2 * Internal Thunderbolt Connection Manager. This is a firmware running on
3 * the Thunderbolt host controller performing most of the low-level
6 * Copyright (C) 2017, Intel Corporation
7 * Authors: Michael Jamet <michael.jamet@intel.com>
8 * Mika Westerberg <mika.westerberg@linux.intel.com>
10 * This program is free software; you can redistribute it and/or modify
11 * it under the terms of the GNU General Public License version 2 as
12 * published by the Free Software Foundation.
15 #include <linux/delay.h>
16 #include <linux/mutex.h>
17 #include <linux/pci.h>
18 #include <linux/platform_data/x86/apple.h>
19 #include <linux/sizes.h>
20 #include <linux/slab.h>
21 #include <linux/workqueue.h>
27 #define PCIE2CIO_CMD 0x30
28 #define PCIE2CIO_CMD_TIMEOUT BIT(31)
29 #define PCIE2CIO_CMD_START BIT(30)
30 #define PCIE2CIO_CMD_WRITE BIT(21)
31 #define PCIE2CIO_CMD_CS_MASK GENMASK(20, 19)
32 #define PCIE2CIO_CMD_CS_SHIFT 19
33 #define PCIE2CIO_CMD_PORT_MASK GENMASK(18, 13)
34 #define PCIE2CIO_CMD_PORT_SHIFT 13
36 #define PCIE2CIO_WRDATA 0x34
37 #define PCIE2CIO_RDDATA 0x38
39 #define PHY_PORT_CS1 0x37
40 #define PHY_PORT_CS1_LINK_DISABLE BIT(14)
41 #define PHY_PORT_CS1_LINK_STATE_MASK GENMASK(29, 26)
42 #define PHY_PORT_CS1_LINK_STATE_SHIFT 26
44 #define ICM_TIMEOUT 5000 /* ms */
45 #define ICM_MAX_LINK 4
46 #define ICM_MAX_DEPTH 6
49 * struct icm - Internal connection manager private data
50 * @request_lock: Makes sure only one message is send to ICM at time
51 * @rescan_work: Work used to rescan the surviving switches after resume
52 * @upstream_port: Pointer to the PCIe upstream port this host
53 * controller is connected. This is only set for systems
54 * where ICM needs to be started manually
55 * @vnd_cap: Vendor defined capability where PCIe2CIO mailbox resides
56 * (only set when @upstream_port is not %NULL)
57 * @safe_mode: ICM is in safe mode
58 * @is_supported: Checks if we can support ICM on this controller
59 * @get_mode: Read and return the ICM firmware mode (optional)
60 * @get_route: Find a route string for given switch
61 * @device_connected: Handle device connected ICM message
62 * @device_disconnected: Handle device disconnected ICM message
65 struct mutex request_lock
;
66 struct delayed_work rescan_work
;
67 struct pci_dev
*upstream_port
;
70 bool (*is_supported
)(struct tb
*tb
);
71 int (*get_mode
)(struct tb
*tb
);
72 int (*get_route
)(struct tb
*tb
, u8 link
, u8 depth
, u64
*route
);
73 void (*device_connected
)(struct tb
*tb
,
74 const struct icm_pkg_header
*hdr
);
75 void (*device_disconnected
)(struct tb
*tb
,
76 const struct icm_pkg_header
*hdr
);
79 struct icm_notification
{
80 struct work_struct work
;
81 struct icm_pkg_header
*pkg
;
85 static inline struct tb
*icm_to_tb(struct icm
*icm
)
87 return ((void *)icm
- sizeof(struct tb
));
90 static inline u8
phy_port_from_route(u64 route
, u8 depth
)
92 return tb_switch_phy_port_from_link(route
>> ((depth
- 1) * 8));
95 static inline u8
dual_link_from_link(u8 link
)
97 return link
? ((link
- 1) ^ 0x01) + 1 : 0;
100 static inline u64
get_route(u32 route_hi
, u32 route_lo
)
102 return (u64
)route_hi
<< 32 | route_lo
;
105 static bool icm_match(const struct tb_cfg_request
*req
,
106 const struct ctl_pkg
*pkg
)
108 const struct icm_pkg_header
*res_hdr
= pkg
->buffer
;
109 const struct icm_pkg_header
*req_hdr
= req
->request
;
111 if (pkg
->frame
.eof
!= req
->response_type
)
113 if (res_hdr
