num_allocated++;
vmxnet3_cmd_ring_adv_next2fill(ring);
}
- rq->uncommitted[ring_idx] += num_allocated;
dev_dbg(&adapter->netdev->dev,
- "alloc_rx_buf: %d allocated, next2fill %u, next2comp "
- "%u, uncommitted %u\n", num_allocated, ring->next2fill,
- ring->next2comp, rq->uncommitted[ring_idx]);
+ "alloc_rx_buf: %d allocated, next2fill %u, next2comp %u\n",
+ num_allocated, ring->next2fill, ring->next2comp);
/* so that the device can distinguish a full ring and an empty ring */
BUG_ON(num_allocated != 0 && ring->next2fill == ring->next2comp);
VMXNET3_WRITE_BAR0_REG(adapter,
rxprod_reg[ring_idx] + rq->qid * 8,
ring->next2fill);
- rq->uncommitted[ring_idx] = 0;
}
vmxnet3_comp_ring_adv_next2proc(&rq->comp_ring);
rq->rx_ring[ring_idx].gen = VMXNET3_INIT_GEN;
rq->rx_ring[ring_idx].next2fill =
rq->rx_ring[ring_idx].next2comp = 0;
- rq->uncommitted[ring_idx] = 0;
}
rq->comp_ring.gen = VMXNET3_INIT_GEN;
/* reset internal state and allocate buffers for both rings */
for (i = 0; i < 2; i++) {
rq->rx_ring[i].next2fill = rq->rx_ring[i].next2comp = 0;
- rq->uncommitted[i] = 0;
memset(rq->rx_ring[i].base, 0, rq->rx_ring[i].size *
sizeof(struct Vmxnet3_RxDesc));
struct vmxnet3_rx_ctx rx_ctx;
u32 qid; /* rqID in RCD for buffer from 1st ring */
u32 qid2; /* rqID in RCD for buffer from 2nd ring */
- u32 uncommitted[2]; /* # of buffers allocated since last RXPROD
- * update */
struct vmxnet3_rx_buf_info *buf_info[2];
struct Vmxnet3_RxQueueCtrl *shared;
struct vmxnet3_rq_driver_stats stats;