xref: /openbmc/linux/drivers/thunderbolt/tb.h (revision 068ac0db)
1 /* SPDX-License-Identifier: GPL-2.0 */
2 /*
3  * Thunderbolt driver - bus logic (NHI independent)
4  *
5  * Copyright (c) 2014 Andreas Noever <andreas.noever@gmail.com>
6  * Copyright (C) 2018, Intel Corporation
7  */
8 
9 #ifndef TB_H_
10 #define TB_H_
11 
12 #include <linux/nvmem-provider.h>
13 #include <linux/pci.h>
14 #include <linux/thunderbolt.h>
15 #include <linux/uuid.h>
16 
17 #include "tb_regs.h"
18 #include "ctl.h"
19 #include "dma_port.h"
20 
21 /**
22  * struct tb_switch_nvm - Structure holding switch NVM information
23  * @major: Major version number of the active NVM portion
24  * @minor: Minor version number of the active NVM portion
25  * @id: Identifier used with both NVM portions
26  * @active: Active portion NVMem device
27  * @non_active: Non-active portion NVMem device
28  * @buf: Buffer where the NVM image is stored before it is written to
29  *	 the actual NVM flash device
30  * @buf_data_size: Number of bytes actually consumed by the new NVM
31  *		   image
32  * @authenticating: The switch is authenticating the new NVM
33  */
34 struct tb_switch_nvm {
35 	u8 major;
36 	u8 minor;
37 	int id;
38 	struct nvmem_device *active;
39 	struct nvmem_device *non_active;
40 	void *buf;
41 	size_t buf_data_size;
42 	bool authenticating;
43 };
44 
45 #define TB_SWITCH_KEY_SIZE		32
46 #define TB_SWITCH_MAX_DEPTH		6
47 
48 /**
49  * struct tb_switch - a thunderbolt switch
50  * @dev: Device for the switch
51  * @config: Switch configuration
52  * @ports: Ports in this switch
53  * @dma_port: If the switch has port supporting DMA configuration based
54  *	      mailbox this will hold the pointer to that (%NULL
55  *	      otherwise). If set it also means the switch has
56  *	      upgradeable NVM.
57  * @tb: Pointer to the domain the switch belongs to
58  * @uid: Unique ID of the switch
59  * @uuid: UUID of the switch (or %NULL if not supported)
60  * @vendor: Vendor ID of the switch
61  * @device: Device ID of the switch
62  * @vendor_name: Name of the vendor (or %NULL if not known)
63  * @device_name: Name of the device (or %NULL if not known)
64  * @link_speed: Speed of the link in Gb/s
65  * @link_width: Width of the link (1 or 2)
66  * @generation: Switch Thunderbolt generation
67  * @cap_plug_events: Offset to the plug events capability (%0 if not found)
68  * @cap_lc: Offset to the link controller capability (%0 if not found)
69  * @is_unplugged: The switch is going away
70  * @drom: DROM of the switch (%NULL if not found)
71  * @nvm: Pointer to the NVM if the switch has one (%NULL otherwise)
72  * @no_nvm_upgrade: Prevent NVM upgrade of this switch
73  * @safe_mode: The switch is in safe-mode
74  * @boot: Whether the switch was already authorized on boot or not
75  * @rpm: The switch supports runtime PM
76  * @authorized: Whether the switch is authorized by user or policy
77  * @security_level: Switch supported security level
78  * @key: Contains the key used to challenge the device or %NULL if not
79  *	 supported. Size of the key is %TB_SWITCH_KEY_SIZE.
80  * @connection_id: Connection ID used with ICM messaging
81  * @connection_key: Connection key used with ICM messaging
82  * @link: Root switch link this switch is connected (ICM only)
83  * @depth: Depth in the chain this switch is connected (ICM only)
84  * @rpm_complete: Completion used to wait for runtime resume to
85  *		  complete (ICM only)
86  *
87  * When the switch is being added or removed to the domain (other
88  * switches) you need to have domain lock held.