->code
!= req_hdr
->code
)
119 static bool icm_copy(struct tb_cfg_request
*req
, const struct ctl_pkg
*pkg
)
121 const struct icm_pkg_header
*hdr
= pkg
->buffer
;
123 if (hdr
->packet_id
< req
->npackets
) {
124 size_t offset
= hdr
->packet_id
* req
->response_size
;
126 memcpy(req
->response
+ offset
, pkg
->buffer
, req
->response_size
);
129 return hdr
->packet_id
== hdr
->total_packets
- 1;
132 static int icm_request(struct tb
*tb
, const void *request
, size_t request_size
,
133 void *response
, size_t response_size
, size_t npackets
,
134 unsigned int timeout_msec
)
136 struct icm
*icm
= tb_priv(tb
);
140 struct tb_cfg_request
*req
;
141 struct tb_cfg_result res
;
143 req
= tb_cfg_request_alloc();
147 req
->match
= icm_match
;
148 req
->copy
= icm_copy
;
149 req
->request
= request
;
150 req
->request_size
= request_size
;
151 req
->request_type
= TB_CFG_PKG_ICM_CMD
;
152 req
->response
= response
;
153 req
->npackets
= npackets
;
154 req
->response_size
= response_size
;
155 req
->response_type
= TB_CFG_PKG_ICM_RESP
;
157 mutex_lock(&icm
->request_lock
);
158 res
= tb_cfg_request_sync(tb
->ctl
, req
, timeout_msec
);
159 mutex_unlock(&icm
->request_lock
);
161 tb_cfg_request_put(req
);
163 if (res
.err
!= -ETIMEDOUT
)
164 return res
.err
== 1 ? -EIO
: res
.err
;
166 usleep_range(20, 50);
172 static bool icm_fr_is_supported(struct tb
*tb
)
174 return !x86_apple_machine
;
177 static inline int icm_fr_get_switch_index(u32 port
)
181 if ((port
& ICM_PORT_TYPE_MASK
) != TB_TYPE_PORT
)
184 index
= port
>> ICM_PORT_INDEX_SHIFT
;
185 return index
!= 0xff ? index
: 0;
188 static int icm_fr_get_route(struct tb
*tb
, u8 link
, u8 depth
, u64
*route
)
190 struct icm_fr_pkg_get_topology_response
*switches
, *sw
;
191 struct icm_fr_pkg_get_topology request
= {
192 .hdr
= { .code
= ICM_GET_TOPOLOGY
},
194 size_t npackets
= ICM_GET_TOPOLOGY_PACKETS
;
198 switches
= kcalloc(npackets
, sizeof(*switches
), GFP_KERNEL
);
202 ret
= icm_request(tb
, &request
, sizeof(request
), switches
,
203 sizeof(*switches
), npackets
, ICM_TIMEOUT
);
208 index
= icm_fr_get_switch_index(sw
->ports
[link
]);
214 sw
= &switches
[index
];
215 for (i
= 1; i
< depth
; i
++) {
218 if (!(sw
->first_data
& ICM_SWITCH_USED
)) {
223 for (j
= 0; j
< ARRAY_SIZE(sw
->ports
); j
++) {
224 index
= icm_fr_get_switch_index(sw
->ports
[j
]);
225 if (index
> sw
->switch_index
) {
226 sw
= &switches
[index
];
232 *route
= get_route(sw
->route_hi
, sw
->route_lo
);
239 static int icm_fr_approve_switch(struct tb
*tb
, struct tb_switch
*sw
)
241 struct icm_fr_pkg_approve_device request
;
242 struct icm_fr_pkg_approve_device reply
;
245 memset(&request
, 0, sizeof(request
));
246 memcpy(&request
.ep_uuid
, sw
->uuid
, sizeof(request
.ep_uuid
));
247 request
.hdr
.code
= ICM_APPROVE_DEVICE
;
248 request
.connection_id
= sw
->connection_id
;
249 request
.connection_key
= sw
->connection_key
;
251 memset(&reply
, 0, sizeof(reply
));
252 /* Use larger timeout as establishing tunnels can take some time */
253 ret
= icm_request(tb
, &request
, sizeof(request
), &reply
, sizeof(reply
),
258 if (reply
.hdr
.flags
& ICM_FLAGS_ERROR
) {
259 tb_warn(tb
, "PCIe tunnel creation failed\n");
266 static int icm_fr_add_switch_key(struct tb
*tb
, struct tb_switch
*sw
)
268 struct icm_fr_pkg_add_device_key request
;
269 struct icm_fr_pkg_add_device_key_response reply
;
272 memset(&request
, 0, sizeof(request
));
