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	media: ipu3-cio2: Add cio2-bridge to ipu3-cio2 driver
Currently on platforms designed for Windows, connections between CIO2 and sensors are not properly defined in DSDT. This patch extends the ipu3-cio2 driver to compensate by building software_node connections, parsing the connection properties from the sensor's SSDB buffer. [Sakari Ailus: Make cio2_bridge_init static inline to a fix compiler warning, wrapped a bunch of long lines.] Suggested-by: Jordan Hand <jorhand@linux.microsoft.com> Reviewed-by: Laurent Pinchart <laurent.pinchart@ideasonboard.com> Reviewed-by: Andy Shevchenko <andy.shevchenko@gmail.com> Reviewed-by: Kieran Bingham <kieran.bingham@ideasonboard.com> Signed-off-by: Daniel Scally <djrscally@gmail.com> Signed-off-by: Sakari Ailus <sakari.ailus@linux.intel.com> Signed-off-by: Mauro Carvalho Chehab <mchehab+huawei@kernel.org>
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					@ -9014,6 +9014,7 @@ INTEL IPU3 CSI-2 CIO2 DRIVER
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M:	Yong Zhi <yong.zhi@intel.com>
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					M:	Yong Zhi <yong.zhi@intel.com>
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M:	Sakari Ailus <sakari.ailus@linux.intel.com>
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					M:	Sakari Ailus <sakari.ailus@linux.intel.com>
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M:	Bingbu Cao <bingbu.cao@intel.com>
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					M:	Bingbu Cao <bingbu.cao@intel.com>
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					M:	Dan Scally <djrscally@gmail.com>
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R:	Tianshu Qiu <tian.shu.qiu@intel.com>
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					R:	Tianshu Qiu <tian.shu.qiu@intel.com>
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L:	linux-media@vger.kernel.org
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					L:	linux-media@vger.kernel.org
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S:	Maintained
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					S:	Maintained
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					@ -17,3 +17,21 @@ config VIDEO_IPU3_CIO2
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	  Say Y or M here if you have a Skylake/Kaby Lake SoC with MIPI CSI-2
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						  Say Y or M here if you have a Skylake/Kaby Lake SoC with MIPI CSI-2
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	  connected camera.
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						  connected camera.
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	  The module will be called ipu3-cio2.
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						  The module will be called ipu3-cio2.
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					config CIO2_BRIDGE
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						bool "IPU3 CIO2 Sensors Bridge"
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						depends on VIDEO_IPU3_CIO2
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						help
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						  This extension provides an API for the ipu3-cio2 driver to create
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						  connections to cameras that are hidden in the SSDB buffer in ACPI.
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						  It can be used to enable support for cameras in detachable / hybrid
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						  devices that ship with Windows.
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						  Say Y here if your device is a detachable / hybrid laptop that comes
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						  with Windows installed by the OEM, for example:
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							- Microsoft Surface models (except Surface Pro 3)
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							- The Lenovo Miix line (for example the 510, 520, 710 and 720)
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							- Dell 7285
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						  If in doubt, say N here.
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					@ -2,3 +2,4 @@
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obj-$(CONFIG_VIDEO_IPU3_CIO2) += ipu3-cio2.o
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					obj-$(CONFIG_VIDEO_IPU3_CIO2) += ipu3-cio2.o
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ipu3-cio2-y += ipu3-cio2-main.o
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					ipu3-cio2-y += ipu3-cio2-main.o
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					ipu3-cio2-$(CONFIG_CIO2_BRIDGE) += cio2-bridge.o
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						 | 
					
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										314
									
								
								drivers/media/pci/intel/ipu3/cio2-bridge.c
									
									
									
									
									
										Normal file
									
								
							
							
						
						
									
										314
									
								
								drivers/media/pci/intel/ipu3/cio2-bridge.c
									
									
									
									
									
