* Chris Telfer <chris.telfer@netronome.com>
*/
+#include <linux/bpf.h>
#include <linux/module.h>
#include <linux/kernel.h>
#include <linux/init.h>
nn->num_rx_rings = min(nn->num_r_vecs, nn->num_rx_rings);
nn->num_tx_rings = min(nn->num_r_vecs, nn->num_tx_rings);
+ nn->num_stack_tx_rings = nn->num_tx_rings;
nn->lsc_handler = nfp_net_irq_lsc;
nn->exn_handler = nfp_net_irq_exn;
u64_stats_update_end(&r_vec->tx_sync);
}
+static void nfp_net_tx_xmit_more_flush(struct nfp_net_tx_ring *tx_ring)
+{
+ wmb();
+ nfp_qcp_wr_ptr_add(tx_ring->qcp_q, tx_ring->wr_ptr_add);
+ tx_ring->wr_ptr_add = 0;
+}
+
/**
* nfp_net_tx() - Main transmit entry point
* @skb: SKB to transmit
nfp_net_tx_ring_stop(nd_q, tx_ring);
tx_ring->wr_ptr_add += nr_frags + 1;
- if (!skb->xmit_more || netif_xmit_stopped(nd_q)) {
- /* force memory write before we let HW know */
- wmb();
- nfp_qcp_wr_ptr_add(tx_ring->qcp_q, tx_ring->wr_ptr_add);
- tx_ring->wr_ptr_add = 0;
- }
+ if (!skb->xmit_more || netif_xmit_stopped(nd_q))
+ nfp_net_tx_xmit_more_flush(tx_ring);
skb_tx_timestamp(skb);
tx_ring->rd_p, tx_ring->wr_p, tx_ring->cnt);
}
+static void nfp_net_xdp_complete(struct nfp_net_tx_ring *tx_ring)
+{
+ struct nfp_net_r_vector *r_vec = tx_ring->r_vec;
+ struct nfp_net *nn = r_vec->nfp_net;
+ u32 done_pkts = 0, done_bytes = 0;
+ int idx, todo;
+ u32 qcp_rd_p;
+
+ /* Work out how many descriptors have been transmitted */
+ qcp_rd_p = nfp_qcp_rd_ptr_read(tx_ring->qcp_q);
+
+ if (qcp_rd_p == tx_ring->qcp_rd_p)
+ return;
+
+ if (qcp_rd_p > tx_ring->qcp_rd_p)
+ todo = qcp_rd_p - tx_ring->qcp_rd_p;
+ else
+ todo = qcp_rd_p + tx_ring->cnt - tx_ring->qcp_rd_p;
+
+ while (todo--) {
+ idx = tx_ring->rd_p & (tx_ring->cnt - 1);
+ tx_ring->rd_p++;
+
+ if (!tx_ring->txbufs[idx].frag)
+ continue;
+
+ nfp_net_dma_unmap_rx(nn, tx_ring->txbufs[idx].dma_addr,
+ nn->fl_bufsz, DMA_BIDIRECTIONAL);
+ __free_page(virt_to_page(tx_ring->txbufs[idx].frag));
+
+ done_pkts++;
+ done_bytes += tx_ring->txbufs[idx].real_len;
+
+ tx_ring->txbufs[idx].dma_addr = 0;
+ tx_ring->txbufs[idx].frag = NULL;
+ tx_ring->txbufs[idx].fidx = -2;
+ }
+
+ tx_ring->qcp_rd_p = qcp_rd_p;
+
+ u64_stats_update_begin(&r_vec->tx_sync);
+ r_vec->tx_bytes += done_bytes;
+ r_vec->tx_pkts += done_pkts;
+ u64_stats_update_end(&r_vec->tx_sync);
+
+ WARN_ONCE(tx_ring->wr_p - tx_ring->rd_p > tx_ring->cnt,
+ "TX ring corruption rd_p=%u wr_p=%u cnt=%u\n",
+ tx_ring->rd_p, tx_ring->wr_p, tx_ring->cnt);
+}
+
/**
* nfp_net_tx_ring_reset() - Free any untransmitted buffers and reset pointers
* @nn: NFP Net device
static void
nfp_net_tx_ring_reset(struct nfp_net *nn, struct nfp_net_tx_ring *tx_ring)
{
+ struct nfp_net_r_vector *r_vec = tx_ring->r_vec;
