mirror of
https://git.rtems.org/rtems-libbsd/
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787 lines
30 KiB
C
787 lines
30 KiB
C
/*
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* This file is produced automatically.
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* Do not modify anything in here by hand.
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*
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* Created from source file
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* kern/bus_if.m
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* with
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* makeobjops.awk
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*
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* See the source file for legal information
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*/
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/**
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* @defgroup BUS bus - KObj methods for drivers of devices with children
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* @brief A set of methods required device drivers that support
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* child devices.
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* @{
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*/
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#ifndef _bus_if_h_
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#define _bus_if_h_
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/** @brief Unique descriptor for the BUS_PRINT_CHILD() method */
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extern struct kobjop_desc bus_print_child_desc;
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/** @brief A function implementing the BUS_PRINT_CHILD() method */
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typedef int bus_print_child_t(device_t _dev, device_t _child);
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/**
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* @brief Print a description of a child device
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*
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* This is called from system code which prints out a description of a
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* device. It should describe the attachment that the child has with
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* the parent. For instance the TurboLaser bus prints which node the
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* device is attached to. See bus_generic_print_child() for more
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* information.
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*
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* @param _dev the device whose child is being printed
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* @param _child the child device to describe
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*
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* @returns the number of characters output.
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*/
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static __inline int BUS_PRINT_CHILD(device_t _dev, device_t _child)
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{
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kobjop_t _m;
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KOBJOPLOOKUP(((kobj_t)_dev)->ops,bus_print_child);
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return ((bus_print_child_t *) _m)(_dev, _child);
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}
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/** @brief Unique descriptor for the BUS_PROBE_NOMATCH() method */
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extern struct kobjop_desc bus_probe_nomatch_desc;
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/** @brief A function implementing the BUS_PROBE_NOMATCH() method */
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typedef void bus_probe_nomatch_t(device_t _dev, device_t _child);
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/**
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* @brief Print a notification about an unprobed child device.
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*
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* Called for each child device that did not succeed in probing for a
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* driver.
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*
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* @param _dev the device whose child was being probed
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* @param _child the child device which failed to probe
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*/
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static __inline void BUS_PROBE_NOMATCH(device_t _dev, device_t _child)
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{
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kobjop_t _m;
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KOBJOPLOOKUP(((kobj_t)_dev)->ops,bus_probe_nomatch);
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((bus_probe_nomatch_t *) _m)(_dev, _child);
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}
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/** @brief Unique descriptor for the BUS_READ_IVAR() method */
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extern struct kobjop_desc bus_read_ivar_desc;
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/** @brief A function implementing the BUS_READ_IVAR() method */
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typedef int bus_read_ivar_t(device_t _dev, device_t _child, int _index,
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uintptr_t *_result);
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/**
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* @brief Read the value of a bus-specific attribute of a device
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*
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* This method, along with BUS_WRITE_IVAR() manages a bus-specific set
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* of instance variables of a child device. The intention is that
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* each different type of bus defines a set of appropriate instance
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* variables (such as ports and irqs for ISA bus etc.)
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*
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* This information could be given to the child device as a struct but
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* that makes it hard for a bus to add or remove variables without
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* forcing an edit and recompile for all drivers which may not be
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* possible for vendor supplied binary drivers.
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*
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* This method copies the value of an instance variable to the
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* location specified by @p *_result.
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*
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* @param _dev the device whose child was being examined
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* @param _child the child device whose instance variable is
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* being read
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* @param _index the instance variable to read
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* @param _result a loction to recieve the instance variable
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* value
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*
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* @retval 0 success
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* @retval ENOENT no such instance variable is supported by @p
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* _dev
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*/
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static __inline int BUS_READ_IVAR(device_t _dev, device_t _child, int _index,
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uintptr_t *_result)
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{
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kobjop_t _m;
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KOBJOPLOOKUP(((kobj_t)_dev)->ops,bus_read_ivar);
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return ((bus_read_ivar_t *) _m)(_dev, _child, _index, _result);
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}
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/** @brief Unique descriptor for the BUS_WRITE_IVAR() method */
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extern struct kobjop_desc bus_write_ivar_desc;
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/** @brief A function implementing the BUS_WRITE_IVAR() method */
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typedef int bus_write_ivar_t(device_t _dev, device_t _child, int _indx,
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uintptr_t _value);
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/**
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* @brief Write the value of a bus-specific attribute of a device
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*
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* This method sets the value of an instance variable to @p _value.