273 memcpy(&request
.ep_uuid
, sw
->uuid
, sizeof(request
.ep_uuid
));
274 request
.hdr
.code
= ICM_ADD_DEVICE_KEY
;
275 request
.connection_id
= sw
->connection_id
;
276 request
.connection_key
= sw
->connection_key
;
277 memcpy(request
.key
, sw
->key
, TB_SWITCH_KEY_SIZE
);
279 memset(&reply
, 0, sizeof(reply
));
280 ret
= icm_request(tb
, &request
, sizeof(request
), &reply
, sizeof(reply
),
285 if (reply
.hdr
.flags
& ICM_FLAGS_ERROR
) {
286 tb_warn(tb
, "Adding key to switch failed\n");
293 static int icm_fr_challenge_switch_key(struct tb
*tb
, struct tb_switch
*sw
,
294 const u8
*challenge
, u8
*response
)
296 struct icm_fr_pkg_challenge_device request
;
297 struct icm_fr_pkg_challenge_device_response reply
;
300 memset(&request
, 0, sizeof(request
));
301 memcpy(&request
.ep_uuid
, sw
->uuid
, sizeof(request
.ep_uuid
));
302 request
.hdr
.code
= ICM_CHALLENGE_DEVICE
;
303 request
.connection_id
= sw
->connection_id
;
304 request
.connection_key
= sw
->connection_key
;
305 memcpy(request
.challenge
, challenge
, TB_SWITCH_KEY_SIZE
);
307 memset(&reply
, 0, sizeof(reply
));
308 ret
= icm_request(tb
, &request
, sizeof(request
), &reply
, sizeof(reply
),
313 if (reply
.hdr
.flags
& ICM_FLAGS_ERROR
)
314 return -EKEYREJECTED
;
315 if (reply
.hdr
.flags
& ICM_FLAGS_NO_KEY
)
318 memcpy(response
, reply
.response
, TB_SWITCH_KEY_SIZE
);
323 static void remove_switch(struct tb_switch
*sw
)
325 struct tb_switch
*parent_sw
;
327 parent_sw
= tb_to_switch(sw
->dev
.parent
);
328 tb_port_at(tb_route(sw
), parent_sw
)->remote
= NULL
;
329 tb_switch_remove(sw
);
333 icm_fr_device_connected(struct tb
*tb
, const struct icm_pkg_header
*hdr
)
335 const struct icm_fr_event_device_connected
*pkg
=
336 (const struct icm_fr_event_device_connected
*)hdr
;
337 struct tb_switch
*sw
, *parent_sw
;
338 struct icm
*icm
= tb_priv(tb
);
339 bool authorized
= false;
344 link
= pkg
->link_info
& ICM_LINK_INFO_LINK_MASK
;
345 depth
= (pkg
->link_info
& ICM_LINK_INFO_DEPTH_MASK
) >>
346 ICM_LINK_INFO_DEPTH_SHIFT
;
347 authorized
= pkg
->link_info
& ICM_LINK_INFO_APPROVED
;
349 ret
= icm
->get_route(tb
, link
, depth
, &route
);
351 tb_err(tb
, "failed to find route string for switch at %u.%u\n",
356 sw
= tb_switch_find_by_uuid(tb
, &pkg
->ep_uuid
);
358 u8 phy_port
, sw_phy_port
;
360 parent_sw
= tb_to_switch(sw
->dev
.parent
);
361 sw_phy_port
= phy_port_from_route(tb_route(sw
), sw
->depth
);
362 phy_port
= phy_port_from_route(route
, depth
);
365 * On resume ICM will send us connected events for the
366 * devices that still are present. However, that
367 * information might have changed for example by the
368 * fact that a switch on a dual-link connection might
369 * have been enumerated using the other link now. Make
370 * sure our book keeping matches that.
372 if (sw
->depth
== depth
&& sw_phy_port
== phy_port
&&
373 !!sw
->authorized
== authorized
) {
374 tb_port_at(tb_route(sw
), parent_sw
)->remote
= NULL
;
375 tb_port_at(route
, parent_sw
)->remote
=
376 tb_upstream_port(sw
);
377 sw
->config
.route_hi
= upper_32_bits(route
);
378 sw
->config
.route_lo
= lower_32_bits(route
);
379 sw
->connection_id
= pkg
->connection_id
;
380 sw
->connection_key
= pkg
->connection_key
;
383 sw
->is_unplugged
= false;
389 * User connected the same switch to another physical
390 * port or to another part of the topology. Remove the
391 * existing switch now before adding the new one.
