Add helpers to allocate, register, interrupt-setup, and free individual
RX queues, plus ibmveth_resize_rx_queues_incremental() to grow or shrink
the live RX queue count without tearing down surviving queues.
Surviving queues keep PHYP handles, buffer pools, and IRQ state across
resize.
Scale-up for each new queue:
alloc -> register -> request_irq -> publish num_rx_queues ->
replenish -> napi_enable -> enable_irq
so the queue is visible and buffered before PHYP delivery is unmasked.
On enable_irq failure after napi_enable, disable NAPI before teardown.
Scale-down:
disable_irq+sync -> napi_disable -> drain -> deregister -> free
with PHYP mask before napi_disable/drain (same storm rule as close).
IRQ vs PHYP ownership for subordinates:
- deregister_single is PHYP-only (H_FREE_LOGICAL_LAN_QUEUE + clear
queue_handle)
- Linux virq disposal lives in cleanup_single / dispose helpers
- single-slot dispose is bounded by IBMVETH_MAX_RX_QUEUES (not
num_rx_queues) so scale-down / fail paths can dispose queues that
left the published live set but still own a mapping
- dispose on request_irq failure where deregister no longer releases
the mapping
Also add drain-path smp_rmb() before harvesting RX buffers so drain
matches poll's descriptor-ordering assumptions, and replenish before
re-enabling IRQ/NAPI on set_real_num_rx scale-down rollback.
Introduce ibmveth_resize_rx_channels() (validate + apply) and call it
from set_channels() when the interface is up so the resize helper is
not left unused. Full !IFF_UP RX stash ordering relative
to TX is completed in the next patch.
Signed-off-by: Mingming Cao <[email protected]>
Reviewed-by: Dave Marquardt <[email protected]>
Tested-by: Shaik Abdulla <[email protected]>
---
Changes in v4:
- Copy pool->index when cloning buffer pools for incrementally added
queues.
- Scale-up order: publish -> replenish -> napi_enable -> enable_irq
(vs older enable-before-publish drafts); mirror NAPI-before-unmask on
set_real_num_rx rollback.
- Linux-owned subordinate virq disposal; deregister is PHYP-only;
dispose bound to MAX_RX_QUEUES; dispose on request_irq failure.
- Drain-path smp_rmb() before harvest.
- Mask PHYP before napi_disable/drain on scale-down and scale-up fail
cleanup.
- Replenish before re-enabling IRQ/NAPI on set_real_num_rx scale-down
rollback.
- Keep set_channels wiring as the following patch (same split as v3)
but call resize_rx_channels() here when IFF_UP so the helper is not
an unused static.
drivers/net/ethernet/ibm/ibmveth.c | 512 ++++++++++++++++++++++++++++-
1 file changed, 510 insertions(+), 2 deletions(-)
diff --git a/drivers/net/ethernet/ibm/ibmveth.c
b/drivers/net/ethernet/ibm/ibmveth.c
index db1374746602..b57c7df92853 100644
--- a/drivers/net/ethernet/ibm/ibmveth.c
+++ b/drivers/net/ethernet/ibm/ibmveth.c
@@ -651,6 +651,58 @@ ibmveth_cleanup_rx_interrupts(struct ibmveth_adapter
*adapter)
/* Queue 0 uses netdev->irq; leave queue_irq[0] for next open. */
}
+/**
+ * ibmveth_setup_single_rx_interrupt - Setup interrupt for a single RX queue
+ * @adapter: ibmveth adapter structure
+ * @queue_idx: Queue index to setup
+ *
+ * Registers the IRQ handler for one queue. Used during incremental
+ * scale-up when adding new RX queues. The caller publishes the queue,
+ * replenishes buffers, enables NAPI, then unmasks PHYP delivery.
+ *
+ * Return: 0 on success, negative error code on failure
+ */
+static int
+ibmveth_setup_single_rx_interrupt(struct ibmveth_adapter *adapter,
+ int queue_idx)
+{
+ struct net_device *netdev = adapter->netdev;
+ int rc;
+
+ rc = request_irq(adapter->queue_irq[queue_idx], ibmveth_interrupt,
+ 0, netdev->name, &adapter->napi[queue_idx]);
+ if (rc) {
+ netdev_err(netdev, "request_irq() failed for queue %d: %d\n",
+ queue_idx, rc);
+ return rc;
+ }
+
+ netdev_dbg(netdev, "Setup IRQ %d for queue %d\n",
+ adapter->queue_irq[queue_idx], queue_idx);
+ return 0;
+}
+
+/**
+ * ibmveth_cleanup_single_rx_interrupt - Cleanup interrupt for a single RX
queue
+ * @adapter: ibmveth adapter structure
+ * @queue_idx: Queue index to cleanup
+ *
+ * Frees the IRQ handler for one queue and releases the subordinate virq
+ * mapping. Used during incremental scale-down.
