blob: 57dd6d834c28a84a2c8960f84737ec9d082d67e1 [file] [log] [blame]
Christoph Hellwiga07b4972016-06-21 18:04:20 +02001/*
2 * Copyright (c) 2015-2016 HGST, a Western Digital Company.
3 *
4 * This program is free software; you can redistribute it and/or modify it
5 * under the terms and conditions of the GNU General Public License,
6 * version 2, as published by the Free Software Foundation.
7 *
8 * This program is distributed in the hope it will be useful, but WITHOUT
9 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
10 * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
11 * more details.
12 */
13
14#ifndef _NVMET_H
15#define _NVMET_H
16
17#include <linux/dma-mapping.h>
18#include <linux/types.h>
19#include <linux/device.h>
20#include <linux/kref.h>
21#include <linux/percpu-refcount.h>
22#include <linux/list.h>
23#include <linux/mutex.h>
24#include <linux/nvme.h>
25#include <linux/configfs.h>
26#include <linux/rcupdate.h>
27#include <linux/blkdev.h>
28
29#define NVMET_ASYNC_EVENTS 4
30#define NVMET_ERROR_LOG_SLOTS 128
31
32/* Helper Macros when NVMe error is NVME_SC_CONNECT_INVALID_PARAM
33 * The 16 bit shift is to set IATTR bit to 1, which means offending
34 * offset starts in the data section of connect()
35 */
36#define IPO_IATTR_CONNECT_DATA(x) \
37 (cpu_to_le32((1 << 16) | (offsetof(struct nvmf_connect_data, x))))
38#define IPO_IATTR_CONNECT_SQE(x) \
39 (cpu_to_le32(offsetof(struct nvmf_connect_command, x)))
40
41struct nvmet_ns {
42 struct list_head dev_link;
43 struct percpu_ref ref;
44 struct block_device *bdev;
45 u32 nsid;
46 u32 blksize_shift;
47 loff_t size;
48 u8 nguid[16];
49
50 struct nvmet_subsys *subsys;
51 const char *device_path;
52
53 struct config_group device_group;
54 struct config_group group;
55
56 struct completion disable_done;
57};
58
59static inline struct nvmet_ns *to_nvmet_ns(struct config_item *item)
60{
61 return container_of(to_config_group(item), struct nvmet_ns, group);
62}
63
64static inline bool nvmet_ns_enabled(struct nvmet_ns *ns)
65{
66 return !list_empty_careful(&ns->dev_link);
67}
68
69struct nvmet_cq {
70 u16 qid;
71 u16 size;
72};
73
74struct nvmet_sq {
75 struct nvmet_ctrl *ctrl;
76 struct percpu_ref ref;
77 u16 qid;
78 u16 size;
79 struct completion free_done;
80};
81
82/**
83 * struct nvmet_port - Common structure to keep port
84 * information for the target.
85 * @entry: List head for holding a list of these elements.
86 * @disc_addr: Address information is stored in a format defined
87 * for a discovery log page entry.
88 * @group: ConfigFS group for this element's folder.
89 * @priv: Private data for the transport.
