mei: bus: use mei_cldev_ prefix for the API functions
[deliverable/linux.git] / drivers / misc / mei / mei_dev.h
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1/*
2 *
3 * Intel Management Engine Interface (Intel MEI) Linux driver
733ba91c 4 * Copyright (c) 2003-2012, Intel Corporation.
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5 *
6 * This program is free software; you can redistribute it and/or modify it
7 * under the terms and conditions of the GNU General Public License,
8 * version 2, as published by the Free Software Foundation.
9 *
10 * This program is distributed in the hope it will be useful, but WITHOUT
11 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
12 * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
13 * more details.
14 *
15 */
16
17#ifndef _MEI_DEV_H_
18#define _MEI_DEV_H_
19
20#include <linux/types.h>
9ce178e5 21#include <linux/watchdog.h>
744f0f2f 22#include <linux/poll.h>
4f3afe1d 23#include <linux/mei.h>
e5354107 24#include <linux/mei_cl_bus.h>
66ef5ea9 25
ab841160 26#include "hw.h"
9b0d5efc 27#include "hbm.h"
ab841160 28
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29/*
30 * watch dog definition
31 */
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32#define MEI_WD_HDR_SIZE 4
33#define MEI_WD_STOP_MSG_SIZE MEI_WD_HDR_SIZE
34#define MEI_WD_START_MSG_SIZE (MEI_WD_HDR_SIZE + 16)
35
36#define MEI_WD_DEFAULT_TIMEOUT 120 /* seconds */
37#define MEI_WD_MIN_TIMEOUT 120 /* seconds */
38#define MEI_WD_MAX_TIMEOUT 65535 /* seconds */
39
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40#define MEI_WD_STOP_TIMEOUT 10 /* msecs */
41
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42#define MEI_WD_STATE_INDEPENDENCE_MSG_SENT (1 << 0)
43
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44#define MEI_RD_MSG_BUF_SIZE (128 * sizeof(u32))
45
9ce178e5 46
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47/*
48 * AMTHI Client UUID
49 */
1a1aca42 50extern const uuid_le mei_amthif_guid;
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51
52/*
53 * Watchdog Client UUID
54 */
55extern const uuid_le mei_wd_guid;
56
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57/*
58 * Number of Maximum MEI Clients
59 */
60#define MEI_CLIENTS_MAX 256
61
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62/*
63 * maximum number of consecutive resets
64 */
65#define MEI_MAX_CONSEC_RESET 3
66
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67/*
68 * Number of File descriptors/handles
69 * that can be opened to the driver.
70 *
781d0d89 71 * Limit to 255: 256 Total Clients
83ce0741 72 * minus internal client for MEI Bus Messages
ab841160 73 */
781d0d89 74#define MEI_MAX_OPEN_HANDLE_COUNT (MEI_CLIENTS_MAX - 1)
ab841160 75
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76/*
77 * Internal Clients Number
78 */
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79#define MEI_HOST_CLIENT_ID_ANY (-1)
80#define MEI_HBM_HOST_CLIENT_ID 0 /* not used, just for documentation */
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81#define MEI_WD_HOST_CLIENT_ID 1
82#define MEI_IAMTHIF_HOST_CLIENT_ID 2
83
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84
85/* File state */
86enum file_state {
87 MEI_FILE_INITIALIZING = 0,
88 MEI_FILE_CONNECTING,
89 MEI_FILE_CONNECTED,
90 MEI_FILE_DISCONNECTING,
3c666182 91 MEI_FILE_DISCONNECT_REPLY,
18901357 92 MEI_FILE_DISCONNECT_REQUIRED,
3c666182 93 MEI_FILE_DISCONNECTED,
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94};
95
96/* MEI device states */
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97enum mei_dev_state {
98 MEI_DEV_INITIALIZING = 0,
99 MEI_DEV_INIT_CLIENTS,
100 MEI_DEV_ENABLED,
0cfee51c 101 MEI_DEV_RESETTING,
b210d750 102 MEI_DEV_DISABLED,
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103 MEI_DEV_POWER_DOWN,
104 MEI_DEV_POWER_UP
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105};
106
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107const char *mei_dev_state_str(int state);
108
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109enum iamthif_states {
110 MEI_IAMTHIF_IDLE,
111 MEI_IAMTHIF_WRITING,
112 MEI_IAMTHIF_FLOW_CONTROL,
113 MEI_IAMTHIF_READING,
114 MEI_IAMTHIF_READ_COMPLETE
115};
116
117enum mei_file_transaction_states {