+ */
+static void
+ibmveth_cleanup_single_rx_interrupt(struct ibmveth_adapter *adapter,
+ int queue_idx)
+{
+ if (adapter->queue_irq[queue_idx]) {
+ free_irq(adapter->queue_irq[queue_idx],
+ &adapter->napi[queue_idx]);
+ ibmveth_dispose_subordinate_irq_mapping(adapter, queue_idx);
+ netdev_dbg(adapter->netdev,
+ "Freed IRQ for queue %d\n", queue_idx);
+ }
+}
+
/**
* ibmveth_schedule_rx_queue - Mask PHYP IRQ and schedule NAPI for one RX queue
* @adapter: ibmveth adapter structure
@@ -1189,6 +1241,141 @@ ibmveth_free_buffer_pools(struct ibmveth_adapter
*adapter)
adapter->num_rx_queues);
}
+/**
+ * ibmveth_alloc_single_rx_queue - Allocate resources for a single RX queue
+ * @adapter: ibmveth adapter structure
+ * @queue_idx: Queue index to allocate
+ * @rxq_entries: Number of RX queue entries
+ *
+ * Allocates buffer list, RX queue, and per-queue buffer pools for one queue.
+ * Used during incremental scale-up without affecting existing queues.
+ *
+ * Return: 0 on success, negative error code on failure
+ */
+static int
+ibmveth_alloc_single_rx_queue(struct ibmveth_adapter *adapter, int queue_idx,
+ int rxq_entries)
+{
+ struct device *dev = &adapter->vdev->dev;
+ struct net_device *netdev = adapter->netdev;
+ int i, rc = -ENOMEM;
+
+ adapter->buffer_list_addr[queue_idx] =
+ (void *)get_zeroed_page(GFP_KERNEL);
+ if (!adapter->buffer_list_addr[queue_idx]) {
+ netdev_err(netdev, "unable to allocate buffer list for queue
%d\n",
+ queue_idx);
+ return -ENOMEM;
+ }
+
+ adapter->rx_queue[queue_idx].queue_len =
+ sizeof(struct ibmveth_rx_q_entry) * rxq_entries;
+ adapter->rx_queue[queue_idx].queue_addr =
+ dma_alloc_coherent(dev, adapter->rx_queue[queue_idx].queue_len,
+ &adapter->rx_queue[queue_idx].queue_dma,
+ GFP_KERNEL);
+ if (!adapter->rx_queue[queue_idx].queue_addr) {
+ netdev_err(netdev, "unable to allocate RX queue for queue %d\n",
+ queue_idx);
+ goto out_free_buflist;
+ }
+
+ adapter->buffer_list_dma[queue_idx] =
+ dma_map_single(dev, adapter->buffer_list_addr[queue_idx],
+ 4096, DMA_BIDIRECTIONAL);
+ if (dma_mapping_error(dev, adapter->buffer_list_dma[queue_idx])) {
+ netdev_err(netdev, "unable to map buffer list for queue %d\n",
+ queue_idx);
+ goto out_free_rxq;
+ }
+
+ for (i = 0; i < IBMVETH_NUM_BUFF_POOLS; i++) {
+ struct ibmveth_buff_pool *src =
+ &adapter->rx_buff_pool[0][i];
+ struct ibmveth_buff_pool *dst =
+ &adapter->rx_buff_pool[queue_idx][i];
+
+ dst->size = src->size;
+ dst->index = src->index;
+ dst->buff_size = src->buff_size;
+ dst->threshold = src->threshold;
+ dst->active = src->active;
+ }
+
+ rc = ibmveth_alloc_queue_buffer_pools(adapter, queue_idx);
+ if (rc) {
+ netdev_err(netdev,
+ "Failed to allocate buffer pools for queue %d\n",
+ queue_idx);
+ goto out_unmap_buflist;
+ }
+