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*
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* @param _dev the device whose child was being updated
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* @param _child the child device whose instance variable is
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* being written
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* @param _index the instance variable to write
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* @param _value the value to write to that instance variable
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*
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* @retval 0 success
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* @retval ENOENT no such instance variable is supported by @p
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* _dev
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* @retval EINVAL the instance variable was recognised but
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* contains a read-only value
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*/
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static __inline int BUS_WRITE_IVAR(device_t _dev, device_t _child, int _indx,
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uintptr_t _value)
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{
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kobjop_t _m;
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KOBJOPLOOKUP(((kobj_t)_dev)->ops,bus_write_ivar);
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return ((bus_write_ivar_t *) _m)(_dev, _child, _indx, _value);
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}
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/** @brief Unique descriptor for the BUS_CHILD_DETACHED() method */
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extern struct kobjop_desc bus_child_detached_desc;
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/** @brief A function implementing the BUS_CHILD_DETACHED() method */
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typedef void bus_child_detached_t(device_t _dev, device_t _child);
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/**
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* @brief Notify a bus that a child was detached
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*
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* Called after the child's DEVICE_DETACH() method to allow the parent
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* to reclaim any resources allocated on behalf of the child.
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*
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* @param _dev the device whose child changed state
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* @param _child the child device which changed state
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*/
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static __inline void BUS_CHILD_DETACHED(device_t _dev, device_t _child)
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{
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kobjop_t _m;
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KOBJOPLOOKUP(((kobj_t)_dev)->ops,bus_child_detached);
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((bus_child_detached_t *) _m)(_dev, _child);
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}
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/** @brief Unique descriptor for the BUS_DRIVER_ADDED() method */
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extern struct kobjop_desc bus_driver_added_desc;
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/** @brief A function implementing the BUS_DRIVER_ADDED() method */
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typedef void bus_driver_added_t(device_t _dev, driver_t *_driver);
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/**
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* @brief Notify a bus that a new driver was added
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*
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* Called when a new driver is added to the devclass which owns this
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* bus. The generic implementation of this method attempts to probe and
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* attach any un-matched children of the bus.
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*
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* @param _dev the device whose devclass had a new driver
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* added to it
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* @param _driver the new driver which was added
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*/
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static __inline void BUS_DRIVER_ADDED(device_t _dev, driver_t *_driver)
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{
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kobjop_t _m;
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KOBJOPLOOKUP(((kobj_t)_dev)->ops,bus_driver_added);
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((bus_driver_added_t *) _m)(_dev, _driver);
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}
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/** @brief Unique descriptor for the BUS_ADD_CHILD() method */
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extern struct kobjop_desc bus_add_child_desc;
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/** @brief A function implementing the BUS_ADD_CHILD() method */
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typedef device_t bus_add_child_t(device_t _dev, u_int _order, const char *_name,
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int _unit);
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/**
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* @brief Create a new child device
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*
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* For busses which use use drivers supporting DEVICE_IDENTIFY() to
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* enumerate their devices, this method is used to create new
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* device instances. The new device will be added after the last
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* existing child with the same order.
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*
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* @param _dev the bus device which will be the parent of the
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* new child device
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* @param _order a value which is used to partially sort the
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* children of @p _dev - devices created using
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* lower values of @p _order appear first in @p
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* _dev's list of children
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* @param _name devclass name for new device or @c NULL if not
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* specified
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* @param _unit unit number for new device or @c -1 if not
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* specified
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*/
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static __inline device_t BUS_ADD_CHILD(device_t _dev, u_int _order,
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const char *_name, int _unit)
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{
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kobjop_t _m;
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KOBJOPLOOKUP(((kobj_t)_dev)->ops,bus_add_child);
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return ((bus_add_child_t *) _m)(_dev, _order, _name, _unit);
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}
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/** @brief Unique descriptor for the BUS_ALLOC_RESOURCE() method */
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extern struct kobjop_desc bus_alloc_resource_desc;
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/** @brief A function implementing the BUS_ALLOC_RESOURCE() method */
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typedef struct resource * bus_alloc_resource_t(device_t _dev, device_t _child,
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int _type, int *_rid,
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u_long _start, u_long _end,
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u_long _count, u_int _flags);
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/**
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* @brief Allocate a system resource
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*
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* This method is called by child devices of a bus to allocate resources.