										Normal file
									
								
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					@ -0,0 +1,314 @@
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					// SPDX-License-Identifier: GPL-2.0
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					/* Author: Dan Scally <djrscally@gmail.com> */
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					#include <linux/acpi.h>
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					#include <linux/device.h>
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					#include <linux/pci.h>
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					#include <linux/property.h>
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					#include <media/v4l2-fwnode.h>
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					#include "cio2-bridge.h"
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					/*
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					 * Extend this array with ACPI Hardware IDs of devices known to be working
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					 * plus the number of link-frequencies expected by their drivers, along with
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					 * the frequency values in hertz. This is somewhat opportunistic way of adding
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					 * support for this for now in the hopes of a better source for the information
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					 * (possibly some encoded value in the SSDB buffer that we're unaware of)
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					 * becoming apparent in the future.
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					 *
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					 * Do not add an entry for a sensor that is not actually supported.
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					 */
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					static const struct cio2_sensor_config cio2_supported_sensors[] = {
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						/* Omnivision OV5693 */
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						CIO2_SENSOR_CONFIG("INT33BE", 0),
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						/* Omnivision OV2680 */
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						CIO2_SENSOR_CONFIG("OVTI2680", 0),
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					};
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					static const struct cio2_property_names prop_names = {
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						.clock_frequency = "clock-frequency",
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						.rotation = "rotation",
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						.bus_type = "bus-type",
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						.data_lanes = "data-lanes",
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						.remote_endpoint = "remote-endpoint",
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						.link_frequencies = "link-frequencies",
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					};
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					static int cio2_bridge_read_acpi_buffer(struct acpi_device *adev, char *id,
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										void *data, u32 size)
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					{
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						struct acpi_buffer buffer = { ACPI_ALLOCATE_BUFFER, NULL };
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						union acpi_object *obj;
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						acpi_status status;
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						int ret = 0;
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						status = acpi_evaluate_object(adev->handle, id, NULL, &buffer);
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						if (ACPI_FAILURE(status))
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							return -ENODEV;
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						obj = buffer.pointer;
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						if (!obj) {
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							dev_err(&adev->dev, "Couldn't locate ACPI buffer\n");
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							return -ENODEV;
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						}
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						if (obj->type != ACPI_TYPE_BUFFER) {
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							dev_err(&adev->dev, "Not an ACPI buffer\n");
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							ret = -ENODEV;
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							goto out_free_buff;
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						}
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						if (obj->buffer.length > size) {
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							dev_err(&adev->dev, "Given buffer is too small\n");
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							ret = -EINVAL;
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							goto out_free_buff;
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						}
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						memcpy(data, obj->buffer.pointer, obj->buffer.length);
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					out_free_buff:
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						kfree(buffer.pointer);
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						return ret;
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					}
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					static void cio2_bridge_create_fwnode_properties(
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						struct cio2_sensor *sensor,
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						struct cio2_bridge *bridge,
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						const struct cio2_sensor_config *cfg)
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					{
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						sensor->prop_names = prop_names;
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						sensor->local_ref[0].node = &sensor->swnodes[SWNODE_CIO2_ENDPOINT];
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						sensor->remote_ref[0].node = &sensor->swnodes[SWNODE_SENSOR_ENDPOINT];
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						sensor->dev_properties[0] = PROPERTY_ENTRY_U32(
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										sensor->prop_names.clock_frequency,
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										sensor->ssdb.mclkspeed);
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						sensor->dev_properties[1] = PROPERTY_ENTRY_U8(
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										sensor->prop_names.rotation,
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										sensor->ssdb.degree);
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						sensor->ep_properties[0] = PROPERTY_ENTRY_U32(
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										sensor->prop_names.bus_type,
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										V4L2_FWNODE_BUS_TYPE_CSI2_DPHY);
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						sensor->ep_properties[1] = PROPERTY_ENTRY_U32_ARRAY_LEN(
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										sensor->prop_names.data_lanes,
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										bridge->data_lanes,
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										sensor->ssdb.lanes);
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						sensor->ep_properties[2] = PROPERTY_ENTRY_REF_ARRAY(
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										sensor->prop_names.remote_endpoint,
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										sensor->local_ref);
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						if (cfg->nr_link_freqs > 0)
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							sensor->ep_properties[3] = PROPERTY_ENTRY_U64_ARRAY_LEN(
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								sensor->prop_names.link_frequencies,
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								cfg->link_freqs,
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								cfg->nr_link_freqs);
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						sensor->cio2_properties[0] = PROPERTY_ENTRY_U32_ARRAY_LEN(
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										sensor->prop_names.data_lanes,
