pci-driver.c 34.7 KB
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/*
 * drivers/pci/pci-driver.c
 *
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 * (C) Copyright 2002-2004, 2007 Greg Kroah-Hartman <greg@kroah.com>
 * (C) Copyright 2007 Novell Inc.
 *
 * Released under the GPL v2 only.
 *
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 */

#include <linux/pci.h>
#include <linux/module.h>
#include <linux/init.h>
#include <linux/device.h>
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#include <linux/mempolicy.h>
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#include <linux/string.h>
#include <linux/slab.h>
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#include <linux/sched.h>
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#include <linux/cpu.h>
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#include <linux/pm_runtime.h>
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#include <linux/suspend.h>
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#include <linux/kexec.h>
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#include "pci.h"

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struct pci_dynid {
	struct list_head node;
	struct pci_device_id id;
};
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/**
 * pci_add_dynid - add a new PCI device ID to this driver and re-probe devices
 * @drv: target pci driver
 * @vendor: PCI vendor ID
 * @device: PCI device ID
 * @subvendor: PCI subvendor ID
 * @subdevice: PCI subdevice ID
 * @class: PCI class
 * @class_mask: PCI class mask
 * @driver_data: private driver data
 *
 * Adds a new dynamic pci device ID to this driver and causes the
 * driver to probe for all devices again.  @drv must have been
 * registered prior to calling this function.
 *
 * CONTEXT:
 * Does GFP_KERNEL allocation.
 *
 * RETURNS:
 * 0 on success, -errno on failure.
 */
int pci_add_dynid(struct pci_driver *drv,
		  unsigned int vendor, unsigned int device,
		  unsigned int subvendor, unsigned int subdevice,
		  unsigned int class, unsigned int class_mask,
		  unsigned long driver_data)
{
	struct pci_dynid *dynid;

	dynid = kzalloc(sizeof(*dynid), GFP_KERNEL);
	if (!dynid)
		return -ENOMEM;

	dynid->id.vendor = vendor;
	dynid->id.device = device;
	dynid->id.subvendor = subvendor;
	dynid->id.subdevice = subdevice;
	dynid->id.class = class;
	dynid->id.class_mask = class_mask;
	dynid->id.driver_data = driver_data;
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	spin_lock(&drv->dynids.lock);
	list_add_tail(&dynid->node, &drv->dynids.list);
	spin_unlock(&drv->dynids.lock);

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	return driver_attach(&drv->driver);
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}
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EXPORT_SYMBOL_GPL(pci_add_dynid);
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static void pci_free_dynids(struct pci_driver *drv)
{
	struct pci_dynid *dynid, *n;
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	spin_lock(&drv->dynids.lock);
	list_for_each_entry_safe(dynid, n, &drv->dynids.list, node) {
		list_del(&dynid->node);
		kfree(dynid);
	}
	spin_unlock(&drv->dynids.lock);
}

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/**
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 * store_new_id - sysfs frontend to pci_add_dynid()
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 * @driver: target device driver
 * @buf: buffer for scanning device ID data
 * @count: input size
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 *
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 * Allow PCI IDs to be added to an existing driver via sysfs.
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 */
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static ssize_t store_new_id(struct device_driver *driver, const char *buf,
			    size_t count)
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{
	struct pci_driver *pdrv = to_pci_driver(driver);
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	const struct pci_device_id *ids = pdrv->id_table;
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	__u32 vendor, device, subvendor = PCI_ANY_ID,
		subdevice = PCI_ANY_ID, class = 0, class_mask = 0;
	unsigned long driver_data = 0;
	int fields = 0;
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	int retval = 0;
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	fields = sscanf(buf, "%x %x %x %x %x %x %lx",
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			&vendor, &device, &subvendor, &subdevice,
			&class, &class_mask, &driver_data);
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	if (fields < 2)
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		return -EINVAL;

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	if (fields != 7) {
		struct pci_dev *pdev = kzalloc(sizeof(*pdev), GFP_KERNEL);
		if (!pdev)
			return -ENOMEM;

		pdev->vendor = vendor;
		pdev->device = device;
		pdev->subsystem_vendor = subvendor;
		pdev->subsystem_device = subdevice;
		pdev->class = class;

		if (pci_match_id(pdrv->id_table, pdev))
			retval = -EEXIST;

		kfree(pdev);

		if (retval)
			return retval;
	}

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	/* Only accept driver_data values that match an existing id_table
	   entry */
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	if (ids) {
		retval = -EINVAL;
		while (ids->vendor || ids->subvendor || ids->class_mask) {
			if (driver_data == ids->driver_data) {
				retval = 0;
				break;
			}
			ids++;
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		}
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		if (retval)	/* No match */
			return retval;
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	}

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	retval = pci_add_dynid(pdrv, vendor, device, subvendor, subdevice,
			       class, class_mask, driver_data);
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	if (retval)
		return retval;
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	return count;
}
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static DRIVER_ATTR(new_id, S_IWUSR, NULL, store_new_id);
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/**
 * store_remove_id - remove a PCI device ID from this driver
 * @driver: target device driver
 * @buf: buffer for scanning device ID data
 * @count: input size
 *
 * Removes a dynamic pci device ID to this driver.
 */
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static ssize_t store_remove_id(struct device_driver *driver, const char *buf,
			       size_t count)
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{
	struct pci_dynid *dynid, *n;
	struct pci_driver *pdrv = to_pci_driver(driver);
	__u32 vendor, device, subvendor = PCI_ANY_ID,
		subdevice = PCI_ANY_ID, class = 0, class_mask = 0;
	int fields = 0;
	int retval = -ENODEV;

	fields = sscanf(buf, "%x %x %x %x %x %x",
			&vendor, &device, &subvendor, &subdevice,
			&class, &class_mask);
	if (fields < 2)
		return -EINVAL;

	spin_lock(&pdrv->dynids.lock);
	list_for_each_entry_safe(dynid, n, &pdrv->dynids.list, node) {
		struct pci_device_id *id = &dynid->id;
		if ((id->vendor == vendor) &&
		    (id->device == device) &&
		    (subvendor == PCI_ANY_ID || id->subvendor == subvendor) &&
		    (subdevice == PCI_ANY_ID || id->subdevice == subdevice) &&
		    !((id->class ^ class) & class_mask)) {
			list_del(&dynid->node);
			kfree(dynid);
			retval = 0;
			break;
		}
	}
	spin_unlock(&pdrv->dynids.lock);

