1 // SPDX-License-Identifier: GPL-2.0
5 * Copyright 2015 Google Inc.
6 * Copyright 2015 Linaro Ltd.
9 #include <linux/debugfs.h>
10 #include <linux/workqueue.h>
11 #include <linux/greybus.h>
13 #define SVC_INTF_EJECT_TIMEOUT 9000
14 #define SVC_INTF_ACTIVATE_TIMEOUT 6000
15 #define SVC_INTF_RESUME_TIMEOUT 3000
17 struct gb_svc_deferred_request
{
18 struct work_struct work
;
19 struct gb_operation
*operation
;
22 static int gb_svc_queue_deferred_request(struct gb_operation
*operation
);
24 static ssize_t
endo_id_show(struct device
*dev
,
25 struct device_attribute
*attr
, char *buf
)
27 struct gb_svc
*svc
= to_gb_svc(dev
);
29 return sprintf(buf
, "0x%04x\n", svc
->endo_id
);
31 static DEVICE_ATTR_RO(endo_id
);
33 static ssize_t
ap_intf_id_show(struct device
*dev
,
34 struct device_attribute
*attr
, char *buf
)
36 struct gb_svc
*svc
= to_gb_svc(dev
);
38 return sprintf(buf
, "%u\n", svc
->ap_intf_id
);
40 static DEVICE_ATTR_RO(ap_intf_id
);
43 // This is a hack, we need to do this "right" and clean the interface up
44 // properly, not just forcibly yank the thing out of the system and hope for the
45 // best. But for now, people want their modules to come out without having to
46 // throw the thing to the ground or get out a screwdriver.
47 static ssize_t
intf_eject_store(struct device
*dev
,
48 struct device_attribute
*attr
, const char *buf
,
51 struct gb_svc
*svc
= to_gb_svc(dev
);
52 unsigned short intf_id
;
55 ret
= kstrtou16(buf
, 10, &intf_id
);
59 dev_warn(dev
, "Forcibly trying to eject interface %d\n", intf_id
);
61 ret
= gb_svc_intf_eject(svc
, intf_id
);
67 static DEVICE_ATTR_WO(intf_eject
);
69 static ssize_t
watchdog_show(struct device
*dev
, struct device_attribute
*attr
,
72 struct gb_svc
*svc
= to_gb_svc(dev
);
74 return sprintf(buf
, "%s\n",
75 gb_svc_watchdog_enabled(svc
) ? "enabled" : "disabled");
78 static ssize_t
watchdog_store(struct device
*dev
,
79 struct device_attribute
*attr
, const char *buf
,
82 struct gb_svc
*svc
= to_gb_svc(dev
);
86 retval
= strtobool(buf
, &user_request
);
91 retval
= gb_svc_watchdog_enable(svc
);
93 retval
= gb_svc_watchdog_disable(svc
);
98 static DEVICE_ATTR_RW(watchdog
);
100 static ssize_t
watchdog_action_show(struct device
*dev
,
101 struct device_attribute
*attr
, char *buf
)
103 struct gb_svc
*svc
= to_gb_svc(dev
);
105 if (svc
->action
== GB_SVC_WATCHDOG_BITE_PANIC_KERNEL
)
106 return sprintf(buf
, "panic\n");
107 else if (svc
->action
== GB_SVC_WATCHDOG_BITE_RESET_UNIPRO
)
108 return sprintf(buf
, "reset\n");
113 static ssize_t
watchdog_action_store(struct device
*dev
,
114 struct device_attribute
*attr
,
115 const char *buf
, size_t len
)
117 struct gb_svc
*svc
= to_gb_svc(dev
);
119 if (sysfs_streq(buf
, "panic"))
120 svc
->action
= GB_SVC_WATCHDOG_BITE_PANIC_KERNEL
;
121 else if (sysfs_streq(buf
, "reset"))
122 svc
->action
= GB_SVC_WATCHDOG_BITE_RESET_UNIPRO
;
128 static DEVICE_ATTR_RW(watchdog_action
);
130 static int gb_svc_pwrmon_rail_count_get(struct gb_svc
*svc
, u8
*value
)
132 struct gb_svc_pwrmon_rail_count_get_response response
;
135 ret
= gb_operation_sync(svc
->connection
,
136 GB_SVC_TYPE_PWRMON_RAIL_COUNT_GET
, NULL
, 0,
137 &response
, sizeof(response
));
139 dev_err(&svc
->dev
, "failed to get rail count: %d\n", ret
);
143 *value
= response
.rail_count
;
148 static int gb_svc_pwrmon_rail_names_get(struct gb_svc
*svc
,
149 struct gb_svc_pwrmon_rail_names_get_response
*response
,
154 ret
= gb_operation_sync(svc
->connection
,
155 GB_SVC_TYPE_PWRMON_RAIL_NAMES_GET
, NULL
, 0,
158 dev_err(&svc
->dev
, "failed to get rail names: %d\n", ret
);
162 if (response
->status
!= GB_SVC_OP_SUCCESS
) {
164 "SVC error while getting rail names: %u\n",
172 static int gb_svc_pwrmon_sample_get(struct gb_svc
*svc
, u8 rail_id
,
173 u8 measurement_type
, u32
*value
)
175 struct gb_svc_pwrmon_sample_get_request request
;
176 struct gb_svc_pwrmon_sample_get_response response
;
179 request
.rail_id
= rail_id
;
180 request
.measurement_type
= measurement_type
;
182 ret
= gb_operation_sync(svc
->connection
, GB_SVC_TYPE_PWRMON_SAMPLE_GET
,
183 &request
, sizeof(request
),
184 &response
, sizeof(response
));
186 dev_err(&svc
->dev
, "failed to get rail sample: %d\n", ret
);
190 if (response
.result
) {
192 "UniPro error while getting rail power sample (%d %d): %d\n",
193 rail_id
, measurement_type
, response