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* The types are defined in <machine/resource.h>; the meaning of the
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* resource-ID field varies from bus to bus (but @p *rid == 0 is always
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* valid if the resource type is). If a resource was allocated and the
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* caller did not use the RF_ACTIVE to specify that it should be
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* activated immediately, the caller is responsible for calling
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* BUS_ACTIVATE_RESOURCE() when it actually uses the resource.
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*
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* @param _dev the parent device of @p _child
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* @param _child the device which is requesting an allocation
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* @param _type the type of resource to allocate
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* @param _rid a pointer to the resource identifier
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* @param _start hint at the start of the resource range - pass
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* @c 0UL for any start address
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* @param _end hint at the end of the resource range - pass
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* @c ~0UL for any end address
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* @param _count hint at the size of range required - pass @c 1
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* for any size
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* @param _flags any extra flags to control the resource
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* allocation - see @c RF_XXX flags in
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* <sys/rman.h> for details
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*
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* @returns the resource which was allocated or @c NULL if no
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* resource could be allocated
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*/
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static __inline struct resource * BUS_ALLOC_RESOURCE(device_t _dev,
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device_t _child, int _type,
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int *_rid, u_long _start,
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u_long _end, u_long _count,
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u_int _flags)
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{
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kobjop_t _m;
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KOBJOPLOOKUP(((kobj_t)_dev)->ops,bus_alloc_resource);
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return ((bus_alloc_resource_t *) _m)(_dev, _child, _type, _rid, _start, _end, _count, _flags);
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}
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/** @brief Unique descriptor for the BUS_ACTIVATE_RESOURCE() method */
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extern struct kobjop_desc bus_activate_resource_desc;
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/** @brief A function implementing the BUS_ACTIVATE_RESOURCE() method */
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typedef int bus_activate_resource_t(device_t _dev, device_t _child, int _type,
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int _rid, struct resource *_r);
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/**
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* @brief Activate a resource
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*
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* Activate a resource previously allocated with
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* BUS_ALLOC_RESOURCE(). This may for instance map a memory region
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* into the kernel's virtual address space.
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*
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* @param _dev the parent device of @p _child
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* @param _child the device which allocated the resource
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* @param _type the type of resource
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* @param _rid the resource identifier
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* @param _r the resource to activate
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*/
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static __inline int BUS_ACTIVATE_RESOURCE(device_t _dev, device_t _child,
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int _type, int _rid,
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struct resource *_r)
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{
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kobjop_t _m;
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KOBJOPLOOKUP(((kobj_t)_dev)->ops,bus_activate_resource);
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return ((bus_activate_resource_t *) _m)(_dev, _child, _type, _rid, _r);
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}
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/** @brief Unique descriptor for the BUS_DEACTIVATE_RESOURCE() method */
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extern struct kobjop_desc bus_deactivate_resource_desc;
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/** @brief A function implementing the BUS_DEACTIVATE_RESOURCE() method */
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typedef int bus_deactivate_resource_t(device_t _dev, device_t _child, int _type,
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int _rid, struct resource *_r);
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/**
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* @brief Deactivate a resource
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*
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* Deactivate a resource previously allocated with
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* BUS_ALLOC_RESOURCE(). This may for instance unmap a memory region
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* from the kernel's virtual address space.