89  */
90 struct tb_switch {
91 	struct device dev;
92 	struct tb_regs_switch_header config;
93 	struct tb_port *ports;
94 	struct tb_dma_port *dma_port;
95 	struct tb *tb;
96 	u64 uid;
97 	uuid_t *uuid;
98 	u16 vendor;
99 	u16 device;
100 	const char *vendor_name;
101 	const char *device_name;
102 	unsigned int link_speed;
103 	unsigned int link_width;
104 	unsigned int generation;
105 	int cap_plug_events;
106 	int cap_lc;
107 	bool is_unplugged;
108 	u8 *drom;
109 	struct tb_switch_nvm *nvm;
110 	bool no_nvm_upgrade;
111 	bool safe_mode;
112 	bool boot;
113 	bool rpm;
114 	unsigned int authorized;
115 	enum tb_security_level security_level;
116 	u8 *key;
117 	u8 connection_id;
118 	u8 connection_key;
119 	u8 link;
120 	u8 depth;
121 	struct completion rpm_complete;
122 };
123 
124 /**
125  * struct tb_port - a thunderbolt port, part of a tb_switch
126  * @config: Cached port configuration read from registers
127  * @sw: Switch the port belongs to
128  * @remote: Remote port (%NULL if not connected)
129  * @xdomain: Remote host (%NULL if not connected)
130  * @cap_phy: Offset, zero if not found
131  * @cap_adap: Offset of the adapter specific capability (%0 if not present)
132  * @port: Port number on switch
133  * @disabled: Disabled by eeprom
134  * @bonded: true if the port is bonded (two lanes combined as one)
135  * @dual_link_port: If the switch is connected using two ports, points
136  *		    to the other port.
137  * @link_nr: Is this primary or secondary port on the dual_link.
138  * @in_hopids: Currently allocated input HopIDs
139  * @out_hopids: Currently allocated output HopIDs
140  * @list: Used to link ports to DP resources list
141  */
142 struct tb_port {
143 	struct tb_regs_port_header config;
144 	struct tb_switch *sw;
145 	struct tb_port *remote;
146 	struct tb_xdomain *xdomain;
147 	int cap_phy;
148 	int cap_adap;
149 	u8 port;
150 	bool disabled;
151 	bool bonded;
152 	struct tb_port *dual_link_port;
153 	u8 link_nr:1;
154 	struct ida in_hopids;
155 	struct ida out_hopids;
156 	struct list_head list;
157 };
158 
159 /**
160  * struct tb_path_hop - routing information for a tb_path
161  * @in_port: Ingress port of a switch
162  * @out_port: Egress port of a switch where the packet is routed out
163  *	      (must be on the same switch than @in_port)
164  * @in_hop_index: HopID where the path configuration entry is placed in
165  *		  the path config space of @in_port.
166  * @in_counter_index: Used counter index (not used in the driver
167  *		      currently, %-1 to disable)
168  * @next_hop_index: HopID of the packet when it is routed out from @out_port
169  * @initial_credits: Number of initial flow control credits allocated for
170  *		     the path
171  *
172  * Hop configuration is always done on the IN port of a switch.
173  * in_port and out_port have to be on the same switch. Packets arriving on
174  * in_port with "hop" = in_hop_index will get routed to through out_port. The
175  * next hop to take (on out_port->remote) is determined by
176  * next_hop_index. When routing packet to another switch (out->remote is
177  * set) the @next_hop_index must match the @in_hop_index of that next
178  * hop to make routing possible.
179  *
180  * in_counter_index is the index of a counter (in TB_CFG_COUNTERS) on the in
181  * port.