90 */
91struct nvmet_port {
92 struct list_head entry;
93 struct nvmf_disc_rsp_page_entry disc_addr;
94 struct config_group group;
95 struct config_group subsys_group;
96 struct list_head subsystems;
97 struct config_group referrals_group;
98 struct list_head referrals;
99 void *priv;
100 bool enabled;
101};
102
103static inline struct nvmet_port *to_nvmet_port(struct config_item *item)
104{
105 return container_of(to_config_group(item), struct nvmet_port,
106 group);
107}
108
109struct nvmet_ctrl {
110 struct nvmet_subsys *subsys;
111 struct nvmet_cq **cqs;
112 struct nvmet_sq **sqs;
113
114 struct mutex lock;
115 u64 cap;
116 u32 cc;
117 u32 csts;
118
119 u16 cntlid;
120 u32 kato;
121
122 struct nvmet_req *async_event_cmds[NVMET_ASYNC_EVENTS];
123 unsigned int nr_async_event_cmds;
124 struct list_head async_events;
125 struct work_struct async_event_work;
126
127 struct list_head subsys_entry;
128 struct kref ref;
129 struct delayed_work ka_work;
130 struct work_struct fatal_err_work;
131
132 struct nvmet_fabrics_ops *ops;
133
134 char subsysnqn[NVMF_NQN_FIELD_LEN];
135 char hostnqn[NVMF_NQN_FIELD_LEN];
136};
137
138struct nvmet_subsys {
139 enum nvme_subsys_type type;
140
141 struct mutex lock;
142 struct kref ref;
143
144 struct list_head namespaces;
145 unsigned int max_nsid;
146
147 struct list_head ctrls;
148 struct ida cntlid_ida;
149
150 struct list_head hosts;
151 bool allow_any_host;
152
153 u16 max_qid;
154
155 u64 ver;
156 char *subsysnqn;
157
158 struct config_group group;
159
160 struct config_group namespaces_group;
161 struct config_group allowed_hosts_group;
162};
163
164static inline struct nvmet_subsys *to_subsys(struct config_item *item)
165{
166 return container_of(to_config_group(item), struct nvmet_subsys, group);
167}
168
169static inline struct nvmet_subsys *namespaces_to_subsys(
170 struct config_item *item)
171{
172 return container_of(to_config_group(item), struct nvmet_subsys,
173 namespaces_group);
174}
175
176struct nvmet_host {
177 struct config_group group;
178};
179
180static inline struct nvmet_host *to_host(struct config_item *item)
181{
182 return container_of(to_config_group(item), struct nvmet_host, group);
183}
184
185static inline char *nvmet_host_name(struct nvmet_host *host)
186{
187 return config_item_name(&host->group.cg_item);
188}
189
190struct nvmet_host_link {
191 struct list_head entry;
192 struct nvmet_host *host;
193};
194
195struct nvmet_subsys_link {
196 struct list_head entry;
197 struct nvmet_subsys *subsys;
198};
199
200struct nvmet_req;
201struct nvmet_fabrics_ops {
202 struct module *owner;
203 unsigned int type;
204 unsigned int sqe_inline_size;
205 unsigned int msdbd;
206 bool has_keyed_sgls : 1;
207 void (*queue_response)(struct nvmet_req *req);
208 int (*add_port)(struct nvmet_port *port);
209 void (*remove_port)(struct nvmet_port *port);
210 void (*delete_ctrl)(struct nvmet_ctrl *ctrl);
211};
212
213#define NVMET_MAX_INLINE_BIOVEC 8
214
215struct nvmet_req {
216 struct nvme_command *cmd;
217 struct nvme_completion *rsp;
218 struct nvmet_sq *sq;
219 struct nvmet_cq *cq;
220 struct nvmet_ns *ns;
221 struct scatterlist *sg;
222 struct bio inline_bio;
223 struct bio_vec inline_bvec[NVMET_MAX_INLINE_BIOVEC];
224 int sg_cnt;
225 size_t data_len;
226
227 struct nvmet_port *port;
228
229 void (*execute)(struct nvmet_req *req);
230 struct nvmet_fabrics_ops *ops;
231};
232
233static inline void nvmet_set_status(struct nvmet_req *req, u16 status)
234{
235 req->rsp->status = cpu_to_le16(status << 1);
236}
237
238static inline void nvmet_set_result(struct nvmet_req *req, u32 result)
239{
240 req->rsp->result = cpu_to_le32(result);
241}
242
243/*
244 * NVMe command writes actually are DMA reads for us on the target side.