	if (retval)
		return retval;
	return count;
}
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static DRIVER_ATTR(remove_id, S_IWUSR, NULL, store_remove_id);
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static struct attribute *pci_drv_attrs[] = {
	&driver_attr_new_id.attr,
	&driver_attr_remove_id.attr,
	NULL,
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};
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ATTRIBUTE_GROUPS(pci_drv);
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/**
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 * pci_match_id - See if a pci device matches a given pci_id table
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 * @ids: array of PCI device id structures to search in
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 * @dev: the PCI device structure to match against.
 *
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 * Used by a driver to check whether a PCI device present in the
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 * system is in its list of supported devices.  Returns the matching
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 * pci_device_id structure or %NULL if there is no match.
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 *
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 * Deprecated, don't use this as it will not catch any dynamic ids
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 * that a driver might want to check for.
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 */
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const struct pci_device_id *pci_match_id(const struct pci_device_id *ids,
					 struct pci_dev *dev)
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{
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	if (ids) {
		while (ids->vendor || ids->subvendor || ids->class_mask) {
			if (pci_match_one_device(ids, dev))
				return ids;
			ids++;
		}
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	}
	return NULL;
}
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EXPORT_SYMBOL(pci_match_id);
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static const struct pci_device_id pci_device_id_any = {
	.vendor = PCI_ANY_ID,
	.device = PCI_ANY_ID,
	.subvendor = PCI_ANY_ID,
	.subdevice = PCI_ANY_ID,
};

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/**
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 * pci_match_device - Tell if a PCI device structure has a matching PCI device id structure
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 * @drv: the PCI driver to match against
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 * @dev: the PCI device structure to match against
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 *
 * Used by a driver to check whether a PCI device present in the
 * system is in its list of supported devices.  Returns the matching
 * pci_device_id structure or %NULL if there is no match.
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 */
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static const struct pci_device_id *pci_match_device(struct pci_driver *drv,
						    struct pci_dev *dev)
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{
	struct pci_dynid *dynid;
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	const struct pci_device_id *found_id = NULL;

	/* When driver_override is set, only bind to the matching driver */
	if (dev->driver_override && strcmp(dev->driver_override, drv->name))
		return NULL;
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	/* Look at the dynamic ids first, before the static ones */
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	spin_lock(&drv->dynids.lock);
	list_for_each_entry(dynid, &drv->dynids.list, node) {
		if (pci_match_one_device(&dynid->id, dev)) {
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			found_id = &dynid->id;
			break;
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		}
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	}
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	spin_unlock(&drv->dynids.lock);
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	if (!found_id)
		found_id = pci_match_id(drv->id_table, dev);

	/* driver_override will always match, send a dummy id */
	if (!found_id && dev->driver_override)
		found_id = &pci_device_id_any;

	return found_id;
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}

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struct drv_dev_and_id {
	struct pci_driver *drv;
	struct pci_dev *dev;
	const struct pci_device_id *id;
};

static long local_pci_probe(void *_ddi)
{
	struct drv_dev_and_id *ddi = _ddi;
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	struct pci_dev *pci_dev = ddi->dev;
	struct pci_driver *pci_drv = ddi->drv;
	struct device *dev = &pci_dev->dev;
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	int rc;

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	/*
	 * Unbound PCI devices are always put in D0, regardless of
	 * runtime PM status.  During probe, the device is set to
	 * active and the usage count is incremented.  If the driver
	 * supports runtime PM, it should call pm_runtime_put_noidle()
	 * in its probe routine and pm_runtime_get_noresume() in its
	 * remove routine.
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	 */
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	pm_runtime_get_sync(dev);
	pci_dev->driver = pci_drv;
	rc = pci_drv->probe(pci_dev, ddi->id);
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	if (!rc)
		return rc;
	if (rc < 0) {
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		pci_dev->driver = NULL;
		pm_runtime_put_sync(dev);
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		return rc;
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	}
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	/*
	 * Probe function should return < 0 for failure, 0 for success
	 * Treat values > 0 as success, but warn.
	 */
	dev_warn(dev, "Driver probe function unexpectedly returned %d\n", rc);
	return 0;
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}

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static int pci_call_probe(struct pci_driver *drv, struct pci_dev *dev,
			  const struct pci_device_id *id)
{
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	int error, node;
	struct drv_dev_and_id ddi = { drv, dev, id };

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	/*
	 * Execute driver initialization on node where the device is
	 * attached.  This way the driver likely allocates its local memory
	 * on the right node.
	 */
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	node = dev_to_node(&dev->dev);
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	/*
	 * On NUMA systems, we are likely to call a PF probe function using
	 * work_on_cpu().  If that probe calls pci_enable_sriov() (which
	 * adds the VF devices via pci_bus_add_device()), we may re-enter
	 * this function to call the VF probe function.  Calling
	 * work_on_cpu() again will cause a lockdep warning.  Since VFs are
	 * always on the same node as the PF, we can work around this by
	 * avoiding work_on_cpu() when we're already on the correct node.
	 *
	 * Preemption is enabled, so it's theoretically unsafe to use
	 * numa_node_id(), but even if we run the probe function on the
	 * wrong node, it should be functionally correct.
	 */
	if (node >= 0 && node != numa_node_id()) {
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		int cpu;

		get_online_cpus();
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		cpu = cpumask_any_and(cpumask_of_node(node), cpu_online_mask);
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		if (cpu < nr_cpu_ids)
			error = work_on_cpu(cpu, local_pci_probe, &ddi);
		else
			error = local_pci_probe(&ddi);
		put_online_cpus();
	} else
		error = local_pci_probe(&ddi);
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	return error;
}