const struct skb_frag_struct *frag;
- struct netdev_queue *nd_q;
struct pci_dev *pdev = nn->pdev;
+ struct netdev_queue *nd_q;
while (tx_ring->rd_p != tx_ring->wr_p) {
- int nr_frags, fidx, idx;
- struct sk_buff *skb;
+ struct nfp_net_tx_buf *tx_buf;
+ int idx;
idx = tx_ring->rd_p & (tx_ring->cnt - 1);
- skb = tx_ring->txbufs[idx].skb;
- nr_frags = skb_shinfo(skb)->nr_frags;
- fidx = tx_ring->txbufs[idx].fidx;
+ tx_buf = &tx_ring->txbufs[idx];
- if (fidx == -1) {
- /* unmap head */
- dma_unmap_single(&pdev->dev,
- tx_ring->txbufs[idx].dma_addr,
- skb_headlen(skb), DMA_TO_DEVICE);
+ if (tx_ring == r_vec->xdp_ring) {
+ nfp_net_dma_unmap_rx(nn, tx_buf->dma_addr,
+ nn->fl_bufsz, DMA_BIDIRECTIONAL);
+ __free_page(virt_to_page(tx_ring->txbufs[idx].frag));
} else {
- /* unmap fragment */
- frag = &skb_shinfo(skb)->frags[fidx];
- dma_unmap_page(&pdev->dev,
- tx_ring->txbufs[idx].dma_addr,
- skb_frag_size(frag), DMA_TO_DEVICE);
- }
+ struct sk_buff *skb = tx_ring->txbufs[idx].skb;
+ int nr_frags = skb_shinfo(skb)->nr_frags;
+
+ if (tx_buf->fidx == -1) {
+ /* unmap head */
+ dma_unmap_single(&pdev->dev, tx_buf->dma_addr,
+ skb_headlen(skb),
+ DMA_TO_DEVICE);
+ } else {
+ /* unmap fragment */
+ frag = &skb_shinfo(skb)->frags[tx_buf->fidx];
+ dma_unmap_page(&pdev->dev, tx_buf->dma_addr,
+ skb_frag_size(frag),
+ DMA_TO_DEVICE);
+ }
- /* check for last gather fragment */
- if (fidx == nr_frags - 1)
- dev_kfree_skb_any(skb);
+ /* check for last gather fragment */
+ if (tx_buf->fidx == nr_frags - 1)
+ dev_kfree_skb_any(skb);
+ }
- tx_ring->txbufs[idx].dma_addr = 0;
- tx_ring->txbufs[idx].skb = NULL;
- tx_ring->txbufs[idx].fidx = -2;
+ tx_buf->dma_addr = 0;
+ tx_buf->skb = NULL;
+ tx_buf->fidx = -2;
tx_ring->qcp_rd_p++;
tx_ring->rd_p++;
tx_ring->qcp_rd_p = 0;
tx_ring->wr_ptr_add = 0;
+ if (tx_ring == r_vec->xdp_ring)
+ return;
+
nd_q = netdev_get_tx_queue(nn->netdev, tx_ring->idx);
netdev_tx_reset_queue(nd_q);
}
struct nfp_net *nn = netdev_priv(netdev);
int i;
- for (i = 0; i < nn->num_tx_rings; i++) {
+ for (i = 0; i < nn->netdev->real_num_tx_queues; i++) {
if (!netif_tx_queue_stopped(netdev_get_tx_queue(netdev, i)))
continue;
nn_warn(nn, "TX timeout on ring: %d\n", i);
return fl_bufsz;
}
+static void
+nfp_net_free_frag(void *frag, bool xdp)
+{
+ if (!xdp)
+ skb_free_frag(frag);
+ else
+ __free_page(virt_to_page(frag));
+}
+
/**
* nfp_net_rx_alloc_one() - Allocate and map page frag for RX
* @rx_ring: RX ring structure of the skb
* @dma_addr: Pointer to storage for DMA address (output param)
* @fl_bufsz: size of freelist buffers
+ * @xdp: Whether XDP is enabled
*
* This function will allcate a new page frag, map it for DMA.