118 MEI_IDLE,
119 MEI_WRITING,
120 MEI_WRITE_COMPLETE,
121 MEI_FLOW_CONTROL,
122 MEI_READING,
123 MEI_READ_COMPLETE
124};
125
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126enum mei_wd_states {
127 MEI_WD_IDLE,
128 MEI_WD_RUNNING,
129 MEI_WD_STOPPING,
130};
131
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132/**
133 * enum mei_cb_file_ops - file operation associated with the callback
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134 * @MEI_FOP_READ: read
135 * @MEI_FOP_WRITE: write
136 * @MEI_FOP_CONNECT: connect
137 * @MEI_FOP_DISCONNECT: disconnect
138 * @MEI_FOP_DISCONNECT_RSP: disconnect response
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139 * @MEI_FOP_NOTIFY_START: start notification
140 * @MEI_FOP_NOTIFY_STOP: stop notification
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141 */
142enum mei_cb_file_ops {
143 MEI_FOP_READ = 0,
144 MEI_FOP_WRITE,
02a7eecc 145 MEI_FOP_CONNECT,
5a8373fb 146 MEI_FOP_DISCONNECT,
6bb948c9 147 MEI_FOP_DISCONNECT_RSP,
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148 MEI_FOP_NOTIFY_START,
149 MEI_FOP_NOTIFY_STOP,
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150};
151
152/*
153 * Intel MEI message data struct
154 */
4234a6de 155struct mei_msg_data {
ab841160 156 u32 size;
edf1eed4 157 unsigned char *data;
f060939d 158};
ab841160 159
04dd3661 160/* Maximum number of processed FW status registers */
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161#define MEI_FW_STATUS_MAX 6
162/* Minimal buffer for FW status string (8 bytes in dw + space or '\0') */
163#define MEI_FW_STATUS_STR_SZ (MEI_FW_STATUS_MAX * (8 + 1))
164
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165
166/*
167 * struct mei_fw_status - storage of FW status data
168 *
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169 * @count: number of actually available elements in array
170 * @status: FW status registers
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171 */
172struct mei_fw_status {
173 int count;
174 u32 status[MEI_FW_STATUS_MAX];
175};
176
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177/**
178 * struct mei_me_client - representation of me (fw) client
179 *
a8605ea2 180 * @list: link in me client list
79563db9 181 * @refcnt: struct reference count
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182 * @props: client properties
183 * @client_id: me client id
184 * @mei_flow_ctrl_creds: flow control credits
a03d77f6 185 * @connect_count: number connections to this client
0ff0a8d8 186 * @bus_added: added to bus
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187 */
188struct mei_me_client {
5ca2d388 189 struct list_head list;
79563db9 190 struct kref refcnt;
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191 struct mei_client_properties props;
192 u8 client_id;
193 u8 mei_flow_ctrl_creds;
a03d77f6 194 u8 connect_count;
0ff0a8d8 195 u8 bus_added;
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196};
197
ab841160 198
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199struct mei_cl;
200
4b8960b4 201/**
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202 * struct mei_cl_cb - file operation callback structure
203 *
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204 * @list: link in callback queue
205 * @cl: file client who is running this operation
206 * @fop_type: file operation type
5db7514d 207 * @buf: buffer for data associated with the callback
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208 * @buf_idx: last read index
209 * @read_time: last read operation time stamp (iamthif)
210 * @file_object: pointer to file structure
3d33ff24 211 * @status: io status of the cb
ce23139c 212 * @internal: communication between driver and FW flag
8660172e 213 * @completed: the transfer or reception has completed
db3ed431 214 */
ab841160 215struct mei_cl_cb {
fb601adb 216 struct list_head list;
db3ed431 217 struct mei_cl *cl;
4b8960b4 218 enum mei_cb_file_ops fop_type;
5db7514d 219 struct mei_msg_data buf;
ebb108ef 220 unsigned long buf_idx;
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221 unsigned long read_time;
222 struct file *file_object;
3d33ff24 223 int status;
479327fc 224 u32 internal:1;
8660172e 225 u32 completed:1;