+ adapter->rx_queue[queue_idx].index = 0;
+ adapter->rx_queue[queue_idx].num_slots = rxq_entries;
+ adapter->rx_queue[queue_idx].toggle = 1;
+ spin_lock_init(&adapter->rx_queue[queue_idx].replenish_lock);
+
+ netdev_dbg(netdev,
+ "Allocated queue %d: buffer_list @ %p (DMA: 0x%llx),
rx_queue @ %p (DMA: 0x%llx), %d entries\n",
+ queue_idx, adapter->buffer_list_addr[queue_idx],
+ (unsigned long long)adapter->buffer_list_dma[queue_idx],
+ adapter->rx_queue[queue_idx].queue_addr,
+ (unsigned long long)adapter->rx_queue[queue_idx].queue_dma,
+ rxq_entries);
+
+ return 0;
+
+out_unmap_buflist:
+ dma_unmap_single(dev, adapter->buffer_list_dma[queue_idx],
+ 4096, DMA_BIDIRECTIONAL);
+ adapter->buffer_list_dma[queue_idx] = 0;
+out_free_rxq:
+ dma_free_coherent(dev, adapter->rx_queue[queue_idx].queue_len,
+ adapter->rx_queue[queue_idx].queue_addr,
+ adapter->rx_queue[queue_idx].queue_dma);
+ adapter->rx_queue[queue_idx].queue_addr = NULL;
+out_free_buflist:
+ free_page((unsigned long)adapter->buffer_list_addr[queue_idx]);
+ adapter->buffer_list_addr[queue_idx] = NULL;
+ return rc;
+}
+
+/**
+ * ibmveth_free_single_rx_queue - Free resources for a single RX queue
+ * @adapter: ibmveth adapter structure
+ * @queue_idx: Queue index to free
+ *
+ * Frees buffer list, RX queue, and per-queue buffer pools for one queue.
+ * Used during incremental scale-down without affecting remaining queues.
+ */
+static void
+ibmveth_free_single_rx_queue(struct ibmveth_adapter *adapter, int queue_idx)
+{
+ struct device *dev = &adapter->vdev->dev;
+
+ ibmveth_free_queue_buffer_pools(adapter, queue_idx);
+
+ if (adapter->buffer_list_dma[queue_idx]) {
+ dma_unmap_single(dev, adapter->buffer_list_dma[queue_idx],
+ 4096, DMA_BIDIRECTIONAL);
+ adapter->buffer_list_dma[queue_idx] = 0;
+ }
+
+ if (adapter->rx_queue[queue_idx].queue_addr) {
+ dma_free_coherent(dev, adapter->rx_queue[queue_idx].queue_len,
+ adapter->rx_queue[queue_idx].queue_addr,
+ adapter->rx_queue[queue_idx].queue_dma);
+ adapter->rx_queue[queue_idx].queue_addr = NULL;
+ }
+
+ if (adapter->buffer_list_addr[queue_idx]) {
+ free_page((unsigned long)adapter->buffer_list_addr[queue_idx]);
+ adapter->buffer_list_addr[queue_idx] = NULL;
+ }
+
+ netdev_dbg(adapter->netdev, "Freed queue %d resources\n", queue_idx);
+}
+
/**
* ibmveth_remove_buffer_from_pool - remove a buffer from a pool
* @adapter: adapter instance
@@ -1307,6 +1494,51 @@ static int ibmveth_rxq_harvest_buffer(struct
ibmveth_adapter *adapter,
return 0;
}
+/**
+ * ibmveth_drain_rx_queue - Drain pending buffers from an RX queue
+ * @adapter: ibmveth adapter structure
+ * @queue_index: Queue index to drain
+ *
+ * Recycles all pending buffers back to the per-queue buffer pools.
+ * Must be called with NAPI disabled for this queue.