*
*/
static void *
nfp_net_rx_alloc_one(struct nfp_net_rx_ring *rx_ring, dma_addr_t *dma_addr,
- unsigned int fl_bufsz)
+ unsigned int fl_bufsz, bool xdp)
{
struct nfp_net *nn = rx_ring->r_vec->nfp_net;
+ int direction;
void *frag;
- frag = netdev_alloc_frag(fl_bufsz);
+ if (!xdp)
+ frag = netdev_alloc_frag(fl_bufsz);
+ else
+ frag = page_address(alloc_page(GFP_KERNEL | __GFP_COLD));
if (!frag) {
nn_warn_ratelimit(nn, "Failed to alloc receive page frag\n");
return NULL;
}
- *dma_addr = nfp_net_dma_map_rx(nn, frag, fl_bufsz, DMA_FROM_DEVICE);
+ direction = xdp ? DMA_BIDIRECTIONAL : DMA_FROM_DEVICE;
+
+ *dma_addr = nfp_net_dma_map_rx(nn, frag, fl_bufsz, direction);
if (dma_mapping_error(&nn->pdev->dev, *dma_addr)) {
- skb_free_frag(frag);
+ nfp_net_free_frag(frag, xdp);
nn_warn_ratelimit(nn, "Failed to map DMA RX buffer\n");
return NULL;
}
return frag;
}
-static void *nfp_net_napi_alloc_one(struct nfp_net *nn, dma_addr_t *dma_addr)
+static void *
+nfp_net_napi_alloc_one(struct nfp_net *nn, int direction, dma_addr_t *dma_addr)
{
void *frag;
- frag = napi_alloc_frag(nn->fl_bufsz);
+ if (!nn->xdp_prog)
+ frag = napi_alloc_frag(nn->fl_bufsz);
+ else
+ frag = page_address(alloc_page(GFP_ATOMIC | __GFP_COLD));
if (!frag) {
nn_warn_ratelimit(nn, "Failed to alloc receive page frag\n");
return NULL;
}
- *dma_addr = nfp_net_dma_map_rx(nn, frag, nn->fl_bufsz, DMA_FROM_DEVICE);
+ *dma_addr = nfp_net_dma_map_rx(nn, frag, nn->fl_bufsz, direction);
if (dma_mapping_error(&nn->pdev->dev, *dma_addr)) {
- skb_free_frag(frag);
+ nfp_net_free_frag(frag, nn->xdp_prog);
nn_warn_ratelimit(nn, "Failed to map DMA RX buffer\n");
return NULL;
}
* nfp_net_rx_ring_bufs_free() - Free any buffers currently on the RX ring
* @nn: NFP Net device
* @rx_ring: RX ring to remove buffers from
+ * @xdp: Whether XDP is enabled
*
* Assumes that the device is stopped and buffers are in [0, ring->cnt - 1)
* entries. After device is disabled nfp_net_rx_ring_reset() must be called
* to restore required ring geometry.
*/
static void
-nfp_net_rx_ring_bufs_free(struct nfp_net *nn, struct nfp_net_rx_ring *rx_ring)
+nfp_net_rx_ring_bufs_free(struct nfp_net *nn, struct nfp_net_rx_ring *rx_ring,
+ bool xdp)
{
+ int direction = xdp ? DMA_BIDIRECTIONAL : DMA_FROM_DEVICE;
unsigned int i;
for (i = 0; i < rx_ring->cnt - 1; i++) {
continue;
nfp_net_dma_unmap_rx(nn, rx_ring->rxbufs[i].dma_addr,
- rx_ring->bufsz, DMA_FROM_DEVICE);
- skb_free_frag(rx_ring->rxbufs[i].frag);
+ rx_ring->bufsz, direction);
+ nfp_net_free_frag(rx_ring->rxbufs[i].frag, xdp);
rx_ring->rxbufs[i].dma_addr = 0;
rx_ring->rxbufs[i].frag = NULL;
}
* nfp_net_rx_ring_bufs_alloc() - Fill RX ring with buffers (don't give to FW)
* @nn: NFP Net device
* @rx_ring: RX ring to remove buffers from
+ * @xdp: Whether XDP is enabled
*/
static int
-nfp_net_rx_ring_bufs_alloc(struct nfp_net *nn, struct nfp_net_rx_ring *rx_ring)
