lan743x: fix endianness when accessing descriptors
[ Upstream commit 462512824f902a24de794290dd622e664587da1d ] TX/RX descriptor ring fields are always little-endian, but conversion wasn't performed for big-endian CPUs, so the driver failed to work. This patch makes the driver work on big-endian CPUs. It was tested and confirmed to work on NXP P1010 processor (PowerPC). Signed-off-by: Alexey Denisov <rtgbnm@gmail.com> Link: https://lore.kernel.org/r/20210128044859.280219-1-rtgbnm@gmail.com Signed-off-by: Jakub Kicinski <kuba@kernel.org> Signed-off-by: Sasha Levin <sashal@kernel.org>
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727e5deca8
@ -1280,7 +1280,7 @@ static void lan743x_tx_release_desc(struct lan743x_tx *tx,
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if (!(buffer_info->flags & TX_BUFFER_INFO_FLAG_ACTIVE))
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goto done;
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descriptor_type = (descriptor->data0) &
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descriptor_type = le32_to_cpu(descriptor->data0) &
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TX_DESC_DATA0_DTYPE_MASK_;
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if (descriptor_type == TX_DESC_DATA0_DTYPE_DATA_)
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goto clean_up_data_descriptor;
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@ -1340,7 +1340,7 @@ static int lan743x_tx_next_index(struct lan743x_tx *tx, int index)
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static void lan743x_tx_release_completed_descriptors(struct lan743x_tx *tx)
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{
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while ((*tx->head_cpu_ptr) != (tx->last_head)) {
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while (le32_to_cpu(*tx->head_cpu_ptr) != (tx->last_head)) {
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lan743x_tx_release_desc(tx, tx->last_head, false);
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tx->last_head = lan743x_tx_next_index(tx, tx->last_head);
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}
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@ -1426,10 +1426,10 @@ static int lan743x_tx_frame_start(struct lan743x_tx *tx,
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if (dma_mapping_error(dev, dma_ptr))
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return -ENOMEM;
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tx_descriptor->data1 = DMA_ADDR_LOW32(dma_ptr);
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tx_descriptor->data2 = DMA_ADDR_HIGH32(dma_ptr);
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tx_descriptor->data3 = (frame_length << 16) &
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TX_DESC_DATA3_FRAME_LENGTH_MSS_MASK_;
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tx_descriptor->data1 = cpu_to_le32(DMA_ADDR_LOW32(dma_ptr));
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tx_descriptor->data2 = cpu_to_le32(DMA_ADDR_HIGH32(dma_ptr));
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tx_descriptor->data3 = cpu_to_le32((frame_length << 16) &
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TX_DESC_DATA3_FRAME_LENGTH_MSS_MASK_);
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buffer_info->skb = NULL;
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buffer_info->dma_ptr = dma_ptr;
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@ -1470,7 +1470,7 @@ static void lan743x_tx_frame_add_lso(struct lan743x_tx *tx,
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tx->frame_data0 |= TX_DESC_DATA0_IOC_;
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}
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tx_descriptor = &tx->ring_cpu_ptr[tx->frame_tail];
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tx_descriptor->data0 = tx->frame_data0;
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tx_descriptor->data0 = cpu_to_le32(tx->frame_data0);
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/* move to next descriptor */
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tx->frame_tail = lan743x_tx_next_index(tx, tx->frame_tail);
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@ -1514,7 +1514,7 @@ static int lan743x_tx_frame_add_fragment(struct lan743x_tx *tx,
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/* wrap up previous descriptor */
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tx_descriptor = &tx->ring_cpu_ptr[tx->frame_tail];
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tx_descriptor->data0 = tx->frame_data0;
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tx_descriptor->data0 = cpu_to_le32(tx->frame_data0);
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/* move to next descriptor */
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tx->frame_tail = lan743x_tx_next_index(tx, tx->frame_tail);
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@ -1540,10 +1540,10 @@ static int lan743x_tx_frame_add_fragment(struct lan743x_tx *tx,
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return -ENOMEM;
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}
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tx_descriptor->data1 = DMA_ADDR_LOW32(dma_ptr);
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tx_descriptor->data2 = DMA_ADDR_HIGH32(dma_ptr);
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tx_descriptor->data3 = (frame_length << 16) &
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TX_DESC_DATA3_FRAME_LENGTH_MSS_MASK_;
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tx_descriptor->data1 = cpu_to_le32(DMA_ADDR_LOW32(dma_ptr));
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tx_descriptor->data2 = cpu_to_le32(DMA_ADDR_HIGH32(dma_ptr));
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tx_descriptor->data3 = cpu_to_le32((frame_length << 16) &
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TX_DESC_DATA3_FRAME_LENGTH_MSS_MASK_);
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buffer_info->skb = NULL;
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buffer_info->dma_ptr = dma_ptr;
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@ -1587,7 +1587,7 @@ static void lan743x_tx_frame_end(struct lan743x_tx *tx,
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if (ignore_sync)
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buffer_info->flags |= TX_BUFFER_INFO_FLAG_IGNORE_SYNC;
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tx_descriptor->data0 = tx->frame_data0;