+ *
+ * Return: Number of buffers drained
+ */
+static int
+ibmveth_drain_rx_queue(struct ibmveth_adapter *adapter, int queue_index)
+{
+ struct net_device *netdev = adapter->netdev;
+ int drained = 0;
+ int limit = adapter->rx_queue[queue_index].num_slots;
+ int rc;
+
+ netdev_dbg(netdev, "Draining RX queue %d (limit: %d slots)\n",
+ queue_index, limit);
+
+ while (drained < limit &&
+ ibmveth_rxq_pending_buffer(adapter, queue_index)) {
+ /* Match poll-side order before harvesting completion state. */
+ smp_rmb();
+ rc = ibmveth_rxq_harvest_buffer(adapter, queue_index, true);
+ if (rc) {
+ netdev_err(netdev,
+ "Failed to harvest buffer from queue %d
during drain: %d\n",
+ queue_index, rc);
+ break;
+ }
+ drained++;
+ }
+
+ if (drained > 0)
+ netdev_dbg(netdev, "Drained %d buffer(s) from RX queue %d\n",
+ drained, queue_index);
+ else
+ netdev_dbg(netdev, "No buffers to drain from RX queue %d\n",
+ queue_index);
+
+ return drained;
+}
+
static void ibmveth_free_tx_ltb(struct ibmveth_adapter *adapter, int idx)
{
if (!adapter->tx_ltb_ptr[idx])
@@ -1562,6 +1794,227 @@ ibmveth_register_single_rx_queue(struct ibmveth_adapter
*adapter,
return 0;
}
+/**
+ * ibmveth_deregister_single_rx_queue - Deregister one subordinate RX queue
+ * @adapter: ibmveth adapter structure
+ * @queue_idx: Queue index to deregister (1..N)
+ *
+ * Deregisters a single queue via H_FREE_LOGICAL_LAN_QUEUE. Linux IRQ handler
+ * teardown and subordinate virq mapping disposal are owned by interrupt
+ * cleanup helpers; queue 0 is freed only through ibmveth_free_all_queues()
+ * (H_FREE_LOGICAL_LAN).
+ */
+static void
+ibmveth_deregister_single_rx_queue(struct ibmveth_adapter *adapter,
+ int queue_idx)
+{
+ unsigned long lpar_rc;
+ unsigned long ua = adapter->vdev->unit_address;
+ unsigned long qh = adapter->queue_handle[queue_idx];
+
+ if (!qh)
+ return;
+
+ do {
+ lpar_rc = h_free_logical_lan_queue(ua, qh);
+ } while (H_IS_LONG_BUSY(lpar_rc) || (lpar_rc == H_BUSY));
+
+ adapter->hcall_stats.free_lan_queue++;
+
+ if (lpar_rc != H_SUCCESS) {
+ netdev_err(adapter->netdev,
+ "h_free_logical_lan_queue failed for queue %d:
rc=0x%lx\n",
+ queue_idx, lpar_rc);
+ }
+
+ adapter->queue_handle[queue_idx] = 0;
+
+ netdev_dbg(adapter->netdev, "Deregistered queue %d\n", queue_idx);
+}
+
+/**
+ * ibmveth_resize_rx_queues_incremental - Resize RX queue count incrementally
+ * @adapter: ibmveth adapter structure
+ * @new_count: Target number of RX queues
+ * @rxq_entries: Number of entries per RX queue
+ *
+ * Adds or removes RX queues without tearing down the entire adapter.
+ * Active queues continue receiving during scale-up; scale-down drains
+ * excess queues before deregistering them with the hypervisor.
+ *
+ * Return: 0 on success, negative error code on failure
+ */
+static int
+ibmveth_resize_rx_queues_incremental(struct ibmveth_adapter *adapter,
+ int new_count, int rxq_entries)
+{
+ struct net_device *netdev = adapter->netdev;
+ u64 mac_address = ether_addr_to_u64(netdev->dev_addr);
+ int old_count = adapter->num_rx_queues;
+ int failed_queue;
+ int rc, i;
+
+ if (old_count == new_count) {
+ netdev_dbg(netdev, "RX queue count unchanged (%d), nothing to
do\n",
+ old_count);
+ return 0;
+ }
+
+ if (new_count < 1 || new_count > IBMVETH_MAX_RX_QUEUES) {
+ netdev_err(netdev, "Invalid RX queue count %d (must be 1-%d)\n",
+ new_count, IBMVETH_MAX_RX_QUEUES);
+ return -EINVAL;
+ }
+
+ netdev_info(netdev, "Incrementally resizing RX queues: %d to %d\n",
+ old_count, new_count);
+
+ if (new_count > old_count) {
+ netdev_dbg(netdev, "Scale-up: adding queues %d-%d\n",
+ old_count, new_count - 1);
+
+ for (i = old_count; i < new_count; i++) {
+ rc = ibmveth_alloc_single_rx_queue(adapter, i,
+ rxq_entries);
+ if (rc) {
+ netdev_err(netdev, "Failed to allocate queue
%d: %d\n",
+ i, rc);
+ goto cleanup_new_queues;
+ }
+
+ rc = ibmveth_register_single_rx_queue(adapter, i,
+ mac_address);
+ if (rc) {
+ netdev_err(netdev, "Failed to register queue
%d: %d\n",
+ i, rc);
+ ibmveth_free_single_rx_queue(adapter, i);
+ goto cleanup_new_queues;
+ }
+
+ rc = ibmveth_setup_single_rx_interrupt(adapter, i);
+ if (rc) {
+ netdev_err(netdev,
+ "Failed to setup IRQ for queue %d:
%d\n",
+ i, rc);
+ /* request_irq failed: mapped but no handler */
+ ibmveth_dispose_subordinate_irq_mapping(adapter,
+ i);
+ ibmveth_deregister_single_rx_queue(adapter, i);
+ ibmveth_free_single_rx_queue(adapter, i);
+ goto cleanup_new_queues;
+ }
+
+ /*
+ * Fully ready before PHYP delivery, matching open():
+ * publish -> replenish -> napi_enable -> enable_irq.