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*
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* @param _dev the parent device of @p _child
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* @param _child the device which allocated the resource
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* @param _type the type of resource
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* @param _rid the resource identifier
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* @param _r the resource to deactivate
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*/
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static __inline int BUS_DEACTIVATE_RESOURCE(device_t _dev, device_t _child,
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int _type, int _rid,
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struct resource *_r)
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{
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kobjop_t _m;
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KOBJOPLOOKUP(((kobj_t)_dev)->ops,bus_deactivate_resource);
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return ((bus_deactivate_resource_t *) _m)(_dev, _child, _type, _rid, _r);
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}
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/** @brief Unique descriptor for the BUS_RELEASE_RESOURCE() method */
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extern struct kobjop_desc bus_release_resource_desc;
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/** @brief A function implementing the BUS_RELEASE_RESOURCE() method */
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typedef int bus_release_resource_t(device_t _dev, device_t _child, int _type,
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int _rid, struct resource *_res);
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/**
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* @brief Release a resource
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*
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* Free a resource allocated by the BUS_ALLOC_RESOURCE. The @p _rid
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* value must be the same as the one returned by BUS_ALLOC_RESOURCE()
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* (which is not necessarily the same as the one the client passed).
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*
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* @param _dev the parent device of @p _child
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* @param _child the device which allocated the resource
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* @param _type the type of resource
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* @param _rid the resource identifier
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* @param _r the resource to release
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*/
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static __inline int BUS_RELEASE_RESOURCE(device_t _dev, device_t _child,
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int _type, int _rid,
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struct resource *_res)
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{
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kobjop_t _m;
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KOBJOPLOOKUP(((kobj_t)_dev)->ops,bus_release_resource);
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return ((bus_release_resource_t *) _m)(_dev, _child, _type, _rid, _res);
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}
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/** @brief Unique descriptor for the BUS_SETUP_INTR() method */
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extern struct kobjop_desc bus_setup_intr_desc;
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/** @brief A function implementing the BUS_SETUP_INTR() method */
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typedef int bus_setup_intr_t(device_t _dev, device_t _child,
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struct resource *_irq, int _flags,
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driver_filter_t *_filter, driver_intr_t *_intr,
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void *_arg, void **_cookiep);
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/**
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* @brief Install an interrupt handler
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*
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* This method is used to associate an interrupt handler function with
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* an irq resource. When the interrupt triggers, the function @p _intr
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* will be called with the value of @p _arg as its single
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* argument. The value returned in @p *_cookiep is used to cancel the
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* interrupt handler - the caller should save this value to use in a
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* future call to BUS_TEARDOWN_INTR().
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*
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* @param _dev the parent device of @p _child
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* @param _child the device which allocated the resource
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* @param _irq the resource representing the interrupt
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* @param _flags a set of bits from enum intr_type specifying
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* the class of interrupt
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* @param _intr the function to call when the interrupt
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* triggers
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* @param _arg a value to use as the single argument in calls
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* to @p _intr
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* @param _cookiep a pointer to a location to recieve a cookie
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* value that may be used to remove the interrupt
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* handler
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*/
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static __inline int BUS_SETUP_INTR(device_t _dev, device_t _child,
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struct resource *_irq, int _flags,
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driver_filter_t *_filter,
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driver_intr_t *_intr, void *_arg,
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void **_cookiep)
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{
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kobjop_t _m;
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KOBJOPLOOKUP(((kobj_t)_dev)->ops,bus_setup_intr);
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return ((bus_setup_intr_t *) _m)(_dev, _child, _irq, _flags, _filter, _intr, _arg, _cookiep);
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}
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/** @brief Unique descriptor for the BUS_TEARDOWN_INTR() method */
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extern struct kobjop_desc bus_teardown_intr_desc;
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/** @brief A function implementing the BUS_TEARDOWN_INTR() method */
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typedef int bus_teardown_intr_t(device_t _dev, device_t _child,
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struct resource *_irq, void *_cookie);
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/**
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* @brief Uninstall an interrupt handler
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*
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* This method is used to disassociate an interrupt handler function
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* with an irq resource. The value of @p _cookie must be the value
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* returned from a previous call to BUS_SETUP_INTR().