182  */
183 struct tb_path_hop {
184 	struct tb_port *in_port;
185 	struct tb_port *out_port;
186 	int in_hop_index;
187 	int in_counter_index;
188 	int next_hop_index;
189 	unsigned int initial_credits;
190 };
191 
192 /**
193  * enum tb_path_port - path options mask
194  * @TB_PATH_NONE: Do not activate on any hop on path
195  * @TB_PATH_SOURCE: Activate on the first hop (out of src)
196  * @TB_PATH_INTERNAL: Activate on the intermediate hops (not the first/last)
197  * @TB_PATH_DESTINATION: Activate on the last hop (into dst)
198  * @TB_PATH_ALL: Activate on all hops on the path
199  */
200 enum tb_path_port {
201 	TB_PATH_NONE = 0,
202 	TB_PATH_SOURCE = 1,
203 	TB_PATH_INTERNAL = 2,
204 	TB_PATH_DESTINATION = 4,
205 	TB_PATH_ALL = 7,
206 };
207 
208 /**
209  * struct tb_path - a unidirectional path between two ports
210  * @tb: Pointer to the domain structure
211  * @name: Name of the path (used for debugging)
212  * @nfc_credits: Number of non flow controlled credits allocated for the path
213  * @ingress_shared_buffer: Shared buffering used for ingress ports on the path
214  * @egress_shared_buffer: Shared buffering used for egress ports on the path
215  * @ingress_fc_enable: Flow control for ingress ports on the path
216  * @egress_fc_enable: Flow control for egress ports on the path
217  * @priority: Priority group if the path
218  * @weight: Weight of the path inside the priority group
219  * @drop_packages: Drop packages from queue tail or head
220  * @activated: Is the path active
221  * @clear_fc: Clear all flow control from the path config space entries
222  *	      when deactivating this path
223  * @hops: Path hops
224  * @path_length: How many hops the path uses
225  *
226  * A path consists of a number of hops (see &struct tb_path_hop). To
227  * establish a PCIe tunnel two paths have to be created between the two
228  * PCIe ports.
229  */
230 struct tb_path {
231 	struct tb *tb;
232 	const char *name;
233 	int nfc_credits;
234 	enum tb_path_port ingress_shared_buffer;
235 	enum tb_path_port egress_shared_buffer;
236 	enum tb_path_port ingress_fc_enable;
237 	enum tb_path_port egress_fc_enable;
238 
239 	unsigned int priority:3;
240 	int weight:4;
241 	bool drop_packages;
242 	bool activated;
243 	bool clear_fc;
244 	struct tb_path_hop *hops;
245 	int path_length;
246 };
247 
248 /* HopIDs 0-7 are reserved by the Thunderbolt protocol */
249 #define TB_PATH_MIN_HOPID	8
250 #define TB_PATH_MAX_HOPS	7
251 
252 /**
253  * struct tb_cm_ops - Connection manager specific operations vector
254  * @driver_ready: Called right after control channel is started. Used by
255  *		  ICM to send driver ready message to the firmware.
256  * @start: Starts the domain
257  * @stop: Stops the domain
258  * @suspend_noirq: Connection manager specific suspend_noirq
259  * @resume_noirq: Connection manager specific resume_noirq
260  * @suspend: Connection manager specific suspend
261  * @complete: Connection manager specific complete
262  * @runtime_suspend: Connection manager specific runtime_suspend
263  * @runtime_resume: Connection manager specific runtime_resume
264  * @runtime_suspend_switch: Runtime suspend a switch
265  * @runtime_resume_switch: Runtime resume a switch
266  * @handle_event: Handle thunderbolt event
267  * @get_boot_acl: Get boot ACL list
268  * @set_boot_acl: Set boot ACL list
