HelenOS sources
This source file includes following definitions.
- virtio_net_irq_handler
- virtio_net_register_interrupt
- virtio_net_initialize
- virtio_net_uninitialize
- virtio_net_send
- virtio_net_on_multicast_mode_change
- virtio_net_on_broadcast_mode_change
- virtio_net_dev_add
- virtio_net_get_device_info
- virtio_net_get_cable_state
- virtio_net_get_operation_mode
- main
#include "virtio-net.h"
#include <stdio.h>
#include <stdint.h>
#include <as.h>
#include <ddf/driver.h>
#include <ddf/interrupt.h>
#include <ddf/log.h>
#include <ops/nic.h>
#include <pci_dev_iface.h>
#include <nic/nic.h>
#include <nic.h>
#include <virtio-pci.h>
#define NAME "virtio-net"
#define VIRTIO_NET_NUM_QUEUES 3
#define RX_QUEUE_1 0
#define TX_QUEUE_1 1
#define CT_QUEUE_1 2
#define BUFFER_SIZE 2048
#define RX_BUF_SIZE BUFFER_SIZE
#define TX_BUF_SIZE BUFFER_SIZE
#define CT_BUF_SIZE BUFFER_SIZE
static ddf_dev_ops_t virtio_net_dev_ops;
static errno_t virtio_net_dev_add(ddf_dev_t *dev);
static driver_ops_t virtio_net_driver_ops = {
.dev_add = virtio_net_dev_add
};
static driver_t virtio_net_driver = {
.name = NAME,
.driver_ops = &virtio_net_driver_ops
};
static void virtio_net_irq_handler(ipc_call_t *icall, void *arg)
{
nic_t *nic = (nic_t *)arg;
virtio_net_t *virtio_net = nic_get_specific(nic);
virtio_dev_t *vdev = &virtio_net->virtio_dev;
uint16_t descno;
uint32_t len;
while (virtio_virtq_consume_used(vdev, RX_QUEUE_1, &descno, &len)) {
virtio_net_hdr_t *hdr =
(virtio_net_hdr_t *) virtio_net->rx_buf[descno];
if (len <= sizeof(*hdr)) {
ddf_msg(LVL_WARN,
"RX data length too short, packet dropped");
virtio_virtq_produce_available(vdev, RX_QUEUE_1,
descno);
continue;
}
nic_frame_t *frame = nic_alloc_frame(nic, len - sizeof(*hdr));
if (frame) {
memcpy(frame->data, &hdr[1], len - sizeof(*hdr));
nic_received_frame(nic, frame);
} else {
ddf_msg(LVL_WARN,
"Cannot allocate RX frame, packet dropped");
}
virtio_virtq_produce_available(vdev, RX_QUEUE_1, descno);
}
while (virtio_virtq_consume_used(vdev, TX_QUEUE_1, &descno, &len)) {
virtio_free_desc(vdev, TX_QUEUE_1, &virtio_net->tx_free_head,
descno);
}
while (virtio_virtq_consume_used(vdev, CT_QUEUE_1, &descno, &len)) {
virtio_free_desc(vdev, CT_QUEUE_1, &virtio_net->ct_free_head,
descno);
}
}
static errno_t virtio_net_register_interrupt(ddf_dev_t *dev)
{
nic_t *nic = ddf_dev_data_get(dev);
virtio_net_t *virtio_net = nic_get_specific(nic);
virtio_dev_t *vdev = &virtio_net->virtio_dev;
hw_res_list_parsed_t res;
hw_res_list_parsed_init(&res);
errno_t rc = nic_get_resources(nic, &res);
if (rc != EOK)
return rc;
if (res.irqs.count < 1) {
hw_res_list_parsed_clean(&res);
rc = EINVAL;
return rc;
}
virtio_net->irq = res.irqs.irqs[0];
hw_res_list_parsed_clean(&res);
irq_pio_range_t pio_ranges[] = {
{
.base = vdev->isr_phys,
.size = sizeof(vdev->isr_phys),
}
};
irq_cmd_t irq_commands[] = {
{
.cmd = CMD_PIO_READ_8,
.addr = (void *) vdev->isr_phys,
.dstarg = 2
},
{
.cmd = CMD_PREDICATE,
.value = 1,
.srcarg = 2
},
{
.cmd = CMD_ACCEPT
}
};
irq_code_t irq_code = {
.rangecount = sizeof(pio_ranges) / sizeof(irq_pio_range_t),
.ranges = pio_ranges,
.cmdcount = sizeof(irq_commands) / sizeof(irq_cmd_t),
.cmds = irq_commands
};
return register_interrupt_handler(dev, virtio_net->irq,
virtio_net_irq_handler, (void *)nic, &irq_code,
&virtio_net->irq_handle);
}
static errno_t virtio_net_initialize(ddf_dev_t *dev)
{
nic_t *nic = nic_create_and_bind(dev);
if (!nic)