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										bridge->data_lanes,
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										sensor->ssdb.lanes);
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						sensor->cio2_properties[1] = PROPERTY_ENTRY_REF_ARRAY(
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										sensor->prop_names.remote_endpoint,
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										sensor->remote_ref);
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					}
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					static void cio2_bridge_init_swnode_names(struct cio2_sensor *sensor)
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					{
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						snprintf(sensor->node_names.remote_port,
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							 sizeof(sensor->node_names.remote_port),
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							 SWNODE_GRAPH_PORT_NAME_FMT, sensor->ssdb.link);
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						snprintf(sensor->node_names.port,
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							 sizeof(sensor->node_names.port),
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							 SWNODE_GRAPH_PORT_NAME_FMT, 0); /* Always port 0 */
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						snprintf(sensor->node_names.endpoint,
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							 sizeof(sensor->node_names.endpoint),
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							 SWNODE_GRAPH_ENDPOINT_NAME_FMT, 0); /* And endpoint 0 */
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					}
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					static void cio2_bridge_create_connection_swnodes(struct cio2_bridge *bridge,
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											  struct cio2_sensor *sensor)
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					{
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						struct software_node *nodes = sensor->swnodes;
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						cio2_bridge_init_swnode_names(sensor);
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						nodes[SWNODE_SENSOR_HID] = NODE_SENSOR(sensor->name,
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										       sensor->dev_properties);
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						nodes[SWNODE_SENSOR_PORT] = NODE_PORT(sensor->node_names.port,
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										      &nodes[SWNODE_SENSOR_HID]);
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						nodes[SWNODE_SENSOR_ENDPOINT] = NODE_ENDPOINT(
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											sensor->node_names.endpoint,
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											&nodes[SWNODE_SENSOR_PORT],
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											sensor->ep_properties);
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						nodes[SWNODE_CIO2_PORT] = NODE_PORT(sensor->node_names.remote_port,
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										    &bridge->cio2_hid_node);
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						nodes[SWNODE_CIO2_ENDPOINT] = NODE_ENDPOINT(
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											sensor->node_names.endpoint,
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											&nodes[SWNODE_CIO2_PORT],
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											sensor->cio2_properties);
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					}
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					static void cio2_bridge_unregister_sensors(struct cio2_bridge *bridge)
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					{
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						struct cio2_sensor *sensor;
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						unsigned int i;
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						for (i = 0; i < bridge->n_sensors; i++) {
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							sensor = &bridge->sensors[i];
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							software_node_unregister_nodes(sensor->swnodes);
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							acpi_dev_put(sensor->adev);
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						}
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					}
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					static int cio2_bridge_connect_sensor(const struct cio2_sensor_config *cfg,
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									      struct cio2_bridge *bridge,
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									      struct pci_dev *cio2)
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					{
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						struct fwnode_handle *fwnode;
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						struct cio2_sensor *sensor;
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						struct acpi_device *adev;
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						int ret;
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						for_each_acpi_dev_match(adev, cfg->hid, NULL, -1) {
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							if (!adev->status.enabled)
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								continue;
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							if (bridge->n_sensors >= CIO2_NUM_PORTS) {
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								dev_err(&cio2->dev, "Exceeded available CIO2 ports\n");
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								cio2_bridge_unregister_sensors(bridge);
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								ret = -EINVAL;
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								goto err_out;
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							}
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							sensor = &bridge->sensors[bridge->n_sensors];
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							sensor->adev = adev;
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							strscpy(sensor->name, cfg->hid, sizeof(sensor->name));
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							ret = cio2_bridge_read_acpi_buffer(adev, "SSDB",
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											   &sensor->ssdb,
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											   sizeof(sensor->ssdb));
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							if (ret)
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								goto err_put_adev;
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							if (sensor->ssdb.lanes > CIO2_MAX_LANES) {
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								dev_err(&adev->dev,
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									"Number of lanes in SSDB is invalid\n");
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								ret = -EINVAL;
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								goto err_put_adev;
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							}
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							cio2_bridge_create_fwnode_properties(sensor, bridge, cfg);
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							cio2_bridge_create_connection_swnodes(bridge, sensor);
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							ret = software_node_register_nodes(sensor->swnodes);
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							if (ret)
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								goto err_put_adev;
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							fwnode = software_node_fwnode(&sensor->swnodes[
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											      SWNODE_SENSOR_HID]);
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							if (!fwnode) {
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								ret = -ENODEV;
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								goto err_free_swnodes;
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							}
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							adev->fwnode.secondary = fwnode;
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							dev_info(&cio2->dev, "Found supported sensor %s\n",
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								 acpi_dev_name(adev));
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							bridge->n_sensors++;
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						}
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			||||||
 | 
					