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*
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* @param _dev the parent device of @p _child
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* @param _child the device which allocated the resource
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* @param _irq the resource representing the interrupt
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* @param _cookie the cookie value returned when the interrupt
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* was originally registered
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*/
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static __inline int BUS_TEARDOWN_INTR(device_t _dev, device_t _child,
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struct resource *_irq, void *_cookie)
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{
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kobjop_t _m;
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KOBJOPLOOKUP(((kobj_t)_dev)->ops,bus_teardown_intr);
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return ((bus_teardown_intr_t *) _m)(_dev, _child, _irq, _cookie);
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}
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/** @brief Unique descriptor for the BUS_SET_RESOURCE() method */
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extern struct kobjop_desc bus_set_resource_desc;
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/** @brief A function implementing the BUS_SET_RESOURCE() method */
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typedef int bus_set_resource_t(device_t _dev, device_t _child, int _type,
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int _rid, u_long _start, u_long _count);
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/**
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* @brief Define a resource which can be allocated with
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* BUS_ALLOC_RESOURCE().
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*
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* This method is used by some busses (typically ISA) to allow a
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* driver to describe a resource range that it would like to
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* allocate. The resource defined by @p _type and @p _rid is defined
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* to start at @p _start and to include @p _count indices in its
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* range.
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*
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* @param _dev the parent device of @p _child
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* @param _child the device which owns the resource
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* @param _type the type of resource
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* @param _rid the resource identifier
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* @param _start the start of the resource range
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* @param _count the size of the resource range
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*/
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static __inline int BUS_SET_RESOURCE(device_t _dev, device_t _child, int _type,
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int _rid, u_long _start, u_long _count)
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{
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kobjop_t _m;
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KOBJOPLOOKUP(((kobj_t)_dev)->ops,bus_set_resource);
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return ((bus_set_resource_t *) _m)(_dev, _child, _type, _rid, _start, _count);
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}
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/** @brief Unique descriptor for the BUS_GET_RESOURCE() method */
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extern struct kobjop_desc bus_get_resource_desc;
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/** @brief A function implementing the BUS_GET_RESOURCE() method */
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typedef int bus_get_resource_t(device_t _dev, device_t _child, int _type,
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int _rid, u_long *_startp, u_long *_countp);
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/**
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* @brief Describe a resource
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*
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* This method allows a driver to examine the range used for a given
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* resource without actually allocating it.
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*
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* @param _dev the parent device of @p _child
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* @param _child the device which owns the resource
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* @param _type the type of resource
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* @param _rid the resource identifier
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* @param _start the address of a location to recieve the start
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* index of the resource range
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* @param _count the address of a location to recieve the size
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* of the resource range
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*/
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static __inline int BUS_GET_RESOURCE(device_t _dev, device_t _child, int _type,
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int _rid, u_long *_startp, u_long *_countp)
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{
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kobjop_t _m;
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KOBJOPLOOKUP(((kobj_t)_dev)->ops,bus_get_resource);
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return ((bus_get_resource_t *) _m)(_dev, _child, _type, _rid, _startp, _countp);
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}
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/** @brief Unique descriptor for the BUS_DELETE_RESOURCE() method */
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extern struct kobjop_desc bus_delete_resource_desc;
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/** @brief A function implementing the BUS_DELETE_RESOURCE() method */
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typedef void bus_delete_resource_t(device_t _dev, device_t _child, int _type,
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int _rid);
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/**
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* @brief Delete a resource.
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*
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* Use this to delete a resource (possibly one previously added with
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* BUS_SET_RESOURCE()).
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*
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* @param _dev the parent device of @p _child
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* @param _child the device which owns the resource
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* @param _type the type of resource
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* @param _rid the resource identifier
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*/
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static __inline void BUS_DELETE_RESOURCE(device_t _dev, device_t _child,
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int _type, int _rid)
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{
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kobjop_t _m;
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KOBJOPLOOKUP(((kobj_t)_dev)->ops,bus_delete_resource);
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((bus_delete_resource_t *) _m)(_dev, _child, _type, _rid);
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}
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/** @brief Unique descriptor for the BUS_GET_RESOURCE_LIST() method */
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extern struct kobjop_desc bus_get_resource_list_desc;
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/** @brief A function implementing the BUS_GET_RESOURCE_LIST() method */
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typedef struct resource_list * bus_get_resource_list_t(device_t _dev,
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device_t _child);
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/**
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* @brief Return a struct resource_list.
