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sh_eth: unmap DMA buffers when freeing rings
The DMA API debugging (when enabled) causes:
WARNING: CPU: 0 PID: 1445 at lib/dma-debug.c:519 add_dma_entry+0xe0/0x12c
DMA-API: exceeded 7 overlapping mappings of cacheline 0x01b2974d
to be printed after repeated initialization of the Ether device, e.g.
suspend/resume or 'ifconfig' up/down. This is because DMA buffers mapped
using dma_map_single() in sh_eth_ring_format() and sh_eth_start_xmit() are
never unmapped. Resolve this problem by unmapping the buffers when freeing
the descriptor rings; in order to do it right, we'd have to add an extra
parameter to sh_eth_txfree() (we rename this function to sh_eth_tx_free(),
while at it).
Based on the commit a47b70ea86
("ravb: unmap descriptors when freeing
rings").
Signed-off-by: Sergei Shtylyov <sergei.shtylyov@cogentembedded.com>
Signed-off-by: David S. Miller <davem@davemloft.net>
This commit is contained in:
parent
005882e53d
commit
1debdc8f9e
@ -1127,12 +1127,70 @@ static struct mdiobb_ops bb_ops = {
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.get_mdio_data = sh_get_mdio,
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};
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/* free Tx skb function */
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static int sh_eth_tx_free(struct net_device *ndev, bool sent_only)
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{
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struct sh_eth_private *mdp = netdev_priv(ndev);
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struct sh_eth_txdesc *txdesc;
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int free_num = 0;
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int entry;
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bool sent;
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for (; mdp->cur_tx - mdp->dirty_tx > 0; mdp->dirty_tx++) {
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entry = mdp->dirty_tx % mdp->num_tx_ring;
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txdesc = &mdp->tx_ring[entry];
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sent = !(txdesc->status & cpu_to_le32(TD_TACT));
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if (sent_only && !sent)
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break;
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/* TACT bit must be checked before all the following reads */
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dma_rmb();
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netif_info(mdp, tx_done, ndev,
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"tx entry %d status 0x%08x\n",
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entry, le32_to_cpu(txdesc->status));
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/* Free the original skb. */
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if (mdp->tx_skbuff[entry]) {
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dma_unmap_single(&ndev->dev, le32_to_cpu(txdesc->addr),
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le32_to_cpu(txdesc->len) >> 16,
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DMA_TO_DEVICE);
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dev_kfree_skb_irq(mdp->tx_skbuff[entry]);
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mdp->tx_skbuff[entry] = NULL;
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free_num++;
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}
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txdesc->status = cpu_to_le32(TD_TFP);
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if (entry >= mdp->num_tx_ring - 1)
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txdesc->status |= cpu_to_le32(TD_TDLE);
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if (sent) {
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ndev->stats.tx_packets++;
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ndev->stats.tx_bytes += le32_to_cpu(txdesc->len) >> 16;
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}
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}
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return free_num;
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}
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/* free skb and descriptor buffer */
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static void sh_eth_ring_free(struct net_device *ndev)
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{
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struct sh_eth_private *mdp = netdev_priv(ndev);
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int ringsize, i;
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if (mdp->rx_ring) {
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for (i = 0; i < mdp->num_rx_ring; i++) {
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if (mdp->rx_skbuff[i]) {
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struct sh_eth_rxdesc *rxdesc = &mdp->rx_ring[i];
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dma_unmap_single(&ndev->dev,
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le32_to_cpu(rxdesc->addr),
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ALIGN(mdp->rx_buf_sz, 32),
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DMA_FROM_DEVICE);
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}
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}
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ringsize = sizeof(struct sh_eth_rxdesc) * mdp->num_rx_ring;
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dma_free_coherent(NULL, ringsize, mdp->rx_ring,
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mdp->rx_desc_dma);
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mdp->rx_ring = NULL;
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}
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/* Free Rx skb ringbuffer */
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if (mdp->rx_skbuff) {
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for (i = 0; i < mdp->num_rx_ring; i++)
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@ -1141,27 +1199,18 @@ static void sh_eth_ring_free(struct net_device *ndev)
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kfree(mdp->rx_skbuff);
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mdp->rx_skbuff = NULL;
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/* Free Tx skb ringbuffer */
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if (mdp->tx_skbuff) {
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for (i = 0; i < mdp->num_tx_ring; i++)
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dev_kfree_skb(mdp->tx_skbuff[i]);
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}
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kfree(mdp->tx_skbuff);
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mdp->tx_skbuff = NULL;