398 * If the switch was not found by UUID, look for a switch on
399 * same physical port (taking possible link aggregation into
400 * account) and depth. If we found one it is definitely a stale
401 * one so remove it first.
403 sw
= tb_switch_find_by_link_depth(tb
, link
, depth
);
407 dual_link
= dual_link_from_link(link
);
409 sw
= tb_switch_find_by_link_depth(tb
, dual_link
, depth
);
416 parent_sw
= tb_switch_find_by_link_depth(tb
, link
, depth
- 1);
418 tb_err(tb
, "failed to find parent switch for %u.%u\n",
423 sw
= tb_switch_alloc(tb
, &parent_sw
->dev
, route
);
425 tb_switch_put(parent_sw
);
429 sw
->uuid
= kmemdup(&pkg
->ep_uuid
, sizeof(pkg
->ep_uuid
), GFP_KERNEL
);
430 sw
->connection_id
= pkg
->connection_id
;
431 sw
->connection_key
= pkg
->connection_key
;
434 sw
->authorized
= authorized
;
435 sw
->security_level
= (pkg
->hdr
.flags
& ICM_FLAGS_SLEVEL_MASK
) >>
436 ICM_FLAGS_SLEVEL_SHIFT
;
438 /* Link the two switches now */
439 tb_port_at(route
, parent_sw
)->remote
= tb_upstream_port(sw
);
440 tb_upstream_port(sw
)->remote
= tb_port_at(route
, parent_sw
);
442 ret
= tb_switch_add(sw
);
444 tb_port_at(tb_route(sw
), parent_sw
)->remote
= NULL
;
447 tb_switch_put(parent_sw
);
451 icm_fr_device_disconnected(struct tb
*tb
, const struct icm_pkg_header
*hdr
)
453 const struct icm_fr_event_device_disconnected
*pkg
=
454 (const struct icm_fr_event_device_disconnected
*)hdr
;
455 struct tb_switch
*sw
;
458 link
= pkg
->link_info
& ICM_LINK_INFO_LINK_MASK
;
459 depth
= (pkg
->link_info
& ICM_LINK_INFO_DEPTH_MASK
) >>
460 ICM_LINK_INFO_DEPTH_SHIFT
;
462 if (link
> ICM_MAX_LINK
|| depth
> ICM_MAX_DEPTH
) {
463 tb_warn(tb
, "invalid topology %u.%u, ignoring\n", link
, depth
);
467 sw
= tb_switch_find_by_link_depth(tb
, link
, depth
);
469 tb_warn(tb
, "no switch exists at %u.%u, ignoring\n", link
,
478 static struct pci_dev
*get_upstream_port(struct pci_dev
*pdev
)
480 struct pci_dev
*parent
;
482 parent
= pci_upstream_bridge(pdev
);
484 if (!pci_is_pcie(parent
))
486 if (pci_pcie_type(parent
) == PCI_EXP_TYPE_UPSTREAM
)
488 parent
= pci_upstream_bridge(parent
);
494 switch (parent
->device
) {
495 case PCI_DEVICE_ID_INTEL_ALPINE_RIDGE_2C_BRIDGE
:
496 case PCI_DEVICE_ID_INTEL_ALPINE_RIDGE_4C_BRIDGE
:
497 case PCI_DEVICE_ID_INTEL_ALPINE_RIDGE_LP_BRIDGE
:
498 case PCI_DEVICE_ID_INTEL_ALPINE_RIDGE_C_4C_BRIDGE
:
499 case PCI_DEVICE_ID_INTEL_ALPINE_RIDGE_C_2C_BRIDGE
:
506 static bool icm_ar_is_supported(struct tb
*tb
)
508 struct pci_dev
*upstream_port
;
509 struct icm
*icm
= tb_priv(tb
);
512 * Starting from Alpine Ridge we can use ICM on Apple machines
513 * as well. We just need to reset and re-enable it first.
515 if (!x86_apple_machine
)
519 * Find the upstream PCIe port in case we need to do reset
520 * through its vendor specific registers.