.result
);
194 switch (response
.result
) {
195 case GB_SVC_PWRMON_GET_SAMPLE_INVAL
:
197 case GB_SVC_PWRMON_GET_SAMPLE_NOSUPP
:
204 *value
= le32_to_cpu(response
.measurement
);
209 int gb_svc_pwrmon_intf_sample_get(struct gb_svc
*svc
, u8 intf_id
,
210 u8 measurement_type
, u32
*value
)
212 struct gb_svc_pwrmon_intf_sample_get_request request
;
213 struct gb_svc_pwrmon_intf_sample_get_response response
;
216 request
.intf_id
= intf_id
;
217 request
.measurement_type
= measurement_type
;
219 ret
= gb_operation_sync(svc
->connection
,
220 GB_SVC_TYPE_PWRMON_INTF_SAMPLE_GET
,
221 &request
, sizeof(request
),
222 &response
, sizeof(response
));
224 dev_err(&svc
->dev
, "failed to get intf sample: %d\n", ret
);
228 if (response
.result
) {
230 "UniPro error while getting intf power sample (%d %d): %d\n",
231 intf_id
, measurement_type
, response
.result
);
232 switch (response
.result
) {
233 case GB_SVC_PWRMON_GET_SAMPLE_INVAL
:
235 case GB_SVC_PWRMON_GET_SAMPLE_NOSUPP
:
242 *value
= le32_to_cpu(response
.measurement
);
247 static struct attribute
*svc_attrs
[] = {
248 &dev_attr_endo_id
.attr
,
249 &dev_attr_ap_intf_id
.attr
,
250 &dev_attr_intf_eject
.attr
,
251 &dev_attr_watchdog
.attr
,
252 &dev_attr_watchdog_action
.attr
,
255 ATTRIBUTE_GROUPS(svc
);
257 int gb_svc_intf_device_id(struct gb_svc
*svc
, u8 intf_id
, u8 device_id
)
259 struct gb_svc_intf_device_id_request request
;
261 request
.intf_id
= intf_id
;
262 request
.device_id
= device_id
;
264 return gb_operation_sync(svc
->connection
, GB_SVC_TYPE_INTF_DEVICE_ID
,
265 &request
, sizeof(request
), NULL
, 0);
268 int gb_svc_intf_eject(struct gb_svc
*svc
, u8 intf_id
)
270 struct gb_svc_intf_eject_request request
;
273 request
.intf_id
= intf_id
;
276 * The pulse width for module release in svc is long so we need to
277 * increase the timeout so the operation will not return to soon.
279 ret
= gb_operation_sync_timeout(svc
->connection
,
280 GB_SVC_TYPE_INTF_EJECT
, &request
,
281 sizeof(request
), NULL
, 0,
282 SVC_INTF_EJECT_TIMEOUT
);
284 dev_err(&svc
->dev
, "failed to eject interface %u\n", intf_id
);
291 int gb_svc_intf_vsys_set(struct gb_svc
*svc
, u8 intf_id
, bool enable
)
293 struct gb_svc_intf_vsys_request request
;
294 struct gb_svc_intf_vsys_response response
;
297 request
.intf_id
= intf_id
;
300 type
= GB_SVC_TYPE_INTF_VSYS_ENABLE
;
302 type
= GB_SVC_TYPE_INTF_VSYS_DISABLE
;
304 ret
= gb_operation_sync(svc
->connection
, type
,
305 &request
, sizeof(request
),
306 &response
, sizeof(response
));
309 if (response
.result_code
!= GB_SVC_INTF_VSYS_OK
)
314 int gb_svc_intf_refclk_set(struct gb_svc
*svc
, u8 intf_id
, bool enable
)
316 struct gb_svc_intf_refclk_request request
;
317 struct gb_svc_intf_refclk_response response
;
320 request
.intf_id
= intf_id
;
323 type
= GB_SVC_TYPE_INTF_REFCLK_ENABLE
;
325 type
= GB_SVC_TYPE_INTF_REFCLK_DISABLE
;
327 ret
= gb_operation_sync(svc
->connection
, type
,
328 &request
, sizeof(request
),
329 &response
, sizeof(response
));
332 if (response
.result_code
!= GB_SVC_INTF_REFCLK_OK
)
337 int gb_svc_intf_unipro_set(struct gb_svc
*svc
, u8 intf_id
, bool enable
)
339 struct gb_svc_intf_unipro_request request
;
340 struct gb_svc_intf_unipro_response response
;
343 request
.intf_id
= intf_id
;
346 type
= GB_SVC_TYPE_INTF_UNIPRO_ENABLE
;
348 type
= GB_SVC_TYPE_INTF_UNIPRO_DISABLE
;
350 ret
= gb_operation_sync(svc
->connection
, type
,
351 &request
, sizeof(request
),
352 &response
, sizeof(response
));
355 if (response
.result_code
!= GB_SVC_INTF_UNIPRO_OK
)
360 int gb_svc_intf_activate(struct gb_svc
*svc
, u8 intf_id
, u8
*intf_type
)
362 struct gb_svc_intf_activate_request request
;
363 struct gb_svc_intf_activate_response response
;
366 request
.intf_id
= intf_id
;
368 ret
= gb_operation_sync_timeout(svc
->connection
,
369 GB_SVC_TYPE_INTF_ACTIVATE
,
370 &request
, sizeof(request
),
371 &response
, sizeof(response
),
372 SVC_INTF_ACTIVATE_TIMEOUT
);
375 if (response
.status
!= GB_SVC_OP_SUCCESS
) {
376 dev_err(&svc
->dev
, "failed to activate interface %u: %u\n",
377 intf_id
, response
.status
);
381 *intf_type
= response
.intf_type
;
386 int gb_svc_intf_resume(struct gb_svc
*svc
, u8 intf_id
)
388 struct gb_svc_intf_resume_request request
;
389 struct gb_svc_intf_resume_response response
;
392 request
.intf_id
= intf_id
;
394 ret
= gb_operation_sync_timeout(svc
