
);
140 resource_size_t
nd_pmem_max_contiguous_dpa(struct nd_region
*nd_region
,
141 struct nd_mapping
*nd_mapping
);
142 resource_size_t
nd_region_allocatable_dpa(struct nd_region
*nd_region
);
143 resource_size_t
nd_pmem_available_dpa(struct nd_region
*nd_region
,
144 struct nd_mapping
*nd_mapping
, resource_size_t
*overlap
);
145 resource_size_t
nd_blk_available_dpa(struct nd_region
*nd_region
);
146 resource_size_t
nd_region_available_dpa(struct nd_region
*nd_region
);
147 int nd_region_conflict(struct nd_region
*nd_region
, resource_size_t start
,
148 resource_size_t size
);
149 resource_size_t
nvdimm_allocated_dpa(struct nvdimm_drvdata
*ndd
,
150 struct nd_label_id
*label_id
);
151 int alias_dpa_busy(struct device
*dev
, void *data
);
152 struct resource
*nsblk_add_resource(struct nd_region
*nd_region
,
153 struct nvdimm_drvdata
*ndd
, struct nd_namespace_blk
*nsblk
,
154 resource_size_t start
);
155 int nvdimm_num_label_slots(struct nvdimm_drvdata
*ndd
);
156 void get_ndd(struct nvdimm_drvdata
*ndd
);
157 resource_size_t
__nvdimm_namespace_capacity(struct nd_namespace_common
*ndns
);
158 void nd_detach_ndns(struct device
*dev
, struct nd_namespace_common
**_ndns
);
159 void __nd_detach_ndns(struct device
*dev
, struct nd_namespace_common
**_ndns
);
160 bool nd_attach_ndns(struct device
*dev
, struct nd_namespace_common
*attach
,
161 struct nd_namespace_common
**_ndns
);
162 bool __nd_attach_ndns(struct device
*dev
, struct nd_namespace_common
*attach
,
163 struct nd_namespace_common
**_ndns
);
164 ssize_t
nd_namespace_store(struct device
*dev
,
165 struct nd_namespace_common
**_ndns
, const char *buf
,
167 struct nd_pfn
*to_nd_pfn_safe(struct device
*dev
);
168 bool is_nvdimm_bus(struct device
*dev
);
170 #if IS_ENABLED(CONFIG_ND_CLAIM)
171 int devm_nsio_enable(struct device
*dev
, struct nd_namespace_io
*nsio
,
172 resource_size_t size
);
173 void devm_nsio_disable(struct device
*dev
, struct nd_namespace_io
*nsio
);
175 static inline int devm_nsio_enable(struct device
*dev
,
176 struct nd_namespace_io
*nsio
, resource_size_t size
)
181 static inline void devm_nsio_disable(struct device
*dev
,
182 struct nd_namespace_io
*nsio
)
187 #ifdef CONFIG_PROVE_LOCKING
188 extern struct class *nd_class
;
194 LOCK_DIMM
= LOCK_REGION
,
199 static inline void debug_nvdimm_lock(struct device
*dev
)
201 if (is_nd_region(dev
))
202 mutex_lock_nested(&dev
->lockdep_mutex
, LOCK_REGION
);
203 else if (is_nvdimm(dev
))
204 mutex_lock_nested(&dev
->lockdep_mutex
, LOCK_DIMM
);
205 else if (is_nd_btt(dev
) || is_nd_pfn(dev
) || is_nd_dax(dev
))
206 mutex_lock_nested(&dev
->lockdep_mutex
, LOCK_CLAIM
);
207 else if (dev
->parent
&& (is_nd_region(dev
->parent
)))
208 mutex_lock_nested(&dev
->lockdep_mutex
, LOCK_NAMESPACE
);
209 else if (is_nvdimm_bus(dev
))
210 mutex_lock_nested(&dev
->lockdep_mutex
, LOCK_BUS
);
211 else if (dev
->class && dev
->class == nd_class
)
212 mutex_lock_nested(&dev
->lockdep_mutex
, LOCK_NDCTL
);
214 dev_WARN(dev
, "unknown lock level\n");
217 static inline void debug_nvdimm_unlock(struct device
*dev
)
219 mutex_unlock(&dev
->lockdep_mutex
);
222 static inline void nd_device_lock(struct device
*dev
)
225 debug_nvdimm_lock(dev
);
228 static inline void nd_device_unlock(struct device
*dev
)
230 debug_nvdimm_unlock(dev
);
234 static inline void nd_device_lock(struct device
*dev
)
239 static inline void nd_device_unlock(struct device
*dev
)
244 static inline void debug_nvdimm_lock(struct device
*dev
)
248 static inline void debug_nvdimm_unlock(struct device
*dev
)
252 #endif /* __ND_CORE_H__ */