mirror of https://gitee.com/openkylin/linux.git
driver core: Add fw_devlink kernel commandline option
fwnode_operations.add_links allows creating device links from information provided by firmware. fwnode_operations.add_links is currently implemented only by OF/devicetree code and a specific case of efi. However, there's nothing preventing ACPI or other firmware types from implementing it. The OF implementation is currently controlled by a kernel commandline parameter called of_devlink. Since this feature is generic isn't limited to OF, add a generic fw_devlink kernel commandline parameter to control this feature across firmware types. Signed-off-by: Saravana Kannan <saravanak@google.com> Link: https://lore.kernel.org/r/20200222014038.180923-3-saravanak@google.com Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
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@ -1350,6 +1350,24 @@
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can be changed at run time by the max_graph_depth file
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in the tracefs tracing directory. default: 0 (no limit)
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fw_devlink= [KNL] Create device links between consumer and supplier
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devices by scanning the firmware to infer the
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consumer/supplier relationships. This feature is
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especially useful when drivers are loaded as modules as
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it ensures proper ordering of tasks like device probing
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(suppliers first, then consumers), supplier boot state
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clean up (only after all consumers have probed),
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suspend/resume & runtime PM (consumers first, then
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suppliers).
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Format: { off | permissive | on | rpm }
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off -- Don't create device links from firmware info.
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permissive -- Create device links from firmware info
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but use it only for ordering boot state clean
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up (sync_state() calls).
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on -- Create device links from firmware info and use it
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to enforce probe and suspend/resume ordering.
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rpm -- Like "on", but also use to order runtime PM.
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gamecon.map[2|3]=
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[HW,JOY] Multisystem joystick and NES/SNES/PSX pad
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support via parallel port (up to 5 devices per port)
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@ -2332,6 +2332,31 @@ static int device_private_init(struct device *dev)
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return 0;
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}
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u32 fw_devlink_flags;
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static int __init fw_devlink_setup(char *arg)
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{
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if (!arg)
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return -EINVAL;
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if (strcmp(arg, "off") == 0) {
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fw_devlink_flags = 0;
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} else if (strcmp(arg, "permissive") == 0) {
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fw_devlink_flags = DL_FLAG_SYNC_STATE_ONLY;
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} else if (strcmp(arg, "on") == 0) {
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fw_devlink_flags = DL_FLAG_AUTOPROBE_CONSUMER;
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} else if (strcmp(arg, "rpm") == 0) {
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fw_devlink_flags = DL_FLAG_AUTOPROBE_CONSUMER |
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DL_FLAG_PM_RUNTIME;
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}
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return 0;
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}
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early_param("fw_devlink", fw_devlink_setup);
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u32 fw_devlink_get_flags(void)
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{
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return fw_devlink_flags;
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}
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/**
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* device_add - add device to device hierarchy.
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* @dev: device.
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@ -2480,7 +2505,7 @@ int device_add(struct device *dev)
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*/
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device_link_add_missing_supplier_links();
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if (fwnode_has_op(dev->fwnode, add_links)) {
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if (fw_devlink_flags && fwnode_has_op(dev->fwnode, add_links)) {
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fw_ret = fwnode_call_int_op(dev->fwnode, add_links, dev);
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if (fw_ret == -ENODEV)
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device_link_wait_for_mandatory_supplier(dev);
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@ -170,4 +170,6 @@ struct fwnode_operations {
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} while (false)
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#define get_dev_from_fwnode(fwnode) get_device((fwnode)->dev)
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extern u32 fw_devlink_get_flags(void);
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#endif
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