245 */
246static inline enum dma_data_direction
247nvmet_data_dir(struct nvmet_req *req)
248{
249 return nvme_is_write(req->cmd) ? DMA_FROM_DEVICE : DMA_TO_DEVICE;
250}
251
252struct nvmet_async_event {
253 struct list_head entry;
254 u8 event_type;
255 u8 event_info;
256 u8 log_page;
257};
258
259int nvmet_parse_connect_cmd(struct nvmet_req *req);
260int nvmet_parse_io_cmd(struct nvmet_req *req);
261int nvmet_parse_admin_cmd(struct nvmet_req *req);
262int nvmet_parse_discovery_cmd(struct nvmet_req *req);
263int nvmet_parse_fabrics_cmd(struct nvmet_req *req);
264
265bool nvmet_req_init(struct nvmet_req *req, struct nvmet_cq *cq,
266 struct nvmet_sq *sq, struct nvmet_fabrics_ops *ops);
267void nvmet_req_complete(struct nvmet_req *req, u16 status);
268
269void nvmet_cq_setup(struct nvmet_ctrl *ctrl, struct nvmet_cq *cq, u16 qid,
270 u16 size);
271void nvmet_sq_setup(struct nvmet_ctrl *ctrl, struct nvmet_sq *sq, u16 qid,
272 u16 size);
273void nvmet_sq_destroy(struct nvmet_sq *sq);
274int nvmet_sq_init(struct nvmet_sq *sq);
275
276void nvmet_ctrl_fatal_error(struct nvmet_ctrl *ctrl);
277
278void nvmet_update_cc(struct nvmet_ctrl *ctrl, u32 new);
279u16 nvmet_alloc_ctrl(const char *subsysnqn, const char *hostnqn,
280 struct nvmet_req *req, u32 kato, struct nvmet_ctrl **ctrlp);
281u16 nvmet_ctrl_find_get(const char *subsysnqn, const char *hostnqn, u16 cntlid,
282 struct nvmet_req *req, struct nvmet_ctrl **ret);
283void nvmet_ctrl_put(struct nvmet_ctrl *ctrl);
284
285struct nvmet_subsys *nvmet_subsys_alloc(const char *subsysnqn,
286 enum nvme_subsys_type type);
287void nvmet_subsys_put(struct nvmet_subsys *subsys);
288
289struct nvmet_ns *nvmet_find_namespace(struct nvmet_ctrl *ctrl, __le32 nsid);
290void nvmet_put_namespace(struct nvmet_ns *ns);
291int nvmet_ns_enable(struct nvmet_ns *ns);
292void nvmet_ns_disable(struct nvmet_ns *ns);
293struct nvmet_ns *nvmet_ns_alloc(struct nvmet_subsys *subsys, u32 nsid);
294void nvmet_ns_free(struct nvmet_ns *ns);
295
296int nvmet_register_transport(struct nvmet_fabrics_ops *ops);
297void nvmet_unregister_transport(struct nvmet_fabrics_ops *ops);
298
299int nvmet_enable_port(struct nvmet_port *port);
300void nvmet_disable_port(struct nvmet_port *port);
301
302void nvmet_referral_enable(struct nvmet_port *parent, struct nvmet_port *port);
303void nvmet_referral_disable(struct nvmet_port *port);
304
305u16 nvmet_copy_to_sgl(struct nvmet_req *req, off_t off, const void *buf,
306 size_t len);
307u16 nvmet_copy_from_sgl(struct nvmet_req *req, off_t off, void *buf,
308 size_t len);
309
310u32 nvmet_get_log_page_len(struct nvme_command *cmd);
311
312#define NVMET_QUEUE_SIZE 1024
313#define NVMET_NR_QUEUES 64
314#define NVMET_MAX_CMD NVMET_QUEUE_SIZE
315#define NVMET_KAS 10
316#define NVMET_DISC_KATO 120
317
318int __init nvmet_init_configfs(void);
319void __exit nvmet_exit_configfs(void);
320
321int __init nvmet_init_discovery(void);
322void nvmet_exit_discovery(void);
323
324extern struct nvmet_subsys *nvmet_disc_subsys;
325extern u64 nvmet_genctr;
326extern struct rw_semaphore nvmet_config_sem;
327
328bool nvmet_host_allowed(struct nvmet_req *req, struct nvmet_subsys *subsys,
329 const char *hostnqn);
330
331#endif /* _NVMET_H */