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*
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* Used by drivers which use bus_generic_rl_alloc_resource() etc. to
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* implement their resource handling. It should return the resource
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* list of the given child device.
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*
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* @param _dev the parent device of @p _child
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* @param _child the device which owns the resource list
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*/
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static __inline struct resource_list * BUS_GET_RESOURCE_LIST(device_t _dev,
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device_t _child)
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{
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kobjop_t _m;
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KOBJOPLOOKUP(((kobj_t)_dev)->ops,bus_get_resource_list);
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return ((bus_get_resource_list_t *) _m)(_dev, _child);
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}
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/** @brief Unique descriptor for the BUS_CHILD_PRESENT() method */
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extern struct kobjop_desc bus_child_present_desc;
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/** @brief A function implementing the BUS_CHILD_PRESENT() method */
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typedef int bus_child_present_t(device_t _dev, device_t _child);
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/**
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* @brief Is the hardware described by @p _child still attached to the
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* system?
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*
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* This method should return 0 if the device is not present. It
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* should return -1 if it is present. Any errors in determining
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* should be returned as a normal errno value. Client drivers are to
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* assume that the device is present, even if there is an error
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* determining if it is there. Busses are to try to avoid returning
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* errors, but newcard will return an error if the device fails to
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* implement this method.
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*
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* @param _dev the parent device of @p _child
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* @param _child the device which is being examined
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*/
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static __inline int BUS_CHILD_PRESENT(device_t _dev, device_t _child)
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{
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kobjop_t _m;
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KOBJOPLOOKUP(((kobj_t)_dev)->ops,bus_child_present);
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return ((bus_child_present_t *) _m)(_dev, _child);
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}
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/** @brief Unique descriptor for the BUS_CHILD_PNPINFO_STR() method */
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extern struct kobjop_desc bus_child_pnpinfo_str_desc;
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/** @brief A function implementing the BUS_CHILD_PNPINFO_STR() method */
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typedef int bus_child_pnpinfo_str_t(device_t _dev, device_t _child, char *_buf,
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size_t _buflen);
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/**
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* @brief Returns the pnp info for this device.
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*
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* Return it as a string. If the string is insufficient for the
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* storage, then return EOVERFLOW.
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*
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* @param _dev the parent device of @p _child
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* @param _child the device which is being examined
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* @param _buf the address of a buffer to receive the pnp
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* string
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* @param _buflen the size of the buffer pointed to by @p _buf
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*/
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static __inline int BUS_CHILD_PNPINFO_STR(device_t _dev, device_t _child,
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char *_buf, size_t _buflen)
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{
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kobjop_t _m;
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KOBJOPLOOKUP(((kobj_t)_dev)->ops,bus_child_pnpinfo_str);
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return ((bus_child_pnpinfo_str_t *) _m)(_dev, _child, _buf, _buflen);
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}
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/** @brief Unique descriptor for the BUS_CHILD_LOCATION_STR() method */
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extern struct kobjop_desc bus_child_location_str_desc;
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/** @brief A function implementing the BUS_CHILD_LOCATION_STR() method */
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typedef int bus_child_location_str_t(device_t _dev, device_t _child, char *_buf,
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size_t _buflen);
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/**
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* @brief Returns the location for this device.
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*
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* Return it as a string. If the string is insufficient for the
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* storage, then return EOVERFLOW.
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*
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* @param _dev the parent device of @p _child
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* @param _child the device which is being examined
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* @param _buf the address of a buffer to receive the location
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* string
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* @param _buflen the size of the buffer pointed to by @p _buf
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*/
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static __inline int BUS_CHILD_LOCATION_STR(device_t _dev, device_t _child,
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char *_buf, size_t _buflen)
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{
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kobjop_t _m;
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KOBJOPLOOKUP(((kobj_t)_dev)->ops,bus_child_location_str);
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return ((bus_child_location_str_t *) _m)(_dev, _child, _buf, _buflen);
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}
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/** @brief Unique descriptor for the BUS_BIND_INTR() method */
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extern struct kobjop_desc bus_bind_intr_desc;
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/** @brief A function implementing the BUS_BIND_INTR() method */
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typedef int bus_bind_intr_t(device_t _dev, device_t _child,
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struct resource *_irq, int _cpu);
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/**
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* @brief Allow drivers to request that an interrupt be bound to a specific
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* CPU.