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226};
227
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228/**
229 * struct mei_cl - me client host representation
230 * carried in file->private_data
231 *
232 * @link: link in the clients list
233 * @dev: mei parent device
234 * @state: file operation state
235 * @tx_wait: wait queue for tx completion
236 * @rx_wait: wait queue for rx completion
237 * @wait: wait queue for management operation
b38a362f 238 * @ev_wait: notification wait queue
237092bf 239 * @ev_async: event async notification
ce23139c 240 * @status: connection status
d49ed64a 241 * @me_cl: fw client connected
ce23139c 242 * @host_client_id: host id
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243 * @mei_flow_ctrl_creds: transmit flow credentials
244 * @timer_count: watchdog timer for operation completion
d49ed64a 245 * @reserved: reserved for alignment
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246 * @notify_en: notification - enabled/disabled
247 * @notify_ev: pending notification event
ce23139c 248 * @writing_state: state of the tx
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249 * @rd_pending: pending read credits
250 * @rd_completed: completed read
ce23139c 251 *
b37719c3 252 * @cldev: device on the mei client bus
ce23139c 253 */
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254struct mei_cl {
255 struct list_head link;
256 struct mei_device *dev;
257 enum file_state state;
258 wait_queue_head_t tx_wait;
259 wait_queue_head_t rx_wait;
260 wait_queue_head_t wait;
b38a362f 261 wait_queue_head_t ev_wait;
237092bf 262 struct fasync_struct *ev_async;
ab841160 263 int status;
d49ed64a 264 struct mei_me_client *me_cl;
ab841160 265 u8 host_client_id;
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266 u8 mei_flow_ctrl_creds;
267 u8 timer_count;
d49ed64a 268 u8 reserved;
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269 u8 notify_en;
270 u8 notify_ev;
ab841160 271 enum mei_file_transaction_states writing_state;
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272 struct list_head rd_pending;
273 struct list_head rd_completed;
a7b71bc0 274
b37719c3 275 struct mei_cl_device *cldev;
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276};
277
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278/** struct mei_hw_ops
279 *
a8605ea2 280 * @host_is_ready : query for host readiness
827eef51 281
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282 * @hw_is_ready : query if hw is ready
283 * @hw_reset : reset hw
284 * @hw_start : start hw after reset
285 * @hw_config : configure hw
827eef51 286
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287 * @fw_status : get fw status registers
288 * @pg_state : power gating state of the device
3dc196ea 289 * @pg_in_transition : is device now in pg transition
a8605ea2 290 * @pg_is_enabled : is power gating enabled
ee7e5afd 291
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292 * @intr_clear : clear pending interrupts
293 * @intr_enable : enable interrupts
294 * @intr_disable : disable interrupts
827eef51 295
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296 * @hbuf_free_slots : query for write buffer empty slots
297 * @hbuf_is_ready : query if write buffer is empty
298 * @hbuf_max_len : query for write buffer max len
827eef51 299
a8605ea2 300 * @write : write a message to FW
827eef51 301
a8605ea2 302 * @rdbuf_full_slots : query how many slots are filled
827eef51 303
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304 * @read_hdr : get first 4 bytes (header)
305 * @read : read a buffer from the FW
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306 */
307struct mei_hw_ops {
308
d63b3095 309 bool (*host_is_ready)(struct mei_device *dev);
827eef51 310
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311 bool (*hw_is_ready)(struct mei_device *dev);
312 int (*hw_reset)(struct mei_device *dev, bool enable);
313 int (*hw_start)(struct mei_device *dev);
314 void (*hw_config)(struct mei_device *dev);
827eef51 315
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316
317 int (*fw_status)(struct mei_device *dev, struct mei_fw_status *fw_sts);
964a2331 318 enum mei_pg_state (*pg_state)(struct mei_device *dev);
3dc196ea 319 bool (*pg_in_transition)(struct mei_device *dev);