->connection
,
395 GB_SVC_TYPE_INTF_RESUME
,
396 &request
, sizeof(request
),
397 &response
, sizeof(response
),
398 SVC_INTF_RESUME_TIMEOUT
);
400 dev_err(&svc
->dev
, "failed to send interface resume %u: %d\n",
405 if (response
.status
!= GB_SVC_OP_SUCCESS
) {
406 dev_err(&svc
->dev
, "failed to resume interface %u: %u\n",
407 intf_id
, response
.status
);
414 int gb_svc_dme_peer_get(struct gb_svc
*svc
, u8 intf_id
, u16 attr
, u16 selector
,
417 struct gb_svc_dme_peer_get_request request
;
418 struct gb_svc_dme_peer_get_response response
;
422 request
.intf_id
= intf_id
;
423 request
.attr
= cpu_to_le16(attr
);
424 request
.selector
= cpu_to_le16(selector
);
426 ret
= gb_operation_sync(svc
->connection
, GB_SVC_TYPE_DME_PEER_GET
,
427 &request
, sizeof(request
),
428 &response
, sizeof(response
));
430 dev_err(&svc
->dev
, "failed to get DME attribute (%u 0x%04x %u): %d\n",
431 intf_id
, attr
, selector
, ret
);
435 result
= le16_to_cpu(response
.result_code
);
437 dev_err(&svc
->dev
, "UniPro error while getting DME attribute (%u 0x%04x %u): %u\n",
438 intf_id
, attr
, selector
, result
);
443 *value
= le32_to_cpu(response
.attr_value
);
448 int gb_svc_dme_peer_set(struct gb_svc
*svc
, u8 intf_id
, u16 attr
, u16 selector
,
451 struct gb_svc_dme_peer_set_request request
;
452 struct gb_svc_dme_peer_set_response response
;
456 request
.intf_id
= intf_id
;
457 request
.attr
= cpu_to_le16(attr
);
458 request
.selector
= cpu_to_le16(selector
);
459 request
.value
= cpu_to_le32(value
);
461 ret
= gb_operation_sync(svc
->connection
, GB_SVC_TYPE_DME_PEER_SET
,
462 &request
, sizeof(request
),
463 &response
, sizeof(response
));
465 dev_err(&svc
->dev
, "failed to set DME attribute (%u 0x%04x %u %u): %d\n",
466 intf_id
, attr
, selector
, value
, ret
);
470 result
= le16_to_cpu(response
.result_code
);
472 dev_err(&svc
->dev
, "UniPro error while setting DME attribute (%u 0x%04x %u %u): %u\n",
473 intf_id
, attr
, selector
, value
, result
);
480 int gb_svc_connection_create(struct gb_svc
*svc
,
481 u8 intf1_id
, u16 cport1_id
,
482 u8 intf2_id
, u16 cport2_id
,
485 struct gb_svc_conn_create_request request
;
487 request
.intf1_id
= intf1_id
;
488 request
.cport1_id
= cpu_to_le16(cport1_id
);
489 request
.intf2_id
= intf2_id
;
490 request
.cport2_id
= cpu_to_le16(cport2_id
);
491 request
.tc
= 0; /* TC0 */
492 request
.flags
= cport_flags
;
494 return gb_operation_sync(svc
->connection
, GB_SVC_TYPE_CONN_CREATE
,
495 &request
, sizeof(request
), NULL
, 0);
498 void gb_svc_connection_destroy(struct gb_svc
*svc
, u8 intf1_id
, u16 cport1_id
,
499 u8 intf2_id
, u16 cport2_id
)
501 struct gb_svc_conn_destroy_request request
;
502 struct gb_connection
*connection
= svc
->connection
;
505 request
.intf1_id
= intf1_id
;
506 request
.cport1_id
= cpu_to_le16(cport1_id
);
507 request
.intf2_id
= intf2_id
;
508 request
.cport2_id
= cpu_to_le16(cport2_id
);
510 ret
= gb_operation_sync(connection
, GB_SVC_TYPE_CONN_DESTROY
,
511 &request
, sizeof(request
), NULL
, 0);
513 dev_err(&svc
->dev
, "failed to destroy connection (%u:%u %u:%u): %d\n",
514 intf1_id
, cport1_id
, intf2_id
, cport2_id
, ret
);
518 /* Creates bi-directional routes between the devices */
519 int gb_svc_route_create(struct gb_svc
*svc
, u8 intf1_id
, u8 dev1_id
,
520 u8 intf2_id
, u8 dev2_id
)
522 struct gb_svc_route_create_request request
;
524 request
.intf1_id
= intf1_id
;
525 request
.dev1_id
= dev1_id
;
526 request
.intf2_id
= intf2_id
;
527 request
.dev2_id
= dev2_id
;
529 return gb_operation_sync(svc
->connection
, GB_SVC_TYPE_ROUTE_CREATE
,
530 &request
, sizeof(request
), NULL
, 0);
533 /* Destroys bi-directional routes between the devices */
534 void gb_svc_route_destroy(struct gb_svc
*svc
, u8 intf1_id
, u8 intf2_id
)
536 struct gb_svc_route_destroy_request request
;
539 request
.intf1_id
= intf1_id
;
540 request
.intf2_id
= intf2_id
;
542 ret
= gb_operation_sync(svc
->connection
, GB_SVC_TYPE_ROUTE_DESTROY
,
543 &request
, sizeof(request
), NULL
, 0);
545 dev_err(&svc
->dev
, "failed to destroy route (%u %u): %d\n",
546 intf1_id
, intf2_id
, ret
);
550 int gb_svc_intf_set_power_mode(struct gb_svc
*svc
, u8 intf_id
, u8 hs_series
,
551 u8 tx_mode
, u8 tx_gear
, u8 tx_nlanes
,
552 u8 tx_amplitude
, u8 tx_hs_equalizer
,
553 u8 rx_mode
, u8 rx_gear
, u8 rx_nlanes
,
554 u8 flags
, u32 quirks
,