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*
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* @param _dev the parent device of @p _child
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* @param _child the device which allocated the resource
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* @param _irq the resource representing the interrupt
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* @param _cpu the CPU to bind the interrupt to
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*/
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static __inline int BUS_BIND_INTR(device_t _dev, device_t _child,
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struct resource *_irq, int _cpu)
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{
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kobjop_t _m;
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KOBJOPLOOKUP(((kobj_t)_dev)->ops,bus_bind_intr);
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return ((bus_bind_intr_t *) _m)(_dev, _child, _irq, _cpu);
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}
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/** @brief Unique descriptor for the BUS_CONFIG_INTR() method */
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extern struct kobjop_desc bus_config_intr_desc;
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/** @brief A function implementing the BUS_CONFIG_INTR() method */
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typedef int bus_config_intr_t(device_t _dev, int _irq, enum intr_trigger _trig,
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enum intr_polarity _pol);
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/**
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* @brief Allow (bus) drivers to specify the trigger mode and polarity
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* of the specified interrupt.
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*
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* @param _dev the bus device
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* @param _irq the interrupt number to modify
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* @param _trig the trigger mode required
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* @param _pol the interrupt polarity required
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*/
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|
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static __inline int BUS_CONFIG_INTR(device_t _dev, int _irq,
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enum intr_trigger _trig,
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enum intr_polarity _pol)
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{
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kobjop_t _m;
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KOBJOPLOOKUP(((kobj_t)_dev)->ops,bus_config_intr);
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return ((bus_config_intr_t *) _m)(_dev, _irq, _trig, _pol);
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}
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/** @brief Unique descriptor for the BUS_DESCRIBE_INTR() method */
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extern struct kobjop_desc bus_describe_intr_desc;
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/** @brief A function implementing the BUS_DESCRIBE_INTR() method */
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typedef int bus_describe_intr_t(device_t _dev, device_t _child,
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struct resource *_irq, void *_cookie,
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const char *_descr);
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/**
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* @brief Allow drivers to associate a description with an active
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* interrupt handler.
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|
*
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* @param _dev the parent device of @p _child
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* @param _child the device which allocated the resource
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* @param _irq the resource representing the interrupt
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* @param _cookie the cookie value returned when the interrupt
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* was originally registered
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* @param _descr the description to associate with the interrupt
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*/
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static __inline int BUS_DESCRIBE_INTR(device_t _dev, device_t _child,
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struct resource *_irq, void *_cookie,
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const char *_descr)
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{
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kobjop_t _m;
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KOBJOPLOOKUP(((kobj_t)_dev)->ops,bus_describe_intr);
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return ((bus_describe_intr_t *) _m)(_dev, _child, _irq, _cookie, _descr);
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}
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/** @brief Unique descriptor for the BUS_HINTED_CHILD() method */
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extern struct kobjop_desc bus_hinted_child_desc;
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/** @brief A function implementing the BUS_HINTED_CHILD() method */
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typedef void bus_hinted_child_t(device_t _dev, const char *_dname, int _dunit);
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/**
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* @brief Notify a (bus) driver about a child that the hints mechanism
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* believes it has discovered.
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|
*
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|
* The bus is responsible for then adding the child in the right order
|
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* and discovering other things about the child. The bus driver is
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* free to ignore this hint, to do special things, etc. It is all up
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* to the bus driver to interpret.