return ENOMEM;
virtio_net_t *virtio_net = calloc(1, sizeof(virtio_net_t));
if (!virtio_net) {
nic_unbind_and_destroy(dev);
return ENOMEM;
}
nic_set_specific(nic, virtio_net);
errno_t rc = virtio_pci_dev_initialize(dev, &virtio_net->virtio_dev);
if (rc != EOK)
return rc;
virtio_dev_t *vdev = &virtio_net->virtio_dev;
virtio_pci_common_cfg_t *cfg = virtio_net->virtio_dev.common_cfg;
virtio_net_cfg_t *netcfg = virtio_net->virtio_dev.device_cfg;
rc = virtio_net_register_interrupt(dev);
if (rc != EOK)
goto fail;
rc = virtio_device_setup_start(vdev,
VIRTIO_NET_F_MAC | VIRTIO_NET_F_CTRL_VQ);
if (rc != EOK)
goto fail;
uint16_t num_queues = pio_read_le16(&cfg->num_queues);
if (num_queues != VIRTIO_NET_NUM_QUEUES) {
ddf_msg(LVL_NOTE, "Unsupported number of virtqueues: %u",
num_queues);
rc = ELIMIT;
goto fail;
}
vdev->queues = calloc(sizeof(virtq_t), num_queues);
if (!vdev->queues) {
rc = ENOMEM;
goto fail;
}
rc = virtio_virtq_setup(vdev, RX_QUEUE_1, RX_BUFFERS);
if (rc != EOK)
goto fail;
rc = virtio_virtq_setup(vdev, TX_QUEUE_1, TX_BUFFERS);
if (rc != EOK)
goto fail;
rc = virtio_virtq_setup(vdev, CT_QUEUE_1, CT_BUFFERS);
if (rc != EOK)
goto fail;
rc = virtio_setup_dma_bufs(RX_BUFFERS, RX_BUF_SIZE, false,
virtio_net->rx_buf, virtio_net->rx_buf_p);
if (rc != EOK)
goto fail;
rc = virtio_setup_dma_bufs(TX_BUFFERS, TX_BUF_SIZE, true,
virtio_net->tx_buf, virtio_net->tx_buf_p);
if (rc != EOK)
goto fail;
rc = virtio_setup_dma_bufs(CT_BUFFERS, CT_BUF_SIZE, true,
virtio_net->ct_buf, virtio_net->ct_buf_p);
if (rc != EOK)
goto fail;
for (unsigned i = 0; i < RX_BUFFERS; i++) {
virtio_virtq_desc_set(vdev, RX_QUEUE_1, i,
virtio_net->rx_buf_p[i], RX_BUF_SIZE, VIRTQ_DESC_F_WRITE,
0);
virtio_virtq_produce_available(vdev, RX_QUEUE_1, i);
}
virtio_create_desc_free_list(vdev, TX_QUEUE_1, TX_BUFFERS,
&virtio_net->tx_free_head);
virtio_create_desc_free_list(vdev, CT_QUEUE_1, CT_BUFFERS,
&virtio_net->ct_free_head);
nic_address_t nic_addr;
for (unsigned i = 0; i < ETH_ADDR; i++)
nic_addr.address[i] = pio_read_8(&netcfg->mac[i]);
rc = nic_report_address(nic, &nic_addr);
if (rc != EOK)
goto fail;
ddf_msg(LVL_NOTE, "MAC address: " PRIMAC, ARGSMAC(nic_addr.address));
rc = hw_res_enable_interrupt(ddf_dev_parent_sess_get(dev),
virtio_net->irq);
if (rc != EOK) {
ddf_msg(LVL_NOTE, "Failed to enable interrupt");
goto fail;
}
ddf_msg(LVL_NOTE, "Registered IRQ %d", virtio_net->irq);
virtio_device_setup_finalize(vdev);
return EOK;
fail:
virtio_teardown_dma_bufs(virtio_net->rx_buf);
virtio_teardown_dma_bufs(virtio_net->tx_buf);
virtio_teardown_dma_bufs(virtio_net->ct_buf);
virtio_device_setup_fail(vdev);
virtio_pci_dev_cleanup(vdev);
return rc;
}
static void virtio_net_uninitialize(ddf_dev_t *dev)
{
nic_t *nic = ddf_dev_data_get(dev);
virtio_net_t *virtio_net = (virtio_net_t *) nic_get_specific(nic);
virtio_teardown_dma_bufs(virtio_net->rx_buf);
virtio_teardown_dma_bufs(virtio_net->tx_buf);
virtio_teardown_dma_bufs(virtio_net->ct_buf);
virtio_device_setup_fail(&virtio_net->virtio_dev);
virtio_pci_dev_cleanup(&virtio_net->virtio_dev);
}
static void virtio_net_send(nic_t *nic, void *data, size_t size)
{
virtio_net_t *virtio_net = nic_get_specific(nic);
virtio_dev_t *vdev = &virtio_net->virtio_dev;
if (size > sizeof(virtio_net) + TX_BUF_SIZE) {
ddf_msg(LVL_WARN, "TX data too big, frame dropped");
return;
}
uint16_t descno = virtio_alloc_desc(vdev, TX_QUEUE_1,
&virtio_net->tx_free_head);
if (descno == (uint16_t) -1U) {