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320 bool (*pg_is_enabled)(struct mei_device *dev);
321
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322 void (*intr_clear)(struct mei_device *dev);
323 void (*intr_enable)(struct mei_device *dev);
324 void (*intr_disable)(struct mei_device *dev);
827eef51 325
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326 int (*hbuf_free_slots)(struct mei_device *dev);
327 bool (*hbuf_is_ready)(struct mei_device *dev);
328 size_t (*hbuf_max_len)(const struct mei_device *dev);
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329
330 int (*write)(struct mei_device *dev,
331 struct mei_msg_hdr *hdr,
332 unsigned char *buf);
333
334 int (*rdbuf_full_slots)(struct mei_device *dev);
335
336 u32 (*read_hdr)(const struct mei_device *dev);
d63b3095 337 int (*read)(struct mei_device *dev,
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338 unsigned char *buf, unsigned long len);
339};
340
e5354107 341/* MEI bus API*/
6009595a 342void mei_cl_bus_rescan(struct mei_device *bus);
71ce7891 343void mei_cl_dev_fixup(struct mei_cl_device *dev);
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344ssize_t __mei_cl_send(struct mei_cl *cl, u8 *buf, size_t length,
345 bool blocking);
39db74ce 346ssize_t __mei_cl_recv(struct mei_cl *cl, u8 *buf, size_t length);
cf3baefb 347void mei_cl_bus_rx_event(struct mei_cl *cl);
bb2ef9c3 348void mei_cl_bus_notify_event(struct mei_cl *cl);
b37719c3 349void mei_cl_bus_remove_devices(struct mei_device *bus);
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350int mei_cl_bus_init(void);
351void mei_cl_bus_exit(void);
352
ce23139c 353/**
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354 * enum mei_pg_event - power gating transition events
355 *
356 * @MEI_PG_EVENT_IDLE: the driver is not in power gating transition
357 * @MEI_PG_EVENT_WAIT: the driver is waiting for a pg event to complete
358 * @MEI_PG_EVENT_RECEIVED: the driver received pg event
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359 * @MEI_PG_EVENT_INTR_WAIT: the driver is waiting for a pg event interrupt
360 * @MEI_PG_EVENT_INTR_RECEIVED: the driver received pg event interrupt
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361 */
362enum mei_pg_event {
363 MEI_PG_EVENT_IDLE,
364 MEI_PG_EVENT_WAIT,
365 MEI_PG_EVENT_RECEIVED,
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366 MEI_PG_EVENT_INTR_WAIT,
367 MEI_PG_EVENT_INTR_RECEIVED,
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368};
369
370/**
371 * enum mei_pg_state - device internal power gating state
372 *
373 * @MEI_PG_OFF: device is not power gated - it is active
374 * @MEI_PG_ON: device is power gated - it is in lower power state
375 */
376enum mei_pg_state {
377 MEI_PG_OFF = 0,
378 MEI_PG_ON = 1,
379};
380
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381const char *mei_pg_state_str(enum mei_pg_state state);
382
24aadc80 383/**
5fb54fb4 384 * struct mei_device - MEI private device struct
ce23139c 385 *
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386 * @dev : device on a bus
387 * @cdev : character device
388 * @minor : minor number allocated for device
f3d8e878 389 *
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390 * @write_list : write pending list
391 * @write_waiting_list : write completion list
392 * @ctrl_wr_list : pending control write list
393 * @ctrl_rd_list : pending control read list
bae1cc7d 394 *
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395 * @file_list : list of opened handles
396 * @open_handle_count: number of opened handles
397 *
398 * @device_lock : big device lock
399 * @timer_work : MEI timer delayed work (timeouts)
400 *
401 * @recvd_hw_ready : hw ready message received flag
402 *
403 * @wait_hw_ready : wait queue for receive HW ready message form FW
404 * @wait_pg : wait queue for receive PG message from FW
405 * @wait_hbm_start : wait queue for receive HBM start message from FW
406 * @wait_stop_wd : wait queue for receive WD stop message from FW
407 *
408 * @reset_count : number of consecutive resets
409 * @dev_state : device state
410 * @hbm_state : state of host bus message protocol
411 * @init_clients_timer : HBM init handshake timeout
bae1cc7d 412 *