269  * @approve_switch: Approve switch
270  * @add_switch_key: Add key to switch
271  * @challenge_switch_key: Challenge switch using key
272  * @disconnect_pcie_paths: Disconnects PCIe paths before NVM update
273  * @approve_xdomain_paths: Approve (establish) XDomain DMA paths
274  * @disconnect_xdomain_paths: Disconnect XDomain DMA paths
275  */
276 struct tb_cm_ops {
277 	int (*driver_ready)(struct tb *tb);
278 	int (*start)(struct tb *tb);
279 	void (*stop)(struct tb *tb);
280 	int (*suspend_noirq)(struct tb *tb);
281 	int (*resume_noirq)(struct tb *tb);
282 	int (*suspend)(struct tb *tb);
283 	void (*complete)(struct tb *tb);
284 	int (*runtime_suspend)(struct tb *tb);
285 	int (*runtime_resume)(struct tb *tb);
286 	int (*runtime_suspend_switch)(struct tb_switch *sw);
287 	int (*runtime_resume_switch)(struct tb_switch *sw);
288 	void (*handle_event)(struct tb *tb, enum tb_cfg_pkg_type,
289 			     const void *buf, size_t size);
290 	int (*get_boot_acl)(struct tb *tb, uuid_t *uuids, size_t nuuids);
291 	int (*set_boot_acl)(struct tb *tb, const uuid_t *uuids, size_t nuuids);
292 	int (*approve_switch)(struct tb *tb, struct tb_switch *sw);
293 	int (*add_switch_key)(struct tb *tb, struct tb_switch *sw);
294 	int (*challenge_switch_key)(struct tb *tb, struct tb_switch *sw,
295 				    const u8 *challenge, u8 *response);
296 	int (*disconnect_pcie_paths)(struct tb *tb);
297 	int (*approve_xdomain_paths)(struct tb *tb, struct tb_xdomain *xd);
298 	int (*disconnect_xdomain_paths)(struct tb *tb, struct tb_xdomain *xd);
299 };
300 
301 static inline void *tb_priv(struct tb *tb)
302 {
303 	return (void *)tb->privdata;
304 }
305 
306 #define TB_AUTOSUSPEND_DELAY		15000 /* ms */
307 
308 /* helper functions & macros */
309 
310 /**
311  * tb_upstream_port() - return the upstream port of a switch
312  *
313  * Every switch has an upstream port (for the root switch it is the NHI).
314  *
315  * During switch alloc/init tb_upstream_port()->remote may be NULL, even for
316  * non root switches (on the NHI port remote is always NULL).
317  *
318  * Return: Returns the upstream port of the switch.
319  */
320 static inline struct tb_port *tb_upstream_port(struct tb_switch *sw)
321 {
322 	return &sw->ports[sw->config.upstream_port_number];
323 }
324 
325 /**
326  * tb_is_upstream_port() - Is the port upstream facing
327  * @port: Port to check
328  *
329  * Returns true if @port is upstream facing port. In case of dual link
330  * ports both return true.
331  */
332 static inline bool tb_is_upstream_port(const struct tb_port *port)
333 {
334 	const struct tb_port *upstream_port = tb_upstream_port(port->sw);
335 	return port == upstream_port || port->dual_link_port == upstream_port;
336 }
337 
338 static inline u64 tb_route(const struct tb_switch *sw)
339 {
340 	return ((u64) sw->config.route_hi) << 32 | sw->config.route_lo;
341 }
342 
343 static inline struct tb_port *tb_port_at(u64 route, struct tb_switch *sw)
344 {
345 	u8 port;
346 
347 	port = route >> (sw->config.depth * 8);
348 	if (WARN_ON(port > sw->config.max_port_number))
349 		return NULL;
350 	return &sw->ports[port];
351 }
352 
353 /**
354  * tb_port_has_remote() - Does the port have switch connected downstream
355  * @port: Port to check
356  *
357  * Returns true only when the port is primary port and has remote set.
358  */
359 static inline bool tb_port_has_remote(const struct tb_port *port)