+nfp_net_rx_ring_bufs_alloc(struct nfp_net *nn, struct nfp_net_rx_ring *rx_ring,
+ bool xdp)
{
struct nfp_net_rx_buf *rxbufs;
unsigned int i;
for (i = 0; i < rx_ring->cnt - 1; i++) {
rxbufs[i].frag =
nfp_net_rx_alloc_one(rx_ring, &rxbufs[i].dma_addr,
- rx_ring->bufsz);
+ rx_ring->bufsz, xdp);
if (!rxbufs[i].frag) {
- nfp_net_rx_ring_bufs_free(nn, rx_ring);
+ nfp_net_rx_ring_bufs_free(nn, rx_ring, xdp);
return -ENOMEM;
}
}
dev_kfree_skb_any(skb);
}
+static void
+nfp_net_tx_xdp_buf(struct nfp_net *nn, struct nfp_net_rx_ring *rx_ring,
+ struct nfp_net_tx_ring *tx_ring,
+ struct nfp_net_rx_buf *rxbuf, unsigned int pkt_off,
+ unsigned int pkt_len)
+{
+ struct nfp_net_tx_buf *txbuf;
+ struct nfp_net_tx_desc *txd;
+ dma_addr_t new_dma_addr;
+ void *new_frag;
+ int wr_idx;
+
+ if (unlikely(nfp_net_tx_full(tx_ring, 1))) {
+ nfp_net_rx_drop(rx_ring->r_vec, rx_ring, rxbuf, NULL);
+ return;
+ }
+
+ new_frag = nfp_net_napi_alloc_one(nn, DMA_BIDIRECTIONAL, &new_dma_addr);
+ if (unlikely(!new_frag)) {
+ nfp_net_rx_drop(rx_ring->r_vec, rx_ring, rxbuf, NULL);
+ return;
+ }
+ nfp_net_rx_give_one(rx_ring, new_frag, new_dma_addr);
+
+ wr_idx = tx_ring->wr_p & (tx_ring->cnt - 1);
+
+ /* Stash the soft descriptor of the head then initialize it */
+ txbuf = &tx_ring->txbufs[wr_idx];
+ txbuf->frag = rxbuf->frag;
+ txbuf->dma_addr = rxbuf->dma_addr;
+ txbuf->fidx = -1;
+ txbuf->pkt_cnt = 1;
+ txbuf->real_len = pkt_len;
+
+ dma_sync_single_for_device(&nn->pdev->dev, rxbuf->dma_addr + pkt_off,
+ pkt_len, DMA_TO_DEVICE);
+
+ /* Build TX descriptor */
+ txd = &tx_ring->txds[wr_idx];
+ txd->offset_eop = PCIE_DESC_TX_EOP;
+ txd->dma_len = cpu_to_le16(pkt_len);
+ nfp_desc_set_dma_addr(txd, rxbuf->dma_addr + pkt_off);
+ txd->data_len = cpu_to_le16(pkt_len);
+
+ txd->flags = 0;
+ txd->mss = 0;
+ txd->l4_offset = 0;
+
+ tx_ring->wr_p++;
+ tx_ring->wr_ptr_add++;
+}
+
+static int nfp_net_run_xdp(struct bpf_prog *prog, void *data, unsigned int len)
+{
+ struct xdp_buff xdp;
+
+ xdp.data = data;
+ xdp.data_end = data + len;
+
+ return BPF_PROG_RUN(prog, (void *)&xdp);
+}
+
/**
* nfp_net_rx() - receive up to @budget packets on @rx_ring
* @rx_ring: RX ring to receive from
{
struct nfp_net_r_vector *r_vec = rx_ring->r_vec;
struct nfp_net *nn = r_vec->nfp_net;
+ struct nfp_net_tx_ring *tx_ring;
+ struct bpf_prog *xdp_prog;
+ unsigned int true_bufsz;
struct sk_buff *skb;
int pkts_polled = 0;
+ int rx_dma_map_dir;
int idx;
+ rcu_read_lock();
+ xdp_prog = READ_ONCE(nn->xdp_prog);
+ rx_dma_map_dir = xdp_prog ? DMA_BIDIRECTIONAL : DMA_FROM_DEVICE;
+ true_bufsz = xdp_prog ? PAGE_SIZE : nn->fl_bufsz;
+ tx_ring = r_vec->xdp_ring;
+
while (pkts_polled < budget) {
unsigned int meta_len, data_len, data_off, pkt_len, pkt_off;
struct nfp_net_rx_buf *rxbuf;
r_vec->rx_bytes += pkt_len;
u64_stats_update_end(&r_vec->rx_sync);
- skb = build_skb(rxbuf->frag, nn->fl_bufsz);
+ if (xdp_prog) {
+ int act;
+
+ dma_sync_single_for_cpu(&nn->pdev->dev,