522 upstream_port
= get_upstream_port(tb
->nhi
->pdev
);
526 cap
= pci_find_ext_capability(upstream_port
,
527 PCI_EXT_CAP_ID_VNDR
);
529 icm
->upstream_port
= upstream_port
;
539 static int icm_ar_get_mode(struct tb
*tb
)
541 struct tb_nhi
*nhi
= tb
->nhi
;
546 val
= ioread32(nhi
->iobase
+ REG_FW_STS
);
547 if (val
& REG_FW_STS_NVM_AUTH_DONE
)
553 dev_err(&nhi
->pdev
->dev
, "ICM firmware not authenticated\n");
557 return nhi_mailbox_mode(nhi
);
560 static int icm_ar_get_route(struct tb
*tb
, u8 link
, u8 depth
, u64
*route
)
562 struct icm_ar_pkg_get_route_response reply
;
563 struct icm_ar_pkg_get_route request
= {
564 .hdr
= { .code
= ICM_GET_ROUTE
},
565 .link_info
= depth
<< ICM_LINK_INFO_DEPTH_SHIFT
| link
,
569 memset(&reply
, 0, sizeof(reply
));
570 ret
= icm_request(tb
, &request
, sizeof(request
), &reply
, sizeof(reply
),
575 if (reply
.hdr
.flags
& ICM_FLAGS_ERROR
)
578 *route
= get_route(reply
.route_hi
, reply
.route_lo
);
582 static void icm_handle_notification(struct work_struct
*work
)
584 struct icm_notification
*n
= container_of(work
, typeof(*n
), work
);
585 struct tb
*tb
= n
->tb
;
586 struct icm
*icm
= tb_priv(tb
);
588 mutex_lock(&tb
->lock
);
590 switch (n
->pkg
->code
) {
591 case ICM_EVENT_DEVICE_CONNECTED
:
592 icm
->device_connected(tb
, n
->pkg
);
594 case ICM_EVENT_DEVICE_DISCONNECTED
:
595 icm
->device_disconnected(tb
, n
->pkg
);
599 mutex_unlock(&tb
->lock
);
605 static void icm_handle_event(struct tb
*tb
, enum tb_cfg_pkg_type type
,
606 const void *buf
, size_t size
)
608 struct icm_notification
*n
;
610 n
= kmalloc(sizeof(*n
), GFP_KERNEL
);
614 INIT_WORK(&n
->work
, icm_handle_notification
);
615 n
->pkg
= kmemdup(buf
, size
, GFP_KERNEL
);
618 queue_work(tb
->wq
, &n
->work
);
622 __icm_driver_ready(struct tb
*tb
, enum tb_security_level
*security_level
)
624 struct icm_pkg_driver_ready_response reply
;
625 struct icm_pkg_driver_ready request
= {
626 .hdr
.code
= ICM_DRIVER_READY
,
628 unsigned int retries
= 10;
631 memset(&reply
, 0, sizeof(reply
));
632 ret
= icm_request(tb
, &request
, sizeof(request
), &reply
, sizeof(reply
),
638 *security_level
= reply
.security_level
& 0xf;
641 * Hold on here until the switch config space is accessible so
642 * that we can read root switch config successfully.
645 struct tb_cfg_result res
;
648 res
= tb_cfg_read_raw(tb
->ctl
, &tmp
, 0, 0, TB_CFG_SWITCH
,
659 static int pci2cio_wait_completion(struct icm
*icm
, unsigned long timeout_msec
)
661 unsigned long end
= jiffies
+ msecs_to_jiffies(timeout_msec
);
665 pci_read_config_dword(icm
->upstream_port
,
666 icm
->vnd_cap
+ PCIE2CIO_CMD
, &cmd
);
667 if (!(cmd
& PCIE2CIO_CMD_START
)) {
668 if (cmd
& PCIE2CIO_CMD_TIMEOUT
)
674 } while (time_before(jiffies
, end
));
679 static int pcie2cio_read(struct icm
*icm
, enum tb_cfg_space cs
,
680 unsigned int port
, unsigned int index
, u32
*data
)
682 struct pci_dev
*pdev
= icm
->upstream_port
;
683 int ret
, vnd_cap
= icm
->vnd_cap
;
687 cmd
|= (port
<< PCIE2CIO_CMD_PORT_SHIFT
) & PCIE2CIO_CMD_PORT_MASK
;
688 cmd
|= (cs
<< PCIE2CIO_CMD_CS_SHIFT