360 {
361 	if (tb_is_upstream_port(port))
362 		return false;
363 	if (!port->remote)
364 		return false;
365 	if (port->dual_link_port && port->link_nr)
366 		return false;
367 
368 	return true;
369 }
370 
371 static inline bool tb_port_is_null(const struct tb_port *port)
372 {
373 	return port && port->port && port->config.type == TB_TYPE_PORT;
374 }
375 
376 static inline bool tb_port_is_pcie_down(const struct tb_port *port)
377 {
378 	return port && port->config.type == TB_TYPE_PCIE_DOWN;
379 }
380 
381 static inline bool tb_port_is_pcie_up(const struct tb_port *port)
382 {
383 	return port && port->config.type == TB_TYPE_PCIE_UP;
384 }
385 
386 static inline bool tb_port_is_dpin(const struct tb_port *port)
387 {
388 	return port && port->config.type == TB_TYPE_DP_HDMI_IN;
389 }
390 
391 static inline bool tb_port_is_dpout(const struct tb_port *port)
392 {
393 	return port && port->config.type == TB_TYPE_DP_HDMI_OUT;
394 }
395 
396 static inline int tb_sw_read(struct tb_switch *sw, void *buffer,
397 			     enum tb_cfg_space space, u32 offset, u32 length)
398 {
399 	if (sw->is_unplugged)
400 		return -ENODEV;
401 	return tb_cfg_read(sw->tb->ctl,
402 			   buffer,
403 			   tb_route(sw),
404 			   0,
405 			   space,
406 			   offset,
407 			   length);
408 }
409 
410 static inline int tb_sw_write(struct tb_switch *sw, const void *buffer,
411 			      enum tb_cfg_space space, u32 offset, u32 length)
412 {
413 	if (sw->is_unplugged)
414 		return -ENODEV;
415 	return tb_cfg_write(sw->tb->ctl,
416 			    buffer,
417 			    tb_route(sw),
418 			    0,
419 			    space,
420 			    offset,
421 			    length);
422 }
423 
424 static inline int tb_port_read(struct tb_port *port, void *buffer,
425 			       enum tb_cfg_space space, u32 offset, u32 length)
426 {
427 	if (port->sw->is_unplugged)
428 		return -ENODEV;
429 	return tb_cfg_read(port->sw->tb->ctl,
430 			   buffer,
431 			   tb_route(port->sw),
432 			   port->port,
433 			   space,
434 			   offset,
435 			   length);
436 }
437 
438 static inline int tb_port_write(struct tb_port *port, const void *buffer,
439 				enum tb_cfg_space space, u32 offset, u32 length)
440 {
441 	if (port->sw->is_unplugged)
442 		return -ENODEV;
443 	return tb_cfg_write(port->sw->tb->ctl,
444 			    buffer,
445 			    tb_route(port->sw),
446 			    port->port,
447 			    space,
448 			    offset,
449 			    length);
450 }
451 
452 #define tb_err(tb, fmt, arg...) dev_err(&(tb)->nhi->pdev->dev, fmt, ## arg)
453 #define tb_WARN(tb, fmt, arg...) dev_WARN(&(tb)->nhi->pdev->dev, fmt, ## arg)
454 #define tb_warn(tb, fmt, arg...) dev_warn(&(tb)->nhi->pdev->dev, fmt, ## arg)
455 #define tb_info(tb, fmt, arg...) dev_info(&(tb)->nhi->pdev->dev, fmt, ## arg)
456 #define tb_dbg(tb, fmt, arg...) dev_dbg(&(tb)->nhi->pdev->dev, fmt, ## arg)
457 
458 #define __TB_SW_PRINT(level, sw, fmt, arg...)           \
459 	do {                                            \
460 		const struct tb_switch *__sw = (sw);    \
461 		level(__sw->tb, "%llx: " fmt,           \
462 		      tb_route(__sw), ## arg);          \
463 	} while (0)
464 #define tb_sw_WARN(sw, fmt, arg...) __TB_SW_PRINT(tb_WARN, sw, fmt, ##arg)
465 #define tb_sw_warn(sw, fmt, arg...) __TB_SW_PRINT(tb_warn, sw, fmt, ##arg)
466 #define tb_sw_info(sw, fmt, arg...) __TB_SW_PRINT(tb_info, sw, fmt, ##arg)