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tx_descriptor->data0 = cpu_to_le32(tx->frame_data0);
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tx->frame_tail = lan743x_tx_next_index(tx, tx->frame_tail);
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tx->last_tail = tx->frame_tail;
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@ -2004,11 +2004,11 @@ static int lan743x_rx_init_ring_element(struct lan743x_rx *rx, int index,
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}
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buffer_info->buffer_length = length;
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descriptor->data1 = DMA_ADDR_LOW32(buffer_info->dma_ptr);
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descriptor->data2 = DMA_ADDR_HIGH32(buffer_info->dma_ptr);
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descriptor->data1 = cpu_to_le32(DMA_ADDR_LOW32(buffer_info->dma_ptr));
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descriptor->data2 = cpu_to_le32(DMA_ADDR_HIGH32(buffer_info->dma_ptr));
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descriptor->data3 = 0;
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descriptor->data0 = (RX_DESC_DATA0_OWN_ |
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(length & RX_DESC_DATA0_BUF_LENGTH_MASK_));
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descriptor->data0 = cpu_to_le32((RX_DESC_DATA0_OWN_ |
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(length & RX_DESC_DATA0_BUF_LENGTH_MASK_)));
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skb_reserve(buffer_info->skb, RX_HEAD_PADDING);
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lan743x_rx_update_tail(rx, index);
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@ -2023,12 +2023,12 @@ static void lan743x_rx_reuse_ring_element(struct lan743x_rx *rx, int index)
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descriptor = &rx->ring_cpu_ptr[index];
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buffer_info = &rx->buffer_info[index];
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descriptor->data1 = DMA_ADDR_LOW32(buffer_info->dma_ptr);
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descriptor->data2 = DMA_ADDR_HIGH32(buffer_info->dma_ptr);
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descriptor->data1 = cpu_to_le32(DMA_ADDR_LOW32(buffer_info->dma_ptr));
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descriptor->data2 = cpu_to_le32(DMA_ADDR_HIGH32(buffer_info->dma_ptr));
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descriptor->data3 = 0;
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descriptor->data0 = (RX_DESC_DATA0_OWN_ |
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descriptor->data0 = cpu_to_le32((RX_DESC_DATA0_OWN_ |
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((buffer_info->buffer_length) &
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RX_DESC_DATA0_BUF_LENGTH_MASK_));
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RX_DESC_DATA0_BUF_LENGTH_MASK_)));
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lan743x_rx_update_tail(rx, index);
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}
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@ -2062,7 +2062,7 @@ static int lan743x_rx_process_packet(struct lan743x_rx *rx)
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{
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struct skb_shared_hwtstamps *hwtstamps = NULL;
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int result = RX_PROCESS_RESULT_NOTHING_TO_DO;
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int current_head_index = *rx->head_cpu_ptr;
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int current_head_index = le32_to_cpu(*rx->head_cpu_ptr);
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struct lan743x_rx_buffer_info *buffer_info;
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struct lan743x_rx_descriptor *descriptor;
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int extension_index = -1;
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@ -2077,14 +2077,14 @@ static int lan743x_rx_process_packet(struct lan743x_rx *rx)
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if (rx->last_head != current_head_index) {
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descriptor = &rx->ring_cpu_ptr[rx->last_head];
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if (descriptor->data0 & RX_DESC_DATA0_OWN_)
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if (le32_to_cpu(descriptor->data0) & RX_DESC_DATA0_OWN_)
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goto done;
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if (!(descriptor->data0 & RX_DESC_DATA0_FS_))
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if (!(le32_to_cpu(descriptor->data0) & RX_DESC_DATA0_FS_))
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goto done;
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first_index = rx->last_head;
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if (descriptor->data0 & RX_DESC_DATA0_LS_) {
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if (le32_to_cpu(descriptor->data0) & RX_DESC_DATA0_LS_) {
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last_index = rx->last_head;
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} else {
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int index;
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@ -2092,10 +2092,10 @@ static int lan743x_rx_process_packet(struct lan743x_rx *rx)
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index = lan743x_rx_next_index(rx, first_index);
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while (index != current_head_index) {
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descriptor = &rx->ring_cpu_ptr[index];
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if (descriptor->data0 & RX_DESC_DATA0_OWN_)
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if (le32_to_cpu(descriptor->data0) & RX_DESC_DATA0_OWN_)
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goto done;
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if (descriptor->data0 & RX_DESC_DATA0_LS_) {
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if (le32_to_cpu(descriptor->data0) & RX_DESC_DATA0_LS_) {
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last_index = index;
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break;
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}