 | 
				
			||||||
 | 
						return 0;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					err_free_swnodes:
 | 
				
			||||||
 | 
						software_node_unregister_nodes(sensor->swnodes);
 | 
				
			||||||
 | 
					err_put_adev:
 | 
				
			||||||
 | 
						acpi_dev_put(sensor->adev);
 | 
				
			||||||
 | 
					err_out:
 | 
				
			||||||
 | 
						return ret;
 | 
				
			||||||
 | 
					}
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					static int cio2_bridge_connect_sensors(struct cio2_bridge *bridge,
 | 
				
			||||||
 | 
									       struct pci_dev *cio2)
 | 
				
			||||||
 | 
					{
 | 
				
			||||||
 | 
						unsigned int i;
 | 
				
			||||||
 | 
						int ret;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
						for (i = 0; i < ARRAY_SIZE(cio2_supported_sensors); i++) {
 | 
				
			||||||
 | 
							const struct cio2_sensor_config *cfg =
 | 
				
			||||||
 | 
								&cio2_supported_sensors[i];
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
							ret = cio2_bridge_connect_sensor(cfg, bridge, cio2);
 | 
				
			||||||
 | 
							if (ret)
 | 
				
			||||||
 | 
								goto err_unregister_sensors;
 | 
				
			||||||
 | 
						}
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
						return 0;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					err_unregister_sensors:
 | 
				
			||||||
 | 
						cio2_bridge_unregister_sensors(bridge);
 | 
				
			||||||
 | 
						return ret;
 | 
				
			||||||
 | 
					}
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					int cio2_bridge_init(struct pci_dev *cio2)
 | 
				
			||||||
 | 
					{
 | 
				
			||||||
 | 
						struct device *dev = &cio2->dev;
 | 
				
			||||||
 | 
						struct fwnode_handle *fwnode;
 | 
				
			||||||
 | 
						struct cio2_bridge *bridge;
 | 
				
			||||||
 | 
						unsigned int i;
 | 
				
			||||||
 | 
						int ret;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
						bridge = kzalloc(sizeof(*bridge), GFP_KERNEL);
 | 
				
			||||||
 | 
						if (!bridge)
 | 
				
			||||||
 | 
							return -ENOMEM;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
						strscpy(bridge->cio2_node_name, CIO2_HID,
 | 
				
			||||||
 | 
							sizeof(bridge->cio2_node_name));
 | 
				
			||||||
 | 
						bridge->cio2_hid_node.name = bridge->cio2_node_name;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
						ret = software_node_register(&bridge->cio2_hid_node);
 | 
				
			||||||
 | 
						if (ret < 0) {
 | 
				
			||||||
 | 
							dev_err(dev, "Failed to register the CIO2 HID node\n");
 | 
				
			||||||
 | 
							goto err_free_bridge;
 | 
				
			||||||
 | 
						}
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
						/*
 | 
				
			||||||
 | 
						 * Map the lane arrangement, which is fixed for the IPU3 (meaning we
 | 
				
			||||||
 | 
						 * only need one, rather than one per sensor). We include it as a
 | 
				
			||||||
 | 
						 * member of the struct cio2_bridge rather than a global variable so
 | 
				
			||||||
 | 
						 * that it survives if the module is unloaded along with the rest of
 | 
				
			||||||
 | 
						 * the struct.
 | 
				
			||||||
 | 
						 */
 | 
				
			||||||
 | 
						for (i = 0; i < CIO2_MAX_LANES; i++)
 | 
				
			||||||
 | 
							bridge->data_lanes[i] = i + 1;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
						ret = cio2_bridge_connect_sensors(bridge, cio2);
 | 
				
			||||||
 | 
						if (ret || bridge->n_sensors == 0)
 | 
				
			||||||
 | 
							goto err_unregister_cio2;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
						dev_info(dev, "Connected %d cameras\n", bridge->n_sensors);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
						fwnode = software_node_fwnode(&bridge->cio2_hid_node);
 | 
				
			||||||
 | 
						if (!fwnode) {
 | 
				
			||||||
 | 
							dev_err(dev, "Error getting fwnode from cio2 software_node\n");
 | 
				
			||||||
 | 
							ret = -ENODEV;
 | 
				
			||||||
 | 
							goto err_unregister_sensors;
 | 
				
			||||||
 | 
						}
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
						set_secondary_fwnode(dev, fwnode);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
						return 0;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					err_unregister_sensors:
 | 
				
			||||||
 | 
						cio2_bridge_unregister_sensors(bridge);
 | 
				
			||||||
 | 
					err_unregister_cio2:
 | 
				
			||||||
 | 
						software_node_unregister(&bridge->cio2_hid_node);
 | 
				
			||||||
 | 
					err_free_bridge:
 | 
				
			||||||
 | 
						kfree(bridge);
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
						return ret;
 | 
				
			||||||
 | 
					}
 | 
				
			||||||
							
								
								