+ rxbuf->dma_addr + pkt_off,
+ pkt_len, DMA_FROM_DEVICE);
+ act = nfp_net_run_xdp(xdp_prog, rxbuf->frag + data_off,
+ pkt_len);
+ switch (act) {
+ case XDP_PASS:
+ break;
+ case XDP_TX:
+ nfp_net_tx_xdp_buf(nn, rx_ring, tx_ring, rxbuf,
+ pkt_off, pkt_len);
+ continue;
+ default:
+ bpf_warn_invalid_xdp_action(act);
+ case XDP_ABORTED:
+ case XDP_DROP:
+ nfp_net_rx_give_one(rx_ring, rxbuf->frag,
+ rxbuf->dma_addr);
+ continue;
+ }
+ }
+
+ skb = build_skb(rxbuf->frag, true_bufsz);
if (unlikely(!skb)) {
nfp_net_rx_drop(r_vec, rx_ring, rxbuf, NULL);
continue;
}
- new_frag = nfp_net_napi_alloc_one(nn, &new_dma_addr);
+ new_frag = nfp_net_napi_alloc_one(nn, rx_dma_map_dir,
+ &new_dma_addr);
if (unlikely(!new_frag)) {
nfp_net_rx_drop(r_vec, rx_ring, rxbuf, skb);
continue;
}
- nfp_net_dma_unmap_rx(nn, rx_ring->rxbufs[idx].dma_addr,
- nn->fl_bufsz, DMA_FROM_DEVICE);
+ nfp_net_dma_unmap_rx(nn, rxbuf->dma_addr, nn->fl_bufsz,
+ rx_dma_map_dir);
nfp_net_rx_give_one(rx_ring, new_frag, new_dma_addr);
napi_gro_receive(&rx_ring->r_vec->napi, skb);
}
+ if (xdp_prog && tx_ring->wr_ptr_add)
+ nfp_net_tx_xmit_more_flush(tx_ring);
+ rcu_read_unlock();
+
return pkts_polled;
}
if (r_vec->tx_ring)
nfp_net_tx_complete(r_vec->tx_ring);
- if (r_vec->rx_ring)
+ if (r_vec->rx_ring) {
pkts_polled = nfp_net_rx(r_vec->rx_ring, budget);
+ if (r_vec->xdp_ring)
+ nfp_net_xdp_complete(r_vec->xdp_ring);
+ }
if (pkts_polled < budget) {
napi_complete_done(napi, pkts_polled);
* nfp_net_tx_ring_alloc() - Allocate resource for a TX ring
* @tx_ring: TX Ring structure to allocate
* @cnt: Ring buffer count
+ * @is_xdp: True if ring will be used for XDP
*
* Return: 0 on success, negative errno otherwise.
*/
-static int nfp_net_tx_ring_alloc(struct nfp_net_tx_ring *tx_ring, u32 cnt)
+static int
+nfp_net_tx_ring_alloc(struct nfp_net_tx_ring *tx_ring, u32 cnt, bool is_xdp)
{
struct nfp_net_r_vector *r_vec = tx_ring->r_vec;
struct nfp_net *nn = r_vec->nfp_net;
if (!tx_ring->txbufs)
goto err_alloc;
- netif_set_xps_queue(nn->netdev, &r_vec->affinity_mask, tx_ring->idx);
+ if (!is_xdp)
+ netif_set_xps_queue(nn->netdev, &r_vec->affinity_mask,
+ tx_ring->idx);
- nn_dbg(nn, "TxQ%02d: QCidx=%02d cnt=%d dma=%#llx host=%p\n",
+ nn_dbg(nn, "TxQ%02d: QCidx=%02d cnt=%d dma=%#llx host=%p %s\n",
tx_ring->idx, tx_ring->qcidx,
- tx_ring->cnt, (unsigned long long)tx_ring->dma, tx_ring->txds);
+ tx_ring->cnt, (unsigned long long)tx_ring->dma, tx_ring->txds,
+ is_xdp ? "XDP" : "");
return 0;
}
static struct nfp_net_tx_ring *
-nfp_net_tx_ring_set_prepare(struct nfp_net *nn, struct nfp_net_ring_set *s)
+nfp_net_tx_ring_set_prepare(struct nfp_net *nn, struct nfp_net_ring_set *s,
+ unsigned int num_stack_tx_rings)
{
struct nfp_net_tx_ring *rings;
unsigned int r;
return NULL;
for (r = 0; r < s->n_rings; r++) {
- nfp_net_tx_ring_init(&rings[r], &nn->r_vecs[r], r);
+ int bias = 0;
+
+ if (r >= num_stack_tx_rings)
+ bias = num_stack_tx_rings;