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/**
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 * __pci_device_probe - check if a driver wants to claim a specific PCI device
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 * @drv: driver to call to check if it wants the PCI device
 * @pci_dev: PCI device being probed
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 *
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 * returns 0 on success, else error.
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 * side-effect: pci_dev->driver is set to drv when drv claims pci_dev.
 */
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static int __pci_device_probe(struct pci_driver *drv, struct pci_dev *pci_dev)
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{
	const struct pci_device_id *id;
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	int error = 0;

	if (!pci_dev->driver && drv->probe) {
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		error = -ENODEV;

		id = pci_match_device(drv, pci_dev);
		if (id)
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			error = pci_call_probe(drv, pci_dev, id);
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		if (error >= 0)
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			error = 0;
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	}
	return error;
}

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static int pci_device_probe(struct device *dev)
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{
	int error = 0;
	struct pci_driver *drv;
	struct pci_dev *pci_dev;

	drv = to_pci_driver(dev->driver);
	pci_dev = to_pci_dev(dev);
	pci_dev_get(pci_dev);
	error = __pci_device_probe(drv, pci_dev);
	if (error)
		pci_dev_put(pci_dev);

	return error;
}

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static int pci_device_remove(struct device *dev)
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{
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	struct pci_dev *pci_dev = to_pci_dev(dev);
	struct pci_driver *drv = pci_dev->driver;
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	if (drv) {
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		if (drv->remove) {
			pm_runtime_get_sync(dev);
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			drv->remove(pci_dev);
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			pm_runtime_put_noidle(dev);
		}
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		pci_dev->driver = NULL;
	}

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	/* Undo the runtime PM settings in local_pci_probe() */
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	pm_runtime_put_sync(dev);
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	/*
	 * If the device is still on, set the power state as "unknown",
	 * since it might change by the next time we load the driver.
	 */
	if (pci_dev->current_state == PCI_D0)
		pci_dev->current_state = PCI_UNKNOWN;

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	/*
	 * We would love to complain here if pci_dev->is_enabled is set, that
	 * the driver should have called pci_disable_device(), but the
	 * unfortunate fact is there are too many odd BIOS and bridge setups
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	 * that don't like drivers doing that all of the time.
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	 * Oh well, we can dream of sane hardware when we sleep, no matter how
	 * horrible the crap we have to deal with is when we are awake...
	 */

	pci_dev_put(pci_dev);
	return 0;
}

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static void pci_device_shutdown(struct device *dev)
{
	struct pci_dev *pci_dev = to_pci_dev(dev);
	struct pci_driver *drv = pci_dev->driver;

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	pm_runtime_resume(dev);

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	if (drv && drv->shutdown)
		drv->shutdown(pci_dev);
	pci_msi_shutdown(pci_dev);
	pci_msix_shutdown(pci_dev);
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#ifdef CONFIG_KEXEC
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	/*
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	 * If this is a kexec reboot, turn off Bus Master bit on the
	 * device to tell it to not continue to do DMA. Don't touch
	 * devices in D3cold or unknown states.
	 * If it is not a kexec reboot, firmware will hit the PCI
	 * devices with big hammer and stop their DMA any way.
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	 */
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	if (kexec_in_progress && (pci_dev->current_state <= PCI_D3hot))
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		pci_clear_master(pci_dev);
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#endif
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}

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#ifdef CONFIG_PM
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/* Auxiliary functions used for system resume and run-time resume. */

/**
 * pci_restore_standard_config - restore standard config registers of PCI device
 * @pci_dev: PCI device to handle
 */
static int pci_restore_standard_config(struct pci_dev *pci_dev)
{
	pci_update_current_state(pci_dev, PCI_UNKNOWN);

	if (pci_dev->current_state != PCI_D0) {
		int error = pci_set_power_state(pci_dev, PCI_D0);
		if (error)
			return error;
	}

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	pci_restore_state(pci_dev);
	return 0;
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}

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#endif

#ifdef CONFIG_PM_SLEEP

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static void pci_pm_default_resume_early(struct pci_dev *pci_dev)
{
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	pci_power_up(pci_dev);
	pci_restore_state(pci_dev);
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	pci_fixup_device(pci_fixup_resume_early, pci_dev);
}

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/*
 * Default "suspend" method for devices that have no driver provided suspend,
 * or not even a driver at all (second part).
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 */
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static void pci_pm_set_unknown_state(struct pci_dev *pci_dev)
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{
	/*
	 * mark its power state as "unknown", since we don't know if
	 * e.g. the BIOS will change its device state when we suspend.
	 */
	if (pci_dev->current_state == PCI_D0)
		pci_dev->current_state = PCI_UNKNOWN;
}

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/*
 * Default "resume" method for devices that have no driver provided resume,
 * or not even a driver at all (second part).
 */
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static int pci_pm_reenable_device(struct pci_dev *pci_dev)
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{
	int retval;

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	/* if the device was enabled before suspend, reenable */
	retval = pci_reenable_device(pci_dev);
	/*
	 * if the device was busmaster before the suspend, make it busmaster
	 * again
	 */
	if (pci_dev->is_busmaster)
		pci_set_master(pci_dev);

	return retval;
}

static int pci_legacy_suspend(struct device *dev, pm_message_t state)
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{
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	struct pci_dev *pci_dev = to_pci_dev(dev);
	struct pci_driver *drv = pci_dev->driver;
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	if (drv && drv->suspend) {
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		pci_power_t prev = pci_dev->current_state;
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		int error;
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		error = drv->suspend(pci_dev, state);
		suspend_report_result(drv->suspend, error);
		if (error)
			return error;
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		if (!pci_dev->state_saved && pci_dev->current_state != PCI_D0
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		    && pci_dev->current_state != PCI_UNKNOWN) {
			WARN_ONCE(pci_dev->current_state != prev,
				"PCI PM: Device state not saved by %pF\n",
				drv->suspend);
		}
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	}
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	pci_fixup_device(pci_fixup_suspend, pci_dev);

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	return 0;
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}

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static int pci_legacy_suspend_late(struct device *dev, pm_message_t state)
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{
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	struct pci_dev *pci_dev = to_pci_dev(dev);
	struct pci_driver *drv = pci_dev->driver;
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	if (drv && drv->suspend_late) {
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		pci_power_t prev = pci_dev->current_state;
		int error;

