Ram Amrani cee9fbd8e2 qede: Add qedr framework
Adds a skeletal implementation of the qede RoCE driver -
The qedr has some dependencies of the state of the underlying base
interface. This adds some logic required with mutual registrations
and the ability to pass updates on 'intresting' events.

Signed-off-by: Ram Amrani <Ram.Amrani@caviumnetworks.com>
Signed-off-by: Yuval Mintz <Yuval.Mintz@caviumnetworks.com>
Signed-off-by: David S. Miller <davem@davemloft.net>
2016-10-03 23:22:46 -04:00

315 lines
7.8 KiB
C

/* QLogic qedr NIC Driver
* Copyright (c) 2015-2016 QLogic Corporation
*
* This software is available to you under a choice of one of two
* licenses. You may choose to be licensed under the terms of the GNU
* General Public License (GPL) Version 2, available from the file
* COPYING in the main directory of this source tree, or the
* OpenIB.org BSD license below:
*
* Redistribution and use in source and binary forms, with or
* without modification, are permitted provided that the following
* conditions are met:
*
* - Redistributions of source code must retain the above
* copyright notice, this list of conditions and the following
* disclaimer.
*
* - Redistributions in binary form must reproduce the above
* copyright notice, this list of conditions and the following
* disclaimer in the documentation and /or other materials
* provided with the distribution.
*
* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
* EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
* MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND
* NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS
* BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN
* ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN
* CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
* SOFTWARE.
*/
#include <linux/pci.h>
#include <linux/netdevice.h>
#include <linux/list.h>
#include <linux/mutex.h>
#include <linux/qed/qede_roce.h>
#include "qede.h"
static struct qedr_driver *qedr_drv;
static LIST_HEAD(qedr_dev_list);
static DEFINE_MUTEX(qedr_dev_list_lock);
bool qede_roce_supported(struct qede_dev *dev)
{
return dev->dev_info.common.rdma_supported;
}
static void _qede_roce_dev_add(struct qede_dev *edev)
{
if (!qedr_drv)
return;
edev->rdma_info.qedr_dev = qedr_drv->add(edev->cdev, edev->pdev,
edev->ndev);
}
static int qede_roce_create_wq(struct qede_dev *edev)
{
INIT_LIST_HEAD(&edev->rdma_info.roce_event_list);
edev->rdma_info.roce_wq = create_singlethread_workqueue("roce_wq");
if (!edev->rdma_info.roce_wq) {
DP_NOTICE(edev, "qedr: Could not create workqueue\n");
return -ENOMEM;
}
return 0;
}
static void qede_roce_cleanup_event(struct qede_dev *edev)
{
struct list_head *head = &edev->rdma_info.roce_event_list;
struct qede_roce_event_work *event_node;
flush_workqueue(edev->rdma_info.roce_wq);
while (!list_empty(head)) {
event_node = list_entry(head->next, struct qede_roce_event_work,
list);
cancel_work_sync(&event_node->work);
list_del(&event_node->list);
kfree(event_node);
}
}
static void qede_roce_destroy_wq(struct qede_dev *edev)
{
qede_roce_cleanup_event(edev);
destroy_workqueue(edev->rdma_info.roce_wq);
}
int qede_roce_dev_add(struct qede_dev *edev)
{
int rc = 0;
if (qede_roce_supported(edev)) {
rc = qede_roce_create_wq(edev);
if (rc)
return rc;
INIT_LIST_HEAD(&edev->rdma_info.entry);
mutex_lock(&qedr_dev_list_lock);
list_add_tail(&edev->rdma_info.entry, &qedr_dev_list);
_qede_roce_dev_add(edev);
mutex_unlock(&qedr_dev_list_lock);
}
return rc;
}
static void _qede_roce_dev_remove(struct qede_dev *edev)
{
if (qedr_drv && qedr_drv->remove && edev->rdma_info.qedr_dev)
qedr_drv->remove(edev->rdma_info.qedr_dev);
edev->rdma_info.qedr_dev = NULL;
}
void qede_roce_dev_remove(struct qede_dev *edev)
{
if (!qede_roce_supported(edev))
return;
qede_roce_destroy_wq(edev);
mutex_lock(&qedr_dev_list_lock);
_qede_roce_dev_remove(edev);
list_del(&edev->rdma_info.entry);
mutex_unlock(&qedr_dev_list_lock);
}
static void _qede_roce_dev_open(struct qede_dev *edev)
{