467 #define tb_sw_dbg(sw, fmt, arg...) __TB_SW_PRINT(tb_dbg, sw, fmt, ##arg)
468 
469 #define __TB_PORT_PRINT(level, _port, fmt, arg...)                      \
470 	do {                                                            \
471 		const struct tb_port *__port = (_port);                 \
472 		level(__port->sw->tb, "%llx:%x: " fmt,                  \
473 		      tb_route(__port->sw), __port->port, ## arg);      \
474 	} while (0)
475 #define tb_port_WARN(port, fmt, arg...) \
476 	__TB_PORT_PRINT(tb_WARN, port, fmt, ##arg)
477 #define tb_port_warn(port, fmt, arg...) \
478 	__TB_PORT_PRINT(tb_warn, port, fmt, ##arg)
479 #define tb_port_info(port, fmt, arg...) \
480 	__TB_PORT_PRINT(tb_info, port, fmt, ##arg)
481 #define tb_port_dbg(port, fmt, arg...) \
482 	__TB_PORT_PRINT(tb_dbg, port, fmt, ##arg)
483 
484 struct tb *icm_probe(struct tb_nhi *nhi);
485 struct tb *tb_probe(struct tb_nhi *nhi);
486 
487 extern struct device_type tb_domain_type;
488 extern struct device_type tb_switch_type;
489 
490 int tb_domain_init(void);
491 void tb_domain_exit(void);
492 void tb_switch_exit(void);
493 int tb_xdomain_init(void);
494 void tb_xdomain_exit(void);
495 
496 struct tb *tb_domain_alloc(struct tb_nhi *nhi, size_t privsize);
497 int tb_domain_add(struct tb *tb);
498 void tb_domain_remove(struct tb *tb);
499 int tb_domain_suspend_noirq(struct tb *tb);
500 int tb_domain_resume_noirq(struct tb *tb);
501 int tb_domain_suspend(struct tb *tb);
502 void tb_domain_complete(struct tb *tb);
503 int tb_domain_runtime_suspend(struct tb *tb);
504 int tb_domain_runtime_resume(struct tb *tb);
505 int tb_domain_approve_switch(struct tb *tb, struct tb_switch *sw);
506 int tb_domain_approve_switch_key(struct tb *tb, struct tb_switch *sw);
507 int tb_domain_challenge_switch_key(struct tb *tb, struct tb_switch *sw);
508 int tb_domain_disconnect_pcie_paths(struct tb *tb);
509 int tb_domain_approve_xdomain_paths(struct tb *tb, struct tb_xdomain *xd);
510 int tb_domain_disconnect_xdomain_paths(struct tb *tb, struct tb_xdomain *xd);
511 int tb_domain_disconnect_all_paths(struct tb *tb);
512 
513 static inline struct tb *tb_domain_get(struct tb *tb)
514 {
515 	if (tb)
516 		get_device(&tb->dev);
517 	return tb;
518 }
519 
520 static inline void tb_domain_put(struct tb *tb)
521 {
522 	put_device(&tb->dev);
523 }
524 
525 struct tb_switch *tb_switch_alloc(struct tb *tb, struct device *parent,
526 				  u64 route);
527 struct tb_switch *tb_switch_alloc_safe_mode(struct tb *tb,
528 			struct device *parent, u64 route);
529 int tb_switch_configure(struct tb_switch *sw);
530 int tb_switch_add(struct tb_switch *sw);
531 void tb_switch_remove(struct tb_switch *sw);
532 void tb_switch_suspend(struct tb_switch *sw);
533 int tb_switch_resume(struct tb_switch *sw);
534 int tb_switch_reset(struct tb *tb, u64 route);
535 void tb_sw_set_unplugged(struct tb_switch *sw);
536 struct tb_switch *tb_switch_find_by_link_depth(struct tb *tb, u8 link,
537 					       u8 depth);
538 struct tb_switch *tb_switch_find_by_uuid(struct tb *tb, const uuid_t *uuid);
539 struct tb_switch *tb_switch_find_by_route(struct tb *tb, u64 route);
540 
541 /**
542  * tb_switch_for_each_port() - Iterate over each switch port
543  * @sw: Switch whose ports to iterate
544  * @p: Port used as iterator
545  *
546  * Iterates over each switch port skipping the control port (port %0).