+ * That way ibmveth_interrupt() cannot run on an
+ * unpublished, empty, or NAPI-disabled queue.
+ */
+ adapter->num_rx_queues = i + 1;
+ ibmveth_replenish_task(adapter, i);
+ napi_enable(&adapter->napi[i]);
+
+ rc = ibmveth_enable_irq(adapter, i);
+ if (rc) {
+ netdev_err(netdev,
+ "Failed to enable IRQ for queue %d:
%d\n",
+ i, rc);
+ adapter->num_rx_queues = i;
+ napi_disable(&adapter->napi[i]);
+ ibmveth_cleanup_single_rx_interrupt(adapter, i);
+ ibmveth_deregister_single_rx_queue(adapter, i);
+ ibmveth_free_single_rx_queue(adapter, i);
+ goto cleanup_new_queues;
+ }
+ }
+
+ rc = netif_set_real_num_rx_queues(netdev, new_count);
+ if (rc) {
+ netdev_err(netdev, "Failed to set real RX queues to %d:
%d\n",
+ new_count, rc);
+ goto cleanup_new_queues;
+ }
+ } else {
+ netdev_dbg(netdev, "Scale-down: removing queues %d-%d\n",
+ new_count, old_count - 1);
+
+ /*
+ * Mask PHYP delivery before napi_disable/drain. Otherwise
+ * ibmveth_interrupt returns IRQ_HANDLED without masking when
+ * NAPI is disabled, and the HV can storm during drain.
+ */
+ for (i = new_count; i < old_count; i++) {
+ ibmveth_disable_irq(adapter, i);
+ synchronize_irq(adapter->queue_irq[i]);
+ }
+
+ for (i = new_count; i < old_count; i++)
+ napi_disable(&adapter->napi[i]);
+
+ for (i = new_count; i < old_count; i++)
+ ibmveth_drain_rx_queue(adapter, i);
+
+ synchronize_net();
+
+ rc = netif_set_real_num_rx_queues(netdev, new_count);
+ if (rc) {
+ netdev_err(netdev, "Failed to set real RX queues to %d:
%d\n",
+ new_count, rc);
+ for (i = new_count; i < old_count; i++) {
+ ibmveth_replenish_task(adapter, i);
+ napi_enable(&adapter->napi[i]);
+ ibmveth_enable_irq(adapter, i);
+ }
+ return rc;
+ }
+
+ adapter->num_rx_queues = new_count;
+
+ for (i = new_count; i < old_count; i++) {
+ ibmveth_cleanup_single_rx_interrupt(adapter, i);
+ ibmveth_deregister_single_rx_queue(adapter, i);
+ ibmveth_free_single_rx_queue(adapter, i);
+ }
+ }
+
+ netdev_info(netdev, "Successfully resized to %d RX queues
(incremental)\n",
+ adapter->num_rx_queues);
+
+ if (firmware_has_feature(FW_FEATURE_CMO))
+ vio_cmo_set_dev_desired(adapter->vdev,
+ ibmveth_get_desired_dma(adapter->vdev));
+
+ return 0;
+
+cleanup_new_queues:
+ failed_queue = i;
+ netdev_err(netdev,
+ "Scale-up failed at queue %d, cleaning up queues %d-%d\n",
+ failed_queue, old_count, failed_queue - 1);
+ for (i = old_count; i < failed_queue; i++) {
+ ibmveth_disable_irq(adapter, i);
+ synchronize_irq(adapter->queue_irq[i]);
+ }
+
+ for (i = old_count; i < failed_queue; i++)
+ napi_disable(&adapter->napi[i]);
+
+ for (i = old_count; i < failed_queue; i++)
+ ibmveth_drain_rx_queue(adapter, i);
+
+ synchronize_net();
+
+ for (i = old_count; i < failed_queue; i++) {
+ ibmveth_cleanup_single_rx_interrupt(adapter, i);
+ ibmveth_deregister_single_rx_queue(adapter, i);
+ ibmveth_free_single_rx_queue(adapter, i);
+ }
+ adapter->num_rx_queues = old_count;
+ netdev_warn(netdev, "Keeping %d queues after scale-up failure\n",
+ old_count);
+ return rc;
+}
+
/**
* ibmveth_free_all_queues - Free all RX queues at once
* @adapter: ibmveth adapter structure
@@ -2217,12 +2670,62 @@ static void ibmveth_get_channels(struct net_device
*netdev,
channels->rx_count = adapter->num_rx_queues;
}
+/**
+ * ibmveth_resize_rx_channels - Validate and apply a new RX queue count
+ * @adapter: ibmveth adapter structure
+ * @goal_rx: desired RX queue count
+ *
+ * When the interface is up, resize live queues via
+ * ibmveth_resize_rx_queues_incremental(). When down, only stash
+ * adapter->num_rx_queues for the next open().