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@ -2104,17 +2104,17 @@ static int lan743x_rx_process_packet(struct lan743x_rx *rx)
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}
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if (last_index >= 0) {
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descriptor = &rx->ring_cpu_ptr[last_index];
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if (descriptor->data0 & RX_DESC_DATA0_EXT_) {
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if (le32_to_cpu(descriptor->data0) & RX_DESC_DATA0_EXT_) {
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/* extension is expected to follow */
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int index = lan743x_rx_next_index(rx,
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last_index);
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if (index != current_head_index) {
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descriptor = &rx->ring_cpu_ptr[index];
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if (descriptor->data0 &
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if (le32_to_cpu(descriptor->data0) &
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RX_DESC_DATA0_OWN_) {
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goto done;
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}
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if (descriptor->data0 &
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if (le32_to_cpu(descriptor->data0) &
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RX_DESC_DATA0_EXT_) {
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extension_index = index;
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} else {
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@ -2166,7 +2166,7 @@ static int lan743x_rx_process_packet(struct lan743x_rx *rx)
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}
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buffer_info->skb = NULL;
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packet_length = RX_DESC_DATA0_FRAME_LENGTH_GET_
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(descriptor->data0);
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(le32_to_cpu(descriptor->data0));
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skb_put(skb, packet_length - 4);
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skb->protocol = eth_type_trans(skb,
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rx->adapter->netdev);
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@ -2204,8 +2204,8 @@ process_extension:
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descriptor = &rx->ring_cpu_ptr[extension_index];
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buffer_info = &rx->buffer_info[extension_index];
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ts_sec = descriptor->data1;
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ts_nsec = (descriptor->data2 &
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ts_sec = le32_to_cpu(descriptor->data1);
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ts_nsec = (le32_to_cpu(descriptor->data2) &
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RX_DESC_DATA2_TS_NS_MASK_);
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lan743x_rx_reuse_ring_element(rx, extension_index);
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real_last_index = extension_index;
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@ -660,7 +660,7 @@ struct lan743x_tx {
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struct lan743x_tx_buffer_info *buffer_info;
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u32 *head_cpu_ptr;
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__le32 *head_cpu_ptr;
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dma_addr_t head_dma_ptr;
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int last_head;
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int last_tail;
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@ -690,7 +690,7 @@ struct lan743x_rx {
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struct lan743x_rx_buffer_info *buffer_info;
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u32 *head_cpu_ptr;
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__le32 *head_cpu_ptr;
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dma_addr_t head_dma_ptr;
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u32 last_head;
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u32 last_tail;
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@ -775,10 +775,10 @@ struct lan743x_adapter {
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#define TX_DESC_DATA3_FRAME_LENGTH_MSS_MASK_ (0x3FFF0000)
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struct lan743x_tx_descriptor {
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u32 data0;
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u32 data1;
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u32 data2;
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u32 data3;
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__le32 data0;
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__le32 data1;
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__le32 data2;
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__le32 data3;
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} __aligned(DEFAULT_DMA_DESCRIPTOR_SPACING);
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#define TX_BUFFER_INFO_FLAG_ACTIVE BIT(0)
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@ -813,10 +813,10 @@ struct lan743x_tx_buffer_info {
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#define RX_HEAD_PADDING NET_IP_ALIGN
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struct lan743x_rx_descriptor {
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u32 data0;
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u32 data1;
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u32 data2;
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u32 data3;
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__le32 data0;
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__le32 data1;
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__le32 data2;
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__le32 data3;
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} __aligned(DEFAULT_DMA_DESCRIPTOR_SPACING);
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#define RX_BUFFER_INFO_FLAG_ACTIVE BIT(0)
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