555 struct gb_svc_l2_timer_cfg
*local
,
556 struct gb_svc_l2_timer_cfg
*remote
)
558 struct gb_svc_intf_set_pwrm_request request
;
559 struct gb_svc_intf_set_pwrm_response response
;
563 memset(&request
, 0, sizeof(request
));
565 request
.intf_id
= intf_id
;
566 request
.hs_series
= hs_series
;
567 request
.tx_mode
= tx_mode
;
568 request
.tx_gear
= tx_gear
;
569 request
.tx_nlanes
= tx_nlanes
;
570 request
.tx_amplitude
= tx_amplitude
;
571 request
.tx_hs_equalizer
= tx_hs_equalizer
;
572 request
.rx_mode
= rx_mode
;
573 request
.rx_gear
= rx_gear
;
574 request
.rx_nlanes
= rx_nlanes
;
575 request
.flags
= flags
;
576 request
.quirks
= cpu_to_le32(quirks
);
578 request
.local_l2timerdata
= *local
;
580 request
.remote_l2timerdata
= *remote
;
582 ret
= gb_operation_sync(svc
->connection
, GB_SVC_TYPE_INTF_SET_PWRM
,
583 &request
, sizeof(request
),
584 &response
, sizeof(response
));
588 result_code
= response
.result_code
;
589 if (result_code
!= GB_SVC_SETPWRM_PWR_LOCAL
) {
590 dev_err(&svc
->dev
, "set power mode = %d\n", result_code
);
596 EXPORT_SYMBOL_GPL(gb_svc_intf_set_power_mode
);
598 int gb_svc_intf_set_power_mode_hibernate(struct gb_svc
*svc
, u8 intf_id
)
600 struct gb_svc_intf_set_pwrm_request request
;
601 struct gb_svc_intf_set_pwrm_response response
;
605 memset(&request
, 0, sizeof(request
));
607 request
.intf_id
= intf_id
;
608 request
.hs_series
= GB_SVC_UNIPRO_HS_SERIES_A
;
609 request
.tx_mode
= GB_SVC_UNIPRO_HIBERNATE_MODE
;
610 request
.rx_mode
= GB_SVC_UNIPRO_HIBERNATE_MODE
;
612 ret
= gb_operation_sync(svc
->connection
, GB_SVC_TYPE_INTF_SET_PWRM
,
613 &request
, sizeof(request
),
614 &response
, sizeof(response
));
617 "failed to send set power mode operation to interface %u: %d\n",
622 result_code
= response
.result_code
;
623 if (result_code
!= GB_SVC_SETPWRM_PWR_OK
) {
625 "failed to hibernate the link for interface %u: %u\n",
626 intf_id
, result_code
);
633 int gb_svc_ping(struct gb_svc
*svc
)
635 return gb_operation_sync_timeout(svc
->connection
, GB_SVC_TYPE_PING
,
637 GB_OPERATION_TIMEOUT_DEFAULT
* 2);
640 static int gb_svc_version_request(struct gb_operation
*op
)
642 struct gb_connection
*connection
= op
->connection
;
643 struct gb_svc
*svc
= gb_connection_get_data(connection
);
644 struct gb_svc_version_request
*request
;
645 struct gb_svc_version_response
*response
;
647 if (op
->request
->payload_size
< sizeof(*request
)) {
648 dev_err(&svc
->dev
, "short version request (%zu < %zu)\n",
649 op
->request
->payload_size
,
654 request
= op
->request
->payload
;
656 if (request
->major
> GB_SVC_VERSION_MAJOR
) {
657 dev_warn(&svc
->dev
, "unsupported major version (%u > %u)\n",
658 request
->major
, GB_SVC_VERSION_MAJOR
);
662 svc
->protocol_major
= request
->major
;
663 svc
->protocol_minor
= request
->minor
;
665 if (!gb_operation_response_alloc(op
, sizeof(*response
), GFP_KERNEL
))
668 response
= op
->response
->payload
;
669 response
->major
= svc
->protocol_major
;
670 response
->minor
= svc
->protocol_minor
;
675 static ssize_t
pwr_debugfs_voltage_read(struct file
*file
, char __user
*buf
,
676 size_t len
, loff_t
*offset
)
678 struct svc_debugfs_pwrmon_rail
*pwrmon_rails
=
679 file_inode(file
)->i_private
;
680 struct gb_svc
*svc
= pwrmon_rails
->svc
;
685 ret
= gb_svc_pwrmon_sample_get(svc
, pwrmon_rails
->id
,
686 GB_SVC_PWRMON_TYPE_VOL
, &value
);
689 "failed to get voltage sample %u: %d\n",
690 pwrmon_rails
->id
, ret
);
694 desc
= scnprintf(buff
, sizeof(buff
), "%u\n", value
);
696 return simple_read_from_buffer(buf
, len
, offset
, buff
, desc
);
699 static ssize_t
pwr_debugfs_current_read(struct file
*file
, char __user
*buf
,
700 size_t len
, loff_t
*offset
)
702 struct svc_debugfs_pwrmon_rail
*pwrmon_rails
=
703 file_inode(file
)->i_private
;
704 struct gb_svc
*svc
= pwrmon_rails
->svc
;
709 ret
= gb_svc_pwrmon_sample_get(svc
, pwrmon_rails
->id
,
710 GB_SVC_PWRMON_TYPE_CURR
, &value
);
713 "failed to get current sample %u: %d\n",
714 pwrmon_rails
->id
, ret
);
718 desc
= scnprintf(buff
, sizeof(buff
), "%u\n", value
);
720 return simple_read_from_buffer(buf
, len
, offset
, buff
, desc
);
723 static ssize_t
pwr_debugfs_power_read(struct file
*file
, char __user
*buf
,
724 size_t len
, loff_t
*offset
)
726 struct svc_debugfs_pwrmon_rail
*pwrmon_rails
=
727 file_inode(file
)->i_private
;
728 struct gb_svc
*svc
