staging: vme: get rid of struct vme_device_id and slots
Previously, the device-driver matching mechanism depended on the vme_device_id structure due to the need for a bind table per driver. This method of matching is no longer used so this patch merges the fields of struct vme_device_id into struct vme_dev. Since this also renders the slot field meaningless, it has also been removed in this patch. Signed-off-by: Manohar Vanga <manohar.vanga@cern.ch> Cc: Martyn Welch <martyn.welch@ge.com> Reviewed-by: Emilio G. Cota <cota@braap.org> Signed-off-by: Greg Kroah-Hartman <gregkh@suse.de>
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@ -668,7 +668,7 @@ err_nocard:
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static int vme_user_match(struct vme_dev *vdev)
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{
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if (vdev->id.num >= USER_BUS_MAX)
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if (vdev->num >= USER_BUS_MAX)
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return 0;
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return 1;
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}
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@ -1377,16 +1377,14 @@ static int __vme_register_driver_bus(struct vme_driver *drv,
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err = -ENOMEM;
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goto err_devalloc;
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}
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vdev->id.num = i;
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vdev->id.bus = bridge->num;
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vdev->id.slot = i + 1;
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vdev->num = i;
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vdev->bridge = bridge;
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vdev->dev.platform_data = drv;
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vdev->dev.release = vme_dev_release;
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vdev->dev.parent = bridge->parent;
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vdev->dev.bus = &vme_bus_type;
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dev_set_name(&vdev->dev, "%s.%u-%u", drv->name, vdev->id.bus,
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vdev->id.num);
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dev_set_name(&vdev->dev, "%s.%u-%u", drv->name, bridge->num,
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vdev->num);
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err = device_register(&vdev->dev);
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if (err)
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@ -95,18 +95,6 @@ extern struct bus_type vme_bus_type;
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#define VME_SLOT_CURRENT -1
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#define VME_SLOT_ALL -2
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/**
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* VME device identifier structure
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* @num: The device ID (ranges from 0 to N-1 for N devices)
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* @bus: The bus ID of the bus the device is on
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* @slot: The slot this device is plugged into
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*/
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struct vme_device_id {
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int num;
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int bus;
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int slot;
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};
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/**
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* Structure representing a VME device
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* @id: The ID of the device (currently the bus and slot number)
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@ -116,7 +104,7 @@ struct vme_device_id {
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* @bridge_list: List of devices (per bridge)
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*/
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struct vme_dev {
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struct vme_device_id id;
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int num;
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struct vme_bridge *bridge;
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struct device dev;
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struct list_head drv_list;
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@ -51,23 +51,16 @@ probe routine is passed a 'struct vme_dev' pointer as an argument. The
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'struct vme_dev' structure looks like the following:
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struct vme_dev {
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struct vme_device_id id;
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int num;
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struct vme_bridge *bridge;
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struct device dev;
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struct list_head drv_list;
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struct list_head bridge_list;
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};
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The 'bridge' field contains a pointer to the bridge device. The 'id' field
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contains information useful for the probe function:
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struct vme_device_id {
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int bus;
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int slot;
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int num;
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};
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Here, 'bus' is the number of the bus the device being probed is on. 'slot'
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refers to the specific slot on the VME bus. The 'num' field refers to the
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sequential device ID for this specific driver.
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Here, the 'num' field refers to the sequential device ID for this specific
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driver. The bridge number (or bus number) can be accessed using
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dev->bridge->num.
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A function is also provided to unregister the driver from the VME core and is
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usually called from the device driver's exit routine:
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@ -78,9 +71,11 @@ usually called from the device driver's exit routine:
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Resource management
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===================
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Once a driver has registered with the VME core the provided probe routine will
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be called for each of the bus/slot combination that becomes valid as VME buses
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are themselves registered. The probe routine is passed a pointer to the devices
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Once a driver has registered with the VME core the provided match routine will
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be called the number of times specified during the registration. If a match
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succeeds, a non-zero value should be returned. A zero return value indicates
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failure. For all successful matches, the probe routine of the corresponding
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driver is called. The probe routine is passed a pointer to the devices
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device structure. This pointer should be saved, it will be required for
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requesting VME resources.
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