- if (nfp_net_tx_ring_alloc(&rings[r], s->dcnt))
+ nfp_net_tx_ring_init(&rings[r], &nn->r_vecs[r - bias], r);
+
+ if (nfp_net_tx_ring_alloc(&rings[r], s->dcnt, bias))
goto err_free_prev;
}
}
static struct nfp_net_rx_ring *
-nfp_net_rx_ring_set_prepare(struct nfp_net *nn, struct nfp_net_ring_set *s)
+nfp_net_rx_ring_set_prepare(struct nfp_net *nn, struct nfp_net_ring_set *s,
+ bool xdp)
{
unsigned int fl_bufsz = nfp_net_calc_fl_bufsz(nn, s->mtu);
struct nfp_net_rx_ring *rings;
if (nfp_net_rx_ring_alloc(&rings[r], fl_bufsz, s->dcnt))
goto err_free_prev;
- if (nfp_net_rx_ring_bufs_alloc(nn, &rings[r]))
+ if (nfp_net_rx_ring_bufs_alloc(nn, &rings[r], xdp))
goto err_free_ring;
}
err_free_prev:
while (r--) {
- nfp_net_rx_ring_bufs_free(nn, &rings[r]);
+ nfp_net_rx_ring_bufs_free(nn, &rings[r], xdp);
err_free_ring:
nfp_net_rx_ring_free(&rings[r]);
}
}
static void
-nfp_net_rx_ring_set_free(struct nfp_net *nn, struct nfp_net_ring_set *s)
+nfp_net_rx_ring_set_free(struct nfp_net *nn, struct nfp_net_ring_set *s,
+ bool xdp)
{
struct nfp_net_rx_ring *rings = s->rings;
unsigned int r;
for (r = 0; r < s->n_rings; r++) {
- nfp_net_rx_ring_bufs_free(nn, &rings[r]);
+ nfp_net_rx_ring_bufs_free(nn, &rings[r], xdp);
nfp_net_rx_ring_free(&rings[r]);
}
int idx)
{
r_vec->rx_ring = idx < nn->num_rx_rings ? &nn->rx_rings[idx] : NULL;
- r_vec->tx_ring = idx < nn->num_tx_rings ? &nn->tx_rings[idx] : NULL;
+ r_vec->tx_ring =
+ idx < nn->num_stack_tx_rings ? &nn->tx_rings[idx] : NULL;
+
+ r_vec->xdp_ring = idx < nn->num_tx_rings - nn->num_stack_tx_rings ?
+ &nn->tx_rings[nn->num_stack_tx_rings + idx] : NULL;
}
static int
goto err_cleanup_vec_p;
}
- nn->rx_rings = nfp_net_rx_ring_set_prepare(nn, &rx);
+ nn->rx_rings = nfp_net_rx_ring_set_prepare(nn, &rx, nn->xdp_prog);
if (!nn->rx_rings) {
err = -ENOMEM;
goto err_cleanup_vec;
}
- nn->tx_rings = nfp_net_tx_ring_set_prepare(nn, &tx);
+ nn->tx_rings = nfp_net_tx_ring_set_prepare(nn, &tx,
+ nn->num_stack_tx_rings);
if (!nn->tx_rings) {
err = -ENOMEM;
goto err_free_rx_rings;
for (r = 0; r < nn->max_r_vecs; r++)
nfp_net_vector_assign_rings(nn, &nn->r_vecs[r], r);
- err = netif_set_real_num_tx_queues(netdev, nn->num_tx_rings);
+ err = netif_set_real_num_tx_queues(netdev, nn->num_stack_tx_rings);
if (err)
goto err_free_rings;
err_free_rings:
nfp_net_tx_ring_set_free(nn, &tx);
err_free_rx_rings:
- nfp_net_rx_ring_set_free(nn, &rx);
+ nfp_net_rx_ring_set_free(nn, &rx, nn->xdp_prog);
err_cleanup_vec:
r = nn->num_r_vecs;
err_cleanup_vec_p:
unsigned int r;
for (r = 0; r < nn->num_rx_rings; r++) {
- nfp_net_rx_ring_bufs_free(nn, &nn->rx_rings[r]);
+ nfp_net_rx_ring_bufs_free(nn, &nn->rx_rings[r], nn->xdp_prog);
nfp_net_rx_ring_free(&nn->rx_rings[r]);
}
for (r = 0; r < nn->num_tx_rings; r++)
static int
nfp_net_ring_swap_enable(struct nfp_net *nn, unsigned int *num_vecs,
+ unsigned int *stack_tx_rings,
+ struct bpf_prog **xdp_prog,