= pwrmon_rails
->svc
;
733 ret
= gb_svc_pwrmon_sample_get(svc
, pwrmon_rails
->id
,
734 GB_SVC_PWRMON_TYPE_PWR
, &value
);
736 dev_err(&svc
->dev
, "failed to get power sample %u: %d\n",
737 pwrmon_rails
->id
, ret
);
741 desc
= scnprintf(buff
, sizeof(buff
), "%u\n", value
);
743 return simple_read_from_buffer(buf
, len
, offset
, buff
, desc
);
746 static const struct file_operations pwrmon_debugfs_voltage_fops
= {
747 .read
= pwr_debugfs_voltage_read
,
750 static const struct file_operations pwrmon_debugfs_current_fops
= {
751 .read
= pwr_debugfs_current_read
,
754 static const struct file_operations pwrmon_debugfs_power_fops
= {
755 .read
= pwr_debugfs_power_read
,
758 static void gb_svc_pwrmon_debugfs_init(struct gb_svc
*svc
)
763 struct gb_svc_pwrmon_rail_names_get_response
*rail_names
;
766 dent
= debugfs_create_dir("pwrmon", svc
->debugfs_dentry
);
767 if (IS_ERR_OR_NULL(dent
))
770 if (gb_svc_pwrmon_rail_count_get(svc
, &rail_count
))
771 goto err_pwrmon_debugfs
;
773 if (!rail_count
|| rail_count
> GB_SVC_PWRMON_MAX_RAIL_COUNT
)
774 goto err_pwrmon_debugfs
;
776 bufsize
= sizeof(*rail_names
) +
777 GB_SVC_PWRMON_RAIL_NAME_BUFSIZE
* rail_count
;
779 rail_names
= kzalloc(bufsize
, GFP_KERNEL
);
781 goto err_pwrmon_debugfs
;
783 svc
->pwrmon_rails
= kcalloc(rail_count
, sizeof(*svc
->pwrmon_rails
),
785 if (!svc
->pwrmon_rails
)
786 goto err_pwrmon_debugfs_free
;
788 if (gb_svc_pwrmon_rail_names_get(svc
, rail_names
, bufsize
))
789 goto err_pwrmon_debugfs_free
;
791 for (i
= 0; i
< rail_count
; i
++) {
793 struct svc_debugfs_pwrmon_rail
*rail
= &svc
->pwrmon_rails
[i
];
794 char fname
[GB_SVC_PWRMON_RAIL_NAME_BUFSIZE
];
796 snprintf(fname
, sizeof(fname
), "%s",
797 (char *)&rail_names
->name
[i
]);
802 dir
= debugfs_create_dir(fname
, dent
);
803 debugfs_create_file("voltage_now", 0444, dir
, rail
,
804 &pwrmon_debugfs_voltage_fops
);
805 debugfs_create_file("current_now", 0444, dir
, rail
,
806 &pwrmon_debugfs_current_fops
);
807 debugfs_create_file("power_now", 0444, dir
, rail
,
808 &pwrmon_debugfs_power_fops
);
814 err_pwrmon_debugfs_free
:
816 kfree(svc
->pwrmon_rails
);
817 svc
->pwrmon_rails
= NULL
;
820 debugfs_remove(dent
);
823 static void gb_svc_debugfs_init(struct gb_svc
*svc
)
825 svc
->debugfs_dentry
= debugfs_create_dir(dev_name(&svc
->dev
),
827 gb_svc_pwrmon_debugfs_init(svc
);
830 static void gb_svc_debugfs_exit(struct gb_svc
*svc
)
832 debugfs_remove_recursive(svc
->debugfs_dentry
);
833 kfree(svc
->pwrmon_rails
);
834 svc
->pwrmon_rails
= NULL
;
837 static int gb_svc_hello(struct gb_operation
*op
)
839 struct gb_connection
*connection
= op
->connection
;
840 struct gb_svc
*svc
= gb_connection_get_data(connection
);
841 struct gb_svc_hello_request
*hello_request
;
844 if (op
->request
->payload_size
< sizeof(*hello_request
)) {
845 dev_warn(&svc
->dev
, "short hello request (%zu < %zu)\n",
846 op
->request
->payload_size
,
847 sizeof(*hello_request
));
851 hello_request
= op
->request
->payload
;
852 svc
->endo_id
= le16_to_cpu(hello_request
->endo_id
);
853 svc
->ap_intf_id
= hello_request
->interface_id
;
855 ret
= device_add(&svc
->dev
);
857 dev_err(&svc
->dev
, "failed to register svc device: %d\n", ret
);
861 ret
= gb_svc_watchdog_create(svc
);
863 dev_err(&svc
->dev
, "failed to create watchdog: %d\n", ret
);
864 goto err_unregister_device
;
867 gb_svc_debugfs_init(svc
);
869 return gb_svc_queue_deferred_request(op
);
871 err_unregister_device
:
872 gb_svc_watchdog_destroy(svc
);
873 device_del(&svc
->dev
);
877 static struct gb_interface
*gb_svc_interface_lookup(struct gb_svc
*svc
,
880 struct gb_host_device
*hd
= svc
->hd
;
881 struct gb_module
*module
;
882 size_t num_interfaces
;
885 list_for_each_entry(module
, &hd
->modules
, hd_node
) {
886 module_id
= module
->module_id
;
887 num_interfaces
= module
->num_interfaces
;
889 if (intf_id
>= module_id
&&
890 intf_id
< module_id
+ num_interfaces
) {
891 return module
->interfaces
[intf_id
- module_id
];
898 static struct gb_module
*gb_svc_module_lookup(struct gb_svc
*svc
, u8 module_id
)
900 struct gb_host_device
*hd
= svc
->hd
;
901 struct gb_module
*module
;
903 list_for_each_entry(module
, &hd
->modules
, hd_node
) {
904 if (module
->module_id
== module_id
)
911 static void gb_svc_process_hello_deferred(struct gb_operation
*operation
)
913 struct gb_connection
*connection