a8605ea2 413 * @pg_event : power gating event
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414 * @pg_domain : runtime PM domain
415 *
416 * @rd_msg_buf : control messages buffer
417 * @rd_msg_hdr : read message header storage
418 *
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419 * @hbuf_depth : depth of hardware host/write buffer is slots
420 * @hbuf_is_ready : query if the host host/write buffer is ready
421 * @wr_msg : the buffer for hbm control messages
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422 *
423 * @version : HBM protocol version in use
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424 * @hbm_f_pg_supported : hbm feature pgi protocol
425 * @hbm_f_dc_supported : hbm feature dynamic clients
426 * @hbm_f_dot_supported : hbm feature disconnect on timeout
4d99877d 427 * @hbm_f_ev_supported : hbm feature event notification
ce23139c 428 *
b7d88514 429 * @me_clients_rwsem: rw lock over me_clients list
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430 * @me_clients : list of FW clients
431 * @me_clients_map : FW clients bit map
432 * @host_clients_map : host clients id pool
433 * @me_client_index : last FW client index in enumeration
434 *
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435 * @allow_fixed_address: allow user space to connect a fixed client
436 *
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437 * @wd_cl : watchdog client
438 * @wd_state : watchdog client state
439 * @wd_pending : watchdog command is pending
440 * @wd_timeout : watchdog expiration timeout
441 * @wd_data : watchdog message buffer
442 *
443 * @amthif_cmd_list : amthif list for cmd waiting
444 * @amthif_rd_complete_list : amthif list for reading completed cmd data
445 * @iamthif_file_object : file for current amthif operation
446 * @iamthif_cl : amthif host client
447 * @iamthif_current_cb : amthif current operation callback
448 * @iamthif_open_count : number of opened amthif connections
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449 * @iamthif_timer : time stamp of current amthif command completion
450 * @iamthif_stall_timer : timer to detect amthif hang
ce23139c 451 * @iamthif_state : amthif processor state
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452 * @iamthif_canceled : current amthif command is canceled
453 *
454 * @init_work : work item for the device init
455 * @reset_work : work item for the device reset
456 *
457 * @device_list : mei client bus list
0ff0a8d8 458 * @cl_bus_lock : client bus list lock
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459 *
460 * @dbgfs_dir : debugfs mei root directory
461 *
462 * @ops: : hw specific operations
463 * @hw : hw specific data
24aadc80 464 */
ab841160 465struct mei_device {
3a7e9b6c 466 struct device *dev;
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467 struct cdev cdev;
468 int minor;
469
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470 struct mei_cl_cb write_list;
471 struct mei_cl_cb write_waiting_list;
472 struct mei_cl_cb ctrl_wr_list;
473 struct mei_cl_cb ctrl_rd_list;
ab841160 474
ab841160 475 struct list_head file_list;
eb9af0ac 476 long open_handle_count;
fecb0d58 477
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478 struct mutex device_lock;
479 struct delayed_work timer_work;
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480
481 bool recvd_hw_ready;
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482 /*
483 * waiting queue for receive message from FW
484 */
aafae7ec 485 wait_queue_head_t wait_hw_ready;
4fcbc99b 486 wait_queue_head_t wait_pg;
cb02efc3 487 wait_queue_head_t wait_hbm_start;
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488 wait_queue_head_t wait_stop_wd;
489
490 /*
491 * mei device states
492 */
6adb8efb 493 unsigned long reset_count;
b210d750 494 enum mei_dev_state dev_state;
9b0d5efc 495 enum mei_hbm_state hbm_state;
ab841160 496 u16 init_clients_timer;
ab841160 497
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498 /*
499 * Power Gating support
500 */
501 enum mei_pg_event pg_event;
bbd6d050 502#ifdef CONFIG_PM
e13fa90c 503 struct dev_pm_domain pg_domain;
bbd6d050 504#endif /* CONFIG_PM */
964a2331 505
ce23139c 506 unsigned char rd_msg_buf[MEI_RD_MSG_BUF_SIZE];
ab841160 507 u32 rd_msg_hdr;