if (qedr_drv && edev->rdma_info.qedr_dev && qedr_drv->notify)
qedr_drv->notify(edev->rdma_info.qedr_dev, QEDE_UP);
}
static void qede_roce_dev_open(struct qede_dev *edev)
{
if (!qede_roce_supported(edev))
return;
mutex_lock(&qedr_dev_list_lock);
_qede_roce_dev_open(edev);
mutex_unlock(&qedr_dev_list_lock);
}
static void _qede_roce_dev_close(struct qede_dev *edev)
{
if (qedr_drv && edev->rdma_info.qedr_dev && qedr_drv->notify)
qedr_drv->notify(edev->rdma_info.qedr_dev, QEDE_DOWN);
}
static void qede_roce_dev_close(struct qede_dev *edev)
{
if (!qede_roce_supported(edev))
return;
mutex_lock(&qedr_dev_list_lock);
_qede_roce_dev_close(edev);
mutex_unlock(&qedr_dev_list_lock);
}
static void qede_roce_dev_shutdown(struct qede_dev *edev)
{
if (!qede_roce_supported(edev))
return;
mutex_lock(&qedr_dev_list_lock);
if (qedr_drv && edev->rdma_info.qedr_dev && qedr_drv->notify)
qedr_drv->notify(edev->rdma_info.qedr_dev, QEDE_CLOSE);
mutex_unlock(&qedr_dev_list_lock);
}
int qede_roce_register_driver(struct qedr_driver *drv)
{
struct qede_dev *edev;
u8 qedr_counter = 0;
mutex_lock(&qedr_dev_list_lock);
if (qedr_drv) {
mutex_unlock(&qedr_dev_list_lock);
return -EINVAL;
}
qedr_drv = drv;
list_for_each_entry(edev, &qedr_dev_list, rdma_info.entry) {
struct net_device *ndev;
qedr_counter++;
_qede_roce_dev_add(edev);
ndev = edev->ndev;
if (netif_running(ndev) && netif_oper_up(ndev))
_qede_roce_dev_open(edev);
}
mutex_unlock(&qedr_dev_list_lock);
DP_INFO(edev, "qedr: discovered and registered %d RoCE funcs\n",
qedr_counter);
return 0;
}
EXPORT_SYMBOL(qede_roce_register_driver);
void qede_roce_unregister_driver(struct qedr_driver *drv)
{
struct qede_dev *edev;
mutex_lock(&qedr_dev_list_lock);
list_for_each_entry(edev, &qedr_dev_list, rdma_info.entry) {
if (edev->rdma_info.qedr_dev)
_qede_roce_dev_remove(edev);
}
qedr_drv = NULL;
mutex_unlock(&qedr_dev_list_lock);
}
EXPORT_SYMBOL(qede_roce_unregister_driver);
static void qede_roce_changeaddr(struct qede_dev *edev)
{
if (!qede_roce_supported(edev))
return;
if (qedr_drv && edev->rdma_info.qedr_dev && qedr_drv->notify)
qedr_drv->notify(edev->rdma_info.qedr_dev, QEDE_CHANGE_ADDR);
}
struct qede_roce_event_work *qede_roce_get_free_event_node(struct qede_dev
*edev)
{
struct qede_roce_event_work *event_node = NULL;
struct list_head *list_node = NULL;
bool found = false;
list_for_each(list_node, &edev->rdma_info.roce_event_list) {
event_node = list_entry(list_node, struct qede_roce_event_work,
list);
if (!work_pending(&event_node->work)) {
found = true;
break;
}
}
if (!found) {
event_node = kzalloc(sizeof(*event_node), GFP_KERNEL);
if (!event_node) {
DP_NOTICE(edev,
"qedr: Could not allocate memory for roce work\n");
return NULL;
}
list_add_tail(&event_node->list,
&edev->rdma_info.roce_event_list);
}
return event_node;
}
static void qede_roce_handle_event(struct work_struct *work)
{
struct qede_roce_event_work *event_node;
enum qede_roce_event event;
struct qede_dev *edev;
event_node = container_of(work, struct qede_roce_event_work, work);
event = event_node->event;
edev = event_node->ptr;
switch (event) {
case QEDE_UP:
qede_roce_dev_open(edev);
break;
case QEDE_DOWN:
qede_roce_dev_close(edev);
break;
case QEDE_CLOSE:
qede_roce_dev_shutdown(edev);
break;
case QEDE_CHANGE_ADDR:
qede_roce_changeaddr(edev);
break;
default:
DP_NOTICE(edev, "Invalid roce event %d", event);
}
}
static void qede_roce_add_event(struct qede_dev *edev,
enum qede_roce_event event)
{
struct qede_roce_event_work *event_node;
if (!edev->rdma_info.qedr_dev)
return;
event_node = qede_roce_get_free_event_node(edev);
if (!event_node)
return;
event_node->event = event;
event_node->ptr = edev;
INIT_WORK(&event_node->work, qede_roce_handle_event);
queue_work(edev->rdma_info.roce_wq, &event_node->work);
}
void qede_roce_dev_event_open(struct qede_dev *edev)
{
qede_roce_add_event(edev, QEDE_UP);
}
void qede_roce_dev_event_close(struct qede_dev *edev)
{
qede_roce_add_event(edev, QEDE_DOWN);
}
void qede_roce_event_changeaddr(struct qede_dev *edev)
{
qede_roce_add_event(edev, QEDE_CHANGE_ADDR);
}