= operation
->connection
;
914 struct gb_svc
*svc
= gb_connection_get_data(connection
);
918 * XXX This is a hack/work-around to reconfigure the APBridgeA-Switch
919 * link to PWM G2, 1 Lane, Slow Auto, so that it has sufficient
920 * bandwidth for 3 audio streams plus boot-over-UniPro of a hot-plugged
923 * The code should be removed once SW-2217, Heuristic for UniPro
924 * Power Mode Changes is resolved.
926 ret
= gb_svc_intf_set_power_mode(svc
, svc
->ap_intf_id
,
927 GB_SVC_UNIPRO_HS_SERIES_A
,
928 GB_SVC_UNIPRO_SLOW_AUTO_MODE
,
930 GB_SVC_SMALL_AMPLITUDE
,
931 GB_SVC_NO_DE_EMPHASIS
,
932 GB_SVC_UNIPRO_SLOW_AUTO_MODE
,
939 "power mode change failed on AP to switch link: %d\n",
943 static void gb_svc_process_module_inserted(struct gb_operation
*operation
)
945 struct gb_svc_module_inserted_request
*request
;
946 struct gb_connection
*connection
= operation
->connection
;
947 struct gb_svc
*svc
= gb_connection_get_data(connection
);
948 struct gb_host_device
*hd
= svc
->hd
;
949 struct gb_module
*module
;
950 size_t num_interfaces
;
955 /* The request message size has already been verified. */
956 request
= operation
->request
->payload
;
957 module_id
= request
->primary_intf_id
;
958 num_interfaces
= request
->intf_count
;
959 flags
= le16_to_cpu(request
->flags
);
961 dev_dbg(&svc
->dev
, "%s - id = %u, num_interfaces = %zu, flags = 0x%04x\n",
962 __func__
, module_id
, num_interfaces
, flags
);
964 if (flags
& GB_SVC_MODULE_INSERTED_FLAG_NO_PRIMARY
) {
965 dev_warn(&svc
->dev
, "no primary interface detected on module %u\n",
969 module
= gb_svc_module_lookup(svc
, module_id
);
971 dev_warn(&svc
->dev
, "unexpected module-inserted event %u\n",
976 module
= gb_module_create(hd
, module_id
, num_interfaces
);
978 dev_err(&svc
->dev
, "failed to create module\n");
982 ret
= gb_module_add(module
);
984 gb_module_put(module
);
988 list_add(&module
->hd_node
, &hd
->modules
);
991 static void gb_svc_process_module_removed(struct gb_operation
*operation
)
993 struct gb_svc_module_removed_request
*request
;
994 struct gb_connection
*connection
= operation
->connection
;
995 struct gb_svc
*svc
= gb_connection_get_data(connection
);
996 struct gb_module
*module
;
999 /* The request message size has already been verified. */
1000 request
= operation
->request
->payload
;
1001 module_id
= request
->primary_intf_id
;
1003 dev_dbg(&svc
->dev
, "%s - id = %u\n", __func__
, module_id
);
1005 module
= gb_svc_module_lookup(svc
, module_id
);
1007 dev_warn(&svc
->dev
, "unexpected module-removed event %u\n",
1012 module
->disconnected
= true;
1014 gb_module_del(module
);
1015 list_del(&module
->hd_node
);
1016 gb_module_put(module
);
1019 static void gb_svc_process_intf_oops(struct gb_operation
*operation
)
1021 struct gb_svc_intf_oops_request
*request
;
1022 struct gb_connection
*connection
= operation
->connection
;
1023 struct gb_svc
*svc
= gb_connection_get_data(connection
);
1024 struct gb_interface
*intf
;
1028 /* The request message size has already been verified. */
1029 request
= operation
->request
->payload
;
1030 intf_id
= request
->intf_id
;
1031 reason
= request
->reason
;
1033 intf
= gb_svc_interface_lookup(svc
, intf_id
);
1035 dev_warn(&svc
->dev
, "unexpected interface-oops event %u\n",
1040 dev_info(&svc
->dev
, "Deactivating interface %u, interface oops reason = %u\n",
1043 mutex_lock(&intf
->mutex
);
1044 intf
->disconnected
= true;
1045 gb_interface_disable(intf
);
1046 gb_interface_deactivate(intf
);
1047 mutex_unlock(&intf
->mutex
);
1050 static void gb_svc_process_intf_mailbox_event(struct gb_operation
*operation
)
1052 struct gb_svc_intf_mailbox_event_request
*request
;
1053 struct gb_connection
*connection
= operation
->connection
;
1054 struct gb_svc
*svc
= gb_connection_get_data(connection
);
1055 struct gb_interface
*intf
;
1060 /* The request message size has already been verified. */
1061 request
= operation
->request
->payload
;
1062 intf_id
= request
->intf_id
;
1063 result_code
= le16_to_cpu(request
->result_code
);
1064 mailbox
= le32_to_cpu(request
->mailbox
);
1066 dev_dbg(&svc
->dev
, "%s - id = %u, result = 0x%04x, mailbox = 0x%08x\n",
1067 __func__
, intf_id
, result_code
, mailbox
);
1069 intf
= gb_svc_interface_lookup(svc
, intf_id
);
1071 dev_warn(&svc
->dev
, "unexpected mailbox event %u\n", intf_id
);
1075 gb_interface_mailbox_event(intf