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		error = drv->suspend_late(pci_dev, state);
		suspend_report_result(drv->suspend_late, error);
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		if (error)
			return error;

		if (!pci_dev->state_saved && pci_dev->current_state != PCI_D0
		    && pci_dev->current_state != PCI_UNKNOWN) {
			WARN_ONCE(pci_dev->current_state != prev,
				"PCI PM: Device state not saved by %pF\n",
				drv->suspend_late);
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			goto Fixup;
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		}
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584
	}
585 586 587 588 589 590

	if (!pci_dev->state_saved)
		pci_save_state(pci_dev);

	pci_pm_set_unknown_state(pci_dev);

591 592 593
Fixup:
	pci_fixup_device(pci_fixup_suspend_late, pci_dev);

594
	return 0;
L
Linus Torvalds 已提交
595
}
L
Linus Torvalds 已提交
596

597 598
static int pci_legacy_resume_early(struct device *dev)
{
R
Ryan Desfosses 已提交
599 600
	struct pci_dev *pci_dev = to_pci_dev(dev);
	struct pci_driver *drv = pci_dev->driver;
601

602 603
	return drv && drv->resume_early ?
			drv->resume_early(pci_dev) : 0;
604 605
}

606
static int pci_legacy_resume(struct device *dev)
L
Linus Torvalds 已提交
607
{
R
Ryan Desfosses 已提交
608 609
	struct pci_dev *pci_dev = to_pci_dev(dev);
	struct pci_driver *drv = pci_dev->driver;
L
Linus Torvalds 已提交
610

611 612
	pci_fixup_device(pci_fixup_resume, pci_dev);

613 614
	return drv && drv->resume ?
			drv->resume(pci_dev) : pci_pm_reenable_device(pci_dev);
L
Linus Torvalds 已提交
615 616
}

617 618
/* Auxiliary functions used by the new power management framework */

619
static void pci_pm_default_resume(struct pci_dev *pci_dev)
620
{
621 622
	pci_fixup_device(pci_fixup_resume, pci_dev);

623
	if (!pci_has_subordinate(pci_dev))
624
		pci_enable_wake(pci_dev, PCI_D0, false);
625 626
}

627
static void pci_pm_default_suspend(struct pci_dev *pci_dev)
628
{
629
	/* Disable non-bridge devices without PM support */
630
	if (!pci_has_subordinate(pci_dev))
631
		pci_disable_enabled_device(pci_dev);
632 633
}

634 635 636
static bool pci_has_legacy_pm_support(struct pci_dev *pci_dev)
{
	struct pci_driver *drv = pci_dev->driver;
637
	bool ret = drv && (drv->suspend || drv->suspend_late || drv->resume
638
		|| drv->resume_early);
639 640 641 642 643 644

	/*
	 * Legacy PM support is used by default, so warn if the new framework is
	 * supported as well.  Drivers are supposed to support either the
	 * former, or the latter, but not both at the same time.
	 */
645 646
	WARN(ret && drv->driver.pm, "driver %s device %04x:%04x\n",
		drv->name, pci_dev->vendor, pci_dev->device);
647 648

	return ret;
649 650
}

651 652
/* New power management framework */

653 654 655 656
static int pci_pm_prepare(struct device *dev)
{
	struct device_driver *drv = dev->driver;

657
	/*
658 659
	 * Devices having power.ignore_children set may still be necessary for
	 * suspending their children in the next phase of device suspend.
660
	 */
661 662
	if (dev->power.ignore_children)
		pm_runtime_resume(dev);
663

664 665 666 667 668 669
	if (drv && drv->pm && drv->pm->prepare) {
		int error = drv->pm->prepare(dev);
		if (error)
			return error;
	}
	return pci_dev_keep_suspended(to_pci_dev(dev));
670 671 672
}


673 674 675 676 677 678
#else /* !CONFIG_PM_SLEEP */

#define pci_pm_prepare	NULL

#endif /* !CONFIG_PM_SLEEP */

679 680 681 682 683
#ifdef CONFIG_SUSPEND

static int pci_pm_suspend(struct device *dev)
{
	struct pci_dev *pci_dev = to_pci_dev(dev);
684
	const struct dev_pm_ops *pm = dev->driver ? dev->driver->pm : NULL;
685

686 687
	if (pci_has_legacy_pm_support(pci_dev))
		return pci_legacy_suspend(dev, PMSG_SUSPEND);
688

689 690 691 692 693
	if (!pm) {
		pci_pm_default_suspend(pci_dev);
		goto Fixup;
	}

694 695 696 697 698 699 700 701 702 703
	/*
	 * PCI devices suspended at run time need to be resumed at this point,
	 * because in general it is necessary to reconfigure them for system
	 * suspend.  Namely, if the device is supposed to wake up the system
	 * from the sleep state, we may need to reconfigure it for this purpose.
	 * In turn, if the device is not supposed to wake up the system from the
	 * sleep state, we'll have to prevent it from signaling wake-up.
	 */
	pm_runtime_resume(dev);

704
	pci_dev->state_saved = false;
705 706 707 708
	if (pm->suspend) {
		pci_power_t prev = pci_dev->current_state;
		int error;

709 710
		error = pm->suspend(dev);
		suspend_report_result(pm->suspend, error);
711 712 713
		if (error)
			return error;

714
		if (!pci_dev->state_saved && pci_dev->current_state != PCI_D0
715 716 717 718 719
		    && pci_dev->current_state != PCI_UNKNOWN) {
			WARN_ONCE(pci_dev->current_state != prev,
				"PCI PM: State of device not saved by %pF\n",
				pm->suspend);
		}
720
	}
721

722 723 724 725
 Fixup:
	pci_fixup_device(pci_fixup_suspend, pci_dev);

	return 0;
726 727 728
}

static int pci_pm_suspend_noirq(struct device *dev)
G
Greg KH 已提交
729
{
730
	struct pci_dev *pci_dev = to_pci_dev(dev);
731
	const struct dev_pm_ops *pm = dev->driver ? dev->driver->pm : NULL;
G
Greg KH 已提交
732

733 734 735
	if (pci_has_legacy_pm_support(pci_dev))
		return pci_legacy_suspend_late(dev, PMSG_SUSPEND);