) & PCIE2CIO_CMD_CS_MASK
;
689 cmd
|= PCIE2CIO_CMD_START
;
690 pci_write_config_dword(pdev
, vnd_cap
+ PCIE2CIO_CMD
, cmd
);
692 ret
= pci2cio_wait_completion(icm
, 5000);
696 pci_read_config_dword(pdev
, vnd_cap
+ PCIE2CIO_RDDATA
, data
);
700 static int pcie2cio_write(struct icm
*icm
, enum tb_cfg_space cs
,
701 unsigned int port
, unsigned int index
, u32 data
)
703 struct pci_dev
*pdev
= icm
->upstream_port
;
704 int vnd_cap
= icm
->vnd_cap
;
707 pci_write_config_dword(pdev
, vnd_cap
+ PCIE2CIO_WRDATA
, data
);
710 cmd
|= (port
<< PCIE2CIO_CMD_PORT_SHIFT
) & PCIE2CIO_CMD_PORT_MASK
;
711 cmd
|= (cs
<< PCIE2CIO_CMD_CS_SHIFT
) & PCIE2CIO_CMD_CS_MASK
;
712 cmd
|= PCIE2CIO_CMD_WRITE
| PCIE2CIO_CMD_START
;
713 pci_write_config_dword(pdev
, vnd_cap
+ PCIE2CIO_CMD
, cmd
);
715 return pci2cio_wait_completion(icm
, 5000);
718 static int icm_firmware_reset(struct tb
*tb
, struct tb_nhi
*nhi
)
720 struct icm
*icm
= tb_priv(tb
);
723 if (!icm
->upstream_port
)
726 /* Put ARC to wait for CIO reset event to happen */
727 val
= ioread32(nhi
->iobase
+ REG_FW_STS
);
728 val
|= REG_FW_STS_CIO_RESET_REQ
;
729 iowrite32(val
, nhi
->iobase
+ REG_FW_STS
);
732 val
= ioread32(nhi
->iobase
+ REG_FW_STS
);
733 val
|= REG_FW_STS_ICM_EN_INVERT
;
734 val
|= REG_FW_STS_ICM_EN_CPU
;
735 iowrite32(val
, nhi
->iobase
+ REG_FW_STS
);
737 /* Trigger CIO reset now */
738 return pcie2cio_write(icm
, TB_CFG_SWITCH
, 0, 0x50, BIT(9));
741 static int icm_firmware_start(struct tb
*tb
, struct tb_nhi
*nhi
)
743 unsigned int retries
= 10;
747 /* Check if the ICM firmware is already running */
748 val
= ioread32(nhi
->iobase
+ REG_FW_STS
);
749 if (val
& REG_FW_STS_ICM_EN
)
752 dev_info(&nhi
->pdev
->dev
, "starting ICM firmware\n");
754 ret
= icm_firmware_reset(tb
, nhi
);
758 /* Wait until the ICM firmware tells us it is up and running */
760 /* Check that the ICM firmware is running */
761 val
= ioread32(nhi
->iobase
+ REG_FW_STS
);
762 if (val
& REG_FW_STS_NVM_AUTH_DONE
)
771 static int icm_reset_phy_port(struct tb
*tb
, int phy_port
)
773 struct icm
*icm
= tb_priv(tb
);
779 if (!icm
->upstream_port
)
791 * Read link status of both null ports belonging to a single
794 ret
= pcie2cio_read(icm
, TB_CFG_PORT
, port0
, PHY_PORT_CS1
, &val0
);
797 ret
= pcie2cio_read(icm
, TB_CFG_PORT
, port1
, PHY_PORT_CS1
, &val1
);
801 state0
= val0
& PHY_PORT_CS1_LINK_STATE_MASK
;
802 state0
>>= PHY_PORT_CS1_LINK_STATE_SHIFT
;
803 state1
= val1
& PHY_PORT_CS1_LINK_STATE_MASK
;
804 state1
>>= PHY_PORT_CS1_LINK_STATE_SHIFT
;
806 /* If they are both up we need to reset them now */
807 if (state0
!= TB_PORT_UP
|| state1
!= TB_PORT_UP
)
810 val0
|= PHY_PORT_CS1_LINK_DISABLE
;
811 ret
= pcie2cio_write(icm
, TB_CFG_PORT
, port0
, PHY_PORT_CS1
, val0
);
815 val1
|= PHY_PORT_CS1_LINK_DISABLE
;
816 ret
= pcie2cio_write(icm
, TB_CFG_PORT
, port1
, PHY_PORT_CS1
, val1
);
820 /* Wait a bit and then re-enable both ports */
821 usleep_range(10, 100);
823 ret
= pcie2cio_read(icm
, TB_CFG_PORT
, port0
, PHY_PORT_CS1
, &val0
);
826 ret
= pcie2cio_read(icm
, TB_CFG_PORT
, port1
, PHY_PORT_CS1
, &val1