e46f1874 508
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509 /* write buffer */
510 u8 hbuf_depth;
511 bool hbuf_is_ready;
512
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513 /* used for control messages */
514 struct {
515 struct mei_msg_hdr hdr;
516 unsigned char data[128];
517 } wr_msg;
518
ab841160 519 struct hbm_version version;
bae1cc7d 520 unsigned int hbm_f_pg_supported:1;
70ef835c 521 unsigned int hbm_f_dc_supported:1;
18901357 522 unsigned int hbm_f_dot_supported:1;
4d99877d 523 unsigned int hbm_f_ev_supported:1;
ab841160 524
b7d88514 525 struct rw_semaphore me_clients_rwsem;
5ca2d388 526 struct list_head me_clients;
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527 DECLARE_BITMAP(me_clients_map, MEI_CLIENTS_MAX);
528 DECLARE_BITMAP(host_clients_map, MEI_CLIENTS_MAX);
1aee351a 529 unsigned long me_client_index;
ab841160 530
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531 u32 allow_fixed_address;
532
eb9af0ac 533 struct mei_cl wd_cl;
c216fdeb 534 enum mei_wd_states wd_state;
eb9af0ac 535 bool wd_pending;
c216fdeb 536 u16 wd_timeout;
248ffdf7 537 unsigned char wd_data[MEI_WD_START_MSG_SIZE];
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538
539
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540 /* amthif list for cmd waiting */
541 struct mei_cl_cb amthif_cmd_list;
542 /* driver managed amthif list for reading completed amthif cmd data */
543 struct mei_cl_cb amthif_rd_complete_list;
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544 struct file *iamthif_file_object;
545 struct mei_cl iamthif_cl;
eb9af0ac 546 struct mei_cl_cb *iamthif_current_cb;
22f96a0e 547 long iamthif_open_count;
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548 unsigned long iamthif_timer;
549 u32 iamthif_stall_timer;
ab841160 550 enum iamthif_states iamthif_state;
eb9af0ac 551 bool iamthif_canceled;
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552
553 struct work_struct init_work;
544f9460 554 struct work_struct reset_work;
827eef51 555
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556 /* List of bus devices */
557 struct list_head device_list;
0ff0a8d8 558 struct mutex cl_bus_lock;
a7b71bc0 559
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560#if IS_ENABLED(CONFIG_DEBUG_FS)
561 struct dentry *dbgfs_dir;
562#endif /* CONFIG_DEBUG_FS */
563
564
827eef51 565 const struct mei_hw_ops *ops;
52c34561 566 char hw[0] __aligned(sizeof(void *));
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567};
568
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569static inline unsigned long mei_secs_to_jiffies(unsigned long sec)
570{
571 return msecs_to_jiffies(sec * MSEC_PER_SEC);
572}
573
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574/**
575 * mei_data2slots - get slots - number of (dwords) from a message length
576 * + size of the mei header
ce23139c 577 *
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578 * @length: size of the messages in bytes
579 *
580 * Return: number of slots
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581 */
582static inline u32 mei_data2slots(size_t length)
583{
584 return DIV_ROUND_UP(sizeof(struct mei_msg_hdr) + length, 4);
585}
586
10ee9074 587/**
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588 * mei_slots2data - get data in slots - bytes from slots
589 *
a8605ea2 590 * @slots: number of available slots
ce23139c 591 *
a8605ea2 592 * Return: number of bytes in slots
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593 */
594static inline u32 mei_slots2data(int slots)
595{
596 return slots * 4;
597}
598
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599/*
600 * mei init function prototypes
601 */
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602void mei_device_init(struct mei_device *dev,
603 struct device *device,
604 const struct mei_hw_ops *hw_ops);
33ec0826 605int mei_reset(struct mei_device *dev);
c4d589be 606int mei_start(struct mei_device *dev);
33ec0826 607int mei_restart(struct mei_device *dev);
7cb035d9 608void mei_stop(struct mei_device *dev);
dc844b0d 609void mei_cancel_work(struct mei_device *dev);
c95efb74 610
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611/*
612 * MEI interrupt functions prototype