									
										125
									
								
								drivers/media/pci/intel/ipu3/cio2-bridge.h
									
									
									
									
									
										Normal file
									
								
							
							
						
						
									
										125
									
								
								drivers/media/pci/intel/ipu3/cio2-bridge.h
									
									
									
									
									
										Normal file
									
								
							| 
						 | 
					@ -0,0 +1,125 @@
 | 
				
			||||||
 | 
					/* SPDX-License-Identifier: GPL-2.0 */
 | 
				
			||||||
 | 
					/* Author: Dan Scally <djrscally@gmail.com> */
 | 
				
			||||||
 | 
					#ifndef __CIO2_BRIDGE_H
 | 
				
			||||||
 | 
					#define __CIO2_BRIDGE_H
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					#include <linux/property.h>
 | 
				
			||||||
 | 
					#include <linux/types.h>
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					#include "ipu3-cio2.h"
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					#define CIO2_HID				"INT343E"
 | 
				
			||||||
 | 
					#define CIO2_MAX_LANES				4
 | 
				
			||||||
 | 
					#define MAX_NUM_LINK_FREQS			3
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					#define CIO2_SENSOR_CONFIG(_HID, _NR, ...)	\
 | 
				
			||||||
 | 
						(const struct cio2_sensor_config) {	\
 | 
				
			||||||
 | 
							.hid = _HID,			\
 | 
				
			||||||
 | 
							.nr_link_freqs = _NR,		\
 | 
				
			||||||
 | 
							.link_freqs = { __VA_ARGS__ }	\
 | 
				
			||||||
 | 
						}
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					#define NODE_SENSOR(_HID, _PROPS)		\
 | 
				
			||||||
 | 
						(const struct software_node) {		\
 | 
				
			||||||
 | 
							.name = _HID,			\
 | 
				
			||||||
 | 
							.properties = _PROPS,		\
 | 
				
			||||||
 | 
						}
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					#define NODE_PORT(_PORT, _SENSOR_NODE)		\
 | 
				
			||||||
 | 
						(const struct software_node) {		\
 | 
				
			||||||
 | 
							.name = _PORT,			\
 | 
				
			||||||
 | 
							.parent = _SENSOR_NODE,		\
 | 
				
			||||||
 | 
						}
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					#define NODE_ENDPOINT(_EP, _PORT, _PROPS)	\
 | 
				
			||||||
 | 
						(const struct software_node) {		\
 | 
				
			||||||
 | 
							.name = _EP,			\
 | 
				
			||||||
 | 
							.parent = _PORT,		\
 | 
				
			||||||
 | 
							.properties = _PROPS,		\
 | 
				
			||||||
 | 
						}
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					enum cio2_sensor_swnodes {
 | 
				
			||||||
 | 
						SWNODE_SENSOR_HID,
 | 
				
			||||||
 | 
						SWNODE_SENSOR_PORT,
 | 
				
			||||||
 | 
						SWNODE_SENSOR_ENDPOINT,
 | 
				
			||||||
 | 
						SWNODE_CIO2_PORT,
 | 
				
			||||||
 | 
						SWNODE_CIO2_ENDPOINT,
 | 
				
			||||||
 | 
						SWNODE_COUNT
 | 
				
			||||||
 | 
					};
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					/* Data representation as it is in ACPI SSDB buffer */
 | 
				