);
830 val0
&= ~PHY_PORT_CS1_LINK_DISABLE
;
831 ret
= pcie2cio_write(icm
, TB_CFG_PORT
, port0
, PHY_PORT_CS1
, val0
);
835 val1
&= ~PHY_PORT_CS1_LINK_DISABLE
;
836 return pcie2cio_write(icm
, TB_CFG_PORT
, port1
, PHY_PORT_CS1
, val1
);
839 static int icm_firmware_init(struct tb
*tb
)
841 struct icm
*icm
= tb_priv(tb
);
842 struct tb_nhi
*nhi
= tb
->nhi
;
845 ret
= icm_firmware_start(tb
, nhi
);
847 dev_err(&nhi
->pdev
->dev
, "could not start ICM firmware\n");
852 ret
= icm
->get_mode(tb
);
855 case NHI_FW_SAFE_MODE
:
856 icm
->safe_mode
= true;
860 /* Ask ICM to accept all Thunderbolt devices */
861 nhi_mailbox_cmd(nhi
, NHI_MAILBOX_ALLOW_ALL_DEVS
, 0);
868 tb_err(tb
, "ICM firmware is in wrong mode: %u\n", ret
);
874 * Reset both physical ports if there is anything connected to
877 ret
= icm_reset_phy_port(tb
, 0);
879 dev_warn(&nhi
->pdev
->dev
, "failed to reset links on port0\n");
880 ret
= icm_reset_phy_port(tb
, 1);
882 dev_warn(&nhi
->pdev
->dev
, "failed to reset links on port1\n");
887 static int icm_driver_ready(struct tb
*tb
)
889 struct icm
*icm
= tb_priv(tb
);
892 ret
= icm_firmware_init(tb
);
896 if (icm
->safe_mode
) {
897 tb_info(tb
, "Thunderbolt host controller is in safe mode.\n");
898 tb_info(tb
, "You need to update NVM firmware of the controller before it can be used.\n");
899 tb_info(tb
, "For latest updates check https://thunderbolttechnology.net/updates.\n");
903 return __icm_driver_ready(tb
, &tb
->security_level
);
906 static int icm_suspend(struct tb
*tb
)
910 ret
= nhi_mailbox_cmd(tb
->nhi
, NHI_MAILBOX_SAVE_DEVS
, 0);
912 tb_info(tb
, "Ignoring mailbox command error (%d) in %s\n",
919 * Mark all switches (except root switch) below this one unplugged. ICM
920 * firmware will send us an updated list of switches after we have send
921 * it driver ready command. If a switch is not in that list it will be
922 * removed when we perform rescan.
924 static void icm_unplug_children(struct tb_switch
*sw
)
929 sw
->is_unplugged
= true;
931 for (i
= 1; i
<= sw
->config
.max_port_number
; i
++) {
932 struct tb_port
*port
= &sw
->ports
[i
];
934 if (tb_is_upstream_port(port
))
939 icm_unplug_children(port
->remote
->sw
);
943 static void icm_free_unplugged_children(struct tb_switch
*sw
)
947 for (i
= 1; i
<= sw
->config
.max_port_number
; i
++) {
948 struct tb_port
*port
= &sw
->ports
[i
];
950 if (tb_is_upstream_port(port
))
955 if (port
->remote
->sw
->is_unplugged
) {
956 tb_switch_remove(port
->remote
->sw
);
959 icm_free_unplugged_children(port
->remote
->sw
);
964 static void icm_rescan_work(struct work_struct
*work
)
966 struct icm
*icm
= container_of(work
, struct icm
, rescan_work
.work
);
967 struct tb
*tb
= icm_to_tb(icm
);
969 mutex_lock(&tb
->lock
);
971 icm_free_unplugged_children(tb
->root_switch
);
972 mutex_unlock(&tb
->lock
);
975 static void icm_complete(struct tb
*tb
)
977 struct icm
*icm
= tb_priv(tb
);
979 if (tb
->nhi
->going_away
)
982 icm_unplug_children(tb
->root_switch
);
985 * Now all existing children should be resumed, start events
986 * from ICM to get updated status.