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*
|
|
* This method is only called in response to the parent bus asking for
|
|
* hinted devices to be enumerated.
|
|
*
|
|
* @param _dev the bus device
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* @param _dname the name of the device w/o unit numbers
|
|
* @param _dunit the unit number of the device
|
|
*/
|
|
|
|
static __inline void BUS_HINTED_CHILD(device_t _dev, const char *_dname,
|
|
int _dunit)
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|
{
|
|
kobjop_t _m;
|
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KOBJOPLOOKUP(((kobj_t)_dev)->ops,bus_hinted_child);
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((bus_hinted_child_t *) _m)(_dev, _dname, _dunit);
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}
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|
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/** @brief Unique descriptor for the BUS_GET_DMA_TAG() method */
|
|
extern struct kobjop_desc bus_get_dma_tag_desc;
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/** @brief A function implementing the BUS_GET_DMA_TAG() method */
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typedef bus_dma_tag_t bus_get_dma_tag_t(device_t _dev, device_t _child);
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|
/**
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|
* @brief Returns bus_dma_tag_t for use w/ devices on the bus.
|
|
*
|
|
* @param _dev the parent device of @p _child
|
|
* @param _child the device to which the tag will belong
|
|
*/
|
|
|
|
static __inline bus_dma_tag_t BUS_GET_DMA_TAG(device_t _dev, device_t _child)
|
|
{
|
|
kobjop_t _m;
|
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KOBJOPLOOKUP(((kobj_t)_dev)->ops,bus_get_dma_tag);
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return ((bus_get_dma_tag_t *) _m)(_dev, _child);
|
|
}
|
|
|
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/** @brief Unique descriptor for the BUS_HINT_DEVICE_UNIT() method */
|
|
extern struct kobjop_desc bus_hint_device_unit_desc;
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|
/** @brief A function implementing the BUS_HINT_DEVICE_UNIT() method */
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|
typedef void bus_hint_device_unit_t(device_t _dev, device_t _child,
|
|
const char *_name, int *_unitp);
|
|
/**
|
|
* @brief Allow the bus to determine the unit number of a device.
|
|
*
|
|
* @param _dev the parent device of @p _child
|
|
* @param _child the device whose unit is to be wired
|
|
* @param _name the name of the device's new devclass
|
|
* @param _unitp a pointer to the device's new unit value
|
|
*/
|
|
|
|
static __inline void BUS_HINT_DEVICE_UNIT(device_t _dev, device_t _child,
|
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const char *_name, int *_unitp)
|
|
{
|
|
kobjop_t _m;
|
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KOBJOPLOOKUP(((kobj_t)_dev)->ops,bus_hint_device_unit);
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((bus_hint_device_unit_t *) _m)(_dev, _child, _name, _unitp);
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|
}
|
|
|
|
/** @brief Unique descriptor for the BUS_NEW_PASS() method */
|
|
extern struct kobjop_desc bus_new_pass_desc;
|
|
/** @brief A function implementing the BUS_NEW_PASS() method */
|
|
typedef void bus_new_pass_t(device_t _dev);
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|
/**
|
|
* @brief Notify a bus that the bus pass level has been changed
|
|
*
|
|
* @param _dev the bus device
|
|
*/
|
|
|
|
static __inline void BUS_NEW_PASS(device_t _dev)
|
|
{
|
|
kobjop_t _m;
|
|
KOBJOPLOOKUP(((kobj_t)_dev)->ops,bus_new_pass);
|
|
((bus_new_pass_t *) _m)(_dev);
|
|
}
|
|
|
|
/** @brief Unique descriptor for the BUS_REMAP_INTR() method */
|
|
extern struct kobjop_desc bus_remap_intr_desc;
|
|
/** @brief A function implementing the BUS_REMAP_INTR() method */
|
|
typedef int bus_remap_intr_t(device_t _dev, device_t _child, u_int _irq);
|
|
/**
|
|
* @brief Notify a bus that specified child's IRQ should be remapped.
|
|
*
|
|
* @param _dev the bus device
|
|
* @param _child the child device
|
|
* @param _irq the irq number
|
|
*/
|
|
|
|
static __inline int BUS_REMAP_INTR(device_t _dev, device_t _child, u_int _irq)
|
|
{
|
|
kobjop_t _m;
|
|
KOBJOPLOOKUP(((kobj_t)_dev)->ops,bus_remap_intr);
|
|
return ((bus_remap_intr_t *) _m)(_dev, _child, _irq);
|
|
}
|
|
|
|
#endif /* _bus_if_h_ */
|