struct nfp_net_ring_set *rx,
struct nfp_net_ring_set *tx)
{
nfp_net_tx_ring_set_swap(nn, tx);
swap(*num_vecs, nn->num_r_vecs);
+ swap(*stack_tx_rings, nn->num_stack_tx_rings);
+ *xdp_prog = xchg(&nn->xdp_prog, *xdp_prog);
for (r = 0; r < nn->max_r_vecs; r++)
nfp_net_vector_assign_rings(nn, &nn->r_vecs[r], r);
return err;
}
- if (nn->netdev->real_num_tx_queues != nn->num_tx_rings) {
+ if (nn->netdev->real_num_tx_queues != nn->num_stack_tx_rings) {
err = netif_set_real_num_tx_queues(nn->netdev,
- nn->num_tx_rings);
+ nn->num_stack_tx_rings);
if (err)
return err;
}
return __nfp_net_set_config_and_enable(nn);
}
+static int
+nfp_net_check_config(struct nfp_net *nn, struct bpf_prog *xdp_prog,
+ struct nfp_net_ring_set *rx, struct nfp_net_ring_set *tx)
+{
+ /* XDP-enabled tests */
+ if (!xdp_prog)
+ return 0;
+ if (rx && nfp_net_calc_fl_bufsz(nn, rx->mtu) > PAGE_SIZE) {
+ nn_warn(nn, "MTU too large w/ XDP enabled\n");
+ return -EINVAL;
+ }
+ if (tx && tx->n_rings > nn->max_tx_rings) {
+ nn_warn(nn, "Insufficient number of TX rings w/ XDP enabled\n");
+ return -EINVAL;
+ }
+
+ return 0;
+}
+
static void
-nfp_net_ring_reconfig_down(struct nfp_net *nn,
+nfp_net_ring_reconfig_down(struct nfp_net *nn, struct bpf_prog **xdp_prog,
struct nfp_net_ring_set *rx,
struct nfp_net_ring_set *tx,
- unsigned int num_vecs)
+ unsigned int stack_tx_rings, unsigned int num_vecs)
{
nn->netdev->mtu = rx ? rx->mtu : nn->netdev->mtu;
nn->fl_bufsz = nfp_net_calc_fl_bufsz(nn, nn->netdev->mtu);
nn->txd_cnt = tx ? tx->dcnt : nn->txd_cnt;
nn->num_rx_rings = rx ? rx->n_rings : nn->num_rx_rings;
nn->num_tx_rings = tx ? tx->n_rings : nn->num_tx_rings;
+ nn->num_stack_tx_rings = stack_tx_rings;
nn->num_r_vecs = num_vecs;
+ *xdp_prog = xchg(&nn->xdp_prog, *xdp_prog);
if (!netif_is_rxfh_configured(nn->netdev))
nfp_net_rss_init_itbl(nn);
}
int
-nfp_net_ring_reconfig(struct nfp_net *nn, struct nfp_net_ring_set *rx,
- struct nfp_net_ring_set *tx)
+nfp_net_ring_reconfig(struct nfp_net *nn, struct bpf_prog **xdp_prog,
+ struct nfp_net_ring_set *rx, struct nfp_net_ring_set *tx)
{
- unsigned int num_vecs, r;
+ unsigned int stack_tx_rings, num_vecs, r;
int err;
- num_vecs = max(rx ? rx->n_rings : nn->num_rx_rings,
- tx ? tx->n_rings : nn->num_tx_rings);
+ stack_tx_rings = tx ? tx->n_rings : nn->num_tx_rings;
+ if (*xdp_prog)
+ stack_tx_rings -= rx ? rx->n_rings : nn->num_rx_rings;
+
+ num_vecs = max(rx ? rx->n_rings : nn->num_rx_rings, stack_tx_rings);
+
+ err = nfp_net_check_config(nn, *xdp_prog, rx, tx);
+ if (err)
+ return err;
if (!netif_running(nn->netdev)) {
- nfp_net_ring_reconfig_down(nn, rx, tx, num_vecs);
+ nfp_net_ring_reconfig_down(nn, xdp_prog, rx, tx,
+ stack_tx_rings, num_vecs);
return 0;
}
}
}
if (rx) {
- if (!nfp_net_rx_ring_set_prepare(nn, rx)) {
+ if (!nfp_net_rx_ring_set_prepare(nn, rx, *xdp_prog)) {
err = -ENOMEM;
goto err_cleanup_vecs;
}
}
if (tx) {
- if (!nfp_net_tx_ring_set_prepare(nn, tx)) {