736 737
	if (!pm) {
		pci_save_state(pci_dev);
738
		goto Fixup;
739
	}
740 741 742 743 744 745 746 747 748 749 750 751 752 753 754

	if (pm->suspend_noirq) {
		pci_power_t prev = pci_dev->current_state;
		int error;

		error = pm->suspend_noirq(dev);
		suspend_report_result(pm->suspend_noirq, error);
		if (error)
			return error;

		if (!pci_dev->state_saved && pci_dev->current_state != PCI_D0
		    && pci_dev->current_state != PCI_UNKNOWN) {
			WARN_ONCE(pci_dev->current_state != prev,
				"PCI PM: State of device not saved by %pF\n",
				pm->suspend_noirq);
755
			goto Fixup;
756
		}
757 758
	}

759 760
	if (!pci_dev->state_saved) {
		pci_save_state(pci_dev);
761
		if (!pci_has_subordinate(pci_dev))
762 763
			pci_prepare_to_sleep(pci_dev);
	}
764

765 766
	pci_pm_set_unknown_state(pci_dev);

767 768 769 770 771 772 773 774 775 776 777 778
	/*
	 * Some BIOSes from ASUS have a bug: If a USB EHCI host controller's
	 * PCI COMMAND register isn't 0, the BIOS assumes that the controller
	 * hasn't been quiesced and tries to turn it off.  If the controller
	 * is already in D3, this can hang or cause memory corruption.
	 *
	 * Since the value of the COMMAND register doesn't matter once the
	 * device has been suspended, we can safely set it to 0 here.
	 */
	if (pci_dev->class == PCI_CLASS_SERIAL_USB_EHCI)
		pci_write_config_word(pci_dev, PCI_COMMAND, 0);

779 780 781
Fixup:
	pci_fixup_device(pci_fixup_suspend_late, pci_dev);

782
	return 0;
G
Greg KH 已提交
783
}
L
Linus Torvalds 已提交
784

785
static int pci_pm_resume_noirq(struct device *dev)
786 787 788
{
	struct pci_dev *pci_dev = to_pci_dev(dev);
	struct device_driver *drv = dev->driver;
789
	int error = 0;
790

791
	pci_pm_default_resume_early(pci_dev);
792

793
	if (pci_has_legacy_pm_support(pci_dev))
794
		return pci_legacy_resume_early(dev);
795

796 797
	if (drv && drv->pm && drv->pm->resume_noirq)
		error = drv->pm->resume_noirq(dev);
798 799 800 801

	return error;
}

802
static int pci_pm_resume(struct device *dev)
803
{
804
	struct pci_dev *pci_dev = to_pci_dev(dev);
805
	const struct dev_pm_ops *pm = dev->driver ? dev->driver->pm : NULL;
806 807
	int error = 0;

808 809 810 811 812 813 814
	/*
	 * This is necessary for the suspend error path in which resume is
	 * called without restoring the standard config registers of the device.
	 */
	if (pci_dev->state_saved)
		pci_restore_standard_config(pci_dev);

815
	if (pci_has_legacy_pm_support(pci_dev))
816
		return pci_legacy_resume(dev);
817

818
	pci_pm_default_resume(pci_dev);
819

820 821 822 823 824 825
	if (pm) {
		if (pm->resume)
			error = pm->resume(dev);
	} else {
		pci_pm_reenable_device(pci_dev);
	}
826

827
	return error;
828 829 830 831 832 833 834 835 836 837 838
}

#else /* !CONFIG_SUSPEND */

#define pci_pm_suspend		NULL
#define pci_pm_suspend_noirq	NULL
#define pci_pm_resume		NULL
#define pci_pm_resume_noirq	NULL

#endif /* !CONFIG_SUSPEND */

839
#ifdef CONFIG_HIBERNATE_CALLBACKS
840

841 842 843 844 845 846 847

/*
 * pcibios_pm_ops - provide arch-specific hooks when a PCI device is doing
 * a hibernate transition
 */
struct dev_pm_ops __weak pcibios_pm_ops;

848 849 850
static int pci_pm_freeze(struct device *dev)
{
	struct pci_dev *pci_dev = to_pci_dev(dev);
851
	const struct dev_pm_ops *pm = dev->driver ? dev->driver->pm : NULL;
852

853 854
	if (pci_has_legacy_pm_support(pci_dev))
		return pci_legacy_suspend(dev, PMSG_FREEZE);
855

856 857 858
	if (!pm) {
		pci_pm_default_suspend(pci_dev);
		return 0;
859 860
	}

861 862 863 864 865 866 867 868
	/*
	 * This used to be done in pci_pm_prepare() for all devices and some
	 * drivers may depend on it, so do it here.  Ideally, runtime-suspended
	 * devices should not be touched during freeze/thaw transitions,
	 * however.
	 */
	pm_runtime_resume(dev);

869
	pci_dev->state_saved = false;
870 871 872 873 874 875 876 877 878
	if (pm->freeze) {
		int error;

		error = pm->freeze(dev);
		suspend_report_result(pm->freeze, error);
		if (error)
			return error;
	}

879 880 881
	if (pcibios_pm_ops.freeze)
		return pcibios_pm_ops.freeze(dev);

882
	return 0;
883 884 885 886
}

static int pci_pm_freeze_noirq(struct device *dev)
{
887
	struct pci_dev *pci_dev = to_pci_dev(dev);
888
	struct device_driver *drv = dev->driver;
889

890 891 892
	if (pci_has_legacy_pm_support(pci_dev))
		return pci_legacy_suspend_late(dev, PMSG_FREEZE);

893
	if (drv && drv->pm && drv->pm->freeze_noirq) {
894 895
		int error;

896 897
		error = drv->pm->freeze_noirq(dev);
		suspend_report_result(drv->pm->freeze_noirq, error);
898 899
		if (error)
			return error;
900 901
	}

902 903
	if (!pci_dev->state_saved)
		pci_save_state(pci_dev);
904

905 906
	pci_pm_set_unknown_state(pci_dev);

907 908 909
	if (pcibios_pm_ops.freeze_noirq)
		return pcibios_pm_ops.freeze_noirq(dev);