			||||||
 | 
					struct cio2_sensor_ssdb {
 | 
				
			||||||
 | 
						u8 version;
 | 
				
			||||||
 | 
						u8 sku;
 | 
				
			||||||
 | 
						u8 guid_csi2[16];
 | 
				
			||||||
 | 
						u8 devfunction;
 | 
				
			||||||
 | 
						u8 bus;
 | 
				
			||||||
 | 
						u32 dphylinkenfuses;
 | 
				
			||||||
 | 
						u32 clockdiv;
 | 
				
			||||||
 | 
						u8 link;
 | 
				
			||||||
 | 
						u8 lanes;
 | 
				
			||||||
 | 
						u32 csiparams[10];
 | 
				
			||||||
 | 
						u32 maxlanespeed;
 | 
				
			||||||
 | 
						u8 sensorcalibfileidx;
 | 
				
			||||||
 | 
						u8 sensorcalibfileidxInMBZ[3];
 | 
				
			||||||
 | 
						u8 romtype;
 | 
				
			||||||
 | 
						u8 vcmtype;
 | 
				
			||||||
 | 
						u8 platforminfo;
 | 
				
			||||||
 | 
						u8 platformsubinfo;
 | 
				
			||||||
 | 
						u8 flash;
 | 
				
			||||||
 | 
						u8 privacyled;
 | 
				
			||||||
 | 
						u8 degree;
 | 
				
			||||||
 | 
						u8 mipilinkdefined;
 | 
				
			||||||
 | 
						u32 mclkspeed;
 | 
				
			||||||
 | 
						u8 controllogicid;
 | 
				
			||||||
 | 
						u8 reserved1[3];
 | 
				
			||||||
 | 
						u8 mclkport;
 | 
				
			||||||
 | 
						u8 reserved2[13];
 | 
				
			||||||
 | 
					} __packed;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					struct cio2_property_names {
 | 
				
			||||||
 | 
						char clock_frequency[16];
 | 
				
			||||||
 | 
						char rotation[9];
 | 
				
			||||||
 | 
						char bus_type[9];
 | 
				
			||||||
 | 
						char data_lanes[11];
 | 
				
			||||||
 | 
						char remote_endpoint[16];
 | 
				
			||||||
 | 
						char link_frequencies[17];
 | 
				
			||||||
 | 
					};
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					struct cio2_node_names {
 | 
				
			||||||
 | 
						char port[7];
 | 
				
			||||||
 | 
						char endpoint[11];
 | 
				
			||||||
 | 
						char remote_port[7];
 | 
				
			||||||
 | 
					};
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					struct cio2_sensor_config {
 | 
				
			||||||
 | 
						const char *hid;
 | 
				
			||||||
 | 
						const u8 nr_link_freqs;
 | 
				
			||||||
 | 
						const u64 link_freqs[MAX_NUM_LINK_FREQS];
 | 
				
			||||||
 | 
					};
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					struct cio2_sensor {
 | 
				
			||||||
 | 
						char name[ACPI_ID_LEN];
 | 
				
			||||||
 | 
						struct acpi_device *adev;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
						struct software_node swnodes[6];
 | 
				
			||||||
 | 
						struct cio2_node_names node_names;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
						struct cio2_sensor_ssdb ssdb;
 | 
				
			||||||
 | 
						struct cio2_property_names prop_names;
 | 
				
			||||||
 | 
						struct property_entry ep_properties[5];
 | 
				
			||||||
 | 
						struct property_entry dev_properties[3];
 | 
				
			||||||
 | 
						struct property_entry cio2_properties[3];
 | 
				
			||||||
 | 
						struct software_node_ref_args local_ref[1];
 | 
				
			||||||
 | 
						struct software_node_ref_args remote_ref[1];
 | 
				
			||||||
 | 
					};
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					struct cio2_bridge {
 | 
				
			||||||
 | 
						char cio2_node_name[ACPI_ID_LEN];
 | 
				
			||||||
 | 
						struct software_node cio2_hid_node;
 | 
				
			||||||
 | 
						u32 data_lanes[4];
 | 
				
			||||||
 | 
						unsigned int n_sensors;
 | 
				
			||||||
 | 
						struct cio2_sensor sensors[CIO2_NUM_PORTS];
 | 
				
			||||||
 | 
					};
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					#endif
 | 
				
			||||||
| 
						 | 
					@ -1702,11 +1702,28 @@ static void cio2_queues_exit(struct cio2_device *cio2)
 | 
				
			||||||
		cio2_queue_exit(cio2, &cio2->queue[i]);
 | 
							cio2_queue_exit(cio2, &cio2->queue[i]);
 | 
				
			||||||
}
 | 
					}
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					static int cio2_check_fwnode_graph(struct fwnode_handle *fwnode)
 | 
				