+ if (!nfp_net_tx_ring_set_prepare(nn, tx, stack_tx_rings)) {
err = -ENOMEM;
goto err_free_rx;
}
nfp_net_close_stack(nn);
nfp_net_clear_config_and_disable(nn);
- err = nfp_net_ring_swap_enable(nn, &num_vecs, rx, tx);
+ err = nfp_net_ring_swap_enable(nn, &num_vecs, &stack_tx_rings,
+ xdp_prog, rx, tx);
if (err) {
int err2;
nfp_net_clear_config_and_disable(nn);
/* Try with old configuration and old rings */
- err2 = nfp_net_ring_swap_enable(nn, &num_vecs, rx, tx);
+ err2 = nfp_net_ring_swap_enable(nn, &num_vecs, &stack_tx_rings,
+ xdp_prog, rx, tx);
if (err2)
nn_err(nn, "Can't restore ring config - FW communication failed (%d,%d)\n",
err, err2);
nfp_net_cleanup_vector(nn, &nn->r_vecs[r]);
if (rx)
- nfp_net_rx_ring_set_free(nn, rx);
+ nfp_net_rx_ring_set_free(nn, rx, *xdp_prog);
if (tx)
nfp_net_tx_ring_set_free(nn, tx);
err_free_rx:
if (rx)
- nfp_net_rx_ring_set_free(nn, rx);
+ nfp_net_rx_ring_set_free(nn, rx, *xdp_prog);
err_cleanup_vecs:
for (r = num_vecs - 1; r >= nn->num_r_vecs; r--)
nfp_net_cleanup_vector(nn, &nn->r_vecs[r]);
.dcnt = nn->rxd_cnt,
};
- return nfp_net_ring_reconfig(nn, &rx, NULL);
+ return nfp_net_ring_reconfig(nn, &nn->xdp_prog, &rx, NULL);
}
static struct rtnl_link_stats64 *nfp_net_stat64(struct net_device *netdev,
nfp_net_set_vxlan_port(nn, idx, 0);
}
+static int nfp_net_xdp_setup(struct nfp_net *nn, struct bpf_prog *prog)
+{
+ struct nfp_net_ring_set rx = {
+ .n_rings = nn->num_rx_rings,
+ .mtu = nn->netdev->mtu,
+ .dcnt = nn->rxd_cnt,
+ };
+ struct nfp_net_ring_set tx = {
+ .n_rings = nn->num_tx_rings,
+ .dcnt = nn->txd_cnt,
+ };
+ int err;
+
+ if (!prog && !nn->xdp_prog)
+ return 0;
+ if (prog && nn->xdp_prog) {
+ prog = xchg(&nn->xdp_prog, prog);
+ bpf_prog_put(prog);
+ return 0;
+ }
+
+ tx.n_rings += prog ? nn->num_rx_rings : -nn->num_rx_rings;
+
+ /* We need RX reconfig to remap the buffers (BIDIR vs FROM_DEV) */
+ err = nfp_net_ring_reconfig(nn, &prog, &rx, &tx);
+ if (err)
+ return err;
+
+ /* @prog got swapped and is now the old one */
+ if (prog)
+ bpf_prog_put(prog);
+
+ return 0;
+}
+
+static int nfp_net_xdp(struct net_device *netdev, struct netdev_xdp *xdp)
+{
+ struct nfp_net *nn = netdev_priv(netdev);
+
+ switch (xdp->command) {
+ case XDP_SETUP_PROG:
+ return nfp_net_xdp_setup(nn, xdp->prog);
+ case XDP_QUERY_PROG:
+ xdp->prog_attached = !!nn->xdp_prog;
+ return 0;
+ default:
+ return -EINVAL;
+ }
+}
+
static const struct net_device_ops nfp_net_netdev_ops = {
.ndo_open = nfp_net_netdev_open,
.ndo_stop = nfp_net_netdev_close,
.ndo_features_check = nfp_net_features_check,
.ndo_udp_tunnel_add = nfp_net_add_vxlan_port,
.ndo_udp_tunnel_del = nfp_net_del_vxlan_port,
+ .ndo_xdp = nfp_net_xdp,
};
/**
*/
void nfp_net_netdev_clean(struct net_device *netdev)
{
- unregister_netdev(netdev);
+ struct nfp_net *nn = netdev_priv(netdev);
+
+ if (nn->xdp_prog)
+ bpf_prog_put(nn->xdp_prog);
+ unregister_netdev(nn->netdev);
}