ddf_msg(LVL_WARN, "No TX buffers available, frame dropped");
return;
}
assert(descno < TX_BUFFERS);
virtio_net_hdr_t *hdr = (virtio_net_hdr_t *) virtio_net->tx_buf[descno];
memset(hdr, 0, sizeof(virtio_net_hdr_t));
hdr->gso_type = VIRTIO_NET_HDR_GSO_NONE;
hdr->num_buffers = 0;
memcpy(&hdr[1], data, size);
virtio_virtq_desc_set(vdev, TX_QUEUE_1, descno,
virtio_net->tx_buf_p[descno], sizeof(virtio_net_hdr_t) + size, 0, 0);
virtio_virtq_produce_available(vdev, TX_QUEUE_1, descno);
}
static errno_t virtio_net_on_multicast_mode_change(nic_t *nic,
nic_multicast_mode_t new_mode, const nic_address_t *address_list,
size_t address_count)
{
switch (new_mode) {
case NIC_MULTICAST_BLOCKED:
nic_report_hw_filtering(nic, -1, 0, -1);
return EOK;
case NIC_MULTICAST_LIST:
nic_report_hw_filtering(nic, -1, 0, -1);
return EOK;
case NIC_MULTICAST_PROMISC:
nic_report_hw_filtering(nic, -1, 0, -1);
return EOK;
default:
return ENOTSUP;
}
return EOK;
}
static errno_t virtio_net_on_broadcast_mode_change(nic_t *nic,
nic_broadcast_mode_t new_mode)
{
switch (new_mode) {
case NIC_BROADCAST_BLOCKED:
return ENOTSUP;
case NIC_BROADCAST_ACCEPTED:
return EOK;
default:
return ENOTSUP;
}
}
static errno_t virtio_net_dev_add(ddf_dev_t *dev)
{
ddf_msg(LVL_NOTE, "%s %s (handle = %zu)", __func__,
ddf_dev_get_name(dev), ddf_dev_get_handle(dev));
errno_t rc = virtio_net_initialize(dev);
if (rc != EOK)
return rc;
ddf_fun_t *fun = ddf_fun_create(dev, fun_exposed, "port0");
if (fun == NULL) {
rc = ENOMEM;
goto uninitialize;
}
nic_t *nic = ddf_dev_data_get(dev);
nic_set_ddf_fun(nic, fun);
ddf_fun_set_ops(fun, &virtio_net_dev_ops);
nic_set_send_frame_handler(nic, virtio_net_send);
nic_set_filtering_change_handlers(nic, NULL,
virtio_net_on_multicast_mode_change,
virtio_net_on_broadcast_mode_change, NULL, NULL);
rc = ddf_fun_bind(fun);
if (rc != EOK) {
ddf_msg(LVL_ERROR, "Failed binding device function");
goto destroy;
}
rc = ddf_fun_add_to_category(fun, DEVICE_CATEGORY_NIC);
if (rc != EOK) {
ddf_msg(LVL_ERROR, "Failed adding function to category");
goto unbind;
}
ddf_msg(LVL_NOTE, "The %s device has been successfully initialized.",
ddf_dev_get_name(dev));
return EOK;
unbind:
ddf_fun_unbind(fun);
destroy:
ddf_fun_destroy(fun);
uninitialize:
virtio_net_uninitialize(dev);
return rc;
}
static errno_t virtio_net_get_device_info(ddf_fun_t *fun,
nic_device_info_t *info)
{
nic_t *nic = nic_get_from_ddf_fun(fun);
if (!nic)
return ENOENT;
str_cpy(info->vendor_name, sizeof(info->vendor_name), "Red Hat, Inc.");
str_cpy(info->model_name, sizeof(info->model_name),
"Virtio network device");
return EOK;
}
static errno_t virtio_net_get_cable_state(ddf_fun_t *fun,
nic_cable_state_t *state)
{
*state = NIC_CS_PLUGGED;
return EOK;
}
static errno_t virtio_net_get_operation_mode(ddf_fun_t *fun, int *speed,
nic_channel_mode_t *duplex, nic_role_t *role)
{
*speed = 1000;
*duplex = NIC_CM_FULL_DUPLEX;
*role = NIC_ROLE_UNKNOWN;
return EOK;
}
static nic_iface_t virtio_net_nic_iface = {
.get_device_info = virtio_net_get_device_info,
.get_cable_state = virtio_net_get_cable_state,
.get_operation_mode = virtio_net_get_operation_mode,
};
int main(void)
{
printf("%s: HelenOS virtio-net driver\n", NAME);
if (nic_driver_init(NAME) != EOK)
return 1;
nic_driver_implement(&virtio_net_driver_ops, &virtio_net_dev_ops,
&virtio_net_nic_iface);
(void) ddf_log_init(NAME);
return ddf_driver_main(&virtio_net_driver);
}
HelenOS homepage, sources at GitHub