, result_code
, mailbox
);
1078 static void gb_svc_process_deferred_request(struct work_struct
*work
)
1080 struct gb_svc_deferred_request
*dr
;
1081 struct gb_operation
*operation
;
1085 dr
= container_of(work
, struct gb_svc_deferred_request
, work
);
1086 operation
= dr
->operation
;
1087 svc
= gb_connection_get_data(operation
->connection
);
1088 type
= operation
->request
->header
->type
;
1091 case GB_SVC_TYPE_SVC_HELLO
:
1092 gb_svc_process_hello_deferred(operation
);
1094 case GB_SVC_TYPE_MODULE_INSERTED
:
1095 gb_svc_process_module_inserted(operation
);
1097 case GB_SVC_TYPE_MODULE_REMOVED
:
1098 gb_svc_process_module_removed(operation
);
1100 case GB_SVC_TYPE_INTF_MAILBOX_EVENT
:
1101 gb_svc_process_intf_mailbox_event(operation
);
1103 case GB_SVC_TYPE_INTF_OOPS
:
1104 gb_svc_process_intf_oops(operation
);
1107 dev_err(&svc
->dev
, "bad deferred request type: 0x%02x\n", type
);
1110 gb_operation_put(operation
);
1114 static int gb_svc_queue_deferred_request(struct gb_operation
*operation
)
1116 struct gb_svc
*svc
= gb_connection_get_data(operation
->connection
);
1117 struct gb_svc_deferred_request
*dr
;
1119 dr
= kmalloc(sizeof(*dr
), GFP_KERNEL
);
1123 gb_operation_get(operation
);
1125 dr
->operation
= operation
;
1126 INIT_WORK(&dr
->work
, gb_svc_process_deferred_request
);
1128 queue_work(svc
->wq
, &dr
->work
);
1133 static int gb_svc_intf_reset_recv(struct gb_operation
*op
)
1135 struct gb_svc
*svc
= gb_connection_get_data(op
->connection
);
1136 struct gb_message
*request
= op
->request
;
1137 struct gb_svc_intf_reset_request
*reset
;
1139 if (request
->payload_size
< sizeof(*reset
)) {
1140 dev_warn(&svc
->dev
, "short reset request received (%zu < %zu)\n",
1141 request
->payload_size
, sizeof(*reset
));
1144 reset
= request
->payload
;
1146 /* FIXME Reset the interface here */
1151 static int gb_svc_module_inserted_recv(struct gb_operation
*op
)
1153 struct gb_svc
*svc
= gb_connection_get_data(op
->connection
);
1154 struct gb_svc_module_inserted_request
*request
;
1156 if (op
->request
->payload_size
< sizeof(*request
)) {
1157 dev_warn(&svc
->dev
, "short module-inserted request received (%zu < %zu)\n",
1158 op
->request
->payload_size
, sizeof(*request
));
1162 request
= op
->request
->payload
;
1164 dev_dbg(&svc
->dev
, "%s - id = %u\n", __func__
,
1165 request
->primary_intf_id
);
1167 return gb_svc_queue_deferred_request(op
);
1170 static int gb_svc_module_removed_recv(struct gb_operation
*op
)
1172 struct gb_svc
*svc
= gb_connection_get_data(op
->connection
);
1173 struct gb_svc_module_removed_request
*request
;
1175 if (op
->request
->payload_size
< sizeof(*request
)) {
1176 dev_warn(&svc
->dev
, "short module-removed request received (%zu < %zu)\n",
1177 op
->request
->payload_size
, sizeof(*request
));
1181 request
= op
->request
->payload
;
1183 dev_dbg(&svc
->dev
, "%s - id = %u\n", __func__
,
1184 request
->primary_intf_id
);
1186 return gb_svc_queue_deferred_request(op
);
1189 static int gb_svc_intf_oops_recv(struct gb_operation
*op
)
1191 struct gb_svc
*svc
= gb_connection_get_data(op
->connection
);
1192 struct gb_svc_intf_oops_request
*request
;
1194 if (op
->request
->payload_size
< sizeof(*request
)) {
1195 dev_warn(&svc
->dev
, "short intf-oops request received (%zu < %zu)\n",
1196 op
->request
->payload_size
, sizeof(*request
));
1200 return gb_svc_queue_deferred_request(op
);
1203 static int gb_svc_intf_mailbox_event_recv(struct gb_operation
*op
)
1205 struct gb_svc
*svc
= gb_connection_get_data(op
->connection
);
1206 struct gb_svc_intf_mailbox_event_request
*request
;
1208 if (op
->request
->payload_size
< sizeof(*request
)) {
1209 dev_warn(&svc
->dev
, "short mailbox request received (%zu < %zu)\n",
1210 op
->request
->payload_size
, sizeof(*request
));
1214 request
= op
->request
->payload
;
1216 dev_dbg(&svc
->dev
, "%s - id = %u\n", __func__
, request
->intf_id
);
1218 return gb_svc_queue_deferred_request(op
);
1221 static int gb_svc_request_handler(struct gb_operation
*op
)
1223 struct gb_connection
*connection
= op
->connection
;
1224 struct gb_svc
*svc
= gb_connection_get_data(connection
);
1229 * SVC requests need to follow a specific order (at least initially) and
1230 * below code takes care of enforcing that. The expected order is:
1231 * - PROTOCOL_VERSION
1233 * - Any other request, but the earlier two.