			||||||
 | 
					{
 | 
				
			||||||
 | 
						struct fwnode_handle *endpoint;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
						if (IS_ERR_OR_NULL(fwnode))
 | 
				
			||||||
 | 
							return -EINVAL;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
						endpoint = fwnode_graph_get_next_endpoint(fwnode, NULL);
 | 
				
			||||||
 | 
						if (endpoint) {
 | 
				
			||||||
 | 
							fwnode_handle_put(endpoint);
 | 
				
			||||||
 | 
							return 0;
 | 
				
			||||||
 | 
						}
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
						return cio2_check_fwnode_graph(fwnode->secondary);
 | 
				
			||||||
 | 
					}
 | 
				
			||||||
 | 
					
 | 
				
			||||||
/**************** PCI interface ****************/
 | 
					/**************** PCI interface ****************/
 | 
				
			||||||
 | 
					
 | 
				
			||||||
static int cio2_pci_probe(struct pci_dev *pci_dev,
 | 
					static int cio2_pci_probe(struct pci_dev *pci_dev,
 | 
				
			||||||
			  const struct pci_device_id *id)
 | 
								  const struct pci_device_id *id)
 | 
				
			||||||
{
 | 
					{
 | 
				
			||||||
 | 
						struct fwnode_handle *fwnode = dev_fwnode(&pci_dev->dev);
 | 
				
			||||||
	struct cio2_device *cio2;
 | 
						struct cio2_device *cio2;
 | 
				
			||||||
	int r;
 | 
						int r;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
| 
						 | 
					@ -1715,6 +1732,23 @@ static int cio2_pci_probe(struct pci_dev *pci_dev,
 | 
				
			||||||
		return -ENOMEM;
 | 
							return -ENOMEM;
 | 
				
			||||||
	cio2->pci_dev = pci_dev;
 | 
						cio2->pci_dev = pci_dev;
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
						/*
 | 
				
			||||||
 | 
						 * On some platforms no connections to sensors are defined in firmware,
 | 
				
			||||||
 | 
						 * if the device has no endpoints then we can try to build those as
 | 
				
			||||||
 | 
						 * software_nodes parsed from SSDB.
 | 
				
			||||||
 | 
						 */
 | 
				
			||||||
 | 
						r = cio2_check_fwnode_graph(fwnode);
 | 
				
			||||||
 | 
						if (r) {
 | 
				
			||||||
 | 
							if (fwnode && !IS_ERR_OR_NULL(fwnode->secondary)) {
 | 
				
			||||||
 | 
								dev_err(&pci_dev->dev, "fwnode graph has no endpoints connected\n");
 | 
				
			||||||
 | 
								return -EINVAL;
 | 
				
			||||||
 | 
							}
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
							r = cio2_bridge_init(pci_dev);
 | 
				
			||||||
 | 
							if (r)
 | 
				
			||||||
 | 
								return r;
 | 
				
			||||||
 | 
						}
 | 
				
			||||||
 | 
					
 | 
				
			||||||
	r = pcim_enable_device(pci_dev);
 | 
						r = pcim_enable_device(pci_dev);
 | 
				
			||||||
	if (r) {
 | 
						if (r) {
 | 
				
			||||||
		dev_err(&pci_dev->dev, "failed to enable device (%d)\n", r);
 | 
							dev_err(&pci_dev->dev, "failed to enable device (%d)\n", r);
 | 
				
			||||||
| 
						 | 
					
 | 
				
			||||||
| 
						 | 
					@ -455,4 +455,10 @@ static inline struct cio2_queue *vb2q_to_cio2_queue(struct vb2_queue *vq)
 | 
				
			||||||
	return container_of(vq, struct cio2_queue, vbq);
 | 
						return container_of(vq, struct cio2_queue, vbq);
 | 
				
			||||||
}
 | 
					}
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					#if IS_ENABLED(CONFIG_CIO2_BRIDGE)
 | 
				
			||||||
 | 
					int cio2_bridge_init(struct pci_dev *cio2);
 | 
				
			||||||
 | 
					#else
 | 
				
			||||||
 | 
					static inline int cio2_bridge_init(struct pci_dev *cio2) { return 0; }
 | 
				
			||||||
 | 
					#endif
 | 
				
			||||||
 | 
					
 | 
				
			||||||
#endif
 | 
					#endif
 | 
				
			||||||
| 
						 | 
					
 | 
				
			||||||
		Loading…
	
		Reference in a new issue