ab841160 613 */
06ecd645 614
a61c6530 615void mei_timer(struct work_struct *work);
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616int mei_irq_read_handler(struct mei_device *dev,
617 struct mei_cl_cb *cmpl_list, s32 *slots);
618
619int mei_irq_write_handler(struct mei_device *dev, struct mei_cl_cb *cmpl_list);
4c6e22b8 620void mei_irq_compl_handler(struct mei_device *dev, struct mei_cl_cb *cmpl_list);
ab841160 621
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622/*
623 * AMTHIF - AMT Host Interface Functions
624 */
625void mei_amthif_reset_params(struct mei_device *dev);
626
d49ed64a 627int mei_amthif_host_init(struct mei_device *dev, struct mei_me_client *me_cl);
19838fb8 628
19838fb8 629int mei_amthif_read(struct mei_device *dev, struct file *file,
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630 char __user *ubuf, size_t length, loff_t *offset);
631
632unsigned int mei_amthif_poll(struct mei_device *dev,
633 struct file *file, poll_table *wait);
ab841160 634
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635int mei_amthif_release(struct mei_device *dev, struct file *file);
636
19838fb8 637struct mei_cl_cb *mei_amthif_find_read_list_entry(struct mei_device *dev,
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638 struct file *file);
639
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640int mei_amthif_write(struct mei_cl *cl, struct mei_cl_cb *cb);
641int mei_amthif_run_next_cmd(struct mei_device *dev);
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642int mei_amthif_irq_write(struct mei_cl *cl, struct mei_cl_cb *cb,
643 struct mei_cl_cb *cmpl_list);
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644
645void mei_amthif_complete(struct mei_device *dev, struct mei_cl_cb *cb);
db4756fd 646int mei_amthif_irq_read_msg(struct mei_cl *cl,
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647 struct mei_msg_hdr *mei_hdr,
648 struct mei_cl_cb *complete_list);
649int mei_amthif_irq_read(struct mei_device *dev, s32 *slots);
650
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651/*
652 * NFC functions
653 */
d49ed64a 654int mei_nfc_host_init(struct mei_device *dev, struct mei_me_client *me_cl);
dc844b0d 655void mei_nfc_host_exit(struct mei_device *dev);
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656
657/*
658 * NFC Client UUID
659 */
660extern const uuid_le mei_nfc_guid;
19838fb8 661
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662int mei_wd_send(struct mei_device *dev);
663int mei_wd_stop(struct mei_device *dev);
d49ed64a 664int mei_wd_host_init(struct mei_device *dev, struct mei_me_client *me_cl);
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665/*
666 * mei_watchdog_register - Registering watchdog interface
667 * once we got connection to the WD Client
a8605ea2 668 * @dev: mei device
37e7d6e7 669 */
64092858 670int mei_watchdog_register(struct mei_device *dev);
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671/*
672 * mei_watchdog_unregister - Unregistering watchdog interface
a8605ea2 673 * @dev: mei device
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674 */
675void mei_watchdog_unregister(struct mei_device *dev);
676
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677/*
678 * Register Access Function
679 */
680
8d929d48 681
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682static inline void mei_hw_config(struct mei_device *dev)
683{
684 dev->ops->hw_config(dev);
685}
ee7e5afd 686
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687static inline enum mei_pg_state mei_pg_state(struct mei_device *dev)
688{
689 return dev->ops->pg_state(dev);
690}
691
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692static inline bool mei_pg_in_transition(struct mei_device *dev)
693{
694 return dev->ops->pg_in_transition(dev);
695}
696
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697static inline bool mei_pg_is_enabled(struct mei_device *dev)
698{
699 return dev->ops->pg_is_enabled(dev);
700}
701
c20c68d5 702static inline int mei_hw_reset(struct mei_device *dev, bool enable)
827eef51 703{
c20c68d5 704 return dev->ops->hw_reset(dev, enable);
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705}
706
9049f793 707static inline int mei_hw_start(struct mei_device *dev)