1235 * Incoming requests are guaranteed to be serialized and so we don't
1236 * need to protect 'state' for any races.
1239 case GB_SVC_TYPE_PROTOCOL_VERSION
:
1240 if (svc
->state
!= GB_SVC_STATE_RESET
)
1243 case GB_SVC_TYPE_SVC_HELLO
:
1244 if (svc
->state
!= GB_SVC_STATE_PROTOCOL_VERSION
)
1248 if (svc
->state
!= GB_SVC_STATE_SVC_HELLO
)
1254 dev_warn(&svc
->dev
, "unexpected request 0x%02x received (state %u)\n",
1260 case GB_SVC_TYPE_PROTOCOL_VERSION
:
1261 ret
= gb_svc_version_request(op
);
1263 svc
->state
= GB_SVC_STATE_PROTOCOL_VERSION
;
1265 case GB_SVC_TYPE_SVC_HELLO
:
1266 ret
= gb_svc_hello(op
);
1268 svc
->state
= GB_SVC_STATE_SVC_HELLO
;
1270 case GB_SVC_TYPE_INTF_RESET
:
1271 return gb_svc_intf_reset_recv(op
);
1272 case GB_SVC_TYPE_MODULE_INSERTED
:
1273 return gb_svc_module_inserted_recv(op
);
1274 case GB_SVC_TYPE_MODULE_REMOVED
:
1275 return gb_svc_module_removed_recv(op
);
1276 case GB_SVC_TYPE_INTF_MAILBOX_EVENT
:
1277 return gb_svc_intf_mailbox_event_recv(op
);
1278 case GB_SVC_TYPE_INTF_OOPS
:
1279 return gb_svc_intf_oops_recv(op
);
1281 dev_warn(&svc
->dev
, "unsupported request 0x%02x\n", type
);
1286 static void gb_svc_release(struct device
*dev
)
1288 struct gb_svc
*svc
= to_gb_svc(dev
);
1290 if (svc
->connection
)
1291 gb_connection_destroy(svc
->connection
);
1292 ida_destroy(&svc
->device_id_map
);
1293 destroy_workqueue(svc
->wq
);
1297 struct device_type greybus_svc_type
= {
1298 .name
= "greybus_svc",
1299 .release
= gb_svc_release
,
1302 struct gb_svc
*gb_svc_create(struct gb_host_device
*hd
)
1306 svc
= kzalloc(sizeof(*svc
), GFP_KERNEL
);
1310 svc
->wq
= alloc_workqueue("%s:svc", WQ_UNBOUND
, 1, dev_name(&hd
->dev
));
1316 svc
->dev
.parent
= &hd
->dev
;
1317 svc
->dev
.bus
= &greybus_bus_type
;
1318 svc
->dev
.type
= &greybus_svc_type
;
1319 svc
->dev
.groups
= svc_groups
;
1320 svc
->dev
.dma_mask
= svc
->dev
.parent
->dma_mask
;
1321 device_initialize(&svc
->dev
);
1323 dev_set_name(&svc
->dev
, "%d-svc", hd
->bus_id
);
1325 ida_init(&svc
->device_id_map
);
1326 svc
->state
= GB_SVC_STATE_RESET
;
1329 svc
->connection
= gb_connection_create_static(hd
, GB_SVC_CPORT_ID
,
1330 gb_svc_request_handler
);
1331 if (IS_ERR(svc
->connection
)) {
1332 dev_err(&svc
->dev
, "failed to create connection: %ld\n",
1333 PTR_ERR(svc
->connection
));
1334 goto err_put_device
;
1337 gb_connection_set_data(svc
->connection
, svc
);
1342 put_device(&svc
->dev
);
1346 int gb_svc_add(struct gb_svc
*svc
)
1351 * The SVC protocol is currently driven by the SVC, so the SVC device
1352 * is added from the connection request handler when enough
1353 * information has been received.
1355 ret
= gb_connection_enable(svc
->connection
);
1362 static void gb_svc_remove_modules(struct gb_svc
*svc
)
1364 struct gb_host_device
*hd
= svc
->hd
;
1365 struct gb_module
*module
, *tmp
;
1367 list_for_each_entry_safe(module
, tmp
, &hd
->modules
, hd_node
) {
1368 gb_module_del(module
);
1369 list_del(&module
->hd_node
);
1370 gb_module_put(module
);
1374 void gb_svc_del(struct gb_svc
*svc
)
1376 gb_connection_disable_rx(svc
->connection
);
1379 * The SVC device may have been registered from the request handler.
1381 if (device_is_registered(&svc
->dev
)) {
1382 gb_svc_debugfs_exit(svc
);
1383 gb_svc_watchdog_destroy(svc
);
1384 device_del(&svc
->dev
);
1387 flush_workqueue(svc
->wq
);
1389 gb_svc_remove_modules(svc
);
1391 gb_connection_disable(svc
->connection
);
1394 void gb_svc_put(struct gb_svc
*svc
)
1396 put_device(&svc
->dev
);