547  */
548 #define tb_switch_for_each_port(sw, p)					\
549 	for ((p) = &(sw)->ports[1];					\
550 	     (p) <= &(sw)->ports[(sw)->config.max_port_number]; (p)++)
551 
552 static inline struct tb_switch *tb_switch_get(struct tb_switch *sw)
553 {
554 	if (sw)
555 		get_device(&sw->dev);
556 	return sw;
557 }
558 
559 static inline void tb_switch_put(struct tb_switch *sw)
560 {
561 	put_device(&sw->dev);
562 }
563 
564 static inline bool tb_is_switch(const struct device *dev)
565 {
566 	return dev->type == &tb_switch_type;
567 }
568 
569 static inline struct tb_switch *tb_to_switch(struct device *dev)
570 {
571 	if (tb_is_switch(dev))
572 		return container_of(dev, struct tb_switch, dev);
573 	return NULL;
574 }
575 
576 static inline struct tb_switch *tb_switch_parent(struct tb_switch *sw)
577 {
578 	return tb_to_switch(sw->dev.parent);
579 }
580 
581 static inline bool tb_switch_is_light_ridge(const struct tb_switch *sw)
582 {
583 	return sw->config.device_id == PCI_DEVICE_ID_INTEL_LIGHT_RIDGE;
584 }
585 
586 static inline bool tb_switch_is_eagle_ridge(const struct tb_switch *sw)
587 {
588 	return sw->config.device_id == PCI_DEVICE_ID_INTEL_EAGLE_RIDGE;
589 }
590 
591 static inline bool tb_switch_is_cactus_ridge(const struct tb_switch *sw)
592 {
593 	switch (sw->config.device_id) {
594 	case PCI_DEVICE_ID_INTEL_CACTUS_RIDGE_2C:
595 	case PCI_DEVICE_ID_INTEL_CACTUS_RIDGE_4C:
596 		return true;
597 	default:
598 		return false;
599 	}
600 }
601 
602 static inline bool tb_switch_is_falcon_ridge(const struct tb_switch *sw)
603 {
604 	switch (sw->config.device_id) {
605 	case PCI_DEVICE_ID_INTEL_FALCON_RIDGE_2C_BRIDGE:
606 	case PCI_DEVICE_ID_INTEL_FALCON_RIDGE_4C_BRIDGE:
607 		return true;
608 	default:
609 		return false;
610 	}
611 }
612 
613 static inline bool tb_switch_is_alpine_ridge(const struct tb_switch *sw)
614 {
615 	switch (sw->config.device_id) {
616 	case PCI_DEVICE_ID_INTEL_ALPINE_RIDGE_2C_BRIDGE:
617 	case PCI_DEVICE_ID_INTEL_ALPINE_RIDGE_LP_BRIDGE:
618 	case PCI_DEVICE_ID_INTEL_ALPINE_RIDGE_C_4C_BRIDGE:
619 	case PCI_DEVICE_ID_INTEL_ALPINE_RIDGE_C_2C_BRIDGE:
620 		return true;
621 	default:
622 		return false;
623 	}
624 }
625 
626 static inline bool tb_switch_is_titan_ridge(const struct tb_switch *sw)
627 {
628 	switch (sw->config.device_id) {
629 	case PCI_DEVICE_ID_INTEL_TITAN_RIDGE_2C_BRIDGE:
630 	case PCI_DEVICE_ID_INTEL_TITAN_RIDGE_4C_BRIDGE:
631 	case PCI_DEVICE_ID_INTEL_TITAN_RIDGE_DD_BRIDGE:
632 		return true;
633 	default:
634 		return false;
635 	}
636 }
637 
638 /**
639  * tb_switch_is_icm() - Is the switch handled by ICM firmware
640  * @sw: Switch to check
641  *
642  * In case there is a need to differentiate whether ICM firmware or SW CM
643  * is handling @sw this function can be called. It is valid to call this
644  * after tb_switch_alloc() and tb_switch_configure() has been called
645  * (latter only for SW CM case).