910
	return 0;
911 912
}

913
static int pci_pm_thaw_noirq(struct device *dev)
914
{
915
	struct pci_dev *pci_dev = to_pci_dev(dev);
916 917 918
	struct device_driver *drv = dev->driver;
	int error = 0;

919 920 921 922 923 924
	if (pcibios_pm_ops.thaw_noirq) {
		error = pcibios_pm_ops.thaw_noirq(dev);
		if (error)
			return error;
	}

925
	if (pci_has_legacy_pm_support(pci_dev))
926
		return pci_legacy_resume_early(dev);
927

928
	pci_update_current_state(pci_dev, PCI_D0);
929

930 931
	if (drv && drv->pm && drv->pm->thaw_noirq)
		error = drv->pm->thaw_noirq(dev);
932 933 934 935

	return error;
}

936
static int pci_pm_thaw(struct device *dev)
937
{
938
	struct pci_dev *pci_dev = to_pci_dev(dev);
939
	const struct dev_pm_ops *pm = dev->driver ? dev->driver->pm : NULL;
940 941
	int error = 0;

942 943 944 945 946 947
	if (pcibios_pm_ops.thaw) {
		error = pcibios_pm_ops.thaw(dev);
		if (error)
			return error;
	}

948
	if (pci_has_legacy_pm_support(pci_dev))
949
		return pci_legacy_resume(dev);
950

951 952 953 954 955 956
	if (pm) {
		if (pm->thaw)
			error = pm->thaw(dev);
	} else {
		pci_pm_reenable_device(pci_dev);
	}
957

958 959
	pci_dev->state_saved = false;

960 961 962 963 964
	return error;
}

static int pci_pm_poweroff(struct device *dev)
{
965
	struct pci_dev *pci_dev = to_pci_dev(dev);
966
	const struct dev_pm_ops *pm = dev->driver ? dev->driver->pm : NULL;
967

968 969
	if (pci_has_legacy_pm_support(pci_dev))
		return pci_legacy_suspend(dev, PMSG_HIBERNATE);
970

971 972 973 974 975
	if (!pm) {
		pci_pm_default_suspend(pci_dev);
		goto Fixup;
	}

976 977 978
	/* The reason to do that is the same as in pci_pm_suspend(). */
	pm_runtime_resume(dev);

979
	pci_dev->state_saved = false;
980
	if (pm->poweroff) {
981 982
		int error;

983 984
		error = pm->poweroff(dev);
		suspend_report_result(pm->poweroff, error);
985 986
		if (error)
			return error;
987 988
	}

989 990
 Fixup:
	pci_fixup_device(pci_fixup_suspend, pci_dev);
991

992 993 994
	if (pcibios_pm_ops.poweroff)
		return pcibios_pm_ops.poweroff(dev);

995
	return 0;
996 997 998 999
}

static int pci_pm_poweroff_noirq(struct device *dev)
{
1000
	struct pci_dev *pci_dev = to_pci_dev(dev);
1001
	struct device_driver *drv = dev->driver;
1002

1003 1004 1005
	if (pci_has_legacy_pm_support(to_pci_dev(dev)))
		return pci_legacy_suspend_late(dev, PMSG_HIBERNATE);

1006 1007
	if (!drv || !drv->pm) {
		pci_fixup_device(pci_fixup_suspend_late, pci_dev);
1008
		return 0;
1009
	}
1010 1011 1012 1013

	if (drv->pm->poweroff_noirq) {
		int error;

1014 1015
		error = drv->pm->poweroff_noirq(dev);
		suspend_report_result(drv->pm->poweroff_noirq, error);
1016 1017
		if (error)
			return error;
1018 1019
	}

1020
	if (!pci_dev->state_saved && !pci_has_subordinate(pci_dev))
1021 1022
		pci_prepare_to_sleep(pci_dev);

1023 1024 1025 1026 1027 1028 1029
	/*
	 * The reason for doing this here is the same as for the analogous code
	 * in pci_pm_suspend_noirq().
	 */
	if (pci_dev->class == PCI_CLASS_SERIAL_USB_EHCI)
		pci_write_config_word(pci_dev, PCI_COMMAND, 0);

1030 1031
	pci_fixup_device(pci_fixup_suspend_late, pci_dev);

1032 1033 1034
	if (pcibios_pm_ops.poweroff_noirq)
		return pcibios_pm_ops.poweroff_noirq(dev);

1035
	return 0;
1036 1037
}

1038
static int pci_pm_restore_noirq(struct device *dev)
1039 1040 1041
{
	struct pci_dev *pci_dev = to_pci_dev(dev);
	struct device_driver *drv = dev->driver;
1042
	int error = 0;
1043

1044 1045 1046 1047 1048 1049
	if (pcibios_pm_ops.restore_noirq) {
		error = pcibios_pm_ops.restore_noirq(dev);
		if (error)
			return error;
	}

1050
	pci_pm_default_resume_early(pci_dev);
1051

1052
	if (pci_has_legacy_pm_support(pci_dev))
1053
		return pci_legacy_resume_early(dev);
1054

1055 1056
	if (drv && drv->pm && drv->pm->restore_noirq)
		error = drv->pm->restore_noirq(dev);
1057 1058 1059 1060

	return error;
}

1061
static int pci_pm_restore(struct device *dev)
1062 1063
{
	struct pci_dev *pci_dev = to_pci_dev(dev);
1064
	const struct dev_pm_ops *pm = dev->driver ? dev->driver->pm : NULL;
1065 1066
	int error = 0;

1067 1068 1069 1070 1071 1072
	if (pcibios_pm_ops.restore) {
		error = pcibios_pm_ops.restore(dev);
		if (error)
			return error;
	}

1073 1074 1075 1076 1077 1078 1079
	/*
	 * This is necessary for the hibernation error path in which restore is
	 * called without restoring the standard config registers of the device.
	 */
	if (pci_dev->state_saved)
		pci_restore_standard_config(pci_dev);

1080
	if (pci_has_legacy_pm_support(pci_dev))
1081
		return pci_legacy_resume(dev);
1082