988 __icm_driver_ready(tb
, NULL
);
991 * We do not get notifications of devices that have been
992 * unplugged during suspend so schedule rescan to clean them up
995 queue_delayed_work(tb
->wq
, &icm
->rescan_work
, msecs_to_jiffies(500));
998 static int icm_start(struct tb
*tb
)
1000 struct icm
*icm
= tb_priv(tb
);
1004 tb
->root_switch
= tb_switch_alloc_safe_mode(tb
, &tb
->dev
, 0);
1006 tb
->root_switch
= tb_switch_alloc(tb
, &tb
->dev
, 0);
1007 if (!tb
->root_switch
)
1011 * NVM upgrade has not been tested on Apple systems and they
1012 * don't provide images publicly either. To be on the safe side
1013 * prevent root switch NVM upgrade on Macs for now.
1015 tb
->root_switch
->no_nvm_upgrade
= x86_apple_machine
;
1017 ret
= tb_switch_add(tb
->root_switch
);
1019 tb_switch_put(tb
->root_switch
);
1024 static void icm_stop(struct tb
*tb
)
1026 struct icm
*icm
= tb_priv(tb
);
1028 cancel_delayed_work(&icm
->rescan_work
);
1029 tb_switch_remove(tb
->root_switch
);
1030 tb
->root_switch
= NULL
;
1031 nhi_mailbox_cmd(tb
->nhi
, NHI_MAILBOX_DRV_UNLOADS
, 0);
1034 static int icm_disconnect_pcie_paths(struct tb
*tb
)
1036 return nhi_mailbox_cmd(tb
->nhi
, NHI_MAILBOX_DISCONNECT_PCIE_PATHS
, 0);
1039 /* Falcon Ridge and Alpine Ridge */
1040 static const struct tb_cm_ops icm_fr_ops
= {
1041 .driver_ready
= icm_driver_ready
,
1044 .suspend
= icm_suspend
,
1045 .complete
= icm_complete
,
1046 .handle_event
= icm_handle_event
,
1047 .approve_switch
= icm_fr_approve_switch
,
1048 .add_switch_key
= icm_fr_add_switch_key
,
1049 .challenge_switch_key
= icm_fr_challenge_switch_key
,
1050 .disconnect_pcie_paths
= icm_disconnect_pcie_paths
,
1053 struct tb
*icm_probe(struct tb_nhi
*nhi
)
1058 tb
= tb_domain_alloc(nhi
, sizeof(struct icm
));
1063 INIT_DELAYED_WORK(&icm
->rescan_work
, icm_rescan_work
);
1064 mutex_init(&icm
->request_lock
);
1066 switch (nhi
->pdev
->device
) {
1067 case PCI_DEVICE_ID_INTEL_FALCON_RIDGE_2C_NHI
:
1068 case PCI_DEVICE_ID_INTEL_FALCON_RIDGE_4C_NHI
:
1069 icm
->is_supported
= icm_fr_is_supported
;
1070 icm
->get_route
= icm_fr_get_route
;
1071 icm
->device_connected
= icm_fr_device_connected
;
1072 icm
->device_disconnected
= icm_fr_device_disconnected
;
1073 tb
->cm_ops
= &icm_fr_ops
;
1076 case PCI_DEVICE_ID_INTEL_ALPINE_RIDGE_2C_NHI
:
1077 case PCI_DEVICE_ID_INTEL_ALPINE_RIDGE_4C_NHI
:
1078 case PCI_DEVICE_ID_INTEL_ALPINE_RIDGE_LP_NHI
:
1079 case PCI_DEVICE_ID_INTEL_ALPINE_RIDGE_C_4C_NHI
:
1080 case PCI_DEVICE_ID_INTEL_ALPINE_RIDGE_C_2C_NHI
:
1081 icm
->is_supported
= icm_ar_is_supported
;
1082 icm
->get_mode
= icm_ar_get_mode
;
1083 icm
->get_route
= icm_ar_get_route
;
1084 icm
->device_connected
= icm_fr_device_connected
;
1085 icm
->device_disconnected
= icm_fr_device_disconnected
;
1086 tb
->cm_ops
= &icm_fr_ops
;
1090 if (!icm
->is_supported
|| !icm
->is_supported(tb
)) {
1091 dev_dbg(&nhi
->pdev
->dev
, "ICM not supported on this controller\n");