646  */
647 static inline bool tb_switch_is_icm(const struct tb_switch *sw)
648 {
649 	return !sw->config.enabled;
650 }
651 
652 int tb_switch_lane_bonding_enable(struct tb_switch *sw);
653 void tb_switch_lane_bonding_disable(struct tb_switch *sw);
654 
655 bool tb_switch_query_dp_resource(struct tb_switch *sw, struct tb_port *in);
656 int tb_switch_alloc_dp_resource(struct tb_switch *sw, struct tb_port *in);
657 void tb_switch_dealloc_dp_resource(struct tb_switch *sw, struct tb_port *in);
658 
659 int tb_wait_for_port(struct tb_port *port, bool wait_if_unplugged);
660 int tb_port_add_nfc_credits(struct tb_port *port, int credits);
661 int tb_port_set_initial_credits(struct tb_port *port, u32 credits);
662 int tb_port_clear_counter(struct tb_port *port, int counter);
663 int tb_port_alloc_in_hopid(struct tb_port *port, int hopid, int max_hopid);
664 void tb_port_release_in_hopid(struct tb_port *port, int hopid);
665 int tb_port_alloc_out_hopid(struct tb_port *port, int hopid, int max_hopid);
666 void tb_port_release_out_hopid(struct tb_port *port, int hopid);
667 struct tb_port *tb_next_port_on_path(struct tb_port *start, struct tb_port *end,
668 				     struct tb_port *prev);
669 
670 int tb_switch_find_vse_cap(struct tb_switch *sw, enum tb_switch_vse_cap vsec);
671 int tb_port_find_cap(struct tb_port *port, enum tb_port_cap cap);
672 bool tb_port_is_enabled(struct tb_port *port);
673 
674 bool tb_pci_port_is_enabled(struct tb_port *port);
675 int tb_pci_port_enable(struct tb_port *port, bool enable);
676 
677 int tb_dp_port_hpd_is_active(struct tb_port *port);
678 int tb_dp_port_hpd_clear(struct tb_port *port);
679 int tb_dp_port_set_hops(struct tb_port *port, unsigned int video,
680 			unsigned int aux_tx, unsigned int aux_rx);
681 bool tb_dp_port_is_enabled(struct tb_port *port);
682 int tb_dp_port_enable(struct tb_port *port, bool enable);
683 
684 struct tb_path *tb_path_discover(struct tb_port *src, int src_hopid,
685 				 struct tb_port *dst, int dst_hopid,
686 				 struct tb_port **last, const char *name);
687 struct tb_path *tb_path_alloc(struct tb *tb, struct tb_port *src, int src_hopid,
688 			      struct tb_port *dst, int dst_hopid, int link_nr,
689 			      const char *name);
690 void tb_path_free(struct tb_path *path);
691 int tb_path_activate(struct tb_path *path);
692 void tb_path_deactivate(struct tb_path *path);
693 bool tb_path_is_invalid(struct tb_path *path);
694 bool tb_path_switch_on_path(const struct tb_path *path,
695 			    const struct tb_switch *sw);
696 
697 int tb_drom_read(struct tb_switch *sw);
698 int tb_drom_read_uid_only(struct tb_switch *sw, u64 *uid);
699 
700 int tb_lc_read_uuid(struct tb_switch *sw, u32 *uuid);
701 int tb_lc_configure_link(struct tb_switch *sw);
702 void tb_lc_unconfigure_link(struct tb_switch *sw);
703 int tb_lc_set_sleep(struct tb_switch *sw);
704 bool tb_lc_lane_bonding_possible(struct tb_switch *sw);
705 bool tb_lc_dp_sink_query(struct tb_switch *sw, struct tb_port *in);
706 int tb_lc_dp_sink_alloc(struct tb_switch *sw, struct tb_port *in);
707 int tb_lc_dp_sink_dealloc(struct tb_switch *sw, struct tb_port *in);
708 
709 static inline int tb_route_length(u64 route)
710 {
711 	return (fls64(route) + TB_ROUTE_SHIFT - 1) / TB_ROUTE_SHIFT;
712 }
713 
714 /**
715  * tb_downstream_route() - get route to downstream switch
716  *
717  * Port must not be the upstream port (otherwise a loop is created).
718  *
719  * Return: Returns a route to the switch behind @port.
720  */
721 static inline u64 tb_downstream_route(struct tb_port *port)
722 {
723 	return tb_route(port->sw)
724 	       | ((u64) port->port << (port->sw->config.depth * 8));
725 }
726 
727 bool tb_xdomain_handle_request(struct tb *tb, enum tb_cfg_pkg_type type,
728 			       const void *buf, size_t size);
729 struct tb_xdomain *tb_xdomain_alloc(struct tb *tb, struct device *parent,
730 				    u64 route, const uuid_t *local_uuid,
731 				    const uuid_t *remote_uuid);
732 void tb_xdomain_add(struct tb_xdomain *xd);
733 void tb_xdomain_remove(struct tb_xdomain *xd);
734 struct tb_xdomain *tb_xdomain_find_by_link_depth(struct tb *tb, u8 link,
735 						 u8 depth);
736 
737 #endif
738