1083
	pci_pm_default_resume(pci_dev);
1084

1085 1086 1087 1088 1089 1090
	if (pm) {
		if (pm->restore)
			error = pm->restore(dev);
	} else {
		pci_pm_reenable_device(pci_dev);
	}
1091 1092

	return error;
G
Greg KH 已提交
1093
}
L
Linus Torvalds 已提交
1094

1095
#else /* !CONFIG_HIBERNATE_CALLBACKS */
1096 1097 1098 1099 1100 1101 1102 1103 1104 1105

#define pci_pm_freeze		NULL
#define pci_pm_freeze_noirq	NULL
#define pci_pm_thaw		NULL
#define pci_pm_thaw_noirq	NULL
#define pci_pm_poweroff		NULL
#define pci_pm_poweroff_noirq	NULL
#define pci_pm_restore		NULL
#define pci_pm_restore_noirq	NULL

1106
#endif /* !CONFIG_HIBERNATE_CALLBACKS */
1107

1108
#ifdef CONFIG_PM
1109 1110 1111 1112 1113 1114 1115 1116

static int pci_pm_runtime_suspend(struct device *dev)
{
	struct pci_dev *pci_dev = to_pci_dev(dev);
	const struct dev_pm_ops *pm = dev->driver ? dev->driver->pm : NULL;
	pci_power_t prev = pci_dev->current_state;
	int error;

1117 1118 1119 1120 1121 1122 1123
	/*
	 * If pci_dev->driver is not set (unbound), the device should
	 * always remain in D0 regardless of the runtime PM status
	 */
	if (!pci_dev->driver)
		return 0;

1124 1125 1126
	if (!pm || !pm->runtime_suspend)
		return -ENOSYS;

1127
	pci_dev->state_saved = false;
1128
	pci_dev->no_d3cold = false;
1129 1130 1131 1132
	error = pm->runtime_suspend(dev);
	suspend_report_result(pm->runtime_suspend, error);
	if (error)
		return error;
1133 1134
	if (!pci_dev->d3cold_allowed)
		pci_dev->no_d3cold = true;
1135 1136 1137 1138 1139 1140 1141 1142 1143 1144 1145

	pci_fixup_device(pci_fixup_suspend, pci_dev);

	if (!pci_dev->state_saved && pci_dev->current_state != PCI_D0
	    && pci_dev->current_state != PCI_UNKNOWN) {
		WARN_ONCE(pci_dev->current_state != prev,
			"PCI PM: State of device not saved by %pF\n",
			pm->runtime_suspend);
		return 0;
	}

1146
	if (!pci_dev->state_saved) {
1147
		pci_save_state(pci_dev);
1148 1149
		pci_finish_runtime_suspend(pci_dev);
	}
1150 1151 1152 1153 1154 1155

	return 0;
}

static int pci_pm_runtime_resume(struct device *dev)
{
1156
	int rc;
1157 1158 1159
	struct pci_dev *pci_dev = to_pci_dev(dev);
	const struct dev_pm_ops *pm = dev->driver ? dev->driver->pm : NULL;

1160 1161 1162 1163 1164 1165 1166
	/*
	 * If pci_dev->driver is not set (unbound), the device should
	 * always remain in D0 regardless of the runtime PM status
	 */
	if (!pci_dev->driver)
		return 0;

1167 1168 1169
	if (!pm || !pm->runtime_resume)
		return -ENOSYS;

1170 1171
	pci_restore_standard_config(pci_dev);
	pci_fixup_device(pci_fixup_resume_early, pci_dev);
1172 1173 1174
	__pci_enable_wake(pci_dev, PCI_D0, true, false);
	pci_fixup_device(pci_fixup_resume, pci_dev);

1175 1176 1177 1178 1179
	rc = pm->runtime_resume(dev);

	pci_dev->runtime_d3cold = false;

	return rc;
1180 1181 1182 1183
}

static int pci_pm_runtime_idle(struct device *dev)
{
1184
	struct pci_dev *pci_dev = to_pci_dev(dev);
1185
	const struct dev_pm_ops *pm = dev->driver ? dev->driver->pm : NULL;
1186
	int ret = 0;
1187

1188 1189 1190 1191 1192
	/*
	 * If pci_dev->driver is not set (unbound), the device should
	 * always remain in D0 regardless of the runtime PM status
	 */
	if (!pci_dev->driver)
1193
		return 0;
1194

1195 1196 1197
	if (!pm)
		return -ENOSYS;

1198 1199
	if (pm->runtime_idle)
		ret = pm->runtime_idle(dev);
1200

1201
	return ret;
1202 1203
}

S
Sachin Kamat 已提交
1204
static const struct dev_pm_ops pci_dev_pm_ops = {
1205 1206 1207 1208 1209 1210 1211
	.prepare = pci_pm_prepare,
	.suspend = pci_pm_suspend,
	.resume = pci_pm_resume,
	.freeze = pci_pm_freeze,
	.thaw = pci_pm_thaw,
	.poweroff = pci_pm_poweroff,
	.restore = pci_pm_restore,
1212 1213 1214 1215 1216 1217
	.suspend_noirq = pci_pm_suspend_noirq,
	.resume_noirq = pci_pm_resume_noirq,
	.freeze_noirq = pci_pm_freeze_noirq,
	.thaw_noirq = pci_pm_thaw_noirq,
	.poweroff_noirq = pci_pm_poweroff_noirq,
	.restore_noirq = pci_pm_restore_noirq,
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	.runtime_suspend = pci_pm_runtime_suspend,
	.runtime_resume = pci_pm_runtime_resume,
	.runtime_idle = pci_pm_runtime_idle,
1221 1222
};

1223
#define PCI_PM_OPS_PTR	(&pci_dev_pm_ops)
1224

1225 1226 1227 1228 1229
#else /* !CONFIG_PM */

#define pci_pm_runtime_suspend	NULL
#define pci_pm_runtime_resume	NULL
#define pci_pm_runtime_idle	NULL
1230 1231 1232