+ *
+ * Return: 0 on success, negative error code on failure
+ */
+static int ibmveth_resize_rx_channels(struct ibmveth_adapter *adapter,
+ unsigned int goal_rx)
+{
+ struct net_device *netdev = adapter->netdev;
+ unsigned int old_rx = adapter->num_rx_queues;
+ int rxq_entries;
+ int rc;
+
+ if (goal_rx > 1 && !adapter->multi_queue) {
+ netdev_err(netdev,
+ "Cannot resize to %u RX queues: multi-queue mode not
supported by firmware\n",
+ goal_rx);
+ return -EOPNOTSUPP;
+ }
+
+ if (goal_rx < 1 || goal_rx > IBMVETH_MAX_RX_QUEUES) {
+ netdev_err(netdev,
+ "Invalid RX queue count %u (must be 1-%d)\n",
+ goal_rx, IBMVETH_MAX_RX_QUEUES);
+ return -EINVAL;
+ }
+
+ if (goal_rx == old_rx)
+ return 0;
+
+ if (!(netdev->flags & IFF_UP)) {
+ adapter->num_rx_queues = goal_rx;
+ return 0;
+ }
+
+ rxq_entries = adapter->rx_queue[0].num_slots;
+ rc = ibmveth_resize_rx_queues_incremental(adapter, goal_rx,
+ rxq_entries);
+ if (rc)
+ netdev_err(netdev, "Failed to resize RX queues: %d\n", rc);
+ return rc;
+}
+
static int ibmveth_set_channels(struct net_device *netdev,
struct ethtool_channels *channels)
{
struct ibmveth_adapter *adapter = netdev_priv(netdev);
unsigned int old = netdev->real_num_tx_queues,
goal = channels->tx_count;
+ unsigned int goal_rx = channels->rx_count;
int rc, i;
/* If ndo_open has not been called yet then don't allocate, just set
@@ -2231,6 +2734,13 @@ static int ibmveth_set_channels(struct net_device
*netdev,
if (!(netdev->flags & IFF_UP))
return netif_set_real_num_tx_queues(netdev, goal);
+ /* Resize RX first while UP so ibmveth_resize_rx_channels() is used
+ * in this patch. !IFF_UP RX stash ordering lands next.
+ */
+ rc = ibmveth_resize_rx_channels(adapter, goal_rx);
+ if (rc)
+ return rc;
+
/* We have IBMVETH_MAX_QUEUES netdev_queue's allocated
* but we may need to alloc/free the ltb's.
*/
@@ -2245,7 +2755,6 @@ static int ibmveth_set_channels(struct net_device *netdev,
if (!rc)
continue;
- /* if something goes wrong, free everything we just allocated */
netdev_err(netdev, "Failed to allocate more tx queues,
returning to %d queues\n",
old);
goal = old;
@@ -2259,7 +2768,6 @@ static int ibmveth_set_channels(struct net_device *netdev,
goal = old;
old = i;
}
- /* Free any that are no longer needed */
for (i = old; i > goal; i--) {
if (adapter->tx_ltb_ptr[i - 1])
ibmveth_free_tx_ltb(adapter, i - 1);
--
2.50.1 (Apple Git-155)