return nvecs;
}
-/**
- * nfp_net_irqs_wanted() - Work out how many interrupt vectors we want
- * @nn: NFP Network structure
- *
- * We want a vector per CPU (or ring), whatever is smaller plus
- * NFP_NET_NON_Q_VECTORS for LSC etc.
- *
- * Return: Number of interrupts wanted
- */
-static int nfp_net_irqs_wanted(struct nfp_net *nn)
-{
- unsigned int vecs;
- int ncpus;
-
- ncpus = num_online_cpus();
-
- vecs = max_t(int, nn->num_tx_rings, nn->num_rx_rings);
- vecs = min_t(int, vecs, ncpus);
-
- return vecs + NFP_NET_NON_Q_VECTORS;
-}
-
/**
* nfp_net_irqs_alloc() - allocates MSI-X irqs
* @nn: NFP Network structure
{
int wanted_irqs;
- wanted_irqs = nfp_net_irqs_wanted(nn);
+ wanted_irqs = nn->num_r_vecs + NFP_NET_NON_Q_VECTORS;
nn->num_irqs = nfp_net_msix_alloc(nn, wanted_irqs);
if (nn->num_irqs == 0) {
nn->num_tx_rings = min_t(int, nqs, max_tx_rings);
nn->num_rx_rings = min_t(int, nqs, max_rx_rings);
+ nn->num_r_vecs = max(nn->num_tx_rings, nn->num_rx_rings);
+ nn->num_r_vecs = min_t(unsigned int, nn->num_r_vecs, num_online_cpus());
+
nn->txd_cnt = NFP_NET_TX_DESCS_DEFAULT;
nn->rxd_cnt = NFP_NET_RX_DESCS_DEFAULT;