aafae7ec 708{
9049f793 709 return dev->ops->hw_start(dev);
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710}
711
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712static inline void mei_clear_interrupts(struct mei_device *dev)
713{
714 dev->ops->intr_clear(dev);
715}
716
717static inline void mei_enable_interrupts(struct mei_device *dev)
718{
719 dev->ops->intr_enable(dev);
720}
ab841160 721
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722static inline void mei_disable_interrupts(struct mei_device *dev)
723{
724 dev->ops->intr_disable(dev);
725}
ab841160 726
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727static inline bool mei_host_is_ready(struct mei_device *dev)
728{
729 return dev->ops->host_is_ready(dev);
730}
731static inline bool mei_hw_is_ready(struct mei_device *dev)
732{
733 return dev->ops->hw_is_ready(dev);
734}
e7e0c231 735
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736static inline bool mei_hbuf_is_ready(struct mei_device *dev)
737{
738 return dev->ops->hbuf_is_ready(dev);
739}
ab841160 740
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741static inline int mei_hbuf_empty_slots(struct mei_device *dev)
742{
743 return dev->ops->hbuf_free_slots(dev);
744}
115ba28c 745
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746static inline size_t mei_hbuf_max_len(const struct mei_device *dev)
747{
748 return dev->ops->hbuf_max_len(dev);
749}
3a65dd4e 750
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751static inline int mei_write_message(struct mei_device *dev,
752 struct mei_msg_hdr *hdr,
753 unsigned char *buf)
754{
755 return dev->ops->write(dev, hdr, buf);
756}
757
758static inline u32 mei_read_hdr(const struct mei_device *dev)
759{
760 return dev->ops->read_hdr(dev);
761}
762
763static inline void mei_read_slots(struct mei_device *dev,
764 unsigned char *buf, unsigned long len)
765{
766 dev->ops->read(dev, buf, len);
767}
768
769static inline int mei_count_full_read_slots(struct mei_device *dev)
770{
771 return dev->ops->rdbuf_full_slots(dev);
772}
5bd64714 773
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774static inline int mei_fw_status(struct mei_device *dev,
775 struct mei_fw_status *fw_status)
776{
777 return dev->ops->fw_status(dev, fw_status);
778}
04dd3661 779
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780bool mei_hbuf_acquire(struct mei_device *dev);
781
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782bool mei_write_is_idle(struct mei_device *dev);
783
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784#if IS_ENABLED(CONFIG_DEBUG_FS)
785int mei_dbgfs_register(struct mei_device *dev, const char *name);
786void mei_dbgfs_deregister(struct mei_device *dev);
787#else
788static inline int mei_dbgfs_register(struct mei_device *dev, const char *name)
789{
790 return 0;
791}
792static inline void mei_dbgfs_deregister(struct mei_device *dev) {}
793#endif /* CONFIG_DEBUG_FS */
794
f3d8e878 795int mei_register(struct mei_device *dev, struct device *parent);
30e53bb8 796void mei_deregister(struct mei_device *dev);
2703d4b2 797
479327fc 798#define MEI_HDR_FMT "hdr:host=%02d me=%02d len=%d internal=%1d comp=%1d"
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799#define MEI_HDR_PRM(hdr) \
800 (hdr)->host_addr, (hdr)->me_addr, \
479327fc 801 (hdr)->length, (hdr)->internal, (hdr)->msg_complete
15d4acc5 802
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803ssize_t mei_fw_status2str(struct mei_fw_status *fw_sts, char *buf, size_t len);
804/**
805 * mei_fw_status_str - fetch and convert fw status registers to printable string
806 *
807 * @dev: the device structure
808 * @buf: string buffer at minimal size MEI_FW_STATUS_STR_SZ
809 * @len: buffer len must be >= MEI_FW_STATUS_STR_SZ
810 *
811 * Return: number of bytes written or < 0 on failure
812 */
813static inline ssize_t mei_fw_status_str(struct mei_device *dev,
814 char *buf, size_t len)
815{
816 struct mei_fw_status fw_status;
817 int ret;
818
819 buf[0] = '\0';
820
821 ret = mei_fw_status(dev, &fw_status);
822 if (ret)
823 return ret;
824
825 ret = mei_fw_status2str(&fw_status, buf, MEI_FW_STATUS_STR_SZ);
826
827 return ret;
828}
829
830
ab841160 831#endif
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