#define PCI_PM_OPS_PTR	NULL

1233
#endif /* !CONFIG_PM */
1234

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/**
1236
 * __pci_register_driver - register a new pci driver
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 * @drv: the driver structure to register
1238
 * @owner: owner module of drv
1239
 * @mod_name: module name string
1240
 *
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 * Adds the driver structure to the list of registered drivers.
1242 1243
 * Returns a negative value on error, otherwise 0.
 * If no error occurred, the driver remains registered even if
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 * no device was claimed during registration.
 */
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int __pci_register_driver(struct pci_driver *drv, struct module *owner,
			  const char *mod_name)
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{
	/* initialize common driver fields */
	drv->driver.name = drv->name;
	drv->driver.bus = &pci_bus_type;
1252
	drv->driver.owner = owner;
1253
	drv->driver.mod_name = mod_name;
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1255 1256
	spin_lock_init(&drv->dynids.lock);
	INIT_LIST_HEAD(&drv->dynids.list);
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	/* register with core */
1259
	return driver_register(&drv->driver);
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}
1261
EXPORT_SYMBOL(__pci_register_driver);
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/**
 * pci_unregister_driver - unregister a pci driver
 * @drv: the driver structure to unregister
1266
 *
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 * Deletes the driver structure from the list of registered PCI drivers,
 * gives it a chance to clean up by calling its remove() function for
 * each device it was responsible for, and marks those devices as
 * driverless.
 */

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void pci_unregister_driver(struct pci_driver *drv)
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{
	driver_unregister(&drv->driver);
	pci_free_dynids(drv);
}
1278
EXPORT_SYMBOL(pci_unregister_driver);
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static struct pci_driver pci_compat_driver = {
	.name = "compat"
};

/**
 * pci_dev_driver - get the pci_driver of a device
 * @dev: the device to query
 *
1288
 * Returns the appropriate pci_driver structure or %NULL if there is no
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 * registered driver for the device.
 */
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struct pci_driver *pci_dev_driver(const struct pci_dev *dev)
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{
	if (dev->driver)
		return dev->driver;
	else {
		int i;
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		for (i = 0; i <= PCI_ROM_RESOURCE; i++)
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			if (dev->resource[i].flags & IORESOURCE_BUSY)
				return &pci_compat_driver;
	}
	return NULL;
}
1303
EXPORT_SYMBOL(pci_dev_driver);
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/**
 * pci_bus_match - Tell if a PCI device structure has a matching PCI device id structure
 * @dev: the PCI device structure to match against
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 * @drv: the device driver to search for matching PCI device id structures
1309
 *
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 * Used by a driver to check whether a PCI device present in the
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 * system is in its list of supported devices. Returns the matching
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 * pci_device_id structure or %NULL if there is no match.
 */
1314
static int pci_bus_match(struct device *dev, struct device_driver *drv)
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{
1316
	struct pci_dev *pci_dev = to_pci_dev(dev);
1317
	struct pci_driver *pci_drv;
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	const struct pci_device_id *found_id;

1320 1321 1322 1323
	if (!pci_dev->match_driver)
		return 0;

	pci_drv = to_pci_driver(drv);
1324
	found_id = pci_match_device(pci_drv, pci_dev);
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	if (found_id)
		return 1;

1328
	return 0;
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}

/**
 * pci_dev_get - increments the reference count of the pci device structure
 * @dev: the device being referenced
 *
 * Each live reference to a device should be refcounted.
 *
 * Drivers for PCI devices should normally record such references in
 * their probe() methods, when they bind to a device, and release
 * them by calling pci_dev_put(), in their disconnect() methods.
 *
 * A pointer to the device with the incremented reference counter is returned.
 */
struct pci_dev *pci_dev_get(struct pci_dev *dev)
{
	if (dev)
		get_device(&dev->dev);
	return dev;
}
1349
EXPORT_SYMBOL(pci_dev_get);
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/**
 * pci_dev_put - release a use of the pci device structure
 * @dev: device that's been disconnected
 *
 * Must be called when a user of a device is finished with it.  When the last
 * user of the device calls this function, the memory of the device is freed.
 */
void pci_dev_put(struct pci_dev *dev)
{
	if (dev)
		put_device(&dev->dev);
}
1363
EXPORT_SYMBOL(pci_dev_put);
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1365 1366 1367 1368 1369 1370 1371 1372 1373 1374 1375 1376 1377 1378 1379 1380 1381 1382 1383 1384 1385 1386 1387 1388 1389 1390 1391 1392
static int pci_uevent(struct device *dev, struct kobj_uevent_env *env)
{
	struct pci_dev *pdev;

	if (!dev)
		return -ENODEV;

	pdev = to_pci_dev(dev);

	if (add_uevent_var(env, "PCI_CLASS=%04X", pdev->class))
		return -ENOMEM;

	if (add_uevent_var(env, "PCI_ID=%04X:%04X", pdev->vendor, pdev->device))
		return -ENOMEM;

	if (add_uevent_var(env, "PCI_SUBSYS_ID=%04X:%04X", pdev->subsystem_vendor,
			   pdev->subsystem_device))
		return -ENOMEM;

	if (add_uevent_var(env, "PCI_SLOT_NAME=%s", pci_name(pdev)))
		return -ENOMEM;

	if (add_uevent_var(env, "MODALIAS=pci:v%08Xd%08Xsv%08Xsd%08Xbc%02Xsc%02Xi%02x",
			   pdev->vendor, pdev->device,
			   pdev->subsystem_vendor, pdev->subsystem_device,
			   (u8)(pdev->class >> 16), (u8)(pdev->class >> 8),
			   (u8)(pdev->class)))
		return -ENOMEM;
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1394 1395 1396
	return 0;
}

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struct bus_type pci_bus_type = {
	.name		= "pci",
	.match		= pci_bus_match,
1400
	.uevent		= pci_uevent,
1401 1402
	.probe		= pci_device_probe,
	.remove		= pci_device_remove,
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	.shutdown	= pci_device_shutdown,
1404
	.dev_groups	= pci_dev_groups,
1405
	.bus_groups	= pci_bus_groups,
1406
	.drv_groups	= pci_drv_groups,
1407
	.pm		= PCI_PM_OPS_PTR,
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};
1409
EXPORT_SYMBOL(pci_bus_type);
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static int __init pci_driver_init(void)
{
	return bus_register(&pci_bus_type);
}
postcore_initcall(pci_driver_init);