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if (mdp->rx_ring) {
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ringsize = sizeof(struct sh_eth_rxdesc) * mdp->num_rx_ring;
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dma_free_coherent(NULL, ringsize, mdp->rx_ring,
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mdp->rx_desc_dma);
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mdp->rx_ring = NULL;
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}
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if (mdp->tx_ring) {
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sh_eth_tx_free(ndev, false);
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ringsize = sizeof(struct sh_eth_txdesc) * mdp->num_tx_ring;
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dma_free_coherent(NULL, ringsize, mdp->tx_ring,
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mdp->tx_desc_dma);
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mdp->tx_ring = NULL;
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}
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/* Free Tx skb ringbuffer */
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kfree(mdp->tx_skbuff);
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mdp->tx_skbuff = NULL;
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}
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/* format skb and descriptor buffer */
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@ -1409,43 +1458,6 @@ static void sh_eth_dev_exit(struct net_device *ndev)
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update_mac_address(ndev);
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}
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/* free Tx skb function */
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static int sh_eth_txfree(struct net_device *ndev)
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{
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struct sh_eth_private *mdp = netdev_priv(ndev);
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struct sh_eth_txdesc *txdesc;
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int free_num = 0;
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int entry;
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for (; mdp->cur_tx - mdp->dirty_tx > 0; mdp->dirty_tx++) {
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entry = mdp->dirty_tx % mdp->num_tx_ring;
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txdesc = &mdp->tx_ring[entry];
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if (txdesc->status & cpu_to_le32(TD_TACT))
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break;
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/* TACT bit must be checked before all the following reads */
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dma_rmb();
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netif_info(mdp, tx_done, ndev,
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"tx entry %d status 0x%08x\n",
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entry, le32_to_cpu(txdesc->status));
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/* Free the original skb. */
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if (mdp->tx_skbuff[entry]) {
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dma_unmap_single(&ndev->dev, le32_to_cpu(txdesc->addr),
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le32_to_cpu(txdesc->len) >> 16,
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DMA_TO_DEVICE);
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dev_kfree_skb_irq(mdp->tx_skbuff[entry]);
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mdp->tx_skbuff[entry] = NULL;
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free_num++;
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}
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txdesc->status = cpu_to_le32(TD_TFP);
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if (entry >= mdp->num_tx_ring - 1)
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txdesc->status |= cpu_to_le32(TD_TDLE);
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ndev->stats.tx_packets++;
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ndev->stats.tx_bytes += le32_to_cpu(txdesc->len) >> 16;
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}
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return free_num;
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}
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/* Packet receive function */
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static int sh_eth_rx(struct net_device *ndev, u32 intr_status, int *quota)
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{
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@ -1690,7 +1702,7 @@ static void sh_eth_error(struct net_device *ndev, u32 intr_status)
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intr_status, mdp->cur_tx, mdp->dirty_tx,
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(u32)ndev->state, edtrr);
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/* dirty buffer free */
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sh_eth_txfree(ndev);
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sh_eth_tx_free(ndev, true);
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/* SH7712 BUG */
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if (edtrr ^ sh_eth_get_edtrr_trns(mdp)) {
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@ -1751,7 +1763,7 @@ static irqreturn_t sh_eth_interrupt(int irq, void *netdev)
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/* Clear Tx interrupts */
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sh_eth_write(ndev, intr_status & cd->tx_check, EESR);
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sh_eth_txfree(ndev);
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sh_eth_tx_free(ndev, true);
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netif_wake_queue(ndev);
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}
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@ -2412,7 +2424,7 @@ static int sh_eth_start_xmit(struct sk_buff *skb, struct net_device *ndev)
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spin_lock_irqsave(&mdp->lock, flags);
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if ((mdp->cur_tx - mdp->dirty_tx) >= (mdp->num_tx_ring - 4)) {
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if (!sh_eth_txfree(ndev)) {
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if (!sh_eth_tx_free(ndev, true)) {
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netif_warn(mdp, tx_queued, ndev, "TxFD exhausted.\n");
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netif_stop_queue(ndev);
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spin_unlock_irqrestore(&mdp->lock, flags);
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